Files
rakuten-api/app/gateway/db.py
T
q792602257andClaude Opus 4.6 07107094a7 实现下单任务网关与本地 worker
按 docs/order-gateway.md 落地:第三个部署单元 app.gateway(:31109)承担任务队列
+ 状态镜像;本地 worker 在 app.trading.worker 内,按 RAKUTEN_ORDER_GATEWAY_URL
决定是否启动。规格 §5 最关键约束已守:租约过期绝不自动重投,恢复只能 reclaim,
worker 收到 lease_count>1 时先核对站点订单。

站点交互(加购/下单/付款/订单列表反查)按规格 §10 留接口缝,site_interact.py
全部 NotImplementedError,verify.py 恒返回 unknown——等真实账号实测后再填,
不写猜测的提交逻辑。

310 个测试全绿,覆盖规格 §9 验收清单 12 条;架构测试守住三方互不 import。

Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
2026-07-27 16:25:20 +08:00

357 lines
12 KiB
Python

"""网关 SQLite 访问层:三张表 + 原生 SQL,无业务逻辑
业务规则(状态机、并发度、幂等)放在 `task_queue.py`,本模块只负责持久化与查询,
返回 dataclass 行。所有时间戳以 ISO8601 UTC 字符串存储(以 `Z` 结尾),便于
跨进程对账;时间戳运算在 task_queue 层完成。
写操作由 task_queue 的 asyncio.Lock 串行化(详见该模块),本层不重复加锁,
因此**调用方必须确保写操作在外层锁的保护下进行**。
"""
from __future__ import annotations
import json
import logging
from dataclasses import dataclass
from pathlib import Path
from typing import Any
import aiosqlite
logger = logging.getLogger(__name__)
SCHEMA = """
CREATE TABLE IF NOT EXISTS tasks (
task_id TEXT PRIMARY KEY,
site TEXT NOT NULL,
intent_json TEXT NOT NULL,
status TEXT NOT NULL,
lease_owner TEXT,
lease_expires_at TEXT,
lease_count INTEGER NOT NULL DEFAULT 0,
created_at TEXT NOT NULL,
updated_at TEXT NOT NULL
);
CREATE INDEX IF NOT EXISTS idx_tasks_pending ON tasks(status, created_at);
CREATE TABLE IF NOT EXISTS task_reports (
task_id TEXT NOT NULL,
state TEXT NOT NULL,
payable_yen INTEGER,
pay_deadline TEXT,
site_order_id TEXT,
evidence_ref TEXT,
detail TEXT,
reported_at TEXT NOT NULL,
PRIMARY KEY (task_id, state)
);
CREATE TABLE IF NOT EXISTS workers (
worker_id TEXT PRIMARY KEY,
last_seen_at TEXT NOT NULL
);
"""
@dataclass(slots=True)
class TaskRow:
"""tasks 表一行的强类型视图"""
task_id: str
site: str
intent_json: str
status: str
lease_owner: str | None
lease_expires_at: str | None
lease_count: int
created_at: str
updated_at: str
@property
def intent(self) -> dict[str, Any]:
return json.loads(self.intent_json)
@dataclass(slots=True)
class ReportRow:
"""task_reports 表一行的强类型视图"""
task_id: str
state: str
payable_yen: int | None
pay_deadline: str | None
site_order_id: str | None
evidence_ref: str | None
detail: str
reported_at: str
@dataclass(slots=True)
class WorkerRow:
"""workers 表一行的强类型视图"""
worker_id: str
last_seen_at: str
def _row_to_task(row: aiosqlite.Row) -> TaskRow:
return TaskRow(
task_id=row["task_id"],
site=row["site"],
intent_json=row["intent_json"],
status=row["status"],
lease_owner=row["lease_owner"],
lease_expires_at=row["lease_expires_at"],
lease_count=row["lease_count"],
created_at=row["created_at"],
updated_at=row["updated_at"],
)
def _row_to_report(row: aiosqlite.Row) -> ReportRow:
return ReportRow(
task_id=row["task_id"],
state=row["state"],
payable_yen=row["payable_yen"],
pay_deadline=row["pay_deadline"],
site_order_id=row["site_order_id"],
evidence_ref=row["evidence_ref"],
detail=row["detail"],
reported_at=row["reported_at"],
)
def _row_to_worker(row: aiosqlite.Row) -> WorkerRow:
return WorkerRow(worker_id=row["worker_id"], last_seen_at=row["last_seen_at"])
class GatewayDB:
