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Drive playback timing from audio sample positions instead of packet arrival cadence. Use SPICE multimedia timestamps to anchor streams, detect discontinuities, and estimate the long-term source rate. Ignore their coarse phase corrections when steering the playback buffer. Measure the device clock independently and wait for it to stabilize before enabling a bounded, slew-limited phase controller. Align startup buffering from logical producer and consumer positions so backend startup reserves do not become persistent latency. Size the buffer from the backend period, measured delivery jitter, and resampler delay. Update PipeWire and PulseAudio to report their actual startup requirements and presentation latency. Default to a 10 ms device period with 4 ms of additional buffering, and make detailed synchronization diagnostics opt-in through audio:debug. This reduces startup and steady-state latency while compensating for physical and virtual device clock drift without reacting to transport jitter or SPICE timestamp quantization.
Looking Glass
An extremely low latency KVMFR (KVM FrameRelay) implementation for guests with VGA PCI Passthrough.
- Project Website: https://looking-glass.io
- Documentation: https://looking-glass.io/docs
Documentation
❕❕❕ IMPORTANT ❕❕❕
This project contains submodules that must be checked out if building from the git repository! If you are not a developer and just want to compile Looking Glass, please download the source archive from the website instead:
https://looking-glass.io/downloads
Source code for the documentation can be found in the /doc directory.
You may view this locally as HTML by running make html with python3-sphinx
and python3-sphinx-rtd-theme installed.
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