CVE-2026-92941: vm2 NodeVM can replace the host process TLS trust store
Summary vm2 3.11.6 exposes the host `tls` module to a `NodeVM` when that builtin is explicitly allowed. Although the module object is wrapped as read-only, its functions still execute against process-wide host state. On Node.js versions that provide `tls.setDefaultCACertificates()`, sandbox code can replace the certificate authorities trusted by subsequent host-realm TLS clients. The exploit needs only the narrowly allowed `tls` and `url` builtins. It does not require `fs`, `process`, `module`, `child_process`, an external package, or a general `'*'` builtin grant. A host HTTPS request rejected an attacker certificate before sandbox execution, then accepted the same certificate and returned an application marker after the sandbox replaced the default CA list. This crosses the intended sandbox boundary. An attacker can make host HTTPS clients trust an attacker-controlled CA, enabling credential theft and response tampering when the attacker can influence a subsequent destination or network path. Replacing the list also removes the normal trust roots, disrupting unrelated host TLS traffic. ### Details The vulnerable boundary is the default builtin loader in `lib/builtin.js`. Builtins that are not classified as dangerous are exposed through a recursive read-only bridge: ```js builtins.set(key, special ? special : vm => vm.readonly(hostRequire(key))); ``` The read-only wrapper prevents ordinary property assignment through the sandbox proxy. It does not make calls such as `tls.setDefaultCACertificates()` sandbox-local. That function changes the default CA list for the current Node.js thread and affects subsequent TLS connections that do not provide their own `ca` option. The dangerous-builtin list now rejects `dns` because `dns.setServers()` mutates process-wide host networking state. It does not reject `tls`, even though current Node.js exposes an equivalent process-wide trust mutation through it. A direct call with a normal sandbox array is not necessary. The native TLS function requires an actual host-realm array. The allowed host `url` module provides one: ```js const tls = require('tls'); const {URLSearchParams} = require('url'); const hostArray = new URLSearchParams( 'ca=' + encodeURIComponent(attackerCaPem) ).getAll('ca'); tls.setDefaultCACertificates(hostArray); ``` `URLSearchParams.getAll()` executes in the host realm and returns a host array containing the attacker-controlled PEM string. vm2 maps that array into the sandbox. When the mapped value is passed back to the TLS function, the bridge unwraps it to the original host array, satisfying the native type check. The TLS function then replaces the host thread's default CA set. The complete exploit flow is: ```text attacker-controlled NodeVM program -> require only the allowed tls and url builtins -> URLSearchParams.getAll() creates a host array containing attacker CA PEM -> bridge unwraps the mapped array when passed back to tls -> tls.setDefaultCACertificates() replaces host default trust roots -> subsequent host-realm HTTPS client accepts attacker-signed certificates -> attacker can observe or modify application TLS traffic ``` The API is present in Node.js 22.19.0 and later in the 22.x line, and Node.js 24.5.0 and later in the 24.x line. ### PoC The attached PoC is fully local. It creates a temporary CA and a loopback HTTPS server signed by that CA, then performs two requests from the host realm. 1. Install Node.js 22.19.0 or later in the 22.x line, or Node.js 24.5.0 or later in the 24.x line. OpenSSL must also be available. 2. In the attached `poc` directory, run: ```bash npm install --ignore-scripts node poc.js ``` 3. A vulnerable result has all of these properties: - the first host request fails with a certificate verification error; - the sandbox reports that it supplied one host-realm CA entry; - the second host request succeeds with HTTP 200; - the second response body is `VM2_POC_HOST_TLS_RESPONSE_3e71c8`. The server listens only on loopback and the PoC makes no external request. ### Impact This is an improper sandbox authorization boundary around a process-wide TLS security setting. An attacker who can submit code to a `NodeVM` configured with the `tls` and `url` builtins can: - replace the CAs used by subsequent host-side HTTPS and TLS clients; - make the host authenticate services presenting certificates signed by the attacker; - intercept host credentials, API tokens, session data, request bodies, and responses when the attacker can influence DNS, routing, a proxy, or a later request destination; - modify trusted responses, including configuration, webhook, update, identity, and package-retrieval traffic; - remove the normal trusted roots and cause unrelated host TLS connections to fail. The attacker does not obtain a direct file or command-execution primitive from this PoC. The critical impact is control of the host process's authentication trust decision, outside the sandbox's authority. Connections that explicitly provide their own CA list are not affected, and already cached TLS sessions may remain unchanged.
Recommended action
Recommended action
Upgrade affected packages to a patched version: vm2 3.11.7.
Technical details
- Vendor
- Not specified
- Product
- vm2
- Exploitation
- none known
- Evidence
- official
Evidence and sources
This record is attributed to GitHub Advisories. Exploitation status and remediation guidance are kept separate from the vulnerability's technical severity.
Open primary source