GstClockTime current_rstart;
GstClockTime current_rstop;
GstClockTimeDiff current_jitter;
+ /* the running time of the previous buffer */
+ GstClockTime prev_rstart;
/* EOS sync time in running time */
GstClockTime eos_rtime;
/* last buffer that arrived in time, running time */
- GstClockTime last_in_time;
+ GstClockTime last_render_time;
/* when the last buffer left the sink, running time */
GstClockTime last_left;
GstClockTime avg_pt;
GstClockTime avg_duration;
gdouble avg_rate;
+ GstClockTime avg_in_diff;
/* these are done on system time. avg_jitter and avg_render are
* compared to eachother to see if the rendering time takes a
gboolean have_latency;
/* the last buffer we prerolled or rendered. Useful for making snapshots */
- gboolean enable_last_buffer;
+ gint enable_last_buffer; /* atomic */
GstBuffer *last_buffer;
/* caps for pull based scheduling */
/* we have a pending and a current step operation */
GstStepInfo current_step;
GstStepInfo pending_step;
+
+ /* Cached GstClockID */
+ GstClockID cached_clock_id;
+
+ /* for throttling and QoS */
+ GstClockTime earliest_in_time;
+ GstClockTime throttle_time;
};
#define DO_RUNNING_AVG(avg,val,size) (((val) + ((size)-1) * (avg)) / (size))
#define UPDATE_RUNNING_AVG_P(avg,val) DO_RUNNING_AVG(avg,val,16)
#define UPDATE_RUNNING_AVG_N(avg,val) DO_RUNNING_AVG(avg,val,4)
+enum
+{
+ _PR_IS_NOTHING = 1 << 0,
+ _PR_IS_BUFFER = 1 << 1,
+ _PR_IS_BUFFERLIST = 1 << 2,
+ _PR_IS_EVENT = 1 << 3
+} PrivateObjectType;
+
+#define OBJ_IS_BUFFER(a) ((a) & _PR_IS_BUFFER)
+#define OBJ_IS_BUFFERLIST(a) ((a) & _PR_IS_BUFFERLIST)
+#define OBJ_IS_EVENT(a) ((a) & _PR_IS_EVENT)
+#define OBJ_IS_BUFFERFULL(a) ((a) & (_PR_IS_BUFFER | _PR_IS_BUFFERLIST))
+
/* BaseSink properties */
#define DEFAULT_CAN_ACTIVATE_PULL FALSE /* fixme: enable me */
#define DEFAULT_BLOCKSIZE 4096
#define DEFAULT_RENDER_DELAY 0
#define DEFAULT_ENABLE_LAST_BUFFER TRUE
+#define DEFAULT_THROTTLE_TIME 0
enum
{
PROP_LAST_BUFFER,
PROP_BLOCKSIZE,
PROP_RENDER_DELAY,
+ PROP_THROTTLE_TIME,
PROP_LAST
};
/* check if an object was too late */
static gboolean gst_base_sink_is_too_late (GstBaseSink * basesink,
- GstMiniObject * obj, GstClockTime start, GstClockTime stop,
+ GstMiniObject * obj, GstClockTime rstart, GstClockTime rstop,
GstClockReturn status, GstClockTimeDiff jitter);
static GstFlowReturn gst_base_sink_preroll_object (GstBaseSink * basesink,
- gboolean is_list, GstMiniObject * obj);
+ guint8 obj_type, GstMiniObject * obj);
static void
gst_base_sink_class_init (GstBaseSinkClass * klass)
* Since: 0.10.15
*/
g_object_class_install_property (gobject_class, PROP_LAST_BUFFER,
- gst_param_spec_mini_object ("last-buffer", "Last Buffer",
+ g_param_spec_boxed ("last-buffer", "Last Buffer",
"The last buffer received in the sink", GST_TYPE_BUFFER,
G_PARAM_READABLE | G_PARAM_STATIC_STRINGS));
/**
*
* Since: 0.10.22
*/
+ /* FIXME 0.11: blocksize property should be int, otherwise min>max.. */
g_object_class_install_property (gobject_class, PROP_BLOCKSIZE,
g_param_spec_uint ("blocksize", "Block size",
"Size in bytes to pull per buffer (0 = default)", 0, G_MAXUINT,
g_param_spec_uint64 ("render-delay", "Render Delay",
"Additional render delay of the sink in nanoseconds", 0, G_MAXUINT64,
DEFAULT_RENDER_DELAY, G_PARAM_READWRITE | G_PARAM_STATIC_STRINGS));
+ /**
+ * GstBaseSink:throttle-time
+ *
+ * The time to insert between buffers. This property can be used to control
+ * the maximum amount of buffers per second to render. Setting this property
+ * to a value bigger than 0 will make the sink create THROTTLE QoS events.
+ *
+ * Since: 0.10.33
+ */
+ g_object_class_install_property (gobject_class, PROP_THROTTLE_TIME,
+ g_param_spec_uint64 ("throttle-time", "Throttle time",
+ "The time to keep between rendered buffers (unused)", 0, G_MAXUINT64,
+ DEFAULT_THROTTLE_TIME, G_PARAM_READWRITE | G_PARAM_STATIC_STRINGS));
gstelement_class->change_state =
GST_DEBUG_FUNCPTR (gst_base_sink_change_state);
GstFlowReturn result = GST_FLOW_OK;
bsink = GST_BASE_SINK (gst_pad_get_parent (pad));
+ if (G_UNLIKELY (bsink == NULL))
+ return GST_FLOW_WRONG_STATE;
bclass = GST_BASE_SINK_GET_CLASS (bsink);
if (bclass->buffer_alloc)
gst_element_add_pad (GST_ELEMENT_CAST (basesink), basesink->sinkpad);
basesink->pad_mode = GST_ACTIVATE_NONE;
+ basesink->preroll_lock = g_mutex_new ();
+ basesink->preroll_cond = g_cond_new ();
basesink->preroll_queue = g_queue_new ();
- basesink->abidata.ABI.clip_segment = gst_segment_new ();
+ basesink->clip_segment = gst_segment_new ();
priv->have_latency = FALSE;
basesink->can_activate_push = DEFAULT_CAN_ACTIVATE_PUSH;
basesink->can_activate_pull = DEFAULT_CAN_ACTIVATE_PULL;
basesink->sync = DEFAULT_SYNC;
- basesink->abidata.ABI.max_lateness = DEFAULT_MAX_LATENESS;
+ basesink->max_lateness = DEFAULT_MAX_LATENESS;
g_atomic_int_set (&priv->qos_enabled, DEFAULT_QOS);
priv->async_enabled = DEFAULT_ASYNC;
priv->ts_offset = DEFAULT_TS_OFFSET;
priv->render_delay = DEFAULT_RENDER_DELAY;
priv->blocksize = DEFAULT_BLOCKSIZE;
- priv->enable_last_buffer = DEFAULT_ENABLE_LAST_BUFFER;
+ priv->cached_clock_id = NULL;
+ g_atomic_int_set (&priv->enable_last_buffer, DEFAULT_ENABLE_LAST_BUFFER);
+ priv->throttle_time = DEFAULT_THROTTLE_TIME;
GST_OBJECT_FLAG_SET (basesink, GST_ELEMENT_IS_SINK);
}
basesink = GST_BASE_SINK (object);
+ g_mutex_free (basesink->preroll_lock);
+ g_cond_free (basesink->preroll_cond);
g_queue_free (basesink->preroll_queue);
- gst_segment_free (basesink->abidata.ABI.clip_segment);
+ gst_segment_free (basesink->clip_segment);
G_OBJECT_CLASS (parent_class)->finalize (object);
}
g_return_if_fail (GST_IS_BASE_SINK (sink));
GST_OBJECT_LOCK (sink);
- sink->abidata.ABI.max_lateness = max_lateness;
+ sink->max_lateness = max_lateness;
GST_OBJECT_UNLOCK (sink);
}
g_return_val_if_fail (GST_IS_BASE_SINK (sink), -1);
GST_OBJECT_LOCK (sink);
- res = sink->abidata.ABI.max_lateness;
+ res = sink->max_lateness;
GST_OBJECT_UNLOCK (sink);
return res;
{
g_return_if_fail (GST_IS_BASE_SINK (sink));
- GST_PAD_PREROLL_LOCK (sink->sinkpad);
- sink->priv->async_enabled = enabled;
+ GST_BASE_SINK_PREROLL_LOCK (sink);
+ g_atomic_int_set (&sink->priv->async_enabled, enabled);
GST_LOG_OBJECT (sink, "set async enabled to %d", enabled);
- GST_PAD_PREROLL_UNLOCK (sink->sinkpad);
+ GST_BASE_SINK_PREROLL_UNLOCK (sink);
}
/**
g_return_val_if_fail (GST_IS_BASE_SINK (sink), FALSE);
- GST_PAD_PREROLL_LOCK (sink->sinkpad);
- res = sink->priv->async_enabled;
- GST_PAD_PREROLL_UNLOCK (sink->sinkpad);
+ res = g_atomic_int_get (&sink->priv->async_enabled);
return res;
}
*
* The #GstCaps on the buffer can be used to determine the type of the buffer.
*
- * Returns: a #GstBuffer. gst_buffer_unref() after usage. This function returns
- * NULL when no buffer has arrived in the sink yet or when the sink is not in
- * PAUSED or PLAYING.
