R-650: internal/dockerexec — every docker exec routed through it; under
go test a real docker is refused (opt-in FELHOM_TEST_REAL_DOCKER=1; a stub
under the temp dir is allowed). api/stacks/web tests run under a silent
stub (TestMain). TestR650_NoBareDockerExec pins it repo-wide.
R-640: a dump without its engine's completion marker is refused before
the first mutation (unit + off-site restore) and again before any load.
R-499: the Tier-2 page's system-disk sentence has four true branches.
R-518: the backup button states the measured ~8 min stop.
R-626: measured on 9202, not reproduced.
Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_0159rPz1ZhFKsS53msqPYxtS
R-486 (P1): removing an app with its backups KEPT keeps its Tier-2 record,
so the second-drive restore is no longer refused over an intact mirror.
R-484: postgis/pgvector/timescaledb images are Postgres (logical dumps).
R-485: the backup card sizes the recovery unit and the mirror(s).
R-480: a held update's sentence leaves the card once the hold is lifted.
R-477: the update's off-site lookup is one snapshots call, no stats.
R-478: a copy older than this install's deploy does not count.
R-474: "delete backups" deletes the unit, the mirror(s) and the prefs.
Tests and red-proofs per row; evidence in felhom.eu
documentation/audits/v0240-2026-09-13/ and nightly-2026-09-13-adventurelog/.
Every unit path helper took (nsRoot, stackName) and joined backups/primary/<stack>/... . That
hard-coded 'primary' is the mechanism of R-102: Tier-2 mirrors the whole unit directory to
<dest>/backups/secondary/<stack>/recovery-unit/ every night, and because no reader could NAME a
unit outside backups/primary/, that mirror has been captured for months and read by nothing.
Adds four unit-directory-relative primitives - UnitComposeDir, UnitManifestFile, UnitDBDumpDir,
UnitVolumeDumpDir - each taking the recovery-unit DIRECTORY itself. The four existing
(nsRoot, stackName) helpers become thin wrappers over them and keep their exact signatures and
their exact return values; every current caller compiles untouched.
ONE implementation, two callers - the rule restoreDockerVolumesFrom already follows in this repo.
TestR102_PathWrappersAreByteIdenticalToToday pins the wrappers against hand-written literals (not
re-derived from the helpers under test). Red-proof: UnitComposeDir join changed to 'compose2' ->
the test fails on all three fixtures.
writeSafetyDump called DumpOne into the app's OWN unit dir and renamed the result
to pre-restore-* afterwards. DumpOne writes <stack>-<dbtype>.sql - the app's
canonical dump - so every safety dump overwrote the app's real backup and then
moved it away, leaving the app with no database backup until the next nightly
run. A local restore-from-unit in that window tells the customer the app never
had a database.
The comment beside it asserted the rename meant it 'can never overwrite the app's
real dump'. False as written, and believed for four months. Measured live before
the fix: docmost and bookstack each held only pre-restore-* files and no
canonical dump.
DumpOneTo takes the final path and derives its own .tmp from it. DumpOne keeps
its signature and calls it with the canonical name. writeSafetyDump asks for its
own name directly; the rename is gone; the comment now states the invariant and
how it is enforced.
db_dumps no longer lists the undo copies. All three consumers of Manifest.DBDumps
were grepped and named - all inside recovery_unit.go, none reads it for recovery.
The files are neither deleted nor hidden.
Tests 1485 -> 1493. FIVE red-proofs, TWO PASSED first time and both are reported:
the behavioural tests inject the dump seam so a mutation inside DumpOneTo was
invisible, and 1.3 had no test at all. Guards added at the layer each defect
lives in; both mutations then convicted.
R-379 and R-380 were one failure. Both ended with a half-restored database; the
only difference was whether it looked broken. Postgres emptied and crash-looped;
MariaDB applied part of the dump and reported health=healthy with a zero-row
schema-version table. Measured live on demo-hp 2026-08-22.
The undo copy was already taken and already good - proven by hand that day on
both engines. Nothing in the product could apply it. Now it does, with the same
ImportDump call, before any restart and inside the DB-only window.
