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14 Commits
v0.92 ... v0.93

Author SHA1 Message Date
Serge
767865ab19 Merge branch 'main' of https://github.com/seerge/g-helper 2023-07-01 11:46:48 +02:00
Serge
ec7350cf5c Optimized mode switch from Ultimate 2023-07-01 11:46:46 +02:00
Serge
d33813b50d Merge pull request #702 from IceStormNG/german-translation
Updated German translation
2023-06-30 15:10:33 +02:00
Carsten Braun
d803b1eede Correction to not cut off text 2023-06-30 15:06:23 +02:00
Carsten Braun
81b73517df Translated the latest changes to German 2023-06-30 14:59:56 +02:00
IceStormNG
dbbf8b4016 Merge branch 'seerge:main' into german-translation 2023-06-30 14:47:40 +02:00
Serge
c4adb1eb8b Cleanup 2023-06-30 14:30:50 +02:00
Serge
dea2b73d7f Merge branch 'main' of https://github.com/seerge/g-helper 2023-06-29 18:18:44 +02:00
Serge
3fb61d3bf1 X13 tweaks 2023-06-29 18:18:42 +02:00
Serge
b83d8d35a4 Update README.md 2023-06-28 19:25:01 +02:00
IceStormNG
ba9a290ad0 Merge branch 'seerge:main' into german-translation 2023-06-21 20:43:58 +02:00
IceStormNG
58fd6650db Merge branch 'seerge:main' into german-translation 2023-06-19 07:18:15 +02:00
IceStormNG
4d0bc74179 Merge branch 'seerge:main' into german-translation 2023-06-16 23:15:30 +02:00
Carsten Braun
66316d3016 Translated additional strings 2023-06-14 17:36:40 +02:00
20 changed files with 1060 additions and 946 deletions

View File

@@ -8,21 +8,26 @@ using System.Timers;
namespace GHelper.AnimeMatrix
{
public class AniMatrix
public class AniMatrixControl
{
System.Timers.Timer matrixTimer = default!;
AnimeMatrixDevice mat;
double[] AudioValues;
WasapiCapture AudioDevice;
SettingsForm settings;
System.Timers.Timer matrixTimer = default!;
AnimeMatrixDevice? mat;
double[]? AudioValues;
WasapiCapture? AudioDevice;
public bool IsValid => mat != null;
private long lastPresent;
private List<double> maxes = new List<double>();
public AniMatrix()
public AniMatrixControl(SettingsForm settingsForm)
{
settings = settingsForm;
try
{
mat = new AnimeMatrixDevice();
@@ -251,12 +256,43 @@ namespace GHelper.AnimeMatrix
if (maxes.Count > 20) maxes.RemoveAt(0);
maxAverage = maxes.Average();
for (int i = 0; i < size; i++) DrawBar(20 - i, bars[i]*20/maxAverage);
for (int i = 0; i < size; i++) DrawBar(20 - i, bars[i] * 20 / maxAverage);
mat.Present();
}
public void OpenMatrixPicture()
{
string fileName = null;
Thread t = new Thread(() =>
{
OpenFileDialog of = new OpenFileDialog();
of.Filter = "Image Files (*.bmp;*.jpg;*.jpeg,*.png,*.gif)|*.BMP;*.JPG;*.JPEG;*.PNG;*.GIF";
if (of.ShowDialog() == DialogResult.OK)
{
fileName = of.FileName;
}
return;
});
t.SetApartmentState(ApartmentState.STA);
t.Start();
t.Join();
if (fileName is not null)
{
AppConfig.Set("matrix_picture", fileName);
AppConfig.Set("matrix_running", 2);
SetMatrixPicture(fileName);
settings.SetMatrixRunning(2);
}
}
public void SetMatrixPicture(string fileName)
{

View File

@@ -68,6 +68,15 @@ public static class AppConfig
return _model;
}
public static string GetModelShort()
{
string model = GetModel();
int trim = model.LastIndexOf("_");
if (trim > 0) model = model.Substring(0, trim);
return model;
}
public static bool ContainsModel(string contains)
{

View File

@@ -118,7 +118,7 @@ namespace GHelper
_modes.Remove(3);
}
if (AppConfig.ContainsModel("401"))
if (AppConfig.ContainsModel("401") || AppConfig.ContainsModel("X13"))
{
_modes.Remove(2);
_modes.Remove(3);
@@ -150,6 +150,11 @@ namespace GHelper
}
}
public static bool HasColor()
{
return AppConfig.ContainsModel("GA401") || AppConfig.ContainsModel("X13");
}
public static bool HasSecondColor()
{
return (mode == 1 && !AppConfig.ContainsModel("TUF"));

View File

@@ -0,0 +1,130 @@
using System.Diagnostics;
using System.Net;
using System.Reflection;
using System.Text.Json;
namespace GHelper.AutoUpdate
{
public class AutoUpdateControl
{
SettingsForm settings;
public string versionUrl = "http://github.com/seerge/g-helper/releases";
static long lastUpdate;
public AutoUpdateControl(SettingsForm settingsForm)
{
settings = settingsForm;
settings.SetVersionLabel(Properties.Strings.VersionLabel + ": " + Assembly.GetExecutingAssembly().GetName().Version);
}
public void CheckForUpdates()
{
// Run update once per 12 hours
if (Math.Abs(DateTimeOffset.Now.ToUnixTimeSeconds() - lastUpdate) < 43200) return;
lastUpdate = DateTimeOffset.Now.ToUnixTimeSeconds();
Task.Run(async () =>
{
await Task.Delay(TimeSpan.FromSeconds(1));
CheckForUpdatesAsync();
});
}
public void LoadReleases()
{
Process.Start(new ProcessStartInfo(versionUrl) { UseShellExecute = true });
}
async void CheckForUpdatesAsync()
{
try
{
using (var httpClient = new HttpClient())
{
httpClient.DefaultRequestHeaders.Add("User-Agent", "C# App");
var json = await httpClient.GetStringAsync("https://api.github.com/repos/seerge/g-helper/releases/latest");
var config = JsonSerializer.Deserialize<JsonElement>(json);
var tag = config.GetProperty("tag_name").ToString().Replace("v", "");
var assets = config.GetProperty("assets");
string url = null;
for (int i = 0; i < assets.GetArrayLength(); i++)
{
if (assets[i].GetProperty("browser_download_url").ToString().Contains(".zip"))
url = assets[i].GetProperty("browser_download_url").ToString();
}
if (url is null)
url = assets[0].GetProperty("browser_download_url").ToString();
var gitVersion = new Version(tag);
var appVersion = new Version(Assembly.GetExecutingAssembly().GetName().Version.ToString());
//appVersion = new Version("0.50.0.0");
if (gitVersion.CompareTo(appVersion) > 0)
{
versionUrl = url;
settings.SetVersionLabel(Properties.Strings.DownloadUpdate + ": " + tag, true);
if (AppConfig.GetString("skip_version") != tag)
{
DialogResult dialogResult = MessageBox.Show(Properties.Strings.DownloadUpdate + ": G-Helper " + tag + "?", "Update", MessageBoxButtons.YesNo);
if (dialogResult == DialogResult.Yes)
AutoUpdate(url);
else
AppConfig.Set("skip_version", tag);
}
}
else
{
Logger.WriteLine($"Latest version {appVersion}");
}
}
}
catch (Exception ex)
{
Logger.WriteLine("Failed to check for updates:" + ex.Message);
}
}
async void AutoUpdate(string requestUri)
{
Uri uri = new Uri(requestUri);
string zipName = Path.GetFileName(uri.LocalPath);
string exeLocation = Application.ExecutablePath;
string exeDir = Path.GetDirectoryName(exeLocation);
string zipLocation = exeDir + "\\" + zipName;
using (WebClient client = new WebClient())
{
client.DownloadFile(uri, zipLocation);
Logger.WriteLine(requestUri);
Logger.WriteLine(zipLocation);
Logger.WriteLine(exeLocation);
var cmd = new Process();
cmd.StartInfo.UseShellExecute = false;
cmd.StartInfo.CreateNoWindow = true;
cmd.StartInfo.FileName = "powershell";
cmd.StartInfo.Arguments = $"Start-Sleep -Seconds 1; Expand-Archive {zipLocation} -DestinationPath {exeDir} -Force; Remove-Item {zipLocation} -Force; {exeLocation}";
cmd.Start();
Application.Exit();
}
}
}
}

View File

@@ -22,7 +22,7 @@ namespace GHelper.Display
public void SetScreen(int frequency = -1, int overdrive = -1, int miniled = -1)
{
if (NativeMethods.GetRefreshRate() < 0) // Laptop screen not detected or has unknown refresh rate
if (ScreenNative.GetRefreshRate() < 0) // Laptop screen not detected or has unknown refresh rate
{
InitScreen();
return;
@@ -30,12 +30,12 @@ namespace GHelper.Display
if (frequency >= 1000)
{
frequency = NativeMethods.GetRefreshRate(true);
frequency = ScreenNative.GetRefreshRate(true);
}
if (frequency > 0)
{
NativeMethods.SetRefreshRate(frequency);
ScreenNative.SetRefreshRate(frequency);
}
if (overdrive >= 0)
@@ -64,8 +64,8 @@ namespace GHelper.Display
public void InitScreen()
{
int frequency = NativeMethods.GetRefreshRate();
int maxFrequency = NativeMethods.GetRefreshRate(true);
int frequency = ScreenNative.GetRefreshRate();
int maxFrequency = ScreenNative.GetRefreshRate(true);
bool screenAuto = AppConfig.Is("screen_auto");
bool overdriveSetting = !AppConfig.Is("no_overdrive");