+ * Free-function: gst_buffer_unref
+ *
+ * Returns: (transfer full): a #GstBuffer. gst_buffer_unref() after usage.
+ * This function returns NULL when no buffer has arrived in the sink yet
+ * or when the sink is not in PAUSED or PLAYING.
*
* Since: 0.10.15
*/
static void
gst_base_sink_set_last_buffer (GstBaseSink * sink, GstBuffer * buffer)
{
- GST_OBJECT_LOCK (sink);
- if (sink->priv->enable_last_buffer == FALSE)
- goto out;
+ if (!g_atomic_int_get (&sink->priv->enable_last_buffer))
+ return;
+ GST_OBJECT_LOCK (sink);
gst_base_sink_set_last_buffer_unlocked (sink, buffer);
-
-out:
GST_OBJECT_UNLOCK (sink);
}
{
g_return_if_fail (GST_IS_BASE_SINK (sink));
- GST_OBJECT_LOCK (sink);
- if (enabled != sink->priv->enable_last_buffer) {
- sink->priv->enable_last_buffer = enabled;
- if (!enabled)
- gst_base_sink_set_last_buffer_unlocked (sink, NULL);
+ /* Only take lock if we change the value */
+ if (g_atomic_int_compare_and_exchange (&sink->priv->enable_last_buffer,
+ !enabled, enabled) && !enabled) {
+ GST_OBJECT_LOCK (sink);
+ gst_base_sink_set_last_buffer_unlocked (sink, NULL);
+ GST_OBJECT_UNLOCK (sink);
}
- GST_OBJECT_UNLOCK (sink);
}
/**
gboolean
gst_base_sink_is_last_buffer_enabled (GstBaseSink * sink)
{
- gboolean res;
-
g_return_val_if_fail (GST_IS_BASE_SINK (sink), FALSE);
- GST_OBJECT_LOCK (sink);
- res = sink->priv->enable_last_buffer;
- GST_OBJECT_UNLOCK (sink);
-
- return res;
+ return g_atomic_int_get (&sink->priv->enable_last_buffer);
}
/**
/**
* gst_base_sink_query_latency:
* @sink: the sink
- * @live: if the sink is live
- * @upstream_live: if an upstream element is live
- * @min_latency: the min latency of the upstream elements
- * @max_latency: the max latency of the upstream elements
+ * @live: (out) (allow-none): if the sink is live
+ * @upstream_live: (out) (allow-none): if an upstream element is live
+ * @min_latency: (out) (allow-none): the min latency of the upstream elements
+ * @max_latency: (out) (allow-none): the max latency of the upstream elements
*
* Query the sink for the latency parameters. The latency will be queried from
* the upstream elements. @live will be TRUE if @sink is configured to
*
* Since: 0.10.22
*/
+/* FIXME 0.11: blocksize property should be int, otherwise min>max.. */
void
gst_base_sink_set_blocksize (GstBaseSink * sink, guint blocksize)
{
*
* Since: 0.10.22
*/
+/* FIXME 0.11: blocksize property should be int, otherwise min>max.. */
guint
gst_base_sink_get_blocksize (GstBaseSink * sink)
{
return res;
}
+/**
+ * gst_base_sink_set_throttle_time:
+ * @sink: a #GstBaseSink
+ * @throttle: the throttle time in nanoseconds
+ *
+ * Set the time that will be inserted between rendered buffers. This
+ * can be used to control the maximum buffers per second that the sink
+ * will render.
+ *
+ * Since: 0.10.33
+ */
+void
+gst_base_sink_set_throttle_time (GstBaseSink * sink, guint64 throttle)
+{
+ g_return_if_fail (GST_IS_BASE_SINK (sink));
+
+ GST_OBJECT_LOCK (sink);
+ sink->priv->throttle_time = throttle;
+ GST_LOG_OBJECT (sink, "set throttle_time to %" G_GUINT64_FORMAT, throttle);
+ GST_OBJECT_UNLOCK (sink);
+}
+
+/**
+ * gst_base_sink_get_throttle_time:
+ * @sink: a #GstBaseSink
+ *
+ * Get the time that will be inserted between frames to control the
+ * maximum buffers per second.
+ *
+ * Returns: the number of nanoseconds @sink will put between frames.
+ *
+ * Since: 0.10.33
+ */
+guint64
+gst_base_sink_get_throttle_time (GstBaseSink * sink)
+{
+ guint64 res;
+
+ g_return_val_if_fail (GST_IS_BASE_SINK (sink), 0);
+
+ GST_OBJECT_LOCK (sink);
+ res = sink->priv->throttle_time;
+ GST_OBJECT_UNLOCK (sink);
+
+ return res;
+}
+
static void
gst_base_sink_set_property (GObject * object, guint prop_id,
const GValue * value, GParamSpec * pspec)
switch (prop_id) {
case PROP_PREROLL_QUEUE_LEN:
/* preroll lock necessary to serialize with finish_preroll */
- GST_PAD_PREROLL_LOCK (sink->sinkpad);
- sink->preroll_queue_max_len = g_value_get_uint (value);
- GST_PAD_PREROLL_UNLOCK (sink->sinkpad);
+ GST_BASE_SINK_PREROLL_LOCK (sink);
+ g_atomic_int_set (&sink->preroll_queue_max_len, g_value_get_uint (value));
+ GST_BASE_SINK_PREROLL_UNLOCK (sink);
break;
case PROP_SYNC:
gst_base_sink_set_sync (sink, g_value_get_boolean (value));
case PROP_ENABLE_LAST_BUFFER:
gst_base_sink_set_last_buffer_enabled (sink, g_value_get_boolean (value));
break;
+ case PROP_THROTTLE_TIME:
+ gst_base_sink_set_throttle_time (sink, g_value_get_uint64 (value));
+ break;
default:
G_OBJECT_WARN_INVALID_PROPERTY_ID (object, prop_id, pspec);
break;
switch (prop_id) {
case PROP_PREROLL_QUEUE_LEN:
- GST_PAD_PREROLL_LOCK (sink->sinkpad);
- g_value_set_uint (value, sink->preroll_queue_max_len);
- GST_PAD_PREROLL_UNLOCK (sink->sinkpad);
+ g_value_set_uint (value, g_atomic_int_get (&sink->preroll_queue_max_len));
break;
case PROP_SYNC:
g_value_set_boolean (value, gst_base_sink_get_sync (sink));
case PROP_RENDER_DELAY:
g_value_set_uint64 (value, gst_base_sink_get_render_delay (sink));
break;
+ case PROP_THROTTLE_TIME:
+ g_value_set_uint64 (value, gst_base_sink_get_throttle_time (sink));
+ break;
default:
G_OBJECT_WARN_INVALID_PROPERTY_ID (object, prop_id, pspec);
break;
GST_OBJECT_UNLOCK (basesink);
}
/* and signal any waiters now */
- GST_PAD_PREROLL_SIGNAL (pad);
+ GST_BASE_SINK_PREROLL_SIGNAL (basesink);
}
/* with STREAM_LOCK, configures given segment with the event information. */
case GST_STATE_PLAYING:
{
GstBaseSinkClass *bclass;
- GstStateChangeReturn ret;
bclass = GST_BASE_SINK_GET_CLASS (basesink);
if (current == GST_STATE_READY) {
post_paused = TRUE;
}
-
- /* make sure we notify the subclass of async playing */
- if (bclass->async_play) {
- GST_WARNING_OBJECT (basesink, "deprecated async_play");
- ret = bclass->async_play (basesink);
- if (ret == GST_STATE_CHANGE_FAILURE)
- goto async_failed;
- }
break;
}
case GST_STATE_PAUSED:
GST_OBJECT_UNLOCK (basesink);
return FALSE;
}
-async_failed:
- {
- GST_DEBUG_OBJECT (basesink, "async commit failed");
- GST_STATE_RETURN (basesink) = GST_STATE_CHANGE_FAILURE;
- GST_OBJECT_UNLOCK (basesink);
- return FALSE;
- }
}
static void
segment->start = current->start_start;
/* the clip segment is used for position report in paused... */
- memcpy (sink->abidata.ABI.clip_segment, segment, sizeof (GstSegment));
+ memcpy (sink->clip_segment, segment, sizeof (GstSegment));
/* post the step done when we know the stepped duration in TIME */
message =
GstClockTime * rsstart, GstClockTime * rsstop,
GstClockTime * rrstart, GstClockTime * rrstop, gboolean * do_sync,
gboolean * stepped, GstSegment * segment, GstStepInfo * step,
- gboolean * step_end)
+ gboolean * step_end, guint8 obj_type)
{
GstBaseSinkClass *bclass;
GstBuffer *buffer;
/* start with nothing */
start = stop = GST_CLOCK_TIME_NONE;
- if (G_UNLIKELY (GST_IS_EVENT (obj))) {
+ if (G_UNLIKELY (OBJ_IS_EVENT (obj_type))) {
GstEvent *event = GST_EVENT_CAST (obj);
switch (GST_EVENT_TYPE (event)) {
eos = FALSE;
+again:
/* else do buffer sync code */
buffer = GST_BUFFER_CAST (obj);
}
/* set last stop position */
- if (G_LIKELY (cstop != GST_CLOCK_TIME_NONE))
+ if (G_LIKELY (stop != GST_CLOCK_TIME_NONE && cstop != GST_CLOCK_TIME_NONE))
gst_segment_set_last_stop (segment, GST_FORMAT_TIME, cstop);
else
gst_segment_set_last_stop (segment, GST_FORMAT_TIME, cstart);
GST_DEBUG_OBJECT (basesink, "flushing step ended");
stop_stepping (basesink, segment, step, rstart, rstop, eos);
*step_end = FALSE;
+ /* re-determine running start times for adjusted segment
+ * (which has a flushed amount of running/accumulated time removed) */
+ if (!GST_IS_EVENT (obj)) {
+ GST_DEBUG_OBJECT (basesink, "refresh sync times");
+ goto again;
+ }
}
/* save times */
* gst_base_sink_wait_clock:
* @sink: the sink
* @time: the running_time to be reached
- * @jitter: the jitter to be filled with time diff (can be NULL)
+ * @jitter: (out) (allow-none): the jitter to be filled with time diff, or NULL
*
* This function will block until @time is reached. It is usually called by
* subclasses that use their own internal synchronisation.
