1230 lines
49 KiB
C++
1230 lines
49 KiB
C++
#include "display_mode_manager.h"
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#include <algorithm>
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#include <cmath>
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#include <mutex>
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#include <vector>
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#include "sdk_26100.h"
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namespace mpv {
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namespace {
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constexpr wchar_t kRegistryPath[] = L"Software\\Plezy\\DisplayModeOverride";
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constexpr wchar_t kRegVersion[] = L"Version";
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constexpr DWORD kRecoveryVersion = 1;
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constexpr wchar_t kRegModeDeviceName[] = L"ModeDeviceName";
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constexpr wchar_t kRegLegacyDeviceName[] = L"DeviceName";
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constexpr wchar_t kRegHDRDeviceName[] = L"HDRDeviceName";
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constexpr wchar_t kRegOriginalRefreshRate[] = L"OriginalRefreshRate";
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constexpr wchar_t kRegOriginalWidth[] = L"OriginalWidth";
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constexpr wchar_t kRegOriginalHeight[] = L"OriginalHeight";
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constexpr wchar_t kRegOriginalHDR[] = L"OriginalHDREnabled";
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constexpr wchar_t kRegModeChanged[] = L"ModeChanged";
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constexpr wchar_t kRegHDRChanged[] = L"HDRChanged";
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constexpr wchar_t kRegModeTakeoverEligible[] = L"ModeTakeoverEligible";
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constexpr wchar_t kRegHDRTakeoverEligible[] = L"HDRTakeoverEligible";
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constexpr wchar_t kRegModeRecoverySlot[] = L"ModeRecoverySlot";
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constexpr wchar_t kRegHDRRecoverySlot[] = L"HDRRecoverySlot";
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constexpr wchar_t kRegModeDeviceNameAlternate[] = L"ModeDeviceNameAlternate";
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constexpr wchar_t kRegHDRDeviceNameAlternate[] = L"HDRDeviceNameAlternate";
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constexpr wchar_t kRegOriginalRefreshRateAlternate[] = L"OriginalRefreshRateAlternate";
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constexpr wchar_t kRegOriginalWidthAlternate[] = L"OriginalWidthAlternate";
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constexpr wchar_t kRegOriginalHeightAlternate[] = L"OriginalHeightAlternate";
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constexpr wchar_t kRegOriginalHDRAlternate[] = L"OriginalHDREnabledAlternate";
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constexpr wchar_t kRegModeHandoffPending[] = L"ModeHandoffPending";
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constexpr wchar_t kRegHDRHandoffPending[] = L"HDRHandoffPending";
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constexpr wchar_t kRegModePreviousRecoverySlot[] = L"ModePreviousRecoverySlot";
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constexpr wchar_t kRegHDRPreviousRecoverySlot[] = L"HDRPreviousRecoverySlot";
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std::recursive_mutex g_display_override_mutex;
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bool g_live_mode_recovery_record = false;
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bool g_live_hdr_recovery_record = false;
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bool g_recovery_in_progress = false;
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class RecoveryRunGuard {
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public:
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RecoveryRunGuard() : acquired_(!g_recovery_in_progress) {
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if (acquired_) g_recovery_in_progress = true;
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}
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~RecoveryRunGuard() {
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if (acquired_) g_recovery_in_progress = false;
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}
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bool acquired() const { return acquired_; }
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private:
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bool acquired_;
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};
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bool PrepareModeRecoveryAtRegistry(const std::wstring& device_name, DWORD width, DWORD height, DWORD refresh_rate);
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bool PrepareHDRRecoveryAtRegistry(const std::wstring& device_name, bool enabled);
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bool CompleteRecoveryOperationAtRegistry(
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const wchar_t* marker, const wchar_t* takeover_disposition, const wchar_t* handoff_pending);
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bool FinalizeModeRecoveryAtRegistry(bool os_apply_succeeded);
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bool FinalizeHDRRecoveryAtRegistry(bool os_apply_succeeded);
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bool MarkTakeoverEligibleAtRegistry(const wchar_t* takeover_disposition);
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} // namespace
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DisplayModeManager::DisplayModeManager() {}
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DisplayModeManager::~DisplayModeManager() {}
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// --- Monitor identification ---
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std::wstring DisplayModeManager::GetMonitorDeviceName(HWND window) {
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HMONITOR monitor = MonitorFromWindow(window, MONITOR_DEFAULTTONEAREST);
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if (!monitor) return {};
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MONITORINFOEXW mi = {};
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mi.cbSize = sizeof(mi);
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if (!GetMonitorInfoW(monitor, &mi)) return {};
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return mi.szDevice;
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}
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std::vector<DISPLAYCONFIG_PATH_INFO> DisplayModeManager::GetDisplayConfigPaths() {
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UINT32 path_count = 0;
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UINT32 mode_count = 0;
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std::vector<DISPLAYCONFIG_PATH_INFO> paths;
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std::vector<DISPLAYCONFIG_MODE_INFO> modes;
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constexpr UINT32 flags = QDC_ONLY_ACTIVE_PATHS;
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LONG result;
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// Retry loop for ERROR_INSUFFICIENT_BUFFER (Kodi pattern).
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do {
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if (GetDisplayConfigBufferSizes(flags, &path_count, &mode_count) != ERROR_SUCCESS) return {};
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paths.resize(path_count);
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modes.resize(mode_count);
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result = QueryDisplayConfig(flags, &path_count, paths.data(), &mode_count, modes.data(), nullptr);
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} while (result == ERROR_INSUFFICIENT_BUFFER);
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if (result != ERROR_SUCCESS) return {};
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paths.resize(path_count);
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return paths;
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}
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std::optional<DisplayConfigId> DisplayModeManager::GetDisplayTargetId(const std::wstring& gdi_device_name) {
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// Follows Kodi's GetDisplayTargetId: iterate QueryDisplayConfig paths,
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// match via DISPLAYCONFIG_DEVICE_INFO_GET_SOURCE_NAME.viewGdiDeviceName.
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DISPLAYCONFIG_SOURCE_DEVICE_NAME source = {};
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source.header.type = DISPLAYCONFIG_DEVICE_INFO_GET_SOURCE_NAME;
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source.header.size = sizeof(source);
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for (const auto& path : GetDisplayConfigPaths()) {
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source.header.adapterId = path.sourceInfo.adapterId;
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source.header.id = path.sourceInfo.id;
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if (DisplayConfigGetDeviceInfo(&source.header) == ERROR_SUCCESS && gdi_device_name == source.viewGdiDeviceName) {
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return DisplayConfigId{path.targetInfo.adapterId, path.targetInfo.id};
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}
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}
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return std::nullopt;
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}
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bool DisplayModeManager::IsWin11_24H2OrNewer() {
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// Win11 24H2 = build 26100+
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OSVERSIONINFOEXW osvi = {};
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osvi.dwOSVersionInfoSize = sizeof(osvi);
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osvi.dwBuildNumber = 26100;
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DWORDLONG condition_mask = 0;
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VER_SET_CONDITION(condition_mask, VER_BUILDNUMBER, VER_GREATER_EQUAL);
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return VerifyVersionInfoW(&osvi, VER_BUILDNUMBER, condition_mask) != FALSE;
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}
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// --- Refresh rate / resolution ---
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std::vector<DisplayMode> DisplayModeManager::EnumerateDisplayModes(HWND window) {
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std::wstring device_name = GetMonitorDeviceName(window);
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if (device_name.empty()) return {};
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std::vector<DisplayMode> modes;
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DEVMODEW dm = {};
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dm.dmSize = sizeof(dm);
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for (DWORD i = 0; EnumDisplaySettingsW(device_name.c_str(), i, &dm); i++) {
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DisplayMode mode;
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mode.width = dm.dmPelsWidth;
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mode.height = dm.dmPelsHeight;
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mode.refresh_rate = dm.dmDisplayFrequency;
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modes.push_back(mode);
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}
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// Remove duplicates.
