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// Copyright 2013 Dolphin Emulator Project
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// Licensed under GPLv2
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// Refer to the license.txt file included.
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2009-03-26 03:29:14 -06:00
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2009-03-28 02:57:34 -06:00
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#ifndef _MIXER_H_
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#define _MIXER_H_
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2009-03-26 03:29:14 -06:00
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2011-02-11 11:59:42 -07:00
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#include "WaveFile.h"
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#include "StdMutex.h"
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// 16 bit Stereo
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#define MAX_SAMPLES (1024 * 8)
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#define INDEX_MASK (MAX_SAMPLES * 2 - 1)
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#define RESERVED_SAMPLES (256)
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class CMixer {
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public:
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CMixer(unsigned int AISampleRate = 48000, unsigned int DACSampleRate = 48000, unsigned int BackendSampleRate = 32000)
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: m_aiSampleRate(AISampleRate)
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, m_dacSampleRate(DACSampleRate)
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2009-12-22 00:26:30 -07:00
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, m_bits(16)
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, m_channels(2)
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, m_HLEready(false)
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, m_logAudio(0)
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, m_indexW(0)
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, m_indexR(0)
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, m_AIplaying(true)
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{
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// AyuanX: The internal (Core & DSP) sample rate is fixed at 32KHz
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// So when AI/DAC sample rate differs than 32KHz, we have to do re-sampling
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m_sampleRate = BackendSampleRate;
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memset(m_buffer, 0, sizeof(m_buffer));
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2009-12-25 15:10:56 -07:00
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INFO_LOG(AUDIO_INTERFACE, "Mixer is initialized (AISampleRate:%i, DACSampleRate:%i)", AISampleRate, DACSampleRate);
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}
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virtual ~CMixer() {}
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// Called from audio threads
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virtual unsigned int Mix(short* samples, unsigned int numSamples);
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virtual void Premix(short * /*samples*/, unsigned int /*numSamples*/) {}
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unsigned int GetNumSamples();
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// Called from main thread
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virtual void PushSamples(const short* samples, unsigned int num_samples);
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unsigned int GetSampleRate() const {return m_sampleRate;}
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void SetThrottle(bool use) { m_throttle = use;}
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// TODO: do we need this
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bool IsHLEReady() const { return m_HLEready;}
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void SetHLEReady(bool ready) { m_HLEready = ready;}
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// ---------------------
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virtual void StartLogAudio(const char *filename) {
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if (! m_logAudio) {
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m_logAudio = true;
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g_wave_writer.Start(filename, GetSampleRate());
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g_wave_writer.SetSkipSilence(false);
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NOTICE_LOG(DSPHLE, "Starting Audio logging");
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} else {
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WARN_LOG(DSPHLE, "Audio logging has already been started");
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}
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}
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virtual void StopLogAudio() {
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if (m_logAudio) {
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m_logAudio = false;
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g_wave_writer.Stop();
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NOTICE_LOG(DSPHLE, "Stopping Audio logging");
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} else {
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WARN_LOG(DSPHLE, "Audio logging has already been stopped");
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}
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}
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std::mutex& MixerCritical() { return m_csMixing; }
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2013-01-29 22:24:51 -07:00
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float GetCurrentSpeed() const { return m_speed; }
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void UpdateSpeed(volatile float val) { m_speed = val; }
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protected:
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unsigned int m_sampleRate;
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unsigned int m_aiSampleRate;
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unsigned int m_dacSampleRate;
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int m_bits;
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int m_channels;
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WaveFileWriter g_wave_writer;
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bool m_HLEready;
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bool m_logAudio;
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bool m_throttle;
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short m_buffer[MAX_SAMPLES * 2];
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volatile u32 m_indexW;
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volatile u32 m_indexR;
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bool m_AIplaying;
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std::mutex m_csMixing;
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volatile float m_speed; // Current rate of the emulation (1.0 = 100% speed)
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private:
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};
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2009-03-28 02:57:34 -06:00
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#endif // _MIXER_H_
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