linux/fs/fat/inode.c
<<
>>
Prefs
   1/*
   2 *  linux/fs/fat/inode.c
   3 *
   4 *  Written 1992,1993 by Werner Almesberger
   5 *  VFAT extensions by Gordon Chaffee, merged with msdos fs by Henrik Storner
   6 *  Rewritten for the constant inumbers support by Al Viro
   7 *
   8 *  Fixes:
   9 *
  10 *      Max Cohan: Fixed invalid FSINFO offset when info_sector is 0
  11 */
  12
  13#include <linux/module.h>
  14#include <linux/pagemap.h>
  15#include <linux/mpage.h>
  16#include <linux/vfs.h>
  17#include <linux/seq_file.h>
  18#include <linux/parser.h>
  19#include <linux/uio.h>
  20#include <linux/blkdev.h>
  21#include <linux/backing-dev.h>
  22#include <asm/unaligned.h>
  23#include <linux/iversion.h>
  24#include "fat.h"
  25
  26#ifndef CONFIG_FAT_DEFAULT_IOCHARSET
  27/* if user don't select VFAT, this is undefined. */
  28#define CONFIG_FAT_DEFAULT_IOCHARSET    ""
  29#endif
  30
  31#define KB_IN_SECTORS 2
  32
  33/*
  34 * A deserialized copy of the on-disk structure laid out in struct
  35 * fat_boot_sector.
  36 */
  37struct fat_bios_param_block {
  38        u16     fat_sector_size;
  39        u8      fat_sec_per_clus;
  40        u16     fat_reserved;
  41        u8      fat_fats;
  42        u16     fat_dir_entries;
  43        u16     fat_sectors;
  44        u16     fat_fat_length;
  45        u32     fat_total_sect;
  46
  47        u8      fat16_state;
  48        u32     fat16_vol_id;
  49
  50        u32     fat32_length;
  51        u32     fat32_root_cluster;
  52        u16     fat32_info_sector;
  53        u8      fat32_state;
  54        u32     fat32_vol_id;
  55};
  56
  57static int fat_default_codepage = CONFIG_FAT_DEFAULT_CODEPAGE;
  58static char fat_default_iocharset[] = CONFIG_FAT_DEFAULT_IOCHARSET;
  59
  60static struct fat_floppy_defaults {
  61        unsigned nr_sectors;
  62        unsigned sec_per_clus;
  63        unsigned dir_entries;
  64        unsigned media;
  65        unsigned fat_length;
  66} floppy_defaults[] = {
  67{
  68        .nr_sectors = 160 * KB_IN_SECTORS,
  69        .sec_per_clus = 1,
  70        .dir_entries = 64,
  71        .media = 0xFE,
  72        .fat_length = 1,
  73},
  74{
  75        .nr_sectors = 180 * KB_IN_SECTORS,
  76        .sec_per_clus = 1,
  77        .dir_entries = 64,
  78        .media = 0xFC,
  79        .fat_length = 2,
  80},
  81{
  82        .nr_sectors = 320 * KB_IN_SECTORS,
  83        .sec_per_clus = 2,
  84        .dir_entries = 112,
  85        .media = 0xFF,
  86        .fat_length = 1,
  87},
  88{
  89        .nr_sectors = 360 * KB_IN_SECTORS,
  90        .sec_per_clus = 2,
  91        .dir_entries = 112,
  92        .media = 0xFD,
  93        .fat_length = 2,
  94},
  95};
  96
  97int fat_add_cluster(struct inode *inode)
  98{
  99        int err, cluster;
 100
 101        err = fat_alloc_clusters(inode, &cluster, 1);
 102        if (err)
 103                return err;
 104        /* FIXME: this cluster should be added after data of this
 105         * cluster is writed */
 106        err = fat_chain_add(inode, cluster, 1);
 107        if (err)
 108                fat_free_clusters(inode, cluster);
 109        return err;
 110}
 111
 112static inline int __fat_get_block(struct inode *inode, sector_t iblock,
 113                                  unsigned long *max_blocks,
 114                                  struct buffer_head *bh_result, int create)
 115{
 116        struct super_block *sb = inode->i_sb;
 117        struct msdos_sb_info *sbi = MSDOS_SB(sb);
 118        unsigned long mapped_blocks;
 119        sector_t phys, last_block;
 120        int err, offset;
 121
 122        err = fat_bmap(inode, iblock, &phys, &mapped_blocks, create, false);
 123        if (err)
 124                return err;
 125        if (phys) {
 126                map_bh(bh_result, sb, phys);
 127                *max_blocks = min(mapped_blocks, *max_blocks);
 128                return 0;
 129        }
 130        if (!create)
 131                return 0;
 132
 133        if (iblock != MSDOS_I(inode)->mmu_private >> sb->s_blocksize_bits) {
 134                fat_fs_error(sb, "corrupted file size (i_pos %lld, %lld)",
 135                        MSDOS_I(inode)->i_pos, MSDOS_I(inode)->mmu_private);
 136                return -EIO;
 137        }
 138
 139        last_block = inode->i_blocks >> (sb->s_blocksize_bits - 9);
 140        offset = (unsigned long)iblock & (sbi->sec_per_clus - 1);
 141        /*
 142         * allocate a cluster according to the following.
 143         * 1) no more available blocks
 144         * 2) not part of fallocate region
 145         */
 146        if (!offset && !(iblock < last_block)) {
 147                /* TODO: multiple cluster allocation would be desirable. */
 148                err = fat_add_cluster(inode);
 149                if (err)
 150                        return err;
 151        }
 152        /* available blocks on this cluster */
 153        mapped_blocks = sbi->sec_per_clus - offset;
 154
 155        *max_blocks = min(mapped_blocks, *max_blocks);
 156        MSDOS_I(inode)->mmu_private += *max_blocks << sb->s_blocksize_bits;
 157
 158        err = fat_bmap(inode, iblock, &phys, &mapped_blocks, create, false);
 159        if (err)
 160                return err;
 161        if (!phys) {
 162                fat_fs_error(sb,
 163                             "invalid FAT chain (i_pos %lld, last_block %llu)",
 164                             MSDOS_I(inode)->i_pos,
 165                             (unsigned long long)last_block);
 166                return -EIO;
 167        }
 168
 169        BUG_ON(*max_blocks != mapped_blocks);
 170        set_buffer_new(bh_result);
 171        map_bh(bh_result, sb, phys);
 172
 173        return 0;
 174}
 175
 176static int fat_get_block(struct inode *inode, sector_t iblock,
 177                         struct buffer_head *bh_result, int create)
 178{
 179        struct super_block *sb = inode->i_sb;
 180        unsigned long max_blocks = bh_result->b_size >> inode->i_blkbits;
 181        int err;
 182
 183        err = __fat_get_block(inode, iblock, &max_blocks, bh_result, create);
 184        if (err)
 185                return err;
 186        bh_result->b_size = max_blocks << sb->s_blocksize_bits;
 187        return 0;
 188}
 189
 190static int fat_writepage(struct page *page, struct writeback_control *wbc)
 191{
 192        return block_write_full_page(page, fat_get_block, wbc);
 193}
 194
 195static int fat_writepages(struct address_space *mapping,
 196                          struct writeback_control *wbc)
 197{
 198        return mpage_writepages(mapping, wbc, fat_get_block);
 199}
 200
 201static int fat_readpage(struct file *file, struct page *page)
 202{
 203        return mpage_readpage(page, fat_get_block);
 204}
 205
 206static int fat_readpages(struct file *file, struct address_space *mapping,
 207                         struct list_head *pages, unsigned nr_pages)
 208{
 209        return mpage_readpages(mapping, pages, nr_pages, fat_get_block);
 210}
 211
 212static void fat_write_failed(struct address_space *mapping, loff_t to)
 213{
 214        struct inode *inode = mapping->host;
 215
 216        if (to > inode->i_size) {
 217                truncate_pagecache(inode, inode->i_size);
 218                fat_truncate_blocks(inode, inode->i_size);
 219        }
 220}
 221
 222static int fat_write_begin(struct file *file, struct address_space *mapping,
 223                        loff_t pos, unsigned len, unsigned flags,
 224                        struct page **pagep, void **fsdata)
 225{
 226        int err;
 227
 228        *pagep = NULL;
 229        err = cont_write_begin(file, mapping, pos, len, flags,
 230                                pagep, fsdata, fat_get_block,
 231                                &MSDOS_I(mapping->host)->mmu_private);
 232        if (err < 0)
 233                fat_write_failed(mapping, pos + len);
 234        return err;
 235}
 236
 237static int fat_write_end(struct file *file, struct address_space *mapping,
 238                        loff_t pos, unsigned len, unsigned copied,
 239                        struct page *pagep, void *fsdata)
 240{
 241        struct inode *inode = mapping->host;
 242        int err;
 243        err = generic_write_end(file, mapping, pos, len, copied, pagep, fsdata);
 244        if (err < len)
 245                fat_write_failed(mapping, pos + len);
 246        if (!(err < 0) && !(MSDOS_I(inode)->i_attrs & ATTR_ARCH)) {
 247                inode->i_mtime = inode->i_ctime = current_time(inode);
 248                MSDOS_I(inode)->i_attrs |= ATTR_ARCH;
 249                mark_inode_dirty(inode);
 250        }
 251        return err;
 252}
 253
 254static ssize_t fat_direct_IO(struct kiocb *iocb, struct iov_iter *iter)
 255{
 256        struct file *file = iocb->ki_filp;
 257        struct address_space *mapping = file->f_mapping;
 258        struct inode *inode = mapping->host;
 259        size_t count = iov_iter_count(iter);
 260        loff_t offset = iocb->ki_pos;
 261        ssize_t ret;
 262
 263        if (iov_iter_rw(iter) == WRITE) {
 264                /*
 265                 * FIXME: blockdev_direct_IO() doesn't use ->write_begin(),
 266                 * so we need to update the ->mmu_private to block boundary.
 267                 *
 268                 * But we must fill the remaining area or hole by nul for
 269                 * updating ->mmu_private.
 270                 *
 271                 * Return 0, and fallback to normal buffered write.