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std::sort(modes.begin(), modes.end(), [](const DisplayMode& a, const DisplayMode& b) {
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if (a.width != b.width) return a.width < b.width;
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if (a.height != b.height) return a.height < b.height;
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return a.refresh_rate < b.refresh_rate;
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});
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modes.erase(
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std::unique(
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modes.begin(), modes.end(),
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[](const DisplayMode& a, const DisplayMode& b) {
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return a.width == b.width && a.height == b.height && a.refresh_rate == b.refresh_rate;
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}),
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modes.end());
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return modes;
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}
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DisplayMode DisplayModeManager::GetCurrentMode(HWND window) {
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std::wstring device_name = GetMonitorDeviceName(window);
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DisplayMode mode = {};
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if (device_name.empty()) return mode;
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DEVMODEW dm = {};
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dm.dmSize = sizeof(dm);
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if (EnumDisplaySettingsW(device_name.c_str(), ENUM_CURRENT_SETTINGS, &dm)) {
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mode.width = dm.dmPelsWidth;
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mode.height = dm.dmPelsHeight;
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mode.refresh_rate = dm.dmDisplayFrequency;
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}
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return mode;
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}
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void DisplayModeManager::SaveOriginalMode(HWND window) {
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original_device_name_ = GetMonitorDeviceName(window);
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if (original_device_name_.empty()) return;
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original_devmode_ = {};
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original_devmode_.dmSize = sizeof(original_devmode_);
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EnumDisplaySettingsW(original_device_name_.c_str(), ENUM_CURRENT_SETTINGS, &original_devmode_);
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}
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bool DisplayModeManager::SetDisplayMode(HWND window, DWORD width, DWORD height, DWORD refresh_rate) {
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std::lock_guard<std::recursive_mutex> transaction_lock(g_display_override_mutex);
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const std::wstring device_name = GetMonitorDeviceName(window);
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if (device_name.empty()) return false;
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const bool mode_was_changed = mode_changed_;
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if (!mode_changed_) SaveOriginalMode(window);
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if (original_device_name_.empty() || original_devmode_.dmPelsWidth == 0 || original_devmode_.dmPelsHeight == 0 ||
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original_devmode_.dmDisplayFrequency == 0) {
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return false;
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}
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if (!PrepareModeRecoveryAtRegistry(
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original_device_name_, original_devmode_.dmPelsWidth, original_devmode_.dmPelsHeight,
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original_devmode_.dmDisplayFrequency)) {
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return false;
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}
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// Mark the record live before calling Windows. ChangeDisplaySettingsExW can
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// synchronously deliver WM_DISPLAYCHANGE; that event must not recover the
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// override that is currently being applied.
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g_live_mode_recovery_record = true;
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DEVMODEW dm = {};
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dm.dmSize = sizeof(dm);
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dm.dmPelsWidth = width;
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dm.dmPelsHeight = height;
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dm.dmDisplayFrequency = refresh_rate;
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dm.dmFields = DM_PELSWIDTH | DM_PELSHEIGHT | DM_DISPLAYFREQUENCY;
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bool changed = false;
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// Kodi's Win8+ workaround for exact integer refresh rates (24, 48, 60 Hz).
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// Write desired mode to registry, apply from registry, restore registry.
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// Source: xbmc/windowing/windows/WinSystemWin32.cpp:940-970.
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if (refresh_rate == 24 || refresh_rate == 48 || refresh_rate == 60) {
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DEVMODEW registry_dm = {};
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registry_dm.dmSize = sizeof(registry_dm);
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if (EnumDisplaySettingsW(device_name.c_str(), ENUM_REGISTRY_SETTINGS, ®istry_dm)) {
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LONG rc = ChangeDisplaySettingsExW(device_name.c_str(), &dm, nullptr, CDS_UPDATEREGISTRY | CDS_NORESET, nullptr);
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if (rc == DISP_CHANGE_SUCCESSFUL) {
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rc = ChangeDisplaySettingsExW(device_name.c_str(), nullptr, nullptr, CDS_FULLSCREEN, nullptr);
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if (rc == DISP_CHANGE_SUCCESSFUL) changed = true;
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// Restore original registry settings.
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registry_dm.dmFields = DM_PELSWIDTH | DM_PELSHEIGHT | DM_DISPLAYFREQUENCY | DM_DISPLAYFLAGS;
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ChangeDisplaySettingsExW(device_name.c_str(), ®istry_dm, nullptr, CDS_UPDATEREGISTRY | CDS_NORESET, nullptr);
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}
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}
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}
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// Standard path / fallback.
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if (!changed) {
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const LONG rc = ChangeDisplaySettingsExW(device_name.c_str(), &dm, nullptr, CDS_FULLSCREEN, nullptr);
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changed = rc == DISP_CHANGE_SUCCESSFUL;
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}
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if (changed) {
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FinalizeModeRecoveryAtRegistry(true);
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mode_changed_ = true;
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} else if (!mode_was_changed) {
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// A failed takeover rolls back to its prior marked original. A fresh
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// failed operation still clears only its own marker.
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const bool recovery_completed = FinalizeModeRecoveryAtRegistry(false);
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g_live_mode_recovery_record = false;
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if (!recovery_completed) MarkTakeoverEligibleAtRegistry(kRegModeTakeoverEligible);
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}
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return changed;
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}
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bool DisplayModeManager::RestoreOriginalMode(HWND) {
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std::lock_guard<std::recursive_mutex> transaction_lock(g_display_override_mutex);
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if (!mode_changed_) return false;
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if (original_device_name_.empty()) {
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g_live_mode_recovery_record = false;
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MarkTakeoverEligibleAtRegistry(kRegModeTakeoverEligible);
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return false;
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}
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original_devmode_.dmFields = DM_PELSWIDTH | DM_PELSHEIGHT | DM_DISPLAYFREQUENCY | DM_DISPLAYFLAGS;
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LONG rc =
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ChangeDisplaySettingsExW(original_device_name_.c_str(), &original_devmode_, nullptr, CDS_FULLSCREEN, nullptr);
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if (rc != DISP_CHANGE_SUCCESSFUL) {
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// Fallback: restore registry defaults.
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rc = ChangeDisplaySettingsExW(original_device_name_.c_str(), nullptr, nullptr, 0, nullptr);
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}
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if (rc != DISP_CHANGE_SUCCESSFUL) {
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// The explicit owner has given up. Keep the durable marker, but release it
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// so a later topology notification can restore a reconnected target or a
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// conflicting mode request can consume the failed recovery disposition.
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g_live_mode_recovery_record = false;
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MarkTakeoverEligibleAtRegistry(kRegModeTakeoverEligible);
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return false;
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}
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mode_changed_ = false;
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const bool recovery_completed =
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CompleteRecoveryOperationAtRegistry(kRegModeChanged, kRegModeTakeoverEligible, kRegModeHandoffPending);
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g_live_mode_recovery_record = false;
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if (!recovery_completed) MarkTakeoverEligibleAtRegistry(kRegModeTakeoverEligible);
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return true;
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}
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// --- HDR ---
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bool DisplayModeManager::IsHDRSupported(HWND window) {
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std::wstring device_name = GetMonitorDeviceName(window);
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if (device_name.empty()) return false;
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auto target_id = GetDisplayTargetId(device_name);
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if (!target_id) return false;
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// Follows Kodi's GetDisplayHDRStatus pattern.
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if (IsWin11_24H2OrNewer()) {
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DISPLAYCONFIG_GET_ADVANCED_COLOR_INFO_2 info = {};
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info.header.type = static_cast<DISPLAYCONFIG_DEVICE_INFO_TYPE>(DISPLAYCONFIG_DEVICE_INFO_GET_ADVANCED_COLOR_INFO_2);
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info.header.size = sizeof(info);
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info.header.adapterId = target_id->adapter_id;
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info.header.id = target_id->id;
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if (DisplayConfigGetDeviceInfo(&info.header) == ERROR_SUCCESS) {
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return info.highDynamicRangeSupported == TRUE;
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}
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} else {
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DISPLAYCONFIG_GET_ADVANCED_COLOR_INFO info = {};
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info.header.type = DISPLAYCONFIG_DEVICE_INFO_GET_ADVANCED_COLOR_INFO;
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info.header.size = sizeof(info);
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info.header.adapterId = target_id->adapter_id;
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info.header.id = target_id->id;
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if (DisplayConfigGetDeviceInfo(&info.header) == ERROR_SUCCESS) {
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// advancedColorSupported=1 && wideColorEnforced=0 => true HDR screen.
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// advancedColorSupported=1 && wideColorEnforced=1 => SDR screen with ACM (Win11 22H2+).
