Migrated the reference site off the YAML packages and onto the add-on. Every bug below presented identically: the add-on starts, logs "started", serves its UI, and cannot do its job. - run.sh needs #!/usr/bin/with-contenv sh. s6-overlay sanitises the environment for services, so a plain shebang means SUPERVISOR_TOKEN is absent and every Core API call is 401 - while homeassistant_api: true makes permissions look granted. Startup now prints the token length and probes the API. - Supervisor keys the image by config.yaml `version`, so rebuilding without a bump reuses the old image. Two fixes appeared not to work because of it. - Alpine is musl and has no aiohttp wheel on PyPI; deps now come from apk so nothing compiles on a client's Pi. - Alpine ships paho-mqtt 1.x, which has no CallbackAPIVersion. That raised at construction and took the control loop down with it - so MQTT setup is now wrapped too. Observability must never be able to stop the controller. - MQTT discovery is published from on_connect: paho silently drops QoS-0 publishes issued before the CONNACK, so the previous code announced nothing while logging "MQTT connected". - Repeated failures now log once a minute. Six warnings a second rolled the log buffer and destroyed the startup diagnostics needed to find the 401. - auto_start could never fire, because the store's defaults always supplied auto: False for the fallback to find. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_016NckgXecasQb2eSsPYNSW6
131 lines
5.6 KiB
Python
131 lines
5.6 KiB
Python
"""Optional MQTT discovery, so the controller's state appears as real HA entities.
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Optional on purpose: the add-on runs headless without a broker and simply
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publishes nothing. Nothing in the control path depends on this - if MQTT breaks,
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the battery keeps being controlled correctly and only the dashboard goes stale.
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That separation is deliberate; observability must never be able to take down
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control.
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"""
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import json
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import logging
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try:
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import paho.mqtt.client as mqtt
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except ImportError: # pragma: no cover - container always has it
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mqtt = None
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_LOG = logging.getLogger("goodwe.mqtt")
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# ⚠️ The DEVICE name is half of every entity_id. Home Assistant composes
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# entity_id from device name + entity name, so "GoodWe RS485 Controller" plus
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# "GoodWe battery power" yields
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# sensor.goodwe_rs485_controller_goodwe_battery_power. object_id in the
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# discovery payload did NOT override it (tested on HA 2026.8). So the device is
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# named "GoodWe" and the entities are named without repeating it - that is what
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# makes the ids short, predictable, and identical on every install.
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DEVICE = {
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"identifiers": ["goodwe_rs485_controller"],
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"name": "GoodWe",
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"manufacturer": "GoodWe (via RS485 meter emulation)",
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"model": "ES/BP series",
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}
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# (key, object_id, name, unit, device_class, state_class, icon)
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#
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# ⚠️ object_id is what pins the entity_id. Without it Home Assistant derives the
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# id from the DEVICE name plus the entity name and produces
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# `sensor.goodwe_rs485_controller_goodwe_battery_power` - unpredictable, ugly,
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# and different if anyone renames the device. Dashboards and documentation need
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# these ids to be stable across every install, so they are declared, not derived.
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SENSORS = [
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("setpoint", "goodwe_setpoint", "Setpoint", "W", "power", "measurement", None),
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("grid", "goodwe_grid_power", "Grid power", "W", "power", "measurement", None),
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("battery", "goodwe_battery_power", "Battery power", "W", "power", "measurement", None),
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("soc", "goodwe_battery_soc", "Battery SoC", "%", "battery", "measurement", None),
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("phase", "goodwe_maintenance_phase", "Maintenance phase", None, None, None, "mdi:battery-sync"),
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("status", "goodwe_controller_status", "Controller status", None, None, None, "mdi:heart-pulse"),
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]
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BASE = "goodwe_ctl"
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AVAILABILITY = f"{BASE}/availability"
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class MqttPublisher:
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def __init__(self, host, port, username=None, password=None):
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self.enabled = mqtt is not None and bool(host)
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self.client = None
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if not self.enabled:
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_LOG.info("MQTT not configured - status entities will not be published")
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return
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# paho-mqtt 2.x requires a callback API version; 1.x has no such
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# argument and Alpine ships 1.x. Support both rather than pinning, so
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# the container can use the distro package instead of compiling.
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try:
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self.client = mqtt.Client(mqtt.CallbackAPIVersion.VERSION2,
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client_id="goodwe_rs485_controller")
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except AttributeError:
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self.client = mqtt.Client(client_id="goodwe_rs485_controller")
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if username:
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self.client.username_pw_set(username, password or "")
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self.client.will_set(AVAILABILITY, "offline", retain=True)
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# ⚠️ Announce from on_connect, never straight after connect(). paho
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# processes the CONNACK on its network thread, so a publish issued
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# immediately after connect() is made while still disconnected - and
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# paho DROPS QoS-0 publishes when disconnected, silently. The result is
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# an add-on that logs "MQTT connected" and creates no entities at all.
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# As a bonus, this also re-announces after every reconnect.
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self.client.on_connect = lambda *_args, **_kw: self._announce()
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try:
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self.client.connect(host, int(port), keepalive=60)
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self.client.loop_start()
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_LOG.info("MQTT connected to %s:%s", host, port)
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except OSError as err:
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_LOG.warning("MQTT connect failed (%s) - continuing without it", err)
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self.enabled = False
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def _announce(self) -> None:
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for key, object_id, name, unit, dev_class, state_class, icon in SENSORS:
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cfg = {
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"name": name,
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"object_id": object_id,
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"unique_id": f"{BASE}_{key}",
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"state_topic": f"{BASE}/{key}",
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"availability_topic": AVAILABILITY,
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"device": DEVICE,
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}
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if unit:
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cfg["unit_of_measurement"] = unit
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if dev_class:
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cfg["device_class"] = dev_class
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if state_class:
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cfg["state_class"] = state_class
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if icon:
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cfg["icon"] = icon
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self.client.publish(
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f"homeassistant/sensor/{BASE}_{key}/config",
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json.dumps(cfg), retain=True,
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)
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self.client.publish(AVAILABILITY, "online", retain=True)
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def publish(self, values: dict) -> None:
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if not self.enabled or self.client is None:
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return
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try:
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for key, value in values.items():
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if value is None:
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continue
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self.client.publish(f"{BASE}/{key}", str(value))
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except OSError as err: # pragma: no cover
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_LOG.debug("MQTT publish failed: %s", err)
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def close(self) -> None:
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if not self.enabled or self.client is None:
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return
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try:
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self.client.publish(AVAILABILITY, "offline", retain=True)
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self.client.loop_stop()
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self.client.disconnect()
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except OSError: # pragma: no cover
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pass
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