378 lines
16 KiB
Python
378 lines
16 KiB
Python
"""Store local chiffré de Kazeia-central.
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`sqlite3` (stdlib, zéro install) + chiffrement au niveau champ (`crypto.Vault`,
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PyNaCl). Contient l'archive clinique rapatriée (tours de conversation, PII de santé
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chiffrée), le mapping `serial → label patient` (§9), et la piste d'audit (§8).
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Posture :
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- Texte des tours et labels patients → **chiffrés** (colonnes `*_enc BLOB`).
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- Métadonnées (serial, profile_id, session_id, timestamps) → **clair**, pour rester
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requêtables (dashboard, collecte incrémentale, fan-out). Protégées au repos par le
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chiffrement disque OS (§8).
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- Tout accès sensible est journalisé (`audit`).
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Le store s'ouvre verrouillé ; `unlock(password)` dérive la clé et la garde en mémoire
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pour la session. Sans unlock, seules les métadonnées sont lisibles, jamais le contenu.
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Thread-safety : les endpoints FastAPI synchrones tournent dans un threadpool →
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connexion ouverte avec `check_same_thread=False` et accès sérialisé par un `RLock`.
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"""
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from __future__ import annotations
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import hashlib
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import json
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import sqlite3
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import threading
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from pathlib import Path
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from typing import Any, Iterable
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from .crypto import KdfParams, Vault
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_SCHEMA = """
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CREATE TABLE IF NOT EXISTS meta (
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key TEXT PRIMARY KEY,
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value BLOB
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);
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CREATE TABLE IF NOT EXISTS devices (
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serial TEXT PRIMARY KEY,
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label_enc BLOB, -- label patient, chiffré
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created_at INTEGER NOT NULL,
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last_seen_at INTEGER
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);
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CREATE TABLE IF NOT EXISTS turns (
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serial TEXT NOT NULL,
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profile_id TEXT,
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session_id TEXT NOT NULL,
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turn_id TEXT NOT NULL, -- `id` du tour côté provider
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ts INTEGER, -- timestamp du tour (clair → tri/incrémental)
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role TEXT, -- PATIENT | KAZEIA
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text_enc BLOB, -- contenu, chiffré (PII)
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ttft_ms INTEGER,
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total_ms INTEGER,
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voice_used TEXT,
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model_used TEXT,
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archived_at INTEGER NOT NULL,
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PRIMARY KEY (serial, session_id, turn_id) -- dédoublonne les re-pulls
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);
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CREATE INDEX IF NOT EXISTS idx_turns_session ON turns(serial, session_id, ts);
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CREATE INDEX IF NOT EXISTS idx_turns_profile ON turns(serial, profile_id, ts);
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CREATE TABLE IF NOT EXISTS audit (
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id INTEGER PRIMARY KEY AUTOINCREMENT,
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ts INTEGER NOT NULL,
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actor TEXT,
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action TEXT NOT NULL,
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target TEXT,
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detail TEXT -- métadonnée d'audit (pas de PII) → clair
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);
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CREATE TABLE IF NOT EXISTS voices (
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serial TEXT NOT NULL,
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voice_id TEXT NOT NULL,
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transcription_enc BLOB, -- texte parlé (PII possible) → chiffré
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language TEXT,
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source_wav_path TEXT, -- chemin device d'origine
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wav_file TEXT, -- WAV chiffré archivé (relatif au dossier voices/)
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wav_sha256 TEXT, -- intégrité du WAV d'origine
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cvps_bytes INTEGER,
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archived_at INTEGER, -- WAV récupéré + archivé sur le PC
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enrolled_at INTEGER, -- .cvps produit
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deployed_at INTEGER, -- .cvps poussé sur la tablette
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wav_deleted_at INTEGER, -- WAV supprimé de la tablette
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PRIMARY KEY (serial, voice_id)
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);
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"""
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class StoreLocked(Exception):
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"""Opération sur du contenu chiffré alors que le store n'est pas déverrouillé."""
