Files
plezy/lib/screens/video_player_screen.dart
T
edde746 352b88109b refactor: extract shared mixins and helpers, drop dead abstractions
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.
2026-07-26 06:09:48 +02:00

1966 lines
80 KiB
Dart

import 'dart:async';
import '../media/ids.dart';
import 'dart:io';
import 'dart:math';
import 'package:flutter/material.dart';
import 'package:plezy/widgets/app_icon.dart';
import 'package:material_symbols_icons/symbols.dart';
import 'package:flutter/services.dart';
import 'package:os_media_controls/os_media_controls.dart';
import 'package:provider/provider.dart';
import 'package:sentry_flutter/sentry_flutter.dart';
import '../mpv/mpv.dart';
import '../mpv/player/platform/player_android.dart';
import '../mpv/player/player_native.dart';
import '../services/scrub_preview_source.dart';
import '../media/media_backend.dart';
import '../media/media_display_criteria.dart';
import '../media/media_server_user_profile.dart';
import '../media/media_item.dart';
import '../media/media_item_types.dart';
import '../media/media_server_client.dart';
import '../media/episode_collection.dart';
import '../media/live_tv_support.dart';
import '../models/livetv_channel.dart';
import '../services/live_seek_accumulator.dart';
import '../services/plex_client.dart';
import '../utils/session_identifier.dart';
import '../database/app_database.dart';
import '../media/media_version.dart';
import '../models/transcode_quality_preset.dart';
import '../media/media_source_info.dart';
import '../mixins/mounted_set_state_mixin.dart';
import '../providers/download_provider.dart';
import '../providers/multi_server_provider.dart';
import '../providers/playback_state_provider.dart';
import '../models/companion_remote/remote_command.dart';
import '../providers/companion_remote_provider.dart';
import '../services/companion_remote/companion_remote_receiver.dart';
import '../services/fullscreen_state_manager.dart';
import '../services/discord_rpc_service.dart';
import '../services/trackers/tracker_coordinator.dart';
import '../services/trakt/trakt_scrobble_service.dart';
import '../services/episode_navigation_service.dart';
import '../services/apple_tv_remote_touch_service.dart';
import '../services/media_controls_manager.dart';
import '../services/playback_coordinator.dart';
import '../services/playback_initialization_service.dart';
import '../services/playback_context.dart';
import '../services/local_playback_history.dart';
import '../services/playback_session.dart';
import '../services/playback_subtitle_resolver.dart';
import '../services/mpv_sidecar_open_guard.dart';
import '../services/playback_progress_tracker.dart';
import '../services/playback_source_resolver.dart';
import '../services/multi_server_manager.dart';
import '../services/offline_watch_sync_service.dart';
import '../services/display_mode_service.dart';
import '../services/media_control_router.dart';
import '../services/settings_service.dart';
import '../services/sleep_timer_service.dart';
import '../services/track_manager.dart';
import '../services/track_selection_service.dart';
import '../services/ambient_lighting_service.dart';
import '../services/video_filter_manager.dart';
import '../services/video_pip_manager.dart';
import '../services/video_volume_controller.dart';
import '../services/pip_service.dart';
import '../models/shader_preset.dart';
import '../services/shader_service.dart';
import '../providers/shader_provider.dart';
import '../providers/user_profile_provider.dart';
import '../utils/app_logger.dart';
import '../utils/dialogs.dart';
import '../utils/log_redaction_manager.dart';
import '../utils/live_tv_player_navigation.dart';
import '../utils/player_utils.dart';
import '../utils/orientation_helper.dart';
import '../utils/platform_detector.dart';
import '../utils/provider_extensions.dart';
import '../utils/snackbar_helper.dart';
import '../utils/stream_buffer_sizing.dart';
import '../utils/video_player_navigation.dart';
import '../utils/android_exit_diagnostics.dart';
import 'video_player/completion_latch.dart';
import 'video_player/frame_rate_matcher.dart';
import 'video_player/live_stream_retry.dart';
import 'video_player/live_timeline_report.dart';
import 'video_player/wakelock_controller.dart';
import 'video_player/live_tv_session_args.dart';
import 'video_player/live_tv_session_state.dart';
import 'video_player/tv_background_suspend_policy.dart';
import 'video_player/widgets/player_prompt_overlays.dart';
import '../widgets/overlay_sheet.dart';
import '../widgets/video_controls/player_chrome_controller.dart';
import '../widgets/video_controls/video_controls.dart';
import '../widgets/video_controls/widgets/player_toast_indicator.dart';
import '../focus/focusable_button.dart';
import '../focus/input_mode_tracker.dart';
import '../focus/dpad_navigator.dart';
import '../focus/key_event_utils.dart';
import '../i18n/strings.g.dart';
import '../watch_together/providers/watch_together_provider.dart';
part 'video_player/parts/companion_remote.dart';
part 'video_player/parts/display_matching.dart';
part 'video_player/parts/episode_navigation.dart';
part 'video_player/parts/episode_queue.dart';
part 'video_player/parts/errors.dart';
part 'video_player/parts/lifecycle.dart';
part 'video_player/parts/live_tv.dart';
part 'video_player/parts/media_controls.dart';
part 'video_player/parts/pip.dart';
part 'video_player/parts/shader.dart';
part 'video_player/parts/playback_open.dart';
part 'video_player/parts/playback_prompts.dart';
part 'video_player/parts/playback_services.dart';
part 'video_player/parts/playback_start.dart';
part 'video_player/parts/seeking.dart';
part 'video_player/parts/build.dart';
part 'video_player/parts/watch_together.dart';
final WakelockController _wakelockController = WakelockController();
/// Whether an in-place source reload may start the replacement media.
///
/// Reloading a paused player must not manufacture a new play intent. Watch
/// Together and explicit paused starts keep owning the eventual resume.
bool shouldAutoStartReloadedMedia({
required bool wasPlayingBeforeReload,
required bool watchTogetherOwnsStart,
required bool startPaused,
}) => wasPlayingBeforeReload && !watchTogetherOwnsStart && !startPaused;
/// Builds an item-agnostic subtitle preference for an episode replacement.
///
/// Source ids and sidecar URIs belong to the current media item. Only the
/// committed semantic choice may cross the item boundary; native state is a
/// fallback for sessions created before source-backed selection was recorded.
SubtitleTrack? subtitlePreferenceForItemChange({
required bool hasCommittedSelection,
required SubtitleTrack? committedTrack,
required SubtitleTrack? nativeTrack,
}) {
SubtitleTrack? normalize(SubtitleTrack? track, {required bool preserveOff}) {
if (track == null) return null;
if (track.id == SubtitleTrack.off.id) return preserveOff ? SubtitleTrack.off : null;
final hasSemanticMetadata =
(track.title?.isNotEmpty ?? false) ||
(track.language?.isNotEmpty ?? false) ||
(track.codec?.isNotEmpty ?? false);
if (!hasSemanticMetadata) return null;
return SubtitleTrack(
id: 'navigation',
title: track.title,
language: track.language,
codec: track.codec,
isDefault: track.isDefault,
isForced: track.isForced,
isExternal: track.isExternal,
);
}
if (!hasCommittedSelection) {
return normalize(nativeTrack, preserveOff: true);
}
if (committedTrack == null) return SubtitleTrack.off;
final committedPreference = normalize(committedTrack, preserveOff: true);
if (committedPreference != null) return committedPreference;
return normalize(nativeTrack, preserveOff: false);
}
/// The in-place media-source transitions a [VideoPlayerScreenState] can run.
/// They are mutually exclusive by construction — entry points bail while a
/// transition is in flight.
enum _PlaybackTransition { idle, switchingSource, reloadingMedia, switchingChannel }
enum _SubtitleSelectionSlot { primary, secondary }
/// Identity token for one owner of the in-place playback transition lock.
///
/// The enum describes what the current owner is doing; it is not itself an
/// ownership token because a superseded async flow can outlive a newer flow
/// that has since acquired the same enum value.
final class _PlaybackTransitionLease {
_PlaybackTransitionLease();
bool _wasSuperseded = false;
bool get wasSuperseded => _wasSuperseded;
void _markSuperseded() => _wasSuperseded = true;
}
/// Outcome of [VideoPlayerScreenState._reloadMediaInPlace].
enum _MediaReloadOutcome {
/// An entry guard refused the attempt (live screen, unmounted, another
/// transition in flight). Nothing was touched; safe to retry later.
rejected,
/// A newer playback attempt took ownership mid-reload; its outcome
/// governs what is on screen now.
superseded,
/// The replacement media opened and its session committed. A post-open
/// step may still have failed (tracks/services were rewired in the
/// catch), but the network stream is fresh.
opened,
/// The reload failed before the replacement opened: the previous session
/// is still committed, the eagerly-set identity was rolled back, and the
/// old (possibly dead — #1520) stream is still loaded.
failed,
}
/// Handle for one playback attempt (initial start or in-place reload).
/// Async continuations check [isCurrent] after every await while the screen
/// is mounted, the captured player is active, and no newer attempt exists.
class _PlaybackAttempt {
_PlaybackAttempt._(this._owner, this.generation, this.player, this.trackMutationDrain);
final VideoPlayerScreenState _owner;
final int generation;
final Player player;
final Future<void> trackMutationDrain;
bool get isCurrent => _owner._isCurrentPlaybackGeneration(generation, player);
}
class _PlaybackOpenTiming {
final Duration? mediaStart;
final Duration? timelineDuration;
const _PlaybackOpenTiming({this.mediaStart, this.timelineDuration});
}
_PlaybackOpenTiming _playbackOpenTiming({
required bool isTranscoding,
required Duration? resumePosition,
required int? durationMs,
}) {
return _PlaybackOpenTiming(
mediaStart: resumePosition,
timelineDuration: isTranscoding && durationMs != null ? Duration(milliseconds: durationMs) : null,
);
}
/// Builds a [TrackPreferencePersister] that writes the per-episode stream
/// selection out to a [PlexClient] resolved lazily on each call. Returns a
/// no-op-on-null persister so the [TrackManager] doesn't have to import
/// [PlexClient] itself; the resolver returning null (e.g. when the active
/// server is Jellyfin) makes the call short-circuit.