 272                 */
 273                loff_t size = offset + count;
 274                if (MSDOS_I(inode)->mmu_private < size)
 275                        return 0;
 276        }
 277
 278        /*
 279         * FAT need to use the DIO_LOCKING for avoiding the race
 280         * condition of fat_get_block() and ->truncate().
 281         */
 282        ret = blockdev_direct_IO(iocb, inode, iter, fat_get_block);
 283        if (ret < 0 && iov_iter_rw(iter) == WRITE)
 284                fat_write_failed(mapping, offset + count);
 285
 286        return ret;
 287}
 288
 289static int fat_get_block_bmap(struct inode *inode, sector_t iblock,
 290                struct buffer_head *bh_result, int create)
 291{
 292        struct super_block *sb = inode->i_sb;
 293        unsigned long max_blocks = bh_result->b_size >> inode->i_blkbits;
 294        int err;
 295        sector_t bmap;
 296        unsigned long mapped_blocks;
 297
 298        BUG_ON(create != 0);
 299
 300        err = fat_bmap(inode, iblock, &bmap, &mapped_blocks, create, true);
 301        if (err)
 302                return err;
 303
 304        if (bmap) {
 305                map_bh(bh_result, sb, bmap);
 306                max_blocks = min(mapped_blocks, max_blocks);
 307        }
 308
 309        bh_result->b_size = max_blocks << sb->s_blocksize_bits;
 310
 311        return 0;
 312}
 313
 314static sector_t _fat_bmap(struct address_space *mapping, sector_t block)
 315{
 316        sector_t blocknr;
 317
 318        /* fat_get_cluster() assumes the requested blocknr isn't truncated. */
 319        down_read(&MSDOS_I(mapping->host)->truncate_lock);
 320        blocknr = generic_block_bmap(mapping, block, fat_get_block_bmap);
 321        up_read(&MSDOS_I(mapping->host)->truncate_lock);
 322
 323        return blocknr;
 324}
 325
 326/*
 327 * fat_block_truncate_page() zeroes out a mapping from file offset `from'
 328 * up to the end of the block which corresponds to `from'.
 329 * This is required during truncate to physically zeroout the tail end
 330 * of that block so it doesn't yield old data if the file is later grown.
 331 * Also, avoid causing failure from fsx for cases of "data past EOF"
 332 */
 333int fat_block_truncate_page(struct inode *inode, loff_t from)
 334{
 335        return block_truncate_page(inode->i_mapping, from, fat_get_block);
 336}
 337
 338static const struct address_space_operations fat_aops = {
 339        .readpage       = fat_readpage,
 340        .readpages      = fat_readpages,
 341        .writepage      = fat_writepage,
 342        .writepages     = fat_writepages,
 343        .write_begin    = fat_write_begin,
 344        .write_end      = fat_write_end,
 345        .direct_IO      = fat_direct_IO,
 346        .bmap           = _fat_bmap
 347};
 348
 349/*
 350 * New FAT inode stuff. We do the following:
 351 *      a) i_ino is constant and has nothing with on-disk location.
 352 *      b) FAT manages its own cache of directory entries.
 353 *      c) *This* cache is indexed by on-disk location.
 354 *      d) inode has an associated directory entry, all right, but
 355 *              it may be unhashed.
 356 *      e) currently entries are stored within struct inode. That should
 357 *              change.
 358 *      f) we deal with races in the following way:
 359 *              1. readdir() and lookup() do FAT-dir-cache lookup.
 360 *              2. rename() unhashes the F-d-c entry and rehashes it in
 361 *                      a new place.
 362 *              3. unlink() and rmdir() unhash F-d-c entry.
 363 *              4. fat_write_inode() checks whether the thing is unhashed.
 364 *                      If it is we silently return. If it isn't we do bread(),
 365 *                      check if the location is still valid and retry if it
 366 *                      isn't. Otherwise we do changes.
 367 *              5. Spinlock is used to protect hash/unhash/location check/lookup
 368 *              6. fat_evict_inode() unhashes the F-d-c entry.
 369 *              7. lookup() and readdir() do igrab() if they find a F-d-c entry
 370 *                      and consider negative result as cache miss.
 371 */
 372
 373static void fat_hash_init(struct super_block *sb)
 374{
 375        struct msdos_sb_info *sbi = MSDOS_SB(sb);
 376        int i;
 377
 378        spin_lock_init(&sbi->inode_hash_lock);
 379        for (i = 0; i < FAT_HASH_SIZE; i++)
 380                INIT_HLIST_HEAD(&sbi->inode_hashtable[i]);
 381}
 382
 383static inline unsigned long fat_hash(loff_t i_pos)
 384{
 385        return hash_32(i_pos, FAT_HASH_BITS);
 386}
 387
 388static void dir_hash_init(struct super_block *sb)
 389{
 390        struct msdos_sb_info *sbi = MSDOS_SB(sb);
 391        int i;
 392
 393        spin_lock_init(&sbi->dir_hash_lock);
 394        for (i = 0; i < FAT_HASH_SIZE; i++)
 395                INIT_HLIST_HEAD(&sbi->dir_hashtable[i]);
 396}
 397
 398void fat_attach(struct inode *inode, loff_t i_pos)
 399{
 400        struct msdos_sb_info *sbi = MSDOS_SB(inode->i_sb);
 401
 402        if (inode->i_ino != MSDOS_ROOT_INO) {
 403                struct hlist_head *head =   sbi->inode_hashtable
 404                                          + fat_hash(i_pos);
 405
 406                spin_lock(&sbi->inode_hash_lock);
 407                MSDOS_I(inode)->i_pos = i_pos;
 408                hlist_add_head(&MSDOS_I(inode)->i_fat_hash, head);
 409                spin_unlock(&sbi->inode_hash_lock);
 410        }
 411
 412        /* If NFS support is enabled, cache the mapping of start cluster
 413         * to directory inode. This is used during reconnection of
 414         * dentries to the filesystem root.
 415         */
 416        if (S_ISDIR(inode->i_mode) && sbi->options.nfs) {
 417                struct hlist_head *d_head = sbi->dir_hashtable;
 418                d_head += fat_dir_hash(MSDOS_I(inode)->i_logstart);
 419
 420                spin_lock(&sbi->dir_hash_lock);
 421                hlist_add_head(&MSDOS_I(inode)->i_dir_hash, d_head);
 422                spin_unlock(&sbi->dir_hash_lock);
 423        }
 424}
 425EXPORT_SYMBOL_GPL(fat_attach);
 426
 427void fat_detach(struct inode *inode)
 428{
 429        struct msdos_sb_info *sbi = MSDOS_SB(inode->i_sb);
 430        spin_lock(&sbi->inode_hash_lock);
 431        MSDOS_I(inode)->i_pos = 0;
 432        hlist_del_init(&MSDOS_I(inode)->i_fat_hash);
 433        spin_unlock(&sbi->inode_hash_lock);
 434
 435        if (S_ISDIR(inode->i_mode) && sbi->options.nfs) {
 436                spin_lock(&sbi->dir_hash_lock);
 437                hlist_del_init(&MSDOS_I(inode)->i_dir_hash);
 438                spin_unlock(&sbi->dir_hash_lock);
 439        }
 440}
 441EXPORT_SYMBOL_GPL(fat_detach);
 442
 443struct inode *fat_iget(struct super_block *sb, loff_t i_pos)
 444{
 445        struct msdos_sb_info *sbi = MSDOS_SB(sb);
 446        struct hlist_head *head = sbi->inode_hashtable + fat_hash(i_pos);
 447        struct msdos_inode_info *i;
 448        struct inode *inode = NULL;
 449
 450        spin_lock(&sbi->inode_hash_lock);
 451        hlist_for_each_entry(i, head, i_fat_hash) {
 452                BUG_ON(i->vfs_inode.i_sb != sb);
 453                if (i->i_pos != i_pos)
 454                        continue;
 455                inode = igrab(&i->vfs_inode);
 456                if (inode)
 457                        break;
 458        }
 459        spin_unlock(&sbi->inode_hash_lock);
 460        return inode;
 461}
 462
 463static int is_exec(unsigned char *extension)
 464{
 465        unsigned char exe_extensions[] = "EXECOMBAT", *walk;
 466
 467        for (walk = exe_extensions; *walk; walk += 3)
 468                if (!strncmp(extension, walk, 3))
 469                        return 1;
 470        return 0;
 471}
 472
 473static int fat_calc_dir_size(struct inode *inode)
 474{
 475        struct msdos_sb_info *sbi = MSDOS_SB(inode->i_sb);
 476        int ret, fclus, dclus;
 477
 478        inode->i_size = 0;
 479        if (MSDOS_I(inode)->i_start == 0)
 480                return 0;
 481
 482        ret = fat_get_cluster(inode, FAT_ENT_EOF, &fclus, &dclus);
 483        if (ret < 0)
 484                return ret;
 485        inode->i_size = (fclus + 1) << sbi->cluster_bits;
 486
 487        return 0;
 488}
 489
 490static int fat_validate_dir(struct inode *dir)
 491{
 492        struct super_block *sb = dir->i_sb;
 493
 494        if (dir->i_nlink < 2) {
 495                /* Directory should have "."/".." entries at least. */
 496                fat_fs_error(sb, "corrupted directory (invalid entries)");
 497                return -EIO;
 498        }
 499        if (MSDOS_I(dir)->i_start == 0 ||
 500            MSDOS_I(dir)->i_start == MSDOS_SB(sb)->root_cluster) {
 501                /* Directory should point valid cluster. */
 502                fat_fs_error(sb, "corrupted directory (invalid i_start)");
 503                return -EIO;
 504        }
 505        return 0;
 506}
 507
 508/* doesn't deal with root inode */
 509int fat_fill_inode(struct inode *inode, struct msdos_dir_entry *de)
 510{
 511        struct timespec ts;
 512        struct msdos_sb_info *sbi = MSDOS_SB(inode->i_sb);
 513        int error;
 514
 515        MSDOS_I(inode)->i_pos = 0;
 516        inode->i_uid = sbi->options.fs_uid;
 517        inode->i_gid = sbi->options.fs_gid;
 518        inode_inc_iversion(inode);
 519        inode->i_generation = get_seconds();
 520
 521        if ((de->attr & ATTR_DIR) && !IS_FREE(de->name)) {
 522                inode->i_generation &= ~1;
 523                inode->i_mode = fat_make_mode(sbi, de->attr, S_IRWXUGO);
 524                inode->i_op = sbi->dir_ops;
 525                inode->i_fop = &fat_dir_operations;
 526
 527                MSDOS_I(inode)->i_start = fat_get_start(sbi, de);
