gstclock.c 17.2 KB
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/* GStreamer
 * Copyright (C) 1999,2000 Erik Walthinsen <omega@cse.ogi.edu>
 *                    2000 Wim Taymans <wtay@chello.be>
 *
 * gstclock.c: Clock subsystem for maintaining time sync
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 *
 * This library is free software; you can redistribute it and/or
 * modify it under the terms of the GNU Library General Public
 * License as published by the Free Software Foundation; either
 * version 2 of the License, or (at your option) any later version.
 *
 * This library is distributed in the hope that it will be useful,
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
 * Library General Public License for more details.
 *
 * You should have received a copy of the GNU Library General Public
 * License along with this library; if not, write to the
 * Free Software Foundation, Inc., 59 Temple Place - Suite 330,
 * Boston, MA 02111-1307, USA.
 */

#include <sys/time.h>
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#include "gst_private.h"
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#include "gstclock.h"
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#include "gstlog.h"
#include "gstmemchunk.h"
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/* #define GST_WITH_ALLOC_TRACE */
#include "gstmemchunk.h"

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#define DEFAULT_MAX_DIFF	(2 * GST_SECOND)

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enum {
  ARG_0,
  ARG_STATS,
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  ARG_MAX_DIFF,
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};

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static GstMemChunk   *_gst_clock_entries_chunk;
static GstAllocTrace *_gst_clock_entry_trace;
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static void		gst_clock_class_init		(GstClockClass *klass);
static void		gst_clock_init			(GstClock *clock);
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static void 		gst_clock_dispose 		(GObject *object);

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static void             gst_clock_set_property		(GObject *object, guint prop_id, 
							 const GValue *value, GParamSpec *pspec);
static void             gst_clock_get_property		(GObject *object, guint prop_id, 
							 GValue *value, GParamSpec * pspec);
static void		gst_clock_update_stats		(GstClock *clock);
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static GstObjectClass *parent_class = NULL;
/* static guint gst_clock_signals[LAST_SIGNAL] = { 0 }; */

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static GstClockID
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gst_clock_entry_new (GstClock *clock, GstClockTime time, 
		     GstClockTime interval, GstClockEntryType type)
{
  GstClockEntry *entry;
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  entry = gst_mem_chunk_alloc (_gst_clock_entries_chunk);
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  gst_alloc_trace_new (_gst_clock_entry_trace, entry);
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  entry->clock = clock;
  entry->time = time;
  entry->interval = time;
  entry->type = type;
  entry->status = GST_CLOCK_ENTRY_OK;
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  return (GstClockID) entry;
}
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/**
 * gst_clock_new_single_shot_id
 * @clock: The clockid to get a single shot notification from
 * @time: the requested time
 *
 * Get an ID from the given clock to trigger a single shot 
 * notification at the requested time.
 *
 * Returns: An id that can be used to request the time notification.
 */
GstClockID
gst_clock_new_single_shot_id (GstClock *clock, GstClockTime time)
{
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  g_return_val_if_fail (GST_IS_CLOCK (clock), NULL);

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  return gst_clock_entry_new (clock, 
		  	      time, 
			      GST_CLOCK_TIME_NONE, 
			      GST_CLOCK_ENTRY_SINGLE);
}

/**
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 * gst_clock_new_periodic_id
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 * @clock: The clockid to get a periodic notification id from
 * @start_time: the requested start time
 * @interval: the requested interval
 *
 * Get an ID from the given clock to trigger a periodic notification.
 * The periodeic notifications will be start at time start_time and
 * will then be fired with the given interval.
 *
 * Returns: An id that can be used to request the time notification.
 */
GstClockID
gst_clock_new_periodic_id (GstClock *clock, GstClockTime start_time,
                           GstClockTime interval)
{
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  g_return_val_if_fail (GST_IS_CLOCK (clock), NULL);
  g_return_val_if_fail (start_time != GST_CLOCK_TIME_NONE, NULL);
  g_return_val_if_fail (interval != 0, NULL);

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  return gst_clock_entry_new (clock, 
		  	      start_time, 
			      interval, 
			      GST_CLOCK_ENTRY_PERIODIC);
}

