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294 lines
8 KiB
C
294 lines
8 KiB
C
/* GStreamer
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*
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* codec-select.c: sample application to dynamically select a codec
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*
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* Copyright (C) <2008> 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., 51 Franklin St, Fifth Floor,
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* Boston, MA 02110-1301, USA.
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*/
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/*
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* This example sets up a pipeline to 'encode' an audiotestsrc into 3 different
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* formats. The format can be selected dynamically at runtime.
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*
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* Each of the encoders require the audio in a specific different format.
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*
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* This example uses identity as the encoder and enforces the caps on identity
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* with a capsfilter.
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*
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* This is a good example of input and output selector and how these elements
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* preserve segment and timing information while switching between streams.
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*/
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#include <string.h>
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#include <gst/gst.h>
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/* Create an encoder element.
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* We make a bin containing:
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*
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* audioresample ! <enccaps> ! identity
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*
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* The sinkpad of audioresample and source pad of identity are ghosted on the
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* bin.
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*/
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static GstElement *
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make_encoder (const GstCaps * caps)
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{
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GstElement *result;
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GstElement *audioresample;
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GstElement *capsfilter;
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GstElement *identity;
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GstPad *pad;
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/* create result bin */
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result = gst_bin_new (NULL);
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g_assert (result);
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/* create elements */
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audioresample = gst_element_factory_make ("audioresample", NULL);
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g_assert (audioresample);
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capsfilter = gst_element_factory_make ("capsfilter", NULL);
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g_assert (capsfilter);
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g_object_set (capsfilter, "caps", caps, NULL);
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identity = gst_element_factory_make ("identity", NULL);
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g_assert (identity);
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g_object_set (identity, "silent", TRUE, NULL);
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/* add elements to result bin */
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gst_bin_add (GST_BIN (result), audioresample);
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gst_bin_add (GST_BIN (result), capsfilter);
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gst_bin_add (GST_BIN (result), identity);
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/* link elements */
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gst_element_link_pads (audioresample, "src", capsfilter, "sink");
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gst_element_link_pads (capsfilter, "src", identity, "sink");
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/* ghost src and sink pads */
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pad = gst_element_get_static_pad (audioresample, "sink");
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gst_element_add_pad (result, gst_ghost_pad_new ("sink", pad));
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gst_object_unref (pad);
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pad = gst_element_get_static_pad (identity, "src");
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gst_element_add_pad (result, gst_ghost_pad_new ("src", pad));
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gst_object_unref (pad);
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return result;
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}
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/*
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* We generate:
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*
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* audiotestsrc ! <audiocaps> ! output-selector ! [enc1 .. enc3] ! input-selector
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* select-all = true ! fakesink
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*
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* <audiocaps> makes sure we only produce one format from the audiotestsrc.
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*
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* Each encX element consists of:
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*
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* audioresample ! <enccaps> ! identity !
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*
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* This way we can simply switch encoders without having to renegotiate.
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*/
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static GstElement *
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make_pipeline (void)
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{
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GstElement *result;
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GstElement *audiotestsrc;
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GstElement *audiocaps;
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GstElement *outputselect;
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GstElement *inputselect;
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GstElement *sink;
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GstCaps *caps;
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GstCaps *capslist[3];
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gint i;
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/* create result pipeline */
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result = gst_pipeline_new (NULL);
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g_assert (result);
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/* create various elements */
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audiotestsrc = gst_element_factory_make ("audiotestsrc", NULL);
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g_object_set (audiotestsrc, "num-buffers", 1000, NULL);
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g_assert (audiotestsrc);
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audiocaps = gst_element_factory_make ("capsfilter", NULL);
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g_assert (audiocaps);
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caps =
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gst_caps_from_string ("audio/x-raw,format=S16LE,rate=48000,channels=1");
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g_object_set (audiocaps, "caps", caps, NULL);
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gst_caps_unref (caps);
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outputselect = gst_element_factory_make ("output-selector", "select");
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g_assert (outputselect);
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inputselect = gst_element_factory_make ("input-selector", NULL);
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g_assert (inputselect);
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g_object_set (inputselect, "select-all", TRUE, NULL);
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sink = gst_element_factory_make ("fakesink", NULL);
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g_object_set (sink, "sync", TRUE, NULL);
