feat(compute): Worker-Selbstanmeldung ueber RVS + Flotten-Anzeige (Stage 2)

Jeder GPU-Dienst meldet sich beim Connect mit worker_hello {instanceId,
service, node, gpus, model} und haelt die Registry per periodischem
worker_ping {instanceId, busy} (~10s) frisch. So weiss ARIA, was wo laeuft.

- xtts/{voxtral,whisper,f5tts}/bridge.py + llm-adapter/adapter.py:
  INSTANCE_ID=service@NODE_NAME, _worker_register()-Coroutine (hello + ping),
  busy-Quelle je Worker (aktive STT-Sessions / TTS-Render / in-flight LLM);
  Task sauber gecancelt bei Reconnect.
- bridge/aria_bridge.py: self._workers-Registry + Handler worker_hello/
  worker_ping (spiegelt sat_hello), _worker_list() (35s-Offline-TTL),
  _pick_worker() (Round-Robin freie Instanz, fuer Stage-3-Routing),
  /internal/worker-list-Endpoint.
- diagnostic/server.js: workers-Map, worker_hello/worker_ping-Tracking,
  worker_update-Broadcast + worker_list-Action + on-connect-Snapshot.
- diagnostic/index.html: "Compute-Flotte"-Panel im Satelliten-Tab — pro Node
  gruppiert, mit Dienst/Modell/GPU und frei/beschaeftigt/offline-Status.

Stage 2 von 3. Reine Sichtbarkeit, kein Routing-Verhalten geaendert.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
This commit is contained in:
2026-09-18 12:22:47 +02:00
co-authored by Claude Opus 4.8
parent e75f1eeb6a
commit f2ead1242f
7 changed files with 330 additions and 0 deletions
+80
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@@ -766,6 +766,11 @@ class ARIABridge:
# requestId → Future (sat_devices / sat_result), analog _pending_flux.
self._satellites: dict[str, dict] = {}
self._pending_sat: dict[str, asyncio.Future] = {}
# Compute-Fleet: GPU-Worker (voxtral/whisper/f5tts/llm) melden sich per
# worker_hello, halten sich per worker_ping frisch. instanceId →
# {service, node, gpus, model, busy, last_seen}. Genutzt fuer die
# Diagnostic-Flotten-Anzeige und (Stage 3) targetInstance-Routing.
self._workers: dict[str, dict] = {}
# FLUX-Render-Requests die aktuell auf Antwort der flux-bridge (Gamebox) warten.
# requestId → Future mit dem flux_response-Payload (oder None bei Fehler).
self._pending_flux: dict[str, asyncio.Future] = {}
@@ -3528,6 +3533,40 @@ class ARIABridge:
self._satellites[sid]["caps"], self._satellites[sid]["control"])
return
elif msg_type == "worker_hello":
iid = (payload.get("instanceId") or "").strip()
if iid:
prev = self._workers.get(iid, {})
self._workers[iid] = {
"instanceId": iid,
"service": payload.get("service") or "",
"node": payload.get("node") or "",
"gpus": payload.get("gpus") or "",
"model": payload.get("model") or "",
"busy": bool(prev.get("busy", False)),
"last_seen": time.time(),
}
logger.info("[worker] online: %s (service=%s node=%s gpus=%s model=%s)",
iid, self._workers[iid]["service"], self._workers[iid]["node"],
self._workers[iid]["gpus"] or "?", self._workers[iid]["model"] or "?")
return
elif msg_type == "worker_ping":
iid = (payload.get("instanceId") or "").strip()
if iid:
w = self._workers.get(iid)
if w is None:
# Ping ohne vorheriges hello (Bridge-Neustart) → Minimal-Eintrag,
# service aus der instanceId ableiten (Form: "service@node").
svc = iid.split("@", 1)[0]
w = self._workers[iid] = {
"instanceId": iid, "service": svc, "node": "", "gpus": "",
"model": "", "busy": False, "last_seen": 0.0,
}
w["busy"] = bool(payload.get("busy", False))
w["last_seen"] = time.time()
return
elif msg_type in ("sat_devices", "sat_result"):
req_id = payload.get("requestId", "")
future = self._pending_sat.get(req_id)
@@ -4435,6 +4474,9 @@ class ARIABridge:
elif method == "POST" and path == "/internal/satellite-list":
