Sine Striker
2024-02-23 e8b5955791156828be0d21392a37a19038d70d78
src/core/contexts/win32windowcontext.cpp
@@ -1,3 +1,7 @@
// Copyright (C) 2023-2024 Stdware Collections (https://www.github.com/stdware)
// Copyright (C) 2021-2023 wangwenx190 (Yuhang Zhao)
// SPDX-License-Identifier: Apache-2.0
#include "win32windowcontext_p.h"
#include <optional>
@@ -5,11 +9,13 @@
#include <QtCore/QHash>
#include <QtCore/QScopeGuard>
#include <QtCore/QTimer>
#include <QtCore/QDateTime>
#include <QtCore/QAbstractEventDispatcher>
#include <QtGui/QGuiApplication>
#include <QtGui/QPainter>
#include <QtGui/QPalette>
#include <QtGui/QStyleHints>
#include <QtGui/qpa/qwindowsysteminterface.h>
#include <QtGui/private/qhighdpiscaling_p.h>
#if QT_VERSION >= QT_VERSION_CHECK(6, 0, 0)
#  include <QtGui/private/qguiapplication_p.h>
@@ -21,12 +27,10 @@
#  include <QtGui/qpa/qplatformwindow_p.h>
#endif
#include <QWKCore/qwkconfig.h>
#include "qwkglobal_p.h"
#include "qwkwindowsextra_p.h"
#if QT_VERSION < QT_VERSION_CHECK(6, 0, 0)
Q_DECLARE_METATYPE(QMargins)
#endif
namespace QWK {
@@ -47,59 +51,25 @@
    // Original Qt window proc function
    static WNDPROC g_qtWindowProc = nullptr;
    static inline bool
#if !QWINDOWKIT_CONFIG(ENABLE_WINDOWS_SYSTEM_BORDERS)
        constexpr
#endif
        isSystemBorderEnabled() {
        return
#if QWINDOWKIT_CONFIG(ENABLE_WINDOWS_SYSTEM_BORDERS)
            isWin10OrGreater()
#else
            false
#endif
                ;
    }
    static inline void triggerFrameChange(HWND hwnd) {
        ::SetWindowPos(hwnd, nullptr, 0, 0, 0, 0,
                       SWP_NOACTIVATE | SWP_NOMOVE | SWP_NOSIZE | SWP_NOZORDER | SWP_NOOWNERZORDER |
                           SWP_FRAMECHANGED);
    }
    static inline quint32 getDpiForWindow(HWND hwnd) {
        const DynamicApis &apis = DynamicApis::instance();
        if (apis.pGetDpiForWindow) { // Win10
            return apis.pGetDpiForWindow(hwnd);
        } else if (apis.pGetDpiForMonitor) { // Win8.1
            HMONITOR monitor = ::MonitorFromWindow(hwnd, MONITOR_DEFAULTTONEAREST);
            UINT dpiX{0};
            UINT dpiY{0};
            apis.pGetDpiForMonitor(monitor, MDT_EFFECTIVE_DPI, &dpiX, &dpiY);
            return dpiX;
        } else { // Win2K
            HDC hdc = ::GetDC(nullptr);
            const int dpiX = ::GetDeviceCaps(hdc, LOGPIXELSX);
            // const int dpiY = ::GetDeviceCaps(hdc, LOGPIXELSY);
            ::ReleaseDC(nullptr, hdc);
            return quint32(dpiX);
        }
    }
    static inline quint32 getSystemMetricsForDpi(int index, quint32 dpi) {
        const DynamicApis &apis = DynamicApis::instance();
        if (apis.pGetSystemMetricsForDpi) {
            return ::GetSystemMetricsForDpi(index, dpi);
        }
        return ::GetSystemMetrics(index);
    }
    static inline quint32 getWindowFrameBorderThickness(HWND hwnd) {
        const DynamicApis &apis = DynamicApis::instance();
        if (UINT result = 0; SUCCEEDED(apis.pDwmGetWindowAttribute(
                hwnd, _DWMWA_VISIBLE_FRAME_BORDER_THICKNESS, &result, sizeof(result)))) {
            return result;
        }
        return getSystemMetricsForDpi(SM_CXBORDER, getDpiForWindow(hwnd));
    }
    static inline quint32 getResizeBorderThickness(HWND hwnd) {
        const quint32 dpi = getDpiForWindow(hwnd);
        return getSystemMetricsForDpi(SM_CXSIZEFRAME, dpi) +
               getSystemMetricsForDpi(SM_CXPADDEDBORDER, dpi);
    }
    static inline quint32 getTitleBarHeight(HWND hwnd) {
        const quint32 dpi = getDpiForWindow(hwnd);
        return getSystemMetricsForDpi(SM_CYCAPTION, dpi) +
               getSystemMetricsForDpi(SM_CXSIZEFRAME, dpi) +
               getSystemMetricsForDpi(SM_CXPADDEDBORDER, dpi);
    }
    static void setInternalWindowFrameMargins(QWindow *window, const QMargins &margins) {
@@ -128,18 +98,6 @@
        monitorInfo.cbSize = sizeof(monitorInfo);
        ::GetMonitorInfoW(monitor, &monitorInfo);
        return monitorInfo;
    }
    static inline void moveWindowToDesktopCenter(HWND hwnd) {
        MONITORINFOEXW monitorInfo = getMonitorForWindow(hwnd);
        RECT windowRect{};
        ::GetWindowRect(hwnd, &windowRect);
        const auto newX = monitorInfo.rcMonitor.left +
                          (RECT_WIDTH(monitorInfo.rcMonitor) - RECT_WIDTH(windowRect)) / 2;
        const auto newY = monitorInfo.rcMonitor.top +
                          (RECT_HEIGHT(monitorInfo.rcMonitor) - RECT_HEIGHT(windowRect)) / 2;
