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🛡️ CVE-2023-48223 — fast-jwt

🟡 CVSS 5.9 — Medium ⚠️ Exploit Public CWE-20 OSV
5.9
CVSS Score
0 Low4 Medium7 High9 Critical10

Description

JWT Algorithm Confusion

Summary

The fast-jwt library does not properly prevent JWT algorithm confusion for all public key types.

Details

The 'publicKeyPemMatcher' in 'fast-jwt/src/crypto.js' does not properly match all common PEM formats for public keys. To exploit this vulnerability, an attacker needs to craft a malicious JWT token containing the HS256 algorithm, signed with the public RSA key of the victim application. This attack will only work if the victim application utilizes a public key containing the BEGIN RSA PUBLIC KEY header.

PoC

Take a server running the following code:

```javascript

const express = require('express');

const { createSigner, createVerifier } = require('fast-jwt')

const fs = require('fs');

const path = require('path');

const app = express();

const port = 3000;

// Load the keys from the file

const publicKeyPath = path.join(__dirname, 'public_key.pem');

const publicKey = fs.readFileSync(publicKeyPath, 'utf8');

const privateKeyPath = path.join(__dirname, 'key');

const privateKey = fs.readFileSync(privateKeyPath, 'utf8');

app.use(express.json());

// Endpoint to generate a JWT token with admin: False

app.get('/generateToken', async (req, res) => {

const payload = { admin: false, name: req.query.name };

const signSync = createSigner({ algorithm: 'RS256', key: privateKey });

const token = signSync(payload);

res.json({ token });

});

// Middleware to verify the JWT token

function verifyToken(req, res, next) {

const token = req.query.token;

const verifySync = createVerifier({ key: publicKey });

const payload = verifySync(token);

req.decoded = payload;

next();

}

// Endpoint to check if you are the admin or not

app.get('/checkAdmin', verifyToken, (req, res) => {

res.json(req.decoded);

});

app.listen(port, () => {

console.log(Server is running on port ${port});

});

```

Assume the server generated their keys like follows:

```

ssh-keygen -t rsa -b 2048 -m PEM

ssh-keygen -f key.pub -e -m PEM > public_key.pem

```

Public key recovery

First, an attacker needs to recover the public key from the server in any way possible. It is possible to extract this from just two JWT tokens as shown below.

Grab two different JWT tokens and utilize the following tool: https://github.com/silentsignal/rsa_sign2n/blob/release/standalone/jwt_forgery.py

```

python3 jwt_forgery.py token1 token2

```

The tool will generate 4 different public keys, all in different formats. Try the following for all 4 formats.

Algorithm confusion

Change the JWT to the HS256 algorithm and modify any of the contents to your liking at https://jwt.io/.

Copy the resulting JWT token and use with the following tool: https://github.com/ticarpi/jwt_tool

```

python /opt/jwt_tool/jwt_tool.py --exploit k -pk public_key token

```

You will now get a resulting JWT token that is validly signed.

Impact

Applications using the RS256 algorithm, a public key with a BEGIN RSA PUBLIC KEY header, and calling the verify function without explicitly providing an algorithm, are vulnerable to this algorithm confusion attack which allows attackers to sign arbitrary payloads which will be accepted by the verifier.

Solution

Change https://github.com/nearform/fast-jwt/blob/master/src/crypto.js#L29

```javascript

const publicKeyPemMatcher = '-----BEGIN PUBLIC KEY-----'

```

to be regex:

```javascript

const publicKeyPemMatcher = /^-----BEGIN( RSA)? PUBLIC KEY-----/

```

How this vulnerability can be exploited

This issue can be reached over the network, attack complexity is high, an attacker needs no privileges on the target. No user interaction is required. The scope is unchanged, so the impact stays within the vulnerable component. Rated impact: confidentiality none, integrity high, availability none.

CVSS metrics in full

The score comes from this vector: CVSS:3.1/AV:N/AC:H/PR:N/UI:N/S:U/C:N/I:H/A:N

  • Attack vector: Network — reachable from anywhere that can route to the service.
  • Attack complexity: High — the attacker first has to win a race, learn a secret or otherwise prepare the target.
  • Privileges required: None — an unauthenticated stranger can try it.
  • User interaction: None — nobody has to be tricked into anything.
  • Scope: Unchanged — the damage stays inside the vulnerable component.
  • Confidentiality impact: None.
  • Integrity impact: High — total loss, or loss the attacker controls.
  • Availability impact: None.

Weakness class

CVE-2023-48223 is classified as CWE-20: Improper Input Validation. The application accepts input without checking that it has the expected form, so malformed values reach code that assumes they are well formed.

Affected software

CVE-2023-48223 is recorded against 1 package.

  • fast-jwt

Timeline and source

Published on 20 November 2023 and last revised on 17 June 2026. A public exploit is known to exist, which raises the urgency of patching considerably. Record sourced from OSV.

References

github.com (Web)
nvd.nist.gov (Advisory)
github.com (Web)
github.com (Package)
github.com (Web)
github.com (Web)

Other advisories for this package

fast-jwt has other advisories on record. If you are patching this one, these are worth checking on the same host:

Same weakness in other software

These advisories are the same class of weakness (CWE-20: Improper Input Validation) in other software:

Details

Severity MEDIUM
CVSS Score 5.9
CVSS Vector CVSS:3.1/AV:N/AC:H/PR:N/UI:N/S:U/C:N/I:H/A:N
CWE CWE-20
Public Exploit ⚠️ Yes
Source OSV
Published 2023-11-20
Updated 2026-08-20
Modified 2026-06-17
Fix URL N/A

Affected Packages

Software From version Fixed in
fast-jwt

Similar Threats

Exploit Protection

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