export.c 30 KB

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  1. #define MSNFS /* HACK HACK */
  2. /*
  3. * linux/fs/nfsd/export.c
  4. *
  5. * NFS exporting and validation.
  6. *
  7. * We maintain a list of clients, each of which has a list of
  8. * exports. To export an fs to a given client, you first have
  9. * to create the client entry with NFSCTL_ADDCLIENT, which
  10. * creates a client control block and adds it to the hash
  11. * table. Then, you call NFSCTL_EXPORT for each fs.
  12. *
  13. *
  14. * Copyright (C) 1995, 1996 Olaf Kirch, <okir@monad.swb.de>
  15. */
  16. #include <linux/unistd.h>
  17. #include <linux/slab.h>
  18. #include <linux/sched.h>
  19. #include <linux/stat.h>
  20. #include <linux/in.h>
  21. #include <linux/seq_file.h>
  22. #include <linux/syscalls.h>
  23. #include <linux/rwsem.h>
  24. #include <linux/dcache.h>
  25. #include <linux/namei.h>
  26. #include <linux/mount.h>
  27. #include <linux/hash.h>
  28. #include <linux/module.h>
  29. #include <linux/sunrpc/svc.h>
  30. #include <linux/nfsd/nfsd.h>
  31. #include <linux/nfsd/nfsfh.h>
  32. #include <linux/nfsd/syscall.h>
  33. #include <linux/lockd/bind.h>
  34. #define NFSDDBG_FACILITY NFSDDBG_EXPORT
  35. #define NFSD_PARANOIA 1
  36. typedef struct auth_domain svc_client;
  37. typedef struct svc_export svc_export;
  38. static void exp_do_unexport(svc_export *unexp);
  39. static int exp_verify_string(char *cp, int max);
  40. /*
  41. * We have two caches.
  42. * One maps client+vfsmnt+dentry to export options - the export map
  43. * The other maps client+filehandle-fragment to export options. - the expkey map
  44. *
  45. * The export options are actually stored in the first map, and the
  46. * second map contains a reference to the entry in the first map.
  47. */
  48. #define EXPKEY_HASHBITS 8
  49. #define EXPKEY_HASHMAX (1 << EXPKEY_HASHBITS)
  50. #define EXPKEY_HASHMASK (EXPKEY_HASHMAX -1)
  51. static struct cache_head *expkey_table[EXPKEY_HASHMAX];
  52. static void expkey_put(struct kref *ref)
  53. {
  54. struct svc_expkey *key = container_of(ref, struct svc_expkey, h.ref);
  55. if (test_bit(CACHE_VALID, &key->h.flags) &&
  56. !test_bit(CACHE_NEGATIVE, &key->h.flags)) {
  57. dput(key->ek_dentry);
  58. mntput(key->ek_mnt);
  59. }
  60. auth_domain_put(key->ek_client);
  61. kfree(key);
  62. }
  63. static void expkey_request(struct cache_detail *cd,
  64. struct cache_head *h,
  65. char **bpp, int *blen)
  66. {
  67. /* client fsidtype \xfsid */
  68. struct svc_expkey *ek = container_of(h, struct svc_expkey, h);
  69. char type[5];
  70. qword_add(bpp, blen, ek->ek_client->name);
  71. snprintf(type, 5, "%d", ek->ek_fsidtype);
  72. qword_add(bpp, blen, type);
  73. qword_addhex(bpp, blen, (char*)ek->ek_fsid, key_len(ek->ek_fsidtype));
  74. (*bpp)[-1] = '\n';
  75. }
  76. static struct svc_expkey *svc_expkey_update(struct svc_expkey *new, struct svc_expkey *old);
  77. static struct svc_expkey *svc_expkey_lookup(struct svc_expkey *);
  78. static struct cache_detail svc_expkey_cache;
