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2cdf18edff
Original commit message from CVS: * ext/vorbis/vorbisdec.c: * gst/videoscale/gstvideoscale.c: (gst_video_scale_transform): * sys/xvimage/xvimagesink.c: (gst_xvimagesink_show_frame): Some debug and comment fixes. * tests/examples/dynamic/addstream.c: (main): Fix , to ;
253 lines
7.8 KiB
C
253 lines
7.8 KiB
C
/* GStreamer
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*
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* addstream.c: sample application to dynamically add streams to a running
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* pipeline
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*
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* Copyright (C) <2007> Wim Taymans <wim dot taymans at gmail dot com>
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Library General Public
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* License as published by the Free Software Foundation; either
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* version 2 of the License, or (at your option) any later version.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Library General Public License for more details.
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*
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* You should have received a copy of the GNU Library General Public
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* License along with this library; if not, write to the
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* Free Software Foundation, Inc., 59 Temple Place - Suite 330,
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* Boston, MA 02111-1307, USA.
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*/
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#ifdef HAVE_CONFIG_H
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#include "config.h"
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#endif
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#include <gst/gst.h>
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static GstElement *pipeline;
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static GstClock *theclock;
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static GMainLoop *loop;
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static GstElement *bin1, *bin2, *bin3, *bin4, *bin5;
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/* start a bin with the given description */
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static GstElement *
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create_stream (const gchar * descr)
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{
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GstElement *bin;
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GError *error = NULL;
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bin = gst_parse_launch (descr, &error);
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if (error) {
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g_print ("pipeline could not be constructed: %s\n", error->message);
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g_error_free (error);
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return NULL;
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}
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/* add the bin to the pipeline now, this will set the current base_time of the
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* pipeline on the new bin. */
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gst_bin_add (GST_BIN_CAST (pipeline), bin);
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return bin;
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}
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static gboolean
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pause_play_stream (GstElement * bin, gint seconds)
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{
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gboolean punch_in;
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GstStateChangeReturn ret;
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GstClockTime now, base_time, running_time;
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/* get current running time, we need this value to continue playback of
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* non-live pipelines. */
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now = gst_clock_get_time (theclock);
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base_time = gst_element_get_base_time (bin);
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running_time = now - base_time;
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/* set the new bin to PAUSED, the parent bin will notice (because of the ASYNC
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* message and will perform latency calculations again when going to PLAYING
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* later. */
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ret = gst_element_set_state (bin, GST_STATE_PAUSED);
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switch (ret) {
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case GST_STATE_CHANGE_NO_PREROLL:
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/* live source, timestamps are running_time of the pipeline clock. */
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punch_in = FALSE;
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break;
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case GST_STATE_CHANGE_SUCCESS:
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/* success, no async state changes, same as async, timestamps start
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* from 0 */
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case GST_STATE_CHANGE_ASYNC:
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/* no live source, bin will preroll. We have to punch it in because in
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* this situation timestamps start from 0. */
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punch_in = TRUE;
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break;
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default:
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case GST_STATE_CHANGE_FAILURE:
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return FALSE;
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}
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if (seconds)
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g_usleep (seconds * G_USEC_PER_SEC);
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if (punch_in) {
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/* new bin has to be aligned with previous running_time. We do this by taking
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* the current absolute clock time and calculating the base time that would
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* give the previous running_time. We set this base_time on the bin before
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* setting it to PLAYING. */
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now = gst_clock_get_time (theclock);
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base_time = now - running_time;
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gst_element_set_base_time (bin, base_time);
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}
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/* now set the pipeline to PLAYING */
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gst_element_set_state (bin, GST_STATE_PLAYING);
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return TRUE;
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}
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static void
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message_received (GstBus * bus, GstMessage * message, GstPipeline * pipeline)
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{
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const GstStructure *s;
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s = gst_message_get_structure (message);
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g_print ("message from \"%s\" (%s): ",
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GST_STR_NULL (GST_ELEMENT_NAME (GST_MESSAGE_SRC (message))),
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gst_message_type_get_name (GST_MESSAGE_TYPE (message)));
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if (s) {
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gchar *sstr;
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sstr = gst_structure_to_string (s);
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g_print ("%s\n", sstr);
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g_free (sstr);
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} else {
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g_print ("no message details\n");
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}
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}
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static void
