1fa9e4066Sahrens /* 2fa9e4066Sahrens * CDDL HEADER START 3fa9e4066Sahrens * 4fa9e4066Sahrens * The contents of this file are subject to the terms of the 5ea8dc4b6Seschrock * Common Development and Distribution License (the "License"). 6ea8dc4b6Seschrock * You may not use this file except in compliance with the License. 7fa9e4066Sahrens * 8fa9e4066Sahrens * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE 9fa9e4066Sahrens * or http://www.opensolaris.org/os/licensing. 10fa9e4066Sahrens * See the License for the specific language governing permissions 11fa9e4066Sahrens * and limitations under the License. 12fa9e4066Sahrens * 13fa9e4066Sahrens * When distributing Covered Code, include this CDDL HEADER in each 14fa9e4066Sahrens * file and include the License file at usr/src/OPENSOLARIS.LICENSE. 15fa9e4066Sahrens * If applicable, add the following below this CDDL HEADER, with the 16fa9e4066Sahrens * fields enclosed by brackets "[]" replaced with your own identifying 17fa9e4066Sahrens * information: Portions Copyright [yyyy] [name of copyright owner] 18fa9e4066Sahrens * 19fa9e4066Sahrens * CDDL HEADER END 20fa9e4066Sahrens */ 21f3861e1aSahl 22fa9e4066Sahrens /* 23d1672efbSMarcel Telka * Copyright 2015 Nexenta Systems, Inc. All rights reserved. 24dc7cd546SMark Shellenbaum * Copyright (c) 2005, 2010, Oracle and/or its affiliates. All rights reserved. 2533cde0d0SMatthew Ahrens * Copyright (c) 2014 by Delphix. All rights reserved. 26fa9e4066Sahrens */ 27fa9e4066Sahrens 28fa9e4066Sahrens /* 29fa9e4066Sahrens * Routines to manage ZFS mounts. We separate all the nasty routines that have 30f3861e1aSahl * to deal with the OS. The following functions are the main entry points -- 31f3861e1aSahl * they are used by mount and unmount and when changing a filesystem's 32f3861e1aSahl * mountpoint. 33fa9e4066Sahrens * 34fa9e4066Sahrens * zfs_is_mounted() 35fa9e4066Sahrens * zfs_mount() 36fa9e4066Sahrens * zfs_unmount() 37fa9e4066Sahrens * zfs_unmountall() 38fa9e4066Sahrens * 39f3861e1aSahl * This file also contains the functions used to manage sharing filesystems via 40f3861e1aSahl * NFS and iSCSI: 41fa9e4066Sahrens * 42fa9e4066Sahrens * zfs_is_shared() 43fa9e4066Sahrens * zfs_share() 44fa9e4066Sahrens * zfs_unshare() 45f3861e1aSahl * 46f3861e1aSahl * zfs_is_shared_nfs() 47da6c28aaSamw * zfs_is_shared_smb() 48da6c28aaSamw * zfs_share_proto() 49da6c28aaSamw * zfs_shareall(); 50da6c28aaSamw * zfs_unshare_nfs() 51da6c28aaSamw * zfs_unshare_smb() 52da6c28aaSamw * zfs_unshareall_nfs() 53da6c28aaSamw * zfs_unshareall_smb() 54da6c28aaSamw * zfs_unshareall() 55da6c28aaSamw * zfs_unshareall_bypath() 563bb79becSeschrock * 573bb79becSeschrock * The following functions are available for pool consumers, and will 58f3861e1aSahl * mount/unmount and share/unshare all datasets within pool: 593bb79becSeschrock * 60f3861e1aSahl * zpool_enable_datasets() 61f3861e1aSahl * zpool_disable_datasets() 62fa9e4066Sahrens */ 63fa9e4066Sahrens 64fa9e4066Sahrens #include <dirent.h> 65d8d59944Sahl #include <dlfcn.h> 66fa9e4066Sahrens #include <errno.h> 67fa9e4066Sahrens #include <libgen.h> 68fa9e4066Sahrens #include <libintl.h> 69fa9e4066Sahrens #include <stdio.h> 70fa9e4066Sahrens #include <stdlib.h> 71fa9e4066Sahrens #include <strings.h> 72fa9e4066Sahrens #include <unistd.h> 73fa9e4066Sahrens #include <zone.h> 74fa9e4066Sahrens #include <sys/mntent.h> 75fa9e4066Sahrens #include <sys/mount.h> 76fa9e4066Sahrens #include <sys/stat.h> 77fa9e4066Sahrens 78fa9e4066Sahrens #include <libzfs.h> 79fa9e4066Sahrens 80fa9e4066Sahrens #include "libzfs_impl.h" 81fa9e4066Sahrens 8267331909Sdougm #include <libshare.h> 8367331909Sdougm #include <sys/systeminfo.h> 8467331909Sdougm #define MAXISALEN 257 /* based on sysinfo(2) man page */ 8567331909Sdougm 86da6c28aaSamw static int zfs_share_proto(zfs_handle_t *, zfs_share_proto_t *); 87da6c28aaSamw zfs_share_type_t zfs_is_shared_proto(zfs_handle_t *, char **, 88da6c28aaSamw zfs_share_proto_t); 89da6c28aaSamw 90da6c28aaSamw /* 91da6c28aaSamw * The share protocols table must be in the same order as the zfs_share_prot_t 92da6c28aaSamw * enum in libzfs_impl.h 93da6c28aaSamw */ 94da6c28aaSamw typedef struct { 95da6c28aaSamw zfs_prop_t p_prop; 96da6c28aaSamw char *p_name; 97da6c28aaSamw int p_share_err; 98da6c28aaSamw int p_unshare_err; 99da6c28aaSamw } proto_table_t; 100da6c28aaSamw 101da6c28aaSamw proto_table_t proto_table[PROTO_END] = { 102da6c28aaSamw {ZFS_PROP_SHARENFS, "nfs", EZFS_SHARENFSFAILED, EZFS_UNSHARENFSFAILED}, 103da6c28aaSamw {ZFS_PROP_SHARESMB, "smb", EZFS_SHARESMBFAILED, EZFS_UNSHARESMBFAILED}, 104da6c28aaSamw }; 105da6c28aaSamw 106da6c28aaSamw zfs_share_proto_t nfs_only[] = { 107da6c28aaSamw PROTO_NFS, 108da6c28aaSamw PROTO_END 109da6c28aaSamw }; 110da6c28aaSamw 111da6c28aaSamw zfs_share_proto_t smb_only[] = { 112da6c28aaSamw PROTO_SMB, 113da6c28aaSamw PROTO_END 114da6c28aaSamw }; 115da6c28aaSamw zfs_share_proto_t share_all_proto[] = { 116da6c28aaSamw PROTO_NFS, 117da6c28aaSamw PROTO_SMB, 118da6c28aaSamw PROTO_END 119da6c28aaSamw }; 120da6c28aaSamw 121fa9e4066Sahrens /* 122da6c28aaSamw * Search the sharetab for the given mountpoint and protocol, returning 123da6c28aaSamw * a zfs_share_type_t value. 124fa9e4066Sahrens */ 125da6c28aaSamw static zfs_share_type_t 126da6c28aaSamw is_shared(libzfs_handle_t *hdl, const char *mountpoint, zfs_share_proto_t proto) 127fa9e4066Sahrens { 128fa9e4066Sahrens char buf[MAXPATHLEN], *tab; 129da6c28aaSamw char *ptr; 130fa9e4066Sahrens 13199653d4eSeschrock if (hdl->libzfs_sharetab == NULL) 132da6c28aaSamw return (SHARED_NOT_SHARED); 133fa9e4066Sahrens 13499653d4eSeschrock (void) fseek(hdl->libzfs_sharetab, 0, SEEK_SET); 135fa9e4066Sahrens 13699653d4eSeschrock while (fgets(buf, sizeof (buf), hdl->libzfs_sharetab) != NULL) { 137fa9e4066Sahrens 138fa9e4066Sahrens /* the mountpoint is the first entry on each line */ 139da6c28aaSamw if ((tab = strchr(buf, '\t')) == NULL) 140da6c28aaSamw continue; 141da6c28aaSamw 142fa9e4066Sahrens *tab = '\0'; 143da6c28aaSamw if (strcmp(buf, mountpoint) == 0) { 144da6c28aaSamw /* 145da6c28aaSamw * the protocol field is the third field 146da6c28aaSamw * skip over second field 147da6c28aaSamw */ 148da6c28aaSamw ptr = ++tab; 149da6c28aaSamw if ((tab = strchr(ptr, '\t')) == NULL) 150da6c28aaSamw continue; 151da6c28aaSamw ptr = ++tab; 152da6c28aaSamw if ((tab = strchr(ptr, '\t')) == NULL) 153da6c28aaSamw continue; 154da6c28aaSamw *tab = '\0'; 155da6c28aaSamw if (strcmp(ptr, 156da6c28aaSamw proto_table[proto].p_name) == 0) { 157da6c28aaSamw switch (proto) { 158da6c28aaSamw case PROTO_NFS: 159da6c28aaSamw return (SHARED_NFS); 160da6c28aaSamw case PROTO_SMB: 161da6c28aaSamw return (SHARED_SMB); 162da6c28aaSamw default: 163da6c28aaSamw return (0); 164da6c28aaSamw } 165da6c28aaSamw } 166fa9e4066Sahrens } 167fa9e4066Sahrens } 168fa9e4066Sahrens 169da6c28aaSamw return (SHARED_NOT_SHARED); 170fa9e4066Sahrens } 171fa9e4066Sahrens 172fa9e4066Sahrens /* 17399653d4eSeschrock * Returns true if the specified directory is empty. If we can't open the 17499653d4eSeschrock * directory at all, return true so that the mount can fail with a more 175fa9e4066Sahrens * informative error message. 