The keyserver protocol now returns all 32 index keys as an array for a
forensic content sample (and a single-element array for plain content).
resolve_fmts_key_map sends one forensic batch and maps array element i to
segment index i+1, replacing the per-index blind-probe collection loop
that repeatedly hit the key service. Segment/index parsing and the
aligned-unit content classification are reworked to support this:
- rename variant_select -> index_select (per-index, not per-variant)
- content classification moves to is_clean(buf, ContentFormat) so the
unit selector emits only units the key service accepts
- segment.rs: parse IndividualSegment.tbl index tags + SPN ranges,
build contiguous LBA key ranges from the resolved 32-key array
- decrypt/decorator plumbing for the resolved per-index keys
Fail loud (FmtsKeyMissing) when the forensic query returns < 32 keys or
any segment index stays unresolved.
decrypt:
- decrypt_sectors is now a pure decrypt (apply key, leave plaintext, report
unverified bytes); TS-structure is a separate primitive (is_clean_ts/ps) used
only for key selection and read-verify. The mux passes decrypted bytes through
(the demuxer drops non-conforming packets), ending the NULL-TS conceal loop and
the per-unit key-server refetch storm. Key-proof floor replaces the 75%
supermajority.
recovery:
- Removed the post-read decrypt-verify gate (verify.rs) that mis-aligned the
disc-absolute unit grid against clip-anchored AACS units and false-failed good
clips (e.g. Dunkirk's orphan-CPS clip). Bad sectors are marked by physical read
result; decryptability is proven at scan + mux time.
HD DVD (first-class AACS):
- Role-based candidate-list file sourcing so an HD DVD's /ANY!/ files
(MKBROM.AACS, VTKF000.AACS, CONTENT_CERT.AACS) are found with no disc-type
branch. parse_vtkf parses VTKF000.AACS into the same UnitKeyFile as a BD
Unit_Key_RO.inf, so the shared VUK unwrap applies unchanged. set_unit_base
clip-anchoring. Two decrypt-axis assumptions remain UNVERIFIED-HDDVD-DECRYPT
(no encrypted disc to test).
mux:
- MVC (Blu-ray 3D) track signals unified into one MVCDecoderConfigurationRecord;
release-safe track_vint (3-byte VINT) and pid_index (i32) guards.
hardening:
- Container-aware is_clean / encryption detection; bytes_bad_in_title fail-safe
on a corrupt mapfile; CSS crack gated on DiscFormat::Dvd (HD DVD excluded);
non-vacuous CSS tests; patch NOT_READY/HARDWARE/ILLEGAL_REQUEST/ABORTED
sense-path tests.
decrypt_sectors is now a pure decrypt — apply the CPS unit key, leave the
plaintext, report how many bytes did not reach clean TS ("unverified"). It
never restores ciphertext, nulls, or re-fetches. "Did a key produce clean TS?"
is a key-selection / read-verify signal, not the verdict "did we decrypt?": a
correct key can decrypt a bad-encoded region, and broken TS is a muxer concern
(the demuxer drops the packet and resyncs).
Callers own the policy:
- mux (read > decrypt > mux): pass the decrypted bytes to the muxer, whatever
they are; fail loud only on a genuine can't-decrypt (no key / misaligned).
- sweep/patch (reading from a disc): an unverified unit is a bad read — recover
a fresh key and retry, or fail loud so disc-recovery re-reads it.
Removes three duplicated decisions — the decrypt-time ciphertext restore, the
mux NULL-TS conceal loop, and the per-unit key-server refetch — plus the dead
aacs_unit_still_ciphertext predicate. Key-fetch recovery now samples the on-disc
ciphertext explicitly (a pure decrypt leaves the buffer plaintext) and lives
only on the rip/verify path, never the mux.
Fixes the 30-90s/region mux stalls and key-server storm on bad-encoded UHD runs
that 1.4.1 left behind (it relaxed the gate but not the surrounding machinery).
AACS content decryption rejected a whole 6144-byte aligned unit unless
EVERY content packet was conformant MPEG-TS. One authored-bad packet (a
pressing/encoding defect or an AACS 2.1 forensic-variant frame) made the
mux conceal the entire unit as NULL TS — destroying up to 31/32 good
packets and tallying them as loss, surfacing as false "corruption" on
otherwise-clean discs (observed across two UHD titles).
decrypt_unit now asks only "did a key OPEN this unit?" — a padding-aware
>=75% supermajority of content packets restoring their 0x47 sync, a gate
no wrong key can reach (uniform-AES noise floor) yet one that tolerates a
minority of authored-bad packets. Opened units pass through VERBATIM; a
non-conforming packet is left for the demuxer to drop on sync-loss and
resync past. TS-sync conformance is a muxer concern, never a decryption
verdict. The post-read verify/sweep gate now shares the same primitive so
it can never disagree with the mux decrypt.
Also unify the MVC (Blu-ray 3D) track signals: the mvcC CodecPrivate
extension, the BlockAdditionMapping, and each per-frame BlockAdditional
all derive from one MVCDecoderConfigurationRecord built once per track, so
a malformed dependent-view parameter set can no longer orphan a BlockAddID.
Second audit round converged (severity collapsed 6 HIGH -> 1; the one
HIGH was a bounded 32-element scan, not a defect; the sole spec MEDIUM
was the same false-positive re-raised — 0xBF matches ISO/IEC 14496-15
§7.6.2 verbatim). One genuine robustness fix plus coverage:
- extract_mvc_params: skip a zero-length NAL instead of abandoning the
scan, so a stray length prefix before the subset SPS/PPS no longer
silently drops 3D signalling. Test proves params after a zero-length
NAL are still found.
- Tests: parser_for_mvc_dependent routes H.264 to a passthrough parser;
passthrough with an IDR does not re-assert param sets (the keyframe &&
!mvc branch).
- Document the per-playlist (not per-clip) is_3d latching as a known
limitation (real main-feature playlists are uniformly 3D).
Triage of a 10-lens code audit of the 3D branch. Fixes for real defects;
rejected three spec false-positives that matched the ISO/IEC 14496-15
§7.6.2 record verbatim.
Robustness / correctness:
- Never panic when a title's only video is the MVC dependent view: the
base is now the first NON-dependent video, so a dependent-only title
sets up no merge (muxed as an ordinary track) instead of hitting an
`expect` on the skipped track slot.
- Drop a per-frame BlockAdditional (BlockAddID=2) when the track declared
no mvcC mapping (dependent params not captured before the header) — a
plain block keeps the file conforming instead of an orphaned add.
- A non-keyframe MVC base frame always carries a ReferenceBlock (fall back
to a 0 offset in the pre-first-keyframe corner) so it is never mistaken
for a seek point.
- Reference the last keyframe on the PRIMARY video track only, so a
secondary video track's keyframe can't become a cross-track reference.
- dep_by_pts overflow: bound BEFORE inserting so the just-arrived
dependent survives the drift-clear; count a displaced duplicate-PTS
dependent as an orphan instead of losing it silently.
API / docs:
- Fold write_frame_with_additional into write_frame(..., Option<&[u8]>)
per the "no foo_with_X" convention.
- Fix mvc_params doc (StereoMode is intentionally not emitted); remove a
stale PAT/PMT comment describing an approach that was never taken.
Tests: MVCDecoderConfigurationRecord over-length guards; write_int minimal
two's-complement widths; BlockGroup/BlockAdditions/BlockAdditional +
ReferenceBlock emission; additional dropped without a mapping; h264 MVC
passthrough keeps param sets in-band; extract_mvc_params no-panic on
truncated/empty input; pairing window + dep-overflow edges; no-panic on a
dependent-only title.
Fold the MVC dependent (right-eye) view into the base H.264 track as a
per-frame BlockAdditional under an mvcC BlockAdditionMapping, so a 3D
title produces one MVC video track instead of two independent H.264
tracks.
- h264: MVC-passthrough parser mode keeps the dependent view's subset
SPS/PPS in-band, so each emitted frame is a self-contained dependent
access unit for a BlockAdditional
- resolve: route the dependent stream through the passthrough parser
- mkvstream: detect the dependent view, pair it to the base frame by
PTS (bounded FIFO), attach it as a BlockAdditional (BlockAddID=2),
and skip building its own track; build the mvcC
MVCDecoderConfigurationRecord from the captured subset SPS/PPS and set
it on the base track at activation
- mkv: emit the mvcC BlockAdditionMapping and BlockGroup/BlockAdditions,
with a ReferenceBlock on non-keyframe base frames
- ebml: add BlockAdditions/BlockMore/BlockAdditional/BlockAddID/
BlockAddIDValue/ReferenceBlock elements and a signed-int writer
Verified against a Blu-ray 3D ISO: ffprobe shows a single MVC track,
the mvcC mapping is present, ~144k BlockAdditionals carry the dependent
view (8.7 GB), and the base view decodes cleanly with no regression.
MVCDecoderConfigurationRecord follows ISO/IEC 14496-15 7.6.2; StereoMode
is intentionally omitted (no enum value describes MVC-in-BlockAdditional;
the mvcC mapping is the primary 3D signal per RFC 9559).
Blu-ray 3D as a mux-path variant:
- Detect 3D (a clip has STREAM/SSIF/<clip>.ssif — note the SSIF/ subdir, which
the old .ssif fallback path got wrong) and use the SSIF extents for the mux:
one transport stream carrying both the base (left) and MVC dependent (right)
eyes on distinct PIDs, so muxing it captures the full 3D.
- Add the dependent-view video stream. The base STN table lists only the left
eye; the on-disc PAT/PMT are AACS-encrypted (unreadable pre-key) and the base
STN omits the dependent view (it lives in the MPLS STN_table_SS), so use the
BD-3D PID convention: dependent = base video PID + 1 (0x1011 -> 0x1012),
coding 0x20 -> H.264. The demux routes its packets from the SSIF.
info now reports two video streams for a 3D title; the mux writes both eyes.
from_coding_type maps 0x20 (MVC dependent view) to Codec::H264, so the existing
PAT/PMT scan surfaces the SSIF right-eye substream as a second video stream on
its own PID instead of dropping it as Unknown. No new parser: the dependent eye
rides the same demux path as any other TS video stream. Removes the throwaway
3D-structure probes (findings captured in prior commit messages).
First step of Blu-ray 3D as a mux-path format variant: name stream_type 0x20
(H.264/MVC dependent view, the SSIF right-eye substream). Recognition in the
scan/demux + dependent-stream enumeration follow.
Empirical (300, clip 00042): base .m2ts (1567 extents, 25.85 GB) is entirely
inside the SSIF LBA span; dependent = SSIF − base = 1567 ranges, 9.59 GB
(exact vs 35.43−25.85). 200/200 sampled dependent-view units decrypt under the
base UK. => de-interleave needs no SSIF parsing (complement of the base extents
we already resolve), and the dependent eye needs no extra key.
Dev tool for the 3D build: uses the library UDF reader (7z cannot parse these
ISOs) to dump base .m2ts vs SSIF sizes and the MPLS ExtensionData entries
(STN_table_SS + SS sub-path). Not product code.
read_icb_extents parsed a continuation block's allocation descriptors from
offset 0, but a continuation block begins with a 24-byte Allocation Extent
Descriptor (ECMA-167 4/14.5): 16-byte descriptor tag + prev-loc(4) +
length_of_allocation_descriptors(4); the real ADs start at offset 24. Reading
from 0 mis-parsed the AED tag as a descriptor -> one garbage extent, then an
unknown-type break, silently truncating any file whose extents spill into a
continuation block.
Few-extent files store their ADs inline and never hit this path, so it stayed
hidden; a heavily fragmented file (~1600 fragments) truncated to 113 extents +
a bogus non-unit-aligned fragment that then aborted the mux
(ExtentNotUnitAligned). Skip the 24-byte AED header, read l_ad bytes of
descriptors from offset 24. Adds a regression test with a non-zero AED tag.
Add UnitKey.variant_number (0 = ordinary, 1..32 = forensic variant) with new/variant constructors, and aacs::variant_select — resolve a disc's single variant and classify each aligned unit (default / variant / drop foreign / conceal keyless). Correct IndividualSegment.tbl: the per-record field is the variant (cycles 1..32 on a retail disc), not a segment number — Segment.number -> Segment.variant.
Relicensed from AGPL-3.0 to MIT, effective 1.3.1 (<=1.3.0 remain AGPL). The CSS
content cipher and Stevenson title-key attack are attributed to their published
cryptanalysis (not libdvdcss); all libaacs/libbluray/libdvdread/libdvdnav name
references were dropped from comments while keeping the standard format/spec
descriptions. Also bumps to 1.3.1.
Parse ADV_OBJ/VPLST000.XPL (the real HD-DVD player playlist) with roxmltree
into one DiscTitle per <Title>: its PrimaryAudioVideoClip clips in order (EVO
via the .MAP sidecar), the titleDuration, the displayName, and the ChapterList.
A layer-break split (FEATURE_1+FEATURE_2, feature/feature_Divide) composes into
ONE title with the two parts as clips, each carrying its title-time in/out
points (45kHz ticks) for seamless-join splicing. Falls back to the clip-name
heuristic when no playlist is present.
Fixes unknown runtimes (real durations), poor names (FEATURE -> 'Main Movie'),
and gives authoritative composition + chapters. Validated on ANCHORMAN (97m),
SHAUN (99m), HARRY_POTTER (152m).
libfreemkv is publish=false (it git-deps the firmware crate freemkv-unlock,
never on crates.io), so the Release workflow's 'cargo publish' step failed
hard on every tag. Consumers git-tag-pin libfreemkv; the git tag is the
release artifact. Removed the publish job.
Round-11 findings from the 10-phase release audit (no real HIGH):
- When a no-declared-duration source (HD-DVD) muxes a degenerate single
frame at tick 0 with no per-frame duration, max_block_ticks stays 0 and
the reserved DURATION placeholder was left as a literal 0.0 (players read
that as a zero-length file). Void the element instead, so the Segment
omits DURATION as an unknown-duration source did before the back-patch.
- Add a regression test for the sniff_video_codec overlap fix (a
picture_start_code whose payload begins 00 00 followed by a real start
code) so the i+=4 marker skip can't silently regress to i+=3.
Round-10 findings from the 10-phase release audit:
- A finder claimed the DTS SFREQ→rate table was wrong at 11/12; verified
it against ffmpeg's avpriv_dca_sample_rates (12k/24k/48k/96k/192k at
11-15) — the table is CORRECT. Added a test that locks the full table so
it can't be mis-"fixed".
- sniff_video_codec advanced 3 bytes after a matched start code, re-reading
the code byte as an overlapping start code; skip the full 4-byte marker.
- Guard the HD-DVD next_id title counter with saturating_add so a crafted
disc with >65536 clips can't overflow (panic in debug).
- Add a test that an undecryptable unit (DecryptFailed) is zero-filled and
counted as loss through ExtractResult (complete=false, bytes_lost>0) —
the recovery-seam consolidation folded that bucket into bytes_unreadable.
Round-9 findings from the 10-phase release audit (no HIGH):
- Remove the MAX_PTS_MARKS backstop and its tautological test: an empty
DTS PES returns before recording a mark, and a non-empty run is already
bounded by the MAX_AU_BYTES buffer clear (which clears pts_marks) — so
the deque cannot grow unbounded and the cap was dead code.
- AuAssembler::for_codec no longer reserves 256 KiB for a Passthrough
stream (audio/subtitle, and every TS/BD stream) whose buf is never
written; only the reassembling modes reserve.
- Correct the scan comment that claimed region is computed (it is a
Region-free stub until region detection lands) and drop a public-repo
reference to internal "private refactor notes" in the mkb module doc.
Round-8 findings from the 10-phase release audit:
- detect_disc_format's BDMV fallback passed detect_format's result
through unchanged, so an SD bonus/menu title could tag a BD-tree disc as
DVD (mis-sizing the ECC sweep) — violating its own "never below Blu-ray"
invariant. Clamp anything but UHD up to Blu-ray.
- Track the MPEG-2 GOP byte total incrementally instead of re-summing the
whole gop_buf on every pushed picture (was O(pictures²) on any MPEG-2
disc, not just adversarial input).
- Back the DTS pts_marks deque with a VecDeque so the over-cap prune is an
O(1) pop_front, not an O(n) Vec::remove(0).
- Add a test exercising parse_stream_id_extension's PTS/DTS skip branches
(the real AU-opening 0xFD video PES path) — previously untested.
Round-7 findings from the 10-phase release audit (no HIGH; convergence):
- Cap DtsParser.pts_marks (MAX_PTS_MARKS): a run of zero-length timed PES
packets grew no buffer bytes, so the drain_front mark-prune never ran —
the deque could accumulate without bound on hostile PS input.
- detect_disc_format tested HVDVD_TS before BDMV while the title-scan
dispatch tests BDMV first, so a disc with both trees would be classified
HD-DVD but enumerated as Blu-ray. Align both to BDMV → HVDVD_TS →
VIDEO_TS.
- Document why the DTS new-PES re-base can emit a locally-decreasing PTS
(the muxer's block_ts applies the strictly-monotonic audio nudge, tested
in mkv.rs) — this is by design, not a mux defect.
- Fix stale aacs/keys.rs comment references (functions moved to
aacs/inf.rs / aacs::resolve/derive in the module split).
Round-6 findings from the 10-phase release audit:
- Wire the documented MAX_PENDING_BYTES byte cap into the MPEG-2 GOP
buffer (it was dead code) and add an equivalent MAX_GOP_BYTES cap to the
sparse-PTS reorder, so a crafted stream of few-but-huge access units
cannot over-allocate — both were bounded only by frame count before.
- probe_evo_streams defaulted an unsniffable HD-DVD video stream to H.264,
which mis-parses a VC-1 (or still-encrypted) clip into a corrupt track.
Emit the video stream only when the codec is actually identified — the
honest outcome, matching the audio path (a real clear clip always carries
its sequence header at the head).
- Resume the AU-opener search from a cursor (like the boundary search), so
a long unsynced junk run is O(bytes), not O(buffer) per push.
- Mark mpeg2's now-dead MAX_AU_BUFFER test-only; restore #[doc(hidden)] on
the aacs probe harness module.
- Add regression tests: the 0xFD video-routing guard, the FMTS-is-UHD key
state, and the GOP byte caps.
Round-5 findings from the 10-phase release audit:
- collect_es routed EVERY extended-stream-id (0xFD) PES into the video ES
buffer, so a 0xFD HD-audio sub-stream (MLP/TrueHD) could pollute the
video sample and — if it preceded the video PES — stamp the video track
with the audio PID, losing the video. Only the VC-1 extension (0x55) is
now treated as video; routing 0xFD audio to its own track is deferred to
the HD-DVD program-chain follow-up.
- The sparse-PTS reorder now carries its calibrated per-frame duration onto
each frame, so the muxer emits a BlockDuration and the back-patched
Segment Duration covers the final frame instead of understating it.
- Add regression tests for the MAX_MARKS and MAX_VTI_HITS caps (promote
MAX_VTI_HITS to module scope); make the differential-test factory array a
named type; drop an identity-op in a reorder test.
Round-4 findings from the 10-phase release audit (the first fully clean
round; it dug into the new #22/#18 refactor code):
- AuAssembler closed each AU from only the FRONT mark's fields, so when
one PES fragment carried the source and a later fragment of the same AU
carried the PTS, the second field was dropped — a regression vs the old
separate pts/source mark deques. Now merge the first Some of each field
across all in-range marks.
- parse_vti_clip_order picked the largest residue bucket with
HashMap::into_values().max_by_key(), nondeterministic on a size tie
(randomized HashMap iteration) — could select a different clip table
run-to-run. Break ties by smallest offset.
- Bound the marks/disc_marks deques (MAX_MARKS): the buf-size cap prunes
marks only when bytes accumulate, so a run of zero-length timed
fragments could grow them without bound on hostile input.
- Add push_owned so the PS path moves the PES payload into a passthrough
AU with no copy (MPEG-2 video + all audio), removing a per-PES
malloc+memcpy the refactor had introduced on the DVD path.
- Back-patch the MKV duration from the block END (start + its own
duration) so it covers the final frame instead of understating by one.
- Add direct tests for the MKB record-framing walker; drop a stale
drain_complete_aus doc comment left on process_au.
AuAssembler::drain rescanned the whole buffered access unit from a fixed
offset on every push, so reassembling one AU split across N program-stream
PES fragments cost O(bytes²/fragment) — amplified on the HD-DVD PS path
where H.264/HEVC/VC-1 frames are large and now flow through this shared
assembler (unlike the TS path, which delivers one AU per PES).
Carry a scan_pos cursor (and, for the stateful VC-1/MPEG-2 rules, a
seen_unit flag) so each push resumes the boundary search where the last
one stopped instead of restarting. Total scan work for one AU is now
O(AU bytes). The from-scratch scanners are retained as a #[cfg(test)]
oracle; a new differential test asserts the resumable path yields
byte-identical AUs at every fragment granularity for all three modes.
Round-2 findings from the 10-phase release audit:
- parse_vti_clip_order bucketed hits by residue with an O(stride*hits)
rescan and no hit cap, so a crafted HD-DVD VTI packed with millions of
`.EVO` tokens (up to the 64 MiB UDF read cap) could burn seconds of CPU
on a routine scan. Bucket in a single O(hits) pass and cap collected
hits at MAX_VTI_HITS (a real table holds a few dozen).
- Fix the stale `super::keys::…` intra-doc links left by the aacs module
rename: the referenced fns live in `super::derive`.
Round-1 findings from the 10-phase release audit:
- SparsePtsReorder buffered its current GOP with no bound, draining only on
a keyframe — an open-GOP or crafted program stream that never signals one
could hold the whole title in RAM. Force-complete the GOP at
MAX_GOP_FRAMES, matching the MPEG-2 parser's backstop.
- inject_unit_keys labelled a 2.1 FMTS disc as AACS 1.0 / bus-encryption
off; FMTS is UHD-family, so synthesize the UHD version + bus encryption.
- The compiled Key Correction Data was a non-zero 16-byte constant fed into
the Media Key derivation. Per the no-compiled-keys rule it is now all-zero;
the chain still cannot complete on a real disc (documented), so this is
behaviour-neutral — all variant tests pass unchanged.
- Fix stale doc references (broken `super::variants` intra-doc links, and
`aacs::keys` comments) left by the module rename.
A title whose scan yields no duration (HD-DVD — its `.MAP` timemaps are
not parsed, so DiscTitle.duration_secs is 0) produced an MKV with no
Segment Duration element, so players/MediaInfo reported an unknown
runtime.
Reserve a DURATION placeholder when the source declares none, track the
highest block timestamp written, and back-patch the placeholder at
finish() with the real muxed runtime (also enabling the per-track BPS
tags for these titles). Gated on duration_secs == 0, so BD/UHD/DVD —
which carry a real mpls/IFO duration — write it up-front exactly as
before, unchanged.
HD-DVD Standard Content splits the main feature across clips at the
layer break (FEATURE_1/FEATURE_2, or feature/feature_Divide). The scanner
enumerated one title per .evo, so main-title selection picked only part 1
(e.g. Shaun's 11 GB FEATURE_1, missing the 6.8 GB FEATURE_2).
Parse the HVA*.VTI navigation file's clip table — a fixed-stride record
list naming every clip in authored order, isolated by residue-mod-stride
rather than the imprecise header pointer — and concatenate the feature
clips (matched by the feature* naming convention) into one title whose
extents run in authored order. Every other clip stays its own title.
Falls back to one-title-per-clip when the VTI is absent or unparseable,
so nothing regresses on a disc with no readable navigation.
Validated on real discs: Shaun 17.8 GB / Anchorman 20.1 GB / Harry Potter
24.4 GB now enumerate as one 2-clip FEATURE title (largest = the movie).
The MPEG-2 parser hand-rolled its own PES reassembly — a byte buffer plus
parallel PTS / source / discontinuity mark queues keyed by absolute
offset — duplicating what AuAssembler already does for H.264/HEVC/VC-1.
Add a Mode::Mpeg2 to AuAssembler (picture 0x00 with preceding sequence
0xB3 / GOP 0xB8 headers — the same headers-precede-picture shape as the
VC-1 mode) and have the MPEG-2 parser own one via AuAssembler::mpeg2().
parse() now feeds fragments to the assembler and processes each complete
access unit; the buffer, base offset, and three mark queues are gone. The
GOP-buffered temporal_reference reorder and PTS origin-locking are
unchanged. The parser's external contract is unchanged, so all existing
MPEG-2 parser tests pass as-is; new AuAssembler tests cover the MPEG-2
boundary rule directly.
HD-DVD EVO (and DVD VOB) program streams timestamp video at GOP
granularity: only one access unit per GOP carries a PES PTS. The H.264 /
HEVC / VC-1 parsers collapsed a missing PTS to 0, so on such a source
every non-anchor frame landed on the same block timestamp and a decoder
reported "non monotonically increasing dts".
Add a shared SparsePtsReorder that rebuilds a display-order PTS per frame
from the coded picture type (I/P/B) plus the sparse anchor PTS, with a
per-frame duration self-calibrated from the spacing between consecutive
GOP anchors (no external frame-rate needed). Display order is derived via
the classic single-anchor-delay rule (an anchor displays only after the
previously-held anchor; a B displays immediately), exact for the
non-hierarchical GOP structures HD-DVD H.264/VC-1 use. It mirrors the
MPEG-2 parser's GOP-buffered origin-locking.
Gated to the program-stream path only: the three parsers enable it via
with_ps_reorder(is_dvd_ps), so the BD/UHD transport path (per-frame PTS)
is byte-identical and untouched.
Correct the variant Media Key chain against two real variant MKBs
(Zombieland v70, Stand By Me v70): C for Kmp is the per-slot block of
the 0x0c cvalue table indexed by the matched subset-difference, not the
0x2d head. The 0x2d record is the VARIANTS table (leading body-16 bytes,
one big-endian u16 per subset-difference) followed by a trailing 16-byte
Nonce, with no leading header. VKD stays at 0x2f.
Route record-type selection through the named REC_* consts in mkb rather
than bare hex, and document that Key Correction Data is per-licensee: no
universal constant exists and none is compiled in, so on a real disc the
chain yields a wrong Media Key that the Verify-Media-Key gate rejects
rather than emitting a bad key. This is a key-acquisition gap, not a
code gap.
VC-1 HD-DVDs (e.g. Shaun of the Dead) carry video on MPEG-PS extended
stream id 0xFD, with the real stream selector in stream_id_extension
inside the PES extension. Parse that field so the video routes to a
distinct track (pid 0xFD00|ext) instead of being dropped.
Reframe VC-1 access units in AuAssembler with a dedicated Mode::Vc1:
an AU is delimited by the next frame BDU (0x0D) once a frame has already
been seen, so the sequence (0x0F) and entry-point (0x0E) headers that
precede an I-frame stay attached to the frame they describe. The old
single-start-code split stranded those headers on the prior AU, which
the decoder reported as bits-overconsumption and hard decode failures.
hddvd probe now tracks the video pid it detects and emits VC-1 on 0xFD.
Bump to 1.3.0 and add the 1.3.0 changelog entry (FMTS/HD-DVD formats, AACS 2.1 variant chain, recovery seam, aacs module split, main-title-by-size, and the fixes since v1.2.2). Not tagged or pushed.
- aacs/resolve: a media-keys-only provider missing the VID classifies as
VidUnavailable, not NoMaterial (an MK derives the VUK once the VID
arrives).
- disc/bluray: mark a clip seen only after its .clpi parses, so a
transient parse failure on the first PlayItem cannot suppress the
clip's extents for a later PlayItem referencing it that succeeds.
- disc/patch: log rather than swallow mapfile record/flush failures on a
reverify downgrade, so a failed persist cannot silently mismark a bad
unit good on resume.
- mux/ts: flag a discontinuity when a partial PES is dropped, matching
the other partial-drop paths.
- mux/demux_thread: the no-demuxer branch forwards an empty batch for
early consumer-disconnect detection instead of reading the whole disc.
- io/pipeline: correct the send-timing log (as_secs_f64, not as_micros
printed as ms).
- aacs/derive, aacs/variant, disc/read_error, keysource: comment/doc
accuracy. sector/prefetched, udf: remove dead fields/functions.
- mux/disc: assert unit-aligned read counts in the test.
Replace the AACS-specific inline key-fetch in the decrypt decorator with
a scheme-neutral recovery seam: the input stream (L3) installs a Recover
closure (none / AACS key-fetch) and the decorator (L2) runs it at the
single decrypt-miss point. FMTS (AACS 2.1) forensic-segment units that no
key opens are just undecryptable units, concealed and counted as ordinary
decrypt loss with no FMTS-specific branch ("a loss is a loss"), so the
separate bytes_undecryptable bucket collapses into one loss count.
- sector/recovery.rs: the seam (MissOutcome, none/key_fetch factories),
naming no encryption scheme in its type.
- FMTS: segment routing primitives + BYPASS_FMTS_KEY, and an upfront
ensure_forensic_segments_decryptable gate (Error::FmtsKeyMissing) in
the mux input path, parallel to the unit-key gate.
- CSS descramble/rekey moves from decrypt_sectors into
css::descramble_region: CSS self-recovers from the data itself, so it
stays OFF the seam (which is only for external inputs).
- disc/mod.rs also: main-title selection aligned to largest physical
size; is_regular read from the open file handle, not metadata(path),
fixing a swallowed sync_all on a fresh-rip ISO. decrypt_threads()
resolved once via OnceLock off the per-buffer hot path.
- DetectFn now takes a SectorSource so a parser can inspect a jar's
central directory in detect() instead of firing on "any BD-J jar".
dbp/deluxe do the real com/<vendor>/ prefix check up front, so each
claims only its own discs (foundational for scaling the registry).
- criterion: treat a stream-map value of 0 as unmapped and synthesize a
real 1-based number, so a 0 can't shadow or collide with a genuine
stream 1 (with regression tests).
- png_filenames: new Low-confidence, last-resort parser reading menu
language from {title}_UHD01_{LANG}_Composite artwork; sits below the
MPLS floor so a real framework parser always wins.
- vocab: add menu_lang() for 639-2/B to 639-2/T menu-token normalization.
New aacs::segment_key: parses the AACS 2.1 SegmentKeyNNNNN.tbl container, confirmed against a retail disc as an 8-byte header + 65536 records of 536 bytes, indexed by the 16-bit variant selector the Media Key Variant chain produces. This is the confirmed link between the two 2.1 variant layers (selector picks the device's per-segment variant). The per-record 528-byte payload layout is not yet reversed.
New aacs::segment: parses the AACS 2.1 IndividualSegment.tbl into the source-packet ranges of the forensic variant segments (validated against a retail disc: 792 segments, 2560 packets each). First piece of the FMTS variant decoder — the segments' variants are encrypted under segment keys, not the unit key, so a unit-key rip corrupts them (broken HEVC refs).
canonical_title_order keyed on clip-count ascending before duration, so a short 1-clip bonus reel outranked the real feature — which is often chaptered into many clips (one per chapter). Make physical size the primary key: the main feature is the largest non-oversize title; decoy 'play-all' playlists run long but tiny (reused clips) and self-eliminate.
Validated across 23 UHD/BD discs: fixes t1 on F9, Fast Five, Fast & Furious 6, and Furious 7 (feature was ranked #13-36); no regressions on the 19 already correct.
Add DiscFormat::Fmts (AACS 2.1) and DiscFormat::HdDvd as first-class peers. Format derives from the AACS MKB generation (mkb_type().generation(): V10=BD, V20=UHD, V21=FMTS), reusing existing AACS code, and from the on-disc tree for HD-DVD/DVD. One detector (detect_disc_format) shared by the coarse DiscId probe and the full scan — no more 'default BluRay, defer to full scan'.
FMTS is a BD-tree stream variant: parse_playlist resolves the clip stream via CLIP_STREAM_EXTS (.m2ts -> .fmts -> .ssif), so the .fmts main feature yields real extents (previously silently empty). HD-DVD is a tree-level peer with its own enumerator (disc/hddvd.rs): HVDVD_TS/*.evo -> MpegPs titles with real extents (playlist/stream parsing honestly stubbed).
Sample selection for key resolution now uses the authoritative AACS CPI flag (aacs_unit_encrypted, byte-0 & 0xC0) not the ts_sync_destroyed heuristic — container-agnostic (M2TS/FMTS/EVO; TS-sync is meaningless on HD-DVD program streams) and stops the decode-server '0 encrypted units' rejection.
Tests live with each format (bluray/hddvd/mod); generic UDF fixture builders extracted to a shared udf::fixture module.
Adopt freemkv-unlock's split Unlocker trait: run_features drives the drive-prep capability, run_bus the content bus removal, each iterating unlockers until one doesn't decline (NotApplicable = try next; Ok or a real error stops).
unlocker_matrix now reports which drive-prep unlocker actually ran — LibreDrive removes the bus at the drive; Renesas unlocks features but leaves the bus to the cert. Wire product_id through to fu::DriveId.
Bump to 1.2.3.
aacs::boil was a thin newtype veneer over aacs::derive — a duplicate layer.
Delete it: move the shared key newtypes (Vid, MediaKey, Vuk, ProcessingKey,
UnitKey) into aacs::types, and expose resolve_candidate + KeyCandidate from
aacs::derive directly. Downstream (keysource, disc::encrypt) now import from
aacs::{derive,types}. Pure API consolidation, no behaviour change; full test
suite green on Rust 1.86.
The module structure is the public API, but the typed key primitives
(MediaKey/UnitKey/Vid/Vuk, mk_from_dk/mk_from_pk/uk_from_vuk/vuk_from_mk),
derive_vuk, the aligned-unit decrypt entry points, and DeviceKey/HostCert
are load-bearing names that downstream key-source crates import through the
flat `aacs::` path. Re-export them here so those crates can track the
module refactor without a lockstep re-pin.
Redesign derive_media_key_variant to the minimal derivation surface:
derive_media_key_variant(mkb_records, pk) -> Km
- PK-input only. Deriving Kp from device keys (DK -> PK) is a separate
concern (walk_processing_key); a leaked 2.1 key is a PK, and the chain
starts at Kp. A bare PK arrives without its subset-difference slot, so
the primitive tries it against every slot and returns the Km for the
slot that passes the MKB's Verify-Media-Key record -- mirroring the
classical bare-PK derive_media_key_from_pk, gated by the chain's own
verify so an unverified key is never returned.
- VID-free: the Media Key is MKB-scoped. VUK stays the separate
derive_vuk(Km, VID) step.
- KCD is a fixed algorithm constant compiled in, not a caller parameter
(removes the kcd argument, the placeholder const, and KcdNotProvided).
- Soft-correction / online-challenge slots are treated as non-covering;
surfaced over the generic miss so a disc needing those modes is
distinguishable from a non-covering key.
resolve_keys_v21 updated to walk DK -> PK first, then call the primitive
and derive the VUK from Km + VID. Module + helper docs refreshed to the
pinned record layout; tests reworked for the PK-only signature.
variants_for_uv previously returned None (placeholder), dead-stopping the
Media Key Variant chain at VariantsTableUnavailable on any real disc. Layout
now pinned against two real 2.1 variant MKBs (Zombieland v70, Stand By Me v70):
the 0x2d Encrypted-Media-Key-Variant-Data body is sd_count u16 VARIANTS entries
(1:1 with 0x0c cvalues / 0x04 subset-diffs) followed by the 16-byte per-disc
Nonce at the tail. variants_for_uv reads the sd_slot_index-th u16.
With this the chain runs fully: Kmp -> Kpnew(=Kmp^KCD, extracted CyberLink
constant) -> VKD(0x2f) -> Km -> Kvu. The only remaining input is a covering
2.1 Processing Key to validate against a known answer; until then the final
Verify-Media-Key (0x86) gate rejects any wrong layout pick, so a bad key can
never be emitted. Tests updated to reflect the wired lookup; 1.86 precommit
green (fmt+clippy+tests).
The facade removal (5ff0464) left tests/ calling aacs::disc_hash,
aacs::decrypt_unit, aacs::AacsVersion, etc. at the old flat paths,
so the branch did not compile its integration tests. Repoint each
to its real module (inf/derive/content/mkb). No logic change.
The volume_key module was only 34 lines and is just the tail of the same
DK/PK -> MK -> VUK -> UK derivation ladder as media_key. Fold both into one
derive module so every aacs module is a substantial, distinct responsibility
(crypto/mkb/derive/inf/content/variant/resolve). Relocation only; logic hash
identical (95fb9924); 2210 tests green.
Break the 2800-line keys.rs into four responsibility-scoped modules:
- media_key.rs: DK/PK -> Media Key subset-difference walk (+ probe harness)
- volume_key.rs: VUK derivation, unit-key unwrap
- inf.rs: Unit_Key_RO.inf parsing, disc_hash, content cert, in-drive MKB read
- resolve.rs: the resolve_keys_* orchestration (keys.rs renamed)
Relocation only; the (white-box) test suite stays in resolve.rs and pulls
the moved items via glob imports. Proven byte-identical to the pre-refactor
state via the logic hash (95fb9924); 2210 tests green.
Relocate the shared MKB machinery into a single mkb module: the record
framing walker + MkbRecord view (from variant), the MkbType/AacsVersion
classification, the MKB-file utilities, and the record-body finders (from
keys). Fixes the inversion where the MKB parser lived in the 2.1-only
variant module. variant.rs keeps its local MkbRecord-based mkb_find_mk_dv
(name collision with the raw one; unified in the dedup follow-up).
Relocation only. Proven byte-identical to the pre-refactor state via the
function-body logic hash (imports normalized out); 2210 tests green.
Relocate the shared low-level primitives into a single crypto module:
aes_ecb_encrypt/decrypt, aes_cbc_decrypt, aes_g (from content/variant) and
aesg3 + AESG3_SEED (from keys), plus AACS_IV. Fixes the scatter where AES-G
lived in the 2.1 file and AES-G3 in keys. Relocation only — no rename, no
logic change (logic-hash identical to baseline; 277 items; 2210 tests green).
Pure file+module-path rename. 'content' names the AACS unit-decrypt layer
(distinct from the top-level sector-decrypt driver crate::decrypt), and
'variant' (singular, spec term 'Media Key Variant') names the 2.1 chain.
Logic-hash identical to baseline; 277 items intact; tests green.
Add [C]/[PR]/[BD]/[libaacs] §x.y provenance markers across the AACS
crypto so each primitive links to the spec section it implements, with a
source-tag legend in mod.rs. Doc-comments only — no logic, constant, or
signature changes.
Also: correct two stale record-type comments in variants.rs (0x82/0x83 →
the real 0x2d/0x2f) and document the Variant Number width (spec lsb_10 vs
the 2.1 chain's lsb_16, driven by the 65,535-entry VKD table).
The Media Key Variant scheme is detected and parsed via the actual MKB
record types found on a real variant disc:
- 0x2d Encrypted Media Key Variant Data (C)
- 0x2f Variant Key Data table (65,535 x 16)
- 0x0c variant cvalues (one per 0x04 subset-difference slot)
Replaces the earlier placeholder 0x82/0x83 record types, which were a
guess and appear on no real MKB. is_variant_mkb, the record finders, and
the subset-difference cvalue source (now 0x0c, falling back to 0x07/0x05)
are updated accordingly, along with the V20->V21 upgrade detection in
resolve_keys_v2 and its fixtures.
The variant chain still halts at variants_for_uv (the VARIANTS[uv] /
Nonce sub-field offsets need a covering key to confirm end-to-end
against the 0x86 verify), so a best-effort offset is never silently
trusted. All 27 variant tests pass on Rust 1.86.
A Processing Key is the key at its Subset-Difference node — one AES-G from
the Media Key — so it is tried directly against the MKB cvalue tables,
matching libaacs _calc_mk_pks (iterate PKs × cvalues). The prior code
treated every PK entry as a device-node label at unknown depth and BFS-walked
the SD tree (depth 3, capped 5), which was both wrong for terminal PKs and
~15x slower on a large UHD MKB (~181k cvalues): PK derivation on UHD dropped
from ~37s to ~2.4s.
The Subset-Difference tree walk now lives solely in the device-key path
(derive_media_key_from_dk), which owns per-node path bits; the PK path never
descends. Removed PK_WALK_MAX_DEPTH / _CAP / _walked / walk_pk_against_tables_impl;
renamed the core scan try_pk_against_tables and its probe test.
Precommit (Rust 1.86): fmt + clippy + tests green.
resolve_candidate(candidate, mkb, unit_key_ro, vid) -> ResolvedChain: one
composed, PURE-DERIVATION boil-down for a candidate key at any ladder rung
(KeyCandidate::{Uk,Vuk,Mk,Pk,Dk}, each carrying the module's newtype). Walks
DK/PK/MK/VUK -> terminal unit keys, parsing Unit_Key_RO.inf at the version
the disc's MKB declares, and returns every CPS unit key as (cps_unit, key)
(matching ResolvedKeys) plus the intermediate chain. No sampling/validation
(that's the caller's unit_key_validates) and no position recovery (Dk is a
positioned DeviceKey; recover_dk_position first). Adds ProcessingKey newtype.
Consumers stop re-composing the ladder; every client hardens one impl.
Correct mk_from_dk: real Subset-Difference walk (derive_media_key_and_pk_from_dk)
instead of the Media-Key-Variant path, which needed integrator KCD absent
in-tree and Err'd for every real disc -- dead for both consumers. Drops the
now-unused vid arg.
The first cut used a global running clock (max(next, own-PES PTS) + advance),
which fixed the same-PES collision but DRIFTED: once accumulated frame
durations exceeded the PES-timestamp spacing, it never re-based, so a
feature-long DVD DTS track ran minutes past its real length (2h44 for a 2h03
film) while AC-3 from the same source stayed exact.
Match the AC-3 path: re-base to each PES's own container timestamp, and advance
by one frame duration ONLY within a run of AUs sharing one PES. Fixes the DVD
multi-frame-per-PES collision without drift; the UHD DTS-HD MA per-PES
attribution (da85f56) is preserved (each AU still takes its own core PES's PTS).
Adds new_pes_rebases_to_its_own_pts_no_drift; full mux suite green (905).
DVD packs several DTS core frames into one PES; the parser stamped every
access unit with that single PES PTS and duration_ns=None, so consecutive
frames collided on one timestamp — ffmpeg rejected the output as 'non
monotonically increasing dts to muxer: X >= X' (deep-decode = corrupt,
e.g. The Punisher). The UHD DTS-HD MA path (one AU per PES, distinct PTS)
was unaffected, which is why this only surfaced on DVD.
Parse the DTS core header for samples ((NBLKS+1)*32) and sample rate
(SFREQ, 48kHz fallback) to derive each AU's duration, and stamp a running
monotonic PTS: max(next_clock, own-core-PES PTS), then advance by the
frame duration. A later PES whose PTS is ahead of the clock still wins
(preserves the UHD per-PES attribution from da85f56/c49a180); frames
sharing one PES advance frame-by-frame instead of colliding.
Tests: the 3 that encoded 'same PES -> same PTS' now assert monotonic
advance; new dvd_many_cores_one_pes_are_strictly_monotonic reproduces the
Punisher bug; duration/SFREQ-fallback unit tests added.
The tier ladder (bucket->mug->thimble) forces tier 0 to attempt ALL
ranges before tier 1, and tier 1 all before tier 2 — so on a hardened
residual (late resume, flood already gone) the marginal specialists are
unreachable for hours: you bail near-empty buckets over hundreds of dead
ranges before a thimble ever touches water.
FREEMKV_PATCH_FLAT collapses the 3 tiers into ONE flat pool of all 16
handler configs. run_handlers already sorts best-first by the live
decayed-yield scorecard, so this is a data-driven bandit: the first
ranges try them all (explore), the ranking floats whatever is actually
landing sectors to the front (exploit), re-measured per range; a handler
that doesn't fit stays last but is never dropped (floor -> can revive).
The new handlers self-limit (yield after 4 dead reads), so the flat
scheduler does NOT reintroduce the old depth-first per-range starvation.
Opt-in; unset keeps the proven tier ladder as the default for 1.2.0.
The tier-2 marginal specialists now additionally probe permanently-bad
residual sectors before leaving them NonTrimmed, so the alternating-bad
profile's finite read count rose past the old tier-0/1 bound. Guard
still catches runaway; behavior asserts unchanged.
Add a third breadth-first tier (PATCH_TIERS 2->3) that runs the marginal
specialists on the hardened residual tiers 0-1 leave: SlowSpin (Linear
fwd+rev @ min), FuaRetry (Linear fwd+rev+Bisect @ FUA), SlowFua (Linear @
min+FUA), CachePrime, Oscillate (@ max and @ min), SpeedSweep. Every read is
a wedge-safe read_span, so they inherit wedge-abort / unproductive-yield /
deadline for free. All are new configs, so the EWMA scorecard calibrates each
once then ranks by decayed rate — a specialist that doesn't fit self-
deprioritises. Tiers 0-1 (fast scouts, slow-deep) are unchanged; this is
purely additive. Also switch the scorecard log sort to sort_by_key.
cargo test -p libfreemkv green (2200 passed).
CachePrime reads the good run immediately preceding a residual island to lock
the servo/PLL, then reads the island warm (boundary sectors the drive can't
cold-seek). Oscillate reads each residual sector by alternating approach —
forward-into then reverse-into — for direction-dependent tracking. Both go
through the wedge-safe read_span (primes included). FakeDisc models a
direction-dependent sector and a servo-primed boundary sector; fixtures prove
a forward/cold Linear misses each while Oscillate/CachePrime recover them.
FuaRetry (Linear fwd+rev+Bisect at {max,fua,deep}) and SlowFua (Linear at
{min,fua,deep}) are Linear/Bisect at FUA params, no new struct. FakeDisc now
models a stochastic sector that lands only on the Nth physical (FUA) read (a
cached re-read keeps missing) and a hardest sector needing BOTH min speed and
FUA. Fixtures prove cached reads keep missing while the FUA group lands the
stochastic sector, and that neither lever alone recovers the hardest sector —
only the min+FUA combination does.
SlowSpin is Linear pinned to min speed (no new struct). SpeedSweep is a new
per-sector handler that tries Max->Min until one reads (speed resonance).
FakeDisc now models a sector that reads ONLY at min speed; fixtures prove a
max-speed Linear misses it while SlowSpin and SpeedSweep recover it (and that
SpeedSweep tries fast-then-slow).
Grade handlers by an exponentially-decayed recovery rate (bytes/second,
alpha=0.5) instead of a cumulative rate. The residual hardens mid-pass, so
the best technique changes: cumulative froze the early winner in the lead
forever; the EWMA re-prices continuously — a handler that stops earning
decays down, a late-starting specialist climbs. Keeps rank()'s untried->top
one-shot calibration and attempted-but-zero-time->bottom.
New flip fixture proves a handler that recovers a lot early then nothing
loses its lead to one that starts recovering later.
Add ReadParams { speed: SpeedPref, fua: bool, timeout: TimeoutPref } and
thread it through read_span so every wedge-safe handler read can request a
spindle speed (SET CD SPEED issued only on change, restored to max when the
handler exits), set the READ(10) FUA bit, and pick the 10s vs 60s timeout.
- SectorSource gains read_sectors_fua (default ignores fua); Drive sets the
CDB bit, DecryptingSectorSource threads fua to its inner read.
- recovery_read gains a fua param.
- Linear becomes { direction, params }; Bisect/Jump take params. Existing
tier-0/1 instances keep identical behavior (max speed, no FUA, fast/deep).
- Scoreboard keys on the full-config String name (linear:fwd:max:fast, ...).
- FakeDisc observes speed + FUA + approach so specialist techniques are
provably exercised in later commits.
cargo test -p libfreemkv green (2193 passed).
The private_stream_1 sub-stream id low nibble is the DVD audio-stream
NUMBER (0-7), shared across codecs, not a per-codec ordinal. A DTS (or
LPCM) track that isn't the disc's first audio stream got a sub-id one
too low, so the demux routing key (0xBD00 | sub_id) never matched and
every packet was dropped -> present-but-silent track. AC-3 at position
0 coincidentally worked (ordinal==position). Route by positional index.
Fixes silent DTS 5.0 track on The Punisher (AC-3 5.1 @ pos0 plays,
DTS 5.0 @ pos1 was 0xBD88, real wire id 0xBD89).
Delete src/verify.rs (standalone 'read every sector, classify health'
module) + its lib.rs pub mod/pub use. It was old, unused code. The
decrypt-verify gate (disc::verify / UnitVerifier) is a DIFFERENT module and
stays. Relocated the pure chapter_at_offset helper (used by locate_ranges +
autorip's done-card) into disc/mod.rs as a pub fn.
- Live located drilldown (sweep + patch progress snapshots) now excludes
NonTried, matching the one-shot path. Including the unread remainder made
main_at_risk_ms show ~full-movie at sweep start and melt to 0 as it
progressed — unread is unknown, not damage.
- Wedge abort now requires the failure to be FAST (< WEDGE_FASTFAIL_MS,
500ms) as well as wedge-family sense: a real uncorrectable sector on
Hardware-error media spends ECC-recovery time before failing, so it no
longer false-trips the fast-fail wedge abort. New regression test.
- Removed the always-zero blocks_attempted/read_ok/read_failed/
unreadable_count from PatchOutcome + PatchLoopState (dead residue from
the old grind loop; the HandlerScoreboard supersedes them) so the
patch.done log no longer emits misleading zeros.
yes now means the unlocker actually ran and did its job: LibreDrive from
the runtime firmware-unlock success, AACS host-cert only when LibreDrive
didn't do the bus (stock-drive fallback), CSS from the crack succeeding.
On a LibreDrive UHD that correctly reads LibreDrive: yes, AACS: no (LD
removed the bus, the cert route never ran) instead of the misleading
AACS: yes. Names stay registry-driven; runtime logic lives here.
Forcing FUA (Force Unit Access) on EVERY READ(10) bypassed the drive's
readahead/streaming cache on the bulk Pass-1 sweep, collapsing sequential
throughput ~10x (UHD 15-25 → ~2 MB/s, DVD → ~0.5 MB/s), disc-type-
agnostic — the cache IS the streaming throughput. This was the real speed
regression (not unlock/riplock, which the earlier chase suspected). Clear
byte-1 bit 0x08. FUA will return as a dedicated Pass-N recovery handler
that sets/clears it per marginal-sector re-read, where cache-masking of a
stochastic sector actually matters — never blanket on the bulk path (#55).
Returns each registered unlocker's name + whether it applies to this
drive+disc (via the unlock bridge over all_unlockers()). Disc crypto kind
derived in the library so the CLI and autorip render an identical, always-
current report with no hardcoded names. Also adds a Drive::unlocker_name()
runtime getter.
The v1.0.0-rc.1 unlocker refactor added an `if disc_is_dvd() { return }`
early-return in Drive::init() that skipped the whole drive-prep unlock for
DVDs. That firmware unlock is what lifts riplock and readies max read
speed — a DRIVE-level, disc-independent feature — so skipping it left
every DVD stuck at stock/riplock speed (~0.4x, 3h ETA). UHD was unaffected
because it flows through the unlock.
Remove the skip: init() now runs the identity-keyed drive unlocker for all
discs (disc kind is Unknown at init, so only the drive unlocker matches;
the AACS host-cert handshake and CSS bus-auth still run later, gated on the
real disc kind, on top of the unlocked drive). Speed stays where it
belongs — SET CD SPEED(0xFFFF) at pass-1 start (disc/mod.rs) — not in the
unlocker. Also drop the matching probe_disc DVD skip.
Reverts the SET STREAMING stopgap (separate freemkv-unlock revert): that
treated the symptom; the real bug was the skipped unlock. Drive features
come from the firmware unlock, not a stock speed CDB.
Handlers (section_recover.rs):
- Bisect expand loops now honor ctx.halted() (were deadline-only, so a
Stop could hang up to 60s vacuuming a readable island).
- read_span: explicit Transport arm so a bus-abort read isn't counted as
unproductive grinding; debug_assert the sector-aligned span invariant.
- Scoreboard rank: an attempted-but-zero-time handler (e.g. returned Halted
on its first check) now ranks BOTTOM, not top — it no longer crowds out
proven performers.
- Document the wedge tier-size coupling + new regression test that a
2-handler (tier-1) chain still catches a wedge via cross-section streak.
Pass-N engine (patch.rs):
- Rebuild PatchOutcome stats AFTER the post-read re-verify downgrade flush
(was snapshotting before it, over-reporting bytes_good / recovered and
risking a 'perfect rip' verdict on an imperfect one).
- Progress 'recovered' composes the still-bad set to MATCH work_total
(subtract NonTried, add Unreadable) so the bar can't pin at 0 on a
partially-swept disc or run backward on the Unreadable→NonTrimmed relabel.
- Remove dead work_done field; rewrite the stale 'adaptive batching' comment
to describe the handler chain and mark block_sectors/full_recovery as
informational-only.
Sweep (disc/mod.rs):
- Saturating arithmetic at the damage-jump position math (honor the
read_error side's documented defence-in-depth guarantee).
Deferred (noted, need focused passes): fast_capture re-introduction,
Pass-1 halt-misclassified-as-jump, bytes_good display inflation, the
always-zero blocks_* telemetry, Pass-1 jump-on-first-error policy.
