Files
xtremflow/bin/api/streaming_handler.dart
T
Claude 85a8d16542 Lecture vidéo : son garanti sur toutes les chaînes, zapping et démarrages accélérés
Son manquant sur certaines chaînes :
- Nouvelle route GET /api/live/<id>/turbo.ts pour le player web : vidéo
  copiée (-c:v copy), audio TOUJOURS réencodé en AAC. mpegts.js ne démuxe
  que l'AAC/MP3 : les chaînes en AC-3/E-AC-3/MP2 passaient par le proxy
  brut → image sans son, et le fallback HLS côté client ne couvrait pas
  les codecs démuxés mais non décodables par le navigateur (MP2)
- getLiveStreamUrlTs pointe sur la route turbo ; le proxy brut
  /api/live/<id>.ts reste inchangé pour le scheduler d'enregistrement
- FFmpeg turbo tué dès que le client zappe (onCancel) ; stderr redacté
- Le fallback client (_hlsEquivalent) reconnaît le nouveau format d'URL
  et reste en filet de sécurité

Temps de chargement :
- Players vendorisés mis à jour : hls.js 1.6.7 → 1.7.1,
  mpegts.js 1.7.3 → 1.8.2
- Live HLS et turbo : -fflags nobuffer + probesize/analyzeduration 1 Mo
  (sans borne, FFmpeg pouvait sonder plusieurs secondes avant le premier
  segment)
- VOD : probesize 10 Mo → 5 Mo, analyzeduration 5 s → 2 s
- Live 'high' : preset medium → veryfast (zerolatency déjà actif) ;
  lecture d'enregistrement : medium/crf18 → veryfast/crf20 (medium ne
  tenait pas le temps réel en 1080p sur CPU modeste)
- waitForPlaylist : polling 500 ms → 100 ms
- Suppression du cache-buster &v=timestamp qui re-téléchargeait
  player.html à chaque zap ; les .html sont servis en no-cache côté
  serveur pour garder la fraîcheur après déploiement
- mpegts.js : liveBufferLatencyChasing activé en profil « fast » — les
  micro-coupures ne font plus dériver la lecture derrière le direct

Validé : dart analyze (0 issue) + dart test (48/48) sur bin/, syntaxe JS
vérifiée.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_015oEu9QayWsw7hCKhenxgVa
2026-08-27 21:17:27 +00:00

725 lines
26 KiB
Dart

import 'dart:async';
import 'dart:io';
import 'package:shelf/shelf.dart';
import 'package:shelf_router/shelf_router.dart';
import 'package:http/http.dart' as http;
import '../database/database.dart';
import '../models/playlist_config.dart';
import '../services/ffmpeg_session_manager.dart';
import '../utils/log_redactor.dart';
/// Directory for temporary HLS segments
final Directory _hlsTempDir =
Directory('${Directory.systemTemp.path}/xtremflow_streams');
/// Global FFmpeg session registry (initialized in [initStreaming]).
final FfmpegSessionManager sessionManager = FfmpegSessionManager(_hlsTempDir);
/// Helper to resolve FFmpeg path (SYSTEM PATH vs Portable)
String _getFFmpegPath() {
if (Platform.isWindows) {
if (File('ffmpeg.exe').existsSync()) return 'ffmpeg.exe';
if (File('bin/ffmpeg.exe').existsSync()) return 'bin/ffmpeg.exe';
if (File('ffmpeg/bin/ffmpeg.exe').existsSync()) {
return 'ffmpeg/bin/ffmpeg.exe';
}
}
return 'ffmpeg'; // Default to PATH
}
/// Check if NVIDIA GPU acceleration is enabled via environment variable
bool _isNvidiaGpuEnabled() {
final envValue = Platform.environment['NVIDIA_GPU'] ??
Platform.environment['nvidia_gpu'] ??
'false';
return envValue.toLowerCase() == 'true' || envValue == '1';
}
/// Initialize streaming subsystem
Future<void> initStreaming() async {
await sessionManager.init();
}
/// Supported quality presets. `source` skips video transcoding entirely
/// (`-c:v copy`) — a huge CPU win since most Xtream streams are already
/// H.264. Audio is always normalized to AAC for HLS compatibility.
const supportedQualities = {'source', 'high', 'medium', 'low'};
String _sanitizeQuality(String? quality) {
return supportedQualities.contains(quality) ? quality! : 'high';
}
bool _isValidStreamId(String id) => RegExp(r'^[a-zA-Z0-9_-]+$').hasMatch(id);
/// Video encoding args for the requested quality (live profile).
