The Store's unpackaged EXE path would require Authenticode-signing the installer and every PE file inside it. MSIX submissions are re-signed by the Store instead, so this route needs no code-signing certificate. build-msix.ps1 mirrors build-installer.ps1 and consumes the same per-architecture build artifacts, leaving the installer, portable archives and WinSparkle appcast untouched. One template generates the manifest for both architectures, carrying the identity reserved in Partner Center. check_windows_msix.py recomputes the package family name from the publisher DN, so a mistyped identity fails CI rather than a submission, and it parses the script rather than running it because root CI is Linux. Qualified logo assets are indexed into resources.pri; without the altform-unplated variants the shell draws the taskbar icon on an accent-coloured plate. PlatformDetector.isPackagedInstall gates the in-app updater and the Liberapay tile, which the read-only package directory and Store commerce policy respectively rule out. Gating at runtime keeps one Windows build feeding both the installer and the Store package.
337 lines
13 KiB
Dart
337 lines
13 KiB
Dart
import 'dart:io';
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import 'dart:math';
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import 'package:device_info_plus/device_info_plus.dart';
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import 'package:flutter/material.dart';
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import 'package:flutter/services.dart';
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import 'app_logger.dart';
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import 'async_singleton.dart';
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import 'device_channel.dart';
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const _androidFeatureTelevision = 'android.hardware.type.television';
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const _androidFeatureLeanback = 'android.software.leanback';
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const _androidFeatureFireTv = 'amazon.hardware.fire_tv';
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const _androidFeatureTouchscreen = 'android.hardware.touchscreen';
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const _androidFeatureAutomotive = 'android.hardware.type.automotive';
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class AndroidTvFeatureDetection {
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final bool isTv;
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/// True on Android Automotive OS head units. Never true together with
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/// [isTv]: `FEATURE_AUTOMOTIVE` is authoritative for the car form factor.
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final bool isAutomotive;
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/// Diagnostic TV signals, surfaced in the log export only while TV mode is
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/// active. Non-empty with [isTv] false when automotive vetoed the verdict.
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final List<String> reasons;
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const AndroidTvFeatureDetection({required this.isTv, required this.isAutomotive, required this.reasons});
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}
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AndroidTvFeatureDetection detectAndroidTvFromSystemFeatures(Iterable<String> features) {
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final featureSet = features.toSet();
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final reasons = <String>[];
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if (featureSet.contains(_androidFeatureTelevision)) reasons.add('television_feature');
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if (featureSet.contains(_androidFeatureLeanback)) reasons.add('leanback');
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if (featureSet.contains(_androidFeatureFireTv)) reasons.add('fire_tv');
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if (featureSet.isNotEmpty && !featureSet.contains(_androidFeatureTouchscreen)) reasons.add('no_touchscreen');
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// A car is never a TV. Rotary-only head units report no touchscreen, and OEM
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// images derived from other AOSP variants can carry a stray leanback flag;
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// either would otherwise route a vehicle through the leanback experience.
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final isAutomotive = featureSet.contains(_androidFeatureAutomotive);
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return AndroidTvFeatureDetection(
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isTv: !isAutomotive && reasons.isNotEmpty,
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isAutomotive: isAutomotive,
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reasons: reasons,
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);
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}
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/// Whether a floating player may be offered, given the host platform's own
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/// picture-in-picture capability and the detected form factor.
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///
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/// Cars commonly lack `FEATURE_PICTURE_IN_PICTURE`, and a floating player would
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/// keep the app's UI on screen while driving, which `DD-2` forbids. TV form
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/// factors have no windowed surface to float into.
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///
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/// [hostSupportsPictureInPicture] is injected rather than read from [Platform]
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/// so the form-factor vetoes stay observable on hosts that never support PiP:
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/// on the Linux and Windows CI runners every [Platform] branch of the real gate
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/// is false and unmockable, which would otherwise make the vetoes vacuous
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/// exactly where the release is gated.
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bool pictureInPictureAllowed({
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required bool hostSupportsPictureInPicture,
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required bool isAppleTv,
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required bool isTv,
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required bool isAutomotive,
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}) => hostSupportsPictureInPicture && !isAppleTv && !isTv && !isAutomotive;
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/// Service for detecting if the app is running on Android TV or Apple TV.
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class TvDetectionService {
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static final AsyncSingleton<TvDetectionService> _singleton = AsyncSingleton();
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@visibleForTesting
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static set debugDetectionGate(Future<void>? value) => _singleton.debugGate = value;
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static bool? _debugAppleTVOverride;
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static bool? _debugAutomotiveOverride;
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bool _detected = false;
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bool _forceTv = false;
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bool _isTV = false;
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bool _isAppleTV = false;
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bool _isAutomotive = false;
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bool _initialized = false;
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List<String> _detectionReasons = const [];
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TvDetectionService._();
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/// Get the singleton instance, initializing if needed.
