🪨 why use many token when few token do trick — Claude Code skill that cuts 65% of tokens by talking like caveman
Docker browser automation API and MCP server
This repo runs a stealth-focused Firefox build in Docker and lets you control it through a JSON HTTP API or an MCP server. It supports real OS input, page loaders, screenshots, recordings, and a cluster mode with Redis cookie sync and sticky sessions.
Builders who want an agent or script to control a browser, inspect pages, and handle bot checks from a remote API.
You can automate browser work with real input and remote control instead of fighting CDP-based detection.
What it does
Camoufox in Docker
Runs a custom Firefox build in a container with no Chrome DevTools Protocol exposure.
Real OS input
Uses PyAutoGUI for mouse and keyboard events that land as system-level input.
HTTP API
Exposes browser actions like navigation, clicks, typing, screenshots, tabs, and cookies over JSON on port 8080.
MCP server
Serves `/mcp` so MCP-compatible agents can drive the browser with the same actions.
noVNC viewer
Lets you watch the live browser session in a web browser on port 5900.
Script mode
Accepts YAML scripts over stdin for one-shot runs and CI jobs.
Page loaders
Runs YAML-defined actions automatically when URLs match, for popups and paywalls.
Cluster mode
Adds HAProxy, Redis cookie sync, request queuing, and sticky sessions across multiple instances.
How to get it
- 1Run
docker run -d --name browser \ -p 8080:8080 \ -p 5900:5900 \ psyb0t/stealthy-auto-browse
README
docker-stealthy-auto-browse
Stealth browser automation that actually works. Runs Camoufox (custom Firefox) in Docker with zero Chrome DevTools Protocol exposure, real OS-level mouse and keyboard input via PyAutoGUI, and a JSON HTTP API + MCP server to control it all remotely. Watch it live via noVNC. Run a single instance or spin up a cluster behind HAProxy with Redis cookie sync, request queuing, and sticky sessions. Drive it with curl, pipe YAML scripts through stdin, send multi-step scripts via the API, use page loaders to auto-handle popups and paywalls, or connect AI agents directly via MCP. Optional Bearer token auth via AUTH_TOKEN.
Passes Cloudflare, CreepJS, BrowserScan, Pixelscan, and every other bot detector we've thrown at it. While Chromium-based tools are getting caught by the first line of defense, this thing walks through the front door unnoticed.
Table of Contents
- What's Inside
- Quick Start
- Two Input Modes
- Virtual Camera & Microphone
- MCP Server
- Agent integrations
- Script Mode
- Page Loaders
- Screen Recording
- Cluster Mode
- Authentication
- Configuration
- Development
- Bot Detection Results
- License
What's Inside
| Component | What It Does |
|---|---|
| Camoufox | A custom build of Firefox with zero Chrome DevTools Protocol exposure. Bot detectors look for CDP signals — this browser simply doesn't have any. |
| Xvfb | Virtual framebuffer that lets the browser run with a full graphical display inside a container, no physical monitor needed. This matters because headless mode is another detection signal. |
| PyAutoGUI | Generates real OS-level mouse movements and keystrokes. The browser receives these as genuine user input — it has no idea it's being automated. |
| noVNC | Web-based VNC client so you can watch the browser in real time from your own browser. Great for debugging and seeing exactly what's happening. |
| Openbox | Lightweight window manager — adds title bars and resize handles to popup windows (OAuth dialogs, etc.) that would otherwise be too small to interact with. Zero stealth impact. |
| HTTP API | A JSON API on port 8080 that lets you control everything — navigate pages, click elements, type text, take screenshots, manage tabs, handle cookies, and more. |
| MCP Server | Model Context Protocol server at /mcp on the same port. AI agents (Claude, etc.) can drive the browser directly over MCP using Streamable HTTP. |
| ffmpeg | x11grab against Xvfb for screen recording. Captures actual rendered pixels including the OS-level mouse cursor — see Screen Recording. |
Pre-installed extensions: uBlock Origin (ads/trackers), LocalCDN (prevents CDN tracking), ClearURLs (strips tracking params), Consent-O-Matic (auto-handles cookie popups).
