992 lines
37 KiB
Dart
992 lines
37 KiB
Dart
import 'dart:async' show unawaited;
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import 'dart:convert';
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import 'dart:io' show Platform;
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import 'package:flutter/foundation.dart' show visibleForTesting;
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import 'package:flutter/services.dart';
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import '../../media/media_display_criteria.dart';
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import '../../utils/app_logger.dart';
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import '../models.dart';
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import 'player_base.dart';
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typedef _AudioStateRequest = ({
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bool passthrough,
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bool normalization,
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bool downmix,
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int downmixCenterBoostDb,
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bool downmixNormalize,
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double rate,
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});
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typedef _AudioStateGenerations = ({int passthrough, int normalization, int downmix, int rate});
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/// MPV-backed player for platforms where AetherEngine is not the native route.
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class PlayerNative extends PlayerBase {
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/// Video player on the default mpv channels/core.
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PlayerNative()
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: methodChannel = const MethodChannel('com.plezy/mpv_player'),
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eventChannel = const EventChannel('com.plezy/mpv_player/events'),
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audioOnly = false;
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/// Audio-only player on the dedicated music channels/core (see
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/// [Player.audio]). Skips every video concern: no render layer
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/// ([setVisible] no-ops via [audioOnly]), no subtitle plumbing, no
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/// display-mode handling.
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PlayerNative.audio()
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: methodChannel = const MethodChannel('com.plezy/mpv_audio_player'),
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eventChannel = const EventChannel('com.plezy/mpv_audio_player/events'),
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audioOnly = true;
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String _dvConversionMode = 'auto';
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String _dvConversionLog = 'no';
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// Gapless-audio arming state (audioOnly). The native playlist is always
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// [current, next?]; these track whether entry 1 exists and what it plays.
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// _armedNextUri keeps the ORIGINAL media URI (the music service matches
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// trackTransition events against it); _armedNextFd is the content-fd claim
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// when the armed URI needed fdclose:// conversion (see _toPlayableUri).
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bool _hasArmedNext = false;
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String? _armedNextUri;
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int? _armedNextFd;
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/// Host tests aren't Android, so the content:// → fdclose:// path would be
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/// unreachable; forces the conversion regardless of platform.
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@visibleForTesting
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static bool debugForceContentFdConversion = false;
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/// Overrides the Linux-only video readiness handshake in host tests.
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@visibleForTesting
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static bool? debugUseLinuxVideoBootstrap;
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// Set by open() and consumed by that load's file-loaded event, so it is
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// not mistaken for a gapless advance (see _handleAudioFileLoaded).
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bool _expectOpenFileLoad = false;
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/// Whether this instance drives the audio-only core.
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final bool audioOnly;
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@override
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final MethodChannel methodChannel;
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@override
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final EventChannel eventChannel;
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@override
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String get logPrefix => audioOnly ? 'MPV-audio' : 'MPV';
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@override
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String get playerType => 'mpv';
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@override
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bool get providesNativeStats => Platform.isAndroid;
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@override
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bool get attachesExternalSubtitlesAtOpen => true;
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/// Node properties are returned as structured maps on desktop and Apple
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/// platforms, but as JSON strings on Android.
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static final String _nodeFormat = Platform.isAndroid ? 'string' : 'node';
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static String _normalizeDvConversionMode(String value) {
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return switch (value.toLowerCase()) {
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'disabled' || 'native' => 'disabled',
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'dv81' || 'p8' || 'p7_to_p8' || 'p7-to-p8' => 'dv81',
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'hevc' || 'hevc_strip' || 'p7_to_hevc' || 'p7-to-hevc' => 'hevc_strip',
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_ => 'auto',
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};
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}
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static String _normalizeBoolProperty(String value) {
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return switch (value.toLowerCase()) {
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'1' || 'true' || 'yes' || 'on' => 'yes',
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_ => 'no',
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};
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}
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static String _fixedLengthQuote(String value) {
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return '%${utf8.encode(value).length}%$value';
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}
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/// Query-free tail of [uri] for logs (keeps the part id, drops tokens).
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static String _uriTail(String uri) {
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final path = uri.split('?').first;
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return path.length <= 40 ? path : '…${path.substring(path.length - 40)}';
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}
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static String _escapePathListEntry(String value, String separator) {
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return value.replaceAll(r'\', r'\\').replaceAll(separator, '\\$separator');
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}
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static String? _externalSubtitlesLoadfileOption(List<SubtitleTrack>? externalSubtitles) {
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final separator = Platform.isWindows ? ';' : ':';
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final escapedUris = externalSubtitles
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?.map((subtitle) => subtitle.uri)
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.whereType<String>()
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.where((uri) => uri.isNotEmpty)
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.toSet()
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.map((uri) => _escapePathListEntry(uri, separator))
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.toList();
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if (escapedUris == null || escapedUris.isEmpty) return null;
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return 'sub-files=${_fixedLengthQuote(escapedUris.join(separator))}';
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}
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/// Per-entry `http-header-fields` options for a `loadfile ... append`
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/// options arg. Every header rides its own `-append` entry because mpv's
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/// string-LIST parser splits a plain `http-header-fields=a,b` value on
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/// commas with no way to escape them — a header value containing a comma
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/// (`X-Plex-Device: Mac17,9` on Apple hardware) would be split into a
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/// colon-less garbage line that Plex rejects with 400 "Error parsing HTTP
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/// request". `-append` takes a single verbatim item; the fixed-length
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/// quote shields it from the outer key=value list split. The leading
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/// `-clr` stops the file-local list from inheriting (and duplicating) the
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/// current track's global headers set by [open].
