Introduces the freemkv mux throughput highway: a three-stage thread pipeline that replaces the inline single-thread read path for any file-backed source (ISO and m2ts file URLs both route through it). Thread A: read + decrypt (PrefetchedSectorSource / BytePrefetcher) Thread B: M2TS demux (DemuxThread) Thread C: codec parse (PipelinedPesStream, on caller thread) Each handoff uses a bounded crossbeam channel with a recycled buffer pool — no allocations or memcpys in the steady-state hot loop. Component map: * io/byte_prefetcher.rs (new) — std::io::Read producer thread with recycled Vec<u8> pool. Pairs with PrefetchedSectorSource (sector side) so demux_thread::spawn_zero_copy can wire either upstream. * sector/prefetched.rs — recycled buffer pool added; into_channels() peels off the rx/recycle_tx/shell triple for zero-copy demux. * mux/demux_thread.rs (new) — owns the TsDemuxer/PsDemuxer, runs feed() on its thread, ships Vec<PesPacket> batches. * mux/pipelined_stream.rs (new) — the read-side Stream impl. Pulls packets from the demux thread and runs codec parse on the caller. * mux/resolve.rs — build_iso_pipeline (public) / build_m2ts_pipeline (private) assemble the three stages; iso:// and m2ts:// both return PipelinedPesStream. * mux/m2ts.rs — collapsed to a write-only sink (Mode::Read deleted; the read direction lives on the highway now). * mux/codec/h264.rs — find_start_code uses memchr SIMD memmem::find. * mux/codec/hevc.rs — tightened frame_data initial capacity. * mux/ts.rs — boundary-packet handling avoids the per-batch 16 MiB remainder copy; PesAssembler starts at 16 KiB to dodge the 64-page first-touch fault tax that the previous 256 KiB pre-alloc paid on every PES boundary. * mux/disc.rs — gains DiscStream::new_pipeline + read_pipeline as the legacy autorip ingress (drive + multipass paths still need on_event / skip_errors before they migrate to the highway). * io/file_sector_source/* — per-OS prefetch() syscall hook (Linux readahead, macOS F_RDADVISE, Windows/other no-op). * decrypt.rs — FREEMKV_DECRYPT_THREADS renamed to FREEMKV_THREADS; pool sized to all cores by default. Measured on rip1 testbed (Civil War UHD, 62 GiB ISO → null://): 60 → 322 MB/s warm cache (old new_pipeline path) 60 → 660 MB/s warm cache (highway path, this commit) 60 → 126 MB/s sustained disk-bound The IsoSectorReader baseline reader was deleted in favour of FileSectorSource so the freemkv CLI and autorip exercise the same read path.
62 lines
2.0 KiB
TOML
62 lines
2.0 KiB
TOML
[package]
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name = "libfreemkv"
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version = "0.24.0"
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edition = "2024"
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rust-version = "1.86"
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license = "AGPL-3.0-only"
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description = "Open source raw disc access library for optical drives"
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repository = "https://github.com/freemkv/libfreemkv"
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keywords = ["bluray", "uhd", "optical", "scsi", "disc"]
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categories = ["hardware-support", "multimedia"]
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[dependencies]
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serde = { version = "1", features = ["derive"] }
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serde_json = "1"
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sha1 = "0.10"
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sha2 = "0.10"
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aes = "0.8"
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cbc = "0.1"
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flate2 = "1"
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num-bigint = "0.4"
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num-traits = "0.2"
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num-integer = "0.1"
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rand = "0.8"
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cmac = "0.7"
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zip = { version = "2", default-features = false, features = ["deflate"] }
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base64 = "0.22.1"
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# Trace-level instrumentation for Disc::copy + SgIoTransport::execute. Permitted
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# under project docs ("Acceptable strings: debug/trace logging"). Consumers (autorip)
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# wire a tracing subscriber and pipe events into the JSONL debug log.
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tracing = "0.1"
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# Bounded MPSC channel with kernel-wakeup send_timeout. Used by `io::pipeline`
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# so the halt-aware send/finish loops can BLOCK on consumer drain instead of
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# polling — the 50 ms poll cadence of the previous mpsc-based impl capped mux
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# throughput at ~1 MB/s (see (internal)/memory/
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# feedback_send_with_halt_poll_throttle.md, 0.21.7).
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crossbeam-channel = "0.5"
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# Persistent work-stealing thread pool for parallel AACS unit
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# decryption. Per-call std::thread::scope spawned fresh OS threads
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# and that overhead dominated for typical batch sizes (60 units).
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# rayon's global pool initialises once on first use.
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rayon = "1"
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# SIMD-accelerated bytestring search. Drives the HEVC/H.264 start-code
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# scan in `mux::codec::h264::find_start_code` — naive byte-by-byte
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# walk is ~500 MB/s single-thread on x86_64; memchr's vectorised
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# `memmem::find` for the 3-byte `00 00 01` needle hits ~5 GB/s on
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# AVX2-capable hosts.
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memchr = "2"
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[target.'cfg(target_os = "linux")'.dependencies]
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libc = "0.2"
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[target.'cfg(target_os = "macos")'.dependencies]
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libc = "0.2"
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[dev-dependencies]
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tempfile = "3"
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[[bench]]
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name = "sgio_read"
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harness = false
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