37e3373db9c2e8ce3524d11fbda1fb451c19c4c3
3
Commits
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da38b865fc |
feat(android): playback that survives the screen locking
An app that plays audio becomes a music player at the point where the screen can lock, a call can interrupt, and the headphones can come out. None of that existed: the foreground service was typed for media but had no MediaSession, no transport notification and no audio focus, so oto would happily keep writing to a stream nobody could hear. The apparent blocker is that Wails' androidBridge* helpers are unexported, so Go cannot call arbitrary Java. It does not need to. StartForegroundService(json) *is* exported, and build/android/ is our tree, so widening the JSON WailsBridge already accepts is a local edit; coming back, WailsBridge.emitEvent lands on the application event bus, which Go subscribes to with app.Event.On. One document out, one command event back, and no new JNI. No new Gradle dependency either: minSdk is 21, which is exactly when android.media.session.MediaSession and Notification.MediaStyle arrived, so androidx.media buys two Build.VERSION branches' worth of nothing. Four things in it are load-bearing. **A duck is not a volume change.** Player.SetDuck holds the attenuation as an offset and re-applies the user's level through setVolumeLocked, so it cannot accumulate across repeated ducks and getUserVolume -- which feeds the event, the persisted state and every relative change -- still reports what the user chose. Writing through to the volume would let one notification tone permanently turn the music down. **The duck path is pre-Oreo only.** From API 26 the framework ducks the app itself and sends no CAN_DUCK focus change; asking to be told instead (setWillPauseWhenDucked) would mean pausing for every notification tone, and doing both would attenuate twice. **An unchanged payload is not an event**, the rule emitStatus already states one package over: every push crosses JNI and re-delivers an Intent, and the player pushes state on several paths that can agree. **After the first start, an update is startService.** From Android 12 a background app may not *start* a foreground service but may keep feeding one it already has, which is every track change with the screen off. Relatedly, every path through onStartCommand calls startForeground -- one that returns without it is killed. The contract with Java lives in androidpayload.go *without* the android build tag, and is tested. Everything left in android.go is untested by construction: make lint and make test are three tag sets on linux/amd64, so the only thing that compiles it is the cross-compiler in make android, and the only thing that can run it is a phone. None of the behaviour above has been observed on a device. The APK builds and both halves compile; that is the whole of what is verified. |
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e14a34fccf |
fix(android): let the app reach the user's music
Three of plan 016's four blockers. Each is a different reason the app could not work at all on a phone. **It had no permission to read anything.** The generated manifest asked for INTERNET, VIBRATE, biometrics, location and a camera, and nothing whatever about storage -- so at targetSdk 35 the app could see its own private directory and no music. It now declares READ_MEDIA_AUDIO, the two capped legacy storage permissions, and MANAGE_EXTERNAL_STORAGE. That last one is deliberate and is the load-bearing choice. This app is a library manager: audio_files.file_path is the primary key of ownership, the scanner walks a directory the user chose, and tagwriter rewrites files in place. MediaStore offers no stable directory to walk and no in-place write, so scoped storage is not "more work" here, it is a different application. MANAGE_EXTERNAL_STORAGE is Play-restricted, which is acceptable only because this ships as an APK through the package registry -- if it ever targets Play, that line is what has to go, and plan 016 says what replaces it. It is granted on a Settings screen rather than in a dialog, so it cannot be requested with requestPermissions(). MainActivity opens that screen on every cold start until access exists -- there is no degraded mode worth offering -- and re-checks in onResume, because the way back from another task is a resume, emitting android:storageAccess so the frontend can react. **The first-run flow could not complete.** All three call sites asked for a folder through the Wails dialog, which returns an error on Android: SAF yields tree URIs and this app is keyed on paths. So the app browses the filesystem itself, which it can now do. ListDirectories lists directories only (the thing being chosen is a library root), skips what it cannot stat rather than failing the listing (Android's storage root holds directories no app may enter), follows symlinks (os.DirEntry reports the link, so a symlinked music folder would silently vanish), and hides dotted entries. utils/pick-directory.ts is the one place that chooses between the two, so the three call sites changed by one line each. **Which platform is asked of the backend**, not of System.IsAndroid(): the dialog is backend code, so the backend is what knows whether it can open one; it answers for iOS at the same time; and it keeps the fallback testable through the ordinary transport fake rather than a module mock of the Wails runtime, whose platform helpers read build constants. **And MPRIS was compiled into the Android build**, because android implies the linux build tag, so it went looking for a session bus that does not exist. mpris_linux.go is `linux && !android` now and the stub covers Android, which means no lock-screen transport there yet -- a missing feature rather than a broken one, and the remaining blocker. The foreground service is typed mediaPlayback rather than the scaffold's dataSync, with the matching permission, so playback can survive the screen locking once there is a MediaSession to drive it. The type in the manifest and the one passed to startForeground must agree or startForeground throws. |
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4f3244c992 | added mpris (linux media player controls) support |