View File

@@ -0,0 +1,303 @@
using System.ComponentModel;
using System.Runtime.InteropServices;
namespace GHelper.Display
{
public static class ScreenInterrogatory
{
public const int ERROR_SUCCESS = 0;
#region enums
public enum QUERY_DEVICE_CONFIG_FLAGS : uint
{
QDC_ALL_PATHS = 0x00000001,
QDC_ONLY_ACTIVE_PATHS = 0x00000002,
QDC_DATABASE_CURRENT = 0x00000004
}
public enum DISPLAYCONFIG_VIDEO_OUTPUT_TECHNOLOGY : uint
{
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_OTHER = 0xFFFFFFFF,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_HD15 = 0,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_SVIDEO = 1,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_COMPOSITE_VIDEO = 2,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_COMPONENT_VIDEO = 3,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_DVI = 4,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_HDMI = 5,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_LVDS = 6,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_D_JPN = 8,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_SDI = 9,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_DISPLAYPORT_EXTERNAL = 10,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_DISPLAYPORT_EMBEDDED = 11,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_UDI_EXTERNAL = 12,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_UDI_EMBEDDED = 13,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_SDTVDONGLE = 14,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_MIRACAST = 15,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_INTERNAL = 0x80000000,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_FORCE_UINT32 = 0xFFFFFFFF
}
public enum DISPLAYCONFIG_SCANLINE_ORDERING : uint
{
DISPLAYCONFIG_SCANLINE_ORDERING_UNSPECIFIED = 0,
DISPLAYCONFIG_SCANLINE_ORDERING_PROGRESSIVE = 1,
DISPLAYCONFIG_SCANLINE_ORDERING_INTERLACED = 2,
DISPLAYCONFIG_SCANLINE_ORDERING_INTERLACED_UPPERFIELDFIRST = DISPLAYCONFIG_SCANLINE_ORDERING_INTERLACED,
DISPLAYCONFIG_SCANLINE_ORDERING_INTERLACED_LOWERFIELDFIRST = 3,
DISPLAYCONFIG_SCANLINE_ORDERING_FORCE_UINT32 = 0xFFFFFFFF
}
public enum DISPLAYCONFIG_ROTATION : uint
{
DISPLAYCONFIG_ROTATION_IDENTITY = 1,
DISPLAYCONFIG_ROTATION_ROTATE90 = 2,
DISPLAYCONFIG_ROTATION_ROTATE180 = 3,
DISPLAYCONFIG_ROTATION_ROTATE270 = 4,
DISPLAYCONFIG_ROTATION_FORCE_UINT32 = 0xFFFFFFFF
}
public enum DISPLAYCONFIG_SCALING : uint
{
DISPLAYCONFIG_SCALING_IDENTITY = 1,
DISPLAYCONFIG_SCALING_CENTERED = 2,
DISPLAYCONFIG_SCALING_STRETCHED = 3,
DISPLAYCONFIG_SCALING_ASPECTRATIOCENTEREDMAX = 4,
DISPLAYCONFIG_SCALING_CUSTOM = 5,
DISPLAYCONFIG_SCALING_PREFERRED = 128,
DISPLAYCONFIG_SCALING_FORCE_UINT32 = 0xFFFFFFFF
}
public enum DISPLAYCONFIG_PIXELFORMAT : uint
{
DISPLAYCONFIG_PIXELFORMAT_8BPP = 1,
DISPLAYCONFIG_PIXELFORMAT_16BPP = 2,
DISPLAYCONFIG_PIXELFORMAT_24BPP = 3,
DISPLAYCONFIG_PIXELFORMAT_32BPP = 4,
DISPLAYCONFIG_PIXELFORMAT_NONGDI = 5,
DISPLAYCONFIG_PIXELFORMAT_FORCE_UINT32 = 0xffffffff
}
public enum DISPLAYCONFIG_MODE_INFO_TYPE : uint
{
DISPLAYCONFIG_MODE_INFO_TYPE_SOURCE = 1,
DISPLAYCONFIG_MODE_INFO_TYPE_TARGET = 2,
DISPLAYCONFIG_MODE_INFO_TYPE_FORCE_UINT32 = 0xFFFFFFFF
}
public enum DISPLAYCONFIG_DEVICE_INFO_TYPE : uint
{
DISPLAYCONFIG_DEVICE_INFO_GET_SOURCE_NAME = 1,
DISPLAYCONFIG_DEVICE_INFO_GET_TARGET_NAME = 2,
DISPLAYCONFIG_DEVICE_INFO_GET_TARGET_PREFERRED_MODE = 3,
DISPLAYCONFIG_DEVICE_INFO_GET_ADAPTER_NAME = 4,
DISPLAYCONFIG_DEVICE_INFO_SET_TARGET_PERSISTENCE = 5,
DISPLAYCONFIG_DEVICE_INFO_GET_TARGET_BASE_TYPE = 6,
DISPLAYCONFIG_DEVICE_INFO_FORCE_UINT32 = 0xFFFFFFFF
}
#endregion
#region structs
[StructLayout(LayoutKind.Sequential)]
public struct LUID
{
public uint LowPart;
public int HighPart;
}
[StructLayout(LayoutKind.Sequential)]
public struct DISPLAYCONFIG_PATH_SOURCE_INFO
{
public LUID adapterId;
public uint id;
public uint modeInfoIdx;
public uint statusFlags;
}
[StructLayout(LayoutKind.Sequential)]
public struct DISPLAYCONFIG_PATH_TARGET_INFO
{
public LUID adapterId;
public uint id;
public uint modeInfoIdx;
private DISPLAYCONFIG_VIDEO_OUTPUT_TECHNOLOGY outputTechnology;
private DISPLAYCONFIG_ROTATION rotation;
private DISPLAYCONFIG_SCALING scaling;
private DISPLAYCONFIG_RATIONAL refreshRate;
private DISPLAYCONFIG_SCANLINE_ORDERING scanLineOrdering;
public bool targetAvailable;
public uint statusFlags;
}
[StructLayout(LayoutKind.Sequential)]
public struct DISPLAYCONFIG_RATIONAL
{
public uint Numerator;
public uint Denominator;
}
[StructLayout(LayoutKind.Sequential)]
public struct DISPLAYCONFIG_PATH_INFO
{
public DISPLAYCONFIG_PATH_SOURCE_INFO sourceInfo;
public DISPLAYCONFIG_PATH_TARGET_INFO targetInfo;
public uint flags;
}
[StructLayout(LayoutKind.Sequential)]
public struct DISPLAYCONFIG_2DREGION
{
public uint cx;
public uint cy;
}
[StructLayout(LayoutKind.Sequential)]
public struct DISPLAYCONFIG_VIDEO_SIGNAL_INFO
{
public ulong pixelRate;
public DISPLAYCONFIG_RATIONAL hSyncFreq;
public DISPLAYCONFIG_RATIONAL vSyncFreq;
public DISPLAYCONFIG_2DREGION activeSize;
public DISPLAYCONFIG_2DREGION totalSize;
public uint videoStandard;
public DISPLAYCONFIG_SCANLINE_ORDERING scanLineOrdering;
}
[StructLayout(LayoutKind.Sequential)]
public struct DISPLAYCONFIG_TARGET_MODE
{
public DISPLAYCONFIG_VIDEO_SIGNAL_INFO targetVideoSignalInfo;
}
[StructLayout(LayoutKind.Sequential)]
public struct POINTL
{
private int x;
private int y;
}
[StructLayout(LayoutKind.Sequential)]
public struct DISPLAYCONFIG_SOURCE_MODE
{
public uint width;
public uint height;
public DISPLAYCONFIG_PIXELFORMAT pixelFormat;
public POINTL position;
}
[StructLayout(LayoutKind.Explicit)]
public struct DISPLAYCONFIG_MODE_INFO_UNION
{
[FieldOffset(0)]
public DISPLAYCONFIG_TARGET_MODE targetMode;
[FieldOffset(0)]
public DISPLAYCONFIG_SOURCE_MODE sourceMode;
}
[StructLayout(LayoutKind.Sequential)]
public struct DISPLAYCONFIG_MODE_INFO
{
public DISPLAYCONFIG_MODE_INFO_TYPE infoType;
public uint id;
public LUID adapterId;
public DISPLAYCONFIG_MODE_INFO_UNION modeInfo;
}
[StructLayout(LayoutKind.Sequential)]
public struct DISPLAYCONFIG_TARGET_DEVICE_NAME_FLAGS
{
public uint value;
}
[StructLayout(LayoutKind.Sequential)]
public struct DISPLAYCONFIG_DEVICE_INFO_HEADER
{
public DISPLAYCONFIG_DEVICE_INFO_TYPE type;
public uint size;
public LUID adapterId;
public uint id;
}
[StructLayout(LayoutKind.Sequential, CharSet = CharSet.Unicode)]
public struct DISPLAYCONFIG_TARGET_DEVICE_NAME
{
public DISPLAYCONFIG_DEVICE_INFO_HEADER header;
public DISPLAYCONFIG_TARGET_DEVICE_NAME_FLAGS flags;
public DISPLAYCONFIG_VIDEO_OUTPUT_TECHNOLOGY outputTechnology;
public ushort edidManufactureId;
public ushort edidProductCodeId;
public uint connectorInstance;
[MarshalAs(UnmanagedType.ByValTStr, SizeConst = 64)]
public string monitorFriendlyDeviceName;
[MarshalAs(UnmanagedType.ByValTStr, SizeConst = 128)]
public string monitorDevicePath;
}
#endregion
#region DLL-Imports
[DllImport("user32.dll")]
public static extern int GetDisplayConfigBufferSizes(
QUERY_DEVICE_CONFIG_FLAGS flags, out uint numPathArrayElements, out uint numModeInfoArrayElements);
[DllImport("user32.dll")]
public static extern int QueryDisplayConfig(
QUERY_DEVICE_CONFIG_FLAGS flags,
ref uint numPathArrayElements, [Out] DISPLAYCONFIG_PATH_INFO[] PathInfoArray,
ref uint numModeInfoArrayElements, [Out] DISPLAYCONFIG_MODE_INFO[] ModeInfoArray,
nint currentTopologyId
);
[DllImport("user32.dll")]
public static extern int DisplayConfigGetDeviceInfo(ref DISPLAYCONFIG_TARGET_DEVICE_NAME deviceName);
#endregion
private static DISPLAYCONFIG_TARGET_DEVICE_NAME DeviceName(LUID adapterId, uint targetId)
{
var deviceName = new DISPLAYCONFIG_TARGET_DEVICE_NAME
{
header =
{
size = (uint)Marshal.SizeOf(typeof (DISPLAYCONFIG_TARGET_DEVICE_NAME)),
adapterId = adapterId,
id = targetId,
type = DISPLAYCONFIG_DEVICE_INFO_TYPE.DISPLAYCONFIG_DEVICE_INFO_GET_TARGET_NAME
}
};
var error = DisplayConfigGetDeviceInfo(ref deviceName);
if (error != ERROR_SUCCESS)
throw new Win32Exception(error);
return deviceName;
}
public static IEnumerable<DISPLAYCONFIG_TARGET_DEVICE_NAME> GetAllDevices()
{
uint pathCount, modeCount;
var error = GetDisplayConfigBufferSizes(QUERY_DEVICE_CONFIG_FLAGS.QDC_ONLY_ACTIVE_PATHS, out pathCount, out modeCount);
if (error != ERROR_SUCCESS)
throw new Win32Exception(error);
var displayPaths = new DISPLAYCONFIG_PATH_INFO[pathCount];
var displayModes = new DISPLAYCONFIG_MODE_INFO[modeCount];
error = QueryDisplayConfig(QUERY_DEVICE_CONFIG_FLAGS.QDC_ONLY_ACTIVE_PATHS,
ref pathCount, displayPaths, ref modeCount, displayModes, nint.Zero);
if (error != ERROR_SUCCESS)
throw new Win32Exception(error);
for (var i = 0; i < modeCount; i++)
if (displayModes[i].infoType == DISPLAYCONFIG_MODE_INFO_TYPE.DISPLAYCONFIG_MODE_INFO_TYPE_TARGET)
yield return DeviceName(displayModes[i].adapterId, displayModes[i].id);
}
}
}