List<String> _liveVideoArgs(String quality, bool gpu) {
switch (quality) {
case 'source':
return ['-c:v', 'copy'];
case 'medium':
return gpu
? [
'-c:v', 'h264_nvenc', '-preset', 'p4', '-tune', 'hq',
'-b:v', '3000k', '-maxrate', '4500k', '-bufsize', '6000k',
'-profile:v', 'high', '-level', '4.0', '-pix_fmt', 'yuv420p',
'-g', '50',
]
: [
'-c:v', 'libx264', '-preset', 'veryfast', '-tune', 'zerolatency',
'-profile:v', 'high', '-level', '4.0',
'-b:v', '3000k', '-maxrate', '4500k', '-bufsize', '6000k',
'-pix_fmt', 'yuv420p', '-g', '50',
];
case 'low':
return gpu
? [
'-c:v', 'h264_nvenc', '-preset', 'p4',
'-b:v', '1500k', '-maxrate', '2000k', '-bufsize', '3000k',
'-vf', 'scale=-2:720',
'-pix_fmt', 'yuv420p', '-g', '50',
]
: [
'-c:v', 'libx264', '-preset', 'veryfast', '-tune', 'zerolatency',
'-b:v', '1500k', '-maxrate', '2000k', '-bufsize', '3000k',
'-vf', 'scale=-2:720',
'-pix_fmt', 'yuv420p', '-g', '50',
];
case 'high':
default:
return gpu
? [
'-c:v', 'h264_nvenc', '-preset', 'p4', '-tune', 'hq',
'-b:v', '8000k', '-maxrate', '12000k', '-bufsize', '16000k',
'-profile:v', 'high', '-level', '4.0', '-pix_fmt', 'yuv420p',
'-g', '50',
]
: [
// veryfast au lieu de medium : en live, l'encodeur doit tenir
// le temps réel ET produire le premier segment vite ; medium
// ajoutait plusieurs secondes au zap sans gain visible à ce
// débit.
'-c:v', 'libx264', '-preset', 'veryfast', '-tune', 'zerolatency',
'-profile:v', 'high', '-level', '4.0',
'-b:v', '6000k', '-maxrate', '8000k', '-bufsize', '12000k',
'-pix_fmt', 'yuv420p', '-g', '50',
];
}
}
/// Video encoding args for the requested quality (VOD profile).
List<String> _vodVideoArgs(String quality, bool gpu) {
switch (quality) {
case 'source':
return ['-c:v', 'copy'];
case 'medium':
return gpu
? [
'-c:v', 'h264_nvenc', '-preset', 'p4', '-tune', 'hq',
'-rc', 'cbr', '-b:v', '2500k', '-maxrate', '3000k',
'-bufsize', '5000k', '-g', '48', '-bf', '2',
'-pix_fmt', 'yuv420p',
]
: [
'-c:v', 'libx264', '-preset', 'fast', '-crf', '23',
'-maxrate', '6000k', '-bufsize', '12000k',
'-pix_fmt', 'yuv420p', '-g', '48', '-threads', '0',
];
case 'low':
return gpu
? [
'-c:v', 'h264_nvenc', '-preset', 'p4',
'-rc', 'cbr', '-b:v', '1500k', '-maxrate', '2000k',
'-bufsize', '3000k', '-vf', 'scale=-2:720',
'-g', '48', '-pix_fmt', 'yuv420p',
]
: [
'-c:v', 'libx264', '-preset', 'fast', '-crf', '26',
'-maxrate', '3000k', '-bufsize', '6000k',
'-vf', 'scale=-2:720',
'-pix_fmt', 'yuv420p', '-g', '48', '-threads', '0',
];
case 'high':
default:
return gpu
? [
'-c:v', 'h264_nvenc', '-preset', 'p4', '-tune', 'hq',
'-rc', 'cbr', '-b:v', '4000k', '-maxrate', '4500k',
'-bufsize', '8000k', '-g', '48', '-bf', '2',
'-pix_fmt', 'yuv420p',
]
: [
'-c:v', 'libx264', '-preset', 'medium', '-crf', '18',
'-maxrate', '12000k', '-bufsize', '24000k',
'-pix_fmt', 'yuv420p', '-g', '48', '-threads', '0',
];
}
}
/// Audio args. Source mode keeps it simple (plain AAC); transcoded modes
/// keep the downmix + loudness normalization filter.
