super.c 57 KB

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  1. /*
  2. * linux/fs/nfs/super.c
  3. *
  4. * Copyright (C) 1992 Rick Sladkey
  5. *
  6. * nfs superblock handling functions
  7. *
  8. * Modularised by Alan Cox <Alan.Cox@linux.org>, while hacking some
  9. * experimental NFS changes. Modularisation taken straight from SYS5 fs.
  10. *
  11. * Change to nfs_read_super() to permit NFS mounts to multi-homed hosts.
  12. * J.S.Peatfield@damtp.cam.ac.uk
  13. *
  14. * Split from inode.c by David Howells <dhowells@redhat.com>
  15. *
  16. * - superblocks are indexed on server only - all inodes, dentries, etc. associated with a
  17. * particular server are held in the same superblock
  18. * - NFS superblocks can have several effective roots to the dentry tree
  19. * - directory type roots are spliced into the tree when a path from one root reaches the root
  20. * of another (see nfs_lookup())
  21. */
  22. #include <linux/module.h>
  23. #include <linux/init.h>
  24. #include <linux/time.h>
  25. #include <linux/kernel.h>
  26. #include <linux/mm.h>
  27. #include <linux/string.h>
  28. #include <linux/stat.h>
  29. #include <linux/errno.h>
  30. #include <linux/unistd.h>
  31. #include <linux/sunrpc/clnt.h>
  32. #include <linux/sunrpc/stats.h>
  33. #include <linux/sunrpc/metrics.h>
  34. #include <linux/sunrpc/xprtsock.h>
  35. #include <linux/sunrpc/xprtrdma.h>
  36. #include <linux/nfs_fs.h>
  37. #include <linux/nfs_mount.h>
  38. #include <linux/nfs4_mount.h>
  39. #include <linux/lockd/bind.h>
  40. #include <linux/smp_lock.h>
  41. #include <linux/seq_file.h>
  42. #include <linux/mount.h>
  43. #include <linux/nfs_idmap.h>
  44. #include <linux/vfs.h>
  45. #include <linux/inet.h>
  46. #include <linux/in6.h>
  47. #include <net/ipv6.h>
  48. #include <linux/nfs_xdr.h>
  49. #include <linux/magic.h>
  50. #include <linux/parser.h>
  51. #include <asm/system.h>
  52. #include <asm/uaccess.h>
  53. #include "nfs4_fs.h"
  54. #include "callback.h"
  55. #include "delegation.h"
  56. #include "iostat.h"
  57. #include "internal.h"
  58. #define NFSDBG_FACILITY NFSDBG_VFS
  59. enum {
  60. /* Mount options that take no arguments */
  61. Opt_soft, Opt_hard,
  62. Opt_intr, Opt_nointr,
  63. Opt_posix, Opt_noposix,
  64. Opt_cto, Opt_nocto,
  65. Opt_ac, Opt_noac,
  66. Opt_lock, Opt_nolock,
  67. Opt_v2, Opt_v3,
  68. Opt_udp, Opt_tcp, Opt_rdma,
  69. Opt_acl, Opt_noacl,
  70. Opt_rdirplus, Opt_nordirplus,
  71. Opt_sharecache, Opt_nosharecache,
  72. /* Mount options that take integer arguments */
  73. Opt_port,
  74. Opt_rsize, Opt_wsize, Opt_bsize,
  75. Opt_timeo, Opt_retrans,
  76. Opt_acregmin, Opt_acregmax,
  77. Opt_acdirmin, Opt_acdirmax,
  78. Opt_actimeo,
  79. Opt_namelen,
  80. Opt_mountport,
  81. Opt_mountvers,
  82. Opt_nfsvers,
  83. /* Mount options that take string arguments */
  84. Opt_sec, Opt_proto, Opt_mountproto, Opt_mounthost,
  85. Opt_addr, Opt_mountaddr, Opt_clientaddr,
  86. /* Mount options that are ignored */
  87. Opt_userspace, Opt_deprecated,
  88. Opt_err
  89. };
  90. static match_table_t nfs_mount_option_tokens = {
  91. { Opt_userspace, "bg" },
  92. { Opt_userspace, "fg" },
  93. { Opt_soft, "soft" },
  94. { Opt_hard, "hard" },
  95. { Opt_intr, "intr" },
  96. { Opt_nointr, "nointr" },
  97. { Opt_posix, "posix" },
  98. { Opt_noposix, "noposix" },
  99. { Opt_cto, "cto" },
  100. { Opt_nocto, "nocto" },
  101. { Opt_ac, "ac" },
  102. { Opt_noac, "noac" },
  103. { Opt_lock, "lock" },
  104. { Opt_nolock, "nolock" },
  105. { Opt_v2, "v2" },
  106. { Opt_v3, "v3" },
  107. { Opt_udp, "udp" },
  108. { Opt_tcp, "tcp" },
  109. { Opt_rdma, "rdma" },
  110. { Opt_acl, "acl" },
  111. { Opt_noacl, "noacl" },
  112. { Opt_rdirplus, "rdirplus" },
  113. { Opt_nordirplus, "nordirplus" },
  114. { Opt_sharecache, "sharecache" },
  115. { Opt_nosharecache, "nosharecache" },
  116. { Opt_port, "port=%u" },
  117. { Opt_rsize, "rsize=%u" },
  118. { Opt_wsize, "wsize=%u" },
  119. { Opt_bsize, "bsize=%u" },
  120. { Opt_timeo, "timeo=%u" },
  121. { Opt_retrans, "retrans=%u" },
  122. { Opt_acregmin, "acregmin=%u" },
  123. { Opt_acregmax, "acregmax=%u" },
  124. { Opt_acdirmin, "acdirmin=%u" },
  125. { Opt_acdirmax, "acdirmax=%u" },
  126. { Opt_actimeo, "actimeo=%u" },
  127. { Opt_userspace, "retry=%u" },
  128. { Opt_namelen, "namlen=%u" },
  129. { Opt_mountport, "mountport=%u" },
  130. { Opt_mountvers, "mountvers=%u" },
  131. { Opt_nfsvers, "nfsvers=%u" },
  132. { Opt_nfsvers, "vers=%u" },
  133. { Opt_sec, "sec=%s" },
  134. { Opt_proto, "proto=%s" },
  135. { Opt_mountproto, "mountproto=%s" },
  136. { Opt_addr, "addr=%s" },
  137. { Opt_clientaddr, "clientaddr=%s" },
  138. { Opt_mounthost, "mounthost=%s" },
  139. { Opt_mountaddr, "mountaddr=%s" },
  140. { Opt_err, NULL }
  141. };
  142. enum {
  143. Opt_xprt_udp, Opt_xprt_tcp, Opt_xprt_rdma,
  144. Opt_xprt_err
  145. };
  146. static match_table_t nfs_xprt_protocol_tokens = {
  147. { Opt_xprt_udp, "udp" },
  148. { Opt_xprt_tcp, "tcp" },
  149. { Opt_xprt_rdma, "rdma" },
  150. { Opt_xprt_err, NULL }
  151. };
  152. enum {
  153. Opt_sec_none, Opt_sec_sys,
  154. Opt_sec_krb5, Opt_sec_krb5i, Opt_sec_krb5p,
  155. Opt_sec_lkey, Opt_sec_lkeyi, Opt_sec_lkeyp,
  156. Opt_sec_spkm, Opt_sec_spkmi, Opt_sec_spkmp,
  157. Opt_sec_err
  158. };
  159. static match_table_t nfs_secflavor_tokens = {
  160. { Opt_sec_none, "none" },
  161. { Opt_sec_none, "null" },
  162. { Opt_sec_sys, "sys" },
  163. { Opt_sec_krb5, "krb5" },
  164. { Opt_sec_krb5i, "krb5i" },
  165. { Opt_sec_krb5p, "krb5p" },
  166. { Opt_sec_lkey, "lkey" },
  167. { Opt_sec_lkeyi, "lkeyi" },
  168. { Opt_sec_lkeyp, "lkeyp" },
  169. { Opt_sec_spkm, "spkm3" },
  170. { Opt_sec_spkmi, "spkm3i" },
  171. { Opt_sec_spkmp, "spkm3p" },
  172. { Opt_sec_err, NULL }
  173. };
  174. static void nfs_umount_begin(struct super_block *);
  175. static int nfs_statfs(struct dentry *, struct kstatfs *);
  176. static int nfs_show_options(struct seq_file *, struct vfsmount *);
  177. static int nfs_show_stats(struct seq_file *, struct vfsmount *);
  178. static int nfs_get_sb(struct file_system_type *, int, const char *, void *, struct vfsmount *);
  179. static int nfs_xdev_get_sb(struct file_system_type *fs_type,
  180. int flags, const char *dev_name, void *raw_data, struct vfsmount *mnt);
  181. static void nfs_kill_super(struct super_block *);
  182. static void nfs_put_super(struct super_block *);
  183. static int nfs_remount(struct super_block *sb, int *flags, char *raw_data);
  184. static struct file_system_type nfs_fs_type = {
  185. .owner = THIS_MODULE,
  186. .name = "nfs",
  187. .get_sb = nfs_get_sb,
  188. .kill_sb = nfs_kill_super,
  189. .fs_flags = FS_RENAME_DOES_D_MOVE|FS_REVAL_DOT|FS_BINARY_MOUNTDATA,
  190. };
  191. struct file_system_type nfs_xdev_fs_type = {
  192. .owner = THIS_MODULE,
  193. .name = "nfs",
  194. .get_sb = nfs_xdev_get_sb,
  195. .kill_sb = nfs_kill_super,
  196. .fs_flags = FS_RENAME_DOES_D_MOVE|FS_REVAL_DOT|FS_BINARY_MOUNTDATA,
  197. };
  198. static const struct super_operations nfs_sops = {
  199. .alloc_inode = nfs_alloc_inode,
  200. .destroy_inode = nfs_destroy_inode,
  201. .write_inode = nfs_write_inode,
  202. .put_super = nfs_put_super,
  203. .statfs = nfs_statfs,
  204. .clear_inode = nfs_clear_inode,
  205. .umount_begin = nfs_umount_begin,
  206. .show_options = nfs_show_options,
  207. .show_stats = nfs_show_stats,
  208. .remount_fs = nfs_remount,
  209. };
  210. #ifdef CONFIG_NFS_V4
  211. static int nfs4_get_sb(struct file_system_type *fs_type,
  212. int flags, const char *dev_name, void *raw_data, struct vfsmount *mnt);
  213. static int nfs4_xdev_get_sb(struct file_system_type *fs_type,
  214. int flags, const char *dev_name, void *raw_data, struct vfsmount *mnt);
  215. static int nfs4_referral_get_sb(struct file_system_type *fs_type,
  216. int flags, const char *dev_name, void *raw_data, struct vfsmount *mnt);
  217. static void nfs4_kill_super(struct super_block *sb);
  218. static struct file_system_type nfs4_fs_type = {
  219. .owner = THIS_MODULE,
  220. .name = "nfs4",
  221. .get_sb = nfs4_get_sb,
  222. .kill_sb = nfs4_kill_super,
  223. .fs_flags = FS_RENAME_DOES_D_MOVE|FS_REVAL_DOT|FS_BINARY_MOUNTDATA,
  224. };
  225. struct file_system_type nfs4_xdev_fs_type = {
  226. .owner = THIS_MODULE,
  227. .name = "nfs4",
  228. .get_sb = nfs4_xdev_get_sb,
  229. .kill_sb = nfs4_kill_super,
  230. .fs_flags = FS_RENAME_DOES_D_MOVE|FS_REVAL_DOT|FS_BINARY_MOUNTDATA,
  231. };
  232. struct file_system_type nfs4_referral_fs_type = {
  233. .owner = THIS_MODULE,
  234. .name = "nfs4",
  235. .get_sb = nfs4_referral_get_sb,
  236. .kill_sb = nfs4_kill_super,
  237. .fs_flags = FS_RENAME_DOES_D_MOVE|FS_REVAL_DOT|FS_BINARY_MOUNTDATA,
  238. };
  239. static const struct super_operations nfs4_sops = {
  240. .alloc_inode = nfs_alloc_inode,
  241. .destroy_inode = nfs_destroy_inode,
  242. .write_inode = nfs_write_inode,
  243. .statfs = nfs_statfs,
  244. .clear_inode = nfs4_clear_inode,
  245. .umount_begin = nfs_umount_begin,
  246. .show_options = nfs_show_options,
  247. .show_stats = nfs_show_stats,
  248. .remount_fs = nfs_remount,
  249. };
  250. #endif
  251. static struct shrinker acl_shrinker = {
  252. .shrink = nfs_access_cache_shrinker,
  253. .seeks = DEFAULT_SEEKS,
  254. };
  255. /*
  256. * Register the NFS filesystems
  257. */
  258. int __init register_nfs_fs(void)
  259. {
  260. int ret;
  261. ret = register_filesystem(&nfs_fs_type);
  262. if (ret < 0)
  263. goto error_0;
  264. ret = nfs_register_sysctl();
  265. if (ret < 0)
  266. goto error_1;
  267. #ifdef CONFIG_NFS_V4
  268. ret = register_filesystem(&nfs4_fs_type);
  269. if (ret < 0)
  270. goto error_2;
  271. #endif
  272. register_shrinker(&acl_shrinker);
  273. return 0;
  274. #ifdef CONFIG_NFS_V4
  275. error_2:
  276. nfs_unregister_sysctl();
  277. #endif
  278. error_1:
  279. unregister_filesystem(&nfs_fs_type);
  280. error_0:
  281. return ret;
  282. }
  283. /*
  284. * Unregister the NFS filesystems
  285. */
  286. void __exit unregister_nfs_fs(void)
  287. {
  288. unregister_shrinker(&acl_shrinker);
  289. #ifdef CONFIG_NFS_V4
  290. unregister_filesystem(&nfs4_fs_type);
  291. #endif
  292. nfs_unregister_sysctl();
  293. unregister_filesystem(&nfs_fs_type);
  294. }
  295. void nfs_sb_active(struct nfs_server *server)
  296. {
  297. atomic_inc(&server->active);
  298. }
  299. void nfs_sb_deactive(struct nfs_server *server)
  300. {
  301. if (atomic_dec_and_test(&server->active))
  302. wake_up(&server->active_wq);
  303. }
  304. static void nfs_put_super(struct super_block *sb)
  305. {
  306. struct nfs_server *server = NFS_SB(sb);
  307. /*
  308. * Make sure there are no outstanding ops to this server.
