The notes a background run SAVES — last night's backup line, the last error, the proof
result, the restore outcome — are written in the BOX's language at the moment they are
written. A household that switches sees the previous run's note in the old language until
the next run rewrites it: the operator's §16 option 1, stated rather than hidden.
EndRestoreOp no longer receives a Hungarian literal from anywhere.
The language switch is a globe. Two text links wrapped in the sidebar footer and asked the
reader to recognise "Magyar"/"English" as links; a globe is the one symbol every web user
already reads as "language", so nobody has to read Hungarian to escape Hungarian. It is
<details>/<summary> — a menu with no script, drawn inline because the icon sprite lives
only in layout.html and the visitor pages have their own shell.
Those visitor pages get the same globe, and a visitor's choice stays theirs: a display-only
felhom_lang cookie that langFor reads ONLY when there is no session. A signed-in household
can never inherit a language a previous visitor picked in the same browser. POST /lang is
CSRF-exempt for a narrow reason written at the exemption — its only achievable effect is the
language of the page the victim's own browser shows them — and safeBackPath refuses
//evil.example as well as https://, because "starts with /" alone is not the test. §16 taken:
a successful claim carries the cookie into the household's setting.
TWO PARITY EXCEPTIONS, MEASURED: 106 fixtures compared with a real diff — exactly two change
shapes (the dashboard footer, the globe in the shells) and 5 byte-identical, which are the
three pages that must not change.
I INTRODUCED A DEADLOCK AND THE SUITE CAUGHT IT BY HANGING. UpdateOffboxStatus holds the
settings write lock while running its callback; boxLang() wants the read lock; sync.RWMutex
is not reentrant. On a real box an off-site run would have hung forever HOLDING the settings
lock. Fixed by resolving the language before the callback, and guarded by a test that names
the file and line in a second instead of hanging for 25 minutes.
MinAgent: 0.131.0 (unchanged). No hub release needed.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_0159rPz1ZhFKsS53msqPYxtS
179 Hungarian sentences were built deep inside a package with fmt.Errorf and printed by
whoever caught them: too late to translate where they are shown, too early where they are
made. Every one now carries its key across that gap. ZERO Hungarian error literals remain.
util.MsgError does three things at once, each earned:
- Error() is the Hungarian, byte for byte, so every un-converted printer is unchanged;
- errors.Is answers for the kind AND for a wrapped cause (KindErrorf dropped the cause);
- an error ARGUMENT renders recursively, so "formázás sikertelen: %w" translates whole.
A foreign error — restic, docker, ssh, the stdlib — prints verbatim. It is not ours.
76 display sites go through errText, and TestNoErrErrorInPageOutput convicts any that do
not. memoryVerdict returns an error rather than a sentence, so the deploy's 409 and the
household's language come from one value; UpdateRefusal gained a Cause to carry it.
Plurals, one rule, stated once: a key with .one/.other takes its COUNT first. Not a
per-call-site flag — the producer somebody forgot would read "3 app is not running". The
guard caught a real key collision (alert.deadapp.one) the day the rule landed.
TWO DEFECTS FOUND IN MY OWN TOOLING, recorded rather than quietly fixed. The bulk converter
silently dropped multi-line concatenations, damaging 7 producers — and the parity gate could
not see it, because every surviving fragment WAS a real base literal while the CALL had lost
text; two behaviour tests caught it. And the counting script was case-sensitive, so it said
"0 left" while five remained.
MinAgent: 0.131.0 (unchanged). No hub release needed.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_0159rPz1ZhFKsS53msqPYxtS
POST /api/stacks/{name}/update is now a guarded job answering 202:
cheap refusals (hold — R-439, busy, migration, deploying, memory via the
deploy's own memoryVerdict, a fixed 2 GB disk floor, and no restorable
Tier-2 copy) → backup-first when the proven copy is older than
update.backup_max_age (24h) → safety dump BEFORE the pin moves → pin →
pull (failure puts the pin back) → up → health (.felhom.yml check or 60 s
settle, update.health_timeout 5m). Not healthy → the app is stopped and
HELD (RestoreHold reason update_failed, same store and gate as R-379) and
the page names the backup to restore from; the pin stays. Success is only
ever update_phase=done after health (R-443). UpdateStack is deleted.
The restorable-unit predicate is EXTRACTED to backup.Tier2UnitRestorePoint
and shared with the backups page (row pinned unchanged). The copy is aged
by the last successful Tier-2 copy, not the manifest created_at — measured
on demo-hp that created_at moves only on definition changes.
Crash safety: update-journal.json before each phase; RecoverUpdates before
the boot sweep, ResumeInterruptedUpdates after the guards are wired.
Three unattended start paths ignored a hold and now honour it: the
drive-return gate (restart + boot recreate) and the nightly volume dump.
The nightly capture and Tier-2 run skip held apps so the restore point
survives. No automatic rollback — measured per-app; route back = restore.
Tests A–H across stacks/backup/api/web/cmd; six red-proofs seen to fail.