        ::SetWindowPos(hwnd, nullptr, newX, newY, 0, 0,
                       SWP_NOACTIVATE | SWP_NOSIZE | SWP_NOZORDER | SWP_NOOWNERZORDER);
    }
    static inline void moveWindowToMonitor(HWND hwnd, const MONITORINFOEXW &activeMonitor) {
@@ -365,7 +323,7 @@
            case HTBORDER:
                return Win32WindowContext::FixedBorder;
            default:
                // unreachable
                Q_UNREACHABLE();
                break;
        }
        return Win32WindowContext::Outside;
@@ -403,6 +361,104 @@
        return true;
    }
    static inline constexpr bool isNonClientMessage(const UINT message) {
        if (((message >= WM_NCCREATE) && (message <= WM_NCACTIVATE)) ||
            ((message >= WM_NCMOUSEMOVE) && (message <= WM_NCMBUTTONDBLCLK)) ||
            ((message >= WM_NCXBUTTONDOWN) && (message <= WM_NCXBUTTONDBLCLK))
#if (WINVER >= _WIN32_WINNT_WIN8)
            || ((message >= WM_NCPOINTERUPDATE) && (message <= WM_NCPOINTERUP))
#endif
            || ((message == WM_NCMOUSEHOVER) || (message == WM_NCMOUSELEAVE))) {
            return true;
        } else {
            return false;
        }
    }
    static MSG createMessageBlock(HWND hWnd, UINT message, WPARAM wParam, LPARAM lParam) {
        MSG msg;
        msg.hwnd = hWnd;       // re-create MSG structure
        msg.message = message; // time and pt fields ignored
        msg.wParam = wParam;
        msg.lParam = lParam;
        const DWORD dwScreenPos = ::GetMessagePos();
        msg.pt.x = GET_X_LPARAM(dwScreenPos);
        msg.pt.y = GET_Y_LPARAM(dwScreenPos);
        if (!isNonClientMessage(message)) {
            ::ScreenToClient(hWnd, &msg.pt);
        }
        return msg;
    }
    static inline constexpr bool isInputMessage(UINT m) {
        switch (m) {
            case WM_IME_STARTCOMPOSITION:
            case WM_IME_ENDCOMPOSITION:
            case WM_IME_COMPOSITION:
            case WM_INPUT:
            case WM_TOUCH:
            case WM_MOUSEHOVER:
            case WM_MOUSELEAVE:
            case WM_NCMOUSEHOVER:
            case WM_NCMOUSELEAVE:
            case WM_SIZING:
            case WM_MOVING:
            case WM_SYSCOMMAND:
            case WM_COMMAND:
            case WM_DWMNCRENDERINGCHANGED:
            case WM_PAINT:
                return true;
            default:
                break;
        }
        return (m >= WM_MOUSEFIRST && m <= WM_MOUSELAST) ||
               (m >= WM_NCMOUSEMOVE && m <= WM_NCXBUTTONDBLCLK) ||
               (m >= WM_KEYFIRST && m <= WM_KEYLAST);
    }
    static inline QByteArray nativeEventType() {
        return QByteArrayLiteral("windows_generic_MSG");
    }
    // Send to QAbstractEventDispatcher
    bool filterNativeEvent(MSG *msg, LRESULT *result) {
        auto dispatcher = QAbstractEventDispatcher::instance();
        QT_NATIVE_EVENT_RESULT_TYPE filterResult = *result;
        if (dispatcher && dispatcher->filterNativeEvent(nativeEventType(), msg, &filterResult)) {
            *result = LRESULT(filterResult);
            return true;
        }
        return false;
    }
    // Send to QWindowSystemInterface
    bool filterNativeEvent(QWindow *window, MSG *msg, LRESULT *result) {
        QT_NATIVE_EVENT_RESULT_TYPE filterResult = *result;
        if (QWindowSystemInterface::handleNativeEvent(window, nativeEventType(), msg,
                                                      &filterResult)) {
            *result = LRESULT(filterResult);
            return true;
        }
        return false;
    }
    static inline bool forwardFilteredEvents(QWindow *window, HWND hWnd, UINT message,
                                             WPARAM wParam, LPARAM lParam, LRESULT *result) {
        MSG msg = createMessageBlock(hWnd, message, wParam, lParam);
        // Run the native event filters. QTBUG-67095: Exclude input messages which are sent
        // by QEventDispatcherWin32::processEvents()
        if (!isInputMessage(msg.message) && filterNativeEvent(&msg, result))
            return true;
        auto platformWindow = window->handle();
        if (platformWindow && filterNativeEvent(platformWindow->window(), &msg, result))
            return true;
        return false;
    }
    // https://github.com/qt/qtbase/blob/e26a87f1ecc40bc8c6aa5b889fce67410a57a702/src/plugins/platforms/windows/qwindowscontext.cpp#L1556
    // In QWindowsContext::windowsProc(), the messages will be passed to all global native event