The WHOLE undo set, matched on this run's stamp. writeSafetyDump returned one
path for an app with two databases; a rollback on that would restore one and
leave the other half-written.
When the rollback also fails the app is HELD STOPPED (operator ruling): a running
app on a half-written database lets the customer make the damage permanent. Every
start path refuses it - customer button, appstop Recover, boot sweep - via the
shared driveStartGate, checked ABOVE its driveless early return because these
apps have no drive. The marker is ended so nothing auto-restarts it. The row goes
red. Cleared with --clear-restore-hold, an operator CLI route.
--single-transaction is a belt on Postgres only; MariaDB DDL is not transactional
and that is why the rollback is the fix.
R-381: the engine's stderr stops reaching the customer (615 bytes on MariaDB, its
middle rows out of their own database) and starts reaching the operator log,
which never had it.
R-382: the summary log prints the volume count it already held.
Undo copies resolve to their own app, are marked IsUndo, and are capped at 3 per
app, pruned from the capture side. The reported render-as-an-app symptom did NOT
reproduce - the live page was read first and had zero occurrences.
Tests 1468 -> 1483. Eight red-proofs; ONE PASSED and is reported: the R-381
behavioural test injected below ImportDump. A guard at that layer now convicts.
R-355 (first, because it is the only one where data can be lost for good). paperless-ngx's
PostgreSQL was dumped into backups/primary/paperless/db-dumps/ — a directory for a stack that
does not exist, on the system drive — while the app's own unit recorded db_dumps: null. The
same misattribution reached writeSafetyDump, so a destructive restore of that app took NO undo
copy and the fail-closed refusal was never reached. Fixed by reading the compose project label,
which is the stack name by construction (compose runs with cmd.Dir set to the stack dir and no
-p). The old derivation stays as the fallback and an unresolvable attribution is now loud.
Catalogue sweep, proven able to convict: one affected app of 53. The fix is in the controller,
not the catalogue.
R-354. ReconstituteFromOffsite skipped every unit placement and the volume archives live inside
the unit, so the off-site restore had no volume leg at all — proven live with planted files:
calibre-web's 1,422,848-byte config archive was in the unit, the snapshot and the checking
folder, and the restore reported success without it. For the 40 of 53 apps that declare no data
drive that archive is the whole dataset. restoreDockerVolumesFrom is the local path's own replay
with an explicit directory: ONE implementation, two callers. Volumes replay before the database
and inside the stopped window. VolumesReplayed reaches the message.
The comment beside the skip was half false and is corrected; the half that still holds — the
live unit is the local path's source — is named, and scenario D fingerprints the whole live unit
across the operation.
Seven red-proofs, each asserted applied and reverted. Two found defects in the tests, not the
code: scenario D passed with the unit guard removed because the fingerprint had been narrowed
and was blind to the unit root.
appbackup's path helpers take a NAMESPACE ROOT. Five call sites passed a bare DRIVE path.
On an enrolled drive the two coincide, so nothing showed; on the system-data fallback they
differ by exactly the felhom-data segment, and the app then bound a directory the off-site
capture set never looked at -- while the run reported ok. Measured live on demo-hp: the app
wrote to /mnt/sys_drive/userdata/media/books, the capture set looked for
/mnt/sys_drive/felhom-data/userdata/media/books.
THE RULE NOW HAS ONE EXPRESSION. appbackup.NamespaceRootFor / IsEnrolledDrive encode the
drive-kind comparison; backup.Manager.namespaceRoot and stacks.Manager.inGuest delegate to
it. There were already TWO copies and they differed -- the backup package's compared without
filepath.Clean, the stacks package's with it, so a trailing slash from config would have
flipped the mode in one and not the other.
Sites routed through it:
- stacks/deploy.go withPathVars -> ${USERDATA_PATH} (the live defect)
- appexport/fabplan.go + export.go (via a new provider method)
- web/handlers.go FileBrowser mounts (latent: the system drive is
deliberately never a registered StoragePath, so this is the identity today)
ComputeFabBuckets now receives the namespace root, which is what ComputeCaptureSet has always
received -- so the export's classified paths and the backup's capture set describe the same
directories by construction instead of by coincidence.