/**
 * gst_clock_id_get_time
 * @id: The clockid to query
 *
 * Get the time of the clock ID
 *
 * Returns: the time of the given clock id
 */
GstClockTime
gst_clock_id_get_time (GstClockID id)
{
  g_return_val_if_fail (id != NULL, GST_CLOCK_TIME_NONE);

  return GST_CLOCK_ENTRY_TIME ((GstClockEntry *)id);
}


/**
 * gst_clock_id_wait
 * @id: The clockid to wait on
 * @jitter: A pointer that will contain the jitter
 *
 * Perform a blocking wait on the given ID. The jitter arg can be
 * NULL
 *
 * Returns: the result of the blocking wait.
 */
GstClockReturn
gst_clock_id_wait (GstClockID id, GstClockTimeDiff *jitter)
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{
  GstClockEntry *entry;
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  GstClock *clock;
  GstClockReturn res = GST_CLOCK_UNSUPPORTED;
  GstClockTime requested;
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  GstClockClass *cclass;
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  g_return_val_if_fail (id != NULL, GST_CLOCK_ERROR);
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  entry = (GstClockEntry *) id;
  requested = GST_CLOCK_ENTRY_TIME (entry);
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  if (requested == GST_CLOCK_TIME_NONE) {
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    return GST_CLOCK_TIMEOUT;
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  }
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  clock = GST_CLOCK_ENTRY_CLOCK (entry);
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  cclass = GST_CLOCK_GET_CLASS (clock);
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  if (cclass->wait) {
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    GstClockTime now;
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    GST_LOCK (clock);
    clock->entries = g_list_prepend (clock->entries, entry);
    GST_UNLOCK (clock);
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    do {
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      res = cclass->wait (clock, entry);
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    }
    while (res == GST_CLOCK_ENTRY_RESTART);

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    GST_LOCK (clock);
    clock->entries = g_list_remove (clock->entries, entry);
    GST_UNLOCK (clock);

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    if (jitter) {
      now = gst_clock_get_time (clock);
      *jitter = now - requested;
    }

    if (clock->stats) {
      gst_clock_update_stats (clock);
    }
  }

  return res;
}

/**
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 * gst_clock_id_wait_async:
 * @id: a #GstClockID to wait on
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 * @func: The callback function 
 * @user_data: User data passed in the calback
 *
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 * Register a callback on the given clockid with the given
 * function and user_data.
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 *
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 * Returns: the result of the non blocking wait.
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 */
GstClockReturn
gst_clock_id_wait_async (GstClockID id,
		         GstClockCallback func, gpointer user_data)
{
  GstClockEntry *entry;
  GstClock *clock;
  GstClockReturn res = GST_CLOCK_UNSUPPORTED;
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  GstClockClass *cclass;
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  g_return_val_if_fail (id != NULL, GST_CLOCK_ERROR);
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  g_return_val_if_fail (func != NULL, GST_CLOCK_ERROR);
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  entry = (GstClockEntry *) id;
  clock = entry->clock;

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  if (GST_CLOCK_ENTRY_TIME (entry) == GST_CLOCK_TIME_NONE) {
    (func) (clock, GST_CLOCK_TIME_NONE, id, user_data);
    return GST_CLOCK_TIMEOUT;
  }

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  cclass = GST_CLOCK_GET_CLASS (clock);

  if (cclass->wait_async) {
    entry->func = func;
    entry->user_data = user_data;

    res = cclass->wait_async (clock, entry);
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  }

  return res;
}

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static void
gst_clock_reschedule_func (GstClockEntry *entry)
{
  entry->status = GST_CLOCK_ENTRY_OK;
  
  gst_clock_id_unlock ((GstClockID)entry);
}

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/**
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 * gst_clock_id_unschedule:
 * @id: The id to unschedule
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 *
 * Cancel an outstanding async notification request with the given ID.
 */
void
gst_clock_id_unschedule (GstClockID id)
{
  GstClockEntry *entry;
  GstClock *clock;
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  GstClockClass *cclass;
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  g_return_if_fail (id != NULL);

  entry = (GstClockEntry *) id;
  clock = entry->clock;
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  cclass = GST_CLOCK_GET_CLASS (clock);

  if (cclass->unschedule)
    cclass->unschedule (clock, entry);
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}

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/**
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 * gst_clock_id_free:
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 * @id: The clockid to free
 *
 * Free the resources held by the given id
 */
void
gst_clock_id_free (GstClockID id)
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{
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  g_return_if_fail (id != NULL);