176fa9e4066Sahrens */ 17799653d4eSeschrock static boolean_t 178fa9e4066Sahrens dir_is_empty(const char *dirname) 179fa9e4066Sahrens { 180fa9e4066Sahrens DIR *dirp; 181fa9e4066Sahrens struct dirent64 *dp; 182fa9e4066Sahrens 183fa9e4066Sahrens if ((dirp = opendir(dirname)) == NULL) 18499653d4eSeschrock return (B_TRUE); 185fa9e4066Sahrens 186fa9e4066Sahrens while ((dp = readdir64(dirp)) != NULL) { 187fa9e4066Sahrens 188fa9e4066Sahrens if (strcmp(dp->d_name, ".") == 0 || 189fa9e4066Sahrens strcmp(dp->d_name, "..") == 0) 190fa9e4066Sahrens continue; 191fa9e4066Sahrens 192fa9e4066Sahrens (void) closedir(dirp); 19399653d4eSeschrock return (B_FALSE); 194fa9e4066Sahrens } 195fa9e4066Sahrens 196fa9e4066Sahrens (void) closedir(dirp); 19799653d4eSeschrock return (B_TRUE); 198fa9e4066Sahrens } 199fa9e4066Sahrens 200fa9e4066Sahrens /* 201fa9e4066Sahrens * Checks to see if the mount is active. If the filesystem is mounted, we fill 202fa9e4066Sahrens * in 'where' with the current mountpoint, and return 1. Otherwise, we return 203fa9e4066Sahrens * 0. 204fa9e4066Sahrens */ 20599653d4eSeschrock boolean_t 20655434c77Sek110237 is_mounted(libzfs_handle_t *zfs_hdl, const char *special, char **where) 207fa9e4066Sahrens { 208ebedde84SEric Taylor struct mnttab entry; 209fa9e4066Sahrens 210ebedde84SEric Taylor if (libzfs_mnttab_find(zfs_hdl, special, &entry) != 0) 21199653d4eSeschrock return (B_FALSE); 212fa9e4066Sahrens 213fa9e4066Sahrens if (where != NULL) 21455434c77Sek110237 *where = zfs_strdup(zfs_hdl, entry.mnt_mountp); 215fa9e4066Sahrens 21699653d4eSeschrock return (B_TRUE); 217fa9e4066Sahrens } 218fa9e4066Sahrens 21955434c77Sek110237 boolean_t 22055434c77Sek110237 zfs_is_mounted(zfs_handle_t *zhp, char **where) 22155434c77Sek110237 { 22255434c77Sek110237 return (is_mounted(zhp->zfs_hdl, zfs_get_name(zhp), where)); 22355434c77Sek110237 } 22455434c77Sek110237 225fa9e4066Sahrens /* 226e9dbad6fSeschrock * Returns true if the given dataset is mountable, false otherwise. Returns the 227e9dbad6fSeschrock * mountpoint in 'buf'. 228e9dbad6fSeschrock */ 229e9dbad6fSeschrock static boolean_t 230e9dbad6fSeschrock zfs_is_mountable(zfs_handle_t *zhp, char *buf, size_t buflen, 231990b4856Slling zprop_source_t *source) 232e9dbad6fSeschrock { 233*40a5c998SMatthew Ahrens char sourceloc[MAXNAMELEN]; 234990b4856Slling zprop_source_t sourcetype; 235e9dbad6fSeschrock 236e9dbad6fSeschrock if (!zfs_prop_valid_for_type(ZFS_PROP_MOUNTPOINT, zhp->zfs_type)) 237e9dbad6fSeschrock return (B_FALSE); 238e9dbad6fSeschrock 239e9dbad6fSeschrock verify(zfs_prop_get(zhp, ZFS_PROP_MOUNTPOINT, buf, buflen, 240e9dbad6fSeschrock &sourcetype, sourceloc, sizeof (sourceloc), B_FALSE) == 0); 241e9dbad6fSeschrock 242e9dbad6fSeschrock if (strcmp(buf, ZFS_MOUNTPOINT_NONE) == 0 || 243e9dbad6fSeschrock strcmp(buf, ZFS_MOUNTPOINT_LEGACY) == 0) 244e9dbad6fSeschrock return (B_FALSE); 245e9dbad6fSeschrock 246a227b7f4Shs24103 if (zfs_prop_get_int(zhp, ZFS_PROP_CANMOUNT) == ZFS_CANMOUNT_OFF) 247e9dbad6fSeschrock return (B_FALSE); 248e9dbad6fSeschrock 249e9dbad6fSeschrock if (zfs_prop_get_int(zhp, ZFS_PROP_ZONED) && 250e9dbad6fSeschrock getzoneid() == GLOBAL_ZONEID) 251e9dbad6fSeschrock return (B_FALSE); 252e9dbad6fSeschrock 253e9dbad6fSeschrock if (source) 254e9dbad6fSeschrock *source = sourcetype; 255e9dbad6fSeschrock 256e9dbad6fSeschrock return (B_TRUE); 257e9dbad6fSeschrock } 258e9dbad6fSeschrock 259e9dbad6fSeschrock /* 260fa9e4066Sahrens * Mount the given filesystem. 261fa9e4066Sahrens */ 262fa9e4066Sahrens int 263fa9e4066Sahrens zfs_mount(zfs_handle_t *zhp, const char *options, int flags) 264fa9e4066Sahrens { 265fa9e4066Sahrens struct stat buf; 266fa9e4066Sahrens char mountpoint[ZFS_MAXPROPLEN]; 267fa9e4066Sahrens char mntopts[MNT_LINE_MAX]; 26899653d4eSeschrock libzfs_handle_t *hdl = zhp->zfs_hdl; 269fa9e4066Sahrens 270fa9e4066Sahrens if (options == NULL) 271fa9e4066Sahrens mntopts[0] = '\0'; 272fa9e4066Sahrens else 273fa9e4066Sahrens (void) strlcpy(mntopts, options, sizeof (mntopts)); 274fa9e4066Sahrens 275f9af39baSGeorge Wilson /* 276f9af39baSGeorge Wilson * If the pool is imported read-only then all mounts must be read-only 277f9af39baSGeorge Wilson */ 278f9af39baSGeorge Wilson if (zpool_get_prop_int(zhp->zpool_hdl, ZPOOL_PROP_READONLY, NULL)) 279f9af39baSGeorge Wilson flags |= MS_RDONLY; 280f9af39baSGeorge Wilson 281e9dbad6fSeschrock if (!zfs_is_mountable(zhp, mountpoint, sizeof (mountpoint), NULL)) 282fa9e4066Sahrens return (0); 283fa9e4066Sahrens 284fa9e4066Sahrens /* Create the directory if it doesn't already exist */ 285fa9e4066Sahrens if (lstat(mountpoint, &buf) != 0) { 286fa9e4066Sahrens if (mkdirp(mountpoint, 0755) != 0) { 28799653d4eSeschrock zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 28899653d4eSeschrock "failed to create mountpoint")); 289ece3d9b3Slling return (zfs_error_fmt(hdl, EZFS_MOUNTFAILED, 29099653d4eSeschrock dgettext(TEXT_DOMAIN, "cannot mount '%s'"), 29199653d4eSeschrock mountpoint)); 292fa9e4066Sahrens } 293fa9e4066Sahrens } 294fa9e4066Sahrens 295fa9e4066Sahrens /* 296fa9e4066Sahrens * Determine if the mountpoint is empty. If so, refuse to perform the 297fa9e4066Sahrens * mount. We don't perform this check if MS_OVERLAY is specified, which 298fa9e4066Sahrens * would defeat the point. We also avoid this check if 'remount' is 299fa9e4066Sahrens * specified. 300fa9e4066Sahrens */ 301fa9e4066Sahrens if ((flags & MS_OVERLAY) == 0 && 302fa9e4066Sahrens strstr(mntopts, MNTOPT_REMOUNT) == NULL && 303fa9e4066Sahrens !dir_is_empty(mountpoint)) { 30499653d4eSeschrock zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 30599653d4eSeschrock "directory is not empty")); 306ece3d9b3Slling return (zfs_error_fmt(hdl, EZFS_MOUNTFAILED, 30799653d4eSeschrock dgettext(TEXT_DOMAIN, "cannot mount '%s'"), mountpoint)); 308fa9e4066Sahrens } 309fa9e4066Sahrens 310fa9e4066Sahrens /* perform the mount */ 311fa9e4066Sahrens if (mount(zfs_get_name(zhp), mountpoint, MS_OPTIONSTR | flags, 312fa9e4066Sahrens MNTTYPE_ZFS, NULL, 0, mntopts, sizeof (mntopts)) != 0) { 313fa9e4066Sahrens /* 314fa9e4066Sahrens * Generic errors are nasty, but there are just way too many 315fa9e4066Sahrens * from mount(), and they're well-understood. We pick a few 316fa9e4066Sahrens * common ones to improve upon. 317fa9e4066Sahrens */ 318d8689a57Sdougm if (errno == EBUSY) { 31999653d4eSeschrock zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 32099653d4eSeschrock "mountpoint or dataset is busy")); 321ecd6cf80Smarks } else if (errno == EPERM) { 322ecd6cf80Smarks zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 323ecd6cf80Smarks "Insufficient privileges")); 32454a91118SChris Kirby } else if (errno == ENOTSUP) { 32554a91118SChris Kirby char buf[256]; 326dc7cd546SMark Shellenbaum int spa_version; 32754a91118SChris Kirby 328dc7cd546SMark Shellenbaum VERIFY(zfs_spa_version(zhp, &spa_version) == 0); 32954a91118SChris Kirby (void) snprintf(buf, sizeof (buf), 330dc7cd546SMark Shellenbaum dgettext(TEXT_DOMAIN, "Can't mount a version %lld " 331dc7cd546SMark Shellenbaum "file system on a version %d pool. Pool must be" 332dc7cd546SMark Shellenbaum " upgraded to mount this file system."), 33354a91118SChris Kirby (u_longlong_t)zfs_prop_get_int(zhp, 334dc7cd546SMark Shellenbaum ZFS_PROP_VERSION), spa_version); 33554a91118SChris Kirby zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, buf)); 336d8689a57Sdougm } else { 33799653d4eSeschrock zfs_error_aux(hdl, strerror(errno)); 338d8689a57Sdougm } 339ece3d9b3Slling return (zfs_error_fmt(hdl, EZFS_MOUNTFAILED, 34099653d4eSeschrock dgettext(TEXT_DOMAIN, "cannot mount '%s'"), 34199653d4eSeschrock zhp->zfs_name)); 342fa9e4066Sahrens } 343fa9e4066Sahrens 344ebedde84SEric Taylor /* add the mounted entry into our cache */ 345ebedde84SEric Taylor libzfs_mnttab_add(hdl, zfs_get_name(zhp), mountpoint, 346ebedde84SEric Taylor mntopts); 347fa9e4066Sahrens return (0); 348fa9e4066Sahrens } 349fa9e4066Sahrens 350fa9e4066Sahrens /* 3513bb79becSeschrock * Unmount a single filesystem. 3523bb79becSeschrock */ 3533bb79becSeschrock static int 3543bb79becSeschrock unmount_one(libzfs_handle_t *hdl, const char *mountpoint, int flags) 3553bb79becSeschrock { 3563bb79becSeschrock if (umount2(mountpoint, flags) != 0) { 3573bb79becSeschrock zfs_error_aux(hdl, strerror(errno)); 358ece3d9b3Slling return (zfs_error_fmt(hdl, EZFS_UMOUNTFAILED, 3593bb79becSeschrock dgettext(TEXT_DOMAIN, "cannot unmount '%s'"), 3603bb79becSeschrock mountpoint)); 3613bb79becSeschrock } 3623bb79becSeschrock 3633bb79becSeschrock return (0); 3643bb79becSeschrock } 3653bb79becSeschrock 3663bb79becSeschrock /* 367fa9e4066Sahrens * Unmount the given filesystem. 368fa9e4066Sahrens */ 369fa9e4066Sahrens int 370fa9e4066Sahrens zfs_unmount(zfs_handle_t *zhp, const char *mountpoint, int flags) 371fa9e4066Sahrens { 372ebedde84SEric Taylor libzfs_handle_t *hdl = zhp->zfs_hdl; 373ebedde84SEric Taylor struct mnttab entry; 37467331909Sdougm char *mntpt = NULL; 375fa9e4066Sahrens 376ebedde84SEric Taylor /* check to see if we need to unmount the filesystem */ 377fa9e4066Sahrens if (mountpoint != NULL || ((zfs_get_type(zhp) == ZFS_TYPE_FILESYSTEM) && 378ebedde84SEric Taylor libzfs_mnttab_find(hdl, zhp->zfs_name, &entry) == 0)) { 37967331909Sdougm /* 38067331909Sdougm * mountpoint may have come from a call to 38167331909Sdougm * getmnt/getmntany if it isn't NULL. If it is NULL, 382ebedde84SEric Taylor * we know it comes from libzfs_mnttab_find which can 383ebedde84SEric Taylor * then get freed later. We strdup it to play it safe. 38467331909Sdougm */ 385fa9e4066Sahrens if (mountpoint == NULL) 386ebedde84SEric Taylor mntpt = zfs_strdup(hdl, entry.mnt_mountp); 38767331909Sdougm else 388ebedde84SEric Taylor mntpt = zfs_strdup(hdl, mountpoint); 389fa9e4066Sahrens 390fa9e4066Sahrens /* 3913bb79becSeschrock * Unshare and unmount the filesystem 392fa9e4066Sahrens */ 393da6c28aaSamw if (zfs_unshare_proto(zhp, mntpt, share_all_proto) != 0) 394eb66cf86Sth199096 return (-1); 395eb66cf86Sth199096 396ebedde84SEric Taylor if (unmount_one(hdl, mntpt, flags) != 0) { 39767331909Sdougm free(mntpt); 398da6c28aaSamw (void) zfs_shareall(zhp); 399fa9e4066Sahrens return (-1); 400fa9e4066Sahrens } 401ebedde84SEric Taylor libzfs_mnttab_remove(hdl, zhp->zfs_name); 40267331909Sdougm free(mntpt); 40367331909Sdougm } 404fa9e4066Sahrens 405fa9e4066Sahrens return (0); 406fa9e4066Sahrens } 407fa9e4066Sahrens 408fa9e4066Sahrens /* 409fa9e4066Sahrens * Unmount this filesystem and any children inheriting the mountpoint property. 410fa9e4066Sahrens * To do this, just act like we're changing the mountpoint property, but don't 411fa9e4066Sahrens * remount the filesystems afterwards. 412fa9e4066Sahrens */ 413fa9e4066Sahrens int 414fa9e4066Sahrens zfs_unmountall(zfs_handle_t *zhp, int flags) 415fa9e4066Sahrens { 416fa9e4066Sahrens prop_changelist_t *clp; 417fa9e4066Sahrens int ret; 418fa9e4066Sahrens 4190069fd67STim Haley clp = changelist_gather(zhp, ZFS_PROP_MOUNTPOINT, 0, flags); 420fa9e4066Sahrens if (clp == NULL) 421fa9e4066Sahrens return (-1); 422fa9e4066Sahrens 423fa9e4066Sahrens ret = changelist_prefix(clp); 424fa9e4066Sahrens changelist_free(clp); 425fa9e4066Sahrens 426fa9e4066Sahrens return (ret); 427fa9e4066Sahrens } 428fa9e4066Sahrens 429f3861e1aSahl boolean_t 430f3861e1aSahl zfs_is_shared(zfs_handle_t *zhp) 431f3861e1aSahl { 432da6c28aaSamw zfs_share_type_t rc = 0; 433da6c28aaSamw zfs_share_proto_t *curr_proto; 434da6c28aaSamw 435f3861e1aSahl if (ZFS_IS_VOLUME(zhp)) 436ab003da8SJim Dunham return (B_FALSE); 437f3861e1aSahl 438da6c28aaSamw for (curr_proto = share_all_proto; *curr_proto != PROTO_END; 439da6c28aaSamw curr_proto++) 440da6c28aaSamw rc |= zfs_is_shared_proto(zhp, NULL, *curr_proto); 441da6c28aaSamw 442da6c28aaSamw return (rc ? B_TRUE : B_FALSE); 443f3861e1aSahl } 444f3861e1aSahl 445f3861e1aSahl int 446f3861e1aSahl zfs_share(zfs_handle_t *zhp) 447f3861e1aSahl { 4489d9a58e3SEric Taylor assert(!ZFS_IS_VOLUME(zhp)); 449da6c28aaSamw return (zfs_share_proto(zhp, share_all_proto)); 450f3861e1aSahl } 451f3861e1aSahl 452f3861e1aSahl int 453f3861e1aSahl zfs_unshare(zfs_handle_t *zhp) 454f3861e1aSahl { 4559d9a58e3SEric Taylor assert(!ZFS_IS_VOLUME(zhp)); 456da6c28aaSamw return (zfs_unshareall(zhp)); 457f3861e1aSahl } 458f3861e1aSahl 459fa9e4066Sahrens /* 460fa9e4066Sahrens * Check to see if the filesystem is currently shared. 461fa9e4066Sahrens */ 462da6c28aaSamw zfs_share_type_t 463da6c28aaSamw zfs_is_shared_proto(zfs_handle_t *zhp, char **where, zfs_share_proto_t proto) 464fa9e4066Sahrens { 465fa9e4066Sahrens char *mountpoint; 466da6c28aaSamw zfs_share_type_t rc; 467fa9e4066Sahrens 468fa9e4066Sahrens if (!zfs_is_mounted(zhp, &mountpoint)) 469da6c28aaSamw return (SHARED_NOT_SHARED); 470fa9e4066Sahrens 471da6c28aaSamw if (rc = is_shared(zhp->zfs_hdl, mountpoint, proto)) { 472fa9e4066Sahrens if (where != NULL) 473fa9e4066Sahrens *where = mountpoint; 474fa9e4066Sahrens else 475fa9e4066Sahrens free(mountpoint); 476da6c28aaSamw return (rc); 477fa9e4066Sahrens } else { 478fa9e4066Sahrens free(mountpoint); 479da6c28aaSamw return (SHARED_NOT_SHARED); 480fa9e4066Sahrens } 481fa9e4066Sahrens } 482fa9e4066Sahrens 483da6c28aaSamw boolean_t 484da6c28aaSamw zfs_is_shared_nfs(zfs_handle_t *zhp, char **where) 485da6c28aaSamw { 486da6c28aaSamw return (zfs_is_shared_proto(zhp, where, 487da6c28aaSamw PROTO_NFS) != SHARED_NOT_SHARED); 488da6c28aaSamw } 489da6c28aaSamw 490da6c28aaSamw boolean_t 491da6c28aaSamw zfs_is_shared_smb(zfs_handle_t *zhp, char **where) 492da6c28aaSamw { 493da6c28aaSamw return (zfs_is_shared_proto(zhp, where, 494da6c28aaSamw PROTO_SMB) != SHARED_NOT_SHARED); 495da6c28aaSamw } 496da6c28aaSamw 497fa9e4066Sahrens /* 49867331909Sdougm * Make sure things will work if libshare isn't installed by using 49967331909Sdougm * wrapper functions that check to see that the pointers to functions 50067331909Sdougm * initialized in _zfs_init_libshare() are actually present. 