    // filters, but because we have already filtered the messages in the hook WndProc function for
@@ -437,8 +493,8 @@
            return false;
        }
        static WindowsNativeEventFilter *instance;
        static Win32WindowContext *lastMessageContext;
        static inline WindowsNativeEventFilter *instance = nullptr;
        static inline Win32WindowContext *lastMessageContext = nullptr;
        static inline void install() {
            if (instance) {
@@ -455,9 +511,6 @@
            instance = nullptr;
        }
    };
    WindowsNativeEventFilter *WindowsNativeEventFilter::instance = nullptr;
    Win32WindowContext *WindowsNativeEventFilter::lastMessageContext = nullptr;
    // https://github.com/qt/qtbase/blob/e26a87f1ecc40bc8c6aa5b889fce67410a57a702/src/plugins/platforms/windows/qwindowscontext.cpp#L1025
    // We can see from the source code that Qt will filter out some messages first and then send the
@@ -536,6 +589,10 @@
        // Try hooked procedure and save result
        LRESULT result;
        if (ctx->windowProc(hWnd, message, wParam, lParam, &result)) {
            // Forward the event to user-defined native event filters, there may be some messages
            // that need to be processed by the user.
            std::ignore =
                forwardFilteredEvents(ctx->window(), hWnd, message, wParam, lParam, &result);
            return result;
        }
@@ -546,7 +603,7 @@
    static inline void addManagedWindow(QWindow *window, HWND hWnd, Win32WindowContext *ctx) {
        const auto margins = [hWnd]() -> QMargins {
            const auto titleBarHeight = int(getTitleBarHeight(hWnd));
            if (isWin10OrGreater()) {
            if (isSystemBorderEnabled()) {
                return {0, -titleBarHeight, 0, 0};
            } else {
                const auto frameSize = int(getResizeBorderThickness(hWnd));
@@ -587,8 +644,8 @@
    }
    Win32WindowContext::~Win32WindowContext() {
        if (windowId) {
            removeManagedWindow(reinterpret_cast<HWND>(windowId));
        if (m_windowId) {
            removeManagedWindow(reinterpret_cast<HWND>(m_windowId));
        }
    }
@@ -598,27 +655,20 @@
    void Win32WindowContext::virtual_hook(int id, void *data) {
        switch (id) {
            case CentralizeHook: {
                if (!windowId)
                    return;
                const auto hwnd = reinterpret_cast<HWND>(windowId);
                moveWindowToDesktopCenter(hwnd);
                return;
            }
            case RaiseWindowHook: {
                if (!windowId)
                if (!m_windowId)
                    return;
                const auto hwnd = reinterpret_cast<HWND>(windowId);
                m_delegate->setWindowVisible(m_host, true);
                const auto hwnd = reinterpret_cast<HWND>(m_windowId);
                bringWindowToFront(hwnd);
                return;
            }
            case ShowSystemMenuHook: {
                if (!windowId)
                if (!m_windowId)
                    return;
                const auto &pos = *static_cast<const QPoint *>(data);
                auto hWnd = reinterpret_cast<HWND>(windowId);
                auto hWnd = reinterpret_cast<HWND>(m_windowId);
#if QT_VERSION >= QT_VERSION_CHECK(6, 0, 0)
                const QPoint nativeGlobalPos =
                    QHighDpi::toNativeGlobalPosition(pos, m_windowHandle);
@@ -640,18 +690,19 @@
                return;
            }
#if QWINDOWKIT_CONFIG(ENABLE_WINDOWS_SYSTEM_BORDERS)
            case DrawWindows10BorderHook: {
                if (!windowId)
                if (!m_windowId)
                    return;
                auto args = static_cast<void **>(data);
                auto &painter = *static_cast<QPainter *>(args[0]);
                const auto &rect = *static_cast<const QRect *>(args[1]);
                const auto &region = *static_cast<const QRegion *>(args[2]);
                const auto hwnd = reinterpret_cast<HWND>(windowId);
                const auto hwnd = reinterpret_cast<HWND>(m_windowId);
                QPen pen;
                pen.setWidth(getWindowFrameBorderThickness(hwnd) * 2);
                pen.setWidth(int(getWindowFrameBorderThickness(hwnd)) * 2);
                const bool dark = isDarkThemeActive() && isDarkWindowFrameEnabled(hwnd);
                if (m_delegate->isWindowActive(m_host)) {
@@ -671,7 +722,7 @@
                }
                painter.save();
                // We needs anti-aliasing to give us better result.