# Brain fragt: welche Satelliten/Netze sind online + Capabilities.
await _send_response(writer, 200, {"ok": True, "satellites": self._satellite_list()})
elif method in ("GET", "POST") and path == "/internal/worker-list":
# Diagnostic/Brain fragt: welche Compute-Worker sind online (Flotte).
await _send_response(writer, 200, {"ok": True, "workers": self._worker_list()})
elif method == "POST" and path == "/internal/satellite":
# Brain-Tool: Discovery oder Command an einen Satelliten.
# body: {op:'discover'|'command', satellite, device?, action?, params?}
@@ -4684,6 +4726,44 @@ class ARIABridge:
})
return out
# worker_ping kommt alle ~10s; nach 35s ohne Ping gilt ein Worker als offline.
WORKER_OFFLINE_S = 35
def _worker_list(self) -> list[dict]:
"""Bekannte Compute-Worker (Flotte). online = kuerzlich per Ping gesehen."""
now = time.time()
out = []
for w in self._workers.values():
out.append({
"instanceId": w["instanceId"], "service": w.get("service") or "",
"node": w.get("node") or "", "gpus": w.get("gpus") or "",
"model": w.get("model") or "", "busy": bool(w.get("busy")),
"online": (now - w.get("last_seen", 0)) < self.WORKER_OFFLINE_S,
})
return out
def _pick_worker(self, service: str) -> Optional[str]:
"""Waehlt eine online, moeglichst freie Instanz des Diensts (Round-Robin
ueber die freien). Gibt die instanceId oder None (keine online). Fuer
Stage-3-Routing (targetInstance)."""
now = time.time()
online = [w for w in self._workers.values()
if w.get("service") == service
and (now - w.get("last_seen", 0)) < self.WORKER_OFFLINE_S]
if not online:
return None
free = [w for w in online if not w.get("busy")]
pool = free or online # alle busy → trotzdem eine nehmen (least-bad)
# Round-Robin: rotierender Zeiger pro Dienst.
rr = getattr(self, "_worker_rr", None)
if rr is None:
rr = self._worker_rr = {}
idx = rr.get(service, 0) % len(pool)
rr[service] = idx + 1
chosen = pool[idx]
chosen["busy"] = True # optimistisch, bis der naechste Ping korrigiert
return chosen["instanceId"]
async def _satellite_request(self, op: str, satellite: str = "",
device: str = "", action: str = "",
params: Optional[dict] = None,
+58
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@@ -1307,6 +1307,22 @@
<div class="card">
<div id="sat-list" style="font-size:12px;color:#8888AA;">(Lade...)</div>
</div>
<div style="display:flex;justify-content:space-between;align-items:center;margin:16px 0 8px;">
<h2 style="margin:0;">Compute-Flotte 🖥️</h2>
<button class="btn secondary" onclick="requestWorkers()" style="padding:4px 10px;font-size:11px;">Aktualisieren</button>
</div>
<div class="card" style="margin-bottom:8px;">
<p style="color:#8888AA;font-size:12px;margin:0;">
GPU-Dienste (STT / TTS / lokales LLM), verteilt auf einen oder mehrere
Nodes. Jeder Node startet per <code>COMPOSE_PROFILES</code> nur die
Dienste, die er anbietet. Hier siehst Du, welche Instanz auf welchem
Node laeuft, mit welchem Modell/GPU und ob sie gerade beschaeftigt ist.
