a67402961d7ed08592253ed319f4ac17d50544a6
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ebb7d3cf5c |
Score a suggestion against the people the user has named
The number beside a suggestion was the mean calibrated probability between the face and the rest of its group, which measures the wrong thing twice. It punishes coverage: a person with two hundred faces over fifteen years is *meant* to have members a given photograph is orthogonal to, so a correct suggestion onto a well-photographed person scored low for being well photographed. And it never asked who else the face might be — a face matching Anna at 0.95 and nobody else, and one matching Anna at 0.95 and her sister at 0.93, came out identical, when the second is the only one worth the user's attention. dr_face::assign answers both, and multiplies them: the mean of the best ten calibrated matches into the identity (the old mean, capped, which is what stops coverage counting against it), times that identity's share of the evidence against every *named* rival. Only named people compete, and per person rather than per group. Both halves of that had to be measured on a real 18,000-face library rather than reasoned about. Normalising across every group made the number useless — median suggestion 21%, four in five under half — because clustering leaves one person spread over many groups, so a face competed against itself; and keying rivals by group left Catherine competing with Catherine, median 39%. Per named person: median 99.5%. Rivals are gathered below the merge threshold, down to even odds: a named person matching at 0.6 will never be merged into but is exactly the competition to discount for. That would be a second similarity scan, the expensive half of regrouping a library, so cluster_scored scans once at the looser floor and hands the merge engine the subset at or above the threshold — pair for pair what it would have scanned for itself, held to that by a test. Leave-one-out over that library's 2,702 confirmations across 54 named people: 99.33% of faces placed on the right person against the old mean's 99.15%, and the number shown for the right person moves from a median of 90.4% to 99.3%. It errs low — 100% correct wherever it states 80% or more — which is the safe direction, and docs/faces.md §9.1 says plainly that the low bands are not calibrated. The example that measures it comes too: this is a claim about a library's numbers, and nobody should have to take it on faith. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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c8e05831f4 |
Show the confidence, and say which curve it came from
FR-CULL-9 was read as "no fit, no number", so every library without 200 confirmed positive pairs showed "Confidence unavailable" on every suggestion — which is every library, until enough confirmations exist to fit one. The confirmations are made on this screen, ranked by the number it was withholding, so the degraded state was also the permanent one. There has always been a curve: Calibration::default is the reference implementation's fitted MBF sigmoid, which is what clustering already operates at. It is a published operating point, not an invention, and what the requirement forbids is presenting it *as though it were measured on this library*. So the percentage is shown, and the screen says once, above the grid, where the curve came from. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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2fb3eb5d2d |
Upload a shard that was sealed after the server saw it
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The tablet showed 442 of a person's 648 faces and could never catch up. Its shard ledger said why: it had adopted the laptop's shard 0 at 2,711,552 bytes, and that shard is 20,402,176 bytes on disk. The upload skipped it. A sealed shard the server already had under that name was taken to be "byte-identical by construction", so its mere presence was proof enough and the size was never consulted. That premise is false, and this library is the counter-example: an *open* shard is uploaded on every pass as it fills — that is how a growing shard reaches the other devices — so the server ordinarily holds a partial copy of a shard that is later completed and sealed. Sealing then froze that partial copy in place for ever. Nothing downstream could recover from it. The tablet's `has_adopted` check is keyed on name *and* size and would have re-downloaded a changed shard gladly; it was never offered one, because the sending side had stopped looking. So the comparison is on size, sealed or not. The client id is in the name, so nobody else can have written the file and size is a sound test. A sealed shard whose size already matches is still skipped on the first comparison, which is all the original cheapness was worth. The thumbnail upload had the identical test and the identical hole, and is fixed with it. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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d70fe9da8d |
Decide whether to send a shard before reading it
The upload read every shard off disk and only then asked whether it needed sending. For a library with 94 MB of face shards already on the server, every idle sync read 94 MB to conclude it had nothing to do. The question does not need the bytes. A sealed shard the server already has is byte-identical by construction, and the client id is in the name, so nobody else could have written it — the name settles it. The open shard is compared on size, which `stat` answers. The progress line moves after the skip for the same reason: announced before it, an idle pass claimed to be sending five shards and sent none. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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a1e8f494b9 |
Say what the face sync is doing while it does it
The face pass set the status to "checking faces…" once and then said nothing until it was finished. On a library whose first export after a re-index is 9,849 photographs and 85 MB of shards, that is eight minutes of a progress bar sitting still — which is indistinguishable from a hang, and was reported as one twice. Nothing was wrong with the sync. The only fault was that it was silent. Three places now report, which are the three that take real time: - **Preparing**, per image with a count, since this is the long one and the only one whose length the user cannot guess from anything on screen. - **Sending**, per shard with its size, because a face shard carries crops and runs to tens of megabytes — one of them is a visible wait on any connection. Announced before the upload rather than after, since the wait *is* the upload. - **Taking in** a peer's shard, which is a download and then a row-by-row merge. The export reports every 25 images rather than every one, so the channel behind it stays lost in the write it accompanies. `export_to_shards` keeps its old signature and delegates, so the callers that do not want progress do not grow a parameter for it. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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41daa4cca7 |
Keep a group set aside actually set aside
"Not interested" hid a group, and the next Regroup brought it straight back. Reclustering anchors the faces the user has ruled on so a pass cannot move them. It took *confirmations* as the only kind of ruling — but setting a group aside is a ruling too, and the faces it covers are only ever suggestions. So an ignored group's faces entered clustering loose, regrouped into a fresh person that carried no ignore flag, and reappeared in the rail. The original group was left behind holding nothing, hidden and empty. Anchoring them on `ignored` as well as on `confirmed` fixes it, and does one better: a face indexed later that matches a group which was set aside now merges *into* it, so a stranger photographed again stays set aside instead of arriving as somebody new. That is the case that would otherwise have made the feature feel like it only half worked. Three tests, and the first fails without the change — it reports the group coming back with its two faces while the original sits ignored and empty. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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c81d6865a7 |
Stop the name field running through the buttons under it
The Identity header was two rows pinned to 32px and 36px. Neither number was big enough for what the row held: a `Field` is `Theme.touch-target` — 44px — and a `Button` is `Theme.control-height`. Slint honours a child's own height and lets it overflow the box the layout gave it, so the name field drew 44px from the top of a 32px row while the button strip began at 38px. The overlap was 6px of text box sitting on top of "Confirm all". Neither row states a height any more. The first takes the height of what is in it, and the strip takes the height of a control — read from the theme rather than from the row inside it, since `actions` sizes itself from the Flickable's viewport and measuring it back would be a binding loop. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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1d4c3348af |
Let a 32-pixel face count, and move the blur floor with it
64 source pixels was too strict: it threw away 70% of everything the detector
finds, and plenty of what it took were faces a person could name.
Lowering it is not a one-line change, because the two floors are coupled. A face
under 112 pixels is *upsampled* to reach the embedder and upsampling invents no
edges, so a small face scores low on sharpness however crisp the original was.
Re-measured over the reference library with `face_index --quality`:
min crop min sharp size cut blur cut kept
32 0.000 44% 0% 56%
32 0.002 44% 3% 53%
32 0.005 44% 8% 48%
32 0.010 44% 16% 40%
32 0.020 44% 27% 30%
64 0.020 70% 7% 23%
Holding the blur floor at 0.020 while dropping the size floor to 32 would have
rejected a further 27% — for being small rather than for being blurred — and
kept only 30%, barely more than the 23% the strict pair kept. Most of the point
of lowering the size floor would have gone straight back out through the other
gate.
0.005 removes 8% of what the size floor leaves, which is the same job 0.020 was
doing at 64 (7%): the large-but-soft face this gate exists for. Together they
now keep 48% of what the detector finds, against 23% before.
