1 /* 2 * Copyright (c) 2000-2001,2005 Silicon Graphics, Inc. 3 * All Rights Reserved. 4 * 5 * This program is free software; you can redistribute it and/or 6 * modify it under the terms of the GNU General Public License as 7 * published by the Free Software Foundation. 8 * 9 * This program is distributed in the hope that it would be useful, 10 * but WITHOUT ANY WARRANTY; without even the implied warranty of 11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the 12 * GNU General Public License for more details. 13 * 14 * You should have received a copy of the GNU General Public License 15 * along with this program; if not, write the Free Software Foundation, 16 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA 17 */ 18 #ifndef __XFS_BTREE_H__ 19 #define __XFS_BTREE_H__ 20 21 struct xfs_buf; 22 struct xfs_defer_ops; 23 struct xfs_inode; 24 struct xfs_mount; 25 struct xfs_trans; 26 27 extern kmem_zone_t *xfs_btree_cur_zone; 28 29 /* 30 * Generic key, ptr and record wrapper structures. 31 * 32 * These are disk format structures, and are converted where necessary 33 * by the btree specific code that needs to interpret them. 34 */ 35 union xfs_btree_ptr { 36 __be32 s; /* short form ptr */ 37 __be64 l; /* long form ptr */ 38 }; 39 40 /* 41 * The in-core btree key. Overlapping btrees actually store two keys 42 * per pointer, so we reserve enough memory to hold both. The __*bigkey 43 * items should never be accessed directly. 44 */ 45 union xfs_btree_key { 46 struct xfs_bmbt_key bmbt; 47 xfs_bmdr_key_t bmbr; /* bmbt root block */ 48 xfs_alloc_key_t alloc; 49 struct xfs_inobt_key inobt; 50 struct xfs_rmap_key rmap; 51 struct xfs_rmap_key __rmap_bigkey[2]; 52 struct xfs_refcount_key refc; 53 }; 54 55 union xfs_btree_rec { 56 struct xfs_bmbt_rec bmbt; 57 xfs_bmdr_rec_t bmbr; /* bmbt root block */ 58 struct xfs_alloc_rec alloc; 59 struct xfs_inobt_rec inobt; 60 struct xfs_rmap_rec rmap; 61 struct xfs_refcount_rec refc; 62 }; 63 64 /* 65 * This nonsense is to make -wlint happy. 66 */ 67 #define XFS_LOOKUP_EQ ((xfs_lookup_t)XFS_LOOKUP_EQi) 68 #define XFS_LOOKUP_LE ((xfs_lookup_t)XFS_LOOKUP_LEi) 69 #define XFS_LOOKUP_GE ((xfs_lookup_t)XFS_LOOKUP_GEi) 70 71 #define XFS_BTNUM_BNO ((xfs_btnum_t)XFS_BTNUM_BNOi) 72 #define XFS_BTNUM_CNT ((xfs_btnum_t)XFS_BTNUM_CNTi) 73 #define XFS_BTNUM_BMAP ((xfs_btnum_t)XFS_BTNUM_BMAPi) 74 #define XFS_BTNUM_INO ((xfs_btnum_t)XFS_BTNUM_INOi) 75 #define XFS_BTNUM_FINO ((xfs_btnum_t)XFS_BTNUM_FINOi) 76 #define XFS_BTNUM_RMAP ((xfs_btnum_t)XFS_BTNUM_RMAPi) 77 #define XFS_BTNUM_REFC ((xfs_btnum_t)XFS_BTNUM_REFCi) 78 79 __uint32_t xfs_btree_magic(int crc, xfs_btnum_t btnum); 80 81 /* 82 * For logging record fields. 