 528                MSDOS_I(inode)->i_logstart = MSDOS_I(inode)->i_start;
 529                error = fat_calc_dir_size(inode);
 530                if (error < 0)
 531                        return error;
 532                MSDOS_I(inode)->mmu_private = inode->i_size;
 533
 534                set_nlink(inode, fat_subdirs(inode));
 535
 536                error = fat_validate_dir(inode);
 537                if (error < 0)
 538                        return error;
 539        } else { /* not a directory */
 540                inode->i_generation |= 1;
 541                inode->i_mode = fat_make_mode(sbi, de->attr,
 542                        ((sbi->options.showexec && !is_exec(de->name + 8))
 543                         ? S_IRUGO|S_IWUGO : S_IRWXUGO));
 544                MSDOS_I(inode)->i_start = fat_get_start(sbi, de);
 545
 546                MSDOS_I(inode)->i_logstart = MSDOS_I(inode)->i_start;
 547                inode->i_size = le32_to_cpu(de->size);
 548                inode->i_op = &fat_file_inode_operations;
 549                inode->i_fop = &fat_file_operations;
 550                inode->i_mapping->a_ops = &fat_aops;
 551                MSDOS_I(inode)->mmu_private = inode->i_size;
 552        }
 553        if (de->attr & ATTR_SYS) {
 554                if (sbi->options.sys_immutable)
 555                        inode->i_flags |= S_IMMUTABLE;
 556        }
 557        fat_save_attrs(inode, de->attr);
 558
 559        inode->i_blocks = ((inode->i_size + (sbi->cluster_size - 1))
 560                           & ~((loff_t)sbi->cluster_size - 1)) >> 9;
 561
 562        fat_time_fat2unix(sbi, &ts, de->time, de->date, 0);
 563        inode->i_mtime = timespec_to_timespec64(ts);
 564        if (sbi->options.isvfat) {
 565                fat_time_fat2unix(sbi, &ts, de->ctime,
 566                                  de->cdate, de->ctime_cs);
 567                inode->i_ctime = timespec_to_timespec64(ts);
 568                fat_time_fat2unix(sbi, &ts, 0, de->adate, 0);
 569                inode->i_atime = timespec_to_timespec64(ts);
 570        } else
 571                inode->i_ctime = inode->i_atime = inode->i_mtime;
 572
 573        return 0;
 574}
 575
 576static inline void fat_lock_build_inode(struct msdos_sb_info *sbi)
 577{
 578        if (sbi->options.nfs == FAT_NFS_NOSTALE_RO)
 579                mutex_lock(&sbi->nfs_build_inode_lock);
 580}
 581
 582static inline void fat_unlock_build_inode(struct msdos_sb_info *sbi)
 583{
 584        if (sbi->options.nfs == FAT_NFS_NOSTALE_RO)
 585                mutex_unlock(&sbi->nfs_build_inode_lock);
 586}
 587
 588struct inode *fat_build_inode(struct super_block *sb,
 589                        struct msdos_dir_entry *de, loff_t i_pos)
 590{
 591        struct inode *inode;
 592        int err;
 593
 594        fat_lock_build_inode(MSDOS_SB(sb));
 595        inode = fat_iget(sb, i_pos);
 596        if (inode)
 597                goto out;
 598        inode = new_inode(sb);
 599        if (!inode) {
 600                inode = ERR_PTR(-ENOMEM);
 601                goto out;
 602        }
 603        inode->i_ino = iunique(sb, MSDOS_ROOT_INO);
 604        inode_set_iversion(inode, 1);
 605        err = fat_fill_inode(inode, de);
 606        if (err) {
 607                iput(inode);
 608                inode = ERR_PTR(err);
 609                goto out;
 610        }
 611        fat_attach(inode, i_pos);
 612        insert_inode_hash(inode);
 613out:
 614        fat_unlock_build_inode(MSDOS_SB(sb));
 615        return inode;
 616}
 617
 618EXPORT_SYMBOL_GPL(fat_build_inode);
 619
 620static int __fat_write_inode(struct inode *inode, int wait);
 621
 622static void fat_free_eofblocks(struct inode *inode)
 623{
 624        /* Release unwritten fallocated blocks on inode eviction. */
 625        if ((inode->i_blocks << 9) >
 626                        round_up(MSDOS_I(inode)->mmu_private,
 627                                MSDOS_SB(inode->i_sb)->cluster_size)) {
 628                int err;
 629
 630                fat_truncate_blocks(inode, MSDOS_I(inode)->mmu_private);
 631                /* Fallocate results in updating the i_start/iogstart
 632                 * for the zero byte file. So, make it return to
 633                 * original state during evict and commit it to avoid
 634                 * any corruption on the next access to the cluster
 635                 * chain for the file.
 636                 */
 637                err = __fat_write_inode(inode, inode_needs_sync(inode));
 638                if (err) {
 639                        fat_msg(inode->i_sb, KERN_WARNING, "Failed to "
 640                                        "update on disk inode for unused "
 641                                        "fallocated blocks, inode could be "
 642                                        "corrupted. Please run fsck");
 643                }
 644
 645        }
 646}
 647
 648static void fat_evict_inode(struct inode *inode)
 649{
 650        truncate_inode_pages_final(&inode->i_data);
 651        if (!inode->i_nlink) {
 652                inode->i_size = 0;
 653                fat_truncate_blocks(inode, 0);
 654        } else
 655                fat_free_eofblocks(inode);
 656
 657        invalidate_inode_buffers(inode);
 658        clear_inode(inode);
 659        fat_cache_inval_inode(inode);
 660        fat_detach(inode);
 661}
 662
 663static void fat_set_state(struct super_block *sb,
 664                        unsigned int set, unsigned int force)
 665{
 666        struct buffer_head *bh;
 667        struct fat_boot_sector *b;
 668        struct msdos_sb_info *sbi = MSDOS_SB(sb);
 669
 670        /* do not change any thing if mounted read only */
 671        if (sb_rdonly(sb) && !force)
 672                return;
 673
 674        /* do not change state if fs was dirty */
 675        if (sbi->dirty) {
 676                /* warn only on set (mount). */
 677                if (set)
 678                        fat_msg(sb, KERN_WARNING, "Volume was not properly "
 679                                "unmounted. Some data may be corrupt. "
 680                                "Please run fsck.");
 681                return;
 682        }
 683
 684        bh = sb_bread(sb, 0);
 685        if (bh == NULL) {
 686                fat_msg(sb, KERN_ERR, "unable to read boot sector "
 687                        "to mark fs as dirty");
 688                return;
 689        }
 690
 691        b = (struct fat_boot_sector *) bh->b_data;
 692
 693        if (sbi->fat_bits == 32) {
 694                if (set)
 695                        b->fat32.state |= FAT_STATE_DIRTY;
 696                else
 697                        b->fat32.state &= ~FAT_STATE_DIRTY;
 698        } else /* fat 16 and 12 */ {
 699                if (set)
 700                        b->fat16.state |= FAT_STATE_DIRTY;
 701                else
 702                        b->fat16.state &= ~FAT_STATE_DIRTY;
 703        }
 704
 705        mark_buffer_dirty(bh);
 706        sync_dirty_buffer(bh);
 707        brelse(bh);
 708}
 709
 710static void fat_reset_iocharset(struct fat_mount_options *opts)
 711{
 712        if (opts->iocharset != fat_default_iocharset) {
 713                /* Note: opts->iocharset can be NULL here */
 714                kfree(opts->iocharset);
 715                opts->iocharset = fat_default_iocharset;
 716        }
 717}
 718
 719static void delayed_free(struct rcu_head *p)
 720{
 721        struct msdos_sb_info *sbi = container_of(p, struct msdos_sb_info, rcu);
 722        unload_nls(sbi->nls_disk);
 723        unload_nls(sbi->nls_io);
 724        fat_reset_iocharset(&sbi->options);
 725        kfree(sbi);
 726}
 727
 728static void fat_put_super(struct super_block *sb)
 729{
 730        struct msdos_sb_info *sbi = MSDOS_SB(sb);
 731
 732        fat_set_state(sb, 0, 0);
 733
 734        iput(sbi->fsinfo_inode);
 735        iput(sbi->fat_inode);
 736
 737        call_rcu(&sbi->rcu, delayed_free);
 738}
 739
 740static struct kmem_cache *fat_inode_cachep;
 741
 742static struct inode *fat_alloc_inode(struct super_block *sb)
 743{
 744        struct msdos_inode_info *ei;
 745        ei = kmem_cache_alloc(fat_inode_cachep, GFP_NOFS);
 746        if (!ei)
 747                return NULL;
 748
 749        init_rwsem(&ei->truncate_lock);
 750        return &ei->vfs_inode;
 751}
 752
 753static void fat_i_callback(struct rcu_head *head)
 754{
 755        struct inode *inode = container_of(head, struct inode, i_rcu);
 756        kmem_cache_free(fat_inode_cachep, MSDOS_I(inode));
 757}
 758
 759static void fat_destroy_inode(struct inode *inode)
 760{
 761        call_rcu(&inode->i_rcu, fat_i_callback);
 762}
 763
 764static void init_once(void *foo)
 765{
 766        struct msdos_inode_info *ei = (struct msdos_inode_info *)foo;
 767
 768        spin_lock_init(&ei->cache_lru_lock);
 769        ei->nr_caches = 0;
 770        ei->cache_valid_id = FAT_CACHE_VALID + 1;
 771        INIT_LIST_HEAD(&ei->cache_lru);
 772        INIT_HLIST_NODE(&ei->i_fat_hash);
 773        INIT_HLIST_NODE(&ei->i_dir_hash);
 774        inode_init_once(&ei->vfs_inode);
 775}
 776
 777static int __init fat_init_inodecache(void)
 778{
 779        fat_inode_cachep = kmem_cache_create("fat_inode_cache",
 780                                             sizeof(struct msdos_inode_info),
 781                                             0, (SLAB_RECLAIM_ACCOUNT|
 782                                                SLAB_MEM_SPREAD|SLAB_ACCOUNT),
 783                                             init_once);
 784        if (fat_inode_cachep == NULL)
 785                return -ENOMEM;
 786        return 0;
 787}
 788
 789static void __exit fat_destroy_inodecache(void)
 790{
 791        /*
 792         * Make sure all delayed rcu free inodes are flushed before we
 793         * destroy cache.
