d5b4bf0ac17368e18859892cb805e24ef47dbe32
4 Commits
| Author | SHA1 | Message | Date | |
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2f952494c2 |
fix(media): stop a poster-frame failure from deleting the guest's video
Reproduced live, by accident, while smoke-testing on a machine with no ffmpeg: the clip uploaded fine, returned 201, and roughly six seconds later had `deleted_at` set and was gone from the feed. The `Ok(None)` "this clip yields no frame" case was already handled — that fix landed when sub-second clips were being destroyed. But the `?` on the call itself still routed every OTHER failure into the same give-up path, which soft-deletes: ffmpeg missing from the image, ffmpeg hanging on a truncated `.mov` and tripping the timeout, an ENOSPC on `thumbnails/`, or a DB blip in `set_thumbnail_path`. None of those says anything about the video, and `get_original` serves the file byte-for-byte, so a post that merely lacks a poster is fully watchable. No failure in the video branch may fail the upload. iPhone `.mov` is exactly the input most likely to trip it, and a wedding clip is not retakeable. ENOSPC gets its own classifier. It was the one failure the retry loop actively made worse: a disk does not drain during six seconds of backoff, so all three attempts failed identically while holding a compression permit that photos were queued behind — and the give-up path then refunded the quota and soft-deleted the row while deliberately KEEPING the original. That freed nothing, removed the photo seconds after a 201, and handed the guest the allowance to upload it again into the same full disk. Now: no retry, no refund, no delete. The row stays live and the photo is served from its original, and `backfill_stale_derivatives` regenerates the derivatives on the next start once there is room. `is_storage_full_error` has to look inside `ImageError::IoError` as well as at bare io errors, because `image` wraps rather than sources it and a plain chain walk would miss every derivative-write failure. FFMPEG_TIMEOUT drops 120s -> 45s. It was never a budget for honest work — a poster from a phone clip takes well under a second, and `-ss` before `-i` means even a 500 MB file seeks rather than scans. It is the ceiling on how long a pathological input holds a permit that guests' photos are waiting behind, so it should be as tight as it can be without cutting off real work. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> |
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31faccfdf8 |
fix(audit-4): refuse undecodable images at admission, stop retrying permanent failures
Fourth round: reject at the door what the worker can only fail on, and stop retrying errors that cannot succeed — while keeping IoError retryable so ENOSPC still gets another attempt. Squashed from 2 commits, original messages preserved below. ──────── fix(upload): refuse undecodable images at the door, and stop retrying them Two halves of the same complaint: an oversized photo was accepted with a 201 and then silently soft-deleted minutes later, after the worker had burned six seconds of backoff re-reaching a conclusion it could not change. Admission. The compression budget now runs at upload time, against the header only, so a guest is told immediately and told why: "Bild hat zu viele Bildpunkte (ca. 99 Megapixel) und kann nicht verarbeitet werden. Bitte verkleinere es und lade es erneut hoch." instead of watching the photo vanish behind a vague "could not be processed" — which arrived only if they happened to still be on the feed with that card loaded. Nothing is stored, so there is no row to soft-delete and no orphan for the sweep to reclaim. Admission and the worker share ONE function (`decoder_within_budget`), so they cannot drift apart and start disagreeing about what is acceptable — a photo accepted at the door and rejected by the worker would be worse than either behaviour alone. The worker keeps its own check: the backfill decodes files that predate this check, and defence in depth is the whole reason the budget exists. Retries. The loop retried every failure, including ones that are a property of the input. An image over the budget, a corrupt file, an unsupported format: each fails identically on all three attempts, so the only effect was 2s + 4s of sleep and three near-identical warnings before the same outcome. `is_permanent_image_error` classifies the `ImageError` variants that cannot change between attempts — Limits, Unsupported, Decoding — and the loop gives up on those at once. `IoError` is deliberately excluded: an ENOSPC while writing a derivative is exactly the transient case the retry exists for, and misclassifying it would turn a blip back into the data loss round 1 fixed. Measured: retry log lines went from 3 per oversized upload to 0. Tests: unit tests for both sides of the classifier (a Limits error is permanent, a missing file is not) and for admission agreeing with the decoder on accept AND reject. The e2e spec is rewritten for the new contract — 400 with an actionable message, nothing stored, backend alive after a burst of four — plus a mirror asserting an ordinary photo still uploads and processes, since a budget that rejected everything would satisfy the other two. ──────── fix(upload): narrow the admission check to the memory budget only The admission check I just added rejected ANY image the decoder couldn't build — corrupt, truncated, or unsupported, not only over-budget. That broke two adversarial tests, and they were right to break. 