233
app/Display/ScreenNative.cs Normal file
View File

@@ -0,0 +1,233 @@
using System.Runtime.InteropServices;
using static GHelper.Display.ScreenInterrogatory;
namespace GHelper.Display
{
internal class ScreenNative
{
[StructLayout(LayoutKind.Sequential, CharSet = CharSet.Ansi)]
public struct DEVMODE
{
[MarshalAs(UnmanagedType.ByValTStr, SizeConst = 32)]
public string dmDeviceName;
public short dmSpecVersion;
public short dmDriverVersion;
public short dmSize;
public short dmDriverExtra;
public int dmFields;
public int dmPositionX;
public int dmPositionY;
public int dmDisplayOrientation;
public int dmDisplayFixedOutput;
public short dmColor;
public short dmDuplex;
public short dmYResolution;
public short dmTTOption;
public short dmCollate;
[MarshalAs(UnmanagedType.ByValTStr, SizeConst = 32)]
public string dmFormName;
public short dmLogPixels;
public short dmBitsPerPel;
public int dmPelsWidth;
public int dmPelsHeight;
public int dmDisplayFlags;
public int dmDisplayFrequency;
public int dmICMMethod;
public int dmICMIntent;
public int dmMediaType;
public int dmDitherType;
public int dmReserved1;
public int dmReserved2;
public int dmPanningWidth;
public int dmPanningHeight;
};
[Flags()]
public enum DisplaySettingsFlags : int
{
CDS_UPDATEREGISTRY = 1,
CDS_TEST = 2,
CDS_FULLSCREEN = 4,
CDS_GLOBAL = 8,
CDS_SET_PRIMARY = 0x10,
CDS_RESET = 0x40000000,
CDS_NORESET = 0x10000000
}
// PInvoke declaration for EnumDisplaySettings Win32 API
[DllImport("user32.dll")]
public static extern int EnumDisplaySettingsEx(
string lpszDeviceName,
int iModeNum,
ref DEVMODE lpDevMode);
// PInvoke declaration for ChangeDisplaySettings Win32 API
[DllImport("user32.dll")]
public static extern int ChangeDisplaySettingsEx(
string lpszDeviceName, ref DEVMODE lpDevMode, IntPtr hwnd,
DisplaySettingsFlags dwflags, IntPtr lParam);
public static DEVMODE CreateDevmode()
{
DEVMODE dm = new DEVMODE();
dm.dmDeviceName = new String(new char[32]);
dm.dmFormName = new String(new char[32]);
dm.dmSize = (short)Marshal.SizeOf(dm);
return dm;
}
public enum COLORPROFILETYPE
{
CPT_ICC,
CPT_DMP,
CPT_CAMP,
CPT_GMMP
}
public enum COLORPROFILESUBTYPE
{
CPST_PERCEPTUAL,
CPST_RELATIVE_COLORIMETRIC,
CPST_SATURATION,
CPST_ABSOLUTE_COLORIMETRIC,
CPST_NONE,
CPST_RGB_WORKING_SPACE,
CPST_CUSTOM_WORKING_SPACE,
CPST_STANDARD_DISPLAY_COLOR_MODE,
CPST_EXTENDED_DISPLAY_COLOR_MODE
}
public enum WCS_PROFILE_MANAGEMENT_SCOPE
{
WCS_PROFILE_MANAGEMENT_SCOPE_SYSTEM_WIDE,
WCS_PROFILE_MANAGEMENT_SCOPE_CURRENT_USER
}
[DllImport("mscms.dll", CharSet = CharSet.Unicode)]
public static extern bool WcsSetDefaultColorProfile(
WCS_PROFILE_MANAGEMENT_SCOPE scope,
string pDeviceName,
COLORPROFILETYPE cptColorProfileType,
COLORPROFILESUBTYPE cpstColorProfileSubType,
uint dwProfileID,
string pProfileName
);
public const int ENUM_CURRENT_SETTINGS = -1;
public const string defaultDevice = "\\\\.\\DISPLAY1";
public static string? FindLaptopScreen()
{
string? laptopScreen = null;
try
{
var devices = GetAllDevices().ToArray();
int count = 0, displayNum = -1;
string internalName = AppConfig.GetString("internal_display");
foreach (var device in devices)
{
if (device.outputTechnology == DISPLAYCONFIG_VIDEO_OUTPUT_TECHNOLOGY.DISPLAYCONFIG_OUTPUT_TECHNOLOGY_INTERNAL ||
device.outputTechnology == DISPLAYCONFIG_VIDEO_OUTPUT_TECHNOLOGY.DISPLAYCONFIG_OUTPUT_TECHNOLOGY_DISPLAYPORT_EMBEDDED ||
device.monitorFriendlyDeviceName == internalName)
{
displayNum = count;
AppConfig.Set("internal_display", device.monitorFriendlyDeviceName);
}
count++;
//Logger.WriteLine(device.monitorFriendlyDeviceName + ":" + device.outputTechnology.ToString());
}
var screens = Screen.AllScreens;
if (screens.Length != count) return null;
count = 0;
foreach (var screen in screens)
{
if (count == displayNum)
{
laptopScreen = screen.DeviceName;
}
//Logger.WriteLine(screen.DeviceName);
count++;
}
if (displayNum > 0 && count == 0) laptopScreen = defaultDevice;
}
catch (Exception ex)
{
Logger.WriteLine(ex.ToString());
Logger.WriteLine("Can't detect internal screen");
laptopScreen = Screen.PrimaryScreen.DeviceName;
}
return laptopScreen;
}
public static int GetRefreshRate(bool max = false)
{
DEVMODE dm = CreateDevmode();
string? laptopScreen = FindLaptopScreen();
int frequency = -1;
if (laptopScreen is null)
return -1;
if (max)
{
int i = 0;
while (0 != EnumDisplaySettingsEx(laptopScreen, i, ref dm))
{
if (dm.dmDisplayFrequency > frequency) frequency = dm.dmDisplayFrequency;
i++;
}
}
else
{
if (0 != EnumDisplaySettingsEx(laptopScreen, ENUM_CURRENT_SETTINGS, ref dm))
{
frequency = dm.dmDisplayFrequency;
}
}
return frequency;
}
public static int SetRefreshRate(int frequency = 120)
{
DEVMODE dm = CreateDevmode();
string? laptopScreen = FindLaptopScreen();
if (laptopScreen is null)
return -1;
if (0 != EnumDisplaySettingsEx(laptopScreen, ENUM_CURRENT_SETTINGS, ref dm))
{
dm.dmDisplayFrequency = frequency;
int iRet = ChangeDisplaySettingsEx(laptopScreen, ref dm, IntPtr.Zero, DisplaySettingsFlags.CDS_UPDATEREGISTRY, IntPtr.Zero);
Logger.WriteLine("Screen = " + frequency.ToString() + "Hz : " + (iRet == 0 ? "OK" : iRet));
//Fallback scenario
if (iRet != 0)
{
Thread.Sleep(300);
iRet = ChangeDisplaySettingsEx(laptopScreen, ref dm, IntPtr.Zero, DisplaySettingsFlags.CDS_UPDATEREGISTRY, IntPtr.Zero);
Logger.WriteLine("Screen = " + frequency.ToString() + "Hz : " + (iRet == 0 ? "OK" : iRet));
}
return iRet;
}
return 0;
}
}
}

View File

@@ -577,7 +577,7 @@ namespace GHelper
public void InitBoost()
{
int boost = NativeMethods.GetCPUBoost();
int boost = PowerNative.GetCPUBoost();
if (boost >= 0)
comboBoost.SelectedIndex = Math.Min(boost, comboBoost.Items.Count - 1);
}
@@ -586,7 +586,7 @@ namespace GHelper
{
if (AppConfig.GetMode("auto_boost") != comboBoost.SelectedIndex)
{
NativeMethods.SetCPUBoost(comboBoost.SelectedIndex);
PowerNative.SetCPUBoost(comboBoost.SelectedIndex);
}
AppConfig.SetMode("auto_boost", comboBoost.SelectedIndex);
}

View File

@@ -16,7 +16,7 @@
<PlatformTarget>AnyCPU</PlatformTarget>
<ProduceReferenceAssembly>False</ProduceReferenceAssembly>
<AllowUnsafeBlocks>True</AllowUnsafeBlocks>
<AssemblyVersion>0.92</AssemblyVersion>
<AssemblyVersion>0.93</AssemblyVersion>
</PropertyGroup>
<PropertyGroup Condition="'$(Configuration)|$(Platform)'=='Debug|AnyCPU'">

View File

@@ -7,9 +7,14 @@ namespace GHelper.Gpu
{
public class GPUModeControl
{
static SettingsForm settings = Program.settingsForm;
SettingsForm settings;
ScreenControl screenControl = new ScreenControl();
public GPUModeControl(SettingsForm settingsForm)
{
settings = settingsForm;
}
public void InitGPUMode()
{
int eco = Program.acpi.DeviceGet(AsusACPI.GPUEco);
@@ -140,7 +145,7 @@ namespace GHelper.Gpu
if (status == 0 && eco == 1 && hardWay) RestartGPU();
await Task.Delay(TimeSpan.FromMilliseconds(100));
settings.Invoke(delegate
{
InitGPUMode();
@@ -168,7 +173,7 @@ namespace GHelper.Gpu
}
public bool AutoGPUMode()
public bool AutoGPUMode(bool optimized = false)
{
bool GpuAuto = AppConfig.Is("gpu_auto");
@@ -181,8 +186,11 @@ namespace GHelper.Gpu
int eco = Program.acpi.DeviceGet(AsusACPI.GPUEco);
int mux = Program.acpi.DeviceGet(AsusACPI.GPUMux);
if (mux == 0) // GPU in Ultimate, ignore
if (mux == 0)
{
if (optimized) SetGPUMode(AsusACPI.GPUModeStandard);
return false;
}
else
{

View File

@@ -24,7 +24,7 @@ public static class HardwareControl
{
int max = 58;
int configMax = AppConfig.Get("fan_max");
if (configMax > 100) configMax = 0; // skipping inadvequate settings
if (configMax > 80) configMax = 0; // skipping inadvequate settings
if (AppConfig.ContainsModel("401")) max = 72;
else if (AppConfig.ContainsModel("503")) max = 68;
@@ -45,7 +45,7 @@ public static class HardwareControl
}
int fanMax = GetFanMax();
if (fan > fanMax && fan < 110) SetFanMax(fan);
if (fan > fanMax && fan < 80) SetFanMax(fan);
if (AppConfig.Is("fan_rpm"))
return GHelper.Properties.Strings.FanSpeed + (fan * 100).ToString() + "RPM";
@@ -192,14 +192,6 @@ public static class HardwareControl
{
List<string> tokill = new() { "EADesktop", "RadeonSoftware", "epicgameslauncher", "ASUSSmartDisplayControl" };
if (AppConfig.Is("kill_gpu_apps"))
{
tokill.Add("nvdisplay.container");
tokill.Add("nvcontainer");
tokill.Add("nvcplui");
}
foreach (string kill in tokill) ProcessHelper.KillByName(kill);
if (AppConfig.Is("kill_gpu_apps") && GpuControl is not null)

View File

@@ -34,8 +34,9 @@ public class Startup
using (TaskDefinition td = TaskService.Instance.NewTask())
{
td.RegistrationInfo.Description = "G-Helper Auto Start";
td.Triggers.Add(new LogonTrigger { UserId = userId });
td.Triggers.Add(new LogonTrigger { UserId = userId, Delay = TimeSpan.FromSeconds(1) });
td.Actions.Add(strExeFilePath);
if (ProcessHelper.IsUserAdministrator())

