sofabaton-x — Python Library
Unofficial Python library for Sofabaton X1 / X1S / X2 universal remote hubs: a reverse-engineered protocol implementation and a man-in-the-middle proxy that sits between the hub and the official mobile app.
This is the protocol engine extracted from the Home Assistant Sofabaton X integration; the integration is its reference consumer.
Disclaimer: this project is not affiliated with or endorsed by Sofabaton. The protocol was reverse-engineered from network captures; behavior may break with future hub firmware.
What it does
- Proxy a physical hub: the library advertises itself via mDNS exactly like a real hub, the official app connects to it, and every frame is relayed, decoded and observable. The hub keeps working with the app while your application gets full visibility and control.
- Catalogs: read activities, devices, buttons, commands, macros and favorites from the hub's wire protocol.
- Control: send button/command presses, switch activities, trigger find-my-remote.
- Provisioning (protocol side): create/update/delete devices and activities, including virtual WiFi/IP devices.
- Backup / restore: export and restore hub configuration.
- Events: subscribe to hub/app connection state, activity changes, OTA progress and catalog updates.
Deliberately out of scope: executing the HTTP callbacks that virtual WiFi/IP devices define (e.g. a Roku-style ECP listener). The library carries the protocol artifacts for those features so applications can build them on top — the Home Assistant integration does exactly that.
Install
pip install sofabaton-x
Python 3.11+. The only dependency is python-zeroconf (mDNS advertising and hub discovery).
Quickstart
Find a hub, then proxy it. Blocking work runs in the event loop's executor and callbacks (plain functions or coroutines) are delivered on the loop, so application code never touches the engine threads:
import asyncio
from sofabaton import AsyncXProxy, async_discover_hubs
async def main():
hubs = await async_discover_hubs(timeout=5.0) # physical hubs; proxies filtered
if not hubs:
print("No Sofabaton hub found on this network.")
return
hub = hubs[0]
proxy = AsyncXProxy(hub_ip=hub.host) # the hub's IP is all you need
proxy.on_activity_change(lambda new, old, name: print(f"activity -> {name}"))
async with proxy:
await proxy.wait_until_controllable() # own the hub (see below)
for act_id, act in (await proxy.activities()).items():
print(f"activity {act_id}: {act['name']}")
for dev_id, dev in (await proxy.devices()).items():
for cmd in await proxy.commands(dev_id): # [{command_id, label}]
print(f"device {dev_id} ({dev['name']}): "
f"command {cmd['command_id']} = {cmd['label']}")
# Fires one real command — command 5 on device 1. Pick your own
# (entity_id, command_id) pair from the listing printed above.
await proxy.send(1, 5)
asyncio.run(main())
hub_ip is the only required argument; everything else has a sensible
default and the hub model is confirmed from the connect banner. The one
thing worth adding is the proxy's mDNS identity — pass
mdns_instance=hub.name and mdns_txt=hub.txt so the proxy advertises
itself exactly like the hub it fronts, letting the official Sofabaton
app keep working while pointed at the proxy. Skip them and the proxy still
reads and controls the hub fine; it just advertises under a generic name:
proxy = AsyncXProxy(
hub_ip=hub.host,
mdns_instance=hub.name, # advertise as the hub, so the app finds the proxy
mdns_txt=hub.txt, # carries HVER -> X1/X1S/X2 classification
)
Ports
The proxy has two network faces. Apart from hub_ip, every port defaults
to the right value — you usually only touch hub_listen_port to avoid a
local collision:
| Argument | Default | Side | What it is |
|---|---|---|---|
hub_ip |
— | hub | the physical hub's IPv4 address |
hub_port |
8102 | hub | UDP port on the hub we send CALL_ME to (protocol-fixed) |
hub_listen_port |
8200 | hub | TCP port on this host the hub connects back to |
app_discovery_port |
8102 | app | UDP port on this host the app finds + calls us on (keep 8102 for iOS) |
The hub model (X1/X1S/X2) is confirmed from the connect banner, so
hub_version is only a pre-connect hint. See
docs/networking.md
for the complete port map and firewall guidance.
