The full upstream README, mirrored here for reference. Install config, tool schemas, adoption signals, and an original overview live on the Vibatchium listing page.
Agent-piloted browser automation that clears Cloudflare.
Patched Playwright + multi-session daemon + credential vault + vision clicking + prompt-injection safety. One MCP server, N parallel Chromes, persistent per-session profiles.
Plus two renderer-free lanes on a Chrome TLS fingerprint: vb search to find
URLs without a search API, vb fetch to read them — both with per-request
--proxy, because engines and walls both rate-limit per IP.
Where this fits. Both Anthropic and Google now ship an agent that drives your own signed-in Chrome — Claude in Chrome and Chrome Auto Browse. If that is what you want, use them: they are free, first-party, and better integrated. They are also supervised — visible window, real time, and they hand control back to you at a login wall or a CAPTCHA. vibatchium is for the other half: unattended, headless, N-at-a-time, on a box with no human in front of it, against sites that fight automation. That is the whole of the wedge, and it is worth being precise about which side of it you are on.
Core install covers all browsing. vb fetch and vb search (the curl_cffi
TLS-fingerprint lane) are the [fetch] extra; vb install reports which optional lanes are available. On a uv venv
(no pip), add an extra with uv pip install --python <venv>/bin/python curl_cffi.
Bleeding edge from
master:pipx install 'git+https://github.com/trueoriginlabs/vibatchium#egg=vibatchium[all]'
Coding agents (Codex / Cursor / Claude Code): read
AGENTS.mdfirst — it has the one-call recipes (explore,research) and the env-discovery traps to skip.
Status: active development, alpha. 1,195 tests green in CI (Linux, Python 3.11–3.13). Apache-2.0 (AGPL only via the opt-in nodriver extra).
Detector scores quoted below (bot.sannysoft, CreepJS, Cloudflare cold-launch) are manual observations, not CI-asserted — no test in the suite gates on them, and they are only as current as the last hand-run. The generated block under Measured scores is the one to trust; it is empty until someone runs it.
vb update detects how vibatchium was installed (pipx, uv tool install,
a pip-less uv venv, or pip with a PEP-668 --break-system-packages fallback),
stops the running daemon so the next command loads the new code, and
rewrites the agent skill / docs blocks so a coding agent is actually told
about the verbs the new version ships (--no-restart / --no-setup opt out).
Manual equivalent:
The daemon-restart step is the one people miss: the long-running daemon keeps serving the old version until it's bounced.
vb updatedoes it for you; if you upgrade by hand, runvb shutdown(the nextvbcall auto-respawns the new version). Optional features upgrade viapipx install 'vibatchium[all]' --force.
git pull updates the source; whether it updates what vb actually runs
depends on the install, and two of the three ways it can fail are silent:
A version-string compare cannot catch a checkout: git pull changes the code
without changing __version__. vb status compares the daemon's boot time
against the newest source file instead, and vb update bounces the daemon only
when it is provably behind — so it never drops live sessions for nothing.
The MCP server's --caps list is frozen into your agent's config at first
registration, so a bucket added by a later release (0.19.0 added search) stays
invisible no matter how many times you upgrade. Re-running vb setup reports
the drift but deliberately won't overwrite a --caps you set by hand:
Restart the agent session afterwards: the MCP tool list is read once, at start.
Persistent logged-in profiles, credential vaults, CDP-attach, N named sessions — agent-browser and playwright-mcp all ship those now, at download volumes we won't match. A comparison table winning rows nobody contests was noise; it's gone.
What's still ours: stealth patches in core (agent-browser's stealth issue has
been open since Jan 2026 and the PR attempting it was closed), prompt-injection
scanning on by default for page content (nobody else in this lane ships it —
though it does not yet cover the fetch/search lanes), TOTP + IMAP 2FA
so an unattended run survives a login challenge, and the combination that only
matters together — real stock Chrome + CDP stealth + headless + unattended + N
persistent logins, on your own machine.
If you don't need the stealth half, use one of the above. They're bigger, older and better tested than we are.