  79. static int expkey_parse(struct cache_detail *cd, char *mesg, int mlen)
  80. {
  81. /* client fsidtype fsid [path] */
  82. char *buf;
  83. int len;
  84. struct auth_domain *dom = NULL;
  85. int err;
  86. int fsidtype;
  87. char *ep;
  88. struct svc_expkey key;
  89. struct svc_expkey *ek;
  90. if (mesg[mlen-1] != '\n')
  91. return -EINVAL;
  92. mesg[mlen-1] = 0;
  93. buf = kmalloc(PAGE_SIZE, GFP_KERNEL);
  94. err = -ENOMEM;
  95. if (!buf) goto out;
  96. err = -EINVAL;
  97. if ((len=qword_get(&mesg, buf, PAGE_SIZE)) <= 0)
  98. goto out;
  99. err = -ENOENT;
  100. dom = auth_domain_find(buf);
  101. if (!dom)
  102. goto out;
  103. dprintk("found domain %s\n", buf);
  104. err = -EINVAL;
  105. if ((len=qword_get(&mesg, buf, PAGE_SIZE)) <= 0)
  106. goto out;
  107. fsidtype = simple_strtoul(buf, &ep, 10);
  108. if (*ep)
  109. goto out;
  110. dprintk("found fsidtype %d\n", fsidtype);
  111. if (fsidtype > 2)
  112. goto out;
  113. if ((len=qword_get(&mesg, buf, PAGE_SIZE)) <= 0)
  114. goto out;
  115. dprintk("found fsid length %d\n", len);
  116. if (len != key_len(fsidtype))
  117. goto out;
  118. /* OK, we seem to have a valid key */
  119. key.h.flags = 0;
  120. key.h.expiry_time = get_expiry(&mesg);
  121. if (key.h.expiry_time == 0)
  122. goto out;
  123. key.ek_client = dom;
  124. key.ek_fsidtype = fsidtype;
  125. memcpy(key.ek_fsid, buf, len);
  126. ek = svc_expkey_lookup(&key);
  127. err = -ENOMEM;
  128. if (!ek)
  129. goto out;
  130. /* now we want a pathname, or empty meaning NEGATIVE */
  131. err = -EINVAL;
  132. if ((len=qword_get(&mesg, buf, PAGE_SIZE)) < 0)
  133. goto out;
  134. dprintk("Path seems to be <%s>\n", buf);
  135. err = 0;
  136. if (len == 0) {
  137. set_bit(CACHE_NEGATIVE, &key.h.flags);
  138. ek = svc_expkey_update(&key, ek);
  139. if (ek)
  140. cache_put(&ek->h, &svc_expkey_cache);
  141. else err = -ENOMEM;
  142. } else {
  143. struct nameidata nd;
  144. err = path_lookup(buf, 0, &nd);
  145. if (err)
  146. goto out;
  147. dprintk("Found the path %s\n", buf);
  148. key.ek_mnt = nd.mnt;
  149. key.ek_dentry = nd.dentry;
  150. ek = svc_expkey_update(&key, ek);
  151. if (ek)
  152. cache_put(&ek->h, &svc_expkey_cache);
  153. else
  154. err = -ENOMEM;
  155. path_release(&nd);
  156. }
  157. cache_flush();
  158. out:
  159. if (dom)
  160. auth_domain_put(dom);
  161. kfree(buf);
  162. return err;
  163. }
  164. static int expkey_show(struct seq_file *m,
  165. struct cache_detail *cd,
  166. struct cache_head *h)
  167. {
  168. struct svc_expkey *ek ;
  169. if (h ==NULL) {
  170. seq_puts(m, "#domain fsidtype fsid [path]\n");
  171. return 0;
  172. }
  173. ek = container_of(h, struct svc_expkey, h);
  174. seq_printf(m, "%s %d 0x%08x", ek->ek_client->name,
  175. ek->ek_fsidtype, ek->ek_fsid[0]);
  176. if (ek->ek_fsidtype != 1)
  177. seq_printf(m, "%08x", ek->ek_fsid[1]);
  178. if (ek->ek_fsidtype == 2)
  179. seq_printf(m, "%08x", ek->ek_fsid[2]);
  180. if (test_bit(CACHE_VALID, &h->flags) &&
  181. !test_bit(CACHE_NEGATIVE, &h->flags)) {
  182. seq_printf(m, " ");
  183. seq_path(m, ek->ek_mnt, ek->ek_dentry, "\\ \t\n");
