1789Sahrens /* 2789Sahrens * CDDL HEADER START 3789Sahrens * 4789Sahrens * The contents of this file are subject to the terms of the 51544Seschrock * Common Development and Distribution License (the "License"). 61544Seschrock * You may not use this file except in compliance with the License. 7789Sahrens * 8789Sahrens * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE 9789Sahrens * or http://www.opensolaris.org/os/licensing. 10789Sahrens * See the License for the specific language governing permissions 11789Sahrens * and limitations under the License. 12789Sahrens * 13789Sahrens * When distributing Covered Code, include this CDDL HEADER in each 14789Sahrens * file and include the License file at usr/src/OPENSOLARIS.LICENSE. 15789Sahrens * If applicable, add the following below this CDDL HEADER, with the 16789Sahrens * fields enclosed by brackets "[]" replaced with your own identifying 17789Sahrens * information: Portions Copyright [yyyy] [name of copyright owner] 18789Sahrens * 19789Sahrens * CDDL HEADER END 20789Sahrens */ 213126Sahl 22789Sahrens /* 2312070SMark.Shellenbaum@Sun.COM * Copyright (c) 2005, 2010, Oracle and/or its affiliates. All rights reserved. 24789Sahrens */ 25789Sahrens 26789Sahrens /* 27789Sahrens * Routines to manage ZFS mounts. We separate all the nasty routines that have 283126Sahl * to deal with the OS. The following functions are the main entry points -- 293126Sahl * they are used by mount and unmount and when changing a filesystem's 303126Sahl * mountpoint. 31789Sahrens * 32789Sahrens * zfs_is_mounted() 33789Sahrens * zfs_mount() 34789Sahrens * zfs_unmount() 35789Sahrens * zfs_unmountall() 36789Sahrens * 373126Sahl * This file also contains the functions used to manage sharing filesystems via 383126Sahl * NFS and iSCSI: 39789Sahrens * 40789Sahrens * zfs_is_shared() 41789Sahrens * zfs_share() 42789Sahrens * zfs_unshare() 433126Sahl * 443126Sahl * zfs_is_shared_nfs() 455331Samw * zfs_is_shared_smb() 465331Samw * zfs_share_proto() 475331Samw * zfs_shareall(); 483126Sahl * zfs_unshare_nfs() 495331Samw * zfs_unshare_smb() 503126Sahl * zfs_unshareall_nfs() 515331Samw * zfs_unshareall_smb() 525331Samw * zfs_unshareall() 535331Samw * zfs_unshareall_bypath() 542474Seschrock * 552474Seschrock * The following functions are available for pool consumers, and will 563126Sahl * mount/unmount and share/unshare all datasets within pool: 572474Seschrock * 583126Sahl * zpool_enable_datasets() 593126Sahl * zpool_disable_datasets() 60789Sahrens */ 61789Sahrens 62789Sahrens #include <dirent.h> 633134Sahl #include <dlfcn.h> 64789Sahrens #include <errno.h> 65789Sahrens #include <libgen.h> 66789Sahrens #include <libintl.h> 67789Sahrens #include <stdio.h> 68789Sahrens #include <stdlib.h> 69789Sahrens #include <strings.h> 70789Sahrens #include <unistd.h> 71789Sahrens #include <zone.h> 72789Sahrens #include <sys/mntent.h> 73789Sahrens #include <sys/mount.h> 74789Sahrens #include <sys/stat.h> 75789Sahrens 76789Sahrens #include <libzfs.h> 77789Sahrens 78789Sahrens #include "libzfs_impl.h" 79789Sahrens 804180Sdougm #include <libshare.h> 814180Sdougm #include <sys/systeminfo.h> 824180Sdougm #define MAXISALEN 257 /* based on sysinfo(2) man page */ 834180Sdougm 845331Samw static int zfs_share_proto(zfs_handle_t *, zfs_share_proto_t *); 855331Samw zfs_share_type_t zfs_is_shared_proto(zfs_handle_t *, char **, 865331Samw zfs_share_proto_t); 875331Samw 885331Samw /* 895331Samw * The share protocols table must be in the same order as the zfs_share_prot_t 905331Samw * enum in libzfs_impl.h 915331Samw */ 925331Samw typedef struct { 935331Samw zfs_prop_t p_prop; 945331Samw char *p_name; 955331Samw int p_share_err; 965331Samw int p_unshare_err; 975331Samw } proto_table_t; 985331Samw 995331Samw proto_table_t proto_table[PROTO_END] = { 1005331Samw {ZFS_PROP_SHARENFS, "nfs", EZFS_SHARENFSFAILED, EZFS_UNSHARENFSFAILED}, 1015331Samw {ZFS_PROP_SHARESMB, "smb", EZFS_SHARESMBFAILED, EZFS_UNSHARESMBFAILED}, 1025331Samw }; 1035331Samw 1045331Samw zfs_share_proto_t nfs_only[] = { 1055331Samw PROTO_NFS, 1065331Samw PROTO_END 1075331Samw }; 1085331Samw 1095331Samw zfs_share_proto_t smb_only[] = { 1105331Samw PROTO_SMB, 1115331Samw PROTO_END 1125331Samw }; 1135331Samw zfs_share_proto_t share_all_proto[] = { 1145331Samw PROTO_NFS, 1155331Samw PROTO_SMB, 1165331Samw PROTO_END 1175331Samw }; 1185331Samw 119789Sahrens /* 1205331Samw * Search the sharetab for the given mountpoint and protocol, returning 1215331Samw * a zfs_share_type_t value. 122789Sahrens */ 1235331Samw static zfs_share_type_t 1245331Samw is_shared(libzfs_handle_t *hdl, const char *mountpoint, zfs_share_proto_t proto) 125789Sahrens { 126789Sahrens char buf[MAXPATHLEN], *tab; 1275331Samw char *ptr; 128789Sahrens 1292082Seschrock if (hdl->libzfs_sharetab == NULL) 1305331Samw return (SHARED_NOT_SHARED); 131789Sahrens 1322082Seschrock (void) fseek(hdl->libzfs_sharetab, 0, SEEK_SET); 133789Sahrens 1342082Seschrock while (fgets(buf, sizeof (buf), hdl->libzfs_sharetab) != NULL) { 135789Sahrens 136789Sahrens /* the mountpoint is the first entry on each line */ 1375331Samw if ((tab = strchr(buf, '\t')) == NULL) 1385331Samw continue; 1395331Samw 1405331Samw *tab = '\0'; 1415331Samw if (strcmp(buf, mountpoint) == 0) { 1425331Samw /* 1435331Samw * the protocol field is the third field 1445331Samw * skip over second field 1455331Samw */ 1465331Samw ptr = ++tab; 1475331Samw if ((tab = strchr(ptr, '\t')) == NULL) 1485331Samw continue; 1495331Samw ptr = ++tab; 1505331Samw if ((tab = strchr(ptr, '\t')) == NULL) 1515331Samw continue; 152789Sahrens *tab = '\0'; 1535331Samw if (strcmp(ptr, 1545331Samw proto_table[proto].p_name) == 0) { 1555331Samw switch (proto) { 1565331Samw case PROTO_NFS: 1575331Samw return (SHARED_NFS); 1585331Samw case PROTO_SMB: 1595331Samw return (SHARED_SMB); 1605331Samw default: 1615331Samw return (0); 1625331Samw } 1635331Samw } 164789Sahrens } 165789Sahrens } 166789Sahrens 1675331Samw return (SHARED_NOT_SHARED); 168789Sahrens } 169789Sahrens 170789Sahrens /* 1712082Seschrock * Returns true if the specified directory is empty. If we can't open the 1722082Seschrock * directory at all, return true so that the mount can fail with a more 173789Sahrens * informative error message. 