| 1 | // SPDX-License-Identifier: GPL-2.0 |
| 2 | /* |
| 3 | * Copyright (c) 2000-2006 Silicon Graphics, Inc. |
| 4 | * All Rights Reserved. |
| 5 | */ |
| 6 | |
| 7 | #include "xfs.h" |
| 8 | #include "xfs_shared.h" |
| 9 | #include "xfs_format.h" |
| 10 | #include "xfs_log_format.h" |
| 11 | #include "xfs_trans_resv.h" |
| 12 | #include "xfs_sb.h" |
| 13 | #include "xfs_mount.h" |
| 14 | #include "xfs_inode.h" |
| 15 | #include "xfs_btree.h" |
| 16 | #include "xfs_bmap.h" |
| 17 | #include "xfs_alloc.h" |
| 18 | #include "xfs_fsops.h" |
| 19 | #include "xfs_trans.h" |
| 20 | #include "xfs_buf_item.h" |
| 21 | #include "xfs_log.h" |
| 22 | #include "xfs_log_priv.h" |
| 23 | #include "xfs_dir2.h" |
| 24 | #include "xfs_extfree_item.h" |
| 25 | #include "xfs_mru_cache.h" |
| 26 | #include "xfs_inode_item.h" |
| 27 | #include "xfs_icache.h" |
| 28 | #include "xfs_trace.h" |
| 29 | #include "xfs_icreate_item.h" |
| 30 | #include "xfs_filestream.h" |
| 31 | #include "xfs_quota.h" |
| 32 | #include "xfs_sysfs.h" |
| 33 | #include "xfs_ondisk.h" |
| 34 | #include "xfs_rmap_item.h" |
| 35 | #include "xfs_refcount_item.h" |
| 36 | #include "xfs_bmap_item.h" |
| 37 | #include "xfs_reflink.h" |
| 38 | #include "xfs_pwork.h" |
| 39 | #include "xfs_ag.h" |
| 40 | #include "xfs_defer.h" |
| 41 | #include "xfs_attr_item.h" |
| 42 | #include "xfs_xattr.h" |
| 43 | #include "xfs_iunlink_item.h" |
| 44 | #include "xfs_dahash_test.h" |
| 45 | #include "xfs_rtbitmap.h" |
| 46 | #include "xfs_exchmaps_item.h" |
| 47 | #include "xfs_parent.h" |
| 48 | #include "xfs_rtalloc.h" |
| 49 | #include "xfs_zone_alloc.h" |
| 50 | #include "scrub/stats.h" |
| 51 | #include "scrub/rcbag_btree.h" |
| 52 | |
| 53 | #include <linux/magic.h> |
| 54 | #include <linux/fs_context.h> |
| 55 | #include <linux/fs_parser.h> |
| 56 | |
| 57 | static const struct super_operations xfs_super_operations; |
| 58 | |
| 59 | static struct dentry *xfs_debugfs; /* top-level xfs debugfs dir */ |
| 60 | static struct kset *xfs_kset; /* top-level xfs sysfs dir */ |
| 61 | #ifdef DEBUG |
| 62 | static struct xfs_kobj xfs_dbg_kobj; /* global debug sysfs attrs */ |
| 63 | #endif |
| 64 | |
| 65 | enum xfs_dax_mode { |
| 66 | XFS_DAX_INODE = 0, |
| 67 | XFS_DAX_ALWAYS = 1, |
| 68 | XFS_DAX_NEVER = 2, |
| 69 | }; |
| 70 | |
| 71 | /* Were quota mount options provided? Must use the upper 16 bits of qflags. */ |
| 72 | #define XFS_QFLAGS_MNTOPTS (1U << 31) |
| 73 | |
| 74 | static void |
| 75 | xfs_mount_set_dax_mode( |
| 76 | struct xfs_mount *mp, |
| 77 | enum xfs_dax_mode mode) |
| 78 | { |
| 79 | switch (mode) { |
| 80 | case XFS_DAX_INODE: |
| 81 | mp->m_features &= ~(XFS_FEAT_DAX_ALWAYS | XFS_FEAT_DAX_NEVER); |
| 82 | break; |
| 83 | case XFS_DAX_ALWAYS: |
| 84 | mp->m_features |= XFS_FEAT_DAX_ALWAYS; |
| 85 | mp->m_features &= ~XFS_FEAT_DAX_NEVER; |
| 86 | break; |
| 87 | case XFS_DAX_NEVER: |
| 88 | mp->m_features |= XFS_FEAT_DAX_NEVER; |
| 89 | mp->m_features &= ~XFS_FEAT_DAX_ALWAYS; |
| 90 | break; |
| 91 | } |
| 92 | } |
| 93 | |
| 94 | static const struct constant_table dax_param_enums[] = { |
| 95 | {"inode", XFS_DAX_INODE }, |
| 96 | {"always", XFS_DAX_ALWAYS }, |
| 97 | {"never", XFS_DAX_NEVER }, |
| 98 | {} |
| 99 | }; |
| 100 | |
| 101 | /* |
| 102 | * Table driven mount option parser. |
| 103 | */ |
| 104 | enum { |
| 105 | Opt_logbufs, Opt_logbsize, Opt_logdev, Opt_rtdev, |
| 106 | Opt_wsync, Opt_noalign, Opt_swalloc, Opt_sunit, Opt_swidth, Opt_nouuid, |
| 107 | Opt_grpid, Opt_nogrpid, Opt_bsdgroups, Opt_sysvgroups, |
| 108 | Opt_allocsize, Opt_norecovery, Opt_inode64, Opt_inode32, Opt_ikeep, |
| 109 | Opt_noikeep, Opt_largeio, Opt_nolargeio, Opt_attr2, Opt_noattr2, |
| 110 | Opt_filestreams, Opt_quota, Opt_noquota, Opt_usrquota, Opt_grpquota, |
| 111 | Opt_prjquota, Opt_uquota, Opt_gquota, Opt_pquota, |
| 112 | Opt_uqnoenforce, Opt_gqnoenforce, Opt_pqnoenforce, Opt_qnoenforce, |
| 113 | Opt_discard, Opt_nodiscard, Opt_dax, Opt_dax_enum, Opt_max_open_zones, |
| 114 | Opt_lifetime, Opt_nolifetime, Opt_max_atomic_write, |
| 115 | }; |
| 116 | |
| 117 | static const struct fs_parameter_spec xfs_fs_parameters[] = { |
| 118 | fsparam_u32("logbufs", Opt_logbufs), |
| 119 | fsparam_string("logbsize", Opt_logbsize), |
| 120 | fsparam_string("logdev", Opt_logdev), |
| 121 | fsparam_string("rtdev", Opt_rtdev), |
| 122 | fsparam_flag("wsync", Opt_wsync), |
| 123 | fsparam_flag("noalign", Opt_noalign), |
| 124 | fsparam_flag("swalloc", Opt_swalloc), |
| 125 | fsparam_u32("sunit", Opt_sunit), |
| 126 | fsparam_u32("swidth", Opt_swidth), |
| 127 | fsparam_flag("nouuid", Opt_nouuid), |
| 128 | fsparam_flag("grpid", Opt_grpid), |
| 129 | fsparam_flag("nogrpid", Opt_nogrpid), |
| 130 | fsparam_flag("bsdgroups", Opt_bsdgroups), |
| 131 | fsparam_flag("sysvgroups", Opt_sysvgroups), |
| 132 | fsparam_string("allocsize", Opt_allocsize), |
| 133 | fsparam_flag("norecovery", Opt_norecovery), |
| 134 | fsparam_flag("inode64", Opt_inode64), |
| 135 | fsparam_flag("inode32", Opt_inode32), |
| 136 | fsparam_flag("ikeep", Opt_ikeep), |
| 137 | fsparam_flag("noikeep", Opt_noikeep), |
| 138 | fsparam_flag("largeio", Opt_largeio), |
| 139 | fsparam_flag("nolargeio", Opt_nolargeio), |
| 140 | fsparam_flag("attr2", Opt_attr2), |
| 141 | fsparam_flag("noattr2", Opt_noattr2), |
| 142 | fsparam_flag("filestreams", Opt_filestreams), |
| 143 | fsparam_flag("quota", Opt_quota), |
| 144 | fsparam_flag("noquota", Opt_noquota), |
| 145 | fsparam_flag("usrquota", Opt_usrquota), |
| 146 | fsparam_flag("grpquota", Opt_grpquota), |
| 147 | fsparam_flag("prjquota", Opt_prjquota), |
| 148 | fsparam_flag("uquota", Opt_uquota), |
| 149 | fsparam_flag("gquota", Opt_gquota), |
| 150 | fsparam_flag("pquota", Opt_pquota), |
| 151 | fsparam_flag("uqnoenforce", Opt_uqnoenforce), |
| 152 | fsparam_flag("gqnoenforce", Opt_gqnoenforce), |
| 153 | fsparam_flag("pqnoenforce", Opt_pqnoenforce), |
| 154 | fsparam_flag("qnoenforce", Opt_qnoenforce), |
| 155 | fsparam_flag("discard", Opt_discard), |
| 156 | fsparam_flag("nodiscard", Opt_nodiscard), |
| 157 | fsparam_flag("dax", Opt_dax), |
| 158 | fsparam_enum("dax", Opt_dax_enum, dax_param_enums), |
| 159 | fsparam_u32("max_open_zones", Opt_max_open_zones), |
| 160 | fsparam_flag("lifetime", Opt_lifetime), |
| 161 | fsparam_flag("nolifetime", Opt_nolifetime), |
| 162 | fsparam_string("max_atomic_write", Opt_max_atomic_write), |
| 163 | {} |
| 164 | }; |
| 165 | |
| 166 | struct proc_xfs_info { |
| 167 | uint64_t flag; |
| 168 | char *str; |
| 169 | }; |
| 170 | |
| 171 | static int |
| 172 | xfs_fs_show_options( |
| 173 | struct seq_file *m, |
| 174 | struct dentry *root) |
| 175 | { |
| 176 | static struct proc_xfs_info xfs_info_set[] = { |
| 177 | /* the few simple ones we can get from the mount struct */ |
| 178 | { XFS_FEAT_IKEEP, ",ikeep" }, |
| 179 | { XFS_FEAT_WSYNC, ",wsync" }, |
| 180 | { XFS_FEAT_NOALIGN, ",noalign" }, |
| 181 | { XFS_FEAT_SWALLOC, ",swalloc" }, |
| 182 | { XFS_FEAT_NOUUID, ",nouuid" }, |
| 183 | { XFS_FEAT_NORECOVERY, ",norecovery" }, |
| 184 | { XFS_FEAT_ATTR2, ",attr2" }, |
| 185 | { XFS_FEAT_FILESTREAMS, ",filestreams" }, |
| 186 | { XFS_FEAT_GRPID, ",grpid" }, |
| 187 | { XFS_FEAT_DISCARD, ",discard" }, |
| 188 | { XFS_FEAT_LARGE_IOSIZE, ",largeio" }, |
| 189 | { XFS_FEAT_DAX_ALWAYS, ",dax=always" }, |
| 190 | { XFS_FEAT_DAX_NEVER, ",dax=never" }, |
| 191 | { XFS_FEAT_NOLIFETIME, ",nolifetime" }, |
| 192 | { 0, NULL } |
| 193 | }; |
| 194 | struct xfs_mount *mp = XFS_M(root->d_sb); |
| 195 | struct proc_xfs_info *xfs_infop; |
| 196 | |
| 197 | for (xfs_infop = xfs_info_set; xfs_infop->flag; xfs_infop++) { |
| 198 | if (mp->m_features & xfs_infop->flag) |
| 199 | seq_puts(m, xfs_infop->str); |
| 200 | } |
| 201 | |
| 202 | seq_printf(m, ",inode%d", xfs_has_small_inums(mp) ? 32 : 64); |
| 203 | |
| 204 | if (xfs_has_allocsize(mp)) |
| 205 | seq_printf(m, ",allocsize=%dk", |
| 206 | (1 << mp->m_allocsize_log) >> 10); |
| 207 | |
| 208 | if (mp->m_logbufs > 0) |
| 209 | seq_printf(m, ",logbufs=%d", mp->m_logbufs); |
| 210 | if (mp->m_logbsize > 0) |
| 211 | seq_printf(m, ",logbsize=%dk", mp->m_logbsize >> 10); |
| 212 | |
| 213 | if (mp->m_logname) |
| 214 | seq_show_option(m, "logdev", mp->m_logname); |
| 215 | if (mp->m_rtname) |
| 216 | seq_show_option(m, "rtdev", mp->m_rtname); |
| 217 | |
| 218 | if (mp->m_dalign > 0) |
| 219 | seq_printf(m, ",sunit=%d", |
| 220 | (int)XFS_FSB_TO_BB(mp, mp->m_dalign)); |
| 221 | if (mp->m_swidth > 0) |
| 222 | seq_printf(m, ",swidth=%d", |
| 223 | (int)XFS_FSB_TO_BB(mp, mp->m_swidth)); |
| 224 | |
| 225 | if (mp->m_qflags & XFS_UQUOTA_ENFD) |
| 226 | seq_puts(m, ",usrquota"); |
| 227 | else if (mp->m_qflags & XFS_UQUOTA_ACCT) |
| 228 | seq_puts(m, ",uqnoenforce"); |
| 229 | |
| 230 | if (mp->m_qflags & XFS_PQUOTA_ENFD) |
| 231 | seq_puts(m, ",prjquota"); |
| 232 | else if (mp->m_qflags & XFS_PQUOTA_ACCT) |
| 233 | seq_puts(m, ",pqnoenforce"); |
| 234 | |
| 235 | if (mp->m_qflags & XFS_GQUOTA_ENFD) |
| 236 | seq_puts(m, ",grpquota"); |
| 237 | else if (mp->m_qflags & XFS_GQUOTA_ACCT) |
| 238 | seq_puts(m, ",gqnoenforce"); |
| 239 | |
| 240 | if (!(mp->m_qflags & XFS_ALL_QUOTA_ACCT)) |
| 241 | seq_puts(m, ",noquota"); |
| 242 | |
| 243 | if (mp->m_max_open_zones) |
| 244 | seq_printf(m, ",max_open_zones=%u", mp->m_max_open_zones); |
| 245 | if (mp->m_awu_max_bytes) |
| 246 | seq_printf(m, ",max_atomic_write=%lluk", |
| 247 | mp->m_awu_max_bytes >> 10); |
| 248 | |
| 249 | return 0; |
| 250 | } |
| 251 | |
| 252 | static bool |
| 253 | xfs_set_inode_alloc_perag( |
| 254 | struct xfs_perag *pag, |
| 255 | xfs_ino_t ino, |
| 256 | xfs_agnumber_t max_metadata) |
| 257 | { |
| 258 | if (!xfs_is_inode32(pag_mount(pag))) { |
| 259 | set_bit(XFS_AGSTATE_ALLOWS_INODES, &pag->pag_opstate); |
| 260 | clear_bit(XFS_AGSTATE_PREFERS_METADATA, &pag->pag_opstate); |
| 261 | return false; |
| 262 | } |
| 263 | |
| 264 | if (ino > XFS_MAXINUMBER_32) { |
| 265 | clear_bit(XFS_AGSTATE_ALLOWS_INODES, &pag->pag_opstate); |
| 266 | clear_bit(XFS_AGSTATE_PREFERS_METADATA, &pag->pag_opstate); |
| 267 | return false; |
| 268 | } |
| 269 | |
| 270 | set_bit(XFS_AGSTATE_ALLOWS_INODES, &pag->pag_opstate); |
| 271 | if (pag_agno(pag) < max_metadata) |
| 272 | set_bit(XFS_AGSTATE_PREFERS_METADATA, &pag->pag_opstate); |
| 273 | else |
| 274 | clear_bit(XFS_AGSTATE_PREFERS_METADATA, &pag->pag_opstate); |
| 275 | return true; |
| 276 | } |
| 277 | |
| 278 | /* |
| 279 | * Set parameters for inode allocation heuristics, taking into account |
| 280 | * filesystem size and inode32/inode64 mount options; i.e. specifically |
| 281 | * whether or not XFS_FEAT_SMALL_INUMS is set. |
| 282 | * |
| 283 | * Inode allocation patterns are altered only if inode32 is requested |
| 284 | * (XFS_FEAT_SMALL_INUMS), and the filesystem is sufficiently large. |
| 285 | * If altered, XFS_OPSTATE_INODE32 is set as well. |
| 286 | * |
| 287 | * An agcount independent of that in the mount structure is provided |
| 288 | * because in the growfs case, mp->m_sb.sb_agcount is not yet updated |
| 289 | * to the potentially higher ag count. |
| 290 | * |
| 291 | * Returns the maximum AG index which may contain inodes. |
| 292 | */ |
| 293 | xfs_agnumber_t |
| 294 | xfs_set_inode_alloc( |
| 295 | struct xfs_mount *mp, |
| 296 | xfs_agnumber_t agcount) |
| 297 | { |
| 298 | xfs_agnumber_t index; |
| 299 | xfs_agnumber_t maxagi = 0; |
| 300 | xfs_sb_t *sbp = &mp->m_sb; |
| 301 | xfs_agnumber_t max_metadata; |
| 302 | xfs_agino_t agino; |
| 303 | xfs_ino_t ino; |
| 304 | |
| 305 | /* |
| 306 | * Calculate how much should be reserved for inodes to meet |
| 307 | * the max inode percentage. Used only for inode32. |
| 308 | */ |
| 309 | if (M_IGEO(mp)->maxicount) { |
| 310 | uint64_t icount; |
| 311 | |
| 312 | icount = sbp->sb_dblocks * sbp->sb_imax_pct; |
| 313 | do_div(icount, 100); |
| 314 | icount += sbp->sb_agblocks - 1; |
| 315 | do_div(icount, sbp->sb_agblocks); |
| 316 | max_metadata = icount; |
| 317 | } else { |
| 318 | max_metadata = agcount; |
| 319 | } |
| 320 | |
| 321 | /* Get the last possible inode in the filesystem */ |