 794         */
 795        rcu_barrier();
 796        kmem_cache_destroy(fat_inode_cachep);
 797}
 798
 799static int fat_remount(struct super_block *sb, int *flags, char *data)
 800{
 801        bool new_rdonly;
 802        struct msdos_sb_info *sbi = MSDOS_SB(sb);
 803        *flags |= SB_NODIRATIME | (sbi->options.isvfat ? 0 : SB_NOATIME);
 804
 805        sync_filesystem(sb);
 806
 807        /* make sure we update state on remount. */
 808        new_rdonly = *flags & SB_RDONLY;
 809        if (new_rdonly != sb_rdonly(sb)) {
 810                if (new_rdonly)
 811                        fat_set_state(sb, 0, 0);
 812                else
 813                        fat_set_state(sb, 1, 1);
 814        }
 815        return 0;
 816}
 817
 818static int fat_statfs(struct dentry *dentry, struct kstatfs *buf)
 819{
 820        struct super_block *sb = dentry->d_sb;
 821        struct msdos_sb_info *sbi = MSDOS_SB(sb);
 822        u64 id = huge_encode_dev(sb->s_bdev->bd_dev);
 823
 824        /* If the count of free cluster is still unknown, counts it here. */
 825        if (sbi->free_clusters == -1 || !sbi->free_clus_valid) {
 826                int err = fat_count_free_clusters(dentry->d_sb);
 827                if (err)
 828                        return err;
 829        }
 830
 831        buf->f_type = dentry->d_sb->s_magic;
 832        buf->f_bsize = sbi->cluster_size;
 833        buf->f_blocks = sbi->max_cluster - FAT_START_ENT;
 834        buf->f_bfree = sbi->free_clusters;
 835        buf->f_bavail = sbi->free_clusters;
 836        buf->f_fsid.val[0] = (u32)id;
 837        buf->f_fsid.val[1] = (u32)(id >> 32);
 838        buf->f_namelen =
 839                (sbi->options.isvfat ? FAT_LFN_LEN : 12) * NLS_MAX_CHARSET_SIZE;
 840
 841        return 0;
 842}
 843
 844static int __fat_write_inode(struct inode *inode, int wait)
 845{
 846        struct timespec ts;
 847        struct super_block *sb = inode->i_sb;
 848        struct msdos_sb_info *sbi = MSDOS_SB(sb);
 849        struct buffer_head *bh;
 850        struct msdos_dir_entry *raw_entry;
 851        loff_t i_pos;
 852        sector_t blocknr;
 853        int err, offset;
 854
 855        if (inode->i_ino == MSDOS_ROOT_INO)
 856                return 0;
 857
 858retry:
 859        i_pos = fat_i_pos_read(sbi, inode);
 860        if (!i_pos)
 861                return 0;
 862
 863        fat_get_blknr_offset(sbi, i_pos, &blocknr, &offset);
 864        bh = sb_bread(sb, blocknr);
 865        if (!bh) {
 866                fat_msg(sb, KERN_ERR, "unable to read inode block "
 867                       "for updating (i_pos %lld)", i_pos);
 868                return -EIO;
 869        }
 870        spin_lock(&sbi->inode_hash_lock);
 871        if (i_pos != MSDOS_I(inode)->i_pos) {
 872                spin_unlock(&sbi->inode_hash_lock);
 873                brelse(bh);
 874                goto retry;
 875        }
 876
 877        raw_entry = &((struct msdos_dir_entry *) (bh->b_data))[offset];
 878        if (S_ISDIR(inode->i_mode))
 879                raw_entry->size = 0;
 880        else
 881                raw_entry->size = cpu_to_le32(inode->i_size);
 882        raw_entry->attr = fat_make_attrs(inode);
 883        fat_set_start(raw_entry, MSDOS_I(inode)->i_logstart);
 884        ts = timespec64_to_timespec(inode->i_mtime);
 885        fat_time_unix2fat(sbi, &ts, &raw_entry->time,
 886                          &raw_entry->date, NULL);
 887        if (sbi->options.isvfat) {
 888                __le16 atime;
 889                ts = timespec64_to_timespec(inode->i_ctime);
 890                fat_time_unix2fat(sbi, &ts, &raw_entry->ctime,
 891                                  &raw_entry->cdate, &raw_entry->ctime_cs);
 892                ts = timespec64_to_timespec(inode->i_atime);
 893                fat_time_unix2fat(sbi, &ts, &atime,
 894                                  &raw_entry->adate, NULL);
 895        }
 896        spin_unlock(&sbi->inode_hash_lock);
 897        mark_buffer_dirty(bh);
 898        err = 0;
 899        if (wait)
 900                err = sync_dirty_buffer(bh);
 901        brelse(bh);
 902        return err;
 903}
 904
 905static int fat_write_inode(struct inode *inode, struct writeback_control *wbc)
 906{
 907        int err;
 908
 909        if (inode->i_ino == MSDOS_FSINFO_INO) {
 910                struct super_block *sb = inode->i_sb;
 911
 912                mutex_lock(&MSDOS_SB(sb)->s_lock);
 913                err = fat_clusters_flush(sb);
 914                mutex_unlock(&MSDOS_SB(sb)->s_lock);
 915        } else
 916                err = __fat_write_inode(inode, wbc->sync_mode == WB_SYNC_ALL);
 917
 918        return err;
 919}
 920
 921int fat_sync_inode(struct inode *inode)
 922{
 923        return __fat_write_inode(inode, 1);
 924}
 925
 926EXPORT_SYMBOL_GPL(fat_sync_inode);
 927
 928static int fat_show_options(struct seq_file *m, struct dentry *root);
 929static const struct super_operations fat_sops = {
 930        .alloc_inode    = fat_alloc_inode,
 931        .destroy_inode  = fat_destroy_inode,
 932        .write_inode    = fat_write_inode,
 933        .evict_inode    = fat_evict_inode,
 934        .put_super      = fat_put_super,
 935        .statfs         = fat_statfs,
 936        .remount_fs     = fat_remount,
 937
 938        .show_options   = fat_show_options,
 939};
 940
 941static int fat_show_options(struct seq_file *m, struct dentry *root)
 942{
 943        struct msdos_sb_info *sbi = MSDOS_SB(root->d_sb);
 944        struct fat_mount_options *opts = &sbi->options;
 945        int isvfat = opts->isvfat;
 946
 947        if (!uid_eq(opts->fs_uid, GLOBAL_ROOT_UID))
 948                seq_printf(m, ",uid=%u",
 949                                from_kuid_munged(&init_user_ns, opts->fs_uid));
 950        if (!gid_eq(opts->fs_gid, GLOBAL_ROOT_GID))
 951                seq_printf(m, ",gid=%u",
 952                                from_kgid_munged(&init_user_ns, opts->fs_gid));
 953        seq_printf(m, ",fmask=%04o", opts->fs_fmask);
 954        seq_printf(m, ",dmask=%04o", opts->fs_dmask);
 955        if (opts->allow_utime)
 956                seq_printf(m, ",allow_utime=%04o", opts->allow_utime);
 957        if (sbi->nls_disk)
 958                /* strip "cp" prefix from displayed option */
 959                seq_printf(m, ",codepage=%s", &sbi->nls_disk->charset[2]);
 960        if (isvfat) {
 961                if (sbi->nls_io)
 962                        seq_printf(m, ",iocharset=%s", sbi->nls_io->charset);
 963
 964                switch (opts->shortname) {
 965                case VFAT_SFN_DISPLAY_WIN95 | VFAT_SFN_CREATE_WIN95:
 966                        seq_puts(m, ",shortname=win95");
 967                        break;
 968                case VFAT_SFN_DISPLAY_WINNT | VFAT_SFN_CREATE_WINNT:
 969                        seq_puts(m, ",shortname=winnt");
 970                        break;
 971                case VFAT_SFN_DISPLAY_WINNT | VFAT_SFN_CREATE_WIN95:
 972                        seq_puts(m, ",shortname=mixed");
 973                        break;
 974                case VFAT_SFN_DISPLAY_LOWER | VFAT_SFN_CREATE_WIN95:
 975                        seq_puts(m, ",shortname=lower");
 976                        break;
 977                default:
 978                        seq_puts(m, ",shortname=unknown");
 979                        break;
 980                }
 981        }
 982        if (opts->name_check != 'n')
 983                seq_printf(m, ",check=%c", opts->name_check);
 984        if (opts->usefree)
 985                seq_puts(m, ",usefree");
 986        if (opts->quiet)
 987                seq_puts(m, ",quiet");
 988        if (opts->showexec)
 989                seq_puts(m, ",showexec");
 990        if (opts->sys_immutable)
 991                seq_puts(m, ",sys_immutable");
 992        if (!isvfat) {
 993                if (opts->dotsOK)
 994                        seq_puts(m, ",dotsOK=yes");
 995                if (opts->nocase)
 996                        seq_puts(m, ",nocase");
 997        } else {
 998                if (opts->utf8)
 999                        seq_puts(m, ",utf8");
1000                if (opts->unicode_xlate)
1001                        seq_puts(m, ",uni_xlate");
1002                if (!opts->numtail)
1003                        seq_puts(m, ",nonumtail");
1004                if (opts->rodir)
1005                        seq_puts(m, ",rodir");
1006        }
1007        if (opts->flush)
1008                seq_puts(m, ",flush");
1009        if (opts->tz_set) {
1010                if (opts->time_offset)
1011                        seq_printf(m, ",time_offset=%d", opts->time_offset);
1012                else
1013                        seq_puts(m, ",tz=UTC");
1014        }
1015        if (opts->errors == FAT_ERRORS_CONT)
1016                seq_puts(m, ",errors=continue");
1017        else if (opts->errors == FAT_ERRORS_PANIC)
1018                seq_puts(m, ",errors=panic");
1019        else
1020                seq_puts(m, ",errors=remount-ro");
1021        if (opts->nfs == FAT_NFS_NOSTALE_RO)
1022                seq_puts(m, ",nfs=nostale_ro");
1023        else if (opts->nfs)
1024                seq_puts(m, ",nfs=stale_rw");
1025        if (opts->discard)
1026                seq_puts(m, ",discard");
1027        if (opts->dos1xfloppy)
1028                seq_puts(m, ",dos1xfloppy");
1029
1030        return 0;
1031}
1032
1033enum {
1034        Opt_check_n, Opt_check_r, Opt_check_s, Opt_uid, Opt_gid,
1035        Opt_umask, Opt_dmask, Opt_fmask, Opt_allow_utime, Opt_codepage,
1036        Opt_usefree, Opt_nocase, Opt_quiet, Opt_showexec, Opt_debug,
1037        Opt_immutable, Opt_dots, Opt_nodots,
1038        Opt_charset, Opt_shortname_lower, Opt_shortname_win95,
