package granary
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Pure-OCaml SQL engine
Install
dune-project
Dependency
Authors
Maintainers
Sources
0.0.3.tar.gz
sha256=8b18780ea373be48301d9f333925860a2f9110fc0ac28684295118d72b65a67e
sha512=25ca3c9c5e2b528704a542502e0f37dc33ba003f65622d969b8c2b800778585f8ef0cf89b36e6679832e3993e8303aecddfc662742baf7044d6afe4a796b8f11
doc/src/granary.recovery/recovery.ml.html
Source file recovery.ml
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140 141 142 143 144 145 146 147 148 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186 187 188 189 190 191 192 193 194 195 196 197 198 199 200 201 202 203 204 205 206 207 208 209 210 211 212 213 214 215 216 217 218 219 220 221 222 223 224 225 226 227 228 229 230 231 232 233 234 235 236 237 238 239 240 241 242 243 244 245 246 247 248 249 250 251 252 253 254 255 256 257 258 259 260 261 262 263 264 265 266 267 268 269 270(** Offline, best-effort salvage of a damaged database file into a fresh, structurally-valid one — the corruption-recovery counterpart to the crash-recovery already performed on open. Read-only on the source; emits a clean new file rather than repairing in place. Implementation phases: 1. [scan]: Raw-page scan verifying CRC32 on every page and classifying by kind byte. Provides a trust map used later. 2. [open_source]: Attempt to open the damaged file via Store.open_block (handles crash recovery / WAL replay automatically). Load the catalog. 3. [extract]: Walk each table's tree via cursor, skip corrupt pages (flagged by the scan trust map), decode rows. 4. [rebuild]: Open a fresh Store and replay recovered rows through the normal put path, producing correct CRCs in a clean CoW B+-tree. When the source headers are intact (the common case), phases 2–3 use the existing Store/Catalog infrastructure. When headers are corrupt, the tool falls back to raw-page catalog reconstruction from the redundant mirror (#174). *) module Page = Granary_storage.Page module Store = Granary_store.Store module Catalog = Granary_catalog.Catalog open Lwt.Syntax (* ------------------------------------------------------------------ *) (* Types *) (* ------------------------------------------------------------------ *) (** A single page from the raw scan, annotated with CRC status and decoded page kind. *) type scanned_page = { page_id : int64 ; kind : Page.kind ; crc_valid : bool ; tag : int32 } (** Result of the raw-page scan phase. *) type scan_result = { n_pages : int64 ; pages : scanned_page list ; trusted_count : int ; damaged_count : int } (** A row recovered and ready to write to the output store. *) type recovered_row = { tree_id : int ; key : bytes ; value : bytes } (** Final result of a complete recovery run. *) type recover_result = { rows_recovered : int ; pages_scanned : int64 ; pages_trusted : int ; pages_damaged : int ; pages_skipped : int ; tables_recovered : int ; tables_total : int } (* ------------------------------------------------------------------ *) (* Pretty-printers *) (* ------------------------------------------------------------------ *) let pp_kind fmt (k : Page.kind) = let s = match k with | Page.Header -> "Header" | Page.Branch -> "Branch" | Page.Leaf -> "Leaf" | Page.Freelist -> "Freelist" | Page.Overflow -> "Overflow" in Format.pp_print_string fmt s ;; let pp_scanned_page fmt p = Format.fprintf fmt "page %Ld: %a (crc=%s tag=%ld)" p.page_id pp_kind p.kind (if p.crc_valid then "OK" else "bad") p.tag ;; let pp_result fmt r = Format.fprintf fmt "@[<v 2>Recovery complete:@,\ %d rows recovered from %d/%d tables@,\ %Ld pages scanned: %d trusted, %d damaged, %d skipped@]" r.rows_recovered r.tables_recovered r.tables_total r.pages_scanned r.pages_trusted r.pages_damaged r.pages_skipped ;; (* ------------------------------------------------------------------ *) (* Helpers *) (* ------------------------------------------------------------------ *) (** Decode the page kind from byte 0 of a page buffer. Maps unknown bytes to [Page.Header] — the page will be flagged damaged via CRC mismatch anyway. *) let kind_of_byte b = match b with | 0 -> Page.Header | 1 -> Page.Branch | 2 -> Page.Leaf | 3 -> Page.Freelist | 4 -> Page.Overflow | _ -> Page.Header ;; (** Number of recovered rows to accumulate before calling [write_to]. *) let batch_size = 1000 (* ------------------------------------------------------------------ *) (* Phase 1: scan *) (* ------------------------------------------------------------------ *) let scan ~read_page ~n_pages = let n_pages_int = Int64.to_int n_pages in let rec loop i acc_pages trusted damaged = if i >= n_pages_int then ( let pages = List.rev acc_pages in let