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// Source: Kodi DisplayUtilsWin32.cpp:157-172.
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return info.advancedColorSupported && !info.wideColorEnforced;
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}
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}
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return false;
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}
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bool DisplayModeManager::IsHDREnabled(HWND window) {
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std::wstring device_name = GetMonitorDeviceName(window);
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if (device_name.empty()) return false;
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auto target_id = GetDisplayTargetId(device_name);
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if (!target_id) return false;
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if (IsWin11_24H2OrNewer()) {
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DISPLAYCONFIG_GET_ADVANCED_COLOR_INFO_2 info = {};
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info.header.type = static_cast<DISPLAYCONFIG_DEVICE_INFO_TYPE>(DISPLAYCONFIG_DEVICE_INFO_GET_ADVANCED_COLOR_INFO_2);
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info.header.size = sizeof(info);
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info.header.adapterId = target_id->adapter_id;
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info.header.id = target_id->id;
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if (DisplayConfigGetDeviceInfo(&info.header) == ERROR_SUCCESS) {
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return info.activeColorMode == DISPLAYCONFIG_ADVANCED_COLOR_MODE_HDR;
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}
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} else {
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DISPLAYCONFIG_GET_ADVANCED_COLOR_INFO info = {};
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info.header.type = DISPLAYCONFIG_DEVICE_INFO_GET_ADVANCED_COLOR_INFO;
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info.header.size = sizeof(info);
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info.header.adapterId = target_id->adapter_id;
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info.header.id = target_id->id;
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if (DisplayConfigGetDeviceInfo(&info.header) == ERROR_SUCCESS) {
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bool hdr_supported = info.advancedColorSupported && !info.wideColorEnforced;
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return hdr_supported && info.advancedColorEnabled;
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}
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}
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return false;
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}
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void DisplayModeManager::SaveOriginalHDRState(HWND window) {
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original_hdr_device_name_ = GetMonitorDeviceName(window);
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original_hdr_enabled_ = IsHDREnabled(window);
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}
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bool DisplayModeManager::SetHDREnabled(HWND window, bool enabled) {
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std::lock_guard<std::recursive_mutex> transaction_lock(g_display_override_mutex);
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const std::wstring device_name = GetMonitorDeviceName(window);
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if (device_name.empty()) return false;
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const auto target_id = GetDisplayTargetId(device_name);
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if (!target_id) return false;
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const bool hdr_was_changed = hdr_changed_;
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if (!hdr_changed_) SaveOriginalHDRState(window);
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if (original_hdr_device_name_.empty() ||
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!PrepareHDRRecoveryAtRegistry(original_hdr_device_name_, original_hdr_enabled_)) {
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return false;
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}
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// See SetDisplayMode: keep synchronous topology notifications from treating
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// this process's just-persisted marker as crash recovery.
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g_live_hdr_recovery_record = true;
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// Save DEVMODEW before toggle — Windows changes display mode on HDR state change.
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// Source: Kodi WIN32Util.cpp:1252-1257.
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DEVMODEW pre_toggle_dm = {};
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pre_toggle_dm.dmSize = sizeof(pre_toggle_dm);
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EnumDisplaySettingsW(device_name.c_str(), ENUM_CURRENT_SETTINGS, &pre_toggle_dm);
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const LONG result = SetHDRStateForTarget(*target_id, enabled);
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if (result != ERROR_SUCCESS) {
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if (!hdr_was_changed) {
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const bool recovery_completed = FinalizeHDRRecoveryAtRegistry(false);
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g_live_hdr_recovery_record = false;
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if (!recovery_completed) MarkTakeoverEligibleAtRegistry(kRegHDRTakeoverEligible);
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}
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return false;
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}
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// Restore DEVMODEW after toggle — Windows may have changed the display mode.
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// Source: Kodi WIN32Util.cpp:1276-1288.
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if (pre_toggle_dm.dmDisplayFrequency != 0) {
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pre_toggle_dm.dmFields = DM_PELSWIDTH | DM_PELSHEIGHT | DM_DISPLAYFREQUENCY | DM_DISPLAYFLAGS;
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ChangeDisplaySettingsExW(device_name.c_str(), &pre_toggle_dm, nullptr, CDS_FULLSCREEN, nullptr);
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}
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FinalizeHDRRecoveryAtRegistry(true);
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hdr_changed_ = true;
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return true;
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}
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bool DisplayModeManager::RestoreOriginalHDRState(HWND window) {
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std::lock_guard<std::recursive_mutex> transaction_lock(g_display_override_mutex);
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if (!hdr_changed_) return false;
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if (original_hdr_device_name_.empty()) {
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g_live_hdr_recovery_record = false;
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MarkTakeoverEligibleAtRegistry(kRegHDRTakeoverEligible);
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return false;
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}
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const auto target_id = GetDisplayTargetId(original_hdr_device_name_);
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if (!target_id) {
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g_live_hdr_recovery_record = false;
|
|
MarkTakeoverEligibleAtRegistry(kRegHDRTakeoverEligible);
|
|
return false;
|
|
}
|
|
|
|
if (IsHDREnabled(window) != original_hdr_enabled_) {
|
|
// The original target was resolved above even when the currently observed
|
|
// HDR state already matches, so a disconnected target cannot be mistaken
|
|
// for a successful restore.
|
|
|
|
// Save DEVMODEW before restore toggle.
|
|
DEVMODEW pre_toggle_dm = {};
|
|
pre_toggle_dm.dmSize = sizeof(pre_toggle_dm);
|
|
EnumDisplaySettingsW(original_hdr_device_name_.c_str(), ENUM_CURRENT_SETTINGS, &pre_toggle_dm);
|
|
|
|
if (SetHDRStateForTarget(*target_id, original_hdr_enabled_) != ERROR_SUCCESS) {
|
|
g_live_hdr_recovery_record = false;
|
|
MarkTakeoverEligibleAtRegistry(kRegHDRTakeoverEligible);
|
|
return false;
|
|
}
|
|
|
|
// Restore DEVMODEW after toggle.
