feat(voice): orchestration enrôlement — pull/archive/transcribe/enroll/deploy

- store : table voices + WAV chiffré sur disque (archive_voice_wav, voice_wav_bytes,
  transcription chiffrée, marques archived/enrolled/deployed/wav_deleted).
- voice/transfer.py : dérivation du dossier cosyvoice depuis wav_path (device-dépendant),
  pull WAV / push .cvps / delete WAV device (retour vérifié §9).
- voice/orchestrator.py : list_voices (statut par voix), prepare (pull+archive+whisper),
  enroll_deploy (enroll+push + suppression WAV device optionnelle, opt-in).
- API : GET /api/voices/{serial}, /voices/health, POST .../prepare, .../enroll.
- tests : +10 (chemins, archive chiffrée, orchestration via faux adb/bridge). 33/33.
- validé live : jerome (muet) → transcrit FR → .cvps déployé sur tablette + WAV
  archivé chiffré ; WAV device conservé (delete_source=false).

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
This commit is contained in:
alf 2026-06-19 14:39:29 +02:00
parent 92505a4cac
commit 4ad513afda
5 changed files with 482 additions and 1 deletions

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@ -25,6 +25,8 @@ from ..adb import Adb, AdbError
from ..fleet import device_overview, fan_out
from ..provider import ProviderClient
from ..store import BadPassword, Store, StoreLocked
from ..voice import orchestrator as vo
from ..voice.bridge import VoiceBridge, VoiceWorkerError
_WEB_DIR = Path(__file__).resolve().parent.parent / "web"
# Base chiffrée locale. Défaut sous data/ (ignoré par .gitignore — jamais commité).
@ -45,6 +47,11 @@ class _Label(BaseModel):
label: str
class _Enroll(BaseModel):
transcription: str
delete_source: bool = False # suppression du WAV device = opt-in explicite
def _install_basic_auth(app: FastAPI) -> None:
"""Auth HTTP Basic optionnelle, active SEULEMENT si KAZEIA_USER+KAZEIA_PASS
sont définis. Couvre tout (UI statique incluse) via middleware. Pensée pour
@ -70,11 +77,13 @@ def _install_basic_auth(app: FastAPI) -> None:
return await call_next(request)
def create_app(adb: Adb | None = None, store: Store | None = None) -> FastAPI:
def create_app(adb: Adb | None = None, store: Store | None = None,
bridge: VoiceBridge | None = None) -> FastAPI:
adb = adb or Adb()
if store is None:
_STORE_PATH.parent.mkdir(parents=True, exist_ok=True)
store = Store(_STORE_PATH)
bridge = bridge or VoiceBridge()
app = FastAPI(title="Kazeia-central", version="0.0.1")
_install_basic_auth(app)
@ -88,6 +97,8 @@ def create_app(adb: Adb | None = None, store: Store | None = None) -> FastAPI:
raise HTTPException(status_code=502, detail=str(e)) from e
except StoreLocked as e:
raise HTTPException(status_code=423, detail=str(e)) from e
except VoiceWorkerError as e:
raise HTTPException(status_code=503, detail=f"encodeur voix: {e}") from e
except IndexError as e: # endpoint a renvoyé 0 ligne
raise HTTPException(status_code=404, detail="aucune donnée") from e
@ -198,6 +209,27 @@ def create_app(adb: Adb | None = None, store: Store | None = None) -> FastAPI:
now=_now_ms())
return report
# ---- voix (enrôlement CosyVoice : WAV device → .cvps → flotte) --------
@app.get("/api/voices/health")
def voices_health():
return {"encoder_available": bridge.available(), "cv_python": bridge.cv_python}
@app.get("/api/voices/{serial}")
def voices_list(serial: str):
return _guard(lambda: vo.list_voices(adb, store, serial))
@app.post("/api/voices/{serial}/{voice_id}/prepare")
def voices_prepare(serial: str, voice_id: str):
# pull + archive chiffré + transcription Whisper (à relire avant enrôlement)
return _guard(lambda: vo.prepare(adb, store, bridge, serial, voice_id,
now=_now_ms(), actor=_OPERATOR))
@app.post("/api/voices/{serial}/{voice_id}/enroll")
def voices_enroll(serial: str, voice_id: str, body: _Enroll):
return _guard(lambda: vo.enroll_deploy(
adb, store, bridge, serial, voice_id, body.transcription,
delete_source=body.delete_source, now=_now_ms(), actor=_OPERATOR))
