1789Sahrens /* 2789Sahrens * CDDL HEADER START 3789Sahrens * 4789Sahrens * The contents of this file are subject to the terms of the 51484Sek110237 * Common Development and Distribution License (the "License"). 61484Sek110237 * You may not use this file except in compliance with the License. 7789Sahrens * 8789Sahrens * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE 9789Sahrens * or http://www.opensolaris.org/os/licensing. 10789Sahrens * See the License for the specific language governing permissions 11789Sahrens * and limitations under the License. 12789Sahrens * 13789Sahrens * When distributing Covered Code, include this CDDL HEADER in each 14789Sahrens * file and include the License file at usr/src/OPENSOLARIS.LICENSE. 15789Sahrens * If applicable, add the following below this CDDL HEADER, with the 16789Sahrens * fields enclosed by brackets "[]" replaced with your own identifying 17789Sahrens * information: Portions Copyright [yyyy] [name of copyright owner] 18789Sahrens * 19789Sahrens * CDDL HEADER END 20789Sahrens */ 21789Sahrens /* 226083Sek110237 * Copyright 2008 Sun Microsystems, Inc. All rights reserved. 23789Sahrens * Use is subject to license terms. 24789Sahrens */ 25789Sahrens 263246Sck153898 #pragma ident "%Z%%M% %I% %E% SMI" 27789Sahrens 28789Sahrens #include <sys/types.h> 29789Sahrens #include <sys/param.h> 30789Sahrens #include <sys/systm.h> 31789Sahrens #include <sys/sysmacros.h> 32789Sahrens #include <sys/kmem.h> 33789Sahrens #include <sys/pathname.h> 34789Sahrens #include <sys/vnode.h> 35789Sahrens #include <sys/vfs.h> 363898Srsb #include <sys/vfs_opreg.h> 37789Sahrens #include <sys/mntent.h> 38789Sahrens #include <sys/mount.h> 39789Sahrens #include <sys/cmn_err.h> 40789Sahrens #include "fs/fs_subr.h" 41789Sahrens #include <sys/zfs_znode.h> 423461Sahrens #include <sys/zfs_dir.h> 43789Sahrens #include <sys/zil.h> 44789Sahrens #include <sys/fs/zfs.h> 45789Sahrens #include <sys/dmu.h> 46789Sahrens #include <sys/dsl_prop.h> 473912Slling #include <sys/dsl_dataset.h> 484543Smarks #include <sys/dsl_deleg.h> 49789Sahrens #include <sys/spa.h> 50789Sahrens #include <sys/zap.h> 51789Sahrens #include <sys/varargs.h> 52789Sahrens #include <sys/policy.h> 53789Sahrens #include <sys/atomic.h> 54789Sahrens #include <sys/mkdev.h> 55789Sahrens #include <sys/modctl.h> 564543Smarks #include <sys/refstr.h> 57789Sahrens #include <sys/zfs_ioctl.h> 58789Sahrens #include <sys/zfs_ctldir.h> 595331Samw #include <sys/zfs_fuid.h> 601544Seschrock #include <sys/bootconf.h> 61849Sbonwick #include <sys/sunddi.h> 621484Sek110237 #include <sys/dnlc.h> 635326Sek110237 #include <sys/dmu_objset.h> 646423Sgw25295 #include <sys/spa_boot.h> 65789Sahrens 66789Sahrens int zfsfstype; 67789Sahrens vfsops_t *zfs_vfsops = NULL; 68849Sbonwick static major_t zfs_major; 69789Sahrens static minor_t zfs_minor; 70789Sahrens static kmutex_t zfs_dev_mtx; 71789Sahrens 72789Sahrens static int zfs_mount(vfs_t *vfsp, vnode_t *mvp, struct mounta *uap, cred_t *cr); 73789Sahrens static int zfs_umount(vfs_t *vfsp, int fflag, cred_t *cr); 741544Seschrock static int zfs_mountroot(vfs_t *vfsp, enum whymountroot); 75789Sahrens static int zfs_root(vfs_t *vfsp, vnode_t **vpp); 76789Sahrens static int zfs_statvfs(vfs_t *vfsp, struct statvfs64 *statp); 77789Sahrens static int zfs_vget(vfs_t *vfsp, vnode_t **vpp, fid_t *fidp); 78789Sahrens static void zfs_freevfs(vfs_t *vfsp); 79789Sahrens 80789Sahrens static const fs_operation_def_t zfs_vfsops_template[] = { 813898Srsb VFSNAME_MOUNT, { .vfs_mount = zfs_mount }, 823898Srsb VFSNAME_MOUNTROOT, { .vfs_mountroot = zfs_mountroot }, 833898Srsb VFSNAME_UNMOUNT, { .vfs_unmount = zfs_umount }, 843898Srsb VFSNAME_ROOT, { .vfs_root = zfs_root }, 853898Srsb VFSNAME_STATVFS, { .vfs_statvfs = zfs_statvfs }, 863898Srsb VFSNAME_SYNC, { .vfs_sync = zfs_sync }, 873898Srsb VFSNAME_VGET, { .vfs_vget = zfs_vget }, 883898Srsb VFSNAME_FREEVFS, { .vfs_freevfs = zfs_freevfs }, 893898Srsb NULL, NULL 90789Sahrens }; 91789Sahrens 92789Sahrens static const fs_operation_def_t zfs_vfsops_eio_template[] = { 933898Srsb VFSNAME_FREEVFS, { .vfs_freevfs = zfs_freevfs }, 943898Srsb NULL, NULL 95789Sahrens }; 96789Sahrens 97789Sahrens /* 98789Sahrens * We need to keep a count of active fs's. 99789Sahrens * This is necessary to prevent our module 100789Sahrens * from being unloaded after a umount -f 101789Sahrens */ 102789Sahrens static uint32_t zfs_active_fs_count = 0; 103789Sahrens 104789Sahrens static char *noatime_cancel[] = { MNTOPT_ATIME, NULL }; 105789Sahrens static char *atime_cancel[] = { MNTOPT_NOATIME, NULL }; 1063234Sck153898 static char *noxattr_cancel[] = { MNTOPT_XATTR, NULL }; 1073234Sck153898 static char *xattr_cancel[] = { MNTOPT_NOXATTR, NULL }; 108789Sahrens 1093234Sck153898 /* 1104596Slling * MO_DEFAULT is not used since the default value is determined 1114596Slling * by the equivalent property. 1123234Sck153898 */ 113789Sahrens static mntopt_t mntopts[] = { 1143234Sck153898 { MNTOPT_NOXATTR, noxattr_cancel, NULL, 0, NULL }, 1153234Sck153898 { MNTOPT_XATTR, xattr_cancel, NULL, 0, NULL }, 1164596Slling { MNTOPT_NOATIME, noatime_cancel, NULL, 0, NULL }, 117789Sahrens { MNTOPT_ATIME, atime_cancel, NULL, 0, NULL } 118789Sahrens }; 119789Sahrens 120789Sahrens static mntopts_t zfs_mntopts = { 121789Sahrens sizeof (mntopts) / sizeof (mntopt_t), 122789Sahrens mntopts 123789Sahrens }; 124789Sahrens 125789Sahrens /*ARGSUSED*/ 126789Sahrens int 127789Sahrens zfs_sync(vfs_t *vfsp, short flag, cred_t *cr) 128789Sahrens { 129789Sahrens /* 130789Sahrens * Data integrity is job one. We don't want a compromised kernel 131789Sahrens * writing to the storage pool, so we never sync during panic. 132789Sahrens */ 133789Sahrens if (panicstr) 134789Sahrens return (0); 135789Sahrens 136789Sahrens /* 137789Sahrens * SYNC_ATTR is used by fsflush() to force old filesystems like UFS 138789Sahrens * to sync metadata, which they would otherwise cache indefinitely. 139789Sahrens * Semantically, the only requirement is that the sync be initiated. 140789Sahrens * The DMU syncs out txgs frequently, so there's nothing to do. 141789Sahrens */ 142789Sahrens if (flag & SYNC_ATTR) 143789Sahrens return (0); 144789Sahrens 145789Sahrens if (vfsp != NULL) { 146789Sahrens /* 147789Sahrens * Sync a specific filesystem. 148789Sahrens */ 149789Sahrens zfsvfs_t *zfsvfs = vfsp->vfs_data; 150789Sahrens 151789Sahrens ZFS_ENTER(zfsvfs); 152789Sahrens if (zfsvfs->z_log != NULL) 1532638Sperrin zil_commit(zfsvfs->z_log, UINT64_MAX, 0); 154789Sahrens else 155789Sahrens txg_wait_synced(dmu_objset_pool(zfsvfs->z_os), 0); 156789Sahrens ZFS_EXIT(zfsvfs); 157789Sahrens } else { 158789Sahrens /* 159789Sahrens * Sync all ZFS filesystems. This is what happens when you 160789Sahrens * run sync(1M). Unlike other filesystems, ZFS honors the 161789Sahrens * request by waiting for all pools to commit all dirty data. 162789Sahrens */ 163789Sahrens spa_sync_allpools(); 164789Sahrens } 165789Sahrens 166789Sahrens return (0); 167789Sahrens } 168789Sahrens 1691544Seschrock static int 1701544Seschrock zfs_create_unique_device(dev_t *dev) 1711544Seschrock { 1721544Seschrock major_t new_major; 1731544Seschrock 1741544Seschrock do { 1751544Seschrock ASSERT3U(zfs_minor, <=, MAXMIN32); 1761544Seschrock minor_t start = zfs_minor; 1771544Seschrock do { 1781544Seschrock mutex_enter(&zfs_dev_mtx); 1791544Seschrock if (zfs_minor >= MAXMIN32) { 1801544Seschrock /* 1811544Seschrock * If we're still using the real major 1821544Seschrock * keep out of /dev/zfs and /dev/zvol minor 1831544Seschrock * number space. If we're using a getudev()'ed 1841544Seschrock * major number, we can use all of its minors. 1851544Seschrock */ 1861544Seschrock if (zfs_major == ddi_name_to_major(ZFS_DRIVER)) 1871544Seschrock zfs_minor = ZFS_MIN_MINOR; 1881544Seschrock else 1891544Seschrock zfs_minor = 0; 1901544Seschrock } else { 1911544Seschrock zfs_minor++; 1921544Seschrock } 1931544Seschrock *dev = makedevice(zfs_major, zfs_minor); 1941544Seschrock mutex_exit(&zfs_dev_mtx); 1951544Seschrock } while (vfs_devismounted(*dev) && zfs_minor != start); 1961544Seschrock if (zfs_minor == start) { 1971544Seschrock /* 1981544Seschrock * We are using all ~262,000 minor numbers for the 1991544Seschrock * current major number. Create a new major number. 