Quick Start
docker run -d --name browser \
-p 8080:8080 \
-p 5900:5900 \
psyb0t/stealthy-auto-browse
Port 8080 is the HTTP API, port 5900 is the VNC viewer (http://localhost:5900/).
# Navigate
curl -X POST http://localhost:8080 \
-H "Content-Type: application/json" \
-d '{"action": "goto", "url": "https://example.com"}'
# Get page text
curl -X POST http://localhost:8080 \
-H "Content-Type: application/json" \
-d '{"action": "get_text"}'
# Click by CSS selector (preferred — fast and reliable)
curl -X POST http://localhost:8080 \
-H "Content-Type: application/json" \
-d '{"action": "click", "selector": "button#submit"}'
# Screenshot (last resort — prefer get_text; always resize to save tokens)
curl "http://localhost:8080/screenshot/browser?whLargest=512" -o screenshot.png
Run multi-step scripts in one request:
curl -X POST http://localhost:8080 \
-H "Content-Type: application/json" \
-d '{
"action": "run_script",
"steps": [
{"action": "goto", "url": "https://example.com", "wait_until": "domcontentloaded"},
{"action": "sleep", "duration": 2},
{"action": "get_text", "output_id": "text"},
{"action": "eval", "expression": "document.title", "output_id": "title"}
]
}'
Also accepts "yaml": "..." with the same YAML format used in script mode. In single-instance mode, requests are serialized automatically — send multiple scripts in parallel and they queue up.
See docs/api.md for all actions and the full API reference.
Navigation uses app-owned controls, not a hidden browser-library timeout: each attempt gets 30 seconds by default, one timeout retry, and a one-second retry delay. Pass timeout, retry_count, and retry_delay with goto, refresh, or new_tab when a workflow needs different bounds. retry_count: 0 disables retries. See navigation controls for the limits and retry behavior.
Two Input Modes
There are two ways to interact with pages. System input uses PyAutoGUI to generate real OS-level mouse and keyboard events — the browser cannot tell these apart from a real human. Playwright input uses CSS selectors and DOM event injection — easier, but theoretically detectable by behavioral analysis. Use system input on any site with bot protection.
Full breakdown and usage guide: docs/stealth.md
Virtual Camera & Microphone
Mount test media read-only at /media and set VIRTUAL_CAMERA_FILE and/or VIRTUAL_MICROPHONE_FILE. Pages that call navigator.mediaDevices.getUserMedia() receive tracks captured from those files, so camera and microphone checks can run without host hardware.
docker run -d -p 8080:8080 \
-v ./media:/media:ro \
-e VIRTUAL_CAMERA_FILE=camera.webm \
-e VIRTUAL_MICROPHONE_FILE=microphone.wav \
psyb0t/stealthy-auto-browse
Sources must remain inside /media; restart the browser after changing them. A request for a kind without a configured virtual source fails with NotFoundError rather than falling back to hardware. Virtual tracks use the source file's native format, so pages must not require incompatible exact media constraints. This virtualizes getUserMedia() only, not enumerateDevices().
To switch sources during an authorized test without replacing an already acquired camera or microphone track, enable VIRTUAL_MEDIA_DYNAMIC=true. Dynamic mode is disabled by default. Use set_virtual_media_source to choose an existing relative file name under VIRTUAL_MEDIA_DIR, or upload_virtual_media to add bounded base64 content and optionally activate it. An upload filename is only a safe, type-matching media name; the service generates a collision-safe stored basename, returns it, and never overwrites an existing named source. Before storage or activation, the decoded upload is checked with ffprobe for a stream matching the requested camera or microphone kind. The media directory must be writable for uploads; VIRTUAL_MEDIA_UPLOAD_MAX_BYTES defaults to 50 MiB. Existing page streams keep their track identities while the source changes.
