package web import ( "context" "encoding/json" "fmt" "net/http" "net/url" "strconv" "strings" "time" "gitea.dooplex.hu/admin/felhom-controller/internal/backup" "gitea.dooplex.hu/admin/felhom-controller/internal/settings" ) // Off-box (NAS) restic-SFTP backup handlers (Part B). Form POSTs that redirect to /backups with a flash. // The SSH private key + known-host line are provided out-of-band by the operator (textareas) and written // to 0600/0644 files by the backup Manager; they are NEVER echoed back, logged, or stored in settings. // offboxRedirect sends the customer back to the Távoli mentés page with a flash (success or // error) message (v0.124.0 IA split: the offbox controls live on /backups/remote; the // restore-to-verify flow redirects to /backups/restore via offboxRedirectTo). func offboxRedirect(w http.ResponseWriter, r *http.Request, msg string, isErr bool) { offboxRedirectTo(w, r, "/backups/remote", msg, isErr) } func offboxRedirectTo(w http.ResponseWriter, r *http.Request, page, msg string, isErr bool) { q := "flash" if isErr { q = "flash_error" } // R-48: `page` may already carry a query (the wizard is /backups/restore/app?name=), so the // separator has to be chosen, not hardcoded — appending a second "?" produces a URL whose flash // silently lands inside the `name` value instead of as its own parameter. sep := "?" if strings.Contains(page, "?") { sep = "&" } http.Redirect(w, r, page+sep+q+"="+url.QueryEscape(msg), http.StatusFound) } // offboxConfigHandler saves the off-box target + (out-of-band) SSH key + known_hosts. func (s *Server) offboxConfigHandler(w http.ResponseWriter, r *http.Request) { if s.backupMgr == nil { offboxRedirect(w, r, "A mentéskezelő nem elérhető.", true) return } _ = r.ParseForm() host := strings.TrimSpace(r.FormValue("host")) user := strings.TrimSpace(r.FormValue("user")) repoPath := strings.TrimSpace(r.FormValue("repo_path")) port, _ := strconv.Atoi(strings.TrimSpace(r.FormValue("port"))) if port == 0 { port = 22 } sshKey := r.FormValue("ssh_key") knownHosts := r.FormValue("known_hosts") if host == "" || user == "" || repoPath == "" { offboxRedirect(w, r, "A cél címe, a felhasználó és a tárhely útvonala kötelező.", true) return } if !strings.HasPrefix(repoPath, "/") { offboxRedirect(w, r, "A tárhely útvonalának abszolútnak kell lennie (/-rel kezdődjön).", true) return } // Validate BEFORE persisting — host/user/repo flow into the ssh command restic runs; reject anything // that could inject an ssh option (leading '-') or a metacharacter (the security boundary). if err := backup.ValidateOffboxTarget(&settings.OffboxTarget{Host: host, User: user, RepoPath: repoPath, Port: port}); err != nil { offboxRedirect(w, r, "Érvénytelen beállítás: "+err.Error(), true) return } // First-time config requires the SSH key + a pinned known-host line (no blind TOFU). existing := s.backupMgr.OffboxConfigured() if !existing && (strings.TrimSpace(sshKey) == "" || strings.TrimSpace(knownHosts) == "") { offboxRedirect(w, r, "Az első beállításhoz az SSH privát kulcs és a célgép ismert-host sora is kötelező.", true) return } // Write secrets out-of-band (0600 key/pw, 0644 known_hosts); never logged. if err := s.backupMgr.WriteOffboxSecrets(sshKey, knownHosts); err != nil { s.logger.Printf("[ERROR] [web] offbox secrets: %v", err) offboxRedirect(w, r, "A hitelesítő adatok mentése sikertelen.", true) return } prev := s.settings.GetOffboxTarget() tgt := &settings.OffboxTarget{ Enabled: r.FormValue("enabled") == "on" || r.FormValue("enabled") == "true", Host: host, Port: port, User: user, RepoPath: repoPath, Schedule: "daily", } if