1039        Opt_shortname_winnt, Opt_shortname_mixed, Opt_utf8_no, Opt_utf8_yes,
1040        Opt_uni_xl_no, Opt_uni_xl_yes, Opt_nonumtail_no, Opt_nonumtail_yes,
1041        Opt_obsolete, Opt_flush, Opt_tz_utc, Opt_rodir, Opt_err_cont,
1042        Opt_err_panic, Opt_err_ro, Opt_discard, Opt_nfs, Opt_time_offset,
1043        Opt_nfs_stale_rw, Opt_nfs_nostale_ro, Opt_err, Opt_dos1xfloppy,
1044};
1045
1046static const match_table_t fat_tokens = {
1047        {Opt_check_r, "check=relaxed"},
1048        {Opt_check_s, "check=strict"},
1049        {Opt_check_n, "check=normal"},
1050        {Opt_check_r, "check=r"},
1051        {Opt_check_s, "check=s"},
1052        {Opt_check_n, "check=n"},
1053        {Opt_uid, "uid=%u"},
1054        {Opt_gid, "gid=%u"},
1055        {Opt_umask, "umask=%o"},
1056        {Opt_dmask, "dmask=%o"},
1057        {Opt_fmask, "fmask=%o"},
1058        {Opt_allow_utime, "allow_utime=%o"},
1059        {Opt_codepage, "codepage=%u"},
1060        {Opt_usefree, "usefree"},
1061        {Opt_nocase, "nocase"},
1062        {Opt_quiet, "quiet"},
1063        {Opt_showexec, "showexec"},
1064        {Opt_debug, "debug"},
1065        {Opt_immutable, "sys_immutable"},
1066        {Opt_flush, "flush"},
1067        {Opt_tz_utc, "tz=UTC"},
1068        {Opt_time_offset, "time_offset=%d"},
1069        {Opt_err_cont, "errors=continue"},
1070        {Opt_err_panic, "errors=panic"},
1071        {Opt_err_ro, "errors=remount-ro"},
1072        {Opt_discard, "discard"},
1073        {Opt_nfs_stale_rw, "nfs"},
1074        {Opt_nfs_stale_rw, "nfs=stale_rw"},
1075        {Opt_nfs_nostale_ro, "nfs=nostale_ro"},
1076        {Opt_dos1xfloppy, "dos1xfloppy"},
1077        {Opt_obsolete, "conv=binary"},
1078        {Opt_obsolete, "conv=text"},
1079        {Opt_obsolete, "conv=auto"},
1080        {Opt_obsolete, "conv=b"},
1081        {Opt_obsolete, "conv=t"},
1082        {Opt_obsolete, "conv=a"},
1083        {Opt_obsolete, "fat=%u"},
1084        {Opt_obsolete, "blocksize=%u"},
1085        {Opt_obsolete, "cvf_format=%20s"},
1086        {Opt_obsolete, "cvf_options=%100s"},
1087        {Opt_obsolete, "posix"},
1088        {Opt_err, NULL},
1089};
1090static const match_table_t msdos_tokens = {
1091        {Opt_nodots, "nodots"},
1092        {Opt_nodots, "dotsOK=no"},
1093        {Opt_dots, "dots"},
1094        {Opt_dots, "dotsOK=yes"},
1095        {Opt_err, NULL}
1096};
1097static const match_table_t vfat_tokens = {
1098        {Opt_charset, "iocharset=%s"},
1099        {Opt_shortname_lower, "shortname=lower"},
1100        {Opt_shortname_win95, "shortname=win95"},
1101        {Opt_shortname_winnt, "shortname=winnt"},
1102        {Opt_shortname_mixed, "shortname=mixed"},
1103        {Opt_utf8_no, "utf8=0"},                /* 0 or no or false */
1104        {Opt_utf8_no, "utf8=no"},
1105        {Opt_utf8_no, "utf8=false"},
1106        {Opt_utf8_yes, "utf8=1"},               /* empty or 1 or yes or true */
1107        {Opt_utf8_yes, "utf8=yes"},
1108        {Opt_utf8_yes, "utf8=true"},
1109        {Opt_utf8_yes, "utf8"},
1110        {Opt_uni_xl_no, "uni_xlate=0"},         /* 0 or no or false */
1111        {Opt_uni_xl_no, "uni_xlate=no"},
1112        {Opt_uni_xl_no, "uni_xlate=false"},
1113        {Opt_uni_xl_yes, "uni_xlate=1"},        /* empty or 1 or yes or true */
1114        {Opt_uni_xl_yes, "uni_xlate=yes"},
1115        {Opt_uni_xl_yes, "uni_xlate=true"},
1116        {Opt_uni_xl_yes, "uni_xlate"},
1117        {Opt_nonumtail_no, "nonumtail=0"},      /* 0 or no or false */
1118        {Opt_nonumtail_no, "nonumtail=no"},
1119        {Opt_nonumtail_no, "nonumtail=false"},
1120        {Opt_nonumtail_yes, "nonumtail=1"},     /* empty or 1 or yes or true */
1121        {Opt_nonumtail_yes, "nonumtail=yes"},
1122        {Opt_nonumtail_yes, "nonumtail=true"},
1123        {Opt_nonumtail_yes, "nonumtail"},
1124        {Opt_rodir, "rodir"},
1125        {Opt_err, NULL}
1126};
1127
1128static int parse_options(struct super_block *sb, char *options, int is_vfat,
1129                         int silent, int *debug, struct fat_mount_options *opts)
1130{
1131        char *p;
1132        substring_t args[MAX_OPT_ARGS];
1133        int option;
1134        char *iocharset;
1135
1136        opts->isvfat = is_vfat;
1137
1138        opts->fs_uid = current_uid();
1139        opts->fs_gid = current_gid();
1140        opts->fs_fmask = opts->fs_dmask = current_umask();
1141        opts->allow_utime = -1;
1142        opts->codepage = fat_default_codepage;
1143        fat_reset_iocharset(opts);
1144        if (is_vfat) {
1145                opts->shortname = VFAT_SFN_DISPLAY_WINNT|VFAT_SFN_CREATE_WIN95;
1146                opts->rodir = 0;
1147        } else {
1148                opts->shortname = 0;
1149                opts->rodir = 1;
1150        }
1151        opts->name_check = 'n';
1152        opts->quiet = opts->showexec = opts->sys_immutable = opts->dotsOK =  0;
1153        opts->unicode_xlate = 0;
1154        opts->numtail = 1;
1155        opts->usefree = opts->nocase = 0;
1156        opts->tz_set = 0;
1157        opts->nfs = 0;
1158        opts->errors = FAT_ERRORS_RO;
1159        *debug = 0;
1160
1161        opts->utf8 = IS_ENABLED(CONFIG_FAT_DEFAULT_UTF8) && is_vfat;
1162
1163        if (!options)
1164                goto out;
1165
1166        while ((p = strsep(&options, ",")) != NULL) {
1167                int token;
1168                if (!*p)
1169                        continue;
1170
1171                token = match_token(p, fat_tokens, args);
1172                if (token == Opt_err) {
1173                        if (is_vfat)
1174                                token = match_token(p, vfat_tokens, args);
1175                        else
1176                                token = match_token(p, msdos_tokens, args);
1177                }
1178                switch (token) {
1179                case Opt_check_s:
1180                        opts->name_check = 's';
1181                        break;
1182                case Opt_check_r:
1183                        opts->name_check = 'r';
1184                        break;
1185                case Opt_check_n:
1186                        opts->name_check = 'n';
1187                        break;
1188                case Opt_usefree:
1189                        opts->usefree = 1;
1190                        break;
1191                case Opt_nocase:
1192                        if (!is_vfat)
1193                                opts->nocase = 1;
1194                        else {
1195                                /* for backward compatibility */
1196                                opts->shortname = VFAT_SFN_DISPLAY_WIN95
1197                                        | VFAT_SFN_CREATE_WIN95;
1198                        }
1199                        break;
1200                case Opt_quiet:
1201                        opts->quiet = 1;
1202                        break;
1203                case Opt_showexec:
1204                        opts->showexec = 1;
1205                        break;
1206                case Opt_debug:
1207                        *debug = 1;
1208                        break;
1209                case Opt_immutable:
1210                        opts->sys_immutable = 1;
1211                        break;
1212                case Opt_uid:
1213                        if (match_int(&args[0], &option))
1214                                return -EINVAL;
1215                        opts->fs_uid = make_kuid(current_user_ns(), option);
1216                        if (!uid_valid(opts->fs_uid))
1217                                return -EINVAL;
1218                        break;
1219                case Opt_gid:
1220                        if (match_int(&args[0], &option))
1221                                return -EINVAL;
1222                        opts->fs_gid = make_kgid(current_user_ns(), option);
1223                        if (!gid_valid(opts->fs_gid))
1224                                return -EINVAL;
1225                        break;
1226                case Opt_umask:
1227                        if (match_octal(&args[0], &option))
1228                                return -EINVAL;
1229                        opts->fs_fmask = opts->fs_dmask = option;
1230                        break;
1231                case Opt_dmask:
1232                        if (match_octal(&args[0], &option))
1233                                return -EINVAL;
1234                        opts->fs_dmask = option;
1235                        break;
1236                case Opt_fmask:
1237                        if (match_octal(&args[0], &option))
1238                                return -EINVAL;
1239                        opts->fs_fmask = option;
1240                        break;
1241                case Opt_allow_utime:
1242                        if (match_octal(&args[0], &option))
1243                                return -EINVAL;
1244                        opts->allow_utime = option & (S_IWGRP | S_IWOTH);
1245                        break;
1246                case Opt_codepage:
1247                        if (match_int(&args[0], &option))
1248                                return -EINVAL;
1249                        opts->codepage = option;
1250                        break;
1251                case Opt_flush:
1252                        opts->flush = 1;
1253                        break;
1254                case Opt_time_offset:
1255                        if (match_int(&args[0], &option))
1256                                return -EINVAL;
1257                        /*
1258                         * GMT+-12 zones may have DST corrections so at least
1259                         * 13 hours difference is needed. Make the limit 24
1260                         * just in case someone invents something unusual.