///
/// Only the current episode's part is touched — we deliberately do NOT write
/// the show-wide audio/subtitle language default (#1393): an in-player track
/// change should not silently rewrite the whole series' Plex prefs. The
/// explicit path for that lives in the metadata-edit UI.
TrackPreferencePersister _plexTrackPersister(PlexClient? Function() resolve) {
return ({required int partId, required String trackType, int? streamID}) async {
if (streamID == null) return;
final client = resolve();
if (client == null) return;
await (trackType == 'audio'
? client.selectStreams(partId, audioStreamID: streamID, allParts: true)
: client.selectStreams(partId, subtitleStreamID: streamID, allParts: true));
};
}
class VideoPlayerScreen extends StatefulWidget {
final MediaItem metadata;
final AudioTrack? preferredAudioTrack;
final SubtitleTrack? preferredSubtitleTrack;
final SubtitleTrack? preferredSecondarySubtitleTrack;
final int selectedMediaIndex;
final String? selectedMediaSourceId;
/// Version signature of a saved preference backing [selectedMediaIndex]
/// when that index is unverified (see
/// [PlaybackInitializationOptions.preferredVersionSignature]). Null for
/// explicit user selections.
final String? preferredVersionSignature;
final bool isOffline;
/// Quality preset override for this playback. When `null`, the screen uses
/// the user's [SettingsService.defaultQualityPreset].
final TranscodeQualityPreset? selectedQualityPreset;
/// Audio stream ID to pass to the transcoder when [selectedQualityPreset]
/// is non-original. When `null`, the playback service picks the `selected`
/// Plex audio track (fallback: first).
final int? selectedAudioStreamId;
/// Present iff this screen plays live TV; carries the whole live launch
/// state (see [LiveTvSessionArgs]).
final LiveTvSessionArgs? live;
bool get isLive => live != null;
const VideoPlayerScreen({
super.key,
required this.metadata,
this.preferredAudioTrack,
this.preferredSubtitleTrack,
this.preferredSecondarySubtitleTrack,
this.selectedMediaIndex = 0,
this.selectedMediaSourceId,
this.preferredVersionSignature,
this.isOffline = false,
this.selectedQualityPreset,
this.selectedAudioStreamId,
this.live,
});
@override
State<VideoPlayerScreen> createState() => VideoPlayerScreenState();
}
class VideoPlayerScreenState extends State<VideoPlayerScreen> with WidgetsBindingObserver, MountedSetStateMixin {
static const int _liveEdgeThresholdSeconds = 5;
// Track the currently active route target to guard duplicate navigation and
// project the server-qualified media key to housekeeping consumers.
static final VideoPlayerActiveRouteGuard _activeRouteGuard = VideoPlayerActiveRouteGuard();
static String? get activeGlobalKey => _activeRouteGuard.activeGlobalKey;
static bool isNavigationActive(VideoPlayerLaunchIdentity identity) => _activeRouteGuard.blocks(identity);
Player? player;
Player? _bootstrapPlayer;
VideoVolumeController? _volumeController;
bool _isPlayerInitialized = false;
String? _playerInitializationError;
Future<void>? _playerInitializationOperation;
int _playerInitializationGeneration = 0;
late MediaItem _currentMetadata;
MediaItem? _nextEpisode;
MediaItem? _previousEpisode;
QueueNavigationStatus _nextEpisodeStatus = QueueNavigationStatus.failed;
bool _isResolvingCompletionAdjacency = false;
bool _isLoadingNext = false;
bool _isLoadingPrevious = false;
// In-flight media-source transition. At most one can run at a time: reloads
// and channel switches are mutually exclusive.
_PlaybackTransition _playbackTransition = _PlaybackTransition.idle;
_PlaybackTransitionLease? _playbackTransitionLease;
Completer<void>? _playbackTransitionIdleCompleter;
bool _playbackIntentShouldPlay = true;
int _pendingSubtitleCycleCount = 0;
bool _subtitleCycleDrainActive = false;
/// Media key of the last Watch Together switch failure the user was
/// toasted about — the heartbeat retry loop must not re-toast every 2s.
String? _wtSwitchToastShownForKey;
bool _showPlayNextDialog = false;
bool _isPhone = false;
late int _effectiveSelectedMediaIndex;
/// Media source id to request on the next resolve: the caller's initial
/// selection, then re-synced to the session's post-fallback effective id
/// by [_commitPlaybackSession]. Post-resolve consumers must read
/// `_playbackSession.mediaSourceId`, never this field.
String? _requestedMediaSourceId;
bool get _offlineLibraryMode => widget.isOffline;
// Transcode / quality state
late TranscodeQualityPreset _selectedQualityPreset;
int? _selectedAudioStreamId;
AudioTrack? _preferredAudioTrack;
SubtitleTrack? _preferredSubtitleTrack;
SubtitleTrack? _preferredSecondarySubtitleTrack;
bool _serverSupportsTranscoding = false;
// Kicked off early in the player initialization attempt for online non-live playback so
// the metadata fetch (and transcode-decision HTTP, if non-original preset)
// overlaps with MPV property configuration. Awaited inside `_startPlayback`
// immediately before `player.open()` needs the video URL.
Future<PlaybackContext>? _playbackDataFuture;
// The item currently loaded in the player: resolver output + effective
// selections, swapped atomically by [_commitPlaybackSession]. Null until
// the first resolve lands and always null for live TV (which tunes
// through its own path). The getters below denormalize it for the many
// existing read sites.
PlaybackSession? _playbackSession;
int _playbackGeneration = 0;
// Fired in parallel with MPV setup so the OS audio-focus negotiation
// (~90ms on Android) doesn't sit on the critical path. Awaited before
// `player.open()` so the semantics are unchanged — we just eat the cost
// during otherwise-idle setup time.
Future<void>? _audioFocusFuture;
late final String _playbackSessionIdentifier;
late String _playbackTranscodeSessionId;
StreamSubscription<PlayerError>? _errorSubscription;
StreamSubscription<bool>? _playingSubscription;
StreamSubscription<bool>? _completedSubscription;
StreamSubscription<dynamic>? _mediaControlSubscription;
StreamSubscription<AppleTvRemotePlayPauseAction>? _appleTvPlayPauseSubscription;
StreamSubscription<bool>? _bufferingSubscription;
StreamSubscription<Duration>? _positionSubscription;
StreamSubscription<void>? _playbackRestartSubscription;
StreamSubscription<void>? _backendSwitchedSubscription;
TrackManager? _trackManager;
StreamSubscription<PlayerLog>? _logSubscription;
StreamSubscription<void>? _sleepTimerSubscription;
StreamSubscription<bool>? _mediaControlsPlayingSubscription;
StreamSubscription<Duration>? _mediaControlsPositionSubscription;
StreamSubscription<double>? _mediaControlsRateSubscription;
StreamSubscription<bool>? _mediaControlsSeekableSubscription;
StreamSubscription<Map<String, bool>>? _serverStatusSubscription;
bool _isHandlingBack = false;
/// Set just before this screen replaces itself with another player route
/// (the fallback pushReplacement paths). Dispose then skips the app-level
/// player-exit side effects because the replacement continues the session.
bool _isReplacingWithVideo = false;
ScrubPreviewSource? _scrubPreviewSource;
/// Live TV session state (tune identity, heartbeats, capture buffer,
/// retry ladder) — inert for VOD screens. See [LiveTvSessionState].
late final LiveTvSessionState _live = LiveTvSessionState(widget.live);
/// Coalesces rapid relative live-TV skips into a single transcode re-open so
/// mashing skip-forward can't compound into an overshoot to live (#1253).
/// Lazily built; its closures read the current live state on each call.
late final LiveSeekAccumulator _liveSeek = LiveSeekAccumulator(
seek: _runLiveSeek,
currentEpoch: () => _rawPositionEpoch,
positionSeconds: () => player?.state.position.inSeconds ?? 0,
bounds: _liveSeekBounds,
onChanged: _onLiveSeekTargetChanged,
);
Timer? _autoPlayTimer;
int _autoPlayCountdown = 5;
// End-of-video Play Next latch. Completion comes from the player EOF signal;
// position ticks only re-arm once playback is more than 2s from the end.
final CompletionLatch _completionLatch = CompletionLatch(rearmWindowMs: 2000);
// Spurious-EOF recovery (#1520): a long pause can get the server-side
// stream reaped or the idle socket killed; on resume the player drains its
// cache and signals a clean EOF mid-file. Recovery reloads in place,
// bounded so a persistently dying stream can't reload-loop. The budget
// restores once playback progresses well past the last recovery point or
// on an item change; user-initiated retries (play/seek) are always allowed
// and never consume it.
static const int _maxSpuriousEofRecoveryAttempts = 2;
static const int _spuriousEofProgressResetMs = 30000;
int _spuriousEofRecoveryAttempts = 0;
int? _spuriousEofRecoveryBaselineMs;
/// Playback is parked mid-file on a dead stream: automatic recovery failed
/// or its budget is spent. Exits: user play/seek (always allowed) or the
/// server-status monitor seeing the server come back online.
bool _spuriousEofRecoveryParked = false;
late final FocusNode _playNextCancelFocusNode;
late final FocusNode _playNextConfirmFocusNode;
bool _showStillWatchingPrompt = false;
int _stillWatchingCountdown = 30;
Timer? _stillWatchingTimer;
late final FocusNode _stillWatchingPauseFocusNode;
late final FocusNode _stillWatchingContinueFocusNode;
// Screen-level focus node: persists across loading/initialized phases so
// key events never escape the video player route.