|
|
if (pre_toggle_dm.dmDisplayFrequency != 0) {
|
|
pre_toggle_dm.dmFields = DM_PELSWIDTH | DM_PELSHEIGHT | DM_DISPLAYFREQUENCY | DM_DISPLAYFLAGS;
|
|
ChangeDisplaySettingsExW(original_hdr_device_name_.c_str(), &pre_toggle_dm, nullptr, CDS_FULLSCREEN, nullptr);
|
|
}
|
|
}
|
|
|
|
hdr_changed_ = false;
|
|
const bool recovery_completed =
|
|
CompleteRecoveryOperationAtRegistry(kRegHDRChanged, kRegHDRTakeoverEligible, kRegHDRHandoffPending);
|
|
g_live_hdr_recovery_record = false;
|
|
if (!recovery_completed) MarkTakeoverEligibleAtRegistry(kRegHDRTakeoverEligible);
|
|
return true;
|
|
}
|
|
|
|
// --- Crash recovery (Windows Registry) ---
|
|
|
|
LONG DisplayModeManager::SetHDRStateForTarget(const DisplayConfigId& target, bool enabled) {
|
|
if (IsWin11_24H2OrNewer()) {
|
|
DISPLAYCONFIG_SET_HDR_STATE state = {};
|
|
state.header.type = static_cast<DISPLAYCONFIG_DEVICE_INFO_TYPE>(DISPLAYCONFIG_DEVICE_INFO_SET_HDR_STATE);
|
|
state.header.size = sizeof(state);
|
|
state.header.adapterId = target.adapter_id;
|
|
state.header.id = target.id;
|
|
state.enableHdr = enabled ? TRUE : FALSE;
|
|
return DisplayConfigSetDeviceInfo(&state.header);
|
|
} else {
|
|
DISPLAYCONFIG_SET_ADVANCED_COLOR_STATE state = {};
|
|
state.header.type = DISPLAYCONFIG_DEVICE_INFO_SET_ADVANCED_COLOR_STATE;
|
|
state.header.size = sizeof(state);
|
|
state.header.adapterId = target.adapter_id;
|
|
state.header.id = target.id;
|
|
state.enableAdvancedColor = enabled ? TRUE : FALSE;
|
|
return DisplayConfigSetDeviceInfo(&state.header);
|
|
}
|
|
}
|
|
|
|
namespace {
|
|
|
|
bool WriteRegistryDWORD(const wchar_t* value_name, DWORD value) {
|
|
HKEY key;
|
|
if (RegCreateKeyExW(HKEY_CURRENT_USER, kRegistryPath, 0, nullptr, 0, KEY_WRITE, nullptr, &key, nullptr) !=
|
|
ERROR_SUCCESS) {
|
|
return false;
|
|
}
|
|
const LONG result =
|
|
RegSetValueExW(key, value_name, 0, REG_DWORD, reinterpret_cast<const BYTE*>(&value), sizeof(value));
|
|
RegCloseKey(key);
|
|
return result == ERROR_SUCCESS;
|
|
}
|
|
|
|
bool WriteRegistryString(const wchar_t* value_name, const std::wstring& value) {
|
|
HKEY key;
|
|
if (RegCreateKeyExW(HKEY_CURRENT_USER, kRegistryPath, 0, nullptr, 0, KEY_WRITE, nullptr, &key, nullptr) !=
|
|
ERROR_SUCCESS) {
|
|
return false;
|
|
}
|
|
const LONG result = RegSetValueExW(
|
|
key, value_name, 0, REG_SZ, reinterpret_cast<const BYTE*>(value.c_str()),
|
|
static_cast<DWORD>((value.size() + 1) * sizeof(wchar_t)));
|
|
RegCloseKey(key);
|
|
return result == ERROR_SUCCESS;
|
|
}
|
|
|
|
bool ReadRegistryDWORD(const wchar_t* value_name, DWORD& value) {
|
|
HKEY key;
|
|
if (RegOpenKeyExW(HKEY_CURRENT_USER, kRegistryPath, 0, KEY_READ, &key) != ERROR_SUCCESS) return false;
|
|
DWORD size = sizeof(value);
|
|
DWORD type = 0;
|
|
const LONG result = RegQueryValueExW(key, value_name, nullptr, &type, reinterpret_cast<BYTE*>(&value), &size);
|
|
RegCloseKey(key);
|
|
return result == ERROR_SUCCESS && type == REG_DWORD && size == sizeof(value);
|
|
}
|
|
|
|
bool ReadRegistryString(const wchar_t* value_name, std::wstring& value) {
|
|
HKEY key;
|
|
if (RegOpenKeyExW(HKEY_CURRENT_USER, kRegistryPath, 0, KEY_READ, &key) != ERROR_SUCCESS) return false;
|
|
DWORD size = 0;
|
|
DWORD type = 0;
|
|
const LONG size_result = RegQueryValueExW(key, value_name, nullptr, &type, nullptr, &size);
|
|
if (size_result != ERROR_SUCCESS || type != REG_SZ || size == 0 || size % sizeof(wchar_t) != 0) {
|
|
RegCloseKey(key);
|
|
return false;
|
|
}
|
|
value.resize(size / sizeof(wchar_t));
|
|
const LONG result = RegQueryValueExW(key, value_name, nullptr, nullptr, reinterpret_cast<BYTE*>(value.data()), &size);
|
|
RegCloseKey(key);
|
|
if (result != ERROR_SUCCESS) return false;
|
|
while (!value.empty() && value.back() == L'\0') value.pop_back();
|
|
return !value.empty();
|
|
}
|
|
|
|
bool RecoveryRecordExists() {
|
|
HKEY key;
|
|
if (RegOpenKeyExW(HKEY_CURRENT_USER, kRegistryPath, 0, KEY_QUERY_VALUE, &key) != ERROR_SUCCESS) {
|
|
return false;
|
|
}
|
|
bool exists = false;
|
|
for (const wchar_t* value_name :
|
|
{kRegVersion,
|
|
kRegModeDeviceName,
|
|
kRegLegacyDeviceName,
|
|
kRegHDRDeviceName,
|
|
kRegOriginalRefreshRate,
|
|
kRegOriginalWidth,
|
|
kRegOriginalHeight,
|
|
kRegOriginalHDR,
|
|
kRegModeChanged,
|
|
kRegHDRChanged,
|
|
kRegModeTakeoverEligible,
|
|
kRegHDRTakeoverEligible,
|
|
kRegModeRecoverySlot,
|
|
kRegHDRRecoverySlot,
|
|
kRegModeDeviceNameAlternate,
|
|
kRegHDRDeviceNameAlternate,
|
|
kRegOriginalRefreshRateAlternate,
|
|
kRegOriginalWidthAlternate,
|
|
kRegOriginalHeightAlternate,
|
|
kRegOriginalHDRAlternate,
|
|
kRegModeHandoffPending,
|
|
kRegHDRHandoffPending,
|
|
kRegModePreviousRecoverySlot,
|
|
kRegHDRPreviousRecoverySlot}) {
|
|
DWORD size = 0;
|
|
const LONG result = RegQueryValueExW(key, value_name, nullptr, nullptr, nullptr, &size);
|
|
if (result == ERROR_SUCCESS || result == ERROR_MORE_DATA) {
|
|
exists = true;
|
|
break;
|
|
}
|
|
}
|
|
RegCloseKey(key);
|
|
return exists;
|
|
}
|
|
|
|
} // namespace
|
|
|
|
class Win32DisplayRecoveryBackend final : public DisplayRecoveryBackend {
|
|
public:
|
|
bool RecordExists() const override { return RecoveryRecordExists(); }
|
|
|
|
bool ReadDWORD(const wchar_t* value_name, DWORD& value) override { return ReadRegistryDWORD(value_name, value); }
|
|
|
|
bool ReadString(const wchar_t* value_name, std::wstring& value) override {
|
|
return ReadRegistryString(value_name, value);
|
|
}
|
|
|
|
bool WriteDWORD(const wchar_t* value_name, DWORD value) override { return WriteRegistryDWORD(value_name, value); }
|
|
|
|
bool WriteString(const wchar_t* value_name, const std::wstring& value) override {
|
|
return WriteRegistryString(value_name, value);
|
|
}
|
|
|
|
bool IsDevicePresent(const std::wstring& device_name) const override {
|
|
DEVMODEW mode = {};
|
|
mode.dmSize = sizeof(mode);
|
|
return EnumDisplaySettingsW(device_name.c_str(), ENUM_CURRENT_SETTINGS, &mode) != FALSE;
|
|
}
|
|
|
|
bool RestoreMode(const std::wstring& device_name, DWORD width, DWORD height, DWORD refresh_rate) override {
|
|
DEVMODEW dm = {};
|
|
dm.dmSize = sizeof(dm);
|
|
dm.dmPelsWidth = width;
|
|
dm.dmPelsHeight = height;
|
|
dm.dmDisplayFrequency = refresh_rate;
|
|
dm.dmFields = DM_PELSWIDTH | DM_PELSHEIGHT | DM_DISPLAYFREQUENCY;
|
|
return ChangeDisplaySettingsExW(device_name.c_str(), &dm, nullptr, CDS_FULLSCREEN, nullptr) ==
|
|
DISP_CHANGE_SUCCESSFUL;
|
|
}
|
|
|
|
bool RestoreHDR(const std::wstring& device_name, bool enabled) override {
|
|
const auto target_id = DisplayModeManager::GetDisplayTargetId(device_name);
|
|
if (!target_id) return false;
|
|
|
|
DEVMODEW pre_toggle_mode = {};
|
|
pre_toggle_mode.dmSize = sizeof(pre_toggle_mode);
|
|
EnumDisplaySettingsW(device_name.c_str(), ENUM_CURRENT_SETTINGS, &pre_toggle_mode);
|
|
|
|
if (DisplayModeManager::SetHDRStateForTarget(*target_id, enabled) != ERROR_SUCCESS) return false;
|
|
|
|
if (pre_toggle_mode.dmDisplayFrequency != 0) {
|
|
