linux/fs/xfs/libxfs/xfs_dir2_node.c
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   1/*
   2 * Copyright (c) 2000-2005 Silicon Graphics, Inc.
   3 * Copyright (c) 2013 Red Hat, Inc.
   4 * All Rights Reserved.
   5 *
   6 * This program is free software; you can redistribute it and/or
   7 * modify it under the terms of the GNU General Public License as
   8 * published by the Free Software Foundation.
   9 *
  10 * This program is distributed in the hope that it would be useful,
  11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
  12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
  13 * GNU General Public License for more details.
  14 *
  15 * You should have received a copy of the GNU General Public License
  16 * along with this program; if not, write the Free Software Foundation,
  17 * Inc.,  51 Franklin St, Fifth Floor, Boston, MA  02110-1301  USA
  18 */
  19#include "xfs.h"
  20#include "xfs_fs.h"
  21#include "xfs_format.h"
  22#include "xfs_log_format.h"
  23#include "xfs_trans_resv.h"
  24#include "xfs_mount.h"
  25#include "xfs_da_format.h"
  26#include "xfs_da_btree.h"
  27#include "xfs_inode.h"
  28#include "xfs_bmap.h"
  29#include "xfs_dir2.h"
  30#include "xfs_dir2_priv.h"
  31#include "xfs_error.h"
  32#include "xfs_trace.h"
  33#include "xfs_trans.h"
  34#include "xfs_buf_item.h"
  35#include "xfs_cksum.h"
  36#include "xfs_log.h"
  37
  38/*
  39 * Function declarations.
  40 */
  41static int xfs_dir2_leafn_add(struct xfs_buf *bp, xfs_da_args_t *args,
  42                              int index);
  43static void xfs_dir2_leafn_rebalance(xfs_da_state_t *state,
  44                                     xfs_da_state_blk_t *blk1,
  45                                     xfs_da_state_blk_t *blk2);
  46static int xfs_dir2_leafn_remove(xfs_da_args_t *args, struct xfs_buf *bp,
  47                                 int index, xfs_da_state_blk_t *dblk,
  48                                 int *rval);
  49static int xfs_dir2_node_addname_int(xfs_da_args_t *args,
  50                                     xfs_da_state_blk_t *fblk);
  51
  52/*
  53 * Check internal consistency of a leafn block.
  54 */
  55#ifdef DEBUG
  56static xfs_failaddr_t
  57xfs_dir3_leafn_check(
  58        struct xfs_inode        *dp,
  59        struct xfs_buf          *bp)
  60{
  61        struct xfs_dir2_leaf    *leaf = bp->b_addr;
  62        struct xfs_dir3_icleaf_hdr leafhdr;
  63
  64        dp->d_ops->leaf_hdr_from_disk(&leafhdr, leaf);
  65
  66        if (leafhdr.magic == XFS_DIR3_LEAFN_MAGIC) {
  67                struct xfs_dir3_leaf_hdr *leaf3 = bp->b_addr;
  68                if (be64_to_cpu(leaf3->info.blkno) != bp->b_bn)
  69                        return __this_address;
  70        } else if (leafhdr.magic != XFS_DIR2_LEAFN_MAGIC)
  71                return __this_address;
  72
  73        return xfs_dir3_leaf_check_int(dp->i_mount, dp, &leafhdr, leaf);
  74}
  75
  76static inline void
  77xfs_dir3_leaf_check(
  78        struct xfs_inode        *dp,
  79        struct xfs_buf          *bp)
  80{
  81        xfs_failaddr_t          fa;
  82
  83        fa = xfs_dir3_leafn_check(dp, bp);
  84        if (!fa)
  85                return;
  86        xfs_corruption_error(__func__, XFS_ERRLEVEL_LOW, dp->i_mount,
  87                        bp->b_addr, __FILE__, __LINE__, fa);
  88        ASSERT(0);
  89}
  90#else
  91#define xfs_dir3_leaf_check(dp, bp)
  92#endif
  93
  94static xfs_failaddr_t
  95xfs_dir3_free_verify(
  96        struct xfs_buf          *bp)
  97{
  98        struct xfs_mount        *mp = bp->b_target->bt_mount;
  99        struct xfs_dir2_free_hdr *hdr = bp->b_addr;
 100
 101        if (xfs_sb_version_hascrc(&mp->m_sb)) {
 102                struct xfs_dir3_blk_hdr *hdr3 = bp->b_addr;
 103
 104                if (hdr3->magic != cpu_to_be32(XFS_DIR3_FREE_MAGIC))
 105                        return __this_address;
 106                if (!uuid_equal(&hdr3->uuid, &mp->m_sb.sb_meta_uuid))
 107                        return __this_address;
 108                if (be64_to_cpu(hdr3->blkno) != bp->b_bn)
 109                        return __this_address;
 110                if (!xfs_log_check_lsn(mp, be64_to_cpu(hdr3->lsn)))
 111                        return __this_address;
 112        } else {
 113                if (hdr->magic != cpu_to_be32(XFS_DIR2_FREE_MAGIC))
 114                        return __this_address;
 115        }
 116
 117        /* XXX: should bounds check the xfs_dir3_icfree_hdr here */
 118
 119        return NULL;
 120}
 121
 122static void
 123xfs_dir3_free_read_verify(
 124        struct xfs_buf  *bp)
 125{
 126        struct xfs_mount        *mp = bp->b_target->bt_mount;
 127        xfs_failaddr_t          fa;
 128
 129        if (xfs_sb_version_hascrc(&mp->m_sb) &&
 130            !xfs_buf_verify_cksum(bp, XFS_DIR3_FREE_CRC_OFF))
 131                xfs_verifier_error(bp, -EFSBADCRC, __this_address);
 132        else {
 133                fa = xfs_dir3_free_verify(bp);
 134                if (fa)
 135                        xfs_verifier_error(bp, -EFSCORRUPTED, fa);
 136        }
 137}
 138
 139static void
 140xfs_dir3_free_write_verify(
 141        struct xfs_buf  *bp)
 142{
 143        struct xfs_mount        *mp = bp->b_target->bt_mount;
 144        struct xfs_buf_log_item *bip = bp->b_log_item;
 145        struct xfs_dir3_blk_hdr *hdr3 = bp->b_addr;
 146        xfs_failaddr_t          fa;
 147
 148        fa = xfs_dir3_free_verify(bp);
 149        if (fa) {
 150                xfs_verifier_error(bp, -EFSCORRUPTED, fa);
 151                return;
 152        }
 153
 154        if (!xfs_sb_version_hascrc(&mp->m_sb))
 155                return;
 156
 157        if (bip)
 158                hdr3->lsn = cpu_to_be64(bip->bli_item.li_lsn);
 159
 160        xfs_buf_update_cksum(bp, XFS_DIR3_FREE_CRC_OFF);
 161}
 162
 163const struct xfs_buf_ops xfs_dir3_free_buf_ops = {
 164        .name = "xfs_dir3_free",
 165        .verify_read = xfs_dir3_free_read_verify,
 166        .verify_write = xfs_dir3_free_write_verify,
 167        .verify_struct = xfs_dir3_free_verify,
 168};
 169
 170/* Everything ok in the free block header? */
 171static xfs_failaddr_t
 172xfs_dir3_free_header_check(
 173        struct xfs_inode        *dp,
 174        xfs_dablk_t             fbno,
 175        struct xfs_buf          *bp)
 176{
 177        struct xfs_mount        *mp = dp->i_mount;
 178        unsigned int            firstdb;
 179        int                     maxbests;
 180
 181        maxbests = dp->d_ops->free_max_bests(mp->m_dir_geo);
 182        firstdb = (xfs_dir2_da_to_db(mp->m_dir_geo, fbno) -
 183                   xfs_dir2_byte_to_db(mp->m_dir_geo, XFS_DIR2_FREE_OFFSET)) *
 184                        maxbests;
 185        if (xfs_sb_version_hascrc(&mp->m_sb)) {
 186                struct xfs_dir3_free_hdr *hdr3 = bp->b_addr;
 187
 188                if (be32_to_cpu(hdr3->firstdb) != firstdb)
 189                        return __this_address;
 190                if (be32_to_cpu(hdr3->nvalid) > maxbests)
 191                        return __this_address;
 192                if (be32_to_cpu(hdr3->nvalid) < be32_to_cpu(hdr3->nused))
 193                        return __this_address;
 194        } else {
 195                struct xfs_dir2_free_hdr *hdr = bp->b_addr;
 196
 197                if (be32_to_cpu(hdr->firstdb) != firstdb)
 198                        return __this_address;
 199                if (be32_to_cpu(hdr->nvalid) > maxbests)
 200                        return __this_address;
 201                if (be32_to_cpu(hdr->nvalid) < be32_to_cpu(hdr->nused))
 202                        return __this_address;
 203        }
 204        return NULL;
 205}
 206
 207static int
 208__xfs_dir3_free_read(
 209        struct xfs_trans        *tp,
 210        struct xfs_inode        *dp,
 211        xfs_dablk_t             fbno,
 212        xfs_daddr_t             mappedbno,
 213        struct xfs_buf          **bpp)
 214{
 215        xfs_failaddr_t          fa;
 216        int                     err;
 217
 218        err = xfs_da_read_buf(tp, dp, fbno, mappedbno, bpp,
 219                                XFS_DATA_FORK, &xfs_dir3_free_buf_ops);
 220        if (err || !*bpp)
 221                return err;
 222
 223        /* Check things that we can't do in the verifier. */
 224        fa = xfs_dir3_free_header_check(dp, fbno, *bpp);
 225        if (fa) {
 226                xfs_verifier_error(*bpp, -EFSCORRUPTED, fa);
 227                xfs_trans_brelse(tp, *bpp);
 228                return -EFSCORRUPTED;
 229        }
 230
 231        /* try read returns without an error or *bpp if it lands in a hole */
 232        if (tp)
 233                xfs_trans_buf_set_type(tp, *bpp, XFS_BLFT_DIR_FREE_BUF);
 234
 235        return 0;
 236}
 237
 238int
 239xfs_dir2_free_read(
 240        struct xfs_trans        *tp,
 241        struct xfs_inode        *dp,
 242        xfs_dablk_t             fbno,
 243        struct xfs_buf          **bpp)
 244{
 245        return __xfs_dir3_free_read(tp, dp, fbno, -1, bpp);
 246}
 247
 248static int
 249xfs_dir2_free_try_read(
 250        struct xfs_trans        *tp,
 251        struct xfs_inode        *dp,
 252        xfs_dablk_t             fbno,
 253        struct xfs_buf          **bpp)
 254{
 255        return __xfs_dir3_free_read(tp, dp, fbno, -2, bpp);
 256}
 257
 258static int
 259xfs_dir3_free_get_buf(
 260        xfs_da_args_t           *args,
 261        xfs_dir2_db_t           fbno,
 262        struct xfs_buf          **bpp)
 263{
 264        struct xfs_trans        *tp = args->trans;
 265        struct xfs_inode        *dp = args->dp;
 266        struct xfs_mount        *mp = dp->i_mount;
 267        struct xfs_buf          *bp;
 268        int                     error;
 269        struct xfs_dir3_icfree_hdr hdr;
 270
 271        error = xfs_da_get_buf(tp, dp, xfs_dir2_db_to_da(args->geo, fbno),
 272                                   -1, &bp, XFS_DATA_FORK);
 273        if (error)
 274                return error;
 275
 276        xfs_trans_buf_set_type(tp, bp, XFS_BLFT_DIR_FREE_BUF);
 277        bp->b_ops = &xfs_dir3_free_buf_ops;
 278
 279        /*
 280         * Initialize the new block to be empty, and remember
 281         * its first slot as our empty slot.