prev != nil { // preserve runtime status fields across an edit tgt.LastRun, tgt.LastStatus, tgt.LastError = prev.LastRun, prev.LastStatus, prev.LastError tgt.LastDuration, tgt.RepoSizeHuman, tgt.SnapshotCount = prev.LastDuration, prev.RepoSizeHuman, prev.SnapshotCount tgt.LastWarning = prev.LastWarning tgt.EscrowState = prev.EscrowState tgt.RepoSizeBytes = prev.RepoSizeBytes tgt.EnlargedBlocked = prev.EnlargedBlocked } // fork-4: enabling offsite stages the repo password to the agent for the R-escrow ceremony and marks // it PENDING — no offsite RUN proceeds until escrow is confirmed (atomicity). Re-editing an already // escrowed target keeps it escrowed (WriteOffboxSecrets leaves the password unchanged). A stage-push // failure does NOT mark escrowed; it is surfaced (the run gate still protects data). stageErr := "" if tgt.Enabled { if tgt.EscrowState != "escrowed" { tgt.EscrowState = "pending" } if client, cerr := s.agentClient(); cerr != nil { stageErr = " — a kulcs letéti előkészítése nem sikerült (az ügynök nem elérhető); próbáld újra." s.logger.Printf("[WARN] [web] offbox escrow stage: agent client: %v", cerr) } else if err := s.backupMgr.PushOffboxPasswordForEscrow(r.Context(), client.StageEscrowSecret); err != nil { stageErr = " — a kulcs letéti előkészítése nem sikerült; próbáld újra." s.logger.Printf("[WARN] [web] offbox escrow stage: %v", err) // err carries no secret } } if err := s.settings.SetOffboxTarget(tgt); err != nil { offboxRedirect(w, r, "A beállítás mentése sikertelen.", true) return } s.logger.Printf("[INFO] [web] off-box target configured: %s@%s:%s (port %d, enabled=%v, escrow=%s)", user, host, repoPath, port, tgt.Enabled, tgt.EscrowState) s.reportTriggerNow() // v0.139.0: offsite enable/disable reaches the hub in seconds offboxRedirect(w, r, "A távoli mentési cél elmentve."+stageErr, stageErr != "") } // offboxConfirmEscrowHandler marks the offsite repo password as escrowed under R (fork-4). // DEPRECATED FALLBACK (SLICE 3): the PRIMARY path is the hub-verified auto-confirm // (report.EscrowAutoConfirmer — flips on a hash match in the report ACK, no operator involved). This // manual endpoint stays for LEGACY blobs recorded before the hash existed (e.g. the demo's) — they have // no restic_pw_sha256 and can never auto-confirm; the operator vouches by hand after a verified ceremony. func (s *Server) offboxConfirmEscrowHandler(w http.ResponseWriter, r *http.Request) { if s.backupMgr == nil || !s.backupMgr.OffboxConfigured() { offboxRedirect(w, r, "A távoli mentési cél nincs beállítva.", true) return } if err := s.settings.UpdateOffboxStatus(func(o *settings.OffboxTarget) { o.EscrowState = "escrowed" o.CeremonyCompletedAt = "" // v0.138.0: clear the awaiting-card stamp on confirm }); err != nil { offboxRedirect(w, r, "A beállítás mentése sikertelen.", true) return } s.logger.Printf("[INFO] [web] off-box escrow confirmed — offsite runs enabled") // Fork-4 hygiene: the staged copy on the agent has served its purpose — wipe it. Best-effort: a wipe // failure is logged LOUDLY but does not fail the confirm (the state flip is the primary effect; a // lingering file is a hygiene gap, not a correctness one — re-confirm retries the wipe). if err := s.wipeStagedEscrow(r.Context()); err != nil { s.logger.Printf("[ERROR] [web] escrow confirmed but the agent-staged secret was NOT wiped (re-confirm to retry): %v", err) } offboxRedirect(w, r, "A kulcs letétbe helyezése megerősítve — a távoli mentés mostantól futhat.", false) } // wipeStagedEscrow calls the injected seam (tests), else the agent's DELETE /escrow/stage-secret over the // pinned