View File

@@ -402,9 +402,11 @@ namespace GHelper.Input
switch (EventID)
{
case 16: // FN+F7
//ScreenBrightness.Adjust(-10);
Program.acpi.DeviceSet(AsusACPI.UniversalControl, AsusACPI.Brightness_Down, "Brightness");
break;
case 32: // FN+F8
//ScreenBrightness.Adjust(+10);
Program.acpi.DeviceSet(AsusACPI.UniversalControl, AsusACPI.Brightness_Up, "Brightness");
break;
case 107: // FN+F10

View File

@@ -19,7 +19,7 @@ namespace GHelper.Mode
public ModeControl()
{
reapplyTimer = new System.Timers.Timer(30 * 1000);
reapplyTimer = new System.Timers.Timer(AppConfig.GetMode("reapply_time", 30) * 1000);
reapplyTimer.Elapsed += ReapplyTimer_Elapsed;
reapplyTimer.Enabled = false;
}
@@ -78,14 +78,14 @@ namespace GHelper.Mode
if (AppConfig.Get("auto_apply_power_plan") != 0)
{
if (AppConfig.GetModeString("scheme") is not null)
NativeMethods.SetPowerScheme(AppConfig.GetModeString("scheme"));
PowerNative.SetPowerScheme(AppConfig.GetModeString("scheme"));
else
NativeMethods.SetPowerScheme(Modes.GetBase(mode));
PowerNative.SetPowerScheme(Modes.GetBase(mode));
}
if (AppConfig.GetMode("auto_boost") != -1)
{
NativeMethods.SetCPUBoost(AppConfig.GetMode("auto_boost"));
PowerNative.SetCPUBoost(AppConfig.GetMode("auto_boost"));
}
/*

161
app/Mode/PowerNative.cs Normal file
View File

@@ -0,0 +1,161 @@
using System.Runtime.InteropServices;
namespace GHelper.Mode
{
internal class PowerNative
{
[DllImport("PowrProf.dll", CharSet = CharSet.Unicode)]
static extern UInt32 PowerWriteDCValueIndex(IntPtr RootPowerKey,
[MarshalAs(UnmanagedType.LPStruct)] Guid SchemeGuid,
[MarshalAs(UnmanagedType.LPStruct)] Guid SubGroupOfPowerSettingsGuid,
[MarshalAs(UnmanagedType.LPStruct)] Guid PowerSettingGuid,
int AcValueIndex);
[DllImport("PowrProf.dll", CharSet = CharSet.Unicode)]
static extern UInt32 PowerWriteACValueIndex(IntPtr RootPowerKey,
[MarshalAs(UnmanagedType.LPStruct)] Guid SchemeGuid,
[MarshalAs(UnmanagedType.LPStruct)] Guid SubGroupOfPowerSettingsGuid,
[MarshalAs(UnmanagedType.LPStruct)] Guid PowerSettingGuid,
int AcValueIndex);
[DllImport("PowrProf.dll", CharSet = CharSet.Unicode)]
static extern UInt32 PowerReadACValueIndex(IntPtr RootPowerKey,
[MarshalAs(UnmanagedType.LPStruct)] Guid SchemeGuid,
[MarshalAs(UnmanagedType.LPStruct)] Guid SubGroupOfPowerSettingsGuid,
[MarshalAs(UnmanagedType.LPStruct)] Guid PowerSettingGuid,
out IntPtr AcValueIndex
);
[DllImport("PowrProf.dll", CharSet = CharSet.Unicode)]
static extern UInt32 PowerReadDCValueIndex(IntPtr RootPowerKey,
[MarshalAs(UnmanagedType.LPStruct)] Guid SchemeGuid,
[MarshalAs(UnmanagedType.LPStruct)] Guid SubGroupOfPowerSettingsGuid,
[MarshalAs(UnmanagedType.LPStruct)] Guid PowerSettingGuid,
out IntPtr AcValueIndex
);
[DllImport("powrprof.dll")]
static extern uint PowerReadACValue(
IntPtr RootPowerKey,
Guid SchemeGuid,
Guid SubGroupOfPowerSettingGuid,
Guid PowerSettingGuid,
ref int Type,
ref IntPtr Buffer,
ref uint BufferSize
);
[DllImport("PowrProf.dll", CharSet = CharSet.Unicode)]
static extern UInt32 PowerSetActiveScheme(IntPtr RootPowerKey,
[MarshalAs(UnmanagedType.LPStruct)] Guid SchemeGuid);
[DllImport("PowrProf.dll", CharSet = CharSet.Unicode)]
static extern UInt32 PowerGetActiveScheme(IntPtr UserPowerKey, out IntPtr ActivePolicyGuid);
static readonly Guid GUID_CPU = new Guid("54533251-82be-4824-96c1-47b60b740d00");
static readonly Guid GUID_BOOST = new Guid("be337238-0d82-4146-a960-4f3749d470c7");
private static Guid GUID_SLEEP_SUBGROUP = new Guid("238c9fa8-0aad-41ed-83f4-97be242c8f20");
private static Guid GUID_HIBERNATEIDLE = new Guid("9d7815a6-7ee4-497e-8888-515a05f02364");
[DllImportAttribute("powrprof.dll", EntryPoint = "PowerGetActualOverlayScheme")]
public static extern uint PowerGetActualOverlayScheme(out Guid ActualOverlayGuid);
[DllImportAttribute("powrprof.dll", EntryPoint = "PowerGetEffectiveOverlayScheme")]
public static extern uint PowerGetEffectiveOverlayScheme(out Guid EffectiveOverlayGuid);
[DllImportAttribute("powrprof.dll", EntryPoint = "PowerSetActiveOverlayScheme")]
public static extern uint PowerSetActiveOverlayScheme(Guid OverlaySchemeGuid);
static Guid GetActiveScheme()
{
IntPtr pActiveSchemeGuid;
var hr = PowerGetActiveScheme(IntPtr.Zero, out pActiveSchemeGuid);
Guid activeSchemeGuid = (Guid)Marshal.PtrToStructure(pActiveSchemeGuid, typeof(Guid));
return activeSchemeGuid;
}
public static int GetCPUBoost()
{
IntPtr AcValueIndex;
Guid activeSchemeGuid = GetActiveScheme();
UInt32 value = PowerReadACValueIndex(IntPtr.Zero,
activeSchemeGuid,
GUID_CPU,
GUID_BOOST, out AcValueIndex);
return AcValueIndex.ToInt32();
}
public static void SetCPUBoost(int boost = 0)
{
Guid activeSchemeGuid = GetActiveScheme();
if (boost == GetCPUBoost()) return;
var hrAC = PowerWriteACValueIndex(
IntPtr.Zero,
activeSchemeGuid,
GUID_CPU,
GUID_BOOST,
boost);
PowerSetActiveScheme(IntPtr.Zero, activeSchemeGuid);
var hrDC = PowerWriteDCValueIndex(
IntPtr.Zero,
activeSchemeGuid,
GUID_CPU,
GUID_BOOST,
boost);
PowerSetActiveScheme(IntPtr.Zero, activeSchemeGuid);
Logger.WriteLine("Boost " + boost);
}
public static void SetPowerScheme(string scheme)
{
List<string> overlays = new() {
"00000000-0000-0000-0000-000000000000",
"ded574b5-45a0-4f42-8737-46345c09c238",
"961cc777-2547-4f9d-8174-7d86181b8a7a",
"3af9B8d9-7c97-431d-ad78-34a8bfea439f"
};
if (overlays.Contains(scheme))
{
PowerSetActiveOverlayScheme(new Guid(scheme));
Logger.WriteLine("Power mode:" + scheme);
}
else
{
PowerSetActiveScheme(IntPtr.Zero, new Guid(scheme));
Logger.WriteLine("Power plan:" + scheme);
}
}
public static void SetPowerScheme(int mode)
{
switch (mode)
{
case 0: // balanced
PowerSetActiveOverlayScheme(new Guid("00000000-0000-0000-0000-000000000000"));
break;
case 1: // turbo
PowerSetActiveOverlayScheme(new Guid("ded574b5-45a0-4f42-8737-46345c09c238"));
break;
case 2: //silent
PowerSetActiveOverlayScheme(new Guid("961cc777-2547-4f9d-8174-7d86181b8a7a"));
break;
}
}
}
}