 282         */
 283        memset(bp->b_addr, 0, sizeof(struct xfs_dir3_free_hdr));
 284        memset(&hdr, 0, sizeof(hdr));
 285
 286        if (xfs_sb_version_hascrc(&mp->m_sb)) {
 287                struct xfs_dir3_free_hdr *hdr3 = bp->b_addr;
 288
 289                hdr.magic = XFS_DIR3_FREE_MAGIC;
 290
 291                hdr3->hdr.blkno = cpu_to_be64(bp->b_bn);
 292                hdr3->hdr.owner = cpu_to_be64(dp->i_ino);
 293                uuid_copy(&hdr3->hdr.uuid, &mp->m_sb.sb_meta_uuid);
 294        } else
 295                hdr.magic = XFS_DIR2_FREE_MAGIC;
 296        dp->d_ops->free_hdr_to_disk(bp->b_addr, &hdr);
 297        *bpp = bp;
 298        return 0;
 299}
 300
 301/*
 302 * Log entries from a freespace block.
 303 */
 304STATIC void
 305xfs_dir2_free_log_bests(
 306        struct xfs_da_args      *args,
 307        struct xfs_buf          *bp,
 308        int                     first,          /* first entry to log */
 309        int                     last)           /* last entry to log */
 310{
 311        xfs_dir2_free_t         *free;          /* freespace structure */
 312        __be16                  *bests;
 313
 314        free = bp->b_addr;
 315        bests = args->dp->d_ops->free_bests_p(free);
 316        ASSERT(free->hdr.magic == cpu_to_be32(XFS_DIR2_FREE_MAGIC) ||
 317               free->hdr.magic == cpu_to_be32(XFS_DIR3_FREE_MAGIC));
 318        xfs_trans_log_buf(args->trans, bp,
 319                (uint)((char *)&bests[first] - (char *)free),
 320                (uint)((char *)&bests[last] - (char *)free +
 321                       sizeof(bests[0]) - 1));
 322}
 323
 324/*
 325 * Log header from a freespace block.
 326 */
 327static void
 328xfs_dir2_free_log_header(
 329        struct xfs_da_args      *args,
 330        struct xfs_buf          *bp)
 331{
 332#ifdef DEBUG
 333        xfs_dir2_free_t         *free;          /* freespace structure */
 334
 335        free = bp->b_addr;
 336        ASSERT(free->hdr.magic == cpu_to_be32(XFS_DIR2_FREE_MAGIC) ||
 337               free->hdr.magic == cpu_to_be32(XFS_DIR3_FREE_MAGIC));
 338#endif
 339        xfs_trans_log_buf(args->trans, bp, 0,
 340                          args->dp->d_ops->free_hdr_size - 1);
 341}
 342
 343/*
 344 * Convert a leaf-format directory to a node-format directory.
 345 * We need to change the magic number of the leaf block, and copy
 346 * the freespace table out of the leaf block into its own block.
 347 */
 348int                                             /* error */
 349xfs_dir2_leaf_to_node(
 350        xfs_da_args_t           *args,          /* operation arguments */
 351        struct xfs_buf          *lbp)           /* leaf buffer */
 352{
 353        xfs_inode_t             *dp;            /* incore directory inode */
 354        int                     error;          /* error return value */
 355        struct xfs_buf          *fbp;           /* freespace buffer */
 356        xfs_dir2_db_t           fdb;            /* freespace block number */
 357        xfs_dir2_free_t         *free;          /* freespace structure */
 358        __be16                  *from;          /* pointer to freespace entry */
 359        int                     i;              /* leaf freespace index */
 360        xfs_dir2_leaf_t         *leaf;          /* leaf structure */
 361        xfs_dir2_leaf_tail_t    *ltp;           /* leaf tail structure */
 362        int                     n;              /* count of live freespc ents */
 363        xfs_dir2_data_off_t     off;            /* freespace entry value */
 364        __be16                  *to;            /* pointer to freespace entry */
 365        xfs_trans_t             *tp;            /* transaction pointer */
 366        struct xfs_dir3_icfree_hdr freehdr;
 367
 368        trace_xfs_dir2_leaf_to_node(args);
 369
 370        dp = args->dp;
 371        tp = args->trans;
 372        /*
 373         * Add a freespace block to the directory.
 374         */
 375        if ((error = xfs_dir2_grow_inode(args, XFS_DIR2_FREE_SPACE, &fdb))) {
 376                return error;
 377        }
 378        ASSERT(fdb == xfs_dir2_byte_to_db(args->geo, XFS_DIR2_FREE_OFFSET));
 379        /*
 380         * Get the buffer for the new freespace block.
 381         */
 382        error = xfs_dir3_free_get_buf(args, fdb, &fbp);
 383        if (error)
 384                return error;
 385
 386        free = fbp->b_addr;
 387        dp->d_ops->free_hdr_from_disk(&freehdr, free);
 388        leaf = lbp->b_addr;
 389        ltp = xfs_dir2_leaf_tail_p(args->geo, leaf);
 390        if (be32_to_cpu(ltp->bestcount) >
 391                                (uint)dp->i_d.di_size / args->geo->blksize)
 392                return -EFSCORRUPTED;
 393
 394        /*
 395         * Copy freespace entries from the leaf block to the new block.
 396         * Count active entries.
 397         */
 398        from = xfs_dir2_leaf_bests_p(ltp);
 399        to = dp->d_ops->free_bests_p(free);
 400        for (i = n = 0; i < be32_to_cpu(ltp->bestcount); i++, from++, to++) {
 401                if ((off = be16_to_cpu(*from)) != NULLDATAOFF)
 402                        n++;
 403                *to = cpu_to_be16(off);
 404        }
 405
 406        /*
 407         * Now initialize the freespace block header.
 408         */
 409        freehdr.nused = n;
 410        freehdr.nvalid = be32_to_cpu(ltp->bestcount);
 411
 412        dp->d_ops->free_hdr_to_disk(fbp->b_addr, &freehdr);
 413        xfs_dir2_free_log_bests(args, fbp, 0, freehdr.nvalid - 1);
 414        xfs_dir2_free_log_header(args, fbp);
 415
 416        /*
 417         * Converting the leaf to a leafnode is just a matter of changing the
 418         * magic number and the ops. Do the change directly to the buffer as
 419         * it's less work (and less code) than decoding the header to host
 420         * format and back again.
 421         */
 422        if (leaf->hdr.info.magic == cpu_to_be16(XFS_DIR2_LEAF1_MAGIC))
 423                leaf->hdr.info.magic = cpu_to_be16(XFS_DIR2_LEAFN_MAGIC);
 424        else
 425                leaf->hdr.info.magic = cpu_to_be16(XFS_DIR3_LEAFN_MAGIC);
 426        lbp->b_ops = &xfs_dir3_leafn_buf_ops;
 427        xfs_trans_buf_set_type(tp, lbp, XFS_BLFT_DIR_LEAFN_BUF);
 428        xfs_dir3_leaf_log_header(args, lbp);
 429        xfs_dir3_leaf_check(dp, lbp);
 430        return 0;
 431}
 432
 433/*
 434 * Add a leaf entry to a leaf block in a node-form directory.
 435 * The other work necessary is done from the caller.
 436 */
 437static int                                      /* error */
 438xfs_dir2_leafn_add(
 439        struct xfs_buf          *bp,            /* leaf buffer */
 440        xfs_da_args_t           *args,          /* operation arguments */
 441        int                     index)          /* insertion pt for new entry */
 442{
 443        int                     compact;        /* compacting stale leaves */
 444        xfs_inode_t             *dp;            /* incore directory inode */
 445        int                     highstale;      /* next stale entry */
 446        xfs_dir2_leaf_t         *leaf;          /* leaf structure */
 447        xfs_dir2_leaf_entry_t   *lep;           /* leaf entry */
 448        int                     lfloghigh;      /* high leaf entry logging */
 449        int                     lfloglow;       /* low leaf entry logging */
 450        int                     lowstale;       /* previous stale entry */
 451        struct xfs_dir3_icleaf_hdr leafhdr;
 452        struct xfs_dir2_leaf_entry *ents;
 453
 454        trace_xfs_dir2_leafn_add(args, index);
 455
 456        dp = args->dp;
 457        leaf = bp->b_addr;
 458        dp->d_ops->leaf_hdr_from_disk(&leafhdr, leaf);
 459        ents = dp->d_ops->leaf_ents_p(leaf);
 460
 461        /*
 462         * Quick check just to make sure we are not going to index
 463         * into other peoples memory
 464         */
 465        if (index < 0)
 466                return -EFSCORRUPTED;
 467
 468        /*
 469         * If there are already the maximum number of leaf entries in
 470         * the block, if there are no stale entries it won't fit.
 471         * Caller will do a split.  If there are stale entries we'll do
 472         * a compact.
 473         */
 474
 475        if (leafhdr.count == dp->d_ops->leaf_max_ents(args->geo)) {
 476                if (!leafhdr.stale)
 477                        return -ENOSPC;
 478                compact = leafhdr.stale > 1;
 479        } else
 480                compact = 0;
 481        ASSERT(index == 0 || be32_to_cpu(ents[index - 1].hashval) <= args->hashval);
 482        ASSERT(index == leafhdr.count ||
 483               be32_to_cpu(ents[index].hashval) >= args->hashval);
 484
 485        if (args->op_flags & XFS_DA_OP_JUSTCHECK)
 486                return 0;
 487
 488        /*
 489         * Compact out all but one stale leaf entry.  Leaves behind
 490         * the entry closest to index.
 491         */
 492        if (compact)
 493                xfs_dir3_leaf_compact_x1(&leafhdr, ents, &index, &lowstale,
 494                                         &highstale, &lfloglow, &lfloghigh);
 495        else if (leafhdr.stale) {
 496                /*
 497                 * Set impossible logging indices for this case.
 498                 */
 499                lfloglow = leafhdr.count;
 500                lfloghigh = -1;
 501        }
 502
 503        /*
 504         * Insert the new entry, log everything.
 505         */
 506        lep = xfs_dir3_leaf_find_entry(&leafhdr, ents, index, compact, lowstale,
 507                                       highstale, &lfloglow, &lfloghigh);
 508
 509        lep->hashval = cpu_to_be32(args->hashval);
 510        lep->address = cpu_to_be32(xfs_dir2_db_off_to_dataptr(args->geo,
 511                                args->blkno, args->index));
 512
 513        dp->d_ops->leaf_hdr_to_disk(leaf, &leafhdr);
 514        xfs_dir3_leaf_log_header(args, bp);
 515        xfs_dir3_leaf_log_ents(args, bp, lfloglow, lfloghigh);
 516        xfs_dir3_leaf_check(dp, bp);
 517        return 0;
 518}
 519
 520#ifdef DEBUG
 521static void
 522xfs_dir2_free_hdr_check(
 523        struct xfs_inode *dp,
 524        struct xfs_buf  *bp,
 525        xfs_dir2_db_t   db)
 526{
 527        struct xfs_dir3_icfree_hdr hdr;
 528
 529        dp->d_ops->free_hdr_from_disk(&hdr, bp->b_addr);
 530
 531        ASSERT((hdr.firstdb %
 532                dp->d_ops->free_max_bests(dp->i_mount->m_dir_geo)) == 0);
 533        ASSERT(hdr.firstdb <= db);
 534        ASSERT(db < hdr.firstdb + hdr.nvalid);
 535}
 536#else
 537#define xfs_dir2_free_hdr_check(dp, bp, db)
 538#endif  /* DEBUG */
 539
 540/*
 541 * Return the last hash value in the leaf.
 542 * Stale entries are ok.
 543 */
 544xfs_dahash_t                                    /* hash value */
 545xfs_dir2_leaf_lasthash(
 546        struct xfs_inode *dp,
 547        struct xfs_buf  *bp,                    /* leaf buffer */
 548        int             *count)                 /* count of entries in leaf */
 549{
 550        struct xfs_dir2_leaf    *leaf = bp->b_addr;
 551        struct xfs_dir2_leaf_entry *ents;
 552        struct xfs_dir3_icleaf_hdr leafhdr;
 553
 554        dp->d_ops->leaf_hdr_from_disk(&leafhdr, leaf);
 555
 556        ASSERT(leafhdr.magic == XFS_DIR2_LEAFN_MAGIC ||
 557               leafhdr.magic == XFS_DIR3_LEAFN_MAGIC ||
 558               leafhdr.magic == XFS_DIR2_LEAF1_MAGIC ||
 559               leafhdr.magic == XFS_DIR3_LEAF1_MAGIC);
 560
 561        if (count)
 562                *count = leafhdr.count;
 563        if (!leafhdr.count)
 564                return 0;
 565
 566        ents = dp->d_ops->leaf_ents_p(leaf);
 567        return be32_to_cpu(ents[leafhdr.count - 1].hashval);
 568}
 569
 570/*
 571 * Look up a leaf entry for space to add a name in a node-format leaf block.