A wave of "headless browser for AI agents" tools rebuild the browser from scratch (Rust + V8, no Blink/Skia) to hit tiny memory and sub-100ms page loads. The catch is structural: with no rendering engine, they can't produce a real device's fingerprint — they synthesize one. And synthetic fingerprints don't hold still.
vibatchium drives real Google Chrome, so its fingerprints are real — and, more to the point, stable. The single test that separates the two is fingerprint stability across navigations. Run the same canvas + WebGL probe on two pages in one session:
| vibatchium (real Chrome) | synthesized-fingerprint engines | |
|---|---|---|
| canvas hash, page A → page B | identical | reseeded per navigation |
WebGL readPixels | real, deterministic pixels | often Math.random() |
| WebGL renderer | a real ANGLE renderer¹ | stub / zeros |
¹ Chrome's own software renderer (SwiftShader) by default — still a coherent, deterministic Chrome value, not a stub. A hardware-GPU string (e.g. ANGLE (Intel …)) needs the opt-in --gpu flag.
A real device returns the same fingerprint every page load; a fingerprint keyed
off Date.now() does not — and that inconsistency is exactly what lie-detection
fingerprinters (CreepJS and friends) flag. Measured: vibatchium's canvas hash and
WebGL readback are byte-identical across navigations, and CreepJS reported 0 %
stealth-tampering (no synthetic-environment signatures) when last run by hand.
That figure is not regression-tested — treat it as an observation, not a guarantee.
This is not a claim of invisibility. The moat is fingerprint authenticity,
not hiding that a browser is automated — vibatchium still reads as headless on the
headless-specific tells (see Honest limits), and real-GPU WebGL
(--gpu) is opt-in. But real, consistent fingerprints pass the consistency tier
that synthetic ones fail by construction — and that tier is what stands between
you and a login wall.
Active-session resolution: --session FLAG → $VIBATCHIUM_SESSION env → ~/.config/vibatchium/active-session → default. Cap via VIBATCHIUM_MAX_SESSIONS=8 (default 8).
On one shared daemon, sessions give real fingerprint isolation (separate Chromes, no cookie bleed) but share the host: the session count budget, the memory, and the blast radius of an OOM or a daemon bounce. Two models, pick per trust level:
--session name so stateful flows don't
collide on default. vb session lease coordinates a shared name.HOME
— separate profiles/config/state, its own session budget, zero contact with
the shared daemon. vb daemon start --isolated prints the XDG_RUNTIME_DIR/
HOME to export for subsequent calls; vb mcp --isolated runs the MCP server
on its own private daemon directly. vb daemon reap cleans up abandoned ones.
(Same UID = same trust domain — this bounds blast radius, not a security
boundary between distrusting tenants; for that, separate UIDs/containers.)Resource governance. The session cap bounds process count, not bytes. On a
shared box, set VIBATCHIUM_SESSION_RAM_FLOOR_MB to refuse a new launch when free
memory is low (a portable admission belt). For a hard ceiling, run the daemon
under a cgroup — systemd-run --user --scope -p MemoryMax=4G vb daemon start puts
the daemon and all its Chromes in one cgroup sharing the limit: an aggregate
daemon-wide cap (not per-renderer), and a breach OOM-kills inside the scope, which
can include the daemon. It's the only non-racy memory bound, so size it for the
whole fan-out.
Idle CPU. Parked sessions can't burn cores either: the daemon SIGSTOPs a
launched session's renderer processes after VIBATCHIUM_IDLE_FREEZE_AFTER seconds
with no verb (default 90) and thaws them on the next call, so an idle WebGL /
animation page drops to zero CPU without a teardown (default on;
VIBATCHIUM_IDLE_FREEZE=0 disables).
AGENTS.md — coding-agent contract (Codex / Cursor / Claude Code)| Mode | Surface | Auth |
|---|---|---|
vb mcp | stdio JSON-RPC; defaults to the lean 86-verb profile (--caps=full/all for the full surface; --caps=... for a custom bucket set) | n/a (stdio) |
vb serve | FastAPI on 127.0.0.1:8000; every verb at POST /v1/<verb>; WebSocket live-view at /v1/stream/<session> | bearer token (~/.cache/vibatchium/rest-token, mode 0600) |
REST capability gating: vb serve --caps=core,nav,input,vision restricts the HTTP surface the same way mcp --caps does. Without it, REST grants local-code-equivalent access (eval + secret_* + file-writing verbs all exposed) — safe for localhost dev, not for hosted/multi-tenant.
