fs_context.c 40 KB

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  1. // SPDX-License-Identifier: GPL-2.0-only
  2. /*
  3. * linux/fs/nfs/fs_context.c
  4. *
  5. * Copyright (C) 1992 Rick Sladkey
  6. * Conversion to new mount api Copyright (C) David Howells
  7. *
  8. * NFS mount handling.
  9. *
  10. * Split from fs/nfs/super.c by David Howells <[email protected]>
  11. */
  12. #include <linux/compat.h>
  13. #include <linux/module.h>
  14. #include <linux/fs.h>
  15. #include <linux/fs_context.h>
  16. #include <linux/fs_parser.h>
  17. #include <linux/nfs_fs.h>
  18. #include <linux/nfs_mount.h>
  19. #include <linux/nfs4_mount.h>
  20. #include "nfs.h"
  21. #include "internal.h"
  22. #include "nfstrace.h"
  23. #define NFSDBG_FACILITY NFSDBG_MOUNT
  24. #if IS_ENABLED(CONFIG_NFS_V3)
  25. #define NFS_DEFAULT_VERSION 3
  26. #else
  27. #define NFS_DEFAULT_VERSION 2
  28. #endif
  29. #define NFS_MAX_CONNECTIONS 16
  30. enum nfs_param {
  31. Opt_ac,
  32. Opt_acdirmax,
  33. Opt_acdirmin,
  34. Opt_acl,
  35. Opt_acregmax,
  36. Opt_acregmin,
  37. Opt_actimeo,
  38. Opt_addr,
  39. Opt_bg,
  40. Opt_bsize,
  41. Opt_clientaddr,
  42. Opt_cto,
  43. Opt_fg,
  44. Opt_fscache,
  45. Opt_fscache_flag,
  46. Opt_hard,
  47. Opt_intr,
  48. Opt_local_lock,
  49. Opt_lock,
  50. Opt_lookupcache,
  51. Opt_migration,
  52. Opt_minorversion,
  53. Opt_mountaddr,
  54. Opt_mounthost,
  55. Opt_mountport,
  56. Opt_mountproto,
  57. Opt_mountvers,
  58. Opt_namelen,
  59. Opt_nconnect,
  60. Opt_max_connect,
  61. Opt_port,
  62. Opt_posix,
  63. Opt_proto,
  64. Opt_rdirplus,
  65. Opt_rdma,
  66. Opt_resvport,
  67. Opt_retrans,
  68. Opt_retry,
  69. Opt_rsize,
  70. Opt_sec,
  71. Opt_sharecache,
  72. Opt_sloppy,
  73. Opt_soft,
  74. Opt_softerr,
  75. Opt_softreval,
  76. Opt_source,
  77. Opt_tcp,
  78. Opt_timeo,
  79. Opt_trunkdiscovery,
  80. Opt_udp,
  81. Opt_v,
  82. Opt_vers,
  83. Opt_wsize,
  84. Opt_write,
  85. };
  86. enum {
  87. Opt_local_lock_all,
  88. Opt_local_lock_flock,
  89. Opt_local_lock_none,
  90. Opt_local_lock_posix,
  91. };
  92. static const struct constant_table nfs_param_enums_local_lock[] = {
  93. { "all", Opt_local_lock_all },
  94. { "flock", Opt_local_lock_flock },
  95. { "posix", Opt_local_lock_posix },
  96. { "none", Opt_local_lock_none },
  97. {}
  98. };
  99. enum {
  100. Opt_lookupcache_all,
  101. Opt_lookupcache_none,
  102. Opt_lookupcache_positive,
  103. };
  104. static const struct constant_table nfs_param_enums_lookupcache[] = {
  105. { "all", Opt_lookupcache_all },
  106. { "none", Opt_lookupcache_none },
  107. { "pos", Opt_lookupcache_positive },
  108. { "positive", Opt_lookupcache_positive },
  109. {}
  110. };
  111. enum {
  112. Opt_write_lazy,
  113. Opt_write_eager,
  114. Opt_write_wait,
  115. };
  116. static const struct constant_table nfs_param_enums_write[] = {
  117. { "lazy", Opt_write_lazy },
  118. { "eager", Opt_write_eager },
  119. { "wait", Opt_write_wait },
  120. {}
  121. };
  122. static const struct fs_parameter_spec nfs_fs_parameters[] = {
  123. fsparam_flag_no("ac", Opt_ac),
  124. fsparam_u32 ("acdirmax", Opt_acdirmax),
  125. fsparam_u32 ("acdirmin", Opt_acdirmin),
  126. fsparam_flag_no("acl", Opt_acl),
  127. fsparam_u32 ("acregmax", Opt_acregmax),
  128. fsparam_u32 ("acregmin", Opt_acregmin),
  129. fsparam_u32 ("actimeo", Opt_actimeo),
  130. fsparam_string("addr", Opt_addr),
  131. fsparam_flag ("bg", Opt_bg),
  132. fsparam_u32 ("bsize", Opt_bsize),
  133. fsparam_string("clientaddr", Opt_clientaddr),
  134. fsparam_flag_no("cto", Opt_cto),
  135. fsparam_flag ("fg", Opt_fg),
  136. fsparam_flag_no("fsc", Opt_fscache_flag),
  137. fsparam_string("fsc", Opt_fscache),
  138. fsparam_flag ("hard", Opt_hard),
  139. __fsparam(NULL, "intr", Opt_intr,
  140. fs_param_neg_with_no|fs_param_deprecated, NULL),
  141. fsparam_enum ("local_lock", Opt_local_lock, nfs_param_enums_local_lock),
  142. fsparam_flag_no("lock", Opt_lock),
  143. fsparam_enum ("lookupcache", Opt_lookupcache, nfs_param_enums_lookupcache),
  144. fsparam_flag_no("migration", Opt_migration),
  145. fsparam_u32 ("minorversion", Opt_minorversion),
  146. fsparam_string("mountaddr", Opt_mountaddr),
  147. fsparam_string("mounthost", Opt_mounthost),
  148. fsparam_u32 ("mountport", Opt_mountport),
  149. fsparam_string("mountproto", Opt_mountproto),
  150. fsparam_u32 ("mountvers", Opt_mountvers),
  151. fsparam_u32 ("namlen", Opt_namelen),
  152. fsparam_u32 ("nconnect", Opt_nconnect),
  153. fsparam_u32 ("max_connect", Opt_max_connect),
  154. fsparam_string("nfsvers", Opt_vers),
  155. fsparam_u32 ("port", Opt_port),
  156. fsparam_flag_no("posix", Opt_posix),
  157. fsparam_string("proto", Opt_proto),
  158. fsparam_flag_no("rdirplus", Opt_rdirplus),
  159. fsparam_flag ("rdma", Opt_rdma),
  160. fsparam_flag_no("resvport", Opt_resvport),
  161. fsparam_u32 ("retrans", Opt_retrans),
  162. fsparam_string("retry", Opt_retry),
  163. fsparam_u32 ("rsize", Opt_rsize),
  164. fsparam_string("sec", Opt_sec),
  165. fsparam_flag_no("sharecache", Opt_sharecache),
  166. fsparam_flag ("sloppy", Opt_sloppy),
  167. fsparam_flag ("soft", Opt_soft),
  168. fsparam_flag ("softerr", Opt_softerr),
  169. fsparam_flag ("softreval", Opt_softreval),
  170. fsparam_string("source", Opt_source),
  171. fsparam_flag ("tcp", Opt_tcp),