List<String> _audioArgs({required bool withFilters}) {
return [
'-c:a', 'aac', '-b:a', '192k', '-ac', '2', '-ar', '48000',
if (withFilters)
...['-af',
'pan=stereo|FL=1.0*FL+0.707*FC+0.5*BL+0.5*SL+0.5*LFE|FR=1.0*FR+0.707*FC+0.5*BR+0.5*SR+0.5*LFE,dynaudnorm=f=150:g=15']
else
...['-af', 'aresample=async=1'],
];
}
Map<String, String> _hlsHeaders() => {
'Content-Type': 'application/vnd.apple.mpegurl',
'Cache-Control': 'no-cache',
'X-Content-Type-Options': 'nosniff',
};
Map<String, String> _segmentHeaders({int maxAge = 60}) => {
'Content-Type': 'video/mp2t',
'Cache-Control': 'max-age=$maxAge',
};
// ==========================================
// 1. LIVE TV HANDLER (FFmpeg HLS + direct TS proxy)
// ==========================================
/// Connexion amont ouverte, avec son client pour pouvoir le refermer.
class _LiveUpstream {
final http.Client client;
final http.StreamedResponse response;
_LiveUpstream(this.client, this.response);
}
Future<_LiveUpstream?> _openLiveUpstream(String targetUrl) async {
final client = http.Client();
try {
final request = http.Request('GET', Uri.parse(targetUrl))
..headers['User-Agent'] = 'VLC/3.0.18 LibVLC/3.0.18'
..headers['Accept'] = '*/*';
final response = await client.send(request);
return _LiveUpstream(client, response);
} catch (_) {
client.close();
return null;
}
}
/// Nombre de reconnexions consécutives tentées avant d'abandonner le flux.
const _liveProxyMaxRetries = 4;
/// Corps du proxy `.ts` direct, avec reconnexion amont.
///
/// Les panneaux Xtream ferment régulièrement la connexion en cours de route
/// (bascule de source, limite de connexions simultanées, recyclage nginx).
/// Sans reprise, le `MediaSource` du navigateur reçoit un `sourceEnded` et la
/// lecture s'arrête net — le symptôme « ça coupe au bout de 30 s ».
/// On rouvre donc la source tant que le client, lui, écoute toujours.
///
/// Le compteur de tentatives est remis à zéro dès qu'une connexion a duré
/// assez longtemps pour être considérée saine : une coupure toutes les
/// 10 minutes ne doit pas finir par épuiser le quota.
Stream<List<int>> _resilientLiveBody(
String streamId,
String targetUrl,
_LiveUpstream first,
) async* {
var upstream = first;
var attempt = 0;
while (true) {
final startedAt = DateTime.now();
var bytes = 0;
try {
await for (final chunk in upstream.response.stream) {
bytes += chunk.length;
yield chunk;
}
} catch (e) {
print('[Live Proxy] $streamId : coupure amont ($e)');
} finally {
upstream.client.close();
}
final lasted = DateTime.now().difference(startedAt);
if (lasted > const Duration(seconds: 60) && bytes > 0) {
attempt = 0;
}
print(
'[Live Proxy] $streamId : flux terminé après ${lasted.inSeconds}s '
'($bytes octets)',
);
// Rouvrir la source, en réessayant tant qu'il reste du quota.