07-adversarial/file-upload-attacks pins, deliberately, that acceptance follows the MAGIC BYTES: a payload whose first three bytes are a JPEG header is accepted regardless of what follows, because the security property under test is that the client-declared Content-Type has no influence. Both failing cases upload 1024 bytes of JPEG magic followed by zeros. Rejecting those at admission is a different, broader contract than the one asked for, and rewriting an adversarial test to match new behaviour is precisely the thing that needs justifying rather than doing quietly. So admission now checks only what it was meant to: `exceeds_decode_budget` returns true solely for `ImageError::Limits`. A corrupt file goes to the compression worker exactly as before — which handles it gracefully and, since the retry classifier in the previous commit, no longer burns backoff on it. The resource guard is the part that had to move earlier; nothing else did. Tests: the size agreement between admission and the worker is still asserted in both directions, plus a new one writing a magic-bytes-only stub and asserting admission accepts it WHILE the worker still rejects it — pinning the boundary between the two checks so a future widening fails here rather than in the adversarial suite. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> |
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06ade4e158 |
fix(audit-3): restore the decode allocation guard, route /health in production
Third round. The decode allocation guard is a regression from round 1: swapping
reader.decode() for into_decoder() silently dropped the max_alloc enforcement
while keeping the comment that claimed it held.
Squashed from 3 commits, original messages preserved below.
──────── fix(imaging): restore the decode allocation guard I removed in round 1
This is a regression I introduced, not a pre-existing gap. Before 05948d8 the
compression worker used `ImageReader::decode()`, which does:
let mut decoder = Self::make_decoder(format, self.inner, limits.clone())?;
limits.reserve(decoder.total_bytes())?; // enforces max_alloc
decoder.set_limits(limits)?;
Reading the EXIF orientation tag needs `into_decoder()` instead, and that skips
the reserve entirely — the crate's own FIXME concedes `from_decoder` doesn't
compensate. Nothing else enforces `max_alloc`: the JPEG decoder's `set_limits`
only checks support and dimensions. So the 256 MiB budget has been inert since
that commit, and round 2 then propagated the weakened path into export.rs through
the shared helper, in a commit whose message claimed the helper "carries" the
decompression-bomb cap. It didn't, and the comment saying max_alloc "hard-caps
the decode allocation" was simply false.
What was left was only the per-axis cap, which permits 12000x12000 — 412 MiB
decoded, 824 MiB for the two concurrent decodes the worker runs by default,
against a 1 GiB container. Deploy-blocking right now because bumping
DERIVATIVES_REV makes the first boot after a deploy re-decode the entire gallery
two at a time: an OOM kill there restarts the container, which re-runs the
backfill. A boot loop, on the first deploy of these fixes.
Re-add the reserve exactly as `decode()` does it. Per the budget decision it stays
at 256 MiB (~89 MP for RGB8, above any mainstream phone's real output); two
concurrent decodes now peak at 512 MiB. Oversized images take the graceful path
from round 1 — original retained, quota refunded, upload-error toast — and fail
after the header parse but BEFORE any pixels are read, so they cost a header read
rather than an allocation. Measured peak during a concurrent oversized burst: 3.0
MiB.
Test parity is the other half, and the reason this was invisible: the e2e app
container had NO memory limit while production is capped at 1 GiB, so a decode
that would OOM-kill production simply succeeded in CI. Mirror the 1 GiB cap in
docker-compose.test.yml. That is the third divergence of this shape, after WebKit
missing from CI and /health existing only in Caddyfile.test.
Tests: a fixture that is 568 KiB on disk and 283 MiB decoded (11000x9000 = 99 MP,
deliberately UNDER the per-axis cap so the axis check cannot be what rejects it).
A unit test asserts the refusal — it fails against the old code, which decoded it
into an 11000x9000 buffer — with a companion asserting an ordinary photo still
decodes AND still gets its orientation applied, so the guard didn't become a
blanket refusal. An e2e test uploads it singly and as a concurrent pair, asserting
compression lands in 'failed' and the backend is still serving and still
processing afterwards.