The box pre-filter follows down to 24, staying below what the real floor accepts
so it cannot reject a face that would have cleared 32.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
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c7cdf7e5f0 |
Merge: face quality gates, and identity filters that combine
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Two things the People screen was missing. Faces were being indexed at any size and any sharpness — 40 pixels on the box and no blur gate at all — so most of what the library held was background strangers and motion-blurred passers-by, and the blurred ones were quietly bridging unrelated clusters. Both floors are now measured on the real library with `face_index --quality` rather than guessed: 64 source pixels across the aligned crop, and a contrast-invariant sharpness of 0.020. And the grid could only ever be narrowed to one person, which cannot express "the pictures the two of them are in together". The filter now holds a set with a union/intersection mode, built a person at a time from the Identity screen and taken apart chip by chip on the filter bar. fmt, clippy -D warnings and the full workspace suite pass on the merge. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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af5a13b3f7 |
Narrow the grid to several people at once, either way
"Show photos" could only ever mean one person. The two questions a photographer actually asks are "every picture of Anna or Bob" and "the pictures they are both in", and the second is not reachable by any sequence of single-person filters — no amount of switching between one person and another finds the frame they share. So the filter holds a *set* of people and a mode. `RatingFilter` was already the right home, as its own doc says: every query path threads it, so the count in the header and the cells in the grid are narrowed by the same thing, and this composes with stars, flags and the date range for free. The union is `EXISTS ... person_id IN (...)`. The intersection counts **distinct** people per image and compares against the size of the selection — one subquery rather than one per person, and it does not grow the statement with the selection. `DISTINCT` is what makes it correct: three faces of Anna in one frame must not satisfy a filter asking for Anna and Bob, and there is a test that says so. Any rather than All is the default. With one person the modes are the same filter, and adding a second to a union can only ever show more — so a user who has not noticed the toggle never ends up staring at an empty grid wondering what they broke. The toggle only appears at two people, because a control that demonstrably does nothing is a control that teaches the user to ignore it. Building the set needs no picker of its own: the Identity screen gains "And also…" beside "Show photos", offered only once the grid is already narrowed to somebody. Each person is a chip on the filter bar and each chip removes just that person, so a selection of three can be taken apart one at a time rather than only cleared wholesale. `RatingFilter` stops being `Copy`, since it now holds a `Vec`. Every query path already took it by reference; the casualties were two struct updates and one `Cell` that becomes a `RefCell`. 484 dr-ui tests pass, including the union, the intersection, that one person reads the same in both modes, and the repeated-faces trap. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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a1790c3e67 |
Stop indexing faces too small or too blurred to be anyone
The library was storing faces at 52 source pixels and embedding whatever came
back. There was a size floor, but it was 40 pixels on the *bounding box*, and
there was no blur gate at all — so a subject walking through a half-second
exposure detected confidently, aligned cleanly, and produced a perfectly
ordinary-looking 512-vector. Nothing downstream can tell that apart from a real
face, and because blurs resemble each other more than they resemble the people
they were, they cluster together and weld unrelated identities into one group.
Two floors, both measured rather than guessed. `face_index --quality` runs the
detector over real proxies with both gates disabled and prints the distribution;
over 1,503 faces in 600 images of the reference library:
percentile crop px sharpness
1% 16 0.0006
25% 23 0.0025
50% 38 0.0071
75% 76 0.0284
99% 352 0.4282
The median face in a personal library is 38 pixels. Most of what the detector
finds is background: people across a square, a face on a poster, a stranger at
the next table. They are real detections and useless identifications.
**Size, on the crop rather than the box.** "At least 64x64" has to mean the
pixels the *embedder* sees, and the box is not that — the ArcFace template
reaches past it for forehead and chin, so the aligned crop spans roughly 1.3x
the box's shorter edge. The floor is therefore `min_source_px` on the aligned
crop, applied after the warp fixes the scale, and `min_face_px` drops to 48 as
what it always really was: a cheap pre-filter set low enough that it cannot
reject a face the real floor would have kept.
**Sharpness.** Variance of the Laplacian divided by the variance of the luma it
was taken over. The division is the part that matters: raw Laplacian variance
scales with contrast, so a threshold on it would quietly discard every backlit
portrait in the library. The ratio asks how much of the crop's variation is
edges rather than broad gradients, and is invariant to exposure.
What each pair removes, cumulatively, of everything the detector finds:
min crop min sharp size cut blur cut kept
64 0.000 70% 0% 30%
64 0.010 70% 3% 27%
64 0.020 70% 7% 23%
80 0.010 76% 2% 21%
64 and 0.020. The size floor does most of the work, and the blur floor removing
only 7% on top of it is the point rather than a disappointment: at 64 pixels
most faces are already sharp, and what it takes out is the large-but-soft one —
precisely the face that would otherwise contribute a confident, wrong embedding.
The two gates are not independent and the doc comments say so: a face under 112
pixels was upsampled to reach the embedder, and upsampling invents no edges, so
small faces score low on sharpness even when the original was crisp. That is why
`--quality` prints them together.
**This will re-index.** Around 70% of what the current settings store falls below
the new floors — faces between 20 and 40 pixels that nobody could identify. The
People screen gets shorter and every group in it gets better.
66 dr-face tests pass, including that a blurred crop scores below a sharp one,
that halving the contrast does not move the score, and that an upsampled face
scores below the same face at full size.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
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329c388d30 |
Merge: each canvas overlay goes home to its own domain
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Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> # Conflicts: # docs/traceability.md |
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4fa914cbb1 |
Send each canvas overlay home to its own domain
The crop rectangle, the gradient handles and the repair discs were 480 lines inside `canvas-area` in app.slint, while the panels that drive them already lived in adjust.slint, masks.slint and spots.slint. spots.slint even opens by describing "what is drawn over the photograph, and what a finger can take hold of" -- which was not in it. They stayed behind because all three are positioned against `shown-*`, the fitted image rect the develop view derives because Slint does not report it. That is now the interface rather than the obstacle: each overlay is *given* that rect as its own bounds, so every position inside is a plain fraction of `root.width`, and none of them reaches out to `canvas-area` for an origin any more. GradientHandles joins MaskPanel in masks.slint and SpotHandles joins SpotPanel in spots.slint, each file now holding one domain's panel and its canvas overlay together, matching masks_ui.rs and spots_ui.rs. CropOverlay gets crop.slint of its own rather than growing adjust.slint. Arithmetic is unchanged: the old fraction-x subtracted shown-x from a coordinate measured relative to canvas-area, and the new one measures from an origin that already is shown-x. The handles stay unconditional rather than gaining an emptiness guard, so the repeater identity that spots_ui::sync_handles warns about is untouched. app.slint: 2834 -> 2490 lines. Verified by running the desktop app on a photograph, with the crop overlay's guard temporarily forced open so all three instantiate -- no binding loop, no panic. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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ffc9e1aea7 |
Give the develop view's chrome a file of its own
StatusBar and InfoPanel sat above AppWindow in app.slint, which read as though they were part of the application shell. They are not: neither is instantiated anywhere but the develop view, and the shell's actual job -- choosing which of the five screens is up -- is easier to follow without two unrelated components standing in front of it. Moved verbatim to develop.slint, matching src/develop.rs. No behaviour change; app.slint loses 232 lines and gains one import. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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cafa63ca6f |
Let the develop column ask how wide it needs to be
