后端: - db.py SCHEMA 新增 sync_history 表(不可变,每次同步尝试一行) + 索引 - garmin.py: _log_sync_history() 在 sync_data 全部出口记录; trigger 区分 auto(调度器)/manual(同步页开始同步)/quick(设置页立即同步); start_sync 限流拦截分支同样留档; 写入失败只告警不影响同步 - scheduler.py 自动同步传 trigger="auto"; routes 新增 GET /garmin/sync-history 按时间倒序返回(默认 50 条,上限 200) 前端: - api.ts 增加 SyncHistoryItem 类型 + getSyncHistory() - 新页面 /sync-history/ 同步记录: 卡片列表, 状态(成功/失败/被限流)chip 配色, 时间本地化(今天/昨天/X月X日), 触发类型标签, 范围与耗时 - 同步页与设置页同步区块均加入口链接
233 lines
8.9 KiB
Python
233 lines
8.9 KiB
Python
"""
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Background scheduler.
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Keeps the local database close to Garmin without the user having to press
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anything: every interval it pulls the last couple of days for each account
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that has stored OAuth tokens.
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Two things make this fiddly in this deployment, and both are handled here:
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* **Several workers.** gunicorn runs more than one process, and each would
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otherwise start its own timer and sync the same account concurrently. A row
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in `job_locks` is claimed before any work starts, so exactly one worker runs
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a given tick.
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* **Restarts.** The thread dies with its worker. The lock records when the job
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last completed, so a freshly started worker picks the schedule back up
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rather than either skipping an interval or immediately re-running.
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"""
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import datetime
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import os
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import threading
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import time
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from config import DB_TYPE
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from db import execute, query_one, query_all
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from services import analysis as analysis_svc
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from services import garmin as garmin_svc
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from services import settings as settings_svc
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JOB_NAME = "garmin_auto_sync"
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# How often to pull, and how far back. Two days rather than one: the current
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# day is still being written to, and a day can arrive late.
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INTERVAL_SECONDS = int(os.environ.get("AUTO_SYNC_INTERVAL_SECONDS") or 3600)
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SYNC_DAYS = int(os.environ.get("AUTO_SYNC_DAYS") or 2)
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ENABLED = (os.environ.get("AUTO_SYNC") or "true").lower() not in ("0", "false", "no")
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# The loop wakes on this cadence; whether an account is actually due is then
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# decided per account from its own 同步频率 setting. A single global interval
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# would mean one user's choice of 30 minutes silently applied to everyone.
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TICK_SECONDS = 300
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# A claim older than this is treated as abandoned — the worker holding it died
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# mid-run, and without expiry the job would never run again.
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CLAIM_TIMEOUT_SECONDS = 1800
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_started = False
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_lock = threading.Lock()
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def _now():
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return datetime.datetime.utcnow()
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def _iso(dt):
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return dt.isoformat(timespec="seconds")
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def _parse(value):
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if not value:
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return None
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try:
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return datetime.datetime.fromisoformat(str(value).replace(" ", "T"))
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except ValueError:
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return None
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def claim(name=JOB_NAME, interval=INTERVAL_SECONDS):
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"""Take the job if it is due and nobody else holds it.
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Returns True when this process should do the work.
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"""
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holder = f"{os.getpid()}"
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now = _now()
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row = query_one("SELECT * FROM job_locks WHERE name = ?", [name])
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if row:
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last_run = _parse(row.get("last_run_at"))
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if last_run and (now - last_run).total_seconds() < interval:
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return False
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claimed = _parse(row.get("claimed_at"))
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if claimed and (now - claimed).total_seconds() < CLAIM_TIMEOUT_SECONDS:
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return False
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if DB_TYPE == "mariadb":
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sql = ("INSERT INTO job_locks (name, holder, claimed_at) VALUES (?, ?, ?) "
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"ON DUPLICATE KEY UPDATE holder=VALUES(holder), claimed_at=VALUES(claimed_at)")
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else:
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sql = ("INSERT INTO job_locks (name, holder, claimed_at) VALUES (?, ?, ?) "
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"ON CONFLICT(name) DO UPDATE SET holder=excluded.holder, "
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"claimed_at=excluded.claimed_at")
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execute(sql, [name, holder, _iso(now)])
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# Re-read: if another worker claimed between our check and our write, its
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# holder is the one now recorded and we must stand down.
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check = query_one("SELECT holder FROM job_locks WHERE name = ?", [name])
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return bool(check and check.get("holder") == holder)
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def release(name=JOB_NAME, ran=True):
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if ran:
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execute(
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"UPDATE job_locks SET claimed_at = NULL, last_run_at = ? WHERE name = ?",
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[_iso(_now()), name],
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)
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else:
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execute("UPDATE job_locks SET claimed_at = NULL WHERE name = ?", [name])
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def due_at(user_id):
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"""When this account may next be synced automatically, or None if never.
