A spec was a promise; sixteen of them had become descriptions of code that already shipped, sitting beside four that describe work still outstanding, with nothing in the file telling the two apart. Half the statuses were also wrong — audio-equalizer read "Accepted" with the EQ live on both platforms, the native video spec said the flag stays off after the default was flipped on. The shipped designs move into docs/architecture, which is the maintained description of the build, and the spec files go. Git history keeps the originals; what a future change still needs is carried across: - 01-rust-backend: favourites rewritten (the old section named a file that no longer exists and called shipped buttons "planned"), domain vocabulary owned by Rust (SearchScope, exclusions, the bitrate ladder), background workers - 02-svelte-frontend: app shell and chrome, library mosaic, series/episode navigation, downloaded browse, safe-area insets, native-video store, logging - 03-data-flow: locally-indexed search - 05-platform-backends: audio settings on ExoPlayer, the equalizer's band vocabulary, native video compositing, the background-audio handoff - 06-downloads-and-offline: one storage model, offline catalog visibility - 09-security: path confinement and input binding docs/specs/README.md now says what the directory is for and where each shipped design went. Deferred work the specs recorded is kept beside the code it concerns rather than lost: season-bounded autoplay, the two dead search commands, why indexing is a full crawl. requirements.md had fourteen stale statuses — Android audio parity still read "Linux only", DR-150 still said the native-video default was off, DR-190 was Proposed after DR-196 implemented it, and five tooling requirements were Proposed after landing. Three unbuilt specs suggested requirement ids that have since been allocated to other work; each now carries a warning.
14 KiB
Spec: Enforce the unified player boundary
Status: Proposed — not started. The count below has not improved: ~60
commands.player* call sites still live outside src/lib/player/, and no lint
rule enforces the boundary. This remains the one stated design principle with no
automated check.
Requirements: ⚠️ the suggested id DR-095 has since been allocated to seek
clamping — allocate a fresh id (DR-215 or later) on implementation. Relates to
UR-005 and the unified-player-boundary
principle in CLAUDE.md and 02-svelte-frontend.md
UX spec: n/a — refactor, no user-visible change.
Supersedes / revises: n/a
Summary
The stated principle is that UI controls playback only through
playerController (src/lib/player/index.ts),
never by calling commands.player* directly. There are 52 direct call sites
outside that facade. This spec routes the genuine playback-control calls
through the facade, narrows the principle's wording so it stops forbidding
things it never meant to forbid, and adds the lint rule that keeps it true —
because this rule is the one design principle in the audit with no automated
check at all, and it is also the one that drifted furthest.
Motivation
Direct commands.player* usage outside src/lib/player/, by file:
| File | Sites |
|---|---|
| queue.ts | 10 |
| player/[id]/+page.svelte | 9 |
| VideoPlayer.svelte | 8 |
| settings/+page.svelte | 5 |
| sleepTimer.ts / auth.ts / autoplay.ts | 4 each |
| preload.ts | 3 |
| library/[id], playerEvents.ts, playbackMode.ts | 1–2 each |
These are not equivalent violations, and treating them as one number is why the rule has been easy to ignore. Three distinct groups:
(a) Genuine violations — playback control with a facade method that already
exists. playerStop ×6, playerPlayTracks ×4, playerSeek ×2,
playerPlayAlbumTrack ×2, playerNext, playerPrevious, playerSkipTo,
playerToggleShuffle, playerCycleRepeat, playerRemoveFromQueue,
playerMoveInQueue, playerAddTrackById, playerAddTracksByIds,
playerSetSubtitleTrack, playerPlayItem. The facade exposes stop(),
seek(), next(), previous(), skipTo(), toggleShuffle(),
cycleRepeat(), removeFromQueue(), moveInQueue(), addTrackById(),
addTracksByIds(), setSubtitleTrack(), playTracks(), playAlbumTrack(),
playItem() — every one of these has a facade equivalent that is simply not
being called. queue.ts is the starkest case: it imports commands directly
and re-implements ten methods the facade already provides.
(b) Playback control with no facade method. playerPlayQueue,
playerGetQueue, playerGetStatus, playerEnterBackgroundAudio,
playerExitBackgroundAudio, playerSetSleepTimer, playerCancelSleepTimer,
playerPlayNextEpisode, playerCancelAutoplayCountdown. In scope for the
principle, but currently impossible to comply with — the facade has no surface
for them. A rule that cannot be followed is not being broken so much as it is
unfinished.