174789Sahrens */ 1752082Seschrock static boolean_t 176789Sahrens dir_is_empty(const char *dirname) 177789Sahrens { 178789Sahrens DIR *dirp; 179789Sahrens struct dirent64 *dp; 180789Sahrens 181789Sahrens if ((dirp = opendir(dirname)) == NULL) 1822082Seschrock return (B_TRUE); 183789Sahrens 184789Sahrens while ((dp = readdir64(dirp)) != NULL) { 185789Sahrens 186789Sahrens if (strcmp(dp->d_name, ".") == 0 || 187789Sahrens strcmp(dp->d_name, "..") == 0) 188789Sahrens continue; 189789Sahrens 190789Sahrens (void) closedir(dirp); 1912082Seschrock return (B_FALSE); 192789Sahrens } 193789Sahrens 194789Sahrens (void) closedir(dirp); 1952082Seschrock return (B_TRUE); 196789Sahrens } 197789Sahrens 198789Sahrens /* 199789Sahrens * Checks to see if the mount is active. If the filesystem is mounted, we fill 200789Sahrens * in 'where' with the current mountpoint, and return 1. Otherwise, we return 201789Sahrens * 0. 202789Sahrens */ 2032082Seschrock boolean_t 2043444Sek110237 is_mounted(libzfs_handle_t *zfs_hdl, const char *special, char **where) 205789Sahrens { 2068228SEric.Taylor@Sun.COM struct mnttab entry; 207789Sahrens 2088228SEric.Taylor@Sun.COM if (libzfs_mnttab_find(zfs_hdl, special, &entry) != 0) 2092082Seschrock return (B_FALSE); 210789Sahrens 211789Sahrens if (where != NULL) 2123444Sek110237 *where = zfs_strdup(zfs_hdl, entry.mnt_mountp); 213789Sahrens 2142082Seschrock return (B_TRUE); 215789Sahrens } 216789Sahrens 2173444Sek110237 boolean_t 2183444Sek110237 zfs_is_mounted(zfs_handle_t *zhp, char **where) 2193444Sek110237 { 2203444Sek110237 return (is_mounted(zhp->zfs_hdl, zfs_get_name(zhp), where)); 2213444Sek110237 } 2223444Sek110237 223789Sahrens /* 2242676Seschrock * Returns true if the given dataset is mountable, false otherwise. Returns the 2252676Seschrock * mountpoint in 'buf'. 2262676Seschrock */ 2272676Seschrock static boolean_t 2282676Seschrock zfs_is_mountable(zfs_handle_t *zhp, char *buf, size_t buflen, 2295094Slling zprop_source_t *source) 2302676Seschrock { 2312676Seschrock char sourceloc[ZFS_MAXNAMELEN]; 2325094Slling zprop_source_t sourcetype; 2332676Seschrock 2342676Seschrock if (!zfs_prop_valid_for_type(ZFS_PROP_MOUNTPOINT, zhp->zfs_type)) 2352676Seschrock return (B_FALSE); 2362676Seschrock 2372676Seschrock verify(zfs_prop_get(zhp, ZFS_PROP_MOUNTPOINT, buf, buflen, 2382676Seschrock &sourcetype, sourceloc, sizeof (sourceloc), B_FALSE) == 0); 2392676Seschrock 2402676Seschrock if (strcmp(buf, ZFS_MOUNTPOINT_NONE) == 0 || 2412676Seschrock strcmp(buf, ZFS_MOUNTPOINT_LEGACY) == 0) 2422676Seschrock return (B_FALSE); 2432676Seschrock 2446168Shs24103 if (zfs_prop_get_int(zhp, ZFS_PROP_CANMOUNT) == ZFS_CANMOUNT_OFF) 2452676Seschrock return (B_FALSE); 2462676Seschrock 2472676Seschrock if (zfs_prop_get_int(zhp, ZFS_PROP_ZONED) && 2482676Seschrock getzoneid() == GLOBAL_ZONEID) 2492676Seschrock return (B_FALSE); 2502676Seschrock 2512676Seschrock if (source) 2522676Seschrock *source = sourcetype; 2532676Seschrock 2542676Seschrock return (B_TRUE); 2552676Seschrock } 2562676Seschrock 2572676Seschrock /* 258789Sahrens * Mount the given filesystem. 259789Sahrens */ 260789Sahrens int 261789Sahrens zfs_mount(zfs_handle_t *zhp, const char *options, int flags) 262789Sahrens { 263789Sahrens struct stat buf; 264789Sahrens char mountpoint[ZFS_MAXPROPLEN]; 265789Sahrens char mntopts[MNT_LINE_MAX]; 2662082Seschrock libzfs_handle_t *hdl = zhp->zfs_hdl; 267789Sahrens 268789Sahrens if (options == NULL) 269789Sahrens mntopts[0] = '\0'; 270789Sahrens else 271789Sahrens (void) strlcpy(mntopts, options, sizeof (mntopts)); 272789Sahrens 273*13049SGeorge.Wilson@Sun.COM /* 274*13049SGeorge.Wilson@Sun.COM * If the pool is imported read-only then all mounts must be read-only 275*13049SGeorge.Wilson@Sun.COM */ 276*13049SGeorge.Wilson@Sun.COM if (zpool_get_prop_int(zhp->zpool_hdl, ZPOOL_PROP_READONLY, NULL)) 277*13049SGeorge.Wilson@Sun.COM flags |= MS_RDONLY; 278*13049SGeorge.Wilson@Sun.COM 2792676Seschrock if (!zfs_is_mountable(zhp, mountpoint, sizeof (mountpoint), NULL)) 2802082Seschrock return (0); 281789Sahrens 282789Sahrens /* Create the directory if it doesn't already exist */ 283789Sahrens if (lstat(mountpoint, &buf) != 0) { 284789Sahrens if (mkdirp(mountpoint, 0755) != 0) { 2852082Seschrock zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 2862082Seschrock "failed to create mountpoint")); 2873237Slling return (zfs_error_fmt(hdl, EZFS_MOUNTFAILED, 2882082Seschrock dgettext(TEXT_DOMAIN, "cannot mount '%s'"), 2892082Seschrock mountpoint)); 290789Sahrens } 291789Sahrens } 292789Sahrens 293789Sahrens /* 294789Sahrens * Determine if the mountpoint is empty. If so, refuse to perform the 295789Sahrens * mount. We don't perform this check if MS_OVERLAY is specified, which 296789Sahrens * would defeat the point. We also avoid this check if 'remount' is 297789Sahrens * specified. 298789Sahrens */ 299789Sahrens if ((flags & MS_OVERLAY) == 0 && 300789Sahrens strstr(mntopts, MNTOPT_REMOUNT) == NULL && 301789Sahrens !dir_is_empty(mountpoint)) { 3022082Seschrock zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 3032082Seschrock "directory is not empty")); 3043237Slling return (zfs_error_fmt(hdl, EZFS_MOUNTFAILED, 3052082Seschrock dgettext(TEXT_DOMAIN, "cannot mount '%s'"), mountpoint)); 306789Sahrens } 307789Sahrens 308789Sahrens /* perform the mount */ 309789Sahrens if (mount(zfs_get_name(zhp), mountpoint, MS_OPTIONSTR | flags, 310789Sahrens MNTTYPE_ZFS, NULL, 0, mntopts, sizeof (mntopts)) != 0) { 311789Sahrens /* 312789Sahrens * Generic errors are nasty, but there are just way too many 313789Sahrens * from mount(), and they're well-understood. We pick a few 314789Sahrens * common ones to improve upon. 315789Sahrens */ 3164302Sdougm if (errno == EBUSY) { 3172082Seschrock zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 3182082Seschrock "mountpoint or dataset is busy")); 3194543Smarks } else if (errno == EPERM) { 3204543Smarks zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 3214543Smarks "Insufficient privileges")); 32211814SChris.Kirby@sun.com } else if (errno == ENOTSUP) { 32311814SChris.Kirby@sun.com char buf[256]; 32412070SMark.Shellenbaum@Sun.COM int spa_version; 32511814SChris.Kirby@sun.com 