late final FocusNode _screenFocusNode;
// VLC-style in-player toast controller (rate changes, backend switch, etc.).
final PlayerToastController _toastController = PlayerToastController();
bool _reclaimingFocus = false;
// Cached setting: when false on Windows/Linux, ESC should not exit the player
bool _videoPlayerNavigationEnabled = false;
// App lifecycle state tracking
bool _wasPlayingBeforeInactive = false;
bool _hiddenForBackground = false;
bool _mediaControlsSuspendedForTvBackground = false;
bool _resumeAfterAppleAudioSessionPause = false;
DateTime? _lastPlaybackPauseAt;
bool _autoPipEnabled = false;
bool _exitFullscreenOnPlayerClose = false;
bool _androidAutoPipTransitionInFlight = false;
bool _pipFiltersPrepared = false;
VoidCallback? _autoPipEnteringCallback;
int _rewindOnResume = 0;
Future<void> _lifecycleTransition = Future<void>.value();
String _playerBackendLabel = 'unknown';
/// Android TV: release the native AV pipeline once the app stays
/// backgrounded past this grace window. A merely paused player keeps its
/// MediaCodec decoders and (tunneled passthrough) AudioTrack alive, which
/// on shared-pipeline TV SoCs degrades every other app until Plezy is
/// force-stopped. The grace absorbs transient hidden/paused blips
/// (assistant overlay, HDMI-CEC events) so quick app switches don't churn
/// codecs.
static const Duration _tvBackgroundPlayerSuspendGrace = Duration(seconds: 30);
Timer? _tvBackgroundPlayerSuspendTimer;
bool _playerSuspendedForTvBackground = false;
Duration? _tvBackgroundSuspendPosition;
AudioTrack? _tvBackgroundSuspendAudioTrack;
SubtitleTrack? _tvBackgroundSuspendSubtitleTrack;
SubtitleTrack? _tvBackgroundSuspendSecondarySubtitleTrack;
/// Whether to skip lifecycle actions because PiP is active or about to start.
/// Apple auto-PiP is system-initiated during the background transition, and
/// Android auto-PiP on API 26-30 has a brief native transition window before
/// onPipChanged fires.
bool get _shouldSkipForPip =>
PipService().isPipActive.value ||
((Platform.isIOS || Platform.isMacOS) && _autoPipEnabled) ||
(Platform.isAndroid && _androidAutoPipTransitionInFlight);
MediaControlsManager? _mediaControlsManager;
({bool canControlPlayback, bool canNavigateMediaItems})? _lastMediaControlAuthority;
PlaybackProgressTracker? _progressTracker;
VideoFilterManager? _videoFilterManager;
VideoPIPManager? _videoPIPManager;
ShaderService? _shaderService;
AmbientLightingService? _ambientLightingService;
bool _fullscreenListenerAttached = false;
Size? _lastVideoLayoutSize;
Size? _pendingVideoLayoutSize;
Player? _lastVideoLayoutPlayer;
bool _videoLayoutUpdateScheduled = false;
double? _pinchStartZoomScale;
int _pinchZoomActivationUpdateCount = 0;
bool _isPinchZooming = false;
bool _pinchZoomChanged = false;
final EpisodeNavigationService _episodeNavigation = EpisodeNavigationService();
WatchTogetherProvider? _watchTogetherProvider;
CompanionRemoteProvider? _companionRemoteProvider;
VoidCallback? _savedOnHome;
/// Backend-neutral lookup. Returns whichever client (Plex or Jellyfin)
/// owns this item. Used by the player initialization path.
MediaServerClient? _getMediaServerClient(BuildContext context) {
final id = _currentMetadata.serverId;
if (id == null) return null;
return context.read<MultiServerProvider>().serverManager.getClient(ServerId(id));
}
MediaServerClient? _getOnlineMediaServerClient(BuildContext context) {
final id = _currentMetadata.serverId;
if (id == null) return null;
final manager = context.read<MultiServerProvider>().serverManager;
if (!manager.isClientOnline(ServerId(id))) return null;
return manager.getClient(ServerId(id));
}
// Denormalized views over the committed [PlaybackSession]. Read sites
// keep their historical names; live TV (no session) gets the defaults.
PlaybackContext? get _playbackContext => _playbackSession?.context;
bool get _isTranscoding => _playbackSession?.isTranscoding ?? false;
bool get _effectiveIsOffline => _playbackSession?.isOffline ?? false;
String? get _playbackPlaySessionId => _playbackSession?.playSessionId;
String? get _playbackPlayMethod => _playbackSession?.playMethod;
List<MediaVersion> get _availableVersions => _playbackSession?.availableVersions ?? const [];
MediaSourceInfo? get _currentMediaInfo => _playbackSession?.mediaInfo;
bool get _usesLocalPlaybackSource => _effectiveIsOffline;
bool get _isOfflinePlayback => _offlineLibraryMode || _effectiveIsOffline;
/// Atomically publish a freshly opened [PlaybackSession] and refine the
/// selection-intent fields from what the backend actually delivered
/// (clamped version index, active audio stream, post-fallback preset).
///
/// Reload-style flows call this from the open boundary: a failure before
/// the commit leaves the previous session — and everything derived from
/// it — untouched, so there is nothing to roll back.
void _commitPlaybackSession(PlaybackSession session) {
_playbackSession = session;
_effectiveSelectedMediaIndex = session.mediaIndex;
_requestedMediaSourceId = session.mediaSourceId;
_selectedQualityPreset = session.qualityPreset;
_selectedAudioStreamId = session.audioStreamId;
// Any freshly opened stream ends a dead-stream park (#1520).
_spuriousEofRecoveryParked = false;
// Every successful open passes through here (never live TV), making it
// the chokepoint for the local last-played history. Offline plays are
// excluded — like version prefs, the history describes online intent.
if (!session.isOffline) {
unawaited(LocalPlaybackHistory.recordPlayback(session.metadata));
}
}
PlaybackSession _updatePlaybackSessionSubtitleSelection(
PlaybackSession session,
PlaybackSubtitleSelection selection,
) {
final updated = session.withSubtitleSelection(selection);
_playbackSession = updated;
return updated;
}
ScrubFrame? _getThumbnailData(Duration time) => _scrubPreviewSource?.getFrame(time);
int _beginPlaybackGeneration({bool isMediaReload = false}) {
if (!isMediaReload) _forcePlaybackTransitionIdle();
return ++_playbackGeneration;
}
_PlaybackTransitionLease? _tryAcquirePlaybackTransition(_PlaybackTransition transition) {
assert(transition != _PlaybackTransition.idle);
if (_playbackTransition != _PlaybackTransition.idle) return null;
final lease = _PlaybackTransitionLease();
_playbackTransitionLease = lease;
_changePlaybackTransition(transition);
return lease;
}
bool _ownsPlaybackTransition(_PlaybackTransitionLease lease, {_PlaybackTransition? expected}) {
return identical(_playbackTransitionLease, lease) && (expected == null || _playbackTransition == expected);
}
bool _advancePlaybackTransition(
_PlaybackTransitionLease lease,
_PlaybackTransition transition, {
_PlaybackTransition? expected,
}) {
assert(transition != _PlaybackTransition.idle);
if (!_ownsPlaybackTransition(lease, expected: expected)) return false;
_changePlaybackTransition(transition);
return true;
}
void _releasePlaybackTransition(_PlaybackTransitionLease lease) {
if (!identical(_playbackTransitionLease, lease)) return;
_playbackTransitionLease = null;
_changePlaybackTransition(_PlaybackTransition.idle);
}
void _forcePlaybackTransitionIdle() {
_playbackTransitionLease?._markSuperseded();
_playbackTransitionLease = null;
_changePlaybackTransition(_PlaybackTransition.idle);
}
void _changePlaybackTransition(_PlaybackTransition transition) {
if (_playbackTransition == transition) return;
_playbackTransition = transition;
if (transition == _PlaybackTransition.idle) {
final completer = _playbackTransitionIdleCompleter;
_playbackTransitionIdleCompleter = null;
if (completer != null && !completer.isCompleted) completer.complete();
} else {
_playbackTransitionIdleCompleter ??= Completer<void>();
}
}
Future<void> _waitForPlaybackTransitionIdle() async {
while (mounted && _playbackTransition != _PlaybackTransition.idle) {
_playbackTransitionIdleCompleter ??= Completer<void>();
await _playbackTransitionIdleCompleter!.future;
}
}
/// Start a new playback attempt: invalidates automatic track selection,
/// bumps the generation, and captures the owning player so async
/// continuations can check [_PlaybackAttempt.isCurrent] uniformly instead of
/// threading (generation, player) pairs around. Reloads await the captured,
/// bounded mutation drain at their replacement-open boundary.