  309. * If so, wait for them to finish before allowing the
  310. * unmount to continue.
  311. */
  312. wait_event(server->active_wq, atomic_read(&server->active) == 0);
  313. }
  314. /*
  315. * Deliver file system statistics to userspace
  316. */
  317. static int nfs_statfs(struct dentry *dentry, struct kstatfs *buf)
  318. {
  319. struct nfs_server *server = NFS_SB(dentry->d_sb);
  320. unsigned char blockbits;
  321. unsigned long blockres;
  322. struct nfs_fh *fh = NFS_FH(dentry->d_inode);
  323. struct nfs_fattr fattr;
  324. struct nfs_fsstat res = {
  325. .fattr = &fattr,
  326. };
  327. int error;
  328. lock_kernel();
  329. error = server->nfs_client->rpc_ops->statfs(server, fh, &res);
  330. if (error < 0)
  331. goto out_err;
  332. buf->f_type = NFS_SUPER_MAGIC;
  333. /*
  334. * Current versions of glibc do not correctly handle the
  335. * case where f_frsize != f_bsize. Eventually we want to
  336. * report the value of wtmult in this field.
  337. */
  338. buf->f_frsize = dentry->d_sb->s_blocksize;
  339. /*
  340. * On most *nix systems, f_blocks, f_bfree, and f_bavail
  341. * are reported in units of f_frsize. Linux hasn't had
  342. * an f_frsize field in its statfs struct until recently,
  343. * thus historically Linux's sys_statfs reports these
  344. * fields in units of f_bsize.
  345. */
  346. buf->f_bsize = dentry->d_sb->s_blocksize;
  347. blockbits = dentry->d_sb->s_blocksize_bits;
  348. blockres = (1 << blockbits) - 1;
  349. buf->f_blocks = (res.tbytes + blockres) >> blockbits;
  350. buf->f_bfree = (res.fbytes + blockres) >> blockbits;
  351. buf->f_bavail = (res.abytes + blockres) >> blockbits;
  352. buf->f_files = res.tfiles;
  353. buf->f_ffree = res.afiles;
  354. buf->f_namelen = server->namelen;
  355. unlock_kernel();
  356. return 0;
  357. out_err:
  358. dprintk("%s: statfs error = %d\n", __func__, -error);
  359. unlock_kernel();
  360. return error;
  361. }
  362. /*
  363. * Map the security flavour number to a name
  364. */
  365. static const char *nfs_pseudoflavour_to_name(rpc_authflavor_t flavour)
  366. {
  367. static const struct {
  368. rpc_authflavor_t flavour;
  369. const char *str;
  370. } sec_flavours[] = {
  371. { RPC_AUTH_NULL, "null" },
  372. { RPC_AUTH_UNIX, "sys" },
  373. { RPC_AUTH_GSS_KRB5, "krb5" },
  374. { RPC_AUTH_GSS_KRB5I, "krb5i" },
  375. { RPC_AUTH_GSS_KRB5P, "krb5p" },
  376. { RPC_AUTH_GSS_LKEY, "lkey" },
  377. { RPC_AUTH_GSS_LKEYI, "lkeyi" },
  378. { RPC_AUTH_GSS_LKEYP, "lkeyp" },
  379. { RPC_AUTH_GSS_SPKM, "spkm" },
  380. { RPC_AUTH_GSS_SPKMI, "spkmi" },
  381. { RPC_AUTH_GSS_SPKMP, "spkmp" },
  382. { UINT_MAX, "unknown" }
  383. };
  384. int i;
  385. for (i = 0; sec_flavours[i].flavour != UINT_MAX; i++) {
  386. if (sec_flavours[i].flavour == flavour)
  387. break;
  388. }
  389. return sec_flavours[i].str;
  390. }
  391. static void nfs_show_mountd_options(struct seq_file *m, struct nfs_server *nfss,
  392. int showdefaults)
  393. {
  394. struct sockaddr *sap = (struct sockaddr *)&nfss->mountd_address;
  395. switch (sap->sa_family) {
  396. case AF_INET: {
  397. struct sockaddr_in *sin = (struct sockaddr_in *)sap;
  398. seq_printf(m, ",mountaddr=" NIPQUAD_FMT,
  399. NIPQUAD(sin->sin_addr.s_addr));
  400. break;
  401. }
  402. case AF_INET6: {
  403. struct sockaddr_in6 *sin6 = (struct sockaddr_in6 *)sap;
  404. seq_printf(m, ",mountaddr=" NIP6_FMT,
  405. NIP6(sin6->sin6_addr));
  406. break;
  407. }
  408. default:
  409. if (showdefaults)
  410. seq_printf(m, ",mountaddr=unspecified");
  411. }
  412. if (nfss->mountd_version || showdefaults)
  413. seq_printf(m, ",mountvers=%u", nfss->mountd_version);
  414. if (nfss->mountd_port || showdefaults)
  415. seq_printf(m, ",mountport=%u", nfss->mountd_port);
  416. switch (nfss->mountd_protocol) {
  417. case IPPROTO_UDP:
  418. seq_printf(m, ",mountproto=udp");
  419. break;
  420. case IPPROTO_TCP:
  421. seq_printf(m, ",mountproto=tcp");
  422. break;
  423. default:
  424. if (showdefaults)
  425. seq_printf(m, ",mountproto=auto");
  426. }
  427. }
  428. /*
  429. * Describe the mount options in force on this server representation
  430. */
  431. static void nfs_show_mount_options(struct seq_file *m, struct nfs_server *nfss,
  432. int showdefaults)
  433. {
  434. static const struct proc_nfs_info {
  435. int flag;
  436. const char *str;
  437. const char *nostr;
  438. } nfs_info[] = {
  439. { NFS_MOUNT_SOFT, ",soft", ",hard" },
  440. { NFS_MOUNT_INTR, ",intr", ",nointr" },
  441. { NFS_MOUNT_POSIX, ",posix", "" },
  442. { NFS_MOUNT_NOCTO, ",nocto", "" },
  443. { NFS_MOUNT_NOAC, ",noac", "" },
  444. { NFS_MOUNT_NONLM, ",nolock", "" },
  445. { NFS_MOUNT_NOACL, ",noacl", "" },
  446. { NFS_MOUNT_NORDIRPLUS, ",nordirplus", "" },
  447. { NFS_MOUNT_UNSHARED, ",nosharecache", ""},
  448. { 0, NULL, NULL }
  449. };
  450. const struct proc_nfs_info *nfs_infop;
  451. struct nfs_client *clp = nfss->nfs_client;
  452. u32 version = clp->rpc_ops->version;
  453. seq_printf(m, ",vers=%u", version);
  454. seq_printf(m, ",rsize=%u", nfss->rsize);
  455. seq_printf(m, ",wsize=%u", nfss->wsize);
  456. if (nfss->bsize != 0)
  457. seq_printf(m, ",bsize=%u", nfss->bsize);
  458. seq_printf(m, ",namlen=%u", nfss->namelen);
  459. if (nfss->acregmin != 3*HZ || showdefaults)
  460. seq_printf(m, ",acregmin=%u", nfss->acregmin/HZ);
  461. if (nfss->acregmax != 60*HZ || showdefaults)
  462. seq_printf(m, ",acregmax=%u", nfss->acregmax/HZ);
  463. if (nfss->acdirmin != 30*HZ || showdefaults)
  464. seq_printf(m, ",acdirmin=%u", nfss->acdirmin/HZ);
  465. if (nfss->acdirmax != 60*HZ || showdefaults)
  466. seq_printf(m, ",acdirmax=%u", nfss->acdirmax/HZ);
  467. for (nfs_infop = nfs_info; nfs_infop->flag; nfs_infop++) {
  468. if (nfss->flags & nfs_infop->flag)
  469. seq_puts(m, nfs_infop->str);
  470. else
  471. seq_puts(m, nfs_infop->nostr);
  472. }
  473. seq_printf(m, ",proto=%s",
  474. rpc_peeraddr2str(nfss->client, RPC_DISPLAY_PROTO));
  475. if (version == 4) {
  476. if (nfss->port != NFS_PORT)
  477. seq_printf(m, ",port=%u", nfss->port);
  478. } else
  479. if (nfss->port)
  480. seq_printf(m, ",port=%u", nfss->port);
  481. seq_printf(m, ",timeo=%lu", 10U * nfss->client->cl_timeout->to_initval / HZ);
  482. seq_printf(m, ",retrans=%u", nfss->client->cl_timeout->to_retries);
  483. seq_printf(m, ",sec=%s", nfs_pseudoflavour_to_name(nfss->client->cl_auth->au_flavor));
  484. if (version != 4)
  485. nfs_show_mountd_options(m, nfss, showdefaults);
  486. #ifdef CONFIG_NFS_V4
  487. if (clp->rpc_ops->version == 4)
  488. seq_printf(m, ",clientaddr=%s", clp->cl_ipaddr);
  489. #endif
  490. }
  491. /*
  492. * Describe the mount options on this VFS mountpoint
  493. */
  494. static int nfs_show_options(struct seq_file *m, struct vfsmount *mnt)
  495. {
  496. struct nfs_server *nfss = NFS_SB(mnt->mnt_sb);
  497. nfs_show_mount_options(m, nfss, 0);
  498. seq_printf(m, ",addr=%s",
  499. rpc_peeraddr2str(nfss->nfs_client->cl_rpcclient,
  500. RPC_DISPLAY_ADDR));
  501. return 0;
  502. }
  503. /*
  504. * Present statistical information for this VFS mountpoint
  505. */
  506. static int nfs_show_stats(struct seq_file *m, struct vfsmount *mnt)
  507. {
  508. int i, cpu;
  509. struct nfs_server *nfss = NFS_SB(mnt->mnt_sb);
  510. struct rpc_auth *auth = nfss->client->cl_auth;
  511. struct nfs_iostats totals = { };
  512. seq_printf(m, "statvers=%s", NFS_IOSTAT_VERS);
  513. /*
  514. * Display all mount option settings
  515. */
  516. seq_printf(m, "\n\topts:\t");
  517. seq_puts(m, mnt->mnt_sb->s_flags & MS_RDONLY ? "ro" : "rw");
  518. seq_puts(m, mnt->mnt_sb->s_flags & MS_SYNCHRONOUS ? ",sync" : "");