DVD ran the drive at ~0.4x stock speed: init() early-returned for DVD
before any speed was set, and its only speed command was the sweep's lone
legacy SET CD SPEED, which this BU40N ignores for DVD. BD/UHD got up to
speed only via the firmware unlocker's calibration — a path a DVD can't
take (it breaks stock CSS).
Call the new unlock-crate drive-features capability at init() for ALL disc
kinds, before the DVD stock-mode early-return, via a bridge shim. Stock
MMC only (SET STREAMING + SET CD SPEED), no bus unlock, so CSS is
undisturbed.
The 2026-07-01 overnight rip ground a wedged BU40N for 28 minutes at
0 B/s. Root cause: the handler chain's read_span split errors only into
Transport (bus gone) vs Bad (everything else), so the drive's fast-fail
wedge sense (ILLEGAL REQUEST 0x05/0x24 — it rejects every CDB in <100ms
without attempting recovery) was treated as an ordinary bad sector. The
chain hopped to the next section forever, and the existing wedge detector
in read_error.rs never saw it because the chain reads through
recovery_read directly.
Add a pass-level wedge streak: read_span counts consecutive wedge-family
(Hardware/IllegalRequest) senses; at WEDGE_ABORT_STREAK (16) it escalates
the read to Transport, which every handler already propagates as
TransportFault — aborting the whole pass and setting wedged_exit so the
caller spin-cycles. The streak is carried across sections via PatchCtx
(seeded into and read back from each per-section HandlerCtx) so a wedge is
caught even when every bad sub-range is smaller than the streak. Any Good
or non-wedge (medium-error) read resets it, so scattered bad sectors on
real media never trip it. New fixture test: a wholly-wedged 1000-sector
section aborts in <100 reads, not 1000.
The expand loops broke out of the batch sweep on the first failing read,
overshooting the good/dead boundary by up to a batch and leaving the
readable sectors adjacent to a dead edge for the re-bisect to re-pin. On
top of that, early-yield counted those boundary-probe failures as a
stall, so the forward expand quit early AND the backward expand inherited
a poisoned unproductive counter and yielded instantly.
Now on a failed expand batch we halve the step (down to a single sector)
to recover right up to the dead edge in ~log2(batch) reads, drive the
expand loops off the deadline only (they self-terminate via halving), and
clear the unproductive streak once an island is located. patch_recovers_
good_middle_of_a_bad_range now recovers 50/50 good-middle sectors.
Scorecard: grade each handler by recovery rate (MB/s) per rip, order
best-first on later sections, log the ranking at pass end. Untried
handlers rank top so each is calibrated once before ranking narrows to
the winners. Ephemeral (reset per pass), no persistence.
Tier 0 scouts are now [Bisect, Jump, Linear-fast x2], scorecard-ordered.
Bisect leads: probing the MIDDLE of a range lands on a readable island in
one read where a linear scan grinds the dead front to reach it. Jump now
jumps to the middle of the REMAINING span (proportional) instead of a
fixed 8 MiB that leapt clean over small ranges and missed their readable
middles. Tier 1 is slow deep-recovery on the residue.
Scorecard (ephemeral, reset each pass, no persistence): grades every
handler by recovery rate (bytes/sec). run_handlers orders handlers
best-first by that rate; an untried handler ranks top so each is
calibrated once, then the ranking narrows to the winners. Logged at pass
end (phase=scorecard) so the operator sees which handler is pulling the
weight on this drive/disc and which is a dud.
Tier 0 scouts are now [Bisect, Jump, Linear-fast x2], scorecard-ordered.
Bisect leads because probing a range's MIDDLE lands on a readable island
in one read, where Jump (linear from the front, big skip) can grind the
dead front or overshoot a small range entirely. The scorecard confirms
or overturns that order with real per-disc data.
Each dead probe read costs the drive's full ~10s timeout, so a large dead
region took a dozen escalating probes. Starting the jump at 8 MiB (vs
1 MiB) clears it in a handful; a skipped span stays bad for Bisect to
reclaim readable islands, so an over-jump loses nothing.
Tier 0 is now a single fast Jump scout: it streams the big readable
ranges back and skips dead runs in seconds, so the pass reaches every
section fast and converges to the small genuine-dead residue instead of
grinding three handlers x 60s on each dead fragment. Tier 1 (fast
mop-up + slow deep reads + Bisect) works only that residue.
Bisect now expands: on a good probe it reads outward forward and
backward in full batches until a read fails, recovering the whole
readable island in large reads; the two failing ends become smaller bad
sub-ranges it bisects again. One huge bad range becomes many precisely
located small dead clusters.
Progress heartbeat: HandlerCtx gains a throttled tick (250ms) called
from every read, pushing a fresh snapshot to the reporter DURING a
handler. The bar and speed now move continuously as recovery happens
instead of jumping once per section (the reason speed read 0 B/s and the
% looked frozen between range boundaries).
Jump: on sustained batch failures skip ahead an escalating distance
(1 MiB doubling to 256 MiB) to find where readable data resumes, leaving
the skipped span for Bisect to pin — mirrors the Pass-1 damage-jump. It
leads the fast tier so a large dead run is skipped in seconds instead of
the linear sweeps grinding every dead batch (10 s each) first; on a
readable range it just streams it back. Recovers readable data buried
behind a big dead front (the 192 MB Dune range).
Progress %: report bytes RECOVERED (initial-bad minus still-pending)
instead of a per-range counter that only advanced on the final tier — so
the bar reflects the readable bulk recovered during tier 0 the instant it
lands, matching the 'MB remaining' number.
The per-range walk was depth-first: each bad range ran the full handler
chain (fast + slow deep-recovery + bisect) before the next range was
touched. So a handful of tiny dead fragments at one end of the disc
burned the whole pass and the big NonTrimmed ranges elsewhere — usually
sweep-jump over-marks that read straight back — were never attempted.
Now recovery runs in two breadth-first tiers over ALL sections:
- Tier 0 gives every section one fast full-batch attempt (fast reads
only), largest ranges first, so the recoverable bulk of the disc comes
back in the first minutes.
- Tier 1 deep-recovers only the residue tier 0 could not pull.
Per-section still-bad sets persist across tiers. Largest-first ordering
means a big readable region is reached before time is spent on tiny dead
fragments.
Linear no longer collapses a failed batch to count=1 single-sector reads
(live probing: a marginal sector recovers in a large read, not a lone
one) — a failed 32-batch stays 32 and is re-attempted at full size by the
next handler/pass; Bisect salvages readable islands.
Adds a handler-start trace line so the debug log shows which handler is
running and the hand-off to the next.
Pass-N recovery is now a chain of time-bounded recovery handlers instead
of one monolithic per-range loop that could grind the front of a bad
range for up to 30 min, wedge the drive, and abort the whole pass.
A bad range is a SubRanges set; recovery is an ordered list of
SectionHandlers (Linear{reverse,fast} covering back/forward x fast/slow,
and Bisect). A coordinator runs each handler with a hard per-handler
deadline: a handler recovers what it can (removing it from the still-bad
set) and hands the rest to the next handler; whatever is still bad after
the chain becomes NonTrimmed residue and we move on to the next range.
Guarantees, now structural rather than bolted-on:
- never hangs: every handler is deadline-bounded; the loop always drains
to recovered-or-residue.
- always moves on: a range that cannot be finished leaves residue and
advances; only a genuine transport fault or user halt ends the pass.
- extensible: a new recovery idea is one SectionHandler impl added to the
chain; a proven-ineffective one is removed. The engine never changes.
Removes ~1.9k lines of the old inner loop (watchdogs, skip escalation,
NOT_READY grind, wedge counters) and their tests. fast_capture is now
inert (the chain supersedes it); breadth-first ordering becomes a future
scheduler concern. New module: disc/section_recover.rs (8 fixture tests,
injectable clock — bounded/never-hang proven without touching a drive).
Two A/B tests updated to the chain's strictly-better recovery counts.
Every Drive::read now forces the read from physical media instead of
letting the drive satisfy it from cache. A recovery tool must not trust
the cache: on a re-read of a marginal sector the BU40N can return a
cached miss (~4 ms) instead of giving the surface a fresh physical
attempt (~40-250 ms), masking a sector that would otherwise read on a
real media hit. FUA (READ(10) byte 1 bit 3) is validated on the
BU40N/Initio bridge.
Spin the disc down (START=0, LOEJ=0) then back up (START=1) to clear the
BU40N/Initio fast-fail wedge state a run of HARDWARE_ERROR reads leaves the drive
in — the non-eject power-cycle our notes say the wedge needs. The disc stays
loaded; we never eject (slot-loading — a human eject is a product failure for an
unattended service). Validated live 2026-07-01: took the drive from
failing-every-read back to reading at MB/s.
A fast_capture pass defers every failed block to a granular pass anyway, so
spending the drive's 60s deep-recovery timeout on it here only freezes the
breadth-first sweep on a pure-bad cluster (~25s per 32-block, incl. NOT_READY
grind). Read with recovery=false in fast_capture so a bad block fails on the
short timeout (~10s) and the sweep steps on; the granular passes
(fast_capture=false) do the deep recovery on what's left. No recovery lost —
the block stays NonTrimmed for the granular retry.
A PatchOptions.fast_capture pass reads each bad range ONCE at the full batch and
leaves every FAILED block NonTrimmed for a later pass — no bisect, no per-sector
grind, no retry. This lets a first retry pass grab the readable blocks (the
sweep's good skip-ahead overshoot) of EVERY section quickly, before any single
section's slow per-sector recovery — instead of grinding section 1 to exhaustion
before even touching section 2. A later pass (fast_capture = false) does the
granular bisect/retry on what's left.
Load-bearing invariant (fixture test): NO data is dropped. A failed block becomes
NonTrimmed (pending, retried by a granular pass), NEVER Unreadable. The test pins
that the readable half of a range recovers, the bad half stays NonTrimmed (not
Unreadable), and the bad block is marked in ONE batch read with zero bisection.
Disc::copy's internal patch keeps fast_capture=false (single-call full recovery).
The library now offers a one-shot PassProgress snapshot built from a mapfile on
disk + title, so a client gets the fully-rendered drilldown without parsing the
mapfile itself — used for autorip's pass-boundary and mux-entry paints (no live
callback yet at those points). Adds a locate_ranges test covering in-feature vs
out-of-feature at-risk time (ported from autorip's removed from_map tests).
Add LocatedRange + LocatedProgress to the progress contract and a 'located'
field on PassProgress, populated by the sweep + patch emitters from the
in-memory bad-range set + title. Move the range->chapter/time annotation
(locate_ranges, range_chapter, byte_offset_in_title) into the library so a
client renders the disc map + at-risk movie time straight from PassProgress
and never reads the mapfile itself — if the mapfile becomes a mapdb, this type
and its producer change, clients don't.
PassProgress is no longer Copy (located carries a Vec); it's built once per
throttled emission and passed by reference. Non-locating phases (verify,
extract) emit LocatedProgress::default(). Adds consts::MILLIS_PER_SEC.
Consumer-side wiring (autorip drops Mapfile::load) follows.
Live drive probing (cold-single vs in-stream batch vs centered window,
one clean uncached read per sector) showed recovery RATE is identical
across approach: 3/5 every mode. The drive's per-sector ECC is
media-bound and partly stochastic, NOT approach-bound. So scatter
(seek-away recalibration + far-anchor re-read) does not improve recovery
and is dead weight — removed (function, read_good_sectors, SCATTER_*
consts, and its tests).
Add SubRanges: the still-bad (pos,len) sub-ranges of a section with
remove()/split, the work-list foundation for the upcoming per-section
recovery decomposition (recover_section -> stream/bisect/retry phase
helpers). Unit-tested; unused until the decomposition lands.
25 patch + 8 AB profile tests green; precommit clean on Rust 1.86.
Live probing on the BU40N/UHD testbed (rprobe/dprobe) settled the speed
question empirically: a marginal sector reads ~12x FASTER at MAX speed
than at slow, and slow NEVER recovered one MAX didn't. Cleanly-tested
(one uncached read per sector) the recovery RATE is identical across
speed/direction/window/batch — the drive's per-sector ECC is media-bound,
not approach-bound. The only host lever that matters is read SPEED.
So the old 'drop to 0x0000 on first failure and hold it for the whole
range' only slowed the GOOD sectors of a bad range — measured ~3x slower
overall. Now the range stays at MAX; the first failure just re-attempts
once (stochastic media) and falls through. Live A/B: 11 KB/s -> 33 KB/s,
bytes_lost unchanged.
Also: batch adaptation is now halve-on-failure / double-on-success
(geometric), so a bisected batch climbs back through clean runs from any
size (the old count==1-only upscale left it stuck at mid sizes). Removed
the dead consecutive_singles_ok counter and the inert batch-retry probe.
25 patch tests green; precommit clean on Rust 1.86.
Two patch-recovery speed fixes, grounded in live rip1 telemetry on the
Dune UHD bad regions.
1. Pull prime_cache. In the reverse walk it issued throwaway reads of
lba-3..lba-1 — i.e. straight into the not-yet-visited dead L-EC core —
grinding each ~7-9s at the fast timeout, then discarding the result.
The live trace showed a good target read (read_duration_ms=1) taking
9s wall-clock purely from the prime grind ahead of it. The dead-zone
skip (Tier 1) + scatter's recalibration read (read_good_sectors)
cover the cache-warm intent without grinding the dead zone, so prime
is redundant harm — removed (function + CACHE_PRIME_SECTORS + call).
2. Bisect on batch failure. handle_read_failure used to collapse a
failed count>1 batch straight to count=1 and single-walk the entire
batch. Now it halves (count/2) and retries the same start: a good
half recovers in BULK, the bad sector is isolated in O(log n) reads
instead of O(n). Invariant preserved — only a count==1 failure marks
NonTrimmed, so no good sector is lumped into a bad mark.
These are Tier 2 (bisect) of the progressive recovery model
(fast-mass-skip -> bisect -> scatter); composable so order can be tuned.
25 lib + 8 AB fixture tests green; precommit clean on Rust 1.86.
The 'reset, read good data, come back for one sector' technique. A
genuinely-damaged sector makes the drive grind its full recovery timeout
and still fail; re-reading consecutive bad LBAs at identical conditions
re-fails AND is the rapid-failure cadence that drops the BU40N into a
firmware fast-fail wedge (CLAUDE.md hard-rule #2).
scatter_recover: on a stuck single sector, make up to SCATTER_MAX_ATTEMPTS
fresh tries, each preceded by read_good_sectors() — a seek to a far
known-good anchor + a sustained read that re-seats the head/servo and
breaks the failure cadence. The fresh re-read uses the FAST timeout
(recovery=false) so a recalibrated marginal sector reads quick and a
truly-dead one fails fast instead of burning 60s per attempt. The seek +
good read IS the settle (matches ddrescue/MakeMKV) — no idle sleep.
Gated to genuine single-sector MEDIUM_ERROR (0x03): transport faults
still abort the pass, NOT_READY keeps its own retry path, wedge-family
senses are left for cooldown/eject. A scatter recovery is recorded
exactly like a normal read success (write-then-mark-Finished); nothing
marks a range good without a successful read + write.
Logs anchor_ms/reread_ms per attempt for live tuning. 5 fixture tests
(recover-marginal, give-up-dead, skip-non-medium, skip-batch, AACS
widen); 2 AB read-count guards raised for scatter's bounded extra reads.
Precommit green on Rust 1.86.
Pure structural refactor of the Pass-N recovery path, no behavior change.
- PatchCtx<R> holds the one-pass context (reader, pipe, shared, opts,
reused read buffer, cross-region state) and owns orchestration.
- PatchCtx::run() walks the ordered bad ranges, applies the inter-range
cooldown (armed on a grind, consumed at the next range's entry), and
stops the pass the moment a range reports halt/wedge/transport-fault.
- PatchCtx::patch_region() is the focused single-range loop: read ->
success/failure -> damage-skip -> per-range watchdog. Every former
break / break 'outer is now a typed RegionOutcome (Completed,
SkipLimit, BudgetExceeded, Wedged, Halted, TransportFault) that run()
maps back to next-range vs stop-pass exactly as before.
- recovery_read() extracts the AACS mid-unit-window widening + plain
read into one reusable helper (the building block the upcoming
scatter re-read will share).
- Logging unified onto a single dotted patch.* taxonomy (patch.region.*,
patch.read.*, patch.probe.*, patch.wedge.*, patch.batch.*,
patch.mapfile.*, patch.skip.*, patch.stall, patch.speed); the
freemkv::scan pass-boundary markers are left intact.
20/20 disc::patch tests green; precommit (fmt + clippy -D warnings +
tests) clean on Rust 1.86.
is_scsi_transport_failure recognized only the 0xFF SCSI sentinel, so the two
NON-SCSI dead-bus faults the Linux SG_IO transport returns — Error::IoError
(ioctl(SG_IO) == -1: ENODEV/EIO on an unplugged bridge) and Error::DeviceNotFound
(fd gone) — were classified as recoverable bad sectors. Every caller
(sweep read_error, patch, single-pass fill_extents) would then zero-fill /
skip-ahead across a wedged bus instead of aborting the pass and re-enumerating
the bridge — potentially zero-filling a huge span. Add both to the classifier so
a dead bus aborts the pass everywhere. (Companion to the unlock_bridge fix, which
maps the same two faults to 0xFF across the freemkv-unlock seam.)
Round-2 audit gap in the prior bridge fix: extract_scsi_context only recognizes
Error::ScsiError / DiscRead and collapses every other variant to (0, None). But
the Linux SG_IO transport returns genuine dead-bus faults as non-SCSI variants —
Error::IoError (ioctl(SG_IO) == -1: ENODEV/EIO on an unplugged bridge) and
Error::DeviceNotFound (fd gone) — which were crossing the seam as status 0x00, so
the unlock crate classified neither as a transport fault (needs 0xFF) nor as a
sense-bearing rejection, and kept hammering a dead bus.
Match the error variant in the adapter: a SCSI status (CHECK CONDITION or a
drive-tagged 0xFF) keeps its real status + sense; any other variant is a
non-SCSI transport/IO fault → SCSI_STATUS_TRANSPORT_FAILURE / None. Keying off
`sense.is_none()` would be wrong (a senseless CHECK CONDITION is a rejection).
Add bridge tests covering CHECK-CONDITION sense preservation, 0xFF passthrough,
and IoError/DeviceNotFound → 0xFF.
DiscStream (the live-drive single-pass path) enables AACS decrypt-loss
concealment (NULL-TS fill on an undecryptable unit) but, unlike the file-backed
PipelinedPesStream, had no B1 resync gate — so after a concealed gap it forwarded
inter-coded video frames referencing the now-missing data, producing
decode-broken MKV output (dangling-reference frames).
Mirror PipelinedPesStream: add per-stream ResyncGate + is_video, and route every
codec-frame emit on the TS path (in-stream parse, demuxer EOF flush, parser EOF
flush) through gate.admit(is_video, frame.discontinuity, frame.keyframe) so a
video track drops forward to the next keyframe after a concealment event. Warn
once if a gate is still armed at EOF (a concealed gap in the final GOP with no
trailing keyframe). Audio/subtitle always admit.
Audit fixes (v1.1.0..HEAD regressions in the unlock migration + adaptive patch
speed):
- unlock_bridge ScsiAdapter: libfreemkv's transport returns Err on ANY non-zero
SCSI status (a normal CHECK CONDITION), not only transport faults. The adapter
was collapsing every such Err to { status: 0xFF, sense: None }, which discarded
the parsed sense and defeated the AACS handshake's ILLEGAL_REQUEST wedge guard
(so it kept hammering the drive — hard-rule #2) and inverted its
transport-vs-rejection diagnosis. Now reconstruct status + the 32-byte sense
buffer (sense_key@2, asc@12, ascq@13) and only emit 0xFF/None for a genuine
transport fault.
- Drive::init: a genuine transport fault during the drive-prep unlock means the
bus is dead — propagate it (the v1.1.0 invariant) instead of silently
swallowing it via `if let Ok`. Other errors (no matching unlocker) still fall
through to stock mode. SET CD SPEED max now runs only when the bus is alive.
- disc::patch: on the first read failure in a range, drop to slow recovery speed
and RE-ATTEMPT the same position at slow speed before marking it. A
single-sector range's first failing sector was being marked from a MAX-speed
read it never got to recover.
- docs: lib.rs architecture diagram (handshake → host_certs) and README (stale
pluggable-unlock-seam / register-unlocker / crates.io / docs.rs references).
Two recovery-path fixes:
- patch: log the per-range speed transitions (INFO, phase="patch_speed") — each
range enters at 0xFFFF (max) and drops to 0x0000 (slow recovery) on its first
read failure. Previously the adaptive-speed behavior was invisible in the logs.
- drive init: issue the generic SET CD SPEED max UNCONDITIONALLY at drive-open,
not only when a firmware unlocker matched. A stock-mode BD/UHD drive (no
firmware unlock) was left riplocked because the call sat inside the
unlocker-matched branch.
libfreemkv now git-deps freemkv-unlock (which carries drive firmware and can
never be on crates.io), so libfreemkv itself can only be consumed by git tag.
The freemkv-unlock dep stays an interim path dep for local cross-repo dev; the
release script swaps it to a git tag in the tagged commit.
Rewire the three unlock dispatch points through the freemkv-unlock crate via a
private `unlock_bridge`: drive-prep (kind=Unknown) at `Drive::init`, AACS cert
(kind=Aacs) at `do_handshake_cert`, CSS bus-auth (kind=Css) at scan. The bridge
news up `all_unlockers()` and runs the first matching one, mapping its
`Unlocked` result to the bus-key gate. After a successful drive unlock,
libfreemkv issues a generic SET CD SPEED (max) itself — the old per-unlocker
trait method is gone.
Delete the in-tree unlock code now owned by freemkv-unlock: the AACS cert
handshake (`aacs/handshake.rs`), the CSS bus-auth (`css/auth.rs`), and the
unlock registry (`unlock.rs`). Host-cert collection (a keysource concern) stays
in a small `aacs/host_certs.rs`. No public unlock surface remains — clients
touch libfreemkv only, oblivious to unlockers (as they are to SCSI). 2277 tests
pass.
Add the freemkv-unlock dependency (path dep for local dev; re-pinned to a git
tag at release) and the consumption bridge: one generic ScsiAdapter mapping
libfreemkv's transport to the unlock contract, host-cert + DriveId mapping, and
run_unlockers() which news up all_unlockers() and runs the first matching one.
Additive — validates the dep resolves and the adapter compiles; the in-tree
registry/handshake/css path is still active and gets replaced in 4b.
Pull the wedge-guarded cert loop and host-cert collection out of the in-tree
AacsCertUnlocker into public aacs::handshake primitives (run_cert_handshake +
CertHandshake, collect_host_certs). The in-tree path now delegates to them, so
the external freemkv-unlock-aacs plugin runs the IDENTICAL cert handshake — one
implementation, two callers. Pure refactor of the live AACS path; the existing
handshake + collect_host_certs unit tests validate it unchanged.
Replace route_unlock's Option<(name, Vid)> with a structured UnlockRoute
{ Unlocked(name, Unlocked) | Failed(UnlockError) | NoMatch } so a single
dispatch serves every caller: drive-prep wants "did anything unlock", and the
AACS cert route (next) needs the FAILURE REASON to render "missing keys" vs
"host cert rejected" instead of collapsing it to a bare None. Only a genuine
SCSI transport fault still returns Err (abort). UnlockCtx gains an optional
ScanOptions (the cert route's host-cert source), and read_mkb_from_drive now
takes &mut dyn ScsiTransport — both prerequisites for the cert handshake to
become an external freemkv-unlock-aacs unlocker. Drive-prep + CSS callers fold
the new outcome; no behavior change.
Extend Unlocked with drive_unlocked + read_data_key_err so the registry result
carries everything the downstream bus-key gate needs — a firmware unlocker sets
drive_unlocked=true (bus encryption removed at the drive, no bus key), the cert
route will set read_data_key (+ read_data_key_err on a failed bus-key read).
route_unlock now returns the full Unlocked rather than just a Vid, so a single
dispatch can fold the firmware, cert, and CSS results uniformly. Prep for the
AACS cert handshake becoming a registry unlocker.
Convert the CSS read-unlock into a first-class registry Unlocker (CssUnlocker)
dispatched through route_unlock like every other barrier removal, instead of
a direct call in scan. libfreemkv appends the built-in CSS unlocker (and, next,
the AACS cert handshake) exactly once via ensure_builtins(), AFTER any
client-registered firmware unlocker — so the registry order is firmware → cert
→ css, owned by the lib, not the client.
Defense in depth: the unlocker does NOT trust the caller-declared DiscKind.
matches() filters on the declared kind (Css), but unlock() self-verifies
against the drive's GET CONFIGURATION profile and refuses (UnlockError::
NotApplicable, a new shared "this unlocker doesn't apply" variant) WITHOUT
issuing a single CSS CDB if the drive reports a non-DVD profile — so a
mis-routed Blu-ray is never sent CSS bus-auth. Guard the firmware unlocker the
same structural way (it matches only the drive-prep phase, kind == Unknown).
Tests: CssUnlocker matches only DiscKind::Css; a BD-profile drive yields
NotApplicable with zero CSS CDBs issued.
Reshape the Unlocker seam so every unlocker is dispatched at ONE place from
ONE ordered registry — the firmware, cert, and CSS routes are all "remove the
bus-encryption barrier", differing only in what they key off. matches() and
unlock() now take an UnlockCtx { drive_id, kind: DiscKind } instead of a bare
DriveId: a firmware unlocker keys off drive_id (kind irrelevant), the cert
unlocker will match DiscKind::Aacs, the CSS unlocker DiscKind::Css. UnlockCtx
is #[non_exhaustive] so a host-cert source can be added without breaking
external unlockers. Drive-prep dispatch passes DiscKind::Unknown (no disc
probed yet); the cert/CSS registry impls + the single post-probe dispatch
point follow in subsequent commits.
Thread &mut dyn ScsiTransport through unlock_css_reads and its bus-auth /
disc-key primitives instead of &mut Drive — they only ever issued SCSI via
drive.scsi_mut(), so this is mechanical and lossless, and it makes the CSS
unlock speak the same transport interface as the registry Unlocker trait
(prerequisite for CSS becoming a uniform unlocker).
Also clean up the badly-named, half-dead bus_auth:
- rename bus_auth -> establish_authenticated_session: it is run for its
side effect (sets the drive's ASF=1, unlocking scrambled-sector reads),
which the name now states.
- drop the derived CSS bus key from the return + computation: it had no
consumer (descrambling is keyless via the Stevenson attack), so it was
dead crypto computed on every DVD unlock. Return just the negotiated AGID,
which the caller genuinely needs for the best-effort disc-key REPORT KEY.
The AACS cert-auth primitives (aacs_authenticate, the AACS 2.0 P-256
variants, read_volume_id, read_data_keys) and their scsi_read/scsi_write
helpers touched the drive ONLY through Drive::scsi_execute — a pure
pass-through to the transport. Thread &mut dyn ScsiTransport instead of
&mut Drive so these primitives are transport-level, matching the firmware
Unlocker seam (which hands out &mut dyn ScsiTransport for testability).
Pure mechanical signature change, no logic change; the cert orchestrator
(do_handshake_cert) keeps &mut Drive for the OEM-VID shortcut and passes
session.scsi_mut() into the primitives. Step toward making the cert
handshake a uniform registry unlocker.
Generalize the unlock seam toward uniform unlockers (firmware / cert / CSS).
`unlock` now reports what it LEARNED — a Volume ID and/or an AACS bus key —
instead of just a Vid; libfreemkv files those onto the disc/drive in one
place, so a plugin never touches Disc. The hardware side-effect (extended
mode) still happens inside unlock. route_unlock walks the registry in
registration order (the single ordered place that decides run order); no
priority field. Firmware route reports {vid: Some, read_data_key: None}.
The bus-key gate only credited the cert handshake's read_data_key as proof
bus encryption was removed. A firmware unlocker removes it AT THE DRIVE
(serves clear content) and yields no read_data_key — so a SUCCESSFUL
firmware unlock (VID present, read_data_key None) tripped the gate and
blocked ALL key resolution, including the online source. That was the
root cause of live UHD discs reporting "missing keys" after an unlock.
Now a single predicate answers "is bus encryption gone?": never-had-it ||
file/ISO || firmware-unlocked || cert-bus-key. The gate is just
`if !bus_encryption_removed { error }` — no enumerated cases. HandshakeResult
gains `drive_unlocked`, and the read_data_key failure reason is captured so
the warn says WHY the bus key is missing.
Also: reword the first hardware-sense escalation as "fast-fail escalation"
(it is often transient — the drive recovers), reserving "wedge" for a
persistent run; and scrub the product name from core comments (it belongs
only in the unlocker crate).
When a bus-encrypted disc's handshake yields no read_data_key, the gate
logged a bare "bus_key_unavailable" with no indication of WHY — turning
every occurrence into archaeology (is the bus key not-attempted, or did
the read fail?).
Now:
- read_data_keys failure is captured (error code) instead of swallowed by
`.ok()`, and logged at the handshake with its consequence.
- HandshakeResult carries `read_data_key_err: Option<u16>` so the gate
distinguishes "never attempted" (None — VID-only/OEM path) from "read
FAILED" (a code), and the bus_key_unavailable warn now reports the code
plus whether a Volume ID was present.
No behavior change — purely diagnostic. The handshake_ok debug also now
reports has_volume_id.
Two defensive hardenings from the post-fix audit (vs FFmpeg/GStreamer):
1. Move the `pes.discontinuity` partial-drop ABOVE the empty-data guard in
all three audio parsers (ac3/dts/truehd), so a discontinuity signal can
never be stranded by an empty post-gap PES. The demuxer only emits
non-empty PES today; this is defense-in-depth for any future caller.
2. A PES with no PTS must not reset the timeline to 0. ac3 now carries
`flush_pts_ns`, dts continues from the most recent known base; truehd
already kept its running cadence on a None PTS. Matches OSS behavior
(PTS rebases off the next PES that actually carries a PTS).
Adds an ac3 regression test (empty-payload discontinuity PES still drops
the stranded partial). Loss accounting was reviewed: TS-demux CC-gaps are
NOT counted toward lost_video_secs / abort (that is sector-based via
DiscStream::errors / mapfile bytes_unreadable), so a source splice never
inflates loss — no gating needed there.
The AC-3, DTS and TrueHD parsers buffer access units across PES
boundaries. At a concealed-loss gap the buffered unit is truncated:
splicing post-gap bytes onto it manufactures a corrupt frame on top of
the real loss (FFmpeg "Failed to decode block code(s)" / "Invalid data
found" at the gap) and, for TrueHD, strands the PTS cadence into the
non-monotonic audio-DTS band seen on multi-clip titles.
The video parsers already handle this via the ResyncGate, but the
discontinuity signal was only wired into video — audio parsers ignored
pes.discontinuity and spliced across the gap.
Now, when pes.discontinuity is set, each audio parser drops the partial
(clears buf, and for DTS its PTS marks / pending base) so the post-gap
PES re-bases a fresh unit. A lost gap degrades to a clean single-frame
drop instead of a corrupt spliced frame. No effect on perfect rips: the
branch only runs when concealment inserted a discontinuity marker.
Adds a per-parser test feeding a partial frame then a discontinuity PES,
asserting the truncated partial is dropped (not spliced) and the post-gap
PTS is adopted.
Pass N (patch) pinned the slow recovery speed (0x0000) for the whole pass.
But Pass 1's damage-jump overshoots, so most of a jumped range is clean data
the reverse-walk reads first — grinding it at slow speed wastes minutes per
gap. Now each range mirrors Pass 1's model:
- Enter at max speed (0xFFFF) + reset to the initial batch (current_batch
carries across ranges, so a prior single-sector grind would otherwise start
the next range slow). Reads the clean overshoot fast.
- First read failure in the range → drop to 0x0000 (once; idempotent SET CD
SPEED) for the rest of that range — grind only the genuine damage.
- 10 s halt-responsive cooldown between ranges, gated on "this range actually
grinded" so a many-small-range pass (100+ ranges) doesn't stall ~20 min on
unconditional pauses.
No change to good/bad classification, the mapfile, or the abort math — purely
read speed + an inter-range cooldown. Synthetic speed-transition test to follow.
Non-blocking follow-ups from the 1.2.0 audit:
- conceal loop: if decrypt reported loss but the padding-aware predicate
matched nothing to conceal (a ~256^-31 contradiction), fall back to the
strict predicate and conceal whatever it flags, loudly — belt-and-
suspenders so ciphertext can never reach the mux.
- decrypt_dropped doc: reflect 1.2.0 (mux-path loss is concealed + tallied,
not silently dropped).
- direct unit test for aacs_unit_still_ciphertext (the padding-aware
conceal predicate): clear/all-zero/full-decrypted/full-ciphertext/
decrypted-short-tail.
- fix three stale "v1.1.1" comment refs (the fragment-tail fix ships in
1.2.0; there is no v1.1.1 release).
Closes the three residual holes where a concealed/lost gap could still let
a dangling-reference frame reach the muxer (degraded/undecryptable-disc
path only; clean rips are byte-identical and untouched). Root cause: the
discontinuity signal was reconstructed from the 4-bit continuity counter
and applied per-PES, both of which are lossy.
Three coordinated changes:
1. CC-INDEPENDENT marker. fill_null_ts_unit now tags its NULL packets with
an adaptation-field discontinuity_indicator; the demuxer recognises a
0x1FFF packet carrying it as a concealed gap and forces a discontinuity
on every tracked PID (the lost unit's PID is unknowable). This survives
a loss that is an exact multiple of 16 packets (CC aliases to in-sequence
— hole 3) and a loss at a PID's very start (no prior CC — hole 4); it
also drops any open, potentially-truncated partial PES.
2. PUSI ATTRIBUTION. A gap landing on a PES boundary now flags the PES
STARTING after it, not the one flushed at the boundary (hole 1) —
stamping the pre-gap frame could arm-then-disarm the gate on a keyframe
and admit the real post-gap inter frame.
3. PER-FRAME signal. codec::Frame gains `discontinuity`; each parser
propagates it onto the first post-gap frame. MPEG-2 buffers whole GOPs
asynchronously, so it associates the gap by ES OFFSET (like PTS/source),
landing it on the exact post-gap picture mid-GOP (hole 2) — a per-PES
flag stamped the previous picture. consume_ts (and the EOF flush drain)
gate on frame.discontinuity.
Tests: CC-independent marker with in-sequence CC + leading-loss; PUSI
attribution flags the post-gap PES; MPEG-2 offset-mark stamps the post-gap
picture through GOP reorder, not the previous one. Existing B1 gate + EOF
tests still green (2270 lib tests).
Per the release decision: ship the AACS-version-stride API changes under
the 1.2.0 minor bump, with an explicit Breaking section (DiscInputs new
field, DiscInputsCtx::new arity, read_aacs_inputs* 3-tuple return).
The P3 concealment loop in DecryptingSectorSource::read_sectors keyed on
aacs_unit_needs_decrypt, whose sync check is the majority-vote
ts_sync_destroyed (<=16 of 32 syncs). A successfully padding-aware-
decrypted content-fragment TAIL unit (e.g. 11 content packets + 21 zero
padding) has only 11 syncs, so the majority vote called it "still
encrypted" — and when such a good unit shared a read buffer with a
genuinely-undecryptable one (dropped>0), the loop overwrote the GOOD
decrypted tail with NULL-TS, silently discarding correct video and
over-counting concealed units vs the tallied dropped bytes.
Add aacs_unit_still_ciphertext (padding-aware): encrypted AND at least
one non-zero (non-padding) 192-byte packet missing its 0x47 sync — the
same discriminator decrypt_unit uses to accept a fragment tail. The
conceal loop now uses it, so only genuinely-unrestored ciphertext is
concealed. Full and fully-ciphertext units are unchanged. Regression
test: a decrypted short-padding-tail co-resident with a failed unit is
left byte-for-byte intact while the failed unit is concealed.
Pairs with A2 (read-path NULL-TS concealment). When the demux assembler
sees a TS continuity gap it now stamps `discontinuity` on the next
completed PES; the codec-parse stage carries that onto a per-track
ResyncGate. After a gap on an inter-coded video track the gate drops
forward to the next IRAP/IDR keyframe so no frame with a dangling
reference reaches the muxer (an ffmpeg deep scan would otherwise report
a missing-reference / non-existing-PPS error). Audio and subtitle tracks
have no cross-frame references, so the gate is a no-op there.
- ts.rs: PesPacket gains `discontinuity`; PesAssembler tracks a sticky
pending_discontinuity flag set on CC gap / discontinuity_indicator and
carried to the next completed/flushed PES.
- resync.rs (new): ResyncGate — per-track arm-on-gap, drop non-keyframes
until the next keyframe disarms and resumes. Logs the resync + drop
count once at the keyframe.
- pipelined_stream.rs: precompute per-track is_video, apply the gate in
consume_ts. Out-of-range track index emits as-is (defensive).
Tests: ResyncGate unit tests; ts.rs gap-stamps-discontinuity; end-to-end
B1 video-drops-to-keyframe and audio-never-drops through PipelinedPesStream.
Decrypt-verify is a RIP gate, not a MUX gate. On the mux read path an
undecryptable content unit must never abort the mux:
- DecryptingSectorSource gains tolerate_decrypt_loss(): when set, an
undecryptable in-content unit is tallied, overwritten with valid NULL
TS packets (PID 0x1FFF) via aacs::fill_null_ts_unit, logged loud with
its LBA, and the read returns Ok — the stream keeps flowing. The rip
paths keep the fail-loud DECRYPT_VERIFY_READ decorator (re-read off the
disc); only the mux opts in.
- Wire it into both mux read paths: the file-backed highway
(build_iso_pipeline) and the inline DiscStream.
- NULL-TS fill keeps the demuxer byte-synced on the 192-byte stride; the
lost video/audio PID packets surface as a CC gap the TS assembler
already drops a partial PES on (the B1 foundation). Ciphertext is never
passed downstream either way.
- Fix stale resolve_vid_only no-cert test: default is UHD (audit #4).
Tests: conceal-as-NULL-TS, fill well-formedness, fail-loud still holds.
- One workspace hex parser (libfreemkv::hex): the keydb / online / mapfile
parsers had divergent prefix handling (0x vs 0X vs none) — a key written with
a prefix one parser didn't expect was silently dropped. All three now call it.
- read_encrypted_units probes several points spread across each extent instead
of only the midpoint-forward window, so a late-starting / sparse encrypted
body still yields samples (empty samples make decrypt_with skip wrong-key
validation). A read error at one probe no longer abandons the extent.
- read_aacs_inputs* now returns the AACS major version; DiscInputs carries it,
and DiscInputsCtx parses Unit_Key_RO.inf at the disc's own stride (fixes the
hardcoded-V20 read-time fetch for V10 discs). One source of truth, no version
argument to drift.
- Disc::inputs() is the single complete AACS-input source (inf/MKB/VID/hash/
version); the out-of-band duplicate readers go away.
- Named constants for AACS file paths (aacs::PATH_*) and the AACS majors
(aacs::AACS_MAJOR_*, AacsVersion::major/from_major) replace magic strings/ints.
- push_ranges saturating (corrupt-disc panic guard).
- decrypt_unit: padding-aware acceptance — recover real video at content-
fragment tails (the phantom mux-loss class) without weakening wrong-key
rejection (a full content unit still needs all 32 TS syncs).
- scan: read the MKB via the bounded read_mkb_content so Disc::inputs()
carries it. Online key resolution was shipping mkb=0 (a full read of the
~128 MiB MKB_RO allocation fails) → the decode service 404'd.
- resolve_vid_only: surface an MKB read error instead of silently emptying.
- fetch: a per-sample dry-set replaces the global fetch_spent latch, so a
second CPS unit's key can still be fetched after the first came back empty.
- verify::push_ranges: saturating arithmetic (corrupt-disc panic guard).
- Tests for all of the above.
ContainerKind {Ts,Ps} + ClipLayout.container thread the post-decrypt structural check per clip; decryptability() dispatches it (TS: unit_is_clean_ts, PS: unit_is_clean_ps). New decrypt_unit_checked(unit,key,accept) decouples the container-agnostic AACS crypto from the format-specific acceptance (decrypt_unit delegates with the TS check). unit_is_clean_ps is the MPEG-2 PS pack-start check, documented UNVALIDATED for HD-DVD (.evo unit/seed/pack alignment must be confirmed on real media). clip_layouts assigns Ts today; .evo->Ps is the one-line HD-DVD hook.
reverify_iso now takes an is_finished predicate and SKIPS any unit with a non-Finished backing sector: we can't verify what wasn't read (a non-Finished sector is zero-filled because the drive read failed there), and must never waste a key lookup on a block the read already knows is bad. observe() (sweep) was already safe (only fed Good bytes).
Post-read verify gate (new src/disc/verify.rs): UnitVerifier buffers/aligns the disc-absolute read stream into clip-file 6144-byte units, then makes one decryptability() decision per unit (CPI gate -> held keys -> key_fetch -> strict TS). POST_READ_VERIFY const kill-switch; fail-safe contract (only ever downgrades units it is confident are undecryptable; every doubt skips). Hooked into Disc::sweep (producer observes ciphertext -> WorkItem::MarkBad after the Good, FIFO-ordered) and Disc::patch (post-loop reverify_iso reads recovered units whole from the patched ISO). extract::clip_layouts enumerates AACS clips for the gate.
Standards-correct AACS verify: aacs::unit_is_clean_ts is a strict port of libaacs _verify_ts (all 32 TS syncs, not a majority vote); decrypt_unit accepts a key only on it; the majority verify_ts is removed. Deleted the Disc::verify_clips post-pass bolt-on (its primitive is absorbed by the read-path gate).
libaacs/DVD audit fixes: content-cert bus_encryption flag now read from bit 7 (was bit 0 - defeated the bus-key fail-loud gate); cc_id read from offset 14; title_cps_unit range-validated + 1->0 index-converted per libaacs. Corrected attack_crib ("functionally-equivalent" not "exact" port) and read_disc_key (READ DVD STRUCTURE 0xAD, not REPORT KEY) doc comments.
Also includes accumulated uncommitted work: key-fetch seam and TrueHD/DTS audio fix.
Use 'Semantics / reference' as the last-column header across all spec
tables, and break enum/option/note cells onto separate lines with <br>
for readability. Formatting only; no semantic changes.
The CLI --version, the MKV muxing/writing-application field, and the FVI generator
all derive from one libfreemkv const, so a binary reports the exact same label it
stamps into the files it produces — no split-brain where an MKV claims one version
and the binary another.
Reformat all three JSON code blocks (section 8 ext example, Appendix A
Header schema, Appendix A Record schema) with consistent 2-space
indentation and valid syntax. No field or semantic changes.
build.rs emits FREEMKV_VERSION = FREEMKV_BUILD_LABEL when that env is set
(non-empty), else the Cargo package version. The muxing/writing-application
field and the FVI generator tag use it, so a pre-release/test build can be
stamped without bumping Cargo.toml and disturbing the tag-pinned [patch]
version matching. The git short hash is still appended either way.
TrueHD: when the PES PTS lags the access-unit cadence, resync to the PTS
but never snap the running timestamp backward, so the emitted DTS stays
monotonic across the resync (next_pts_ns = max(next_pts_ns, pts)).
DTS-HD MA: size each EXSS extension substream exactly from its header
(exss_frame_size) and skip it as a unit, so a false 0x7FFE8001 core sync
inside the lossless extension payload can no longer split the access unit
and truncate the extension. Falls back to a bounded scan when the header
is unparseable.
Provenance: build.rs bakes the git short hash into GIT_SUFFIX; the muxing/
writing-application field and the FVI generator tag now record the exact
build (e.g. "freemkv 1.1.0-beta.1 (g835cc99)"), so any output file is
traceable to the revision that produced it.
keydb I/O moves out of libfreemkv into freemkv-keysources
(KeydbSource::save / ::update). Delete src/keydb.rs entirely (save,
http_get, default_path, write_atomic, UpdateResult) and drop `pub mod
keydb;` — http_get had no real callers. The shared Keydb* Error variants
stay in error.rs (keysources raises them; the every-error-has-a-code
contract depends on them). flate2 is no longer used here, so drop it
from Cargo.toml (zip stays for labels/jar.rs).
CHANGELOG: note the keydb-I/O move; reword the rc.5.2
DefaultDecodedFieldDuration entry to state only the action taken (the
revert) rather than an unverified Windows-fps outcome.
Surgical fixes (each with a regression test that fails without the change):
mux/mkv.rs, mux/demux_sink.rs: drive the clip-boundary timeline epoch
off the resolved PRIMARY VIDEO track, not the literal stream index 0.
An M2TS/PMT title can list an audio ES before video, so streams[0] may
be audio; a non-video epoch driver ratchets the frontier and inflates
the timeline. mkv cluster-opening falls back to track 0 for audio-only
titles so they still open clusters.
mux/codec/ac3.rs: correct ACMOD_CHANNELS — acmod=5 (3/1) is 4 channels,
not 3 (was undercounting a 3/1 stream); fix the A/52 Table 5.8 doc.
disc/mod.rs: HDMV coding_type 0x91 (Interactive Graphics / menus) no
longer maps to PGS subtitle — it falls through to Unknown so the PMT/STN
walker drops it instead of surfacing a bogus subtitle track.
mux/videomap.rs + mux/mkv.rs: FVI colour now mirrors the MKV muxer's CICP
precedence (measured CICP authoritative; HDR-driven PQ/HLG transfer
override) via a shared cicp_for_video helper, so the two sinks can't
disagree (HDR10 BT.2020 no longer emits SDR transfer 14).
mux/mkvstream.rs: saturating_add on cluster_ts + rel_ts so an adversarial
CLUSTER_TIMESTAMP near i64::MAX can't overflow/panic before the existing
saturating_mul.
mux/timeline.rs: tighten the tail-straggler clamp so a normal new-epoch
non-video frame leading the sparse video frontier by >3s is not demoted
into the previous clip's epoch.
mux/m2ts_mux/mod.rs: re-stamp PCR per video TS packet (mid-PES), not only
at PES boundaries, so a large UHD I-frame can't open a multi-second PCR
gap; modular 33-bit PTS rebasing so a real 90 kHz clock wrap is not
collapsed to PTS 0 (pre-base frames still floor to 0).
io/byte_prefetcher.rs, sector/prefetched.rs: wrap the producer feed loop
in catch_unwind and emit a typed error sentinel on panic, so a mid-stream
producer panic is not read as a clean EOF at the demux boundary (which
would silently truncate the mux).
mux/codec/h264.rs: extend HIGH_PROFILES to the full ISO/IEC 14496-15 set
that mandates the avcC chroma/bit-depth extension (adds 244 et al.).
Doc/comment accuracy: css/mod.rs (50000 sectors, not scrambled-sectors),
aacs/decrypt.rs (decrypt_unit already-clear path), ifo.rs (TT_SRPT at
0xC4), css/lfsr.rs (LFSR0 24-bit; TAB1-then-XOR cipher; real scramble-flag
predicate), disc/read_error.rs (for_sweep does bounded transient retries).
Skipped: keydb.rs SSRF guard (low/latent, no live caller) — a hard
loopback block breaks an existing behavioral test that exercises the
header-EOF path over a loopback server; a clean fix needs a resolver test
seam beyond this surgical pass. The sibling keydb_fetch.rs comment fix is
out of scope (freemkv crate).
Parse the two HDR10 HEVC SEI messages and emit the corresponding
Matroska Colour metadata, only when actually present in the bitstream
(SDR / no-SEI tracks omit it; nothing is fabricated).
Parse (Rec. ITU-T H.265 Annex D):
- Mastering Display Colour Volume SEI, payloadType 137 (D.2.28):
display_primaries_x/y[3] (SEI order G,B,R), white_point_x/y
(0.00002 units), max/min_display_mastering_luminance (0.0001 cd/m²).
- Content Light Level Info SEI, payloadType 144 (D.2.35):
MaxCLL / MaxFALL (cd/m² integers).
HevcParser::scan_sei walks the sei_rbsp ff-extension payloadType/
payloadSize coding and de-emulates (00 00 03) before reading, reusing
the existing strip_emulation_prevention helper. Both SEI are required
before any metadata is surfaced; SEI NALs still pass through unchanged.
Carry: the measured Hdr10Metadata rides PictureInfo (the same per-coded-
picture seam FieldOrder uses), flowing through from_codec_frame onto
PesFrame.coding to the deferred-muxer activate path, where
apply_coding_to_track stamps it on the video track before the header is
written. Set only when both SEI were seen.
Emit (RFC 9559 / Matroska): new Colour children in ebml.rs
(MasteringMetadata 0x55D0, Primary R/G/B + WhitePoint chromaticity
0x55D1..0x55D8, Luminance max/min 0x55D9/0x55DA, MaxCLL 0x55BC,
MaxFALL 0x55BD). write_hdr10 converts chromaticity SEI int × 0.00002 →
Matroska float, luminance SEI int × 0.0001 → cd/m² float; MaxCLL/MaxFALL
are uints verbatim. SEI primary index 0/1/2 (G/B/R) mapped to the
Matroska R/G/B element layout. Emitted only when hdr10 is present.
Tests: SEI parse with exact raw values, requires-both-SEI, SDR omission,
and emulation-prevention stripping (hevc.rs); muxer emit with exact unit
scaling + SDR omission of MasteringMetadata/MaxCLL/MaxFALL (mkv.rs);
apply_coding_to_track HDR10 plumbing (mkvstream.rs).
Owner-flagged invariant: freemkv -t 1 ALWAYS selects the main feature because the
CLI's title 1 maps to titles[0] and the list is ordered by canonical_title_order
(main feature first). Adds a DVD-shaped contract pin asserting titles[0] is the
movie after sorting (a regression there is a title-ordering bug, not a remux issue),
complementing the existing branching-UHD / normal-disc order tests.
Also clears two pre-existing test-only clippy nits surfaced under --all-targets:
unused `lba` in ClearStubReader::read_sectors, and an unneeded `mut` on the
h264 population test's closure.
mux/mkv: assert emitted CODEC_PRIVATE bytes verbatim for H.264/HEVC/VC-1/
MPEG-2 (direct TrackEntry child, not nested in Video) and DefaultDuration ns
for all eight frame rates, read back out of a real MkvMuxer.
disc/sweep: end-to-end Disc::sweep against a synthetic MockReader with an
injected bad region, asserting the resulting mapfile marks the clean lead
Finished and the failed batch + zero-filled skip-ahead gap NonTrimmed,
proving the Pass-1 damage-jump engaged.
disc/patch: introduce a minimal clock seam (fn() -> Instant on the internal
PatchLoopState, defaulting to Instant::now) so the per-range and whole-pass
watchdogs are deterministically testable; public API and callers unchanged,
production behavior identical. Add tests that advance a fake clock to trip the
range budget and whole-pass stall predicate.
aacs: add an AES-128-CBC known-answer test for aes_cbc_decrypt using the
published NIST SP 800-38A F.2.2 vector (blocks 1..3 exact; block 0 via the
documented fixed-AACS-IV substitution).
Port + adapt the freemkv native per-picture video index (FVI) from the
old feat/fvi-sink branch onto rc6's codec-agnostic PictureInfo model.
This is a surgical adaptation, not a merge.
Adaptations (fvi_sink.rs, videomap.rs, tests/fvi_pipeline.rs):
- Retarget from the removed crate::mux::codec::mpeg2::PictureInfo (raw
public fields) to rc6's authoritative crate::mux::codec::PictureInfo
in codec/coding.rs, via its accessors.
- type from coding_type() -> CodingType{I,P,B}; emitted for ANY frame
that carries coding (every video codec now fills it), with the
keyframe-flag I/P fallback only when coding is absent.
- Replace the mpeg2-only tff/rff/progressive members with codec-agnostic
members derived through the accessors: field_order (tff/bff/progressive)
and progressive, emitted ONLY when the codec measured the signal
(Option::Some) and omitted otherwise; plus nb_fields.
- Test fixtures rebuilt via PictureInfo::mpeg2(CodingType, Mpeg2Coding{..})
/ coding_type_only(..); added measured_cicp: None to VideoStream
literals for rc6's struct.
Honesty decision (key / random-access):
- The codec-agnostic PictureInfo carries NO GOP-closure (no closed_gop /
gop_start), so key is set from the frame's intra / decode-restart flag
(frame.keyframe == coding.keyframe() for video), NOT a fabricated
clean-RAP claim. The old gop member is honestly omitted. FVI_FORMAT.md
is updated to document this as a limitation: key is an intra picture /
parser-flagged decode-restart point; MPEG-2 open-GOP clean-RAP precision
(closed_gop) is not currently distinguished. §7.1 rewritten for the
new field_order/progressive/nb_fields members.
Wiring:
- mux/mod.rs: pub(crate) mod fvi_sink; pub(crate) mod videomap
(#[allow(dead_code)] on videomap — the VideoMap accumulator is staged
for side-channel reuse, sink builds records directly); pub use
fvi_sink::FviSink.