2001544Seschrock */ 2011544Seschrock if ((new_major = getudev()) == (major_t)-1) { 2021544Seschrock cmn_err(CE_WARN, 2031544Seschrock "zfs_mount: Can't get unique major " 2041544Seschrock "device number."); 2051544Seschrock return (-1); 2061544Seschrock } 2071544Seschrock mutex_enter(&zfs_dev_mtx); 2081544Seschrock zfs_major = new_major; 2091544Seschrock zfs_minor = 0; 2101544Seschrock 2111544Seschrock mutex_exit(&zfs_dev_mtx); 2121544Seschrock } else { 2131544Seschrock break; 2141544Seschrock } 2151544Seschrock /* CONSTANTCONDITION */ 2161544Seschrock } while (1); 2171544Seschrock 2181544Seschrock return (0); 2191544Seschrock } 2201544Seschrock 221789Sahrens static void 222789Sahrens atime_changed_cb(void *arg, uint64_t newval) 223789Sahrens { 224789Sahrens zfsvfs_t *zfsvfs = arg; 225789Sahrens 226789Sahrens if (newval == TRUE) { 227789Sahrens zfsvfs->z_atime = TRUE; 228789Sahrens vfs_clearmntopt(zfsvfs->z_vfs, MNTOPT_NOATIME); 229789Sahrens vfs_setmntopt(zfsvfs->z_vfs, MNTOPT_ATIME, NULL, 0); 230789Sahrens } else { 231789Sahrens zfsvfs->z_atime = FALSE; 232789Sahrens vfs_clearmntopt(zfsvfs->z_vfs, MNTOPT_ATIME); 233789Sahrens vfs_setmntopt(zfsvfs->z_vfs, MNTOPT_NOATIME, NULL, 0); 234789Sahrens } 235789Sahrens } 236789Sahrens 237789Sahrens static void 2383234Sck153898 xattr_changed_cb(void *arg, uint64_t newval) 2393234Sck153898 { 2403234Sck153898 zfsvfs_t *zfsvfs = arg; 2413234Sck153898 2423234Sck153898 if (newval == TRUE) { 2433234Sck153898 /* XXX locking on vfs_flag? */ 2443234Sck153898 zfsvfs->z_vfs->vfs_flag |= VFS_XATTR; 2453234Sck153898 vfs_clearmntopt(zfsvfs->z_vfs, MNTOPT_NOXATTR); 2463234Sck153898 vfs_setmntopt(zfsvfs->z_vfs, MNTOPT_XATTR, NULL, 0); 2473234Sck153898 } else { 2483234Sck153898 /* XXX locking on vfs_flag? */ 2493234Sck153898 zfsvfs->z_vfs->vfs_flag &= ~VFS_XATTR; 2503234Sck153898 vfs_clearmntopt(zfsvfs->z_vfs, MNTOPT_XATTR); 2513234Sck153898 vfs_setmntopt(zfsvfs->z_vfs, MNTOPT_NOXATTR, NULL, 0); 2523234Sck153898 } 2533234Sck153898 } 2543234Sck153898 2553234Sck153898 static void 256789Sahrens blksz_changed_cb(void *arg, uint64_t newval) 257789Sahrens { 258789Sahrens zfsvfs_t *zfsvfs = arg; 259789Sahrens 260789Sahrens if (newval < SPA_MINBLOCKSIZE || 261789Sahrens newval > SPA_MAXBLOCKSIZE || !ISP2(newval)) 262789Sahrens newval = SPA_MAXBLOCKSIZE; 263789Sahrens 264789Sahrens zfsvfs->z_max_blksz = newval; 265789Sahrens zfsvfs->z_vfs->vfs_bsize = newval; 266789Sahrens } 267789Sahrens 268789Sahrens static void 269789Sahrens readonly_changed_cb(void *arg, uint64_t newval) 270789Sahrens { 271789Sahrens zfsvfs_t *zfsvfs = arg; 272789Sahrens 273789Sahrens if (newval) { 274789Sahrens /* XXX locking on vfs_flag? */ 275789Sahrens zfsvfs->z_vfs->vfs_flag |= VFS_RDONLY; 276789Sahrens vfs_clearmntopt(zfsvfs->z_vfs, MNTOPT_RW); 277789Sahrens vfs_setmntopt(zfsvfs->z_vfs, MNTOPT_RO, NULL, 0); 278789Sahrens } else { 279789Sahrens /* XXX locking on vfs_flag? */ 280789Sahrens zfsvfs->z_vfs->vfs_flag &= ~VFS_RDONLY; 281789Sahrens vfs_clearmntopt(zfsvfs->z_vfs, MNTOPT_RO); 282789Sahrens vfs_setmntopt(zfsvfs->z_vfs, MNTOPT_RW, NULL, 0); 283789Sahrens } 284789Sahrens } 285789Sahrens 286789Sahrens static void 287789Sahrens devices_changed_cb(void *arg, uint64_t newval) 288789Sahrens { 289789Sahrens zfsvfs_t *zfsvfs = arg; 290789Sahrens 291789Sahrens if (newval == FALSE) { 292789Sahrens zfsvfs->z_vfs->vfs_flag |= VFS_NODEVICES; 293789Sahrens vfs_clearmntopt(zfsvfs->z_vfs, MNTOPT_DEVICES); 294789Sahrens vfs_setmntopt(zfsvfs->z_vfs, MNTOPT_NODEVICES, NULL, 0); 295789Sahrens } else { 296789Sahrens zfsvfs->z_vfs->vfs_flag &= ~VFS_NODEVICES; 297789Sahrens vfs_clearmntopt(zfsvfs->z_vfs, MNTOPT_NODEVICES); 298789Sahrens vfs_setmntopt(zfsvfs->z_vfs, MNTOPT_DEVICES, NULL, 0); 299789Sahrens } 300789Sahrens } 301789Sahrens 302789Sahrens static void 303789Sahrens setuid_changed_cb(void *arg, uint64_t newval) 304789Sahrens { 305789Sahrens zfsvfs_t *zfsvfs = arg; 306789Sahrens 307789Sahrens if (newval == FALSE) { 308789Sahrens zfsvfs->z_vfs->vfs_flag |= VFS_NOSETUID; 309789Sahrens vfs_clearmntopt(zfsvfs->z_vfs, MNTOPT_SETUID); 310789Sahrens vfs_setmntopt(zfsvfs->z_vfs, MNTOPT_NOSETUID, NULL, 0); 311789Sahrens } else { 312789Sahrens zfsvfs->z_vfs->vfs_flag &= ~VFS_NOSETUID; 313789Sahrens vfs_clearmntopt(zfsvfs->z_vfs, MNTOPT_NOSETUID); 314789Sahrens vfs_setmntopt(zfsvfs->z_vfs, MNTOPT_SETUID, NULL, 0); 315789Sahrens } 316789Sahrens } 317789Sahrens 318789Sahrens static void 319789Sahrens exec_changed_cb(void *arg, uint64_t newval) 320789Sahrens { 321789Sahrens zfsvfs_t *zfsvfs = arg; 322789Sahrens 323789Sahrens if (newval == FALSE) { 324789Sahrens zfsvfs->z_vfs->vfs_flag |= VFS_NOEXEC; 325789Sahrens vfs_clearmntopt(zfsvfs->z_vfs, MNTOPT_EXEC); 326789Sahrens vfs_setmntopt(zfsvfs->z_vfs, MNTOPT_NOEXEC, NULL, 0); 327789Sahrens } else { 328789Sahrens zfsvfs->z_vfs->vfs_flag &= ~VFS_NOEXEC; 329789Sahrens vfs_clearmntopt(zfsvfs->z_vfs, MNTOPT_NOEXEC); 330789Sahrens vfs_setmntopt(zfsvfs->z_vfs, MNTOPT_EXEC, NULL, 0); 331789Sahrens } 332789Sahrens } 333789Sahrens 3345331Samw /* 3355331Samw * The nbmand mount option can be changed at mount time. 3365331Samw * We can't allow it to be toggled on live file systems or incorrect 3375331Samw * behavior may be seen from cifs clients 3385331Samw * 3395331Samw * This property isn't registered via dsl_prop_register(), but this callback 3405331Samw * will be called when a file system is first mounted 3415331Samw */ 3425331Samw static void 3435331Samw nbmand_changed_cb(void *arg, uint64_t newval) 3445331Samw { 3455331Samw zfsvfs_t *zfsvfs = arg; 3465331Samw if (newval == FALSE) { 3475331Samw vfs_clearmntopt(zfsvfs->z_vfs, MNTOPT_NBMAND); 3485331Samw vfs_setmntopt(zfsvfs->z_vfs, MNTOPT_NONBMAND, NULL, 0); 3495331Samw } else { 3505331Samw vfs_clearmntopt(zfsvfs->z_vfs, MNTOPT_NONBMAND); 3515331Samw vfs_setmntopt(zfsvfs->z_vfs, MNTOPT_NBMAND, NULL, 0); 3525331Samw } 3535331Samw } 3545331Samw 355789Sahrens static void 356789Sahrens snapdir_changed_cb(void *arg, uint64_t newval) 357789Sahrens { 358789Sahrens zfsvfs_t *zfsvfs = arg; 359789Sahrens 360789Sahrens zfsvfs->z_show_ctldir = newval; 361789Sahrens } 362789Sahrens 363789Sahrens static void 3645331Samw vscan_changed_cb(void *arg, uint64_t newval) 3655331Samw { 3665331Samw zfsvfs_t *zfsvfs = arg; 3675331Samw 3685331Samw zfsvfs->z_vscan = newval; 3695331Samw } 3705331Samw 3715331Samw static void 372789Sahrens acl_mode_changed_cb(void *arg, uint64_t newval) 373789Sahrens { 374789Sahrens zfsvfs_t *zfsvfs = arg; 375789Sahrens 376789Sahrens zfsvfs->z_acl_mode = newval; 377789Sahrens } 378789Sahrens 379789Sahrens static void 380789Sahrens acl_inherit_changed_cb(void *arg, uint64_t newval) 381789Sahrens { 382789Sahrens zfsvfs_t *zfsvfs = arg; 383789Sahrens 384789Sahrens zfsvfs->z_acl_inherit = newval; 385789Sahrens } 386789Sahrens 3871544Seschrock static int 3881544Seschrock zfs_register_callbacks(vfs_t *vfsp) 3891544Seschrock { 3901544Seschrock struct dsl_dataset *ds = NULL; 3911544Seschrock objset_t *os = NULL; 3921544Seschrock zfsvfs_t *zfsvfs = NULL; 3935331Samw uint64_t nbmand; 3945331Samw int readonly, do_readonly = B_FALSE; 3955331Samw int setuid, do_setuid = B_FALSE; 3965331Samw int exec, do_exec = B_FALSE; 3975331Samw int devices, do_devices = B_FALSE; 3985331Samw int xattr, do_xattr = B_FALSE; 3995331Samw int atime, do_atime = B_FALSE; 4001544Seschrock int error = 0; 4011544Seschrock 4021544Seschrock ASSERT(vfsp); 4031544Seschrock zfsvfs = vfsp->vfs_data; 4041544Seschrock ASSERT(zfsvfs); 4051544Seschrock os = zfsvfs->z_os; 4061544Seschrock 4071544Seschrock /* 4081544Seschrock * The act of registering our callbacks will destroy any mount 4091544Seschrock * options we may have. In order to enable temporary overrides 4103234Sck153898 * of mount options, we stash away the current values and 4111544Seschrock * restore them after we register the callbacks. 