  519. seq_puts(m, mnt->mnt_sb->s_flags & MS_NOATIME ? ",noatime" : "");
  520. seq_puts(m, mnt->mnt_sb->s_flags & MS_NODIRATIME ? ",nodiratime" : "");
  521. nfs_show_mount_options(m, nfss, 1);
  522. seq_printf(m, "\n\tage:\t%lu", (jiffies - nfss->mount_time) / HZ);
  523. seq_printf(m, "\n\tcaps:\t");
  524. seq_printf(m, "caps=0x%x", nfss->caps);
  525. seq_printf(m, ",wtmult=%u", nfss->wtmult);
  526. seq_printf(m, ",dtsize=%u", nfss->dtsize);
  527. seq_printf(m, ",bsize=%u", nfss->bsize);
  528. seq_printf(m, ",namlen=%u", nfss->namelen);
  529. #ifdef CONFIG_NFS_V4
  530. if (nfss->nfs_client->rpc_ops->version == 4) {
  531. seq_printf(m, "\n\tnfsv4:\t");
  532. seq_printf(m, "bm0=0x%x", nfss->attr_bitmask[0]);
  533. seq_printf(m, ",bm1=0x%x", nfss->attr_bitmask[1]);
  534. seq_printf(m, ",acl=0x%x", nfss->acl_bitmask);
  535. }
  536. #endif
  537. /*
  538. * Display security flavor in effect for this mount
  539. */
  540. seq_printf(m, "\n\tsec:\tflavor=%u", auth->au_ops->au_flavor);
  541. if (auth->au_flavor)
  542. seq_printf(m, ",pseudoflavor=%u", auth->au_flavor);
  543. /*
  544. * Display superblock I/O counters
  545. */
  546. for_each_possible_cpu(cpu) {
  547. struct nfs_iostats *stats;
  548. preempt_disable();
  549. stats = per_cpu_ptr(nfss->io_stats, cpu);
  550. for (i = 0; i < __NFSIOS_COUNTSMAX; i++)
  551. totals.events[i] += stats->events[i];
  552. for (i = 0; i < __NFSIOS_BYTESMAX; i++)
  553. totals.bytes[i] += stats->bytes[i];
  554. preempt_enable();
  555. }
  556. seq_printf(m, "\n\tevents:\t");
  557. for (i = 0; i < __NFSIOS_COUNTSMAX; i++)
  558. seq_printf(m, "%lu ", totals.events[i]);
  559. seq_printf(m, "\n\tbytes:\t");
  560. for (i = 0; i < __NFSIOS_BYTESMAX; i++)
  561. seq_printf(m, "%Lu ", totals.bytes[i]);
  562. seq_printf(m, "\n");
  563. rpc_print_iostats(m, nfss->client);
  564. return 0;
  565. }
  566. /*
  567. * Begin unmount by attempting to remove all automounted mountpoints we added
  568. * in response to xdev traversals and referrals
  569. */
  570. static void nfs_umount_begin(struct super_block *sb)
  571. {
  572. struct nfs_server *server = NFS_SB(sb);
  573. struct rpc_clnt *rpc;
  574. /* -EIO all pending I/O */
  575. rpc = server->client_acl;
  576. if (!IS_ERR(rpc))
  577. rpc_killall_tasks(rpc);
  578. rpc = server->client;
  579. if (!IS_ERR(rpc))
  580. rpc_killall_tasks(rpc);
  581. }
  582. /*
  583. * Set the port number in an address. Be agnostic about the address family.
  584. */
  585. static void nfs_set_port(struct sockaddr *sap, unsigned short port)
  586. {
  587. switch (sap->sa_family) {
  588. case AF_INET: {
  589. struct sockaddr_in *ap = (struct sockaddr_in *)sap;
  590. ap->sin_port = htons(port);
  591. break;
  592. }
  593. case AF_INET6: {
  594. struct sockaddr_in6 *ap = (struct sockaddr_in6 *)sap;
  595. ap->sin6_port = htons(port);
  596. break;
  597. }
  598. }
  599. }
  600. /*
  601. * Sanity-check a server address provided by the mount command.
  602. *
  603. * Address family must be initialized, and address must not be
  604. * the ANY address for that family.
  605. */
  606. static int nfs_verify_server_address(struct sockaddr *addr)
  607. {
  608. switch (addr->sa_family) {
  609. case AF_INET: {
  610. struct sockaddr_in *sa = (struct sockaddr_in *)addr;
  611. return sa->sin_addr.s_addr != htonl(INADDR_ANY);
  612. }
  613. case AF_INET6: {
  614. struct in6_addr *sa = &((struct sockaddr_in6 *)addr)->sin6_addr;
  615. return !ipv6_addr_any(sa);
  616. }
  617. }
  618. return 0;
  619. }
  620. /*
  621. * Parse string addresses passed in via a mount option,
  622. * and construct a sockaddr based on the result.
  623. *
  624. * If address parsing fails, set the sockaddr's address
  625. * family to AF_UNSPEC to force nfs_verify_server_address()
  626. * to punt the mount.
  627. */
  628. static void nfs_parse_server_address(char *value,
  629. struct sockaddr *sap,
  630. size_t *len)
  631. {
  632. if (strchr(value, ':')) {
  633. struct sockaddr_in6 *ap = (struct sockaddr_in6 *)sap;
  634. u8 *addr = (u8 *)&ap->sin6_addr.in6_u;
  635. ap->sin6_family = AF_INET6;
  636. *len = sizeof(*ap);
  637. if (in6_pton(value, -1, addr, '\0', NULL))
  638. return;
  639. } else {
  640. struct sockaddr_in *ap = (struct sockaddr_in *)sap;
  641. u8 *addr = (u8 *)&ap->sin_addr.s_addr;
  642. ap->sin_family = AF_INET;
  643. *len = sizeof(*ap);
  644. if (in4_pton(value, -1, addr, '\0', NULL))
  645. return;
  646. }
  647. sap->sa_family = AF_UNSPEC;
  648. *len = 0;
  649. }
  650. /*
  651. * Error-check and convert a string of mount options from user space into
  652. * a data structure
  653. */
  654. static int nfs_parse_mount_options(char *raw,
  655. struct nfs_parsed_mount_data *mnt)
  656. {
  657. char *p, *string, *secdata;
  658. int rc;
  659. if (!raw) {
  660. dfprintk(MOUNT, "NFS: mount options string was NULL.\n");
  661. return 1;
  662. }
  663. dfprintk(MOUNT, "NFS: nfs mount opts='%s'\n", raw);
  664. secdata = alloc_secdata();
  665. if (!secdata)
  666. goto out_nomem;
  667. rc = security_sb_copy_data(raw, secdata);
  668. if (rc)
  669. goto out_security_failure;
  670. rc = security_sb_parse_opts_str(secdata, &mnt->lsm_opts);
  671. if (rc)
  672. goto out_security_failure;
  673. free_secdata(secdata);
  674. while ((p = strsep(&raw, ",")) != NULL) {
  675. substring_t args[MAX_OPT_ARGS];
  676. int option, token;
  677. if (!*p)
  678. continue;
  679. dfprintk(MOUNT, "NFS: parsing nfs mount option '%s'\n", p);
  680. token = match_token(p, nfs_mount_option_tokens, args);
  681. switch (token) {
  682. case Opt_soft:
  683. mnt->flags |= NFS_MOUNT_SOFT;
  684. break;
  685. case Opt_hard:
  686. mnt->flags &= ~NFS_MOUNT_SOFT;
  687. break;
  688. case Opt_intr:
  689. case Opt_nointr:
  690. break;
  691. case Opt_posix:
  692. mnt->flags |= NFS_MOUNT_POSIX;
  693. break;
  694. case Opt_noposix:
  695. mnt->flags &= ~NFS_MOUNT_POSIX;
  696. break;
  697. case Opt_cto:
  698. mnt->flags &= ~NFS_MOUNT_NOCTO;
  699. break;
  700. case Opt_nocto:
  701. mnt->flags |= NFS_MOUNT_NOCTO;
  702. break;
  703. case Opt_ac:
  704. mnt->flags &= ~NFS_MOUNT_NOAC;
  705. break;
  706. case Opt_noac:
  707. mnt->flags |= NFS_MOUNT_NOAC;
  708. break;
  709. case Opt_lock:
  710. mnt->flags &= ~NFS_MOUNT_NONLM;
  711. break;
  712. case Opt_nolock:
  713. mnt->flags |= NFS_MOUNT_NONLM;
  714. break;
  715. case Opt_v2:
  716. mnt->flags &= ~NFS_MOUNT_VER3;
  717. break;
  718. case Opt_v3:
  719. mnt->flags |= NFS_MOUNT_VER3;
  720. break;
  721. case Opt_udp:
  722. mnt->flags &= ~NFS_MOUNT_TCP;
  723. mnt->nfs_server.protocol = XPRT_TRANSPORT_UDP;
  724. mnt->timeo = 7;
  725. mnt->retrans = 5;
  726. break;
  727. case Opt_tcp:
  728. mnt->flags |= NFS_MOUNT_TCP;
  729. mnt->nfs_server.protocol = XPRT_TRANSPORT_TCP;
  730. mnt->timeo = 600;
  731. mnt->retrans = 2;
  732. break;
  733. case Opt_rdma:
  734. mnt->flags |= NFS_MOUNT_TCP; /* for side protocols */
  735. mnt->nfs_server.protocol = XPRT_TRANSPORT_RDMA;
  736. mnt->timeo = 600;
  737. mnt->retrans = 2;
  738. break;
  739. case Opt_acl:
  740. mnt->flags &= ~NFS_MOUNT_NOACL;
  741. break;
  742. case Opt_noacl:
  743. mnt->flags |= NFS_MOUNT_NOACL;
  744. break;
  745. case Opt_rdirplus:
  746. mnt->flags &= ~NFS_MOUNT_NORDIRPLUS;
  747. break;
  748. case Opt_nordirplus:
  749. mnt->flags |= NFS_MOUNT_NORDIRPLUS;
  750. break;
  751. case Opt_sharecache:
  752. mnt->flags &= ~NFS_MOUNT_UNSHARED;
  753. break;
  754. case Opt_nosharecache:
  755. mnt->flags |= NFS_MOUNT_UNSHARED;
  756. break;
  757. case Opt_port:
  758. if (match_int(args, &option))
  759. return 0;
  760. if (option < 0 || option > 65535)
  761. return 0;