  172. fsparam_u32 ("timeo", Opt_timeo),
  173. fsparam_flag_no("trunkdiscovery", Opt_trunkdiscovery),
  174. fsparam_flag ("udp", Opt_udp),
  175. fsparam_flag ("v2", Opt_v),
  176. fsparam_flag ("v3", Opt_v),
  177. fsparam_flag ("v4", Opt_v),
  178. fsparam_flag ("v4.0", Opt_v),
  179. fsparam_flag ("v4.1", Opt_v),
  180. fsparam_flag ("v4.2", Opt_v),
  181. fsparam_string("vers", Opt_vers),
  182. fsparam_enum ("write", Opt_write, nfs_param_enums_write),
  183. fsparam_u32 ("wsize", Opt_wsize),
  184. {}
  185. };
  186. enum {
  187. Opt_vers_2,
  188. Opt_vers_3,
  189. Opt_vers_4,
  190. Opt_vers_4_0,
  191. Opt_vers_4_1,
  192. Opt_vers_4_2,
  193. };
  194. static const struct constant_table nfs_vers_tokens[] = {
  195. { "2", Opt_vers_2 },
  196. { "3", Opt_vers_3 },
  197. { "4", Opt_vers_4 },
  198. { "4.0", Opt_vers_4_0 },
  199. { "4.1", Opt_vers_4_1 },
  200. { "4.2", Opt_vers_4_2 },
  201. {}
  202. };
  203. enum {
  204. Opt_xprt_rdma,
  205. Opt_xprt_rdma6,
  206. Opt_xprt_tcp,
  207. Opt_xprt_tcp6,
  208. Opt_xprt_udp,
  209. Opt_xprt_udp6,
  210. nr__Opt_xprt
  211. };
  212. static const struct constant_table nfs_xprt_protocol_tokens[] = {
  213. { "rdma", Opt_xprt_rdma },
  214. { "rdma6", Opt_xprt_rdma6 },
  215. { "tcp", Opt_xprt_tcp },
  216. { "tcp6", Opt_xprt_tcp6 },
  217. { "udp", Opt_xprt_udp },
  218. { "udp6", Opt_xprt_udp6 },
  219. {}
  220. };
  221. enum {
  222. Opt_sec_krb5,
  223. Opt_sec_krb5i,
  224. Opt_sec_krb5p,
  225. Opt_sec_lkey,
  226. Opt_sec_lkeyi,
  227. Opt_sec_lkeyp,
  228. Opt_sec_none,
  229. Opt_sec_spkm,
  230. Opt_sec_spkmi,
  231. Opt_sec_spkmp,
  232. Opt_sec_sys,
  233. nr__Opt_sec
  234. };
  235. static const struct constant_table nfs_secflavor_tokens[] = {
  236. { "krb5", Opt_sec_krb5 },
  237. { "krb5i", Opt_sec_krb5i },
  238. { "krb5p", Opt_sec_krb5p },
  239. { "lkey", Opt_sec_lkey },
  240. { "lkeyi", Opt_sec_lkeyi },
  241. { "lkeyp", Opt_sec_lkeyp },
  242. { "none", Opt_sec_none },
  243. { "null", Opt_sec_none },
  244. { "spkm3", Opt_sec_spkm },
  245. { "spkm3i", Opt_sec_spkmi },
  246. { "spkm3p", Opt_sec_spkmp },
  247. { "sys", Opt_sec_sys },
  248. {}
  249. };
  250. /*
  251. * Sanity-check a server address provided by the mount command.
  252. *
  253. * Address family must be initialized, and address must not be
  254. * the ANY address for that family.
  255. */
  256. static int nfs_verify_server_address(struct sockaddr_storage *addr)
  257. {
  258. switch (addr->ss_family) {
  259. case AF_INET: {
  260. struct sockaddr_in *sa = (struct sockaddr_in *)addr;
  261. return sa->sin_addr.s_addr != htonl(INADDR_ANY);
  262. }
  263. case AF_INET6: {
  264. struct in6_addr *sa = &((struct sockaddr_in6 *)addr)->sin6_addr;
  265. return !ipv6_addr_any(sa);
  266. }
  267. }
  268. return 0;
  269. }
  270. #ifdef CONFIG_NFS_DISABLE_UDP_SUPPORT
  271. static bool nfs_server_transport_udp_invalid(const struct nfs_fs_context *ctx)
  272. {
  273. return true;
  274. }
  275. #else
  276. static bool nfs_server_transport_udp_invalid(const struct nfs_fs_context *ctx)
  277. {
  278. if (ctx->version == 4)
  279. return true;
  280. return false;
  281. }
  282. #endif
  283. /*
  284. * Sanity check the NFS transport protocol.
  285. */
  286. static int nfs_validate_transport_protocol(struct fs_context *fc,
  287. struct nfs_fs_context *ctx)
  288. {
  289. switch (ctx->nfs_server.protocol) {
  290. case XPRT_TRANSPORT_UDP:
  291. if (nfs_server_transport_udp_invalid(ctx))
  292. goto out_invalid_transport_udp;
  293. break;
  294. case XPRT_TRANSPORT_TCP:
  295. case XPRT_TRANSPORT_RDMA:
  296. break;
  297. default:
  298. ctx->nfs_server.protocol = XPRT_TRANSPORT_TCP;
  299. }
  300. return 0;
  301. out_invalid_transport_udp:
  302. return nfs_invalf(fc, "NFS: Unsupported transport protocol udp");
  303. }
  304. /*
  305. * For text based NFSv2/v3 mounts, the mount protocol transport default
  306. * settings should depend upon the specified NFS transport.
  307. */
  308. static void nfs_set_mount_transport_protocol(struct nfs_fs_context *ctx)
  309. {
  310. if (ctx->mount_server.protocol == XPRT_TRANSPORT_UDP ||
  311. ctx->mount_server.protocol == XPRT_TRANSPORT_TCP)
  312. return;
  313. switch (ctx->nfs_server.protocol) {
  314. case XPRT_TRANSPORT_UDP:
  315. ctx->mount_server.protocol = XPRT_TRANSPORT_UDP;
  316. break;
  317. case XPRT_TRANSPORT_TCP:
  318. case XPRT_TRANSPORT_RDMA:
  319. ctx->mount_server.protocol = XPRT_TRANSPORT_TCP;
  320. }
  321. }
  322. /*
  323. * Add 'flavor' to 'auth_info' if not already present.
  324. * Returns true if 'flavor' ends up in the list, false otherwise
  325. */
  326. static int nfs_auth_info_add(struct fs_context *fc,
  327. struct nfs_auth_info *auth_info,
  328. rpc_authflavor_t flavor)
  329. {
  330. unsigned int i;
  331. unsigned int max_flavor_len = ARRAY_SIZE(auth_info->flavors);
  332. /* make sure this flavor isn't already in the list */
  333. for (i = 0; i < auth_info->flavor_len; i++) {
  334. if (flavor == auth_info->flavors[i])
  335. return 0;
  336. }
  337. if (auth_info->flavor_len + 1 >= max_flavor_len)
  338. return nfs_invalf(fc, "NFS: too many sec= flavors");
  339. auth_info->flavors[auth_info->flavor_len++] = flavor;
  340. return 0;
  341. }
  342. /*
  343. * Parse the value of the 'sec=' option.