4121544Seschrock */ 4131544Seschrock if (vfs_optionisset(vfsp, MNTOPT_RO, NULL)) { 4141544Seschrock readonly = B_TRUE; 4151544Seschrock do_readonly = B_TRUE; 4161544Seschrock } else if (vfs_optionisset(vfsp, MNTOPT_RW, NULL)) { 4171544Seschrock readonly = B_FALSE; 4181544Seschrock do_readonly = B_TRUE; 4191544Seschrock } 4201544Seschrock if (vfs_optionisset(vfsp, MNTOPT_NOSUID, NULL)) { 4211544Seschrock devices = B_FALSE; 4221544Seschrock setuid = B_FALSE; 4231544Seschrock do_devices = B_TRUE; 4241544Seschrock do_setuid = B_TRUE; 4251544Seschrock } else { 4261544Seschrock if (vfs_optionisset(vfsp, MNTOPT_NODEVICES, NULL)) { 4271544Seschrock devices = B_FALSE; 4281544Seschrock do_devices = B_TRUE; 4293912Slling } else if (vfs_optionisset(vfsp, MNTOPT_DEVICES, NULL)) { 4301544Seschrock devices = B_TRUE; 4311544Seschrock do_devices = B_TRUE; 4321544Seschrock } 4331544Seschrock 4341544Seschrock if (vfs_optionisset(vfsp, MNTOPT_NOSETUID, NULL)) { 4351544Seschrock setuid = B_FALSE; 4361544Seschrock do_setuid = B_TRUE; 4371544Seschrock } else if (vfs_optionisset(vfsp, MNTOPT_SETUID, NULL)) { 4381544Seschrock setuid = B_TRUE; 4391544Seschrock do_setuid = B_TRUE; 4401544Seschrock } 4411544Seschrock } 4421544Seschrock if (vfs_optionisset(vfsp, MNTOPT_NOEXEC, NULL)) { 4431544Seschrock exec = B_FALSE; 4441544Seschrock do_exec = B_TRUE; 4451544Seschrock } else if (vfs_optionisset(vfsp, MNTOPT_EXEC, NULL)) { 4461544Seschrock exec = B_TRUE; 4471544Seschrock do_exec = B_TRUE; 4481544Seschrock } 4493234Sck153898 if (vfs_optionisset(vfsp, MNTOPT_NOXATTR, NULL)) { 4503234Sck153898 xattr = B_FALSE; 4513234Sck153898 do_xattr = B_TRUE; 4523234Sck153898 } else if (vfs_optionisset(vfsp, MNTOPT_XATTR, NULL)) { 4533234Sck153898 xattr = B_TRUE; 4543234Sck153898 do_xattr = B_TRUE; 4553234Sck153898 } 4564596Slling if (vfs_optionisset(vfsp, MNTOPT_NOATIME, NULL)) { 4574596Slling atime = B_FALSE; 4584596Slling do_atime = B_TRUE; 4594596Slling } else if (vfs_optionisset(vfsp, MNTOPT_ATIME, NULL)) { 4604596Slling atime = B_TRUE; 4614596Slling do_atime = B_TRUE; 4624596Slling } 4631544Seschrock 4641544Seschrock /* 4655331Samw * nbmand is a special property. It can only be changed at 4665331Samw * mount time. 4675331Samw * 4685331Samw * This is weird, but it is documented to only be changeable 4695331Samw * at mount time. 4705331Samw */ 4715331Samw if (vfs_optionisset(vfsp, MNTOPT_NONBMAND, NULL)) { 4725331Samw nbmand = B_FALSE; 4735331Samw } else if (vfs_optionisset(vfsp, MNTOPT_NBMAND, NULL)) { 4745331Samw nbmand = B_TRUE; 4755331Samw } else { 4765331Samw char osname[MAXNAMELEN]; 4775331Samw 4785331Samw dmu_objset_name(os, osname); 4795331Samw if (error = dsl_prop_get_integer(osname, "nbmand", &nbmand, 4805331Samw NULL)) 4815331Samw return (error); 4825331Samw } 4835331Samw 4845331Samw /* 4851544Seschrock * Register property callbacks. 4861544Seschrock * 4871544Seschrock * It would probably be fine to just check for i/o error from 4881544Seschrock * the first prop_register(), but I guess I like to go 4891544Seschrock * overboard... 4901544Seschrock */ 4911544Seschrock ds = dmu_objset_ds(os); 4921544Seschrock error = dsl_prop_register(ds, "atime", atime_changed_cb, zfsvfs); 4931544Seschrock error = error ? error : dsl_prop_register(ds, 4943234Sck153898 "xattr", xattr_changed_cb, zfsvfs); 4953234Sck153898 error = error ? error : dsl_prop_register(ds, 4961544Seschrock "recordsize", blksz_changed_cb, zfsvfs); 4971544Seschrock error = error ? error : dsl_prop_register(ds, 4981544Seschrock "readonly", readonly_changed_cb, zfsvfs); 4991544Seschrock error = error ? error : dsl_prop_register(ds, 5001544Seschrock "devices", devices_changed_cb, zfsvfs); 5011544Seschrock error = error ? error : dsl_prop_register(ds, 5021544Seschrock "setuid", setuid_changed_cb, zfsvfs); 5031544Seschrock error = error ? error : dsl_prop_register(ds, 5041544Seschrock "exec", exec_changed_cb, zfsvfs); 5051544Seschrock error = error ? error : dsl_prop_register(ds, 5061544Seschrock "snapdir", snapdir_changed_cb, zfsvfs); 5071544Seschrock error = error ? error : dsl_prop_register(ds, 5081544Seschrock "aclmode", acl_mode_changed_cb, zfsvfs); 5091544Seschrock error = error ? error : dsl_prop_register(ds, 5101544Seschrock "aclinherit", acl_inherit_changed_cb, zfsvfs); 5115331Samw error = error ? error : dsl_prop_register(ds, 5125331Samw "vscan", vscan_changed_cb, zfsvfs); 5131544Seschrock if (error) 5141544Seschrock goto unregister; 5151544Seschrock 5161544Seschrock /* 5171544Seschrock * Invoke our callbacks to restore temporary mount options. 5181544Seschrock */ 5191544Seschrock if (do_readonly) 5201544Seschrock readonly_changed_cb(zfsvfs, readonly); 5211544Seschrock if (do_setuid) 5221544Seschrock setuid_changed_cb(zfsvfs, setuid); 5231544Seschrock if (do_exec) 5241544Seschrock exec_changed_cb(zfsvfs, exec); 5251544Seschrock if (do_devices) 5261544Seschrock devices_changed_cb(zfsvfs, devices); 5273234Sck153898 if (do_xattr) 5283234Sck153898 xattr_changed_cb(zfsvfs, xattr); 5294596Slling if (do_atime) 5304596Slling atime_changed_cb(zfsvfs, atime); 5311544Seschrock 5325331Samw nbmand_changed_cb(zfsvfs, nbmand); 5335331Samw 5341544Seschrock return (0); 5351544Seschrock 5361544Seschrock unregister: 5371544Seschrock /* 5381544Seschrock * We may attempt to unregister some callbacks that are not 5391544Seschrock * registered, but this is OK; it will simply return ENOMSG, 5401544Seschrock * which we will ignore. 5411544Seschrock */ 5421544Seschrock (void) dsl_prop_unregister(ds, "atime", atime_changed_cb, zfsvfs); 5433234Sck153898 (void) dsl_prop_unregister(ds, "xattr", xattr_changed_cb, zfsvfs); 5441544Seschrock (void) dsl_prop_unregister(ds, "recordsize", blksz_changed_cb, zfsvfs); 5451544Seschrock (void) dsl_prop_unregister(ds, "readonly", readonly_changed_cb, zfsvfs); 5461544Seschrock (void) dsl_prop_unregister(ds, "devices", devices_changed_cb, zfsvfs); 5471544Seschrock (void) dsl_prop_unregister(ds, "setuid", setuid_changed_cb, zfsvfs); 5481544Seschrock (void) dsl_prop_unregister(ds, "exec", exec_changed_cb, zfsvfs); 5491544Seschrock (void) dsl_prop_unregister(ds, "snapdir", snapdir_changed_cb, zfsvfs); 5501544Seschrock (void) dsl_prop_unregister(ds, "aclmode", acl_mode_changed_cb, zfsvfs); 5511544Seschrock (void) dsl_prop_unregister(ds, "aclinherit", acl_inherit_changed_cb, 5521544Seschrock zfsvfs); 5535331Samw (void) dsl_prop_unregister(ds, "vscan", vscan_changed_cb, zfsvfs); 5541544Seschrock return (error); 5551544Seschrock 5561544Seschrock } 5571544Seschrock 5581544Seschrock static int 5595326Sek110237 zfsvfs_setup(zfsvfs_t *zfsvfs, boolean_t mounting) 5605326Sek110237 { 5615326Sek110237 uint_t readonly; 5625326Sek110237 int error; 5635326Sek110237 5645326Sek110237 error = zfs_register_callbacks(zfsvfs->z_vfs); 5655326Sek110237 if (error) 5665326Sek110237 return (error); 5675326Sek110237 5685326Sek110237 /* 5695326Sek110237 * Set the objset user_ptr to track its zfsvfs. 5705326Sek110237 */ 5715326Sek110237 mutex_enter(&zfsvfs->z_os->os->os_user_ptr_lock); 5725326Sek110237 dmu_objset_set_user(zfsvfs->z_os, zfsvfs); 5735326Sek110237 mutex_exit(&zfsvfs->z_os->os->os_user_ptr_lock); 5745326Sek110237 5755326Sek110237 /* 5765326Sek110237 * If we are not mounting (ie: online recv), then we don't 5775326Sek110237 * have to worry about replaying the log as we blocked all 5785326Sek110237 * operations out since we closed the ZIL. 5795326Sek110237 */ 5805326Sek110237 if (mounting) { 5815326Sek110237 /* 5825326Sek110237 * During replay we remove the read only flag to 5835326Sek110237 * allow replays to succeed. 5845326Sek110237 */ 5855326Sek110237 readonly = zfsvfs->z_vfs->vfs_flag & VFS_RDONLY; 5865326Sek110237 if (readonly != 0) 5875326Sek110237 zfsvfs->z_vfs->vfs_flag &= ~VFS_RDONLY; 5885326Sek110237 else 5895326Sek110237 zfs_unlinked_drain(zfsvfs); 5905326Sek110237 5915326Sek110237 /* 5925326Sek110237 * Parse and replay the intent log. 5935326Sek110237 * 5945326Sek110237 * Because of ziltest, this must be done after 5955326Sek110237 * zfs_unlinked_drain(). (Further note: ziltest doesn't 5965326Sek110237 * use readonly mounts, where zfs_unlinked_drain() isn't 5975326Sek110237 * called.) This is because ziltest causes spa_sync() 5985326Sek110237 * to think it's committed, but actually it is not, so 5995326Sek110237 * the intent log contains many txg's worth of changes. 