Claude-Session: https://claude.ai/code/session_0159rPz1ZhFKsS53msqPYxtS
MEASURED FIRST, then fixed. On the shipped v0.229.0, on demo-hp, an app's Tier-2 copy went from
120 082 104 B (4 database dumps + 3 named-volume tars) to 7 036 B (none of either) in ONE nightly
run, and the run recorded itself a success: 'Tier 2 copied docmost -> ... (14.9 KB, 0 leg(s), 0s)'.
Evidence: felhom.eu/documentation/audits/DRILL-r403-tier2-delete-2026-08-31/.
The mechanism was three individually-correct lines: RunTier2 guards the unit leg with os.Stat only
(does the folder exist), rsyncMirror is rsync -a --delete, and nothing between them compared source
to destination. An EMPTY unit is a folder that exists.
THE GUARD. One predicate, unitCarriesData/unitIsHollow (r403_hollow.go), asking the MANIFEST and
never the byte size - a big compose tree with no dumps is dangerous, a tiny unit for a tiny app is
fine. Fail closed on an absent or unparseable manifest. RunTier2 skips the unit leg when the source
is hollow AND the destination is not; the other legs still run, the run is not failed, and the skip
is recorded for the SURFACE (CrossDriveBackup.UnitLegSkipped + UnitPackageDate) as well as logged.
--delete STAYS and shrinking stays legal. 07 section 8 row 5's derived-copy rule is unchanged; the
fence is exactly one shape. TestR403_DataLegShrinkIsUnaffected is the guard on the guard.
THE HONESTY. A preserved package is older than the run that preserved it, so the card carries a
notice and the unit-restore confirm names the PACKAGE's date - read from the mirrored manifest's own
created_at, not from the status record - plus a clause saying why it is older.
THE CAUSE. RestoreTier2Unit now refills a hollow or absent primary unit from the mirror it just
restored from, INSIDE the call before returning. The hollow manifest was written two seconds after
a restore by the 5-minute capture job; any follow-up job races it. The capture itself is NOT guarded:
a capture describing an empty drive as empty is correct, and with the primary refilled there is no
hollow state left to describe. Never over a complete primary, never after a failed restore.
recordTier2Success and tier2UnitConfirmMsg keep their old signatures as thin callers, so no existing
test needed editing. New seam unitRehydrate, separate from tier2Mirror on purpose.
22 new Go tests. Red-proofs run and reverted: A6 (predicate -> size threshold), B1 (guard removed ->
the copy's 3 files are DELETED and the seam is called), B6 (a general never-shrink rule -> the shrink
case fails), C2 (only-when-hollow dropped -> the complete primary is overwritten).
Tier2LastRun is the attempt clock and was rendered as 'Legutóbbi másolat' in the restore
confirm dialog. New LastSuccess + SuccessTracked anchor; tier2Update makes the three
rebuild sites safe by construction. F-DIAG: six distinct causes, target-aware redaction.
gofmt -w across the controller tree (46 files) so gofmt -l is empty — disarms the
formatting landmine where a targeted edit + accidental gofmt -w swept ~46 unrelated
files. Pure formatting: whitespace + gofmt's optional-semicolon removal in reflowed
inline closures. One doc comment reworded ('' -> 'the empty string') to avoid gofmt's
Go-1.19 doc-comment typographic substitition ('' -> curly quote) muddying its meaning.
No build/vet/test behavior change.
F7/R-53: app_export.html built the app's public URL as '<sub>.{{$.CSRFToken}}',
so the "Megnyitás" link was wrong for every app with a subdomain and a session
CSRF token was written into a URL. Template now uses {{$.Domain}}, and
exportPageHandler supplies the key — it builds its own data map instead of
going through baseData, which is where every other page gets it. The page's
real CSRF path (csrfH() reading the meta tag) is correct and untouched.
The 7 red internal/backup tests are green again, with no behaviour change.
TestTier2V2_* / TestSharesTier2* all failed for one environmental reason:
Tier-2's off-drive guard asks system.SamePhysicalDevice (st_dev equality)
whether a target is really a second disk, and every t.TempDir() here shares one
filesystem — so the guard correctly refused the fixture's "two drives" and the
tests never reached their subject ("nincs másik fizikai meghajtó").
Seam in the package's existing style: a nil-defaulted Manager.samePhysicalDevice
field + sameDevice wrapper, seven call sites routed through it. Nil resolves to
system.SamePhysicalDevice, so production is byte-for-byte unchanged; only the two
fixtures inject a fake modelling one drive per directory subtree. No assertion
weakened, nothing skipped/renamed/deleted; all 7 mutation-proved.
Also: the ssh->pct-exec ASCII-grep and heredoc-credential traps are now in
CLAUDE.md's live-validation section.
Sibling shares source for the local cross-drive tier. Reuses the tier2Mirror seam,
selectTier2TargetFrom (narrow source-drive seam extracted from selectTier2Target),
tier2ReconcileRoots (pure extraction), tier2SafeRemove, the marker-LAST discipline
and the recordTier2* helpers. Per-app paths are untouched.
