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10 changes: 10 additions & 0 deletions .github/workflows/ci.yml
Original file line number Diff line number Diff line change
Expand Up @@ -38,6 +38,16 @@ jobs:
- "3.11"
- "3.14"
runs-on: ubuntu-latest
services:
emqx:
image: emqx/emqx:6.2.3
ports:
- 1888:1883
options: >-
--health-cmd "/opt/emqx/bin/emqx ctl status"
--health-interval 5s
--health-timeout 25s
--health-retries 5
steps:
- uses: actions/checkout@v6
- name: Set up uv
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8 changes: 7 additions & 1 deletion CONTRIBUTING.md
Original file line number Diff line number Diff line change
Expand Up @@ -53,11 +53,17 @@ pre-commit run --all-files

We use `pytest` for testing. Please ensure all tests pass and add new tests for your changes.

MQTT tests require a real EMQX broker at `127.0.0.1:1888`. Start it locally with
Docker Compose before running the tests. CI provides the broker as a GitHub Actions service.

```bash
# Run tests
docker compose up -d --wait
pytest
docker compose down
```

To run only the real broker tests, use `pytest -m mqtt_broker`.

## Pull Requests

1. **Create a branch** for your changes.
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10 changes: 10 additions & 0 deletions compose.yaml
Original file line number Diff line number Diff line change
@@ -0,0 +1,10 @@
services:
emqx:
image: emqx/emqx:6.2.3
ports:
- "127.0.0.1:1888:1883"
healthcheck:
test: ["CMD", "/opt/emqx/bin/emqx", "ctl", "status"]
interval: 5s
timeout: 25s
retries: 5
2 changes: 2 additions & 0 deletions pyproject.toml
Original file line number Diff line number Diff line change
Expand Up @@ -67,6 +67,7 @@ dev = [
"syrupy>=4.9.1,<6",
"pdoc>=15.0.4,<17",
"pytest-cov>=7.0.0",
"zmqtt>=0.2.0,<0.3.0",
]

[tool.hatch.build.targets.sdist]
Expand Down Expand Up @@ -120,6 +121,7 @@ module = ["roborock.map.proto.*"]
ignore_errors = true

[tool.pytest.ini_options]
markers = ["mqtt_broker: tests requiring a real MQTT broker"]
asyncio_mode = "auto"
asyncio_default_fixture_loop_scope = "function"
timeout = 30
Expand Down
240 changes: 240 additions & 0 deletions tests/e2e/test_mqtt_broker.py
Original file line number Diff line number Diff line change
@@ -0,0 +1,240 @@
"""Test the MQTT session and channel over TCP with a real broker."""

import asyncio
import json
from collections.abc import AsyncGenerator
from uuid import uuid4

import pytest
from zmqtt import MQTTClientV5, QoS, ReconnectConfig, create_client

from roborock.data import UserData
from roborock.devices.transport.mqtt_channel import MqttChannel
from roborock.mqtt.roborock_session import create_lazy_mqtt_session, create_mqtt_session
from roborock.mqtt.session import MqttParams, MqttQos, MqttSession, MqttSessionException
from roborock.protocol import MessageParser
from roborock.roborock_message import RoborockMessage, RoborockMessageProtocol
from tests.mock_data import LOCAL_KEY, USER_DATA

pytestmark = pytest.mark.mqtt_broker


@pytest.fixture(name="mqtt_params")
def mqtt_params_fixture() -> MqttParams:
"""Use the broker exposed by Docker Compose or GitHub Actions."""
return MqttParams(
host="127.0.0.1",
port=1888,
tls=False,
username="username",
password="password",
timeout=5.0,
)


@pytest.fixture(name="session")
async def session_fixture(mqtt_params: MqttParams) -> AsyncGenerator[MqttSession, None]:
"""Create and close the production MQTT session."""
session = await create_mqtt_session(mqtt_params)
try:
assert session.connected
yield session
finally:
await session.close()