  184. }
  185. seq_printf(m, "\n");
  186. return 0;
  187. }
  188. static inline int expkey_match (struct cache_head *a, struct cache_head *b)
  189. {
  190. struct svc_expkey *orig = container_of(a, struct svc_expkey, h);
  191. struct svc_expkey *new = container_of(b, struct svc_expkey, h);
  192. if (orig->ek_fsidtype != new->ek_fsidtype ||
  193. orig->ek_client != new->ek_client ||
  194. memcmp(orig->ek_fsid, new->ek_fsid, key_len(orig->ek_fsidtype)) != 0)
  195. return 0;
  196. return 1;
  197. }
  198. static inline void expkey_init(struct cache_head *cnew,
  199. struct cache_head *citem)
  200. {
  201. struct svc_expkey *new = container_of(cnew, struct svc_expkey, h);
  202. struct svc_expkey *item = container_of(citem, struct svc_expkey, h);
  203. kref_get(&item->ek_client->ref);
  204. new->ek_client = item->ek_client;
  205. new->ek_fsidtype = item->ek_fsidtype;
  206. new->ek_fsid[0] = item->ek_fsid[0];
  207. new->ek_fsid[1] = item->ek_fsid[1];
  208. new->ek_fsid[2] = item->ek_fsid[2];
  209. }
  210. static inline void expkey_update(struct cache_head *cnew,
  211. struct cache_head *citem)
  212. {
  213. struct svc_expkey *new = container_of(cnew, struct svc_expkey, h);
  214. struct svc_expkey *item = container_of(citem, struct svc_expkey, h);
  215. new->ek_mnt = mntget(item->ek_mnt);
  216. new->ek_dentry = dget(item->ek_dentry);
  217. }
  218. static struct cache_head *expkey_alloc(void)
  219. {
  220. struct svc_expkey *i = kmalloc(sizeof(*i), GFP_KERNEL);
  221. if (i)
  222. return &i->h;
  223. else
  224. return NULL;
  225. }
  226. static struct cache_detail svc_expkey_cache = {
  227. .owner = THIS_MODULE,
  228. .hash_size = EXPKEY_HASHMAX,
  229. .hash_table = expkey_table,
  230. .name = "nfsd.fh",
  231. .cache_put = expkey_put,
  232. .cache_request = expkey_request,
  233. .cache_parse = expkey_parse,
  234. .cache_show = expkey_show,
  235. .match = expkey_match,
  236. .init = expkey_init,
  237. .update = expkey_update,
  238. .alloc = expkey_alloc,
  239. };
  240. static struct svc_expkey *
  241. svc_expkey_lookup(struct svc_expkey *item)
  242. {
  243. struct cache_head *ch;
  244. int hash = item->ek_fsidtype;
  245. char * cp = (char*)item->ek_fsid;
  246. int len = key_len(item->ek_fsidtype);
  247. hash ^= hash_mem(cp, len, EXPKEY_HASHBITS);
  248. hash ^= hash_ptr(item->ek_client, EXPKEY_HASHBITS);
  249. hash &= EXPKEY_HASHMASK;
  250. ch = sunrpc_cache_lookup(&svc_expkey_cache, &item->h,
  251. hash);
  252. if (ch)
  253. return container_of(ch, struct svc_expkey, h);
  254. else
  255. return NULL;
  256. }
  257. static struct svc_expkey *
  258. svc_expkey_update(struct svc_expkey *new, struct svc_expkey *old)
  259. {
  260. struct cache_head *ch;
  261. int hash = new->ek_fsidtype;
  262. char * cp = (char*)new->ek_fsid;
  263. int len = key_len(new->ek_fsidtype);
  264. hash ^= hash_mem(cp, len, EXPKEY_HASHBITS);
  265. hash ^= hash_ptr(new->ek_client, EXPKEY_HASHBITS);
  266. hash &= EXPKEY_HASHMASK;
  267. ch = sunrpc_cache_update(&svc_expkey_cache, &new->h,
  268. &old->h, hash);