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static String? _httpHeaderFieldsLoadfileOption(Map<String, String>? headers) {
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if (headers == null || headers.isEmpty) return null;
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final appends = headers.entries
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.map((e) => 'http-header-fields-append=${_fixedLengthQuote('${e.key}: ${e.value}')}')
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.join(',');
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return 'http-header-fields-clr=,$appends';
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}
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MediaDisplayCriteria? _effectiveDisplayCriteria(MediaDisplayCriteria? criteria) {
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if (criteria == null || (criteria.doviProfile ?? 0) != 7) return criteria;
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final convertToDv81 = _dvConversionMode == 'auto' || _dvConversionMode == 'dv81';
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if (convertToDv81) {
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return MediaDisplayCriteria(
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fps: criteria.fps,
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width: criteria.width,
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height: criteria.height,
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doviProfile: 8,
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doviLevel: criteria.doviLevel,
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doviCompatibilityId: 1,
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transfer: criteria.transfer ?? 'smpte2084',
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primaries: criteria.primaries ?? 'bt2020',
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matrix: criteria.matrix ?? 'bt2020nc',
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);
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}
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return MediaDisplayCriteria(
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fps: criteria.fps,
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width: criteria.width,
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height: criteria.height,
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doviProfile: 0,
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doviCompatibilityId: criteria.doviCompatibilityId ?? 1,
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transfer: criteria.transfer ?? 'smpte2084',
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primaries: criteria.primaries ?? 'bt2020',
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matrix: criteria.matrix ?? 'bt2020nc',
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);
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}
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/// Whether the UI must mount the provisional texture before initialization
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/// can complete its first render/bootstrap handshake.
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bool get requiresProvisionalTextureSurface => !audioOnly && (debugUseLinuxVideoBootstrap ?? Platform.isLinux);
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// Memoizes the in-flight init Future so concurrent callers (e.g. the
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// parallel `requestAudioFocus()` and `setProperty()` paths kicked off in
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// VideoPlayerScreen._initializePlayer) share one `invoke('initialize')`.
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// Two concurrent invokes on Android caused MpvPlayerPlugin.handleInitialize
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// to dispose-and-recreate the in-flight core, hanging playback (#930).
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Future<void>? _initFuture;
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Future<void> _audioStateTail = Future<void>.value();
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Future<void>? _disposeFuture;
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bool _disposing = false;
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bool get _nativeCoreUnavailable => disposed || _disposing;
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@override
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Future<T?> invoke<T>(String method, [dynamic args]) {
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if (_nativeCoreUnavailable) return Future<T?>.value();
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return super.invoke<T>(method, args);
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}
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double _requestedRate = 1.0;
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Future<void> _ensureInitialized() async {
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if (initialized) return;
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return _initFuture ??= _doInitialize();
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}
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Future<void> _doInitialize() async {
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try {
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final result = await invoke<Object>('initialize');
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final bool ok;
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if (result is int) {
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// Linux publishes a provisional texture so Flutter can invoke
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// FlTextureGL::populate. Playback stays gated until native GPU
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// bootstrap reports that the texture is usable.
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setTextureId(result);
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if (debugUseLinuxVideoBootstrap ?? Platform.isLinux) {
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await invoke('waitForVideoReady');
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}
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ok = true;
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} else {
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ok = result == true;
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}
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if (!ok) {
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throw Exception('Failed to initialize player');
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}
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if (_nativeCoreUnavailable) throw StateError('Player was disposed during initialization');
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// Subscribe to MPV properties before flipping `initialized` so partial
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// failures don't leave us in a half-initialized state that the memoized
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// future would falsely treat as ready.
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await observeCoreProperties(trackListFormat: _nodeFormat);
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await observeProperty('secondary-sid', 'string');
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await observeProperty('demuxer-cache-state', _nodeFormat);
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await observeProperty('audio-device-list', _nodeFormat);
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await observeProperty('audio-device', 'string');
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if (audioOnly) {
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// Debug aid only: raw playlist positions in the log trail. Gapless
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// advance DETECTION rides the file-loaded event instead — see
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// _handleAudioFileLoaded for why property edges are unreliable.
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await observeProperty('playlist-pos', _nodeFormat);
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// The Apple audio core sets this at context init; set it defensively
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// here so every mpv audio backend behaves identically. Direct invoke —
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// setProperty() would await _ensureInitialized and deadlock on the
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// memoized future of this very _doInitialize call.
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await invoke('setProperty', {'name': 'gapless-audio', 'value': 'weak'});
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}
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if (_nativeCoreUnavailable) throw StateError('Player was disposed during initialization');
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initialized = true;
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} catch (e) {
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setTextureId(null);
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_initFuture = null;
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if (!_nativeCoreUnavailable) {
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errorController.add(PlayerError('Initialization failed: $e'));
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}
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rethrow;
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}
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}
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Future<int?> _openContentFd(String contentUri) async {
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try {
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return await invoke<int>('openContentFd', {'uri': contentUri});
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} catch (e) {
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return null;
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}
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}
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/// Closes a detached content fd that mpv will never consume. Fire-and-forget
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/// safe: a failure only leaks one fd.