32612070SMark.Shellenbaum@Sun.COM VERIFY(zfs_spa_version(zhp, &spa_version) == 0); 32711814SChris.Kirby@sun.com (void) snprintf(buf, sizeof (buf), 32812070SMark.Shellenbaum@Sun.COM dgettext(TEXT_DOMAIN, "Can't mount a version %lld " 32912070SMark.Shellenbaum@Sun.COM "file system on a version %d pool. Pool must be" 33012070SMark.Shellenbaum@Sun.COM " upgraded to mount this file system."), 33111814SChris.Kirby@sun.com (u_longlong_t)zfs_prop_get_int(zhp, 33212070SMark.Shellenbaum@Sun.COM ZFS_PROP_VERSION), spa_version); 33311814SChris.Kirby@sun.com zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, buf)); 3344302Sdougm } else { 3352082Seschrock zfs_error_aux(hdl, strerror(errno)); 3364302Sdougm } 3373237Slling return (zfs_error_fmt(hdl, EZFS_MOUNTFAILED, 3382082Seschrock dgettext(TEXT_DOMAIN, "cannot mount '%s'"), 3392082Seschrock zhp->zfs_name)); 340789Sahrens } 341789Sahrens 3428228SEric.Taylor@Sun.COM /* add the mounted entry into our cache */ 3438228SEric.Taylor@Sun.COM libzfs_mnttab_add(hdl, zfs_get_name(zhp), mountpoint, 3448228SEric.Taylor@Sun.COM mntopts); 345789Sahrens return (0); 346789Sahrens } 347789Sahrens 348789Sahrens /* 3492474Seschrock * Unmount a single filesystem. 3502474Seschrock */ 3512474Seschrock static int 3522474Seschrock unmount_one(libzfs_handle_t *hdl, const char *mountpoint, int flags) 3532474Seschrock { 3542474Seschrock if (umount2(mountpoint, flags) != 0) { 3552474Seschrock zfs_error_aux(hdl, strerror(errno)); 3563237Slling return (zfs_error_fmt(hdl, EZFS_UMOUNTFAILED, 3572474Seschrock dgettext(TEXT_DOMAIN, "cannot unmount '%s'"), 3582474Seschrock mountpoint)); 3592474Seschrock } 3602474Seschrock 3612474Seschrock return (0); 3622474Seschrock } 3632474Seschrock 3642474Seschrock /* 365789Sahrens * Unmount the given filesystem. 366789Sahrens */ 367789Sahrens int 368789Sahrens zfs_unmount(zfs_handle_t *zhp, const char *mountpoint, int flags) 369789Sahrens { 3708228SEric.Taylor@Sun.COM libzfs_handle_t *hdl = zhp->zfs_hdl; 3718228SEric.Taylor@Sun.COM struct mnttab entry; 3724180Sdougm char *mntpt = NULL; 373789Sahrens 3748228SEric.Taylor@Sun.COM /* check to see if we need to unmount the filesystem */ 375789Sahrens if (mountpoint != NULL || ((zfs_get_type(zhp) == ZFS_TYPE_FILESYSTEM) && 3768228SEric.Taylor@Sun.COM libzfs_mnttab_find(hdl, zhp->zfs_name, &entry) == 0)) { 3774180Sdougm /* 3784180Sdougm * mountpoint may have come from a call to 3794180Sdougm * getmnt/getmntany if it isn't NULL. If it is NULL, 3808228SEric.Taylor@Sun.COM * we know it comes from libzfs_mnttab_find which can 3818228SEric.Taylor@Sun.COM * then get freed later. We strdup it to play it safe. 3824180Sdougm */ 383789Sahrens if (mountpoint == NULL) 3848228SEric.Taylor@Sun.COM mntpt = zfs_strdup(hdl, entry.mnt_mountp); 3854180Sdougm else 3868228SEric.Taylor@Sun.COM mntpt = zfs_strdup(hdl, mountpoint); 387789Sahrens 388789Sahrens /* 3892474Seschrock * Unshare and unmount the filesystem 390789Sahrens */ 3915331Samw if (zfs_unshare_proto(zhp, mntpt, share_all_proto) != 0) 3924331Sth199096 return (-1); 3934331Sth199096 3948228SEric.Taylor@Sun.COM if (unmount_one(hdl, mntpt, flags) != 0) { 3954180Sdougm free(mntpt); 3965331Samw (void) zfs_shareall(zhp); 397789Sahrens return (-1); 3984180Sdougm } 3998228SEric.Taylor@Sun.COM libzfs_mnttab_remove(hdl, zhp->zfs_name); 4004180Sdougm free(mntpt); 401789Sahrens } 402789Sahrens 403789Sahrens return (0); 404789Sahrens } 405789Sahrens 406789Sahrens /* 407789Sahrens * Unmount this filesystem and any children inheriting the mountpoint property. 408789Sahrens * To do this, just act like we're changing the mountpoint property, but don't 409789Sahrens * remount the filesystems afterwards. 410789Sahrens */ 411789Sahrens int 412789Sahrens zfs_unmountall(zfs_handle_t *zhp, int flags) 413789Sahrens { 414789Sahrens prop_changelist_t *clp; 415789Sahrens int ret; 416789Sahrens 4177366STim.Haley@Sun.COM clp = changelist_gather(zhp, ZFS_PROP_MOUNTPOINT, 0, flags); 418789Sahrens if (clp == NULL) 419789Sahrens return (-1); 420789Sahrens 421789Sahrens ret = changelist_prefix(clp); 422789Sahrens changelist_free(clp); 423789Sahrens 424789Sahrens return (ret); 425789Sahrens } 426789Sahrens 4273126Sahl boolean_t 4283126Sahl zfs_is_shared(zfs_handle_t *zhp) 4293126Sahl { 4305331Samw zfs_share_type_t rc = 0; 4315331Samw zfs_share_proto_t *curr_proto; 4325331Samw 4333126Sahl if (ZFS_IS_VOLUME(zhp)) 43411876SJames.Dunham@Sun.COM return (B_FALSE); 4353126Sahl 4365331Samw for (curr_proto = share_all_proto; *curr_proto != PROTO_END; 4375331Samw curr_proto++) 4385331Samw rc |= zfs_is_shared_proto(zhp, NULL, *curr_proto); 4395331Samw 4405331Samw return (rc ? B_TRUE : B_FALSE); 4413126Sahl } 4423126Sahl 4433126Sahl int 4443126Sahl zfs_share(zfs_handle_t *zhp) 4453126Sahl { 44613025SEric.Taylor@oracle.com assert(!ZFS_IS_VOLUME(zhp)); 4475331Samw return (zfs_share_proto(zhp, share_all_proto)); 4483126Sahl } 4493126Sahl 4503126Sahl int 4513126Sahl zfs_unshare(zfs_handle_t *zhp) 4523126Sahl { 45313025SEric.Taylor@oracle.com assert(!ZFS_IS_VOLUME(zhp)); 4545331Samw return (zfs_unshareall(zhp)); 4553126Sahl } 4563126Sahl 457789Sahrens /* 458789Sahrens * Check to see if the filesystem is currently shared. 459789Sahrens */ 4605331Samw zfs_share_type_t 4615331Samw zfs_is_shared_proto(zfs_handle_t *zhp, char **where, zfs_share_proto_t proto) 462789Sahrens { 463789Sahrens char *mountpoint; 4645331Samw zfs_share_type_t rc; 465789Sahrens 466789Sahrens if (!zfs_is_mounted(zhp, &mountpoint)) 4675331Samw return (SHARED_NOT_SHARED); 468789Sahrens 4695331Samw if (rc = is_shared(zhp->zfs_hdl, mountpoint, proto)) { 470789Sahrens if (where != NULL) 471789Sahrens *where = mountpoint; 472789Sahrens else 473789Sahrens free(mountpoint); 4745331Samw return (rc); 475789Sahrens } else { 476789Sahrens free(mountpoint); 4775331Samw return (SHARED_NOT_SHARED); 478789Sahrens } 479789Sahrens } 480789Sahrens 4815331Samw boolean_t 4825331Samw zfs_is_shared_nfs(zfs_handle_t *zhp, char **where) 4835331Samw { 4845331Samw return (zfs_is_shared_proto(zhp, where, 4855331Samw PROTO_NFS) != SHARED_NOT_SHARED); 4865331Samw } 4875331Samw 4885331Samw boolean_t 4895331Samw zfs_is_shared_smb(zfs_handle_t *zhp, char **where) 4905331Samw { 4915331Samw return (zfs_is_shared_proto(zhp, where, 4925331Samw PROTO_SMB) != SHARED_NOT_SHARED); 4935331Samw } 4945331Samw 495789Sahrens /* 4964180Sdougm * Make sure things will work if libshare isn't installed by using 4974180Sdougm * wrapper functions that check to see that the pointers to functions 4984180Sdougm * initialized in _zfs_init_libshare() are actually present. 