1eda14cbcSMatt Macy /* 2eda14cbcSMatt Macy * CDDL HEADER START 3eda14cbcSMatt Macy * 4eda14cbcSMatt Macy * The contents of this file are subject to the terms of the 5eda14cbcSMatt Macy * Common Development and Distribution License (the "License"). 6eda14cbcSMatt Macy * You may not use this file except in compliance with the License. 7eda14cbcSMatt Macy * 8eda14cbcSMatt Macy * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE 9eda14cbcSMatt Macy * or http://www.opensolaris.org/os/licensing. 10eda14cbcSMatt Macy * See the License for the specific language governing permissions 11eda14cbcSMatt Macy * and limitations under the License. 12eda14cbcSMatt Macy * 13eda14cbcSMatt Macy * When distributing Covered Code, include this CDDL HEADER in each 14eda14cbcSMatt Macy * file and include the License file at usr/src/OPENSOLARIS.LICENSE. 15eda14cbcSMatt Macy * If applicable, add the following below this CDDL HEADER, with the 16eda14cbcSMatt Macy * fields enclosed by brackets "[]" replaced with your own identifying 17eda14cbcSMatt Macy * information: Portions Copyright [yyyy] [name of copyright owner] 18eda14cbcSMatt Macy * 19eda14cbcSMatt Macy * CDDL HEADER END 20eda14cbcSMatt Macy */ 21eda14cbcSMatt Macy 22eda14cbcSMatt Macy /* 23eda14cbcSMatt Macy * Copyright 2015 Nexenta Systems, Inc. All rights reserved. 24eda14cbcSMatt Macy * Copyright (c) 2005, 2010, Oracle and/or its affiliates. All rights reserved. 25*9db44a8eSMartin Matuska * Copyright (c) 2014, 2021 by Delphix. All rights reserved. 26eda14cbcSMatt Macy * Copyright 2016 Igor Kozhukhov <ikozhukhov@gmail.com> 27eda14cbcSMatt Macy * Copyright 2017 RackTop Systems. 28eda14cbcSMatt Macy * Copyright (c) 2018 Datto Inc. 29eda14cbcSMatt Macy * Copyright 2018 OmniOS Community Edition (OmniOSce) Association. 30eda14cbcSMatt Macy */ 31eda14cbcSMatt Macy 32eda14cbcSMatt Macy /* 33eda14cbcSMatt Macy * Routines to manage ZFS mounts. We separate all the nasty routines that have 34eda14cbcSMatt Macy * to deal with the OS. The following functions are the main entry points -- 35eda14cbcSMatt Macy * they are used by mount and unmount and when changing a filesystem's 36eda14cbcSMatt Macy * mountpoint. 37eda14cbcSMatt Macy * 38eda14cbcSMatt Macy * zfs_is_mounted() 39eda14cbcSMatt Macy * zfs_mount() 40eda14cbcSMatt Macy * zfs_mount_at() 41eda14cbcSMatt Macy * zfs_unmount() 42eda14cbcSMatt Macy * zfs_unmountall() 43eda14cbcSMatt Macy * 44eda14cbcSMatt Macy * This file also contains the functions used to manage sharing filesystems via 45eda14cbcSMatt Macy * NFS and iSCSI: 46eda14cbcSMatt Macy * 47eda14cbcSMatt Macy * zfs_is_shared() 48eda14cbcSMatt Macy * zfs_share() 49eda14cbcSMatt Macy * zfs_unshare() 50eda14cbcSMatt Macy * 51eda14cbcSMatt Macy * zfs_is_shared_nfs() 52eda14cbcSMatt Macy * zfs_is_shared_smb() 53eda14cbcSMatt Macy * zfs_share_proto() 54eda14cbcSMatt Macy * zfs_shareall(); 55eda14cbcSMatt Macy * zfs_unshare_nfs() 56eda14cbcSMatt Macy * zfs_unshare_smb() 57eda14cbcSMatt Macy * zfs_unshareall_nfs() 58eda14cbcSMatt Macy * zfs_unshareall_smb() 59eda14cbcSMatt Macy * zfs_unshareall() 60eda14cbcSMatt Macy * zfs_unshareall_bypath() 61eda14cbcSMatt Macy * 62eda14cbcSMatt Macy * The following functions are available for pool consumers, and will 63eda14cbcSMatt Macy * mount/unmount and share/unshare all datasets within pool: 64eda14cbcSMatt Macy * 65eda14cbcSMatt Macy * zpool_enable_datasets() 66eda14cbcSMatt Macy * zpool_disable_datasets() 67eda14cbcSMatt Macy */ 68eda14cbcSMatt Macy 69eda14cbcSMatt Macy #include <dirent.h> 70eda14cbcSMatt Macy #include <dlfcn.h> 71eda14cbcSMatt Macy #include <errno.h> 72eda14cbcSMatt Macy #include <fcntl.h> 73eda14cbcSMatt Macy #include <libgen.h> 74eda14cbcSMatt Macy #include <libintl.h> 75eda14cbcSMatt Macy #include <stdio.h> 76eda14cbcSMatt Macy #include <stdlib.h> 77eda14cbcSMatt Macy #include <strings.h> 78eda14cbcSMatt Macy #include <unistd.h> 79eda14cbcSMatt Macy #include <zone.h> 80eda14cbcSMatt Macy #include <sys/mntent.h> 81eda14cbcSMatt Macy #include <sys/mount.h> 82eda14cbcSMatt Macy #include <sys/stat.h> 83eda14cbcSMatt Macy #include <sys/vfs.h> 84eda14cbcSMatt Macy #include <sys/dsl_crypt.h> 85eda14cbcSMatt Macy 86eda14cbcSMatt Macy #include <libzfs.h> 87eda14cbcSMatt Macy 88eda14cbcSMatt Macy #include "libzfs_impl.h" 89eda14cbcSMatt Macy #include <thread_pool.h> 90eda14cbcSMatt Macy 91eda14cbcSMatt Macy #include <libshare.h> 92eda14cbcSMatt Macy #include <sys/systeminfo.h> 93eda14cbcSMatt Macy #define MAXISALEN 257 /* based on sysinfo(2) man page */ 94eda14cbcSMatt Macy 95eda14cbcSMatt Macy static int mount_tp_nthr = 512; /* tpool threads for multi-threaded mounting */ 96eda14cbcSMatt Macy 97eda14cbcSMatt Macy static void zfs_mount_task(void *); 98eda14cbcSMatt Macy zfs_share_type_t zfs_is_shared_proto(zfs_handle_t *, char **, 99eda14cbcSMatt Macy zfs_share_proto_t); 100eda14cbcSMatt Macy 101eda14cbcSMatt Macy /* 102eda14cbcSMatt Macy * The share protocols table must be in the same order as the zfs_share_proto_t 103eda14cbcSMatt Macy * enum in libzfs_impl.h 104eda14cbcSMatt Macy */ 105eda14cbcSMatt Macy proto_table_t proto_table[PROTO_END] = { 106eda14cbcSMatt Macy {ZFS_PROP_SHARENFS, "nfs", EZFS_SHARENFSFAILED, EZFS_UNSHARENFSFAILED}, 107eda14cbcSMatt Macy {ZFS_PROP_SHARESMB, "smb", EZFS_SHARESMBFAILED, EZFS_UNSHARESMBFAILED}, 108eda14cbcSMatt Macy }; 109eda14cbcSMatt Macy 110eda14cbcSMatt Macy zfs_share_proto_t nfs_only[] = { 111eda14cbcSMatt Macy PROTO_NFS, 112eda14cbcSMatt Macy PROTO_END 113eda14cbcSMatt Macy }; 114eda14cbcSMatt Macy 115eda14cbcSMatt Macy zfs_share_proto_t smb_only[] = { 116eda14cbcSMatt Macy PROTO_SMB, 117eda14cbcSMatt Macy PROTO_END 118eda14cbcSMatt Macy }; 119eda14cbcSMatt Macy zfs_share_proto_t share_all_proto[] = { 120eda14cbcSMatt Macy PROTO_NFS, 121eda14cbcSMatt Macy PROTO_SMB, 122eda14cbcSMatt Macy PROTO_END 123eda14cbcSMatt Macy }; 124eda14cbcSMatt Macy 125eda14cbcSMatt Macy 126eda14cbcSMatt Macy 127eda14cbcSMatt Macy static boolean_t 128eda14cbcSMatt Macy dir_is_empty_stat(const char *dirname) 129eda14cbcSMatt Macy { 130eda14cbcSMatt Macy struct stat st; 131eda14cbcSMatt Macy 132eda14cbcSMatt Macy /* 133eda14cbcSMatt Macy * We only want to return false if the given path is a non empty 134eda14cbcSMatt Macy * directory, all other errors are handled elsewhere. 135eda14cbcSMatt Macy */ 136eda14cbcSMatt Macy if (stat(dirname, &st) < 0 || !S_ISDIR(st.st_mode)) { 137eda14cbcSMatt Macy return (B_TRUE); 138eda14cbcSMatt Macy } 139eda14cbcSMatt Macy 140eda14cbcSMatt Macy /* 141eda14cbcSMatt Macy * An empty directory will still have two entries in it, one 142eda14cbcSMatt Macy * entry for each of "." and "..". 143eda14cbcSMatt Macy */ 144eda14cbcSMatt Macy if (st.st_size > 2) { 145eda14cbcSMatt Macy return (B_FALSE); 146eda14cbcSMatt Macy } 147eda14cbcSMatt Macy 148eda14cbcSMatt Macy return (B_TRUE); 149eda14cbcSMatt Macy } 150eda14cbcSMatt Macy 151eda14cbcSMatt Macy static boolean_t 152eda14cbcSMatt Macy dir_is_empty_readdir(const char *dirname) 153eda14cbcSMatt Macy { 154eda14cbcSMatt Macy DIR *dirp; 155eda14cbcSMatt Macy struct dirent64 *dp; 156eda14cbcSMatt Macy int dirfd; 157eda14cbcSMatt Macy 158eda14cbcSMatt Macy if ((dirfd = openat(AT_FDCWD, dirname, 159eda14cbcSMatt Macy O_RDONLY | O_NDELAY | O_LARGEFILE | O_CLOEXEC, 0)) < 0) { 160eda14cbcSMatt Macy return (B_TRUE); 161eda14cbcSMatt Macy } 162eda14cbcSMatt Macy 163eda14cbcSMatt Macy if ((dirp = fdopendir(dirfd)) == NULL) { 164eda14cbcSMatt Macy (void) close(dirfd); 165eda14cbcSMatt Macy return (B_TRUE); 166eda14cbcSMatt Macy } 167eda14cbcSMatt Macy 168eda14cbcSMatt Macy while ((dp = readdir64(dirp)) != NULL) { 169eda14cbcSMatt Macy 170eda14cbcSMatt Macy if (strcmp(dp->d_name, ".") == 0 || 171eda14cbcSMatt Macy strcmp(dp->d_name, "..") == 0) 172eda14cbcSMatt Macy continue; 173eda14cbcSMatt Macy 174eda14cbcSMatt Macy (void) closedir(dirp); 175eda14cbcSMatt Macy return (B_FALSE); 176eda14cbcSMatt Macy } 177eda14cbcSMatt Macy 178eda14cbcSMatt Macy (void) closedir(dirp); 179eda14cbcSMatt Macy return (B_TRUE); 180eda14cbcSMatt Macy } 181eda14cbcSMatt Macy 182eda14cbcSMatt Macy /* 183eda14cbcSMatt Macy * Returns true if the specified directory is empty. If we can't open the 184eda14cbcSMatt Macy * directory at all, return true so that the mount can fail with a more 185eda14cbcSMatt Macy * informative error message. 186eda14cbcSMatt Macy */ 187eda14cbcSMatt Macy static boolean_t 188eda14cbcSMatt Macy dir_is_empty(const char *dirname) 189eda14cbcSMatt Macy { 190eda14cbcSMatt Macy struct statfs64 st; 191eda14cbcSMatt Macy 192eda14cbcSMatt Macy /* 193eda14cbcSMatt Macy * If the statvfs call fails or the filesystem is not a ZFS 194eda14cbcSMatt Macy * filesystem, fall back to the slow path which uses readdir. 195eda14cbcSMatt Macy */ 196eda14cbcSMatt Macy if ((statfs64(dirname, &st) != 0) || 197eda14cbcSMatt Macy (st.f_type != ZFS_SUPER_MAGIC)) { 198eda14cbcSMatt Macy return (dir_is_empty_readdir(dirname)); 199eda14cbcSMatt Macy } 200eda14cbcSMatt Macy 201eda14cbcSMatt Macy /* 202eda14cbcSMatt Macy * At this point, we know the provided path is on a ZFS 203eda14cbcSMatt Macy * filesystem, so we can use stat instead of readdir to 204eda14cbcSMatt Macy * determine if the directory is empty or not. We try to avoid 205eda14cbcSMatt Macy * using readdir because that requires opening "dirname"; this 206eda14cbcSMatt Macy * open file descriptor can potentially end up in a child 207eda14cbcSMatt Macy * process if there's a concurrent fork, thus preventing the 208eda14cbcSMatt Macy * zfs_mount() from otherwise succeeding (the open file 209eda14cbcSMatt Macy * descriptor inherited by the child process will cause the 210eda14cbcSMatt Macy * parent's mount to fail with EBUSY). The performance 211eda14cbcSMatt Macy * implications of replacing the open, read, and close with a 212eda14cbcSMatt Macy * single stat is nice; but is not the main motivation for the 213eda14cbcSMatt Macy * added complexity. 