GHSA-x937-hj6v-793p

Suggest an improvement
Source
https://github.com/advisories/GHSA-x937-hj6v-793p
Import Source
https://github.com/github/advisory-database/blob/main/advisories/github-reviewed/2026/10/GHSA-x937-hj6v-793p/GHSA-x937-hj6v-793p.json
JSON Data
https://api.osv.dev/v1/vulns/GHSA-x937-hj6v-793p
Aliases
Published
2026-10-08T22:10:35Z
Modified
2026-10-08T22:30:41Z
Severity
  • 4.2 (Medium) CVSS_V3 - CVSS:3.1/AV:N/AC:H/PR:L/UI:N/S:U/C:L/I:L/A:N CVSS Calculator
Summary
fast-jwt: Verifier cache accepts expired JWTs without iat.
Details

Summary

cacheSet only derives its exp cache deadline inside hasIat (src/verifier.js:127-140). JWT iat is optional. For a valid token with exp but no iat, cacheSet substitutes clockTimestamp + clockTolerance + cacheTTL (src/verifier.js:142-146). Later, the cache path returns the saved payload before decoding or invoking verifyToken (src/verifier.js:372-388). Since expiration validation is in verifyToken, the expired token remains accepted until the cache deadline.

Details

The bug is an expiration-check bypass caused by caching.

Normally, verification works like this:

  1. Verify signature.
  2. Check exp against the current time.
  3. Return the JWT claims.

With caching enabled, fast-jwt saves successful verification results so it can avoid repeating crypto work for the same token.

The intended invariant is:

A cached token must stop being accepted at the same time as a non-cached token.

But the cache computes its expiration incorrectly.

In fast-jwt/src/verifier.js:127, the code first checks whether the payload has an iat (“issued at”) claim:

const hasIat = payload && typeof payload.iat === 'number'

if (hasIat) {
  if (!ignoreExpiration && typeof payload.exp === 'number') {
    cacheValue[2] = payload.exp * 1000 + clockTolerance
  }
}

That means exp is considered only when iat exists.

However, iat is optional in JWT. A perfectly valid JWT may contain:

{
    "sub": "alice",
    "exp": 1700000001
}

with no iat.

For that token, the expiration-based cache deadline is never set. The code falls back to the generic cache TTL—10 minutes by default:

const maxTTL = clockTimestamp + clockTolerance + cacheTTL
cacheValue[2] = cacheValue[2] === 0 ? maxTTL : Math.min(cacheValue[2], maxTTL)

Later, cache lookup happens before decoding and expiration validation:

const [value, min, max] = cache.get(cacheKeyBuilder(token)) || [undefined, 0, 0]

if (typeof value !== 'undefined' && (max === 0 || now <= max)) {
  return handleCachedResult(value, callback, promise)
}

So the timeline is:

  12:00:00  Token has exp = 12:00:01, no iat.
  12:00:00  Server verifies it successfully and caches its claims.
  12:00:01  Token expires.
  12:00:02  Attacker replays the identical token.
  12:00:02  Cache hit returns old claims; exp is never rechecked.
  12:10:00  Cache TTL finally ends; normal expiration rejection resumes.

An attacker cannot forge a token through this issue. They need a valid token first; typically their own, or a stolen bearer token. But they can keep using it after its intended expiration if all of these are true:

  • The application enables cache.
  • The JWT has exp but no iat.
  • The token was cached before expiry.
  • It is replayed before the cache entry expires.

Impact depends on the application. For a short-lived access token, it can extend access by up to the configured cacheTTL of 10 minutes by default, or more if the application configured it that way. This undermines expiry as an authentication/session boundary.

The minimal repair is to calculate the cache deadline from exp independently of iat. iat should only matter for maxAge, because max age is inherently defined relative to issuance time.

PoC

const assert = require('node:assert/strict')
const { createSigner, createVerifier } = require('fast-jwt')

const key = 'audit-only-secret'
const originalNow = Date.now

try {
  const initialNow = 1_700_000_000_000
  const exp = Math.floor(initialNow / 1000) + 1 // expires one second later

  // noTimestamp intentionally omits iat, while exp is retained.
  const sign = createSigner({
    key,
    algorithm: 'HS256',
    noTimestamp: true
  })
  const token = sign({ sub: 'alice', exp })

  const verify = createVerifier({
    key,
    algorithms: ['HS256'],
    cache: true,
    cacheTTL: 60_000
  })

  Date.now = () => initialNow
  assert.equal(verify(token).sub, 'alice') // Valid; stores cache entry.

  Date.now = () => exp * 1000 + 1
  assert.equal(verify(token).sub, 'alice') // BUG: should throw FAST_JWT_EXPIRED.

  console.log('VULNERABLE: expired exp-without-iat token served from cache')
} finally {
  Date.now = originalNow
}

Impact

This is an authentication/session-expiration bypass caused by incorrect cache validation. The following are impacted:

  • Applications using the affected fast-jwt code with cache: true.
  • Applications that rely on JWT exp to end sessions or limit bearer-token lifetime.
  • Tokens with exp but no iat, after they were successfully verified and cached.
Database specific
{
    "cwe_ids": [
        "CWE-613"
    ],
    "github_reviewed": true,
    "github_reviewed_at": "2026-10-08T22:10:35Z",
    "nvd_published_at": null,
    "severity": "MODERATE"
}
References

Affected packages

npm / fast-jwt

Package

Affected ranges

Type
SEMVER
Events
Introduced
0 Unknown introduced version / All previous versions are affected
Fixed
6.3.4

Database specific

last_known_affected_version_range
"<= 6.3.3"
source
"https://github.com/github/advisory-database/blob/main/advisories/github-reviewed/2026/10/GHSA-x937-hj6v-793p/GHSA-x937-hj6v-793p.json"