Dynamic mode accepts files from the configured media directory only. It does not accept arbitrary host paths, remote URLs, WebSocket streams, or other live ingress. Both actions use the normal API authentication: when AUTH_TOKEN is set, send the usual Authorization: Bearer <token> header. See docs/api.md#virtual-camera-and-microphone and docs/configuration.md for the action contract and writable-volume setup.
MCP Server
AI agents can control the browser over the Model Context Protocol via Streamable HTTP at /mcp on the same port 8080. All browser actions are exposed as MCP tools — navigation, screenshots, clicking, typing, JavaScript evaluation, cookies, and more.
For authorised test flows that need a human review when a verification widget appears, use detect_challenge. It is read-only: it reports a best-effort absent, present, or unknown status with bounded vendor/location evidence, but never clicks, enters a frame, or solves a challenge. Pass scroll_into_view: true to bring the first visible detected frame or widget into the viewport for VNC handoff; it still never clicks or focuses it. In cluster mode, include it as a run_script step. See the API reference.
Connect any MCP-compatible client (Claude Desktop, Claude Code, custom agents) to http://localhost:8080/mcp/ and start browsing.
Works in both standalone and cluster mode.
Agent integrations
The skill works in any agent that reads .agents/skills/, and installs natively in the clients below.
Claude Code
claude plugin marketplace add psyb0t/agents
claude plugin install stealthy-auto-browse@psyb0t
Claude Code prompts for the stealthy-auto-browse URL and, if auth is enabled, the token — the token is stored in your OS keychain.
Codex
codex plugin marketplace add psyb0t/agents
codex plugin add stealthy-auto-browse@psyb0t
Installed via the marketplace, the skill invokes as $stealthy-auto-browse:stealthy-auto-browse. Codex also picks the skill up automatically with no install in any repo containing .agents/skills/, where it invokes as plain $stealthy-auto-browse.
OpenClaw
The skill is published to ClawHub on every release:
openclaw skills install @psyb0t/stealthy-auto-browse
For MCP clients that speak local stdio, the @psyb0t/stealthy-auto-browse plugin bridges to the service's /mcp endpoint:
openclaw plugins install clawhub:@psyb0t/stealthy-auto-browse
Then set STEALTHY_AUTO_BROWSE_URL (and AUTH_TOKEN if the server requires auth).
Script Mode
Pipe a YAML script into the container, get JSON results on stdout, container exits. No HTTP server. Good for CI, cron jobs, one-shot scraping.
cat my-script.yaml | docker run --rm -i \
-e TARGET_URL=https://example.com \
psyb0t/stealthy-auto-browse --script > results.json
Full docs: docs/script-mode.md
Script mode also supports explicit if branches plus bounded repeat and while loops. Conditions can inspect elements, visible text, URLs, JavaScript booleans, and prior output_id values; see the control-flow reference.
Page Loaders
Define URL patterns + action sequences in YAML files. Mount them at /loaders. Whenever goto matches a pattern, the loader runs automatically — removes popups, waits for content, cleans up the page. Greasemonkey for the HTTP API.
Full docs: docs/page-loaders.md
Screen Recording
Record the browser as MP4 with mouse cursor visible. ffmpeg x11grab against Xvfb writes to a mounted /recordings volume. Three modes: window (full Camoufox window), viewport (chrome cropped using calibrated mozInnerScreenX/Y), desktop (entire Xvfb screen). Slug provided at stop time so you name the file after the run completes. Path-traversal-safe, collision-safe, crash-safe.
mkdir -p ./recordings
docker run -d -p 8080:8080 -v ./recordings:/recordings psyb0t/stealthy-auto-browse
curl -X POST http://localhost:8080 \
-H "Content-Type: application/json" \
-d '{"action": "start_recording", "mode": "viewport", "fps": 20}'
# … do stuff …
curl -X POST http://localhost:8080 \
-H "Content-Type: application/json" \
-d '{"action": "stop_recording", "slug": "my-flow"}'
# → ./recordings/my-flow.mp4
Also works inside run_script (cluster-mode safe: start and stop must live in the same run_script so both hit the same instance). Full action table + script-mode example + notes in docs/api.md#screen-recording.