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Future<void> _closeContentFd(int fd, {bool duringDispose = false}) async {
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try {
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if (duringDispose) {
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await super.invoke('closeContentFd', {'fd': fd});
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} else {
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await invoke('closeContentFd', {'fd': fd});
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}
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} catch (e) {
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appLogger.d('$logPrefix: closeContentFd($fd) failed', error: e);
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}
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}
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/// Converts Android SAF content:// URIs to `fdclose://<fd>` — mpv owns the fd
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/// and closes it when it opens the entry. Returns the loadfile URI and the
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/// opened fd (null when no conversion applied). [strict] throws instead of
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/// falling back to the raw URI when the fd cannot be opened: mpv cannot
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/// open content:// itself, so arming one would stall playback at the track
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/// boundary — setNext must fail loudly so the music service falls back to
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/// an explicit open.
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Future<(String, int?)> _toPlayableUri(String uri, {bool strict = false}) async {
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final convert = (Platform.isAndroid || debugForceContentFdConversion) && uri.startsWith('content://');
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if (!convert) return (uri, null);
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final fd = await _openContentFd(uri);
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if (fd == null) {
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if (strict) throw StateError('openContentFd failed for ${_uriTail(uri)}');
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return (uri, null);
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}
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return ('fdclose://$fd', fd);
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}
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@override
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Future<void> open(
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Media media, {
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bool play = true,
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bool isLive = false,
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List<SubtitleTrack>? externalSubtitles,
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Duration? timelineDuration,
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}) async {
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if (_nativeCoreUnavailable) return;
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await _ensureInitialized();
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if (_nativeCoreUnavailable) return;
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// `loadfile replace` (below) clears the native playlist, dropping any
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// gapless entry armed via setNext — settle its content-fd claim first.
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// No transition is surfaced: the caller is replacing playback anyway.
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await _clearArmedNext(adoptIfRolledIn: false);
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final startPosition = media.start ?? Duration.zero;
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configureTimeline(duration: timelineDuration);
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clearTracks();
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setExternalSubtitleMetadata(externalSubtitles);
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resetPlaybackProgress(startPosition);
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setSeekable(false);
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if (!audioOnly) await setVisible(true);
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// Rebuild the header list via `change-list` items — a plain
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// `setProperty('http-header-fields', joined)` splits on commas inside
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// header VALUES (`X-Plex-Device: Mac17,9` on Apple hardware), producing a
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// malformed request Plex rejects with 400. `append` takes each item
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// verbatim. Always clear first so a previous open's headers never leak
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// into header-less media.
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await command(['change-list', 'http-header-fields', 'clr', '']);
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if (media.headers != null && media.headers!.isNotEmpty) {
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for (final entry in media.headers!.entries) {
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await command(['change-list', 'http-header-fields', 'append', '${entry.key}: ${entry.value}']);
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}
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}
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// 'start' must be set before loadfile.
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if (startPosition.inSeconds > 0) {
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await setProperty('start', (startPosition.inMilliseconds / 1000.0).toString());
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} else {
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await setProperty('start', 'none');
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}
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// Prevents race condition that can freeze the video decoder on Android (issue #226).
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if (!play) {
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await setProperty('pause', 'yes');
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}
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// Prevent mpv's own default subtitle selection from racing the
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// server-backed TrackManager decision applied after tracks are discovered.
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await setProperty('sid', 'no');
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await setProperty('secondary-sid', 'no');
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// Convert content:// URIs to fdclose:// for MPV on Android (SAF SD card
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// downloads). The immediate `loadfile replace` consumes the fd, so no
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// claim tracking is needed here (unlike setNext).
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final (uri, _) = await _toPlayableUri(media.uri);
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final loadfileArgs = ['loadfile', uri, 'replace'];
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final loadfileOption = _externalSubtitlesLoadfileOption(externalSubtitles);
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if (loadfileOption != null) {
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loadfileArgs.addAll(['-1', loadfileOption]);
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}
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if (audioOnly) _expectOpenFileLoad = true;
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await command(loadfileArgs);
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// mpv's pause property survives loadfile; in-place reloads pause the old
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// file before resolving, so explicitly unpause for the replacement. Set
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// after loadfile so the paused old file never audibly unpauses
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// pre-replace.
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if (play) {
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await setProperty('pause', 'no');
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}
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}
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@override
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Future<void> play() async {
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if (_nativeCoreUnavailable) return;
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await setProperty('pause', 'no');
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}
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@override
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Future<void> pause() async {
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if (_nativeCoreUnavailable) return;
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await setProperty('pause', 'yes');
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}
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@override
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Future<void> stop() async {
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if (_nativeCoreUnavailable) return;
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// `stop` tears down the playlist without mpv opening the armed entry —
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// settle its content-fd claim first. No transition: playback is ending.
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await _clearArmedNext(adoptIfRolledIn: false);
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await command(['stop']);
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setSeekable(false);
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if (!audioOnly) await invoke('setVisible', {'visible': false});
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}
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@override
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Future<void> seek(Duration position) async {
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if (_nativeCoreUnavailable) return;
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await runSeek(position, () => command(['seek', (position.inMilliseconds / 1000.0).toString(), 'absolute']));
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}
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@override
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Future<void> setNext(Media? media) async {
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if (_nativeCoreUnavailable || !audioOnly || !initialized) return;
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await _clearArmedNext();
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if (media == null) return;
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final (loadUri, fd) = await _toPlayableUri(media.uri, strict: true);
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// Per-entry options are the 4th loadfile argument on mpv >= 0.38
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// (`loadfile <url> append -1 opt=val`), exactly like open() passes
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// sub-files. `gapless-audio=weak` splices the armed entry into the
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// running audio stream when formats match.