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The column was 280px, a number chosen for a tablet, with 380px bolted on later for a desktop. Both were guesses at how much room the widest row inside needs, and a guess is what cannot work here: the mode strip is one chip per attribute the *operation set declares*, so the row is generated and no constant in app.slint can track it. When the guess came up short the failure was not a tidy clip. The Flickable inside the column never had its `viewport-width` set, so the viewport took its content's preferred width, and a viewport wider than its Flickable is *centred* in it — the same rule the note on the seam's `x: 0` already records a few lines below. So the column lost half of each edge rather than one of them: "HISTOGRAM" read "ISTOGRAM", "Straighten" read "aighten", Copy sat centred while Paste ran off the far side. It looked like a rendering fault and it was an alignment one. So the column asks instead of guessing. Every panel that can appear in it — image, histogram, geometry, settings transfer, masks, repairs, adjust, history — now publishes a `content-width`: how wide it has to be before it starts clipping itself, read off its own layout rather than asserted. Each declares that as its `min-width` too, and that is what makes the aggregation automatic: `column` is a layout, so it already reports the largest minimum among its children, and it does so for the panels that come and go with the mode as well, which live inside `if`s and cannot be named from outside. Grep `content-width` in ui/dr-ui/ui to see every panel with a say in the answer. The mode strip is named explicitly only because it is pinned outside that layout, so nothing else measures it. There is no floor left. A floor is one more guess and the panels state their own minimums now. The only thing still above the measurement is `panel-max-width`, which is not a size but a policy — a column may not take the window from the photograph it exists to serve — and it comes from Rust beside `layout-class` because a width read from `root.width` inside the layout that `root.width` depends on is a binding loop. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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d6380fecc8 |
Make the People screen a place work can be done
Five faults, all on one screen, and the Slint and Rust halves of each have to land together. **Regroup froze the window.** It ran inside the Slint callback, on the UI thread. It is much faster now, but fast is not bounded — the work grows with the library, and the one thing that must not grow with the library is how long the window stops answering. It runs on a worker thread with an mpsc channel and a 250ms poll, like every other long pass in this module, and the button says what it is doing instead of the window going quiet. Cancellation is dropping the receiver. Reclustering also prunes the empty groups the previous pass left, so pressing the button twice no longer fills the rail with "Unnamed (0 faces)". **The faces were a single row running off the screen.** The comment on the layout claimed to be a wrapping row; Slint has no flow layout and a HorizontalLayout does not wrap, so a person with forty faces was a person whose faces could not be reviewed past the fifth. It is now laid out the way the library grid lays out thumbnails, with the same arithmetic: choose how many columns of roughly the requested size fit, then divide the width between them so the cells fill the row exactly and nothing overhangs. **The header did not fit a phone.** A 240px name field beside five buttons is wider than an Android screen — and worse than not fitting, a layout cannot be narrower than its children's minimums, so the row reported that oversized minimum upwards and inflated the whole screen. The faces grid is its sibling, so it would have been measured against a width that was never on the display. The header is now two rows, the actions sit in a Flickable that scrolls rather than overflowing, and the rail narrows to 132px on the compact class. **Strangers crowded out the people who matter.** Most clusters in a real library are passers-by and other people's guests. "Not interested" sets a group aside; the rail hides it and says how many are hidden, with one button to bring them back. Reversible, and never a deletion — see the catalog commit for why. **A face was a dead end.** Identifying someone and then having no way to see their photographs is a filing cabinet with no drawer handles. "Show photos" narrows the library grid to that person and leaves a chip on the filter bar saying so, which is also how it is cleared. It is a term on `RatingFilter` rather than a grid scope of its own, exactly as that struct's own doc says new narrowing terms should be — so the count and the cells are narrowed by the same thing, and it composes with the others for free. Suggested faces count, not only confirmed ones, or a freshly grouped person would show an empty grid. Crops are read from where they are now stored, falling back to cutting one out of the proxy for faces indexed before that existed. 480 tests pass. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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7275c020d7 |
Group people at the threshold the library actually supports
0.90 left a third of the reference library ungrouped: 1,213 of 1,813 faces in a
group, and the rest sitting alone in a screen that had nothing to offer for
them.
"Is 0.90 too tight" is not answerable from the number. It is a probability, and
which cosine it lands on depends on the calibration — so the first half of this
is a way to ask the question properly. `face_index --tune` runs the real
clusterer over the real embeddings at ten thresholds and prints what each one
produces. It writes nothing; comparing thresholds by applying them would have
each one pollute the next.
On the reference library:
P cosine groups grouped largest
0.95 0.449 311 62% 51
0.90 0.403 316 67% 51
0.85 0.374 318 70% 57
0.80 0.353 328 74% 69
0.75 0.335 327 77% 69
0.70 0.319 326 79% 81
0.50 0.267 303 85% 90
The count of *groups* is the signal, not the count of grouped faces. Loosening
from 0.95 makes it climb: real people are being assembled out of fragments. It
peaks at 0.80 and then falls — and a falling group count while the grouped faces
keep rising is the shape of over-merging, separate identities being welded
together. That is the FR-CULL-10 failure, and the one the user cannot undo by
hand.
So 0.80: the loosest setting still building people rather than melting them
together. A third more of the library gets grouped than at 0.90, and the largest
group grows by eighteen faces rather than by forty.
The table is one library, and the doc comment says so — `--tune` reruns it on
any other.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
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7dfbe3184a |
Merge master into the face branch
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Master moved 24 commits while this branch was building the face sweep, and one of them changed how the interface reaches a server: `remote.rs` is now the only file that names a connector, and everything else takes `&dyn RemoteBackend`. The face sweep was written before that landed and built a `NextcloudBackend` directly. Git merged the text without complaint and the result did not compile, which is the useful kind of conflict — it goes through `remote::connect` now, like every other pass. Two documentation conflicts, both resolved toward master. `code-health.md` was an add/add: master's copy carries the CH resolution for the backend seam and a better provenance note, so it wins outright, with its measured figures re-taken against the merged tree rather than either side's — `run()` is 1,855 lines now, 2,042 tests, 793 traceability tags. `traceability.md` is generated, so it was regenerated rather than hand-merged. The seam grades in code-health.md are unchanged by this merge. That is worth noticing rather than glossing: the face work went into the seams that already existed — `run()`, `library.rs`, `AppWindow` — which is exactly the pressure CH-1 describes rather than evidence against it. All four CI jobs pass: desktop (fmt, clippy, test, build), layering, traceability, and the Android cross-build. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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28c046130c | Merge branch 'master' into android-bundled-face-models | ||
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7b4263ceb9 |
Bring master's display and parity work under the new checks
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Master moved sixteen commits while these fixes were being written — per-display colour, the frame-budget measurement that decides FR-DSP-2, and a declared node running without being compiled. Merged here rather than on master so the conflicts are resolved where they can be tested. Two files overlapped and neither was interesting. `lib.rs` gained `mod remote` from this branch and `mod display_ui` from master, which git resolved on its own. `docs/traceability.md` is generated, so it was regenerated from the merged tree rather than hand-resolved — hand-editing a generated matrix produces one that agrees with neither side. Coverage reads 59.9% (106/177), up from 55.4%, entirely from master's tagging. The check worth having run is `the_interface_names_no_operation` against master's new `display_ui.rs` and its 195 changed lines of `develop.rs`: a new UI module written without knowledge of this gate passes it. That is the evidence the gate is not merely satisfiable by the code that shipped with it. fmt clean, clippy clean at -D warnings, 2087 tests pass. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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371038614f |
Fetch the repairs first, or they never happen
The repair added in |
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242374fd0f |
Let the interface hold a backend without knowing whose it is
`dr-sync` defines `RemoteBackend` and a capability model the engine adapts to, so a second backend can be added without touching the code that uses one. That boundary was documentation. Seven files in `dr-ui` constructed a `NextcloudBackend` directly, ten functions took one by concrete type, and exactly two call sites in the tree — both inside `dr-sync` itself — ever held the trait object. A WebDAV or local-folder backend would have had a well-written trait to implement and nowhere to go afterwards. The change is smaller than the finding suggests, because the trait was already right. Every method the UI has ever called on a backend — `get`, `put`, `list`, `delete`, `create_dir`, `move_to` — was already on it, so nothing had to be added and no behaviour moved. Ten signatures widened to `&dyn RemoteBackend`, sixteen constructions became `remote::connect`, and `remote.rs` is now the only file in the interface that names a connector. `connect` returns `Result<Box<dyn RemoteBackend>, RemoteError>`. The error type is `dr-sync`'s rather than the connector's, which is why every call site kept its shape — the `match`, the `let Ok(..) else`, and `.map_err(ScanFailure::local)?` all still read as they did. One wrinkle worth recording: `&Box<dyn Trait>` does not reach `&dyn Trait` on its own. The compiler reaches for unsizing, which wants `Box<dyn RemoteBackend>: RemoteBackend`, and reports a confusing missing impl rather than suggesting a deref. Twelve call sites therefore say `&*backend`, and two say `let backend: &dyn RemoteBackend = &*backend` where a borrow is shared across lanes. What this does *not* do is abstract credentials. `AppCredentials` is an app password from Login Flow v2 — a Nextcloud protocol, not a general notion of authenticating to a remote — and seven files still name it. An OAuth token, a bucket key pair and an app password have no useful common shape, so deciding what an account is across backends before a second one exists would be a confident guess. code-health.md CH-2 now records that as the remaining half, and it should wait for the backend that forces it. Verified: fmt clean, clippy clean at -D warnings, 2041 tests pass. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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051447bda6 |