@pytest.fixture(name="peer")
async def peer_fixture(mqtt_params: MqttParams) -> AsyncGenerator[MQTTClientV5, None]:
"""Represent a device using an independent MQTT client."""
async with create_client(
mqtt_params.host,
mqtt_params.port,
version="5.0",
mqtt_connect_timeout=mqtt_params.timeout,
reconnect=ReconnectConfig(enabled=False),
) as peer:
yield peer


@pytest.fixture(name="topic")
def topic_fixture() -> str:
"""Isolate each test's traffic on the shared broker."""
return f"roborock-tests/{uuid4().hex}"


async def test_receive_message(session: MqttSession, peer: MQTTClientV5, topic: str) -> None:
"""Deliver an encrypted Roborock response to the session callback."""
messages: asyncio.Queue[bytes] = asyncio.Queue()
await session.subscribe(topic, messages.put_nowait)
response = RoborockMessage(
protocol=RoborockMessageProtocol.RPC_RESPONSE,
payload=b'{"result":"ok"}',
seq=123,
)
payload = MessageParser.build(response, local_key=LOCAL_KEY, prefixed=False)

await peer.publish(topic, payload)
received = await asyncio.wait_for(messages.get(), timeout=5)

assert received == payload
parsed, remaining = MessageParser.parse(received, local_key=LOCAL_KEY)
assert not remaining
assert len(parsed) == 1
assert parsed[0].protocol == response.protocol
assert parsed[0].seq == response.seq
assert parsed[0].payload == response.payload


@pytest.mark.parametrize("qos", list(MqttQos))
async def test_publish_message(session: MqttSession, peer: MQTTClientV5, topic: str, qos: MqttQos) -> None:
"""Deliver the full payload and requested QoS to another MQTT client."""
payload = MessageParser.build(
RoborockMessage(protocol=RoborockMessageProtocol.RPC_REQUEST, payload=b'{"method":"get_status"}'),
local_key=LOCAL_KEY,
prefixed=False,
)
async with peer.subscribe(topic, qos=QoS.EXACTLY_ONCE) as subscription:
await session.publish(topic, payload, qos=qos)
received = await asyncio.wait_for(subscription.get_message(), timeout=5)

assert received.topic == topic
assert received.payload == payload
assert received.qos == qos


async def test_subscriber_lifecycle(session: MqttSession, peer: MQTTClientV5, topic: str) -> None:
"""Fan out messages, remove callbacks, and reuse an idle subscription."""
first: asyncio.Queue[bytes] = asyncio.Queue()
second: asyncio.Queue[bytes] = asyncio.Queue()
unsub_first = await session.subscribe(topic, first.put_nowait)
unsub_second = await session.subscribe(topic, second.put_nowait)

await peer.publish(topic, b"both")
assert await asyncio.wait_for(first.get(), timeout=5) == b"both"
assert await asyncio.wait_for(second.get(), timeout=5) == b"both"

unsub_first()
await peer.publish(topic, b"second only")
assert await asyncio.wait_for(second.get(), timeout=5) == b"second only"
assert first.empty()

unsub_second()
await session.subscribe(topic, first.put_nowait)
await peer.publish(topic, b"first again")
assert await asyncio.wait_for(first.get(), timeout=5) == b"first again"
assert first.empty()
assert second.empty()


async def test_topic_routing(session: MqttSession, peer: MQTTClientV5, topic: str) -> None:
"""Keep messages for different devices separate in a shared session."""
first: asyncio.Queue[bytes] = asyncio.Queue()
second: asyncio.Queue[bytes] = asyncio.Queue()
await session.subscribe(f"{topic}/first", first.put_nowait)
await session.subscribe(f"{topic}/second", second.put_nowait)

await peer.publish(f"{topic}/first", b"first")
await peer.publish(f"{topic}/second", b"second")

assert await asyncio.wait_for(first.get(), timeout=5) == b"first"
assert await asyncio.wait_for(second.get(), timeout=5) == b"second"
assert first.empty()
assert second.empty()