214eda14cbcSMatt Macy */ 215eda14cbcSMatt Macy return (dir_is_empty_stat(dirname)); 216eda14cbcSMatt Macy } 217eda14cbcSMatt Macy 218eda14cbcSMatt Macy /* 219eda14cbcSMatt Macy * Checks to see if the mount is active. If the filesystem is mounted, we fill 220eda14cbcSMatt Macy * in 'where' with the current mountpoint, and return 1. Otherwise, we return 221eda14cbcSMatt Macy * 0. 222eda14cbcSMatt Macy */ 223eda14cbcSMatt Macy boolean_t 224eda14cbcSMatt Macy is_mounted(libzfs_handle_t *zfs_hdl, const char *special, char **where) 225eda14cbcSMatt Macy { 226eda14cbcSMatt Macy struct mnttab entry; 227eda14cbcSMatt Macy 228eda14cbcSMatt Macy if (libzfs_mnttab_find(zfs_hdl, special, &entry) != 0) 229eda14cbcSMatt Macy return (B_FALSE); 230eda14cbcSMatt Macy 231eda14cbcSMatt Macy if (where != NULL) 232eda14cbcSMatt Macy *where = zfs_strdup(zfs_hdl, entry.mnt_mountp); 233eda14cbcSMatt Macy 234eda14cbcSMatt Macy return (B_TRUE); 235eda14cbcSMatt Macy } 236eda14cbcSMatt Macy 237eda14cbcSMatt Macy boolean_t 238eda14cbcSMatt Macy zfs_is_mounted(zfs_handle_t *zhp, char **where) 239eda14cbcSMatt Macy { 240eda14cbcSMatt Macy return (is_mounted(zhp->zfs_hdl, zfs_get_name(zhp), where)); 241eda14cbcSMatt Macy } 242eda14cbcSMatt Macy 243eda14cbcSMatt Macy /* 244eda14cbcSMatt Macy * Checks any higher order concerns about whether the given dataset is 245eda14cbcSMatt Macy * mountable, false otherwise. zfs_is_mountable_internal specifically assumes 246eda14cbcSMatt Macy * that the caller has verified the sanity of mounting the dataset at 247eda14cbcSMatt Macy * mountpoint to the extent the caller wants. 248eda14cbcSMatt Macy */ 249eda14cbcSMatt Macy static boolean_t 250eda14cbcSMatt Macy zfs_is_mountable_internal(zfs_handle_t *zhp, const char *mountpoint) 251eda14cbcSMatt Macy { 252eda14cbcSMatt Macy 253eda14cbcSMatt Macy if (zfs_prop_get_int(zhp, ZFS_PROP_ZONED) && 254eda14cbcSMatt Macy getzoneid() == GLOBAL_ZONEID) 255eda14cbcSMatt Macy return (B_FALSE); 256eda14cbcSMatt Macy 257eda14cbcSMatt Macy return (B_TRUE); 258eda14cbcSMatt Macy } 259eda14cbcSMatt Macy 260eda14cbcSMatt Macy /* 261eda14cbcSMatt Macy * Returns true if the given dataset is mountable, false otherwise. Returns the 262eda14cbcSMatt Macy * mountpoint in 'buf'. 263eda14cbcSMatt Macy */ 264eda14cbcSMatt Macy boolean_t 265eda14cbcSMatt Macy zfs_is_mountable(zfs_handle_t *zhp, char *buf, size_t buflen, 266eda14cbcSMatt Macy zprop_source_t *source, int flags) 267eda14cbcSMatt Macy { 268eda14cbcSMatt Macy char sourceloc[MAXNAMELEN]; 269eda14cbcSMatt Macy zprop_source_t sourcetype; 270eda14cbcSMatt Macy 271eda14cbcSMatt Macy if (!zfs_prop_valid_for_type(ZFS_PROP_MOUNTPOINT, zhp->zfs_type, 272eda14cbcSMatt Macy B_FALSE)) 273eda14cbcSMatt Macy return (B_FALSE); 274eda14cbcSMatt Macy 275eda14cbcSMatt Macy verify(zfs_prop_get(zhp, ZFS_PROP_MOUNTPOINT, buf, buflen, 276eda14cbcSMatt Macy &sourcetype, sourceloc, sizeof (sourceloc), B_FALSE) == 0); 277eda14cbcSMatt Macy 278eda14cbcSMatt Macy if (strcmp(buf, ZFS_MOUNTPOINT_NONE) == 0 || 279eda14cbcSMatt Macy strcmp(buf, ZFS_MOUNTPOINT_LEGACY) == 0) 280eda14cbcSMatt Macy return (B_FALSE); 281eda14cbcSMatt Macy 282eda14cbcSMatt Macy if (zfs_prop_get_int(zhp, ZFS_PROP_CANMOUNT) == ZFS_CANMOUNT_OFF) 283eda14cbcSMatt Macy return (B_FALSE); 284eda14cbcSMatt Macy 285eda14cbcSMatt Macy if (!zfs_is_mountable_internal(zhp, buf)) 286eda14cbcSMatt Macy return (B_FALSE); 287eda14cbcSMatt Macy 288eda14cbcSMatt Macy if (zfs_prop_get_int(zhp, ZFS_PROP_REDACTED) && !(flags & MS_FORCE)) 289eda14cbcSMatt Macy return (B_FALSE); 290eda14cbcSMatt Macy 291eda14cbcSMatt Macy if (source) 292eda14cbcSMatt Macy *source = sourcetype; 293eda14cbcSMatt Macy 294eda14cbcSMatt Macy return (B_TRUE); 295eda14cbcSMatt Macy } 296eda14cbcSMatt Macy 297eda14cbcSMatt Macy /* 298eda14cbcSMatt Macy * The filesystem is mounted by invoking the system mount utility rather 299eda14cbcSMatt Macy * than by the system call mount(2). This ensures that the /etc/mtab 300eda14cbcSMatt Macy * file is correctly locked for the update. Performing our own locking 301eda14cbcSMatt Macy * and /etc/mtab update requires making an unsafe assumption about how 302eda14cbcSMatt Macy * the mount utility performs its locking. Unfortunately, this also means 303eda14cbcSMatt Macy * in the case of a mount failure we do not have the exact errno. We must 304eda14cbcSMatt Macy * make due with return value from the mount process. 305eda14cbcSMatt Macy * 306eda14cbcSMatt Macy * In the long term a shared library called libmount is under development 307eda14cbcSMatt Macy * which provides a common API to address the locking and errno issues. 308eda14cbcSMatt Macy * Once the standard mount utility has been updated to use this library 309eda14cbcSMatt Macy * we can add an autoconf check to conditionally use it. 310eda14cbcSMatt Macy * 311eda14cbcSMatt Macy * http://www.kernel.org/pub/linux/utils/util-linux/libmount-docs/index.html 312eda14cbcSMatt Macy */ 313eda14cbcSMatt Macy 314eda14cbcSMatt Macy static int 315eda14cbcSMatt Macy zfs_add_option(zfs_handle_t *zhp, char *options, int len, 316eda14cbcSMatt Macy zfs_prop_t prop, char *on, char *off) 317eda14cbcSMatt Macy { 318eda14cbcSMatt Macy char *source; 319eda14cbcSMatt Macy uint64_t value; 320eda14cbcSMatt Macy 321eda14cbcSMatt Macy /* Skip adding duplicate default options */ 322eda14cbcSMatt Macy if ((strstr(options, on) != NULL) || (strstr(options, off) != NULL)) 323eda14cbcSMatt Macy return (0); 324eda14cbcSMatt Macy 325eda14cbcSMatt Macy /* 326eda14cbcSMatt Macy * zfs_prop_get_int() is not used to ensure our mount options 327eda14cbcSMatt Macy * are not influenced by the current /proc/self/mounts contents. 328eda14cbcSMatt Macy */ 329eda14cbcSMatt Macy value = getprop_uint64(zhp, prop, &source); 330eda14cbcSMatt Macy 331eda14cbcSMatt Macy (void) strlcat(options, ",", len); 332eda14cbcSMatt Macy (void) strlcat(options, value ? on : off, len); 333eda14cbcSMatt Macy 334eda14cbcSMatt Macy return (0); 335eda14cbcSMatt Macy } 336eda14cbcSMatt Macy 337eda14cbcSMatt Macy static int 338eda14cbcSMatt Macy zfs_add_options(zfs_handle_t *zhp, char *options, int len) 339eda14cbcSMatt Macy { 340eda14cbcSMatt Macy int error = 0; 341eda14cbcSMatt Macy 342eda14cbcSMatt Macy error = zfs_add_option(zhp, options, len, 343eda14cbcSMatt Macy ZFS_PROP_ATIME, MNTOPT_ATIME, MNTOPT_NOATIME); 344eda14cbcSMatt Macy /* 345eda14cbcSMatt Macy * don't add relatime/strictatime when atime=off, otherwise strictatime 346eda14cbcSMatt Macy * will force atime=on 347eda14cbcSMatt Macy */ 348eda14cbcSMatt Macy if (strstr(options, MNTOPT_NOATIME) == NULL) { 349eda14cbcSMatt Macy error = zfs_add_option(zhp, options, len, 350eda14cbcSMatt Macy ZFS_PROP_RELATIME, MNTOPT_RELATIME, MNTOPT_STRICTATIME); 351eda14cbcSMatt Macy } 352eda14cbcSMatt Macy error = error ? error : zfs_add_option(zhp, options, len, 353eda14cbcSMatt Macy ZFS_PROP_DEVICES, MNTOPT_DEVICES, MNTOPT_NODEVICES); 354eda14cbcSMatt Macy error = error ? error : zfs_add_option(zhp, options, len, 355eda14cbcSMatt Macy ZFS_PROP_EXEC, MNTOPT_EXEC, MNTOPT_NOEXEC); 356eda14cbcSMatt Macy error = error ? error : zfs_add_option(zhp, options, len, 357eda14cbcSMatt Macy ZFS_PROP_READONLY, MNTOPT_RO, MNTOPT_RW); 358eda14cbcSMatt Macy error = error ? error : zfs_add_option(zhp, options, len, 359eda14cbcSMatt Macy ZFS_PROP_SETUID, MNTOPT_SETUID, MNTOPT_NOSETUID); 360eda14cbcSMatt Macy error = error ? error : zfs_add_option(zhp, options, len, 361eda14cbcSMatt Macy ZFS_PROP_NBMAND, MNTOPT_NBMAND, MNTOPT_NONBMAND); 362eda14cbcSMatt Macy 363eda14cbcSMatt Macy return (error); 364eda14cbcSMatt Macy } 365eda14cbcSMatt Macy 366eda14cbcSMatt Macy int 367eda14cbcSMatt Macy zfs_mount(zfs_handle_t *zhp, const char *options, int flags) 368eda14cbcSMatt Macy { 369eda14cbcSMatt Macy char mountpoint[ZFS_MAXPROPLEN]; 370eda14cbcSMatt Macy 371eda14cbcSMatt Macy if (!zfs_is_mountable(zhp, mountpoint, sizeof (mountpoint), NULL, 372eda14cbcSMatt Macy flags)) 373eda14cbcSMatt Macy return (0); 374eda14cbcSMatt Macy 375eda14cbcSMatt Macy return (zfs_mount_at(zhp, options, flags, mountpoint)); 376eda14cbcSMatt Macy } 377eda14cbcSMatt Macy 378eda14cbcSMatt Macy /* 379eda14cbcSMatt Macy * Mount the given filesystem. 380eda14cbcSMatt Macy */ 381eda14cbcSMatt Macy int 382eda14cbcSMatt Macy zfs_mount_at(zfs_handle_t *zhp, const char *options, int flags, 383eda14cbcSMatt Macy const char *mountpoint) 384eda14cbcSMatt Macy { 385eda14cbcSMatt Macy struct stat buf; 386eda14cbcSMatt Macy char mntopts[MNT_LINE_MAX]; 387eda14cbcSMatt Macy char overlay[ZFS_MAXPROPLEN]; 388eda14cbcSMatt Macy libzfs_handle_t *hdl = zhp->zfs_hdl; 389eda14cbcSMatt Macy uint64_t keystatus; 390eda14cbcSMatt Macy int remount = 0, rc; 391eda14cbcSMatt Macy 392eda14cbcSMatt Macy if (options == NULL) { 393eda14cbcSMatt Macy (void) strlcpy(mntopts, MNTOPT_DEFAULTS, sizeof (mntopts)); 394eda14cbcSMatt Macy } else { 395eda14cbcSMatt Macy (void) strlcpy(mntopts, options, sizeof (mntopts)); 396eda14cbcSMatt Macy } 397eda14cbcSMatt Macy 398eda14cbcSMatt Macy if (strstr(mntopts, MNTOPT_REMOUNT) != NULL) 399eda14cbcSMatt Macy remount = 1; 400eda14cbcSMatt Macy 401eda14cbcSMatt Macy /* Potentially duplicates some checks if invoked by zfs_mount(). */ 402eda14cbcSMatt Macy if (!zfs_is_mountable_internal(zhp, mountpoint)) 403eda14cbcSMatt Macy return (0); 404eda14cbcSMatt Macy 405eda14cbcSMatt Macy /* 406eda14cbcSMatt Macy * If the pool is imported read-only then all mounts must be read-only 407eda14cbcSMatt Macy */ 408eda14cbcSMatt Macy if (zpool_get_prop_int(zhp->zpool_hdl, ZPOOL_PROP_READONLY, NULL)) 409eda14cbcSMatt Macy (void) strlcat(mntopts, "," MNTOPT_RO, sizeof (mntopts)); 410eda14cbcSMatt Macy 411eda14cbcSMatt Macy /* 412eda14cbcSMatt Macy * Append default mount options which apply to the mount point. 