  762. mnt->nfs_server.port = option;
  763. break;
  764. case Opt_rsize:
  765. if (match_int(args, &mnt->rsize))
  766. return 0;
  767. break;
  768. case Opt_wsize:
  769. if (match_int(args, &mnt->wsize))
  770. return 0;
  771. break;
  772. case Opt_bsize:
  773. if (match_int(args, &option))
  774. return 0;
  775. if (option < 0)
  776. return 0;
  777. mnt->bsize = option;
  778. break;
  779. case Opt_timeo:
  780. if (match_int(args, &mnt->timeo))
  781. return 0;
  782. break;
  783. case Opt_retrans:
  784. if (match_int(args, &mnt->retrans))
  785. return 0;
  786. break;
  787. case Opt_acregmin:
  788. if (match_int(args, &mnt->acregmin))
  789. return 0;
  790. break;
  791. case Opt_acregmax:
  792. if (match_int(args, &mnt->acregmax))
  793. return 0;
  794. break;
  795. case Opt_acdirmin:
  796. if (match_int(args, &mnt->acdirmin))
  797. return 0;
  798. break;
  799. case Opt_acdirmax:
  800. if (match_int(args, &mnt->acdirmax))
  801. return 0;
  802. break;
  803. case Opt_actimeo:
  804. if (match_int(args, &option))
  805. return 0;
  806. if (option < 0)
  807. return 0;
  808. mnt->acregmin =
  809. mnt->acregmax =
  810. mnt->acdirmin =
  811. mnt->acdirmax = option;
  812. break;
  813. case Opt_namelen:
  814. if (match_int(args, &mnt->namlen))
  815. return 0;
  816. break;
  817. case Opt_mountport:
  818. if (match_int(args, &option))
  819. return 0;
  820. if (option < 0 || option > 65535)
  821. return 0;
  822. mnt->mount_server.port = option;
  823. break;
  824. case Opt_mountvers:
  825. if (match_int(args, &option))
  826. return 0;
  827. if (option < 0)
  828. return 0;
  829. mnt->mount_server.version = option;
  830. break;
  831. case Opt_nfsvers:
  832. if (match_int(args, &option))
  833. return 0;
  834. switch (option) {
  835. case 2:
  836. mnt->flags &= ~NFS_MOUNT_VER3;
  837. break;
  838. case 3:
  839. mnt->flags |= NFS_MOUNT_VER3;
  840. break;
  841. default:
  842. goto out_unrec_vers;
  843. }
  844. break;
  845. case Opt_sec:
  846. string = match_strdup(args);
  847. if (string == NULL)
  848. goto out_nomem;
  849. token = match_token(string, nfs_secflavor_tokens, args);
  850. kfree(string);
  851. /*
  852. * The flags setting is for v2/v3. The flavor_len
  853. * setting is for v4. v2/v3 also need to know the
  854. * difference between NULL and UNIX.
  855. */
  856. switch (token) {
  857. case Opt_sec_none:
  858. mnt->flags &= ~NFS_MOUNT_SECFLAVOUR;
  859. mnt->auth_flavor_len = 0;
  860. mnt->auth_flavors[0] = RPC_AUTH_NULL;
  861. break;
  862. case Opt_sec_sys:
  863. mnt->flags &= ~NFS_MOUNT_SECFLAVOUR;
  864. mnt->auth_flavor_len = 0;
  865. mnt->auth_flavors[0] = RPC_AUTH_UNIX;
  866. break;
  867. case Opt_sec_krb5:
  868. mnt->flags |= NFS_MOUNT_SECFLAVOUR;
  869. mnt->auth_flavor_len = 1;
  870. mnt->auth_flavors[0] = RPC_AUTH_GSS_KRB5;
  871. break;
  872. case Opt_sec_krb5i:
  873. mnt->flags |= NFS_MOUNT_SECFLAVOUR;
  874. mnt->auth_flavor_len = 1;
  875. mnt->auth_flavors[0] = RPC_AUTH_GSS_KRB5I;
  876. break;
  877. case Opt_sec_krb5p:
  878. mnt->flags |= NFS_MOUNT_SECFLAVOUR;
  879. mnt->auth_flavor_len = 1;
  880. mnt->auth_flavors[0] = RPC_AUTH_GSS_KRB5P;
  881. break;
  882. case Opt_sec_lkey:
  883. mnt->flags |= NFS_MOUNT_SECFLAVOUR;
  884. mnt->auth_flavor_len = 1;
  885. mnt->auth_flavors[0] = RPC_AUTH_GSS_LKEY;
  886. break;
  887. case Opt_sec_lkeyi:
  888. mnt->flags |= NFS_MOUNT_SECFLAVOUR;
  889. mnt->auth_flavor_len = 1;
  890. mnt->auth_flavors[0] = RPC_AUTH_GSS_LKEYI;
  891. break;
  892. case Opt_sec_lkeyp:
  893. mnt->flags |= NFS_MOUNT_SECFLAVOUR;
  894. mnt->auth_flavor_len = 1;
  895. mnt->auth_flavors[0] = RPC_AUTH_GSS_LKEYP;
  896. break;
  897. case Opt_sec_spkm:
  898. mnt->flags |= NFS_MOUNT_SECFLAVOUR;
  899. mnt->auth_flavor_len = 1;
  900. mnt->auth_flavors[0] = RPC_AUTH_GSS_SPKM;
  901. break;
  902. case Opt_sec_spkmi:
  903. mnt->flags |= NFS_MOUNT_SECFLAVOUR;
  904. mnt->auth_flavor_len = 1;
  905. mnt->auth_flavors[0] = RPC_AUTH_GSS_SPKMI;
  906. break;
  907. case Opt_sec_spkmp:
  908. mnt->flags |= NFS_MOUNT_SECFLAVOUR;
  909. mnt->auth_flavor_len = 1;
  910. mnt->auth_flavors[0] = RPC_AUTH_GSS_SPKMP;
  911. break;
  912. default:
  913. goto out_unrec_sec;
  914. }
  915. break;
  916. case Opt_proto:
  917. string = match_strdup(args);
  918. if (string == NULL)
  919. goto out_nomem;
  920. token = match_token(string,
  921. nfs_xprt_protocol_tokens, args);
  922. kfree(string);
  923. switch (token) {
  924. case Opt_xprt_udp:
  925. mnt->flags &= ~NFS_MOUNT_TCP;
  926. mnt->nfs_server.protocol = XPRT_TRANSPORT_UDP;
  927. mnt->timeo = 7;
  928. mnt->retrans = 5;
  929. break;
  930. case Opt_xprt_tcp:
  931. mnt->flags |= NFS_MOUNT_TCP;
  932. mnt->nfs_server.protocol = XPRT_TRANSPORT_TCP;
  933. mnt->timeo = 600;
  934. mnt->retrans = 2;
  935. break;
  936. case Opt_xprt_rdma:
  937. /* vector side protocols to TCP */
  938. mnt->flags |= NFS_MOUNT_TCP;
  939. mnt->nfs_server.protocol = XPRT_TRANSPORT_RDMA;
  940. mnt->timeo = 600;
  941. mnt->retrans = 2;
  942. break;
  943. default:
  944. goto out_unrec_xprt;
  945. }
  946. break;
  947. case Opt_mountproto:
  948. string = match_strdup(args);
  949. if (string == NULL)
  950. goto out_nomem;
  951. token = match_token(string,
  952. nfs_xprt_protocol_tokens, args);
  953. kfree(string);
  954. switch (token) {
  955. case Opt_xprt_udp:
  956. mnt->mount_server.protocol = XPRT_TRANSPORT_UDP;
  957. break;
  958. case Opt_xprt_tcp:
  959. mnt->mount_server.protocol = XPRT_TRANSPORT_TCP;
  960. break;
  961. case Opt_xprt_rdma: /* not used for side protocols */
  962. default:
  963. goto out_unrec_xprt;
  964. }
  965. break;
  966. case Opt_addr:
  967. string = match_strdup(args);
  968. if (string == NULL)
  969. goto out_nomem;
  970. nfs_parse_server_address(string, (struct sockaddr *)
  971. &mnt->nfs_server.address,
  972. &mnt->nfs_server.addrlen);
  973. kfree(string);
  974. break;
  975. case Opt_clientaddr:
  976. string = match_strdup(args);
  977. if (string == NULL)
  978. goto out_nomem;
  979. kfree(mnt->client_address);
  980. mnt->client_address = string;
  981. break;
  982. case Opt_mounthost:
  983. string = match_strdup(args);
  984. if (string == NULL)
  985. goto out_nomem;
  986. kfree(mnt->mount_server.hostname);
  987. mnt->mount_server.hostname = string;
  988. break;
  989. case Opt_mountaddr:
  990. string = match_strdup(args);
  991. if (string == NULL)
  992. goto out_nomem;
  993. nfs_parse_server_address(string, (struct sockaddr *)
  994. &mnt->mount_server.address,
  995. &mnt->mount_server.addrlen);
  996. kfree(string);
  997. break;
  998. case Opt_userspace:
  999. case Opt_deprecated:
  1000. break;
  1001. default:
  1002. goto out_unknown;
  1003. }
  1004. }
  1005. nfs_set_port((struct sockaddr *)&mnt->nfs_server.address,
  1006. mnt->nfs_server.port);
  1007. return 1;
  1008. out_nomem:
  1009. printk(KERN_INFO "NFS: not enough memory to parse option\n");
  1010. return 0;
  1011. out_security_failure:
  1012. free_secdata(secdata);
  1013. printk(KERN_INFO "NFS: security options invalid: %d\n", rc);
  1014. return 0;
  1015. out_unrec_vers:
  1016. printk(KERN_INFO "NFS: unrecognized NFS version number\n");
  1017. return 0;
  1018. out_unrec_xprt:
  1019. printk(KERN_INFO "NFS: unrecognized transport protocol\n");
  1020. return 0;
  1021. out_unrec_sec:
  1022. printk(KERN_INFO "NFS: unrecognized security flavor\n");
  1023. return 0;
  1024. out_unknown:
  1025. printk(KERN_INFO "NFS: unknown mount option: %s\n", p);
  1026. return 0;
  1027. }
  1028. /*
  1029. * Use the remote server's MOUNT service to request the NFS file handle
  1030. * corresponding to the provided path.