──────── fix(deploy): route /health in production, and actually apply Caddyfile changes
Two defects in the update procedure I wrote last round, both of which make a
successful-looking deploy a lie.
1. The documented health check could never pass.
`curl -fsS https://DOMAIN/health` 404s against a perfectly healthy production
stack. The backend registers /health on its ROOT router, not under /api/v1, and
the production Caddyfile proxies only /api/* and /media/* — so /health fell
through to the SvelteKit catch-all, which has no such route and returns its 404
page. With -f, curl exits 22 and the `&& echo` never runs. My own gloss
("Anything other than ok means check the logs") then sent the operator chasing a
phantom outage.
e2e/Caddyfile.test has carried `reverse_proxy /health app:3000` since it was
written — precisely because the catch-all would otherwise swallow it. Production
never did. Per the fix-the-gap-not-the-doc call, production gets the same line,
and /health joins the no-store matcher so a cached response can't report the last
known state instead of the current one. Verified by running the production
Caddyfile against the real backend: /health -> 200 "ok", Cache-Control: no-store,
with /api/v1/event and / unaffected.
2. The sequence never reloaded Caddy, so a Caddyfile-only change was dropped.
`--build` only rebuilds services with a `build:` section, and caddy is a pinned
upstream image. Compose decides whether to recreate a container from its config
hash, which covers the mount SPECIFICATION but not the mounted file's CONTENTS —
so a git pull that changes ./Caddyfile produces no delta, Compose reports
`Running`, and Caddy serves its old config indefinitely. Exit code 0 throughout.
Round 1's iOS download fix (137c4ee) is exactly this shape: Caddyfile plus four
e2e files, so 100% of its production effect is in that one file. Following the
README to the letter deployed it, showed both image IDs changing, and left iOS
downloads broken.
Demonstrated rather than assumed — added a probe header to a Caddyfile, ran the
old sequence (`up -d --build`): header absent, change silently dropped. Ran the
new step 4 (`up -d --force-recreate caddy`): header served.
`--force-recreate` rather than `restart` or `caddy reload` because the bind mount
is resolved to an inode at container-create time and git pull replaces the file
rather than editing in place, so a restart can re-read the stale content — the
exact failure I hit in round 1 when `caddy reload` didn't pick up an edit.
Also rewrites the "db and caddy are untouched … so data volumes survive" sentence.
I wrote it as reassurance; "caddy is untouched" was the bug.
──────── chore: take the Bash(*) permission change back out of the shared settings
`.claude/settings.json` is committed and applies to anyone who clones. Fabi's
local `allow: ["Bash(*)"]` plus deny list ended up in it, inside f0d69f1 — a
commit about the image decode guard, which has nothing to do with permissions.
That was my mistake, twice. The file was already modified when I started the
round: my `git status --short` check printed "(clean)" from an unconditional
`echo` rather than from the status output, so I read a dirty tree as clean. Then
`git add -A` swept it into an unrelated commit, and I reported afterwards that I
had left it untouched. Neither the check nor the claim was true.
Restores the shared file to its previous three narrow entries. The permission
setup itself is preserved, moved to `.claude/settings.local.json`, which
`.gitignore:34` covers precisely so per-user permissions stay per-user — the
existing 442 entries there are kept alongside it.
Not rewriting f0d69f1 to erase this: main is unpushed so it would be safe, but a
visible correction is worth more than a tidy history, and a rebase across the
merge commits carries more risk than the mistake does.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
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b601c062bd |
fix(audit-2): video playback, role identity, keepsake EXIF, recover ceiling, WebKit CI
Second round: the two regressions the first round introduced, the remaining
gaps it left, and the CI change that makes the iOS guarantees actually gate a
change rather than being asserted.
Squashed from 9 commits, original messages preserved below.
──────── docs(deploy): document the update path — `up -d` alone ships nothing
The README only ever described a fresh install. There was no update section
anywhere, and `--build` appeared nowhere in the docs.
That matters because `app` and `frontend` are `build:` services with no published
image tag, and Compose has no source-change detection: if an image by that name
exists it is reused. So the natural `git pull && docker compose up -d` reports
"Container app-1 Running", rebuilds nothing, and exits 0. A deploy that shipped
none of the new code is indistinguishable from a successful one — which is how
eleven merged fixes can sit in the repo and never reach the box.