# UI web locale servie à la racine — APRÈS les routes /api pour ne pas les
# masquer. `html=True` → sert index.html sur "/".
if _WEB_DIR.is_dir():

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@ -20,6 +20,7 @@ connexion ouverte avec `check_same_thread=False` et accès sérialisé par un `R
from __future__ import annotations
import hashlib
import json
import sqlite3
import threading
@ -64,6 +65,21 @@ CREATE TABLE IF NOT EXISTS audit (
target TEXT,
detail TEXT -- métadonnée d'audit (pas de PII) → clair
);
CREATE TABLE IF NOT EXISTS voices (
serial TEXT NOT NULL,
voice_id TEXT NOT NULL,
transcription_enc BLOB, -- texte parlé (PII possible) chiffré
language TEXT,
source_wav_path TEXT, -- chemin device d'origine
wav_file TEXT, -- WAV chiffré archivé (relatif au dossier voices/)
wav_sha256 TEXT, -- intégrité du WAV d'origine
cvps_bytes INTEGER,
archived_at INTEGER, -- WAV récupéré + archivé sur le PC
enrolled_at INTEGER, -- .cvps produit
deployed_at INTEGER, -- .cvps poussé sur la tablette
wav_deleted_at INTEGER, -- WAV supprimé de la tablette
PRIMARY KEY (serial, voice_id)
);
"""
@ -251,6 +267,99 @@ class Store:
).fetchone()
return row["m"] if row else None
# ---- archive voix (enrôlement, §6 VOICE_ENROLLMENT_SPEC) --------------
def _voices_dir(self) -> Path:
d = Path(self.path).parent / "voices"
d.mkdir(parents=True, exist_ok=True)
return d
def _voice_upsert(self, serial: str, voice_id: str, **cols: Any) -> None:
"""Upsert partiel d'une ligne voix (colonnes données seulement)."""
keys = list(cols)
sets = ", ".join(f"{k}=excluded.{k}" for k in keys)
self._db.execute(
f"INSERT INTO voices(serial, voice_id, {', '.join(keys)}) "
f"VALUES(?, ?, {', '.join('?' for _ in keys)}) "
f"ON CONFLICT(serial, voice_id) DO UPDATE SET {sets}",
(serial, voice_id, *[cols[k] for k in keys]),
)
self._db.commit()
def archive_voice_wav(self, serial: str, voice_id: str, wav_bytes: bytes, *,
source_wav_path: str | None, now: int) -> str:
"""Chiffre + archive le WAV d'origine sur le PC (le « garder sur Kazeia-central »
une fois supprimé de la tablette). Renvoie le chemin du fichier chiffré."""
v = self._require_vault()
sha = hashlib.sha256(wav_bytes).hexdigest()
dest = self._voices_dir() / serial / f"{voice_id}.wav.enc"
dest.parent.mkdir(parents=True, exist_ok=True)
dest.write_bytes(v.seal_bytes(wav_bytes))
with self._lock:
self._voice_upsert(serial, voice_id, source_wav_path=source_wav_path,
wav_file=str(dest.relative_to(self._voices_dir())),
wav_sha256=sha, archived_at=now)
return str(dest)
def voice_wav_bytes(self, serial: str, voice_id: str) -> bytes | None:
"""Relit le WAV archivé déchiffré (pour ré-enrôlement)."""