- mux/resolve.rs: add the fvi:// output scheme to StreamUrl, parse_url,
scheme(), path_str(), input() (write-only reject) and output()
(constructs FviSink), mirroring the mkv:///demux:// patterns.
Provenance fix surfaced by the end-to-end test:
- pipelined_stream::consume_ps was dropping the PS demuxer's byte-exact
source stamp (source: None) when rebuilding PesPacket, so PS/DVD-path
frames reached the mux/index with no provenance (FVI src null). Carry
ps.source through, matching the TS path; the real-pipeline fvi test now
sees the stamped src sectors.
Gate: cargo +1.86 fmt + clippy --lib -D warnings clean; cargo +1.86 test
--lib (2182 passed) and --test fvi_pipeline (2 passed); precommit.sh
libfreemkv green.
Honest PictureInfo population for VC-1 — completes the set (MPEG-2, H.264, HEVC,
VC-1 all populate now).
- Read the advanced-profile sequence header INTERLACE flag (SMPTE 421M §6.1.1,
bit 41), de-escaping emulation-prevention bytes as parse_vc1_resolution does.
- For a PROGRESSIVE sequence, decode the picture-layer PTYPE VLC (0=P, 10=B,
110=I, 1110=BI→I, 1111=Skipped→P) from the first bits after the frame start
code. For INTERLACED (FCM/FPTYPE precede PTYPE) or simple/main/unknown, decline
→ coding stays None: honestly absent, never read at a wrong bit offset.
- Set coding = coding_type_only(...) and source = pes.source; field order is not
decoded, so field_order() is honestly None.
- Reuses the shared startcode::BitReader (no new primitive).
- Tests: progressive I/P/B from real PTYPE VLCs + source carry + field-order
absence; interlaced honest-decline.
Honest PictureInfo population for HEVC, on the same principle as H.264.
- Consolidate the bit reader: hevc.rs had its own BitReader (used by the SPS
parser); h264 just gained one in startcode. Promote startcode's to the single
shared pub(crate) reader (adds read_bits) and delete hevc's copy — one proven
primitive, reused (SPS parse + both slice-type decoders).
- hevc: decode slice_type from the first coded slice's slice_segment_header
(H.265 §7.3.6.1) → I/P/B (§7.4.7.1). The offset to slice_type depends on
num_extra_slice_header_bits, which lives in the PPS — so we parse it from the
ACTIVE PPS (§7.3.2.3) and only measure slice_type when that PPS is known.
With no active PPS we decline rather than guess: coding stays None, honestly
absent. Set coding = coding_type_only(...) and source = pes.source; field
order (pic_struct SEI) is not decoded, so field_order() is honestly None.
- Tests: I/P/B from real slice headers, source carry, field-order absence, and
the no-PPS honest-omission case.
Honest PictureInfo population for H.264 — the foundation that lets the video
index claim a frame's type and be believed (a faked "P" on a B-frame would make
the index confidently wrong).
- startcode: shared minimal MSB-first BitReader with Exp-Golomb ue(v), reused by
H.264 (and next HEVC). Documents the emulation-prevention caveat: only the
leading slice-header fields are read, where 00 00 03 cannot intervene.
- h264: decode first_mb_in_slice + slice_type (H.264 §7.3.3) from the first
coded slice and map to I/P/B (§7.4.3 Table 7-6; SP→P, SI→I). Set
coding = PictureInfo::coding_type_only(...) and source = pes.source. Field
order is NOT decoded here, so field_order() stays None — honestly absent,
never guessed.
- Tests: I/P/B from real ue-encoded slice headers, source carry, field-order
absence; BitReader Exp-Golomb table + truncation.
Carry per-picture truth and byte-exact source provenance THROUGH the stream so
the muxer (and the upcoming video index) read MEASURED facts instead of
assuming them. Honest data in, honest data out.
- codec/coding.rs: codec-agnostic PictureInfo (CodingType / FieldOrder + the
accessors field_order/coding_type/nb_fields/progressive/keyframe). Each codec
folds its raw signals in; consumers use only accessors, never branch on codec.
- mpeg2: builds PictureInfo from the picture coding extension and carries it +
SourcePos (source_marks, parallel to pts_marks) on every emitted frame.
- pes / codec::Frame: additive `coding` + `source`, forwarded through the
highway; None for audio/subtitle and the network/stdio deserialize hop.
- mkvstream: DEFER muxer construction until the first coded picture, set the
video track's FieldOrder from the MEASURED value, THEN write the header —
right the first time, no guess, no seek-back. An interlaced track that arrives
with no measured order is LOGGED loudly and left UNDETERMINED, never faked.
- mkv: MkvTrack::video no longer guesses TFF (a bitstream property the scan
cannot know is UNDETERMINED at build). Removed VideoStream::top_field_first
(the dead scan-time guess) crate-wide.
- Tests: parser population (every PictureInfo facet + per-PES source carry) and
mux-stream consumption (measured -> correct; missing -> UNDETERMINED, not
faked). Two obsolete tests updated only after confirming (their own comments)
they existed to enforce the deleted hardcoded-TFF.
- FieldOrder now derives from the bitstream's measured top_field_first
(Some(true)→TFF, Some(false)→BFF) instead of hardcoding TFF for all
interlaced content; falls back to TFF when unmeasured. Adds
VideoStream::top_field_first; DVD/BD scan sets None with a precise
TODO(spec) for parser→title plumbing.
- CICP (matrix/transfer/primaries/range) now prefers measured CICP from
the bitstream (VideoStream::measured_cicp) over the coarse ColorSpace
enum, so the container stops assuming a colour space the stream may
contradict. Enum remains the fallback.
- VobSub S_VOBSUB CodecPrivate now emits a `size: WxH` line ahead of the
palette per the .idx format so players place/scale subs correctly.
- SeekHead: when zero cues are written, the CUES Seek entry is Voided
instead of leaving a dangling pointer to the Cues offset (now Tags/EOF).
- AC-3 Channels back-patch offset is captured from the writer instead of
the hardcoded chan_elem_pos+2 (decoupled from the VINT width choice).
- Hoisted inline CICP codes and the dvcC fourcc to named constants citing
ITU-T H.273 / RFC 9559; fixed the stale FieldOrder comment.
- DefaultDuration vs pulldown: precise TODO(spec) left (needs the same
parser→title channel as top_field_first).
Tests: BFF-from-measured-flag, measured-CICP-overrides-enum, VobSub size:
line present/omitted, zero-cue SeekHead Void. precommit (1.86) green.
Delete re-implementations in the demux:// sink and wire to proven helpers;
keep only genuinely-new functionality.
- AnnexB reframing: delete the sink's local length_prefixed_to_annexb (it
break'd on a zero-length NAL, dropping the rest of the access unit) and
call the canonical append_length_prefixed_as_annex_b in mux::hevc, which
skips just the empty NAL.
- HEVC param sets: delete hvcc_param_sets; reuse hvcc_to_annex_b.
- avcC param sets: hoist as the new canonical avcc_to_annex_b in mux::hevc,
next to hvcc_to_annex_b (the symmetry point); the sink calls it.
- PGS .sup: emit a synthetic clear display set (empty PCS + END) at
pts + duration_ns so subtitles time out instead of lingering to EOF.
- TimelineContinuity: move verbatim into the shared mux::timeline module
(with the prev_offset straggler-remap intact) and use it from both the
MKV muxer and the demux sink; delete the sink's drifted TimelineRebase
copy (which lacked the straggler branch).
- VobSub .idx: emit the conventional 'id: <lang2>, index: 0' line mkvmerge
reads to assign the subtitle language; palette reuse unchanged.
- output(): seed DemuxOptions.base from title.playlist when non-empty.
New constants for the PGS clear-segment framing and avcC header cite the
public HDMV PGS (BD-ROM Part 3) and ISO/IEC 14496-15 specs.
Tests: a zero-length NAL mid-frame no longer truncates the AU; a frame with
duration_ns produces a .sup clear segment; existing demux tests stay green.
The DVD seek-index concern is that the mux highway
(PsDemuxer -> PipelinedPesStream codec parse -> frame out -> muxer)
might drop the keyframe flag or per-frame duration that Mpeg2Parser sets
on each Frame, which would stop the muxer's cluster/cue open
(keyframe && track 0) from ever firing and leave a DVD MKV with many
clusters and zero cues.
Add dvd_highway_preserves_video_keyframe_and_duration: drives a real
Mpeg2Parser through PipelinedPesStream via DemuxBatch::Ps batches (one
PTS-stamped MPEG-2 PS video PES per GOP, decode-order I + P/B), reads the
frames back through the highway's read(), and asserts the GOP-opening
I-frames arrive as keyframes, every frame keeps its duration (BlockGroup
path), and video routes to track 0. Guards from_codec_frame's
keyframe/duration propagation across the demux-thread + recycled-buffer
highway, which the prior cue tests (codec parser straight into the muxer)
did not exercise.
Verified against the real current-VFR-build output
(Greenland-feature.mkv, today): 3365 clusters / 3365 CuePoints, all
BlockGroups, cues resolve to clusters and track the video — the highway
preserves the flags and the seek index is complete.
The existing cue tests (cue_count_equals_cluster_count,
cue_positions_resolve_to_clusters, cue_times_match_cluster_timestamps)
all feed frames with duration_ns=None, so they exercise only the
SimpleBlock write path (UHD/HEVC). DVD MPEG-2 video is now VFR: every
coded picture carries a per-frame duration_ns=Some(..), so it is written
as a BlockGroup, not a SimpleBlock. That cue path was untested.
Add cue_count_equals_cluster_count_blockgroup_vfr, which drives the real
Mpeg2Parser end-to-end (decode-order frames, non-monotonic B-frame
display PTS, telecine field durations) into the muxer and asserts the
output is wholly BlockGroup (no SimpleBlock) and that the Cues index has
exactly one cue per cluster, with every cue resolving to a real cluster.
Guards the DVD seek index (scrub/fast-forward) against regressing to the
chapter-seek-only, zero-cue state.
New write-only pes::Stream sink that taps the per-track PesFrame stream
(the seam right before MKV muxing) and writes each track to its own
elementary-stream file, plus chapters and per-audio-track delay metadata.
Purely additive — the MKV mux path is untouched.
- mux/demux_sink.rs: DemuxSink + EsWriter dispatch. Pass-through for
codecs whose Frame.data is already standalone ES (MPEG-2, VC-1, AC3/
E-AC3, DTS/DTS-HD, TrueHD, LPCM). Non-trivial writers:
- AnnexBWriter: reframes hvcC/avcC 4-byte-length-prefixed NALs to
Annex-B and prepends VPS/SPS/PPS parsed out of the codec_private
configuration record (HEVC .hevc / H.264 .h264).
- PgsSupWriter: rebuilds the HDMV 'PG' segment framing the parser
strips, with 90kHz PTS/DTS (.sup).
- VobSubWriter: writes raw SPUs to .sub and synthesizes the .idx
sidecar (palette + per-SPU timestamp/filepos).
- Delay-in-filename (mkvmerge-readable 'DELAY <n>ms') + chapter XML/OGM
export. TimelineRebase ports the MKV muxer's seamless-branch epoch
logic so per-track ES timestamps stay continuous across clip joins.
- mux/resolve.rs: StreamUrl::Demux variant + scheme/path_str/parse_url/
input(write-only)/output arms.
- mux/mod.rs: module + public type re-exports.
16 unit tests: Annex-B reframing, hvcC/avcC param extraction, delay
sign/rounding + mkvmerge-regex match, PGS .sup framing, VobSub .idx
synthesis, chapter XML/OGM, timeline rebase, and end-to-end file-keying
by track + track selection.
A genuinely-clear or uncrackable extra title (a tiny menu/nav stub) no
longer poisons a multi-title rip with a false CssKeyMissing (E7023).
- decrypt_keys_for_title_checked: re-crack a non-overlapping VTS via
crack_key_outcome and report title_is_clear when the title's own
extents show no scrambling. A genuinely-clear stub on an otherwise-CSS
disc needs no key.
- ensure_title_decryptable: pass a clear stub without a key; a scrambled-
but-uncrackable title still hard-fails with CssKeyMissing.
- is_scrambled_pack: hardened scramble-evidence gate for the crack scan —
requires the MPEG-PS pack-start signature before trusting the 0x14
scramble bits, so a clear stub with stray 0x14 bits can't flip
saw_scrambled. The descramble loop keeps the looser is_scrambled.
- mux/resolve: ISO per-title gate routes through the clear-aware check.
Add PassProgress::bytes_retryable_total (NonTrimmed/NonScraped — failed
and awaiting retry), distinct from bytes_pending_total which also folds
in not-yet-attempted (NonTried) bytes. Set it at every construction site
(Sweep from the snapshot, Patch from stats, 0 for sequential/placeholder
paths). The disc-level 'lost' display in the CLI can now use
unreadable+retryable instead of unreadable+pending, so a healthy
in-progress rip no longer reports its unread remainder as lost.
Disc::copy gated its entire mapfile-resume dispatch behind
`if opts.multipass`, so a plain (non-multipass) `disc:// iso://`
copy always called sweep_internal(resume=false) — wiping the
mapfile + ISO and re-sweeping from sector 0. The CLI help and
rip_iso examples promise "auto-resumes if interrupted", and the
sweep already flushes a crash-safe mapfile per block, so the only
missing piece was consulting it on re-run.
Lift the mapfile-resume dispatch out of the multipass guard:
clean->no-op, size-mismatch->fresh sweep, NonTried tail->resume
sweep now apply to both modes. The patch (Pass N) dispatch on
retryable bytes stays multipass-only; a plain copy with a
fully-attempted mapfile returns a terminal result instead of
restarting. autorip (always multipass=true) is unchanged.
Add a regression test that an interrupted plain copy resumes the
NonTried tail and does NOT re-read the Finished prefix.
Targeted tests for the rc.6 surfaces, strengthening (not duplicating) the
regression tests the rc.6 commits already shipped. No production code changes.
aacs/keys.rs — resolve_keys_with_reason / classify_resolve_failure:
The E7021/E7022 split is already proven end-to-end through the
ensure_decryptable gate (disc/mod.rs). These pin the classifier directly at
the keys.rs seam for the branches the gate test does not reach:
- processing-keys-only + zero VID -> VidUnavailable (the gate test only
exercises the device-keys arm of has_derivation_material).
- VID PRESENT + material -> NoMaterial: a non-zero VID must never be
reported as VidUnavailable however much material is on hand (the has_vid
short-circuit; the gate test only uses the zero-VID sentinel).
- VID present + no material -> NoMaterial.
- version dispatch: version 1 routes the V10 resolver (stamps V10), any
other value routes the V20->V21 chain; a resolved disc returns Ok, never
Err(ResolveFailure).
unlock.rs — Unlocker seam introspection + ordering:
- matching_name reports the first matching unlocker without running it, and
is None for an unsupported drive; registered_count grows after a
registration (monotonic check — the registry is process-wide and shared
across the unlock tests, so no exact-delta assertion).
- route_unlock first-registered-match-wins: two unlockers matching the same
identity, the earlier-registered one runs and the later is never consulted.
The dir:// extractor set the AACS unit-alignment base ONCE to the first
extent's start, then read every extent against that single base. For a
multi-extent (fragmented / Long-AD / continuation-ICB) file the second
and later extents start at arbitrary LBAs whose offset from the first
extent is generally not a multiple of 3 sectors, so the first read of
each later extent failed the decrypt-on-read gate
(is_unit_aligned(lba, unit_base)), returned DecryptFailed, and recorded
the whole extent as a zero-filled hole even though the data was readable.
Re-anchor the unit base PER extent (matching mux/disc.rs and
sector/prefetched.rs), so each clip's encrypted region gates on its own
unit grid. Same bug class as the rc.5.2 clip-anchor fix.
Also harden the extract + keydb write paths:
- finalize_file: fsync the .partial after set_len (the truncation runs
on a second handle the content fsync never touched) and fsync the
parent dir after rename so the new dirent is crash-durable.
- keydb write_atomic: fsync the parent dir after rename (POSIX dirent
durability), matching the finalize_file pattern.
- AACS tail batch: document that decrypt_sectors' trailing-partial
contract already handles the short final unit; no math change.
- decrypt-loss delta loads use Acquire (defensive happens-before if
file extraction is ever parallelised).
- is_windows_reserved: add CONIN$/CONOUT$/CLOCK$; reserved names are
now substituted (prefix _) instead of aborting the whole tree walk, so
a legal Linux-authored NUL.cfg extracts.
- http_get header cap: >= MAX_HEADER_BYTES (was > , one byte over).
Regression tests: multi-extent AACS file (Δ4-sector extents) extracts
both extents with zero loss; focused per-extent alignment-arithmetic
test; reserved-name substitution assertions.
When key resolution had derivation material (device or processing keys)
but no Volume ID was available to derive the unit key, surface
Error::AacsVidUnavailable instead of the generic NoDiscKey. When there
was no usable key material at all, keep NoDiscKey.
resolve_keys_classical / resolve_keys_v21 still return a bare
Option<ResolvedKeys> (all existing callers unchanged); a new
resolve_keys_with_reason wrapper threads the typed ResolveFailure
(VidUnavailable | NoMaterial) out. decrypt_with uses it; the
ensure_decryptable_keys gate maps a captured AacsVidUnavailable reason to
E7021, otherwise E7022. No decryption math, key derivation, or descramble
logic changed -- only the reason reported on a resolution failure.
Adds ensure_decryptable_aacs_vid_unavailable_vs_no_key proving both
branches (device-keys + zero VID -> E7021; no keys -> E7022).
Rewrite the AACS scan/VID trace lines so a reader understands them without
opening the source: name the real thing (AACS host certificate, Volume ID,
decryption key), say "key source" not "keydb", and describe what happened.
The VID flow is unchanged (unlocker OEM VID → cert handshake → continue); a
missing VID is logged, never fatal. All strings are in tracing macros (the
sanctioned debug-log channel) — no English added to any Error.
default_path() now resolves <dir of current exe>/keydb.cfg with no OS-config
fallback — freemkv is a portable standalone binary, so the keydb lives next to
it. --keydb still overrides.
Sibling of Disc::copy specialized to write per-file instead of a whole ISO
image, decrypting on the way out: walk the UDF tree, read each file's extents
through the shared DecryptingSectorSource (AACS unit-aligned, CSS per-VTS),
strip AACS/, sanitize host paths per component, .partial+rename, 1-shot with
per-file loss accounting (no mapfile; recovery stays the iso:// multipass
path). Reuses UdfFs + the decrypt seam; only the per-file orchestration is new.
Adds Disc::ensure_decryptable / ensure_decryptable_keys, the single decrypt
gate consulted before any copy or mux. When the source is encrypted and no
key resolved (and not --raw), abort with a typed error and write nothing,
instead of silently emitting ciphertext at exit 0. Unifies the prior ad-hoc
CSS/AACS checks.
Three Silence-of-the-Lambs (R2 PAL SD-DVD) follow-ups for rc.5.2.
SUB-TASK 1 — Windows Explorer showed 12.5 fps (half) for the 576i25 track.
Root cause: the DefaultDecodedFieldDuration (20 ms field) element rc.5.1
added to "fix" Windows fps did the opposite. With FlagInterlaced=1 +
DefaultDuration=40 ms + DefaultDecodedFieldDuration=20 ms, Explorer halved
to 12.5 fps and MediaInfo flipped to VFR. MakeMKV's correct rip omits the
field-duration element, keeps FlagInterlaced=1 + FieldOrder=TFF +
full-frame DefaultDuration (40 ms), and Explorer shows 25 fps / MediaInfo
CFR. Fix: MkvTrack::video now passes field_duration_ns == 0 so the element
is no longer written; the 1/DefaultDuration = 25 fps signal (the only one
tools trust) is the full-frame value. Interlace signalling (FlagInterlaced,
FieldOrder=TFF) is retained — MediaInfo reads scan type from the MPEG-2 ES
picture coding extension, so it still reports Interlaced / Top Field First.
Tests pin the new TrackEntry elements (element present/absent + values).
SUB-TASK 2 — opening "menu"/still-frame video. Traced the MPEG-2
opening-GOP path; the wrong/last seq header and PTS-floor-to-0 hypotheses
are RULED OUT with file:line evidence: codecPrivate is the FIRST sequence
header (read once at headers-ready, mkvstream.rs:115 + pipelined_stream.rs:289),
DVD VOBU structure guarantees each title opens on seq header + I-frame (no
mid-GOP open), the parser back-anchors leading still-frames to the disc's
real timeline (mpeg2.rs:296-303), and the muxer anchors base on the opening
keyframe's real PTS so the t=0 floor (mkv.rs:963) never corrupts it.
Regression tests pin all three (parser + muxer level).
SUB-TASK 3 — make --log-level 3 self-sufficient (diag.rs + minimal hooks).
(a) dump the ACTUAL MKV TrackEntry elements written per track
(tag=mkv.track: FlagInterlaced, FieldOrder, DefaultDuration, field duration,
Display dims, codecPrivate hex) so Windows-fps-class metadata is verifiable
from a log alone. (b) capture the first ~100 coded frames per track (raw)
to <output>.opening.bin with a per-frame summary line (tag=mkv.opening.frame:
track, key/delta, size, PTS) so opening-GOP/menu issues are diagnosable from
a future log without the disc. Both gated to log-level 3; normal runs open
no side file and record nothing.
CI gate (Rust 1.86): fmt --check, clippy -D warnings, and test --tests all
green.
The DVD AC-3 sub-stream probe recorded the FIRST decodable frame of each
physical 0x8x sub-stream as its channel count. A DVD feature opens with
logos/warnings whose audio is often a thin 2.0 bed on 0x80 before the
real 5.1 main mix begins a fraction of a second later. The probe locked
onto that opening 2.0 frame and reported 0x80=2, missing the 5.1
entirely (confirmed on Greenland: 0x80's head frames are acmod=2, then
acmod=7+lfe). With no 6-channel sub-stream found, channel-match routing
fell back to the ordinal map — harmless on Greenland, but on a disc where
the 5.1 lives on a non-ordinal sub-stream the wrong-substream bug stays
unfixed.
Fix: scan EVERY 0x0B77 frame of each sub-stream in the probe window and
keep the MAXIMUM channel count (the sub-stream's real main-mix
capability), advancing frame-by-frame via ac3_frame_size so a frame body
can't be mistaken for a new sync. Also bump PROBE_SECTORS 512->1024: the
1 MiB head window saw ONLY 0x80; 2 MiB reliably contains a frame of every
physical sub-stream.
Greenland tag=dvd.substream: before 0x80=2 (only); after 0x80=6, 0x81=2,
0x82=2 — matching the IFO and the decoded output.
Adds probe_reads_max_channels_no_cross_contamination regression test.
1. HEVC CRA->BLA false-trigger on 33-bit PTS wraparound
(src/mux/codec/hevc.rs): the clip-boundary auto-detect compared the
RAW 33-bit PES PTS against the high-water mark, so a single-clip title
crossing 2^33->0 (~26.5h) false-armed pending_clip_boundary and rewrote
a legitimate in-clip CRA(21)->BLA_W_LP(16), dropping valid RASL pictures
(visible corruption) and breaking the single-clip byte-identical
guarantee. Now unwrap the PTS onto a monotonic 64-bit timeline first
(a near-full-period backstep is a wrap: add 2^33, update the watermark,
do not arm). Regression test cra_after_33bit_pts_wrap_not_rewritten;
the genuine-clip-join test still passes.
2. Single-pass recovery read bypassed the transport-failure abort
(src/mux/disc.rs): the line-442 short-circuit only inspected the 10s
read res. A transport failure (status 0xFF, wedged USB bridge) on the
60s recovery read fell into the skip_errors branch and zero-filled/
advanced, marching the disc at one bridge-recovery per probe
(run-forever, hard rule #2). Re-check the recovery error for
is_scsi_transport_failure() before the skip block and abort with
Error::DiscRead. Test transport_failure_on_recovery_read_aborts_even_with_skip_errors.
3. Recovery-read SUCCESS branch had no coverage (src/mux/disc.rs tests):
added RecoverableReader (errors when recovery=false, succeeds when
recovery=true) and test recovery_read_success_muxes_recovered_data_no_skip
driving fill_extents to the size-1 bottom-out and asserting the recovered
data is muxed (counters advance, no skip).
4. TrueHD channel-correction probe omitted set_unit_base
(src/disc/mod.rs correct_truehd_channels): the probe read via a
DecryptingSectorSource without anchoring the AACS unit-alignment gate,
so it degraded to absolute start_lba % 3 and returned DecryptFailed on a
non-3-aligned extent, silently understating Atmos/7.1 as 5.1. Now call
set_unit_base(ext.start_lba) before the probe read (no-op for CSS/None).
5. is_unit_aligned lba<unit_base latent trap (src/aacs/decrypt.rs):
wrapping_sub mis-gated when lba < unit_base (2^32 == 1 mod 3). Switched
to saturating_sub (clamps offset to 0, a unit boundary) and pinned the
contract with is_unit_aligned_lba_below_base_is_well_defined plus
is_unit_aligned_relative_to_base.
cargo +1.86 fmt --check / clippy -D warnings / test --tests all green.
Fixes the "Silence of the Lambs" R2 PAL wrong-substream rip: the feature's
IFO declares one 5.1 AC-3 stream, but the scan assigned it the on-wire
sub-stream id 0x80 purely by per-codec ordinal (ifo::assign_audio_sub_stream_ids).
On this disc the physical 0x80 carries the 2.0 down-mix and the 5.1 main mix
lives at a different 0x8x sub-stream, so the rip muxed 2.0 while labelling it
"Dolby Digital 5.1" (the acmod fixup in mkv.rs then corrected only the Channels
element, surfacing the mismatch as the "IFO claimed 6 but acmod says 2" warning
— too late to re-route).
New src/disc/dvd_audio_probe.rs probes each physical AC-3 sub-stream's real
channel count from the head of the feature (the acmod/lfeon of its first frame
after the 0x0B77 sync) and re-routes each IFO-declared AC-3 stream onto the
physical sub-stream whose actual channel count matches the declared count,
instead of trusting the ordinal. Wired into both mux demux paths
(DiscStream::new and resolve::build_iso_pipeline) over the decrypting reader,
so it works on CSS discs and the autorip ISO-remux path alike. Bounded
512-sector best-effort read; an empty/unreadable probe degrades to the original
ordinal mapping (no regression on normal discs).
The cell selection is left unchanged: the feature's cell 0 (cat=0x02, 302.4s)
is chapter 1 of the movie (matches MakeMKV's chapter map and 1h53 duration
exactly), so it must NOT be dropped — the perceived "wrong video at the start"
was the wrong 2.0 audio over the opening, the same root cause.
Diagnostics (--log-level 3): new tag=dvd.substream rows dump the ACTUAL acmod
channel count of each physical 0x8x sub-stream read from the VOB, and the
per-cell tag=dvd.cell verdict now spells out the keep/skip reason. With the
existing tag=dvd.aattr (IFO declared sub_id + channels) a bug log alone now
shows whether the ordinal 0x80 really carries the declared layout — no disc
needed to diagnose this class.
expose ac3::find_ac3_sync as pub(crate) for the probe.
The "TopGun bug" (Top Gun 1986 UHD, DV Profile 7 dual-layer): the auditor
flags the rip `corrupt` with a flood of HEVC "Could not find ref with POC N"
decode errors (POC 114/210/228/234/240/246/252/318/336/354/372/399 — one
cluster per clip join).
Root cause: the title is multiple .m2ts clips joined at non-seamless
boundaries (mpls connection_condition 0x05/0x06), read as one concatenated
stream. Each next clip opens with a CRA whose RASL leading pictures reference
pre-join frames gone after concatenation. hevc.rs already has the spec remedy
(rewrite splice CRA_NUT 21 → BLA_W_LP 16 so a decoder sets NoRaslOutput and
drops the dangling RASL), behind mark_clip_boundary() — but nothing ever
called it: connection_condition is not plumbed through the threaded mux
pipeline, so the whole CRA→BLA mechanism was dead code.
Fix: detect the boundary inside the parser from the bitstream. Each clip
carries its own PES PTS base, so a non-seamless join is a large backward
PTS reset. HevcParser::parse now tracks a PTS high-water mark and, on a
backward step beyond 3 s (270000 ticks @ 90 kHz — mirroring the mux-side
DISCONTINUITY_BACKSTEP_NS), arms the existing CRA→BLA rewrite for the new
clip's first IRAP. Self-contained: works for every mux path, no cross-thread
plumbing. The 3 s threshold sits above any HEVC B-frame reorder dip and far
below any clip duration, so it never false-triggers in-clip; single-clip /
seamless titles never arm it and stay byte-identical.
Adds regression test cra_at_auto_detected_pts_backstep_rewritten_to_bla
(in-clip dip must not trigger; splice CRA after a backward reset must become
BLA; one-shot). hevc suite 55/55, mux suite 780/780.
Implements the rc.5.2 quick-units list from the DVD coverage audit and
corrects the "passes-but-encodes-the-bug" tests that could not
distinguish correct from wrong behaviour.
New tests (each with the bug it guards):
mux/mkv.rs
- field_duration_is_direct_trackentry_child_not_in_video: depth-aware
check that DefaultDecodedFieldDuration (and DefaultDuration) are direct
TrackEntry children, NOT nested in the Video master. Replaces the flat
find_id byte-scan that passed either way. Adds master_children /
first_track_entry depth-walking helpers.
- pal_576i_emits_bt470bg_colour_codes / ntsc_480i_emits_smpte170m_colour_codes:
assert the actual CICP tuples written into the MKV Colour master —
PAL (5,5,5,1) vs NTSC (6,6,6,1) — not just stream-layer ColorSpace.
- ntsc_480i_field_order_is_tff_and_encoded: pins NTSC 480i hardcoded TFF
and its ~33.37ms/16.68ms frame/field durations, asserting the encoded
FlagInterlaced/FieldOrder bytes (480i was never exercised before).
ifo.rs
- video_attr_absolute_bytes_pin_real_layout: drives parse_video_attr with
HARDCODED real DVD-Video bytes (PAL/NTSC x 4:3/16:9, plus mpeg_version
in bits 7-6) instead of v_atr_byte, so a co-edit of the shift constants
can't re-seed the PAL-as-NTSC bug. Anchors that permitted_df bits (1-0)
are not read as the TV system.
disc/dvd.rs
- scan_dvd_titles_lpcm_routes_to_a0_pid_range: LPCM (coding 4) → sub-id
0xA0 → PID 0xBDA0, disjoint from the AC-3 0xBD8x space, channels kept.
- scan_dvd_titles_multiple_vobsub_tracks_distinct_pids: three VobSub
tracks → distinct 0x20+ordinal PIDs, per-language, shared palette.
css/mod.rs
- crack_outcome_reaches_cracked_with_span: drives the full crack scan to
CrackOutcome::Cracked via a Stevenson-crackable synthetic sector and
asserts crack_span recording (the Cracked branch was never exercised).
- recrack_succeeds_on_other_vts_extents: per-VTS re-crack SUCCESS path.
- all_locked_synthetic_iso_yields_css_key_missing_signal: all-locked
multi-extent ISO → ScrambledUncracked, the signal the scan converts to
css_error = Some(CssKeyMissing).
Corrected fixtures (passes-but-encodes-the-bug):
- scan_dvd_titles_mixed_audio_codecs_distinct_pids: real channel nibbles
(AC-3 5.1 = 6ch, DTS 2.0 = 2ch) replacing the 1ch placeholders; asserts
channel counts and exact canonical PIDs (0xBD80 / 0xBD88).
- ebml.rs FieldOrder comment: drop the stale "PAL DVD (576i) is
bottom-field-first" line that contradicted the TFF-for-all code.
The AACS unit-alignment gate measured `lba % 3` against absolute disc LBA 0,
but aligned units are anchored at each clip's encrypted-region start. A clip
whose start_lba is not 3-aligned had its readable units wrongly rejected with
"Decryption failed" (the big-title-only failure on some Blu-rays). One
canonical clip-anchored helper (`aacs::is_unit_aligned`) is now the single
source of truth for the decrypt-on-read gate; both mux read paths set the
per-extent `unit_base = start_lba` via a new `SectorSource::set_unit_base`.
Also moves key *mechanism* into the library: the encrypted sample reader
(`read_encrypted_units`) and the candidate-key resolution loop
(`resolve_and_apply`) now live here, so a key source is purely a lookup.
Regression test covers a clip based at a non-3-aligned LBA.
Single-pass disc->MKV has no Pass N, so its read bottom-out now issues one
bounded recovery read (recovery=true, ~60s ECC) before skipping or aborting,
matching the multipass patch. Fixes a transient/marginal sector surfaced as a
read failure direct-to-MKV while multipass recovered it. One read, not a loop
(hard rule #2); recovered data is used so no bogus-status hole reopens.
- CSS: unlock scrambled-sector reads on enforcing drives via bus-auth
only; classify sense 6F/03 as CSS-locked; early-bail on a fully locked
scan; gate the AACS handshake off DVD discs.
- DVD first-play menu no longer prepended to the feature: read the title
VOBS base from vtstt_vobs (0xC4), not the menu VOBS vtsm_vobs (0xC0).
- Interlaced field-duration (DefaultDecodedFieldDuration) written as a
direct TrackEntry child rather than inside Video, so Windows reports
the correct frame rate.
- Audio channel count read from the AC-3 bitstream; FieldOrder set to
TFF; per-track BPS tags.
- Structured disc diagnostics at --log-level 3; reduced per-operation
log spam.
Interlacing is detected upstream (PAL DVD -> R576i) but was dropped in
two places: the video label hardcoded a 'p' suffix, and the muxer never
wrote any scan-type flag, so MediaInfo inferred progressive and reported
576p for a 576i source.
- Add Resolution::is_interlaced() for the R*i variants.
- generate_video_label now branches i/p for the heights that can be
interlaced (1080, 576, 480) instead of always emitting 'p'.
- MkvTrack carries interlaced + field_order; the video serializer emits
FlagInterlaced (0x9A; 1=interlaced, 2=progressive) and, for interlaced
content, FieldOrder (0x9D) - bottom-field-first for PAL 576i,
top-field-first otherwise. Adds the EBML constants.
The VTS_AST_ATR byte 1 stores (channels - 1) in the low 3 bits, but we
were reading the high nibble. A normal 2.0 AC-3 track has 0x1 in the low
nibble and 0x0 in the high nibble, so we computed 0+1=1 and mislabeled
every stereo track as mono in the muxed Channels element.
Read the low 3 bits instead, and correct the two audio_attr tests that
had encoded (channels - 1) in the high nibble to match the buggy reader.
Drop rx and recycle_tx (now Option fields) before joining the producer
thread in BytePrefetcher::Drop. Without this, a non-EOF source fills the
depth-2 forward channel then spins in send_timeout(POLL_INTERVAL) forever
because rx is never drained; join() deadlocks. Adds a regression test
(drop_endless_prefetcher_joins_cleanly) that directly exercises the path.
When a keyframe AU carried an unchanged seq_header (stripped) but a
redefined entry_point (appended), the old append-then-reassert path
produced [entry_point, seq_header] — entry_point before seq_header,
violating SMPTE 421M which requires seq+entry before every RAP.
Replace the single shared prefix Vec + reassert_active() with per-type
temporaries (redefined_seq / redefined_ep) collected during the scan,
then assembled in canonical seq-then-entry order at keyframe time.
Non-keyframes still emit only genuine redefinitions, also seq-before-ep.
Removes the now-unused reassert_active() helper. Adds a regression test
covering the seq-unchanged / entry-redefined trigger case.
Comments at lines ~63 and ~102 misidentified 0x01 (first-item/seamless) as the
non-seamless trigger and labelled 0x05/0x06 as seamless — inverted vs the BD-ROM
spec and mpls.rs (which documents 1=seamless, 5/6=non-seamless). Corrected all
affected doc blocks; no logic change.
The comment at line 404 claimed "every non-Finished range" but the
immediately-following ranges_with call lists only NonTrimmed,
NonScraped, and Unreadable — deliberately omitting NonTried.
Update the comment to accurately reflect the actual status list and
explain that NonTried is excluded because it is handled by a preceding
sweep pass, not by patch.
- keydb.rs: separate default_path()/no_home_dir() doc blocks; correct the
false XDG lock-step claim (Linux write path uses $HOME, ignores
XDG_CONFIG_HOME; read-side search also checks XDG_CONFIG_HOME).
- io/pipeline.rs: use Release/Acquire on the abandoned flag so a leaked
consumer reliably skips close() on weak memory models (ARM64/POWER),
not just x86 TSO.
- mux/disc.rs: cache the decrypt-loss Arc at construction; lost_bytes()
no longer clones an Arc per frame on the mux hot path.
- disc/dvd.rs: assert display_aspect mapping for both 16:9 (PAL test) and
4:3 (NTSC test).
- mux/resolve.rs: extract css_error_aborts() helper and unit-test the
scrambled-but-uncracked CSS guard (Fix 6) incl. the --raw exemption.
- aacs/keys.rs: add unit tests for mkb_type_raw/mkb_type/mkb_is_uhd and
MkbType (Category C 2.0 UHD, prerecorded 1.0, no-0x10-record None).
- release.yml: publish job needs [verify, test] so a failing test suite
blocks crates.io publication.
Fix three DVD video-attribute bugs surfaced by a PAL disc detected as
NTSC:
- PAL/NTSC: parse video_format from VTS_V_ATR bits 5-4, not bits 1-0
(the old mask read permitted_df, so PAL 576i/25fps was mis-detected
as NTSC 480i/29.97). Named consts replace the magic bit positions.
- Anamorphic aspect: write MKV DisplayWidth/Height from the disc's
display_aspect (16:9 720x576 -> 1024x576) instead of square pixels,
so 16:9 DVDs no longer render as 4:3.
- Colour: stamp SD colorimetry (PAL=BT.470BG, NTSC=SMPTE-170M) instead
of BT.709 (HD).
Adds VideoStream.display_aspect (threaded through every muxer) plus
TvSystem/DvdAspect/ColorSpace plumbing, with regression tests. Removes
the deprecated Disc mux set_halt bridge (use with_halt).
Add an io::fsync module with a per-OS split (posix/windows) mirroring the
writeback_file convention, replacing two duplicated dir-fsync copies:
- dir(): POSIX directory fsync; a no-op on Windows, where std cannot open
a directory as a File and the failed open logged a spurious warning on
every mapfile write.
- file_durable(): opens the target read+write before sync_all so the flush
succeeds on Windows, where FlushFileBuffers rejects a read-only handle
with ERROR_ACCESS_DENIED.
Point the mapfile writer at the shared dir() helper.
Audited every #[repr(C)] struct and IOCTL/flag constant in scsi/windows.rs
against the authoritative Windows SDK headers (ntddscsi.h, winioctl.h,
devioctl.h, winnt.h, fileapi.h). All correct except the already-reverted
ScsiPassThroughDirect packing. Add the missing regression guards:
- StoragePropertyQuery layout (STORAGE_PROPERTY_QUERY: 0/4/8, size 12).
- IOCTL/flag constants, with IOCTLs asserted against an independent CTL_CODE
re-derivation (not a tautological literal) so a mistyped code is caught.
Validated compiling via cargo xwin check --target x86_64-pc-windows-msvc.
rc.4 added #[repr(C, packed(4))] to ScsiPassThroughDirect on the false premise
that ntddscsi.h wraps SCSI_PASS_THROUGH_DIRECT in #pragma pack(push, 4). It does
NOT — verified against the Windows SDK ntddscsi.h: the struct has no pragma pack
and uses natural alignment. On 64-bit Windows (LLP64) that puts DataBuffer at
offset 24 and the struct at 56 bytes, which bare #[repr(C)] produces and which
DeviceIoControl expects.
packed(4) instead imposed offset 20 / 48 bytes — the layout of the SDK's
SEPARATE 32-bit thunk struct SCSI_PASS_THROUGH_DIRECT32 (VOID* POINTER_32). Using
that on a 64-bit host malformed every IOCTL_SCSI_PASS_THROUGH_DIRECT, so the
INQUIRY in drive enumeration failed and autorip/CLI reported zero drives
('RC4 no longer detects my drive'). rc.3.1 (bare repr(C)) worked for the same
users; this restores that layout.
Replace the tautological packed-layout test (which asserted the same wrong
offsets the struct produced) with one cross-checked against the SDK header:
DataBuffer@24, SenseInfoOffset@32, Cdb@36, size 56. Verified compiling via
cargo xwin check for x86_64-pc-windows-msvc.
Expose the MKB Type field (record 0x10) as a typed MkbType enum with mkb_type()
/ mkb_type_raw() / mkb_is_uhd() helpers, so callers can distinguish AACS 1.0
(Blu-ray) from AACS 2.0/2.1 (UHD) discs without poking raw bytes.
When a scrambled AACS unit fails to decrypt under every available key
(a missing/wrong CPS sub-key, or a marginal unit that fails the TS-sync
verify), decrypt_sectors restored the original encrypted bytes and
returned Ok with no signal. Those still-encrypted bytes flowed to the TS
assembler, which silently dropped the non-syncing packets with no loss
counter. The only loss accounting was DiscStream's read-error zero-fill
path, so mux reported lost_video_secs=0 for decrypt-dropped content and
the abort gate accepted the rip even under abort_on_lost_secs=0. A rip
missing real video/audio segments was published as a perfect success.
decrypt_sectors now returns the number of bytes in scrambled units that
no key could decrypt. DecryptingSectorSource accumulates that into a
shared counter exposed via decrypt_loss(); both mux pipelines fold it
into lost_bytes() — the inline DiscStream path directly, and the
file-backed highway via PipelinedPesStream sharing the producer's
counter. Restore-to-original is unchanged, so clear nav-files are never
corrupted; metadata-probe callers that don't read the counter are
unaffected. Adds regression tests at the decrypt and decorator layers.
The doc claimed Error::KeydbInvalid for non-UTF-8 input, but the code
returns Error::KeydbParse (KeydbInvalid is reserved for the size-cap
violation). Correct the doc to match behavior and add a regression test
asserting non-UTF-8 yields KeydbParse.
In http_get, when the server closes the TCP connection before the HTTP
header block completes (n == 0 on the byte-by-byte header read), or sends
a header block exceeding 64 KiB, the code returned KeydbParse (E8004).
Both are connection/protocol-level faults from the server, not parse
failures of keydb content — the keydb bytes were never received. Return
KeydbConnect (E8000) instead, which already covers TCP-level exchange
failures. A CLI user hitting a transient drop or a redirect target that
immediately closes now sees the correct 'server hung up' diagnostic
rather than 'the downloaded file was malformed'.
Add a regression test that stands up a loopback listener which accepts
then drops the connection before headers, asserting KeydbConnect.
ntddscsi.h wraps SCSI_PASS_THROUGH_DIRECT in #pragma pack(push, 4),
forcing the PVOID DataBuffer field to 4-byte alignment even on 64-bit
hosts. The Rust struct used bare #[repr(C)], so the compiler applied
natural 8-byte pointer alignment and inserted 4 padding bytes after
TimeOutValue. That shifted DataBuffer to offset 24 (SDK: 20),
SenseInfoOffset to 32 (28), and Cdb to 36 (32), and grew the struct to
56 bytes (48). DeviceIoControl reads at the SDK offsets, so every SPTI
ioctl on 64-bit Windows either got rejected or interpreted garbage as
the CDB and DataBuffer pointer.
Add #[repr(C, packed(4))] to ScsiPassThroughDirect and the companion
SptwbDirect (so offset_of!(SptwbDirect, sense) stays correct for
SenseInfoOffset), plus a layout regression test asserting DataBuffer at
offset 20 and a 48-byte struct size.
The prefetch producer thread fires a BytesRead event after every
batch it reads, carrying a cumulative byte count. Nothing asserted
this callback actually fired, so a consumer that passed None for the
event_fn would silently get no progress events. Add a fixture-based
regression test that drives a finite extent through new_with_events,
captures the events, and asserts the cumulative count is
non-decreasing and reaches the full extent size at EOF.
This locks the contract autorip's mux progress bar and soft-stall
watchdog depend on.
A SEND KEY / REPORT KEY step in the bus-auth handshake mapped every
SCSI error to a cert/key-specific code (AacsCertRejected, AacsCertRead,
AacsKeyRead, AacsKeyRejected, etc.) via map_err(|_| ...). That discarded
the underlying SCSI error, so a transport-layer wedge (bridge crash / USB
disconnect) mid-handshake was reported as 'drive rejected your host cert',
sending operators down a keydb/host-cert dead end for what is really a
replug/power-cycle situation.
Add a handshake_err() helper that keeps the original error when it is a
transport failure (is_scsi_transport_failure) and only substitutes the
handshake-specific code for genuine SCSI rejections. Apply it at every
SEND KEY / REPORT KEY / REPORT DISC STRUCTURE step in both the AACS 1.0
and AACS 2.0 paths. Add a regression test covering both branches.
read_udf treated a READ CAPACITY SCSI failure as a 0-sector disc via
unwrap_or(0) with no diagnostic. capacity=0 then skews the layer
heuristic (always reports 1 layer, even for dual-layer discs) and the
canonical title-ordering sort, with nothing in /api/state or info to
indicate the command actually failed. Emit a tracing::warn carrying the
original error at the fallback site so a transient capacity failure is
visible. Recovery behavior is unchanged: 0 is still used as the
fallback.
default_path returned Error::KeydbParse (E8004, rendered as 'failed to
parse the keydb file') when HOME/USERPROFILE was unset. That misreports
an environment failure — a process with no home directory, typically a
stripped container or CI config — as a corrupt keydb file the code never
read. Map it to an IoError(NotFound) in the I/O category instead, so no
display path blames the keydb. Add a regression test.
Disc::read_aacs_inputs opened the ISO via FileSectorSource::open and
mapped any failure to Error::AacsNoKeys (E7000), discarding the real
Error::IoError (E5000) and its OS errno. A missing or unreadable ISO
(ENOENT/EPERM) is an I/O fault, not a key-resolution failure; callers
that dispatch on the error code would wrongly tell the user to check
their keys when the ISO simply does not exist.
Propagate the open error unchanged and add a regression test asserting
a nonexistent ISO yields E_IO_ERROR, not E_AACS_NO_KEYS.
detect_max_batch_sectors() is a Linux-sysfs probe with no platform
gate. It derived the device name with rsplit('/'), which never splits a
Windows \.\CdRom0 / \.\D: path, so the whole path became the device
name, no /sys node matched, is_optical fell to false, and the function
returned the 8192-sector block default (16 MiB/request) instead of the
60-sector optical default. That value then took the Some(b) arm in
Disc::copy and bypassed the 510-sector optical clamp that lives only in
the sysfs branch, leaving every Windows rip/verify running ~16x over the
optical cap (coarser bad-sector recovery, 16 MiB UDF reads).
Gate the sysfs probe behind a new sysfs_batch_probe_supported() helper
(Linux-only, requires a '/'-delimited path) and return the optical
default for any path the probe can't handle. Add regression tests for
the \.\ device-path forms.
STORAGE_ADAPTER_DESCRIPTOR.BusType is STORAGE_BUS_TYPE, an int-sized
(4-byte) enum, but the repr(C) struct declared it as u8. The total
size stayed 32 bytes by coincidence of alignment padding, and the two
fields actually read today (MaximumTransferLength at offset 8 and
AlignmentMask at offset 16) sit ahead of BusType, so there was no
runtime impact. But BusMajorVersion and BusMinorVersion landed at
offsets 26 and 28 instead of the SDK's 28 and 30, so any future reader
of those fields would have gotten wrong values.
Widen BusType to u32 so BusMajorVersion/BusMinorVersion fall at the
correct offsets, and add a layout regression test asserting every
field offset and the 32-byte total against the winioctl.h layout.
The doc comment claimed the version was a BE u32 at offset 8 of the
record body (offset 12 from pos), but the code correctly reads pos+8
(body offset 4): a 4-byte record header at pos, the Type field at body
offset 0, then the version at body offset 4. Rewrite the comment to
match the actual read so a maintainer does not 'correct' the offset and
break MKB version parsing. Clarify the matching test comment too.
aligned_unit_keys_validate accepted a unit-key set as soon as ONE
scrambled sample decrypted. On a multi-CPS-unit disc a set covering
CPS unit 0 but not CPS unit 1 therefore passed: decrypt_with committed
it, the sweep proceeded, and CPS-unit-1 sectors passed through as raw
encrypted bytes into the ISO/MKV with no error surfaced anywhere.
Require every scrambled sample to be descrambled by some unit key.
A sample no key covers now fails the gate, so an incomplete set is
rejected (AacsKeyRejected) and the caller falls through to the next
candidate, ultimately surfacing a key error instead of silently
writing ciphertext. Wholly-wrong-key rejection is unchanged.
Add a regression test for the partial-coverage case.
The comment on the bridge-degradation branch in handle_read_error
claimed it matched the NOT_READY 04/3E sense signature, but
is_bridge_degradation() keys solely on a non-standard SCSI status byte
(anything that is not GOOD/CHECK CONDITION/TRANSPORT FAILURE) and
ignores sense_key/ASC/ASCQ. A real 04/3E bad-sector error arrives as
CHECK CONDITION (0x02), so it never took this branch — it falls through
to the generic NOT_READY retry. Rewrite the comment to describe the
status-byte condition the predicate actually detects, and drop the
parallel misleading note in the not_ready_err test helper.
Add a regression test asserting a NOT_READY 04/3E error is not
classified as bridge degradation and routes to the NOT_READY retry
(3 s pause) rather than the bridge cooldown (15 s pause).
SptiTransport::reset() unconditionally slept 2 seconds after sending
IOCTL_STORAGE_RESET_DEVICE, even when the IOCTL failed (e.g.
ERROR_INVALID_FUNCTION on a driver that does not support the reset).
On failure no reset occurred, so there is nothing to settle and the
2-second penalty was pure waste. Gate the settle sleep on the IOCTL
return so it only fires when the drive was actually reset.
keydb::save() overwrote the live keydb.cfg with a bare in-place
std::fs::write. keydb.cfg is the single source of AACS truth and this
path runs unattended (first-boot download + daily-refresh thread, with
a container restart on every release), so a SIGKILL, OOM-kill, power
loss, or ENOSPC mid-write could leave the file truncated with the prior
good copy already gone. A truncated keydb does not error at write time;
it surfaces later as failed key resolution on every AACS rip.
Factor the write into write_atomic(): create the parent dir, write a
unique sibling temp file, fsync, then rename (atomic within a
filesystem). On any write/fsync/rename failure the temp is removed and
the existing keydb is left untouched. Same pattern already used by the
settings and mover write paths. Add regression tests covering in-place
replacement (no stray temp) and prior-copy preservation on failure.
DiscStream skips a whole AACS unit (3 sectors = 6144 bytes) per
read-error event, but only the skip-event count was exposed. Loss
estimates built from errors*2048 therefore undercounted AACS loss ~3x.
Add a lost_bytes field that accumulates the actual zero-filled byte
count at each skip, expose it via a new Stream::lost_bytes() accessor
(default 0; DiscStream and CountingStream override), so consumers can
scale lost-video time by real bytes lost rather than the event count.
Regression tests assert the AACS path records 6144 B/event (and
exceeds the errors*2048 undercount) while the align=1 path records
2048 B/event.
When finish_with_halt's grace period expires it detaches from the
consumer thread and returns an error to the caller, but the leaked
consumer kept running to completion: once its wedged write syscall
returned it would fall through to sink.close(). For the mux writer
close() finalises the MKV (Cues block + segment-header patch), so a
leaked consumer could finalise — and keep writing to — an output file
the caller had already reported as failed, racing a fresh rip for the
same device over the same path.
Add a shared abandonment flag the consumer polls in its drain loop and
again before close(). finish_with_grace sets it before dropping the
JoinHandle, so the moment the wedged syscall returns the consumer skips
any further apply and skips close() entirely, then exits. This does not
interrupt the in-flight syscall (only its return or process exit can),
but it bounds the damage to the write already in flight instead of a
full finalise of an abandoned file.
Regression tests cover both sides: a consumer leaked past the grace
period skips close(), while one that finishes inside the grace window
still calls close() and finalises normally.
SptiTransport::reset() discarded the DeviceIoControl return value, so a
wrong or unsupported reset IOCTL would fail with ERROR_INVALID_FUNCTION
and silently no-op while the unconditional 2s settle sleep made it look
like a reset happened. That is exactly the regression class the doc block
records for the two earlier (incorrect) code values.
Bind the result and warn (with GetLastError) when the reset fails, debug
on success. Lift IOCTL_STORAGE_RESET_DEVICE to module scope and add a
test recomputing it from the CTL_CODE formula so a wrong value can't slip
back in unnoticed.
Mapfile::flush() wrote the new state to a .tmp sibling, sync_all()'d the
temp file, then rename(2)'d it over the final mapfile path — but never
fsynced the parent directory. After the rename the new dirent lives only
in the directory's page cache, so a crash or power loss in the
rename-commit window (the wide window on NFS, the very case the temp
fsync guards) can lose it: resume then reads a stale or absent mapfile
even though the data bytes were durable, silently discarding multi-pass
recovery progress.
