mirror of
https://github.com/elasota/Aerofoil.git
synced 2025-09-23 14:53:52 +00:00
567 lines
13 KiB
C++
567 lines
13 KiB
C++
#include "IGpAudioDriver.h"
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#include "IGpAudioChannel.h"
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#include "IGpAudioChannelCallbacks.h"
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#include "IGpMutex.h"
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#include "IGpPrefsHandler.h"
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#include "IGpSystemServices.h"
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#include "GpAudioDriverProperties.h"
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#include "CoreDefs.h"
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#include "SDL_audio.h"
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#include "GpRingBuffer.h"
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#include "SDL_atomic.h"
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#include <stdlib.h>
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#include <string.h>
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#include <new>
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#include <stdio.h>
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class GpAudioDriver_SDL2;
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static void *AlignedAlloc(size_t size, size_t alignment)
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{
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void *storage = malloc(size + alignment);
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if (!storage)
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return nullptr;
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uintptr_t alignedPtr = reinterpret_cast<uintptr_t>(storage);
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size_t padding = alignment - static_cast<size_t>(alignedPtr % alignment);
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uint8_t *storageLoc = static_cast<uint8_t*>(storage);
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uint8_t *objectLoc = storageLoc + padding;
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uint8_t *paddingSizeLoc = storageLoc + padding - 1;
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*reinterpret_cast<uint8_t*>(paddingSizeLoc) = static_cast<uint8_t>(padding);
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return objectLoc;
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}
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static void AlignedFree(void *ptr)
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{
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size_t padding = static_cast<uint8_t*>(ptr)[-1];
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void *storageLoc = static_cast<uint8_t*>(ptr) - padding;
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free(storageLoc);
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}
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struct GpAudioChannelBufferChain_SDL2 final
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{
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GpAudioChannelBufferChain_SDL2();
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static GpAudioChannelBufferChain_SDL2 *Alloc();
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void Release();
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static const size_t kMaxCapacity = 65536;
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size_t m_consumed;
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size_t m_used;
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uint8_t m_data[kMaxCapacity];
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GpAudioChannelBufferChain_SDL2 *m_next;
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bool m_hasTrigger;
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};
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class GP_ALIGNED(GP_SYSTEM_MEMORY_ALIGNMENT) GpAudioChannel_SDL2 final : public IGpAudioChannel
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{
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public:
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enum ChannelState
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{
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ChannelState_Idle,
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ChannelState_Playing,
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ChannelState_Stopped,
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};
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friend class GpAudioDriver_SDL2;
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GpAudioChannel_SDL2();
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~GpAudioChannel_SDL2();
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void AddRef();
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void Release();
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void SetAudioChannelContext(IGpAudioChannelCallbacks *callbacks) override;
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void PostBuffer(const void *buffer, size_t bufferSize) override;
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void Stop() override;
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void Destroy() override;
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void Consume(uint8_t *output, size_t sz);
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static GpAudioChannel_SDL2 *Alloc(GpAudioDriver_SDL2 *driver);
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private:
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bool Init(GpAudioDriver_SDL2 *driver);
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IGpAudioChannelCallbacks *m_callbacks;
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IGpMutex *m_mutex;
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GpAudioDriver_SDL2 *m_owner;
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SDL_atomic_t m_refCount;
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GpAudioChannelBufferChain_SDL2 *m_firstPendingBuffer;
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GpAudioChannelBufferChain_SDL2 *m_lastPendingBuffer;
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ChannelState m_channelState;
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};
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class GP_ALIGNED(GP_SYSTEM_MEMORY_ALIGNMENT) GpAudioDriver_SDL2 final : public IGpAudioDriver, public IGpPrefsHandler
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{
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public:
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friend class GpAudioChannel_SDL2;
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explicit GpAudioDriver_SDL2(const GpAudioDriverProperties &properties);
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~GpAudioDriver_SDL2();
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IGpAudioChannel *CreateChannel() override;
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void SetMasterVolume(uint32_t vol, uint32_t maxVolume) override;
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void Shutdown() override;
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IGpPrefsHandler *GetPrefsHandler() const override;
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void ApplyPrefs(const void *identifier, size_t identifierSize, const void *contents, size_t contentsSize, uint32_t version) override;
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bool SavePrefs(void *context, WritePrefsFunc_t writeFunc) override;
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bool Init();
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private:
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void DetachAudioChannel(GpAudioChannel_SDL2 *channel);
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static void SDLCALL StaticMixAudio(void *userdata, Uint8 *stream, int len);
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void MixAudio(void *stream, size_t len);
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void RefillMixChunk(GpAudioChannel_SDL2 *const*channels, size_t numChannels);
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GpAudioDriverProperties m_properties;
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IGpMutex *m_mutex;
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IGpMutex *m_mixState;
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static const size_t kMaxChannels = 16;
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static const size_t kMixChunkSize = 256;
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GpAudioChannel_SDL2 *m_channels[kMaxChannels];