| 322 | agino = XFS_AGB_TO_AGINO(mp, sbp->sb_agblocks - 1); |
| 323 | ino = XFS_AGINO_TO_INO(mp, agcount - 1, agino); |
| 324 | |
| 325 | /* |
| 326 | * If user asked for no more than 32-bit inodes, and the fs is |
| 327 | * sufficiently large, set XFS_OPSTATE_INODE32 if we must alter |
| 328 | * the allocator to accommodate the request. |
| 329 | */ |
| 330 | if (xfs_has_small_inums(mp) && ino > XFS_MAXINUMBER_32) |
| 331 | xfs_set_inode32(mp); |
| 332 | else |
| 333 | xfs_clear_inode32(mp); |
| 334 | |
| 335 | for (index = 0; index < agcount; index++) { |
| 336 | struct xfs_perag *pag; |
| 337 | |
| 338 | ino = XFS_AGINO_TO_INO(mp, index, agino); |
| 339 | |
| 340 | pag = xfs_perag_get(mp, index); |
| 341 | if (xfs_set_inode_alloc_perag(pag, ino, max_metadata)) |
| 342 | maxagi++; |
| 343 | xfs_perag_put(pag); |
| 344 | } |
| 345 | |
| 346 | return xfs_is_inode32(mp) ? maxagi : agcount; |
| 347 | } |
| 348 | |
| 349 | static int |
| 350 | xfs_setup_dax_always( |
| 351 | struct xfs_mount *mp) |
| 352 | { |
| 353 | if (!mp->m_ddev_targp->bt_daxdev && |
| 354 | (!mp->m_rtdev_targp || !mp->m_rtdev_targp->bt_daxdev)) { |
| 355 | xfs_alert(mp, |
| 356 | "DAX unsupported by block device. Turning off DAX."); |
| 357 | goto disable_dax; |
| 358 | } |
| 359 | |
| 360 | if (mp->m_super->s_blocksize != PAGE_SIZE) { |
| 361 | xfs_alert(mp, |
| 362 | "DAX not supported for blocksize. Turning off DAX."); |
| 363 | goto disable_dax; |
| 364 | } |
| 365 | |
| 366 | if (xfs_has_reflink(mp) && |
| 367 | bdev_is_partition(mp->m_ddev_targp->bt_bdev)) { |
| 368 | xfs_alert(mp, |
| 369 | "DAX and reflink cannot work with multi-partitions!"); |
| 370 | return -EINVAL; |
| 371 | } |
| 372 | |
| 373 | return 0; |
| 374 | |
| 375 | disable_dax: |
| 376 | xfs_mount_set_dax_mode(mp, XFS_DAX_NEVER); |
| 377 | return 0; |
| 378 | } |
| 379 | |
| 380 | STATIC int |
| 381 | xfs_blkdev_get( |
| 382 | xfs_mount_t *mp, |
| 383 | const char *name, |
| 384 | struct file **bdev_filep) |
| 385 | { |
| 386 | int error = 0; |
| 387 | blk_mode_t mode; |
| 388 | |
| 389 | mode = sb_open_mode(mp->m_super->s_flags); |
| 390 | *bdev_filep = bdev_file_open_by_path(name, mode, |
| 391 | mp->m_super, &fs_holder_ops); |
| 392 | if (IS_ERR(*bdev_filep)) { |
| 393 | error = PTR_ERR(*bdev_filep); |
| 394 | *bdev_filep = NULL; |
| 395 | xfs_warn(mp, "Invalid device [%s], error=%d", name, error); |
| 396 | } |
| 397 | |
| 398 | return error; |
| 399 | } |
| 400 | |
| 401 | STATIC void |
| 402 | xfs_shutdown_devices( |
| 403 | struct xfs_mount *mp) |
| 404 | { |
| 405 | /* |
| 406 | * Udev is triggered whenever anyone closes a block device or unmounts |
| 407 | * a file systemm on a block device. |
| 408 | * The default udev rules invoke blkid to read the fs super and create |
| 409 | * symlinks to the bdev under /dev/disk. For this, it uses buffered |
| 410 | * reads through the page cache. |
| 411 | * |
| 412 | * xfs_db also uses buffered reads to examine metadata. There is no |
| 413 | * coordination between xfs_db and udev, which means that they can run |
| 414 | * concurrently. Note there is no coordination between the kernel and |
| 415 | * blkid either. |
| 416 | * |
| 417 | * On a system with 64k pages, the page cache can cache the superblock |
| 418 | * and the root inode (and hence the root directory) with the same 64k |
| 419 | * page. If udev spawns blkid after the mkfs and the system is busy |
| 420 | * enough that it is still running when xfs_db starts up, they'll both |
| 421 | * read from the same page in the pagecache. |
| 422 | * |
| 423 | * The unmount writes updated inode metadata to disk directly. The XFS |
| 424 | * buffer cache does not use the bdev pagecache, so it needs to |
| 425 | * invalidate that pagecache on unmount. If the above scenario occurs, |
| 426 | * the pagecache no longer reflects what's on disk, xfs_db reads the |
| 427 | * stale metadata, and fails to find /a. Most of the time this succeeds |
| 428 | * because closing a bdev invalidates the page cache, but when processes |
| 429 | * race, everyone loses. |
| 430 | */ |
| 431 | if (mp->m_logdev_targp && mp->m_logdev_targp != mp->m_ddev_targp) { |
| 432 | blkdev_issue_flush(mp->m_logdev_targp->bt_bdev); |
| 433 | invalidate_bdev(mp->m_logdev_targp->bt_bdev); |
| 434 | } |
| 435 | if (mp->m_rtdev_targp) { |
| 436 | blkdev_issue_flush(mp->m_rtdev_targp->bt_bdev); |
| 437 | invalidate_bdev(mp->m_rtdev_targp->bt_bdev); |
| 438 | } |
| 439 | blkdev_issue_flush(mp->m_ddev_targp->bt_bdev); |
| 440 | invalidate_bdev(mp->m_ddev_targp->bt_bdev); |
| 441 | } |
| 442 | |
| 443 | /* |
| 444 | * The file system configurations are: |
| 445 | * (1) device (partition) with data and internal log |
| 446 | * (2) logical volume with data and log subvolumes. |
| 447 | * (3) logical volume with data, log, and realtime subvolumes. |
| 448 | * |
| 449 | * We only have to handle opening the log and realtime volumes here if |
| 450 | * they are present. The data subvolume has already been opened by |
| 451 | * get_sb_bdev() and is stored in sb->s_bdev. |
| 452 | */ |
| 453 | STATIC int |
| 454 | xfs_open_devices( |
| 455 | struct xfs_mount *mp) |
| 456 | { |
| 457 | struct super_block *sb = mp->m_super; |
| 458 | struct block_device *ddev = sb->s_bdev; |
| 459 | struct file *logdev_file = NULL, *rtdev_file = NULL; |
| 460 | int error; |
| 461 | |
| 462 | /* |
| 463 | * Open real time and log devices - order is important. |
| 464 | */ |
| 465 | if (mp->m_logname) { |
| 466 | error = xfs_blkdev_get(mp, mp->m_logname, &logdev_file); |
| 467 | if (error) |
| 468 | return error; |
| 469 | } |
| 470 | |
| 471 | if (mp->m_rtname) { |
| 472 | error = xfs_blkdev_get(mp, mp->m_rtname, &rtdev_file); |
| 473 | if (error) |
| 474 | goto out_close_logdev; |
| 475 | |
| 476 | if (file_bdev(rtdev_file) == ddev || |
| 477 | (logdev_file && |
| 478 | file_bdev(rtdev_file) == file_bdev(logdev_file))) { |
| 479 | xfs_warn(mp, |
| 480 | "Cannot mount filesystem with identical rtdev and ddev/logdev."); |
| 481 | error = -EINVAL; |
| 482 | goto out_close_rtdev; |
| 483 | } |
| 484 | } |
| 485 | |
| 486 | /* |
| 487 | * Setup xfs_mount buffer target pointers |
| 488 | */ |
| 489 | mp->m_ddev_targp = xfs_alloc_buftarg(mp, sb->s_bdev_file); |
| 490 | if (IS_ERR(mp->m_ddev_targp)) { |
| 491 | error = PTR_ERR(mp->m_ddev_targp); |
| 492 | mp->m_ddev_targp = NULL; |
| 493 | goto out_close_rtdev; |
| 494 | } |
| 495 | |
| 496 | if (rtdev_file) { |
| 497 | mp->m_rtdev_targp = xfs_alloc_buftarg(mp, rtdev_file); |
| 498 | if (IS_ERR(mp->m_rtdev_targp)) { |
| 499 | error = PTR_ERR(mp->m_rtdev_targp); |
| 500 | mp->m_rtdev_targp = NULL; |
| 501 | goto out_free_ddev_targ; |
| 502 | } |
| 503 | } |
| 504 | |
| 505 | if (logdev_file && file_bdev(logdev_file) != ddev) { |
| 506 | mp->m_logdev_targp = xfs_alloc_buftarg(mp, logdev_file); |
| 507 | if (IS_ERR(mp->m_logdev_targp)) { |
| 508 | error = PTR_ERR(mp->m_logdev_targp); |
| 509 | mp->m_logdev_targp = NULL; |
| 510 | goto out_free_rtdev_targ; |
| 511 | } |
| 512 | } else { |
| 513 | mp->m_logdev_targp = mp->m_ddev_targp; |
| 514 | /* Handle won't be used, drop it */ |
| 515 | if (logdev_file) |
| 516 | bdev_fput(logdev_file); |
| 517 | } |
| 518 | |
| 519 | return 0; |
| 520 | |
| 521 | out_free_rtdev_targ: |
| 522 | if (mp->m_rtdev_targp) |
| 523 | xfs_free_buftarg(mp->m_rtdev_targp); |
| 524 | out_free_ddev_targ: |
| 525 | xfs_free_buftarg(mp->m_ddev_targp); |
| 526 | out_close_rtdev: |
| 527 | if (rtdev_file) |
| 528 | bdev_fput(rtdev_file); |
| 529 | out_close_logdev: |
| 530 | if (logdev_file) |
| 531 | bdev_fput(logdev_file); |
| 532 | return error; |
| 533 | } |
| 534 | |
| 535 | /* |
| 536 | * Setup xfs_mount buffer target pointers based on superblock |
| 537 | */ |
| 538 | STATIC int |
| 539 | xfs_setup_devices( |
| 540 | struct xfs_mount *mp) |
| 541 | { |
| 542 | int error; |
| 543 | |
| 544 | error = xfs_configure_buftarg(mp->m_ddev_targp, mp->m_sb.sb_sectsize); |
| 545 | if (error) |
| 546 | return error; |
| 547 | |
| 548 | if (mp->m_logdev_targp && mp->m_logdev_targp != mp->m_ddev_targp) { |
| 549 | unsigned int log_sector_size = BBSIZE; |
| 550 | |
| 551 | if (xfs_has_sector(mp)) |
| 552 | log_sector_size = mp->m_sb.sb_logsectsize; |
| 553 | error = xfs_configure_buftarg(mp->m_logdev_targp, |
| 554 | log_sector_size); |
| 555 | if (error) |
| 556 | return error; |
| 557 | } |
| 558 | |
| 559 | if (mp->m_sb.sb_rtstart) { |
| 560 | if (mp->m_rtdev_targp) { |
| 561 | xfs_warn(mp, |
| 562 | "can't use internal and external rtdev at the same time"); |
| 563 | return -EINVAL; |
| 564 | } |
| 565 | mp->m_rtdev_targp = mp->m_ddev_targp; |
| 566 | } else if (mp->m_rtname) { |
| 567 | error = xfs_configure_buftarg(mp->m_rtdev_targp, |
| 568 | mp->m_sb.sb_sectsize); |
| 569 | if (error) |
| 570 | return error; |
| 571 | } |
| 572 | |
| 573 | return 0; |
| 574 | } |
| 575 | |
| 576 | STATIC int |
| 577 | xfs_init_mount_workqueues( |
| 578 | struct xfs_mount *mp) |
| 579 | { |
| 580 | mp->m_buf_workqueue = alloc_workqueue("xfs-buf/%s", |
| 581 | XFS_WQFLAGS(WQ_FREEZABLE | WQ_MEM_RECLAIM), |
| 582 | 1, mp->m_super->s_id); |
| 583 | if (!mp->m_buf_workqueue) |
| 584 | goto out; |
| 585 | |
| 586 | mp->m_unwritten_workqueue = alloc_workqueue("xfs-conv/%s", |
| 587 | XFS_WQFLAGS(WQ_FREEZABLE | WQ_MEM_RECLAIM), |
| 588 | 0, mp->m_super->s_id); |
| 589 | if (!mp->m_unwritten_workqueue) |
| 590 | goto out_destroy_buf; |
| 591 | |
| 592 | mp->m_reclaim_workqueue = alloc_workqueue("xfs-reclaim/%s", |
| 593 | XFS_WQFLAGS(WQ_FREEZABLE | WQ_MEM_RECLAIM), |
| 594 | 0, mp->m_super->s_id); |
| 595 | if (!mp->m_reclaim_workqueue) |
| 596 | goto out_destroy_unwritten; |
| 597 | |
| 598 | mp->m_blockgc_wq = alloc_workqueue("xfs-blockgc/%s", |
| 599 | XFS_WQFLAGS(WQ_UNBOUND | WQ_FREEZABLE | WQ_MEM_RECLAIM), |
| 600 | 0, mp->m_super->s_id); |
| 601 | if (!mp->m_blockgc_wq) |
| 602 | goto out_destroy_reclaim; |
| 603 | |
| 604 | mp->m_inodegc_wq = alloc_workqueue("xfs-inodegc/%s", |
| 605 | XFS_WQFLAGS(WQ_FREEZABLE | WQ_MEM_RECLAIM), |
| 606 | 1, mp->m_super->s_id); |
| 607 | if (!mp->m_inodegc_wq) |
| 608 | goto out_destroy_blockgc; |
| 609 | |
| 610 | mp->m_sync_workqueue = alloc_workqueue("xfs-sync/%s", |
| 611 | XFS_WQFLAGS(WQ_FREEZABLE), 0, mp->m_super->s_id); |
| 612 | if (!mp->m_sync_workqueue) |
| 613 | goto out_destroy_inodegc; |
| 614 | |
| 615 | return 0; |
| 616 | |
| 617 | out_destroy_inodegc: |
| 618 | destroy_workqueue(mp->m_inodegc_wq); |
| 619 | out_destroy_blockgc: |
| 620 | destroy_workqueue(mp->m_blockgc_wq); |
| 621 | out_destroy_reclaim: |
| 622 | destroy_workqueue(mp->m_reclaim_workqueue); |
| 623 | out_destroy_unwritten: |
| 624 | destroy_workqueue(mp->m_unwritten_workqueue); |
| 625 | out_destroy_buf: |
| 626 | destroy_workqueue(mp->m_buf_workqueue); |
| 627 | out: |
| 628 | return -ENOMEM; |
| 629 | } |
| 630 | |
| 631 | STATIC void |
| 632 | xfs_destroy_mount_workqueues( |
| 633 | struct xfs_mount *mp) |
| 634 | { |
| 635 | destroy_workqueue(mp->m_sync_workqueue); |
| 636 | destroy_workqueue(mp->m_blockgc_wq); |
| 637 | destroy_workqueue(mp->m_inodegc_wq); |
| 638 | destroy_workqueue(mp->m_reclaim_workqueue); |
| 639 | destroy_workqueue(mp->m_unwritten_workqueue); |
| 640 | destroy_workqueue(mp->m_buf_workqueue); |
| 641 | } |
| 642 | |
| 643 | static void |
| 644 | xfs_flush_inodes_worker( |
| 645 | struct work_struct *work) |
| 646 | { |
| 647 | struct xfs_mount *mp = container_of(work, struct xfs_mount, |
| 648 | m_flush_inodes_work); |
| 649 | struct super_block *sb = mp->m_super; |
| 650 | |
| 651 | if (down_read_trylock(&sb->s_umount)) { |
| 652 | sync_inodes_sb(sb); |
| 653 | up_read(&sb->s_umount); |
| 654 | } |
| 655 | } |
| 656 | |
| 657 | /* |
| 658 | * Flush all dirty data to disk. Must not be called while holding an XFS_ILOCK |
| 659 | * or a page lock. We use sync_inodes_sb() here to ensure we block while waiting |
| 660 | * for IO to complete so that we effectively throttle multiple callers to the |
| 661 | * rate at which IO is completing. |
| 662 | */ |
| 663 | void |
| 664 | xfs_flush_inodes( |
| 665 | struct xfs_mount *mp) |
| 666 | { |
| 667 | /* |