 572 * The extrablk in state is a freespace block.
 573 */
 574STATIC int
 575xfs_dir2_leafn_lookup_for_addname(
 576        struct xfs_buf          *bp,            /* leaf buffer */
 577        xfs_da_args_t           *args,          /* operation arguments */
 578        int                     *indexp,        /* out: leaf entry index */
 579        xfs_da_state_t          *state)         /* state to fill in */
 580{
 581        struct xfs_buf          *curbp = NULL;  /* current data/free buffer */
 582        xfs_dir2_db_t           curdb = -1;     /* current data block number */
 583        xfs_dir2_db_t           curfdb = -1;    /* current free block number */
 584        xfs_inode_t             *dp;            /* incore directory inode */
 585        int                     error;          /* error return value */
 586        int                     fi;             /* free entry index */
 587        xfs_dir2_free_t         *free = NULL;   /* free block structure */
 588        int                     index;          /* leaf entry index */
 589        xfs_dir2_leaf_t         *leaf;          /* leaf structure */
 590        int                     length;         /* length of new data entry */
 591        xfs_dir2_leaf_entry_t   *lep;           /* leaf entry */
 592        xfs_mount_t             *mp;            /* filesystem mount point */
 593        xfs_dir2_db_t           newdb;          /* new data block number */
 594        xfs_dir2_db_t           newfdb;         /* new free block number */
 595        xfs_trans_t             *tp;            /* transaction pointer */
 596        struct xfs_dir2_leaf_entry *ents;
 597        struct xfs_dir3_icleaf_hdr leafhdr;
 598
 599        dp = args->dp;
 600        tp = args->trans;
 601        mp = dp->i_mount;
 602        leaf = bp->b_addr;
 603        dp->d_ops->leaf_hdr_from_disk(&leafhdr, leaf);
 604        ents = dp->d_ops->leaf_ents_p(leaf);
 605
 606        xfs_dir3_leaf_check(dp, bp);
 607        ASSERT(leafhdr.count > 0);
 608
 609        /*
 610         * Look up the hash value in the leaf entries.
 611         */
 612        index = xfs_dir2_leaf_search_hash(args, bp);
 613        /*
 614         * Do we have a buffer coming in?
 615         */
 616        if (state->extravalid) {
 617                /* If so, it's a free block buffer, get the block number. */
 618                curbp = state->extrablk.bp;
 619                curfdb = state->extrablk.blkno;
 620                free = curbp->b_addr;
 621                ASSERT(free->hdr.magic == cpu_to_be32(XFS_DIR2_FREE_MAGIC) ||
 622                       free->hdr.magic == cpu_to_be32(XFS_DIR3_FREE_MAGIC));
 623        }
 624        length = dp->d_ops->data_entsize(args->namelen);
 625        /*
 626         * Loop over leaf entries with the right hash value.
 627         */
 628        for (lep = &ents[index];
 629             index < leafhdr.count && be32_to_cpu(lep->hashval) == args->hashval;
 630             lep++, index++) {
 631                /*
 632                 * Skip stale leaf entries.
 633                 */
 634                if (be32_to_cpu(lep->address) == XFS_DIR2_NULL_DATAPTR)
 635                        continue;
 636                /*
 637                 * Pull the data block number from the entry.
 638                 */
 639                newdb = xfs_dir2_dataptr_to_db(args->geo,
 640                                               be32_to_cpu(lep->address));
 641                /*
 642                 * For addname, we're looking for a place to put the new entry.
 643                 * We want to use a data block with an entry of equal
 644                 * hash value to ours if there is one with room.
 645                 *
 646                 * If this block isn't the data block we already have
 647                 * in hand, take a look at it.
 648                 */
 649                if (newdb != curdb) {
 650                        __be16 *bests;
 651
 652                        curdb = newdb;
 653                        /*
 654                         * Convert the data block to the free block
 655                         * holding its freespace information.
 656                         */
 657                        newfdb = dp->d_ops->db_to_fdb(args->geo, newdb);
 658                        /*
 659                         * If it's not the one we have in hand, read it in.
 660                         */
 661                        if (newfdb != curfdb) {
 662                                /*
 663                                 * If we had one before, drop it.
 664                                 */
 665                                if (curbp)
 666                                        xfs_trans_brelse(tp, curbp);
 667
 668                                error = xfs_dir2_free_read(tp, dp,
 669                                                xfs_dir2_db_to_da(args->geo,
 670                                                                  newfdb),
 671                                                &curbp);
 672                                if (error)
 673                                        return error;
 674                                free = curbp->b_addr;
 675
 676                                xfs_dir2_free_hdr_check(dp, curbp, curdb);
 677                        }
 678                        /*
 679                         * Get the index for our entry.
 680                         */
 681                        fi = dp->d_ops->db_to_fdindex(args->geo, curdb);
 682                        /*
 683                         * If it has room, return it.
 684                         */
 685                        bests = dp->d_ops->free_bests_p(free);
 686                        if (unlikely(bests[fi] == cpu_to_be16(NULLDATAOFF))) {
 687                                XFS_ERROR_REPORT("xfs_dir2_leafn_lookup_int",
 688                                                        XFS_ERRLEVEL_LOW, mp);
 689                                if (curfdb != newfdb)
 690                                        xfs_trans_brelse(tp, curbp);
 691                                return -EFSCORRUPTED;
 692                        }
 693                        curfdb = newfdb;
 694                        if (be16_to_cpu(bests[fi]) >= length)
 695                                goto out;
 696                }
 697        }
 698        /* Didn't find any space */
 699        fi = -1;
 700out:
 701        ASSERT(args->op_flags & XFS_DA_OP_OKNOENT);
 702        if (curbp) {
 703                /* Giving back a free block. */
 704                state->extravalid = 1;
 705                state->extrablk.bp = curbp;
 706                state->extrablk.index = fi;
 707                state->extrablk.blkno = curfdb;
 708
 709                /*
 710                 * Important: this magic number is not in the buffer - it's for
 711                 * buffer type information and therefore only the free/data type
 712                 * matters here, not whether CRCs are enabled or not.
 713                 */
 714                state->extrablk.magic = XFS_DIR2_FREE_MAGIC;
 715        } else {
 716                state->extravalid = 0;
 717        }
 718        /*
 719         * Return the index, that will be the insertion point.
 720         */
 721        *indexp = index;
 722        return -ENOENT;
 723}
 724
 725/*
 726 * Look up a leaf entry in a node-format leaf block.
 727 * The extrablk in state a data block.
 728 */
 729STATIC int
 730xfs_dir2_leafn_lookup_for_entry(
 731        struct xfs_buf          *bp,            /* leaf buffer */
 732        xfs_da_args_t           *args,          /* operation arguments */
 733        int                     *indexp,        /* out: leaf entry index */
 734        xfs_da_state_t          *state)         /* state to fill in */
 735{
 736        struct xfs_buf          *curbp = NULL;  /* current data/free buffer */
 737        xfs_dir2_db_t           curdb = -1;     /* current data block number */
 738        xfs_dir2_data_entry_t   *dep;           /* data block entry */
 739        xfs_inode_t             *dp;            /* incore directory inode */
 740        int                     error;          /* error return value */
 741        int                     index;          /* leaf entry index */
 742        xfs_dir2_leaf_t         *leaf;          /* leaf structure */
 743        xfs_dir2_leaf_entry_t   *lep;           /* leaf entry */
 744        xfs_mount_t             *mp;            /* filesystem mount point */
 745        xfs_dir2_db_t           newdb;          /* new data block number */
 746        xfs_trans_t             *tp;            /* transaction pointer */
 747        enum xfs_dacmp          cmp;            /* comparison result */
 748        struct xfs_dir2_leaf_entry *ents;
 749        struct xfs_dir3_icleaf_hdr leafhdr;
 750
 751        dp = args->dp;
 752        tp = args->trans;
 753        mp = dp->i_mount;
 754        leaf = bp->b_addr;
 755        dp->d_ops->leaf_hdr_from_disk(&leafhdr, leaf);
 756        ents = dp->d_ops->leaf_ents_p(leaf);
 757
 758        xfs_dir3_leaf_check(dp, bp);
 759        ASSERT(leafhdr.count > 0);
 760
 761        /*
 762         * Look up the hash value in the leaf entries.
 763         */
 764        index = xfs_dir2_leaf_search_hash(args, bp);
 765        /*
 766         * Do we have a buffer coming in?
 767         */
 768        if (state->extravalid) {
 769                curbp = state->extrablk.bp;
 770                curdb = state->extrablk.blkno;
 771        }
 772        /*
 773         * Loop over leaf entries with the right hash value.
 774         */
 775        for (lep = &ents[index];
 776             index < leafhdr.count && be32_to_cpu(lep->hashval) == args->hashval;
 777             lep++, index++) {
 778                /*
 779                 * Skip stale leaf entries.
 780                 */
 781                if (be32_to_cpu(lep->address) == XFS_DIR2_NULL_DATAPTR)
 782                        continue;
 783                /*
 784                 * Pull the data block number from the entry.
 785                 */
 786                newdb = xfs_dir2_dataptr_to_db(args->geo,
 787                                               be32_to_cpu(lep->address));
 788                /*
 789                 * Not adding a new entry, so we really want to find
 790                 * the name given to us.
 791                 *
 792                 * If it's a different data block, go get it.
 793                 */
 794                if (newdb != curdb) {
 795                        /*
 796                         * If we had a block before that we aren't saving
 797                         * for a CI name, drop it
 798                         */
 799                        if (curbp && (args->cmpresult == XFS_CMP_DIFFERENT ||
 800                                                curdb != state->extrablk.blkno))
 801                                xfs_trans_brelse(tp, curbp);
 802                        /*
 803                         * If needing the block that is saved with a CI match,
 804                         * use it otherwise read in the new data block.
 805                         */
 806                        if (args->cmpresult != XFS_CMP_DIFFERENT &&
 807                                        newdb == state->extrablk.blkno) {
 808                                ASSERT(state->extravalid);
 809                                curbp = state->extrablk.bp;
 810                        } else {
 811                                error = xfs_dir3_data_read(tp, dp,
 812                                                xfs_dir2_db_to_da(args->geo,
 813                                                                  newdb),
 814                                                -1, &curbp);
 815                                if (error)
 816                                        return error;
 817                        }
 818                        xfs_dir3_data_check(dp, curbp);
 819                        curdb = newdb;
 820                }
 821                /*
 822                 * Point to the data entry.
 823                 */
 824                dep = (xfs_dir2_data_entry_t *)((char *)curbp->b_addr +
 825                        xfs_dir2_dataptr_to_off(args->geo,
 826                                                be32_to_cpu(lep->address)));
 827                /*
 828                 * Compare the entry and if it's an exact match, return
 829                 * EEXIST immediately. If it's the first case-insensitive
 830                 * match, store the block & inode number and continue looking.