413eda14cbcSMatt Macy * This is done because under Linux (unlike Solaris) multiple mount 414eda14cbcSMatt Macy * points may reference a single super block. This means that just 415eda14cbcSMatt Macy * given a super block there is no back reference to update the per 416eda14cbcSMatt Macy * mount point options. 417eda14cbcSMatt Macy */ 418eda14cbcSMatt Macy rc = zfs_add_options(zhp, mntopts, sizeof (mntopts)); 419eda14cbcSMatt Macy if (rc) { 420eda14cbcSMatt Macy zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 421eda14cbcSMatt Macy "default options unavailable")); 422eda14cbcSMatt Macy return (zfs_error_fmt(hdl, EZFS_MOUNTFAILED, 423eda14cbcSMatt Macy dgettext(TEXT_DOMAIN, "cannot mount '%s'"), 424eda14cbcSMatt Macy mountpoint)); 425eda14cbcSMatt Macy } 426eda14cbcSMatt Macy 427eda14cbcSMatt Macy /* 428eda14cbcSMatt Macy * If the filesystem is encrypted the key must be loaded in order to 429eda14cbcSMatt Macy * mount. If the key isn't loaded, the MS_CRYPT flag decides whether 430eda14cbcSMatt Macy * or not we attempt to load the keys. Note: we must call 431eda14cbcSMatt Macy * zfs_refresh_properties() here since some callers of this function 432eda14cbcSMatt Macy * (most notably zpool_enable_datasets()) may implicitly load our key 433eda14cbcSMatt Macy * by loading the parent's key first. 434eda14cbcSMatt Macy */ 435eda14cbcSMatt Macy if (zfs_prop_get_int(zhp, ZFS_PROP_ENCRYPTION) != ZIO_CRYPT_OFF) { 436eda14cbcSMatt Macy zfs_refresh_properties(zhp); 437eda14cbcSMatt Macy keystatus = zfs_prop_get_int(zhp, ZFS_PROP_KEYSTATUS); 438eda14cbcSMatt Macy 439eda14cbcSMatt Macy /* 440eda14cbcSMatt Macy * If the key is unavailable and MS_CRYPT is set give the 441eda14cbcSMatt Macy * user a chance to enter the key. Otherwise just fail 442eda14cbcSMatt Macy * immediately. 443eda14cbcSMatt Macy */ 444eda14cbcSMatt Macy if (keystatus == ZFS_KEYSTATUS_UNAVAILABLE) { 445eda14cbcSMatt Macy if (flags & MS_CRYPT) { 446eda14cbcSMatt Macy rc = zfs_crypto_load_key(zhp, B_FALSE, NULL); 447eda14cbcSMatt Macy if (rc) 448eda14cbcSMatt Macy return (rc); 449eda14cbcSMatt Macy } else { 450eda14cbcSMatt Macy zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 451eda14cbcSMatt Macy "encryption key not loaded")); 452eda14cbcSMatt Macy return (zfs_error_fmt(hdl, EZFS_MOUNTFAILED, 453eda14cbcSMatt Macy dgettext(TEXT_DOMAIN, "cannot mount '%s'"), 454eda14cbcSMatt Macy mountpoint)); 455eda14cbcSMatt Macy } 456eda14cbcSMatt Macy } 457eda14cbcSMatt Macy 458eda14cbcSMatt Macy } 459eda14cbcSMatt Macy 460eda14cbcSMatt Macy /* 461eda14cbcSMatt Macy * Append zfsutil option so the mount helper allow the mount 462eda14cbcSMatt Macy */ 463eda14cbcSMatt Macy strlcat(mntopts, "," MNTOPT_ZFSUTIL, sizeof (mntopts)); 464eda14cbcSMatt Macy 465eda14cbcSMatt Macy /* Create the directory if it doesn't already exist */ 466eda14cbcSMatt Macy if (lstat(mountpoint, &buf) != 0) { 467eda14cbcSMatt Macy if (mkdirp(mountpoint, 0755) != 0) { 468eda14cbcSMatt Macy zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 469eda14cbcSMatt Macy "failed to create mountpoint: %s"), 470eda14cbcSMatt Macy strerror(errno)); 471eda14cbcSMatt Macy return (zfs_error_fmt(hdl, EZFS_MOUNTFAILED, 472eda14cbcSMatt Macy dgettext(TEXT_DOMAIN, "cannot mount '%s'"), 473eda14cbcSMatt Macy mountpoint)); 474eda14cbcSMatt Macy } 475eda14cbcSMatt Macy } 476eda14cbcSMatt Macy 477eda14cbcSMatt Macy /* 478eda14cbcSMatt Macy * Overlay mounts are enabled by default but may be disabled 479eda14cbcSMatt Macy * via the 'overlay' property. The -O flag remains for compatibility. 480eda14cbcSMatt Macy */ 481eda14cbcSMatt Macy if (!(flags & MS_OVERLAY)) { 482eda14cbcSMatt Macy if (zfs_prop_get(zhp, ZFS_PROP_OVERLAY, overlay, 483eda14cbcSMatt Macy sizeof (overlay), NULL, NULL, 0, B_FALSE) == 0) { 484eda14cbcSMatt Macy if (strcmp(overlay, "on") == 0) { 485eda14cbcSMatt Macy flags |= MS_OVERLAY; 486eda14cbcSMatt Macy } 487eda14cbcSMatt Macy } 488eda14cbcSMatt Macy } 489eda14cbcSMatt Macy 490eda14cbcSMatt Macy /* 491eda14cbcSMatt Macy * Determine if the mountpoint is empty. If so, refuse to perform the 492eda14cbcSMatt Macy * mount. We don't perform this check if 'remount' is 493eda14cbcSMatt Macy * specified or if overlay option (-O) is given 494eda14cbcSMatt Macy */ 495eda14cbcSMatt Macy if ((flags & MS_OVERLAY) == 0 && !remount && 496eda14cbcSMatt Macy !dir_is_empty(mountpoint)) { 497eda14cbcSMatt Macy zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 498eda14cbcSMatt Macy "directory is not empty")); 499eda14cbcSMatt Macy return (zfs_error_fmt(hdl, EZFS_MOUNTFAILED, 500eda14cbcSMatt Macy dgettext(TEXT_DOMAIN, "cannot mount '%s'"), mountpoint)); 501eda14cbcSMatt Macy } 502eda14cbcSMatt Macy 503eda14cbcSMatt Macy /* perform the mount */ 504eda14cbcSMatt Macy rc = do_mount(zhp, mountpoint, mntopts, flags); 505eda14cbcSMatt Macy if (rc) { 506eda14cbcSMatt Macy /* 507eda14cbcSMatt Macy * Generic errors are nasty, but there are just way too many 508eda14cbcSMatt Macy * from mount(), and they're well-understood. We pick a few 509eda14cbcSMatt Macy * common ones to improve upon. 510eda14cbcSMatt Macy */ 511eda14cbcSMatt Macy if (rc == EBUSY) { 512eda14cbcSMatt Macy zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 513eda14cbcSMatt Macy "mountpoint or dataset is busy")); 514eda14cbcSMatt Macy } else if (rc == EPERM) { 515eda14cbcSMatt Macy zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 516eda14cbcSMatt Macy "Insufficient privileges")); 517eda14cbcSMatt Macy } else if (rc == ENOTSUP) { 518eda14cbcSMatt Macy char buf[256]; 519eda14cbcSMatt Macy int spa_version; 520eda14cbcSMatt Macy 521eda14cbcSMatt Macy VERIFY(zfs_spa_version(zhp, &spa_version) == 0); 522eda14cbcSMatt Macy (void) snprintf(buf, sizeof (buf), 523eda14cbcSMatt Macy dgettext(TEXT_DOMAIN, "Can't mount a version %lld " 524eda14cbcSMatt Macy "file system on a version %d pool. Pool must be" 525eda14cbcSMatt Macy " upgraded to mount this file system."), 526eda14cbcSMatt Macy (u_longlong_t)zfs_prop_get_int(zhp, 527eda14cbcSMatt Macy ZFS_PROP_VERSION), spa_version); 528eda14cbcSMatt Macy zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, buf)); 529eda14cbcSMatt Macy } else { 530eda14cbcSMatt Macy zfs_error_aux(hdl, strerror(rc)); 531eda14cbcSMatt Macy } 532eda14cbcSMatt Macy return (zfs_error_fmt(hdl, EZFS_MOUNTFAILED, 533eda14cbcSMatt Macy dgettext(TEXT_DOMAIN, "cannot mount '%s'"), 534eda14cbcSMatt Macy zhp->zfs_name)); 535eda14cbcSMatt Macy } 536eda14cbcSMatt Macy 537eda14cbcSMatt Macy /* remove the mounted entry before re-adding on remount */ 538eda14cbcSMatt Macy if (remount) 539eda14cbcSMatt Macy libzfs_mnttab_remove(hdl, zhp->zfs_name); 540eda14cbcSMatt Macy 541eda14cbcSMatt Macy /* add the mounted entry into our cache */ 542eda14cbcSMatt Macy libzfs_mnttab_add(hdl, zfs_get_name(zhp), mountpoint, mntopts); 543eda14cbcSMatt Macy return (0); 544eda14cbcSMatt Macy } 545eda14cbcSMatt Macy 546eda14cbcSMatt Macy /* 547eda14cbcSMatt Macy * Unmount a single filesystem. 548eda14cbcSMatt Macy */ 549eda14cbcSMatt Macy static int 550eda14cbcSMatt Macy unmount_one(libzfs_handle_t *hdl, const char *mountpoint, int flags) 551eda14cbcSMatt Macy { 552eda14cbcSMatt Macy int error; 553eda14cbcSMatt Macy 554eda14cbcSMatt Macy error = do_unmount(mountpoint, flags); 555eda14cbcSMatt Macy if (error != 0) { 556*9db44a8eSMartin Matuska int libzfs_err; 557*9db44a8eSMartin Matuska 558*9db44a8eSMartin Matuska switch (error) { 559*9db44a8eSMartin Matuska case EBUSY: 560*9db44a8eSMartin Matuska libzfs_err = EZFS_BUSY; 561*9db44a8eSMartin Matuska break; 562*9db44a8eSMartin Matuska case EIO: 563*9db44a8eSMartin Matuska libzfs_err = EZFS_IO; 564*9db44a8eSMartin Matuska break; 565*9db44a8eSMartin Matuska case ENOENT: 566*9db44a8eSMartin Matuska libzfs_err = EZFS_NOENT; 567*9db44a8eSMartin Matuska break; 568*9db44a8eSMartin Matuska case ENOMEM: 569*9db44a8eSMartin Matuska libzfs_err = EZFS_NOMEM; 570*9db44a8eSMartin Matuska break; 571*9db44a8eSMartin Matuska case EPERM: 572*9db44a8eSMartin Matuska libzfs_err = EZFS_PERM; 573*9db44a8eSMartin Matuska break; 574*9db44a8eSMartin Matuska default: 575*9db44a8eSMartin Matuska libzfs_err = EZFS_UMOUNTFAILED; 576*9db44a8eSMartin Matuska } 577*9db44a8eSMartin Matuska return (zfs_error_fmt(hdl, libzfs_err, 578eda14cbcSMatt Macy dgettext(TEXT_DOMAIN, "cannot unmount '%s'"), 579eda14cbcSMatt Macy mountpoint)); 580eda14cbcSMatt Macy } 581eda14cbcSMatt Macy 582eda14cbcSMatt Macy return (0); 583eda14cbcSMatt Macy } 584eda14cbcSMatt Macy 585eda14cbcSMatt Macy /* 586eda14cbcSMatt Macy * Unmount the given filesystem. 