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/// Pass [forceTv] to combine a user override with the system-feature check.
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static Future<TvDetectionService> getInstance({bool forceTv = false}) =>
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_singleton.getInstance(TvDetectionService._, (instance) => instance._detect(forceTv));
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static const bool _tvosBuild = bool.fromEnvironment('TVOS_BUILD');
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Future<void> _detect(bool forceTv) async {
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if (_initialized) return;
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final deviceInfo = DeviceInfoPlugin();
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if (Platform.isAndroid) {
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final nativeDetection = await _getNativeAndroidTvDetection();
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final detection =
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nativeDetection ?? detectAndroidTvFromSystemFeatures((await deviceInfo.androidInfo).systemFeatures);
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_detected = detection.isTv;
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_isAutomotive = detection.isAutomotive;
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_detectionReasons = detection.reasons;
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} else if (Platform.isIOS) {
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if (_tvosBuild) {
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_isAppleTV = true;
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_detected = true;
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_detectionReasons = const ['tvos_build'];
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} else {
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final iosInfo = await deviceInfo.iosInfo;
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final sysName = iosInfo.systemName.toLowerCase();
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_isAppleTV =
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sysName == 'tvos' ||
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sysName.contains('appletv') ||
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iosInfo.model.toLowerCase().contains('appletv') ||
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iosInfo.utsname.machine.toLowerCase().contains('appletv');
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_detected = _isAppleTV;
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_detectionReasons = _isAppleTV ? const ['apple_tv'] : const [];
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}
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}
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_forceTv = forceTv;
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_isTV = _detected || _forceTv;
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_initialized = true;
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}
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/// True when running on Apple TV (tvOS). False for all other platforms
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/// including force-TV on non-tvOS devices.
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bool get isAppleTV => _isAppleTV;
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bool get isTV => _isTV;
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/// True on Android Automotive OS. Independent of the force-TV override so
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/// driver-distraction gating cannot be switched off from settings.
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bool get isAutomotive => _isAutomotive;
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List<String> get _effectiveDetectionReasons {
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final reasons = <String>[..._detectionReasons];
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if (_forceTv && !reasons.contains('force_tv')) reasons.add('force_tv');
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return reasons;
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}
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Future<AndroidTvFeatureDetection?> _getNativeAndroidTvDetection() async {
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try {
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final result = await deviceChannel.invokeMapMethod<dynamic, dynamic>('getTvDetection');
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if (result == null) return null;
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final reasonsValue = result['reasons'];
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final reasons = reasonsValue is Iterable ? reasonsValue.whereType<String>().toList() : <String>[];
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final isTv = result['isTv'] == true;
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final isAutomotive = result['isAutomotive'] == true;
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if (isTv && reasons.isEmpty) reasons.add('native');
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return AndroidTvFeatureDetection(isTv: isTv && !isAutomotive, isAutomotive: isAutomotive, reasons: reasons);
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} on MissingPluginException {
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return null;
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} on PlatformException {
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return null;
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}
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}
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/// User-assigned Android device name (Settings > About > Device name), or
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/// null if unavailable. Android only.
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static Future<String?> getAndroidDeviceName() async {
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if (!Platform.isAndroid) return null;
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try {
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final name = (await deviceChannel.invokeMethod<String>('getDeviceName'))?.trim();
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return (name == null || name.isEmpty) ? null : name;
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} on MissingPluginException {
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return null;
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} on PlatformException {
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return null;
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}
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}
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/// Update the user force-TV override and recompute the effective flag.
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void setForceTv(bool value) {
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_forceTv = value;
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_isTV = _detected || _forceTv;
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}
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/// Synchronous access after initialization (returns false if not initialized)
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static bool isTVSync() => _debugAppleTVOverride ?? _singleton.instance?._isTV ?? false;
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/// Synchronous Apple TV check (returns false if not initialized or not tvOS).
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static bool isAppleTVSync() => _debugAppleTVOverride ?? (_tvosBuild || _singleton.instance?._isAppleTV == true);
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/// Synchronous Android Automotive OS check (false before initialization).
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static bool isAutomotiveSync() => _debugAutomotiveOverride ?? _singleton.instance?._isAutomotive ?? false;
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@visibleForTesting
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static void debugSetAppleTVOverride(bool? value) {
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_debugAppleTVOverride = value;
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}
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@visibleForTesting
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static void debugSetAutomotiveOverride(bool? value) {
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_debugAutomotiveOverride = value;
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}
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@visibleForTesting
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static void debugReset() {
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_singleton.debugReset();
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_debugAppleTVOverride = null;
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_debugAutomotiveOverride = null;
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}
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static List<String> tvDetectionReasonsSync() => _singleton.instance?._effectiveDetectionReasons ?? const [];
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/// Convenience setter that forwards to the singleton if available.