 831                 */
 832                cmp = mp->m_dirnameops->compname(args, dep->name, dep->namelen);
 833                if (cmp != XFS_CMP_DIFFERENT && cmp != args->cmpresult) {
 834                        /* If there is a CI match block, drop it */
 835                        if (args->cmpresult != XFS_CMP_DIFFERENT &&
 836                                                curdb != state->extrablk.blkno)
 837                                xfs_trans_brelse(tp, state->extrablk.bp);
 838                        args->cmpresult = cmp;
 839                        args->inumber = be64_to_cpu(dep->inumber);
 840                        args->filetype = dp->d_ops->data_get_ftype(dep);
 841                        *indexp = index;
 842                        state->extravalid = 1;
 843                        state->extrablk.bp = curbp;
 844                        state->extrablk.blkno = curdb;
 845                        state->extrablk.index = (int)((char *)dep -
 846                                                        (char *)curbp->b_addr);
 847                        state->extrablk.magic = XFS_DIR2_DATA_MAGIC;
 848                        curbp->b_ops = &xfs_dir3_data_buf_ops;
 849                        xfs_trans_buf_set_type(tp, curbp, XFS_BLFT_DIR_DATA_BUF);
 850                        if (cmp == XFS_CMP_EXACT)
 851                                return -EEXIST;
 852                }
 853        }
 854        ASSERT(index == leafhdr.count || (args->op_flags & XFS_DA_OP_OKNOENT));
 855        if (curbp) {
 856                if (args->cmpresult == XFS_CMP_DIFFERENT) {
 857                        /* Giving back last used data block. */
 858                        state->extravalid = 1;
 859                        state->extrablk.bp = curbp;
 860                        state->extrablk.index = -1;
 861                        state->extrablk.blkno = curdb;
 862                        state->extrablk.magic = XFS_DIR2_DATA_MAGIC;
 863                        curbp->b_ops = &xfs_dir3_data_buf_ops;
 864                        xfs_trans_buf_set_type(tp, curbp, XFS_BLFT_DIR_DATA_BUF);
 865                } else {
 866                        /* If the curbp is not the CI match block, drop it */
 867                        if (state->extrablk.bp != curbp)
 868                                xfs_trans_brelse(tp, curbp);
 869                }
 870        } else {
 871                state->extravalid = 0;
 872        }
 873        *indexp = index;
 874        return -ENOENT;
 875}
 876
 877/*
 878 * Look up a leaf entry in a node-format leaf block.
 879 * If this is an addname then the extrablk in state is a freespace block,
 880 * otherwise it's a data block.
 881 */
 882int
 883xfs_dir2_leafn_lookup_int(
 884        struct xfs_buf          *bp,            /* leaf buffer */
 885        xfs_da_args_t           *args,          /* operation arguments */
 886        int                     *indexp,        /* out: leaf entry index */
 887        xfs_da_state_t          *state)         /* state to fill in */
 888{
 889        if (args->op_flags & XFS_DA_OP_ADDNAME)
 890                return xfs_dir2_leafn_lookup_for_addname(bp, args, indexp,
 891                                                        state);
 892        return xfs_dir2_leafn_lookup_for_entry(bp, args, indexp, state);
 893}
 894
 895/*
 896 * Move count leaf entries from source to destination leaf.
 897 * Log entries and headers.  Stale entries are preserved.
 898 */
 899static void
 900xfs_dir3_leafn_moveents(
 901        xfs_da_args_t                   *args,  /* operation arguments */
 902        struct xfs_buf                  *bp_s,  /* source */
 903        struct xfs_dir3_icleaf_hdr      *shdr,
 904        struct xfs_dir2_leaf_entry      *sents,
 905        int                             start_s,/* source leaf index */
 906        struct xfs_buf                  *bp_d,  /* destination */
 907        struct xfs_dir3_icleaf_hdr      *dhdr,
 908        struct xfs_dir2_leaf_entry      *dents,
 909        int                             start_d,/* destination leaf index */
 910        int                             count)  /* count of leaves to copy */
 911{
 912        int                             stale;  /* count stale leaves copied */
 913
 914        trace_xfs_dir2_leafn_moveents(args, start_s, start_d, count);
 915
 916        /*
 917         * Silently return if nothing to do.
 918         */
 919        if (count == 0)
 920                return;
 921
 922        /*
 923         * If the destination index is not the end of the current
 924         * destination leaf entries, open up a hole in the destination
 925         * to hold the new entries.
 926         */
 927        if (start_d < dhdr->count) {
 928                memmove(&dents[start_d + count], &dents[start_d],
 929                        (dhdr->count - start_d) * sizeof(xfs_dir2_leaf_entry_t));
 930                xfs_dir3_leaf_log_ents(args, bp_d, start_d + count,
 931                                       count + dhdr->count - 1);
 932        }
 933        /*
 934         * If the source has stale leaves, count the ones in the copy range
 935         * so we can update the header correctly.
 936         */
 937        if (shdr->stale) {
 938                int     i;                      /* temp leaf index */
 939
 940                for (i = start_s, stale = 0; i < start_s + count; i++) {
 941                        if (sents[i].address ==
 942                                        cpu_to_be32(XFS_DIR2_NULL_DATAPTR))
 943                                stale++;
 944                }
 945        } else
 946                stale = 0;
 947        /*
 948         * Copy the leaf entries from source to destination.
 949         */
 950        memcpy(&dents[start_d], &sents[start_s],
 951                count * sizeof(xfs_dir2_leaf_entry_t));
 952        xfs_dir3_leaf_log_ents(args, bp_d, start_d, start_d + count - 1);
 953
 954        /*
 955         * If there are source entries after the ones we copied,
 956         * delete the ones we copied by sliding the next ones down.
 957         */
 958        if (start_s + count < shdr->count) {
 959                memmove(&sents[start_s], &sents[start_s + count],
 960                        count * sizeof(xfs_dir2_leaf_entry_t));
 961                xfs_dir3_leaf_log_ents(args, bp_s, start_s, start_s + count - 1);
 962        }
 963
 964        /*
 965         * Update the headers and log them.
 966         */
 967        shdr->count -= count;
 968        shdr->stale -= stale;
 969        dhdr->count += count;
 970        dhdr->stale += stale;
 971}
 972
 973/*
 974 * Determine the sort order of two leaf blocks.
 975 * Returns 1 if both are valid and leaf2 should be before leaf1, else 0.
 976 */
 977int                                             /* sort order */
 978xfs_dir2_leafn_order(
 979        struct xfs_inode        *dp,
 980        struct xfs_buf          *leaf1_bp,              /* leaf1 buffer */
 981        struct xfs_buf          *leaf2_bp)              /* leaf2 buffer */
 982{
 983        struct xfs_dir2_leaf    *leaf1 = leaf1_bp->b_addr;
 984        struct xfs_dir2_leaf    *leaf2 = leaf2_bp->b_addr;
 985        struct xfs_dir2_leaf_entry *ents1;
 986        struct xfs_dir2_leaf_entry *ents2;
 987        struct xfs_dir3_icleaf_hdr hdr1;
 988        struct xfs_dir3_icleaf_hdr hdr2;
 989
 990        dp->d_ops->leaf_hdr_from_disk(&hdr1, leaf1);
 991        dp->d_ops->leaf_hdr_from_disk(&hdr2, leaf2);
 992        ents1 = dp->d_ops->leaf_ents_p(leaf1);
 993        ents2 = dp->d_ops->leaf_ents_p(leaf2);
 994
 995        if (hdr1.count > 0 && hdr2.count > 0 &&
 996            (be32_to_cpu(ents2[0].hashval) < be32_to_cpu(ents1[0].hashval) ||
 997             be32_to_cpu(ents2[hdr2.count - 1].hashval) <
 998                                be32_to_cpu(ents1[hdr1.count - 1].hashval)))
 999                return 1;
1000        return 0;
1001}
1002
1003/*
1004 * Rebalance leaf entries between two leaf blocks.
1005 * This is actually only called when the second block is new,
1006 * though the code deals with the general case.
1007 * A new entry will be inserted in one of the blocks, and that
1008 * entry is taken into account when balancing.
1009 */
1010static void
1011xfs_dir2_leafn_rebalance(
1012        xfs_da_state_t          *state,         /* btree cursor */
1013        xfs_da_state_blk_t      *blk1,          /* first btree block */
1014        xfs_da_state_blk_t      *blk2)          /* second btree block */
1015{
1016        xfs_da_args_t           *args;          /* operation arguments */
1017        int                     count;          /* count (& direction) leaves */
1018        int                     isleft;         /* new goes in left leaf */
1019        xfs_dir2_leaf_t         *leaf1;         /* first leaf structure */
1020        xfs_dir2_leaf_t         *leaf2;         /* second leaf structure */
1021        int                     mid;            /* midpoint leaf index */
1022#if defined(DEBUG) || defined(XFS_WARN)
1023        int                     oldstale;       /* old count of stale leaves */
1024#endif
1025        int                     oldsum;         /* old total leaf count */
1026        int                     swap;           /* swapped leaf blocks */
1027        struct xfs_dir2_leaf_entry *ents1;
1028        struct xfs_dir2_leaf_entry *ents2;
1029        struct xfs_dir3_icleaf_hdr hdr1;
1030        struct xfs_dir3_icleaf_hdr hdr2;
1031        struct xfs_inode        *dp = state->args->dp;
1032
1033        args = state->args;
1034        /*
1035         * If the block order is wrong, swap the arguments.
1036         */
1037        if ((swap = xfs_dir2_leafn_order(dp, blk1->bp, blk2->bp))) {
1038                xfs_da_state_blk_t      *tmp;   /* temp for block swap */
1039
1040                tmp = blk1;
1041                blk1 = blk2;
1042                blk2 = tmp;
1043        }
1044        leaf1 = blk1->bp->b_addr;
1045        leaf2 = blk2->bp->b_addr;
1046        dp->d_ops->leaf_hdr_from_disk(&hdr1, leaf1);
1047        dp->d_ops->leaf_hdr_from_disk(&hdr2, leaf2);
1048        ents1 = dp->d_ops->leaf_ents_p(leaf1);
1049        ents2 = dp->d_ops->leaf_ents_p(leaf2);
1050
1051        oldsum = hdr1.count + hdr2.count;
1052#if defined(DEBUG) || defined(XFS_WARN)
1053        oldstale = hdr1.stale + hdr2.stale;
1054#endif
1055        mid = oldsum >> 1;
1056
1057        /*
1058         * If the old leaf count was odd then the new one will be even,
1059         * so we need to divide the new count evenly.
1060         */
1061        if (oldsum & 1) {
1062                xfs_dahash_t    midhash;        /* middle entry hash value */
1063
1064                if (mid >= hdr1.count)
1065                        midhash = be32_to_cpu(ents2[mid - hdr1.count].hashval);
1066                else
1067                        midhash = be32_to_cpu(ents1[mid].hashval);
1068                isleft = args->hashval <= midhash;
1069        }
1070        /*
1071         * If the old count is even then the new count is odd, so there's
1072         * no preferred side for the new entry.
1073         * Pick the left one.
1074         */
1075        else
1076                isleft = 1;
1077        /*
1078         * Calculate moved entry count.  Positive means left-to-right,
1079         * negative means right-to-left.  Then move the entries.
1080         */
1081        count = hdr1.count - mid + (isleft == 0);
1082        if (count > 0)
1083                xfs_dir3_leafn_moveents(args, blk1->bp, &hdr1, ents1,
1084                                        hdr1.count - count, blk2->bp,
1085                                        &hdr2, ents2, 0, count);
1086        else if (count < 0)
1087                xfs_dir3_leafn_moveents(args, blk2->bp, &hdr2, ents2, 0,
1088                                        blk1->bp, &hdr1, ents1,
1089                                        hdr1.count, count);
1090
1091        ASSERT(hdr1.count + hdr2.count == oldsum);
1092        ASSERT(hdr1.stale + hdr2.stale == oldstale);
1093
1094        /* log the changes made when moving the entries */
1095        dp->d_ops->leaf_hdr_to_disk(leaf1, &hdr1);
1096        dp->d_ops->leaf_hdr_to_disk(leaf2, &hdr2);
1097        xfs_dir3_leaf_log_header(args, blk1->bp);
1098        xfs_dir3_leaf_log_header(args, blk2->bp);
1099
1100        xfs_dir3_leaf_check(dp, blk1->bp);
1101        xfs_dir3_leaf_check(dp, blk2->bp);
1102
1103        /*
1104         * Mark whether we're inserting into the old or new leaf.
1105         */
1106        if (hdr1.count < hdr2.count)
1107                state->inleaf = swap;
1108        else if (hdr1.count > hdr2.count)
1109                state->inleaf = !swap;
1110        else
1111                state->inleaf = swap ^ (blk1->index <= hdr1.count);
1112        /*
1113         * Adjust the expected index for insertion.