"""网关 SQLite 访问对象
单连接 + aiosqlite 的内部线程。生命周期由 `GatewayContainer` 管理:
`start()` 在 lifespan 启动时调用,`close()` 在关闭时调用。
"""
def __init__(self, db_path: Path):
self._db_path = db_path
self._conn: aiosqlite.Connection | None = None
async def start(self) -> None:
"""打开连接并初始化 schema(IF NOT EXISTS,可重复执行)"""
self._db_path.parent.mkdir(parents=True, exist_ok=True)
self._conn = await aiosqlite.connect(str(self._db_path))
self._conn.row_factory = aiosqlite.Row
await self._conn.executescript(SCHEMA)
await self._conn.commit()
logger.info("网关 DB 已就绪:%s", self._db_path)
async def close(self) -> None:
if self._conn is not None:
await self._conn.close()
self._conn = None
@property
def conn(self) -> aiosqlite.Connection:
if self._conn is None:
raise RuntimeError("GatewayDB 未启动:先调用 start()")
return self._conn
# ---- tasks ----
async def get_task(self, task_id: str) -> TaskRow | None:
async with self.conn.execute("SELECT * FROM tasks WHERE task_id = ?", (task_id,)) as cur:
row = await cur.fetchone()
return _row_to_task(row) if row else None
async def insert_task(self, row: TaskRow) -> bool:
"""插入新任务。返回 True=新建,False=task_id 已存在(幂等命中)"""
try:
await self.conn.execute(
"INSERT INTO tasks (task_id, site, intent_json, status, "
"lease_owner, lease_expires_at, lease_count, created_at, updated_at) "
"VALUES (?, ?, ?, ?, NULL, NULL, 0, ?, ?)",
(
row.task_id,
row.site,
row.intent_json,
row.status,
row.created_at,
row.updated_at,
),
)
await self.conn.commit()
return True
except aiosqlite.IntegrityError:
return False
async def update_task(
self,
task_id: str,
*,
status: str | None = None,
lease_owner: str | None = None,
lease_expires_at: str | None = None,
lease_count: int | None = None,
updated_at: str | None = None,
clear_lease: bool = False,
) -> None:
"""更新任务字段。clear_lease=True 时把 lease_owner/expires_at 置 NULL"""
sets: list[str] = []
params: list[Any] = []
if status is not None:
sets.append("status = ?")
params.append(status)
if lease_owner is not None:
sets.append("lease_owner = ?")
params.append(lease_owner)
if lease_expires_at is not None:
sets.append("lease_expires_at = ?")
params.append(lease_expires_at)
if lease_count is not None:
sets.append("lease_count = ?")
params.append(lease_count)
if updated_at is not None:
sets.append("updated_at = ?")
params.append(updated_at)
if clear_lease:
sets.append("lease_owner = NULL")
sets.append("lease_expires_at = NULL")
if not sets:
return
params.append(task_id)
await self.conn.execute(
f"UPDATE tasks SET {', '.join(sets)} WHERE task_id = ?",
params,
)
await self.conn.commit()
async def list_tasks(
self,
*,
status: str | None = None,
site: str | None = None,
limit: int = 50,
offset: int = 0,
) -> tuple[list[TaskRow], int]:
"""分页列出任务,按 created_at 升序"""
where = []
params: list[Any] = []
if status:
where.append("status = ?")
params.append(status)
if site:
where.append("site = ?")
params.append(site)
clause = f"WHERE {' AND '.join(where)}" if where else ""
async with self.conn.execute(
f"SELECT COUNT(*) FROM tasks {clause}",
params,
) as cur:
total = (await cur.fetchone())[0]
sql = f"SELECT * FROM tasks {clause} ORDER BY created_at ASC LIMIT ? OFFSET ?"