</p>
</div>
<div class="card">
<div id="worker-list" style="font-size:12px;color:#8888AA;">(Lade...)</div>
</div>
</div>
</div><!-- /tab-satellites -->
@@ -1958,6 +1974,7 @@
}
if (msg.type === 'sat_update') { satellites = msg.satellites || []; renderSatellites(); return; }
if (msg.type === 'worker_update') { workers = msg.workers || []; renderWorkers(); return; }
if (msg.type === 'sat_devices') {
if (msg.satellite) { satDevices[msg.satellite] = { devices: msg.devices || [], location: msg.location, ts: Date.now() }; }
satScanning = null;
@@ -4179,9 +4196,50 @@
loadTriggers();
} else if (tab === 'satellites') {
requestSatellites();
requestWorkers();
}
}
// ── Compute-Flotte ─────────────────────────────────────
let workers = []; // [{instanceId, service, node, gpus, model, busy, online}]
const WORKER_SVC_META = {
voxtral: { icon: '🎙️', label: 'STT (Voxtral)' },
whisper: { icon: '🎙️', label: 'STT (Whisper)' },
f5tts: { icon: '🔊', label: 'TTS (F5-TTS)' },
llm: { icon: '🧠', label: 'LLM (lokal)' },
};
function requestWorkers() { send({ action: 'worker_list' }); }
function renderWorkers() {
const box = document.getElementById('worker-list');
if (!box) return;
if (!workers.length) {
box.innerHTML = '<span style="color:#8888AA;">Kein Compute-Node verbunden. ' +
'Starte auf einem GPU-Rechner <code>cd xtts &amp;&amp; docker compose up -d</code> ' +
'(mit gesetztem <code>COMPOSE_PROFILES</code>).</span>';
return;
}
// Nach Node gruppieren.
const byNode = {};
for (const w of workers) { (byNode[w.node || '?'] = byNode[w.node || '?'] || []).push(w); }
box.innerHTML = Object.keys(byNode).sort().map(node => {
const rows = byNode[node].map(w => {
const meta = WORKER_SVC_META[w.service] || { icon: '⚙️', label: w.service };
const dot = !w.online ? '#666' : (w.busy ? '#FFB020' : '#3FFF3F');
const stat = !w.online ? 'offline' : (w.busy ? 'beschaeftigt' : 'frei');
return '<div style="display:flex;align-items:center;gap:8px;padding:4px 0;">' +
'<span style="width:8px;height:8px;border-radius:50%;background:' + dot + ';display:inline-block;"></span>' +
'<span>' + meta.icon + ' <b>' + escapeHtml(meta.label) + '</b></span>' +
'<span style="color:#8888AA;">' + escapeHtml(w.model || '') + '</span>' +
(w.gpus ? '<span style="color:#8888AA;">GPU ' + escapeHtml(w.gpus) + '</span>' : '') +
'<span style="margin-left:auto;color:' + dot + ';">' + stat + '</span>' +
'</div>';
}).join('');
return '<div style="margin-bottom:10px;">' +
'<div style="font-weight:600;color:#AAB;margin-bottom:2px;">🖥️ ' + escapeHtml(node) + '</div>' +
rows + '</div>';
}).join('');
}
// ── Satelliten-Ansicht ─────────────────────────────────
let satellites = []; // [{id, location, caps, control, online}]
let satDevices = {}; // id → {devices, location, ts}
+49
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@@ -490,6 +490,24 @@ function broadcastSatellites() {
broadcast({ type: "sat_update", satellites: satelliteList() });
}
// ── Compute-Fleet: GPU-Worker (voxtral/whisper/f5tts/llm) ──────────
// Worker melden sich per worker_hello + halten sich per worker_ping (busy) frisch.
const workers = new Map(); // instanceId → {instanceId, service, node, gpus, model, busy, last_seen}
const WORKER_OFFLINE_MS = 35000; // ping ~10s; nach 35s ohne Ping = offline
function workerList() {
const now = Date.now();
return Array.from(workers.values()).map(w => ({
instanceId: w.instanceId, service: w.service, node: w.node,
gpus: w.gpus, model: w.model, busy: !!w.busy,
online: (now - (w.last_seen || 0)) < WORKER_OFFLINE_MS,
}));
}
function broadcastWorkers() {
broadcast({ type: "worker_update", workers: workerList() });
}
// ── OpenClaw Gateway Verbindung ─────────────────────────
async function connectGateway() {
@@ -935,6 +953,32 @@ function connectRVS(forcePlain) {
if (p.satellite && satellites.has(p.satellite)) satellites.get(p.satellite).last_seen = Date.now();
broadcast({ type: "sat_devices", satellite: p.satellite || "",
location: p.location || "", devices: p.devices || [] });
} else if (msg.type === "worker_hello") {
// Ein Compute-Worker (GPU-Dienst) meldet sich mit seiner Identitaet.