* return and is not adjusted with any latency or offset configured in the
* sink.
*
- * Since 0.10.20
+ * Since: 0.10.20
*
* Returns: #GstClockReturn
*/
gst_base_sink_wait_clock (GstBaseSink * sink, GstClockTime time,
GstClockTimeDiff * jitter)
{
- GstClockID id;
GstClockReturn ret;
GstClock *clock;
GstClockTime base_time;
/* add base_time to running_time to get the time against the clock */
time += base_time;
- id = gst_clock_new_single_shot_id (clock, time);
+ /* Re-use existing clockid if available */
+ if (G_LIKELY (sink->priv->cached_clock_id != NULL)) {
+ if (!gst_clock_single_shot_id_reinit (clock, sink->priv->cached_clock_id,
+ time)) {
+ gst_clock_id_unref (sink->priv->cached_clock_id);
+ sink->priv->cached_clock_id = gst_clock_new_single_shot_id (clock, time);
+ }
+ } else
+ sink->priv->cached_clock_id = gst_clock_new_single_shot_id (clock, time);
GST_OBJECT_UNLOCK (sink);
/* A blocking wait is performed on the clock. We save the ClockID
* so we can unlock the entry at any time. While we are blocking, we
* release the PREROLL_LOCK so that other threads can interrupt the
* entry. */
- sink->clock_id = id;
+ sink->clock_id = sink->priv->cached_clock_id;
/* release the preroll lock while waiting */
- GST_PAD_PREROLL_UNLOCK (sink->sinkpad);
+ GST_BASE_SINK_PREROLL_UNLOCK (sink);
- ret = gst_clock_id_wait (id, jitter);
+ ret = gst_clock_id_wait (sink->priv->cached_clock_id, jitter);
- GST_PAD_PREROLL_LOCK (sink->sinkpad);
- gst_clock_id_unref (id);
+ GST_BASE_SINK_PREROLL_LOCK (sink);
sink->clock_id = NULL;
return ret;
* This function should only be called with the PREROLL_LOCK held, like in the
* render function.
*
- * Since: 0.10.11
- *
* Returns: #GST_FLOW_OK if the preroll completed and processing can
* continue. Any other return value should be returned from the render vmethod.
+ *
+ * Since: 0.10.11
*/
GstFlowReturn
gst_base_sink_wait_preroll (GstBaseSink * sink)
sink->have_preroll = TRUE;
GST_DEBUG_OBJECT (sink, "waiting in preroll for flush or PLAYING");
/* block until the state changes, or we get a flush, or something */
- GST_PAD_PREROLL_WAIT (sink->sinkpad);
+ GST_BASE_SINK_PREROLL_WAIT (sink);
sink->have_preroll = FALSE;
if (G_UNLIKELY (sink->flushing))
goto stopping;
}
}
+static inline guint8
+get_object_type (GstMiniObject * obj)
+{
+ guint8 obj_type;
+
+ if (G_LIKELY (GST_IS_BUFFER (obj)))
+ obj_type = _PR_IS_BUFFER;
+ else if (GST_IS_EVENT (obj))
+ obj_type = _PR_IS_EVENT;
+ else if (GST_IS_BUFFER_LIST (obj))
+ obj_type = _PR_IS_BUFFERLIST;
+ else
+ obj_type = _PR_IS_NOTHING;
+
+ return obj_type;
+}
+
/**
* gst_base_sink_do_preroll:
* @sink: the sink
- * @obj: the object that caused the preroll
+ * @obj: (transfer none): the mini object that caused the preroll
*
* If the @sink spawns its own thread for pulling buffers from upstream it
* should call this method after it has pulled a buffer. If the element needed
*
* This function should be called with the PREROLL_LOCK held.
*
- * Since 0.10.22
- *
* Returns: #GST_FLOW_OK if the preroll completed and processing can
* continue. Any other return value should be returned from the render vmethod.
+ *
+ * Since: 0.10.22
*/
GstFlowReturn
gst_base_sink_do_preroll (GstBaseSink * sink, GstMiniObject * obj)
GstFlowReturn ret;
while (G_UNLIKELY (sink->need_preroll)) {
+ guint8 obj_type;
GST_DEBUG_OBJECT (sink, "prerolling object %p", obj);
- ret = gst_base_sink_preroll_object (sink, FALSE, obj);
+ obj_type = get_object_type (obj);
+
+ ret = gst_base_sink_preroll_object (sink, obj_type, obj);
if (ret != GST_FLOW_OK)
goto preroll_failed;
/* ERRORS */
preroll_failed:
{
- GST_DEBUG_OBJECT (sink, "preroll failed %d", ret);
+ GST_DEBUG_OBJECT (sink, "preroll failed: %s", gst_flow_get_name (ret));
return ret;
}
}
* gst_base_sink_wait_eos:
* @sink: the sink
* @time: the running_time to be reached
- * @jitter: the jitter to be filled with time diff (can be NULL)
+ * @jitter: (out) (allow-none): the jitter to be filled with time diff, or NULL
*
* This function will block until @time is reached. It is usually called by
* subclasses that use their own internal synchronisation but want to let the
* The @time argument should be the running_time of when the EOS should happen
* and will be adjusted with any latency and offset configured in the sink.
*
- * Since 0.10.15
- *
* Returns: #GstFlowReturn
+ *
+ * Since: 0.10.15
*/
GstFlowReturn
gst_base_sink_wait_eos (GstBaseSink * sink, GstClockTime time,
GST_DEBUG_OBJECT (sink, "checking preroll");
/* first wait for the playing state before we can continue */
- if (G_UNLIKELY (sink->need_preroll)) {
+ while (G_UNLIKELY (sink->need_preroll)) {
ret = gst_base_sink_wait_preroll (sink);
if ((ret != GST_FLOW_OK) && (ret != GST_FLOW_STEP))
goto flushing;
*/
static GstFlowReturn
gst_base_sink_do_sync (GstBaseSink * basesink, GstPad * pad,
- GstMiniObject * obj, gboolean * late, gboolean * step_end)
+ GstMiniObject * obj, gboolean * late, gboolean * step_end, guint8 obj_type)
{
GstClockTimeDiff jitter = 0;
gboolean syncable;
/* get timing information for this object against the render segment */
syncable = gst_base_sink_get_sync_times (basesink, obj,
&sstart, &sstop, &rstart, &rstop, &do_sync, &stepped, &basesink->segment,
- current, step_end);
+ current, step_end, obj_type);
if (G_UNLIKELY (stepped))
goto step_skipped;
/* save sync time for eos when the previous object needed sync */
priv->eos_rtime = (do_sync ? priv->current_rstop : GST_CLOCK_TIME_NONE);
+ /* calculate inter frame spacing */
+ if (G_UNLIKELY (priv->prev_rstart != -1 && priv->prev_rstart < rstart)) {
+ GstClockTime in_diff;
+
+ in_diff = rstart - priv->prev_rstart;
+
+ if (priv->avg_in_diff == -1)
+ priv->avg_in_diff = in_diff;
+ else
+ priv->avg_in_diff = UPDATE_RUNNING_AVG (priv->avg_in_diff, in_diff);
+
+ GST_LOG_OBJECT (basesink, "avg frame diff %" GST_TIME_FORMAT,
+ GST_TIME_ARGS (priv->avg_in_diff));
+
+ }
+ priv->prev_rstart = rstart;
+
+ if (G_UNLIKELY (priv->earliest_in_time != -1
+ && rstart < priv->earliest_in_time))
+ goto qos_dropped;
+
again:
/* first do preroll, this makes sure we commit our state
* to PAUSED and can continue to PLAYING. We cannot perform
* or sync is disabled with GST_CLOCK_BADTIME. */
status = gst_base_sink_wait_clock (basesink, stime, &jitter);
- GST_DEBUG_OBJECT (basesink, "clock returned %d, jitter %" GST_TIME_FORMAT,
- status, GST_TIME_ARGS (jitter));
+ GST_DEBUG_OBJECT (basesink, "clock returned %d, jitter %c%" GST_TIME_FORMAT,
+ status, (jitter < 0 ? '-' : ' '), GST_TIME_ARGS (ABS (jitter)));
/* invalid time, no clock or sync disabled, just render */
if (status == GST_CLOCK_BADTIME)
GST_DEBUG_OBJECT (basesink, "non syncable object %p", obj);
return GST_FLOW_OK;
}
+qos_dropped:
+ {
+ GST_DEBUG_OBJECT (basesink, "dropped because of QoS %p", obj);
+ *late = TRUE;
+ return GST_FLOW_OK;
+ }
flushing:
{
GST_DEBUG_OBJECT (basesink, "we are flushing");
}
static gboolean
-gst_base_sink_send_qos (GstBaseSink * basesink,
+gst_base_sink_send_qos (GstBaseSink * basesink, GstQOSType type,
gdouble proportion, GstClockTime time, GstClockTimeDiff diff)
{
GstEvent *event;
/* generate Quality-of-Service event */
GST_CAT_DEBUG_OBJECT (GST_CAT_QOS, basesink,
- "qos: proportion: %lf, diff %" G_GINT64_FORMAT ", timestamp %"
- GST_TIME_FORMAT, proportion, diff, GST_TIME_ARGS (time));
+ "qos: type %d, proportion: %lf, diff %" G_GINT64_FORMAT ", timestamp %"