501fa9e4066Sahrens */ 50267331909Sdougm 50367331909Sdougm static sa_handle_t (*_sa_init)(int); 50467331909Sdougm static void (*_sa_fini)(sa_handle_t); 50567331909Sdougm static sa_share_t (*_sa_find_share)(sa_handle_t, char *); 50667331909Sdougm static int (*_sa_enable_share)(sa_share_t, char *); 50767331909Sdougm static int (*_sa_disable_share)(sa_share_t, char *); 50867331909Sdougm static char *(*_sa_errorstr)(int); 50967331909Sdougm static int (*_sa_parse_legacy_options)(sa_group_t, char *, char *); 5105b6e0c46Sdougm static boolean_t (*_sa_needs_refresh)(sa_handle_t *); 5115b6e0c46Sdougm static libzfs_handle_t *(*_sa_get_zfs_handle)(sa_handle_t); 5125b6e0c46Sdougm static int (*_sa_zfs_process_share)(sa_handle_t, sa_group_t, sa_share_t, 5135b6e0c46Sdougm char *, char *, zprop_source_t, char *, char *, char *); 5145b6e0c46Sdougm static void (*_sa_update_sharetab_ts)(sa_handle_t); 51567331909Sdougm 51667331909Sdougm /* 51767331909Sdougm * _zfs_init_libshare() 51867331909Sdougm * 51967331909Sdougm * Find the libshare.so.1 entry points that we use here and save the 52067331909Sdougm * values to be used later. This is triggered by the runtime loader. 52167331909Sdougm * Make sure the correct ISA version is loaded. 52267331909Sdougm */ 5235b6e0c46Sdougm 52467331909Sdougm #pragma init(_zfs_init_libshare) 52567331909Sdougm static void 52667331909Sdougm _zfs_init_libshare(void) 52767331909Sdougm { 52867331909Sdougm void *libshare; 52967331909Sdougm char path[MAXPATHLEN]; 53067331909Sdougm char isa[MAXISALEN]; 53167331909Sdougm 53267331909Sdougm #if defined(_LP64) 53367331909Sdougm if (sysinfo(SI_ARCHITECTURE_64, isa, MAXISALEN) == -1) 53467331909Sdougm isa[0] = '\0'; 53567331909Sdougm #else 53667331909Sdougm isa[0] = '\0'; 53767331909Sdougm #endif 53867331909Sdougm (void) snprintf(path, MAXPATHLEN, 53967331909Sdougm "/usr/lib/%s/libshare.so.1", isa); 54067331909Sdougm 54167331909Sdougm if ((libshare = dlopen(path, RTLD_LAZY | RTLD_GLOBAL)) != NULL) { 54267331909Sdougm _sa_init = (sa_handle_t (*)(int))dlsym(libshare, "sa_init"); 54367331909Sdougm _sa_fini = (void (*)(sa_handle_t))dlsym(libshare, "sa_fini"); 54467331909Sdougm _sa_find_share = (sa_share_t (*)(sa_handle_t, char *)) 54567331909Sdougm dlsym(libshare, "sa_find_share"); 54667331909Sdougm _sa_enable_share = (int (*)(sa_share_t, char *))dlsym(libshare, 54767331909Sdougm "sa_enable_share"); 54867331909Sdougm _sa_disable_share = (int (*)(sa_share_t, char *))dlsym(libshare, 54967331909Sdougm "sa_disable_share"); 55067331909Sdougm _sa_errorstr = (char *(*)(int))dlsym(libshare, "sa_errorstr"); 55167331909Sdougm _sa_parse_legacy_options = (int (*)(sa_group_t, char *, char *)) 55267331909Sdougm dlsym(libshare, "sa_parse_legacy_options"); 5535b6e0c46Sdougm _sa_needs_refresh = (boolean_t (*)(sa_handle_t *)) 5545b6e0c46Sdougm dlsym(libshare, "sa_needs_refresh"); 5555b6e0c46Sdougm _sa_get_zfs_handle = (libzfs_handle_t *(*)(sa_handle_t)) 5565b6e0c46Sdougm dlsym(libshare, "sa_get_zfs_handle"); 5575b6e0c46Sdougm _sa_zfs_process_share = (int (*)(sa_handle_t, sa_group_t, 5585b6e0c46Sdougm sa_share_t, char *, char *, zprop_source_t, char *, 5595b6e0c46Sdougm char *, char *))dlsym(libshare, "sa_zfs_process_share"); 5605b6e0c46Sdougm _sa_update_sharetab_ts = (void (*)(sa_handle_t)) 5615b6e0c46Sdougm dlsym(libshare, "sa_update_sharetab_ts"); 56257b448deSdougm if (_sa_init == NULL || _sa_fini == NULL || 56357b448deSdougm _sa_find_share == NULL || _sa_enable_share == NULL || 56457b448deSdougm _sa_disable_share == NULL || _sa_errorstr == NULL || 5655b6e0c46Sdougm _sa_parse_legacy_options == NULL || 5665b6e0c46Sdougm _sa_needs_refresh == NULL || _sa_get_zfs_handle == NULL || 5675b6e0c46Sdougm _sa_zfs_process_share == NULL || 5685b6e0c46Sdougm _sa_update_sharetab_ts == NULL) { 56957b448deSdougm _sa_init = NULL; 57057b448deSdougm _sa_fini = NULL; 57157b448deSdougm _sa_disable_share = NULL; 57257b448deSdougm _sa_enable_share = NULL; 57357b448deSdougm _sa_errorstr = NULL; 57457b448deSdougm _sa_parse_legacy_options = NULL; 57557b448deSdougm (void) dlclose(libshare); 5765b6e0c46Sdougm _sa_needs_refresh = NULL; 5775b6e0c46Sdougm _sa_get_zfs_handle = NULL; 5785b6e0c46Sdougm _sa_zfs_process_share = NULL; 5795b6e0c46Sdougm _sa_update_sharetab_ts = NULL; 58057b448deSdougm } 58167331909Sdougm } 58267331909Sdougm } 58367331909Sdougm 58467331909Sdougm /* 58567331909Sdougm * zfs_init_libshare(zhandle, service) 58667331909Sdougm * 58767331909Sdougm * Initialize the libshare API if it hasn't already been initialized. 58867331909Sdougm * In all cases it returns 0 if it succeeded and an error if not. The 58967331909Sdougm * service value is which part(s) of the API to initialize and is a 59067331909Sdougm * direct map to the libshare sa_init(service) interface. 59167331909Sdougm */ 59267331909Sdougm int 59367331909Sdougm zfs_init_libshare(libzfs_handle_t *zhandle, int service) 59467331909Sdougm { 59567331909Sdougm int ret = SA_OK; 59667331909Sdougm 597d8689a57Sdougm if (_sa_init == NULL) 59867331909Sdougm ret = SA_CONFIG_ERR; 599d8689a57Sdougm 6005b6e0c46Sdougm if (ret == SA_OK && zhandle->libzfs_shareflags & ZFSSHARE_MISS) { 6015b6e0c46Sdougm /* 6025b6e0c46Sdougm * We had a cache miss. Most likely it is a new ZFS 6035b6e0c46Sdougm * dataset that was just created. We want to make sure 6045b6e0c46Sdougm * so check timestamps to see if a different process 6055b6e0c46Sdougm * has updated any of the configuration. If there was 6065b6e0c46Sdougm * some non-ZFS change, we need to re-initialize the 6075b6e0c46Sdougm * internal cache. 6085b6e0c46Sdougm */ 6095b6e0c46Sdougm zhandle->libzfs_shareflags &= ~ZFSSHARE_MISS; 6105b6e0c46Sdougm if (_sa_needs_refresh != NULL && 6115b6e0c46Sdougm _sa_needs_refresh(zhandle->libzfs_sharehdl)) { 6125b6e0c46Sdougm zfs_uninit_libshare(zhandle); 6135b6e0c46Sdougm zhandle->libzfs_sharehdl = _sa_init(service); 6145b6e0c46Sdougm } 6155b6e0c46Sdougm } 6165b6e0c46Sdougm 617d8689a57Sdougm if (ret == SA_OK && zhandle && zhandle->libzfs_sharehdl == NULL) 61867331909Sdougm zhandle->libzfs_sharehdl = _sa_init(service); 619d8689a57Sdougm 620d8689a57Sdougm if (ret == SA_OK && zhandle->libzfs_sharehdl == NULL) 62167331909Sdougm ret = SA_NO_MEMORY; 622d8689a57Sdougm 62367331909Sdougm return (ret); 62467331909Sdougm } 62567331909Sdougm 62667331909Sdougm /* 62767331909Sdougm * zfs_uninit_libshare(zhandle) 62867331909Sdougm * 62967331909Sdougm * Uninitialize the libshare API if it hasn't already been 63067331909Sdougm * uninitialized. It is OK to call multiple times. 