Tests are table-driven over BOTH drive kinds, because this survived by being invisible on the
kind that already worked. Red-proofs observed: restoring the bare-path call fails the
system-drive row with the two paths differing by /felhom-data; inverting the drive-kind
comparison fails every enrolled row.
The recovery unit on the customer's drive now carries the PORTABLE secret
class, so Tier-1/Tier-2 restore no longer depends on the whole-guest tier.
A customer needs the drive and nothing else.
Part 0's rulings overturned the brief's recommendation, on evidence:
- the data_key flag is untrustworthy (4+ encryption keys the catalog itself
labels as such are unflagged) -> R-127
- a DB password is not resettable in practice: POSTGRES_PASSWORD is ignored
once PGDATA is non-empty, so a regenerated value leaves the app unable to
authenticate against its own restored rows while the dump replay still
reports success (proven on a throwaway postgres:16-alpine)
Ruling (operator): type:secret travels, type:password never does, minus the
nonPortableSecrets code register. Plaintext -- withholding the internet-
reachable class is what licenses that, and the two are coupled.
Precedence: the UNIT WINS over the guest -- the unit's secrets were captured
in the same run as the dumps beside them, so they match the data being
restored. The fail-closed data-key gate is unchanged.
Secret values are never logged; the manifest records NAMES only.
Found on the demo-hp live leg: with import, import/paperless and import/calibre
in the carry-list, the derived skeleton RE-CREATES a per-drive drop-zone on every
drive forever — the dead lookalike the canonical root exists to remove, and one
that is never backed up (class: excluded).
Not a zero-removals violation: nothing deletes what an existing box has. Both
demo boxes' old drop-zones were verified to hold zero files before the change.
${IMPORT_PATH} = <system namespace root>/userdata/import — ONE drop-zone per box,
on the system drive, injected at BOTH compose-env builders with NO per-drive
fallback (unresolvable leaves it unset so compose fails loudly rather than
quietly building a second, dead drop-zone).
Third BindRoot (RootImport) + Import list in BackupSpec, extended through
ValidateBackupSpec/ClassifyBinds. Load-bearing: a stale `userdata: import/<app>`
entry against the moved bind would be a WHOLE-BLOCK reject, taking the app's
mandatory hdd classification with it.
Exhaustive-root audit: resolveAbs/structuralGuard/ComputeCaptureSet/
ComputeFabBuckets now take importRoot explicitly (an import bind resolved
against hddPath would name a directory on the wrong drive); unresolvable is
refused loudly into Skipped. GetImportRoot added to both provider interfaces.
Catalog-derived skeleton: UserdataSkeleton() -> UserdataSkeletonCarry() +
BuildUserdataSkeleton(), SORTED. The carry-list makes zero-removals true by
construction (`documents` is in no catalog app but on both boxes) and is the
fresh-box floor. The sort is not tidiness: the naive map-order derivation
measured 20 distinct outputs from 20 identical runs, which with fbNeedsRecreate
is a fleet-wide FileBrowser restart loop.
One authoritative compose parser: ParseComposeUserdataMounts now delegates to
ParseComposeClassifiableBinds. Import root excluded from per-app migration.
Surfaces: FileBrowser /srv/beolvasas source; app-page "Hova tegyem a fajlokat?"
with PathEscape deep links (never QueryEscape) and class-driven copy;
data_paths: annotation with the Fork-3 asymmetry; system-owned beolvasas SMB
share refused server-side at handler AND store, button omitted in template.
Caught on the way: the sharing template's row struct was function-local, so
adding {{if .System}} would have 500'd every share row. ShareRow is now
package-level and the render test uses the handler's own type.
Tests 915 -> 949, all green. MinAgent unchanged.
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.
Closes R-47. No new agent coupling — MinAgent stays 0.90.0.