(c) Not playback control. playerConfigureJellyfin ×3,
playerDisableJellyfin, playerGet/SetAudioSettings,
playerGet/SetVideoSettings, playerGetEqPresets,
playerGet/SetAutoplaySettings, playerGet/SetCacheConfig,
playerPreloadUpcoming. These are configuration and lifecycle calls that happen
to live under the player_ command prefix. The principle is about who is
authoritative for playback state — settings CRUD isn't that.
The audit's read: the rule as written is violated 52 times, which makes real drift indistinguishable from acceptable usage, and that ambiguity is what lets group (a) persist. Note also that the principle is well-honoured where it matters most — the read side is clean, with UI reading state exclusively from the facade's re-exported stores. The write side is what drifted.
Layer assignment
Frontend-internal refactor. No domain logic moves and nothing new crosses IPC — the same Rust commands are called, through one module instead of many.
| Logic / responsibility | Layer | Why it belongs there |
|---|---|---|
| Playback command dispatch (adapter routing: native vs HTML5) | Frontend — src/lib/player/ only |
Presentation-layer plumbing, but must be centralised: the facade picks between the native backend and the HTML5 <video> adapter. A caller bypassing it silently skips that routing. |
| Playback authority (position, pause, rate, track changes) | Rust / the player | Unchanged. The player is authoritative; UI is a consumer. This spec does not touch that direction. |
| Queue mutation commands | Frontend facade → Rust | Rust owns queue state; the facade is the single call path to it. |
| Player settings CRUD (EQ, video, autoplay, cache) | Frontend, outside the facade | Configuration, not playback control — read/written on a settings page with no adapter routing. Explicitly carved out below. |
| Backend→frontend event handling | playerEvents.ts |
Already correct. It is the facade's own plumbing, not a bypassing consumer. |
No Jellyfin taxonomy is involved, so no boundary-leak risk.
Design
1. Narrow the principle to what it actually means
Amend CLAUDE.md and 02-svelte-frontend.md:
Unified player boundary. UI controls playback — transport, queue mutation, track selection, playback initiation — only through
playerController. Player configuration commands (player_*_settings,player_configure_jellyfin,player_*_cache_config,player_preload_upcoming) are ordinary IPC and may be called directly from settings surfaces.
This is a clarification, not a relaxation: it makes group (c) explicitly fine so that a violation count means something. A rule with 52 nominal violations, most of them acceptable, provides no signal.
2. Fill the facade gaps (group b)
Add to playerController, each a thin pass-through preserving current
behaviour:
playQueue, getQueue, getStatus,
enterBackgroundAudio, exitBackgroundAudio,
setSleepTimer, cancelSleepTimer,
playNextEpisode, cancelAutoplayCountdown,
Do this first — group (a) cannot be fully migrated while callers still need
a direct import for a neighbouring call, and a file that imports commands for
one reason will keep using it for others.
3. Migrate group (a)
Mechanical: replace commands.playerX(...) with playerController.x(...).
Highest-value first: queue.ts (10 sites, all direct facade equivalents), then
player/[id]/+page.svelte, VideoPlayer.svelte, sleepTimer.ts,
playbackMode.ts, library/[id]/+page.svelte.
Two sites need care rather than substitution:
playerEvents.ts(playerOnPlaybackEnded,playerStopin the error path). This module is the facade's event plumbing — the counterpart toindex.ts, inside the boundary conceptually though not by directory. Treatsrc/lib/services/playerEvents.tsas inside the boundary and exempt it, rather than making it call the facade that calls back into it. Record this in the lint config with the reason.VideoPlayer.svelte— registers its own adapter viasetActiveAdapter. ItsplayerStop/playerPlayItemcalls interact with adapter lifecycle, and CLAUDE.md's gotcha ("no lifecycle calls after anawaitinonMount") applies. Migrate this file last and on its own, so an Android seek regression is bisectable to one commit.
4. Add the lint rule (the part that makes it stick)
The audit's finding was that principles with working checks held up and
principles without them drifted. This principle has no check. Add
scripts/check-player-boundary.sh, wired as bun run check:player-boundary and
into test-all.sh:
# Playback-control commands that MUST go through the facade.
CONTROL='player(Play|Pause|Toggle|Stop|Seek|Next|Previous|SkipTo|ToggleShuffle|CycleRepeat|RemoveFromQueue|MoveInQueue|SetVolume|ToggleMute|SetSubtitleTrack|SeekVideo|SwitchAudioTrack|PlayTracks|PlayAlbumTrack|PlayItem|PlayQueue|AddTrackById|AddTracksByIds|GetQueue|GetStatus|EnterBackgroundAudio|ExitBackgroundAudio|SetSleepTimer|CancelSleepTimer|PlayNextEpisode|CancelAutoplayCountdown|OnPlaybackEnded)'
# Inside the boundary: the facade and its event plumbing.
EXEMPT='^src/lib/player/|^src/lib/services/playerEvents\.ts$'
Flag commands.$CONTROL in non-test src/ files outside EXEMPT. Config
commands are deliberately absent from the list, matching §1 — so the check
encodes the narrowed rule rather than the aspirational one.
An ESLint no-restricted-syntax rule would give better editor feedback, but the
project has no ESLint config; a shell check matches the existing
check:boundary precedent and adds no dependency.
Out of scope
- Changing playback behaviour — pure refactor.
- The one-directional state principle (audited clean; UI reads from facade stores only).
- Moving settings CRUD behind the facade (§1 explicitly carves it out).
- Introducing ESLint.
- Refactoring
VideoPlayer.svelte's 2079 lines generally, beyond its facade call sites. - The
commands.player*calls insidesrc/lib/player/— that is the facade doing its job.
Acceptance criteria
playerControllerexposes the group-(b) methods listed in §2.grep -rn "commands\.player" src/ --include='*.ts' --include='*.svelte' | grep -v '^src/lib/player/' | grep -v 'playerEvents\.ts' | grep -v '\.test\.' | grep -v bindings.tsreturns only configuration commands per §1 — no transport, queue, or playback-initiation call.queue.tsno longer importscommandsfrom bindings.bun run check:player-boundaryexists, is wired intotest-all.sh, and passes.- The check fails when a
commands.playerStop()is added to a non-exempt file — verify explicitly, as with the other gates in this batch. - The check does not fail on
commands.playerSetAudioSettings()insettings/+page.svelte(the §1 carve-out works). - CLAUDE.md and
02-svelte-frontend.mdcarry the narrowed wording, including the config carve-out and theplayerEvents.tsexemption with its reason. - No behavioural change: audio and video playback, queue reorder, shuffle/repeat, sleep timer, background audio, and autoplay all behave as before on both Linux and Android.
- Android seek and
onMountlifecycle still correct after theVideoPlayer.sveltemigration (the known-fragile path). bun run checkandbun run testpass.bun run check:boundarypasses.- Changed code carries
// TRACES:comments. - No Rust change, so no
bindings.tsregeneration.
Testing
Frontend (bun run test):
- Extend the existing facade tests to cover each new group-(b) method: it forwards to the right command with the right arguments, and routes to the active adapter where applicable.
queue.tstests: assert calls land onplayerController, notcommands. Mock the facade — a test that mockscommandswould pass either way and guard nothing.- Keep
tauriIntegration.test.tsand the other IPC param-naming tests green; they cover the camelCase rule this refactor must not disturb.
Manual (no automated coverage for these paths):
- Linux: play/pause/seek/next/prev, queue reorder, shuffle, repeat, sleep timer, transcoded video (HLS), background audio enter/exit.
- Android: the same, plus lockscreen/MediaSession controls, and seek after entering the player — the specific regression CLAUDE.md warns about.
Because this is a pure refactor, the strongest signal is that no test changes expectation. A test needing its assertions rewritten means behaviour moved — investigate rather than update it.
TRACES
Allocate in requirements.md:
- DR-095 — "UI playback control is routed exclusively through the
playerControllerfacade (src/lib/player/), withplayerEvents.tsinside the boundary as its event plumbing and player configuration commands explicitly outside it; enforced byscripts/check-player-boundary.sh." Category: Player. Traces to UR-005. Status: Done on merge.
// src/lib/player/index.ts
// TRACES: UR-005 | DR-095
New facade tests take @req-test: UT-089 onward (next free UT is UT-089;
coordinate if landing alongside the sibling specs, which draw from the same
pool).
Notes for the implementer
- A parallel Claude session may be active in this repo —
git diffbefore "repairing" unexpected changes (CLAUDE.md §Gotchas). - Order matters: §2 (fill gaps) → §3 (migrate,
VideoPlayer.sveltelast and alone) → §4 (add the check). Adding the check first turnsmasterred. - 🔴
VideoPlayer.svelte: no lifecycle calls after anawaitinonMount— it flips to HTML5 mode and breaks Android seek. Do not let a mechanical substitution introduce anawaitbefore a lifecycle call. - The facade's
requireHandle()may throw where a rawcommandscall did not. Check each migrated call site's error handling rather than assuming the try/catch still covers the same cases. playbackMode.tsinteracts with remote-mode routing (play_on_sessionvs local MPV). Verify remote casting still works after migrating itsplayerPlayTrackscall.- This spec is deliberately the lowest priority of the audit batch: it is the largest diff and the only one carrying real regression risk, while the traceability gate is a few lines and restores a dead safety net.