mirror of
https://github.com/libretro/RetroArch
synced 2025-03-30 16:20:27 +00:00
commit
f330c0ebc7
@ -33,6 +33,7 @@ LIBS = $(WHOLE_START) -lretro_psp1 $(WHOLE_END) -lstdc++ -lpspgu -lpspgum -lm -l
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ifeq ($(HAVE_THREADS), 1)
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RARCH_DEFINES += -DHAVE_THREADS
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LIBS += -lpthread-psp
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endif
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ifeq ($(HAVE_FILE_LOGGER), 1)
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@ -20,6 +20,9 @@
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#include <stdio.h>
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#include <string.h>
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#include <rthreads/rthreads.h>
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#include <queues/fifo_queue.h>
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#ifdef VITA
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#include <psp2/kernel/processmgr.h>
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#include <psp2/kernel/threadmgr.h>
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@ -46,29 +49,21 @@ typedef struct psp_audio
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volatile uint16_t read_pos;
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volatile uint16_t write_pos;
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#ifdef VITA
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char lock[32] __attribute__ ((aligned (8)));
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char cond_lock[32] __attribute__ ((aligned (8)));
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char cond[32] __attribute__ ((aligned (8)));
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#else
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SceUID lock;
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SceUID cond;
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#endif
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sthread_t *worker_thread;
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slock_t *fifo_lock;
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scond_t *cond;
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slock_t *cond_lock;
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} psp_audio_t;
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#define AUDIO_OUT_COUNT 512u
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#define AUDIO_BUFFER_SIZE (1u<<13u)
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#define AUDIO_BUFFER_SIZE_MASK (AUDIO_BUFFER_SIZE-1)
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#ifdef VITA
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#define PSP_THREAD_STOPPED SCE_THREAD_STOPPED
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#else
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#define sceKernelGetThreadInfo sceKernelReferThreadStatus
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#endif
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static int audioMainLoop(SceSize args, void* argp)
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static void audioMainLoop(void *data)
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{
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psp_audio_t* psp = *((psp_audio_t**)argp);
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psp_audio_t* psp = (psp_audio_t*)data;
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#ifdef VITA
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int port = sceAudioOutOpenPort(
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SCE_AUDIO_OUT_PORT_TYPE_MAIN, AUDIO_OUT_COUNT,
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@ -83,11 +78,7 @@ static int audioMainLoop(SceSize args, void* argp)
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uint16_t read_pos = psp->read_pos;
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uint16_t read_pos_2 = psp->read_pos;
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#ifdef VITA
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sceKernelLockLwMutex((struct SceKernelLwMutexWork*)&psp->lock, 1, 0);
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#else
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sceKernelWaitSema(psp->lock, 1, 0);
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#endif
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slock_lock(psp->fifo_lock);
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cond = ((uint16_t)(psp->write_pos - read_pos) & AUDIO_BUFFER_SIZE_MASK)
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< (AUDIO_OUT_COUNT * 2);
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@ -99,18 +90,16 @@ static int audioMainLoop(SceSize args, void* argp)
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psp->read_pos = read_pos;
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}
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#ifdef VITA
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sceKernelUnlockLwMutex((struct SceKernelLwMutexWork*)&psp->lock, 1);
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sceKernelSignalLwCond((struct SceKernelLwCondWork*)&psp->cond);
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slock_unlock(psp->fifo_lock);
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slock_lock(psp->cond_lock);
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scond_signal(psp->cond);
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slock_unlock(psp->cond_lock);
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#ifdef VITA
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sceAudioOutOutput(port,
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cond ? (psp->zeroBuffer)
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: (psp->buffer + read_pos_2));
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#else
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sceKernelSignalSema(psp->lock, 1);
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if(!cond){
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sceKernelSignalSema(psp->cond, 1);
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}
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sceAudioSRCOutputBlocking(PSP_AUDIO_VOLUME_MAX, cond ? (psp->zeroBuffer)
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: (psp->buffer + read_pos));
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#endif
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@ -120,9 +109,9 @@ static int audioMainLoop(SceSize args, void* argp)
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sceAudioOutReleasePort(port);
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#else
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sceAudioSRCChRelease();
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sceKernelExitThread(0);
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#endif
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return 0;
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return;
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}
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static void *psp_audio_init(const char *device,
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@ -138,7 +127,6 @@ static void *psp_audio_init(const char *device,
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(void)device;
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(void)latency;