local-API channel (agent >= v0.78.0). func (s *Server) wipeStagedEscrow(ctx context.Context) error { if s.wipeStagedEscrowFn != nil { return s.wipeStagedEscrowFn(ctx) } client, err := s.agentClient() if err != nil { return err } wctx, cancel := context.WithTimeout(ctx, 15*time.Second) defer cancel() return client.WipeStagedEscrowSecret(wctx) } // offboxInjectPasswordHandler pre-places a RECOVERED repo password at the offbox password path (fork-4 DR // seam) so a subsequent configure uses it and the existing offsite repo opens. Operator/DR only; the value // is never logged. Body: {password, force?}. func (s *Server) offboxInjectPasswordHandler(w http.ResponseWriter, r *http.Request) { if s.backupMgr == nil { offboxRedirect(w, r, "A mentéskezelő nem elérhető.", true) return } _ = r.ParseForm() pw := r.FormValue("password") force := r.FormValue("force") == "on" || r.FormValue("force") == "true" if strings.TrimSpace(pw) == "" { offboxRedirect(w, r, "A repo jelszó kötelező.", true) return } if err := s.backupMgr.InjectOffboxPassword(pw, force); err != nil { offboxRedirect(w, r, "A jelszó beállítása sikertelen: "+err.Error(), true) return } s.logger.Printf("[INFO] [web] off-box repo password injected (DR pre-place, force=%v)", force) offboxRedirect(w, r, "A helyreállított repo jelszó beállítva.", false) } // offboxToggleHandler flips an app's off-box inclusion. func (s *Server) offboxToggleHandler(w http.ResponseWriter, r *http.Request) { _ = r.ParseForm() app := strings.TrimSpace(r.FormValue("app")) on := r.FormValue("enabled") == "on" || r.FormValue("enabled") == "true" if app == "" { offboxRedirect(w, r, "Hiányzó alkalmazás.", true) return } if err := s.settings.SetAppOffbox(app, on); err != nil { offboxRedirect(w, r, "A beállítás mentése sikertelen.", true) return } s.reportTriggerNow() // v0.139.0: per-app offsite toggle reaches the hub in seconds offboxRedirect(w, r, "A távoli mentés beállítása frissítve.", false) } // offboxRunHandler triggers an off-box backup now (async — it can run for minutes). func (s *Server) offboxRunHandler(w http.ResponseWriter, r *http.Request) { if s.backupMgr == nil || !s.backupMgr.OffboxConfigured() { offboxRedirect(w, r, "A távoli mentési cél nincs beállítva.", true) return } // fork-4 atomicity: refuse the run until the repo password is escrowed under R. if !s.backupMgr.OffboxRunnable() { offboxRedirect(w, r, "A távoli mentés a kulcs letétbe helyezésére vár.", true) return } // Offsite-repo continuity (v0.142.0): an ORPHANED repo can't be written — route the customer to the // orphan card's explanation/reset instead of attempting a doomed write. if s.backupMgr.OffboxOrphaned() { offboxRedirect(w, r, "A távoli tároló elárvult — előbb indíts új távoli mentést a kártyán látható módon.", true) return } go func() { ctx, cancel := context.WithTimeout(context.Background(), 3*time.Hour) defer cancel() // ...WithProgress: this is the MANUAL trigger, so the page gets live bytes/percent/current app // (4c). The nightly scheduler keeps calling RunOffboxBackup and stays silent. if err := s.backupMgr.RunOffboxBackupWithProgress(ctx); err != nil { s.logger.Printf("[WARN] [web] manual off-box backup failed: %v", err) } }() offboxRedirect(w, r, "A távoli mentés elindult — az állapot itt frissül.", false) } // offboxResetHandler is the CLAIMED confirmed orphaned-repo reset (Scenario C): move the old (recovery- // code-recoverable) history aside — never delete — and init a fresh repo. Refuses unless orphaned AND // explicitly confirmed (confirm=1, set by the reveal-then-confirm block on the orphan card). func (s *Server) offboxResetHandler(w http.ResponseWriter, r *http.Request) { if s.backupMgr == nil || !s.backupMgr.OffboxConfigured() { offboxRedirect(w, r, "A távoli mentési cél nincs beállítva.", true) return } if !s.backupMgr.OffboxOrphaned() { offboxRedirect(w, r, "Az offsite tároló nincs elárvult állapotban.", true) return } if r.FormValue("confirm") != "1" { offboxRedirect(w, r, "A visszaállításhoz megerősítés szükséges.", true) return } go func() { ctx, cancel := context.WithTimeout(context.Background(), 5*time.Minute) defer cancel() if err := s.backupMgr.ResetOrphanedRepo(ctx); err != nil { s.logger.Printf("[WARN] [web] offbox orphaned-repo reset failed: %v", err) } }() offboxRedirect(w, r, "Új távoli mentés indítása folyamatban — a régi előzmény félretéve (nem törölve).", false) } // offboxStatusHandler (Part C) is the poll source for the remote-backup run status — the page polls it // after "Távoli mentés most" and flips to the terminal state without a manual reload. Session-auth'd. func (s *Server) offboxStatusHandler(w http.ResponseWriter, r *http.Request) { t := s.settings.GetOffboxTarget() resp := map[string]any{"status": "", "snapshots": 0, "orphaned": false} if t != nil { resp["status"] = t.LastStatus resp["snapshots"] = t.SnapshotCount resp["last_run"] = t.LastRun resp["last_duration"] = t.LastDuration resp["repo_size_human"] = t.RepoSizeHuman resp["last_error"] = t.LastError resp["orphaned"] = t.RepoState == "orphaned" } // v0.147.0 (4c): live progress for a MANUAL run. Absent/inactive on the nightly path, so the // page simply keeps its previous „Fut…" behavior there. if s.backupMgr != nil { resp["progress"] = s.backupMgr.OffboxProgressSnapshot() } w.Header().Set("Content-Type", "application/json") _ = json.NewEncoder(w).Encode(resp) } // offboxRestoreHandler restores an app's off-box data to an on-data-drive scratch dir (§7, F-A1; // non-destructive — does NOT overwrite live data). mode=unit (default) restores the recovery unit // only; mode=full is size-gated and two-step (first POST computes the size + headroom and redirects // with a reveal cue; the revealed confirm POSTs mode=full&confirm=1, re-checked at execution). func (s *Server) offboxRestoreHandler(w http.ResponseWriter, r *http.Request) { if s.backupMgr == nil || !s.backupMgr.OffboxConfigured() { offboxRedirectTo(w, r, "/backups/restore", "A távoli mentési cél nincs beállítva.", true) return } _ = r.ParseForm() app := strings.TrimSpace(r.FormValue("app")) if app == "" { offboxRedirectTo(w, r, "/backups/restore", "Hiányzó alkalmazás.", true) return } mode := strings.TrimSpace(r.FormValue("mode")) if mode == "" { mode = "unit" } // Step 1 of the full two-step: compute size + headroom BEFORE any restic restore; on a refusal // flash the Hungarian reason, else redirect with the reveal params (size shown before starting). if mode == "full" && r.FormValue("confirm") != "1" { pctx, cancel := context.WithTimeout(context.Background(), 3*time.Minute) defer cancel() sizeHuman, err := s.backupMgr.OffboxRestorePrepareFull(pctx, app) if err != nil { offboxRedirectTo(w, r, restoreWizardPath(app), err.Error(), true) return } // R-48: the size-gate reveal now lands on the app's wizard (prepare-confirm step) rather than // on the list page. Same params, same meaning — only the surface that renders them changed. http.Redirect(w, r, restoreWizardPath(app)+"&full_prep="+url.QueryEscape(app)+"&full_size="+url.QueryEscape(sizeHuman), http.StatusFound) return } // Fast-path refuse a concurrent op, then run async on a BACKGROUND context (a proxy read-timeout on // r.Context() would CANCEL the SFTP restore