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app/backend/tests/flow/test_senders.py
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Let a connector write, and publish strings bare
Two things stopped the engine commanding this house. ConnectorNode hardwired
its node function to a no-op, so an input message reaching a connector was
discarded and Art-Net's packet builder was unreachable; write() now carries
the input ports, which is additive so the contract version holds. And the MQTT
publisher JSON-encoded every payload, so "ON" went on the wire quoted and the
devices on a shared broker, which speak bare values, ignored it.

seed_house_control.py is the rig: a flow that drives the washing machine plug,
a dimmer and a colour fixture over MQTT, carries the same two as DMX on an
Art-Net node with transmit still off, and a dashboard to drive it by hand.
2026-08-20 21:57:27 +02:00

92 lines
2.9 KiB
Python

"""The outbound nodes reuse one connection instead of opening one per message."""
import asyncio
from app.flow.messages import DType, MessageSpec
from app.flow.nodes import MqttNode
from app.flow.nodes.http import close_shared_client, shared_client
def test_http_senders_share_one_pooled_client():
first = shared_client()
try:
assert shared_client() is first
finally:
close_shared_client()
# Closing lets the next request build a fresh one rather than reusing a
# closed pool.
assert shared_client() is not first
close_shared_client()
def _publisher() -> MqttNode:
node = MqttNode(
requires=[MessageSpec(name="setpoint", port="setpoint", dtype=DType.FLOAT)],
params={"topic": {"setpoint": "heating/setpoint"}},
)
node.assign_flow("heating", "out")
return node
def test_a_started_publisher_queues_instead_of_connecting():
"""The handler runs on a worker thread; it must not block on the broker."""
node = _publisher()
async def scenario() -> None:
node._publish_queue = asyncio.Queue(maxsize=4)
node._loop = asyncio.get_running_loop()
await asyncio.to_thread(node._publisher_handler, {}, setpoint=21.0)
# call_soon_threadsafe lands on the next loop pass.
await asyncio.sleep(0)
assert node._publish_queue.qsize() == 1
assert node._publish_queue.get_nowait() == {"setpoint": 21.0}
asyncio.run(scenario())
def test_a_full_publish_queue_drops_the_oldest():
"""A broker that cannot keep up must not grow the queue without bound."""
node = _publisher()
health: list[tuple[str, str | None]] = []
node._on_health = lambda _n, status, detail: health.append((status, detail))
async def scenario() -> None:
queue: asyncio.Queue[dict] = asyncio.Queue(maxsize=2)
for value in (1.0, 2.0, 3.0):
node._enqueue(queue, {"setpoint": value})
assert queue.qsize() == 2
assert queue.get_nowait() == {"setpoint": 2.0}
assert queue.get_nowait() == {"setpoint": 3.0}
assert health == [("degraded", "publish queue full")]
asyncio.run(scenario())
def test_a_string_goes_on_the_wire_bare():
"""Devices on a shared broker expect `ON`, not `"ON"`."""
class Recorder:
def __init__(self) -> None:
self.published: list[tuple[str, str]] = []
async def publish(self, topic, payload, **_):
self.published.append((topic, payload))
node = MqttNode(
requires=[
MessageSpec(name="plug", port="plug", dtype=DType.STR),
MessageSpec(name="level", port="level", dtype=DType.INT),
],
params={"topic": {"plug": "actor/plug", "level": "light/level"}},
)
node.assign_flow("house", "out")
client = Recorder()
asyncio.run(node._publish_with(client, {"plug": "ON", "level": 60}))
assert client.published == [("actor/plug", "ON"), ("light/level", "60")]