Everything is keyed on (entity_id, command_id) — you browse to get
those ids, then send(entity_id, command_id). The reads return them
directly (cached if available, else fetched):
| read | returns |
|---|---|
activities() / devices() |
{id: {name, ...}} |
commands(device_id) |
[{command_id, label}] |
macros(activity_id) |
[{command_id, label}] |
favorites(activity_id) |
[{device_id, command_id, label}] |
buttons(entity_id) |
[{button_code, name, device_id, command_id}] |
current_activity() |
{activity_id, name} or None when idle |
current_activity() is the exception to the table above — it reads the
hub's live running-activity state (no fetch) and works in observe mode
too; subscribe to changes with on_activity_change(cb).
Control: send(entity_id, command_id) (alias press),
start_activity(act), stop_activity(act), find_remote().
Two modes
The proxy sits transparently between the hub and the official app, which gives it two distinct modes:
- Observe — the app is connected through the proxy. You watch
activity changes (
current_activity()/on_activity_change), connects and OTA events in real time, but the app owns the hub, so you can't issue commands. Gate onawait proxy.wait_connected(). - Control — no app attached; the proxy owns the hub, so reads fetch
fresh and commands/backup work. Gate on
await proxy.wait_until_controllable().
start() only spawns the transport; the connect handshake happens
afterwards, so await the matching readiness primitive before reading or
acting (otherwise a read raises with the reason — hub not connected, or
an app holds it).
The mode is not fixed at startup — it follows the app. If the official
app connects while you hold control, you are demoted to observe mode
immediately: send() / start_activity() return False (refused, not
raised), and reads still serve cached data but raise RuntimeError when
they would need a fresh hub fetch. When the app disconnects, control
returns on its own. Both waiters are plain state predicates, so a
long-running application can simply re-await
wait_until_controllable() whenever a send comes back False.
A CLI ships as a console script:
sofabaton discover # scan the LAN for hubs
sofabaton run --hub-ip 192.168.1.50 # proxy + interactive shell
x> status
x> activities
x> commands 1 # list (command_id, label) for device 1
x> send 1 5 # numeric ids, exactly like the Python API
x> send 101 POWER_ON # the CLI also resolves button names to codes
The last form is a CLI convenience: send (alias press) accepts either
a numeric command/button code or a ButtonName alias like POWER_ON.
The Python API itself is numeric-only — send(entity_id, command_id) —
with the ButtonName constants importable from the package root when
you want named button codes.
Runnable examples — discovery, watching a live session, taking control
of a hub, reading per-entity detail (commands/macros/favorites),
schema-versioned backup/restore, provisioning a WiFi-IP device from
scratch via restore, and building an HTTP callback listener on top of the
library — live in
sofabaton-x/examples/.
Protocol & networking docs
This library is a reverse-engineered implementation; the wire protocol and network topology are documented in the repository:
- Protocol reference —
docs/protocol/: connection flow, frame format, opcodes, data structures, hub versions and more. - Networking guide —
docs/networking.md: the full port map, the two proxy faces, firewall rules and VLAN caveats.
Stability
Names importable from the package root — from sofabaton import ...,
the set listed in sofabaton.__all__ — are the supported API and follow
semver. Everything else (sofabaton.opcode_handlers, frame parsing,
wire schemas, the proxy_* mixin modules) is internal and may change
between minor releases. The public surface is async-first by design:
AsyncXProxy is the supported entry point, and the underlying
synchronous engine (reachable via AsyncXProxy.sync when you need the
raw surface) is internal and not semver-covered. The library raises
stdlib exceptions (ValueError for malformed/unclassifiable input,
RuntimeError / TimeoutError for transport and ack failures); there
are no custom exception types. Until 1.0, pin a minor version.
Issues & release notes
Bugs and feature requests go to the shared issue tracker. For standalone library issues, include the command you ran, the terminal output or traceback, the package and Python versions, and a small reproduction snippet if possible.
Library versions are tagged sofabaton-x-vX.Y.Z; release notes live on
the
GitHub releases page.
License
MIT — see LICENSE.
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