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https://github.com/Ryujinx/Ryujinx.git
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Fix hwopus DecodeInterleaved implementation (#786)
* Fix hwopus DecodeInterleaved implementation Also implement new variants of this api. This should fix #763 * Sample rate shouldn't be hardcoded This fix issues while opening Pokémon Let's Go pause menu. * Apply Ac_K's suggestion about EndianSwap * Address gdkchan's comment * Address Ac_k's comment
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parent
1aba033ba7
commit
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5 changed files with 240 additions and 50 deletions
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@ -1,6 +1,8 @@
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namespace Ryujinx.HLE.Utilities
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using System;
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namespace Ryujinx.Common
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{
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static class EndianSwap
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public static class EndianSwap
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{
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public static ushort Swap16(ushort value) => (ushort)(((value >> 8) & 0xff) | (value << 8));
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@ -13,5 +15,17 @@
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((uintVal << 8) & 0x00ff0000) |
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((uintVal << 24) & 0xff000000));
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}
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public static uint FromBigEndianToPlatformEndian(uint value)
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{
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uint result = value;
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if (BitConverter.IsLittleEndian)
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{
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result = (uint)EndianSwap.Swap32((int)result);
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}
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return result;
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}
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}
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}
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@ -1,9 +1,9 @@
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using LibHac.Fs;
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using LibHac.Fs.NcaUtils;
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using Ryujinx.Common;
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using Ryujinx.HLE.FileSystem;
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using Ryujinx.HLE.FileSystem.Content;
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using Ryujinx.HLE.Resource;
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using Ryujinx.HLE.Utilities;
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using System.Collections.Generic;
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using System.IO;
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using static Ryujinx.HLE.Utilities.FontUtils;
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@ -1,13 +1,18 @@
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using Concentus;
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using Concentus.Enums;
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using Concentus.Structs;
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using Ryujinx.HLE.HOS.Services.Audio.Types;
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using System;
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using System.IO;
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using System.Runtime.InteropServices;
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namespace Ryujinx.HLE.HOS.Services.Audio.HardwareOpusDecoderManager
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{
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class IHardwareOpusDecoder : IpcService
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{
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private const int FixedSampleRate = 48000;
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private int _sampleRate;
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private int _channelsCount;
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private int _sampleRate;
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private int _channelsCount;
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private bool _reset;
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private OpusDecoder _decoder;
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@ -15,65 +20,211 @@ namespace Ryujinx.HLE.HOS.Services.Audio.HardwareOpusDecoderManager
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{
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_sampleRate = sampleRate;
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_channelsCount = channelsCount;
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_reset = false;
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_decoder = new OpusDecoder(FixedSampleRate, channelsCount);
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_decoder = new OpusDecoder(sampleRate, channelsCount);
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}
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[Command(0)]
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// DecodeInterleaved(buffer<unknown, 5>) -> (u32, u32, buffer<unknown, 6>)
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public ResultCode DecodeInterleaved(ServiceCtx context)
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private ResultCode GetPacketNumSamples(out int numSamples, byte[] packet)
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{
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long inPosition = context.Request.SendBuff[0].Position;
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long inSize = context.Request.SendBuff[0].Size;
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int result = OpusPacketInfo.GetNumSamples(_decoder, packet, 0, packet.Length);
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if (inSize < 8)
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numSamples = result;
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if (result == OpusError.OPUS_INVALID_PACKET)
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{
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return ResultCode.OpusInvalidInput;
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}
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long outPosition = context.Request.ReceiveBuff[0].Position;
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long outSize = context.Request.ReceiveBuff[0].Size;
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byte[] opusData = context.Memory.ReadBytes(inPosition, inSize);
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int processed = ((opusData[0] << 24) |
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(opusData[1] << 16) |
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(opusData[2] << 8) |
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(opusData[3] << 0)) + 8;
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if ((uint)processed > (ulong)inSize)
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else if (result == OpusError.OPUS_BAD_ARG)
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{
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return ResultCode.OpusInvalidInput;
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}
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short[] pcm = new short[outSize / 2];
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int frameSize = pcm.Length / (_channelsCount * 2);
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int samples = _decoder.Decode(opusData, 0, opusData.Length, pcm, 0, frameSize);
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foreach (short sample in pcm)
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{
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context.Memory.WriteInt16(outPosition, sample);
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outPosition += 2;
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}
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context.ResponseData.Write(processed);
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context.ResponseData.Write(samples);
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return ResultCode.Success;
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}
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[Command(4)]
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// DecodeInterleavedWithPerf(buffer<unknown, 5>) -> (u32, u32, u64, buffer<unknown, 0x46>)
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public ResultCode DecodeInterleavedWithPerf(ServiceCtx context)
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private ResultCode DecodeInterleavedInternal(BinaryReader input, out short[] outPcmData, long outputSize, out uint outConsumed, out int outSamples)
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{
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ResultCode result = DecodeInterleaved(context);
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outPcmData = null;
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outConsumed = 0;
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outSamples = 0;
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// TODO: Figure out what this value is.