  1031. */
  1032. static int nfs_try_mount(struct nfs_parsed_mount_data *args,
  1033. struct nfs_fh *root_fh)
  1034. {
  1035. struct sockaddr *sap = (struct sockaddr *)&args->mount_server.address;
  1036. char *hostname;
  1037. int status;
  1038. if (args->mount_server.version == 0) {
  1039. if (args->flags & NFS_MOUNT_VER3)
  1040. args->mount_server.version = NFS_MNT3_VERSION;
  1041. else
  1042. args->mount_server.version = NFS_MNT_VERSION;
  1043. }
  1044. if (args->mount_server.hostname)
  1045. hostname = args->mount_server.hostname;
  1046. else
  1047. hostname = args->nfs_server.hostname;
  1048. /*
  1049. * Construct the mount server's address.
  1050. */
  1051. if (args->mount_server.address.ss_family == AF_UNSPEC) {
  1052. memcpy(sap, &args->nfs_server.address,
  1053. args->nfs_server.addrlen);
  1054. args->mount_server.addrlen = args->nfs_server.addrlen;
  1055. }
  1056. /*
  1057. * autobind will be used if mount_server.port == 0
  1058. */
  1059. nfs_set_port(sap, args->mount_server.port);
  1060. /*
  1061. * Now ask the mount server to map our export path
  1062. * to a file handle.
  1063. */
  1064. status = nfs_mount(sap,
  1065. args->mount_server.addrlen,
  1066. hostname,
  1067. args->nfs_server.export_path,
  1068. args->mount_server.version,
  1069. args->mount_server.protocol,
  1070. root_fh);
  1071. if (status == 0)
  1072. return 0;
  1073. dfprintk(MOUNT, "NFS: unable to mount server %s, error %d",
  1074. hostname, status);
  1075. return status;
  1076. }
  1077. /*
  1078. * Validate the NFS2/NFS3 mount data
  1079. * - fills in the mount root filehandle
  1080. *
  1081. * For option strings, user space handles the following behaviors:
  1082. *
  1083. * + DNS: mapping server host name to IP address ("addr=" option)
  1084. *
  1085. * + failure mode: how to behave if a mount request can't be handled
  1086. * immediately ("fg/bg" option)
  1087. *
  1088. * + retry: how often to retry a mount request ("retry=" option)
  1089. *
  1090. * + breaking back: trying proto=udp after proto=tcp, v2 after v3,
  1091. * mountproto=tcp after mountproto=udp, and so on
  1092. */
  1093. static int nfs_validate_mount_data(void *options,
  1094. struct nfs_parsed_mount_data *args,
  1095. struct nfs_fh *mntfh,
  1096. const char *dev_name)
  1097. {
  1098. struct nfs_mount_data *data = (struct nfs_mount_data *)options;
  1099. if (data == NULL)
  1100. goto out_no_data;
  1101. args->flags = (NFS_MOUNT_VER3 | NFS_MOUNT_TCP);
  1102. args->rsize = NFS_MAX_FILE_IO_SIZE;
  1103. args->wsize = NFS_MAX_FILE_IO_SIZE;
  1104. args->timeo = 600;
  1105. args->retrans = 2;
  1106. args->acregmin = 3;
  1107. args->acregmax = 60;
  1108. args->acdirmin = 30;
  1109. args->acdirmax = 60;
  1110. args->mount_server.port = 0; /* autobind unless user sets port */
  1111. args->mount_server.protocol = XPRT_TRANSPORT_UDP;
  1112. args->nfs_server.port = 0; /* autobind unless user sets port */
  1113. args->nfs_server.protocol = XPRT_TRANSPORT_TCP;
  1114. switch (data->version) {
  1115. case 1:
  1116. data->namlen = 0;
  1117. case 2:
  1118. data->bsize = 0;
  1119. case 3:
  1120. if (data->flags & NFS_MOUNT_VER3)
  1121. goto out_no_v3;
  1122. data->root.size = NFS2_FHSIZE;
  1123. memcpy(data->root.data, data->old_root.data, NFS2_FHSIZE);
  1124. case 4:
  1125. if (data->flags & NFS_MOUNT_SECFLAVOUR)
  1126. goto out_no_sec;
  1127. case 5:
  1128. memset(data->context, 0, sizeof(data->context));
  1129. case 6:
  1130. if (data->flags & NFS_MOUNT_VER3) {
  1131. if (data->root.size > NFS3_FHSIZE || data->root.size == 0)
  1132. goto out_invalid_fh;
  1133. mntfh->size = data->root.size;
  1134. } else
  1135. mntfh->size = NFS2_FHSIZE;
  1136. memcpy(mntfh->data, data->root.data, mntfh->size);
  1137. if (mntfh->size < sizeof(mntfh->data))
  1138. memset(mntfh->data + mntfh->size, 0,
  1139. sizeof(mntfh->data) - mntfh->size);
  1140. /*
  1141. * Translate to nfs_parsed_mount_data, which nfs_fill_super
  1142. * can deal with.
  1143. */
  1144. args->flags = data->flags;
  1145. args->rsize = data->rsize;
  1146. args->wsize = data->wsize;
  1147. args->timeo = data->timeo;
  1148. args->retrans = data->retrans;
  1149. args->acregmin = data->acregmin;
  1150. args->acregmax = data->acregmax;
  1151. args->acdirmin = data->acdirmin;
  1152. args->acdirmax = data->acdirmax;
  1153. memcpy(&args->nfs_server.address, &data->addr,
  1154. sizeof(data->addr));
  1155. args->nfs_server.addrlen = sizeof(data->addr);
  1156. if (!nfs_verify_server_address((struct sockaddr *)
  1157. &args->nfs_server.address))
  1158. goto out_no_address;
  1159. if (!(data->flags & NFS_MOUNT_TCP))
  1160. args->nfs_server.protocol = XPRT_TRANSPORT_UDP;
  1161. /* N.B. caller will free nfs_server.hostname in all cases */
  1162. args->nfs_server.hostname = kstrdup(data->hostname, GFP_KERNEL);
  1163. args->namlen = data->namlen;
  1164. args->bsize = data->bsize;
  1165. args->auth_flavors[0] = data->pseudoflavor;
  1166. if (!args->nfs_server.hostname)
  1167. goto out_nomem;
  1168. /*
  1169. * The legacy version 6 binary mount data from userspace has a
  1170. * field used only to transport selinux information into the
  1171. * the kernel. To continue to support that functionality we
  1172. * have a touch of selinux knowledge here in the NFS code. The
  1173. * userspace code converted context=blah to just blah so we are
  1174. * converting back to the full string selinux understands.
  1175. */
  1176. if (data->context[0]){
  1177. #ifdef CONFIG_SECURITY_SELINUX
  1178. int rc;
  1179. char *opts_str = kmalloc(sizeof(data->context) + 8, GFP_KERNEL);
  1180. if (!opts_str)
  1181. return -ENOMEM;
  1182. strcpy(opts_str, "context=");
  1183. data->context[NFS_MAX_CONTEXT_LEN] = '\0';
  1184. strcat(opts_str, &data->context[0]);
  1185. rc = security_sb_parse_opts_str(opts_str, &args->lsm_opts);
  1186. kfree(opts_str);
  1187. if (rc)
  1188. return rc;
  1189. #else
  1190. return -EINVAL;
  1191. #endif
  1192. }
  1193. break;
  1194. default: {
  1195. unsigned int len;
  1196. char *c;
  1197. int status;
  1198. if (nfs_parse_mount_options((char *)options, args) == 0)
  1199. return -EINVAL;
  1200. if (!nfs_verify_server_address((struct sockaddr *)
  1201. &args->nfs_server.address))
  1202. goto out_no_address;
  1203. c = strchr(dev_name, ':');
  1204. if (c == NULL)
  1205. return -EINVAL;
  1206. len = c - dev_name;
  1207. /* N.B. caller will free nfs_server.hostname in all cases */
  1208. args->nfs_server.hostname = kstrndup(dev_name, len, GFP_KERNEL);
  1209. if (!args->nfs_server.hostname)
  1210. goto out_nomem;
  1211. c++;
  1212. if (strlen(c) > NFS_MAXPATHLEN)
  1213. return -ENAMETOOLONG;
  1214. args->nfs_server.export_path = c;
  1215. status = nfs_try_mount(args, mntfh);
  1216. if (status)
  1217. return status;
  1218. break;
  1219. }
  1220. }
  1221. if (!(args->flags & NFS_MOUNT_SECFLAVOUR))
  1222. args->auth_flavors[0] = RPC_AUTH_UNIX;
  1223. #ifndef CONFIG_NFS_V3
  1224. if (args->flags & NFS_MOUNT_VER3)
  1225. goto out_v3_not_compiled;
  1226. #endif /* !CONFIG_NFS_V3 */
  1227. return 0;
  1228. out_no_data:
  1229. dfprintk(MOUNT, "NFS: mount program didn't pass any mount data\n");
  1230. return -EINVAL;
  1231. out_no_v3:
  1232. dfprintk(MOUNT, "NFS: nfs_mount_data version %d does not support v3\n",
  1233. data->version);
  1234. return -EINVAL;
  1235. out_no_sec:
  1236. dfprintk(MOUNT, "NFS: nfs_mount_data version supports only AUTH_SYS\n");
  1237. return -EINVAL;
  1238. #ifndef CONFIG_NFS_V3
  1239. out_v3_not_compiled:
  1240. dfprintk(MOUNT, "NFS: NFSv3 is not compiled into kernel\n");
  1241. return -EPROTONOSUPPORT;
  1242. #endif /* !CONFIG_NFS_V3 */
  1243. out_nomem:
  1244. dfprintk(MOUNT, "NFS: not enough memory to handle mount options\n");
  1245. return -ENOMEM;
  1246. out_no_address:
  1247. dfprintk(MOUNT, "NFS: mount program didn't pass remote address\n");
  1248. return -EINVAL;
  1249. out_invalid_fh:
  1250. dfprintk(MOUNT, "NFS: invalid root filehandle\n");
  1251. return -EINVAL;
  1252. }
  1253. static int
  1254. nfs_compare_remount_data(struct nfs_server *nfss,
  1255. struct nfs_parsed_mount_data *data)
  1256. {
  1257. if (data->flags != nfss->flags ||
  1258. data->rsize != nfss->rsize ||
  1259. data->wsize != nfss->wsize ||
  1260. data->retrans != nfss->client->cl_timeout->to_retries ||
  1261. data->auth_flavors[0] != nfss->client->cl_auth->au_flavor ||
  1262. data->acregmin != nfss->acregmin / HZ ||
  1263. data->acregmax != nfss->acregmax / HZ ||
  1264. data->acdirmin != nfss->acdirmin / HZ ||
  1265. data->acdirmax != nfss->acdirmax / HZ ||
  1266. data->timeo != (10U * nfss->client->cl_timeout->to_initval / HZ) ||
  1267. data->nfs_server.addrlen != nfss->nfs_client->cl_addrlen ||
  1268. memcmp(&data->nfs_server.address, &nfss->nfs_client->cl_addr,
  1269. data->nfs_server.addrlen) != 0)
  1270. return -EINVAL;
  1271. return 0;
  1272. }
  1273. static int
  1274. nfs_remount(struct super_block *sb, int *flags, char *raw_data)
  1275. {
  1276. int error;
  1277. struct nfs_server *nfss = sb->s_fs_info;
  1278. struct nfs_parsed_mount_data *data;
  1279. struct nfs_mount_data *options = (struct nfs_mount_data *)raw_data;
  1280. struct nfs4_mount_data *options4 = (struct nfs4_mount_data *)raw_data;
  1281. /*
  1282. * Userspace mount programs that send binary options generally send
  1283. * them populated with default values. We have no way to know which
  1284. * ones were explicitly specified. Fall back to legacy behavior and
  1285. * just return success.