                // We need antialiasing to give us better result.
                painter.setRenderHint(QPainter::Antialiasing);
                painter.setPen(pen);
@@ -683,55 +734,109 @@
                return;
            }
            case DrawWindows10BorderHook2: {
                if (!m_windowId)
                    return;
                // https://github.com/microsoft/terminal/blob/71a6f26e6ece656084e87de1a528c4a8072eeabd/src/cascadia/WindowsTerminal/NonClientIslandWindow.cpp#L1025
                // https://docs.microsoft.com/en-us/windows/win32/dwm/customframe#extending-the-client-frame
                // Draw a black rectangle to make Windows native top border show
                auto hWnd = reinterpret_cast<HWND>(m_windowId);
                HDC hdc = ::GetDC(hWnd);
                RECT windowRect{};
                ::GetClientRect(hWnd, &windowRect);
                RECT rcTopBorder = {
                    0,
                    0,
                    RECT_WIDTH(windowRect),
                    int(getWindowFrameBorderThickness(hWnd)),
                };
                ::FillRect(hdc, &rcTopBorder,
                           reinterpret_cast<HBRUSH>(::GetStockObject(BLACK_BRUSH)));
                ::ReleaseDC(hWnd, hdc);
                return;
            }
#endif
            default:
                break;
        }
        AbstractWindowContext::virtual_hook(id, data);
    }
    bool Win32WindowContext::needBorderPainter() const {
        return isWin10OrGreater() && !isWin11OrGreater();
    }
    QVariant Win32WindowContext::windowAttribute(const QString &key) const {
        if (key == QStringLiteral("window-rect")) {
            if (!m_windowId)
                return {};
    int Win32WindowContext::borderThickness() const {
        return getWindowFrameBorderThickness(reinterpret_cast<HWND>(windowId));
    }
    void Win32WindowContext::winIdChanged() {
        // If the original window id is valid, remove all resources related
        if (windowId) {
            removeManagedWindow(reinterpret_cast<HWND>(windowId));
            windowId = 0;
            RECT frame{};
            auto hwnd = reinterpret_cast<HWND>(m_windowId);
            // According to MSDN, WS_OVERLAPPED is not allowed for AdjustWindowRect.
            auto style = static_cast<DWORD>(::GetWindowLongPtrW(hwnd, GWL_STYLE) & ~WS_OVERLAPPED);
            auto exStyle = static_cast<DWORD>(::GetWindowLongPtrW(hwnd, GWL_EXSTYLE));
            const DynamicApis &apis = DynamicApis::instance();
            if (apis.pAdjustWindowRectExForDpi) {
                apis.pAdjustWindowRectExForDpi(&frame, style, FALSE, exStyle,
                                               getDpiForWindow(hwnd));
            } else {
                ::AdjustWindowRectEx(&frame, style, FALSE, exStyle);
            }
            return QVariant::fromValue(rect2qrect(frame));
        }
        if (!m_windowHandle) {
        if (key == QStringLiteral("win10-border-needed")) {
            return isSystemBorderEnabled() && !isWin11OrGreater();
        }
        if (key == QStringLiteral("border-thickness")) {
            return m_windowId
                       ? int(getWindowFrameBorderThickness(reinterpret_cast<HWND>(m_windowId)))
                       : 0;
        }
        return AbstractWindowContext::windowAttribute(key);
    }
    void Win32WindowContext::winIdChanged(WId winId, WId oldWinId) {
        // Reset the context data
        mouseLeaveBlocked = false;
        lastHitTestResult = WindowPart::Outside;
        // If the original window id is valid, remove all resources related
        if (oldWinId) {
            removeManagedWindow(reinterpret_cast<HWND>(oldWinId));
        }
        if (!winId) {
            return;
        }
        // Install window hook
        auto winId = m_windowHandle->winId();
        auto hWnd = reinterpret_cast<HWND>(winId);
        if (!isSystemBorderEnabled()) {
            static auto margins = QVariant::fromValue(QMargins(1, 1, 1, 1));
        if (!isWin10OrGreater()) {
            static constexpr const MARGINS margins = {1, 1, 1, 1};
            DynamicApis::instance().pDwmExtendFrameIntoClientArea(hWnd, &margins);
            // If we remove the system border, the window will lose its shadow. If dwm is enabled,
            // then we need to set at least 1px margins, otherwise the following operation will
            // fail with no effect.