1261                         */
1262                        if (option < -24 * 60 || option > 24 * 60)
1263                                return -EINVAL;
1264                        opts->tz_set = 1;
1265                        opts->time_offset = option;
1266                        break;
1267                case Opt_tz_utc:
1268                        opts->tz_set = 1;
1269                        opts->time_offset = 0;
1270                        break;
1271                case Opt_err_cont:
1272                        opts->errors = FAT_ERRORS_CONT;
1273                        break;
1274                case Opt_err_panic:
1275                        opts->errors = FAT_ERRORS_PANIC;
1276                        break;
1277                case Opt_err_ro:
1278                        opts->errors = FAT_ERRORS_RO;
1279                        break;
1280                case Opt_nfs_stale_rw:
1281                        opts->nfs = FAT_NFS_STALE_RW;
1282                        break;
1283                case Opt_nfs_nostale_ro:
1284                        opts->nfs = FAT_NFS_NOSTALE_RO;
1285                        break;
1286                case Opt_dos1xfloppy:
1287                        opts->dos1xfloppy = 1;
1288                        break;
1289
1290                /* msdos specific */
1291                case Opt_dots:
1292                        opts->dotsOK = 1;
1293                        break;
1294                case Opt_nodots:
1295                        opts->dotsOK = 0;
1296                        break;
1297
1298                /* vfat specific */
1299                case Opt_charset:
1300                        fat_reset_iocharset(opts);
1301                        iocharset = match_strdup(&args[0]);
1302                        if (!iocharset)
1303                                return -ENOMEM;
1304                        opts->iocharset = iocharset;
1305                        break;
1306                case Opt_shortname_lower:
1307                        opts->shortname = VFAT_SFN_DISPLAY_LOWER
1308                                        | VFAT_SFN_CREATE_WIN95;
1309                        break;
1310                case Opt_shortname_win95:
1311                        opts->shortname = VFAT_SFN_DISPLAY_WIN95
1312                                        | VFAT_SFN_CREATE_WIN95;
1313                        break;
1314                case Opt_shortname_winnt:
1315                        opts->shortname = VFAT_SFN_DISPLAY_WINNT
1316                                        | VFAT_SFN_CREATE_WINNT;
1317                        break;
1318                case Opt_shortname_mixed:
1319                        opts->shortname = VFAT_SFN_DISPLAY_WINNT
1320                                        | VFAT_SFN_CREATE_WIN95;
1321                        break;
1322                case Opt_utf8_no:               /* 0 or no or false */
1323                        opts->utf8 = 0;
1324                        break;
1325                case Opt_utf8_yes:              /* empty or 1 or yes or true */
1326                        opts->utf8 = 1;
1327                        break;
1328                case Opt_uni_xl_no:             /* 0 or no or false */
1329                        opts->unicode_xlate = 0;
1330                        break;
1331                case Opt_uni_xl_yes:            /* empty or 1 or yes or true */
1332                        opts->unicode_xlate = 1;
1333                        break;
1334                case Opt_nonumtail_no:          /* 0 or no or false */
1335                        opts->numtail = 1;      /* negated option */
1336                        break;
1337                case Opt_nonumtail_yes:         /* empty or 1 or yes or true */
1338                        opts->numtail = 0;      /* negated option */
1339                        break;
1340                case Opt_rodir:
1341                        opts->rodir = 1;
1342                        break;
1343                case Opt_discard:
1344                        opts->discard = 1;
1345                        break;
1346
1347                /* obsolete mount options */
1348                case Opt_obsolete:
1349                        fat_msg(sb, KERN_INFO, "\"%s\" option is obsolete, "
1350                               "not supported now", p);
1351                        break;
1352                /* unknown option */
1353                default:
1354                        if (!silent) {
1355                                fat_msg(sb, KERN_ERR,
1356                                       "Unrecognized mount option \"%s\" "
1357                                       "or missing value", p);
1358                        }
1359                        return -EINVAL;
1360                }
1361        }
1362
1363out:
1364        /* UTF-8 doesn't provide FAT semantics */
1365        if (!strcmp(opts->iocharset, "utf8")) {
1366                fat_msg(sb, KERN_WARNING, "utf8 is not a recommended IO charset"
1367                       " for FAT filesystems, filesystem will be "
1368                       "case sensitive!");
1369        }
1370
1371        /* If user doesn't specify allow_utime, it's initialized from dmask. */
1372        if (opts->allow_utime == (unsigned short)-1)
1373                opts->allow_utime = ~opts->fs_dmask & (S_IWGRP | S_IWOTH);
1374        if (opts->unicode_xlate)
1375                opts->utf8 = 0;
1376        if (opts->nfs == FAT_NFS_NOSTALE_RO) {
1377                sb->s_flags |= SB_RDONLY;
1378                sb->s_export_op = &fat_export_ops_nostale;
1379        }
1380
1381        return 0;
1382}
1383
1384static void fat_dummy_inode_init(struct inode *inode)
1385{
1386        /* Initialize this dummy inode to work as no-op. */
1387        MSDOS_I(inode)->mmu_private = 0;
1388        MSDOS_I(inode)->i_start = 0;
1389        MSDOS_I(inode)->i_logstart = 0;
1390        MSDOS_I(inode)->i_attrs = 0;
1391        MSDOS_I(inode)->i_pos = 0;
1392}
1393
1394static int fat_read_root(struct inode *inode)
1395{
1396        struct msdos_sb_info *sbi = MSDOS_SB(inode->i_sb);
1397        int error;
1398
1399        MSDOS_I(inode)->i_pos = MSDOS_ROOT_INO;
1400        inode->i_uid = sbi->options.fs_uid;
1401        inode->i_gid = sbi->options.fs_gid;
1402        inode_inc_iversion(inode);
1403        inode->i_generation = 0;
1404        inode->i_mode = fat_make_mode(sbi, ATTR_DIR, S_IRWXUGO);
1405        inode->i_op = sbi->dir_ops;
1406        inode->i_fop = &fat_dir_operations;
1407        if (sbi->fat_bits == 32) {
1408                MSDOS_I(inode)->i_start = sbi->root_cluster;
1409                error = fat_calc_dir_size(inode);
1410                if (error < 0)
1411                        return error;
1412        } else {
1413                MSDOS_I(inode)->i_start = 0;
1414                inode->i_size = sbi->dir_entries * sizeof(struct msdos_dir_entry);
1415        }
1416        inode->i_blocks = ((inode->i_size + (sbi->cluster_size - 1))
1417                           & ~((loff_t)sbi->cluster_size - 1)) >> 9;
1418        MSDOS_I(inode)->i_logstart = 0;
1419        MSDOS_I(inode)->mmu_private = inode->i_size;
1420
1421        fat_save_attrs(inode, ATTR_DIR);
1422        inode->i_mtime.tv_sec = inode->i_atime.tv_sec = inode->i_ctime.tv_sec = 0;
1423        inode->i_mtime.tv_nsec = inode->i_atime.tv_nsec = inode->i_ctime.tv_nsec = 0;
1424        set_nlink(inode, fat_subdirs(inode)+2);
1425
1426        return 0;
1427}
1428
1429static unsigned long calc_fat_clusters(struct super_block *sb)
1430{
1431        struct msdos_sb_info *sbi = MSDOS_SB(sb);
1432
1433        /* Divide first to avoid overflow */
1434        if (sbi->fat_bits != 12) {
1435                unsigned long ent_per_sec = sb->s_blocksize * 8 / sbi->fat_bits;
1436                return ent_per_sec * sbi->fat_length;
1437        }
1438
1439        return sbi->fat_length * sb->s_blocksize * 8 / sbi->fat_bits;
1440}
1441
1442static bool fat_bpb_is_zero(struct fat_boot_sector *b)
1443{
1444        if (get_unaligned_le16(&b->sector_size))
1445                return false;
1446        if (b->sec_per_clus)
1447                return false;
1448        if (b->reserved)
1449                return false;
1450        if (b->fats)
1451                return false;
1452        if (get_unaligned_le16(&b->dir_entries))
1453                return false;
1454        if (get_unaligned_le16(&b->sectors))
1455                return false;
1456        if (b->media)
1457                return false;
1458        if (b->fat_length)
1459                return false;
1460        if (b->secs_track)
1461                return false;
1462        if (b->heads)
1463                return false;
1464        return true;
1465}
1466
1467static int fat_read_bpb(struct super_block *sb, struct fat_boot_sector *b,
1468        int silent, struct fat_bios_param_block *bpb)
1469{
1470        int error = -EINVAL;
1471
1472        /* Read in BPB ... */
1473        memset(bpb, 0, sizeof(*bpb));
1474        bpb->fat_sector_size = get_unaligned_le16(&b->sector_size);
1475        bpb->fat_sec_per_clus = b->sec_per_clus;
1476        bpb->fat_reserved = le16_to_cpu(b->reserved);
1477        bpb->fat_fats = b->fats;
1478        bpb->fat_dir_entries = get_unaligned_le16(&b->dir_entries);
1479        bpb->fat_sectors = get_unaligned_le16(&b->sectors);
1480        bpb->fat_fat_length = le16_to_cpu(b->fat_length);
1481        bpb->fat_total_sect = le32_to_cpu(b->total_sect);
1482
1483        bpb->fat16_state = b->fat16.state;
1484        bpb->fat16_vol_id = get_unaligned_le32(b->fat16.vol_id);
1485
1486        bpb->fat32_length = le32_to_cpu(b->fat32.length);
1487        bpb->fat32_root_cluster = le32_to_cpu(b->fat32.root_cluster);
1488        bpb->fat32_info_sector = le16_to_cpu(b->fat32.info_sector);
1489        bpb->fat32_state = b->fat32.state;
1490        bpb->fat32_vol_id = get_unaligned_le32(b->fat32.vol_id);
1491
1492        /* Validate this looks like a FAT filesystem BPB */
1493        if (!bpb->fat_reserved) {
1494                if (!silent)
1495                        fat_msg(sb, KERN_ERR,
1496                                "bogus number of reserved sectors");
1497                goto out;
1498        }
1499        if (!bpb->fat_fats) {
1500                if (!silent)
1501                        fat_msg(sb, KERN_ERR, "bogus number of FAT structure");
1502                goto out;
1503        }
1504
1505        /*
1506         * Earlier we checked here that b->secs_track and b->head are nonzero,
1507         * but it turns out valid FAT filesystems can have zero there.