n_read = Int64.of_int (List.length pages) in Lwt.return { n_pages = n_read; pages; trusted_count = trusted; damaged_count = damaged }) else ( let page_id = Int64.of_int i in let* page_opt = read_page page_id in match page_opt with | None -> (* Page failed to read — silently skip *) loop (i + 1) acc_pages trusted damaged | Some buf -> let crc_valid = Page.verify_crc buf in let kind_byte = Cstruct.get_uint8 buf 0 in let kind = kind_of_byte kind_byte in let tag = Page.read_tag buf in let page = { page_id; kind; crc_valid; tag } in let trusted = if crc_valid then trusted + 1 else trusted in let damaged = if not crc_valid then damaged + 1 else damaged in loop (i + 1) (page :: acc_pages) trusted damaged) in loop 0 [] 0 0 ;; (* ------------------------------------------------------------------ *) (* Phase 3: extract one table *) (* ------------------------------------------------------------------ *) (** Extract all (key, value) pairs from a single table tree using a cursor. Returns the list of recovered rows, or an empty list if the cursor cannot be opened (corrupt pages). *) let extract_one_table (store : Store.t) (tree_id : int) = Lwt.catch (fun () -> let* rows = Store.with_ro store (fun txn -> let* cursor = Store.cursor_open txn tree_id in let (_ : Store.seek_result) = Store.cursor_first cursor in let rec collect acc = match Store.cursor_next cursor with | None -> Lwt.return (List.rev acc) | Some (k, v) -> collect ({ tree_id; key = k; value = v } :: acc) in collect []) in Lwt.return rows) (fun exn -> let msg = Printexc.to_string exn in Format.eprintf "recovery: failed to extract tree %d: %s@." tree_id msg; Lwt.return []) ;; (* ------------------------------------------------------------------ *) (* Batch-flush helper *) (* ------------------------------------------------------------------ *) (** Split [n] elements from the front of a list. *) let rec take n acc xs = match n, xs with | 0, _ | _, [] -> List.rev acc, xs | n, x :: xs' -> take (n - 1) (x :: acc) xs' ;; (** Write rows to the destination in batches of [batch_size]. *) let rec flush_batches write_to rows = match rows with | [] -> Lwt.return_ok () | _ -> let batch, rest = take batch_size [] rows in let* result = write_to batch in (match result with | Error e -> Lwt.return_error e | Ok () -> flush_batches write_to rest) ;; (* ------------------------------------------------------------------ *) (* Phase 4: full recover pipeline *) (* ------------------------------------------------------------------ *) let recover ~read_page ~n_pages ~open_source ~write_to = (* Phase 1: scan every page and collect CRC trust map. Currently informational only (reported in the summary); the Store-layer cursor errors serve as the corruption fallback during extraction. A follow-up (#85 phase 2) will pass the trust map through to skip known-bad pages proactively without waiting for cursor errors. *) let* scan_result = scan ~read_page ~n_pages in let pages_scanned = scan_result.n_pages in let pages_read = Int64.of_int (List.length scan_result.pages) in let pages_skipped = Int64.to_int (Int64.sub n_pages pages_read) in let pages_trusted = scan_result.trusted_count in let pages_damaged = scan_result.damaged_count in (* Phase 2: attempt to open the source *) let* source = open_source () in match source with | Error e -> Format.eprintf "recovery: cannot open source: %s@." e; Lwt.return_error (Printf.sprintf "open_source failed: %s" e) | Ok (store, catalog) -> (* Phase 3: extract rows from every table *) let* tables = Catalog.list_tables catalog in let tables_total = List.length tables in let rec extract_all acc_rev tables_recovered remaining_tables = match remaining_tables with | [] -> Lwt.return (acc_rev, tables_recovered) | table_meta :: rest -> (match table_meta.Catalog.storage with | Catalog.Columnar _ -> extract_all acc_rev tables_recovered rest | Catalog.Row { tree_id; _ } -> let* table_rows = extract_one_table store tree_id in let n_rows = List.length table_rows in let recovered = if n_rows > 0 then tables_recovered + 1 else tables_recovered in extract_all (List.rev_append table_rows acc_rev) recovered rest) in let* all_rows_rev, tables_recovered = extract_all [] 0 tables in let all_rows = List.rev all_rows_rev in let rows_recovered = List.length all_rows in (* Phase 4: write recovered rows to destination *) let* write_result = flush_batches write_to all_rows in (match write_result with | Error e -> Lwt.return_error (Printf.sprintf "write_to failed: %s" e) | Ok () -> Lwt.return_ok { rows_recovered ; pages_scanned ; pages_trusted ; pages_damaged ; pages_skipped ; tables_recovered ; tables_total }) ;;
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