            setWindowAttribute(QStringLiteral("extra-margins"), margins);
        }
#if QT_VERSION < QT_VERSION_CHECK(6, 5, 0)
        for (const auto attr : {
                 _DWMWA_USE_IMMERSIVE_DARK_MODE_BEFORE_20H1,
                 _DWMWA_USE_IMMERSIVE_DARK_MODE,
             }) {
            const BOOL enable = TRUE;
            DynamicApis::instance().pDwmSetWindowAttribute(hWnd, attr, &enable, sizeof(enable));
        // We should disable WS_SYSMENU, otherwise the system button icons will be visible if mica
        // is enabled and the title bar is transparent.
        {
            auto style = ::GetWindowLongPtrW(hWnd, GWL_STYLE);
            if (isSystemBorderEnabled()) {
                ::SetWindowLongPtrW(hWnd, GWL_STYLE, style & (~WS_SYSMENU));
            } else {
                ::SetWindowLongPtrW(hWnd, GWL_STYLE,
                                    (style | WS_THICKFRAME | WS_CAPTION) & (~WS_SYSMENU));
            }
        }
#endif
        // Add managed window
        addManagedWindow(m_windowHandle, hWnd, this);
        // Cache win id
        windowId = winId;
    }
    bool Win32WindowContext::windowProc(HWND hWnd, UINT message, WPARAM wParam, LPARAM lParam,
@@ -741,8 +846,8 @@
        // We should skip these messages otherwise we will get crashes.
        // NOTE: WM_QUIT won't be posted to the WindowProc function.
        switch (message) {
            case WM_CLOSE:
            case WM_DESTROY:
            case WM_CLOSE:
            case WM_NCDESTROY:
            // Undocumented messages:
            case WM_UAHDESTROYWINDOW:
@@ -773,13 +878,9 @@
        // Forward to native event filter subscribers
        if (!m_nativeEventFilters.isEmpty()) {
            MSG msg;
            msg.hwnd = hWnd;
            msg.message = message;
            msg.wParam = wParam;
            msg.lParam = lParam;
            MSG msg = createMessageBlock(hWnd, message, wParam, lParam);
            QT_NATIVE_EVENT_RESULT_TYPE res = 0;
            if (dispatch(QByteArrayLiteral("windows_generic_MSG"), &msg, &res)) {
            if (nativeDispatch(nativeEventType(), &msg, &res)) {
                *result = LRESULT(res);
                return true;
            }
@@ -789,8 +890,45 @@
    bool Win32WindowContext::windowAttributeChanged(const QString &key, const QVariant &attribute,
                                                    const QVariant &oldAttribute) {
        const auto hwnd = reinterpret_cast<HWND>(window->winId());
        Q_UNUSED(oldAttribute)
        const auto hwnd = reinterpret_cast<HWND>(m_windowId);
        const DynamicApis &apis = DynamicApis::instance();
        static constexpr const MARGINS extendedMargins = {-1, -1, -1, -1};
        const auto &restoreMargins = [this, &apis, hwnd]() {
            auto margins = qmargins2margins(
                m_windowAttributes.value(QStringLiteral("extra-margins")).value<QMargins>());
            apis.pDwmExtendFrameIntoClientArea(hwnd, &margins);
        };
        if (key == QStringLiteral("extra-margins")) {
            auto margins = qmargins2margins(attribute.value<QMargins>());
            return apis.pDwmExtendFrameIntoClientArea(hwnd, &margins) == S_OK;
        }
        if (key == QStringLiteral("dark-mode")) {
            if (!isWin101809OrGreater()) {
                return false;
            }
            BOOL enable = attribute.toBool();
            if (isWin101903OrGreater()) {
                apis.pSetPreferredAppMode(enable ? PAM_AUTO : PAM_DEFAULT);
            } else {
                apis.pAllowDarkModeForApp(enable);
            }
            for (const auto attr : {
                     _DWMWA_USE_IMMERSIVE_DARK_MODE_BEFORE_20H1,
                     _DWMWA_USE_IMMERSIVE_DARK_MODE,
                 }) {
                apis.pDwmSetWindowAttribute(hwnd, attr, &enable, sizeof(enable));
            }
            apis.pFlushMenuThemes();
            return true;
        }
        // For Win11 or later
        if (key == QStringLiteral("mica")) {
            if (!isWin11OrGreater()) {
                return false;
@@ -798,8 +936,7 @@
            if (attribute.toBool()) {
                // We need to extend the window frame into the whole client area to be able
                // to see the blurred window background.
                static constexpr const MARGINS margins = {-1, -1, -1, -1};
                apis.pDwmExtendFrameIntoClientArea(hwnd, &margins);
                apis.pDwmExtendFrameIntoClientArea(hwnd, &extendedMargins);
                if (isWin1122H2OrGreater()) {
                    // Use official DWM API to enable Mica, available since Windows 11 22H2
                    // (10.0.22621).
