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16ce2d4ea4
Unify the ad-hoc markup to be asciidoc style in many places. Add a "html" target to Makefile to generate the output.
114 lines
3.8 KiB
Text
114 lines
3.8 KiB
Text
GstBin
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------
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GstBin is a container element for other GstElements. This makes it possible
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to group elements together so that they can be treated as one single
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GstElement. A GstBin provides a GstBus for the children and collates messages
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from them.
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Add/removing elements
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~~~~~~~~~~~~~~~~~~~~~
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The basic functionality of a bin is to add and remove GstElements to/from it.
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gst_bin_add() and gst_bin_remove() perform these operations respectively.
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The bin maintains a parent-child relationship with its elements (see part-
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relations.txt).
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Retrieving elements
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~~~~~~~~~~~~~~~~~~~
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GstBin provides a number of functions to retrieve one or more children from
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itself. A few examples of the provided functions:
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gst_bin_get_by_name() retrieves an element by name.
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gst_bin_iterate_elements() returns an iterator to all the children.
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element management
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~~~~~~~~~~~~~~~~~~
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The most important function of the GstBin is to distribute all GstElement
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operations on itself to all of its children. This includes:
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- state changes
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- index get/set
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- clock gst/set
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The state change distribution is the most complex and is explained in
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part-states.txt.
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GstBus
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~~~~~~
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The GstBin creates a GstBus for its children and distributes it when child
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elements are added to the bin. The bin attaches a sync handler to receive
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messages from children. The bus for receiving messages from children is
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distinct from the bin's own externally-visible GstBus.
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Messages received from children are forwarded intact onto the bin's
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external message bus, except for EOS and SEGMENT_START/DONE which are
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handled specially.
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ASYNC_START/ASYNC_STOP messages received from the children are used to
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trigger a recalculation of the current state of the bin, as described in
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part-states.txt.
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The application can retrieve the external GstBus and integrate it in the
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mainloop or it can just _pop() messages off in its own thread.
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When a bin goes to READY it will clear all cached messages.
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EOS
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~~~
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The sink elements will post an EOS message on the bus when they reach EOS. The
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EOS message is only posted to the bus when the sink element is in PLAYING.
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The bin collects all EOS messages and forwards it to the application as
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soon as all the sinks have posted an EOS.
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The list of queued EOS messages is cleared when the bin goes to PAUSED
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again. This means that all elements should repost the EOS message when going
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to PLAYING again.
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SEGMENT_START/DONE
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~~~~~~~~~~~~~~~~~~
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A bin collects SEGMENT_START messages but does not post them to the application.
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It counts the number of SEGMENT_START messages and posts a SEGMENT_STOP message
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to the application when an equal number of SEGMENT_STOP messages where received.
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The cached SEGMENT_START/STOP messages are cleared when going to READY.
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DURATION
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~~~~~~~~
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When a DURATION query is performed on a bin, it will forward the query to all
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its sink elements. The bin will calculate the total duration as the MAX of all
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returned durations and will then cache the result so that any further query can
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use the cached version. The reason for caching the result is because the
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duration of a stream typically does not change that often.
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A GST_MESSAGE_DURATION posted by an element will clear the cached duration value
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so that the bin will query the sinks again. This message is typically posted by
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elements that calculate the duration of the stream based on some average
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bitrate, which might change while playing the stream. The DURATION message is
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posted to the application, which can then fetch the updated DURATION.
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Subclassing
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~~~~~~~~~~~
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Subclasses of GstBin are free to implement their own add/remove implementations.
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It is a good idea to update the GList of children so that the _iterate() functions
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can still be used if the custom bin allows acces to its children.
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Any bin subclass can also implement a custom message handler by overriding the
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default message handler.
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