Commit Graph
5 Commits
Author SHA1 Message Date
Randalix d0a5a583cd feat(remote): wake a sleeping host when a session is created or attached
Pressing Run on a remote case whose host was asleep failed with
`could not verify tmux on remote host 192.168.50.137: …` — an ssh error that
blames tmux for a machine that is merely suspended. The only wake paths were
typed input on an established session and the banner's Wake button, so OPENING a
session (the moment the user actually decides to use that host) had none.

`RemoteWakeRegistry.ensureHostAwake()` reuses the existing probe/wake/readiness
machinery for a host that has no session yet, and is wired into the two
user-initiated create paths: `POST /api/quick-start` for a remote case (before
the tmux prereq probe, which is what surfaced the misleading error) and
`POST /api/sessions` with `attachRemoteSession`. A host without a wake target is
not even probed, so its behavior and latency are byte-identical. The wake is
blocking — the caller gets the session or an error — but bounded by
REMOTE_WAKE_REQUEST_READY_TIMEOUT_MS (40 s) instead of the 90 s session default,
because the dashboard sits behind a reverse proxy whose default
`proxy_read_timeout` is 60 s: a longer wait would be cut off at the proxy while
the session was still being created. The budget has to cover the whole request
(40 s wake + 1.5 s probe + the tmux probe's own 15 s = 56.5 s worst case), which
is why it is 40 s and not 45. A timeout now says the host did not come back, and
an unreachable host without a wake target says so instead of pointing at tmux.

The wiring is deliberately in the HTTP ROUTE, never in the shared session
service: `cron-service.ts` builds sessions there with nobody waiting on the
answer, and a wake on that path would power the host on for every schedule —
the timer-driven re-wake invariant #1 exists to prevent. Both halves are asserted
(importers of `remote-wake`, and `ensureHostAwake` having exactly one caller
file), so a future caller has to come through the guard test. A rejection from
the wake IO is caught too: a broken target must fail the wake, not the route.

`remote:hostWaking`/`remote:hostWakeFailed` now carry `forNewSession` for the
session-less case, where "input is queued" would be untrue; the toast then reads
"the session starts when it is back".

Live wake numbers are unchanged (this reuses the measured ~12 s S3 path); the
route behavior is covered by new tests in session-routes.test.ts with an injected
registry, so no test opens a real socket or ssh.
2026-09-15 22:37:37 +02:00
Randalix 8dfc965d13 fix(remote): stop the wake handlers shadowing each other; enforce the input cap
Two findings from a final review pass over the wake-on-LAN feature.

`_onRemoteHostWaking` / `_onRemoteHostWakeFailed` were defined in BOTH
`panels-ui.js` (toasts) and `host-wake-ui.js` (banner). Both files mix into
`CodemanApp.prototype` and `host-wake-ui.js` loads later, so the panels-ui copies
were silently shadowed: the toast never fired, and a wake started for a BACKGROUND
session (input on a non-active tab) produced no notification at all, since the
banner handler only acts on the active session. The handlers now live only in
`host-wake-ui.js`, show the toast unconditionally, and update the banner when the
woken session is the active one.

`appendBoundedPending` dropped only WHOLE chunks, so a single input value over the
cap (one large paste is one `input` value, up to the 100 KB input schema) was kept
in full: "bounded at 4 KB" held per chunk, not per session, and nothing was logged.
The surviving chunk's head is now trimmed too, code-point aware so a multi-byte
character is never split into a replacement char.

Adds the guard that would have caught the first one: every SSE dispatch handler must
be defined in exactly ONE frontend module. The existing test only asserts a handler
EXISTS somewhere, which two modules both satisfy while one is shadowed.
2026-09-15 21:01:53 +02:00
Randalix 2f61be6e74 fix(remote): bind the wake socket before enabling broadcast
setBroadcast() on an unbound dgram socket throws EBADF on Linux and the following
send fails with EACCES, so the magic packet silently never left the machine — the
feature reported a wake that never happened. Caught by waking a real sleeping host
(a unit test with a real UDP broadcast would not be welcome in CI, so the socket is
injectable and the bind-before-setBroadcast ORDER is asserted).
2026-09-15 14:24:13 +02:00
Randalix 8b5a13435a feat(remote): host-unreachable banner, manual wake, and native MAC wake-on-LAN
The reactive wake (typing into a session whose host slept) left the state invisible:
nothing told the user the machine was asleep, and with no wake target configured
there was nothing to do about it. Adds:

- RemoteHost.wakeMac (comma-separated) - Codeman builds and broadcasts the magic
  packet itself (UDP port 9), so the common case needs no external script. The
  existing wakeCommand stays as the explicit override.
- GET /api/sessions/:id/reachability - probes (throttled, cached, and it never
  wakes) and reports HOW the host can be woken, or that nothing is configured.
- POST /api/sessions/:id/wake - wakes, waits, reattaches the pane and flushes
  buffered input; 400 with a routable message when no target is configured.
- The amber host-unreachable banner + its 'Wake' / 'Configure WoL' action, and a
  small config dialog that saves via PUT /api/remote-hosts/:id.
- RemoteWakeDeps.resolveRemote: host config is re-resolved for LIVE sessions
  (throttled + cached), so saving the dialog takes effect without a restart.
2026-09-15 14:20:31 +02:00
Randalix a81f430e41 feat(remote): wake a sleeping host from user input (Wake-on-LAN)
A durable remote session survives SSH drops (COD-104/108), but nothing brought
the HOST back: after the remote machine suspended, the local tmux pane's ssh
child stalled silently and `send-keys` SUCCEEDS against it, so typed input
vanished with no error anywhere.

Add an optional per-host `wakeCommand` (Wake-on-LAN wrapper, e.g. whuff) that
the input route runs when a wake-enabled host is unreachable: input is buffered,
the host is woken, the pane is reattached, and the buffer is flushed in order.
Detection is a throttled bare TCP probe on wake-enabled hosts only, and only
REAL user input may wake a host - the auto-reconnect watcher and boot recovery
deliberately cannot, or the host would be re-woken seconds after every suspend
and could never stay asleep.
2026-09-15 10:25:52 +02:00