| 668 | * If flush_work() returns true then that means we waited for a flush |
| 669 | * which was already in progress. Don't bother running another scan. |
| 670 | */ |
| 671 | if (flush_work(&mp->m_flush_inodes_work)) |
| 672 | return; |
| 673 | |
| 674 | queue_work(mp->m_sync_workqueue, &mp->m_flush_inodes_work); |
| 675 | flush_work(&mp->m_flush_inodes_work); |
| 676 | } |
| 677 | |
| 678 | /* Catch misguided souls that try to use this interface on XFS */ |
| 679 | STATIC struct inode * |
| 680 | xfs_fs_alloc_inode( |
| 681 | struct super_block *sb) |
| 682 | { |
| 683 | BUG(); |
| 684 | return NULL; |
| 685 | } |
| 686 | |
| 687 | /* |
| 688 | * Now that the generic code is guaranteed not to be accessing |
| 689 | * the linux inode, we can inactivate and reclaim the inode. |
| 690 | */ |
| 691 | STATIC void |
| 692 | xfs_fs_destroy_inode( |
| 693 | struct inode *inode) |
| 694 | { |
| 695 | struct xfs_inode *ip = XFS_I(inode); |
| 696 | |
| 697 | trace_xfs_destroy_inode(ip); |
| 698 | |
| 699 | ASSERT(!rwsem_is_locked(&inode->i_rwsem)); |
| 700 | XFS_STATS_INC(ip->i_mount, vn_rele); |
| 701 | XFS_STATS_INC(ip->i_mount, vn_remove); |
| 702 | xfs_inode_mark_reclaimable(ip); |
| 703 | } |
| 704 | |
| 705 | static void |
| 706 | xfs_fs_dirty_inode( |
| 707 | struct inode *inode, |
| 708 | int flags) |
| 709 | { |
| 710 | struct xfs_inode *ip = XFS_I(inode); |
| 711 | struct xfs_mount *mp = ip->i_mount; |
| 712 | struct xfs_trans *tp; |
| 713 | |
| 714 | if (!(inode->i_sb->s_flags & SB_LAZYTIME)) |
| 715 | return; |
| 716 | |
| 717 | /* |
| 718 | * Only do the timestamp update if the inode is dirty (I_DIRTY_SYNC) |
| 719 | * and has dirty timestamp (I_DIRTY_TIME). I_DIRTY_TIME can be passed |
| 720 | * in flags possibly together with I_DIRTY_SYNC. |
| 721 | */ |
| 722 | if ((flags & ~I_DIRTY_TIME) != I_DIRTY_SYNC || !(flags & I_DIRTY_TIME)) |
| 723 | return; |
| 724 | |
| 725 | if (xfs_trans_alloc(mp, &M_RES(mp)->tr_fsyncts, 0, 0, 0, &tp)) |
| 726 | return; |
| 727 | xfs_ilock(ip, XFS_ILOCK_EXCL); |
| 728 | xfs_trans_ijoin(tp, ip, XFS_ILOCK_EXCL); |
| 729 | xfs_trans_log_inode(tp, ip, XFS_ILOG_TIMESTAMP); |
| 730 | xfs_trans_commit(tp); |
| 731 | } |
| 732 | |
| 733 | /* |
| 734 | * Slab object creation initialisation for the XFS inode. |
| 735 | * This covers only the idempotent fields in the XFS inode; |
| 736 | * all other fields need to be initialised on allocation |
| 737 | * from the slab. This avoids the need to repeatedly initialise |
| 738 | * fields in the xfs inode that left in the initialise state |
| 739 | * when freeing the inode. |
| 740 | */ |
| 741 | STATIC void |
| 742 | xfs_fs_inode_init_once( |
| 743 | void *inode) |
| 744 | { |
| 745 | struct xfs_inode *ip = inode; |
| 746 | |
| 747 | memset(ip, 0, sizeof(struct xfs_inode)); |
| 748 | |
| 749 | /* vfs inode */ |
| 750 | inode_init_once(VFS_I(ip)); |
| 751 | |
| 752 | /* xfs inode */ |
| 753 | atomic_set(&ip->i_pincount, 0); |
| 754 | spin_lock_init(&ip->i_flags_lock); |
| 755 | init_rwsem(&ip->i_lock); |
| 756 | } |
| 757 | |
| 758 | /* |
| 759 | * We do an unlocked check for XFS_IDONTCACHE here because we are already |
| 760 | * serialised against cache hits here via the inode->i_lock and igrab() in |
| 761 | * xfs_iget_cache_hit(). Hence a lookup that might clear this flag will not be |
| 762 | * racing with us, and it avoids needing to grab a spinlock here for every inode |
| 763 | * we drop the final reference on. |
| 764 | */ |
| 765 | STATIC int |
| 766 | xfs_fs_drop_inode( |
| 767 | struct inode *inode) |
| 768 | { |
| 769 | struct xfs_inode *ip = XFS_I(inode); |
| 770 | |
| 771 | /* |
| 772 | * If this unlinked inode is in the middle of recovery, don't |
| 773 | * drop the inode just yet; log recovery will take care of |
| 774 | * that. See the comment for this inode flag. |
| 775 | */ |
| 776 | if (ip->i_flags & XFS_IRECOVERY) { |
| 777 | ASSERT(xlog_recovery_needed(ip->i_mount->m_log)); |
| 778 | return 0; |
| 779 | } |
| 780 | |
| 781 | return generic_drop_inode(inode); |
| 782 | } |
| 783 | |
| 784 | STATIC void |
| 785 | xfs_fs_evict_inode( |
| 786 | struct inode *inode) |
| 787 | { |
| 788 | if (IS_DAX(inode)) |
| 789 | dax_break_layout_final(inode); |
| 790 | |
| 791 | truncate_inode_pages_final(&inode->i_data); |
| 792 | clear_inode(inode); |
| 793 | } |
| 794 | |
| 795 | static void |
| 796 | xfs_mount_free( |
| 797 | struct xfs_mount *mp) |
| 798 | { |
| 799 | if (mp->m_logdev_targp && mp->m_logdev_targp != mp->m_ddev_targp) |
| 800 | xfs_free_buftarg(mp->m_logdev_targp); |
| 801 | if (mp->m_rtdev_targp && mp->m_rtdev_targp != mp->m_ddev_targp) |
| 802 | xfs_free_buftarg(mp->m_rtdev_targp); |
| 803 | if (mp->m_ddev_targp) |
| 804 | xfs_free_buftarg(mp->m_ddev_targp); |
| 805 | |
| 806 | debugfs_remove(mp->m_debugfs); |
| 807 | kfree(mp->m_rtname); |
| 808 | kfree(mp->m_logname); |
| 809 | kfree(mp); |
| 810 | } |
| 811 | |
| 812 | STATIC int |
| 813 | xfs_fs_sync_fs( |
| 814 | struct super_block *sb, |
| 815 | int wait) |
| 816 | { |
| 817 | struct xfs_mount *mp = XFS_M(sb); |
| 818 | int error; |
| 819 | |
| 820 | trace_xfs_fs_sync_fs(mp, __return_address); |
| 821 | |
| 822 | /* |
| 823 | * Doing anything during the async pass would be counterproductive. |
| 824 | */ |
| 825 | if (!wait) |
| 826 | return 0; |
| 827 | |
| 828 | error = xfs_log_force(mp, XFS_LOG_SYNC); |
| 829 | if (error) |
| 830 | return error; |
| 831 | |
| 832 | if (laptop_mode) { |
| 833 | /* |
| 834 | * The disk must be active because we're syncing. |
| 835 | * We schedule log work now (now that the disk is |
| 836 | * active) instead of later (when it might not be). |
| 837 | */ |
| 838 | flush_delayed_work(&mp->m_log->l_work); |
| 839 | } |
| 840 | |
| 841 | /* |
| 842 | * If we are called with page faults frozen out, it means we are about |
| 843 | * to freeze the transaction subsystem. Take the opportunity to shut |
| 844 | * down inodegc because once SB_FREEZE_FS is set it's too late to |
| 845 | * prevent inactivation races with freeze. The fs doesn't get called |
| 846 | * again by the freezing process until after SB_FREEZE_FS has been set, |
| 847 | * so it's now or never. Same logic applies to speculative allocation |
| 848 | * garbage collection. |
| 849 | * |
| 850 | * We don't care if this is a normal syncfs call that does this or |
| 851 | * freeze that does this - we can run this multiple times without issue |
| 852 | * and we won't race with a restart because a restart can only occur |
| 853 | * when the state is either SB_FREEZE_FS or SB_FREEZE_COMPLETE. |
| 854 | */ |
| 855 | if (sb->s_writers.frozen == SB_FREEZE_PAGEFAULT) { |
| 856 | xfs_inodegc_stop(mp); |
| 857 | xfs_blockgc_stop(mp); |
| 858 | xfs_zone_gc_stop(mp); |
| 859 | } |
| 860 | |
| 861 | return 0; |
| 862 | } |
| 863 | |
| 864 | static xfs_extlen_t |
| 865 | xfs_internal_log_size( |
| 866 | struct xfs_mount *mp) |
| 867 | { |
| 868 | if (!mp->m_sb.sb_logstart) |
| 869 | return 0; |
| 870 | return mp->m_sb.sb_logblocks; |
| 871 | } |
| 872 | |
| 873 | static void |
| 874 | xfs_statfs_data( |
| 875 | struct xfs_mount *mp, |
| 876 | struct kstatfs *st) |
| 877 | { |
| 878 | int64_t fdblocks = |
| 879 | xfs_sum_freecounter(mp, XC_FREE_BLOCKS); |
| 880 | |
| 881 | /* make sure st->f_bfree does not underflow */ |
| 882 | st->f_bfree = max(0LL, |
| 883 | fdblocks - xfs_freecounter_unavailable(mp, XC_FREE_BLOCKS)); |
| 884 | |
| 885 | /* |
| 886 | * sb_dblocks can change during growfs, but nothing cares about reporting |
| 887 | * the old or new value during growfs. |
| 888 | */ |
| 889 | st->f_blocks = mp->m_sb.sb_dblocks - xfs_internal_log_size(mp); |
| 890 | } |
| 891 | |
| 892 | /* |
| 893 | * When stat(v)fs is called on a file with the realtime bit set or a directory |
| 894 | * with the rtinherit bit, report freespace information for the RT device |
| 895 | * instead of the main data device. |
| 896 | */ |
| 897 | static void |
| 898 | xfs_statfs_rt( |
| 899 | struct xfs_mount *mp, |
| 900 | struct kstatfs *st) |
| 901 | { |
| 902 | st->f_bfree = xfs_rtbxlen_to_blen(mp, |
| 903 | xfs_sum_freecounter(mp, XC_FREE_RTEXTENTS)); |
| 904 | st->f_blocks = mp->m_sb.sb_rblocks - xfs_rtbxlen_to_blen(mp, |
| 905 | mp->m_free[XC_FREE_RTEXTENTS].res_total); |
| 906 | } |
| 907 | |
| 908 | static void |
| 909 | xfs_statfs_inodes( |
| 910 | struct xfs_mount *mp, |
| 911 | struct kstatfs *st) |
| 912 | { |
| 913 | uint64_t icount = percpu_counter_sum(&mp->m_icount); |
| 914 | uint64_t ifree = percpu_counter_sum(&mp->m_ifree); |
| 915 | uint64_t fakeinos = XFS_FSB_TO_INO(mp, st->f_bfree); |
| 916 | |
| 917 | st->f_files = min(icount + fakeinos, (uint64_t)XFS_MAXINUMBER); |
| 918 | if (M_IGEO(mp)->maxicount) |
| 919 | st->f_files = min_t(typeof(st->f_files), st->f_files, |
| 920 | M_IGEO(mp)->maxicount); |
| 921 | |
| 922 | /* If sb_icount overshot maxicount, report actual allocation */ |
| 923 | st->f_files = max_t(typeof(st->f_files), st->f_files, |
| 924 | mp->m_sb.sb_icount); |
| 925 | |
| 926 | /* Make sure st->f_ffree does not underflow */ |
| 927 | st->f_ffree = max_t(int64_t, 0, st->f_files - (icount - ifree)); |
| 928 | } |
| 929 | |
| 930 | STATIC int |
| 931 | xfs_fs_statfs( |
| 932 | struct dentry *dentry, |
| 933 | struct kstatfs *st) |
| 934 | { |
| 935 | struct xfs_mount *mp = XFS_M(dentry->d_sb); |
| 936 | struct xfs_inode *ip = XFS_I(d_inode(dentry)); |
| 937 | |
| 938 | /* |
| 939 | * Expedite background inodegc but don't wait. We do not want to block |
| 940 | * here waiting hours for a billion extent file to be truncated. |
| 941 | */ |
| 942 | xfs_inodegc_push(mp); |
| 943 | |
| 944 | st->f_type = XFS_SUPER_MAGIC; |
| 945 | st->f_namelen = MAXNAMELEN - 1; |
| 946 | st->f_bsize = mp->m_sb.sb_blocksize; |
| 947 | st->f_fsid = u64_to_fsid(huge_encode_dev(mp->m_ddev_targp->bt_dev)); |
| 948 | |
| 949 | xfs_statfs_data(mp, st); |
| 950 | xfs_statfs_inodes(mp, st); |
| 951 | |
| 952 | if (XFS_IS_REALTIME_MOUNT(mp) && |
| 953 | (ip->i_diflags & (XFS_DIFLAG_RTINHERIT | XFS_DIFLAG_REALTIME))) |
| 954 | xfs_statfs_rt(mp, st); |
| 955 | |
| 956 | if ((ip->i_diflags & XFS_DIFLAG_PROJINHERIT) && |
| 957 | ((mp->m_qflags & (XFS_PQUOTA_ACCT|XFS_PQUOTA_ENFD))) == |
| 958 | (XFS_PQUOTA_ACCT|XFS_PQUOTA_ENFD)) |
| 959 | xfs_qm_statvfs(ip, st); |
| 960 | |
| 961 | /* |
| 962 | * XFS does not distinguish between blocks available to privileged and |
| 963 | * unprivileged users. |
| 964 | */ |
| 965 | st->f_bavail = st->f_bfree; |
| 966 | return 0; |
| 967 | } |
| 968 | |
| 969 | STATIC void |
| 970 | xfs_save_resvblks( |
| 971 | struct xfs_mount *mp) |
| 972 | { |
| 973 | enum xfs_free_counter i; |
| 974 | |
| 975 | for (i = 0; i < XC_FREE_NR; i++) { |
| 976 | mp->m_free[i].res_saved = mp->m_free[i].res_total; |
| 977 | xfs_reserve_blocks(mp, i, 0); |
| 978 | } |
| 979 | } |
| 980 | |
| 981 | STATIC void |
| 982 | xfs_restore_resvblks( |
| 983 | struct xfs_mount *mp) |
| 984 | { |
| 985 | uint64_t resblks; |
| 986 | enum xfs_free_counter i; |
| 987 | |
| 988 | for (i = 0; i < XC_FREE_NR; i++) { |
| 989 | if (mp->m_free[i].res_saved) { |
| 990 | resblks = mp->m_free[i].res_saved; |
| 991 | mp->m_free[i].res_saved = 0; |
| 992 | } else |
| 993 | resblks = xfs_default_resblks(mp, i); |
| 994 | xfs_reserve_blocks(mp, i, resblks); |
| 995 | } |
| 996 | } |
| 997 | |
| 998 | /* |
| 999 | * Second stage of a freeze. The data is already frozen so we only |
| 1000 | * need to take care of the metadata. Once that's done sync the superblock |
| 1001 | * to the log to dirty it in case of a crash while frozen. This ensures that we |
| 1002 | * will recover the unlinked inode lists on the next mount. |
| 1003 | */ |
| 1004 | STATIC int |
| 1005 | xfs_fs_freeze( |
| 1006 | struct super_block *sb) |
| 1007 | { |
| 1008 | struct xfs_mount *mp = XFS_M(sb); |
| 1009 | unsigned int flags; |
| 1010 | int ret; |
| 1011 | |
| 1012 | /* |
| 1013 | * The filesystem is now frozen far enough that memory reclaim |
| 1014 | * cannot safely operate on the filesystem. Hence we need to |
| 1015 | * set a GFP_NOFS context here to avoid recursion deadlocks. |
| 1016 | */ |
| 1017 | flags = memalloc_nofs_save(); |