6005326Sek110237 * 6015326Sek110237 * In particular, if object N is in the unlinked set in 6025326Sek110237 * the last txg to actually sync, then it could be 6035326Sek110237 * actually freed in a later txg and then reallocated in 6045326Sek110237 * a yet later txg. This would write a "create object 6055326Sek110237 * N" record to the intent log. Normally, this would be 6065326Sek110237 * fine because the spa_sync() would have written out 6075326Sek110237 * the fact that object N is free, before we could write 6085326Sek110237 * the "create object N" intent log record. 6095326Sek110237 * 6105326Sek110237 * But when we are in ziltest mode, we advance the "open 6115326Sek110237 * txg" without actually spa_sync()-ing the changes to 6125326Sek110237 * disk. So we would see that object N is still 6135326Sek110237 * allocated and in the unlinked set, and there is an 6145326Sek110237 * intent log record saying to allocate it. 6155326Sek110237 */ 6165326Sek110237 zil_replay(zfsvfs->z_os, zfsvfs, &zfsvfs->z_assign, 6175326Sek110237 zfs_replay_vector); 6185326Sek110237 6195326Sek110237 zfsvfs->z_vfs->vfs_flag |= readonly; /* restore readonly bit */ 6205326Sek110237 } 6215326Sek110237 6225326Sek110237 if (!zil_disable) 6235326Sek110237 zfsvfs->z_log = zil_open(zfsvfs->z_os, zfs_get_data); 6245326Sek110237 6255326Sek110237 return (0); 6265326Sek110237 } 6275326Sek110237 6286083Sek110237 static void 6296083Sek110237 zfs_freezfsvfs(zfsvfs_t *zfsvfs) 6306083Sek110237 { 6316083Sek110237 mutex_destroy(&zfsvfs->z_znodes_lock); 6326083Sek110237 mutex_destroy(&zfsvfs->z_online_recv_lock); 6336083Sek110237 list_destroy(&zfsvfs->z_all_znodes); 6346083Sek110237 rrw_destroy(&zfsvfs->z_teardown_lock); 6356083Sek110237 rw_destroy(&zfsvfs->z_teardown_inactive_lock); 6366083Sek110237 rw_destroy(&zfsvfs->z_fuid_lock); 6376083Sek110237 kmem_free(zfsvfs, sizeof (zfsvfs_t)); 6386083Sek110237 } 6396083Sek110237 6405326Sek110237 static int 6411544Seschrock zfs_domount(vfs_t *vfsp, char *osname, cred_t *cr) 6421544Seschrock { 6431544Seschrock dev_t mount_dev; 6441544Seschrock uint64_t recordsize, readonly; 6451544Seschrock int error = 0; 6461544Seschrock int mode; 6471544Seschrock zfsvfs_t *zfsvfs; 6481544Seschrock znode_t *zp = NULL; 6491544Seschrock 6501544Seschrock ASSERT(vfsp); 6511544Seschrock ASSERT(osname); 6521544Seschrock 6531544Seschrock /* 6541544Seschrock * Initialize the zfs-specific filesystem structure. 6551544Seschrock * Should probably make this a kmem cache, shuffle fields, 6561544Seschrock * and just bzero up to z_hold_mtx[]. 6571544Seschrock */ 6581544Seschrock zfsvfs = kmem_zalloc(sizeof (zfsvfs_t), KM_SLEEP); 6591544Seschrock zfsvfs->z_vfs = vfsp; 6601544Seschrock zfsvfs->z_parent = zfsvfs; 6611544Seschrock zfsvfs->z_assign = TXG_NOWAIT; 6621544Seschrock zfsvfs->z_max_blksz = SPA_MAXBLOCKSIZE; 6631544Seschrock zfsvfs->z_show_ctldir = ZFS_SNAPDIR_VISIBLE; 6641544Seschrock 6651544Seschrock mutex_init(&zfsvfs->z_znodes_lock, NULL, MUTEX_DEFAULT, NULL); 6666083Sek110237 mutex_init(&zfsvfs->z_online_recv_lock, NULL, MUTEX_DEFAULT, NULL); 6671544Seschrock list_create(&zfsvfs->z_all_znodes, sizeof (znode_t), 6681544Seschrock offsetof(znode_t, z_link_node)); 6695326Sek110237 rrw_init(&zfsvfs->z_teardown_lock); 6705326Sek110237 rw_init(&zfsvfs->z_teardown_inactive_lock, NULL, RW_DEFAULT, NULL); 6715498Stimh rw_init(&zfsvfs->z_fuid_lock, NULL, RW_DEFAULT, NULL); 6721544Seschrock 6731544Seschrock /* Initialize the generic filesystem structure. */ 6741544Seschrock vfsp->vfs_bcount = 0; 6751544Seschrock vfsp->vfs_data = NULL; 6761544Seschrock 6771544Seschrock if (zfs_create_unique_device(&mount_dev) == -1) { 6781544Seschrock error = ENODEV; 6791544Seschrock goto out; 6801544Seschrock } 6811544Seschrock ASSERT(vfs_devismounted(mount_dev) == 0); 6821544Seschrock 6831544Seschrock if (error = dsl_prop_get_integer(osname, "recordsize", &recordsize, 6841544Seschrock NULL)) 6851544Seschrock goto out; 6861544Seschrock 6871544Seschrock vfsp->vfs_dev = mount_dev; 6881544Seschrock vfsp->vfs_fstype = zfsfstype; 6891544Seschrock vfsp->vfs_bsize = recordsize; 6901544Seschrock vfsp->vfs_flag |= VFS_NOTRUNC; 6911544Seschrock vfsp->vfs_data = zfsvfs; 6921544Seschrock 6931544Seschrock if (error = dsl_prop_get_integer(osname, "readonly", &readonly, NULL)) 6941544Seschrock goto out; 6951544Seschrock 6961544Seschrock if (readonly) 6971544Seschrock mode = DS_MODE_PRIMARY | DS_MODE_READONLY; 6981544Seschrock else 6991544Seschrock mode = DS_MODE_PRIMARY; 7001544Seschrock 7011544Seschrock error = dmu_objset_open(osname, DMU_OST_ZFS, mode, &zfsvfs->z_os); 7021544Seschrock if (error == EROFS) { 7031544Seschrock mode = DS_MODE_PRIMARY | DS_MODE_READONLY; 7041544Seschrock error = dmu_objset_open(osname, DMU_OST_ZFS, mode, 7051544Seschrock &zfsvfs->z_os); 7061544Seschrock } 7071544Seschrock 7081544Seschrock if (error) 7091544Seschrock goto out; 7101544Seschrock 7111544Seschrock if (error = zfs_init_fs(zfsvfs, &zp, cr)) 7121544Seschrock goto out; 7131544Seschrock 7141544Seschrock /* The call to zfs_init_fs leaves the vnode held, release it here. */ 7151544Seschrock VN_RELE(ZTOV(zp)); 7161544Seschrock 7175331Samw /* 7185331Samw * Set features for file system. 7195331Samw */ 7205331Samw zfsvfs->z_use_fuids = USE_FUIDS(zfsvfs->z_version, zfsvfs->z_os); 7215331Samw if (zfsvfs->z_use_fuids) { 7225331Samw vfs_set_feature(vfsp, VFSFT_XVATTR); 7235331Samw vfs_set_feature(vfsp, VFSFT_ACEMASKONACCESS); 7245331Samw vfs_set_feature(vfsp, VFSFT_ACLONCREATE); 7255331Samw } 7265498Stimh if (zfsvfs->z_case == ZFS_CASE_INSENSITIVE) { 7275498Stimh vfs_set_feature(vfsp, VFSFT_DIRENTFLAGS); 7285498Stimh vfs_set_feature(vfsp, VFSFT_CASEINSENSITIVE); 7295498Stimh vfs_set_feature(vfsp, VFSFT_NOCASESENSITIVE); 7305498Stimh } else if (zfsvfs->z_case == ZFS_CASE_MIXED) { 7315498Stimh vfs_set_feature(vfsp, VFSFT_DIRENTFLAGS); 7325498Stimh vfs_set_feature(vfsp, VFSFT_CASEINSENSITIVE); 7335498Stimh } 7345331Samw 7351544Seschrock if (dmu_objset_is_snapshot(zfsvfs->z_os)) { 7365331Samw uint64_t pval; 7373234Sck153898 7381544Seschrock ASSERT(mode & DS_MODE_READONLY); 7391544Seschrock atime_changed_cb(zfsvfs, B_FALSE); 7401544Seschrock readonly_changed_cb(zfsvfs, B_TRUE); 7415331Samw if (error = dsl_prop_get_integer(osname, "xattr", &pval, NULL)) 7423234Sck153898 goto out; 7435331Samw xattr_changed_cb(zfsvfs, pval); 7441544Seschrock zfsvfs->z_issnap = B_TRUE; 7451544Seschrock } else { 7465326Sek110237 error = zfsvfs_setup(zfsvfs, B_TRUE); 7471544Seschrock } 7481544Seschrock 7491544Seschrock if (!zfsvfs->z_issnap) 7501544Seschrock zfsctl_create(zfsvfs); 7511544Seschrock out: 7521544Seschrock if (error) { 7531544Seschrock if (zfsvfs->z_os) 7541544Seschrock dmu_objset_close(zfsvfs->z_os); 7556083Sek110237 zfs_freezfsvfs(zfsvfs); 7561544Seschrock } else { 7571544Seschrock atomic_add_32(&zfs_active_fs_count, 1); 7581544Seschrock } 7591544Seschrock 7601544Seschrock return (error); 7611544Seschrock } 7621544Seschrock 7631544Seschrock void 7641544Seschrock zfs_unregister_callbacks(zfsvfs_t *zfsvfs) 7651544Seschrock { 7661544Seschrock objset_t *os = zfsvfs->z_os; 7671544Seschrock struct dsl_dataset *ds; 7681544Seschrock 7691544Seschrock /* 7701544Seschrock * Unregister properties. 7711544Seschrock */ 7721544Seschrock if (!dmu_objset_is_snapshot(os)) { 7731544Seschrock ds = dmu_objset_ds(os); 7741544Seschrock VERIFY(dsl_prop_unregister(ds, "atime", atime_changed_cb, 7751544Seschrock zfsvfs) == 0); 7761544Seschrock 7773234Sck153898 VERIFY(dsl_prop_unregister(ds, "xattr", xattr_changed_cb, 7783234Sck153898 zfsvfs) == 0); 7793234Sck153898 7801544Seschrock VERIFY(dsl_prop_unregister(ds, "recordsize", blksz_changed_cb, 7811544Seschrock zfsvfs) == 0); 7821544Seschrock 7831544Seschrock VERIFY(dsl_prop_unregister(ds, "readonly", readonly_changed_cb, 7841544Seschrock zfsvfs) == 0); 7851544Seschrock 7861544Seschrock VERIFY(dsl_prop_unregister(ds, "devices", devices_changed_cb, 7871544Seschrock zfsvfs) == 0); 7881544Seschrock 7891544Seschrock VERIFY(dsl_prop_unregister(ds, "setuid", setuid_changed_cb, 7901544Seschrock zfsvfs) == 0); 7911544Seschrock 7921544Seschrock VERIFY(dsl_prop_unregister(ds, "exec", exec_changed_cb, 7931544Seschrock zfsvfs) == 0); 7941544Seschrock 7951544Seschrock VERIFY(dsl_prop_unregister(ds, "snapdir", snapdir_changed_cb, 7961544Seschrock zfsvfs) == 0); 7971544Seschrock 7981544Seschrock VERIFY(dsl_prop_unregister(ds, "aclmode", acl_mode_changed_cb, 7991544Seschrock zfsvfs) == 0); 8001544Seschrock 8011544Seschrock VERIFY(dsl_prop_unregister(ds, "aclinherit", 8021544Seschrock acl_inherit_changed_cb, zfsvfs) == 0); 8035331Samw 8045331Samw VERIFY(dsl_prop_unregister(ds, "vscan", 8055331Samw vscan_changed_cb, zfsvfs) == 0); 8061544Seschrock } 8071544Seschrock } 8081544Seschrock 8093912Slling /* 8103912Slling * Convert a decimal digit string to a uint64_t integer. 