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/* Cache aligned, not necessary but helpful. */
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psp->buffer = (uint32_t*)
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memalign(64, AUDIO_BUFFER_SIZE * sizeof(uint32_t));
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@ -150,79 +138,67 @@ static void *psp_audio_init(const char *device,
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psp->read_pos = 0;
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psp->write_pos = 0;
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psp->rate = rate;
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#if defined(VITA)
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sceKernelCreateLwMutex((struct SceKernelLwMutexWork*)&psp->lock, "audio_get_lock", 0, 0, 0);
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sceKernelCreateLwMutex((struct SceKernelLwMutexWork*)&psp->cond_lock, "audio_get_cond_lock", 0, 0, 0);
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sceKernelCreateLwCond((struct SceKernelLwCondWork*)&psp->cond, "audio_get_cond", 0, (struct SceKernelLwMutexWork*)&psp->cond_lock, 0);
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psp->thread = sceKernelCreateThread
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("audioMainLoop", audioMainLoop, 0x10000100, 0x10000, 0, 0, NULL);
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#else
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psp->cond=sceKernelCreateSema("audio_start_sema", 0, 0, 1, NULL);
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psp->lock=sceKernelCreateSema("audio_lock_sema", 0, 1, 1, NULL);
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psp->thread = sceKernelCreateThread
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("audioMainLoop", audioMainLoop, 0x08, 0x10000, 0, NULL);
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#endif
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psp->fifo_lock = slock_new();
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psp->cond_lock = slock_new();
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psp->cond = scond_new();
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psp->nonblocking = false;
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psp->running = true;
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sceKernelStartThread(psp->thread, sizeof(psp_audio_t*), &psp);
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psp->worker_thread = sthread_create(audioMainLoop, psp);
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return psp;
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}
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static void psp_audio_free(void *data)
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{
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SceUInt timeout = 100000;
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psp_audio_t* psp = (psp_audio_t*)data;
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if(!psp)
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return;
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psp->running = false;
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#if defined(VITA)
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sceKernelWaitThreadEnd(psp->thread, NULL, &timeout);
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sceKernelDeleteLwMutex((struct SceKernelLwMutexWork*)&psp->lock);
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sceKernelDeleteLwMutex((struct SceKernelLwMutexWork*)&psp->cond_lock);
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sceKernelDeleteLwCond((struct SceKernelLwCondWork*)&psp->cond);
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#else
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sceKernelWaitThreadEnd(psp->thread, &timeout);
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sceKernelDeleteSema(psp->lock);
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sceKernelDeleteSema(psp->cond);
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#endif
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if(psp->running){
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if (psp->worker_thread)
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{
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psp->running = false;
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sthread_join(psp->worker_thread);
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}
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if (psp->cond)
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scond_free(psp->cond);
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if (psp->fifo_lock)
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slock_free(psp->fifo_lock);
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if (psp->cond_lock)
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slock_free(psp->cond_lock);
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}
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free(psp->buffer);
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sceKernelDeleteThread(psp->thread);
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psp->worker_thread = NULL;
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free(psp->zeroBuffer);
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free(psp);
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}
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static ssize_t psp_audio_write(void *data, const void *buf, size_t size)
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{
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psp_audio_t* psp = (psp_audio_t*)data;
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psp_audio_t* psp = (psp_audio_t*)data;
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uint16_t write_pos = psp->write_pos;
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uint16_t sampleCount = size / sizeof(uint32_t);
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if (!psp->running)
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return -1;
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if (psp->nonblocking)
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{
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//#ifdef VITA
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if (AUDIO_BUFFER_SIZE - ((uint16_t)
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(psp->write_pos - psp->read_pos) & AUDIO_BUFFER_SIZE_MASK) < size)
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return 0;
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//#endif
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}
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#ifdef VITA
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slock_lock(psp->cond_lock);
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while (AUDIO_BUFFER_SIZE - ((uint16_t)
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(psp->write_pos - psp->read_pos) & AUDIO_BUFFER_SIZE_MASK) < size)
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sceKernelWaitLwCond((struct SceKernelLwCondWork*)&psp->cond, 0);
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sceKernelLockLwMutex((struct SceKernelLwMutexWork*)&psp->lock, 1, 0);
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#else
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while (AUDIO_BUFFER_SIZE - ((uint16_t)
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(psp->write_pos - psp->read_pos) & AUDIO_BUFFER_SIZE_MASK) < size)