  344. */
  345. static int nfs_parse_security_flavors(struct fs_context *fc,
  346. struct fs_parameter *param)
  347. {
  348. struct nfs_fs_context *ctx = nfs_fc2context(fc);
  349. rpc_authflavor_t pseudoflavor;
  350. char *string = param->string, *p;
  351. int ret;
  352. trace_nfs_mount_assign(param->key, string);
  353. while ((p = strsep(&string, ":")) != NULL) {
  354. if (!*p)
  355. continue;
  356. switch (lookup_constant(nfs_secflavor_tokens, p, -1)) {
  357. case Opt_sec_none:
  358. pseudoflavor = RPC_AUTH_NULL;
  359. break;
  360. case Opt_sec_sys:
  361. pseudoflavor = RPC_AUTH_UNIX;
  362. break;
  363. case Opt_sec_krb5:
  364. pseudoflavor = RPC_AUTH_GSS_KRB5;
  365. break;
  366. case Opt_sec_krb5i:
  367. pseudoflavor = RPC_AUTH_GSS_KRB5I;
  368. break;
  369. case Opt_sec_krb5p:
  370. pseudoflavor = RPC_AUTH_GSS_KRB5P;
  371. break;
  372. case Opt_sec_lkey:
  373. pseudoflavor = RPC_AUTH_GSS_LKEY;
  374. break;
  375. case Opt_sec_lkeyi:
  376. pseudoflavor = RPC_AUTH_GSS_LKEYI;
  377. break;
  378. case Opt_sec_lkeyp:
  379. pseudoflavor = RPC_AUTH_GSS_LKEYP;
  380. break;
  381. case Opt_sec_spkm:
  382. pseudoflavor = RPC_AUTH_GSS_SPKM;
  383. break;
  384. case Opt_sec_spkmi:
  385. pseudoflavor = RPC_AUTH_GSS_SPKMI;
  386. break;
  387. case Opt_sec_spkmp:
  388. pseudoflavor = RPC_AUTH_GSS_SPKMP;
  389. break;
  390. default:
  391. return nfs_invalf(fc, "NFS: sec=%s option not recognized", p);
  392. }
  393. ret = nfs_auth_info_add(fc, &ctx->auth_info, pseudoflavor);
  394. if (ret < 0)
  395. return ret;
  396. }
  397. return 0;
  398. }
  399. static int nfs_parse_version_string(struct fs_context *fc,
  400. const char *string)
  401. {
  402. struct nfs_fs_context *ctx = nfs_fc2context(fc);
  403. ctx->flags &= ~NFS_MOUNT_VER3;
  404. switch (lookup_constant(nfs_vers_tokens, string, -1)) {
  405. case Opt_vers_2:
  406. ctx->version = 2;
  407. break;
  408. case Opt_vers_3:
  409. ctx->flags |= NFS_MOUNT_VER3;
  410. ctx->version = 3;
  411. break;
  412. case Opt_vers_4:
  413. /* Backward compatibility option. In future,
  414. * the mount program should always supply
  415. * a NFSv4 minor version number.
  416. */
  417. ctx->version = 4;
  418. break;
  419. case Opt_vers_4_0:
  420. ctx->version = 4;
  421. ctx->minorversion = 0;
  422. break;
  423. case Opt_vers_4_1:
  424. ctx->version = 4;
  425. ctx->minorversion = 1;
  426. break;
  427. case Opt_vers_4_2:
  428. ctx->version = 4;
  429. ctx->minorversion = 2;
  430. break;
  431. default:
  432. return nfs_invalf(fc, "NFS: Unsupported NFS version");
  433. }
  434. return 0;
  435. }
  436. /*
  437. * Parse a single mount parameter.
  438. */
  439. static int nfs_fs_context_parse_param(struct fs_context *fc,
  440. struct fs_parameter *param)
  441. {
  442. struct fs_parse_result result;
  443. struct nfs_fs_context *ctx = nfs_fc2context(fc);
  444. unsigned short protofamily, mountfamily;
  445. unsigned int len;
  446. int ret, opt;
  447. trace_nfs_mount_option(param);
  448. opt = fs_parse(fc, nfs_fs_parameters, param, &result);
  449. if (opt < 0)
  450. return (opt == -ENOPARAM && ctx->sloppy) ? 1 : opt;
  451. if (fc->security)
  452. ctx->has_sec_mnt_opts = 1;
  453. switch (opt) {
  454. case Opt_source:
  455. if (fc->source)
  456. return nfs_invalf(fc, "NFS: Multiple sources not supported");
  457. fc->source = param->string;
  458. param->string = NULL;
  459. break;
  460. /*
  461. * boolean options: foo/nofoo
  462. */
  463. case Opt_soft:
  464. ctx->flags |= NFS_MOUNT_SOFT;
  465. ctx->flags &= ~NFS_MOUNT_SOFTERR;
  466. break;
  467. case Opt_softerr:
  468. ctx->flags |= NFS_MOUNT_SOFTERR | NFS_MOUNT_SOFTREVAL;
  469. ctx->flags &= ~NFS_MOUNT_SOFT;
  470. break;
  471. case Opt_hard:
  472. ctx->flags &= ~(NFS_MOUNT_SOFT |
  473. NFS_MOUNT_SOFTERR |
  474. NFS_MOUNT_SOFTREVAL);
  475. break;
  476. case Opt_softreval:
  477. if (result.negated)
  478. ctx->flags &= ~NFS_MOUNT_SOFTREVAL;
  479. else
  480. ctx->flags |= NFS_MOUNT_SOFTREVAL;
  481. break;
  482. case Opt_posix:
  483. if (result.negated)
  484. ctx->flags &= ~NFS_MOUNT_POSIX;
  485. else
  486. ctx->flags |= NFS_MOUNT_POSIX;
  487. break;
  488. case Opt_cto:
  489. if (result.negated)
  490. ctx->flags |= NFS_MOUNT_NOCTO;
  491. else
  492. ctx->flags &= ~NFS_MOUNT_NOCTO;
  493. break;
  494. case Opt_trunkdiscovery:
  495. if (result.negated)
  496. ctx->flags &= ~NFS_MOUNT_TRUNK_DISCOVERY;
  497. else
  498. ctx->flags |= NFS_MOUNT_TRUNK_DISCOVERY;
  499. break;
  500. case Opt_ac:
  501. if (result.negated)
  502. ctx->flags |= NFS_MOUNT_NOAC;
  503. else
  504. ctx->flags &= ~NFS_MOUNT_NOAC;
  505. break;
  506. case Opt_lock:
  507. if (result.negated) {
  508. ctx->flags |= NFS_MOUNT_NONLM;
  509. ctx->flags |= (NFS_MOUNT_LOCAL_FLOCK | NFS_MOUNT_LOCAL_FCNTL);
  510. } else {
  511. ctx->flags &= ~NFS_MOUNT_NONLM;
  512. ctx->flags &= ~(NFS_MOUNT_LOCAL_FLOCK | NFS_MOUNT_LOCAL_FCNTL);
  513. }
  514. break;
  515. case Opt_udp:
  516. ctx->flags &= ~NFS_MOUNT_TCP;
  517. ctx->nfs_server.protocol = XPRT_TRANSPORT_UDP;
  518. break;
  519. case Opt_tcp:
  520. case Opt_rdma:
  521. ctx->flags |= NFS_MOUNT_TCP; /* for side protocols */
  522. ret = xprt_find_transport_ident(param->key);
  523. if (ret < 0)
  524. goto out_bad_transport;
  525. ctx->nfs_server.protocol = ret;
  526. break;
  527. case Opt_acl:
  528. if (result.negated)
  529. ctx->flags |= NFS_MOUNT_NOACL;
  530. else
  531. ctx->flags &= ~NFS_MOUNT_NOACL;
  532. break;
  533. case Opt_rdirplus:
  534. if (result.negated)
  535. ctx->flags |= NFS_MOUNT_NORDIRPLUS;
  536. else
  537. ctx->flags &= ~NFS_MOUNT_NORDIRPLUS;
  538. break;
  539. case Opt_sharecache:
  540. if (result.negated)
  541. ctx->flags |= NFS_MOUNT_UNSHARED;
  542. else
  543. ctx->flags &= ~NFS_MOUNT_UNSHARED;
  544. break;
  545. case Opt_resvport:
  546. if (result.negated)
  547. ctx->flags |= NFS_MOUNT_NORESVPORT;
  548. else
  549. ctx->flags &= ~NFS_MOUNT_NORESVPORT;
  550. break;
  551. case Opt_fscache_flag:
  552. if (result.negated)
  553. ctx->options &= ~NFS_OPTION_FSCACHE;
  554. else
  555. ctx->options |= NFS_OPTION_FSCACHE;
  556. kfree(ctx->fscache_uniq);
  557. ctx->fscache_uniq = NULL;
  558. break;
  559. case Opt_fscache:
  560. ctx->options |= NFS_OPTION_FSCACHE;
  561. kfree(ctx->fscache_uniq);
  562. ctx->fscache_uniq = param->string;
  563. param->string = NULL;
  564. break;
  565. case Opt_migration:
  566. if (result.negated)
  567. ctx->options &= ~NFS_OPTION_MIGRATION;
  568. else
  569. ctx->options |= NFS_OPTION_MIGRATION;
  570. break;
  571. /*
  572. * options that take numeric values
  573. */
  574. case Opt_port:
  575. if (result.uint_32 > USHRT_MAX)
  576. goto out_of_bounds;
  577. ctx->nfs_server.port = result.uint_32;
  578. break;
  579. case Opt_rsize:
  580. ctx->rsize = result.uint_32;
  581. break;
  582. case Opt_wsize:
  583. ctx->wsize = result.uint_32;
  584. break;
  585. case Opt_bsize:
  586. ctx->bsize = result.uint_32;
  587. break;
  588. case Opt_timeo:
  589. if (result.uint_32 < 1 || result.uint_32 > INT_MAX)
  590. goto out_of_bounds;
  591. ctx->timeo = result.uint_32;
  592. break;
  593. case Opt_retrans:
  594. if (result.uint_32 > INT_MAX)
  595. goto out_of_bounds;