83 */ 84 #define XFS_BB_MAGIC (1 << 0) 85 #define XFS_BB_LEVEL (1 << 1) 86 #define XFS_BB_NUMRECS (1 << 2) 87 #define XFS_BB_LEFTSIB (1 << 3) 88 #define XFS_BB_RIGHTSIB (1 << 4) 89 #define XFS_BB_BLKNO (1 << 5) 90 #define XFS_BB_LSN (1 << 6) 91 #define XFS_BB_UUID (1 << 7) 92 #define XFS_BB_OWNER (1 << 8) 93 #define XFS_BB_NUM_BITS 5 94 #define XFS_BB_ALL_BITS ((1 << XFS_BB_NUM_BITS) - 1) 95 #define XFS_BB_NUM_BITS_CRC 9 96 #define XFS_BB_ALL_BITS_CRC ((1 << XFS_BB_NUM_BITS_CRC) - 1) 97 98 /* 99 * Generic stats interface 100 */ 101 #define XFS_BTREE_STATS_INC(cur, stat) \ 102 XFS_STATS_INC_OFF((cur)->bc_mp, (cur)->bc_statoff + __XBTS_ ## stat) 103 #define XFS_BTREE_STATS_ADD(cur, stat, val) \ 104 XFS_STATS_ADD_OFF((cur)->bc_mp, (cur)->bc_statoff + __XBTS_ ## stat, val) 105 106 #define XFS_BTREE_MAXLEVELS 9 /* max of all btrees */ 107 108 struct xfs_btree_ops { 109 /* size of the key and record structures */ 110 size_t key_len; 111 size_t rec_len; 112 113 /* cursor operations */ 114 struct xfs_btree_cur *(*dup_cursor)(struct xfs_btree_cur *); 115 void (*update_cursor)(struct xfs_btree_cur *src, 116 struct xfs_btree_cur *dst); 117 118 /* update btree root pointer */ 119 void (*set_root)(struct xfs_btree_cur *cur, 120 union xfs_btree_ptr *nptr, int level_change); 121 122 /* block allocation / freeing */ 123 int (*alloc_block)(struct xfs_btree_cur *cur, 124 union xfs_btree_ptr *start_bno, 125 union xfs_btree_ptr *new_bno, 126 int *stat); 127 int (*free_block)(struct xfs_btree_cur *cur, struct xfs_buf *bp); 128 129 /* update last record information */ 130 void (*update_lastrec)(struct xfs_btree_cur *cur, 131 struct xfs_btree_block *block, 132 union xfs_btree_rec *rec, 133 int ptr, int reason); 134 135 /* records in block/level */ 136 int (*get_minrecs)(struct xfs_btree_cur *cur, int level); 137 int (*get_maxrecs)(struct xfs_btree_cur *cur, int level); 138 139 /* records on disk. Matter for the root in inode case. */ 140 int (*get_dmaxrecs)(struct xfs_btree_cur *cur, int level); 141 142 /* init values of btree structures */ 143 void (*init_key_from_rec)(union xfs_btree_key *key, 144 union xfs_btree_rec *rec); 145 void (*init_rec_from_cur)(struct xfs_btree_cur *cur, 146 union xfs_btree_rec *rec); 147 void (*init_ptr_from_cur)(struct xfs_btree_cur *cur, 148 union xfs_btree_ptr *ptr); 149 void (*init_high_key_from_rec)(union xfs_btree_key *key, 150 union xfs_btree_rec *rec); 151 152 /* difference between key value and cursor value */ 153 __int64_t (*key_diff)(struct xfs_btree_cur *cur, 154 union xfs_btree_key *key); 155 156 /* 157 * Difference between key2 and key1 -- positive if key1 > key2, 158 * negative if key1 < key2, and zero if equal. 159 */ 160 __int64_t (*diff_two_keys)(struct xfs_btree_cur *cur, 161 union xfs_btree_key *key1, 162 union xfs_btree_key *key2); 163 164 const struct xfs_buf_ops *buf_ops; 165 166 #if defined(DEBUG) || defined(XFS_WARN) 167 /* check that k1 is lower than k2 */ 168 int (*keys_inorder)(struct xfs_btree_cur *cur, 169 union xfs_btree_key *k1, 170 union xfs_btree_key *k2); 171 172 /* check that r1 is lower than r2 */ 173 int (*recs_inorder)(struct xfs_btree_cur *cur, 174 union xfs_btree_rec *r1, 175 union xfs_btree_rec *r2); 176 #endif 177 }; 178 179 /* 180 * Reasons for the update_lastrec method to be called. 