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90 lines
3.9 KiB
Text
90 lines
3.9 KiB
Text
A lot of data streams need a few initial buffers to make sense of the
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data stream. With these initial buffers, it can pick up at any point in
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the rest of the data stream.
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Examples:
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- Vorbis and Theora have three initial Ogg packets
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- MPEG4 has codec data
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- GDP protocol serializes the initial new_segment event and the initial caps
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It is important that elements that get connected after the stream starts,
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receive these initial buffers. Also, sink elements should know that these
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initial buffers are necessary for every new "client" of the sink element;
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for example, multifdsink needs to send these initial buffers before the
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normal buffers.
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Currently, this is done by putting a 'streamheader' value on the caps.
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'streamheader' is a GST_TYPE_ARRAY of GstBuffer, ie. an ordered list of
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buffers.
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The buffers themselves still get pushed as normal buffers, but with the
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IN_CAPS flag set. This allows elements that do not know about streamheader
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to still function correctly (ie. filesink and others)
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It is of course important that these streamheader buffers are not sent twice
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(once because they're in the caps, and once because they're received as
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buffers).
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So, an element that is aware of streamheader in the caps should probably best
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drop all incoming IN_CAPS buffers.
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Rules for sending streamheaders:
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- all streamheader buffers should have IN_CAPS set
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- from this list of streamheader buffers, a "streamheader" caps field should
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be created as a GST_TYPE_ARRAY of GstBuffer. This should be done by
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copying the buffers.
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(the only important thing about the buffers in this list is the data;
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other attributes of the buffers get ignored)
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- each of these buffers should then have these caps set on them.
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- when all streamheader buffers are collected in the element, pad caps should
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be set, including this streamheader
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- streamheader buffers should be sent consecutively, and before any of the
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data (non-IN_CAPS) buffers they apply to. If necessary, the element
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should internally queue non-IN_CAPS buffers until the streamheaders
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are completely assembled.
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- when new streamheader buffers need to be pushed out, this process is
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repeated. Receiving a new IN_CAPS buffer after a non-IN_CAPS buffer
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signifies resetting streamheader, as does the new set_caps with different
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streamheader right before. (FIXME: it's probably better to explicitly
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have an event/buffer that clears streamheaders; consider the case of
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an element like GDP that has created streamheader from the first newsegment
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and the first caps, and then receives a new tag event that it also wants
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to put on the streamheader - it should be able to invalidate the previous
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ones)
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Elements that can send streamheader caps:
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- vorbisenc
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- theoraenc
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- gdppay
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Elements that can receive streamheader caps:
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- multifdsink
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Elements that can receive and send streamheader caps:
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- oggmux
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Elements that could/should use this:
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- ffenc_mpeg4 (currently uses/sets codec_data)
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- theoradec, vorbisdec (currently only look at incoming buffers)
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- oggdemux
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FUTURE PLANS
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------------
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The concept of streamheader is more generally applicable. We may want to
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find a better way of implementing this than having two ways of telling
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downstream elements about them. Currently an element that is
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streamheader-aware needs to look both at caps and incoming buffers.
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One option would be to only rely on the buffer flow, and make all elements
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aware of a HEADER flag, causing them to keep these buffers around and push
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them for each new pad link. This needs to be done in every element; a
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scenario like
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videotestsrc ! theoraenc
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where later on an oggmux gets connected, should still work without dropping
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these header buffers. But similarly,
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videotestsrc ! theoraenc ! identity
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with a later connection of oggmux to identity should work.
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This could tie in with an idea to have pads store some initial data (the
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first new_segment event, tag events, ...), which at the moment also get
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dropped on dynamic in-stream links.
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