_PlaybackAttempt _beginPlaybackAttempt(Player currentPlayer, {bool isMediaReload = false}) {
final trackMutationDrain = _trackManager?.invalidatePendingSelection() ?? Future<void>.value();
return _PlaybackAttempt._(
this,
_beginPlaybackGeneration(isMediaReload: isMediaReload),
currentPlayer,
trackMutationDrain,
);
}
bool _isCurrentPlaybackGeneration(int generation, Player currentPlayer) {
return mounted && player == currentPlayer && _playbackGeneration == generation;
}
Future<void> _playWithPlaybackIntent(Player currentPlayer) {
_playbackIntentShouldPlay = true;
if (widget.isLive && _live.retryFailed) {
if (_live.retrying) return Future.value();
_live.retrying = true;
return _retryLiveStream();
}
if (_spuriousEofRecoveryParked && _playbackTransition == _PlaybackTransition.idle) {
// Parked on a dead stream: play/pause on a drained cache is a no-op
// (mpv doesn't even flip `pause` on EOF), so any press means "get my
// video back" — rebuild the stream instead (#1520).
return _retrySpuriousEofRecovery(reason: 'play pressed');
}
return currentPlayer.play();
}
Future<void> _pauseWithPlaybackIntent(Player currentPlayer) {
_playbackIntentShouldPlay = false;
return currentPlayer.pause();
}
Future<void> _playOrPauseWithPlaybackIntent(Player currentPlayer) {
if (widget.isLive && _live.retryFailed) {
return _playWithPlaybackIntent(currentPlayer);
}
if (_spuriousEofRecoveryParked && _playbackTransition == _PlaybackTransition.idle) {
_playbackIntentShouldPlay = true;
return _retrySpuriousEofRecovery(reason: 'play/pause pressed');
}
_playbackIntentShouldPlay = !currentPlayer.state.playing;
return currentPlayer.playOrPause();
}
final ValueNotifier<bool> _isBuffering = ValueNotifier<bool>(false);
final ValueNotifier<bool> _hasFirstFrame = ValueNotifier<bool>(false);
// UI readiness may be forced true to hide the loading spinner after a
// startup failure. Reporting readiness is stricter: only a renderer event
// (or the established non-ExoPlayer position fallback) sets this latch.
bool _hasRenderedFirstFrame = false;
bool _hasFatalPlaybackError = false;
final ValueNotifier<bool> _isExiting = ValueNotifier<bool>(false);
final PlayerChromeController _chromeController = PlayerChromeController();
late final PlayerNavigationCoordinator _playerNavigationCoordinator;
@override
void initState() {
super.initState();
unawaited(AndroidExitDiagnostics.markUiState(AndroidUiState.player));
_playerNavigationCoordinator = PlayerNavigationCoordinator(
chromeController: _chromeController,
isPromptOpen: () => _showPlayNextDialog || _showStillWatchingPrompt,
dismissPrompt: _dismissPlaybackPromptForBack,
isChromePresented: () =>
_isPlayerInitialized && player != null && _hasFirstFrame.value && _chromeController.controlsPresented,
exitFullscreenIfActive: FullscreenStateManager().exitFullscreenIfActive,
// macOS fullscreen belongs to the app window, while HTPC-style player
// navigation treats physical Escape as semantic Back. In both cases the
// player must leave native fullscreen alone.
physicalEscapeExitsFullscreen: () => shouldPhysicalEscapeExitFullscreen(
isMacOS: Platform.isMacOS,
videoPlayerNavigationEnabled: _videoPlayerNavigationEnabled,
),
exitPlayer: () => unawaited(_handleBackButton()),
navigateHome: _handleHomeButton,
isActive: () => mounted,
);
_currentMetadata = widget.metadata;
_activeRouteGuard.activate(
this,
VideoPlayerLaunchIdentity(
metadata: widget.metadata,
mediaIndex: widget.selectedMediaIndex,
selectedMediaSourceId: widget.selectedMediaSourceId,
selectedQualityPreset: widget.selectedQualityPreset,
isOffline: widget.isOffline,
routeKind: widget.isLive ? VideoPlayerRouteKind.liveTv : VideoPlayerRouteKind.vod,
),
);
_effectiveSelectedMediaIndex = widget.selectedMediaIndex;
_requestedMediaSourceId = widget.selectedMediaSourceId;
// Reused across in-place quality/version/audio switches so the
// server-side transcode session is preserved.
_playbackSessionIdentifier = generateSessionIdentifier();
_playbackTranscodeSessionId = generateSessionIdentifier();
_selectedAudioStreamId = widget.selectedAudioStreamId;
_preferredAudioTrack = widget.preferredAudioTrack;
_preferredSubtitleTrack = widget.preferredSubtitleTrack;
_preferredSecondarySubtitleTrack = widget.preferredSecondarySubtitleTrack;
_selectedQualityPreset = widget.selectedQualityPreset ?? TranscodeQualityPreset.original;
_playNextCancelFocusNode = FocusNode(debugLabel: 'PlayNextCancel');
_playNextConfirmFocusNode = FocusNode(debugLabel: 'PlayNextConfirm');
_stillWatchingPauseFocusNode = FocusNode(debugLabel: 'StillWatchingPause');
_stillWatchingContinueFocusNode = FocusNode(debugLabel: 'StillWatchingContinue');
// Screen-level focus node that wraps the entire build output.
// Ensures a single stable focus target across loading → initialized phases.
_screenFocusNode = FocusNode(debugLabel: 'VideoPlayerScreen');
_screenFocusNode.addListener(_onScreenFocusChanged);
HardwareKeyboard.instance.addHandler(_primeInitializationNavigationFocus);
appLogger.d('VideoPlayerScreen initialized for: ${_currentMetadata.title}');
if (_preferredAudioTrack != null) {
appLogger.d(
'Preferred audio track: ${_preferredAudioTrack!.title ?? _preferredAudioTrack!.id} (${_preferredAudioTrack!.language ?? "unknown"})',
);
}
if (_preferredSubtitleTrack != null) {
final subtitleDesc = _preferredSubtitleTrack!.id == "no"
? "OFF"
: "${_preferredSubtitleTrack!.title ?? _preferredSubtitleTrack!.id} (${_preferredSubtitleTrack!.language ?? "unknown"})";
appLogger.d('Preferred subtitle track: $subtitleDesc');
}
try {
final playbackState = context.read<PlaybackStateProvider>();
// Defer both operations until after the first frame to avoid calling
// notifyListeners() during build
WidgetsBinding.instance.addPostFrameCallback((_) {
// Keep the queue when this item belongs to it — that covers both
// server-side queues (Plex `playQueueItemId`) and client-side
// launcher-seeded queues (Jellyfin playlist/collection/shuffled
// show, with synthetic ids tracked in the provider). For genuine
// standalone playback (continue-watching, direct episode tap with no
// queue launcher) clear any stale queue so prev/next stays consistent.
final meta = _currentMetadata;
if (playbackState.isItemInActiveQueue(meta)) {
playbackState.setCurrentItem(meta);
} else {
playbackState.clearShuffle();
}
});
} catch (e) {
appLogger.d('Deferred playback state update (provider not ready)', error: e);
}
WidgetsBinding.instance.addObserver(this);
_setupCompanionRemoteCallbacks();
_setupAppleTvRemotePlaybackActions();
_sleepTimerSubscription = SleepTimerService().onPrompt.listen((_) {
if (mounted) _showStillWatchingDialog();
});
unawaited(_startPlayerInitialization(replaceCurrent: false));
}
@override
void didChangeDependencies() {
super.didChangeDependencies();
// Cache device type for safe access in dispose()
try {
_isPhone = PlatformDetector.isPhone(context);
} catch (e) {
appLogger.w('Failed to determine device type', error: e);
_isPhone = false; // Default to tablet/desktop (all orientations)
}
// Update video filter when dependencies change (orientation, screen size, etc.)
WidgetsBinding.instance.addPostFrameCallback((_) {
_videoFilterManager?.debouncedUpdateVideoFilter();
});
}
@override
void didChangeAppLifecycleState(AppLifecycleState state) {
super.didChangeAppLifecycleState(state);
switch (state) {
case AppLifecycleState.inactive:
_recordLifecycleState('inactive');
break;
case AppLifecycleState.hidden:
_recordLifecycleState('hidden');
_enqueueLifecycleTransition('hidden', _handleAppHidden);
break;
case AppLifecycleState.paused:
if (_shouldSkipForPip) {
_recordLifecycleState('paused', action: 'skipped_for_pip');
break;
}
// We don't support background playback
if (_shouldSuspendMediaControlsForTvBackground) {
unawaited(_suspendMediaControlsForTvBackground('paused'));
} else {
unawaited(_mediaControlsManager?.clear());
}
unawaited(_wakelockController.setEnabled(false));
_recordLifecycleState('paused', action: 'backgrounded');
break;
case AppLifecycleState.resumed:
// Synchronously, before the queued transition: a pending suspend must
// not fire between this event and _handleAppResumed running.