  269. if (ch)
  270. return container_of(ch, struct svc_expkey, h);
  271. else
  272. return NULL;
  273. }
  274. #define EXPORT_HASHBITS 8
  275. #define EXPORT_HASHMAX (1<< EXPORT_HASHBITS)
  276. #define EXPORT_HASHMASK (EXPORT_HASHMAX -1)
  277. static struct cache_head *export_table[EXPORT_HASHMAX];
  278. static void svc_export_put(struct kref *ref)
  279. {
  280. struct svc_export *exp = container_of(ref, struct svc_export, h.ref);
  281. dput(exp->ex_dentry);
  282. mntput(exp->ex_mnt);
  283. auth_domain_put(exp->ex_client);
  284. kfree(exp);
  285. }
  286. static void svc_export_request(struct cache_detail *cd,
  287. struct cache_head *h,
  288. char **bpp, int *blen)
  289. {
  290. /* client path */
  291. struct svc_export *exp = container_of(h, struct svc_export, h);
  292. char *pth;
  293. qword_add(bpp, blen, exp->ex_client->name);
  294. pth = d_path(exp->ex_dentry, exp->ex_mnt, *bpp, *blen);
  295. if (IS_ERR(pth)) {
  296. /* is this correct? */
  297. (*bpp)[0] = '\n';
  298. return;
  299. }
  300. qword_add(bpp, blen, pth);
  301. (*bpp)[-1] = '\n';
  302. }
  303. static struct svc_export *svc_export_update(struct svc_export *new,
  304. struct svc_export *old);
  305. static struct svc_export *svc_export_lookup(struct svc_export *);
  306. static int check_export(struct inode *inode, int flags)
  307. {
  308. /* We currently export only dirs and regular files.
  309. * This is what umountd does.
  310. */
  311. if (!S_ISDIR(inode->i_mode) &&
  312. !S_ISREG(inode->i_mode))
  313. return -ENOTDIR;
  314. /* There are two requirements on a filesystem to be exportable.
  315. * 1: We must be able to identify the filesystem from a number.
  316. * either a device number (so FS_REQUIRES_DEV needed)
  317. * or an FSID number (so NFSEXP_FSID needed).
  318. * 2: We must be able to find an inode from a filehandle.
  319. * This means that s_export_op must be set.
  320. */
  321. if (!(inode->i_sb->s_type->fs_flags & FS_REQUIRES_DEV) &&
  322. !(flags & NFSEXP_FSID)) {
  323. dprintk("exp_export: export of non-dev fs without fsid");
  324. return -EINVAL;
  325. }
  326. if (!inode->i_sb->s_export_op) {
  327. dprintk("exp_export: export of invalid fs type.\n");
  328. return -EINVAL;
  329. }
  330. /* Ok, we can export it */;
  331. if (!inode->i_sb->s_export_op->find_exported_dentry)
  332. inode->i_sb->s_export_op->find_exported_dentry =
  333. find_exported_dentry;
  334. return 0;
  335. }
  336. static int svc_export_parse(struct cache_detail *cd, char *mesg, int mlen)
  337. {
  338. /* client path expiry [flags anonuid anongid fsid] */
  339. char *buf;
  340. int len;
  341. int err;
  342. struct auth_domain *dom = NULL;
  343. struct nameidata nd;
  344. struct svc_export exp, *expp;
  345. int an_int;
  346. nd.dentry = NULL;
  347. if (mesg[mlen-1] != '\n')
  348. return -EINVAL;
  349. mesg[mlen-1] = 0;
  350. buf = kmalloc(PAGE_SIZE, GFP_KERNEL);
  351. err = -ENOMEM;
  352. if (!buf) goto out;
  353. /* client */
  354. len = qword_get(&mesg, buf, PAGE_SIZE);
  355. err = -EINVAL;
  356. if (len <= 0) goto out;