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None means auto-sync is switched off for them; a time in the past means
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they are due now.
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"""
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prefs = settings_svc.get_raw(user_id)
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if not prefs.get("auto_sync"):
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return None
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minutes = prefs.get("auto_sync_minutes") or (INTERVAL_SECONDS // 60)
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last = _parse((garmin_svc.get_sync_status(user_id) or {}).get("lastSyncTime"))
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if not last:
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return _now() - datetime.timedelta(seconds=1)
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return last + datetime.timedelta(minutes=minutes)
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def sync_all_accounts(days=None, respect_schedule=False):
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"""Sync every account that has a stored token. Returns a per-user result.
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`respect_schedule` is what the background loop passes: it skips accounts
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that have auto-sync off or that were synced recently enough. A direct call
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(a manual "sync everything") leaves it False and syncs unconditionally.
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The window is `SYNC_DAYS` unless the caller overrides it. Auto-sync is
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deliberately blind to the user's manual sync range: reading it here is what
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let a half-hourly tick re-pull 730 days and hold the account in a 429 loop,
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and it also made one setting mean two different things in two places.
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Anything the user chooses by hand goes through `/garmin/sync` instead.
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"""
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rows = query_all("SELECT user_id FROM garmin_tokens")
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results = []
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for row in rows:
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uid = row["user_id"]
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try:
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if respect_schedule:
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due = due_at(uid)
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if due is None:
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results.append({"user": uid, "status": "skipped",
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"reason": "auto-sync off"})
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continue
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if due > _now():
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results.append({"user": uid, "status": "skipped",
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"reason": "not due"})
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continue
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d = SYNC_DAYS if days is None else days
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# Never poke Garmin while it is rate-limiting us — that is exactly
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# what keeps the limit alive. Respect the persisted cooldown and sit
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# this tick out.
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blocked = garmin_svc.rate_limited_until(uid)
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if blocked and blocked > _now():
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results.append({
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"user": uid, "status": "skipped", "reason": "rate-limited",
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"retryAfterSeconds": int((blocked - _now()).total_seconds()),
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})
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continue
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out = garmin_svc.sync_data(uid, {}, days=d, trigger="auto")
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results.append({"user": uid, "status": out.get("status"),
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"records": out.get("recordsSynced")})
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# New data invalidates every stored insight, so queue them all at
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# background priority. They may take a while; anything the user
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# opens meanwhile jumps ahead of them.
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if out.get("recordsSynced"):
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try:
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analysis_svc.prefetch_insights(uid)
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except Exception as e: # noqa: BLE001 - never fail a sync over this
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print(f"[scheduler] prefetch failed for {uid}: {e}")
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except Exception as e: # noqa: BLE001 - one account must not stop the rest
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results.append({"user": uid, "status": "error", "error": str(e)[:200]})
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return results
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def _loop():
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while True:
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try:
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if claim(interval=TICK_SECONDS):
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try:
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sync_all_accounts(respect_schedule=True)
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finally:
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release()
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except Exception as e: # noqa: BLE001 - the loop must outlive any single failure
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print(f"[scheduler] tick failed: {e}")
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# Checked more often than the interval so a worker that starts late
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# still picks the job up promptly rather than waiting a full hour.
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time.sleep(TICK_SECONDS)
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def start():
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"""Start the scheduler thread once per process."""
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global _started
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if not ENABLED:
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print("[scheduler] disabled by AUTO_SYNC")
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return
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with _lock:
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if _started:
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return
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_started = True
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threading.Thread(target=_loop, daemon=True, name="auto-sync").start()
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print(f"[scheduler] auto-sync every {INTERVAL_SECONDS}s, {SYNC_DAYS} day(s) back")
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def status(user_id=None):
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"""Scheduler state, and — when a user is named — their own next due time."""
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row = query_one("SELECT * FROM job_locks WHERE name = ?", [JOB_NAME])
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last = _parse(row.get("last_run_at")) if row else None
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out = {
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"enabled": ENABLED,
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"intervalSeconds": INTERVAL_SECONDS,
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"tickSeconds": TICK_SECONDS,
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"days": SYNC_DAYS,
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"lastRunAt": _iso(last) if last else None,
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"nextRunAt": _iso(last + datetime.timedelta(seconds=TICK_SECONDS)) if last else None,
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"running": bool(row and row.get("claimed_at")),
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}
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if user_id:
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prefs = settings_svc.get_raw(user_id)
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due = due_at(user_id)
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out["account"] = {
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"autoSync": bool(prefs.get("auto_sync")),
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"intervalMinutes": prefs.get("auto_sync_minutes"),
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"dueAt": _iso(due) if due else None,
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}
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return out
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