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final args = ['loadfile', loadUri, 'append'];
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final headerOption = _httpHeaderFieldsLoadfileOption(media.headers);
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if (headerOption != null) {
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args.addAll(['-1', headerOption]);
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}
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try {
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await command(args);
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} catch (e) {
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// The entry never joined the playlist, so the fd has no consumer.
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if (fd != null) unawaited(_closeContentFd(fd));
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rethrow;
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}
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_hasArmedNext = true;
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_armedNextUri = media.uri;
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_armedNextFd = fd;
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appLogger.d('MPV-audio: armed next ${_uriTail(media.uri)}');
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}
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/// Clears the armed entry (if any), resolving the arm/advance race and the
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/// content-fd claim. mpv may have already rolled into the armed entry
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/// before this runs; blindly removing index 1 then would remove the
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/// PLAYING entry, so playlist-pos is checked first. fd ownership: mpv owns
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/// the fd from the moment it opens the entry (fdclose closes it at stream
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/// close); Dart may close only when the entry provably never opened —
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/// playlist-pos 0 both before and after a successful remove. Anything
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/// ambiguous leaks the fd (one fd, ms-wide window) rather than risk
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/// closing an fd mpv holds. The remove's success cannot be the ownership
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/// signal: Android's command bridge never surfaces mpv command failures.
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///
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/// [adoptIfRolledIn]: when mpv already advanced into the armed entry,
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/// surface the transition here (the pending file-loaded event becomes a
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/// no-op once the flags are cleared) — without this a queue edit landing
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/// exactly at the gapless boundary desyncs the music service from the
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/// audio for the whole next track. Callers that replace or stop playback
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/// pass false: no one is listening for that entry anymore.
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Future<void> _clearArmedNext({bool adoptIfRolledIn = true, bool duringDispose = false}) async {
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if (!_hasArmedNext) return;
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final uri = _armedNextUri;
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final fd = _armedNextFd;
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_hasArmedNext = false;
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_armedNextUri = null;
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_armedNextFd = null;
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String? pos;
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try {
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pos = duringDispose
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? await super.invoke<String>('getProperty', {'name': 'playlist-pos'})
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: await getProperty('playlist-pos');
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} catch (_) {
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// Unknown state — fall through to the remove, never close the fd.
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}
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if (pos == '1') {
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appLogger.d('MPV-audio: clear requested but armed entry already playing');
|
|
if (adoptIfRolledIn) _completeArmedAdvance(uri);
|
|
return;
|
|
}
|
|
|
|
appLogger.d('MPV-audio: clearing armed entry (playlist-remove 1)');
|
|
try {
|
|
if (duringDispose) {
|
|
await super.invoke('command', {
|
|
'args': ['playlist-remove', '1'],
|
|
});
|
|
} else {
|
|
await command(['playlist-remove', '1']);
|
|
}
|
|
} on PlatformException {
|
|
// Entry 1 vanished in the arm/advance race — mpv rolled into it and
|
|
// the file-loaded handler already rebased. The fd (if any) is mpv's.
|
|
return;
|
|
}
|
|
if (fd == null) return;
|
|
String? postPos;
|
|
try {
|
|
postPos = duringDispose
|
|
? await super.invoke<String>('getProperty', {'name': 'playlist-pos'})
|
|
: await getProperty('playlist-pos');
|
|
} catch (_) {}
|
|
if (pos == '0' && postPos == '0') {
|
|
unawaited(_closeContentFd(fd, duringDispose: duringDispose));
|
|
}
|
|
// Any other combination is ambiguous (mpv advanced mid-clear, idle
|
|
// playlist, property error): leak on doubt.
|
|
}
|
|
|
|
/// The armed entry became the playing one (mpv rolled into it): clear the
|
|
/// arm — the fd (if any) was consumed by mpv — remove the spent entry so
|
|
/// the playing entry rebases to index 0, and surface the transition.
|
|
void _completeArmedAdvance(String? uri) {
|
|
_hasArmedNext = false;
|
|
_armedNextUri = null;
|
|
_armedNextFd = null;
|
|
appLogger.d('MPV-audio: armed entry advanced → playlist-remove 0, ${_uriTail(uri ?? '')}');
|
|
unawaited(_removeSpentPlaylistEntry());
|
|
if (uri != null) trackTransitionController.add(uri);
|
|
}
|
|
|
|
Future<void> _removeSpentPlaylistEntry() async {
|
|
try {
|
|
await command(['playlist-remove', '0']);
|
|
} catch (error, stackTrace) {
|
|
appLogger.w('MPV-audio: failed to remove spent playlist entry', error: error, stackTrace: stackTrace);
|
|
}
|
|
}
|
|
|
|
@override
|
|
void handlePropertyChange(String name, dynamic value) {
|
|
if (audioOnly && name == 'playlist-pos') {
|
|
// Debug aid only — see _handleAudioFileLoaded for the real detection.