  357. err = -ENOENT;
  358. dom = auth_domain_find(buf);
  359. if (!dom)
  360. goto out;
  361. /* path */
  362. err = -EINVAL;
  363. if ((len=qword_get(&mesg, buf, PAGE_SIZE)) <= 0)
  364. goto out;
  365. err = path_lookup(buf, 0, &nd);
  366. if (err) goto out_no_path;
  367. exp.h.flags = 0;
  368. exp.ex_client = dom;
  369. exp.ex_mnt = nd.mnt;
  370. exp.ex_dentry = nd.dentry;
  371. /* expiry */
  372. err = -EINVAL;
  373. exp.h.expiry_time = get_expiry(&mesg);
  374. if (exp.h.expiry_time == 0)
  375. goto out;
  376. /* flags */
  377. err = get_int(&mesg, &an_int);
  378. if (err == -ENOENT)
  379. set_bit(CACHE_NEGATIVE, &exp.h.flags);
  380. else {
  381. if (err || an_int < 0) goto out;
  382. exp.ex_flags= an_int;
  383. /* anon uid */
  384. err = get_int(&mesg, &an_int);
  385. if (err) goto out;
  386. exp.ex_anon_uid= an_int;
  387. /* anon gid */
  388. err = get_int(&mesg, &an_int);
  389. if (err) goto out;
  390. exp.ex_anon_gid= an_int;
  391. /* fsid */
  392. err = get_int(&mesg, &an_int);
  393. if (err) goto out;
  394. exp.ex_fsid = an_int;
  395. err = check_export(nd.dentry->d_inode, exp.ex_flags);
  396. if (err) goto out;
  397. }
  398. expp = svc_export_lookup(&exp);
  399. if (expp)
  400. expp = svc_export_update(&exp, expp);
  401. else
  402. err = -ENOMEM;
  403. cache_flush();
  404. if (expp == NULL)
  405. err = -ENOMEM;
  406. else
  407. exp_put(expp);
  408. out:
  409. if (nd.dentry)
  410. path_release(&nd);
  411. out_no_path:
  412. if (dom)
  413. auth_domain_put(dom);
  414. kfree(buf);
  415. return err;
  416. }
  417. static void exp_flags(struct seq_file *m, int flag, int fsid, uid_t anonu, uid_t anong);
  418. static int svc_export_show(struct seq_file *m,
  419. struct cache_detail *cd,
  420. struct cache_head *h)
  421. {
  422. struct svc_export *exp ;
  423. if (h ==NULL) {
  424. seq_puts(m, "#path domain(flags)\n");
  425. return 0;
  426. }
  427. exp = container_of(h, struct svc_export, h);
  428. seq_path(m, exp->ex_mnt, exp->ex_dentry, " \t\n\\");
  429. seq_putc(m, '\t');
  430. seq_escape(m, exp->ex_client->name, " \t\n\\");
  431. seq_putc(m, '(');
  432. if (test_bit(CACHE_VALID, &h->flags) &&
  433. !test_bit(CACHE_NEGATIVE, &h->flags))
  434. exp_flags(m, exp->ex_flags, exp->ex_fsid,
  435. exp->ex_anon_uid, exp->ex_anon_gid);
  436. seq_puts(m, ")\n");
  437. return 0;
  438. }
  439. static int svc_export_match(struct cache_head *a, struct cache_head *b)
  440. {
  441. struct svc_export *orig = container_of(a, struct svc_export, h);
  442. struct svc_export *new = container_of(b, struct svc_export, h);
  443. return orig->ex_client == new->ex_client &&
  444. orig->ex_dentry == new->ex_dentry &&
  445. orig->ex_mnt == new->ex_mnt;
  446. }
  447. static void svc_export_init(struct cache_head *cnew, struct cache_head *citem)
  448. {
  449. struct svc_export *new = container_of(cnew, struct svc_export, h);
  450. struct svc_export *item = container_of(citem, struct svc_export, h);
  451. kref_get(&item->ex_client->ref);
  452. new->ex_client = item->ex_client;
  453. new->ex_dentry = dget(item->ex_dentry);