async def test_restart_restores_subscriptions(session: MqttSession, peer: MQTTClientV5, topic: str) -> None:
"""Restore message delivery after the session reconnects."""
messages: asyncio.Queue[bytes] = asyncio.Queue()
await session.subscribe(topic, messages.put_nowait)
await peer.publish(topic, b"before restart")
assert await asyncio.wait_for(messages.get(), timeout=5) == b"before restart"

await session.restart()
async with asyncio.timeout(20):
while session.connected:
await asyncio.sleep(0.01)
while not session.connected:
await asyncio.sleep(0.01)

await peer.publish(topic, b"after restart")
assert await asyncio.wait_for(messages.get(), timeout=5) == b"after restart"
async with peer.subscribe(topic) as subscription:
await session.publish(topic, b"outbound after restart")
received = await asyncio.wait_for(subscription.get_message(), timeout=5)
assert received.payload == b"outbound after restart"


async def test_close(session: MqttSession, topic: str) -> None:
"""Close a connected session and reject further publications."""
await session.close()

assert not session.connected
with pytest.raises(MqttSessionException):
await session.publish(topic, b"closed")


async def test_lazy_session_subscribe(mqtt_params: MqttParams, peer: MQTTClientV5, topic: str) -> None:
"""Connect a lazy session on its first subscription and receive a message."""
session = await create_lazy_mqtt_session(mqtt_params)
assert not session.connected

messages: asyncio.Queue[bytes] = asyncio.Queue()
await session.subscribe(topic, messages.put_nowait)
assert session.connected

await peer.publish(topic, b"inbound")
assert await asyncio.wait_for(messages.get(), timeout=5) == b"inbound"

await session.close()
assert not session.connected


async def test_lazy_session_publish(mqtt_params: MqttParams, peer: MQTTClientV5, topic: str) -> None:
"""Connect a lazy session on its first publication and deliver a message."""
session = await create_lazy_mqtt_session(mqtt_params)
assert not session.connected

async with peer.subscribe(topic) as subscription:
await session.publish(topic, b"outbound")
assert session.connected
received = await asyncio.wait_for(subscription.get_message(), timeout=5)
assert received.payload == b"outbound"

await session.close()
assert not session.connected


async def test_channel_request_response(session: MqttSession, mqtt_params: MqttParams, peer: MQTTClientV5) -> None:
"""Exchange encrypted commands and responses on the device's Roborock topics."""
user_data = UserData.from_dict(USER_DATA)
duid = uuid4().hex
channel = MqttChannel(session, duid, LOCAL_KEY, user_data.rriot, mqtt_params)
request_topic = f"rr/m/i/{user_data.rriot.u}/{mqtt_params.username}/{duid}"
response_topic = f"rr/m/o/{user_data.rriot.u}/{mqtt_params.username}/{duid}"
messages: asyncio.Queue[RoborockMessage] = asyncio.Queue()
unsub = await channel.subscribe(messages.put_nowait)
async with peer.subscribe(request_topic) as subscription:
command = RoborockMessage(
protocol=RoborockMessageProtocol.RPC_REQUEST,
payload=json.dumps({"dps": {"101": json.dumps({"id": 123, "method": "get_status"})}}).encode(),
seq=456,
)
await channel.publish(command)
request = await asyncio.wait_for(subscription.get_message(), timeout=5)
parsed, remaining = MessageParser.parse(request.payload, local_key=LOCAL_KEY)
assert request.topic == request_topic
assert not remaining
assert len(parsed) == 1
assert parsed[0].protocol == RoborockMessageProtocol.RPC_REQUEST
assert parsed[0].seq == 456
assert parsed[0].payload == command.payload

response = RoborockMessage(
protocol=RoborockMessageProtocol.RPC_RESPONSE,
payload=json.dumps({"dps": {"102": json.dumps({"id": 123, "result": [{"state": 8}]})}}).encode(),
)
await peer.publish(response_topic, MessageParser.build(response, local_key=LOCAL_KEY, prefixed=False))
received = await asyncio.wait_for(messages.get(), timeout=5)
assert received.protocol == response.protocol
assert received.payload == response.payload
unsub()
11 changes: 11 additions & 0 deletions uv.lock

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