1114         */
1115        if (!state->inleaf)
1116                blk2->index = blk1->index - hdr1.count;
1117
1118        /*
1119         * Finally sanity check just to make sure we are not returning a
1120         * negative index
1121         */
1122        if (blk2->index < 0) {
1123                state->inleaf = 1;
1124                blk2->index = 0;
1125                xfs_alert(dp->i_mount,
1126        "%s: picked the wrong leaf? reverting original leaf: blk1->index %d",
1127                        __func__, blk1->index);
1128        }
1129}
1130
1131static int
1132xfs_dir3_data_block_free(
1133        xfs_da_args_t           *args,
1134        struct xfs_dir2_data_hdr *hdr,
1135        struct xfs_dir2_free    *free,
1136        xfs_dir2_db_t           fdb,
1137        int                     findex,
1138        struct xfs_buf          *fbp,
1139        int                     longest)
1140{
1141        int                     logfree = 0;
1142        __be16                  *bests;
1143        struct xfs_dir3_icfree_hdr freehdr;
1144        struct xfs_inode        *dp = args->dp;
1145
1146        dp->d_ops->free_hdr_from_disk(&freehdr, free);
1147        bests = dp->d_ops->free_bests_p(free);
1148        if (hdr) {
1149                /*
1150                 * Data block is not empty, just set the free entry to the new
1151                 * value.
1152                 */
1153                bests[findex] = cpu_to_be16(longest);
1154                xfs_dir2_free_log_bests(args, fbp, findex, findex);
1155                return 0;
1156        }
1157
1158        /* One less used entry in the free table. */
1159        freehdr.nused--;
1160
1161        /*
1162         * If this was the last entry in the table, we can trim the table size
1163         * back.  There might be other entries at the end referring to
1164         * non-existent data blocks, get those too.
1165         */
1166        if (findex == freehdr.nvalid - 1) {
1167                int     i;              /* free entry index */
1168
1169                for (i = findex - 1; i >= 0; i--) {
1170                        if (bests[i] != cpu_to_be16(NULLDATAOFF))
1171                                break;
1172                }
1173                freehdr.nvalid = i + 1;
1174                logfree = 0;
1175        } else {
1176                /* Not the last entry, just punch it out.  */
1177                bests[findex] = cpu_to_be16(NULLDATAOFF);
1178                logfree = 1;
1179        }
1180
1181        dp->d_ops->free_hdr_to_disk(free, &freehdr);
1182        xfs_dir2_free_log_header(args, fbp);
1183
1184        /*
1185         * If there are no useful entries left in the block, get rid of the
1186         * block if we can.
1187         */
1188        if (!freehdr.nused) {
1189                int error;
1190
1191                error = xfs_dir2_shrink_inode(args, fdb, fbp);
1192                if (error == 0) {
1193                        fbp = NULL;
1194                        logfree = 0;
1195                } else if (error != -ENOSPC || args->total != 0)
1196                        return error;
1197                /*
1198                 * It's possible to get ENOSPC if there is no
1199                 * space reservation.  In this case some one
1200                 * else will eventually get rid of this block.
1201                 */
1202        }
1203
1204        /* Log the free entry that changed, unless we got rid of it.  */
1205        if (logfree)
1206                xfs_dir2_free_log_bests(args, fbp, findex, findex);
1207        return 0;
1208}
1209
1210/*
1211 * Remove an entry from a node directory.
1212 * This removes the leaf entry and the data entry,
1213 * and updates the free block if necessary.
1214 */
1215static int                                      /* error */
1216xfs_dir2_leafn_remove(
1217        xfs_da_args_t           *args,          /* operation arguments */
1218        struct xfs_buf          *bp,            /* leaf buffer */
1219        int                     index,          /* leaf entry index */
1220        xfs_da_state_blk_t      *dblk,          /* data block */
1221        int                     *rval)          /* resulting block needs join */
1222{
1223        xfs_dir2_data_hdr_t     *hdr;           /* data block header */
1224        xfs_dir2_db_t           db;             /* data block number */
1225        struct xfs_buf          *dbp;           /* data block buffer */
1226        xfs_dir2_data_entry_t   *dep;           /* data block entry */
1227        xfs_inode_t             *dp;            /* incore directory inode */
1228        xfs_dir2_leaf_t         *leaf;          /* leaf structure */
1229        xfs_dir2_leaf_entry_t   *lep;           /* leaf entry */
1230        int                     longest;        /* longest data free entry */
1231        int                     off;            /* data block entry offset */
1232        int                     needlog;        /* need to log data header */
1233        int                     needscan;       /* need to rescan data frees */
1234        xfs_trans_t             *tp;            /* transaction pointer */
1235        struct xfs_dir2_data_free *bf;          /* bestfree table */
1236        struct xfs_dir3_icleaf_hdr leafhdr;
1237        struct xfs_dir2_leaf_entry *ents;
1238
1239        trace_xfs_dir2_leafn_remove(args, index);
1240
1241        dp = args->dp;
1242        tp = args->trans;
1243        leaf = bp->b_addr;
1244        dp->d_ops->leaf_hdr_from_disk(&leafhdr, leaf);
1245        ents = dp->d_ops->leaf_ents_p(leaf);
1246
1247        /*
1248         * Point to the entry we're removing.
1249         */
1250        lep = &ents[index];
1251
1252        /*
1253         * Extract the data block and offset from the entry.
1254         */
1255        db = xfs_dir2_dataptr_to_db(args->geo, be32_to_cpu(lep->address));
1256        ASSERT(dblk->blkno == db);
1257        off = xfs_dir2_dataptr_to_off(args->geo, be32_to_cpu(lep->address));
1258        ASSERT(dblk->index == off);
1259
1260        /*
1261         * Kill the leaf entry by marking it stale.
1262         * Log the leaf block changes.
1263         */
1264        leafhdr.stale++;
1265        dp->d_ops->leaf_hdr_to_disk(leaf, &leafhdr);
1266        xfs_dir3_leaf_log_header(args, bp);
1267
1268        lep->address = cpu_to_be32(XFS_DIR2_NULL_DATAPTR);
1269        xfs_dir3_leaf_log_ents(args, bp, index, index);
1270
1271        /*
1272         * Make the data entry free.  Keep track of the longest freespace
1273         * in the data block in case it changes.
1274         */
1275        dbp = dblk->bp;
1276        hdr = dbp->b_addr;
1277        dep = (xfs_dir2_data_entry_t *)((char *)hdr + off);
1278        bf = dp->d_ops->data_bestfree_p(hdr);
1279        longest = be16_to_cpu(bf[0].length);
1280        needlog = needscan = 0;
1281        xfs_dir2_data_make_free(args, dbp, off,
1282                dp->d_ops->data_entsize(dep->namelen), &needlog, &needscan);
1283        /*
1284         * Rescan the data block freespaces for bestfree.
1285         * Log the data block header if needed.
1286         */
1287        if (needscan)
1288                xfs_dir2_data_freescan(dp, hdr, &needlog);
1289        if (needlog)
1290                xfs_dir2_data_log_header(args, dbp);
1291        xfs_dir3_data_check(dp, dbp);
1292        /*
1293         * If the longest data block freespace changes, need to update
1294         * the corresponding freeblock entry.
1295         */
1296        if (longest < be16_to_cpu(bf[0].length)) {
1297                int             error;          /* error return value */
1298                struct xfs_buf  *fbp;           /* freeblock buffer */
1299                xfs_dir2_db_t   fdb;            /* freeblock block number */
1300                int             findex;         /* index in freeblock entries */
1301                xfs_dir2_free_t *free;          /* freeblock structure */
1302
1303                /*
1304                 * Convert the data block number to a free block,
1305                 * read in the free block.
1306                 */
1307                fdb = dp->d_ops->db_to_fdb(args->geo, db);
1308                error = xfs_dir2_free_read(tp, dp,
1309                                           xfs_dir2_db_to_da(args->geo, fdb),
1310                                           &fbp);
1311                if (error)
1312                        return error;
1313                free = fbp->b_addr;
1314#ifdef DEBUG
1315        {
1316                struct xfs_dir3_icfree_hdr freehdr;
1317                dp->d_ops->free_hdr_from_disk(&freehdr, free);
1318                ASSERT(freehdr.firstdb == dp->d_ops->free_max_bests(args->geo) *
1319                        (fdb - xfs_dir2_byte_to_db(args->geo,
1320                                                   XFS_DIR2_FREE_OFFSET)));
1321        }
1322#endif
1323                /*
1324                 * Calculate which entry we need to fix.
1325                 */
1326                findex = dp->d_ops->db_to_fdindex(args->geo, db);
1327                longest = be16_to_cpu(bf[0].length);
1328                /*
1329                 * If the data block is now empty we can get rid of it
1330                 * (usually).
1331                 */
1332                if (longest == args->geo->blksize -
1333                               dp->d_ops->data_entry_offset) {
1334                        /*
1335                         * Try to punch out the data block.
1336                         */
1337                        error = xfs_dir2_shrink_inode(args, db, dbp);
1338                        if (error == 0) {
1339                                dblk->bp = NULL;
1340                                hdr = NULL;
1341                        }
1342                        /*
1343                         * We can get ENOSPC if there's no space reservation.
1344                         * In this case just drop the buffer and some one else
1345                         * will eventually get rid of the empty block.
1346                         */
1347                        else if (!(error == -ENOSPC && args->total == 0))
1348                                return error;
1349                }
1350                /*
1351                 * If we got rid of the data block, we can eliminate that entry
1352                 * in the free block.
1353                 */
1354                error = xfs_dir3_data_block_free(args, hdr, free,
1355                                                 fdb, findex, fbp, longest);
1356                if (error)
1357                        return error;
1358        }
1359
1360        xfs_dir3_leaf_check(dp, bp);
1361        /*
1362         * Return indication of whether this leaf block is empty enough
1363         * to justify trying to join it with a neighbor.
1364         */
1365        *rval = (dp->d_ops->leaf_hdr_size +
1366                 (uint)sizeof(ents[0]) * (leafhdr.count - leafhdr.stale)) <
1367                args->geo->magicpct;
1368        return 0;
1369}
1370
1371/*
1372 * Split the leaf entries in the old block into old and new blocks.
1373 */
1374int                                             /* error */
1375xfs_dir2_leafn_split(
1376        xfs_da_state_t          *state,         /* btree cursor */
1377        xfs_da_state_blk_t      *oldblk,        /* original block */
1378        xfs_da_state_blk_t      *newblk)        /* newly created block */
1379{
1380        xfs_da_args_t           *args;          /* operation arguments */
1381        xfs_dablk_t             blkno;          /* new leaf block number */
1382        int                     error;          /* error return value */
1383        struct xfs_inode        *dp;
1384
1385        /*
1386         * Allocate space for a new leaf node.
1387         */
1388        args = state->args;
1389        dp = args->dp;
1390        ASSERT(oldblk->magic == XFS_DIR2_LEAFN_MAGIC);
1391        error = xfs_da_grow_inode(args, &blkno);
1392        if (error) {
1393                return error;
1394        }
1395        /*
1396         * Initialize the new leaf block.
1397         */
1398        error = xfs_dir3_leaf_get_buf(args, xfs_dir2_da_to_db(args->geo, blkno),
1399                                      &newblk->bp, XFS_DIR2_LEAFN_MAGIC);
1400        if (error)
1401                return error;
1402
1403        newblk->blkno = blkno;
1404        newblk->magic = XFS_DIR2_LEAFN_MAGIC;
1405        /*
1406         * Rebalance the entries across the two leaves, link the new
1407         * block into the leaves.
1408         */
1409        xfs_dir2_leafn_rebalance(state, oldblk, newblk);
1410        error = xfs_da3_blk_link(state, oldblk, newblk);
1411        if (error) {
1412                return error;
1413        }
1414        /*
1415         * Insert the new entry in the correct block.
1416         */
1417        if (state->inleaf)
1418                error = xfs_dir2_leafn_add(oldblk->bp, args, oldblk->index);
1419        else
1420                error = xfs_dir2_leafn_add(newblk->bp, args, newblk->index);
1421        /*
1422         * Update last hashval in each block since we added the name.