async with self.conn.execute(sql, [*params, limit, offset]) as cur:
rows = await cur.fetchall()
return [_row_to_task(r) for r in rows], total
async def list_tasks_in_statuses(self, statuses: tuple[str, ...]) -> list[TaskRow]:
"""取处于给定状态集合的全部任务(不分页,用于健康检查的 active 列表)"""
if not statuses:
return []
placeholders = ", ".join("?" for _ in statuses)
sql = (
f"SELECT * FROM tasks WHERE status IN ({placeholders}) "
"ORDER BY created_at ASC"
)
async with self.conn.execute(sql, statuses) as cur:
rows = await cur.fetchall()
return [_row_to_task(r) for r in rows]
async def pick_queued_task(self, site: str | None) -> TaskRow | None:
"""取最早的 queued 任务,可选按站点过滤"""
if site:
sql = "SELECT * FROM tasks WHERE status = ? AND site = ? ORDER BY created_at ASC LIMIT 1"
params: tuple[Any, ...] = ("queued", site)
else:
sql = "SELECT * FROM tasks WHERE status = ? ORDER BY created_at ASC LIMIT 1"
params = ("queued",)
async with self.conn.execute(sql, params) as cur:
row = await cur.fetchone()
return _row_to_task(row) if row else None
# ---- task_reports ----
async def upsert_report(self, row: ReportRow) -> bool:
"""写入一条 report。同一 (task_id, state) 已存在则覆盖(幂等)。
返回 True=本次新写入,False=覆盖了既有行。
先 SELECT 再 INSERT OR REPLACE,避免依赖 SQLite rowcount——后者在
INSERT OR REPLACE 上即使命中既有行也报 1,无法区分。
"""
async with self.conn.execute(
"SELECT 1 FROM task_reports WHERE task_id = ? AND state = ?",
(row.task_id, row.state),
) as cur:
existed = await cur.fetchone() is not None
await self.conn.execute(
"INSERT OR REPLACE INTO task_reports "
"(task_id, state, payable_yen, pay_deadline, site_order_id, "
"evidence_ref, detail, reported_at) VALUES (?, ?, ?, ?, ?, ?, ?, ?)",
(
row.task_id,
row.state,
row.payable_yen,
row.pay_deadline,
row.site_order_id,
row.evidence_ref,
row.detail,
row.reported_at,
),
)
await self.conn.commit()
return not existed
async def get_reports(self, task_id: str) -> list[ReportRow]:
async with self.conn.execute(
"SELECT * FROM task_reports WHERE task_id = ? ORDER BY reported_at ASC",
(task_id,),
) as cur:
rows = await cur.fetchall()
return [_row_to_report(r) for r in rows]
async def get_latest_state(self, task_id: str) -> str | None:
"""取该任务最近一次 report 的 state,无 report 返回 None"""
async with self.conn.execute(
"SELECT state FROM task_reports WHERE task_id = ? "
"ORDER BY reported_at DESC LIMIT 1",
(task_id,),
) as cur:
row = await cur.fetchone()
return row["state"] if row else None
# ---- workers ----
async def upsert_worker(self, worker_id: str, last_seen_at: str) -> None:
await self.conn.execute(
"INSERT INTO workers (worker_id, last_seen_at) VALUES (?, ?) "
"ON CONFLICT(worker_id) DO UPDATE SET last_seen_at = excluded.last_seen_at",
(worker_id, last_seen_at),
)
await self.conn.commit()
async def list_workers(self) -> list[WorkerRow]:
async with self.conn.execute("SELECT * FROM workers ORDER BY last_seen_at DESC") as cur:
rows = await cur.fetchall()
return [_row_to_worker(r) for r in rows]
# ---- 计数 ----
async def count_by_status(self, status: str) -> int:
async with self.conn.execute(
"SELECT COUNT(*) FROM tasks WHERE status = ?",
(status,),
) as cur:
return (await cur.fetchone())[0]