| 1018 | xfs_save_resvblks(mp); |
| 1019 | ret = xfs_log_quiesce(mp); |
| 1020 | memalloc_nofs_restore(flags); |
| 1021 | |
| 1022 | /* |
| 1023 | * For read-write filesystems, we need to restart the inodegc on error |
| 1024 | * because we stopped it at SB_FREEZE_PAGEFAULT level and a thaw is not |
| 1025 | * going to be run to restart it now. We are at SB_FREEZE_FS level |
| 1026 | * here, so we can restart safely without racing with a stop in |
| 1027 | * xfs_fs_sync_fs(). |
| 1028 | */ |
| 1029 | if (ret && !xfs_is_readonly(mp)) { |
| 1030 | xfs_blockgc_start(mp); |
| 1031 | xfs_inodegc_start(mp); |
| 1032 | xfs_zone_gc_start(mp); |
| 1033 | } |
| 1034 | |
| 1035 | return ret; |
| 1036 | } |
| 1037 | |
| 1038 | STATIC int |
| 1039 | xfs_fs_unfreeze( |
| 1040 | struct super_block *sb) |
| 1041 | { |
| 1042 | struct xfs_mount *mp = XFS_M(sb); |
| 1043 | |
| 1044 | xfs_restore_resvblks(mp); |
| 1045 | xfs_log_work_queue(mp); |
| 1046 | |
| 1047 | /* |
| 1048 | * Don't reactivate the inodegc worker on a readonly filesystem because |
| 1049 | * inodes are sent directly to reclaim. Don't reactivate the blockgc |
| 1050 | * worker because there are no speculative preallocations on a readonly |
| 1051 | * filesystem. |
| 1052 | */ |
| 1053 | if (!xfs_is_readonly(mp)) { |
| 1054 | xfs_zone_gc_start(mp); |
| 1055 | xfs_blockgc_start(mp); |
| 1056 | xfs_inodegc_start(mp); |
| 1057 | } |
| 1058 | |
| 1059 | return 0; |
| 1060 | } |
| 1061 | |
| 1062 | /* |
| 1063 | * This function fills in xfs_mount_t fields based on mount args. |
| 1064 | * Note: the superblock _has_ now been read in. |
| 1065 | */ |
| 1066 | STATIC int |
| 1067 | xfs_finish_flags( |
| 1068 | struct xfs_mount *mp) |
| 1069 | { |
| 1070 | /* Fail a mount where the logbuf is smaller than the log stripe */ |
| 1071 | if (xfs_has_logv2(mp)) { |
| 1072 | if (mp->m_logbsize <= 0 && |
| 1073 | mp->m_sb.sb_logsunit > XLOG_BIG_RECORD_BSIZE) { |
| 1074 | mp->m_logbsize = mp->m_sb.sb_logsunit; |
| 1075 | } else if (mp->m_logbsize > 0 && |
| 1076 | mp->m_logbsize < mp->m_sb.sb_logsunit) { |
| 1077 | xfs_warn(mp, |
| 1078 | "logbuf size must be greater than or equal to log stripe size"); |
| 1079 | return -EINVAL; |
| 1080 | } |
| 1081 | } else { |
| 1082 | /* Fail a mount if the logbuf is larger than 32K */ |
| 1083 | if (mp->m_logbsize > XLOG_BIG_RECORD_BSIZE) { |
| 1084 | xfs_warn(mp, |
| 1085 | "logbuf size for version 1 logs must be 16K or 32K"); |
| 1086 | return -EINVAL; |
| 1087 | } |
| 1088 | } |
| 1089 | |
| 1090 | /* |
| 1091 | * V5 filesystems always use attr2 format for attributes. |
| 1092 | */ |
| 1093 | if (xfs_has_crc(mp) && xfs_has_noattr2(mp)) { |
| 1094 | xfs_warn(mp, "Cannot mount a V5 filesystem as noattr2. " |
| 1095 | "attr2 is always enabled for V5 filesystems."); |
| 1096 | return -EINVAL; |
| 1097 | } |
| 1098 | |
| 1099 | /* |
| 1100 | * prohibit r/w mounts of read-only filesystems |
| 1101 | */ |
| 1102 | if ((mp->m_sb.sb_flags & XFS_SBF_READONLY) && !xfs_is_readonly(mp)) { |
| 1103 | xfs_warn(mp, |
| 1104 | "cannot mount a read-only filesystem as read-write"); |
| 1105 | return -EROFS; |
| 1106 | } |
| 1107 | |
| 1108 | if ((mp->m_qflags & XFS_GQUOTA_ACCT) && |
| 1109 | (mp->m_qflags & XFS_PQUOTA_ACCT) && |
| 1110 | !xfs_has_pquotino(mp)) { |
| 1111 | xfs_warn(mp, |
| 1112 | "Super block does not support project and group quota together"); |
| 1113 | return -EINVAL; |
| 1114 | } |
| 1115 | |
| 1116 | if (!xfs_has_zoned(mp)) { |
| 1117 | if (mp->m_max_open_zones) { |
| 1118 | xfs_warn(mp, |
| 1119 | "max_open_zones mount option only supported on zoned file systems."); |
| 1120 | return -EINVAL; |
| 1121 | } |
| 1122 | if (mp->m_features & XFS_FEAT_NOLIFETIME) { |
| 1123 | xfs_warn(mp, |
| 1124 | "nolifetime mount option only supported on zoned file systems."); |
| 1125 | return -EINVAL; |
| 1126 | } |
| 1127 | } |
| 1128 | |
| 1129 | return 0; |
| 1130 | } |
| 1131 | |
| 1132 | static int |
| 1133 | xfs_init_percpu_counters( |
| 1134 | struct xfs_mount *mp) |
| 1135 | { |
| 1136 | int error; |
| 1137 | int i; |
| 1138 | |
| 1139 | error = percpu_counter_init(&mp->m_icount, 0, GFP_KERNEL); |
| 1140 | if (error) |
| 1141 | return -ENOMEM; |
| 1142 | |
| 1143 | error = percpu_counter_init(&mp->m_ifree, 0, GFP_KERNEL); |
| 1144 | if (error) |
| 1145 | goto free_icount; |
| 1146 | |
| 1147 | error = percpu_counter_init(&mp->m_delalloc_blks, 0, GFP_KERNEL); |
| 1148 | if (error) |
| 1149 | goto free_ifree; |
| 1150 | |
| 1151 | error = percpu_counter_init(&mp->m_delalloc_rtextents, 0, GFP_KERNEL); |
| 1152 | if (error) |
| 1153 | goto free_delalloc; |
| 1154 | |
| 1155 | for (i = 0; i < XC_FREE_NR; i++) { |
| 1156 | error = percpu_counter_init(&mp->m_free[i].count, 0, |
| 1157 | GFP_KERNEL); |
| 1158 | if (error) |
| 1159 | goto free_freecounters; |
| 1160 | } |
| 1161 | |
| 1162 | return 0; |
| 1163 | |
| 1164 | free_freecounters: |
| 1165 | while (--i >= 0) |
| 1166 | percpu_counter_destroy(&mp->m_free[i].count); |
| 1167 | percpu_counter_destroy(&mp->m_delalloc_rtextents); |
| 1168 | free_delalloc: |
| 1169 | percpu_counter_destroy(&mp->m_delalloc_blks); |
| 1170 | free_ifree: |
| 1171 | percpu_counter_destroy(&mp->m_ifree); |
| 1172 | free_icount: |
| 1173 | percpu_counter_destroy(&mp->m_icount); |
| 1174 | return -ENOMEM; |
| 1175 | } |
| 1176 | |
| 1177 | void |
| 1178 | xfs_reinit_percpu_counters( |
| 1179 | struct xfs_mount *mp) |
| 1180 | { |
| 1181 | percpu_counter_set(&mp->m_icount, mp->m_sb.sb_icount); |
| 1182 | percpu_counter_set(&mp->m_ifree, mp->m_sb.sb_ifree); |
| 1183 | xfs_set_freecounter(mp, XC_FREE_BLOCKS, mp->m_sb.sb_fdblocks); |
| 1184 | if (!xfs_has_zoned(mp)) |
| 1185 | xfs_set_freecounter(mp, XC_FREE_RTEXTENTS, |
| 1186 | mp->m_sb.sb_frextents); |
| 1187 | } |
| 1188 | |
| 1189 | static void |
| 1190 | xfs_destroy_percpu_counters( |
| 1191 | struct xfs_mount *mp) |
| 1192 | { |
| 1193 | enum xfs_free_counter i; |
| 1194 | |
| 1195 | for (i = 0; i < XC_FREE_NR; i++) |
| 1196 | percpu_counter_destroy(&mp->m_free[i].count); |
| 1197 | percpu_counter_destroy(&mp->m_icount); |
| 1198 | percpu_counter_destroy(&mp->m_ifree); |
| 1199 | ASSERT(xfs_is_shutdown(mp) || |
| 1200 | percpu_counter_sum(&mp->m_delalloc_rtextents) == 0); |
| 1201 | percpu_counter_destroy(&mp->m_delalloc_rtextents); |
| 1202 | ASSERT(xfs_is_shutdown(mp) || |
| 1203 | percpu_counter_sum(&mp->m_delalloc_blks) == 0); |
| 1204 | percpu_counter_destroy(&mp->m_delalloc_blks); |
| 1205 | } |
| 1206 | |
| 1207 | static int |
| 1208 | xfs_inodegc_init_percpu( |
| 1209 | struct xfs_mount *mp) |
| 1210 | { |
| 1211 | struct xfs_inodegc *gc; |
| 1212 | int cpu; |
| 1213 | |
| 1214 | mp->m_inodegc = alloc_percpu(struct xfs_inodegc); |
| 1215 | if (!mp->m_inodegc) |
| 1216 | return -ENOMEM; |
| 1217 | |
| 1218 | for_each_possible_cpu(cpu) { |
| 1219 | gc = per_cpu_ptr(mp->m_inodegc, cpu); |
| 1220 | gc->cpu = cpu; |
| 1221 | gc->mp = mp; |
| 1222 | init_llist_head(&gc->list); |
| 1223 | gc->items = 0; |
| 1224 | gc->error = 0; |
| 1225 | INIT_DELAYED_WORK(&gc->work, xfs_inodegc_worker); |
| 1226 | } |
| 1227 | return 0; |
| 1228 | } |
| 1229 | |
| 1230 | static void |
| 1231 | xfs_inodegc_free_percpu( |
| 1232 | struct xfs_mount *mp) |
| 1233 | { |
| 1234 | if (!mp->m_inodegc) |
| 1235 | return; |
| 1236 | free_percpu(mp->m_inodegc); |
| 1237 | } |
| 1238 | |
| 1239 | static void |
| 1240 | xfs_fs_put_super( |
| 1241 | struct super_block *sb) |
| 1242 | { |
| 1243 | struct xfs_mount *mp = XFS_M(sb); |
| 1244 | |
| 1245 | xfs_notice(mp, "Unmounting Filesystem %pU", &mp->m_sb.sb_uuid); |
| 1246 | xfs_filestream_unmount(mp); |
| 1247 | xfs_unmountfs(mp); |
| 1248 | |
| 1249 | xfs_rtmount_freesb(mp); |
| 1250 | xfs_freesb(mp); |
| 1251 | xchk_mount_stats_free(mp); |
| 1252 | free_percpu(mp->m_stats.xs_stats); |
| 1253 | xfs_inodegc_free_percpu(mp); |
| 1254 | xfs_destroy_percpu_counters(mp); |
| 1255 | xfs_destroy_mount_workqueues(mp); |
| 1256 | xfs_shutdown_devices(mp); |
| 1257 | } |
| 1258 | |
| 1259 | static long |
| 1260 | xfs_fs_nr_cached_objects( |
| 1261 | struct super_block *sb, |
| 1262 | struct shrink_control *sc) |
| 1263 | { |
| 1264 | /* Paranoia: catch incorrect calls during mount setup or teardown */ |
| 1265 | if (WARN_ON_ONCE(!sb->s_fs_info)) |
| 1266 | return 0; |
| 1267 | return xfs_reclaim_inodes_count(XFS_M(sb)); |
| 1268 | } |
| 1269 | |
| 1270 | static long |
| 1271 | xfs_fs_free_cached_objects( |
| 1272 | struct super_block *sb, |
| 1273 | struct shrink_control *sc) |
| 1274 | { |
| 1275 | return xfs_reclaim_inodes_nr(XFS_M(sb), sc->nr_to_scan); |
| 1276 | } |
| 1277 | |
| 1278 | static void |
| 1279 | xfs_fs_shutdown( |
| 1280 | struct super_block *sb) |
| 1281 | { |
| 1282 | xfs_force_shutdown(XFS_M(sb), SHUTDOWN_DEVICE_REMOVED); |
| 1283 | } |
| 1284 | |
| 1285 | static int |
| 1286 | xfs_fs_show_stats( |
| 1287 | struct seq_file *m, |
| 1288 | struct dentry *root) |
| 1289 | { |
| 1290 | struct xfs_mount *mp = XFS_M(root->d_sb); |
| 1291 | |
| 1292 | if (xfs_has_zoned(mp) && IS_ENABLED(CONFIG_XFS_RT)) |
| 1293 | xfs_zoned_show_stats(m, mp); |
| 1294 | return 0; |
| 1295 | } |
| 1296 | |
| 1297 | static const struct super_operations xfs_super_operations = { |
| 1298 | .alloc_inode = xfs_fs_alloc_inode, |
| 1299 | .destroy_inode = xfs_fs_destroy_inode, |
| 1300 | .dirty_inode = xfs_fs_dirty_inode, |
| 1301 | .drop_inode = xfs_fs_drop_inode, |
| 1302 | .evict_inode = xfs_fs_evict_inode, |
| 1303 | .put_super = xfs_fs_put_super, |
| 1304 | .sync_fs = xfs_fs_sync_fs, |
| 1305 | .freeze_fs = xfs_fs_freeze, |
| 1306 | .unfreeze_fs = xfs_fs_unfreeze, |
| 1307 | .statfs = xfs_fs_statfs, |
| 1308 | .show_options = xfs_fs_show_options, |
| 1309 | .nr_cached_objects = xfs_fs_nr_cached_objects, |
| 1310 | .free_cached_objects = xfs_fs_free_cached_objects, |
| 1311 | .shutdown = xfs_fs_shutdown, |
| 1312 | .show_stats = xfs_fs_show_stats, |
| 1313 | }; |
| 1314 | |
| 1315 | static int |
| 1316 | suffix_kstrtoint( |
| 1317 | const char *s, |
| 1318 | unsigned int base, |
| 1319 | int *res) |
| 1320 | { |
| 1321 | int last, shift_left_factor = 0, _res; |
| 1322 | char *value; |
| 1323 | int ret = 0; |
| 1324 | |
| 1325 | value = kstrdup(s, GFP_KERNEL); |
| 1326 | if (!value) |
| 1327 | return -ENOMEM; |
| 1328 | |
| 1329 | last = strlen(value) - 1; |
| 1330 | if (value[last] == 'K' || value[last] == 'k') { |
| 1331 | shift_left_factor = 10; |
| 1332 | value[last] = '\0'; |
| 1333 | } |
| 1334 | if (value[last] == 'M' || value[last] == 'm') { |
| 1335 | shift_left_factor = 20; |
| 1336 | value[last] = '\0'; |
| 1337 | } |
| 1338 | if (value[last] == 'G' || value[last] == 'g') { |
| 1339 | shift_left_factor = 30; |
| 1340 | value[last] = '\0'; |
| 1341 | } |
| 1342 | |
| 1343 | if (kstrtoint(value, base, &_res)) |
| 1344 | ret = -EINVAL; |
| 1345 | kfree(value); |
| 1346 | *res = _res << shift_left_factor; |
| 1347 | return ret; |
| 1348 | } |
| 1349 | |
| 1350 | static int |
| 1351 | suffix_kstrtoull( |
| 1352 | const char *s, |
| 1353 | unsigned int base, |
| 1354 | unsigned long long *res) |
| 1355 | { |
| 1356 | int last, shift_left_factor = 0; |
| 1357 | unsigned long long _res; |
| 1358 | char *value; |
| 1359 | int ret = 0; |
| 1360 | |
| 1361 | value = kstrdup(s, GFP_KERNEL); |
| 1362 | if (!value) |
| 1363 | return -ENOMEM; |
| 1364 | |
| 1365 | last = strlen(value) - 1; |
| 1366 | if (value[last] == 'K' || value[last] == 'k') { |
| 1367 | shift_left_factor = 10; |
| 1368 | value[last] = '\0'; |
| 1369 | } |
| 1370 | if (value[last] == 'M' || value[last] == 'm') { |
| 1371 | shift_left_factor = 20; |
| 1372 | value[last] = '\0'; |
| 1373 | } |
| 1374 | if (value[last] == 'G' || value[last] == 'g') { |
| 1375 | shift_left_factor = 30; |
| 1376 | value[last] = '\0'; |
| 1377 | } |
| 1378 | |
| 1379 | if (kstrtoull(value, base, &_res)) |
| 1380 | ret = -EINVAL; |
| 1381 | kfree(value); |
| 1382 | *res = _res << shift_left_factor; |
| 1383 | return ret; |
| 1384 | } |
| 1385 | |
| 1386 | static inline void |
| 1387 | xfs_fs_warn_deprecated( |
| 1388 | struct fs_context *fc, |
| 1389 | struct fs_parameter *param, |