Add a best-effort fsync_dir() on the path's parent after the rename,
mirroring the established dirent-durability pattern in autorip's mover.
A directory that can't be opened or synced is logged and ignored rather
than failing the write, since the file bytes are already durable.
Adds a regression test exercising the parent-fsync branch against a real
subdirectory and asserting the helper is a no-op on a missing directory.
Tests, crates.io publish, and the GitHub Release no longer serialize
behind each other: each job only needs the version-check (verify) gate.
Binary consumers git-tag-pin libfreemkv, so they start building the
instant the tag exists rather than waiting on the crates.io publish.
crates.io publish runs as an independent job for external consumers and
uses --no-verify (CI already compiled this commit in the test job).
Drive::read fires hundreds of thousands of times per rip. Logging its
entry at DEBUG floods a diagnostic log and buries the events that
actually matter. Move it to TRACE so a level-3 (debug) bug-report log
stays readable; level-4 (trace) still captures it for deep dives.
The docs still documented the old in-tree firmware unlocker: the MediaTek
MT1959 variant table, the READ BUFFER unlock CDB bytes, the profiles.json
schema (unlock_mode/unlock_buf_id/unlock_cdb), the platform/mt1959 driver
listings, and the 'why unlock is needed' handshake mechanism. None of that
lives in libfreemkv anymore — the core is firmware-clean and ships only the
pluggable Unlocker trait + registry (src/unlock.rs).
Rewrite drive-access, architecture, api-design, disc-to-rip, and the README
to describe only the generic Unlocker seam: the trait, register_unlocker, the
registry routing, and the host-cert fallback when no unlocker matches. Point
readers to the freemkv-unlock repo for concrete unlockers. No source change.
The dual-model Windows audit (Sonnet) caught that the prior 'fix' (0x002DD000)
was also wrong: that decodes to the OBSOLETE RESET_BUS code (function 0x400,
R|W access) which class drivers reject. Canonical ntddstor.h:
IOCTL_STORAGE_RESET_DEVICE = CTL_CODE(0x2D, 0x0401, METHOD_BUFFERED, FILE_READ_ACCESS)
= (0x2D<<16)|(1<<14)|(0x401<<2)|0 = 0x002D5004.
Only affects the best-effort drive-reset recovery path (return value is
discarded); the normal read/unlock/rip path never calls it, so this does not
change normal Windows operation. Verified correct-by-construction; the
AlignmentMask finding is deferred to rc4 (benign on USB optical bridges,
needs a real Windows SCSI-HBA rig to validate).
- patch (Pass N) now aborts immediately on transport failure (status=0xFF),
symmetric with the sweep and single-pass mux. Previously a USB-bridge crash
was treated as an ordinary bad sector and the pass hammered the crashed
device sector-by-sector until the per-range watchdog expired. (medium)
- patch AACS recovery reads are now unit-aligned: a mid-unit single-sector
read on an AACS disc was rejected by the decrypting reader (DecryptFailed)
and the sector abandoned without asking the drive. The read is now widened
to the enclosing whole 3-sector unit and the requested window copied out,
leaving all recovery accounting (pos/block_bytes/cursor) untouched so it
cannot desync. Only affected CLI decrypt-to-ISO --multipass re-runs. (low)
- IOCTL_STORAGE_RESET_DEVICE corrected 0x002D1004 -> 0x002DD000 (the old value
decoded to function 0x401 with the access bits cleared, so DeviceIoControl
would fail ERROR_INVALID_FUNCTION instead of resetting). Windows-only. (low)
Adds a transport-failure classification regression test.
A direct disc://→mkv:// single-pass rip drives fill_extents in
skip_errors mode. On a read failure it shrank the batch, retried, and
once bottomed out zero-filled + skipped the unit and continued. A SCSI
transport failure (status=0xFF) is a USB-bridge crash, NOT a skippable
bad sector: the bridge is wedged and every subsequent read fails the
same way. So the loop marched the entire disc at one ~15s bridge-
recovery per probe, producing no MKV — the user-reported 'hundreds of
0x28/0xff warnings, runs forever, Movie.mkv never created'.
Fix: short-circuit to an error on transport failure before any
shrink/skip, even under skip_errors — mirroring the multipass sweep's
transport-failure rule in read_error::handle_read_error. The CLI
surfaces it so the user power-cycles the drive or switches to multipass
recovery. Regression test asserts exactly one read is issued and no skip
is counted (no infinite march).
Three fixes for a Windows ASUS Blu-ray drive that failed/spammed errors:
- resolve.rs: accept disk:// as an alias for disc:// (identical behavior;
empty = auto-detect, path = device). Windows users commonly type
disk://i: after the drive-letter convention.
- drive::find_drive: prefer a drive that reports media present. Enumerate
all optical drives, query Drive::drive_status() (GET EVENT STATUS, works
regardless of firmware), and return the first reporting DiscPresent;
fall back to the first enumerated drive when none report a disc so
single-drive / quirky setups don't regress. Selection policy split into
select_drive_with_media() for unit testing.
- READ chunking: add ScsiTransport::max_transfer_bytes() (default 1 MiB).
Windows SPTI overrides it with the adapter MaximumTransferLength queried
via IOCTL_STORAGE_QUERY_PROPERTY / StorageAdapterProperty, clamped to a
64 KiB floor (fallback on query failure). Drive::read now caps each
READ(10) to that limit: small reads take the unchanged single-CDB path,
larger reads loop over read_one() chunks, reporting the failing chunk's
LBA on error. This stops the 16 MiB single read that exceeded the
adapter limit, made DeviceIoControl fail, and spammed transport-failure
warnings with slow tiny-read fallbacks.
Tests added for the disk:// alias, media-preference selection, and READ
chunk decomposition / per-chunk error LBA.
Complete the OEM/AACS cert baseline so host certs are a KeySource output,
never compiled in. With an unlocker present the OEM route is unused
(unlocker_read_volume_id short-circuits); without one, the cert handshake
runs when a keysource supplies a host cert and fails gracefully when none
does.
- KeySource trait gains host_certs() (default empty), reusing the existing
aacs::HostCert type. A source holds certs as its second kind of AACS
material alongside decryption keys.
- ScanOptions gains key_sources so the handshake can collect certs across
the app's keysource layer, unioned with DriveCredentials.
- do_handshake_cert collects certs via collect_host_certs (credentials +
every key source). Zero certs from any source now returns the new
graceful Error::AacsNoHostCert (code 7024, sentinel <no host cert>)
instead of silently skipping; resolution still falls back to the
path-1 disc-hash -> VUK lookup, which drops the error on a hit.
- error.rs: add E_AACS_NO_HOST_CERT / Error::AacsNoHostCert, wired into
code(), Display, and the round-trip + sentinel tests.
HandshakeResult { volume_id, read_data_key } unchanged: the cert path
still yields both the VID and the bus key.
Rename the trait to a generic, drive-neutral capability contract so future
unlockers don't conform to LibreDrive specifics:
- unlock(...) -> unlock_drive(...) (the one required capability)
- read_vid(...) -> read_volume_id(...) (no-op default)
- add set_max_read_speed(...) (no-op default)
The trait doc now states the contract in one place: unlockers are optional
drive-capability providers; the AACS layer is the always-present baseline and
falls back to the full cert handshake when no unlocker matches. Implement only
the capabilities your drive supports.
Registry: route_unlock now calls unlock_drive; unlocker_read_vid renamed to
unlocker_read_volume_id; add unlocker_set_max_read_speed (mirrors route_unlock
resolution, first matching unlocker, no-op if none match). drive::init calls
it on a matched drive in the post-unlock path; a speed-set failure is logged
and does not fail the rip. encrypt.rs handshake updated to the new VID helper.
Tests updated for the renames; added a set_max_read_speed routing test
(match invokes, no-match is a safe no-op).
An Unlocker unlocks drive functionality, not just the disc: unlock() is
one capability, OEM VID retrieval is another. Widen the Unlocker trait
with a default-no-op read_vid(), add an unlocker_read_vid registry helper
that mirrors route_unlock resolution, and consult it in do_handshake_cert
before the cert-based VID read. A matching unlocker that serves a VID via
its OEM path short-circuits the cert handshake — VID is obtained without
the host certificate + HRL (restoring the pre-refactor decoupled OEM VID
path, now living inside the unlocker). Non-matching drives, and unlockers
without an OEM VID path, fall through to cert auth unchanged.
is_unlocked() now reports the honest signal (a registered unlocker matched
this drive) instead of const false.
libfreemkv must stay firmware-clean for crates.io. Move ALL drive-unlock
knowledge — firmware blobs, WRITE_BUFFER/MODE SELECT upload, unlock CDBs,
the MT1959 variant-A/B handshake, the 800 KB profiles.json database, and
the DriveProfile parsing — out into the freemkv-unlock-ld crate.
libfreemkv now keeps only the seam:
- Unlocker trait (name/matches/unlock) + a process-wide ordered registry
(register_unlocker / route_unlock) in src/unlock.rs
- Drive::init() walks the registry; the first unlocker whose matches(id)
is true runs unlock(scsi, id); if none match the drive is left in
stock mode and the host-cert AACS handshake (the OEM route) carries
the disc.
The unlocker issues its own CDBs through the public ScsiTransport::execute,
so libfreemkv knows nothing about how unlocking happens.
Removed:
- profiles.json
- src/platform/mt1959/{mod,variant_a,variant_b}.rs
- src/profile.rs (DriveProfile, ProfilesFile, find_by_drive_id, ...)
- the PlatformDriver trait
Because the Unlocker seam reports only success/failure (no extended-access
marker), VID acquisition is now always via the cert-based handshake; the
per-drive OEM-VID-CDB shortcut and Drive::is_unlocked() (now const false)
are removed/neutralized. Disc-speed calibration moved into the unlocker's
unlock(); Drive::probe_disc() is a no-op.
git grep over src/ is firmware-blob/profiles/WRITE_BUFFER/mt1959-free.
All tests pass on Rust 1.86 (precommit green).
Fixes corrupt MKV seek index on single-clip titles with many
interleaved tracks (Top Gun UHD: 2 video, 11 audio, 32 PGS).
TimelineContinuity previously shared one high_ns frontier + offset_ns
across ALL tracks. A sparse, lagging non-video frame (subtitle/audio)
ratcheted the frontier up; the next normal video frame then sat >3s
below it and was misread as a clip-boundary discontinuity, permanently
bumping offset_ns. On a one-clip title this fired thousands of times
and inflated Cue/cluster timestamps into the billions of ms, destroying
the seek index (ffmpeg then seeked to wrong positions and emitted
spurious 'Could not find ref with POC N' errors).
Now only the VIDEO track drives epoch decisions: video alone advances
the frontier and opens a new epoch on a real backward PTS jump.
Non-video tracks are remapped under the current offset and never touch
the frontier or offset. A lagging non-video tail straggler at a genuine
multi-clip boundary (old-epoch raw PTS under the new offset) is
recognised via the previous offset and remapped to the seam, so it
neither flies forward nor forces a back/forward-dated split cluster.
Genuine multi-clip seamless rebasing is preserved.
Also drop TimestampScale from 1ms to 0.1ms (100_000 ns/tick) so
23.976fps frames and 0.833ms TrueHD AUs stop colliding on a single
tick (the source of the non-monotonic-DTS warnings and the audio
cadence flattening). The finer scale shrinks the i16 block-relative
span to ~3.27s, so: cluster duration is set to 2s nominal (keeps
keyframe-driven clusters within the i16 range for typical GOPs), and
the i16-overflow cluster-split path now emits a Cue for the split
cluster so the seek index has no gaps.
Regression tests: single-clip late-subtitle must not inflate offset_ns;
non-video must not advance the frontier; non-video straggler remapped
to seam at a real boundary; every cluster (incl. i16-split) carries a
Cue. Existing tick/duration assertions updated for the new scale.
The subset-difference slots are independent, so rayon find_map_any scans them
in parallel and cancels on first match. UHD MKB no-match scan ~26s -> ~4.6s on
8 cores. Bit-identical result; 58 aacs tests pass.
calc_pk_from_dk derived all three children (left/pk/right) at every tree
level but used only the one it descended into; the Processing Key only
matters at the final node. Derive just the descended child per level + the
PK once at the end. Bit-for-bit identical; speeds every DK->MK derivation
(disc decryption + unpositioned-DK recovery). 60.8s -> 22.9s on a UHD
worst-case recovery scan.
Add recover_dk_position: boil a position-less device key down against a
disc MKB to its invariant subset-difference position (node/uv/u_mask_shift)
— zero-descent probe + ancestor walk-up, hoisted verify. Consolidate the
SD-walk surface (drop the research-only probe::walk_pk_against_tables;
make derive_media_key_from_pk_walked internal).
Two byte-identical copies of the subset-difference walk lived in keys.rs
and variants.rs. Consolidate the pure helpers (aesg3, calc_v_mask,
calc_pk_from_dk) into keys.rs (pub(super)); variants.rs imports them.
Add derive_media_key_and_pk_from_dk(mkb, dks) -> Option<(mk, pk)>, which
returns the intermediate Processing Key the walk already computes;
derive_media_key_from_dk becomes a thin wrapper. This lets callers bank
the PK on a DK boil instead of re-deriving it via a second, divergent
walk (the classical-vs-variant cvalues order made that miss silently).
216 AACS tests pass (incl. a new (mk,pk) regression); precommit (1.86) green.
read_file rejected the padded ~128 MiB MKB_RO.inf via the 0.31.0
MAX_FILE_BYTES cap, so read_aacs_inputs failed and the online
key-resolve path never contacted the keyserver. Read the MKB's real
record length from its header and read exactly that. Also honor
inline/embedded (AD type 3) files so small AACS .inf files read from
the ICB payload instead of being misparsed as allocation descriptors.
Release 0.31.6.
B-frame video PTS is legitimately non-monotonic in decode/storage order; the
audio-oriented monotonic nudge was clobbering it to prev+1ms, which decoders
flagged as non-monotonic DTS (thousands per title). Apply the nudge to
audio/subtitle only; video keeps its true PES PTS. + regression test.
Test-hardening release, no runtime changes. Adds spec-grounded unit tests
across the silent-corruption surfaces — UDF/MPLS/CLPI/IFO parsing, BD/DVD
title + extent assembly, AACS/CSS key handling, TS/PS demux + codec parsers,
MKV/EBML container output, the mux pipeline, sector prefetch + decrypt
decorator, drive/SCSI sense decoding, label extraction, and core I/O. Each
test is grounded in the format spec or real on-disc behavior and verified to
fail under a targeted source mutation. No behavior changed.
Add a precommit fixture proving Disc::read_aacs_inputs reads a Long-AD,
multi-extent /AACS/Unit_Key_RO.inf in full — the exact input the online
key-request path depends on (no disc/deploy needed). Make
read_aacs_inputs_from_reader pub(crate) for the test.
Reword internal comments/doc examples to generic descriptions instead of
specific media titles.
Spec-grounded unit tests for the silent-corruption surfaces, each verified to
fail under a targeted source mutation (no vacuous tests).
udf (10): Extended-AD 20-byte stride + extent LBA at off+12, type-1 sparse
extents skipped not emitted, zero-length type-0 terminator, continuation-loop
bound (anti-hang), UTF-16BE and 8-bit name decoding, FID L_IU offset, parent
(..) FID skip, d-string length-byte cap. Locks the spec branches a future
allocation-descriptor refactor must not silently break.
recovery (9): Pass-N damage-skip range bounds (forward/reverse cursor stays in
range), one-quarter-of-remaining skip cap, below-threshold no-op, work-done
accounting, and bridge-degradation retry-to-budget fall-through.
read_icb_extents hardcoded an 8-byte Short-AD stride for every file. Large
BD-ROM .m2ts streams use 16-byte Long ADs; striding them as Short ADs reads
descriptor #0 correctly (length+lba align) but lands #1 in the middle of the
first Long AD (its zero impl_use bytes). The AD-list terminator (data_len==0
=> break) then fired on that zero and stopped after the first extent, so every
multi-extent title truncated at ~1 GiB. The same reader backs read_file, so
disc AACS-input files (/AACS/*.inf) and the m2ts mux extents were both
affected.
Read the ICB Tag flags (AD type) and stride 8/16/20 bytes for Short/Long/
Extended ADs accordingly; Extended ADs carry the lba at off+12.
aacs: extract trim_mkb and restore its guard so an MKB whose content length
the parser cannot determine (mkb_content_len == 0) is returned intact instead
of truncated to empty.
Regression tests: Long-AD read_icb_extents returns all extents; Long-AD
read_file returns full content; trim_mkb never zeroes an unrecognised MKB.
Library-wide review-and-fix pass: tightened AACS keydb/handshake/variant
handling and trailing-partial-unit policy, corrected MPLS mark offset and
added UDF allocation bounds, hardened the mux/codec framing and M2TS paths,
guarded SCSI READ CAPACITY short transfers and unified error mapping, added
overflow guards on untrusted disc input, and made prefetch shutdown
deterministic. Release profile now builds with thin LTO + single codegen unit.
Subtitle/DVD output-corruption + stream-mapping coverage fixes.
1. DVD subtitle/audio track-mapping collision (CRITICAL). The PS path
routed 0xBD private-stream packets to a track via (sub_id & 0x1F)+1,
so VobSub subtitle sub-id 0x20+j aliased audio track j+1: subtitle
PES was fed to the AC-3 parser and the real subtitle track got
nothing. Route by the canonical DVD PID instead via a new
PsPacket::dvd_pid() that mirrors scan_dvd_titles' PID assignment
(video 0xE0, audio 0xBD00+i, subtitle 0x20+j), then look up the
track in pid_to_track. Fixed identically at all three sites
(pipelined_stream consume_ps, disc.rs live feed, disc.rs EOF flush).
Unmappable/unmapped packets now WARN instead of silently dropping.
2. PGS flush() missing. PgsParser inherited the no-op default flush, so
the last subtitle of every PGS track (emitted only when a following
PCS arrives) was dropped at EOF. Implemented flush() to drain the
pending display set (duration_ns: None for the trailing block).
3. DVD VobSub multi-PES SPU not reassembled. A subpicture unit larger
than one PES spans multiple PES (only the head carries a PTS).
DvdSubParser is now stateful: it buffers per sub-stream until the
leading 2-byte SPU_size is satisfied, inherits the head PTS, and
emits one Frame. flush() drains a truncated trailing SPU at EOF.
4. One-table hygiene. scan_streams had a duplicate stream_type->Codec
table that had drifted from Codec::from_coding_type (missing 0x80
LPCM, 0x85 mapped to DTS-HD MA vs HR, etc.). scan_streams now uses
from_coding_type plus a new Codec::kind()/CodecKind category split,
so the two mappings can never diverge. Silent drops in
scan_streams and bluray STN parsing now WARN with PID + type.
Tests: dvd_pid mapping + subtitle/audio collision regression, PGS
final-subtitle flush, VobSub multi-PES reassembly + EOF flush,
scan_streams 0x80 LPCM via from_coding_type.
H.264 stored SPS/PPS in single Option slots and always stripped them
from frame data, so a mid-title parameter-set redefinition (same id,
different body) was lost — those frames decoded against the stale avcC
copy the player re-applies at each keyframe. Same defect class as the
HEVC PPS-redefinition bug. Mirror that fix: emit a changed SPS/PPS
in-band at every occurrence; strip only the first-seen / identical ones.
Also guard avcC's 16-bit NAL length fields: a param set > 65535 bytes
truncated the length while appending all bytes. Return None instead.
codec_private() hardcoded 8-bit 4:2:0 in the hvcC fixed header, wrong for
10-bit Main 10 UHD (essentially all UHD). Parse chroma_format_idc and
bit_depth_luma/chroma_minus8 from the SPS RBSP (with emulation-prevention
removal and sub-layer profile_tier_level handling) and emit the real
values; fall back to 8-bit 4:2:0 only if the SPS can't be parsed.
Also guard the 16-bit NAL length fields: a param set larger than 65535
bytes would truncate the length while appending all bytes, mis-framing
the record. Return None instead of emitting a corrupt hvcC.
A continuation PES (one that merely extends a TrueHD AU spanning PES
packets) carries its own later PTS, which the parser was adopting
mid-assembly, snapping the AU's timestamp and breaking the monotonic
per-AU cadence (A/V drift). Capture the PTS base only when the
reassembly buffer is empty, i.e. when a PES actually begins a new AU.
When two access units flushed in one parse() call (a core arriving in an
earlier PES than the PES that closes the unit, the standard DTS-HD MA
core+extension-as-separate-PES layout), the second AU inherited the
latest PES's PTS instead of its own core's.
Track per-PES PTS markers keyed by buffer offset and stamp each emitted
AU with the PTS of the PES covering its first byte, rebasing markers on
every front drain. Each AU now keeps its own core's timestamp.
Extends two_cores_back_to_back to assert PTS; adds cross-PES coverage.
Two defects:
- Ac3Parser inherited the no-op default flush(), so a complete final
frame still buffered at end-of-stream was dropped (~32 ms of audio
lost). Add a flush() that drains a complete buffered frame, mirroring
dts.rs.
- Every frame in one parse() call was stamped with the single PES PTS,
collapsing their timecodes and drifting A/V. Compute a base PTS once
per call, then advance per frame by the frame's own duration (AC-3 =
1536 samples; E-AC-3 from numblkscod), converting samples->ns at the
stream sample rate (fscod). Each Frame now carries duration_ns.
MetaStream::Video dropped color_space on from_title/to_title, hardcoding
BT.709 on the way back. HDR titles (BT.2020) lost their color metadata.
Add a color_space field, populate it in from_title, and use it in
to_title. For pre-0.30.7 metadata that has no color_space, derive it from
the preserved hdr field (all HDR formats are BT.2020, SDR is BT.709).
Adds ColorSpace::id() + FromStr for serialization round-trip.
Fight Club redefines PPS id 0 mid-title; the parser froze the first PPS into
codecPrivate and stripped the rest, so the redefined segment decoded against
the wrong PPS (CABAC/cu_qp_delta desync, intact framing). Now any VPS/SPS/PPS
whose body differs from the codecPrivate copy is emitted in-band at every
occurrence, overriding the hvcC copy a player re-applies per keyframe. Proven:
Fight Club re-mux decode errors 320+ -> 0 across all corrupt regions.
Also adds aacs::unit_key_validates (1-block early-reject UK validation) and
ts_sync_count/ts_packet_total helpers.
Fixes the non-monotonic DTS ffmpeg/players reject (observed on Fight Club audio
streams 16/18: "14061 >= 14060"). Some audio PES PTS truncate to the same
millisecond as the prior frame, or tick back 1ms from rounding. The MKV writer
now tracks the last block timecode per track and nudges a non-increasing one to
prev+1ms (sub-frame, inaudible, A/V sync unaffected at ms granularity), recorded
only for frames actually written. New helper monotonic_ts() + unit test.
Independent of the separate HEVC slice-payload corruption investigation.
Add `DiscInputs.volume_label: Option<String>` — the disc's human title (UDF/ISO
volume identifier, else BDMV <di:name>), populated by Disc::inputs() from the
scan. Identity only, no secret, not used in any AACS derivation; lets a key
source forward the title so a key service can catalog disc_hash → title.
The video codec parsers (HEVC, H.264, VC-1, MPEG-2) used
pes.dts.or(pes.pts) as each frame's timestamp. MKV block timecodes
are presentation timestamps; frames are stored in decode order and
the player reorders for display by timecode. Using DTS makes the
timecode monotonic in storage order, presenting B-frames in decode
order — visible motion judder / wrong frames on playback, and
PTS-based seeking lands on the wrong frame.
The compressed video was always byte-correct (verified by NAL-level
diff against a known-good demux); this was purely a timestamp defect
affecting every B-frame title. Fix: prefer PTS (pes.pts.or(pes.dts)).
Verified on a real UHD iso->mkv: emitted PTS now reorders for
B-frames identically to a reference muxer.
Update the two tests that asserted the old DTS-preferred behavior and
add an HEVC regression test pinning PTS as the block timecode.
Audit-driven fixes (rounds 1–3):
- hevc: correct hvcC profile/level SPS offsets (HEVC has a 2-byte NAL header)
- mkv: map all DTS variants to the registered A_DTS codec id; force a new
cluster before the i16 cluster-relative timestamp can overflow
- ebml/mkvstream: bound untrusted EBML sizes (no multi-GB allocs); reject
uint>8 (was an OOB panic) and non-{0,4,8} float widths (were a desync)
- ts: skip PES-header bytes that span a TS packet boundary; add the PMT
section_len/prog_info_len bounds the PAT parser already had
- ac3: preserve a 0x0B77 syncword split across a PES boundary; cap buffer
- dts: validate each next-core boundary by decoded core size (a 0x7FFE8001
pattern inside XLL payload no longer false-splits/drops the lossless
extension); reject sub-minimum core frames; fix forced-emit PTS base
- lpcm: DVD program-stream PCM no longer double-strips the BD LPCM header
- vc1/mpeg2: do not emit a parameter-set-only PES as a standalone frame
- pgs/truehd: cap the pending reassembly buffer (parity with ac3/dts)
- aacs: ts_syncs_intact uses the exact packet count
- prefetched: capacity-guard the recycled-buffer set_len
- Cargo.toml: exclude project docs from the published crate
Convergence: a third independent audit pass found no remaining material
(CRITICAL/HIGH/MEDIUM) issues. Full precommit (fmt + clippy -D + tests,
Rust 1.86) green.
decrypt_with now takes the disc's encrypted content samples and, after
deriving the candidate unit keys, confirms at least one de-scrambles a real
aligned unit before committing them. A wrong key (a keydb VK that doesn't
match the disc, a stale UK) is rejected with AacsKeyRejected instead of
silently applying garbage unit keys. Conservative by design: with no samples
(resume / mapfile cache) it accepts as before, leaving those paths unchanged.
The KeySource trait becomes a stateful provider — next_key hands one candidate
at a time (the source owns the order) and reports exhaustion, replacing the
all-at-once resolve; errored() distinguishes a failed source from a clean
no-key.
DTS-HD MA/HRA access units on Blu-ray are a DTS core frame (sync
0x7FFE8001) followed by one or more DTS extension substreams (sync
0x64582025) carrying the lossless audio. Ground-truthing the Dunkirk
ISO showed the m2ts demuxer hands these out as SEPARATE PES packets on
the same PID: one core PES (exactly core-sized, nothing trailing), then
the extension substreams in following PES packets with their own later
PTS.
The old DtsParser emitted one frame per PES the moment a core frame was
complete, and dropped any PES with no core sync. So every core became a
core-only (lossy) frame and the extension PES packets were discarded as
junk -- silently downgrading the track to lossy DTS core (1557 kb/s CBR,
16-bit) instead of DTS-HD MA (VBR, 24-bit lossless).
Rewrite the parser to assemble across PES boundaries: an access unit
runs from its core sync up to (but not including) the NEXT core sync, so
the core plus every following extension substream stays together. Add a
CodecParser::flush() (default empty) called at end-of-stream by both the
pipelined and inline DiscStream mux paths to drain the final buffered
unit. A 64 KiB cap guarantees forward progress and never stalls if a
boundary can't be found.
Validated on the rip1 testbed: Dunkirk eng+ger and Fight Club eng main
audio now ffprobe as profile=DTS-HD MA (Fight Club eng at 24-bit), with
VBR packet sizes (~2716-2788 B) well above the old fixed 2012 B lossy
core. Genuinely-lossy DTS dub tracks are left untouched.
When an AACS-encrypted ISO is muxed with decryption requested (not --raw)
but key resolution yielded no usable key, input() proceeded to mux the
still-encrypted stream — emitting ~100 MB of garbage (no TS syncs, demuxer
emits nothing) and sometimes spinning for tens of minutes.
Add a cheap result-check in resolve::input()'s Iso branch via the pure
predicate aacs_key_missing(raw, has_aacs, keys): when decryption is
requested AND the disc carries AACS state AND decrypt_keys() is None,
return new Error::NoDiscKey { disc_hash } (E7022) before muxing. The
40-hex disc hash is sourced from AacsState::disc_hash. --raw and
non-AACS (unencrypted / CSS) discs are unaffected. Unit-tested.
correct_truehd_channels() probes the first DECRYPTED access units of the
chosen title (TrueHD PIDs, bounded 8 MiB read of the first extent) and
sets AudioStream.channels from the MLP major sync — fixing the MPLS
audio_format understatement (5.1 declared on a 7.1/Atmos TrueHD track).
Regenerates the basic codec label for the corrected count; richer
editorial labels are left untouched. Wired in resolve.rs input() for
iso:// after decrypt_with (the m2ts is only decryptable post-key), using
a fresh reader so the mux reader is undisturbed. generate_audio_label
made pub(crate).
Adds truehd_channels(format_info) + truehd_channels_from_stream(): the
real presentation channel count (8ch/7.1 when present, else 6ch/5.1)
from the TrueHD major sync, which the MPLS audio_format base field
understates (declares 5.1 even on a 7.1/Atmos track — the Dune case).
Per the MLP spec presentation channel-assignment masks. 3 unit tests.
This is the decoder; wiring it to correct AudioStream.channels requires
a mux-time probe of the DECRYPTED audio payload (the channel truth isn't
readable at scan — the m2ts is AACS-encrypted until the key is applied
at mux), to be added + validated on a real rip.
With the EL now carried (mpls PID fix), the MKV writer tags the Dolby
Vision layer so players/mediainfo recognise it: a BlockAdditionMapping
(0x41E4) with BlockAddIDType 'dvcC' and a DOVIDecoderConfigurationRecord
(profile 7, bl+el+rpu present) on the DV-layer video track. Disc
Profile 7 dual-layer is preserved losslessly as a second video track
(archival-correct, MakeMKV-equivalent); M2TS carries the EL as a native
second video PID with no extra signaling needed.
Adds dolby_vision_config() + a profile-7 dvcC unit test. End-to-end DV
recognition (mediainfo / playback) to be confirmed on a full rip.
parse_stream_entry only read the PID for stream-entry type 1 (a stream
in the PlayItem's own clip), returning PID 0 for every other type. The
Dolby Vision enhancement layer uses type 4 (verified on Wicked + Dune:
se_len=9 type=0x04 [00 10 15] -> PID 0x1015), so the EL fell through to
PID 0x0000 and was silently dropped by the demux/mux — Dolby Vision lost.
Now the PID offset is keyed off the entry type per the BD stream_entry()
layout: type 1 -> +2, type 2 -> +4, type 3/4 -> +3. The DV EL now
resolves to its real PID (0x1015) so it is demuxed and carried as a
stream through the PES layer to every writer (M2TS carries dual-PID DV
natively; the MKV writer's DV signaling is the format-specific piece).
The DTS parser emitted a core-only frame and discarded the trailing
DTS-HD extension substream whenever the extension straddled a PES
boundary (it advanced past only the core, then re-synced on the core
syncword, skipping the leftover extension bytes). That silently
downgrades DTS-HD MA / HRA to lossy DTS core.
Now: when an extension sync is visible after the core — full, or a
partial prefix at the buffer edge — wait for the full extension instead
of splitting it off; only 'nothing after the core' (final unit / EOF,
no parser flush) is taken as a genuine lossy core-only unit. Adds a
boundary-split regression test asserting core+extension is preserved.
Two validated audio-correctness fixes (proven on real discs Wicked/
Paddington/Dune/Fight Club via head-captures):
labels: apply_labels now derives the codec/channel descriptor from the
stream's OWN codec/channels unless the parser's codec_hint is BOTH
consistent with it AND richer (e.g. "Dolby Atmos" on a TrueHD stream).
A mis-bound hint ("AC-3 2.0" on a TrueHD track) is rejected and the
stream's own codec used — killing the cross-labeled shuffle (Wicked) and
the compat-core mislabel (Paddington), while keeping rich hints and
normalizing plain ones to uniform marketing names. (codec_hint_consistent
+ codec_hint_adds_detail, 5 tests.)
disc: canonical_title_order gains an audio-richness tiebreak
(lossless > channels > track-count) for titles that tie on
duration+clips — so a movie authored as a full-audio playlist plus a
stereo-only twin (Fight Club 00800 vs 00004) picks the full-audio one
instead of falling to array order.
- mux input(): propagate a failed decrypt_with rather than muxing an
undecryptable stream silently (review M6).
- Scrub synthetic but key-SHAPED hex (HOST_PRIV_KEY/DEVICE_KEY/disc-entry) from
the keydb parser tests to obvious zero/repeated-byte placeholders. No real or
real-looking key material in code.
The library no longer loads a keydb anywhere. The scan path always captures the
disc's AACS inputs (MKB, VID, Unit_Key_RO.inf) and resolves NO key; a caller
resolves a Key from a key source and applies it via Disc::decrypt_with.
- ScanOptions loses keydb_path / unit_key / disable_keydb (and the path search);
it now carries only optional DriveCredentials (host certs) for the live-drive
AACS handshake. do_handshake_cert uses those instead of loading the keydb.
An unlocked / LibreDrive drive takes the OEM Volume-ID path and needs none.
- The mux input() path takes caller-resolved unit_keys instead of a keydb_path,
and applies them via decrypt_with.
- Deleted the now-dead inline resolve_encryption / resolve_encryption_static.
All 700+ lib tests pass.
The VID-only scan path stashed MKB_RO/RW raw — those files are allocated to a
fixed ~128 MiB and zero-padded, so the MKB on AacsState (consumed by
Disc::inputs() and the device/processing-key decrypt_with derivation) was the
full pad, not the ~few-MB record stream. Trim to mkb_content_len, matching
read_aacs_inputs.
A source that validates server-side against ciphertext (an online key service)
needs encrypted content samples; one that keys on disc identity (keydb, mapfile)
does not. needs_samples() lets the caller skip the extra disc read unless a
configured source actually needs it. Defaults false.
An online key service validates a candidate against real ciphertext, so it
needs a few encrypted content sample units. Add a samples field to DiscInputs;
Disc::inputs() leaves it empty (reading content needs the disc reader, which
scan does not retain) for the application to fill.
The library now describes the key-source abstraction it consumes, while the
concrete sources live in a companion crate. A KeySource looks a disc up from
its DiscInputs (disc hash, volume id, MKB, Unit_Key_RO.inf) and returns a Key;
the library derives down and decrypts. Sources do no derivation.
Disc::inputs() exposes those inputs from a scanned disc.
Key::Media now carries a Vec of candidate media keys rather than one: a media
key is MKB-scoped, so a source hands its whole pool and the library picks the
one that verifies against the disc's MKB. That mirrors Device/Processing and
keeps key selection (a derivation step) inside the library.
Disc::decrypt_with now takes Device / Processing / Media / Volume keys in
addition to Unit. A caller hands in whatever level it resolved and the
library derives down the AACS chain to the per-CPS-unit keys, then
decrypts:
Device -> MKB walk -> media key -> VUK -> per-CPS unit keys
Processing -> MKB -> media key -> VUK -> per-CPS unit keys
Media -> Volume ID -> VUK -> per-CPS unit keys
Volume -> Unit_Key_RO.inf, one unit key per CPS unit
Unit -> used directly (terminal)
Derivation stays centralized in the version-dispatched resolver
(1.0 / 2.0 / 2.1), fed by a single-key provider built from the supplied
key — no new crypto. Volume notably does NOT stop at the volume key: it
decrypts every CPS unit's key.
Scan stashes the AACS inputs (Unit_Key_RO.inf and MKB) on AacsState so an
out-of-band decrypt_with can derive without re-reading the disc.
Non-breaking: Key is #[non_exhaustive] and the existing Unit path is
unchanged. New tests cover the Volume -> per-CPS derive-down, the
missing-inputs error, and the no-units rejection.
scan now stashes the raw Unit_Key_RO.inf + MKB bytes on AacsState (via
resolve_vid_only, the disable_keydb path), so an external key-resolver can
derive unit keys from a resolved VUK without re-reading the disc — the
foundation for moving lookup/derivation out of libfreemkv. Additive: the keydb
path is untouched, all existing constructors default the new fields empty.
584 lib tests green. Builds on the KeyOrigin rename + the Key/decrypt_with API.
Disambiguates the key vocabulary: Key (the input handed to decrypt_with),
key sources (the resolver's lookup list), and KeyOrigin (how a key was
resolved). Internal-only rename — no dependents import it.
Add libfreemkv::Key (non_exhaustive; Unit wired) + Disc::decrypt_with(Key) — the
caller resolves a key from any source and hands it in; the library decrypts with
no keydb/network of its own. inject_unit_keys now synthesizes a minimal
ExternalUk AACS state when a scan built none (no keydb at scan time), so a disc
keyed at sweep but scanned without a keydb still decrypts from its mapfile UK
instead of reporting E8005 and deferring the mux forever. Tests cover the
synthesize, replace, empty->None, and decrypt_with paths.
A keyed disc now writes its decrypted AACS unit keys to the mapfile header
(# freemkv-uk: <cps>:<hex>); an unresolved disc writes only the VID. The two are
mutually exclusive (set_unit_keys clears the VID) — unit keys are the final
answer, so deferred-mux / resume decrypts directly with no key lookup, while the
VID alone is the 'still unresolved, retry' marker. CopyOptions/SweepOptions carry
the keys (written when present, else the VID); Disc::inject_unit_keys applies
mapfile-recovered keys to a scanned disc. Round-trip test added.
Rename is_unit_encrypted -> is_aacs_scrambled and decide encryption from the unit's MPEG-TS sync bytes (destroyed by the encrypted body) instead of the TP_extra copy-control (byte 0) or TS scrambling-control (byte 7) flags, which discs do not set reliably. One shared predicate now backs the decrypt gate and out-of-band key validation, so callers agree on what 'encrypted' means. Decryption restores the syncs, so a decrypted unit reads as clear and there is no flag to clear.
is_unit_encrypted read the TP_extra copy-control bits (byte 0), which are a
copy-permission flag, not an encryption flag. On discs whose sampled units are
clear navigation packets (PAT/PMT) those bits can be set while the unit is not
scrambled, so a correct Unit Key was used to 'decrypt' already-plaintext data,
produced garbage, and the key was wrongly treated as failing.
Read the actual flag instead: the TS transport_scrambling_control bits (top two
of TS-header byte 3 = byte 7 of the aligned unit, inside the clear seed). AACS
encrypts whole aligned units, so this one packet's TSC reflects the unit.
decrypt_unit now clears the TSC bits of every packet on the way out so the
result is valid unscrambled TS. Tests updated to the TSC flag.
keydb stores Media Keys per-disc, but an MK is MKB-scoped (shared across a
pressing/MKB-family). A disc whose own hash/VID isn't keyed can still resolve
if any stored MK verifies against its MKB. New path 2.5 (between PK and the
VID lookup) collects the distinct MK pool from the providers, km_verifies each
against the disc MKB, and on a UNIQUE pass derives VUK (with the disc VID) then
the UK — matching the online resolver's behavior so local keydb mode resolves
the same discs (e.g. an MK present in keydb under a sibling pressing).
km_verifies is one AES-D + magic check per candidate (cheap). Adds
KeyProvider::media_keys() + a path-2.5 unit test.
- mkb_content_len walks the MKB record stream and returns where it ends,
so callers can drop the trailing zero padding. MKB files are allocated
to a fixed size (~128 MiB) with records at the front; both MKB_RO and
MKB_RW can be padded. read_aacs_inputs* now trim to the real records
(~few MB) instead of shipping ~128 MiB of zeros.
- decrypt_keys() returns None when unit_keys is empty: an AACS state that
carries only a VID (out-of-band resolution, pre-key) is 'encrypted, no
keys', not a usable empty key set.
- read_aacs_inputs / read_aacs_inputs_from_drive now read MKB_RO.inf first.
MKB_RW.inf is a fixed ~128 MiB rewritable region that is mostly zero
padding; reading it shipped 124 MiB of nothing. MKB_RO is the real,
correctly-sized MKB (a few MB). Fall back to RW only if RO is absent.
- disable_keydb no longer drops the Volume ID. A caller resolving Unit Keys
out-of-band needs the VID (on-disc content read during the handshake).
New resolve_vid_only builds a keys-free AacsState carrying just the VID +
version metadata, so the disc reports 'encrypted, no keys' (resolved
out-of-band) instead of discarding the VID.
A caller that resolves Unit Keys out-of-band can now set disable_keydb
so the scan consults no keydb at all — neither an explicit keydb_path
nor the standard search locations. Without it, a keydb that merely sits
in a default location ('~/.config/...') silently shadows the out-of-band
path. unit_key still takes precedence over everything.
The ScanOptions.unit_key path is a generic primitive — a caller-supplied Unit
Key that bypasses keydb lookup. Doc comments + a tracing log named a specific
external source; reworded to neutral 'out-of-band / external key service' so
the library makes no assumptions about where the key came from.
Add an optional 16-byte AACS Volume ID to the Mapfile, persisted as a
'# freemkv-vid: <32-hex>' header comment so it survives to deferred-mux
and resume without touching the ISO payload. ddrescue treats the line
as a comment, so the pos/size/status data parser is unaffected.
- Mapfile gains set_vid/vid accessors; save() emits the comment in the
header block, load() parses it back (malformed/absent -> None, never
errors the load). Load->save round-trip preserves it (patch pass).
- Thread vid through CopyOptions and SweepOptions; sweep persists it
when creating/opening the mapfile.
- Unit test: round-trips the VID, asserts the saved comment, and
confirms data ranges parse identically with and without the comment.
Two coherent additions to the AACS resolver:
KeyProvider abstraction (provider.rs) — key material comes from pluggable
backends; KeyDb implements it (device/processing keys, host certs,
disc-by-hash / disc-by-vid lookup) plus orphan-DK parsing. ResolveContext
takes a provider array. Adds the SD-tree PK walker
(derive_media_key_from_pk_walked) and a `probe` module (km_verifies MK
oracle, mkb_* record parsers) used for offline key verification. Cvalue
record selection prefers 0x05, falls back to 0x07.
External-UK key source — the second, mutually-exclusive key source for the
keyserver path. ScanOptions/InputOptions gain `unit_key`; when set,
resolve_encryption_static skips keydb entirely and uses the caller-supplied
Unit Key directly (KeySource::ExternalUk). Disc::read_aacs_inputs exposes a
disc's Unit_Key_RO.inf + MKB so a caller can fetch the UK out-of-band; the
library makes no network call itself.
CHANGELOG: redact test-disc title in historical notes.
Pixelogic discs that authored a SEG_MainFeature menu/preview segment
containing a stray commentary token made the parser anchor on that
segment instead of the real FPL_MainFeature playlist. Combined with
'Audio Stream N' placeholder tokens not advancing the audio counter, a
lone eng_ACOM_ commentary at STN slot 4 collapsed onto slot 1 — tagging
the main feature track as Commentary (seen on Wicked: For Good).
Fix:
- Anchor the feature section on the FPL_ playlist when present; only
fall back to SEG_MainFeature on discs with no FPL_ section.
- Count 'Audio Stream N' placeholders so editorial audio tokens get
their true STN ordinal. Subtitle (PG Stream N) numbering is left
unchanged — counting it regressed several corpus discs.
Extract the section/numbering loop into assign_labels with unit tests.
Verified: 11/11 labels-corpus discs still PASS; Wicked commentary now
lands on the AC-3 2.0 stereo track instead of the main TrueHD.
Adds a 5th key-resolution path that consumes pre-decrypted unit keys
directly from KEYDB when the entry has no VUK field. Covers ~4,572
entries in the public keydb (~2.5%), heavily skewed toward MKBv76+ UHD
discs where DVDFab/FindVUK can no longer extract a VUK but does extract
unit keys. Partial CPS-unit coverage is rejected so a disc is never
half-decrypted.
Resolver path order reordered root-to-leaf: DK (1) → PK (2) →
KEYDB-derived MK+VID (3) → KEYDB VUK (4) → KEYDB unit keys (5).
Previous order was leaf-first.
API:
- AacsState::vuk is now Option<[u8; 16]> (was [u8; 16])
- ResolvedKeys::vuk is now Option<[u8; 16]> (was [u8; 16])
- KeySource variants reordered + new KeyDbUnitKeys variant
3 new resolver tests (path 4 still works without VID; path 5 succeeds
with pre-decrypted unit keys; path 5 rejects partial CPS coverage).
When the drive is in extended-access state (unlocked), retrieve VID via
the per-drive `read_vid_cdb` from the bundled profile instead of the
cert-based AACS REPORT_KEY handshake. Cert handshake remains the
fallback for drives that don't enter extended-access state, or whose
profile lacks the required CDB.
Empirically verified on the BU40N (signature 999ec375) against
Barbie UHD: drive returns 36 bytes from buffer 0x44 at offset
0x10E291, VID at response[4..20]. The 16 bytes match Dune Part Two's
known VID in keydb.cfg byte-for-byte, cross-validating the path
against an independent oracle.
Architectural impact:
- Renames `Drive::is_libredrive_active()` → `Drive::is_unlocked()`.
Internal `Mt1959::libredrive_active` becomes `Mt1959::unlocked`;
the prior `unlocked` (init-success flag) becomes `init_complete`
to avoid the name collision.
- `disc/encrypt.rs::Disc::read_vid` is the single entry point.
When `is_unlocked()` is true, calls `read_vid_oem` (issues the
per-drive CDB, validates the response signature high-3-bytes
`00 22 00`, returns bytes [4..20]). Otherwise delegates to
`read_vid_cert` (the existing AACS REPORT_KEY format 0x80 path).
- `DriveProfile` gains the per-drive CDB templates and identifier
blocks extracted from each per-drive firmware payload — including
`read_vid_cdb`, `read_disc_keys_cdb`, `drive_nominal_speed_cdb`,
`set_speed_max_cdb`, two cache-prime canary CDBs, the buffer-0x45
verify CDB, the firmware-upload CDB, and the unlock probe CDB.
Variants A and B differ in which fields are populated. All optional;
consumers fall back to the cert/handshake path when fields are
absent.
- New error variants `Error::DriveProfileMissing` (E7020) and
`Error::VidCdbUnavailable` (E7021). Both treated as
"OEM unavailable → try cert path" by `read_vid`, not terminal.
Closes the v0.25.x gap where HRL-burned host certs (the public
libaacs leaked cert is on every recent drive's HRL) blocked all
post-handshake VID retrieval. With OEM-driven VID:
- AACS 1.0 BD on supported drives: rips end-to-end with our existing
DKs walking the MKB.
- AACS 2.x UHD: fails honestly at the DK wall (E7018 "No usable DK"
for v77+ MKBs) instead of the misleading E7017 "No Volume ID"
the prior code surfaced. We have VID; we just don't have v77+ DK
material — that gap is a key-acquisition problem, not a code
problem.
Empirically verified on rip1 (BU40N + Barbie UHD, MKB v77,
2026-05-21): error code flipped from E7017 to E7018 as predicted.
The DK wall is now correctly the proximate failure for unrippable
modern UHD discs, instead of the indirect VID-retrieval wall the
v0.25.x cert-only path produced.
Renames and comment scrubs eliminate upstream-RE-vocabulary
references in the public crate per `feedback_no_breadcrumbs.md`.
674 tests pass (565 lib + 109 integration). No tradename leaks in
any modified file.
- Introduce DrmScheme enum (Css/Aacs10/Aacs20/Aacs21) + drm module with
uniform detect/load dispatch across all four protection schemes.
- Land AACS 2.1 Media Key Variant framework in aacs::variants: chain
derivation, MKB record types 0x82/0x83, bit-0x02 SoftKCD and bit-0x04
online-challenge detection. Aacs21 dispatcher arm wired but commented
out pending validation against a Variant-scheme disc.
- Replace aacs2: bool with AacsVersion enum across ContentCertificate,
UnitKeyFile, ResolvedKeys. resolve_keys splits into _v1/_v2/_v21.
- Delete the libredrive raw-read VID shortcut from do_handshake; the
drive enforces the AGID requirement regardless of firmware-upload
state, so the shortcut spuriously dispatched E7017 instead of
surfacing the real downstream walls.
Three coherent threads landing for v0.25.11:
1. Libredrive raw-read VID path. When Mt1959::do_unlock sees both the
MMkv active-mode marker at [12..16] and the LbDr mode-ID marker at
[16..20], Drive::is_libredrive_active() returns true and
do_handshake skips the AACS cert dance — VID is retrieved via
READ_DISC_STRUCTURE format 0x80 with AGID=0 and bus encryption is
already off. This unblocks UHD ripping on drives whose leaked host
cert is on the AACS HRL.
- platform/mt1959/mod.rs: detection + active flag + 4 unit tests.
- platform/mod.rs: PlatformDriver::is_libredrive_active trait method.
- drive/mod.rs: Drive::is_libredrive_active accessor.
- disc/encrypt.rs: do_handshake branches on the flag; new
read_volume_id_libredrive helper. Return type widened to
(Option<HandshakeResult>, Option<Error>) so callers see which
specific failure happened.
- disc/mod.rs: scan_with plumbs the new tuple through and preserves
handshake errors as disc.aacs_error.
2. Revert v0.25.9 built-in AACS keys + plugin slot. Single source of
AACS truth: keydb.cfg. The compiled-in DKs/PKs were a slim
convenience that didn't move the hard problem (no v77+ DKs) and
added a maintenance surface. Plugin slot was overlapping
functionality with the main keydb.
- Deleted src/aacs/builtin_keys.rs (4 DKs + 3 PKs).
- Removed KeyDb::with_builtins, load_or_builtins, merge_from,
merge_local_plugin, local_plugin_path, internal dedup helpers.
KeyDb::empty kept for unit-test use.
- KeyDb::load reverts to pre-0.25.9 form: read file or return I/O
error; no fallback.
- disc::encrypt::resolve_encryption keydb_path back to required
(&Path), not Option<&Path>.
- disc::scan_with surfaces KeydbLoad { path: "<no keydb in search
paths>" } sentinel when encrypted + no keydb — same sentinel
autorip's message switch already handles.
- CSS player keys in src/css/auth.rs stay compiled in; they're
1999-era public inputs separate from AACS and pre-date the 0.25.9
additions.
3. Walker fix follow-through (libaacs-parity validate_processing_key,
cvalues 0x07-then-0x05 preference, path-2/3/4 short-circuit on
zero VID) + NIST AES-CMAC KAT + VID MAC round-trip / mutation /
zero-rejection tests.
5 new Error variants for finer-grained AACS failure reporting:
AacsHostCertRejected (E7015), AacsLibredriveUnsupported (E7016),
AacsVidUnavailable (E7017), AacsMkUnavailable (E7018),
AacsVukNotInKeydb (E7019). Lets CLIs/UIs render which piece of the
AACS chain failed instead of always saying "no keys."
Two changes that make AACS 1.0 / DVD self-sufficient:
1. MKB record-type identification bug fix. `mkb_find_mk_dv` was
searching for type 0x10 (which is Type-and-Version, 12 bytes)
when the Verify Media Key Record is actually type 0x81 for
AACS 1.0 or type 0x86 for AACS 2.0/2.1. `mkb_version` had the
inverse bug. PK and DK derivation paths therefore silently
failed on every disc, masking how often the fallback paths
could have worked. Fix searches the correct types; tests added
covering both the 0x81 and 0x86 verify-record forms and the
0x10 version record at offset 8 of the body.
2. Built-in AACS keys + operator plugin slot. Four device keys
(covering MKB v01-v82+) and three processing keys (covering
v63-v68) compiled directly into the library. Combined with the
31 CSS player keys already in css/auth.rs, DVDs and Blu-rays
(AACS 1.0) now decrypt with zero external files. New plugin
path at ~/.config/freemkv/local_keys.cfg (same syntax as
keydb.cfg) layered additively on top of built-ins and main
keydb. `Disc::scan` no longer errors when keydb.cfg is absent;
AACS 2.0 / UHD still surfaces a specific error when the disc
needs keys none of the layers provide.
Public docstrings in project docs + README updated to describe the
three additive layers (built-ins → keydb.cfg → local_keys.cfg).
Pre-0.25.7 the AACS authenticate loop fired up to 16 host-cert
attempts back-to-back with no pause. Each attempt is 5-10 SCSI
REPORT_KEY/SEND_KEY exchanges, so on a disc whose host cert isn't
in our KEYDB (or one the drive rejects), the drive saw 80-160 SCSI
commands in a few hundred ms and entered a fast-fail firmware
wedge state where every subsequent CDB returns sense 05/24 until
power-cycled.
Three defences:
- MAX_CERT_ATTEMPTS capped at 3 (was 16)
- 1-second sleep between attempts
- Bail immediately on any sense_key == 0x05 (ILLEGAL_REQUEST) so
the loop can't deepen the wedge if a regression undoes the
attempt cap.
- MkvTrack::audio emits A_DTS/MA, A_DTS/HR, A_DTS per the DTS family
instead of mislabelling everything as A_DTS. Plex transcoder and
strict hardware decoders reject DTS-HD MA payload under a plain
A_DTS track.
- PgsParser is now stateful: pairs display PCS with the following
empty PCS to compute a duration. Frame::duration_ns + PesFrame::duration_ns
carry it through; MkvMuxer::write_frame gains a final Option<u64>
parameter that emits BlockGroup + BlockDuration when set. Fixes
subtitle bitmaps lingering past their intended end-time.
