Files
meshcore-sar_android/lib/services/voice_player_service.dart
2026-03-11 21:16:08 +01:00

175 lines
5.1 KiB
Dart

import 'dart:io';
import 'dart:typed_data';
import 'dart:async';
import 'package:audioplayers/audioplayers.dart';
import 'package:flutter/foundation.dart';
import 'package:path_provider/path_provider.dart';
/// Plays decoded mono PCM samples by writing a WAV file
/// to the system temp directory and using [AudioPlayer].
class VoicePlayerService {
final AudioPlayer _player = AudioPlayer();
final StreamController<void> _events = StreamController<void>.broadcast();
bool _isPlaying = false;
Duration _position = Duration.zero;
Duration _duration = Duration.zero;
Timer? _fallbackTicker;
DateTime? _playbackStartedAt;
bool get isPlaying => _isPlaying;
Duration get position => _position;
Duration get duration => _duration;
Stream<void> get events => _events.stream;
VoicePlayerService() {
_player.onPlayerStateChanged.listen((state) {
debugPrint('🔊 [VoicePlayer] state → $state');
_isPlaying = state == PlayerState.playing;
if (_isPlaying) {
_startFallbackTicker();
} else {
_stopFallbackTicker();
}
_events.add(null);
});
_player.onLog.listen((msg) => debugPrint('🔊 [VoicePlayer] log: $msg'));
_player.onPositionChanged.listen((position) {
_position = position;
_events.add(null);
});
_player.onDurationChanged.listen((duration) {
_duration = duration;
_events.add(null);
});
_player.onPlayerComplete.listen((_) {
_isPlaying = false;
_position = _duration;
_stopFallbackTicker();
_events.add(null);
});
}
Future<void> play(Int16List pcmSamples, {required int sampleRateHz}) async {
debugPrint('🔊 [VoicePlayer] play() called, ${pcmSamples.length} samples');
if (_isPlaying) await stop();
_position = Duration.zero;
_duration = Duration(
milliseconds: (pcmSamples.length * 1000) ~/ sampleRateHz,
);
_playbackStartedAt = DateTime.now();
_events.add(null);
final wavBytes = _buildWav(pcmSamples, sampleRate: sampleRateHz);
final tmpDir = await getTemporaryDirectory();
final file = File('${tmpDir.path}/vc_voice.wav');
await file.writeAsBytes(wavBytes);
debugPrint(
'🔊 [VoicePlayer] WAV written: ${wavBytes.length} bytes → ${file.path}',
);
try {
_isPlaying = true;
_startFallbackTicker();
_events.add(null);
await _player.play(DeviceFileSource(file.path));
debugPrint('🔊 [VoicePlayer] play() returned (audio playing)');
} catch (e, st) {
debugPrint('❌ [VoicePlayer] play() error: $e\n$st');
_isPlaying = false;
_stopFallbackTicker();
_events.add(null);
}
}
Future<void> stop() async {
debugPrint('🔊 [VoicePlayer] stop()');
await _player.stop();
_isPlaying = false;
_position = Duration.zero;
_playbackStartedAt = null;
_stopFallbackTicker();
_events.add(null);
}
void dispose() {
_stopFallbackTicker();
_events.close();
_player.dispose();
}
void _startFallbackTicker() {
if (_fallbackTicker != null) return;
_fallbackTicker = Timer.periodic(const Duration(milliseconds: 100), (_) {
if (!_isPlaying || _duration.inMilliseconds <= 0) return;
final startedAt = _playbackStartedAt;
if (startedAt == null) return;
final elapsed = DateTime.now().difference(startedAt);
final clamped = elapsed > _duration ? _duration : elapsed;
if (clamped > _position) {
_position = clamped;
_events.add(null);
}
});
}
void _stopFallbackTicker() {
_fallbackTicker?.cancel();
_fallbackTicker = null;
}
// ── WAV file builder ─────────────────────────────────────────────────────
/// Constructs a minimal WAV (RIFF/PCM) file from Int16 mono samples.
static Uint8List _buildWav(Int16List samples, {required int sampleRate}) {
const int numChannels = 1;
const int bitsPerSample = 16;
const int audioFormat = 1; // PCM
final dataSize = samples.length * 2; // 2 bytes per Int16 sample
final byteRate = sampleRate * numChannels * bitsPerSample ~/ 8;
final blockAlign = numChannels * bitsPerSample ~/ 8;
final totalSize = 36 + dataSize;
final buf = ByteData(44 + dataSize);
var offset = 0;
void writeStr(String s) {
for (final c in s.codeUnits) {
buf.setUint8(offset++, c);
}
}
void writeU32(int v) {
buf.setUint32(offset, v, Endian.little);
offset += 4;
}
void writeU16(int v) {
buf.setUint16(offset, v, Endian.little);
offset += 2;
}
writeStr('RIFF');
writeU32(totalSize);
writeStr('WAVE');
writeStr('fmt ');
writeU32(16); // subchunk1 size
writeU16(audioFormat); // 1 = PCM
writeU16(numChannels);
writeU32(sampleRate);
writeU32(byteRate);
writeU16(blockAlign);
writeU16(bitsPerSample);
writeStr('data');
writeU32(dataSize);
// PCM sample data (little-endian Int16)
for (final s in samples) {
buf.setInt16(offset, s, Endian.little);
offset += 2;
}
return buf.buffer.asUint8List();
}
}