const p = msg.payload || {};
if (p.instanceId) {
const prev = workers.get(p.instanceId) || {};
workers.set(p.instanceId, {
instanceId: p.instanceId, service: p.service || "",
node: p.node || "", gpus: p.gpus || "", model: p.model || "",
busy: !!prev.busy, last_seen: Date.now(),
});
broadcastWorkers();
}
} else if (msg.type === "worker_ping") {
// Heartbeat eines Workers (traegt busy-Status).
const p = msg.payload || {};
if (p.instanceId) {
let w = workers.get(p.instanceId);
if (!w) {
const svc = String(p.instanceId).split("@")[0];
w = { instanceId: p.instanceId, service: svc, node: "", gpus: "", model: "", busy: false, last_seen: 0 };
workers.set(p.instanceId, w);
}
w.busy = !!p.busy;
w.last_seen = Date.now();
broadcastWorkers();
}
} else if (msg.type === "agent_activity") {
// Bridge meldet "ARIA denkt/schreibt/tool" oder "idle" — an Browser
// weiterreichen, damit der Thinking-Indikator im Chat erscheint.
@@ -2505,6 +2549,8 @@ wss.on("connection", (ws) => {
if (currentDiskStatus) ws.send(JSON.stringify(currentDiskStatus));
// Aktuell bekannte Satelliten mitgeben (RVS replayt sat_hello nicht).
ws.send(JSON.stringify({ type: "sat_update", satellites: satelliteList() }));
// Aktuell bekannte Compute-Worker mitgeben (RVS replayt worker_hello nicht).
ws.send(JSON.stringify({ type: "worker_update", workers: workerList() }));
ws.on("message", (raw) => {
try {
@@ -2536,6 +2582,9 @@ wss.on("connection", (ws) => {
} else if (msg.action === "sat_list") {
// Browser will die aktuelle Satelliten-Liste.
ws.send(JSON.stringify({ type: "sat_update", satellites: satelliteList() }));
} else if (msg.action === "worker_list") {
// Browser will die aktuelle Compute-Flotte.
ws.send(JSON.stringify({ type: "worker_update", workers: workerList() }));
} else if (msg.action === "sat_discover") {
// Browser triggert einen Geraete-Scan auf einem Satelliten.
sendToRVS_raw({ type: "sat_discover",
+34
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@@ -60,6 +60,15 @@ RVS_TOKEN = os.getenv("RVS_TOKEN", "").strip()
# f5ttsCkptFile, f5ttsVocabFile, f5ttsCfgStrength, f5ttsNfeStep).
F5TTS_DEVICE = os.getenv("F5TTS_DEVICE", "cuda") # nur Bootstrap
# ── Compute-Fleet: Worker-Identitaet & Registrierung ──────────────
# Meldet sich bei der aria-bridge (worker_hello) + periodischer worker_ping.
NODE_NAME = os.getenv("NODE_NAME", "node").strip() or "node"
GPU_IDS = os.getenv("NVIDIA_VISIBLE_DEVICES", "").strip()
WORKER_SERVICE = "f5tts"
INSTANCE_ID = f"{WORKER_SERVICE}@{NODE_NAME}"
WORKER_PING_INTERVAL_S = int(os.getenv("WORKER_PING_INTERVAL_S", "10"))
_tts_busy = False # True waehrend eine Synthese laeuft (busy-Report im ping)
DEFAULT_F5TTS_MODEL = "F5TTS_v1_Base"
DEFAULT_F5TTS_CKPT_FILE = "" # leer = Default-Checkpoint von HF
DEFAULT_F5TTS_VOCAB_FILE = "" # leer = Default-Vocab vom Modell
@@ -460,13 +469,16 @@ _tts_queue: asyncio.Queue[tuple] = asyncio.Queue()
async def _tts_worker(ws, runner: F5Runner) -> None:
"""Serialisiert Synthesen — GPU kann sonst OOM gehen."""