8113912Slling */ 8123912Slling static int 8133912Slling str_to_uint64(char *str, uint64_t *objnum) 8143912Slling { 8153912Slling uint64_t num = 0; 8163912Slling 8173912Slling while (*str) { 8183912Slling if (*str < '0' || *str > '9') 8193912Slling return (EINVAL); 8203912Slling 8213912Slling num = num*10 + *str++ - '0'; 8223912Slling } 8233912Slling 8243912Slling *objnum = num; 8253912Slling return (0); 8263912Slling } 8273912Slling 8283912Slling /* 8293912Slling * The boot path passed from the boot loader is in the form of 8303912Slling * "rootpool-name/root-filesystem-object-number'. Convert this 8313912Slling * string to a dataset name: "rootpool-name/root-filesystem-name". 8323912Slling */ 8333912Slling static int 8346423Sgw25295 zfs_parse_bootfs(char *bpath, char *outpath) 8353912Slling { 8363912Slling char *slashp; 8373912Slling uint64_t objnum; 8383912Slling int error; 8393912Slling 8403912Slling if (*bpath == 0 || *bpath == '/') 8413912Slling return (EINVAL); 8423912Slling 8433912Slling slashp = strchr(bpath, '/'); 8443912Slling 8453912Slling /* if no '/', just return the pool name */ 8463912Slling if (slashp == NULL) { 8473912Slling (void) strcpy(outpath, bpath); 8483912Slling return (0); 8493912Slling } 8503912Slling 8513912Slling if (error = str_to_uint64(slashp+1, &objnum)) 8523912Slling return (error); 8533912Slling 8543912Slling *slashp = '\0'; 8553912Slling error = dsl_dsobj_to_dsname(bpath, objnum, outpath); 8563912Slling *slashp = '/'; 8573912Slling 8583912Slling return (error); 8593912Slling } 8603912Slling 8611544Seschrock static int 8621544Seschrock zfs_mountroot(vfs_t *vfsp, enum whymountroot why) 8631544Seschrock { 8641544Seschrock int error = 0; 8651544Seschrock static int zfsrootdone = 0; 8661544Seschrock zfsvfs_t *zfsvfs = NULL; 8671544Seschrock znode_t *zp = NULL; 8681544Seschrock vnode_t *vp = NULL; 8696423Sgw25295 char *zfs_bootfs; 8701544Seschrock 8711544Seschrock ASSERT(vfsp); 8721544Seschrock 8731544Seschrock /* 8743912Slling * The filesystem that we mount as root is defined in the 8756423Sgw25295 * boot property "zfs-bootfs" with a format of 8766423Sgw25295 * "poolname/root-dataset-objnum". 8771544Seschrock */ 8781544Seschrock if (why == ROOT_INIT) { 8791544Seschrock if (zfsrootdone++) 8801544Seschrock return (EBUSY); 8816423Sgw25295 /* 8826423Sgw25295 * the process of doing a spa_load will require the 8836423Sgw25295 * clock to be set before we could (for example) do 8846423Sgw25295 * something better by looking at the timestamp on 8856423Sgw25295 * an uberblock, so just set it to -1. 8866423Sgw25295 */ 8876423Sgw25295 clkset(-1); 8881544Seschrock 8896423Sgw25295 if ((zfs_bootfs = spa_get_bootfs()) == NULL) { 8906423Sgw25295 cmn_err(CE_NOTE, "\nspa_get_bootfs: can not get " 8916423Sgw25295 "bootfs name \n"); 8926423Sgw25295 return (EINVAL); 8935648Ssetje } 8946423Sgw25295 8956423Sgw25295 if (error = spa_import_rootpool(rootfs.bo_name)) { 8966423Sgw25295 spa_free_bootfs(zfs_bootfs); 8976423Sgw25295 cmn_err(CE_NOTE, "\nspa_import_rootpool: error %d\n", 8986423Sgw25295 error); 8996423Sgw25295 return (error); 9006423Sgw25295 } 9013912Slling 9026423Sgw25295 if (error = zfs_parse_bootfs(zfs_bootfs, rootfs.bo_name)) { 9036423Sgw25295 spa_free_bootfs(zfs_bootfs); 9046423Sgw25295 cmn_err(CE_NOTE, "\nzfs_parse_bootfs: error %d\n", 9056423Sgw25295 error); 9066423Sgw25295 return (error); 9076423Sgw25295 } 9083912Slling 9096423Sgw25295 spa_free_bootfs(zfs_bootfs); 9101544Seschrock 9111544Seschrock if (error = vfs_lock(vfsp)) 9121544Seschrock return (error); 9131544Seschrock 9146423Sgw25295 if (error = zfs_domount(vfsp, rootfs.bo_name, CRED())) { 9156423Sgw25295 cmn_err(CE_NOTE, "\nzfs_domount: error %d\n", error); 9161544Seschrock goto out; 9176423Sgw25295 } 9181544Seschrock 9191544Seschrock zfsvfs = (zfsvfs_t *)vfsp->vfs_data; 9201544Seschrock ASSERT(zfsvfs); 9216423Sgw25295 if (error = zfs_zget(zfsvfs, zfsvfs->z_root, &zp)) { 9226423Sgw25295 cmn_err(CE_NOTE, "\nzfs_zget: error %d\n", error); 9231544Seschrock goto out; 9246423Sgw25295 } 9251544Seschrock 9261544Seschrock vp = ZTOV(zp); 9271544Seschrock mutex_enter(&vp->v_lock); 9281544Seschrock vp->v_flag |= VROOT; 9291544Seschrock mutex_exit(&vp->v_lock); 9301544Seschrock rootvp = vp; 9311544Seschrock 9321544Seschrock /* 933*6570Smarks * Leave rootvp held. The root file system is never unmounted. 9341544Seschrock */ 9351544Seschrock 9361544Seschrock vfs_add((struct vnode *)0, vfsp, 9371544Seschrock (vfsp->vfs_flag & VFS_RDONLY) ? MS_RDONLY : 0); 9381544Seschrock out: 9391544Seschrock vfs_unlock(vfsp); 9406423Sgw25295 return (error); 9411544Seschrock } else if (why == ROOT_REMOUNT) { 9421544Seschrock readonly_changed_cb(vfsp->vfs_data, B_FALSE); 9431544Seschrock vfsp->vfs_flag |= VFS_REMOUNT; 9444596Slling 9454596Slling /* refresh mount options */ 9464596Slling zfs_unregister_callbacks(vfsp->vfs_data); 9474596Slling return (zfs_register_callbacks(vfsp)); 9484596Slling 9491544Seschrock } else if (why == ROOT_UNMOUNT) { 9501544Seschrock zfs_unregister_callbacks((zfsvfs_t *)vfsp->vfs_data); 9511544Seschrock (void) zfs_sync(vfsp, 0, 0); 9521544Seschrock return (0); 9531544Seschrock } 9541544Seschrock 9551544Seschrock /* 9561544Seschrock * if "why" is equal to anything else other than ROOT_INIT, 9571544Seschrock * ROOT_REMOUNT, or ROOT_UNMOUNT, we do not support it. 9581544Seschrock */ 9591544Seschrock return (ENOTSUP); 9601544Seschrock } 9611544Seschrock 962789Sahrens /*ARGSUSED*/ 963789Sahrens static int 964789Sahrens zfs_mount(vfs_t *vfsp, vnode_t *mvp, struct mounta *uap, cred_t *cr) 965789Sahrens { 966789Sahrens char *osname; 967789Sahrens pathname_t spn; 968789Sahrens int error = 0; 969789Sahrens uio_seg_t fromspace = (uap->flags & MS_SYSSPACE) ? 9703912Slling UIO_SYSSPACE : UIO_USERSPACE; 971789Sahrens int canwrite; 972789Sahrens 973789Sahrens if (mvp->v_type != VDIR) 974789Sahrens return (ENOTDIR); 975789Sahrens 976789Sahrens mutex_enter(&mvp->v_lock); 977789Sahrens if ((uap->flags & MS_REMOUNT) == 0 && 978789Sahrens (uap->flags & MS_OVERLAY) == 0 && 979789Sahrens (mvp->v_count != 1 || (mvp->v_flag & VROOT))) { 980789Sahrens mutex_exit(&mvp->v_lock); 981789Sahrens return (EBUSY); 982789Sahrens } 983789Sahrens mutex_exit(&mvp->v_lock); 984789Sahrens 985789Sahrens /* 986789Sahrens * ZFS does not support passing unparsed data in via MS_DATA. 987789Sahrens * Users should use the MS_OPTIONSTR interface; this means 988789Sahrens * that all option parsing is already done and the options struct 989789Sahrens * can be interrogated. 990789Sahrens */ 991789Sahrens if ((uap->flags & MS_DATA) && uap->datalen > 0) 992789Sahrens return (EINVAL); 993789Sahrens 994789Sahrens /* 995789Sahrens * Get the objset name (the "special" mount argument). 996789Sahrens */ 997789Sahrens if (error = pn_get(uap->spec, fromspace, &spn)) 998789Sahrens return (error); 999789Sahrens 1000789Sahrens osname = spn.pn_path; 1001789Sahrens 10024543Smarks /* 10034543Smarks * Check for mount privilege? 10044543Smarks * 10054543Smarks * If we don't have privilege then see if 10064543Smarks * we have local permission to allow it 10074543Smarks */ 10084543Smarks error = secpolicy_fs_mount(cr, mvp, vfsp); 10094543Smarks if (error) { 10104543Smarks error = dsl_deleg_access(osname, ZFS_DELEG_PERM_MOUNT, cr); 10114543Smarks if (error == 0) { 10124543Smarks vattr_t vattr; 10134543Smarks 10144543Smarks /* 10154543Smarks * Make sure user is the owner of the mount point 10164543Smarks * or has sufficient privileges. 