|
|
appLogger.d('MPV-audio: playlist-pos=$value (armed=$_hasArmedNext)');
|
|
return;
|
|
}
|
|
super.handlePropertyChange(name, value);
|
|
}
|
|
|
|
@override
|
|
void handlePlayerEvent(String name, Map? data) {
|
|
if (audioOnly && name == 'file-loaded') _handleAudioFileLoaded();
|
|
super.handlePlayerEvent(name, data);
|
|
}
|
|
|
|
/// Gapless auto-advance detection: a `file-loaded` that open() didn't
|
|
/// produce while an entry is armed means mpv rolled into the armed entry.
|
|
/// Surface the transition, then rebase the playlist so the now playing
|
|
/// entry sits at index 0 again ([setNext] always appends at 1). The rebase
|
|
/// only removes the spent entry behind the playing one, so it cannot
|
|
/// disturb position/duration — those refresh with the same file-loaded.
|
|
///
|
|
/// Detection deliberately rides this EVENT, not `playlist-pos` property
|
|
/// edges: mpv coalesces observed-property notifications per observer
|
|
/// (1→0→1 under delivery lag nets out to nothing) and the Android bridge
|
|
/// additionally drops property changes when its shared 64-slot buffer
|
|
/// overflows (`MutableSharedFlow.tryEmit` from the native event thread),
|
|
/// so an edge can vanish entirely — which stalled playback at the end of
|
|
/// the armed track. `file-loaded` fires exactly once per started file on
|
|
/// the low-volume event flow. Clearing [_hasArmedNext] before emitting
|
|
/// makes a hypothetical duplicate signal a no-op (it cannot double
|
|
/// advance).
|
|
void _handleAudioFileLoaded() {
|
|
if (_expectOpenFileLoad) {
|
|
_expectOpenFileLoad = false;
|
|
appLogger.d('MPV-audio: file-loaded (open)');
|
|
return;
|
|
}
|
|
if (!_hasArmedNext) {
|
|
appLogger.d('MPV-audio: file-loaded (nothing armed, ignored)');
|
|
return;
|
|
}
|
|
_completeArmedAdvance(_armedNextUri);
|
|
}
|
|
|
|
@override
|
|
Future<void> dispose({bool preserveDisplayMode = false}) {
|
|
final existing = _disposeFuture;
|
|
if (existing != null) return existing;
|
|
_disposing = true;
|
|
final disposal = _disposeNative(preserveDisplayMode: preserveDisplayMode);
|
|
_disposeFuture = disposal;
|
|
return disposal;
|
|
}
|
|
|
|
Future<void> _disposeNative({required bool preserveDisplayMode}) async {
|
|
if (disposed) return;
|
|
// Settle an armed-but-unconsumed content fd before the base teardown
|
|
// disables invoke() — the playlist is torn down without mpv ever opening
|
|
// the entry.
|
|
if (_hasArmedNext) {
|
|
try {
|
|
await _clearArmedNext(adoptIfRolledIn: false, duringDispose: true);
|
|
} catch (_) {
|
|
// Leak on doubt.
|
|
}
|
|
}
|
|
await _audioStateTail;
|
|
await super.dispose(preserveDisplayMode: preserveDisplayMode);
|
|
}
|
|
|
|
@override
|
|
Future<void> selectAudioTrack(AudioTrack track) async {
|
|
if (_nativeCoreUnavailable) return;
|
|
await setProperty('aid', track.id);
|
|
}
|
|
|
|
@override
|
|
Future<void> selectSubtitleTrack(SubtitleTrack track) async {
|
|
if (_nativeCoreUnavailable) return;
|
|
await setProperty('sid', track.id);
|
|
}
|
|
|
|
@override
|
|
Future<void> selectSecondarySubtitleTrack(SubtitleTrack track) async {
|
|
if (_nativeCoreUnavailable) return;
|
|
await setProperty('secondary-sid', track.id);
|
|
}
|
|
|
|
@override
|
|
Future<void> addSubtitleTrack({required String uri, String? title, String? language, bool select = false}) async {
|
|
if (_nativeCoreUnavailable) return;
|
|
final args = ['sub-add', uri, select ? 'select' : 'auto'];
|
|
if (title != null) args.add('title=$title');
|
|
if (language != null) args.add('lang=$language');
|
|
await command(args);
|
|
}
|
|
|
|
@override
|
|
Future<void> setVolume(double volume) async {
|
|
if (_nativeCoreUnavailable) return;
|
|
await setProperty('volume', volume.toString());
|
|
if (!_nativeCoreUnavailable) setVolumeState(volume);
|
|
}
|
|
|
|
@override
|
|
Future<void> setRate(double rate) {
|
|
if (_nativeCoreUnavailable) return Future<void>.value();
|
|
_requestedRate = rate;
|
|
return _enqueueAudioStateReconciliation(_rateAudioField);
|
|
}
|
|
|
|
@override
|
|
Future<void> setAudioDevice(AudioDevice device) async {
|
|
if (_nativeCoreUnavailable) return;
|
|
await setProperty('audio-device', device.name);
|
|
}
|
|
|
|
@override
|
|
Future<void> setProperty(String name, String value) => _setProperty(name, value, synchronizeRate: true);
|
|
|
|
Future<void> _setProperty(String name, String value, {required bool synchronizeRate}) async {
|
|
if (_nativeCoreUnavailable) return;
|
|
final updatesDvMode = (Platform.isIOS || Platform.isMacOS) && name == 'dv-conversion-mode';
|
|
final updatesDvLog = (Platform.isIOS || Platform.isMacOS) && name == 'dv-conversion-log';
|
|
if (updatesDvMode) value = _normalizeDvConversionMode(value);
|
|
if (updatesDvLog) value = _normalizeBoolProperty(value);
|
|
|
|
await _ensureInitialized();
|
|
await invoke('setProperty', {'name': name, 'value': value});
|
|
if (_nativeCoreUnavailable) return;
|
|
if (updatesDvMode) _dvConversionMode = value;
|
|
if (updatesDvLog) _dvConversionLog = value;
|
|
if (synchronizeRate && name == 'speed') {
|
|
final rate = double.tryParse(value);
|
|
if (rate != null && rate.isFinite) {
|
|
_currentRate = rate;
|
|
_requestedRate = rate;
|
|
final accepted = _acceptedAudioState;
|
|
_acceptedAudioState = (
|
|
passthrough: accepted.passthrough,
|
|
normalization: accepted.normalization,
|
|
downmix: accepted.downmix,
|
|
downmixCenterBoostDb: accepted.downmixCenterBoostDb,
|
|
downmixNormalize: accepted.downmixNormalize,
|
|
rate: rate,
|
|
);
|
|
} else {
|
|
// The native bridge may accept custom mpv speed syntax. Its numeric
|
|
// value is unknown, so the next typed setRate must write explicitly.
