Matthew Jackson 0bc8d7af9c test: constrain the AACS key-map gap fill, the PSI walk, and MP4 field offsets
Third pass over src/mux/. 40 survivors killed, no production change.

resolve.rs — the deleted-statement cluster is now fully constrained.
All 14 deletable statements probed; 9 were already caught, 5 survived:

  c.sort_unstable() in fill_base_key_gaps. Every existing case handed
  it cuts already in LBA order, but IndividualSegment.tbl is a record
  list. Verified on HEAD: deleting the sort passes all 54 resolve
  tests. The mutant lays a base-key fill straight over a forensic
  segment.

  last_idx = idx (FMTS gap fill) and last_idx = hit (multi-CPS cache
  hit). An extent with nothing to sample must inherit its neighbour's
  CPS unit; the mutants fall back to the first unit's key. Exactly the
  shape this file's own comments name — wrong key, no error,
  lost_bytes == 0.

  Both check_halt()? polls in probe_fmts_index_keys. These cannot be
  killed by outcome, since a later poll returns Halted too. The tests
  count reads instead, which is what the don't-hammer-a-struggling-
  drive rule actually says: after a Stop the drive is asked for zero
  content sectors.

The four unresolved += 1 arms each got a test, and deleting each fails
exactly one — one-to-one, so no fixture passes for the wrong reason. A
control test pins that the baseline table resolves, so an expect_err
cannot succeed for an unrelated reason.

ts.rs::scan_streams was never entered. Six killed, two of which return
wrong answers that look right: reading the PAT/PMT CRC as a table entry
invents a stream on PID 546 out of CRC bytes, and dropping the
ES_info_length skip decodes a descriptor as an entry and loses the one
after it. Every existing PMT fixture declares ES_info_length = 0; a
real BD PMT carries a registration descriptor on essentially every
entry. Also ISO/IEC 13818-1 2.4.4.3 program_number == 0 is the network
PID, not a program.

mp4/read.rs — 13. Height read as the width beside it; channelcount;
the 4-byte base-128 descriptor varint (every existing esds fixture uses
a single byte); all three optional ES_Descriptor fields, whose loss is
silent (an AAC track just loses its CodecPrivate); first-vs-last media
edit, which is A/V desync of the difference; and the version-1 mvhd
timescale offset, emitted by any writer whose duration exceeds 32 bits.

dts.rs — 7, from a real cargo-mutants run over the file rather than
guesswork. Including a buffer that IS the syncword, which is the state
a sync split across PES packets lands in the moment its last byte
arrives.

Equivalents proven by application, not argued: the sample_encrypted_units
guard pair is mutually redundant by construction (total*p/9 < total for
p <= 8), so either alone is equivalent and both together are not; the
PMT section_len guard is dead code where its PAT twin panics; three of
the seven EXSS_HEADER_MIN_BYTES arithmetic mutants still sum to 10.
2026-07-30 16:05:37 -07:00
2026-04-16 17:51:45 +00:00

License: MIT

libfreemkv

Rust library for 4K UHD / Blu-ray / DVD optical drives. Drive access, disc scanning, stream labels, AACS decryption, CSS decryption, KEYDB updates, and content reading in one crate. Drive-level unlocking is handled internally; consumers work with disc access and decryption only.

DVDs (CSS) decrypt out of the box. Blu-ray and UHD (AACS) require a keydb.cfg (default ~/.config/freemkv/keydb.cfg) supplying disc-specific volume unique keys; no AACS key material is compiled in.

12+ MB/s sustained read speeds on BD. Drive prep (init()) handles unlocking internally via the freemkv-unlock crate — clients never see it; when no drive unlock applies, the library rips via the host-certificate AACS handshake.

Multi-lingual by design — the library outputs structured data and numeric error codes, never English text. Build any UI or localization on top.

Source & API · Technical Docs

Part of the freemkv project.

Install

Consumed by git tag (not published to crates.io):

[dependencies]
libfreemkv = { git = "https://github.com/freemkv/libfreemkv", tag = "vX.Y.Z" }

Quick Start

use libfreemkv::{Drive, Disc, ScanOptions};
use std::path::Path;

// Open drive — identified via INQUIRY
let mut drive = Drive::open(Path::new("/dev/sg4"))?;
drive.wait_ready()?;              // wait for disc
drive.init()?;                     // unlock + prep (handled internally)
drive.probe_disc()?;               // probe disc surface for optimal speeds

// Scan disc — UDF, playlists, streams, AACS (all automatic)
let disc = Disc::scan(&mut drive, &ScanOptions::default())?;

for title in &disc.titles {
    println!("{}{} streams", title.duration_display(), title.streams.len());
}

// Stream pipeline — read PES frames from any source, write to any output
let opts = libfreemkv::InputOptions::default();
let mut input = libfreemkv::input("iso://Disc.iso", &opts)?;
let title = input.info().clone();
let mut output = libfreemkv::output("mkv://Movie.mkv", &title)?;
while let Ok(Some(frame)) = input.read() {
    output.write(&frame)?;
}
output.finish()?;