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g_object_set (sink, "silent", TRUE, NULL);
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g_assert (sink);
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/* add elements */
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gst_bin_add (GST_BIN (result), audiotestsrc);
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gst_bin_add (GST_BIN (result), audiocaps);
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gst_bin_add (GST_BIN (result), outputselect);
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gst_bin_add (GST_BIN (result), inputselect);
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gst_bin_add (GST_BIN (result), sink);
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/* link elements */
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gst_element_link_pads (audiotestsrc, "src", audiocaps, "sink");
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gst_element_link_pads (audiocaps, "src", outputselect, "sink");
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gst_element_link_pads (inputselect, "src", sink, "sink");
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/* make caps */
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capslist[0] =
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gst_caps_from_string ("audio/x-raw,format=S16LE,rate=48000,channels=1");
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capslist[1] =
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gst_caps_from_string ("audio/x-raw,format=S16LE,rate=16000,channels=1");
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capslist[2] =
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gst_caps_from_string ("audio/x-raw,format=S16LE,rate=8000,channels=1");
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/* create encoder elements */
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for (i = 0; i < 3; i++) {
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GstElement *encoder;
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GstPad *srcpad, *sinkpad;
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encoder = make_encoder (capslist[i]);
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g_assert (encoder);
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gst_bin_add (GST_BIN (result), encoder);
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srcpad = gst_element_get_request_pad (outputselect, "src_%u");
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sinkpad = gst_element_get_static_pad (encoder, "sink");
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gst_pad_link (srcpad, sinkpad);
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gst_object_unref (srcpad);
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gst_object_unref (sinkpad);
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srcpad = gst_element_get_static_pad (encoder, "src");
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sinkpad = gst_element_get_request_pad (inputselect, "sink_%u");
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gst_pad_link (srcpad, sinkpad);
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gst_object_unref (srcpad);
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gst_object_unref (sinkpad);
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}
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return result;
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}
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static gboolean
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do_switch (GstElement * pipeline)
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{
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gint rand;
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GstElement *select;
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gchar *name;
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GstPad *pad;
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rand = g_random_int_range (0, 3);
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g_print ("switching to %d\n", rand);
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/* find the selector */
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select = gst_bin_get_by_name (GST_BIN (pipeline), "select");
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/* get the named pad */
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name = g_strdup_printf ("src_%u", rand);
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pad = gst_element_get_static_pad (select, name);
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g_free (name);
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/* set the active pad */
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g_object_set (select, "active-pad", pad, NULL);
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return TRUE;
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}
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static gboolean
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my_bus_callback (GstBus * bus, GstMessage * message, gpointer data)
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{
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GstElement *sender = (GstElement *) GST_MESSAGE_SRC (message);
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const gchar *name = gst_element_get_name (sender);
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GMainLoop *loop = (GMainLoop *) data;
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g_print ("Got %s message from %s\n", GST_MESSAGE_TYPE_NAME (message), name);
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switch (GST_MESSAGE_TYPE (message)) {
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case GST_MESSAGE_ERROR:{
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GError *err;
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gchar *debug;
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gst_message_parse_error (message, &err, &debug);
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g_print ("Error: %s (%s)\n", err->message, debug);
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g_error_free (err);
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g_free (debug);
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g_main_loop_quit (loop);
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break;
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}
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case GST_MESSAGE_EOS:
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/* end-of-stream */
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g_main_loop_quit (loop);
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break;
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default:
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/* unhandled message */
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break;
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}
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return TRUE;
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}
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gint
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main (gint argc, gchar * argv[])
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{
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GstElement *pipeline;
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GstBus *bus;
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GMainLoop *loop;
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/* init GStreamer */
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gst_init (&argc, &argv);
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loop = g_main_loop_new (NULL, FALSE);
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/* set up */
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pipeline = make_pipeline ();
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g_signal_connect (pipeline, "deep_notify",
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G_CALLBACK (gst_object_default_deep_notify), NULL);
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bus = gst_pipeline_get_bus (GST_PIPELINE (pipeline));
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gst_bus_add_watch (bus, my_bus_callback, loop);
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gst_object_unref (bus);
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g_print ("Starting pipeline\n");
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gst_element_set_state (pipeline, GST_STATE_PLAYING);
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/* add a timeout to cycle between the formats */
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g_timeout_add_seconds (1, (GSourceFunc) do_switch, pipeline);
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/* now run */
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g_main_loop_run (loop);
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g_print ("Nulling pipeline\n");
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/* also clean up */
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gst_element_set_state (pipeline, GST_STATE_NULL);
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gst_object_unref (pipeline);
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return 0;
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}
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