global _tts_busy
while True:
text, voice, request_id, message_id, language, speed = await _tts_queue.get()
_tts_busy = True
try:
await _do_tts(ws, runner, text, voice, request_id, message_id, language, speed)
except Exception:
logger.exception("TTS-Worker Fehler")
finally:
_tts_busy = False
_tts_queue.task_done()
@@ -808,6 +820,24 @@ async def _broadcast_status(ws, state: str, **extra) -> None:
await _send(ws, "service_status", payload)
async def _worker_register(ws, *, model: str = "", busy_fn=None) -> None:
"""Meldet diesen Worker bei der aria-bridge an (worker_hello) und haelt die
Flotten-Registry per periodischem worker_ping (mit busy-Status) frisch."""
try:
await _send(ws, "worker_hello", {
"instanceId": INSTANCE_ID, "service": WORKER_SERVICE,
"node": NODE_NAME, "gpus": GPU_IDS, "model": model,
})
while True:
await asyncio.sleep(WORKER_PING_INTERVAL_S)
busy = bool(busy_fn()) if busy_fn else False
await _send(ws, "worker_ping", {"instanceId": INSTANCE_ID, "busy": busy})
except asyncio.CancelledError:
raise
except Exception:
return # Socket tot → still beenden; run_loop reconnectet + startet neu
async def run_loop(runner: F5Runner) -> None:
use_tls = RVS_TLS
retry_s = 2
@@ -855,6 +885,9 @@ async def run_loop(runner: F5Runner) -> None:
# TTS-Worker fuer diese Verbindung starten
worker = asyncio.create_task(_tts_worker(ws, runner))
ping_task = asyncio.create_task(_worker_register(
ws, model=runner.model_id,
busy_fn=lambda: _tts_busy or not _tts_queue.empty()))
try:
async for raw in ws:
@@ -958,6 +991,7 @@ async def run_loop(runner: F5Runner) -> None:
_last_diag_voice = ""
finally:
worker.cancel()
ping_task.cancel()
try:
await worker
except asyncio.CancelledError:
+41
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@@ -47,6 +47,15 @@ RVS_TOKEN = os.getenv("RVS_TOKEN", "").strip()
LLAMA_URL = os.getenv("LLAMA_URL", "http://llama:8081").rstrip("/")
LLM_MODEL = os.getenv("LLM_MODEL", "qwen3-8b")
LLM_TIMEOUT_SEC = float(os.getenv("LLM_TIMEOUT_SEC", "60"))
# ── Compute-Fleet: Worker-Identitaet & Registrierung ──────────────
# Meldet sich bei der aria-bridge (worker_hello) + periodischer worker_ping.
NODE_NAME = os.getenv("NODE_NAME", "node").strip() or "node"
GPU_IDS = os.getenv("NVIDIA_VISIBLE_DEVICES", "").strip()
WORKER_SERVICE = "llm"
INSTANCE_ID = f"{WORKER_SERVICE}@{NODE_NAME}"
WORKER_PING_INTERVAL_S = int(os.getenv("WORKER_PING_INTERVAL_S", "10"))
_inflight = 0 # laufende llm_requests (busy-Report im ping)
# Qwen3 hat Thinking-Mode default AN — dann verbraet es Tokens in einem
# <think>-Block und liefert (bei kleinem max_tokens) leeren/abgeschnittenen
# content, ausserdem 3x langsamer. ARIAs schnelles Tier will KEIN Grübeln
@@ -124,7 +133,34 @@ async def _emit_llm_status(ws, state: str, model: str, **extra) -> None:
{"service": "llm", "state": state, "model": model, **extra})
async def _worker_register(ws) -> None:
"""Meldet diesen Worker bei der aria-bridge an (worker_hello) und haelt die
Flotten-Registry per periodischem worker_ping (mit busy-Status) frisch."""