587eda14cbcSMatt Macy */ 588eda14cbcSMatt Macy int 589eda14cbcSMatt Macy zfs_unmount(zfs_handle_t *zhp, const char *mountpoint, int flags) 590eda14cbcSMatt Macy { 591eda14cbcSMatt Macy libzfs_handle_t *hdl = zhp->zfs_hdl; 592eda14cbcSMatt Macy struct mnttab entry; 593eda14cbcSMatt Macy char *mntpt = NULL; 594eda14cbcSMatt Macy boolean_t encroot, unmounted = B_FALSE; 595eda14cbcSMatt Macy 596eda14cbcSMatt Macy /* check to see if we need to unmount the filesystem */ 597eda14cbcSMatt Macy if (mountpoint != NULL || ((zfs_get_type(zhp) == ZFS_TYPE_FILESYSTEM) && 598eda14cbcSMatt Macy libzfs_mnttab_find(hdl, zhp->zfs_name, &entry) == 0)) { 599eda14cbcSMatt Macy /* 600eda14cbcSMatt Macy * mountpoint may have come from a call to 601eda14cbcSMatt Macy * getmnt/getmntany if it isn't NULL. If it is NULL, 602eda14cbcSMatt Macy * we know it comes from libzfs_mnttab_find which can 603eda14cbcSMatt Macy * then get freed later. We strdup it to play it safe. 604eda14cbcSMatt Macy */ 605eda14cbcSMatt Macy if (mountpoint == NULL) 606eda14cbcSMatt Macy mntpt = zfs_strdup(hdl, entry.mnt_mountp); 607eda14cbcSMatt Macy else 608eda14cbcSMatt Macy mntpt = zfs_strdup(hdl, mountpoint); 609eda14cbcSMatt Macy 610eda14cbcSMatt Macy /* 611eda14cbcSMatt Macy * Unshare and unmount the filesystem 612eda14cbcSMatt Macy */ 613eda14cbcSMatt Macy if (zfs_unshare_proto(zhp, mntpt, share_all_proto) != 0) { 614eda14cbcSMatt Macy free(mntpt); 615eda14cbcSMatt Macy return (-1); 616eda14cbcSMatt Macy } 617eda14cbcSMatt Macy zfs_commit_all_shares(); 618eda14cbcSMatt Macy 619eda14cbcSMatt Macy if (unmount_one(hdl, mntpt, flags) != 0) { 620eda14cbcSMatt Macy free(mntpt); 621eda14cbcSMatt Macy (void) zfs_shareall(zhp); 622eda14cbcSMatt Macy zfs_commit_all_shares(); 623eda14cbcSMatt Macy return (-1); 624eda14cbcSMatt Macy } 625eda14cbcSMatt Macy 626eda14cbcSMatt Macy libzfs_mnttab_remove(hdl, zhp->zfs_name); 627eda14cbcSMatt Macy free(mntpt); 628eda14cbcSMatt Macy unmounted = B_TRUE; 629eda14cbcSMatt Macy } 630eda14cbcSMatt Macy 631eda14cbcSMatt Macy /* 632eda14cbcSMatt Macy * If the MS_CRYPT flag is provided we must ensure we attempt to 633eda14cbcSMatt Macy * unload the dataset's key regardless of whether we did any work 634eda14cbcSMatt Macy * to unmount it. We only do this for encryption roots. 635eda14cbcSMatt Macy */ 636eda14cbcSMatt Macy if ((flags & MS_CRYPT) != 0 && 637eda14cbcSMatt Macy zfs_prop_get_int(zhp, ZFS_PROP_ENCRYPTION) != ZIO_CRYPT_OFF) { 638eda14cbcSMatt Macy zfs_refresh_properties(zhp); 639eda14cbcSMatt Macy 640eda14cbcSMatt Macy if (zfs_crypto_get_encryption_root(zhp, &encroot, NULL) != 0 && 641eda14cbcSMatt Macy unmounted) { 642eda14cbcSMatt Macy (void) zfs_mount(zhp, NULL, 0); 643eda14cbcSMatt Macy return (-1); 644eda14cbcSMatt Macy } 645eda14cbcSMatt Macy 646eda14cbcSMatt Macy if (encroot && zfs_prop_get_int(zhp, ZFS_PROP_KEYSTATUS) == 647eda14cbcSMatt Macy ZFS_KEYSTATUS_AVAILABLE && 648eda14cbcSMatt Macy zfs_crypto_unload_key(zhp) != 0) { 649eda14cbcSMatt Macy (void) zfs_mount(zhp, NULL, 0); 650eda14cbcSMatt Macy return (-1); 651eda14cbcSMatt Macy } 652eda14cbcSMatt Macy } 653eda14cbcSMatt Macy 654eda14cbcSMatt Macy return (0); 655eda14cbcSMatt Macy } 656eda14cbcSMatt Macy 657eda14cbcSMatt Macy /* 658eda14cbcSMatt Macy * Unmount this filesystem and any children inheriting the mountpoint property. 659eda14cbcSMatt Macy * To do this, just act like we're changing the mountpoint property, but don't 660eda14cbcSMatt Macy * remount the filesystems afterwards. 661eda14cbcSMatt Macy */ 662eda14cbcSMatt Macy int 663eda14cbcSMatt Macy zfs_unmountall(zfs_handle_t *zhp, int flags) 664eda14cbcSMatt Macy { 665eda14cbcSMatt Macy prop_changelist_t *clp; 666eda14cbcSMatt Macy int ret; 667eda14cbcSMatt Macy 668eda14cbcSMatt Macy clp = changelist_gather(zhp, ZFS_PROP_MOUNTPOINT, 669eda14cbcSMatt Macy CL_GATHER_ITER_MOUNTED, flags); 670eda14cbcSMatt Macy if (clp == NULL) 671eda14cbcSMatt Macy return (-1); 672eda14cbcSMatt Macy 673eda14cbcSMatt Macy ret = changelist_prefix(clp); 674eda14cbcSMatt Macy changelist_free(clp); 675eda14cbcSMatt Macy 676eda14cbcSMatt Macy return (ret); 677eda14cbcSMatt Macy } 678eda14cbcSMatt Macy 679eda14cbcSMatt Macy boolean_t 680eda14cbcSMatt Macy zfs_is_shared(zfs_handle_t *zhp) 681eda14cbcSMatt Macy { 682eda14cbcSMatt Macy zfs_share_type_t rc = 0; 683eda14cbcSMatt Macy zfs_share_proto_t *curr_proto; 684eda14cbcSMatt Macy 685eda14cbcSMatt Macy if (ZFS_IS_VOLUME(zhp)) 686eda14cbcSMatt Macy return (B_FALSE); 687eda14cbcSMatt Macy 688eda14cbcSMatt Macy for (curr_proto = share_all_proto; *curr_proto != PROTO_END; 689eda14cbcSMatt Macy curr_proto++) 690eda14cbcSMatt Macy rc |= zfs_is_shared_proto(zhp, NULL, *curr_proto); 691eda14cbcSMatt Macy 692eda14cbcSMatt Macy return (rc ? B_TRUE : B_FALSE); 693eda14cbcSMatt Macy } 694eda14cbcSMatt Macy 695eda14cbcSMatt Macy /* 696eda14cbcSMatt Macy * Unshare a filesystem by mountpoint. 697eda14cbcSMatt Macy */ 698eda14cbcSMatt Macy int 699eda14cbcSMatt Macy unshare_one(libzfs_handle_t *hdl, const char *name, const char *mountpoint, 700eda14cbcSMatt Macy zfs_share_proto_t proto) 701eda14cbcSMatt Macy { 702eda14cbcSMatt Macy int err; 703eda14cbcSMatt Macy 704eda14cbcSMatt Macy err = sa_disable_share(mountpoint, proto_table[proto].p_name); 705eda14cbcSMatt Macy if (err != SA_OK) { 706eda14cbcSMatt Macy return (zfs_error_fmt(hdl, proto_table[proto].p_unshare_err, 707eda14cbcSMatt Macy dgettext(TEXT_DOMAIN, "cannot unshare '%s': %s"), 708eda14cbcSMatt Macy name, sa_errorstr(err))); 709eda14cbcSMatt Macy } 710eda14cbcSMatt Macy return (0); 711eda14cbcSMatt Macy } 712eda14cbcSMatt Macy 713eda14cbcSMatt Macy /* 714eda14cbcSMatt Macy * Query libshare for the given mountpoint and protocol, returning 715eda14cbcSMatt Macy * a zfs_share_type_t value. 716eda14cbcSMatt Macy */ 717eda14cbcSMatt Macy zfs_share_type_t 718eda14cbcSMatt Macy is_shared(const char *mountpoint, zfs_share_proto_t proto) 719eda14cbcSMatt Macy { 720eda14cbcSMatt Macy if (sa_is_shared(mountpoint, proto_table[proto].p_name)) { 721eda14cbcSMatt Macy switch (proto) { 722eda14cbcSMatt Macy case PROTO_NFS: 723eda14cbcSMatt Macy return (SHARED_NFS); 724eda14cbcSMatt Macy case PROTO_SMB: 725eda14cbcSMatt Macy return (SHARED_SMB); 726eda14cbcSMatt Macy default: 727eda14cbcSMatt Macy return (SHARED_NOT_SHARED); 728eda14cbcSMatt Macy } 729eda14cbcSMatt Macy } 730eda14cbcSMatt Macy return (SHARED_NOT_SHARED); 731eda14cbcSMatt Macy } 732eda14cbcSMatt Macy 733eda14cbcSMatt Macy /* 734eda14cbcSMatt Macy * Share the given filesystem according to the options in the specified 735eda14cbcSMatt Macy * protocol specific properties (sharenfs, sharesmb). We rely 736eda14cbcSMatt Macy * on "libshare" to do the dirty work for us. 737eda14cbcSMatt Macy */ 738eda14cbcSMatt Macy int 739eda14cbcSMatt Macy zfs_share_proto(zfs_handle_t *zhp, zfs_share_proto_t *proto) 740eda14cbcSMatt Macy { 741eda14cbcSMatt Macy char mountpoint[ZFS_MAXPROPLEN]; 742eda14cbcSMatt Macy char shareopts[ZFS_MAXPROPLEN]; 743eda14cbcSMatt Macy char sourcestr[ZFS_MAXPROPLEN]; 744eda14cbcSMatt Macy zfs_share_proto_t *curr_proto; 745eda14cbcSMatt Macy zprop_source_t sourcetype; 746eda14cbcSMatt Macy int err = 0; 747eda14cbcSMatt Macy 748eda14cbcSMatt Macy if (!zfs_is_mountable(zhp, mountpoint, sizeof (mountpoint), NULL, 0)) 749eda14cbcSMatt Macy return (0); 750eda14cbcSMatt Macy 751eda14cbcSMatt Macy for (curr_proto = proto; *curr_proto != PROTO_END; curr_proto++) { 752eda14cbcSMatt Macy /* 753eda14cbcSMatt Macy * Return success if there are no share options. 754eda14cbcSMatt Macy */ 755eda14cbcSMatt Macy if (zfs_prop_get(zhp, proto_table[*curr_proto].p_prop, 756eda14cbcSMatt Macy shareopts, sizeof (shareopts), &sourcetype, sourcestr, 757eda14cbcSMatt Macy ZFS_MAXPROPLEN, B_FALSE) != 0 || 758eda14cbcSMatt Macy strcmp(shareopts, "off") == 0) 759eda14cbcSMatt Macy continue; 760eda14cbcSMatt Macy 761eda14cbcSMatt Macy /* 762eda14cbcSMatt Macy * If the 'zoned' property is set, then zfs_is_mountable() 763eda14cbcSMatt Macy * will have already bailed out if we are in the global zone. 764eda14cbcSMatt Macy * But local zones cannot be NFS servers, so we ignore it for 765eda14cbcSMatt Macy * local zones as well. 766eda14cbcSMatt Macy */ 767eda14cbcSMatt Macy if (zfs_prop_get_int(zhp, ZFS_PROP_ZONED)) 768eda14cbcSMatt Macy continue; 769eda14cbcSMatt Macy 770eda14cbcSMatt Macy err = sa_enable_share(zfs_get_name(zhp), mountpoint, shareopts, 771eda14cbcSMatt Macy proto_table[*curr_proto].p_name); 772eda14cbcSMatt Macy if (err != SA_OK) { 773eda14cbcSMatt Macy return (zfs_error_fmt(zhp->zfs_hdl, 774eda14cbcSMatt Macy proto_table[*curr_proto].p_share_err, 775eda14cbcSMatt Macy dgettext(TEXT_DOMAIN, "cannot share '%s: %s'"), 776eda14cbcSMatt Macy zfs_get_name(zhp), sa_errorstr(err))); 777eda14cbcSMatt Macy } 778eda14cbcSMatt Macy 779eda14cbcSMatt Macy } 780eda14cbcSMatt Macy return (0); 781eda14cbcSMatt Macy } 782eda14cbcSMatt Macy 783eda14cbcSMatt Macy int 784eda14cbcSMatt Macy zfs_share(zfs_handle_t *zhp) 785eda14cbcSMatt Macy { 786eda14cbcSMatt Macy assert(!ZFS_IS_VOLUME(zhp)); 787eda14cbcSMatt Macy return (zfs_share_proto(zhp, share_all_proto)); 788eda14cbcSMatt Macy } 789eda14cbcSMatt Macy 790eda14cbcSMatt Macy int 791eda14cbcSMatt Macy zfs_unshare(zfs_handle_t *zhp) 792eda14cbcSMatt Macy { 793eda14cbcSMatt Macy assert(!ZFS_IS_VOLUME(zhp)); 794eda14cbcSMatt Macy return (zfs_unshareall(zhp)); 795eda14cbcSMatt Macy } 796eda14cbcSMatt Macy 797eda14cbcSMatt Macy /* 798eda14cbcSMatt Macy * Check to see if the filesystem is currently shared. 