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sceKernelWaitSema(psp->cond, 1, 0);
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sceKernelWaitSema(psp->lock, 1, 0);
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#endif
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(psp->write_pos - psp->read_pos) & AUDIO_BUFFER_SIZE_MASK) < size)
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scond_wait(psp->cond, psp->cond_lock);
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slock_unlock(psp->cond_lock);
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slock_lock(psp->fifo_lock);
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if((write_pos + sampleCount) > AUDIO_BUFFER_SIZE)
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{
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memcpy(psp->buffer + write_pos, buf,
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@ -238,15 +214,10 @@ static ssize_t psp_audio_write(void *data, const void *buf, size_t size)
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write_pos &= AUDIO_BUFFER_SIZE_MASK;
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psp->write_pos = write_pos;
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#ifdef VITA
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sceKernelUnlockLwMutex((struct SceKernelLwMutexWork*)&psp->lock, 1);
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slock_unlock(psp->fifo_lock);
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return size;
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return size;
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#else
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sceKernelSignalSema(psp->lock, 1);
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return size;
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#endif
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}
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static bool psp_audio_alive(void *data)
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@ -260,51 +231,32 @@ static bool psp_audio_alive(void *data)
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static bool psp_audio_stop(void *data)
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{
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SceKernelThreadInfo info;
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SceUInt timeout = 100000;
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psp_audio_t* psp = (psp_audio_t*)data;
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if(psp && !psp->running)
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if (psp){
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psp->running = false;
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if (!psp->worker_thread)
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return true;
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info.size = sizeof(SceKernelThreadInfo);
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if (sceKernelGetThreadInfo(
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psp->thread, &info) < 0) /* Error */
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return false;
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if (info.status == PSP_THREAD_STOPPED)
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return false;
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psp->running = false;
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#if defined(VITA)
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sceKernelWaitThreadEnd(psp->thread, NULL, &timeout);
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#else
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sceKernelWaitThreadEnd(psp->thread, &timeout);
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#endif
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sthread_join(psp->worker_thread);
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psp->worker_thread = NULL;
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}
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return true;
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}
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static bool psp_audio_start(void *data, bool is_shutdown)
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{
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SceKernelThreadInfo info;
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psp_audio_t* psp = (psp_audio_t*)data;
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if(psp && psp->running)
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return true;
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info.size = sizeof(SceKernelThreadInfo);
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if (sceKernelGetThreadInfo(
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psp->thread, &info) < 0) /* Error */
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return false;
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if (info.status != PSP_THREAD_STOPPED)
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return false;
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psp->running = true;
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sceKernelStartThread(psp->thread, sizeof(psp_audio_t*), &psp);
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if (!psp->worker_thread)
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{
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psp->running = true;
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psp->worker_thread = sthread_create(audioMainLoop, psp);
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}
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return true;
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}
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@ -327,21 +279,12 @@ static size_t psp_write_avail(void *data)
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size_t val;
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psp_audio_t* psp = (psp_audio_t*)data;
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#ifdef VITA
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sceKernelLockLwMutex((struct SceKernelLwMutexWork*)&psp->lock, 1, 0);
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#else
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sceKernelWaitSema(psp->lock, 1, 0);
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#endif
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if (!psp||!psp->running)
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return 0;
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slock_lock(psp->fifo_lock);
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val = AUDIO_BUFFER_SIZE - ((uint16_t)
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(psp->write_pos - psp->read_pos) & AUDIO_BUFFER_SIZE_MASK);
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#ifdef VITA
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sceKernelUnlockLwMutex((struct SceKernelLwMutexWork*)&psp->lock, 1);
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#else
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sceKernelSignalSema(psp->lock, 1);
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#endif
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slock_unlock(psp->fifo_lock);
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return val;
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}
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