1508         */
1509
1510        if (!fat_valid_media(b->media)) {
1511                if (!silent)
1512                        fat_msg(sb, KERN_ERR, "invalid media value (0x%02x)",
1513                                (unsigned)b->media);
1514                goto out;
1515        }
1516
1517        if (!is_power_of_2(bpb->fat_sector_size)
1518            || (bpb->fat_sector_size < 512)
1519            || (bpb->fat_sector_size > 4096)) {
1520                if (!silent)
1521                        fat_msg(sb, KERN_ERR, "bogus logical sector size %u",
1522                               (unsigned)bpb->fat_sector_size);
1523                goto out;
1524        }
1525
1526        if (!is_power_of_2(bpb->fat_sec_per_clus)) {
1527                if (!silent)
1528                        fat_msg(sb, KERN_ERR, "bogus sectors per cluster %u",
1529                                (unsigned)bpb->fat_sec_per_clus);
1530                goto out;
1531        }
1532
1533        error = 0;
1534
1535out:
1536        return error;
1537}
1538
1539static int fat_read_static_bpb(struct super_block *sb,
1540        struct fat_boot_sector *b, int silent,
1541        struct fat_bios_param_block *bpb)
1542{
1543        static const char *notdos1x = "This doesn't look like a DOS 1.x volume";
1544
1545        struct fat_floppy_defaults *fdefaults = NULL;
1546        int error = -EINVAL;
1547        sector_t bd_sects;
1548        unsigned i;
1549
1550        bd_sects = i_size_read(sb->s_bdev->bd_inode) / SECTOR_SIZE;
1551
1552        /* 16-bit DOS 1.x reliably wrote bootstrap short-jmp code */
1553        if (b->ignored[0] != 0xeb || b->ignored[2] != 0x90) {
1554                if (!silent)
1555                        fat_msg(sb, KERN_ERR,
1556                                "%s; no bootstrapping code", notdos1x);
1557                goto out;
1558        }
1559
1560        /*
1561         * If any value in this region is non-zero, it isn't archaic
1562         * DOS.
1563         */
1564        if (!fat_bpb_is_zero(b)) {
1565                if (!silent)
1566                        fat_msg(sb, KERN_ERR,
1567                                "%s; DOS 2.x BPB is non-zero", notdos1x);
1568                goto out;
1569        }
1570
1571        for (i = 0; i < ARRAY_SIZE(floppy_defaults); i++) {
1572                if (floppy_defaults[i].nr_sectors == bd_sects) {
1573                        fdefaults = &floppy_defaults[i];
1574                        break;
1575                }
1576        }
1577
1578        if (fdefaults == NULL) {
1579                if (!silent)
1580                        fat_msg(sb, KERN_WARNING,
1581                                "This looks like a DOS 1.x volume, but isn't a recognized floppy size (%llu sectors)",
1582                                (u64)bd_sects);
1583                goto out;
1584        }
1585
1586        if (!silent)
1587                fat_msg(sb, KERN_INFO,
1588                        "This looks like a DOS 1.x volume; assuming default BPB values");
1589
1590        memset(bpb, 0, sizeof(*bpb));
1591        bpb->fat_sector_size = SECTOR_SIZE;
1592        bpb->fat_sec_per_clus = fdefaults->sec_per_clus;
1593        bpb->fat_reserved = 1;
1594        bpb->fat_fats = 2;
1595        bpb->fat_dir_entries = fdefaults->dir_entries;
1596        bpb->fat_sectors = fdefaults->nr_sectors;
1597        bpb->fat_fat_length = fdefaults->fat_length;
1598
1599        error = 0;
1600
1601out:
1602        return error;
1603}
1604
1605/*
1606 * Read the super block of an MS-DOS FS.
1607 */
1608int fat_fill_super(struct super_block *sb, void *data, int silent, int isvfat,
1609                   void (*setup)(struct super_block *))
1610{
1611        struct inode *root_inode = NULL, *fat_inode = NULL;
1612        struct inode *fsinfo_inode = NULL;
1613        struct buffer_head *bh;
1614        struct fat_bios_param_block bpb;
1615        struct msdos_sb_info *sbi;
1616        u16 logical_sector_size;
1617        u32 total_sectors, total_clusters, fat_clusters, rootdir_sectors;
1618        int debug;
1619        long error;
1620        char buf[50];
1621
1622        /*
1623         * GFP_KERNEL is ok here, because while we do hold the
1624         * superblock lock, memory pressure can't call back into
1625         * the filesystem, since we're only just about to mount
1626         * it and have no inodes etc active!
1627         */
1628        sbi = kzalloc(sizeof(struct msdos_sb_info), GFP_KERNEL);
1629        if (!sbi)
1630                return -ENOMEM;
1631        sb->s_fs_info = sbi;
1632
1633        sb->s_flags |= SB_NODIRATIME;
1634        sb->s_magic = MSDOS_SUPER_MAGIC;
1635        sb->s_op = &fat_sops;
1636        sb->s_export_op = &fat_export_ops;
1637        mutex_init(&sbi->nfs_build_inode_lock);
1638        ratelimit_state_init(&sbi->ratelimit, DEFAULT_RATELIMIT_INTERVAL,
1639                             DEFAULT_RATELIMIT_BURST);
1640
1641        error = parse_options(sb, data, isvfat, silent, &debug, &sbi->options);
1642        if (error)
1643                goto out_fail;
1644
1645        setup(sb); /* flavour-specific stuff that needs options */
1646
1647        error = -EIO;
1648        sb_min_blocksize(sb, 512);
1649        bh = sb_bread(sb, 0);
1650        if (bh == NULL) {
1651                fat_msg(sb, KERN_ERR, "unable to read boot sector");
1652                goto out_fail;
1653        }
1654
1655        error = fat_read_bpb(sb, (struct fat_boot_sector *)bh->b_data, silent,
1656                &bpb);
1657        if (error == -EINVAL && sbi->options.dos1xfloppy)
1658                error = fat_read_static_bpb(sb,
1659                        (struct fat_boot_sector *)bh->b_data, silent, &bpb);
1660        brelse(bh);
1661
1662        if (error == -EINVAL)
1663                goto out_invalid;
1664        else if (error)
1665                goto out_fail;
1666
1667        logical_sector_size = bpb.fat_sector_size;
1668        sbi->sec_per_clus = bpb.fat_sec_per_clus;
1669
1670        error = -EIO;
1671        if (logical_sector_size < sb->s_blocksize) {
1672                fat_msg(sb, KERN_ERR, "logical sector size too small for device"
1673                       " (logical sector size = %u)", logical_sector_size);
1674                goto out_fail;
1675        }
1676
1677        if (logical_sector_size > sb->s_blocksize) {
1678                struct buffer_head *bh_resize;
1679
1680                if (!sb_set_blocksize(sb, logical_sector_size)) {
1681                        fat_msg(sb, KERN_ERR, "unable to set blocksize %u",
1682                               logical_sector_size);
1683                        goto out_fail;
1684                }
1685
1686                /* Verify that the larger boot sector is fully readable */
1687                bh_resize = sb_bread(sb, 0);
1688                if (bh_resize == NULL) {
1689                        fat_msg(sb, KERN_ERR, "unable to read boot sector"
1690                               " (logical sector size = %lu)",
1691                               sb->s_blocksize);
1692                        goto out_fail;
1693                }
1694                brelse(bh_resize);
1695        }
1696
1697        mutex_init(&sbi->s_lock);
1698        sbi->cluster_size = sb->s_blocksize * sbi->sec_per_clus;
1699        sbi->cluster_bits = ffs(sbi->cluster_size) - 1;
1700        sbi->fats = bpb.fat_fats;
1701        sbi->fat_bits = 0;              /* Don't know yet */
1702        sbi->fat_start = bpb.fat_reserved;
1703        sbi->fat_length = bpb.fat_fat_length;
1704        sbi->root_cluster = 0;
1705        sbi->free_clusters = -1;        /* Don't know yet */
1706        sbi->free_clus_valid = 0;
1707        sbi->prev_free = FAT_START_ENT;
1708        sb->s_maxbytes = 0xffffffff;
1709
1710        if (!sbi->fat_length && bpb.fat32_length) {
1711                struct fat_boot_fsinfo *fsinfo;
1712                struct buffer_head *fsinfo_bh;
1713
1714                /* Must be FAT32 */
1715                sbi->fat_bits = 32;
1716                sbi->fat_length = bpb.fat32_length;
1717                sbi->root_cluster = bpb.fat32_root_cluster;
1718
1719                /* MC - if info_sector is 0, don't multiply by 0 */
1720                sbi->fsinfo_sector = bpb.fat32_info_sector;
1721                if (sbi->fsinfo_sector == 0)
1722                        sbi->fsinfo_sector = 1;
1723
1724                fsinfo_bh = sb_bread(sb, sbi->fsinfo_sector);
1725                if (fsinfo_bh == NULL) {
1726                        fat_msg(sb, KERN_ERR, "bread failed, FSINFO block"
1727                               " (sector = %lu)", sbi->fsinfo_sector);
1728                        goto out_fail;
1729                }
1730
1731                fsinfo = (struct fat_boot_fsinfo *)fsinfo_bh->b_data;
1732                if (!IS_FSINFO(fsinfo)) {
1733                        fat_msg(sb, KERN_WARNING, "Invalid FSINFO signature: "