v = self._require_vault()
with self._lock:
row = self._db.execute(
"SELECT wav_file FROM voices WHERE serial=? AND voice_id=?",
(serial, voice_id)).fetchone()
if not row or not row["wav_file"]:
return None
return v.open_bytes((self._voices_dir() / row["wav_file"]).read_bytes())
def set_voice_transcription(self, serial: str, voice_id: str, text: str,
language: str | None, *, now: int) -> None:
v = self._require_vault()
with self._lock:
self._voice_upsert(serial, voice_id, transcription_enc=v.seal(text),
language=language)
def mark_voice_enrolled(self, serial: str, voice_id: str, cvps_bytes: int, *, now: int) -> None:
with self._lock:
self._voice_upsert(serial, voice_id, cvps_bytes=cvps_bytes, enrolled_at=now)
def mark_voice_deployed(self, serial: str, voice_id: str, *, now: int) -> None:
with self._lock:
self._voice_upsert(serial, voice_id, deployed_at=now)
def mark_voice_wav_deleted(self, serial: str, voice_id: str, *, now: int) -> None:
with self._lock:
self._voice_upsert(serial, voice_id, wav_deleted_at=now)
def voice_record(self, serial: str, voice_id: str) -> dict[str, Any] | None:
v = self._require_vault()
with self._lock:
row = self._db.execute(
"SELECT * FROM voices WHERE serial=? AND voice_id=?",
(serial, voice_id)).fetchone()
if not row:
return None
d = dict(row)
d["transcription"] = v.open(d.pop("transcription_enc"))
d["has_wav"] = bool(d.get("wav_file"))
return d
def voices(self, serial: str | None = None) -> list[dict[str, Any]]:
v = self._require_vault()
with self._lock:
q = "SELECT * FROM voices"
args: tuple = ()
if serial is not None:
q += " WHERE serial=?"
args = (serial,)
rows = self._db.execute(q + " ORDER BY serial, voice_id", args).fetchall()
out = []
for r in rows:
d = dict(r)
d["transcription"] = v.open(d.pop("transcription_enc"))
d["has_wav"] = bool(d.get("wav_file"))
out.append(d)
return out
# ---- audit (§8) -------------------------------------------------------
def audit(self, action: str, *, actor: str | None = None, target: str | None = None,
detail: dict[str, Any] | None = None, now: int) -> None:

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@ -0,0 +1,136 @@
"""Orchestration de l'enrôlement vocal (le workflow complet).
Compose : provider (`/voices` wav_path), transfert adb, bridge (worker cv_venv),
store chiffré. Tourne sous l'API py3.14 ; le calcul lourd est délégué au worker.
Workflow (VOICE_ENROLLMENT_SPEC §1, décisions 2026-06-19) :
connexion lister voix sans .cvps pull WAV ARCHIVER (store chiffré)
transcrire (Whisper, relecture opérateur) enrôler (.cvps) pousser sur la
tablette SUPPRIMER le WAV de la tablette (gardé sur Kazeia-central).
Découpé pour permettre la relecture de la transcription : `prepare` (pull+archive+
transcribe) puis `enroll_deploy` (enroll+push+delete). Le WAV est archivé DÈS prepare
jamais de suppression device sans copie PC.
"""
from __future__ import annotations
import os
import tempfile
from typing import Any
from ..adb import Adb
from ..provider import ProviderClient
from ..store import Store
from . import transfer
from .bridge import VoiceBridge
def _provider_voices(adb: Adb, serial: str):
return ProviderClient(adb, serial).voices()
def _find_wav_path(adb: Adb, serial: str, voice_id: str) -> str | None:
for v in _provider_voices(adb, serial):
if v.id == voice_id:
return v.wav_path
return None
def _status(deployed: bool, rec: dict) -> str:
if deployed:
return "deployed"
if rec.get("enrolled_at"):
return "enrolled"
if rec.get("archived_at"):
return "archived"
return "pending"
def list_voices(adb: Adb, store: Store, serial: str) -> list[dict[str, Any]]:
"""Inventaire voix de la tablette croisé avec l'archive store (statut par voix)."""
rows = _provider_voices(adb, serial)
cosy = transfer.cosyvoice_dir_for(rows[0].wav_path) if rows else None
deployed = transfer.deployed_cvps(adb, serial, cosy) if cosy else set()
recs = {r["voice_id"]: r for r in store.voices(serial)} if store.is_unlocked else {}
out = []
for v in rows:
rec = recs.get(v.id, {})
is_dep = v.id in deployed
out.append({
"voice_id": v.id,
"wav_path": v.wav_path,
"wav_on_device": v.wav_exists,
"deployed_on_device": is_dep,
"archived": bool(rec.get("archived_at")),
"enrolled": bool(rec.get("enrolled_at")),
"wav_deleted": bool(rec.get("wav_deleted_at")),
"transcription": rec.get("transcription"),
"language": rec.get("language"),
"status": _status(is_dep, rec),
})
return out
def _ensure_wav_archived(adb: Adb, store: Store, serial: str, voice_id: str, *,
now: int) -> bytes:
"""Garantit que le WAV est archivé (chiffré) côté PC ; le renvoie déchiffré."""
