Picks up the KPN fix: node data outputs block on a full channel rather than
dropping. Sentinels stay out-of-band, so EOF can always overtake a stalled data
path and the hold-and-wait deadlock that comment warns about is not reachable.
Verified on a 77s clip at 5 fps, which should yield 385 sampled frames:
before 65 written, 320 dropped, 29s, two runs differ
after 385 written, 0 dropped, 17s, two runs byte-identical
The determinism is the part that matters. Golden fixtures were impossible while
what got dropped depended on timing; VR-001 fixture generation is unblocked by
this, and so is the CI replay strategy that depends on it.
Faster rather than slower, which is worth recording because the intuition runs
the other way: a dropped frame has already cost its decode, and the overflow
exception cost more still.
AR-004 is not fully closed. Channel capacity remains a count of items, while a
face carries a 112x112 crop and a 512-float embedding — so a crowded frame
occupies far more memory per slot than a sparse one. Bounding by bytes in
flight is the remaining half, and it matters once max_faces is removed (AR-003).
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
TRACES: AR-004, VR-001 | SR-002
Backpressure cannot be implemented in this repository. Every node output in KPN
uses the dropping push() (pool_node.hpp:404 and :710, plus branch, fanout and
interrupt_node). A lossless push_blocking() already exists on both Channel and
OutputPort — "wait for the consumer to drain instead of dropping; the producer
just runs slower" — and nothing calls it. The fix is a per-channel policy or a
network default in KPN, and this pipeline should select lossless: a dropped
frame here does not degrade a result, it silently changes one.
Measured rather than inferred. One 77s clip at 5 fps should yield ~385 sampled
frames. On CPU it produced 49, ending at 51s, with 285 dropped at camera_pos
and 51 at face_aligner. Rebuilt with CUDA the same clip ran in 29s and reached
EOF correctly, and still dropped 320 at camera_pos, yielding 65. Faster
hardware moves where the queue backs up; it does not change what happens when
it does — which is why this is a correctness requirement rather than a
throughput one.
Raising channel capacity is therefore a stopgap: it lowers the probability of
overflow without changing the behaviour on overflow, and the failure it hides
is silent corruption of the output.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
TRACES: AR-003, AR-004, VR-001 | SR-002
A stale reference to 'the runtime/exact tiers' as the fallback for media too
short to carry an audio signature. The exact tier keyed on a file hash and was
withdrawn on legal grounds: it fingerprinted the individual copy a user holds
rather than the cut the timings describe.
The pipeline never emitted a video_hash, so nothing in the code changes — but a
spec that still names a withdrawn tier is what makes the withdrawal look like an
oversight to the next reader, which is exactly how it nearly got re-added.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
GR-004 — a gallery built with one embedding model is meaningless with another.
Cosine similarities across models are garbage but look entirely plausible, so
this fails silently and expensively; every measurement taken against a
mismatched pair would have been quietly wrong.
The stamp is the model basename plus a SHA-256 of its bytes, with embed_dim as
a cheap extra guard. The hash decides and the name explains, because neither
works alone: a name is a promise rather than a fact — models get re-exported in
place under an unchanged filename, which is exactly the case where the weights
differ and nothing else does — while a bare hash mismatch tells an operator
nothing actionable.
Mismatch is fatal in every mode with no bypass. Unstamped only warns, because
unstamped is unknown rather than known-bad, and an error firing on every legacy
gallery trains people to reach for the bypass reflexively. scripts/stamp_gallery.py
binds an existing gallery in place with no re-embedding, so the warning is a
migration step rather than a permanent state; --require-gallery-stamp promotes
it to an error once a site has migrated.
Two gaps found that would have defeated the requirement outright:
- Embedding dumps carried no stamp, so a replay — which has no live embedder —
had nothing to check the gallery against. Dumps now carry embedder_model and
embedder_sha256 as root attributes. Additive; schema_version stays 1. This is
the same gap the dump audit identified independently.
- --merge produced one file holding two embedding spaces, which no later check
can untangle. Merge paths now verify before writing.
The stamp also survives identity_matcher's calibration write-back, which would
otherwise have stripped it on the first analysis run — the check would have
worked exactly once.
Conflicts resolved additively: both branches appended a source to sae_gallery
and to the test target, and both edited the GR-004 register row.
Merged suite: 64 cases, 3199 assertions, passing on CPU with no GPU.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
TRACES: GR-004, VR-001 | SR-001
A gallery is only valid for the embedder that produced its vectors. Cosine
similarities across models are meaningless but *look* plausible, so the mistake
is silent and every measurement taken afterwards is suspect. Stamp the embedder
identity into the gallery at build; verify it at every load.
The stamp is the model file's basename plus the SHA-256 of its bytes (plus
embed_dim). The hash decides, the name explains. A name alone is a promise
rather than a fact — models get re-exported and overwritten in place under an
unchanged filename, which is exactly the case where the weights differ and
nothing else does. A hash alone is correct but unactionable in an error message.
SHA-256 is derived from the artefact, needs no registry kept current, and costs
~0.1s for a 250MB ONNX, memoised per process.
Mismatch is a hard error in every mode, with no bypass, naming both sides.