_cancelTvBackgroundPlayerSuspendTimer();
_recordLifecycleState('resumed');
_enqueueLifecycleTransition('resumed', _handleAppResumed);
break;
case AppLifecycleState.detached:
_recordLifecycleState('detached');
if (widget.isLive) unawaited(_sendStoppedProgressOnce());
break;
}
}
Future<void> _startPlayerInitialization({required bool replaceCurrent}) {
final activeOperation = _playerInitializationOperation;
if (activeOperation != null) return activeOperation;
final generation = ++_playerInitializationGeneration;
final operationCompleter = Completer<void>();
final operation = operationCompleter.future;
_playerInitializationOperation = operation;
unawaited(() async {
try {
await _runPlayerInitializationAttempt(generation, replaceCurrent: replaceCurrent);
} catch (e, st) {
appLogger.e('Unexpected player initialization lifecycle failure', error: e, stackTrace: st);
} finally {
if (identical(_playerInitializationOperation, operation)) {
_playerInitializationOperation = null;
}
operationCompleter.complete();
}
}());
return operation;
}
void _retryPlayerInitialization() {
unawaited(_startPlayerInitialization(replaceCurrent: true));
}
bool _isPlayerInitializationCurrent(int generation) {
return mounted && generation == _playerInitializationGeneration;
}
bool _ownsPlayerInitializationAttempt(int generation, Player currentPlayer) {
return _isPlayerInitializationCurrent(generation) && identical(player, currentPlayer);
}
void _disposeVolumeControllerForPlayer(Player currentPlayer) {
final controller = _volumeController;
if (controller == null || !controller.ownsPlayer(currentPlayer)) return;
_volumeController = null;
controller.dispose();
}
Future<void> _disposePlayerInitializationAttempt(Player attemptPlayer) async {
_playbackGeneration++;
_disposeVolumeControllerForPlayer(attemptPlayer);
if (identical(player, attemptPlayer)) {
player = null;
}
if (identical(_bootstrapPlayer, attemptPlayer)) {
_bootstrapPlayer = null;
}
try {
await _tearDownFailedPlayerAttempt(attemptPlayer);
} catch (e, st) {
appLogger.w('Failed to tear down player collaborators during initialization rollback', error: e, stackTrace: st);
}
try {
await attemptPlayer.abandonAudioFocus();
} catch (e, st) {
appLogger.w('Failed to abandon audio focus during player rollback', error: e, stackTrace: st);
}
try {
await attemptPlayer.dispose(preserveDisplayMode: false);
} catch (e, st) {
appLogger.w('Failed to dispose player during initialization rollback', error: e, stackTrace: st);
}
}
Future<void> _runPlayerInitializationAttempt(int generation, {required bool replaceCurrent}) async {
var initPhase = 'starting';
Player? attemptPlayer;
var committed = false;
String? failureMessage;
try {
if (!_isPlayerInitializationCurrent(generation)) return;
setState(() {
_playerInitializationError = null;
_isPlayerInitialized = false;
});
if (replaceCurrent) {
final previousPlayer = player;
if (previousPlayer != null) {
await _disposePlayerInitializationAttempt(previousPlayer);
}
if (!_isPlayerInitializationCurrent(generation)) return;
}
initPhase = 'loading settings';
final settingsService = await SettingsService.getInstance();
if (!_isPlayerInitializationCurrent(generation)) return;
_videoPlayerNavigationEnabled = settingsService.read(SettingsService.videoPlayerNavigationEnabled);
_autoPipEnabled = settingsService.read(SettingsService.autoPip);
_exitFullscreenOnPlayerClose = settingsService.read(SettingsService.exitFullscreenOnPlayerClose);
_rewindOnResume = settingsService.read(SettingsService.rewindOnResume);
final bufferSizeMB = settingsService.read(SettingsService.bufferSize);
final enableHardwareDecoding = settingsService.read(SettingsService.enableHardwareDecoding);
final debugLoggingEnabled = settingsService.read(SettingsService.enableDebugLogging);
final useExoPlayer = settingsService.read(SettingsService.useExoPlayer);
if (Platform.isWindows) {
initPhase = 'syncing display mode';
_displayModeService = DisplayModeService(settingsService, FullscreenStateManager());
await _displayModeService!.syncWithNative();
if (!_isPlayerInitializationCurrent(generation)) return;
if (!_fullscreenListenerAttached) {
FullscreenStateManager().addListener(_onFullscreenChanged);
_fullscreenListenerAttached = true;
}
}
// One-native-instance rule: a live music session owns the only audio
// core — stop it and wait for its dispose before constructing the
// video core (see PlaybackCoordinator).
initPhase = 'claiming playback session';
await PlaybackCoordinator.instance.claimVideo();
if (!mounted || generation != _playerInitializationGeneration) return;
initPhase = 'creating player';
final currentPlayer = Player(useExoPlayer: useExoPlayer);
attemptPlayer = currentPlayer;
if (!mounted || generation != _playerInitializationGeneration) return;
if (currentPlayer is PlayerNative && currentPlayer.requiresProvisionalTextureSurface) {
setState(() => _bootstrapPlayer = currentPlayer);
}
if (Platform.isAndroid && useExoPlayer) {
await currentPlayer.setLogLevel(debugLoggingEnabled ? 'v' : 'warn');
if (!mounted || generation != _playerInitializationGeneration) return;
}
// Kick off getPlaybackData() in parallel with the rest of MPV setup.
// The network/DB work has no dependency on the player — it just needs
// the context (providers), which is still safe to touch here because
// no async gaps invalidate it before the calls below read it.
// Skipped for live TV (has its own tune path) and offline (its own
// branch in _startPlayback).
if (!widget.isLive && !_offlineLibraryMode) {
// Backend-neutral lookup so Jellyfin items also flow through here.
// Plex-specific transcoder caching is gated on capabilities below;
// Jellyfin's `streamHeaders` is empty because it embeds api_key in
// the query string, while Plex returns the X-Plex-* identity headers.
final genericClient = _getMediaServerClient(context);
if (genericClient == null) {
throw StateError('No client registered for ${_currentMetadata.serverId}');
}
// Single source of truth for showing quality controls and applying the
// saved startup quality. Backends that cannot transcode always start at
// Original even if the user picked a lower default quality.
_serverSupportsTranscoding = genericClient.capabilities.videoTranscoding;
if (widget.selectedQualityPreset == null) {
_selectedQualityPreset = _serverSupportsTranscoding
? settingsService.read(SettingsService.defaultQualityPreset)
: TranscodeQualityPreset.original;
} else {
_selectedQualityPreset = widget.selectedQualityPreset!;
}
final playbackResolver = PlaybackSourceResolver(
serverManager: context.read<MultiServerProvider>().serverManager,
database: context.read<AppDatabase>(),
);
_playbackDataFuture = playbackResolver.resolve(
metadata: _currentMetadata,
selectedMediaIndex: _effectiveSelectedMediaIndex,
selectedMediaSourceId: _requestedMediaSourceId,
preferredVersionSignature: widget.preferredVersionSignature,
offlineLibraryMode: false,
qualityPreset: _selectedQualityPreset,
selectedAudioStreamId: _selectedAudioStreamId,
preferredSubtitleTrack: _preferredSubtitleTrack,
sessionIdentifier: _playbackSessionIdentifier,
transcodeSessionId: _playbackTranscodeSessionId,
);
// If MPV setup below throws before `_startPlayback` awaits this,
// tell Dart we've "handled" the future so it's not reported as an
// unhandled async error. The later `await` still receives the error.
_playbackDataFuture!.ignore();
}
if (!_isPlayerInitializationCurrent(generation)) return;
initPhase = 'configuring player';
await currentPlayer.configureSubtitleFonts();
await currentPlayer.setProperty('sub-ass', 'yes'); // Enable libass
if (Platform.isAndroid && useExoPlayer) {
final tunneledPlayback = settingsService.read(SettingsService.tunneledPlayback);
await currentPlayer.setProperty('tunneled-playback', tunneledPlayback ? 'yes' : 'no');
}
if ((Platform.isAndroid && useExoPlayer) || Platform.isIOS || Platform.isMacOS) {
final dvConversionMode = settingsService.read(SettingsService.dvConversionMode);
await currentPlayer.setProperty('dv-conversion-mode', dvConversionMode.nativeValue);
}
if (Platform.isIOS || Platform.isMacOS) {
await currentPlayer.setProperty('dv-conversion-log', debugLoggingEnabled ? 'yes' : 'no');
}
if (bufferSizeMB > 0) {
final bufferSizeBytes = bufferSizeMB * 1024 * 1024;
await currentPlayer.setProperty('demuxer-max-bytes', bufferSizeBytes.toString());
final backBytes = bufferSizeBytes ~/ 4;
await currentPlayer.setProperty('demuxer-max-back-bytes', backBytes.toString());
}
if (Platform.isAndroid) {
// Cap demuxer buffers based on device heap to prevent OOM crashes.
// Without limits, mpv defaults can consume 225MB+ just for demuxer
// buffering, which combined with decoded frames and GPU textures
// exhausts the process address space on memory-constrained devices.
final heapMB = await PlayerAndroid.getHeapSize();
if (!_isPlayerInitializationCurrent(generation)) return;
if (heapMB > 0) {
int autoBackMB;
if (heapMB <= 256) {
autoBackMB = 16;
} else if (heapMB <= 512) {
autoBackMB = 32;
} else {
autoBackMB = 48;
}
if (bufferSizeMB == 0) {
int autoForwardMB;
if (heapMB <= 256) {
autoForwardMB = 32;
} else if (heapMB <= 512) {
autoForwardMB = 64;
} else {
autoForwardMB = 100;
}
await currentPlayer.setProperty('demuxer-max-bytes', '${autoForwardMB * 1024 * 1024}');
await currentPlayer.setProperty('demuxer-max-back-bytes', '${autoBackMB * 1024 * 1024}');
} else {
// Manual mode: cap back-buffer relative to heap if 1/4 ratio is too high
final maxBackBytes = min(bufferSizeMB * 1024 * 1024 ~/ 4, autoBackMB * 1024 * 1024);
await currentPlayer.setProperty('demuxer-max-back-bytes', maxBackBytes.toString());
}
}
}
// requestAudioFocus initializes Android players, so start it only after
// init-time ExoPlayer options above have been cached.
if (Platform.isAndroid && !widget.isLive) {
_audioFocusFuture = currentPlayer.requestAudioFocus();
_audioFocusFuture!.ignore();
}
await currentPlayer.setProperty('msg-level', debugLoggingEnabled ? 'all=debug,ffmpeg/video=warn' : 'all=error');
if (!Platform.isAndroid || useExoPlayer) {
await currentPlayer.setLogLevel(debugLoggingEnabled ? 'v' : 'warn');
}
await currentPlayer.setProperty('hwdec', _getHwdecValue(enableHardwareDecoding));
await currentPlayer.setProperty(
'sub-font-size',
settingsService.read(SettingsService.subtitleFontSize).toString(),
);
await currentPlayer.setProperty('sub-color', settingsService.read(SettingsService.subtitleTextColor));
await currentPlayer.setProperty(
'sub-border-size',
settingsService.read(SettingsService.subtitleBorderSize).toString(),
);
await currentPlayer.setProperty('sub-border-color', settingsService.read(SettingsService.subtitleBorderColor));
await currentPlayer.setProperty('sub-bold', settingsService.read(SettingsService.subtitleBold) ? 'yes' : 'no');
await currentPlayer.setProperty(
'sub-italic',
settingsService.read(SettingsService.subtitleItalic) ? 'yes' : 'no',
);
final bgOpacity = (settingsService.read(SettingsService.subtitleBackgroundOpacity) * 255 / 100).toInt();
final bgColor = settingsService.read(SettingsService.subtitleBackgroundColor).replaceFirst('#', '');
await currentPlayer.setProperty(
'sub-back-color',
'#${bgOpacity.toRadixString(16).padLeft(2, '0').toUpperCase()}$bgColor',
);
if (settingsService.read(SettingsService.subtitleBackgroundOpacity) > 0) {
await currentPlayer.setProperty('sub-border-style', 'background-box');
}
await currentPlayer.setProperty('sub-ass-override', settingsService.read(SettingsService.subAssOverride).name);
await currentPlayer.setProperty('sub-ass-video-aspect-override', '1');
await currentPlayer.setProperty('sub-pos', settingsService.read(SettingsService.subtitlePosition).toString());
if (Platform.isIOS) {
await currentPlayer.setProperty('audio-exclusive', 'yes');
// Rasterize subtitles at the video's resolution instead of the
// display's; the OSD layer upscales them with the video.