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size_t m_numChannels;
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bool m_sdlAudioRunning;
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GP_ALIGNED(GP_SYSTEM_MEMORY_ALIGNMENT) int16_t m_mixChunk[kMixChunkSize];
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size_t m_mixChunkReadOffset;
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};
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GpAudioChannelBufferChain_SDL2::GpAudioChannelBufferChain_SDL2()
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: m_used(0)
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, m_consumed(0)
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, m_next(nullptr)
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, m_hasTrigger(false)
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{
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}
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GpAudioChannelBufferChain_SDL2 *GpAudioChannelBufferChain_SDL2::Alloc()
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{
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void *storage = AlignedAlloc(sizeof(GpAudioChannelBufferChain_SDL2), GP_SYSTEM_MEMORY_ALIGNMENT);
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return new (storage) GpAudioChannelBufferChain_SDL2();
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}
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void GpAudioChannelBufferChain_SDL2::Release()
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{
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this->~GpAudioChannelBufferChain_SDL2();
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AlignedFree(this);
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}
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/////////////////////////////////////////////////////////////////////////////////////////
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// GpAudioChannel
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GpAudioChannel_SDL2::GpAudioChannel_SDL2()
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: m_callbacks(nullptr)
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, m_mutex(nullptr)
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, m_owner(nullptr)
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, m_firstPendingBuffer(nullptr)
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, m_lastPendingBuffer(nullptr)
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{
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SDL_AtomicSet(&m_refCount, 1);
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}
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GpAudioChannel_SDL2::~GpAudioChannel_SDL2()
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{
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Stop();
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if (m_mutex)
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m_mutex->Destroy();
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while (m_firstPendingBuffer)
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{
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GpAudioChannelBufferChain_SDL2 *buffer = m_firstPendingBuffer;
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m_firstPendingBuffer = buffer->m_next;
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buffer->Release();
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}
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}
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void GpAudioChannel_SDL2::AddRef()
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{
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SDL_AtomicIncRef(&m_refCount);
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}
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void GpAudioChannel_SDL2::Release()
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{
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if (SDL_AtomicDecRef(&m_refCount))
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{
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this->~GpAudioChannel_SDL2();
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AlignedFree(this);
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}
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}
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void GpAudioChannel_SDL2::SetAudioChannelContext(IGpAudioChannelCallbacks *callbacks)
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{
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m_callbacks = callbacks;
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}
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void GpAudioChannel_SDL2::PostBuffer(const void *buffer, size_t bufferSize)
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{
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m_mutex->Lock();
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while (bufferSize > 0)
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{
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GpAudioChannelBufferChain_SDL2 *newBuffer = GpAudioChannelBufferChain_SDL2::Alloc();
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if (newBuffer == nullptr)
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break;
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if (m_lastPendingBuffer == nullptr)
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m_firstPendingBuffer = newBuffer;
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else
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m_lastPendingBuffer->m_next = newBuffer;
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m_lastPendingBuffer = newBuffer;
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size_t bufferable = newBuffer->kMaxCapacity;
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if (bufferSize < bufferable)
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bufferable = bufferSize;
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memcpy(newBuffer->m_data, buffer, bufferable);
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buffer = static_cast<const uint8_t*>(buffer) + bufferable;
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bufferSize -= bufferable;
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m_lastPendingBuffer->m_used = bufferable;
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m_lastPendingBuffer->m_hasTrigger = (bufferSize == 0);
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}
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m_mutex->Unlock();
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}
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void GpAudioChannel_SDL2::Stop()
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{
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m_mutex->Lock();
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GpAudioChannelBufferChain_SDL2 *buffer = m_firstPendingBuffer;
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m_firstPendingBuffer = nullptr;
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m_lastPendingBuffer = nullptr;
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while (buffer)
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{
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if (buffer->m_hasTrigger && m_callbacks)
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m_callbacks->NotifyBufferFinished();
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GpAudioChannelBufferChain_SDL2 *nextBuffer = buffer->m_next;
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buffer->Release();
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buffer = nextBuffer;
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}
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m_mutex->Unlock();
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}
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void GpAudioChannel_SDL2::Destroy()
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{
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if (m_owner)
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m_owner->DetachAudioChannel(this);
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this->Release();
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}
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bool GpAudioChannel_SDL2::Init(GpAudioDriver_SDL2 *driver)
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{
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m_owner = driver;
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m_mutex = driver->m_properties.m_systemServices->CreateRecursiveMutex();
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if (!m_mutex)
