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a33dc2f491
* Logger class changes only Now compile-time checking is possible with the help of Nullable Value types. * Misc formatting * Manual optimizations PrintGuestLog PrintGuestStackTrace Surfaceflinger DequeueBuffer * Reduce SendVibrationXX log level to Debug * Add Notice log level This level is always enabled and used to print system info, etc... Also, rewrite LogColor to switch expression as colors are static * Unify unhandled exception event handlers * Print enabled LogLevels during init * Re-add App Exit disposes in proper order nit: switch case spacing * Revert PrintGuestStackTrace to Info logs due to #1407 PrintGuestStackTrace is now called in some critical error handlers so revert to old behavior as KThread isn't part of Guest. * Batch replace Logger statements
148 lines
6.5 KiB
C#
148 lines
6.5 KiB
C#
using Ryujinx.Audio;
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using Ryujinx.Common;
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using Ryujinx.Common.Logging;
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using Ryujinx.HLE.HOS.Services.Audio.AudioRendererManager;
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namespace Ryujinx.HLE.HOS.Services.Audio
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{
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[Service("audren:u")]
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class IAudioRendererManager : IpcService
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{
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public IAudioRendererManager(ServiceCtx context) { }
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[Command(0)]
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// OpenAudioRenderer(nn::audio::detail::AudioRendererParameterInternal, u64, nn::applet::AppletResourceUserId, pid, handle<copy>, handle<copy>)
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// -> object<nn::audio::detail::IAudioRenderer>
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public ResultCode OpenAudioRenderer(ServiceCtx context)
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{
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IAalOutput audioOut = context.Device.AudioOut;
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AudioRendererParameter Params = GetAudioRendererParameter(context);
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MakeObject(context, new IAudioRenderer(
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context.Device.System,
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context.Memory,
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audioOut,
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Params));
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return ResultCode.Success;
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}
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[Command(1)]
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// GetWorkBufferSize(nn::audio::detail::AudioRendererParameterInternal) -> u64
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public ResultCode GetAudioRendererWorkBufferSize(ServiceCtx context)
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{
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AudioRendererParameter parameters = GetAudioRendererParameter(context);
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if (AudioRendererCommon.CheckValidRevision(parameters))
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{
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BehaviorInfo behaviorInfo = new BehaviorInfo();
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behaviorInfo.SetUserLibRevision(parameters.Revision);
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long size;
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int totalMixCount = parameters.SubMixCount + 1;
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size = BitUtils.AlignUp(parameters.MixBufferCount * 4, AudioRendererConsts.BufferAlignment) +
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parameters.SubMixCount * 0x400 +
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totalMixCount * 0x940 +
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parameters.VoiceCount * 0x3F0 +
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BitUtils.AlignUp(totalMixCount * 8, 16) +
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BitUtils.AlignUp(parameters.VoiceCount * 8, 16) +
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BitUtils.AlignUp(((parameters.SinkCount + parameters.SubMixCount) * 0x3C0 + parameters.SampleCount * 4) *
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(parameters.MixBufferCount + 6), AudioRendererConsts.BufferAlignment) +
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(parameters.SinkCount + parameters.SubMixCount) * 0x2C0 +
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(parameters.EffectCount + parameters.VoiceCount * 4) * 0x30 +
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0x50;
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if (behaviorInfo.IsSplitterSupported())
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{
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size += BitUtils.AlignUp(NodeStates.GetWorkBufferSize(totalMixCount) + EdgeMatrix.GetWorkBufferSize(totalMixCount), 16);
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}
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size = parameters.SinkCount * 0x170 +
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(parameters.SinkCount + parameters.SubMixCount) * 0x280 +
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parameters.EffectCount * 0x4C0 +
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((size + SplitterContext.CalcWorkBufferSize(behaviorInfo, parameters) + 0x30 * parameters.EffectCount + (4 * parameters.VoiceCount) + 0x8F) & ~0x3FL) +
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((parameters.VoiceCount << 8) | 0x40);
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if (parameters.PerformanceManagerCount >= 1)
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{
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size += (PerformanceManager.GetRequiredBufferSizeForPerformanceMetricsPerFrame(behaviorInfo, parameters) *
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(parameters.PerformanceManagerCount + 1) + 0xFF) & ~0x3FL;
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}
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if (behaviorInfo.IsVariadicCommandBufferSizeSupported())
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{
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size += CommandGenerator.CalculateCommandBufferSize(parameters) + 0x7E;
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}
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else
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{
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size += 0x1807E;
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}
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size = BitUtils.AlignUp(size, 0x1000);
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context.ResponseData.Write(size);
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Logger.Debug?.Print(LogClass.ServiceAudio, $"WorkBufferSize is 0x{size:x16}.");
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return ResultCode.Success;
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}
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else
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{
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context.ResponseData.Write(0L);
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Logger.Warning?.Print(LogClass.ServiceAudio, $"Library Revision REV{AudioRendererCommon.GetRevisionVersion(parameters.Revision)} is not supported!");
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return ResultCode.UnsupportedRevision;
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}
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}
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private AudioRendererParameter GetAudioRendererParameter(ServiceCtx context)
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{
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AudioRendererParameter Params = new AudioRendererParameter
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{
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SampleRate = context.RequestData.ReadInt32(),
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SampleCount = context.RequestData.ReadInt32(),
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MixBufferCount = context.RequestData.ReadInt32(),
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SubMixCount = context.RequestData.ReadInt32(),
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VoiceCount = context.RequestData.ReadInt32(),
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SinkCount = context.RequestData.ReadInt32(),
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EffectCount = context.RequestData.ReadInt32(),
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PerformanceManagerCount = context.RequestData.ReadInt32(),
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VoiceDropEnable = context.RequestData.ReadInt32(),
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SplitterCount = context.RequestData.ReadInt32(),
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SplitterDestinationDataCount = context.RequestData.ReadInt32(),
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Unknown2C = context.RequestData.ReadInt32(),
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Revision = context.RequestData.ReadInt32()
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};
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return Params;
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}
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[Command(2)]
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// GetAudioDeviceService(nn::applet::AppletResourceUserId) -> object<nn::audio::detail::IAudioDevice>
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public ResultCode GetAudioDeviceService(ServiceCtx context)
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{
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long appletResourceUserId = context.RequestData.ReadInt64();
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MakeObject(context, new IAudioDevice(context.Device.System));
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return ResultCode.Success;
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}
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[Command(4)] // 4.0.0+
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// GetAudioDeviceServiceWithRevisionInfo(u32 revision_info, nn::applet::AppletResourceUserId) -> object<nn::audio::detail::IAudioDevice>
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public ResultCode GetAudioDeviceServiceWithRevisionInfo(ServiceCtx context)
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{
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int revisionInfo = context.RequestData.ReadInt32();
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long appletResourceUserId = context.RequestData.ReadInt64();
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Logger.Stub?.PrintStub(LogClass.ServiceAudio, new { appletResourceUserId, revisionInfo });
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return GetAudioDeviceService(context);
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}
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}
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}
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