> [!NOTE] > The vulnerability surfaces only when a JWKS fetch fails; an attacker can attempt to provoke that with sustained unknown-kid traffic, but the outcome depends on upstream JWKS-endpoint behavior (rate limiting, transient errors) which is beyond the attacker's control. Impact is reduced auth availability until the next successful fetch, not complete denial of service. ## Summary PyJWKClient.get_signing_key() forces a fresh HTTP request to the JWKS endpoint for every JWT with an unknown kid value, with no rate limiting. Since kid comes from the unverified token header, an attacker can trigger unlimited outbound requests. Additionally, fetch_data() finally block clears the JWKS cache on network error. ## Root Cause jwt/jwks_client.py:172-198 - get_signing_key(kid) calls get_signing_keys(refresh=True) for unknown kids, bypassing TTL cache with no cooldown. jwt/jwks_client.py:120-122 - finally block writes None to cache on error, clearing valid data. ## Impact - DoS against JWKS endpoint (unlimited requests per invalid token) - DoS against application (network I/O latency) - Cascading failure (rate limiting clears cache, breaking legitimate auth) ## Suggested Fix 1. Add refresh cooldown (refuse refresh more than once per TTL period) 2. Move cache write from finally to else block ## Affected Versions All versions with PyJWKClient (2.4.0 through 2.12.1)
> [!NOTE] > The vulnerability surfaces only when a JWKS fetch fails; an attacker can attempt to provoke that with sustained unknown-kid traffic, but the outcome depends on upstream JWKS-endpoint behavior (rate limiting, transient errors) which is beyond the attacker's control. Impact is reduced auth availability until the next successful fetch, not complete denial of service. ## Summary PyJWKClient.get_signing_key() forces a fresh HTTP request to the JWKS endpoint for every JWT with an unknown kid value, with no rate limiting. Since kid comes from the unverified token header, an attacker can trigger unlimited outbound requests. Additionally, fetch_data() finally block clears the JWKS cache on network error. ## Root Cause jwt/jwks_client.py:172-198 - get_signing_key(kid) calls get_signing_keys(refresh=True) for unknown kids, bypassing TTL cache with no cooldown. jwt/jwks_client.py:120-122 - finally block writes None to cache on error, clearing valid data. ## Impact - DoS against JWKS endpoint (unlimited requests per invalid token) - DoS against application (network I/O latency) - Cascading failure (rate limiting clears cache, breaking legitimate auth) ## Suggested Fix 1. Add refresh cooldown (refuse refresh more than once per TTL period) 2. Move cache write from finally to else block ## Affected Versions All versions with PyJWKClient (2.4.0 through 2.12.1)
> [!NOTE] > The vulnerability surfaces only when a JWKS fetch fails; an attacker can attempt to provoke that with sustained unknown-kid traffic, but the outcome depends on upstream JWKS-endpoint behavior (rate limiting, transient errors) which is beyond the attacker's control. Impact is reduced auth availability until the next successful fetch, not complete denial of service. ## Summary PyJWKClient.get_signing_key() forces a fresh HTTP request to the JWKS endpoint for every JWT with an unknown kid value, with no rate limiting. Since kid comes from the unverified token header, an attacker can trigger unlimited outbound requests. Additionally, fetch_data() finally block clears the JWKS cache on network error. ## Root Cause jwt/jwks_client.py:172-198 - get_signing_key(kid) calls get_signing_keys(refresh=True) for unknown kids, bypassing TTL cache with no cooldown. jwt/jwks_client.py:120-122 - finally block writes None to cache on error, clearing valid data. ## Impact - DoS against JWKS endpoint (unlimited requests per invalid token) - DoS against application (network I/O latency) - Cascading failure (rate limiting clears cache, breaking legitimate auth) ## Suggested Fix 1. Add refresh cooldown (refuse refresh more than once per TTL period) 2. Move cache write from finally to else block ## Affected Versions All versions with PyJWKClient (2.4.0 through 2.12.1)
> [!NOTE] > The vulnerability surfaces only when a JWKS fetch fails; an attacker can attempt to provoke that with sustained unknown-kid traffic, but the outcome depends on upstream JWKS-endpoint behavior (rate limiting, transient errors) which is beyond the attacker's control. Impact is reduced auth availability until the next successful fetch, not complete denial of service. ## Summary PyJWKClient.get_signing_key() forces a fresh HTTP request to the JWKS endpoint for every JWT with an unknown kid value, with no rate limiting. Since kid comes from the unverified token header, an attacker can trigger unlimited outbound requests. Additionally, fetch_data() finally block clears the JWKS cache on network error. ## Root Cause jwt/jwks_client.py:172-198 - get_signing_key(kid) calls get_signing_keys(refresh=True) for unknown kids, bypassing TTL cache with no cooldown. jwt/jwks_client.py:120-122 - finally block writes None to cache on error, clearing valid data. ## Impact - DoS against JWKS endpoint (unlimited requests per invalid token) - DoS against application (network I/O latency) - Cascading failure (rate limiting clears cache, breaking legitimate auth) ## Suggested Fix 1. Add refresh cooldown (refuse refresh more than once per TTL period) 2. Move cache write from finally to else block ## Affected Versions All versions with PyJWKClient (2.4.0 through 2.12.1)
Update pyjwt to 2.13.0 if you use the affected versions. Test the change in a non-production environment first.
