lavu/threadmessage: switch to new FIFO API

This commit is contained in:
Anton Khirnov 2022-01-07 11:41:42 +01:00 committed by Andreas Rheinhardt
parent d1bd189c63
commit 90eef1c3de

View File

@ -24,7 +24,7 @@
struct AVThreadMessageQueue {
#if HAVE_THREADS
AVFifoBuffer *fifo;
AVFifo *fifo;
pthread_mutex_t lock;
pthread_cond_t cond_recv;
pthread_cond_t cond_send;
@ -64,7 +64,7 @@ int av_thread_message_queue_alloc(AVThreadMessageQueue **mq,
av_free(rmq);
return AVERROR(ret);
}
if (!(rmq->fifo = av_fifo_alloc(elsize * nelem))) {
if (!(rmq->fifo = av_fifo_alloc2(nelem, elsize, 0))) {
pthread_cond_destroy(&rmq->cond_send);
pthread_cond_destroy(&rmq->cond_recv);
pthread_mutex_destroy(&rmq->lock);
@ -93,7 +93,7 @@ void av_thread_message_queue_free(AVThreadMessageQueue **mq)
#if HAVE_THREADS
if (*mq) {
av_thread_message_flush(*mq);
av_fifo_freep(&(*mq)->fifo);
av_fifo_freep2(&(*mq)->fifo);
pthread_cond_destroy(&(*mq)->cond_send);
pthread_cond_destroy(&(*mq)->cond_recv);
pthread_mutex_destroy(&(*mq)->lock);
@ -107,9 +107,9 @@ int av_thread_message_queue_nb_elems(AVThreadMessageQueue *mq)
#if HAVE_THREADS
int ret;
pthread_mutex_lock(&mq->lock);
ret = av_fifo_size(mq->fifo);
ret = av_fifo_can_read(mq->fifo);
pthread_mutex_unlock(&mq->lock);
return ret / mq->elsize;
return ret;
#else
return AVERROR(ENOSYS);
#endif
@ -121,14 +121,14 @@ static int av_thread_message_queue_send_locked(AVThreadMessageQueue *mq,
void *msg,
unsigned flags)
{
while (!mq->err_send && av_fifo_space(mq->fifo) < mq->elsize) {
while (!mq->err_send && !av_fifo_can_write(mq->fifo)) {
if ((flags & AV_THREAD_MESSAGE_NONBLOCK))
return AVERROR(EAGAIN);
pthread_cond_wait(&mq->cond_send, &mq->lock);
}
if (mq->err_send)
return mq->err_send;
av_fifo_generic_write(mq->fifo, msg, mq->elsize, NULL);
av_fifo_write(mq->fifo, msg, 1);
/* one message is sent, signal one receiver */
pthread_cond_signal(&mq->cond_recv);
return 0;
@ -138,14 +138,14 @@ static int av_thread_message_queue_recv_locked(AVThreadMessageQueue *mq,
void *msg,
unsigned flags)
{
while (!mq->err_recv && av_fifo_size(mq->fifo) < mq->elsize) {
while (!mq->err_recv && !av_fifo_can_read(mq->fifo)) {
if ((flags & AV_THREAD_MESSAGE_NONBLOCK))
return AVERROR(EAGAIN);
pthread_cond_wait(&mq->cond_recv, &mq->lock);
}
if (av_fifo_size(mq->fifo) < mq->elsize)
if (!av_fifo_can_read(mq->fifo))
return mq->err_recv;
av_fifo_generic_read(mq->fifo, msg, mq->elsize, NULL);
av_fifo_read(mq->fifo, msg, 1);
/* one message space appeared, signal one sender */
pthread_cond_signal(&mq->cond_send);
return 0;
@ -208,25 +208,25 @@ void av_thread_message_queue_set_err_recv(AVThreadMessageQueue *mq,
}
#if HAVE_THREADS
static void free_func_wrap(void *arg, void *msg, int size)
static int free_func_wrap(void *arg, void *buf, size_t *nb_elems)
{
AVThreadMessageQueue *mq = arg;
mq->free_func(msg);
uint8_t *msg = buf;
for (size_t i = 0; i < *nb_elems; i++)
mq->free_func(msg + i * mq->elsize);
return 0;
}
#endif
void av_thread_message_flush(AVThreadMessageQueue *mq)
{
#if HAVE_THREADS
int used, off;
void *free_func = mq->free_func;
size_t used;
pthread_mutex_lock(&mq->lock);
used = av_fifo_size(mq->fifo);
if (free_func)
for (off = 0; off < used; off += mq->elsize)
av_fifo_generic_peek_at(mq->fifo, mq, off, mq->elsize, free_func_wrap);
av_fifo_drain(mq->fifo, used);
used = av_fifo_can_read(mq->fifo);
if (mq->free_func)
av_fifo_read_to_cb(mq->fifo, free_func_wrap, mq, &used);
/* only the senders need to be notified since the queue is empty and there
* is nothing to read */
pthread_cond_broadcast(&mq->cond_send);