* `PrefetchedSectorSource::new_with_events` adds an optional
`event_fn` callback that fires `BytesRead` after every successful
batch from the producer thread. The original `new()` becomes a
thin no-events wrapper. Lets autorip wire the highway and still
get UI progress events without polling the consumer side.
* `build_iso_pipeline` grows an `event_fn` arg so the autorip
multipass mux can pipe BytesRead straight through to its progress
UI.
* Stream trait gains a default `errors() -> u64` method (= 0) so
Box<dyn Stream> callers (autorip's mux loop) can read the
skip-on-error counter without downcasting. `DiscStream` overrides
to return its `errors` field.
* Delete `DiscStream::new_pipeline` and the pipeline-mode fields
(`demux_thread`, `demux_rx`) plus the `read_pipeline` helper.
All pipeline construction now goes through
`PipelinedPesStream` via `build_iso_pipeline`; `DiscStream`
becomes the single-thread-only inline path used by the drive
single-pass read.
* `lib.rs` re-exports `build_iso_pipeline`.
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.
MKV: cluster boundaries now require a video keyframe in addition to the
5s minimum, so every cluster has a CuePoint at its start. Pre-first-
keyframe frames are dropped. Adds a SeekHead at Segment start with
fixed-width back-patched SeekPositions for Info/Tracks/Chapters/Cues.
Before this change a 2h26m UHD rip had 52 CuePoints across ~1750
clusters and a 16.5-minute gap between adjacent seek entries; players
seeking inside that gap had to scan from the prior cue. After, one
CuePoint per cluster.
TS (tsmux production path + m2ts_mux): PesFrame.keyframe is plumbed
end-to-end. Codec-private parameter sets are prepended on the first
keyframe (not the first frame); non-key video before any keyframe is
dropped. The first TS packet of a keyframe video PES carries an
adaptation field with random_access_indicator=1. m2ts_mux previously
hardcoded RAI=1 on every PCR packet; that is now gated on the current
PES being a keyframe video PES, combining correctly with PCR when both
land on the same packet.
Adds 17 tests covering keyframe alignment, cue count/position/timing,
SeekHead correctness, RAI set/clear, codec_private gating, non-key drop,
and PCR+RAI combination.
iter13 strace finding: producer thread (mux ISO reader) spends 80%
of wall-clock in state D (NFS RPC wait), doing 207 preads/sec at
103 us each. Pipe is 78 MB/s isolated read; we use ~25 MB/s.
FileSectorSource was using direct per-sector pread (0.21.3 bypass).
That bypass was justified under Phase 2.5 + 0.21.7 producer-poll cap
("32 MiB refill bursts the TCP connection enough to starve the
writer thread"). Both of those conditions are gone now (iter8
baseline: no Phase 2.5, no producer poll cap).
The 4 MiB buffer infrastructure was preserved with #[allow(dead_code)]
in case re-engagement was ever wanted. iter14 just routes the hot
path through buffer_covers + refill + memcpy. Net diff: ~10 LOC of
business logic, 5 unit tests already cover the contract.
Expected: producer's effective read rate jumps from 25 → 60+ MB/s
(matches dd ceiling for 1+ MiB block reads). If consumer side keeps
up, mean mux climbs from 28.7 → 35-50 MB/s. If consumer is now the
cap, we see a clear ceiling around 30-35 and we know where to look
next.
Critically: this change ONLY affects mux-from-ISO. Disc→ISO sweep,
Pass N bad-sector retry, AACS, drive ops, mapfile, recovery — all
untouched (they use DriveSectorSource which is a separate impl).
iter12 revert restored chunk to 128 (iter11 value) by way of the
revert chain. Setting it back explicitly to 32 for iter13. We're
back to iter8 baseline config (no Phase 2.5, 32 MiB chunks,
DONTNEED, no app-level FileSectorSource buffer, channel depth 32).
iter13 is instrumentation: strace the mux thread during a known-dip
to see where time is actually going.
iter11 (128 MiB) crashed to 16.6 mean — chunk-size sweet spot is
firmly 32 MiB. Locking in.
iter12 hypothesis: each NFS write past the file's EOF triggers a
server-side SETATTR (metadata commit) to update the file length.
With ~62 GiB of MKV output and writes at chunk boundaries, that's
thousands of SETATTRs per rip. By using plain fallocate (mode 0)
the file is pre-extended to size_bytes up front; subsequent writes
overwrite the pre-extended region with no metadata ops.
Adds high_water tracking + truncate_at_sync so we ftruncate down
to actual content size if the size hint was an overestimate.
iter9 (64 MiB on top of no-P2.5) regressed -1.2 from iter8. 32 MiB
remains best on the no-P2.5 path. Net iter10 = iter8 minus DONTNEED
(via the prior commit re-applying f4a881b).
iter8 (Phase 2.5 disabled, 32 MiB chunks) hit 28.7 MB/s mean
— 1.3 MB/s below R2 floor. Without Phase 2.5, WAIT_AFTER blocks the
mux thread directly once per chunk. Halving the WAIT_AFTER frequency
(32 → 64 MiB chunks) should raise the mean without changing the
underlying architecture.
iter7's 64 MiB chunks didn't help (23.1 vs iter4's 24.0). Reverting
to 32 MiB so iter8 differs from iter4 by exactly one variable:
Phase 2.5 disabled / direct passthrough mux thread.
Test question: is Phase 2.5 helping at all? If iter8 mean > iter4,
Phase 2.5 has been a net negative on this rig the whole time. If
iter8 mean < iter4, Phase 2.5 is doing what it claimed.
iter6 (8 MiB chunks) regressed mean -8.2 MB/s vs iter4 (32 MiB).
Trend: bigger = better in this workload, against the page-age
theory. Try 64 MiB to see if fewer/larger syncs raise mean further.
0.21.14 went to 128 MiB and was reverted; 64 is between.
iter5 (256-frame channel) regressed -1.8 MB/s vs iter4. Reverting to
32 frames.
iter4 sample pattern shows clear ~30 s oscillation (peak 45 MB/s →
dip 3 MB/s → recovery). Matches Linux vm.dirty_expire_centisecs
default (30 s). 32 MiB chunks at 25 MB/s issue WAIT_AFTER every
~1.3 s, which can't outrun the kernel's own page-age limit, so
pages buildup then flush in bursts. Smaller 8 MiB chunks
(WAIT_AFTER every ~0.33 s) should keep the dirty-page set young
and eliminate the periodic flush-burst dip.
iter4 measurement (Phase 2.5 + DONTNEED, no FileSectorSource buffer)
showed mean 24.0 MB/s but with dips to 2.8 MB/s. Channel at 32 frames
(~1.6 MiB at 50 KB/frame avg) drains in <100 ms on any producer pause,
starving the consumer.
256 frames = ~12 MiB ≈ 3-4 sec of consumer drain at the rolling-avg
floor we want to hit. Should coast through producer micro-stalls
without idle gaps.
iter1 baseline (Phase 2.5 + DONTNEED restored) measured at 18.4 MB/s
mean on Civil War remux — well below the rig's 37 MB/s concurrent-r+w
ceiling. Per-sector pread is the producer-side bottleneck: ~50us per
pread on NFS = ~19k preads/sec = effective ceiling near what we see.
The 0.21.3 bypass commit cited an A/B test showing the buffer hurt
throughput on NFS bidirectional workloads. That test was taken under
the 0.21.7 producer polling cap; once the cap is gone, the cap was
the bottleneck, not the buffer. Same invalidation pattern as the
0.21.5 Phase 2.5 revert.
Restored the buffered path. DONTNEED page-cache eviction from 0.21.6
stays intact.
Three coupled changes that together meet the "stable max throughput
on any medium" bar:
1. Remove `is_nfs` from `skip_wait`. WAIT_AFTER runs on every medium
now. The `bounded_syscall` 30s safety net (already in place) covers
the wedged-FS case generically — no need to predict NFS-hangs at
compile time. Re-applies the 0.21.12 fix that landed the flat
25 MB/s on NFS in the first place.
2. Drop the `posix_fadvise(DONTNEED)` calls after WAIT_AFTER. Bounded
*dirty* pages (the actual invariant) does not require evicting
*clean* pages. DONTNEED was forcing read-modify-write on any
in-window seek-then-write — exactly the pattern matroska
cluster-size backpatches produce. Empirical 2026-05-15: write side
of mux fed NFS at 43 MB/s while the file grew at 25 MB/s, an 18
MB/s overhead almost certainly composed of those RMW cycles. The
kernel reclaims clean pages under LRU when memory is actually
needed — we don't have to ask.
3. Replace `detect_nfs(fd) -> bool` with `detect_storage_class(fd)
-> (StorageClass, chunk_bytes_seed)`. Medium detection happens
*once* at construction and produces *one* output: the initial
`chunk_bytes` seed for the autotuner. NFS gets 64 MiB (commit ack
~10-30 ms; needs bigger chunks to amortize); other media use the
caller's hint. No hot-path branches on medium. The autotuner drives
all subsequent decisions from measured WAIT_AFTER p95 latency,
identically on every (OS, FS) combination.
Module-level doc rewritten to match: no more "NFS escape hatch", no
"is_nfs" framing. The whole writeback module is now medium-agnostic
except for one labelled detection point.
The pipeline's adaptive autotuner grows chunk_bytes only when the p95
WAIT_AFTER latency exceeds 200 ms. On NFS, sync_file_range(WAIT_AFTER)
translates to an NFS COMMIT RPC whose ack lands within ~10 ms — so
the autotuner never triggered and the pipeline stayed at the original
32 MiB initial value forever.
That capped sustained mux throughput by paying NFS COMMIT-RPC overhead
roughly once per second of writes. Bidirectional mountstats on rip1
2026-05-15: write side 29 MB/s (RTT 30 ms but exec_time 257 ms — 220 ms
queue/serial waiting) while concurrent dd on the same disk shows
~91 MB/s write + ~65 MB/s read available.
128 MiB initial drops COMMIT cadence 4x while keeping the bounded-
cache invariant intact (worst-case dirty pages ~2 x chunk = 256 MiB,
well under vm.dirty_ratio = 6.6 GB on the 32 GB rig). The adaptive
autotuner can still grow further (up to 256 MiB) or shrink if
WAIT_AFTER ever measures sub-20 ms p95 on faster media.
The WritebackPipeline's WAIT_AFTER + posix_fadvise(DONTNEED) dance
keeps dirty pages bounded at ~2 × chunk_bytes by waiting for each
chunk's writeback to commit before issuing the DONTNEED hint to drop
it from cache. The original 0.18-era design unconditionally skipped
this on NFS on the premise that "NFS clients have their own buffering
and commit semantics that handle dirty-page bounds without us forcing
the issue."
Empirically wrong. On unraid-1 NFS the kernel client buffers dirty
pages up to vm.dirty_ratio (default 20% of RAM = ~6.6 GB on the rip1
host) before the kernel forces writeback and throttles app writes.
Result on 0.21.11 mux measured 2026-05-15: mux throughput cycled
between ~45 MB/s (cache absorbing) and ~7 MB/s (cache draining under
throttle) on a ~100 s period — exactly the burst-flush pathology this
pipeline was built to fix, but disabled on the medium it actually
runs on. /proc/meminfo Dirty: column climbed lockstep with mux
write rate during the slow half of every cycle, confirming the cause.
The original safety concern — `sync_file_range(WAIT_AFTER)` hanging
indefinitely on a wedged NFS server — is already handled by
`wait_after_with_timeout`'s `bounded_syscall` wrapper (30 s deadline).
If a real WAIT_AFTER call exceeds the deadline the pipeline flips to
the `degraded` state and skips WAIT_AFTER + DONTNEED for the rest of
its life — same effect as the old NFS branch, but only triggered when
something is genuinely broken rather than as a blanket exception.
This change is medium-agnostic: every medium goes through the same
path now, every medium gets the same safety net, and the
ADAPTIVE_WINDOW chunk-size autotuner (lines 226-255 — measures p95 of
WAIT_AFTER and resizes between 4 MiB and 256 MiB) finally activates
on NFS where previously it was dead code. Slow medium auto-grows
chunks to amortise per-chunk overhead; fast medium auto-shrinks to
keep cache pressure tight; nothing in the code special-cases the
filesystem type.
`is_nfs` is still detected (for logging + observability) but no
longer keys `skip_wait`. Module doc + startup log line updated to
match.
Pre-coalescing the Phase-2.5 writer thread issued one `file.write_all`
syscall per `Cmd::Write` dequeued. The mux side calls
`WritebackFile::write_all(buf)` per PES frame, typically 30-200 KB.
On NFS that translates to one RPC per syscall, capping per-thread
throughput at `(wsize / rtt) × inflight` — well below what the same
disk delivers under a 1 MiB `dd oflag=direct` workload (empirical
2026-05-15: dd 71 MB/s vs mux ~25 MB/s sustained, with instantaneous
samples bursting 7→108 MB/s as the kernel page cache filled and
drained on its own cadence).
Coalesce instead: dequeue drains consecutive `Cmd::Write` items off
the ring up to a 1 MiB byte budget, returns them as
`DequeuedWork::Writes(Vec<Vec<u8>>)`, and the run loop concatenates
into one contiguous buffer and issues a single `file.write_all`.
Non-write commands (Seek, Flush, SyncAll, Finish) break the run and
are returned one at a time as `DequeuedWork::Other`, preserving their
ordering relative to the writes.
Single-buffer fast path avoids the concat allocation when only one
write is in the queue at dequeue time. A single oversize write (e.g.
the rare matroska cluster larger than 1 MiB) is admitted alone so it
still makes progress — the kernel splits internally.
This is generic across mediums: bigger app writes are at-least-as-
good on local SSD, HDD, or NFS. On fast storage the ring rarely fills
so coalescing is mostly a no-op; on slow storage with significant
per-RPC overhead it materially improves throughput.
Tests in `tests/` (write_then_drop_persists_bytes, sync_all_drains,
seek_then_patch_roundtrip, flush_is_observed_in_order) still pass —
ordering and durability semantics are unchanged.
The depth was conservative because pre-0.21.8 a full sync_file_range
stall on NFS could traverse this channel and pin the producer. With
0.21.8's restored Phase 2.5 writer thread + 128 MiB byte-bounded ring
inside WritebackFile, every blocking syscall happens downstream of
this channel — never on it. The original "smaller buffer reduces
backpressure risk" rationale no longer applies.
Empirical (2026-05-15 Civil War UHD remux on 0.21.8): 30.9 MB/s
sustained but instantaneous samples spanning 9-53 MB/s, stdev 9.3.
Distribution clusters 52% of samples in 25-35 MB/s but has a long
9-15 MB/s tail. The tail corresponds to brief stalls in the matroska
builder when the sink momentarily lags — exactly the case a deeper
inter-thread channel covers. 32 frames at PES-frame sizes is still
well under a megabyte of additional memory, so the cost is zero.
Reverts 523af46. That revert was made on the premise that Phase 2.5
caused a ~60% mux throughput regression on NFS bidirectional workloads.
The premise was wrong: at the time of measurement the producer was
capped at ~8 MB/s by a 50 ms thread::sleep poll in
Pipeline::send_with_halt (fixed in v0.21.7's io/pipeline change), so
the comparison was measuring the polling cap on both sides.
With the polling cap removed, direct passthrough exposes the kernel's
default dirty-page writeback pathology on NFS: writes accumulate, the
kernel periodically bursts a flush, app writes block for the burst.
Observed empirically on Civil War UHD remux 2026-05-14: 5-45 MB/s
spiking around a ~21 MB/s sustained mean, dominated by burst-flush
back-pressure cycles.
Phase 2.5 decouples the mux thread from the file syscall:
* mux writes complete instantly into a 128 MiB byte-bounded SPSC ring,
* a dedicated writer thread executes the real File writes, seeks,
and sync_file_range calls; can sit in a kernel burst without
blocking the mux pipeline,
* backpressure via Condvar notify/wait, no polling primitive,
* the ActiveClusterBuffer fast-path preserves the original MKV
cluster-backpatch optimisation so in-window seeks don't drain
the current writeback chunk.
Halt-safety is preserved: every blocking writeback syscall on the
writer thread still routes through bounded_syscall with a 60 s
deadline. A wedged NFS server cannot trap the writer indefinitely;
the muxer keeps queueing into the ring; the kernel page cache and
the ring together absorb the stall.
The halt-aware send loop polled try_send on a 50 ms sleep slice when
the channel was full. That capped producer throughput at 1 / 50 ms =
20 frames/sec ≈ 1 MB/s at typical PES frame sizes — way below NFS,
let alone local SSD/NVMe. Multi-day diagnostic 2026-05-13/14 surfaced
it as the root cause of the 18 → 3 MB/s mux throughput regression on
0.21.x.
Replaced std::sync::mpsc::sync_channel with crossbeam_channel::bounded
and switched send_with_halt to send_timeout. Producer now BLOCKS on
consumer drain (kernel-wakeup) instead of polling — the timeout slice
(250 ms) only fires when the producer is waiting for stop signal
observation, never on the happy path.
Result: no throughput cap from this primitive at any medium speed.
Mux is bounded by actual storage / network bandwidth, not by our
channel implementation.
Same fix needs to land in autorip's mux.rs producer-side
sync_channel (separate sibling commit).
Documented in (internal)/memory/
feedback_send_with_halt_poll_throttle.md.
Empirical: isolated NFS read 70 MB/s + write 93 MB/s on the rip1 setup
right now, but mux throughput pinned at 2.7 MB/s on 0.21.5. NOT
environmental — code regression.
Root cause: Phase 1 silently dropped the read-side
posix_fadvise(POSIX_FADV_DONTNEED) eviction that the pre-Phase-1 (0.20.7)
hot path had. Without it, an 85 GB streaming ISO read pins the entire
file in the kernel page cache, starving concurrent MKV writeback. 0.21.2
then also dropped the POSIX_FADV_SEQUENTIAL hint on the same theory,
compounding the regression.
Restored both, per-OS split:
- linux: posix_fadvise(SEQUENTIAL) at open + posix_fadvise(DONTNEED)
on consumed 32 MiB windows
- macos: F_RDADVISE hint at open (kept); drop_window no-op (macOS unified
buffer cache less prone to the pin pathology)
- windows / other: both no-op stubs
Target mux speed restored to 20+ MB/s (per concurrent-NFS math:
70/2 read × 0.73 MKV/ISO ratio ≈ 25 MB/s achievable).
The Phase 2.5 writer-thread + bounded ring + ActiveClusterBuffer
architecture introduced a ~60% mux throughput regression on NFS
bidirectional workloads (18 MB/s -> 7-8 MB/s in 0.21.x). Other
candidates (FileSectorSource readahead buffer, per-OS sink split)
ruled out empirically across 0.21.1-0.21.4.
Reverts WritebackFile's hot path to direct File passthrough matching
the 0.20.7 baseline:
* Write/write_all/flush call straight through to self.file.
* Seek calls through to self.file and notifies the pipeline.
* sync_all runs pipeline.finalize() then per-OS durable_sync.
Kept (intentional): the per-OS file split established in earlier work
(writeback_file/{linux,macos,windows,other}.rs). create_with_size_hint
still dispatches to platform::preallocate and sync_all still routes
through platform::durable_sync (bounded_syscall 60s deadline on
Linux/macOS), so halt-safety on a wedged NFS fsync is preserved.
Removed:
* Cmd / RingState / Shared / WriterState / writer_thread_main
* ActiveClusterBuffer (active-cluster window for in-window seeks)
* push_command / dequeue / publish_error / mark_writer_gone
* RING_CAPACITY_BYTES, ACTIVE_CLUSTER_WINDOW_BYTES,
MAX_WRITE_CHUNK_BYTES, WRITER_THREAD_NAME constants
* writer JoinHandle field + Drop join logic
* Tests that asserted internal writer-thread state
(backpressure_blocks_when_ring_full, in/out_of_window_seek_*,
active_cluster_buffer_*, writer_thread_panic_surfaces_on_drop)
Kept tests (correctness-of-output only):
* write_then_drop_persists_bytes
* sync_all_drains_and_flushes (renamed from sync_all_blocks_until_ring_drains)
* seek_then_patch_roundtrip (replaces in_window_seek_then_patch_roundtrip)
* flush_is_observed_in_order
mod.rs: 1026 -> 303 lines. linux/macos/windows/other.rs untouched.
The three tests (multi_sector_read_spanning_buffer_boundary,
backward_seek_rebuffers, partial_buffer_at_eof) were asserting
internal buf_start_lba / buf_len_sectors state. With 0.21.3's
read-path bypass, those fields are no longer mutated. The
byte-level contract assertions (read returns correct bytes for
every scenario the tests cover) remain intact.
The 32 MiB readahead window (0.21.0–0.21.1) regressed mux throughput
on NFS bidirectional workloads vs the pre-Phase-1 0.20.7 baseline
(18 -> 7-8 MB/s). The 0.21.2 4 MiB shrink made it worse (5-6 MB/s).
Both signs point at the application-level buffer itself, not the size.
This commit bypasses the buffer entirely on the read path — every
read_sectors call seeks and pread()s direct to the file. That matches
0.20.7's hot path. Kernel readahead handles the policy; on NFS that
interleaves naturally with concurrent writes on the same TCP
connection.
Buffer state fields and refill/buffer_covers are kept so the
structure is preserved for a future per-source-type policy (e.g. a
local-disk source where batched reads ARE beneficial), and so the
existing tests still exercise that machinery.
Empirical regression observed during 0.21.1 mux test on rip1/unraid-1:
historical 0.20.7 baseline averaged ~18 MB/s mux throughput; 0.21.1
dropped to ~7-8 MB/s flat. Same NFS source + destination, same disc.
Suspect: 32 MiB FileSectorSource readahead + posix_fadvise(SEQUENTIAL)
together saturate the TCP connection on read bursts, starving the
writer thread's concurrent NFS writes (mux reads the source ISO and
writes the MKV over the same connection).
- READAHEAD_BUF_BYTES: 32 MiB -> 4 MiB. Matches NFS rsize=1 MiB * 4
round-trips per refill, interleaves cleanly with writes.
- linux/hint_sequential: now no-op. Kernel's default ~128 KiB
readahead is what we want on NFS-backed ISOs (the dominant case).
Per-OS file stays so we can re-enable a hint cleanly later if a
different path benefits.
CI's lint workflow runs clippy on linux target where:
- platform/fs_type/linux.rs and io/writeback/linux.rs: the i64 cast
on buf.f_type / NFS_SUPER_MAGIC is unnecessary on glibc x86_64 (both
already i64) but required on musl (c_ulong); silence the lint via
inline allow with explanatory comment.
- mux/m2ts_mux/packet.rs: doc comment continuation across lines was
parsed as an unindented list item. Reworded to a single flowing
sentence.
- m2ts_mux: replace u64::is_multiple_of (stable in 1.87+) with %.
CI on the pinned 1.86 toolchain rejected the unstable feature use.
- mux/{fmp4,hevc,m2ts_mux}: rustfmt drift cleanup (test-code wrapping).
SocketSink + UdpSocketSink (`src/io/sink/socket.rs`) — sequential-only
TCP/UDP write destinations. SocketSink wraps BufWriter<TcpStream> with
1 MiB capacity, tunes SO_SNDBUF on construction, calls shutdown(Write)
on finish(). UdpSocketSink emits one datagram per write — caller
packetizes. Both impl Write+Send and thus satisfy SequentialSink via
the Phase 2 blanket; neither impls Seek, so RandomAccessSink is
correctly inaccessible (compile error to mux MKV onto a socket).
New sequential container muxers in src/mux/:
- hevc/ — raw HEVC Annex B elementary stream. Length-prefixed NALU
→ 00 00 00 01 NALU. hvcC parsing emits VPS/SPS/PPS once at stream
head. Fully ships.
- m2ts_mux/ — standard MPEG-TS (188-byte packets). Single program,
HEVC video on PID 0x100, optional AC3/TrueHD audio on PID 0x101.
PAT+PMT re-emitted every 250 packets; PCR stamped on video every
40 packets. Hand-rolled, no new deps. Distinct from the existing
BD-TS (192-byte) `mux::m2ts::M2tsStream` — that path stays as-is.
- fmp4/ — fragmented MP4. STUB: ftyp + minimal moov skeleton with
one HEVC video trak + mvex/trex. Media fragments (moof+mdat) are
TODO for v0.22.0 — write_video accumulates frames into a pending
buffer that finish() clears. Init segment is well-formed enough
that init_segment_starts_with_ftyp_then_moov asserts the box
chain.
17 new unit tests added (socket round-trip, HEVC Annex B conversion,
M2TS packet alignment + PAT/PMT cadence + per-PID CC, fMP4 box chain).
All 514 lib tests + 17 new = pass on Rust 1.86 (fmt + clippy + test
via (internal)/scripts/precommit.sh libfreemkv).
No new dependencies. No version bump. Don't-touch list clean.
WritebackFile now offloads all File I/O to a dedicated writer thread.
Muxer's Write/Seek/sync_all push into a bounded byte ring; the writer
drains the ring and runs the syscalls.
- Commands: Write(Vec<u8>), Seek(SeekFrom), SyncAll(oneshot),
Finish(oneshot). One ring carries all four; ordering preserved.
- ActiveClusterBuffer mirrors the last ACTIVE_CLUSTER_WINDOW_BYTES
written. Seek-back within window → in-memory patch + re-emit
(no forced drain). Seek-back outside window → real drain+seek.
Wins for MKV: cluster size patches almost always land inside the
active window; only the end-of-mux Cues + segment header backpatch
fall outside.
- Ring capacity RING_CAPACITY_BYTES = 128 MiB. Backpressure on full
blocks the muxer (correct semantics for archival workflows).
- All syscalls in writer thread wrapped in bounded_syscall(60s) so
a wedged NFS doesn't pin the thread forever.
- Drop drains via Finish + joins the writer thread; sync_all blocks
until ring drained AND underlying fsync completes.
Introduces the SequentialSink / RandomAccessSink trait pair under
io::sink and an open_for_mkv dispatch helper that picks WritebackFile
on Linux+NFS and LocalFileSink everywhere else. LocalFileSink wraps
BufWriter<File> with a 4 MiB buffer and exposes a per-OS preallocate
path (fallocate on Linux, F_PREALLOCATE on macOS, no-op fallback).
Adds platform::fs_type::detect with a per-OS split (statfs on Linux /
macOS, UNC heuristic on Windows, Unknown elsewhere) so construction-
site dispatch has a single primitive to call.
Blanket impls cover the common shapes: any Write+Send is a
SequentialSink, and any SequentialSink+Seek is a RandomAccessSink.
WritebackFile satisfies the random-access trait via the blanket impl
without needing an explicit per-type impl. No callers wired yet — the
mux::resolve construction sites stay on WritebackFile pending Phase 3.
Tests: 5 new sink/preallocate tests + 3 fs_type tests (1 ignored,
needs a real NFS mount). cargo +1.86 fmt + clippy + tests all green.
Three changes targeting 0.20.9's "muxer never read-stalls on NFS read
latency" invariant:
A. FileSectorSource gets a 32 MiB internal read-ahead buffer
(READAHEAD_BUF_BYTES). Splits out from src/sector/file.rs into
src/io/file_sector_source/ with per-OS open hints (Linux
posix_fadvise(SEQUENTIAL), macOS fcntl(F_RDADVISE) with 64 MiB
cap, Windows TODO stub, BSD/illumos no-op). Backward seeks
rebuffer; partial reads at EOF return only the bytes that exist;
oversize-request bypass for count > BUF_SECTORS.
B. WritebackFile inline #[cfg(target_os = "linux")] blocks split
into per-OS files under src/io/writeback_file/. Linux unchanged
(fallocate KEEP_SIZE, fsync via bounded_syscall). macOS gets a
real F_PREALLOCATE + F_FULLFSYNC impl (was a "skipped (non-linux)"
debug log before). Windows is a stub (FlushFileBuffers via
std sync_all; TODO for SetFileValidData). BSDs/illumos fall back
to std sync_all.
C. New byte_channel module — byte-bounded producer/consumer wrapping
std sync_channel with Mutex/Condvar byte accounting. Sender blocks
when used_bytes + item.byte_size() > capacity. HasByteSize impl
for PesFrame. Default cap BYTE_CHANNEL_DEFAULT_CAPACITY = 64 MiB,
sized to absorb worst-case NFS read p99 (~2 s × UHD peak compressed
~15 MB/s). The mux call site lives in autorip (out of scope here);
this lands the primitive in libfreemkv for autorip to adopt.
Test counts: byte_channel +6, file_sector_source +5, sector::file
round-trip suite (3) preserved. passn_handler_ab.rs A/B fixture
(8 profiles) still green.
precommit.sh libfreemkv: fmt + clippy + test all green on Rust 1.86.
No version bump; no Cargo.lock changes; no forbidden-file edits
(disc/patch.rs, disc/read_error.rs, io/pipeline.rs,
tests/passn_handler_ab.rs).
The 0.20.7 work lives downstream in autorip — process-level safety net
(hard watchdog 5-min mux escalation + std::process::exit, restart-loop
counter + auto-quarantine after 3 attempts, partial-state preservation,
failure_reason surfaced in /api/state).
Bumping libfreemkv to 0.20.7 keeps the 4 crates on the unified release
train per project docs.
Generalizes 0.20.5's hand-written wait_after_with_timeout into a
reusable primitive. After this change, every blocking syscall in the
recovery + mux paths is wrapped, so cooperative Halt has bounded
~250 ms latency reach even into kernel-owned thread states.
New module src/io/bounded.rs:
- BoundedError { Halted, Timeout, WorkerLost }
- bounded_syscall<F, R>(halt: Option<&Halt>, timeout, op) -> Result<R, BoundedError>
- Worker thread runs op; main thread recv_timeouts on a rendezvous
channel in 250 ms slices, polling halt between slices.
- Worker is intentionally leaked on timeout/halt — kernel reaps when
the syscall finally returns or at process exit. Calling thread is
NEVER trapped inside a kernel call.
- 6 unit tests cover the happy path + each error variant.
Refactored callsites:
- src/io/writeback/linux.rs::wait_after_with_timeout now delegates
to bounded_syscall. ~30 LOC of duplicated channel/thread plumbing
deleted. Same semantics, cleaner.
- src/io/writeback_file.rs::WritebackFile::sync_all now wraps the
final libc::fsync(fd) with bounded_syscall (60 s deadline). On
timeout: log error at target=mux and return Ok — kernel will flush
on close, best-effort but bounded. Covers FileSectorSink::finish,
PatchSink::close, SweepSink::close, and the mux MKV finalize path
(they all sync through WritebackFile).
What still hangs (deliberately not wrapped — too hot a path):
- File::write itself. Per-frame write on a wedged NFS could still
block; but back-pressure from a stuck consumer means the producer
notices within seconds, not minutes — different failure mode than
the WAIT_AFTER hang 0.20.5/0.20.6 fix.
Targets the recurring mux hang on NFS dest where the consumer thread
sits indefinitely inside libc::sync_file_range(SYNC_FILE_RANGE_WAIT_AFTER)
because the NFS server never returns a commit ack. The whole rip
wedges; halt is cooperative and can't reach inside a kernel syscall.
A. NFS detection at WritebackPipeline construction (fstatfs f_type ==
NFS_SUPER_MAGIC 0x6969). When NFS:
- Skip SYNC_FILE_RANGE_WAIT_AFTER entirely.
- Skip posix_fadvise(DONTNEED) — NFS client handles its own buffering.
- Still issue async SYNC_FILE_RANGE_WRITE (harmless hint).
Cannot hang on a syscall not made. fstatfs failure fails open (assume
local). Logged at info on construction so operators see which strategy
is active. The whole hang vector is removed for NFS deployments.
B. Hard timeout on WAIT_AFTER for non-NFS (defense in depth, since
even a degraded local disk could in principle hang the syscall).
Each WAIT_AFTER runs on a worker thread; main thread waits on a
sync_channel rendezvous with 30s deadline. On timeout: log error,
set per-pipeline 'degraded' Arc<AtomicBool>, downgrade to NFS-style
skip for the rest of the pipeline's life. Worker thread leaks
intentionally — it'll unwind when the syscall eventually returns or
the process exits. Converts indefinite freeze into 'log loud +
downgrade + keep ripping'.
C. Diagnostic logging for the 73%-of-this-movie reproduction:
- WritebackFile::seek logs every non-trivial seek (from, to, signed
delta) at target=mux so we can see if MkvMuxer seeks back before
a stall.
- WritebackPipeline::finalize logs the chunk being finalised before
any WAIT_AFTER call, so a hung chunk is identifiable by offset.
No new dependencies. macOS / Windows noop stubs unchanged. Net
+198 LOC libfreemkv (mostly writeback/linux.rs).
Four targeted changes to maximize mux throughput regardless of storage
backend (local SSD, local HDD, NFS, network share) and surface enough
log data to diagnose 'mux slow' reports without a re-rip:
1. POSIX_FADV_SEQUENTIAL on FileSectorSource::open (Linux only).
Widens the kernel readahead window for sequential ISO reads. One
syscall at open, free on every storage type.
2. POSIX_FADV_DONTNEED on the ISO read side after every 32 MiB chunk.
Mirrors the writeback DONTNEED that already runs on the write
side. Keeps the read-side page cache bounded during multi-GB ISO
reads — eliminates the OOM-pressure / eviction-storm risk on
long mux runs. Linux only; per-drop trace at target="mux".
3. WritebackFile::create_with_size_hint(path, size_bytes) calls
fallocate(FALLOC_FL_KEEP_SIZE) on Linux to pre-reserve extents
for the output. Reported file size stays 0 (writes grow it
naturally) but the on-disk extent allocation is contiguous —
reduces extent fragmentation for big sequential muxes. Wired
into mkv:// and m2ts:// output paths via DiscTitle::size_bytes.
No-op on macOS/Windows; old create() kept with #[allow(dead_code)]
for callers without a size hint.
4. Adaptive WRITEBACK_CHUNK_BYTES in the Linux writeback pipeline.
Tracks sync_file_range(WAIT_AFTER) elapsed_ms in a rolling
16-sample window. p95 > 200 ms → double chunk size (cap 256 MiB).
p95 < 20 ms → halve (floor 4 MiB). One algorithm, both
fast-storage (small chunks, responsive) and slow-storage (big
chunks, fewer commit round-trips) optimized. Per-chunk trace +
per-32-chunk debug snapshot + info-on-resize so an operator can
see where the autoscaler settled.
All four are universal — no storage-type detection, no env vars to
flip, no per-deploy tuning required. Total +201/-6 across four files.
WO-5 (partial): the patch backtrack inner loop ('while bt_pos <
backtrack_end' in disc/patch.rs) issues per-sector reads to fill the
gap created by a damage-window skip. A long backtrack span can run
minutes; without an inline halt poll, the outer halt only takes
effect when control returns to the per-range loop. Adds a halt poll
at the top of each iteration so cancellation propagates inside the
backtrack span.
Per-sector read failures inside the backtrack already drop through
to the main fail path; this only changes the cancellation latency
between an /api/stop call and the producer actually unwinding. Drops
worst-case unwind from 'whole backtrack span × per-sector recovery
timeout' (minutes) to 'one in-flight SCSI command' (seconds).
The broader Arc<AtomicBool> → Halt migration on CopyOptions /
SweepOptions / PatchOptions / Drive::halt and Pipeline::send halt-
awareness is deferred — separate cycle, larger API impact.
WO-3c: Delete dead non-NOT_READY retry block (~100 LOC). The block
declared retry_count = 0 inside the per-iteration Err arm, so the
'MAX_NON_NOT_READY_RETRIES=3' budget actually fired exactly once
(1s pause + 1 retry) before falling through to NonTrimmed. The
'exponential backoff: 2s, 4s, 8s' comment was wrong by construction.
Cross-pass NonTrimmed retry (each pass gives the same sectors another
shot) already covers the recovery case, and gives the drive minutes
between attempts instead of 1-8 seconds — empirically what stochastic
recovery on the BU40N actually needs.
WO-4 (targeted slice): Add wedge-family cooldown on HARDWARE_ERROR /
ILLEGAL_REQUEST senses. These are what the BU40N's firmware fast-fail
state returns; every subsequent read in that state comes back in
<100ms. Pre-fix patch hammered the drive: mark NonTrimmed, sleep 1s,
advance, hit next wedge, mark, sleep 1s — exactly the rapid-retry
cadence the firmware is sensitive to. Now a wedge-family sense triggers
WEDGE_FAMILY_COOLDOWN_SECS=30 cooldown (matches read_error.rs's
ZONE_ENTRY_COOLDOWN_SECS), and WEDGE_ABORT_THRESHOLD=16 consecutive
wedges aborts the pass for autorip eject+reload. Any non-wedge read
clears the counter.
Also drops the duplicate NonTrimmed dispatch (Mapfile::record is
idempotent so it wasn't a correctness bug, but it doubled per-failure
consumer work).
WO-2 (delete SectorReader trait):
- The 0.18 trait split into SectorSource (read-only) and SectorSink
(write-only) is final; the legacy SectorReader alias was a bridge.
- Renames every internal &mut dyn SectorReader (~25 sites) to
&mut dyn SectorSource. The trait method capacity() becomes
capacity_sectors() with a default of 0 (preserves SectorReader's
default-0 behavior).
- Deletes the SectorReader trait, its blanket-to-Source bridge, and
the FileSectorReader type alias. Adds explicit forwarding impls
for Box<dyn SectorSource> and &mut dyn SectorSource so generic
decorators like DecryptingSectorSource<S: SectorSource> compose.
WO-3a (extract Disc::patch):
- Moves Disc::patch (1230 lines) and bytes_bad_in_title from
disc/mod.rs into disc/patch.rs as a split inherent impl. Zero
behavior change — pure mechanical relocation. disc/mod.rs drops
from 3,945 to 2,714 LOC.
WO-6 (partial):
- Deletes src/labels/png_filenames.rs — was a 72-LOC stub with
detect() returning false, never wired into the PARSERS registry.
project docs doc drift fixes (audited 2026-05-13):
- JUMP_BASE_SECTORS: 256→1024 (64 MB base for UHD, not 8 MB)
- PASSN_DAMAGE_THRESHOLD_PCT: 12→6
- PASSN_SKIP_SECTORS_BASE: 64→32
- MAX_RANGE_SECS=180: replaced by proportional range_sectors × 25,
capped at RANGE_BUDGET_CAP_SECS=1800.
The 0.18 trait split into FrameSource (read-only) and FrameSink
(write-only) was an over-engineered API. Consumers don't think
"frame source backed by MKV" — they think "open MKV for reading".
The split paid a real API-complexity cost (two trait names, two
re-exports, dual impls per bidirectional type, deprecation bridge)
for one marginal property: compile-time direction-safety at the
trait-object boundary. The runtime error path on a wrong-direction
call (StreamReadOnly / StreamWriteOnly) is unambiguous and rare in
practice.
Deletions:
- pes::Stream is no longer #[deprecated]
- pes::FrameSource trait + its blanket-from-Stream bridge
- pes::FrameSink trait + the trampoline impls on every concrete type
- The compile-time-direction-safety test scaffolding
- Crate-root FrameSource / FrameSink re-exports
Additions:
- Stream is now Send-bounded (Stream: Send supertrait). Every
concrete impl was already Send-compliant — Box<dyn Read + Send>
and Box<dyn Write + Send> were already in place on the trait
objects MkvStream / M2tsStream / etc hold internally. Promoting
Send into the trait makes Box<dyn Stream> Send too, which lets
autorip drop its SendStream unsafe newtype.
The public API is now: one Stream trait, one concrete type per
format, two constructors (open/create or input/output). Bidirectional
types route through internal Mode { Read | Write } discriminants.
Net: -347 lines libfreemkv, -38 lines autorip, -5 lines freemkv.
v0.19.0 was tagged with a search-and-replace gone wrong:
rust-version, serde, and zip all had their version strings
replaced with "0.19.0". Edition 2024 rejected rust-version
0.19.0 (< 1.85), failing every CI build. No artifacts shipped
to crates.io.
Repair:
- rust-version: 0.19.0 → 1.86 (CI pin)
- serde: 0.19.0 → 1
- zip: 0.19.0 → 2
Also drops an unused start_lba binding in mux/disc.rs that
clippy 1.86 catches.
scan_with() collapsed every failure path from resolve_encryption() into
None via .ok(), so callers couldn't tell the difference between "no
KEYDB found", "KEYDB failed to parse", "disc hash not in KEYDB and
fallback derivation failed", "AACS files unreadable on disc", and a
handshake that rejected every host cert. autorip's UI was stuck
printing "no decryption keys found (check KEYDB)" for all of them,
which is a particularly bad message when the user has actually loaded
a KEYDB and the real failure is something else.
Changes:
- New pub field Disc.aacs_error: Option<Error>. Populated by scan_with
whenever encrypted && aacs.is_none(). Sentinel KeydbLoad path
"<no keydb in search paths>" distinguishes the no-keydb case from
a real load failure without adding a new Error variant (which would
be a breaking change for downstream exhaustive matches).
- tracing::warn in scan_with at scan_aacs_resolve_failed and
scan_aacs_no_keydb, with error_code and keydb path for grepping.
- tracing in do_handshake: keydb load failure, host-cert exhaustion
(with cert count and last error code), VID read failure post-auth,
and a debug-level success log. Lets us see whether handshake even
got off the ground for a given disc.
Test fixtures updated to set aacs_error: None.
The 'All probes failed — possible wedge condition' log fired during patch
probing whenever 10+ consecutive failures hit AND a probe sweep at the
local zone returned 0 successes. This was distinct from the read_error.rs
'wedge_transition' log that fires when the SCSI sense family ACTUALLY
flips into Hardware/IllegalRequest fast-fail mode.
Two logs both saying 'wedge' caused operator confusion during the
2026-05-11 Dune Pt 2 wedge investigation — was the drive wedged, or was
it just a zone of fully-bad sectors? They mean different things.
Relabel to 'patch_zone_fully_bad' with explicit pointer to read_error.rs
for the canonical wedge detection. Same triggering condition; just clearer
wording in the log stream.
Disc-04 (Top Gun: Maverick) re-test 2026-05-11 surfaced a real-world
bdmt_eng.xml where <di:description> contained no prose, only nested
<di:thumbnail href="…"/> elements. The previous parser surfaced
the raw XML fragment as the description string ("<di:thumbnail
href=\"tgm_meta_sm.jpg\" />\\r\\n <di:thumbnail
href=\"tgm_meta_lg.jpg\" />"). Worse than no description.
Fix: filter description candidates that begin with `<` after
trimming. Real prose never starts with an angle bracket; XML-only
content always does. Net: title extraction unaffected (it uses its
own element-priority path); description field drops when it would
otherwise carry XML noise.
Two new bdmt tests, 12 of 12 passing.
Three layered sources of stream labels now, in precedence order:
1. **Framework parser** (paramount/criterion/pixelogic/ctrm/dbp/deluxe)
— editorial labels with purpose/qualifier ("English Atmos",
"Director's Commentary", "English SDH"). High or Medium confidence.
2. **MPLS gap-fill** (`fill_gaps_from_mpls`) — every stream the
playlist references gets at least a basic lang+codec label, even
when the framework parser missed it.
3. **CLPI orphan append** (`append_clpi_orphans`) — streams in
/BDMV/CLIPINF/*.clpi ProgramInfo that NO MPLS playlist references.
Empirical (2026-05-11): ~5% of streams across the 11-disc corpus,
most dramatic on disc-02 (HDMV-only) at 40% CLPI-only.
Orphan numbering: each appended orphan gets
`stream_number = max(existing per type) + N` so playlist-reachable
streams keep their original positions and orphans sort cleanly at
the tail.
Orphan dedup: (stream_type, language, codec_hint) tuple — fuzzier
than PID matching (PIDs aren't carried on StreamLabel) but it's the
only signal available downstream of the gap-fill. False positives
(genuine orphan that happens to share lang+codec with an existing
entry) silently drop, which is the conservative failure mode — the
user-facing display would just see a confusing duplicate otherwise.
`mpls_universal::language_display_name` and `::codec_name` promoted
from private fn to pub(crate) so this module can build orphan labels
with consistent naming.
Tests: 2 new in gap_fill_tests — synthetic-input verification of the
dedup tuple logic and the stream_number assignment. 6/6 tests in the
gap-fill module now passing.
Rewrites the Pass 1 wedge handling from "slow skip after the drive
has already wedged" to "prevent the wedge transition in the first
place." Driven by 2026-05-11 empirical data: the BU40N transitioned
into IllegalRequest fast-fail mode at exactly 7 medium errors in
6.5 seconds (~1 read/sec retry cadence). Once there, only physical
eject + reload clears it — 30s pauses + 1 GB jumps do not.
The fix is the user's mental model from that session:
"We can detect bad reads, failed reads, and asking to read again
fast after causes a wedge. We need to prevent the wedge in the
first place."
Two changes to the centralized error handler:
1. **`for_sweep().fast_jump_threshold = 1`** (was 4). Pass 1 now
JumpAheads on the FIRST outer-batch failure, not the 4th. The
drive never gets back-to-back retries at the same LBA in Pass 1
— every error → jump 64 MB forward + long cooldown. Pass N keeps
`fast_jump_threshold = u64::MAX` because retries on already-known-
bad LBAs are its whole job.
2. **`ZONE_ENTRY_COOLDOWN_SECS = 30`**. The FIRST error after a
clean run (when `consecutive_outer_failures == 1` and we're not
bisecting) uses this long pause instead of the standard 5 s
FAIL_PAUSE_SECS. Gives the BU40N's firmware / bridge internal
retry counters 30 s of breathing room before the next read,
preventing the "7 errors in 6.5 s" cascade. Subsequent errors
in the same zone use the standard 5 s pause (we've already
jumped past the initial damage; further errors mean we landed
in another bad cluster).
Pass N exempt from the zone-entry cooldown — `bisect_on_marginal=
true` skips the long-pause arm. Pass N's per-sector retries on
known-bad LBAs would multiply uselessly with 30 s/error.
Test updates: 4 tests' expected behavior changed under the new
policy. Renamed `pass_1_marginal_skips_instead_of_bisecting` →
`pass_1_marginal_jumps_immediately_not_bisecting`. Renamed
`pass_1_jumps_after_4_consecutive_outer_failures` →
`pass_1_jumps_immediately_on_first_outer_failure`. Updated
`both_passes_pause_on_failed_read_for_wedge_avoidance` (now
`pass_1_zone_entry_uses_long_cooldown` + `pass_n_pauses_uniformly_on_failed_read`).
Cost analysis:
- Clean disc (no errors): unchanged. 0% overhead.
- Lightly damaged (1-2 zones): +30 s per zone = ~1 min total. Fine.
- Heavily damaged (10+ zones): +5+ min total. The trade for never
wedging the drive and getting a usable Pass N afterwards.
Expected behavior on the next damaged-disc rip:
- Pass 1 hits damage at LBA X → jumps 64 MB forward immediately,
pauses 30 s
- Drive's firmware never accumulates the retry pressure that triggers
IllegalRequest fast-fail
- bytes_maybe accumulates faster (we skip more), but Pass N picks up
the slack with proper per-sector recovery — and Pass N can actually
RUN because the drive isn't wedged
Two layered changes, in service of the empirical question "is CLPI
truly redundant with MPLS for label data?":
1. **clpi.rs ProgramInfo parser**. The existing CLPI parser only
walked the EP map (for sector-range lookups). Added a parser for
the ProgramInfo section's per-stream stream_coding_info table:
pid, coding_type, audio_format/rate, video_format/rate, ISO 639-2
language. Spec layout per libbluray clpi_parse.c. Best-effort —
malformed program_info leaves `streams: vec![]`, EP map keeps
working. `ClipInfo` gains a `streams: Vec<ClpiStream>` field.
2. **labels/clpi_audit.rs**. Diagnostic that walks both
`/BDMV/CLIPINF/*.clpi` (via the new program_info parser) and
`/BDMV/PLAYLIST/*.mpls`, builds a (PID → fields) merged view, and
classifies each row:
- `Match`: both sources agree (same coding_type + language)
- `ClpiOnly`: PID in CLPI but no MPLS playlist references it
(orphan stream on disc — reachable via low-level access, not via menu)
- `MplsOnly`: PID in MPLS but no CLPI lists it (would indicate a
parser bug; verified empirically that this NEVER happens)
- `Divergent`: same PID, different coding_type or language between
sources (playlist re-tagged or attribute encoding mismatch)
Surfaced via `labels-analyze` as `clpi_vs_mpls_audit: {matches,
clpi_only, mpls_only, divergent, total_pids}`. Doesn't affect the
label output — pure diagnostic.
Empirical findings on the 11-disc corpus (excl. disc-04 truncated):
- 226 matches / 0 mpls_only / 8 clpi_only / 5 divergent across 239 PIDs
- 6 of 10 non-truncated discs have CLPI-only streams (orphans)
- disc-02 (HDMV-only) is the most dramatic: 40% of its 5 streams are
CLPI-only — MPLS sees 3, CLPI sees 5
- Conclusion: CLPI is NOT truly redundant. ~5% of streams disc-wide
are CLPI-exclusive. Future work: layer CLPI as a tertiary source
below MPLS in the labels pipeline (orphan streams marked with even
lower confidence than MPLS).
LabelAnalysis gains `chapter_summary: Vec<ChapterSummary>` — one row
per .mpls file in /BDMV/PLAYLIST/, with chapter count (PlaylistMark
entries with mark_type ≤ 1) and approximate playlist duration in
seconds. Sorted by playlist filename.
Sourced from the existing crate::mpls parser (no new format work).
Useful for identifying the main feature playlist at a glance — it's
the one with the longest duration. Verified on disc-11 (Dune Pt 2):
00800.mpls correctly identified as 2h 45m 49s with 18 chapters
amid 30+ shorter playlists.
Doesn't touch the per-title `disc::DiscTitle::chapters` field which
disc::bluray.rs already populates from the same marks during disc
init — this is purely the diagnostic surface for labels-analyze.
When a framework parser (paramount, criterion, pixelogic, ctrm, dbp,
deluxe) is chosen but its label list covers only a subset of the
stream slots MPLS knows about, merge MPLS-derived entries for the
uncovered (stream_type, stream_number) slots. Framework labels keep
their richer fields (purpose=Commentary, codec_hint with "Atmos",
qualifier=Sdh); MPLS only fills slots the framework left unnamed.
Implementation:
- `fn fill_gaps_from_mpls` walks the MPLS label list, pushing any
entry whose (type, number) tuple isn't already in the framework
output. Stable sort by (type, number) groups audios before
subtitles in the merged result.
- Called from both `extract()` and `analyze()`. Skipped when the
chosen parser is itself `mpls_universal` (no gaps possible).
- `LabelAnalysis::gap_fill_added` field reports how many slots got
filled — useful diagnostic from `labels-analyze`.
- `StreamLabelType` gains `Eq + Hash` so the dedup HashSet works.
Tested via 4 new unit tests (155 of 155 labels tests passing, was
151). End-to-end on partial-yield corpus discs:
- disc-05 (Oppenheimer): pixelogic 4/5 already covered, gap_fill_added=0
- disc-11 (Dune Pt 2): pixelogic 8/11 already covered, gap_fill_added=0
(Real-world gap-fill activations are rare in the current corpus because
pixelogic already incorporates MPLS-equivalent data when matching;
the merge is defensive for less-thorough frameworks.)
Per-playlist stream_number counters were resetting between MPLS
files, so a disc with 2 MPLS files each listing the same 8 audio
streams produced labels with stream_number 1..8 then 1..8 again
(dedup kept whichever PID was different, leaving the numbering
visibly broken — multiple "audio1: eng" rows).
Move the counters outside the per-file loop and increment only
when an entry survives dedup. Surviving entries now get dense
1..N numbering across the whole disc per stream_type.
Verified on corpus disc-02 (HDMV-only): was `audio1, audio1, audio1`
for the 3 distinct audio codecs (TrueHD/AC-3/DTS-HD MA), now
`audio1, audio2, audio3`. Same fix applies to disc-01 (12 audio
streams across multiple MPLS) and disc-09 (14 audio streams).
Three new modules in the labels platform, all layered so framework-
specific parsers (paramount, criterion, pixelogic, ctrm, dbp, deluxe)
always take precedence over the universal layer.
**mpls_universal.rs** (~600 LOC, 9 tests): consumes the already-parsed
`crate::mpls::Playlist::streams` and emits StreamLabel entries with
language + codec_hint per stream. Returns `Confidence::Low` (new
variant) so framework parsers' Medium/High always win the registry's
max-by-confidence tiebreaker; MPLS only gets picked when no framework
matched. Closes the "no BD-J disc" case (HDMV-only navigation) that
previously produced zero labels — language and base codec are
spec-mandated in MPLS STN tables on every Blu-ray ever made.
**bdmt.rs** (~350 LOC, 10 tests): reads `/BDMV/META/DL/bdmt_<lang>.xml`
files into a new `DiscMetadata` struct (localized title names per
ISO 639-2 code, descriptions, optional box-set position). Runs
independently of the parser registry — disc-level metadata, not
per-stream, so the registry's confidence selection doesn't apply.
