The firmware publishes status/heartbeat, system/alerts, system/info and
status/playback with retain=true. On every backend (re)connect - every
restart and every uvicorn --reload - the broker replays the last message on
each of those topics for every device that ever connected. We handled those
replays as if they had just happened:
- heartbeats: a row with received_at=now() for every device, so devices
that have been dead for months showed ONLINE for 90s after each restart
and got pinged. ~770k such rows exist locally.
- boot_report: the last boot logged again as a new reboot (the phantom
PANIC entries on the Health tab).
- alerts / other info events: logged again as new occurrences.
MQTT delivers retain=1 only for replays caused by a new subscription; live
publishes always arrive with retain=0. The flag is now passed through to the
handlers and the WS broadcast:
- heartbeat: replays are not stored. A live heartbeat is.
- {"state":"offline"} heartbeat (LWT / graceful disconnect) is no longer
stored as a sign of life. It marks the device offline immediately in
a small in-memory set (mqtt/presence.py) used by /mqtt/status and the ping
loop; a later live heartbeat clears it. Replayed offline markers also mark
offline, since a retained message is the device's last word.
- boot_report: live -> always a new boot. Replay -> stored only if it
differs from the device's latest boot row (i.e. we missed it while down).
- alerts: replay still syncs the current-alert row; history gets a row on a
live alert (even an identical repeat - faults recur) or on a replay that
changes state. Replaces the 98dd16b rule that dropped identical live alerts.
- other info events: replays are not logged.
- Frontend (DeviceList, DeviceDetail, LogsTab) ignores retained WS messages
for live updates, and flips a device offline on the offline marker instead
of marking it online.
Verified locally after a backend restart: only the 7 actually-live devices
got new heartbeat rows (none from the replays), and no boot/alert/info rows
were created.
Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
The firmware publishes boot_report on system/info and alerts on
system/alerts with retain=true. Every time the backend (re)connects - which
under uvicorn --reload means every backend file save - the broker redelivers
the last retained message and we inserted it again with occurred_at=now().
Result: the Health tab showed fresh PANIC boots and "Device reset due to
fault" alerts for a device that had been up for 4 days.
- insert_boot_event skips the insert when a row with the same
(device_serial, boot_count) already exists. boot_count is the firmware's
lifetime counter, so it uniquely identifies a boot.
- upsert_alert only writes when state/message actually changed and returns
whether it did; the alert-event history row is only added on a change.
A redelivered identical alert no longer bumps updated_at either.
Existing duplicate rows are not touched by this commit.
Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
Two efforts that landed together because the v2 topic work extends
tables the health-telemetry effort added days earlier in the same
files/functions, making them impractical to separate cleanly:
Health/diagnostics telemetry (schema, Jul 13-17):
- New Postgres tables: device_alert_events, device_boot_events,
device_ping_samples, device_diagnostics_reports, plus a `source`
column on device_logs to distinguish log origins
- Query/service layer in pg_mqtt.py and database/__init__.py for
inserting and listing this history, plus a "latest metrics" endpoint
combining most-recent diagnostics + ping RTT per device
- mqtt/router.py gains list endpoints for alert/boot/ping/diagnostics
history, consumed by the upcoming Health tab
MQTT v2 topic migration (Sep 21):
- Heartbeat payload flattened per vesper_mqtt_topic_spec_v2.md, adding
rssi/free_heap/state/ok fields
- Command replies move to control/ack, device-initiated events to
control/reports; mqtt/client.py subscribes to the new topic set and
runs a ping_loop (wired up in main.py) for RTT sampling
- mqtt/logger.py and pg_mqtt.py updated to parse and persist the new
payload shape alongside the legacy fields for backwards compatibility
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>