try:
await _send(ws, "worker_hello", {
"instanceId": INSTANCE_ID, "service": WORKER_SERVICE,
"node": NODE_NAME, "gpus": GPU_IDS, "model": LLM_MODEL,
})
while True:
await asyncio.sleep(WORKER_PING_INTERVAL_S)
await _send(ws, "worker_ping",
{"instanceId": INSTANCE_ID, "busy": _inflight > 0})
except asyncio.CancelledError:
raise
except Exception:
return # Socket tot → still beenden; _run reconnectet + startet neu
async def _handle_llm_request(ws, payload: dict) -> None:
global _last_model, _inflight
_inflight += 1
try:
await _do_llm_request(ws, payload)
finally:
_inflight -= 1
async def _do_llm_request(ws, payload: dict) -> None:
global _last_model
req_id = payload.get("requestId", "")
messages = payload.get("messages") or []
@@ -201,6 +237,7 @@ async def _run() -> None:
logger.info("RVS verbunden — llm-adapter online")
retry_s = 2
tls_fallback_tried = False
ping_task = asyncio.create_task(_worker_register(ws))
async for raw in ws:
try:
msg = json.loads(raw)
@@ -214,6 +251,10 @@ async def _run() -> None:
asyncio.create_task(_handle_llm_request(ws, payload))
except Exception as e:
logger.warning("RVS-Verbindung verloren/fehlgeschlagen: %s", e)
try:
ping_task.cancel()
except NameError:
pass
if use_tls and RVS_TLS_FALLBACK and not tls_fallback_tried:
tls_fallback_tried = True
use_tls = False
+35
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@@ -58,6 +58,16 @@ VOXTRAL_MODEL = os.getenv("VOXTRAL_MODEL", "mistralai/Voxtral-Mini-3B-2507")
VOXTRAL_LANGUAGE = os.getenv("VOXTRAL_LANGUAGE", "de")
VOXTRAL_DEVICE = os.getenv("VOXTRAL_DEVICE", "cuda")
# ── Compute-Fleet: Worker-Identitaet & Registrierung ──────────────
# Jeder Node meldet sich bei der aria-bridge (worker_hello) und haelt die
# Registry per periodischem worker_ping frisch. INSTANCE_ID adressiert diesen
# Worker bei Redundanz (targetInstance-Routing, Stage 3).
NODE_NAME = os.getenv("NODE_NAME", "node").strip() or "node"
GPU_IDS = os.getenv("NVIDIA_VISIBLE_DEVICES", "").strip()
WORKER_SERVICE = "voxtral"
INSTANCE_ID = f"{WORKER_SERVICE}@{NODE_NAME}"
WORKER_PING_INTERVAL_S = int(os.getenv("WORKER_PING_INTERVAL_S", "10"))
STREAM_TRANSCRIBE_INTERVAL_MS = int(os.getenv("STREAM_TRANSCRIBE_INTERVAL_MS", "1000"))
STREAM_DEFAULT_ENDPOINT_MS = 2400
STREAM_DEFAULT_HARD_CAP_MS = 300000
@@ -695,6 +705,24 @@ async def _broadcast_status(ws, state: str, **extra) -> None:
await _send(ws, "service_status", payload)
async def _worker_register(ws, *, model: str = "", busy_fn=None) -> None:
"""Meldet diesen Worker bei der aria-bridge an (worker_hello) und haelt die
Flotten-Registry per periodischem worker_ping (mit busy-Status) frisch."""