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// According to switchbrew, it is now used.
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context.ResponseData.Write(0L);
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long streamSize = input.BaseStream.Length;
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if (streamSize < Marshal.SizeOf<OpusPacketHeader>())
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{
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return ResultCode.OpusInvalidInput;
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}
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OpusPacketHeader header = OpusPacketHeader.FromStream(input);
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uint totalSize = header.length + (uint)Marshal.SizeOf<OpusPacketHeader>();
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if (totalSize > streamSize)
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{
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return ResultCode.OpusInvalidInput;
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}
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byte[] opusData = input.ReadBytes((int)header.length);
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ResultCode result = GetPacketNumSamples(out int numSamples, opusData);
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if (result == ResultCode.Success)
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{
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if ((uint)numSamples * (uint)_channelsCount * sizeof(short) > outputSize)
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{
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return ResultCode.OpusInvalidInput;
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}
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outPcmData = new short[numSamples * _channelsCount];
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if (_reset)
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{
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_reset = false;
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_decoder.ResetState();
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}
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try
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{
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outSamples = _decoder.Decode(opusData, 0, opusData.Length, outPcmData, 0, outPcmData.Length / _channelsCount);
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outConsumed = totalSize;
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}
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catch (OpusException)
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{
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// TODO: as OpusException doesn't provide us the exact error code, this is kind of inaccurate in some cases...
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return ResultCode.OpusInvalidInput;
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}
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}
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return ResultCode.Success;
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}
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[Command(0)]
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// DecodeInterleaved(buffer<unknown, 5>) -> (u32, u32, buffer<unknown, 6>)
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public ResultCode DecodeInterleavedOriginal(ServiceCtx context)
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{
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ResultCode result;
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long inPosition = context.Request.SendBuff[0].Position;
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long inSize = context.Request.SendBuff[0].Size;
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long outputPosition = context.Request.ReceiveBuff[0].Position;
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long outputSize = context.Request.ReceiveBuff[0].Size;
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using (BinaryReader inputStream = new BinaryReader(new MemoryStream(context.Memory.ReadBytes(inPosition, inSize))))
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{
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result = DecodeInterleavedInternal(inputStream, out short[] outPcmData, outputSize, out uint outConsumed, out int outSamples);
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if (result == ResultCode.Success)
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{
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byte[] pcmDataBytes = new byte[outPcmData.Length * sizeof(short)];
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Buffer.BlockCopy(outPcmData, 0, pcmDataBytes, 0, pcmDataBytes.Length);
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context.Memory.WriteBytes(outputPosition, pcmDataBytes);
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context.ResponseData.Write(outConsumed);
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context.ResponseData.Write(outSamples);
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}
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}
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return result;
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}
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[Command(4)] // 6.0.0+
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// DecodeInterleavedWithPerfOld(buffer<unknown, 5>) -> (u32, u32, u64, buffer<unknown, 0x46>)
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public ResultCode DecodeInterleavedWithPerfOld(ServiceCtx context)
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{
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ResultCode result;
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long inPosition = context.Request.SendBuff[0].Position;
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long inSize = context.Request.SendBuff[0].Size;
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long outputPosition = context.Request.ReceiveBuff[0].Position;
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long outputSize = context.Request.ReceiveBuff[0].Size;
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using (BinaryReader inputStream = new BinaryReader(new MemoryStream(context.Memory.ReadBytes(inPosition, inSize))))
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{
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result = DecodeInterleavedInternal(inputStream, out short[] outPcmData, outputSize, out uint outConsumed, out int outSamples);
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if (result == ResultCode.Success)
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{
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byte[] pcmDataBytes = new byte[outPcmData.Length * sizeof(short)];
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Buffer.BlockCopy(outPcmData, 0, pcmDataBytes, 0, pcmDataBytes.Length);
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context.Memory.WriteBytes(outputPosition, pcmDataBytes);
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context.ResponseData.Write(outConsumed);
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context.ResponseData.Write(outSamples);
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// This is the time the DSP took to process the request, TODO: fill this.
