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authorChris Robinson <[email protected]>2014-12-22 13:30:35 -0800
committerChris Robinson <[email protected]>2014-12-22 13:30:35 -0800
commit7e6d0d6b4fdfbf3f3f4f08a70de7563ed02a4948 (patch)
treeb0041ff385ba9b23eae9d5f3e0cd57c7fd04c9f9 /hrtf.txt
parent23197ddbc35db09301b22636ea83e770a7900458 (diff)
Fill out the JACK playback backend
A few notes about it: The OpenAL device's requested buffer metrics are ignored, and instead the device will keep one JACK-sized buffer's worth of audio prepared for JACK's next process request. Output is restricted to 32-bit float stereo. Part of this is because JACK requires a buffer size that's a power of 2 (measured in samples), and the ringbuffer requires a buffer size that's a power of 2 (measured in bytes). A channel count of 6 (5.1) or 7 (6.1) will not work without causing a sample to split over the edge of the ringbuffer. Additioanlly, JACK doesn't provide information about what channel configuration a device or set of ports has, so there's no way to know what ports 3 and up map to (even the first two ports are unknown, but assuming stereo seems to work well enough). There is no device latency measurement (for AL_SOFT_source_latency) due to the non-atomicity between the ringbuffer's read size and port latency. A method is needed to ensure the ringbuffer's read size and port latency can both be measured between the end of a JACK update cycle (when the port latency has been updated with the newly-retrieved audio) and the following ringbuffer read update.
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