Unstamped legacy galleries warn loudly and proceed: unknown is not known-bad,
and hard-failing every pre-existing gallery would turn the check into something
people disable rather than trust. --require-gallery-stamp (or
SAE_REQUIRE_GALLERY_STAMP=1, which propagates to subprocesses) promotes that to
a hard error — the mode measurement work should run in. scripts/stamp_gallery.py
re-binds an existing gallery with no re-embedding, so "warn" is a cheap state to
leave rather than a permanent one.
Embedding dumps carry the same stamp: a replay has no live embedder, so the dump
is the embedder as far as the gallery is concerned. Derived galleries inherit
their source's stamp; --merge and the JSON gallery merge check before writing,
since one file holding two embedding spaces cannot be untangled afterwards.
Verified in: scene_analyze, scene_preview, the sae_kpn matcher binding,
replay.py, optimize.py (once per film at startup, before the first evaluation),
movienet_eval.py and both merge paths.
Stamp logic lives in src/gallery/embedder_stamp.{hpp,cpp} and its Python twin
scripts/sae_stamp.py, kept dependency-light so replay subprocesses do not pay
sae_gallery's requests/Pillow import to ask whether two models match.
Tests: 12 new cases in test_gallery_store.cpp covering the comparison logic,
both round trips, and the SHA-256 vectors that guarantee the C++ and hashlib
stamps agree. No ONNX or GPU required.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Adds the build/deploy story that was missing: containerised builder images for
cpu / cuda / rocm, and release jobs producing prebuilt binaries so a first
install need not compile.
States explicitly that this does not reverse DP-005. That requirement rejects
Docker as a *runtime* — GPU passthrough is fragile and exists only because of
the container. Using it as a *build* environment is the opposite case, and lets
one machine produce binaries for backends it cannot itself run. Build in a
container, run natively.
Two things deliberately cannot ship, and the installer must not imply otherwise:
TensorRT engines are GPU-architecture and TRT-version specific, so
build_trt_engines.sh still runs on the target; and models are ~725 MB in LFS,
orthogonal to the binary.
The base image is chosen by the OLDEST glibc to be supported, not by
convenience — a binary built in a container runs against the host's glibc, and
getting this wrong fails at load with GLIBC_2.xx not found. Accelerator runtimes
have the same shape of problem, so each image documents its compatible
CUDA/ROCm range and the installer checks it rather than discovering a mismatch
at first inference.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
TRACES: DP-005, DP-007, DP-008 | PR-004
Corrections from the dump audit and the completed agent work:
- AR-010 is not started, not in progress: is_scene_boundary has no producer
anywhere. SceneDetectorFunc is a terminal sink writing scenes.json and never
annotates the frame, so the field is permanently false and the dump column a
constant 0. A replay test of the frame-dependent track_alpha would pass
vacuously — the worst failure mode for a verification gate.
- T1 (functor-level) becomes the primary verification tier, not T2. KPN node
functors are plain callables constructed outside the network, so a node is
tested by calling operator() with hand-built inputs. That removes four
hazards at once: fixture provenance, replay-from-frame-0, cross-test state
leakage, and replay-harness nondeterminism. It also means a dead upstream
producer no longer blocks testing its consumer.
- VR-010 (dump provenance) and VR-011 (replay harness rewrite) added. A dump
made with LVFace is currently byte-indistinguishable from one made with
w600k-R50 — the GR-004 problem again, in the dump.
- Four requirements had no verification tier at all; the traceability gate
found them.
- DP-007: CI builder image, CPU-only, pinned by tag in the Gitea container
registry. Corpus fixtures go to the package registry rather than LFS: LFS is
pulled on clone and would tax every developer for data only CI reads.
- IR-004/005/007/008 marked done; the v1 DSP parameters they had to pin are
now normative in the server spec.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
TRACES: AR-010, DP-007, IR-004, IR-005, IR-007, IR-008, VR-001, VR-010, VR-011 | SR-002, SR-003
The phase structure encoded ordering assumptions that stopped being true as the
design changed, and its Phase 2 still described retuning constants that are now
withdrawn. Ordering is now derived from per-requirement dependencies instead:
anything with no unmet dependency is startable.
Carries over the TrackRegistry design (now keyed to AR-012/AR-013) and records
what was withdrawn from the old plan, including the --presence-mode flag —
comparison against old behaviour uses recorded reference output rather than a
second live code path.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Adds the requirements baseline for the pipeline redesign:
- SPEC.md — software requirements with Current/Gap deltas per item, so the
document doubles as a work list.
- requirements.md — stable flat IDs (AR/DP/IR/GR/VR) with parent traces,
priorities, statuses, and a per-requirement verification plan. Replaces the
thematic A1..E8 scheme, which had already produced an A1a and an out-of-order
E6; IDs are now permanent and never reused.
- IMPLEMENTATION-PLAN.md — phased work.
The central change is AR-012: presence follows track extent rather than
per-frame recognition, so a window starts when an actor appears rather than
when the recogniser first succeeded. anneal_sec and extinction_sec are
withdrawn rather than retuned — a track that survives its own gaps leaves them
nothing to do.
Verification is shaped by CI running on an N100 with no dGPU: the existing
HDF5 dump makes everything downstream of embedding replayable on CPU, which
covers the bulk of the redesign.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>