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context.ResponseData.Write(0);
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}
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}
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return result;
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}
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[Command(6)] // 6.0.0+
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// DecodeInterleavedOld(bool reset, buffer<unknown, 5>) -> (u32, u32, u64, buffer<unknown, 0x46>)
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public ResultCode DecodeInterleavedOld(ServiceCtx context)
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{
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ResultCode result;
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_reset = context.RequestData.ReadBoolean();
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long inPosition = context.Request.SendBuff[0].Position;
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long inSize = context.Request.SendBuff[0].Size;
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long outputPosition = context.Request.ReceiveBuff[0].Position;
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long outputSize = context.Request.ReceiveBuff[0].Size;
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using (BinaryReader inputStream = new BinaryReader(new MemoryStream(context.Memory.ReadBytes(inPosition, inSize))))
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{
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result = DecodeInterleavedInternal(inputStream, out short[] outPcmData, outputSize, out uint outConsumed, out int outSamples);
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if (result == ResultCode.Success)
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{
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byte[] pcmDataBytes = new byte[outPcmData.Length * sizeof(short)];
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Buffer.BlockCopy(outPcmData, 0, pcmDataBytes, 0, pcmDataBytes.Length);
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context.Memory.WriteBytes(outputPosition, pcmDataBytes);
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context.ResponseData.Write(outConsumed);
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context.ResponseData.Write(outSamples);
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// This is the time the DSP took to process the request, TODO: fill this.
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context.ResponseData.Write(0);
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}
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}
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return result;
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}
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[Command(8)] // 7.0.0+
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// DecodeInterleaved(bool reset, buffer<unknown, 0x45>) -> (u32, u32, u64, buffer<unknown, 0x46>)
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public ResultCode DecodeInterleaved(ServiceCtx context)
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{
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ResultCode result;
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_reset = context.RequestData.ReadBoolean();
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long inPosition = context.Request.SendBuff[0].Position;
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long inSize = context.Request.SendBuff[0].Size;
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long outputPosition = context.Request.ReceiveBuff[0].Position;
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long outputSize = context.Request.ReceiveBuff[0].Size;
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using (BinaryReader inputStream = new BinaryReader(new MemoryStream(context.Memory.ReadBytes(inPosition, inSize))))
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{
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result = DecodeInterleavedInternal(inputStream, out short[] outPcmData, outputSize, out uint outConsumed, out int outSamples);
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if (result == ResultCode.Success)
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{
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byte[] pcmDataBytes = new byte[outPcmData.Length * sizeof(short)];
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Buffer.BlockCopy(outPcmData, 0, pcmDataBytes, 0, pcmDataBytes.Length);
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context.Memory.WriteBytes(outputPosition, pcmDataBytes);
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context.ResponseData.Write(outConsumed);
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context.ResponseData.Write(outSamples);
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// This is the time the DSP took to process the request, TODO: fill this.
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context.ResponseData.Write(0);
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}
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}
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return result;
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}
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24
Ryujinx.HLE/HOS/Services/Audio/Types/OpusPacketHeader.cs
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24
Ryujinx.HLE/HOS/Services/Audio/Types/OpusPacketHeader.cs
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using Ryujinx.Common;
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using System;
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using System.IO;
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using System.Runtime.InteropServices;
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namespace Ryujinx.HLE.HOS.Services.Audio.Types
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{
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[StructLayout(LayoutKind.Sequential)]
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struct OpusPacketHeader
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{
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public uint length;
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public uint finalRange;
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public static OpusPacketHeader FromStream(BinaryReader reader)
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{
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OpusPacketHeader header = reader.ReadStruct<OpusPacketHeader>();
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header.length = EndianSwap.FromBigEndianToPlatformEndian(header.length);
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header.finalRange = EndianSwap.FromBigEndianToPlatformEndian(header.finalRange);
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return header;
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}
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}
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}
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using Ryujinx.Common.Logging;
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using Ryujinx.Common;
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using Ryujinx.Common.Logging;
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using Ryujinx.HLE.Utilities;
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using System.Collections.Generic;
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using System.Net;
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