  596. ctx->retrans = result.uint_32;
  597. break;
  598. case Opt_acregmin:
  599. ctx->acregmin = result.uint_32;
  600. break;
  601. case Opt_acregmax:
  602. ctx->acregmax = result.uint_32;
  603. break;
  604. case Opt_acdirmin:
  605. ctx->acdirmin = result.uint_32;
  606. break;
  607. case Opt_acdirmax:
  608. ctx->acdirmax = result.uint_32;
  609. break;
  610. case Opt_actimeo:
  611. ctx->acregmin = result.uint_32;
  612. ctx->acregmax = result.uint_32;
  613. ctx->acdirmin = result.uint_32;
  614. ctx->acdirmax = result.uint_32;
  615. break;
  616. case Opt_namelen:
  617. ctx->namlen = result.uint_32;
  618. break;
  619. case Opt_mountport:
  620. if (result.uint_32 > USHRT_MAX)
  621. goto out_of_bounds;
  622. ctx->mount_server.port = result.uint_32;
  623. break;
  624. case Opt_mountvers:
  625. if (result.uint_32 < NFS_MNT_VERSION ||
  626. result.uint_32 > NFS_MNT3_VERSION)
  627. goto out_of_bounds;
  628. ctx->mount_server.version = result.uint_32;
  629. break;
  630. case Opt_minorversion:
  631. if (result.uint_32 > NFS4_MAX_MINOR_VERSION)
  632. goto out_of_bounds;
  633. ctx->minorversion = result.uint_32;
  634. break;
  635. /*
  636. * options that take text values
  637. */
  638. case Opt_v:
  639. ret = nfs_parse_version_string(fc, param->key + 1);
  640. if (ret < 0)
  641. return ret;
  642. break;
  643. case Opt_vers:
  644. if (!param->string)
  645. goto out_invalid_value;
  646. trace_nfs_mount_assign(param->key, param->string);
  647. ret = nfs_parse_version_string(fc, param->string);
  648. if (ret < 0)
  649. return ret;
  650. break;
  651. case Opt_sec:
  652. ret = nfs_parse_security_flavors(fc, param);
  653. if (ret < 0)
  654. return ret;
  655. break;
  656. case Opt_proto:
  657. if (!param->string)
  658. goto out_invalid_value;
  659. trace_nfs_mount_assign(param->key, param->string);
  660. protofamily = AF_INET;
  661. switch (lookup_constant(nfs_xprt_protocol_tokens, param->string, -1)) {
  662. case Opt_xprt_udp6:
  663. protofamily = AF_INET6;
  664. fallthrough;
  665. case Opt_xprt_udp:
  666. ctx->flags &= ~NFS_MOUNT_TCP;
  667. ctx->nfs_server.protocol = XPRT_TRANSPORT_UDP;
  668. break;
  669. case Opt_xprt_tcp6:
  670. protofamily = AF_INET6;
  671. fallthrough;
  672. case Opt_xprt_tcp:
  673. ctx->flags |= NFS_MOUNT_TCP;
  674. ctx->nfs_server.protocol = XPRT_TRANSPORT_TCP;
  675. break;
  676. case Opt_xprt_rdma6:
  677. protofamily = AF_INET6;
  678. fallthrough;
  679. case Opt_xprt_rdma:
  680. /* vector side protocols to TCP */
  681. ctx->flags |= NFS_MOUNT_TCP;
  682. ret = xprt_find_transport_ident(param->string);
  683. if (ret < 0)
  684. goto out_bad_transport;
  685. ctx->nfs_server.protocol = ret;
  686. break;
  687. default:
  688. goto out_bad_transport;
  689. }
  690. ctx->protofamily = protofamily;
  691. break;
  692. case Opt_mountproto:
  693. if (!param->string)
  694. goto out_invalid_value;
  695. trace_nfs_mount_assign(param->key, param->string);
  696. mountfamily = AF_INET;
  697. switch (lookup_constant(nfs_xprt_protocol_tokens, param->string, -1)) {
  698. case Opt_xprt_udp6:
  699. mountfamily = AF_INET6;
  700. fallthrough;
  701. case Opt_xprt_udp:
  702. ctx->mount_server.protocol = XPRT_TRANSPORT_UDP;
  703. break;
  704. case Opt_xprt_tcp6:
  705. mountfamily = AF_INET6;
  706. fallthrough;
  707. case Opt_xprt_tcp:
  708. ctx->mount_server.protocol = XPRT_TRANSPORT_TCP;
  709. break;
  710. case Opt_xprt_rdma: /* not used for side protocols */
  711. default:
  712. goto out_bad_transport;
  713. }
  714. ctx->mountfamily = mountfamily;
  715. break;
  716. case Opt_addr:
  717. trace_nfs_mount_assign(param->key, param->string);
  718. len = rpc_pton(fc->net_ns, param->string, param->size,
  719. &ctx->nfs_server.address,
  720. sizeof(ctx->nfs_server._address));
  721. if (len == 0)
  722. goto out_invalid_address;
  723. ctx->nfs_server.addrlen = len;
  724. break;
  725. case Opt_clientaddr:
  726. trace_nfs_mount_assign(param->key, param->string);
  727. kfree(ctx->client_address);
  728. ctx->client_address = param->string;
  729. param->string = NULL;
  730. break;
  731. case Opt_mounthost:
  732. trace_nfs_mount_assign(param->key, param->string);
  733. kfree(ctx->mount_server.hostname);
  734. ctx->mount_server.hostname = param->string;
  735. param->string = NULL;
  736. break;
  737. case Opt_mountaddr:
  738. trace_nfs_mount_assign(param->key, param->string);
  739. len = rpc_pton(fc->net_ns, param->string, param->size,
  740. &ctx->mount_server.address,
  741. sizeof(ctx->mount_server._address));
  742. if (len == 0)
  743. goto out_invalid_address;
  744. ctx->mount_server.addrlen = len;
  745. break;
  746. case Opt_nconnect:
  747. if (result.uint_32 < 1 || result.uint_32 > NFS_MAX_CONNECTIONS)
  748. goto out_of_bounds;
  749. ctx->nfs_server.nconnect = result.uint_32;
  750. break;
  751. case Opt_max_connect:
  752. if (result.uint_32 < 1 || result.uint_32 > NFS_MAX_TRANSPORTS)
  753. goto out_of_bounds;
  754. ctx->nfs_server.max_connect = result.uint_32;
  755. break;
  756. case Opt_lookupcache:
  757. switch (result.uint_32) {
  758. case Opt_lookupcache_all:
  759. ctx->flags &= ~(NFS_MOUNT_LOOKUP_CACHE_NONEG|NFS_MOUNT_LOOKUP_CACHE_NONE);
  760. break;
  761. case Opt_lookupcache_positive:
  762. ctx->flags &= ~NFS_MOUNT_LOOKUP_CACHE_NONE;
  763. ctx->flags |= NFS_MOUNT_LOOKUP_CACHE_NONEG;
  764. break;
  765. case Opt_lookupcache_none:
  766. ctx->flags |= NFS_MOUNT_LOOKUP_CACHE_NONEG|NFS_MOUNT_LOOKUP_CACHE_NONE;
  767. break;
  768. default:
  769. goto out_invalid_value;
  770. }
  771. break;
  772. case Opt_local_lock:
  773. switch (result.uint_32) {
  774. case Opt_local_lock_all:
  775. ctx->flags |= (NFS_MOUNT_LOCAL_FLOCK |
  776. NFS_MOUNT_LOCAL_FCNTL);
  777. break;
  778. case Opt_local_lock_flock:
  779. ctx->flags |= NFS_MOUNT_LOCAL_FLOCK;
  780. break;
  781. case Opt_local_lock_posix:
  782. ctx->flags |= NFS_MOUNT_LOCAL_FCNTL;
  783. break;
  784. case Opt_local_lock_none:
  785. ctx->flags &= ~(NFS_MOUNT_LOCAL_FLOCK |
  786. NFS_MOUNT_LOCAL_FCNTL);
  787. break;
  788. default:
  789. goto out_invalid_value;
  790. }
  791. break;
  792. case Opt_write:
  793. switch (result.uint_32) {
  794. case Opt_write_lazy:
  795. ctx->flags &=
  796. ~(NFS_MOUNT_WRITE_EAGER | NFS_MOUNT_WRITE_WAIT);
  797. break;
  798. case Opt_write_eager:
  799. ctx->flags |= NFS_MOUNT_WRITE_EAGER;
  800. ctx->flags &= ~NFS_MOUNT_WRITE_WAIT;
  801. break;
  802. case Opt_write_wait:
  803. ctx->flags |=
  804. NFS_MOUNT_WRITE_EAGER | NFS_MOUNT_WRITE_WAIT;
  805. break;
  806. default:
  807. goto out_invalid_value;
  808. }
  809. break;
  810. /*
  811. * Special options
  812. */
  813. case Opt_sloppy:
  814. ctx->sloppy = true;
  815. break;
  816. }
  817. return 0;
  818. out_invalid_value:
  819. return nfs_invalf(fc, "NFS: Bad mount option value specified");
  820. out_invalid_address:
  821. return nfs_invalf(fc, "NFS: Bad IP address specified");
  822. out_of_bounds:
  823. return nfs_invalf(fc, "NFS: Value for '%s' out of range", param->key);
  824. out_bad_transport:
  825. return nfs_invalf(fc, "NFS: Unrecognized transport protocol");
  826. }
  827. /*
  828. * Split fc->source into "hostname:export_path".