799eda14cbcSMatt Macy */ 800eda14cbcSMatt Macy zfs_share_type_t 801eda14cbcSMatt Macy zfs_is_shared_proto(zfs_handle_t *zhp, char **where, zfs_share_proto_t proto) 802eda14cbcSMatt Macy { 803eda14cbcSMatt Macy char *mountpoint; 804eda14cbcSMatt Macy zfs_share_type_t rc; 805eda14cbcSMatt Macy 806eda14cbcSMatt Macy if (!zfs_is_mounted(zhp, &mountpoint)) 807eda14cbcSMatt Macy return (SHARED_NOT_SHARED); 808eda14cbcSMatt Macy 809eda14cbcSMatt Macy if ((rc = is_shared(mountpoint, proto)) 810eda14cbcSMatt Macy != SHARED_NOT_SHARED) { 811eda14cbcSMatt Macy if (where != NULL) 812eda14cbcSMatt Macy *where = mountpoint; 813eda14cbcSMatt Macy else 814eda14cbcSMatt Macy free(mountpoint); 815eda14cbcSMatt Macy return (rc); 816eda14cbcSMatt Macy } else { 817eda14cbcSMatt Macy free(mountpoint); 818eda14cbcSMatt Macy return (SHARED_NOT_SHARED); 819eda14cbcSMatt Macy } 820eda14cbcSMatt Macy } 821eda14cbcSMatt Macy 822eda14cbcSMatt Macy boolean_t 823eda14cbcSMatt Macy zfs_is_shared_nfs(zfs_handle_t *zhp, char **where) 824eda14cbcSMatt Macy { 825eda14cbcSMatt Macy return (zfs_is_shared_proto(zhp, where, 826eda14cbcSMatt Macy PROTO_NFS) != SHARED_NOT_SHARED); 827eda14cbcSMatt Macy } 828eda14cbcSMatt Macy 829eda14cbcSMatt Macy boolean_t 830eda14cbcSMatt Macy zfs_is_shared_smb(zfs_handle_t *zhp, char **where) 831eda14cbcSMatt Macy { 832eda14cbcSMatt Macy return (zfs_is_shared_proto(zhp, where, 833eda14cbcSMatt Macy PROTO_SMB) != SHARED_NOT_SHARED); 834eda14cbcSMatt Macy } 835eda14cbcSMatt Macy 836eda14cbcSMatt Macy /* 837eda14cbcSMatt Macy * zfs_parse_options(options, proto) 838eda14cbcSMatt Macy * 839eda14cbcSMatt Macy * Call the legacy parse interface to get the protocol specific 840eda14cbcSMatt Macy * options using the NULL arg to indicate that this is a "parse" only. 841eda14cbcSMatt Macy */ 842eda14cbcSMatt Macy int 843eda14cbcSMatt Macy zfs_parse_options(char *options, zfs_share_proto_t proto) 844eda14cbcSMatt Macy { 845eda14cbcSMatt Macy return (sa_validate_shareopts(options, proto_table[proto].p_name)); 846eda14cbcSMatt Macy } 847eda14cbcSMatt Macy 848eda14cbcSMatt Macy void 849eda14cbcSMatt Macy zfs_commit_proto(zfs_share_proto_t *proto) 850eda14cbcSMatt Macy { 851eda14cbcSMatt Macy zfs_share_proto_t *curr_proto; 852eda14cbcSMatt Macy for (curr_proto = proto; *curr_proto != PROTO_END; curr_proto++) { 853eda14cbcSMatt Macy sa_commit_shares(proto_table[*curr_proto].p_name); 854eda14cbcSMatt Macy } 855eda14cbcSMatt Macy } 856eda14cbcSMatt Macy 857eda14cbcSMatt Macy void 858eda14cbcSMatt Macy zfs_commit_nfs_shares(void) 859eda14cbcSMatt Macy { 860eda14cbcSMatt Macy zfs_commit_proto(nfs_only); 861eda14cbcSMatt Macy } 862eda14cbcSMatt Macy 863eda14cbcSMatt Macy void 864eda14cbcSMatt Macy zfs_commit_smb_shares(void) 865eda14cbcSMatt Macy { 866eda14cbcSMatt Macy zfs_commit_proto(smb_only); 867eda14cbcSMatt Macy } 868eda14cbcSMatt Macy 869eda14cbcSMatt Macy void 870eda14cbcSMatt Macy zfs_commit_all_shares(void) 871eda14cbcSMatt Macy { 872eda14cbcSMatt Macy zfs_commit_proto(share_all_proto); 873eda14cbcSMatt Macy } 874eda14cbcSMatt Macy 875eda14cbcSMatt Macy void 876eda14cbcSMatt Macy zfs_commit_shares(const char *proto) 877eda14cbcSMatt Macy { 878eda14cbcSMatt Macy if (proto == NULL) 879eda14cbcSMatt Macy zfs_commit_proto(share_all_proto); 880eda14cbcSMatt Macy else if (strcmp(proto, "nfs") == 0) 881eda14cbcSMatt Macy zfs_commit_proto(nfs_only); 882eda14cbcSMatt Macy else if (strcmp(proto, "smb") == 0) 883eda14cbcSMatt Macy zfs_commit_proto(smb_only); 884eda14cbcSMatt Macy } 885eda14cbcSMatt Macy 886eda14cbcSMatt Macy int 887eda14cbcSMatt Macy zfs_share_nfs(zfs_handle_t *zhp) 888eda14cbcSMatt Macy { 889eda14cbcSMatt Macy return (zfs_share_proto(zhp, nfs_only)); 890eda14cbcSMatt Macy } 891eda14cbcSMatt Macy 892eda14cbcSMatt Macy int 893eda14cbcSMatt Macy zfs_share_smb(zfs_handle_t *zhp) 894eda14cbcSMatt Macy { 895eda14cbcSMatt Macy return (zfs_share_proto(zhp, smb_only)); 896eda14cbcSMatt Macy } 897eda14cbcSMatt Macy 898eda14cbcSMatt Macy int 899eda14cbcSMatt Macy zfs_shareall(zfs_handle_t *zhp) 900eda14cbcSMatt Macy { 901eda14cbcSMatt Macy return (zfs_share_proto(zhp, share_all_proto)); 902eda14cbcSMatt Macy } 903eda14cbcSMatt Macy 904eda14cbcSMatt Macy /* 905eda14cbcSMatt Macy * Unshare the given filesystem. 906eda14cbcSMatt Macy */ 907eda14cbcSMatt Macy int 908eda14cbcSMatt Macy zfs_unshare_proto(zfs_handle_t *zhp, const char *mountpoint, 909eda14cbcSMatt Macy zfs_share_proto_t *proto) 910eda14cbcSMatt Macy { 911eda14cbcSMatt Macy libzfs_handle_t *hdl = zhp->zfs_hdl; 912eda14cbcSMatt Macy struct mnttab entry; 913eda14cbcSMatt Macy char *mntpt = NULL; 914eda14cbcSMatt Macy 915eda14cbcSMatt Macy /* check to see if need to unmount the filesystem */ 916eda14cbcSMatt Macy if (mountpoint != NULL) 917eda14cbcSMatt Macy mntpt = zfs_strdup(hdl, mountpoint); 918eda14cbcSMatt Macy 919eda14cbcSMatt Macy if (mountpoint != NULL || ((zfs_get_type(zhp) == ZFS_TYPE_FILESYSTEM) && 920eda14cbcSMatt Macy libzfs_mnttab_find(hdl, zfs_get_name(zhp), &entry) == 0)) { 921eda14cbcSMatt Macy zfs_share_proto_t *curr_proto; 922eda14cbcSMatt Macy 923eda14cbcSMatt Macy if (mountpoint == NULL) 924eda14cbcSMatt Macy mntpt = zfs_strdup(zhp->zfs_hdl, entry.mnt_mountp); 925eda14cbcSMatt Macy 926eda14cbcSMatt Macy for (curr_proto = proto; *curr_proto != PROTO_END; 927eda14cbcSMatt Macy curr_proto++) { 928eda14cbcSMatt Macy 929eda14cbcSMatt Macy if (is_shared(mntpt, *curr_proto)) { 930eda14cbcSMatt Macy if (unshare_one(hdl, zhp->zfs_name, 931eda14cbcSMatt Macy mntpt, *curr_proto) != 0) { 932eda14cbcSMatt Macy if (mntpt != NULL) 933eda14cbcSMatt Macy free(mntpt); 934eda14cbcSMatt Macy return (-1); 935eda14cbcSMatt Macy } 936eda14cbcSMatt Macy } 937eda14cbcSMatt Macy } 938eda14cbcSMatt Macy } 939eda14cbcSMatt Macy if (mntpt != NULL) 940eda14cbcSMatt Macy free(mntpt); 941eda14cbcSMatt Macy 942eda14cbcSMatt Macy return (0); 943eda14cbcSMatt Macy } 944eda14cbcSMatt Macy 945eda14cbcSMatt Macy int 946eda14cbcSMatt Macy zfs_unshare_nfs(zfs_handle_t *zhp, const char *mountpoint) 947eda14cbcSMatt Macy { 948eda14cbcSMatt Macy return (zfs_unshare_proto(zhp, mountpoint, nfs_only)); 949eda14cbcSMatt Macy } 950eda14cbcSMatt Macy 951eda14cbcSMatt Macy int 952eda14cbcSMatt Macy zfs_unshare_smb(zfs_handle_t *zhp, const char *mountpoint) 953eda14cbcSMatt Macy { 954eda14cbcSMatt Macy return (zfs_unshare_proto(zhp, mountpoint, smb_only)); 955eda14cbcSMatt Macy } 956eda14cbcSMatt Macy 957eda14cbcSMatt Macy /* 958eda14cbcSMatt Macy * Same as zfs_unmountall(), but for NFS and SMB unshares. 959eda14cbcSMatt Macy */ 960eda14cbcSMatt Macy static int 961eda14cbcSMatt Macy zfs_unshareall_proto(zfs_handle_t *zhp, zfs_share_proto_t *proto) 962eda14cbcSMatt Macy { 963eda14cbcSMatt Macy prop_changelist_t *clp; 964eda14cbcSMatt Macy int ret; 965eda14cbcSMatt Macy 966eda14cbcSMatt Macy clp = changelist_gather(zhp, ZFS_PROP_SHARENFS, 0, 0); 967eda14cbcSMatt Macy if (clp == NULL) 968eda14cbcSMatt Macy return (-1); 969eda14cbcSMatt Macy 970eda14cbcSMatt Macy ret = changelist_unshare(clp, proto); 971eda14cbcSMatt Macy changelist_free(clp); 972eda14cbcSMatt Macy 973eda14cbcSMatt Macy return (ret); 974eda14cbcSMatt Macy } 975eda14cbcSMatt Macy 976eda14cbcSMatt Macy int 977eda14cbcSMatt Macy zfs_unshareall_nfs(zfs_handle_t *zhp) 978eda14cbcSMatt Macy { 979eda14cbcSMatt Macy return (zfs_unshareall_proto(zhp, nfs_only)); 980eda14cbcSMatt Macy } 981eda14cbcSMatt Macy 982eda14cbcSMatt Macy int 983eda14cbcSMatt Macy zfs_unshareall_smb(zfs_handle_t *zhp) 984eda14cbcSMatt Macy { 985eda14cbcSMatt Macy return (zfs_unshareall_proto(zhp, smb_only)); 986eda14cbcSMatt Macy } 987eda14cbcSMatt Macy 988eda14cbcSMatt Macy int 989eda14cbcSMatt Macy zfs_unshareall(zfs_handle_t *zhp) 990eda14cbcSMatt Macy { 991eda14cbcSMatt Macy return (zfs_unshareall_proto(zhp, share_all_proto)); 992eda14cbcSMatt Macy } 993eda14cbcSMatt Macy 994eda14cbcSMatt Macy int 995eda14cbcSMatt Macy zfs_unshareall_bypath(zfs_handle_t *zhp, const char *mountpoint) 996eda14cbcSMatt Macy { 997eda14cbcSMatt Macy return (zfs_unshare_proto(zhp, mountpoint, share_all_proto)); 998eda14cbcSMatt Macy } 999eda14cbcSMatt Macy 1000eda14cbcSMatt Macy int 1001eda14cbcSMatt Macy zfs_unshareall_bytype(zfs_handle_t *zhp, const char *mountpoint, 1002eda14cbcSMatt Macy const char *proto) 1003eda14cbcSMatt Macy { 1004eda14cbcSMatt Macy if (proto == NULL) 1005eda14cbcSMatt Macy return (zfs_unshare_proto(zhp, mountpoint, share_all_proto)); 1006eda14cbcSMatt Macy if (strcmp(proto, "nfs") == 0) 1007eda14cbcSMatt Macy return (zfs_unshare_proto(zhp, mountpoint, nfs_only)); 1008eda14cbcSMatt Macy else if (strcmp(proto, "smb") == 0) 1009eda14cbcSMatt Macy return (zfs_unshare_proto(zhp, mountpoint, smb_only)); 1010eda14cbcSMatt Macy else 1011eda14cbcSMatt Macy return (1); 1012eda14cbcSMatt Macy } 1013eda14cbcSMatt Macy 1014eda14cbcSMatt Macy /* 1015eda14cbcSMatt Macy * Remove the mountpoint associated with the current dataset, if necessary. 1016eda14cbcSMatt Macy * We only remove the underlying directory if: 1017eda14cbcSMatt Macy * 1018eda14cbcSMatt Macy * - The mountpoint is not 'none' or 'legacy' 1019eda14cbcSMatt Macy * - The mountpoint is non-empty 1020eda14cbcSMatt Macy * - The mountpoint is the default or inherited 1021eda14cbcSMatt Macy * - The 'zoned' property is set, or we're in a local zone 1022eda14cbcSMatt Macy * 1023eda14cbcSMatt Macy * Any other directories we leave alone. 1024eda14cbcSMatt Macy */ 1025eda14cbcSMatt Macy void 1026eda14cbcSMatt Macy remove_mountpoint(zfs_handle_t *zhp) 1027eda14cbcSMatt Macy { 1028eda14cbcSMatt Macy char mountpoint[ZFS_MAXPROPLEN]; 1029eda14cbcSMatt Macy zprop_source_t source; 1030eda14cbcSMatt Macy 1031eda14cbcSMatt Macy if (!zfs_is_mountable(zhp, mountpoint, sizeof (mountpoint), 1032eda14cbcSMatt Macy &source, 0)) 1033eda14cbcSMatt Macy return; 1034eda14cbcSMatt Macy 1035eda14cbcSMatt Macy if (source == ZPROP_SRC_DEFAULT || 1036eda14cbcSMatt Macy source == ZPROP_SRC_INHERITED) { 1037eda14cbcSMatt Macy /* 1038eda14cbcSMatt Macy * Try to remove the directory, silently ignoring any errors. 