Multi-pass recovery rip

Recovery moved OUT of this crate in 1.6.0. The sweep/patch strategy, the ddrescue mapfile, damage classification and the multipass loop now live in the freemkv-engine crate as freemkv_engine::recovery::{copy, sweep, patch}.

libfreemkv keeps the layers underneath: the raw single-shot read (Drive::read) and the SCSI-fact translation (SenseFamily) that the engine's strategy is built on. The dependency runs engine → libfreemkv, so this crate cannot call into it; front-ends get recovery from the engine directly. See docs/rip-recovery.md for what stayed here.

What It Does

  • Drive access — open, identify, internal unlock + prep, speed control, eject
  • 12+ MB/s reads — auto-detects kernel transfer limits, sustained full speed
  • Disc scanning — UDF 2.50 filesystem, MPLS playlists, CLPI clip info
  • Stream labels — 5 BD-J format parsers (Paramount, Criterion, Pixelogic, CTRM, Deluxe)
  • AACS decryption — transparent key resolution and content decrypt (1.0 + 2.0 bus decryption)
  • KEYDB updates — download, verify, save from any HTTP URL (zero deps, raw TCP)
  • Content reading — adaptive batch reads with automatic decryption
  • Stream I/O — unified stream pipeline for reading and writing any format

Streams

Stream Input Output Transport
DiscStream Yes -- Optical drive via SCSI
IsoStream Yes -- Blu-ray ISO image file (read via stream pipeline; written by freemkv_engine::recovery)
MkvStream Yes Yes Matroska container
M2tsStream Yes Yes BD transport stream with FMKV metadata header
NetworkStream Yes (listen) Yes (connect) TCP with FMKV metadata header
StdioStream Yes (stdin) Yes (stdout) Raw byte pipe
NullStream -- Yes Discard sink (byte counter for benchmarks)

Streams implement a single unified pes::Stream trait (re-exported as PesStream) exposing read() and write() on one type. input() / output() resolve URL strings to PES stream instances. All URLs use the scheme://path format — bare paths are rejected.

Keys

DVDs (CSS) decrypt out of the box, with no external key file needed.

Blu-rays and UHD (AACS) require a keydb.cfg at ~/.config/freemkv/keydb.cfg (or passed via ScanOptions). No AACS key material is compiled into the binary.

Architecture

Drive                  — open, identify, init, single-shot read
  ├── ScsiTransport    — SG_IO (Linux), IOKit (macOS), SPTI (Windows)
  └── unlock_bridge    — private seam to the freemkv-unlock crate
                         (firmware / AACS cert / CSS bus-auth unlockers)

Disc                   — scan titles, streams, AACS/CSS state
  ├── UDF reader       — Blu-ray UDF 2.50 with metadata partitions
  ├── MPLS parser      — playlists → titles + clips + streams
  ├── CLPI parser      — clip info → EP map → sector extents
  ├── IFO parser       — DVD title sets, PGC chains, cell addresses
  ├── Labels           — 5 BD-J format parsers (detect + parse)
  ├── AACS             — key resolution + content decryption
  ├── CSS              — DVD CSS (bus auth → player-key disc crack → known-plaintext title-key attack)
  └── KEYDB            — download + verify + save

Streams                — unified PES pipeline
  ├── PesStream        — pes::Stream: one trait, read()/write() PES frames
  ├── DiscStream       — sectors → decrypt → TS demux → PES
  ├── IsoStream        — ISO file → decrypt → TS demux → PES
  ├── MkvStream        — MKV mux/demux
  ├── M2tsStream       — BD transport stream
  ├── NetworkStream    — TCP with FMKV metadata header
  ├── StdioStream      — stdin/stdout pipe
  └── NullStream       — discard sink

See docs/ for detailed technical documentation on each module.

Error Codes

All errors are structured with numeric codes. No user-facing English text — applications format their own messages.

Range Category
E1xxx Device errors (not found, permission)
E2xxx Profile errors (unsupported drive)
E3xxx Unlock errors (failed, signature)
E4xxx SCSI errors (command failed, timeout)
E5xxx I/O errors
E6xxx Disc format errors
E7xxx AACS errors
E8xxx KEYDB update errors
E9xxx Stream / mux errors (URL, PES, ISO, pipeline, demux)

Platform Support

Platform Status Backend
Linux Supported SG_IO ioctl
macOS Supported IOKit SCSITask
Windows Supported SPTI

Contributing

Run freemkv info disc:// --share with the freemkv CLI to capture your drive's identity for contribution. Drive-unlock profiles are maintained in the freemkv-unlock repository.

License

MIT

S
Description
Internal mirror of libfreemkv 1.1-beta HEAD for private kdb builds (tag drops flate2; kdb needs HEAD symbols)
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