  829. *
  830. * The leftmost colon demarks the split between the server's hostname
  831. * and the export path. If the hostname starts with a left square
  832. * bracket, then it may contain colons.
  833. *
  834. * Note: caller frees hostname and export path, even on error.
  835. */
  836. static int nfs_parse_source(struct fs_context *fc,
  837. size_t maxnamlen, size_t maxpathlen)
  838. {
  839. struct nfs_fs_context *ctx = nfs_fc2context(fc);
  840. const char *dev_name = fc->source;
  841. size_t len;
  842. const char *end;
  843. if (unlikely(!dev_name || !*dev_name))
  844. return -EINVAL;
  845. /* Is the host name protected with square brakcets? */
  846. if (*dev_name == '[') {
  847. end = strchr(++dev_name, ']');
  848. if (end == NULL || end[1] != ':')
  849. goto out_bad_devname;
  850. len = end - dev_name;
  851. end++;
  852. } else {
  853. const char *comma;
  854. end = strchr(dev_name, ':');
  855. if (end == NULL)
  856. goto out_bad_devname;
  857. len = end - dev_name;
  858. /* kill possible hostname list: not supported */
  859. comma = memchr(dev_name, ',', len);
  860. if (comma)
  861. len = comma - dev_name;
  862. }
  863. if (len > maxnamlen)
  864. goto out_hostname;
  865. kfree(ctx->nfs_server.hostname);
  866. /* N.B. caller will free nfs_server.hostname in all cases */
  867. ctx->nfs_server.hostname = kmemdup_nul(dev_name, len, GFP_KERNEL);
  868. if (!ctx->nfs_server.hostname)
  869. goto out_nomem;
  870. len = strlen(++end);
  871. if (len > maxpathlen)
  872. goto out_path;
  873. ctx->nfs_server.export_path = kmemdup_nul(end, len, GFP_KERNEL);
  874. if (!ctx->nfs_server.export_path)
  875. goto out_nomem;
  876. trace_nfs_mount_path(ctx->nfs_server.export_path);
  877. return 0;
  878. out_bad_devname:
  879. return nfs_invalf(fc, "NFS: device name not in host:path format");
  880. out_nomem:
  881. nfs_errorf(fc, "NFS: not enough memory to parse device name");
  882. return -ENOMEM;
  883. out_hostname:
  884. nfs_errorf(fc, "NFS: server hostname too long");
  885. return -ENAMETOOLONG;
  886. out_path:
  887. nfs_errorf(fc, "NFS: export pathname too long");
  888. return -ENAMETOOLONG;
  889. }
  890. static inline bool is_remount_fc(struct fs_context *fc)
  891. {
  892. return fc->root != NULL;
  893. }
  894. /*
  895. * Parse monolithic NFS2/NFS3 mount data
  896. * - fills in the mount root filehandle
  897. *
  898. * For option strings, user space handles the following behaviors:
  899. *
  900. * + DNS: mapping server host name to IP address ("addr=" option)
  901. *
  902. * + failure mode: how to behave if a mount request can't be handled
  903. * immediately ("fg/bg" option)
  904. *
  905. * + retry: how often to retry a mount request ("retry=" option)
  906. *
  907. * + breaking back: trying proto=udp after proto=tcp, v2 after v3,
  908. * mountproto=tcp after mountproto=udp, and so on
  909. */
  910. static int nfs23_parse_monolithic(struct fs_context *fc,
  911. struct nfs_mount_data *data)
  912. {
  913. struct nfs_fs_context *ctx = nfs_fc2context(fc);
  914. struct nfs_fh *mntfh = ctx->mntfh;
  915. struct sockaddr_storage *sap = &ctx->nfs_server._address;
  916. int extra_flags = NFS_MOUNT_LEGACY_INTERFACE;
  917. int ret;
  918. if (data == NULL)
  919. goto out_no_data;
  920. ctx->version = NFS_DEFAULT_VERSION;
  921. switch (data->version) {
  922. case 1:
  923. data->namlen = 0;
  924. fallthrough;
  925. case 2:
  926. data->bsize = 0;
  927. fallthrough;
  928. case 3:
  929. if (data->flags & NFS_MOUNT_VER3)
  930. goto out_no_v3;
  931. data->root.size = NFS2_FHSIZE;
  932. memcpy(data->root.data, data->old_root.data, NFS2_FHSIZE);
  933. /* Turn off security negotiation */
  934. extra_flags |= NFS_MOUNT_SECFLAVOUR;
  935. fallthrough;
  936. case 4:
  937. if (data->flags & NFS_MOUNT_SECFLAVOUR)
  938. goto out_no_sec;
  939. fallthrough;
  940. case 5:
  941. memset(data->context, 0, sizeof(data->context));
  942. fallthrough;
  943. case 6:
  944. if (data->flags & NFS_MOUNT_VER3) {
  945. if (data->root.size > NFS3_FHSIZE || data->root.size == 0)
  946. goto out_invalid_fh;
  947. mntfh->size = data->root.size;
  948. ctx->version = 3;
  949. } else {
  950. mntfh->size = NFS2_FHSIZE;
  951. ctx->version = 2;
  952. }
  953. memcpy(mntfh->data, data->root.data, mntfh->size);
  954. if (mntfh->size < sizeof(mntfh->data))
  955. memset(mntfh->data + mntfh->size, 0,
  956. sizeof(mntfh->data) - mntfh->size);
  957. /*
  958. * for proto == XPRT_TRANSPORT_UDP, which is what uses
  959. * to_exponential, implying shift: limit the shift value
  960. * to BITS_PER_LONG (majortimeo is unsigned long)
  961. */
  962. if (!(data->flags & NFS_MOUNT_TCP)) /* this will be UDP */
  963. if (data->retrans >= 64) /* shift value is too large */
  964. goto out_invalid_data;
  965. /*
  966. * Translate to nfs_fs_context, which nfs_fill_super
  967. * can deal with.
