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WebATEM

Control your Blackmagic ATEM switcher from any browser. WebATEM finds the ATEMs on your network and gives you a full control surface — switching, keyers, audio, media pool, macros — at a URL, on any device.

Download for Windows   Download for macOS   Download for Linux

Download it, open it, and your switchers appear.  ·  Intel Mac? Intel build  ·  The Linux build runs on desktop and headless servers.

Three ways to run it, all simple:

  • Just you, right nowdownload it for your Mac or Windows machine and open it. It lives in your menu bar / system tray (with a Start at login switch), opens your browser, and your switchers appear. Like ATEM Software Control, but in your browser — and on every device on the network.
  • Your whole team, always onhost it on a Linux box, VM or Raspberry Pi with one Docker command; everyone opens a URL — no installs, no accounts.
  • Already have Python?pipx install webatem, then webatem.

Every way of running it auto-discovers the ATEMs on your network (Bonjour/mDNS) and lists them by name, exactly like ATEM Software Control.

WebATEM control surface — program/preview buses, T-bar, keyers, transitions and macros


Get started

Option A — Download it (Mac, Windows)

  1. Click your platform's Download button at the top (or the Releases page).
  2. Open it. It starts a local server, opens your browser, and lists the ATEMs on your network. Pick one and you're controlling it.

That's the whole setup — nothing to install alongside it, no Python, no Docker.

While it runs it sits in the menu bar (Mac) / system tray (Windows): the icon's menu shows the address other devices can use, opens the browser again, and has a Start at login switch so it is back after every reboot. Quit is there too. Like Bitfocus Companion: the server is the app, the browser is the interface.

First-launch security prompt (the app isn't code-signed yet)

Because the downloads aren't signed with a paid developer certificate, the OS warns you the first time. One-time, then it opens normally:

  • macOS: double-click, let it get blocked, then System Settings → Privacy & Security → “Open Anyway”. (On older macOS: right-click → Open.)
  • Windows: More info → Run anyway on the SmartScreen prompt.

Removing the warning entirely requires paid Apple/Microsoft signing certificates — planned, not done yet.

Option B — Host it (a whole team; always on)

Run it on a Linux box, VM or Raspberry Pi on the same network as your ATEMs (the ATEM-Software-Control-on-a-server model). The published image is built for amd64 and arm64:

docker run -d --name webatem --network host --restart unless-stopped \
  -v webatem-data:/app/data ghcr.io/lucas-romanenko/webatem:latest

Open http://<that-box>:8000 from any device on the network. It comes back automatically on reboot. No .env file needed — every setting has a working default (SQLite DB + a generated secret key live in the webatem-data volume); see .env.example for knobs like PORT, TIME_ZONE, ALLOWED_HOSTS. Prefer Compose? The repository's compose.yml runs the same image: docker compose up -d.

Without Docker: the webatem-linux-x64 binary from the Releases page runs headless too — on a machine with no display it skips the browser and tray and prints the address to open from another device:

WebATEM is running.
  On this machine:      http://127.0.0.1:8000/atem/
  From another device:  http://192.168.1.50:8000/atem/

Keep it up with a systemd unit, tmux or nohup.

Why Linux for hosting? Discovery needs the app to see your LAN directly. That works natively on Linux (the container uses host networking). Docker Desktop on Mac/Windows runs containers in a VM that can’t see LAN discovery traffic — so on a Mac or PC, use the download (Option A) or pipx (Option C), not Docker.

Option C — pipx (you already have Python 3.10+)

pipx install webatem      # or: uvx webatem, with no install at all
webatem

Same behaviour as the download: a native process on your real network, the browser opens, the tray icon appears where there is a desktop. Prebuilt wheels for every platform mean no compiler is needed. Upgrade with pipx upgrade webatem.


Finding your switchers

Three ways, in order of magic:

  1. Automatic (Bonjour/mDNS). On the same network as your ATEMs, they show up under “On Your Network” with their names, no typing. This is what ATEM Software Control does.
  2. Scan subnet. For ATEMs that don’t advertise over Bonjour, type your subnet (e.g. 192.168.1) and hit Scan — it finds them by IP.
  3. Manual IP. Type an address and connect. Recent connections are remembered for one-click reconnect.