mid-flight — the F4 lesson). if s.backupMgr.IsRunning() { offboxRedirectTo(w, r, restoreWizardPath(app), "Egy mentési/visszaállítási művelet már fut.", true) return } full := mode == "full" s.backupMgr.BeginRestoreOp("offbox-restore", app) go func() { ctx, cancel := context.WithTimeout(context.Background(), 30*time.Minute) defer cancel() if err := s.backupMgr.RestoreOffboxScratch(ctx, app, full); err != nil { s.logger.Printf("[ERROR] [web] off-box restore %s (full=%v, async): %v", app, full, err) s.backupMgr.EndRestoreOp(false, "A visszaállítás sikertelen: "+err.Error()) return } s.logger.Printf("[INFO] [web] off-box restore %s completed (full=%v, async)", app, full) // NAME THE RESULT (v0.147.0, 4a). The old message said the app had been restored "to a // verification folder on the drive" — which folder, on which drive, was invisible, so the // customer had no way to look at what they had just asked for. Resolve the real path and say // it. Fall back to the vague wording only if the path can no longer be resolved. where := s.backupMgr.OffsiteRestoreScratchPath(app) msg := "A(z) " + app + " visszaállítva ellenőrző mappába a meghajtón (a meglévő adatok változatlanok)." if where != "" { msg = "A(z) " + app + " visszaállítva ellenőrző mappába: " + where + " (a meglévő adatok változatlanok)." } s.backupMgr.EndRestoreOp(true, msg) }() offboxRedirectTo(w, r, restoreWizardPath(app), "A távoli visszaállítás elindult — az állapot itt frissül.", false) } // offboxReconstituteHandler is the TRUE offsite restore (R-43, v0.148.0): files overwritten to the // snapshot's version + that same snapshot's database replayed + the app restarted, with a safety // dump of the current database taken first. // // It is a separate button from the missing-only place, not a flag on it. The two do opposite things // to an existing file, and the v0.147 flash („hiányzó fájljai helyreállítva") described a mechanism // that could report success after merging zero files while the customer's photos stayed invisible. // The flash here states the OUTCOME instead — file count, database, backup timestamp, restart — // because that is the only part the customer can check against what they see in the app. func (s *Server) offboxReconstituteHandler(w http.ResponseWriter, r *http.Request) { if s.backupMgr == nil || !s.backupMgr.OffboxConfigured() { offboxRedirectTo(w, r, "/backups/restore", "A távoli mentési cél nincs beállítva.", true) return } _ = r.ParseForm() app := strings.TrimSpace(r.FormValue("app")) if app == "" { offboxRedirectTo(w, r, "/backups/restore", "Hiányzó alkalmazás.", true) return } // This one overwrites live files and replays a database — it must never happen on a stray click. if r.FormValue("confirm") != "1" { offboxRedirectTo(w, r, restoreWizardPath(app), "A teljes visszaállítás megerősítés nélkül nem hajtható végre.", true) return } if s.backupMgr.IsRunning() { offboxRedirectTo(w, r, restoreWizardPath(app), "Egy mentési/visszaállítási művelet már fut.", true) return } s.backupMgr.BeginRestoreOp("offbox-reconstitute", app) go func() { ctx, cancel := context.WithTimeout(context.Background(), 60*time.Minute) defer cancel() res, err := s.backupMgr.ReconstituteFromOffsite(ctx, app) if err != nil { s.logger.Printf("[ERROR] [web] off-box reconstitute %s (async): %v", app, err) s.backupMgr.EndRestoreOp(false, "A teljes visszaállítás sikertelen: "+err.Error()) return } s.logger.Printf("[INFO] [web] off-box reconstitute %s completed (async): files=%d dbs=%d snapshot=%s", app, res.FilesPlaced, res.DBsReplayed, res.SnapshotID) s.backupMgr.EndRestoreOp(true, reconstituteOutcomeMsg(app, res)) }() offboxRedirectTo(w, r, restoreWizardPath(app), "A