Local check
hol-guard supply-chain scanPyJWKClient unbounded JWKS endpoint requests via attacker-controlled kid values (DoS) affects pyjwt (pip). Severity is low. > [!NOTE] > The vulnerability surfaces only when a JWKS fetch fails; an attacker can attempt to provoke that with sustained unknown-kid traffic, but the outcome depends on upstream JWKS-endpoint behavior (rate limiting, transient errors) which is beyond the attacker's control. Impact is reduced auth availability until the next successful fetch, not complete denial of service. ## Summary PyJWKClient.get_signing_key() forces a fresh HTTP request to the JWKS endpoint for every JWT with an unknown kid value, with no rate limiting. Since kid comes from the unverified token header, an attacker can trigger unlimited outbound requests. Additionally, fetch_data() finally block clears the JWKS cache on network error. ## Root Cause jwt/jwks_client.py:172-198 - get_signing_key(kid) calls get_signing_keys(refresh=True) for unknown kids, bypassing TTL cache with no cooldown. jwt/jwks_client.py:120-122 - finally block writes None to cache on error, clearing valid data. ## Impact - DoS against JWKS endpoint (unlimited requests per invalid token) - DoS against application (network I/O latency) - Cascading failure (rate limiting clears cache, breaking legitimate auth) ## Suggested Fix 1. Add refresh cooldown (refuse refresh more than once per TTL period) 2. Move cache write from finally to else block ## Affected Versions All versions with PyJWKClient (2.4.0 through 2.12.1)
AI coding agents often install or upgrade packages automatically in pip. A low vulnerability in a dependency can be pulled into a project through a normal install or update without a human reviewing the change, expanding the blast radius from a single package to every agent workspace that depends on it.
| Package | Affected range | Fixed version |
|---|---|---|
| pyjwtpip | <=2.12.1 | 2.13.0 |
Fixed versions are reported by the source feed; confirm compatibility before updating.
Reported by GitHub Security Advisories (ghsa).
HOL Guard can help your team review package activity against supported protection paths.
Explore HOL GuardUpdate pyjwt to 2.13.0 if you use the affected versions. Test the change in a non-production environment first.
Local check
hol-guard supply-chain scanPyJWKClient unbounded JWKS endpoint requests via attacker-controlled kid values (DoS) affects pyjwt (pip). Severity is low. > [!NOTE] > The vulnerability surfaces only when a JWKS fetch fails; an attacker can attempt to provoke that with sustained unknown-kid traffic, but the outcome depends on upstream JWKS-endpoint behavior (rate limiting, transient errors) which is beyond the attacker's control. Impact is reduced auth availability until the next successful fetch, not complete denial of service. ## Summary PyJWKClient.get_signing_key() forces a fresh HTTP request to the JWKS endpoint for every JWT with an unknown kid value, with no rate limiting. Since kid comes from the unverified token header, an attacker can trigger unlimited outbound requests. Additionally, fetch_data() finally block clears the JWKS cache on network error. ## Root Cause jwt/jwks_client.py:172-198 - get_signing_key(kid) calls get_signing_keys(refresh=True) for unknown kids, bypassing TTL cache with no cooldown. jwt/jwks_client.py:120-122 - finally block writes None to cache on error, clearing valid data. ## Impact - DoS against JWKS endpoint (unlimited requests per invalid token) - DoS against application (network I/O latency) - Cascading failure (rate limiting clears cache, breaking legitimate auth) ## Suggested Fix 1. Add refresh cooldown (refuse refresh more than once per TTL period) 2. Move cache write from finally to else block ## Affected Versions All versions with PyJWKClient (2.4.0 through 2.12.1)
AI coding agents often install or upgrade packages automatically in pip. A low vulnerability in a dependency can be pulled into a project through a normal install or update without a human reviewing the change, expanding the blast radius from a single package to every agent workspace that depends on it.
| Package | Affected range | Fixed version |
|---|---|---|
| pyjwtpip | <=2.12.1 | 2.13.0 |
Fixed versions are reported by the source feed; confirm compatibility before updating.
Reported by GitHub Security Advisories (ghsa).
HOL Guard can help your team review package activity against supported protection paths.
Explore HOL Guard