pre_toggle_mode.dmFields = DM_PELSWIDTH | DM_PELSHEIGHT | DM_DISPLAYFREQUENCY | DM_DISPLAYFLAGS;
|
|
if (ChangeDisplaySettingsExW(device_name.c_str(), &pre_toggle_mode, nullptr, CDS_FULLSCREEN, nullptr) !=
|
|
DISP_CHANGE_SUCCESSFUL) {
|
|
return false;
|
|
}
|
|
}
|
|
return true;
|
|
}
|
|
|
|
bool ClearMarker(const wchar_t* value_name) override { return WriteRegistryDWORD(value_name, 0); }
|
|
|
|
bool DeleteRecord() override {
|
|
HKEY key;
|
|
if (RegOpenKeyExW(HKEY_CURRENT_USER, kRegistryPath, 0, KEY_SET_VALUE, &key) != ERROR_SUCCESS) {
|
|
return !RecordExists();
|
|
}
|
|
|
|
bool deleted = true;
|
|
for (const wchar_t* value_name :
|
|
{kRegVersion,
|
|
kRegModeDeviceName,
|
|
kRegLegacyDeviceName,
|
|
kRegHDRDeviceName,
|
|
kRegOriginalRefreshRate,
|
|
kRegOriginalWidth,
|
|
kRegOriginalHeight,
|
|
kRegOriginalHDR,
|
|
kRegModeChanged,
|
|
kRegHDRChanged,
|
|
kRegModeTakeoverEligible,
|
|
kRegHDRTakeoverEligible,
|
|
kRegModeRecoverySlot,
|
|
kRegHDRRecoverySlot,
|
|
kRegModeDeviceNameAlternate,
|
|
kRegHDRDeviceNameAlternate,
|
|
kRegOriginalRefreshRateAlternate,
|
|
kRegOriginalWidthAlternate,
|
|
kRegOriginalHeightAlternate,
|
|
kRegOriginalHDRAlternate,
|
|
kRegModeHandoffPending,
|
|
kRegHDRHandoffPending,
|
|
kRegModePreviousRecoverySlot,
|
|
kRegHDRPreviousRecoverySlot}) {
|
|
const LONG result = RegDeleteValueW(key, value_name);
|
|
deleted = deleted && (result == ERROR_SUCCESS || result == ERROR_FILE_NOT_FOUND);
|
|
}
|
|
RegCloseKey(key);
|
|
return deleted;
|
|
}
|
|
};
|
|
|
|
namespace {
|
|
|
|
bool ReadValidModeValues(
|
|
DisplayRecoveryBackend& backend, const wchar_t* device_value_name, std::wstring& device_name, DWORD& width,
|
|
DWORD& height, DWORD& refresh_rate, bool alternate = false) {
|
|
const wchar_t* width_value_name = alternate ? kRegOriginalWidthAlternate : kRegOriginalWidth;
|
|
const wchar_t* height_value_name = alternate ? kRegOriginalHeightAlternate : kRegOriginalHeight;
|
|
const wchar_t* refresh_value_name = alternate ? kRegOriginalRefreshRateAlternate : kRegOriginalRefreshRate;
|
|
return backend.ReadString(device_value_name, device_name) && backend.ReadDWORD(width_value_name, width) &&
|
|
width > 0 && backend.ReadDWORD(height_value_name, height) && height > 0 &&
|
|
backend.ReadDWORD(refresh_value_name, refresh_rate) && refresh_rate > 0;
|
|
}
|
|
|
|
bool ReadValidHDRValues(
|
|
DisplayRecoveryBackend& backend, const wchar_t* device_value_name, std::wstring& device_name, DWORD& original_hdr,
|
|
bool alternate = false) {
|
|
const wchar_t* original_value_name = alternate ? kRegOriginalHDRAlternate : kRegOriginalHDR;
|
|
return backend.ReadString(device_value_name, device_name) && backend.ReadDWORD(original_value_name, original_hdr) &&
|
|
original_hdr <= 1;
|
|
}
|
|
|
|
bool ReadRecoverySlot(DisplayRecoveryBackend& backend, const wchar_t* slot_value_name, bool& alternate) {
|
|
DWORD slot = 0;
|
|
if (!backend.ReadDWORD(slot_value_name, slot)) {
|
|
// Version-1 records created before alternate slots implicitly use the
|
|
// original value set.
|
|
alternate = false;
|
|
return true;
|
|
}
|
|
if (slot > 1) return false;
|
|
alternate = slot == 1;
|
|
return true;
|
|
}
|
|
|
|
bool ReadValidModeSlot(
|
|
DisplayRecoveryBackend& backend, bool alternate, std::wstring& device_name, DWORD& width, DWORD& height,
|
|
DWORD& refresh_rate) {
|
|
return ReadValidModeValues(
|
|
backend, alternate ? kRegModeDeviceNameAlternate : kRegModeDeviceName, device_name, width, height, refresh_rate,
|
|
alternate);
|
|
}
|
|
|
|
bool ReadValidHDRSlot(DisplayRecoveryBackend& backend, bool alternate, std::wstring& device_name, DWORD& original_hdr) {
|
|
return ReadValidHDRValues(
|
|
backend, alternate ? kRegHDRDeviceNameAlternate : kRegHDRDeviceName, device_name, original_hdr, alternate);
|
|
}
|
|
|
|
bool ReadValidMarkedMode(
|
|
DisplayRecoveryBackend& backend, std::wstring& device_name, DWORD& width, DWORD& height, DWORD& refresh_rate,
|
|
bool* alternate_slot = nullptr) {
|
|
DWORD version = 0;
|
|
DWORD marker = 0;
|
|
bool alternate = false;
|
|
if (!backend.ReadDWORD(kRegVersion, version) || version != kRecoveryVersion ||
|
|
!backend.ReadDWORD(kRegModeChanged, marker) || marker != 1 ||
|
|
!ReadRecoverySlot(backend, kRegModeRecoverySlot, alternate) ||
|
|
!ReadValidModeSlot(backend, alternate, device_name, width, height, refresh_rate)) {
|
|
return false;
|
|
}
|
|
if (alternate_slot) *alternate_slot = alternate;
|
|
return true;
|
|
}
|
|
|
|
bool ReadValidMarkedHDR(
|
|
DisplayRecoveryBackend& backend, std::wstring& device_name, DWORD& original_hdr, bool* alternate_slot = nullptr) {
|
|
DWORD version = 0;
|
|
DWORD marker = 0;
|
|
bool alternate = false;
|
|
if (!backend.ReadDWORD(kRegVersion, version) || version != kRecoveryVersion ||
|
|
!backend.ReadDWORD(kRegHDRChanged, marker) || marker != 1 ||
|
|
!ReadRecoverySlot(backend, kRegHDRRecoverySlot, alternate) ||
|
|
!ReadValidHDRSlot(backend, alternate, device_name, original_hdr)) {
|
|
return false;
|
|
}
|
|
if (alternate_slot) *alternate_slot = alternate;
|
|
return true;
|
|
}
|
|
|
|
bool DeleteRecordIfNoMarkedOperations(DisplayRecoveryBackend& backend) {
|
|
DWORD mode_marker = 0;
|
|
DWORD hdr_marker = 0;
|
|
if (!backend.ReadDWORD(kRegModeChanged, mode_marker) || !backend.ReadDWORD(kRegHDRChanged, hdr_marker) ||
|
|
mode_marker != 0 || hdr_marker != 0) {
|
|
// Missing, malformed, or active evidence is retained conservatively.
|
|
return false;
|
|
}
|
|
// Deletion is best effort after both operation markers are durably clear.
|
|
backend.DeleteRecord();
|
|
return true;
|
|
}
|
|
|
|
bool IsTakeoverEligible(DisplayRecoveryBackend& backend, const wchar_t* takeover_disposition) {
|
|
DWORD value = 0;
|
|
return backend.ReadDWORD(takeover_disposition, value) && value == 1;
|
|
}
|
|
|
|
bool MarkTakeoverEligible(DisplayRecoveryBackend& backend, const wchar_t* takeover_disposition) {
|
|
return backend.WriteDWORD(takeover_disposition, 1);
|
|
}
|
|
|
|
bool ResetTakeoverEligibility(DisplayRecoveryBackend& backend, const wchar_t* takeover_disposition) {
|
|
return backend.WriteDWORD(takeover_disposition, 0);
|
|
}
|
|
|
|
bool ReadHandoffPending(DisplayRecoveryBackend& backend, const wchar_t* handoff_value_name, bool& pending) {
|
|
DWORD value = 0;
|
|
if (!backend.ReadDWORD(handoff_value_name, value)) {
|
|
pending = false;
|
|
return true;
|
|
}
|
|
if (value > 1) return false;
|
|
pending = value == 1;
|
|
return true;
|
|
}
|
|
|
|
bool ReadStoredRecoverySlot(DisplayRecoveryBackend& backend, const wchar_t* slot_value_name, bool& alternate) {
|
|
DWORD value = 0;
|
|
if (!backend.ReadDWORD(slot_value_name, value) || value > 1) return false;
|
|
alternate = value == 1;
|
|
return true;
|
|
}
|
|
|
|
bool CompleteRecoveryOperation(
|
|
DisplayRecoveryBackend& backend, const wchar_t* marker, const wchar_t* takeover_disposition,
|
|
const wchar_t* handoff_pending) {
|
|
// Handoff metadata must be inactive before its shared marker disappears.