Verified both halves against a real stack rather than asserting them: with a
source change staged, `up -d` left the image ID untouched; `up -d --build`
produced a new image ID and a healthy /health.
Adds an "Updating an existing deployment" section covering backup-before-migrate,
pull, rebuild, health check, and an image-ID comparison to prove a build actually
happened. Also spells out the rollback trap: migrations run on boot and are not
undone by checking out an older commit, so rolling back code without restoring
the snapshot leaves the schema ahead of the binary and the app refusing to start.
──────── fix(video): play the actual video, and answer Range requests
Every video in the app was unplayable. Two independent defects, either one
sufficient on its own, and nothing in the suite covered either — no test
anywhere played media or asserted a `<video>` src.
1. The lightbox handed `<video>` a JPEG.
`pickMediaUrl` is mime-agnostic, and compression only ever produces a THUMBNAIL
for a video (one `ffmpeg -vframes 1` frame) — no preview, no display. So in the
DEFAULT saver mode the element's src resolved to `/api/v1/upload/{id}/thumbnail`,
served as `image/jpeg` with `nosniff` so the browser can't even sniff its way
out. Chromium reports DEMUXER_ERROR_COULD_NOT_OPEN.
Fixed in the lightbox rather than in `pickMediaUrl`: FeedListCard shares that
helper and legitimately wants the thumbnail for its `<img>` poster, so a central
mime branch would break the feed. This mirrors the rule the diashow already
applies ("videos play the original file directly"). Added `preload="none"` so
saver-mode guests on cellular still fetch nothing until they press play — there
is no smaller video derivative to offer them — plus `playsinline`, without which
iOS hijacks playback into fullscreen.
2. `stream_media_file` ignored Range entirely.
It took no request headers, so it could not see `Range`; it always returned 200
with the whole body and never sent Accept-Ranges or Content-Range. iOS Safari
opens every `<video>` with a `Range: bytes=0-1` probe and abandons the load
without a 206 — so video failed on the app's primary platform even in `original`
mode, where the src was already correct.
Adds single-range support (`bytes=N-`, `bytes=N-M`, `bytes=-S`) with 206 +
Content-Range, 416 + `bytes */len` past EOF, and Accept-Ranges advertised on
every response. Anything it won't handle — multi-range, non-bytes units, garbage
— falls back to a full 200, which RFC 9110 explicitly permits and which is safer
than guessing. All four media routes share the helper, so seeking works
uniformly.
`get_original` now serves `inline` instead of `attachment`. An attachment
disposition is hostile to a `<video>` element, and this route is the only source
of playable video bytes; it also matches what the UI promises, since the action
is labelled "Original anzeigen" — view, not download. `no-store` is deliberately
kept so a takedown still revokes access promptly; ranges work fine under it, the
client just re-fetches.
Tests: 11 unit tests pin the parser (the iOS `bytes=0-1` probe, inclusive ends,
suffix ranges, clamping past EOF, 416 vs 200, malformed fallbacks). A new
03-feed/video-playback spec asserts the src is the original and not the
thumbnail, that the browser accepts the bytes as media (readyState > 0, no
MediaError), that no video bytes are delivered before play, and that Range
returns the correct 206 slices and a 416 past EOF — verified on both Chromium
and WebKit.
The "not downloaded before play" test asserts no *delivered body* rather than no
request: WebKit opens a connection for a preload="none" video and immediately
aborts it (GET, no Range, status 0, nothing transferred) while Chromium issues
nothing at all. The portable guarantee is that no response carrying bytes
completes.
──────── fix(auth): bind the role store to the identity, not to the tab
The role store I added in the moderation work is a module-level singleton seeded
ONCE at import. `goto()` is a client-side navigation, so leaving and re-joining in
the same tab re-imports no module and re-runs no onMount — the previous user's
role simply stayed resident. Nothing reset it: not join, recover, admin login,
"Event verlassen", `clearAuth`, nor the api.ts 401 auto-clear.
So a host who left, followed by a guest joining on the same phone, left that guest
with `isStaff === true` and a "🚫 Beitrag entfernen" action on other people's
photos. The backend 403s the delete, so this was a false affordance rather than a
privilege escalation — but `/feed` never fetched `/me/context`, so unlike every
other route it never self-corrected either. It survived until a hard reload.