Keep the proxy a found face will be cropped from
Every cell on the People screen read "no preview" while the sweep was happily reporting 893 faces found. Both were true. Faces were being detected and stored correctly; there was simply nothing left to draw them from. A face is stored normalised and drawn by cropping the proxy it was found on — `identity::decode_proxy` reads `FACE_TIER` out of the thumbnail store. The fetching sweep fetched a preview, detected on it, wrote the faces and dropped the pixels. So every face it found pointed at a proxy that had never been stored, and the grid had nothing to cut. Worse, that state could not repair itself: the image has its `face_index` row, so it is not outstanding work and no later pass would look at it again. Two fixes, and the first is nearly free. The sweep now keeps the proxy — it has already paid the round trip and the decode, and the crop needs those same pixels the moment the user opens the person. Kept **only where a face was found**: two thirds of a personal library is landscapes and documents (docs/faces.md §7a), those will never be cropped, and skipping them keeps this well clear of the whole-library cost `SWEEP_THUMB_SIZE` deliberately avoids. The downscale to the large class happens after detection, which is the last use of the full buffer. Second, the sweep now picks up images that have faces with no proxy, whatever put them in that state — this bug, or an ordinary cache eviction, which would have produced exactly the same empty grid. Re-running detection repairs it and loses nothing: `record_detections` replaces rather than appends and carries the user's confirmations across the replacement. That makes the screen self-healing rather than dependent on nobody ever evicting a thumbnail. The proxy is stored *before* the detections. A kill between the two then leaves a proxy with no faces — which the next pass simply re-indexes — rather than faces with no proxy, which is the state that cannot recover. Note for the library already part way through a sweep: the 986 images indexed before this will be picked up by the repair route on the next run. 470 tests pass, including one that a face whose proxy is gone becomes work again. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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5e4c7424ed |
Fail the build when the interface names an operation
FR-DEV-3a is the property the declarative pipeline rests on: a node in `ops/` is one file because nothing in `ui/` has to learn about it. It was true — all fifteen ids grepped across `ui/` yield one hit, a localisation test — and it was held by discipline alone. That is the wrong mechanism for it. The failure is silent and cumulative: special-casing one operation to fix a layout problem is defensible on its own, and by the fifth the panel names half the chain and "a new operation is one file" has stopped being true without any single commit having broken it. Nothing would have told us. The ids are read from `ops/*.yaml` rather than listed, so a node added tomorrow is covered without anyone remembering this file — the same reason `traceability` parses its denominators from `requirements.md` at run time. Two decisions worth recording, because both are the difference between a test that holds and one that gets deleted: **Only string literals count.** `texture`, `contrast` and `clarity` are also ordinary graphics and English terms, and `texture` appears throughout `dr-ui` meaning a GPU texture. Matching bare words would fail constantly for reasons unrelated to the invariant. **`#[cfg(test)]` items are exempt, and finding them needs more care than it looks.** The first version cut each file at the first textual match of `#[cfg(test)]`, which in `develop.rs` is a *doc comment discussing the attribute* at line 969 — it read 18% of the most important file in the scan and passed. It now matches the attribute only as a whole line and skips the item by brace depth, and `MIN_SHIPPING_FRACTION` fails the test outright if the scan ever swallows the file again. The dangerous failure here is not a false alarm, which someone investigates; it is examining nothing and reporting success. Verified both ways: it passes on the tree, and an `"exposure"` planted at develop.rs:3635 — past two `#[cfg(test)]` attributes, exactly where the first version was blind — fails with the file, the line and the reason. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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fb1b44ce47 |
Merge branch 'worktree-agent-a1e5c8cb565255f5b' into master
# Conflicts: # docs/traceability.md |
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510d1a26cb |
Regenerate the traceability matrix
The platform layer was never scanned, so every FR-PLAT-* and NFR-PORT-* tag in dr-plat was invisible. Coverage 51.4% -> 57.6%, almost all of it pre-existing tags that were simply not being counted. |
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b858fc029a |
Record what per-display colour actually cost
The status table said FR-DSP-8 was absent and §5.2 assumed Slint reports window moves. It does not — there is no `on_moved` on any backend — so the position is sampled instead. §5.4 records the two trades that are worth someone finding later: a display profile is matched to the nearest of four spaces rather than applied through a CMM, and on Wayland the canvas follows the first output rather than the window, because a Wayland client is never told where its window is and the protocol's own answer needs a `wl_surface` that Slint does not expose. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> |
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0c3b8cb1c4 |
Hand out descriptors a declaration could produce
`Operation::descriptor()` returned `&'static OpDescriptor`, and that lifetime
is the whole reason a build-time node is free and a run-time node is
impossible: only a compile-time literal can satisfy it, so no amount of
reading `ops/*.yaml` at startup could ever produce a descriptor the rest of
the application would accept. FR-PLG-2 says a bundled operation and a
third-party plugin are the same kind of thing, differing only in where the
file was found — and a lifetime outsiders cannot meet is exactly the second,
weaker format that requirement forbids.
So a descriptor is now owned and handed out as `Arc<OpDescriptor>`, with `Vec`
where it held `&'static` slices. `Arc` rather than a `&self`-borrowed
reference because the callers want to *keep* it: the develop panel collects
descriptors and then mutates the graph, and a borrow would tie the
descriptor's lifetime to a borrow of the operation it came from, which is the
one thing `&'static` was doing right.
The identifier newtypes deliberately did not follow. `ParamId` is `Copy`, is
compared in `match` arms against generated constants, is a map key in the
sidecar and history, and reaches Slint model rows; an `Arc<str>` there would
cost a refcount on every one of those and would take `match id { EXPOSURE =>
.. }` away from the generated code. They gain an interner instead, which is
honest about its lifetime rather than pretending to one — the set of ids is
bounded by deduplication and is process-lifetime by construction, because the
sidecar on disk names its parameters and an id has to stay resolvable for as
long as any edit naming it can be opened.
No behaviour changes. Every descriptor that was a `static` is a `LazyLock`
initialiser now, `Operation::helpers` borrows from `self` instead of being
`'static` so a future run-time node can own its list, and `Warp` and `Framing`
follow `Operation` so there is one shape rather than two.
The one place a descriptor is read per frame is `compose_full`, which takes
`descriptor().id` to prefix each active operation's uniforms, and `dr-ui`
composes on every frame it draws. That is a dozen atomic increments beside a
composition that is already building several kilobytes of WGSL on the same
call; it is noted at the trait method rather than left for a profiler to find.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
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3e5840e413 |
Let a test hold the words the About page shows
FR-DSP-8 asks for a fallback that is *defined*, and a reason that reaches the code but never the screen satisfies half of it. The three readouts are now built by a free function over the survey rather than written straight into the window, so a test can assert that "sRGB assumed" arrives with the reason attached, that an approximated profile says "nearest to" rather than claiming the space, and that the second monitor is described on the page read from the first — which is the display the requirement is actually about. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> |
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c8c6368542 |
Index the whole library by fetching what it has not seen
"Index faces in the whole library" could not. Its work list was intersected
with the thumbnail store at `ThumbSize::Large`, and nothing fills that class for
a whole library — `SWEEP_THUMB_SIZE` is deliberately `Grid`, because the large
class is ~860 MB of shards against ~200 MB and every syncing device pays it. So
the only images with a large proxy were the ones the user had personally zoomed
into or opened in the loupe. On this library that was 220 of 23,529.