  968. */
  969. ctx->flags = data->flags & NFS_MOUNT_FLAGMASK;
  970. ctx->flags |= extra_flags;
  971. ctx->rsize = data->rsize;
  972. ctx->wsize = data->wsize;
  973. ctx->timeo = data->timeo;
  974. ctx->retrans = data->retrans;
  975. ctx->acregmin = data->acregmin;
  976. ctx->acregmax = data->acregmax;
  977. ctx->acdirmin = data->acdirmin;
  978. ctx->acdirmax = data->acdirmax;
  979. ctx->need_mount = false;
  980. memcpy(sap, &data->addr, sizeof(data->addr));
  981. ctx->nfs_server.addrlen = sizeof(data->addr);
  982. ctx->nfs_server.port = ntohs(data->addr.sin_port);
  983. if (sap->ss_family != AF_INET ||
  984. !nfs_verify_server_address(sap))
  985. goto out_no_address;
  986. if (!(data->flags & NFS_MOUNT_TCP))
  987. ctx->nfs_server.protocol = XPRT_TRANSPORT_UDP;
  988. /* N.B. caller will free nfs_server.hostname in all cases */
  989. ctx->nfs_server.hostname = kstrdup(data->hostname, GFP_KERNEL);
  990. if (!ctx->nfs_server.hostname)
  991. goto out_nomem;
  992. ctx->namlen = data->namlen;
  993. ctx->bsize = data->bsize;
  994. if (data->flags & NFS_MOUNT_SECFLAVOUR)
  995. ctx->selected_flavor = data->pseudoflavor;
  996. else
  997. ctx->selected_flavor = RPC_AUTH_UNIX;
  998. if (!(data->flags & NFS_MOUNT_NONLM))
  999. ctx->flags &= ~(NFS_MOUNT_LOCAL_FLOCK|
  1000. NFS_MOUNT_LOCAL_FCNTL);
  1001. else
  1002. ctx->flags |= (NFS_MOUNT_LOCAL_FLOCK|
  1003. NFS_MOUNT_LOCAL_FCNTL);
  1004. /*
  1005. * The legacy version 6 binary mount data from userspace has a
  1006. * field used only to transport selinux information into the
  1007. * kernel. To continue to support that functionality we
  1008. * have a touch of selinux knowledge here in the NFS code. The
  1009. * userspace code converted context=blah to just blah so we are
  1010. * converting back to the full string selinux understands.
  1011. */
  1012. if (data->context[0]){
  1013. #ifdef CONFIG_SECURITY_SELINUX
  1014. int ret;
  1015. data->context[NFS_MAX_CONTEXT_LEN] = '\0';
  1016. ret = vfs_parse_fs_string(fc, "context",
  1017. data->context, strlen(data->context));
  1018. if (ret < 0)
  1019. return ret;
  1020. #else
  1021. return -EINVAL;
  1022. #endif
  1023. }
  1024. break;
  1025. default:
  1026. goto generic;
  1027. }
  1028. ret = nfs_validate_transport_protocol(fc, ctx);
  1029. if (ret)
  1030. return ret;
  1031. ctx->skip_reconfig_option_check = true;
  1032. return 0;
  1033. generic:
  1034. return generic_parse_monolithic(fc, data);
  1035. out_no_data:
  1036. if (is_remount_fc(fc)) {
  1037. ctx->skip_reconfig_option_check = true;
  1038. return 0;
  1039. }
  1040. return nfs_invalf(fc, "NFS: mount program didn't pass any mount data");
  1041. out_no_v3:
  1042. return nfs_invalf(fc, "NFS: nfs_mount_data version does not support v3");
  1043. out_no_sec:
  1044. return nfs_invalf(fc, "NFS: nfs_mount_data version supports only AUTH_SYS");
  1045. out_nomem:
  1046. return -ENOMEM;
  1047. out_no_address:
  1048. return nfs_invalf(fc, "NFS: mount program didn't pass remote address");
  1049. out_invalid_fh:
  1050. return nfs_invalf(fc, "NFS: invalid root filehandle");
  1051. out_invalid_data:
  1052. return nfs_invalf(fc, "NFS: invalid binary mount data");
  1053. }
  1054. #if IS_ENABLED(CONFIG_NFS_V4)
  1055. struct compat_nfs_string {
  1056. compat_uint_t len;
  1057. compat_uptr_t data;
  1058. };
  1059. static inline void compat_nfs_string(struct nfs_string *dst,
  1060. struct compat_nfs_string *src)
  1061. {
  1062. dst->data = compat_ptr(src->data);
  1063. dst->len = src->len;
  1064. }
  1065. struct compat_nfs4_mount_data_v1 {
  1066. compat_int_t version;
  1067. compat_int_t flags;
  1068. compat_int_t rsize;
  1069. compat_int_t wsize;
  1070. compat_int_t timeo;
  1071. compat_int_t retrans;
  1072. compat_int_t acregmin;
  1073. compat_int_t acregmax;
  1074. compat_int_t acdirmin;
  1075. compat_int_t acdirmax;
  1076. struct compat_nfs_string client_addr;
  1077. struct compat_nfs_string mnt_path;
  1078. struct compat_nfs_string hostname;
  1079. compat_uint_t host_addrlen;
  1080. compat_uptr_t host_addr;
  1081. compat_int_t proto;
  1082. compat_int_t auth_flavourlen;
  1083. compat_uptr_t auth_flavours;
  1084. };
  1085. static void nfs4_compat_mount_data_conv(struct nfs4_mount_data *data)
  1086. {
  1087. struct compat_nfs4_mount_data_v1 *compat =
  1088. (struct compat_nfs4_mount_data_v1 *)data;
  1089. /* copy the fields backwards */
  1090. data->auth_flavours = compat_ptr(compat->auth_flavours);
  1091. data->auth_flavourlen = compat->auth_flavourlen;
  1092. data->proto = compat->proto;
  1093. data->host_addr = compat_ptr(compat->host_addr);
  1094. data->host_addrlen = compat->host_addrlen;
  1095. compat_nfs_string(&data->hostname, &compat->hostname);
  1096. compat_nfs_string(&data->mnt_path, &compat->mnt_path);
  1097. compat_nfs_string(&data->client_addr, &compat->client_addr);
  1098. data->acdirmax = compat->acdirmax;
  1099. data->acdirmin = compat->acdirmin;
  1100. data->acregmax = compat->acregmax;
  1101. data->acregmin = compat->acregmin;
  1102. data->retrans = compat->retrans;
  1103. data->timeo = compat->timeo;
  1104. data->wsize = compat->wsize;
  1105. data->rsize = compat->rsize;
  1106. data->flags = compat->flags;
  1107. data->version = compat->version;
  1108. }
  1109. /*
  1110. * Validate NFSv4 mount options
  1111. */
  1112. static int nfs4_parse_monolithic(struct fs_context *fc,
  1113. struct nfs4_mount_data *data)
  1114. {
  1115. struct nfs_fs_context *ctx = nfs_fc2context(fc);
  1116. struct sockaddr_storage *sap = &ctx->nfs_server._address;
  1117. int ret;
  1118. char *c;
  1119. if (!data) {
  1120. if (is_remount_fc(fc))
  1121. goto done;
  1122. return nfs_invalf(fc,
  1123. "NFS4: mount program didn't pass any mount data");
  1124. }
  1125. ctx->version = 4;
  1126. if (data->version != 1)
  1127. return generic_parse_monolithic(fc, data);
  1128. if (in_compat_syscall())
  1129. nfs4_compat_mount_data_conv(data);
  1130. if (data->host_addrlen > sizeof(ctx->nfs_server.address))
  1131. goto out_no_address;
  1132. if (data->host_addrlen == 0)
  1133. goto out_no_address;
  1134. ctx->nfs_server.addrlen = data->host_addrlen;
  1135. if (copy_from_user(sap, data->host_addr, data->host_addrlen))
  1136. return -EFAULT;
  1137. if (!nfs_verify_server_address(sap))
  1138. goto out_no_address;
  1139. ctx->nfs_server.port = ntohs(((struct sockaddr_in *)sap)->sin_port);
  1140. if (data->auth_flavourlen) {
  1141. rpc_authflavor_t pseudoflavor;
  1142. if (data->auth_flavourlen > 1)
  1143. goto out_inval_auth;
  1144. if (copy_from_user(&pseudoflavor, data->auth_flavours,
  1145. sizeof(pseudoflavor)))
  1146. return -EFAULT;
  1147. ctx->selected_flavor = pseudoflavor;
  1148. } else {
  1149. ctx->selected_flavor = RPC_AUTH_UNIX;
  1150. }
  1151. c = strndup_user(data->hostname.data, NFS4_MAXNAMLEN);
  1152. if (IS_ERR(c))
  1153. return PTR_ERR(c);
  1154. ctx->nfs_server.hostname = c;
  1155. c = strndup_user(data->mnt_path.data, NFS4_MAXPATHLEN);
  1156. if (IS_ERR(c))
  1157. return PTR_ERR(c);
  1158. ctx->nfs_server.export_path = c;
  1159. trace_nfs_mount_path(c);
  1160. c = strndup_user(data->client_addr.data, 16);
  1161. if (IS_ERR(c))
  1162. return PTR_ERR(c);
  1163. ctx->client_address = c;
  1164. /*
  1165. * Translate to nfs_fs_context, which nfs_fill_super
  1166. * can deal with.