181 */ 182 #define LASTREC_UPDATE 0 183 #define LASTREC_INSREC 1 184 #define LASTREC_DELREC 2 185 186 187 union xfs_btree_irec { 188 struct xfs_alloc_rec_incore a; 189 struct xfs_bmbt_irec b; 190 struct xfs_inobt_rec_incore i; 191 struct xfs_rmap_irec r; 192 struct xfs_refcount_irec rc; 193 }; 194 195 /* Per-AG btree private information. */ 196 union xfs_btree_cur_private { 197 struct { 198 unsigned long nr_ops; /* # record updates */ 199 int shape_changes; /* # of extent splits */ 200 } refc; 201 }; 202 203 /* 204 * Btree cursor structure. 205 * This collects all information needed by the btree code in one place. 206 */ 207 typedef struct xfs_btree_cur 208 { 209 struct xfs_trans *bc_tp; /* transaction we're in, if any */ 210 struct xfs_mount *bc_mp; /* file system mount struct */ 211 const struct xfs_btree_ops *bc_ops; 212 uint bc_flags; /* btree features - below */ 213 union xfs_btree_irec bc_rec; /* current insert/search record value */ 214 struct xfs_buf *bc_bufs[XFS_BTREE_MAXLEVELS]; /* buf ptr per level */ 215 int bc_ptrs[XFS_BTREE_MAXLEVELS]; /* key/record # */ 216 __uint8_t bc_ra[XFS_BTREE_MAXLEVELS]; /* readahead bits */ 217 #define XFS_BTCUR_LEFTRA 1 /* left sibling has been read-ahead */ 218 #define XFS_BTCUR_RIGHTRA 2 /* right sibling has been read-ahead */ 219 __uint8_t bc_nlevels; /* number of levels in the tree */ 220 __uint8_t bc_blocklog; /* log2(blocksize) of btree blocks */ 221 xfs_btnum_t bc_btnum; /* identifies which btree type */ 222 int bc_statoff; /* offset of btre stats array */ 223 union { 224 struct { /* needed for BNO, CNT, INO */ 225 struct xfs_buf *agbp; /* agf/agi buffer pointer */ 226 struct xfs_defer_ops *dfops; /* deferred updates */ 227 xfs_agnumber_t agno; /* ag number */ 228 union xfs_btree_cur_private priv; 229 } a; 230 struct { /* needed for BMAP */ 231 struct xfs_inode *ip; /* pointer to our inode */ 232 struct xfs_defer_ops *dfops; /* deferred updates */ 233 xfs_fsblock_t firstblock; /* 1st blk allocated */ 234 int allocated; /* count of alloced */ 235 short forksize; /* fork's inode space */ 236 char whichfork; /* data or attr fork */ 237 char flags; /* flags */ 238 #define XFS_BTCUR_BPRV_WASDEL 1 /* was delayed */ 239 } b; 240 } bc_private; /* per-btree type data */ 241 } xfs_btree_cur_t; 242 243 /* cursor flags */ 244 #define XFS_BTREE_LONG_PTRS (1<<0) /* pointers are 64bits long */ 245 #define XFS_BTREE_ROOT_IN_INODE (1<<1) /* root may be variable size */ 246 #define XFS_BTREE_LASTREC_UPDATE (1<<2) /* track last rec externally */ 247 #define XFS_BTREE_CRC_BLOCKS (1<<3) /* uses extended btree blocks */ 248 #define XFS_BTREE_OVERLAPPING (1<<4) /* overlapping intervals */ 249 250 251 #define XFS_BTREE_NOERROR 0 252 #define XFS_BTREE_ERROR 1 253 254 /* 255 * Convert from buffer to btree block header. 