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  gst_alloc_trace_free (_gst_clock_entry_trace, id);
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  gst_mem_chunk_free (_gst_clock_entries_chunk, id);
}
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/**
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 * gst_clock_id_unlock:
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 * @id: The clockid to unlock
 *
 * Unlock the givan ClockID.
 */
void
gst_clock_id_unlock (GstClockID id)
{
  GstClockEntry *entry;
  GstClock *clock;
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  GstClockClass *cclass;
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  g_return_if_fail (id != NULL);

  entry = (GstClockEntry *) id;
  clock = entry->clock;

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  cclass = GST_CLOCK_GET_CLASS (clock);

  if (cclass->unlock)
    cclass->unlock (clock, entry);
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}

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/**
 * GstClock abstract base class implementation
 */
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GType
gst_clock_get_type (void)
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{
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  static GType clock_type = 0;

  if (!clock_type) {
    static const GTypeInfo clock_info = {
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      sizeof (GstClockClass),
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      NULL,
      NULL,
      (GClassInitFunc) gst_clock_class_init,
      NULL,
      NULL,
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      sizeof (GstClock),
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      4,
      (GInstanceInitFunc) gst_clock_init,
      NULL
    };
    clock_type = g_type_register_static (GST_TYPE_OBJECT, "GstClock", 
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		    			 &clock_info,  G_TYPE_FLAG_ABSTRACT);
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  }
  return clock_type;
}
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static void
gst_clock_class_init (GstClockClass *klass)
{
  GObjectClass *gobject_class;
  GstObjectClass *gstobject_class;
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  gobject_class = (GObjectClass*) klass;
  gstobject_class = (GstObjectClass*) klass;
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  parent_class = g_type_class_ref (GST_TYPE_OBJECT);
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  if (!g_thread_supported ())
    g_thread_init (NULL);

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  _gst_clock_entries_chunk = gst_mem_chunk_new ("GstClockEntries",
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                     sizeof (GstClockEntry), sizeof (GstClockEntry) * 32,
                     G_ALLOC_AND_FREE);
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  _gst_clock_entry_trace = gst_alloc_trace_register (GST_CLOCK_ENTRY_TRACE_NAME);
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  gobject_class->dispose      = GST_DEBUG_FUNCPTR (gst_clock_dispose);
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  gobject_class->set_property = GST_DEBUG_FUNCPTR (gst_clock_set_property);
  gobject_class->get_property = GST_DEBUG_FUNCPTR (gst_clock_get_property);

  g_object_class_install_property (G_OBJECT_CLASS (klass), ARG_STATS,
    g_param_spec_boolean ("stats", "Stats", "Enable clock stats",
                          FALSE, G_PARAM_READWRITE));
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  g_object_class_install_property (G_OBJECT_CLASS (klass), ARG_MAX_DIFF,
    g_param_spec_int64 ("max-diff", "Max diff", "The maximum amount of time to wait in nanoseconds",
                        0, G_MAXINT64, DEFAULT_MAX_DIFF, G_PARAM_READWRITE));
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}

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static void
gst_clock_init (GstClock *clock)
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{
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  clock->max_diff = DEFAULT_MAX_DIFF;

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  clock->speed = 1.0;
  clock->active = FALSE;
  clock->start_time = 0;
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  clock->last_time = 0;
  clock->entries = NULL;
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  clock->flags = 0;
  clock->stats = FALSE;
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  clock->active_mutex = g_mutex_new ();
  clock->active_cond = g_cond_new ();
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}

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static void
gst_clock_dispose (GObject *object)
{
  GstClock *clock = GST_CLOCK (object);

  g_mutex_free (clock->active_mutex);
  g_cond_free (clock->active_cond);

  G_OBJECT_CLASS (parent_class)->dispose (object);
}

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/**
 * gst_clock_set_speed
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 * @clock: a #GstClock to modify
 * @speed: the speed to set on the clock
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 *
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 * Sets the speed on the given clock. 1.0 is the default 
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 * speed.
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 *
 * Returns: the new speed of the clock.
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 */
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gdouble
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gst_clock_set_speed (GstClock *clock, gdouble speed)
{
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  GstClockClass *cclass;

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  g_return_val_if_fail (GST_IS_CLOCK (clock), 0.0);

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  cclass = GST_CLOCK_GET_CLASS (clock);

  if (cclass->change_speed)
    clock->speed = cclass->change_speed (clock, clock->speed, speed);
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  return clock->speed;
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}