data = store.voice_wav_bytes(serial, voice_id)
if data is not None:
return data
wav_path = _find_wav_path(adb, serial, voice_id)
if not wav_path:
raise ValueError(f"voix introuvable sur la tablette: {voice_id}")
with tempfile.TemporaryDirectory() as td:
local = os.path.join(td, f"{voice_id}.wav")
transfer.pull_wav(adb, serial, wav_path, local)
data = open(local, "rb").read()
store.archive_voice_wav(serial, voice_id, data, source_wav_path=wav_path, now=now)
return data
def prepare(adb: Adb, store: Store, bridge: VoiceBridge, serial: str, voice_id: str, *,
now: int, actor: str | None = None) -> dict[str, Any]:
"""Pull + archive (chiffré) + transcription Whisper. Renvoie le texte à relire."""
data = _ensure_wav_archived(adb, store, serial, voice_id, now=now)
with tempfile.TemporaryDirectory() as td:
local = os.path.join(td, f"{voice_id}.wav")
open(local, "wb").write(data)
tr = bridge.transcribe(local)
store.set_voice_transcription(serial, voice_id, tr["text"], tr.get("language"), now=now)
store.audit("voice_prepare", actor=actor, target=f"{serial}/{voice_id}", now=now)
return {"voice_id": voice_id, "transcription": tr["text"],
"language": tr.get("language"), "model": tr.get("model")}
def enroll_deploy(adb: Adb, store: Store, bridge: VoiceBridge, serial: str, voice_id: str,
transcription: str, *, delete_source: bool, now: int,
actor: str | None = None) -> dict[str, Any]:
"""Enrôle (.cvps) → pousse sur la tablette → (option) supprime le WAV device.
Le WAV reste archivé côté PC suppression device réversible par -enrôlement."""
data = _ensure_wav_archived(adb, store, serial, voice_id, now=now)
wav_path = _find_wav_path(adb, serial, voice_id)
cosy = transfer.cosyvoice_dir_for(wav_path) if wav_path else None
if not cosy:
raise ValueError(f"dossier cosyvoice indéterminé pour {voice_id}")
with tempfile.TemporaryDirectory() as td:
local = os.path.join(td, f"{voice_id}.wav")
open(local, "wb").write(data)
cvps = os.path.join(td, f"{voice_id}.cvps")
info = bridge.enroll(local, transcription, cvps)
store.set_voice_transcription(serial, voice_id, transcription, None, now=now)
store.mark_voice_enrolled(serial, voice_id, info["bytes"], now=now)
remote = transfer.push_cvps(adb, serial, cvps, cosy, voice_id)
store.mark_voice_deployed(serial, voice_id, now=now)
store.audit("voice_enroll_deploy", actor=actor, target=f"{serial}/{voice_id}",
detail={"cvps_bytes": info["bytes"]}, now=now)
result = {"voice_id": voice_id, "cvps_bytes": info["bytes"],
"deployed_to": remote, "wav_deleted": False}
if delete_source and wav_path:
transfer.delete_device_wav(adb, serial, wav_path)
store.mark_voice_wav_deleted(serial, voice_id, now=now)
store.audit("voice_wav_deleted", actor=actor, target=f"{serial}/{voice_id}", now=now)
result["wav_deleted"] = True
return result

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@ -0,0 +1,57 @@
"""Transfert de fichiers voix entre la tablette et Kazeia-central (adb).
Py3.14-safe (pas de torch) : seulement des opérations adb. Le chemin des fichiers est
**device-dépendant** on part toujours de la colonne `wav_path` que le provider
`/voices` renvoie (autorité), jamais d'un chemin codé en dur (cf. découverte du test :
WAV sous `/data/local/tmp/kazeia/` en dev, `Android/data/com.kazeia/` en prod).