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class Store:
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def __init__(self, path: str | Path, *, kdf_ops: int | None = None,
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kdf_mem: int | None = None) -> None:
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# kdf_ops/kdf_mem : coût Argon2id à l'initialisation (1ᵉʳ unlock). None =
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# défaut prod MODERATE. Les tests les baissent pour la vitesse ; ils sont
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# persistés, donc les ré-ouvertures réutilisent les mêmes.
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self.path = str(path)
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self._kdf_ops = kdf_ops
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self._kdf_mem = kdf_mem
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self._lock = threading.RLock()
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self._db = sqlite3.connect(self.path, check_same_thread=False)
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self._db.row_factory = sqlite3.Row
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self._db.execute("PRAGMA journal_mode=WAL")
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self._db.execute("PRAGMA foreign_keys=ON")
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self._db.executescript(_SCHEMA)
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self._db.commit()
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self._vault: Vault | None = None
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def close(self) -> None:
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with self._lock:
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self._db.close()
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def __enter__(self) -> "Store":
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return self
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def __exit__(self, *exc: object) -> None:
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self.close()
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# ---- meta -------------------------------------------------------------
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def _get_meta(self, key: str) -> bytes | None:
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row = self._db.execute("SELECT value FROM meta WHERE key=?", (key,)).fetchone()
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return row["value"] if row else None
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def _set_meta(self, key: str, value: bytes) -> None:
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self._db.execute(
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"INSERT INTO meta(key, value) VALUES(?, ?) "
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"ON CONFLICT(key) DO UPDATE SET value=excluded.value",
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(key, value),
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)
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self._db.commit()
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@property
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def is_initialized(self) -> bool:
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with self._lock:
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return self._get_meta("kdf_salt") is not None
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@property
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def is_unlocked(self) -> bool:
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return self._vault is not None
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# ---- déverrouillage ---------------------------------------------------
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def unlock(self, password: str) -> None:
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"""Initialise le coffre au 1ᵉʳ appel, sinon valide le mot de passe.
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Lève `crypto.BadPassword` si incorrect."""
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with self._lock:
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if not self._get_meta("kdf_salt"):
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from .crypto import _DEFAULT_MEM, _DEFAULT_OPS
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vault, params, verifier = Vault.setup(
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password,
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ops=self._kdf_ops if self._kdf_ops is not None else _DEFAULT_OPS,
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mem=self._kdf_mem if self._kdf_mem is not None else _DEFAULT_MEM,
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)
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self._set_meta("kdf_salt", params.salt)
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self._set_meta("kdf_ops", str(params.ops).encode())
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self._set_meta("kdf_mem", str(params.mem).encode())
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self._set_meta("verifier", verifier)
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self._vault = vault
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return
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params = KdfParams(
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salt=self._get_meta("kdf_salt"),
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ops=int(self._get_meta("kdf_ops")),
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mem=int(self._get_meta("kdf_mem")),
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)
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self._vault = Vault.unlock(password, params, self._get_meta("verifier"))
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def lock(self) -> None:
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"""Oublie la clé en mémoire (re-verrouille sans fermer la base)."""
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self._vault = None
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def _require_vault(self) -> Vault:
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if self._vault is None:
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raise StoreLocked("store verrouillé : appeler unlock(password) d'abord")
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return self._vault
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# ---- mapping serial → label patient (§9) ------------------------------
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def set_device_label(self, serial: str, label: str, *, now: int) -> None:
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with self._lock:
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v = self._require_vault()
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self._db.execute(
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"INSERT INTO devices(serial, label_enc, created_at, last_seen_at) "
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"VALUES(?,?,?,?) ON CONFLICT(serial) DO UPDATE SET "
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"label_enc=excluded.label_enc, last_seen_at=excluded.last_seen_at",
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(serial, v.seal(label), now, now),
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)
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self._db.commit()
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def device_label(self, serial: str) -> str | None:
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with self._lock:
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v = self._require_vault()
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row = self._db.execute(
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"SELECT label_enc FROM devices WHERE serial=?", (serial,)
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).fetchone()
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return v.open(row["label_enc"]) if row else None
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def device_labels(self) -> dict[str, str | None]:
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"""Tous les labels {serial: label} — pour enrichir la liste du parc."""