_LiveUpstream? next;
while (next == null && attempt < _liveProxyMaxRetries) {
attempt++;
// Laisser le panneau libérer le slot de connexion précédent : sur les
// comptes limités à une connexion simultanée, rouvrir immédiatement se
// fait refuser.
await Future<void>.delayed(const Duration(seconds: 1));
final candidate = await _openLiveUpstream(targetUrl);
if (candidate != null && candidate.response.statusCode == 200) {
next = candidate;
} else {
candidate?.client.close();
print(
'[Live Proxy] $streamId : reconnexion '
'$attempt/$_liveProxyMaxRetries échouée',
);
}
}
if (next == null) {
print('[Live Proxy] $streamId : abandon, source injoignable');
return;
}
upstream = next;
}
}
Handler createLiveStreamHandler(
Future<PlaylistConfig?> Function(Request) getPlaylist, {
bool Function()? isGpuEnabled,
}) {
final router = Router();
Future<Response> servePlaylist(
Request request,
String streamId,
String quality,
) async {
if (!_isValidStreamId(streamId)) {
return Response.badRequest(body: 'Invalid stream ID');
}
final playlist = await getPlaylist(request);
if (playlist == null) return Response.forbidden('No playlist');
final targetUrl =
'${playlist.dns}/live/${playlist.username}/${playlist.password}/$streamId.ts';
final useNvidiaGpu = isGpuEnabled?.call() ?? _isNvidiaGpuEnabled();
final sessionId = 'live_${streamId}_$quality';
if (!sessionManager.contains(sessionId)) {
print(
'[Live HLS] Starting $sessionId: ${LogRedactor.redactUrl(targetUrl)}',
);
}
final session = await sessionManager.getOrStart(
id: sessionId,
isLive: true,
ffmpegPath: _getFFmpegPath(),
argsBuilder: (dir) => [
'-hide_banner', '-loglevel', 'warning',
if (useNvidiaGpu && quality != 'source') ...['-hwaccel', 'cuda'],
'-headers', 'User-Agent: VLC/3.0.18 LibVLC/3.0.18\r\n',
'-reconnect', '1', '-reconnect_streamed', '1',
'-reconnect_at_eof', '1',
'-reconnect_delay_max', '10',
// Abort reads stuck for 30s so a stalled upstream triggers the
// reconnect logic instead of wedging the process forever.
'-rw_timeout', '30000000',
// Démarrage rapide : sans borne, FFmpeg peut passer plusieurs
// secondes à sonder le flux avant d'écrire le premier segment.
'-fflags', 'nobuffer',
'-probesize', '1000000',
'-analyzeduration', '1000000',
'-i', targetUrl,
..._liveVideoArgs(quality, useNvidiaGpu),
..._audioArgs(withFilters: false),
// HLS sliding window: 10 x 2s segments (lower live latency than the
// previous 20-segment window while still safe for iOS).
// hls_init_time 1: first segment closes after ~1s so playback can
// start sooner; subsequent segments use hls_time.
'-f', 'hls',
'-hls_init_time', '1',
'-hls_time', '2',
'-hls_list_size', '10',
'-hls_flags', 'delete_segments+independent_segments',
'-hls_segment_type', 'mpegts',
'-hls_segment_filename', 'seg_%03d.ts',
'playlist.m3u8',
],
);
final result = await sessionManager.waitForPlaylist(session);
if (!result.ready) {
sessionManager.killSession(sessionId);
return Response(502, body: 'Live transcoder failed: ${result.error}');
}
session.touch();
return Response.ok(
File('${session.dir.path}/playlist.m3u8').openRead(),
headers: _hlsHeaders(),
);
}
// Route: /api/live/{streamId}/{quality}/playlist.m3u8
router.get('/<streamId>/<quality>/playlist.m3u8',
(Request request, String streamId, String quality) {
return servePlaylist(request, streamId, _sanitizeQuality(quality));
});
// Back-compat route: /api/live/{streamId}/playlist.m3u8 (?quality=...)
// Redirects so relative segment URLs resolve inside the quality path.
router.get('/<streamId>/playlist.m3u8',
(Request request, String streamId) async {
final quality =
_sanitizeQuality(request.url.queryParameters['quality']);
return Response.found('/api/live/$streamId/$quality/playlist.m3u8');
});
// Route: /api/live/{streamId}/turbo.ts — flux MPEG-TS continu pour le
// player web (mpegts.js) : vidéo copiée telle quelle, audio TOUJOURS
// réencodé en AAC.