|
|
if (!backend.WriteDWORD(handoff_pending, 0) || !ResetTakeoverEligibility(backend, takeover_disposition) ||
|
|
!backend.ClearMarker(marker)) {
|
|
return false;
|
|
}
|
|
DeleteRecordIfNoMarkedOperations(backend);
|
|
return true;
|
|
}
|
|
|
|
bool ConfirmPreparedRecovery(DisplayRecoveryBackend& backend, const wchar_t* handoff_pending) {
|
|
bool pending = false;
|
|
if (!ReadHandoffPending(backend, handoff_pending, pending)) return false;
|
|
return !pending || backend.WriteDWORD(handoff_pending, 0);
|
|
}
|
|
|
|
bool RollbackRecoveryHandoff(
|
|
DisplayRecoveryBackend& backend, const wchar_t* takeover_disposition, const wchar_t* recovery_slot,
|
|
const wchar_t* previous_recovery_slot, const wchar_t* handoff_pending) {
|
|
bool previous_alternate = false;
|
|
if (!ReadStoredRecoverySlot(backend, previous_recovery_slot, previous_alternate) ||
|
|
!backend.WriteDWORD(recovery_slot, previous_alternate ? 1 : 0) ||
|
|
!MarkTakeoverEligible(backend, takeover_disposition) || !backend.WriteDWORD(handoff_pending, 0)) {
|
|
return false;
|
|
}
|
|
return true;
|
|
}
|
|
|
|
bool FinalizePreparedRecovery(
|
|
DisplayRecoveryBackend& backend, bool os_apply_succeeded, const wchar_t* marker,
|
|
const wchar_t* takeover_disposition, const wchar_t* recovery_slot, const wchar_t* previous_recovery_slot,
|
|
const wchar_t* handoff_pending) {
|
|
if (os_apply_succeeded) return ConfirmPreparedRecovery(backend, handoff_pending);
|
|
|
|
bool pending = false;
|
|
if (!ReadHandoffPending(backend, handoff_pending, pending)) return false;
|
|
if (pending) {
|
|
return RollbackRecoveryHandoff(
|
|
backend, takeover_disposition, recovery_slot, previous_recovery_slot, handoff_pending);
|
|
}
|
|
return CompleteRecoveryOperation(backend, marker, takeover_disposition, handoff_pending);
|
|
}
|
|
|
|
bool PreserveValidModeSiblingOrClear(DisplayRecoveryBackend& backend) {
|
|
DWORD marker = 0;
|
|
if (!backend.ReadDWORD(kRegModeChanged, marker)) {
|
|
return backend.WriteDWORD(kRegModeChanged, 0);
|
|
}
|
|
if (marker == 0) return true;
|
|
|
|
std::wstring device_name;
|
|
DWORD width = 0;
|
|
DWORD height = 0;
|
|
DWORD refresh_rate = 0;
|
|
if (marker == 1 && ReadValidMarkedMode(backend, device_name, width, height, refresh_rate)) {
|
|
return true;
|
|
}
|
|
return backend.ClearMarker(kRegModeChanged);
|
|
}
|
|
|
|
bool PreserveValidHDRSiblingOrClear(DisplayRecoveryBackend& backend) {
|
|
DWORD marker = 0;
|
|
if (!backend.ReadDWORD(kRegHDRChanged, marker)) {
|
|
return backend.WriteDWORD(kRegHDRChanged, 0);
|
|
}
|
|
if (marker == 0) return true;
|
|
|
|
std::wstring device_name;
|
|
DWORD original_hdr = 0;
|
|
if (marker == 1 && ReadValidMarkedHDR(backend, device_name, original_hdr)) {
|
|
return true;
|
|
}
|
|
return backend.ClearMarker(kRegHDRChanged);
|
|
}
|
|
|
|
} // namespace
|
|
|
|
bool DisplayModeManager::PrepareModeRecovery(
|
|
DisplayRecoveryBackend& backend, const std::wstring& device_name, DWORD width, DWORD height, DWORD refresh_rate) {
|
|
if (device_name.empty() || width == 0 || height == 0 || refresh_rate == 0) return false;
|
|
if (!PreserveValidHDRSiblingOrClear(backend)) return false;
|
|
|
|
DWORD existing_width = 0;
|
|
DWORD existing_height = 0;
|
|
DWORD existing_refresh_rate = 0;
|
|
std::wstring existing_device_name;
|
|
bool existing_alternate = false;
|
|
if (ReadValidMarkedMode(
|
|
backend, existing_device_name, existing_width, existing_height, existing_refresh_rate, &existing_alternate)) {
|
|
bool handoff_pending = false;
|
|
if (!ReadHandoffPending(backend, kRegModeHandoffPending, handoff_pending) || handoff_pending) return false;
|
|
|
|
const bool same_original = existing_device_name == device_name && existing_width == width &&
|
|
existing_height == height && existing_refresh_rate == refresh_rate;
|
|
if (same_original) {
|
|
// Reusing the restoration point makes it live again, so stale takeover
|
|
// permission must be durably revoked before the Windows mutation.
|
|
return ResetTakeoverEligibility(backend, kRegModeTakeoverEligible);
|
|
}
|
|
if (!IsTakeoverEligible(backend, kRegModeTakeoverEligible)) return false;
|
|
|
|
// Stage the replacement in the inactive slot. Handoff metadata keeps both
|
|
// originals recoverable from the selector switch until the OS apply is
|
|
// confirmed.
|
|
const bool replacement_alternate = !existing_alternate;
|
|
const wchar_t* replacement_device_name = replacement_alternate ? kRegModeDeviceNameAlternate : kRegModeDeviceName;
|
|
const wchar_t* replacement_width = replacement_alternate ? kRegOriginalWidthAlternate : kRegOriginalWidth;
|
|
const wchar_t* replacement_height = replacement_alternate ? kRegOriginalHeightAlternate : kRegOriginalHeight;
|
|
const wchar_t* replacement_refresh =
|
|
replacement_alternate ? kRegOriginalRefreshRateAlternate : kRegOriginalRefreshRate;
|
|
if (!backend.WriteDWORD(kRegVersion, kRecoveryVersion) ||
|
|
!backend.WriteString(replacement_device_name, device_name) || !backend.WriteDWORD(replacement_width, width) ||
|
|
!backend.WriteDWORD(replacement_height, height) || !backend.WriteDWORD(replacement_refresh, refresh_rate) ||
|
|
!backend.WriteDWORD(kRegModePreviousRecoverySlot, existing_alternate ? 1 : 0) ||
|
|
!ResetTakeoverEligibility(backend, kRegModeTakeoverEligible)) {
|
|
return false;
|
|
}
|
|
if (!backend.WriteDWORD(kRegModeHandoffPending, 1)) {
|
|
MarkTakeoverEligible(backend, kRegModeTakeoverEligible);
|
|
return false;
|
|
}
|
|
if (!backend.WriteDWORD(kRegModeRecoverySlot, replacement_alternate ? 1 : 0)) {
|
|
RollbackRecoveryHandoff(
|
|
backend, kRegModeTakeoverEligible, kRegModeRecoverySlot, kRegModePreviousRecoverySlot,
|
|
kRegModeHandoffPending);
|
|
return false;
|
|
}
|
|
return true;
|
|
}
|
|
|
|
// An incomplete operation has no authoritative original to preserve. Keep
|
|
// the existing marker-last preparation sequence and select the primary slot
|
|
// before publishing the new operation.