  1167. */
  1168. ctx->flags = data->flags & NFS4_MOUNT_FLAGMASK;
  1169. ctx->rsize = data->rsize;
  1170. ctx->wsize = data->wsize;
  1171. ctx->timeo = data->timeo;
  1172. ctx->retrans = data->retrans;
  1173. ctx->acregmin = data->acregmin;
  1174. ctx->acregmax = data->acregmax;
  1175. ctx->acdirmin = data->acdirmin;
  1176. ctx->acdirmax = data->acdirmax;
  1177. ctx->nfs_server.protocol = data->proto;
  1178. ret = nfs_validate_transport_protocol(fc, ctx);
  1179. if (ret)
  1180. return ret;
  1181. done:
  1182. ctx->skip_reconfig_option_check = true;
  1183. return 0;
  1184. out_inval_auth:
  1185. return nfs_invalf(fc, "NFS4: Invalid number of RPC auth flavours %d",
  1186. data->auth_flavourlen);
  1187. out_no_address:
  1188. return nfs_invalf(fc, "NFS4: mount program didn't pass remote address");
  1189. }
  1190. #endif
  1191. /*
  1192. * Parse a monolithic block of data from sys_mount().
  1193. */
  1194. static int nfs_fs_context_parse_monolithic(struct fs_context *fc,
  1195. void *data)
  1196. {
  1197. if (fc->fs_type == &nfs_fs_type)
  1198. return nfs23_parse_monolithic(fc, data);
  1199. #if IS_ENABLED(CONFIG_NFS_V4)
  1200. if (fc->fs_type == &nfs4_fs_type)
  1201. return nfs4_parse_monolithic(fc, data);
  1202. #endif
  1203. return nfs_invalf(fc, "NFS: Unsupported monolithic data version");
  1204. }
  1205. /*
  1206. * Validate the preparsed information in the config.
  1207. */
  1208. static int nfs_fs_context_validate(struct fs_context *fc)
  1209. {
  1210. struct nfs_fs_context *ctx = nfs_fc2context(fc);
  1211. struct nfs_subversion *nfs_mod;
  1212. struct sockaddr_storage *sap = &ctx->nfs_server._address;
  1213. int max_namelen = PAGE_SIZE;
  1214. int max_pathlen = NFS_MAXPATHLEN;
  1215. int port = 0;
  1216. int ret;
  1217. if (!fc->source)
  1218. goto out_no_device_name;
  1219. /* Check for sanity first. */
  1220. if (ctx->minorversion && ctx->version != 4)
  1221. goto out_minorversion_mismatch;
  1222. if (ctx->options & NFS_OPTION_MIGRATION &&
  1223. (ctx->version != 4 || ctx->minorversion != 0))
  1224. goto out_migration_misuse;
  1225. /* Verify that any proto=/mountproto= options match the address
  1226. * families in the addr=/mountaddr= options.
  1227. */
  1228. if (ctx->protofamily != AF_UNSPEC &&
  1229. ctx->protofamily != ctx->nfs_server.address.sa_family)
  1230. goto out_proto_mismatch;
  1231. if (ctx->mountfamily != AF_UNSPEC) {
  1232. if (ctx->mount_server.addrlen) {
  1233. if (ctx->mountfamily != ctx->mount_server.address.sa_family)
  1234. goto out_mountproto_mismatch;
  1235. } else {
  1236. if (ctx->mountfamily != ctx->nfs_server.address.sa_family)
  1237. goto out_mountproto_mismatch;
  1238. }
  1239. }
  1240. if (!nfs_verify_server_address(sap))
  1241. goto out_no_address;
  1242. ret = nfs_validate_transport_protocol(fc, ctx);
  1243. if (ret)
  1244. return ret;
  1245. if (ctx->version == 4) {
  1246. if (IS_ENABLED(CONFIG_NFS_V4)) {
  1247. if (ctx->nfs_server.protocol == XPRT_TRANSPORT_RDMA)
  1248. port = NFS_RDMA_PORT;
  1249. else
  1250. port = NFS_PORT;
  1251. max_namelen = NFS4_MAXNAMLEN;
  1252. max_pathlen = NFS4_MAXPATHLEN;
  1253. ctx->flags &= ~(NFS_MOUNT_NONLM | NFS_MOUNT_NOACL |
  1254. NFS_MOUNT_VER3 | NFS_MOUNT_LOCAL_FLOCK |
  1255. NFS_MOUNT_LOCAL_FCNTL);
  1256. } else {
  1257. goto out_v4_not_compiled;
  1258. }
  1259. } else {
  1260. nfs_set_mount_transport_protocol(ctx);
  1261. if (ctx->nfs_server.protocol == XPRT_TRANSPORT_RDMA)
  1262. port = NFS_RDMA_PORT;
  1263. }
  1264. nfs_set_port(sap, &ctx->nfs_server.port, port);
  1265. ret = nfs_parse_source(fc, max_namelen, max_pathlen);
  1266. if (ret < 0)
  1267. return ret;
  1268. /* Load the NFS protocol module if we haven't done so yet */
  1269. if (!ctx->nfs_mod) {
  1270. nfs_mod = get_nfs_version(ctx->version);
  1271. if (IS_ERR(nfs_mod)) {
  1272. ret = PTR_ERR(nfs_mod);
  1273. goto out_version_unavailable;
  1274. }
  1275. ctx->nfs_mod = nfs_mod;
  1276. }
  1277. /* Ensure the filesystem context has the correct fs_type */
  1278. if (fc->fs_type != ctx->nfs_mod->nfs_fs) {
  1279. module_put(fc->fs_type->owner);
  1280. __module_get(ctx->nfs_mod->nfs_fs->owner);
  1281. fc->fs_type = ctx->nfs_mod->nfs_fs;
  1282. }
  1283. return 0;
  1284. out_no_device_name:
  1285. return nfs_invalf(fc, "NFS: Device name not specified");
  1286. out_v4_not_compiled:
  1287. nfs_errorf(fc, "NFS: NFSv4 is not compiled into kernel");
  1288. return -EPROTONOSUPPORT;
  1289. out_no_address:
  1290. return nfs_invalf(fc, "NFS: mount program didn't pass remote address");
  1291. out_mountproto_mismatch:
  1292. return nfs_invalf(fc, "NFS: Mount server address does not match mountproto= option");
  1293. out_proto_mismatch:
  1294. return nfs_invalf(fc, "NFS: Server address does not match proto= option");
  1295. out_minorversion_mismatch:
  1296. return nfs_invalf(fc, "NFS: Mount option vers=%u does not support minorversion=%u",
  1297. ctx->version, ctx->minorversion);
  1298. out_migration_misuse:
  1299. return nfs_invalf(fc, "NFS: 'Migration' not supported for this NFS version");
  1300. out_version_unavailable:
  1301. nfs_errorf(fc, "NFS: Version unavailable");
  1302. return ret;
  1303. }
  1304. /*
  1305. * Create an NFS superblock by the appropriate method.