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return false;
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return true;
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}
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void GpAudioChannel_SDL2::Consume(uint8_t *output, size_t sz)
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{
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m_mutex->Lock();
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while (m_firstPendingBuffer != nullptr)
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{
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GpAudioChannelBufferChain_SDL2 *buffer = m_firstPendingBuffer;
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const size_t available = (buffer->m_used - buffer->m_consumed);
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if (available <= sz)
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{
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memcpy(output, buffer->m_data + buffer->m_consumed, available);
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sz -= available;
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output += available;
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m_firstPendingBuffer = buffer->m_next;
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if (m_firstPendingBuffer == nullptr)
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m_lastPendingBuffer = nullptr;
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if (buffer->m_hasTrigger && m_callbacks)
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m_callbacks->NotifyBufferFinished();
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buffer->Release();
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if (sz == 0)
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break;
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}
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else
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{
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memcpy(output, buffer->m_data + buffer->m_consumed, sz);
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buffer->m_consumed += sz;
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buffer += sz;
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sz = 0;
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break;
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}
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}
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m_mutex->Unlock();
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memset(output, 0x80, sz);
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}
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GpAudioChannel_SDL2 *GpAudioChannel_SDL2::Alloc(GpAudioDriver_SDL2 *driver)
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{
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void *storage = AlignedAlloc(sizeof(GpAudioChannel_SDL2), GP_SYSTEM_MEMORY_ALIGNMENT);
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if (!storage)
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return nullptr;
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GpAudioChannel_SDL2 *channel = new (storage) GpAudioChannel_SDL2();
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if (!channel->Init(driver))
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{
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channel->Destroy();
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return nullptr;
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}
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return channel;
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}
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/////////////////////////////////////////////////////////////////////////////////////////
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// GpAudioDriver_SDL2
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GpAudioDriver_SDL2::GpAudioDriver_SDL2(const GpAudioDriverProperties &properties)
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: m_properties(properties)
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, m_mutex(nullptr)
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, m_numChannels(0)
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, m_sdlAudioRunning(false)
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, m_mixChunkReadOffset(kMixChunkSize)
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{
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for (size_t i = 0; i < kMaxChannels; i++)
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m_channels[i] = nullptr;
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for (size_t i = 0; i < kMixChunkSize; i++)
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m_mixChunk[i] = 0;
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}
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GpAudioDriver_SDL2::~GpAudioDriver_SDL2()
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{
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if (m_sdlAudioRunning)
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SDL_CloseAudio();
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if (m_mutex)
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m_mutex->Destroy();
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}
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IGpAudioChannel *GpAudioDriver_SDL2::CreateChannel()
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{
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GpAudioChannel_SDL2 *newChannel = GpAudioChannel_SDL2::Alloc(this);
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if (!newChannel)
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return nullptr;
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m_mutex->Lock();
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if (m_numChannels == kMaxChannels)
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{
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newChannel->Destroy();
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m_mutex->Unlock();
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return nullptr;
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}
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m_channels[m_numChannels] = newChannel;
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m_numChannels++;
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m_mutex->Unlock();
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return newChannel;
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}
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void GpAudioDriver_SDL2::SetMasterVolume(uint32_t vol, uint32_t maxVolume)
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{
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}
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void GpAudioDriver_SDL2::Shutdown()
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{
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this->~GpAudioDriver_SDL2();
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AlignedFree(this);
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}
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IGpPrefsHandler *GpAudioDriver_SDL2::GetPrefsHandler() const
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{
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return const_cast<GpAudioDriver_SDL2*>(this);
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}
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void GpAudioDriver_SDL2::ApplyPrefs(const void *identifier, size_t identifierSize, const void *contents, size_t contentsSize, uint32_t version)
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{
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}
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bool GpAudioDriver_SDL2::SavePrefs(void *context, WritePrefsFunc_t writeFunc)
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{
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return true;
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}
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bool GpAudioDriver_SDL2::Init()
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{
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m_mutex = m_properties.m_systemServices->CreateMutex();
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if (!m_mutex)
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return false;
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SDL_AudioSpec requestedSpec;
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memset(&requestedSpec, 0, sizeof(requestedSpec));