await currentPlayer.setProperty(
'avfoundation-osd-video-res',
settingsService.read(SettingsService.subtitleRenderResolution) == SubtitleRenderResolution.video
? 'yes'
: 'no',
);
}
// Audio passthrough (desktop, Android TV, and Apple TV, where the native
// sample-buffer renderer handles AC3/EAC3, including JOC metadata).
if (PlatformDetector.supportsAudioPassthrough()) {
await currentPlayer.setAudioPassthrough(settingsService.read(SettingsService.audioPassthrough));
}
// HDR is controlled via custom hdr-enabled property on iOS/macOS/Windows
if (Platform.isIOS || Platform.isMacOS || Platform.isWindows) {
final enableHDR = settingsService.read(SettingsService.enableHDR);
await currentPlayer.setProperty('hdr-enabled', enableHDR ? 'yes' : 'no');
}
final audioSyncOffset = settingsService.read(SettingsService.audioSyncOffset);
if (audioSyncOffset != 0) {
final offsetSeconds = audioSyncOffset / 1000.0;
await currentPlayer.setProperty('audio-delay', offsetSeconds.toString());
}
final subtitleSyncOffset = settingsService.read(SettingsService.subtitleSyncOffset);
if (subtitleSyncOffset != 0) {
final offsetSeconds = subtitleSyncOffset / 1000.0;
await currentPlayer.setProperty('sub-delay', offsetSeconds.toString());
}
if (settingsService.read(SettingsService.audioNormalization)) {
await currentPlayer.setAudioNormalization(true);
}
// After the passthrough apply: downmix wins on both backends (mpv
// clears audio-spdif, ExoPlayer force-decodes encoded audio).
if (settingsService.read(SettingsService.audioDownmix)) {
await currentPlayer.setAudioDownmix(
enabled: true,
centerBoostDb: settingsService.read(SettingsService.downmixCenterBoost),
normalize: settingsService.read(SettingsService.audioDownmixNormalize),
);
}
if (PlatformDetector.isDesktopOS()) {
await currentPlayer.setProperty('screenshot-directory', '~/Pictures');
}
final customMpvConfig = SettingsService.parseMpvConfigText(settingsService.read(SettingsService.mpvConfigText));
for (final entry in customMpvConfig.entries) {
try {
await currentPlayer.setProperty(entry.key, entry.value);
appLogger.d('Applied custom MPV property: ${entry.key}=${entry.value}');
} catch (e) {
appLogger.w('Failed to set MPV property ${entry.key}', error: e);
}
}
final maxVolume = settingsService.read(SettingsService.maxVolume);
await currentPlayer.setProperty('volume-max', maxVolume.toString());
final savedVolume = settingsService.read(SettingsService.volume).clamp(0.0, maxVolume.toDouble());
await currentPlayer.setVolume(savedVolume);
if (!_isPlayerInitializationCurrent(generation)) return;
_volumeController = VideoVolumeController(
player: currentPlayer,
settings: settingsService,
initialVolume: savedVolume,
);
player = currentPlayer;
_playerBackendLabel = currentPlayer.playerType;
initPhase = 'wiring player streams';
await _wirePlayerStreams(
currentPlayer: currentPlayer,
settingsService: settingsService,
useExoPlayer: useExoPlayer,
);
if (!_ownsPlayerInitializationAttempt(generation, currentPlayer)) return;
if (mounted) {
setState(() {
_isPlayerInitialized = true;
_bootstrapPlayer = null;
});
// Restart sleep timer if we're starting a new playback session
SleepTimerService().restartIfNeeded(() => unawaited(_pauseWithPlaybackIntent(currentPlayer)));
// Enable wakelock to prevent screen from turning off during playback
unawaited(_wakelockController.setEnabled(true));
appLogger.d('Wakelock enabled for video playback');
}
initPhase = 'starting playback';
await _startPlayback();
if (!_ownsPlayerInitializationAttempt(generation, currentPlayer)) return;
// Set fullscreen mode and orientation based on rotation lock setting
initPhase = 'applying orientation';
if (mounted) {
try {
// Check rotation lock setting before applying orientation
final isRotationLocked = settingsService.read(SettingsService.rotationLocked);
if (isRotationLocked) {
// Locked: Apply landscape orientation only
OrientationHelper.setLandscapeOrientation();
} else {
// Unlocked: Allow all orientations immediately
unawaited(SystemChrome.setPreferredOrientations(DeviceOrientation.values));
unawaited(SystemChrome.setEnabledSystemUIMode(SystemUiMode.immersiveSticky));
}
} catch (e) {
appLogger.w('Failed to set orientation', error: e);
// Don't crash if orientation fails - video can still play
}
}
if (!_ownsPlayerInitializationAttempt(generation, currentPlayer)) return;
// Player streams are wired before open so broadcast first-frame events
// cannot be dropped. Service init follows immediately after open.
// `_loadAdjacentEpisodes` depends on the play queue being in state
// (EpisodeNavigationService bails when !isQueueActive), so chain it
// after `_ensurePlayQueue`. Both stay fire-and-forget so HTTP latency
// is off the critical path; the user can't hit next/previous buttons
// until after first frame anyway.
unawaited(
_ensurePlayQueue().whenComplete(() {
if (mounted) _loadAdjacentEpisodes();
}),
);
initPhase = 'initializing playback services';
await _initializeServices();
if (!_ownsPlayerInitializationAttempt(generation, currentPlayer)) return;
committed = true;
} catch (e, st) {
failureMessage = _safePlaybackErrorMessage(e);
appLogger.e('Failed to initialize player during $initPhase', error: e, stackTrace: st);
} finally {
final failedAttempt = attemptPlayer;
if (!committed && failedAttempt != null) {
await _disposePlayerInitializationAttempt(failedAttempt);
}
}
if (failureMessage != null && _isPlayerInitializationCurrent(generation)) {
setState(() {
_isPlayerInitialized = false;
_playerInitializationError = failureMessage;
});
}
}
/// Windows display mode matching service.
DisplayModeService? _displayModeService;
/// Android display frame-rate matching state (retry counter, applied
/// latch, MediaSession pause-suppression window) — see [FrameRateMatcher].
final FrameRateMatcher _frameRate = FrameRateMatcher();
Future<Duration?> _pauseAndHidePlayerForRouteExit() async {
final currentPlayer = player;
if (currentPlayer == null || !_isPlayerInitialized) return null;
final exitPosition = currentPlayer.state.position;
if (currentPlayer.state.isActive) {
try {
await _pauseWithPlaybackIntent(currentPlayer);
} catch (e, st) {
appLogger.w('Failed to pause player during route exit', error: e, stackTrace: st);
}
}
if (!mounted || currentPlayer != player) return exitPosition;
if (Platform.isAndroid && PlatformDetector.isTV()) {
try {
await currentPlayer.setVisible(false);
} catch (e, st) {
appLogger.w('Failed to hide Android TV player surface during route exit', error: e, stackTrace: st);
}
}
return exitPosition;
}
/// Pause/hide the player, flush stopped progress, restore system UI and
/// orientation, then leave the player route. No-op when the route cannot pop.
Future<void> _exitPlayerRoute({required bool navigateHome}) async {
final navigator = Navigator.of(context);
if (!navigator.canPop()) return;
_isExiting.value = true;
final exitPosition = await _pauseAndHidePlayerForRouteExit();
if (!mounted) return;
await _sendStoppedProgressOnce(positionOverride: exitPosition);
if (!mounted) return;
await _restoreSystemUiAndOrientation();
if (!mounted) return;
_finishPlayerNavigation(navigator, navigateHome: navigateHome);
}
/// Handle back button press
/// For non-host participants in Watch Together, shows leave session confirmation
Future<void> _handleBackButton({bool navigateHome = false}) async {
if (!navigateHome && (_showPlayNextDialog || _showStillWatchingPrompt)) {
_dismissPlaybackPromptForBack();
return;
}
if (_isHandlingBack) return;
_isHandlingBack = true;
try {
// For non-host participants, show leave session confirmation
if (_watchTogetherProvider != null && _watchTogetherProvider!.isInSession && !_watchTogetherProvider!.isHost) {
final confirmed = await showConfirmDialog(
context,
title: t.watchTogether.leaveSessionQuestion,
message: t.watchTogether.leaveSessionConfirm,
confirmText: t.watchTogether.leave,
isDestructive: true,
);
if (confirmed && mounted) {
await _watchTogetherProvider!.leaveSession();
if (mounted) await _exitPlayerRoute(navigateHome: navigateHome);
}
return;
}
// Default behavior for hosts or non-session users
if (!mounted) return;
await _exitPlayerRoute(navigateHome: navigateHome);
} finally {
_isHandlingBack = false;
}
}
void _handleHomeButton() {
unawaited(_handleBackButton(navigateHome: true));
}
void _finishPlayerNavigation(NavigatorState navigator, {required bool navigateHome}) {
if (!navigateHome) {
navigator.pop(true);
return;
}
final onHome = _savedOnHome;
navigator.popUntil((route) => route.isFirst);
onHome?.call();
}
void _handleScreenPlayerNavigation(PlayerNavigationKey navigationKey) {
if (navigationKey != PlayerNavigationKey.home) {
final sheetController = OverlaySheetController.maybeOf(context);
if (sheetController?.isOpen ?? false) {
sheetController!.pop();
return;
}
}
_playerNavigationCoordinator.handle(navigationKey);
}
Future<void> _restoreSystemUiAndOrientation() async {
if (PlatformDetector.isDesktopOS() && _exitFullscreenOnPlayerClose) {
unawaited(FullscreenStateManager().exitFullscreen());
}
try {
await OrientationHelper.restoreSystemUI();
} catch (e) {
appLogger.w('Failed to restore system UI', error: e);
}
try {
if (_isPhone) {
await SystemChrome.setPreferredOrientations([DeviceOrientation.portraitUp, DeviceOrientation.portraitDown]);
} else {
await SystemChrome.setPreferredOrientations([
DeviceOrientation.portraitUp,
DeviceOrientation.portraitDown,
DeviceOrientation.landscapeLeft,
DeviceOrientation.landscapeRight,
]);
}
} catch (e) {
appLogger.w('Failed to restore orientation', error: e);
}
}
@override
void dispose() {
unawaited(AndroidExitDiagnostics.markUiState(AndroidUiState.mainScreen));
_playerInitializationGeneration++;
_frameRate.dispose();
WidgetsBinding.instance.removeObserver(this);
final transitionCompleter = _playbackTransitionIdleCompleter;
_playbackTransitionIdleCompleter = null;
if (transitionCompleter != null && !transitionCompleter.isCompleted) transitionCompleter.complete();
_cleanupCompanionRemoteCallbacks();
// Notify Watch Together guests that host is exiting the player.
