fb1d9493a3
* Rename enum fields * Naming conventions * Remove unneeded ".this" * Remove unneeded semicolons * Remove unused Usings * Don't use var * Remove unneeded enum underlying types * Explicitly label class visibility * Remove unneeded @ prefixes * Remove unneeded commas * Remove unneeded if expressions * Method doesn't use unsafe code * Remove unneeded casts * Initialized objects don't need an empty constructor * Remove settings from DotSettings * Revert "Explicitly label class visibility" This reverts commit ad5eb5787cc5b27a4631cd46ef5f551c4ae95e51. * Small changes * Revert external enum renaming * Changes from feedback * Apply previous refactorings to the merged code
195 lines
5.1 KiB
C#
195 lines
5.1 KiB
C#
using ChocolArm64.Memory;
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using Ryujinx.Audio.Adpcm;
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using System;
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namespace Ryujinx.HLE.HOS.Services.Aud.AudioRenderer
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{
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class VoiceContext
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{
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private bool _acquired;
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private bool _bufferReload;
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private int _resamplerFracPart;
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private int _bufferIndex;
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private int _offset;
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public int SampleRate;
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public int ChannelsCount;
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public float Volume;
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public PlayState PlayState;
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public SampleFormat SampleFormat;
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public AdpcmDecoderContext AdpcmCtx;
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public WaveBuffer[] WaveBuffers;
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public VoiceOut OutStatus;
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private int[] _samples;
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public bool Playing => _acquired && PlayState == PlayState.Playing;
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public VoiceContext()
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{
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WaveBuffers = new WaveBuffer[4];
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}
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public void SetAcquireState(bool newState)
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{
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if (_acquired && !newState)
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{
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//Release.
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Reset();
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}
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_acquired = newState;
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}
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private void Reset()
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{
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_bufferReload = true;
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_bufferIndex = 0;
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_offset = 0;
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OutStatus.PlayedSamplesCount = 0;
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OutStatus.PlayedWaveBuffersCount = 0;
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OutStatus.VoiceDropsCount = 0;
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}
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public int[] GetBufferData(MemoryManager memory, int maxSamples, out int samplesCount)
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{
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if (!Playing)
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{
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samplesCount = 0;
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return null;
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}
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if (_bufferReload)
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{
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_bufferReload = false;
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UpdateBuffer(memory);
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}
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WaveBuffer wb = WaveBuffers[_bufferIndex];
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int maxSize = _samples.Length - _offset;
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int size = maxSamples * AudioConsts.HostChannelsCount;
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if (size > maxSize)
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{
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size = maxSize;
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}
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int[] output = new int[size];
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Array.Copy(_samples, _offset, output, 0, size);
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samplesCount = size / AudioConsts.HostChannelsCount;
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OutStatus.PlayedSamplesCount += samplesCount;
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_offset += size;
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if (_offset == _samples.Length)
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{
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_offset = 0;
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if (wb.Looping == 0)
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{
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SetBufferIndex((_bufferIndex + 1) & 3);
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}
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OutStatus.PlayedWaveBuffersCount++;
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if (wb.LastBuffer != 0)
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{
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PlayState = PlayState.Paused;
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}
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}
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return output;
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}
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private void UpdateBuffer(MemoryManager memory)
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{
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//TODO: Implement conversion for formats other
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//than interleaved stereo (2 channels).
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//As of now, it assumes that HostChannelsCount == 2.
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WaveBuffer wb = WaveBuffers[_bufferIndex];
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if (wb.Position == 0)
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{
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_samples = new int[0];
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return;
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}
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if (SampleFormat == SampleFormat.PcmInt16)
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{
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int samplesCount = (int)(wb.Size / (sizeof(short) * ChannelsCount));
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_samples = new int[samplesCount * AudioConsts.HostChannelsCount];
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if (ChannelsCount == 1)
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{
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for (int index = 0; index < samplesCount; index++)
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{
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short sample = memory.ReadInt16(wb.Position + index * 2);
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_samples[index * 2 + 0] = sample;
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_samples[index * 2 + 1] = sample;
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}
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}
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else
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{
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for (int index = 0; index < samplesCount * 2; index++)
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{
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_samples[index] = memory.ReadInt16(wb.Position + index * 2);
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}
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}
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}
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else if (SampleFormat == SampleFormat.Adpcm)
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{
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byte[] buffer = memory.ReadBytes(wb.Position, wb.Size);
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_samples = AdpcmDecoder.Decode(buffer, AdpcmCtx);
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}
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else
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{
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throw new InvalidOperationException();
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}
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if (SampleRate != AudioConsts.HostSampleRate)
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{
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//TODO: We should keep the frames being discarded (see the 4 below)
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//on a buffer and include it on the next samples buffer, to allow
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//the resampler to do seamless interpolation between wave buffers.
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int samplesCount = _samples.Length / AudioConsts.HostChannelsCount;
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samplesCount = Math.Max(samplesCount - 4, 0);
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_samples = Resampler.Resample2Ch(
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_samples,
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SampleRate,
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AudioConsts.HostSampleRate,
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samplesCount,
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ref _resamplerFracPart);
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}
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}
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public void SetBufferIndex(int index)
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{
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_bufferIndex = index & 3;
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_bufferReload = true;
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}
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}
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}
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