+ GST_TIME_FORMAT, type, proportion, diff, GST_TIME_ARGS (time));
- event = gst_event_new_qos (proportion, diff, time);
+ event = gst_event_new_qos_full (type, proportion, diff, time);
/* send upstream */
res = gst_pad_push_event (basesink->sinkpad, event);
}
/* calculate duration of the buffer */
- if (GST_CLOCK_TIME_IS_VALID (stop))
+ if (GST_CLOCK_TIME_IS_VALID (stop) && stop != start)
duration = stop - start;
else
- duration = GST_CLOCK_TIME_NONE;
+ duration = priv->avg_in_diff;
/* if we have the time when the last buffer left us, calculate
* processing time */
}
GST_CAT_DEBUG_OBJECT (GST_CAT_QOS, sink, "start: %" GST_TIME_FORMAT
- ", entered %" GST_TIME_FORMAT ", left %" GST_TIME_FORMAT ", pt: %"
- GST_TIME_FORMAT ", duration %" GST_TIME_FORMAT ",jitter %"
- G_GINT64_FORMAT, GST_TIME_ARGS (start), GST_TIME_ARGS (entered),
- GST_TIME_ARGS (left), GST_TIME_ARGS (pt), GST_TIME_ARGS (duration),
- jitter);
+ ", stop %" GST_TIME_FORMAT ", entered %" GST_TIME_FORMAT ", left %"
+ GST_TIME_FORMAT ", pt: %" GST_TIME_FORMAT ", duration %" GST_TIME_FORMAT
+ ",jitter %" G_GINT64_FORMAT, GST_TIME_ARGS (start), GST_TIME_ARGS (stop),
+ GST_TIME_ARGS (entered), GST_TIME_ARGS (left), GST_TIME_ARGS (pt),
+ GST_TIME_ARGS (duration), jitter);
GST_CAT_DEBUG_OBJECT (GST_CAT_QOS, sink, "avg_duration: %" GST_TIME_FORMAT
", avg_pt: %" GST_TIME_FORMAT ", avg_rate: %g",
gst_guint64_to_gdouble (priv->avg_pt) /
gst_guint64_to_gdouble (priv->avg_duration);
else
- rate = 0.0;
+ rate = 1.0;
if (GST_CLOCK_TIME_IS_VALID (priv->last_left)) {
if (dropped || priv->avg_rate < 0.0) {
if (priv->avg_rate >= 0.0) {
+ GstQOSType type;
+ GstClockTimeDiff diff;
+
/* if we have a valid rate, start sending QoS messages */
if (priv->current_jitter < 0) {
/* make sure we never go below 0 when adding the jitter to the
if (priv->current_rstart < -priv->current_jitter)
priv->current_jitter = -priv->current_rstart;
}
- gst_base_sink_send_qos (sink, priv->avg_rate, priv->current_rstart,
- priv->current_jitter);
+
+ if (priv->throttle_time > 0) {
+ diff = priv->throttle_time;
+ type = GST_QOS_TYPE_THROTTLE;
+ } else {
+ diff = priv->current_jitter;
+ if (diff <= 0)
+ type = GST_QOS_TYPE_OVERFLOW;
+ else
+ type = GST_QOS_TYPE_UNDERFLOW;
+ }
+
+ gst_base_sink_send_qos (sink, type, priv->avg_rate, priv->current_rstart,
+ diff);
}
/* record when this buffer will leave us */
priv = sink->priv;
- priv->last_in_time = GST_CLOCK_TIME_NONE;
+ priv->last_render_time = GST_CLOCK_TIME_NONE;
+ priv->prev_rstart = GST_CLOCK_TIME_NONE;
+ priv->earliest_in_time = GST_CLOCK_TIME_NONE;
priv->last_left = GST_CLOCK_TIME_NONE;
priv->avg_duration = GST_CLOCK_TIME_NONE;
priv->avg_pt = GST_CLOCK_TIME_NONE;
priv->avg_rate = -1.0;
priv->avg_render = GST_CLOCK_TIME_NONE;
+ priv->avg_in_diff = GST_CLOCK_TIME_NONE;
priv->rendered = 0;
priv->dropped = 0;
/* Checks if the object was scheduled too late.
*
- * start/stop contain the raw timestamp start and stop values
+ * rstart/rstop contain the running_time start and stop values
* of the object.
*
* status and jitter contain the return values from the clock wait.
*/
static gboolean
gst_base_sink_is_too_late (GstBaseSink * basesink, GstMiniObject * obj,
- GstClockTime start, GstClockTime stop,
+ GstClockTime rstart, GstClockTime rstop,
GstClockReturn status, GstClockTimeDiff jitter)
{
gboolean late;
if (G_LIKELY (status != GST_CLOCK_EARLY))
goto in_time;
- max_lateness = basesink->abidata.ABI.max_lateness;
+ max_lateness = basesink->max_lateness;
/* check if frame dropping is enabled */
if (max_lateness == -1)
goto not_buffer;
/* can't do check if we don't have a timestamp */
- if (G_UNLIKELY (!GST_CLOCK_TIME_IS_VALID (start)))
+ if (G_UNLIKELY (!GST_CLOCK_TIME_IS_VALID (rstart)))
goto no_timestamp;
/* we can add a valid stop time */
- if (GST_CLOCK_TIME_IS_VALID (stop))
- max_lateness += stop;
- else
- max_lateness += start;
+ if (GST_CLOCK_TIME_IS_VALID (rstop))
+ max_lateness += rstop;
+ else {
+ max_lateness += rstart;
+ /* no stop time, use avg frame diff */
+ if (priv->avg_in_diff != -1)
+ max_lateness += priv->avg_in_diff;
+ }
/* if the jitter bigger than duration and lateness we are too late */
- if ((late = start + jitter > max_lateness)) {
+ if ((late = rstart + jitter > max_lateness)) {
GST_CAT_DEBUG_OBJECT (GST_CAT_PERFORMANCE, basesink,
"buffer is too late %" GST_TIME_FORMAT
- " > %" GST_TIME_FORMAT, GST_TIME_ARGS (start + jitter),
+ " > %" GST_TIME_FORMAT, GST_TIME_ARGS (rstart + jitter),
GST_TIME_ARGS (max_lateness));
/* !!emergency!!, if we did not receive anything valid for more than a
* second, render it anyway so the user sees something */
- if (GST_CLOCK_TIME_IS_VALID (priv->last_in_time) &&
- start - priv->last_in_time > GST_SECOND) {
+ if (GST_CLOCK_TIME_IS_VALID (priv->last_render_time) &&
+ rstart - priv->last_render_time > GST_SECOND) {
late = FALSE;
GST_ELEMENT_WARNING (basesink, CORE, CLOCK,
(_("A lot of buffers are being dropped.")),
("There may be a timestamping problem, or this computer is too slow."));
GST_CAT_DEBUG_OBJECT (GST_CAT_PERFORMANCE, basesink,
"**emergency** last buffer at %" GST_TIME_FORMAT " > GST_SECOND",
- GST_TIME_ARGS (priv->last_in_time));
+ GST_TIME_ARGS (priv->last_render_time));
}
}
done:
- if (!late || !GST_CLOCK_TIME_IS_VALID (priv->last_in_time)) {
- priv->last_in_time = start;
+ if (!late || !GST_CLOCK_TIME_IS_VALID (priv->last_render_time)) {
+ priv->last_render_time = rstart;
+ /* the next allowed input timestamp */
+ if (priv->throttle_time > 0)
+ priv->earliest_in_time = rstart + priv->throttle_time;
}
return late;
*/
static GstFlowReturn
gst_base_sink_render_object (GstBaseSink * basesink, GstPad * pad,
- gboolean is_list, gpointer obj)
+ guint8 obj_type, gpointer obj)
{
GstFlowReturn ret;
GstBaseSinkClass *bclass;
priv = basesink->priv;
- if (is_list) {
+ if (OBJ_IS_BUFFERLIST (obj_type)) {
/*
* If buffer list, use the first group buffer within the list
* for syncing
*/
- sync_obj = gst_buffer_list_get (GST_BUFFER_LIST_CAST (obj), 0, 0);
+ sync_obj = gst_buffer_list_get (GST_BUFFER_LIST_CAST (obj), 0);
g_assert (NULL != sync_obj);
} else {
sync_obj = obj;
/* synchronize this object, non syncable objects return OK
* immediatly. */
- ret = gst_base_sink_do_sync (basesink, pad, sync_obj, &late, &step_end);
+ ret =
+ gst_base_sink_do_sync (basesink, pad, sync_obj, &late, &step_end,
+ obj_type);
if (G_UNLIKELY (ret != GST_FLOW_OK))
goto sync_failed;
/* and now render, event or buffer/buffer list. */
- if (G_LIKELY (is_list || GST_IS_BUFFER (obj))) {
+ if (G_LIKELY (OBJ_IS_BUFFERFULL (obj_type))) {
/* drop late buffers unconditionally, let's hope it's unlikely */
if (G_UNLIKELY (late))
goto dropped;
bclass = GST_BASE_SINK_GET_CLASS (basesink);
- if (G_LIKELY ((is_list && bclass->render_list) ||
- (!is_list && bclass->render))) {
+ if (G_LIKELY ((OBJ_IS_BUFFERLIST (obj_type) && bclass->render_list) ||
+ (!OBJ_IS_BUFFERLIST (obj_type) && bclass->render))) {
gint do_qos;
/* read once, to get same value before and after */
if (do_qos)
gst_base_sink_do_render_stats (basesink, TRUE);
- if (!is_list) {
+ if (!OBJ_IS_BUFFERLIST (obj_type)) {
GstBuffer *buf;
/* For buffer lists do not set last buffer. Creating buffer
priv->rendered++;
}
- } else if (G_LIKELY (GST_IS_EVENT (obj))) {
+ } else if (G_LIKELY (OBJ_IS_EVENT (obj_type))) {
GstEvent *event = GST_EVENT_CAST (obj);
gboolean event_res = TRUE;
GstEventType type;
* function does not take ownership of obj.