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with self._lock:
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v = self._require_vault()
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return {r["serial"]: v.open(r["label_enc"])
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for r in self._db.execute("SELECT serial, label_enc FROM devices")}
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def devices(self) -> list[dict[str, Any]]:
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with self._lock:
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v = self._require_vault()
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return [{
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"serial": r["serial"],
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"label": v.open(r["label_enc"]),
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"created_at": r["created_at"],
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"last_seen_at": r["last_seen_at"],
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} for r in self._db.execute("SELECT * FROM devices ORDER BY created_at")]
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# ---- archive des tours (collecte) -------------------------------------
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def archive_turns(self, serial: str, turns: Iterable[dict[str, Any]], *, now: int) -> int:
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"""Insère/ignore des tours (idempotent par (serial, session_id, turn_id)).
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Chaque `text` est chiffré. Renvoie le nombre de NOUVEAUX tours archivés."""
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with self._lock:
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v = self._require_vault()
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before = self._db.total_changes
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self._db.executemany(
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"INSERT OR IGNORE INTO turns(serial, profile_id, session_id, turn_id, ts, "
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"role, text_enc, ttft_ms, total_ms, voice_used, model_used, archived_at) "
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"VALUES(:serial,:profile_id,:session_id,:turn_id,:ts,:role,:text_enc,"
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":ttft_ms,:total_ms,:voice_used,:model_used,:archived_at)",
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[{
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"serial": serial,
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"profile_id": t.get("profile_id"),
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"session_id": t["session_id"],
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"turn_id": str(t.get("id", t.get("turn_id"))),
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"ts": t.get("timestamp", t.get("ts")),
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"role": t.get("role"),
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"text_enc": v.seal(t.get("text")),
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"ttft_ms": t.get("ttft_ms"),
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"total_ms": t.get("total_ms"),
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"voice_used": t.get("voice_used"),
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"model_used": t.get("model_used"),
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"archived_at": now,
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} for t in turns],
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)
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self._db.commit()
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return self._db.total_changes - before
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def session_turns(self, serial: str, session_id: str) -> list[dict[str, Any]]:
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with self._lock:
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v = self._require_vault()
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rows = self._db.execute(
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"SELECT * FROM turns WHERE serial=? AND session_id=? ORDER BY ts, turn_id",
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(serial, session_id),
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).fetchall()
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out = []
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for r in rows:
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d = dict(r)
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d["text"] = v.open(d.pop("text_enc"))
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out.append(d)
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return out
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def last_turn_ts(self, serial: str, session_id: str | None = None) -> int | None:
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"""Dernier timestamp archivé → borne `since` pour la collecte incrémentale
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(autonomie). Pas besoin du vault (métadonnée en clair)."""
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with self._lock:
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if session_id is None:
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row = self._db.execute(
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"SELECT MAX(ts) m FROM turns WHERE serial=?", (serial,)
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).fetchone()
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else:
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row = self._db.execute(
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"SELECT MAX(ts) m FROM turns WHERE serial=? AND session_id=?",
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(serial, session_id),
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).fetchone()
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return row["m"] if row else None
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# ---- archive voix (enrôlement, §6 VOICE_ENROLLMENT_SPEC) --------------
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def _voices_dir(self) -> Path:
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d = Path(self.path).parent / "voices"
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d.mkdir(parents=True, exist_ok=True)
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return d
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def _voice_upsert(self, serial: str, voice_id: str, **cols: Any) -> None:
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"""Upsert partiel d'une ligne voix (colonnes données seulement)."""
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keys = list(cols)
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sets = ", ".join(f"{k}=excluded.{k}" for k in keys)
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self._db.execute(
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f"INSERT INTO voices(serial, voice_id, {', '.join(keys)}) "
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f"VALUES(?, ?, {', '.join('?' for _ in keys)}) "
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f"ON CONFLICT(serial, voice_id) DO UPDATE SET {sets}",
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(serial, voice_id, *[cols[k] for k in keys]),
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)
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self._db.commit()
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def archive_voice_wav(self, serial: str, voice_id: str, wav_bytes: bytes, *,
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source_wav_path: str | None, now: int) -> str:
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"""Chiffre + archive le WAV d'origine sur le PC (le « garder sur Kazeia-central »
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une fois supprimé de la tablette). Renvoie le chemin du fichier chiffré."""
