f6e9df2f68385c56108e459a14af5b7991c0ff50
8
Commits
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b9e60bdb0a |
fix(shell): dismiss the wizard when a library exists
The first-run wizard dismissed itself as a step in its own flow, so a library appearing by any other route left a full-screen modal up over an app that was already set up — intercepting every pointer event, which is also what keeps Settings out of reach while it is there. AddLibrary emits LibraryAdded whoever calls it, so one subscription makes the dismissal follow the state the wizard exists to wait for rather than the button being pressed. It is registered before the initial read, or a library arriving while that call is in flight is answered with a stale empty list; both routes out now end in one dismiss(), which sets `finished` before asking the dialog to close because preventClose cancels the hide otherwise. Closes #175 |
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e14a34fccf |
fix(android): let the app reach the user's music
Three of plan 016's four blockers. Each is a different reason the app could not work at all on a phone. **It had no permission to read anything.** The generated manifest asked for INTERNET, VIBRATE, biometrics, location and a camera, and nothing whatever about storage -- so at targetSdk 35 the app could see its own private directory and no music. It now declares READ_MEDIA_AUDIO, the two capped legacy storage permissions, and MANAGE_EXTERNAL_STORAGE. That last one is deliberate and is the load-bearing choice. This app is a library manager: audio_files.file_path is the primary key of ownership, the scanner walks a directory the user chose, and tagwriter rewrites files in place. MediaStore offers no stable directory to walk and no in-place write, so scoped storage is not "more work" here, it is a different application. MANAGE_EXTERNAL_STORAGE is Play-restricted, which is acceptable only because this ships as an APK through the package registry -- if it ever targets Play, that line is what has to go, and plan 016 says what replaces it. It is granted on a Settings screen rather than in a dialog, so it cannot be requested with requestPermissions(). MainActivity opens that screen on every cold start until access exists -- there is no degraded mode worth offering -- and re-checks in onResume, because the way back from another task is a resume, emitting android:storageAccess so the frontend can react. **The first-run flow could not complete.** All three call sites asked for a folder through the Wails dialog, which returns an error on Android: SAF yields tree URIs and this app is keyed on paths. So the app browses the filesystem itself, which it can now do. ListDirectories lists directories only (the thing being chosen is a library root), skips what it cannot stat rather than failing the listing (Android's storage root holds directories no app may enter), follows symlinks (os.DirEntry reports the link, so a symlinked music folder would silently vanish), and hides dotted entries. utils/pick-directory.ts is the one place that chooses between the two, so the three call sites changed by one line each. **Which platform is asked of the backend**, not of System.IsAndroid(): the dialog is backend code, so the backend is what knows whether it can open one; it answers for iOS at the same time; and it keeps the fallback testable through the ordinary transport fake rather than a module mock of the Wails runtime, whose platform helpers read build constants. **And MPRIS was compiled into the Android build**, because android implies the linux build tag, so it went looking for a session bus that does not exist. mpris_linux.go is `linux && !android` now and the stub covers Android, which means no lock-screen transport there yet -- a missing feature rather than a broken one, and the remaining blocker. The foreground service is typed mediaPlayback rather than the scaffold's dataSync, with the matching permission, so playback can survive the screen locking once there is a MediaSession to drive it. The type in the manifest and the one passed to startForeground must agree or startForeground throws. |
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162c68769f |
feat(wails): move the frontend onto v3's generated bindings
frontend/wailsjs/ is deleted and frontend/bindings/ takes its place — a real TypeScript module tree nested by Go import path, generated by wails3's static analyser rather than by building the app and running it. The @go alias absorbs the constant prefix, so a call site imports '@go/library/library.js' and the codemod over all 93 sites was a specifier rewrite plus splitting @go/models' namespaces into one import per package. The 12 SetContext bindings and the fake `context` model are gone, as Phase 2's ServiceStartup port promised: 272 methods across 12 services, none of them plumbing. @runtime/runtime is now a local shim (src/wails/runtime.ts) over @wailsio/runtime, so the 22 EventsOn imports are untouched. It unwraps v3's WailsEvent into v2's callback shape, which is exact here: nothing in backend/events passes more than one data argument, and v3 only packs arguments into a slice when there is more than one. v3 tells the truth about two things v2 lied about, and that is most of the diff. A Go nil slice really does arrive as JSON null, and a Go named string type really is an enum; v2 typed them as T[] and string. utils/binding.ts states the app's actual contract — an absent list is an empty list — once, at the boundary where it is true, and also drops the CancellablePromise the app never cancels. Four test fixtures widen an enum field back to its value union. Not done, and Phase 5's to fix: frontend/test/support/wails-fake.ts still fakes window.go, which v3 does not have, so `make ui-test` is broken and harness.test.ts fails to compile on EventsEmit. That test also asserts v2 ordering that no longer holds — v3's Events.Emit calls the backend and does not notify in-page listeners at all. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01UDCbcCZQepnpSQYJ6SxxZm |
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49b1194333 |
fix(a11y): give the semantic colours a ramp, and every fill a foreground
The contrast pass found two things larger than itself, both recorded as not-fixed. This is them. The semantic colours were 'fixed across themes', and one fixed colour cannot clear 4.5:1 against both a near-black and a near-white surface: --yj-error measured 2.55:1 on dark's elevated, --yj-info 2.31:1, and success and warning failed on dark and light both. They are split by the question they answer. A *fill* is 'what colour is a danger button' -- red in every theme, unchanged -- and a *text* colour is 'what colour is the word failed on this background', which is now per ramp. Every fill also carries a computed foreground. White on the default accent is 1.43:1, and the accent is a colour picker, so no fixed answer survives it: --yj-accent-fg and the four semantic -fg values are derived (white if white clears, else black), which keeps a red danger button white and flips a green or amber one to black. Two accent buttons took their foreground from --yj-bg-base, which inverts with the ramp -- that is exactly the white-on-yellow 'Apply (A)' the light theme showed. Accent used as text gets the same treatment through accentTextOn(), which mixes along the hue until it clears the ramp's surface and stops. On both dark ramps it returns the accent unchanged, so the dark themes are visually untouched by that half. Measured across three ramps and twelve views: 2237 nodes, 0 failing, against 110 on dark and 50 on light before. Borders, outlines and shadows were explicitly kept on the fill token -- a border is not text, and the first pass of the rewrite moved 30 of them by accident. |
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287b6445fa |
fix(a11y): give every wa-dialog an accessible name
Eleven dialogs passed a `label` that never reached the accessibility
tree: Web Awesome renders it into an <h2 id="title"> in the same shadow
root as the native <dialog> and never points aria-labelledby at it, so
getByRole('dialog', {name}) matched nothing and a screen reader
announced an unnamed dialog. a11y.md lists all of them under "what is
already correct".