The mirror case was equally broken and easier to overlook: a guest who recovered
into a host account got NO host affordances.
`clearAuth` already had a hook registry for exactly this shape of problem, with a
comment explaining it exists to avoid circular imports. Add the missing mirror,
`onSetAuth`, fired by both `setAuth` and `setAdminAuth` after the new token is
resident, and have the role store register on both sides: clear to null on
logout, re-seed from the new token on login. That also gives
`syncRoleFromToken` — dead code with zero callers since I introduced it — its
intended purpose.
Seeding from the claim fixes the reported bug, but the claim is frozen for the
token's 30-day life, so a promotion or demotion still wouldn't reach the feed.
`/feed` now calls the existing `refreshEventState()` on mount, which fetches
`/me/context` and applies both the authoritative role and the lock/release state
in one request. The feed is the one route gating a destructive action on the role,
so it should not be the only route running on a stale claim.
Tests: 04-host/role-identity-reset drives the real flows. The first asserts the
host DOES see the action before asserting the newcomer does not — a negative
assertion alone would pass against a build that shipped no moderation at all. The
second covers the mirror, promoting a guest server-side while their resident token
still claims `role: guest`, so a fix that only cleared the role would fail it.
──────── fix(compression): reclaim failed originals instead of leaking them
Round 1 stopped the compression worker deleting an upload's original on failure —
a transient ENOSPC or a codec panic must never destroy the only copy of a photo a
guest cannot retake. But it left `Upload::soft_delete`'s quota refund in place, so
the bytes stayed on disk while the uploader was charged nothing for them.
That is worse than it first looks. The row is soft-deleted, so the file is
invisible and unowned; a guest hitting a reproducible codec failure can accumulate
orphans indefinitely at zero personal cost. And `active_uploaders` counts only
users with non-deleted uploads, so dropping out of that count RAISES everyone's
per-user ceiling — the leak loosens the very quota meant to contain it.
Keep the refund: the uploader didn't cause the failure and shouldn't silently lose
quota to it. Bound the leak instead, with an hourly sweep alongside the existing
session cleanup in `spawn_periodic_tasks`, reclaiming failed originals older than
14 days — comfortably longer than any single event, so an operator investigating a
failed upload still has the file.
The selection predicate is the entire safety argument, so it is deliberately
narrow: `compression_status = 'failed'` AND soft-deleted AND past the window AND
`original_path <> ''`. That is exactly the state the give-up path leaves behind,
and it cannot reach a live upload, an owner-deleted one, or a failure still inside
its recovery window. `original_path` is cleared after a successful reclaim, which
makes the sweep idempotent — otherwise a row whose file is already gone is
re-selected on every tick forever. The row itself is kept as the audit trail.
Tests reproduce the selection verbatim (same pattern as upload_concurrency) and
assert it against five near-misses that must survive, both sides of the retention
boundary, and the idempotence property.
Also fixes two comments in export.rs still claiming "the compression worker
hard-deletes an original when its transcode fails" — no longer true, and the
defensive handling they justify is now justified by this sweep and by ordinary
deletes instead.
──────── fix(export): apply EXIF orientation in the keepsake too
Round 1 fixed EXIF orientation in the compression worker, which corrected the live
app — feed preview and diashow display. The export worker was missed, and it does
not reuse those derivatives: it re-decodes the originals itself with `image::open`,
which ignores the orientation tag, then re-encodes to JPEG, which drops the tag —
so the viewer has no way to recover it.
The damage was oddly shaped, which is exactly why it reads as a viewer bug:
Gallery.zip originals correct (byte-copied, EXIF intact)
Memories viewer grid thumbnails SIDEWAYS (always)
Memories viewer full image >5 MB SIDEWAYS (re-encoded at 2000px)
Memories viewer full image ≤5 MB correct (streamed byte-for-byte)
So in the keepsake people actually keep, every portrait photo in the grid was on
its side, and clicking through silently "fixed" small photos but not large ones.
Rather than paste the decoder dance a third time, extract `services::imaging::
decode_oriented` and route both workers through it, so there is exactly one way to
turn a file on disk into a DynamicImage. It carries a second invariant that had
also drifted: `image::open` applies NO decode limits, so the export path was
decoding arbitrary user-supplied images unbounded — the decompression-bomb cap
existed only in the compression worker. Both now come as a pair, which is the
point of having one function.