Automatic discovery is same-network only — Bonjour/mDNS is link-local and doesn’t cross a router or VPN (this is true of ASC too). Reaching your ATEMs over a VPN? Auto-discovery won’t see them, but Scan and manual IP work fine over the tunnel.


WebATEM vs. ATEM Software Control

ATEM Software Control (ASC) is Blackmagic’s own free control app, and it’s excellent — WebATEM isn’t trying to replace all of it. The difference is access: ASC is a desktop app tied to one machine; WebATEM is a control surface any device on your network can open (and you can still run it locally like ASC if you want).

WebATEM ATEM Software Control
Runs on Any browser — Windows, macOS, Linux, ChromeOS, iPad, phone Windows & macOS desktop only
Client install None — just open a URL Installed per machine
Access from Any device on the network The machine it’s installed on
Multiple operators One shared switcher session, many operators Each machine opens its own session
Phones / tablets ✓ Responsive
How to run Download it, host one instance for everyone (Docker), or pipx install webatem Install on each machine
Price Free, open source Free (proprietary)
Feature breadth Core: switching, keyers, Fairlight audio, media pool, macros, profiles, HyperDeck Everything, incl. camera control (CCU), streaming & recording, SuperSource
Support Community / self-hosted Official Blackmagic

Reach for ASC when you need the full feature set on one operator’s machine — camera control, streaming/recording, SuperSource, recording macros.

Reach for WebATEM when you want the core control surface available to anyone on the network, on any device or OS — a second operator on an iPad, a Linux box in the rack room, a phone at the camera position.

Features

  • Full switcher control — program/preview buses per M/E, cut/auto, transition styles (mix, dip, wipe, DVE, stinger) with per-style settings, fade to black, color generators, aux routing, source renaming that follows live switcher labels.
  • Upstream & downstream keyers — USK 1–4 (luma, chroma, pattern, DVE with fly keyframes, masks), DSKs with tie/rate/clip/gain, on-air countdowns.
  • Fairlight audio — per-strip faders, EQ, dynamics, master bus, and live audio meters streamed over WebSocket (tab-gated so idle pages cost nothing).
  • Media pool — live thumbnails of every still slot, and drag-and-drop image upload straight onto a slot (validated and resized to 1080p server-side).
  • Macros — browse and run switcher macros.
  • Save/restore switcher state — full switcher profile export/import as XML, compatible with ATEM Software Control’s “Save Switcher State”, including media pool images and macro bytecode.
  • HyperDeck transport — clip browser and play/pause/stop/loop for decks bound to the ATEM (TCP/9993), from the same page.
  • Multi-operator by design — one pooled connection per switcher shared by all operators; state fan-out over WebSockets with adaptive polling (30 ms during transitions, relaxed when idle).

Deep per-switcher settings live in the Settings panel — color generators, each upstream keyer (luma / chroma / pattern / DVE), downstream keyers, transitions, video mode, input labels, outputs and HyperDecks:

WebATEM settings panel — color generators and an upstream keyer expanded, showing HSL controls, fill-source dropdown and wipe patterns

Full Fairlight audio — a per-strip mixer with input gain, EQ and dynamics curves, faders, pan and live meters, plus a writable 6-band parametric EQ with a live frequency-response graph:

WebATEM Fairlight audio mixer — 14 strips with input, EQ, dynamics, faders, pan and meters

WebATEM 6-band parametric EQ — frequency-response curve with per-band type, frequency, gain and Q