Stealth is a ladder, not a boolean. Pick the lowest tier that clears your target (higher tiers cost more setup / a visible browser / a manual login). vibatchium does not claim cold-launch defeat of behavioral walls — those need a real human-driven session, and attach-mode is the honest answer.
Architecture caveat. Every tier below was measured on x86-64 Linux. Patchright has a known open arm64 / Apple-Silicon detection gap, so these results should not be assumed to carry to an ARM host. If you run there, measure before you rely on it.
| Tier | How | Clears | Doesn't clear |
|---|---|---|---|
| Standard (default) | headless cold launch, real channel=chrome, de-Headless'd UA | Cloudflare IUAM / managed challenge, bot.sannysoft 31/31, JS-runtime fingerprinting | aggressive Turnstile, DataDome/Kasada, anything behind a login |
| Hardened | retry --headed; vb humanize on; --backend nodriver (pip install vibatchium[nodriver], AGPL) for the hardest Cloudflare gates | aggressive Cloudflare/Turnstile, GPU/screen tells that headless leaves | behavioral biometrics, DataDome/Kasada sensor-fusion |
| Attach | vb attach to a Chrome you launched and logged into | DataDome / Kasada / HUMAN behavioral walls, and any authenticated session — your real fingerprint + cookies | nothing here is automated cold; it needs the human login first |
vb evals run --update-readme writes measured numbers into the block below, so
what we publish is generated rather than asserted. It is empty until someone
runs it — an empty block is honest; a number with no run behind it is not.
Run on x86-64 Linux, 25 Aug 2026, Chrome 150, --gpu (real render node).
Pass --gpu yourself: headless Chrome falls back to SwiftShader when the GPU
path doesn't take, and software GL is itself a detection signal, so numbers
measured without it are a floor rather than what a GPU-backed deployment gets.
| Target | Backend | Humanize | GPU | Score | Status | Time |
|---|---|---|---|---|---|---|
| sannysoft | patchright | off | real | 100 | OK | 17.78s |
| creepjs | patchright | off | real | 44 | OK | 7.88s |
| brotector | patchright | off | real | 10 | OK | 7.13s |
| sannysoft | nodriver | off | real | 100 | OK | 19.85s |
| creepjs | nodriver | off | real | 44 | OK | 9.72s |
| brotector | nodriver | off | real | 10 | OK | 7.73s |
Read these honestly — two of the three are bad.
sannysoft 100 is the floor everyone in this category clears; it is not a differentiator.
creepjs 44 is mediocre. CreepJS is an adversarial lie-detector: it cross-checks main-thread against worker-thread claims and grades confidence, so a middling score means our environment is coherent but not indistinguishable.
brotector 10 is poor, and we know exactly why. The signal firing is
UA_Override / HighEntropyValues.empty, and our own de-Headless fix causes
it. Measured on Chrome 150, headless, same profile, with and without the
--user-agent flag we set to strip HeadlessChrome:
architecture | bitness | uaFullVersion | UA string | |
|---|---|---|---|---|
| without the flag | x86 | 64 | 150.0.7871.114 | says HeadlessChrome |
| with the flag | empty | empty | empty | says Chrome |
Passing an explicit UA makes Chrome stop deriving high-entropy client hints,
so we trade a UA-string tell for a UA-CH-emptiness tell. It is not fixed: the
obvious repair (Emulation.setUserAgentOverride with userAgentMetadata) is
target-scoped and would reintroduce a main-vs-worker mismatch that is a
stronger tell than either leak alone. Publishing this rather than dropping
the target is the point — a suite that only reports its wins is marketing.
nodriver scores identically to patchright on all three. The escalation
tier buys nothing measurable on static scoreboards; its case rests on the
automation-protocol axis these targets don't probe. An earlier run had
nodriver slightly ahead on creepjs (50 vs 44) — but that run silently
denied it the GPU while patchright got a real one, so it was scoring from
behind. Once both arms get a real renderer the difference disappears.
What these do and don't cover. These are fingerprint scoreboards — the static axis. Through 2026 the major anti-bot vendors moved to session-lifetime behavioural scoring, which none of these targets measure, and which we have not measured against any commercial vendor. Treat a good score here as evidence about environment coherence only.