"""
from __future__ import annotations
import posixpath
from ..adb import Adb, AdbError
# Le provider expose VOICE_WAV_DIR = "${MODELS_DIR}/../voix/voix" → ce marqueur
# permet d'extraire MODELS_DIR depuis un wav_path, donc le dossier cosyvoice cible.
_WAV_MARKER = "/../voix/voix/"
def cosyvoice_dir_for(wav_path: str) -> str:
"""Dossier device des `.cvps` (`<MODELS_DIR>/cosyvoice`) dérivé d'un `wav_path`."""
if _WAV_MARKER in wav_path:
models = wav_path.split(_WAV_MARKER)[0]
return posixpath.join(models, "cosyvoice")
# Fallback : …/kazeia/voix/voix/<id>.wav → …/kazeia/models/cosyvoice
voix_dir = posixpath.dirname(wav_path)
kazeia = posixpath.dirname(posixpath.dirname(voix_dir))
return posixpath.join(kazeia, "models", "cosyvoice")
def deployed_cvps(adb: Adb, serial: str, cosyvoice_dir: str) -> set[str]:
"""Ensemble des voice_id ayant un `.cvps` déjà déployé sur la tablette."""
out = adb.shell(f"ls {cosyvoice_dir} 2>/dev/null", serial=serial)
return {line[:-5].strip() for line in out.splitlines()
if line.strip().endswith(".cvps")}
def pull_wav(adb: Adb, serial: str, wav_path: str, local_path: str) -> None:
adb.pull(wav_path, local_path, serial=serial)
def push_cvps(adb: Adb, serial: str, local_cvps: str, cosyvoice_dir: str,
voice_id: str) -> str:
"""Pousse le `.cvps` dans le dossier cosyvoice de la tablette. Renvoie le chemin
device. Crée le dossier au besoin."""
adb.shell(f"mkdir -p {cosyvoice_dir}", serial=serial)
remote = posixpath.join(cosyvoice_dir, f"{voice_id}.cvps")
adb.push(local_cvps, remote, serial=serial)
return remote
def delete_device_wav(adb: Adb, serial: str, wav_path: str) -> None:
"""Supprime le WAV d'origine de la tablette (après archivage côté PC).
Vérifie le retour : `rm` adb échoue silencieusement (§9)."""
out = adb.shell(f"rm -f {wav_path} && echo OK || echo FAIL", serial=serial)
if "OK" not in out:
raise AdbError(f"suppression WAV échouée: {wav_path} ({out.strip()})")

147
tests/test_voice.py Normal file
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@ -0,0 +1,147 @@
"""Tests du sous-système voix : dérivation chemins, archive store, orchestration.
Le moteur lourd (CosyVoice/Whisper) n'est PAS testé ici (validé live) — on injecte
un faux bridge et un faux adb pour prouver la COMPOSITION (workflow) sans le modèle.
"""
import nacl.pwhash
from kazeia_central.adb import Adb
from kazeia_central.adb.client import AdbDevice
from kazeia_central.store import Store
from kazeia_central.voice import orchestrator as vo
from kazeia_central.voice import transfer
_OPS = nacl.pwhash.argon2id.OPSLIMIT_MIN
_MEM = nacl.pwhash.argon2id.MEMLIMIT_MIN
NOW = 1_700_000_000_000
def _store(tmp_path):
s = Store(tmp_path / "c.db", kdf_ops=_OPS, kdf_mem=_MEM)
s.unlock("pw")
return s
# ---- dérivation des chemins device ---------------------------------------
def test_cosyvoice_dir_marker():
wp = "/data/local/tmp/kazeia/models/../voix/voix/amir.wav"
assert transfer.cosyvoice_dir_for(wp) == "/data/local/tmp/kazeia/models/cosyvoice"
def test_cosyvoice_dir_fallback_prod():
wp = "/sdcard/Android/data/com.kazeia/files/kazeia/voix/voix/amir.wav"
assert transfer.cosyvoice_dir_for(wp) == \
"/sdcard/Android/data/com.kazeia/files/kazeia/models/cosyvoice"
# ---- archive voix dans le store ------------------------------------------
def test_voice_wav_archive_roundtrip_and_encrypted(tmp_path):
s = _store(tmp_path)
s.archive_voice_wav("D1", "amir", b"FAKEWAVDATA-amir", source_wav_path="/dev/amir.wav", now=NOW)
assert s.voice_wav_bytes("D1", "amir") == b"FAKEWAVDATA-amir"
# chiffré au repos : le blob brut ne contient pas le contenu
enc = (tmp_path / "voices" / "D1" / "amir.wav.enc").read_bytes()
assert b"FAKEWAVDATA" not in enc