| 1390 | uint64_t flag, |
| 1391 | bool value) |
| 1392 | { |
| 1393 | /* Don't print the warning if reconfiguring and current mount point |
| 1394 | * already had the flag set |
| 1395 | */ |
| 1396 | if ((fc->purpose & FS_CONTEXT_FOR_RECONFIGURE) && |
| 1397 | !!(XFS_M(fc->root->d_sb)->m_features & flag) == value) |
| 1398 | return; |
| 1399 | xfs_warn(fc->s_fs_info, "%s mount option is deprecated.", param->key); |
| 1400 | } |
| 1401 | |
| 1402 | /* |
| 1403 | * Set mount state from a mount option. |
| 1404 | * |
| 1405 | * NOTE: mp->m_super is NULL here! |
| 1406 | */ |
| 1407 | static int |
| 1408 | xfs_fs_parse_param( |
| 1409 | struct fs_context *fc, |
| 1410 | struct fs_parameter *param) |
| 1411 | { |
| 1412 | struct xfs_mount *parsing_mp = fc->s_fs_info; |
| 1413 | struct fs_parse_result result; |
| 1414 | int size = 0; |
| 1415 | int opt; |
| 1416 | |
| 1417 | BUILD_BUG_ON(XFS_QFLAGS_MNTOPTS & XFS_MOUNT_QUOTA_ALL); |
| 1418 | |
| 1419 | opt = fs_parse(fc, xfs_fs_parameters, param, &result); |
| 1420 | if (opt < 0) |
| 1421 | return opt; |
| 1422 | |
| 1423 | switch (opt) { |
| 1424 | case Opt_logbufs: |
| 1425 | parsing_mp->m_logbufs = result.uint_32; |
| 1426 | return 0; |
| 1427 | case Opt_logbsize: |
| 1428 | if (suffix_kstrtoint(param->string, 10, &parsing_mp->m_logbsize)) |
| 1429 | return -EINVAL; |
| 1430 | return 0; |
| 1431 | case Opt_logdev: |
| 1432 | kfree(parsing_mp->m_logname); |
| 1433 | parsing_mp->m_logname = kstrdup(param->string, GFP_KERNEL); |
| 1434 | if (!parsing_mp->m_logname) |
| 1435 | return -ENOMEM; |
| 1436 | return 0; |
| 1437 | case Opt_rtdev: |
| 1438 | kfree(parsing_mp->m_rtname); |
| 1439 | parsing_mp->m_rtname = kstrdup(param->string, GFP_KERNEL); |
| 1440 | if (!parsing_mp->m_rtname) |
| 1441 | return -ENOMEM; |
| 1442 | return 0; |
| 1443 | case Opt_allocsize: |
| 1444 | if (suffix_kstrtoint(param->string, 10, &size)) |
| 1445 | return -EINVAL; |
| 1446 | parsing_mp->m_allocsize_log = ffs(size) - 1; |
| 1447 | parsing_mp->m_features |= XFS_FEAT_ALLOCSIZE; |
| 1448 | return 0; |
| 1449 | case Opt_grpid: |
| 1450 | case Opt_bsdgroups: |
| 1451 | parsing_mp->m_features |= XFS_FEAT_GRPID; |
| 1452 | return 0; |
| 1453 | case Opt_nogrpid: |
| 1454 | case Opt_sysvgroups: |
| 1455 | parsing_mp->m_features &= ~XFS_FEAT_GRPID; |
| 1456 | return 0; |
| 1457 | case Opt_wsync: |
| 1458 | parsing_mp->m_features |= XFS_FEAT_WSYNC; |
| 1459 | return 0; |
| 1460 | case Opt_norecovery: |
| 1461 | parsing_mp->m_features |= XFS_FEAT_NORECOVERY; |
| 1462 | return 0; |
| 1463 | case Opt_noalign: |
| 1464 | parsing_mp->m_features |= XFS_FEAT_NOALIGN; |
| 1465 | return 0; |
| 1466 | case Opt_swalloc: |
| 1467 | parsing_mp->m_features |= XFS_FEAT_SWALLOC; |
| 1468 | return 0; |
| 1469 | case Opt_sunit: |
| 1470 | parsing_mp->m_dalign = result.uint_32; |
| 1471 | return 0; |
| 1472 | case Opt_swidth: |
| 1473 | parsing_mp->m_swidth = result.uint_32; |
| 1474 | return 0; |
| 1475 | case Opt_inode32: |
| 1476 | parsing_mp->m_features |= XFS_FEAT_SMALL_INUMS; |
| 1477 | return 0; |
| 1478 | case Opt_inode64: |
| 1479 | parsing_mp->m_features &= ~XFS_FEAT_SMALL_INUMS; |
| 1480 | return 0; |
| 1481 | case Opt_nouuid: |
| 1482 | parsing_mp->m_features |= XFS_FEAT_NOUUID; |
| 1483 | return 0; |
| 1484 | case Opt_largeio: |
| 1485 | parsing_mp->m_features |= XFS_FEAT_LARGE_IOSIZE; |
| 1486 | return 0; |
| 1487 | case Opt_nolargeio: |
| 1488 | parsing_mp->m_features &= ~XFS_FEAT_LARGE_IOSIZE; |
| 1489 | return 0; |
| 1490 | case Opt_filestreams: |
| 1491 | parsing_mp->m_features |= XFS_FEAT_FILESTREAMS; |
| 1492 | return 0; |
| 1493 | case Opt_noquota: |
| 1494 | parsing_mp->m_qflags &= ~XFS_ALL_QUOTA_ACCT; |
| 1495 | parsing_mp->m_qflags &= ~XFS_ALL_QUOTA_ENFD; |
| 1496 | parsing_mp->m_qflags |= XFS_QFLAGS_MNTOPTS; |
| 1497 | return 0; |
| 1498 | case Opt_quota: |
| 1499 | case Opt_uquota: |
| 1500 | case Opt_usrquota: |
| 1501 | parsing_mp->m_qflags |= (XFS_UQUOTA_ACCT | XFS_UQUOTA_ENFD); |
| 1502 | parsing_mp->m_qflags |= XFS_QFLAGS_MNTOPTS; |
| 1503 | return 0; |
| 1504 | case Opt_qnoenforce: |
| 1505 | case Opt_uqnoenforce: |
| 1506 | parsing_mp->m_qflags |= XFS_UQUOTA_ACCT; |
| 1507 | parsing_mp->m_qflags &= ~XFS_UQUOTA_ENFD; |
| 1508 | parsing_mp->m_qflags |= XFS_QFLAGS_MNTOPTS; |
| 1509 | return 0; |
| 1510 | case Opt_pquota: |
| 1511 | case Opt_prjquota: |
| 1512 | parsing_mp->m_qflags |= (XFS_PQUOTA_ACCT | XFS_PQUOTA_ENFD); |
| 1513 | parsing_mp->m_qflags |= XFS_QFLAGS_MNTOPTS; |
| 1514 | return 0; |
| 1515 | case Opt_pqnoenforce: |
| 1516 | parsing_mp->m_qflags |= XFS_PQUOTA_ACCT; |
| 1517 | parsing_mp->m_qflags &= ~XFS_PQUOTA_ENFD; |
| 1518 | parsing_mp->m_qflags |= XFS_QFLAGS_MNTOPTS; |
| 1519 | return 0; |
| 1520 | case Opt_gquota: |
| 1521 | case Opt_grpquota: |
| 1522 | parsing_mp->m_qflags |= (XFS_GQUOTA_ACCT | XFS_GQUOTA_ENFD); |
| 1523 | parsing_mp->m_qflags |= XFS_QFLAGS_MNTOPTS; |
| 1524 | return 0; |
| 1525 | case Opt_gqnoenforce: |
| 1526 | parsing_mp->m_qflags |= XFS_GQUOTA_ACCT; |
| 1527 | parsing_mp->m_qflags &= ~XFS_GQUOTA_ENFD; |
| 1528 | parsing_mp->m_qflags |= XFS_QFLAGS_MNTOPTS; |
| 1529 | return 0; |
| 1530 | case Opt_discard: |
| 1531 | parsing_mp->m_features |= XFS_FEAT_DISCARD; |
| 1532 | return 0; |
| 1533 | case Opt_nodiscard: |
| 1534 | parsing_mp->m_features &= ~XFS_FEAT_DISCARD; |
| 1535 | return 0; |
| 1536 | #ifdef CONFIG_FS_DAX |
| 1537 | case Opt_dax: |
| 1538 | xfs_mount_set_dax_mode(parsing_mp, XFS_DAX_ALWAYS); |
| 1539 | return 0; |
| 1540 | case Opt_dax_enum: |
| 1541 | xfs_mount_set_dax_mode(parsing_mp, result.uint_32); |
| 1542 | return 0; |
| 1543 | #endif |
| 1544 | /* Following mount options will be removed in September 2025 */ |
| 1545 | case Opt_ikeep: |
| 1546 | xfs_fs_warn_deprecated(fc, param, XFS_FEAT_IKEEP, true); |
| 1547 | parsing_mp->m_features |= XFS_FEAT_IKEEP; |
| 1548 | return 0; |
| 1549 | case Opt_noikeep: |
| 1550 | xfs_fs_warn_deprecated(fc, param, XFS_FEAT_IKEEP, false); |
| 1551 | parsing_mp->m_features &= ~XFS_FEAT_IKEEP; |
| 1552 | return 0; |
| 1553 | case Opt_attr2: |
| 1554 | xfs_fs_warn_deprecated(fc, param, XFS_FEAT_ATTR2, true); |
| 1555 | parsing_mp->m_features |= XFS_FEAT_ATTR2; |
| 1556 | return 0; |
| 1557 | case Opt_noattr2: |
| 1558 | xfs_fs_warn_deprecated(fc, param, XFS_FEAT_NOATTR2, true); |
| 1559 | parsing_mp->m_features |= XFS_FEAT_NOATTR2; |
| 1560 | return 0; |
| 1561 | case Opt_max_open_zones: |
| 1562 | parsing_mp->m_max_open_zones = result.uint_32; |
| 1563 | return 0; |
| 1564 | case Opt_lifetime: |
| 1565 | parsing_mp->m_features &= ~XFS_FEAT_NOLIFETIME; |
| 1566 | return 0; |
| 1567 | case Opt_nolifetime: |
| 1568 | parsing_mp->m_features |= XFS_FEAT_NOLIFETIME; |
| 1569 | return 0; |
| 1570 | case Opt_max_atomic_write: |
| 1571 | if (suffix_kstrtoull(param->string, 10, |
| 1572 | &parsing_mp->m_awu_max_bytes)) { |
| 1573 | xfs_warn(parsing_mp, |
| 1574 | "max atomic write size must be positive integer"); |
| 1575 | return -EINVAL; |
| 1576 | } |
| 1577 | return 0; |
| 1578 | default: |
| 1579 | xfs_warn(parsing_mp, "unknown mount option [%s].", param->key); |
| 1580 | return -EINVAL; |
| 1581 | } |
| 1582 | |
| 1583 | return 0; |
| 1584 | } |
| 1585 | |
| 1586 | static int |
| 1587 | xfs_fs_validate_params( |
| 1588 | struct xfs_mount *mp) |
| 1589 | { |
| 1590 | /* No recovery flag requires a read-only mount */ |
| 1591 | if (xfs_has_norecovery(mp) && !xfs_is_readonly(mp)) { |
| 1592 | xfs_warn(mp, "no-recovery mounts must be read-only."); |
| 1593 | return -EINVAL; |
| 1594 | } |
| 1595 | |
| 1596 | /* |
| 1597 | * We have not read the superblock at this point, so only the attr2 |
| 1598 | * mount option can set the attr2 feature by this stage. |
| 1599 | */ |
| 1600 | if (xfs_has_attr2(mp) && xfs_has_noattr2(mp)) { |
| 1601 | xfs_warn(mp, "attr2 and noattr2 cannot both be specified."); |
| 1602 | return -EINVAL; |
| 1603 | } |
| 1604 | |
| 1605 | |
| 1606 | if (xfs_has_noalign(mp) && (mp->m_dalign || mp->m_swidth)) { |
| 1607 | xfs_warn(mp, |
| 1608 | "sunit and swidth options incompatible with the noalign option"); |
| 1609 | return -EINVAL; |
| 1610 | } |
| 1611 | |
| 1612 | if (!IS_ENABLED(CONFIG_XFS_QUOTA) && |
| 1613 | (mp->m_qflags & ~XFS_QFLAGS_MNTOPTS)) { |
| 1614 | xfs_warn(mp, "quota support not available in this kernel."); |
| 1615 | return -EINVAL; |
| 1616 | } |
| 1617 | |
| 1618 | if ((mp->m_dalign && !mp->m_swidth) || |
| 1619 | (!mp->m_dalign && mp->m_swidth)) { |
| 1620 | xfs_warn(mp, "sunit and swidth must be specified together"); |
| 1621 | return -EINVAL; |
| 1622 | } |
| 1623 | |
| 1624 | if (mp->m_dalign && (mp->m_swidth % mp->m_dalign != 0)) { |
| 1625 | xfs_warn(mp, |
| 1626 | "stripe width (%d) must be a multiple of the stripe unit (%d)", |
| 1627 | mp->m_swidth, mp->m_dalign); |
| 1628 | return -EINVAL; |
| 1629 | } |
| 1630 | |
| 1631 | if (mp->m_logbufs != -1 && |
| 1632 | mp->m_logbufs != 0 && |
| 1633 | (mp->m_logbufs < XLOG_MIN_ICLOGS || |
| 1634 | mp->m_logbufs > XLOG_MAX_ICLOGS)) { |
| 1635 | xfs_warn(mp, "invalid logbufs value: %d [not %d-%d]", |
| 1636 | mp->m_logbufs, XLOG_MIN_ICLOGS, XLOG_MAX_ICLOGS); |
| 1637 | return -EINVAL; |
| 1638 | } |
| 1639 | |
| 1640 | if (mp->m_logbsize != -1 && |
| 1641 | mp->m_logbsize != 0 && |
| 1642 | (mp->m_logbsize < XLOG_MIN_RECORD_BSIZE || |
| 1643 | mp->m_logbsize > XLOG_MAX_RECORD_BSIZE || |
| 1644 | !is_power_of_2(mp->m_logbsize))) { |
| 1645 | xfs_warn(mp, |
| 1646 | "invalid logbufsize: %d [not 16k,32k,64k,128k or 256k]", |
| 1647 | mp->m_logbsize); |
| 1648 | return -EINVAL; |
| 1649 | } |
| 1650 | |
| 1651 | if (xfs_has_allocsize(mp) && |
| 1652 | (mp->m_allocsize_log > XFS_MAX_IO_LOG || |
| 1653 | mp->m_allocsize_log < XFS_MIN_IO_LOG)) { |
| 1654 | xfs_warn(mp, "invalid log iosize: %d [not %d-%d]", |
| 1655 | mp->m_allocsize_log, XFS_MIN_IO_LOG, XFS_MAX_IO_LOG); |
| 1656 | return -EINVAL; |
| 1657 | } |
| 1658 | |
| 1659 | return 0; |
| 1660 | } |
| 1661 | |
| 1662 | struct dentry * |
| 1663 | xfs_debugfs_mkdir( |
| 1664 | const char *name, |
| 1665 | struct dentry *parent) |
| 1666 | { |
| 1667 | struct dentry *child; |
| 1668 | |
| 1669 | /* Apparently we're expected to ignore error returns?? */ |
| 1670 | child = debugfs_create_dir(name, parent); |
| 1671 | if (IS_ERR(child)) |
| 1672 | return NULL; |
| 1673 | |
| 1674 | return child; |
| 1675 | } |
| 1676 | |
| 1677 | static int |
| 1678 | xfs_fs_fill_super( |
| 1679 | struct super_block *sb, |
| 1680 | struct fs_context *fc) |
| 1681 | { |
| 1682 | struct xfs_mount *mp = sb->s_fs_info; |
| 1683 | struct inode *root; |
| 1684 | int flags = 0, error; |
| 1685 | |
| 1686 | mp->m_super = sb; |
| 1687 | |
| 1688 | /* |
| 1689 | * Copy VFS mount flags from the context now that all parameter parsing |
| 1690 | * is guaranteed to have been completed by either the old mount API or |
| 1691 | * the newer fsopen/fsconfig API. |
| 1692 | */ |
| 1693 | if (fc->sb_flags & SB_RDONLY) |
| 1694 | xfs_set_readonly(mp); |
| 1695 | if (fc->sb_flags & SB_DIRSYNC) |
| 1696 | mp->m_features |= XFS_FEAT_DIRSYNC; |
| 1697 | if (fc->sb_flags & SB_SYNCHRONOUS) |
| 1698 | mp->m_features |= XFS_FEAT_WSYNC; |
| 1699 | |
| 1700 | error = xfs_fs_validate_params(mp); |
| 1701 | if (error) |
| 1702 | return error; |
| 1703 | |
| 1704 | sb_min_blocksize(sb, BBSIZE); |
| 1705 | sb->s_xattr = xfs_xattr_handlers; |
| 1706 | sb->s_export_op = &xfs_export_operations; |
| 1707 | #ifdef CONFIG_XFS_QUOTA |
| 1708 | sb->s_qcop = &xfs_quotactl_operations; |
| 1709 | sb->s_quota_types = QTYPE_MASK_USR | QTYPE_MASK_GRP | QTYPE_MASK_PRJ; |
| 1710 | #endif |
| 1711 | sb->s_op = &xfs_super_operations; |
| 1712 | |
| 1713 | /* |
| 1714 | * Delay mount work if the debug hook is set. This is debug |
| 1715 | * instrumention to coordinate simulation of xfs mount failures with |
| 1716 | * VFS superblock operations |
| 1717 | */ |
| 1718 | if (xfs_globals.mount_delay) { |
| 1719 | xfs_notice(mp, "Delaying mount for %d seconds.", |
| 1720 | xfs_globals.mount_delay); |
| 1721 | msleep(xfs_globals.mount_delay * 1000); |
| 1722 | } |
| 1723 | |
| 1724 | if (fc->sb_flags & SB_SILENT) |