utils/name-dialog.ts sets the IDREF, with aria-label as the fallback for
without-header (first-run-wizard), called from each host's updated().
aria-labelledby rather than aria-label because three call sites compute
their label at render time, and the heading re-renders anyway. It waits
for the dialog's own first update: wa-dialog populates its shadow root
in its own update, so a query at the host's firstUpdated names nothing.
Reaching into another library's open shadow root is deliberate and the
failure is bounded — if the structure moves, the query misses and the
dialog is as unnamed as it was.
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2518385330 |
refactor(frontend): adopt the lifecycle and the notification surface
The remaining views, brought onto the two mechanisms added earlier in this series. The lifecycle: every cached primary view moves its document listeners, intervals and event subscriptions off connect/disconnect and onto `viewActivated`/`viewDeactivated`, so `autotag-view` stops fielding keystrokes from Settings, `downloads-view`'s 30 s clock stops ticking for the session, and an off-screen view stops rendering on every search keystroke. `autotag-view` keeps a document listener only for Escape, whose dialogs Phase 5 migrates to wa-dialog anyway. The voice: the silent failures now speak — scan and full rescan (with a guard against the double-click the coalescing window allowed), job pause/resume/cancel, playlist delete, download request pause/remove/ clear, add and rename library, add-to-playlist, playlist track removal, autotag's dialogs and its apply, and favourite reverts. Both private toasts are gone, along with their CSS and keyframes. Playlist delete (single and the multi-select loop), download-request removal, download-client removal and a queue clear over 20 tracks ask first. Loading, empty and failed become three states rather than one, in `track-list` and `genre-details` — the first is on the first screen a new user ever sees — and the Settings index panel seeds itself with `GetIndexStatus()` instead of waiting forever for a change event. `smart-playlist-editor` and `download-picker` take the request-version guard `explore-view` already had. `track-details` loads through one memoised dynamic import in all ten openers, which is what takes its 42 kB out of the startup chunk: an un-upgraded custom element is a real HTMLElement on which `?.show()` throws, so each opener awaits it before touching the element its template already rendered. |
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e190fd75b9 |
feat: data lifecycle rewrite, download clients, wanted list, and central catalog index
Ships the fresh-start schema cleanup: rebuilt explore catalog index pipeline (dump import, artifact fetch/build, incremental listen-count refresh), a new download subsystem (Lidarr/Prowlarr/qBittorrent/SABnzbd/ slskd/yt-dlp providers, staging, reconciliation, wanted list), and the supporting schema/query/store changes across backend and frontend. Also includes two smaller follow-ups: bump the central index's rebuild-after cadence from 90 to 180 days, and remove the Explore "library only" online/offline toggle entirely (frontend-only, no backend counterpart) rather than carry unused UI/state. Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01Y2Agd9af5hE7qzti2ackiS |
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01bc5f2094 |
feat(jobs): surface background jobs with progress, logs and controls
Add a central job registry that library scans and search index builds report into, so background work is visible instead of buried in the settings page. - backend/jobs: registry with per-job ring-buffer logs, capability-driven controls, and one coalesced JobsChanged snapshot at 4Hz - pause survives restart via a job_state table; a paused scan is adopted back on launch and skipped by the soft scan - top-bar indicator, popover, details drawer and a Jobs page replacing the config page's scan UI; per-library start/stop retained - scan timing breakdown moves into the job log, Full rescan to the Jobs page; delete the orphaned library-manager component Also add cmd/indexbuild and cmd/indexexport so the explore index can be built once centrally rather than by every install, which today streams ~205GB from the ListenBrainz spark dump on first run. indexbuild picks build/refresh/rebuild from index state; the Gitea workflow runs it on push, weekly, or manually and publishes only when content changed. fresh-install no longer defaults YJ_HOME under /tmp: it is tmpfs on most distros, and the import needs ~6GB of real disk. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> |