4994180Sdougm */ 5004180Sdougm 5014180Sdougm static sa_handle_t (*_sa_init)(int); 5024180Sdougm static void (*_sa_fini)(sa_handle_t); 5034180Sdougm static sa_share_t (*_sa_find_share)(sa_handle_t, char *); 5044180Sdougm static int (*_sa_enable_share)(sa_share_t, char *); 5054180Sdougm static int (*_sa_disable_share)(sa_share_t, char *); 5064180Sdougm static char *(*_sa_errorstr)(int); 5074180Sdougm static int (*_sa_parse_legacy_options)(sa_group_t, char *, char *); 5085951Sdougm static boolean_t (*_sa_needs_refresh)(sa_handle_t *); 5095951Sdougm static libzfs_handle_t *(*_sa_get_zfs_handle)(sa_handle_t); 5105951Sdougm static int (*_sa_zfs_process_share)(sa_handle_t, sa_group_t, sa_share_t, 5115951Sdougm char *, char *, zprop_source_t, char *, char *, char *); 5125951Sdougm static void (*_sa_update_sharetab_ts)(sa_handle_t); 5134180Sdougm 5144180Sdougm /* 5154180Sdougm * _zfs_init_libshare() 5164180Sdougm * 5174180Sdougm * Find the libshare.so.1 entry points that we use here and save the 5184180Sdougm * values to be used later. This is triggered by the runtime loader. 5194180Sdougm * Make sure the correct ISA version is loaded. 5204180Sdougm */ 5215951Sdougm 5224180Sdougm #pragma init(_zfs_init_libshare) 5234180Sdougm static void 5244180Sdougm _zfs_init_libshare(void) 5254180Sdougm { 5264180Sdougm void *libshare; 5274180Sdougm char path[MAXPATHLEN]; 5284180Sdougm char isa[MAXISALEN]; 5294180Sdougm 5304180Sdougm #if defined(_LP64) 5314180Sdougm if (sysinfo(SI_ARCHITECTURE_64, isa, MAXISALEN) == -1) 5324302Sdougm isa[0] = '\0'; 5334180Sdougm #else 5344180Sdougm isa[0] = '\0'; 5354180Sdougm #endif 5364180Sdougm (void) snprintf(path, MAXPATHLEN, 5374302Sdougm "/usr/lib/%s/libshare.so.1", isa); 5384180Sdougm 5394180Sdougm if ((libshare = dlopen(path, RTLD_LAZY | RTLD_GLOBAL)) != NULL) { 5404302Sdougm _sa_init = (sa_handle_t (*)(int))dlsym(libshare, "sa_init"); 5414302Sdougm _sa_fini = (void (*)(sa_handle_t))dlsym(libshare, "sa_fini"); 5424302Sdougm _sa_find_share = (sa_share_t (*)(sa_handle_t, char *)) 5434302Sdougm dlsym(libshare, "sa_find_share"); 5444302Sdougm _sa_enable_share = (int (*)(sa_share_t, char *))dlsym(libshare, 5454302Sdougm "sa_enable_share"); 5464302Sdougm _sa_disable_share = (int (*)(sa_share_t, char *))dlsym(libshare, 5474302Sdougm "sa_disable_share"); 5484302Sdougm _sa_errorstr = (char *(*)(int))dlsym(libshare, "sa_errorstr"); 5494302Sdougm _sa_parse_legacy_options = (int (*)(sa_group_t, char *, char *)) 5504302Sdougm dlsym(libshare, "sa_parse_legacy_options"); 5515951Sdougm _sa_needs_refresh = (boolean_t (*)(sa_handle_t *)) 5525951Sdougm dlsym(libshare, "sa_needs_refresh"); 5535951Sdougm _sa_get_zfs_handle = (libzfs_handle_t *(*)(sa_handle_t)) 5545951Sdougm dlsym(libshare, "sa_get_zfs_handle"); 5555951Sdougm _sa_zfs_process_share = (int (*)(sa_handle_t, sa_group_t, 5565951Sdougm sa_share_t, char *, char *, zprop_source_t, char *, 5575951Sdougm char *, char *))dlsym(libshare, "sa_zfs_process_share"); 5585951Sdougm _sa_update_sharetab_ts = (void (*)(sa_handle_t)) 5595951Sdougm dlsym(libshare, "sa_update_sharetab_ts"); 5604327Sdougm if (_sa_init == NULL || _sa_fini == NULL || 5614327Sdougm _sa_find_share == NULL || _sa_enable_share == NULL || 5624327Sdougm _sa_disable_share == NULL || _sa_errorstr == NULL || 5635951Sdougm _sa_parse_legacy_options == NULL || 5645951Sdougm _sa_needs_refresh == NULL || _sa_get_zfs_handle == NULL || 5655951Sdougm _sa_zfs_process_share == NULL || 5665951Sdougm _sa_update_sharetab_ts == NULL) { 5674327Sdougm _sa_init = NULL; 5684327Sdougm _sa_fini = NULL; 5694327Sdougm _sa_disable_share = NULL; 5704327Sdougm _sa_enable_share = NULL; 5714327Sdougm _sa_errorstr = NULL; 5724327Sdougm _sa_parse_legacy_options = NULL; 5734327Sdougm (void) dlclose(libshare); 5745951Sdougm _sa_needs_refresh = NULL; 5755951Sdougm _sa_get_zfs_handle = NULL; 5765951Sdougm _sa_zfs_process_share = NULL; 5775951Sdougm _sa_update_sharetab_ts = NULL; 5784327Sdougm } 5794180Sdougm } 5804180Sdougm } 5814180Sdougm 5824180Sdougm /* 5834180Sdougm * zfs_init_libshare(zhandle, service) 5844180Sdougm * 5854180Sdougm * Initialize the libshare API if it hasn't already been initialized. 5864180Sdougm * In all cases it returns 0 if it succeeded and an error if not. The 5874180Sdougm * service value is which part(s) of the API to initialize and is a 5884180Sdougm * direct map to the libshare sa_init(service) interface. 5894180Sdougm */ 5904180Sdougm int 5914180Sdougm zfs_init_libshare(libzfs_handle_t *zhandle, int service) 5924180Sdougm { 5934180Sdougm int ret = SA_OK; 5944180Sdougm 5954302Sdougm if (_sa_init == NULL) 5964302Sdougm ret = SA_CONFIG_ERR; 5974302Sdougm 5985951Sdougm if (ret == SA_OK && zhandle->libzfs_shareflags & ZFSSHARE_MISS) { 5995951Sdougm /* 6005951Sdougm * We had a cache miss. Most likely it is a new ZFS 6015951Sdougm * dataset that was just created. We want to make sure 6025951Sdougm * so check timestamps to see if a different process 6035951Sdougm * has updated any of the configuration. If there was 6045951Sdougm * some non-ZFS change, we need to re-initialize the 6055951Sdougm * internal cache. 6065951Sdougm */ 6075951Sdougm zhandle->libzfs_shareflags &= ~ZFSSHARE_MISS; 6085951Sdougm if (_sa_needs_refresh != NULL && 6095951Sdougm _sa_needs_refresh(zhandle->libzfs_sharehdl)) { 6105951Sdougm zfs_uninit_libshare(zhandle); 6115951Sdougm zhandle->libzfs_sharehdl = _sa_init(service); 6125951Sdougm } 6135951Sdougm } 6145951Sdougm 6154302Sdougm if (ret == SA_OK && zhandle && zhandle->libzfs_sharehdl == NULL) 6164302Sdougm zhandle->libzfs_sharehdl = _sa_init(service); 6174302Sdougm 6184302Sdougm if (ret == SA_OK && zhandle->libzfs_sharehdl == NULL) 6194302Sdougm ret = SA_NO_MEMORY; 6204302Sdougm 6214180Sdougm return (ret); 6224180Sdougm } 6234180Sdougm 6244180Sdougm /* 6254180Sdougm * zfs_uninit_libshare(zhandle) 6264180Sdougm * 6274180Sdougm * Uninitialize the libshare API if it hasn't already been 6284180Sdougm * uninitialized. It is OK to call multiple times. 