teljes visszaállítás elindult — az állapot itt frissül.", false) } // reconstituteOutcomeMsg builds the OUTCOME flash for a completed reconstitution. Pure, so the // wording is unit-testable — this string is the customer's only evidence that the operation did // what its label promised, and the zero-file and no-database cases must each read truthfully rather // than borrowing the confident sentence that belongs to the full case. func reconstituteOutcomeMsg(app string, res backup.OffsiteReconstituteResult) string { when := "" if !res.DumpsAt.IsZero() { when = " (mentés: " + res.DumpsAt.In(getTimezone()).Format("2006-01-02 15:04") + ")" } if res.DBsReplayed == 0 { // A no-database app: saying "és az adatbázis" here would be a lie, and this is precisely the // class of sentence the DIAG found being printed over a no-op. return fmt.Sprintf("A(z) %s: %d fájl visszaállítva%s — az alkalmazás újraindult. Ennek az alkalmazásnak nincs adatbázisa.", app, res.FilesPlaced, when) } return fmt.Sprintf("A(z) %s: %d fájl és az adatbázis visszaállítva%s — az alkalmazás újraindult.", app, res.FilesPlaced, when) } // offboxVerifyCopyDeleteHandler removes ONE verification copy (v0.147.0, 4a). // // The only delete this slice adds, so it is deliberately narrow: it names a STACK, never a path — the // customer cannot hand us a path to remove. The Manager resolves that name inside a // `backups/offsite-restore` root it computed itself and refuses anything that lands outside (see // DeleteOffsiteRestoreCopy). The template double-confirms before POSTing. // // It refuses while a backup/restore op is running: the copy being deleted could be the one currently // being written. func (s *Server) offboxVerifyCopyDeleteHandler(w http.ResponseWriter, r *http.Request) { if s.backupMgr == nil { offboxRedirectTo(w, r, "/backups/restore", "A mentéskezelő nem érhető el.", true) return } _ = r.ParseForm() stack := strings.TrimSpace(r.FormValue("stack")) if stack == "" { offboxRedirectTo(w, r, "/backups/restore", "Hiányzó ellenőrző másolat.", true) return } if r.FormValue("confirm") != "1" { offboxRedirectTo(w, r, "/backups/restore", "A törlés megerősítés nélkül nem hajtható végre.", true) return } if s.backupMgr.IsRunning() { offboxRedirectTo(w, r, "/backups/restore", "Egy mentési/visszaállítási művelet fut — a törlés most nem biztonságos.", true) return } if err := s.backupMgr.DeleteOffsiteRestoreCopy(stack); err != nil { s.logger.Printf("[WARN] [web] verification-copy delete %s: %v", stack, err) offboxRedirectTo(w, r, "/backups/restore", "A másolat törlése nem sikerült: "+err.Error(), true) return } s.logger.Printf("[INFO] [web] verification copy deleted: %s", stack) offboxRedirectTo(w, r, "/backups/restore", "Az ellenőrző másolat törölve. A tényleges adataid változatlanok.", false) } // offboxPlaceHandler places a COMPLETED full-restore scratch into the app's live locations via a // missing-only merge (§7.3). Never overwrites existing files. Async on a background context. func (s *Server) offboxPlaceHandler(w http.ResponseWriter, r *http.Request) { if s.backupMgr == nil || !s.backupMgr.OffboxConfigured() { offboxRedirectTo(w, r, "/backups/restore", "A távoli mentési cél nincs beállítva.", true) return } _ = r.ParseForm() app := strings.TrimSpace(r.FormValue("app")) if app == "" { offboxRedirectTo(w, r, "/backups/restore", "Hiányzó alkalmazás.", true) return } if s.backupMgr.IsRunning() { offboxRedirectTo(w, r, restoreWizardPath(app), "Egy mentési/visszaállítási művelet már fut.", true) return } s.backupMgr.BeginRestoreOp("offbox-place", app) go func() { ctx, cancel := context.WithTimeout(context.Background(), 30*time.Minute) defer cancel() if err := s.backupMgr.PlaceOffsiteRestore(ctx, app); err != nil { s.logger.Printf("[ERROR] [web] off-box place %s (async): %v", app, err) s.backupMgr.EndRestoreOp(false, "A helyreállítás sikertelen: "+err.Error()) return } s.logger.Printf("[INFO] [web] off-box place %s completed (async)", app) s.backupMgr.EndRestoreOp(true, "A(z) "+app+" hiányzó fájljai helyreállítva az élő adatok közé.") }() offboxRedirectTo(w, r, restoreWizardPath(app), "A helyreállítás elindult — az állapot itt frissül.", false) } // --- R-7b: „Megosztások" restore ------------------------------------------------------------------ // // A SIBLING of the per-app restore pair above, not a special case of it: the shares source has no // recovery unit and no per-app toggle, so it gets its own two-step flow (restore to scratch, then a // deliberate place-to-live). The display name is always „Megosztások" — the reserved `_shares` key // never reaches a customer-facing surface. // sharesRestoreHandler restores the latest shares snapshot into an on-data-drive scratch dir // (POST /backup/shares/restore). Non-destructive: nothing live is touched until the place action. func (s *Server) sharesRestoreHandler(w http.ResponseWriter, r *http.Request) { if s.backupMgr == nil || !s.backupMgr.OffboxConfigured() { offboxRedirectTo(w, r, "/backups/restore", "A távoli mentési cél nincs beállítva.", true) return } if s.backupMgr.IsRunning() { offboxRedirectTo(w, r, "/backups/restore", "Egy mentési/visszaállítási művelet már fut.", true) return } s.backupMgr.BeginRestoreOp("shares-restore", backup.SharesDisplayName) go func() { ctx, cancel := context.WithTimeout(context.Background(), 30*time.Minute) defer cancel() if err := s.backupMgr.RestoreSharesScratch(ctx); err != nil { s.logger.Printf("[ERROR] [web] shares restore (async): %v", err) s.backupMgr.EndRestoreOp(false, "A megosztások visszaállítása sikertelen: "+err.Error()) return } s.logger.Printf("[INFO] [web] shares restore completed (async)") s.backupMgr.EndRestoreOp(true, "A megosztások visszaállítása elkészült — most helyreállíthatod az élő adatok közé.") }() offboxRedirectTo(w, r, "/backups/restore", "A megosztások visszaállítása elindult — az állapot itt frissül.", false) } // sharesPlaceHandler merges a completed shares scratch into the live share folders, re-adds the // missing definitions and restores the household credential (POST /backup/shares/place). func (s *Server) sharesPlaceHandler(w http.ResponseWriter, r *http.Request) { if s.backupMgr == nil || !s.backupMgr.OffboxConfigured() { offboxRedirectTo(w, r, "/backups/restore", "A távoli mentési cél nincs beállítva.", true) return } if s.backupMgr.IsRunning() { offboxRedirectTo(w, r, "/backups/restore", "Egy mentési/visszaállítási művelet már fut.", true) return } s.backupMgr.BeginRestoreOp("shares-place", backup.SharesDisplayName) go func() { ctx, cancel := context.WithTimeout(context.Background(), 30*time.Minute) defer cancel() res, err := s.backupMgr.PlaceSharesRestore(ctx) if err != nil { s.logger.Printf("[ERROR] [web] shares place (async): %v", err) s.backupMgr.EndRestoreOp(false, "A megosztások helyreállítása sikertelen: "+err.Error()) return } s.logger.Printf("[INFO] [web] shares place completed (async): %d file(s), %d definition(s)", res.FilesRestored, len(res.DefinitionsAdded)) s.backupMgr.EndRestoreOp(true, res.FlashMessage()) }() offboxRedirectTo(w, r, "/backups/restore", "A megosztások helyreállítása elindult — az állapot itt frissül.", false) }