The replay needs a running DB container, so both restore paths started the
WHOLE stack first, giving the application a window to rebuild the very schema
objects the dump was about to create. Measured live on 2026-07-19 (H4,
DIAG-immich-restore-round2): immich-server rebuilt clip_index two seconds
before the dump's CREATE INDEX, the replay aborted "already exists" under
ON_ERROR_STOP=1, and immich reported schema drift. The data survived only
because pg_dump emits COPY before CREATE INDEX.
Both paths now open a DB-ONLY window: only the stack's database service(s)
come up, the dump is replayed with the app still down, and the full start
runs only after the replay exits 0. Fail-closed: a dump with no identifiable
DB service refuses BEFORE the first mutation. Every exit from the window
still does a best-effort full start, so a failed restore never leaves a box
with a database and no application.
New: appbackup.DBServiceNames (yaml.v3 services-map parse — never a line
scan; immich's top-level volume keys are the decoy) sharing dbTypeForImage
with DiscoverDatabases; stacks.Manager.StartStackServices (refuses an empty
list — argument-less `up -d` is a full start); RedeployFromEnv split into
PersistUnitRedeployConfig + its unchanged tail. StackDataProvider's
RecreateStackFromUnit becomes RecreateStackDefinitionFromUnit — the hidden
`up -d` inside the old name is what carried the defect on the local path.
19 new tests (ordering plus state-at-replay-time, zero-mutation fail-closed
effects, replay-failure bring-up, parser decoys, empty-list refusal); three
companion red-proofs run and reverted. 23/23 packages green.
Not yet live-validated: STOP-1 supervised reconstitute, golden 0.153.0.
Closes the two findings from DIAG-immich-restore-2026-07-19. Viktor deleted 11
immich photos to test offsite restore; both runs flashed success and the photos
stayed gone. Two independent defects.
R-43 — no offsite path could restore a database. All three buttons were
file-only: the two "visszaállítás" actions staged to a scratch folder and never
touched postgres, and place-to-live merged only MISSING files. For a DB-indexed
app the bytes returned and the app still could not see them. The dump was
carried INTO every snapshot and could never be replayed OUT of one.
New ReconstituteFromOffsite (/backup/offbox/reconstitute): safety dump → stop →
files overwritten to the snapshot version → start → the snapshot's own dump
replayed → health wait. Two invariants:
- nothing is ever deleted (-a, no --ignore-existing, no --delete): a file
created after the snapshot survives as an extra;
- the undo exists before the act — the pre-restore- dump is verified ON DISK
before anything is stopped, overwritten or replayed; if it cannot be taken
the operation refuses with zero changes.
The replay reads the SCRATCH unit: the live unit is never overwritten, so
replaying from it would replay the current DB over itself and restore nothing.
R-44 — a manual push shipped an unrefreshed dump (up to ~24h old). That day's
predated the customer's account by four hours and probed to asset:0/user:0/
album:0 inside 52MB whose bulk was immich's shipped geodata. Every run, manual
AND nightly, now refreshes dumps + units BEFORE capturing. Order is the
mechanism: the gap can only ADD files the DB does not reference yet, never
remove one it does. Manifests carry offsite_run_id + dumps_at, so coherence is
verifiable at restore time rather than assumed; the periodic refresh carries a
prior stamp forward and never invents one.
Honesty surfaces, all warn-level and none a gate: unstamped (pre-v0.148) pairs
report their skew, ValidateDump gained an EXACT-match accounts-table sniff for
customer-empty dumps, the completion flash states an outcome instead of a
mechanism, and the missing-only button now says what it does NOT do.
11 tests; 5 red-proofs run and reverted. Two of those found real test weaknesses
rather than confirming strength — the first undo mutation was caught by a second
guard, and the first table-matching test did not discriminate between the two
matchers at all. Both tests were rewritten to the cases that separate them.
NOT in scope: R-41's catalog invariant check, nightly cadence, retention, quota
math, tier-2, and v0.147.x progress semantics beyond one added phase line.