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v = self._require_vault()
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sha = hashlib.sha256(wav_bytes).hexdigest()
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dest = self._voices_dir() / serial / f"{voice_id}.wav.enc"
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dest.parent.mkdir(parents=True, exist_ok=True)
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dest.write_bytes(v.seal_bytes(wav_bytes))
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with self._lock:
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self._voice_upsert(serial, voice_id, source_wav_path=source_wav_path,
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wav_file=str(dest.relative_to(self._voices_dir())),
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wav_sha256=sha, archived_at=now)
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return str(dest)
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def voice_wav_bytes(self, serial: str, voice_id: str) -> bytes | None:
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"""Relit le WAV archivé déchiffré (pour ré-enrôlement)."""
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v = self._require_vault()
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with self._lock:
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row = self._db.execute(
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"SELECT wav_file FROM voices WHERE serial=? AND voice_id=?",
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(serial, voice_id)).fetchone()
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if not row or not row["wav_file"]:
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return None
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return v.open_bytes((self._voices_dir() / row["wav_file"]).read_bytes())
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def set_voice_transcription(self, serial: str, voice_id: str, text: str,
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language: str | None, *, now: int) -> None:
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v = self._require_vault()
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with self._lock:
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self._voice_upsert(serial, voice_id, transcription_enc=v.seal(text),
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language=language)
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def mark_voice_enrolled(self, serial: str, voice_id: str, cvps_bytes: int, *, now: int) -> None:
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with self._lock:
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self._voice_upsert(serial, voice_id, cvps_bytes=cvps_bytes, enrolled_at=now)
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def mark_voice_deployed(self, serial: str, voice_id: str, *, now: int) -> None:
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with self._lock:
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self._voice_upsert(serial, voice_id, deployed_at=now)
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def mark_voice_wav_deleted(self, serial: str, voice_id: str, *, now: int) -> None:
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with self._lock:
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self._voice_upsert(serial, voice_id, wav_deleted_at=now)
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def voice_record(self, serial: str, voice_id: str) -> dict[str, Any] | None:
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v = self._require_vault()
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with self._lock:
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row = self._db.execute(
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"SELECT * FROM voices WHERE serial=? AND voice_id=?",
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(serial, voice_id)).fetchone()
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if not row:
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return None
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d = dict(row)
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d["transcription"] = v.open(d.pop("transcription_enc"))
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d["has_wav"] = bool(d.get("wav_file"))
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return d
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def voices(self, serial: str | None = None) -> list[dict[str, Any]]:
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v = self._require_vault()
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with self._lock:
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q = "SELECT * FROM voices"
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args: tuple = ()
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if serial is not None:
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q += " WHERE serial=?"
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args = (serial,)
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rows = self._db.execute(q + " ORDER BY serial, voice_id", args).fetchall()
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out = []
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for r in rows:
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d = dict(r)
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d["transcription"] = v.open(d.pop("transcription_enc"))
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d["has_wav"] = bool(d.get("wav_file"))
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out.append(d)
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return out
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# ---- audit (§8) -------------------------------------------------------
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def audit(self, action: str, *, actor: str | None = None, target: str | None = None,
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detail: dict[str, Any] | None = None, now: int) -> None:
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with self._lock:
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self._db.execute(
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"INSERT INTO audit(ts, actor, action, target, detail) VALUES(?,?,?,?,?)",
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(now, actor, action, target, json.dumps(detail) if detail else None),
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)
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self._db.commit()
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def audit_log(self, limit: int = 200) -> list[dict[str, Any]]:
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with self._lock:
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return [dict(r) for r in self._db.execute(
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"SELECT * FROM audit ORDER BY id DESC LIMIT ?", (limit,)
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)]
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