6294180Sdougm */ 6304180Sdougm void 6314180Sdougm zfs_uninit_libshare(libzfs_handle_t *zhandle) 6324180Sdougm { 6334180Sdougm if (zhandle != NULL && zhandle->libzfs_sharehdl != NULL) { 6344302Sdougm if (_sa_fini != NULL) 6354302Sdougm _sa_fini(zhandle->libzfs_sharehdl); 6364302Sdougm zhandle->libzfs_sharehdl = NULL; 6374180Sdougm } 6384180Sdougm } 6394180Sdougm 6404180Sdougm /* 6414180Sdougm * zfs_parse_options(options, proto) 6424180Sdougm * 6434180Sdougm * Call the legacy parse interface to get the protocol specific 6444180Sdougm * options using the NULL arg to indicate that this is a "parse" only. 6454180Sdougm */ 6464180Sdougm int 6475331Samw zfs_parse_options(char *options, zfs_share_proto_t proto) 6484180Sdougm { 6495367Sahrens if (_sa_parse_legacy_options != NULL) { 6505367Sahrens return (_sa_parse_legacy_options(NULL, options, 6515367Sahrens proto_table[proto].p_name)); 6525367Sahrens } 6535367Sahrens return (SA_CONFIG_ERR); 6544180Sdougm } 6554180Sdougm 6564180Sdougm /* 6574180Sdougm * zfs_sa_find_share(handle, path) 6584180Sdougm * 6594180Sdougm * wrapper around sa_find_share to find a share path in the 6604180Sdougm * configuration. 6614180Sdougm */ 6624180Sdougm static sa_share_t 6634180Sdougm zfs_sa_find_share(sa_handle_t handle, char *path) 6644180Sdougm { 6654180Sdougm if (_sa_find_share != NULL) 6664302Sdougm return (_sa_find_share(handle, path)); 6674180Sdougm return (NULL); 6684180Sdougm } 6694180Sdougm 6704180Sdougm /* 6714180Sdougm * zfs_sa_enable_share(share, proto) 6724180Sdougm * 6734180Sdougm * Wrapper for sa_enable_share which enables a share for a specified 6744180Sdougm * protocol. 6754180Sdougm */ 6764180Sdougm static int 6774180Sdougm zfs_sa_enable_share(sa_share_t share, char *proto) 6784180Sdougm { 6794180Sdougm if (_sa_enable_share != NULL) 6804302Sdougm return (_sa_enable_share(share, proto)); 6814180Sdougm return (SA_CONFIG_ERR); 6824180Sdougm } 6834180Sdougm 6844180Sdougm /* 6854180Sdougm * zfs_sa_disable_share(share, proto) 6864180Sdougm * 6874180Sdougm * Wrapper for sa_enable_share which disables a share for a specified 6884180Sdougm * protocol. 6894180Sdougm */ 6904180Sdougm static int 6914180Sdougm zfs_sa_disable_share(sa_share_t share, char *proto) 6924180Sdougm { 6934180Sdougm if (_sa_disable_share != NULL) 6944302Sdougm return (_sa_disable_share(share, proto)); 6954180Sdougm return (SA_CONFIG_ERR); 6964180Sdougm } 6974180Sdougm 6984180Sdougm /* 6995331Samw * Share the given filesystem according to the options in the specified 7005331Samw * protocol specific properties (sharenfs, sharesmb). We rely 7014180Sdougm * on "libshare" to the dirty work for us. 702789Sahrens */ 7035331Samw static int 7045331Samw zfs_share_proto(zfs_handle_t *zhp, zfs_share_proto_t *proto) 705789Sahrens { 706789Sahrens char mountpoint[ZFS_MAXPROPLEN]; 707789Sahrens char shareopts[ZFS_MAXPROPLEN]; 7085951Sdougm char sourcestr[ZFS_MAXPROPLEN]; 7092082Seschrock libzfs_handle_t *hdl = zhp->zfs_hdl; 7104180Sdougm sa_share_t share; 7115331Samw zfs_share_proto_t *curr_proto; 7125951Sdougm zprop_source_t sourcetype; 7134180Sdougm int ret; 714789Sahrens 7152676Seschrock if (!zfs_is_mountable(zhp, mountpoint, sizeof (mountpoint), NULL)) 716789Sahrens return (0); 717789Sahrens 7184180Sdougm if ((ret = zfs_init_libshare(hdl, SA_INIT_SHARE_API)) != SA_OK) { 7194302Sdougm (void) zfs_error_fmt(hdl, EZFS_SHARENFSFAILED, 7204302Sdougm dgettext(TEXT_DOMAIN, "cannot share '%s': %s"), 7215951Sdougm zfs_get_name(zhp), _sa_errorstr != NULL ? 7225951Sdougm _sa_errorstr(ret) : ""); 7234302Sdougm return (-1); 7244180Sdougm } 7255331Samw 7265331Samw for (curr_proto = proto; *curr_proto != PROTO_END; curr_proto++) { 7275331Samw /* 7285331Samw * Return success if there are no share options. 7295331Samw */ 7305331Samw if (zfs_prop_get(zhp, proto_table[*curr_proto].p_prop, 7315951Sdougm shareopts, sizeof (shareopts), &sourcetype, sourcestr, 7325951Sdougm ZFS_MAXPROPLEN, B_FALSE) != 0 || 7335951Sdougm strcmp(shareopts, "off") == 0) 7345331Samw continue; 7355331Samw 7365331Samw /* 7375331Samw * If the 'zoned' property is set, then zfs_is_mountable() 7385331Samw * will have already bailed out if we are in the global zone. 7395331Samw * But local zones cannot be NFS servers, so we ignore it for 7405331Samw * local zones as well. 7415331Samw */ 7425331Samw if (zfs_prop_get_int(zhp, ZFS_PROP_ZONED)) 7435331Samw continue; 7445331Samw 7455331Samw share = zfs_sa_find_share(hdl->libzfs_sharehdl, mountpoint); 7465951Sdougm if (share == NULL) { 7475951Sdougm /* 7485951Sdougm * This may be a new file system that was just 7495951Sdougm * created so isn't in the internal cache 7505951Sdougm * (second time through). Rather than 7515951Sdougm * reloading the entire configuration, we can 7525951Sdougm * assume ZFS has done the checking and it is 7535951Sdougm * safe to add this to the internal 7545951Sdougm * configuration. 7555951Sdougm */ 7565951Sdougm if (_sa_zfs_process_share(hdl->libzfs_sharehdl, 7575951Sdougm NULL, NULL, mountpoint, 7585951Sdougm proto_table[*curr_proto].p_name, sourcetype, 7595951Sdougm shareopts, sourcestr, zhp->zfs_name) != SA_OK) { 7605951Sdougm (void) zfs_error_fmt(hdl, 7615951Sdougm proto_table[*curr_proto].p_share_err, 7625951Sdougm dgettext(TEXT_DOMAIN, "cannot share '%s'"), 7635951Sdougm zfs_get_name(zhp)); 7645951Sdougm return (-1); 7655951Sdougm } 7665951Sdougm hdl->libzfs_shareflags |= ZFSSHARE_MISS; 7675951Sdougm share = zfs_sa_find_share(hdl->libzfs_sharehdl, 7685951Sdougm mountpoint); 7695951Sdougm } 7705331Samw if (share != NULL) { 7715331Samw int err; 7725331Samw err = zfs_sa_enable_share(share, 7735331Samw proto_table[*curr_proto].p_name); 7745331Samw if (err != SA_OK) { 7755331Samw (void) zfs_error_fmt(hdl, 7765331Samw proto_table[*curr_proto].p_share_err, 7775331Samw dgettext(TEXT_DOMAIN, "cannot share '%s'"), 7785331Samw zfs_get_name(zhp)); 7795331Samw return (-1); 7805331Samw } 7815331Samw } else { 7825331Samw (void) zfs_error_fmt(hdl, 7835331Samw proto_table[*curr_proto].p_share_err, 7844302Sdougm dgettext(TEXT_DOMAIN, "cannot share '%s'"), 7854302Sdougm zfs_get_name(zhp)); 7864302Sdougm return (-1); 7874302Sdougm } 7885331Samw 789789Sahrens } 7905331Samw return (0); 7915331Samw } 792789Sahrens 7935331Samw 7945331Samw int 7955331Samw zfs_share_nfs(zfs_handle_t *zhp) 7965331Samw { 7975331Samw return (zfs_share_proto(zhp, nfs_only)); 7985331Samw } 7995331Samw 8005331Samw int 8015331Samw zfs_share_smb(zfs_handle_t *zhp) 8025331Samw { 8035331Samw return (zfs_share_proto(zhp, smb_only)); 8045331Samw } 8055331Samw 8065331Samw int 8075331Samw zfs_shareall(zfs_handle_t *zhp) 8085331Samw { 8095331Samw return (zfs_share_proto(zhp, share_all_proto)); 810789Sahrens } 811789Sahrens 812789Sahrens /* 8132474Seschrock * Unshare a filesystem by mountpoint. 