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The -patchN scheme (e.g. 1.9.2-patch3) parses as a semver prerelease, so decide()'s superseded-prerelease guard refused to offer a newer stable core (1.9.3) to the existing fleet — stranding every 1.9.2-patchN device on OTA (Force Update didn't help; the re-check re-returned superseded-prerelease). isReleased() now counts -patchN as a shipped release, so those devices get offered 1.9.3 via normal OTA, while GENUINE prereleases (-beta/-rc/-alpha) keep prerelease semantics and newer cores are never downgraded. 6 new tests + 14 existing OTA tests green (388/388 suite). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
140 lines
8.4 KiB
JavaScript
140 lines
8.4 KiB
JavaScript
// #144 — OTA update-check circuit-breaker + phantom-version guard.
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//
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// The /api/update/check handler offered the update whenever client !== latest (raw
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// string inequality, not semver). A device that can't APPLY the update (old/broken
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// OTA client like 1.7.12, signing mismatch, Fire OS) keeps reporting the same old
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// version and is told update_available=true on every poll. A fast poll loop (10-30s)
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// then saturates the event loop (prod loop-lag 49s).
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//
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// Two independent axes (kept separate on purpose):
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//
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// 1. RATE breaker (primary, immediate). Healthy devices poll ~every 12 min, so a key
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// checking MORE than THRESHOLD times within WINDOW (default >3 / 60s) is by
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// definition looping -> throttle update_available for that key with exponential
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// backoff. Catches the fast flood within seconds. A normally-polling device never
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// approaches this rate, so rollout/straggler updates are inherently safe — there
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// is deliberately NO "tolerate the flood for N minutes" grace; slow == safe.
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//
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// 2. PHANTOM guard (immediate). An unrecognized version, or a prerelease of an OLDER
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// core (a superseded old-minor beta — e.g. 1.9.1-beta4 when latest is 1.9.2-beta3),
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// gets "no offer" on the first check. A RECENT real older version (e.g. beta3 when
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// latest is beta4, or stable 1.7.12) is legitimately offerable and is NOT phantom.
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//
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// KEYING: keyed on device_id when the client sends one (beta4+ clients -> precise
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// per-device throttling), falling back to the reported VERSION when absent (legacy
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// clients send only ?version=, and the site is behind NAT so IP is useless). So every
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// device is covered: new clients per-device, stuck legacy clients per-version.
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//
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// Constants are env-tunable for ops + tests.
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const WINDOW_MS = parseInt(process.env.OTA_BREAKER_WINDOW_MS) || 60_000; // rate window
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const THRESHOLD = parseInt(process.env.OTA_BREAKER_THRESHOLD) || 3; // checks/window before tripping (>THRESHOLD trips)
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const COOLDOWNS_MS = (process.env.OTA_BREAKER_COOLDOWNS_MS
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? process.env.OTA_BREAKER_COOLDOWNS_MS.split(',').map(s => parseInt(s, 10))
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: [30_000, 120_000, 480_000, 1_800_000]); // 30s -> 2m -> 8m -> cap 30m
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const IDLE_RESET_MS = parseInt(process.env.OTA_BREAKER_IDLE_RESET_MS) || 60 * 60 * 1000;
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const state = new Map(); // key -> { hits:number[], blockedUntil, level, lastSeen }
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const loggedBad = new Set(); // log unrecognized/superseded versions once
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// #146 observability — rate-backoff throughput (total + rolling lastWindow).
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const { rollingCounter, bump, read } = require('./rolling-counter');
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const rateBackoffCtr = rollingCounter();
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// --- minimal semver-ish parse/compare (no dependency) ---
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function parseVer(v) {
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if (typeof v !== 'string') return null;
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const m = /^(\d+)\.(\d+)\.(\d+)(?:-(.+))?$/.exec(v.trim());
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if (!m) return null;
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return { core: [+m[1], +m[2], +m[3]], pre: m[4] || null };
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}
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function coreCmp(a, b) { for (let i = 0; i < 3; i++) if (a.core[i] !== b.core[i]) return a.core[i] < b.core[i] ? -1 : 1; return 0; }
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function cmpParsed(a, b) {
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const c = coreCmp(a, b);
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if (c !== 0) return c;
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if (a.pre === b.pre) return 0;
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if (a.pre === null) return 1; // release outranks a prerelease of the same core
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if (b.pre === null) return -1;
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// lexical prerelease compare — fine for beta1..beta9 (cores decide everything else).
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return a.pre < b.pre ? -1 : (a.pre > b.pre ? 1 : 0);
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}
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function cmp(a, b) { const pa = parseVer(a), pb = parseVer(b); return (!pa || !pb) ? null : cmpParsed(pa, pb); }
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// A '-patchN' suffix (e.g. 1.9.2-patch3) was the LEGACY release scheme — a shipped PRODUCTION patch,
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// not a prerelease. Semver parses it into `pre`, but for OTA it must count as RELEASED so the
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// superseded-prerelease guard below doesn't strand the old fleet: a 1.9.2-patchN device must still be
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// offered a newer stable core (1.9.3). Genuine prereleases (-beta/-rc/-alpha) keep prerelease
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// semantics. (Clean semver going forward emits no -patchN, so this only matters for the transition.)