|
|
if (!backend.ClearMarker(kRegModeChanged)) return false;
|
|
return backend.WriteDWORD(kRegVersion, kRecoveryVersion) && backend.WriteString(kRegModeDeviceName, device_name) &&
|
|
backend.WriteDWORD(kRegOriginalWidth, width) && backend.WriteDWORD(kRegOriginalHeight, height) &&
|
|
backend.WriteDWORD(kRegOriginalRefreshRate, refresh_rate) && backend.WriteDWORD(kRegModeHandoffPending, 0) &&
|
|
ResetTakeoverEligibility(backend, kRegModeTakeoverEligible) && backend.WriteDWORD(kRegModeRecoverySlot, 0) &&
|
|
backend.WriteDWORD(kRegModeChanged, 1);
|
|
}
|
|
|
|
bool DisplayModeManager::PrepareHDRRecovery(
|
|
DisplayRecoveryBackend& backend, const std::wstring& device_name, bool enabled) {
|
|
if (device_name.empty()) return false;
|
|
if (!PreserveValidModeSiblingOrClear(backend)) return false;
|
|
|
|
DWORD existing_original = 0;
|
|
std::wstring existing_device_name;
|
|
bool existing_alternate = false;
|
|
if (ReadValidMarkedHDR(backend, existing_device_name, existing_original, &existing_alternate)) {
|
|
bool handoff_pending = false;
|
|
if (!ReadHandoffPending(backend, kRegHDRHandoffPending, handoff_pending) || handoff_pending) return false;
|
|
|
|
const bool same_original = existing_device_name == device_name && existing_original == (enabled ? 1u : 0u);
|
|
if (same_original) return ResetTakeoverEligibility(backend, kRegHDRTakeoverEligible);
|
|
if (!IsTakeoverEligible(backend, kRegHDRTakeoverEligible)) return false;
|
|
|
|
const bool replacement_alternate = !existing_alternate;
|
|
const wchar_t* replacement_device_name = replacement_alternate ? kRegHDRDeviceNameAlternate : kRegHDRDeviceName;
|
|
const wchar_t* replacement_original = replacement_alternate ? kRegOriginalHDRAlternate : kRegOriginalHDR;
|
|
if (!backend.WriteDWORD(kRegVersion, kRecoveryVersion) ||
|
|
!backend.WriteString(replacement_device_name, device_name) ||
|
|
!backend.WriteDWORD(replacement_original, enabled ? 1 : 0) ||
|
|
!backend.WriteDWORD(kRegHDRPreviousRecoverySlot, existing_alternate ? 1 : 0) ||
|
|
!ResetTakeoverEligibility(backend, kRegHDRTakeoverEligible)) {
|
|
return false;
|
|
}
|
|
if (!backend.WriteDWORD(kRegHDRHandoffPending, 1)) {
|
|
MarkTakeoverEligible(backend, kRegHDRTakeoverEligible);
|
|
return false;
|
|
}
|
|
if (!backend.WriteDWORD(kRegHDRRecoverySlot, replacement_alternate ? 1 : 0)) {
|
|
RollbackRecoveryHandoff(
|
|
backend, kRegHDRTakeoverEligible, kRegHDRRecoverySlot, kRegHDRPreviousRecoverySlot, kRegHDRHandoffPending);
|
|
return false;
|
|
}
|
|
return true;
|
|
}
|
|
|
|
if (!backend.ClearMarker(kRegHDRChanged)) return false;
|
|
return backend.WriteDWORD(kRegVersion, kRecoveryVersion) && backend.WriteString(kRegHDRDeviceName, device_name) &&
|
|
backend.WriteDWORD(kRegOriginalHDR, enabled ? 1 : 0) && backend.WriteDWORD(kRegHDRHandoffPending, 0) &&
|
|
ResetTakeoverEligibility(backend, kRegHDRTakeoverEligible) && backend.WriteDWORD(kRegHDRRecoverySlot, 0) &&
|
|
backend.WriteDWORD(kRegHDRChanged, 1);
|
|
}
|
|
|
|
namespace {
|
|
|
|
bool PrepareModeRecoveryAtRegistry(const std::wstring& device_name, DWORD width, DWORD height, DWORD refresh_rate) {
|
|
Win32DisplayRecoveryBackend backend;
|
|
return DisplayModeManager::PrepareModeRecovery(backend, device_name, width, height, refresh_rate);
|
|
}
|
|
|
|
bool PrepareHDRRecoveryAtRegistry(const std::wstring& device_name, bool enabled) {
|
|
Win32DisplayRecoveryBackend backend;
|
|
return DisplayModeManager::PrepareHDRRecovery(backend, device_name, enabled);
|
|
}
|
|
|
|
bool CompleteRecoveryOperationAtRegistry(
|
|
const wchar_t* marker, const wchar_t* takeover_disposition, const wchar_t* handoff_pending) {
|
|
Win32DisplayRecoveryBackend backend;
|
|
return CompleteRecoveryOperation(backend, marker, takeover_disposition, handoff_pending);
|
|
}
|
|
|
|
bool FinalizeModeRecoveryAtRegistry(bool os_apply_succeeded) {
|
|
Win32DisplayRecoveryBackend backend;
|
|
return FinalizePreparedRecovery(
|
|
backend, os_apply_succeeded, kRegModeChanged, kRegModeTakeoverEligible, kRegModeRecoverySlot,
|
|
kRegModePreviousRecoverySlot, kRegModeHandoffPending);
|
|
}
|
|
|
|
bool FinalizeHDRRecoveryAtRegistry(bool os_apply_succeeded) {
|
|
Win32DisplayRecoveryBackend backend;
|
|
return FinalizePreparedRecovery(
|
|
backend, os_apply_succeeded, kRegHDRChanged, kRegHDRTakeoverEligible, kRegHDRRecoverySlot,
|
|
kRegHDRPreviousRecoverySlot, kRegHDRHandoffPending);
|
|
}
|
|
|
|
bool MarkTakeoverEligibleAtRegistry(const wchar_t* takeover_disposition) {
|
|
Win32DisplayRecoveryBackend backend;
|
|
return MarkTakeoverEligible(backend, takeover_disposition);
|
|
}
|
|
|
|
bool RecoverRecord(DisplayRecoveryBackend& backend, bool mode_is_live, bool hdr_is_live) {
|
|
if (!backend.RecordExists()) return false;
|
|
|
|
DWORD version = 0;
|
|
const bool has_version = backend.ReadDWORD(kRegVersion, version);
|
|
const wchar_t* mode_device_value_name = kRegModeDeviceName;
|
|
const wchar_t* hdr_device_value_name = kRegHDRDeviceName;
|
|
if (has_version) {
|
|
if (version != kRecoveryVersion) {
|
|
backend.DeleteRecord();
|
|
return false;
|
|
}
|
|
} else {
|
|
// The released layout had no Version and shared one DeviceName between
|
|
// mode and HDR. Require that discriminator before interpreting any
|
|
// versionless values as recovery evidence.
|
|
std::wstring legacy_device_name;
|
|
if (!backend.ReadString(kRegLegacyDeviceName, legacy_device_name)) {
|
|
backend.DeleteRecord();
|
|
return false;
|
|
}
|
|
mode_device_value_name = kRegLegacyDeviceName;
|
|
hdr_device_value_name = kRegLegacyDeviceName;
|
|
}
|
|
|
|
DWORD mode_marker = 0;
|
|
const bool mode_marker_read = backend.ReadDWORD(kRegModeChanged, mode_marker);
|
|
std::wstring mode_device_name;
|
|
DWORD width = 0;
|
|
DWORD height = 0;
|
|
DWORD refresh_rate = 0;
|
|
bool mode_handoff_pending = false;
|
|
std::wstring previous_mode_device_name;
|
|
DWORD previous_width = 0;
|
|
DWORD previous_height = 0;
|
|
DWORD previous_refresh_rate = 0;
|
|
bool mode_requested = false;
|
|
if (mode_marker_read && mode_marker == 1) {
|
|
if (has_version) {
|
|
bool handoff_state_valid = ReadHandoffPending(backend, kRegModeHandoffPending, mode_handoff_pending);
|
|
if (handoff_state_valid && mode_handoff_pending) {
|
|
bool previous_alternate = false;
|
|
handoff_state_valid =
|
|
ReadStoredRecoverySlot(backend, kRegModePreviousRecoverySlot, previous_alternate) &&
|
|
ReadValidModeSlot(backend, !previous_alternate, mode_device_name, width, height, refresh_rate) &&
|
|
ReadValidModeSlot(
|
|
backend, previous_alternate, previous_mode_device_name, previous_width, previous_height,
|
|
previous_refresh_rate);
|
|
} else if (handoff_state_valid) {
|
|
handoff_state_valid = ReadValidMarkedMode(backend, mode_device_name, width, height, refresh_rate);
|
|
}
|
|
mode_requested = handoff_state_valid;
|
|
} else {
|
|
mode_requested =
|
|
ReadValidModeValues(backend, mode_device_value_name, mode_device_name, width, height, refresh_rate);
|
|
}
|
|
}
|
|
if (!mode_is_live && (!mode_marker_read || mode_marker > 1 || (mode_marker == 1 && !mode_requested))) {
|
|
// Malformation in one operation does not erase a valid or live sibling.