  1286. */
  1287. if ((sb->s_type == &nfs4_fs_type && options4->version == 1) ||
  1288. (sb->s_type == &nfs_fs_type && options->version >= 1 &&
  1289. options->version <= 6))
  1290. return 0;
  1291. data = kzalloc(sizeof(*data), GFP_KERNEL);
  1292. if (data == NULL)
  1293. return -ENOMEM;
  1294. /* fill out struct with values from existing mount */
  1295. data->flags = nfss->flags;
  1296. data->rsize = nfss->rsize;
  1297. data->wsize = nfss->wsize;
  1298. data->retrans = nfss->client->cl_timeout->to_retries;
  1299. data->auth_flavors[0] = nfss->client->cl_auth->au_flavor;
  1300. data->acregmin = nfss->acregmin / HZ;
  1301. data->acregmax = nfss->acregmax / HZ;
  1302. data->acdirmin = nfss->acdirmin / HZ;
  1303. data->acdirmax = nfss->acdirmax / HZ;
  1304. data->timeo = 10U * nfss->client->cl_timeout->to_initval / HZ;
  1305. data->nfs_server.addrlen = nfss->nfs_client->cl_addrlen;
  1306. memcpy(&data->nfs_server.address, &nfss->nfs_client->cl_addr,
  1307. data->nfs_server.addrlen);
  1308. /* overwrite those values with any that were specified */
  1309. error = nfs_parse_mount_options((char *)options, data);
  1310. if (error < 0)
  1311. goto out;
  1312. /* compare new mount options with old ones */
  1313. error = nfs_compare_remount_data(nfss, data);
  1314. out:
  1315. kfree(data);
  1316. return error;
  1317. }
  1318. /*
  1319. * Initialise the common bits of the superblock
  1320. */
  1321. static inline void nfs_initialise_sb(struct super_block *sb)
  1322. {
  1323. struct nfs_server *server = NFS_SB(sb);
  1324. sb->s_magic = NFS_SUPER_MAGIC;
  1325. /* We probably want something more informative here */
  1326. snprintf(sb->s_id, sizeof(sb->s_id),
  1327. "%x:%x", MAJOR(sb->s_dev), MINOR(sb->s_dev));
  1328. if (sb->s_blocksize == 0)
  1329. sb->s_blocksize = nfs_block_bits(server->wsize,
  1330. &sb->s_blocksize_bits);
  1331. if (server->flags & NFS_MOUNT_NOAC)
  1332. sb->s_flags |= MS_SYNCHRONOUS;
  1333. nfs_super_set_maxbytes(sb, server->maxfilesize);
  1334. }
  1335. /*
  1336. * Finish setting up an NFS2/3 superblock
  1337. */
  1338. static void nfs_fill_super(struct super_block *sb,
  1339. struct nfs_parsed_mount_data *data)
  1340. {
  1341. struct nfs_server *server = NFS_SB(sb);
  1342. sb->s_blocksize_bits = 0;
  1343. sb->s_blocksize = 0;
  1344. if (data->bsize)
  1345. sb->s_blocksize = nfs_block_size(data->bsize, &sb->s_blocksize_bits);
  1346. if (server->flags & NFS_MOUNT_VER3) {
  1347. /* The VFS shouldn't apply the umask to mode bits. We will do
  1348. * so ourselves when necessary.
  1349. */
  1350. sb->s_flags |= MS_POSIXACL;
  1351. sb->s_time_gran = 1;
  1352. }
  1353. sb->s_op = &nfs_sops;
  1354. nfs_initialise_sb(sb);
  1355. }
  1356. /*
  1357. * Finish setting up a cloned NFS2/3 superblock
  1358. */
  1359. static void nfs_clone_super(struct super_block *sb,
  1360. const struct super_block *old_sb)
  1361. {
  1362. struct nfs_server *server = NFS_SB(sb);
  1363. sb->s_blocksize_bits = old_sb->s_blocksize_bits;
  1364. sb->s_blocksize = old_sb->s_blocksize;
  1365. sb->s_maxbytes = old_sb->s_maxbytes;
  1366. if (server->flags & NFS_MOUNT_VER3) {
  1367. /* The VFS shouldn't apply the umask to mode bits. We will do
  1368. * so ourselves when necessary.
  1369. */
  1370. sb->s_flags |= MS_POSIXACL;
  1371. sb->s_time_gran = 1;
  1372. }
  1373. sb->s_op = old_sb->s_op;
  1374. nfs_initialise_sb(sb);
  1375. }
  1376. #define NFS_MS_MASK (MS_RDONLY|MS_NOSUID|MS_NODEV|MS_NOEXEC|MS_SYNCHRONOUS)
  1377. static int nfs_compare_mount_options(const struct super_block *s, const struct nfs_server *b, int flags)
  1378. {
  1379. const struct nfs_server *a = s->s_fs_info;
  1380. const struct rpc_clnt *clnt_a = a->client;
  1381. const struct rpc_clnt *clnt_b = b->client;
  1382. if ((s->s_flags & NFS_MS_MASK) != (flags & NFS_MS_MASK))
  1383. goto Ebusy;
  1384. if (a->nfs_client != b->nfs_client)
  1385. goto Ebusy;
  1386. if (a->flags != b->flags)
  1387. goto Ebusy;
  1388. if (a->wsize != b->wsize)
  1389. goto Ebusy;
  1390. if (a->rsize != b->rsize)
  1391. goto Ebusy;
  1392. if (a->acregmin != b->acregmin)
  1393. goto Ebusy;
  1394. if (a->acregmax != b->acregmax)
  1395. goto Ebusy;
  1396. if (a->acdirmin != b->acdirmin)
  1397. goto Ebusy;
  1398. if (a->acdirmax != b->acdirmax)
  1399. goto Ebusy;
  1400. if (clnt_a->cl_auth->au_flavor != clnt_b->cl_auth->au_flavor)
  1401. goto Ebusy;
  1402. return 1;
  1403. Ebusy:
  1404. return 0;
  1405. }
  1406. struct nfs_sb_mountdata {
  1407. struct nfs_server *server;
  1408. int mntflags;
  1409. };
  1410. static int nfs_set_super(struct super_block *s, void *data)
  1411. {
  1412. struct nfs_sb_mountdata *sb_mntdata = data;
  1413. struct nfs_server *server = sb_mntdata->server;
  1414. int ret;
  1415. s->s_flags = sb_mntdata->mntflags;
  1416. s->s_fs_info = server;
  1417. ret = set_anon_super(s, server);
  1418. if (ret == 0)
  1419. server->s_dev = s->s_dev;
  1420. return ret;
  1421. }
  1422. static int nfs_compare_super_address(struct nfs_server *server1,
  1423. struct nfs_server *server2)
  1424. {
  1425. struct sockaddr *sap1, *sap2;
  1426. sap1 = (struct sockaddr *)&server1->nfs_client->cl_addr;
  1427. sap2 = (struct sockaddr *)&server2->nfs_client->cl_addr;
  1428. if (sap1->sa_family != sap2->sa_family)
  1429. return 0;
  1430. switch (sap1->sa_family) {
  1431. case AF_INET: {
  1432. struct sockaddr_in *sin1 = (struct sockaddr_in *)sap1;
  1433. struct sockaddr_in *sin2 = (struct sockaddr_in *)sap2;
  1434. if (sin1->sin_addr.s_addr != sin2->sin_addr.s_addr)
  1435. return 0;
  1436. if (sin1->sin_port != sin2->sin_port)
  1437. return 0;
  1438. break;
  1439. }
  1440. case AF_INET6: {
  1441. struct sockaddr_in6 *sin1 = (struct sockaddr_in6 *)sap1;
  1442. struct sockaddr_in6 *sin2 = (struct sockaddr_in6 *)sap2;
  1443. if (!ipv6_addr_equal(&sin1->sin6_addr, &sin2->sin6_addr))
  1444. return 0;
  1445. if (sin1->sin6_port != sin2->sin6_port)
  1446. return 0;
  1447. break;
  1448. }
  1449. default:
  1450. return 0;
  1451. }
  1452. return 1;
  1453. }
  1454. static int nfs_compare_super(struct super_block *sb, void *data)
  1455. {
  1456. struct nfs_sb_mountdata *sb_mntdata = data;
  1457. struct nfs_server *server = sb_mntdata->server, *old = NFS_SB(sb);
  1458. int mntflags = sb_mntdata->mntflags;
  1459. if (!nfs_compare_super_address(old, server))
  1460. return 0;
  1461. /* Note: NFS_MOUNT_UNSHARED == NFS4_MOUNT_UNSHARED */
  1462. if (old->flags & NFS_MOUNT_UNSHARED)
  1463. return 0;
  1464. if (memcmp(&old->fsid, &server->fsid, sizeof(old->fsid)) != 0)
  1465. return 0;
  1466. return nfs_compare_mount_options(sb, server, mntflags);
  1467. }
  1468. static int nfs_bdi_register(struct nfs_server *server)
  1469. {
  1470. return bdi_register_dev(&server->backing_dev_info, server->s_dev);
  1471. }
  1472. static int nfs_get_sb(struct file_system_type *fs_type,
  1473. int flags, const char *dev_name, void *raw_data, struct vfsmount *mnt)
  1474. {
  1475. struct nfs_server *server = NULL;
  1476. struct super_block *s;
  1477. struct nfs_parsed_mount_data *data;
  1478. struct nfs_fh *mntfh;
  1479. struct dentry *mntroot;
  1480. int (*compare_super)(struct super_block *, void *) = nfs_compare_super;
  1481. struct nfs_sb_mountdata sb_mntdata = {
  1482. .mntflags = flags,
  1483. };
  1484. int error = -ENOMEM;
  1485. data = kzalloc(sizeof(*data), GFP_KERNEL);
  1486. mntfh = kzalloc(sizeof(*mntfh), GFP_KERNEL);
  1487. if (data == NULL || mntfh == NULL)
  1488. goto out_free_fh;
  1489. security_init_mnt_opts(&data->lsm_opts);
  1490. /* Validate the mount data */
  1491. error = nfs_validate_mount_data(raw_data, data, mntfh, dev_name);
  1492. if (error < 0)
  1493. goto out;
  1494. /* Get a volume representation */
  1495. server = nfs_create_server(data, mntfh);
  1496. if (IS_ERR(server)) {
  1497. error = PTR_ERR(server);
  1498. goto out;
  1499. }
  1500. sb_mntdata.server = server;
  1501. if (server->flags & NFS_MOUNT_UNSHARED)
  1502. compare_super = NULL;