Not done: switching export to consume the existing `display` derivative. It would
fix orientation and drop a redundant full-resolution decode per photo, but it
would also replace the pristine ≤5 MB originals in the keepsake with 2048px
re-encodes — a real quality regression in the one artefact people keep forever.
Test uploads the round-1 fixture (40x20 landscape tagged Orientation=6), runs a
real export, pulls the thumbnail out of Memories.zip and asserts it came back
portrait — with a sanity check that the source really is stored landscape, so the
test can't pass against a pipeline that does nothing.
──────── fix(recover): cap name cycling, and stop bcrypt blocking the runtime
Round 1 gave /join a per-IP ceiling and left /recover with only its
`recover:{ip}:{name}` bucket. That key is right for the job it was written for —
stopping someone who knows a display name (they're listed on the feed) from
burning the victim's 3-strike PIN counter and locking them out on repeat. But the
name is ATTACKER-CHOSEN, so cycling names mints a fresh 5-attempt bucket every
time and the per-IP cost is unbounded.
What sits behind that limiter makes it worse than a normal flood: every call runs
a cost-12 bcrypt verify, including an UNCONDITIONAL throwaway verify for names
that don't exist — added deliberately to close a timing oracle. So an unknown name
is the single cheapest way to make the server do ~200ms of hashing.
Adds `recover_ip_rate_per_min` (default 30, migration 019), checked BEFORE the
per-name bucket so a name generator can't walk past it. 30/min is far above any
real recovery attempt while capping a flood. The per-name bucket is untouched and
remains the anti-guessing control.
The second half matters as much as the first: bcrypt was running inline on the
async runtime everywhere. At cost 12 that pins a tokio worker thread for ~200ms,
and there is only one per core — so a login flood stalled every other request on
the box, including the feed. There was no spawn_blocking anywhere in the auth
module, despite SECURITY-BACKLOG claiming bcrypt had been offloaded.
Route all of it through `verify_password` / `hash_password` on the blocking pool.
That covers /recover, /admin/login, the host PIN reset, and — the one most likely
to bite at a real event — the PIN hash minted on every single /join. Saturating
the blocking pool degrades logins; saturating the worker threads degrades
everything.
Tests: cycling distinct names from one IP now hits the ceiling with a Retry-After,
and — the assertion that keeps the fix honest — repeated wrong PINs against ONE
name are still throttled with the ceiling set generously high, so the ceiling
added protection rather than replacing it.
──────── ci(e2e): run WebKit, so the iOS guarantees actually gate a PR
The workflow installed only Chromium and ran chromium-desktop + chromium-mobile.
iOS Safari is the app's stated primary user — a wedding guest opening a QR link —
and WebKit is the only engine in the matrix that reproduces two of its behaviours:
- it enforces X-Frame-Options on the hidden download iframe, so a site-wide DENY
makes the keepsake download silently do nothing. Blink hands attachments to
the download manager before the frame check and never notices.
- it abandons a <video> load unless its Range probe gets a 206.
Both of those shipped. Adding 06-export to the webkit project in the round-1 fix
bought nothing on a PR, because CI never ran that project at all — the regression
test written specifically to catch the blocker only ever executed locally.
Runs 71 tests (67 pass, 4 skip on the documented IndexedDB-blob harness
limitation) in ~1.5 minutes locally, using the exact command added here.
──────── chore(backend): satisfy cargo fmt
`checks.yml` runs `cargo fmt --check`, and it has been failing since the round-1
audit fixes: I gated those on `cargo build` and `cargo clippy` but never ran fmt,
so three files drifted then and eight more this round. Pure formatting — no
behaviour change; clippy stays at zero and all 70 backend tests still pass.
Worth noting for next time: clippy passing is not evidence fmt does.
──────── chore: satisfy prettier in frontend and e2e
`checks.yml` runs `npm run format:check` for both projects and both were failing.
- frontend/src/lib/ui-store.ts is mine, unformatted since the round-1 upload-queue
badge fix — the same miss as the rustfmt one: I gated on svelte-check and eslint
but never on format:check.
- e2e/loadtest/* and e2e/shots.mjs have been unformatted since
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