The comment defending it misread the requirement:
// Requesting one here would put face indexing on the network path,
// which FR-CULL-8 explicitly keeps it off.
FR-CULL-8 keeps indexing off the **full decode**, not the network, and then says
the opposite in the same paragraph: "where no proxy exists, the job requests one
at background priority rather than decoding inline". faces.md §7 repeats it.
Neither was implemented.
So the pass fetches. Same two-stage route the thumbnail sweep uses — the header,
then the located preview's own byte range (FR-NC-3) — so no whole file is pulled
and no RAW is decoded, because an embedded preview is a JPEG. The work list is
now every visible image with no `face_index` row for the model: 23,308 here,
against nearly none before.
**It indexes at the resolution the preview actually has**, not the 1024 the old
tier would have given. `locate_preview` already picks the largest embedded
preview, and the thumbnail sweep was decoding it and throwing the detail away at
`downscale_to(256)`. A face 2% across the frame is 5 px on a grid thumbnail and
~61 px at the cap here — and 112 is what the embedder samples, so this is the
difference between an upsampled crop and a real one. `crop_px` records which,
per face, as §7 intended.
Capped at 3072 rather than truly full: `index_proxy` needs packed `f32` RGB at
12 bytes a pixel, so a 24 MP frame is ~288 MB and the fetch lanes hold one each.
The constant is named and sits next to the reason.
Orientation is applied **before** detection, not after downscaling. That costs a
permutation of a larger buffer — ~15 ms against a ~150 ms decode — and buys the
entire class of bug this codebase keeps having: detection then runs on the
photograph rather than the sensor, so every box and landmark is already in the
space the catalog stores and the overlay draws, with no second mapping to get
backwards.
One detector and one embedder serve every lane. The lanes are concurrent futures
on a single thread, not threads, and inference contains no await, so a `RefCell`
borrow never overlaps another — a pair per lane would duplicate ~16 MB of
weights for no parallelism.
Images with no face in them are recorded too. `face_index` records that
detection *ran*, and zero is its most valuable value: without the row every
landscape and document scan returns on every pass, for ever, and in a personal
library that is most of it (§7a).
The old store-only pass survives as `spawn_store_face_sweep` for
`examples/face_index.rs`, which indexes a local store with no network. The
settings copy no longer claims indexing reads "the photographs already
thumbnailed above", and the audit line says "to fetch" rather than "awaiting a
proxy", which had become a blocker that no longer blocks.
Verified against the real catalog: the new work list returns 23,308 where the
old one returned effectively nothing. 469 tests pass.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
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131004393d |
Follow the canvas from one display to the next
The rest of FR-DSP-8. The develop session now carries the space its canvas is encoded into, and `render` composes for it instead of for sRGB — which is the whole of the change to the pixel path, because the output space was always a parameter of composition and always entered the structure hash. A display change is a recomposition. The space is set on the way into every render rather than pushed when the window moves, so a photograph opened while the window already sits on the second monitor is right on its first frame instead of flashing the wrong colour until the next poll. Which display that is comes from sampling the window's position and scale factor twice a second — Slint reports neither a move nor a display change — and re-surveying only when they differ. Settings shows what came back under ABOUT: the display, the space, why, and the other monitors, because the failure FR-DSP-8 names is one that is invisible from the display you are reading the page on. Fractional scaling: the canvas is now rendered at the physical pixel size of the box it occupies rather than the logical one, so the compositor presents it 1:1. At 1.25 it was previously handed 1600 samples to fill 2000 device pixels, and the softness that produces reads like a bad demosaic rather than like a scaling bug. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> |
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57c0cc0d35 |
Keep the name typed into a cluster when the next one is opened
Naming a cluster and moving straight to the next is the gesture this screen
exists for, and it discarded the name every time. Two causes, both in the same
four lines.
`Field.text` is two-way bound to its `TextInput`. Binding it to `selected-name`
therefore works exactly once: the first keystroke writes through the `<=>` and
**replaces** the declarative binding, after which the field follows nothing.
Switching clusters left the previous cluster's half-typed text on screen,
attached to the new person.
And `Field` only reported `accepted`, which is Enter. A name typed and then
abandoned by clicking the next face never reached Rust at all.
So `Field` gains an `edited` callback, the screen keeps the draft with the
person it was typed for, and the draft is written when the selection moves or
the screen closes. The field is then reset from a revision counter the screen
watches.
A counter rather than `changed selected-name`, because the name is not a key:
naming six clusters "Anna" in a row never changes `selected-name`, and the field
would keep the half-typed text from the cluster before. Nor `changed
selected-person`, since accepting a namesake merge lands the user back on a
person they may already have been on.
The draft carries its `PersonId`. A reload can move the selection out from under
a half-typed name — a merge arriving through a sync, a deletion — and applying
it to whoever is selected now would rename a stranger. If the person is gone
when the draft lands, it is dropped rather than resurrecting a row the rail no
longer shows.
`None` and `Some("")` are kept distinct. A user who cleared the field means to
clear the name; a user who never touched it means to leave it alone. Collapsing
those two erases names by walking past them.
An implicit commit does not raise the namesake merge offer. That question is
about a screen the user has already left, and answering it on their behalf while
they look at the next cluster is not a question at all — the offer stays on the
explicit submit.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
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2d95807542 |
Package the models on every platform, not just the phone
The Android bundling landed the weights under that platform's asset directory, which was the wrong home the moment a second packager wanted them. `makepkg -si` produced a desktop install with no model at all — the same "no face model is installed" the phone used to show, for the same reason: nothing put the files anywhere the app looks. So `models/face/` at the root is the one copy, and both packagers read it: assemble-apk.sh bundles it as APK assets, and the PKGBUILD installs it to /usr/share/darkroom/models. Both refuse an LFS pointer rather than shipping a 130-byte file that fails inside the graph loader on a user's machine. `face_models` now searches three places, most specific first: the account's own directory, the shared user directory, then $XDG_DATA_DIRS. So a packaged pair is found automatically and a pair the user placed by hand still outranks it — which is what keeps a deliberate choice of weights from being overridden by an upgrade. $XDG_DATA_DIRS rather than a hard-coded /usr/share: that is the variable a distribution, a prefix install or a Nix-style store already sets to say where its data went, and its documented default is exactly the two paths that would otherwise have been hard-coded. Empty on Android, which has no such directories — there the APK's copy is unpacked into the shared user directory instead, because an asset inside a package is not a path anything can read from. Verified: the APK still carries both models at assets/models/, the PKGBUILD parses and installs from the new path, 467 tests pass. Includes the pkgver 0.6.0 → 0.7.0 bump that was already sitting uncommitted in the working tree. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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725f7bf77f |
Offer the merge when two people turn out to share a name
Over-clustering is the normal state of a freshly indexed library — FR-CULL-10 says so — which means one person arrives as several groups and the user names each of them the same thing. Until now that produced several people called Anna and no way to join them: `identity::merge` existed, `faces::merge_people` existed with its redirect tombstone, and `merge-into(int)` sat in identity.slint declared, never emitted and never wired. The screen had a split button and no merge. So a rename that collides now offers one. Type a name another person already carries and a strip appears under the field: "Someone else is already called Anna (14 faces). Merge them?" Offered, not performed. `people.uuid` is the identity and the name is not — the schema comment on that column is explicit that two devices naming the same cluster independently is the case it was built for — so two people sharing a name is legal, and folding them together on a keystroke would be the screen making an identity decision on the user's behalf. That is the thing this screen spends a whole button avoiding. The rename always lands first, and declining leaves it exactly as typed. There is nothing to undo because nothing was done. Details that are not arbitrary: The comparison is trimmed and case-insensitive. "anna" on a phone keyboard and "Anna" on a desktop are one intention, and an offer that appeared only when the capitalisation matched would read as a bug. An empty name collides with nothing. Every unnamed cluster renders as "Unnamed (n faces)"; if that counted as a collision the offer would appear on every cluster in a fresh library, and accepting it would fold the library into one person. The newly-named person folds into the one that already held the name, not the reverse. The older person is the one other devices have seen and the one whose confirmations are more likely to be real. Selection follows the merge, because landing on an empty screen after a successful action reads as a failure. The offer is retired when the person changes, and when a refresh finds its target gone — merged from the other side of a sync, or deleted. An offer left standing would fold whoever happens to be selected now. A merged-away person is not a namesake: `faces::people` already excludes redirects, so the offer does not reappear the instant it is accepted. Four tests over the collision rules, and the existing 467 still pass. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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eaafacc3fb |