|
|
_currentRate = double.nan;
|
|
}
|
|
}
|
|
}
|
|
|
|
@override
|
|
Future<String?> getProperty(String name) async {
|
|
if (_nativeCoreUnavailable) return null;
|
|
if ((Platform.isIOS || Platform.isMacOS) && name == 'dv-conversion-mode') {
|
|
return _dvConversionMode;
|
|
}
|
|
if ((Platform.isIOS || Platform.isMacOS) && name == 'dv-conversion-log') {
|
|
return _dvConversionLog;
|
|
}
|
|
await _ensureInitialized();
|
|
return await invoke<String>('getProperty', {'name': name});
|
|
}
|
|
|
|
@override
|
|
Future<Map<String, dynamic>> getStats() async {
|
|
if (_nativeCoreUnavailable || !Platform.isAndroid) return super.getStats();
|
|
await _ensureInitialized();
|
|
final result = await invoke<Map>('getStats');
|
|
return Map<String, dynamic>.from(result ?? const {});
|
|
}
|
|
|
|
@override
|
|
Future<void> command(List<String> args) async {
|
|
if (_nativeCoreUnavailable) return;
|
|
await _ensureInitialized();
|
|
await invoke('command', {'args': args});
|
|
}
|
|
|
|
@override
|
|
bool get needsDecoderRefreshAfterDisplaySwitch => Platform.isAndroid;
|
|
|
|
@override
|
|
Future<void> setDisplayCriteria(MediaDisplayCriteria? criteria, {int extraDelayMs = 0}) async {
|
|
if (_nativeCoreUnavailable || audioOnly || !Platform.isIOS) return;
|
|
await _ensureInitialized();
|
|
await invoke('setDisplayCriteria', {
|
|
'criteria': _effectiveDisplayCriteria(criteria)?.toJson(),
|
|
'extraDelayMs': extraDelayMs,
|
|
});
|
|
}
|
|
|
|
@override
|
|
Future<void> setLogLevel(String level) async {
|
|
if (_nativeCoreUnavailable) return;
|
|
await _ensureInitialized();
|
|
await invoke('setLogLevel', {'level': level});
|
|
}
|
|
|
|
@override
|
|
Future<bool> setVisible(bool visible, {bool restoreOnWindowVisible = false}) async {
|
|
if (_nativeCoreUnavailable) return false;
|
|
final changed = await super.setVisible(visible, restoreOnWindowVisible: restoreOnWindowVisible);
|
|
return changed && !_nativeCoreUnavailable;
|
|
}
|
|
|
|
static const int _passthroughAudioField = 1 << 0;
|
|
static const int _normalizationAudioField = 1 << 1;
|
|
static const int _downmixAudioField = 1 << 2;
|
|
static const int _rateAudioField = 1 << 3;
|
|
|
|
bool _passthroughRequested = false;
|
|
bool _passthroughActive = false;
|
|
bool _normalizationRequested = false;
|
|
bool _normalizationActive = false;
|
|
bool _downmixRequested = false;
|
|
bool _downmixActive = false;
|
|
int _downmixCenterBoostDb = 0;
|
|
int _activeDownmixCenterBoostDb = 0;
|
|
bool _downmixNormalize = false;
|
|
bool _activeDownmixNormalize = false;
|
|
double _currentRate = 1.0;
|
|
int _passthroughGeneration = 0;
|
|
int _normalizationGeneration = 0;
|
|
int _downmixGeneration = 0;
|
|
int _rateGeneration = 0;
|
|
_AudioStateRequest _acceptedAudioState = const (
|
|
passthrough: false,
|
|
normalization: false,
|
|
downmix: false,
|
|
downmixCenterBoostDb: 0,
|
|
downmixNormalize: false,
|
|
rate: 1.0,
|
|
);
|
|
|
|
@override
|
|
bool get audioPassthroughActive => _passthroughActive;
|
|
|
|
/// Codecs the platform can take as a bitstream. On iOS/tvOS compressed
|
|
/// audio goes through the system renderer, which only handles Dolby
|
|
/// Digital (Plus); desktop does real device passthrough for the full list.