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function isReleased(p) { return p.pre === null || /^patch\d+$/i.test(p.pre); }
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// decide(clientVersion, latestVersion, deviceId?, now?) ->
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// { update_available, reason, retry_after_seconds?, log? }
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function decide(clientVersion, latestVersion, deviceId = null, now = Date.now()) {
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// ---- PHANTOM / unrecognized guard (immediate, version-based, no rate state) ----
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if (!clientVersion) return { update_available: false, reason: 'no-version' };
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const pc = parseVer(clientVersion), pl = parseVer(latestVersion);
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if (!pc || !pl) return { update_available: false, reason: 'unrecognized-version', log: logOnce(clientVersion, `[ota] unrecognized client version '${clientVersion}' — no offer (latest=${latestVersion})`) };
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const full = cmpParsed(pc, pl);
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if (full === 0) return { update_available: false, reason: 'up-to-date' };
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if (full > 0) return { update_available: false, reason: 'client-newer' }; // never offer a downgrade
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if (!isReleased(pc) && coreCmp(pc, pl) < 0) { // GENUINE superseded old-core prerelease (e.g. 1.9.1-beta4) — a -patchN release is NOT one, so it still gets offered
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return { update_available: false, reason: 'superseded-prerelease', log: logOnce(clientVersion, `[ota] superseded prerelease '${clientVersion}' (older core than latest=${latestVersion}) — no offer`) };
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}
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// ---- offerable (recent real older version) -> RATE breaker, keyed per device / per version ----
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const key = deviceId ? 'd:' + deviceId : 'v:' + clientVersion;
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let b = state.get(key);
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if (!b) { b = { hits: [], blockedUntil: 0, level: 0, lastSeen: now }; state.set(key, b); }
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if (now - b.lastSeen > IDLE_RESET_MS) { b.hits = []; b.blockedUntil = 0; b.level = 0; } // long-quiet -> fresh
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b.lastSeen = now;
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if (now < b.blockedUntil) {
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bump(rateBackoffCtr, now);
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return { update_available: false, reason: 'rate-backoff', retry_after_seconds: Math.ceil((b.blockedUntil - now) / 1000) };
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}
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if (b.blockedUntil !== 0) b.blockedUntil = 0; // cooldown elapsed -> probe window
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b.hits = b.hits.filter(t => now - t < WINDOW_MS);
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b.hits.push(now);
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if (b.hits.length > THRESHOLD) { // looping faster than a healthy device ever would
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const cd = COOLDOWNS_MS[Math.min(b.level, COOLDOWNS_MS.length - 1)];
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b.blockedUntil = now + cd;
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// #146 cosmetic: cap the level counter so the log doesn't read "level 32". The
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// backoff is already capped (Math.min above); the counter just shouldn't run away
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// past the point where it stops affecting the cooldown.
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b.level = Math.min(b.level + 1, COOLDOWNS_MS.length);
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b.hits = []; // require a fresh burst to re-trip after cooldown
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bump(rateBackoffCtr, now);
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return { update_available: false, reason: 'rate-backoff', retry_after_seconds: Math.ceil(cd / 1000),
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log: `[ota] breaker tripped key=${key} (>${THRESHOLD} checks/${Math.round(WINDOW_MS / 1000)}s, looping) -> backoff ${Math.round(cd / 1000)}s [level ${b.level}]` };
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}
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return { update_available: true, reason: 'offer' };
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}
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function logOnce(version, msg) { if (loggedBad.has(version)) return undefined; loggedBad.add(version); return msg; }
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// #144: actively EVICT idle buckets so the keyed state can't grow unbounded over time
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// (churned device_ids, varied versions). reset-on-access alone never deletes; this does.
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function sweep(now = Date.now()) {
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let n = 0;
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for (const [k, b] of state) if (now - b.lastSeen > IDLE_RESET_MS) { state.delete(k); n++; }
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if (n > 0) console.log(`[ota] breaker swept ${n} idle bucket(s) (idle > ${Math.round(IDLE_RESET_MS / 60000)}m); ${state.size} remain`);
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return n;
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}
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let sweepTimer = null;
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function startSweep() {
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if (sweepTimer) return sweepTimer;
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sweepTimer = setInterval(() => sweep(), IDLE_RESET_MS);
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if (sweepTimer.unref) sweepTimer.unref(); // don't keep the process alive on this timer
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return sweepTimer;
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}
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function reset() { state.clear(); loggedBad.clear(); Object.assign(rateBackoffCtr, rollingCounter()); }
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function _size() { return state.size; }
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// #146 observability — how many update checks the breaker is rate-backing-off (total +
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// last completed window). A device=none 1.8.x flood shows here as rateBackoffLastWindow.
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function stats(now = Date.now()) {
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const rb = read(rateBackoffCtr, now);
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return { rateBackoffTotal: rb.total, rateBackoffLastWindow: rb.lastWindow };
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}
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module.exports = { decide, reset, sweep, startSweep, cmp, parseVer, _size, stats, WINDOW_MS, THRESHOLD };
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