1423         */
1424        oldblk->hashval = xfs_dir2_leaf_lasthash(dp, oldblk->bp, NULL);
1425        newblk->hashval = xfs_dir2_leaf_lasthash(dp, newblk->bp, NULL);
1426        xfs_dir3_leaf_check(dp, oldblk->bp);
1427        xfs_dir3_leaf_check(dp, newblk->bp);
1428        return error;
1429}
1430
1431/*
1432 * Check a leaf block and its neighbors to see if the block should be
1433 * collapsed into one or the other neighbor.  Always keep the block
1434 * with the smaller block number.
1435 * If the current block is over 50% full, don't try to join it, return 0.
1436 * If the block is empty, fill in the state structure and return 2.
1437 * If it can be collapsed, fill in the state structure and return 1.
1438 * If nothing can be done, return 0.
1439 */
1440int                                             /* error */
1441xfs_dir2_leafn_toosmall(
1442        xfs_da_state_t          *state,         /* btree cursor */
1443        int                     *action)        /* resulting action to take */
1444{
1445        xfs_da_state_blk_t      *blk;           /* leaf block */
1446        xfs_dablk_t             blkno;          /* leaf block number */
1447        struct xfs_buf          *bp;            /* leaf buffer */
1448        int                     bytes;          /* bytes in use */
1449        int                     count;          /* leaf live entry count */
1450        int                     error;          /* error return value */
1451        int                     forward;        /* sibling block direction */
1452        int                     i;              /* sibling counter */
1453        xfs_dir2_leaf_t         *leaf;          /* leaf structure */
1454        int                     rval;           /* result from path_shift */
1455        struct xfs_dir3_icleaf_hdr leafhdr;
1456        struct xfs_dir2_leaf_entry *ents;
1457        struct xfs_inode        *dp = state->args->dp;
1458
1459        /*
1460         * Check for the degenerate case of the block being over 50% full.
1461         * If so, it's not worth even looking to see if we might be able
1462         * to coalesce with a sibling.
1463         */
1464        blk = &state->path.blk[state->path.active - 1];
1465        leaf = blk->bp->b_addr;
1466        dp->d_ops->leaf_hdr_from_disk(&leafhdr, leaf);
1467        ents = dp->d_ops->leaf_ents_p(leaf);
1468        xfs_dir3_leaf_check(dp, blk->bp);
1469
1470        count = leafhdr.count - leafhdr.stale;
1471        bytes = dp->d_ops->leaf_hdr_size + count * sizeof(ents[0]);
1472        if (bytes > (state->args->geo->blksize >> 1)) {
1473                /*
1474                 * Blk over 50%, don't try to join.
1475                 */
1476                *action = 0;
1477                return 0;
1478        }
1479        /*
1480         * Check for the degenerate case of the block being empty.
1481         * If the block is empty, we'll simply delete it, no need to
1482         * coalesce it with a sibling block.  We choose (arbitrarily)
1483         * to merge with the forward block unless it is NULL.
1484         */
1485        if (count == 0) {
1486                /*
1487                 * Make altpath point to the block we want to keep and
1488                 * path point to the block we want to drop (this one).
1489                 */
1490                forward = (leafhdr.forw != 0);
1491                memcpy(&state->altpath, &state->path, sizeof(state->path));
1492                error = xfs_da3_path_shift(state, &state->altpath, forward, 0,
1493                        &rval);
1494                if (error)
1495                        return error;
1496                *action = rval ? 2 : 0;
1497                return 0;
1498        }
1499        /*
1500         * Examine each sibling block to see if we can coalesce with
1501         * at least 25% free space to spare.  We need to figure out
1502         * whether to merge with the forward or the backward block.
1503         * We prefer coalescing with the lower numbered sibling so as
1504         * to shrink a directory over time.
1505         */
1506        forward = leafhdr.forw < leafhdr.back;
1507        for (i = 0, bp = NULL; i < 2; forward = !forward, i++) {
1508                struct xfs_dir3_icleaf_hdr hdr2;
1509
1510                blkno = forward ? leafhdr.forw : leafhdr.back;
1511                if (blkno == 0)
1512                        continue;
1513                /*
1514                 * Read the sibling leaf block.
1515                 */
1516                error = xfs_dir3_leafn_read(state->args->trans, dp,
1517                                            blkno, -1, &bp);
1518                if (error)
1519                        return error;
1520
1521                /*
1522                 * Count bytes in the two blocks combined.
1523                 */
1524                count = leafhdr.count - leafhdr.stale;
1525                bytes = state->args->geo->blksize -
1526                        (state->args->geo->blksize >> 2);
1527
1528                leaf = bp->b_addr;
1529                dp->d_ops->leaf_hdr_from_disk(&hdr2, leaf);
1530                ents = dp->d_ops->leaf_ents_p(leaf);
1531                count += hdr2.count - hdr2.stale;
1532                bytes -= count * sizeof(ents[0]);
1533
1534                /*
1535                 * Fits with at least 25% to spare.
1536                 */
1537                if (bytes >= 0)
1538                        break;
1539                xfs_trans_brelse(state->args->trans, bp);
1540        }
1541        /*
1542         * Didn't like either block, give up.
1543         */
1544        if (i >= 2) {
1545                *action = 0;
1546                return 0;
1547        }
1548
1549        /*
1550         * Make altpath point to the block we want to keep (the lower
1551         * numbered block) and path point to the block we want to drop.
1552         */
1553        memcpy(&state->altpath, &state->path, sizeof(state->path));
1554        if (blkno < blk->blkno)
1555                error = xfs_da3_path_shift(state, &state->altpath, forward, 0,
1556                        &rval);
1557        else
1558                error = xfs_da3_path_shift(state, &state->path, forward, 0,
1559                        &rval);
1560        if (error) {
1561                return error;
1562        }
1563        *action = rval ? 0 : 1;
1564        return 0;
1565}
1566
1567/*
1568 * Move all the leaf entries from drop_blk to save_blk.
1569 * This is done as part of a join operation.
1570 */
1571void
1572xfs_dir2_leafn_unbalance(
1573        xfs_da_state_t          *state,         /* cursor */
1574        xfs_da_state_blk_t      *drop_blk,      /* dead block */
1575        xfs_da_state_blk_t      *save_blk)      /* surviving block */
1576{
1577        xfs_da_args_t           *args;          /* operation arguments */
1578        xfs_dir2_leaf_t         *drop_leaf;     /* dead leaf structure */
1579        xfs_dir2_leaf_t         *save_leaf;     /* surviving leaf structure */
1580        struct xfs_dir3_icleaf_hdr savehdr;
1581        struct xfs_dir3_icleaf_hdr drophdr;
1582        struct xfs_dir2_leaf_entry *sents;
1583        struct xfs_dir2_leaf_entry *dents;
1584        struct xfs_inode        *dp = state->args->dp;
1585
1586        args = state->args;
1587        ASSERT(drop_blk->magic == XFS_DIR2_LEAFN_MAGIC);
1588        ASSERT(save_blk->magic == XFS_DIR2_LEAFN_MAGIC);
1589        drop_leaf = drop_blk->bp->b_addr;
1590        save_leaf = save_blk->bp->b_addr;
1591
1592        dp->d_ops->leaf_hdr_from_disk(&savehdr, save_leaf);
1593        dp->d_ops->leaf_hdr_from_disk(&drophdr, drop_leaf);
1594        sents = dp->d_ops->leaf_ents_p(save_leaf);
1595        dents = dp->d_ops->leaf_ents_p(drop_leaf);
1596
1597        /*
1598         * If there are any stale leaf entries, take this opportunity
1599         * to purge them.
1600         */
1601        if (drophdr.stale)
1602                xfs_dir3_leaf_compact(args, &drophdr, drop_blk->bp);
1603        if (savehdr.stale)
1604                xfs_dir3_leaf_compact(args, &savehdr, save_blk->bp);
1605
1606        /*
1607         * Move the entries from drop to the appropriate end of save.
1608         */
1609        drop_blk->hashval = be32_to_cpu(dents[drophdr.count - 1].hashval);
1610        if (xfs_dir2_leafn_order(dp, save_blk->bp, drop_blk->bp))
1611                xfs_dir3_leafn_moveents(args, drop_blk->bp, &drophdr, dents, 0,
1612                                        save_blk->bp, &savehdr, sents, 0,
1613                                        drophdr.count);
1614        else
1615                xfs_dir3_leafn_moveents(args, drop_blk->bp, &drophdr, dents, 0,
1616                                        save_blk->bp, &savehdr, sents,
1617                                        savehdr.count, drophdr.count);
1618        save_blk->hashval = be32_to_cpu(sents[savehdr.count - 1].hashval);
1619
1620        /* log the changes made when moving the entries */
1621        dp->d_ops->leaf_hdr_to_disk(save_leaf, &savehdr);
1622        dp->d_ops->leaf_hdr_to_disk(drop_leaf, &drophdr);
1623        xfs_dir3_leaf_log_header(args, save_blk->bp);
1624        xfs_dir3_leaf_log_header(args, drop_blk->bp);
1625
1626        xfs_dir3_leaf_check(dp, save_blk->bp);
1627        xfs_dir3_leaf_check(dp, drop_blk->bp);
1628}
1629
1630/*
1631 * Top-level node form directory addname routine.
1632 */
1633int                                             /* error */
1634xfs_dir2_node_addname(
1635        xfs_da_args_t           *args)          /* operation arguments */
1636{
1637        xfs_da_state_blk_t      *blk;           /* leaf block for insert */
1638        int                     error;          /* error return value */
1639        int                     rval;           /* sub-return value */
1640        xfs_da_state_t          *state;         /* btree cursor */
1641
1642        trace_xfs_dir2_node_addname(args);
1643
1644        /*
1645         * Allocate and initialize the state (btree cursor).
1646         */
1647        state = xfs_da_state_alloc();
1648        state->args = args;
1649        state->mp = args->dp->i_mount;
1650        /*
1651         * Look up the name.  We're not supposed to find it, but
1652         * this gives us the insertion point.
1653         */
1654        error = xfs_da3_node_lookup_int(state, &rval);
1655        if (error)
1656                rval = error;
1657        if (rval != -ENOENT) {
1658                goto done;
1659        }
1660        /*
1661         * Add the data entry to a data block.
1662         * Extravalid is set to a freeblock found by lookup.
1663         */
1664        rval = xfs_dir2_node_addname_int(args,
1665                state->extravalid ? &state->extrablk : NULL);
1666        if (rval) {
1667                goto done;
1668        }
1669        blk = &state->path.blk[state->path.active - 1];
1670        ASSERT(blk->magic == XFS_DIR2_LEAFN_MAGIC);
1671        /*
1672         * Add the new leaf entry.
1673         */
1674        rval = xfs_dir2_leafn_add(blk->bp, args, blk->index);
1675        if (rval == 0) {
1676                /*
1677                 * It worked, fix the hash values up the btree.
1678                 */
1679                if (!(args->op_flags & XFS_DA_OP_JUSTCHECK))
1680                        xfs_da3_fixhashpath(state, &state->path);
1681        } else {
1682                /*
1683                 * It didn't work, we need to split the leaf block.
1684                 */
1685                if (args->total == 0) {
1686                        ASSERT(rval == -ENOSPC);
1687                        goto done;
1688                }
1689                /*
1690                 * Split the leaf block and insert the new entry.
1691                 */
1692                rval = xfs_da3_split(state);
1693        }
1694done:
1695        xfs_da_state_free(state);
1696        return rval;
1697}
1698
1699/*
1700 * Add the data entry for a node-format directory name addition.
1701 * The leaf entry is added in xfs_dir2_leafn_add.
1702 * We may enter with a freespace block that the lookup found.