- shares_payload.go: deterministic _shares-manifest.json + best-effort passdb capture
- tier2_shares.go: per-source-drive legs -> cross-drive target, payload, marker LAST
- infra.SambaContainerName/SambaPassdbVolume/Mount: single source of truth for the
container identity (renderer, stacks execs, backup execs, monitor all read it)
- RESERVED-NAME finding: ValidateSMBShareName did NOT exclude a leading underscore,
so "_shares" was an accepted share name. Now refused; RunAllTier2 additionally
skips a "_shares" stack loudly as defense in depth.
- fix: shareSourceDrive returned a slash-normalised path, which made the target
selector's source-drive equality check miss (a group could target its own drive)
tier2_capture.go: classified apps get TierSecondary per-bind legs (paperless copy shrinks — export
drops); legacy apps keep the byte-identical resolver set. v2 relpath-mirroring layout
(backups/secondary/<stack>/{marker LAST, recovery-unit/, hdd/<rel>/, userdata/<rel>/}); N>1 native
(errTier2MultiDir/tier2AppDataName deleted). Migration=delete-and-rebuild + reconcile; all RemoveAll
via tier2SafeRemove (refuses outside backups/secondary/). SSD=state-only tier. selectTier2Target
never picks network storage (pinned+auto, F-6C-1). Restore reads v2 behind a marker gate.
Part 0: offbox_enlarge_blocked is a persisted one-time Load seed (opt-out sticks), not a getter
append. Part 0.5: offsite restore scratch prefers a local (non-network) path.
Full v2 test suite + all 10 §10 red-proofs verified. Destructive writes bounded to backups/secondary/.
The controller assumed an app's HDD appdata dir is always appdata/<stackName>.
paperless-ngx writes appdata/paperless (stack paperless-ngx), so every consumer
keying by stack name silently missed it via a stat-and-skip. One canonical
resolver appbackup.AppDataDirNames derives the real dir name(s) from the app's
compose ${HDD_PATH} binds; all consumers use it.
- F-S2 (tier-2): RunTier2 mirrors the resolved appdata/<name> (paperless docs
got NO tier-2 copy before). Tier2Info size + RestoreTier2Files live dir use it.
WARN when a declared appdata dir is absent. New tier2Mirror seam.
- F-S3 (migrate, NEW): all six per-app appdata legs (collision/size/copy/verify/
cleanup/skip-set) now loop resolved names. scope="app" migration of paperless
previously copied nothing and left an empty media dir (scope="all" was saved by
the merge walk). WARN on missing declared dir in the copy leg.
- Multi-dir (N>1) refusal: tier-2 backup/info/restore refuse loudly (Hungarian);
migrate supports N. No catalog app hits it today; lifted by Task 3.
- Display: storage page sums resolved dirs.
- Truth repair: the v0.130.0 "tier-2 copies the namespace wholesale" claim is
false; corrected in CHANGELOG + main.go export-adapter comment.
+9 tests; red-proofs RP-1..RP-5 all confirmed. Controller-only, no agent/hub
coupling. Task 1 of the backup-classification-redesign arc.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01A45Qop8YY8tS94bz63LFne
internal/stacks/migrate.go: crash-safe, resumable namespace migration over the
controller's /mnt RW mount. Two entry points (whole-namespace + per-app) share one
journaled pipeline: validate -> stop -> copy (rsync -a --checksum, additive; conflict-
merge walk for non-app content) -> verify -> flip+redeploy (RedeployFromEnv) -> cleanup.
CLEANUP (the only destructive step) is gated on all units verified AND all apps
redeployed. Single-flight; mutual exclusion with the backup orchestrator (Change 3).
Non-hollow tests incl. mutation-proven collision + cleanup-gate companions.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Part A of the UI-fixes/storage-spike spec.
A1: enrichHostStorageTargets sorts /api/host-metrics storage_targets
server-side and attaches friendly Hungarian labels + purpose, fixing the
#host-storage-bars reorder-on-poll bug. Display labels only — PVE storage
ids are never renamed.
A2: new GET/POST /stacks/{name}/backup Tier-2 config panel; the "2. mentés"
Beállítás button is repointed there from the dead-end deploy page. Customer
can pin a target drive or disable Tier 2; preference is preserved across the
runner's status writes. Always visible (single-SSD + non-HDD apps included).
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Tier 2 rsync-mirrors each HDD app's recovery unit + appdata to a DIFFERENT physical
disk (the only off-drive protection bind-mounted userdata can get; PBS can't reach it).
Auto-enabled, auto-target: prefer another registered drive (different physical disk via
system.SamePhysicalDevice), else the internal SSD for SMALL units only — with a
size-aware headroom guard that REFUSES rather than fill the ~8G guest rootfs, recording
an honest "needs 2nd HDD" status. Status persisted via the surviving CrossDriveBackup;
"2. mentés" UI card now populated. Daily tier2-backup job + POST /api/backup/tier2.
- backup/tier2.go (engine+selection+headroom), tier2_test.go (headroom arithmetic)
- system.SamePhysicalDevice (linux Stat_t.Dev + stub)
- handlers.go Tier2 UI population + tier2DestLabel; backups.html honest no-target reason
- fixed stale TestBackupCopiesOnPath (old felhom-data layout -> in-guest layout)
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>