@@ -821,19 +958,19 @@
                    const BOOL enable = FALSE;
                    apis.pDwmSetWindowAttribute(hwnd, _DWMWA_MICA_EFFECT, &enable, sizeof(enable));
                }
                static constexpr const MARGINS margins = {0, 0, 0, 0};
                apis.pDwmExtendFrameIntoClientArea(hwnd, &margins);
                restoreMargins();
            }
            return true;
        } else if (key == QStringLiteral("mica-alt")) {
        }
        if (key == QStringLiteral("mica-alt")) {
            if (!isWin1122H2OrGreater()) {
                return false;
            }
            if (attribute.toBool()) {
                // We need to extend the window frame into the whole client area to be able
                // to see the blurred window background.
                static constexpr const MARGINS margins = {-1, -1, -1, -1};
                apis.pDwmExtendFrameIntoClientArea(hwnd, &margins);
                apis.pDwmExtendFrameIntoClientArea(hwnd, &extendedMargins);
                // Use official DWM API to enable Mica Alt, available since Windows 11 22H2
                // (10.0.22621).
                const _DWM_SYSTEMBACKDROP_TYPE backdropType = _DWMSBT_TABBEDWINDOW;
@@ -843,64 +980,62 @@
                const _DWM_SYSTEMBACKDROP_TYPE backdropType = _DWMSBT_AUTO;
                apis.pDwmSetWindowAttribute(hwnd, _DWMWA_SYSTEMBACKDROP_TYPE, &backdropType,
                                            sizeof(backdropType));
                static constexpr const MARGINS margins = {0, 0, 0, 0};
                apis.pDwmExtendFrameIntoClientArea(hwnd, &margins);
                restoreMargins();
            }
            return true;
        } else if (key == QStringLiteral("acrylic-material")) {
            if (!isWin10OrGreater()) {
        }
        if (key == QStringLiteral("acrylic-material")) {
            if (!isWin11OrGreater()) {
                return false;
            }
            if (attribute.userType() == QMetaType::QColor) {
                // We need to extend the window frame into the whole client area to be able
                // to see the blurred window background.
                static constexpr const MARGINS margins = {-1, -1, -1, -1};
                apis.pDwmExtendFrameIntoClientArea(hwnd, &margins);
                if (isWin11OrGreater()) {
                    const _DWM_SYSTEMBACKDROP_TYPE backdropType = _DWMSBT_TRANSIENTWINDOW;
                    apis.pDwmSetWindowAttribute(hwnd, _DWMWA_SYSTEMBACKDROP_TYPE, &backdropType,
                                                sizeof(backdropType));
                } else {
                    auto gradientColor = attribute.value<QColor>();
                    ACCENT_POLICY policy{};
                    policy.dwAccentState = ACCENT_ENABLE_ACRYLICBLURBEHIND;
                    policy.dwAccentFlags = ACCENT_ENABLE_ACRYLIC_WITH_LUMINOSITY;
                    // This API expects the #AABBGGRR format.
                    policy.dwGradientColor =
                        DWORD(qRgba(gradientColor.blue(), gradientColor.green(),
                                    gradientColor.red(), gradientColor.alpha()));
                    WINDOWCOMPOSITIONATTRIBDATA wcad{};
                    wcad.Attrib = WCA_ACCENT_POLICY;
                    wcad.pvData = &policy;
                    wcad.cbData = sizeof(policy);
                    apis.pSetWindowCompositionAttribute(hwnd, &wcad);
                }
            } else {
                if (isWin11OrGreater()) {
                    const _DWM_SYSTEMBACKDROP_TYPE backdropType = _DWMSBT_AUTO;
                    apis.pDwmSetWindowAttribute(hwnd, _DWMWA_SYSTEMBACKDROP_TYPE, &backdropType,
                                                sizeof(backdropType));
                } else {
                    ACCENT_POLICY policy{};
                    policy.dwAccentState = ACCENT_DISABLED;
                    policy.dwAccentFlags = ACCENT_NONE;
                    WINDOWCOMPOSITIONATTRIBDATA wcad{};
                    wcad.Attrib = WCA_ACCENT_POLICY;
                    wcad.pvData = &policy;
                    wcad.cbData = sizeof(policy);
                    apis.pSetWindowCompositionAttribute(hwnd, &wcad);
                }
                static constexpr const MARGINS margins = {0, 0, 0, 0};
                apis.pDwmExtendFrameIntoClientArea(hwnd, &margins);
            }
            return true;
        } else if (key == QStringLiteral("dwm-blur")) {
            if (attribute.toBool()) {
                // We need to extend the window frame into the whole client area to be able
                // to see the blurred window background.