/**
 * gst_clock_get_speed
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 * @clock: a #GstClock to query
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 *
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 * Gets the speed of the given clock.
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 *
 * Returns: the speed of the clock.
 */
gdouble
gst_clock_get_speed (GstClock *clock)
{
  g_return_val_if_fail (GST_IS_CLOCK (clock), 0.0);

  return clock->speed;
}

/**
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 * gst_clock_set_resolution
 * @clock: The clock set the resolution on
 * @resolution: The resolution to set
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 *
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 * Set the accuracy of the clock.
 *
 * Returns: the new resolution of the clock.
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 */
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guint64
gst_clock_set_resolution (GstClock *clock, guint64 resolution)
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{
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  GstClockClass *cclass;

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  g_return_val_if_fail (GST_IS_CLOCK (clock), 0LL);
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  g_return_val_if_fail (resolution != 0, 0LL);
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  cclass = GST_CLOCK_GET_CLASS (clock);

  if (cclass->change_resolution)
    clock->resolution = cclass->change_resolution (clock, clock->resolution, resolution);
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  return clock->resolution;
}
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/**
 * gst_clock_get_resolution
 * @clock: The clock get the resolution of
 *
 * Get the accuracy of the clock.
 *
 * Returns: the resolution of the clock in microseconds.
 */
guint64
gst_clock_get_resolution (GstClock *clock)
{
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  GstClockClass *cclass;

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  g_return_val_if_fail (GST_IS_CLOCK (clock), 0LL);

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  cclass = GST_CLOCK_GET_CLASS (clock);

  if (cclass->get_resolution)
    return cclass->get_resolution (clock);
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  return 1LL;
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}

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/**
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 * gst_clock_set_active
 * @clock: a #GstClock to set state of
 * @active: flag indicating if the clock should be activated (TRUE) or deactivated
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 *
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 * Activates or deactivates the clock based on the active parameter.
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 * As soon as the clock is activated, the time will start ticking.
 */
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void
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gst_clock_set_active (GstClock *clock, gboolean active)
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{
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  GstClockTime time = 0LL;
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  GstClockClass *cclass;
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  g_return_if_fail (GST_IS_CLOCK (clock));

  clock->active = active;
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  cclass = GST_CLOCK_GET_CLASS (clock);
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  if (cclass->get_internal_time) {
    time = cclass->get_internal_time (clock);
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  }
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  GST_LOCK (clock);
  if (active) {
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    clock->start_time = time - clock->last_time;
    clock->accept_discont = TRUE;
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  }
  else {
    clock->last_time = time - clock->start_time;
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    clock->accept_discont = FALSE;
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  }
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  g_list_foreach (clock->entries, (GFunc) gst_clock_reschedule_func, NULL);
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  GST_UNLOCK (clock);
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  g_mutex_lock (clock->active_mutex);	
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  g_cond_broadcast (clock->active_cond);	
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  g_mutex_unlock (clock->active_mutex);	
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}

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/**
 * gst_clock_is_active
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 * @clock: a #GstClock to query
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 *
 * Checks if the given clock is active.
 * 
 * Returns: TRUE if the clock is active.
 */
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gboolean
gst_clock_is_active (GstClock *clock)
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{
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  g_return_val_if_fail (GST_IS_CLOCK (clock), FALSE);
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  return clock->active;
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}

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/**
 * gst_clock_reset
 * @clock: a #GstClock to reset
 *
 * Reset the clock to time 0.
 */
void
gst_clock_reset (GstClock *clock)
{
  GstClockTime time = 0LL;
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  GstClockClass *cclass;
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  g_return_if_fail (GST_IS_CLOCK (clock));

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  cclass = GST_CLOCK_GET_CLASS (clock);
	        
  if (cclass->get_internal_time) {
    time = cclass->get_internal_time (clock);
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  }

  GST_LOCK (clock);
  clock->active = FALSE;
  clock->start_time = time;
  clock->last_time = 0LL;
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  g_list_foreach (clock->entries, (GFunc) gst_clock_reschedule_func, NULL);
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  GST_UNLOCK (clock);
}