Give the phone the model it had no way to obtain
Face indexing was compiled into the APK all along — dr-ui takes dr-face with `inference` on every target, so SCRFD, alignment, MBF, calibration and clustering were all in there. What was missing was the weights, and on Android there was no way to supply them. Route C (docs/faces.md §2.2) says the user obtains the model and the app loads it. On a desktop that is a real gesture: drop two files in ~/.local/share/darkroom/models/ and indexing starts working. On Android it is not a gesture at all. `internal_data_path` is app-private, `run-as` needs a debuggable build, and the in-app fetch route C specifies was never built — so the settings page reported "no face model is installed" on every launch with nothing behind the message. Not "off until you supply weights"; off. So the shape-fixed pair goes into LFS under the APK's assets, assemble-apk.sh copies it into the package, and `android_main` unpacks it to the shared models directory before anything asks whether a model is present. Three things that are not incidental: The models directory is now shared across accounts rather than per-account. Weights are identified by `faces.model_id`, not by who is signed in, so two accounts had no reason to hold two copies — and the unpack runs before any session exists to key a per-account path off. `face_models` still prefers a per-account directory when one is populated, so anyone mid-migration keeps the ability to pin one library to its own pair. The unpack writes under a temporary name and renames. `face_models` decides availability on `is_file()` alone, so a copy truncated by the process being killed would leave a file that passes that test and fails inside tract — reported to the user as a broken model rather than a missing one. assemble-apk.sh refuses an LFS pointer. At ~130 bytes it looks exactly like a model to `cp`, and unchecked it reaches the device and fails in the graph loader instead of telling someone to run `git lfs pull` — the same guard dr-segment's build script applies to yolo26n-seg.onnx. The licensing half is unchanged and recorded in §2.2a: the InsightFace grant is research-only, this is a private repository and a self-installed build, and these files come back out before anything is published. The weights are still not a cargo build input — dr-face has no `models/` directory and no `embedded-model` feature, and nothing in the build reads them. The APK assembly step copies two files and is the only thing in the tree that knows they exist. Verified on device: both models unpack on first launch (2524817 and 13616095 bytes) and the APK carries them at assets/models/. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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b846b312b8 |
Run the formatter over the face branch before it reaches CI
🐳 Android image / Build and push (push) Successful in 2s
Build and test / android-image (push) Successful in 2s
Build and test / Desktop (Linux) (push) Successful in 1h21m32s
Build and test / Layer separation (push) Successful in 37s
Traceability / Requirement traces (push) Successful in 25s
Build and test / Android (aarch64) (push) Failing after 33m58s
The merge of the SCRFD/MobileFaceNet work brought 69 rustfmt diffs across
dr-catalog, dr-face and dr-ui with it, so `cargo fmt --all -- --check` fails
on master and the Desktop job stops at its Format step — before clippy, the
tests or the release build have run at all. That makes the whole desktop
half of CI blind: a real compile error behind this would look exactly the
same from the outside. There was nothing behind it, as it turns out — with
the formatting fixed, clippy, the test suite and the release build all pass.
Every .rs hunk is `cargo fmt --all` on the pinned 1.92.0 toolchain, not a
hand edit, but it is worth being precise about what that moved, because it
is more than whitespace. Besides reflowing signatures and call chains,
rustfmt reordered the `pub mod` and `pub use` items in dr-face/src/lib.rs so
the `#[cfg(feature = "inference")]` entries sort in place, added the trailing
semicolon inside `let ... else { return }` bodies in identity_ui.rs, wrapped
a bare closure body in braces in cluster.rs, adjusted trailing commas, and
dropped a stray blank line at the end of identity_ui.rs. All of it is
semantically inert; none of it changes behaviour.
docs/traceability.md rides along because it has to. The matrix records each
TRACES tag by line number, and reflowing develop.rs, lib.rs, faces.rs,
identity.rs and identity_ui.rs moved them — FR-CAT-8, FR-CAT-9, FR-CULL-10,
FR-DEV-3, FR-DEV-3a and FR-DEV-3c all shift by a line or two. The matrix was
verified up to date on
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d777f7f44d |
Merge branch 'master' into worktree-faces-scrfd-mbf
Build and test / Desktop (Linux) (push) Failing after 25s
Build and test / Layer separation (push) Successful in 22s
Traceability / Requirement traces (push) Successful in 58s
🐳 Android image / Build and push (push) Successful in 1s
Build and test / android-image (push) Successful in 1s
Build and test / Android (aarch64) (push) Failing after 33m26s
# Conflicts: # docs/traceability.md # ui/dr-ui/src/develop.rs # ui/dr-ui/src/segmentation.rs |
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7e1c33ebed |
Draw the subjects on the photograph, not on the sensor
Build and test / Desktop (Linux) (push) Successful in 19m42s
Build and test / Layer separation (push) Successful in 27s
Traceability / Requirement traces (push) Successful in 34s
🐳 Android image / Build and push (push) Successful in 4s
Build and test / android-image (push) Successful in 4s
Build and test / Android (aarch64) (push) Failing after 33m12s
"Find subjects" would recognise a person on a portrait frame and then paint the outline into the hillside behind them. The detection was right and the mask was right; what was wrong was the picture drawn to show them. Instance masks live in sensor space, and correctly so — the generated shader samples them at `uv_src`, after the framing map, which is what keeps a mask on its subject through a zoom, a pan and a crop. The overlay is the one consumer that is *not* sampled by that shader. It is a flat image handed to the compositor to lay over a photograph that has already been through the framing map, so it has to arrive in the same space that photograph is in, and it did not. On a frame from a camera held sideways the outlines were drawn a quarter turn away from the subjects they described. `overlay_clip` had the same fault one layer down, and it is the more insidious of the two because it looks right. The crop and the viewport are fractions of the photograph as the user sees it — the prologue maps an output pixel through `crop_rect` *before* it unturns the frame — and they were being measured against the sensor's width and height. Two numbers, correct type, wrong axis. Both now go through `Orientation::into_shown`, so the overlay and its clip are in the photograph's space and the turn is the same one the render and the thumbnails make. Neither was noticeable until this week, and the reason is worth writing down: before the detector was given an upright frame it found almost nothing on a portrait photograph, so there was rarely an outline to be in the wrong place. Fixing the detector is what made this visible. Landscape frames were never affected, which is most of them, and is why an overlay that ignored orientation entirely survived this long. Verified on `_MG_9080.CR2`, a portrait frame of two people and a dog: the overlay was a 1599x1066 image drawn onto a 1066x1599 canvas, with the colour sitting in the mountainside above the subjects. It is now 1066x1599, and each outline is on the thing it names. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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ce201c7dd6 |
Name the two spaces a photograph lives in, so a turn cannot go the wrong way
Every orientation bug this codebase has had has been the same bug: a turn of the right size applied in the wrong direction. That failure is worth naming precisely, because it does not look like one — a quarter turn applied backwards lands 180 degrees from right, so the result is a plausible transform of the picture rather than anything obviously broken, and on landscape frames it is not wrong at all. It was the straighten shear, and it was the segmentation overlay, and each time it was found by eye rather than by a test. The reason it keeps happening is that "rotate 90 degrees clockwise" cannot be checked by reading it. The reader has to hold in their head which of the two images is being rotated and which way the y axis runs, and there were four hand-written copies of the permutation to hold it for: the shader prologue, its CPU twin, the thumbnail path, and the segmentation. So nothing added here says clockwise, anticlockwise, horizontal or vertical. The functions say *which space they take and which space they return* — `into_shown` and `into_stored`, `source_pixel` and `shown_pixel`, `into_shown_rect` and `into_stored_rect` — and each takes the dimensions of the space it reads from, so no caller has to work out which pair it is holding. `StoredRect` and `ShownRect` are separate types because they are the same four numbers meaning different things, which is exactly the case where a mistake is silent: a shown rect measured against stored dimensions produces a rectangle in the wrong place, not an error. Underneath there is one permutation. `source_pixel` was already shared by the prologue and the thumbnails; `source_point` is its normalised twin, written beside it so the two cannot drift, and everything else is those two read forwards or backwards. `Orientation::inverse` is the group inverse rather than `4 - turns`: mirrors apply after the turn, so undoing means undoing them first, and a mirror seen from the far side of an odd turn is about the other axis. That is the diagonal-mirror case, tags 5 and 7, and getting it wrong renders as — again — 180 degrees. Three call sites lose their own copy: the thumbnail path, `dr-ui`'s segmentation, and `dr-gpu`'s `local` example. "Upright" now means one thing across the application rather than one thing per caller. The gate that matters most is `the_render_and_the_orientation_map_agree`. The shader prologue and `Orientation` answer the same question by different routes, and until now nothing checked that they answered it the same way. It now checks every EXIF tag against every user rotation and mirror on top of it, because the composition is where the two could agree singly and disagree together. The rest earn their place by having caught something. Writing these found two real errors in this commit's own new code before it ran anywhere: `shown_pixel` was handed the dimensions of the wrong space and overflowed, and the rect map turned the wrong way for the diagonal mirrors. A round trip that returns what went in is the only check worth having here, since every wrong answer is still a picture. No behaviour changes. The permutations are the ones that were already being applied; they are simply applied from one place now. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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25c88d9dbd |
Start face indexing from Settings
Beside the thumbnail sweep, because it is the same kind of thing: a job that runs for an hour, is asked for once, and reports into the activity list above it. It is also downstream of that sweep -- detection reads the proxies it builds -- so the two belong in that order, and the coverage line says how many images are waiting on a proxy rather than only how many are left to index. The button drives the Identity Manager's own state rather than a second copy, so it cannot disagree with that screen about whether a pass is running, and either place can start or stop it. The pass now opens an activity row. The caption promises progress will appear in the list above, and without a row it would not: the button would be the only sign anything was happening, invisible from every other screen. Coverage is read when the Settings page opens. The figures live in the catalog and this page deliberately holds no session, so they arrive through a closure rather than being kept current -- they are only ever looked at while the page is on screen, and the check is two counts and an indexed scan. Also adds DARKROOM_NO_SYNC. Redirecting XDG_DATA_HOME isolates a test launch's catalog and thumbnails but not its server, and I found that out by pushing a test catalog over the live one. The guard sits in start_derived_sync rather than at its three call sites, because the sweep firing a sync is correct and a flag checked in three places is one that gets missed in a fourth. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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f00b92a0e6 |
Turn face boxes back into sensor space before matching regions
Faces are found on the thumbnail, which is cached the right way up -- the grid would lie on its side otherwise. Segmentation runs on a proxy rendered through a neutral edit graph, which carries no orientation and is therefore in sensor order. For anything shot in portrait the two differ by a quarter turn, so a face and the person containing it were being compared in spaces 90 degrees apart: no match, or worse, a match against somebody else's region. The transform goes on the face rather than on the proxy. Instance masks are defined in the proxy's space and sampled long afterwards, so turning that space would be a far larger change than naming a region warrants. Also two things the first screenshot of the running app showed that no test would have: 110 of 23,528 displayed as "0%", which reads as the feature having done nothing. One decimal below ten percent, and a floor so real progress never shows as none. The rail picked some near-black covers, because the largest face in a group is often the nearest one in a badly lit frame and a black square beside a name identifies nobody. It now cuts the best few and takes the first legible one, falling back to the largest when a person's every photograph is dark -- which happens, and showing it beats showing nothing. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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61c4547b9c |
Make the Identity Manager a peer of the library and develop
It was reachable only from the library header, which made it a side trip rather than a mode. It is now reachable from develop's header too, beside the way back, because that is the same kind of move -- leaving this photograph for somewhere else in the library -- and a screen you can only reach from one of the other two is not a peer of them. Leaving returns to whichever screen opened it, and the button says which. A back button that read "Library" while returning to develop would be lying about the one thing a back button has to be right about. The develop session is only hidden, never torn down, so returning to it costs nothing and keeps the photographer's place. The header now matches the other two screens rather than using a close cross: three screens whose headers disagree read as three applications. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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b55812812a |
Name segmented people from the faces already recognised in them
The segmenter knows it found a person; the face index knows which person. Joining them turns "person" in the mask list into "Anna", which is the difference between a vocabulary of eighty COCO classes and one that includes the user's family. Selecting a subject in a group photograph stops being a guessing game between three identical rows. Containment, not IoU. A face is a small part of the person it belongs to, so a correct pairing has an IoU near zero and anything IoU-based would reject every true match. Confirmed names only. A suggestion is the system's guess, and printing a guessed name onto a mask region would launder it into a fact. Writing the tests corrected the design once: a tight head-and-shoulders portrait, where the face fills most of the person box, is the case where naming is most certain, not least. An earlier guard rejected exactly that and has been removed, with the reasoning left as a test because it is easy to get backwards a second time. The names hang on the develop session, set when the image opens because that is the one moment the catalog and the image id are both in reach. Every segmentation run afterwards picks them up for free, and a library with no face indexing behaves exactly as it did before. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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d7a81375ee |
List the steps, and let a photographer step straight to one
Build and test / Desktop (Linux) (push) Successful in 19m30s
Build and test / Layer separation (push) Successful in 25s
🐳 Android image / Build and push (push) Successful in 1s
Build and test / android-image (push) Successful in 1s
Traceability / Requirement traces (push) Successful in 23s
Build and test / Android (aarch64) (push) Failing after 33m5s
Undo answers "take back the last thing", which is the question asked about a mistake just noticed. It is the wrong instrument for one noticed six adjustments later: eight presses, each changing the picture, with no way to see how far back the mistake is without passing through it. A step is a whole state, so arriving from six away costs what arriving from one does — which is what makes a row worth making clickable rather than decorative. `Edit::Discrete` had to go for the list to be worth drawing. Seventeen call sites recorded the same anonymous step, which is fine for deciding whether two changes are one gesture and useless for a panel: seventeen rows reading "Discrete" is not a history. Every variant now carries enough to name itself, and the compiler enumerated the sites that had to start saying so. A step that moved a parameter is still named out of the descriptor, so an operation added as a YAML declaration appears in the history correctly named with nothing written for it (FR-DEV-3c). Choosing a film stock was not undoable at all. The pick went straight to `choose_film`, which nothing on the history's path ever sees. `pick_film` records it, and is separate because the same call is also how a *restored* edit gets its tables back — recording that would push a step for the undo the photographer had just asked for. The list is rebuilt off a revision rather than off every redraw. A drag ends in a redraw per frame while folding into one step, so the unconditional version would tear down and recreate every row sixty times a second to arrive back at the list already on screen. The counter is process-wide: a per-instance one starts every photograph at the same number, so a frontend holding "the revision I last drew" would keep the previous image's steps on screen — invisible while every image opens with one identical row, and a wrong-photograph bug the moment persisted history means it does not. The step names that no descriptor can supply are constants with a roll, and a test walks the roll rather than a second copy of it. `resolve` splits so that "is this catalogued?" can be asked: `derive` turns `history.mask_toggled` into "Mask Toggled", which names a field rather than an act and, being perfectly readable, is a mistake nobody would look at twice. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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b89f1cfece |
Snapshot the whole edit in the history, so a drawn mask can be taken back