try:
await _send(ws, "worker_hello", {
"instanceId": INSTANCE_ID, "service": WORKER_SERVICE,
"node": NODE_NAME, "gpus": GPU_IDS, "model": model,
})
while True:
await asyncio.sleep(WORKER_PING_INTERVAL_S)
busy = bool(busy_fn()) if busy_fn else False
await _send(ws, "worker_ping", {"instanceId": INSTANCE_ID, "busy": busy})
except asyncio.CancelledError:
raise
except Exception:
return # Socket tot → still beenden; run_loop reconnectet + startet neu
async def run_loop(sessions: SessionManager) -> None:
use_tls = RVS_TLS
retry_s = 2
@@ -713,6 +741,9 @@ async def run_loop(sessions: SessionManager) -> None:
sessions.attach_ws(ws)
await _broadcast_status(ws, "ready", model=VOXTRAL_MODEL)
await _send(ws, "config_request", {"service": "voxtral"})
ping_task = asyncio.create_task(_worker_register(
ws, model=VOXTRAL_MODEL,
busy_fn=lambda: bool(sessions._sessions)))
async for raw in ws:
try:
msg = json.loads(raw)
@@ -797,6 +828,10 @@ async def run_loop(sessions: SessionManager) -> None:
"AN" if SPEAKER_ID_ENABLED else "AUS")
except Exception as e:
logger.warning("RVS-Verbindung verloren: %s — retry in %ds", e, retry_s)
try:
ping_task.cancel()
except NameError:
pass
if use_tls and RVS_TLS_FALLBACK and not tls_fallback_tried:
use_tls = False
tls_fallback_tried = True
+33
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@@ -59,6 +59,14 @@ WHISPER_DEVICE = os.getenv("WHISPER_DEVICE", "cuda")
WHISPER_COMPUTE_TYPE = os.getenv("WHISPER_COMPUTE_TYPE", "float16")
WHISPER_LANGUAGE = os.getenv("WHISPER_LANGUAGE", "de")
# ── Compute-Fleet: Worker-Identitaet & Registrierung ──────────────
# Meldet sich bei der aria-bridge (worker_hello) + periodischer worker_ping.
NODE_NAME = os.getenv("NODE_NAME", "node").strip() or "node"
GPU_IDS = os.getenv("NVIDIA_VISIBLE_DEVICES", "").strip()
WORKER_SERVICE = "whisper"
INSTANCE_ID = f"{WORKER_SERVICE}@{NODE_NAME}"
WORKER_PING_INTERVAL_S = int(os.getenv("WORKER_PING_INTERVAL_S", "10"))
ALLOWED_MODELS = {"tiny", "base", "small", "medium", "large-v3"}
# Streaming-Parameter (Defaults — koennen pro Session vom App-Payload ueberschrieben werden)
@@ -822,6 +830,24 @@ async def _broadcast_status(ws, state: str, **extra) -> None:
await _send(ws, "service_status", payload)
async def _worker_register(ws, *, model: str = "", busy_fn=None) -> None:
"""Meldet diesen Worker bei der aria-bridge an (worker_hello) und haelt die
Flotten-Registry per periodischem worker_ping (mit busy-Status) frisch."""
try:
await _send(ws, "worker_hello", {
"instanceId": INSTANCE_ID, "service": WORKER_SERVICE,
"node": NODE_NAME, "gpus": GPU_IDS, "model": model,
})
while True:
await asyncio.sleep(WORKER_PING_INTERVAL_S)
busy = bool(busy_fn()) if busy_fn else False
await _send(ws, "worker_ping", {"instanceId": INSTANCE_ID, "busy": busy})
except asyncio.CancelledError:
raise
except Exception:
return # Socket tot → still beenden; run_loop reconnectet + startet neu
# ──────────────────────────────────────────────────────────────
# WS-LOOP
# ──────────────────────────────────────────────────────────────
@@ -862,6 +888,9 @@ async def run_loop(runner: WhisperRunner, sessions: SessionManager) -> None:
except Exception as e:
logger.exception("Initial-Handshake crashed: %s", e)
asyncio.create_task(_initial_handshake())
ping_task = asyncio.create_task(_worker_register(
ws, model=(runner.model_size or WHISPER_MODEL),
busy_fn=lambda: bool(sessions._sessions)))
async for raw in ws:
try:
@@ -1038,6 +1067,10 @@ async def run_loop(runner: WhisperRunner, sessions: SessionManager) -> None:
except Exception as e:
logger.warning("Verbindung verloren: %s", e)
sessions.detach_ws()
try:
ping_task.cancel()
except NameError:
pass
if use_tls and RVS_TLS_FALLBACK and not tls_fallback_tried:
logger.info("TLS-Verbindung fehlgeschlagen — Fallback auf ws://")
use_tls = False