Live acceptance (§9) has NOT run: no capability-map flip, customer-restore row
stays MISSING, R-3 stays DRAFT.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01P9Nn14TWGzKoqAJAiVwC2s
SQ6 over-capture FIXED for classified apps: the userdata root tar is exclude-scoped (keeps only
ancestors/descendants of a SELECTED bind relpath — R1-C, the tier2Reconcile keep-rule); no selected
userdata bind → no root tar (radarr state-only). New appbackup.ComputeFabBuckets (shared
resolveGuardCollapse pipeline; class buckets; guards over ALL classes; no cross-bucket containment).
appexport/fabplan.go: computeFabPlan + tarDirectoryExcluding + fabEstimateSplit. ExportRequest gains
DeselectOptional/OptInExcluded (both start handlers — two-call-site); mandatory is a server-side
floor. Manifest v1 + import UNTOUCHED; legacy apps byte-identical to v0.130.0. Estimate additive
class split; export UI: locked-mandatory/optional-checkboxes/excluded-opt-in + two-number warning.
All 6 §10 red-proofs verified. 6D Accept #1 now runs against this shape.
Task 2 of the backup-classification-redesign arc. Ships the referential-
coupling classification as DATA + PARSER + PURE CLASSIFIER, deliberately
inert — no backup tier changes behavior. Task 3 (tier policy engine) and
Task 4 (manual .fab UI) consume it.
- appbackup/classify.go: BackupSpec/BindSpec/ComposeBind/ClassifiedBind;
ClassifyBinds (SQ5 two-level default — explicit beats :ro; unlisted
writable→mandatory, unlisted :ro→excluded; nil spec→legacy/false);
ValidateBackupSpec (whole-block-reject on any defect, first defect named).
- stacks/classify_binds.go: ParseComposeClassifiableBinds — ${VAR}-relative
binds + :ro flag (NOT ParseComposeHDDMounts/ExportDataMounts, the traps).
- Metadata.Backup + LoadMetadata as the single validation choke point (bad
catalog block → nil + one ERROR → legacy, within one sync cycle).
- Manager.ClassifiedBinds + StackDataProvider.GetStackClassifiedBinds seam
(delegated by stackAdapter, nil-stubbed in every fake) — wired + tested
now so Task 3 consumes a tested seam.
INERT: full pre-existing suite green with zero test-logic edits. +14 tests;
red-proofs RP-1..RP-4 confirmed. The 13 catalog backup: blocks ship in the
same app-catalog change (this controller deploys first).
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01A45Qop8YY8tS94bz63LFne
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
ListDumpFiles ran ValidateDump (line-by-line scan) for every dump on every ~5-min
RefreshCache cycle — wasted I/O+CPU on large customer dumps. ListDumpFiles now takes
an optional cached(name,size,mod) lookup; on a (size+modtime) match it reuses the
prior result and skips ValidateDump. settings.DBValidationCache gains Size+ModTime;
listAllDumpFiles builds the lookup from the persisted cache and writes back only fresh
validations (cache miss), so an unchanged dump triggers neither a re-validation nor a
settings.json write each cycle. nil cached = legacy validate-always (back-compat).
Tests: cache-hit skips validate (sentinel), cache-miss validates, nil validates.
deriveStackName pure-suffix-stripped on '-' (postgres/db/mariadb/.../cache), so a
stack whose slug ENDS in a role token (e.g. 'my-cache') was misattributed (stripped
to 'my') — filing its DB dump under the wrong/nonexistent stack. Now threads the set
of deployed stack names (m.knownStackNames() <- ListDeployedStacks) into
DiscoverDatabases and cross-references: candidate suffix-strip if known, else the
container name if it IS a known stack, else longest known stack that is a prefix
(handles <stack>_postgres / <stack>-1), else legacy strip. nil/empty known = legacy
behaviour (appexport passes nil). Table test incl. the my-cache case (fails pre-fix).
The restore paths (RestoreFromRecoveryUnit + the RestoreApp fallback) repopulated
Docker volume tars but NEVER replayed the captured <stack>-<dbtype>.sql dump, so
DB-resident data (e.g. rows in a DB whose data dir is a bind mount) did not come
back — the romm marker round-trip in the audit lost the row.
