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Merge branch 'main' of https://github.com/seerge/g-helper
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211
app/Peripherals/Mouse/Models/ChakramCore.cs
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211
app/Peripherals/Mouse/Models/ChakramCore.cs
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namespace GHelper.Peripherals.Mouse.Models
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{
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//P511
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public class ChakramCore : AsusMouse
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{
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public ChakramCore() : base(0x0B05, 0x1958, "mi_00", false) {
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}
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public override int DPIProfileCount()
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{
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return 4;
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}
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public override string GetDisplayName()
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{
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return "ROG Chakram Core";
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}
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public override PollingRate[] SupportedPollingrates()
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{
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return new PollingRate[] {
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PollingRate.PR125Hz,
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PollingRate.PR250Hz,
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PollingRate.PR500Hz,
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PollingRate.PR1000Hz
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};
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}
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public override int ProfileCount()
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{
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return 3;
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}
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public override int MaxDPI()
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{
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return 16_000;
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}
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public override bool HasDebounceSetting()
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{
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return false;
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}
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public override bool HasLiftOffSetting()
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{
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return true;
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}
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public override int DPIIncrements()
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{
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return 100;
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}
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public override bool HasRGB()
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{
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return true;
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}
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public override int MaxBrightness()
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{
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return 4;
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}
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public override LightingZone[] SupportedLightingZones()
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{
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return new LightingZone[] { LightingZone.Logo, LightingZone.Scrollwheel };
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}
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public override bool IsLightingModeSupported(LightingMode lightingMode)
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{
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return lightingMode == LightingMode.Static
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|| lightingMode == LightingMode.Breathing
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|| lightingMode == LightingMode.ColorCycle
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|| lightingMode == LightingMode.React;
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}
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//Mouse has React mapped to 0x03 instead of 0x04 like other mice
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protected override byte IndexForLightingMode(LightingMode lightingMode)
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{
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if (lightingMode == LightingMode.React)
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{
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return 0x03;
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}
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return ((byte)lightingMode);
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}
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//Mouse has React mapped to 0x03 instead of 0x04 like other mice
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protected override LightingMode LightingModeForIndex(byte lightingMode)
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{
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if (lightingMode == 0x03)
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{
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return LightingMode.React;
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}
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return base.LightingModeForIndex(lightingMode);
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}
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public override bool HasBattery()
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{
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return false;
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}
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public override bool HasAngleSnapping()
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{
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return true;
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}
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public override bool HasAngleTuning()
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{
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return false;
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}
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protected override byte[] GetReadLightingModePacket(LightingZone zone)
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{
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return new byte[] { 0x00, 0x12, 0x03, 0x00 };
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}
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protected LightingSetting? ParseLightingSetting(byte[] packet, LightingZone zone)
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{
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if (packet[1] != 0x12 || packet[2] != 0x03)
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{
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return null;
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}
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int offset = 5 + (((int)zone) * 5);
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LightingSetting setting = new LightingSetting();
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setting.LightingMode = LightingModeForIndex(packet[offset + 0]);
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setting.Brightness = packet[offset + 1];
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setting.RGBColor = Color.FromArgb(packet[offset + 2], packet[offset + 3], packet[offset + 4]);
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setting.AnimationDirection = SupportsAnimationDirection(setting.LightingMode)
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? (AnimationDirection)packet[21]
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: AnimationDirection.Clockwise;
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if (setting.AnimationDirection != AnimationDirection.Clockwise
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&& setting.AnimationDirection != AnimationDirection.CounterClockwise)
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{
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setting.AnimationDirection = AnimationDirection.Clockwise;
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}
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setting.RandomColor = SupportsRandomColor(setting.LightingMode) && packet[22] == 0x01;
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setting.AnimationSpeed = SupportsAnimationSpeed(setting.LightingMode)
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? (AnimationSpeed)packet[23]
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: AnimationSpeed.Medium;
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//If the mouse reports an out of range value, which it does when the current setting has no speed option, chose medium as default
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if (setting.AnimationSpeed != AnimationSpeed.Fast
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&& setting.AnimationSpeed != AnimationSpeed.Medium
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&& setting.AnimationSpeed != AnimationSpeed.Slow)
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{
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setting.AnimationSpeed = AnimationSpeed.Medium;
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}
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return setting;
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}
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public override void ReadLightingSetting()
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{
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if (!HasRGB())
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{
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return;
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}
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//Mouse sends all lighting zones in one response
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//21: Direction
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//22: Random
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//23: Speed
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// 20 21 22 23
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//00 12 03 00 00 [03 04 00 00 ff] [03 04 00 00 ff] [03 04 00 00 ff] 00 04 00 00
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//00 12 03 00 00 [05 02 ff 00 ff] [05 02 ff 00 ff] [05 02 ff 00 ff] 00 01 01 00
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//00 12 03 00 00 [03 01 00 00 ff] [03 01 00 00 ff] [03 01 00 00 ff] 00 01 00 01
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byte[]? response = WriteForResponse(GetReadLightingModePacket(LightingZone.All));
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if (response is null) return;
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LightingZone[] lz = SupportedLightingZones();
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for (int i = 0; i < lz.Length; ++i)
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{
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LightingSetting? ls = ParseLightingSetting(response, lz[i]);
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if (ls is null)
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{
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Logger.WriteLine(GetDisplayName() + ": Failed to read RGB Setting for Zone " + lz[i].ToString());
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continue;
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}
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Logger.WriteLine(GetDisplayName() + ": Read RGB Setting for Zone " + lz[i].ToString() + ": " + ls.ToString());
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LightingSetting[i] = ls;
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}
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}
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public override bool CanChangeDPIProfile()
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{
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return false;
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}
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protected override LiftOffDistance ParseLiftOffDistance(byte[] packet)
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{
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if (packet[1] != 0x12 || packet[2] != 0x06)
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{
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return LiftOffDistance.Low;
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}
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return (LiftOffDistance)packet[5];
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}
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protected override byte[] GetUpdateLiftOffDistancePacket(LiftOffDistance liftOffDistance)
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{
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return new byte[] { 0x00, 0x51, 0x35, 0x00, 0x00, ((byte)liftOffDistance) };
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}
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}
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}
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@@ -208,6 +208,7 @@ namespace GHelper.Peripherals
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DetectMouse(new StrixImpactII());
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DetectMouse(new Chakram());
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DetectMouse(new ChakramWired());
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DetectMouse(new ChakramCore());
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}
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public static void DetectMouse(AsusMouse am)
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