10174543Smarks */ 10184543Smarks 10194543Smarks vattr.va_mask = AT_UID; 10204543Smarks 10215331Samw if (error = VOP_GETATTR(mvp, &vattr, 0, cr, NULL)) { 10224543Smarks goto out; 10234543Smarks } 10244543Smarks 10255489Smarks if (secpolicy_vnode_owner(cr, vattr.va_uid) != 0 && 10265489Smarks VOP_ACCESS(mvp, VWRITE, 0, cr, NULL) != 0) { 10275489Smarks error = EPERM; 10284543Smarks goto out; 10294543Smarks } 10304543Smarks 10314543Smarks secpolicy_fs_mount_clearopts(cr, vfsp); 10324543Smarks } else { 10334543Smarks goto out; 10344543Smarks } 10354543Smarks } 1036789Sahrens 1037789Sahrens /* 1038789Sahrens * Refuse to mount a filesystem if we are in a local zone and the 1039789Sahrens * dataset is not visible. 1040789Sahrens */ 1041789Sahrens if (!INGLOBALZONE(curproc) && 1042789Sahrens (!zone_dataset_visible(osname, &canwrite) || !canwrite)) { 1043789Sahrens error = EPERM; 1044789Sahrens goto out; 1045789Sahrens } 1046789Sahrens 10474596Slling /* 10484596Slling * When doing a remount, we simply refresh our temporary properties 10494596Slling * according to those options set in the current VFS options. 10504596Slling */ 10514596Slling if (uap->flags & MS_REMOUNT) { 10524596Slling /* refresh mount options */ 10534596Slling zfs_unregister_callbacks(vfsp->vfs_data); 10544596Slling error = zfs_register_callbacks(vfsp); 10554596Slling goto out; 10564596Slling } 10574596Slling 10581544Seschrock error = zfs_domount(vfsp, osname, cr); 1059789Sahrens 1060789Sahrens out: 1061789Sahrens pn_free(&spn); 1062789Sahrens return (error); 1063789Sahrens } 1064789Sahrens 1065789Sahrens static int 1066789Sahrens zfs_statvfs(vfs_t *vfsp, struct statvfs64 *statp) 1067789Sahrens { 1068789Sahrens zfsvfs_t *zfsvfs = vfsp->vfs_data; 1069789Sahrens dev32_t d32; 10702885Sahrens uint64_t refdbytes, availbytes, usedobjs, availobjs; 1071789Sahrens 1072789Sahrens ZFS_ENTER(zfsvfs); 1073789Sahrens 10742885Sahrens dmu_objset_space(zfsvfs->z_os, 10752885Sahrens &refdbytes, &availbytes, &usedobjs, &availobjs); 1076789Sahrens 1077789Sahrens /* 1078789Sahrens * The underlying storage pool actually uses multiple block sizes. 1079789Sahrens * We report the fragsize as the smallest block size we support, 1080789Sahrens * and we report our blocksize as the filesystem's maximum blocksize. 1081789Sahrens */ 1082789Sahrens statp->f_frsize = 1UL << SPA_MINBLOCKSHIFT; 1083789Sahrens statp->f_bsize = zfsvfs->z_max_blksz; 1084789Sahrens 1085789Sahrens /* 1086789Sahrens * The following report "total" blocks of various kinds in the 1087789Sahrens * file system, but reported in terms of f_frsize - the 1088789Sahrens * "fragment" size. 1089789Sahrens */ 1090789Sahrens 10912885Sahrens statp->f_blocks = (refdbytes + availbytes) >> SPA_MINBLOCKSHIFT; 10922885Sahrens statp->f_bfree = availbytes >> SPA_MINBLOCKSHIFT; 1093789Sahrens statp->f_bavail = statp->f_bfree; /* no root reservation */ 1094789Sahrens 1095789Sahrens /* 1096789Sahrens * statvfs() should really be called statufs(), because it assumes 1097789Sahrens * static metadata. ZFS doesn't preallocate files, so the best 1098789Sahrens * we can do is report the max that could possibly fit in f_files, 1099789Sahrens * and that minus the number actually used in f_ffree. 1100789Sahrens * For f_ffree, report the smaller of the number of object available 1101789Sahrens * and the number of blocks (each object will take at least a block). 1102789Sahrens */ 11032885Sahrens statp->f_ffree = MIN(availobjs, statp->f_bfree); 1104789Sahrens statp->f_favail = statp->f_ffree; /* no "root reservation" */ 11052885Sahrens statp->f_files = statp->f_ffree + usedobjs; 1106789Sahrens 1107789Sahrens (void) cmpldev(&d32, vfsp->vfs_dev); 1108789Sahrens statp->f_fsid = d32; 1109789Sahrens 1110789Sahrens /* 1111789Sahrens * We're a zfs filesystem. 1112789Sahrens */ 1113789Sahrens (void) strcpy(statp->f_basetype, vfssw[vfsp->vfs_fstype].vsw_name); 1114789Sahrens 11151123Smarks statp->f_flag = vf_to_stf(vfsp->vfs_flag); 1116789Sahrens 1117789Sahrens statp->f_namemax = ZFS_MAXNAMELEN; 1118789Sahrens 1119789Sahrens /* 1120789Sahrens * We have all of 32 characters to stuff a string here. 1121789Sahrens * Is there anything useful we could/should provide? 1122789Sahrens */ 1123789Sahrens bzero(statp->f_fstr, sizeof (statp->f_fstr)); 1124789Sahrens 1125789Sahrens ZFS_EXIT(zfsvfs); 1126789Sahrens return (0); 1127789Sahrens } 1128789Sahrens 1129789Sahrens static int 1130789Sahrens zfs_root(vfs_t *vfsp, vnode_t **vpp) 1131789Sahrens { 1132789Sahrens zfsvfs_t *zfsvfs = vfsp->vfs_data; 1133789Sahrens znode_t *rootzp; 1134789Sahrens int error; 1135789Sahrens 1136789Sahrens ZFS_ENTER(zfsvfs); 1137789Sahrens 1138789Sahrens error = zfs_zget(zfsvfs, zfsvfs->z_root, &rootzp); 1139789Sahrens if (error == 0) 1140789Sahrens *vpp = ZTOV(rootzp); 1141789Sahrens 1142789Sahrens ZFS_EXIT(zfsvfs); 1143789Sahrens return (error); 1144789Sahrens } 1145789Sahrens 11465326Sek110237 /* 11475326Sek110237 * Teardown the zfsvfs::z_os. 11485326Sek110237 * 11495326Sek110237 * Note, if 'unmounting' if FALSE, we return with the 'z_teardown_lock' 11505326Sek110237 * and 'z_teardown_inactive_lock' held. 11515326Sek110237 */ 11525326Sek110237 static int 11535326Sek110237 zfsvfs_teardown(zfsvfs_t *zfsvfs, boolean_t unmounting) 11545326Sek110237 { 11555642Smaybee znode_t *zp; 11565326Sek110237 11575326Sek110237 rrw_enter(&zfsvfs->z_teardown_lock, RW_WRITER, FTAG); 11585326Sek110237 11595326Sek110237 if (!unmounting) { 11605326Sek110237 /* 11615326Sek110237 * We purge the parent filesystem's vfsp as the parent 11625326Sek110237 * filesystem and all of its snapshots have their vnode's 11635326Sek110237 * v_vfsp set to the parent's filesystem's vfsp. Note, 11645326Sek110237 * 'z_parent' is self referential for non-snapshots. 11655326Sek110237 */ 11665326Sek110237 (void) dnlc_purge_vfsp(zfsvfs->z_parent->z_vfs, 0); 11675326Sek110237 } 11685326Sek110237 11695326Sek110237 /* 11705326Sek110237 * Close the zil. NB: Can't close the zil while zfs_inactive 11715326Sek110237 * threads are blocked as zil_close can call zfs_inactive. 11725326Sek110237 */ 11735326Sek110237 if (zfsvfs->z_log) { 11745326Sek110237 zil_close(zfsvfs->z_log); 11755326Sek110237 zfsvfs->z_log = NULL; 11765326Sek110237 } 11775326Sek110237 11785326Sek110237 rw_enter(&zfsvfs->z_teardown_inactive_lock, RW_WRITER); 11795326Sek110237 11805326Sek110237 /* 11815326Sek110237 * If we are not unmounting (ie: online recv) and someone already 11825326Sek110237 * unmounted this file system while we were doing the switcheroo, 11835326Sek110237 * or a reopen of z_os failed then just bail out now. 11845326Sek110237 */ 11855326Sek110237 if (!unmounting && (zfsvfs->z_unmounted || zfsvfs->z_os == NULL)) { 11865326Sek110237 rw_exit(&zfsvfs->z_teardown_inactive_lock); 11875326Sek110237 rrw_exit(&zfsvfs->z_teardown_lock, FTAG); 11885326Sek110237 return (EIO); 11895326Sek110237 } 11905326Sek110237 11915326Sek110237 /* 11925326Sek110237 * At this point there are no vops active, and any new vops will 11935326Sek110237 * fail with EIO since we have z_teardown_lock for writer (only 11945326Sek110237 * relavent for forced unmount). 11955326Sek110237 * 11965326Sek110237 * Release all holds on dbufs. 11975326Sek110237 */ 11985326Sek110237 mutex_enter(&zfsvfs->z_znodes_lock); 11995642Smaybee for (zp = list_head(&zfsvfs->z_all_znodes); zp != NULL; 12005642Smaybee zp = list_next(&zfsvfs->z_all_znodes, zp)) 12015446Sahrens if (zp->z_dbuf) { 12025642Smaybee ASSERT(ZTOV(zp)->v_count > 0); 12035642Smaybee zfs_znode_dmu_fini(zp); 12045326Sek110237 } 12055326Sek110237 mutex_exit(&zfsvfs->z_znodes_lock); 12065326Sek110237 12075326Sek110237 /* 12085326Sek110237 * If we are unmounting, set the unmounted flag and let new vops 12095326Sek110237 * unblock. zfs_inactive will have the unmounted behavior, and all 12105326Sek110237 * other vops will fail with EIO. 12115326Sek110237 */ 12125326Sek110237 if (unmounting) { 12135326Sek110237 zfsvfs->z_unmounted = B_TRUE; 12145326Sek110237 rrw_exit(&zfsvfs->z_teardown_lock, FTAG); 12155326Sek110237 rw_exit(&zfsvfs->z_teardown_inactive_lock); 12165326Sek110237 } 12175326Sek110237 12185326Sek110237 /* 12195326Sek110237 * z_os will be NULL if there was an error in attempting to reopen 12205326Sek110237 * zfsvfs, so just return as the properties had already been 12215326Sek110237 * unregistered and cached data had been evicted before. 