63167331909Sdougm */ 63267331909Sdougm void 63367331909Sdougm zfs_uninit_libshare(libzfs_handle_t *zhandle) 63467331909Sdougm { 63567331909Sdougm if (zhandle != NULL && zhandle->libzfs_sharehdl != NULL) { 63667331909Sdougm if (_sa_fini != NULL) 63767331909Sdougm _sa_fini(zhandle->libzfs_sharehdl); 63867331909Sdougm zhandle->libzfs_sharehdl = NULL; 63967331909Sdougm } 64067331909Sdougm } 64167331909Sdougm 64267331909Sdougm /* 64367331909Sdougm * zfs_parse_options(options, proto) 64467331909Sdougm * 64567331909Sdougm * Call the legacy parse interface to get the protocol specific 64667331909Sdougm * options using the NULL arg to indicate that this is a "parse" only. 64767331909Sdougm */ 64867331909Sdougm int 649da6c28aaSamw zfs_parse_options(char *options, zfs_share_proto_t proto) 65067331909Sdougm { 6513cb34c60Sahrens if (_sa_parse_legacy_options != NULL) { 6523cb34c60Sahrens return (_sa_parse_legacy_options(NULL, options, 6533cb34c60Sahrens proto_table[proto].p_name)); 6543cb34c60Sahrens } 6553cb34c60Sahrens return (SA_CONFIG_ERR); 65667331909Sdougm } 65767331909Sdougm 65867331909Sdougm /* 65967331909Sdougm * zfs_sa_find_share(handle, path) 66067331909Sdougm * 66167331909Sdougm * wrapper around sa_find_share to find a share path in the 66267331909Sdougm * configuration. 66367331909Sdougm */ 66467331909Sdougm static sa_share_t 66567331909Sdougm zfs_sa_find_share(sa_handle_t handle, char *path) 66667331909Sdougm { 66767331909Sdougm if (_sa_find_share != NULL) 66867331909Sdougm return (_sa_find_share(handle, path)); 66967331909Sdougm return (NULL); 67067331909Sdougm } 67167331909Sdougm 67267331909Sdougm /* 67367331909Sdougm * zfs_sa_enable_share(share, proto) 67467331909Sdougm * 67567331909Sdougm * Wrapper for sa_enable_share which enables a share for a specified 67667331909Sdougm * protocol. 67767331909Sdougm */ 67867331909Sdougm static int 67967331909Sdougm zfs_sa_enable_share(sa_share_t share, char *proto) 68067331909Sdougm { 68167331909Sdougm if (_sa_enable_share != NULL) 68267331909Sdougm return (_sa_enable_share(share, proto)); 68367331909Sdougm return (SA_CONFIG_ERR); 68467331909Sdougm } 68567331909Sdougm 68667331909Sdougm /* 68767331909Sdougm * zfs_sa_disable_share(share, proto) 68867331909Sdougm * 68967331909Sdougm * Wrapper for sa_enable_share which disables a share for a specified 69067331909Sdougm * protocol. 69167331909Sdougm */ 69267331909Sdougm static int 69367331909Sdougm zfs_sa_disable_share(sa_share_t share, char *proto) 69467331909Sdougm { 69567331909Sdougm if (_sa_disable_share != NULL) 69667331909Sdougm return (_sa_disable_share(share, proto)); 69767331909Sdougm return (SA_CONFIG_ERR); 69867331909Sdougm } 69967331909Sdougm 70067331909Sdougm /* 701da6c28aaSamw * Share the given filesystem according to the options in the specified 702da6c28aaSamw * protocol specific properties (sharenfs, sharesmb). We rely 70367331909Sdougm * on "libshare" to the dirty work for us. 70467331909Sdougm */ 705da6c28aaSamw static int 706da6c28aaSamw zfs_share_proto(zfs_handle_t *zhp, zfs_share_proto_t *proto) 707fa9e4066Sahrens { 708fa9e4066Sahrens char mountpoint[ZFS_MAXPROPLEN]; 709fa9e4066Sahrens char shareopts[ZFS_MAXPROPLEN]; 7105b6e0c46Sdougm char sourcestr[ZFS_MAXPROPLEN]; 71199653d4eSeschrock libzfs_handle_t *hdl = zhp->zfs_hdl; 71267331909Sdougm sa_share_t share; 713da6c28aaSamw zfs_share_proto_t *curr_proto; 7145b6e0c46Sdougm zprop_source_t sourcetype; 71567331909Sdougm int ret; 716fa9e4066Sahrens 717e9dbad6fSeschrock if (!zfs_is_mountable(zhp, mountpoint, sizeof (mountpoint), NULL)) 718fa9e4066Sahrens return (0); 719fa9e4066Sahrens 720da6c28aaSamw for (curr_proto = proto; *curr_proto != PROTO_END; curr_proto++) { 721da6c28aaSamw /* 722da6c28aaSamw * Return success if there are no share options. 723da6c28aaSamw */ 724da6c28aaSamw if (zfs_prop_get(zhp, proto_table[*curr_proto].p_prop, 7255b6e0c46Sdougm shareopts, sizeof (shareopts), &sourcetype, sourcestr, 7265b6e0c46Sdougm ZFS_MAXPROPLEN, B_FALSE) != 0 || 7275b6e0c46Sdougm strcmp(shareopts, "off") == 0) 728da6c28aaSamw continue; 729da6c28aaSamw 73033cde0d0SMatthew Ahrens ret = zfs_init_libshare(hdl, SA_INIT_SHARE_API); 73133cde0d0SMatthew Ahrens if (ret != SA_OK) { 73233cde0d0SMatthew Ahrens (void) zfs_error_fmt(hdl, EZFS_SHARENFSFAILED, 73333cde0d0SMatthew Ahrens dgettext(TEXT_DOMAIN, "cannot share '%s': %s"), 73433cde0d0SMatthew Ahrens zfs_get_name(zhp), _sa_errorstr != NULL ? 73533cde0d0SMatthew Ahrens _sa_errorstr(ret) : ""); 73633cde0d0SMatthew Ahrens return (-1); 73733cde0d0SMatthew Ahrens } 73833cde0d0SMatthew Ahrens 739da6c28aaSamw /* 740da6c28aaSamw * If the 'zoned' property is set, then zfs_is_mountable() 741da6c28aaSamw * will have already bailed out if we are in the global zone. 742da6c28aaSamw * But local zones cannot be NFS servers, so we ignore it for 743da6c28aaSamw * local zones as well. 744da6c28aaSamw */ 745da6c28aaSamw if (zfs_prop_get_int(zhp, ZFS_PROP_ZONED)) 746da6c28aaSamw continue; 747da6c28aaSamw 74867331909Sdougm share = zfs_sa_find_share(hdl->libzfs_sharehdl, mountpoint); 7495b6e0c46Sdougm if (share == NULL) { 7505b6e0c46Sdougm /* 7515b6e0c46Sdougm * This may be a new file system that was just 7525b6e0c46Sdougm * created so isn't in the internal cache 7535b6e0c46Sdougm * (second time through). Rather than 7545b6e0c46Sdougm * reloading the entire configuration, we can 7555b6e0c46Sdougm * assume ZFS has done the checking and it is 7565b6e0c46Sdougm * safe to add this to the internal 7575b6e0c46Sdougm * configuration. 7585b6e0c46Sdougm */ 7595b6e0c46Sdougm if (_sa_zfs_process_share(hdl->libzfs_sharehdl, 7605b6e0c46Sdougm NULL, NULL, mountpoint, 7615b6e0c46Sdougm proto_table[*curr_proto].p_name, sourcetype, 7625b6e0c46Sdougm shareopts, sourcestr, zhp->zfs_name) != SA_OK) { 7635b6e0c46Sdougm (void) zfs_error_fmt(hdl, 7645b6e0c46Sdougm proto_table[*curr_proto].p_share_err, 7655b6e0c46Sdougm dgettext(TEXT_DOMAIN, "cannot share '%s'"), 7665b6e0c46Sdougm zfs_get_name(zhp)); 7675b6e0c46Sdougm return (-1); 7685b6e0c46Sdougm } 7695b6e0c46Sdougm hdl->libzfs_shareflags |= ZFSSHARE_MISS; 7705b6e0c46Sdougm share = zfs_sa_find_share(hdl->libzfs_sharehdl, 7715b6e0c46Sdougm mountpoint); 7725b6e0c46Sdougm } 77367331909Sdougm if (share != NULL) { 77467331909Sdougm int err; 775da6c28aaSamw err = zfs_sa_enable_share(share, 776da6c28aaSamw proto_table[*curr_proto].p_name); 77767331909Sdougm if (err != SA_OK) { 778da6c28aaSamw (void) zfs_error_fmt(hdl, 779da6c28aaSamw proto_table[*curr_proto].p_share_err, 7803bb79becSeschrock dgettext(TEXT_DOMAIN, "cannot share '%s'"), 7813bb79becSeschrock zfs_get_name(zhp)); 782fa9e4066Sahrens return (-1); 783fa9e4066Sahrens } 78467331909Sdougm } else { 785da6c28aaSamw (void) zfs_error_fmt(hdl, 786da6c28aaSamw proto_table[*curr_proto].p_share_err, 78767331909Sdougm dgettext(TEXT_DOMAIN, "cannot share '%s'"), 78867331909Sdougm zfs_get_name(zhp)); 78967331909Sdougm return (-1); 79067331909Sdougm } 791fa9e4066Sahrens 792da6c28aaSamw } 793fa9e4066Sahrens return (0); 794fa9e4066Sahrens } 795fa9e4066Sahrens 796da6c28aaSamw 797da6c28aaSamw int 798da6c28aaSamw zfs_share_nfs(zfs_handle_t *zhp) 799da6c28aaSamw { 800da6c28aaSamw return (zfs_share_proto(zhp, nfs_only)); 801da6c28aaSamw } 802da6c28aaSamw 803da6c28aaSamw int 804da6c28aaSamw zfs_share_smb(zfs_handle_t *zhp) 805da6c28aaSamw { 806da6c28aaSamw return (zfs_share_proto(zhp, smb_only)); 807da6c28aaSamw } 808da6c28aaSamw 809da6c28aaSamw int 810da6c28aaSamw zfs_shareall(zfs_handle_t *zhp) 811da6c28aaSamw { 812da6c28aaSamw return (zfs_share_proto(zhp, share_all_proto)); 813da6c28aaSamw } 814da6c28aaSamw 815fa9e4066Sahrens /* 8163bb79becSeschrock * Unshare a filesystem by mountpoint. 