256 */ 257 #define XFS_BUF_TO_BLOCK(bp) ((struct xfs_btree_block *)((bp)->b_addr)) 258 259 260 /* 261 * Check that block header is ok. 262 */ 263 int 264 xfs_btree_check_block( 265 struct xfs_btree_cur *cur, /* btree cursor */ 266 struct xfs_btree_block *block, /* generic btree block pointer */ 267 int level, /* level of the btree block */ 268 struct xfs_buf *bp); /* buffer containing block, if any */ 269 270 /* 271 * Check that (long) pointer is ok. 272 */ 273 int /* error (0 or EFSCORRUPTED) */ 274 xfs_btree_check_lptr( 275 struct xfs_btree_cur *cur, /* btree cursor */ 276 xfs_fsblock_t ptr, /* btree block disk address */ 277 int level); /* btree block level */ 278 279 /* 280 * Delete the btree cursor. 281 */ 282 void 283 xfs_btree_del_cursor( 284 xfs_btree_cur_t *cur, /* btree cursor */ 285 int error); /* del because of error */ 286 287 /* 288 * Duplicate the btree cursor. 289 * Allocate a new one, copy the record, re-get the buffers. 290 */ 291 int /* error */ 292 xfs_btree_dup_cursor( 293 xfs_btree_cur_t *cur, /* input cursor */ 294 xfs_btree_cur_t **ncur);/* output cursor */ 295 296 /* 297 * Get a buffer for the block, return it with no data read. 298 * Long-form addressing. 299 */ 300 struct xfs_buf * /* buffer for fsbno */ 301 xfs_btree_get_bufl( 302 struct xfs_mount *mp, /* file system mount point */ 303 struct xfs_trans *tp, /* transaction pointer */ 304 xfs_fsblock_t fsbno, /* file system block number */ 305 uint lock); /* lock flags for get_buf */ 306 307 /* 308 * Get a buffer for the block, return it with no data read. 309 * Short-form addressing. 310 */ 311 struct xfs_buf * /* buffer for agno/agbno */ 312 xfs_btree_get_bufs( 313 struct xfs_mount *mp, /* file system mount point */ 314 struct xfs_trans *tp, /* transaction pointer */ 315 xfs_agnumber_t agno, /* allocation group number */ 316 xfs_agblock_t agbno, /* allocation group block number */ 317 uint lock); /* lock flags for get_buf */ 318 319 /* 320 * Check for the cursor referring to the last block at the given level. 321 */ 322 int /* 1=is last block, 0=not last block */ 323 xfs_btree_islastblock( 324 xfs_btree_cur_t *cur, /* btree cursor */ 325 int level); /* level to check */ 326 327 /* 328 * Compute first and last byte offsets for the fields given. 329 * Interprets the offsets table, which contains struct field offsets. 330 */ 331 void 332 xfs_btree_offsets( 333 __int64_t fields, /* bitmask of fields */ 334 const short *offsets,/* table of field offsets */ 335 int nbits, /* number of bits to inspect */ 336 int *first, /* output: first byte offset */ 337 int *last); /* output: last byte offset */ 338 339 /* 340 * Get a buffer for the block, return it read in. 341 * Long-form addressing. 