For the behavioural axis itself, vb oracle run is a self-hosted probe: it drives a
page with humanize off then on and grades trajectory curvature, dwell, keystroke
cadence and scroll dynamics against a human-plausible band (vb oracle record
captures a real-operator baseline; literature defaults until you do). It measures
our model of human rather than a named vendor — but it turns "we humanize" into a
measured on/off delta, and it's honest about the one axis synthetic input can't
reach: CDP input emits no raw-pointer / coalesced events, which only attach-mode
against real hardware closes.
Escalation ladder when a wall trips: headless → --headed → humanize on →
--backend nodriver → attach-mode after a manual login. Patchright's CDP-layer
patches apply in all tiers, including attach (connect_over_cdp).
The
fetchverb is an orthogonal fast-path, not a tier: once you're past a wall in the browser,vb fetchreuses that session's cookies+proxy to hit JSON/API endpoints at TLS-fingerprint-correct speed — but it runs no JS, so it can't clear a JS challenge itself.
Reading a walled page is only half a research loop; the other half is discovery,
and search engines are anti-bot walled like everything else. vb search runs the
SERP over the same curl_cffi lane — no browser, no session, no API key, and no
per-session call budget to run out of mid-run.
Engines are tried as a ladder (ddg → ddg-lite → bing) until one answers,
because reachability moves: the endpoint serving results now may rate-limit
(HTTP 202) on the next call. --json returns an attempts array naming every
engine that declined and why, and a reason separating all engines are walled
from the web has nothing — different problems, different fixes, and the CLI
exits non-zero only for the first.
It never reuses session cookies (a SERP needs no login, and attaching one
deanonymises the request), which is why it gets its own search cap instead of
riding on fetch. No date filter is exposed on purpose: DuckDuckGo's mislabels
article dates badly enough to corrupt a timeline. Engines rate-limit per IP — see
proxies, below.
Egress is the axis most people get wrong, so it gets stated precisely rather than
implied. Both curl_cffi lanes take --proxy scheme://[user:pass@]host:port:
Measured, not asserted — same box, same command, only --proxy differing:
| egress IP | |
|---|---|
| direct | 115.70.50.70 |
--proxy (authenticated gateway) | 212.69.0.85 |
Four things worth knowing:
HTTP(S)_PROXY / ALL_PROXY out of the environment it was spawned with. A
long-lived daemon inherits whatever shell first started it, so without this a
stray HTTPS_PROXY would silently reroute every request while the response
claimed direct egress. (It did, until 0.19.0 — see the changelog.)search. Engines rate-limit per IP, so a wide
research fan-out from one address is the fastest way to push every query onto
the last rung of the engine ladder. The response reports proxied: true|false
so you can tell which IP a thin result set came from.--allow-internal to opt in to a proxy on your own LAN. An unguarded proxy
reaches internal services and returns their response bodies, not just
connection errors.With a browser session, vb proxy set also wires the WebRTC leak guard — a
tunnelled HTTP request still leaks the real IP via STUN without it.
For DataDome / Kasada / hardened auth that walls cold-launch automation:
Patchright's CDP-layer stealth still applies over connect_over_cdp — attach mode gets the same protocol-level patches as cold launch, plus your real-browser fingerprint and any cookies from the manual login.
Launch flags are yours on this tier. On cold launch the backend supplies
--disable-blink-features=AutomationControlledfor you. Attach connects to a Chrome that is already running, so nothing vibatchium does can add a launch flag after the fact — if you started Chrome without it, that tell is present for the whole session. Include it in the command above.
--remote-debugging-portis an open door. It grants full browser control to any process on the machine, and a page you visit can probe localhost to discover it. Use it on a machine you trust, and close Chrome when you're done.
vibatchium is built to drive real logins from an untrusted agent loop, so the threat model is "a credential must never reach the model, a screenshot, or a log":
VIBATCHIUM_SECRETS_KEY. A resolved secret
never appears in logs, HAR captures, the observe cache, or any agent-visible
response field (grep-tested in CI).fill --use-secret masks the field
in the page (-webkit-text-security), applied before the value is written, so
every path that turns the viewport into bytes — the screenshot verb, the 5 fps
live-view stream, and VLM vision_* calls that ship the frame to a model —
captures dots, not the value. The mask fails closed (no write if it can't be
confirmed), covers password fields so a show-password toggle can't unmask, and
the accessibility snapshot returned by map / diff_map strips masked values so
the secret can't leak into the model's context as text either.Origin connections (the CSWSH class), and driving the page is
a separate token from watch-only — a read-only link can be shared without handing
over the keyboard. Binds 127.0.0.1 by default (--insecure-public to override).openWorldHint, so a host can taint the output against prompt injection
instead of treating a scraped page as instructions; pure probes are readOnlyHint
and mutating verbs (stop, secret_delete, storage_restore) are
destructiveHint.--caps, the bearer token grants every verb including
eval, secret_*, and file-writing verbs — local-code-equivalent, so always
pass --caps=... in hosted mode. All vibatchium-written files are 0600;
directories 0700.5+ concurrent sessions = 1-2GB RAM. Each persistent-context Chrome is ~200-400MB. Bump cap with VIBATCHIUM_MAX_SESSIONS=8.