8142474Seschrock */ 8152474Seschrock static int 8165331Samw unshare_one(libzfs_handle_t *hdl, const char *name, const char *mountpoint, 8175331Samw zfs_share_proto_t proto) 8182474Seschrock { 8194180Sdougm sa_share_t share; 8204180Sdougm int err; 8214180Sdougm char *mntpt; 8222474Seschrock /* 8234180Sdougm * Mountpoint could get trashed if libshare calls getmntany 8248228SEric.Taylor@Sun.COM * which it does during API initialization, so strdup the 8254180Sdougm * value. 8262474Seschrock */ 8274180Sdougm mntpt = zfs_strdup(hdl, mountpoint); 8282474Seschrock 8294180Sdougm /* make sure libshare initialized */ 8304180Sdougm if ((err = zfs_init_libshare(hdl, SA_INIT_SHARE_API)) != SA_OK) { 8314180Sdougm free(mntpt); /* don't need the copy anymore */ 8324180Sdougm return (zfs_error_fmt(hdl, EZFS_SHARENFSFAILED, 8334302Sdougm dgettext(TEXT_DOMAIN, "cannot unshare '%s': %s"), 8344302Sdougm name, _sa_errorstr(err))); 8352474Seschrock } 8362474Seschrock 8374180Sdougm share = zfs_sa_find_share(hdl->libzfs_sharehdl, mntpt); 8384180Sdougm free(mntpt); /* don't need the copy anymore */ 8392474Seschrock 8404180Sdougm if (share != NULL) { 8415331Samw err = zfs_sa_disable_share(share, proto_table[proto].p_name); 8424180Sdougm if (err != SA_OK) { 8434302Sdougm return (zfs_error_fmt(hdl, EZFS_UNSHARENFSFAILED, 8444302Sdougm dgettext(TEXT_DOMAIN, "cannot unshare '%s': %s"), 8454302Sdougm name, _sa_errorstr(err))); 8464180Sdougm } 8474180Sdougm } else { 8484180Sdougm return (zfs_error_fmt(hdl, EZFS_UNSHARENFSFAILED, 8494302Sdougm dgettext(TEXT_DOMAIN, "cannot unshare '%s': not found"), 8504302Sdougm name)); 8514180Sdougm } 8522474Seschrock return (0); 8532474Seschrock } 8542474Seschrock 8552474Seschrock /* 856789Sahrens * Unshare the given filesystem. 857789Sahrens */ 858789Sahrens int 8595331Samw zfs_unshare_proto(zfs_handle_t *zhp, const char *mountpoint, 8605331Samw zfs_share_proto_t *proto) 861789Sahrens { 8628228SEric.Taylor@Sun.COM libzfs_handle_t *hdl = zhp->zfs_hdl; 8638228SEric.Taylor@Sun.COM struct mnttab entry; 8644180Sdougm char *mntpt = NULL; 865789Sahrens 866789Sahrens /* check to see if need to unmount the filesystem */ 8672082Seschrock rewind(zhp->zfs_hdl->libzfs_mnttab); 8684302Sdougm if (mountpoint != NULL) 8698228SEric.Taylor@Sun.COM mountpoint = mntpt = zfs_strdup(hdl, mountpoint); 8704302Sdougm 871789Sahrens if (mountpoint != NULL || ((zfs_get_type(zhp) == ZFS_TYPE_FILESYSTEM) && 8728228SEric.Taylor@Sun.COM libzfs_mnttab_find(hdl, zfs_get_name(zhp), &entry) == 0)) { 8735331Samw zfs_share_proto_t *curr_proto; 874789Sahrens 875789Sahrens if (mountpoint == NULL) 8765331Samw mntpt = zfs_strdup(zhp->zfs_hdl, entry.mnt_mountp); 8775331Samw 8785331Samw for (curr_proto = proto; *curr_proto != PROTO_END; 8795331Samw curr_proto++) { 880789Sahrens 8818228SEric.Taylor@Sun.COM if (is_shared(hdl, mntpt, *curr_proto) && 8828228SEric.Taylor@Sun.COM unshare_one(hdl, zhp->zfs_name, 8835331Samw mntpt, *curr_proto) != 0) { 8845331Samw if (mntpt != NULL) 8855331Samw free(mntpt); 8865331Samw return (-1); 8875331Samw } 8884180Sdougm } 889789Sahrens } 8904180Sdougm if (mntpt != NULL) 8914302Sdougm free(mntpt); 892789Sahrens 893789Sahrens return (0); 894789Sahrens } 895789Sahrens 8965331Samw int 8975331Samw zfs_unshare_nfs(zfs_handle_t *zhp, const char *mountpoint) 8985331Samw { 8995331Samw return (zfs_unshare_proto(zhp, mountpoint, nfs_only)); 9005331Samw } 9015331Samw 9025331Samw int 9035331Samw zfs_unshare_smb(zfs_handle_t *zhp, const char *mountpoint) 9045331Samw { 9055331Samw return (zfs_unshare_proto(zhp, mountpoint, smb_only)); 9065331Samw } 9075331Samw 908789Sahrens /* 9095331Samw * Same as zfs_unmountall(), but for NFS and SMB unshares. 910789Sahrens */ 911789Sahrens int 9125331Samw zfs_unshareall_proto(zfs_handle_t *zhp, zfs_share_proto_t *proto) 913789Sahrens { 914789Sahrens prop_changelist_t *clp; 915789Sahrens int ret; 916789Sahrens 9177366STim.Haley@Sun.COM clp = changelist_gather(zhp, ZFS_PROP_SHARENFS, 0, 0); 918789Sahrens if (clp == NULL) 919789Sahrens return (-1); 920789Sahrens 9215331Samw ret = changelist_unshare(clp, proto); 922789Sahrens changelist_free(clp); 923789Sahrens 924789Sahrens return (ret); 925789Sahrens } 926789Sahrens 9275331Samw int 9285331Samw zfs_unshareall_nfs(zfs_handle_t *zhp) 9295331Samw { 9305331Samw return (zfs_unshareall_proto(zhp, nfs_only)); 9315331Samw } 9325331Samw 9335331Samw int 9345331Samw zfs_unshareall_smb(zfs_handle_t *zhp) 9355331Samw { 9365331Samw return (zfs_unshareall_proto(zhp, smb_only)); 9375331Samw } 9385331Samw 9395331Samw int 9405331Samw zfs_unshareall(zfs_handle_t *zhp) 9415331Samw { 9425331Samw return (zfs_unshareall_proto(zhp, share_all_proto)); 9435331Samw } 9445331Samw 9455331Samw int 9465331Samw zfs_unshareall_bypath(zfs_handle_t *zhp, const char *mountpoint) 9475331Samw { 9485331Samw return (zfs_unshare_proto(zhp, mountpoint, share_all_proto)); 9495331Samw } 9505331Samw 951789Sahrens /* 952789Sahrens * Remove the mountpoint associated with the current dataset, if necessary. 953789Sahrens * We only remove the underlying directory if: 954789Sahrens * 955789Sahrens * - The mountpoint is not 'none' or 'legacy' 956789Sahrens * - The mountpoint is non-empty 957789Sahrens * - The mountpoint is the default or inherited 958789Sahrens * - The 'zoned' property is set, or we're in a local zone 959789Sahrens * 960789Sahrens * Any other directories we leave alone. 