Mesh is a mode rather than an AI profile — it has no model, tokens, reasoning or sources, so making it a profile would branch every profile-aware path on the one that has no model.
The old card totalled rsync's own logs, so it reported 'no data moved' across a link that had carried hundreds of gigabytes over SSH, the arr APIs, conf pushes and the Unraid API.
Profile order comes from the registry so sections keep their places as threads move, and the recents are capped to the same N rather than repeating everything above them.
A flat list buries 'where was I in General Chat' under whatever the tabs have been doing, since the busiest profile takes the top regardless of which card you are looking at.
Comments asserting a partner is down, being rebuilt or not yet installed are true on the day they are written and wrong afterwards, and nothing prompts anyone to revisit them. Behaviour is described generically; current state belongs in operator memory, not in tracked files.
It existed to render two fields that live in master.conf's HOST IDENTITIES group, which the shared renderer now includes — one settings surface for the page rather than two both editing the same file.
Windows with runs but no bytes say 'no data moved' rather than 0.00 GB, and rows before the byte-parser fix are excluded rather than summed into a false total.
The wizard had a Skip beside Create API Key and a second link that renamed itself Go to Scheduler/Partnership, so leaving early and finishing looked like the same action.
It was a browser flag set on click, and refreshing is the first thing anyone does when a page looks stuck — which put them back on the phase-1 panel the state exists to replace.
The mirror's own job ends in seconds while Phase 2 runs for minutes on the owner, so the screen sat unchanged on the phase-1 panel — which reads as a hang, and the reasonable response to a hang is to start clicking.
Step 1b ran the owner's SCRIPTS_ROOT path over SSH on the mirror, so it failed on every appdata install; the wizard poll expired at 5 minutes against a Phase 2 that takes over 4.
With nothing blocking but optional keys unfilled the banner rendered an empty string, so a finished onboard showed a blank panel beside a Join button still greyed at Running.
The phase-2 branch of the mirror panel returned the same Join partnership / Onboard block as the not-started state, so a finished onboard read as one that never ran.
The guard tested Tier 1 only, so onboard Step 1d's posture — Tier 1 open, every Tier 2 closed — made a healthy partner climb toward auto-offboard every 30 minutes. The counter holds intervals, not days, and was rendered raw.
Onboard now ends at Phase 2: connected, running, and saying so. Phase 3 sets the seeding gate posture and dispatches the seed. With MEDIA_SEED_ENABLED false there is no Phase 3 and the model is two phases.
A first seed is ~28 TB behind a 12.5 MB/s bwlimit, and it ran inline as Step 9d, so the
phase-2 flag every status reader depends on was written only after it finished.
A low uptime figure, a refused login and a certificate that stopped
renewing all looked the same from the row: a number, with the reason
split across NPM, an Authelia config and the directory.
The why-check goes and looks — TCP to the forward target, HTTP through
the proxy, a second handshake with verification off to tell a broken
certificate from a broken service. Forward hosts are docker names that
only resolve on NPM's network, so an unresolvable one is redirected to
the container address and the substitution is reported; a check that
could not be made must never read as a check that failed.
The access simulator walks the rules the way Authelia does and shows the
ones it stepped over, reading whichever instance the chosen host points
at rather than the one conf names — there are two here.
Cert triage counts runs rather than log lines and orders by rotation
suffix rather than mtime, both of which change the answer.