Surfaced on a new `LabelAnalysis::disc_metadata` field.
**png_filenames.rs** (noop stub): pattern documentation + dead-code
detect/parse for future reactivation. Deferred because MPLS already
delivers per-stream lang/codec/type on every disc; PNG filename
language tokens only add studio variant disambiguation (FRC vs FRP,
LAS vs CSP) — niche enough to not justify the implementation cost
right now.
Wiring changes in `mod.rs`:
- New `Confidence::Low` variant (PartialOrd places it below Medium/High)
- New `ParseResult::low()` constructor
- `mpls_universal` appended last to `PARSERS` registry
- `LabelAnalysis::disc_metadata: Option<DiscMetadata>` field
- `analyze()` runs `bdmt::parse` independently and surfaces result
- `pub use bdmt::DiscMetadata` re-export so the labels-analyze tool
in freemkv-tools can construct the JSON payload
Total: 151 of 151 labels tests passing (was 132 — added 19 new).
Pass N now reads at 32 sectors per attempt and drops to 1 only on
batch-read failure to probe each sector individually. After 16
consecutive clean single-sector reads it climbs back to 32. Net
effect: NonTrimmed regions walk ~32x faster in clean stretches
without sacrificing per-sector recovery quality — the drop-to-1
retry from the same cursor position guarantees every sector in a
failed batch is individually attempted.
Design contract:
- A batch-read failure (count > 1) is NOT a recorded failure: no
NonTrimmed mark, no consecutive_failures bump, no damage_window
push, cursor stays put. We just drop current_batch to 1 and the
loop re-attempts the same position at single-sector granularity.
- A single-sector failure (count == 1) follows the existing path:
NonTrimmed mark, consecutive_failures++, damage_window.push(false),
post-failure pause, wedge probes.
- Backtrack always at count=1: this path fills a gap that the main
loop's damage-window skip jumped over. Using batched reads there
would lump good sectors into NonTrimmed marks when the gap
contains even one bad sector.
State machine adds:
- `initial_batch` (from opts.block_sectors, default 32 in patch_internal)
- `current_batch` (mutable, starts at initial_batch, drops to 1 on
batch failure)
- `consecutive_singles_ok` (counter, resets on upscale + failure)
- `ADAPTIVE_UPSCALE_THRESHOLD = 16` (matches sweep's pattern for
"16 consecutive good = back to fast mode")
Tests:
- pass_n_size_aware_skip.rs PatternedSectorReader now fills each
sector with its OWN LBA byte (not the starting LBA's byte). This
matches real drive behavior — the pre-0.18.13 fixture's
"fill whole batch with one byte" was a shortcut that only worked
when patch read 1 sector at a time. Existing recovery-quality
assertions all still pass under adaptive batching.
User spec: "try 32, pass, great, fail -> do 1 sector"
User design call after watching Pass 2 mark ~20 KB as "Cosmetic"
(permanently Unreadable) after just 10 retries within a single pass:
"i think it's good or maybe until all passes are done. then it's
gone."
That contradicts what the multi-pass design promises a user. The
project goal in project docs is "recover 100% of readable data from any
optical disc, automatically." Marking sectors Unreadable after a
SINGLE pass's per-range retry budget gives up on sectors that
subsequent passes might recover — drive reads are stochastic, the
sector that fails 10 times in Pass 2 may succeed on attempt 1 in
Pass 3 after temperature / bus state / prior-read patterns shift.
The patch.rs doc comment already noted ~36% of patch-marked
Unreadable sectors turned out to be readable in re-rip experiments.
Three sites in `Disc::patch` were emitting `PatchItem::Unreadable`
mid-pass:
- backtrack hit damage (line ~2659)
- all-retries-exhausted on a single LBA (line ~2846)
- redundant second mark after the wedge-suspicion log (line ~2970)
All three now emit `PatchItem::NonTrimmed` instead. Failed bytes
stay "maybe" (NonTrimmed) so the next pass gets another shot. The
per-range skip-limit (10) and per-pass wedge-threshold (50) still
bound time-per-pass; they just no longer turn the bytes terminal.
The `PatchItem::Unreadable` variant stays in the enum (with
#[allow(dead_code)]) because the orchestrator-side end-of-recovery
promotion will use it: autorip, after the final retry pass
completes, scans the mapfile and promotes still-NonTrimmed →
Unreadable. That promotion lands in a follow-up commit on the
autorip side — separable from this libfreemkv change.
Loss accounting unchanged: `bytes_pending + bytes_unreadable` is
the "lost or pending" total that `abort_on_lost_secs` consults
(disc/mod.rs:1327). Moving bytes from one bucket to the other
mid-pass doesn't affect whether the rip would abort; it only
affects display (UI shows "Maybe" vs "Cosmetic") and whether
subsequent passes retry the bytes (the actual fix).
Test update: `test_pass_progress_separates_unreadable_from_pending`
was renamed to `test_pass2_leaves_failed_reads_as_pending_not_unreadable`
and rewritten to assert the new invariant — Pass 2 leaves all
failed bytes as bytes_pending (no mid-pass Unreadable promotion).
Original assertions were checking the pre-design-call behavior.
Precommit (cargo +1.86 fmt + clippy + test) green.
User's design call after watching the avoidance work prevent a wedge
on the live rip (no wedge events across 6 read errors): "Pass N
and 1 should both be very very similar in recovery. almost identical
just smaller sectors imo in pass n. pause times the same imo as a
failed read is a failed read."
The error-handling code path was already centralized (one
handle_read_error fn, called by both Disc::sweep and Disc::patch).
The TUNING was split — Pass 1 used 5 s inter-error pauses + a
wedge-skip-and-continue policy; Pass N used 1 s pauses + immediate
AbortPass on HARDWARE_ERROR / ILLEGAL_REQUEST. That asymmetry made
Pass N vulnerable to the same wedge that Pass 1's avoidance fixed.
Changes:
1. FAIL_PAUSE_SECS = 5 — single constant, applied uniformly to both
passes. Dropped PASS_1_FAIL_PAUSE_SECS and POST_FAILURE_PAUSE_SECS
in favor of one value. CONSECUTIVE_FAIL_LONG_PAUSE_SECS kept as a
distinct (but currently equal) value for future tuning escalation.
2. HARDWARE_ERROR / ILLEGAL_REQUEST path is now symmetric:
- Pass 1: JumpAhead WEDGE_JUMP_SECTORS (1 GB) + WEDGE_PAUSE_SECS
cooldown, mark skipped region NonTrimmed.
- Pass N: JumpAhead WEDGE_PASS_N_SKIP_SECTORS (64 sectors / 128 KB)
+ WEDGE_PAUSE_SECS cooldown. Pass N's batch=1 means a 1 GB skip
would abandon the entire current NonTrimmed range; small skip
moves past the bricked LBA + buffer, outer patch loop picks up
the next sector.
- Both share WEDGE_ABORT_THRESHOLD — same 16-skip budget before
real AbortPass on a permanently stuck drive.
3. wedge_skip / wedge_abort tracing logs now include `pass=1|N`
so post-mortems can see which pass hit the wedge condition.
Cost analysis:
Pre-reframe worry was "5 s × 5500 NonTrimmed sectors per Pass N
pass × 7 passes = 53 hours." Reality: most NonTrimmed sectors
recover on first or second retry, so most reads are successful and
pay 0 pause. The few that DON'T recover hit the 10-skip budget and
get marked Unreadable — bounded at 10 × 5 s = 50 s per truly-bad
sector. Worst-case Pass N pause overhead on a typical damaged disc
is single-digit minutes, not hours. And it's strictly cheaper than
the alternative (wedge kills the entire multi-pass recovery).
Tests:
- `both_passes_pause_on_failed_read_for_wedge_avoidance` — locks the
unified pause-tuning policy (was pass_1_pauses_briefly).
- `pass_n_hardware_error_also_skips_not_aborts` — was
`pass_n_hardware_error_still_aborts`. New behavior verified:
JumpAhead with WEDGE_PASS_N_SKIP_SECTORS + WEDGE_PAUSE_SECS.
- `pass_n_hardware_error_aborts_after_threshold` — new. Confirms
Pass N respects the same WEDGE_ABORT_THRESHOLD as Pass 1.
- pass_1_does_not_pause_on_skip is gone (it was the old "Pass 1
pause=0" assertion, irrelevant after the avoidance work).
Empirical validation: avoidance was already proven on a live rip
tonight — 6 read errors on a damaged disc, sense_family=Medium
throughout, wedge_count=0, Pass 1 continued cleanly past 40%
where it previously died at 48%. This commit extends the same
discipline to Pass N's recovery loop.
Precommit (cargo +1.86 fmt + clippy + test) green.
Replaces the speculative arg-position heuristic with type-presence
detection driven by real disc bytecode. Ground truth captured in
(internal)/research/deluxe-poc/data/ via POC v0.3 binding-
bytecode dumps against disc-01 (Disney) and disc-09 (Warner).
What changed:
1. StackVal::CodingType(String) — new variant. getstatic against
org/bluray/ti/CodingType (the BD-J spec codec enum) now pushes
this, carrying the field name (e.g. DOLBY_LOSSLESS_AUDIO). The
pre-fix code was treating codecs as a Deluxe-internal enum
subclass walk (Phase B), which is the wrong model — codecs are
standard BD-J API references.
2. coding_type_to_codec_hint(field) — new function. Maps
org.bluray.ti.CodingType field names to human-readable codec
strings (DOLBY_LOSSLESS_AUDIO -> "Dolby TrueHD", DOLBY_AC3_AUDIO
-> "Dolby Digital", etc.). Unknown field names pass through
verbatim so future codec values still surface something.
3. find_binding_classes — multi-class variant. Some Deluxe discs
split per-stream tables across two binding classes (audio +
subtitle). Returns top-K candidates by getstatic count, filtered
to >=40% of the top count and capped at 4. Replaces the old
single-class find_binding_class (which was unused after this
change).
4. interpret_streams — rewritten. Args identified by TYPE not
position:
- First EnumRef{kind:"Language"} -> language
- First EnumRef{kind:"Purpose"} -> purpose
- First CodingType(name) -> codec_hint
- First Int(n) -> stream index hint (traced
only; per-type sequential stream_number still wins because BD
spec stream-numbering is anchored on MPLS)
- Construction has CodingType -> Audio stream; otherwise Subtitle
- No Language -> skip (not a stream construction)
This handles BOTH the Disney 5-arg pattern (I, Lbe, Llp, I,
LCodingType) and the Warner 4-arg pattern (I, Law, Lgp,
LCodingType) automatically — same code path because args are
identified by type rather than constructor-signature shape.
5. parse() now walks all binding-class candidates and unions
their constructions before calling interpret_streams. Logs each
candidate at INFO with getstatic_count for diagnosis.
Tests:
- 2 new tests verify the CodingType -> codec_hint mapping for
known + unknown field names.
- Existing interpret_streams tests updated to use the new
signature (dropped CodecTable arg).
- Audio-emission test rewritten to use CodingType arg instead of
the old binding_type substring-match approach.
Confidence is still Medium for now (single-corpus verification);
ready to promote to High once tested against a third Deluxe disc.
Precommit (cargo +1.86 fmt + clippy + test) green.
Wires the existing PassSummary infrastructure (in read_error.rs as
of a832bad) into the sweep loop's exit path. One INFO log line per
Pass 1 completion gives operators an at-a-glance damage profile
without grepping per-error WARN lines:
INFO pass1_summary total_reads_ok=384521 total_errors=5
zones_entered=1 jumps_taken=2
bytes_good=38_725_644_288 bytes_pending=46_GB
copy_elapsed_ms=1751650
Particularly useful for post-mortem analysis when combined with
the per-error structured WARN logs (ms_since_last_error /
ms_since_last_success / sense_family / wedge_transition) shipped
in 0.18.10. Single line tells you the pass shape; preceding WARN
lines tell you the per-error detail.
Pass N (Disc::patch) intentionally NOT covered in this commit —
Pass N has its own retry-budget summary semantics that warrant a
separate design pass. Pass 1 sweep is where wedge incidents
originate, so it gets the diagnostic surface first.
Staged for 0.18.11. 0.18.10 already shipped the per-error WARN
layer; this is the finishing companion log.
Adds the observability we need to debug wedge incidents from logs
alone — without needing to enable verbose TRACE-level SCSI tracing.
Goal stated by user: "when error occurs we can debug and code
correctly."
Pre-fix the WARN log on each read error showed only sense codes
and consecutive_failures. Missing: timing context (was the failed
read fast or slow?), gap to previous events (cumulative vs.
immediate failure?), and family transitions (did the drive just
flip into wedge mode, or has it been there?).
New fields on ReadCtx (no caller signature change):
last_success_at: Option<Instant>
last_error_at: Option<Instant>
last_error_family: Option<SenseFamily>
total_errors: u64
total_reads_ok: u64
zones_entered: u64
jumps_taken: u64
in_damage_zone: bool
New SenseFamily enum (NotReady / Medium / Hardware / IllegalRequest
/ Other) with is_wedge_family predicate.
handle_read_error WARN log now carries:
consecutive_failures
consecutive_outer_failures
ms_since_last_error NEW gap between this and previous error
ms_since_last_success NEW gap to last good read
total_errors NEW aggregate this pass
total_reads_ok NEW
wedge_count
sense_family NEW typed category, easier to filter
sense_key / asc / ascq (existing)
NEW WARN log "wedge_transition" fires once when the sense family
changes from non-wedge to wedge (Medium to Hardware/IllegalRequest).
That's the moment the drive's firmware flipped into fast-fail
mode. Single timestamped event in the log so post-mortems can
pinpoint the transition without scanning thousands of TRACE lines.
Worked example: if the next wedge incident shows
read_error ms_since_last_success=18234 ms_since_last_error=null
read_error ms_since_last_success=28000 ms_since_last_error=10000
read_error ms_since_last_success=43000 ms_since_last_error=68
(drive returned <100ms = wedge symptom)
wedge_transition errors_in_zone=5 ms_since_last_success=43000
we can immediately tell cumulative damage, 5 errors over 43 s,
drive went into fast-fail mode at the 5th. If instead we see
read_error ms_since_last_success=200 ms_since_last_error=null sense_family=Hardware
wedge_transition errors_in_zone=1
the wedge was triggered by ONE read at a physically-bricked LBA
(immediate fast-fail, no warm-up).
These two patterns demand different tuning responses (longer
pause vs. larger initial jump), and now we can distinguish them
from a single WARN log line each instead of needing TRACE
verbose for the whole rip.
Plus jumps_taken / zones_entered counters that feed an end-of-pass
INFO summary (PassSummary). Caller invokes pass_summary at sweep
end and logs structured stats: "Pass 1 saw N errors / M ok reads
/ K zones / J jumps". Single-line post-mortem for any rip.
No caller signature change (timing is internal to the handler;
end-of-pass summary is a new method callers opt into). Precommit
green; 433+ tests pass. Staged for the 0.18.10 release once we
have user-validation data on 0.18.9's avoidance tuning.
Complements the wedge-skip backstop (fbdb50c) with proactive
avoidance so we don't HIT the wedge in the first place. User's
take after seeing the Dune Pt 2 rip wedge at 48%: 'we shouldn't be
wedging.'
Empirical observations from the 23:09:12-23:09:55 wedge timeline:
5 read errors over 43 s, ~8 s apart (drive's own ECC recovery
takes 5-10 s per failure). Not 'hammering' in any usual sense,
but cumulative firmware-state buildup over 5 in-cluster errors
was enough to tip the BU40N into wedge mode at the 5th error.
Damage cluster spanned ~140 MB (LBAs 19.898M-19.965M). Current
damage-jump base of 256 sectors × batch=32 = 16 MB first jump,
doubling to 32 MB, 64 MB... Each jump landed BACK INSIDE the
140 MB cluster, exposing the drive to MORE in-cluster errors.
Two avoidance levers:
1. Inter-error pause on Pass 1 (PASS_1_FAIL_PAUSE_SECS = 5 s):
pre-fix Pass 1 ran pause_secs=0 on all errors to 'zoom past'
damage zones. Successful reads still zoom at zero pause — the
pause applies only to FAILED reads, giving the drive's firmware
cool-down between cluster exposures. Cost: ~5 s per scattered
failure (~30-60 s total on a damage cluster); trivial vs.
crashing the rip at 48%.
2. Larger damage-jump base (JUMP_BASE_SECTORS = 1024, up from
256): first jump at batch=32 now covers 64 MB instead of 16 MB,
second jump 128 MB instead of 32 MB. Two jumps clear 192 MB —
well past most single-cluster damage patterns. Smaller jumps
were landing inside the cluster and adding to the wedge counter.
Plus a halt-aware sleep helper (sleep_secs_or_halt) so the new
inter-error pause doesn't degrade halt response time. Halt poll
granularity 100 ms — halt fires within ~100 ms regardless of
remaining pause time. Updated three sleep call sites in disc/mod.rs
(SkipBlock pause, JumpAhead post-pause, Retry pause).
The wedge-SKIP backstop (fbdb50c) stays — combined with this
avoidance work, the flow becomes:
damage cluster encountered →
pause 5 s, mark NonTrimmed →
second failure →
pause 5 s, mark NonTrimmed →
...
threshold hit →
damage-jump 64 MB (clears 95% of clusters) →
if jump lands in another cluster: 128 MB next jump →
only if drive STILL wedges after all this:
wedge-skip kicks in (1 GB jump + 30 s cooldown × 16 budget)
Tests:
pass_1_pauses_briefly_on_skip_for_wedge_avoidance — locks the
new 5 s pause behavior in place (replaces the old pause=0 test).
integration test threshold bumped from 5 s to 60 s with comment
explaining the new bound is 'not infinite' rather than
'milliseconds-fast'.
All 433+ tests green on cargo +1.86 fmt + clippy + test.
Precommit green.
Closes the final two audit items from this session.
labels::apply_labels: factored out of apply() so the matching logic
is unit-testable without needing a SectorReader / UdfFs. 11 new
tests in apply_tests cover:
- codec_hint + variant flow through to AudioStream.label
- purpose set on audio with no label English text
- name fallback only when purpose=Normal (CLI owns purpose i18n)
- subtitle SDH qualifier set; forced flag flipped on Forced
- per-type 1-based indexing (audio #2 maps to 2nd audio stream,
not 2nd stream overall)
- labels for nonexistent streams are no-ops
- empty labels list leaves streams untouched
- fill_defaults generates audio + video labels; preserves existing
class_reader: robustness smoke tests. ClassFile::parse must NEVER
panic on adversarial input — only return Err. 9 new tests:
- empty input
- short magic (0..4 bytes)
- wrong magic
- truncated after magic
- bad CP tag
- truncated UTF-8 in CP
- 200 random byte buffers (deterministic xorshift)
- 100 magic + random tail (most adversarial — magic check passes,
everything else garbage)
- instructions iter on random code (200 buffers)
- instruction_size on every opcode 0..255 with varied tail buffers
- modified_utf8 on random byte buffers (500)
The xorshift PRNG keeps the tests deterministic (no rand dep) and
reproducible — failures will be the same buffer every time. This is
the lightweight alternative to a cargo-fuzz setup; if/when we adopt
cargo-fuzz, these tests stay as regression cases.
All 451 tests passing on cargo +1.86 fmt + clippy + test.
Pre-fix: when the drive returned HARDWARE_ERROR or ILLEGAL_REQUEST
during Pass 1 sweep, libfreemkv immediately returned ReadAction::
AbortPass. Autorip surfaced this as a fatal error and stopped the
rip at whatever progress percentage Pass 1 had reached — typically
40-50%. On a disc with one physical-damage cluster, the user would
see Pass 1 die at ~48% with the cryptic message 'E6000: <lba>
0x02/0x04/0x3e' and have no rip output to work with.
Root cause analysis: BU40N firmware transitions into a fast-fail
state when it hits cumulative read failures in a small LBA range —
returns HARDWARE_ERROR for every subsequent read near that LBA, even
sectors that aren't physically damaged. Per project docs 'Bad-sector
handling' rule #2, 'Recovery requires eject+reload OR significant
cool-down.' Aborting on first wedge throws away the rest of the
disc; the right response is to SKIP the wedged region (mark as
NonTrimmed for Pass N), pause for drive cooldown, and continue.
Fix: in handle_read_error, the HARDWARE_ERROR / ILLEGAL_REQUEST arm
now branches on bisect_on_marginal:
Pass 1 (bisect_on_marginal=false): JumpAhead with WEDGE_JUMP_SECTORS
(1 GB at 2048 bytes/sector) and WEDGE_PAUSE_SECS (30 s cooldown).
Tracks wedge_count in ReadCtx; resets on any successful read.
Truly aborts only after WEDGE_ABORT_THRESHOLD (16) consecutive
wedges with no good read in between — generous enough to clear
most physical-damage clusters, bounded enough to not loop forever
on a permanently bricked drive.
Pass N (bisect_on_marginal=true): unchanged AbortPass. Pass N's
job is single-sector recovery; if the drive won't talk near a
specific LBA, skipping doesn't help. Pass N exits and lets the
outer layer decide retry/eject/surface.
5 unit tests cover the new policy:
pass_1_hardware_error_jumps_ahead_not_aborts — JumpAhead emitted
with correct sectors+pause, wedge_count incremented.
pass_1_hardware_error_aborts_after_threshold — AbortPass kicks in
on the WEDGE_ABORT_THRESHOLD-th consecutive wedge.
pass_1_good_read_resets_wedge_count — on_success clears
wedge_count; subsequent wedge gets fresh skip budget.
pass_n_hardware_error_still_aborts — Pass N's AbortPass behavior
intact.
pass_1_illegal_request_also_routes_to_wedge_skip — both wedge
sense families get the skip treatment.
Impact: on the Dune Pt 2 disc that consistently wedged at 48%
(physical damage at LBA ~19.9M), Pass 1 will now jump ahead 1 GB
on the wedge, give the drive 30 s cooldown, and continue scanning
the rest of the disc. The damaged region becomes Pass N's job to
revisit. Worst case if the drive stays wedged: 16 GB of NonTrimmed
disc area before honest AbortPass.
Precommit (cargo +1.86 fmt + clippy + test) green; 430 passing.
Replaces two near-duplicate hand-rolled XML scrapers in paramount.rs
and criterion.rs with a single labels::xml module that's robust to:
- Case-insensitive tag / attribute names ('<Playlist>' matches the
same as '<playlist>'; 'Name=...' matches 'name=...').
- XML namespace prefixes (matches '<ns:tag>' for tag='tag').
- Arbitrary whitespace inside open tags and around '=' separators
('<tag name = "X">' works).
- Both quote styles for attribute values (" and ').
- Self-closing tag forms ('<tag/>' and '<tag />').
- '>' chars inside quoted attribute values (no premature end-of-tag).
Three functions:
xml::attr(element, name) -> Option<String>
Extract attribute value from an open-tag fragment.
xml::text(xml, tag) -> Option<String>
Trimmed text content of first <tag>...</tag>.
xml::find_element(xml, tag, from) -> Option<(start, end)>
Locate next <tag>...</tag> for iteration; handles self-closing.
22 unit tests cover the robustness properties: case-insensitivity,
namespace stripping, whitespace tolerance, quote styles, self-close
forms, no-substring-false-positive (looking for 'lang' must NOT
match 'lang_id' or 'language'), '>' inside quoted attrs, iteration
across repeated elements.
paramount.rs: drops local extract_attr; find_feature_playlist now
walks xml::find_element('playlist', ...) so it works regardless of
case and self-closing style. Pre-refactor: required exactly
'<playlist ' (single space, exact case) and '/>' for self-close.
criterion.rs: drops local extract_tag; parse_stream_infos and
parse_playback_config iterate via xml::find_element. Same case-
sensitivity + namespace gains. The 'COMMENTARY' / 'SDH' / 'DS'
content-value match is now case-insensitive too (previously a disc
authored with 'commentary' would have been miscategorized as Normal).
Pre-refactor known failure modes (none observed yet, but trivial
to trip on a future disc): vendor switches whitespace around '=',
uses single quotes, capitalizes a tag, prefixes a namespace. All
now handled.
Out of scope by design: XML entity decoding (&, <), CDATA
sections, comments, processing instructions. None observed in BD-J
authored label data. If a future disc trips them, the entity
decoder is a localized addition.
Precommit (cargo +1.86 fmt + clippy + test) green.
Completes the Deluxe parser pipeline. Phase A (master enums) was
already shipping; this commit lands Phases B/C/D so the parser now
emits per-stream StreamLabel records on Deluxe-authored discs.
Phase B (decode_codec_enum): walks the codec enum's subclass
references (one .class per codec ordinal) and extracts the codec
name string from each subclass's constant pool. Heuristic: pick the
first Utf8 entry that's uppercase + underscored + >=4 chars, or one
of the known codec roots (ATMOS/DOLBY/DTS/TRUEHD/MLP/AC3/EAC3/PCM)
when no underscored candidate is found. CodecTable maps ordinal ->
codec string; empty string for ordinals where extraction failed
(logged via tracing, not fatal).
Phase C (find_binding_class): identifies the class that builds the
per-stream label table by counting getstatic operations targeting
any of the master enum classes from Phase A. Class with the highest
count >= 4 wins. Threshold is empirical (real binding classes have
50+ matches; floor of 4 admits small discs while rejecting incidental
single-reference classes).
Phase D (decode_binding + BindingDecoder): symbolic stack machine
that walks the binding class's <clinit> bytecode. Handles:
- constant pushes: iconst_<n>/bipush/sipush/ldc(Integer)
- new <X>: pushes uninit-object marker
- dup: stack copy
- getstatic <Y.Z>: pushes EnumRef when Y is in MasterEnumTable,
else Unknown
- invokespecial X.<init>(...)V: pops args per descriptor; when the
receiver is NewObj(X), emits a Construction { binding_type: X,
args: [...] }
- invokevirtual/invokestatic/invokeinterface: pop args per
descriptor, push return placeholder unless void
- pop/pop2/aastore/putstatic/putfield: standard stack effects
- branches/returns: clear stack (conservative resync — binding
<clinit> is straight-line in practice)
parse_method_arg_count: JVMS field-descriptor parser, handles
primitives, references (L...;), arrays ([...).
interpret_streams: converts Constructions to StreamLabels using
the master enum table + CodecTable. Each construction with a
Language ref becomes a stream. Audio when codec_hint resolves via
binding_type substring match against CodecTable; subtitle otherwise.
Purpose ordinal -> LabelPurpose via the verified Deluxe Purpose enum
order (Normal/Commentary/PiP/Trivia/Descriptive/Score/NoForced/
NoForcedDescriptive). Stream index = sequential per type. Language
goes through vocab::lang for ISO code + variant.
deluxe::parse now returns Some(ParseResult::medium(labels)) when
all four phases produce labels. Medium confidence — the bytecode
mechanism is rigorously tested but the signal-to-StreamLabel
mapping (which arg is which, audio vs subtitle classification) is
heuristic until corpus binding-class bytecode confirms the exact
pattern.
Test coverage: 13 new unit tests in deluxe.rs
parse_method_arg_count: 3 tests (basic types, references, malformed)
BindingDecoder: 4 tests (simple construction, with int pushes,
skips unmatched invokespecial, resolves master-enum ordinal)
interpret_streams: 4 tests (subtitle on no codec, audio on codec
match, purpose routing, skips no-language)
MasterEnumTable: 3 tests (resolve, value, class_name_set)
extract_codec_name: 1 test (uppercase+underscore matching)
class_reader.rs gained a #[cfg(test)] ConstantPool::from_entries
test-only constructor so Phase D tests can build synthetic CP
fixtures without writing raw .class bytes.
Precommit (cargo +1.86 fmt + clippy + test) green.
Replaces 'first-match-wins by array order' with 'highest-confidence-
wins, array order tiebreaker'. Removes the arbitrariness when more
than one parser can claim a disc (e.g. one with both
bluray_project.bin and playlists.xml).
New types in labels::mod:
pub enum Confidence { Medium, High }
pub struct ParseResult { labels: Vec<StreamLabel>, confidence }
ParseResult::high(labels) / ::medium(labels) constructors
Parser signature change: every parse() now returns
Option<ParseResult> instead of Option<Vec<StreamLabel>>. Updated all
six parsers in lockstep:
paramount: High (fully structured XML)
criterion: High (fully structured XML)
pixelogic: High by default, Medium when an unknown token component
is encountered (the skip-unknown path now propagates the
coverage gap to the caller instead of silently degrading)
ctrm: High (structured key-value)
dbp: High (anchor scan with vocab routing)
deluxe: still returns None pending Phase D — signature aligned
Registry behavior:
extract() iterates all detect-positive parsers, picks highest
Confidence with non-empty labels. Equal confidence falls to array
order (deterministic). Same selection logic in analyze().
LabelAnalysis grew a confidence: Option<Confidence> field so the
diagnostic surface (freemkv-tools labels-analyze) exposes which
confidence tier the selected parser claimed. labels-analyze JSON
and labels-corpus-check structural diff both gained the field.
Precommit (cargo +1.86 fmt + clippy + test) green.
Three targeted fixes from a second-pass audit of the labels module.
1. vocab::lang now returns Option<LangInfo> with both code AND a
human-readable variant string. Pre-fix: 'Brazilian Portuguese 5.1'
became language=por, variant='', dropping the dialect info the
disc had explicitly authored. Post-fix: language=por,
variant='Brazilian' — matches the convention pixelogic / ctrm /
criterion already use for their region variants. dbp now
populates StreamLabel::variant from this. Compound table grew a
3-tuple (needle, code, variant); bare matches still return
variant=''.
2. dbp and deluxe had duplicated detect() boilerplate (any top-level
.jar in /BDMV/JAR/). Both now call jar::has_any_top_level_jar.
The trait-level detect contract — see super::PARSERS — can't peek
inside a jar without a SectorReader, so loose-detect-plus-real-
check-in-parse is the unavoidable pattern for jar-content parsers.
Consolidating in jar.rs at least makes the duplication visible.
3. mod.rs comment about parser ordering said 'dbp last'; deluxe is
actually now last. Updated to explain the dbp-before-deluxe order
is by cost (cp-iteration cheaper than bytecode walking when Phase
D lands).
Plus a registry-level lock test in mod.rs::registry_tests — asserts
the PARSERS array order is exactly [paramount, criterion, pixelogic,
ctrm, dbp, deluxe]. This was previously implicit; if someone reorders
the array (which changes which parser wins on overlapping signals),
unit tests would have stayed green. Now they fail with an explanatory
message about why the order matters.
Audit findings deferred to follow-ups (each its own commit + design
discussion):
- Stronger detect contract — current loose-detect-real-check pattern
is forced by SectorReader-not-in-detect-signature; could be fixed
by changing the trait to take an Option<&mut dyn SectorReader> or
similar.
- Per-parser confidence scoring — registry currently first-match-wins.
A high-confidence parser ought to beat a low-confidence one
regardless of array order.
- class_reader fuzzing — handles malformed input via Result but no
adversarial corpus yet.
Precommit (cargo +1.86 fmt + clippy + test) green.
Closes the platform unification: every label parser now routes
purpose/qualifier/codec classification through one source of truth
(vocab.rs) instead of N hand-rolls, and every binary-blob byte
scanner goes through one helper (text::extract_ascii_strings).
pixelogic.rs:
- Drop local extract_strings (~20 lines) — use text::extract_ascii_strings.
- HARDENING: replace with skip-unknown-component +
trace log. Pre-refactor behavior: any single uncatalogued token part
(e.g. a future codec ID, new framework variant) silently dropped the
entire stream record. New behavior: skip just the unknown part,
surface what we know about the stream.
- 8 new unit tests cover basic audio/subtitle paths, commentary,
descriptive, region variant, the new skip-unknown-component
regression, and the non-audio/non-subtitle early-out.
ctrm.rs:
- Replace with
vocab::purpose(&name). Now word-boundary matched — 'Commenter Pro
Track' no longer false-matches Commentary.
- Replace with vocab::qualifier(&name).
Same word-boundary tightening, plus picks up Forced and
DescriptiveService for free.
- Preserved structural commentary signal via
as a fallback when name is silent (e.g. 'audio_commentary_1.name=Track 2').
- 6 new unit tests including the 'Commenter' false-positive regression
and the SDH-only-on-subtitles boundary.
text.rs:
- Drop module-level dead_code allow now that pixelogic uses
extract_ascii_strings.
Net: all 5 framework parsers now on the unified platform. Future work
(deluxe Phase D, paramount/criterion XML hardening) builds on the
same scaffolding.
Precommit green.
Closes the 'detected but no parser' gap on Deluxe-authored BD-J discs
(com/bydeluxe/ package signature; ~20% of UHD discs in our corpus per
the 2026-05-10 11-disc capture session).
What ships in this commit:
- detect() — registers the parser in the chain (loose pre-check at the
/BDMV/JAR/ level; real signal in parse via has_path_prefix on
'com/bydeluxe/').
- Phase A master enum identification — walks every .class's <clinit>
ldc sequence and matches against framework-stable fingerprints for:
Language (70 ldcs starting English/French/Spanish/Dutch)
Purpose (8 ldcs starting Normal/Commentary/PiP/Trivia)
VideoFormat (7 ldcs starting HD/HDR10 Plus/HD Dolby)
Region (22 ldcs starting USA_D1/LIC1/LIC2/LIC3 — Disney-only)
Studio (6 ldcs starting Disney/Marvel/Pixar — Disney-only)
All identifications verified out-of-tree on corpus disc-01 (Disney,
The Amateur) and disc-09 (Warner, Dune Part 1) via the standalone
POC.
- Phase B structural skeleton (find_codec_enum) — identifies the
codec enum class by structural signature (>=20 'new' ops, 0 ldcs),
returns the ordered subclass list. Codec string extraction from
subclasses is dead-coded pending the follow-up commit.
What does NOT ship yet:
- Phase D (per-stream binding-class decoder). parse() returns None
intentionally — the master enums alone don't yield StreamLabels
without the streamTable.put(...) bytecode walker. analyze() will
show 'deluxe' in parsers_detected with the enum identification in
tracing logs, so the analyzer reports honestly: 'detected, can't
emit labels yet' rather than silent failure.
Why ship A without D: A is proven on real corpus discs; D's design
needs ground-truth binding bytecode from at least 2 corpus discs
side-by-side to verify the stack-machine pattern. The Phase A
infrastructure (master enum identification + ordinal->name table)
is what D will consume — landing it now unblocks D's design without
holding back the parser registration.
5 unit tests cover the fingerprint matcher logic + a roster lock that
forces explicit consideration when adding/removing fingerprints.
Precommit green.
Establishes the shared infrastructure layer for label parsers so that
Java-touching parsers (dbp, deluxe) don't reimplement jar walking and
all parsers route language/purpose/qualifier classification through
one source of truth instead of N hand-rolls.
New modules:
vocab.rs expanded from 27 -> ~370 lines
+ lang(text) -> Option<&'static str> (English/multi-word
-> ISO 639-2; ~45
languages, compound
phrases like
'Brazilian Portuguese'
and 'Castilian Spanish')
+ purpose(text) -> LabelPurpose (Commentary,
Descriptive, Score,
Ime; word-boundary
matched)
+ qualifier(text) -> LabelQualifier (SDH, Forced,
DescriptiveService)
+ has_word internal primitive — enforces word-boundary
matching so 'Commenter' no longer matches 'commentary' and
'engineering' no longer matches 'english'. Existing parsers
used .contains() and got lucky on the corpus; vocab now
guarantees the boundary in one place. 20+ unit tests.
text.rs NEW (~85 lines)
+ extract_ascii_strings(data, min_len) — promoted from two
near-duplicate copies (pixelogic min=4, dbp min=5);
threshold passed in. 7 unit tests including
trailing-without-terminator + high-bit-byte handling.
jar.rs NEW (~120 lines)
+ for_each_jar(reader, udf, fn) — walk every top-level
.jar under /BDMV/JAR/,
yield to callback.
+ has_path_prefix(archive, prefix) — cheap 'is this MY
framework's jar?' check
via central-dir filenames.
+ for_each_class(archive, fn) — parse every .class entry
through class_reader,
yield (name, &ClassFile).
+ try_each_class(archive, fn) — same with early-return on
first Some(R) match.
Refactored:
dbp.rs v2 on the new platform:
- dropped extract_printable raw byte scan
- dropped its own English -> ISO 639-2 map
- dropped its own parse_attributes hand-roll
+ iterates CpInfo::Utf8 via class_reader (structurally clean,
no false-positive risk from method bytecode bytes)
+ routes language/purpose/qualifier through vocab
All 7 prior dbp tests still pass; +2 new ones cover
vocab routing.
dead-code allows on text.rs (extract_ascii_strings) and jar.rs
(try_each_class) come off when pixelogic and deluxe land — they're
staged for next steps.
Precommit green (cargo +1.86 fmt + clippy + test).
Foundation for label parsers that need structured access to .class
files inside /BDMV/JAR/<x>.jar. Replaces noak (~3KLOC dep) with a
~1000-line std-only reader.
Public API:
- ClassFile::parse(&[u8]) -> Result<ClassFile>
- ConstantPool::{get, utf8, class_name, string, integer, member_ref, iter}
- Member::code(&pool) -> Option<CodeAttribute>
- CodeAttribute::instructions() -> Instructions iterator
- Instruction::{name, operand_u8, operand_u16, cp_index}
- Opcode constants (LDC, AASTORE, NEW, GETSTATIC, INVOKESPECIAL, ...)
Spec coverage:
- Constant pool: all 17 tag types incl. Long/Double 2-slot quirk
- Modified UTF-8 incl. 0xC0 0x80 -> U+0000 special case
- Bytecode iteration with full opcode size table
- Variable-length tableswitch / lookupswitch / wide
12 unit tests cover the opcode table edge cases (padded switch tables,
wide-iinc 6-byte form), modified-UTF-8 decoder, and iterator
stop-on-truncated behaviour.
Module is currently #![allow(dead_code)] — the public API is staged
for labels::deluxe (Phases A-E bytecode walker) and a labels::dbp
refactor onto the constant-pool iterator. Tests exercise the API
in isolation. The allow comes off as those callers land.
Also fixes two pre-existing clippy lints that 1.86's stricter checks
flagged after I touched the labels module:
- src/mux/disc.rs: while-let-loop in test fixture
- tests/pass_n_size_aware_skip.rs: type_complexity in helper signature
Precommit (cargo +1.86 fmt + clippy + test) green.
5th BD-J authoring framework recognized. Discriminator: any top-
level .jar in /BDMV/JAR/ that contains com/dbp/ package paths.
Identified during the 2026-05-10 corpus session via string-mining
disc-07's BD-J jar — perm files reference bd-live.magpictures.com
(Magnolia / Magnet Releasing).
Stream labels live as plain ASCII strings inside compiled .class
files in the form
LTextField,Audio1,English Dolby Atmos,Fontstrip_Composite,...
HTextField,Subtitle1,English SDH,Fontstrip_Composite,...
ATextField,Subtitle0,None,Fontstrip_Composite,...
— a quirk of the menu-rendering layer encoding TextField positions
and content as constant strings the Java compiler retained in the
class string pool. The leading single-letter prefix is string-pool
ordering noise; parser anchors on `TextField,`. Subtitle0 is the
disable-subtitles button and is skipped.
The parser:
- reads each top-level .jar via udf.read_file
- opens it with the existing zip dependency
- confirms com/dbp/ presence in the central directory
- walks .class entries, extracts printable strings, matches the
`TextField,(Audio|Subtitle)<N>,<label>,...` pattern
- maps human-readable language names ("English", "Castilian
Spanish", "Brazilian Portuguese", "Canadian French", ...) to
ISO 639-2 codes via a parser-local table (per the rules-of-
engagement memo, each parser knows its own format)
- preserves the full disc-authored label string in `name` so
consumers display it raw without the lib guessing further
structure
- detects SDH / Forced qualifiers and Commentary / Descriptive
purposes from substring matches; everything else falls through
to fill_defaults using BD-spec MPLS data
Verified live on the corpus: disc-07 (Civil War UHD) now matches
parser=dbp with 3 audio + 2 subtitle labels, exactly the count
visible in the disc's authored TextField definitions and what BD
spec MPLS reports.
Limitation: dbp's detect() returns true for ANY top-level .jar in
/BDMV/JAR/ (every BD-J disc has one), since the discriminator
trait function takes only `&UdfFs` and can't read jar contents.
parse() does the real com/dbp/ check — a non-dbp disc gets
parsed-as-dbp, archive_has_dbp returns false, parse() returns
None, and we fall through. Diagnostic noise: parsers_detected
includes "dbp" on non-dbp BD-J discs. Real fix is refactoring the
DetectFn signature to take a SectorReader; deferred.
7 unit tests cover the TextField extraction, language detection
(simple + compound: "Brazilian Portuguese", "Castilian Spanish",
"Canadian French", "Latin American Spanish", "Australian English"
plus the disc-corpus typo "Austrailian English"), SDH/Forced/RNIB
qualifier detection, and Commentary/Descriptive purpose detection.
Don't-guess discipline preserved: unknown languages return ""
(consumer falls back to MPLS spec data via fill_defaults).
Pass 1 sweep was grinding through damage zones because the marginal-
media handler returned `Bisect` for every failed 32-sector batch —
forcing 32 single-sector reads per bad block at ~5s each on a real
BU40N-vs-Dune-Pt-2 trace. AND the JumpAhead trigger required a 16-
block damage window to fill before firing, so entry into a
contiguous damage zone took ~40 minutes of grinding before the
first jump fired. Architecturally wrong: Pass 1's job is "fast and
accurate, get the most data in the shortest time." Bisection +
recovery is Pass N's purpose-built role.
ReadCtx now carries two new fields:
- `consecutive_outer_failures: u64` — outer-batch failures since
last outer success. Bisect inner failures don't count.
- `bisect_on_marginal: bool` — whether to return Bisect on a
marginal-media batch failure.
- `fast_jump_threshold: u64` — outer-failures count that triggers
JumpAhead before the damage window has filled.
`for_sweep` (Pass 1) sets `bisect_on_marginal=false`,
`fast_jump_threshold=4`, and zeroes the post-failure pause. Failed
batches become SkipBlock → whole block NonTrimmed → advance, no
sleep. After 4 consecutive outer failures: JumpAhead with the
existing escalating multiplier.
`for_patch` (Pass N) sets `bisect_on_marginal=true`,
`fast_jump_threshold=u64::MAX`, keeps the original cooldown pauses.
Pass N's whole reason to exist is to grind on bad ranges with
proper recovery semantics — single-sector reads, 60s recovery
timeout, retry budget, escalating skip — and that's unchanged.
`on_success` resets `consecutive_outer_failures` only when not
bisecting, so a good single-sector read inside Pass N's bisect
doesn't pretend we've escaped the damaged batch.
Tests:
- `pass_n_marginal_with_batch_gt_1_bisects` — Pass N still bisects.
- `pass_1_marginal_skips_instead_of_bisecting` — Pass 1 doesn't.
- `pass_1_jumps_after_4_consecutive_outer_failures` — fast-entry.
- `pass_n_does_not_fast_jump` — fast-entry is Pass-1-only.
- `outer_success_resets_consecutive_outer_failures` — counter reset.
- `bisect_inner_success_does_not_reset_outer_counter` — semantics.
- `pass_1_does_not_pause_on_skip` — explicit zero-pause contract.
- `long_failure_streak_extends_pause_on_pass_n` — Pass N still
extends pauses on long failure streaks (renamed from the old
sweep-based test).
Integration test `test_disc_copy_marks_failed_ecc_blocks_as_nontrimmed`
updated: it used to assert Pass 1 recovers all sectors via bisect
(bytes_good=total). New contract: Pass 1 marks NonTrimmed; Pass N
recovers. Test now asserts Pass-1-only outcome (bytes_pending=total,
complete=false) consistent with the redesign.
Real-world impact on the user's BU40N + Dune Pt 2 trace from this
session: a damage zone that was on track to take ~40 minutes of
Pass-1 grinding will now jump in ~20 seconds. Pass N still has the
full 7-pass recovery budget to revisit those NonTrimmed ranges.
Adds `parsers_detected: Vec<&'static str>` to `LabelAnalysis`. Records
every parser whose discriminator matched, regardless of whether its
parse() then returned Some/None.
Why: when `parser=None` we currently can't tell apart:
(a) no parser recognized this disc — missing parser, candidate for a
new module
(b) a parser recognized it but parse() returned None / empty —
capture truncated, or genuine empty authoring data, or a parser
bug
Surfaced concretely on the 11-disc capture session 2026-05-10:
disc-04 had `bluray_project.bin` in jar_inventory (pixelogic detect()
returned true) but parse() returned None because file content was
past the 1 GB capture window. Old API: parser=None — looked like
"missing parser." New API: detected=[pixelogic], parser=None — clearly
"capture problem, not a parser gap."
The tracing log line on the no-parser-emitted-labels path now
distinguishes the two cases too.
No behavior change to production rip path. extract() is unchanged;
only the diagnostic analyze() returns the richer result.
Promotes `mod labels` to `pub mod labels` and adds `analyze()` plus
`LabelAnalysis` (both `#[doc(hidden)]`) so an out-of-tree diagnostic
binary (freemkv-tools labels-analyze) can introspect which BD-J parser
matched a given disc, what JAR files the discriminators saw, and what
labels came out — without going through the production `apply()` path
that mutates DiscTitles.
Also adds `tracing::info!(parser = name, "label parser matched")` /
"no label parser matched" inside `extract()`. Dev-only signal: users
get the same seamless behavior; developers can finally tell whether a
disc hit a real parser or fell through to the codec-name fallback in
fill_defaults().
The new `jar_inventory()` helper deduplicates and sorts filenames
under any `/BDMV/JAR/<x>/` subdirectory — same plumbing the existing
`jar_file_exists()` discriminators use, just enumerated rather than
predicate-tested. Used by `analyze()` to surface unrecognized
parser-source files when no parser matches, which is the input to
"do we need a new parser?" triage.
No behavior change to the production label path. `apply()` and
`extract()` remain functionally identical; the new public surface
exists alongside.
libfreemkv is a library — Cargo.lock is gitignored (standard for
libs). --locked refuses to create a lockfile on a fresh runner,
so it always fails CI. --locked stays in the binary crates
(freemkv, autorip, bdemu) which DO track Cargo.lock and benefit
from the dependency-race hard-fail behaviour.
The 0.18.4 commit landed with rustfmt diffs in the new
canonical_order tests because my local validation script piped
'cargo fmt --check' to 'tail -1', masking the diff output and
reporting green when fmt was actually unhappy. CI's lint job
caught it immediately. No code change — pure formatting.
Disc::titles previously sorted purely by duration_secs descending,
which puts a play-all virtual playlist at index 0 on UHDs that ship
one. Such playlists reference the same source clips multiple times
for seamless alternate-angle / alternate-ending playback and report
inflated duration AND inflated size_bytes that exceeds the disc's
physical capacity.
Concrete observed case (The Amateur 2025 4K UHD, 58.5 GB BD-100):
Title 1 — 00020.mpls — 4h13m — 92.4 GB — 253 clips ← impossible
Title 2 — 00800.mpls — 2h02m — 57.2 GB — 1 clip ← the movie
92.4 GB > 58.5 GB capacity is proof of clip double-counting. With
the duration-only sort, freemkv -t 1 / disc.titles.first() / autorip's
main-feature picker all selected the 4-hour composite instead of the
2-hour movie.
New canonical_title_order:
1. Real titles (size_bytes <= capacity_bytes) before virtual
composites — capacity gate is hard physical truth.
2. Among real titles, fewer clips first (1-clip wins as the
canonical main feature; multi-clip is either chapter-stitched
or composite).
3. Tiebreak on longer duration first.
Behaviour:
- Non-branching discs: unchanged. The longest 1-clip title is
already the movie.
- Branching UHDs: virtual composite drops to the back, the real
movie surfaces at index 0.
Comparator exposed as Disc::canonical_title_order for downstream
consumers that need the same logic on custom title sets.
Three regression tests (disc::tests::canonical_order_*):
- pushes_oversize_play_all_behind_real_main (The Amateur)
- preserves_natural_ranking_on_normal_disc
- fewer_clips_wins_tiebreak
decrypt::decrypt_sectors now restores chunks when decrypt_unit_full's
TS-sync verification fails, preventing 0.18.1's silent corruption of
MPLS/CLPI navigation files when DecryptingSectorSource decorates the
sweep reader. Fixes E6009 NoStreams on info iso:// for AACS-encrypted
UHDs ripped without --raw.
Disc::sweep progress takes max(snapshot.bytes_good, bytes_done) so
the user-visible counter never regresses below what the producer has
already sent.
The library's public-facing docs were sitting on the 0.17 trait
surface — Disc::copy, pes::Stream, SectorReader, etc. — even though
all in-tree callers migrated in 0.18 rounds 1-3. With 0.18.1 about
to ship, a user copy-pasting the README sample from crates.io would
have hit a compile error.
This commit is purely doc-side:
- README.md: Quick Start rewritten onto Disc::sweep + Disc::patch
with caller-orchestrated multipass; Streams table footnote and
Architecture row reference FrameSource / FrameSink.
- CHANGELOG.md: 0.18.1 entry describing the redesign — primitives,
trait splits, deprecations (kept alive through 0.18.x, deletion
target 0.18.2), throughput numbers.
- docs/{rip-recovery,api-design,architecture,disc-to-rip,
drive-access,udf}.md: every Disc::copy / pes::Stream /
SectorReader reference updated to the 0.18 trait surface.
- FEATURES.md: deleted (8+ versions stale; capabilities live in
README.md and CHANGELOG.md now, matching the workspace-top
FEATURES.md removal in 84acd65).
- examples/iso_dump.rs: verified compiles against 0.18.1.
No code changes.
See (internal)/memory/0_18_redesign.md.
Single contributor: MattJackson.
Round 3 step 1: lift the visibility on the two flat rip-phase verbs
so consumers (autorip + freemkv CLI) can call them directly instead
of going through Disc::copy's multipass dispatcher. Also lift their
option/outcome types and re-export at crate root.
- fn sweep -> pub fn sweep (with rustdoc explaining its role)
- fn patch -> pub fn patch (ditto)
- pub(crate) struct SweepOptions -> pub struct SweepOptions
- pub(crate) struct PatchOpts -> pub struct PatchOptions (renamed
for consistency — both are 'Options')
- pub(crate) struct PatchOutcome -> pub struct PatchOutcome
- libfreemkv::{SweepOptions, PatchOptions, PatchOutcome} re-exports
at crate root.
Disc::copy still exists and still calls Disc::sweep / Disc::patch
through the now-private sweep_internal / patch_internal wrappers.
Migration of the two autorip callers + the freemkv CLI's
disc_to_iso to direct sweep/patch is a follow-up; once those land
Disc::copy + CopyOptions + CopyResult delete in the same commit.
See (internal)/memory/0_18_redesign.md and
0_18_round3_migration_audit.md.
Single contributor: MattJackson.
Adds a Halt field to DiscStream, populated via the new
`with_halt(halt)` builder. The internal recovery / fill_extents
loops check `halt.is_cancelled()` directly. The existing
`set_halt(Arc<AtomicBool>)` method stays through the deprecation
window for callers (autorip mux) that haven't migrated; marked
#[deprecated] with a pointer to the constructor-time path.
Both signals are unified inside DiscStream: either Halt or the
legacy Arc<AtomicBool> triggers cancellation, so callers can mix
during the deprecation window without breaking stop behaviour.
See (internal)/memory/0_18_redesign.md and
0_18_round3_migration_audit.md.
Single contributor: MattJackson.
existing call sites — sweep producer and DiscStream demux
Round 1 shipped the DecryptingSectorSource decorator
(libfreemkv/src/sector/decrypting.rs) but the existing decrypt
sites kept calling crate::decrypt::decrypt_sectors inline. This
commit migrates both:
- Disc::sweep (disc/mod.rs): producer wraps the input reader
in DecryptingSectorSource::new(reader, keys) before the read loop.
The inline decrypt_sectors call goes away — read_sectors yields
plaintext directly.
- DiscStream (mux/disc.rs): constructor wraps the underlying
Box<dyn SectorReader> in DecryptingSectorSource so the internal
fill_extents / read path sees plaintext bytes. The DecryptKeys
field stays on DiscStream for metadata-side use; it just no
longer drives decryption.
Disc::patch carried the same inline decrypt step at three call
sites (main read, backtrack read, non-NOT_READY retry read). All
three migrated onto the same wrapping for a single audit surface.
Two small support changes carry the migration without touching
the round-1 decorator shape:
- sector/mod.rs gains specific SectorSource impls for
&mut dyn SectorReader and Box<dyn SectorReader>, mirroring
std's Read forwarding pattern. Generic blankets would conflict
with the existing SectorReader → SectorSource blanket under the
orphan rule (downstream could impl SectorReader for &mut U), so
the impls are scoped to the dyn-trait shape we actually consume.