1039eda14cbcSMatt Macy * The filesystem may have since been removed or moved around, 1040eda14cbcSMatt Macy * and this error isn't really useful to the administrator in 1041eda14cbcSMatt Macy * any way. 1042eda14cbcSMatt Macy */ 1043eda14cbcSMatt Macy (void) rmdir(mountpoint); 1044eda14cbcSMatt Macy } 1045eda14cbcSMatt Macy } 1046eda14cbcSMatt Macy 1047eda14cbcSMatt Macy /* 1048eda14cbcSMatt Macy * Add the given zfs handle to the cb_handles array, dynamically reallocating 1049eda14cbcSMatt Macy * the array if it is out of space. 1050eda14cbcSMatt Macy */ 1051eda14cbcSMatt Macy void 1052eda14cbcSMatt Macy libzfs_add_handle(get_all_cb_t *cbp, zfs_handle_t *zhp) 1053eda14cbcSMatt Macy { 1054eda14cbcSMatt Macy if (cbp->cb_alloc == cbp->cb_used) { 1055eda14cbcSMatt Macy size_t newsz; 1056eda14cbcSMatt Macy zfs_handle_t **newhandles; 1057eda14cbcSMatt Macy 1058eda14cbcSMatt Macy newsz = cbp->cb_alloc != 0 ? cbp->cb_alloc * 2 : 64; 1059eda14cbcSMatt Macy newhandles = zfs_realloc(zhp->zfs_hdl, 1060eda14cbcSMatt Macy cbp->cb_handles, cbp->cb_alloc * sizeof (zfs_handle_t *), 1061eda14cbcSMatt Macy newsz * sizeof (zfs_handle_t *)); 1062eda14cbcSMatt Macy cbp->cb_handles = newhandles; 1063eda14cbcSMatt Macy cbp->cb_alloc = newsz; 1064eda14cbcSMatt Macy } 1065eda14cbcSMatt Macy cbp->cb_handles[cbp->cb_used++] = zhp; 1066eda14cbcSMatt Macy } 1067eda14cbcSMatt Macy 1068eda14cbcSMatt Macy /* 1069eda14cbcSMatt Macy * Recursive helper function used during file system enumeration 1070eda14cbcSMatt Macy */ 1071eda14cbcSMatt Macy static int 1072eda14cbcSMatt Macy zfs_iter_cb(zfs_handle_t *zhp, void *data) 1073eda14cbcSMatt Macy { 1074eda14cbcSMatt Macy get_all_cb_t *cbp = data; 1075eda14cbcSMatt Macy 1076eda14cbcSMatt Macy if (!(zfs_get_type(zhp) & ZFS_TYPE_FILESYSTEM)) { 1077eda14cbcSMatt Macy zfs_close(zhp); 1078eda14cbcSMatt Macy return (0); 1079eda14cbcSMatt Macy } 1080eda14cbcSMatt Macy 1081eda14cbcSMatt Macy if (zfs_prop_get_int(zhp, ZFS_PROP_CANMOUNT) == ZFS_CANMOUNT_NOAUTO) { 1082eda14cbcSMatt Macy zfs_close(zhp); 1083eda14cbcSMatt Macy return (0); 1084eda14cbcSMatt Macy } 1085eda14cbcSMatt Macy 1086eda14cbcSMatt Macy if (zfs_prop_get_int(zhp, ZFS_PROP_KEYSTATUS) == 1087eda14cbcSMatt Macy ZFS_KEYSTATUS_UNAVAILABLE) { 1088eda14cbcSMatt Macy zfs_close(zhp); 1089eda14cbcSMatt Macy return (0); 1090eda14cbcSMatt Macy } 1091eda14cbcSMatt Macy 1092eda14cbcSMatt Macy /* 1093eda14cbcSMatt Macy * If this filesystem is inconsistent and has a receive resume 1094eda14cbcSMatt Macy * token, we can not mount it. 1095eda14cbcSMatt Macy */ 1096eda14cbcSMatt Macy if (zfs_prop_get_int(zhp, ZFS_PROP_INCONSISTENT) && 1097eda14cbcSMatt Macy zfs_prop_get(zhp, ZFS_PROP_RECEIVE_RESUME_TOKEN, 1098eda14cbcSMatt Macy NULL, 0, NULL, NULL, 0, B_TRUE) == 0) { 1099eda14cbcSMatt Macy zfs_close(zhp); 1100eda14cbcSMatt Macy return (0); 1101eda14cbcSMatt Macy } 1102eda14cbcSMatt Macy 1103eda14cbcSMatt Macy libzfs_add_handle(cbp, zhp); 1104eda14cbcSMatt Macy if (zfs_iter_filesystems(zhp, zfs_iter_cb, cbp) != 0) { 1105eda14cbcSMatt Macy zfs_close(zhp); 1106eda14cbcSMatt Macy return (-1); 1107eda14cbcSMatt Macy } 1108eda14cbcSMatt Macy return (0); 1109eda14cbcSMatt Macy } 1110eda14cbcSMatt Macy 1111eda14cbcSMatt Macy /* 1112eda14cbcSMatt Macy * Sort comparator that compares two mountpoint paths. We sort these paths so 1113eda14cbcSMatt Macy * that subdirectories immediately follow their parents. This means that we 1114eda14cbcSMatt Macy * effectively treat the '/' character as the lowest value non-nul char. 1115eda14cbcSMatt Macy * Since filesystems from non-global zones can have the same mountpoint 1116eda14cbcSMatt Macy * as other filesystems, the comparator sorts global zone filesystems to 1117eda14cbcSMatt Macy * the top of the list. This means that the global zone will traverse the 1118eda14cbcSMatt Macy * filesystem list in the correct order and can stop when it sees the 1119eda14cbcSMatt Macy * first zoned filesystem. In a non-global zone, only the delegated 1120eda14cbcSMatt Macy * filesystems are seen. 1121eda14cbcSMatt Macy * 1122eda14cbcSMatt Macy * An example sorted list using this comparator would look like: 1123eda14cbcSMatt Macy * 1124eda14cbcSMatt Macy * /foo 1125eda14cbcSMatt Macy * /foo/bar 1126eda14cbcSMatt Macy * /foo/bar/baz 1127eda14cbcSMatt Macy * /foo/baz 1128eda14cbcSMatt Macy * /foo.bar 1129eda14cbcSMatt Macy * /foo (NGZ1) 1130eda14cbcSMatt Macy * /foo (NGZ2) 1131eda14cbcSMatt Macy * 1132eda14cbcSMatt Macy * The mounting code depends on this ordering to deterministically iterate 1133eda14cbcSMatt Macy * over filesystems in order to spawn parallel mount tasks. 1134eda14cbcSMatt Macy */ 1135eda14cbcSMatt Macy static int 1136eda14cbcSMatt Macy mountpoint_cmp(const void *arga, const void *argb) 1137eda14cbcSMatt Macy { 1138eda14cbcSMatt Macy zfs_handle_t *const *zap = arga; 1139eda14cbcSMatt Macy zfs_handle_t *za = *zap; 1140eda14cbcSMatt Macy zfs_handle_t *const *zbp = argb; 1141eda14cbcSMatt Macy zfs_handle_t *zb = *zbp; 1142eda14cbcSMatt Macy char mounta[MAXPATHLEN]; 1143eda14cbcSMatt Macy char mountb[MAXPATHLEN]; 1144eda14cbcSMatt Macy const char *a = mounta; 1145eda14cbcSMatt Macy const char *b = mountb; 1146eda14cbcSMatt Macy boolean_t gota, gotb; 1147eda14cbcSMatt Macy uint64_t zoneda, zonedb; 1148eda14cbcSMatt Macy 1149eda14cbcSMatt Macy zoneda = zfs_prop_get_int(za, ZFS_PROP_ZONED); 1150eda14cbcSMatt Macy zonedb = zfs_prop_get_int(zb, ZFS_PROP_ZONED); 1151eda14cbcSMatt Macy if (zoneda && !zonedb) 1152eda14cbcSMatt Macy return (1); 1153eda14cbcSMatt Macy if (!zoneda && zonedb) 1154eda14cbcSMatt Macy return (-1); 1155eda14cbcSMatt Macy 1156eda14cbcSMatt Macy gota = (zfs_get_type(za) == ZFS_TYPE_FILESYSTEM); 1157eda14cbcSMatt Macy if (gota) { 1158eda14cbcSMatt Macy verify(zfs_prop_get(za, ZFS_PROP_MOUNTPOINT, mounta, 1159eda14cbcSMatt Macy sizeof (mounta), NULL, NULL, 0, B_FALSE) == 0); 1160eda14cbcSMatt Macy } 1161eda14cbcSMatt Macy gotb = (zfs_get_type(zb) == ZFS_TYPE_FILESYSTEM); 1162eda14cbcSMatt Macy if (gotb) { 1163eda14cbcSMatt Macy verify(zfs_prop_get(zb, ZFS_PROP_MOUNTPOINT, mountb, 1164eda14cbcSMatt Macy sizeof (mountb), NULL, NULL, 0, B_FALSE) == 0); 1165eda14cbcSMatt Macy } 1166eda14cbcSMatt Macy 1167eda14cbcSMatt Macy if (gota && gotb) { 1168eda14cbcSMatt Macy while (*a != '\0' && (*a == *b)) { 1169eda14cbcSMatt Macy a++; 1170eda14cbcSMatt Macy b++; 1171eda14cbcSMatt Macy } 1172eda14cbcSMatt Macy if (*a == *b) 1173eda14cbcSMatt Macy return (0); 1174eda14cbcSMatt Macy if (*a == '\0') 1175eda14cbcSMatt Macy return (-1); 1176eda14cbcSMatt Macy if (*b == '\0') 1177eda14cbcSMatt Macy return (1); 1178eda14cbcSMatt Macy if (*a == '/') 1179eda14cbcSMatt Macy return (-1); 1180eda14cbcSMatt Macy if (*b == '/') 1181eda14cbcSMatt Macy return (1); 1182eda14cbcSMatt Macy return (*a < *b ? -1 : *a > *b); 1183eda14cbcSMatt Macy } 1184eda14cbcSMatt Macy 1185eda14cbcSMatt Macy if (gota) 1186eda14cbcSMatt Macy return (-1); 1187eda14cbcSMatt Macy if (gotb) 1188eda14cbcSMatt Macy return (1); 1189eda14cbcSMatt Macy 1190eda14cbcSMatt Macy /* 1191eda14cbcSMatt Macy * If neither filesystem has a mountpoint, revert to sorting by 1192eda14cbcSMatt Macy * dataset name. 1193eda14cbcSMatt Macy */ 1194eda14cbcSMatt Macy return (strcmp(zfs_get_name(za), zfs_get_name(zb))); 1195eda14cbcSMatt Macy } 1196eda14cbcSMatt Macy 1197eda14cbcSMatt Macy /* 1198eda14cbcSMatt Macy * Return true if path2 is a child of path1 or path2 equals path1 or 1199eda14cbcSMatt Macy * path1 is "/" (path2 is always a child of "/"). 1200eda14cbcSMatt Macy */ 1201eda14cbcSMatt Macy static boolean_t 1202eda14cbcSMatt Macy libzfs_path_contains(const char *path1, const char *path2) 1203eda14cbcSMatt Macy { 1204eda14cbcSMatt Macy return (strcmp(path1, path2) == 0 || strcmp(path1, "/") == 0 || 1205eda14cbcSMatt Macy (strstr(path2, path1) == path2 && path2[strlen(path1)] == '/')); 1206eda14cbcSMatt Macy } 1207eda14cbcSMatt Macy 1208eda14cbcSMatt Macy /* 1209eda14cbcSMatt Macy * Given a mountpoint specified by idx in the handles array, find the first 1210eda14cbcSMatt Macy * non-descendent of that mountpoint and return its index. Descendant paths 1211eda14cbcSMatt Macy * start with the parent's path. This function relies on the ordering 1212eda14cbcSMatt Macy * enforced by mountpoint_cmp(). 1213eda14cbcSMatt Macy */ 1214eda14cbcSMatt Macy static int 1215eda14cbcSMatt Macy non_descendant_idx(zfs_handle_t **handles, size_t num_handles, int idx) 1216eda14cbcSMatt Macy { 1217eda14cbcSMatt Macy char parent[ZFS_MAXPROPLEN]; 1218eda14cbcSMatt Macy char child[ZFS_MAXPROPLEN]; 1219eda14cbcSMatt Macy int i; 1220eda14cbcSMatt Macy 1221eda14cbcSMatt Macy verify(zfs_prop_get(handles[idx], ZFS_PROP_MOUNTPOINT, parent, 1222eda14cbcSMatt Macy sizeof (parent), NULL, NULL, 0, B_FALSE) == 0); 1223eda14cbcSMatt Macy 1224eda14cbcSMatt Macy for (i = idx + 1; i < num_handles; i++) { 1225eda14cbcSMatt Macy verify(zfs_prop_get(handles[i], ZFS_PROP_MOUNTPOINT, child, 1226eda14cbcSMatt Macy sizeof (child), NULL, NULL, 0, B_FALSE) == 0); 1227eda14cbcSMatt Macy if (!libzfs_path_contains(parent, child)) 1228eda14cbcSMatt Macy break; 1229eda14cbcSMatt Macy } 1230eda14cbcSMatt Macy return (i); 1231eda14cbcSMatt Macy } 1232eda14cbcSMatt Macy 1233eda14cbcSMatt Macy typedef struct mnt_param { 1234eda14cbcSMatt Macy libzfs_handle_t *mnt_hdl; 1235eda14cbcSMatt Macy tpool_t *mnt_tp; 1236eda14cbcSMatt Macy zfs_handle_t **mnt_zhps; /* filesystems to mount */ 1237eda14cbcSMatt Macy size_t mnt_num_handles; 1238eda14cbcSMatt Macy int mnt_idx; /* Index of selected entry to mount */ 1239eda14cbcSMatt Macy zfs_iter_f mnt_func; 1240eda14cbcSMatt Macy void *mnt_data; 1241eda14cbcSMatt Macy } mnt_param_t; 1242eda14cbcSMatt Macy 1243eda14cbcSMatt Macy /* 1244eda14cbcSMatt Macy * Allocate and populate the parameter struct for mount function, and 1245eda14cbcSMatt Macy * schedule mounting of the entry selected by idx. 1246eda14cbcSMatt Macy */ 1247eda14cbcSMatt Macy static void 1248eda14cbcSMatt Macy zfs_dispatch_mount(libzfs_handle_t *hdl, zfs_handle_t **handles, 1249eda14cbcSMatt Macy size_t num_handles, int idx, zfs_iter_f func, void *data, tpool_t *tp) 1250eda14cbcSMatt Macy { 1251eda14cbcSMatt Macy mnt_param_t *mnt_param = zfs_alloc(hdl, sizeof (mnt_param_t)); 1252eda14cbcSMatt Macy 1253eda14cbcSMatt Macy mnt_param->mnt_hdl = hdl; 1254eda14cbcSMatt Macy mnt_param->mnt_tp = tp; 1255eda14cbcSMatt Macy mnt_param->mnt_zhps = handles; 1256eda14cbcSMatt Macy mnt_param->mnt_num_handles = num_handles; 1257eda14cbcSMatt Macy mnt_param->mnt_idx = idx; 1258eda14cbcSMatt Macy mnt_param->mnt_func = func; 1259eda14cbcSMatt Macy mnt_param->mnt_data = data; 1260eda14cbcSMatt Macy 1261eda14cbcSMatt Macy (void) tpool_dispatch(tp, zfs_mount_task, (void*)mnt_param); 1262eda14cbcSMatt Macy } 1263eda14cbcSMatt Macy 1264eda14cbcSMatt Macy /* 1265eda14cbcSMatt Macy * This is the structure used to keep state of mounting or sharing operations 1266eda14cbcSMatt Macy * during a call to zpool_enable_datasets(). 