// Use stored reference since context.read() may fail in dispose.
final isReplacingWithVideo = _isReplacingWithVideo;
if (!isReplacingWithVideo &&
_watchTogetherProvider != null &&
_watchTogetherProvider!.isHost &&
_watchTogetherProvider!.isInSession) {
_watchTogetherProvider!.notifyHostExitedPlayer();
}
_detachFromWatchTogetherSession();
_isBuffering.dispose();
_hasFirstFrame.dispose();
_isExiting.dispose();
_chromeController.dispose();
_toastController.dispose();
// The release sequence below mirrors _tearDownFailedPlayerAttempt but is
// deliberately separate: dispose() cannot await, and it destroys the
// notifiers, focus nodes and player that the rollback path keeps alive
// for a retry on a still-mounted screen.
//
// Stop progress tracking and send final state. Normal back navigation
// awaits this before popping; dispose keeps a fallback for externally
// removed routes where dispose() cannot await.
unawaited(_sendStoppedProgressOnce());
_progressTracker?.stopTracking();
_progressTracker?.dispose();
_stopLiveTimelineUpdates();
_detachPipStateListener();
_videoPIPManager?.onBeforeEnterPip = null;
unawaited(_videoPIPManager?.disableAutoPip());
_clearAutoPipEnteringCallback();
_videoFilterManager?.dispose();
_videoPIPManager = null;
_videoFilterManager = null;
_scrubPreviewSource?.dispose();
if (!isReplacingWithVideo) {
SleepTimerService().markNeedsRestart();
}
// Teardown scope: every subscription the screen ever owns, including the
// initState-owned sleep-timer and Apple TV ones that the rollback path
// must leave alive.
_playingSubscription?.cancel();
_completedSubscription?.cancel();
_errorSubscription?.cancel();
_mediaControlSubscription?.cancel();
_appleTvPlayPauseSubscription?.cancel();
_bufferingSubscription?.cancel();
_trackManager?.dispose();
_positionSubscription?.cancel();
_playbackRestartSubscription?.cancel();
_backendSwitchedSubscription?.cancel();
_logSubscription?.cancel();
_sleepTimerSubscription?.cancel();
_mediaControlsPlayingSubscription?.cancel();
_mediaControlsPositionSubscription?.cancel();
_mediaControlsRateSubscription?.cancel();
_mediaControlsSeekableSubscription?.cancel();
_serverStatusSubscription?.cancel();
_autoPlayTimer?.cancel();
_tvBackgroundPlayerSuspendTimer?.cancel();
_stillWatchingTimer?.cancel();
_liveSeek.dispose();
_playNextCancelFocusNode.dispose();
_playNextConfirmFocusNode.dispose();
_stillWatchingPauseFocusNode.dispose();
_stillWatchingContinueFocusNode.dispose();
_screenFocusNode.removeListener(_onScreenFocusChanged);
HardwareKeyboard.instance.removeHandler(_primeInitializationNavigationFocus);
_screenFocusNode.dispose();
_mediaControlsManager?.clear();
_mediaControlsManager?.dispose();
DiscordRPCService.instance.stopPlayback();
TraktScrobbleService.instance.stopPlayback();
TrackerCoordinator.instance.stopPlayback();
if (_fullscreenListenerAttached) {
FullscreenStateManager().removeListener(_onFullscreenChanged);
_fullscreenListenerAttached = false;
}
// Not _restoreWindowsDisplayMode(): that helper waits 200ms after clearing
// the HDR hint before restoring, which dispose() cannot do. Fire the hint
// clear at the still-live player and restore immediately.
if (!isReplacingWithVideo &&
Platform.isWindows &&
_displayModeService != null &&
_displayModeService!.anyChangeApplied) {
if (_displayModeService!.hdrStateChanged && player != null) {
final currentPlayer = player!;
unawaited(() async {
try {
await currentPlayer.setProperty('target-colorspace-hint', 'no');
} catch (error, stackTrace) {
appLogger.w(
'Failed to clear the Windows HDR colorspace hint during teardown',
error: error,
stackTrace: stackTrace,
);
}
}());
}
_displayModeService!.restoreAll();
}
// Clear frame rate matching and abandon audio focus before disposing player (Android only)
if (Platform.isAndroid && player != null) {
// Native dispose deliberately leaves the display mode for Dart to clear
// (ExoPlayerCore.releasePending) — skip it during a player→player
// replacement, the Android analog of preserveDisplayMode below.
if (!isReplacingWithVideo) {
player!.clearVideoFrameRate();
}
player!.abandonAudioFocus();
}
unawaited(_wakelockController.setEnabled(false));
appLogger.d('Wakelock disabled');
if (!isReplacingWithVideo) {
unawaited(_restoreSystemUiAndOrientation());
}
Sentry.addBreadcrumb(Breadcrumb(message: 'Player dispose', category: 'player'));
final volumeController = _volumeController;
_volumeController = null;
volumeController?.dispose();
final playerToDispose = player ?? _bootstrapPlayer;
player = null;
_bootstrapPlayer = null;
if (playerToDispose != null) {
// Keep the native display mode (tvOS HDMI criteria) across a
// player→player handoff; the replacement screen primes its own.
unawaited(playerToDispose.dispose(preserveDisplayMode: isReplacingWithVideo));
}
_activeRouteGuard.clear(this);
super.dispose();
}
/// When focus leaves the entire video player subtree, reclaim it.
/// `_screenFocusNode.hasFocus` is true when the node itself OR any
/// descendant has focus, so internal movement between child controls
/// does NOT trigger this.
void _onScreenFocusChanged() {
if (_reclaimingFocus) return;
if (!_screenFocusNode.hasFocus && mounted && !_isExiting.value) {
_reclaimingFocus = true;
WidgetsBinding.instance.addPostFrameCallback((_) {
_reclaimingFocus = false;
if (mounted && !_isExiting.value && !_screenFocusNode.hasFocus) {
_screenFocusNode.requestFocus();
}
});
}
}
/// Loading and initialization-error phases can receive a Back key-down
/// before their autofocus request has settled. Claim focus immediately so
/// the matching key-up reaches the player route and exits exactly once.
bool _primeInitializationNavigationFocus(KeyEvent event) {
if (!mounted || _isExiting.value) return false;
primePlayerNavigationFocusForEvent(
event,
focusNode: _screenFocusNode,
playerReady: _isPlayerInitialized && player != null && _hasFirstFrame.value,
isCurrentRoute: ModalRoute.of(context)?.isCurrent == true,
isAppleTV: PlatformDetector.isAppleTV(),
);
return false;
}
void _setupAppleTvRemotePlaybackActions() {
if (!PlatformDetector.isAppleTV()) return;
_appleTvPlayPauseSubscription = AppleTvRemoteTouchService.instance.playPauseActions.listen((action) {
unawaited(_handleAppleTvRemotePlayPause(action));
});
}
Future<void> _handleAppleTvRemotePlayPause(AppleTvRemotePlayPauseAction action) async {
appLogger.d(
'Apple TV remote play/pause received source=${action.source}'
'${action.detail == null ? '' : ' detail=${action.detail}'}',
);
await _toggleRemotePlayPause(source: 'Apple TV remote');
}
/// Toggle play/pause on behalf of a hardware remote (Apple TV bridge or a
/// hardware media key). Mirrors the controls path: rewind-on-resume, then
/// play/pause with playback intent.
Future<void> _toggleRemotePlayPause({required String source}) async {
if (!mounted || ModalRoute.of(context)?.isCurrent != true) return;
final currentPlayer = player;
if (!_isPlayerInitialized || currentPlayer == null) {
appLogger.d('$source play/pause ignored: player not ready');
return;
}
if (!_canControlPlayback()) {
appLogger.d('$source play/pause ignored: playback control unavailable');
return;
}
try {
if (!currentPlayer.state.playing) {
await _seekBackForRewind(currentPlayer);
if (!mounted || player != currentPlayer) return;
}
await _playOrPauseWithPlaybackIntent(currentPlayer);
} catch (e, st) {
appLogger.w('$source play/pause failed', error: e, stackTrace: st);
}
}
/// Hardware media play/pause keys (Android TV remotes). Deliberately not
/// space/configured hotkeys — text fields must still receive those.
static bool _isHardwarePlayPauseKey(LogicalKeyboardKey key) =>
key == LogicalKeyboardKey.mediaPlayPause ||
key == LogicalKeyboardKey.mediaPlay ||
key == LogicalKeyboardKey.mediaPause;
String? _lastLogError;
bool _sawServer500 = false;
static final RegExp _server500Pattern = RegExp(r'\b(?:HTTP error |Response code: )500\b');
// OS Media Controls Integration
/// Navigate to a specific queue item (called from QueueSheet)
Future<void> navigateToQueueItem(MediaItem metadata) async {
if (!_canNavigateMediaItems()) return;
_notifyWatchTogetherMediaChange(metadata: metadata);
await _navigateToEpisode(metadata);
}
void _setPlayerState(VoidCallback fn) => setStateIfMounted(fn);
/// Wait briefly for profile settings to load in offline mode.