//
// POURQUOI : mpegts.js ne démuxe que l'AAC et le MP3. Les chaînes qui
// diffusent en AC-3/E-AC-3 (0x81/0x87) ou en MPEG-1 Layer II passaient par
// le proxy brut → image sans aucun son. Le réencodage audio seul coûte
// quelques % de CPU (pas de transcodage vidéo) et garde le zapping
// instantané : un seul flux continu, pas de segmentation HLS à amorcer.
//
// Latence : -fflags nobuffer + probesize réduit → première image en
// ~0,5-1,5 s au lieu des 2-6 s d'analyse par défaut de FFmpeg.
router.get('/<streamId>/turbo.ts', (Request request, String streamId) async {
if (!_isValidStreamId(streamId)) {
return Response.badRequest(body: 'Invalid stream ID');
}
final playlist = await getPlaylist(request);
if (playlist == null) return Response.forbidden('No playlist');
final targetUrl =
'${playlist.dns}/live/${playlist.username}/${playlist.password}/$streamId.ts';
print(
'[Live Turbo] $streamId: ${LogRedactor.redactUrl(targetUrl)}',
);
final process = await Process.start(_getFFmpegPath(), [
'-hide_banner', '-loglevel', 'warning',
'-headers', 'User-Agent: VLC/3.0.18 LibVLC/3.0.18\r\n',
'-reconnect', '1', '-reconnect_streamed', '1',
'-reconnect_at_eof', '1',
'-reconnect_delay_max', '10',
'-rw_timeout', '30000000',
// Démarrage rapide : ne pas bufferiser l'analyse, sonde réduite.
'-fflags', 'nobuffer',
'-flags', 'low_delay',
'-probesize', '1000000',
'-analyzeduration', '1000000',
'-i', targetUrl,
'-c:v', 'copy',
'-c:a', 'aac', '-b:a', '160k', '-ac', '2', '-ar', '48000',
'-af', 'aresample=async=1',
// Pas de délai de mux : les paquets partent dès qu'ils existent.
'-muxdelay', '0', '-muxpreload', '0',
'-f', 'mpegts', 'pipe:1',
]);
// Journaliser les erreurs FFmpeg (redactées) sans bloquer le flux.
process.stderr.transform(const SystemEncoding().decoder).listen((line) {
final trimmed = line.trim();
if (trimmed.isNotEmpty) {
print('[Live Turbo] $streamId ffmpeg: '
'${LogRedactor.redactUrl(trimmed)}');
}
});
// Relayer stdout vers le client ; tuer FFmpeg dès que le client zappe
// ou ferme l'onglet (sinon les processus s'accumulent à chaque zap).
final controller = StreamController<List<int>>();
final subscription = process.stdout.listen(
controller.add,
onError: controller.addError,
onDone: controller.close,
);
controller.onCancel = () {
subscription.cancel();
process.kill(ProcessSignal.sigterm);
};
return Response(
200,
body: controller.stream,
headers: {
'Content-Type': 'video/mp2t',
'Cache-Control': 'no-store',
'Connection': 'keep-alive',
},
);
});
// Route: /api/live/{streamId}.ts (Direct Proxy for recordings/raw playback)
router.get('/<streamId>.ts', (Request request, String streamId) async {
final playlist = await getPlaylist(request);
if (playlist == null) return Response.forbidden('No playlist');
final targetUrl =
'${playlist.dns}/live/${playlist.username}/${playlist.password}/$streamId.ts';
print(
'[Live Proxy] Forwarding $streamId: ${LogRedactor.redactUrl(targetUrl)}');
// Première connexion faite hors du générateur : elle seule décide du code
// de réponse renvoyé au client.