1267eda14cbcSMatt Macy */ 1268eda14cbcSMatt Macy typedef struct mount_state { 1269eda14cbcSMatt Macy /* 1270eda14cbcSMatt Macy * ms_mntstatus is set to -1 if any mount fails. While multiple threads 1271eda14cbcSMatt Macy * could update this variable concurrently, no synchronization is 1272eda14cbcSMatt Macy * needed as it's only ever set to -1. 1273eda14cbcSMatt Macy */ 1274eda14cbcSMatt Macy int ms_mntstatus; 1275eda14cbcSMatt Macy int ms_mntflags; 1276eda14cbcSMatt Macy const char *ms_mntopts; 1277eda14cbcSMatt Macy } mount_state_t; 1278eda14cbcSMatt Macy 1279eda14cbcSMatt Macy static int 1280eda14cbcSMatt Macy zfs_mount_one(zfs_handle_t *zhp, void *arg) 1281eda14cbcSMatt Macy { 1282eda14cbcSMatt Macy mount_state_t *ms = arg; 1283eda14cbcSMatt Macy int ret = 0; 1284eda14cbcSMatt Macy 1285eda14cbcSMatt Macy /* 1286eda14cbcSMatt Macy * don't attempt to mount encrypted datasets with 1287eda14cbcSMatt Macy * unloaded keys 1288eda14cbcSMatt Macy */ 1289eda14cbcSMatt Macy if (zfs_prop_get_int(zhp, ZFS_PROP_KEYSTATUS) == 1290eda14cbcSMatt Macy ZFS_KEYSTATUS_UNAVAILABLE) 1291eda14cbcSMatt Macy return (0); 1292eda14cbcSMatt Macy 1293eda14cbcSMatt Macy if (zfs_mount(zhp, ms->ms_mntopts, ms->ms_mntflags) != 0) 1294eda14cbcSMatt Macy ret = ms->ms_mntstatus = -1; 1295eda14cbcSMatt Macy return (ret); 1296eda14cbcSMatt Macy } 1297eda14cbcSMatt Macy 1298eda14cbcSMatt Macy static int 1299eda14cbcSMatt Macy zfs_share_one(zfs_handle_t *zhp, void *arg) 1300eda14cbcSMatt Macy { 1301eda14cbcSMatt Macy mount_state_t *ms = arg; 1302eda14cbcSMatt Macy int ret = 0; 1303eda14cbcSMatt Macy 1304eda14cbcSMatt Macy if (zfs_share(zhp) != 0) 1305eda14cbcSMatt Macy ret = ms->ms_mntstatus = -1; 1306eda14cbcSMatt Macy return (ret); 1307eda14cbcSMatt Macy } 1308eda14cbcSMatt Macy 1309eda14cbcSMatt Macy /* 1310eda14cbcSMatt Macy * Thread pool function to mount one file system. On completion, it finds and 1311eda14cbcSMatt Macy * schedules its children to be mounted. This depends on the sorting done in 1312eda14cbcSMatt Macy * zfs_foreach_mountpoint(). Note that the degenerate case (chain of entries 1313eda14cbcSMatt Macy * each descending from the previous) will have no parallelism since we always 1314eda14cbcSMatt Macy * have to wait for the parent to finish mounting before we can schedule 1315eda14cbcSMatt Macy * its children. 1316eda14cbcSMatt Macy */ 1317eda14cbcSMatt Macy static void 1318eda14cbcSMatt Macy zfs_mount_task(void *arg) 1319eda14cbcSMatt Macy { 1320eda14cbcSMatt Macy mnt_param_t *mp = arg; 1321eda14cbcSMatt Macy int idx = mp->mnt_idx; 1322eda14cbcSMatt Macy zfs_handle_t **handles = mp->mnt_zhps; 1323eda14cbcSMatt Macy size_t num_handles = mp->mnt_num_handles; 1324eda14cbcSMatt Macy char mountpoint[ZFS_MAXPROPLEN]; 1325eda14cbcSMatt Macy 1326eda14cbcSMatt Macy verify(zfs_prop_get(handles[idx], ZFS_PROP_MOUNTPOINT, mountpoint, 1327eda14cbcSMatt Macy sizeof (mountpoint), NULL, NULL, 0, B_FALSE) == 0); 1328eda14cbcSMatt Macy 1329eda14cbcSMatt Macy if (mp->mnt_func(handles[idx], mp->mnt_data) != 0) 1330eda14cbcSMatt Macy return; 1331eda14cbcSMatt Macy 1332eda14cbcSMatt Macy /* 1333eda14cbcSMatt Macy * We dispatch tasks to mount filesystems with mountpoints underneath 1334eda14cbcSMatt Macy * this one. We do this by dispatching the next filesystem with a 1335eda14cbcSMatt Macy * descendant mountpoint of the one we just mounted, then skip all of 1336eda14cbcSMatt Macy * its descendants, dispatch the next descendant mountpoint, and so on. 1337eda14cbcSMatt Macy * The non_descendant_idx() function skips over filesystems that are 1338eda14cbcSMatt Macy * descendants of the filesystem we just dispatched. 1339eda14cbcSMatt Macy */ 1340eda14cbcSMatt Macy for (int i = idx + 1; i < num_handles; 1341eda14cbcSMatt Macy i = non_descendant_idx(handles, num_handles, i)) { 1342eda14cbcSMatt Macy char child[ZFS_MAXPROPLEN]; 1343eda14cbcSMatt Macy verify(zfs_prop_get(handles[i], ZFS_PROP_MOUNTPOINT, 1344eda14cbcSMatt Macy child, sizeof (child), NULL, NULL, 0, B_FALSE) == 0); 1345eda14cbcSMatt Macy 1346eda14cbcSMatt Macy if (!libzfs_path_contains(mountpoint, child)) 1347eda14cbcSMatt Macy break; /* not a descendant, return */ 1348eda14cbcSMatt Macy zfs_dispatch_mount(mp->mnt_hdl, handles, num_handles, i, 1349eda14cbcSMatt Macy mp->mnt_func, mp->mnt_data, mp->mnt_tp); 1350eda14cbcSMatt Macy } 1351eda14cbcSMatt Macy free(mp); 1352eda14cbcSMatt Macy } 1353eda14cbcSMatt Macy 1354eda14cbcSMatt Macy /* 1355eda14cbcSMatt Macy * Issue the func callback for each ZFS handle contained in the handles 1356eda14cbcSMatt Macy * array. This function is used to mount all datasets, and so this function 1357eda14cbcSMatt Macy * guarantees that filesystems for parent mountpoints are called before their 1358eda14cbcSMatt Macy * children. As such, before issuing any callbacks, we first sort the array 1359eda14cbcSMatt Macy * of handles by mountpoint. 1360eda14cbcSMatt Macy * 1361eda14cbcSMatt Macy * Callbacks are issued in one of two ways: 1362eda14cbcSMatt Macy * 1363eda14cbcSMatt Macy * 1. Sequentially: If the parallel argument is B_FALSE or the ZFS_SERIAL_MOUNT 1364eda14cbcSMatt Macy * environment variable is set, then we issue callbacks sequentially. 1365eda14cbcSMatt Macy * 1366eda14cbcSMatt Macy * 2. In parallel: If the parallel argument is B_TRUE and the ZFS_SERIAL_MOUNT 1367eda14cbcSMatt Macy * environment variable is not set, then we use a tpool to dispatch threads 1368eda14cbcSMatt Macy * to mount filesystems in parallel. This function dispatches tasks to mount 1369eda14cbcSMatt Macy * the filesystems at the top-level mountpoints, and these tasks in turn 1370eda14cbcSMatt Macy * are responsible for recursively mounting filesystems in their children 1371eda14cbcSMatt Macy * mountpoints. 1372eda14cbcSMatt Macy */ 1373eda14cbcSMatt Macy void 1374eda14cbcSMatt Macy zfs_foreach_mountpoint(libzfs_handle_t *hdl, zfs_handle_t **handles, 1375eda14cbcSMatt Macy size_t num_handles, zfs_iter_f func, void *data, boolean_t parallel) 1376eda14cbcSMatt Macy { 1377eda14cbcSMatt Macy zoneid_t zoneid = getzoneid(); 1378eda14cbcSMatt Macy 1379eda14cbcSMatt Macy /* 1380eda14cbcSMatt Macy * The ZFS_SERIAL_MOUNT environment variable is an undocumented 1381eda14cbcSMatt Macy * variable that can be used as a convenience to do a/b comparison 1382eda14cbcSMatt Macy * of serial vs. parallel mounting. 1383eda14cbcSMatt Macy */ 1384eda14cbcSMatt Macy boolean_t serial_mount = !parallel || 1385eda14cbcSMatt Macy (getenv("ZFS_SERIAL_MOUNT") != NULL); 1386eda14cbcSMatt Macy 1387eda14cbcSMatt Macy /* 1388eda14cbcSMatt Macy * Sort the datasets by mountpoint. See mountpoint_cmp for details 1389eda14cbcSMatt Macy * of how these are sorted. 1390eda14cbcSMatt Macy */ 1391eda14cbcSMatt Macy qsort(handles, num_handles, sizeof (zfs_handle_t *), mountpoint_cmp); 1392eda14cbcSMatt Macy 1393eda14cbcSMatt Macy if (serial_mount) { 1394eda14cbcSMatt Macy for (int i = 0; i < num_handles; i++) { 1395eda14cbcSMatt Macy func(handles[i], data); 1396eda14cbcSMatt Macy } 1397eda14cbcSMatt Macy return; 1398eda14cbcSMatt Macy } 1399eda14cbcSMatt Macy 1400eda14cbcSMatt Macy /* 1401eda14cbcSMatt Macy * Issue the callback function for each dataset using a parallel 1402eda14cbcSMatt Macy * algorithm that uses a thread pool to manage threads. 1403eda14cbcSMatt Macy */ 1404eda14cbcSMatt Macy tpool_t *tp = tpool_create(1, mount_tp_nthr, 0, NULL); 1405eda14cbcSMatt Macy 1406eda14cbcSMatt Macy /* 1407eda14cbcSMatt Macy * There may be multiple "top level" mountpoints outside of the pool's 1408eda14cbcSMatt Macy * root mountpoint, e.g.: /foo /bar. Dispatch a mount task for each of 1409eda14cbcSMatt Macy * these. 1410eda14cbcSMatt Macy */ 1411eda14cbcSMatt Macy for (int i = 0; i < num_handles; 1412eda14cbcSMatt Macy i = non_descendant_idx(handles, num_handles, i)) { 1413eda14cbcSMatt Macy /* 1414eda14cbcSMatt Macy * Since the mountpoints have been sorted so that the zoned 1415eda14cbcSMatt Macy * filesystems are at the end, a zoned filesystem seen from 1416eda14cbcSMatt Macy * the global zone means that we're done. 1417eda14cbcSMatt Macy */ 1418eda14cbcSMatt Macy if (zoneid == GLOBAL_ZONEID && 1419eda14cbcSMatt Macy zfs_prop_get_int(handles[i], ZFS_PROP_ZONED)) 1420eda14cbcSMatt Macy break; 1421eda14cbcSMatt Macy zfs_dispatch_mount(hdl, handles, num_handles, i, func, data, 1422eda14cbcSMatt Macy tp); 1423eda14cbcSMatt Macy } 1424eda14cbcSMatt Macy 1425eda14cbcSMatt Macy tpool_wait(tp); /* wait for all scheduled mounts to complete */ 1426eda14cbcSMatt Macy tpool_destroy(tp); 1427eda14cbcSMatt Macy } 1428eda14cbcSMatt Macy 1429eda14cbcSMatt Macy /* 1430eda14cbcSMatt Macy * Mount and share all datasets within the given pool. This assumes that no 1431eda14cbcSMatt Macy * datasets within the pool are currently mounted. 