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static void setForceTVSync(bool value) => _singleton.instance?.setForceTv(value);
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}
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class PlatformDetector {
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static bool isTV() {
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return TvDetectionService.isTVSync();
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}
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static bool isAppleTV() {
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return TvDetectionService.isAppleTVSync();
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}
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/// True on Android Automotive OS head units.
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static bool isAutomotive() {
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return TvDetectionService.isAutomotiveSync();
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}
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/// Detects if the app should use side navigation (Desktop or TV)
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static bool shouldUseSideNavigation(BuildContext context) {
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return isDesktop(context) || isTV();
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}
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/// Whether this device should act as a companion remote host (receiver).
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/// Desktop platforms and Android TV are hosts; phones/tablets are controllers.
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static bool shouldActAsRemoteHost(BuildContext context) {
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return isDesktop(context) || isTV();
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}
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/// Detects if running on a mobile platform (iOS or Android).
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/// Excludes TV platforms (Android TV / Apple TV) even though the underlying
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/// OS is iOS or Android.
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/// Uses Theme for consistent platform detection across the app.
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static bool isMobile(BuildContext context) {
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if (isTV()) return false;
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final platform = Theme.of(context).platform;
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return platform == TargetPlatform.iOS || platform == TargetPlatform.android;
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}
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static bool isHandheld(BuildContext context) {
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return isMobile(context) && !isTV();
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}
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/// True for iPhone/iPad-style iOS navigation. Excludes tvOS and forced-TV
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/// modes, where route back gestures conflict with D-pad navigation.
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static bool isHandheldIOS(BuildContext context) {
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return !isTV() && Theme.of(context).platform == TargetPlatform.iOS;
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}
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/// Detects if running on a desktop platform (Windows, macOS, or Linux)
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static bool isDesktop(BuildContext context) {
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return !isMobile(context);
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}
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/// True on the desktop OS (Windows / macOS / Linux), without needing a
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/// BuildContext. Use for OS-level capability checks (window state, native
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/// keyboard, etc.); use [isDesktop] for layout decisions.
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static bool isDesktopOS() {
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return _debugIsDesktopOSOverride ?? (Platform.isWindows || Platform.isMacOS || Platform.isLinux);
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}
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static bool? _debugIsDesktopOSOverride;
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/// Test-only: override [isDesktopOS] so device simulations (Android TV /
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/// Apple TV) don't inherit the test host's real platform.
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@visibleForTesting
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static void debugSetIsDesktopOSOverride(bool? value) {
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_debugIsDesktopOSOverride = value;
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}
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/// Whether an executable path belongs to a packaged (MSIX/Store) install.
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/// Packaged apps run from C:\Program Files\WindowsApps\<package>\, matched
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/// case-insensitively because a casing difference would silently re-enable
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/// the paths a read-only package cannot support.
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@visibleForTesting
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static bool isPackagedExecutablePath(String exePath) {
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return exePath.toLowerCase().contains('\\windowsapps\\');
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}
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/// True inside a packaged (MSIX/Microsoft Store) install. The Store owns
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/// updates and the package directory is read-only, and Store policy treats an
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/// external donation link as a commerce mechanism, so both of those
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/// affordances are suppressed there.
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static bool isPackagedInstall() {
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try {
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if (!Platform.isWindows) return false;
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return isPackagedExecutablePath(Platform.resolvedExecutable);
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} catch (error, stackTrace) {
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appLogger.e('Failed to determine packaged install status', error: error, stackTrace: stackTrace);
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return false;
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}
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}
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static bool supportsExternalPlayers() {
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if (isAppleTV()) return false;
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return Platform.isAndroid || Platform.isIOS || Platform.isMacOS || Platform.isLinux || Platform.isWindows;
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}
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static bool supportsAudioPassthrough() {
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// Apple TV hands AC3/EAC3 access units to the native sample-buffer audio
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// renderer; unsupported streams and renderer failures fall back to PCM.
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return isAppleTV() || isDesktopOS() || (Platform.isAndroid && isTV());
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}
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static bool supportsPictureInPicture() => pictureInPictureAllowed(
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hostSupportsPictureInPicture: Platform.isAndroid || Platform.isIOS || Platform.isMacOS,
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isAppleTv: isAppleTV(),
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isTv: isTV(),
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isAutomotive: isAutomotive(),
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);
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/// Detects if the device is likely a tablet based on screen size
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/// Uses diagonal screen size to determine if device is a tablet
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static bool isTablet(BuildContext context) {
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final size = MediaQuery.sizeOf(context);
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final diagonal = sqrt(size.width * size.width + size.height * size.height);
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final devicePixelRatio = MediaQuery.devicePixelRatioOf(context);
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// Convert diagonal from logical pixels to inches (assuming 160 DPI as baseline)
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final diagonalInches = diagonal / (devicePixelRatio * 160 / 2.54);
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return diagonalInches >= 7.0;
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}
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static bool isPhone(BuildContext context) {
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return isHandheld(context) && !isTablet(context);
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}
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}
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