View File

@@ -1,310 +1,5 @@
using System.ComponentModel;
using System.Diagnostics;
using System.Runtime.InteropServices;
using static Tools.ScreenInterrogatory;
using System.Runtime.InteropServices;
namespace Tools
{
public static class ScreenInterrogatory
{
public const int ERROR_SUCCESS = 0;
#region enums
public enum QUERY_DEVICE_CONFIG_FLAGS : uint
{
QDC_ALL_PATHS = 0x00000001,
QDC_ONLY_ACTIVE_PATHS = 0x00000002,
QDC_DATABASE_CURRENT = 0x00000004
}
public enum DISPLAYCONFIG_VIDEO_OUTPUT_TECHNOLOGY : uint
{
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_OTHER = 0xFFFFFFFF,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_HD15 = 0,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_SVIDEO = 1,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_COMPOSITE_VIDEO = 2,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_COMPONENT_VIDEO = 3,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_DVI = 4,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_HDMI = 5,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_LVDS = 6,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_D_JPN = 8,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_SDI = 9,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_DISPLAYPORT_EXTERNAL = 10,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_DISPLAYPORT_EMBEDDED = 11,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_UDI_EXTERNAL = 12,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_UDI_EMBEDDED = 13,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_SDTVDONGLE = 14,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_MIRACAST = 15,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_INTERNAL = 0x80000000,
DISPLAYCONFIG_OUTPUT_TECHNOLOGY_FORCE_UINT32 = 0xFFFFFFFF
}
public enum DISPLAYCONFIG_SCANLINE_ORDERING : uint
{
DISPLAYCONFIG_SCANLINE_ORDERING_UNSPECIFIED = 0,
DISPLAYCONFIG_SCANLINE_ORDERING_PROGRESSIVE = 1,
DISPLAYCONFIG_SCANLINE_ORDERING_INTERLACED = 2,
DISPLAYCONFIG_SCANLINE_ORDERING_INTERLACED_UPPERFIELDFIRST = DISPLAYCONFIG_SCANLINE_ORDERING_INTERLACED,
DISPLAYCONFIG_SCANLINE_ORDERING_INTERLACED_LOWERFIELDFIRST = 3,
DISPLAYCONFIG_SCANLINE_ORDERING_FORCE_UINT32 = 0xFFFFFFFF
}
public enum DISPLAYCONFIG_ROTATION : uint
{
DISPLAYCONFIG_ROTATION_IDENTITY = 1,
DISPLAYCONFIG_ROTATION_ROTATE90 = 2,
DISPLAYCONFIG_ROTATION_ROTATE180 = 3,
DISPLAYCONFIG_ROTATION_ROTATE270 = 4,
DISPLAYCONFIG_ROTATION_FORCE_UINT32 = 0xFFFFFFFF
}
public enum DISPLAYCONFIG_SCALING : uint
{
DISPLAYCONFIG_SCALING_IDENTITY = 1,
DISPLAYCONFIG_SCALING_CENTERED = 2,
DISPLAYCONFIG_SCALING_STRETCHED = 3,
DISPLAYCONFIG_SCALING_ASPECTRATIOCENTEREDMAX = 4,
DISPLAYCONFIG_SCALING_CUSTOM = 5,
DISPLAYCONFIG_SCALING_PREFERRED = 128,
DISPLAYCONFIG_SCALING_FORCE_UINT32 = 0xFFFFFFFF
}
public enum DISPLAYCONFIG_PIXELFORMAT : uint
{
DISPLAYCONFIG_PIXELFORMAT_8BPP = 1,
DISPLAYCONFIG_PIXELFORMAT_16BPP = 2,
DISPLAYCONFIG_PIXELFORMAT_24BPP = 3,
DISPLAYCONFIG_PIXELFORMAT_32BPP = 4,
DISPLAYCONFIG_PIXELFORMAT_NONGDI = 5,
DISPLAYCONFIG_PIXELFORMAT_FORCE_UINT32 = 0xffffffff
}
public enum DISPLAYCONFIG_MODE_INFO_TYPE : uint
{
DISPLAYCONFIG_MODE_INFO_TYPE_SOURCE = 1,
DISPLAYCONFIG_MODE_INFO_TYPE_TARGET = 2,
DISPLAYCONFIG_MODE_INFO_TYPE_FORCE_UINT32 = 0xFFFFFFFF
}
public enum DISPLAYCONFIG_DEVICE_INFO_TYPE : uint
{
DISPLAYCONFIG_DEVICE_INFO_GET_SOURCE_NAME = 1,
DISPLAYCONFIG_DEVICE_INFO_GET_TARGET_NAME = 2,
DISPLAYCONFIG_DEVICE_INFO_GET_TARGET_PREFERRED_MODE = 3,
DISPLAYCONFIG_DEVICE_INFO_GET_ADAPTER_NAME = 4,
DISPLAYCONFIG_DEVICE_INFO_SET_TARGET_PERSISTENCE = 5,
DISPLAYCONFIG_DEVICE_INFO_GET_TARGET_BASE_TYPE = 6,
DISPLAYCONFIG_DEVICE_INFO_FORCE_UINT32 = 0xFFFFFFFF
}
#endregion
#region structs
[StructLayout(LayoutKind.Sequential)]
public struct LUID
{
public uint LowPart;
public int HighPart;
}
[StructLayout(LayoutKind.Sequential)]
public struct DISPLAYCONFIG_PATH_SOURCE_INFO
{
public LUID adapterId;
public uint id;
public uint modeInfoIdx;
public uint statusFlags;
}
[StructLayout(LayoutKind.Sequential)]
public struct DISPLAYCONFIG_PATH_TARGET_INFO
{
public LUID adapterId;
public uint id;
public uint modeInfoIdx;
private DISPLAYCONFIG_VIDEO_OUTPUT_TECHNOLOGY outputTechnology;
private DISPLAYCONFIG_ROTATION rotation;
private DISPLAYCONFIG_SCALING scaling;
private DISPLAYCONFIG_RATIONAL refreshRate;
private DISPLAYCONFIG_SCANLINE_ORDERING scanLineOrdering;
public bool targetAvailable;
public uint statusFlags;
}
[StructLayout(LayoutKind.Sequential)]
public struct DISPLAYCONFIG_RATIONAL
{
public uint Numerator;
public uint Denominator;
}
[StructLayout(LayoutKind.Sequential)]
public struct DISPLAYCONFIG_PATH_INFO
{
public DISPLAYCONFIG_PATH_SOURCE_INFO sourceInfo;
public DISPLAYCONFIG_PATH_TARGET_INFO targetInfo;
public uint flags;
}
[StructLayout(LayoutKind.Sequential)]
public struct DISPLAYCONFIG_2DREGION
{
public uint cx;
public uint cy;
}
[StructLayout(LayoutKind.Sequential)]
public struct DISPLAYCONFIG_VIDEO_SIGNAL_INFO
{
public ulong pixelRate;
public DISPLAYCONFIG_RATIONAL hSyncFreq;
public DISPLAYCONFIG_RATIONAL vSyncFreq;
public DISPLAYCONFIG_2DREGION activeSize;
public DISPLAYCONFIG_2DREGION totalSize;
public uint videoStandard;
public DISPLAYCONFIG_SCANLINE_ORDERING scanLineOrdering;
}
[StructLayout(LayoutKind.Sequential)]
public struct DISPLAYCONFIG_TARGET_MODE
{
public DISPLAYCONFIG_VIDEO_SIGNAL_INFO targetVideoSignalInfo;
}
[StructLayout(LayoutKind.Sequential)]
public struct POINTL
{
private int x;
private int y;
}
[StructLayout(LayoutKind.Sequential)]
public struct DISPLAYCONFIG_SOURCE_MODE
{
public uint width;
public uint height;
public DISPLAYCONFIG_PIXELFORMAT pixelFormat;
public POINTL position;
}
[StructLayout(LayoutKind.Explicit)]
public struct DISPLAYCONFIG_MODE_INFO_UNION
{
[FieldOffset(0)]
public DISPLAYCONFIG_TARGET_MODE targetMode;
[FieldOffset(0)]
public DISPLAYCONFIG_SOURCE_MODE sourceMode;
}
[StructLayout(LayoutKind.Sequential)]
public struct DISPLAYCONFIG_MODE_INFO
{
public DISPLAYCONFIG_MODE_INFO_TYPE infoType;
public uint id;
public LUID adapterId;
public DISPLAYCONFIG_MODE_INFO_UNION modeInfo;
}
[StructLayout(LayoutKind.Sequential)]
public struct DISPLAYCONFIG_TARGET_DEVICE_NAME_FLAGS
{
public uint value;
}
[StructLayout(LayoutKind.Sequential)]
public struct DISPLAYCONFIG_DEVICE_INFO_HEADER
{
public DISPLAYCONFIG_DEVICE_INFO_TYPE type;
public uint size;
public LUID adapterId;
public uint id;
}
[StructLayout(LayoutKind.Sequential, CharSet = CharSet.Unicode)]
public struct DISPLAYCONFIG_TARGET_DEVICE_NAME
{
public DISPLAYCONFIG_DEVICE_INFO_HEADER header;
public DISPLAYCONFIG_TARGET_DEVICE_NAME_FLAGS flags;
public DISPLAYCONFIG_VIDEO_OUTPUT_TECHNOLOGY outputTechnology;
public ushort edidManufactureId;
public ushort edidProductCodeId;
public uint connectorInstance;
[MarshalAs(UnmanagedType.ByValTStr, SizeConst = 64)]
public string monitorFriendlyDeviceName;
[MarshalAs(UnmanagedType.ByValTStr, SizeConst = 128)]
public string monitorDevicePath;
}
#endregion
#region DLL-Imports
[DllImport("user32.dll")]
public static extern int GetDisplayConfigBufferSizes(
QUERY_DEVICE_CONFIG_FLAGS flags, out uint numPathArrayElements, out uint numModeInfoArrayElements);
[DllImport("user32.dll")]
public static extern int QueryDisplayConfig(
QUERY_DEVICE_CONFIG_FLAGS flags,
ref uint numPathArrayElements, [Out] DISPLAYCONFIG_PATH_INFO[] PathInfoArray,
ref uint numModeInfoArrayElements, [Out] DISPLAYCONFIG_MODE_INFO[] ModeInfoArray,
IntPtr currentTopologyId
);
[DllImport("user32.dll")]
public static extern int DisplayConfigGetDeviceInfo(ref DISPLAYCONFIG_TARGET_DEVICE_NAME deviceName);
#endregion
private static DISPLAYCONFIG_TARGET_DEVICE_NAME DeviceName(LUID adapterId, uint targetId)
{
var deviceName = new DISPLAYCONFIG_TARGET_DEVICE_NAME
{
header =
{
size = (uint)Marshal.SizeOf(typeof (DISPLAYCONFIG_TARGET_DEVICE_NAME)),
adapterId = adapterId,
id = targetId,
type = DISPLAYCONFIG_DEVICE_INFO_TYPE.DISPLAYCONFIG_DEVICE_INFO_GET_TARGET_NAME
}
};
var error = DisplayConfigGetDeviceInfo(ref deviceName);
if (error != ERROR_SUCCESS)
throw new Win32Exception(error);
return deviceName;
}
public static IEnumerable<DISPLAYCONFIG_TARGET_DEVICE_NAME> GetAllDevices()
{
uint pathCount, modeCount;
var error = GetDisplayConfigBufferSizes(QUERY_DEVICE_CONFIG_FLAGS.QDC_ONLY_ACTIVE_PATHS, out pathCount, out modeCount);
if (error != ERROR_SUCCESS)
throw new Win32Exception(error);
var displayPaths = new DISPLAYCONFIG_PATH_INFO[pathCount];
var displayModes = new DISPLAYCONFIG_MODE_INFO[modeCount];
error = QueryDisplayConfig(QUERY_DEVICE_CONFIG_FLAGS.QDC_ONLY_ACTIVE_PATHS,
ref pathCount, displayPaths, ref modeCount, displayModes, IntPtr.Zero);
if (error != ERROR_SUCCESS)
throw new Win32Exception(error);
for (var i = 0; i < modeCount; i++)
if (displayModes[i].infoType == DISPLAYCONFIG_MODE_INFO_TYPE.DISPLAYCONFIG_MODE_INFO_TYPE_TARGET)
yield return DeviceName(displayModes[i].adapterId, displayModes[i].id);
}
}
}
public class NativeMethods
{
@@ -327,9 +22,6 @@ public class NativeMethods
}
[DllImport("User32.dll")]
public static extern bool SetForegroundWindow(IntPtr handle);
private const int WM_SYSCOMMAND = 0x0112;
private const int SC_MONITORPOWER = 0xF170;
private const int MONITOR_OFF = 2;
@@ -414,430 +106,5 @@ public class NativeMethods
}
[DllImport("Powrprof.dll", CharSet = CharSet.Auto, ExactSpelling = true)]
public static extern bool SetSuspendState(bool hiberate, bool forceCritical, bool disableWakeEvent);
[DllImport("user32.dll")]
public static extern bool ShowWindowAsync(IntPtr hWnd, int nCmdShow);
public const int SW_RESTORE = 9;
public static bool SwitchToCurrent()
{
IntPtr hWnd = IntPtr.Zero;
Process process = Process.GetCurrentProcess();
Process[] processes = Process.GetProcessesByName(process.ProcessName);
foreach (Process _process in processes)
{
if (_process.Id != process.Id)
{
if (_process.MainWindowHandle != IntPtr.Zero)
{
Debug.WriteLine(_process.Id);
Debug.WriteLine(process.Id);
hWnd = _process.MainWindowHandle;
ShowWindowAsync(hWnd, SW_RESTORE);
}
return true;
break;
}
}
return false;
}