1703 */
1704static int                                      /* error */
1705xfs_dir2_node_addname_int(
1706        xfs_da_args_t           *args,          /* operation arguments */
1707        xfs_da_state_blk_t      *fblk)          /* optional freespace block */
1708{
1709        xfs_dir2_data_hdr_t     *hdr;           /* data block header */
1710        xfs_dir2_db_t           dbno;           /* data block number */
1711        struct xfs_buf          *dbp;           /* data block buffer */
1712        xfs_dir2_data_entry_t   *dep;           /* data entry pointer */
1713        xfs_inode_t             *dp;            /* incore directory inode */
1714        xfs_dir2_data_unused_t  *dup;           /* data unused entry pointer */
1715        int                     error;          /* error return value */
1716        xfs_dir2_db_t           fbno;           /* freespace block number */
1717        struct xfs_buf          *fbp;           /* freespace buffer */
1718        int                     findex;         /* freespace entry index */
1719        xfs_dir2_free_t         *free=NULL;     /* freespace block structure */
1720        xfs_dir2_db_t           ifbno;          /* initial freespace block no */
1721        xfs_dir2_db_t           lastfbno=0;     /* highest freespace block no */
1722        int                     length;         /* length of the new entry */
1723        int                     logfree;        /* need to log free entry */
1724        xfs_mount_t             *mp;            /* filesystem mount point */
1725        int                     needlog;        /* need to log data header */
1726        int                     needscan;       /* need to rescan data frees */
1727        __be16                  *tagp;          /* data entry tag pointer */
1728        xfs_trans_t             *tp;            /* transaction pointer */
1729        __be16                  *bests;
1730        struct xfs_dir3_icfree_hdr freehdr;
1731        struct xfs_dir2_data_free *bf;
1732        xfs_dir2_data_aoff_t    aoff;
1733
1734        dp = args->dp;
1735        mp = dp->i_mount;
1736        tp = args->trans;
1737        length = dp->d_ops->data_entsize(args->namelen);
1738        /*
1739         * If we came in with a freespace block that means that lookup
1740         * found an entry with our hash value.  This is the freespace
1741         * block for that data entry.
1742         */
1743        if (fblk) {
1744                fbp = fblk->bp;
1745                /*
1746                 * Remember initial freespace block number.
1747                 */
1748                ifbno = fblk->blkno;
1749                free = fbp->b_addr;
1750                findex = fblk->index;
1751                bests = dp->d_ops->free_bests_p(free);
1752                dp->d_ops->free_hdr_from_disk(&freehdr, free);
1753
1754                /*
1755                 * This means the free entry showed that the data block had
1756                 * space for our entry, so we remembered it.
1757                 * Use that data block.
1758                 */
1759                if (findex >= 0) {
1760                        ASSERT(findex < freehdr.nvalid);
1761                        ASSERT(be16_to_cpu(bests[findex]) != NULLDATAOFF);
1762                        ASSERT(be16_to_cpu(bests[findex]) >= length);
1763                        dbno = freehdr.firstdb + findex;
1764                } else {
1765                        /*
1766                         * The data block looked at didn't have enough room.
1767                         * We'll start at the beginning of the freespace entries.
1768                         */
1769                        dbno = -1;
1770                        findex = 0;
1771                }
1772        } else {
1773                /*
1774                 * Didn't come in with a freespace block, so no data block.
1775                 */
1776                ifbno = dbno = -1;
1777                fbp = NULL;
1778                findex = 0;
1779        }
1780
1781        /*
1782         * If we don't have a data block yet, we're going to scan the
1783         * freespace blocks looking for one.  Figure out what the
1784         * highest freespace block number is.
1785         */
1786        if (dbno == -1) {
1787                xfs_fileoff_t   fo;             /* freespace block number */
1788
1789                if ((error = xfs_bmap_last_offset(dp, &fo, XFS_DATA_FORK)))
1790                        return error;
1791                lastfbno = xfs_dir2_da_to_db(args->geo, (xfs_dablk_t)fo);
1792                fbno = ifbno;
1793        }
1794        /*
1795         * While we haven't identified a data block, search the freeblock
1796         * data for a good data block.  If we find a null freeblock entry,
1797         * indicating a hole in the data blocks, remember that.
1798         */
1799        while (dbno == -1) {
1800                /*
1801                 * If we don't have a freeblock in hand, get the next one.
1802                 */
1803                if (fbp == NULL) {
1804                        /*
1805                         * Happens the first time through unless lookup gave
1806                         * us a freespace block to start with.
1807                         */
1808                        if (++fbno == 0)
1809                                fbno = xfs_dir2_byte_to_db(args->geo,
1810                                                        XFS_DIR2_FREE_OFFSET);
1811                        /*
1812                         * If it's ifbno we already looked at it.
1813                         */
1814                        if (fbno == ifbno)
1815                                fbno++;
1816                        /*
1817                         * If it's off the end we're done.
1818                         */
1819                        if (fbno >= lastfbno)
1820                                break;
1821                        /*
1822                         * Read the block.  There can be holes in the
1823                         * freespace blocks, so this might not succeed.
1824                         * This should be really rare, so there's no reason
1825                         * to avoid it.
1826                         */
1827                        error = xfs_dir2_free_try_read(tp, dp,
1828                                        xfs_dir2_db_to_da(args->geo, fbno),
1829                                        &fbp);
1830                        if (error)
1831                                return error;
1832                        if (!fbp)
1833                                continue;
1834                        free = fbp->b_addr;
1835                        findex = 0;
1836                }
1837                /*
1838                 * Look at the current free entry.  Is it good enough?
1839                 *
1840                 * The bests initialisation should be where the bufer is read in
1841                 * the above branch. But gcc is too stupid to realise that bests
1842                 * and the freehdr are actually initialised if they are placed
1843                 * there, so we have to do it here to avoid warnings. Blech.
1844                 */
1845                bests = dp->d_ops->free_bests_p(free);
1846                dp->d_ops->free_hdr_from_disk(&freehdr, free);
1847                if (be16_to_cpu(bests[findex]) != NULLDATAOFF &&
1848                    be16_to_cpu(bests[findex]) >= length)
1849                        dbno = freehdr.firstdb + findex;
1850                else {
1851                        /*
1852                         * Are we done with the freeblock?
1853                         */
1854                        if (++findex == freehdr.nvalid) {
1855                                /*
1856                                 * Drop the block.
1857                                 */
1858                                xfs_trans_brelse(tp, fbp);
1859                                fbp = NULL;
1860                                if (fblk && fblk->bp)
1861                                        fblk->bp = NULL;
1862                        }
1863                }
1864        }
1865        /*
1866         * If we don't have a data block, we need to allocate one and make
1867         * the freespace entries refer to it.
1868         */
1869        if (unlikely(dbno == -1)) {
1870                /*
1871                 * Not allowed to allocate, return failure.
1872                 */
1873                if ((args->op_flags & XFS_DA_OP_JUSTCHECK) || args->total == 0)
1874                        return -ENOSPC;
1875
1876                /*
1877                 * Allocate and initialize the new data block.
1878                 */
1879                if (unlikely((error = xfs_dir2_grow_inode(args,
1880                                                         XFS_DIR2_DATA_SPACE,
1881                                                         &dbno)) ||
1882                    (error = xfs_dir3_data_init(args, dbno, &dbp))))
1883                        return error;
1884
1885                /*
1886                 * If (somehow) we have a freespace block, get rid of it.
1887                 */
1888                if (fbp)
1889                        xfs_trans_brelse(tp, fbp);
1890                if (fblk && fblk->bp)
1891                        fblk->bp = NULL;
1892
1893                /*
1894                 * Get the freespace block corresponding to the data block
1895                 * that was just allocated.
1896                 */
1897                fbno = dp->d_ops->db_to_fdb(args->geo, dbno);
1898                error = xfs_dir2_free_try_read(tp, dp,
1899                                       xfs_dir2_db_to_da(args->geo, fbno),
1900                                       &fbp);
1901                if (error)
1902                        return error;
1903
1904                /*
1905                 * If there wasn't a freespace block, the read will
1906                 * return a NULL fbp.  Allocate and initialize a new one.
1907                 */
1908                if (!fbp) {
1909                        error = xfs_dir2_grow_inode(args, XFS_DIR2_FREE_SPACE,
1910                                                    &fbno);
1911                        if (error)
1912                                return error;
1913
1914                        if (dp->d_ops->db_to_fdb(args->geo, dbno) != fbno) {
1915                                xfs_alert(mp,
1916"%s: dir ino %llu needed freesp block %lld for data block %lld, got %lld ifbno %llu lastfbno %d",
1917                                        __func__, (unsigned long long)dp->i_ino,
1918                                        (long long)dp->d_ops->db_to_fdb(
1919                                                                args->geo, dbno),
1920                                        (long long)dbno, (long long)fbno,
1921                                        (unsigned long long)ifbno, lastfbno);
1922                                if (fblk) {
1923                                        xfs_alert(mp,
1924                                " fblk "PTR_FMT" blkno %llu index %d magic 0x%x",
1925                                                fblk,
1926                                                (unsigned long long)fblk->blkno,
1927                                                fblk->index,
1928                                                fblk->magic);
1929                                } else {
1930                                        xfs_alert(mp, " ... fblk is NULL");
1931                                }
1932                                XFS_ERROR_REPORT("xfs_dir2_node_addname_int",
1933                                                 XFS_ERRLEVEL_LOW, mp);
1934                                return -EFSCORRUPTED;
1935                        }
1936
1937                        /*
1938                         * Get a buffer for the new block.
1939                         */
1940                        error = xfs_dir3_free_get_buf(args, fbno, &fbp);
1941                        if (error)
1942                                return error;
1943                        free = fbp->b_addr;
1944                        bests = dp->d_ops->free_bests_p(free);
1945                        dp->d_ops->free_hdr_from_disk(&freehdr, free);
1946
1947                        /*
1948                         * Remember the first slot as our empty slot.
1949                         */
1950                        freehdr.firstdb =
1951                                (fbno - xfs_dir2_byte_to_db(args->geo,
1952                                                        XFS_DIR2_FREE_OFFSET)) *
1953                                        dp->d_ops->free_max_bests(args->geo);
1954                } else {
1955                        free = fbp->b_addr;
1956                        bests = dp->d_ops->free_bests_p(free);
1957                        dp->d_ops->free_hdr_from_disk(&freehdr, free);
1958                }
1959
1960                /*
1961                 * Set the freespace block index from the data block number.
1962                 */
1963                findex = dp->d_ops->db_to_fdindex(args->geo, dbno);
1964                /*
1965                 * If it's after the end of the current entries in the
1966                 * freespace block, extend that table.
1967                 */
1968                if (findex >= freehdr.nvalid) {
1969                        ASSERT(findex < dp->d_ops->free_max_bests(args->geo));
1970                        freehdr.nvalid = findex + 1;
1971                        /*
1972                         * Tag new entry so nused will go up.
1973                         */
1974                        bests[findex] = cpu_to_be16(NULLDATAOFF);
1975                }
1976                /*
1977                 * If this entry was for an empty data block
1978                 * (this should always be true) then update the header.
1979                 */
1980                if (bests[findex] == cpu_to_be16(NULLDATAOFF)) {
1981                        freehdr.nused++;
1982                        dp->d_ops->free_hdr_to_disk(fbp->b_addr, &freehdr);
1983                        xfs_dir2_free_log_header(args, fbp);
1984                }
1985                /*
1986                 * Update the real value in the table.
1987                 * We haven't allocated the data entry yet so this will
1988                 * change again.
1989                 */
1990                hdr = dbp->b_addr;
1991                bf = dp->d_ops->data_bestfree_p(hdr);
1992                bests[findex] = bf[0].length;
1993                logfree = 1;
1994        }
1995        /*
1996         * We had a data block so we don't have to make a new one.
1997         */
1998        else {
1999                /*
2000                 * If just checking, we succeeded.
2001                 */
2002                if (args->op_flags & XFS_DA_OP_JUSTCHECK)
2003                        return 0;
2004
2005                /*
2006                 * Read the data block in.
2007                 */
2008                error = xfs_dir3_data_read(tp, dp,
2009                                           xfs_dir2_db_to_da(args->geo, dbno),
2010                                           -1, &dbp);
2011                if (error)
2012                        return error;
2013                hdr = dbp->b_addr;
2014                bf = dp->d_ops->data_bestfree_p(hdr);
2015                logfree = 0;
2016        }
2017        ASSERT(be16_to_cpu(bf[0].length) >= length);
2018        /*
2019         * Point to the existing unused space.
2020         */
2021        dup = (xfs_dir2_data_unused_t *)
2022              ((char *)hdr + be16_to_cpu(bf[0].offset));
2023        needscan = needlog = 0;
2024        /*
2025         * Mark the first part of the unused space, inuse for us.