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eos_message_received (GstBus * bus, GstMessage * message,
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GstPipeline * pipeline)
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{
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message_received (bus, message, pipeline);
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g_main_loop_quit (loop);
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}
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static gboolean
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perform_step (gpointer pstep)
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{
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gint step = GPOINTER_TO_INT (pstep);
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switch (step) {
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case 0:
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/* live stream locks on to running_time, pipeline configures latency. */
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g_print ("creating bin1\n");
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bin1 =
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create_stream
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("( v4l2src ! ffmpegcolorspace ! timeoverlay ! queue ! xvimagesink name=v4llive )");
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pause_play_stream (bin1, 0);
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g_timeout_add (1000, (GSourceFunc) perform_step, GINT_TO_POINTER (1));
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break;
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case 1:
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/* live stream locks on to running_time, pipeline reconfigures latency
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* together with the previously added bin so that they run synchronized. */
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g_print ("creating bin2\n");
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bin2 = create_stream ("( alsasrc ! queue ! alsasink name=alsalive )");
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pause_play_stream (bin2, 0);
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g_timeout_add (1000, (GSourceFunc) perform_step, GINT_TO_POINTER (2));
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break;
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case 2:
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/* non-live stream, need base_time to align with current running live sources. */
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g_print ("creating bin3\n");
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bin3 = create_stream ("( audiotestsrc ! alsasink name=atnonlive )");
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pause_play_stream (bin3, 0);
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g_timeout_add (1000, (GSourceFunc) perform_step, GINT_TO_POINTER (3));
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break;
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case 3:
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g_print ("creating bin4\n");
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bin4 =
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create_stream
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("( videotestsrc ! timeoverlay ! ffmpegcolorspace ! ximagesink name=vtnonlive )");
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pause_play_stream (bin4, 0);
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g_timeout_add (1000, (GSourceFunc) perform_step, GINT_TO_POINTER (4));
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break;
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case 4:
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/* live stream locks on to running_time */
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g_print ("creating bin5\n");
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bin5 =
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create_stream
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("( videotestsrc is-live=1 ! timeoverlay ! ffmpegcolorspace ! ximagesink name=vtlive )");
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pause_play_stream (bin5, 0);
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g_timeout_add (1000, (GSourceFunc) perform_step, GINT_TO_POINTER (5));
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break;
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case 5:
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/* pause the fist live stream for 2 seconds */
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g_print ("PAUSE bin1 for 2 seconds\n");
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pause_play_stream (bin1, 2);
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/* pause the non-live stream for 2 seconds */
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g_print ("PAUSE bin4 for 2 seconds\n");
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pause_play_stream (bin4, 2);
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/* pause the pseudo live stream for 2 seconds */
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g_print ("PAUSE bin5 for 2 seconds\n");
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pause_play_stream (bin5, 2);
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g_print ("Waiting 5 seconds\n");
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g_timeout_add (5000, (GSourceFunc) perform_step, GINT_TO_POINTER (6));
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break;
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case 6:
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g_print ("quiting\n");
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g_main_loop_quit (loop);
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break;
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default:
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break;
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}
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return FALSE;
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}
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int
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main (int argc, char *argv[])
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{
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GstBus *bus;
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gst_init (&argc, &argv);
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loop = g_main_loop_new (NULL, TRUE);
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pipeline = gst_pipeline_new ("pipeline");
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/* setup message handling */
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bus = gst_pipeline_get_bus (GST_PIPELINE (pipeline));
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gst_bus_add_signal_watch_full (bus, G_PRIORITY_HIGH);
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g_signal_connect (bus, "message::error", (GCallback) message_received,
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pipeline);
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g_signal_connect (bus, "message::warning", (GCallback) message_received,
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pipeline);
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g_signal_connect (bus, "message::eos", (GCallback) eos_message_received,
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pipeline);
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/* we set the pipeline to PLAYING, this will distribute a default clock and
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* start running. no preroll is needed */
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gst_element_set_state (pipeline, GST_STATE_PLAYING);
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/* get the clock now. Since we never set the pipeline to PAUSED again, the
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* clock will not change, even when we add new clock providers later. */
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theclock = gst_element_get_clock (pipeline);
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/* start our actions while we are in the mainloop so that we can catch errors
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* and other messages. */
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g_idle_add ((GSourceFunc) perform_step, GINT_TO_POINTER (0));
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/* go to main loop */
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g_main_loop_run (loop);
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gst_element_set_state (pipeline, GST_STATE_NULL);
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gst_object_unref (bus);
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gst_object_unref (pipeline);
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gst_object_unref (theclock);
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return 0;
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}
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