                static constexpr const MARGINS margins = {-1, -1, -1, -1};
                apis.pDwmExtendFrameIntoClientArea(hwnd, &margins);
                apis.pDwmExtendFrameIntoClientArea(hwnd, &extendedMargins);
                const _DWM_SYSTEMBACKDROP_TYPE backdropType = _DWMSBT_TRANSIENTWINDOW;
                apis.pDwmSetWindowAttribute(hwnd, _DWMWA_SYSTEMBACKDROP_TYPE, &backdropType,
                                            sizeof(backdropType));
                // PRIVATE API REFERENCE:
                //     QColor gradientColor = {};
                //     ACCENT_POLICY policy{};
                //     policy.dwAccentState = ACCENT_ENABLE_ACRYLICBLURBEHIND;
                //     policy.dwAccentFlags = ACCENT_ENABLE_ACRYLIC_WITH_LUMINOSITY;
                //     // This API expects the #AABBGGRR format.
                //     policy.dwGradientColor =
                //         DWORD(qRgba(gradientColor.blue(), gradientColor.green(),
                //                     gradientColor.red(), gradientColor.alpha()));
                //     WINDOWCOMPOSITIONATTRIBDATA wcad{};
                //     wcad.Attrib = WCA_ACCENT_POLICY;
                //     wcad.pvData = &policy;
                //     wcad.cbData = sizeof(policy);
                //     apis.pSetWindowCompositionAttribute(hwnd, &wcad);
            } else {
                const _DWM_SYSTEMBACKDROP_TYPE backdropType = _DWMSBT_AUTO;
                apis.pDwmSetWindowAttribute(hwnd, _DWMWA_SYSTEMBACKDROP_TYPE, &backdropType,
                                            sizeof(backdropType));
                // PRIVATE API REFERENCE:
                //     ACCENT_POLICY policy{};
                //     policy.dwAccentState = ACCENT_DISABLED;
                //     policy.dwAccentFlags = ACCENT_NONE;
                //     WINDOWCOMPOSITIONATTRIBDATA wcad{};
                //     wcad.Attrib = WCA_ACCENT_POLICY;
                //     wcad.pvData = &policy;
                //     wcad.cbData = sizeof(policy);
                //     apis.pSetWindowCompositionAttribute(hwnd, &wcad);
                restoreMargins();
            }
            return true;
        }
        if (key == QStringLiteral("dwm-blur")) {
            if (attribute.toBool()) {
                // We can't extend the window frame for this effect.
                restoreMargins();
                if (isWin8OrGreater()) {
                    ACCENT_POLICY policy{};
                    policy.dwAccentState = ACCENT_ENABLE_BLURBEHIND;
@@ -913,8 +1048,7 @@
                } else {
                    DWM_BLURBEHIND bb{};
                    bb.fEnable = TRUE;
                    bb.fTransitionOnMaximized = TRUE;
                    bb.dwFlags = DWM_BB_ENABLE | DWM_BB_TRANSITIONONMAXIMIZED;
                    bb.dwFlags = DWM_BB_ENABLE;
                    apis.pDwmEnableBlurBehindWindow(hwnd, &bb);
                }
            } else {
@@ -933,8 +1067,6 @@
                    bb.dwFlags = DWM_BB_ENABLE;
                    apis.pDwmEnableBlurBehindWindow(hwnd, &bb);
                }
                static constexpr const MARGINS margins = {0, 0, 0, 0};
                apis.pDwmExtendFrameIntoClientArea(hwnd, &margins);
            }
            return true;
        }
@@ -1194,19 +1326,14 @@
                        // the above problems would not arise.
                        m_delegate->resetQtGrabbedControl(m_host);
                        // If the mouse moves from chrome buttons to other non-client areas, a
                        // WM_MOUSELEAVE message should be sent.
                        if (mouseLeaveBlocked) {
                            emulateClientAreaMessage(hWnd, message, wParam, lParam,
                                                     WM_NCMOUSELEAVE);
                        }
                    }
                    // We need to make sure we get the right hit-test result when a WM_NCMOUSELEAVE
                    // comes, so we reset it when we receive a WM_NCMOUSEMOVE.
