This project might be open to known security vulnerabilities, which can be prevented by tightening the version range of affected dependencies. Find detailed information at the bottom.

Crate google-cloud-auth

Dependencies

(21 total, 2 possibly insecure)

CrateRequiredLatestStatus
 async-trait^0.1.850.1.92up to date
 aws-lc-rs^1.17.01.18.1up to date
 base64^0.230.23.1up to date
 bytes ⚠️^1.101.12.1maybe insecure
 google-cloud-gax^1.14.01.14.0up to date
 hex^0.4.30.4.3up to date
 hmac^0.13.00.13.0up to date
 http^1.11.5.0up to date
 jiff^0.2.320.2.35up to date
 jsonwebtoken^1111.0.0up to date
 p256^0.140.14.0up to date
 reqwest^0.13.40.13.5up to date
 rustls^0.23.380.23.44up to date
 rustls-pki-types^1.141.15.1up to date
 serde^1.0.2281.0.229up to date
 serde_json^1.0.1501.0.151up to date
 sha2^0.11.00.11.0up to date
 thiserror^2.0.122.0.20up to date
 time ⚠️^0.3.450.3.55maybe insecure
 tokio^1.52.31.53.1up to date
 url^2.42.5.8up to date

Dev dependencies

(15 total, 1 outdated, 1 insecure)

CrateRequiredLatestStatus
 anyhow^1.0.1021.0.104up to date
 httptest^0.16.40.16.4up to date
 hyper^1.101.11.1up to date
 mockall^0.150.15.0up to date
 mutants^0.0.40.0.4up to date
 p256^0.140.14.0up to date
 regex^1.10.41.13.1up to date
 rsa ⚠️^0.9.100.9.10insecure
 scoped-env^2.12.1.0up to date
 serial_test^34.0.1out of date
 static_assertions^1.11.1.0up to date
 tempfile^3.263.27.0up to date
 test-case^3.33.3.1up to date
 tokio^1.52.31.53.1up to date
 url^2.42.5.8up to date

Security Vulnerabilities

rsa: Marvin Attack: potential key recovery through timing sidechannels

RUSTSEC-2023-0071

Impact

Due to a non-constant-time implementation, information about the private key is leaked through timing information which is observable over the network. An attacker may be able to use that information to recover the key.

Patches

No patch is yet available, however work is underway to migrate to a fully constant-time implementation.

Workarounds

The only currently available workaround is to avoid using the rsa crate in settings where attackers are able to observe timing information, e.g. local use on a non-compromised computer is fine.

References

This vulnerability was discovered as part of the "Marvin Attack", which revealed several implementations of RSA including OpenSSL had not properly mitigated timing sidechannel attacks.

bytes: Integer overflow in `BytesMut::reserve`

RUSTSEC-2026-0007

In the unique reclaim path of BytesMut::reserve, the condition

if v_capacity >= new_cap + offset

uses an unchecked addition. When new_cap + offset overflows usize in release builds, this condition may incorrectly pass, causing self.cap to be set to a value that exceeds the actual allocated capacity. Subsequent APIs such as spare_capacity_mut() then trust this corrupted cap value and may create out-of-bounds slices, leading to UB.

This behavior is observable in release builds (integer overflow wraps), whereas debug builds panic due to overflow checks.

PoC

use bytes::*;

fn main() {
    let mut a = BytesMut::from(&b"hello world"[..]);
    let mut b = a.split_off(5);

    // Ensure b becomes the unique owner of the backing storage
    drop(a);

    // Trigger overflow in new_cap + offset inside reserve
    b.reserve(usize::MAX - 6);

    // This call relies on the corrupted cap and may cause UB & HBO
    b.put_u8(b'h');
}

Workarounds

Users of BytesMut::reserve are only affected if integer overflow checks are configured to wrap. When integer overflow is configured to panic, this issue does not apply.

time: Denial of Service via Stack Exhaustion

RUSTSEC-2026-0009

Impact

When user-provided input is provided to any type that parses with the RFC 2822 format, a denial of service attack via stack exhaustion is possible. The attack relies on formally deprecated and rarely-used features that are part of the RFC 2822 format used in a malicious manner. Ordinary, non-malicious input will never encounter this scenario.

Patches

A limit to the depth of recursion was added in v0.3.47. From this version, an error will be returned rather than exhausting the stack.

Workarounds

Limiting the length of user input is the simplest way to avoid stack exhaustion, as the amount of the stack consumed would be at most a factor of the length of the input.