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requestedSpec.callback = GpAudioDriver_SDL2::StaticMixAudio;
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requestedSpec.channels = 1;
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requestedSpec.format = AUDIO_S16;
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requestedSpec.freq = m_properties.m_sampleRate;
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requestedSpec.samples = 512;
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requestedSpec.userdata = this;
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if (SDL_OpenAudio(&requestedSpec, nullptr))
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{
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requestedSpec.freq = 22050;
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if (SDL_OpenAudio(&requestedSpec, nullptr))
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return false;
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}
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SDL_PauseAudio(0);
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m_sdlAudioRunning = true;
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return true;
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}
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void GpAudioDriver_SDL2::DetachAudioChannel(GpAudioChannel_SDL2 *channel)
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{
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m_mutex->Lock();
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const size_t numChannels = m_numChannels;
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for (size_t i = 0; i < numChannels; i++)
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{
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if (m_channels[i] == channel)
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{
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m_numChannels = numChannels - 1;
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m_channels[i] = m_channels[numChannels - 1];
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m_channels[numChannels - 1] = nullptr;
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break;
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}
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}
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m_mutex->Unlock();
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}
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void GpAudioDriver_SDL2::StaticMixAudio(void *userdata, Uint8 *stream, int len)
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{
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static_cast<GpAudioDriver_SDL2*>(userdata)->MixAudio(stream, static_cast<size_t>(len));
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}
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void GpAudioDriver_SDL2::MixAudio(void *stream, size_t len)
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{
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GpAudioChannel_SDL2 *mixingChannels[kMaxChannels];
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size_t numChannels = 0;
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m_mutex->Lock();
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numChannels = m_numChannels;
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for (size_t i = 0; i < numChannels; i++)
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{
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GpAudioChannel_SDL2 *channel = m_channels[i];
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channel->AddRef();
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mixingChannels[i] = channel;
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}
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m_mutex->Unlock();
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size_t samplesRemaining = len / sizeof(int16_t);
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for (;;)
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{
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size_t availableInMixChunk = kMixChunkSize - m_mixChunkReadOffset;
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if (availableInMixChunk > samplesRemaining)
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{
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m_mixChunkReadOffset += samplesRemaining;
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memcpy(stream, m_mixChunk + m_mixChunkReadOffset, samplesRemaining * sizeof(int16_t));
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break;
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}
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else
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{
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memcpy(stream, m_mixChunk + m_mixChunkReadOffset, availableInMixChunk * sizeof(int16_t));
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stream = static_cast<int16_t*>(stream) + availableInMixChunk;
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samplesRemaining -= availableInMixChunk;
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m_mixChunkReadOffset = 0;
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RefillMixChunk(mixingChannels, numChannels);
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}
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}
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for (size_t i = 0; i < numChannels; i++)
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mixingChannels[i]->Release();
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}
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void GpAudioDriver_SDL2::RefillMixChunk(GpAudioChannel_SDL2 *const*channels, size_t numChannels)
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{
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uint8_t audioMixBufferUnaligned[kMixChunkSize + GP_SYSTEM_MEMORY_ALIGNMENT];
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uint8_t *audioMixBuffer = audioMixBufferUnaligned;
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{
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uintptr_t bufferPtr = reinterpret_cast<uintptr_t>(audioMixBuffer);
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size_t alignPadding = GP_SYSTEM_MEMORY_ALIGNMENT - (bufferPtr % GP_SYSTEM_MEMORY_ALIGNMENT);
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audioMixBuffer += alignPadding;
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}
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bool noAudio = true;
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for (size_t i = 0; i < numChannels; i++)
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{
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channels[i]->Consume(audioMixBuffer, kMixChunkSize);
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if (i == 0)
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{
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noAudio = false;
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for (size_t j = 0; j < kMixChunkSize; j++)
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m_mixChunk[j] = (audioMixBuffer[j] - 0x80) * 25;
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}
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else
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{
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for (size_t j = 0; j < kMixChunkSize; j++)
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m_mixChunk[j] += (audioMixBuffer[j] - 0x80) * 25;
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}
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}
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if (noAudio)
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memset(m_mixChunk, 0, kMixChunkSize * sizeof(m_mixChunk[0]));
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}
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IGpAudioDriver *GpDriver_CreateAudioDriver_SDL(const GpAudioDriverProperties &properties)
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{
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void *storage = AlignedAlloc(sizeof(GpAudioDriver_SDL2), GP_SYSTEM_MEMORY_ALIGNMENT);
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if (!storage)
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return nullptr;
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GpAudioDriver_SDL2 *driver = new (storage) GpAudioDriver_SDL2(properties);
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if (!driver->Init())
|
|
{
|
|
driver->Shutdown();
|
|
return nullptr;
|
|
}
|
|
|
|
return driver;
|
|
}
|