|
|
static final String _passthroughCodecs = Platform.isIOS ? 'ac3,eac3' : 'ac3,eac3,dts,dts-hd,truehd';
|
|
|
|
_AudioStateRequest get _requestedAudioState => (
|
|
passthrough: _passthroughRequested,
|
|
normalization: _normalizationRequested,
|
|
downmix: _downmixRequested,
|
|
downmixCenterBoostDb: _downmixCenterBoostDb,
|
|
downmixNormalize: _downmixNormalize,
|
|
rate: _requestedRate,
|
|
);
|
|
|
|
_AudioStateRequest _rebaseAudioState(_AudioStateRequest accepted, _AudioStateRequest requested, int fields) => (
|
|
passthrough: fields & _passthroughAudioField != 0 ? requested.passthrough : accepted.passthrough,
|
|
normalization: fields & _normalizationAudioField != 0 ? requested.normalization : accepted.normalization,
|
|
downmix: fields & _downmixAudioField != 0 ? requested.downmix : accepted.downmix,
|
|
downmixCenterBoostDb: fields & _downmixAudioField != 0
|
|
? requested.downmixCenterBoostDb
|
|
: accepted.downmixCenterBoostDb,
|
|
downmixNormalize: fields & _downmixAudioField != 0 ? requested.downmixNormalize : accepted.downmixNormalize,
|
|
rate: fields & _rateAudioField != 0 ? requested.rate : accepted.rate,
|
|
);
|
|
|
|
void _restoreFailedRequestedFields(_AudioStateRequest previous, int fields, _AudioStateGenerations generations) {
|
|
if (fields & _passthroughAudioField != 0 && generations.passthrough == _passthroughGeneration) {
|
|
_passthroughRequested = previous.passthrough;
|
|
}
|
|
if (fields & _normalizationAudioField != 0 && generations.normalization == _normalizationGeneration) {
|
|
_normalizationRequested = previous.normalization;
|
|
}
|
|
if (fields & _downmixAudioField != 0 && generations.downmix == _downmixGeneration) {
|
|
_downmixRequested = previous.downmix;
|
|
_downmixCenterBoostDb = previous.downmixCenterBoostDb;
|
|
_downmixNormalize = previous.downmixNormalize;
|
|
}
|
|
if (fields & _rateAudioField != 0 && generations.rate == _rateGeneration) {
|
|
_requestedRate = previous.rate;
|
|
}
|
|
}
|
|
|
|
Future<void> _enqueueAudioStateReconciliation(int fields) {
|
|
final requested = _requestedAudioState;
|
|
if (fields & _passthroughAudioField != 0) ++_passthroughGeneration;
|
|
if (fields & _normalizationAudioField != 0) ++_normalizationGeneration;
|
|
if (fields & _downmixAudioField != 0) ++_downmixGeneration;
|
|
if (fields & _rateAudioField != 0) ++_rateGeneration;
|
|
final generations = (
|
|
passthrough: _passthroughGeneration,
|
|
normalization: _normalizationGeneration,
|
|
downmix: _downmixGeneration,
|
|
rate: _rateGeneration,
|
|
);
|
|
final operation = _audioStateTail.then((_) => _reconcileAudioState(requested, fields, generations));
|
|
_audioStateTail = operation.catchError((Object _, StackTrace _) {});
|
|
return operation;
|
|
}
|
|
|
|
Future<void> _reconcileAudioState(
|
|
_AudioStateRequest requested,
|
|
int fields,
|
|
_AudioStateGenerations generations,
|
|
) async {
|
|
if (_nativeCoreUnavailable) return;
|
|
final previous = _acceptedAudioState;
|
|
final target = _rebaseAudioState(previous, requested, fields);
|
|
try {
|
|
await _applyAudioState(target);
|
|
if (_nativeCoreUnavailable) return;
|
|
_acceptedAudioState = target;
|
|
} catch (error, stackTrace) {
|
|
try {
|
|
await _applyAudioState(
|
|
previous,
|
|
forceDownmix: fields & _downmixAudioField != 0,
|
|
forceNormalization: fields & _downmixAudioField != 0,
|
|
);
|
|
} catch (rollbackError, rollbackStackTrace) {
|
|
appLogger.e(
|
|
'MPV: failed to restore accepted audio state',
|
|
error: rollbackError,
|
|
stackTrace: rollbackStackTrace,
|
|
);
|
|
}
|
|
_restoreFailedRequestedFields(previous, fields, generations);
|
|
Error.throwWithStackTrace(error, stackTrace);
|
|
}
|
|
}
|
|
|
|
Future<void> _applyAudioState(
|
|
_AudioStateRequest target, {
|
|
bool forceDownmix = false,
|
|
bool forceNormalization = false,
|
|
}) async {
|
|
if (_nativeCoreUnavailable) return;
|
|
final passthroughShouldBeActive = target.passthrough && target.rate == 1.0 && !target.downmix;
|
|
|
|
// mpv cannot scaletempo compressed audio and filters cannot process a
|
|
// bitstream. Always leave passthrough before applying either state.
