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Original commit message from CVS: language updates from cameron
197 lines
7.3 KiB
XML
197 lines
7.3 KiB
XML
<chapter id="cha-autoplug">
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<title>Autoplugging</title>
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<para>
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<application>GStreamer</application> provides an API to automatically
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construct complex pipelines based on source and destination capabilities.
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This feature is very useful if you want to convert type X to type Y but
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don't care about the plugins needed to accomplish this task. The
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autoplugger will consult the plugin repository, select and connect the
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elements needed for the conversion.
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</para>
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<para>
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The autoplugger API is implemented in an abstract class. Autoplugger
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implementations reside in plugins and are therefore optional and can be
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optimized for a specific task. Two types of autopluggers exist: renderer
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ones and non-renderer ones. The renderer autopluggers will not have any
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source pads while the non-renderer ones do. The renderer autopluggers are
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mainly used for media playback while the non renderer ones are used for
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arbitrary format conversion.
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</para>
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<sect1>
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<title>Using autoplugging</title>
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<para>
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You first need to create a suitable autoplugger with gst_autoplug_factory_make().
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The name of the autoplugger must be one of the registered autopluggers..
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</para>
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<para>
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A list of all available autopluggers can be obtained with gst_autoplug_factory_get_list().
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</para>
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<para>
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If the autoplugger supports the RENDERER API, use the
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gst_autoplug_to_renderers() function to create a bin that connects
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the source caps to the specified render elements. You can then add
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the bin to a pipeline and run it.
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<programlisting>
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GstAutoplug *autoplug;
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GstElement *element;
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GstElement *sink;
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/* create a static autoplugger */
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autoplug = gst_autoplug_factory_make ("staticrender");
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/* create an osssink */
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sink = gst_element_factory_make ("osssink", "our_sink");
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/* create an element that can play audio/mp3 through osssink */
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element = gst_autoplug_to_renderers (autoplug,
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gst_caps_new (
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"sink_audio_caps",
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"audio/mp3",
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NULL
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),
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sink,
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NULL);
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/* add the element to a bin and connect the sink pad */
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...
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</programlisting>
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</para>
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<para>
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If the autoplugger supports the CAPS API, use the gst_autoplug_to_caps()
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function to connect the source caps to the destination caps. The created
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bin will have source and sink pads compatible with the provided caps.
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<programlisting>
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GstAutoplug *autoplug;
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GstElement *element;
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/* create a static autoplugger */
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autoplug = gst_autoplug_factory_make ("static");
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/* create an element that converts audio/mp3 to audio/raw */
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element = gst_autoplug_to_caps (autoplug,
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gst_caps_new (
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"sink_audio_caps",
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"audio/mp3",
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NULL
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),
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gst_caps_new (
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"src_audio_caps",
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"audio/raw",
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NULL
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),
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NULL);
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/* add the element to a bin and connect the src/sink pads */
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...
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</programlisting>
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</para>
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</sect1>
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<sect1>
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<title>Using the <classname>GstAutoplugCache</classname> element</title>
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<para>
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The <classname>GstAutoplugCache</classname> element is used to cache the
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media stream when performing typedetection. As we have have seen in the
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previous chapter (typedetection), the type typefind function consumes a
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buffer to determine the media type of it. After we have set up the pipeline
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to play the media stream we should be able to 'replay' the previous buffer(s).
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This is where the autoplugcache is used for.
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</para>
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<para>
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The basic usage pattern for the autoplugcache in combination with the typefind
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element is like this:
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<orderedlist>
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<listitem>
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<para>
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Add the autoplugcache element to a bin and connect the sink pad
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to the source pad of an element with unknown caps.
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</para>
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</listitem>
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<listitem>
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<para>
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Connect the source pad of the autoplugcache to the sink pad of
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the typefind element.
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</para>
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</listitem>
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<listitem>
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<para>
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Iterate the pipeline until the typefind element has found a type.
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</para>
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</listitem>
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<listitem>
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<para>
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Remove the typefind element and add the plugins needed to play
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back the discovered media type to the autoplugcache source pad.
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</para>
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</listitem>
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<listitem>
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<para>
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Reset the cache to start playback of the cached data. Connect to the
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"cache_empty" signal.
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</para>
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</listitem>
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<listitem>
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<para>
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In the cache_empty signal callback function, remove the autoplugcache and
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reconnect the pads.
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</para>
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</listitem>
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</orderedlist>
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</para>
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<para>
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In the next chapter we will create a new version of our helloworld example using the
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autoplugger, the autoplugcache and the typefind element.
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</para>
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</sect1>
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<sect1>
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<title>Another approach to autoplugging</title>
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<para>
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The autoplug API is interesting, but often impractical. It is static;
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it cannot deal with dynamic pipelines (insert ref here). What you
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often want is just an element to stick into a pipeline that will DWIM
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(Do What I Mean)(ref). Enter the spider.
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</para>
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<sect2>
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<title>The spider element</title>
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<para>
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The spider element is a generalized autoplugging element. At this point (April 2002), it's
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the best we've got; it can be inserted anywhere within a pipeline to perform caps
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conversion, if possible. Consider the following gst-launch line:
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<programlisting>
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$ gst-launch filesrc location=my.mp3 ! spider ! osssink
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</programlisting>
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The spider will detect the type of the stream, autoplug it to the osssink's caps, and play
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the pipeline. It's neat.
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</para>
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</sect2>
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<sect2>
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<title>Spider features</title>
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<para>
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<orderedlist>
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<listitem>
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<para>
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Automatically typefinds the incoming stream.
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</para>
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</listitem>
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<listitem>
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<para>
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Has request pads on the source side. This means that it can
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autoplug one source stream into many sink streams. For example,
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an MPEG1 system stream can have audio as well as video; that
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pipeline would be represented in gst-launch syntax as
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<programlisting>
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$ gst-launch filesrc location=my.mpeg1 ! spider ! { queue ! osssink } spider.src_%d!
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{ queue ! xvideosink }
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</programlisting>
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</para>
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</listitem>
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</orderedlist>
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</para>
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</sect2>
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</sect1>
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</chapter>
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