- sector/decrypting.rs gains DecryptingSectorSource::set_keys so
DiscStream::set_raw() can flip the wrapped reader to a
DecryptKeys::None pass-through without rebuilding the decorator
(which would require moving the inner Box out from behind &mut self).
After this commit, grep `decrypt_sectors` in src/ shows the
function definition, its single use inside DecryptingSectorSource,
plus comments only. One audit surface for AACS / CSS / passthrough
correctness.
Behaviour-preserving: same plaintext bytes flow through; the only
difference is which type owns the decrypt step.
See (internal)/memory/0_18_redesign.md.
Single contributor: MattJackson.
Auto-fmt nit on the multi-line map.flush() expression that landed
when the sweep + patch + DiscStream-FrameSource branches were merged
together. No semantic change.
Sweep was the original producer/consumer split that motivated the
generic Pipeline primitive (round 1, commit 198268b). Now that
Pipeline + Sink exist, sweep stops shipping its own bespoke
threading.
- New SweepSink: Sink<WorkItem> impl in src/disc/sweep.rs. Owns
WritebackFile + Mapfile + ProgressSnapshot back-channel. apply()
carries the file-write + mapfile.record per WorkItem; close()
drains writeback, fsyncs, flushes mapfile.
- Disc::sweep: constructs SweepSink, calls Pipeline::spawn_named
(so the consumer thread keeps showing up as
freemkv-sweep-consumer), sends WorkItems, calls pipe.finish().
The producer-side ReadCtx state machine, decrypt, set_speed,
halt — all unchanged.
- Pipeline gains spawn_named(name, depth, sink) so callers can
preserve identifiable thread names without the primitive baking
one in. Also adds Pipeline::try_send for the throttled
StatsRequest path that must not block the producer.
- Deleted src/disc/sweep_pipeline.rs entirely. WorkItem,
ProgressSnapshot, ConsumerSummary moved into disc/sweep.rs as
module-private types. WorkItem::Finish dropped — dropping the
channel is the end-of-stream signal Pipeline already uses.
Behaviour-preserving: the sweep algorithm, mapfile invariants,
back-pressure via channel depth (DEFAULT_PIPELINE_DEPTH = 4) all
match the 0.17.13 implementation. New synthetic regression test
(sweep_pipeline_full_good_100_batches) exercises ~100 batches of
clean reads end-to-end through the new Pipeline path and verifies
bytes_good and ISO file size.
See (internal)/memory/0_18_redesign.md.
Patch was strictly serial (per-sector recovery: read → seek+write
→ mapfile.record → next). Lifting the write+record onto a consumer
thread lets the drive issue the next per-sector retry while the
previous block's recovered bytes are being committed — small but
real win on damaged discs with many bad sectors, and uniform with
sweep's threading model.
- New PatchSink: Sink<PatchItem> impl in src/disc/patch.rs. Owns
WritebackFile + Mapfile. apply() seeks+writes recovered bytes
and records mapfile state per item; close() runs sync_all and
mapfile.flush.
- Channel depth: WRITE_THROUGH_DEPTH (1). Patch wants minimum
buffering — back-pressure should kick in immediately so the
drive's per-sector retry budget isn't ahead of the writer.
- Disc::patch: keeps every existing recovery decision on the
producer (reverse walk, damage-window skip, NOT_READY pauses,
bridge-degradation handling, wedge exit, range watchdog).
WritebackFile ownership moves to the sink.
Behaviour-preserving: per-sector single-shot read budget unchanged
(BU40N+Initio bridge wedge concern still respected); recovery
algorithm bit-identical.
See (internal)/memory/0_18_redesign.md.
Single contributor: MattJackson.
Round 2 #1 landed `Pipeline` / `Sink` / `Flow` / `DEFAULT_PIPELINE_DEPTH`
in `crate::io::pipeline` but only re-exported them through
`crate::io` (which is `pub(crate)`), so no out-of-tree consumer could
reach them. autorip's round 2 #2 (lifting the mux loop onto Pipeline +
MuxSink) is the first such consumer; surface the primitives at the
crate root for ergonomic access.
No behaviour change — the items themselves are unchanged from round
2 #1; this is just `pub use` plumbing.
Single contributor: MattJackson.
Mirror of the FrameSink concrete migrations slice (f52e4c5) on the
read side. DiscStream is the only meaningful source impl in tree;
all the mux/* impls are sinks.
The round-1 blanket impl<T: Stream + Send> FrameSource for T
already covers DiscStream if it's Send. This slice:
- Audits DiscStream's interior types for Send (its Box<dyn
SectorReader> already requires Send via the trait's super-bound;
verify nothing else interior breaks Send).
- Adds a synthetic-input test that constructs Box<dyn FrameSource>
over a DiscStream, reads frames through the trait object, and
exercises info() / headers_ready() / codec_private().
- (Conditional) Adds a direct FrameSource impl on DiscStream only
if call-site ergonomics demand it; otherwise relies on the
blanket.
No caller migrated. mux::resolve::input still returns
Box<dyn Stream>; autorip / CLI consumers still call Stream::read.
Per-caller migration is a later slice.
See (internal)/memory/0_18_redesign.md.
Single contributor: MattJackson.
Two clippy issues surfaced when round 1 polish + round 2 FrameSink
migrations both landed on libfreemkv main:
- src/halt.rs: clippy::new_without_default fires when a public new()
exists without Default. The polish pass dropped the derive thinking
it was redundant — clippy disagrees, so add a manual impl that
forwards to new(). Doc-comment notes why both exist.
- src/disc/read_error.rs:372: pre-existing
assert_eq!(.., true) trips clippy::bool_assert_comparison. Pre-0.18
precommits passed because that lint sat outside the gate; the
round-2 commits brought enough new clippy surface that it now
shows up. Trivial cleanup: assert!(...) instead of assert_eq!.
Single contributor: MattJackson.
Per-impl migration of MkvStream / M2tsStream / NetworkStream /
NullStream / StdioStream from the deprecated pes::Stream trait
to the typed pes::FrameSink trait. Both impls coexist during
the 0.18 deprecation window — the existing Stream impls are
unchanged.
The FrameSink::finish signature differs (Box<Self> vs &mut self),
which is why this couldn't be a blanket impl. Each migration
re-borrows the box and delegates to the underlying Stream::finish
body.
FrameSink: Send forced two struct fields (M2tsStream's boxed
Write/Read, MkvStream's boxed WriteSeek/Read) to gain `+ Send`
bounds — minimum surface needed to make the Send-bounded trait
impl-able. mux::resolve::output's local Box<dyn WriteSeek>
construction picks up the same `+ Send`. tests/streams.rs's
shared `stream.write/.finish/.info/.read` calls were
disambiguated to `PesStream::*` to resolve the now-multiple
candidates from coexisting trait impls.
Caller migration (mux::resolve::output return type, autorip,
CLI) is a later slice. This commit only adds new impls; nothing
removed.
See (internal)/memory/0_18_redesign.md.
Single contributor: MattJackson.
The SectorSource/Sink agent and the WritebackFile-rename agent both
branched from main concurrently; the sector branch wrote against the
0.17 Writer name and only the rename branch knew about WritebackFile.
This integration commit reconciles the two: FileSectorSink::create /
::open / the inner-field type all use WritebackFile directly, and the
module-level + struct-level docs are corrected.
Splits the unidirectional read trait from a (planned) write trait at
the sector level, eliminating runtime "wrong direction" potential.
Keeps SectorReader alive as a pre-deprecation alias via blanket impl
so existing callers compile unchanged through the migration window.
Adds DecryptingSectorSource decorator: wrap any SectorSource in this
to get plaintext sectors out. Replaces the duplicate decrypt code
paths in sweep_pipeline and DiscStream (those migrations are
follow-up commits).
The formal #[deprecated] attribute on SectorReader is held back to a
follow-up commit because internal call sites in disc/, udf/, mux/,
and verify/ still go through the legacy trait, and the CI gauntlet
treats deprecation lints as errors. Behavioural intent — "this trait
is going away" — is documented on the trait itself.
See (internal)/memory/0_18_redesign.md.
Single contributor: MattJackson.
Splits the bidirectional pes::Stream into one-direction traits so
calling read() on a write-only sink is a compile error instead of
runtime E9001. Keeps Stream alive as deprecated through 0.18 with a
blanket FrameSource impl so existing concrete types compile unchanged.
FrameSink can't be blanket-impl'd from Stream (different finish
signature), so concrete impls migrate per-type in a follow-up.
Concrete `impl pes::Stream for X` blocks in mux/* and the existing
tests gain a one-line `#[allow(deprecated)]` to keep `-D warnings`
clean during the deprecation window — no behavior changes.
See (internal)/memory/0_18_redesign.md.
Single contributor: MattJackson.
Generic bounded producer/consumer pipeline. The same shape applies to
sweep, patch, and mux today via three near-duplicate implementations
(or, in patch's and mux's case, no implementation at all). 0.18
collapses them onto one primitive. See
(internal)/memory/0_18_redesign.md for full context.
Single contributor: MattJackson.
The type's job is the bounded-cache writeback pipeline (sync_file_range
+ posix_fadvise(DONTNEED)) — not generic writing. The 0.17 name was
ambiguous; reading `Writer::new(file)` gave no hint about what was
special. New name makes the role obvious at every call site.
Adds `WritebackFile::create(path)` and `WritebackFile::open(path)`
constructors so callers don't have to assemble a `File` first.
No alias kept; this is a clean 0.18 rename. See
(internal)/memory/0_18_redesign.md.
Single contributor: MattJackson.
One-bit cooperative cancellation flag. Replaces ad-hoc Arc<AtomicBool>
patterns scattered across libfreemkv (DiscStream::set_halt) and the
HALT_FLAGS global registry in autorip. See
(internal)/memory/0_18_redesign.md.
Single contributor: MattJackson (no attribution trailers).
The bounded-cache writeback wrapper (crate::io::Writer) was added in
0.17.10 and wired into Disc::sweep in 0.17.11, but the other two
paths in the crate that write large amounts of data sequentially —
Disc::patch and the MKV/M2TS mux — were still operating on raw
std::fs::File. That meant the dirty-page burst pathology the wrapper
exists to prevent could still bite on slow / network-attached staging
during recovery and mux phases.
This release plugs those gaps:
- Disc::patch (disc/mod.rs:1981) now wraps the reopened ISO in
Writer before any seek / write. sync_all on Writer cleanly drains
the in-flight chunk before the existing fsync.
- mux/resolve.rs MKV and M2TS branches wrap the output File in
Writer underneath BufWriter. UHD MKV mux routinely produces 70+ GB
of sequential output; the page cache no longer absorbs that as a
single hot blast on slow targets.
Mapfile, log, settings, history, and stream-pipeline byte buffers
remain unchanged: those are either small one-shot writes (where
the wrapper has zero benefit and adds a stream_position syscall) or
already use bounded persistence (mapfile time-batched in 0.17.12).
The principle: any path that writes substantial sequential data to
a single file uses Writer; trivial writes don't.
Pre-0.17.12 every Mapfile::record() persisted the full mapfile via
tempfile-create + write + atomic-rename. On local LVM that's
microseconds; on NFS each rename is multiple RPCs through the
unraid user-share fuse layer, dragging a Black Mass UHD rip from
~11 MB/s on local to ~1.5 MB/s on NFS — the mapfile path alone burned
multiple seconds of wall time per real-world second of work.
Mapfile now batches the rename to once per second:
- record() always updates in-memory state and stats; only fires
write_to_disk when last_flushed.elapsed() >= FLUSH_INTERVAL (1 s).
- New flush() API forces a persist; called by sweep_pipeline's
consumer at end-of-sweep and by Disc::patch at end-of-patch,
after the file's sync_all.
- Drop impl best-effort flushes so an early-return / unwind doesn't
silently lose pending state.
Crash-safety changes from "lose at most one block" to "lose at most
1 s of recorded progress" — the ISO file's payload bytes are unaffected;
only the mapfile's authority over which sectors are already-good is at
risk, and a resume re-reads anything Pass 1 had already covered.
Measured on the BU40N test bed against Black Mass UHD inner zone:
- NFS staging: 1.5 MB/s → 16.48 MB/s (10.9× recovery)
- Local LVM staging: 11.09 MB/s → 11.83 MB/s (+6.7 % bonus)
Internal round_trip_load test now flushes before reading back from
disk. External patch / copy tests are unaffected: patch and
sweep_pipeline flush at completion before returning.
Pre-0.17.11 sweep ran strictly serialised: SCSI read → decrypt → seek
+ write → mapfile.record → next read. Drive idled for the post-read
work; throughput capped at the sum of both costs. On a healthy disc
that's ~7-12 ms read + ~5-15 ms write/record per 64 KB batch, limiting
sustained throughput to ~10-12 MB/s on the test bed (BU40N + UHD inner
zone), well below the ~14-16 MB/s drive ceiling.
Decouples them: producer thread (caller's) owns SectorReader +
read_error state + decrypt + set_speed + halt; consumer thread (one
spawn) owns Writer + Mapfile, receives WorkItem messages, applies
file write + mapfile record. Bounded mpsc::sync_channel(4) gives
natural back-pressure. While the consumer writes batch N, the
producer is already reading batch N+1 — steady-state throughput is
now bound by the slower of the two pipelines (drive on healthy
discs), not their sum.
Side effects:
- Bisect path now decrypts. Pre-0.17.11 the bisect inner loop wrote
raw cyphertext for single-sector recoveries on encrypted discs —
quiet correctness bug exercised only by batch-fail-then-
bisect-succeed on encrypted media. New producer-side decrypt
covers main + bisect success paths uniformly.
- All read_ctx state stays single-threaded on producer (damage
window, jump multiplier, etc.). No locking added.
- Mapfile remains single-writer on consumer. No locking.
- Halt latency: producer breaks loop, sends Finish, consumer drains
≤4 in-flight items + sync_all. ~1 batch (~12 ms) typical.
- BU40N + Initio bridge wedge concern unchanged: still single SCSI
command in flight, error-path timing identical, no new retries.
New module: src/disc/sweep_pipeline.rs (WorkItem, ProgressSnapshot,
ConsumerInputs, spawn_consumer, consumer_loop, helpers). Public API
unchanged — Disc::copy / CopyOptions / CopyResult identical.
Patch (Pass N) is NOT changed; it's bound by drive recovery time, not
the read/write serialisation.
Pass 1 sweep speed on a healthy disc previously dipped from ~15 MB/s
to ~1 MB/s every ~30 s on a host with default Linux dirty-page
settings. Empirical cause: the kernel's vm.dirty_ratio (~20% of RAM)
lets hundreds of MB of dirty pages accumulate, then bursts a flush at
99% disk utilisation that blocks app writes for ~1 s. Confirmed on
the BU40N test bed — dirty pages grew 112 → 563 MB between bursts;
lowering vm.dirty_bytes to 64 MB at the host sysctl level eliminated
the dips. Shipping the equivalent inside libfreemkv so users do not
need to tune the host kernel.
- New crate::io::Writer: drop-in File wrapper (impl Write + Seek).
Wraps a per-platform WritebackPipeline that on Linux schedules
sync_file_range(WRITE) + lagging sync_file_range(WAIT_AFTER) +
posix_fadvise(DONTNEED) in 32 MB chunks, bounding dirty cache at
~64 MB. macOS and Windows ship a no-op stub.
- Disc::sweep wraps its output File in Writer. Loop body unchanged.
- Module is purpose-built so any large sequential output (patch,
mux) can adopt the same wrapper as a one-line change later.
Version bump to keep the four freemkv crates at unified versioning
after autorip's v0.17.6 + v0.17.7 work today. No libfreemkv code
changes; republished to crates.io so downstream consumers stay
aligned on the latest patch version.
Direct-SATA BU40N + Dune Part Two UHD live testing exposed that the
v0.17.3 single-shot SCSI READ path matched 0/22 of the small bad-
sector LBAs that dd if=/dev/sr0 recovers on the same drive. This
release closes that gap and fixes adjacent bugs silently capping
recovery.
- /dev/sr0 pread fallback in Drive::read (Linux only): on SCSI READ
Err, fall back to posix_fadvise(DONTNEED) + pread() against the
corresponding block device. Kernel sr_mod runs ~5 internal retries
with no per-attempt mid-layer escalation overhead — the mechanism
behind dd's recovery advantage. End-to-end byte verification
confirms the fallback path returns real disc data.
- Disc::patch per-range watchdog fix: MAX_RANGE_SECS was breaking
'outer (one slow range killed the entire patch). Now skips to the
next range. Pre-fix patch died after 4 sectors of range 1 of 47.
- Per-sector range budget: range_budget = sectors × 25 s, capped at
1800 s. Replaces the flat 180 s/range that was unfair to medium
ranges and pointlessly generous to single-sector ones.
- consecutive_failures resets per range. The wedge-exit detector is
for stuck-on-one-range, not many-small-ranges-with-one-fail-each.
- Reverted inline 5× retry experiment (was hurting: each retry paid
kernel SCSI escalation overhead). Restored READ_RECOVERY_TIMEOUT_MS
to 60 s. The kernel-auto-retry pattern is now provided by sr0
fallback.
Empirical: pass 1 recovered 94.6 MB / 11 s of main title (33 sr0
saves). Pass 2 added 0.6 MB. Remaining ~233 MB on the test disc
appears physically unrecoverable on this hardware.
tests/scsi_recovery.rs:
- Add `use std::time::Duration` inside both `#[cfg(target_os = "linux")]`
blocks. Locally on macOS the linux blocks are cfg-out so the missing
import was invisible to precommit on macOS.
- Bug pre-dated this branch but only surfaced when v0.17.2 release CI
ran the test compile on Linux.
Cargo.toml: 0.17.2 -> 0.17.3.
Cargo.toml: 0.17.1 -> 0.17.2. Functionally identical to the prior
commit; 0.17.1 was never published to crates.io but a tag exists on
the remote pointing at an unrelated commit. Bumping past it.
src/disc/mod.rs:
- Cache priming (3-sector lookback) before patch's single-sector reads.
Drive read-ahead pulls in adjacent pages so the target may already be
cached when we ask for it. Throwaway reads — failures here don't
update mapfile state.
- When patch hits skip-limit on a range, leave remaining sectors
NonTrimmed instead of marking Unreadable. We never tried to read those
sectors, so don't give them terminal status — drive state evolves
between passes (cache, mechanical settle), and a later pass may
succeed.
tests/pass_n_patch_fix.rs:
- New regression test for the decrypt key inversion bug at
src/disc/mod.rs:1938-1942. Asserts decrypt_sectors is invoked with
the correct key when opts.decrypt=true.
tests/pass_n_size_aware_skip.rs:
- rustfmt-only changes.
Cargo.toml: 0.17.0 -> 0.17.1.
New disc/read_error.rs as the single entry point all read failures flow
through. Handler classifies the error, updates the in-flight context
(damage window, retry budgets, jump multiplier), and returns a
ReadAction the caller dispatches on. Pass 1 (sweep) refactored to use
it; ~340 lines of nested if/else collapsed into ~120 lines of action
dispatch. Adding a new error class = one match arm. Logging is in one
place. Bisect inner failures don't poison the damage window. Jump
multiplier capped at 64 (max 1 GB jump for batch=32 — observed prior
unbounded behavior produce a single 56 GB jump on a wedged drive).
Pass N (patch) damage_skip is now size-aware: each skip is capped at
range_remaining/4 rather than the absolute MB-scale escalation. The
old logic could leap over a 100-sector bad range that hides a 50-sector
good middle; size-aware convergence finds the good middles instead.
Tests in tests/pass_n_size_aware_skip.rs exercise the size-aware skip
against synthetic patterns (25-bad/50-good/25-bad and three good
middles in a row) and prove ≥98% of good middles are recovered.
Existing test test_disc_copy_marks_failed_ecc_blocks_as_nontrimmed
updated to reflect that MEDIUM_ERROR now triggers single-sector
bisect (which the BlockSizeFailingReader succeeds at).
- Fix unwrap in disc/mod.rs sweep() hot path using pattern matching
- Patch pass excludes Unreadable sectors from work list
- Expose bytes_bad_in_title for accurate UI reporting
- All 256 tests pass, cargo clippy clean with -D warnings
- DAMAGE_WINDOW 50→16, DAMAGE_THRESHOLD_PCT 25→12: triggers on 2nd scattered failure
- Previous 50/25% was too diluted by good reads between sparse failures
- copy() dispatch checks mapfile total_size == disc capacity_bytes (covers_disc)
- NonTried regions → sweep with resume=true (preserves mapfile)
- Only NonTrimmed/NonScraped/Unreadable → patch
- sweep_internal takes resume param: true when dispatching from existing mapfile
- Verified: Pass 1 from 30-100% completes in ~20 min with correct jumps through 3 damage zones
- CopyOptions: replace resume/skip_on_error/batch_sectors with single multipass bool
- Disc::copy() auto-detects pass from mapfile state: no mapfile or NonTried → sweep, only NonTrimmed/Unreadable → patch
- Fix bug where mapfile with NonTried regions incorrectly dispatched to patch mode
- SectorReader::set_speed() default method, Drive impl sends SET CD SPEED
- On damage zone entry: set_speed(0x0000) for better error recovery
- On damage zone exit (50 consecutive good): set_speed(0xFFFF) to restore max speed
- Disc::mapfile_for() returns /tmp/<name>.mapfile for null:// output
- patch_internal/sweep_internal as private helpers, CopyResult gains recovered_this_pass
- Adaptive probe algorithm in Disc::copy skip_on_error mode: after 4
consecutive errors, probe 1 sector at 256x batch (8 MB) ahead. If
good, zero-fill gap, mark NonTrimmed, jump. Clears bad zones in
seconds instead of hours.
- NOT_READY sense key (0x02) now retries up to 3x with 3s pause before
marking NonTrimmed. BU40N returns NOT READY for bad sectors, not
MEDIUM ERROR.
- PassProgress struct gains bytes_bad_total field for consumer-side
bad/retryable byte counts.
- Mapfile header version string fix: no longer duplicates 'libfreemkv v'
prefix on each write.
- Structured sense_key/asc/ascq logging in copy error path.
macOS SCSI transport rewritten from hybrid MMC+pread to single-path
raw CDB dispatch through SCSITaskDeviceInterface. All CDBs (INQUIRY,
READ, REPORT KEY, etc.) now go through ExecuteTaskSync — 1:1 with
the Linux SG_IO backend.
Key changes:
- New macos_shim.c: diskutil unmount → find IOBDServices →
ObtainExclusiveAccess → raw CDB dispatch. Eliminates Rust-side
IOKit COM vtable complexity.
- build.rs compiles macos_shim.c via cc into static lib
- macos.rs simplified to three FFI calls (open/close/execute)
- disc/mod.rs: graduated batch restore after errors, skip-ahead
through bad zones, configurable error pause
- as_bytes() requires OsStrExt import which is platform-specific
- as_encoded_bytes() is the portable API available on all platforms
- Fixes CI failure on Linux (Ubuntu) in GitHub Actions
0.13.28 - when drive returns MEDIUM ERROR (bad sector), skip the sector
and continue instead of retrying or bailing. Write zero-fill, mark as
Unreadable for pass 2+ recovery.
Closes: (internal)#20260427
Fix extract_scsi_context() and Error::scsi_sense() to handle Error::DiscRead
in addition to Error::ScsiError, so is_marginal_read() works for DiscRead
errors and disc::copy() can properly route MEDIUM ERROR as a marginal
(bad sector) instead of bailing.
Closes: (internal)#20260427
bytes_pending was an opaque aggregate of NonTried + NonTrimmed +
NonScraped. UIs that wanted a "will retry in Pass 2-N" bucket were
stuck showing the entire unread disc as Maybe at pct=0.
Adds two granular fields to MapStats:
bytes_nontried — Pass 1 hasn't read these yet
bytes_retryable — NonTrimmed + NonScraped, Pass 2-N will retry
bytes_pending stays for back-compat (= bytes_nontried + bytes_retryable).
Also picks up the cargo fmt --check lint that's been red on main CI
since v0.13.18 (rustfmt fold differences on a few long format-string
layouts; functional no-op).
Through the entire 0.13.x line, every CHECK CONDITION reply from the
drive (the standard way SCSI tells you why a sector failed) was being
collapsed into a synthetic status=0xFF, sense_key=0 transport-wedge
sentinel and the actual sense data was thrown away. Confirmed live on
the BU40N reading Dune 2 on 2026-04-27: drive returned host_status=0,
driver_status=8, status=2, exec_elapsed_ms=1416 on every bad sector
— a clean CHECK CONDITION carrying full sense data — and Disc::copy
was bailing on it as if the bridge had wedged.
Root cause: scsi/linux.rs's wedge check was
`host_status != 0 || driver_status != 0`
SG's DRIVER_SENSE bit (0x08) is set on every CHECK CONDITION reply
just to flag "sense buffer is populated" — it's not a transport
failure on its own. Pre-fix we conflated the two and silently lost
every drive-reported error reason. macOS and Windows backends had
the same shape: they extracted sense_key only, dropping ASC/ASCQ.
API restructure (clean separation):
Error::ScsiError {
opcode: u8,
status: u8, // 0xFF = synthetic transport-failure
sense: Option<ScsiSense>, // None ⇔ no sense delivered
}
pub struct ScsiSense { sense_key: u8, asc: u8, ascq: u8 }
impl ScsiSense {
pub fn is_marginal(&self) -> bool // keys 0/1/3/B
pub fn is_medium_error(&self) -> bool
pub fn is_hardware_error(&self) -> bool
pub fn is_unit_attention(&self) -> bool
pub fn is_data_protect(&self) -> bool
pub fn is_not_ready(&self) -> bool
pub fn is_illegal_request(&self) -> bool
pub fn is_aborted_command(&self) -> bool
}
impl Error {
pub fn scsi_sense(&self) -> Option<&ScsiSense>
pub fn is_scsi_transport_failure(&self) -> bool
pub fn is_marginal_read(&self) -> bool
}
SCSI protocol constants (SCSI_STATUS_*, SENSE_KEY_*) moved from
error.rs to scsi/mod.rs where they belong alongside SCSI_INQUIRY,
SCSI_READ_10, etc. parse_sense replaces parse_sense_key (returns the
full triple, not just the key); inline tests now exercise ASC/ASCQ
extraction at the right offsets for both descriptor (0x72/0x73) and
fixed (0x70/0x71) sense formats.
Disc::copy + Disc::patch sense-aware dispatch:
- marginal sense (MEDIUM ERROR / ABORTED COMMAND / RECOVERED ERROR
/ NO SENSE) → engage hysteresis (Block→Single, bpt=1)
- non-marginal sense (HARDWARE / DATA PROTECT / UNIT ATTENTION /
NOT READY / ILLEGAL REQUEST / transport failure / kernel
IoError) → bail with full sense info preserved; caller (autorip)
surfaces "physical replug" / "drive failing" / "media changed"
Pre-fix: every CHECK CONDITION → 0xFF synthetic → Disc::copy bailed
→ bytes_good froze at the bad zone. The hysteresis from v0.13.22
was correct but never got to run. This release unblocks it.
Disc::patch's wedged_threshold (50 consecutive failures) stays as
defense-in-depth for chains of marginal failures; a single
non-marginal sense now short-circuits it.
New phase=bail trace event records the bail reason with the sense
triple. phase=transport_err remains for genuine bridge wedges /
kernel timeouts; phase=scsi_err carries the parsed sense_key, asc,
ascq for drive-reported errors.
All 350 tests pass. Clippy clean across all targets.
The v0.13.21 bisect-on-fail recovery was correct (100% of recoverable
sectors picked up) but slow on dense damage clusters. Live test on
Dune 2 v0.13.21 burned ~30 s per damaged 60-block — paying a ~5 s
kernel ABORT/timeout at every level of a log₂(60) ≈ 6 deep DFS, on
the failing branch each time.
Replaced with a two-state hysteresis machine in Disc::copy:
Block(batch):
read(batch) ok → write, advance, stay Block
read(batch) fail → switch to Single, retry SAME range at bpt=1
Single:
read(1) ok → write, consecutive_good++
if consecutive_good >= BPT1_EXIT_THRESHOLD:
switch to Block, reset counter
read(1) fail → mark NonTrimmed, consecutive_good = 0
BPT1_EXIT_THRESHOLD = 10_000 sectors (= 20 MB clean run). Calibrated
from the 2026-04-26 BU40N empirical probe data; tunable.
Per-block math on a damaged 60-block with 1 truly bad sector:
Bisect (v0.13.21): ~30 s (5 s × 6 levels)
Hysteresis (v0.13.22): ~10 s (5 s bpt=batch fail
+ 59 × 1 ms good
+ 1 × 5 s bad)
Inside a damaged cluster spanning many 60-blocks the win compounds:
hysteresis pays the bpt=batch fail cost ONCE on entry, then stays at
bpt=1 across the cluster; bisection re-paid it every 60 sectors. For
Dune 2's ~1248-sector boundary cluster that's ~21 fewer 5-sec
kernel timeouts ≈ 100 s saved per pass.
Telemetry: new phase=mode_change trace event with from, to, lba, and
consecutive_good. Replaces v0.13.21's phase=bisect. Worklist DFS is
gone — single iterative for s in 0..count on the failure path.
Test rename, same fixture and same 100% recovery expectation:
test_disc_copy_bisect_recovers_via_single_sector_reads
→ test_disc_copy_hysteresis_recovers_via_single_sector_reads
Also adds DamageSeverity (Clean / Cosmetic / Moderate / Serious) +
classify_damage(bad_sectors, lost_ms), re-exported from libfreemkv,
so applications can render structured severity instead of formatting
their own from raw counters.
Fixes the BU40N wedge cycle that has been chasing us through
v0.13.18-20. Two changes, both backed by empirical live-hardware
probes recorded in (internal)/docs/TEST_PLAN.md:
1. scsi/mod.rs: READ_TIMEOUT_MS 1500 → 10000 ms.
Cold-start seek on the BU40N takes ~1.5 s. The old timeout
cancelled normal reads at the boundary, triggering the kernel's
ABORT/RESET escalation, which the Initio bridge couldn't drain —
firmware-level wedge. 10 s catches every legitimate slow read
(max successful ECC recovery: 2.6 s; cold-start: 1.5 s) with
margin and short-circuits truly bad sectors at ~10 s.
2. disc/mod.rs: Disc::copy bisect-on-fail (replaces skip-forward).
Live data showed the drive fails multi-sector READs in the bad
zone but reads each sector cleanly when asked at bpt=1. Old
skip-forward jumped 845 MB on the first multi-sector failure,
marking everything in between as bad — losing clean territory
sandwiched between bad sectors. New algorithm bisects: split the
failed block in half, retry each half, recurse to single-sector
reads. Sectors recoverable individually are picked up in Pass 1;
only sectors that fail at bpt=1 are marked NonTrimmed for the
patch passes. Stack-based DFS, log2(batch) = 6 levels for the
default 60-sector batch.
Multi-pass machinery is untouched. Pass 2..N walk the mapfile and
become fast no-ops when bisect already recovered everything.
Wedged-drive early-exit, 30 s settle, batch taper, F-R-F-R direction
alternation — all preserved.
New test: integration_progress_and_halt::
test_disc_copy_bisect_recovers_via_single_sector_reads — synthetic
BU40N-pattern reader (multi-sector reads fail, single-sector
succeed). Pre-patch: lost everything to skip-forward. Post-patch:
100 % bytes_good. Plus the 10 sense-key parser tests from the
0.13.20 test-coverage pass.
Empirical recovery on Dune 2 UHD on the BU40N (per TEST_PLAN.md run
log): old algorithm ~25 GB recovered + 6 GB skipped-forward and
mostly lost; new algorithm projects ~99 % recovery in Pass 1.
Audits + raw probe data:
- (internal)/docs/TEST_PLAN.md (run log)
- (internal)/docs/audits/2026-04-26-scsi-architecture-research.md
- scsi/linux.rs: full rewrite from async write/poll/read+1.5s timeout+
close-on-timeout to one synchronous ioctl(fd, SG_IO, &hdr). Kernel
honors hdr.timeout and runs its own ABORT/RESET escalation. Errors
check host_status and driver_status (both 0xFF-synthesised) plus
status. Sense-key parser handles descriptor (0x72/0x73) + fixed
(0x70/0x71) formats. Deleted fd_recovery, bg close+open thread, fd
swap dance. -331/+155 lines.
- scsi/macos.rs: try_recover() removed (userspace handle-recovery on
task failure was the same anti-pattern stripped from Linux). bsd_name
field deleted. Errors bubble up directly.
- scsi/windows.rs: try_recover() removed, wide_path field deleted,
INVALID_HANDLE guard removed.
- scsi/mod.rs: parse_sense_key() helper extracted (used by all three
platforms now — single canonical sense-key parse rather than three
inlined copies). +10 unit tests covering descriptor format, fixed
format, truncated buffers, unknown response codes.
- drive/mod.rs: Drive::reset() deleted (escalating eject + STOP/START +
reinit recovery — per audit, kernel handles its own escalation;
userspace shouldn't).
pub fn find_drives() -> Vec<Drive> deleted (opened N drives just to
throw most away). find_drive() now uses discover_drives() directly.
wait_ready() simplified — drops the reset path on sense_key=5,
just keeps polling TUR for 60 iterations.
- lib.rs: find_drives re-export removed.
- benches/sgio_read.rs: switched to find_drive() (no longer iterates a
drive list).
Net: 9 files changed, 226 insertions(+), 473 deletions(-). 329 tests
pass, clippy -D warnings clean. No consumer breakage (CLI, autorip,
bdemu compile + test green).
Architecture decision documented in
(internal)/docs/audits/2026-04-26-scsi-architecture-research.md
(primary-source survey of MakeMKV, sg_dd, ddrescue, and the kernel
mid-layer's own scsi_eh.rst escalation ladder).
Pre-0.13.16 the rip API leaked internal mapfile concepts (pos,
bytes_good, work_done, bytes_pending, Finished/NonTrimmed) into per-pass
positional callbacks Fn(u64, u64, u64). Consumers reinvented the math
each time, and v0.13.15's UI bug surfaced exactly because of this —
autorip's web JS computed pct from bytes_good while the backend
computed from pos, silent drift, frozen UI bar.
This release replaces both Disc::copy::on_progress and
Disc::patch::on_progress callbacks with a single Progress trait +
PassProgress struct (new progress module).
pub struct PassProgress {
pub kind: PassKind, // Sweep | Trim {reverse} | Scrape {reverse} | Mux
pub work_done: u64,
pub work_total: u64,
pub bytes_good_total: u64,
pub bytes_total_disc: u64,
}
pub trait Progress {
fn report(&self, p: &PassProgress);
}
impl<F: Fn(&PassProgress)> Progress for F { ... } // closures work directly
CopyOptions::on_progress and PatchOptions::on_progress are renamed to
progress: Option<&dyn Progress>. Closure callers update trivially via
the blanket impl; struct callers gain a clean named-field shape with no
positional-arg confusion.
PassKind carries the semantic (sweep vs trim vs scrape vs mux) so
consumers can label phases without reinventing detection logic.
Disc::patch reports Trim {reverse} for retry passes with block_sectors
>= 2 and Scrape {reverse} when block_sectors == 1. Direction comes
through reverse: bool. Mux variant is reserved for v0.13.17 when the
mux pipeline emits progress.
Tests + clippy clean across all 4 crates.
Breaking: CopyOptions::on_progress + PatchOptions::on_progress now take
Fn(bytes_good, pos, total). Consumers display `pos` for "% swept" — the
true Pass 1 progress that advances through skip-forward bad zones, where
bytes_good (Finished sectors only) freezes. v0.13.14 live trace proved
the existing UI was lying for ~14 minutes about Dune 2 being "stuck at
30%" while Pass 1 was actually 83% through the disc via skip-forward.
PatchOptions::reverse: walk bad ranges from highest LBA to lowest. For
drives that wedge after a forward read of a bad sector, approaching the
post-bad-zone NonTrimmed range from end-of-disc reads good sectors before
the drive sees a bad one. Hypothesis informed by the BU40N + Initio
bridge live data — Pass 2 forward saw zero successful reads in 7 min
while Pass 1's pos walked all the way to end-of-disc.
PatchOptions::wedged_threshold: > 0 → exit early after that many
consecutive failures with zero successes in the same pass. Saves the
wallclock budget for productive grinding when the drive has wedged on
the bad zone for THIS pass; a different direction or block size in the
next pass may still recover. New PatchResult::wedged_exit reports it.
Trace: patch_start (block_sectors, recovery, reverse, wedged_threshold,
num_ranges) and patch_done (blocks_attempted, blocks_read_ok,
blocks_read_failed, wedged_exit, halted, bytes_recovered) at the
freemkv::disc target.
v0.13.12 shipped the async fd_recovery design but a live test on Dune 2
showed Pass 1 sat for 14 minutes with bytes_good=0 — the inner loop iterates
(throttled on_progress log fires every 78s) but each iteration evidently
takes ~60s instead of the microseconds the design promises on fast-fail.
Without trace-level telemetry at the SCSI + Disc::copy boundaries we
can't tell where the time goes.
This release is instrumentation only — no behavior change.
- New dep: tracing 0.1. Per project docs, debug/trace logging is allowed in
libfreemkv (the no-English rule applies to errors). Consumers wire a
tracing subscriber.
- SgIoTransport::execute (Linux): trace at every state transition (entry,
recovery_swap_ok, recovery_pending, write_ok / write_err, poll_done,
timeout_spawn_recovery, scsi_err, read_err, ok). Each event includes
opcode + elapsed timing. The bg recovery thread also traces close_ms +
open_ms so we can see if the kernel really takes 60s to close+open on a
wedged Initio bridge.
- Disc::copy: trace at copy_start, outer_loop, region_enter, every 100
inner-loop iterations (iter_progress with pos/region_end/skip_size/
bytes_good/read_ok_count/read_err_count/last_read_ms/copy_elapsed_ms),
copy_done.
- All trace events use targets `freemkv::scsi` and `freemkv::disc` so
consumers can filter by subsystem (e.g. autorip /api/debug?q=freemkv::scsi).
Next: run the live test on Dune 2 again, read the autorip JSONL log,
diagnose why each iter is slow, fix the actual bug.
The wallclock-based halt timing failed on fast CI runners where a 2 GB
synthetic-disc skip-forward sweep finishes in <100 ms — well under the
200 ms halt fire delay. Reader now signals halt on first read; the
inner-loop halt check on iteration 2 breaks 'outer. No wallclock race.
Fix 1: delete stall guard from Disc::copy. Pass 1 must sweep end-to-end
per ddrescue model (RIP_DESIGN.md §2.1, §3, §9). The v0.13.9 guard at
disc/mod.rs broke Pass 1 at 30% on Dune 2 with 56 GB still NonTried.
Removed stall_secs field, narrative comment in scsi/linux.rs, and the
broken regression test. Replaced with test_disc_copy_completes_full_disc_
with_failing_reader and test_disc_copy_halts_promptly_on_failing_reader.
Fix 2: async SCSI transport recovery. Added Arc<AtomicI32> fd_recovery
on SgIoTransport. On poll timeout: spawn close + spawn open in
background, return Err immediately. Top of execute() swaps fd from
recovery atomic. Main thread never blocked beyond ~1.5s poll budget
(was up to ~60s per timeout because kernel serialized main-thread
open() against in-flight close()). Drop drains pending recovery fd.
§15.1 cross-platform parity: Windows + macOS now have the same
observable recovery contract. SptiTransport gets try_recover()
(synchronous CloseHandle + CreateFileW; Windows close is fast, no
in-flight CDB drain like Linux). MacScsiTransport gets try_recover()
(release IOKit interface + reacquire via new acquire_device_iface()
helper); stores bsd_name for re-resolution. Drop guards null'd-out
interfaces. Stripped English error strings ("try as root" / "run as
administrator") on Linux + Windows. Fixed Windows TimeOutValue
ms→s ceiling so 1500ms gets 2s (was 1s; broke Drive::read fast path).
Fix 4: instrument Disc::patch arms. PatchResult exposes
blocks_attempted, blocks_read_ok, blocks_read_failed so the v0.13.11
mystery (Dune 2 Pass 2 recovered 0 bytes in 100 min) is diagnosable
from the live device log without re-instrumenting from outside.
Cleanup: honor PatchOptions::full_recovery (was read into _ and
ignored; now routed to read_sectors recovery arg). Updated
CopyOptions::batch_sectors doc to describe the actual production
path (sysfs detect_max_batch_sectors, typically 60 sectors / ~120 KB
on BU40N) rather than the test-only 32-sector internal default.
All four crates clippy-clean and tests green on the host targets
(macOS native + cargo check on Linux). Cross-platform CI watches
Linux + Windows + macOS builds + tests.
v0.13.10's 'fd=-1 on first poll timeout' was too aggressive: a single
transient killed the entire transport, Pass 1 finished in 45ms with
0 GB good on Dune 2.
Revert to spawn-close + main-thread-reopen (the v0.13.5/8 pattern).
Per-timeout cost is up to ~60s while the kernel completes the
abandoned command, but the v0.13.9 Disc::copy stall guard caps
catastrophic stalls at 120s of bytes_good non-advance. Pass 1 bails
cleanly with NonTrimmed ranges; Pass 2 has a working Drive for
retries with recovery=true + 30s timeouts.
Fixes the silent Pass 1 hang observed on Dune 2 with v0.13.8 (drive
grinding through bad sectors at 0 KB/s, errs=0, no error surfaced).
Root cause: SgIoTransport::execute's reopen-after-poll-timeout opened
a fresh /dev/sg* fd on the main thread, which serialized against the
spawned close() of the old fd via the kernel's per-device state lock.
The userspace 1.5s timeout still fired, but the abandon-and-reopen
recovery itself blocked the main thread for as long as close() took.
Net: reads returned slowly, skip-forward fired on every iteration,
bytes_good never advanced.
- SgIoTransport::execute: on poll timeout, spawn close, set fd=-1,
return Err. No reopen on the main thread. The transport is now
invalidated until the consumer creates a fresh Drive.
- Disc::copy: add stall guard. CopyOptions.stall_secs (default 120s).
If bytes_good doesn't advance for the threshold, break 'outer
cleanly with complete=false, bytes_pending > 0 so Pass 2 retries
pick up the NonTrimmed ranges with recovery=true 30s timeouts.
- New regression test: test_disc_copy_stall_detection_triggers_
skip_forward in tests/integration_progress_and_halt.rs.
Follow-up to the rip-recovery + drive-access updates: aligns the
remaining docs with the v0.13.6 single-shot read model and the
three-layer recovery architecture.
- architecture.md: module map says single-shot read; new paragraph on
layered recovery with postmortem pointer.
- api-design.md: EventKind enum example expanded; emission notes
document that BytesRead now fires from DiscStream::fill_extents and
Retry/SectorRecovered are no longer emitted in 0.13.6+.
- disc-to-rip.md: Step 10 of the pipeline diagram + module table
reflect single-shot read.
- docs/README.md: added rip-recovery.md to the TOC.
Updates docs/ to reflect the recovery-loop strip:
- rip-recovery.md: drops Phase 1/2/3 description, replaces with three-layer
model (Disc::patch multi-pass / DiscStream batch halving / Drive::read
single-shot). Notes that no SCSI resets fire from any retry path.
- drive-access.md: removes SG_SCSI_RESET + STOP/START UNIT escalation
references; SgIoTransport::reset is now kernel SG_IO flush + ALLOW
MEDIUM REMOVAL only.
- src/mux/disc.rs + tests/: cargo fmt cleanup.
Drive::read is now single-shot. Phase 1/2/3 retries + scsi::reset+reopen
removed (~80 lines). recovery=true bumps timeout to 30s; recovery=false
stays at 1.5s. On any failure returns Err(DiscRead) immediately — caller
(Disc::patch outer loop, DiscStream batch halver) handles retries.
Inline reset+reopen WAS the wedge primitive on the LG BU40N. Per prior
post-mortem, every USB/SCSI reset path tested fails to recover the
wedged Initio bridge — the inline retry was pure cost.
SgIoTransport::reset (Linux) trimmed to kernel SG_IO state flush +
ALLOW MEDIUM REMOVAL. SG_SCSI_RESET ioctl + STOP/START UNIT escalation
removed. macOS reset removed (no-op). scsi::reset() top-level family
removed (no callers).
EventKind::BytesRead { bytes, total } now actually emitted from
DiscStream::fill_extents after each successful sector read. Was
declared in 0.13.0, never fired. Drives autorip per-device progress
in direct mode.
EventKind::Retry / SectorRecovered no longer emitted (variants kept
for forward compat). SpeedChange still emitted via Drive::set_speed
public path.
Tests: new tests/integration_progress_and_halt.rs (5 tests). 233 unit
tests + 5 integration green.
USB/SCSI recovery escalation in drive_has_disc (0.13.1-0.13.3) tested
on LG BU40N USB BD-RE: USBDEVFS_RESET, authorized toggle, driver
unbind/rebind, SCSI host rescan — all succeed at the USB transport
layer but the drive firmware below the bridge stays locked. Only
physical unplug-replug clears it. Rolled back so consumers can
surface the real failure to the user.
New: list_drives falls back to sysfs-cached vendor/model/rev from
/sys/class/scsi_generic/sgN/device/ when live INQUIRY returns empty,
so wedged drives still show their identity in UIs.
Removed: scsi::usb_reset, usb_reset_with_timeout, per-platform
usb_reset methods, recover_then_probe, is_wedge_signature. Breadcrumb
comment in scsi/linux.rs::drive_has_disc points at v0.13.3 tag for
the full implementation if future hardware needs it back.
Linux/macOS/Windows pass-through symmetric; 233 tests passing.
0.13.2's is_wedge_signature gated on opcode=SCSI_INQUIRY (0x12), but
drive_has_disc issues TEST UNIT READY (0x00). Production wedge errors
(E4000: 0x00/0xff/0x00) never matched → SCSI reset + USB reset
escalation never fired.
Drop the opcode gate. Status byte 0xFF is synthesised by our own
execute() path on poll() timeout — it's the ground-truth wedge
marker for any opcode.
Linux-only; macOS/Windows use sense-key-based wedge detection.
Architectural cleanup. autorip + freemkv CLI were reimplementing drive
discovery (sysfs walking, type-5 filtering, sg-path construction) and
calling SCSI reset primitives directly. All of that hardware-aware code
moves into libfreemkv with two cheap public probes:
- DriveInfo + list_drives() — multi-OS enumeration (Linux/macOS/Windows)
with peripheral-type-5 filtering and INQUIRY identity. Cheap.
- drive_has_disc(path) — single TUR with internal wedge recovery
escalation (SCSI reset → USB reset → retry) hidden from callers.
USB-layer reset (USBDEVFS_RESET / IOUSBDeviceInterface::ResetDevice /
storport's combined reset) wired across all three platforms.
Visibility tightening — scsi::reset, scsi::usb_reset, and the timeout
constants are now pub(crate). Compile-time guarantee that no consumer
crate can issue SCSI commands directly.
233 lib tests pass; clippy clean.
Production incident: autorip's poll loop called scsi::reset() on a
wedged BU40N USB drive. The Linux SG_SCSI_RESET ioctl blocked
indefinitely (kernel SCSI subsystem waiting for a bus-wedged device to
ack a reset that will never come). Caller's poll loop hung for 60+
seconds before manual intervention.
scsi::reset() now spawns a detached worker for the platform-specific
reset and bounds the caller's wait via mpsc::recv_timeout. Default
30 s (DEFAULT_RESET_TIMEOUT_SECS); reset_with_timeout(device, dur)
exposes the bound for callers that want a different value. Returns
DeviceResetFailed on timeout. Worker thread keeps running until the
kernel eventually unblocks — leaks one OS thread per hard wedge, but
the daemon stays responsive instead of hanging forever.
Follow-up flagged for 0.13.2: USB-attached drives wedge at the USB
Mass Storage layer below SCSI; SG_SCSI_RESET doesn't help. A
scsi::usb_reset(path) using USBDEVFS_RESET is the proper escalation.
Audit pass against the project docs "no English text in library code" rule.
Found 9 call sites that violated the contract by stuffing English into
io::Error::new(kind, "…") or by abusing Error::DeviceNotFound { path }
as a free-form description field. Each is now a typed Error variant.
New variants and codes: ScsiInterfaceUnavailable (E1004), DeviceLocked
(E1005), IoKitPluginFailed (E1006), UnsupportedPlatform (E2003),
PlatformNotImplemented (E2004), MapfileInvalid (E6011), DiscUrlNotDirect
(E9009).
labels::apply() previously pushed Commentary/Descriptive/Score/IME and
" (Secondary)" English literals into AudioStream.label, leaking into
MKV titles + autorip UI. AudioStream now exposes structured `purpose:
LabelPurpose`, SubtitleStream `qualifier: LabelQualifier`. Callers
translate to localized text. label keeps codec-formatting only.
API hygiene: 11 mux/* modules dropped from `pub` to `pub(crate)` —
their *types* are still re-exported from lib.rs, but the modules were
leaking low-level EBML/TS/network primitives. Stream trait gets a real
rustdoc explaining read-vs-write split. lib.rs grouped re-exports into
documented sections. ScanOptions::with_keydb() removed (one-method-per-
action rule); use struct literal.
Dead-code sweep: removed lookahead.rs (orphan, never declared as mod),
tsreader.rs (TsDemuxReader unused), ebml::{write_int,read_vint,SEEK_*},
ts::{scan_first/last_pts,scan_duration,SCAN_HEAD/TAIL_SIZE,take/set_
remainder}, MkvMuxer codec_private_slots/filled fields and
fill_codec_private method (deferred-codecPrivate path never used since
the v0.10 PES rewrite). cargo clippy --all-targets -D warnings clean.
Tests: new error::tests for variant codes + Display "no English" guard +
io::ErrorKind mapping. 233 lib tests, all green (was 230).
Breaking: ScanOptions::with_keydb removed; mux/* modules pub(crate);
AudioStream and SubtitleStream gained required fields; UnsupportedDrive
{ product_revision: "Renesas not yet implemented" } no longer produced
(use PlatformNotImplemented).
Drive::read is now halt-check-free in its body. Previously, the halt
flag was checked in 4 places and the sleep logic was scattered across
4 "if halt_aware_sleep { return Halted }" call sites — correct, but
the ugliness invited drift: a new sleep added by someone unfamiliar
with the pattern would silently swallow Stop requests.
Two private primitives now own halt awareness:
checked_sleep(Duration) -> Result<()>
checked_exec(cdb, dir, buf, timeout_ms) -> Result<ScsiResult>
Both return Err(Halted) instead of a bool. The ? operator in read()
then propagates halts for free. The recovery path reads top-to-bottom
with no halt vocabulary.
sleep_until_halted lives as a free function so it's unit-testable
without a live Drive. 4 new tests: completes normally, bails on
pre-set flag within one slice, wakes mid-sleep, zero-duration no-op.
Public API unchanged — halt_flag/halt/clear_halt still exposed, the
refactor is entirely internal.
Stop was waiting up to 30 s to register when the drive hit L-EC
recovery mid-read — the recovery phase does 30 s sleeps between
retries and the halt flag was only checked at the start of each sleep.
UI feels broken ("stop isnt working") even though the halt was set.
halt_aware_sleep breaks each wait into 100 ms slices and returns
early on halt. Applied to all 4 sleeps in the recovery path (both
30 s retry delays, both 5 s reset-phase delays).
Disc::copy fast pass (skip_on_error=true, recovery=false) was giving
the drive 5 s per 64 KB block. On structure-protected / marginal UHD
sectors the drive grinds L-EC for nearly the full budget per block,
pinning throughput at ~13 KB/s even though skip_forward would happily
skip past the region.
1500ms bounds the floor at ~43 KB/s/block. Recoverable sectors that
would have succeeded at 3-5 s get picked up on Disc::patch (pass 2+)
where recovery=true and the per-read budget is 30 s.
- README quick-start gains a multi-pass example using the new
Disc::copy + Disc::patch primitives.
- New docs/rip-recovery.md documents the two-stage rip model: mapfile
format (ddrescue-compatible), CopyOptions/PatchOptions surface, the
pass-1/pass-2 algorithm, and the design decisions (why no MODE
SELECT, why ISO intermediate, why ddrescue mapfile).
No code change.
autorip 0.11.22 ships the full multi-pass UI (live mapfile stats,
bad-range viz, Recovery settings). libfreemkv API is unchanged from
0.11.21. Part of the 0.11.22 ecosystem sync.
New primitives for two-stage rip workflows: fast forward pass with
zero-fill on failures, then targeted retries of bad ranges via a
ddrescue-compatible mapfile.
- Disc::copy now takes &CopyOptions (breaking change from positional
args). Always writes a sidecar .mapfile. Opt-in skip_on_error +
skip_forward give ddrescue-style fast sweep: 64 KB blocks,
exponential skip-forward on failure, zero-fill bad blocks. Defaults
preserve pre-0.11.21 behavior (recovery reads, abort on bad sector).
- Disc::patch is new and idempotent. Reads the mapfile, re-reads every
non-finished range with full drive recovery, patches good bytes back
into the ISO at exact offsets. Call N times for N retry attempts.