817fa9e4066Sahrens */ 8183bb79becSeschrock static int 819da6c28aaSamw unshare_one(libzfs_handle_t *hdl, const char *name, const char *mountpoint, 820da6c28aaSamw zfs_share_proto_t proto) 821fa9e4066Sahrens { 82267331909Sdougm sa_share_t share; 82367331909Sdougm int err; 82467331909Sdougm char *mntpt; 825fa9e4066Sahrens /* 82667331909Sdougm * Mountpoint could get trashed if libshare calls getmntany 827ebedde84SEric Taylor * which it does during API initialization, so strdup the 82867331909Sdougm * value. 829fa9e4066Sahrens */ 83067331909Sdougm mntpt = zfs_strdup(hdl, mountpoint); 831fa9e4066Sahrens 83267331909Sdougm /* make sure libshare initialized */ 83367331909Sdougm if ((err = zfs_init_libshare(hdl, SA_INIT_SHARE_API)) != SA_OK) { 83467331909Sdougm free(mntpt); /* don't need the copy anymore */ 835d1672efbSMarcel Telka return (zfs_error_fmt(hdl, EZFS_UNSHARENFSFAILED, 836d8689a57Sdougm dgettext(TEXT_DOMAIN, "cannot unshare '%s': %s"), 83767331909Sdougm name, _sa_errorstr(err))); 838fa9e4066Sahrens } 839fa9e4066Sahrens 84067331909Sdougm share = zfs_sa_find_share(hdl->libzfs_sharehdl, mntpt); 84167331909Sdougm free(mntpt); /* don't need the copy anymore */ 8423bb79becSeschrock 84367331909Sdougm if (share != NULL) { 844da6c28aaSamw err = zfs_sa_disable_share(share, proto_table[proto].p_name); 84567331909Sdougm if (err != SA_OK) { 84667331909Sdougm return (zfs_error_fmt(hdl, EZFS_UNSHARENFSFAILED, 847d8689a57Sdougm dgettext(TEXT_DOMAIN, "cannot unshare '%s': %s"), 848d8689a57Sdougm name, _sa_errorstr(err))); 84967331909Sdougm } 85067331909Sdougm } else { 85167331909Sdougm return (zfs_error_fmt(hdl, EZFS_UNSHARENFSFAILED, 852d8689a57Sdougm dgettext(TEXT_DOMAIN, "cannot unshare '%s': not found"), 853d8689a57Sdougm name)); 85467331909Sdougm } 8553bb79becSeschrock return (0); 856fa9e4066Sahrens } 8573bb79becSeschrock 8583bb79becSeschrock /* 8593bb79becSeschrock * Unshare the given filesystem. 8603bb79becSeschrock */ 8613bb79becSeschrock int 862da6c28aaSamw zfs_unshare_proto(zfs_handle_t *zhp, const char *mountpoint, 863da6c28aaSamw zfs_share_proto_t *proto) 8643bb79becSeschrock { 865ebedde84SEric Taylor libzfs_handle_t *hdl = zhp->zfs_hdl; 866ebedde84SEric Taylor struct mnttab entry; 86767331909Sdougm char *mntpt = NULL; 8683bb79becSeschrock 8693bb79becSeschrock /* check to see if need to unmount the filesystem */ 8703bb79becSeschrock rewind(zhp->zfs_hdl->libzfs_mnttab); 871d8689a57Sdougm if (mountpoint != NULL) 872ebedde84SEric Taylor mountpoint = mntpt = zfs_strdup(hdl, mountpoint); 873d8689a57Sdougm 8743bb79becSeschrock if (mountpoint != NULL || ((zfs_get_type(zhp) == ZFS_TYPE_FILESYSTEM) && 875ebedde84SEric Taylor libzfs_mnttab_find(hdl, zfs_get_name(zhp), &entry) == 0)) { 876da6c28aaSamw zfs_share_proto_t *curr_proto; 8773bb79becSeschrock 8783bb79becSeschrock if (mountpoint == NULL) 879da6c28aaSamw mntpt = zfs_strdup(zhp->zfs_hdl, entry.mnt_mountp); 8803bb79becSeschrock 881da6c28aaSamw for (curr_proto = proto; *curr_proto != PROTO_END; 882da6c28aaSamw curr_proto++) { 883da6c28aaSamw 884ebedde84SEric Taylor if (is_shared(hdl, mntpt, *curr_proto) && 885ebedde84SEric Taylor unshare_one(hdl, zhp->zfs_name, 886da6c28aaSamw mntpt, *curr_proto) != 0) { 88767331909Sdougm if (mntpt != NULL) 88867331909Sdougm free(mntpt); 8893bb79becSeschrock return (-1); 890fa9e4066Sahrens } 89167331909Sdougm } 892da6c28aaSamw } 89367331909Sdougm if (mntpt != NULL) 89467331909Sdougm free(mntpt); 895fa9e4066Sahrens 896fa9e4066Sahrens return (0); 897fa9e4066Sahrens } 898fa9e4066Sahrens 899da6c28aaSamw int 900da6c28aaSamw zfs_unshare_nfs(zfs_handle_t *zhp, const char *mountpoint) 901da6c28aaSamw { 902da6c28aaSamw return (zfs_unshare_proto(zhp, mountpoint, nfs_only)); 903da6c28aaSamw } 904da6c28aaSamw 905da6c28aaSamw int 906da6c28aaSamw zfs_unshare_smb(zfs_handle_t *zhp, const char *mountpoint) 907da6c28aaSamw { 908da6c28aaSamw return (zfs_unshare_proto(zhp, mountpoint, smb_only)); 909da6c28aaSamw } 910da6c28aaSamw 911fa9e4066Sahrens /* 912da6c28aaSamw * Same as zfs_unmountall(), but for NFS and SMB unshares. 913fa9e4066Sahrens */ 914fa9e4066Sahrens int 915da6c28aaSamw zfs_unshareall_proto(zfs_handle_t *zhp, zfs_share_proto_t *proto) 916fa9e4066Sahrens { 917fa9e4066Sahrens prop_changelist_t *clp; 918fa9e4066Sahrens int ret; 919fa9e4066Sahrens 9200069fd67STim Haley clp = changelist_gather(zhp, ZFS_PROP_SHARENFS, 0, 0); 921fa9e4066Sahrens if (clp == NULL) 922fa9e4066Sahrens return (-1); 923fa9e4066Sahrens 924da6c28aaSamw ret = changelist_unshare(clp, proto); 925fa9e4066Sahrens changelist_free(clp); 926fa9e4066Sahrens 927fa9e4066Sahrens return (ret); 928fa9e4066Sahrens } 929fa9e4066Sahrens 930da6c28aaSamw int 931da6c28aaSamw zfs_unshareall_nfs(zfs_handle_t *zhp) 932da6c28aaSamw { 933da6c28aaSamw return (zfs_unshareall_proto(zhp, nfs_only)); 934da6c28aaSamw } 935da6c28aaSamw 936da6c28aaSamw int 937da6c28aaSamw zfs_unshareall_smb(zfs_handle_t *zhp) 938da6c28aaSamw { 939da6c28aaSamw return (zfs_unshareall_proto(zhp, smb_only)); 940da6c28aaSamw } 941da6c28aaSamw 942da6c28aaSamw int 943da6c28aaSamw zfs_unshareall(zfs_handle_t *zhp) 944da6c28aaSamw { 945da6c28aaSamw return (zfs_unshareall_proto(zhp, share_all_proto)); 946da6c28aaSamw } 947da6c28aaSamw 948da6c28aaSamw int 949da6c28aaSamw zfs_unshareall_bypath(zfs_handle_t *zhp, const char *mountpoint) 950da6c28aaSamw { 951da6c28aaSamw return (zfs_unshare_proto(zhp, mountpoint, share_all_proto)); 952da6c28aaSamw } 953da6c28aaSamw 954fa9e4066Sahrens /* 955fa9e4066Sahrens * Remove the mountpoint associated with the current dataset, if necessary. 956fa9e4066Sahrens * We only remove the underlying directory if: 957fa9e4066Sahrens * 958fa9e4066Sahrens * - The mountpoint is not 'none' or 'legacy' 959fa9e4066Sahrens * - The mountpoint is non-empty 960fa9e4066Sahrens * - The mountpoint is the default or inherited 961fa9e4066Sahrens * - The 'zoned' property is set, or we're in a local zone 962fa9e4066Sahrens * 963fa9e4066Sahrens * Any other directories we leave alone. 