[DllImport("PowrProf.dll", CharSet = CharSet.Unicode)]
static extern UInt32 PowerWriteDCValueIndex(IntPtr RootPowerKey,
[MarshalAs(UnmanagedType.LPStruct)] Guid SchemeGuid,
[MarshalAs(UnmanagedType.LPStruct)] Guid SubGroupOfPowerSettingsGuid,
[MarshalAs(UnmanagedType.LPStruct)] Guid PowerSettingGuid,
int AcValueIndex);
[DllImport("PowrProf.dll", CharSet = CharSet.Unicode)]
static extern UInt32 PowerWriteACValueIndex(IntPtr RootPowerKey,
[MarshalAs(UnmanagedType.LPStruct)] Guid SchemeGuid,
[MarshalAs(UnmanagedType.LPStruct)] Guid SubGroupOfPowerSettingsGuid,
[MarshalAs(UnmanagedType.LPStruct)] Guid PowerSettingGuid,
int AcValueIndex);
[DllImport("PowrProf.dll", CharSet = CharSet.Unicode)]
static extern UInt32 PowerReadACValueIndex(IntPtr RootPowerKey,
[MarshalAs(UnmanagedType.LPStruct)] Guid SchemeGuid,
[MarshalAs(UnmanagedType.LPStruct)] Guid SubGroupOfPowerSettingsGuid,
[MarshalAs(UnmanagedType.LPStruct)] Guid PowerSettingGuid,
out IntPtr AcValueIndex
);
[DllImport("PowrProf.dll", CharSet = CharSet.Unicode)]
static extern UInt32 PowerReadDCValueIndex(IntPtr RootPowerKey,
[MarshalAs(UnmanagedType.LPStruct)] Guid SchemeGuid,
[MarshalAs(UnmanagedType.LPStruct)] Guid SubGroupOfPowerSettingsGuid,
[MarshalAs(UnmanagedType.LPStruct)] Guid PowerSettingGuid,
out IntPtr AcValueIndex
);
[DllImport("powrprof.dll")]
static extern uint PowerReadACValue(
IntPtr RootPowerKey,
Guid SchemeGuid,
Guid SubGroupOfPowerSettingGuid,
Guid PowerSettingGuid,
ref int Type,
ref IntPtr Buffer,
ref uint BufferSize
);
[DllImport("PowrProf.dll", CharSet = CharSet.Unicode)]
static extern UInt32 PowerSetActiveScheme(IntPtr RootPowerKey,
[MarshalAs(UnmanagedType.LPStruct)] Guid SchemeGuid);
[DllImport("PowrProf.dll", CharSet = CharSet.Unicode)]
static extern UInt32 PowerGetActiveScheme(IntPtr UserPowerKey, out IntPtr ActivePolicyGuid);
static readonly Guid GUID_CPU = new Guid("54533251-82be-4824-96c1-47b60b740d00");
static readonly Guid GUID_BOOST = new Guid("be337238-0d82-4146-a960-4f3749d470c7");
private static Guid GUID_SLEEP_SUBGROUP = new Guid("238c9fa8-0aad-41ed-83f4-97be242c8f20");
private static Guid GUID_HIBERNATEIDLE = new Guid("9d7815a6-7ee4-497e-8888-515a05f02364");
[DllImportAttribute("powrprof.dll", EntryPoint = "PowerGetActualOverlayScheme")]
public static extern uint PowerGetActualOverlayScheme(out Guid ActualOverlayGuid);
[DllImportAttribute("powrprof.dll", EntryPoint = "PowerGetEffectiveOverlayScheme")]
public static extern uint PowerGetEffectiveOverlayScheme(out Guid EffectiveOverlayGuid);
[DllImportAttribute("powrprof.dll", EntryPoint = "PowerSetActiveOverlayScheme")]
public static extern uint PowerSetActiveOverlayScheme(Guid OverlaySchemeGuid);
[StructLayout(LayoutKind.Sequential, CharSet = CharSet.Ansi)]
public struct DEVMODE
{
[MarshalAs(UnmanagedType.ByValTStr, SizeConst = 32)]
public string dmDeviceName;
public short dmSpecVersion;
public short dmDriverVersion;
public short dmSize;
public short dmDriverExtra;
public int dmFields;
public int dmPositionX;
public int dmPositionY;
public int dmDisplayOrientation;
public int dmDisplayFixedOutput;
public short dmColor;
public short dmDuplex;
public short dmYResolution;
public short dmTTOption;
public short dmCollate;
[MarshalAs(UnmanagedType.ByValTStr, SizeConst = 32)]
public string dmFormName;
public short dmLogPixels;
public short dmBitsPerPel;
public int dmPelsWidth;
public int dmPelsHeight;
public int dmDisplayFlags;
public int dmDisplayFrequency;
public int dmICMMethod;
public int dmICMIntent;
public int dmMediaType;
public int dmDitherType;
public int dmReserved1;
public int dmReserved2;
public int dmPanningWidth;
public int dmPanningHeight;
};
[Flags()]
public enum DisplaySettingsFlags : int
{
CDS_UPDATEREGISTRY = 1,
CDS_TEST = 2,
CDS_FULLSCREEN = 4,
CDS_GLOBAL = 8,
CDS_SET_PRIMARY = 0x10,
CDS_RESET = 0x40000000,
CDS_NORESET = 0x10000000
}
// PInvoke declaration for EnumDisplaySettings Win32 API
[DllImport("user32.dll")]
public static extern int EnumDisplaySettingsEx(
string lpszDeviceName,
int iModeNum,
ref DEVMODE lpDevMode);
// PInvoke declaration for ChangeDisplaySettings Win32 API
[DllImport("user32.dll")]
public static extern int ChangeDisplaySettingsEx(
string lpszDeviceName, ref DEVMODE lpDevMode, IntPtr hwnd,
DisplaySettingsFlags dwflags, IntPtr lParam);
public static DEVMODE CreateDevmode()
{
DEVMODE dm = new DEVMODE();
dm.dmDeviceName = new String(new char[32]);
dm.dmFormName = new String(new char[32]);
dm.dmSize = (short)Marshal.SizeOf(dm);
return dm;
}
public enum COLORPROFILETYPE
{
CPT_ICC,
CPT_DMP,
CPT_CAMP,
CPT_GMMP
}
public enum COLORPROFILESUBTYPE
{
CPST_PERCEPTUAL,
CPST_RELATIVE_COLORIMETRIC,
CPST_SATURATION,
CPST_ABSOLUTE_COLORIMETRIC,
CPST_NONE,
CPST_RGB_WORKING_SPACE,
CPST_CUSTOM_WORKING_SPACE,
CPST_STANDARD_DISPLAY_COLOR_MODE,
CPST_EXTENDED_DISPLAY_COLOR_MODE
}
public enum WCS_PROFILE_MANAGEMENT_SCOPE
{
WCS_PROFILE_MANAGEMENT_SCOPE_SYSTEM_WIDE,
WCS_PROFILE_MANAGEMENT_SCOPE_CURRENT_USER
}
[DllImport("mscms.dll", CharSet = CharSet.Unicode)]
public static extern bool WcsSetDefaultColorProfile(
WCS_PROFILE_MANAGEMENT_SCOPE scope,
string pDeviceName,
COLORPROFILETYPE cptColorProfileType,
COLORPROFILESUBTYPE cpstColorProfileSubType,
uint dwProfileID,
string pProfileName
);
public const int ENUM_CURRENT_SETTINGS = -1;
public const string defaultDevice = "\\\\.\\DISPLAY1";
public static string FindLaptopScreen()
{
string laptopScreen = null;
try
{
var devices = GetAllDevices().ToArray();
int count = 0, displayNum = -1;
string internalName = AppConfig.GetString("internal_display");
foreach (var device in devices)
{
if (device.outputTechnology == DISPLAYCONFIG_VIDEO_OUTPUT_TECHNOLOGY.DISPLAYCONFIG_OUTPUT_TECHNOLOGY_INTERNAL ||
device.outputTechnology == DISPLAYCONFIG_VIDEO_OUTPUT_TECHNOLOGY.DISPLAYCONFIG_OUTPUT_TECHNOLOGY_DISPLAYPORT_EMBEDDED ||
device.monitorFriendlyDeviceName == internalName)
{
displayNum = count;
AppConfig.Set("internal_display", device.monitorFriendlyDeviceName);
}
count++;
//Logger.WriteLine(device.monitorFriendlyDeviceName + ":" + device.outputTechnology.ToString());
}
var screens = Screen.AllScreens;
if (screens.Length != count) return null;
count = 0;
foreach (var screen in screens)
{
if (count == displayNum)
{
laptopScreen = screen.DeviceName;
}
//Logger.WriteLine(screen.DeviceName);
count++;
}
if (displayNum > 0 && count == 0) laptopScreen = defaultDevice;
}
catch (Exception ex)
{
Logger.WriteLine(ex.ToString());
Logger.WriteLine("Can't detect internal screen");
laptopScreen = Screen.PrimaryScreen.DeviceName;
}
return laptopScreen;
}
public static int GetRefreshRate(bool max = false)
{
DEVMODE dm = CreateDevmode();
string laptopScreen = FindLaptopScreen();
int frequency = -1;
if (laptopScreen is null)
return -1;
if (max)
{
int i = 0;
while (0 != NativeMethods.EnumDisplaySettingsEx(laptopScreen, i, ref dm))
{
if (dm.dmDisplayFrequency > frequency) frequency = dm.dmDisplayFrequency;
i++;
}
}
else
{
if (0 != NativeMethods.EnumDisplaySettingsEx(laptopScreen, NativeMethods.ENUM_CURRENT_SETTINGS, ref dm))
{
frequency = dm.dmDisplayFrequency;
}
}
return frequency;
}
public static int SetRefreshRate(int frequency = 120)
{
DEVMODE dm = CreateDevmode();
string laptopScreen = FindLaptopScreen();
if (laptopScreen is null)
return -1;
if (0 != NativeMethods.EnumDisplaySettingsEx(laptopScreen, NativeMethods.ENUM_CURRENT_SETTINGS, ref dm))
{
dm.dmDisplayFrequency = frequency;
int iRet = NativeMethods.ChangeDisplaySettingsEx(laptopScreen, ref dm, IntPtr.Zero, DisplaySettingsFlags.CDS_UPDATEREGISTRY, IntPtr.Zero);
Logger.WriteLine("Screen = " + frequency.ToString() + "Hz : " + (iRet == 0 ? "OK" : iRet));
//Fallback scenario
if (iRet != 0)
{
Thread.Sleep(300);
iRet = NativeMethods.ChangeDisplaySettingsEx(laptopScreen, ref dm, IntPtr.Zero, DisplaySettingsFlags.CDS_UPDATEREGISTRY, IntPtr.Zero);
Logger.WriteLine("Screen = " + frequency.ToString() + "Hz : " + (iRet == 0 ? "OK" : iRet));
}
return iRet;
}
return 0;
}
public static nint GetHuibernateAfter()
{
Guid activePolicyGuid = GetActiveScheme();
var type = 0;
nint value = 0;
var valueSize = 4u;
PowerReadACValue(IntPtr.Zero, activePolicyGuid,
GUID_SLEEP_SUBGROUP, GUID_HIBERNATEIDLE,
ref type, ref value, ref valueSize);
return value;
}
static Guid GetActiveScheme()
{
IntPtr pActiveSchemeGuid;
var hr = PowerGetActiveScheme(IntPtr.Zero, out pActiveSchemeGuid);
Guid activeSchemeGuid = (Guid)Marshal.PtrToStructure(pActiveSchemeGuid, typeof(Guid));
return activeSchemeGuid;
}
public static int GetCPUBoost()
{
IntPtr AcValueIndex;
Guid activeSchemeGuid = GetActiveScheme();
UInt32 value = PowerReadACValueIndex(IntPtr.Zero,
activeSchemeGuid,
GUID_CPU,
GUID_BOOST, out AcValueIndex);
return AcValueIndex.ToInt32();
}
public static void SetCPUBoost(int boost = 0)
{
Guid activeSchemeGuid = GetActiveScheme();
if (boost == GetCPUBoost()) return;
var hrAC = PowerWriteACValueIndex(
IntPtr.Zero,
activeSchemeGuid,
GUID_CPU,
GUID_BOOST,
boost);
PowerSetActiveScheme(IntPtr.Zero, activeSchemeGuid);
var hrDC = PowerWriteDCValueIndex(
IntPtr.Zero,
activeSchemeGuid,
GUID_CPU,
GUID_BOOST,
boost);
PowerSetActiveScheme(IntPtr.Zero, activeSchemeGuid);
Logger.WriteLine("Boost " + boost);
}
public static void SetPowerScheme(string scheme)
{
List<string> overlays = new() {
"00000000-0000-0000-0000-000000000000",
"ded574b5-45a0-4f42-8737-46345c09c238",
"961cc777-2547-4f9d-8174-7d86181b8a7a",
"3af9B8d9-7c97-431d-ad78-34a8bfea439f"
};
if (overlays.Contains(scheme))
{
PowerSetActiveOverlayScheme(new Guid(scheme));
Logger.WriteLine("Power mode:" + scheme);
}
else
{
PowerSetActiveScheme(IntPtr.Zero, new Guid(scheme));
Logger.WriteLine("Power plan:" + scheme);
}
}
public static void SetPowerScheme(int mode)
{
switch (mode)
{
case 0: // balanced
PowerSetActiveOverlayScheme(new Guid("00000000-0000-0000-0000-000000000000"));
break;
case 1: // turbo
PowerSetActiveOverlayScheme(new Guid("ded574b5-45a0-4f42-8737-46345c09c238"));
break;
case 2: //silent
PowerSetActiveOverlayScheme(new Guid("961cc777-2547-4f9d-8174-7d86181b8a7a"));
break;
}
}
}

