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m0serve

Realtime from a synchronous Python app, with no added infrastructure.

A WSGI/ASGI server written in Mojo. Point it at a Django, Flask, FastHTML or Starlette app and it serves it — no Mojo toolchain required, no compilation step, nothing to configure:

pip install m0serve
m0serve myproject.wsgi:application

What it adds over gunicorn or uvicorn is that a plain synchronous view can hold a Server-Sent Events stream or a WebSocket, by answering with two response headers — and reach every subscriber on every worker with one function call. No Channels, no Redis, no daphne, no Pushpin, no second process:

from m0serve import m0pub

def events(request):                    # an ordinary synchronous view
    r = HttpResponse(": connected\n\n", content_type="text/event-stream")
    r["M0-Hold"] = "stream"             # m0serve holds the connection open
    r["M0-Channel"] = "news"            # ...subscribed to this channel
    return r                            # Django's part in it ends here


def announce(request):                  # any view, command, or cron job
    m0pub.publish("news", "deploy finished")
    return HttpResponse("ok")

Run it with m0serve myproject.wsgi --realtime. The view runs first, with sessions and permissions in hand — which is where your auth belongs. Under gunicorn the two headers are ignored and the same view degrades to a short plain response, so adopting this is not a fork of your codebase.

The ten-minute quickstart goes from pip install to live multi-tab sync from one synchronous Django file: https://github.com/codetalcott/mojo-http/blob/main/QUICKSTART.md — every command in it is executed by CI on every pull request.

It also hosts several applications in one process, each in its native execution mode: m0serve --mount /=shop.wsgi --mount /app=live.asgi runs sync Django on handler threads and async FastHTML on an asyncio executor, behind one listener with one shutdown.

The protocol is detected from the object, so the same command serves WSGI and ASGI. m0serve --help lists the flags; --workers N, --threads N (on free-threaded CPython) and --blocking-threads N are the topology ones.

When it is up it prints one line per worker — 🔥 m0serve: myproject.wsgi: application on http://0.0.0.0:8000 (protocol=wsgi workers=4) — after the application has been imported, so "it printed" means "it is serving". For an orchestrator use --health-path /health or a TCP check rather than the log line.

If something will not start, m0serve --doctor myproject.wsgi prints a JSON report — the interpreter it resolved and the virtualenv it came from, the spec it discovered, the topology it settled on, and every startup check with the fix for the ones that failed — and exits with the code the server itself would have used. It binds nothing and imports nothing twice.

What is in the wheel

One compiled binary and the Mojo runtime it loads. No CPython — m0serve resolves libpython at run time from the interpreter it is installed beside, which is why there is no ABI tag and one wheel per platform covers CPython 3.10 through 3.14, free-threaded builds included. It has no Python dependencies and fetches nothing at install time.

Install it into the same virtual environment as your application, the way you would gunicorn or uvicorn; the console script points the embedded interpreter at that environment.

Platforms

platform status
macOS arm64 (Apple Silicon) supported
Linux x86_64 (glibc) supported
Linux aarch64 (Graviton, Ampere, arm64 Docker) supported
macOS x86_64 (Intel) not possible — Modular ships no Intel Mac toolchain
musl / Alpine, Windows not supported

The wheel's filename carries the exact macOS and glibc floors it was built against. On an older system pip declines to install it rather than installing something that crashes.

Status

Pre-1.0 and deliberately small: HTTP/1.1 only, no TLS, no HTTP/2 — terminate at a proxy, which is gunicorn's answer too. The API will change before 1.0.

Source, documentation and issues: https://github.com/codetalcott/mojo-http

Licence

MIT, and the wheel redistributes third-party components under their own terms — the Mojo runtime (Apache-2.0 with LLVM Exceptions) and a fork of lightbug_http (MIT). Full text and attribution ship inside the wheel; see NOTICE.txt beside the installed package.

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m0serve-0.14.1-py3-none-manylinux_2_35_aarch64.whl (1.4 MB view details)

Uploaded Python 3manylinux: glibc 2.35+ ARM64

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