                    // If the mouse is entering the client area, there must be a WM_NCHITTEST
                    // setting it to `Client` before the WM_NCMOUSELEAVE comes; if the mouse is
                    // leaving the window, current window part remains as `Outside`.
                    lastHitTestResult = WindowPart::Outside;
                }
                if (currentWindowPart == WindowPart::ChromeButton) {
@@ -1238,7 +1365,7 @@
                    // pressing area as HTCLIENT which maybe because of our former retransmission of
                    // WM_NCLBUTTONDOWN, as a result, a WM_NCMOUSELEAVE will come immediately and a
                    // lot of WM_MOUSEMOVE will come if we move the mouse, we should track the mouse
                    // in advance.
                    // in advance. (May be redundant?)
                    if (mouseLeaveBlocked) {
                        mouseLeaveBlocked = false;
                        requestForMouseLeaveMessage(hWnd, false);
@@ -1272,19 +1399,6 @@
    bool Win32WindowContext::customWindowHandler(HWND hWnd, UINT message, WPARAM wParam,
                                                 LPARAM lParam, LRESULT *result) {
        switch (message) {
            case WM_SHOWWINDOW: {
                if (!centered) {
                    // If wParam is TRUE, the window is being shown.
                    // If lParam is zero, the message was sent because of a call to the ShowWindow
                    // function.
                    if (wParam && !lParam) {
                        centered = true;
                        moveWindowToDesktopCenter(hWnd);
                    }
                }
                break;
            }
            case WM_NCHITTEST: {
                // 原生Win32窗口只有顶边是在窗口内部resize的,其余三边都是在窗口
                // 外部进行resize的,其原理是,WS_THICKFRAME这个窗口样式会在窗
@@ -1366,8 +1480,11 @@
                // Terminal does, however, later I found that if we choose a proper
                // color, our homemade top border can almost have exactly the same
                // appearance with the system's one.
                qDebug() << QDateTime::currentDateTime() << "HITTEST";
                [[maybe_unused]] const auto &hitTestRecorder = qScopeGuard([this, result]() {
                    lastHitTestResult = getHitWindowPart(int(*result)); //
                    qDebug() << lastHitTestResult;
                });
                POINT nativeGlobalPos{GET_X_LPARAM(lParam), GET_Y_LPARAM(lParam)};
@@ -1466,7 +1583,7 @@
                int frameSize = getResizeBorderThickness(hWnd);
                bool isTop = (nativeLocalPos.y < frameSize);
                if (isWin10OrGreater()) {
                if (isSystemBorderEnabled()) {
                    // This will handle the left, right and bottom parts of the frame
                    // because we didn't change them.
                    LRESULT originalHitTestResult = ::DefWindowProcW(hWnd, WM_NCHITTEST, 0, lParam);
@@ -1594,7 +1711,7 @@
                break;
        }
        if (!isWin10OrGreater()) {
        if (!isSystemBorderEnabled()) {
            switch (message) {
                case WM_NCUAHDRAWCAPTION:
                case WM_NCUAHDRAWFRAME: {
@@ -1745,7 +1862,7 @@
        // and align it with the upper-left corner of our new client area".
        const auto clientRect = wParam ? &(reinterpret_cast<LPNCCALCSIZE_PARAMS>(lParam))->rgrc[0]
                                       : reinterpret_cast<LPRECT>(lParam);
        if (isWin10OrGreater()) {
        if (isSystemBorderEnabled()) {
            // Store the original top margin before the default window procedure applies the
            // default frame.
            const LONG originalTop = clientRect->top;
@@ -1772,6 +1889,7 @@
            // technique to bring the top border back.
            clientRect->top = originalTop;
        }
        const bool max = IsMaximized(hWnd);
        const bool full = isFullScreen(hWnd);
        // We don't need this correction when we're fullscreen. We will
@@ -1786,7 +1904,7 @@
            // a window when it's maximized unless you restore it).
            const quint32 frameSize = getResizeBorderThickness(hWnd);
            clientRect->top += frameSize;
            if (!isWin10OrGreater()) {
            if (!isSystemBorderEnabled()) {
                clientRect->bottom -= frameSize;
                clientRect->left += frameSize;
                clientRect->right -= frameSize;
@@ -1889,10 +2007,11 @@
        const auto getNativeGlobalPosFromKeyboard = [hWnd]() -> POINT {
            const bool maxOrFull = IsMaximized(hWnd) || isFullScreen(hWnd);
            const quint32 frameSize = getResizeBorderThickness(hWnd);
            const quint32 horizontalOffset = ((maxOrFull || !isWin10OrGreater()) ? 0 : frameSize);
            const quint32 horizontalOffset =
                ((maxOrFull || !isSystemBorderEnabled()) ? 0 : frameSize);
            const auto verticalOffset = [hWnd, maxOrFull, frameSize]() -> quint32 {
                const quint32 titleBarHeight = getTitleBarHeight(hWnd);
                if (!isWin10OrGreater()) {
                if (!isSystemBorderEnabled()) {
                    return titleBarHeight;
                }
                if (isWin11OrGreater()) {