Reported against 2.2.1 by someone reading the source. Every finding held. **Sign-in had no ceiling.** Failures were logged with the caller's address and nothing more. Two counters now — one per address, one per account — because the two attacks look different: one source working through many accounts is caught by the first, many sources working on one account by the second, and behind a proxy only the second still means anything. The count is kept in the process that serves the request. PLANKA needs no Redis and the stock deployment is one container; run several and each keeps its own count, which multiplies the ceiling by their number. That trade is written where the limits are configured. **The second factor could be guessed at leisure.** Six digits, and a pending token that stayed valid for its full ten minutes however many codes were wrong. Wrong codes are now counted on the session row — in the database, so the count survives a restart and holds across every process — and when the budget is spent the session is destroyed. After that even the right code is refused and the login starts over from the password. **Avatars, background images and favicons** checked the token's signature and nothing else, so a revoked session, a deactivated account or a changed password all kept working there for as long as the signature lasted, which is a year by default. The five checks the API makes now live in one helper that both use, rather than the shortened copy that had drifted from it. **A link attachment's favicon** was fetched from wherever the URL pointed. Storing a link is harmless — it is a string the user typed — but fetching its icon is a request the server makes to an address the user chose, and whether an icon came back reported on what is reachable from inside the network. Server-side fetches now refuse private, loopback and link-local addresses, `169.254.169.254` among them. The attachment is still created: linking to an internal wiki is a legitimate thing to do, and it was the server's own request that had to stop. **The signing key.** Our own compose file ships `notsecretkey`, and it is printed in the documentation — so on any instance that copied it, anyone can sign a token for any account. PLANKA now says so on every start, and keeps saying it, along with a key that is missing or shorter than 32 characters. The placeholder carries the warning inline, where it is copied from. **The backup script** wrote password hashes, live sessions, TOTP secrets and SMTP credentials to an unencrypted archive. `BACKUP_PASSPHRASE` now encrypts it, and without one the script says what it just put on disk. It also says what it is — an example for the stock compose stack, not a backup concept — and names the window between the database dump and the file copy, which no ordering closes.
74 lines
1.9 KiB
JavaScript
74 lines
1.9 KiB
JavaScript
/*!
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* Copyright (c) 2026 PLANKA Software GmbH
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* Licensed under the Fair Use License: https://github.com/plankanban/planka/blob/master/LICENSE.md
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*/
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// A fixed-window counter, held in the process that serves the request.
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//
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// PLANKA needs no Redis and the stock deployment is a single container, so the
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// count lives in memory rather than in shared storage. Run several processes
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// and each keeps its own, which multiplies the effective ceiling by their
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// number — enough to blunt a script, not a substitute for a limiter in front of
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// the app. That trade is stated where the limits are configured.
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//
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// The verdict comes back in the return value rather than as an exit: an exit
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// reaches an `await` as an Error wrapping its name, which is easy to catch
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// wrongly and easy to catch wrongly in silence.
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const buckets = new Map();
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// Beyond this many live keys, sweep what has expired before adding more. An
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// attacker can mint keys freely — one per made-up account name — so the map
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// must not be allowed to grow with them.
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const SWEEP_THRESHOLD = 10000;
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const sweep = (now) => {
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buckets.forEach((bucket, key) => {
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if (bucket.expiresAt <= now) {
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buckets.delete(key);
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}
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});
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};
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module.exports = {
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inputs: {
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key: {
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type: 'string',
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required: true,
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},
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windowSeconds: {
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type: 'number',
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required: true,
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},
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max: {
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type: 'number',
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required: true,
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},
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},
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sync: true,
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fn(inputs) {
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const now = Date.now();
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if (buckets.size > SWEEP_THRESHOLD) {
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sweep(now);
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}
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const bucket = buckets.get(inputs.key);
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if (!bucket || bucket.expiresAt <= now) {
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buckets.set(inputs.key, {
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count: 1,
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expiresAt: now + inputs.windowSeconds * 1000,
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});
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return { count: 1, isExceeded: inputs.max < 1 };
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}
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bucket.count += 1;
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return { count: bucket.count, isExceeded: bucket.count > inputs.max };
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},
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};
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