| 1725 | flags |= XFS_MFSI_QUIET; |
| 1726 | |
| 1727 | error = xfs_open_devices(mp); |
| 1728 | if (error) |
| 1729 | return error; |
| 1730 | |
| 1731 | if (xfs_debugfs) { |
| 1732 | mp->m_debugfs = xfs_debugfs_mkdir(mp->m_super->s_id, |
| 1733 | xfs_debugfs); |
| 1734 | } else { |
| 1735 | mp->m_debugfs = NULL; |
| 1736 | } |
| 1737 | |
| 1738 | error = xfs_init_mount_workqueues(mp); |
| 1739 | if (error) |
| 1740 | goto out_shutdown_devices; |
| 1741 | |
| 1742 | error = xfs_init_percpu_counters(mp); |
| 1743 | if (error) |
| 1744 | goto out_destroy_workqueues; |
| 1745 | |
| 1746 | error = xfs_inodegc_init_percpu(mp); |
| 1747 | if (error) |
| 1748 | goto out_destroy_counters; |
| 1749 | |
| 1750 | /* Allocate stats memory before we do operations that might use it */ |
| 1751 | mp->m_stats.xs_stats = alloc_percpu(struct xfsstats); |
| 1752 | if (!mp->m_stats.xs_stats) { |
| 1753 | error = -ENOMEM; |
| 1754 | goto out_destroy_inodegc; |
| 1755 | } |
| 1756 | |
| 1757 | error = xchk_mount_stats_alloc(mp); |
| 1758 | if (error) |
| 1759 | goto out_free_stats; |
| 1760 | |
| 1761 | error = xfs_readsb(mp, flags); |
| 1762 | if (error) |
| 1763 | goto out_free_scrub_stats; |
| 1764 | |
| 1765 | error = xfs_finish_flags(mp); |
| 1766 | if (error) |
| 1767 | goto out_free_sb; |
| 1768 | |
| 1769 | error = xfs_setup_devices(mp); |
| 1770 | if (error) |
| 1771 | goto out_free_sb; |
| 1772 | |
| 1773 | /* |
| 1774 | * V4 support is undergoing deprecation. |
| 1775 | * |
| 1776 | * Note: this has to use an open coded m_features check as xfs_has_crc |
| 1777 | * always returns false for !CONFIG_XFS_SUPPORT_V4. |
| 1778 | */ |
| 1779 | if (!(mp->m_features & XFS_FEAT_CRC)) { |
| 1780 | if (!IS_ENABLED(CONFIG_XFS_SUPPORT_V4)) { |
| 1781 | xfs_warn(mp, |
| 1782 | "Deprecated V4 format (crc=0) not supported by kernel."); |
| 1783 | error = -EINVAL; |
| 1784 | goto out_free_sb; |
| 1785 | } |
| 1786 | xfs_warn_once(mp, |
| 1787 | "Deprecated V4 format (crc=0) will not be supported after September 2030."); |
| 1788 | } |
| 1789 | |
| 1790 | /* ASCII case insensitivity is undergoing deprecation. */ |
| 1791 | if (xfs_has_asciici(mp)) { |
| 1792 | #ifdef CONFIG_XFS_SUPPORT_ASCII_CI |
| 1793 | xfs_warn_once(mp, |
| 1794 | "Deprecated ASCII case-insensitivity feature (ascii-ci=1) will not be supported after September 2030."); |
| 1795 | #else |
| 1796 | xfs_warn(mp, |
| 1797 | "Deprecated ASCII case-insensitivity feature (ascii-ci=1) not supported by kernel."); |
| 1798 | error = -EINVAL; |
| 1799 | goto out_free_sb; |
| 1800 | #endif |
| 1801 | } |
| 1802 | |
| 1803 | /* |
| 1804 | * Filesystem claims it needs repair, so refuse the mount unless |
| 1805 | * norecovery is also specified, in which case the filesystem can |
| 1806 | * be mounted with no risk of further damage. |
| 1807 | */ |
| 1808 | if (xfs_has_needsrepair(mp) && !xfs_has_norecovery(mp)) { |
| 1809 | xfs_warn(mp, "Filesystem needs repair. Please run xfs_repair."); |
| 1810 | error = -EFSCORRUPTED; |
| 1811 | goto out_free_sb; |
| 1812 | } |
| 1813 | |
| 1814 | /* |
| 1815 | * Don't touch the filesystem if a user tool thinks it owns the primary |
| 1816 | * superblock. mkfs doesn't clear the flag from secondary supers, so |
| 1817 | * we don't check them at all. |
| 1818 | */ |
| 1819 | if (mp->m_sb.sb_inprogress) { |
| 1820 | xfs_warn(mp, "Offline file system operation in progress!"); |
| 1821 | error = -EFSCORRUPTED; |
| 1822 | goto out_free_sb; |
| 1823 | } |
| 1824 | |
| 1825 | if (mp->m_sb.sb_blocksize > PAGE_SIZE) { |
| 1826 | size_t max_folio_size = mapping_max_folio_size_supported(); |
| 1827 | |
| 1828 | if (!xfs_has_crc(mp)) { |
| 1829 | xfs_warn(mp, |
| 1830 | "V4 Filesystem with blocksize %d bytes. Only pagesize (%ld) or less is supported.", |
| 1831 | mp->m_sb.sb_blocksize, PAGE_SIZE); |
| 1832 | error = -ENOSYS; |
| 1833 | goto out_free_sb; |
| 1834 | } |
| 1835 | |
| 1836 | if (mp->m_sb.sb_blocksize > max_folio_size) { |
| 1837 | xfs_warn(mp, |
| 1838 | "block size (%u bytes) not supported; Only block size (%zu) or less is supported", |
| 1839 | mp->m_sb.sb_blocksize, max_folio_size); |
| 1840 | error = -ENOSYS; |
| 1841 | goto out_free_sb; |
| 1842 | } |
| 1843 | |
| 1844 | xfs_warn_experimental(mp, XFS_EXPERIMENTAL_LBS); |
| 1845 | } |
| 1846 | |
| 1847 | /* Ensure this filesystem fits in the page cache limits */ |
| 1848 | if (xfs_sb_validate_fsb_count(&mp->m_sb, mp->m_sb.sb_dblocks) || |
| 1849 | xfs_sb_validate_fsb_count(&mp->m_sb, mp->m_sb.sb_rblocks)) { |
| 1850 | xfs_warn(mp, |
| 1851 | "file system too large to be mounted on this system."); |
| 1852 | error = -EFBIG; |
| 1853 | goto out_free_sb; |
| 1854 | } |
| 1855 | |
| 1856 | /* |
| 1857 | * XFS block mappings use 54 bits to store the logical block offset. |
| 1858 | * This should suffice to handle the maximum file size that the VFS |
| 1859 | * supports (currently 2^63 bytes on 64-bit and ULONG_MAX << PAGE_SHIFT |
| 1860 | * bytes on 32-bit), but as XFS and VFS have gotten the s_maxbytes |
| 1861 | * calculation wrong on 32-bit kernels in the past, we'll add a WARN_ON |
| 1862 | * to check this assertion. |
| 1863 | * |
| 1864 | * Avoid integer overflow by comparing the maximum bmbt offset to the |
| 1865 | * maximum pagecache offset in units of fs blocks. |
| 1866 | */ |
| 1867 | if (!xfs_verify_fileoff(mp, XFS_B_TO_FSBT(mp, MAX_LFS_FILESIZE))) { |
| 1868 | xfs_warn(mp, |
| 1869 | "MAX_LFS_FILESIZE block offset (%llu) exceeds extent map maximum (%llu)!", |
| 1870 | XFS_B_TO_FSBT(mp, MAX_LFS_FILESIZE), |
| 1871 | XFS_MAX_FILEOFF); |
| 1872 | error = -EINVAL; |
| 1873 | goto out_free_sb; |
| 1874 | } |
| 1875 | |
| 1876 | error = xfs_rtmount_readsb(mp); |
| 1877 | if (error) |
| 1878 | goto out_free_sb; |
| 1879 | |
| 1880 | error = xfs_filestream_mount(mp); |
| 1881 | if (error) |
| 1882 | goto out_free_rtsb; |
| 1883 | |
| 1884 | /* |
| 1885 | * we must configure the block size in the superblock before we run the |
| 1886 | * full mount process as the mount process can lookup and cache inodes. |
| 1887 | */ |
| 1888 | sb->s_magic = XFS_SUPER_MAGIC; |
| 1889 | sb->s_blocksize = mp->m_sb.sb_blocksize; |
| 1890 | sb->s_blocksize_bits = ffs(sb->s_blocksize) - 1; |
| 1891 | sb->s_maxbytes = MAX_LFS_FILESIZE; |
| 1892 | sb->s_max_links = XFS_MAXLINK; |
| 1893 | sb->s_time_gran = 1; |
| 1894 | if (xfs_has_bigtime(mp)) { |
| 1895 | sb->s_time_min = xfs_bigtime_to_unix(XFS_BIGTIME_TIME_MIN); |
| 1896 | sb->s_time_max = xfs_bigtime_to_unix(XFS_BIGTIME_TIME_MAX); |
| 1897 | } else { |
| 1898 | sb->s_time_min = XFS_LEGACY_TIME_MIN; |
| 1899 | sb->s_time_max = XFS_LEGACY_TIME_MAX; |
| 1900 | } |
| 1901 | trace_xfs_inode_timestamp_range(mp, sb->s_time_min, sb->s_time_max); |
| 1902 | sb->s_iflags |= SB_I_CGROUPWB | SB_I_ALLOW_HSM; |
| 1903 | |
| 1904 | set_posix_acl_flag(sb); |
| 1905 | |
| 1906 | /* version 5 superblocks support inode version counters. */ |
| 1907 | if (xfs_has_crc(mp)) |
| 1908 | sb->s_flags |= SB_I_VERSION; |
| 1909 | |
| 1910 | if (xfs_has_dax_always(mp)) { |
| 1911 | error = xfs_setup_dax_always(mp); |
| 1912 | if (error) |
| 1913 | goto out_filestream_unmount; |
| 1914 | } |
| 1915 | |
| 1916 | if (xfs_has_discard(mp) && !bdev_max_discard_sectors(sb->s_bdev)) { |
| 1917 | xfs_warn(mp, |
| 1918 | "mounting with \"discard\" option, but the device does not support discard"); |
| 1919 | mp->m_features &= ~XFS_FEAT_DISCARD; |
| 1920 | } |
| 1921 | |
| 1922 | if (xfs_has_zoned(mp)) { |
| 1923 | if (!xfs_has_metadir(mp)) { |
| 1924 | xfs_alert(mp, |
| 1925 | "metadir feature required for zoned realtime devices."); |
| 1926 | error = -EINVAL; |
| 1927 | goto out_filestream_unmount; |
| 1928 | } |
| 1929 | xfs_warn_experimental(mp, XFS_EXPERIMENTAL_ZONED); |
| 1930 | } else if (xfs_has_metadir(mp)) { |
| 1931 | xfs_warn_experimental(mp, XFS_EXPERIMENTAL_METADIR); |
| 1932 | } |
| 1933 | |
| 1934 | if (xfs_has_reflink(mp)) { |
| 1935 | if (xfs_has_realtime(mp) && |
| 1936 | !xfs_reflink_supports_rextsize(mp, mp->m_sb.sb_rextsize)) { |
| 1937 | xfs_alert(mp, |
| 1938 | "reflink not compatible with realtime extent size %u!", |
| 1939 | mp->m_sb.sb_rextsize); |
| 1940 | error = -EINVAL; |
| 1941 | goto out_filestream_unmount; |
| 1942 | } |
| 1943 | |
| 1944 | if (xfs_has_zoned(mp)) { |
| 1945 | xfs_alert(mp, |
| 1946 | "reflink not compatible with zoned RT device!"); |
| 1947 | error = -EINVAL; |
| 1948 | goto out_filestream_unmount; |
| 1949 | } |
| 1950 | |
| 1951 | if (xfs_globals.always_cow) { |
| 1952 | xfs_info(mp, "using DEBUG-only always_cow mode."); |
| 1953 | mp->m_always_cow = true; |
| 1954 | } |
| 1955 | } |
| 1956 | |
| 1957 | /* |
| 1958 | * If no quota mount options were provided, maybe we'll try to pick |
| 1959 | * up the quota accounting and enforcement flags from the ondisk sb. |
| 1960 | */ |
| 1961 | if (!(mp->m_qflags & XFS_QFLAGS_MNTOPTS)) |
| 1962 | xfs_set_resuming_quotaon(mp); |
| 1963 | mp->m_qflags &= ~XFS_QFLAGS_MNTOPTS; |
| 1964 | |
| 1965 | error = xfs_mountfs(mp); |
| 1966 | if (error) |
| 1967 | goto out_filestream_unmount; |
| 1968 | |
| 1969 | root = igrab(VFS_I(mp->m_rootip)); |
| 1970 | if (!root) { |
| 1971 | error = -ENOENT; |
| 1972 | goto out_unmount; |
| 1973 | } |
| 1974 | sb->s_root = d_make_root(root); |
| 1975 | if (!sb->s_root) { |
| 1976 | error = -ENOMEM; |
| 1977 | goto out_unmount; |
| 1978 | } |
| 1979 | |
| 1980 | return 0; |
| 1981 | |
| 1982 | out_filestream_unmount: |
| 1983 | xfs_filestream_unmount(mp); |
| 1984 | out_free_rtsb: |
| 1985 | xfs_rtmount_freesb(mp); |
| 1986 | out_free_sb: |
| 1987 | xfs_freesb(mp); |
| 1988 | out_free_scrub_stats: |
| 1989 | xchk_mount_stats_free(mp); |
| 1990 | out_free_stats: |
| 1991 | free_percpu(mp->m_stats.xs_stats); |
| 1992 | out_destroy_inodegc: |
| 1993 | xfs_inodegc_free_percpu(mp); |
| 1994 | out_destroy_counters: |
| 1995 | xfs_destroy_percpu_counters(mp); |
| 1996 | out_destroy_workqueues: |
| 1997 | xfs_destroy_mount_workqueues(mp); |
| 1998 | out_shutdown_devices: |
| 1999 | xfs_shutdown_devices(mp); |
| 2000 | return error; |
| 2001 | |
| 2002 | out_unmount: |
| 2003 | xfs_filestream_unmount(mp); |
| 2004 | xfs_unmountfs(mp); |
| 2005 | goto out_free_rtsb; |
| 2006 | } |
| 2007 | |
| 2008 | static int |
| 2009 | xfs_fs_get_tree( |
| 2010 | struct fs_context *fc) |
| 2011 | { |
| 2012 | return get_tree_bdev(fc, xfs_fs_fill_super); |
| 2013 | } |
| 2014 | |
| 2015 | static int |
| 2016 | xfs_remount_rw( |
| 2017 | struct xfs_mount *mp) |
| 2018 | { |
| 2019 | struct xfs_sb *sbp = &mp->m_sb; |
| 2020 | int error; |
| 2021 | |
| 2022 | if (mp->m_logdev_targp && mp->m_logdev_targp != mp->m_ddev_targp && |
| 2023 | xfs_readonly_buftarg(mp->m_logdev_targp)) { |
| 2024 | xfs_warn(mp, |
| 2025 | "ro->rw transition prohibited by read-only logdev"); |
| 2026 | return -EACCES; |
| 2027 | } |
| 2028 | |
| 2029 | if (mp->m_rtdev_targp && xfs_readonly_buftarg(mp->m_rtdev_targp)) { |
| 2030 | xfs_warn(mp, |
| 2031 | "ro->rw transition prohibited by read-only rtdev"); |
| 2032 | return -EACCES; |
| 2033 | } |
| 2034 | |
| 2035 | if (xfs_has_norecovery(mp)) { |
| 2036 | xfs_warn(mp, |
| 2037 | "ro->rw transition prohibited on norecovery mount"); |
| 2038 | return -EINVAL; |
| 2039 | } |
| 2040 | |
| 2041 | if (xfs_sb_is_v5(sbp) && |
| 2042 | xfs_sb_has_ro_compat_feature(sbp, XFS_SB_FEAT_RO_COMPAT_UNKNOWN)) { |
| 2043 | xfs_warn(mp, |
| 2044 | "ro->rw transition prohibited on unknown (0x%x) ro-compat filesystem", |
| 2045 | (sbp->sb_features_ro_compat & |
| 2046 | XFS_SB_FEAT_RO_COMPAT_UNKNOWN)); |
| 2047 | return -EINVAL; |
| 2048 | } |
| 2049 | |
| 2050 | xfs_clear_readonly(mp); |
| 2051 | |
| 2052 | /* |
| 2053 | * If this is the first remount to writeable state we might have some |
| 2054 | * superblock changes to update. |
| 2055 | */ |
| 2056 | if (mp->m_update_sb) { |
| 2057 | error = xfs_sync_sb(mp, false); |
| 2058 | if (error) { |
| 2059 | xfs_warn(mp, "failed to write sb changes"); |
| 2060 | return error; |
| 2061 | } |
| 2062 | mp->m_update_sb = false; |
| 2063 | } |
| 2064 | |
| 2065 | /* |
| 2066 | * Fill out the reserve pool if it is empty. Use the stashed value if |