  1503. /* Get a superblock - note that we may end up sharing one that already exists */
  1504. s = sget(fs_type, compare_super, nfs_set_super, &sb_mntdata);
  1505. if (IS_ERR(s)) {
  1506. error = PTR_ERR(s);
  1507. goto out_err_nosb;
  1508. }
  1509. if (s->s_fs_info != server) {
  1510. nfs_free_server(server);
  1511. server = NULL;
  1512. } else {
  1513. error = nfs_bdi_register(server);
  1514. if (error)
  1515. goto error_splat_super;
  1516. }
  1517. if (!s->s_root) {
  1518. /* initial superblock/root creation */
  1519. nfs_fill_super(s, data);
  1520. }
  1521. mntroot = nfs_get_root(s, mntfh);
  1522. if (IS_ERR(mntroot)) {
  1523. error = PTR_ERR(mntroot);
  1524. goto error_splat_super;
  1525. }
  1526. error = security_sb_set_mnt_opts(s, &data->lsm_opts);
  1527. if (error)
  1528. goto error_splat_root;
  1529. s->s_flags |= MS_ACTIVE;
  1530. mnt->mnt_sb = s;
  1531. mnt->mnt_root = mntroot;
  1532. error = 0;
  1533. out:
  1534. kfree(data->nfs_server.hostname);
  1535. kfree(data->mount_server.hostname);
  1536. security_free_mnt_opts(&data->lsm_opts);
  1537. out_free_fh:
  1538. kfree(mntfh);
  1539. kfree(data);
  1540. return error;
  1541. out_err_nosb:
  1542. nfs_free_server(server);
  1543. goto out;
  1544. error_splat_root:
  1545. dput(mntroot);
  1546. error_splat_super:
  1547. up_write(&s->s_umount);
  1548. deactivate_super(s);
  1549. goto out;
  1550. }
  1551. /*
  1552. * Destroy an NFS2/3 superblock
  1553. */
  1554. static void nfs_kill_super(struct super_block *s)
  1555. {
  1556. struct nfs_server *server = NFS_SB(s);
  1557. bdi_unregister(&server->backing_dev_info);
  1558. kill_anon_super(s);
  1559. nfs_free_server(server);
  1560. }
  1561. /*
  1562. * Clone an NFS2/3 server record on xdev traversal (FSID-change)
  1563. */
  1564. static int nfs_xdev_get_sb(struct file_system_type *fs_type, int flags,
  1565. const char *dev_name, void *raw_data,
  1566. struct vfsmount *mnt)
  1567. {
  1568. struct nfs_clone_mount *data = raw_data;
  1569. struct super_block *s;
  1570. struct nfs_server *server;
  1571. struct dentry *mntroot;
  1572. int (*compare_super)(struct super_block *, void *) = nfs_compare_super;
  1573. struct nfs_sb_mountdata sb_mntdata = {
  1574. .mntflags = flags,
  1575. };
  1576. int error;
  1577. dprintk("--> nfs_xdev_get_sb()\n");
  1578. /* create a new volume representation */
  1579. server = nfs_clone_server(NFS_SB(data->sb), data->fh, data->fattr);
  1580. if (IS_ERR(server)) {
  1581. error = PTR_ERR(server);
  1582. goto out_err_noserver;
  1583. }
  1584. sb_mntdata.server = server;
  1585. if (server->flags & NFS_MOUNT_UNSHARED)
  1586. compare_super = NULL;
  1587. /* Get a superblock - note that we may end up sharing one that already exists */
  1588. s = sget(&nfs_fs_type, compare_super, nfs_set_super, &sb_mntdata);
  1589. if (IS_ERR(s)) {
  1590. error = PTR_ERR(s);
  1591. goto out_err_nosb;
  1592. }
  1593. if (s->s_fs_info != server) {
  1594. nfs_free_server(server);
  1595. server = NULL;
  1596. } else {
  1597. error = nfs_bdi_register(server);
  1598. if (error)
  1599. goto error_splat_super;
  1600. }
  1601. if (!s->s_root) {
  1602. /* initial superblock/root creation */
  1603. nfs_clone_super(s, data->sb);
  1604. }
  1605. mntroot = nfs_get_root(s, data->fh);
  1606. if (IS_ERR(mntroot)) {
  1607. error = PTR_ERR(mntroot);
  1608. goto error_splat_super;
  1609. }
  1610. if (mntroot->d_inode->i_op != NFS_SB(s)->nfs_client->rpc_ops->dir_inode_ops) {
  1611. dput(mntroot);
  1612. error = -ESTALE;
  1613. goto error_splat_super;
  1614. }
  1615. s->s_flags |= MS_ACTIVE;
  1616. mnt->mnt_sb = s;
  1617. mnt->mnt_root = mntroot;
  1618. /* clone any lsm security options from the parent to the new sb */
  1619. security_sb_clone_mnt_opts(data->sb, s);
  1620. dprintk("<-- nfs_xdev_get_sb() = 0\n");
  1621. return 0;
  1622. out_err_nosb:
  1623. nfs_free_server(server);
  1624. out_err_noserver:
  1625. dprintk("<-- nfs_xdev_get_sb() = %d [error]\n", error);
  1626. return error;
  1627. error_splat_super:
  1628. up_write(&s->s_umount);
  1629. deactivate_super(s);
  1630. dprintk("<-- nfs_xdev_get_sb() = %d [splat]\n", error);
  1631. return error;
  1632. }
  1633. #ifdef CONFIG_NFS_V4
  1634. /*
  1635. * Finish setting up a cloned NFS4 superblock
  1636. */
  1637. static void nfs4_clone_super(struct super_block *sb,
  1638. const struct super_block *old_sb)
  1639. {
  1640. sb->s_blocksize_bits = old_sb->s_blocksize_bits;
  1641. sb->s_blocksize = old_sb->s_blocksize;
  1642. sb->s_maxbytes = old_sb->s_maxbytes;
  1643. sb->s_time_gran = 1;
  1644. sb->s_op = old_sb->s_op;
  1645. nfs_initialise_sb(sb);
  1646. }
  1647. /*
  1648. * Set up an NFS4 superblock
  1649. */
  1650. static void nfs4_fill_super(struct super_block *sb)
  1651. {
  1652. sb->s_time_gran = 1;
  1653. sb->s_op = &nfs4_sops;
  1654. nfs_initialise_sb(sb);
  1655. }
  1656. /*
  1657. * Validate NFSv4 mount options
  1658. */
  1659. static int nfs4_validate_mount_data(void *options,
  1660. struct nfs_parsed_mount_data *args,
  1661. const char *dev_name)
  1662. {
  1663. struct sockaddr_in *ap;
  1664. struct nfs4_mount_data *data = (struct nfs4_mount_data *)options;
  1665. char *c;
  1666. if (data == NULL)
  1667. goto out_no_data;
  1668. args->rsize = NFS_MAX_FILE_IO_SIZE;
  1669. args->wsize = NFS_MAX_FILE_IO_SIZE;
  1670. args->timeo = 600;
  1671. args->retrans = 2;
  1672. args->acregmin = 3;
  1673. args->acregmax = 60;
  1674. args->acdirmin = 30;
  1675. args->acdirmax = 60;
  1676. args->nfs_server.port = NFS_PORT; /* 2049 unless user set port= */
  1677. args->nfs_server.protocol = XPRT_TRANSPORT_TCP;
  1678. switch (data->version) {
  1679. case 1:
  1680. ap = (struct sockaddr_in *)&args->nfs_server.address;
  1681. if (data->host_addrlen > sizeof(args->nfs_server.address))
  1682. goto out_no_address;
  1683. if (data->host_addrlen == 0)
  1684. goto out_no_address;
  1685. args->nfs_server.addrlen = data->host_addrlen;
  1686. if (copy_from_user(ap, data->host_addr, data->host_addrlen))
  1687. return -EFAULT;
  1688. if (!nfs_verify_server_address((struct sockaddr *)
  1689. &args->nfs_server.address))
  1690. goto out_no_address;
  1691. switch (data->auth_flavourlen) {
  1692. case 0:
  1693. args->auth_flavors[0] = RPC_AUTH_UNIX;
  1694. break;
  1695. case 1:
  1696. if (copy_from_user(&args->auth_flavors[0],
  1697. data->auth_flavours,
  1698. sizeof(args->auth_flavors[0])))
  1699. return -EFAULT;
  1700. break;
  1701. default:
  1702. goto out_inval_auth;
  1703. }
  1704. c = strndup_user(data->hostname.data, NFS4_MAXNAMLEN);
  1705. if (IS_ERR(c))
  1706. return PTR_ERR(c);
  1707. args->nfs_server.hostname = c;
  1708. c = strndup_user(data->mnt_path.data, NFS4_MAXPATHLEN);
  1709. if (IS_ERR(c))
  1710. return PTR_ERR(c);
  1711. args->nfs_server.export_path = c;
  1712. dfprintk(MOUNT, "NFS: MNTPATH: '%s'\n", c);
  1713. c = strndup_user(data->client_addr.data, 16);
  1714. if (IS_ERR(c))
  1715. return PTR_ERR(c);
  1716. args->client_address = c;
  1717. /*
  1718. * Translate to nfs_parsed_mount_data, which nfs4_fill_super
  1719. * can deal with.
  1720. */
  1721. args->flags = data->flags & NFS4_MOUNT_FLAGMASK;
  1722. args->rsize = data->rsize;
  1723. args->wsize = data->wsize;
  1724. args->timeo = data->timeo;
  1725. args->retrans = data->retrans;
  1726. args->acregmin = data->acregmin;
  1727. args->acregmax = data->acregmax;
  1728. args->acdirmin = data->acdirmin;
  1729. args->acdirmax = data->acdirmax;
  1730. args->nfs_server.protocol = data->proto;
  1731. break;
  1732. default: {
  1733. unsigned int len;
  1734. if (nfs_parse_mount_options((char *)options, args) == 0)
  1735. return -EINVAL;
  1736. if (!nfs_verify_server_address((struct sockaddr *)
  1737. &args->nfs_server.address))
  1738. return -EINVAL;
  1739. switch (args->auth_flavor_len) {
  1740. case 0:
  1741. args->auth_flavors[0] = RPC_AUTH_UNIX;
  1742. break;
  1743. case 1:
  1744. break;
  1745. default:
  1746. goto out_inval_auth;
  1747. }
  1748. /*
  1749. * Split "dev_name" into "hostname:mntpath".