12225326Sek110237 */ 12235326Sek110237 if (zfsvfs->z_os == NULL) 12245326Sek110237 return (0); 12255326Sek110237 12265326Sek110237 /* 12275326Sek110237 * Unregister properties. 12285326Sek110237 */ 12295326Sek110237 zfs_unregister_callbacks(zfsvfs); 12305326Sek110237 12315326Sek110237 /* 12325326Sek110237 * Evict cached data 12335326Sek110237 */ 12346083Sek110237 if (dmu_objset_evict_dbufs(zfsvfs->z_os)) { 12355429Smaybee txg_wait_synced(dmu_objset_pool(zfsvfs->z_os), 0); 12366083Sek110237 (void) dmu_objset_evict_dbufs(zfsvfs->z_os); 12375429Smaybee } 12385326Sek110237 12395326Sek110237 return (0); 12405326Sek110237 } 12415326Sek110237 1242789Sahrens /*ARGSUSED*/ 1243789Sahrens static int 1244789Sahrens zfs_umount(vfs_t *vfsp, int fflag, cred_t *cr) 1245789Sahrens { 1246789Sahrens zfsvfs_t *zfsvfs = vfsp->vfs_data; 12475326Sek110237 objset_t *os; 1248789Sahrens int ret; 1249789Sahrens 12504543Smarks ret = secpolicy_fs_unmount(cr, vfsp); 12514543Smarks if (ret) { 12524543Smarks ret = dsl_deleg_access((char *)refstr_value(vfsp->vfs_resource), 12534543Smarks ZFS_DELEG_PERM_MOUNT, cr); 12544543Smarks if (ret) 12554543Smarks return (ret); 12564543Smarks } 12571484Sek110237 12584736Sek110237 /* 12594736Sek110237 * We purge the parent filesystem's vfsp as the parent filesystem 12604736Sek110237 * and all of its snapshots have their vnode's v_vfsp set to the 12614736Sek110237 * parent's filesystem's vfsp. Note, 'z_parent' is self 12624736Sek110237 * referential for non-snapshots. 12634736Sek110237 */ 12644736Sek110237 (void) dnlc_purge_vfsp(zfsvfs->z_parent->z_vfs, 0); 12651484Sek110237 1266789Sahrens /* 1267789Sahrens * Unmount any snapshots mounted under .zfs before unmounting the 1268789Sahrens * dataset itself. 1269789Sahrens */ 1270789Sahrens if (zfsvfs->z_ctldir != NULL && 12714543Smarks (ret = zfsctl_umount_snapshots(vfsp, fflag, cr)) != 0) { 1272789Sahrens return (ret); 12734543Smarks } 1274789Sahrens 12754787Sahrens if (!(fflag & MS_FORCE)) { 12764480Sgw25295 /* 12774787Sahrens * Check the number of active vnodes in the file system. 12784787Sahrens * Our count is maintained in the vfs structure, but the 12794787Sahrens * number is off by 1 to indicate a hold on the vfs 12804787Sahrens * structure itself. 12814787Sahrens * 12824787Sahrens * The '.zfs' directory maintains a reference of its 12834787Sahrens * own, and any active references underneath are 12844787Sahrens * reflected in the vnode count. 1285789Sahrens */ 12864787Sahrens if (zfsvfs->z_ctldir == NULL) { 12874787Sahrens if (vfsp->vfs_count > 1) 12884787Sahrens return (EBUSY); 12894787Sahrens } else { 12904787Sahrens if (vfsp->vfs_count > 2 || 12915326Sek110237 zfsvfs->z_ctldir->v_count > 1) 12924787Sahrens return (EBUSY); 1293789Sahrens } 1294789Sahrens } 1295789Sahrens 1296789Sahrens vfsp->vfs_flag |= VFS_UNMOUNTED; 12974787Sahrens 12985326Sek110237 VERIFY(zfsvfs_teardown(zfsvfs, B_TRUE) == 0); 12995326Sek110237 os = zfsvfs->z_os; 13004787Sahrens 13014787Sahrens /* 13025326Sek110237 * z_os will be NULL if there was an error in 13035326Sek110237 * attempting to reopen zfsvfs. 13044787Sahrens */ 13055326Sek110237 if (os != NULL) { 13065326Sek110237 /* 13075326Sek110237 * Unset the objset user_ptr. 13085326Sek110237 */ 13095326Sek110237 mutex_enter(&os->os->os_user_ptr_lock); 13105326Sek110237 dmu_objset_set_user(os, NULL); 13115326Sek110237 mutex_exit(&os->os->os_user_ptr_lock); 13124787Sahrens 13135326Sek110237 /* 13145326Sek110237 * Finally close the objset 13155326Sek110237 */ 13165326Sek110237 dmu_objset_close(os); 13174787Sahrens } 13184787Sahrens 13194787Sahrens /* 13204787Sahrens * We can now safely destroy the '.zfs' directory node. 13214787Sahrens */ 13224787Sahrens if (zfsvfs->z_ctldir != NULL) 13234787Sahrens zfsctl_destroy(zfsvfs); 1324789Sahrens 1325789Sahrens return (0); 1326789Sahrens } 1327789Sahrens 1328789Sahrens static int 1329789Sahrens zfs_vget(vfs_t *vfsp, vnode_t **vpp, fid_t *fidp) 1330789Sahrens { 1331789Sahrens zfsvfs_t *zfsvfs = vfsp->vfs_data; 1332789Sahrens znode_t *zp; 1333789Sahrens uint64_t object = 0; 1334789Sahrens uint64_t fid_gen = 0; 1335789Sahrens uint64_t gen_mask; 1336789Sahrens uint64_t zp_gen; 1337789Sahrens int i, err; 1338789Sahrens 1339789Sahrens *vpp = NULL; 1340789Sahrens 1341789Sahrens ZFS_ENTER(zfsvfs); 1342789Sahrens 1343789Sahrens if (fidp->fid_len == LONG_FID_LEN) { 1344789Sahrens zfid_long_t *zlfid = (zfid_long_t *)fidp; 1345789Sahrens uint64_t objsetid = 0; 1346789Sahrens uint64_t setgen = 0; 1347789Sahrens 1348789Sahrens for (i = 0; i < sizeof (zlfid->zf_setid); i++) 1349789Sahrens objsetid |= ((uint64_t)zlfid->zf_setid[i]) << (8 * i); 1350789Sahrens 1351789Sahrens for (i = 0; i < sizeof (zlfid->zf_setgen); i++) 1352789Sahrens setgen |= ((uint64_t)zlfid->zf_setgen[i]) << (8 * i); 1353789Sahrens 1354789Sahrens ZFS_EXIT(zfsvfs); 1355789Sahrens 1356789Sahrens err = zfsctl_lookup_objset(vfsp, objsetid, &zfsvfs); 1357789Sahrens if (err) 1358789Sahrens return (EINVAL); 1359789Sahrens ZFS_ENTER(zfsvfs); 1360789Sahrens } 1361789Sahrens 1362789Sahrens if (fidp->fid_len == SHORT_FID_LEN || fidp->fid_len == LONG_FID_LEN) { 1363789Sahrens zfid_short_t *zfid = (zfid_short_t *)fidp; 1364789Sahrens 1365789Sahrens for (i = 0; i < sizeof (zfid->zf_object); i++) 1366789Sahrens object |= ((uint64_t)zfid->zf_object[i]) << (8 * i); 1367789Sahrens 1368789Sahrens for (i = 0; i < sizeof (zfid->zf_gen); i++) 1369789Sahrens fid_gen |= ((uint64_t)zfid->zf_gen[i]) << (8 * i); 1370789Sahrens } else { 1371789Sahrens ZFS_EXIT(zfsvfs); 1372789Sahrens return (EINVAL); 1373789Sahrens } 1374789Sahrens 1375789Sahrens /* A zero fid_gen means we are in the .zfs control directories */ 1376789Sahrens if (fid_gen == 0 && 1377789Sahrens (object == ZFSCTL_INO_ROOT || object == ZFSCTL_INO_SNAPDIR)) { 1378789Sahrens *vpp = zfsvfs->z_ctldir; 1379789Sahrens ASSERT(*vpp != NULL); 1380789Sahrens if (object == ZFSCTL_INO_SNAPDIR) { 1381789Sahrens VERIFY(zfsctl_root_lookup(*vpp, "snapshot", vpp, NULL, 13825331Samw 0, NULL, NULL, NULL, NULL, NULL) == 0); 1383789Sahrens } else { 1384789Sahrens VN_HOLD(*vpp); 1385789Sahrens } 1386789Sahrens ZFS_EXIT(zfsvfs); 1387789Sahrens return (0); 1388789Sahrens } 1389789Sahrens 1390789Sahrens gen_mask = -1ULL >> (64 - 8 * i); 1391789Sahrens 1392789Sahrens dprintf("getting %llu [%u mask %llx]\n", object, fid_gen, gen_mask); 1393789Sahrens if (err = zfs_zget(zfsvfs, object, &zp)) { 1394789Sahrens ZFS_EXIT(zfsvfs); 1395789Sahrens return (err); 1396789Sahrens } 1397789Sahrens zp_gen = zp->z_phys->zp_gen & gen_mask; 1398789Sahrens if (zp_gen == 0) 1399789Sahrens zp_gen = 1; 14003461Sahrens if (zp->z_unlinked || zp_gen != fid_gen) { 1401789Sahrens dprintf("znode gen (%u) != fid gen (%u)\n", zp_gen, fid_gen); 1402789Sahrens VN_RELE(ZTOV(zp)); 1403789Sahrens ZFS_EXIT(zfsvfs); 1404789Sahrens return (EINVAL); 1405789Sahrens } 1406789Sahrens 1407789Sahrens *vpp = ZTOV(zp); 1408789Sahrens ZFS_EXIT(zfsvfs); 1409789Sahrens return (0); 1410789Sahrens } 1411789Sahrens 14125326Sek110237 /* 14135326Sek110237 * Block out VOPs and close zfsvfs_t::z_os 14145326Sek110237 * 14155326Sek110237 * Note, if successful, then we return with the 'z_teardown_lock' and 14165326Sek110237 * 'z_teardown_inactive_lock' write held. 14175326Sek110237 */ 14185326Sek110237 int 14195326Sek110237 zfs_suspend_fs(zfsvfs_t *zfsvfs, char *name, int *mode) 14205326Sek110237 { 14215326Sek110237 int error; 14225326Sek110237 14235326Sek110237 if ((error = zfsvfs_teardown(zfsvfs, B_FALSE)) != 0) 14245326Sek110237 return (error); 14255326Sek110237 14265326Sek110237 *mode = zfsvfs->z_os->os_mode; 14275326Sek110237 dmu_objset_name(zfsvfs->z_os, name); 14285326Sek110237 dmu_objset_close(zfsvfs->z_os); 14295326Sek110237 14305326Sek110237 return (0); 14315326Sek110237 } 14325326Sek110237 14335326Sek110237 /* 14345326Sek110237 * Reopen zfsvfs_t::z_os and release VOPs. 14355326Sek110237 */ 14365326Sek110237 int 14375326Sek110237 zfs_resume_fs(zfsvfs_t *zfsvfs, const char *osname, int mode) 14385326Sek110237 { 14395326Sek110237 int err; 14405326Sek110237 14415326Sek110237 ASSERT(RRW_WRITE_HELD(&zfsvfs->z_teardown_lock)); 14425326Sek110237 ASSERT(RW_WRITE_HELD(&zfsvfs->z_teardown_inactive_lock)); 14435326Sek110237 14445326Sek110237 err = dmu_objset_open(osname, DMU_OST_ZFS, mode, &zfsvfs->z_os); 14455326Sek110237 if (err) { 14465326Sek110237 zfsvfs->z_os = NULL; 14475326Sek110237 } else { 14485326Sek110237 znode_t *zp; 14495326Sek110237 14505326Sek110237 VERIFY(zfsvfs_setup(zfsvfs, B_FALSE) == 0); 14515326Sek110237 14525326Sek110237 /* 14535326Sek110237 * Attempt to re-establish all the active znodes with 14545326Sek110237 * their dbufs. If a zfs_rezget() fails, then we'll let 14555326Sek110237 * any potential callers discover that via ZFS_ENTER_VERIFY_VP 14565326Sek110237 * when they try to use their znode. 