*/
static GstFlowReturn
-gst_base_sink_preroll_object (GstBaseSink * basesink, gboolean is_list,
+gst_base_sink_preroll_object (GstBaseSink * basesink, guint8 obj_type,
GstMiniObject * obj)
{
GstFlowReturn ret;
GST_DEBUG_OBJECT (basesink, "prerolling object %p", obj);
/* if it's a buffer, we need to call the preroll method */
- if (G_LIKELY (is_list || GST_IS_BUFFER (obj)) && basesink->priv->call_preroll) {
+ if (G_LIKELY (OBJ_IS_BUFFERFULL (obj_type) && basesink->priv->call_preroll)) {
GstBaseSinkClass *bclass;
GstBuffer *buf;
GstClockTime timestamp;
- if (is_list) {
- buf = gst_buffer_list_get (GST_BUFFER_LIST_CAST (obj), 0, 0);
+ if (OBJ_IS_BUFFERLIST (obj_type)) {
+ buf = gst_buffer_list_get (GST_BUFFER_LIST_CAST (obj), 0);
g_assert (NULL != buf);
} else {
buf = GST_BUFFER_CAST (obj);
* with meaningful data can be done only with memcpy which will
* significantly affect performance
*/
- if (!is_list) {
+ if (!OBJ_IS_BUFFERLIST (obj_type)) {
gst_base_sink_set_last_buffer (basesink, buf);
}
*/
static GstFlowReturn
gst_base_sink_queue_object_unlocked (GstBaseSink * basesink, GstPad * pad,
- gboolean is_list, gpointer obj, gboolean prerollable)
+ guint8 obj_type, gpointer obj, gboolean prerollable)
{
GstFlowReturn ret = GST_FLOW_OK;
gint length;
/* first prerollable item needs to finish the preroll */
if (length == 1) {
- ret = gst_base_sink_preroll_object (basesink, is_list, obj);
+ ret = gst_base_sink_preroll_object (basesink, obj_type, obj);
if (G_UNLIKELY (ret != GST_FLOW_OK))
goto preroll_failed;
}
q = basesink->preroll_queue;
while (G_UNLIKELY (!g_queue_is_empty (q))) {
GstMiniObject *o;
+ guint8 ot;
o = g_queue_pop_head (q);
GST_DEBUG_OBJECT (basesink, "rendering queued object %p", o);
+ ot = get_object_type (o);
+
/* do something with the return value */
- ret = gst_base_sink_render_object (basesink, pad, FALSE, o);
+ ret = gst_base_sink_render_object (basesink, pad, ot, o);
if (ret != GST_FLOW_OK)
goto dequeue_failed;
}
/* now render the object */
- ret = gst_base_sink_render_object (basesink, pad, is_list, obj);
+ ret = gst_base_sink_render_object (basesink, pad, obj_type, obj);
basesink->preroll_queued = 0;
return ret;
* the queue.
*
* This function takes ownership of obj.
+ *
+ * Note: Only GstEvent seem to be passed to this private method
*/
static GstFlowReturn
gst_base_sink_queue_object (GstBaseSink * basesink, GstPad * pad,
{
GstFlowReturn ret;
- GST_PAD_PREROLL_LOCK (pad);
+ GST_BASE_SINK_PREROLL_LOCK (basesink);
if (G_UNLIKELY (basesink->flushing))
goto flushing;
goto was_eos;
ret =
- gst_base_sink_queue_object_unlocked (basesink, pad, FALSE, obj,
+ gst_base_sink_queue_object_unlocked (basesink, pad, _PR_IS_EVENT, obj,
prerollable);
- GST_PAD_PREROLL_UNLOCK (pad);
+ GST_BASE_SINK_PREROLL_UNLOCK (basesink);
return ret;
flushing:
{
GST_DEBUG_OBJECT (basesink, "sink is flushing");
- GST_PAD_PREROLL_UNLOCK (pad);
+ GST_BASE_SINK_PREROLL_UNLOCK (basesink);
gst_mini_object_unref (obj);
return GST_FLOW_WRONG_STATE;
}
{
GST_DEBUG_OBJECT (basesink,
"we are EOS, dropping object, return UNEXPECTED");
- GST_PAD_PREROLL_UNLOCK (pad);
+ GST_BASE_SINK_PREROLL_UNLOCK (basesink);
gst_mini_object_unref (obj);
return GST_FLOW_UNEXPECTED;
}
* anymore */
GST_PAD_STREAM_LOCK (pad);
gst_base_sink_reset_qos (basesink);
+ /* and we need to commit our state again on the next
+ * prerolled buffer */
+ basesink->playing_async = TRUE;
if (basesink->priv->async_enabled) {
- /* and we need to commit our state again on the next
- * prerolled buffer */
- basesink->playing_async = TRUE;
gst_element_lost_state (GST_ELEMENT_CAST (basesink));
} else {
basesink->priv->have_latency = TRUE;
- basesink->need_preroll = FALSE;
}
gst_base_sink_set_last_buffer (basesink, NULL);
GST_PAD_STREAM_UNLOCK (pad);
/* we need new segment info after the flush. */
basesink->have_newsegment = FALSE;
gst_segment_init (&basesink->segment, GST_FORMAT_UNDEFINED);
- gst_segment_init (basesink->abidata.ABI.clip_segment, GST_FORMAT_UNDEFINED);
+ gst_segment_init (basesink->clip_segment, GST_FORMAT_UNDEFINED);
}
GST_OBJECT_UNLOCK (basesink);
}
GstBaseSinkClass *bclass;
basesink = GST_BASE_SINK (gst_pad_get_parent (pad));
+ if (G_UNLIKELY (basesink == NULL)) {
+ gst_event_unref (event);
+ return FALSE;
+ }
bclass = GST_BASE_SINK_GET_CLASS (basesink);
- GST_DEBUG_OBJECT (basesink, "reveived event %p %" GST_PTR_FORMAT, event,
+ GST_DEBUG_OBJECT (basesink, "received event %p %" GST_PTR_FORMAT, event,
event);
switch (GST_EVENT_TYPE (event)) {
{
GstFlowReturn ret;
- GST_PAD_PREROLL_LOCK (pad);
+ GST_BASE_SINK_PREROLL_LOCK (basesink);
if (G_UNLIKELY (basesink->flushing))
goto flushing;
/* EOS is a prerollable object, we call the unlocked version because it
* does not check the received_eos flag. */
ret = gst_base_sink_queue_object_unlocked (basesink, pad,
- FALSE, GST_MINI_OBJECT_CAST (event), TRUE);
+ _PR_IS_EVENT, GST_MINI_OBJECT_CAST (event), TRUE);
if (G_UNLIKELY (ret != GST_FLOW_OK))
result = FALSE;
}
- GST_PAD_PREROLL_UNLOCK (pad);
+ GST_BASE_SINK_PREROLL_UNLOCK (basesink);
break;
}
case GST_EVENT_NEWSEGMENT:
GST_DEBUG_OBJECT (basesink, "newsegment %p", event);
- GST_PAD_PREROLL_LOCK (pad);
+ GST_BASE_SINK_PREROLL_LOCK (basesink);
if (G_UNLIKELY (basesink->flushing))
goto flushing;
* we need to configure the current clipping segment and insert the event
* in the queue to serialize it with the buffers for rendering. */
gst_base_sink_configure_segment (basesink, pad, event,
- basesink->abidata.ABI.clip_segment);
+ basesink->clip_segment);
ret =
gst_base_sink_queue_object_unlocked (basesink, pad,
- FALSE, GST_MINI_OBJECT_CAST (event), FALSE);
+ _PR_IS_EVENT, GST_MINI_OBJECT_CAST (event), FALSE);
if (G_UNLIKELY (ret != GST_FLOW_OK))
result = FALSE;
else {
GST_OBJECT_UNLOCK (basesink);
}
}
- GST_PAD_PREROLL_UNLOCK (pad);
+ GST_BASE_SINK_PREROLL_UNLOCK (basesink);
break;
}
case GST_EVENT_FLUSH_START:
flushing:
{
GST_DEBUG_OBJECT (basesink, "we are flushing");
- GST_PAD_PREROLL_UNLOCK (pad);
+ GST_BASE_SINK_PREROLL_UNLOCK (basesink);
result = FALSE;
gst_event_unref (event);
goto done;
*/
static GstFlowReturn
gst_base_sink_chain_unlocked (GstBaseSink * basesink, GstPad * pad,
- gboolean is_list, gpointer obj)
+ guint8 obj_type, gpointer obj)
{
GstBaseSinkClass *bclass;
GstFlowReturn result;
if (G_UNLIKELY (basesink->priv->received_eos))
goto was_eos;
- if (is_list) {
- time_buf = gst_buffer_list_get (GST_BUFFER_LIST_CAST (obj), 0, 0);
+ if (OBJ_IS_BUFFERLIST (obj_type)) {
+ time_buf = gst_buffer_list_get (GST_BUFFER_LIST_CAST (obj), 0);
g_assert (NULL != time_buf);
} else {
time_buf = GST_BUFFER_CAST (obj);
}
/* for code clarity */
- clip_segment = basesink->abidata.ABI.clip_segment;
+ clip_segment = basesink->clip_segment;
if (G_UNLIKELY (!basesink->have_newsegment)) {
gboolean sync;