1734                               "0x%08x, 0x%08x (sector = %lu)",
1735                               le32_to_cpu(fsinfo->signature1),
1736                               le32_to_cpu(fsinfo->signature2),
1737                               sbi->fsinfo_sector);
1738                } else {
1739                        if (sbi->options.usefree)
1740                                sbi->free_clus_valid = 1;
1741                        sbi->free_clusters = le32_to_cpu(fsinfo->free_clusters);
1742                        sbi->prev_free = le32_to_cpu(fsinfo->next_cluster);
1743                }
1744
1745                brelse(fsinfo_bh);
1746        }
1747
1748        /* interpret volume ID as a little endian 32 bit integer */
1749        if (sbi->fat_bits == 32)
1750                sbi->vol_id = bpb.fat32_vol_id;
1751        else /* fat 16 or 12 */
1752                sbi->vol_id = bpb.fat16_vol_id;
1753
1754        sbi->dir_per_block = sb->s_blocksize / sizeof(struct msdos_dir_entry);
1755        sbi->dir_per_block_bits = ffs(sbi->dir_per_block) - 1;
1756
1757        sbi->dir_start = sbi->fat_start + sbi->fats * sbi->fat_length;
1758        sbi->dir_entries = bpb.fat_dir_entries;
1759        if (sbi->dir_entries & (sbi->dir_per_block - 1)) {
1760                if (!silent)
1761                        fat_msg(sb, KERN_ERR, "bogus number of directory entries"
1762                               " (%u)", sbi->dir_entries);
1763                goto out_invalid;
1764        }
1765
1766        rootdir_sectors = sbi->dir_entries
1767                * sizeof(struct msdos_dir_entry) / sb->s_blocksize;
1768        sbi->data_start = sbi->dir_start + rootdir_sectors;
1769        total_sectors = bpb.fat_sectors;
1770        if (total_sectors == 0)
1771                total_sectors = bpb.fat_total_sect;
1772
1773        total_clusters = (total_sectors - sbi->data_start) / sbi->sec_per_clus;
1774
1775        if (sbi->fat_bits != 32)
1776                sbi->fat_bits = (total_clusters > MAX_FAT12) ? 16 : 12;
1777
1778        /* some OSes set FAT_STATE_DIRTY and clean it on unmount. */
1779        if (sbi->fat_bits == 32)
1780                sbi->dirty = bpb.fat32_state & FAT_STATE_DIRTY;
1781        else /* fat 16 or 12 */
1782                sbi->dirty = bpb.fat16_state & FAT_STATE_DIRTY;
1783
1784        /* check that FAT table does not overflow */
1785        fat_clusters = calc_fat_clusters(sb);
1786        total_clusters = min(total_clusters, fat_clusters - FAT_START_ENT);
1787        if (total_clusters > MAX_FAT(sb)) {
1788                if (!silent)
1789                        fat_msg(sb, KERN_ERR, "count of clusters too big (%u)",
1790                               total_clusters);
1791                goto out_invalid;
1792        }
1793
1794        sbi->max_cluster = total_clusters + FAT_START_ENT;
1795        /* check the free_clusters, it's not necessarily correct */
1796        if (sbi->free_clusters != -1 && sbi->free_clusters > total_clusters)
1797                sbi->free_clusters = -1;
1798        /* check the prev_free, it's not necessarily correct */
1799        sbi->prev_free %= sbi->max_cluster;
1800        if (sbi->prev_free < FAT_START_ENT)
1801                sbi->prev_free = FAT_START_ENT;
1802
1803        /* set up enough so that it can read an inode */
1804        fat_hash_init(sb);
1805        dir_hash_init(sb);
1806        fat_ent_access_init(sb);
1807
1808        /*
1809         * The low byte of FAT's first entry must have same value with
1810         * media-field.  But in real world, too many devices is
1811         * writing wrong value.  So, removed that validity check.
1812         *
1813         * if (FAT_FIRST_ENT(sb, media) != first)
1814         */
1815
1816        error = -EINVAL;
1817        sprintf(buf, "cp%d", sbi->options.codepage);
1818        sbi->nls_disk = load_nls(buf);
1819        if (!sbi->nls_disk) {
1820                fat_msg(sb, KERN_ERR, "codepage %s not found", buf);
1821                goto out_fail;
1822        }
1823
1824        /* FIXME: utf8 is using iocharset for upper/lower conversion */
1825        if (sbi->options.isvfat) {
1826                sbi->nls_io = load_nls(sbi->options.iocharset);
1827                if (!sbi->nls_io) {
1828                        fat_msg(sb, KERN_ERR, "IO charset %s not found",
1829                               sbi->options.iocharset);
1830                        goto out_fail;
1831                }
1832        }
1833
1834        error = -ENOMEM;
1835        fat_inode = new_inode(sb);
1836        if (!fat_inode)
1837                goto out_fail;
1838        fat_dummy_inode_init(fat_inode);
1839        sbi->fat_inode = fat_inode;
1840
1841        fsinfo_inode = new_inode(sb);
1842        if (!fsinfo_inode)
1843                goto out_fail;
1844        fat_dummy_inode_init(fsinfo_inode);
1845        fsinfo_inode->i_ino = MSDOS_FSINFO_INO;
1846        sbi->fsinfo_inode = fsinfo_inode;
1847        insert_inode_hash(fsinfo_inode);
1848
1849        root_inode = new_inode(sb);
1850        if (!root_inode)
1851                goto out_fail;
1852        root_inode->i_ino = MSDOS_ROOT_INO;
1853        inode_set_iversion(root_inode, 1);
1854        error = fat_read_root(root_inode);
1855        if (error < 0) {
1856                iput(root_inode);
1857                goto out_fail;
1858        }
1859        error = -ENOMEM;
1860        insert_inode_hash(root_inode);
1861        fat_attach(root_inode, 0);
1862        sb->s_root = d_make_root(root_inode);
1863        if (!sb->s_root) {
1864                fat_msg(sb, KERN_ERR, "get root inode failed");
1865                goto out_fail;
1866        }
1867
1868        if (sbi->options.discard) {
1869                struct request_queue *q = bdev_get_queue(sb->s_bdev);
1870                if (!blk_queue_discard(q))
1871                        fat_msg(sb, KERN_WARNING,
1872                                        "mounting with \"discard\" option, but "
1873                                        "the device does not support discard");
1874        }
1875
1876        fat_set_state(sb, 1, 0);
1877        return 0;
1878
1879out_invalid:
1880        error = -EINVAL;
1881        if (!silent)
1882                fat_msg(sb, KERN_INFO, "Can't find a valid FAT filesystem");
1883
1884out_fail:
1885        if (fsinfo_inode)
1886                iput(fsinfo_inode);
1887        if (fat_inode)
1888                iput(fat_inode);
1889        unload_nls(sbi->nls_io);
1890        unload_nls(sbi->nls_disk);
1891        fat_reset_iocharset(&sbi->options);
1892        sb->s_fs_info = NULL;
1893        kfree(sbi);
1894        return error;
1895}
1896
1897EXPORT_SYMBOL_GPL(fat_fill_super);
1898
1899/*
1900 * helper function for fat_flush_inodes.  This writes both the inode
1901 * and the file data blocks, waiting for in flight data blocks before
1902 * the start of the call.  It does not wait for any io started
1903 * during the call
1904 */
1905static int writeback_inode(struct inode *inode)
1906{
1907
1908        int ret;
1909
1910        /* if we used wait=1, sync_inode_metadata waits for the io for the
1911        * inode to finish.  So wait=0 is sent down to sync_inode_metadata
1912        * and filemap_fdatawrite is used for the data blocks
1913        */
1914        ret = sync_inode_metadata(inode, 0);
1915        if (!ret)
1916                ret = filemap_fdatawrite(inode->i_mapping);
1917        return ret;
1918}
1919
1920/*
1921 * write data and metadata corresponding to i1 and i2.  The io is
1922 * started but we do not wait for any of it to finish.
1923 *
1924 * filemap_flush is used for the block device, so if there is a dirty
1925 * page for a block already in flight, we will not wait and start the
1926 * io over again
1927 */
1928int fat_flush_inodes(struct super_block *sb, struct inode *i1, struct inode *i2)
1929{
1930        int ret = 0;
1931        if (!MSDOS_SB(sb)->options.flush)
1932                return 0;
1933        if (i1)
1934                ret = writeback_inode(i1);
1935        if (!ret && i2)
1936                ret = writeback_inode(i2);
1937        if (!ret) {
1938                struct address_space *mapping = sb->s_bdev->bd_inode->i_mapping;
1939                ret = filemap_flush(mapping);
1940        }
1941        return ret;
1942}
1943EXPORT_SYMBOL_GPL(fat_flush_inodes);
1944
1945static int __init init_fat_fs(void)
1946{
1947        int err;
1948
1949        err = fat_cache_init();
1950        if (err)
1951                return err;
1952
1953        err = fat_init_inodecache();
1954        if (err)
1955                goto failed;
1956
1957        return 0;
1958
1959failed:
1960        fat_cache_destroy();
1961        return err;
1962}
1963
1964static void __exit exit_fat_fs(void)
1965{
1966        fat_cache_destroy();
1967        fat_destroy_inodecache();
1968}
1969
1970module_init(init_fat_fs)
1971module_exit(exit_fat_fs)
1972
1973MODULE_LICENSE("GPL");
1974