|
|
if (_passthroughActive && !passthroughShouldBeActive) {
|
|
await _applyPassthrough(false);
|
|
}
|
|
if (_currentRate != target.rate) {
|
|
await _setProperty('speed', target.rate.toString(), synchronizeRate: false);
|
|
_currentRate = target.rate;
|
|
}
|
|
if (forceDownmix ||
|
|
_downmixActive != target.downmix ||
|
|
(target.downmix &&
|
|
(_activeDownmixCenterBoostDb != target.downmixCenterBoostDb ||
|
|
_activeDownmixNormalize != target.downmixNormalize))) {
|
|
await super.setAudioDownmix(
|
|
enabled: target.downmix,
|
|
centerBoostDb: target.downmixCenterBoostDb,
|
|
normalize: target.downmixNormalize,
|
|
);
|
|
_downmixActive = target.downmix;
|
|
_activeDownmixCenterBoostDb = target.downmixCenterBoostDb;
|
|
_activeDownmixNormalize = target.downmixNormalize;
|
|
}
|
|
final normalizationShouldBeActive = target.normalization && !passthroughShouldBeActive;
|
|
if (forceNormalization || _normalizationActive != normalizationShouldBeActive) {
|
|
await super.setAudioNormalization(normalizationShouldBeActive);
|
|
_normalizationActive = normalizationShouldBeActive;
|
|
}
|
|
if (passthroughShouldBeActive && !_passthroughActive) {
|
|
await _applyPassthrough(true);
|
|
}
|
|
}
|
|
|
|
@override
|
|
Future<void> setAudioPassthrough(bool enabled) {
|
|
if (_nativeCoreUnavailable) return Future<void>.value();
|
|
_passthroughRequested = enabled;
|
|
return _enqueueAudioStateReconciliation(_passthroughAudioField);
|
|
}
|
|
|
|
Future<void> _applyPassthrough(bool enabled) async {
|
|
await setProperty('audio-spdif', enabled ? _passthroughCodecs : '');
|
|
if (_nativeCoreUnavailable) return;
|
|
|
|
// audio-spdif is the authoritative transition. Publish only after mpv
|
|
// accepts it; audio-exclusive below is an independent device-mode hint.
|
|
_passthroughActive = enabled;
|
|
// audio-exclusive redirects coreaudio to coreaudio_exclusive on macOS
|
|
// (and exclusive WASAPI on Windows); on iOS/tvOS it is set once at
|
|
// playback start and must not be clobbered here.
|
|
if (!Platform.isIOS) {
|
|
try {
|
|
await setProperty('audio-exclusive', enabled ? 'yes' : 'no');
|
|
} catch (error, stackTrace) {
|
|
appLogger.w('MPV: failed to update exclusive-audio hint', error: error, stackTrace: stackTrace);
|
|
}
|
|
}
|
|
}
|
|
|
|
@override
|
|
Future<void> setAudioNormalization(bool enabled) {
|
|
if (_nativeCoreUnavailable) return Future<void>.value();
|
|
_normalizationRequested = enabled;
|
|
return _enqueueAudioStateReconciliation(_normalizationAudioField);
|
|
}
|
|
|
|
@override
|
|
Future<void> setAudioDownmix({required bool enabled, required int centerBoostDb, required bool normalize}) {
|
|
if (_nativeCoreUnavailable) return Future<void>.value();
|
|
_downmixRequested = enabled;
|
|
_downmixCenterBoostDb = centerBoostDb;
|
|
_downmixNormalize = normalize;
|
|
return _enqueueAudioStateReconciliation(_downmixAudioField);
|
|
}
|
|
|
|
@override
|
|
Future<void> updateFrame() async {
|
|
if (_nativeCoreUnavailable || !initialized) return;
|
|
if (Platform.isAndroid || Platform.isIOS || Platform.isMacOS || Platform.isLinux) {
|
|
await invoke('updateFrame');
|
|
}
|
|
}
|
|
|
|
@override
|
|
Future<bool> setVideoFrameRate(
|
|
double fps,
|
|
int durationMs, {
|
|
int extraDelayMs = 0,
|
|
int videoWidth = 0,
|
|
int videoHeight = 0,
|
|
}) async {
|
|
if (_nativeCoreUnavailable || !Platform.isAndroid || !initialized) return false;
|
|
final result = await invoke<bool>('setVideoFrameRate', {
|
|
'fps': fps,
|
|
'duration': durationMs,
|
|
'extraDelayMs': extraDelayMs,
|
|
'videoWidth': videoWidth,
|
|
'videoHeight': videoHeight,
|
|
});
|
|
return result ?? false;
|
|
}
|
|
|
|
@override
|
|
Future<void> clearVideoFrameRate() async {
|
|
if (_nativeCoreUnavailable || !Platform.isAndroid || !initialized) return;
|
|
await invoke('clearVideoFrameRate');
|
|
}
|
|
|
|
@override
|
|
Future<bool> requestAudioFocus() async {
|
|
if (_nativeCoreUnavailable) return false;
|
|
if (!Platform.isAndroid) return true;
|
|
await _ensureInitialized();
|
|
return await invoke<bool>('requestAudioFocus') ?? false;
|
|
}
|
|
|
|
@override
|
|
Future<void> abandonAudioFocus() async {
|
|
if (_nativeCoreUnavailable || !Platform.isAndroid || !initialized) return;
|
|
await invoke('abandonAudioFocus');
|
|
}
|
|
}
|