964fa9e4066Sahrens */ 965fa9e4066Sahrens void 966fa9e4066Sahrens remove_mountpoint(zfs_handle_t *zhp) 967fa9e4066Sahrens { 968fa9e4066Sahrens char mountpoint[ZFS_MAXPROPLEN]; 969990b4856Slling zprop_source_t source; 970fa9e4066Sahrens 971e9dbad6fSeschrock if (!zfs_is_mountable(zhp, mountpoint, sizeof (mountpoint), 972e9dbad6fSeschrock &source)) 973fa9e4066Sahrens return; 974fa9e4066Sahrens 975990b4856Slling if (source == ZPROP_SRC_DEFAULT || 976990b4856Slling source == ZPROP_SRC_INHERITED) { 977fa9e4066Sahrens /* 978fa9e4066Sahrens * Try to remove the directory, silently ignoring any errors. 979fa9e4066Sahrens * The filesystem may have since been removed or moved around, 980e9dbad6fSeschrock * and this error isn't really useful to the administrator in 981e9dbad6fSeschrock * any way. 982fa9e4066Sahrens */ 983fa9e4066Sahrens (void) rmdir(mountpoint); 984fa9e4066Sahrens } 985fa9e4066Sahrens } 9863bb79becSeschrock 9879d9a58e3SEric Taylor void 9889d9a58e3SEric Taylor libzfs_add_handle(get_all_cb_t *cbp, zfs_handle_t *zhp) 9899d9a58e3SEric Taylor { 9909d9a58e3SEric Taylor if (cbp->cb_alloc == cbp->cb_used) { 9919d9a58e3SEric Taylor size_t newsz; 9929d9a58e3SEric Taylor void *ptr; 9939d9a58e3SEric Taylor 9949d9a58e3SEric Taylor newsz = cbp->cb_alloc ? cbp->cb_alloc * 2 : 64; 9959d9a58e3SEric Taylor ptr = zfs_realloc(zhp->zfs_hdl, 9969d9a58e3SEric Taylor cbp->cb_handles, cbp->cb_alloc * sizeof (void *), 9979d9a58e3SEric Taylor newsz * sizeof (void *)); 9989d9a58e3SEric Taylor cbp->cb_handles = ptr; 9999d9a58e3SEric Taylor cbp->cb_alloc = newsz; 10009d9a58e3SEric Taylor } 10019d9a58e3SEric Taylor cbp->cb_handles[cbp->cb_used++] = zhp; 10029d9a58e3SEric Taylor } 10033bb79becSeschrock 10043bb79becSeschrock static int 10053bb79becSeschrock mount_cb(zfs_handle_t *zhp, void *data) 10063bb79becSeschrock { 10079d9a58e3SEric Taylor get_all_cb_t *cbp = data; 10083bb79becSeschrock 10099d9a58e3SEric Taylor if (!(zfs_get_type(zhp) & ZFS_TYPE_FILESYSTEM)) { 10103bb79becSeschrock zfs_close(zhp); 10113bb79becSeschrock return (0); 10123bb79becSeschrock } 10133bb79becSeschrock 1014a227b7f4Shs24103 if (zfs_prop_get_int(zhp, ZFS_PROP_CANMOUNT) == ZFS_CANMOUNT_NOAUTO) { 1015a227b7f4Shs24103 zfs_close(zhp); 1016a227b7f4Shs24103 return (0); 1017a227b7f4Shs24103 } 1018a227b7f4Shs24103 10199c3fd121SMatthew Ahrens /* 10209c3fd121SMatthew Ahrens * If this filesystem is inconsistent and has a receive resume 10219c3fd121SMatthew Ahrens * token, we can not mount it. 10229c3fd121SMatthew Ahrens */ 10239c3fd121SMatthew Ahrens if (zfs_prop_get_int(zhp, ZFS_PROP_INCONSISTENT) && 10249c3fd121SMatthew Ahrens zfs_prop_get(zhp, ZFS_PROP_RECEIVE_RESUME_TOKEN, 10259c3fd121SMatthew Ahrens NULL, 0, NULL, NULL, 0, B_TRUE) == 0) { 10269c3fd121SMatthew Ahrens zfs_close(zhp); 10279c3fd121SMatthew Ahrens return (0); 10289c3fd121SMatthew Ahrens } 10299c3fd121SMatthew Ahrens 10309d9a58e3SEric Taylor libzfs_add_handle(cbp, zhp); 10319d9a58e3SEric Taylor if (zfs_iter_filesystems(zhp, mount_cb, cbp) != 0) { 10329d9a58e3SEric Taylor zfs_close(zhp); 10333bb79becSeschrock return (-1); 10349d9a58e3SEric Taylor } 10359d9a58e3SEric Taylor return (0); 10363bb79becSeschrock } 10373bb79becSeschrock 10389d9a58e3SEric Taylor int 10399d9a58e3SEric Taylor libzfs_dataset_cmp(const void *a, const void *b) 10403bb79becSeschrock { 10413bb79becSeschrock zfs_handle_t **za = (zfs_handle_t **)a; 10423bb79becSeschrock zfs_handle_t **zb = (zfs_handle_t **)b; 10433bb79becSeschrock char mounta[MAXPATHLEN]; 10443bb79becSeschrock char mountb[MAXPATHLEN]; 1045f3861e1aSahl boolean_t gota, gotb; 10463bb79becSeschrock 1047f3861e1aSahl if ((gota = (zfs_get_type(*za) == ZFS_TYPE_FILESYSTEM)) != 0) 10483bb79becSeschrock verify(zfs_prop_get(*za, ZFS_PROP_MOUNTPOINT, mounta, 10493bb79becSeschrock sizeof (mounta), NULL, NULL, 0, B_FALSE) == 0); 1050f3861e1aSahl if ((gotb = (zfs_get_type(*zb) == ZFS_TYPE_FILESYSTEM)) != 0) 10513bb79becSeschrock verify(zfs_prop_get(*zb, ZFS_PROP_MOUNTPOINT, mountb, 10523bb79becSeschrock sizeof (mountb), NULL, NULL, 0, B_FALSE) == 0); 10533bb79becSeschrock 1054f3861e1aSahl if (gota && gotb) 10553bb79becSeschrock return (strcmp(mounta, mountb)); 1056f3861e1aSahl 1057f3861e1aSahl if (gota) 1058f3861e1aSahl return (-1); 1059f3861e1aSahl if (gotb) 1060f3861e1aSahl return (1); 1061f3861e1aSahl 1062f3861e1aSahl return (strcmp(zfs_get_name(a), zfs_get_name(b))); 10633bb79becSeschrock } 10643bb79becSeschrock 1065f3861e1aSahl /* 1066f3861e1aSahl * Mount and share all datasets within the given pool. This assumes that no 1067f3861e1aSahl * datasets within the pool are currently mounted. Because users can create 1068f3861e1aSahl * complicated nested hierarchies of mountpoints, we first gather all the 1069f3861e1aSahl * datasets and mountpoints within the pool, and sort them by mountpoint. Once 1070f3861e1aSahl * we have the list of all filesystems, we iterate over them in order and mount 1071f3861e1aSahl * and/or share each one. 1072f3861e1aSahl */ 1073f3861e1aSahl #pragma weak zpool_mount_datasets = zpool_enable_datasets 10743bb79becSeschrock int 1075f3861e1aSahl zpool_enable_datasets(zpool_handle_t *zhp, const char *mntopts, int flags) 10763bb79becSeschrock { 10779d9a58e3SEric Taylor get_all_cb_t cb = { 0 }; 10783bb79becSeschrock libzfs_handle_t *hdl = zhp->zpool_hdl; 10793bb79becSeschrock zfs_handle_t *zfsp; 10803bb79becSeschrock int i, ret = -1; 108167331909Sdougm int *good; 10823bb79becSeschrock 10833bb79becSeschrock /* 1084d87468daSrm160521 * Gather all non-snap datasets within the pool. 10853bb79becSeschrock */ 1086990b4856Slling if ((zfsp = zfs_open(hdl, zhp->zpool_name, ZFS_TYPE_DATASET)) == NULL) 10873bb79becSeschrock goto out; 10883bb79becSeschrock 10899d9a58e3SEric Taylor libzfs_add_handle(&cb, zfsp); 1090d87468daSrm160521 if (zfs_iter_filesystems(zfsp, mount_cb, &cb) != 0) 10913bb79becSeschrock goto out; 10923bb79becSeschrock /* 10933bb79becSeschrock * Sort the datasets by mountpoint. 10943bb79becSeschrock */ 10959d9a58e3SEric Taylor qsort(cb.cb_handles, cb.cb_used, sizeof (void *), 10969d9a58e3SEric Taylor libzfs_dataset_cmp); 10973bb79becSeschrock 10983bb79becSeschrock /* 109967331909Sdougm * And mount all the datasets, keeping track of which ones 11006e77af0aSDavid Pacheco * succeeded or failed. 11013bb79becSeschrock */ 11026e77af0aSDavid Pacheco if ((good = zfs_alloc(zhp->zpool_hdl, 11036e77af0aSDavid Pacheco cb.cb_used * sizeof (int))) == NULL) 11046e77af0aSDavid Pacheco goto out; 11056e77af0aSDavid Pacheco 11063bb79becSeschrock ret = 0; 11073bb79becSeschrock for (i = 0; i < cb.cb_used; i++) { 11089d9a58e3SEric Taylor if (zfs_mount(cb.cb_handles[i], mntopts, flags) != 0) 110967331909Sdougm ret = -1; 1110d8689a57Sdougm else 111167331909Sdougm good[i] = 1; 111267331909Sdougm } 11135b6e0c46Sdougm 111467331909Sdougm /* 111567331909Sdougm * Then share all the ones that need to be shared. This needs 111667331909Sdougm * to be a separate pass in order to avoid excessive reloading 111767331909Sdougm * of the configuration. Good should never be NULL since 111867331909Sdougm * zfs_alloc is supposed to exit if memory isn't available. 