unsigned int channels;
/** Current sample rate in Hz. */
unsigned int samplerate;
+ struct timeval stream_start;
};
static size_t cb_read(void *buf, size_t size, size_t nmemb, void *datasource)
goto out;
pod->channels = ov_info(pod->vf, 0)->channels;
pod->samplerate = ov_info(pod->vf, 0)->rate;
+ tv_add(now, &(struct timeval)EMBRACE(0, 300 * 1000), &pod->stream_start);
PARA_NOTICE_LOG("%d channels, %d Hz\n", pod->channels,
pod->samplerate);
ret = 1;
return ret;
}
+static void ogg_pre_select(__a_unused struct sched *s, struct task *t)
+{
+ struct filter_node *fn = container_of(t, struct filter_node, task);
+ struct private_oggdec_data *pod = fn->private_data;
+ int ret;
+
+ t->error = 0;
+ ret = btr_node_status(fn->btrn, fn->min_iqs, BTR_NT_INTERNAL);
+ if (ret < 0)
+ sched_min_delay(s);
+ else
+ sched_request_barrier(&pod->stream_start, s);
+}
+
static void ogg_post_select(__a_unused struct sched *s, struct task *t)
{
struct filter_node *fn = container_of(t, struct filter_node, task);
struct btr_node *btrn = fn->btrn;
int ret, ns;
+ if (tv_diff(&pod->stream_start, now, NULL) > 0)
+ return;
pod->converted = 0;
t->error = 0;
ret = ns = btr_node_status(btrn, fn->min_iqs, BTR_NT_INTERNAL);
{
f->open = ogg_open;
f->close = ogg_close;
- f->pre_select = generic_filter_pre_select;
+ f->pre_select = ogg_pre_select;
f->post_select = ogg_post_select;
f->execute = oggdec_execute;
}