1432eda14cbcSMatt Macy */ 1433eda14cbcSMatt Macy #pragma weak zpool_mount_datasets = zpool_enable_datasets 1434eda14cbcSMatt Macy int 1435eda14cbcSMatt Macy zpool_enable_datasets(zpool_handle_t *zhp, const char *mntopts, int flags) 1436eda14cbcSMatt Macy { 1437eda14cbcSMatt Macy get_all_cb_t cb = { 0 }; 1438eda14cbcSMatt Macy mount_state_t ms = { 0 }; 1439eda14cbcSMatt Macy zfs_handle_t *zfsp; 1440eda14cbcSMatt Macy int ret = 0; 1441eda14cbcSMatt Macy 1442eda14cbcSMatt Macy if ((zfsp = zfs_open(zhp->zpool_hdl, zhp->zpool_name, 1443eda14cbcSMatt Macy ZFS_TYPE_DATASET)) == NULL) 1444eda14cbcSMatt Macy goto out; 1445eda14cbcSMatt Macy 1446eda14cbcSMatt Macy /* 1447eda14cbcSMatt Macy * Gather all non-snapshot datasets within the pool. Start by adding 1448eda14cbcSMatt Macy * the root filesystem for this pool to the list, and then iterate 1449eda14cbcSMatt Macy * over all child filesystems. 1450eda14cbcSMatt Macy */ 1451eda14cbcSMatt Macy libzfs_add_handle(&cb, zfsp); 1452eda14cbcSMatt Macy if (zfs_iter_filesystems(zfsp, zfs_iter_cb, &cb) != 0) 1453eda14cbcSMatt Macy goto out; 1454eda14cbcSMatt Macy 1455eda14cbcSMatt Macy /* 1456eda14cbcSMatt Macy * Mount all filesystems 1457eda14cbcSMatt Macy */ 1458eda14cbcSMatt Macy ms.ms_mntopts = mntopts; 1459eda14cbcSMatt Macy ms.ms_mntflags = flags; 1460eda14cbcSMatt Macy zfs_foreach_mountpoint(zhp->zpool_hdl, cb.cb_handles, cb.cb_used, 1461eda14cbcSMatt Macy zfs_mount_one, &ms, B_TRUE); 1462eda14cbcSMatt Macy if (ms.ms_mntstatus != 0) 1463eda14cbcSMatt Macy ret = ms.ms_mntstatus; 1464eda14cbcSMatt Macy 1465eda14cbcSMatt Macy /* 1466eda14cbcSMatt Macy * Share all filesystems that need to be shared. This needs to be 1467eda14cbcSMatt Macy * a separate pass because libshare is not mt-safe, and so we need 1468eda14cbcSMatt Macy * to share serially. 1469eda14cbcSMatt Macy */ 1470eda14cbcSMatt Macy ms.ms_mntstatus = 0; 1471eda14cbcSMatt Macy zfs_foreach_mountpoint(zhp->zpool_hdl, cb.cb_handles, cb.cb_used, 1472eda14cbcSMatt Macy zfs_share_one, &ms, B_FALSE); 1473eda14cbcSMatt Macy if (ms.ms_mntstatus != 0) 1474eda14cbcSMatt Macy ret = ms.ms_mntstatus; 1475eda14cbcSMatt Macy else 1476eda14cbcSMatt Macy zfs_commit_all_shares(); 1477eda14cbcSMatt Macy 1478eda14cbcSMatt Macy out: 1479eda14cbcSMatt Macy for (int i = 0; i < cb.cb_used; i++) 1480eda14cbcSMatt Macy zfs_close(cb.cb_handles[i]); 1481eda14cbcSMatt Macy free(cb.cb_handles); 1482eda14cbcSMatt Macy 1483eda14cbcSMatt Macy return (ret); 1484eda14cbcSMatt Macy } 1485eda14cbcSMatt Macy 1486eda14cbcSMatt Macy static int 1487eda14cbcSMatt Macy mountpoint_compare(const void *a, const void *b) 1488eda14cbcSMatt Macy { 1489eda14cbcSMatt Macy const char *mounta = *((char **)a); 1490eda14cbcSMatt Macy const char *mountb = *((char **)b); 1491eda14cbcSMatt Macy 1492eda14cbcSMatt Macy return (strcmp(mountb, mounta)); 1493eda14cbcSMatt Macy } 1494eda14cbcSMatt Macy 1495eda14cbcSMatt Macy /* alias for 2002/240 */ 1496eda14cbcSMatt Macy #pragma weak zpool_unmount_datasets = zpool_disable_datasets 1497eda14cbcSMatt Macy /* 1498eda14cbcSMatt Macy * Unshare and unmount all datasets within the given pool. We don't want to 1499eda14cbcSMatt Macy * rely on traversing the DSL to discover the filesystems within the pool, 1500eda14cbcSMatt Macy * because this may be expensive (if not all of them are mounted), and can fail 1501eda14cbcSMatt Macy * arbitrarily (on I/O error, for example). Instead, we walk /proc/self/mounts 1502eda14cbcSMatt Macy * and gather all the filesystems that are currently mounted. 1503eda14cbcSMatt Macy */ 1504eda14cbcSMatt Macy int 1505eda14cbcSMatt Macy zpool_disable_datasets(zpool_handle_t *zhp, boolean_t force) 1506eda14cbcSMatt Macy { 1507eda14cbcSMatt Macy int used, alloc; 1508eda14cbcSMatt Macy struct mnttab entry; 1509eda14cbcSMatt Macy size_t namelen; 1510eda14cbcSMatt Macy char **mountpoints = NULL; 1511eda14cbcSMatt Macy zfs_handle_t **datasets = NULL; 1512eda14cbcSMatt Macy libzfs_handle_t *hdl = zhp->zpool_hdl; 1513eda14cbcSMatt Macy int i; 1514eda14cbcSMatt Macy int ret = -1; 1515eda14cbcSMatt Macy int flags = (force ? MS_FORCE : 0); 1516eda14cbcSMatt Macy 1517eda14cbcSMatt Macy namelen = strlen(zhp->zpool_name); 1518eda14cbcSMatt Macy 1519eda14cbcSMatt Macy /* Reopen MNTTAB to prevent reading stale data from open file */ 1520eda14cbcSMatt Macy if (freopen(MNTTAB, "r", hdl->libzfs_mnttab) == NULL) 1521eda14cbcSMatt Macy return (ENOENT); 1522eda14cbcSMatt Macy 1523eda14cbcSMatt Macy used = alloc = 0; 1524eda14cbcSMatt Macy while (getmntent(hdl->libzfs_mnttab, &entry) == 0) { 1525eda14cbcSMatt Macy /* 1526eda14cbcSMatt Macy * Ignore non-ZFS entries. 1527eda14cbcSMatt Macy */ 1528eda14cbcSMatt Macy if (entry.mnt_fstype == NULL || 1529eda14cbcSMatt Macy strcmp(entry.mnt_fstype, MNTTYPE_ZFS) != 0) 1530eda14cbcSMatt Macy continue; 1531eda14cbcSMatt Macy 1532eda14cbcSMatt Macy /* 1533eda14cbcSMatt Macy * Ignore filesystems not within this pool. 1534eda14cbcSMatt Macy */ 1535eda14cbcSMatt Macy if (entry.mnt_mountp == NULL || 1536eda14cbcSMatt Macy strncmp(entry.mnt_special, zhp->zpool_name, namelen) != 0 || 1537eda14cbcSMatt Macy (entry.mnt_special[namelen] != '/' && 1538eda14cbcSMatt Macy entry.mnt_special[namelen] != '\0')) 1539eda14cbcSMatt Macy continue; 1540eda14cbcSMatt Macy 1541eda14cbcSMatt Macy /* 1542eda14cbcSMatt Macy * At this point we've found a filesystem within our pool. Add 1543eda14cbcSMatt Macy * it to our growing list. 1544eda14cbcSMatt Macy */ 1545eda14cbcSMatt Macy if (used == alloc) { 1546eda14cbcSMatt Macy if (alloc == 0) { 1547eda14cbcSMatt Macy if ((mountpoints = zfs_alloc(hdl, 1548eda14cbcSMatt Macy 8 * sizeof (void *))) == NULL) 1549eda14cbcSMatt Macy goto out; 1550eda14cbcSMatt Macy 1551eda14cbcSMatt Macy if ((datasets = zfs_alloc(hdl, 1552eda14cbcSMatt Macy 8 * sizeof (void *))) == NULL) 1553eda14cbcSMatt Macy goto out; 1554eda14cbcSMatt Macy 1555eda14cbcSMatt Macy alloc = 8; 1556eda14cbcSMatt Macy } else { 1557eda14cbcSMatt Macy void *ptr; 1558eda14cbcSMatt Macy 1559eda14cbcSMatt Macy if ((ptr = zfs_realloc(hdl, mountpoints, 1560eda14cbcSMatt Macy alloc * sizeof (void *), 1561eda14cbcSMatt Macy alloc * 2 * sizeof (void *))) == NULL) 1562eda14cbcSMatt Macy goto out; 1563eda14cbcSMatt Macy mountpoints = ptr; 1564eda14cbcSMatt Macy 1565eda14cbcSMatt Macy if ((ptr = zfs_realloc(hdl, datasets, 1566eda14cbcSMatt Macy alloc * sizeof (void *), 1567eda14cbcSMatt Macy alloc * 2 * sizeof (void *))) == NULL) 1568eda14cbcSMatt Macy goto out; 1569eda14cbcSMatt Macy datasets = ptr; 1570eda14cbcSMatt Macy 1571eda14cbcSMatt Macy alloc *= 2; 1572eda14cbcSMatt Macy } 1573eda14cbcSMatt Macy } 1574eda14cbcSMatt Macy 1575eda14cbcSMatt Macy if ((mountpoints[used] = zfs_strdup(hdl, 1576eda14cbcSMatt Macy entry.mnt_mountp)) == NULL) 1577eda14cbcSMatt Macy goto out; 1578eda14cbcSMatt Macy 1579eda14cbcSMatt Macy /* 1580eda14cbcSMatt Macy * This is allowed to fail, in case there is some I/O error. It 1581eda14cbcSMatt Macy * is only used to determine if we need to remove the underlying 1582eda14cbcSMatt Macy * mountpoint, so failure is not fatal. 1583eda14cbcSMatt Macy */ 1584eda14cbcSMatt Macy datasets[used] = make_dataset_handle(hdl, entry.mnt_special); 1585eda14cbcSMatt Macy 1586eda14cbcSMatt Macy used++; 1587eda14cbcSMatt Macy } 1588eda14cbcSMatt Macy 1589eda14cbcSMatt Macy /* 1590eda14cbcSMatt Macy * At this point, we have the entire list of filesystems, so sort it by 1591eda14cbcSMatt Macy * mountpoint. 1592eda14cbcSMatt Macy */ 1593eda14cbcSMatt Macy qsort(mountpoints, used, sizeof (char *), mountpoint_compare); 1594eda14cbcSMatt Macy 1595eda14cbcSMatt Macy /* 1596eda14cbcSMatt Macy * Walk through and first unshare everything. 1597eda14cbcSMatt Macy */ 1598eda14cbcSMatt Macy for (i = 0; i < used; i++) { 1599eda14cbcSMatt Macy zfs_share_proto_t *curr_proto; 1600eda14cbcSMatt Macy for (curr_proto = share_all_proto; *curr_proto != PROTO_END; 1601eda14cbcSMatt Macy curr_proto++) { 1602eda14cbcSMatt Macy if (is_shared(mountpoints[i], *curr_proto) && 1603eda14cbcSMatt Macy unshare_one(hdl, mountpoints[i], 1604eda14cbcSMatt Macy mountpoints[i], *curr_proto) != 0) 1605eda14cbcSMatt Macy goto out; 1606eda14cbcSMatt Macy } 1607eda14cbcSMatt Macy } 1608eda14cbcSMatt Macy zfs_commit_all_shares(); 1609eda14cbcSMatt Macy 1610eda14cbcSMatt Macy /* 1611eda14cbcSMatt Macy * Now unmount everything, removing the underlying directories as 1612eda14cbcSMatt Macy * appropriate. 1613eda14cbcSMatt Macy */ 1614eda14cbcSMatt Macy for (i = 0; i < used; i++) { 1615eda14cbcSMatt Macy if (unmount_one(hdl, mountpoints[i], flags) != 0) 1616eda14cbcSMatt Macy goto out; 1617eda14cbcSMatt Macy } 1618eda14cbcSMatt Macy 1619eda14cbcSMatt Macy for (i = 0; i < used; i++) { 1620eda14cbcSMatt Macy if (datasets[i]) 1621eda14cbcSMatt Macy remove_mountpoint(datasets[i]); 1622eda14cbcSMatt Macy } 1623eda14cbcSMatt Macy 1624eda14cbcSMatt Macy ret = 0; 1625eda14cbcSMatt Macy out: 1626eda14cbcSMatt Macy for (i = 0; i < used; i++) { 1627eda14cbcSMatt Macy if (datasets[i]) 1628eda14cbcSMatt Macy zfs_close(datasets[i]); 1629eda14cbcSMatt Macy free(mountpoints[i]); 1630eda14cbcSMatt Macy } 1631eda14cbcSMatt Macy free(datasets); 1632eda14cbcSMatt Macy free(mountpoints); 1633eda14cbcSMatt Macy 1634eda14cbcSMatt Macy return (ret); 1635eda14cbcSMatt Macy } 1636