14575326Sek110237 */ 14585326Sek110237 mutex_enter(&zfsvfs->z_znodes_lock); 14595326Sek110237 for (zp = list_head(&zfsvfs->z_all_znodes); zp; 14605326Sek110237 zp = list_next(&zfsvfs->z_all_znodes, zp)) { 14615326Sek110237 (void) zfs_rezget(zp); 14625326Sek110237 } 14635326Sek110237 mutex_exit(&zfsvfs->z_znodes_lock); 14645326Sek110237 14655326Sek110237 } 14665326Sek110237 14675326Sek110237 /* release the VOPs */ 14685326Sek110237 rw_exit(&zfsvfs->z_teardown_inactive_lock); 14695326Sek110237 rrw_exit(&zfsvfs->z_teardown_lock, FTAG); 14705326Sek110237 14715326Sek110237 if (err) { 14725326Sek110237 /* 14735326Sek110237 * Since we couldn't reopen zfsvfs::z_os, force 14745326Sek110237 * unmount this file system. 14755326Sek110237 */ 14765326Sek110237 if (vn_vfswlock(zfsvfs->z_vfs->vfs_vnodecovered) == 0) 14775326Sek110237 (void) dounmount(zfsvfs->z_vfs, MS_FORCE, CRED()); 14785326Sek110237 } 14795326Sek110237 return (err); 14805326Sek110237 } 14815326Sek110237 1482789Sahrens static void 1483789Sahrens zfs_freevfs(vfs_t *vfsp) 1484789Sahrens { 1485789Sahrens zfsvfs_t *zfsvfs = vfsp->vfs_data; 14864831Sgw25295 int i; 14874831Sgw25295 14884831Sgw25295 for (i = 0; i != ZFS_OBJ_MTX_SZ; i++) 14894831Sgw25295 mutex_destroy(&zfsvfs->z_hold_mtx[i]); 1490789Sahrens 14915331Samw zfs_fuid_destroy(zfsvfs); 14926083Sek110237 zfs_freezfsvfs(zfsvfs); 1493789Sahrens 1494789Sahrens atomic_add_32(&zfs_active_fs_count, -1); 1495789Sahrens } 1496789Sahrens 1497789Sahrens /* 1498789Sahrens * VFS_INIT() initialization. Note that there is no VFS_FINI(), 1499789Sahrens * so we can't safely do any non-idempotent initialization here. 1500789Sahrens * Leave that to zfs_init() and zfs_fini(), which are called 1501789Sahrens * from the module's _init() and _fini() entry points. 1502789Sahrens */ 1503789Sahrens /*ARGSUSED*/ 1504789Sahrens static int 1505789Sahrens zfs_vfsinit(int fstype, char *name) 1506789Sahrens { 1507789Sahrens int error; 1508789Sahrens 1509789Sahrens zfsfstype = fstype; 1510789Sahrens 1511789Sahrens /* 1512789Sahrens * Setup vfsops and vnodeops tables. 1513789Sahrens */ 1514789Sahrens error = vfs_setfsops(fstype, zfs_vfsops_template, &zfs_vfsops); 1515789Sahrens if (error != 0) { 1516789Sahrens cmn_err(CE_WARN, "zfs: bad vfs ops template"); 1517789Sahrens } 1518789Sahrens 1519789Sahrens error = zfs_create_op_tables(); 1520789Sahrens if (error) { 1521789Sahrens zfs_remove_op_tables(); 1522789Sahrens cmn_err(CE_WARN, "zfs: bad vnode ops template"); 1523789Sahrens (void) vfs_freevfsops_by_type(zfsfstype); 1524789Sahrens return (error); 1525789Sahrens } 1526789Sahrens 1527789Sahrens mutex_init(&zfs_dev_mtx, NULL, MUTEX_DEFAULT, NULL); 1528789Sahrens 1529789Sahrens /* 1530849Sbonwick * Unique major number for all zfs mounts. 1531849Sbonwick * If we run out of 32-bit minors, we'll getudev() another major. 1532789Sahrens */ 1533849Sbonwick zfs_major = ddi_name_to_major(ZFS_DRIVER); 1534849Sbonwick zfs_minor = ZFS_MIN_MINOR; 1535789Sahrens 1536789Sahrens return (0); 1537789Sahrens } 1538789Sahrens 1539789Sahrens void 1540789Sahrens zfs_init(void) 1541789Sahrens { 1542789Sahrens /* 1543789Sahrens * Initialize .zfs directory structures 1544789Sahrens */ 1545789Sahrens zfsctl_init(); 1546789Sahrens 1547789Sahrens /* 1548789Sahrens * Initialize znode cache, vnode ops, etc... 1549789Sahrens */ 1550789Sahrens zfs_znode_init(); 1551789Sahrens } 1552789Sahrens 1553789Sahrens void 1554789Sahrens zfs_fini(void) 1555789Sahrens { 1556789Sahrens zfsctl_fini(); 1557789Sahrens zfs_znode_fini(); 1558789Sahrens } 1559789Sahrens 1560789Sahrens int 1561789Sahrens zfs_busy(void) 1562789Sahrens { 1563789Sahrens return (zfs_active_fs_count != 0); 1564789Sahrens } 1565789Sahrens 15664577Sahrens int 15674577Sahrens zfs_set_version(const char *name, uint64_t newvers) 15684577Sahrens { 15694577Sahrens int error; 15704577Sahrens objset_t *os; 15714577Sahrens dmu_tx_t *tx; 15724577Sahrens uint64_t curvers; 15734577Sahrens 15744577Sahrens /* 15754577Sahrens * XXX for now, require that the filesystem be unmounted. Would 15764577Sahrens * be nice to find the zfsvfs_t and just update that if 15774577Sahrens * possible. 15784577Sahrens */ 15794577Sahrens 15804577Sahrens if (newvers < ZPL_VERSION_INITIAL || newvers > ZPL_VERSION) 15814577Sahrens return (EINVAL); 15824577Sahrens 15834577Sahrens error = dmu_objset_open(name, DMU_OST_ZFS, DS_MODE_PRIMARY, &os); 15844577Sahrens if (error) 15854577Sahrens return (error); 15864577Sahrens 15874577Sahrens error = zap_lookup(os, MASTER_NODE_OBJ, ZPL_VERSION_STR, 15884577Sahrens 8, 1, &curvers); 15894577Sahrens if (error) 15904577Sahrens goto out; 15914577Sahrens if (newvers < curvers) { 15924577Sahrens error = EINVAL; 15934577Sahrens goto out; 15944577Sahrens } 15954577Sahrens 15964577Sahrens tx = dmu_tx_create(os); 15974577Sahrens dmu_tx_hold_zap(tx, MASTER_NODE_OBJ, 0, ZPL_VERSION_STR); 15984577Sahrens error = dmu_tx_assign(tx, TXG_WAIT); 15994577Sahrens if (error) { 16004577Sahrens dmu_tx_abort(tx); 16014577Sahrens goto out; 16024577Sahrens } 16034577Sahrens error = zap_update(os, MASTER_NODE_OBJ, ZPL_VERSION_STR, 8, 1, 16044577Sahrens &newvers, tx); 16054577Sahrens 16064577Sahrens spa_history_internal_log(LOG_DS_UPGRADE, 16074577Sahrens dmu_objset_spa(os), tx, CRED(), 16084577Sahrens "oldver=%llu newver=%llu dataset = %llu", curvers, newvers, 16094577Sahrens dmu_objset_id(os)); 16104577Sahrens dmu_tx_commit(tx); 16114577Sahrens 16124577Sahrens out: 16134577Sahrens dmu_objset_close(os); 16144577Sahrens return (error); 16154577Sahrens } 16164577Sahrens 16175498Stimh /* 16185498Stimh * Read a property stored within the master node. 16195498Stimh */ 16205498Stimh int 16215498Stimh zfs_get_zplprop(objset_t *os, zfs_prop_t prop, uint64_t *value) 16225498Stimh { 16235498Stimh const char *pname; 16245498Stimh int error; 16255498Stimh 16265498Stimh /* 16275498Stimh * Look up the file system's value for the property. For the 16285498Stimh * version property, we look up a slightly different string. 16295498Stimh */ 16305498Stimh if (prop == ZFS_PROP_VERSION) 16315498Stimh pname = ZPL_VERSION_STR; 16325498Stimh else 16335498Stimh pname = zfs_prop_to_name(prop); 16345498Stimh 16355498Stimh error = zap_lookup(os, MASTER_NODE_OBJ, pname, 8, 1, value); 16365498Stimh 16376404Smaybee if (error == ENOENT) { 16385498Stimh /* No value set, use the default value */ 16395498Stimh switch (prop) { 16406404Smaybee case ZFS_PROP_VERSION: 16416404Smaybee *value = ZPL_VERSION; 16426404Smaybee break; 16435498Stimh case ZFS_PROP_NORMALIZE: 16445498Stimh case ZFS_PROP_UTF8ONLY: 16455498Stimh *value = 0; 16465498Stimh break; 16475498Stimh case ZFS_PROP_CASE: 16485498Stimh *value = ZFS_CASE_SENSITIVE; 16495498Stimh break; 16505498Stimh default: 16516404Smaybee return (error); 16525498Stimh } 16536404Smaybee error = 0; 16545498Stimh } 16556404Smaybee return (error); 16565498Stimh } 16575498Stimh 1658789Sahrens static vfsdef_t vfw = { 1659789Sahrens VFSDEF_VERSION, 1660789Sahrens MNTTYPE_ZFS, 1661789Sahrens zfs_vfsinit, 16625331Samw VSW_HASPROTO|VSW_CANRWRO|VSW_CANREMOUNT|VSW_VOLATILEDEV|VSW_STATS| 16635331Samw VSW_XID, 1664789Sahrens &zfs_mntopts 1665789Sahrens }; 1666789Sahrens 1667789Sahrens struct modlfs zfs_modlfs = { 16684577Sahrens &mod_fsops, "ZFS filesystem version " SPA_VERSION_STRING, &vfw 1669789Sahrens }; 1670