final first = await _openLiveUpstream(targetUrl);
if (first == null) {
return Response(502, body: 'Upstream connection failed');
}
if (first.response.statusCode != 200) {
first.client.close();
return Response(first.response.statusCode, body: 'Upstream refused');
}
return Response(
200,
body: _resilientLiveBody(streamId, targetUrl, first),
headers: {
'Content-Type': 'video/mp2t',
'Connection': 'keep-alive',
},
);
});
// Route: /api/live/{streamId}/{quality}/{segment}
router.get('/<streamId>/<quality>/<segment>',
(Request request, String streamId, String quality, String segment) {
if (!_isValidStreamId(streamId) || segment.contains('..')) {
return Response.badRequest(body: 'Invalid request');
}
final sessionId = 'live_${streamId}_${_sanitizeQuality(quality)}';
sessionManager.touch(sessionId);
final file = File('${_hlsTempDir.path}/$sessionId/$segment');
if (!file.existsSync()) return Response.notFound('Segment not found');
return Response.ok(file.openRead(), headers: _segmentHeaders());
});
return router.call;
}
// ==========================================
// 2. VOD HANDLER (FFmpeg HLS Transcoding)
// ==========================================
Handler createVodStreamHandler(
Future<PlaylistConfig?> Function(Request) getPlaylist, {
bool Function()? isGpuEnabled,
}) {
final router = Router();
Future<Response> servePlaylist(
Request request,
String streamId,
String quality,
) async {
if (!_isValidStreamId(streamId)) {
return Response.badRequest(body: 'Invalid stream ID');
}
final playlist = await getPlaylist(request);
if (playlist == null) {
return Response.internalServerError(body: 'No playlist');
}
// ?type=series or ?type=movie selects the upstream path
final contentType = request.url.queryParameters['type'] ?? 'movie';
final basePath = contentType == 'series' ? 'series' : 'movie';
final targetUrl =
'${playlist.dns}/$basePath/${playlist.username}/${playlist.password}/$streamId.mkv';
final useNvidiaGpu = isGpuEnabled?.call() ?? _isNvidiaGpuEnabled();
final sessionId = 'vod_${streamId}_$quality';
if (!sessionManager.contains(sessionId)) {
print(
'[VOD] Starting $sessionId ($contentType): ${LogRedactor.redactUrl(targetUrl)}',
);
}
final session = await sessionManager.getOrStart(
id: sessionId,
isLive: false,
ffmpegPath: _getFFmpegPath(),
argsBuilder: (dir) => [
'-hide_banner', '-loglevel', 'warning',
if (useNvidiaGpu && quality != 'source') ...['-hwaccel', 'cuda'],
'-headers', 'User-Agent: VLC/3.0.18 LibVLC/3.0.18\r\n',
'-reconnect', '1',
'-reconnect_at_eof', '1',
'-reconnect_streamed', '1',
'-reconnect_delay_max', '10',
'-rw_timeout', '30000000',
'-timeout', '30000000',
// Sonde réduite (10 Mo → 5 Mo) : sur un upstream lent, télécharger
// 10 Mo avant la première image ajoutait plusieurs secondes au
// démarrage de chaque film.
'-analyzeduration', '2000000',
'-probesize', '5000000',
'-i', targetUrl,
..._vodVideoArgs(quality, useNvidiaGpu),
..._audioArgs(withFilters: quality != 'source'),
'-f', 'hls',
'-hls_time', '4',
'-hls_list_size', '0',
'-hls_playlist_type', 'event',
'-hls_allow_cache', '1',
'-hls_flags', 'independent_segments',
'-hls_segment_type', 'mpegts',
'-hls_segment_filename', 'segment_%03d.ts',
'-start_number', '0',
'playlist.m3u8',
],
);
final result = await sessionManager.waitForPlaylist(session);
if (!result.ready) {
sessionManager.killSession(sessionId);
return Response(502, body: 'VOD transcoder failed: ${result.error}');
}
session.touch();
return Response.ok(
File('${session.dir.path}/playlist.m3u8').openRead(),
headers: _hlsHeaders(),
);
}
// Route: /api/vod/{streamId}/{quality}/playlist.m3u8
router.get('/<streamId>/<quality>/playlist.m3u8',
(Request request, String streamId, String quality) {
return servePlaylist(request, streamId, _sanitizeQuality(quality));
});
// Back-compat route: /api/vod/{streamId}/playlist.m3u8 (?quality=...)