rec = s.voice_record("D1", "amir")
assert rec["has_wav"] and rec["wav_sha256"] and rec["archived_at"] == NOW
def test_voice_transcription_encrypted(tmp_path):
s = _store(tmp_path)
s.archive_voice_wav("D1", "amir", b"x", source_wav_path=None, now=NOW)
s.set_voice_transcription("D1", "amir", "texte parlé confidentiel", "fr", now=NOW)
assert s.voice_record("D1", "amir")["transcription"] == "texte parlé confidentiel"
raw = (tmp_path / "c.db").read_bytes()
assert b"texte parl" not in raw # PII jamais en clair en base
def test_voice_status_marks(tmp_path):
s = _store(tmp_path)
s.archive_voice_wav("D1", "amir", b"x", source_wav_path=None, now=NOW)
s.mark_voice_enrolled("D1", "amir", 242000, now=NOW)
s.mark_voice_deployed("D1", "amir", now=NOW)
r = s.voice_record("D1", "amir")
assert r["cvps_bytes"] == 242000 and r["enrolled_at"] and r["deployed_at"]
# ---- orchestration (faux adb + faux bridge) ------------------------------
class _VoiceAdb(Adb):
def __init__(self, voices, deployed=()):
super().__init__()
self._voices = voices # [(id, wav_path, wav_exists)]
self._deployed = list(deployed)
self.pushed = []
self.deleted = []
def ready_devices(self):
return [AdbDevice("D1", "device", {})]
def content_query(self, path, *, serial=None, where=None, expect_rows=False, _retry=True):
if path == "voices":
return [{"id": i, "wav_path": w, "wav_exists": 1} for i, w, _ in self._voices]
return []
def shell(self, command, *, serial=None, timeout=None):
if command.startswith("ls "):
return "\n".join(f"{d}.cvps" for d in self._deployed)
if "rm -f" in command:
self.deleted.append(command.split("rm -f ")[1].split(" &&")[0])
return "OK"
return ""
def pull(self, remote, local, *, serial=None):
open(local, "wb").write(b"WAV:" + remote.encode())
def push(self, local, remote, *, serial=None):
self.pushed.append((open(local, "rb").read(), remote))
class _FakeBridge:
def transcribe(self, wav, model=None):
return {"text": "bonjour ceci est ma voix", "language": "fr", "model": "small"}
def enroll(self, wav, text, out):
open(out, "wb").write(b"GGUF-CVPS-" + text.encode()[:5])
return {"bytes": 242000, "feat_shape": [750, 80], "n_tokens": 375, "text_bytes": len(text)}
_WP = "/data/local/tmp/kazeia/models/../voix/voix/amir.wav"
def test_list_voices_status(tmp_path):
s = _store(tmp_path)
adb = _VoiceAdb([("amir", _WP, 1), ("damien",
"/data/local/tmp/kazeia/models/../voix/voix/damien.wav", 1)],
deployed=["damien"])
out = {v["voice_id"]: v for v in vo.list_voices(adb, s, "D1")}
assert out["damien"]["status"] == "deployed"
assert out["amir"]["status"] == "pending"
def test_prepare_archives_and_transcribes(tmp_path):
s = _store(tmp_path)
adb = _VoiceAdb([("amir", _WP, 1)])
res = vo.prepare(adb, s, _FakeBridge(), "D1", "amir", now=NOW)
assert res["transcription"].startswith("bonjour")
# WAV archivé (chiffré) + transcription posée
assert s.voice_wav_bytes("D1", "amir") == b"WAV:" + _WP.encode()
assert s.voice_record("D1", "amir")["transcription"].startswith("bonjour")
def test_enroll_deploy_pushes_and_optional_delete(tmp_path):
s = _store(tmp_path)
adb = _VoiceAdb([("amir", _WP, 1)])
# sans suppression
r = vo.enroll_deploy(adb, s, _FakeBridge(), "D1", "amir", "ma voix",
delete_source=False, now=NOW)
assert r["cvps_bytes"] == 242000 and r["wav_deleted"] is False
assert adb.pushed and adb.pushed[0][1] == \
"/data/local/tmp/kazeia/models/cosyvoice/amir.cvps"
assert s.voice_record("D1", "amir")["deployed_at"] == NOW
assert adb.deleted == []
# avec suppression
r2 = vo.enroll_deploy(adb, s, _FakeBridge(), "D1", "amir", "ma voix",
delete_source=True, now=NOW)
assert r2["wav_deleted"] is True and adb.deleted == [_WP]
assert s.voice_record("D1", "amir")["wav_deleted_at"] == NOW