Running it for real

  • There is no login — by design. Like the hardware panel, anyone who can reach the page can control your switchers. Keep it on the studio network. If you must expose it further, put your reverse proxy’s auth (basic auth, SSO) and TLS in front, and set CSRF_TRUSTED_ORIGINS=https://your.host.
  • Web pages can’t drive it cross-origin. The control WebSocket only accepts browser connections from the app’s own pages (same-origin), so a malicious website open in an operator’s browser can’t reach the switchers. If your reverse proxy rewrites Host, list the browser-facing host in WEBSOCKET_ALLOWED_ORIGINS.
  • It talks raw UDP to switchers on port 9910 (the ATEM protocol has no authentication — that’s the hardware, not this app), so it needs to be on a network that can reach them.
  • Single instance, by design. The switcher connection pool, media-pool watcher, and channel layer are process-local; one instance handles many switchers and operators. Don’t run several against the same switchers.
  • Stills upload/capture assume 1080p switchers (all production use so far). Non-1080p ATEMs connect and control fine; media features are untested there.

Architecture

Browser (Alpine.js + WebSockets)
   │  ws/atem/ · HTTP
   ▼
Django + Channels (single ASGI worker, uvicorn)
   │  pooled UDP session per switcher (atemwire)
   ▼
ATEM switchers (UDP 9910) · HyperDecks (TCP 9993 / FTP)
  • atemwire (PyPI) — the ATEM protocol library, a substantially modified fork of Martijn Braam's pyatem: declarative wire-format DSL, hardened UDP transport (in-order delivery, retransmit serving, clean session close), ref-counted connection pooling, native interleaved bulk transfers, macro bytecode transfer, and ASC-compatible profile save/restore. A small C extension does YCbCr↔RGB conversion. hyperdeckwire (PyPI) drives the HyperDecks. Both are pinned in pyproject.toml; a library change is a release there and a pin bump here (Dependabot opens it, CI runs, it merges itself).
  • atem_control/ — the Django app: the WebSocket consumer, a declarative command dispatch table, the media-pool watcher, LAN discovery, and the UI.
  • webatem/ — the project package: settings, the ASGI entry, the WebSocket origin guard, and launcher.py — the webatem command that runs the same web app locally, opens a browser and lives in the tray. The downloads are that launcher frozen per OS by PyInstaller (build/desktop/); the PyPI package is the same code installed by pip.
  • One tag, three deliverables. A v* tag publishes the Mac / Windows / Linux downloads to the GitHub release, the Docker image to GHCR (amd64 + arm64) and the webatem package to PyPI.
  • SQLite for persistence (connection history) — no external database.

Development

git clone https://github.com/lucas-romanenko/webatem.git
cd webatem
npm install && npm run build:css      # the stylesheet — without it the app renders unstyled
pip install -e ".[test]"              # Python 3.10+; the device libraries install as wheels
python -m webatem                     # the launcher: server + browser + tray
python -m pytest tests/ -q            # the suite (no hardware needed)

Or entirely in Docker: docker compose up -d --build runs the app and docker compose exec webatem pytest tests/ -q runs the suite in it. The suite (the command dispatch table, the T-bar, the consumer's state-change and session-cleanup rules, upload policy, tally safety, profile dialogs, the media-pool thumbnail cache, LAN discovery identity, WebSocket origin checks) runs against fake protocol layers. CI runs it on every push. The protocol libraries carry their own suites in bmdwire.

python manage.py runserver works too for plain Django development. The per-OS downloads are built by the Desktop builds workflow (pyinstaller build/desktop/webatem.spec); the control page itself is synced from its upstream application by tools/sync_from_av_server.py.

License

  • Application code: MIT.
  • The ATEM protocol library, atemwire, is a separate package (a fork of the OpenAtem pyatem library) and is LGPL-3.0-only; WebATEM uses it as an installed dependency, unmodified. hyperdeckwire is MIT.
  • Bundled frontend assets (Alpine.js and its collapse plugin, Bootstrap Icons, Tailwind/daisyUI) are MIT and the Poppins font is OFL — notices in THIRD_PARTY_LICENSES.md.

Security posture and how to report vulnerabilities: SECURITY.md.

Not affiliated with or endorsed by Blackmagic Design. ATEM and HyperDeck are trademarks of Blackmagic Design Pty Ltd. Use against production hardware at your own risk.

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