111967331909Sdougm */ 112067331909Sdougm for (i = 0; i < cb.cb_used; i++) { 11219d9a58e3SEric Taylor if (good[i] && zfs_share(cb.cb_handles[i]) != 0) 11223bb79becSeschrock ret = -1; 11233bb79becSeschrock } 11243bb79becSeschrock 112567331909Sdougm free(good); 112667331909Sdougm 11273bb79becSeschrock out: 11283bb79becSeschrock for (i = 0; i < cb.cb_used; i++) 11299d9a58e3SEric Taylor zfs_close(cb.cb_handles[i]); 11309d9a58e3SEric Taylor free(cb.cb_handles); 11313bb79becSeschrock 11323bb79becSeschrock return (ret); 11333bb79becSeschrock } 11343bb79becSeschrock 11353bb79becSeschrock static int 11363bb79becSeschrock mountpoint_compare(const void *a, const void *b) 11373bb79becSeschrock { 11383bb79becSeschrock const char *mounta = *((char **)a); 11393bb79becSeschrock const char *mountb = *((char **)b); 11403bb79becSeschrock 11413bb79becSeschrock return (strcmp(mountb, mounta)); 11423bb79becSeschrock } 11433bb79becSeschrock 1144681d9761SEric Taylor /* alias for 2002/240 */ 1145681d9761SEric Taylor #pragma weak zpool_unmount_datasets = zpool_disable_datasets 1146f3861e1aSahl /* 1147f3861e1aSahl * Unshare and unmount all datasets within the given pool. We don't want to 1148f3861e1aSahl * rely on traversing the DSL to discover the filesystems within the pool, 1149f3861e1aSahl * because this may be expensive (if not all of them are mounted), and can fail 1150f3861e1aSahl * arbitrarily (on I/O error, for example). Instead, we walk /etc/mnttab and 1151f3861e1aSahl * gather all the filesystems that are currently mounted. 1152f3861e1aSahl */ 11533bb79becSeschrock int 1154f3861e1aSahl zpool_disable_datasets(zpool_handle_t *zhp, boolean_t force) 11553bb79becSeschrock { 11563bb79becSeschrock int used, alloc; 11573bb79becSeschrock struct mnttab entry; 11583bb79becSeschrock size_t namelen; 11593bb79becSeschrock char **mountpoints = NULL; 11603bb79becSeschrock zfs_handle_t **datasets = NULL; 11613bb79becSeschrock libzfs_handle_t *hdl = zhp->zpool_hdl; 11623bb79becSeschrock int i; 11633bb79becSeschrock int ret = -1; 11643bb79becSeschrock int flags = (force ? MS_FORCE : 0); 11653bb79becSeschrock 11663bb79becSeschrock namelen = strlen(zhp->zpool_name); 11673bb79becSeschrock 11683bb79becSeschrock rewind(hdl->libzfs_mnttab); 11693bb79becSeschrock used = alloc = 0; 11703bb79becSeschrock while (getmntent(hdl->libzfs_mnttab, &entry) == 0) { 11713bb79becSeschrock /* 11723bb79becSeschrock * Ignore non-ZFS entries. 11733bb79becSeschrock */ 11743bb79becSeschrock if (entry.mnt_fstype == NULL || 11753bb79becSeschrock strcmp(entry.mnt_fstype, MNTTYPE_ZFS) != 0) 11763bb79becSeschrock continue; 11773bb79becSeschrock 11783bb79becSeschrock /* 11793bb79becSeschrock * Ignore filesystems not within this pool. 11803bb79becSeschrock */ 11813bb79becSeschrock if (entry.mnt_mountp == NULL || 11823bb79becSeschrock strncmp(entry.mnt_special, zhp->zpool_name, namelen) != 0 || 11833bb79becSeschrock (entry.mnt_special[namelen] != '/' && 11843bb79becSeschrock entry.mnt_special[namelen] != '\0')) 11853bb79becSeschrock continue; 11863bb79becSeschrock 11873bb79becSeschrock /* 11883bb79becSeschrock * At this point we've found a filesystem within our pool. Add 11893bb79becSeschrock * it to our growing list. 11903bb79becSeschrock */ 11913bb79becSeschrock if (used == alloc) { 11923bb79becSeschrock if (alloc == 0) { 11933bb79becSeschrock if ((mountpoints = zfs_alloc(hdl, 11943bb79becSeschrock 8 * sizeof (void *))) == NULL) 11953bb79becSeschrock goto out; 11963bb79becSeschrock 11973bb79becSeschrock if ((datasets = zfs_alloc(hdl, 11983bb79becSeschrock 8 * sizeof (void *))) == NULL) 11993bb79becSeschrock goto out; 12003bb79becSeschrock 12013bb79becSeschrock alloc = 8; 12023bb79becSeschrock } else { 1203e9dbad6fSeschrock void *ptr; 12043bb79becSeschrock 1205e9dbad6fSeschrock if ((ptr = zfs_realloc(hdl, mountpoints, 1206e9dbad6fSeschrock alloc * sizeof (void *), 12073bb79becSeschrock alloc * 2 * sizeof (void *))) == NULL) 12083bb79becSeschrock goto out; 1209e9dbad6fSeschrock mountpoints = ptr; 12103bb79becSeschrock 1211e9dbad6fSeschrock if ((ptr = zfs_realloc(hdl, datasets, 1212e9dbad6fSeschrock alloc * sizeof (void *), 12133bb79becSeschrock alloc * 2 * sizeof (void *))) == NULL) 12143bb79becSeschrock goto out; 1215e9dbad6fSeschrock datasets = ptr; 12163bb79becSeschrock 12173bb79becSeschrock alloc *= 2; 12183bb79becSeschrock } 12193bb79becSeschrock } 12203bb79becSeschrock 12213bb79becSeschrock if ((mountpoints[used] = zfs_strdup(hdl, 12223bb79becSeschrock entry.mnt_mountp)) == NULL) 12233bb79becSeschrock goto out; 12243bb79becSeschrock 12253bb79becSeschrock /* 12263bb79becSeschrock * This is allowed to fail, in case there is some I/O error. It 12273bb79becSeschrock * is only used to determine if we need to remove the underlying 12283bb79becSeschrock * mountpoint, so failure is not fatal. 12293bb79becSeschrock */ 12303bb79becSeschrock datasets[used] = make_dataset_handle(hdl, entry.mnt_special); 12313bb79becSeschrock 12323bb79becSeschrock used++; 12333bb79becSeschrock } 12343bb79becSeschrock 12353bb79becSeschrock /* 12363bb79becSeschrock * At this point, we have the entire list of filesystems, so sort it by 12373bb79becSeschrock * mountpoint. 12383bb79becSeschrock */ 12393bb79becSeschrock qsort(mountpoints, used, sizeof (char *), mountpoint_compare); 12403bb79becSeschrock 12413bb79becSeschrock /* 12423bb79becSeschrock * Walk through and first unshare everything. 12433bb79becSeschrock */ 12443bb79becSeschrock for (i = 0; i < used; i++) { 1245da6c28aaSamw zfs_share_proto_t *curr_proto; 1246da6c28aaSamw for (curr_proto = share_all_proto; *curr_proto != PROTO_END; 1247da6c28aaSamw curr_proto++) { 1248da6c28aaSamw if (is_shared(hdl, mountpoints[i], *curr_proto) && 1249da6c28aaSamw unshare_one(hdl, mountpoints[i], 1250da6c28aaSamw mountpoints[i], *curr_proto) != 0) 12513bb79becSeschrock goto out; 12523bb79becSeschrock } 1253da6c28aaSamw } 12543bb79becSeschrock 12553bb79becSeschrock /* 12563bb79becSeschrock * Now unmount everything, removing the underlying directories as 12573bb79becSeschrock * appropriate. 12583bb79becSeschrock */ 12593bb79becSeschrock for (i = 0; i < used; i++) { 12603bb79becSeschrock if (unmount_one(hdl, mountpoints[i], flags) != 0) 12613bb79becSeschrock goto out; 1262e9dbad6fSeschrock } 12633bb79becSeschrock 1264e9dbad6fSeschrock for (i = 0; i < used; i++) { 12653bb79becSeschrock if (datasets[i]) 12663bb79becSeschrock remove_mountpoint(datasets[i]); 12673bb79becSeschrock } 12683bb79becSeschrock 12693bb79becSeschrock ret = 0; 12703bb79becSeschrock out: 12713bb79becSeschrock for (i = 0; i < used; i++) { 12723bb79becSeschrock if (datasets[i]) 12733bb79becSeschrock zfs_close(datasets[i]); 12743bb79becSeschrock free(mountpoints[i]); 12753bb79becSeschrock } 12763bb79becSeschrock free(datasets); 12773bb79becSeschrock free(mountpoints); 12783bb79becSeschrock 12793bb79becSeschrock return (ret); 12803bb79becSeschrock } 1281