/// This prevents default-track fallback when playback starts before
/// UserProfileProvider finishes initialization.
Future<void> _waitForProfileSettingsIfNeeded() async {
if (!_isOfflinePlayback || !mounted) return;
final provider = context.read<UserProfileProvider>();
if (provider.profileSettings != null) return;
final completer = Completer<void>();
late VoidCallback listener;
listener = () {
if (provider.profileSettings != null && !completer.isCompleted) {
completer.complete();
}
};
provider.addListener(listener);
try {
await Future.any<void>([completer.future, Future.delayed(const Duration(seconds: 2))]);
} finally {
provider.removeListener(listener);
}
}
Future<void> _onAudioTrackChanged(AudioTrack track) async => _trackManager?.onAudioTrackChanged(track);
Future<void> _onSubtitleTrackChanged(SubtitleTrack track, {int? sourceStreamId}) async {
_rememberNativeSubtitleSelection(track, sourceStreamId: sourceStreamId);
await _trackManager?.onSubtitleTrackChanged(track, sourceStreamId: sourceStreamId);
}
void _rememberNativeSubtitleSelection(SubtitleTrack track, {int? sourceStreamId}) {
_rememberNativeSubtitleSelectionForSlot(
track,
slot: _SubtitleSelectionSlot.primary,
sourceStreamId: sourceStreamId,
);
}
void _onSecondarySubtitleTrackChanged(SubtitleTrack track) {
_rememberNativeSubtitleSelectionForSlot(track, slot: _SubtitleSelectionSlot.secondary);
_trackManager?.onSecondarySubtitleTrackChanged(track);
}
void _rememberNativeSubtitleSelectionForSlot(
SubtitleTrack track, {
required _SubtitleSelectionSlot slot,
int? sourceStreamId,
}) {
final session = _playbackSession;
if (session == null) return;
final currentSelection = session.subtitleSelection;
if (track.id == SubtitleTrack.off.id) {
_updatePlaybackSessionSubtitleSelection(session, switch (slot) {
_SubtitleSelectionSlot.primary => const PlaybackSubtitleSelection.off(),
_SubtitleSelectionSlot.secondary => PlaybackSubtitleSelection(
primaryTrack: currentSelection.primaryTrack,
primarySourceStreamId: currentSelection.primarySourceStreamId,
primarySidecar: currentSelection.primarySidecar,
),
});
if (mounted) _setPlayerState(() {});
return;
}
final info = _currentMediaInfo;
final currentPlayer = player;
if (info == null || currentPlayer == null) return;
MediaSubtitleTrack? sourceTrack;
final currentSourceId = switch (slot) {
_SubtitleSelectionSlot.primary => currentSelection.primarySourceStreamId,
_SubtitleSelectionSlot.secondary => currentSelection.secondarySourceStreamId,
};
final currentSidecar = switch (slot) {
_SubtitleSelectionSlot.primary => currentSelection.primarySidecar,
_SubtitleSelectionSlot.secondary => currentSelection.secondarySidecar,
};
if (sourceStreamId != null) {
for (final candidate in info.subtitleTracks) {
if (candidate.id == sourceStreamId) {
sourceTrack = candidate;
break;
}
}
} else if (track.isExternal && currentSourceId != null && currentSidecar?.track.uri == track.uri) {
for (final candidate in info.subtitleTracks) {
if (candidate.id == currentSourceId) {
sourceTrack = candidate;
break;
}
}
}
sourceTrack ??= findPlexTrackForMpvSubtitle(
track,
info.subtitleTracks,
allMpvTracks: currentPlayer.state.tracks.subtitle,
);
if (sourceTrack == null) return;
final sidecar = _sidecarForSourceStreamId(session, sourceTrack.id);
final resolvedTrack = PlaybackSubtitleResolver.subtitleTrackForSource(sourceTrack, sidecar: sidecar);
final selection = PlaybackSubtitleSelection(
primaryTrack: slot == _SubtitleSelectionSlot.primary ? resolvedTrack : currentSelection.primaryTrack,
primarySourceStreamId: slot == _SubtitleSelectionSlot.primary
? sourceTrack.id
: currentSelection.primarySourceStreamId,
primarySidecar: slot == _SubtitleSelectionSlot.primary ? sidecar : currentSelection.primarySidecar,
secondaryTrack: slot == _SubtitleSelectionSlot.secondary ? resolvedTrack : currentSelection.secondaryTrack,
secondarySourceStreamId: slot == _SubtitleSelectionSlot.secondary
? sourceTrack.id
: currentSelection.secondarySourceStreamId,
secondarySidecar: slot == _SubtitleSelectionSlot.secondary ? sidecar : currentSelection.secondarySidecar,
);
_updatePlaybackSessionSubtitleSelection(session, selection);
if (mounted) _setPlayerState(() {});
}
PlaybackSubtitleSidecar? _sidecarForSourceStreamId(PlaybackSession session, int sourceStreamId) {
for (final candidate in session.context.result.subtitleSidecars) {
if (candidate.sourceStreamId == sourceStreamId) return candidate;
}
return null;
}
Future<void> _sendStoppedProgressOnce({Duration? positionOverride}) {
if (widget.isLive) {
_stopLiveTimelineUpdates();
return _sendLiveTimeline('stopped');
}
final tracker = _progressTracker;
if (tracker == null) return Future<void>.value();
return tracker.sendStoppedProgressOnce(positionOverride: positionOverride).catchError((Object e, StackTrace st) {
appLogger.d('Stopped progress flush failed', error: e, stackTrace: st);
});
}
@override
Widget build(BuildContext context) {
final isCurrentRoute = ModalRoute.of(context)?.isCurrent ?? true;
// Screen-level Focus wraps ALL phases (loading + initialized).
// - autofocus: grabs focus when no deeper child claims it.
// - onKeyEvent: owns player-level navigation after descendants have had the
// opportunity to handle local layers such as sheets and content strips.
return Focus(
focusNode: _screenFocusNode,
autofocus: isCurrentRoute,
canRequestFocus: isCurrentRoute,
onKeyEvent: (node, event) {
if (!isCurrentRoute) return KeyEventResult.ignored;
final navigationKey = classifyPlayerNavigationKey(event, isAppleTV: PlatformDetector.isAppleTV());
if (navigationKey != PlayerNavigationKey.none) {
if (navigationKey != PlayerNavigationKey.home && PlatformDetector.isTV() && event is KeyDownEvent) {
BackKeyCoordinator.markHandled();
}
return handlePlayerNavigationKeyAction(
event,
navigationKey,
() => _handleScreenPlayerNavigation(navigationKey),
);
}
// Hardware media play/pause must act even when focus rests on this
// node or a sibling overlay — otherwise the key only reveals the
// chrome and leaks to the (possibly stale/suspended) Android
// MediaSession (#1375). Gated to TV-style nav: on desktop the global
// HardwareKeyboard handler already acts (handlers don't stop focus
// dispatch), and Apple TV delivers play/pause via its native bridge.
if (_videoPlayerNavigationEnabled &&
!PlatformDetector.isAppleTV() &&
_isHardwarePlayPauseKey(event.logicalKey)) {
if (event is KeyDownEvent) {
unawaited(_toggleRemotePlayPause(source: 'Hardware media key'));
if (node.hasPrimaryFocus) {
_chromeController.show(focusTarget: PlayerChromeFocusTarget.playPause);
}
}
return KeyEventResult.handled; // consume down, repeat, and up
}
// Self-heal: if this node itself has primary focus (no descendant
// focused, e.g. after controls auto-hide), redirect to first descendant.
if (node.hasPrimaryFocus) {
if (event.isActionable) {
_chromeController.show(focusTarget: PlayerChromeFocusTarget.playPause);
}
return event.logicalKey.isNavigationKey ? KeyEventResult.handled : KeyEventResult.ignored;
}
// A descendant has focus — let events pass through so
// DirectionalFocusAction / ActivateAction can process them.
return KeyEventResult.ignored;
},
child: OverlaySheetHost(
// Host owns sheet + system back: a back with a sheet open closes it;
// with no sheet, exit the player. canPop:false keeps swipe-back disabled
// so it doesn't fight timeline scrubbing.
canPop: false,
onSystemBack: () {
if (BackKeyCoordinator.consumeIfHandled()) return;
BackKeyCoordinator.markHandled();
_handleScreenPlayerNavigation(PlayerNavigationKey.back);
},
child: Builder(
builder: (sheetContext) => _isPlayerInitialized && player != null
? _buildVideoPlayer(sheetContext)
: (_playerInitializationError != null
? _buildInitializationError(_playerInitializationError!)
: _buildPlayerInitializationSurface()),
),
),
);
}
}
/// Returns the appropriate hwdec value based on platform and user preference.
String _getHwdecValue(bool enabled) {
if (!enabled) return 'no';
if (Platform.isMacOS || Platform.isIOS) {
return 'videotoolbox';
} else if (Platform.isAndroid) {
return 'mediacodec,mediacodec-copy';
} else {
return 'auto'; // Windows, Linux
}
}