  1750. */
  1751. c = strchr(dev_name, ':');
  1752. if (c == NULL)
  1753. return -EINVAL;
  1754. /* while calculating len, pretend ':' is '\0' */
  1755. len = c - dev_name;
  1756. if (len > NFS4_MAXNAMLEN)
  1757. return -ENAMETOOLONG;
  1758. /* N.B. caller will free nfs_server.hostname in all cases */
  1759. args->nfs_server.hostname = kstrndup(dev_name, len, GFP_KERNEL);
  1760. if (!args->nfs_server.hostname)
  1761. goto out_nomem;
  1762. c++; /* step over the ':' */
  1763. len = strlen(c);
  1764. if (len > NFS4_MAXPATHLEN)
  1765. return -ENAMETOOLONG;
  1766. args->nfs_server.export_path = kstrndup(c, len, GFP_KERNEL);
  1767. if (!args->nfs_server.export_path)
  1768. goto out_nomem;
  1769. dprintk("NFS: MNTPATH: '%s'\n", args->nfs_server.export_path);
  1770. if (args->client_address == NULL)
  1771. goto out_no_client_address;
  1772. break;
  1773. }
  1774. }
  1775. return 0;
  1776. out_no_data:
  1777. dfprintk(MOUNT, "NFS4: mount program didn't pass any mount data\n");
  1778. return -EINVAL;
  1779. out_inval_auth:
  1780. dfprintk(MOUNT, "NFS4: Invalid number of RPC auth flavours %d\n",
  1781. data->auth_flavourlen);
  1782. return -EINVAL;
  1783. out_nomem:
  1784. dfprintk(MOUNT, "NFS4: not enough memory to handle mount options\n");
  1785. return -ENOMEM;
  1786. out_no_address:
  1787. dfprintk(MOUNT, "NFS4: mount program didn't pass remote address\n");
  1788. return -EINVAL;
  1789. out_no_client_address:
  1790. dfprintk(MOUNT, "NFS4: mount program didn't pass callback address\n");
  1791. return -EINVAL;
  1792. }
  1793. /*
  1794. * Get the superblock for an NFS4 mountpoint
  1795. */
  1796. static int nfs4_get_sb(struct file_system_type *fs_type,
  1797. int flags, const char *dev_name, void *raw_data, struct vfsmount *mnt)
  1798. {
  1799. struct nfs_parsed_mount_data *data;
  1800. struct super_block *s;
  1801. struct nfs_server *server;
  1802. struct nfs_fh *mntfh;
  1803. struct dentry *mntroot;
  1804. int (*compare_super)(struct super_block *, void *) = nfs_compare_super;
  1805. struct nfs_sb_mountdata sb_mntdata = {
  1806. .mntflags = flags,
  1807. };
  1808. int error = -ENOMEM;
  1809. data = kzalloc(sizeof(*data), GFP_KERNEL);
  1810. mntfh = kzalloc(sizeof(*mntfh), GFP_KERNEL);
  1811. if (data == NULL || mntfh == NULL)
  1812. goto out_free_fh;
  1813. security_init_mnt_opts(&data->lsm_opts);
  1814. /* Validate the mount data */
  1815. error = nfs4_validate_mount_data(raw_data, data, dev_name);
  1816. if (error < 0)
  1817. goto out;
  1818. /* Get a volume representation */
  1819. server = nfs4_create_server(data, mntfh);
  1820. if (IS_ERR(server)) {
  1821. error = PTR_ERR(server);
  1822. goto out;
  1823. }
  1824. sb_mntdata.server = server;
  1825. if (server->flags & NFS4_MOUNT_UNSHARED)
  1826. compare_super = NULL;
  1827. /* Get a superblock - note that we may end up sharing one that already exists */
  1828. s = sget(fs_type, compare_super, nfs_set_super, &sb_mntdata);
  1829. if (IS_ERR(s)) {
  1830. error = PTR_ERR(s);
  1831. goto out_free;
  1832. }
  1833. if (s->s_fs_info != server) {
  1834. nfs_free_server(server);
  1835. server = NULL;
  1836. } else {
  1837. error = nfs_bdi_register(server);
  1838. if (error)
  1839. goto error_splat_super;
  1840. }
  1841. if (!s->s_root) {
  1842. /* initial superblock/root creation */
  1843. nfs4_fill_super(s);
  1844. }
  1845. mntroot = nfs4_get_root(s, mntfh);
  1846. if (IS_ERR(mntroot)) {
  1847. error = PTR_ERR(mntroot);
  1848. goto error_splat_super;
  1849. }
  1850. error = security_sb_set_mnt_opts(s, &data->lsm_opts);
  1851. if (error)
  1852. goto error_splat_root;
  1853. s->s_flags |= MS_ACTIVE;
  1854. mnt->mnt_sb = s;
  1855. mnt->mnt_root = mntroot;
  1856. error = 0;
  1857. out:
  1858. kfree(data->client_address);
  1859. kfree(data->nfs_server.export_path);
  1860. kfree(data->nfs_server.hostname);
  1861. security_free_mnt_opts(&data->lsm_opts);
  1862. out_free_fh:
  1863. kfree(mntfh);
  1864. kfree(data);
  1865. return error;
  1866. out_free:
  1867. nfs_free_server(server);
  1868. goto out;
  1869. error_splat_root:
  1870. dput(mntroot);
  1871. error_splat_super:
  1872. up_write(&s->s_umount);
  1873. deactivate_super(s);
  1874. goto out;
  1875. }
  1876. static void nfs4_kill_super(struct super_block *sb)
  1877. {
  1878. struct nfs_server *server = NFS_SB(sb);
  1879. nfs_return_all_delegations(sb);
  1880. kill_anon_super(sb);
  1881. nfs4_renewd_prepare_shutdown(server);
  1882. nfs_free_server(server);
  1883. }
  1884. /*
  1885. * Clone an NFS4 server record on xdev traversal (FSID-change)
  1886. */
  1887. static int nfs4_xdev_get_sb(struct file_system_type *fs_type, int flags,
  1888. const char *dev_name, void *raw_data,
  1889. struct vfsmount *mnt)
  1890. {
  1891. struct nfs_clone_mount *data = raw_data;
  1892. struct super_block *s;
  1893. struct nfs_server *server;
  1894. struct dentry *mntroot;
  1895. int (*compare_super)(struct super_block *, void *) = nfs_compare_super;
  1896. struct nfs_sb_mountdata sb_mntdata = {
  1897. .mntflags = flags,
  1898. };
  1899. int error;
  1900. dprintk("--> nfs4_xdev_get_sb()\n");
  1901. /* create a new volume representation */
  1902. server = nfs_clone_server(NFS_SB(data->sb), data->fh, data->fattr);
  1903. if (IS_ERR(server)) {
  1904. error = PTR_ERR(server);
  1905. goto out_err_noserver;
  1906. }
  1907. sb_mntdata.server = server;
  1908. if (server->flags & NFS4_MOUNT_UNSHARED)
  1909. compare_super = NULL;
  1910. /* Get a superblock - note that we may end up sharing one that already exists */
  1911. s = sget(&nfs_fs_type, compare_super, nfs_set_super, &sb_mntdata);
  1912. if (IS_ERR(s)) {
  1913. error = PTR_ERR(s);
  1914. goto out_err_nosb;
  1915. }
  1916. if (s->s_fs_info != server) {
  1917. nfs_free_server(server);
  1918. server = NULL;
  1919. } else {
  1920. error = nfs_bdi_register(server);
  1921. if (error)
  1922. goto error_splat_super;
  1923. }
  1924. if (!s->s_root) {
  1925. /* initial superblock/root creation */
  1926. nfs4_clone_super(s, data->sb);
  1927. }
  1928. mntroot = nfs4_get_root(s, data->fh);
  1929. if (IS_ERR(mntroot)) {
  1930. error = PTR_ERR(mntroot);
  1931. goto error_splat_super;
  1932. }
  1933. if (mntroot->d_inode->i_op != NFS_SB(s)->nfs_client->rpc_ops->dir_inode_ops) {
  1934. dput(mntroot);
  1935. error = -ESTALE;
  1936. goto error_splat_super;
  1937. }
  1938. s->s_flags |= MS_ACTIVE;
  1939. mnt->mnt_sb = s;
  1940. mnt->mnt_root = mntroot;
  1941. security_sb_clone_mnt_opts(data->sb, s);
  1942. dprintk("<-- nfs4_xdev_get_sb() = 0\n");
  1943. return 0;
  1944. out_err_nosb:
  1945. nfs_free_server(server);
  1946. out_err_noserver:
  1947. dprintk("<-- nfs4_xdev_get_sb() = %d [error]\n", error);
  1948. return error;
  1949. error_splat_super:
  1950. up_write(&s->s_umount);
  1951. deactivate_super(s);
  1952. dprintk("<-- nfs4_xdev_get_sb() = %d [splat]\n", error);
  1953. return error;
  1954. }
  1955. /*
  1956. * Create an NFS4 server record on referral traversal
  1957. */
  1958. static int nfs4_referral_get_sb(struct file_system_type *fs_type, int flags,
  1959. const char *dev_name, void *raw_data,
  1960. struct vfsmount *mnt)
  1961. {
  1962. struct nfs_clone_mount *data = raw_data;
  1963. struct super_block *s;
  1964. struct nfs_server *server;
  1965. struct dentry *mntroot;
  1966. struct nfs_fh mntfh;
  1967. int (*compare_super)(struct super_block *, void *) = nfs_compare_super;
  1968. struct nfs_sb_mountdata sb_mntdata = {
  1969. .mntflags = flags,
  1970. };
  1971. int error;
  1972. dprintk("--> nfs4_referral_get_sb()\n");
  1973. /* create a new volume representation */
  1974. server = nfs4_create_referral_server(data, &mntfh);
  1975. if (IS_ERR(server)) {
  1976. error = PTR_ERR(server);
  1977. goto out_err_noserver;
  1978. }
  1979. sb_mntdata.server = server;
  1980. if (server->flags & NFS4_MOUNT_UNSHARED)
  1981. compare_super = NULL;
  1982. /* Get a superblock - note that we may end up sharing one that already exists */
  1983. s = sget(&nfs_fs_type, compare_super, nfs_set_super, &sb_mntdata);
  1984. if (IS_ERR(s)) {
  1985. error = PTR_ERR(s);
  1986. goto out_err_nosb;
  1987. }
  1988. if (s->s_fs_info != server) {
  1989. nfs_free_server(server);
  1990. server = NULL;
  1991. } else {
  1992. error = nfs_bdi_register(server);
  1993. if (error)
  1994. goto error_splat_super;
  1995. }
  1996. if (!s->s_root) {
  1997. /* initial superblock/root creation */
  1998. nfs4_fill_super(s);
  1999. }
  2000. mntroot = nfs4_get_root(s, &mntfh);
  2001. if (IS_ERR(mntroot)) {
  2002. error = PTR_ERR(mntroot);
  2003. goto error_splat_super;
  2004. }
  2005. if (mntroot->d_inode->i_op != NFS_SB(s)->nfs_client->rpc_ops->dir_inode_ops) {
  2006. dput(mntroot);
  2007. error = -ESTALE;
  2008. goto error_splat_super;
  2009. }
  2010. s->s_flags |= MS_ACTIVE;
  2011. mnt->mnt_sb = s;
  2012. mnt->mnt_root = mntroot;
  2013. security_sb_clone_mnt_opts(data->sb, s);
  2014. dprintk("<-- nfs4_referral_get_sb() = 0\n");
  2015. return 0;
  2016. out_err_nosb:
  2017. nfs_free_server(server);
  2018. out_err_noserver:
  2019. dprintk("<-- nfs4_referral_get_sb() = %d [error]\n", error);
  2020. return error;
  2021. error_splat_super:
  2022. up_write(&s->s_umount);
  2023. deactivate_super(s);
  2024. dprintk("<-- nfs4_referral_get_sb() = %d [splat]\n", error);
  2025. return error;
  2026. }
  2027. #endif /* CONFIG_NFS_V4 */