961789Sahrens */ 962789Sahrens void 963789Sahrens remove_mountpoint(zfs_handle_t *zhp) 964789Sahrens { 965789Sahrens char mountpoint[ZFS_MAXPROPLEN]; 9665094Slling zprop_source_t source; 967789Sahrens 9682676Seschrock if (!zfs_is_mountable(zhp, mountpoint, sizeof (mountpoint), 9692676Seschrock &source)) 970789Sahrens return; 971789Sahrens 9725094Slling if (source == ZPROP_SRC_DEFAULT || 9735094Slling source == ZPROP_SRC_INHERITED) { 974789Sahrens /* 975789Sahrens * Try to remove the directory, silently ignoring any errors. 976789Sahrens * The filesystem may have since been removed or moved around, 9772676Seschrock * and this error isn't really useful to the administrator in 9782676Seschrock * any way. 979789Sahrens */ 980789Sahrens (void) rmdir(mountpoint); 981789Sahrens } 982789Sahrens } 9832474Seschrock 98413025SEric.Taylor@oracle.com void 98513025SEric.Taylor@oracle.com libzfs_add_handle(get_all_cb_t *cbp, zfs_handle_t *zhp) 98613025SEric.Taylor@oracle.com { 98713025SEric.Taylor@oracle.com if (cbp->cb_alloc == cbp->cb_used) { 98813025SEric.Taylor@oracle.com size_t newsz; 98913025SEric.Taylor@oracle.com void *ptr; 99013025SEric.Taylor@oracle.com 99113025SEric.Taylor@oracle.com newsz = cbp->cb_alloc ? cbp->cb_alloc * 2 : 64; 99213025SEric.Taylor@oracle.com ptr = zfs_realloc(zhp->zfs_hdl, 99313025SEric.Taylor@oracle.com cbp->cb_handles, cbp->cb_alloc * sizeof (void *), 99413025SEric.Taylor@oracle.com newsz * sizeof (void *)); 99513025SEric.Taylor@oracle.com cbp->cb_handles = ptr; 99613025SEric.Taylor@oracle.com cbp->cb_alloc = newsz; 99713025SEric.Taylor@oracle.com } 99813025SEric.Taylor@oracle.com cbp->cb_handles[cbp->cb_used++] = zhp; 99913025SEric.Taylor@oracle.com } 10002474Seschrock 10012474Seschrock static int 10022474Seschrock mount_cb(zfs_handle_t *zhp, void *data) 10032474Seschrock { 100413025SEric.Taylor@oracle.com get_all_cb_t *cbp = data; 10052474Seschrock 100613025SEric.Taylor@oracle.com if (!(zfs_get_type(zhp) & ZFS_TYPE_FILESYSTEM)) { 10072474Seschrock zfs_close(zhp); 10082474Seschrock return (0); 10092474Seschrock } 10102474Seschrock 10116168Shs24103 if (zfs_prop_get_int(zhp, ZFS_PROP_CANMOUNT) == ZFS_CANMOUNT_NOAUTO) { 10126168Shs24103 zfs_close(zhp); 10136168Shs24103 return (0); 10146168Shs24103 } 10156168Shs24103 101613025SEric.Taylor@oracle.com libzfs_add_handle(cbp, zhp); 101713025SEric.Taylor@oracle.com if (zfs_iter_filesystems(zhp, mount_cb, cbp) != 0) { 101813025SEric.Taylor@oracle.com zfs_close(zhp); 101913025SEric.Taylor@oracle.com return (-1); 10202474Seschrock } 102113025SEric.Taylor@oracle.com return (0); 10222474Seschrock } 10232474Seschrock 102413025SEric.Taylor@oracle.com int 102513025SEric.Taylor@oracle.com libzfs_dataset_cmp(const void *a, const void *b) 10262474Seschrock { 10272474Seschrock zfs_handle_t **za = (zfs_handle_t **)a; 10282474Seschrock zfs_handle_t **zb = (zfs_handle_t **)b; 10292474Seschrock char mounta[MAXPATHLEN]; 10302474Seschrock char mountb[MAXPATHLEN]; 10313126Sahl boolean_t gota, gotb; 10322474Seschrock 10333126Sahl if ((gota = (zfs_get_type(*za) == ZFS_TYPE_FILESYSTEM)) != 0) 10343126Sahl verify(zfs_prop_get(*za, ZFS_PROP_MOUNTPOINT, mounta, 10353126Sahl sizeof (mounta), NULL, NULL, 0, B_FALSE) == 0); 10363126Sahl if ((gotb = (zfs_get_type(*zb) == ZFS_TYPE_FILESYSTEM)) != 0) 10373126Sahl verify(zfs_prop_get(*zb, ZFS_PROP_MOUNTPOINT, mountb, 10383126Sahl sizeof (mountb), NULL, NULL, 0, B_FALSE) == 0); 10392474Seschrock 10403126Sahl if (gota && gotb) 10413126Sahl return (strcmp(mounta, mountb)); 10423126Sahl 10433126Sahl if (gota) 10443126Sahl return (-1); 10453126Sahl if (gotb) 10463126Sahl return (1); 10473126Sahl 10483126Sahl return (strcmp(zfs_get_name(a), zfs_get_name(b))); 10492474Seschrock } 10502474Seschrock 10513126Sahl /* 10523126Sahl * Mount and share all datasets within the given pool. This assumes that no 10533126Sahl * datasets within the pool are currently mounted. Because users can create 10543126Sahl * complicated nested hierarchies of mountpoints, we first gather all the 10553126Sahl * datasets and mountpoints within the pool, and sort them by mountpoint. Once 10563126Sahl * we have the list of all filesystems, we iterate over them in order and mount 10573126Sahl * and/or share each one. 10583126Sahl */ 10593126Sahl #pragma weak zpool_mount_datasets = zpool_enable_datasets 10602474Seschrock int 10613126Sahl zpool_enable_datasets(zpool_handle_t *zhp, const char *mntopts, int flags) 10622474Seschrock { 106313025SEric.Taylor@oracle.com get_all_cb_t cb = { 0 }; 10642474Seschrock libzfs_handle_t *hdl = zhp->zpool_hdl; 10652474Seschrock zfs_handle_t *zfsp; 10662474Seschrock int i, ret = -1; 10674180Sdougm int *good; 10682474Seschrock 10692474Seschrock /* 10706027Srm160521 * Gather all non-snap datasets within the pool. 10712474Seschrock */ 10725094Slling if ((zfsp = zfs_open(hdl, zhp->zpool_name, ZFS_TYPE_DATASET)) == NULL) 10732474Seschrock goto out; 10742474Seschrock 107513025SEric.Taylor@oracle.com libzfs_add_handle(&cb, zfsp); 10766027Srm160521 if (zfs_iter_filesystems(zfsp, mount_cb, &cb) != 0) 10772474Seschrock goto out; 10782474Seschrock /* 10792474Seschrock * Sort the datasets by mountpoint. 10802474Seschrock */ 108113025SEric.Taylor@oracle.com qsort(cb.cb_handles, cb.cb_used, sizeof (void *), 108213025SEric.Taylor@oracle.com libzfs_dataset_cmp); 10832474Seschrock 10842474Seschrock /* 10854180Sdougm * And mount all the datasets, keeping track of which ones 10868536SDavid.Pacheco@Sun.COM * succeeded or failed. 10872474Seschrock */ 10888536SDavid.Pacheco@Sun.COM if ((good = zfs_alloc(zhp->zpool_hdl, 10898536SDavid.Pacheco@Sun.COM cb.cb_used * sizeof (int))) == NULL) 10908536SDavid.Pacheco@Sun.COM goto out; 10918536SDavid.Pacheco@Sun.COM 10922474Seschrock ret = 0; 10932474Seschrock for (i = 0; i < cb.cb_used; i++) { 109413025SEric.Taylor@oracle.com if (zfs_mount(cb.cb_handles[i], mntopts, flags) != 0) 10954180Sdougm ret = -1; 10964302Sdougm else 10974180Sdougm good[i] = 1; 10984180Sdougm } 10995951Sdougm 11004180Sdougm /* 11014180Sdougm * Then share all the ones that need to be shared. This needs 11024180Sdougm * to be a separate pass in order to avoid excessive reloading 11034180Sdougm * of the configuration. Good should never be NULL since 11044180Sdougm * zfs_alloc is supposed to exit if memory isn't available. 