/* now we can process the buffer in the queue, this function takes ownership
* of the buffer */
result = gst_base_sink_queue_object_unlocked (basesink, pad,
- is_list, obj, TRUE);
+ obj_type, obj, TRUE);
return result;
/* ERRORS */
*/
static GstFlowReturn
gst_base_sink_chain_main (GstBaseSink * basesink, GstPad * pad,
- gboolean is_list, gpointer obj)
+ guint8 obj_type, gpointer obj)
{
GstFlowReturn result;
if (G_UNLIKELY (basesink->pad_mode != GST_ACTIVATE_PUSH))
goto wrong_mode;
- GST_PAD_PREROLL_LOCK (pad);
- result = gst_base_sink_chain_unlocked (basesink, pad, is_list, obj);
- GST_PAD_PREROLL_UNLOCK (pad);
+ GST_BASE_SINK_PREROLL_LOCK (basesink);
+ result = gst_base_sink_chain_unlocked (basesink, pad, obj_type, obj);
+ GST_BASE_SINK_PREROLL_UNLOCK (basesink);
done:
return result;
basesink = GST_BASE_SINK (GST_OBJECT_PARENT (pad));
- return gst_base_sink_chain_main (basesink, pad, FALSE, buf);
+ return gst_base_sink_chain_main (basesink, pad, _PR_IS_BUFFER, buf);
}
static GstFlowReturn
bclass = GST_BASE_SINK_GET_CLASS (basesink);
if (G_LIKELY (bclass->render_list)) {
- result = gst_base_sink_chain_main (basesink, pad, TRUE, list);
+ result = gst_base_sink_chain_main (basesink, pad, _PR_IS_BUFFERLIST, list);
} else {
- GstBufferListIterator *it;
- GstBuffer *group;
+ guint i, len;
+ GstBuffer *buffer;
GST_INFO_OBJECT (pad, "chaining each group in list as a merged buffer");
- it = gst_buffer_list_iterate (list);
+ len = gst_buffer_list_len (list);
- if (gst_buffer_list_iterator_next_group (it)) {
- do {
- group = gst_buffer_list_iterator_merge_group (it);
- if (group == NULL) {
- group = gst_buffer_new ();
- GST_CAT_INFO_OBJECT (GST_CAT_SCHEDULING, pad, "chaining empty group");
- } else {
- GST_CAT_INFO_OBJECT (GST_CAT_SCHEDULING, pad, "chaining group");
- }
- result = gst_base_sink_chain_main (basesink, pad, FALSE, group);
- } while (result == GST_FLOW_OK
- && gst_buffer_list_iterator_next_group (it));
- } else {
- GST_CAT_INFO_OBJECT (GST_CAT_SCHEDULING, pad, "chaining empty group");
- result =
- gst_base_sink_chain_main (basesink, pad, FALSE, gst_buffer_new ());
+ result = GST_FLOW_OK;
+ for (i = 0; i < len; i++) {
+ buffer = gst_buffer_list_get (list, 0);
+ result = gst_base_sink_chain_main (basesink, pad, _PR_IS_BUFFER,
+ gst_buffer_ref (buffer));
+ if (result != GST_FLOW_OK)
+ break;
}
- gst_buffer_list_iterator_free (it);
gst_buffer_list_unref (list);
}
return result;
GST_DEBUG_OBJECT (sink, "stop flushing upstream");
gst_pad_push_event (pad, gst_event_new_flush_stop ());
gst_base_sink_flush_stop (sink, pad);
- } else if (res && sink->abidata.ABI.running) {
+ } else if (res && sink->running) {
/* we are running the current segment and doing a non-flushing seek,
* close the segment first based on the last_stop. */
GST_DEBUG_OBJECT (sink, "closing running segment %" G_GINT64_FORMAT
}
sink->priv->discont = TRUE;
- sink->abidata.ABI.running = TRUE;
+ sink->running = TRUE;
GST_PAD_STREAM_UNLOCK (pad);
if (bclass->unlock)
bclass->unlock (sink);
- GST_PAD_PREROLL_LOCK (sink->sinkpad);
+ GST_BASE_SINK_PREROLL_LOCK (sink);
/* now that we have the PREROLL lock, clear our unlock request */
if (bclass->unlock_stop)
bclass->unlock_stop (sink);
if (sink->have_preroll) {
GST_DEBUG_OBJECT (sink, "signal waiter");
priv->step_unlock = TRUE;
- GST_PAD_PREROLL_SIGNAL (sink->sinkpad);
+ GST_BASE_SINK_PREROLL_SIGNAL (sink);
}
- GST_PAD_PREROLL_UNLOCK (sink->sinkpad);
+ GST_BASE_SINK_PREROLL_UNLOCK (sink);
} else {
/* update the stepinfo and make it valid */
set_step_info (sink, current, pending, seqnum, format, amount, rate, flush,
if (G_UNLIKELY (buf == NULL))
goto no_buffer;
- offset += GST_BUFFER_SIZE (buf);
+ offset += gst_buffer_get_size (buf);
gst_segment_set_last_stop (&basesink->segment, GST_FORMAT_BYTES, offset);
- GST_PAD_PREROLL_LOCK (pad);
- result = gst_base_sink_chain_unlocked (basesink, pad, FALSE, buf);
- GST_PAD_PREROLL_UNLOCK (pad);
+ GST_BASE_SINK_PREROLL_LOCK (basesink);
+ result = gst_base_sink_chain_unlocked (basesink, pad, _PR_IS_BUFFER, buf);
+ GST_BASE_SINK_PREROLL_UNLOCK (basesink);
if (G_UNLIKELY (result != GST_FLOW_OK))
goto paused;
bclass->unlock (basesink);
}
- GST_PAD_PREROLL_LOCK (pad);
+ GST_BASE_SINK_PREROLL_LOCK (basesink);
basesink->flushing = flushing;
if (flushing) {
/* step 1, now that we have the PREROLL lock, clear our unlock request */
"flushing out data thread, need preroll to TRUE");
gst_base_sink_preroll_queue_flush (basesink, pad);
}
- GST_PAD_PREROLL_UNLOCK (pad);
+ GST_BASE_SINK_PREROLL_UNLOCK (basesink);
return TRUE;
}
format = GST_FORMAT_BYTES;
gst_segment_init (&basesink->segment, format);
- gst_segment_init (basesink->abidata.ABI.clip_segment, format);
+ gst_segment_init (basesink->clip_segment, format);
GST_OBJECT_LOCK (basesink);
basesink->have_newsegment = TRUE;
GST_OBJECT_UNLOCK (basesink);
if (result) {
GST_DEBUG_OBJECT (basesink,
"setting duration in bytes to %" G_GINT64_FORMAT, duration);
- gst_segment_set_duration (basesink->abidata.ABI.clip_segment, format,
- duration);
+ gst_segment_set_duration (basesink->clip_segment, format, duration);
gst_segment_set_duration (&basesink->segment, format, duration);
} else {
GST_DEBUG_OBJECT (basesink, "unknown duration");
return result;
}
-/* get the end position of the last seen object, this is used
- * for EOS and for making sure that we don't report a position we
- * have not reached yet. With LOCK. */
-static gboolean
-gst_base_sink_get_position_last (GstBaseSink * basesink, GstFormat format,
- gint64 * cur, gboolean * upstream)
-{
- GstFormat oformat;
- GstSegment *segment;
- gboolean ret = TRUE;
-
- segment = &basesink->segment;
- oformat = segment->format;
-
- if (oformat == GST_FORMAT_TIME) {
- /* return last observed stream time, we keep the stream time around in the
- * time format. */
- *cur = basesink->priv->current_sstop;
- } else {
- /* convert last stop to stream time */
- *cur = gst_segment_to_stream_time (segment, oformat, segment->last_stop);
- }
-
- if (*cur != -1 && oformat != format) {
- GST_OBJECT_UNLOCK (basesink);
- /* convert to the target format if we need to, release lock first */
- ret =
- gst_pad_query_convert (basesink->sinkpad, oformat, *cur, &format, cur);
- if (!ret) {
- *cur = -1;
- *upstream = TRUE;
- }
- GST_OBJECT_LOCK (basesink);
- }
-
- GST_DEBUG_OBJECT (basesink, "POSITION: %" GST_TIME_FORMAT,
- GST_TIME_ARGS (*cur));
-
- return ret;
-}
-
-/* get the position when we are PAUSED, this is the stream time of the buffer
- * that prerolled. If no buffer is prerolled (we are still flushing), this
- * value will be -1. With LOCK. */
-static gboolean
-gst_base_sink_get_position_paused (GstBaseSink * basesink, GstFormat format,
- gint64 * cur, gboolean * upstream)
-{
- gboolean res;
- gint64 time;
