Compare commits

..
Author SHA1 Message Date
logan f31331c83b docs(skill): what a fresh install is doing before you measure it
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m31s
CI / e2e (pull_request) Successful in 9m32s
Three things about a fresh install cost a measurement each, and none of
them was written down: it downloads the real catalog, so job-band is
103px of a 439px screen and every vertical number is wrong; stopping
that build returns cleanly and it **starts again within seconds**, so it
has to be stopped immediately before a measurement rather than once at
the start; and a library added over the bridge does not dismiss the
first-run wizard, which then sits over whatever you are looking at with
a correctly disabled button, reading exactly like a swallowed tap.

Also the scoped-storage path that works, the appops grant whose absence
sends the app to the system "All files access" screen on launch, and
why EXPR='...' cannot carry an apostrophe -- a file path with one in it
fails as a JavaScript error. The positional form takes a file.
2026-08-21 15:58:48 -04:00
logan 6a22601af7 docs(player): a device number is not a number CI can assert
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m29s
CI / e2e (pull_request) Canceled after 7m48s
The spec's floor on the art's height passed locally at 114 and failed in
CI at 64. Both honest: the e2e app is long-lived so an earlier spec's
job is still on screen, and volume-control renders in a browser where it
does not on Android. Same trap as the staged-job entry above, arriving
as a measurement rather than as a stuck job.
2026-08-21 15:55:56 -04:00
logan ce9951b93a test(player): assert the mechanism, not the room CI happened to have
The floor on the art's height passed locally at 114 and failed in CI at
64. Both numbers are honest and neither is about this change: the e2e
app is long-lived, so a job staged by an earlier spec is still on
screen, and the volume control renders here where it does not on
Android. Both are chrome above and below the view, and both move the
leftover.

So the claim is stated as what the reflow does rather than as what it
measures -- in a row the art is bounded by the row's height and fills
it, where in a column it is the leftover after the names. That is the
mechanism behind 53px to 143px, and it fails on the old build with
"there is no row to fill". The device numbers stay on #51, which is the
only tier that can honestly produce them.

This is the second draft of that assertion to be thrown away; the first
compared the art against the column's leftover and passed on the defect,
because the subtraction goes negative exactly when the names are taller
than the art.

Also stops the arrangement wait from requiring the row to exist, so
reverting the component to check that these tests bite still produces
the crop measurements -- 263x39, 358x315, 300x36 -- rather than eight
timeouts. 5 of 8 fail on the build before this change.
2026-08-21 15:55:43 -04:00
logan 99a45401c7 docs(player): correct the audit's scope, and the probe's false positives
The sweep covered the detail views, Downloads and Autotag as well as
the ten primary views; the note said "ten primary views plus the
queue". The null result is unchanged and now covers more.

Also records the two false positives the probe produced before it was
right, since the next audit will write the same two checks: "painted
outside the viewport" flags a horizontally scrolling carousel, so the
question is whether a scrollable ancestor can bring it back; and a hit
test at a control's centre flags everything below the fold in a scroll
container.
2026-08-21 15:46:50 -04:00
logan dd76bd2fa7 docs(player): record the crop, the reflow, and the audit's null result
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m39s
CI / e2e (pull_request) Failing after 9m47s
The audit #51 asks for, at 424x439 on the reference device with a real
1,577-track library: all ten primary views plus the queue. What it did
*not* find is worth recording, because it is the promise plan 018 makes
-- the shell does not overflow on any view, nothing is stranded outside
a scrollable ancestor, and a hit test at each control's centre reaches
the control. The width work of #57, #62, #55 and #59 holds; what was
left was vertical.

What it found is filed rather than fixed here: #186, every control that
is not the transport is under the 44px floor, and #187, the seek bar's
drag target is 6px.

Also the two device traps that cost time despite being written down --
a fresh install downloads the real catalog and the job band then eats
103px of a 439px screen, and it *restarts* after being stopped; and the
first-run wizard does not re-check for a library it did not create, so
adding one over the bridge leaves it up with a correctly disabled
button.

Closes #51
2026-08-21 15:42:15 -04:00
logan dee176c0f7 test(player): pin the art's shape and the short-screen arrangement
Four of these eight fail on the build before the fix, with the numbers
the issue is about: 263x39 at 424x439, 358x315 at 390x700, 300x36 at
900x500, and no row at all below 500px. The fifth viewport, 412x869,
passes on both -- which is the boundary landing exactly where the
arithmetic says it should, since the leftover only exceeds the width
above ~843.

Three of them cannot fail on the old build and are said to be guards
rather than evidence: that the transport does not scroll off (the old
build shrank the art instead, so it did not scroll either), that a tall
phone keeps its column, and -- after a first draft that passed on the
defect because the subtraction went negative -- a floor on the art at
the device's own viewport instead of a comparison with a layout that is
no longer there.

The wait is on the arrangement rather than on a non-zero box: a
previous test leaves the other layout on screen and a stale column
satisfies "has a size" perfectly, which showed up as one test passing
alone and failing in file order.

What this tier cannot see is the device's engine. Nothing here depends
on Chrome 113 behaviour -- the sizing rules were chosen by measuring
that engine directly, and the numbers are on the issue.
2026-08-21 15:41:59 -04:00
logan 75a24f98b6 fix(player): give Now Playing a layout that survives a short screen
Two things, and the first was a defect underneath the design question
rather than an answer to it.

**The album art was never square.** aspect-ratio is specified not to
re-derive the width when max-height clamps the height, unlike an
intrinsic ratio, which is preserved under both bounds. So a definite
`width: min(100%, 60vh)` kept its width while the height was clipped
and object-fit: cover cropped a square cover into the band -- 264x53
on the reference device, which is what #172's "39px of art" actually
looked like. It is not only the phone either: the leftover exceeds the
width only above ~843px of viewport, so every height from ~500 to ~843
drew a crop. Both maxes with auto sizes is the fix, chosen by measuring
four candidate rules against Chrome 113 itself at five column heights.

The placeholder cannot use that rule -- with no intrinsic size it
collapses to its icon, 13x58 -- so it is driven from the height, with
min-width: 0 because a flex item's automatic minimum is its content,
and max-height: calc(100vw - 2rem) because a non-replaced box cannot
express "the largest square that fits" and went 380x484 on a tall
phone without it.

**Then the reflow.** The stacked budget is fixed, so the art gets
`height - 386` and that is 53px at 424x439. #172 named two ways out;
a floor on the art scrolls the transport off the bottom, and controls
never scrolling off is #51's own Direction and plan 018's promise --
so below 500px the art and the names share a row, where the art is
bounded by the row's height rather than the column's leftover. 53px to
143px on the device, nothing scrolling, the transport untouched.

500 is where the two layouts cross rather than a round number, and it
is keyed on height alone because it answers vertical room: a 900x450
window has the same problem and the same fix.
2026-08-21 15:41:47 -04:00
logan 327785e5ec Merge pull request 'fix(queue): draw the scrim only where it can be tapped' (#182) from fix/171-phone-queue-scrim into main
CI / check (push) Skipped
CI / e2e (push) Skipped
Build & publish the Android APK / apk (push) Successful in 1m29s
Build & publish Arch package / arch-package (push) Successful in 2m37s
Attach the desktop build to the release / linux (push) Successful in 56s
Sync Homebrew formula / sync-formula (push) Successful in 8s
2026-08-21 16:47:46 +00:00
logan 7ba5d321f6 test(queue): pin the breakpoint listener the scrim rule rests on
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m30s
CI / e2e (pull_request) Successful in 9m18s
The scrim's existence comes from matchMedia rather than a stylesheet, which only holds if the query is listened to — and the stub's addEventListener was a no-op, so deleting the listener left all 986 tests green. The stub records its listeners now and the new case carries a panel across the breakpoint in both directions. Watched failing with the listener removed.
2026-08-21 16:24:04 +00:00
logan f126dd7397 fix(queue): draw the scrim only where it can be tapped
Below 600px `.panel-content` is `width: 100%`, so the scrim sat
entirely underneath an opaque panel -- measured at 424x439, host,
panel and scrim all 424x318. It dimmed nothing and dismissed nothing
there while wearing `cursor: pointer`, so #24's tap-outside-to-close
did not exist on the device it was drawn for.

Of the issue's two directions this takes the second. A gutter is the
drawer pattern and buys the affordance by taking width off a
full-screen surface on a 424px viewport; #55 already made the queue a
*screen* at that width, whose ways out are back and a 44px close
button. So there is no scrim there rather than an unreachable one.

Existence is `matchMedia` rather than `display: none`, on `job-band`'s
rule: a hidden scrim is still an element carrying the handler. The
600-899 band, where the panel is a 320px column of a wider content
area and the scrim has real uncovered pixels, is untouched.

The e2e half asserts *absence* at 424x439 rather than clicking,
because a phone-width case that clicks the scrim's centre hits the
panel and passes on the broken build -- which the issue anticipates.

Closes #171
2026-08-21 16:24:04 +00:00
logan 510d3470f9 Merge pull request 'fix(ui): keep a touch-only affordance reachable, or absent' (#181) from fix/137-touch-only-affordances into main
CI / check (push) Successful in 2m28s
CI / e2e (push) Successful in 9m28s
2026-08-21 16:23:43 +00:00
logan d78830aa52 fix(ui): make the touch pen a corner chip, not a scrim over the art
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m28s
CI / e2e (pull_request) Successful in 9m19s
Always-visible is not the same as always-in-the-way: the overlay is inset:0 at 50% black, so gating it on hover left every touch device with the artwork it is editing permanently darkened. It is only a hint — .cover-art-edit carries the click, so tapping the art always worked — while the × really is the only route to its action and stays. The chip borrows the remove button's size, disc and alpha.

Also corrects the claim that no tier can render as a touch device: no committed one does, which is a choice about projects rather than a limit.
2026-08-21 15:59:45 +00:00
logan a72d1f68ed fix(ui): keep a touch-only affordance reachable, or absent
Three controls are revealed by :hover and are the only route to their
action on a device that has none. #68 hid the home card's play button on
touch, which was right because tapping the card does the same thing;
these are the opposite case, so hiding them removes the action outright
and leaving them costs the same long-press flash #68 was filed for --
they are visibility:hidden / opacity:0, so on touch they are invisible
controls that still take taps.

track-details' cover-art overlay and remove, and shortcut-capture's
reset, are always visible under `@media not all and (hover: hover)`.

The queue row's remove is the third case the report names and takes the
other treatment, because #60 has since landed: the row's context menu is
a bottom sheet carrying "Remove from Queue", so the action is one
long-press away and an always-visible X would spend part of a 424px row
on something already reachable. It is display:none outside
`(hover: hover) and (pointer: fine)` rather than visibility:hidden,
which would leave a button holding its hit area and its place in the
accessibility tree -- the trap this issue is about.

The rule is not extracted into styles/ yet: that leaves two call sites
of the always-visible form, under the four the report names.

No tier here can render as a touch device, so the tests read the parsed
stylesheet the way #68's does and say so; the touch and hover renderings
were measured against the running app in a hasTouch context instead.

Closes #137
2026-08-21 15:59:45 +00:00
logan 60f1c5a6b2 Merge pull request 'build(frontend): fail css-check on a nested rule the phone drops' (#180) from fix/154-nested-css-check into main
CI / check (push) Successful in 2m33s
CI / e2e (push) Successful in 9m31s
2026-08-21 15:59:25 +00:00
logan 11ba7b3180 build(frontend): sweep every stylesheet, not index.css by name
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m32s
CI / e2e (pull_request) Successful in 9m16s
The hook fires on frontend/**/*.{ts,css} while the script read one hardcoded path, so a second stylesheet would have been silently unswept while the hook still went green over it. There is only index.css today, which is exactly when this is cheap to fix. Watched catching a planted nested rule in a second file.
2026-08-21 15:16:47 +00:00
logan 7f8e185d7c build(frontend): fail css-check on a nested rule the phone drops
The device renders in Chrome 113, which predates relaxed CSS nesting, so
a nested rule whose selector starts with an element name is not a parse
error anyone would notice -- the rule simply does not exist, there and
nowhere else. Three were live in `index.css`, and the one that mattered
was the `text-overflow: ellipsis` on the bottom bar's title and artist,
which had therefore never truncated on the device. No tier here can see
the class at all: the component tier, the e2e tier and `make ui-visual`
all run a current engine, where the rule applies normally.

So `make css-check` carries a second script. It reads `index.css` and
the `css` literals in `src/**/*.ts` alike, since a shadow-root
stylesheet is parsed by the same engine, and it names the file, the line
and the fix -- a leading `&`, which is valid in both syntaxes.

The detection walks blocks rather than matching lines, and both things
it has to get right fall out of one rule: a rule is nested when a
*style* rule is somewhere above it, not when its immediate parent is a
block. That leaves `@media (...) { bottom-nav { ... } }` at the top
level alone, which is the majority of what a regex over the file would
report, and still flags the same rule inside an at-rule that is itself
inside a style rule. Strings and comments are read through, so a brace
in a `url()` is not a block.

The tree has no violation left, so the check would pass just as happily
over an empty glob: it refuses one, and `test/utils/css-nesting.test.ts`
pins the semantics that make the sweep mean something. The literal
scanner the two checks share is lifted into `css-literals.mjs`
unchanged, except that a `${}` substitution is now blanked keeping its
newlines so a line number survives it.

Closes #154
2026-08-21 15:16:47 +00:00
logan 42483c4b61 Merge pull request 'feat(player): show progress on the phone's bar border' (#178) from feat/58-mini-player-progress-line into main
CI / check (push) Successful in 2m28s
CI / e2e (push) Successful in 9m2s
2026-08-21 15:16:26 +00:00
logan deea6ad06d test(player): pin the desktop timer gate, drop a leaked queue
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m32s
CI / e2e (pull_request) Successful in 9m14s
Two gaps a review found. The this.phone gate on the interpolation interval is what CLAUDE.md says earns the matchMedia call, and every test passed without it — so it is asserted on the timer count now, since a desktop render is empty either way and cannot tell the two apart. Watched failing with the gate removed.

The e2e spec left LONG_TRACK playing in a workers: 1 suite against one long-lived app, immediately before four other phone-* specs. Nine specs clear the queue in afterEach for that reason and phone-transport.spec.ts records the flake it caused.
2026-08-21 10:45:15 -04:00
logan fba608fdbd docs(player): attribute the phone seek bar's removal correctly
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m26s
CI / e2e (pull_request) Canceled after 0s
The paragraph said #59 took the seek bar off the phone's transport.
It was plan 016 B2 — audio-player.ts says so in the comment above the
rule that does it, and CLAUDE.md's own #59 paragraph says #59 removed
shuffle, repeat and the queue button. Wrong provenance in the file
whose whole value is being right about which change did what.

Also stop tracking .pi/journal.md. It is a scheduled run's scratch log,
and this repo's memory is CLAUDE.md and .planning/ — a session log
arriving inside a feature PR is a new convention landing sideways.
2026-08-21 14:38:12 +00:00
logan f59490b113 feat(player): show progress on the phone's bar border
#59 took the seek bar off the phone's transport, so the one thing a
mini player is expected to say without being opened -- how far through
the song it is -- had nowhere left to be said.

It is the shell's element and its own 2px grid row between `bottom-bar`
and `bottom-nav`, because those two are separate components and either
one drawing the line means reaching into the other's box. The fill is
`scaleX()` off the same `PlaybackPositionChanged` the seek bar renders,
with the same `trackChangeId`/`seq` guards and an interval that only
interpolates *between* reports -- never its own clock, which is the
rule that exists because a local counter drifted 30 s away from the
backend across four keyboard seeks.

It is `aria-hidden` and takes no pointer events at any depth: Now
Playing's seek bar is what announces the position, and a 2px strip on
the top edge of the tab bar is exactly where a thumb aiming at a tab
lands. It renders nothing above 600px, from `matchMedia` rather than a
media query, because a stylesheet cannot stop a 1 Hz interval running
for the life of every desktop session about a line nobody can see.

Its phone rule is at the foot of index.css beside `job-band`'s, not in
the phone block above: a media query adds no specificity, so a
`display: block` written before the `display: none` that takes it out
of the desktop grid loses to it and the line never appears at all.

Closes #58
2026-08-21 14:38:12 +00:00
logan 6cca57f229 Merge pull request 'fix(explore): scroll the album page as one on a phone' (#179) from fix/66-album-page-scrolls-as-one into main
CI / check (push) Successful in 2m26s
CI / e2e (push) Successful in 9m23s
2026-08-21 14:36:20 +00:00
logan ea3edde697 fix(explore): scroll the album page as one on a phone
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m28s
CI / e2e (pull_request) Successful in 9m8s
`explore-album-details` was a fixed header over a scrolling tracklist,
which is the desktop arrangement. At the reference device's 424x439 the
header owned 253 of the panel's 318px and the list scrolled inside the
64 that were left, and the header's flex row squeezed `.album-info` to
112px beside a 200px cover -- so the title drew as one ellipsised glyph
and two of the album's three primary actions were clipped by the
component's own `overflow: hidden`: "Shuffle album" ended at x=443 in a
424px box, reachable by no gesture.

Below 600px the host is the scroller and `.content` stops being one, so
the header scrolls away and the page moves together; the header stacks
art over info, so the info column has the row's whole width. The
tracklist is plain DOM rather than a virtualizer, so nothing inside
wants a scroll window of its own.

Another `min-width: 0` was not the fix and the issue's own measurement
says so: `.album-info` carries one and was shrinking as asked. Nor
could `layout-overflow.spec.ts` see any of this -- `body.scrollWidth`
equalled the viewport throughout, because the overflow was inside a
component -- so the new spec measures each header control against the
host's own box, which is `top-bar-fit.spec.ts`'s shape for the same
reason.

The phone block is last in the stylesheet on `index.css`'s rule: a
media query adds no specificity, so above the rules it overrides every
declaration in it would be silently dead.

Closes #66
2026-08-21 04:40:35 -04:00
logan 14e3ab574c Merge pull request #176: context menus are a bottom sheet on a phone
CI / check (push) Successful in 2m27s
CI / e2e (push) Successful in 9m9s
2026-08-21 07:25:55 +00:00
logan 4b2eec5703 Merge remote-tracking branch 'origin/main' into 60-context-menu-action-sheet
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m29s
CI / e2e (pull_request) Successful in 8m51s
2026-08-21 02:39:29 -04:00
logan 3871d37fdb Merge pull request 'chore(agent): add the scheduled backlog-issue prompt' (#177) from pi-agent-backlog-automation into main
CI / check (push) Successful in 2m30s
CI / e2e (push) Successful in 8m54s
Reviewed-on: #177
2026-08-21 06:29:30 +00:00
logan 09b005557c chore(agent): add the scheduled backlog-issue prompt
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m25s
CI / e2e (pull_request) Successful in 9m2s
A scheduled pi session reads this file and works one open issue end to
end: pick, claim, branch, implement, verify on the tier the change
demands, open a PR, stop. It declines rather than improvises where it
cannot verify itself — a busy :34115 means another worktree is running
the app, and a green e2e run against someone else's build is worse than
no run at all.
2026-08-21 02:28:55 -04:00
logan ef5574d18b docs(shell): record the clip, and the four things only a device showed
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m32s
CI / e2e (pull_request) Successful in 8m57s
CLAUDE.md gains the surface beside the keyboard model it shares, and
NOTES.md the measurements: the 83px clip with its screenshot, the probe
that established a top-layer dialog escapes paint containment from
inside a view, the UA stylesheet's 354px, the focus steal a longer
retry cannot beat, and the submenu this change pushed off-screen before
it pulled it back.

The last of those is also a note about scope: the issue was claimed
saying the submenu would be measured and filed, and the measurement
said fix it.
2026-08-21 02:24:04 -04:00
logan 31dafb0ce0 test(shell): assert the surface, and sweep for a menu that skipped it
No tier here can reproduce the defect: this runner's Chromium and CI's
WebKit both have the Popover API, so the popup is top-layered and looks
perfectly correct, and a spec asserting "the menu is not clipped" would
pass on the broken build.  So these assert the mechanism -- that the
surface is a native <dialog> at phone width -- which is the same move
queue-as-a-screen.spec.ts makes about containment, for the same reason.

The sweep is the more valuable half.  A thirteenth menu written as a
bare <wa-popup> would work in every tier here and be clipped on the
device, so this reads every source file and fails on one outside a
three-file allowlist, each entry carrying why.  It found two call sites
the by-hand conversion had missed.

Four of the six behavioural tests fail on the build before this change;
the two asserting the desktop popup cannot, because that behaviour was
already there.

Closes #60
2026-08-21 02:24:02 -04:00
logan 9e7e7ce5a1 feat(shell): put every menu in the app through the one surface
Fourteen call sites, one tag name each and nothing else -- which is what
menu-surface's shape buys: the host's panel is slotted into whichever
presentation is up, so no item model, no keyboard model and no styling
moved.  The 48px rows come from contextMenuStyles, the one stylesheet
every one of these hosts already includes, because the panel is the
host's own light DOM and only the host's stylesheet can reach it.

Two of the fourteen were found by the source sweep rather than by the
conversion: queue-panel's add-to-playlist popup, which is a real menu.
now-playing's cover preview is allowlisted instead -- it is a hover
affordance in the bottom bar, so a touch device never opens it and
nothing clips it.

The playlist submenu had to come too, and that is the one place this
change made something worse before it made it better.  It is a
placement="right-start" flyout anchored to its row, and making the menu
full-width moved that anchor to x=0 -- so the flip put the picker at
x -182 to 0, entirely off-screen, and "Add to Playlist" led nowhere at
all.  Before the change the row started at x~245 and the same flip
landed on screen.  It is a sheet now and stacks over the first, which
is also why menu-shown does not re-assert focus while it is open.

The three hosts that do not use ContextMenuController -- page-header's
overflow menu, playlist-view's hand-rolled menu, queue-panel's picker
-- bind menu-dismiss themselves, or Escape would close the sheet and
leave their own open flag set.

page-header is included deliberately: the clipping does not bite there,
since it opens downward from the top of a full-height view, but on a
phone every action of an overflowing page lives in that menu at
wa-dropdown-item defaults.  One surface, so there is no second answer
to what a menu looks like.
2026-08-21 02:23:48 -04:00
logan 9aaa8beb99 feat(shell): draw a context menu where it fits, not where it is anchored
On the reference device every context menu in the app is clipped, and
the two halves of that are structural rather than incidental.  Chrome
113 has no Popover API, so wa-popup takes its own documented fallback
and positions with strategy: "fixed"; .main-panel carries
contain: layout style paint, and paint containment clips fixed
descendants.  Measured at 424x439 before any of this: the main panel
spans 0-318, the open menu spanned 191-401, and three of its seven
items were cut off with no way to reach them.  Rows were 29px against
a 44px floor.

menu-surface is one element with two presentations -- a wa-popup above
600px, a wa-dialog bottom sheet below it -- so the host keeps rendering
the panel it always rendered and ContextMenuController keeps driving
.active and .anchor as though it were talking to a popup.  showModal()
is Chrome 37 and uses the real top layer, so the sheet is immune by
construction rather than by styling.

Four things needed measuring on the hardware rather than reading.

"A dialog escapes containment" was the premise and was untested here:
every other dialog in this app is mounted in index.html, outside
.main-panel.  A probe dialog appended to track-list's shadow root
paints to y=439, over the mini player and the tab bar.

A native dialog's UA stylesheet centres it and caps its width, which
drew a 354px panel in the middle of a 424px screen -- so four
declarations in this component are pure undoing.

wa-dialog focuses [autofocus] or itself on the frame after
showModal(), and it cannot see our first menu item to prefer it: the
panel is slotted, so its own querySelector stops at the <slot>.  A
longer retry budget does not fix that, because the first attempt
succeeds and is then overwritten -- hence menu-shown and
MenuKeyboard.refocus().  The budget became time-based anyway, since
what is being waited for is another component's animation.

And a dismissal has to travel back: wa-dialog closes itself on Escape,
which would leave the controller believing the menu is open.  The
failure mode there is not a stuck sheet but the *next* long-press
doing nothing, which reads as the gesture breaking.
2026-08-21 02:23:33 -04:00
logan 2e29e67664 Merge pull request #174: Android: leave the volume to the system
CI / check (push) Successful in 2m30s
CI / e2e (push) Successful in 8m56s
2026-08-21 05:50:06 +00:00
logan f26b44db08 docs(player): close three of the four gaps with a real device
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m26s
CI / e2e (pull_request) Successful in 9m5s
A Light Phone III (Android 14, SDK 34, arm64, Chrome 113 at 424x439)
was attached after the PR was opened, so what it listed as
unverifiable was checked rather than left as a caveat.

SystemOwnsVolume answers true on the device -- the build tag, the
constant, the field and the generated binding, end to end, which is the
one thing a source sweep only approximates and which nothing else here
compiles at all.  The control is absent in both mount points on the
real engine, and the transport measures 143px, exactly what the
desktop-headless "after" predicted.  A stored volume of 37 survives a
session that demonstrably rewrote the row.

The duck is the one that stays open, and now for a stated reason rather
than for want of hardware: the foreground service omits
setWillPauseWhenDucked from Oreo, so the framework attenuates us itself
and never sends AUDIOFOCUS_LOSS_TRANSIENT_CAN_DUCK -- the device logs
`requestAudioFocus() ... flags=0x0` saying so.  minSdk is 21, so that
path is live code on Android 5.0 to 7.1 and unreachable above it.
Asking for a modern phone will not test it.
2026-08-21 01:34:44 -04:00
logan b43172a60c docs(player): record who owns the volume, and what it gave back
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m34s
CI / e2e (pull_request) Successful in 8m47s
CLAUDE.md's volume paragraph ended "#64 asks for it to be gone on
Android outright, which is a platform question the frontend cannot
currently ask", which is no longer true -- it can, and the paragraph
now says why the answer is a capability rather than a viewport and what
that costs.  The mediacontrols entry gains the corollary: on that
platform "the user's level" is a constant, and the duck is the one
thing that may still move the output.

NOTES.md carries the measurements: the per-element budget at 424x439
before and after, the :host([hidden]) specificity trap, the fact that
the bar's centring survives the control going away, and what no tier
here could check.
2026-08-21 00:53:44 -04:00
logan 2be6fb3066 feat(player): draw no volume control where there is no volume
volume-control asks the player whether there is a volume of ours to
control, and renders nothing when there is not.  The decision is in the
control rather than at either mount point because there are two, and
one of them -- the bottom bar's -- lives in index.html, which has no
module scope to make it conditional.

It could not have been a width, and that is the whole design decision.
Every other stand-down rule in this app is keyed on a viewport, because
a width is what a browser can answer and what every tier can test.
This one is a property of the build: keyed on width, an Android tablet
at 600px or more draws the bar's slider over a level the backend has
pinned -- a control that cannot act, on exactly the platform the rule
exists for, which library-status-indicator settled is worse than none.
The same rule is wrong the other way below 600px, where a narrow
desktop window has no hardware keys to fall back on.  index.css keeps
its phone rule, which is now about room and says so.

Rendering nothing and hiding the host are both needed and are separate
assertions: an empty shadow root is what stops a by-role or positional
query finding a button that cannot act, and :host([hidden]) is what
stops the element taking a flex item's worth of the transport.  The
host rule has to be written down, since :host { display: inline-flex }
outranks the UA's [hidden].

Measured at 424x439 by flipping the constant and rebuilding: the album
art goes 39px to 68px and the transport 172px to 143px -- 29px, being
the 21px control plus the 8px gap a hidden box stops drawing.  The
bar's centring is unaffected, since #23's outer columns are the same
min() expression rather than content-sized.

volume-ownership.test.ts is the tier that can exercise the Android
rendering, on an ordinary Linux runner, because the predicate is a
stubbable backend answer.  Both of its tests were confirmed to fail on
the build before this.

Closes #64
Closes #172
2026-08-21 00:53:36 -04:00
logan 867ced8c81 feat(player): leave the volume to the system where the system owns it
On Android the hardware keys are the volume control and the framework
mixes our stream against the device level, so a second control inside
the app moves something the user already moved.  Where that is true the
player's level sits at maximum, SetVolume / ChangeVolume / MuteToggle
are refused, and nothing persists a level nobody chose: restore
remembers the stored value instead of applying it, and saveState writes
that same value back rather than recording the synthetic maximum.

Mute is in that list because it is a level of zero by another name --
and because with no control rendered it would be the one state on such
a platform the user could not get out of.

The predicate is named after the capability rather than the platform,
because that is what makes it testable.  Only platformOwnsVolume is
behind a build tag, in two files that declare nothing else; everything
else is decided against Player.systemVolume, a field a test sets either
way.  That is mediacontrols' split, with androidpayload.go's reasoning
for keeping the contract out of a tagged file, and the tagged pair is
covered by a source sweep since no tier here compiles both halves.

SetDuck is deliberately untouched: it applies its attenuation by
re-applying the *user's* level through setVolumeLocked, so pinning that
level to maximum leaves the offset arithmetic exactly as it was.  It is
the only thing that may still move the output on such a platform, and
TestSystemVolumeStillDucks is that property rather than a comment.
2026-08-21 00:53:21 -04:00
logan fd71ef53c5 Merge pull request 'The phone transport: three controls, sized for a thumb' (#173) from 59-slim-the-mini-player into main
CI / check (push) Successful in 2m30s
CI / e2e (push) Successful in 9m5s
2026-08-21 04:14:39 +00:00
logan e3b64f9255 test(player): assert the desktop bar's size by mechanism, not by pixels
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m24s
CI / e2e (pull_request) Successful in 8m56s
WebKit draws the same button 36x24 where Chromium draws 33x21, so the
literal this pinned failed in CI on a build where nothing was wrong. A
button's box comes from the UA stylesheet when the author sets nothing,
and what each UA sets is its own business.

What must not happen is that *we* set something. So: `min-width` and
`min-height` compute to 0px, the font-size still equals that of a bare
button probed in the same page, and all five boxes are identical --
which is what says the desktop is neither sized context. Checked by
re-introducing the `font-size: inherit` regression, which it catches in
Chromium; the literal form could only be checked by hand.
2026-08-21 00:02:27 -04:00
logan c7e5a4f086 docs(player): record the phone transport, and four silent failures
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m31s
CI / e2e (pull_request) Failing after 9m38s
The model in CLAUDE.md beside the volume rule it qualifies; the
measurements and the four things that cost a cycle each in NOTES.md,
dated. Three of the four are invisible to every assertion in the repo:
a button not inheriting its font, a nested rule out-specifying a later
one, and art whose height is bounded by nothing.
2026-08-20 23:42:36 -04:00
logan f65822c4b2 test(player): pin the phone transport, and the desktop bar not moving
Ten tests, five of which fail on the build before this. The desktop
guard is meant to pass there -- that is its job, and it is the one that
caught a three-pixel regression nothing else could see.

`openTheQueue` moves to the fixtures, because hiding one button failed
ten tests in four files about the back stack and about layout: every
one of them opened the queue by clicking `#queue-button`, and so was
quietly asserting *which* route exists as well as what the queue does.
The route differs by width now and that is the feature.

Two smaller things. The play button is named for its action, so an
exact 'Play' waits out a fixture track -- 11.1s per test, passing by
luck, and it would have failed outright against LONG_TRACK. And the
"nothing playing" case clears the queue itself rather than trusting the
app not to have played anything: `make e2e` runs one long-lived app
across every spec (#168), which is how a deterministic bug first showed
up as a flake.
2026-08-20 23:42:35 -04:00
logan 32d4dc2c82 feat(player): slim the phone's mini player to three controls
Shuffle, repeat and the queue button leave the phone's bottom bar.
They are not gone: all three are on the full-screen Now Playing view,
one tap away through the mini player's art, which is the "reachable
only from Now Playing" this issue asks for. #55 is what makes the queue
half safe -- it is a screen with an entry in the back stack now, rather
than a panel with no way out but the button being removed here.

Removing a control is only allowed because it is still reachable, which
is plan 018's matrix promise, so that is what the spec walks rather
than counting buttons. It found that the route did not exist in the
state that matters: `now-playing` renders two branches and the no-track
one had no `.expand` button on its placeholder, so with nothing loaded
there was no way to the full-screen view at all -- and once the queue
button left the bar, no way to the queue. The queue is persisted across
restarts, so "tracks queued, nothing playing" is a state the app
launches into, not a corner.

The favourite stays on the bar and was 18x14px, the smallest control in
the app, against the 48x48 art beside it.

One CSS trap, because it failed silently. The phone block is last in
index.css on purpose -- a media query adds no specificity -- but the
rule it overrides here is written *nested* inside `.bottom-bar`, so it
builds to a descendant selector one class more specific and a bare
`#queue-button` lost to it. Being last is not enough when the thing
above is more specific.

Closes #59
2026-08-20 23:42:34 -04:00
logan 218e4f5e99 feat(player): give the transport a context, and thumb-sized controls
Measured at the reference device's 424x439, every button here was
33x21px -- in the bottom bar and on the full-screen view alike. #56
reports them as "the most important thing in the mobile app and they
are tiny", and that is the number behind it.

The context is a **property, not a media query**, and that is the whole
design. Everywhere else in this app a component states what it drops at
phone width itself, because a media query inside a shadow root is
answered by the viewport and that is the honest signal. Here the two
hosts want different answers at the *same* viewport: on a phone the bar
wants three controls sized for a thumb and now-playing-view wants five,
larger still. So the host says which context and the viewport says
which size band, and neither alone can express it.

Play/pause alone goes above the 44px floor. A row of five identical
squares says every action is equally likely, which is not true of play
-- "large play/pause, adequate prev/next" is the Direction, and a spec
caught that the first version had sized all three the same.

Two things that fail silently:

The desktop bar must not move, and a `<button>` does not inherit its
font from its parent -- the UA stylesheet gives it one. So a generic
`font-size: inherit` is not the no-op it reads as: it took every
desktop control from 33x21 to 36x24. The box rules take a zero fallback
and the font-size rules are scoped to the two contexts that set one.

And the art on now-playing-view overflowed its own box, drawing over
the header above and the title below, because `aspect-ratio: 1` with a
definite width derives a height that nothing bounds -- 60vh bounds the
viewport, not the room left over. `max-height: 100%`. Pre-existing;
found by reading a screenshot, which is the only tier that can see it.

What is left is #172: with the transport at 172px of a 439px screen the
art is a 39px sliver.

Closes #56
2026-08-20 23:42:15 -04:00
logan 56a5ff99fe Merge pull request 'The queue is a place while it covers the content' (#169) from 55-queue-as-a-screen into main
CI / check (push) Successful in 2m35s
CI / e2e (push) Successful in 8m41s
2026-08-21 03:00:45 +00:00
logan af4b28b0d7 docs(queue): record why the queue is not a detail view
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m31s
CI / e2e (pull_request) Successful in 8m49s
The measurement that decided it, dated, in NOTES.md -- the overlay's
rect against the main panel's, the three things that were genuinely
missing, and the computed containment of both candidate mounts. The
model itself goes in CLAUDE.md beside the overlay rule it extends.
2026-08-20 22:14:42 -04:00
logan 4ee5b4b473 test(queue): pin the back stack and the mount that was not taken
Nine tests, and the header says which of them reproduce the defect:
three do, and the other six cannot. "The entry is not orphaned" and "a
docked column is not in the stack" are both vacuously true of a build
that pushes no entry at all. That was established by reverting the
source and re-running, not assumed.

The containment assertion is the one worth reading twice. It asks
where the panel *is* rather than whether a menu is clipped, because
CI's Chromium and WebKit both have the Popover API -- so the symptom is
invisible here and a spec asserting "not clipped" is green on the
broken build. `.planning/NOTES.md` states the mechanism.

The rest assert the entry rather than `aria-expanded`, which is the
shell's own bookkeeping and was right throughout the defect: what has
to be true is that one back press closes the queue and the *next* one
navigates.
2026-08-20 22:14:42 -04:00
logan a70a7ed9eb fix(queue): size the queue screen's way out for a thumb
Measured at 424x439: the three header actions were 25x21px. That
matters more than it looks, because with the panel spanning the whole
width the scrim underneath it has no uncovered pixels at all -- so the
close button is the only pointer route out of a full-screen surface,
and it was below the 24x24 floor in one dimension.

Sized only in overlay mode. Inline these sit in a 320px column beside
the content, where a mouse is what reaches them and 44px of header is
44px the queue does not get.
2026-08-20 22:14:41 -04:00
logan de2cb2693a feat(queue): give an overlaid queue a place in the back stack
The queue's pixels were already right. Measured at the reference
device's 424x439, #24's overlay is 424x318 -- `.main-panel`'s rect
exactly -- so the `DETAIL_LOADERS` mount the issue's Direction asks for
would draw the same rectangle in the same place. What was missing was
the navigation model: opening the queue on Artists and pressing back
moved the page *underneath* to Albums and left the queue up, which is a
press that changes something the user cannot see and costs them their
place.

So the queue is a *place* exactly while it is an overlay, and a
*control* while it is a column. A column is a thing the user docked --
back must not undock it and a navigation must not take it away -- and
that reuses #24's computed mode rather than adding a breakpoint, so the
drag-resizable panel width keeps deciding it.

It is in neither `VIEW_TAGS` nor `DETAIL_LOADERS`, because there is
nothing to mount and moving it would cost something. `.main-panel > *`
computes `contain: content` under a `.main-panel` that does too, and
paint containment clips the `position: fixed` a `wa-popup` falls back
to on Chrome 113 (#60) -- so the detail-view mount would have broken
`queue-panel`'s working context menu on the one device this is about.
The panel's ancestry today is paint-free to `body`.

Two details that fail silently otherwise. The entry is unwound from the
panel's `open` attribute in the observer that already ran for
`aria-expanded`, not at each of the four ways out -- without that the
entry is orphaned and the *next* back press is the one that closes the
queue, which is this defect moved one press later. And the navigation
writes neither `dataset.activeView` nor `searchStore.setCurrentView`,
because both describe what is *in* the main panel and the queue covers
that panel without replacing it.

`now-playing-view`'s copy of the button went through the helper too: it
set `open` directly, so on a phone it produced exactly the queue with no
entry behind it that this removes.

Closes #55
2026-08-20 22:14:27 -04:00
logan 880adff12c Merge pull request 'Drop the phone's top bar; search becomes a button and a modal' (#167) from feat/57-drop-the-android-top-bar into main
CI / check (push) Successful in 2m30s
CI / e2e (push) Successful in 8m17s
2026-08-21 00:18:33 +00:00
logan d6f7412e9d docs(shell): the phone has no top bar, and why the modal is a dialog
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m29s
CI / e2e (pull_request) Successful in 8m19s
CLAUDE.md's shell prose said the phone's header "controls shrink or
stand down"; there is no header there now. The search box's section
gains the modal and the four rules behind it, page-header gains the
count as the last thing to yield, and the top-bar-fit section gains
what happens below its own band.

NOTES.md gets the three measured facts, dated: `contain: paint` is why
a Web Awesome popup is clipped on Chrome 113 and why no tier here can
reproduce it, the arithmetic that cost the page header its count at
320px, and the shared long-lived e2e app that makes an absolute
coordinate a hidden assertion about background jobs.
2026-08-20 20:03:28 -04:00
logan 1ab767a317 feat(shell): take the top bar out of the phone's layout
The row is deleted from the grid template below 600px, not the header
hidden. That is 3.25em of a 439 CSS px viewport -- the single biggest
vertical win the reference device has to give, and the reason the issue
asks for the row rather than for a smaller bar.

Each of the five things the bar held has somewhere else to be there:
nav-history is the platform's own back gesture and was already gone from
899 down, the job indicator is <job-band> (#62, which is what this was
blocked on), the search box is a modal opened from the view's own
header, the library filter is Settings -> Libraries, and the wordmark
stays where it is.

Three things are load-bearing.

**The header is visually hidden rather than display: none**, because
that h1 is the document's top-level heading and several pages have no
other one -- page-header renders no h1 when its heading is empty, and
Settings has no page-header at all. Its four controls are display: none
*inside* it, which is what keeps them out of the tab order: a
visually-hidden container is still focusable, and tabbing into a search
box nobody can see is worse than not having one.

**The fit pass stands down**, from the bar's computed position rather
than from a width. With the bar out of flow there is no content box to
measure children against, and a pass that ran would collapse the
wordmark on every resize and report success about a 1px box.

**top-bar-fit.spec.ts keeps 390 and asserts the stronger property.**
"Nothing hangs out of the bar" is trivially true of a bar with no row
and would pass on a build that merely broke it, so what that width asks
now is that the content starts where the row above it ends. Measuring
against the window instead would have been asserting "and no background
job is running", which that spec is not about and cannot arrange.

Closes #57
2026-08-20 20:03:20 -04:00
logan ac8f86eb00 fix(settings): give the library selection a home that is not the top bar
library-filter is the only control in the app that calls
setSelectedLibrary, and the phone already hid it with a comment saying
it was "reachable from the drawer's Settings". It was not: Settings adds,
removes, renames and scans libraries, and does not set the view filter,
which is a different thing -- it decides what Albums, Artists and Genres
show. A phone therefore inherited whatever a desktop session last chose
and could neither change nor see it, which is #24's sentence broken in
the band it was written for.

It is a second *placement* of the same component, not a second control,
and it is at every width rather than below 600px. A phone-only copy is
the cheaper answer and is the fault rather than the fix: "where do I
change which library I am browsing" having two answers by viewport is
exactly what one control in two places avoids.

Closes #148
2026-08-20 20:03:08 -04:00
logan 47bd9ef211 fix(header): let the count yield before an action is clipped
Adding the phone's search button to this header is 43px more than the
row has at 320px, which is a width the app promises and which
header-action-overflow.spec.ts asks about. Measured on Playlists there,
after the fit pass had already collapsed all three actions into "More
actions" and truncated the title to nothing: title 0, count 50, sort
143, search 40, More 38, five 12px gaps and 32px of gutters -- 363 in
320, with the More button ending 27px past the edge. That is an action
clipped, which is the exact defect this pass exists to prevent.

The count is what yields, last, because it is the only item on that row
that is neither an identity nor an action. The title yields first and
may ellipsis away entirely, since the navigation also says which page
you are on; the sort control and the buttons are each the only place
they are said. An empty page says it is empty in its empty state and a
full one is being looked at. With the count gone the header is 304 in
304, and the title comes back to 19px.

It is rendered and hidden with an attribute rather than returned as
`nothing`, for the reason the action buttons are: every pass starts
from all-visible and needs a node to un-hide, or the first 320px window
costs the count for the rest of the session.
2026-08-20 20:03:01 -04:00
logan b801fa533a feat(shell): make search a button and a modal where searching applies
The phone's top bar is about to go, and the search box is the one thing
in it that is an action rather than chrome. It becomes a button in the
row that already says which page you are on, opening a wa-dialog with
the real search box in it.

Three decisions worth the words.

**A wa-dialog, and that is a mechanism rather than a taste.** wa-popup
renders `<div popover="manual">` and feature-detects the Popover API,
falling back to `strategy: "fixed"` where there is none -- which is
Chrome 113, the reference device, since `popover` is Chrome 114. And
`position: fixed` escapes ancestor overflow but not `contain: paint`,
which `.main-panel` carries, so a popup-shaped search panel opened from
a view's header is structurally clipped on that device. `<dialog>` /
`showModal()` is Chrome 37 and uses the real top layer. No tier here can
see the difference -- CI's Chromium and WebKit both have the Popover
API -- so the component test asserts the *mechanism*, a native
`<dialog>` in the tree, rather than the symptom.

**An element, not a PageAction.** Two of the seven searchable views are
detail views with no page-header; they filter on the term and say so in
their own headers. Declaring search as an action would mean seven hosts
each writing it out, which is a second list of searchable views, and it
would put a phone mode for actions inside page-header, which that
component documents its refusal to grow. search-store's own map is the
condition, asked by one component placed three times.

**The modal carries the real search-bar**, so there is still one
debounce, one clear button and one view-scoped placeholder. Escape
closes it and *keeps* the term -- the input treats Escape as "clear the
search", which is right in a header where the box stays on screen and
wrong in a surface whose dismissal would then discard the search.
2026-08-20 20:02:50 -04:00
logan 8879192097 Merge pull request 'Show background jobs in the phone's layout, not a popover' (#166) from feat/62-jobs-as-a-notification into main
CI / check (push) Successful in 2m27s
CI / e2e (push) Successful in 8m14s
2026-08-20 22:32:47 +00:00
logan f76ee96ac4 docs(jobs): the phone's band, and why it is in flow
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m26s
CI / e2e (pull_request) Successful in 8m4s
CLAUDE.md's jobs section said the header indicator is "the one view of
everything at once, from every page"; that is now true on a desktop
only, and the band is the phone's half.

NOTES.md takes the measurement that decided the shape -- an overlay
band at 424x439 is a lid, not a notification -- and the corollary about
which tier can see it: ui-test, tsc, lint and the Go suite all passed
on the broken version, and what failed was three e2e specs that have
nothing to do with jobs. Run the suite, not the spec you wrote.
2026-08-20 18:17:42 -04:00
logan 23f5a0c53a feat(shell): show background jobs in the phone's layout, not a popover
The header indicator is a disclosure anchored to a bar 3.25em tall on a
screen 439 CSS px tall, and it was reported as unreadable behind other
UI. Background work is the one thing a phone should not make you open
something to see, and #57 deletes the bar it hangs from and is blocked
on it having somewhere else to live. Below 600px the indicator stands
down and <job-band> takes over.

It is the existing job-panel at `kinds="*"`, so pause, cancel, Details
and the log come along, and so does applyJobControl.

**It is in the layout, not over it**, and that was measured rather than
assumed. The first version put the panel in notification-host's fixed
band: it renders correctly, sits on top and stays inside the viewport,
and is unusable -- at 424x439 a compact panel showing two jobs is
~216px of a 439px screen, drawn over the content and swallowing every
tap under it. Four e2e specs caught it, and none of them was about
jobs: two phone-shell journeys and the header's action menu, all
failing on clicks the band was intercepting. As a grid row above the
main panel it pushes instead, which is #24's one sentence deciding a
layout question -- a band that hides the app to say the app is busy has
traded the popover's fault for a worse one.

It renders nothing above 600px, from matchMedia rather than a media
query, because that decides whether the element exists: Settings
already holds four job-panels and a fifth answering for every kind is
bottom-nav's "resolved to 2 elements" trap again. index.css keeps it
display:none off the phone for a second reason -- an in-flow grid child
with no named area is auto-placed into one of the shell's rows, which
is what the skip link is absolutely positioned to avoid.

top-bar-fit's 390px case asserted the indicator was up, so that it
could not pass by measuring the idle case under another name. At phone
width it is now deliberately away, so the assertion takes the other
branch of the same rule -- the indicator is hidden, the band has the
row, and the bar still has nothing hanging out of it -- rather than
the width being quietly dropped from the list.

The report's own symptom is deliberately not asserted anywhere: it did
not reproduce in this tier. Measured at 424x439 the popover was neither
clipped nor covered, so a spec claiming a stacking fix would be
asserting something that was never true here. The spec says so.

Closes #62
2026-08-20 18:17:35 -04:00
logan 502b814a65 feat(jobs): let a panel answer for every kind, at either density
Three properties the phone's band needs, added here so it is the same
panel rather than a second job UI -- which is what keeps
`applyJobControl` and its "you will discard hours of downloading"
confirmation in the picture.

`kinds="*"` is every kind, which is what the header indicator was for.
Spelled as a star rather than taken as the meaning of an empty
attribute, because empty is what a typo and a dropped binding both
produce and "show everything" is the wrong thing to do by accident;
empty still shows nothing.

`density` is passed to `job-row`, whose `compact` variant its own
source calls "the popover density" -- which is exactly what the band
replaces. `full` stays the default, so the four settings call sites are
untouched.

`active-only` drops terminal rows. The band is in the layout, so a
finished row there holds the content down after the work is done;
Settings keeps them, because that is where "did the last scan work" is
asked and a finished row there dismisses itself.
2026-08-20 18:17:20 -04:00
logan c19a806298 Merge pull request 'Give the seek bar's interpolation interval one owner' (#165) from fix/53-seek-bar-never-moves into main
CI / check (push) Successful in 2m28s
CI / e2e (push) Successful in 7m58s
2026-08-20 21:31:17 +00:00
logan 67eeb75e7b docs(android): the device can be driven, not just looked at
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m31s
CI / e2e (pull_request) Successful in 7m59s
The runtime call does not go over HTTP on Android — the WebView cannot
deliver a fetch() POST body to shouldInterceptRequest, so v3 routes
runtime calls through the addJavascriptInterface bridge. Two things
follow that cost an hour each before the v3 source was read:
`.playwright/init-events.js` does not transfer to the device (its
outbound half hooks fetch, and a POST to /wails/runtime answers
"missing object value" — which reads like a wrong payload and is the
interceptor getting no body at all), and hooking fetch from an eval is
too late on any platform because the bundle captured its reference at
module scope.

The recipe that does work goes in, along with how to get audio onto the
phone (scoped storage silently swallows a push into
/sdcard/Android/data/<pkg>/files, and the fixtures are 2 seconds long,
which is useless for watching a seek bar) and the permission dialog a
reinstall raises, which looks exactly like the app failing to start.

NOTES.md takes the #53 measurements: that its frontend is byte-identical
to the v0.3.1 the phone carries, that the symptom does not reproduce on
main in four scenarios, and that reverting only backend/player/ to
v0.3.1 reproduces #125 instead — with the shim that makes that a
ten-minute experiment rather than a full checkout.
2026-08-20 17:17:33 -04:00
logan fe1fbefee7 fix(player): give the seek bar's interval one owner
`handleInput()` called `stopProgress()` and mutated no reactive state,
so Lit scheduled no update, `updated()` never ran, and the tail of
`updated()` that restarts the interval never executed. Only a `change`
event or the next backend report could bring it back — so an `input`
that never commits froze the interpolation: a drag cancelled outside
the element, a pointer taken by a scroll, or a touch on the track
treated as a scrub, all ordinary gestures on a phone. While playing the
1 Hz report papered over it within a second; with reports not arriving
it was permanent.

The drag is `@state` now and `updated()` decides whether the interval
runs, so there is one place that knows. `handleChange` no longer starts
it directly for the same reason.

A flag set on `input` can strand, which would turn a stall of up to a
second into a permanent one — the failure this removes. `change` is the
ordinary end; `pointerup`/`pointercancel`/`touchend`/`touchcancel` on
the document are the ends that are not, attached with the drag and
dropped with it, because the pointer is routinely released outside the
element it started in.

The other half is that a report arriving mid-drag used to overwrite
`seekValue` and pull the thumb out from under the finger once a second.
It is skipped while dragging, and its seq is deliberately left
unrecorded so the first report after the drag still counts as fresh.

Three tests, all exercised against the fault: two fail on the old
component, and the third fails if the drag flag is left set — which is
the failure mode the fix introduces and the listeners exist to prevent.
Verified on the device too (Chrome 113): mid-drag the bar holds its
value and ignores reports, and on release it adopts the backend's real
position and resumes ticking.

Closes #164
2026-08-20 17:17:23 -04:00
logan de04339494 Merge pull request 'Android: install and launch the package the APK declares' (#163) from fix/159-android-task-app-id into main
CI / check (push) Skipped
CI / e2e (push) Skipped
Build & publish the Android APK / apk (push) Successful in 1m27s
Build & publish Arch package / arch-package (push) Successful in 2m43s
Attach the desktop build to the release / linux (push) Successful in 57s
Sync Homebrew formula / sync-formula (push) Successful in 6s
2026-08-20 19:46:35 +00:00
logan 998ce75fb6 docs(android): the identity is read back, not declared twice
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m32s
CI / e2e (pull_request) Successful in 8m22s
android-tier.md carried a warning block telling the reader not to use
run:device or deploy-device, and offered a manual sequence instead.
Both are wrong now: the tasks are the way in, and the warning would
read as a live hazard. It becomes a note about what changed, and the
manual sequence stays as the smallest thing that works when you want no
script between you and adb.

"The identity is declared twice" was the section this file had carried
for five phases saying nothing enforced that the two ids agree. It
describes the enforcement now, plus what APP_ID means since it stopped
being a setting it never was.

NOTES.md takes the four measurements: that the uninstall existed only
to cover a missing -r (which is what makes deleting it a fix rather
than a trade), that the emulator tasks installed on a phone, what
reading the id back costs, and the boot-wait race filed as #162.
2026-08-20 14:35:16 -04:00
logan 4b392cb4c4 fix(android): point the emulator script at the built APK's id
The third declaration of the app's identity, and the one #159 did not
cash out in: PKG defaulted to "app.yellowjacket" while
`make android-install` installs whatever is in bin/, which after
`wails3 task android:assemble:apk` is app.yellowjacket.dev. So
android-launch, android-logs and android-smoke addressed a package the
build had not produced, and the certificate-change message named the
wrong id to uninstall -- the release one.

It is derived from bin/yellowjacket.apk the same way the tasks are, so
it follows whichever variant was built last. YJ_ANDROID_PKG still
overrides, and the literal survives only for a tree with no APK yet,
where these commands are asking about whatever is already installed and
there is nothing to read.

cmd_inspect's probe order goes with it: "$PKG.dev" would append a
second suffix to an id that already carries one, so the candidates are
derived from the resolved id in either direction -- debug sibling
first, release second, as before.
2026-08-20 14:35:08 -04:00
logan 8d2109b87e fix(android): install and launch the package the APK declares
The four adb-driven tasks in build/android/Taskfile.yml began with
`adb uninstall {{.APP_ID}}`, where APP_ID defaulted to
"app.yellowjacket" -- the release id. `run` and `run:device` build the
*debug* variant, whose applicationIdSuffix makes it
"app.yellowjacket.dev", so both uninstalled the user's released app,
took the library with it, installed a different package, and then
failed to launch the one they had just removed.

The id is read back from the built APK now (scripts/android-pkgid.sh,
`aapt2 dump packagename`) rather than written down a second time, so
the thing installed and the thing launched agree by construction --
whatever Gradle resolved the applicationId to, suffixes included, is in
the file. An APK it cannot read is a hard failure and never a fallback
to a default; guessing is the bug. APP_ID survives with no default as
an *assertion*: it is checked against the artifact and refused, naming
both, before anything is installed or a target is even chosen.

The uninstall is gone rather than corrected. It was there to make the
bare `install` on the next line work at all -- Android refuses an
install over an existing package without -r -- so `install -r` removes
the reason for it. What is left is the one case an uninstall is really
the remedy, a changed signing certificate, and that is exactly the case
where doing it silently costs the user their library. So it is reported
with the command to run, which is the answer scripts/android-emulator.sh
had already reached for `make android-install`.

And the emulator tasks now say "emulator" to adb. A bare `adb install`
with one device attached picks that device whatever it is, so with a
phone plugged in and no emulator running, the task whose summary reads
"in the Android Emulator" installed on the phone -- the same data loss,
from the task whose name gives no warning. Several matching targets is
an error naming them rather than a silent pick of the first.

Closes #159
2026-08-20 14:34:59 -04:00
logan b741b01cdf Merge pull request 'Android: run main() once per process, not once per activity' (#161) from fix/52-android-activity-recreation-restarts-the-process into main
CI / check (push) Successful in 2m36s
CI / e2e (push) Successful in 8m19s
2026-08-20 17:18:19 +00:00
logan 8a757c9bb4 docs(android): record the lifecycle model and the device check
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m34s
CI / e2e (pull_request) Successful in 8m9s
The lifecycle answer is load-bearing, so CLAUDE.md states it: an
activity is a view onto the process, and main() runs once per process.
The "restore the session or cold-start" question the issue asks for a
decision on is settled by playback rather than by preference -- the
audio lives in the Go process, so a cold start on every recreation
stops the music mid-song, which is the thing the foreground service
exists to prevent.

android-tier.md's build table said "arm64, real device -- unverified,
still" for five phases. It is verified now, on a Light Phone III
(Android 14, arm64-v8a, WebView Chrome 113 at 424x439), and what the
run found is a lifecycle section: how to force an activity recreation
on demand, the three-line logcat signature, why `has died: fg TOP` is
not a memory kill, and the second assertion that surviving does not
imply working.

It also carries the correction that "Don't keep activities" -- the
report's own suggested lever -- does not work on this device at all,
so nobody spends an afternoon on it. A configuration change the
manifest does not declare does, in one line.

And it stops recommending `wails3 task android:run:device`, which
uninstalls the released app and the user's library to install a build
with a different id (#159), in favour of the manual sequence.

NOTES.md carries the measurements, dated: 8 of 8 recreations fatal
before, 5 of 5 survived after, and the note that runs where no
recreation happened are inconclusive rather than passes -- a harness
that does not check for the second bridge init reports those as green
and reads as flakiness.

Refs #52, #159, #160
2026-08-20 13:04:18 -04:00
logan d714bd7090 fix(android): keep the Go app alive when the activity is destroyed
onDestroy called bridge.shutdown(), which is the natural reading of the
callback and is wrong for this app twice over. Android destroys and
recreates an activity without restarting the process, and when the user
really does leave, this app's reason for existing in the background is
that a song is playing -- which is what the mediaPlayback foreground
service holds the process alive for. Either way, tearing the Go side
down here stops the music.

It was harmless only by accident, and that is worth writing down:
nativeShutdown calls App.Quit(), whose Android destroy() is an empty
method, and Run()'s deferred shutdownServices() cannot fire because
platformRun is `select{}` and never returns. So **no ServiceShutdown has
ever run on Android**. Removing the call changes nothing today; it stops
the day someone implements destroy() from silently killing playback on a
rotation. There is no callback for the process going away -- Android
just kills it -- so durability here is the persist writers, which submit
on every mutation rather than at exit.

WailsBridge.initialize gains the comment for the trap next to it.
Making `initialized` static is the obvious reading of "initialise once
per process" and is wrong: nativeInit also stores the global JNI
reference to *this* bridge, so skipping it leaves Go executing
JavaScript against the destroyed activity's WebView, and the app opens,
renders, and never receives another backend event. The half that must
not repeat is latched in Go instead -- which is also where the damage
was, and the only place that can see it.

Refs #52
2026-08-20 13:04:04 -04:00
logan d64b069053 fix(android): run main() once per process, not once per activity
Wails' Android entry point is `nativeInit`, which `MainActivity.onCreate`
calls, and it runs `go mainFunc()` every time. Android destroys and
recreates an activity **without restarting the process** -- a
configuration change the manifest does not declare, memory pressure, or
every background under "Don't keep activities" -- so main() ran again on
a live app.

Every path out of that is fatal. `application.New` returns the existing
app rather than building a second one, `app.Run()` then refuses because
`a.starting` is still true behind Android's `select{}`, and the
`os.Exit(1)` under that error takes the **first**, healthy app down with
it: its database, its queue, and the audio a mediaPlayback foreground
service is holding the process alive to play. ActivityManager restarts
the app, which is the report.

Measured on a Light Phone III (Android 14, arm64): conditional on the
activity actually being recreated, the process died 8 times out of 8.
The runs that "passed" were runs where no recreation happened, which is
the whole of the report's "sometimes". After this, 5/5 recreations
survive on one pid, plus six background/foreground cycles.

It never left evidence because os.Exit is not a crash: no tombstone, no
AndroidRuntime stack, nothing in `logcat -b crash`, and the slog line
naming the error went to /dev/null with the rest of fd 1.

The latch is first in main() because everything below it -- above all
NewYellowJacketApp, which opens the SQLite database -- is work that must
not happen twice in one process. It is inert off Android.

Returning early is not a degraded mode: nativeInit has already
re-pointed the JNI reference at the new bridge, so the recreated
WebView talks to the app that is still running, with its queue and
playback position intact. Verified by hooking dispatchWailsEvent on the
recreated page: IndexStatusChanged, JobsChanged, android:storageAccess.

No tier here runs main() on Android, so the guard is a source sweep, in
the spirit of TestNoDirectRuntimeEmits. The failure it exists for is not
the latch being deleted -- that is loud -- but a line creeping in above
it.

Closes #52
2026-08-20 13:03:51 -04:00
logan 5490b2423e Merge pull request 'Put the phone Now Playing button above the artwork' (#158) from fix/150-expand-button-under-the-art into main
CI / check (push) Successful in 2m29s
CI / e2e (push) Successful in 8m3s
The button tied with the cover placeholder on paint order and lost, so
it did not work for any track without artwork.

Closes #150
2026-08-20 05:47:46 +00:00
logan ffc9490a32 fix(player): put the phone's Now Playing button above the artwork
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m27s
CI / e2e (pull_request) Successful in 8m1s
`.expand` is the phone's only route into the full-screen now-playing
view. It is absolutely positioned with `z-index: auto` over
`.cover-art`, which is a *later* sibling with the same z-index, so the
two tie on paint order and the later one wins. An `<img>` costs nothing
there; a track with no artwork renders a placeholder `wa-icon`, which
takes every click aimed at the button underneath it.

So the control did not work whenever the current song had no cover, on
the one platform that has no other way in. Nothing to do with the
fixture: any library has untagged files.

Measured at 390px with elementFromPoint at the button's centre — the
icon with a placeholder, the button with an image, and the button
either way with the z-index. Chosen over `pointer-events: none` on the
art, which would take the cover preview's mouseenter with it, and over
reordering the DOM, which leaves the same tie to be won by the same
accident in the other direction.

This was filed as an e2e flake, and the diagnosis was wrong: it failed
on both engines three times across two branches that could not have
caused it, and passed on re-run each time, because the spec starts the
*first* row of the track list and which track that is depends on the
order the scan inserted rows — the same root cause as #156. The new
spec picks a track *for* having no artwork, and asserts the placeholder
is rendered rather than assuming it, so it cannot quietly go back to
measuring the easy case.

Two things it has to get right, both already documented traps: the
track must be the 90-second one, since a 2-second one finishes before
the assertions run; and `library.Track.CoverArt` is empty for all 31
fixture rows, so "the first track with no cover art" selects nothing in
particular and picked a short one.

Verified by mutation: without the z-index the new spec fails on the
click in 30s, and the pre-existing one beside it passes, which is
exactly how this survived.

Closes #150
2026-08-20 01:33:35 -04:00
logan dc6625d33a Merge pull request 'Centre the transport, and show the volume inline' (#155) from feat/42-inline-volume-and-centred-transport into main
CI / check (push) Successful in 2m28s
CI / e2e (push) Successful in 8m21s
Three columns whose outer two match, so the middle is centred; the
volume moves into the bar as a slider, with the popup as a setting.

Closes #23
Closes #42
2026-08-20 05:22:03 +00:00
logan dc8db159f9 feat(player): centre the transport and show the volume inline
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m32s
CI / e2e (pull_request) Successful in 8m18s
Two issues over one bar, because they are one relayout. #42's own
findings say so: giving wa-slider a label grows it 6px to 14px and
moves the transport, which is #23's subject, so doing them in sequence
means measuring the bar twice and throwing the first set away.

The bar was `320px 1fr auto`, so the transport sat in the middle of
what the metadata and the queue button did not use — its centre was
~140px right of the window's at every width. The outer two tracks are
the same expression now, so the middle is centred by construction.

The side width is the metadata's, capped at a quarter of the bar, and
the cap was measured as a regression before it was a decision:
reserving the full `--now-playing-width` on both sides is perfectly
centred and takes the seek bar's track from 257px to 61px at 800px, and
to 0 at 200% text. The control you drag was paying for the symmetry.
With the cap it is 246, which is parity. It is a `min()` rather than a
breakpoint because that variable is user state — the metadata has a
drag handle — and tying both sides to it is also what keeps dragging
meaningful; a plain `1fr … 1fr` centres just as well and silently makes
the handle a no-op.

The volume moved out of `audio-player` into the bar because the
transport column has to hold the transport and nothing else, and it
joins the queue button in one cell rather than a second column, since
the centring compares columns.

It is a slider by default and a popup by setting. The stored flag names
the *popup*, which is this config's polarity rule — the zero value has
to be the intended answer, so an existing config.toml gets the new
default with no migration. Inline, the icon is the mute toggle and is
named after that action rather than the state, because with the slider
beside it there is nothing to disclose; the component tier now covers
both presentations rather than whichever is default.

Three nested rules in this block began with a bare element selector,
which Chrome 120 relaxed and the phone's Chrome 113 **silently drops** —
including the ellipsis on the bar's own title and artist, which has
therefore never truncated on the device. They are `&`-prefixed now.
Filed as #154 for the class and for a check.

`bottom-bar.spec.ts` pins both halves separately on purpose: an
uncapped build is perfectly centred and fails only the seek-bar width,
so a spec asserting centring alone would have passed the regression
above. Both were verified by mutation.

Closes #23
Closes #42
2026-08-20 00:40:52 -04:00
logan 86e7444603 Merge pull request (#157) from fix/156-queue-selection-fixture-order into main
CI / check (push) Successful in 2m26s
CI / e2e (push) Successful in 7m53s
The spec asked for the first few tracks and needed one with an album.

Closes #156
2026-08-20 04:35:09 +00:00
logan 2365806d18 fix(e2e): ask the fixture for a track that can navigate
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m29s
CI / e2e (pull_request) Successful in 8m4s
`queue-selection`'s name-click test failed on main on both engines,
having passed in its own PR and in two consecutive local suite runs. I
added it in #152; this is my defect and it had main red.

It staged a queue from the first few rows of `GetTracks(0)` and clicked
a track *name*, which `explore-link` routes to that track's **album**
page. Four tracks in the fixture library have no album — `01 Tone A`,
`02 Tone B`, `Title Only`, `no-tags-at-all` — and a name with nothing
to route to renders as plain text rather than as a link.

Which tracks arrive first is `audio_files.id` order, which is the order
the *scan* inserted them, which depends on concurrency and directory
traversal. Locally the first eight are all from two proper albums; CI
rebuilds its seed with a real scan and got a different eight. The
fixture had a requirement it did not state, so the queue now asks for
tracks that have an album.

A loose locator is what turned that into a mystery rather than a
message. The row was located with `.explore-link` and `first()`, and a
row has two — title and artist. With the title as plain text, `first()`
silently resolved to the *artist* link, so the click went somewhere
real and the assertion was about a destination the test had never
exercised. It names `.track-title .explore-link` now.

Reproduced before fixing, by staging the CI condition deliberately: a
no-album track at row 2 fails the test in 30s on this machine, and the
filtered fixture passes in 752ms.

The Direction's sweep found one other spec slicing `GetTracks` —
`queue-reorder`, which asserts on order alone and needs no property of
the tracks it gets, so it is left as it is.

Closes #156
2026-08-20 00:23:31 -04:00
logan 7d348f243a Merge pull request (#153) from fix/151-fuse-the-scroll-guard-and-the-write into main
CI / check (push) Successful in 2m35s
CI / e2e (push) Failing after 8m41s
Removes the window between the scroll guard and the write it guards.

Closes #151
2026-08-20 03:58:04 +00:00
logan ddd04623f7 test(e2e): fuse the scroll guard and the write it guards
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m29s
CI / e2e (pull_request) Successful in 8m3s
`album-dropdown`'s "can be scrolled" failed twice over two sessions with
`Expected 80, Received 10`, both times on a branch that could not have
caused it. #133 strengthened the guard from "scrollable at all" to "has
the range this assertion needs", which was necessary and cannot be
sufficient: the guard and the write are separate round trips, so the
page re-lays-out between them.

Measured every frame across the resize, three runs: the range goes 0 →
**88** at 1ms → 330 settled by 8-14ms. 88 satisfies a guard asking for
80 while the grid is still a pass from done, so the guard is capable of
passing on a layout that is about to move. Under full-suite load the
transient is worse — the observed failures read 10 — which is why this
shows up on the second run of a suite and not in ten consecutive runs
of the file alone (0/10 before the change and after it; isolation is
not where this lives).

So the probe sets `scrollTop` and returns what it reads back, in one
page-side call, and the poll retries that. The assertion is now about
what the grid did rather than about what it was ready to do, and there
is no window between deciding and doing for anything to happen in.

#133's own last line asked for the other viewport-shrinking specs to be
swept for the same shape. One had it: `layout-overflow`'s sidebar probe
already fused its scroll and its measurement into one evaluate but ran
it once, so it read whatever the sidebar happened to be doing after the
resize. It is polled now — safe to repeat, because scrolling to the
bottom twice is scrolling to the bottom.

Closes #151
2026-08-19 23:37:41 -04:00
logan 9ad1477b1e Merge pull request 'Pin the queue panel'''s mouse model' (#152) from fix/43-queue-panel-selection into main
CI / check (push) Successful in 2m30s
CI / e2e (push) Successful in 8m0s
Pins the queue panel's single-click select, ctrl/shift extend and
double-click play, none of which were covered in either tier.

Closes #43
2026-08-20 03:14:30 +00:00
logan 70ab3ddf94 docs: record two measurements from the queue selection work
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m41s
CI / e2e (pull_request) Successful in 8m1s
The first is a second instance of a rule CLAUDE.md already states, with
numbers: a virtualized list can be repainting for a reason you are about
to delete, and here there are two such reasons — so removing either
alone changes nothing observable, and removing both leaves the highlight
seconds late rather than absent. That is the shape a poll cannot see,
which is the general lesson worth keeping.

The second is the hit-scan, because it stopped a wrong fix: the queue
panel is 12% link and the track list 21%, which is the opposite of the
assumption the fix was being built on.
2026-08-19 23:00:03 -04:00
logan 4f7529c315 test(queue): pin the panel's mouse model, and bound the highlight
Single click selects, ctrl and shift extend, double click plays from
that row — all four already worked, and nothing in either tier pinned
any of them, which is why the report could be made and could not be
settled. `queue-reorder.spec.ts` covers the keyboard and
`queue-overlay.spec.ts` the panel's mode; the pointer path had no
coverage at all, so "selection is broken here" and "selection is fine
here" were equally consistent with a green suite.

Measured with real mouse events rather than dispatched ones, because a
synthetic click aimed at the row bypasses the only thing that could be
swallowing it: click row 1 selects 1, ctrl+click 4 gives 1 and 4,
shift+click 7 extends to 1,4,5,6,7, a plain click collapses to one, and
a double click on row 3 leaves the backend playing row 3.

The three candidates the issue lists are all answered. The repaint was
already correct, and already correct on the day the issue was filed.
`resolveTrackIndexFromEvent` reads data-index, and DOM order matches
data order. A row control does swallow the click — `explore-link` stops
propagation on purpose, so a click on a name navigates and selects
nothing — but a hit-scan across a row makes the queue 12% link against
the track list's 21%, so the panel called broken is *less* covered by
links than the list called correct. That measurement killed the fix
this started out as.

Two traps are written into the spec because both faked a defect while
measuring. Fixture tracks are 2 seconds, so "double click row 3" read a
moment later reports whatever auto-advance moved on to — recorded twice
as an off-by-one that is not one, which is what `LONG_TRACK` exists
for. And the selection assertions are bounded at 500ms rather than
polled with the default 5s: `queue-panel` repaints two ways, the
explicit `requestUpdate()` and a per-render `keyFunction` arrow, and
with *both* removed the highlight still arrives — at 134ms, 3.9s and
5.8s against 5-17ms healthy. Four seconds is indistinguishable from
broken to a user and invisible to a generous poll.

Mutation-tested rather than trusted: `playAtIndex(index + 1)` fails both
double-click tests, treating every click as ctrl+click fails both
selection tests, and removing both repaint mechanisms fails all three
selection tests — the last only because of the bound.

Closes #43
2026-08-19 22:59:55 -04:00
logan bb21072386 Merge pull request 'The top bar decides what it can afford to show' (#149) from fix/143-top-bar-fits-its-window into main
CI / check (push) Successful in 2m34s
CI / e2e (push) Successful in 7m59s
Fits the top bar to its window by measuring it, at every supported
width and with work in flight.

Closes #143
2026-08-20 02:11:54 +00:00
logan ead1354e4d docs: record how the top bar decides what to drop
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m35s
CI / e2e (pull_request) Successful in 8m38s
The shell section already states the three size bands and the promise
that no action is unreachable at any of them; how the header chooses
what to give up belongs beside them, because the promise is what
decides it.

Two measured facts go to NOTES.md rather than here. `scrollWidth`
counts a box's left padding and not its right, so the obvious fit
predicate under-reports by a gutter and passed on a bar with a control
jammed against the window edge. And the overflow is 11px idle and 262px
while working, which is why the issue was filed twice with different
numbers — a seeded app that has finished scanning is idle by the time
you resize it.

Closes #143
2026-08-19 21:35:12 -04:00
logan ae85df0dad fix(shell): give the top bar a measured fit at every width
The bar was 611px inside a 600px viewport at the bottom of the Compact
band, and 862px while a scan with a real library's title ran, because
`job-indicator` is `hidden` when idle and 235px wide when it is not.
`body` is `overflow-x: auto`, so a user got a horizontal scrollbar on a
shell #24 promised would not need one — and the band is 600 to 899 with
work in flight, not the 600 to 610 the idle measurement suggested.

`services/top-bar-fit.ts` is `page-header`'s treatment one bar up: a
ResizeObserver, every pass starting from all-visible, hiding the
lowest-priority child until it fits. Measured rather than breakpointed
because three of the five children are as wide as their content — the
library filter by the longest library name, the indicator by the
running job's title, the search box by its view-scoped placeholder — so
any width picked is right for one library, one job and one view.

What yields is decided by #24's own sentence, which rules out the two
cheapest candidates in the Direction. Hiding the library filter takes
away an action, since it is the only control in the app that selects a
library (filed as #148, which is the phone already doing it), and
collapsing search to an icon is #57's, which is blocked behind #62. So
the wordmark yields first — a brand the window title bar repeats, and
visually-hidden rather than `display: none` because that h1 is the
document's heading — and then the indicator's label, leaving the ring,
which the component already does below 600px and whose live region
announces the state either way.

"Fits" is the children against the content box, not `scrollWidth`
against `clientWidth`: `scrollWidth` counts the left padding and not
the right, so the first version read 700/700 with the indicator sitting
in the whole right gutter. And the bar does not resize when a job
starts, which is the case this is for, so every child is observed too.

Pinned before it was fixed, as the issue asks. On the unfixed build the
new spec fails at 600 idle and at 600, 800 and 900 with a job, and
passes at 390, 899 and 1440; `layout-overflow.spec.ts` gains 600x600
and failed there. That spec asserts on the *shell*, so it was green
throughout this defect — the per-child measurement is #69's lesson, and
it is what caught the gutter case above.

Closes #143
2026-08-19 21:35:03 -04:00
logan 6e7e349e63 Merge pull request 'Fold the Jobs tab into the places the work is started' (#147) from feat/27-jobs-into-settings into main
CI / check (push) Successful in 2m34s
CI / e2e (push) Successful in 7m25s
2026-08-20 01:02:41 +00:00
logan f9ba9a87d7 docs: note that CI's two engines share one app
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m31s
CI / e2e (pull_request) Successful in 7m32s
Which is why a shared-selector fault can be green on chromium and red
on webkit in the same run, and how to reproduce it locally.
2026-08-19 20:44:16 -04:00
logan e4efec6f0c fix(e2e): the third spec that located a disclosure by class
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Canceled after 8s
CI / e2e (pull_request) Canceled after 0s
`config-section .header` is ambiguous once a section holds a job, and
`failure-voice.spec.ts` was the one I did not grep for. It passed on
chromium and failed on webkit in the same CI run, which is the tell:
the two engines share one app, so the second one runs with a finished
scan the first one left behind.

The NOTES entry already says a class name is not a selector's contract;
this is the same fix, by role and name.
2026-08-19 20:44:02 -04:00
logan 99f355b2fc docs: record where background jobs went, and two traps
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m37s
CI / e2e (pull_request) Failing after 7m35s
The retired-destination note sits beside #25's storage paragraph
because it is the exception to it: an absent key is free, a value is
not.

`config-section .header` resolving to two elements is in NOTES because
it cannot be reproduced by opening Settings and looking -- the drawer
only exists once a job does.
2026-08-19 20:27:55 -04:00
logan c79d4d47a3 test: cover jobs in Settings, and unpick two shared selectors
The spec worth having is not that the tab is gone -- that is one line
of a table -- but that nothing became unreachable when it went. #24
promises that no action is ever unreachable at any supported size, and
deleting a destination is exactly the change that quietly breaks it.

Two existing selectors had to give. `config-section .header` is
ambiguous the moment a section holds a job, because `job-details-drawer`
carries that class too -- so `settings-reach.spec.ts` locates a
disclosure by role and name instead. And `page-header`'s and
`offline-icons`'s view lists lose an entry each.

Closes #27
2026-08-19 20:27:48 -04:00
logan 8efed2dd2b refactor(shell): retire the Jobs destination
Nothing it carried is gone -- the two commits before this put all of it
somewhere the work is already being done.

A retired destination is the one shape #25's storage decision does not
make free. A visibility entry is a map key and an unknown key is
dropped on load; a launch page is a *value*, and an unknown one fails
validation -- which on the load path means the app refuses to start for
whoever had Jobs selected. `RetiredViews` is that list, read by
`ApplyDefaults`, which treats a retired name as a zero value. An
unknown-but-not-retired name still errors, because that is a typo and
saying so is the useful answer.
2026-08-19 20:27:40 -04:00
logan 12af6ec1f7 feat(settings): scan from Settings, and watch every job in place
Scanning goes back where libraries are managed -- the Jobs tab's own
comment said the per-library controls had been taken out of Settings to
build it. "Scan All" and "Full Rescan" join "Add Library", "Scan now"
joins the per-library overflow menu beside Rename and Remove, and a
library being scanned says so where its track count goes.

Each surface then gets the job rows for its own kind: scans under
Libraries, index and enrichment under Search Index, downloads under the
download clients, and the autotag apply in the Autotag view -- where
stopping a run matters most, since applying rewrites tags on disk and
that view had no cancel at all.

The autotag panel shares the header's grid row through a wrapper rather
than taking a third row: it is display:none while nothing is applying,
which is nearly always, and a grid row would still spend the
container's gap on it.

The Launch Page select is derived from `VIEW_META` instead of listing
its ten options, since removing a destination is exactly the change
that leaves two hand-written copies disagreeing.
2026-08-19 20:27:33 -04:00
logan f3d1ae1c8c feat(jobs): show background work where the work is started
Reading the app before moving anything turned up that four of the five
job kinds already have a home showing their work: Settings → Search
Index draws per-tier index progress, `downloads-view` draws every
download's lifecycle state, `autotag-view` draws its own apply ring,
and only `library-scan` had nowhere but the Jobs tab. What none of the
four had is the *generic* affordances — pause, cancel, Details, the
log, and a finished job you can dismiss.

So this is a panel embedded beside each of them rather than one
"Background jobs" section in Settings, which would have been the tab
again under another name.

Three rules in it. The controls are `applyJobControl`, not a
reimplementation, which is what keeps the index build's "you will
discard hours of downloading" confirmation alive across the move. A
panel with nothing to say is `hidden` rather than empty, host margin
included, because an idle panel in four places is four pieces of
furniture describing an absence. And there is no "Clear finished":
`ClearFinishedJobs` is global, so a Clear under Libraries would discard
the index build's history too.

`JobKind` also gains `download`, which the backend has had all along.
2026-08-19 20:27:22 -04:00
logan 5af545e38d Merge pull request 'Configurable sidebar destinations, Downloads gated on a client, Autotag off by default' (#145) from feat/25-configurable-sidebar-tabs into main
CI / check (push) Successful in 2m33s
CI / e2e (push) Successful in 7m1s
2026-08-19 23:46:23 +00:00
logan 9da3967dd9 docs: record that destinations are configuration
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m36s
CI / e2e (pull_request) Successful in 7m5s
Beside the three navigation paragraphs, since it is the fourth thing
the shell states about where the user can go.

Two notes are measured facts rather than design: a default expressed as
an *absent key* survives an existing seed, where one expressed as a zero
value does not; and a spec can no longer assume a destination has a nav
item.
2026-08-19 19:34:00 -04:00
logan c8d94a8203 test(e2e): cover configurable destinations; stop assuming a nav item
The assertions are about the navigation, not about the setting: "the
config was saved" is the plumbing, and #69 and #72 both shipped green
under specs that measured exactly that.

Four existing specs reached a view by clicking its nav item, which since
this change is not guaranteed to exist -- Autotag is hidden by default
and Downloads is absent without a download client -- so they timed out
waiting for a locator that will never resolve. `navigateTo` dispatches
the app's own `navigate` event, which is what every nav item, card and
detail view dispatches, so it is the mechanism rather than a test-only
door. Click the item when the nav is the subject.

Closes #25
2026-08-19 19:33:56 -04:00
logan 43d78a731a feat(shell): draw only the destinations the user kept
The navigation reads the resolved map from the backend rather than
holding a copy of the defaults, which would be the copy that shipped in
the binary rather than the one being edited.

Hiding takes away the nav item and nothing else: `navigate` still
resolves a hidden view, which detail views and the launch page depend
on. No special case was needed for the highlight, because #72 moved
that onto `active-view-store` -- the sidebar asks `isActive(id)` per
*rendered* item, so a hidden view lights nothing exactly as a detail
view does.

Downloads is gated at the nav on `downloadStore.available` rather than
in the config, so switching it on in Settings still means what it says
once a client exists, and the tab appears without a restart. `available`
is false until the providers have loaded, which makes the item appear on
a fresh launch rather than appearing and then vanishing.

The tab bar honours the toggles too, and the reason is local rather than
a general rule about phones: "More" opens the *same* `<app-sidebar>`,
which filters, so an unfiltered bar would contradict its own drawer one
tap away. Which four tabs is still plan 016's subset; this only removes
from it, and "More" is never filtered.

`services/view-meta.ts` is the destination list, on `shortcut-meta.ts`'s
pattern, because Settings is now a second reader of the same labels in
the same order.

Two existing sidebar tests had to say which world they describe: eleven
destinations now assumes a configured download client.
2026-08-19 19:33:44 -04:00
logan a3926704cc feat(config): make the shell's destinations configurable
The sidebar's eleven entries are more than most libraries need, and
Autotag rewrites tags on disk, which is not what a fresh install should
be one click from.

Stored as a map keyed by view id, where an absent key means that view's
own default. A `HiddenViews []string` cannot express "Autotag off by
default" -- its zero value is *hide nothing* -- and a boolean per view
turns a view that later stops existing into stored garbage. With a map,
an unknown key is dropped on load, a view added later gets its own
default, and no install needs migrating in either direction. Same
polarity as AllowMeteredCatalogDownload: the zero value is the intended
answer.

`Views` is also what DefaultPage now validates against, so which views
exist and which may be the launch page are one list rather than two.

Two states the user could not get out of are refused rather than
allowed: Settings is never hideable, and the launch page is not
hideable while it is the launch page. Both refuse in the *config*, not
in the UI, because `config.toml` is hand-editable. On load the launch
page is instead un-hidden -- there is nobody to tell, and the honest
reading of "my launch page is Autotag" is that this user wants Autotag,
not that their launch page should be silently reset.
2026-08-19 19:33:32 -04:00
logan ea53d4f15b Merge pull request 'Global back and forward, and the launch entry that made Back a lie' (#144) from feat/6-global-back-forward into main
CI / check (push) Successful in 2m23s
CI / e2e (push) Successful in 7m3s
The stack was always global; the affordance was not. Adds the control, and fixes the second launch navigation that left a fresh session one entry deep.

Closes #6
Closes #142
2026-08-19 22:27:39 +00:00
logan ea16e07c46 docs: record the back/forward chrome and the two launch navigations
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m31s
CI / e2e (pull_request) Successful in 7m4s
Both belong beside the rules that already keep the history stack
honest: the depth counting, because forward is the case one counter
cannot express, and the second launch navigation, because it is what
silently defeated the first rule on the list.
2026-08-19 18:09:10 -04:00
logan 4f47c85208 test(e2e): cover global back/forward, including the launch entry
Five journeys the control has to get right: nothing offered at the root
in either direction, walking both ways with the availability changing
as it goes, reaching the detail view a tab click left behind (which is
the report), the forward list being dropped when the user navigates
from the middle, and the control standing down below 900px.

The first fails on the build before the launch entry was fixed --
enabled, and doing nothing when pressed. It is the assertion that pins
that defect, which otherwise has no visible symptom on desktop at all.
2026-08-19 18:09:10 -04:00
logan 603728a3fb fix(shell): let the landing page replace the launch entry
The app navigates twice on startup and both are deliberate: the eager
`navigate -> home` that paints without waiting for the backend, and the
configured page `GetDefaultPage()` resolves to a moment later. Only the
first replaced the launch entry, so the second stacked on it and a
fresh session was already one entry deep before the user had touched
anything.

The first back press therefore replayed home over home. On desktop that
was invisible until this branch drew a Back button, which rendered live
at the root and did nothing; on Android `webView.canGoBack()` was true,
so the press that should have exited the app was swallowed -- the exact
fault the replace-the-launch-entry rule exists to prevent, defeated by
there being two launch navigations rather than one.

Guarded on still being at index 0 rather than on a flag: that call is
asynchronous and the user can navigate while it is in flight, so past
the root this is an ordinary navigation and a slow answer cannot
overwrite an entry they made.

Closes #142
2026-08-19 18:09:10 -04:00
logan 018d857746 feat(shell): global back and forward in the top bar
The history stack has been global since the Android back gesture landed
-- every navigation is an entry and `popstate` restores any of them in
either direction. What the report describes as "back is tab-scoped" is
that the only way back was a detail view's own button, which leaves the
screen with the view it belongs to: click over to Tracks and the album
you were reading is still one entry away with nothing on screen saying
so.

`<nav-history>` is that affordance, plus `nav.back` / `nav.forward` on
Alt+Left / Alt+Right -- the browser's own combination, and clear of the
bare arrows that seek, since a binding matches on its full canonical
string.

Forward is not back negated, which is why the old `pushedEntries`
counter is gone rather than extended: `popstate` carries no direction
and fires identically both ways, so one counter decremented on every
pop reads a forward as a second back. Each entry carries its index and
the shell keeps the current one and a high-water mark, which also
survives a jump of more than one.

The buttons dispatch the events the rest of the app already dispatches
rather than calling `history` themselves -- the shell owns the guard
that stops a press at the root leaving the app, and a second caller
reaching for history is how the old `navStack` came to disagree with
the platform.

Below 900px the control stands down: the top bar is what runs out of
room first below that, and nothing becomes unreachable -- the shortcuts
are global at every width and the phone has the platform's gesture.

Closes #6
2026-08-19 18:08:55 -04:00
logan a7ac2b4a3e Merge pull request 'Publish the active view from the shell, so both navs survive the back path' (#141) from fix/72-active-view-broadcast into main
CI / check (push) Successful in 2m29s
CI / e2e (push) Successful in 6m59s
The shell knew which view was active and never said so on the back path, so both navs highlighted the view just left.

Closes #72
2026-08-19 21:10:54 +00:00
logan d347809e6e docs: record the one statement of which view is active
CI / e2e (push) Skipped
CI / check (push) Skipped
CI / check (pull_request) Successful in 2m29s
CI / e2e (pull_request) Successful in 6m53s
It belongs beside the two rules that already keep the history stack and
the in-app back buttons agreeing, and for the same reason: a second
component-local idea of where the user is, is how they came to
disagree.
2026-08-19 17:00:39 -04:00
logan a5ffcc22e3 test(e2e): assert the nav highlight, not the shell's own bookkeeping
`back-navigation.spec.ts` covered exactly the journeys #72 breaks and
was green throughout it, because every assertion in it was
`data-active-view` — which the shell sets on every path including the
back one, and which was the one thing already correct. The same trap
`layout-overflow.spec.ts` set for #69: a spec named for the behaviour,
measuring the plumbing.

The assertions go here rather than in a second file, or the first would
carry on passing vacuously. They are `aria-current="page"` through
`getByRole`, which is the accessible fact — `.active` is a class and
could be restyled without breaking anything real — and the role query
resolves to whichever nav is in the accessibility tree at that
viewport, so one helper covers the sidebar and the tab bar.

Three of the four fail on the build before the fix. The fourth, the
parent staying lit while a detail view is open, passed by accident and
says so.
2026-08-19 17:00:39 -04:00
logan f18691560d fix(shell): publish the active view, so both navs follow the back path
The nav components learned where the user was from the `navigate`
CustomEvent, which only the outbound path dispatches: `popstate` calls
`handleNavigate()` directly. So a back-navigation left both of them
highlighting the view just left — desktop included, at any width, on
any back across two primary views. Opening a detail view was the same
cause wearing a different symptom: `app-sidebar` guarded on its own
item list and kept its highlight, `bottom-nav` did not and lit nothing.

It cannot be fixed by re-dispatching `navigate` — `index.ts` is that
event's document listener, so that is an infinite loop, and "please go
to X" is not the statement being made. `activeViewStore` is the shell
saying "the active view is now X", once per navigation, `popstate`
included; both navs read it through a controller and hold no
`activeView` of their own.

A store rather than an event because a component that mounts *after* a
navigation still has to know: `bottom-nav`'s drawer builds its
`app-sidebar` on open, and that copy had heard nothing at all, so the
drawer opened on Home from any page in the app.

Closes #72
2026-08-19 17:00:39 -04:00
logan c84a9069ef Merge pull request 'Collapse the page header actions that do not fit, instead of clipping them' (#136) from fix/69-page-header-action-overflow into main
CI / check (push) Successful in 2m33s
CI / e2e (push) Successful in 6m53s
Closes #69
2026-08-19 19:29:15 +00:00
logan f967916550 fix(page-header): collapse the actions that do not fit into a menu
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m36s
CI / e2e (pull_request) Successful in 7m17s
Playlists slotted three buttons totalling 390px into a header that gets
700px at 900x600, so "New Smart Playlist" rendered 114 of its 162px
with the queue closed, and 158 of 162 at the 800x600 enforced minimum.
On a phone none of the three could be reached at all, which is what the
Android report said. Plan 018's size matrix promises the opposite: no
action is ever unreachable at any supported size.

The header could not fix that for slotted markup, and that is a fact
about the API rather than an effort estimate — a component cannot move
another component's light-DOM children into a dropdown and keep their
behaviour, and arbitrary markup offers nothing generic to render as a
menu item. So a host passes `PageAction[]` and the header chooses the
rendering; the slot survives for markup a data list cannot express, at
the stated cost that a slotted action does not collapse.

All three hosts that slot actions migrated, which also normalises the
plain-<button>/<wa-button> split between them onto one shape the header
styles — and lets it measure a button that has already upgraded, rather
than a wa-button whose shadow DOM arrives in its own first update.

Four things in it are load-bearing:

- Every measuring pass starts from all-visible, so the collapsed set is
  a pure function of the current width and an action comes back when
  the window grows. It flips `hidden` imperatively rather than
  re-rendering between steps, or the intermediate state paints and the
  fix flashes the overflow it exists to prevent.
- "Fits" means nothing is clipped, not that the header does not
  overflow. Once the title can ellipsis it absorbs the pressure and
  scrollWidth reports a perfect fit while the heading reads "Playlis…"
  — this bug moved from the button to the title, and invisible to the
  same measurement that missed it the first time.
- New Playlist has the highest priority because it is the drop target
  and a closed menu cannot be one. `PageAction.drop` therefore carries
  the host's own handlers; the affordance is absent from the overflow
  rather than approximated there.
- The overflow trigger is a named button with aria-expanded and an
  aria-controls naming a panel that is always in the DOM, and the
  keyboard model is the shared `MenuKeyboard`.

`layout-overflow.spec.ts` passes on the broken build — it asserts the
shell needs no sideways scrolling, and clipping inside a component is
invisible to it, which is why this defect survived a spec named for it.
The new spec measures each button against its own header at four
viewports and asserts buttons plus menu account for every declared
action, without which it would pass vacuously on a build rendering none.

Closes #69
2026-08-19 15:08:57 -04:00
logan 3fa7c7734b docs: record the page-header actions rule, and complete plan 018
The `page-header` paragraph already stated "the header asks for a sort,
it does not perform one"; actions now follow the same division and it
belongs beside it — the header decides what fits, the host decides what
happens.

Plan 018 moves to completed/ because #69 was the last thing it owed:
its size matrix promised "no action is ever unreachable at any
supported size" and the residual 114/162px clip was that promise
outstanding. Its recap also corrects a claim the plan made — the queue
and the actions were not the only two things competing for the header's
width, since every child of that flex row was flex-shrink: 0 and the
actions come last.
2026-08-19 15:08:57 -04:00
logan cceeb40b16 Merge pull request 'Six quick fixes off the tracker: tooling, a latent index bug, and two touch affordances' (#139) from fix/quick-wins-batch into main
CI / check (push) Successful in 2m34s
CI / e2e (push) Successful in 6m44s
Closes #130
Closes #131
Closes #119
Closes #118
Closes #68
Closes #61
2026-08-19 19:08:46 +00:00
yonlu 2926ecd4b4 docs(notes): record that no test tier can see a hover media query
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 3m2s
CI / e2e (pull_request) Successful in 6m33s
Both browser tiers are blind to `(hover: hover)` gating, in different
ways and without failing: CDP media emulation does not reach ui-test's
iframe, and e2e's phone specs reach phone width with setViewportSize,
which changes no media feature but width. Written down with what does
work — a device-descriptor context — because the next person to gate an
affordance this way will otherwise re-derive it, and the tempting
conclusion from a green suite is that the gate is covered.
2026-08-19 14:08:38 -04:00
yonlu ff3c4003cb Merge branch 'fix/61-mini-player-plain-text' into fix/quick-wins-batch 2026-08-19 14:08:15 -04:00
yonlu def596a99e Merge branch 'fix/68-hover-affordances-pointer' into fix/quick-wins-batch 2026-08-19 14:08:14 -04:00
yonlu 14f78c0b57 Merge branch 'fix/118-in-library-clear' into fix/quick-wins-batch 2026-08-19 14:08:14 -04:00
yonlu 7cea238e71 Merge branch 'fix/119-dev-headless-port' into fix/quick-wins-batch 2026-08-19 14:08:13 -04:00
yonlu 4f2f1827ab Merge branch 'fix/131-codegen-check-scope' into fix/quick-wins-batch 2026-08-19 14:08:13 -04:00
yonlu e454e4074b Merge branch 'fix/130-issue-claim-user' into fix/quick-wins-batch 2026-08-19 14:08:12 -04:00
yonlu c518ac8c73 feat(now-playing): plain text instead of links in the phone mini player
CI / check (push) Skipped
CI / e2e (push) Skipped
The bottom bar's title, artist and "Playing from X" all navigate. In a
bar sized for a bar they are a few characters of text, which is not a
touch target — and explore-link holds its navigation for one
double-click interval and drops it if a second click arrives, a gesture
that exists so double-clicking a row can play it and that means nothing
on touch.

Below the shell's phone breakpoint the three render as plain text. The
words are unchanged: the source line still says where the queue came
from, because dropping the link is the change and dropping the
information would be a different and worse one. The cover art already
carries the phone-only button that opens the full-screen Now Playing
view, which is where the links live.

This is in JS rather than in the stylesheet because what changes is the
content, not its appearance — no CSS rule takes a click handler off an
element. matchMedia is read in connectedCallback for the reason the
reduce-motion query beside it already is, so a test can answer it first.

Two smaller things. PHONE_QUERY moves out of track-list.ts into
utils/breakpoints.ts: it was a private const when one component needed
it, and a second reader is where a copy starts drifting from index.css.
And `phone` joins geometryKey(), because crossing the breakpoint swaps a
link for a bare string and the marquee travels a distance read from
measuring it — the words being identical either side is not the same as
the box measuring the same.

Closes #61
2026-08-19 14:08:06 -04:00
yonlu 977f624123 fix(home): gate the card play button on the device having hover
CI / check (push) Skipped
CI / e2e (push) Skipped
The play button on a home shelf's cover cards is revealed by :hover, and
a touch long-press synthesises a hover state in the WebView — so on a
phone it flashed into view during the 500ms hold that
utils/long-press.ts is measuring for a context menu. A control appearing
because the user was reaching for a different one.

It is gated on `(hover: hover) and (pointer: fine)` rather than on width,
so it is absent on any touch device and present on a desktop with a small
window. A phone user taps the album and plays from the detail view, so
nothing replaces it.

The default outside the query is display:none, not opacity:0. An
opacity-0 button still takes taps and is still in the accessibility tree,
so leaving the reveal as the only guarded part would keep the hit area
for a control the phone can never show.

The test asserts the parsed stylesheet rather than rendering as a phone,
and says so: CDP's Emulation.setEmulatedMedia does not reach this tier's
iframe, so matchMedia still answers `hover: hover` after it is set. The
regression worth catching is someone hoisting the rule back out of the
query as a tidy-up — a change no desktop assertion can see.

Closes #68
2026-08-19 14:08:06 -04:00
yonlu 23f3d4b3b0 fix(explore): clear in_library on a row that has no local id
CI / check (push) Skipped
CI / e2e (push) Skipped
`in_library = 1 AND local_*_id IS NULL` was a fixed point.
upsertBatch's conflict clause is `MAX(in_library, excluded.in_library)`,
so it can only ever raise the flag, and pruneStaleLocalCrossReferences —
which its own comment calls the only place a removal from the library is
reflected back into the index — was gated on the id being present. So
nothing in the app could clear such a row, ever: a permanent claim of
ownership with no local row to check it against.

The gate is now the flag *or* the id, for all three entity types. A NULL
id fails the existence test on its own, so this needs no second clause to
say what "not owned" means.

Nothing in the tree writes that shape today — collectLibraryEntities sets
both together — which is why this is worth closing rather than leaving:
the exposure is a database written by a version whose local-id columns
were populated differently, and the next writer that sets the flag
without an id, which nothing structurally prevents and which this shape
made permanent rather than merely wrong until the next scan.

The test seeds the row with raw SQL on purpose. upsertBatch writes a zero
LocalArtistID as literal 0, and 0 satisfies `IS NOT NULL`, so the old
gate already caught that shape — a fixture built through the upsert
cannot reproduce this at all. NULL is what the artifact importer and any
older writer leave behind, the columns being nullable with no default.
Reverted against the old gate, it fails on all three types.

Closes #118
2026-08-19 14:08:06 -04:00
yonlu 8d46c4abb7 fix(scripts): refuse to start dev-headless on a port somebody else holds
CI / check (push) Skipped
CI / e2e (push) Skipped
dev-headless.sh checked the PID in *this* worktree's .dev/app.pid and
nothing else, so an app orphaned by a deleted worktree went on listening
with nothing left to stop it — `make dev-stop` only kills the pid it
wrote. The new app then started, failed to bind, exited, and every
subsequent curl and playwright-cli call went to the other process: the
harness reported facts about an app nobody asked for.

That fails a long way from its cause. It presented as "no such table:
libraries" against a *freshly created* YJ_HOME, which reads exactly like
applySchema or staleshape.go having gone wrong, with a zero-byte app.log
beside it saying nothing.

The startup wait cannot catch this, because its health check is satisfied
by any app on the port — which is precisely the failure — so the check is
before the launch and refuses rather than warns. It names the holder's
pid, cmdline and /proc/<pid>/cwd, which is what identifies the checkout
and says "(deleted)" for the case this exists for. It does not suggest
`make dev-stop`: the PID-file check has already passed, so by
construction dev-stop does not know about this process and would report
success while changing nothing. --port already covers the legitimate
second-app case.

The second, cheaper guard the report asks for goes in after the wait:
"the port answered" is not "the app we started answered", so a dead
APP_PID at that point is now an error with the log tail rather than a
success message about somebody else's process.

Closes #119
2026-08-19 14:08:05 -04:00
yonlu f714fe513d fix(scripts): report only what generation changed, not the worktree
CI / check (push) Skipped
CI / e2e (push) Skipped
The codegen-check hook was `go generate` followed by a bare
`git diff --name-only`, which is the whole unstaged worktree rather than
the generators' output. So a commit whose staged changes were fine failed
whenever anything unrelated sat unstaged — notes, a plan document, the
next commit's files — reporting "Generated code is out of date" and then
a diffstat of files no generator has ever written. `make generate` fixed
nothing, because nothing was stale, so the message sent you looking for a
codegen problem that did not exist. Splitting one piece of work into
several commits is exactly the shape that triggers it.

The tree is snapshotted either side of `go generate` and only what moved
across it is reported. That is deliberately a snapshot rather than the
list of generated paths the issue offers as the other option: a fourth
generator is one //go:generate line away, and a path list is a second
place to remember it.

Two things it has to get right. The comparison is a *symmetric*
difference, because generation can push a file into the unstaged set or
pull it out of one — a hand-edited generated file that the generator puts
back is stale generated code just as much as a source change that
outdates it, and comparing one direction reports it as current. And the
snapshot is content, not names, or a generated file that was already
dirty and is then rewritten further keeps its name on both sides and
slips through.

Closes #131
2026-08-19 14:08:05 -04:00
yonlu 087c69ac8d fix(scripts): let issue.sh claim work on a write:issue-only token
CI / e2e (push) Skipped
CI / check (push) Skipped
`claim` is the one step the workflow requires before the first edit, and
it failed outright on a token scoped to the work it does: `me()` calls
`GET /user` purely to name the assignee, and that endpoint needs
read:user. So the documented process was blocked by its own tooling, and
the fallback was to do the assignment, the label and the comment by hand
— which is the half-made claim `claim` exists to prevent.

GITEA_USER short-circuits the lookup, so least privilege is enough. The
lookup stays as the fallback because it is right when the scope is there
and needs no setup. Failure is now actionable and says both remedies,
and it still happens before any of the three halves are mutated.

Closes #130
2026-08-19 14:08:05 -04:00
logan bb7dde1963 Merge pull request 'A CI-only change is ci:, not fix(ci):' (#112) from docs/ci-commit-type into main
CI / check (push) Successful in 2m26s
CI / e2e (push) Successful in 6m31s
2026-08-19 16:23:20 +00:00
yonlu 446380e3a9 docs: a CI-only change is ci:, not fix(ci):
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / e2e (pull_request) Successful in 6m41s
CI / check (pull_request) Successful in 2m28s
The commit-analyzer reads the type and ignores the scope, so `fix` is a
patch whatever sits in the brackets. Two commits touching nothing but
.gitea/workflows/unclaim.yml were written `fix(ci):` and cut v0.2.1 and
v0.2.2 -- real releases, published to Arch, Homebrew and the APK
registry, containing no user-facing change.

CLAUDE.md already warned that a mistyped feat ships a minor version.
That was not enough, because this was not a mistyped type: `fix` was
chosen deliberately, in the belief that the (ci) scope qualified it.

The version bump is the small half, which is why this gets a paragraph
rather than a clause. A merge to main starts two workflows; if
release.yml then pushes a tag, that tag push starts four more --
arch-package, homebrew-formula, android-apk and desktop-assets -- on a
runner with capacity 1, where the APK build alone is tens of minutes
and publishes a signed artifact to a public registry. So a mistyped
type is six workflow runs, not an odd-looking changelog.

`make release-dry` answers this before the merge instead of after, and
is cheaper than any one of those runs.

The two releases are staying: they are already published, and a version
that vanishes is worse for whoever pulled it than one that turns out to
be empty.

Closes #111
2026-08-19 16:03:38 +00:00
logan e07f248cc8 Merge pull request 'Wait for the scroll range the assertion needs' (#134) from fix/133-album-dropdown-scroll-race into main
CI / e2e (push) Successful in 6m39s
CI / check (push) Successful in 2m33s
2026-08-19 16:03:17 +00:00
logan 90ac6e0825 test(e2e): wait for the scroll range the assertion needs
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m33s
CI / e2e (pull_request) Successful in 6m22s
The guard polled for `scrollHeight > clientHeight + 40` and the next
line asserted the container could be scrolled to 80, so any range in
41-79 satisfied the precondition and could not satisfy the assertion.
The grid passes through exactly that while it settles, because it
recomputes its columns after a viewport change rather than during it,
so the test read a clamped scrollTop and reported 10 against 80.

It failed CI on a pull request that changes one paragraph of CLAUDE.md
and nothing else, while WebKit passed in the same run. Reproduced
locally: 0 failures in 6 runs before #132, 2 in 9 after, 0 in 10 with
this change.

#132 is what made it reachable rather than what broke it. The queue
panel's mode is measured rather than media-queried, so a viewport
change at this width costs one more layout pass, and cover-grid settles
after it instead of before. The settled range is 330 and stable, the
main panel is 700px, and the panel is correctly display:none while
closed — there is no user-visible defect, only a wider window for a
race the spec already had.

A threshold below the value its caller depends on is not a guard, so
the target is one constant that both the guard and the assertion read.

Closes #133
2026-08-19 11:50:46 -04:00
logan 4e3c953acf Merge pull request 'Decide the supported sizes, and stop the queue taking the page's width' (#132) from feat/24-supported-sizes-queue-model into main
CI / check (push) Successful in 2m30s
CI / e2e (push) Successful in 6m20s
2026-08-19 15:22:39 +00:00
logan ede183d026 test(shell): check 900x600, which is narrower than the minimum
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m34s
CI / e2e (pull_request) Successful in 6m42s
The sidebar collapses to icons *below* 900, so the main panel is 843px
at 899 and 700px at 900: the narrowest content area any desktop width
produces is at the top of the Compact band, not at the enforced floor.
A viewport list that stopped at "the minimum" was missing its own worst
case.

MinWidth's comment loses both reasons it used to give, because neither
mechanism can happen any more — the subtitle is display:none from 899
down, and the sidebar host is overflow-y:auto (at 600x460 its
scrollHeight is 434 against a 332px client, and Settings is reachable
after scrolling). The value does not change: 800x600 is where desktop
chrome stops being comfortable, not where the app breaks, and below
600 the phone layout takes over. A floor defended by two expired
mechanisms is a number nobody can argue with, which is worse than
either answer.

Closes #24
2026-08-19 10:54:52 -04:00
logan 481c9dca65 docs: record the size bands and what the queue model cost to find
CLAUDE.md gains the three bands as a promise (Phone <600, Compact
600-899, Desktop >=900, and "no action is ever unreachable at any
supported size"), the computed queue rule and why it cannot be a media
query, and the correction that 900 — not the 800x600 minimum — is the
worst desktop width.

NOTES.md gets the measurements, including two things worth more than
the fix. My first probe for the sidebar's scroller searched
shadowRoot.querySelectorAll('*') and reported "no scroller, items are
unreachable", which reads exactly like a live Settings-unreachable bug;
the scroller is the host, and a host is not inside its own shadow root.
And the plan's first draft claimed the overlay "removes the desktop
half of #69", which the screenshot disproved: open and closed are now
identical at 900x600, so the queue's contribution is gone, but the
header's own overflow remains and is still a live defect.

Refs #24
2026-08-19 10:54:52 -04:00
logan 4025106234 fix(queue): overlay the content instead of taking its width
The panel is flex-shrink: 0 in the flow of .content-area, so an open
queue was paid for by the main panel rather than covering it. Measured
on Playlists: 379px of content left at 900x600 with all three of the
page header's actions clipped, 69px at 390px, and 0px at 320px — where
the content was not degraded but gone.

It goes to an overlay with a scrim when the content cannot spare the
width, and the rule is computed rather than breakpointed:
`available - panelWidth < 480`, where available is .content-area's
width and so already accounts for the sidebar's collapse at 900. A
media query cannot express this, which is the reason for the property:
the panel is drag-resizable between 200 and 500px and persisted, so a
viewport breakpoint silently assumes the default 320 and is wrong by up
to 180px for a user who widened it — in the direction that hurts, since
a wider queue is exactly when the content can least afford it.

480 is a judgement and the comment says so: there is no cliff to derive
it from (the track list rescales continuously, 213px to 124px columns
with no row overflow), so it is anchored to keep the default 1100px
window inline while putting every measured-broken case on the overlay
side.

The overlay is a presentation and not a fork — #55 asks for one
component with two mount points — so the roving tab stop, Alt+Arrow
reorder, drag reorder and selection semantics are untouched. Escape
closes it and returns focus, attached only while the overlay is up: it
is a dismissal rather than a shortcut, which is why it is not a
panel-scoped binding. The scrim covers the content area only, not the
sidebar or the transport, because the queue is not modal.

Refs #24
2026-08-19 10:54:52 -04:00
logan a3134f997f docs(planning): decide the supported sizes and the queue panel's model
#24 asks for a design pass, and #73 hangs the rest of Phase 2 off the
answer, so the decision is written down before any CSS moves.

Measured against the running app, and five things are not in the issue:
the Playlists header clips at 800x600 with the queue *closed* — the
minimum window is the only size this app promises; 900x600 is worse
than 800x600, because the sidebar expands at 900, so the worst desktop
case is not the minimum and every test that stops at the minimum misses
it; at 320px with the queue open the main panel is 0px wide, because
the panel is in the flow rather than over it; only Playlists overflows,
so #69 is one view's action set and not a systemic header failure; and
both reasons in MinWidth's comment describe mechanisms that no longer
exist.

The queue's mode cannot be a media query: its width is drag-resizable
between 200 and 500px and persisted, so a fixed breakpoint assumes the
default 320 and is wrong by 180px in the direction that hurts. It is
computed from the measured widths instead.

#69 stays its own PR on a finding rather than an estimate: page-header
cannot collapse actions that arrive as arbitrary light-DOM markup
through a slot, so the fix needs an actions API across all three hosts.

A very small window becomes the phone layout, which already exists and
is already tested, rather than the mini-player: #12 is a second
always-on-top window, and making it a mode of the main window would
discard navigation state on a resize and put the process-level MPRIS
question on a path a drag can trigger.
2026-08-19 10:54:52 -04:00
logan 3607fe445e Merge pull request 'Fix the player states that report one track's progress against another' (#129) from fix/player-playing-state into main
CI / check (push) Successful in 2m30s
CI / e2e (push) Successful in 6m14s
2026-08-19 14:53:46 +00:00
yonlu 61d549a9d5 ci: run the pre-push hooks sequentially
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / e2e (pull_request) Successful in 6m23s
CI / check (pull_request) Successful in 2m30s
`go test -race ./...` saturates every core for ~47s, and the UI tier
it was sharing them with is a real Chromium with wall-clock timeouts.
So the browser lost, at random: setup took 106s inside the hook
against 63s standalone, and a different suite failed on each run --
three failing to fetch setup.ts from Vitest's own dev server once, a
15s "did not mount itself" the next time -- against a suite that
passes 898/898 five times running on its own.

That reads as "your branch broke the frontend" when nothing is wrong,
which is the most expensive kind of false negative: the next person
bisects a change that was never at fault. It cost two pushes here
before the summary line gave it away.

Sequential costs about 15s.

Closes #128
2026-08-19 09:16:43 -04:00
yonlu 2b84bc53e9 fix(player): stop reporting one track's state against another
Five faults found while auditing the play/pause and position path for
a desktop report of the pause icon showing over a seek bar that was
not moving. They are one commit because they are one file's worth of
tangled state, and two of them do not compile apart.

The finished callback did not know which chain it came from. It is
dispatched as a goroutine from the beep callback and then queues for
p.mu, so a user pressing Next in the last second of a track had it
wake up holding the lock for a player that had loaded something else
-- and rewind it, stop it, and hand a stale finish to the queue's
auto-advance. updateStreamers now stamps a chainID and the callback
carries the one it was registered with. (#123)

It also emitted PlaybackFinished and PlaybackStateChanged(stopped)
*after* releasing p.mu, alone in this file, so a Play() taking the
lock in that gap emitted `playing` first and the stale `stopped`
landed last -- the button showing play over a track that was audibly
running. Both emits are back under the lock. (#123)

A source that failed mid-track was reported to the queue as a natural
end, so a broken file auto-advanced in silence and was counted as
played. The handler takes the reason now: the player cannot name the
track, because the metadata is the queue's, so the queue emits
PlaybackFailed and skips recording the play. (#123)

p.format was assigned once, in the constructor, to the *speaker's*
rate, and never again -- so it claimed 44.1 kHz for every file. The
replay-after-finish path resamples from it, meaning a finished track
played a second time was resampled from a rate the decoder never
produced: audibly wrong speed and pitch, and the length and position
fallbacks wrong with it. The fixtures are 22050 Hz, which is what lets
a test see this at all. (#124)

p.trackLengthMs was written only when the database had a row and
cleared only by UnloadTrack, so a file with no row inherited the
previous track's duration -- and every position report is scaled by
it, so the bar reported one track's progress on another's scale.
(#125)

Queue.OnPlaybackFinished indexed q.tracks[currentIndex] having checked
only that the queue was non-empty. currentIndex is -1 whenever the
queue has been exhausted, and onQueueExhausted deliberately leaves the
finished track loaded -- so playing it from there and letting it end
panicked, on a goroutine with no caller to recover it. (#126)

The position readers guarded the decoder with the speaker lock, which
the read-ahead goroutine has no reason to hold and never takes -- so
Position() raced readAhead's Stream() on every position emit, once a
second for the whole of playback. srcMu is the lock that excludes that
goroutine, and taking it naively deadlocks, because seekLocked already
holds it and then emits the landing position from inside that region.
seekSourceLocked is that region extracted, so the lock is released
before anything is emitted. Found by the race detector, via the test
added here for the chain guard: the existing suite never loads a file
outside the integration guard, so make test was green over it. (#127)

OnPlaybackFinished picks up //wails:ignore along with its error
parameter: v3's generator segfaults on a bound method taking an error,
and this was never IPC. That removes a binding the frontend could have
called to force an auto-advance.

Closes #123
Closes #124
Closes #125
Closes #126
Closes #127
2026-08-19 09:06:43 -04:00
yonlu 282dab43eb fix(player): end the stream when the audio source stops producing
BufferedStreamer.Stream treated an empty ring buffer as a momentary
underrun and answered with silence and ok. That is right while the
read-ahead is still going to deliver something, and two of its three
exit paths left it never going to: a Close, and a source returning
(0, true) in a loop. Neither set done, so the ring drained and every
call after it was silence claiming to be audio, for the life of the
process.

Nothing above this type could tell that from healthy playback. The
beep.Seq chain never ended, so the player stayed in Playing with the
button showing pause; the decoder's position never moved, so the 1 Hz
report pinned the seek bar at a constant -- and since every report
resets the bar's interpolation, the report actively suppressed the one
thing that would still have moved it. A frozen bar over a track that
was not playing, with no watchdog anywhere to notice.

Every exit now marks the stream done, and the silence fill is bounded
by a duration *and* a run of calls. It needs both. Wall clock is the
real measure, because the speaker paces itself and a stall is a
question about time -- but a caller draining in a tight loop makes
hundreds of calls in microseconds and would outrun a duration alone.
A call count alone is the opposite failure, and not a hypothetical
one: the first attempt used one and spent the whole budget before the
read-ahead goroutine had been scheduled once, ending a perfectly good
stream at sample zero and breaking TestBufferedStreamer_BasicStream.

Err is plumbed out at the same time, because a drained source and a
failed one both arrive as (0, false) and are not the same event.
Reading it is a separate change; without it there is nothing to read.

Closes #122
2026-08-19 09:05:55 -04:00
logan cc9df4004c Merge pull request 'Surface a confident autotag match on the album page' (#121) from feat/28-autotag-match-on-album into main
CI / check (push) Successful in 2m26s
CI / e2e (push) Successful in 6m9s
The album page says when the autotagger has a confident match for what
you are looking at, and can apply it. The tier behind "confident" is
one name shared with strict auto-accept (#90), and the lookup costs no
MusicBrainz request.

Closes #28
2026-08-19 06:49:49 +00:00
logan b5d70ac1cd feat(explore): offer the autotag match on the album page
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m49s
CI / e2e (pull_request) Successful in 6m12s
The complaint was having to notice the metadata was missing, then go
and hunt the album down on the Autotag page. The album page now says it
while you are looking at the thing: "MusicBrainz has a match for this
album: <release> by <artist>", with Apply tags and Review in Autotag.

Four things about it are load-bearing.

**Applying is offered only where it would do the whole album.** A
tagging group is a folder, so a multi-disc album is several, and one
button that applied to the best-scoring group would leave the album
holding a mix of old and new tags — the exact case the app's Blocking
notification level exists for. `groupCount` is the test, and the answer
there is review rather than apply.

**It rewrites files, so it asks.** `confirmAction()` with an impact
line that says it cannot be undone and that nothing is moved or
deleted, because "rewrites your files" reads worse than it is. The
apply goes through `ApplyAsync`, the registered-job path, so progress
belongs to the jobs indicator and this page does not grow a second one
— what it owes the user is the acknowledgement, because the button is
here. The suggestion clears itself on success rather than inviting a
second click while the job runs.

**The banner does not quote a percentage.** The backend has a score and
deliberately keeps it out of the sentence: 0.95 reads as a probability
and is not one. Which release it is, is the part a person can judge.

**"Review in Autotag" lands on that album.** The queue is sorted by
score so the intended folder is often near the top, and "often" is a
link that sometimes opens a different album. Autotag is a cached
primary view, so there is no construction to hand a payload to: the
request goes on as an attribute and the view *consumes* it, or every
later visit would reopen a folder the user finished with long ago.

`ICON_AUTOTAG` joins the vocabulary at the same time, on the rule
`ICON_PLAYLIST` was chosen by — an icon names the noun it acts on, so a
suggestion pointing at Autotag wears the Autotag destination's own
mark. It was written inline in the sidebar; two call sites is where a
name stops being one component's detail, so the sweep governs it now.

Verified against the running app with a staged match: the banner, the
confirm dialog's wording, and the navigation landing on the right
folder with the attribute consumed.

Closes #28
2026-08-19 02:34:11 -04:00
logan 9118c16fe3 feat(autotag): answer whether an album has a confident match
`MatchForAlbum(albumID)` is the question the album detail page needs to
ask on open: does the autotagger already have something confident to
say about this album, and what would applying it do.

**It costs no MusicBrainz request.** Everything it needs is on disk —
`tagging_items` carries the top score and release from the background
prefetch, `tagging_candidates` durably holds the scored list. The rate
limiters here are shared with every page the user can open, so a lookup
that fires on page load must not join that queue; a folder nobody has
scored yet answers "nothing", rather than scoring it now.

**The tier is computed, not read.** `tagging_items.score` is the raw
number and `Recommend` is what turns it into a claim, capping it for an
ambiguous runner-up, an incomplete alignment or a folder too small to
corroborate itself. Filtering on the stored score would promise
confidence the scorer had explicitly withheld — which the two-track
test pins.

**Nothing is said about an album the user has already answered for.**
Only a `pending` group qualifies: `confirmed` covers both a finished
apply and an explicit "leave as is", and arguing with the second would
be actively wrong.

The join is `audio_files.group_key`, not a key derived from the folder
path, because a group carved out of a mixed-bag folder is keyed on its
tags — so a path-derived key would find nothing for exactly the
messiest libraries this helps. `GroupCount` is returned because a
multi-disc album is one group per disc: a caller that applied to "the
album" from a single button would retag one disc of three.
2026-08-19 02:34:11 -04:00
logan fe67849e57 feat(autotag): name the confidence tier two features have to share
`ConfidentTier` and `Confident()` are a name for what was about to be
written as `== RecommendationStrong` at two call sites: the album page
telling the user unprompted that there is a match for what they are
looking at (#28), and strict auto-accept rewriting files without asking
(#90). A page that claims confidence the auto-accept pass would decline
is the app contradicting itself, and #90 asks for exactly this — that
the two agree on what "high confidence" means rather than computing it
twice.

What they do not share is written down beside it. Surfacing a match is
a suggestion with a confirm dialog behind it; auto-accept is an
irreversible on-disk rewrite gated on further conditions the tier
cannot express — exact track count, every title matching, lengths
within a couple of seconds, no cover replacement, no MBID conflict. So
this is the floor both stand on, not the whole of either test.

`Confident` is a rank comparison rather than an equality, so a tier
added above "strong" later does not silently stop qualifying.
2026-08-19 02:34:11 -04:00
logan 21b303ba7c fix(ui): stop a closing dialog answering the next question
`confirm-dialog` is one singleton for every confirmation in the app,
and `wa-dialog` reports its close asynchronously: `open = false` starts
an animation and `wa-hide` arrives after it. So a hide belonging to a
question already answered can land after the *next* question has
opened, and cancel it — the user is asked something, the dialog
vanishes on its own, and the call site is told they said no.

Each ask now carries an id. `close` ignores an id that no longer names
the question on screen, the button handlers pass none (they always mean
the current one), and only the `wa-hide` handler carries one, because
only `wa-hide` can arrive late.

Found by writing two `confirmAction()` tests in one file: the second
could not be accepted at all, because the first one's hide had
cancelled it before the click landed. Reaching it in the app needs two
confirmations close together, which the album page's "Apply tags" makes
possible.
2026-08-19 02:34:11 -04:00
logan 9375f25629 Merge pull request 'Demote the album page version selector to a disclosure' (#120) from feat/17-demote-version-selector into main
CI / check (push) Successful in 2m25s
CI / e2e (push) Successful in 6m0s
Choosing a pressing is a repair job, not the album page's headline.
The selector is a collapsed disclosure below the tracklist; the two
unguarded blocks that shared its slot are gone, and the catalog error
now belongs to the list that is missing because of it.

Closes #17
2026-08-19 05:38:26 +00:00
logan 905654cc84 feat(explore): demote the album page's version selector to a disclosure
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m26s
CI / e2e (pull_request) Successful in 5m59s
Choosing which pressing you are looking at is an advanced,
metadata-repair task, and it sat directly above the tracklist with a
heading, a `<select>` and a paragraph explaining how our clustering
picks a "standard version" by weighing release count, status and date.
That is a sentence about our own heuristic in the most valuable space
on the page.

It is now "Other versions of this album (N)" below the tracklist: a
real `<button aria-expanded aria-controls>` inside the heading that
names the section, with the body rendered unconditionally and toggled
with `hidden`, because `aria-controls` has to name an element that is
in the DOM. Both rules are `config-section`'s rather than new ones.
It is demoted, not removed — matching the wrong release is a real
problem and this is how it gets fixed.

**Two more blocks shared that slot and neither was guarded.** The
selector at least had `distinctTracklistCount() <= 1`; the
`Versions / Loading releases…` spinner and the `Versions / <error>`
block did not, so both took the primary position on every album
regardless of whether there was ever going to be a choice. The spinner
said what `renderTracklist` was already saying about the same fetch, so
it is gone. The error was the one `catalog-scope-notice` shows at the
top of the page with a retry — every path that sets `errorReleases`
also sets `catalogFailed`, the only route to `unavailable`.

That error is what made this a rewrite rather than a move.
`renderTracklist` returned `nothing` on `errorReleases` and leaned on
the selector's own block to have said it, and a control inside a
collapsed disclosure cannot be a page's error surface. The failure
belongs to the list that is missing because of it, so that is where it
is drawn.

**What must not be lost is which version is on screen.** The default is
what the header already describes, so saying it on every album would be
this issue's own complaint one size smaller. `defaultVersionKey` is the
test: a line appears above the tracklist only once someone has chosen
another, naming it and offering the way back. The ★ and the words "in
your library" survive unchanged inside the panel, and the panel does
not close when the selection changes — a panel that shuts on use cannot
be used twice.

The `<select>` also loses an `aria-label` of "Select release version"
that outranked its own visible `<label>Version</label>`, which is a
label not in the name.

Verified against the running app as well as the suite: the collapsed
page, the open panel, a chosen version and 390px width all read
correctly, and the shell still measures 390 in a 390 viewport.

Closes #17
2026-08-19 01:24:49 -04:00
logan 219fa3c615 Merge pull request 'Make it obvious everywhere when you are looking at things you do not own' (#117) from feat/38-ownership-visibility into main
CI / check (push) Successful in 2m28s
CI / e2e (push) Successful in 6m3s
Owned is plain; unowned is dimmed, named and requestable; a partly-held
album says how partly. Ownership is a file (`localId`), never the
`in_library` ratchet.

Closes #38
2026-08-19 05:11:43 +00:00
logan c4e055ce51 docs: write down which of the two ownership columns to read
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m26s
CI / e2e (pull_request) Successful in 6m15s
The `localId` / `inLibrary` choice outlives #38 — every future catalog
surface has to make it, and the code read them as an OR at eight call
sites precisely because nothing said they were different kinds of
thing. CLAUDE.md gets the rule and its four load-bearing details;
NOTES.md gets the measurement, the card that used both answers at once,
and the alternative that was rejected.
2026-08-19 00:50:53 -04:00
logan 10eca353ab fix(explore): gate playback on the same answer the row is drawn from
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m53s
CI / e2e (pull_request) Successful in 6m24s
Two play paths still accepted `inLibrary`, so a row drawn dimmed and
`aria-disabled` by the new rule would still attempt to play and fail
with "this track could not be found in your library" — the disagreement
this pass exists to remove, one layer down from the badge.
2026-08-19 00:39:18 -04:00
logan 88fc50afb8 feat(explore): mark what is not owned, everywhere it can be shown
`explore-album-details` had the rule right for one tracklist and
nothing else did: Explore's cards, `top-results-row` and the artist
page's three card shapes all mixed owned and unowned with a small badge
as the only difference, and drew a green tick on the *common* case —
which is the treatment that tracklist's own green ticks were removed
for.

`utils/ownership.ts` is the rule written once, so eight call sites
stop each holding their own version:

- owned is plain, and draws no badge at all;
- unowned is dimmed *and* says so in its accessible name, because
  dimming is a colour and cannot be the only signal;
- a partly-held album says how partly.

**Ownership is a file, and `localId` is the flag that says so.** The
album page answers with `filePaths`, a real file per displayed track; a
card grid cannot afford that and does not need to, because
`local_*_id` is built by queries that all join `audio_files` and
cleared by a prune whose existence test is a file test in every case.
`inLibrary` is written by the same pass, so the two agree in a healthy
database — but it is a one-way ratchet (`MAX(in_library, excluded)`)
whose only clearing pass is gated on a non-null local id, so it cannot
be un-set on its own.

Where they already diverged was the client. Both `explore-view` and
`explore-artist-details` kept a `libraryMBIDs` set that accumulated
every MBID ever seen with `inLibrary` and cleared it never, in views
that never unmount. Both are deleted.

And one card answered the question twice and got two answers:
`renderReleaseMenuItems` gates Play on `localId > 0` while the badge
and `albumTarget.owned` used `inLibrary`, so an album with the flag and
no local row drew a tick saying it was in your library, offered no
Play, and — the request item being gated on *not* owned — offered no
way to ask for it either.

The count comes from `completenessStore`, shaped like `credit-store`:
`request()` is per-card and coalesces a screenful into one
`GetAlbumsCompleteness`, absence is cached as an answer, and the whole
cache is dropped on a scan, a retag or a removal rather than aged.

`aria-disabled` goes on rows that cannot be activated and deliberately
not on cards: an unowned card still navigates to the catalog page for
it, which is a perfectly good thing to do with something you do not
own.

Audited and unchanged: `home-view`, `downloads-view`, `cover-grid`,
`artist-details` and `genre-details` cannot show catalog content, so
everything on them is owned and "owned is plain" is already what they
do. The album page's own header badge stays, because that page is about
one entity and the badge is its answer rather than a mark on one of
many.

Closes #38
2026-08-19 00:38:22 -04:00
logan 19c68d73a7 fix(ui): keep the count in a partial badge that can act
A control is named after what activating it does, so an actionable
badge said "Request album X" — and `partial` is actionable, because an
album you hold nine of twelve tracks of has three left to ask for.
That made the one state the ring exists for the one state whose name
did not mention it.

The argument the `partial` branch already carries does not stop
applying because the badge became clickable: a ring says "some" to a
sighted user and nothing to anyone else. The name is now the action and
the count.
2026-08-19 00:38:05 -04:00
logan 41c41a860e feat(explore): carry the local row id on a top result
`TopResult` was the one projection here that shipped `inLibrary` and no
local id, so the top-results cards had no choice but to read the weaker
flag. Every sibling model — `MBArtist`, `MBReleaseGroup`, `MBRecording`
— already carries `LocalID`, and the candidate builders had the value
in hand at every construction site.

`LocalID` is set and cleared by a test against `audio_files`, so it
means "there is something of mine here". `InLibrary` is written by the
same pass but is a one-way ratchet the prune can only clear alongside a
local id; it stays for scoring, which is where an approximate answer is
fine.
2026-08-19 00:37:57 -04:00
logan 4bf59b45b7 feat(library): answer album completeness for a screenful in one query
A card grid has to know how much of an album is here — an album held 2
tracks of 10 wearing the same green tick as one held whole is the
complaint the badge-accuracy work was filed about — and
`GetAlbumCompleteness` is one query per album, which is fifty round
trips for a grid of fifty.

`GetAlbumsCompleteness` is the same question over a slice. It is two
grouping levels rather than the single-album form's correlated
subqueries, because a correlated subquery in the FROM clause is not
something SQLite will reliably do, and because the slice may only be
spelled once or sqlc expands it twice with independently numbered
placeholders.

An album with no files is absent from the result rather than zeroed:
"I have none of this" and "I have no idea" are the third state `Known`
exists to keep apart.

The test that matters is that the two spellings never disagree — they
are genuinely different SQL, so the risk is a drift in meaning (a
disc's total counted once per file, a duplicate counted twice) rather
than a typo.
2026-08-19 00:37:46 -04:00
logan fc99d9e0d7 Merge pull request 'Make a release a shipment rather than a merge' (#116) from ci/115-manual-release into main
CI / check (push) Successful in 2m24s
CI / e2e (push) Successful in 6m11s
Closes #115
2026-08-19 02:36:01 +00:00
logan 90f1239fba ci: make a release a shipment rather than a merge
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m25s
CI / e2e (pull_request) Successful in 6m13s
release.yml fired on every push to main, so the trigger was "a PR was
merged" and nothing else decided. That is a version per unit of *work*
rather than per *shipment*: eight releases in twenty-two hours, v0.0.1
through v0.3.1, for one session -- each fanning out to four publishers on
a runner with capacity 1, so roughly forty packaging jobs shipped three
issues while ordinary PR CI queued behind them. pacman, Homebrew and
Obtainium see every one.

The push trigger is gone and workflow_dispatch, which was already there
and already worked, is the whole mechanism. Nothing else had to change to
batch releases, because semantic-release already reads every commit since
the last tag: five fixes and two feats become one minor release with all
seven in the notes. Release frequency was only ever how often this file
fired.

This is the rule index-artifact.yml states and is the other instance of:
a job that mutates state which cannot be rebuilt in ten minutes is
triggered deliberately, not by a push. A release here is a tag, a Gitea
release, an Arch package, a Homebrew formula, a signed APK and desktop
assets -- and an Android version going backwards costs the user their
library.

`dry_run` is what makes a manual trigger usable: the point of pulling a
lever by hand is being able to look first, so the input runs
semantic-release --dry-run -- the version and the notes, no tag, no
release, no publishers. Anything but the literal string "true" releases
for real, because a typo in a dispatch box must not silently turn a
shipment into a green no-op.

Two alternatives were considered and rejected, both recorded on the
issue. A `beta` integration branch relocates the trigger rather than
removing one: it needs a second protected branch carrying the same
required checks, and it *adds* a full check + e2e run per batch on the
very runner whose queue is the complaint. A schedule batches without
anyone having to remember, but puts the decision back on a timer, which
is the thing being removed.

Closes #115
2026-08-18 22:25:11 -04:00
logan b2fe1cb1e0 ci: skip a prerelease tag in all four publishers
Their trigger is `v*`, which matches `v0.4.0-beta.1`. They guarded
`v0.0.0` -- the version floor -- and nothing else, so the first
prerelease tag would have published a beta everywhere.

Nothing produces one today. The guard is here because the thing that
would is `prerelease: true` in .releaserc.yml, a one-line change whose
blast radius is four public channels and which nothing in those four
files mentions. That is the same argument release.yml's `chore(release):`
guard is kept on: cheap, against something a future edit turns on
somewhere else entirely.

android-apk is the worst of the four twice over. Its APK goes to the
*generic* registry, which is readable without credentials so Obtainium
can poll a plain URL, so a beta would be offered to every device on it.
And its versionCode maths splits on dots: it would read "1" out of
"0-beta" and produce a wrong number rather than a failed build, which
matters because Android orders releases by that integer and refuses
anything not greater than what is installed.

Each is a clean skip rather than a failure, matching the v0.0.0 guard
beside it: a red run against a tag that was never meant to ship is noise.
2026-08-18 22:25:11 -04:00
logan 065a879190 Merge pull request 'Give the icons one vocabulary and sweep the call sites' (#114) from feat/34-icon-language into main
Release / release (push) Successful in 32s
Build & publish Arch package / arch-package (push) Successful in 2m35s
Attach the desktop build to the release / linux (push) Successful in 56s
Sync Homebrew formula / sync-formula (push) Successful in 6s
CI / e2e (push) Successful in 6m17s
CI / check (push) Successful in 3m8s
Build & publish the Android APK / apk (push) Successful in 1m29s
Closes #34
2026-08-19 01:37:34 +00:00
logan 89882b4863 refactor(ui): give the icons one vocabulary and sweep the call sites
CI / check (pull_request) Successful in 2m27s
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / e2e (pull_request) Successful in 6m42s
`plus` meant "add to the queue", "add to a playlist", "make a new
playlist" and "you do not own this" -- the first two adjacent in the
same context menu, so two neighbouring items were the same glyph doing
different things. `list` meant the queue (the button that opens it), the
Playlists destination, and adding to the queue in `queue-panel` alone.
Two icons carrying seven meanings is not a vocabulary, and nothing
catches it: a wrong-but-real icon renders perfectly.

`utils/icon-language.ts` is the table, beside `library-status.ts` as the
issue suggested. The rule it is built on is that an icon names the
**noun** it acts on, not the verb: "add to queue" and "add to playlist"
are one verb on two nouns, so the noun is what differs -- which is why
adding to a playlist wears the Playlists destination's own icon, and why
the queue took `bars-staggered` and stopped wearing Playlists'. `plus`
keeps the one meaning it is unambiguous about, making something that is
not there yet, which covers New Playlist and the drop zones.

`bars-staggered` is the only new glyph, vendored through names.txt and
fetch-icons.mjs after confirming it is in Font Awesome **Free** 7.3.1.

Two things this found rather than changed:

- The request toggle's outline/solid pair was already in the app and
  already right -- `explore-album-details`'s "Request this" button has
  used `regular/bookmark` -> `solid/bookmark` since it was written --
  while the badge forty pixels away showed a **plus** for the same
  state. That is `utils/library-status.ts`'s fault one layer down: it
  made the two surfaces agree on what wanting *means* and left them
  disagreeing on what it looks like.
- `explore-artist-details`'s Follow button was `bookmark-check`, which
  is Font Awesome **Pro** and has never been bundled, so it has drawn
  the missing-icon fallback -- a circled question mark -- for every
  followed artist since it was written. `requested-badge.spec.ts` was
  written for exactly this bug on the album button and says so in its
  docstring; this is the same bug one component over, still live,
  because `offline-icons.spec.ts` sweeps `__yjIconMisses` and no spec
  had ever followed an artist.

So the test does what reaching the state cannot. `icon-language.test.ts`
reads every `src/**/*.ts` as raw text and fails on a governed name
written outside the table, and separately asserts every `ICON_*` is a
*bundled* name -- which is what makes a Pro name a failing test rather
than a runtime report from a state something has to reach first. Its
first assertion is that it read any source at all, because a sweep over
an empty glob passes.

`chrome.test.ts` asserted `['check', 'bookmark', 'plus']` and so pinned
the badge's glyphs against the vocabulary they were meant to follow; it
names them from the table now, and keeps the assertion that the three
differ, which is the property the states actually need.

Downloads keeps the solid bookmark on purpose. That is one word twice,
not two words: the badge says the entity is on your list and the nav
item is that list.

Closes #34
2026-08-18 21:18:36 -04:00
logan 18a08daa91 Merge pull request 'Let the album page be asked for the whole tracklist' (#113) from feat/7-full-tracklist-toggle into main
Release / release (push) Successful in 33s
Build & publish Arch package / arch-package (push) Successful in 2m45s
Attach the desktop build to the release / linux (push) Successful in 1m2s
Sync Homebrew formula / sync-formula (push) Successful in 7s
CI / e2e (push) Successful in 6m18s
CI / check (push) Successful in 2m25s
Build & publish the Android APK / apk (push) Successful in 1m34s
Closes #7
2026-08-19 01:10:34 +00:00
logan aa59773d22 feat(explore): let the album page be asked for the whole tracklist
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m25s
CI / e2e (pull_request) Successful in 6m12s
An album the user holds part of showed only the tracks on disk, with
nothing to say the rest existed. The page could already draw the full
release with the missing rows dimmed -- it just could not be asked: the
automatic rule fires on `completeness.known`, which depends on the files
declaring a per-disc total, or failing that on the catalog's own
`total_tracks`.

Neither reaches most albums. #16 fixed the first input for anything
tagged from now on, and the second is worse than it looks: the published
artifact is from 2026-08-10 and the column landed on 08-16, so
`completenessAnswer()`'s catalog fallback answers 0 for every user until
the index job republishes. Measured, and noted on #88, which is the
publish that carries it.

So the control is explicit. A "Show the whole album" switch flips the
synthetic "Your Library" entry between the local files and the release,
which is the same rendering, reached deliberately rather than inferred.

Three things about it are load-bearing:

- `showFullTracklist` is a tri-state, `null` meaning "follow the
  automatic rule". The rule is right when it fires, and the switch has
  to agree with the page it is sitting on rather than starting out
  contradicting it -- a plain boolean would need its default recomputed
  every time the completeness answer moved underneath it. The user
  outranks the rule in both directions.
- `fullReleaseCluster()` falls back to the highest-scoring cluster.
  `findLibraryCluster` is a guess over the `inLibrary` flags and returns
  nothing at all when none are set, which is exactly the untagged
  library this exists for -- without the fallback the control would be
  absent precisely where it is needed. The sublabel names the release
  either way rather than leaving the user to wonder whose tracklist they
  are reading.
- It appears only where it can change what is on screen: against the
  library entry, with a release to switch to, and only when the two
  tracklists differ. A complete album's release has the same rows as its
  files, so the switch would redraw the same list and read as broken --
  the same test the version dropdown one section up already answers.

The accessible name is asserted rather than assumed, through the
browser's own computation. `wa-switch` happens to get it right, and for
a third reason again: its `<input role="switch">` sits inside a native
`<label>` that also holds the `<slot>`, so the name is computed across
the flattened tree from light-DOM text. This app has shipped the
opposite twice.

Closes #7
2026-08-18 20:49:08 -04:00
logan a4777f26b6 Merge pull request 'Declare the track and disc totals when tagging' (#105) from fix/16-tagwriter-totals into main
Release / release (push) Successful in 30s
CI / e2e (push) Successful in 6m8s
CI / check (push) Successful in 2m23s
Build & publish the Android APK / apk (push) Successful in 1m25s
Build & publish Arch package / arch-package (push) Successful in 2m31s
Attach the desktop build to the release / linux (push) Successful in 54s
Sync Homebrew formula / sync-formula (push) Successful in 6s
Closes #16
2026-08-19 00:45:07 +00:00
logan 92faa9741b Merge branch 'main' into fix/16-tagwriter-totals
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m22s
CI / e2e (pull_request) Successful in 6m8s
2026-08-18 20:32:08 -04:00
yonlu bf0a53e64c Merge pull request 'Give the unclaim step a CA bundle' (#110) from fix/unclaim-ca-certs into main
Release / release (push) Successful in 31s
CI / e2e (push) Successful in 6m3s
CI / check (push) Successful in 2m22s
Build & publish the Android APK / apk (push) Successful in 1m24s
Build & publish Arch package / arch-package (push) Successful in 2m29s
Attach the desktop build to the release / linux (push) Successful in 52s
Sync Homebrew formula / sync-formula (push) Successful in 6s
Reviewed-on: #110
2026-08-18 23:30:31 +00:00
yonlu 7be4a02e31 fix(ci): give the unclaim step a CA bundle
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m27s
CI / e2e (pull_request) Successful in 6m14s
Second defect in the same workflow. The shell fix took -- the step ran
under `bash --noprofile --norc -e -o pipefail` -- and got one layer
further before failing:

  curl: (77) error setting certificate file: /etc/ssl/certs/ca-certificates.crt

ubuntu:24.04 ships no CA bundle, and --no-install-recommends skips the
ca-certificates that curl recommends, so curl came up unable to verify
TLS against our own Gitea.

This was avoidable by reading the repo rather than reasoning about it:
ci.yml (twice), desktop-assets.yml, android-apk.yml and release.yml all
spell out `ca-certificates curl ... jq` for exactly this reason. The
convention was written down five times already.

Validated in the real image this time rather than by extracting the
script and running it on the host, which is what missed this: the step
now succeeds inside `docker run ubuntu:24.04` against a scratch issue --
label present, 204, label gone -- and the previous version reproduces
`curl: (77)` in the same image. Both checked, then the scratch issue was
deleted.

The DELETE also keeps its response body now and prints it on a non-204.
Whether the automatic token carries issue-write scope is still unproven,
because both failures happened before the API call, and "403" without
Gitea's own sentence would cost another merge to interpret.

Closes #102
2026-08-18 19:08:50 -04:00
yonlu ad9c25a5a2 Merge pull request 'Run the unclaim step under bash' (#108) from fix/unclaim-shell into main
Release / release (push) Successful in 32s
CI / e2e (push) Successful in 6m10s
CI / check (push) Successful in 2m23s
Build & publish the Android APK / apk (push) Successful in 1m23s
Build & publish Arch package / arch-package (push) Successful in 2m37s
Attach the desktop build to the release / linux (push) Successful in 52s
Sync Homebrew formula / sync-formula (push) Successful in 7s
Reviewed-on: #108
2026-08-18 23:05:38 +00:00
logan 4b9114fd8d fix(tagwriter): declare the track and disc totals when tagging
CI / check (push) Skipped
CI / e2e (push) Skipped
CI / check (pull_request) Successful in 2m46s
CI / e2e (pull_request) Successful in 6m18s
An album the user holds 2 of 10 tracks of showed a green tick reading
"is in your library", and the mechanism was our own writer. tagwriter
wrote track and disc *numbers* and dropped the totals, so autotagging a
folder made the release MBID-matched -- which is what earns the tick --
while erasing the one field GetAlbumCompleteness reads. The evidence
for "2 of 10" was destroyed by the act that produced the tick.

FieldTotalTracks and FieldTotalDiscs are written as the ID3 "n/N" form
and as Vorbis TRACKTOTAL/DISCTOTAL; the autotag apply pass and the
download importer fill them from the release's own tracklist; and
dbsync persists the track total to audio_files.total_tracks so the
album page agrees with the file without waiting for a rescan.

Five things about it are load-bearing, and four fail silently:

- The total is per *disc*, not per release, because that is what the
  tag form declares and what GetAlbumCompleteness sums per disc. A
  release total on every file multiplies a two-disc album's expectation
  by two, which no library can satisfy. backend/tagtotals is that
  derivation once, since the two callers must not import the writer or
  each other.
- The Vorbis names are TRACKTOTAL and DISCTOTAL and no other spelling.
  dhowden/tag reads exactly those two keys, so TOTALTRACKS -- which
  xiph lists and several taggers write -- or a "1/12" packed into
  TRACKNUMBER writes successfully and reads back as no total at all.
  The tests therefore assert the round trip through the reader the scan
  uses, not through the bytes.
- ID3's number and total share one frame, so writing either alone must
  read the other off the existing tag or discard it. A total with no
  number is not written: "/12" parses as track 0.
- The totals are written unconditionally rather than on a diff. The
  case this exists for is a file declaring no total at all, which
  compares equal to nothing and is exactly what a "only if it changed"
  guard skips.
- A single-track download is not totalled. A RecordingMBID anchor
  resolves Expected to that one track, so the same code would tag a
  track off a twelve-track album "1 of 1" -- and a declared total
  outranks the catalog total that would have answered correctly.

autotag's field constants are a second copy of tagwriter's, deliberately
so autotag stays out of the write pipeline's import graph. A key that
drifts neither fails to compile nor fails to write -- the writer simply
finds nothing under the name it looks for -- so autotagservice, the one
package importing both, now pins them.

Steps 2 and 3 of the issue stay open under #38: the catalog fallback
already landed as completenessAnswer(), and the badge call-site audit is
the part that overlaps it.

Closes #16
2026-08-18 18:19:54 -04:00
215 changed files with 24416 additions and 1877 deletions
+17
View File
@@ -139,6 +139,23 @@ jobs:
echo "skip=true" >> "$GITHUB_OUTPUT"
exit 0
fi
# Nor is a prerelease, and this trigger is `v*`, which matches
# `v0.4.0-beta.1`. Two reasons it is worst here. The APK goes
# to the *generic* registry, which is readable without
# credentials so Obtainium can poll a plain URL — a beta would
# be offered to every device on it. And the versionCode maths
# below splits on dots and would read "1" out of "0-beta",
# producing a code that is wrong rather than a build that
# fails: Android orders releases by that integer and refuses
# anything not greater than what is installed.
case "$v" in
*-*)
echo "v$v is a prerelease; not publishing an APK for it"
echo "skip=true" >> "$GITHUB_OUTPUT"
exit 0
;;
esac
echo "skip=false" >> "$GITHUB_OUTPUT"
# Android orders releases by an integer and refuses anything
+16
View File
@@ -72,6 +72,22 @@ jobs:
exit 0
fi
# A prerelease is not a shipment either, and this trigger is
# `v*` — which matches `v0.4.0-beta.1`. Nothing produces one
# today; the guard is here because the thing that would is
# semantic-release's `prerelease: true` channel, a one-line
# change in .releaserc.yml whose blast radius is four public
# package channels. Same argument as release.yml's
# `chore(release):` guard: cheap, against something a future
# edit turns on somewhere else entirely.
case "$v" in
*-*)
echo "$v is a prerelease; not packaging it for pacman"
echo "skip=true" >> "$GITHUB_OUTPUT"
exit 0
;;
esac
echo "skip=false" >> "$GITHUB_OUTPUT"
echo "tag=$v" >> "$GITHUB_OUTPUT"
echo "building $v"
+13
View File
@@ -95,6 +95,19 @@ jobs:
exit 0
fi
# Nor is a prerelease, and this trigger is `v*`, which matches
# `v0.4.0-beta.1`. The mildest of the four — assets attach to
# the prerelease's own Gitea release and no package manager
# reads them — but four workflows sharing one trigger should
# share one answer about what a shipment is.
case "$v" in
*-*)
echo "$v is a prerelease; not attaching desktop assets"
echo "skip=true" >> "$GITHUB_OUTPUT"
exit 0
;;
esac
echo "skip=false" >> "$GITHUB_OUTPUT"
echo "tag=$v" >> "$GITHUB_OUTPUT"
echo "version=${v#v}" >> "$GITHUB_OUTPUT"
+12
View File
@@ -56,6 +56,18 @@ jobs:
echo "skip=true" >> "$GITHUB_OUTPUT"
exit 0
fi
# Nor is a prerelease, and this trigger is `v*`, which matches
# `v0.4.0-beta.1`. It matters most here of the four: the tap
# is public, and `brew upgrade` would offer a beta to everyone
# on it.
case "$VERSION" in
*-*)
echo "$TAG is a prerelease; not syncing it to a public tap"
echo "skip=true" >> "$GITHUB_OUTPUT"
exit 0
;;
esac
echo "skip=false" >> "$GITHUB_OUTPUT"
TARBALL="${SOURCE_TARBALL_BASE}/${TAG}.tar.gz"
+54 -8
View File
@@ -1,11 +1,36 @@
name: Release
# The sixth workflow, and the one that decides whether the other three
# run at all. On every push to main it reads the Conventional Commits
# since the last tag, and if any of them is releasable it writes the
# changelog, pushes the tag, and creates the Gitea release whose body is
# that changelog section. The publishing workflows are keyed on `v*`, so
# the tag push is what starts them.
# run at all. It reads the Conventional Commits since the last tag, and
# if any of them is releasable it writes the changelog, pushes the tag,
# and creates the Gitea release whose body is that changelog section.
# The publishing workflows are keyed on `v*`, so the tag push is what
# starts them.
#
# **It is triggered by hand, and there is deliberately no `push`
# trigger.** There was one, on `main`, which made the trigger "a PR was
# merged" and nothing else: eight releases in twenty-two hours
# (v0.0.1 -> v0.3.1) for one session's work, each fanning out to four
# publishers on a runner with capacity 1, so ~40 packaging jobs shipped
# three issues and ordinary PR CI queued behind them. A version per
# merged PR is a version per unit of *work*, not per *shipment*, and
# pacman, Homebrew and Obtainium see every one.
#
# Nothing else had to change to batch them: semantic-release already
# reads every commit since the last tag, so five fixes and two feats
# become one minor release with all seven in the notes. Release
# frequency was only ever how often this file fired.
#
# This is the rule `index-artifact.yml` states and is the other instance
# of: **a job that mutates state which cannot be rebuilt in ten minutes
# is triggered deliberately, not by a push.** A release here is a tag,
# a Gitea release, an Arch package, a Homebrew formula, a signed APK and
# desktop assets — and an Android version going backwards costs the user
# their library (docs/android-release.md).
#
# A schedule was considered and rejected: a cron batches without anyone
# having to remember, but it puts the decision back on a timer, which is
# the thing being removed.
#
# **Why the tag is pushed with PACKAGE_TOKEN and not the Actions token.**
# Gitea, like GitHub, does not start a workflow from a ref pushed by a
@@ -19,9 +44,12 @@ name: Release
# instead.
on:
push:
branches: [main]
workflow_dispatch:
inputs:
dry_run:
description: "Report what would be released and stop"
required: false
default: "false"
# Cutting a tag is not a thing to cancel halfway: a superseded run must
# finish, not be killed between `git push --tags` and the release POST.
@@ -163,14 +191,32 @@ jobs:
# been right, the tag would have been right, every job would have
# been green, and the release body would have been empty. Check the
# notes, not the exit code, before moving any of these.
# The point of a manual trigger is deliberateness, and deliberate
# means being able to look before pulling the lever. `--dry-run`
# reports the version and the notes and writes nothing: no tag, no
# release, no publishers. `make release-dry` is the same answer
# locally; this is it from the runner, against the same commit and
# the same tag history, which is what actually decides.
- name: Run semantic-release
if: steps.guard.outputs.skip == 'false'
working-directory: /src
env:
DRY_RUN: ${{ inputs.dry_run }}
run: |
set -eu
git config user.name "yellowjacket-ci"
git config user.email "yj@yellowjacket.app"
# Anything but a literal "true" releases for real. A typo in a
# dispatch box must not silently turn a shipment into a no-op
# that reports success — the failure worth avoiding is the one
# where nothing happens and the run is green.
dry=""
if [ "${DRY_RUN:-false}" = "true" ]; then
echo "DRY RUN — no tag will be pushed and no release created"
dry="--dry-run"
fi
npx --yes \
-p semantic-release@25 \
-p @semantic-release/commit-analyzer@13 \
@@ -178,5 +224,5 @@ jobs:
-p @semantic-release/changelog@7 \
-p @semantic-release/exec@7 \
-p conventional-changelog-conventionalcommits@9 \
semantic-release \
semantic-release $dry \
--repository-url "https://x-access-token:${PACKAGE_TOKEN}@${SERVER_URL#https://}/${REPO}.git"
+16 -2
View File
@@ -58,8 +58,15 @@ jobs:
run: |
set -euo pipefail
# `ca-certificates` is named because `--no-install-recommends`
# skips it, and `ubuntu:24.04` ships no CA bundle of its own —
# so curl comes up unable to verify TLS against our own Gitea
# and fails with "error setting certificate file" (exit 77).
# Every other containerised workflow here spells it out for the
# same reason; this one did not, and cost a release cycle.
apt-get update -qq
apt-get install -y -qq --no-install-recommends curl jq >/dev/null
apt-get install -y -qq --no-install-recommends \
ca-certificates curl jq >/dev/null
label_id=$(
curl -sSf -H "Authorization: token $TOKEN" "$API/labels?limit=100" |
@@ -78,8 +85,14 @@ jobs:
# label answers the same as one that did, which is what makes
# this safe to run on *every* close rather than only the ones
# that were claimed.
# The body is captured, not discarded, so a refusal is
# diagnosable from this log alone. Whether the automatic
# token carries issue-write scope is still unproven, and
# "DELETE returned 403" without Gitea's own sentence costs
# another merge to find out which of the two it is.
body=$(mktemp)
code=$(
curl -sS -o /dev/null -w '%{http_code}' -X DELETE \
curl -sS -o "$body" -w '%{http_code}' -X DELETE \
-H "Authorization: token $TOKEN" \
"$API/issues/$ISSUE/labels/$label_id"
)
@@ -88,6 +101,7 @@ jobs:
204) echo "unclaim: #$ISSUE is closed and unclaimed" ;;
*)
echo "unclaim: DELETE returned $code for #$ISSUE" >&2
cat "$body" >&2
exit 1
;;
esac
+5
View File
@@ -88,3 +88,8 @@ build/android/overlay.json
# Written by @semantic-release/changelog purely to carry the release notes
# into scripts/gitea-release.sh; the release page is the changelog.
.release-notes.md
# Agent session log: local scratch, not repo memory (that is CLAUDE.md
# and .planning/). Written by the scheduled backlog runs.
.pi/journal.md
.pi/schedule-prompts.json
+142
View File
@@ -0,0 +1,142 @@
---
description: Take on the next actionable backlog issue end to end, and stop
---
Take on exactly one issue from the YellowJacket backlog, end to end, and stop.
Repo: yonlu/yellowjacket at https://git.ljones.me — API base
https://git.ljones.me/api/v1/repos/yonlu/yellowjacket, auth with
`-H "Authorization: token $GITEA_TOKEN"`. Default branch is `main`.
## 1. Orient before you pick
Read, in this order: `CLAUDE.md` (the architecture and the reasons behind
it), `.pi/journal.md` (what happened last), `.planning/NOTES.md` (what was
already considered and rejected), and `.planning/plans/active/`. Do not skip
this because the issue looks small — most of this codebase's traps are
written down in exactly one of those four places, and the ones that bite are
the ones you didn't read.
## 2. Pick the issue
List open issues. Choose the single highest-value one that is *actionable
right now*:
- Order by `Priority/Critical``High``Medium``Low`. Within a tier,
prefer `Reviewed/Confirmed`, then `Kind/Bug` over `Kind/Enhancement` over
`Kind/Feature`.
- Consult issue #73 (the roadmap) — if it sequences the candidates, that
ordering wins over the label ordering.
- **Skip** anything labelled `Status/Blocked`, `Status/In Progress`,
`Status/Abandoned`, `Reviewed/Won't Fix`, `Reviewed/Duplicate`,
`Reviewed/Invalid`, or already carrying an open PR.
- **Skip anything someone else is already on.** The label is not the only
claim, because a concurrent session may not have applied it — several pi
sessions run against this repo from separate worktrees under
`~/.paseo/worktrees/`. Run `git ls-remote --heads origin` and skip any
issue whose number or slug matches an existing branch (`60-…`,
`fix/<slug>`). A duplicated fix costs more than a skipped issue.
- **Skip** anything that cannot be verified without hardware you do not
have: physical-device Android behaviour (audio output, on-device file
writes, real gesture input). A browser at 424px is not a phone — see the
Chrome 113 section of `CLAUDE.md`.
- **Skip** intermittent-failure issues unless you can reproduce the failure
on demand within a few minutes. Chasing a 1-in-3 flake is an unbounded
task and does not belong in a scheduled run.
- If nothing qualifies, say so, do nothing, and stop. An empty run is a
correct outcome.
## 3. Claim it
Add `Status/In Progress` to the issue and comment that you are picking it
up. Then branch:
```
git fetch origin && git checkout -b <type>/<short-slug> origin/main
```
`<type>` matches the issue's `Kind` (`fix/`, `feat/`, `refactor/`, `test/`,
`docs/`, `ci/`). Branch from `origin/main`, never by checking out `main`
itself — this repo is worked from several git worktrees at once and `main`
is checked out in one of them, so `git checkout main` fails outright.
## 4. Do the work
Fix the issue that was reported and nothing else. Match the surrounding
code's style. Follow the constraints in `CLAUDE.md` rather than reasoning
from first principles — where it explains why something is shaped the way it
is, that shape is load-bearing and there is usually a test pinning it.
**Anything else you discover becomes a new issue, not a bigger diff.** File
it with the right `Area/`, `Kind/`, `Priority/` labels, describe the
symptom before the theory, and link it from your PR. Scope creep is the
failure mode this instruction exists to prevent.
If the work turns out to be materially larger than the issue implied, stop:
comment on the issue with what you found and what it would actually take,
remove `Status/In Progress`, push nothing, and end the run.
## 5. Verify — the right tier, not the cheapest one
Run `make generate` if you touched `.sql` or `.templ`, and `make bindings`
if you changed a bound Go signature. Then run what the change actually
demands:
- Go change → `make lint` and `make test` (both cover all three build
configurations).
- Frontend component or store → `make ui-test`.
- User-visible flow → `make e2e` against `make dev-headless`. **Check the
port first**: `ss -ltn | grep 34115`. If it is occupied, another worktree
is already running the app — do not start a second one and do not run
`make e2e`. Attaching to someone else's build produces a green result
about code that is not yours, which is worse than no result. Either
choose an issue that does not need this tier, or stop and say why.
- Anything cosmetic or layout-related → look at a screenshot. Several bugs
in this repo's history were invisible to every assertion and obvious in an
image.
A tier you skipped is a claim you did not check. If a tier fails for reasons
unrelated to your change, say so explicitly rather than quietly moving on.
## 6. Keep the documentation true
If you changed structure, behaviour, or a constraint, update `CLAUDE.md` in
the same commit. That file is this project's memory; a change that leaves it
describing the old shape is worse than no change. Append a short entry to
`.pi/journal.md` covering what you did, what you verified, and what you left
open.
## 7. Commit and open the PR
Conventional Commits, imperative subject, ≤72 chars, scope optional. The
body explains *why*. Push the branch — never push to `main`, never
force-push.
Open the PR:
```
curl -sS -X POST \
-H "Authorization: token $GITEA_TOKEN" \
-H "Content-Type: application/json" \
https://git.ljones.me/api/v1/repos/yonlu/yellowjacket/pulls \
-d '{"head":"<branch>","base":"main","title":"<subject>","body":"<body>"}'
```
The body states: what the issue was, what you changed and why, **which
verification tiers you ran and their results**, anything you deliberately
did not do, and `Closes #<n>`.
Then wait for CI (`ci.yml`, jobs `check` and `e2e`) and report the result on
the PR. If it fails, read the log — `gitea_ci`'s `job_logs` 404s on this
Gitea build, so use
`GET /api/v1/repos/yonlu/yellowjacket/actions/runs/<run>/jobs` for per-step
status and `GET /api/v1/repos/yonlu/yellowjacket/actions/jobs/<id>/logs` for
the log — and fix it. Two consecutive failed CI runs on the same cause: stop,
comment what you know on the PR, and leave it for a human.
**Do not merge.** Comment on the issue linking the PR, leave
`Status/In Progress` on, and end the run.
## Finally
Report in three lines: which issue you took, what state it is in
(PR open / CI green / stopped and why), and any issues you filed.
+13 -1
View File
@@ -130,7 +130,13 @@ reference, because you need them *before* the failure, not after.
what you otherwise get is `Property 'scroll' does not exist on type
'CSSResult'` pointing at a line of prose, or every test in the suite
failing to import. It went in after the trap cost a fourth session in
which its own warning had been read twice.
which its own warning had been read twice. **The same command carries
a second CSS check**: a nested rule whose selector starts with an
element name (`audio-player { … }` rather than `& audio-player { … }`)
is silently dropped by the device's Chrome 113 and by nothing else, so
every tier you can run renders it correctly. Run it after touching
`index.css` or any `css` literal; a rule directly inside a top-level
`@media` is not nested and is not flagged.
- **A failing CI job's log is reachable even when `gitea_ci job_logs`
says it is not.** That endpoint 404s on this Gitea build. The REST
API answers, with the `GITEA_TOKEN` already in the environment:
@@ -195,6 +201,12 @@ Two rules about climbing:
- **Do not write an e2e spec first.** Drive the flow by hand, then
promote it with `/e2e`. Specs written blind assert on selectors that
do not exist.
- **Not every view has a nav item.** Since #25 the destinations are
configurable, Autotag is hidden by default and Downloads is absent
until a download client exists — so `getByTestId('nav-<view>')` waits
30 s for a locator that will never resolve. `navigateTo(page, view)`
(`e2e/support/fixtures.ts`) dispatches the app's own `navigate` event.
Click the nav item when the *nav* is what the spec is about.
Before a commit, the gate is `make lint`, `make test`, `make ui-test`,
`make bindings-check`, `make css-check` and — from `frontend/`
@@ -194,9 +194,13 @@ like the app's fault and none is:
|---|---|---|
| x86_64 | modernc's raw `lstat` vs seccomp | SIGSYS, syscall 6 |
| arm64, translated | Go reads `ID_AA64ISAR0_EL1` | SIGILL |
| arm64, real device | — | unverified, still |
| arm64, real device | **runs** (2026-08-20) | — |
**A physical arm64 device remains the only verification path.**
**A physical arm64 device remains the only verification path**, and it
has now been walked: a Light Phone III (TLP301, Android 14 / SDK 34,
arm64-v8a, WebView Chrome 113 at 424x439). The app builds, installs,
launches and stays up; `make android-smoke SECONDS=60` passes on it.
What that run *found* is the lifecycle fault below.
### What was fixed to get here
@@ -210,6 +214,11 @@ no-op. `backend/system` gained no import of the Wails application
package, which matters for the same reason `backend/events` is split by
the `indexbuild` tag.
**And `main()` is now latched to one run per process** (#52). That is
the second `os.Exit(1)` in this file's history and it had the same
signature as the first, which is the argument for #160: both were named
exactly by an `slog` line that went to `/dev/null`.
### What is still not done
The shell is still a desktop shell, and the x86_64 half of the APK is
@@ -249,10 +258,25 @@ one.
`build/android/Taskfile.yml` ships more than the Makefile wraps, and
they are the right thing to reach for when you want something one-off:
> **These four were unsafe until #159 and are now the way in.** All of
> them began with `adb uninstall {{.APP_ID}}`, where `APP_ID` defaulted
> to `app.yellowjacket` — the **release** id — while `run` and
> `run:device` build the **debug** variant, whose id is
> `app.yellowjacket.dev`. So they uninstalled the user's app, taking
> the library with it, installed a different package, and then failed
> to launch the one they had removed.
>
> They share `scripts/android-deploy.sh` now, which **never**
> uninstalls (`install -r`, and a changed signing certificate is
> reported with the command rather than acted on), reads the package id
> back out of the built APK, and refuses a target that is not the kind
> the task names. There is nothing left to avoid; the manual sequence
> below is kept because it is still the smallest thing that works.
```
wails3 task android:run # debug build + emulator install + launch
wails3 task android:run:device # same, first connected physical device
wails3 task android:deploy-device # production APK to a device
wails3 task android:run:device # debug build + install + launch on a phone
wails3 task android:deploy-device # release build, same
wails3 task android:bundle:fat # AAB, for a Play Store upload
wails3 task android:studio # open build/android/ in Android Studio
wails3 task android:device:list
@@ -260,6 +284,16 @@ wails3 task android:logs:all
wails3 task android:clean
```
**`run` and `deploy-emulator` mean the emulator, and now say so to
adb.** They used a bare `adb install`, which with exactly one device
attached picks that device whatever it is — so with a phone plugged in
and no emulator running, the task whose summary reads "in the Android
Emulator" installed on the phone. They pass `--target emulator` and
refuse with `make android-emulator` as the remedy.
**`DEVICE_ID=<serial>` still names a device, and several attached
devices is now an error rather than a silent pick of the first.**
Two are deliberately **not** wrapped. `android:logs` greps logcat for
`(Wails|yellowjacket)`, which catches the `WailsBridge` tag but misses
the app's own process tag (`app.yellowjacket` — lowercase, so `Wails`
@@ -269,16 +303,51 @@ instead. And `ensure-emulator` boots whatever `-list-avds | tail -1`
returns, with no pidfile and no boot wait, so it cannot be stopped or
sequenced.
## The identity is declared twice
## The identity is read back from the APK
It used to be **declared twice**, and that is what #159 was.
`applicationId` in `build/android/app/build.gradle` is what Gradle
installs. `APP_ID` in `build/android/Taskfile.yml` is what every
adb-driven task uninstalls, launches and filters. **Nothing enforces
that they agree**, and `ANDROID.md`'s advice to set `APP_ID` in
`build/config.yml` does not work in beta.8 — `wails3 task` never reads
that file (verified with `--dry`), and even when set it feeds only the
adb commands, never Gradle. Change both or the official `run`/`deploy`
tasks address a package that is not installed.
installs; `APP_ID` in `build/android/Taskfile.yml` was what every
adb-driven task uninstalled, launched and filtered, and nothing
enforced that they agree. They did not: the debug buildType carries
`applicationIdSuffix ".dev"`, so every task that assembles a debug APK
addressed the release id. This file flagged the hazard for five phases
and it cashed out twice — once as a wrong `am start`, once as an
uninstall of the user's library.
**`scripts/android-pkgid.sh` is the one answer now.** It prints the
package id an APK declares (`aapt2 dump packagename`, falling back to
`aapt dump badging`), and the deploy path installs and launches *that*.
The APK is the authority because the task that installs it has just
built it: whatever Gradle resolved the applicationId to, suffixes and
flavours included, is in the file, and no default can disagree with it.
An APK it cannot read is a hard failure, never a fallback to a written
down default — guessing is the bug.
**`APP_ID` survives as an assertion, not a setting**, and has no
default. `wails3 task android:run APP_ID=app.yellowjacket` says "this
build had better declare that id" and is refused, naming both, *before*
anything is installed or a device is even chosen. It could never have
been a setting: `ANDROID.md`'s advice to put it in `build/config.yml`
does not work in beta.8 — `wails3 task` never reads that file (verified
with `--dry`) — and even when set it fed only the adb commands, never
Gradle.
`scripts/android-emulator.sh` derives `PKG` the same way, from
`bin/yellowjacket.apk` when one is built, so `make android-install`,
`android-launch`, `android-logs` and `android-smoke` follow whichever
variant is actually in `bin/`. `YJ_ANDROID_PKG` still overrides, and
the old literal survives only for a tree with no APK built yet.
**The uninstall is gone and is not coming back.** It existed to make
the bare `install` on the next line work at all — without `-r` Android
refuses an install over an existing package — so `install -r` removes
the *reason* for it rather than merely removing it. What is left is the
one case an uninstall really is the remedy, a changed signing
certificate, and that is exactly the case where performing it silently
costs the user their library. So it is named and not done, which is the
answer `scripts/android-emulator.sh` had already reached for
`make android-install`.
Related, and it will bite once: the launcher activity is
`com.wails.app.MainActivity` and the applicationId is
@@ -287,6 +356,27 @@ resolves the leading dot against the *applicationId* and fails with a
class-not-found that reads like a broken build. Always the
fully-qualified form.
**`wails3 task android:run:device` is the way to put a debug build on a
real device**, since #159. What #52 used, before it was safe, was the
longer form, and it is still the smallest thing that works if you want
no script between you and adb:
```bash
wails3 task android:build ARCH=arm64 && wails3 task android:assemble:apk
adb install -r bin/yellowjacket.apk # -r, never uninstall
adb shell am start -n app.yellowjacket.dev/com.wails.app.MainActivity
```
The id in that last line is the one thing to keep an eye on by hand —
`./scripts/android-pkgid.sh bin/yellowjacket.apk` is what the tasks ask,
and it is a good habit before any `am start` written out in full.
`YJ_ANDROID_PKG=app.yellowjacket.dev` still overrides what
`scripts/android-emulator.sh` — and therefore `make android-smoke`,
`android-logs`, `android-launch` — addresses, but it is rarely needed
now: that default is read from `bin/yellowjacket.apk`, so it already
follows whichever variant was built last.
## What only a device can answer
The emulator cannot run this app (three separate reasons, none of them
@@ -311,6 +401,91 @@ system bars, the back gesture, focus and audio interruptions,
permission dialogs, the keyboard — not about what the app draws. The
drawing is what the other five tiers already cover.
**The third such fault was the activity lifecycle** (#52), and it is
the one to re-check after touching `main()`, `WailsBridge` or
`MainActivity`. Android destroys and recreates an activity **without
restarting the process**, and Wails' `nativeInit` — which
`MainActivity.onCreate` calls — runs `go mainFunc()` every time. So
Go's `main()` ran again on a live app, `app.Run()` refused (`a.starting`
is still true behind Android's `select{}`), and the `os.Exit(1)` under
it took the healthy first app down with it.
### The lifecycle check, and how to trigger it on demand
This is the regression guard for #52 on this tier, because no other
tier runs `main()` on Android at all. The Go-side guard
(`TestMainClaimsBeforeItDoesAnything`) catches work creeping above the
latch; only the device catches the latch not working.
**Trigger a relaunch with a configuration change the manifest does not
declare.** `AndroidManifest.xml` lists
`orientation|screenSize|keyboardHidden|uiMode`, so those are handled
in-place and are *not* triggers. `fontScale` is not listed, and it is a
one-liner:
```bash
adb shell settings put system font_scale 1.15 # restore the old value after
```
That is the same in-process destroy/recreate that "Don't keep
activities", a locale change and a memory trim produce, but on demand.
**"Don't keep activities" is the report's own lever and did not work on
this device**: `settings put global always_finish_activities 1` reads
back as `1`, `am set-always-finish-activities` does not exist on this
build, and the activity was never finished on backgrounding. Do not
spend an afternoon on it; use the config change.
**The assertion is the pid, and the tell is two bridge inits in one.**
```bash
adb logcat -d | grep -E "Wails bridge initialized|has died|finishDrawing of relaunch"
```
Healthy is one pid appearing twice — the process surviving the
recreation:
```
I/WailsBridge(28420): Wails bridge initialized
I/WailsBridge(28420): Wails bridge initialized <- same pid, recreated
```
Broken is that pair followed within a second by:
```
I/WindowManager: finishDrawing of relaunch: Window{...MainActivity} 603ms
I/ActivityManager: Process app.yellowjacket.dev (pid 22956) has died: fg TOP
W/ActivityTaskManager: Force removing ActivityRecord{...}: app died, no saved state
```
Two things about reading that. **`has died: fg TOP` is not a memory
kill** — the system does not reclaim the foreground process, so this is
the app leaving of its own accord. And there is **no crash record
anywhere**: `logcat -b crash` is empty, no `AndroidRuntime`, no
`libc: Fatal signal`, no tombstone. That is the `os.Exit` signature,
and it is why "the system killed it" is the wrong first hypothesis.
**Surviving is only half of it — check the recreated WebView is still
wired to the running app.** A plausible-looking fix (making
`WailsBridge.initialized` static, so the second `nativeInit` is skipped)
keeps the process alive and silently breaks this, because `nativeInit`
is also what re-points the JNI reference at the new bridge. Go would go
on executing JavaScript against the destroyed activity's WebView: the
app opens, renders, and never receives another backend event.
Ask the page, after a relaunch and a resume:
```bash
make android-inspect
make android-eval EXPR='(()=>{window.__probe=[];const o=window._wails.dispatchWailsEvent.bind(window._wails);window._wails.dispatchWailsEvent=(e)=>{window.__probe.push(e&&e.name);return o(e)};return "ok"})()'
# background and foreground the app, then:
make android-eval EXPR='JSON.stringify(window.__probe)'
```
A healthy build answers with events from the live services —
`["IndexStatusChanged","JobsChanged","JobsChanged","android:storageAccess"]`.
`[]` means the bridge reference is stale.
## Asking the device, not just looking at it
A real phone can be inspected, and that turns this tier from "reported
@@ -340,6 +515,130 @@ Four things about it, each of which costs an hour if met cold:
script. Plug in over USB for anything longer than a couple of probes.
- **The socket name carries the pid**, which changes on every launch, so
it is resolved rather than remembered.
- **A reinstall resets the runtime permissions**, and the grant dialog
is a separate activity that takes focus — so the app is up, `am start`
reports "delivered to currently running top-most instance", and
`pidof` is empty because it never got to the foreground.
`dumpsys window | grep mCurrentFocus` naming
`GrantPermissionsActivity` is the tell. `adb shell pm grant
app.yellowjacket.dev android.permission.READ_MEDIA_AUDIO` (and
`POST_NOTIFICATIONS`) ahead of the launch skips it.
### Getting the app into a state worth measuring
A fresh install is **not** a neutral starting point, and three things
about it will each cost you a measurement.
**It downloads the real catalog.** `YJ_CORE_INDEX_URL` is stubbed in
`dev-headless.sh` and in CI and is *real* here, so the app spends its
first minutes fetching ~0.6 GB and `job-band` is **103px of a 439px
screen** while it does. Every vertical number taken in that state is
wrong -- one #51 measurement had the album art at 0px and it was
entirely this.
`__yj.call("explore.Service.StopIndexBuild", [])` stops it and returns
cleanly. **It then starts again within seconds.** So stop it
*immediately before* the measurement rather than once at the beginning,
and check `jobs.Service.GetJobs` afterwards -- an empty array is the
only proof. `jobs.Service.ClearFinishedJobs` tidies the finished rows
that otherwise keep the band open.
**A library added over the bridge does not dismiss the first-run
wizard.** `library.Library.AddLibrary` works and scans, but the wizard
checks for an existing library once, on mount, and its "Get Started"
button gates on a directory chosen *in the wizard* -- so it stays up
with a correctly disabled button over everything you are trying to
measure. Nothing is broken; reload the page and it is gone. This reads
exactly like a tap being swallowed, which is the expensive part.
**Scoped storage decides where the music can be.** `/sdcard/Music/...`
plus `pm grant <pkg> android.permission.READ_MEDIA_AUDIO` works and
`AddLibrary` takes the plain path; a push into
`/sdcard/Android/data/<pkg>/files/` looks like it worked and then is not
there. Some builds additionally want
`appops set <pkg> MANAGE_EXTERNAL_STORAGE allow`, and until they have it
the app opens the *system* "All files access" screen on launch -- so
`dumpsys window | grep mCurrentFocus` naming `com.android.settings` is
that, not a crash.
### A note on quoting `make android-eval`
`EXPR='...'` is a single-quoted shell word, so anything with a quote or
an apostrophe in it -- a file path like `Blazo, 49'ers - ...`, or a
snippet containing a string literal -- breaks in a way that reads as a
JavaScript error. Put the expression in a file and pass it positionally:
```bash
node ./scripts/android-eval.mjs "$(cat /tmp/probe.js)"
```
That is the same script `make android-eval` wraps, so nothing is lost.
Two things worth knowing about it: it does **not** await a promise, so
an async call has to park its result (`window.__r = ...`) and be read
back in a second eval; and the shim from the section below is lost on
every reload and every app restart, along with the devtools socket,
whose name carries the pid.
### Calling a binding on the device
**The runtime call does not go over HTTP on Android**, and this is worth
knowing before an hour is spent on it. The WebView cannot deliver a
`fetch()` POST body to `shouldInterceptRequest`, so v3 routes runtime
calls through the `addJavascriptInterface` bridge instead: the
@wailsio/runtime installs a `customTransport` that calls
`window.wails.invokeAsync(id, payload)` and receives the answer on
`window._wailsAndroidCallback`. Two consequences:
- **`.playwright/init-events.js` does not transfer to the device.** Its
outbound half hooks `fetch`, which sees nothing here, and its
`call()` posts to `/wails/runtime`, which answers
`Invalid runtime call: missing object value` — the interceptor got the
URL with no body. Its *inbound* half is still right, because
`dispatchWailsEvent` is the entry point in every mode.
- **Hooking `fetch` from an eval is too late anyway**, on any platform:
the bundle captured its reference at module scope, so a wrapper
installed afterwards records nothing. That is why the harness is an
`initScript` and not a step in a spec.
What works is to borrow the bridge, chaining the runtime's own callback
so its pending calls still resolve:
```js
const pending = new Map();
const prev = window._wailsAndroidCallback;
window._wailsAndroidCallback = (id, response, error) => {
if (!pending.has(id)) return prev && prev(id, response, error);
const p = pending.get(id); pending.delete(id);
const env = JSON.parse(response || "{}");
return env.ok ? p.resolve(env.data ?? env.text) : p.reject(new Error(env.error));
};
window.__yj = { call(name, args) {
return new Promise((resolve, reject) => {
const id = "yj" + Math.random().toString(36).slice(2);
pending.set(id, { resolve, reject });
window.wails.invokeAsync(id, JSON.stringify({
object: 0, method: 0, windowName: "",
args: { "call-id": id, methodName: "yellowjacket/backend/" + name, args: args || [] },
clientId: window._wails.clientId,
}));
});
} };
```
That turns the device into a tier that can be *driven* rather than only
looked at — `__yj.call("player.Player.LoadFile", [path])` and
`__yj.call("library.Library.AddLibrary", ["/sdcard/Music/..."])` are how
#53 was measured. Names are the Go ones (`GetTracks`, not
`GetAllTracks`); an unknown one comes back as a plain
`unknown bound method name`, so a wrong guess is loud.
**Getting audio onto the phone**: `adb push` into
`/sdcard/Android/data/<pkg>/files/` looks like it works and then the
files are not there — scoped storage. `/sdcard/Music/...` plus
`pm grant … READ_MEDIA_AUDIO` does work, and `AddLibrary` takes the
plain path. The generated fixtures are **~2 seconds** each, which is
fine for a scan and useless for watching a seek bar, so synthesise a
long one: `ffmpeg -f lavfi -i sine=frequency=440:duration=240`.
**And the reason to bother: the phone is an engine, not a screen.** The
first device here renders in **Chrome 113** at 424x439 CSS px. Every
+1429
View File
File diff suppressed because it is too large Load Diff
@@ -0,0 +1,327 @@
# 018 — Supported sizes, and what the queue panel is
**Issue:** #24 (`Area/Shell-Nav`, `Priority/High`, `Reviewed/Confirmed`)
**Unblocks:** #55 (queue as a screen) — a real Gitea dependency
**Relates:** #69 (page-header overflow), #12 (mini-player), #51 (small-screen umbrella)
**Status:** complete — #24 shipped as PR #132, and the matrix's last
unkept promise closed with #69.
#73 puts this first in Phase 2 and hangs the rest of the phase off it,
so the decision has to be written down and arguable before any CSS
moves. This document is the decision. Everything below the matrix is
either a measurement or an argument for one of the four choices #24
asks for.
---
## What is actually wrong, measured
Against the running app (`make dev-headless SEED=default`, Chromium),
Playlists, sweeping the viewport with the queue open and closed. The
number that matters is how much of the page header survives.
| viewport | sidebar | queue | main panel | header needs | actions clipped |
|---|---|---|---|---|---|
| 1280×800 | 200 | open 321 | 759 | 759 | — |
| 1000×700 | 200 | open 321 | 479 | 747 | New Playlist, New Smart Playlist |
| **900×600** | 200 | open 321 | **379** | 747 | **all three** |
| 800×600 | 56 | open 321 | 423 | 747 | all three |
| 700×600 | 56 | open 321 | 323 | 747 | all three |
| 390×780 | — | open 321 | **69** | 747 | all three |
| 320×600 | — | open 321 | **0** | 747 | all three |
| 900×600 | 200 | closed | 700 | 747 | New Smart Playlist |
| **800×600** | 56 | closed | 744 | 747 | **New Smart Playlist (158/162px)** |
| 320×600 | — | closed | 320 | 747 | all three |
Five things in that table are not in the issue.
**The header clips at the supported minimum with the queue closed.**
At 800×600 — the size `backend/config/window.go` enforces and the only
size this app *promises* — "New Smart Playlist" loses 4px of its 162.
#24 reads as a queue-panel bug; the queue makes it dramatic, but the
header overflows on its own at the minimum window.
**900×600 is worse than 800×600, because the sidebar expands at 900.**
`AUTO_COLLAPSE_VIEWPORT` collapses the sidebar to icons *below* 900, so
at 899px the main panel is 843px and at 900px it is 700px. The worst
desktop case is therefore not the minimum window; it is the pixel
immediately above the collapse. Anything that tests "the minimum" and
stops has not tested the worst case, which is what
`layout-overflow.spec.ts` does today.
**At phone widths the queue is not a drawer, it is an amputation.**
`queue-panel`'s host is `flex-shrink: 0; width: 0`, going to
`width: var(--queue-width, 320px)` under `[open]` — it is *in the flow*
of `.content-area`, so it takes its width from the main panel rather
than covering it. At 390px that leaves 69px of the page; at 320px it
leaves **0px**, and the app is not degraded but gone. This is the
measurement #55 needs and did not have.
**Only Playlists overflows.** Sweeping all ten primary views at 900×600
and at 390×780, every other header reports `scrollWidth ==
clientWidth`, and Albums at 390px renders title, count and sort
legibly (checked on a screenshot, not just the number). #69 is
therefore one view's action set — three text buttons totalling 390px —
and not a systemic header failure, though the *rule* still belongs in
`page-header`.
**Both reasons in `MinWidth`'s comment are stale.** It says the floor is
800×600 because "below ~780 the header's subtitle wraps" and "below
~600 tall the eleven sidebar items no longer fit". The subtitle is
`display: none` below 900 (index.css), and the sidebar host is
`overflow-y: auto` — at 600×460 its `scrollHeight` is 434 against a
332px client, and Settings is reachable after scrolling. Neither
mechanism can happen any more. That does not mean the floor should
move; it means its stated reason no longer supports it, which is worse
than either answer.
*(Care needed: my first probe for the sidebar scroller searched
`shadowRoot.querySelectorAll('*')` and reported "items are
unreachable", because the scroller is the **host** and a host is not in
its own shadow root. The claim in CLAUDE.md is correct.)*
---
## Decision 1 — the supported size matrix
Three bands. Two of them already exist and are already argued; what is
new is that they are written down as a *promise*, and that the queue is
part of it.
| band | width | navigation | queue | promise |
|---|---|---|---|---|
| **Phone** | < 600 | `bottom-nav` + drawer | overlay, full width | reflows; nothing needs sideways scrolling; fits 320px |
| **Compact** | 600 899 | icon sidebar | overlay + scrim | nothing is clipped or unreachable at any width in the band |
| **Desktop** | ≥ 900 | labelled sidebar | inline where it fits (see decision 2), else overlay | as Compact |
And one promise across all three: **no action is ever unreachable.**
That is the sentence #69 asks for and it is the one the matrix exists
to make checkable.
**400% zoom** keeps the meaning it already has: WCAG 1.4.10 names 320px
as the reflow target, the phone band covers it, and
`layout-overflow.spec.ts` already asserts a 320px viewport needs no
sideways scrolling. What changes is that the *queue* must be part of
that assertion — it is not today, and with the queue open at 320px the
main panel is 0px wide, which no current test can see.
**The window minimum stays 800×600**, and its comment gets the real
reason. The old mechanisms are gone, but the floor is still where the
Compact band's chrome stops being comfortable, and lowering it would
mean promising the desktop layout at sizes where only the phone layout
works. The interesting consequence is decision 4.
---
## Decision 2 — the queue is an overlay when it cannot afford to be a column
**The rule.** The queue panel renders inline — in the flow, as today —
only while
```
viewport sidebar queueWidth ≥ 480
```
and as an overlay with a scrim otherwise.
**Why it cannot be a media query**, which is the load-bearing half:
the queue's width is *user state*. It is drag-resizable between 200 and
500px and persisted (`--queue-width`, `MIN_WIDTH`/`MAX_WIDTH` in
`queue-panel.ts`). A breakpoint at a fixed viewport width silently
assumes the default 320, and is wrong by 180px for a user who has
dragged the panel wide — in the direction that hurts, since a wider
queue is exactly when the content can least afford it. So the mode is
computed from the measured widths and published as an attribute, the
way `data-active-view` already is, and the CSS keys off that.
**Why 480, honestly.** There is no cliff to derive it from. The track
list rescales its columns continuously — at main widths from 900 down
to 544 its `--grid-cols` shrink from 213px to 124px with
`rowOverflow=0` throughout — and the album grid steps 3 columns to 2
somewhere between 564 and 644 without breaking. So this is a judgement,
anchored on two things: it keeps the *default* window (1100 wide, main
= 580) inline, because the inline queue is a desktop affordance people
choose and turning it into an overlay for the common case would be a
regression in feel; and it puts every case measured as broken —
900×600 at main=379, and every phone width — on the overlay side.
1024×768 lands at main=504 and stays inline.
**The scrim is the other half of the issue's complaint** ("make the
queue obviously an overlay *over* the content so it reads as something
to close"). An overlay queue gets a scrim, closes on scrim click and on
Escape, and returns focus to `#queue-button`.
**What must not change**: #55's Direction is explicit — one component,
two mount points, do not fork it. The overlay is a *presentation* of
the same `queue-panel`, so the roving tab stop, Alt+Arrow reorder, drag
reorder, selection semantics and the `virtualizer.requestUpdate()` on
selection and current-track change all come along untouched. This
decision deliberately stops short of #55's detail-view mount, but it is
the shape that makes it possible, and it unblocks it.
---
## Decision 3 — #69 is its own PR, and here is the finding that decides it
`page-header` **cannot collapse its own actions**, and that is not an
effort estimate but a fact about the API. Actions arrive through
`<slot name="actions">` as arbitrary light-DOM markup — Playlists slots
a `<div class="header-actions">` of three `<button>`s with click
handlers, drag handlers and a conditional class. A component cannot
move another component's light-DOM children into a dropdown and keep
their behaviour; there is nothing generic to render as a menu item.
So the overflow rule needs an *actions API* — hosts declaring
`{icon, label, handler, priority}` data that `page-header` can render
either as buttons or as menu items — which is a change to all three
hosts that slot actions, not a rule added in one place. That is a
different piece of work from this one, it is independently verifiable,
and the desktop half of #69's symptom is removed by decision 2 anyway
(the queue stops eating the header's width).
It therefore stays #69, gets the finding above recorded on it, and
follows immediately after this. What *this* plan owes it is the
promise in the matrix — no action unreachable at any supported size —
and the measurement that the only offender today is Playlists.
**And the promise is not kept yet, which is the honest version of a
claim this document made in its first draft.** "Decision 2 removes the
desktop half of #69's symptom" was too strong. Measured after phase 2,
at 900×600 on Playlists:
| | before | after |
|---|---|---|
| queue open | main 379px, **all three** actions clipped | main 700px, **one** clipped |
| queue closed | main 700px, one clipped | unchanged |
So the queue's *contribution* is gone — open and closed are now
identical, which is the whole of what this decision owed — and the
residual "New Smart Playlist: 114/162px" is the header overflowing on
its own, at a size the queue never touched. #69 is still a live defect
at a supported size, and the matrix's promise is what will close it.
---
## Decision 4 — a very small window becomes the phone layout, not the mini-player
#24 asks whether a very small window should switch to the mini-player
(#12) "or simply refuse to go there". Both options in the question are
worse than the one the codebase already has.
**#12 is a second window, not a mode.** Its findings say so: v3
supports multiple windows, `AlwaysOnTop` is a window *option*, and the
frontend would need an entry branch mounting only the mini-player root
for a second window loading the same bundle. Turning the main window
into a mini-player at some width conflates the two: it would throw away
the user's navigation state on a resize, and it puts the MPRIS question
(#12's own open question — media controls are process-level and must
not be per-window) on a code path that a drag can trigger by accident.
**And "refuses" is unnecessary, because the reflow already exists.**
The phone band is real, tested, and reached by width alone — a desktop
window narrowed below 600px already gets `bottom-nav` and the phone
shell. That is a better answer than refusing: it is strictly more
usable than a hard minimum, it costs nothing new, and it is the same
code Android runs, so it stays exercised.
So: the main window reflows and never becomes a mini-player; #12 stays
a separate always-on-top window and is not blocked by, or coupled to,
this decision. The window minimum stays 800×600 for the reason in
decision 1 — but the phone band is what happens below it, not a
refusal, which is why the minimum is a comfort floor rather than a
correctness one.
---
## Phases
1. **This document**, linked from #24, with the matrix reported on the
issue and #55 told whether it is unblocked. *(no code)***done**
2. **The queue's overlay mode** — computed mode attribute, scrim,
Escape and scrim-click close, focus return. The inline path is
unchanged above the threshold. — **done**
3. **The window minimum's comment** — replace both stale reasons with
the measured ones. No value change. — **done**
4. **Verification**, below. Including the specs that must change
because they assert the old behaviour. — **done**
#69 follows as its own branch; #55 became unblocked at phase 2.
## What landed, measured
Main panel width with the queue open, before and after:
| viewport | before | after | mode |
|---|---|---|---|
| 1280×800 | 759 | 759 | inline |
| 1100×720 (default window) | 579 | 579 | inline |
| 1024×768 | 503 | 503 | inline |
| 900×600 | **379** | **700** | overlay |
| 800×600 | 423 | 744 | overlay |
| 390×780 | **69** | **390** | overlay |
| 320×600 | **0** | **320** | overlay |
The scrim is perceptible but subtle on a dark ramp, which is worth
knowing before someone "fixes" it: sampled from the screenshots at
900×600, the main panel's background goes 33,37,41 → 18,20,23 and a
row's text 242 → 133. It covers the **content area only** — not the
sidebar or the transport — on purpose: the queue is not modal, and
leaving the navigation live means the scrim reads as "this is over the
content" (which is what #24 asked for) without pretending the rest of
the app is unavailable.
## What #69 did with the promise, and one thing this plan got wrong
#69 landed on its own branch as decision 3 said it would, and the
matrix's *no action is ever unreachable at any supported size* is now
kept rather than promised. Measured on Playlists, actions clipped:
| viewport | before #24 | after #24 | after #69 |
|---|---|---|---|
| 900×600, queue open | all three | one (114/162px) | none |
| 900×600, queue closed | one | one | none |
| 800×600, queue closed | one (158/162px) | one | none |
| 390×780 | all three | all three | none |
| 320×600 | all three | all three | none |
The shape was the one decision 3 predicted — an actions API first, an
overflow rule second — and all three hosts that slot actions migrated.
**What this document got wrong is smaller and worth keeping.** Decision
1 says the header's minimum is a *comfort* floor and that only the
queue and the actions compete for the header's width. They are not the
only two: every child of that flex row was `flex-shrink: 0`, so
whatever came last lost, and the actions come last. At 320px the sort
control alone is 172px of the header — so with every action already
collapsed into the menu, the *menu button* was 76px off the right edge.
The promise was still broken with nothing left to collapse.
That is why #69 also had to decide what gives way: the title (which the
navigation also states) and, below 600px, the word "Sort:" (which the
direction arrow implies). Neither is an action, which is the rule the
matrix actually encodes — **an action is a capability and everything
else on that row is a label.**
## Verification, and what each tier cannot see
- `make ui-test` — the queue panel's mode logic is component-tier
work and belongs there. It **cannot** see the shell: the threshold is
computed from the sidebar and viewport, which do not exist in that
tier.
- `make e2e``layout-overflow.spec.ts` gains the queue-open case at
every band (it has none today, which is why main=0px at 320px has
never failed anything) and **gains 900×600**, since the minimum is
not the worst case. `queue-toggle-state.spec.ts` and
`phone-shell.spec.ts` both touch the panel and must be re-read before
editing.
- **Screenshots at every band, read by a human.** This is not optional
here: `layout-overflow.spec.ts` asserts the *shell* needs no sideways
scrolling and passes on a build whose album header clips its own
buttons (measured this session at 390px; filed on #66). Clipping
*inside* a component is invisible to it, and clipping is this issue.
- `make ui-visual` **cannot help at all** — the component tier renders
the token fallbacks, because the theme only reaches `:root` in the
real app.
- Accessible names via `page.getByRole(...)`, never a shadow-root
query. A drawer with a scrim is exactly the shape that grows a
nameless control, and this repo has shipped one three times.
+14 -3
View File
@@ -1,8 +1,19 @@
# semantic-release configuration.
#
# Runs on pushes to main from .gitea/workflows/release.yml: determine the
# version from the Conventional Commits since the last tag, write the
# changelog, commit it, push the tag, and create the Gitea release.
# Run by hand from .gitea/workflows/release.yml, which has no push
# trigger: determine the version from the Conventional Commits since the
# last tag, write the changelog, push the tag, and create the Gitea
# release. A release is a shipment rather than a merge, and the commits
# accumulate until someone says so -- this file needs to know nothing
# about that, because reading everything since the last tag is what it
# already did.
#
# `branches` is main and only main. A `prerelease: true` channel is the
# obvious next edit here and is the one to think twice about: all four
# publishing workflows trigger on `v*`, which matches `v0.4.0-beta.1`.
# They carry a prerelease guard now, so the failure is a clean skip
# rather than a beta in a public tap -- but they are four separate files
# and this is the line that would turn them on.
#
# **There is no `@semantic-release/github` plugin here and there must not
# be.** Gitea's API is `/api/v1` and is not GitHub's surface. The Gitea
+10 -5
View File
@@ -5,15 +5,20 @@ The changelog is the releases page:
<https://git.ljones.me/yonlu/yellowjacket/releases>
Every release there is generated from the Conventional Commits it
contains, by `.gitea/workflows/release.yml` on merge to `main`. Each one
carries its notes as its body, grouped by change type, with a link to the
commit behind every line.
contains, by `.gitea/workflows/release.yml`. Each one carries its notes
as its body, grouped by change type, with a link to the commit behind
every line.
That workflow is **run by hand**, so a release holds everything merged
since the last one rather than one PR's worth. It used to fire on every
push to `main`, which made a version per merged PR (issue #115).
**This file is not generated and is not a copy of that.** `main` is a
protected branch, so nothing pushes a changelog commit back to it — and a
file that claimed to be a changelog while silently never updating would
be worse than no file at all. `make release-dry` prints what the next
merge would release.
be worse than no file at all. `make release-dry` prints what a release
run would cut right now, and the workflow's own `dry_run` input answers
the same question from CI.
History before `v0.0.1` is in `git log`. The versions before it were cut
by hand and are not on the releases page; the entries this file used to
+1243 -15
View File
File diff suppressed because it is too large Load Diff
+18 -7
View File
@@ -172,12 +172,17 @@ ui-setup: ## Install the Vitest browser provider's own Chromium (once)
bindings-check: ## Fail if the generated bindings are stale
@./scripts/bindings-check.sh
# Two CSS traps that report a long way from their cause, or not at all.
# A backtick inside a comment in a css`` literal ends the literal, and
# what you get back is a type error about CSSResult, or every test in
# the suite failing to import. Four sessions, three plans. Instant.
# the suite failing to import. Four sessions, three plans. And a nested
# rule starting with an element name is dropped by the device's
# Chrome 113 in silence -- no tier here runs an engine that can see it.
# Instant.
.PHONY: css-check
css-check: ## Fail if a css`` literal was ended early by a backtick in a comment
css-check: ## Fail on a css`` literal ended early by a backtick, or a nested rule needing an &
@cd frontend && node scripts/check-css-literals.mjs
@cd frontend && node scripts/check-css-nesting.mjs
# .pi/ and CLAUDE.md document commands, and a doc that documents a
# command wrongly is worse than no doc: an agent runs it confidently.
@@ -192,15 +197,21 @@ skill-check: ## Fail if the agent docs name a missing make target, or AGENTS.md
commit-check: ## Fail if a commit subject is not a Conventional Commit
@./scripts/commit-check.sh $(if $(RANGE),--range $(RANGE))
# What a merge to main would release, without releasing it. Reads the
# same .releaserc.yml CI does, so "why did that not cut a version" is
# answerable locally instead of by pushing and watching. Needs no
# credentials: --dry-run neither tags nor publishes.
# What running the release workflow now would ship, without shipping it.
# Reads the same .releaserc.yml CI does, so "why did that not cut a
# version" is answerable locally instead of by pushing and watching.
# Needs no credentials: --dry-run neither tags nor publishes.
#
# release.yml is dispatch-only, so this answers the question that
# actually gets asked now -- what has accumulated since the last tag --
# rather than what one merge would have done. The workflow's own
# `dry_run` input is the same answer from the runner, against whatever
# main points at rather than the working tree.
#
# The pins must stay identical to release.yml's, which is where the note
# on holding the conventionalcommits preset at 9 lives -- at 10 the
# release notes come out empty with everything green.
release-dry: ## Print the version a merge to main would release
release-dry: ## Print the version a release run would cut right now
@npx --yes \
-p semantic-release@25 \
-p @semantic-release/commit-analyzer@13 \
+30
View File
@@ -8,6 +8,7 @@ import (
"log/slog"
"yellowjacket/backend/database/sql/sqlcgen"
"yellowjacket/backend/tagtotals"
)
// TagChanges mirrors tagwriter.TagChanges — redefined here so the
@@ -28,6 +29,8 @@ const (
FieldYear = "year"
FieldTrackNumber = "track_number"
FieldDiscNumber = "disc_number"
FieldTotalTracks = "total_tracks"
FieldTotalDiscs = "total_discs"
FieldCoverArt = "cover_art"
)
@@ -418,5 +421,32 @@ func buildChanges(
changes[FieldDiscNumber] = track.DiscNumber
}
// The totals are what says "2 of 10" rather than a bare tick, and
// dropping them here is what made autotagging an album *erase* the
// evidence: the release becomes MBID-matched while the field
// GetAlbumCompleteness reads stays absent.
//
// They are written unconditionally where the candidate has a
// tracklist, not only when they differ from the local value, because
// the common case is a file that declares no total at all -- which
// compares equal to nothing and would be skipped by a diff guard.
if tracks, discs := tagtotals.For(
candidatePositions(cand), track.DiscNumber,
); tracks > 0 {
changes[FieldTotalTracks] = tracks
changes[FieldTotalDiscs] = discs
}
return changes
}
// candidatePositions is the candidate's tracklist as bare positions.
func candidatePositions(cand Candidate) []tagtotals.Position {
out := make([]tagtotals.Position, 0, len(cand.Tracks))
for _, t := range cand.Tracks {
out = append(out, tagtotals.Position{Disc: t.DiscNumber, Track: t.Position})
}
return out
}
+90
View File
@@ -0,0 +1,90 @@
package autotag
import "testing"
// Autotagging an album used to *erase* the evidence that says "2 of 10":
// the release became MBID-matched while the totals the files declared
// went unwritten, so the album page showed a plain tick. These pin the
// two halves of the fix that are easy to get wrong silently.
func TestBuildChanges_Totals(t *testing.T) {
t.Parallel()
twoDiscs := Candidate{
Tracks: []CandidateTrack{
{DiscNumber: 1, Position: 1},
{DiscNumber: 1, Position: 2},
{DiscNumber: 2, Position: 1},
{DiscNumber: 2, Position: 2},
{DiscNumber: 2, Position: 3},
},
}
tests := []struct {
name string
cand Candidate
local LocalTrack
track CandidateTrack
wantTracks any
wantDiscs any
}{
{
// The common case, and the one a diff guard would skip: the
// file declares no total at all, so the total "has not
// changed" and would never be written.
name: "a file with no total gets one",
cand: Candidate{Tracks: []CandidateTrack{
{Position: 1}, {Position: 2}, {Position: 3},
}},
local: LocalTrack{TrackNumber: 1},
track: CandidateTrack{Position: 1},
wantTracks: 3,
wantDiscs: 1,
},
{
// 5 here would be the release's track count. Summed once
// per disc by GetAlbumCompleteness that claims a ten-track
// expectation for a five-track album, which no library can
// ever satisfy.
name: "a multi-disc release totals the track's own disc",
cand: twoDiscs,
local: LocalTrack{},
track: CandidateTrack{DiscNumber: 2, Position: 1},
wantTracks: 3,
wantDiscs: 2,
},
{
name: "the other disc gets its own total",
cand: twoDiscs,
local: LocalTrack{},
track: CandidateTrack{DiscNumber: 1, Position: 1},
wantTracks: 2,
wantDiscs: 2,
},
{
// A candidate with no tracklist knows nothing, and writing
// a zero would claim it did.
name: "a candidate with no tracklist writes no total",
cand: Candidate{},
local: LocalTrack{},
track: CandidateTrack{Position: 1},
wantTracks: nil,
wantDiscs: nil,
},
}
for _, tc := range tests {
t.Run(tc.name, func(t *testing.T) {
t.Parallel()
changes := buildChanges(tc.local, tc.cand, tc.track)
if got := changes[FieldTotalTracks]; got != tc.wantTracks {
t.Errorf("%s: got %v, want %v", FieldTotalTracks, got, tc.wantTracks)
}
if got := changes[FieldTotalDiscs]; got != tc.wantDiscs {
t.Errorf("%s: got %v, want %v", FieldTotalDiscs, got, tc.wantDiscs)
}
})
}
}
+28
View File
@@ -17,6 +17,34 @@ const (
RecommendationStrong Recommendation = "strong"
)
// ConfidentTier is the tier at which this package considers a match
// good enough to act on without being asked to look.
//
// It exists as a name rather than as `== RecommendationStrong` at
// each call site because two features read it and they must not
// disagree about what "high confidence" means: the album page tells
// the user unprompted that the autotagger has a match (#28), and
// strict auto-accept will rewrite the files without asking (#90).
// A page that says "we are sure" about something the auto-accept
// pass would decline is the app contradicting itself.
//
// What the two do *not* share is everything else. Surfacing a match
// is a suggestion with a confirm dialog behind it; auto-accept is an
// irreversible on-disk rewrite, and #90 gates it on further
// conditions this tier cannot express — exact track count, every
// title matching, lengths within a couple of seconds, no cover
// replacement, no MBID conflict. So this is the floor both stand on,
// not the whole of either test.
const ConfidentTier = RecommendationStrong
// Confident reports whether a tier clears ConfidentTier.
//
// A comparison rather than an equality, so adding a tier above
// "strong" later does not silently stop qualifying.
func Confident(r Recommendation) bool {
return recommendationRank(r) >= recommendationRank(ConfidentTier)
}
const (
// Absolute score tiers.
strongScoreThresh = 0.90
+31
View File
@@ -168,3 +168,34 @@ func TestRecommend_LocalCandidatesWithoutRGMBIDCompareByTitle(t *testing.T) {
t.Errorf("different-title rival: Recommend = %q, want medium", got)
}
}
// The tier both features stand on is one name, checked here rather
// than assumed at two call sites.
//
// #28 renders "we have a match for this album" on the album page and
// #90 will rewrite files without asking; a page that claims confidence
// the auto-accept pass would decline is the app contradicting itself.
// What they do not share is everything else — auto-accept adds gates
// this tier cannot express — so this pins the floor, not the whole of
// either test.
func TestConfidentIsTheOneSharedFloor(t *testing.T) {
t.Parallel()
if ConfidentTier != RecommendationStrong {
t.Errorf("ConfidentTier = %q, want strong", ConfidentTier)
}
for _, tc := range []struct {
rec Recommendation
want bool
}{
{RecommendationNone, false},
{RecommendationLow, false},
{RecommendationMedium, false},
{RecommendationStrong, true},
} {
if got := Confident(tc.rec); got != tc.want {
t.Errorf("Confident(%q) = %v, want %v", tc.rec, got, tc.want)
}
}
}
+145
View File
@@ -0,0 +1,145 @@
package autotagservice
import (
"database/sql"
"fmt"
"yellowjacket/backend/autotag"
)
// AlbumMatchView is "the autotagger already has a confident match for
// the album you are looking at".
//
// It is deliberately not a score. The album page renders a suggestion,
// and a suggestion has to be actionable: which release, what it is
// called, and whether acting on it here would do the whole album or
// only part of it.
type AlbumMatchView struct {
// GroupKey is the tagging group the actions operate on.
GroupKey string `json:"groupKey"`
// Recommendation is the tier, as a string, for a caller that
// wants to render the strength rather than trust the filter.
Recommendation string `json:"recommendation"`
// Score is the top candidate's raw score, 0..1.
Score float64 `json:"score"`
// ReleaseMBID is the release Apply would write.
ReleaseMBID string `json:"releaseMbid"`
// Title and ArtistCredit name that release, so the banner can say
// what it is offering rather than "a match".
Title string `json:"title"`
ArtistCredit string `json:"artistCredit"`
// TrackCount is the group's local track count.
TrackCount int64 `json:"trackCount"`
// GroupCount is how many tagging groups this album spans.
//
// More than one means a multi-disc album (one group per disc), and
// it is the reason this is a field rather than an implementation
// detail: applying "the album" from a single button would retag
// one disc of three and leave the folder holding a mix of old and
// new tags. The caller offers review instead.
GroupCount int `json:"groupCount"`
}
// MatchForAlbum answers "does the autotagger have something confident
// to say about this album", for the album detail page.
//
// Three things about it are load-bearing.
//
// **It costs no MusicBrainz request.** Everything it needs is already
// on disk: `tagging_items` carries the top score and release from the
// background prefetch, and `tagging_candidates` durably holds the
// scored list. The rate limiters here are shared with every page the
// user can open, so a lookup that fires on page load must not join
// that queue — which also means this returns nothing for a folder
// nobody has scored yet, rather than scoring it now. That is the
// right trade: the prefetch will get to it, and a page that silently
// spends a minute of somebody's MusicBrainz budget to draw a banner
// is worse than a page that says nothing.
//
// **The tier is computed, not read.** `tagging_items.score` is the raw
// number and `Recommend` is what turns it into a claim — capping it
// for an ambiguous runner-up, an incomplete alignment or a folder too
// small to corroborate itself. Filtering on the raw score would
// promise confidence the scorer had explicitly withheld.
//
// **Nothing is said about an album the user has already answered
// for.** Only a `pending` group qualifies: `confirmed` covers both a
// finished apply and an explicit "leave as is", and `skipped` is the
// user saying not now. Re-offering either is nagging, and "leave as
// is" would be actively wrong to argue with.
func (s *Service) MatchForAlbum(albumID int64) (*AlbumMatchView, error) {
if albumID <= 0 {
return nil, nil //nolint:nilnil // "no album" is not an error.
}
rows, err := s.db.Queries.GetTaggingItemsForAlbum(
s.ctx, sql.NullInt64{Int64: albumID, Valid: true},
)
if err != nil {
return nil, fmt.Errorf("tagging items for album: %w", err)
}
pending := rows[:0:0]
for _, row := range rows {
if row.Status == "pending" {
pending = append(pending, row)
}
}
if len(pending) == 0 {
return nil, nil //nolint:nilnil // nothing to say is not an error.
}
// Rows arrive best-score-first, so the first pending one is the
// group worth describing. On a multi-disc album that is one disc
// of several and GroupCount says so.
best := pending[0]
cands := s.lookupCachedCandidates(best.GroupKey)
if len(cands) == 0 {
return nil, nil //nolint:nilnil // not scored yet; see the doc comment.
}
locals, err := s.scorer.LocalTracksForGroup(s.ctx, best.GroupKey)
if err != nil {
return nil, fmt.Errorf("local tracks for group: %w", err)
}
group := autotag.Group{
AlbumName: best.AlbumName,
AlbumArtist: best.AlbumArtist,
Tracks: locals,
Synthetic: best.Synthetic != 0,
}
rec := autotag.Recommend(group, cands)
if !autotag.Confident(rec) {
return nil, nil //nolint:nilnil // not confident enough to interrupt.
}
top := cands[0]
// The release the banner names must be the release Apply would
// write. Apply with an empty MBID takes the top cached candidate,
// which is what this reads — but it is passed explicitly anyway,
// so a rescore between the page rendering and the user clicking
// cannot swap the album out from under a button they have already
// read.
return &AlbumMatchView{
GroupKey: best.GroupKey,
Recommendation: string(rec),
Score: top.Score,
ReleaseMBID: top.ReleaseMBID,
Title: top.Title,
ArtistCredit: top.ArtistCredit,
TrackCount: best.TrackCount,
GroupCount: len(pending),
}, nil
}
+320
View File
@@ -0,0 +1,320 @@
package autotagservice
import (
"encoding/json"
"testing"
"yellowjacket/backend/autotag"
"yellowjacket/backend/database"
)
// seedAlbumGroup writes one album's files, its tagging item and the
// durable candidate blob the prefetch would have left behind.
//
// The candidate list is what a real one looks like in the two ways
// that decide the tier: a per-track alignment for every local track,
// and a runner-up far enough away not to count as ambiguity.
func seedAlbumGroup(
t *testing.T,
db *database.DB,
groupKey string,
tracks int,
status string,
score float64,
) int64 {
t.Helper()
for i := 1; i <= tracks; i++ {
database.InsertTestTrack(t, db, database.TestTrack{
FilePath: filePathFor(groupKey, i),
Title: titleFor(i),
Artist: "Tideline",
Album: "Glass Harbour",
AlbumArtist: "Tideline",
TrackNumber: int64(i),
LengthMs: 200000,
LibraryID: 0,
GroupKey: groupKey,
})
}
if _, err := db.ExecContext(`
INSERT INTO tagging_items
(group_key, library_id, track_count, album_name, album_artist,
disc_number, status, score, best_match_release_mbid)
VALUES (?, 0, ?, 'Glass Harbour', 'Tideline', 0, ?, ?, 'rel-1')
`, groupKey, tracks, status, score); err != nil {
t.Fatalf("insert tagging item: %v", err)
}
var albumID int64
if err := db.QueryRowWriter(
`SELECT album_id FROM audio_files WHERE group_key = ? LIMIT 1`, groupKey,
).Scan(&albumID); err != nil {
t.Fatalf("read album id: %v", err)
}
return albumID
}
func filePathFor(groupKey string, n int) string {
return "/music/" + groupKey + "/0" + string(rune('0'+n)) + ".mp3"
}
func titleFor(n int) string {
return "Track " + string(rune('0'+n))
}
// storeCandidates writes the durable blob GetCandidates would have
// cached, with `top` as the winning score.
func storeCandidates(
t *testing.T, db *database.DB, groupKey string, tracks int, top float64,
) {
t.Helper()
aligns := make([]autotag.TrackAlignment, 0, tracks)
for i := range tracks {
aligns = append(aligns, autotag.TrackAlignment{
Status: autotag.AlignmentMatched,
LocalIndex: i,
})
}
cands := []autotag.Candidate{
{
ReleaseMBID: "rel-1",
ReleaseGroupMBID: "rg-1",
Title: "Glass Harbour",
ArtistCredit: "Tideline",
TrackCount: tracks,
Alignments: aligns,
Score: top,
},
{
ReleaseMBID: "rel-2",
ReleaseGroupMBID: "rg-2",
Title: "Something Else",
ArtistCredit: "Another Band",
TrackCount: tracks,
Score: 0.40,
},
}
blob, err := json.Marshal(cands)
if err != nil {
t.Fatalf("marshal candidates: %v", err)
}
if _, err := db.ExecContext(
`INSERT INTO tagging_candidates (group_key, candidates) VALUES (?, ?)`,
groupKey, string(blob),
); err != nil {
t.Fatalf("insert candidates: %v", err)
}
}
// A confident match is what the album page exists to surface.
func TestMatchForAlbumSurfacesAConfidentMatch(t *testing.T) {
t.Parallel()
db := database.NewTestDB(t)
svc := newTestService(t, db)
albumID := seedAlbumGroup(t, db, "grp-1", 8, "pending", 0.95)
storeCandidates(t, db, "grp-1", 8, 0.95)
got, err := svc.MatchForAlbum(albumID)
if err != nil {
t.Fatalf("MatchForAlbum: %v", err)
}
if got == nil {
t.Fatal("no match returned for a strong candidate")
}
if got.Recommendation != string(autotag.RecommendationStrong) {
t.Errorf("recommendation = %q, want strong", got.Recommendation)
}
// The release named is the release Apply would write — the page
// must not offer one album and tag another.
if got.ReleaseMBID != "rel-1" || got.Title != "Glass Harbour" {
t.Errorf("named %q/%q, want rel-1/Glass Harbour", got.ReleaseMBID, got.Title)
}
if got.GroupCount != 1 {
t.Errorf("groupCount = %d, want 1", got.GroupCount)
}
}
// The tier is computed from the candidates, not read off the raw
// score — a high number the scorer would have capped must not reach
// the page as confidence it withheld.
func TestMatchForAlbumDoesNotTrustTheStoredScore(t *testing.T) {
t.Parallel()
db := database.NewTestDB(t)
svc := newTestService(t, db)
// Two tracks: below the evidence floor, so `Recommend` caps this
// at medium however well it scores.
albumID := seedAlbumGroup(t, db, "grp-2", 2, "pending", 0.99)
storeCandidates(t, db, "grp-2", 2, 0.99)
got, err := svc.MatchForAlbum(albumID)
if err != nil {
t.Fatalf("MatchForAlbum: %v", err)
}
if got != nil {
t.Errorf("surfaced %+v for a two-track folder, want nothing", got)
}
}
// A weak match is not worth interrupting for.
func TestMatchForAlbumStaysQuietBelowTheTier(t *testing.T) {
t.Parallel()
db := database.NewTestDB(t)
svc := newTestService(t, db)
albumID := seedAlbumGroup(t, db, "grp-3", 8, "pending", 0.60)
storeCandidates(t, db, "grp-3", 8, 0.60)
got, err := svc.MatchForAlbum(albumID)
if err != nil {
t.Fatalf("MatchForAlbum: %v", err)
}
if got != nil {
t.Errorf("surfaced %+v for a 0.60 match, want nothing", got)
}
}
// An album the user has already answered for is not re-offered.
//
// `confirmed` covers both a finished apply and an explicit "leave as
// is", and arguing with the second would be actively wrong.
func TestMatchForAlbumRespectsAnAnswerAlreadyGiven(t *testing.T) {
t.Parallel()
for _, status := range []string{"confirmed", "skipped", "matched"} {
t.Run(status, func(t *testing.T) {
t.Parallel()
db := database.NewTestDB(t)
svc := newTestService(t, db)
albumID := seedAlbumGroup(t, db, "grp-"+status, 8, status, 0.95)
storeCandidates(t, db, "grp-"+status, 8, 0.95)
got, err := svc.MatchForAlbum(albumID)
if err != nil {
t.Fatalf("MatchForAlbum: %v", err)
}
if got != nil {
t.Errorf("surfaced %+v for a %s group, want nothing", got, status)
}
})
}
}
// A folder nobody has scored yet says nothing, rather than scoring it
// now: the MusicBrainz limiter is shared with every page the user can
// open, and this runs on page load.
func TestMatchForAlbumMakesNoNetworkCallForAnUnscoredFolder(t *testing.T) {
t.Parallel()
db := database.NewTestDB(t)
svc := newTestService(t, db)
// No storeCandidates: the prefetch has not reached this folder.
albumID := seedAlbumGroup(t, db, "grp-4", 8, "pending", 0.95)
got, err := svc.MatchForAlbum(albumID)
if err != nil {
t.Fatalf("MatchForAlbum: %v", err)
}
if got != nil {
t.Errorf("surfaced %+v with no cached candidates, want nothing", got)
}
}
// A multi-disc album is several groups, and the count is what stops
// the page offering one button that would retag one disc of two.
func TestMatchForAlbumCountsEveryGroupOfTheAlbum(t *testing.T) {
t.Parallel()
db := database.NewTestDB(t)
svc := newTestService(t, db)
albumID := seedAlbumGroup(t, db, "grp-d1", 8, "pending", 0.95)
storeCandidates(t, db, "grp-d1", 8, 0.95)
// Disc two: same album row, its own folder and tagging group.
for i := 1; i <= 6; i++ {
database.InsertTestTrack(t, db, database.TestTrack{
FilePath: filePathFor("grp-d2", i),
Title: titleFor(i),
Artist: "Tideline",
Album: "Glass Harbour",
AlbumArtist: "Tideline",
TrackNumber: int64(i),
DiscNumber: 2,
LengthMs: 200000,
LibraryID: 0,
GroupKey: "grp-d2",
})
}
if _, err := db.ExecContext(`
INSERT INTO tagging_items
(group_key, library_id, track_count, album_name, album_artist,
disc_number, status, score)
VALUES ('grp-d2', 0, 6, 'Glass Harbour', 'Tideline', 2, 'pending', 0.93)
`); err != nil {
t.Fatalf("insert disc two: %v", err)
}
storeCandidates(t, db, "grp-d2", 6, 0.93)
got, err := svc.MatchForAlbum(albumID)
if err != nil {
t.Fatalf("MatchForAlbum: %v", err)
}
if got == nil {
t.Fatal("no match returned")
}
if got.GroupCount != 2 {
t.Errorf("groupCount = %d, want 2", got.GroupCount)
}
// Best-first: the 0.95 disc is the one described.
if got.GroupKey != "grp-d1" {
t.Errorf("described %q, want the higher-scoring grp-d1", got.GroupKey)
}
}
// An album with no local files at all — a pure catalog page — is not
// a question this can answer.
func TestMatchForAlbumSaysNothingWithoutAnAlbum(t *testing.T) {
t.Parallel()
db := database.NewTestDB(t)
svc := newTestService(t, db)
for _, id := range []int64{0, -1, 4242} {
got, err := svc.MatchForAlbum(id)
if err != nil {
t.Fatalf("MatchForAlbum(%d): %v", id, err)
}
if got != nil {
t.Errorf("MatchForAlbum(%d) = %+v, want nil", id, got)
}
}
}
+38
View File
@@ -0,0 +1,38 @@
package autotagservice
import (
"testing"
"yellowjacket/backend/autotag"
"yellowjacket/backend/tagwriter"
)
// twAdapter passes the diff map through unchanged, so autotag's field
// constants and tagwriter's are the same keys written down twice --
// deliberately, to keep autotag out of the write pipeline's import
// graph. A key that drifts does not fail to compile and does not fail
// to write: the writer simply finds no entry under the name it looks
// for, and the field is silently dropped. That is what this pins, and
// this package is the one place that imports both.
func TestAutotagAndTagwriterAgreeOnFieldNames(t *testing.T) {
t.Parallel()
pairs := map[string][2]string{
"title": {autotag.FieldTitle, tagwriter.FieldTitle},
"artist": {autotag.FieldArtist, tagwriter.FieldArtist},
"album": {autotag.FieldAlbum, tagwriter.FieldAlbum},
"album artist": {autotag.FieldAlbumArtist, tagwriter.FieldAlbumArtist},
"year": {autotag.FieldYear, tagwriter.FieldYear},
"track number": {autotag.FieldTrackNumber, tagwriter.FieldTrackNumber},
"disc number": {autotag.FieldDiscNumber, tagwriter.FieldDiscNumber},
"total tracks": {autotag.FieldTotalTracks, tagwriter.FieldTotalTracks},
"total discs": {autotag.FieldTotalDiscs, tagwriter.FieldTotalDiscs},
"cover art": {autotag.FieldCoverArt, tagwriter.FieldCoverArt},
}
for name, pair := range pairs {
if pair[0] != pair[1] {
t.Errorf("%s: autotag says %q, tagwriter says %q", name, pair[0], pair[1])
}
}
}
+119 -1
View File
@@ -544,7 +544,7 @@ func (c *Config) SetDefaultPage(page string) error {
c.General.ApplyDefaults()
}
c.General.DefaultPage = DefaultPage(page)
c.General.DefaultPage = View(page)
if err := c.General.Validate(); err != nil {
return fmt.Errorf(
@@ -666,6 +666,124 @@ func (c *Config) SetAllowMeteredCatalogDownload(allow bool) error {
return nil
}
// GetPopupVolume reports whether the bottom bar's volume control is a
// click-to-open popup rather than an inline slider (#42).
func (c *Config) GetPopupVolume() bool {
if c.General == nil {
return false
}
return c.General.PopupVolume
}
// SetPopupVolume saves the volume control's presentation.
//
// Nothing to validate: both values are legal at every width, and the
// frontend additionally stands the inline slider down below the phone
// breakpoint whatever this says, because that is about room rather than
// about preference.
func (c *Config) SetPopupVolume(popup bool) error {
if c.General == nil {
c.General = &GeneralConfig{}
c.General.ApplyDefaults()
}
c.General.PopupVolume = popup
if err := c.Save(); err != nil {
return fmt.Errorf(
"could not save config: %w", err,
)
}
events.Emit(
c.ctx,
events.GeneralConfigChanged,
map[string]any{
"PopupVolume": popup,
},
)
c.logger.Info("volume control presentation updated", "popup", popup)
return nil
}
// GetViewVisibility reports which primary views the sidebar should
// show, answered for every known view rather than only the ones the
// config mentions -- so the frontend filters on a value and never has
// to hold a second copy of the defaults.
func (c *Config) GetViewVisibility() map[string]bool {
if c.General == nil {
general := &GeneralConfig{}
general.ApplyDefaults()
return general.ResolvedViewVisibility()
}
return c.General.ResolvedViewVisibility()
}
// SetViewVisible shows or hides one primary view.
//
// Two refusals, both about a state the user cannot get out of from the
// UI they would be left with: Settings is never hideable, and the
// launch page is never hideable while it is the launch page (change it
// first). Hiding a view does not make it unreachable -- `navigate`
// still resolves it, which detail views depend on -- it only takes the
// nav item away.
func (c *Config) SetViewVisible(view string, visible bool) error {
spec, known := LookupView(view)
if !known {
return fmt.Errorf("%w: %q", errUnknownView, view)
}
if c.General == nil {
c.General = &GeneralConfig{}
c.General.ApplyDefaults()
}
if !visible {
if !spec.Hideable {
return fmt.Errorf("%w: %q", errViewNotHideable, view)
}
if spec.ID == c.General.DefaultPage {
return fmt.Errorf("%w: %q", errViewIsLaunchPage, view)
}
}
if c.General.ViewVisibility == nil {
c.General.ViewVisibility = make(map[string]bool, len(Views))
}
c.General.ViewVisibility[view] = visible
if err := c.General.Validate(); err != nil {
return fmt.Errorf("invalid view visibility: %w", err)
}
if err := c.Save(); err != nil {
return fmt.Errorf("could not save config: %w", err)
}
events.Emit(
c.ctx,
events.GeneralConfigChanged,
map[string]any{
"ViewVisibility": c.General.ResolvedViewVisibility(),
},
)
c.logger.Info(
"view visibility updated",
"view", view,
"visible", visible,
)
return nil
}
// GetTrackListColumns returns the configured track-list columns.
func (c *Config) GetTrackListColumns() []tracklist.Column {
if c.TrackList == nil {
+40
View File
@@ -188,3 +188,43 @@ func TestEmit_FavoritesChangeCarriesFullConfig(t *testing.T) {
}
}
}
// TestEmit_PopupVolumeRoundTripsAndDefaultsToInline pins both halves of
// #42's storage decision.
//
// The **default** is the load-bearing one: inline is what a fresh
// install and an existing `config.toml` with no such key must both
// produce, which is why the field names the popup rather than the
// inline slider. A flag spelled the other way round would default to
// false, hand every existing install the popup this issue exists to
// stop being the only option, and need a migration to say otherwise.
func TestEmit_PopupVolumeRoundTripsAndDefaultsToInline(t *testing.T) {
t.Parallel()
conf, rec := setupRecordedConfig(t)
if conf.GetPopupVolume() {
t.Error("a config with no PopupVolume key wants the popup, want inline")
}
if err := conf.SetPopupVolume(true); err != nil {
t.Fatalf("SetPopupVolume: %v", err)
}
if !conf.GetPopupVolume() {
t.Error("GetPopupVolume = false after setting it true")
}
data := payloadMap(t, rec, events.GeneralConfigChanged)
if data["PopupVolume"] != true {
t.Errorf("PopupVolume = %v, want true", data["PopupVolume"])
}
if err := conf.SetPopupVolume(false); err != nil {
t.Fatalf("SetPopupVolume(false): %v", err)
}
if conf.GetPopupVolume() {
t.Error("GetPopupVolume = true after setting it false")
}
}
+96 -26
View File
@@ -5,27 +5,13 @@ import (
"fmt"
)
// DefaultPage identifies which view the app opens to on launch.
type DefaultPage string
// Valid DefaultPage values, matching the frontend's top-level route ids.
const (
DefaultPageHome DefaultPage = "home"
DefaultPageTracks DefaultPage = "tracks"
DefaultPageAlbums DefaultPage = "albums"
DefaultPageArtists DefaultPage = "artists"
DefaultPageGenres DefaultPage = "genres"
DefaultPagePlaylists DefaultPage = "playlists"
DefaultPageExplore DefaultPage = "explore"
DefaultPageDownloads DefaultPage = "downloads"
DefaultPageAutotag DefaultPage = "autotag"
DefaultPageJobs DefaultPage = "jobs"
)
// DefaultDefaultPage is the launch page for a fresh install.
const DefaultDefaultPage = DefaultPageHome
const DefaultDefaultPage = ViewHome
var errUnknownDefaultPage = errors.New("unknown default page")
var (
errUnknownDefaultPage = errors.New("unknown default page")
errViewCannotLaunch = errors.New("view cannot be the launch page")
)
// QueueFallback identifies what plays, if anything, once the queue
// runs out with nothing left to auto-advance to.
@@ -46,18 +32,52 @@ var errUnknownQueueFallback = errors.New("unknown queue fallback")
// GeneralConfig holds general application preferences that don't
// belong to a more specific subsystem.
type GeneralConfig struct {
DefaultPage DefaultPage `toml:"DefaultPage"`
DefaultPage View `toml:"DefaultPage"`
QueueFallback QueueFallback `toml:"QueueFallback"`
// ViewVisibility says which sidebar destinations are shown, keyed by
// view id.
//
// **An absent key means that view's own default** (`Views`), and that
// is the whole reason this is a map rather than a `HiddenViews
// []string` or a struct of booleans. A list's zero value is "hide
// nothing", which cannot express Autotag being off by default without
// a migration; a struct field for a view that later stops existing is
// stored garbage somebody has to deprecate. Here a view added later
// gets its own default rather than being invisible or forcibly
// visible, an unknown key is dropped on load, and no install needs
// migrating in either direction. Same polarity rule as
// AllowMeteredCatalogDownload: the zero value is the intended answer.
ViewVisibility map[string]bool `toml:"ViewVisibility"`
// AllowMeteredCatalogDownload permits the ~0.6 GB Explore catalog to
// be fetched on a connection the platform calls cellular. It defaults
// to false, which is the whole point: the zero value is the safe one,
// so an existing config with no such key refuses by default rather
// than needing a migration to become careful.
AllowMeteredCatalogDownload bool `toml:"AllowMeteredCatalogDownload"`
// PopupVolume draws the bottom bar's volume as a click-to-open popup
// instead of a slider that is always there (#42).
//
// The polarity is the rule this file already states twice: **the
// zero value is the intended answer**. Inline is the new default, so
// the flag has to name the *other* choice — an `InlineVolume bool`
// would default to false and give every existing install the popup
// this issue exists to stop being the only option, and would need a
// migration to say otherwise.
PopupVolume bool `toml:"PopupVolume"`
}
// ApplyDefaults fills zero-value fields with sensible defaults.
//
// A launch page naming a *retired* view is treated as a zero value
// rather than as an error, because the alternative is an app that will
// not start for anyone who had that page selected when it was removed.
// An unknown-but-not-retired name still fails Validate: that is a typo,
// and telling someone about it is the useful answer.
func (c *GeneralConfig) ApplyDefaults() {
if _, retired := RetiredViews[c.DefaultPage]; retired {
c.DefaultPage = ""
}
if c.DefaultPage == "" {
c.DefaultPage = DefaultDefaultPage
}
@@ -71,15 +91,17 @@ func (c *GeneralConfig) ApplyDefaults() {
func (c *GeneralConfig) Validate() error {
c.ApplyDefaults()
switch c.DefaultPage {
case DefaultPageHome, DefaultPageTracks, DefaultPageAlbums, DefaultPageArtists,
DefaultPageGenres, DefaultPagePlaylists, DefaultPageExplore, DefaultPageDownloads,
DefaultPageAutotag, DefaultPageJobs:
// Valid.
default:
spec, known := LookupView(string(c.DefaultPage))
if !known {
return fmt.Errorf("%w: %q", errUnknownDefaultPage, c.DefaultPage)
}
if !spec.CanLaunch {
return fmt.Errorf("%w: %q", errViewCannotLaunch, c.DefaultPage)
}
c.normalizeViewVisibility()
switch c.QueueFallback {
case QueueFallbackStop, QueueFallbackFavorites, QueueFallbackDynamicMix:
// Valid.
@@ -89,3 +111,51 @@ func (c *GeneralConfig) Validate() error {
return nil
}
// normalizeViewVisibility drops what the stored map may not say, and
// repairs the one invariant the shell depends on.
//
// Three things are dropped or forced, and all three are reachable only
// from a hand-edited config or from a version that knew different
// views: an unknown id (a view removed since, e.g. when #27 folds Jobs
// into Settings) says nothing to anybody; a view that is not Hideable
// cannot be false; and **the launch page is always visible**, because
// otherwise an install lands on a page with no nav item pointing at it.
//
// That last one is a *repair* here and an *error* at the setter
// (SetViewVisible), deliberately. On load there is nobody to tell and
// the honest reading of "my launch page is Autotag" is that this user
// wants Autotag, so it is un-hidden rather than the launch page being
// silently reset to something they did not choose. At the setter the
// user is right there and can act, so it refuses and says why.
func (c *GeneralConfig) normalizeViewVisibility() {
for id := range c.ViewVisibility {
spec, known := LookupView(id)
if !known || !spec.Hideable {
delete(c.ViewVisibility, id)
}
}
if visible, ok := c.ViewVisibility[string(c.DefaultPage)]; ok && !visible {
c.ViewVisibility[string(c.DefaultPage)] = true
}
}
// ResolvedViewVisibility answers for every known view, so no caller has
// to know the defaults -- the frontend included, which is why the
// binding returns this rather than the stored map.
func (c *GeneralConfig) ResolvedViewVisibility() map[string]bool {
resolved := make(map[string]bool, len(Views))
for _, v := range Views {
visible := v.VisibleByDefault
if stored, ok := c.ViewVisibility[string(v.ID)]; ok && v.Hideable {
visible = stored
}
resolved[string(v.ID)] = visible
}
return resolved
}
+103
View File
@@ -0,0 +1,103 @@
package config
import "errors"
var (
errUnknownView = errors.New("unknown view")
errViewNotHideable = errors.New("view cannot be hidden")
errViewIsLaunchPage = errors.New("view is the launch page")
)
// View identifies one of the shell's primary destinations -- the
// things the sidebar lists and `index.ts` knows as `VIEW_TAGS`.
type View string
// The primary views, in no particular order: the sidebar owns the order
// it draws them in, because that is presentation.
const (
ViewHome View = "home"
ViewPlaylists View = "playlists"
ViewArtists View = "artists"
ViewGenres View = "genres"
ViewAlbums View = "albums"
ViewTracks View = "tracks"
ViewExplore View = "explore"
ViewDownloads View = "downloads"
ViewAutotag View = "autotag"
ViewSettings View = "settings"
)
// RetiredViews are destinations that used to exist and no longer do.
//
// A *visibility* entry for a removed view needs no such list: it is a
// key in a map, and an unknown key is dropped on load. A `DefaultPage`
// is a **value**, and an unknown one fails validation -- which on the
// load path means the app refuses to start rather than a setting being
// ignored. So the one shape that cannot be retired for free is named
// here and reset to the default instead.
//
// `jobs` was folded into Settings by #27: library scans under
// Libraries, index work under Search Index, downloads under the
// download clients, and the autotag apply into the Autotag view.
var RetiredViews = map[View]struct{}{
"jobs": {},
}
// ViewSpec is what the backend knows about a destination. The label and
// the icon are deliberately absent: those are presentation, they live
// beside the rest of the app's icon vocabulary in
// `frontend/src/utils/icon-language.ts`, and a Go copy of them would be
// a second thing to keep in step for nothing.
type ViewSpec struct {
// ID is the view name the frontend navigates by.
ID View
// VisibleByDefault is what an install gets when the config says
// nothing about this view -- which is every install until somebody
// changes it, and every view added after this one shipped.
VisibleByDefault bool
// Hideable is false for Settings alone. It is a property of the
// view rather than a check in the setter because `config.toml` is
// hand-editable, and an app that can be locked out of its own
// Settings by a typo is a support problem nobody can debug
// remotely.
Hideable bool
// CanLaunch reports whether the view may be the launch page.
// Settings is the only one that may not, which is the shape the
// DefaultPage enum already had.
CanLaunch bool
}
// Views is the one list of primary destinations, in the order Settings
// offers them.
//
// It is the single source for three things that used to be written down
// separately: which views exist, which of them may be the launch page
// (`DefaultPage`'s validation reads it), and what an unconfigured
// install shows.
//
// Autotag is the one view hidden by default: it rewrites tags on disk,
// which is not what most libraries want on day one, and #25 asks for it
// to be turned on deliberately.
var Views = []ViewSpec{
{ID: ViewHome, VisibleByDefault: true, Hideable: true, CanLaunch: true},
{ID: ViewPlaylists, VisibleByDefault: true, Hideable: true, CanLaunch: true},
{ID: ViewArtists, VisibleByDefault: true, Hideable: true, CanLaunch: true},
{ID: ViewGenres, VisibleByDefault: true, Hideable: true, CanLaunch: true},
{ID: ViewAlbums, VisibleByDefault: true, Hideable: true, CanLaunch: true},
{ID: ViewTracks, VisibleByDefault: true, Hideable: true, CanLaunch: true},
{ID: ViewExplore, VisibleByDefault: true, Hideable: true, CanLaunch: true},
{ID: ViewDownloads, VisibleByDefault: true, Hideable: true, CanLaunch: true},
{ID: ViewAutotag, VisibleByDefault: false, Hideable: true, CanLaunch: true},
{ID: ViewSettings, VisibleByDefault: true, Hideable: false, CanLaunch: false},
}
// LookupView returns the spec for a view id.
func LookupView(id string) (ViewSpec, bool) {
for _, v := range Views {
if string(v.ID) == id {
return v, true
}
}
return ViewSpec{}, false
}
+307
View File
@@ -0,0 +1,307 @@
package config
import (
"errors"
"log/slog"
"path/filepath"
"testing"
)
// newViewTestConfig builds a Config backed by a temp file, which is all
// SetViewVisible needs: it saves and emits, and the emit is a no-op
// without a running app.
func newViewTestConfig(t *testing.T) *Config {
t.Helper()
c := &Config{
logger: slog.Default(),
filePath: filepath.Join(t.TempDir(), "config.toml"),
}
// Load a file that is not there: that is what marks the config
// loaded, without which Save refuses on the *second* write.
if err := c.Load(); err != nil {
t.Fatalf("Load() error: %v", err)
}
return c
}
// A view the config says nothing about takes its own default, which is
// what makes this need no migration in either direction: an existing
// install gets Autotag hidden without a key, and a view added later
// gets its own answer rather than the list's.
func TestViewVisibilityDefaults(t *testing.T) {
t.Parallel()
general := &GeneralConfig{}
general.ApplyDefaults()
resolved := general.ResolvedViewVisibility()
if len(resolved) != len(Views) {
t.Fatalf("resolved %d views, want %d", len(resolved), len(Views))
}
if resolved[string(ViewAutotag)] {
t.Error("autotag should be hidden by default")
}
for _, v := range Views {
if v.ID == ViewAutotag {
continue
}
if !resolved[string(v.ID)] {
t.Errorf("%s should be visible by default", v.ID)
}
}
}
// A stored answer wins over the default, in both directions -- turning
// Autotag on is the whole user-facing point.
func TestViewVisibilityStoredWins(t *testing.T) {
t.Parallel()
general := &GeneralConfig{
ViewVisibility: map[string]bool{
string(ViewAutotag): true,
string(ViewExplore): false,
},
}
general.ApplyDefaults()
resolved := general.ResolvedViewVisibility()
if !resolved[string(ViewAutotag)] {
t.Error("autotag was switched on and should be visible")
}
if resolved[string(ViewExplore)] {
t.Error("explore was switched off and should be hidden")
}
}
// A key for a view that no longer exists is discarded rather than
// migrated. This is the property the #25-before-#27 ordering rests on:
// when Jobs folds into Settings, `jobs = true` in somebody's config is
// a key nothing asks about, not a cleanup task.
func TestValidateDropsUnknownAndUnhideableViews(t *testing.T) {
t.Parallel()
general := &GeneralConfig{
ViewVisibility: map[string]bool{
"a-view-that-was-removed": true,
string(ViewSettings): false,
string(ViewAutotag): true,
},
}
if err := general.Validate(); err != nil {
t.Fatalf("Validate() error: %v", err)
}
if _, ok := general.ViewVisibility["a-view-that-was-removed"]; ok {
t.Error("an unknown view id should be dropped on load")
}
if _, ok := general.ViewVisibility[string(ViewSettings)]; ok {
t.Error("settings is not hideable and should not be stored")
}
if !general.ResolvedViewVisibility()[string(ViewSettings)] {
t.Error("settings must resolve visible whatever the file said")
}
}
// On load there is nobody to tell, so a launch page hidden by a
// hand-edited file is un-hidden rather than the launch page being
// reset to something the user did not choose.
func TestValidateRevealsAHiddenLaunchPage(t *testing.T) {
t.Parallel()
general := &GeneralConfig{
DefaultPage: ViewAutotag,
ViewVisibility: map[string]bool{
string(ViewAutotag): false,
},
}
if err := general.Validate(); err != nil {
t.Fatalf("Validate() error: %v", err)
}
if !general.ResolvedViewVisibility()[string(ViewAutotag)] {
t.Error("the launch page must be visible")
}
}
// A launch page naming a view that no longer exists resets to the
// default instead of failing validation, which on the load path would
// mean the app refusing to start for whoever had it selected.
//
// This is the one shape #25's storage decision does *not* make free: a
// visibility entry is a key and an unknown key is dropped, but a launch
// page is a value.
func TestARetiredLaunchPageFallsBackToTheDefault(t *testing.T) {
t.Parallel()
general := &GeneralConfig{DefaultPage: "jobs"}
if err := general.Validate(); err != nil {
t.Fatalf("Validate() error: %v", err)
}
if general.DefaultPage != DefaultDefaultPage {
t.Errorf("DefaultPage = %q, want %q", general.DefaultPage, DefaultDefaultPage)
}
}
// A name that is merely wrong is still an error: that is a typo, and
// saying so is more useful than ignoring it.
func TestAnUnknownLaunchPageIsStillAnError(t *testing.T) {
t.Parallel()
general := &GeneralConfig{DefaultPage: "nonsense"}
if err := general.Validate(); !errors.Is(err, errUnknownDefaultPage) {
t.Fatalf("Validate() error = %v, want errUnknownDefaultPage", err)
}
}
// A retired view is not a view, so nothing offers it and nothing
// resolves it -- the visibility map included.
func TestARetiredViewIsGone(t *testing.T) {
t.Parallel()
for id := range RetiredViews {
if _, ok := LookupView(string(id)); ok {
t.Errorf("%s is retired but still in Views", id)
}
general := &GeneralConfig{}
general.ApplyDefaults()
if _, ok := general.ResolvedViewVisibility()[string(id)]; ok {
t.Errorf("%s is retired but still resolves a visibility", id)
}
}
}
// Settings may not be the launch page, which is the shape the old
// DefaultPage enum had and is now read off the same table.
func TestValidateRejectsAnUnlaunchablePage(t *testing.T) {
t.Parallel()
general := &GeneralConfig{DefaultPage: ViewSettings}
err := general.Validate()
if !errors.Is(err, errViewCannotLaunch) {
t.Fatalf("Validate() error = %v, want errViewCannotLaunch", err)
}
}
// At the setter the user is present and can act, so the two states
// they could not get out of are refused rather than repaired.
func TestSetViewVisibleRefusals(t *testing.T) {
t.Parallel()
tests := []struct {
name string
view string
visible bool
want error
}{
{"settings is never hideable", string(ViewSettings), false, errViewNotHideable},
{"the launch page is not hideable", string(ViewHome), false, errViewIsLaunchPage},
{"an unknown view is not a setting", "nonsense", false, errUnknownView},
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
t.Parallel()
c := newViewTestConfig(t)
err := c.SetViewVisible(tt.view, tt.visible)
if !errors.Is(err, tt.want) {
t.Fatalf("SetViewVisible() error = %v, want %v", err, tt.want)
}
})
}
}
// Showing a view is never refused, including Settings and the launch
// page -- there is no state to be stuck in.
func TestSetViewVisibleShowsAnything(t *testing.T) {
t.Parallel()
c := newViewTestConfig(t)
for _, v := range Views {
if err := c.SetViewVisible(string(v.ID), true); err != nil {
t.Fatalf("SetViewVisible(%q, true) error: %v", v.ID, err)
}
}
if !c.GetViewVisibility()[string(ViewAutotag)] {
t.Error("autotag was switched on and should be visible")
}
}
// The stored map survives a save/load round trip, which is what a
// map-valued TOML key is worth checking for.
func TestViewVisibilityRoundTrips(t *testing.T) {
t.Parallel()
path := filepath.Join(t.TempDir(), "config.toml")
original := &Config{logger: slog.Default(), filePath: path}
if err := original.Load(); err != nil {
t.Fatalf("Load() error: %v", err)
}
if err := original.SetViewVisible(string(ViewAutotag), true); err != nil {
t.Fatalf("SetViewVisible() error: %v", err)
}
if err := original.SetViewVisible(string(ViewExplore), false); err != nil {
t.Fatalf("SetViewVisible() error: %v", err)
}
loaded := &Config{logger: slog.Default(), filePath: path}
if err := loaded.Load(); err != nil {
t.Fatalf("Load() error: %v", err)
}
resolved := loaded.GetViewVisibility()
if !resolved[string(ViewAutotag)] {
t.Error("autotag should have loaded as visible")
}
if resolved[string(ViewExplore)] {
t.Error("explore should have loaded as hidden")
}
}
// Every view the shell can launch into is a view the sidebar can show,
// or an install could land on a page with no nav item and no setting
// pointing at it.
func TestEveryLaunchableViewIsAView(t *testing.T) {
t.Parallel()
for _, v := range Views {
if !v.CanLaunch {
continue
}
if !v.Hideable {
continue
}
if _, ok := LookupView(string(v.ID)); !ok {
t.Errorf("%s is launchable but not a known view", v.ID)
}
}
}
+25 -7
View File
@@ -13,13 +13,31 @@ const (
// enforces this at runtime; it is also the floor below which a
// reported size is treated as bogus and not persisted.
//
// 800x600 is where the shell was measured to still work, rather
// than a round number: below ~780 the header's subtitle wraps and
// pushes the title out of the 4em top bar, and below ~600 tall the
// eleven sidebar items no longer fit at once. The previous
// 512x384 was aspirational — at 700x480 the sidebar overflowed
// behind the player bar with no scroll and Settings and Jobs could
// not be reached at all.
// **Both reasons this comment used to give have expired**, and the
// value is right for a third one. It said the floor was 800x600
// because "below ~780 the header's subtitle wraps and pushes the
// title out of the 4em top bar" and "below ~600 tall the eleven
// sidebar items no longer fit at once". Neither mechanism can
// happen now: the subtitle is display:none from 899px down
// (index.css), and the sidebar host is overflow-y:auto — measured
// at 600x460, its scrollHeight is 434 against a 332px client and
// Settings is reachable after scrolling. A floor defended by two
// mechanisms that no longer exist is a number nobody can argue
// with, which is worse than either answer.
//
// It stays 800x600 because that is where the *desktop* chrome
// stops being comfortable — the Compact band of plan 018's size
// matrix (#24) — and not because the app breaks below it. It does
// not: under 600px wide the phone layout takes over (bottom-nav,
// no sidebar) and the shell fits 320px exactly, which is what
// makes this a comfort floor rather than a correctness one, and
// why a very small window reflows instead of becoming a
// mini-player (#12 is a second always-on-top window, not a mode of
// this one).
//
// The previous 512x384 was aspirational — at 700x480 the sidebar
// overflowed behind the player bar with no scroll and Settings and
// Jobs could not be reached at all.
MinWidth = 800
// MinHeight is the smallest allowed window height in pixels.
MinHeight = 600
+46
View File
@@ -135,3 +135,49 @@ SELECT
) AS INTEGER) AS known
FROM audio_files a
WHERE a.album_id = sqlc.arg(album_id);
-- name: GetAlbumsCompleteness :many
-- The same question as GetAlbumCompleteness, asked of a screenful of
-- albums at once.
--
-- A card grid cannot afford one query per card, and the answer it wants
-- is the one thing a badge cannot guess: an album held 9 tracks of 12
-- must show the count, never a bare tick. So this is one query for the
-- whole grid, asked only of the cards that have a local album id.
--
-- It is two grouping levels rather than the single-album form's
-- correlated subqueries, because a correlated subquery in the FROM
-- clause is not something SQLite will reliably do -- and because the
-- slice may only be spelled once, or sqlc expands it twice with
-- independently numbered placeholders.
--
-- The per-disc level is where the meaning is, and it is the same
-- meaning as the single-album query. `owned` counts DISTINCT track
-- numbers within a disc (this app detects duplicates, and counting two
-- files of track 3 twice would report a short album as complete), with
-- a file that declares no track number falling back to its own id
-- because three untagged files are three tracks and not one.
-- `expected` takes each disc's declared total and sums over discs,
-- since a total is declared per disc and a release total written on
-- every file of a two-disc album would double its expectation. A disc
-- whose files declared nothing contributes a NULL that SUM ignores,
-- and `known` is what says the album is therefore unanswerable.
WITH per_disc AS (
SELECT
album_id AS album_id,
COUNT(DISTINCT COALESCE(CAST(track_number AS TEXT), 'f' || id))
AS owned_on_disc,
MAX(total_tracks) AS disc_total,
SUM(CASE WHEN total_tracks IS NULL THEN 1 ELSE 0 END)
AS discs_without_a_total
FROM audio_files
WHERE album_id IN (sqlc.slice('album_ids'))
GROUP BY album_id, COALESCE(disc_number, 1)
)
SELECT
CAST(album_id AS INTEGER) AS album_id,
CAST(SUM(owned_on_disc) AS INTEGER) AS owned,
CAST(COALESCE(SUM(disc_total), 0) AS INTEGER) AS expected,
CAST(SUM(discs_without_a_total) = 0 AS INTEGER) AS known
FROM per_disc
GROUP BY album_id;
@@ -342,3 +342,35 @@ WHERE ti.status = 'pending'
)
ORDER BY ti.group_key
LIMIT 1;
-- name: GetTaggingItemsForAlbum :many
-- Every tagging group holding a file of this album.
--
-- The join is `audio_files.group_key`, not a key derived from the
-- album's folder path: a group carved out of a mixed-bag folder by
-- SplitMixedFolder is keyed on its tags rather than on a directory,
-- so a path-derived key finds nothing for exactly the messiest
-- libraries this is meant to help.
--
-- Usually one row. A multi-disc album is one group per disc, which
-- the caller has to know about rather than average over -- applying
-- to "the album" would silently retag one disc of three.
SELECT
ti.group_key,
ti.status,
ti.score,
ti.best_match_release_mbid,
ti.track_count,
ti.album_name,
ti.album_artist,
ti.synthetic
FROM tagging_items ti
WHERE ti.group_key IN (
SELECT DISTINCT af.group_key
FROM audio_files af
WHERE af.album_id = sqlc.arg(album_id) AND af.group_key != ''
)
AND ti.cleared_at IS NULL
-- Best first, with an unscored group last rather than first: NULL
-- sorts low in SQLite and DESC would put it at the top.
ORDER BY ti.score IS NULL, ti.score DESC, ti.group_key;
@@ -8,6 +8,7 @@ package sqlcgen
import (
"context"
"database/sql"
"strings"
)
const deleteAlbum = `-- name: DeleteAlbum :exec
@@ -234,6 +235,98 @@ func (q *Queries) GetAlbumsByArtistName(ctx context.Context, arg GetAlbumsByArti
return items, nil
}
const getAlbumsCompleteness = `-- name: GetAlbumsCompleteness :many
WITH per_disc AS (
SELECT
album_id AS album_id,
COUNT(DISTINCT COALESCE(CAST(track_number AS TEXT), 'f' || id))
AS owned_on_disc,
MAX(total_tracks) AS disc_total,
SUM(CASE WHEN total_tracks IS NULL THEN 1 ELSE 0 END)
AS discs_without_a_total
FROM audio_files
WHERE album_id IN (/*SLICE:album_ids*/?)
GROUP BY album_id, COALESCE(disc_number, 1)
)
SELECT
CAST(album_id AS INTEGER) AS album_id,
CAST(SUM(owned_on_disc) AS INTEGER) AS owned,
CAST(COALESCE(SUM(disc_total), 0) AS INTEGER) AS expected,
CAST(SUM(discs_without_a_total) = 0 AS INTEGER) AS known
FROM per_disc
GROUP BY album_id
`
type GetAlbumsCompletenessRow struct {
AlbumID int64
Owned int64
Expected int64
Known int64
}
// The same question as GetAlbumCompleteness, asked of a screenful of
// albums at once.
//
// A card grid cannot afford one query per card, and the answer it wants
// is the one thing a badge cannot guess: an album held 9 tracks of 12
// must show the count, never a bare tick. So this is one query for the
// whole grid, asked only of the cards that have a local album id.
//
// It is two grouping levels rather than the single-album form's
// correlated subqueries, because a correlated subquery in the FROM
// clause is not something SQLite will reliably do -- and because the
// slice may only be spelled once, or sqlc expands it twice with
// independently numbered placeholders.
//
// The per-disc level is where the meaning is, and it is the same
// meaning as the single-album query. `owned` counts DISTINCT track
// numbers within a disc (this app detects duplicates, and counting two
// files of track 3 twice would report a short album as complete), with
// a file that declares no track number falling back to its own id
// because three untagged files are three tracks and not one.
// `expected` takes each disc's declared total and sums over discs,
// since a total is declared per disc and a release total written on
// every file of a two-disc album would double its expectation. A disc
// whose files declared nothing contributes a NULL that SUM ignores,
// and `known` is what says the album is therefore unanswerable.
func (q *Queries) GetAlbumsCompleteness(ctx context.Context, albumIds []sql.NullInt64) ([]GetAlbumsCompletenessRow, error) {
query := getAlbumsCompleteness
var queryParams []interface{}
if len(albumIds) > 0 {
for _, v := range albumIds {
queryParams = append(queryParams, v)
}
query = strings.Replace(query, "/*SLICE:album_ids*/?", strings.Repeat(",?", len(albumIds))[1:], 1)
} else {
query = strings.Replace(query, "/*SLICE:album_ids*/?", "NULL", 1)
}
rows, err := q.db.QueryContext(ctx, query, queryParams...)
if err != nil {
return nil, err
}
defer rows.Close()
var items []GetAlbumsCompletenessRow
for rows.Next() {
var i GetAlbumsCompletenessRow
if err := rows.Scan(
&i.AlbumID,
&i.Owned,
&i.Expected,
&i.Known,
); err != nil {
return nil, err
}
items = append(items, i)
}
if err := rows.Close(); err != nil {
return nil, err
}
if err := rows.Err(); err != nil {
return nil, err
}
return items, nil
}
const getAlbumsWithPendingReleaseMBID = `-- name: GetAlbumsWithPendingReleaseMBID :many
SELECT id, pending_release_mbid FROM albums
WHERE pending_release_mbid IS NOT NULL AND pending_release_mbid != ''
@@ -231,6 +231,82 @@ func (q *Queries) GetTaggingItem(ctx context.Context, groupKey string) (TaggingI
return i, err
}
const getTaggingItemsForAlbum = `-- name: GetTaggingItemsForAlbum :many
SELECT
ti.group_key,
ti.status,
ti.score,
ti.best_match_release_mbid,
ti.track_count,
ti.album_name,
ti.album_artist,
ti.synthetic
FROM tagging_items ti
WHERE ti.group_key IN (
SELECT DISTINCT af.group_key
FROM audio_files af
WHERE af.album_id = ?1 AND af.group_key != ''
)
AND ti.cleared_at IS NULL
ORDER BY ti.score IS NULL, ti.score DESC, ti.group_key
`
type GetTaggingItemsForAlbumRow struct {
GroupKey string
Status string
Score sql.NullFloat64
BestMatchReleaseMbid sql.NullString
TrackCount int64
AlbumName string
AlbumArtist string
Synthetic int64
}
// Every tagging group holding a file of this album.
//
// The join is `audio_files.group_key`, not a key derived from the
// album's folder path: a group carved out of a mixed-bag folder by
// SplitMixedFolder is keyed on its tags rather than on a directory,
// so a path-derived key finds nothing for exactly the messiest
// libraries this is meant to help.
//
// Usually one row. A multi-disc album is one group per disc, which
// the caller has to know about rather than average over -- applying
// to "the album" would silently retag one disc of three.
// Best first, with an unscored group last rather than first: NULL
// sorts low in SQLite and DESC would put it at the top.
func (q *Queries) GetTaggingItemsForAlbum(ctx context.Context, albumID sql.NullInt64) ([]GetTaggingItemsForAlbumRow, error) {
rows, err := q.db.QueryContext(ctx, getTaggingItemsForAlbum, albumID)
if err != nil {
return nil, err
}
defer rows.Close()
var items []GetTaggingItemsForAlbumRow
for rows.Next() {
var i GetTaggingItemsForAlbumRow
if err := rows.Scan(
&i.GroupKey,
&i.Status,
&i.Score,
&i.BestMatchReleaseMbid,
&i.TrackCount,
&i.AlbumName,
&i.AlbumArtist,
&i.Synthetic,
); err != nil {
return nil, err
}
items = append(items, i)
}
if err := rows.Close(); err != nil {
return nil, err
}
if err := rows.Err(); err != nil {
return nil, err
}
return items, nil
}
const listAudioFilesInTaggingGroup = `-- name: ListAudioFilesInTaggingGroup :many
SELECT
af.id,
+32
View File
@@ -12,6 +12,7 @@ import (
"strconv"
"strings"
"yellowjacket/backend/tagtotals"
"yellowjacket/backend/tagwriter"
)
@@ -275,6 +276,25 @@ func (i *Importer) tagFile(p plannedFile, dl Download) error {
changes[tagwriter.FieldDiscNumber] = p.Track.DiscNumber
}
// An imported file should arrive knowing how much of the album it
// is one of, or the album reads as "in your library" from its first
// imported track onward.
//
// A *track* download is the case this must not touch: a
// RecordingMBID anchor resolves Expected to exactly that one track,
// so totalling it would write "1 of 1" onto a track off a
// twelve-track album -- a confident lie, and one that outranks the
// catalog's own total, which is the fallback that would otherwise
// have answered correctly.
if dl.RecordingMBID == "" {
if tracks, discs := tagtotals.For(
expectedPositions(dl.Expected), p.Track.DiscNumber,
); tracks > 0 {
changes[tagwriter.FieldTotalTracks] = tracks
changes[tagwriter.FieldTotalDiscs] = discs
}
}
if err := i.tags.WriteUntrackedFileTags(p.Source, changes); err != nil {
return fmt.Errorf("write tags: %w", err)
}
@@ -282,6 +302,18 @@ func (i *Importer) tagFile(p plannedFile, dl Download) error {
return nil
}
// expectedPositions is the download's resolved tracklist as bare
// positions.
func expectedPositions(expected []ExpectedTrack) []tagtotals.Position {
out := make([]tagtotals.Position, 0, len(expected))
for _, t := range expected {
out = append(out, tagtotals.Position{Disc: t.DiscNumber, Track: t.Position})
}
return out
}
// destinationFor computes a file's library path from the template.
func (i *Importer) destinationFor(
p plannedFile,
+74
View File
@@ -446,3 +446,77 @@ func keysOf(m map[string]tagwriter.TagChanges) []string {
return out
}
// An imported album should arrive knowing its own size, or the album
// page reads "in your library" from its first imported track onward --
// which is the badge complaint this exists to answer.
func TestImportWritesTheAlbumTotals(t *testing.T) {
t.Parallel()
f := newImportFixture(t,
"01 - Airbag.flac",
"02 - Paranoid Android.flac",
"03 - Subterranean Homesick Alien.flac",
"04 - Exit Music (For a Film).flac",
)
if _, err := f.importer.Import(
context.Background(),
fourTrackDownload(),
Result{Dir: f.dir, Files: f.files},
ImportOptions{LibraryRoot: f.root, WriteTags: true},
); err != nil {
t.Fatalf("Import: %v", err)
}
changes := f.tags.writes["01 - Airbag.flac"]
if changes == nil {
t.Fatal("no tag write recorded for the first track")
}
if got := changes[tagwriter.FieldTotalTracks]; got != 4 {
t.Errorf("%s: got %v, want 4", tagwriter.FieldTotalTracks, got)
}
if got := changes[tagwriter.FieldTotalDiscs]; got != 1 {
t.Errorf("%s: got %v, want 1", tagwriter.FieldTotalDiscs, got)
}
}
// A RecordingMBID anchor resolves Expected to exactly the one track it
// asked for, so totalling it would tag a track off a twelve-track album
// as "1 of 1" -- worse than saying nothing, because a declared total
// outranks the catalog total that would have answered correctly.
func TestImportWritesNoTotalsForATrackDownload(t *testing.T) {
t.Parallel()
f := newImportFixture(t, "01 - Airbag.flac")
dl := Download{
ID: "dl-track",
LibraryID: 1,
RecordingMBID: "mbid-recording",
Artist: "Radiohead",
Album: "OK Computer",
Expected: []ExpectedTrack{{Position: 1, Title: "Airbag"}},
}
if _, err := f.importer.Import(
context.Background(),
dl,
Result{Dir: f.dir, Files: f.files},
ImportOptions{LibraryRoot: f.root, WriteTags: true},
); err != nil {
t.Fatalf("Import: %v", err)
}
changes := f.tags.writes["01 - Airbag.flac"]
if changes == nil {
t.Fatal("no tag write recorded")
}
if _, ok := changes[tagwriter.FieldTotalTracks]; ok {
t.Errorf("%s written for a single-track download: %v",
tagwriter.FieldTotalTracks, changes[tagwriter.FieldTotalTracks])
}
}
+9
View File
@@ -2212,6 +2212,7 @@ func (e *Service) gatherTopCandidates(
ArtistType: a.Type,
Country: a.Country,
InLibrary: a.InLibrary,
LocalID: a.LocalID,
},
category: "artist",
qualityScore: quality,
@@ -2243,6 +2244,7 @@ func (e *Service) gatherTopCandidates(
ArtistType: a.Type,
Country: a.Country,
InLibrary: a.InLibrary,
LocalID: a.LocalID,
},
category: "artist",
qualityScore: quality,
@@ -2275,6 +2277,7 @@ func (e *Service) gatherTopCandidates(
PrimaryType: rg.PrimaryType,
Year: year,
InLibrary: rg.InLibrary,
LocalID: rg.LocalID,
},
category: "release_group",
qualityScore: quality,
@@ -2320,6 +2323,7 @@ func (e *Service) gatherTopCandidates(
PrimaryType: rg.PrimaryType,
Year: year,
InLibrary: rg.InLibrary,
LocalID: rg.LocalID,
},
category: "release_group",
qualityScore: quality,
@@ -2347,6 +2351,7 @@ func (e *Service) gatherTopCandidates(
CAAReleaseMBID: r.CAAReleaseMBID,
ReleaseName: r.ReleaseName,
InLibrary: r.InLibrary,
LocalID: r.LocalID,
},
category: "recording",
qualityScore: quality,
@@ -2403,6 +2408,7 @@ func (e *Service) gatherTopCandidates(
CAAReleaseMBID: r.CAAReleaseMBID,
ReleaseName: r.ReleaseName,
InLibrary: r.InLibrary,
LocalID: r.LocalID,
},
category: "recording",
qualityScore: quality,
@@ -2425,6 +2431,7 @@ func (e *Service) gatherTopCandidates(
ArtistType: m.ArtistType,
Country: m.Country,
InLibrary: m.InLibrary || m.LocalArtistID > 0,
LocalID: m.LocalArtistID,
},
category: "artist",
qualityScore: quality,
@@ -2445,6 +2452,7 @@ func (e *Service) gatherTopCandidates(
PrimaryType: m.PrimaryType,
Year: year,
InLibrary: m.InLibrary || m.LocalReleaseGroupID > 0,
LocalID: m.LocalReleaseGroupID,
},
category: "release_group",
qualityScore: quality,
@@ -2459,6 +2467,7 @@ func (e *Service) gatherTopCandidates(
ArtistMBID: m.ArtistMBID,
Length: m.Duration,
InLibrary: m.InLibrary || m.LocalRecordingID > 0,
LocalID: m.LocalRecordingID,
},
category: "recording",
qualityScore: quality,
+94
View File
@@ -82,6 +82,100 @@ func TestPruneStaleLocalCrossReferences(t *testing.T) {
}
}
// TestPruneClearsInLibraryWithNoLocalID covers the fixed point: a row
// carrying in_library with a NULL local_*_id. The upsert's conflict
// clause is `in_library = MAX(in_library, excluded.in_library)`, so it
// can only ever raise the flag, and this pass used to be gated on the id
// being present — which meant nothing in the app could clear such a row,
// ever. It is asserted for all three entity types because the gate was
// written once and used three times, so a fix applied to one is a fix
// that looks complete.
//
// The rows are seeded with raw SQL rather than through seedIndexResult
// deliberately: upsertBatch writes a zero LocalArtistID as literal 0,
// not NULL, and 0 satisfies `IS NOT NULL` — so the old gate already
// caught that shape and a fixture built through the upsert cannot
// reproduce this at all. NULL is what the artifact importer and any
// older writer leave behind, the column being nullable with no default.
func TestPruneClearsInLibraryWithNoLocalID(t *testing.T) {
t.Parallel()
db := database.NewTestDB(t)
si := NewSearchIndex(db, nil, nil, slog.Default())
// A genuinely owned artist, to prove the wider gate does not simply
// clear everything it now looks at.
database.InsertTestTrack(t, db, database.TestTrack{
FilePath: "/music/owned.mp3",
Artist: "Owned",
})
artist, err := db.Queries.GetArtistByName(t.Context(), "Owned")
if err != nil {
t.Fatalf("read seeded artist: %v", err)
}
seedIndexResult(t, db, SearchIndexResult{
EntityType: EntityArtist,
MBID: testMBID("owned"),
Title: "Owned",
ArtistName: "Owned",
ArtistMBID: testMBID("owned"),
InLibrary: true,
LocalArtistID: artist.ID,
})
orphans := []struct {
name string
entityType string
mbid string
}{
{"artist", EntityArtist, "orphan-artist"},
{"release group", EntityReleaseGroup, "orphan-release-group"},
{"recording", EntityRecording, "orphan-recording"},
}
for _, o := range orphans {
if _, err := db.ExecContext(
`INSERT INTO explore_index
(entity_type, mbid, title, artist_name, artist_mbid,
in_library,
local_artist_id, local_release_group_id, local_recording_id)
VALUES (?, ?, ?, ?, ?, 1, ?, ?, ?)`,
dbEntityType(o.entityType), dbMBID(testMBID(o.mbid)), o.name, o.name,
dbMBID(testMBID(o.mbid)),
nil, nil, nil,
); err != nil {
t.Fatalf("seed %s orphan: %v", o.name, err)
}
}
si.pruneStaleLocalCrossReferences()
inLibrary := func(t *testing.T, mbid string) int {
t.Helper()
var flag int
if err := db.QueryRowWriter(
"SELECT in_library FROM explore_index WHERE mbid = ?", dbMBID(mbid),
).Scan(&flag); err != nil {
t.Fatalf("read in_library for %q: %v", mbid, err)
}
return flag
}
for _, o := range orphans {
if got := inLibrary(t, testMBID(o.mbid)); got != 0 {
t.Errorf("%s with a NULL local id: in_library = %d, want 0", o.name, got)
}
}
if got := inLibrary(t, testMBID("owned")); got != 1 {
t.Errorf("owned artist: in_library = %d, want 1 (it still has a file)", got)
}
}
// TestUnenrichedLibraryArtistMBIDs_OrdersByOwnedTrackCount verifies the
// backfill queue prioritizes artists by how many tracks the user actually
// owns, not by how many duplicate-mbid artist rows happen to exist (the
+15 -1
View File
@@ -2562,6 +2562,19 @@ func (si *SearchIndex) PopulateLocalCrossReferences() {
// The row itself is left in place (it may still be part of the shipped
// catalog, just no longer owned) — only the "this is mine" bookkeeping
// is cleared.
//
// It is gated on the flag *or* the id, not on the id alone. Gated on
// the id, `in_library = 1 AND local_*_id IS NULL` is a fixed point: the
// upsert can only ever raise the flag and this pass skipped such a row
// by construction, so nothing in the app could clear it — a row claiming
// to be owned, permanently, with no local row to check the claim
// against. Nothing in the tree writes that shape today
// (collectLibraryEntities sets both together), which is exactly why it
// is worth closing now: the exposure is a database written by an older
// version, and the next writer that sets the flag without an id, which
// nothing structurally prevents. A NULL id fails the existence test on
// its own, so the wider gate needs no second clause to say what "not
// owned" means.
func (si *SearchIndex) pruneStaleLocalCrossReferences() {
type prune struct {
entityType string
@@ -2594,7 +2607,8 @@ func (si *SearchIndex) pruneStaleLocalCrossReferences() {
result, err := si.db.ExecContext(
`UPDATE explore_index
SET in_library = 0, `+p.column+` = NULL
WHERE entity_type = ? AND `+p.column+` IS NOT NULL
WHERE entity_type = ?
AND (`+p.column+` IS NOT NULL OR in_library = 1)
AND NOT EXISTS (`+p.exists+`)`,
dbEntityType(p.entityType),
)
+9
View File
@@ -41,7 +41,16 @@ type TopResult struct {
ReleaseGroupMBID string `json:"releaseGroupMbid,omitempty"`
ReleaseName string `json:"releaseName,omitempty"`
// Library status — populated from index cross-reference columns.
//
// LocalID is the one the cards read. It is the local row behind
// this entity — an album, a file, an artist — and it is set and
// cleared by a test against `audio_files`, so it means "there is
// something of mine here". InLibrary is written by the same pass
// but is a one-way ratchet the prune can only clear alongside a
// local id, so it is the weaker of the two and stays for scoring
// (`fwInLibrary`), which is where an approximate answer is fine.
InLibrary bool `json:"inLibrary"`
LocalID int64 `json:"localId,omitempty"`
}
// MBArtist is a Wails-friendly projection of a MusicBrainz artist.
+109
View File
@@ -232,3 +232,112 @@ func TestGetAlbumCompleteness_EmptyAlbum(t *testing.T) {
t.Errorf("empty album reported %+v, want zero and unknown", got)
}
}
// The batch and the single-album query are two spellings of one
// question, and the thing worth pinning is that they never disagree.
//
// They are genuinely different SQL — the single-album form is
// correlated subqueries over one album, the batch is two grouping
// levels over a slice — so the risk is not a typo but a drift in
// meaning: a disc's total counted once per file, a duplicate counted
// twice, a disc with no total silently covered by one that had one.
// Every shape the table above cares about is staged here at once,
// because a batch that is only ever asked about one album is not being
// asked the question that can go wrong.
func TestGetAlbumsCompletenessAgreesWithTheSingleAlbumQuery(t *testing.T) {
t.Parallel()
lib, _ := setupTestLibrary(t)
shapes := map[int][]track{
1: disc(1, 100, 12, 12),
2: disc(1, 200, 9, 12),
3: disc(1, 300, 13, 12),
4: {{recordingID: 400, disc: 1, number: 1}},
5: append(disc(1, 500, 10, 10), disc(2, 600, 2, 5)...),
6: append(
disc(1, 700, 10, 10),
track{recordingID: 750, disc: 2, number: 1},
),
7: append(
disc(1, 800, 5, 6),
track{recordingID: 899, disc: 1, number: 3, total: 6},
),
}
ids := make([]int64, 0, len(shapes))
for albumID, tracks := range shapes {
stageAlbum(t, lib, albumID, tracks)
ids = append(ids, albumIDFor(t, lib, albumID))
}
batch, err := lib.GetAlbumsCompleteness(ids)
if err != nil {
t.Fatalf("GetAlbumsCompleteness: %v", err)
}
if len(batch) != len(ids) {
t.Fatalf("batch answered for %d albums, want %d", len(batch), len(ids))
}
for _, id := range ids {
one, err := lib.GetAlbumCompleteness(id)
if err != nil {
t.Fatalf("GetAlbumCompleteness(%d): %v", id, err)
}
if got := batch[id]; got != one {
t.Errorf("album %d: batch says %+v, single says %+v", id, got, one)
}
}
}
// An album with no files is absent from the batch, not zeroed.
//
// "I have none of this" and "I have no idea" are the third state Known
// exists to keep apart, and a caller reading a missing key gets nothing
// rather than a confident zero it would have to know to distrust.
func TestGetAlbumsCompletenessOmitsAnAlbumWithNoFiles(t *testing.T) {
t.Parallel()
lib, _ := setupTestLibrary(t)
stageAlbum(t, lib, 1, disc(1, 100, 3, 3))
held := albumIDFor(t, lib, 1)
got, err := lib.GetAlbumsCompleteness([]int64{held, 4242})
if err != nil {
t.Fatalf("GetAlbumsCompleteness: %v", err)
}
if _, ok := got[4242]; ok {
t.Errorf("an album with no files answered %+v, want absent", got[4242])
}
if !got[held].Complete {
t.Errorf("held album reported %+v, want complete", got[held])
}
}
// A caller with nothing to ask about must not issue a query at all —
// sqlc's empty-slice branch rewrites the placeholder to NULL, which is
// a perfectly valid query returning nothing, so this is about the round
// trip rather than the answer.
func TestGetAlbumsCompletenessAsksNothingForAnEmptyList(t *testing.T) {
t.Parallel()
lib, _ := setupTestLibrary(t)
for _, ids := range [][]int64{nil, {}, {0}, {-1, 0}} {
got, err := lib.GetAlbumsCompleteness(ids)
if err != nil {
t.Fatalf("GetAlbumsCompleteness(%v): %v", ids, err)
}
if len(got) != 0 {
t.Errorf("GetAlbumsCompleteness(%v) = %+v, want empty", ids, got)
}
}
}
+59
View File
@@ -244,6 +244,65 @@ func (l *Library) GetAlbumCompleteness(albumID int64) (AlbumCompleteness, error)
}, nil
}
// GetAlbumsCompleteness answers the same question for a screenful of
// albums in one query, keyed by album id.
//
// A card grid asks this about every card that has a local album behind
// it, and one query per card is how a grid of fifty albums becomes
// fifty round trips. The answer matters there for the reason it
// matters on the album page: an album held 9 tracks of 12 has to show
// the count, and a bare tick saying "in your library" is the complaint
// this whole rule came from.
//
// An album with no row in the result is one with no files, and it is
// absent rather than zeroed — "I have none of this" and "I have no
// idea" are the same third state `Known` exists to keep apart, and a
// caller reading a missing key gets nothing rather than a confident 0.
func (l *Library) GetAlbumsCompleteness(
albumIDs []int64,
) (map[int64]AlbumCompleteness, error) {
out := make(map[int64]AlbumCompleteness, len(albumIDs))
if len(albumIDs) == 0 {
return out, nil
}
keys := make([]sql.NullInt64, 0, len(albumIDs))
for _, id := range albumIDs {
if id <= 0 {
continue
}
keys = append(keys, sql.NullInt64{Int64: id, Valid: true})
}
if len(keys) == 0 {
return out, nil
}
rows, err := l.db.ReadQueries.GetAlbumsCompleteness(l.ctx, keys)
if err != nil {
l.logger.Error("could not get album completeness in batch",
"albums", len(keys), "error", err)
return nil, fmt.Errorf("could not get album completeness: %w", err)
}
for _, row := range rows {
known := row.Known != 0 && row.Expected > 0
out[row.AlbumID] = AlbumCompleteness{
Owned: int(row.Owned),
Expected: int(row.Expected),
Known: known,
Complete: known && row.Owned >= row.Expected,
}
}
return out, nil
}
// GetAlbumTracks returns one album's tracks in disc/track order.
func (l *Library) GetAlbumTracks(albumID, libraryID int64) ([]Track, error) {
rows, err := l.db.ReadQueries.GetTracksByAlbum(
+188
View File
@@ -0,0 +1,188 @@
package player
import (
"errors"
"testing"
"time"
"github.com/gopxl/beep/v2"
)
// errTestDecode stands in for a decoder blowing up mid-track.
var errTestDecode = errors.New("decode blew up")
// stalledStreamer never produces a sample and never reports
// end-of-stream: (0, true), forever. A damaged file that decodes to
// nothing looks like this, and so does any source whose producer has
// quietly stopped.
type stalledStreamer struct{}
func (stalledStreamer) Stream(_ [][2]float64) (int, bool) { return 0, true }
func (stalledStreamer) Err() error { return nil }
// failingStreamer produces n good samples and then fails, which is
// what a decode error mid-track looks like: the same (0, false) a
// finished track returns, distinguishable only by Err.
type failingStreamer struct {
remaining int
err error
}
func (f *failingStreamer) Stream(samples [][2]float64) (int, bool) {
if f.remaining <= 0 {
return 0, false
}
n := min(len(samples), f.remaining)
for i := range n {
samples[i] = [2]float64{1, 1}
}
f.remaining -= n
return n, true
}
func (f *failingStreamer) Err() error { return f.err }
// drainUntilEnd calls Stream until it reports end-of-stream, or gives
// up. It returns whether the stream ended.
//
// The give-up bound is wall clock rather than a call count: the stall
// budget is a duration, so a tight loop has to actually wait it out.
func drainUntilEnd(bs *BufferedStreamer, within time.Duration) bool {
buf := make([][2]float64, 512)
deadline := time.Now().Add(within)
for time.Now().Before(deadline) {
if _, ok := bs.Stream(buf); !ok {
return true
}
time.Sleep(time.Millisecond)
}
return false
}
// A source that stops producing without ever ending is the fault this
// whole file exists for: Stream used to answer with silence and ok
// forever, so the chain never ended, the player stayed in Playing
// with the button showing pause, and the decoder's position never
// moved -- a frozen seek bar over a track that was not playing.
func TestAStalledSourceEndsTheStream(t *testing.T) {
bs := NewBufferedStreamer(stalledStreamer{}, 2048)
defer bs.Close()
if !drainUntilEnd(bs, maxStarvedDuration+2*time.Second) {
t.Fatal(
"a stalled source never ended the stream: the player " +
"would sit in Playing with a frozen position",
)
}
if !errors.Is(bs.Err(), errSourceStalled) {
t.Fatalf(
"expected the stall to be reported, got %v", bs.Err(),
)
}
}
// Close is the other exit that used to leave `done` false, with the
// same consequence: the ring drains and every call after it is
// silence that claims to be audio.
func TestClosingEndsTheStream(t *testing.T) {
bs := NewBufferedStreamer(finiteStreamer(1<<20), 2048)
// Let the read-ahead fill something, so this exercises the drain
// after Close rather than a buffer that was empty anyway.
time.Sleep(20 * time.Millisecond)
bs.Close()
if !drainUntilEnd(bs, 2*time.Second) {
t.Fatal("a closed streamer never reported end-of-stream")
}
}
// A source that fails is not a source that finished, and only Err
// tells them apart. Before this, the player reported a mid-track
// decode failure to the queue as a natural end, so the queue
// auto-advanced in silence and counted the broken track as played.
func TestAFailedSourceReportsItsError(t *testing.T) {
src := &failingStreamer{remaining: 4096, err: errTestDecode}
bs := NewBufferedStreamer(src, 2048)
defer bs.Close()
if !drainUntilEnd(bs, 2*time.Second) {
t.Fatal("a failing source never reported end-of-stream")
}
if !errors.Is(bs.Err(), errTestDecode) {
t.Fatalf(
"expected the source's error to survive, got %v",
bs.Err(),
)
}
}
// The ordinary case has to keep working: a source that ends cleanly
// ends with no error, or every finished track would be reported as a
// failure and skipped.
func TestADrainedSourceReportsNoError(t *testing.T) {
bs := NewBufferedStreamer(finiteStreamer(4096), 2048)
defer bs.Close()
if !drainUntilEnd(bs, 2*time.Second) {
t.Fatal("a finite source never reported end-of-stream")
}
if bs.Err() != nil {
t.Fatalf(
"a track that finished normally reported %v", bs.Err(),
)
}
}
// A slow source is exactly what the read-ahead exists to absorb, so
// underruns must not be charged cumulatively -- otherwise a file on a
// slow disk ends itself partway through.
func TestUnderrunsDoNotAccumulateAcrossASlowSource(t *testing.T) {
const total = 8192
src := &slowStreamer{
inner: finiteStreamer(total),
delay: 2 * time.Millisecond,
}
bs := NewBufferedStreamer(src, 1024)
defer bs.Close()
buf := make([][2]float64, 256)
got := 0
for {
n, ok := bs.Stream(buf)
if !ok {
break
}
for i := range n {
if buf[i][0] != 0 {
got++
}
}
}
if got != total {
t.Fatalf(
"a slow but healthy source was cut short: got %d of %d "+
"samples",
got, total,
)
}
}
// beep.Streamer is what the player wraps; keep the type honest.
var _ beep.Streamer = (*BufferedStreamer)(nil)
+113 -9
View File
@@ -1,6 +1,7 @@
package player
import (
"errors"
"sync"
"time"
@@ -34,8 +35,45 @@ type BufferedStreamer struct {
done bool
err error
closed chan struct{}
// starved counts consecutive Stream calls served with silence
// because the ring was empty, and starvedSince is when that run
// began. An underrun is legitimate for a moment -- that is what
// the read-ahead exists to absorb -- but it is not legitimate
// forever, and "forever" is indistinguishable from healthy
// playback everywhere above this type: the chain never ends, so
// the player stays in Playing with the button showing pause, and
// the decoder's position never moves, so the 1 Hz report pins the
// seek bar and suppresses its interpolation.
starved int
starvedSince time.Time
}
// The silence fill is bounded by both a duration and a run of calls,
// and it needs both.
//
// Duration alone is the real measure -- the speaker paces itself, so
// wall clock is what says whether the source has actually stopped --
// but a caller draining in a tight loop (a test, a decode-to-buffer)
// makes hundreds of calls in microseconds and would trip nothing.
// A call count alone is the opposite failure: the same tight loop
// spends the whole budget before the read-ahead goroutine has been
// scheduled once, and ends a perfectly good stream at sample zero.
//
// The duration is longer than the 2 s read-ahead it is there to
// outlast, and the count is short enough that the speaker (~200 ms a
// call) reaches it well inside that.
const (
maxStarvedDuration = 3 * time.Second
minStarvedCalls = 8
)
// errSourceStalled is returned by Err when the source stopped
// producing samples without ever reporting end-of-stream.
var errSourceStalled = errors.New(
"audio source stopped producing samples",
)
// NewBufferedStreamer creates a BufferedStreamer that pre-fills
// bufferSize samples from source via a background goroutine.
// A typical bufferSize is 2× the sample rate (~2 seconds of audio).
@@ -54,8 +92,24 @@ func NewBufferedStreamer(
return bs
}
// finish marks the stream ended, recording err as the reason when
// there is one. Every exit from readAhead goes through it: an exit
// that leaves done false strands Stream in its underrun branch,
// where it returns silence and ok forever.
func (bs *BufferedStreamer) finish(err error) {
bs.mu.Lock()
defer bs.mu.Unlock()
bs.done = true
if err != nil && bs.err == nil {
bs.err = err
}
}
// readAhead continuously reads from the source into the ring buffer
// until the source is drained, an error occurs, or Close is called.
// It always marks the stream done on the way out.
func (bs *BufferedStreamer) readAhead() {
// Temporary buffer for reading from source outside the lock.
// 512 samples per chunk keeps the critical section short.
@@ -63,6 +117,13 @@ func (bs *BufferedStreamer) readAhead() {
tmp := make([][2]float64, chunkSize)
// Every exit marks the stream done. An exit that does not is what
// stranded Stream in its underrun branch, returning silence and ok
// for the rest of the process's life.
var exitErr error
defer func() { bs.finish(exitErr) }()
for {
// Check if closed.
select {
@@ -72,6 +133,15 @@ func (bs *BufferedStreamer) readAhead() {
}
bs.mu.Lock()
// Stream gave up waiting for us. Nothing downstream is
// listening any more, so filling the ring is work for nobody.
if bs.done {
bs.mu.Unlock()
return
}
space := len(bs.ring) - bs.count
if space == 0 {
@@ -115,14 +185,12 @@ func (bs *BufferedStreamer) readAhead() {
}
if !ok {
bs.mu.Lock()
bs.done = true
if srcErr := bs.source.Err(); srcErr != nil {
bs.err = srcErr
}
bs.mu.Unlock()
// A drained source and a failed one both land here and are
// not the same event: one is a track that ended, the other
// is a track that broke. Err is what tells them apart, and
// it is why the player must ask before treating this as a
// natural finish.
exitErr = bs.source.Err()
return
}
@@ -154,7 +222,27 @@ func (bs *BufferedStreamer) Stream(
}
if bs.count == 0 {
// Buffer temporarily empty — fill with silence.
// The read-ahead has not caught up. Silence buys it time --
// but only for a bounded stretch, because "forever" is
// reported upward as healthy playback and there is no watchdog
// above this to notice otherwise.
bs.starved++
if bs.starvedSince.IsZero() {
bs.starvedSince = time.Now()
}
if bs.starved >= minStarvedCalls &&
time.Since(bs.starvedSince) > maxStarvedDuration {
bs.done = true
if bs.err == nil {
bs.err = errSourceStalled
}
return 0, false
}
for i := range samples {
samples[i] = [2]float64{}
}
@@ -162,6 +250,9 @@ func (bs *BufferedStreamer) Stream(
return len(samples), true
}
// Samples arrived, so whatever the stall was, it is over.
bs.resetStarvationLocked()
// Copy available samples from ring buffer.
n := len(samples)
if n > bs.count {
@@ -197,6 +288,19 @@ func (bs *BufferedStreamer) Flush() {
bs.readPos = 0
bs.writPos = 0
bs.count = 0
// A seek empties the ring on purpose, and the refill that follows
// is exactly the stall the budget exists to tolerate. Charging it
// against a budget the previous underrun already spent would end
// the track on a seek near the end of a slow file.
bs.resetStarvationLocked()
}
// resetStarvationLocked forgets an underrun run. Must be called with
// bs.mu held.
func (bs *BufferedStreamer) resetStarvationLocked() {
bs.starved = 0
bs.starvedSince = time.Time{}
}
// LockSource blocks the read-ahead goroutine from touching the
+213
View File
@@ -0,0 +1,213 @@
package player
import (
"log/slog"
"testing"
"time"
"github.com/wailsapp/wails/v3/pkg/application"
"yellowjacket/backend/events"
"yellowjacket/internal/testfixtures"
)
// fixtureSampleRate is what cmd/gentestdata writes (audio.go). It is
// deliberately not the speaker rate, which is what lets these tests
// tell the decoder's format from the player's default.
const fixtureSampleRate = 22050
// newTestPlayer is a player with a context and no database, so the
// track-metadata lookup cannot succeed.
func newTestPlayer(t *testing.T) *Player {
t.Helper()
p := NewPlayer(slog.Default(), nil)
rec := events.NewRecorder()
_ = p.ServiceStartup(
events.WithSink(t.Context(), rec),
application.ServiceOptions{},
)
return p
}
// loadFileLocked needs no speaker: it decodes, builds the chain and
// registers it paused. speaker.Play on an uninitialised device is
// what the integration guard elsewhere is about, so these assert on
// the state the load computed rather than on playback.
// p.format used to be assigned once, in the constructor, to the
// *speaker's* rate -- so it claimed 44.1 kHz for every file ever
// loaded. Play()'s replay-after-finish path resamples from it, so a
// finished track played again was resampled from a rate the decoder
// never produced: audibly the wrong speed and pitch, and wrong
// length and position arithmetic with it.
//
// The fixtures are 22050 Hz, which is exactly the point -- any of
// them disagrees with the speaker rate.
func TestLoadRecordsTheDecodersOwnFormat(t *testing.T) {
m := testfixtures.Load(t)
path := m.Case(t, testfixtures.CaseCoverDedup)[0]
p := newTestPlayer(t)
if got := p.format.SampleRate; got != speakerSampleRate {
t.Fatalf(
"precondition: a fresh player should hold the speaker "+
"rate, got %d",
got,
)
}
if err := p.LoadFile(path); err != nil {
t.Fatalf("LoadFile(%s): %v", path, err)
}
if p.format.SampleRate == speakerSampleRate {
t.Fatalf(
"p.format still holds the speaker rate (%d) after "+
"loading a %d Hz file: the replay path would "+
"resample from the wrong rate",
speakerSampleRate, fixtureSampleRate,
)
}
if got := int(p.format.SampleRate); got != fixtureSampleRate {
t.Errorf(
"expected the decoder's rate %d, got %d",
fixtureSampleRate, got,
)
}
}
// trackLengthMs is written only when the database has a row for the
// file and cleared only by UnloadTrack, so a track with no row used
// to inherit whatever the last track's duration was -- and every
// position report is scaled by it, so the whole seek bar was then
// reporting one track's progress on another track's scale.
//
// There is no database here, so the lookup cannot succeed: exactly
// the case that used to inherit.
func TestLoadDoesNotInheritThePreviousTracksDuration(t *testing.T) {
m := testfixtures.Load(t)
path := m.Case(t, testfixtures.CaseCoverDedup)[0]
p := newTestPlayer(t)
// Stand in for a previous track whose duration was resolved.
p.trackLengthMs = 9_999_000
if err := p.LoadFile(path); err != nil {
t.Fatalf("LoadFile(%s): %v", path, err)
}
if p.trackLengthMs == 9_999_000 {
t.Fatal(
"the previous track's duration survived the load: every " +
"position report for this track would be scaled by it",
)
}
}
// A new chain supersedes the old one's pending finished callback.
// Without this, a callback that queued for p.mu behind a LoadFile
// woke up and rewound, stopped and auto-advanced the *new* track.
func TestANewChainSupersedesTheOldFinishedCallback(t *testing.T) {
m := testfixtures.Load(t)
paths := m.Case(t, testfixtures.CaseCoverDedup)
if len(paths) < 2 {
t.Skip("need two fixture tracks")
}
p := newTestPlayer(t)
if err := p.LoadFile(paths[0]); err != nil {
t.Fatalf("LoadFile(%s): %v", paths[0], err)
}
stale := p.chainID
if err := p.LoadFile(paths[1]); err != nil {
t.Fatalf("LoadFile(%s): %v", paths[1], err)
}
if p.chainID == stale {
t.Fatal("loading a second file did not supersede the chain")
}
called := false
p.SetPlaybackFinishedHandler(func(error) { called = true })
// The first track's callback, arriving late.
p.onPlaybackFinished(stale, nil)
if called {
t.Error(
"a superseded chain's callback drove auto-advance: the " +
"track that is loaded now would be skipped",
)
}
if p.state == Stopped {
t.Error(
"a superseded chain's callback stopped the current track",
)
}
}
// The decoder is read by the read-ahead goroutine and by every
// position emit, and those used to be guarded by different mutexes:
// the read by srcMu, the position by the speaker lock, which
// read-ahead never takes. Under -race this failed on the emit that
// LoadFile itself makes.
//
// It needs the read-ahead goroutine to actually be running, so it
// keeps asking for the position for long enough to overlap it.
func TestPositionReadsDoNotRaceTheReadAhead(t *testing.T) {
m := testfixtures.Load(t)
path := m.Case(t, testfixtures.CaseFLACAlbum)[0]
p := newTestPlayer(t)
if err := p.LoadFile(path); err != nil {
t.Fatalf("LoadFile(%s): %v", path, err)
}
for range 200 {
if _, err := p.CurrentPositionSeconds(); err != nil {
t.Fatalf("CurrentPositionSeconds: %v", err)
}
}
}
// Seeking emits the landing position, and that emit reads the
// decoder -- so the source lock the seek holds must be released
// before it. A reentrant take here is a deadlock, not a failure,
// which is why this test exists rather than a comment.
func TestSeekEmitsWithoutDeadlocking(t *testing.T) {
m := testfixtures.Load(t)
path := m.Case(t, testfixtures.CaseFLACAlbum)[0]
p := newTestPlayer(t)
if err := p.LoadFile(path); err != nil {
t.Fatalf("LoadFile(%s): %v", path, err)
}
done := make(chan struct{})
go func() {
defer close(done)
_ = p.Seek(1)
}()
select {
case <-done:
case <-time.After(10 * time.Second):
t.Fatal("Seek deadlocked: the position emit re-took the source lock")
}
}
+221 -35
View File
@@ -52,8 +52,16 @@ type Player struct {
control *beep.Ctrl
volume *effects.Volume
speakerStreamer beep.Streamer
playbackFinishedHandler func()
playbackFinishedHandler func(error)
trackChangeID uint64
// chainID identifies the streamer chain currently registered with
// the speaker. updateStreamers bumps it, and the finished
// callback carries the value it was registered with, so a callback
// that queued for p.mu behind a LoadFile can tell that the player
// has moved on and return rather than rewinding somebody else's
// track.
chainID uint64
mediaControls mediacontrols.Handler
// duckAmount is the attenuation currently applied on top of the
@@ -63,6 +71,19 @@ type Player struct {
// not something the user chose.
duckAmount float64
// systemVolume is what SystemOwnsVolume answers: the platform's own
// control is the only one, so ours neither acts nor persists. It is
// a field rather than the build constant read directly so that a
// test can exercise both sides on any machine. See systemvolume.go.
systemVolume bool
// storedVolume and storedMuted hold the persisted level as it was
// found at restore, for a platform whose volume we do not own: the
// maximum we then run at is not a level the user chose, so saveState
// writes back what it read rather than overwriting it.
storedVolume UserVolume
storedMuted bool
// trackLengthMs holds the authoritative track duration in
// milliseconds, sourced from the database (which uses the
// custom header parser). The go-mp3 decoder's Len() can be
@@ -148,6 +169,8 @@ func NewPlayer(logger *slog.Logger, db *database.DB) *Player {
logger: logger,
db: db,
state: Stopped,
systemVolume: platformOwnsVolume,
storedVolume: DefaultUserVol,
baseStreamer: generators.Silence(-1),
format: beep.Format{
SampleRate: speakerSampleRate,
@@ -180,11 +203,18 @@ func (p *Player) InitSpeaker() error {
}
// SetPlaybackFinishedHandler sets a callback invoked when a track
// finishes naturally. This allows the queue to drive auto-advance
// stops streaming. This allows the queue to drive auto-advance
// without circular imports.
//
// The error says *why* the track stopped: nil for a track that
// reached its end, non-nil for one that broke partway through. Both
// arrive here because both look identical to the speaker, and only
// the queue holds the metadata a PlaybackFailed needs -- but they are
// not the same event, and reporting a decode failure as a natural
// finish is how a broken file used to auto-advance in silence.
//
//wails:ignore // internal wiring, not part of the app's IPC surface.
func (p *Player) SetPlaybackFinishedHandler(handler func()) {
func (p *Player) SetPlaybackFinishedHandler(handler func(error)) {
p.mu.Lock()
defer p.mu.Unlock()
@@ -424,6 +454,19 @@ func (p *Player) updateStreamers(
newBaseStreamer beep.StreamSeeker,
sr beep.SampleRate,
) error {
// A new chain supersedes the old one, so any finished callback the
// old one still owes is stale from here on.
p.chainID++
// The previous read-ahead goroutine reads the same decoder this
// one is about to, under its own srcMu -- two goroutines, two
// mutexes, one decoder that is not safe for concurrent use. The
// replay-after-finish path rebuilds from p.seeker without going
// through LoadFile, which is where that pair could meet.
if p.buffered != nil {
p.buffered.Close()
}
// set base streamer
p.baseStreamer = newBaseStreamer
p.seeker = newBaseStreamer
@@ -474,23 +517,57 @@ func (p *Player) startPaused() {
p.control.Paused = true
speaker.Unlock()
// Captured, not read at callback time: by then p.chainID names
// whatever is loaded *now*, which is the thing the guard exists to
// distinguish this chain from.
chainID := p.chainID
buffered := p.buffered
// The beep.Callback runs with the speaker mutex held, so we
// dispatch to a goroutine that can safely acquire p.mu.
speaker.Play(beep.Seq(
p.speakerStreamer,
beep.Callback(func() {
go p.onPlaybackFinished()
// Asked here rather than under p.mu: this is the chain that
// just ended, and by the time the goroutine holds the lock
// p.buffered may be a different one.
var err error
if buffered != nil {
err = buffered.Err()
}
go p.onPlaybackFinished(chainID, err)
}),
))
p.state = Paused
}
// onPlaybackFinished handles the natural end of a track. It is
// called on a new goroutine from the beep callback (which holds
// the speaker lock) so that it can safely acquire p.mu.
func (p *Player) onPlaybackFinished() {
// onPlaybackFinished handles a track that stopped streaming, whether
// it ended or broke. It is called on a new goroutine from the beep
// callback (which holds the speaker lock) so that it can safely
// acquire p.mu.
//
// chainID names the streamer chain the callback fired for and srcErr
// says why it stopped.
func (p *Player) onPlaybackFinished(chainID uint64, srcErr error) {
p.mu.Lock()
// The player has moved on while this callback queued for the lock
// -- a user pressing Next during the last second of a track is
// enough. Everything below is about the *current* track: rewinding
// the decoder, saying playback stopped, asking the queue to
// advance. Doing any of it now would do it to the wrong track.
if chainID != p.chainID {
p.mu.Unlock()
p.logger.Debug(
"Ignoring finished callback for a superseded chain",
"chain", chainID, "current", p.chainID,
)
return
}
p.state = Stopped
handler := p.playbackFinishedHandler
mc := p.mediaControls
@@ -501,10 +578,11 @@ func (p *Player) onPlaybackFinished() {
// the Stopped state anyway, so this only moves the decoder.
p.rewindLocked()
p.emitPositionLocked()
p.mu.Unlock()
// Emit Wails events outside the lock — these are non-blocking
// calls that don't need player state.
// Emitted under p.mu, like every other transition in this file.
// Outside it, a Play() taking the lock in the gap emits `playing`
// first and this stale `stopped` lands last -- leaving the button
// showing play over a track that is audibly running.
p.emitPlaybackFinished()
events.Emit(
@@ -513,6 +591,8 @@ func (p *Player) onPlaybackFinished() {
map[string]string{"state": string(Stopped)},
)
p.mu.Unlock()
// Notify media controls outside the lock. The track just
// ended so position is 0.
if mc != nil {
@@ -521,12 +601,19 @@ func (p *Player) onPlaybackFinished() {
)
}
if srcErr != nil {
p.logger.Error(
"Playback stopped: the audio source failed",
"err", srcErr,
)
} else {
p.logger.Info("Playback finished naturally")
}
// Notify queue for auto-advance. Called without p.mu held
// because it re-enters the player via LoadFile/Play.
if handler != nil {
handler()
handler(srcErr)
}
}
@@ -587,6 +674,18 @@ func (p *Player) loadFileLocked(filePath string) error {
p.currentFile = f
// The decoder's own format, kept for the paths that rebuild the
// chain later: Play()'s replay branch resamples from it, so a
// stale rate there plays a finished track back at the wrong speed.
p.format = format
// The previous track's duration must not outlive it. This is set
// again by emitTrackChanged below, but only when the database has
// a row for the file -- and every position this player reports is
// scaled by it, so inheriting means every report is wrong by the
// ratio between two unrelated tracks.
p.trackLengthMs = 0
if err := p.updateStreamers(
streamer, format.SampleRate,
); err != nil {
@@ -791,6 +890,10 @@ func (p *Player) SetVolume(desiredVolume UserVolume) {
p.mu.Lock()
defer p.mu.Unlock()
if p.systemVolume {
return
}
p.setVolumeLocked(desiredVolume)
p.emitVolumeChanged()
p.saveState()
@@ -839,6 +942,10 @@ func (p *Player) ChangeVolume(deltaVolume int) error {
p.mu.Lock()
defer p.mu.Unlock()
if p.systemVolume {
return nil
}
p.setVolumeLocked(p.getUserVolume() + UserVolume(deltaVolume))
p.emitVolumeChanged()
p.saveState()
@@ -869,6 +976,14 @@ func (p *Player) MuteToggle() error {
return errNoAudioFileLoaded
}
// Mute is a level of zero by another name, so it goes with the rest
// of the volume where the system owns it -- and it would be the one
// state on such a platform the user could not get out of, since with
// no control rendered there is nothing left to un-mute with.
if p.systemVolume {
return nil
}
speaker.Lock()
p.volume.Silent = !p.volume.Silent
speaker.Unlock()
@@ -906,6 +1021,8 @@ func (p *Player) CurrentPosition() (int, error) {
return 0, errNoAudioFileLoaded
}
defer p.lockSourceLocked()()
speaker.Lock()
pos := math.Round(
100.0 * float64(p.seeker.Position()) /
@@ -924,6 +1041,28 @@ func (p *Player) Seek(targetSeconds int) error {
return p.seekLocked(targetSeconds)
}
// lockSourceLocked blocks the read-ahead goroutine from touching the
// decoder and returns the function that releases it, so a caller can
// `defer p.lockSourceLocked()()`.
//
// Reading the decoder's position is a read *of the decoder*, and the
// speaker lock does not exclude the read-ahead goroutine -- it never
// takes it. That was a genuine data race on every position emit,
// once a second for the whole of playback.
//
// srcMu is not reentrant, so nothing that already holds it may call
// this; seekSourceLocked exists to keep that region free of emits.
// Must be called with p.mu held.
func (p *Player) lockSourceLocked() func() {
if p.buffered == nil {
return func() {}
}
p.buffered.LockSource()
return p.buffered.UnlockSource
}
// rewindLocked returns the decoder to the start of the track without
// touching playback state. Must be called with p.mu held.
func (p *Player) rewindLocked() {
@@ -959,6 +1098,46 @@ func (p *Player) seekLocked(targetSeconds int) error {
return fmt.Errorf("cannot get track length: %w", err)
}
// The source lock is released before anything below is emitted:
// emitPositionLocked reads the decoder's position and takes the
// same lock, which is not reentrant.
seekErr := p.seekSourceLocked(targetSeconds, lengthSecs)
if seekErr != nil {
p.logger.Warn(
"Seek failed, playback will start from "+
"the beginning",
"target-seconds", targetSeconds,
"err", seekErr,
)
// The optimistic move the UI already made has to be taken
// back, and only the backend knows it did not happen.
events.Emit(p.ctx, events.SeekFailed)
p.emitPositionLocked()
return fmt.Errorf("failed to seek: %w", seekErr)
}
if p.mediaControls != nil {
p.mediaControls.NotifySeek(targetSeconds)
}
// Report the landing position immediately rather than leaving the
// UI to guess until the next tick — this is the half of H-3 that
// desynced the seek bar by 30 s over four keyboard seeks.
p.emitPositionLocked()
return nil
}
// seekSourceLocked moves the decoder and flushes the stale read-ahead
// behind it. It owns the source lock for exactly that long and
// emits nothing, so its caller is free to read the position
// afterwards. Must be called with p.mu held.
func (p *Player) seekSourceLocked(
targetSeconds int,
lengthSecs int,
) error {
// Block the read-ahead goroutine from reading the source while
// we seek it. The decoder (e.g. FLAC's bufseekio.ReadSeeker) is
// not safe for concurrent Read+Seek, and read-ahead runs on its
@@ -1014,19 +1193,11 @@ func (p *Player) seekLocked(targetSeconds int) error {
if seekErr != nil {
speaker.Unlock()
p.logger.Warn(
"Seek failed, playback will start from "+
"the beginning",
"target-seconds", targetSeconds,
"samples", samples,
"err", seekErr,
p.logger.Debug(
"seek rejected by the decoder",
"samples", samples, "err", seekErr,
)
// The optimistic move the UI already made has to be taken
// back, and only the backend knows it did not happen.
events.Emit(p.ctx, events.SeekFailed)
p.emitPositionLocked()
return fmt.Errorf("failed to seek: %w", seekErr)
}
@@ -1039,15 +1210,6 @@ func (p *Player) seekLocked(targetSeconds int) error {
p.buffered.Flush()
}
if p.mediaControls != nil {
p.mediaControls.NotifySeek(targetSeconds)
}
// Report the landing position immediately rather than leaving the
// UI to guess until the next tick — this is the half of H-3 that
// desynced the seek bar by 30 s over four keyboard seeks.
p.emitPositionLocked()
return nil
}
@@ -1140,6 +1302,10 @@ func (p *Player) seekerLengthSecsLocked() (int, error) {
return 0, errNoAudioFileLoaded
}
// Len is fixed for the life of the decoder, so unlike Position it
// races with nothing and needs no source lock -- which it must not
// take anyway: displayPositionSecsLocked calls this while holding
// it, and srcMu is not reentrant.
speaker.Lock()
length := p.seeker.Len() / int(p.format.SampleRate)
speaker.Unlock()
@@ -1156,6 +1322,8 @@ func (p *Player) displayPositionSecsLocked() int {
return 0
}
defer p.lockSourceLocked()()
speaker.Lock()
pos := p.seeker.Position()
total := p.seeker.Len()
@@ -1266,7 +1434,15 @@ func (p *Player) saveState() {
volume := int64(DefaultUserVol)
muted := false
if p.volume != nil {
switch {
case p.systemVolume:
// The maximum this platform runs at is not a level anybody
// chose, so it is not one to remember. Writing back what
// restore found keeps the row a description of the user's
// setting without needing a second query that omits the column.
volume = int64(p.storedVolume)
muted = p.storedMuted
case p.volume != nil:
volume = int64(p.getUserVolume())
muted = p.volume.Silent
}
@@ -1350,12 +1526,21 @@ func (p *Player) restoreStateLocked() {
}
}
if p.systemVolume {
// Remembered, not applied: the device's keys are the volume
// control here, so the player runs wide open and hands the
// stored level back untouched at the next save.
p.storedVolume = clampVolume(UserVolume(state.Volume))
p.storedMuted = state.Muted
p.setVolumeLocked(MaxUserVol)
} else {
vol := clampVolume(UserVolume(state.Volume))
p.setVolumeLocked(vol)
if state.Muted {
p.volume.Silent = true
}
}
// Restore last track if the file still exists.
if state.LastTrackPath != "" {
@@ -1394,8 +1579,9 @@ func (p *Player) restoreStateLocked() {
}
p.logger.Info("Player state restored",
"volume", vol,
"muted", state.Muted,
"volume", p.getUserVolume(),
"muted", p.volume.Silent,
"systemVolume", p.systemVolume,
"trackPath", state.LastTrackPath,
"positionSeconds", state.LastPositionSeconds,
)
+42
View File
@@ -0,0 +1,42 @@
package player
// Who owns the volume, and what follows when it is not us.
//
// On Android the hardware keys *are* the volume control and the
// framework mixes our stream against the device level, so a second
// control inside the app is a slider that moves something the user
// already moved (#64). Where that is true the player's own level sits
// at maximum, nothing changes it, and nothing persists it.
//
// **The predicate is named after the capability, not the platform.**
// The frontend asks "is there a volume for me to control", which is a
// question about this build; asking "is this a phone" instead would
// key the answer to a viewport, and an Android tablet at 600px or more
// would then draw the bottom bar's slider over a level pinned at
// maximum -- a control that cannot act, which is the thing
// `library-status-indicator` already settled is worse than none.
//
// **Only `platformOwnsVolume` is behind a build tag**, in two files
// that declare nothing else. A tagged file is compiled by nothing
// `make lint` or `make test` runs and is untestable off a phone, which
// is the reasoning `mediacontrols/androidpayload.go` states for
// keeping its contract out of one -- so everything decidable here is
// decided against `Player.systemVolume`, a field a test sets either
// way, and the tag decides only what that field starts as.
//
// The one thing this must not disturb is ducking. `SetDuck` applies
// its attenuation by re-applying the *user's* level through
// `setVolumeLocked`, so pinning that level to maximum leaves the
// offset arithmetic exactly as it was: an OS asking us to get out of
// the way of a navigation prompt is not the user setting a volume, and
// it is the only thing that may move the output on such a platform.
// SystemOwnsVolume reports whether the platform's own control is the
// only volume control there is, so this app neither offers one nor
// remembers a level.
//
// It is bound: the frontend renders no `<volume-control>` when it is
// true, at any width.
func (p *Player) SystemOwnsVolume() bool {
return p.systemVolume
}
+11
View File
@@ -0,0 +1,11 @@
//go:build android
package player
// platformOwnsVolume is true on Android: volume is the device's, set
// with the hardware keys, and `mediacontrols`' Android handler
// implements no volume callback for the same reason.
//
// See systemvolume.go for why this constant is the whole of what a
// build tag decides here.
const platformOwnsVolume = true
+10
View File
@@ -0,0 +1,10 @@
//go:build !android
package player
// platformOwnsVolume is false everywhere but Android: a desktop mixer
// is per-application, so our level is the one the user reaches for.
//
// See systemvolume.go for why this constant is the whole of what a
// build tag decides here.
const platformOwnsVolume = false
+215
View File
@@ -0,0 +1,215 @@
package player
import (
"log/slog"
"os"
"path/filepath"
"strings"
"testing"
"github.com/gopxl/beep/v2/effects"
"yellowjacket/backend/database"
)
// pinnedPlayer is a player on a platform whose volume belongs to the
// device. The field is set rather than the build constant read,
// because the constant is true on exactly one platform and no tier
// here runs on it -- see systemvolume.go.
func pinnedPlayer(t *testing.T, db *database.DB) *Player {
t.Helper()
p := NewPlayer(slog.Default(), db)
p.systemVolume = true
p.volume = &effects.Volume{Base: 2}
p.setVolumeLocked(MaxUserVol)
return p
}
// TestSystemVolumeRefusesEveryWayToChangeTheLevel is the first half of
// #64: where the device owns the volume, ours sits at maximum and none
// of the three routes to a level moves it. Mute is in that list
// because it is a level of zero by another name, and because with no
// control rendered it is the one state on such a platform there would
// be nothing to get out of.
func TestSystemVolumeRefusesEveryWayToChangeTheLevel(t *testing.T) {
t.Parallel()
p := pinnedPlayer(t, nil)
if !p.SystemOwnsVolume() {
t.Fatal("SystemOwnsVolume() = false on a pinned player")
}
if got := p.getUserVolume(); got != MaxUserVol {
t.Errorf("starting volume = %d, want %d", got, MaxUserVol)
}
p.SetVolume(20)
if got := p.getUserVolume(); got != MaxUserVol {
t.Errorf("volume after SetVolume(20) = %d, want %d", got, MaxUserVol)
}
if err := p.ChangeVolume(-30); err != nil {
t.Fatalf("ChangeVolume: %v", err)
}
if got := p.getUserVolume(); got != MaxUserVol {
t.Errorf("volume after ChangeVolume(-30) = %d, want %d", got, MaxUserVol)
}
if err := p.MuteToggle(); err != nil {
t.Fatalf("MuteToggle: %v", err)
}
if p.volume.Silent {
t.Error("MuteToggle silenced a player whose volume the system owns")
}
}
// TestAnUnpinnedPlayerStillChangesItsVolume is the other side of the
// same switch. Without it the test above passes on a player that
// refuses everything, which is what a mis-wired field would produce.
func TestAnUnpinnedPlayerStillChangesItsVolume(t *testing.T) {
t.Parallel()
p := NewPlayer(slog.Default(), nil)
p.volume = &effects.Volume{Base: 2}
p.setVolumeLocked(MaxUserVol)
if p.SystemOwnsVolume() {
t.Fatal("SystemOwnsVolume() = true off Android")
}
p.SetVolume(20)
if got := p.getUserVolume(); got != 20 {
t.Errorf("volume after SetVolume(20) = %d, want 20", got)
}
if err := p.MuteToggle(); err != nil {
t.Fatalf("MuteToggle: %v", err)
}
if !p.volume.Silent {
t.Error("MuteToggle did not silence an ordinary player")
}
}
// TestSystemVolumeStillDucks is the issue's second Finding, made a
// test: pinning the user's level must leave the OS's attenuation
// working, because a duck is not a volume the user chose and is the
// only thing that may move the output on such a platform.
func TestSystemVolumeStillDucks(t *testing.T) {
t.Parallel()
p := pinnedPlayer(t, nil)
open := p.volume.Volume
p.SetDuck(true)
if p.volume.Volume >= open {
t.Errorf(
"ducked output = %v, want less than %v", p.volume.Volume, open,
)
}
if got := p.getUserVolume(); got != MaxUserVol {
t.Errorf("user volume while ducked = %d, want %d", got, MaxUserVol)
}
// A refused SetVolume must not disturb the offset either: it
// returns before setVolumeLocked, which is what re-applies it.
ducked := p.volume.Volume
p.SetVolume(10)
if p.volume.Volume != ducked {
t.Errorf(
"output after a refused SetVolume = %v, want %v",
p.volume.Volume, ducked,
)
}
p.SetDuck(false)
if p.volume.Volume != open {
t.Errorf("output after unduck = %v, want %v", p.volume.Volume, open)
}
}
// TestSystemVolumeWritesBackTheLevelItFound is the rest of the
// Direction: "make sure nothing writes a persisted volume from that
// platform". The maximum the player runs at is synthetic, so saving
// must not record it over whatever the row already said.
func TestSystemVolumeWritesBackTheLevelItFound(t *testing.T) {
t.Parallel()
db := database.NewTestDB(t)
// A level set by some earlier, unpinned session.
writer := NewPlayer(slog.Default(), db)
writer.volume = &effects.Volume{Base: 2}
writer.setVolumeLocked(30)
writer.SaveState()
p := pinnedPlayer(t, db)
p.RestoreState()
if got := p.getUserVolume(); got != MaxUserVol {
t.Errorf("restored volume = %d, want %d (the level is pinned)", got, MaxUserVol)
}
if p.volume.Silent {
t.Error("restore muted a player whose volume the system owns")
}
p.SaveState()
state, err := db.Queries.GetPlayerState(db.Ctx)
if err != nil {
t.Fatalf("GetPlayerState: %v", err)
}
if state.Volume != 30 {
t.Errorf("persisted volume = %d, want 30 (untouched)", state.Volume)
}
}
// TestPlatformVolumeOwnershipIsDeclaredOncePerPlatform sweeps the
// source, because the pair of tagged files is the one thing here no
// tier compiles both halves of: `make lint` and `make test` build the
// `!android` side only, so a deleted or edited android file fails
// nothing until somebody has a phone in their hand.
func TestPlatformVolumeOwnershipIsDeclaredOncePerPlatform(t *testing.T) {
t.Parallel()
want := map[string]string{
"systemvolume_other.go": "const platformOwnsVolume = false",
"systemvolume_android.go": "const platformOwnsVolume = true",
}
tags := map[string]string{
"systemvolume_other.go": "//go:build !android",
"systemvolume_android.go": "//go:build android",
}
for name, decl := range want {
src, err := os.ReadFile(filepath.Join(".", name))
if err != nil {
t.Errorf("%s: %v", name, err)
continue
}
if !strings.Contains(string(src), decl) {
t.Errorf("%s does not declare %q", name, decl)
}
if !strings.Contains(string(src), tags[name]) {
t.Errorf("%s does not carry %q", name, tags[name])
}
}
}
+3 -3
View File
@@ -83,7 +83,7 @@ func TestFallback_TriggersOnNaturalFinish(t *testing.T) {
q.SetFallbackSource(fake)
q.SetQueue(seedPaths, 0, false, Source{Type: "album", ID: 1, Label: "Seed Album"})
q.OnPlaybackFinished()
q.OnPlaybackFinished(nil)
waitUntil(t, func() bool { return fake.callCount() == 1 }, "fallback to be resolved")
waitUntil(t, func() bool {
@@ -159,7 +159,7 @@ func TestFallback_EmptyResultLeavesQueueExhausted(t *testing.T) {
q.SetFallbackSource(fake)
q.SetQueue(seedPaths, 0, false, Source{})
q.OnPlaybackFinished()
q.OnPlaybackFinished(nil)
waitUntil(t, func() bool { return fake.callCount() == 1 }, "fallback to be resolved")
@@ -193,7 +193,7 @@ func TestFallback_StaleResolutionDiscarded(t *testing.T) {
q.SetFallbackSource(fake)
q.SetQueue(seedPaths, 0, false, Source{})
q.OnPlaybackFinished() // starts resolving, blocked on gate
q.OnPlaybackFinished(nil) // starts resolving, blocked on gate
time.Sleep(20 * time.Millisecond) // let the goroutine reach the gate
+78
View File
@@ -0,0 +1,78 @@
package queue
import (
"errors"
"testing"
"yellowjacket/backend/events"
)
// errTestDecode stands in for a decoder blowing up mid-track.
var errTestDecode = errors.New("decode blew up")
// currentIndex == -1 against a non-empty queue is a state this
// package produces on purpose: onQueueExhausted(false) sets it and
// deliberately leaves the finished track loaded in the player, so it
// stays on the now-playing bar. Pressing play from there and letting
// it finish re-enters OnPlaybackFinished with exactly that pair --
// which used to index q.tracks[-1] and panic, on a goroutine
// dispatched from the audio callback with no caller to recover it.
func TestFinishedWithNoCurrentTrackDoesNotPanic(t *testing.T) {
t.Parallel()
tests := []struct {
name string
index int
}{
{"exhausted queue leaves -1", -1},
{"index past the end", 3},
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
t.Parallel()
q, _, _ := setupRecordedQueue(t)
q.tracks = []Track{
{FilePath: "/a.mp3"},
{FilePath: "/b.mp3"},
}
q.currentIndex = tt.index
// The assertion is that this returns at all.
q.OnPlaybackFinished(nil)
if q.currentIndex != tt.index {
t.Errorf(
"an out-of-range index was acted on: %d became %d",
tt.index, q.currentIndex,
)
}
})
}
}
// A track that broke mid-playback is not a track that was listened
// to. The player cannot say so itself -- the metadata is here -- so
// it hands the reason over and this is where it becomes a
// PlaybackFailed rather than a silent auto-advance.
func TestAFailedTrackIsReportedAndNotCountedAsAPlay(t *testing.T) {
t.Parallel()
q, _, rec := setupRecordedQueue(t)
q.tracks = []Track{
{FilePath: "/a.mp3", Title: "A", AudioFileID: 1},
{FilePath: "/b.mp3", Title: "B", AudioFileID: 2},
}
q.currentIndex = 0
q.OnPlaybackFinished(errTestDecode)
if _, ok := rec.Last(events.PlaybackFailed); !ok {
t.Errorf(
"a track that failed mid-playback told the user nothing; "+
"got %v",
rec.Names(),
)
}
}
+36 -9
View File
@@ -1,18 +1,45 @@
package queue
// OnPlaybackFinished is called when a track finishes playing naturally.
// This drives the auto-advance behavior and records the play.
func (q *Queue) OnPlaybackFinished() {
// OnPlaybackFinished is called when a track stops streaming. This
// drives the auto-advance behavior and records the play.
//
// srcErr says why the track stopped: nil for one that reached its
// end, non-nil for one that broke partway through. The player cannot
// tell the user which, because the metadata lives here -- so a failure
// is reported as PlaybackFailed and *not* recorded as a play, while
// the advance happens either way. Before this, a file that failed
// mid-track advanced in silence and was counted as listened to.
//
//wails:ignore // internal wiring, not part of the app's IPC surface.
func (q *Queue) OnPlaybackFinished(srcErr error) {
q.mu.Lock()
if len(q.tracks) == 0 {
// currentIndex is -1 whenever the queue has been exhausted, and
// onQueueExhausted deliberately leaves the finished track loaded
// in the player -- so a natural finish can re-enter here against a
// queue that is not empty and an index that is not valid. Every
// other path in this package bounds-checks before indexing; this
// one panicked, on a goroutine with no caller to recover it.
if q.currentIndex < 0 || q.currentIndex >= len(q.tracks) {
q.mu.Unlock()
return
}
// Capture the track that just finished before advancing.
finishedID := q.tracks[q.currentIndex].AudioFileID
finished := q.tracks[q.currentIndex]
finishedID := finished.AudioFileID
if srcErr != nil {
q.emitPlaybackFailed(finished, srcErr)
}
// A track that broke was not listened to.
recordFinished := func() {
if srcErr == nil {
q.recordPlay(finishedID)
}
}
// Repeat One: replay the current track.
if q.repeatMode == RepeatOne {
@@ -21,7 +48,7 @@ func (q *Queue) OnPlaybackFinished() {
}
q.mu.Unlock()
q.recordPlay(finishedID)
recordFinished()
return
}
@@ -31,7 +58,7 @@ func (q *Queue) OnPlaybackFinished() {
// Queue exhausted — this is the extension point for a future fallback playlist.
q.onQueueExhausted(false)
q.mu.Unlock()
q.recordPlay(finishedID)
recordFinished()
return
}
@@ -44,12 +71,12 @@ func (q *Queue) OnPlaybackFinished() {
if !q.playCurrentOrSkip(true, q.nextIndex) {
q.onQueueExhausted(false)
q.mu.Unlock()
q.recordPlay(finishedID)
recordFinished()
return
}
q.emitIndexChanged()
q.mu.Unlock()
q.recordPlay(finishedID)
recordFinished()
}
+2 -2
View File
@@ -107,7 +107,7 @@ func TestPlaybackFailed_AutoAdvanceSkipsPastIt(t *testing.T) {
// The first track finished: auto-advance lands on the missing
// file and must step over it rather than stopping dead.
q.OnPlaybackFinished()
q.OnPlaybackFinished(nil)
if got := q.GetState().CurrentIndex; got != 2 {
t.Errorf("currentIndex after skipping: got %d, want 2", got)
@@ -183,7 +183,7 @@ func TestQueueExhausted_KeepsTheFinishedTrackLoaded(t *testing.T) {
q.SetQueue(paths, 0, false, Source{})
q.Play()
q.OnPlaybackFinished()
q.OnPlaybackFinished(nil)
if q.GetState().CurrentIndex != -1 {
t.Errorf(
+10 -1
View File
@@ -24,10 +24,19 @@ func DefaultBindings() map[string]string {
"player.repeat": "R",
"player.mute": "M",
// Navigation (Global scope)
// Navigation (Global scope). Back and forward are the browser's
// own combination on every platform, which is the whole design
// brief for them: the app has one global history and this is the
// gesture people already have for it. The modifier is what keeps
// them clear of `player.seekBack`/`seekForward`, which are the
// bare arrows -- a binding is matched on its full canonical
// string, so "Alt+Left" and "Left" are different keys and not a
// conflict.
"nav.search": "/",
"nav.searchAlt": "Ctrl+F",
"nav.queue": "Q",
"nav.back": "Alt+Left",
"nav.forward": "Alt+Right",
// App actions
"app.selectAll": "Ctrl+A",
+56
View File
@@ -0,0 +1,56 @@
// Package tagtotals derives the totals a tag's "5/12" form declares.
//
// It exists because the two writers that know a release's full
// tracklist -- the autotag apply pass and the download importer --
// must not import each other or the tag writer, and because getting
// the denominator wrong is invisible: a total that is too large marks
// a complete album incomplete forever, and nothing fails.
package tagtotals
// Position is one track's place in a release. A zero Disc means the
// release did not say, which is disc 1.
type Position struct {
Disc int
Track int
}
// For returns the totals to write on a file sitting on disc `disc`:
// how many tracks that disc has, and how many discs the release has.
//
// The track total is **per disc** and not the release's track count,
// because that is what the tag form means and what
// GetAlbumCompleteness sums -- summing a release total once per disc
// would multiply a two-disc album's expectation by two.
//
// Tracks are counted by distinct position rather than by row: a
// tracklist that lists a position twice is a defect in the source, and
// counting it twice would put an album permanently out of reach of its
// own total.
func For(all []Position, disc int) (tracks, discs int) {
disc = normaliseDisc(disc)
seenTracks := make(map[int]struct{}, len(all))
seenDiscs := make(map[int]struct{}, 1)
for _, p := range all {
d := normaliseDisc(p.Disc)
seenDiscs[d] = struct{}{}
if d != disc || p.Track <= 0 {
continue
}
seenTracks[p.Track] = struct{}{}
}
return len(seenTracks), len(seenDiscs)
}
// normaliseDisc treats an undeclared disc as disc 1.
func normaliseDisc(d int) int {
if d <= 0 {
return 1
}
return d
}
+92
View File
@@ -0,0 +1,92 @@
package tagtotals_test
import (
"testing"
"yellowjacket/backend/tagtotals"
)
func TestFor(t *testing.T) {
t.Parallel()
singleDisc := []tagtotals.Position{
{Disc: 0, Track: 1}, {Disc: 0, Track: 2}, {Disc: 0, Track: 3},
}
twoDiscs := []tagtotals.Position{
{Disc: 1, Track: 1},
{Disc: 1, Track: 2},
{Disc: 2, Track: 1},
{Disc: 2, Track: 2},
{Disc: 2, Track: 3},
}
tests := []struct {
name string
all []tagtotals.Position
disc int
wantTracks int
wantDiscs int
}{
{
name: "a single-disc release totals its own tracks",
all: singleDisc, disc: 0, wantTracks: 3, wantDiscs: 1,
},
{
// An undeclared disc is disc 1, on both sides of the
// question -- a file tagged "disc 1" and a tracklist that
// declares no disc describe the same disc.
name: "an undeclared disc is disc 1",
all: singleDisc, disc: 1, wantTracks: 3, wantDiscs: 1,
},
{
// The whole point: 5 here would be the release's track
// count, which summed once per disc claims a ten-track
// expectation for a five-track album.
name: "a multi-disc release totals the file's own disc",
all: twoDiscs, disc: 2, wantTracks: 3, wantDiscs: 2,
},
{
name: "the other disc gets its own total",
all: twoDiscs, disc: 1, wantTracks: 2, wantDiscs: 2,
},
{
// A disc the tracklist does not mention cannot be totalled,
// and 0 is how the caller is told to write nothing.
name: "a disc with no tracks totals nothing",
all: twoDiscs, disc: 3, wantTracks: 0, wantDiscs: 2,
},
{
name: "an empty tracklist totals nothing",
all: nil, disc: 1, wantTracks: 0, wantDiscs: 0,
},
{
// A source that lists a position twice would otherwise put
// the album permanently one track short of its own total.
name: "a repeated position counts once",
all: []tagtotals.Position{
{Disc: 1, Track: 1}, {Disc: 1, Track: 1}, {Disc: 1, Track: 2},
},
disc: 1, wantTracks: 2, wantDiscs: 1,
},
{
name: "a track with no position is not counted",
all: []tagtotals.Position{
{Disc: 1, Track: 0}, {Disc: 1, Track: 1},
},
disc: 1, wantTracks: 1, wantDiscs: 1,
},
}
for _, tc := range tests {
t.Run(tc.name, func(t *testing.T) {
t.Parallel()
tracks, discs := tagtotals.For(tc.all, tc.disc)
if tracks != tc.wantTracks || discs != tc.wantDiscs {
t.Errorf("For(%v, %d) = (%d, %d), want (%d, %d)",
tc.all, tc.disc, tracks, discs, tc.wantTracks, tc.wantDiscs)
}
})
}
}
+10 -1
View File
@@ -183,6 +183,15 @@ func syncDatabase(
discNum = toNullInt64(v)
}
// The completeness evidence. Without this the row keeps whatever
// the last scan read while the file on disk now declares a total,
// so the album stays "unknown" until a full rescan -- which is the
// state the report describes.
totalTracks := old.TotalTracks
if v, ok := asInt(params.changes[FieldTotalTracks]); ok {
totalTracks = toNullInt64(v)
}
composer := old.Composer
if v, ok := params.changes[FieldComposer].(string); ok {
composer = v
@@ -207,7 +216,7 @@ func syncDatabase(
AlbumID: albumID,
TrackNumber: trackNum,
DiscNumber: discNum,
TotalTracks: old.TotalTracks,
TotalTracks: totalTracks,
Year: year,
Composer: composer,
Comment: old.Comment,
+5
View File
@@ -101,6 +101,11 @@ func applyFlacTextChanges(cmt *flacvorbis.MetaDataBlockVorbisComment, changes Ta
{FieldYear, flacvorbis.FIELD_DATE, true},
{FieldTrackNumber, flacvorbis.FIELD_TRACKNUMBER, true},
{FieldDiscNumber, "DISCNUMBER", true},
// TRACKTOTAL/DISCTOTAL and no other spelling: dhowden/tag's
// Vorbis reader looks at exactly these two keys, so TOTALTRACKS
// or a "1/12" inside TRACKNUMBER reads back as no total at all.
{FieldTotalTracks, "TRACKTOTAL", true},
{FieldTotalDiscs, "DISCTOTAL", true},
{FieldComposer, "COMPOSER", false},
}
+63 -11
View File
@@ -6,6 +6,7 @@ import (
"log/slog"
"os"
"strconv"
"strings"
id3v2 "github.com/bogem/id3v2/v2"
@@ -66,17 +67,10 @@ func applyTextChanges(tag *id3v2.Tag, changes TagChanges) {
tag.SetYear(strconv.Itoa(v))
}
if v, ok := asInt(changes[FieldTrackNumber]); ok {
trckID := tag.CommonID("Track number/Position in set")
tag.DeleteFrames(trckID)
tag.AddTextFrame(trckID, id3v2.EncodingUTF8, strconv.Itoa(v))
}
if v, ok := asInt(changes[FieldDiscNumber]); ok {
tposID := tag.CommonID("Part of a set")
tag.DeleteFrames(tposID)
tag.AddTextFrame(tposID, id3v2.EncodingUTF8, strconv.Itoa(v))
}
applyPositionFrame(tag, "Track number/Position in set", changes,
FieldTrackNumber, FieldTotalTracks)
applyPositionFrame(tag, "Part of a set", changes,
FieldDiscNumber, FieldTotalDiscs)
if v, ok := changes[FieldComposer].(string); ok {
tag.DeleteFrames("TCOM")
@@ -90,6 +84,64 @@ func applyTextChanges(tag *id3v2.Tag, changes TagChanges) {
}
}
// applyPositionFrame writes an ID3v2 position frame (TRCK or TPOS) in
// the "n/N" form the readers parse.
//
// The number and the total are separate diff entries and either may be
// absent, so the frame's *existing* value is the base: writing a total
// alone must not discard the number that is already there, and writing
// a number alone must not discard a total the file already declared.
// A total with no number at all is not written, since "/12" says
// nothing a reader can use.
func applyPositionFrame(
tag *id3v2.Tag, description string, changes TagChanges, numKey, totalKey string,
) {
_, hasNum := changes[numKey]
_, hasTotal := changes[totalKey]
if !hasNum && !hasTotal {
return
}
frameID := tag.CommonID(description)
num, total := parseXofN(
strings.TrimRight(tag.GetTextFrame(frameID).Text, "\x00 \t\n\r"),
)
if v, ok := asInt(changes[numKey]); ok {
num = v
}
if v, ok := asInt(changes[totalKey]); ok {
total = v
}
if num <= 0 {
return
}
value := strconv.Itoa(num)
if total > 0 {
value += "/" + strconv.Itoa(total)
}
tag.DeleteFrames(frameID)
tag.AddTextFrame(frameID, id3v2.EncodingUTF8, value)
}
// parseXofN splits an ID3v2 "n/N" position value. A bare "n" yields a
// zero total, and anything unparseable yields zeros — the same reading
// dhowden/tag gives the frame.
func parseXofN(s string) (int, int) {
numText, totalText, _ := strings.Cut(s, "/")
num, _ := strconv.Atoi(strings.TrimSpace(numText))
total, _ := strconv.Atoi(strings.TrimSpace(totalText))
return num, total
}
// applyCoverArtChanges handles the FieldCoverArt entry in the diff map.
//
// - []byte with len > 0: embed the given image as front cover.
+2
View File
@@ -166,6 +166,8 @@ var oggFieldMappings = []struct { //nolint:gochecknoglobals // field mapping tab
{FieldYear, "DATE", true},
{FieldTrackNumber, "TRACKNUMBER", true},
{FieldDiscNumber, "DISCNUMBER", true},
{FieldTotalTracks, "TRACKTOTAL", true},
{FieldTotalDiscs, "DISCTOTAL", true},
{FieldComposer, "COMPOSER", false},
}
+28
View File
@@ -333,3 +333,31 @@ func TestWriteTrackTags_DBSync(t *testing.T) {
t.Error("expected FTS5 result for 'New Title'")
}
}
// The row is what the album page reads, and it is only refreshed by a
// scan. Leaving total_tracks at whatever the last scan saw means an
// album autotagged just now stays "unknown" -- a plain tick on an album
// the user holds two tracks of -- until a full rescan happens to run.
func TestWriteTrackTags_PersistsTheTotal(t *testing.T) {
db := database.NewTestDB(t)
dir := t.TempDir()
trackID := seedTestTrack(t, db, createPipelineTestMP3(t, dir))
tw := NewTagWriter(testLogger(), db, &mockPlayer{}, &mockPipelineLocker{})
if err := tw.WriteTrackTags(trackID, TagChanges{
FieldTrackNumber: 2,
FieldTotalTracks: 10,
}); err != nil {
t.Fatalf("WriteTrackTags: %v", err)
}
af, err := db.Queries.GetAudioFile(context.Background(), trackID)
if err != nil {
t.Fatalf("get audio file: %v", err)
}
if !af.TotalTracks.Valid || af.TotalTracks.Int64 != 10 {
t.Errorf("total_tracks: got %v, want 10", af.TotalTracks)
}
}
+9
View File
@@ -26,6 +26,15 @@ const (
FieldDiscNumber = "disc_number"
FieldComposer = "composer"
FieldCoverArt = "cover_art" // []byte for set, nil for clear
// FieldTotalTracks is how many tracks are on *this file's disc*, not
// in the whole release. That is what the "5/12" form declares and
// what GetAlbumCompleteness sums per disc; a release total written
// here would multiply the expectation by the number of discs.
FieldTotalTracks = "total_tracks"
// FieldTotalDiscs is how many discs the release has.
FieldTotalDiscs = "total_discs"
)
// AudioFormat represents a supported audio file format.
+199
View File
@@ -0,0 +1,199 @@
package tagwriter
import (
"path/filepath"
"testing"
"yellowjacket/backend/metadata"
)
// The totals are the evidence GetAlbumCompleteness reads, and every way
// of getting them wrong is silent: a tag written under a name the
// reader does not look at reads back as no total at all, which is
// indistinguishable from never having written one. So these assert the
// round trip through the *reader the scan uses*, not the bytes.
//
// WAV is the exception and it is not this change's: dhowden/tag has no
// RIFF reader at all, so metadata.ExtractTags cannot see a WAV's ID3
// chunk -- which is why every other test here reads that chunk itself.
func TestWriteTotals_RoundTripsInEveryFormat(t *testing.T) {
t.Parallel()
changes := TagChanges{
FieldTitle: "Some Song",
FieldTrackNumber: 2,
FieldTotalTracks: 10,
FieldDiscNumber: 1,
FieldTotalDiscs: 2,
}
viaScanner := func(t *testing.T, path string) *metadata.TrackMetadata {
t.Helper()
meta, err := metadata.ExtractTags(path)
if err != nil {
t.Fatalf("ExtractTags: %v", err)
}
return meta
}
tests := []struct {
name string
write func(t *testing.T, dir string) string
read func(t *testing.T, path string) *metadata.TrackMetadata
}{
{
name: "mp3",
read: viaScanner,
write: func(t *testing.T, dir string) string {
t.Helper()
path := createTestMP3(t, dir, "totals.mp3", nil)
if err := writeMp3Tags(testLogger(), path, changes); err != nil {
t.Fatalf("writeMp3Tags: %v", err)
}
return path
},
},
{
name: "flac",
read: viaScanner,
write: func(t *testing.T, dir string) string {
t.Helper()
path := filepath.Join(dir, "totals.flac")
makeMinimalFLAC(t, path)
if err := writeFlacTags(testLogger(), path, changes); err != nil {
t.Fatalf("writeFlacTags: %v", err)
}
return path
},
},
{
name: "ogg",
read: viaScanner,
write: func(t *testing.T, dir string) string {
t.Helper()
path := filepath.Join(dir, "totals.ogg")
createTestOGG(t, path)
if err := writeOggTags(testLogger(), path, changes); err != nil {
t.Fatalf("writeOggTags: %v", err)
}
return path
},
},
{
name: "wav",
read: readWavID3Tags,
write: func(t *testing.T, dir string) string {
t.Helper()
path := createTestWAV(t, dir, "totals.wav", nil)
if err := writeWavTags(testLogger(), path, changes); err != nil {
t.Fatalf("writeWavTags: %v", err)
}
return path
},
},
}
for _, tc := range tests {
t.Run(tc.name, func(t *testing.T) {
t.Parallel()
meta := tc.read(t, tc.write(t, t.TempDir()))
assertIntField(t, "TrackNumber", meta.TrackNumber, 2)
assertIntField(t, "TotalTracks", meta.TotalTracks, 10)
assertIntField(t, "DiscNumber", meta.DiscNumber, 1)
assertIntField(t, "TotalDiscs", meta.TotalDiscs, 2)
})
}
}
// A number and a total are separate diff entries, so writing one must
// not discard the other. For ID3v2 they share a single "n/N" frame,
// which is the only place this can go wrong -- and it goes wrong by
// silently zeroing a total the file already declared.
func TestWriteMp3Totals_PartialUpdateKeepsTheOtherHalf(t *testing.T) {
t.Parallel()
t.Run("writing the number keeps the total", func(t *testing.T) {
t.Parallel()
dir := t.TempDir()
path := createTestMP3(t, dir, "seeded.mp3", TagChanges{
FieldTrackNumber: 2,
FieldTotalTracks: 10,
})
if err := writeMp3Tags(testLogger(), path, TagChanges{
FieldTrackNumber: 4,
}); err != nil {
t.Fatalf("writeMp3Tags: %v", err)
}
meta, err := metadata.ExtractTags(path)
if err != nil {
t.Fatalf("ExtractTags: %v", err)
}
assertIntField(t, "TrackNumber", meta.TrackNumber, 4)
assertIntField(t, "TotalTracks", meta.TotalTracks, 10)
})
t.Run("writing the total keeps the number", func(t *testing.T) {
t.Parallel()
dir := t.TempDir()
path := createTestMP3(t, dir, "seeded.mp3", TagChanges{
FieldTrackNumber: 7,
})
if err := writeMp3Tags(testLogger(), path, TagChanges{
FieldTotalTracks: 12,
}); err != nil {
t.Fatalf("writeMp3Tags: %v", err)
}
meta, err := metadata.ExtractTags(path)
if err != nil {
t.Fatalf("ExtractTags: %v", err)
}
assertIntField(t, "TrackNumber", meta.TrackNumber, 7)
assertIntField(t, "TotalTracks", meta.TotalTracks, 12)
})
// "/12" says nothing a reader can use, and dhowden/tag reads it as
// track 0 -- which the scan would store as a real track number.
t.Run("a total with no number writes nothing", func(t *testing.T) {
t.Parallel()
dir := t.TempDir()
path := createTestMP3(t, dir, "bare.mp3", nil)
if err := writeMp3Tags(testLogger(), path, TagChanges{
FieldTotalTracks: 12,
}); err != nil {
t.Fatalf("writeMp3Tags: %v", err)
}
meta, err := metadata.ExtractTags(path)
if err != nil {
t.Fatalf("ExtractTags: %v", err)
}
assertIntField(t, "TrackNumber", meta.TrackNumber, 0)
assertIntField(t, "TotalTracks", meta.TotalTracks, 0)
})
}
+5 -4
View File
@@ -522,19 +522,20 @@ func readWavID3Tags(
}
}
// Track number (TRCK).
// Track number and total (TRCK), disc number and total (TPOS).
// Both carry the "n/N" form, so they are read the way a reader
// reads them rather than with Atoi -- which sees "2/10" as 0.
trckID := parsed.CommonID("Track number/Position in set")
if frames := parsed.GetFrames(trckID); len(frames) > 0 {
if tf, ok := frames[0].(id3v2.TextFrame); ok {
meta.TrackNumber = atoiSafe(tf.Text)
meta.TrackNumber, meta.TotalTracks = parseXofN(tf.Text)
}
}
// Disc number (TPOS).
tposID := parsed.CommonID("Part of a set")
if frames := parsed.GetFrames(tposID); len(frames) > 0 {
if tf, ok := frames[0].(id3v2.TextFrame); ok {
meta.DiscNumber = atoiSafe(tf.Text)
meta.DiscNumber, meta.TotalDiscs = parseXofN(tf.Text)
}
}
+25 -55
View File
@@ -4,18 +4,28 @@ includes:
common: ../Taskfile.yml
vars:
# The *installed* package name, which every adb-driven task below uses
# to uninstall, launch and filter. It must agree with `applicationId`
# in app/build.gradle, and nothing enforces that.
# APP_ID is an *assertion*, not a setting, and it has no default.
#
# ANDROID.md says to set this in build/config.yml. That does not work
# in beta.8, checked both ways: `wails3 task` builds its var set from
# CLI KEY=VALUE arguments and the Taskfile tree only -- nothing reads
# config.yml -- and even when set it feeds only these adb commands,
# never Gradle. So the identity is declared twice, here and in
# build.gradle, and a change to one alone means the official run and
# deploy tasks address a package that is not installed.
APP_ID: '{{.APP_ID | default "app.yellowjacket"}}'
# It used to be the id every adb-driven task below uninstalled,
# launched and filtered, defaulting to "app.yellowjacket". It could
# never have been a setting: `wails3 task` builds its var set from CLI
# KEY=VALUE arguments and the Taskfile tree only -- nothing reads
# build/config.yml, contrary to ANDROID.md, checked with --dry -- and
# even when set it fed only the adb commands, never Gradle. So the
# identity was declared twice, here and as `applicationId` in
# app/build.gradle, with nothing enforcing that they agree.
#
# They did not agree. The debug buildType carries
# `applicationIdSuffix ".dev"`, so the tasks that assemble a debug APK
# addressed the *release* id -- on a device, the user's installed app
# and their library (#159).
#
# The id is now read back from the built APK by scripts/android-
# pkgid.sh, so the thing installed and the thing launched agree by
# construction. Passing APP_ID= says "this build had better declare
# that id", and the deploy refuses before touching anything if it does
# not -- which is the check that would have caught #159 statically.
APP_ID: '{{.APP_ID | default ""}}'
MIN_SDK: '21'
TARGET_SDK: '35'
# The emulator runs the host architecture; physical devices are arm64
@@ -372,9 +382,7 @@ tasks:
ARCH: '{{.ARCH | default .HOST_ARCH}}'
cmds:
- task: ensure-emulator
- '"{{.ADB}}" uninstall {{.APP_ID}} 2>/dev/null || true'
- '"{{.ADB}}" install "{{.BIN_DIR}}/{{.APP_NAME}}.apk"'
- '"{{.ADB}}" shell am start -n {{.APP_ID}}/com.wails.app.MainActivity'
- './scripts/android-deploy.sh --apk "{{.BIN_DIR}}/{{.APP_NAME}}.apk" --target emulator{{if .APP_ID}} --expect "{{.APP_ID}}"{{end}}'
run:
summary: Build, install and launch a debug build in the Android Emulator
@@ -383,9 +391,7 @@ tasks:
- task: build
cmds:
- task: assemble:apk
- '"{{.ADB}}" uninstall {{.APP_ID}} 2>/dev/null || true'
- '"{{.ADB}}" install "{{.BIN_DIR}}/{{.APP_NAME}}.apk"'
- '"{{.ADB}}" shell am start -n {{.APP_ID}}/com.wails.app.MainActivity'
- './scripts/android-deploy.sh --apk "{{.BIN_DIR}}/{{.APP_NAME}}.apk" --target emulator{{if .APP_ID}} --expect "{{.APP_ID}}"{{end}}'
device:list:
summary: Lists connected Android devices and emulators (serials)
@@ -400,25 +406,7 @@ tasks:
ARCH: arm64
cmds:
- task: assemble:apk
- |
DEVICE='{{.DEVICE_ID | default ""}}'
if [ -z "$DEVICE" ]; then
DEVICE="${DEVICE_ID:-}"
fi
if [ -z "$DEVICE" ]; then
DEVICE=$("{{.ADB}}" devices | awk 'NR > 1 && $2 == "device" && $1 !~ /^emulator-/ { print $1; exit }')
fi
if [ -z "$DEVICE" ]; then
echo "Error: no connected physical Android device found."
echo "Pass DEVICE_ID=<serial> to target a device explicitly."
echo "Find connected device serials with: {{.ADB}} devices"
exit 1
fi
echo "Deploying {{.BIN_DIR}}/{{.APP_NAME}}.apk to device $DEVICE..."
"{{.ADB}}" -s "$DEVICE" uninstall {{.APP_ID}} 2>/dev/null || true
"{{.ADB}}" -s "$DEVICE" install "{{.BIN_DIR}}/{{.APP_NAME}}.apk"
"{{.ADB}}" -s "$DEVICE" shell am start -n {{.APP_ID}}/com.wails.app.MainActivity
- './scripts/android-deploy.sh --apk "{{.BIN_DIR}}/{{.APP_NAME}}.apk" --target device{{if .DEVICE_ID}} --serial "{{.DEVICE_ID}}"{{end}}{{if .APP_ID}} --expect "{{.APP_ID}}"{{end}}'
preconditions:
- sh: '[ -x "{{.ADB}}" ] || command -v adb'
msg: "adb not found. Install the Android SDK platform-tools (or set ANDROID_HOME)"
@@ -430,25 +418,7 @@ tasks:
vars:
ARCH: arm64
cmds:
- |
DEVICE='{{.DEVICE_ID | default ""}}'
if [ -z "$DEVICE" ]; then
DEVICE="${DEVICE_ID:-}"
fi
if [ -z "$DEVICE" ]; then
DEVICE=$("{{.ADB}}" devices | awk 'NR > 1 && $2 == "device" && $1 !~ /^emulator-/ { print $1; exit }')
fi
if [ -z "$DEVICE" ]; then
echo "Error: no connected physical Android device found."
echo "Pass DEVICE_ID=<serial> to target a device explicitly."
echo "Find connected device serials with: {{.ADB}} devices"
exit 1
fi
echo "Deploying {{.BIN_DIR}}/{{.APP_NAME}}.apk to device $DEVICE..."
"{{.ADB}}" -s "$DEVICE" uninstall {{.APP_ID}} 2>/dev/null || true
"{{.ADB}}" -s "$DEVICE" install "{{.BIN_DIR}}/{{.APP_NAME}}.apk"
"{{.ADB}}" -s "$DEVICE" shell am start -n {{.APP_ID}}/com.wails.app.MainActivity
- './scripts/android-deploy.sh --apk "{{.BIN_DIR}}/{{.APP_NAME}}.apk" --target device{{if .DEVICE_ID}} --serial "{{.DEVICE_ID}}"{{end}}{{if .APP_ID}} --expect "{{.APP_ID}}"{{end}}'
preconditions:
- sh: '[ -x "{{.ADB}}" ] || command -v adb'
msg: "adb not found. Install the Android SDK platform-tools (or set ANDROID_HOME)"
@@ -891,13 +891,41 @@ public class MainActivity extends AppCompatActivity {
}
}
/**
* The activity going away is not the app shutting down.
*
* <p>The scaffold called {@code bridge.shutdown()} here, which is
* the natural reading of onDestroy and is wrong for this app twice
* over. Android destroys and recreates an activity for a
* configuration change the manifest does not declare, under memory
* pressure, and on every background if the user has "Don't keep
* activities" on -- all **without restarting the process**. And
* when the user really does leave, this app's reason for existing
* in the background is that a song is playing, which is what the
* {@code mediaPlayback} foreground service is holding the process
* alive for. Either way, tearing the Go side down here would stop
* the music.
*
* <p>It was harmless only by accident: {@code nativeShutdown} calls
* {@code App.Quit()}, whose Android {@code destroy()} is an empty
* method, and {@code Run()}'s deferred {@code shutdownServices()}
* can never fire because Android's {@code platformRun} is
* {@code select{}} and does not return. So no {@code
* ServiceShutdown} has ever run on Android, and removing this call
* changes nothing today -- it stops the day someone implements
* {@code destroy()} from silently killing playback on a rotation.
*
* <p>There is no callback for "the process is going away"; Android
* simply kills it. Durability on this platform is the persist
* writers, which submit on every mutation rather than at exit.
*
* <p>See #52, and CLAUDE.md, "An activity is a view onto the
* process".
*/
@Override
protected void onDestroy() {
super.onDestroy();
unregisterSystemEventReceivers();
if (bridge != null) {
bridge.shutdown();
}
if (webView != null) {
webView.destroy();
}
@@ -129,7 +129,24 @@ public class WailsBridge {
}
/**
* Initialize the native Go library
* Initialize the native Go library.
*
* <p><b>{@code initialized} is deliberately per-instance, and making
* it {@code static} is the trap this comment exists for.</b> A
* recreated activity builds a new bridge and calls this again, in a
* process where the native library is already loaded and Go's
* {@code main()} is already running -- so "initialise once per
* process" looks like exactly the right rule. It is not, because
* {@code nativeInit} does <i>two</i> things: it runs
* {@code go mainFunc()}, and it stores the global JNI reference to
* <i>this</i> bridge. Skip it and Go keeps executing JavaScript
* against the destroyed activity's WebView: the app opens, renders,
* and never receives another backend event.
*
* <p>So this is called every time, and the half that must not repeat
* is latched on the Go side instead, at the top of {@code main()} --
* which is also where the damage was ({@code os.Exit(1)}), and the
* only place that can see it. See #52.
*/
public void initialize() {
if (initialized) {
+16 -6
View File
@@ -7,12 +7,22 @@ which is what lets Obtainium poll a plain URL with no token. It also
attaches the same file to the Gitea release, which is what a person
looking at the release page downloads.
**Tags are not pushed by hand any more.** `.gitea/workflows/release.yml`
reads the Conventional Commits on every merge to `main`, decides the
version, and pushes the tag this workflow is keyed on — so releasing the
APK means merging a `fix:` or `feat:` commit, not running `git tag`. The
`workflow_dispatch` path below remains, for rebuilding a tag that already
exists.
**Tags are not pushed by hand any more, but releasing is a decision.**
`.gitea/workflows/release.yml` reads the Conventional Commits since the
last tag, decides the version, and pushes the tag this workflow is keyed
on — so releasing the APK means **running that workflow**, not running
`git tag`. It has no push trigger: merging a `fix:` or `feat:` used to
be enough and produced a version per merged PR (issue #115). Run it with
`dry_run` first to see what the accumulated commits would ship. The
`workflow_dispatch` path below is a different thing and remains, for
rebuilding a tag that already exists.
**A prerelease tag is skipped here**, cleanly. This workflow triggers on
`v*`, which matches `v0.4.0-beta.1`, and it is the one where that would
hurt most: the APK goes to the credential-free generic registry that
Obtainium polls, and the `versionCode` maths below splits on dots — it
would read `1` out of `0-beta` and produce a wrong number rather than a
failed build.
## The 1.x installs cannot be upgraded to 0.0.x
+57 -23
View File
@@ -1,6 +1,12 @@
import { test, expect } from '../support/fixtures.js';
import type { Page } from '@playwright/test';
/**
* How far the scroll test scrolls. One constant, because the guard and
* the assertion have to agree about it they did not, which is #133.
*/
const SCROLL_TARGET = 80;
/**
* Plan 007 phase 5: expanding an album shows its tracks.
*
@@ -104,20 +110,30 @@ test.describe('the album dropdown', () => {
await app.setViewportSize({ width: 900, height: 600 });
try {
await expect.poll(() => scrollRange(app)).toMatchObject({
scrollable: true,
overflowY: 'auto',
});
// The container has to be a scroller at all, which is the thing
// the defect behind this spec broke and is a property rather
// than a moment.
await expect
.poll(() => scrollRange(app))
.toMatchObject({ overflowY: 'auto' });
await app.evaluate(() => {
const sc = document
.querySelector('cover-grid')
?.shadowRoot?.querySelector('.grid-scroll-container');
if (sc) sc.scrollTop = 80;
});
expect(await scrollTop(app)).toBe(80);
// **Scrolling it and reading it back are one round trip** (#151).
//
// #133 made the guard ask for the range this needs rather than
// for "scrollable at all", which was necessary and is not
// sufficient: a guard and the write it guards are separate
// `evaluate` calls, so the grid can satisfy the range and settle
// out of it before the write lands. It still does — observed as
// `Expected 80, Received 10` in the second of three consecutive
// full-suite runs, with the spec green alone on the same app
// straight afterwards.
//
// Polling harder cannot close a window between two moments; only
// removing the window can. So the probe sets `scrollTop` and
// returns what it reads back, in one page-side call, and the
// poll retries *that* — which also means the assertion is about
// what the grid did rather than about what it was ready to do.
await expect.poll(() => scrollTo(app, SCROLL_TARGET)).toBe(SCROLL_TARGET);
// And the dropdown it opens is on screen, wherever the manager
// decides that leaves the scroll. It is *not* "the position is
@@ -248,27 +264,45 @@ async function closeDropdown(app: Page): Promise<void> {
});
}
/** Whether the grid can scroll at all, which decides if a probe can move. */
/** Whether the grid is a scroller at all, which is what the bug broke. */
async function scrollRange(app: Page) {
return app.evaluate(() => {
return app.evaluate((target) => {
const sc = document
.querySelector('cover-grid')
?.shadowRoot?.querySelector('.grid-scroll-container');
return {
scrollable: !!sc && sc.scrollHeight > sc.clientHeight + 40,
// Reported for the failure message rather than waited on: `room`
// was the guard #133 strengthened, and #151 is that a guard in
// its own round trip cannot speak for the write in the next one.
// `scrollTo` below is the assertion now; this says *why* it did
// not reach the target when it does not.
room: !!sc && sc.scrollHeight - sc.clientHeight >= target,
overflowY: sc ? getComputedStyle(sc).overflowY : '',
};
});
}, SCROLL_TARGET);
}
async function scrollTop(app: Page): Promise<number> {
return app.evaluate(
() =>
document
/**
* Scroll the grid and report where it actually landed, in one call.
*
* The whole point is that the set and the read share a moment: a
* `scrollTop` write is clamped to the range *at the instant it lands*,
* so reading it back in a second round trip asks a container that may
* have re-laid out in between.
*/
async function scrollTo(app: Page, target: number): Promise<number> {
return app.evaluate((to) => {
const sc = document
.querySelector('cover-grid')
?.shadowRoot?.querySelector('.grid-scroll-container')?.scrollTop ?? -1,
);
?.shadowRoot?.querySelector('.grid-scroll-container');
if (!sc) return -1;
sc.scrollTop = to;
return sc.scrollTop;
}, target);
}
/** Whether the open dropdown is inside the scroll container's viewport. */
+244
View File
@@ -15,12 +15,49 @@ import { test, expect } from '../support/fixtures.js';
*
* What it cannot answer is whether Android's *gesture* reaches the
* WebView, which is between the OS and the scaffold.
*
* **And `data-active-view` is not the behaviour.** Every assertion here
* used to be that attribute, which the shell sets on every path
* including `_isBack` so this file was green throughout #72, in
* which both navs highlighted the view the user had just *left*. The
* shell's own bookkeeping was the one thing that was already right;
* what a person sees is `aria-current`, and that is asserted below as
* well. This is the same trap `layout-overflow.spec.ts` set for #69: a
* spec named for the behaviour, measuring the plumbing.
*/
type Page = import('@playwright/test').Page;
const activeView = (page: Page) =>
page.getByTestId('main-content');
/** A common phone, where the bottom bar is the primary navigation. */
const PHONE = { width: 390, height: 844 };
/**
* The nav item for a destination, in whichever navigation is on screen.
*
* Both navs carry a button named `Albums`, and only one of them is ever
* in the accessibility tree the other is `display: none` so the
* role query resolves to the one the user can see at this viewport.
* That is the point: the highlight has to be right in both, and #72 was
* two different-looking symptoms of one cause.
*/
const navItem = (page: Page, label: string) =>
page.getByRole('button', { name: label, exact: true });
/**
* `aria-current="page"` is the accessible fact and the assertion worth
* making; `.active` is a class and could be restyled without breaking
* anything real.
*/
async function expectHighlighted(page: Page, label: string): Promise<void> {
await expect(navItem(page, label)).toHaveAttribute('aria-current', 'page');
}
async function expectNotHighlighted(page: Page, label: string): Promise<void> {
await expect(navItem(page, label)).toHaveAttribute('aria-current', 'false');
}
/**
* Open an artist's detail view, which is the deepest ordinary route.
*
@@ -42,6 +79,114 @@ async function openAnArtist(app: Page): Promise<void> {
);
}
/**
* The global back/forward control (#6).
*
* It is desktop chrome hidden below 900px, where the sidebar has
* already given up its labels so these set a desktop viewport
* explicitly rather than trusting the runner's default.
*/
const DESKTOP = { width: 1280, height: 800 };
const backButton = (page: Page) =>
page.locator('nav-history').getByRole('button', { name: 'Back' });
const forwardButton = (page: Page) =>
page.locator('nav-history').getByRole('button', { name: 'Forward' });
test.describe('global back and forward', () => {
test.beforeEach(async ({ app }) => {
await app.setViewportSize(DESKTOP);
});
test('offers nothing at launch, in either direction', async ({ app }) => {
// The launch entry is *replaced*, not pushed, so there is nothing
// of ours behind it — and a Back button that is live at the root
// is a press that does nothing on desktop and, on Android, the
// press that should have exited the app (#142). This assertion is
// what pins that: it failed before the launch navigation stopped
// recording two entries.
await expect(backButton(app)).toBeDisabled();
await expect(forwardButton(app)).toBeDisabled();
});
test('walks the history in both directions, and says which are available', async ({
app,
}) => {
await app.getByTestId('nav-albums').click();
await expect(activeView(app)).toHaveAttribute('data-active-view', 'albums');
await expect(backButton(app)).toBeEnabled();
await expect(forwardButton(app)).toBeDisabled();
await app.getByTestId('nav-tracks').click();
await expect(activeView(app)).toHaveAttribute('data-active-view', 'tracks');
await backButton(app).click();
await expect(activeView(app)).toHaveAttribute('data-active-view', 'albums');
// Standing in the middle of the list: both directions live, which
// is the state a single depth counter cannot express.
await expect(backButton(app)).toBeEnabled();
await expect(forwardButton(app)).toBeEnabled();
await forwardButton(app).click();
await expect(activeView(app)).toHaveAttribute('data-active-view', 'tracks');
await expect(forwardButton(app)).toBeDisabled();
});
test('reaches the detail view a tab click left behind', async ({ app }) => {
// The report, exactly: the album is one entry away the whole time,
// and before this control the only way back to it was a button
// that had gone off screen with the view it belonged to.
await app.getByTestId('nav-artists').click();
await openAnArtist(app);
await app.getByTestId('nav-tracks').click();
await expect(activeView(app)).toHaveAttribute('data-active-view', 'tracks');
await backButton(app).click();
await expect(activeView(app)).toHaveAttribute(
'data-active-view',
'explore-artist-details',
);
});
test('drops the forward list when the user navigates from the middle', async ({
app,
}) => {
await app.getByTestId('nav-albums').click();
await app.getByTestId('nav-tracks').click();
await backButton(app).click();
await expect(forwardButton(app)).toBeEnabled();
// A browser truncates here, and so does this: what was ahead is no
// longer reachable, and a Forward button still offering it would
// be pointing at an entry that has been overwritten.
await app.getByTestId('nav-genres').click();
await expect(activeView(app)).toHaveAttribute('data-active-view', 'genres');
await expect(forwardButton(app)).toBeDisabled();
await expect(backButton(app)).toBeEnabled();
});
test('is absent below the desktop band, where nothing needs it', async ({
app,
}) => {
// Alt+Left/Right survive at every width, the detail views keep
// their own back buttons and the phone has the platform's gesture
// — so this is a control standing down, not an action becoming
// unreachable. It is hidden at 899 because the top bar is what
// runs out of room first below 900 (#143).
await app.setViewportSize({ width: 899, height: 600 });
await expect(app.locator('nav-history')).toBeHidden();
await app.setViewportSize({ width: 390, height: 844 });
await expect(app.locator('nav-history')).toBeHidden();
});
});
test.describe('the back gesture', () => {
test('leaves a detail view for the view it was opened from', async ({
app,
@@ -71,6 +216,105 @@ test.describe('the back gesture', () => {
await expect(activeView(app)).toHaveAttribute('data-active-view', 'albums');
});
test('leaves the nav highlighting the view it landed on, not the one it left', async ({
app,
}) => {
await app.getByTestId('nav-albums').click();
await expectHighlighted(app, 'Albums');
await app.getByTestId('nav-tracks').click();
await expectHighlighted(app, 'Tracks');
await app.goBack();
// #72, and the half of it the report did not describe: this is
// desktop, and before the shell published the active view *both*
// navs stayed on Tracks. An absent highlight reads as a glitch; a
// confident wrong one is worse, and any back across two primary
// views produced it.
await expect(activeView(app)).toHaveAttribute('data-active-view', 'albums');
await expectHighlighted(app, 'Albums');
await expectNotHighlighted(app, 'Tracks');
});
test('keeps the parent destination lit while a detail view is open', async ({
app,
}) => {
await app.getByTestId('nav-artists').click();
await expectHighlighted(app, 'Artists');
await openAnArtist(app);
// A detail view is not a destination in either nav, and the user is
// still inside Artists. `app-sidebar` did this by accident -- it
// guarded on its own item list, so an unmatched name left the
// highlight alone -- and that accident is why the sidebar looked
// right on a detail view while the tab bar lit nothing. This test
// therefore passed before the fix and is here to keep the rule from
// being lost while the others are made to pass; the *tab bar's*
// half of it is the phone test below, which did not.
await expectHighlighted(app, 'Artists');
await app.goBack();
await expectHighlighted(app, 'Artists');
});
test('the tab bar survives the same journey on a phone', async ({ app }) => {
await app.setViewportSize(PHONE);
// The reported shape: Albums, open an album, press back. The tab
// bar had a highlight, then no highlight at all, and never got it
// back — `bottom-nav` took the detail view's name, matched it
// against no tab, and lit nothing.
await navItem(app, 'Albums').click();
await expectHighlighted(app, 'Albums');
await app.locator('cover-grid').getByText('Glass Harbour').first().click();
await expect(activeView(app)).toHaveAttribute(
'data-active-view',
'explore-album-details',
);
await expectHighlighted(app, 'Albums');
await app.goBack();
await expect(activeView(app)).toHaveAttribute('data-active-view', 'albums');
await expectHighlighted(app, 'Albums');
});
test('the drawer sidebar opens on the page you are standing on', async ({
app,
}) => {
await app.setViewportSize(PHONE);
await navItem(app, 'Tracks').click();
await expectHighlighted(app, 'Tracks');
// A third symptom of the same cause, found while measuring #72 and
// not in the report: `bottom-nav` mounts its `<app-sidebar>` when
// the drawer opens, so that copy had heard no `navigate` at all and
// showed its own default — Home, from any page in the app. An event
// has no answer for a listener that was not there; a store does.
await navItem(app, 'More').click();
// The element carrying the testid is the `wa-drawer` host, which
// always reports hidden -- what is visible is the `<dialog>` in its
// shadow root -- so the drawer being open is asserted of the
// sidebar it holds rather than of itself.
const drawer = app.getByTestId('nav-drawer');
await expect(drawer.locator('app-sidebar')).toBeVisible();
await expect(drawer.getByTestId('nav-tracks')).toHaveAttribute(
'aria-current',
'page',
);
await expect(drawer.getByTestId('nav-home')).toHaveAttribute(
'aria-current',
'false',
);
});
test('an in-app back button consumes exactly one entry', async ({ app }) => {
await app.getByTestId('nav-tracks').click();
await openAnArtist(app);
+147
View File
@@ -0,0 +1,147 @@
import { test, expect, callBinding, NO_QUEUE_SOURCE } from '../support/fixtures.js';
import type { Page } from '@playwright/test';
/**
* The bottom bar's two promises (#23, #42): the transport is centred in
* the window, and the volume is a slider rather than a popup.
*
* **"Centred" is measured against the window, not against the space
* left over**, which is the whole of #23. The bar was
* `320px 1fr auto`, so the transport sat in the middle of what the
* metadata and the queue button did not use its centre was ~140px
* right of the window's at every size, which reads as an alignment
* mistake rather than as a layout choice.
*
* The mechanism is that the outer two columns are the same width, so
* this asserts the *outcome* (centre lines up) rather than the CSS. A
* spec that checked `grid-template-columns` would pass on any build
* that kept the declaration and broke the result.
*/
/** Where the transport sits, against where the window's centre is. */
const geometry = (app: Page) =>
app.evaluate(() => {
const bar = document.querySelector<HTMLElement>('.bottom-bar')!;
const player = document.querySelector<HTMLElement>('audio-player')!;
const b = bar.getBoundingClientRect();
const p = player.getBoundingClientRect();
const seek = player.shadowRoot
?.querySelector('seek-bar')
?.shadowRoot?.querySelector('wa-slider');
return {
offset: Math.round(p.left + p.width / 2 - (b.left + b.width / 2)),
barHeight: Math.round(b.height),
seekWidth: seek ? Math.round(seek.getBoundingClientRect().width) : -1,
};
});
/** Something has to be playing before the transport draws a seek bar. */
async function play(app: Page): Promise<void> {
const paths = await app.evaluate(async () => {
const tracks = (await window.__yjEvents.call(
'library.Library.GetTracks',
[0],
10_000,
)) as { FilePath: string }[];
return tracks.slice(0, 3).map((t) => t.FilePath);
});
await callBinding(app, 'queue.Queue.SetQueue', [
paths,
0,
false,
NO_QUEUE_SOURCE,
]);
await callBinding(app, 'queue.Queue.Play');
await expect(app.getByTestId('now-playing-title')).not.toBeEmpty();
}
test.describe('the bottom bar', () => {
test.afterEach(async ({ app }) => {
await callBinding(app, 'queue.Queue.Clear').catch(() => {
/* already empty */
});
await app.setViewportSize({ width: 1440, height: 900 });
});
/**
* Four widths, because a centring bug is a function of width: the old
* layout was off by half the difference between the two outer
* columns, so it was wrong by a different amount at each one and
* exactly right at none.
*/
for (const width of [800, 900, 1100, 1440]) {
test(`centres the transport in the window at ${width}px`, async ({
app,
}) => {
await app.setViewportSize({ width, height: 700 });
await play(app);
await expect.poll(() => geometry(app).then((g) => g.offset)).toBe(0);
});
}
/**
* The seek bar is what the centring is *paid for* with, so it is
* asserted rather than assumed.
*
* Reserving the metadata's full width on both sides centres the
* transport perfectly and squeezes the control you drag: measured
* during this work at **61px of track at 800px**, against 257 before
* the change. The side columns are capped at a quarter of the bar for
* that reason, and this is the number that says so 246 at 800px,
* which is parity with the uncentred layout.
*/
test('does not pay for the centring with the seek bar', async ({ app }) => {
await app.setViewportSize({ width: 800, height: 700 });
await play(app);
await expect
.poll(() => geometry(app).then((g) => g.seekWidth))
.toBeGreaterThan(200);
});
/**
* #42: the slider is simply there. Three gestures click open, drag,
* click closed is what a bottom bar has room not to ask for.
*/
test('shows the volume slider without a click', async ({ app }) => {
await app.setViewportSize({ width: 1440, height: 900 });
const volume = app.locator('.bottom-bar volume-control');
await expect(volume).toBeVisible();
await expect(volume.locator('wa-slider')).toBeVisible();
});
/**
* And the inline icon is the mute toggle, because with the slider
* beside it there is nothing left to disclose. The name follows the
* action rather than the state for the same reason.
*/
test('names the inline icon after what it does', async ({ app }) => {
await app.setViewportSize({ width: 1440, height: 900 });
await expect(
app.locator('.bottom-bar volume-control').getByRole('button', {
name: 'Mute',
}),
).toBeVisible();
});
/**
* The bar is a fixed 4em row and the transport sits in it. A slider
* with a label grows `#slider` by 8px unless `wa-slider-label.css`
* suppresses it, which moved the whole bar the last time so the
* height is pinned here rather than left to a screenshot.
*/
test('stays 4em tall', async ({ app }) => {
await app.setViewportSize({ width: 1440, height: 900 });
await play(app);
await expect.poll(() => geometry(app).then((g) => g.barHeight)).toBe(64);
});
});
+4 -9
View File
@@ -29,18 +29,13 @@ test.describe('a control says what it controls', () => {
});
test('the volume slider is announced as Volume', async ({ app }) => {
// The popup renders no slider at all while closed, the same way the
// queue panel renders no list — so this has to open it first.
await app.getByRole('button', { name: /volume/i }).click();
// No disclosure to open first, and no state to put back afterwards:
// #42 made the slider inline, so it is simply there. The assertion
// is unchanged — the *name* is the subject here, and the route to
// the control got shorter rather than different.
await expect(
app.getByRole('slider', { name: 'Volume' }),
).toBeVisible();
// Leave the transport as it was found: the specs share one page in
// file order, and an open popup covers the buttons beneath it.
await app.keyboard.press('Escape');
await app.locator('body').click({ position: { x: 5, y: 5 } });
});
test('naming the slider did not move the transport', async ({ app }) => {
+8 -1
View File
@@ -36,9 +36,16 @@ test.describe('a failed binding says so', () => {
// Libraries is the one section that starts expanded (H-22), so ask
// the disclosure what state it is in rather than assuming one — a
// blind click used to expand it and now collapses it.
//
// By role and name, not by `.header`: since #27 the section also
// contains a `job-panel`, and an open `job-details-drawer` inside
// it carries the same class. That only bites once a job exists,
// which is why it showed up on the *second* engine of a CI run and
// not the first.
const disclosure = page
.locator('config-section[heading="Libraries"]')
.locator('.header');
.getByRole('button', { name: 'Libraries' })
.first();
if ((await disclosure.getAttribute('aria-expanded')) === 'false') {
await disclosure.click();
+318
View File
@@ -0,0 +1,318 @@
import { test, expect } from '../support/fixtures.js';
/**
* #69: the Playlists header's buttons could not be reached.
*
* Three text buttons Import (91px), New Playlist (122px), New Smart
* Playlist (162px), 390px in total inside a header that gets 700px at
* 900×600. "New Smart Playlist" rendered **114 of its 162px**, and at
* phone width the Android report was the plain version of it: you
* cannot scroll to reach them, and scrolling is not how page controls
* should be exposed anyway.
*
* **`layout-overflow.spec.ts` passes on the broken build**, which is why
* this file exists rather than a case being added there. That spec
* asserts the *shell* needs no sideways scrolling; clipping *inside* a
* component is invisible to it. So the measurement here is per-button
* and per-header, against the widths the app promises.
*
* Plan 018's size matrix is the promise being kept: **no action is ever
* unreachable at any supported size.** These are its three bands.
*/
const VIEWPORTS = [
// Desktop's worst case, and not the enforced minimum: the sidebar
// collapses to icons *below* 900, so the content area is 843px at 899
// and 700px at 900. Testing "the minimum" and stopping misses it.
{ name: '900×600 (widest sidebar, narrowest content)', width: 900, height: 600 },
{ name: '800×600 (the enforced minimum)', width: 800, height: 600 },
{ name: '390×780 (phone)', width: 390, height: 780 },
// WCAG 1.4.10's reflow target, which plan 018 promises the app fits.
{ name: '320×600 (400% zoom)', width: 320, height: 600 },
];
/** Every action the Playlists header can offer, in declared order. */
const ACTIONS = ['Import', 'New Playlist', 'New Smart Playlist'];
/**
* What the header is actually rendering, measured rather than inferred.
*
* A shadow query is the wrong tool for *asserting* that is what
* `getByRole` below is for but it is the right one for a measurement,
* because the number this issue is about (a button 48px wider than the
* box holding it) is not in the accessibility tree at all.
*/
const headerFit = (page: import('@playwright/test').Page) =>
page.evaluate(() => {
const root = document
.querySelector('[data-testid="main-content"] playlist-view')
?.shadowRoot?.querySelector('page-header')?.shadowRoot;
if (!root) return null;
const header = root.querySelector<HTMLElement>('.page-header')!;
const box = header.getBoundingClientRect();
const title = root.querySelector<HTMLElement>('h1')!;
const clipped = [
...root.querySelectorAll<HTMLElement>('.action, .more-button'),
]
.filter((b) => !b.hidden)
.filter((b) => {
const r = b.getBoundingClientRect();
return r.right > box.right + 1 || r.left < box.left - 1;
})
.map((b) => b.dataset['actionId'] ?? 'more');
return {
overflow: header.scrollWidth - header.clientWidth,
clipped,
titleTruncated: title.scrollWidth > title.clientWidth + 1,
buttons: [...root.querySelectorAll<HTMLElement>('.action')]
.filter((b) => !b.hidden)
.map((b) => b.textContent?.trim() ?? ''),
menu: [
...root.querySelectorAll('#page-header-overflow wa-dropdown-item'),
].map((i) => i.textContent?.trim() ?? ''),
};
});
test.describe('the page header never clips an action', () => {
test.beforeEach(async ({ app }) => {
await app.getByTestId('nav-playlists').click();
await expect(app.getByTestId('main-content')).toHaveAttribute(
'data-active-view',
'playlists',
);
});
test.afterEach(async ({ app }) => {
await app.setViewportSize({ width: 1280, height: 800 });
});
for (const vp of VIEWPORTS) {
test(`every action is reachable at ${vp.name}`, async ({ app }) => {
await app.setViewportSize({ width: vp.width, height: vp.height });
// Polled: the fit is decided by a ResizeObserver, so it settles a
// frame after the resize rather than with it.
await expect
.poll(async () => (await headerFit(app))?.clipped)
.toEqual([]);
const fit = (await headerFit(app))!;
expect(fit.overflow).toBeLessThanOrEqual(0);
// Between them, buttons and menu account for all three. This is
// the assertion the issue asks for: not "it fits" but "nothing
// was dropped to make it fit".
expect([...fit.buttons, ...fit.menu].sort()).toEqual([...ACTIONS].sort());
});
}
/**
* The title gives way before an action does.
*
* Once the heading can ellipsis it absorbs the pressure, and
* `scrollWidth` then reports a header that fits perfectly while the
* heading reads "Playlis…" this issue's own failure mode moved from
* the button to the title, and invisible to exactly the measurement
* that missed it the first time. At the desktop sizes there is always
* an action to collapse instead.
*/
test('does not truncate the heading to keep a button', async ({ app }) => {
for (const vp of VIEWPORTS.slice(0, 2)) {
await app.setViewportSize({ width: vp.width, height: vp.height });
await expect
.poll(async () => (await headerFit(app))?.titleTruncated)
.toBe(false);
}
});
/**
* Asserted through the accessibility tree, never a shadow query. An
* overflow menu is exactly the shape that grows a nameless control,
* and this repo has shipped one four times most recently the
* queue's own close button.
*/
test('the overflow is a named control that opens a named menu', async ({
app,
}) => {
await app.setViewportSize({ width: 900, height: 600 });
const more = app.getByRole('button', { name: 'More actions' });
await expect(more).toBeVisible();
await expect(more).toHaveAttribute('aria-expanded', 'false');
await more.click();
await expect(more).toHaveAttribute('aria-expanded', 'true');
const menu = app.getByRole('menu', { name: 'More actions' });
await expect(menu).toBeVisible();
// Collapsed at 900×600: Import (lowest priority) and New Smart
// Playlist. New Playlist stays a button because it is the drop
// target, and a closed menu cannot be one.
await expect(
menu.getByRole('menuitem', { name: 'Import' }),
).toBeVisible();
await expect(
app.getByRole('button', { name: 'New Playlist', exact: true }),
).toBeVisible();
});
/**
* The phone case is the original report. Every action is in the menu
* at 390px, and the menu is reachable by name which is the whole of
* "these need to be reachable in a sensible way".
*/
test('offers every action from the menu on a phone', async ({ app }) => {
await app.setViewportSize({ width: 390, height: 780 });
const more = app.getByRole('button', { name: 'More actions' });
await expect(more).toBeVisible();
await more.click();
const menu = app.getByRole('menu', { name: 'More actions' });
for (const label of ACTIONS) {
await expect(menu.getByRole('menuitem', { name: label })).toBeVisible();
}
});
/**
* Escape closes it and focus goes back to the trigger `MenuKeyboard`
* is shared with every other menu in the app precisely so this is not
* a second keyboard model, and this is what proves it was wired up
* rather than merely imported.
*/
test('takes the keyboard, and gives it back', async ({ app }) => {
await app.setViewportSize({ width: 900, height: 600 });
const more = app.getByRole('button', { name: 'More actions' });
await more.click();
const menu = app.getByRole('menu', { name: 'More actions' });
await expect(menu).toBeVisible();
// The first item takes focus on open. `wa-dropdown-item` sets its
// own role in its own first update, so this is polled rather than
// read: a query at the host's updateComplete finds nothing, which
// reads exactly like a menu that refused to take focus.
await expect
.poll(async () =>
app.evaluate(() => {
// Stops where `MenuKeyboard`'s own `deepActiveElement` stops:
// on the *host* whose shadow root has no active element.
// Descending unconditionally lands inside the focused
// `wa-dropdown-item`'s own shadow root, where nothing is
// focused — which reads exactly like a menu that refused the
// keyboard, on a build where it did not.
let el = document.activeElement;
while (el?.shadowRoot?.activeElement) el = el.shadowRoot.activeElement;
return el?.textContent?.trim() ?? null;
}),
)
.toBe('Import');
await app.keyboard.press('Escape');
await expect(more).toHaveAttribute('aria-expanded', 'false');
await expect(more).toBeFocused();
});
/**
* New Playlist is a drop target, and declaring it as data must not
* take that away which is why a `PageAction` carries the drop
* handlers rather than the header owning a notion of dropping.
*
* Nothing covered this before, in either tier, and it is the one
* behaviour the migration could plausibly have destroyed silently:
* dragging still *looks* fine against a button that no longer
* accepts anything.
*/
test('New Playlist still accepts a dropped track', async ({ app }) => {
await app.setViewportSize({ width: 1280, height: 800 });
const button = app.getByRole('button', {
name: 'New Playlist',
exact: true,
});
await expect(button).toBeVisible();
const result = await app.evaluate(async () => {
const view = document.querySelector(
'[data-testid="main-content"] playlist-view',
)!;
const target = view.shadowRoot!
.querySelector('page-header')!
.shadowRoot!.querySelector('[data-testid="page-action-new-playlist"]')!;
const data = new DataTransfer();
data.setData(
'application/x-yj-tracks',
JSON.stringify({ filePaths: ['/tmp/dropped.mp3'] }),
);
const fire = (type: string) =>
target.dispatchEvent(
new DragEvent(type, {
bubbles: true,
cancelable: true,
dataTransfer: data,
}),
);
fire('dragover');
await new Promise((r) => setTimeout(r, 50));
// The affordance is the host's state reaching the header's
// button, which is the half a plain handler call would not prove.
const highlighted = target.classList.contains('drag-over');
fire('drop');
await new Promise((r) => setTimeout(r, 200));
return {
highlighted,
opened: view.shadowRoot!.querySelector('.create-form') !== null,
};
});
expect(result).toEqual({ highlighted: true, opened: true });
// Leave the view as it was found.
await app.keyboard.press('Escape');
});
/**
* An action given back when the window widens again. The collapsed
* set is a function of the current width and not of how it got there
* a rule that only ever *added* to it would never widen.
*/
test('gives the buttons back when the window grows', async ({ app }) => {
await app.setViewportSize({ width: 390, height: 780 });
await expect.poll(async () => (await headerFit(app))?.buttons).toEqual([]);
await app.setViewportSize({ width: 1440, height: 900 });
await expect
.poll(async () => (await headerFit(app))?.buttons)
.toEqual(ACTIONS);
await expect.poll(async () => (await headerFit(app))?.menu).toEqual([]);
});
});
+124
View File
@@ -0,0 +1,124 @@
import { test, expect, waitForEvent } from '../support/fixtures.js';
/**
* The Jobs tab folded into the places the work is started (#27).
*
* The assertion worth making is not that the tab is gone that is one
* line of a table but that **nothing became unreachable when it
* went**. Scanning is the case that mattered: the per-library controls
* lived only on that page, and the tab's own comment says they had been
* moved there out of Settings in the first place.
*
* `#24` wrote down one sentence covering all three size bands: *no
* action is ever unreachable at any supported size*. Deleting a
* destination is exactly the change that can quietly break it.
*/
type Page = import('@playwright/test').Page;
const section = (page: Page, heading: string) =>
page.locator(`config-page config-section[heading="${heading}"]`);
async function openSettings(page: Page, heading: string): Promise<void> {
await page.getByTestId('nav-settings').click();
// The section's own disclosure, by role rather than by `.header`:
// an open Libraries section also contains `job-details-drawer`,
// whose own header matches that class and makes it ambiguous.
const header = section(page, heading)
.getByRole('button', { name: heading })
.first();
await expect(header).toBeVisible();
if ((await header.getAttribute('aria-expanded')) === 'false') {
await header.click();
}
await expect(header).toHaveAttribute('aria-expanded', 'true');
}
test.describe('background jobs live where the work is started', () => {
test('the Jobs destination is gone', async ({ app }) => {
await expect(app.getByTestId('nav-jobs')).toHaveCount(0);
// And it is not offered as a launch page either, which is the copy
// of the destination list that is easiest to forget.
await openSettings(app, 'General');
const options = await section(app, 'General')
.locator('select')
.first()
.locator('option')
.allTextContents();
expect(options).not.toContain('Jobs');
});
/**
* Scanning is startable from Settings Libraries, and the job that
* results is visible there with its controls. One assertion covers
* both halves, because a Scan All that started nothing would leave
* the panel empty and read exactly like a panel that does not work.
*/
test('a scan is started and watched in Settings', async ({ app }) => {
await openSettings(app, 'Libraries');
const libraries = section(app, 'Libraries');
await libraries.getByRole('button', { name: 'Scan All' }).click();
await waitForEvent(app, 'LibraryScanComplete', { timeoutMs: 60_000 });
const panel = libraries.locator('job-panel');
await expect(panel.locator('job-row')).toHaveCount(1, { timeout: 10_000 });
// The generic affordances are the point of the panel: the tier
// list and the progress rings the other surfaces already had
// cannot open a log.
await expect(
panel.getByRole('button', { name: /^Details/ }),
).toBeVisible();
});
/** A finished job dismisses from where it is shown. */
test('a finished scan can be dismissed in place', async ({ app }) => {
await openSettings(app, 'Libraries');
const panel = section(app, 'Libraries').locator('job-panel');
const dismiss = panel.getByRole('button', { name: /^Dismiss/ }).first();
await expect(dismiss).toBeVisible({ timeout: 10_000 });
await dismiss.click();
await expect(panel.locator('job-row')).toHaveCount(0);
});
/**
* Full rescan is destructive and asks first. It is asserted at the
* dialog rather than through it running one against the seeded app
* would delete the library the rest of the suite reads.
*/
test('Full Rescan asks before it does anything', async ({ app }) => {
await openSettings(app, 'Libraries');
await section(app, 'Libraries')
.getByRole('button', { name: 'Full Rescan' })
.click();
const dialog = app.getByRole('dialog', { name: 'Full rescan' });
await expect(dialog).toBeVisible();
// The message is read off the *host*, not the dialog: a wa-dialog
// keeps its slotted content in the host's shadow root, so
// `toContainText` on the dialog itself sees only Web Awesome's
// chrome.
await expect(app.locator('confirm-dialog')).toContainText(
'deletes all library data',
);
await app.getByRole('button', { name: 'Cancel' }).click();
await expect(dialog).toBeHidden();
});
});
+204
View File
@@ -0,0 +1,204 @@
import { test, expect } from '../support/fixtures.js';
/**
* #62. On a phone, background work is shown in the notification band
* and the header indicator stands down.
*
* The report was that the indicator's popover "is obscured by other UI,
* so it cannot be read while jobs run". Worth saying plainly: **that
* symptom did not reproduce in this tier.** Measured at the device's
* own 424x439 viewport, the popover was neither clipped nor covered
* `elementFromPoint` at its centre returned the indicator at every
* width tried. So this is not a fix for a stacking bug, and a spec
* asserting one would be a spec asserting something that was never
* true here.
*
* What is true regardless, and is what these assert:
*
* - a popover is a **disclosure**, and it is anchored to a bar 3.25em
* tall on a screen 439px tall. Background work is the one thing a
* phone should not make you open something to see.
* - #57 deletes that bar and is *blocked on this issue*, because the
* indicator needs somewhere else to live first. Somewhere else is
* the band, and the test that matters for #57 is that the bar no
* longer holds the indicator at all.
*
* This is the media-query tier by necessity: a query inside a shadow
* root is answered by the viewport, and `notification-host` decides
* whether the panel *exists* from `matchMedia`. The component tier
* cannot set either.
*/
type Page = import('@playwright/test').Page;
const JOBS = [
{
id: 'phone:scan',
kind: 'library-scan',
state: 'running',
title: 'Scanning Music',
current: 40,
total: 100,
caps: { pausable: true, cancellable: true },
},
{
id: 'phone:idx',
kind: 'index-build',
state: 'running',
title: 'Building the search index',
current: 2,
total: 9,
caps: { pausable: true, cancellable: true },
},
];
/** The panel the band renders. Playwright's CSS engine pierces open
* shadow roots, which is what keeps this one line. */
const bandPanel = (page: Page) => page.locator('job-band').locator('job-panel');
const PHONE = { width: 424, height: 439 };
const DESKTOP = { width: 1100, height: 800 };
test.describe('background jobs on a phone', () => {
test('are shown in the band, without opening anything', async ({
app,
testctl,
}) => {
await app.setViewportSize(PHONE);
await testctl.emit('JobsChanged', JOBS);
await expect(bandPanel(app)).toBeVisible();
// Both jobs, drawn by real `job-row`s -- asking the rows what they
// hold rather than reading the panel's text, which would pass
// whether or not a row rendered. Playwright's CSS engine pierces
// open shadow roots, which is what makes this one line;
// `querySelectorAll` does not, and stops at `job-panel`.
await expect(bandPanel(app).locator('job-row')).toHaveCount(2);
await expect(
bandPanel(app).locator('job-row').first(),
).toContainText('Scanning Music');
});
/**
* The #57 assertion. Not "the indicator is invisible" that could be
* true because the bar overflowed but that the shell's own rule
* puts it away at this width.
*/
test('leave the top bar, which is what #57 is waiting for', async ({
app,
testctl,
}) => {
await app.setViewportSize(PHONE);
await testctl.emit('JobsChanged', JOBS);
await expect(bandPanel(app)).toBeVisible();
await expect(app.locator('job-indicator')).toBeHidden();
});
/**
* The property the first attempt at this got wrong, so it is the one
* worth pinning: the band is **in the layout**, not over it.
*
* A fixed band reads fine in a screenshot and is unusable -- at
* 424x439 a compact panel is ~200px of a 439px screen and it covers
* what is under it. Four specs failed on that version, two
* phone-shell journeys and the header's action menu, because the
* panel was intercepting the taps. So: nothing of the app is
* underneath it, and the main panel starts below it.
*/
test('push the content down rather than covering it', async ({
app,
testctl,
}) => {
await app.setViewportSize(PHONE);
const before = await app
.getByTestId('main-content')
.evaluate((el) => el.getBoundingClientRect().top);
await testctl.emit('JobsChanged', JOBS);
await expect(bandPanel(app)).toBeVisible();
const after = await app.evaluate(() => {
const band = document.querySelector('job-band') as HTMLElement;
const main = document.querySelector(
'[data-testid="main-content"]',
) as HTMLElement;
const b = band.getBoundingClientRect();
const m = main.getBoundingClientRect();
// What the browser reports at the band's own centre. If this is
// anything but the band, the band is sitting on top of it.
const hit = document.elementFromPoint(
Math.round(b.x + b.width / 2),
Math.round(b.y + b.height / 2),
);
return {
mainTop: m.top,
bandBottom: b.bottom,
withinViewport: b.bottom <= window.innerHeight + 0.5,
hit: hit?.tagName.toLowerCase() ?? null,
};
});
expect({
pushed: after.mainTop > before,
mainClearsBand: after.mainTop >= after.bandBottom - 0.5,
withinViewport: after.withinViewport,
hit: after.hit,
}).toEqual({
pushed: true,
mainClearsBand: true,
withinViewport: true,
hit: 'job-band',
});
});
/**
* A running job repaints several times a second. The stack it sits
* beside is `role="status" aria-live="polite"`, and a progress bar
* inside a live region is a screen reader reading a number out over
* and over so the two are siblings in the band rather than one
* list, and this is what says so.
*/
test('are not inside the live region they sit beside', async ({
app,
testctl,
}) => {
await app.setViewportSize(PHONE);
await testctl.emit('JobsChanged', JOBS);
await expect(bandPanel(app)).toBeVisible();
const insideLiveRegion = await app.evaluate(() => {
const band = document.querySelector('job-band');
// Neither the band itself nor anything it is nested in may be a
// live region -- `closest` answers both at once.
return !!band?.closest('[aria-live]') || band?.hasAttribute('aria-live');
});
expect(insideLiveRegion).toBe(false);
});
/**
* `bottom-nav` rendering its duplicate `<app-sidebar>` unconditionally
* broke 30 specs with "resolved to 2 elements" on a viewport where it
* was not even visible. Settings already holds four `job-panel`s, so
* a fifth that answers for *every* kind is the same trap which is
* why the band decides from `matchMedia` whether the element exists
* rather than hiding it with CSS.
*/
test('do not leave a second panel behind on a desktop', async ({
app,
testctl,
}) => {
await app.setViewportSize(DESKTOP);
await testctl.emit('JobsChanged', JOBS);
await expect(app.locator('job-indicator')).toBeVisible();
await expect(bandPanel(app)).toHaveCount(0);
});
});
+58 -15
View File
@@ -26,7 +26,21 @@ const MIN_VIEWPORT = { width: 800, height: 600 };
const VIEWPORTS = [
{ name: '1440×900', width: 1440, height: 900 },
{ name: '1024×768', width: 1024, height: 768 },
// Not the minimum, and that is the point (#24). The sidebar collapses
// to icons *below* 900, so the main panel is 843px at 899 and 700px
// at 900 — the narrowest content area any desktop width produces is
// here, not at the enforced floor. A list that stopped at the minimum
// was missing its own worst case.
{ name: '900×600 (the widest sidebar, so the narrowest content)', width: 900, height: 600 },
{ name: `the minimum (${MIN_VIEWPORT.width}×${MIN_VIEWPORT.height})`, ...MIN_VIEWPORT },
// Below the enforced minimum on purpose, and for the reason 700×480
// is below it further down: a scaled display or a large system font
// lands the layout here without the window ever being dragged there,
// and 600 is the last width before the phone layout takes over. The
// *narrowest header* is a different question from the narrowest
// content area and has a different answer — this one (#143), where
// the bar was 611px inside 600 sitting still.
{ name: '600×600 (the bottom of the Compact band)', width: 600, height: 600 },
];
/**
@@ -87,9 +101,10 @@ test.describe('the app fits in its own window', () => {
)
.toBe(true);
// Settings and Jobs are the two that were unreachable: they are
// last in the nav, and the pane used to clip rather than scroll.
for (const view of ['jobs', 'settings'] as const) {
// Settings is the one that was unreachable: it is last in the nav,
// and the pane used to clip rather than scroll. (Jobs was the other
// half of this until #27 folded it into Settings.)
for (const view of ['explore', 'settings'] as const) {
const item = app.getByTestId(`nav-${view}`);
await item.scrollIntoViewIfNeeded();
@@ -117,7 +132,16 @@ test.describe('the app fits in its own window', () => {
// be dragged here, but a scaled display or a large system font can
// still land the layout in it, and clipping the nav with no scroll
// is the failure that made Settings unreachable.
const reachable = await app.locator('app-sidebar').evaluate((el) => {
//
// The scroll and the measurement share one `evaluate` — #151's
// rule, which this already had — and the whole probe is polled,
// which it did not: a viewport change settles asynchronously, so a
// single attempt reads whatever the sidebar happened to be doing.
// The probe is safe to repeat because scrolling to the bottom twice
// is scrolling to the bottom.
await expect
.poll(() =>
app.locator('app-sidebar').evaluate((el) => {
const settings = el.shadowRoot?.querySelector<HTMLElement>(
'[data-testid="nav-settings"]',
);
@@ -129,15 +153,24 @@ test.describe('the app fits in its own window', () => {
const item = settings.getBoundingClientRect();
const pane = el.getBoundingClientRect();
return item.bottom <= Math.ceil(pane.bottom) && item.top >= Math.floor(pane.top);
});
expect(reachable).toBe(true);
return (
item.bottom <= Math.ceil(pane.bottom) &&
item.top >= Math.floor(pane.top)
);
}),
)
.toBe(true);
});
});
test.describe('the title block fits its bar', () => {
test('the hgroup stays inside the 4em top bar', async ({ app }) => {
// Stated rather than inherited from whatever ran last. Since #143
// the wordmark is visually hidden at widths where the bar cannot
// afford it, so a test about its *vertical* fit has to say which
// width it is asking about.
await app.setViewportSize({ width: 1440, height: 900 });
// The state a11y.29 landed in. The pair is flex-centred and a UA
// gives an `h1` a 0.67em top margin, so the block measured 67px
// inside 64 — pre-existing, and invisible until dropping the h3's
@@ -239,16 +272,26 @@ test.describe('the shell reflows rather than hiding what does not fit', () => {
test(`no scrollbar appears at ${vp.name}`, async ({ app }) => {
await app.setViewportSize({ width: vp.width, height: vp.height });
const excess = await app.evaluate(() => {
// Polled, for the reason the track-row test above is: since #143
// the top bar's fit is *measured* — a ResizeObserver decides what
// it can afford at this width — so a single read taken straight
// after the resize races the observer and reports the frame
// before it. Read once, this passed alone and failed in the full
// suite, which is the shape of a timing assumption rather than of
// a defect.
//
// The other half of the assertion: at every size this app
// promises, the fix costs nothing. A scrollbar that is always
// there is a worse answer than the clipping it replaced.
await expect
.poll(() =>
app.evaluate(() => {
const de = document.documentElement;
return de.scrollWidth - de.clientWidth;
});
// The other half: at every size this app promises, the fix costs
// nothing. A scrollbar that is always there is a worse answer
// than the clipping it replaced.
expect(excess).toBe(0);
}),
)
.toBe(0);
});
}
});
+1 -1
View File
@@ -28,7 +28,7 @@ const EXPECTED_MIN_ICONS = 5;
const VIEWS = [
'home', 'tracks', 'albums', 'artists', 'genres', 'playlists',
'explore', 'downloads', 'jobs', 'settings',
'explore', 'downloads', 'autotag', 'settings',
];
type IconState = { name: string; hasSvg: boolean };
+6 -4
View File
@@ -1,4 +1,4 @@
import { test, expect } from '../support/fixtures.js';
import { test, expect, navigateTo } from '../support/fixtures.js';
/**
* H-19: Playlists, Downloads, Jobs, Settings and Home had a page
@@ -21,7 +21,6 @@ const VIEWS: [string, string, boolean][] = [
['tracks', 'Tracks', true],
['explore', 'Explore', false],
['downloads', 'Downloads', false],
['jobs', 'Background jobs', false],
];
/** The header lives in the view's shadow root, inside its own. */
@@ -53,13 +52,16 @@ const TAGS: Record<string, string> = {
tracks: 'track-list',
explore: 'explore-view',
downloads: 'downloads-view',
jobs: 'jobs-view',
};
test.describe('every primary view says what it is', () => {
test('each one has the shared header, with a heading', async ({ app }) => {
// By event rather than by nav item: a destination is not
// guaranteed to have one any more (#25 — Downloads is absent
// without a download client), and every one of these is still a
// primary view with a header, which is what this spec is about.
for (const [view, heading, hasCount] of VIEWS) {
await app.getByTestId(`nav-${view}`).click();
await navigateTo(app, view);
await expect(app.getByTestId('main-content')).toHaveAttribute(
'data-active-view',
view,
+209
View File
@@ -0,0 +1,209 @@
import { test, expect } from '../support/fixtures.js';
import type { Page } from '@playwright/test';
/**
* The album page on a phone (#66).
*
* Two faults, and neither was visible to `layout-overflow.spec.ts`:
* that spec asserts the *shell* needs no sideways scrolling, and the
* shell was correct throughout `body.scrollWidth === clientWidth`
* while `explore-album-details` itself measured 443 inside a 424px box
* and clipped two of the album's three primary actions with its own
* `overflow: hidden`. So the measurement here is **per control against
* the component's box**, which is the same shape `top-bar-fit.spec.ts`
* needed for the same reason.
*
* The other half is the scroll: the page was a fixed header over a
* scrolling tracklist, so at the reference device's 424x439 the header
* owned 253 of the panel's 318px and the list scrolled in the 64 that
* were left. It is one scroll container below 600px, which is a
* property of the *host* rather than of `.content`.
*
* The engine is the caveat this tier cannot close: the reference device
* renders in Chrome 113 and this is Chromium/WebKit. A flex direction
* and a scroll container are nowhere near that engine's documented gaps
* (relaxed nesting, the Popover API, `light-dark()`), but "it renders
* at that size in Chromium" is not evidence about the phone.
*/
/** The phone this was measured on, in CSS pixels. */
const DEVICE = { width: 424, height: 439 };
const details = (page: Page) => page.locator('explore-album-details');
/** The page's own boxes, read from inside its shadow root. */
const geometry = (page: Page) =>
page.evaluate(() => {
const host = document.querySelector('explore-album-details');
const sr = host?.shadowRoot;
if (!host || !sr) return null;
const box = (sel: string) => {
const el = sr.querySelector(sel);
if (!el) return null;
const r = el.getBoundingClientRect();
return { width: Math.round(r.width), right: Math.round(r.right) };
};
const content = sr.querySelector('.content');
return {
hostWidth: host.clientWidth,
hostScrollWidth: host.scrollWidth,
// The host is the scroller below 600px, so the page is taller
// than its box rather than the tracklist being a window inside it.
hostScrolls: host.scrollHeight > host.clientHeight,
contentScrolls: content
? content.scrollHeight > content.clientHeight
: null,
header: box('.album-header'),
play: box('[data-testid="album-play"]'),
shuffle: box('[data-testid="album-shuffle"]'),
queue: box('[data-testid="album-queue"]'),
title: (() => {
const el = sr.querySelector('.album-title-text');
return el ? el.scrollWidth <= el.clientWidth + 1 : null;
})(),
};
});
test.describe('the album page on a phone', () => {
test.beforeEach(async ({ app }) => {
await app.setViewportSize(DEVICE);
await openFirstAlbum(app);
});
test.afterEach(async ({ app }) => {
await app.setViewportSize({ width: 1440, height: 900 });
await app.getByTestId('nav-tracks').click();
});
test('keeps every action inside its own box', async ({ app }) => {
const geo = await geometry(app);
expect(geo).not.toBeNull();
// "Shuffle album" ended at x=443 in a 424px component and could not
// be reached by any gesture; "Add to queue" at 440.
for (const action of ['play', 'shuffle', 'queue'] as const) {
expect(
geo?.[action],
`${action} is rendered`,
).not.toBeNull();
expect(
geo?.[action]?.right ?? 0,
`${action} ends inside the page`,
).toBeLessThanOrEqual(geo?.hostWidth ?? 0);
}
expect(geo?.hostScrollWidth).toBe(geo?.hostWidth);
expect(geo?.header?.width).toBe(geo?.hostWidth);
});
test('gives the title the row rather than one glyph of it', async ({
app,
}) => {
// `.album-info` was squeezed to 112px beside the art, so an album
// called *Glass Harbour* drew as `G…`. It carries `min-width: 0`
// and was shrinking as asked — the row had to stack.
expect(await geometry(app).then((g) => g?.title)).toBe(true);
});
test('scrolls as one page, with the header scrolling away', async ({
app,
}) => {
const before = await geometry(app);
expect(before?.hostScrolls).toBe(true);
expect(before?.contentScrolls).toBe(false);
const headerTop = () =>
app.evaluate(
() =>
document
.querySelector('explore-album-details')
?.shadowRoot?.querySelector('.album-header')
?.getBoundingClientRect().top ?? 0,
);
expect(await headerTop()).toBeGreaterThanOrEqual(0);
// A wheel gesture, not `scrollTop`: `overflow: hidden` still permits
// programmatic scrolling, so a probe that assigns it passes on the
// build this exists to fail.
await details(app).hover();
await app.mouse.wheel(0, 250);
await expect.poll(headerTop).toBeLessThan(-100);
});
test('is the desktop arrangement again above the breakpoint', async ({
app,
}) => {
await app.setViewportSize({ width: 1024, height: 800 });
// The same element, re-laid-out: one component with two
// arrangements, not a phone-only copy.
await expect
.poll(async () => (await geometry(app))?.hostScrolls)
.toBe(false);
const arrangement = await app.evaluate(() => {
const sr = document.querySelector('explore-album-details')?.shadowRoot;
const header = sr?.querySelector('.album-header');
const content = sr?.querySelector('.content');
return {
direction: header ? getComputedStyle(header).flexDirection : null,
contentOverflow: content ? getComputedStyle(content).overflowY : null,
};
});
expect(arrangement.direction).toBe('row');
expect(arrangement.contentOverflow).toBe('auto');
});
});
/** Albums → the second card, which navigates to the album page. */
async function openFirstAlbum(app: Page): Promise<void> {
// Below 600px the sidebar is gone; the tab bar is the navigation.
await app.getByTestId('tab-albums').click();
await expect(app.getByTestId('main-content')).toHaveAttribute(
'data-active-view',
'albums',
);
await expect.poll(() => cardCount(app)).toBeGreaterThan(1);
// Dispatched rather than clicked: the card lives in a virtualizer
// inside a shadow root, and Enter expands the dropdown instead.
await app.evaluate(() => {
document
.querySelector('cover-grid')
?.shadowRoot?.querySelectorAll('.album-card')[1]
?.dispatchEvent(
new MouseEvent('click', { bubbles: true, composed: true }),
);
});
await expect(app.getByTestId('main-content')).toHaveAttribute(
'data-active-view',
'explore-album-details',
);
await expect(
details(app).locator('[data-testid="album-play"]'),
).toBeVisible();
}
async function cardCount(app: Page): Promise<number> {
return app.evaluate(
() =>
document
.querySelector('cover-grid')
?.shadowRoot?.querySelectorAll('.album-card').length ?? 0,
);
}
+283
View File
@@ -0,0 +1,283 @@
import { test, expect } from '../support/fixtures.js';
/**
* Now Playing on a short screen (#51).
*
* #51 asks for a layout that "survives" ~424x439 with the controls
* never scrolling off. #172 measured why it did not the stacked
* layout's budget is fixed, so the art gets whatever is left, and that
* was 39px before #64 and 53px after it.
*
* **Two separate claims are asserted here, and only one of them is
* about the phone.**
*
* The first is that the art is *square*. It was not: `aspect-ratio` is
* specified not to re-derive the width when `max-height` clamps the
* height, so the art was drawn as a letterbox band and `object-fit:
* cover` cropped the cover to it — 264x53 on the reference device. The
* leftover only exceeds the width above ~843px of viewport, so this
* was every height from ~500 to ~843 as well: most phones, and any
* short window. That is ordinary CSS rather than a Chrome 113 quirk,
* so this tier can see it, and the heights below are chosen to cover
* the range rather than the one device.
*
* The second is the reflow: below 500px the art and the names sit side
* by side, which is what takes the art from 53px to 143px. That is
* asserted as a *relation between boxes* the art beside the names,
* not above them because the pixel count is a consequence of the
* arrangement and would pin this file to one device's chrome.
*
* **What this tier cannot see** is the device's engine: CI's Chromium
* and WebKit are current, and #60's clipping showed what that costs.
* Nothing here depends on Chrome 113 behaviour the sizing rules were
* checked against the device itself, at column heights of 288, 300,
* 451, 600 and 800, and the numbers are on #51.
*/
type Page = import('@playwright/test').Page;
/** The reference device's real viewport. */
const DEVICE = { width: 424, height: 439 };
/**
* A tall phone, above the reflow's 500px. Roughly a Pixel 7, which is
* #51's other named device and was not attached so what is checked
* here is the layout it *should* get, not that device.
*/
const TALL_PHONE = { width: 412, height: 869 };
/** Inside the crop's old range and above the reflow: a short window. */
const SHORT_WINDOW = { width: 390, height: 700 };
/**
* The height the layout reflows at. Written down once here because the
* specs have to know which arrangement to *wait* for, not only which
* to assert.
*/
const REFLOW_AT = 500;
/** Put a track in the player, so the view has art and names to lay out. */
async function stageATrack(page: Page): Promise<void> {
await page.evaluate(async () => {
const tracks = (await window.__yjEvents.call(
'library.Library.GetTracks',
[0],
10_000,
)) as { FilePath: string }[];
await window.__yjEvents.call(
'queue.Queue.SetQueue',
[tracks.slice(0, 4).map((t) => t.FilePath), 0, false, { type: '', id: 0, label: '' }],
10_000,
);
});
}
/** Open the full-screen view and wait for the shell to say so. */
async function openNowPlaying(page: Page): Promise<void> {
await page.evaluate(() => {
document.dispatchEvent(
new CustomEvent('navigate', {
detail: { view: 'now-playing' },
bubbles: true,
}),
);
});
await expect(page.getByTestId('main-content')).toHaveAttribute(
'data-active-view',
'now-playing',
);
// The attribute is the shell's bookkeeping and lands before the view
// has a track, so measuring on it alone races the first layout --
// which showed up as a 60x5 art on the first spec of a cold run.
//
// Waiting for a non-zero box is not enough on its own either: a
// previous test leaves the *other* arrangement on screen, and a
// stale column satisfies "has a size" perfectly. So the wait is for
// the arrangement this viewport should have, which is the thing
// every assertion below depends on. Found by this file passing one
// test at a time and failing in file order.
const wantRow = (page.viewportSize()?.height ?? 0) <= REFLOW_AT;
await page.waitForFunction(
(row: boolean) => {
const v = document.querySelector('now-playing-view');
const stack = v?.shadowRoot?.querySelector('.stack');
const el = v?.shadowRoot?.querySelector('.art img, .art .placeholder');
const t = v?.shadowRoot?.querySelector('.transport');
if (!el || !t) return false;
// A build with no `.stack` at all is the one before this change,
// and the squareness assertions are still meaningful against it
// -- so this waits for the arrangement only where there is one to
// wait for. Otherwise reverting the component to check that these
// tests bite produces eight timeouts instead of the measurements
// that make the case.
if (stack) {
const dir = getComputedStyle(stack).flexDirection;
if (dir !== (row ? 'row' : 'column')) return false;
}
const r = el.getBoundingClientRect();
return r.width > 0 && r.height > 0 && t.getBoundingClientRect().height > 0;
},
wantRow,
);
}
/**
* The boxes this file reasons about, read in one evaluate.
*
* It reaches into the view's shadow root rather than using locators
* because the question is geometric where these boxes are *relative
* to each other* and a testid per edge would be four locators and
* four round trips to say one thing.
*/
async function boxes(page: Page) {
return page.evaluate(() => {
const v = document.querySelector('now-playing-view');
if (!v || !v.shadowRoot) return null;
const rect = (sel: string) => {
const el = v.shadowRoot!.querySelector(sel);
if (!el) return null;
const r = el.getBoundingClientRect();
return {
left: r.left, right: r.right, top: r.top, bottom: r.bottom,
width: r.width, height: r.height,
};
};
return {
// Whichever of the two the track has; both carry the sizing.
art: rect('.art img') ?? rect('.art .placeholder'),
artBox: rect('.art'),
stack: rect('.stack'),
meta: rect('.meta'),
transport: rect('.transport'),
scrollHeight: v.scrollHeight,
clientHeight: v.clientHeight,
};
});
}
test.describe('Now Playing survives a short screen', () => {
test.beforeEach(async ({ app }) => {
await stageATrack(app);
});
/**
* The crop, at four heights spanning the range it covered. This is
* the assertion that fails on the build before this change: at
* 424x439 the art measured 264x53.
*/
for (const vp of [DEVICE, SHORT_WINDOW, TALL_PHONE, { width: 900, height: 500 }]) {
test(`draws the art square at ${vp.width}x${vp.height}`, async ({ app }) => {
await app.setViewportSize(vp);
await openNowPlaying(app);
const b = await boxes(app);
expect(b, 'now-playing-view did not mount').not.toBeNull();
expect(b!.art, 'neither art nor placeholder rendered').not.toBeNull();
const { width, height } = b!.art!;
expect(width, 'the art has no width').toBeGreaterThan(0);
// One pixel of slack for sub-pixel layout, and no more: the
// defect this guards was a 5:1 band.
expect(
Math.abs(width - height),
`art is ${Math.round(width)}x${Math.round(height)}, not square`,
).toBeLessThanOrEqual(1);
});
}
/**
* The promise #51 states and plan 018's matrix repeats. A floor on
* the art with the block scrolling was the other option on #172 and
* this is why it was not taken.
*/
test('never scrolls the transport off the bottom', async ({ app }) => {
await app.setViewportSize(DEVICE);
await openNowPlaying(app);
const b = await boxes(app);
expect(b!.transport!.bottom).toBeLessThanOrEqual(DEVICE.height);
expect(
b!.scrollHeight,
'the view scrolls, so the transport can be moved off screen',
).toBeLessThanOrEqual(b!.clientHeight + 1);
});
/**
* The reflow itself, as a relation rather than a measurement: below
* 500px the names are *beside* the art, above it they are below.
*/
test('puts the names beside the art below 500px', async ({ app }) => {
await app.setViewportSize(DEVICE);
await openNowPlaying(app);
const b = await boxes(app);
expect(
b!.meta!.left,
'the names are not to the right of the art',
).toBeGreaterThanOrEqual(b!.artBox!.right - 1);
});
test('keeps the names below the art on a tall phone', async ({ app }) => {
await app.setViewportSize(TALL_PHONE);
await openNowPlaying(app);
const b = await boxes(app);
expect(
b!.meta!.top,
'the names are not below the art',
).toBeGreaterThanOrEqual(b!.artBox!.bottom - 1);
});
/**
* What the reflow actually does, stated as a mechanism rather than
* as a number: in a row the art is bounded by the row's *height*,
* so it fills it where in a column it is the leftover after the
* names, which is what made it 53px.
*
* **The pixel count is deliberately not asserted here.** Two drafts
* tried. The first compared the art against the column's leftover
* computed from the boxes on screen and passed on the broken build,
* because the subtraction goes negative when the names are taller
* than the art precisely the defect. The second put a floor of
* 100px on it, passed locally at 114 and **failed in CI at 64**: this
* app is long-lived, so a job staged by an earlier spec is still on
* screen, and the volume control renders here where it does not on
* Android. Both are chrome above and below this view, and both move
* the leftover. A test that asserts how much room CI happened to
* have is a test about the runner.
*
* The device numbers 53px to 143px are on #51, measured there,
* which is the only tier that can honestly produce them.
*/
test('fills the row with the art rather than the leftover', async ({ app }) => {
await app.setViewportSize(DEVICE);
await openNowPlaying(app);
const b = await boxes(app);
expect(b!.stack, 'there is no row to fill').not.toBeNull();
expect(
Math.abs(b!.artBox!.height - b!.stack!.height),
'the art does not fill the row, so it is still a leftover',
).toBeLessThanOrEqual(1);
});
});
+136
View File
@@ -0,0 +1,136 @@
import {
test,
expect,
callBinding,
resetEvents,
waitForEvent,
LONG_TRACK,
NO_QUEUE_SOURCE,
} from '../support/fixtures.js';
import type { Page } from '@playwright/test';
/**
* The phone's progress line (#58).
*
* The component tier already pins what the line *says* that it
* renders the backend's reported position and never a count of its own.
* What only a real shell can answer is **where it is**: the issue asks
* for a line on the border between the mini player and the tab bar, and
* "on the border" is two adjacencies in a grid that no component-level
* render has around it.
*
* It also asserts the line is not there on a desktop, which is the
* other half of the same fact: above 600px there is no tab bar for it
* to sit on the border of, and the bar carries a real seek bar.
*/
type Rect = { x: number; y: number; width: number; height: number };
/** The reference device's real viewport. */
const DEVICE = { width: 424, height: 439 };
const DESKTOP = { width: 1280, height: 800 };
async function rectOf(app: Page, selector: string): Promise<Rect | null> {
return app.evaluate((sel) => {
const el = document.querySelector(sel);
if (!el) return null;
const r = el.getBoundingClientRect();
return { x: r.x, y: r.y, width: r.width, height: r.height };
}, selector);
}
/**
* Put the 90-second fixture on and wait for the first position report.
*
* The long track rather than any track: every other fixture is 2-6
* seconds, which is shorter than the time this spec takes to measure
* three rectangles.
*/
async function play(app: Page): Promise<void> {
const tracks = await callBinding<{ FilePath: string; TrackName: string }[]>(
app,
'library.Library.GetTracks',
[0],
);
// `TrackName`, not `Title`: that is what the library model calls it.
const long = tracks.find((t) => t.TrackName === LONG_TRACK);
expect(long, `no fixture track named ${LONG_TRACK}`).toBeTruthy();
await callBinding(app, 'queue.Queue.Clear');
await resetEvents(app);
await callBinding(app, 'queue.Queue.SetQueue', [
[long!.FilePath],
0,
false,
NO_QUEUE_SOURCE,
]);
await waitForEvent(app, 'QueueChanged');
await callBinding(app, 'queue.Queue.Play');
await waitForEvent(app, 'PlaybackPositionChanged', { timeoutMs: 15_000 });
}
test.describe('the progress line sits on the border between the bars', () => {
test.beforeEach(async ({ app }) => {
await app.setViewportSize(DEVICE);
await play(app);
});
/*
* Every test here starts a LONG_TRACK and the suite is workers: 1,
* fullyParallel: false against one long-lived app so without this
* the four phone-* specs that follow alphabetically inherit a playing
* queue. phone-transport.spec.ts records where that lesson came from:
* the fault first showed up as a flake in a spec about something else.
*/
test.afterEach(async ({ app }) => {
await callBinding(app, 'queue.Queue.Clear').catch(() => {
/* already empty */
});
await app.setViewportSize(DESKTOP);
});
test('spans the width, between the mini player and the tab bar', async ({
app,
}) => {
const line = await rectOf(app, 'player-progress-line');
const bar = await rectOf(app, '.bottom-bar');
const nav = await rectOf(app, 'bottom-nav');
expect(line, 'no progress line on the phone').not.toBeNull();
expect(bar).not.toBeNull();
expect(nav).not.toBeNull();
// A border, not a band: 2px, the full width, and touching both.
expect(line!.height).toBeCloseTo(2, 0);
expect(line!.width).toBeCloseTo(bar!.width, 0);
expect(line!.y).toBeCloseTo(bar!.y + bar!.height, 0);
expect(nav!.y).toBeCloseTo(line!.y + line!.height, 0);
});
/**
* It is 2px on the top edge of the tab bar, which is exactly where a
* thumb aiming at a tab lands. A line that sometimes seeks is worse
* than one that never does, so it must take no part in hit testing
* at all.
*/
test('takes no taps', async ({ app }) => {
const line = await rectOf(app, 'player-progress-line');
const hit = await app.evaluate(
({ x, y }) => document.elementFromPoint(x, y)?.tagName ?? '',
{ x: line!.x + line!.width / 2, y: line!.y + 1 },
);
expect(hit).not.toBe('PLAYER-PROGRESS-LINE');
});
test('is not there on a desktop', async ({ app }) => {
await app.setViewportSize(DESKTOP);
await expect(app.locator('player-progress-line')).toBeHidden();
});
});
+322
View File
@@ -0,0 +1,322 @@
import { test, expect } from '../support/fixtures.js';
/**
* #57. Below 600px the top bar is not in the layout, and search is a
* button that opens a modal on the pages where searching means
* anything.
*
* **This is the tier that can answer it, with one honest exception.**
* The shell's breakpoints are media queries, which the component tier
* cannot set so whether the bar is a grid row, and whether a header
* grows a search button, is a question for a real viewport. What this
* tier *cannot* answer is the reason the surface is a `wa-dialog`:
* #60 read out of the Web Awesome source that `wa-popup` falls back to
* `position: fixed` where there is no Popover API (Chrome 113, the
* reference device) and that `.main-panel`'s `contain: paint` clips a
* fixed descendant. Chromium and WebKit here both have the Popover API,
* so a popup is top-layered and correct, and **an assertion that the
* modal is not clipped would pass on the broken build.** The mechanism
* is asserted in `frontend/test/components/search-dialog.test.ts`
* instead, where "is there a native <dialog>" is a question a browser
* can answer without lying.
*
* **And it is measured per element.** `layout-overflow.spec.ts` asks
* whether the *shell* needs sideways scrolling and was green throughout
* the defect it is named for; the win this issue is for is vertical and
* belongs to one element, so it is that element's box that is read.
*/
type Page = import('@playwright/test').Page;
/** The reference device's own viewport, and a common small phone. */
const DEVICE = { width: 424, height: 439 };
const PHONE = { width: 390, height: 780 };
/**
* Where the top bar is, and how much of the screen it costs.
*
* `contentTop` is measured against the *jobs band* rather than against
* the window, because that band is a real grid row whenever work is in
* flight (#62) and the app under these specs is long-lived a job
* staged by another file is still in the store. Measuring against zero
* makes this assertion say "and no background job is running", which is
* not what it is for and is not something it can arrange.
*/
const barBox = (page: Page) =>
page.evaluate(() => {
const bar = document.querySelector<HTMLElement>('header.top-bar')!;
const main = document.querySelector<HTMLElement>('.main-panel')!;
const band = document.querySelector<HTMLElement>('job-band');
const cs = getComputedStyle(bar);
return {
position: cs.position,
height: Math.round(bar.getBoundingClientRect().height),
/** Where the content starts, and where the row above it ends. */
contentTop: Math.round(main.getBoundingClientRect().top),
aboveBottom: Math.round(band?.getBoundingClientRect().bottom ?? 0),
};
});
test.describe('the phone has no top bar', () => {
test.beforeEach(async ({ app }) => {
await app.setViewportSize(DEVICE);
});
test.afterEach(async ({ app }) => {
await app.setViewportSize({ width: 1440, height: 900 });
});
/**
* The vertical win, measured rather than asserted by the absence of
* an element: `display: none` on the header would satisfy "the bar is
* hidden" while leaving a 3.25em grid row exactly where it was.
*/
test('gives the row back to the content', async ({ app }) => {
const box = await barBox(app);
// Out of flow, so it takes no row — and 1px rather than 0, because
// it still carries the document's h1.
expect(box.position).toBe('absolute');
expect(box.height).toBeLessThanOrEqual(1);
// The content starts where the row above it ends, and there is no
// row above it but the jobs band. On `main` at the time of writing
// the content started 52px down from that point.
expect(box.contentTop).toBe(box.aboveBottom);
});
/**
* The wordmark yields its width and not its existence, which is the
* rule `top-bar-fit.ts` already lives by one band up: with the bar
* gone, `display: none` would take this document from one top-level
* heading to none on every page whose own header has no h1
* Settings has no `page-header` at all.
*/
test('still has a top-level heading', async ({ app }) => {
await expect(
app.getByRole('heading', { name: 'YellowJacket', level: 1 }),
).toHaveCount(1);
});
/**
* And its four controls are gone from the tab order, not merely from
* sight. A visually-hidden container is still focusable, and tabbing
* into a search box nobody can see is worse than not having one.
*/
test('leaves nothing in the bar to tab into', async ({ app }) => {
for (const tag of [
'nav-history',
'library-filter',
'search-bar',
'job-indicator',
]) {
await expect(app.locator(`header.top-bar ${tag}`)).toBeHidden();
}
const focusable = await app.evaluate(
() =>
document
.querySelector('header.top-bar')!
.querySelectorAll('input, select, button, a[href]').length,
);
// Nothing in the bar is *rendered*, so nothing in it can be
// focused; the controls are display:none, which takes their own
// shadow content with them.
expect(focusable).toBe(0);
});
});
test.describe('search on a phone', () => {
test.beforeEach(async ({ app }) => {
await app.setViewportSize(PHONE);
});
test.afterEach(async ({ app }) => {
await app.setViewportSize({ width: 1440, height: 900 });
});
test('is a button in the view that can be searched', async ({ app }) => {
await app.getByTestId('tab-tracks').click();
await expect(app.getByTestId('main-content')).toHaveAttribute(
'data-active-view',
'tracks',
);
// Scoped to the view: every cached primary view holds a
// `page-header`, and an unscoped testid is `bottom-nav`'s
// "resolved to 2 elements" trap again.
const trigger = app.locator('track-list page-header search-trigger button');
await expect(trigger).toBeVisible();
await expect(trigger).toHaveAttribute('aria-label', 'Search tracks');
});
/**
* The whole journey, which is the thing the issue asks for: a button,
* a modal, and the results on the page behind it saying what they are
* showing.
*/
test('opens a modal, filters the page, and says so', async ({ app }) => {
await app.getByTestId('tab-tracks').click();
await expect(app.getByTestId('main-content')).toHaveAttribute(
'data-active-view',
'tracks',
);
await app.locator('track-list page-header search-trigger button').click();
const dialog = app.getByTestId('search-dialog');
// Attached, not visible: `wa-dialog`'s host is `display: contents`,
// so the element carrying the testid always reports hidden — what
// is visible is the native `<dialog>` inside it. That awkwardness
// is written down in CLAUDE.md and is why the assertion that this
// is really up is the role query below.
await expect(dialog).toBeAttached();
// Named, which `getByRole` can answer and the a11y snapshot cannot
// — the snapshot never prints a dialog's name, named or not. This
// is also the assertion that the dialog is genuinely showing.
await expect(
app.getByRole('dialog', { name: 'Search tracks' }),
).toBeVisible();
// Scoped: the header's own box is still in the document, hidden.
// This is the one moment there are two `search-input`s.
await dialog.getByTestId('search-input').fill('aurora');
// Enter hands the screen back, because the results are the page.
await app.keyboard.press('Enter');
await expect(dialog).not.toBeAttached();
// Polled: the box debounces by 150ms, so reading the page once
// straight after closing the dialog can capture the state before
// the term ever reached the store.
await expect
.poll(() =>
app.evaluate(
() =>
document
.querySelector('[data-testid="main-content"] track-list')
?.shadowRoot?.querySelector('page-header')
?.shadowRoot?.querySelector('[data-testid="page-search-scope"]')
?.textContent?.trim() ?? '',
),
)
.toMatch(/matching.*aurora/);
// And the button says the search is on, in its name rather than
// only in its colour.
await expect(
app.locator('track-list page-header search-trigger button'),
).toHaveAttribute('aria-label', /aurora/);
// Leave the app as the next spec expects to find it.
await app.locator('track-list page-header search-trigger button').click();
await app.getByTestId('search-dialog').getByTestId('search-input').fill('');
await app.keyboard.press('Escape');
});
/**
* Two of the seven searchable views have no `page-header` they are
* detail views that filter on the term and say so in their own
* headers. A trigger placed only in `page-header` would leave them
* with a search they can show and no way to set it, which is #24's
* sentence broken in the band it was written for.
*/
test('reaches the playlist detail view too', async ({ app }) => {
await app.getByTestId('tab-playlists').click();
await expect(app.getByTestId('main-content')).toHaveAttribute(
'data-active-view',
'playlists',
);
// `.playlist-item`, which is what the list renders. Asserted to
// exist rather than skipped on: the seed has a playlist, and a
// spec that quietly skips when its selector stops matching is a
// spec that reports success for a renamed class.
const first = app.locator('playlist-view .playlist-item').first();
await expect(first).toBeVisible();
await first.dblclick();
await expect(app.getByTestId('main-content')).toHaveAttribute(
'data-active-view',
'playlist-details',
);
await expect(
app.locator('playlist-details search-trigger button'),
).toBeVisible();
});
/**
* A button that cannot do anything is worse than none the rule
* `library-status-indicator` was rewritten on. Home has nothing of
* its own to search and is not in the store's map.
*/
test('offers no button where there is nothing to search', async ({ app }) => {
await app.getByTestId('tab-home').click();
await expect(app.getByTestId('main-content')).toHaveAttribute(
'data-active-view',
'home',
);
await expect(
app.locator('home-view page-header search-trigger button'),
).toHaveCount(0);
});
test('offers no button on a desktop, where the header has a box', async ({
app,
}) => {
await app.setViewportSize({ width: 1440, height: 900 });
await app.getByTestId('nav-tracks').click();
await expect(
app.locator('track-list page-header search-trigger button'),
).toHaveCount(0);
await expect(app.locator('header.top-bar search-bar')).toBeVisible();
});
});
/**
* #148, which #57 inherits: `library-filter` is the only control in the
* app that calls `setSelectedLibrary`, and the bar it lived in is gone
* on a phone. #143 refused to hide it as a fit step for exactly this
* reason, so dropping it here would have been the same trade.
*/
test.describe('the library filter has a home that is not the bar', () => {
test.afterEach(async ({ app }) => {
await app.setViewportSize({ width: 1440, height: 900 });
});
test('is in Settings, and is reachable from a phone', async ({ app }) => {
await app.setViewportSize(PHONE);
await app.getByTestId('tab-more').click();
await app.getByTestId('nav-drawer').getByTestId('nav-settings').click();
await expect(app.getByTestId('main-content')).toHaveAttribute(
'data-active-view',
'settings',
);
const filter = app.getByTestId('settings-library-filter');
await expect(filter).toBeVisible();
await expect(filter.locator('select')).toBeVisible();
});
test('and it is the same control at every width', async ({ app }) => {
// Not a phone-only copy: "where do I change which library I am
// browsing" having two answers by viewport is the fault, not the
// fix.
await app.setViewportSize({ width: 1440, height: 900 });
await app.getByTestId('nav-settings').click();
await expect(app.getByTestId('settings-library-filter')).toBeVisible();
await expect(app.locator('header.top-bar library-filter')).toBeVisible();
});
});
+112 -4
View File
@@ -1,4 +1,4 @@
import { test, expect } from '../support/fixtures.js';
import { test, expect, LONG_TRACK } from '../support/fixtures.js';
/**
* The phone shell (plan 016 B2, phase 1).
@@ -130,6 +130,25 @@ test.describe('the shell on a phone', () => {
// are here, and they are the *same* components -- this view
// composes the transport rather than reimplementing it.
await expect(app.locator('now-playing-view seek-bar')).toBeVisible();
// Volume is here **because the player says there is one** (#64),
// not because this is a phone. This tier is the platform that owns
// its own volume, so what it can assert is that the control's
// presence follows that answer -- an inverted polarity in
// `volume-style-store` fails here and in `bottom-bar.spec.ts`, and
// the *absent* branch is checked in the component tier, where the
// binding can be stubbed. Nothing here can reach the Android side.
const systemOwns = await app.evaluate(
async () =>
(await window.__yjEvents.call(
'player.Player.SystemOwnsVolume',
[],
5_000,
)) as boolean,
);
expect(systemOwns, 'this platform should own its own volume').toBe(false);
await expect(app.locator('now-playing-view volume-control')).toBeVisible();
// Back goes where the user came from, through the nav stack.
@@ -138,6 +157,78 @@ test.describe('the shell on a phone', () => {
.toHaveAttribute('data-active-view', 'tracks');
});
/**
* The same journey with a track that has **no cover art** (#150).
*
* The test above starts the *first* row of the track list, so which
* track it plays is the order the scan inserted them in and the
* answer decided whether it passed. A track with artwork renders an
* `<img>`, which is no obstacle; one without renders a placeholder
* `wa-icon`, which took every click aimed at the button beneath it,
* because that button is absolutely positioned with `z-index: auto`
* and the art is a *later* sibling. They tied, and the later one won.
*
* So this picks a track *for* the property that broke it, which is
* the only way the assertion means anything: the version above passes
* on a broken build roughly two runs in three, which is exactly how
* it came to cost three CI cycles across two branches that could not
* have caused it.
*/
test('opens the full-screen now playing for a track with no art', async ({
app,
}) => {
// `LONG_TRACK` by name, and not "the first track with no
// CoverArt": the *library* model reports that field empty for
// every row in this fixture (31 of 31), so filtering on it selects
// nothing in particular and picked a 2-second track, which had
// finished before the assertions ran. The placeholder check below
// is what actually holds the property this test needs.
const started = await app.evaluate(async (longTitle) => {
const tracks = (await window.__yjEvents.call(
'library.Library.GetTracks',
[0],
10_000,
)) as { FilePath: string; TrackName: string }[];
const bare = tracks.find((t) => t.TrackName === longTitle);
if (!bare) return null;
await window.__yjEvents.call(
'queue.Queue.SetQueue',
[[bare.FilePath], 0, false, { type: '', id: 0, label: '' }],
10_000,
);
await window.__yjEvents.call('queue.Queue.Play', [], 5_000);
return bare.TrackName;
}, LONG_TRACK);
expect(started).toBe(LONG_TRACK);
await expect(app.getByTestId('now-playing-title')).not.toBeEmpty();
// **The placeholder is the whole point**, so it is asserted rather
// than assumed: this test is about the thing that renders when
// there is no artwork. If the fixture ever gives this album a
// cover, this fails and says so instead of passing while measuring
// the easy case.
//
// One selector rather than a chain from the host: Playwright's CSS
// engine pierces an open shadow root, and chaining from the host
// element does not reach into it.
await expect(
app.locator('now-playing .cover-placeholder'),
).toBeAttached();
await app.getByTestId('open-now-playing').click();
await expect(app.getByTestId('main-content'))
.toHaveAttribute('data-active-view', 'now-playing');
await app.getByTestId('npv-back').click();
});
test('offers no way in on a desktop, where the bar is whole', async ({ app }) => {
await app.setViewportSize({ width: 1440, height: 900 });
@@ -154,9 +245,26 @@ test.describe('the shell on a phone', () => {
await expect(app.locator('now-playing')).toBeVisible();
// Volume is the hardware keys' job on a phone, and a 4px seek bar
// is not a thumb target -- both belong to a later phase's
// full-screen now-playing view.
await expect(app.locator('audio-player volume-control')).toBeHidden();
// is not a thumb target -- both belong to the full-screen
// now-playing view.
//
// `.bottom-bar volume-control`, not `audio-player volume-control`:
// #42 moved the control out of that component and into the bar, and
// **the old locator would have kept passing** — `toBeHidden()` is
// satisfied by an element that does not exist, so this assertion
// would have gone on reporting success about nothing. Its partner
// below is what makes this one mean something.
await expect(app.locator('.bottom-bar volume-control')).toBeHidden();
// The element is there and hidden, rather than absent: the check
// above cannot tell those apart on its own.
await expect(app.locator('.bottom-bar volume-control')).toHaveCount(1);
// And the seek bar is still inside the transport, where it stands
// down by its own media query.
await expect(
app.locator('audio-player').locator('seek-bar'),
).toBeHidden();
});
});
+315
View File
@@ -0,0 +1,315 @@
import { test, expect } from '../support/fixtures.js';
/**
* The phone's transport (#59, #56).
*
* #56 reports that "the playback controls are the most important thing
* in the mobile app and they are tiny". Measured at the reference
* device's 424x439 before this, every one of them was **33x21px**, and
* the favourite beside them which #59 keeps on the bar was
* **18x14px**, the smallest control in the app.
*
* #59 is what makes the sizes affordable: five controls plus a queue
* button at 44px does not fit 424 CSS px, so the bar carries three and
* the rest are on the full-screen view.
*
* **The assertion that matters is not the pixel count.** Plan 018's
* matrix promises that *no action is ever unreachable at any supported
* size*, and #59 removes three controls from the phone's bar so the
* first thing this file checks is that all three are still reachable,
* by walking the route a user would. A spec that only measured the
* survivors would be green on a build that had made shuffle
* unreachable, which is the failure mode this pair of issues is one
* mistake away from.
*/
type Page = import('@playwright/test').Page;
/** The reference device's real viewport. */
const DEVICE = { width: 424, height: 439 };
const PHONE = { width: 390, height: 780 };
const DESKTOP = { width: 1280, height: 800 };
/**
* The touch-target floor. 44px is what #56's Findings name and what
* #55's queue header was sized to, so the app has one number.
*/
const TARGET = 44;
/** The play button is named for its action, not its identity. */
const PLAY_PAUSE = /^(Play|Pause)$/;
const barControls = (page: Page) =>
page.locator('audio-player player-controls');
/**
* `name` may be a regex, and for play/pause it must be: that button is
* named for the *action*, so it is "Pause" while a track runs and
* "Play" when it stops. An exact 'Play' made these tests wait out a
* fixture track (11.1s each, passing by luck) and would have failed
* outright against `LONG_TRACK`. A test about a control's size does not
* care what the transport is doing.
*/
async function sizeOf(
page: Page,
name: string | RegExp,
): Promise<[number, number]> {
const box = await page
.getByRole('button', { name, exact: typeof name === 'string' })
.boundingBox();
expect(box, `no button named ${name}`).not.toBeNull();
return [box!.width, box!.height];
}
/** Put something in the queue, so the transport has a track to act on. */
async function stageATrack(page: Page): Promise<void> {
await page.evaluate(async () => {
const tracks = (await window.__yjEvents.call(
'library.Library.GetTracks',
[0],
10_000,
)) as { FilePath: string }[];
await window.__yjEvents.call(
'queue.Queue.SetQueue',
[tracks.slice(0, 4).map((t) => t.FilePath), 0, false, { type: '', id: 0, label: '' }],
10_000,
);
});
}
test.describe('the phone bar carries three controls', () => {
test.beforeEach(async ({ app }) => {
await app.setViewportSize(DEVICE);
await stageATrack(app);
});
test('drops shuffle, repeat and the queue from the bar', async ({ app }) => {
const bar = barControls(app);
await expect(bar.getByRole('button', { name: 'Previous track' })).toBeVisible();
await expect(bar.getByRole('button', { name: 'Next track' })).toBeVisible();
// Not in the bar's own subtree. Asserted against the bar rather
// than the page, because the whole point is that they moved rather
// than went away -- a page-wide `not.toBeVisible()` would fail the
// moment Now Playing is open and would be asserting the wrong
// thing besides.
await expect(bar.getByRole('button', { name: 'Shuffle' })).toHaveCount(0);
await expect(bar.getByRole('button', { name: /^Repeat/ })).toHaveCount(0);
await expect(app.locator('#queue-button')).toBeHidden();
});
/**
* The promise, walked. Every control #59 takes off the bar is
* reachable from the mini player's art in one tap.
*/
test('leaves every removed control reachable from Now Playing', async ({
app,
}) => {
await app.getByTestId('open-now-playing').click();
await expect(app.getByTestId('main-content')).toHaveAttribute(
'data-active-view',
'now-playing',
);
await expect(app.getByRole('button', { name: 'Shuffle' })).toBeVisible();
await expect(app.getByRole('button', { name: /^Repeat/ })).toBeVisible();
await expect(app.getByRole('button', { name: 'Show the queue' })).toBeVisible();
});
test('sizes what is left for a thumb', async ({ app }) => {
for (const name of ['Previous track', 'Next track']) {
const [w, h] = await sizeOf(app, name);
expect(w, `${name} width`).toBeGreaterThanOrEqual(TARGET);
expect(h, `${name} height`).toBeGreaterThanOrEqual(TARGET);
}
// Play is deliberately bigger than its neighbours: a row of
// identical squares says every action is equally likely, which is
// not true of play.
const [pw, ph] = await sizeOf(app, PLAY_PAUSE);
const [nw] = await sizeOf(app, 'Next track');
expect(ph).toBeGreaterThanOrEqual(TARGET);
expect(pw).toBeGreaterThan(nw);
});
/**
* The favourite was 18x14 and is one of the three controls #59
* keeps, so it is part of this issue rather than a nicety.
*/
test('sizes the favourite, which was the smallest control in the app', async ({
app,
}) => {
const fav = app
.locator('now-playing')
.getByRole('button', { name: /Favorites$/ });
const box = await fav.boundingBox();
expect(box).not.toBeNull();
expect(box!.width).toBeGreaterThanOrEqual(TARGET);
expect(box!.height).toBeGreaterThanOrEqual(TARGET);
});
/**
* **The route to the queue must not depend on what is playing.**
*
* `now-playing` renders two branches, and the no-track one had no
* `.expand` button on its placeholder so with nothing loaded there
* was no way to Now Playing, and once #59 takes the queue button off
* the bar that makes the *queue* unreachable. The queue is persisted
* across restarts, so "tracks queued, nothing playing" is a state the
* app launches into.
*
* This is asserted with the queue explicitly emptied rather than by
* relying on the app not having played anything: `make e2e` runs one
* long-lived app across every spec file (#168), so "no track loaded"
* is otherwise whatever the file before this one left behind which
* is how the underlying fault first showed up as a flake in a spec
* about something else.
*/
test('reaches the queue with nothing playing', async ({ app }) => {
await app.evaluate(async () => {
await window.__yjEvents.call('queue.Queue.Clear', [], 10_000);
});
await expect(app.getByTestId('open-now-playing')).toBeVisible();
await app.getByTestId('open-now-playing').click();
await app.getByTestId('npv-queue').click();
await expect(app.locator('#queue-panel')).toHaveAttribute('open', '');
});
test('still fits, with nothing to scroll sideways to', async ({ app }) => {
const fit = await app.evaluate(() => ({
scroll: document.body.scrollWidth,
client: document.body.clientWidth,
}));
expect(fit.scroll).toBe(fit.client);
});
});
test.describe('the full-screen transport is the page', () => {
test.beforeEach(async ({ app }) => {
await app.setViewportSize(DEVICE);
await stageATrack(app);
await app.getByTestId('open-now-playing').click();
});
test('draws all five, larger than the bar draws any', async ({ app }) => {
const [pw, ph] = await sizeOf(app, PLAY_PAUSE);
expect(pw).toBeGreaterThanOrEqual(56);
expect(ph).toBeGreaterThanOrEqual(56);
for (const name of ['Shuffle', 'Previous track', 'Next track']) {
const [w, h] = await sizeOf(app, name);
expect(w, `${name} width`).toBeGreaterThanOrEqual(TARGET);
expect(h, `${name} height`).toBeGreaterThanOrEqual(TARGET);
}
});
test('fits at both phone widths', async ({ app }) => {
for (const size of [DEVICE, PHONE]) {
await app.setViewportSize(size);
const fit = await app.evaluate(() => ({
scroll: document.body.scrollWidth,
client: document.body.clientWidth,
}));
expect(fit.scroll, `${size.width}px`).toBe(fit.client);
}
});
});
/**
* **The desktop bar is not what either issue is about, and must not
* move.** Both are `Platform/Android`; this is the guard that says so
* in a way a build can check.
*
* It caught a real regression while it was being written: a generic
* `font-size` on the buttons took them from the UA stylesheet's 13.3px
* to the shell's 16px and grew every one from 33x21 to 36x24 a
* change nobody asked for, invisible to every other assertion here.
*/
test.describe('the desktop bar is untouched', () => {
test.beforeEach(async ({ app }) => {
await app.setViewportSize(DESKTOP);
await stageATrack(app);
});
test('keeps all five controls and the queue button', async ({ app }) => {
const bar = barControls(app);
for (const name of ['Shuffle', 'Previous track', 'Next track']) {
await expect(bar.getByRole('button', { name })).toBeVisible();
}
await expect(bar.getByRole('button', { name: /^Repeat/ })).toBeVisible();
await expect(app.locator('#queue-button')).toBeVisible();
});
/**
* **The mechanism, because the pixels are the engine's.**
*
* The first version of this asserted the literal `'33x21'`, measured
* on `main` in Chromium and WebKit draws the same button **36x24**,
* so it failed in CI on a build where nothing was wrong. A button's
* box comes from the UA stylesheet when the author sets nothing, and
* what each UA sets is its own business.
*
* What this PR must not do is *set* anything here, so that is what is
* asserted: our two box properties are unset, and the font is still
* the UA's rather than the shell's. That is precisely the regression
* this caught the first time a generic `font-size: inherit` took
* these from the UA's default to 16px and it catches it in either
* engine.
*/
test('sets no size of its own on the desktop bar', async ({ app }) => {
const measured = await barControls(app).evaluate((el) => {
// A bare button with no author styles: whatever this engine
// gives one is what the bar's buttons must still be.
const probe = document.createElement('button');
document.body.appendChild(probe);
const uaFontSize = getComputedStyle(probe).fontSize;
probe.remove();
return [...el.shadowRoot!.querySelectorAll('button')].map((b) => {
const cs = getComputedStyle(b);
const r = b.getBoundingClientRect();
return {
minWidth: cs.minWidth,
minHeight: cs.minHeight,
usesUaFont: cs.fontSize === uaFontSize,
size: `${Math.round(r.width)}x${Math.round(r.height)}`,
};
});
});
expect(measured).toHaveLength(5);
for (const m of measured) {
expect(m.minWidth, 'min-width').toBe('0px');
expect(m.minHeight, 'min-height').toBe('0px');
expect(m.usesUaFont, 'font-size is still the UA default').toBe(true);
}
// And all five are the same box: `.play` takes a larger size in
// both sized contexts, so this is what says the desktop is neither
// of them.
expect(new Set(measured.map((m) => m.size)).size).toBe(1);
});
});
+373
View File
@@ -0,0 +1,373 @@
import { test, expect, openTheQueue } from '../support/fixtures.js';
/**
* #55 the queue is a *place* while it covers the content, and a
* *control* while it sits beside it.
*
* #24 already made the pixels right: measured at the reference device's
* 424×439, the overlaid panel is 424×318, which is `.main-panel`'s rect
* exactly. What was missing was the navigation model, and the defect was
* measurable in one line opening the queue on Artists and pressing
* back moved the page *underneath* to Albums and left the queue up. A
* back press that changes something the user cannot see, and costs them
* their place, is the whole of "it does not flow".
*
* **These assert the entry, not the attribute.** The temptation is to
* check `#queue-button[aria-expanded]` and stop, which is the shell's
* own bookkeeping and was right throughout the bug: what has to be true
* is that *one* back press closes the queue and the *next* one
* navigates. Asserting only the first would pass on a build that
* orphans the entry, which is the defect moved one press later the
* same trap `back-navigation.spec.ts` documents about `data-active-view`
* and `layout-overflow.spec.ts` set for #69.
*
* **Three of these nine fail on the build before #55**, and the other
* six cannot, which is worth knowing before trusting them: "the entry
* is not orphaned" and "the column is not in the stack" are both
* vacuously true of a build that pushes no entry at all, and the
* containment assertion pins the mount that was *not* taken. They guard
* the next change rather than reproducing this one the three that
* reproduce it are the two back-press tests and the touch target.
*/
type Page = import('@playwright/test').Page;
/** The reference device's real viewport, not a resized desktop. */
const DEVICE = { width: 424, height: 439 };
/** Wide enough that the queue is a column: 1280 200 320 ≥ 480. */
const DESKTOP = { width: 1280, height: 800 };
/**
* The Compact band, where the queue is a *screen* (644 320 < 480) and
* the bottom bar still carries its button.
*
* Two of these tests need both facts at once and only this band has
* them: below 600px #59 takes the button off the bar, so there is no
* toggle to re-press and the queue is opened from Now Playing which
* is itself a detail view, so "the destination stays lit" is vacuously
* true there rather than tested.
*/
const COMPACT = { width: 700, height: 600 };
const activeView = (page: Page) => page.getByTestId('main-content');
const queue = (page: Page) => page.locator('#queue-panel');
const toggle = (page: Page) => page.locator('#queue-button');
/**
* Whether the queue is up.
*
* The panel's own attribute rather than the toggle's `aria-expanded`,
* because below 600px there is no toggle to ask (#59) and the panel
* is the one fact both of them reflect anyway.
*/
async function expectQueue(page: Page, open: boolean): Promise<void> {
const panel = queue(page);
if (open) {
await expect(panel).toHaveAttribute('open', '');
} else {
await expect(panel).not.toHaveAttribute('open', '');
}
}
test.describe('the queue is a screen where it covers the content', () => {
test.beforeEach(async ({ app }) => {
await app.setViewportSize(DEVICE);
await app.getByTestId('tab-albums').click();
await expect(activeView(app)).toHaveAttribute('data-active-view', 'albums');
});
// On a phone the queue is opened from Now Playing (#59), so the page
// *underneath* it is `now-playing` and the journey is two entries
// deep: albums -> now-playing -> queue. That is the real route a user
// takes, which is why these do not reach for the shortcut.
test('back closes the queue and leaves the page where it was', async ({
app,
}) => {
await expect(queue(app)).toHaveAttribute('overlay', '');
await openTheQueue(app);
await expectQueue(app, true);
await app.goBack();
await expectQueue(app, false);
// The page underneath is untouched. Before #55 this was the
// *previous* view, because the queue was not in the stack at all
// and back spent an entry navigating something nobody could see.
await expect(activeView(app)).toHaveAttribute(
'data-active-view',
'now-playing',
);
});
test('costs exactly one entry, so the next press navigates', async ({
app,
}) => {
await openTheQueue(app);
await expectQueue(app, true);
await app.goBack();
await expectQueue(app, false);
await expect(activeView(app)).toHaveAttribute(
'data-active-view',
'now-playing',
);
await app.goBack();
// Exactly one entry each: the second press leaves Now Playing for
// the page it was opened from, rather than being swallowed by a
// queue that had already closed.
await expect(activeView(app)).toHaveAttribute('data-active-view', 'albums');
});
/**
* Every route out unwinds the entry, and they do it through the
* panel's own `open` attribute rather than each knowing about
* history which is why a fourth route added later gets this free.
*
* The failure this pins is silent: close by button, and if the entry
* is orphaned the app looks correct until the next back press does
* nothing at all. It is a guard rather than a reproduction a build
* with no entry to orphan passes it and it is paired with the two
* above, which do reproduce.
*/
for (const [name, dismiss] of [
[
'the close button',
async (app: Page) => {
await app.getByRole('button', { name: 'Close queue' }).click();
},
],
[
'Escape',
async (app: Page) => {
await app.keyboard.press('Escape');
},
],
] as Array<[string, (app: Page) => Promise<void>]>) {
test(`${name} leaves no entry behind`, async ({ app }) => {
await openTheQueue(app);
await expectQueue(app, true);
await dismiss(app);
await expectQueue(app, false);
await app.goBack();
// One press, one screen: Now Playing is what the queue was opened
// from, so leaving it lands on Albums. An orphaned entry would
// have spent this press on nothing and left it here.
await expect(activeView(app)).toHaveAttribute(
'data-active-view',
'albums',
);
});
}
/**
* A detail view leaves the destination it was opened from lit
* (`active-view-store`, #72), and the queue inherits that it is
* published with `isPrimary: false`, so `isActive('albums')` is still
* true underneath it.
*
* `aria-current` rather than a class, for the reason
* `back-navigation.spec.ts` gives: the class was right throughout the
* bug that rule exists for.
*/
/**
* With the panel spanning the whole width there is no scrim here at
* all (#171), so the close button is the only pointer route out of a
* full-screen surface. Measured at 424×439 before #55: **25×21px**.
*/
test('offers a way out a thumb can hit', async ({ app }) => {
await openTheQueue(app);
const box = await app
.getByRole('button', { name: 'Close queue' })
.boundingBox();
expect(box).not.toBeNull();
expect(box!.width).toBeGreaterThanOrEqual(44);
expect(box!.height).toBeGreaterThanOrEqual(44);
});
/**
* #171 and it draws no scrim, because there is nowhere to tap.
*
* `.panel-content` is `width: 100%` here, so the scrim sat entirely
* underneath it: measured at 424×439, host, panel and scrim all
* 424×318. #24's tap-outside-to-close cannot exist on a surface with
* no outside, and a `cursor: pointer` layer nobody can reach is a
* claim the component cannot keep.
*
* Asserted as absence rather than by clicking, for the reason the
* issue gives: a naive phone case clicks the scrim's centre and hits
* the panel, so it passes on the build this exists to fail. The scrim
* is still real between 600 and 899px, which `queue-overlay.spec.ts`
* asserts at 900×600 by clicking it.
*/
test('draws no scrim, because a screen has no outside to tap', async ({
app,
}) => {
await openTheQueue(app);
const scrim = await queue(app).evaluate(
(el) => el.shadowRoot!.querySelector('.scrim') !== null,
);
expect(scrim).toBe(false);
});
});
/**
* **The mechanism, because no tier here can see the consequence.**
*
* #55's Direction asked for a `DETAIL_LOADERS` mount, which would put
* the panel inside `.main-panel > *`. That box is paint-contained under
* a `.main-panel` that is too, and `contain: paint` makes an element a
* containing block for fixed descendants *and clips them* which is
* what a `wa-popup` falls back to on the reference device's Chrome 113,
* where the Popover API does not exist (#60, `.planning/NOTES.md`).
* `queue-panel` has a context menu, so that mount would have broken a
* working menu on the one device this issue is about.
*
* CI's Chromium and WebKit both *have* the Popover API, so the menu is
* top-layered and correct here either way: a spec asserting "the menu is
* not clipped" is green on the broken build. What a browser can answer
* honestly is where the element is, so that is what this asks.
*/
test('the panel stays out of the paint-contained region', async ({ app }) => {
await app.setViewportSize(DEVICE);
// Open, because that is the only state in which a menu can be opened
// from it — and because the host drops `paint` from its own
// containment deliberately in overlay mode, so a closed panel answers
// a different question.
await openTheQueue(app);
await expectQueue(app, true);
const ancestry = await app.evaluate(() => {
const chain: Array<{ tag: string; contain: string }> = [];
for (
let el = document.getElementById('queue-panel');
el && el !== document.documentElement;
el = el.parentElement
) {
chain.push({
tag: el.tagName.toLowerCase(),
contain: getComputedStyle(el).contain,
});
}
return chain;
});
expect(ancestry.length).toBeGreaterThan(1);
expect(ancestry.some((a) => a.tag === 'main')).toBe(false);
for (const { tag, contain } of ancestry) {
expect(
`${tag}: ${contain}`,
'a paint-contained ancestor clips a fixed-positioned popup on Chrome 113',
).not.toMatch(/paint|content|strict/);
}
});
/**
* Two properties need the queue to be a *screen* and the bar to still
* have its button, and only the Compact band has both below 600px #59
* takes the button off the bar.
*/
test.describe('a screen opened from the bar', () => {
test.beforeEach(async ({ app }) => {
await app.setViewportSize(COMPACT);
await app.getByTestId('nav-albums').click();
await expect(activeView(app)).toHaveAttribute('data-active-view', 'albums');
await expect(queue(app)).toHaveAttribute('overlay', '');
});
/**
* A detail view leaves the destination it was opened from lit
* (`active-view-store`, #72), and the queue inherits that it is
* published with `isPrimary: false`, so `isActive('albums')` is still
* true underneath it.
*
* `aria-current` rather than a class, for the reason
* `back-navigation.spec.ts` gives: the class was right throughout the
* bug that rule exists for.
*/
test('leaves the destination it was opened from highlighted', async ({
app,
}) => {
// By testid, not by role: at 700px the sidebar is in icon mode, so
// what the item is *named* is a different question from which item
// it is. The assertion is still `aria-current`, which is the
// accessible fact.
const albums = app.getByTestId('nav-albums');
await expect(albums).toHaveAttribute('aria-current', 'page');
await toggle(app).click();
await expectQueue(app, true);
await expect(albums).toHaveAttribute('aria-current', 'page');
});
/** The toggle is a fourth way out, and it unwinds the entry like the
* other three through the panel's attribute, not its own handler. */
test('closes from the same toggle, leaving no entry behind', async ({
app,
}) => {
await toggle(app).click();
await expectQueue(app, true);
await toggle(app).click();
await expectQueue(app, false);
await app.goBack();
await expect(activeView(app)).not.toHaveAttribute(
'data-active-view',
'albums',
);
});
});
/**
* The column is not a place. Somebody docked it; back must not undock
* it, and navigating to another view must not take it away.
*
* This is the half a viewport breakpoint would get wrong: the mode is
* computed from the panel's own drag-resizable width, so the queue
* becomes a screen exactly when it stops being affordable as a column.
*/
test.describe('a docked queue is not in the back stack', () => {
test.beforeEach(async ({ app }) => {
await app.setViewportSize(DESKTOP);
});
test('survives a navigation, and back navigates the page', async ({
app,
}) => {
await app.getByTestId('nav-albums').click();
await expect(activeView(app)).toHaveAttribute('data-active-view', 'albums');
await toggle(app).click();
await expectQueue(app, true);
await expect(queue(app)).not.toHaveAttribute('overlay', '');
await app.getByTestId('nav-artists').click();
await expect(activeView(app)).toHaveAttribute('data-active-view', 'artists');
await expectQueue(app, true);
await app.goBack();
await expect(activeView(app)).toHaveAttribute('data-active-view', 'albums');
await expectQueue(app, true);
});
});
+187
View File
@@ -0,0 +1,187 @@
import { test, expect, openTheQueue } from '../support/fixtures.js';
/**
* #24 the queue panel does not take the page's width away from it.
*
* The panel is `flex-shrink: 0` in the flow of `.content-area`, so an
* open queue used to be paid for by the main panel. Measured on
* Playlists before the fix:
*
* | viewport | main panel |
* |---|---|
* | 900×600 | 379px all three header actions clipped |
* | 390×780 | 69px |
* | 320×600 | **0px** |
*
* **900×600 is the worst desktop case, not the 800×600 minimum**, and
* that is the trap this file exists to keep closed: the sidebar
* collapses to icons *below* 900, so the main panel is 843px at 899 and
* 700px at 900. A spec that checks "the minimum" and stops has not
* checked the worst case which is what every viewport list in this
* suite did before this.
*
* These assert the *content's* width rather than the panel's mode
* wherever they can, because the mode is the mechanism and the width is
* the complaint.
*/
/** The bands from plan 018's size matrix, plus the pixel above the collapse. */
const BANDS = [
{ name: 'a wide desktop (1280×800)', width: 1280, height: 800, inline: true },
{ name: 'the default window (1100×720)', width: 1100, height: 720, inline: true },
{ name: 'a laptop (1024×768)', width: 1024, height: 768, inline: true },
{ name: 'the worst desktop width (900×600)', width: 900, height: 600, inline: false },
{ name: 'the enforced minimum (800×600)', width: 800, height: 600, inline: false },
{ name: 'a phone (390×780)', width: 390, height: 780, inline: false },
{ name: '400% zoom (320×600)', width: 320, height: 600, inline: false },
];
/**
* How much room the content has, and whether the shell needs scrolling
* to reach any of itself.
*/
const shellGeometry = (page: import('@playwright/test').Page) =>
page.evaluate(() => {
const main = document.querySelector('#main-content')!.getBoundingClientRect();
const panel = document.querySelector('#queue-panel')!;
return {
mainWidth: Math.round(main.width),
overlay: panel.hasAttribute('overlay'),
open: panel.hasAttribute('open'),
bodyScrollWidth: document.body.scrollWidth,
bodyClientWidth: document.body.clientWidth,
};
});
/**
* Opening the queue is `openTheQueue`, which takes the route this
* viewport offers. It used to be a local helper that clicked
* `#queue-button` unconditionally, and #59 hid that button below
* 600px -- so the two phone bands here failed on a build where the
* queue was working perfectly, having been asserting *how* it opens as
* much as what it does.
*/
const openQueue = openTheQueue;
test.describe('an open queue leaves the content its width', () => {
for (const band of BANDS) {
test(`at ${band.name}`, async ({ app }) => {
await app.setViewportSize({ width: band.width, height: band.height });
await openQueue(app);
// The mode is settled by a ResizeObserver, so poll rather than
// read once: a single read races the resize and reports the
// previous viewport's answer.
await expect
.poll(async () => (await shellGeometry(app)).overlay)
.toBe(!band.inline);
const geo = await shellGeometry(app);
// The floor is the point of the whole issue. Inline, the queue is
// affordable and the content keeps the rest; as an overlay the
// content keeps *everything*, which is what makes 0px at 320
// impossible rather than merely unlikely.
expect(geo.mainWidth).toBeGreaterThanOrEqual(320);
if (!band.inline) {
expect(geo.mainWidth).toBeGreaterThanOrEqual(
Math.min(band.width, 320),
);
}
// And opening the queue must not make the shell overflow.
expect(geo.bodyScrollWidth).toBeLessThanOrEqual(geo.bodyClientWidth);
});
}
});
test.describe('an overlaid queue says it is over the content', () => {
test.beforeEach(async ({ app }) => {
await app.setViewportSize({ width: 900, height: 600 });
});
test('draws a scrim and closes when it is clicked', async ({ app }) => {
await openQueue(app);
const panel = app.locator('#queue-panel');
await expect(panel).toHaveAttribute('overlay', '');
// The scrim is `aria-hidden` on purpose — it is a dismissal target,
// and the named routes out are the close button and Escape — so it
// is located structurally rather than by role.
await panel.evaluate((el) =>
el.shadowRoot!.querySelector<HTMLElement>('.scrim')!.click(),
);
await expect(app.locator('#queue-button')).toHaveAttribute(
'aria-expanded',
'false',
);
});
/**
* `getByRole`, not a shadow-root query: this repo has shipped a
* nameless control three times, and a drawer with a scrim is exactly
* the shape that grows a fourth.
*/
test('offers a named close button', async ({ app }) => {
await openQueue(app);
const close = app.getByRole('button', { name: 'Close queue' });
await expect(close).toBeVisible();
await close.click();
await expect(app.locator('#queue-button')).toHaveAttribute(
'aria-expanded',
'false',
);
});
test('closes on Escape and gives focus back to the toggle', async ({
app,
}) => {
const toggle = app.locator('#queue-button');
await toggle.focus();
await toggle.click();
await expect(toggle).toHaveAttribute('aria-expanded', 'true');
await app.keyboard.press('Escape');
await expect(toggle).toHaveAttribute('aria-expanded', 'false');
await expect(toggle).toBeFocused();
});
});
/**
* The inline panel is the mode that already worked, and the one every
* other queue spec is written against. It keeps its resize handle and
* gains none of the overlay's chrome.
*/
test.describe('a wide window keeps the queue beside the content', () => {
test('no scrim, no close button, and the content is narrower', async ({
app,
}) => {
await app.setViewportSize({ width: 1280, height: 800 });
const widthWithoutQueue = (await shellGeometry(app)).mainWidth;
await openQueue(app);
await expect(app.locator('#queue-panel')).not.toHaveAttribute(
'overlay',
'',
);
const geo = await shellGeometry(app);
expect(geo.mainWidth).toBeLessThan(widthWithoutQueue);
await expect(
app.getByRole('button', { name: 'Close queue' }),
).toHaveCount(0);
});
});
+299
View File
@@ -0,0 +1,299 @@
import {
test,
expect,
callBinding,
navigateTo,
LONG_TRACK,
NO_QUEUE_SOURCE,
} from '../support/fixtures.js';
import type { Page } from '@playwright/test';
/**
* The queue panel's mouse model (#43): single click selects, ctrl and
* shift extend, double click plays from that row.
*
* **All four already worked, and nothing pinned any of them** which is
* the whole reason the report could be made and could not be settled.
* `queue-reorder.spec.ts` covers the keyboard, `queue-overlay.spec.ts`
* covers the panel's mode, and the component tier has the reorder
* arithmetic; the pointer path had no coverage in either tier, so
* "selection is broken here" and "selection is fine here" were equally
* consistent with a green suite.
*
* Two things this spec is deliberately shaped around.
*
* **The clicks are real.** A `dispatchEvent(new MouseEvent('click'))`
* on a row exercises the delegated handler and *not* the question being
* asked, which is what the pointer lands on: the rows carry
* `explore-link` names that take their own clicks, and a synthetic
* event aimed at the row reports a selection the mouse would never have
* produced. Every click here goes through Playwright.
*
* **The playing assertions use the 90-second fixture.** Every other
* track is 26 seconds, so "double click plays row 3" read against a
* 2-second track reports whatever auto-advance moved on to measured
* during this work as row 3 double-clicked and row 4 playing, which
* reads exactly like an off-by-one in `PlayIndex` and is not one.
*/
/**
* How long a click may take to show up as a highlight.
*
* **A poll with the default 5s timeout cannot see this defect**, and
* that is the point of naming it. `queue-panel` repaints its rows two
* ways `onSelectionChanged()` calls `virtualizer.requestUpdate()`,
* and `.keyFunction` is a per-render arrow, which is itself a changed
* property the virtualizer reacts to. With **both** removed the
* highlight still arrives, on whatever unrelated render happens next:
* measured at 134ms, 3,866ms and 5,816ms for three clicks, against
* 5ms, 16ms and 17ms on a healthy build.
*
* A user cannot tell "four seconds late" from "broken", which is very
* close to what this issue reports. So the assertion is that the
* highlight is *prompt*, with a bound ~30x the measured healthy case
* and an order of magnitude under the degraded one.
*/
const HIGHLIGHT_MS = 500;
/** The queue's own answer, never the DOM's. */
async function playing(app: Page): Promise<{ index: number; title: string }> {
const state = await callBinding<{
currentIndex: number;
tracks: { title: string }[];
}>(app, 'queue.Queue.GetState');
return {
index: state.currentIndex,
title: state.tracks[state.currentIndex]?.title ?? '',
};
}
/** Which rows are selected, as the accessibility tree sees it. */
const selected = (app: Page) =>
app.evaluate(() =>
[
...document
.querySelector('queue-panel')!
.shadowRoot!.querySelectorAll('[data-index]'),
]
.filter((row) => row.getAttribute('aria-selected') === 'true')
.map((row) => Number((row as HTMLElement).dataset['index'])),
);
/**
* Six tracks with the long one in the middle, so a "play from here"
* assertion has something to land on that will still be playing when it
* is read back.
*/
async function queueSixAndOpen(app: Page): Promise<void> {
const paths = await app.evaluate(async (longTitle) => {
// `TrackName`, not `Title`: the library model names it after the
// tag, and the *queue* is what calls it `title`.
const tracks = (await window.__yjEvents.call(
'library.Library.GetTracks',
[0],
10_000,
)) as { FilePath: string; TrackName: string; Album: string }[];
const long = tracks.find((t) => t.TrackName === longTitle);
/**
* **Tracks that have an album**, which is a requirement of one of
* the tests and was previously left to luck (#156).
*
* `explore-link` routes a track name to its *album's* page, so a
* track with no album renders a name that navigates nowhere and
* the fixture library deliberately contains two (`01 Tone A`,
* `02 Tone B`). Which tracks arrive first is `audio_files.id`
* order, i.e. the order the **scan** inserted them, which depends
* on concurrency and directory traversal: locally the first eight
* all had albums and the spec passed twice over, and CI rebuilds
* its seed with a real scan and got a different eight.
*
* Asking for what the test needs is the fix. It is not a
* narrowing: every assertion here wants an ordinary track, and
* "the first five rows" was never a way to ask for one in a
* library whose whole purpose is edge cases.
*/
const rest = tracks
.filter((t) => t.TrackName !== longTitle && t.Album !== '')
.slice(0, 5);
// Index 3 is the long one: far enough down that a shift-extend has
// room either side of it.
return [
...rest.slice(0, 3).map((t) => t.FilePath),
long!.FilePath,
...rest.slice(3).map((t) => t.FilePath),
];
}, LONG_TRACK);
await callBinding(app, 'queue.Queue.SetQueue', [
paths,
0,
false,
NO_QUEUE_SOURCE,
]);
// A closed panel renders no list at all.
await app.locator('#queue-button').click();
await expect(app.locator('queue-panel .track-item').first()).toBeVisible();
await expect(app.locator('queue-panel .track-item')).toHaveCount(6);
}
/** The row at a data-index, not the nth child: see the note in the file. */
const row = (app: Page, index: number) =>
app.locator(`queue-panel .track-item[data-index="${index}"]`);
test.describe('selecting in the queue with a mouse', () => {
// The suite shares one backend in file order, and a queue and an open
// panel both outlive the page. `queue-reorder.spec.ts` sets the
// precedent and the reason: a spec that spends state fails the next
// one, in a list that reads like a regression in whatever you hold.
test.afterEach(async ({ app }) => {
await callBinding(app, 'queue.Queue.Clear').catch(() => {
/* an empty queue is the state we were asking for */
});
const open = await app.locator('queue-panel[open]').count();
if (open > 0) await app.locator('#queue-button').click();
});
test('a single click selects that row and only that row', async ({ app }) => {
await queueSixAndOpen(app);
await row(app, 1).click();
await expect
.poll(() => selected(app), { timeout: HIGHLIGHT_MS })
.toEqual([1]);
// And it *replaces* rather than accumulating, which is the half a
// test of one click cannot see.
await row(app, 4).click();
await expect
.poll(() => selected(app), { timeout: HIGHLIGHT_MS })
.toEqual([4]);
});
test('ctrl adds a row and shift extends a range', async ({ app }) => {
await queueSixAndOpen(app);
await row(app, 1).click();
await row(app, 3).click({ modifiers: ['Control'] });
await expect
.poll(() => selected(app), { timeout: HIGHLIGHT_MS })
.toEqual([1, 3]);
// From the last row touched, so 3→5, keeping the ctrl-picked 1.
await row(app, 5).click({ modifiers: ['Shift'] });
await expect
.poll(() => selected(app), { timeout: HIGHLIGHT_MS })
.toEqual([1, 3, 4, 5]);
// A plain click collapses the whole thing back to one.
await row(app, 2).click();
await expect
.poll(() => selected(app), { timeout: HIGHLIGHT_MS })
.toEqual([2]);
});
test('a double click plays from that row', async ({ app }) => {
await queueSixAndOpen(app);
// Row 3 is the 90-second track. Asked of the backend, because the
// panel's own highlight is a different claim.
await row(app, 3).dblclick();
await expect.poll(() => playing(app)).toEqual({
index: 3,
title: LONG_TRACK,
});
// Playing is not selecting: the double click clears the selection
// it made on the way through, or every play leaves a row looking
// picked out for an action the user did not ask for.
await expect.poll(() => selected(app)).toEqual([]);
});
/**
* The one collision the report is actually about.
*
* Every track, album and artist name in the app navigates
* (`utils/explore-link.ts`), and it does that by **stopping the
* click's propagation** in its own words, "the row must not also
* treat it as a selection". So a click that lands on the name text
* navigates and selects nothing, in the queue panel and in the track
* list alike.
*
* That is deliberate and it is pinned here rather than argued with,
* because the measurement says the queue is not the surface where it
* hurts: a horizontal hit-scan of a row at three heights makes the
* queue row **12%** link and the track list's row **21%** the panel
* the report calls broken is *less* covered by links than the list it
* calls correct. What is left is one deliberate exception, and a
* change to it should have to fail a test.
*/
test('a click on a name navigates instead, and that is the exception', async ({
app,
}) => {
await queueSixAndOpen(app);
await row(app, 1).click();
await expect
.poll(() => selected(app), { timeout: HIGHLIGHT_MS })
.toEqual([1]);
// `.track-title .explore-link`, not `.explore-link` first(): a row
// has two, and which one `first()` finds depends on whether the
// *title* is a link at all. It is not, for a track with no album —
// `explore-link` renders plain text where it cannot route — so the
// loose locator silently clicked the **artist** instead and the
// assertion below was about a different destination than the one
// being exercised (#156).
await row(app, 2).locator('.track-title .explore-link').click();
await expect(app.getByTestId('main-content')).toHaveAttribute(
'data-active-view',
'explore-album-details',
);
// Row 2 did not join the selection — the link took the click.
await expect.poll(() => selected(app)).toEqual([1]);
await navigateTo(app, 'tracks');
});
/**
* And the other half of that bargain: the link holds its navigation
* for one double-click interval and drops it if a second click
* arrives, so double-clicking a *name* still plays the row rather
* than navigating away from it. That is what makes the exception
* above survivable, and it is the part most likely to break silently
* if the grace interval is ever removed.
*/
test('a double click on a name plays rather than navigating', async ({
app,
}) => {
await queueSixAndOpen(app);
// Read rather than assumed: which view the app lands on is the
// user's `DefaultPage`, so naming one here would be asserting on a
// config value in a test about a double click.
const before = await app
.getByTestId('main-content')
.getAttribute('data-active-view');
await row(app, 3).locator('.explore-link').first().dblclick();
await expect.poll(() => playing(app)).toEqual({
index: 3,
title: LONG_TRACK,
});
await expect(app.getByTestId('main-content')).toHaveAttribute(
'data-active-view',
before!,
);
});
});
+11 -6
View File
@@ -1,4 +1,4 @@
import { test, expect } from '../support/fixtures.js';
import { test, expect, navigateTo } from '../support/fixtures.js';
/**
* Plan 007 phase 5: a11y.1 and a11y.2, frozen against the real app.
@@ -18,16 +18,19 @@ test.describe('Settings is reachable without a mouse', () => {
}) => {
await app.getByTestId('nav-settings').click();
const headers = app.locator('config-page config-section .header');
// Per *section*, not per `.header`: a section holding a
// `job-panel` (#27) also contains `job-details-drawer`, whose own
// header carries that class and is not a disclosure.
const sections = app.locator('config-page config-section');
await expect(headers.first()).toBeVisible();
await expect(sections.first()).toBeVisible();
const count = await headers.count();
const count = await sections.count();
expect(count).toBeGreaterThan(4);
for (let i = 0; i < count; i++) {
const header = headers.nth(i);
const header = sections.nth(i).locator('.header').first();
expect(await header.evaluate((el) => el.tagName)).toBe('BUTTON');
expect(['true', 'false']).toContain(
@@ -56,7 +59,9 @@ test.describe('Settings is reachable without a mouse', () => {
test.describe("Downloads' tabs are tabs", () => {
test('arrow keys move the selection and swap the panel', async ({ app }) => {
await app.getByTestId('nav-downloads').click();
// By event, not by nav item: with no download client configured
// there is no Downloads destination to click (#25).
await navigateTo(app, 'downloads');
const view = app.locator('downloads-view');
const requests = view.getByRole('tab', { name: 'Requests' });
+269
View File
@@ -0,0 +1,269 @@
import { test, expect } from '../support/fixtures.js';
/**
* The top bar fits the window it is in (#143).
*
* **This is measured per child, not on the shell**, which is #69's
* lesson repeated one component over: `layout-overflow.spec.ts` asserts
* the *document* needs no sideways scrolling, and clipping inside a
* component is invisible to it which is exactly why that spec was
* green throughout this defect. What a user sees is a control rendered
* past the edge of the bar it belongs to, so that is what is asserted.
*
* **And it is measured with a job running**, which is the half the
* original report missed. `job-indicator` is `hidden` while idle and up
* to 235px wide when it is not, so the bar was 611px inside 600 sitting
* still and 862px during a scan 171 to 262px of overflow, arriving
* exactly when a user has reason to look at that bar. Nothing else in
* this suite has ever measured a layout with work in flight;
* `/__test/emit` stages it without staging the scan.
*/
type Page = import('@playwright/test').Page;
/**
* The widths this asks about.
*
* 600 is the bottom of the Compact band (#24) and where the defect
* lands; 899 and 900 straddle `nav-history` appearing (68px more to
* find, at the width that just gained the sidebar's labels); 800 is the
* enforced minimum.
*
* **390 is kept, and what it asks changed with #57.** There is no bar
* to fit below 600px any more it is out of the grid and visually
* hidden so "nothing hangs out of it" is a claim about an element
* with no row, and would pass on a build that had merely broken the
* bar. Dropping the width would be dropping the one place this file
* can still say something true about a phone, so it asserts the
* *stronger* property instead, below: the bar is out of the layout
* altogether, which is the thing #57 wanted and the thing that makes
* fitting moot.
*/
const WIDTHS = [600, 800, 899, 900, 1440];
/** Where #57 leaves the bar, and where the desktop still has one. */
const PHONE_WIDTH = 390;
/**
* A scan whose title is as long as a real one gets. The label is capped
* at 12rem by the component, so this is the widest the indicator can
* be measuring with "Scanning" instead reports a bar that fits and a
* defect that is 100px smaller than it is.
*/
const LONG_JOB = {
id: 'top-bar-fit',
kind: 'library-scan',
state: 'running',
title: 'Scanning Music from the external drive',
current: 40,
total: 100,
};
/**
* Every child's right edge against the bar's own content box.
*
* The content box, not `clientWidth`: the bar has a 2em right gutter,
* and a control sitting in the padding is already the failure it is
* simply one that `scrollWidth` under-reports, because `scrollWidth`
* counts the left padding and not the right.
*/
const overflowingChildren = (page: Page) =>
page.evaluate(() => {
const bar = document.querySelector<HTMLElement>('header.top-bar')!;
const style = getComputedStyle(bar);
const box = bar.getBoundingClientRect();
const left = box.left + parseFloat(style.paddingLeft);
const right = box.right - parseFloat(style.paddingRight);
return [...bar.children]
.filter((child) => {
const cs = getComputedStyle(child);
// Out of flow is out of the question: a collapsed wordmark is
// `position: absolute` and 1px wide precisely so it costs the
// row nothing.
if (cs.display === 'none' || cs.position === 'absolute') return false;
const r = child.getBoundingClientRect();
return r.width > 0 && (r.right > right + 0.5 || r.left < left - 0.5);
})
.map((child) => {
const r = child.getBoundingClientRect();
return `${child.tagName.toLowerCase()}: ${Math.round(r.left)}..${Math.round(r.right)} outside ${Math.round(left)}..${Math.round(right)}`;
});
});
/** What the fit pass gave up, read back off the DOM it changed. */
const collapsed = (page: Page) =>
page.evaluate(() => ({
wordmark: !!document.querySelector('header.top-bar hgroup.yj-collapsed'),
jobLabel: !!document.querySelector('job-indicator[compact]'),
}));
test.describe('the top bar fits the window', () => {
/**
* The phone's answer, which is not "it fits" (#57).
*
* The bar has no grid row below 600px, so measuring its children
* against its content box is measuring a 1px box that is already
* invisible a fit pass would collapse the wordmark every time and
* report success about nothing, which is why `measureTopBarFit`
* declines to run at all when the bar is out of flow. What is worth
* asserting here is that the fit pass has not quietly started
* *undoing* that: a rule that put the bar back in the layout would
* pass every assertion in this file and cost a 439px screen 12% of
* its height.
*/
test(`the bar is out of the layout at ${PHONE_WIDTH}px, with a job running`, async ({
app,
testctl,
}) => {
await app.setViewportSize({ width: PHONE_WIDTH, height: 600 });
await testctl.emit('JobsChanged', [LONG_JOB]);
// Not merely hidden: `display: none` on the header would satisfy
// "invisible" and leave the 3.25em row exactly where it was. So
// the assertion is that the content starts where the row above it
// ends -- and with a job staged, the row above it is the jobs
// band, which is the whole reason this row could go.
await expect
.poll(() =>
app.evaluate(() => {
const bar = document.querySelector<HTMLElement>('header.top-bar')!;
const main = document.querySelector<HTMLElement>('.main-panel')!;
const band = document.querySelector<HTMLElement>('job-band')!;
return {
position: getComputedStyle(bar).position,
gap:
Math.round(main.getBoundingClientRect().top) -
Math.round(band.getBoundingClientRect().bottom),
};
}),
)
.toEqual({ position: 'absolute', gap: 0 });
// And the work is still visible, in the band that replaced the
// indicator (#62) — which is what made this row removable at all.
await expect(app.locator('job-indicator')).toBeHidden();
await expect(app.locator('job-band').locator('job-row')).toHaveCount(1);
await app.setViewportSize({ width: 1440, height: 900 });
});
for (const width of WIDTHS) {
test(`no control sits outside the bar at ${width}px, idle`, async ({
app,
}) => {
await app.setViewportSize({ width, height: 600 });
await expect.poll(() => overflowingChildren(app)).toEqual([]);
});
test(`no control sits outside the bar at ${width}px, with a job running`, async ({
app,
testctl,
}) => {
await app.setViewportSize({ width, height: 600 });
await testctl.emit('JobsChanged', [LONG_JOB]);
// The indicator has to actually be up, or this test passes by
// measuring the idle case under another name.
await expect(app.locator('job-indicator')).toBeVisible();
await expect.poll(() => overflowingChildren(app)).toEqual([]);
});
}
/**
* The other half of "measured, never breakpointed": a rule that
* collapses defensively at every narrow width fits just as well and
* is a worse app. 1440 is roomy at any job title; 899 was measured to
* fit with the longest one, because `nav-history` is not there yet.
*/
test('nothing is given up where there is room for it', async ({
app,
testctl,
}) => {
await app.setViewportSize({ width: 1440, height: 900 });
await testctl.emit('JobsChanged', [LONG_JOB]);
await expect(app.locator('job-indicator')).toBeVisible();
await expect.poll(() => collapsed(app)).toEqual({
wordmark: false,
jobLabel: false,
});
});
/**
* And it gives them back. The pass starts from all-visible every
* time, so this is the property that a rule which only ever *added*
* to the collapsed set would fail the wordmark would be gone for
* the rest of the session after one narrow moment.
*/
test('the wordmark comes back when the window does', async ({
app,
testctl,
}) => {
await testctl.emit('JobsChanged', [LONG_JOB]);
await app.setViewportSize({ width: 600, height: 600 });
await expect.poll(() => collapsed(app)).toEqual({
wordmark: true,
jobLabel: true,
});
await app.setViewportSize({ width: 1440, height: 900 });
await expect.poll(() => collapsed(app)).toEqual({
wordmark: false,
jobLabel: false,
});
});
/**
* The wordmark yields its width and not its existence: `display:
* none` would take the document from one top-level heading to none.
*/
test('the collapsed wordmark is still the document heading', async ({
app,
testctl,
}) => {
await testctl.emit('JobsChanged', [LONG_JOB]);
await app.setViewportSize({ width: 600, height: 600 });
await expect.poll(() => collapsed(app)).toMatchObject({ wordmark: true });
await expect(
app.getByRole('heading', { name: 'YellowJacket', level: 1 }),
).toHaveCount(1);
});
/**
* And the indicator keeps saying what it is doing after its visible
* label goes the `sr-only` live region is what announces the state,
* which is the same argument the phone's own rule was written on.
*/
test('the job indicator still announces its state without its label', async ({
app,
testctl,
}) => {
await testctl.emit('JobsChanged', [LONG_JOB]);
await app.setViewportSize({ width: 600, height: 600 });
await expect.poll(() => collapsed(app)).toMatchObject({ jobLabel: true });
const spoken = await app
.locator('job-indicator')
.evaluate(
(el) =>
el.shadowRoot?.querySelector('[aria-live]')?.textContent?.trim() ?? '',
);
expect(spoken).toContain('Scanning Music from the external drive');
// Leave the app as the next spec expects to find it.
await app.setViewportSize({ width: 1440, height: 900 });
});
});
+7 -2
View File
@@ -4,6 +4,7 @@ import {
eventNames,
resetEvents,
waitForEvent,
navigateTo,
} from '../support/fixtures.js';
/**
@@ -39,7 +40,9 @@ test.describe('view lifecycle', () => {
test('a keypress on Settings does not reach the Autotag queue', async ({
app,
}) => {
await app.getByTestId('nav-autotag').click();
// By event, not by nav item: Autotag is hidden by default (#25)
// and a hidden view is still reachable.
await navigateTo(app, 'autotag');
await expect(app.getByTestId('main-content')).toHaveAttribute(
'data-active-view',
'autotag',
@@ -83,7 +86,9 @@ test.describe('view lifecycle', () => {
// The other half of the same bug (H-2): two document keydown handlers
// with no arbitration meant `s` on this page skipped the album *and*
// toggled shuffle. As a panel binding it can only mean one thing.
await app.getByTestId('nav-autotag').click();
// By event, not by nav item: Autotag is hidden by default (#25)
// and a hidden view is still reachable.
await navigateTo(app, 'autotag');
await expect
.poll(() => pendingCount(app))
.toMatch(/^Pending \(\d+\)$/);
+116
View File
@@ -0,0 +1,116 @@
import { test, expect, navigateTo } from '../support/fixtures.js';
/**
* Which destinations the navigation offers (#25).
*
* Eleven sidebar entries is more than most libraries need, so they are
* individually toggleable from Settings, Autotag is off until asked for
* and Downloads is absent until there is a client to download with.
*
* **The assertions are about the navigation, not about the setting.**
* "The config was saved" is the plumbing, and the two most recent bugs
* in this area #69 and #72 both shipped green under specs that
* measured exactly that. What a person sees is whether the item is in
* the accessibility tree, and whether the view is still reachable when
* it is not.
*
* This runs against the seeded app, whose config is defaults and whose
* download client list is empty, so the initial state below is what a
* fresh install looks like.
*/
type Page = import('@playwright/test').Page;
const navItem = (page: Page, label: string) =>
page.getByRole('button', { name: label, exact: true });
/** The Navigation section's checkbox for a destination. */
const viewToggle = (page: Page, label: string) =>
page.getByRole('checkbox', { name: `Show ${label} in the navigation` });
async function openNavigationSettings(page: Page): Promise<void> {
await page.getByTestId('nav-settings').click();
const section = page.locator(
'config-page config-section[heading="Navigation"] .header',
);
await expect(section).toBeVisible();
if ((await section.getAttribute('aria-expanded')) === 'false') {
await section.click();
}
await expect(section).toHaveAttribute('aria-expanded', 'true');
}
test.describe('configurable destinations', () => {
test('Autotag is off by default and Downloads needs a client', async ({
app,
}) => {
await expect(app.getByTestId('nav-home')).toBeVisible();
await expect(app.getByTestId('nav-autotag')).toHaveCount(0);
await expect(app.getByTestId('nav-downloads')).toHaveCount(0);
});
/**
* Hiding takes the item away and nothing else. Detail views navigate
* into these and the launch page is one of them, so a destination
* with no nav item still has to open.
*/
test('a hidden destination is still reachable', async ({ app }) => {
await navigateTo(app, 'autotag');
await expect(app.getByTestId('main-content')).toHaveAttribute(
'data-active-view',
'autotag',
);
// And nothing is falsely lit while standing on it -- the same rule
// a detail view follows, with no special case for either.
await expect(navItem(app, 'Home')).toHaveAttribute('aria-current', 'false');
});
test('switching Autotag on adds it to the sidebar', async ({ app }) => {
await openNavigationSettings(app);
await viewToggle(app, 'Autotag').check();
await expect(app.getByTestId('nav-autotag')).toBeVisible();
// Clicking it is the point of having it.
await app.getByTestId('nav-autotag').click();
await expect(app.getByTestId('main-content')).toHaveAttribute(
'data-active-view',
'autotag',
);
// Put it back, or the next spec against this app sees a library
// this one changed.
await openNavigationSettings(app);
await viewToggle(app, 'Autotag').uncheck();
await expect(app.getByTestId('nav-autotag')).toHaveCount(0);
});
/**
* Settings has no toggle at all, rather than a toggle that refuses:
* a user who hides it cannot get back to unhide it. The backend
* refuses it too, because `config.toml` is hand-editable.
*/
test('Settings cannot be switched off', async ({ app }) => {
await openNavigationSettings(app);
await expect(viewToggle(app, 'Settings')).toBeDisabled();
await expect(app.getByTestId('nav-settings')).toBeVisible();
});
/**
* The launch page is refused while it is the launch page, which is a
* state the user can leave by changing the launch page above it.
*/
test('the launch page cannot be switched off', async ({ app }) => {
await openNavigationSettings(app);
await expect(viewToggle(app, 'Home')).toBeDisabled();
});
});
+73
View File
@@ -111,6 +111,79 @@ export async function bindingCalls(page: Page): Promise<string[]> {
return calls.map(nameOf);
}
/**
* Go to a view without going through the navigation.
*
* `navigate` is the event the shell listens for and every nav item, card
* and detail view dispatches, so this is the app's own mechanism rather
* than a test-only door. It exists because a destination is not
* guaranteed to have a nav item any more (#25): Autotag is hidden until
* the user asks for it and Downloads until a client exists, and a spec
* about what a *view* does should not also be asserting that the
* sidebar offers it.
*/
export async function navigateTo(page: Page, view: string): Promise<void> {
await page.evaluate(
(v) =>
void document.dispatchEvent(
new CustomEvent('navigate', {
detail: { view: v },
bubbles: true,
composed: true,
}),
),
view,
);
await page
.getByTestId('main-content')
.waitFor({ state: 'attached' });
}
/**
* Open the queue the way a user at this viewport would.
*
* **The route differs by width and that is the feature, not an
* inconvenience.** Above 600px the bottom bar carries a queue button.
* Below it that button is gone (#59) and the queue is reached from the
* full-screen Now Playing view, which the mini player's art opens
* "reachable only from Now Playing", which is what the issue asks for.
*
* It is here rather than in one spec because four files need it, and
* because a spec that hard-codes `#queue-button` is quietly asserting
* *which* route exists as well as what the queue does. Four of them
* were, which is how hiding one button failed ten tests about
* something else.
*
* The width is read from the page rather than passed, so a caller that
* resizes and then opens does not have to say so twice.
*/
export async function openTheQueue(page: Page): Promise<void> {
const toggle = page.locator('#queue-button');
if (await toggle.isVisible()) {
if ((await toggle.getAttribute('aria-expanded')) !== 'true') {
await toggle.click();
}
await expect(toggle).toHaveAttribute('aria-expanded', 'true');
return;
}
// The phone: through Now Playing. `open-now-playing` is the mini
// player's art, which is a button only below 600px.
if (
(await page.getByTestId('main-content').getAttribute('data-active-view')) !==
'now-playing'
) {
await page.getByTestId('open-now-playing').click();
}
await page.getByTestId('npv-queue').click();
await expect(page.locator('#queue-panel')).toHaveAttribute('open', '');
}
/** Thin client for the dev-only /__test/ surface (backend/testctl). */
export class TestCtl {
constructor(private readonly baseURL: string) {}
@@ -7,6 +7,7 @@ export {
};
export type {
AlbumMatchView,
AlignmentView,
ApplyResultView,
CandidateView,
@@ -1,6 +1,61 @@
// Cynhyrchwyd y ffeil hon yn awtomatig. PEIDIWCH Â MODIWL
// This file is automatically generated. DO NOT EDIT
/**
* AlbumMatchView is "the autotagger already has a confident match for
* the album you are looking at".
*
* It is deliberately not a score. The album page renders a suggestion,
* and a suggestion has to be actionable: which release, what it is
* called, and whether acting on it here would do the whole album or
* only part of it.
*/
export interface AlbumMatchView {
/**
* GroupKey is the tagging group the actions operate on.
*/
"groupKey": string;
/**
* Recommendation is the tier, as a string, for a caller that
* wants to render the strength rather than trust the filter.
*/
"recommendation": string;
/**
* Score is the top candidate's raw score, 0..1.
*/
"score": number;
/**
* ReleaseMBID is the release Apply would write.
*/
"releaseMbid": string;
/**
* Title and ArtistCredit name that release, so the banner can say
* what it is offering rather than "a match".
*/
"title": string;
"artistCredit": string;
/**
* TrackCount is the group's local track count.
*/
"trackCount": number;
/**
* GroupCount is how many tagging groups this album spans.
*
* More than one means a multi-disc album (one group per disc), and
* it is the reason this is a field rather than an implementation
* detail: applying "the album" from a single button would retag
* one disc of three and leave the folder holding a mix of old and
* new tags. The caller offers review instead.
*/
"groupCount": number;
}
/**
* AlignmentView mirrors autotag.TrackAlignment. LocalIndex of -1
* means "candidate has this track, folder doesn't" (status=missing).
@@ -160,6 +160,39 @@ export function ListPendingFolders(libraryID: number): $CancellablePromise<$mode
return $Call.ByID(617511590, libraryID);
}
/**
* MatchForAlbum answers "does the autotagger have something confident
* to say about this album", for the album detail page.
*
* Three things about it are load-bearing.
*
* **It costs no MusicBrainz request.** Everything it needs is already
* on disk: `tagging_items` carries the top score and release from the
* background prefetch, and `tagging_candidates` durably holds the
* scored list. The rate limiters here are shared with every page the
* user can open, so a lookup that fires on page load must not join
* that queue which also means this returns nothing for a folder
* nobody has scored yet, rather than scoring it now. That is the
* right trade: the prefetch will get to it, and a page that silently
* spends a minute of somebody's MusicBrainz budget to draw a banner
* is worse than a page that says nothing.
*
* **The tier is computed, not read.** `tagging_items.score` is the raw
* number and `Recommend` is what turns it into a claim capping it
* for an ambiguous runner-up, an incomplete alignment or a folder too
* small to corroborate itself. Filtering on the raw score would
* promise confidence the scorer had explicitly withheld.
*
* **Nothing is said about an album the user has already answered
* for.** Only a `pending` group qualifies: `confirmed` covers both a
* finished apply and an explicit "leave as is", and `skipped` is the
* user saying not now. Re-offering either is nagging, and "leave as
* is" would be actively wrong to argue with.
*/
export function MatchForAlbum(albumID: number): $CancellablePromise<$models.AlbumMatchView | null> {
return $Call.ByID(514173221, albumID);
}
/**
* RetagGroup flips a group back to 'pending' so the user can
* re-review after an apply or skip. Drops the durably-cached
@@ -69,6 +69,14 @@ export function GetPinDefaultPlaylist(): $CancellablePromise<boolean> {
return $Call.ByID(3818283301);
}
/**
* GetPopupVolume reports whether the bottom bar's volume control is a
* click-to-open popup rather than an inline slider (#42).
*/
export function GetPopupVolume(): $CancellablePromise<boolean> {
return $Call.ByID(2885777);
}
/**
* GetQueueFallback returns what plays, if anything, once the queue
* runs out.
@@ -112,6 +120,16 @@ export function GetTrackListColumns(): $CancellablePromise<tracklist$0.Column[]
return $Call.ByID(3426289065);
}
/**
* GetViewVisibility reports which primary views the sidebar should
* show, answered for every known view rather than only the ones the
* config mentions -- so the frontend filters on a value and never has
* to hold a second copy of the defaults.
*/
export function GetViewVisibility(): $CancellablePromise<{ [_ in string]?: boolean } | null> {
return $Call.ByID(2798108026);
}
/**
* Load reads and parses the config file from disk.
*/
@@ -197,6 +215,18 @@ export function SetPinDefaultPlaylist(pin: boolean): $CancellablePromise<void> {
return $Call.ByID(372446849, pin);
}
/**
* SetPopupVolume saves the volume control's presentation.
*
* Nothing to validate: both values are legal at every width, and the
* frontend additionally stands the inline slider down below the phone
* breakpoint whatever this says, because that is about room rather than
* about preference.
*/
export function SetPopupVolume(popup: boolean): $CancellablePromise<void> {
return $Call.ByID(1430308453, popup);
}
/**
* SetQueueFallback validates and saves a new queue-fallback mode.
*/
@@ -247,6 +277,20 @@ export function SetTrackListColumns(columns: tracklist$0.Column[] | null): $Canc
return $Call.ByID(4226159685, columns);
}
/**
* SetViewVisible shows or hides one primary view.
*
* Two refusals, both about a state the user cannot get out of from the
* UI they would be left with: Settings is never hideable, and the
* launch page is never hideable while it is the launch page (change it
* first). Hiding a view does not make it unreachable -- `navigate`
* still resolves it, which detail views depend on -- it only takes the
* nav item away.
*/
export function SetViewVisible(view: string, visible: boolean): $CancellablePromise<void> {
return $Call.ByID(1751982648, view, visible);
}
/**
* Validate returns errors if there is a breaking issue with the config.
*/
@@ -431,8 +431,17 @@ export interface TopResult {
/**
* Library status populated from index cross-reference columns.
*
* LocalID is the one the cards read. It is the local row behind
* this entity an album, a file, an artist and it is set and
* cleared by a test against `audio_files`, so it means "there is
* something of mine here". InLibrary is written by the same pass
* but is a one-way ratchet the prune can only clear alongside a
* local id, so it is the weaker of the two and stays for scoring
* (`fwInLibrary`), which is where an approximate answer is fine.
*/
"inLibrary": boolean;
"localId"?: number;
}
/**
@@ -98,6 +98,26 @@ export function GetAlbumsByArtist(artist: string, libraryID: number): $Cancellab
return $Call.ByID(1456840721, artist, libraryID);
}
/**
* GetAlbumsCompleteness answers the same question for a screenful of
* albums in one query, keyed by album id.
*
* A card grid asks this about every card that has a local album behind
* it, and one query per card is how a grid of fifty albums becomes
* fifty round trips. The answer matters there for the reason it
* matters on the album page: an album held 9 tracks of 12 has to show
* the count, and a bare tick saying "in your library" is the complaint
* this whole rule came from.
*
* An album with no row in the result is one with no files, and it is
* absent rather than zeroed "I have none of this" and "I have no
* idea" are the same third state `Known` exists to keep apart, and a
* caller reading a missing key gets nothing rather than a confident 0.
*/
export function GetAlbumsCompleteness(albumIDs: number[] | null): $CancellablePromise<{ [_ in `${number}`]?: $models.AlbumCompleteness } | null> {
return $Call.ByID(531636827, albumIDs);
}
/**
* GetAllLibrariesWithTrackCounts lists the libraries and their sizes.
*/
@@ -142,6 +142,18 @@ export function SetVolume(desiredVolume: $models.UserVolume): $CancellablePromis
return $Call.ByID(1375836663, desiredVolume);
}
/**
* SystemOwnsVolume reports whether the platform's own control is the
* only volume control there is, so this app neither offers one nor
* remembers a level.
*
* It is bound: the frontend renders no `<volume-control>` when it is
* true, at any width.
*/
export function SystemOwnsVolume(): $CancellablePromise<boolean> {
return $Call.ByID(1027623185);
}
/**
* TrackLengthInSeconds returns the duration of the current track.
*/

Some files were not shown because too many files have changed in this diff Show More