11054180Sdougm */ 11064180Sdougm for (i = 0; i < cb.cb_used; i++) { 110713025SEric.Taylor@oracle.com if (good[i] && zfs_share(cb.cb_handles[i]) != 0) 11082474Seschrock ret = -1; 11092474Seschrock } 11102474Seschrock 11114180Sdougm free(good); 11124180Sdougm 11132474Seschrock out: 11142474Seschrock for (i = 0; i < cb.cb_used; i++) 111513025SEric.Taylor@oracle.com zfs_close(cb.cb_handles[i]); 111613025SEric.Taylor@oracle.com free(cb.cb_handles); 11172474Seschrock 11182474Seschrock return (ret); 11192474Seschrock } 11202474Seschrock 11212474Seschrock static int 11222474Seschrock mountpoint_compare(const void *a, const void *b) 11232474Seschrock { 11242474Seschrock const char *mounta = *((char **)a); 11252474Seschrock const char *mountb = *((char **)b); 11262474Seschrock 11272474Seschrock return (strcmp(mountb, mounta)); 11282474Seschrock } 11292474Seschrock 113010588SEric.Taylor@Sun.COM /* alias for 2002/240 */ 113110588SEric.Taylor@Sun.COM #pragma weak zpool_unmount_datasets = zpool_disable_datasets 11323126Sahl /* 11333126Sahl * Unshare and unmount all datasets within the given pool. We don't want to 11343126Sahl * rely on traversing the DSL to discover the filesystems within the pool, 11353126Sahl * because this may be expensive (if not all of them are mounted), and can fail 11363126Sahl * arbitrarily (on I/O error, for example). Instead, we walk /etc/mnttab and 11373126Sahl * gather all the filesystems that are currently mounted. 11383126Sahl */ 11392474Seschrock int 11403126Sahl zpool_disable_datasets(zpool_handle_t *zhp, boolean_t force) 11412474Seschrock { 11422474Seschrock int used, alloc; 11432474Seschrock struct mnttab entry; 11442474Seschrock size_t namelen; 11452474Seschrock char **mountpoints = NULL; 11462474Seschrock zfs_handle_t **datasets = NULL; 11472474Seschrock libzfs_handle_t *hdl = zhp->zpool_hdl; 11482474Seschrock int i; 11492474Seschrock int ret = -1; 11502474Seschrock int flags = (force ? MS_FORCE : 0); 11512474Seschrock 11522474Seschrock namelen = strlen(zhp->zpool_name); 11532474Seschrock 11542474Seschrock rewind(hdl->libzfs_mnttab); 11552474Seschrock used = alloc = 0; 11562474Seschrock while (getmntent(hdl->libzfs_mnttab, &entry) == 0) { 11572474Seschrock /* 11582474Seschrock * Ignore non-ZFS entries. 11592474Seschrock */ 11602474Seschrock if (entry.mnt_fstype == NULL || 11612474Seschrock strcmp(entry.mnt_fstype, MNTTYPE_ZFS) != 0) 11622474Seschrock continue; 11632474Seschrock 11642474Seschrock /* 11652474Seschrock * Ignore filesystems not within this pool. 11662474Seschrock */ 11672474Seschrock if (entry.mnt_mountp == NULL || 11682474Seschrock strncmp(entry.mnt_special, zhp->zpool_name, namelen) != 0 || 11692474Seschrock (entry.mnt_special[namelen] != '/' && 11702474Seschrock entry.mnt_special[namelen] != '\0')) 11712474Seschrock continue; 11722474Seschrock 11732474Seschrock /* 11742474Seschrock * At this point we've found a filesystem within our pool. Add 11752474Seschrock * it to our growing list. 11762474Seschrock */ 11772474Seschrock if (used == alloc) { 11782474Seschrock if (alloc == 0) { 11792474Seschrock if ((mountpoints = zfs_alloc(hdl, 11802474Seschrock 8 * sizeof (void *))) == NULL) 11812474Seschrock goto out; 11822474Seschrock 11832474Seschrock if ((datasets = zfs_alloc(hdl, 11842474Seschrock 8 * sizeof (void *))) == NULL) 11852474Seschrock goto out; 11862474Seschrock 11872474Seschrock alloc = 8; 11882474Seschrock } else { 11892676Seschrock void *ptr; 11902474Seschrock 11912676Seschrock if ((ptr = zfs_realloc(hdl, mountpoints, 11922676Seschrock alloc * sizeof (void *), 11932474Seschrock alloc * 2 * sizeof (void *))) == NULL) 11942474Seschrock goto out; 11952676Seschrock mountpoints = ptr; 11962474Seschrock 11972676Seschrock if ((ptr = zfs_realloc(hdl, datasets, 11982676Seschrock alloc * sizeof (void *), 11992474Seschrock alloc * 2 * sizeof (void *))) == NULL) 12002474Seschrock goto out; 12012676Seschrock datasets = ptr; 12022474Seschrock 12032474Seschrock alloc *= 2; 12042474Seschrock } 12052474Seschrock } 12062474Seschrock 12072474Seschrock if ((mountpoints[used] = zfs_strdup(hdl, 12082474Seschrock entry.mnt_mountp)) == NULL) 12092474Seschrock goto out; 12102474Seschrock 12112474Seschrock /* 12122474Seschrock * This is allowed to fail, in case there is some I/O error. It 12132474Seschrock * is only used to determine if we need to remove the underlying 12142474Seschrock * mountpoint, so failure is not fatal. 12152474Seschrock */ 12162474Seschrock datasets[used] = make_dataset_handle(hdl, entry.mnt_special); 12172474Seschrock 12182474Seschrock used++; 12192474Seschrock } 12202474Seschrock 12212474Seschrock /* 12222474Seschrock * At this point, we have the entire list of filesystems, so sort it by 12232474Seschrock * mountpoint. 12242474Seschrock */ 12252474Seschrock qsort(mountpoints, used, sizeof (char *), mountpoint_compare); 12262474Seschrock 12272474Seschrock /* 12282474Seschrock * Walk through and first unshare everything. 12292474Seschrock */ 12302474Seschrock for (i = 0; i < used; i++) { 12315331Samw zfs_share_proto_t *curr_proto; 12325331Samw for (curr_proto = share_all_proto; *curr_proto != PROTO_END; 12335331Samw curr_proto++) { 12345331Samw if (is_shared(hdl, mountpoints[i], *curr_proto) && 12355331Samw unshare_one(hdl, mountpoints[i], 12365331Samw mountpoints[i], *curr_proto) != 0) 12375331Samw goto out; 12385331Samw } 12392474Seschrock } 12402474Seschrock 12412474Seschrock /* 12422474Seschrock * Now unmount everything, removing the underlying directories as 12432474Seschrock * appropriate. 12442474Seschrock */ 12452474Seschrock for (i = 0; i < used; i++) { 12462474Seschrock if (unmount_one(hdl, mountpoints[i], flags) != 0) 12472474Seschrock goto out; 12482676Seschrock } 12492474Seschrock 12502676Seschrock for (i = 0; i < used; i++) { 12512474Seschrock if (datasets[i]) 12522474Seschrock remove_mountpoint(datasets[i]); 12532474Seschrock } 12542474Seschrock 12552474Seschrock ret = 0; 12562474Seschrock out: 12572474Seschrock for (i = 0; i < used; i++) { 12582474Seschrock if (datasets[i]) 12592474Seschrock zfs_close(datasets[i]); 12602474Seschrock free(mountpoints[i]); 12612474Seschrock } 12622474Seschrock free(datasets); 12632474Seschrock free(mountpoints); 12642474Seschrock 12652474Seschrock return (ret); 12662474Seschrock } 1267