Cluster Mode
Run multiple browser instances behind HAProxy with a request queue, sticky sessions, and Redis cookie sync (default 5, configurable via NUM_REPLICAS). Download the compose file and HAProxy config, then start:
curl -LO https://raw.githubusercontent.com/psyb0t/docker-stealthy-auto-browse/main/docker-compose.cluster.yml
docker compose -f docker-compose.cluster.yml up -d
Cookies set on any instance propagate to all others instantly via Redis PubSub. Log in once, the whole fleet is authenticated.
Each browser defaults to a 5GB memory limit. Set BROWSER_MEMORY_LIMIT and BROWSER_MEMORY_RESERVATION when your fleet or display resolution needs a different budget; see cluster mode.
Script-only enforcement (v1.0.0+): When NUM_REPLICAS > 1, both the HTTP API and MCP server restrict to run_script only (plus ping and sleep). Individual actions are rejected to prevent stale content bugs from cross-instance routing. All actions remain available as steps inside run_script.
Full docs: docs/cluster-mode.md
Authentication
Set AUTH_TOKEN to require a Bearer token on all requests (except /health):
docker run -d -p 8080:8080 -e AUTH_TOKEN=your-token-here psyb0t/stealthy-auto-browse
Pass the token in the Authorization header:
# Header
curl -H "Authorization: Bearer your-token-here" http://localhost:8080 ...
Examples
See .agents/skills/stealthy-auto-browse/scripts/ for ready-to-use scripts:
websearch.py— Multi-engine parallel web search (Brave, Google, Bing) with structured results and AI overview extraction. Outputs JSON with title, URL, and snippet for each result.
Configuration
Full environment variables table, proxy setup (including a working private pr0xteus HTTP-proxy example), persistent profiles, browser extensions, and VNC access: docs/configuration.md
Development
Docker is the only development dependency. The Makefile builds a local browser base, then runs linting, tests, and security tools in a separate disposable dev container. Only the complete test target receives the Docker socket because it starts its own browser and fixture containers.
make build
make lint
make test
make sec
make sec writes sec.sarif for GitHub Security. It reports findings without blocking a release. Use make help for the complete command list.
Bot Detection Results
| Service | Result | What They Check |
|---|---|---|
| CreepJS | Pass | Canvas/WebGL fingerprint consistency, lies detection, worker comparison |
| BrowserScan | Pass | WebDriver flag, CDP signals, navigator properties |
| Pixelscan | Pass | Fingerprint coherence, timezone/IP match, WebRTC leaks |
| Cloudflare | Pass | Challenge pages, Turnstile, bot management |
| SannySoft | Pass | Intoli + fingerprint scanner tests |
| Incolumitas | Pass | Modern detection techniques |
| Rebrowser | Pass | CDP leak detection, webdriver, viewport analysis |
| BrowserLeaks WebRTC | Pass | WebRTC IP leak detection |
| DeviceAndBrowserInfo | Pass | 19 checks, all green, "You are human!" |
| IpHey | Pass | "Trustworthy" rating |
| Fingerprint.com | Pass | Identified as normal Firefox, no bot flags |
Why it works: docs/stealth.md
Known Issues / TODO
system_clickreliability — OS-level mouse clicks can land in the wrong place if the window offset is stale. Needs a more robust coordinate mapping solution so it works reliably without manualcalibratecalls.
License
WTFPL — Do What The Fuck You Want To Public License
Files in the repo
- .agents
- .github
- app
- docs
- LICENSES
- loaders
- scripts
- tests
- .dockerignore
- .gitignore
- .gitleaks.toml
- CHANGELOG.md
- docker-compose.cluster.yml
- Dockerfile
- Dockerfile.dev
- entrypoint.sh
- glama.json
- LICENSE
- Makefile
- README.md
- server.json
- test.sh
- THIRD_PARTY.md
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