- GstSegment *segment;
- GstFormat oformat;
-
- /* we don't use the clip segment in pull mode, when seeking we update the
- * main segment directly with the new segment values without it having to be
- * activated by the rendering after preroll */
- if (basesink->pad_mode == GST_ACTIVATE_PUSH)
- segment = basesink->abidata.ABI.clip_segment;
- else
- segment = &basesink->segment;
- oformat = segment->format;
-
- if (oformat == GST_FORMAT_TIME) {
- *cur = basesink->priv->current_sstart;
- if (segment->rate < 0.0 &&
- GST_CLOCK_TIME_IS_VALID (basesink->priv->current_sstop)) {
- /* for reverse playback we prefer the stream time stop position if we have
- * one */
- *cur = basesink->priv->current_sstop;
- }
- } else {
- *cur = gst_segment_to_stream_time (segment, oformat, segment->last_stop);
- }
-
- time = segment->time;
-
- if (*cur != -1) {
- *cur = MAX (*cur, time);
- GST_DEBUG_OBJECT (basesink, "POSITION as max: %" GST_TIME_FORMAT
- ", time %" GST_TIME_FORMAT, GST_TIME_ARGS (*cur), GST_TIME_ARGS (time));
- } else {
- /* we have no buffer, use the segment times. */
- if (segment->rate >= 0.0) {
- /* forward, next position is always the time of the segment */
- *cur = time;
- GST_DEBUG_OBJECT (basesink, "POSITION as time: %" GST_TIME_FORMAT,
- GST_TIME_ARGS (*cur));
- } else {
- /* reverse, next expected timestamp is segment->stop. We use the function
- * to get things right for negative applied_rates. */
- *cur = gst_segment_to_stream_time (segment, oformat, segment->stop);
- GST_DEBUG_OBJECT (basesink, "reverse POSITION: %" GST_TIME_FORMAT,
- GST_TIME_ARGS (*cur));
- }
- }
-
- res = (*cur != -1);
- if (res && oformat != format) {
- GST_OBJECT_UNLOCK (basesink);
- res =
- gst_pad_query_convert (basesink->sinkpad, oformat, *cur, &format, cur);
- if (!res) {
- *cur = -1;
- *upstream = TRUE;
- }
- GST_OBJECT_LOCK (basesink);
- }
-
- return res;
-}
-
static gboolean
gst_base_sink_get_position (GstBaseSink * basesink, GstFormat format,
gint64 * cur, gboolean * upstream)
{
- GstClock *clock;
+ GstClock *clock = NULL;
gboolean res = FALSE;
GstFormat oformat, tformat;
+ GstSegment *segment;
GstClockTime now, latency;
GstClockTimeDiff base;
gint64 time, accum, duration;
gdouble rate;
gint64 last;
+ gboolean last_seen, with_clock, in_paused;
GST_OBJECT_LOCK (basesink);
- /* our intermediate time format */
- tformat = GST_FORMAT_TIME;
- /* get the format in the segment */
- oformat = basesink->segment.format;
-
- /* can only give answer based on the clock if not EOS */
- if (G_UNLIKELY (basesink->eos))
- goto in_eos;
-
/* we can only get the segment when we are not NULL or READY */
if (!basesink->have_newsegment)
goto wrong_state;
+ in_paused = FALSE;
/* when not in PLAYING or when we're busy with a state change, we
* cannot read from the clock so we report time based on the
* last seen timestamp. */
if (GST_STATE (basesink) != GST_STATE_PLAYING ||
- GST_STATE_PENDING (basesink) != GST_STATE_VOID_PENDING)
- goto in_pause;
+ GST_STATE_PENDING (basesink) != GST_STATE_VOID_PENDING) {
+ in_paused = TRUE;
+ }
- /* we need to sync on the clock. */
+ /* we don't use the clip segment in pull mode, when seeking we update the
+ * main segment directly with the new segment values without it having to be
+ * activated by the rendering after preroll */
+ if (basesink->pad_mode == GST_ACTIVATE_PUSH)
+ segment = basesink->clip_segment;
+ else
+ segment = &basesink->segment;
+
+ /* our intermediate time format */
+ tformat = GST_FORMAT_TIME;
+ /* get the format in the segment */
+ oformat = segment->format;
+
+ /* report with last seen position when EOS */
+ last_seen = basesink->eos;
+
+ /* assume we will use the clock for getting the current position */
+ with_clock = TRUE;
if (basesink->sync == FALSE)
- goto no_sync;
+ with_clock = FALSE;
/* and we need a clock */
if (G_UNLIKELY ((clock = GST_ELEMENT_CLOCK (basesink)) == NULL))
- goto no_sync;
+ with_clock = FALSE;
+ else
+ gst_object_ref (clock);
/* collect all data we need holding the lock */
- if (GST_CLOCK_TIME_IS_VALID (basesink->segment.time))
- time = basesink->segment.time;
+ if (GST_CLOCK_TIME_IS_VALID (segment->time))
+ time = segment->time;
else
time = 0;
- if (GST_CLOCK_TIME_IS_VALID (basesink->segment.stop))
- duration = basesink->segment.stop - basesink->segment.start;
+ if (GST_CLOCK_TIME_IS_VALID (segment->stop))
+ duration = segment->stop - segment->start;
else
duration = 0;
- base = GST_ELEMENT_CAST (basesink)->base_time;
- accum = basesink->segment.accum;
- rate = basesink->segment.rate * basesink->segment.applied_rate;
+ accum = segment->accum;
+ rate = segment->rate * segment->applied_rate;
latency = basesink->priv->latency;
- gst_object_ref (clock);
+ if (oformat == GST_FORMAT_TIME) {
+ gint64 start, stop;
- /* this function might release the LOCK */
- gst_base_sink_get_position_last (basesink, format, &last, upstream);
+ start = basesink->priv->current_sstart;
+ stop = basesink->priv->current_sstop;
+
+ if (in_paused) {
+ /* in paused we use the last position as a lower bound */
+ if (stop == -1 || segment->rate > 0.0)
+ last = start;
+ else
+ last = stop;
+ } else {
+ /* in playing, use last stop time as upper bound */
+ if (start == -1 || segment->rate > 0.0)
+ last = stop;
+ else
+ last = start;
+ }
+ } else {
+ /* convert last stop to stream time */
+ last = gst_segment_to_stream_time (segment, oformat, segment->last_stop);
+ }
+
+ if (in_paused) {
+ /* in paused, use start_time */
+ base = GST_ELEMENT_START_TIME (basesink);
+ GST_DEBUG_OBJECT (basesink, "in paused, using start time %" GST_TIME_FORMAT,
+ GST_TIME_ARGS (base));
+ } else if (with_clock) {
+ /* else use clock when needed */
+ base = GST_ELEMENT_CAST (basesink)->base_time;
+ GST_DEBUG_OBJECT (basesink, "using clock and base time %" GST_TIME_FORMAT,
+ GST_TIME_ARGS (base));
+ } else {
+ /* else, no sync or clock -> no base time */
+ GST_DEBUG_OBJECT (basesink, "no sync or no clock");
+ base = -1;
+ }
+
+ /* no base, we can't calculate running_time, use last seem timestamp to report
+ * time */
+ if (base == -1)
+ last_seen = TRUE;
/* need to release the object lock before we can get the time,
* a clock might take the LOCK of the provider, which could be
* a basesink subclass. */
GST_OBJECT_UNLOCK (basesink);
- now = gst_clock_get_time (clock);
-
- if (oformat != tformat) {
- /* convert accum, time and duration to time */
- if (!gst_pad_query_convert (basesink->sinkpad, oformat, accum, &tformat,
- &accum))
- goto convert_failed;
- if (!gst_pad_query_convert (basesink->sinkpad, oformat, duration, &tformat,
- &duration))
- goto convert_failed;
- if (!gst_pad_query_convert (basesink->sinkpad, oformat, time, &tformat,
- &time))
- goto convert_failed;
- }
-
- /* subtract base time and accumulated time from the clock time.