View File

@@ -9,6 +9,7 @@ using System.Diagnostics;
using System.Globalization;
using System.Reflection;
using static NativeMethods;
using GHelper.AutoUpdate;
namespace GHelper
{
@@ -27,7 +28,7 @@ namespace GHelper
public static SettingsForm settingsForm = new SettingsForm();
public static ModeControl modeControl = new ModeControl();
static GPUModeControl gpuControl = new GPUModeControl();
static GPUModeControl gpuControl = new GPUModeControl(settingsForm);
static ScreenControl screenControl = new ScreenControl();
public static ToastForm toast = new ToastForm();

View File

@@ -156,6 +156,9 @@
<data name="ApplyWindowsPowerPlan" xml:space="preserve">
<value>Windows Leistungsmodus automatisch anpassen</value>
</data>
<data name="AsusServicesRunning" xml:space="preserve">
<value>ASUS Dienste laufen</value>
</data>
<data name="AuraBreathe" xml:space="preserve">
<value>Atmen</value>
</data>
@@ -192,18 +195,30 @@
<data name="BacklightTimeout" xml:space="preserve">
<value>Tastaturbelechtung abschalten in (Sekunden)</value>
</data>
<data name="BacklightTimeoutPlBacklightTimeoutPlugged" xml:space="preserve">
<value>Tastaturbelechtung beim aufladen abschalten in (Sekunden)</value>
</data>
<data name="Balanced" xml:space="preserve">
<value>Ausbalanciert</value>
</data>
<data name="BatteryChargeLimit" xml:space="preserve">
<value>Ladebegrenzung</value>
</data>
<data name="BiosAndDriverUpdates" xml:space="preserve">
<value>BIOS und Treiber Updates</value>
</data>
<data name="Boot" xml:space="preserve">
<value>Hochfahren</value>
</data>
<data name="Brightness" xml:space="preserve">
<value>Helligkeit</value>
</data>
<data name="BrightnessDown" xml:space="preserve">
<value>Helligkeit erhöhen</value>
</data>
<data name="BrightnessUp" xml:space="preserve">
<value>Helligkeit verringern</value>
</data>
<data name="Color" xml:space="preserve">
<value>Farbe</value>
</data>
@@ -225,12 +240,23 @@
<data name="DownloadUpdate" xml:space="preserve">
<value>Updates herunterladen</value>
</data>
<data name="DriverAndSoftware" xml:space="preserve">
<value>Treiber und Software</value>
</data>
<data name="EcoGPUTooltip" xml:space="preserve">
<value>dGPU zum Stromsparen abschalten</value>
</data>
<data name="EcoMode" xml:space="preserve">
<value>Eco</value>
</data>
<data name="EnableOptimusText" xml:space="preserve">
<value>Wenn Sie die dGPU deaktivieren, indem Sie in den Eco Modus wechseln, kann zu Problemen mit der Helligkeitseinstellung führen, wenn der Anzeigemodus nicht auf Optimus eingestellt ist.
Trotzdem fortfahren?</value>
</data>
<data name="EnableOptimusTitle" xml:space="preserve">
<value>Nvidia Anzeigemodus ist nicht auf Optimus eingestellt</value>
</data>
<data name="Extra" xml:space="preserve">
<value>Extra</value>
</data>
@@ -264,6 +290,9 @@
<data name="FansPower" xml:space="preserve">
<value>Lüfter + Leistung</value>
</data>
<data name="FnLock" xml:space="preserve">
<value>FN+F Funktionen ohne FN Taste nutzen</value>
</data>
<data name="GPUBoost" xml:space="preserve">
<value>Dynamic Boost</value>
</data>
@@ -288,6 +317,9 @@
<data name="GPUModeUltimate" xml:space="preserve">
<value>Nur dGPU</value>
</data>
<data name="GPUSettings" xml:space="preserve">
<value>GPU Einstellungen</value>
</data>
<data name="GPUTempTarget" xml:space="preserve">
<value>Maximale GPU Temperatur</value>
</data>
@@ -303,6 +335,9 @@
<data name="KeyboardBacklight" xml:space="preserve">
<value>Tastaturbeleuchtung</value>
</data>
<data name="KillGpuApps" xml:space="preserve">
<value>Alle Anwendungen auf der dGPU beim Wechsel in den Eco Modus beenden.</value>
</data>
<data name="LaptopBacklight" xml:space="preserve">
<value>Laptopbelechtung</value>
</data>
@@ -312,6 +347,18 @@
<data name="LaptopScreen" xml:space="preserve">
<value>Laptopbildschirm</value>
</data>
<data name="Lid" xml:space="preserve">
<value>Deckel</value>
</data>
<data name="Lightbar" xml:space="preserve">
<value>Leuchtstreifen</value>
</data>
<data name="Logo" xml:space="preserve">
<value>Logo</value>
</data>
<data name="MatrixAudio" xml:space="preserve">
<value>Audio Visualisierung</value>
</data>
<data name="MatrixBanner" xml:space="preserve">
<value>Binary Banner</value>
</data>
@@ -345,6 +392,15 @@
<data name="Multizone" xml:space="preserve">
<value>Multi-Zone</value>
</data>
<data name="MuteMic" xml:space="preserve">
<value>Mikrofon stummschalten</value>
</data>
<data name="NewUpdates" xml:space="preserve">
<value>Neue Updates:</value>
</data>
<data name="NoNewUpdates" xml:space="preserve">
<value>Keine Updates verfügbar</value>
</data>
<data name="OpenGHelper" xml:space="preserve">
<value>G-Helper Fenster öffnen</value>
</data>
@@ -384,6 +440,9 @@
<data name="Quit" xml:space="preserve">
<value>Schließen</value>
</data>
<data name="RestartGPU" xml:space="preserve">
<value>Ein Prozess verhindert den Wechsel in den Eco Modus. dGPU neustarten? Fortfahren auf eigene Gefahr.</value>
</data>
<data name="RPM" xml:space="preserve">
<value>U/Min</value>
</data>
@@ -405,12 +464,36 @@
<data name="StandardMode" xml:space="preserve">
<value>Standard</value>
</data>
<data name="Start" xml:space="preserve">
<value>Starten</value>
</data>
<data name="StartingServices" xml:space="preserve">
<value>Starte Dienste</value>
</data>
<data name="StartupError" xml:space="preserve">
<value>Startfehler</value>
</data>
<data name="Stop" xml:space="preserve">
<value>Beenden</value>
</data>
<data name="StopGPUApps" xml:space="preserve">
<value>GPU Anwendungen beenden</value>
</data>
<data name="StoppingServices" xml:space="preserve">
<value>Beende Dienste</value>
</data>
<data name="ToggleAura" xml:space="preserve">
<value>Aura umschalten</value>
</data>
<data name="ToggleFnLock" xml:space="preserve">
<value>FN Sperre umschalten</value>
</data>
<data name="ToggleMiniled" xml:space="preserve">
<value>MiniLED umschalten</value>
</data>
<data name="ToggleScreen" xml:space="preserve">
<value>Bildschirm umschalten</value>
</data>
<data name="Turbo" xml:space="preserve">
<value>Turbo</value>
</data>
@@ -426,12 +509,24 @@
<data name="UltimateMode" xml:space="preserve">
<value>Ultimate</value>
</data>
<data name="UndervoltingRisky" xml:space="preserve">
<value>Die Spannungsabsenkung (Undervolting) ist experimentell und birgt u.U. ein Risik. Wenn die Spannung zu weit abgesenkt wird, wird der Computer instabil und kann abstürzen, was zu Datenverlust führen kann. Es empfiehlt sich mit kleinen Werten anzufangen und es ausgiebig zu testen, um den idealen Wert zu finden.</value>
</data>
<data name="Updates" xml:space="preserve">
<value>Updates</value>
</data>
<data name="VersionLabel" xml:space="preserve">
<value>Version</value>
</data>
<data name="VolumeDown" xml:space="preserve">
<value>Lautstärke verringern</value>
</data>
<data name="VolumeMute" xml:space="preserve">
<value>Stummschalten</value>
</data>
<data name="VolumeUp" xml:space="preserve">
<value>Lautstärke erhöhen</value>
</data>
<data name="WindowTop" xml:space="preserve">
<value>Fenster immer über allen anderen</value>
</data>