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/**
 * gst_clock_handle_discont
 * @clock: a #GstClock to notify of the discontinuity
 * @time: The new time
 *
 * Notifies the clock of a discontinuity in time.
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 *
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 * Returns: TRUE if the clock was updated. It is possible that
 * the clock was not updated by this call because only the first
 * discontinuitity in the pipeline is honoured.
 */
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gboolean
gst_clock_handle_discont (GstClock *clock, guint64 time)
{
  GstClockTime itime = 0LL;
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  GST_DEBUG (GST_CAT_CLOCK, "clock discont %" G_GUINT64_FORMAT
		            " %" G_GUINT64_FORMAT " %d",
			    time, clock->start_time, clock->accept_discont);
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  if (time == GST_CLOCK_TIME_NONE)
    return TRUE;

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  GST_LOCK (clock);
  if (clock->accept_discont) {
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    GstClockClass *cclass;

    cclass = GST_CLOCK_GET_CLASS (clock);
	  
    if (cclass->get_internal_time) {
      itime = cclass->get_internal_time (clock);
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    }
  }
  else {
    GST_UNLOCK (clock);
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    GST_DEBUG (GST_CAT_CLOCK, "clock discont refused %" G_GUINT64_FORMAT
		              " %" G_GUINT64_FORMAT,
			      time, clock->start_time);
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    return FALSE;
  }

  clock->start_time = itime - time;
  clock->last_time = time;
  clock->accept_discont = FALSE;
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  g_list_foreach (clock->entries, (GFunc) gst_clock_reschedule_func, NULL);
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  GST_UNLOCK (clock);

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  GST_DEBUG (GST_CAT_CLOCK, "new time %" G_GUINT64_FORMAT,
	     gst_clock_get_time (clock));
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  g_mutex_lock (clock->active_mutex);
  g_cond_broadcast (clock->active_cond);
  g_mutex_unlock (clock->active_mutex);
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  return TRUE;
}

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/**
 * gst_clock_get_time
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 * @clock: a #GstClock to query
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 *
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 * Gets the current time of the given clock. The time is always
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 * monotonically increasing.
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 *
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 * Returns: the time of the clock.
 */
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GstClockTime
gst_clock_get_time (GstClock *clock)
{
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  GstClockTime ret = 0LL;

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  g_return_val_if_fail (GST_IS_CLOCK (clock), 0LL);

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  if (!clock->active) {
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    /* clock is not active return previous time */
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    ret = clock->last_time;
  }
  else {
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    GstClockClass *cclass;

    cclass = GST_CLOCK_GET_CLASS (clock);

    if (cclass->get_internal_time) {
      ret = cclass->get_internal_time (clock) - clock->start_time;
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    }
    /* make sure the time is increasing, else return last_time */
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    if ((gint64) ret < (gint64) clock->last_time) {
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      ret = clock->last_time;
    }
    else {
      clock->last_time = ret;
    }
  }
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  return ret;
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}

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/**
 * gst_clock_get_next_id
 * @clock: The clock to query
 *
 * Get the clockid of the next event.
 *
 * Returns: a clockid or NULL is no event is pending.
 */
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GstClockID
gst_clock_get_next_id (GstClock *clock)
{
  GstClockEntry *entry = NULL;

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  g_return_val_if_fail (GST_IS_CLOCK (clock), NULL);

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  GST_LOCK (clock);
  if (clock->entries)
    entry = GST_CLOCK_ENTRY (clock->entries->data);
  GST_UNLOCK (clock);

  return (GstClockID *) entry;
}

static void
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gst_clock_update_stats (GstClock *clock)
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{
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}

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static void
gst_clock_set_property (GObject *object, guint prop_id,
     		        const GValue *value, GParamSpec *pspec)
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{
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  GstClock *clock;
	     
  clock = GST_CLOCK (object);

  switch (prop_id) {
    case ARG_STATS:
      clock->stats = g_value_get_boolean (value);
      break;
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    case ARG_MAX_DIFF:
      clock->max_diff = g_value_get_int64 (value);
      break;
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    default:
      G_OBJECT_WARN_INVALID_PROPERTY_ID (object, prop_id, pspec);
      break;
   }
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}
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static void
gst_clock_get_property (GObject *object, guint prop_id, 
			GValue *value, GParamSpec * pspec)
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{
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  GstClock *clock;
	     
  clock = GST_CLOCK (object);

  switch (prop_id) {
    case ARG_STATS:
      g_value_set_boolean (value, clock->stats);
      break;
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    case ARG_MAX_DIFF:
      g_value_set_int64 (value, clock->max_diff);
      break;
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    default:
      G_OBJECT_WARN_INVALID_PROPERTY_ID (object, prop_id, pspec);
      break;
   }
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}