| 2067 | * it is non-zero, otherwise go with the default. |
| 2068 | */ |
| 2069 | xfs_restore_resvblks(mp); |
| 2070 | xfs_log_work_queue(mp); |
| 2071 | xfs_blockgc_start(mp); |
| 2072 | |
| 2073 | /* Create the per-AG metadata reservation pool .*/ |
| 2074 | error = xfs_fs_reserve_ag_blocks(mp); |
| 2075 | if (error && error != -ENOSPC) |
| 2076 | return error; |
| 2077 | |
| 2078 | /* Re-enable the background inode inactivation worker. */ |
| 2079 | xfs_inodegc_start(mp); |
| 2080 | |
| 2081 | /* Restart zone reclaim */ |
| 2082 | xfs_zone_gc_start(mp); |
| 2083 | |
| 2084 | return 0; |
| 2085 | } |
| 2086 | |
| 2087 | static int |
| 2088 | xfs_remount_ro( |
| 2089 | struct xfs_mount *mp) |
| 2090 | { |
| 2091 | struct xfs_icwalk icw = { |
| 2092 | .icw_flags = XFS_ICWALK_FLAG_SYNC, |
| 2093 | }; |
| 2094 | int error; |
| 2095 | |
| 2096 | /* Flush all the dirty data to disk. */ |
| 2097 | error = sync_filesystem(mp->m_super); |
| 2098 | if (error) |
| 2099 | return error; |
| 2100 | |
| 2101 | /* |
| 2102 | * Cancel background eofb scanning so it cannot race with the final |
| 2103 | * log force+buftarg wait and deadlock the remount. |
| 2104 | */ |
| 2105 | xfs_blockgc_stop(mp); |
| 2106 | |
| 2107 | /* |
| 2108 | * Clear out all remaining COW staging extents and speculative post-EOF |
| 2109 | * preallocations so that we don't leave inodes requiring inactivation |
| 2110 | * cleanups during reclaim on a read-only mount. We must process every |
| 2111 | * cached inode, so this requires a synchronous cache scan. |
| 2112 | */ |
| 2113 | error = xfs_blockgc_free_space(mp, &icw); |
| 2114 | if (error) { |
| 2115 | xfs_force_shutdown(mp, SHUTDOWN_CORRUPT_INCORE); |
| 2116 | return error; |
| 2117 | } |
| 2118 | |
| 2119 | /* |
| 2120 | * Stop the inodegc background worker. xfs_fs_reconfigure already |
| 2121 | * flushed all pending inodegc work when it sync'd the filesystem. |
| 2122 | * The VFS holds s_umount, so we know that inodes cannot enter |
| 2123 | * xfs_fs_destroy_inode during a remount operation. In readonly mode |
| 2124 | * we send inodes straight to reclaim, so no inodes will be queued. |
| 2125 | */ |
| 2126 | xfs_inodegc_stop(mp); |
| 2127 | |
| 2128 | /* Stop zone reclaim */ |
| 2129 | xfs_zone_gc_stop(mp); |
| 2130 | |
| 2131 | /* Free the per-AG metadata reservation pool. */ |
| 2132 | xfs_fs_unreserve_ag_blocks(mp); |
| 2133 | |
| 2134 | /* |
| 2135 | * Before we sync the metadata, we need to free up the reserve block |
| 2136 | * pool so that the used block count in the superblock on disk is |
| 2137 | * correct at the end of the remount. Stash the current* reserve pool |
| 2138 | * size so that if we get remounted rw, we can return it to the same |
| 2139 | * size. |
| 2140 | */ |
| 2141 | xfs_save_resvblks(mp); |
| 2142 | |
| 2143 | xfs_log_clean(mp); |
| 2144 | xfs_set_readonly(mp); |
| 2145 | |
| 2146 | return 0; |
| 2147 | } |
| 2148 | |
| 2149 | /* |
| 2150 | * Logically we would return an error here to prevent users from believing |
| 2151 | * they might have changed mount options using remount which can't be changed. |
| 2152 | * |
| 2153 | * But unfortunately mount(8) adds all options from mtab and fstab to the mount |
| 2154 | * arguments in some cases so we can't blindly reject options, but have to |
| 2155 | * check for each specified option if it actually differs from the currently |
| 2156 | * set option and only reject it if that's the case. |
| 2157 | * |
| 2158 | * Until that is implemented we return success for every remount request, and |
| 2159 | * silently ignore all options that we can't actually change. |
| 2160 | */ |
| 2161 | static int |
| 2162 | xfs_fs_reconfigure( |
| 2163 | struct fs_context *fc) |
| 2164 | { |
| 2165 | struct xfs_mount *mp = XFS_M(fc->root->d_sb); |
| 2166 | struct xfs_mount *new_mp = fc->s_fs_info; |
| 2167 | int flags = fc->sb_flags; |
| 2168 | int error; |
| 2169 | |
| 2170 | new_mp->m_qflags &= ~XFS_QFLAGS_MNTOPTS; |
| 2171 | |
| 2172 | /* version 5 superblocks always support version counters. */ |
| 2173 | if (xfs_has_crc(mp)) |
| 2174 | fc->sb_flags |= SB_I_VERSION; |
| 2175 | |
| 2176 | error = xfs_fs_validate_params(new_mp); |
| 2177 | if (error) |
| 2178 | return error; |
| 2179 | |
| 2180 | /* attr2 -> noattr2 */ |
| 2181 | if (xfs_has_noattr2(new_mp)) { |
| 2182 | if (xfs_has_crc(mp)) { |
| 2183 | xfs_warn(mp, |
| 2184 | "attr2 is always enabled for a V5 filesystem - can't be changed."); |
| 2185 | return -EINVAL; |
| 2186 | } |
| 2187 | mp->m_features &= ~XFS_FEAT_ATTR2; |
| 2188 | mp->m_features |= XFS_FEAT_NOATTR2; |
| 2189 | } else if (xfs_has_attr2(new_mp)) { |
| 2190 | /* noattr2 -> attr2 */ |
| 2191 | mp->m_features &= ~XFS_FEAT_NOATTR2; |
| 2192 | mp->m_features |= XFS_FEAT_ATTR2; |
| 2193 | } |
| 2194 | |
| 2195 | /* Validate new max_atomic_write option before making other changes */ |
| 2196 | if (mp->m_awu_max_bytes != new_mp->m_awu_max_bytes) { |
| 2197 | error = xfs_set_max_atomic_write_opt(mp, |
| 2198 | new_mp->m_awu_max_bytes); |
| 2199 | if (error) |
| 2200 | return error; |
| 2201 | } |
| 2202 | |
| 2203 | /* inode32 -> inode64 */ |
| 2204 | if (xfs_has_small_inums(mp) && !xfs_has_small_inums(new_mp)) { |
| 2205 | mp->m_features &= ~XFS_FEAT_SMALL_INUMS; |
| 2206 | mp->m_maxagi = xfs_set_inode_alloc(mp, mp->m_sb.sb_agcount); |
| 2207 | } |
| 2208 | |
| 2209 | /* inode64 -> inode32 */ |
| 2210 | if (!xfs_has_small_inums(mp) && xfs_has_small_inums(new_mp)) { |
| 2211 | mp->m_features |= XFS_FEAT_SMALL_INUMS; |
| 2212 | mp->m_maxagi = xfs_set_inode_alloc(mp, mp->m_sb.sb_agcount); |
| 2213 | } |
| 2214 | |
| 2215 | /* |
| 2216 | * Now that mp has been modified according to the remount options, we |
| 2217 | * do a final option validation with xfs_finish_flags() just like it is |
| 2218 | * just like it is done during mount. We cannot use |
| 2219 | * done during mount. We cannot use xfs_finish_flags() on new_mp as it |
| 2220 | * contains only the user given options. |
| 2221 | */ |
| 2222 | error = xfs_finish_flags(mp); |
| 2223 | if (error) |
| 2224 | return error; |
| 2225 | |
| 2226 | /* ro -> rw */ |
| 2227 | if (xfs_is_readonly(mp) && !(flags & SB_RDONLY)) { |
| 2228 | error = xfs_remount_rw(mp); |
| 2229 | if (error) |
| 2230 | return error; |
| 2231 | } |
| 2232 | |
| 2233 | /* rw -> ro */ |
| 2234 | if (!xfs_is_readonly(mp) && (flags & SB_RDONLY)) { |
| 2235 | error = xfs_remount_ro(mp); |
| 2236 | if (error) |
| 2237 | return error; |
| 2238 | } |
| 2239 | |
| 2240 | return 0; |
| 2241 | } |
| 2242 | |
| 2243 | static void |
| 2244 | xfs_fs_free( |
| 2245 | struct fs_context *fc) |
| 2246 | { |
| 2247 | struct xfs_mount *mp = fc->s_fs_info; |
| 2248 | |
| 2249 | /* |
| 2250 | * mp is stored in the fs_context when it is initialized. |
| 2251 | * mp is transferred to the superblock on a successful mount, |
| 2252 | * but if an error occurs before the transfer we have to free |
| 2253 | * it here. |
| 2254 | */ |
| 2255 | if (mp) |
| 2256 | xfs_mount_free(mp); |
| 2257 | } |
| 2258 | |
| 2259 | static const struct fs_context_operations xfs_context_ops = { |
| 2260 | .parse_param = xfs_fs_parse_param, |
| 2261 | .get_tree = xfs_fs_get_tree, |
| 2262 | .reconfigure = xfs_fs_reconfigure, |
| 2263 | .free = xfs_fs_free, |
| 2264 | }; |
| 2265 | |
| 2266 | /* |
| 2267 | * WARNING: do not initialise any parameters in this function that depend on |
| 2268 | * mount option parsing having already been performed as this can be called from |
| 2269 | * fsopen() before any parameters have been set. |
| 2270 | */ |
| 2271 | static int |
| 2272 | xfs_init_fs_context( |
| 2273 | struct fs_context *fc) |
| 2274 | { |
| 2275 | struct xfs_mount *mp; |
| 2276 | int i; |
| 2277 | |
| 2278 | mp = kzalloc(sizeof(struct xfs_mount), GFP_KERNEL | __GFP_NOFAIL); |
| 2279 | if (!mp) |
| 2280 | return -ENOMEM; |
| 2281 | |
| 2282 | spin_lock_init(&mp->m_sb_lock); |
| 2283 | for (i = 0; i < XG_TYPE_MAX; i++) |
| 2284 | xa_init(&mp->m_groups[i].xa); |
| 2285 | mutex_init(&mp->m_growlock); |
| 2286 | mutex_init(&mp->m_metafile_resv_lock); |
| 2287 | INIT_WORK(&mp->m_flush_inodes_work, xfs_flush_inodes_worker); |
| 2288 | INIT_DELAYED_WORK(&mp->m_reclaim_work, xfs_reclaim_worker); |
| 2289 | mp->m_kobj.kobject.kset = xfs_kset; |
| 2290 | /* |
| 2291 | * We don't create the finobt per-ag space reservation until after log |
| 2292 | * recovery, so we must set this to true so that an ifree transaction |
| 2293 | * started during log recovery will not depend on space reservations |
| 2294 | * for finobt expansion. |
| 2295 | */ |
| 2296 | mp->m_finobt_nores = true; |
| 2297 | |
| 2298 | /* |
| 2299 | * These can be overridden by the mount option parsing. |
| 2300 | */ |
| 2301 | mp->m_logbufs = -1; |
| 2302 | mp->m_logbsize = -1; |
| 2303 | mp->m_allocsize_log = 16; /* 64k */ |
| 2304 | |
| 2305 | xfs_hooks_init(&mp->m_dir_update_hooks); |
| 2306 | |
| 2307 | fc->s_fs_info = mp; |
| 2308 | fc->ops = &xfs_context_ops; |
| 2309 | |
| 2310 | return 0; |
| 2311 | } |
| 2312 | |
| 2313 | static void |
| 2314 | xfs_kill_sb( |
| 2315 | struct super_block *sb) |
| 2316 | { |
| 2317 | kill_block_super(sb); |
| 2318 | xfs_mount_free(XFS_M(sb)); |
| 2319 | } |
| 2320 | |
| 2321 | static struct file_system_type xfs_fs_type = { |
| 2322 | .owner = THIS_MODULE, |
| 2323 | .name = "xfs", |
| 2324 | .init_fs_context = xfs_init_fs_context, |
| 2325 | .parameters = xfs_fs_parameters, |
| 2326 | .kill_sb = xfs_kill_sb, |
| 2327 | .fs_flags = FS_REQUIRES_DEV | FS_ALLOW_IDMAP | FS_MGTIME | |
| 2328 | FS_LBS, |
| 2329 | }; |
| 2330 | MODULE_ALIAS_FS("xfs"); |
| 2331 | |
| 2332 | STATIC int __init |
| 2333 | xfs_init_caches(void) |
| 2334 | { |
| 2335 | int error; |
| 2336 | |
| 2337 | xfs_buf_cache = kmem_cache_create("xfs_buf", sizeof(struct xfs_buf), 0, |
| 2338 | SLAB_HWCACHE_ALIGN | |
| 2339 | SLAB_RECLAIM_ACCOUNT, |
| 2340 | NULL); |
| 2341 | if (!xfs_buf_cache) |
| 2342 | goto out; |
| 2343 | |
| 2344 | xfs_log_ticket_cache = kmem_cache_create("xfs_log_ticket", |
| 2345 | sizeof(struct xlog_ticket), |
| 2346 | 0, 0, NULL); |
| 2347 | if (!xfs_log_ticket_cache) |
| 2348 | goto out_destroy_buf_cache; |
| 2349 | |
| 2350 | error = xfs_btree_init_cur_caches(); |
| 2351 | if (error) |
| 2352 | goto out_destroy_log_ticket_cache; |
| 2353 | |
| 2354 | error = rcbagbt_init_cur_cache(); |
| 2355 | if (error) |
| 2356 | goto out_destroy_btree_cur_cache; |
| 2357 | |
| 2358 | error = xfs_defer_init_item_caches(); |
| 2359 | if (error) |
| 2360 | goto out_destroy_rcbagbt_cur_cache; |
| 2361 | |
| 2362 | xfs_da_state_cache = kmem_cache_create("xfs_da_state", |
| 2363 | sizeof(struct xfs_da_state), |
| 2364 | 0, 0, NULL); |
| 2365 | if (!xfs_da_state_cache) |
| 2366 | goto out_destroy_defer_item_cache; |
| 2367 | |
| 2368 | xfs_ifork_cache = kmem_cache_create("xfs_ifork", |
| 2369 | sizeof(struct xfs_ifork), |
| 2370 | 0, 0, NULL); |
| 2371 | if (!xfs_ifork_cache) |
| 2372 | goto out_destroy_da_state_cache; |
| 2373 | |
| 2374 | xfs_trans_cache = kmem_cache_create("xfs_trans", |
| 2375 | sizeof(struct xfs_trans), |
| 2376 | 0, 0, NULL); |
| 2377 | if (!xfs_trans_cache) |
| 2378 | goto out_destroy_ifork_cache; |
| 2379 | |
| 2380 | |
| 2381 | /* |
| 2382 | * The size of the cache-allocated buf log item is the maximum |
| 2383 | * size possible under XFS. This wastes a little bit of memory, |
| 2384 | * but it is much faster. |
| 2385 | */ |
| 2386 | xfs_buf_item_cache = kmem_cache_create("xfs_buf_item", |
| 2387 | sizeof(struct xfs_buf_log_item), |
| 2388 | 0, 0, NULL); |
| 2389 | if (!xfs_buf_item_cache) |
| 2390 | goto out_destroy_trans_cache; |
| 2391 | |
| 2392 | xfs_efd_cache = kmem_cache_create("xfs_efd_item", |
| 2393 | xfs_efd_log_item_sizeof(XFS_EFD_MAX_FAST_EXTENTS), |
| 2394 | 0, 0, NULL); |
| 2395 | if (!xfs_efd_cache) |
| 2396 | goto out_destroy_buf_item_cache; |
| 2397 | |
| 2398 | xfs_efi_cache = kmem_cache_create("xfs_efi_item", |
| 2399 | xfs_efi_log_item_sizeof(XFS_EFI_MAX_FAST_EXTENTS), |
| 2400 | 0, 0, NULL); |
| 2401 | if (!xfs_efi_cache) |
| 2402 | goto out_destroy_efd_cache; |
| 2403 | |
| 2404 | xfs_inode_cache = kmem_cache_create("xfs_inode", |