342 */ 343 int /* error */ 344 xfs_btree_read_bufl( 345 struct xfs_mount *mp, /* file system mount point */ 346 struct xfs_trans *tp, /* transaction pointer */ 347 xfs_fsblock_t fsbno, /* file system block number */ 348 uint lock, /* lock flags for read_buf */ 349 struct xfs_buf **bpp, /* buffer for fsbno */ 350 int refval, /* ref count value for buffer */ 351 const struct xfs_buf_ops *ops); 352 353 /* 354 * Read-ahead the block, don't wait for it, don't return a buffer. 355 * Long-form addressing. 356 */ 357 void /* error */ 358 xfs_btree_reada_bufl( 359 struct xfs_mount *mp, /* file system mount point */ 360 xfs_fsblock_t fsbno, /* file system block number */ 361 xfs_extlen_t count, /* count of filesystem blocks */ 362 const struct xfs_buf_ops *ops); 363 364 /* 365 * Read-ahead the block, don't wait for it, don't return a buffer. 366 * Short-form addressing. 367 */ 368 void /* error */ 369 xfs_btree_reada_bufs( 370 struct xfs_mount *mp, /* file system mount point */ 371 xfs_agnumber_t agno, /* allocation group number */ 372 xfs_agblock_t agbno, /* allocation group block number */ 373 xfs_extlen_t count, /* count of filesystem blocks */ 374 const struct xfs_buf_ops *ops); 375 376 /* 377 * Initialise a new btree block header 378 */ 379 void 380 xfs_btree_init_block( 381 struct xfs_mount *mp, 382 struct xfs_buf *bp, 383 xfs_btnum_t btnum, 384 __u16 level, 385 __u16 numrecs, 386 __u64 owner, 387 unsigned int flags); 388 389 void 390 xfs_btree_init_block_int( 391 struct xfs_mount *mp, 392 struct xfs_btree_block *buf, 393 xfs_daddr_t blkno, 394 xfs_btnum_t btnum, 395 __u16 level, 396 __u16 numrecs, 397 __u64 owner, 398 unsigned int flags); 399 400 /* 401 * Common btree core entry points. 402 */ 403 int xfs_btree_increment(struct xfs_btree_cur *, int, int *); 404 int xfs_btree_decrement(struct xfs_btree_cur *, int, int *); 405 int xfs_btree_lookup(struct xfs_btree_cur *, xfs_lookup_t, int *); 406 int xfs_btree_update(struct xfs_btree_cur *, union xfs_btree_rec *); 407 int xfs_btree_new_iroot(struct xfs_btree_cur *, int *, int *); 408 int xfs_btree_insert(struct xfs_btree_cur *, int *); 409 int xfs_btree_delete(struct xfs_btree_cur *, int *); 410 int xfs_btree_get_rec(struct xfs_btree_cur *, union xfs_btree_rec **, int *); 411 int xfs_btree_change_owner(struct xfs_btree_cur *cur, __uint64_t new_owner, 412 struct list_head *buffer_list); 413 414 /* 415 * btree block CRC helpers 416 */ 417 void xfs_btree_lblock_calc_crc(struct xfs_buf *); 418 bool xfs_btree_lblock_verify_crc(struct xfs_buf *); 419 void xfs_btree_sblock_calc_crc(struct xfs_buf *); 420 bool xfs_btree_sblock_verify_crc(struct xfs_buf *); 421 422 /* 423 * Internal btree helpers also used by xfs_bmap.c. 424 */ 425 void xfs_btree_log_block(struct xfs_btree_cur *, struct xfs_buf *, int); 426 void xfs_btree_log_recs(struct xfs_btree_cur *, struct xfs_buf *, int, int); 427 428 /* 429 * Helpers. 