View File

@@ -1,14 +1,12 @@
using GHelper.AnimeMatrix;
using GHelper.AutoUpdate;
using GHelper.Display;
using GHelper.Gpu;
using GHelper.Helpers;
using GHelper.Input;
using GHelper.Mode;
using GHelper.Display;
using GHelper.UI;
using System.Diagnostics;
using System.Net;
using System.Reflection;
using System.Text.Json;
using System.Timers;
namespace GHelper
@@ -20,28 +18,32 @@ namespace GHelper
ContextMenuStrip contextMenuStrip = new CustomContextMenu();
ToolStripMenuItem menuSilent, menuBalanced, menuTurbo, menuEco, menuStandard, menuUltimate, menuOptimized;
GPUModeControl gpuControl = new GPUModeControl();
GPUModeControl gpuControl;
ScreenControl screenControl = new ScreenControl();
AutoUpdateControl updateControl;
public static System.Timers.Timer aTimer = default!;
public string versionUrl = "http://github.com/seerge/g-helper/releases";
public AniMatrixControl matrix;
public AniMatrix matrix;
public Fans fans;
public Extra keyb;
public Updates updates;
public static System.Timers.Timer sensorTimer = default!;
public Fans? fans;
public Extra? keyb;
public Updates? updates;
static long lastUpdate;
static long lastRefresh;
bool isGpuSection = true;
public SettingsForm()
{
InitializeComponent();
InitTheme(true);
gpuControl = new GPUModeControl(this);
updateControl = new AutoUpdateControl(this);
matrix = new AniMatrixControl(this);
buttonSilent.Text = Properties.Strings.Silent;
buttonBalanced.Text = Properties.Strings.Balanced;
buttonTurbo.Text = Properties.Strings.Turbo;
@@ -166,18 +168,11 @@ namespace GHelper
sliderBattery.ValueChanged += SliderBattery_ValueChanged;
Program.trayIcon.MouseMove += TrayIcon_MouseMove;
aTimer = new System.Timers.Timer(1000);
aTimer.Elapsed += OnTimedEvent;
aTimer.Enabled = true;
SetVersionLabel(Properties.Strings.VersionLabel + ": " + Assembly.GetExecutingAssembly().GetName().Version);
string model = AppConfig.GetModel();
int trim = model.LastIndexOf("_");
if (trim > 0) model = model.Substring(0, trim);
labelModel.Text = model + (ProcessHelper.IsUserAdministrator() ? "." : "");
sensorTimer = new System.Timers.Timer(1000);
sensorTimer.Elapsed += OnTimedEvent;
sensorTimer.Enabled = true;
labelModel.Text = AppConfig.GetModelShort() + (ProcessHelper.IsUserAdministrator() ? "." : "");
TopMost = AppConfig.Is("topmost");
SetContextMenu();
@@ -186,22 +181,12 @@ namespace GHelper
private void SettingsForm_VisibleChanged(object? sender, EventArgs e)
{
aTimer.Enabled = this.Visible;
sensorTimer.Enabled = this.Visible;
if (this.Visible)
{
screenControl.InitScreen();
gpuControl.InitXGM();
// Run update once per 12 hours
if (Math.Abs(DateTimeOffset.Now.ToUnixTimeSeconds() - lastUpdate) < 43200) return;
lastUpdate = DateTimeOffset.Now.ToUnixTimeSeconds();
Task.Run(async () =>
{
await Task.Delay(TimeSpan.FromSeconds(1));
CheckForUpdatesAsync();
});
updateControl.CheckForUpdates();
}
}
@@ -350,111 +335,19 @@ namespace GHelper
}
public async void CheckForUpdatesAsync()
public void SetVersionLabel(string label, bool update = false)
{
try
{
using (var httpClient = new HttpClient())
{
httpClient.DefaultRequestHeaders.Add("User-Agent", "C# App");
var json = await httpClient.GetStringAsync("https://api.github.com/repos/seerge/g-helper/releases/latest");
var config = JsonSerializer.Deserialize<JsonElement>(json);
var tag = config.GetProperty("tag_name").ToString().Replace("v", "");
var assets = config.GetProperty("assets");
string url = null;
for (int i = 0; i < assets.GetArrayLength(); i++)
{
if (assets[i].GetProperty("browser_download_url").ToString().Contains(".zip"))
url = assets[i].GetProperty("browser_download_url").ToString();
}
if (url is null)
url = assets[0].GetProperty("browser_download_url").ToString();
var gitVersion = new Version(tag);
var appVersion = new Version(Assembly.GetExecutingAssembly().GetName().Version.ToString());
//appVersion = new Version("0.50.0.0");
if (gitVersion.CompareTo(appVersion) > 0)
{
SetVersionLabel(Properties.Strings.DownloadUpdate + ": " + tag, url);
if (AppConfig.GetString("skip_version") != tag)
{
DialogResult dialogResult = MessageBox.Show(Properties.Strings.DownloadUpdate + ": G-Helper " + tag + "?", "Update", MessageBoxButtons.YesNo);
if (dialogResult == DialogResult.Yes)
AutoUpdate(url);
else
AppConfig.Set("skip_version", tag);
}
}
else
{
Debug.WriteLine("Latest version");
}
}
}
catch (Exception ex)
{
Debug.WriteLine("Failed to check for updates:" + ex.Message);
}
}
void SetVersionLabel(string label, string url = null)
{
BeginInvoke(delegate
Invoke(delegate
{
labelVersion.Text = label;
if (url is not null)
{
this.versionUrl = url;
labelVersion.ForeColor = Color.Red;
}
if (update) labelVersion.ForeColor = colorTurbo;
});
}
public async void AutoUpdate(string requestUri)
{
Uri uri = new Uri(requestUri);
string zipName = Path.GetFileName(uri.LocalPath);
string exeLocation = Application.ExecutablePath;
string exeDir = Path.GetDirectoryName(exeLocation);
string zipLocation = exeDir + "\\" + zipName;
using (WebClient client = new WebClient())
{
client.DownloadFile(uri, zipLocation);
Logger.WriteLine(requestUri);
Logger.WriteLine(zipLocation);
Logger.WriteLine(exeLocation);
var cmd = new Process();
cmd.StartInfo.UseShellExecute = false;
cmd.StartInfo.CreateNoWindow = true;
cmd.StartInfo.FileName = "powershell";
cmd.StartInfo.Arguments = $"Start-Sleep -Seconds 1; Expand-Archive {zipLocation} -DestinationPath {exeDir} -Force; Remove-Item {zipLocation} -Force; {exeLocation}";
cmd.Start();
Application.Exit();
}
}
private void LabelVersion_Click(object? sender, EventArgs e)
{
Process.Start(new ProcessStartInfo(versionUrl) { UseShellExecute = true });
updateControl.LoadReleases();
}
private static void TrayIcon_MouseMove(object? sender, MouseEventArgs e)
@@ -526,13 +419,6 @@ namespace GHelper
}
private void ButtonOptimized_Click(object? sender, EventArgs e)
{
AppConfig.Set("gpu_auto", (AppConfig.Get("gpu_auto") == 1) ? 0 : 1);
VisualiseGPUMode();
gpuControl.AutoGPUMode();
}
private void ButtonScreenAuto_Click(object? sender, EventArgs e)
{
AppConfig.Set("screen_auto", 1);
@@ -553,59 +439,36 @@ namespace GHelper
private void CheckMatrix_CheckedChanged(object? sender, EventArgs e)
{
if (sender is null) return;
CheckBox check = (CheckBox)sender;
AppConfig.Set("matrix_auto", check.Checked ? 1 : 0);
matrix?.SetMatrix();
AppConfig.Set("matrix_auto", checkMatrix.Checked ? 1 : 0);
matrix.SetMatrix();
}
private void ButtonMatrix_Click(object? sender, EventArgs e)
{
string fileName = null;
matrix.OpenMatrixPicture();
}
Thread t = new Thread(() =>
public void SetMatrixRunning(int mode)
{
Invoke(delegate
{
OpenFileDialog of = new OpenFileDialog();
of.Filter = "Image Files (*.bmp;*.jpg;*.jpeg,*.png,*.gif)|*.BMP;*.JPG;*.JPEG;*.PNG;*.GIF";
if (of.ShowDialog() == DialogResult.OK)
{
fileName = of.FileName;
}
return;
comboMatrixRunning.SelectedIndex = mode;
});
t.SetApartmentState(ApartmentState.STA);
t.Start();
t.Join();
if (fileName is not null)
{
AppConfig.Set("matrix_picture", fileName);
AppConfig.Set("matrix_running", 2);
matrix?.SetMatrixPicture(fileName);
BeginInvoke(delegate
{
comboMatrixRunning.SelectedIndex = 2;
});
}
}
private void ComboMatrixRunning_SelectedValueChanged(object? sender, EventArgs e)
{
AppConfig.Set("matrix_running", comboMatrixRunning.SelectedIndex);
matrix?.SetMatrix();
matrix.SetMatrix();
}
private void ComboMatrix_SelectedValueChanged(object? sender, EventArgs e)
{
AppConfig.Set("matrix_brightness", comboMatrix.SelectedIndex);
matrix?.SetMatrix();
matrix.SetMatrix();
}
@@ -712,7 +575,7 @@ namespace GHelper
pictureColor2.BackColor = AsusUSB.Color2;
pictureColor2.Visible = AsusUSB.HasSecondColor();
if (AppConfig.ContainsModel("GA401"))
if (AsusUSB.HasColor())
{
panelColor.Visible = false;
}
@@ -727,8 +590,6 @@ namespace GHelper
public void InitMatrix()
{
matrix = new AniMatrix();
if (!matrix.IsValid)
{
panelMatrix.Visible = false;
@@ -885,6 +746,13 @@ namespace GHelper
}
private void ButtonOptimized_Click(object? sender, EventArgs e)
{
AppConfig.Set("gpu_auto", (AppConfig.Get("gpu_auto") == 1) ? 0 : 1);
VisualiseGPUMode();
gpuControl.AutoGPUMode(true);
}
private void ButtonStopGPU_Click(object? sender, EventArgs e)
{
gpuControl.KillGPUApps();
@@ -1037,7 +905,7 @@ namespace GHelper
public void HideGPUModes()
{
isGpuSection = false;
buttonEco.Visible = false;
buttonStandard.Visible = false;
buttonUltimate.Visible = false;

View File

@@ -127,6 +127,9 @@ Open app, and uncheck and check again "run on startup". If it still doesn't help
#### How do I uninstall G-helper?
G-helper is a single exe, and it doesn't install anything in the system. To remove it - you can simply delete exe :) If you have applied any custom fan profiles or PPTs - before removing I would recommend selecting your favorite performance mode (for example balanced) and clicking "Factory defaults" under Fans + Power.
#### How do I do a hardware reset on a laptop?
This is not related to g-helper anyhow, but all Asus laptops have an option to do a hardware reset that can be handy sometimes. It doesn't touch your data in any way, but resets all main hardware-related things (enables your dGPU, wakes up wifi/bt adapter if it hanged by some reason, etc). To do this reset : Turn OFF laptop. Press and hold "power" button for 30-40 seconds. Then boot normally (it will take a bit longer to boot)
#### What is G-helper ?
G-Helper is a lightweight Armoury Crate alternative for Asus laptops. A small utility that allows you to do almost everything you could do with Armoury Crate but without extra bloat and unnecessary services.