Vision spend cap is process-wide. N fan-out agents share one daily/lifetime budget.
Init scripts don't work on patchright backend. chrome.runtime stays undefined — accepted trade for stealth wins.
Login walls (X, LinkedIn) require attach mode. Cold-launch fan-out can't defeat sites requiring authenticated sessions.
Synthetic input has a CDP coordinate signature. Every click/type/hover/scroll rides Playwright over CDP Input.dispatchMouseEvent/dispatchKeyEvent (pageX==screenX, no CoalescedEvents). Patchright patches the JS-context leaks, not the Input domain, and humanize on improves trajectory/timing realism but does not change the per-event signature. Behavioral walls that fingerprint it (DataDome/Kasada/HUMAN) want attach-mode against a real headful Chrome you drive — OS-level synthetic input (CDP-Patches) is headful + active-tab only and doesn't fit a headless, N-parallel daemon.
fetch is a static-fingerprint lane, not a browser. The curl_cffi fetch verb matches Chrome's JA3/HTTP2 but runs no JavaScript — it clears TLS-fingerprint gates, not DataDome/Kasada/Turnstile JS challenges. Fall back to go for those.
Single daemon = single point of failure. No HA built in.
Behavioural detection now targets the humanizer directly. Cloudflare's 2026
bot-detection work names mathematically ideal Bézier cursor paths and superhuman
click precision as tells. humanize improves on nothing-at-all, but it is a
pointer-trajectory model, not a physiological one — and it is off by default,
which on a behaviourally-scored site is the louder of the two states.
One burned profile can taint every account that shares it. Vendors now link device telemetry across sessions and accounts. Use one profile per account, never share a profile between identities, and don't reuse a profile that has already been challenged.
The fetch and search lanes are outside prompt-injection scanning. The
scanner covers page-content verbs (text, html, extract, map, …). SERP
titles and fetched bodies are third-party text going straight into an agent's
context and are not scanned today. Treat them as untrusted input.
vibatchium is built to drive sessions you own, with your credentials, on your machine — your accounts, your employer's, or a client's with their written permission. It is a tool for automating access you already have.
That boundary is not a formality, though the law around it moved in 2026. A US district court had granted a preliminary injunction against an AI agent that accessed password-protected pages through the user's own logged-in account, holding that the user's permission is not the platform's authorization. On 4 August 2026 the Ninth Circuit vacated that injunction and remanded (Amazon.com Services, LLC v. Perplexity AI, Inc., No. 26-1444, published), concluding that the operator had not "accessed" the plaintiff's computers under the CFAA at all — "it was the user who accessed [them], with the help of [the] AI agent." The California CDAFA claim failed for the same reason.
Read that narrowly. It decides who accessed a computer, not whether evading a technical block is access "without authorization"; the panel never reached circumvention. A vacated preliminary injunction on remand is not a merits ruling, and it leaves contract, terms-of-service, trespass and copyright theories entirely untouched. What it does support is the shape of the tool: the browser runs on your machine, under your login, and the reasoning leaned on exactly that — no operator computer ever touched the other side's servers.
Scraping a site's public pages, evading a wall you have no account behind, or automating an account whose terms forbid it remain decisions you are making, and the consequences are yours.
Check the terms of the site you are automating. If you are acting for someone else, get it in writing.
Apache-2.0 core. Every default-install extra is permissive too — the fetch lane's curl_cffi is MIT. The only copyleft option is the opt-in nodriver backend (AGPL-3.0) — consult licensing before integrating it commercially. Nothing GPL/AGPL ships in the base install or [all].