430 */ 431 static inline int xfs_btree_get_numrecs(struct xfs_btree_block *block) 432 { 433 return be16_to_cpu(block->bb_numrecs); 434 } 435 436 static inline void xfs_btree_set_numrecs(struct xfs_btree_block *block, 437 __uint16_t numrecs) 438 { 439 block->bb_numrecs = cpu_to_be16(numrecs); 440 } 441 442 static inline int xfs_btree_get_level(struct xfs_btree_block *block) 443 { 444 return be16_to_cpu(block->bb_level); 445 } 446 447 448 /* 449 * Min and max functions for extlen, agblock, fileoff, and filblks types. 450 */ 451 #define XFS_EXTLEN_MIN(a,b) min_t(xfs_extlen_t, (a), (b)) 452 #define XFS_EXTLEN_MAX(a,b) max_t(xfs_extlen_t, (a), (b)) 453 #define XFS_AGBLOCK_MIN(a,b) min_t(xfs_agblock_t, (a), (b)) 454 #define XFS_AGBLOCK_MAX(a,b) max_t(xfs_agblock_t, (a), (b)) 455 #define XFS_FILEOFF_MIN(a,b) min_t(xfs_fileoff_t, (a), (b)) 456 #define XFS_FILEOFF_MAX(a,b) max_t(xfs_fileoff_t, (a), (b)) 457 #define XFS_FILBLKS_MIN(a,b) min_t(xfs_filblks_t, (a), (b)) 458 #define XFS_FILBLKS_MAX(a,b) max_t(xfs_filblks_t, (a), (b)) 459 460 #define XFS_FSB_SANITY_CHECK(mp,fsb) \ 461 (fsb && XFS_FSB_TO_AGNO(mp, fsb) < mp->m_sb.sb_agcount && \ 462 XFS_FSB_TO_AGBNO(mp, fsb) < mp->m_sb.sb_agblocks) 463 464 /* 465 * Trace hooks. Currently not implemented as they need to be ported 466 * over to the generic tracing functionality, which is some effort. 467 * 468 * i,j = integer (32 bit) 469 * b = btree block buffer (xfs_buf_t) 470 * p = btree ptr 471 * r = btree record 472 * k = btree key 473 */ 474 #define XFS_BTREE_TRACE_ARGBI(c, b, i) 475 #define XFS_BTREE_TRACE_ARGBII(c, b, i, j) 476 #define XFS_BTREE_TRACE_ARGI(c, i) 477 #define XFS_BTREE_TRACE_ARGIPK(c, i, p, s) 478 #define XFS_BTREE_TRACE_ARGIPR(c, i, p, r) 479 #define XFS_BTREE_TRACE_ARGIK(c, i, k) 480 #define XFS_BTREE_TRACE_ARGR(c, r) 481 #define XFS_BTREE_TRACE_CURSOR(c, t) 482 483 bool xfs_btree_sblock_v5hdr_verify(struct xfs_buf *bp); 484 bool xfs_btree_sblock_verify(struct xfs_buf *bp, unsigned int max_recs); 485 uint xfs_btree_compute_maxlevels(struct xfs_mount *mp, uint *limits, 486 unsigned long len); 487 xfs_extlen_t xfs_btree_calc_size(struct xfs_mount *mp, uint *limits, 488 unsigned long long len); 489 490 /* return codes */ 491 #define XFS_BTREE_QUERY_RANGE_CONTINUE 0 /* keep iterating */ 492 #define XFS_BTREE_QUERY_RANGE_ABORT 1 /* stop iterating */ 493 typedef int (*xfs_btree_query_range_fn)(struct xfs_btree_cur *cur, 494 union xfs_btree_rec *rec, void *priv); 495 496 int xfs_btree_query_range(struct xfs_btree_cur *cur, 497 union xfs_btree_irec *low_rec, union xfs_btree_irec *high_rec, 498 xfs_btree_query_range_fn fn, void *priv); 499 int xfs_btree_query_all(struct xfs_btree_cur *cur, xfs_btree_query_range_fn fn, 500 void *priv); 501 502 typedef int (*xfs_btree_visit_blocks_fn)(struct xfs_btree_cur *cur, int level, 503 void *data); 504 int xfs_btree_visit_blocks(struct xfs_btree_cur *cur, 505 xfs_btree_visit_blocks_fn fn, void *data); 506 507 int xfs_btree_count_blocks(struct xfs_btree_cur *cur, xfs_extlen_t *blocks); 508 509 #endif /* __XFS_BTREE_H__ */ 510