| 2405 | sizeof(struct xfs_inode), 0, |
| 2406 | (SLAB_HWCACHE_ALIGN | |
| 2407 | SLAB_RECLAIM_ACCOUNT | |
| 2408 | SLAB_ACCOUNT), |
| 2409 | xfs_fs_inode_init_once); |
| 2410 | if (!xfs_inode_cache) |
| 2411 | goto out_destroy_efi_cache; |
| 2412 | |
| 2413 | xfs_ili_cache = kmem_cache_create("xfs_ili", |
| 2414 | sizeof(struct xfs_inode_log_item), 0, |
| 2415 | SLAB_RECLAIM_ACCOUNT, |
| 2416 | NULL); |
| 2417 | if (!xfs_ili_cache) |
| 2418 | goto out_destroy_inode_cache; |
| 2419 | |
| 2420 | xfs_icreate_cache = kmem_cache_create("xfs_icr", |
| 2421 | sizeof(struct xfs_icreate_item), |
| 2422 | 0, 0, NULL); |
| 2423 | if (!xfs_icreate_cache) |
| 2424 | goto out_destroy_ili_cache; |
| 2425 | |
| 2426 | xfs_rud_cache = kmem_cache_create("xfs_rud_item", |
| 2427 | sizeof(struct xfs_rud_log_item), |
| 2428 | 0, 0, NULL); |
| 2429 | if (!xfs_rud_cache) |
| 2430 | goto out_destroy_icreate_cache; |
| 2431 | |
| 2432 | xfs_rui_cache = kmem_cache_create("xfs_rui_item", |
| 2433 | xfs_rui_log_item_sizeof(XFS_RUI_MAX_FAST_EXTENTS), |
| 2434 | 0, 0, NULL); |
| 2435 | if (!xfs_rui_cache) |
| 2436 | goto out_destroy_rud_cache; |
| 2437 | |
| 2438 | xfs_cud_cache = kmem_cache_create("xfs_cud_item", |
| 2439 | sizeof(struct xfs_cud_log_item), |
| 2440 | 0, 0, NULL); |
| 2441 | if (!xfs_cud_cache) |
| 2442 | goto out_destroy_rui_cache; |
| 2443 | |
| 2444 | xfs_cui_cache = kmem_cache_create("xfs_cui_item", |
| 2445 | xfs_cui_log_item_sizeof(XFS_CUI_MAX_FAST_EXTENTS), |
| 2446 | 0, 0, NULL); |
| 2447 | if (!xfs_cui_cache) |
| 2448 | goto out_destroy_cud_cache; |
| 2449 | |
| 2450 | xfs_bud_cache = kmem_cache_create("xfs_bud_item", |
| 2451 | sizeof(struct xfs_bud_log_item), |
| 2452 | 0, 0, NULL); |
| 2453 | if (!xfs_bud_cache) |
| 2454 | goto out_destroy_cui_cache; |
| 2455 | |
| 2456 | xfs_bui_cache = kmem_cache_create("xfs_bui_item", |
| 2457 | xfs_bui_log_item_sizeof(XFS_BUI_MAX_FAST_EXTENTS), |
| 2458 | 0, 0, NULL); |
| 2459 | if (!xfs_bui_cache) |
| 2460 | goto out_destroy_bud_cache; |
| 2461 | |
| 2462 | xfs_attrd_cache = kmem_cache_create("xfs_attrd_item", |
| 2463 | sizeof(struct xfs_attrd_log_item), |
| 2464 | 0, 0, NULL); |
| 2465 | if (!xfs_attrd_cache) |
| 2466 | goto out_destroy_bui_cache; |
| 2467 | |
| 2468 | xfs_attri_cache = kmem_cache_create("xfs_attri_item", |
| 2469 | sizeof(struct xfs_attri_log_item), |
| 2470 | 0, 0, NULL); |
| 2471 | if (!xfs_attri_cache) |
| 2472 | goto out_destroy_attrd_cache; |
| 2473 | |
| 2474 | xfs_iunlink_cache = kmem_cache_create("xfs_iul_item", |
| 2475 | sizeof(struct xfs_iunlink_item), |
| 2476 | 0, 0, NULL); |
| 2477 | if (!xfs_iunlink_cache) |
| 2478 | goto out_destroy_attri_cache; |
| 2479 | |
| 2480 | xfs_xmd_cache = kmem_cache_create("xfs_xmd_item", |
| 2481 | sizeof(struct xfs_xmd_log_item), |
| 2482 | 0, 0, NULL); |
| 2483 | if (!xfs_xmd_cache) |
| 2484 | goto out_destroy_iul_cache; |
| 2485 | |
| 2486 | xfs_xmi_cache = kmem_cache_create("xfs_xmi_item", |
| 2487 | sizeof(struct xfs_xmi_log_item), |
| 2488 | 0, 0, NULL); |
| 2489 | if (!xfs_xmi_cache) |
| 2490 | goto out_destroy_xmd_cache; |
| 2491 | |
| 2492 | xfs_parent_args_cache = kmem_cache_create("xfs_parent_args", |
| 2493 | sizeof(struct xfs_parent_args), |
| 2494 | 0, 0, NULL); |
| 2495 | if (!xfs_parent_args_cache) |
| 2496 | goto out_destroy_xmi_cache; |
| 2497 | |
| 2498 | return 0; |
| 2499 | |
| 2500 | out_destroy_xmi_cache: |
| 2501 | kmem_cache_destroy(xfs_xmi_cache); |
| 2502 | out_destroy_xmd_cache: |
| 2503 | kmem_cache_destroy(xfs_xmd_cache); |
| 2504 | out_destroy_iul_cache: |
| 2505 | kmem_cache_destroy(xfs_iunlink_cache); |
| 2506 | out_destroy_attri_cache: |
| 2507 | kmem_cache_destroy(xfs_attri_cache); |
| 2508 | out_destroy_attrd_cache: |
| 2509 | kmem_cache_destroy(xfs_attrd_cache); |
| 2510 | out_destroy_bui_cache: |
| 2511 | kmem_cache_destroy(xfs_bui_cache); |
| 2512 | out_destroy_bud_cache: |
| 2513 | kmem_cache_destroy(xfs_bud_cache); |
| 2514 | out_destroy_cui_cache: |
| 2515 | kmem_cache_destroy(xfs_cui_cache); |
| 2516 | out_destroy_cud_cache: |
| 2517 | kmem_cache_destroy(xfs_cud_cache); |
| 2518 | out_destroy_rui_cache: |
| 2519 | kmem_cache_destroy(xfs_rui_cache); |
| 2520 | out_destroy_rud_cache: |
| 2521 | kmem_cache_destroy(xfs_rud_cache); |
| 2522 | out_destroy_icreate_cache: |
| 2523 | kmem_cache_destroy(xfs_icreate_cache); |
| 2524 | out_destroy_ili_cache: |
| 2525 | kmem_cache_destroy(xfs_ili_cache); |
| 2526 | out_destroy_inode_cache: |
| 2527 | kmem_cache_destroy(xfs_inode_cache); |
| 2528 | out_destroy_efi_cache: |
| 2529 | kmem_cache_destroy(xfs_efi_cache); |
| 2530 | out_destroy_efd_cache: |
| 2531 | kmem_cache_destroy(xfs_efd_cache); |
| 2532 | out_destroy_buf_item_cache: |
| 2533 | kmem_cache_destroy(xfs_buf_item_cache); |
| 2534 | out_destroy_trans_cache: |
| 2535 | kmem_cache_destroy(xfs_trans_cache); |
| 2536 | out_destroy_ifork_cache: |
| 2537 | kmem_cache_destroy(xfs_ifork_cache); |
| 2538 | out_destroy_da_state_cache: |
| 2539 | kmem_cache_destroy(xfs_da_state_cache); |
| 2540 | out_destroy_defer_item_cache: |
| 2541 | xfs_defer_destroy_item_caches(); |
| 2542 | out_destroy_rcbagbt_cur_cache: |
| 2543 | rcbagbt_destroy_cur_cache(); |
| 2544 | out_destroy_btree_cur_cache: |
| 2545 | xfs_btree_destroy_cur_caches(); |
| 2546 | out_destroy_log_ticket_cache: |
| 2547 | kmem_cache_destroy(xfs_log_ticket_cache); |
| 2548 | out_destroy_buf_cache: |
| 2549 | kmem_cache_destroy(xfs_buf_cache); |
| 2550 | out: |
| 2551 | return -ENOMEM; |
| 2552 | } |
| 2553 | |
| 2554 | STATIC void |
| 2555 | xfs_destroy_caches(void) |
| 2556 | { |
| 2557 | /* |
| 2558 | * Make sure all delayed rcu free are flushed before we |
| 2559 | * destroy caches. |
| 2560 | */ |
| 2561 | rcu_barrier(); |
| 2562 | kmem_cache_destroy(xfs_parent_args_cache); |
| 2563 | kmem_cache_destroy(xfs_xmd_cache); |
| 2564 | kmem_cache_destroy(xfs_xmi_cache); |
| 2565 | kmem_cache_destroy(xfs_iunlink_cache); |
| 2566 | kmem_cache_destroy(xfs_attri_cache); |
| 2567 | kmem_cache_destroy(xfs_attrd_cache); |
| 2568 | kmem_cache_destroy(xfs_bui_cache); |
| 2569 | kmem_cache_destroy(xfs_bud_cache); |
| 2570 | kmem_cache_destroy(xfs_cui_cache); |
| 2571 | kmem_cache_destroy(xfs_cud_cache); |
| 2572 | kmem_cache_destroy(xfs_rui_cache); |
| 2573 | kmem_cache_destroy(xfs_rud_cache); |
| 2574 | kmem_cache_destroy(xfs_icreate_cache); |
| 2575 | kmem_cache_destroy(xfs_ili_cache); |
| 2576 | kmem_cache_destroy(xfs_inode_cache); |
| 2577 | kmem_cache_destroy(xfs_efi_cache); |
| 2578 | kmem_cache_destroy(xfs_efd_cache); |
| 2579 | kmem_cache_destroy(xfs_buf_item_cache); |
| 2580 | kmem_cache_destroy(xfs_trans_cache); |
| 2581 | kmem_cache_destroy(xfs_ifork_cache); |
| 2582 | kmem_cache_destroy(xfs_da_state_cache); |
| 2583 | xfs_defer_destroy_item_caches(); |
| 2584 | rcbagbt_destroy_cur_cache(); |
| 2585 | xfs_btree_destroy_cur_caches(); |
| 2586 | kmem_cache_destroy(xfs_log_ticket_cache); |
| 2587 | kmem_cache_destroy(xfs_buf_cache); |
| 2588 | } |
| 2589 | |
| 2590 | STATIC int __init |
| 2591 | xfs_init_workqueues(void) |
| 2592 | { |
| 2593 | /* |
| 2594 | * The allocation workqueue can be used in memory reclaim situations |
| 2595 | * (writepage path), and parallelism is only limited by the number of |
| 2596 | * AGs in all the filesystems mounted. Hence use the default large |
| 2597 | * max_active value for this workqueue. |
| 2598 | */ |
| 2599 | xfs_alloc_wq = alloc_workqueue("xfsalloc", |
| 2600 | XFS_WQFLAGS(WQ_MEM_RECLAIM | WQ_FREEZABLE), 0); |
| 2601 | if (!xfs_alloc_wq) |
| 2602 | return -ENOMEM; |
| 2603 | |
| 2604 | xfs_discard_wq = alloc_workqueue("xfsdiscard", XFS_WQFLAGS(WQ_UNBOUND), |
| 2605 | 0); |
| 2606 | if (!xfs_discard_wq) |
| 2607 | goto out_free_alloc_wq; |
| 2608 | |
| 2609 | return 0; |
| 2610 | out_free_alloc_wq: |
| 2611 | destroy_workqueue(xfs_alloc_wq); |
| 2612 | return -ENOMEM; |
| 2613 | } |
| 2614 | |
| 2615 | STATIC void |
| 2616 | xfs_destroy_workqueues(void) |
| 2617 | { |
| 2618 | destroy_workqueue(xfs_discard_wq); |
| 2619 | destroy_workqueue(xfs_alloc_wq); |
| 2620 | } |
| 2621 | |
| 2622 | STATIC int __init |
| 2623 | init_xfs_fs(void) |
| 2624 | { |
| 2625 | int error; |
| 2626 | |
| 2627 | xfs_check_ondisk_structs(); |
| 2628 | |
| 2629 | error = xfs_dahash_test(); |
| 2630 | if (error) |
| 2631 | return error; |
| 2632 | |
| 2633 | printk(KERN_INFO XFS_VERSION_STRING " with " |
| 2634 | XFS_BUILD_OPTIONS " enabled\n"); |
| 2635 | |
| 2636 | xfs_dir_startup(); |
| 2637 | |
| 2638 | error = xfs_init_caches(); |
| 2639 | if (error) |
| 2640 | goto out; |
| 2641 | |
| 2642 | error = xfs_init_workqueues(); |
| 2643 | if (error) |
| 2644 | goto out_destroy_caches; |
| 2645 | |
| 2646 | error = xfs_mru_cache_init(); |
| 2647 | if (error) |
| 2648 | goto out_destroy_wq; |
| 2649 | |
| 2650 | error = xfs_init_procfs(); |
| 2651 | if (error) |
| 2652 | goto out_mru_cache_uninit; |
| 2653 | |
| 2654 | error = xfs_sysctl_register(); |
| 2655 | if (error) |
| 2656 | goto out_cleanup_procfs; |
| 2657 | |
| 2658 | xfs_debugfs = xfs_debugfs_mkdir("xfs", NULL); |
| 2659 | |
| 2660 | xfs_kset = kset_create_and_add("xfs", NULL, fs_kobj); |
| 2661 | if (!xfs_kset) { |
| 2662 | error = -ENOMEM; |
| 2663 | goto out_debugfs_unregister; |
| 2664 | } |
| 2665 | |
| 2666 | xfsstats.xs_kobj.kobject.kset = xfs_kset; |
| 2667 | |
| 2668 | xfsstats.xs_stats = alloc_percpu(struct xfsstats); |
| 2669 | if (!xfsstats.xs_stats) { |
| 2670 | error = -ENOMEM; |
| 2671 | goto out_kset_unregister; |
| 2672 | } |
| 2673 | |
| 2674 | error = xfs_sysfs_init(&xfsstats.xs_kobj, &xfs_stats_ktype, NULL, |
| 2675 | "stats"); |
| 2676 | if (error) |
| 2677 | goto out_free_stats; |
| 2678 | |
| 2679 | error = xchk_global_stats_setup(xfs_debugfs); |
| 2680 | if (error) |
| 2681 | goto out_remove_stats_kobj; |
| 2682 | |
| 2683 | #ifdef DEBUG |
| 2684 | xfs_dbg_kobj.kobject.kset = xfs_kset; |
| 2685 | error = xfs_sysfs_init(&xfs_dbg_kobj, &xfs_dbg_ktype, NULL, "debug"); |
| 2686 | if (error) |
| 2687 | goto out_remove_scrub_stats; |
| 2688 | #endif |
| 2689 | |
| 2690 | error = xfs_qm_init(); |
| 2691 | if (error) |
| 2692 | goto out_remove_dbg_kobj; |
| 2693 | |
| 2694 | error = register_filesystem(&xfs_fs_type); |
| 2695 | if (error) |
| 2696 | goto out_qm_exit; |
| 2697 | return 0; |
| 2698 | |
| 2699 | out_qm_exit: |
| 2700 | xfs_qm_exit(); |
| 2701 | out_remove_dbg_kobj: |
| 2702 | #ifdef DEBUG |
| 2703 | xfs_sysfs_del(&xfs_dbg_kobj); |
| 2704 | out_remove_scrub_stats: |
| 2705 | #endif |
| 2706 | xchk_global_stats_teardown(); |
| 2707 | out_remove_stats_kobj: |
| 2708 | xfs_sysfs_del(&xfsstats.xs_kobj); |
| 2709 | out_free_stats: |
| 2710 | free_percpu(xfsstats.xs_stats); |
| 2711 | out_kset_unregister: |
| 2712 | kset_unregister(xfs_kset); |
| 2713 | out_debugfs_unregister: |
| 2714 | debugfs_remove(xfs_debugfs); |
| 2715 | xfs_sysctl_unregister(); |
| 2716 | out_cleanup_procfs: |
| 2717 | xfs_cleanup_procfs(); |
| 2718 | out_mru_cache_uninit: |
| 2719 | xfs_mru_cache_uninit(); |
| 2720 | out_destroy_wq: |
| 2721 | xfs_destroy_workqueues(); |
| 2722 | out_destroy_caches: |
| 2723 | xfs_destroy_caches(); |
| 2724 | out: |
| 2725 | return error; |
| 2726 | } |
| 2727 | |
| 2728 | STATIC void __exit |
| 2729 | exit_xfs_fs(void) |
| 2730 | { |
| 2731 | xfs_qm_exit(); |
| 2732 | unregister_filesystem(&xfs_fs_type); |
| 2733 | #ifdef DEBUG |
| 2734 | xfs_sysfs_del(&xfs_dbg_kobj); |
| 2735 | #endif |
| 2736 | xchk_global_stats_teardown(); |
| 2737 | xfs_sysfs_del(&xfsstats.xs_kobj); |
| 2738 | free_percpu(xfsstats.xs_stats); |
| 2739 | kset_unregister(xfs_kset); |
| 2740 | debugfs_remove(xfs_debugfs); |
| 2741 | xfs_sysctl_unregister(); |
| 2742 | xfs_cleanup_procfs(); |
| 2743 | xfs_mru_cache_uninit(); |
| 2744 | xfs_destroy_workqueues(); |
| 2745 | xfs_destroy_caches(); |
| 2746 | xfs_uuid_table_free(); |
| 2747 | } |
| 2748 | |
| 2749 | module_init(init_xfs_fs); |
| 2750 | module_exit(exit_xfs_fs); |
| 2751 | |
| 2752 | MODULE_AUTHOR("Silicon Graphics, Inc."); |
| 2753 | MODULE_DESCRIPTION(XFS_VERSION_STRING " with " XFS_BUILD_OPTIONS " enabled"); |
| 2754 | MODULE_LICENSE("GPL"); |