|
|
backend.ClearMarker(kRegModeChanged);
|
|
}
|
|
|
|
DWORD hdr_marker = 0;
|
|
const bool hdr_marker_read = backend.ReadDWORD(kRegHDRChanged, hdr_marker);
|
|
std::wstring hdr_device_name;
|
|
DWORD original_hdr = 0;
|
|
bool hdr_handoff_pending = false;
|
|
std::wstring previous_hdr_device_name;
|
|
DWORD previous_original_hdr = 0;
|
|
bool hdr_requested = false;
|
|
if (hdr_marker_read && hdr_marker == 1) {
|
|
if (has_version) {
|
|
bool handoff_state_valid = ReadHandoffPending(backend, kRegHDRHandoffPending, hdr_handoff_pending);
|
|
if (handoff_state_valid && hdr_handoff_pending) {
|
|
bool previous_alternate = false;
|
|
handoff_state_valid =
|
|
ReadStoredRecoverySlot(backend, kRegHDRPreviousRecoverySlot, previous_alternate) &&
|
|
ReadValidHDRSlot(backend, !previous_alternate, hdr_device_name, original_hdr) &&
|
|
ReadValidHDRSlot(backend, previous_alternate, previous_hdr_device_name, previous_original_hdr);
|
|
} else if (handoff_state_valid) {
|
|
handoff_state_valid = ReadValidMarkedHDR(backend, hdr_device_name, original_hdr);
|
|
}
|
|
hdr_requested = handoff_state_valid;
|
|
} else {
|
|
hdr_requested = ReadValidHDRValues(backend, hdr_device_value_name, hdr_device_name, original_hdr);
|
|
}
|
|
}
|
|
if (!hdr_is_live && (!hdr_marker_read || hdr_marker > 1 || (hdr_marker == 1 && !hdr_requested))) {
|
|
backend.ClearMarker(kRegHDRChanged);
|
|
}
|
|
|
|
const bool recover_mode = mode_requested && !mode_is_live;
|
|
const bool recover_hdr = hdr_requested && !hdr_is_live;
|
|
if (!recover_mode && !recover_hdr) {
|
|
DeleteRecordIfNoMarkedOperations(backend);
|
|
return false;
|
|
}
|
|
|
|
bool completed = true;
|
|
if (recover_mode) {
|
|
const bool restored =
|
|
backend.IsDevicePresent(mode_device_name) && backend.RestoreMode(mode_device_name, width, height, refresh_rate);
|
|
if (mode_handoff_pending) {
|
|
// Restore the replacement first and the pre-handoff original last. Both
|
|
// remain marked until both idempotent restores and cleanup succeed.
|
|
const bool previous_restored =
|
|
backend.IsDevicePresent(previous_mode_device_name) &&
|
|
backend.RestoreMode(previous_mode_device_name, previous_width, previous_height, previous_refresh_rate);
|
|
if (!restored || !previous_restored ||
|
|
!CompleteRecoveryOperation(backend, kRegModeChanged, kRegModeTakeoverEligible, kRegModeHandoffPending)) {
|
|
completed = false;
|
|
}
|
|
} else if (
|
|
!restored ||
|
|
!CompleteRecoveryOperation(backend, kRegModeChanged, kRegModeTakeoverEligible, kRegModeHandoffPending)) {
|
|
// Retain the restoration point for topology retries, but remember that
|
|
// one real non-live recovery attempt failed so a later conflicting mode
|
|
// request may deliberately replace it.
|
|
MarkTakeoverEligible(backend, kRegModeTakeoverEligible);
|
|
completed = false;
|
|
}
|
|
}
|
|
|
|
if (recover_hdr) {
|
|
const bool restored =
|
|
backend.IsDevicePresent(hdr_device_name) && backend.RestoreHDR(hdr_device_name, original_hdr != 0);
|
|
if (hdr_handoff_pending) {
|
|
const bool previous_restored = backend.IsDevicePresent(previous_hdr_device_name) &&
|
|
backend.RestoreHDR(previous_hdr_device_name, previous_original_hdr != 0);
|
|
if (!restored || !previous_restored ||
|
|
!CompleteRecoveryOperation(backend, kRegHDRChanged, kRegHDRTakeoverEligible, kRegHDRHandoffPending)) {
|
|
completed = false;
|
|
}
|
|
} else if (
|
|
!restored ||
|
|
!CompleteRecoveryOperation(backend, kRegHDRChanged, kRegHDRTakeoverEligible, kRegHDRHandoffPending)) {
|
|
MarkTakeoverEligible(backend, kRegHDRTakeoverEligible);
|
|
completed = false;
|
|
}
|
|
}
|
|
return completed;
|
|
}
|
|
|
|
} // namespace
|
|
|
|
bool DisplayModeManager::RecoverIfNeeded() {
|
|
std::lock_guard<std::recursive_mutex> transaction_lock(g_display_override_mutex);
|
|
RecoveryRunGuard run;
|
|
if (!run.acquired()) return false;
|
|
Win32DisplayRecoveryBackend backend;
|
|
return RecoverRecord(backend, g_live_mode_recovery_record, g_live_hdr_recovery_record);
|
|
}
|
|
|
|
bool DisplayModeManager::RecoverIfNeeded(DisplayRecoveryBackend& backend) {
|
|
std::lock_guard<std::recursive_mutex> transaction_lock(g_display_override_mutex);
|
|
RecoveryRunGuard run;
|
|
if (!run.acquired()) return false;
|
|
return RecoverRecord(backend, false, false);
|
|
}
|
|
|
|
#if defined(PLEZY_DISPLAY_MODE_MANAGER_TESTING)
|
|
bool DisplayModeManager::CompleteRecoveryOperationForTesting(DisplayRecoveryBackend& backend, bool mode) {
|
|
std::lock_guard<std::recursive_mutex> transaction_lock(g_display_override_mutex);
|
|
return CompleteRecoveryOperation(
|
|
backend, mode ? kRegModeChanged : kRegHDRChanged, mode ? kRegModeTakeoverEligible : kRegHDRTakeoverEligible,
|
|
mode ? kRegModeHandoffPending : kRegHDRHandoffPending);
|
|
}
|
|
|
|
bool DisplayModeManager::FinalizePreparedRecoveryForTesting(
|
|
DisplayRecoveryBackend& backend, bool mode, bool os_apply_succeeded) {
|
|
std::lock_guard<std::recursive_mutex> transaction_lock(g_display_override_mutex);
|
|
return FinalizePreparedRecovery(
|
|
backend, os_apply_succeeded, mode ? kRegModeChanged : kRegHDRChanged,
|
|
mode ? kRegModeTakeoverEligible : kRegHDRTakeoverEligible, mode ? kRegModeRecoverySlot : kRegHDRRecoverySlot,
|
|
mode ? kRegModePreviousRecoverySlot : kRegHDRPreviousRecoverySlot,
|
|
mode ? kRegModeHandoffPending : kRegHDRHandoffPending);
|
|
}
|
|
|
|
bool DisplayModeManager::RecoverIfNeededForTesting(
|
|
DisplayRecoveryBackend& backend, bool mode_is_live, bool hdr_is_live) {
|
|
std::lock_guard<std::recursive_mutex> transaction_lock(g_display_override_mutex);
|
|
RecoveryRunGuard run;
|
|
if (!run.acquired()) return false;
|
|
return RecoverRecord(backend, mode_is_live, hdr_is_live);
|
|
}
|
|
#endif
|
|
|
|
} // namespace mpv
|