router.get('/<streamId>/playlist.m3u8',
(Request request, String streamId) async {
final quality =
_sanitizeQuality(request.url.queryParameters['quality']);
final query = request.url.queryParameters['type'] != null
? '?type=${request.url.queryParameters['type']}'
: '';
return Response.found('/api/vod/$streamId/$quality/playlist.m3u8$query');
});
// Route: /api/vod/{streamId}/{quality}/{segment}
router.get('/<streamId>/<quality>/<segment>',
(Request request, String streamId, String quality, String segment) {
if (!_isValidStreamId(streamId) || segment.contains('..')) {
return Response.badRequest(body: 'Invalid request');
}
final sessionId = 'vod_${streamId}_${_sanitizeQuality(quality)}';
sessionManager.touch(sessionId);
final file = File('${_hlsTempDir.path}/$sessionId/$segment');
if (!file.existsSync()) return Response.notFound('Segment not found');
return Response.ok(file.openRead(), headers: _segmentHeaders(maxAge: 3600));
});
return router.call;
}
// ==========================================
// 3. RECORDING HANDLER (FFmpeg HLS Transcoding)
// ==========================================
Handler createRecordingStreamHandler(
AppDatabase db, {
bool Function()? isGpuEnabled,
}) {
final router = Router();
router.get('/<streamId>/playlist.m3u8',
(Request request, String streamId) async {
final recording = db.getRecordingById(streamId);
if (recording == null) {
return Response.notFound('Recording not found');
}
// Check recording status - only allow streaming if completed or recording
if (recording.status == 'scheduled') {
return Response(202, body: 'Recording not yet started');
}
if (recording.status == 'failed') {
return Response(422,
body: 'Recording failed: ${recording.errorReason ?? 'unknown error'}');
}
if (recording.status != 'completed' && recording.status != 'recording') {
return Response.internalServerError(
body: 'Invalid recording status: ${recording.status}');
}
if (recording.filePath == null) {
return Response.internalServerError(body: 'Recording file path not set');
}
final targetUrl = recording.filePath!;
if (!File(targetUrl).existsSync()) {
return Response.internalServerError(
body: 'Physical recording file not found');
}
final useNvidiaGpu = isGpuEnabled?.call() ?? _isNvidiaGpuEnabled();
final sessionId = 'rec_$streamId';
final session = await sessionManager.getOrStart(
id: sessionId,
isLive: false,
ffmpegPath: _getFFmpegPath(),
argsBuilder: (dir) => [
'-hide_banner', '-loglevel', 'warning',
if (useNvidiaGpu) ...['-hwaccel', 'cuda'],
'-i', targetUrl,
if (useNvidiaGpu) ...[
'-c:v', 'h264_nvenc', '-preset', 'p4', '-tune', 'hq',
'-rc', 'cbr', '-b:v', '3000k', '-maxrate', '3500k',
'-bufsize', '6000k',
'-g', '48', '-bf', '2', '-pix_fmt', 'yuv420p',
] else ...[
// veryfast/crf 20 au lieu de medium/crf 18 : à ce niveau le rendu
// est visuellement identique, mais medium ne tenait pas le temps
// réel en 1080p sur un CPU modeste → lecture d'enregistrement qui
// démarre lentement puis bufferise.
'-c:v', 'libx264', '-preset', 'veryfast', '-crf', '20',
'-maxrate', '12000k', '-bufsize', '24000k', '-pix_fmt', 'yuv420p',
'-g', '48', '-threads', '0',
],
..._audioArgs(withFilters: true),
'-f', 'hls', '-hls_time', '4', '-hls_list_size', '0',
'-hls_playlist_type', 'vod', '-hls_allow_cache', '1',
'-hls_flags', 'independent_segments', '-hls_segment_type', 'mpegts',
'-hls_segment_filename', 'segment_%03d.ts', '-start_number', '0',
'playlist.m3u8',
],
);
final result = await sessionManager.waitForPlaylist(session);
if (!result.ready) {
sessionManager.killSession(sessionId);
return Response(502,
body: 'Recording transcoder failed: ${result.error}');
}
session.touch();
return Response.ok(
File('${session.dir.path}/playlist.m3u8').openRead(),
headers: _hlsHeaders(),
);
});
router.get('/<streamId>/<segment>',
(Request request, String streamId, String segment) async {
if (segment.contains('..')) {
return Response.badRequest(body: 'Invalid request');
}
final sessionId = 'rec_$streamId';
sessionManager.touch(sessionId);
final file = File('${_hlsTempDir.path}/$sessionId/$segment');
if (!file.existsSync()) return Response.notFound('Segment not found');
return Response.ok(file.openRead(), headers: _segmentHeaders(maxAge: 3600));
});
return router.call;
}