Trakt was the one service outside the tracker abstraction. TraktScrobbleService
re-implemented the whole playback lifecycle beside TrackerCoordinator, and
TraktSyncService pushed watched state from its own WatchStateNotifier
subscription, so the player called two objects at every lifecycle point and one
watch could be written twice. TraktTracker now implements RealtimeScrobbleTracker
like Simkl; the duplicated player call sites collapse to one each, and Trakt
shares the coordinator's ID resolver instead of re-fetching show ids every
episode.
Capabilities are split so a tracker declares what it is rather than being
special-cased: ScrobblePolicy carries each service's own resend/seek rules,
EpisodeHistoryTracker names the remote row a per-item history write targets, and
SeriesProgressTracker covers one-counter-per-series services. Writes from all
four trackers go through a shared TrackerWriteQueue, generalised from the
Trakt-only queue, with the legacy Trakt payload migrated on load. Trakt becomes
the fourth TrackersProvider slot and TraktAccountProvider is deleted, so one
object owns the active session per profile.
Two failure paths found while consolidating are fixed here too.
The queue's retries only ran on profile bind, connect and app foreground, so a
network blip mid-session left queued watches waiting for the next foreground.
OfflineModeProvider now notifies on connectivity changes, not just offline-state
or WiFi-flag changes, and main.dart flushes the queue when the network returns.
The queue also counted every failure toward the five attempts that permanently
drop an item, so a rate limit or a service having a bad hour could discard a
pending watch - the loss the queue exists to prevent. Only an answer about the
write itself now spends an attempt: 4xx counts, while rate limits, 5xx,
recoverable token-refresh failures and requests that never arrived do not. A
back-off answer also defers that service for the rest of the flush, so a queue
holding many rows does not fire all of them at a service that just asked for
quiet.
Simkl only heard about an item once playback crossed the media server's
watched threshold, so stopping partway recorded nothing at all: no resumable
position, no watch. Drive Simkl's /scrobble/start, /pause and /stop from the
player lifecycle instead, carrying the measured progress. Seeks report
nothing, as Simkl asks.
The terminal stop owns watched state for in-player playback, so real-time
trackers are excluded from the threshold markWatched fan-out and one watch
never produces two writes. Progress is reported as measured — it doubles as
the user's resume position — so when a server threshold configured below
Simkl's own 80% rule would leave the watch unrecorded, the tracker records it
through /sync/history rather than inflating progress. Manual, container,
offline-replay and external-player marks keep using /sync/history. Only
/scrobble/stop accepts a 409, which is the sole action documented to return
one.
Reports go out one at a time because Simkl serialises scrobble writes per
user and fails queued ones with a 400; overflow sheds the oldest non-terminal
report so an episode swap cannot drop the previous item's stop. A playback
session is pinned to the account bound when it began and every send re-checks
that binding, so a profile switch or a disconnect/reconnect can neither
redirect a queued report nor misfile the watched fallback.
Also close the paths that lost the terminal report entirely: app exit flushes
it instead of dropping it, the desktop window button goes through the app
shutdown rather than exit(0), a detached VOD player reports a stop, and a
finished item reports completion at EOF instead of waiting for teardown. A
session that opened at 0% is still closed on stop, or Simkl keeps showing the
item as playing until its runtime elapses.
close#1719
Introduces shared seams for paginated views, D-pad reorder, media control
routing, async singletons and the device method channel, then points the
open-coded copies at them.
Also removes unused models and duplicated provider/server plumbing, folds
the twice-implemented artifact store in the server, and factors the
repeated Flutter toolchain prologue in CI into a composite action.
Replace the per-tracker json_serializable session classes and account stores with a shared TrackerSession (service-aware persisted validation), a single TrackerAccountStore, a shared TrackerHttpClient, and an AnimeListTrackerBase mixin for MAL/AniList. Scope the per-service rebind guard so a disconnect can't abort a racing profile load. Add migration-safety, MAL refresh, episode-count cache, and content-type tests.