New appbackup.ImportDump (read-side counterpart to DumpOne) replays a .sql/.sql.gz
into the running DB using the live container's OWN discovered credentials (no env
threading; reuses DiscoveredDB + getMariaDBPassword). backup.reimportDBDumps
orchestrates it AFTER volume restore + stack bring-up, so the logical dump WINS
over any volume-tar copy of the DB (operator-chosen precedence). pg_dump
--clean --if-exists and mariadb-dump (default --add-drop-table) make replay
idempotent; psql ON_ERROR_STOP=1 surfaces real import errors.
Also: volume-restore per-volume failures and DB-import failures now SURFACE (the
restore returns an error) instead of a swallowed WARN, so a failed data restore
cannot read as success.
Tests (restore_db_test.go, injectable discover/import seams): imports when dump+DB
present, failure surfaces, no-dump skips discovery, dump-but-no-matching-DB is a
non-fatal skip. Live DB round-trip to be validated post-deploy.
Restore recreates an app from its on-drive unit + the guest's own secrets,
regenerating nothing. reconcileRestoreSecrets (pure, unit-tested) merges the unit's
non-secret env with secrets recovered from the live app.yaml and FAILS CLOSED if a
data-encrypting key is unrecoverable (refuse — a PBS whole-guest restore is needed —
rather than regenerate and corrupt). Resettable secrets missing → warn + proceed.
- backup: RestoreFromRecoveryUnit (manifest -> recover secrets -> gate -> restore
volumes -> recreate definition + redeploy w/ re-pull); falls back to volume-only.
- seams: RecoverStackSecrets/RecreateStackFromUnit (adapter +encKey),
stacks.RedeployFromEnv. Wired into /backup/restore.
- tests: gate (refuse/proceed/verbatim) + data_key parsing.
Gate + reconcile + data_key parsing unit-tested; capture live-validated (v0.53.1).
Full readable-data e2e vs AdventureLog needs the auth-gated dashboard restore — pending.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
- Backups page: whole-guest backup shown as real DR — target label "Biztonsági szerver –
külön hardver (PBS)"; app-data "Távoli mentés" card now reflects the PBS offsite tier
(guestBackupView.Offsite) instead of "nincs beállítva".
- Model-A double-nest fix: appbackup path helpers take a felhom-data NAMESPACE ROOT (no
internal felhom-data join); backup.Manager.namespaceRoot/AppNamespaceRoot resolve
HDD-vs-systemDataPath provenance so a drive-resident app's backups land single-nested
(<drive>/backups/... on the guest = <drive>/felhom-data/backups/... on the host) instead
of .../felhom-data/felhom-data/.... Writes, deletion (GetStackBackupData/RemoveStack/
ProtectedHDDPaths), wipe-warning scan, and export updated coherently; legacy double-nest
dirs kept protected. New appbackup test asserts no doubled segment.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Extract the stateless, keep-side app-data backup primitives out of
internal/backup/ into a new self-contained internal/appbackup/ package:
- dbdump.go: DB dump discovery/execution (DiscoverDatabases, DumpOne, ...)
- appdata.go: StackDataProvider + app-data/volume discovery, HumanizeBytes
- paths.go: keep-side path helpers (AppDBDumpPath, AppVolumeDumpPath, AppDataDir)
backup/ keeps every name available via type/const aliases + one-line function
forwarders (appbackup_bridge.go), so the still-present delete-side code
(restic, cross-drive, drive-mount) and the both-side consumers (web/api/report)
compile unchanged. The keep-only consumers appexport and storage are rewired to
import appbackup directly and no longer import backup.
This is the Part-2 prerequisite for the Proxmox port: appbackup has zero
references to restic/cross-drive/drive-mount and does not import backup, so the
delete-side can later be removed without breaking app-data backup or appexport.
Behaviour-preserving: pure move + import/qualifier rewrites, no logic edits.
The four Manager methods (RunDBDumps/DumpAppVolumes/DumpAppVolumesSafe share the
delete-side mutex/status state; RestoreAppFromTier2 reads the cross-drive mirror)
intentionally stay on Manager and delegate to appbackup — for the re-platform step.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>