- disc::mapfile is a new module. ddrescue text format, crash-safe
(flushed on every record()), greppable, human-editable, tool-compatible.
Status chars match ddrescue: ? / * / / / - / +.
- Re-exports FileSectorReader from the crate root.
- freemkv CLI caller (pipe.rs) updated to the new Disc::copy signature
in lockstep — shipped in the 0.11.21 freemkv CLI release.
Part of the 0.11.21 ecosystem sync (libfreemkv + freemkv + bdemu +
autorip all on 0.11.21).
DiscStream::fill_extents loops internally while the demuxer waits for
enough clean data to emit a PES frame. In a dense bad zone that loop
can run for minutes without returning to the outer read() call, so
the caller's Stop signal never gets serviced until a frame is finally
emitted — which may be very far away.
Add DiscStream::set_halt(Arc<AtomicBool>) — typically wired to
Drive::halt_flag() for unified Stop across drive recovery phases and
stream sector processing. fill_extents checks the flag at the top of
every retry iteration; raising it returns Err(Error::Halted) within
one SCSI round-trip.
No behavior change for callers that don't call set_halt. Unblocks the
architectural fix for the "Stop doesn't stop" bug observed on a
damaged UHD disc.
Replace read_with_binary_search + 3×5s light recovery with an adaptive
sizer that shrinks on failure (halve, 3-aligned ≥6) and probes back up
after 100 MiB (51,200 sectors) of clean reads. Descent cost is paid
once per bad region, not once per bad sector.
Emit BatchSizeChanged { new_size, reason } on shrink and probe-up.
Remove BinarySearch event — no longer produced.
Side fix: scsi/macos.rs one-liner for manual_c_str_literals clippy
lint that surfaced on a newer toolchain.
Fix trailing sectors dropped at extent boundaries when sector_count % 3 != 0.
Add verify_title stop support via progress callback returning bool.
Add O_CLOEXEC on all SCSI fd opens to prevent leak to child processes.
Fix SCSI sense descriptor format detection (0x72/0x73 vs 0x70/0x71).
Replace blocking ioctl(SG_IO) with the sg driver's async interface.
Commands are submitted via write(), waited on via poll() with a hard
wall-clock timeout, and completed via read(). If poll() times out,
the fd is abandoned and a fresh one opened — the kernel can no longer
hold us hostage during USB error recovery.
- write() submits command, returns immediately
- poll() enforces exact timeout (EINTR-safe with deadline tracking)
- read() retrieves result + copies data to caller's buffer
- On timeout: old fd closed in background thread, new fd opened
- No SG_FLAG_DIRECT_IO — kernel buffers for safe timeout abandonment
- Store device_path for fd reopen after timeout
- Drop guards fd=-1 (abandoned fd)
Use UDF file_extents() to read actual allocation descriptors instead
of assuming m2ts files are contiguous from file_start_lba. Dual-layer
UHD discs split large files across 70+ extents (~1 GB each) — the old
code created one extent from packet count which only covered the first
chunk, causing silent truncation at ~37%.
Also changed fill_extents() to return io::Result<bool> so read errors
propagate instead of being silently treated as EOF.
A stream is a stream. DiscStream::new() takes reader + title + keys +
batch + format — same pattern as every other stream constructor.
Deleted: open_drive(), open_iso(), from_reader() — these were helper
functions that chained multiple operations. Library provides primitives,
callers decide the sequence.
Removed disc:// case from input() — callers use Drive::open() +
Disc::scan() + DiscStream::new() directly for disc sources.
- DTS: buffer with core sync detection + frame size from header
- TrueHD: buffer with unit length field parsing
- Same pattern as AC3 fix: incomplete frames held for next PES
- When PES boundaries align (normal case), buffering is a no-op
- Add state to Ac3Parser (was stateless, split frames at PES boundaries)
- Buffer leftover bytes from incomplete frames for next PES packet
- Calculate exact AC3 frame size from fscod/frmsizecod table
- Calculate EAC3 frame size from frmsiz field
- Skip invalid frame sizes (0 or >8192)
- Eliminates all AC3 decode errors on BD and UHD output
- DVD PS path now calls parser.parse() like BD-TS path does
- MPEG-2 sequence headers extracted for codec_private
- Keyframe detection from parser instead of always-true
- Fix CSS roundtrip tests: descramble uses TAB1 permutation, not pure XOR
- Implement complete CSS key chain: bus auth → disc key → title key
- Add 31 player keys for disc key decryption
- Read disc key via READ DVD STRUCTURE format 0x02
- Read title key via REPORT KEY format 0x04
- Fix CryptKey round 1: use original scratch for term, not modified tmp1
- Fix decrypt_key: use TAB5 for LFSR1 output, TAB4 for LFSR0^invert
- Fix descramble_sector: use TAB5 for LFSR1, TAB4 for LFSR0 (no invert),
and apply TAB1 permutation to ciphertext before XOR
- Fix title key bus XOR: forward order (bus_key[i]), not reversed
- Two-session auth: disc key and title key need separate AGID sessions
- Fix crack_key: scan across extents for scrambled sectors
- Fix TsDemuxer: dynamic PID table size for DVD PIDs
- Set max read speed after scan for DVD riplock removal
- Disc::copy() hardcoded batch=64 sectors, exceeding BU40N's 60-sector
hw limit. Now accepts batch_sectors param, defaults to 60.
- IFO PGC: playback time at offset 0x04 not 0x02, cell time at cell+4
- DiscStream: set demuxer from content_format (TS for BD, PS for DVD)
- Flush TS/PS demuxers at EOF to avoid losing last PES frame
- M2tsStream: flush demuxer at EOF
- StdioStream: FMKV metadata header for roundtrip compatibility
Architecture:
- One stream per format, bidirectional PES (read/write on same type)
- IsoStream merged into DiscStream (one type, any SectorReader)
- Disc::copy() for disc→ISO raw sector dump
- IOStream trait deleted, all byte-level Read/Write removed
- ContentReader/OpenDisc/open_title/open_input/open_output deleted
- CountingStream wrapper for progress tracking
Error codes:
- All io::Error English strings replaced with Error enum variants
- From<Error> for io::Error conversion
- Unused variants removed, new stream/mux variants added
Deleted: mkvout.rs, pesout.rs, isowriter.rs, mkv-muxer-plan.md
Updated: all docs, README stream table, CHANGELOG
238 tests, 0 clippy warnings.
Streams are streams — they take impl Read, not Read+Seek or File.
- MkvStream::open takes impl Read (was Read+Seek)
- EBML element skipping uses skip_bytes() instead of seek(Current)
- Byte position tracking uses remaining-bytes counter, not stream_position()
- Removed file_size from open (progress is CLI concern)
- M2tsStream::open takes impl Read (was Read+Seek)
- Buffers first 1MB for FMKV header / PMT scan
- Uses chain reader (buffered head + rest) for sequential reading
- Duration unknown without seeking (0.0) — CLI can set from metadata
- Removed ReadSeek trait (no longer needed)
- WriteSeek kept (MKV muxer container format requires seeking internally)
Design fix: codec_privates are now a field on DiscTitle, not a separate
parameter passed through the pipeline. This eliminates the root cause of
the network codec_private bug (forgot to pass the separate param).
API changes:
- output() takes (url, &DiscTitle) — no separate codec_privates param
- MkvOutputStream::create, M2tsOutputStream::create, NetworkOutputStream::connect
all read codec_privates from title.codec_privates
- M2tsMeta::from_title() takes only &DiscTitle — reads privates from title
- Deleted from_title_with_privates (was the wrong-name duplicate)
- Merged read_header + read_header_from_stream into one read_header(impl Read)
- Deleted finish(self) from TsMuxer, keep only finish(&mut self)
Rule: ONE public method per action. No _with_X, _from_Y, _ref variants.
Bug 1: M2TS roundtrip dropped frames — TsMuxer converts length-prefixed
NALs to Annex B, prepends VPS/SPS/PPS from HEVCDecoderConfigurationRecord.
Bug 2: MKV remux lost codec_private — MkvStream.codec_private() now returns
data from EBML header.
FMKV header carries codec_private (base64) per video stream for lossless
M2TS roundtrip.
- M2tsOutputStream writes FMKV metadata header before TS data
- NetworkOutputStream sends FMKV header on connect
- Enables M2TS→MKV and network roundtrip to work correctly
- Remove IOStream, Read, Write impls from NetworkStream
- PES write sends FMKV header before first frame (protocol fix)
- PES finish sends TCP shutdown for clean EOF
- Update tests to use PES roundtrip instead of byte-level
- Remove NetworkStream from open_input/open_output (use input/output)
- Remove unused pes_buf field from M2tsStream and unused TS_PACKET/BD_TS_PACKET constants
- Replace match-with-single-pattern with if let (3 instances in drive/mod.rs)
- Replace match-can-be-? with ? operator for scsi::open call
- Add type aliases PesSetup and MkvHeaderResult to reduce type complexity
- Collapse identical if/else branches in tsmux.rs build_pes_header
- Use RangeInclusive::contains instead of manual range checks
- Make WriteSeek trait pub (was pub(crate) but leaked through pub fn)
- Remove empty line after doc comment in disc.rs
- Fix doc list item indentation in scsi/linux.rs (12 instances)
- DiscStream: BD (TsDemuxer) or DVD (PsDemuxer) auto-detected
- NetworkStream: Stream impl with PES serialize/deserialize
- StdioStream: Stream impl with PES serialize/deserialize
- MkvStream: Stream read returns PesFrame from EBML blocks
- M2tsStream: Stream read via TsDemuxReader
- PesFrame: serialize/deserialize for wire format
- TsDemuxReader: shared BD-TS demux helper
- All inputs and outputs support PES
- Unified Stream trait: read() and write() on one type
- PesFrame serialize/deserialize for wire format
- TsDemuxReader: shared BD-TS demux for any Read source
- MkvStream: PES read from MKV (EBML → PesFrame)
- M2tsStream: PES read via TsDemuxReader
- Network/Stdio output: PES serialization directly (no BD-TS wrap)
- Network/Stdio input: deferred (needs PES deserialization protocol)
- TsMuxer for M2TS output from PES frames
- input() and output() functions return Box<dyn Stream>
Stream trait: read() returns PesFrame, write() accepts PesFrame.
A stream is a stream — you read from it or write to it.
No separate Input/Output traits.
API: libfreemkv::input(url) and libfreemkv::output(url, title, codecs)
Returns Box<dyn Stream>.
- TsMuxer: PES frames → BD-TS packets (new, reverse of TsDemuxer)
- M2tsOutputStream: PES → TsMuxer → file
- NetworkOutputStream: PES → TsMuxer → TCP
- StdioOutputStream: PES frames → stdout
- NullOutputStream: discard
- MkvOutputStream: PES → MKV mux
- All outputs via open_pes_output()
- All inputs via open_pes_input() (ISO, disc)
- No byte-level fallback — everything is PES
- pes.rs: PesFrame, InputStream, OutputStream traits
- sector.rs: SectorReader now public, added FileSectorReader (ISO = file)
- Foundation for unified DiscStream that handles both disc and ISO
When the MKV muxer transitions from Scanning to Streaming phase,
it creates a fresh TsDemuxer. The old demuxer's remainder bytes
(partial 192-byte BD-TS packets) were lost, causing the new demuxer
to lose sync. All subsequent feed() calls found 0 packets.
Fix: transfer remainder via take_remainder/set_remainder so the
new demuxer maintains packet alignment.
Previously returned HandshakeResult with zeros when all host certs
failed. Now returns None. Also propagates volume_id read failure
instead of silently using zeros.
Previously used all-zeros AES key when unit_key_idx was out of range,
producing silently corrupted output. Now returns DecryptFailed error.
Also wired --raw flag through InputOptions → set_raw() on streams.
IsoStream decrypts in its read path using keys from scan.
IOStream trait gets keys() method with default DecryptKeys::None.
Pipeline no longer handles decrypt — just reads decrypted bytes.
- IOStream::keys() default returns DecryptKeys::None
- IsoStream and DiscStream override with real AACS/CSS keys
- Pipeline calls input.keys() instead of separate scan_keys()
- Streams are self-contained: read bytes + provide keys
- Rename DriveSession → Drive across entire codebase
- find_drives() returns Vec<Drive>, find_drive() returns Option<Drive>
- resolve_device() now pub(crate) — internal only
- StreamUrl is now a typed enum (Disc, Mkv, M2ts, Iso, Network, Stdio, Null)
with scheme() and path_str() accessors, replacing struct of Strings
- Add lock_tray() / unlock_tray() for safe disc access during rips
- Improve reset() with eject cycle that clears LibreDrive stuck state
- Add Send bounds to ScsiTransport and PlatformDriver traits
- DiscOptions uses PathBuf instead of String for device/keydb paths
- Update doc example to use new Drive API
- DriveStatus enum: TrayOpen, NoDisc, DiscPresent, NotReady, Unknown
- drive_status(): GET EVENT STATUS NOTIFICATION with TUR fallback
- reset(): PREVENT ALLOW → START STOP → init() escalation
- wait_ready(): tries reset on Illegal Request, falls back to drive_status
- Remaining: standard READ(10) still fails in LibreDrive stuck state
- wait_ready: detects MMkv vendor probe when TUR returns Illegal Request
- scan: capacity fallback to 0 when READ CAPACITY fails
- Still needs: re-init to restore standard SCSI commands, or use raw reads for UDF
- Doc comments on DriveSession, find_drives, all Error variants, Result type
- 24 format! strings inlined (clippy pedantic)
- 25 long hex literals with separators (0xFFFFFFFF → 0xFFFF_FFFF)
- README install example updated to 0.8
- SectorReader trait decouples disc scanning from SCSI
- Disc::scan_image() for ISO and any sector source
- resolve_encryption() handles AACS 1.0/2.0/none in one path
- IsoStream: full UDF/MPLS/CLPI/labels pipeline from ISO files
- StdioStream: stdin/stdout pipe
- Strict scheme:// URL format with validation
- Labels module refactored to SectorReader
- 7 stream types total
- DriveSession::open() no longer requires profile match — works on any optical drive
- init()/probe_disc() return error gracefully for unknown drives
- find_drives() returns all optical drives (PDT 0x05), not just profile-matched
- has_profile() check for callers
- AACS 2.0: handshake wired into resolve_aacs() — real VID + read_data_key
- DriveId: added raw_gc_010c field for GET_CONFIG 010C response bytes
- Split AacsError { detail } into 13 specific error variants (AacsCertShort,
AacsAgidAlloc, AacsCertRejected, etc.) with unique error codes E7001-E7012
- Split DiscError { detail } into 7 specific variants (DiscRead, MplsParse,
ClpiParse, UdfNotFound, DiscNoTitles, DiscTitleRange, DiscNoExtents)
- Add WriteError (E5001), KeydbLoad (E8005), MuxLookahead (E9000), MuxWrite (E9001)
- Add OpenDisc API for single-call open+scan+rip workflow
- Remove all English text from error Display impl (code-only output)
- Normalize doc comments to use -- instead of em dash for ASCII consistency
Firmware payload was extracted 12 bytes too early — included handler
table pointers instead of actual microcode. Fixed by scanning for
function table position (VM address pattern) instead of magic offsets.
All 206 profiles regenerated. Cold boot firmware upload should now work.
Two MPLS parsing issues:
1. PGS subtitle (0x90) appearing in audio stream slot: language was read
from audio offset sa[2..5] instead of PG offset sa[1..4], causing
truncation ("ng " instead of "eng"). Fixed by detecting PGS coding
type in audio slots and using correct offset.
2. Secondary PG (PiP subtitle) entries were not consumed, causing
position tracking to drift. Added missing n_pip_pg loop.
3. Added stream_type 5/6/7 attribute parsing for secondary audio/video.
Platform trait is no longer publicly exported. External code uses
DriveSession only — cannot call unlock, load_firmware, calibrate directly.
- Platform trait: pub(crate) with 3 methods only
- All handlers are private methods on Mt1959
- DriveStatus moved to mt1959 internal struct
- init() has guard: no re-init if already ready
- set_read_speed() has guard: no-op if not calibrated
- Removed open_unlocked() — open() is the only entry
- Removed Platform and DriveStatus from public exports
Prevents: out-of-sequence SCSI commands, double-init, wrong firmware writes.
- Removed open_unlocked() — open() is the only entry
- Removed redundant init() call from open_title()
- init() called once in open(), handles everything
- Each function does one thing: open→init→scan→read
status() (sub_cmd 0x13) returns ILLEGAL REQUEST on some drives.
Was retrying 6× with 30s timeouts = 180s hang during init().
Steps 1-10 all pass on hardware:
unlock: OK, load_firmware: OK, calibrate: OK,
register_a: OK, register_b: OK
Only status fails — not needed for reads.
When MPLS STN table parsing drifts (disc-specific alignment issue),
a PGS subtitle entry (coding_type 0x90/0x91) can appear in the audio
stream section. Previously this showed as garbled "ng PGS 5.1" audio.
Fix: guard in stream builder checks if audio-typed streams have
subtitle codecs and reclassifies them as subtitles.
Also: unknown stream types now filtered out (filter_map) instead of
creating fake Video entries that showed as "?" in output.
Tested on V for Vendetta BD — "ng PGS 5.1" gone, clean output.
Generated by: profile generator --profiles sdf0.bin keys.json --drive-db drive_profiles.json
206 profiles (66 A + 140 B), all with identity from brute-force dictionary.
No manual merging. One tool, three inputs, complete output.
A (): single WRITE_BUFFER → verify 0x45 → unlock×2
B (): WRITE handshake → READ 0x3000 → WRITE 16B → verify → unlock×5
9/10 handlers are identical A/B. Only load_firmware has different logic.
Both paths end with do_unlock() — firmware upload is a prerequisite for
unlock, not a substitute. init() tries unlock first, falls back to
load_firmware only on failure (cold boot).
Every handler traced instruction-by-instruction from operation: do_unlock with configurable response size
operation: WRITE_BUFFER + verify buf=0x45 + unlock×2
operation: do_unlock → validate → send pre-built CDB → [4:20]
operation: same with CDB B
operation: init → scan 0x0000-0x5800 → build table → triple speed
operation: ↔x86 VM only (host_write 16B), no SCSI
operation: do_unlock → validate → probe 0x13 → check sig → features
operation: 3 paths by param count (1/5/9), dynamic READ_BUFFER
operation: search 64-entry table → position probe →
set_cd_speed_max → custom SET_CD_SPEED with matched value
operation: ↔x86 VM only (host_read 8B), no SCSI
init() matches x86 dispatch exactly:
Phase 1: unlock → [load_fw] × 6
Phase 2: calibrate × 6
Phase 3: probe (drive info)
Phase 4: register A + B × 5
Phase 5: status × 6
Handlers 5/9 are VM communication (no SCSI equivalent in Rust).
All other handlers send real SCSI commands.
DriveProfile now has every field traced from firmware:
- drive_signature, unlock_init_value, unlock_response_size_minus_init
- ld_microcode (base64, ~1888B firmware payload)
- hardware_register_a_cdb, hardware_register_b_cdb (10B pre-built CDBs)
- drive_nominal_speed_cdb (12B calibration speed)
- speed_zone_table (28B), speed_calc_table (25B)
drive.rs simplified:
- open() calls init() instead of unlock()
- init() is the ONLY entry point — handles full dispatch sequence internally
- Removed read_config, read_register, maintain_speed, read_sectors from public API
- Added set_read_speed() for per-zone speed during content reads
- disc.rs updated to call init() instead of unlock()
Compiles clean, all tests pass.
BD drives reject the MediaTek unlock command (sense 0x05).
Unlock is only needed for UHD raw access. Standard BD reads
work with standard READ(10) without vendor unlock.
Back to basics: open, unlock, SET CD SPEED max, read.
Remove all calibration probes, register reads, maintain_speed calls.
This is closest to the build that hit 17 MB/s earlier.
Also: drive discovery moved to libfreemkv (find_drive, resolve_device),
AACS via UDF only, clean pipeline, sg device support.
- Fixed: extents were relative to m2ts file, not absolute disc LBAs
- Fixed: u16 truncation of remaining sector count (13M → 36!)
- Added: UdfFs::file_start_lba() for m2ts LBA lookup
- Added: DriveSession::read_content() with 30s timeout for bulk reads
- Added: SET CD SPEED 0xFFFF on title open
- Added: adaptive batch reading (96→48→3 on error, ramp back up)
- Rip working end-to-end: scan → AACS → decrypt → write
Architecture:
- Each BD-J format in own file: paramount.rs, criterion.rs, pixelogic.rs, ctrm.rs
- Standard interface: detect() → bool, parse() → Option<Vec<StreamLabel>>
- PARSERS array in mod.rs — drop in a new parser with one line
- Shared vocab.rs for BD spec codec names only (MLP→TrueHD, AC3→Dolby Digital)
- All other label data passes through raw from disc — no guessing
Changes:
- New: paramount.rs (playlists.xml — Paramount/onQ format)
- Renamed: bluray_project.rs → pixelogic.rs
- Renamed: stream_properties.rs → criterion.rs
- Merged: language_streams.rs + menu_base.rs → ctrm.rs
- Removed: jar module (superseded by labels), dead apply functions
- Added: DriveSession::eject() with PREVENT ALLOW MEDIUM REMOVAL
- Added: DiscRegion enum (Free/BluRay/Dvd)
- Fixed: capture sector ranges now include all files (only skip STREAM/)
- Renamed: StreamLabel.region → variant (not a BD spec field)
labels::apply(session, udf, titles) does everything internally.
Disc::scan() is one line: crate::labels::apply().
No intermediate variables, no fallback logic in disc.rs.
App reads disc.titles[].streams — labels already applied if
disc had config files, empty otherwise. MPLS data always there.
src/labels/ with 4 parsers tried in order:
1. language_streams.txt (Warner CTRM CSV)
2. menu_base.prop (Warner CTRM properties)
3. streamproperties.xml + playbackconfig.xml (Criterion XML)
4. bluray_project.bin (Pixelogic binary tokens)
Disc::scan() calls labels::extract() → apply_disc_labels().
If no disc files found, streams keep MPLS data as-is.
No JAR fallback — disc files or nothing.
Covers 4/8 discs with JARs (Dunkirk UHD, V for Vendetta BD,
Being There, Barbie). Remaining 3 (Civil War, Dune, V for
Vendetta UHD) have no disc config files.
Traces <clinit> bytecode to find ldc/putstatic pairs that map
enum field names to display name strings. Pattern: new X, dup,
ldc "English", invokespecial X.<init>, putstatic X.a.
Proven on Dune UHD JAR: aw.a="English", aw.b="French", etc.
Next: trace mapping class (ISO code → enum field) to complete the chain.
Labels like eng_MLP_ now match to the correct stream by checking language
and codec hint against the stream's properties. Fixes Barbie where labels
were swapped (TrueHD label was on DD stream). TextField format (Civil War)
still uses index matching.
TrackLabel now carries language + codec_hint for structured matching.
- Extract all class strings once, try format parsers in chain
- Format 1: TextField,Audio{N} (A24/Lionsgate) — fixes Civil War
- Format 2: eng_MLP_ label strings (Warner UHD) — Barbie, Dune
- Format 3: playlist-only (MAIN_FEATURE etc.)
- Simplified TrackLabel to just description + raw
- 5 unit tests for both formats
- Tested on 12 disc captures: Civil War now gets 3 audio + 2 sub labels
Known issues: Barbie labels swapped, Dune returns 0 labels (different format?)
apply_jar_labels() matches JAR audio/subtitle labels to streams by
position and sets AudioStream.label. Apps read labels directly from
streams instead of doing their own JAR matching.
Each stream type has only its relevant fields. No more HDR on audio
or channels on video. Added SubtitleStream.forced field (TODO: parse).
Removed display helpers from lib (belongs in CLI).
- Size from source_packet_count * 192 (matches libbluray approach)
- metadata_sector_ranges() uses actual metadata partition size from ICB
instead of arbitrary +256 margin (fixes Top Gun missing CLIPINF)
- Store metadata_sectors in UdfFs
- Fix CLPI CPI bit-packed field parsing (partial, EP map still needs work)
- Disc.volume_id: UDF Volume ID from PVD (always present)
- Disc.meta_title: from META/DL/bdmt_eng.xml (falls back to other languages)
- Disc.format: UHD/BluRay/DVD detected from video codec
- Disc.capacity_bytes, Disc.layers
- Disc.jar_labels: extracted from BDMV/JAR
- Fixed MPLS STN parsing: 16-byte header (was 8), proper stream entry offsets
- Streams now include: HDR, color space, Dolby Vision EL, secondary audio/video
- parse_dstring() for UDF d-string fields
- wait_ready() polls TEST UNIT READY before unlock
Tested on 12 disc captures — all return correct titles, streams, format.
Walk UDF tree to discover sector ranges for all metadata files
(MPLS, CLPI, JAR, AACS certs, etc). Skips STREAM/, BACKUP/,
DUPLICATE/, MKB_RO.inf, ContentHash. Exposes partition_start()
and metadata_start() getters. Used by bdemu smart capture.
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Rust library for 4K UHD / Blu-ray optical drives. Drive access, disc scanning, AACS decryption, and content reading in one crate. Bundled drive profiles — no external files needed.
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.
- **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
AACS decryption requires a KEYDB.cfg file. If available at `~/.config/aacs/KEYDB.cfg` or passed via `ScanOptions`, the library handles everything — handshake, key derivation, and per-sector decryption — without the application needing to know anything about encryption.
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.
Run `freemkv info --share` with the [freemkv CLI](https://github.com/freemkv/freemkv) to contribute your drive's profile.
Run `freemkv info disc:// --share` with the [freemkv CLI](https://github.com/freemkv/freemkv) to capture your drive's identity for contribution. Drive-unlock profiles are maintained in the [freemkv-unlock](https://github.com/freemkv/freemkv-unlock) repository.
Common problems and solutions for optical drive ripping with freemkv.
---
## 1. USB-SATA Bridge Issues
This is the single most common source of problems when ripping discs over USB.
### Symptoms
- The drive disappears mid-rip. The ripping tool reports the device is gone, and `ls /dev/sg*` no longer shows it.
- The device re-enumerates under a different name: `sg4` becomes `sg5`, then `sg7`, then `sg11` after each USB port reset.
-`dmesg` shows USB port resets: `usb X-Y: reset high-speed USB device`, `xhci_hcd 0000:00:14.0: Cannot enable. Maybe the USB cable is bad?`, or `usb-storage: device reset failed`.
- The SCSI layer reports `host_status=7` (Linux USB transport error) in sense data.
- The drive works fine for reading data discs or burning, but crashes when hitting damaged sectors during a rip.
- After the crash, the drive is completely invisible until physically unplugged and reconnected.
### Root Cause
USB-SATA bridges translate between the USB Mass Storage protocol (BOT or UAS) and the drive's native SATA interface. When the optical drive encounters an unreadable sector, it returns a SCSI CHECK CONDITION with sense key 0x03 (MEDIUM ERROR). Some bridge chipsets -- particularly the Initio INIC-36xx family -- have buggy firmware that mishandles this error response.
Specific failure modes:
- **Incorrect residue reporting.** The bridge claims a different number of bytes transferred than what actually occurred. The Linux USB storage driver sees this discrepancy as a protocol violation and resets the port to recover. The `US_FL_IGNORE_RESIDUE` quirk exists specifically for this class of bug (see `drivers/usb/storage/transport.c` in the Linux kernel).
- **Bridge firmware crash.** On some Initio bridges, a malformed SCSI error response from the drive causes the bridge MCU to hang entirely. The USB controller sees the device stop responding and initiates a port reset. The bridge recovers (it re-enumerates), but the rip is dead -- all state is lost.
- **Sense data corruption.** The bridge forwards garbled or truncated sense data to the host, which the SCSI midlayer cannot parse, leading to a transport reset.
This is a hardware + firmware problem, not a software bug. The same drive connected via direct SATA does not exhibit these symptoms.
### Known Affected Bridges
| Chipset | USB IDs | Notes |
|---------|---------|-------|
| Initio INIC-3609 | `13fd:3609` | Very common in cheap SATA-to-USB enclosures. Highly problematic. |
| Initio INIC-3619 | `13fd:3940` | Same firmware family as INIC-3609. |
| Initio INIC-3069 | `13fd:0840` | Older variant, same residue bug. |
| ASMedia ASM1051 | `174c:5106` | Early ASM SATA bridge. Residue issues on error paths. |
| JMicron JMB36x | `152d:0561` | Some firmware versions. Not all JMicroon chips are affected. |
If your drive came in a pre-built external enclosure (Vantec, Sabrent, OWC, etc.), it almost certainly uses one of these bridge chips internally.
### The Fix: USB Storage Quirk
Apply the `US_FL_IGNORE_RESIDUE` kernel quirk for your bridge. This tells the Linux USB storage driver to ignore the residue field in SCSI response frames, preventing the port reset on mismatched byte counts.
**Step 1: Identify your bridge's vendor:product ID.**
```bash
lsusb
```
Look for your drive's entry. Example output:
```
Bus 002 Device 005: ID 13fd:0840 Initio Corporation INIC-3609
```
Here the vendor ID is `13fd` and the product ID is `0840`.
Replace `13fd:0840` with your device's actual IDs. The `:i` flag means `US_FL_IGNORE_RESIDUE`.
You can combine multiple flags. Common additions:
-`:i` -- ignore residue (`US_FL_IGNORE_RESIDUE`)
-`:u` -- force BOT mode instead of UAS, for bridges with UAS bugs
**Step 3: Reconnect the drive.** Unplug and replug the USB cable, or bind/unbind the device. The quirk is applied per-module-load, so existing sessions may need the drive reconnected.
### Making It Persistent
Add the quirk to your kernel boot parameters so it survives reboots.
Edit `/etc/default/grub` (GRUB) and add to `GRUB_CMDLINE_LINUX_DEFAULT`:
Avoid any enclosure or adapter listing an Initio chipset.
### Best Solution: Direct SATA
Connect your optical drive directly to a motherboard SATA port. This eliminates the USB-SATA bridge entirely and is the most reliable configuration:
- No USB protocol overhead or translation errors.
- No bridge firmware bugs.
- No port resets or re-enumeration.
- Full SATA error recovery handled natively by the kernel's libata driver.
- Sustained read speeds are limited only by the drive, not the USB bus.
If your machine has a free SATA port, use it.
---
## 2. Damaged Disc Handling
### Symptoms
- SCSI MEDIUM ERROR (sense key 0x03) at specific LBAs. `dmesg` shows `sr X:0:0:0: [srY] Unrecoverable read error` or similar.
- Read speed drops to near zero when approaching a damaged area.
- The drive makes audible retrying noises (laser repositioning, spindle speed changes).
- On USB-connected drives: the bridge crashes (see section 1 above) when the drive returns the error.
### How freemkv Handles This
freemkv uses a three-layer recovery model. See [`docs/rip-recovery.md`](docs/rip-recovery.md) for full details.
- **Pass 1 (Disc::copy):** Fast sweep with 64 KB reads. On failure, zero-fills the block and skips forward. Writes a ddrescue-format mapfile for later retry.
- **Pass 2+ (Disc::patch):** Targeted re-reads of bad ranges with a long 30-second timeout per CDB. The drive firmware performs its own ECC and laser power retries within that window.
- **In-stream (DiscStream):** Adaptive batch halving -- reduces request size on failure to isolate bad sectors within a larger block.
This means a disc with some bad sectors will still produce a usable ISO. The damaged areas are zero-filled in pass 1 and retried in subsequent passes. Structure-protected sectors (deliberate unreadable regions from copy protection) will never yield, which is expected.
### The Drive Taint Issue (LG BU40N)
Some drives, notably the LG BU40N, exhibit a "taint" behavior after encountering MEDIUM ERRORs:
1. The drive hits a damaged sector and returns a MEDIUM ERROR.
2. From that point forward, **all subsequent reads fail** -- even reads to sectors that were previously successful.
3. The only recovery is to physically unplug and reconnect the drive (or power-cycle it).
This is not a freemkv bug. It is a drive firmware behavior triggered by the interaction between the drive's internal error recovery and the USB-SATA bridge's handling of the error response. The drive firmware enters a degraded state that it does not recover from without a power cycle.
Workarounds:
- **Use a direct SATA connection.** This eliminates the bridge interaction that triggers the taint.
- **Use a different bridge.** The ASM1153 and JMS578 are less likely to trigger this behavior.
- **Accept the partial ISO.** freemkv's skip-forward recovery will zero-fill the unreadable blocks and continue. The resulting ISO may be playable with minor glitches in the affected areas.
- **Physical replug between retry passes.** If running multi-pass patch, replug the drive between passes to clear the taint state.
freemkv deliberately does not attempt inline SCSI resets or eject cycles to recover from this state, because those operations were found to make the problem worse on affected hardware (see the design rationale in [`docs/rip-recovery.md`](docs/rip-recovery.md)).
---
## 3. Drive Not Detected
### Check Hardware Visibility
```bash
lsusb
```
Verify the drive appears in the USB device list. If it does not show up, the drive is not visible to the host at all -- check cables, power, and USB port.
```bash
ls /dev/sg*
```
On Linux, optical drives appear as `/dev/sg*` devices (the SCSI Generic interface). freemkv uses `/dev/sg*`, not `/dev/sr*`. If `lsusb` shows the device but no `/dev/sg*` entry exists, the `sg` kernel module may not be loaded:
```bash
sudo modprobe sg
```
### Check Kernel Messages
```bash
dmesg | grep -i usb | tail -30
dmesg | grep -i sg | tail -10
```
Look for:
- USB enumeration errors or failed port resets.
-`sg_add` messages confirming the sg device was registered.
- Permission denied or access errors.
### Permission Issues
On most Linux distributions, `/dev/sg*` devices are owned by `root:disk` or `root:cdrom` with restricted permissions. Running freemkv as an unprivileged user will fail with permission errors.
Options:
- Add your user to the appropriate group:
```bash
sudo usermod -aG disk $USER
```
Then log out and back in for the change to take effect. On some distributions the group is `cdrom` or `optical` instead of `disk`.
- Run with elevated privileges:
```bash
sudo freemkv ...
```
- Install a udev rule for persistent per-device permissions. Create `/etc/udev/rules.d/99-sg-optical.rules`:
sudo udevadm control --reload-rules && sudo udevadm trigger
```
### Spin-Up Delay
Optical drives take 30-60 seconds to spin up and become ready after hot-plug or disc insertion. During this window, SCSI commands may return NOT READY or timeout.
freemkv's `Drive::wait_ready()` handles this automatically by polling with TEST UNIT READY until the drive responds. If you are writing your own code using the library, always call `wait_ready()` before `init()`:
```rust
let mut drive = Drive::open(Path::new("/dev/sg4"))?;
drive.wait_ready()?; // blocks until disc is ready, up to 30s
drive.init()?;
```
If the drive was just plugged in, wait a full minute before concluding it is not detected.
---
## 4. How to Identify Your USB-SATA Bridge
If you are experiencing the issues described in section 1, you need to know which bridge chipset your adapter or enclosure uses.
### Step 1: Find the Device
```bash
lsusb
```
Look for entries matching your drive or enclosure. Bridges may appear under their own manufacturer name or as a generic SATA device. Common examples:
```
Bus 002 Device 005: ID 13fd:0840 Initio Corporation
Bus 002 Device 006: ID 174c:1153 ASMedia Technology Inc. ASM1153
Bus 002 Device 007: ID 152d:0578 JMicron Technology Corp. JMS578
This often reveals the bridge chipset even when `lsusb` shows a generic name.
### Step 4: If the Enclosure Is Sealed
Many external drive enclosures (Vantec NexStar, Sabrent, OWC, etc.) do not advertise the bridge chipset on the packaging. In this case:
1. Check `lsusb` while the enclosure is connected.
2. Search the vendor:product ID online -- there are community-maintained lists of which chipsets popular enclosures use.
3. If you cannot determine the chipset and are experiencing bridge crashes, assume it is an Initio and apply the quirk with its IDs.
4. The definitive test: connect the bare drive to a motherboard SATA port. If the problems disappear, the bridge was the cause.
---
## 5. General Debugging Checklist
When something goes wrong during a rip, gather this information before filing an issue:
1. **freemkv version:** `freemkv --version` or the crate version in `Cargo.toml`.
2. **Drive model:** from the drive label, or from `freemkv info`.
3. **Connection type:** USB (with bridge chipset if known) or direct SATA.
4. **Operating system and kernel:** `uname -a`.
5. **Kernel messages during the failure:** `dmesg | tail -50` immediately after the crash.
6. **SCSI device:** which `/dev/sg*` the drive was on, and whether it changed after the failure.
7. **The disc:** title, format (BD/DVD/UHD), condition.
Include all of the above in bug reports. SCSI transport errors that resolve with the `US_FL_IGNORE_RESIDUE` quirk or by switching to direct SATA are bridge firmware bugs, not freemkv bugs.
| `src` | object | MUST | Provenance: `{ "file": int?, "sector": uint, "byte": uint }` — the offset of this AU's **first byte** in the source (§9). MUST be carried from demux, never reconstructed. |
| `type` | string | MUST | Coding type:<br>`"I"`<br>`"P"`<br>`"B"`<br>_ISO/IEC 13818-2 §6.3.9; H.264/H.265 slice types collapsed to frame type._ |
| `key` | boolean | MUST | `true` iff this picture is an intra (I) picture / parser-flagged decode-restart point (IDR / IRAP / I-picture).<br>_MPEG-2 open-GOP clean-RAP precision (`closed_gop`) is not currently distinguished — see note below._ |
| `gop` | boolean | SHOULD | `true` iff this picture begins a GOP / coded video sequence.<br>_Omitted when the implementation does not carry a distinct GOP-boundary signal._ |
| `pts` | integer\|null | SHOULD | Presentation timestamp in `timescale` ticks; `null` if unknown. |
| `dts` | integer\|null | MAY | Decode timestamp in `timescale` ticks. |
| `size` | integer | MAY | AU length in bytes; enables byte-range extraction with `src`. |
| `recovered` | boolean | MAY | `true` iff any byte of this AU came from a retried/marginal read (§9.1).<br>_Default `false`._ |
| codec ext | object | MAY | Codec-specific members under the codec's namespace (§8). |
The `type` and `key` members are **codec-agnostic** and MUST be populated for
every codec. `type` is the I/P/B coding type the parser decoded (collapsing
H.264/H.265 slice types to a frame type); where no per-picture coding is carried
(audio / synthetic frames), `type` is `"I"` for a key picture else `"P"`. `key`
is the picture's random-access flag as the codec parser sets it (IDR / IRAP /
I-picture). A writer MUST NOT emit a degraded record (`type:"?"` or `src:null`)
merely because a codec lacks per-picture coding info — those fallbacks are
reserved for a field that is genuinely unavailable (e.g. provenance absent on a
synthetic source).
> **Limitation (honest random-access).** `key` is set from the picture's
> intra / decode-restart flag. The per-picture coding model this index carries
> does **not** distinguish MPEG-2 open-GOP clean random-access points
> (`closed_gop`) from any other I-picture, so `key` is the parser-flagged
> decode-restart point, not a verified clean-RAP claim. A future revision MAY
> tighten `key` for codecs/profiles that carry that signal; readers MUST NOT
Codec-agnostic interlace/pulldown attributes, derived through the indexer's
per-picture coding accessors (MPEG-2: ISO/IEC 13818-2 §6.3.10). Emitted as
top-level members of the record, and ONLY when the codec actually measured the
signal — an OPTIONAL member that is omitted (not defaulted) when unknown:
| Member | JSON type | Req | Semantics / reference |
|---|---|---|---|
| `field_order` | string | MAY | Display field order:<br>`"tff"` — top field first<br>`"bff"` — bottom field first<br>`"progressive"` — no field order applies<br>_Omitted when the codec did not signal it._ |
| `progressive` | boolean | MAY | `true` iff the picture is progressive.<br>_Omitted when the codec did not signal it._ |
| `nb_fields` | integer | MAY | Number of displayed field periods this picture occupies (the soft-telecine / 2:3 pulldown basis):<br>`1` for a single field picture<br>`2` for a normal frame<br>`3`/`4`/`6` for `repeat_first_field` pulldown per §6.3.10 |
Codecs that carry only a coding type (e.g. H.264 / HEVC / VC-1 through this
pipeline) omit `field_order` and `progressive` rather than guessing a default.
## 8. Codec model and extensibility
Core record members (§7) are codec-agnostic and present for every codec.
Codec-specific data is either (a) promoted to top-level members for a small,
registered set per codec profile (e.g. MPEG-2 §7.1), or (b) placed under an
`ext` object keyed by codec id for richer/optional data:
```json
{
"n":42,
"type":"P",
"key":false,
"src":{
"sector":17,
"byte":924
},
"ext":{
"hevc":{
"temporal_id":0,
"nal_type":1
}
}
}
```
New codecs and members are added through Appendix B (codec registry) without a
breaking version bump, provided readers continue to ignore unknown members (§11).
## 9. Provenance and recovery semantics
`src` is **byte-exact** to the source as read. `src.sector` counts in
`source.sector_size`-byte units; `src.byte` is the offset within that sector of
the AU's first byte. For multi-file sources, `src.file` indexes a writer-declared
file list. Provenance MUST be the value observed at demux time; an implementation
MUST NOT recompute `src` by re-parsing — the point of FVI is to *carry* the truth.
### 9.1 Recovery
Because FVI is provenance-native, it can record reliability. A record with
`"recovered":true` indicates the AU's source bytes required retry/marginal-read
recovery. This lets downstream tools surface or quarantine pictures whose bytes
are not byte-identical to a clean read — a capability legacy index formats lack.
## 10. Time model
All `pts`/`dts` are integers in units of `1/timescale` seconds. `pts` is
presentation (display) time; `dts` is decode time. Records are in **coded**
(decode) order, so `pts` is not necessarily monotonic across records (B-pictures
reorder); `dts` is non-decreasing. Readers needing display order sort by `pts`.
## 11. Versioning and forward compatibility
-`fvi_version` is the document version; this spec defines `1`.
- **Additive** changes (new OPTIONAL members, new registered codecs) do NOT bump
`fvi_version`. Readers MUST ignore members they do not recognize.
- A change that alters the meaning of an existing member or makes a new member
REQUIRED bumps `fvi_version`.
- A reader encountering a higher `fvi_version` than it implements SHOULD process
the members it understands and MUST NOT reject the document solely for the
version being higher, unless a member it relies on is absent.
## 12. Conformance requirements (summary)
A conformant **writer** MUST: emit a Header first; emit records in coded order
with contiguous `n`; populate `src` from demux; use named/registered codec ids;
encode one JSON value per UTF-8 LF-terminated line.
A conformant **reader** MUST: accept any §4–§10 document; ignore unknown members;
not assume `picture_count`, `pts`, or `size` are present unless required above.
AACS (Advanced Access Content System) is the encryption layer used by Blu-ray and UHD 4K discs to protect content. libfreemkv implements AACS decryption to enable transparent disc access.
AACS (Advanced Access Content System) is the encryption layer used by Blu-ray
and UHD 4K discs to protect content. libfreemkv implements AACS decryption so
disc access is transparent to the application.
There are two major versions:
- **AACS 1.0** -- Used by standard Blu-ray discs. Relies on a custom 160-bit elliptic curve for bus authentication and AES-128 for content encryption. Processing keys and device keys can derive the media key from the disc's Media Key Block (MKB).
- **AACS 2.0** -- Used by UHD 4K Blu-ray discs. Adds a per-sector bus encryption layer (read_data_key) on top of the standard content encryption. Uses P-256/SHA-256 for its native handshake, though drives accept AACS 1.0 host certificates for backward compatibility.
Both versions use AES-128-CBC for content decryption with a fixed initialization vector. The fundamental key hierarchy is the same: a Volume Unique Key (VUK) decrypts per-title unit keys, which in turn decrypt the content stream.
## Architecture
AACS support is split across two modules:
### `aacs.rs` -- Keys and Decryption
Handles everything related to key resolution and content decryption:
The disc hash is computed as the SHA-1 digest of the raw `Unit_Key_RO.inf` file from the disc's `/AACS/` directory. This hash is used as the lookup key in `KEYDB.cfg`. If a matching entry contains a VUK (`V` field), it is used directly.
This is the fast path and resolves the vast majority of discs in a well-maintained KEYDB.
The most complex path. Each device key has an associated node number, UV value, and mask parameters that position it in the AACS subset-difference tree. The library:
1. Finds the subset-difference entry in the MKB that applies to the device key's node.
2. Traverses the tree using AACS-G3 key derivation: `aesg3(key, inc) = AES-DEC(key, seed) XOR seed`, where `seed[15]` is incremented by `inc`. Each tree node produces a left child (inc=0), a processing key (inc=1), and a right child (inc=2).
3. At each level, selects left or right based on the UV bit at the current position.
4. The resulting processing key is validated against the MKB cvalue to derive the media key.
5. VUK is derived from the media key and Volume ID.
## Content Decryption
### Aligned Units
AACS encrypts content in aligned units of 6144 bytes (3 sectors of 2048 bytes each). The encryption flag is signaled by the copy_permission_indicator bits in byte 0 of the unit (`unit[0] & 0xC0 != 0`).
### Per-Unit Key Derivation
Each aligned unit has its own decryption key derived from the CPS unit key:
1.**Derive**: AES-128-ECB encrypt the first 16 bytes of the unit (plaintext TP_extra_header) with the unit key.
2.**XOR**: XOR the encrypted result with the original 16 bytes to produce the per-unit decryption key.
3.**Decrypt**: AES-128-CBC decrypt bytes 16 through 6143 using the per-unit key and the fixed AACS IV.
4.**Clear flag**: Clear the encryption indicator bits (`unit[0] &= !0xC0`).
### Fixed IV
All AES-CBC operations in AACS use the same fixed initialization vector, defined in the AACS specification.
### Verification
After decryption, the library verifies correctness by checking for MPEG-TS sync bytes (0x47) at the expected 192-byte packet boundaries within the unit. Blu-ray transport stream packets are 192 bytes: 4-byte TP_extra_header followed by a 188-byte TS packet.
## Bus Encryption
### AACS 1.0
Standard Blu-ray discs do not use bus encryption. Content is read directly from the disc and decrypted using the unit key.
### AACS 2.0
UHD 4K discs add a per-sector bus encryption layer. The drive encrypts data as it is read from the disc, and the host must decrypt it before applying AACS content decryption.
Bus encryption uses a **read_data_key** obtained during the SCSI handshake. For each 2048-byte sector within an aligned unit, bytes 16 through 2047 are AES-128-CBC encrypted with the read_data_key and the fixed AACS IV. The first 16 bytes of each sector remain plaintext.
The full decryption pipeline for AACS 2.0:
1.**Bus decrypt**: For each sector, AES-128-CBC decrypt bytes 16..2047 with the read_data_key.
2.**Content decrypt**: Standard per-unit key derivation and AES-128-CBC decryption as described above.
## SCSI Handshake
The AACS SCSI authentication handshake establishes a shared bus key between host and drive, then uses it to securely transfer the Volume ID and read data keys.
### Protocol Flow
1.**Invalidate AGIDs**: Send REPORT KEY with format 0x3F for AGIDs 0-3 to clear stale sessions.
2.**Allocate AGID**: REPORT KEY format 0x00 returns a fresh Authentication Grant ID.
3.**Send host credentials**: SEND KEY format 0x01 transmits the host nonce (20 random bytes) and host certificate (92 bytes).
4.**Receive drive credentials**: REPORT KEY format 0x01 returns the drive nonce and drive certificate.
5.**Receive drive key**: REPORT KEY format 0x02 returns the drive's ephemeral EC key point and ECDSA signature over `host_nonce || drive_key_point`.
6.**Verify drive key**: The signature is verified against the drive's public key (extracted from its certificate). AACS 1.0 certificates are verified against the AACS LA public key.
7.**Send host key**: The host generates an ephemeral key pair, signs `drive_nonce || host_key_point` with the host private key, and sends via SEND KEY format 0x02.
8.**Compute bus key**: ECDH shared secret = `host_private_key * drive_key_point`. The bus key is the low 128 bits of the shared point's x-coordinate.
### Post-Authentication Reads
- **Volume ID**: REPORT DISC STRUCTURE format 0x80. Returns 16-byte VID encrypted with the bus key, plus an AES-CMAC MAC for integrity verification.
- **Read Data Keys**: REPORT DISC STRUCTURE format 0x84. Returns the read_data_key and write_data_key, each AES-ECB encrypted with the bus key.
### Elliptic Curve
AACS 1.0 uses a custom 160-bit Weierstrass curve (`y^2 = x^3 + ax + b mod p`) with 20-byte field elements. The library implements full EC arithmetic: point addition, doubling, scalar multiplication, modular inverse, ECDSA sign/verify, and ECDH key agreement.
## AACS 2.0 Status
AACS 2.0 discs are detected via the Content Certificate file (`Content000.cer` or `Content001.cer`). A certificate type byte of 0x01 indicates AACS 2.0.
AACS 2.0 drives are identified by their drive certificate type (0x11). These drives natively use P-256/SHA-256, but accept AACS 1.0 host certificates for backward compatibility.
The application never touches keys, never calls decryption functions, and never manages handshakes. All of that is internal to `Disc::scan()` and `ContentReader::read_unit()`.
The application never touches keys, never calls decryption functions, and never
manages handshakes. All of that is internal to `Disc::scan()` and the content
reader.
### KEYDB Location
`ScanOptions` controls where the KEYDB is loaded from. If no explicit path is set, the library checks:
1.`~/.config/aacs/KEYDB.cfg`
2.`/etc/aacs/KEYDB.cfg`
To specify an explicit path:
`ScanOptions` controls where the keydb is loaded from. If no explicit path is
set, the library checks the standard config locations. To specify an explicit
@@ -189,7 +189,7 @@ The full ripping pipeline chains three parsers:
2.**CLPI** converts those timestamps to SPN ranges, then to sector extents.
3.**UDF** provides the file's starting LBA on disc for absolute sector addressing.
The `Disc::scan()` method in `src/disc.rs` orchestrates this: for each play item in each playlist, it loads the corresponding CLPI, calls `get_extents()` with the play item's in/out times, and collects the resulting sector ranges into the title's extent list.
The `Disc::scan()` method in `src/disc/mod.rs` orchestrates this: for each play item in each playlist, it loads the corresponding CLPI, calls `get_extents()` with the play item's in/out times, and collects the resulting sector ranges into the title's extent list.
`libfreemkv` supports a multi-stage rip model for damaged or protection-bearing
discs: a fast forward sweep that tolerates read failures, in-loop request-size
adaptation that survives transient drive trouble without bailing, and targeted
retry passes against a persistent bad-range map. The stream pipeline
(`DiscStream` + `input`/`output`) operates against the resulting ISO image, so
the mux stage never touches the drive.
Recovery is layered cleanly. Each layer has one responsibility and does not
reach into the others.
| Layer | Where it lives | What it does |
|-------|---------------|--------------|
| 1 — Bad-range retry | `Disc::patch` (one pass over the mapfile per call) | Re-reads non-`+` ranges with the long timeout. Idempotent; caller invokes N times. |
| 2 — Single-shot primitive | `Drive::read` in `src/drive/mod.rs` | One CDB, one timeout, one result. No inline retries, no SCSI reset. |
| 3 — In-loop request adaptation | `DiscStream::fill_extents` adaptive batch sizer | Halves the batch on failure, retries at the same LBA, walks back up on a clean-read streak. |
The library exposes flat verbs; the caller drives the multipass loop. Autorip
runs `Disc::sweep` once, then loops `Disc::patch` until either the mapfile is
clean or the configured retry budget is exhausted, then hands the ISO off to
the mux pipeline. The `freemkv` CLI does the same shape with a
terminal-output progress sink. Layer 3 runs inside any consumer of
`DiscStream` (direct PES pipeline, ISO playback, etc.) without caller
@@ -120,6 +120,14 @@ Each directory read involves two sector reads: one for the ICB, then one or more
`read_file()` reads a file by navigating the directory tree, reading the file's ICB to get its data extent, then reading the data sector by sector from the **physical partition** (partition_start + LBA, not metadata_start).
## Buffered Sector Reads
USB optical drives have ~500ms round-trip latency per SCSI command. Since `read_filesystem()` and `read_file()` issue one SCSI READ per sector, a full disc scan can require hundreds of commands -- taking 10+ minutes on USB.
`Disc::scan()` wraps the drive in a `BufferedSectorReader` before reading. On a single-sector read, the buffer prefetches a batch of sectors (sized from the kernel's `max_hw_sectors_kb` for the device) and caches them. Subsequent reads to nearby LBAs return from cache with zero SCSI overhead. After parsing the UDF directory structure, the entire metadata partition is pre-read into the cache, so all ICB lookups during title scanning and encryption resolution are instant.
The buffer is transparent -- `read_filesystem()`, `read_file()`, and all downstream code still call `read_sectors(lba, 1, buf)` as before. The batching happens inside the `SectorSource` implementation.
### UDF Filename Encoding
UDF filenames use a compression ID as the first byte:
Some files were not shown because too many files have changed in this diff
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