The undo stack snapshotted a `Preset` — the parameter map — and a mask layer is deliberately not a parameter. So drawing one changed nothing the history could see: `record` returned `false`, no step opened, and the layer the photographer had just painted had no way back. The interface went on calling `record` in good faith, including from the mask controls, and nothing failed. A film stock went missing the same way. The snapshot is an `EditState` now, so the history is complete by construction rather than by anyone keeping a list in their head. `undo` and `redo` return a `Step` rather than a `bool`. Stepping is not the only outcome a caller has to act on — a step across a change of film leaves the graph without its tables, and only the caller can bake them — and a `bool` would let that be dropped by writing nothing at all, which is the shape of mistake this module had already made once. `DevelopSession` settles the debt either way; a step that found nowhere to go is left alone, since clearing the film because undo hit the floor would take the stock off the picture. Five tests, all of which fail against the old snapshot: a drawn layer is undoable and redoable, a layer's own settings are a step of their own, a change of stock is a step and names what it needs baked back, clearing the film is undoable, and an exposure move does not deep-copy the mask stack. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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93efdf27a6 |
Keep the film stock when an edit is saved
`Version::update` is the write path an automatic save goes through. It copied the parameters and the masks and said nothing about the film, so a photograph developed on a stock was written back without it and opened the next time without its emulsion. Nothing reported a failure — the line was simply not there. It is the third of the three routines that captured "the edit" and the only one that got it wrong, which is the argument for not having three. All of them now destructure one `EditState`, so `from_graph`, `update` and `apply` cannot disagree about what an edit consists of, and the next part of one cannot be lost by anybody writing a line too few. Two tests, both of which fail without the fix: the field survives `update`, and the stock survives the round trip through the file. `apply` returns the `FilmRebake` it always implicitly owed, so `apply_version` now reads the debt off the call rather than off `version.film` — and pays it in both directions, since a version with no film has to clear the adjust pass too or it keeps textures bound that nothing will sample. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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d562ceaaf4 |
Show a face beside each name in the people rail
The rail was drawing an empty square for every person: cover was hardcoded to a default image. That is the one place a portrait matters most, because the rail is how the user decides which unnamed group to open first, and a list of "Unnamed (24 faces)" rows tells them nothing. The portrait is the person's confirmed face with the largest crop_px -- the most source pixels the face actually occupied, so the one they have the best chance of recognising -- falling back to a suggestion so a freshly clustered group still has a face beside it. Cached in the controller, because every mutating action reloads the whole screen and cutting a portrait costs a JPEG decode per person. Without the cache, confirming one face would re-decode a proxy for every person in the library, and the rail does not change when a suggestion is accepted. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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96d07da15f |
Sync face data as sealed shards, so a second device does not re-index
Indexing 23,500 images is about two hours of CPU, and the result is byte-identical on every device: the same model over the same proxy produces the same embedding. Paying for it once per account rather than once per device is the point. Shards rather than the catalog snapshot, because the snapshot goes up whole on every sync and a fully indexed library carries roughly 30 MB of embeddings. That is exactly the cost the thumbnail store's 25 MB cap exists to bound, so face shards use the same cap -- imported from dr_thumbs rather than restated, since the number is a statement about sync cost and the two must not drift apart. The split follows the one already there: bulk immutable data in sealed shards, small mutable data in the catalog snapshot. Faces, landmarks, embeddings and run markers shard; people, names and assignments ride the catalog and merge by uuid. Keyed on oc:fileid throughout, never on image_id, because a row id means nothing on another device. The run marker travels with the faces it describes. Without it a receiving device cannot tell an image with no faces from one never examined, and would re-detect every landscape it had just adopted. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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4a82753d22 |
Show the detector the photograph, not the sensor's scanlines
🐳 Android image / Build and push (push) Successful in 1s
Build and test / android-image (push) Successful in 1s
Build and test / Desktop (Linux) (push) Successful in 19m7s
Build and test / Layer separation (push) Successful in 25s
Traceability / Requirement traces (push) Successful in 23s
Build and test / Android (aarch64) (push) Failing after 33m10s
"Find subjects" was handed the proxy in the sensor's own orientation, so every frame shot on a body held sideways reached the model lying on its side — and a model trained on upright photographs is very bad at those. Measured end to end on a 22 MP frame of two people and a dog: `person 0.36` and nothing else, against `dog 0.82, person 0.61, person 0.49` for the same pixels stood up. Nothing failed; the panel simply offered one poor subject where there were three good ones. The orientation was never dropped on purpose. The proxy is deliberately rendered through a *neutral* graph — the detection has to survive an exposure change, or every slider would invalidate the masks built on it — and neutral took the file's orientation with it along with everything else. Landscape frames were unaffected, which is why it stood for as long as it did. The turn is `Orientation::source_pixel`, the same function the grid's thumbnails already go through, so the detector and the thumbnailer now agree about which way is up rather than holding two opinions. What it is turned by is `Framing::effective_orientation` — the file's EXIF tag and the photographer's own rotations composed into one permutation, by the group law rather than by adding the turns, which is a distinction `Framing` already had to make and had already tested. Rotating the picture and pressing the button again therefore does what it looks like it does. The proxy stays in sensor space and the masks come back into it. That is not a detail to be tidied later: the generated shader samples the mask array at `uv_src`, *after* the framing map, so a mask stored upright would sit a quarter turn off the subject it was drawn around. That is a wrong mask rather than a weak one, and nothing announces it. So the picture is stood up for the model and laid back down for everything else, and `upright`/`lay_down` are returned as a pair because calling one and forgetting the other is silent. Both directions are the one function: `upright` gathers through `source_pixel` and `lay_down` scatters through it. A quarter turn is a bijection of the pixel grid, so the round trip is exact — no filter, no resampling, and no hole to fill — and an inverse written out by hand would be a second thing to keep in step, whose way of being wrong is a mask mirrored about the wrong axis, which still looks like a mask. The orientation joins the confidence and the tiling flag in the segmentation signature, and for the same reason: turning the photograph changes what the model recognises, so two runs either side of a rotation are different instance lists. Two that happened to come out the same length would otherwise share a signature and a stored layer would be silently re-indexed from one into the other. The refine pass had it too — it re-runs the model over a crop rendered in the same sensor space — so it makes the same turn, and would otherwise have handed back a worse mask than the one it was asked to improve, on the subject the photographer had just pointed at. `dr-gpu`'s `local` example is fixed with it. It exists to be the shipping path with pictures attached, and a diagnostic that reproduces the bug it is meant to catch is a trap for whoever reads it next. Seven tests. The round trip is the identity over all eight EXIF tags on a non-square asymmetric grid; a turn carries whole pixels rather than shearing the channels apart; a sideways frame reaches the model upright; a box comes back in sensor pixels, worked out by hand for the one turn a portrait frame actually writes; a restored box still reads low-to-high for every tag, since the rest of the pipeline takes `x1 - x0` without checking the sign; and the eight tags cannot collapse into one signature key. The existing composition test now runs against `effective_orientation` itself, over all 8 x 16 baseline-and-user pairs. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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26a1eb7e28 |
Record that face detection has run, not just what it found
An image with no faces in it was indistinguishable from one that had never been looked at, so every landscape, still life and document scan in the library was re-detected on every pass, for ever. In a real library that is most of it: on the 23,527-image test library, 64 of the first 110 images indexed contain no face at all. Schema v9 adds face_index, a run marker per (image, model) carrying the face count and the proxy edge it read. Keyed on the model, so a model change puts every image back in the queue by itself. That makes a coverage figure possible, which is the thing a user actually wants to see. The audit also splits the outstanding set by whether a proxy exists, because 23,417 awaiting a proxy and 110 ready to index are different problems, and telling the user to run indexing again would not fix the first. The Identity screen gains Index faces, Stop, and the coverage line. examples/face_index.rs is the same check and sweep without a window, which is the right shape for an overnight pass. Measured on the real library in release: 3.5 images/second, 110 images and 125 faces in 30 seconds, and a second run correctly finds nothing left to do. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |