Watchlist membership was only reachable from Explore cards and the
detail screen's action row, which drops the bookmark first on narrow
screens with no fallback in the overflow menu. Add an entry to
MediaContextMenu for movies and shows whenever a connected catalog
source can hold the item, covering card long-press everywhere and the
detail screen's overflow.
External-id resolution is session-cached per item on
CatalogSourcesProvider and shared with the detail screen. A cold cache
labels the entry "Add to Watchlist" and always adds (idempotent), so a
press can never turn into a surprise removal; "Remove" is offered once
cached membership proves it. Several capable sources open the same
per-source chooser the detail screen uses.
close#1822
The Explore tab appears for every Plex-backed profile because the Plex
Discover catalog source connects implicitly, with no way to opt out
short of a Jellyfin-only profile. Add a Show Explore Tab switch to
Appearance > Navigation that hides the tab in the bottom navigation and
side rail. UI-only: catalog sources stay connected so watchlist
surfaces keep working while the tab is hidden.
close#1844
Adds an "Anchor to Screen" toggle under Subtitle Styling (Android +
ExoPlayer only, default off). When enabled, the text SubtitleView is
sized to the full container instead of the letterboxed video rect, so
SRT/VTT/mov_text cues render in the black bars below widescreen video
and font size and the position setting become relative to the physical
screen height. Bitmap (PGS/VOB) and ASS/libass rendering are unchanged;
mpv already places plaintext subtitles in the margins by default.
close#1730
Vertical D-pad/arrow navigation stepped through the flat channel list,
which is number-sorted across servers. With overlapping channel numbers
from multiple DVRs, focus interleaved source groups and could dead-end
before the last displayed row. Derive the up/down order from the same
grouped rows the guide renders.
close#1843
With "Default to Favorite Channels" enabled and no favorites stored —
or only favorites left over from a since-rebuilt lineup — the favorites
filter reduced the guide to zero channels and GuideTab rendered just
the timeline bar: no rows, no message, no sign a filter was active.
Users read it as Live TV being broken; the Aug 8 report in #887 shows
44 channels and 447 grid programs loading in the log while the
screenshot shows a blank guide and 0 favorite channels.
When the filter removes every loaded channel, the guide tab now shows
an empty state naming the cause with a "Show All Channels" action that
clears the filter. The action stays D-pad reachable: the tab-bar focus
handoff falls through to the action's focus node while the empty state
replaces GuideTab, and activating it hands focus back to the restored
guide content. Favorites that match no loaded channel get the same
treatment as an empty favorites list.
Verified: flutter test test/screens/livetv/, analyzer parity,
clean_translations --check --strict, and slang codegen freshness.
Refs #887.
The Watch Next row previously only updated while the app was in the
foreground, so it drifted stale until the next launch. A WorkManager
periodic job (6h, network-connected, KEEP) now runs a headless Flutter
engine executing `systemShelfBackgroundMain`, which mirrors the
cold-start profile bind from cached tokens (never prompting for a PIN),
fetches Continue Watching through the existing multi-server aggregation,
and republishes the shelf through the normal Watch Next pipeline.
The job is armed by a committed foreground sync, cancelled when the
shelf is cleared, and re-armed after boot or app update only when
persisted shelf state exists. It skips entirely while a foreground
engine holds the shelf lifecycle lease, both to defer to the live app
and to avoid two engines sharing the database in one process. The Dart
isolate always reports completion over `backgroundSyncComplete`; the
worker hard-caps the run at 90 seconds and destroys the engine on the
main thread.
The Top Shelf extension now fetches Continue Watching directly from
Plex/Jellyfin/Emby instead of replaying a cache the app wrote on its
last foreground Discover pass. The app publishes per-profile server
descriptors on every shelf sync (`updateSources`): token-free metadata
in the app group, tokens in an app-group-shared keychain item, both
wiped by `clear`. On success the extension rewrites the cached payload
as the offline fallback; any fetch failure falls back to the previous
cache-replay behavior. Poster images are passed as remote URLs, so the
extension no longer depends on app-side artwork downloads.
Episodes now render season/series poster art (2:3, `.poster` shape)
instead of 16:9 episode stills, and labels lead with the S/E marker so
long titles no longer hide it behind the focused-item marquee. Shelf
schema v3 (Dart, Android, tvOS envelopes bumped together) discards
stale wide-art caches instead of letterboxing them into poster slots.
close#1474close#1835
Android TV's docked keyboard handles multiline editors natively, so
`automatic` no longer diverts them to the Flutter overlay there. Only
Apple TV keeps the overlay for multiline input — its modal fullscreen
system keyboard cannot edit multiline text. Surfaces that want the
overlay for editing ergonomics (mpv config, connection editor, dialog
text areas) already pin flutterOverlay explicitly.
Android TV returns to the platform keyboard for single-line fields; the
Flutter overlay stays for multiline and explicit call sites. The bugs
that forced the overlay (#1051, #1079) were an engine show/bind ordering
race, now repaired at the app level:
- MainActivity retries a soft-input show the engine dropped while the
FlutterView was not yet served (flutter/flutter#177360), rebinds the
IME key session once at first show, and consumes leaked D-pad keys
while the keyboard is visible (bounded restartInput budget) so focus
cannot wander behind a stuck keyboard.
- The platform text-input hint is activation-based, so gamepad pause and
the pre-IME D-pad intercept track a live session instead of mere field
focus.
- While a session is live with the keyboard away, Back closes it and is
consumed once, Select re-raises the keyboard, and arrows keep
caret-aware edge-escape navigation instead of dead-ending.
A focus step cost a fixed 180pt of pan travel regardless of what was
focused, so small controls felt sluggish and large cards hair-triggered
compared with the native focus engine, which prices a step by on-screen
geometry. Derive per-axis thresholds from the focused control's rect
(gain 1.1, clamped 100-360pt) and normalize axis resolution by them, so
a wide-flat tile steps vertically once the finger covers its height.
Focus scopes, the player's screen-sized catch-all surfaces, and nodes
without layout fall back to the fixed threshold, keeping player chrome
behavior unchanged.
Touch travel banked during the swipe repeat cooldown was released as a
second focus step by the first post-cooldown move frame, even when the
finger had stopped or was lifting. Re-anchor the swipe delta on every
frame inside the cooldown so a discrete flick emits exactly one step
while a sustained drag keeps repeating.
close#1756
Two regressions since 2.9.1 broke subtitles on transcoded playback. Since
a1b6a8971 sidecars load with the media behind a 10s open guard, so a
subtitle URL the server is slow to serve — Jellyfin extracting an
embedded stream while its transcoder spins up — tripped the guard: stop,
reopen without subtitles, "Selected subtitles could not be loaded"
snackbar, and an emptied subtitle menu. Since 2b3853a88 every embedded
Plex subtitle was handed to the player as a sidecar whose URL is the
original container, so a transcode also range-read and demuxed the
source over HTTP — for a 40 GB remux, purely to find a subtitle track —
which is also why PGS never appeared: the client was handed a container
to demux rather than a rendition to play.
Delivery is the server's job again, backported from the AVPlayer branch
(42ba01440, the subtitle subset of 6852ac274, and a3da81e83) and adapted
to main's mpv backend:
Plex burns every embedded track (subtitles=burn); only a real external
file with a /library/streams key stays a client-fetched sidecar. A burn
is a re-encode, so directPlay is withdrawn — a real PMS answers HTTP 400
to directPlay=1 with burn — and the burn is aimed by selecting the
stream on the part first via the selectStreams PUT, because the decision
endpoint ignores subtitleStreamID alongside subtitles=burn. An
unaimable or undeliverable burn (dvb_teletext) refuses the transcode and
falls back to warned direct play rather than welding the wrong language
in or silently dropping the caption. Main's per-preset
directPlay/directStream pinning is kept; verified against a live PMS
that burn works under directStream=0.
Jellyfin never offers image formats as External, so bitmaps fall through
to Encode and are burned; text External is withheld per request when the
effective selection — including the server's DefaultSubtitleStreamIndex —
is embedded, and offered when it is a real file, so a file is delivered
as a file and never fetched twice. The burned row is excluded from the
sidecars; remaining text rows stay extractable, which is how a secondary
track still renders over a transcode. Sidecar URLs now use the format
extension the endpoint expects instead of the reported codec name.
The controls and selection layers learn what burning means: burn
eligibility is the codec's property, so burned rows stay selectable in
the menu; any change away from a burned selection renegotiates with the
server instead of pretending a local switch worked; the visibility
shortcut explains itself instead of doing nothing; and the track manager
is told when the primary is server-rendered so it stops waiting out a
thirty-second deadline for a native track that is already pixels.
Verified: analyzer parity, clean_translations --check --strict, full
flutter test (5749), and decision-level runs against live Plex and
Jellyfin servers — text and PGS burn decisions, the directPlay=1+burn
400, External file delivery, an unchanged no-burn baseline, and a real
burn session serving its playlist. The pre-commit aggregate was bypassed
for pre-existing main-state findings outside this diff: 21 format-drifted
files and three unused test seams in lib/main.dart.
close#1738
Refs #1815, #1622.
A Plex transcode session always starts producing at zero: the decision
request never sent offset=, so any non-zero open - resuming a
transcoded title, or switching from Direct Play to a transcoded
quality mid-playback - opened a session whose produced window begins
at the start of the file and seeked it. mpv immediately requests a
segment the transcoder has not produced, PMS answers 404 for it and
every subsequent segment, and playback buffers forever.
Send offset=<seconds> (6dp) with the decision and start request - the
view offset on initial open, the resolved resume position on every
in-place reload - so the session begins producing at the position the
player consumes first. The playlist timeline is unchanged: an offset
session's media playlist still covers the full title from segment
zero, so the player keeps opening with start: at the resume position
and in-stream seeks work as before.
Before a native player opens an offset playlist, waitForTranscodeReady
walks the master playlist, the media playlist, and the segment
containing the offset, because PMS can publish a manifest before that
segment is fetchable and mpv treats the 404 as an HLS error. The probe
is best-effort: it never fails an open, hands off immediately on HTTP
500 (on the response and exception paths alike) so the server-limit
dialog stays prompt, stops on cancellation, skips itself when the
playlist durations never reach the offset, and stays out of the
endpoint-failover cascade. In-place reloads resolve the replacement
source only after the old stop report has gone out, so Plex cannot use
that stop to terminate the replacement transcode.
close#1840
The Maestro suites remain runnable locally through scripts/run_maestro.py
and scripts/run_maestro_ci.py; drop the workflow, the test that parsed it,
and the CONTRIBUTING reference to automatic PR coverage.
A transient GET failure on a healthy endpoint could park the client on an
unreachable fallback (e.g. the server host's Docker bridge gateway, which
plex.tv advertises as a local connection) for a full connect timeout, failing
every request in flight during that window (log bbr90).
The cascade now probes each candidate with an unauthenticated /identity
request under the discovery-race budget and only switches when it answers as
the expected server, mirroring the Jellyfin trust gate. Unreachable-looking
private IPv4 candidates stay in the list — a client on the server host can
legitimately reach them, so reachability is probed, not inferred.
ffmpeg's reconnect loop deliberately retries 503 without bound (#1520), so a
server that keeps refusing the stream at open time left a silent black screen:
ExoPlayer fell back to MPV, MPV reconnected forever, and no error ever reached
the screen. A new open-phase watchdog arms on the first 503 seen before any
frame renders and, after 20s without one, synthesizes a server-http-503 error
that shows an actionable dialog. Mid-stream 503s and live TV keep their
existing ride-out paths.
close#1830
The clock renders through the existing formatClockTime helper driven by
MediaQuery.alwaysUse24HourFormatOf, so it follows the OS 12/24-hour
setting instead of introducing an app preference. It re-arms a one-shot
timer onto each wall-clock minute boundary rather than polling, and
resyncs on resume because a suspended process runs no timers.
The player header is shared by the mobile and desktop/TV controls, so one
insertion point covers every form factor: the player is fullscreen
everywhere, so it never has an OS clock to defer to. Home is the
exception and only gets one on TV, where a leanback app hides the system
clock; a phone status bar and a desktop menu bar already show the time.
Selection reads Format.sampleRate, but the rate family is only certain once a
major sync is parsed. When a container announces the 48kHz family and the
bitstream announces 44.1kHz, the packer emits nothing: handleBuffer consumed the
input and reported success, so the stream played as silence for as long as it
lasted. TrueHdMatPacker.reset also left the flag latched, so every later stream
on that packer emitted nothing too.
Leave the offending access unit in the buffer, signal the capability change, and
let the decoder take the stream over. The packer clears the flag on reset.
The latch has to outlive both flush and reset. media3 resets every renderer
disabled by a new selection before enabling its replacement
(ExoPlayerImplInternal.enableRenderers), and both audio renderers share this
sink, so the outgoing renderer's reset arrives in the middle of the handover the
latch exists to cause; clearing it there loops straight back into the mismatch.
The real boundary is a new media item, which only ExoPlayerCore knows, so it
signals one before setting a new source. The same-item recovery, DV-mode and
subtitle reloads deliberately do not.
It is a generation rather than a flag because that hook runs on the app thread
while the mismatch is found on the playback thread: a late buffer from the
outgoing stream would otherwise disable the carrier for its successor.
Verified on the SEI Box R (Android 14, armv7) with a genuine 44.1kHz TrueHD
stream in a container patched to announce 48000, so the bitstream and its
checksums stay valid. The sink enters the carrier at 192kHz, reports the
mismatch, hands over to FFmpeg and plays on. The device test asserts that
sequence from the sink's own diagnostics, because the mismatch fires before the
carrier opens an AudioTrack and the rate sequence alone cannot distinguish it
from never having selected the carrier.
A bitstream cannot be resampled, so the carrier only ever accepts 1x. The
selection gate covered that, but nothing re-ran it: setPlaybackSpeed reaches
the sink and returns, and the renderer only re-asks when audio capabilities are
invalidated. A speed change during carrier playback therefore left the carrier
live and handed it parameters its empty processor chain cannot apply.
Signal the capability change from the sink, which reaches
onRendererCapabilitiesChanged and moves TrueHD onto the decoder; returning to
1x re-offers the carrier, so a speed nudge no longer costs Atmos for the rest
of the session. The carrier delegate is never given a non-1x speed while that
selection is in flight.
Report the requested parameters rather than the delegate's while the carrier is
active. The player polls the sink through the media clock and adopts what it
reads, so reporting the pinned 1x pushed it back into the player and silently
undid the speed change.
Rebuilding the track selector parameters is not an alternative:
DefaultTrackSelector skips invalidation when the rebuilt parameters compare
equal, so a forced reselection can silently no-op.
Verified on the SEI Box R (Android 14, armv7): carrier at 192kHz with no
decoder, speed to 1.5x moves it to the FFmpeg decoder at 48kHz with the clock
advancing faster than real time, and returning to 1x restores the carrier. The
device test skips itself on hardware that never takes the carrier, as the
Nvidia Shield does.
Three defects in the carrier path, two of them found on hardware (#1804).
Falling through to the normal sink when the carrier was unavailable handed
TrueHD straight back to media3's raw ENCODING_DOLBY_TRUEHD path — the exact
configuration this issue is about. TrueHD is now binary: the carrier, or
reported unsupported so the bundled FFmpeg decoder takes it. media3's raw path
has no demonstrated working case here and two broken ones, and even Kodi's raw
fallback is a different thing, offered only after verifying at 192kHz.
The 44.1kHz family was decided from a packer flag that is only set once a major
sync has been parsed, long after selection. The carrier was therefore chosen for
those streams and then packed nothing, which is silence rather than a glitch. It
is decided from Format.sampleRate now, with the packer flag left as a loud
runtime backstop for a bitstream that disagrees with its container.
handleBuffer consumed the whole input buffer even when a burst was refused
part-way through, dropping every access unit behind it — a media3 sample holds
sixteen. The buffer position now advances per unit and the method returns false
with the remainder intact, which is media3's own retry contract. A test rejects
a burst mid-sample and asserts the carrier output is still byte-identical.
The capability gate also needed tightening. getMinBufferSize answers yes for the
192kHz/7.1 IEC tuple on a Shield and the AudioTrack then fails to initialise: it
reports that a buffer can be sized, not that the route will carry the format.
Without getDirectPlaybackSupport there is no way to separate the two, so the
carrier is not offered below API 33 and TrueHD decodes exactly as before.
Verified on both connected boxes. SEI Box R (Android 14): carrier selected,
AudioTrack built as IEC61937 at 192kHz/7.1, no decoder instantiated, clock
tracks wall time. Nvidia Shield (Android 11): carrier declined, FFmpeg decoder
selected, identical to its behaviour before this work.
Copies the path Kodi uses, and replaces nothing-but-detection with a route that
actually plays (#1804).
Android will not bitstream raw TrueHD on the TV routes measured here. Both
connected boxes report ENCODING_DOLBY_TRUEHD as offload-only while reporting
ENCODING_IEC61937 at 192kHz/7.1 as bitstream-capable. Kodi models exactly that
split: it packs the carrier itself and offers "AudioTrack (IEC)" as the
recommended sink, treating raw TrueHD as a fallback that it still runs at
192kHz. Media3 only ever hands Android raw TrueHD at the stream rate, which on
the reporter's box takes one write and then never advances the playback head.
TrueHdCarrierSink routes TrueHD onto a dedicated delegate and leaves everything
else on the existing processed sink. The split is deliberate rather than
enforcing that the normal processors stay inactive: the carrier is a bit-exact
byte stream shaped like PCM, so a downmix, Sonic pass or silence skip turns it
into full-scale noise at the receiver. A delegate built with an empty
AudioProcessorChain makes that impossible by construction, instead of putting
the guarantee in a different class from the thing it protects.
The carrier delegate keeps OutputConfig at PCM 16-bit so media3's position,
pending-data and release accounting all stay on their mature PCM path — correct
here, because after packing the stream really is a fixed-rate 192kHz 8-channel
carrier. Only the AudioTrack itself is switched, through the builder modifier
upstream applies just before AudioTrack.Builder.build(). That avoids
reimplementing AudioOutput and avoids the encoded frame-domain mismatch in
androidx/media#3329.
Burst timestamps come from the carrier cadence rather than from whichever
access unit closed the frame; anchoring on the closing unit drifts against the
time the sink derives from written frames and reports a discontinuity on nearly
every frame.
Availability is Kodi's test, not media3's: getMinBufferSize for the exact
192kHz/7.1 IEC tuple, plus getDirectPlaybackSupport where it exists to confirm
the route will bitstream rather than quietly decode. Speed changes, downmix,
normalization and 44.1kHz-family streams all decline the carrier and decode.
Verified on a SEI Robotics Box R 4K Plus (Android 14, armeabi-v7a): the carrier
is selected, the AudioTrack is built as IEC61937 at 192kHz/7.1, no audio decoder
is instantiated, zero timestamp discontinuities, and the clock tracks wall time
with no frozen samples. The same box freezes for ten seconds on raw TrueHD.
Groundwork for bitstreaming TrueHD the way other players do (#1804).
Android will not bitstream raw TrueHD on the TV routes measured so far. Both
connected Android TV boxes report ENCODING_DOLBY_TRUEHD as offload-only while
reporting ENCODING_IEC61937 at 192kHz/7.1 as bitstream-capable, and the
reporter's box takes a raw TrueHD AudioTrack and then never advances its
playback head. Kodi models this split explicitly: it offers an "AudioTrack
(IEC)" sink where it packs the carrier itself and treats handing raw TrueHD to
Android as the fallback, and even that fallback runs at 192kHz. Media3 only
ever does the raw form, at the stream rate.
This adds the packer half: split a sample into TrueHD access units, assemble
MAT frames with timing-derived padding, and emit IEC 61937 bursts. It is a port
of FFmpeg's spdif_header_truehd rather than Kodi's CAEBitstreamPacker, because
Kodi's is a thin wrapper over an already-assembled buffer while the MAT code
placement and padding live in FFmpeg's stateful packer.
Details the port has to get right. Media3's Matroska path concatenates 16
syncframes into one sample, so access units are split here; reading a single
input_timing for sixteen frames would desynchronise the carrier. Burst buffers
alternate and are reused rather than allocated, because a fresh 61,440 byte
array every 20ms is roughly 3MB/s of garbage on the low-power hardware this
runs on. A 44.1kHz-family stream rides a 176.4kHz carrier instead of 192kHz,
which changes the whole AudioTrack tuple, so it is reported as unsupported for
the caller to decode instead.
A wrong byte here is not subtle — the receiver drops sync or renders full-scale
noise — so the test compares against FFmpeg's own output byte for byte, using
its input and output as fixtures.
No caller yet; the sink that routes TrueHD through this follows.
Watching an episode to the end left it stuck as watched for the rest of the
session. Unmarking it on another device and refreshing did nothing; only a
restart cleared it. Unlike #1829 this needs no second device to cause -- a
normal watch-through is enough, and the second device only makes it visible.
A threshold crossing writes an unacknowledged overlay patch, deliberately:
reporting success proves the backend received the report, not that it
classified the item as played, so the patch stays owed until something
settles it. _settleServerMark has three settled outcomes and only one of them
did. The explicit-mark branch promoted; the two branches that skip the mark
because the backend already recorded the watch itself -- Jellyfin from
/Sessions/Playing/Stopped, Plex from a timeline crossing past
LibraryVideoPlayedThreshold -- returned without promoting. Those are the
common paths, so nearly every completed playback stranded a patch that the
store then refused to suppress, because an unacknowledged entry is never
retired by an authoritative read.
Both now promote, through one idempotent helper that clears the id so the
delivery callback and the settle paths cannot promote twice.
Promotion has to follow delivery rather than the settle decision. A
marks-on-stop backend settles when the crossing latches, which happens before
the stop is sent, and until that stop lands the watch really is still owed --
promoting there would let a refresh retire a patch the server had never
heard about. MediaBrowser also drops a stop for a session it never opened, in
which case the watch it would have recorded never happens at all. So the stop
path promotes only once the report reached a session able to act on it, which
is the same condition that already governs whether the stop persists its
position; that condition is now named rather than recomputed, and reset with
its siblings when a session re-arms. The crossing branch needs no such gate:
it is assembled from two delivered reports, so delivery is already proven.
Verified against a live Jellyfin server driving the real client and tracker:
before, the server reported the item unwatched after a second device cleared
it while the overlay still rendered watched; after, the overlay follows the
server. The optimistic mark still appears immediately during playback -- it
now yields to a later authoritative read instead of outliving one.
The #1287 and #1740 contracts are unchanged: neither branch issues an
explicit mark, and the tests assert that alongside the promotion.
Pausing an episode on one device, finishing it on another and pressing
Refresh left the first device showing the old "minutes left". Restarting the
app showed the right value. Two independent defects produce that, and either
alone reproduces the report.
The first is the watch-state overlay. Every local watch event lands in
WatchStateStore as a patch, and WatchStateSnapshot.apply overwrites
viewOffsetMs unconditionally; isNewerThan only ever orders one patch against
another, never against the server row underneath. Nothing expires a patch and
nothing clears the map except a profile switch, so the Mac's own paused
position kept winning over every subsequent fetch until the process died.
A patch exists to bridge the gap between a local action and the next server
read of that item, so it should stop applying once that read happens. The
store now records the watermark at which a successful authoritative response
returned each key, and suppresses an acknowledged session patch at or below
it. Only a watermark is stored, never the observed state: WatchStateSnapshot
cannot hold a container's leaf counts, and keeping max() per key makes the
order two concurrent responses complete irrelevant. Suppression is a
read-time predicate, so nothing mutates during build.
The barrier covers the parentChain too. patchForItem picks the newest of the
item's own entry and its ancestors', so retiring only the item's entry would
let an older season mark win and render watched/0 -- worse than either the
stale value or the fresh one. An authoritative read of a child already
reflects any container mark that preceded it, so the child's observation
judges its ancestors as well; a newer container action still wins.
Provenance decides what may be suppressed at all. WatchStateEvent now carries
serverAcknowledged, defaulting to false so an unclassified emit site degrades
to today's behaviour rather than silently becoming retireable. An offline
write is owed to the server and a read must never retire it, so it stays
until a WatchPatchPromotionNotifier promotion says the queue replayed it. That
channel is deliberately not a WatchStateEvent: OfflineWatchSyncService reacts
to watched/unwatched by purging queued progress, so replaying one there would
delete a newer rewatch. Promotion matches an exact WatchPatchId -- session
minted for live crossings, derived from the persisted (profile, row, revision)
for queued ones so it still joins after a restart.
Report acceptance is not delivery: PlaybackReportSession resolves true for a
same-state startup heartbeat it drops, so acknowledgement now keys on
onDelivered. A MediaBrowser Started saves play count and last-played date but
not the position, so it cannot acknowledge an offset. No report-derived
watched crossing is acknowledged on any backend -- Jellyfin hard-codes its
threshold and Plex never loads the server pref that would tell it the real
one -- so only an awaited explicit markWatched settles one.
The second defect is that a failed Refresh reported success. Plex _fetchHubs
and the Jellyfin hub legs both degrade a failure to an empty list, and the
library prefetch discarded its failures, so a server whose every hub request
failed was recorded as succeeded; DiscoverProvider then kept the previous rows,
set loaded and surfaced nothing. Worse, the background Continue Watching
refresh wiped the row outright on zero success.
Hub legs now report what they degraded through a HubFetchDiagnostics sink,
which keeps partial rows alongside the failure and leaves every existing
caller untouched. Failures ride through the aggregation results, a leg that
could not run because discovery failed contributes that failure rather than a
successful no-op, and loaded-server ids became succeeded - failed - cancelled
so one bad leg no longer caches a server as covered and blocks its retry. The
toolbar awaits a DiscoverRefreshOutcome and shows the existing unableToLoad
snackbar on failure while the retained rows stay on screen. Rollback after a
mid-pass exception is version-guarded, refilters against the current hidden
libraries and no longer publishes a system shelf the pass never committed.
Observations are staged with the pass and flushed only once the same disposal,
generation and exception checks that authorise committing those rows have
passed, so a discarded or rolled-back response can never suppress a patch.
Also fixes a live data-loss race the promotion work would have built on:
upsertProgressAction stamped a millisecond timestamp and updated the row in
place, so a rewatch queued during an in-flight replay was deleted by id.
Revisions are now strictly monotonic per row, replay deletes and retry updates
compare against them, and the upsert resets the retry fields because a new
revision is a new logical action.
close#1829
Since 2.10.0 the app opens on a Flutter-owned startup frame, and that frame
paints an opaque themed Scaffold before any preference is readable. Its
themeMode defaults to system, so the theme comes from platform brightness --
and a TV has no system dark-mode toggle, so Fire TV and Shield report light.
The result was a near-white #F7F7F8 sheet held for the whole gate, from
prefs through Sentry to the database open, over an Android window the
television resource qualifier had already painted black. Before 2.10.0 the
gate ran ahead of runApp and no Flutter frame existed to cover it.
Nothing in the loading frame is worth covering the launch screen for. Android
composites Flutter in TransparencyMode.transparent over a window whose colour
MainActivity already restored from plezy_prefs, so the loading Scaffold is
transparent there and the launch screen carries the launch. Every other
platform composites opaquely with nothing behind Flutter, so they keep
painting their own background.
The spinner and the failure screen still need a colour, and platform
brightness is the wrong one for exactly the devices this bug is about, so the
startup frames now adopt the persisted theme once it can be read. TV
detection has to run before that read: the theme_mode default is TV-aware and
isTVSync answers false until its singleton exists, which would resolve a
fresh Android TV install to the light theme. Both singletons are memoised and
awaited again by the gate. The read is best-effort -- an unreadable store is
the gate's failure to report, not this path's -- and it also stops a startup
failure from rendering as a full-screen white error page on a TV.
darkThemeFor and materialThemeModeFor move onto ThemeProvider so the startup
frames and the provider resolve OLED from one mapping rather than two.
Verified on an Android TV emulator in television/notnight mode, clean install,
cold start: peak frame luma 228 for 78 frames before, 0 frames above 120
after, and the same on a returning launch.
close#1833
Sheets rendered at the host's maximum height regardless of content, so a
one-item player queue or a two-track picker filled ~75% of a desktop window
with empty space.
BottomSheetPageScaffold now always lays out Column(mainAxisSize: .min) plus
Flexible(child:), and each sheet body shrink-wraps its own scrollable. The
scaffold's shrinkWrap flag is gone: its old true branch put the child on an
unbounded axis, where an over-tall list overflowed instead of clamping and
scrolling. Measured on a 1600x1000 window, the chapter sheet goes from 750px
to 118px for one chapter and the two-column track sheet from 750px to 154px
for one audio and one subtitle track, both still clamping at the cap.
Add SheetSplitColumns for the three side-by-side sheet layouts. A bare
VerticalDivider has no intrinsic height, so it inflated those rows to the cap
on its own; the rule now paints from a Positioned.fill that cannot size the
Stack. IntrinsicHeight is not an option because a Viewport has no intrinsics.
Because sheets are bottom-anchored, a content-driven height moves the sheet's
top edge and everything above the change point. Three surfaces opt out for
that reason and say so at the call site: SubtitleSearchSheet and its language
picker keep filling, since both refilter under an autofocused field;
FiltersBottomSheet holds the outgoing page's height through its loading
transient; and RatingBottomSheet no longer hides MAL/AniList rows
asynchronously, which used to slide live rating controls down two rows several
hundred ms after open. Wrap the shared StateMessageWidget at the filters sheet
boundary rather than editing a widget with 33 filling call sites.
The host gains an AnimatedSize keyed per sheet session so nested pushes ease
while a replacing show adopts its own height, a 720px absolute height ceiling
on desktop windows only, and a min(max(25%, 96px), 60%) drag-dismiss threshold
so short sheets neither close on a nudge nor become undismissable.
Add videoControls.noAudioDevicesAvailable so the audio output page shows a
placeholder instead of a bare header while devices load.
Pressing Enter over the player put the whole app into keyboard mode and
dropped focus onto Play/Pause, even with Video Player Navigation off. Two
independent paths did it. InputModeTracker promoted on any key satisfying
isNavigationKey, a set that unioned activation, dismissal and the menu key
with the arrows and consulted no setting at all; separately the surface's
Select handler always asked the chrome for focus. Escape had the same effect,
which on desktop reads as the mouse cursor vanishing mid-playback.
Both now ask one predicate. eventRequestsFocusNavigation decides whether the
app switches to keyboard mode and whether a key may hand focus to the chrome,
so the two cannot disagree and focus can never land on a control while focus
chrome is still suppressed. Activation and dismissal act on what already has
focus, so they answer no; Tab, the menu key, a remote's OK or BACK, and an
arrow that will really traverse answer yes. The one input the predicate cannot
read off the event, whether the focused feature owns arrow keys, rides on the
node as DirectionalShortcutFocusNode instead of on a subtree, so every sheet,
prompt and OSD button stays an ordinary traversal target with nothing to
re-enable.
playerDirectionalNavigationEnabled and videoPlayerNavigationPreference replace
five hand-copied pref-or-isTV expressions and a screen-level cache that
disagreed with the live getter after a toggle. Services whose input is
synthesized past HardwareKeyboard announce themselves through
InputModeTracker.reportNonPointerInput rather than two static callbacks and
three copies of a highlight-strategy write. That registration is now
identity-guarded: the bootstrap-to-app tree swap disposed the outgoing tracker
after the incoming one initialised and cleared both callbacks, so gamepad and
companion remote input had stopped switching to keyboard mode entirely.
Falling out of the same rule: a companion heartbeat no longer flips an idle
desktop host into keyboard mode, analog-stick drift promotes only past the
deadzone that actually navigates, Enter keeps toggling playback once the
chrome is up, Tab both reaches and traverses the OSD, and the player surface
claims the remote from mount rather than only when the chrome starts hidden,
so the first key on a desktop route is a playback shortcut instead of the
screen node's chrome-raising self-heal.
isNavigationKey becomes isReservedControlKey, since its real meaning is a
shell key rather than a text character and the old name is what invited the
conflation. The unreachable PlayerChromeFocusTarget.timeline goes with it.
Nav bar labels that overflow their tab slot on phones are shortened to
idiomatic short forms: fr (Bibliothèque, Téléchargement, Recherche),
ru/bg/it (Live TV), pl (Home).
All 21 locales get the ~280 keys that were empty (falling back to
English at runtime): explore detail/badges/stats, fileInfo, startup
repair flow, mediaMenu delete dialogs, addServer, rating sources,
downloads sync-rule removal, and more.
settings.displayScale was missing entirely in 16 locales; the new
exoplayer playbackBuffer keys (upstream feat) are translated too.
Fixes mis-translations found in review: es/zh/zh-Hant sidecar-format
wording, sv adaptation, nb transcoding.
Regenerated with dart run slang; translation hygiene and i18n tests
pass.
Close#1823
A coalesced key-repeat skip pins its target so a slow backend cannot make
the next press rebase off a position the seek has not reached yet. Nothing
retired that pin when something else moved the playhead, so for the ten
seconds it survived, a skip taken after a timeline tap, a chapter jump, an
OS media control or a peer sync resumed from the superseded target and threw
the user back across their own jump.
Publish every playhead movement on the player and retire the pin whenever
the announced destination is not the accumulator's own commit. Overlapping
seeks and backend-chosen relocations arbitrate by which operation the
backend accepted, so a request that was merely asked for cannot speak for
where the playhead ended up.
close#1819
ExoPlayer's DefaultLoadControl was built with hard-coded durations picked from
one memory tier, so read-ahead stopped at 50s on any device reporting 2GB or
less free, with no way to raise it. On hardware where mpv cannot render at all
that ceiling is the whole buffer budget.
Playback Buffer offers Auto, Large and Extra Large. The durations are taken
from jellyfin-androidtv and jellyfin-android so the same words mean the same
thing across Jellyfin clients; Auto keeps the memory-tiered values that
shipped. Named tiers rather than a duration because a duration would be a
promise the load control cannot keep: prioritizeTimeOverSizeThresholds is
disabled, so targetBufferBytes stops the loader even below minBufferMs and the
byte cap binds first above roughly 23 Mbit/s.
The tier crosses the method channel as a string and resolves in the core,
where an unrecognised name falls back to Auto. LoadControlPolicy clamps the
resulting pair: media3 validates the ordering with Guava Preconditions, an
unconditional throw R8 does not elide, so a bad pair would be an
IllegalArgumentException out of player construction rather than a bad buffer.
The two play-start thresholds stay fixed even though the Jellyfin tiers move
them. BufferingStallPolicy.MIN_BUFFER_AHEAD_MS is a const derived from
BUFFER_FOR_PLAYBACK_AFTER_REBUFFER_MS, so a runtime value there would make the
stall watchdog indict a player that is obeying its own load control.
That leaves the byte target as a second, often smaller ceiling, and nothing
surfaced either. The resolved values now reach getStats, and the overlay's
Buffer section gains a Cache Limit row reading "120s / 128MB" next to the
buffered-ahead duration, so a tier that appears to do nothing on a
high-bitrate file explains itself.
close#1816
The check that keeps Audio Passthrough out of the in-player settings
sheet dragged the first Scrollable ten times and then asserted the
label was absent. That scrolling never moved: at the pumped 900x700
viewport the sheet fits its own content, so maxScrollExtent is 0 and
the offset stays there through every drag. The assertion passed
identically with no drags at all.
It caught a reintroduced toggle only because the whole list happens to
sit in the element tree at rest. Grow the sheet, shrink the viewport or
give it a lazy delegate and findsNothing starts passing because the
label is offscreen rather than gone, with nothing in the test to say
so.
Land on the audio block that used to hold the toggle first, then
assert the absence. scrollUntilVisible throws when that block is
missing entirely, so the guard fails loudly instead of quietly
weakening.
Starting a music playlist, album, or artist on shuffle always opened on
the list's first track: MusicQueueController.load anchored _order[cursor]
and shuffled only the rest, and _startQueue collapsed "no start track"
into startIndex 0, so the anchor was always the head.
Anchoring is right for the two callers that do have a track which must
play first -- the now-playing shuffle toggle, and a load with an explicit
start track -- so make "no explicit start" representable instead of
inferring it from the index: load takes int? startIndex and shuffles the
whole list, head included, when it is null. A start track the list turns
out not to contain now drops the anchor rather than falling back to 0.
Video playback was never affected: Plex shuffles server-side via
/playQueues and Jellyfin already shuffles its full local list.
The queue's Random is injectable so the service-level regression is
deterministic without depending on the SDK's seeded-PRNG sequence.
Close#1811
An in-place source switch — audio, subtitle, version or quality — detaches
the host's player for the duration of the reload. `_broadcast` falls back to
a position of 0 when no player is attached, so any state published in that
window names 0:00 as the authoritative position and every guest hard-seeks
to the start of the item.
Heartbeats already suppress themselves while detached, which is why this
hides: the paths that leak the zero are the ones that answer on demand.
`onStateRequested`, `onPeerJoined` and `onReconnected` all broadcast
regardless of whether a player is attached, so a guest entering the player,
joining, or reconnecting mid-reload is the trigger.
Fall back to the last broadcast anchor instead. That field is only assigned
for untargeted broadcasts, so it holds the last position the room was
actually told, and the reload's own re-attach path already re-anchors from
it once the player comes back.
Marking a movie or episode watched left it sitting in Continue Watching with a
checkmark, and the only way to shift it was to play it and skip to the end.
Continue Watching membership on a MediaBrowser server is derived from
UserData.PlaybackPositionTicks alone; Played is never consulted. Marking played
normally zeroes that position as a side effect, so the row usually disappears
and nothing ever checked that it had. When something writes a position back
afterwards the item is left played *and* resumable, which the resume route
happily keeps returning forever. markWatched now reads the UserItemDataDto the
mark already returns and clears the bookmark itself when the server left one
behind, so the postcondition holds however the item got into that state. The
follow-up write costs a request only when the invariant is actually broken.
The writer putting items there is our own offline queue. insertWatchAction
already drops queued progress for an item when the mark is itself queued, but
the online mark writes straight to the server and queues nothing, so a progress
row recorded earlier survived and replayed afterwards — pending actions go out
oldest first — restoring the very position the mark had cleared. The sync
service now listens for watch-state events and discards queued progress for
that item as the mark lands. Progress recorded after a mark is a rewatch and is
queued later, so it is untouched. Plex never showed this because it forwards the
recorded-at timestamp and lets the server discard a stale replay; the
MediaBrowser stop report has nowhere to put one.
Continue Watching also drops the row locally now instead of waiting a round trip
for the refetch to confirm it, matching what removal events already did, and
marking a season or show takes its on-deck episode with it.
Watched items are deliberately still not filtered out of the shelf: Jellyfin
keeps Played set when new progress arrives, so a rewatch in progress is
indistinguishable from a stuck row, and filtering would hide it.
close#1812
Declare android:installLocation="auto" so the app becomes eligible for the
Settings "change storage" flow and pm move-package. Adoptable storage relocates
the private data directory with the APK, so downloads follow the app onto a USB
drive adopted by an Android TV.
Moving the app changes the private data directory, which invalidated any download
task already enqueued: those pinned BaseDirectory.root plus an absolute directory
that background_downloader persists verbatim, so a queued or paused download
resumed writing to a volume the app no longer owns. Enqueue app-storage targets
against the base directory the downloader re-resolves from the live app context
instead, and drop the tasks and records a previous location left behind so the
download restarts under the current one.
That sweep runs before the downloader is wired up, because initialization delivers
statuses accumulated while suspended — which can mark the row failed, and a failed
row is deliberately not restarted — and because rescheduleKilledTasks re-enqueues
every killed record it finds, stale absolute directory included.
Compare paths by containment rather than by string prefix while making a stored
path relative. A custom download root that merely starts with the base directory's
name is a sibling the app does not own, and stripping it re-rooted the download
inside app storage.
close#1794
A session that lost its sink sat spinning forever: the watchdog measured media
time, which does not advance while the picture is frozen, so a stall could not be
told from an ordinary rebuffer and the recovery ladder was never climbed.
The stall is now judged in playout time against the load control's own view of
whether the buffer was ever enough. Readiness is the union of the three signals
rather than a precedence chain, because media3 stops asking its load control once
a renderer wedges - the very failure this watchdog exists to catch - and a stale
verdict could otherwise hold it shut. The watchdog is armed on every path that
replaces the source, including the same-state reloads that produce no state change
of their own, and a seek rebaselines it so a backward seek does not inherit the
old clock.
Handing over to MPV keeps the position playback reached rather than restarting the
episode, and a play or pause issued mid-handover is recorded on the queued open,
which is the only thing left to command while one core is being disposed and its
replacement does not yet exist.
Signing in opened plex.tv in a browser, and a head unit has none: the user was
left staring at a launcher error with no way to link the account. The QR code and
the linking code are now rendered in the app on a car, so the pairing happens on
a phone while the vehicle shows what to scan.
A head unit is a large screen sitting an arm's length further away than a phone,
and Plezy drew phone-sized controls on it: the primary button measured 8.3 mm
against the 64 dp a car needs. The whole surface is now scaled - 1.35 by default,
adjustable in Appearance - by giving the app a smaller logical viewport and
scaling the result back, so text, spacing and touch targets grow together instead
of a font size being nudged in isolation.
The scale sits above the messenger and the root Scaffold so snackbars and dialogs
are scaled too, and insets are divided back into the scaled space so a system bar
still reserves its physical size. A scaled surface is also a short one: the setup
screen's fixed offsets and the now-playing transport are laid out to survive it,
and a mistyped scale in a hand-edited settings file is clamped rather than
failing startup.
DD-3 gives video no exemption: a restricted vehicle must not play it at all. The
gate is read at the single point where media actually opens, so every path that
can start a picture - an explicit play, a gapless arm, a track or channel switch,
a frame-rate-match resume, a reload, and the queue navigation commands of the OS
media session - is covered by one check rather than by a guard at each call site.
A seek can also start playback with no play call, because mpv resumes when it
seeks off the end of a file, so a restricted seek is followed by a pause.
Watch Together needed the pause to be local. A vehicle stopping one peer is not a
room-wide intent: a guest's forced pause is swallowed by the attachment's ledger
rather than published, while a host's still pauses the room, because a host that
kept broadcasting a frozen anchor would stall or rewind every guest it was meant
to protect. The layer that owns a pause owns the resume for it, and one
acknowledgement is recorded per event, so a surplus cannot eat the user's next
real pause.
Music ran under a foreground service whose lifecycle observer was registered for
App TV, so backgrounding the app on a head unit never paused it and driving never
stopped it. Both halves were wrong for a car: parked audio must survive the app
going to the background, and DD-2 requires it to stop when the vehicle starts
moving.
The vehicle now owns exactly the pause it caused. It is claimed when a restriction
arrives and discharged on the event that proves the resume, so a track the user
paused during a drive stays paused when the car parks. A restriction landing while
the next source is still resolving silences the native player as well as the
session, because the previous track is still coming out of it, and a pause that
throws ends the session rather than leaving audio running in a moving car.
Android Automotive tells an app when the car requires distraction optimization,
and Plezy never asked. A monitor now watches CarUxRestrictions and publishes the
verdict over the existing platform channel, where a single Dart gate answers
whether playback may start.
The car service is reached through the lifecycle-listener overload rather than
Car.createCar(Context). That overload blocks its caller for up to five seconds
polling ServiceManager, and on car-service death it reaches killClient(), which
kills the hosting process for any context that is not an Activity or a Service -
a crash in a system component would take the app down with it. Head units on
Android 9 and 10 predate the listener, so a legacy ServiceConnection is used
there, with the same identity guard on reconnect.
A vehicle that has not answered yet counts as restricted, and one deadline is
spent resolving it rather than one per request, so a wedged car service delays
playback once instead of on every open.
Tunneled playback on an AFTMM judders continuously through 23.976p direct play.
The #1802 reporter isolated it: turning off Tunneled Playback with every other
setting unchanged makes it smooth, and their log shows tunneling active for the
whole session with E-AC3 bitstreamed and the decoded-PCM guard never firing.
Audio Passthrough looked like the trigger only because it is the one user-facing
switch that decides it. Passthrough off, or Downmix to Stereo on, both force the
Dolby track to decode to PCM, which trips the #1458 guard and takes tunneling
down with it. Passthrough on with downmix off is the only combination that keeps
a bitstreamed track, so it is the only one that stays tunneled.
Withdraw tunneling on that model for content at or below 30fps. The cut-off
keeps 4K50/60 tunneled, which is the workload Amazon documents the feature for.
The mechanism stays unconfirmed: tunneling fires no VideoFrameMetadataListener
and stops media3 counting frames in the codec, so nothing app-side can measure
the cadence. Only the trigger is established, and the quirk is scoped to it.
That needs a frame rate the app did not have. Neither MatroskaExtractor nor
Mp4Extractor populates Format.frameRate, and a tunneled session renders no
frames back for the native detector, so the server's rate now rides on the open
call. It is sent only for direct play, matching _primeDisplayCriteria: a
transcode's metadata describes the source, not what the server is about to send.
Also move Audio Passthrough out of the in-player settings sheet. It configures
the audio output route rather than the current playback, and applying it
mid-stream bounces the audio renderer and re-decides tunneling. Settings > Video
Playback already owns it, next to Tunneled Playback, which is applied the same
way. That description now mentions stutter, not only black HDR video, so the
workaround is findable on hardware this quirk does not cover.
The mpv backend failing to start the same 4K file is a separate defect and is
not addressed here; its uploaded log is no longer retrievable.
"Delete from server" read identically for an episode, a season and a
whole show: same menu label, same dialog title, same red button, and a
body that named nothing. The menu header did not disambiguate either,
because MediaItem.displayTitle collapses an episode to its show name.
A reporter deleted a whole series from the detail hero's ⋮ believing it
acted on the episode he had highlighted, and the confirmation gave him
nothing to catch it with. Every one of those strings now names the kind,
and the body names the exact item — show, season and episode number, and
episode title.
Deleting a single item also destroyed files the confirmation never
mentioned: a Plex multi-episode file (S01E01-E03.mkv) takes its other
episodes with it, and a split item takes every part. The dialog now
reports that up front and, on success, emits deletion events for the
siblings the server destroyed so their rows do not linger.
The scope behind that warning is only asserted when it is established.
MediaItem.allPartFiles drops parts with no path, so a non-empty set
proves nothing about the ones it filtered out; a version is trusted only
when every part reports a file. A browse row that omits paths is missing
evidence rather than proof of a distinct file, so both the target and
each candidate sibling fall back to the detail endpoint before any
conclusion — otherwise a thin row, including the file-less part
PlexMappers fabricates for an empty payload, would look like a server
that withholds paths. When the answer cannot be established the dialog
says so in an error-tinted block and its button reads "Delete anyway",
separating a transient probe failure from a server that never sends
paths. It deliberately does not refuse: Plex withholds paths from
restricted users the server itself authorizes to delete, so failing
closed would take the feature away from them permanently.
Probing a season stays bounded in both directions. Siblings resolve one
at a time, so a season of thin rows cannot fan out a detail request per
episode, and expiry cancels the walk rather than merely abandoning it —
`Future.timeout` completes the future the caller awaits but leaves the
work behind it running, which would resume on the next sibling once the
outstanding request answered. A cooperative flag is checked before each
lookup, so at most the one already in flight outlives the deadline; the
neutral client exposes no abort handle for item lookups, so that one
cannot be recalled.
The spinner covering the probe was only barrierDismissible, which does
not stop system back. Back dismissed it and the cleanup pop then closed
the screen underneath, dropping the user out of the detail page
mid-flow. It now traps back, matching the non-dismissible contract its
own doc claims, which also repairs the log uploader and the file-info
sheet.
Coverage splits by what each layer owns. The dialog, its copy and the
DELETE wiring are backend-neutral and stay in the menu widget tests.
Plex — the backend multi-episode files actually come from — gets the
resolver over a real PlexClient and a mocked transport: a row with no
media at all, scope recovered from /library/metadata/{id}, siblings and
paths from /children, a Part that names no file, a sibling whose path
never resolves, the request count a sixty-episode thin season may cost,
and the rating key the DELETE carries. Those are plain async tests
because the Plex metadata cache is a real database whose I/O the widget
tester's fake clock never drives. Deadline behaviour needs the opposite,
so it is pinned separately under fakeAsync against a gated fake client,
with no wall-clock waiting anywhere.
close#1781
Returning to the desktop window with the chrome still up left arrow keys
navigating the OSD instead of seeking: the first press seeked and silently
moved focus onto Play/Pause, and every press after that walked the buttons.
A window blur drops Flutter's primary focus to the root scope, so the player
screen's reclaim parks it on its own node. The only handoff back down to the
controls was the chrome visible->hidden transition, so with the OSD up nothing
reclaimed it -- hence the reported workarounds of letting the controls hide, or
moving the pointer off the player and back. Pointer exit normally hides the
chrome and masks this, which is why it only shows when the pointer stays over
the player while another window takes focus.
Hand the surface back on window re-activation, next to the existing hide-path
claim, and rename the helper since it is no longer hidden-chrome specific. The
claim runs synchronously because a platform callback is not guaranteed to be
followed by a frame; the screen's reclaim re-tests hasFocus when it runs, so the
two no longer compete.
Also gate the screen's self-heal so a directional key no longer pulls focus into
the OSD when "Video Player Navigation" is off -- Tab and select keep their path
in, which the ungated return value would otherwise consume with nowhere to go.
`await LocaleSettings.setLocale` inside a `testWidgets` body waits on a
deferred library load that only completes on the real event loop, so the
regex-dialog test hung indefinitely rather than failing. It passed only
because an earlier plain `test` in the same file loads `de` first —
running the file alone, under a name filter, or sharded apart from that
test stalled the run until the ten-minute timeout.