  1306. */
  1307. static int nfs_get_tree(struct fs_context *fc)
  1308. {
  1309. struct nfs_fs_context *ctx = nfs_fc2context(fc);
  1310. int err = nfs_fs_context_validate(fc);
  1311. if (err)
  1312. return err;
  1313. if (!ctx->internal)
  1314. return ctx->nfs_mod->rpc_ops->try_get_tree(fc);
  1315. else
  1316. return nfs_get_tree_common(fc);
  1317. }
  1318. /*
  1319. * Handle duplication of a configuration. The caller copied *src into *sc, but
  1320. * it can't deal with resource pointers in the filesystem context, so we have
  1321. * to do that. We need to clear pointers, copy data or get extra refs as
  1322. * appropriate.
  1323. */
  1324. static int nfs_fs_context_dup(struct fs_context *fc, struct fs_context *src_fc)
  1325. {
  1326. struct nfs_fs_context *src = nfs_fc2context(src_fc), *ctx;
  1327. ctx = kmemdup(src, sizeof(struct nfs_fs_context), GFP_KERNEL);
  1328. if (!ctx)
  1329. return -ENOMEM;
  1330. ctx->mntfh = nfs_alloc_fhandle();
  1331. if (!ctx->mntfh) {
  1332. kfree(ctx);
  1333. return -ENOMEM;
  1334. }
  1335. nfs_copy_fh(ctx->mntfh, src->mntfh);
  1336. __module_get(ctx->nfs_mod->owner);
  1337. ctx->client_address = NULL;
  1338. ctx->mount_server.hostname = NULL;
  1339. ctx->nfs_server.export_path = NULL;
  1340. ctx->nfs_server.hostname = NULL;
  1341. ctx->fscache_uniq = NULL;
  1342. ctx->clone_data.fattr = NULL;
  1343. fc->fs_private = ctx;
  1344. return 0;
  1345. }
  1346. static void nfs_fs_context_free(struct fs_context *fc)
  1347. {
  1348. struct nfs_fs_context *ctx = nfs_fc2context(fc);
  1349. if (ctx) {
  1350. if (ctx->server)
  1351. nfs_free_server(ctx->server);
  1352. if (ctx->nfs_mod)
  1353. put_nfs_version(ctx->nfs_mod);
  1354. kfree(ctx->client_address);
  1355. kfree(ctx->mount_server.hostname);
  1356. kfree(ctx->nfs_server.export_path);
  1357. kfree(ctx->nfs_server.hostname);
  1358. kfree(ctx->fscache_uniq);
  1359. nfs_free_fhandle(ctx->mntfh);
  1360. nfs_free_fattr(ctx->clone_data.fattr);
  1361. kfree(ctx);
  1362. }
  1363. }
  1364. static const struct fs_context_operations nfs_fs_context_ops = {
  1365. .free = nfs_fs_context_free,
  1366. .dup = nfs_fs_context_dup,
  1367. .parse_param = nfs_fs_context_parse_param,
  1368. .parse_monolithic = nfs_fs_context_parse_monolithic,
  1369. .get_tree = nfs_get_tree,
  1370. .reconfigure = nfs_reconfigure,
  1371. };
  1372. /*
  1373. * Prepare superblock configuration. We use the namespaces attached to the
  1374. * context. This may be the current process's namespaces, or it may be a
  1375. * container's namespaces.
  1376. */
  1377. static int nfs_init_fs_context(struct fs_context *fc)
  1378. {
  1379. struct nfs_fs_context *ctx;
  1380. ctx = kzalloc(sizeof(struct nfs_fs_context), GFP_KERNEL);
  1381. if (unlikely(!ctx))
  1382. return -ENOMEM;
  1383. ctx->mntfh = nfs_alloc_fhandle();
  1384. if (unlikely(!ctx->mntfh)) {
  1385. kfree(ctx);
  1386. return -ENOMEM;
  1387. }
  1388. ctx->protofamily = AF_UNSPEC;
  1389. ctx->mountfamily = AF_UNSPEC;
  1390. ctx->mount_server.port = NFS_UNSPEC_PORT;
  1391. if (fc->root) {
  1392. /* reconfigure, start with the current config */
  1393. struct nfs_server *nfss = fc->root->d_sb->s_fs_info;
  1394. struct net *net = nfss->nfs_client->cl_net;
  1395. ctx->flags = nfss->flags;
  1396. ctx->rsize = nfss->rsize;
  1397. ctx->wsize = nfss->wsize;
  1398. ctx->retrans = nfss->client->cl_timeout->to_retries;
  1399. ctx->selected_flavor = nfss->client->cl_auth->au_flavor;
  1400. ctx->acregmin = nfss->acregmin / HZ;
  1401. ctx->acregmax = nfss->acregmax / HZ;
  1402. ctx->acdirmin = nfss->acdirmin / HZ;
  1403. ctx->acdirmax = nfss->acdirmax / HZ;
  1404. ctx->timeo = 10U * nfss->client->cl_timeout->to_initval / HZ;
  1405. ctx->nfs_server.port = nfss->port;
  1406. ctx->nfs_server.addrlen = nfss->nfs_client->cl_addrlen;
  1407. ctx->version = nfss->nfs_client->rpc_ops->version;
  1408. ctx->minorversion = nfss->nfs_client->cl_minorversion;
  1409. memcpy(&ctx->nfs_server._address, &nfss->nfs_client->cl_addr,
  1410. ctx->nfs_server.addrlen);
  1411. if (fc->net_ns != net) {
  1412. put_net(fc->net_ns);
  1413. fc->net_ns = get_net(net);
  1414. }
  1415. ctx->nfs_mod = nfss->nfs_client->cl_nfs_mod;
  1416. __module_get(ctx->nfs_mod->owner);
  1417. } else {
  1418. /* defaults */
  1419. ctx->timeo = NFS_UNSPEC_TIMEO;
  1420. ctx->retrans = NFS_UNSPEC_RETRANS;
  1421. ctx->acregmin = NFS_DEF_ACREGMIN;
  1422. ctx->acregmax = NFS_DEF_ACREGMAX;
  1423. ctx->acdirmin = NFS_DEF_ACDIRMIN;
  1424. ctx->acdirmax = NFS_DEF_ACDIRMAX;
  1425. ctx->nfs_server.port = NFS_UNSPEC_PORT;
  1426. ctx->nfs_server.protocol = XPRT_TRANSPORT_TCP;
  1427. ctx->selected_flavor = RPC_AUTH_MAXFLAVOR;
  1428. ctx->minorversion = 0;
  1429. ctx->need_mount = true;
  1430. fc->s_iflags |= SB_I_STABLE_WRITES;
  1431. }
  1432. fc->fs_private = ctx;
  1433. fc->ops = &nfs_fs_context_ops;
  1434. return 0;
  1435. }
  1436. struct file_system_type nfs_fs_type = {
  1437. .owner = THIS_MODULE,
  1438. .name = "nfs",
  1439. .init_fs_context = nfs_init_fs_context,
  1440. .parameters = nfs_fs_parameters,
  1441. .kill_sb = nfs_kill_super,
  1442. .fs_flags = FS_RENAME_DOES_D_MOVE|FS_BINARY_MOUNTDATA,
  1443. };
  1444. MODULE_ALIAS_FS("nfs");
  1445. EXPORT_SYMBOL_GPL(nfs_fs_type);
  1446. #if IS_ENABLED(CONFIG_NFS_V4)
  1447. struct file_system_type nfs4_fs_type = {
  1448. .owner = THIS_MODULE,
  1449. .name = "nfs4",
  1450. .init_fs_context = nfs_init_fs_context,
  1451. .parameters = nfs_fs_parameters,
  1452. .kill_sb = nfs_kill_super,
  1453. .fs_flags = FS_RENAME_DOES_D_MOVE|FS_BINARY_MOUNTDATA,
  1454. };
  1455. MODULE_ALIAS_FS("nfs4");
  1456. MODULE_ALIAS("nfs4");
  1457. EXPORT_SYMBOL_GPL(nfs4_fs_type);
  1458. #endif /* CONFIG_NFS_V4 */