- * Make sure we don't go negative. This is the current time in
- * the segment which we need to scale with the combined
- * rate and applied rate. */
- base += accum;
- base += latency;
- if (GST_CLOCK_DIFF (base, now) < 0)
- base = now;
-
- /* for negative rates we need to count back from the segment
- * duration. */
- if (rate < 0.0)
- time += duration;
-
- *cur = time + gst_guint64_to_gdouble (now - base) * rate;
+ if (last_seen) {
+ /* in EOS or when no valid stream_time, report the value of last seen
+ * timestamp */
+ if (last == -1) {
+ /* no timestamp, we need to ask upstream */
+ GST_DEBUG_OBJECT (basesink, "no last seen timestamp, asking upstream");
+ res = FALSE;
+ *upstream = TRUE;
+ goto done;
+ }
+ GST_DEBUG_OBJECT (basesink, "using last seen timestamp %" GST_TIME_FORMAT,
+ GST_TIME_ARGS (last));
+ *cur = last;
+ } else {
+ if (oformat != tformat) {
+ /* convert accum, time and duration to time */
+ if (!gst_pad_query_convert (basesink->sinkpad, oformat, accum, &tformat,
+ &accum))
+ goto convert_failed;
+ if (!gst_pad_query_convert (basesink->sinkpad, oformat, duration,
+ &tformat, &duration))
+ goto convert_failed;
+ if (!gst_pad_query_convert (basesink->sinkpad, oformat, time, &tformat,
+ &time))
+ goto convert_failed;
+ if (!gst_pad_query_convert (basesink->sinkpad, oformat, last, &tformat,
+ &last))
+ goto convert_failed;
+
+ /* assume time format from now on */
+ oformat = tformat;
+ }
- /* never report more than last seen position */
- if (last != -1)
- *cur = MIN (last, *cur);
+ if (!in_paused && with_clock) {
+ now = gst_clock_get_time (clock);
+ } else {
+ now = base;
+ base = 0;
+ }
- gst_object_unref (clock);
+ /* subtract base time and accumulated time from the clock time.
+ * Make sure we don't go negative. This is the current time in
+ * the segment which we need to scale with the combined
+ * rate and applied rate. */
+ base += accum;
+ base += latency;
+ if (GST_CLOCK_DIFF (base, now) < 0)
+ base = now;
+
+ /* for negative rates we need to count back from the segment
+ * duration. */
+ if (rate < 0.0)
+ time += duration;
+
+ *cur = time + gst_guint64_to_gdouble (now - base) * rate;
+
+ if (in_paused) {
+ /* never report less than segment values in paused */
+ if (last != -1)
+ *cur = MAX (last, *cur);
+ } else {
+ /* never report more than last seen position in playing */
+ if (last != -1)
+ *cur = MIN (last, *cur);
+ }
- GST_DEBUG_OBJECT (basesink,
- "now %" GST_TIME_FORMAT " - base %" GST_TIME_FORMAT " - accum %"
- GST_TIME_FORMAT " + time %" GST_TIME_FORMAT,
- GST_TIME_ARGS (now), GST_TIME_ARGS (base),
- GST_TIME_ARGS (accum), GST_TIME_ARGS (time));
+ GST_DEBUG_OBJECT (basesink,
+ "now %" GST_TIME_FORMAT " - base %" GST_TIME_FORMAT " - accum %"
+ GST_TIME_FORMAT " + time %" GST_TIME_FORMAT " last %" GST_TIME_FORMAT,
+ GST_TIME_ARGS (now), GST_TIME_ARGS (base), GST_TIME_ARGS (accum),
+ GST_TIME_ARGS (time), GST_TIME_ARGS (last));
+ }
if (oformat != format) {
- /* convert time to final format */
- if (!gst_pad_query_convert (basesink->sinkpad, tformat, *cur, &format, cur))
+ /* convert to final format */
+ if (!gst_pad_query_convert (basesink->sinkpad, oformat, *cur, &format, cur))
goto convert_failed;
}
done:
GST_DEBUG_OBJECT (basesink, "res: %d, POSITION: %" GST_TIME_FORMAT,
res, GST_TIME_ARGS (*cur));
+
+ if (clock)
+ gst_object_unref (clock);
+
return res;
/* special cases */
-in_eos:
- {
- GST_DEBUG_OBJECT (basesink, "position in EOS");
- res = gst_base_sink_get_position_last (basesink, format, cur, upstream);
- GST_OBJECT_UNLOCK (basesink);
- goto done;
- }
-in_pause:
- {
- GST_DEBUG_OBJECT (basesink, "position in PAUSED");
- res = gst_base_sink_get_position_paused (basesink, format, cur, upstream);
- GST_OBJECT_UNLOCK (basesink);
- goto done;
- }
wrong_state:
{
/* in NULL or READY we always return FALSE and -1 */
GST_OBJECT_UNLOCK (basesink);
goto done;
}
-no_sync:
- {
- /* report last seen timestamp if any, else ask upstream to answer */
- if ((*cur = basesink->priv->current_sstart) != -1)
- res = TRUE;
- else
- *upstream = TRUE;
-
- GST_DEBUG_OBJECT (basesink, "no sync, res %d, POSITION %" GST_TIME_FORMAT,
- res, GST_TIME_ARGS (*cur));
- GST_OBJECT_UNLOCK (basesink);
- return res;
- }
convert_failed:
{
GST_DEBUG_OBJECT (basesink, "convert failed, try upstream");
*upstream = TRUE;
- return FALSE;
+ res = FALSE;
+ goto done;
}
}
case GST_STATE_CHANGE_READY_TO_PAUSED:
/* need to complete preroll before this state change completes, there
* is no data flow in READY so we can safely assume we need to preroll. */
- GST_PAD_PREROLL_LOCK (basesink->sinkpad);
+ GST_BASE_SINK_PREROLL_LOCK (basesink);
GST_DEBUG_OBJECT (basesink, "READY to PAUSED");
basesink->have_newsegment = FALSE;
gst_segment_init (&basesink->segment, GST_FORMAT_UNDEFINED);
- gst_segment_init (basesink->abidata.ABI.clip_segment,
- GST_FORMAT_UNDEFINED);
+ gst_segment_init (basesink->clip_segment, GST_FORMAT_UNDEFINED);
basesink->offset = 0;
basesink->have_preroll = FALSE;
priv->step_unlock = FALSE;
} else {
priv->have_latency = TRUE;
}
- GST_PAD_PREROLL_UNLOCK (basesink->sinkpad);
+ GST_BASE_SINK_PREROLL_UNLOCK (basesink);
break;
case GST_STATE_CHANGE_PAUSED_TO_PLAYING:
- GST_PAD_PREROLL_LOCK (basesink->sinkpad);
+ GST_BASE_SINK_PREROLL_LOCK (basesink);
if (!gst_base_sink_needs_preroll (basesink)) {
GST_DEBUG_OBJECT (basesink, "PAUSED to PLAYING, don't need preroll");
/* no preroll needed anymore now. */
gst_element_post_message (GST_ELEMENT_CAST (basesink), message);
} else {
GST_DEBUG_OBJECT (basesink, "signal preroll");
- GST_PAD_PREROLL_SIGNAL (basesink->sinkpad);
+ GST_BASE_SINK_PREROLL_SIGNAL (basesink);
}
} else {
GST_DEBUG_OBJECT (basesink, "PAUSED to PLAYING, we are not prerolled");
gst_message_new_async_start (GST_OBJECT_CAST (basesink), FALSE));
}
}
- GST_PAD_PREROLL_UNLOCK (basesink->sinkpad);
+ GST_BASE_SINK_PREROLL_UNLOCK (basesink);
break;
default:
break;
if (bclass->unlock)
bclass->unlock (basesink);
- GST_PAD_PREROLL_LOCK (basesink->sinkpad);
+ GST_BASE_SINK_PREROLL_LOCK (basesink);
GST_DEBUG_OBJECT (basesink, "got preroll lock");
/* now that we have the PREROLL lock, clear our unlock request */
if (bclass->unlock_stop)
", dropped: %" G_GUINT64_FORMAT, priv->rendered, priv->dropped);
gst_base_sink_reset_qos (basesink);
- GST_PAD_PREROLL_UNLOCK (basesink->sinkpad);
+ GST_BASE_SINK_PREROLL_UNLOCK (basesink);
break;
case GST_STATE_CHANGE_PAUSED_TO_READY:
- GST_PAD_PREROLL_LOCK (basesink->sinkpad);
+ GST_BASE_SINK_PREROLL_LOCK (basesink);
/* start by reseting our position state with the object lock so that the
* position query gets the right idea. We do this before we post the
* messages so that the message handlers pick this up. */
priv->current_sstart = GST_CLOCK_TIME_NONE;
priv->current_sstop = GST_CLOCK_TIME_NONE;
priv->have_latency = FALSE;
+ if (priv->cached_clock_id) {
+ gst_clock_id_unref (priv->cached_clock_id);
+ priv->cached_clock_id = NULL;
+ }
GST_OBJECT_UNLOCK (basesink);
gst_base_sink_set_last_buffer (basesink, NULL);
} else {
GST_DEBUG_OBJECT (basesink, "PAUSED to READY, don't need_preroll");
}
- GST_PAD_PREROLL_UNLOCK (basesink->sinkpad);
+ GST_BASE_SINK_PREROLL_UNLOCK (basesink);
break;
case GST_STATE_CHANGE_READY_TO_NULL:
if (bclass->stop) {