2026         */
2027        aoff = (xfs_dir2_data_aoff_t)((char *)dup - (char *)hdr);
2028        error = xfs_dir2_data_use_free(args, dbp, dup, aoff, length,
2029                        &needlog, &needscan);
2030        if (error) {
2031                xfs_trans_brelse(tp, dbp);
2032                return error;
2033        }
2034        /*
2035         * Fill in the new entry and log it.
2036         */
2037        dep = (xfs_dir2_data_entry_t *)dup;
2038        dep->inumber = cpu_to_be64(args->inumber);
2039        dep->namelen = args->namelen;
2040        memcpy(dep->name, args->name, dep->namelen);
2041        dp->d_ops->data_put_ftype(dep, args->filetype);
2042        tagp = dp->d_ops->data_entry_tag_p(dep);
2043        *tagp = cpu_to_be16((char *)dep - (char *)hdr);
2044        xfs_dir2_data_log_entry(args, dbp, dep);
2045        /*
2046         * Rescan the block for bestfree if needed.
2047         */
2048        if (needscan)
2049                xfs_dir2_data_freescan(dp, hdr, &needlog);
2050        /*
2051         * Log the data block header if needed.
2052         */
2053        if (needlog)
2054                xfs_dir2_data_log_header(args, dbp);
2055        /*
2056         * If the freespace entry is now wrong, update it.
2057         */
2058        bests = dp->d_ops->free_bests_p(free); /* gcc is so stupid */
2059        if (be16_to_cpu(bests[findex]) != be16_to_cpu(bf[0].length)) {
2060                bests[findex] = bf[0].length;
2061                logfree = 1;
2062        }
2063        /*
2064         * Log the freespace entry if needed.
2065         */
2066        if (logfree)
2067                xfs_dir2_free_log_bests(args, fbp, findex, findex);
2068        /*
2069         * Return the data block and offset in args, then drop the data block.
2070         */
2071        args->blkno = (xfs_dablk_t)dbno;
2072        args->index = be16_to_cpu(*tagp);
2073        return 0;
2074}
2075
2076/*
2077 * Lookup an entry in a node-format directory.
2078 * All the real work happens in xfs_da3_node_lookup_int.
2079 * The only real output is the inode number of the entry.
2080 */
2081int                                             /* error */
2082xfs_dir2_node_lookup(
2083        xfs_da_args_t   *args)                  /* operation arguments */
2084{
2085        int             error;                  /* error return value */
2086        int             i;                      /* btree level */
2087        int             rval;                   /* operation return value */
2088        xfs_da_state_t  *state;                 /* btree cursor */
2089
2090        trace_xfs_dir2_node_lookup(args);
2091
2092        /*
2093         * Allocate and initialize the btree cursor.
2094         */
2095        state = xfs_da_state_alloc();
2096        state->args = args;
2097        state->mp = args->dp->i_mount;
2098        /*
2099         * Fill in the path to the entry in the cursor.
2100         */
2101        error = xfs_da3_node_lookup_int(state, &rval);
2102        if (error)
2103                rval = error;
2104        else if (rval == -ENOENT && args->cmpresult == XFS_CMP_CASE) {
2105                /* If a CI match, dup the actual name and return -EEXIST */
2106                xfs_dir2_data_entry_t   *dep;
2107
2108                dep = (xfs_dir2_data_entry_t *)
2109                        ((char *)state->extrablk.bp->b_addr +
2110                                                 state->extrablk.index);
2111                rval = xfs_dir_cilookup_result(args, dep->name, dep->namelen);
2112        }
2113        /*
2114         * Release the btree blocks and leaf block.
2115         */
2116        for (i = 0; i < state->path.active; i++) {
2117                xfs_trans_brelse(args->trans, state->path.blk[i].bp);
2118                state->path.blk[i].bp = NULL;
2119        }
2120        /*
2121         * Release the data block if we have it.
2122         */
2123        if (state->extravalid && state->extrablk.bp) {
2124                xfs_trans_brelse(args->trans, state->extrablk.bp);
2125                state->extrablk.bp = NULL;
2126        }
2127        xfs_da_state_free(state);
2128        return rval;
2129}
2130
2131/*
2132 * Remove an entry from a node-format directory.
2133 */
2134int                                             /* error */
2135xfs_dir2_node_removename(
2136        struct xfs_da_args      *args)          /* operation arguments */
2137{
2138        struct xfs_da_state_blk *blk;           /* leaf block */
2139        int                     error;          /* error return value */
2140        int                     rval;           /* operation return value */
2141        struct xfs_da_state     *state;         /* btree cursor */
2142
2143        trace_xfs_dir2_node_removename(args);
2144
2145        /*
2146         * Allocate and initialize the btree cursor.
2147         */
2148        state = xfs_da_state_alloc();
2149        state->args = args;
2150        state->mp = args->dp->i_mount;
2151
2152        /* Look up the entry we're deleting, set up the cursor. */
2153        error = xfs_da3_node_lookup_int(state, &rval);
2154        if (error)
2155                goto out_free;
2156
2157        /* Didn't find it, upper layer screwed up. */
2158        if (rval != -EEXIST) {
2159                error = rval;
2160                goto out_free;
2161        }
2162
2163        blk = &state->path.blk[state->path.active - 1];
2164        ASSERT(blk->magic == XFS_DIR2_LEAFN_MAGIC);
2165        ASSERT(state->extravalid);
2166        /*
2167         * Remove the leaf and data entries.
2168         * Extrablk refers to the data block.
2169         */
2170        error = xfs_dir2_leafn_remove(args, blk->bp, blk->index,
2171                &state->extrablk, &rval);
2172        if (error)
2173                goto out_free;
2174        /*
2175         * Fix the hash values up the btree.
2176         */
2177        xfs_da3_fixhashpath(state, &state->path);
2178        /*
2179         * If we need to join leaf blocks, do it.
2180         */
2181        if (rval && state->path.active > 1)
2182                error = xfs_da3_join(state);
2183        /*
2184         * If no errors so far, try conversion to leaf format.
2185         */
2186        if (!error)
2187                error = xfs_dir2_node_to_leaf(state);
2188out_free:
2189        xfs_da_state_free(state);
2190        return error;
2191}
2192
2193/*
2194 * Replace an entry's inode number in a node-format directory.
2195 */
2196int                                             /* error */
2197xfs_dir2_node_replace(
2198        xfs_da_args_t           *args)          /* operation arguments */
2199{
2200        xfs_da_state_blk_t      *blk;           /* leaf block */
2201        xfs_dir2_data_hdr_t     *hdr;           /* data block header */
2202        xfs_dir2_data_entry_t   *dep;           /* data entry changed */
2203        int                     error;          /* error return value */
2204        int                     i;              /* btree level */
2205        xfs_ino_t               inum;           /* new inode number */
2206        int                     ftype;          /* new file type */
2207        xfs_dir2_leaf_t         *leaf;          /* leaf structure */
2208        xfs_dir2_leaf_entry_t   *lep;           /* leaf entry being changed */
2209        int                     rval;           /* internal return value */
2210        xfs_da_state_t          *state;         /* btree cursor */
2211
2212        trace_xfs_dir2_node_replace(args);
2213
2214        /*
2215         * Allocate and initialize the btree cursor.
2216         */
2217        state = xfs_da_state_alloc();
2218        state->args = args;
2219        state->mp = args->dp->i_mount;
2220
2221        /*
2222         * We have to save new inode number and ftype since
2223         * xfs_da3_node_lookup_int() is going to overwrite them
2224         */
2225        inum = args->inumber;
2226        ftype = args->filetype;
2227
2228        /*
2229         * Lookup the entry to change in the btree.
2230         */
2231        error = xfs_da3_node_lookup_int(state, &rval);
2232        if (error) {
2233                rval = error;
2234        }
2235        /*
2236         * It should be found, since the vnodeops layer has looked it up
2237         * and locked it.  But paranoia is good.
2238         */
2239        if (rval == -EEXIST) {
2240                struct xfs_dir2_leaf_entry *ents;
2241                /*
2242                 * Find the leaf entry.
2243                 */
2244                blk = &state->path.blk[state->path.active - 1];
2245                ASSERT(blk->magic == XFS_DIR2_LEAFN_MAGIC);
2246                leaf = blk->bp->b_addr;
2247                ents = args->dp->d_ops->leaf_ents_p(leaf);
2248                lep = &ents[blk->index];
2249                ASSERT(state->extravalid);
2250                /*
2251                 * Point to the data entry.
2252                 */
2253                hdr = state->extrablk.bp->b_addr;
2254                ASSERT(hdr->magic == cpu_to_be32(XFS_DIR2_DATA_MAGIC) ||
2255                       hdr->magic == cpu_to_be32(XFS_DIR3_DATA_MAGIC));
2256                dep = (xfs_dir2_data_entry_t *)
2257                      ((char *)hdr +
2258                       xfs_dir2_dataptr_to_off(args->geo,
2259                                               be32_to_cpu(lep->address)));
2260                ASSERT(inum != be64_to_cpu(dep->inumber));
2261                /*
2262                 * Fill in the new inode number and log the entry.
2263                 */
2264                dep->inumber = cpu_to_be64(inum);
2265                args->dp->d_ops->data_put_ftype(dep, ftype);
2266                xfs_dir2_data_log_entry(args, state->extrablk.bp, dep);
2267                rval = 0;
2268        }
2269        /*
2270         * Didn't find it, and we're holding a data block.  Drop it.
2271         */
2272        else if (state->extravalid) {
2273                xfs_trans_brelse(args->trans, state->extrablk.bp);
2274                state->extrablk.bp = NULL;
2275        }
2276        /*
2277         * Release all the buffers in the cursor.
2278         */
2279        for (i = 0; i < state->path.active; i++) {
2280                xfs_trans_brelse(args->trans, state->path.blk[i].bp);
2281                state->path.blk[i].bp = NULL;
2282        }
2283        xfs_da_state_free(state);
2284        return rval;
2285}
2286
2287/*
2288 * Trim off a trailing empty freespace block.
2289 * Return (in rvalp) 1 if we did it, 0 if not.
2290 */
2291int                                             /* error */
2292xfs_dir2_node_trim_free(
2293        xfs_da_args_t           *args,          /* operation arguments */
2294        xfs_fileoff_t           fo,             /* free block number */
2295        int                     *rvalp)         /* out: did something */
2296{
2297        struct xfs_buf          *bp;            /* freespace buffer */
2298        xfs_inode_t             *dp;            /* incore directory inode */
2299        int                     error;          /* error return code */
2300        xfs_dir2_free_t         *free;          /* freespace structure */
2301        xfs_trans_t             *tp;            /* transaction pointer */
2302        struct xfs_dir3_icfree_hdr freehdr;
2303
2304        dp = args->dp;
2305        tp = args->trans;
2306
2307        *rvalp = 0;
2308
2309        /*
2310         * Read the freespace block.
2311         */
2312        error = xfs_dir2_free_try_read(tp, dp, fo, &bp);
2313        if (error)
2314                return error;
2315        /*
2316         * There can be holes in freespace.  If fo is a hole, there's
2317         * nothing to do.
2318         */
2319        if (!bp)
2320                return 0;
2321        free = bp->b_addr;
2322        dp->d_ops->free_hdr_from_disk(&freehdr, free);
2323
2324        /*
2325         * If there are used entries, there's nothing to do.
2326         */
2327        if (freehdr.nused > 0) {
2328                xfs_trans_brelse(tp, bp);
2329                return 0;
2330        }
2331        /*
2332         * Blow the block away.
2333         */
2334        error = xfs_dir2_shrink_inode(args,
2335                        xfs_dir2_da_to_db(args->geo, (xfs_dablk_t)fo), bp);
2336        if (error) {
2337                /*
2338                 * Can't fail with ENOSPC since that only happens with no
2339                 * space reservation, when breaking up an extent into two
2340                 * pieces.  This is the last block of an extent.
2341                 */
2342                ASSERT(error != -ENOSPC);
2343                xfs_trans_brelse(tp, bp);
2344                return error;
2345        }
2346        /*
2347         * Return that we succeeded.
2348         */
2349        *rvalp = 1;
2350        return 0;
2351}
2352