  454. new->ex_mnt = mntget(item->ex_mnt);
  455. }
  456. static void export_update(struct cache_head *cnew, struct cache_head *citem)
  457. {
  458. struct svc_export *new = container_of(cnew, struct svc_export, h);
  459. struct svc_export *item = container_of(citem, struct svc_export, h);
  460. new->ex_flags = item->ex_flags;
  461. new->ex_anon_uid = item->ex_anon_uid;
  462. new->ex_anon_gid = item->ex_anon_gid;
  463. new->ex_fsid = item->ex_fsid;
  464. }
  465. static struct cache_head *svc_export_alloc(void)
  466. {
  467. struct svc_export *i = kmalloc(sizeof(*i), GFP_KERNEL);
  468. if (i)
  469. return &i->h;
  470. else
  471. return NULL;
  472. }
  473. struct cache_detail svc_export_cache = {
  474. .owner = THIS_MODULE,
  475. .hash_size = EXPORT_HASHMAX,
  476. .hash_table = export_table,
  477. .name = "nfsd.export",
  478. .cache_put = svc_export_put,
  479. .cache_request = svc_export_request,
  480. .cache_parse = svc_export_parse,
  481. .cache_show = svc_export_show,
  482. .match = svc_export_match,
  483. .init = svc_export_init,
  484. .update = export_update,
  485. .alloc = svc_export_alloc,
  486. };
  487. static struct svc_export *
  488. svc_export_lookup(struct svc_export *exp)
  489. {
  490. struct cache_head *ch;
  491. int hash;
  492. hash = hash_ptr(exp->ex_client, EXPORT_HASHBITS);
  493. hash ^= hash_ptr(exp->ex_dentry, EXPORT_HASHBITS);
  494. hash ^= hash_ptr(exp->ex_mnt, EXPORT_HASHBITS);
  495. ch = sunrpc_cache_lookup(&svc_export_cache, &exp->h,
  496. hash);
  497. if (ch)
  498. return container_of(ch, struct svc_export, h);
  499. else
  500. return NULL;
  501. }
  502. static struct svc_export *
  503. svc_export_update(struct svc_export *new, struct svc_export *old)
  504. {
  505. struct cache_head *ch;
  506. int hash;
  507. hash = hash_ptr(old->ex_client, EXPORT_HASHBITS);
  508. hash ^= hash_ptr(old->ex_dentry, EXPORT_HASHBITS);
  509. hash ^= hash_ptr(old->ex_mnt, EXPORT_HASHBITS);
  510. ch = sunrpc_cache_update(&svc_export_cache, &new->h,
  511. &old->h,
  512. hash);
  513. if (ch)
  514. return container_of(ch, struct svc_export, h);
  515. else
  516. return NULL;
  517. }
  518. static struct svc_expkey *
  519. exp_find_key(svc_client *clp, int fsid_type, u32 *fsidv, struct cache_req *reqp)
  520. {
  521. struct svc_expkey key, *ek;
  522. int err;
  523. if (!clp)
  524. return NULL;
  525. key.ek_client = clp;
  526. key.ek_fsidtype = fsid_type;
  527. memcpy(key.ek_fsid, fsidv, key_len(fsid_type));
  528. ek = svc_expkey_lookup(&key);
  529. if (ek != NULL)
  530. if ((err = cache_check(&svc_expkey_cache, &ek->h, reqp)))
  531. ek = ERR_PTR(err);
  532. return ek;
  533. }
  534. static int exp_set_key(svc_client *clp, int fsid_type, u32 *fsidv,
  535. struct svc_export *exp)
  536. {
  537. struct svc_expkey key, *ek;
  538. key.ek_client = clp;
  539. key.ek_fsidtype = fsid_type;
  540. memcpy(key.ek_fsid, fsidv, key_len(fsid_type));
  541. key.ek_mnt = exp->ex_mnt;
  542. key.ek_dentry = exp->ex_dentry;
  543. key.h.expiry_time = NEVER;
  544. key.h.flags = 0;
  545. ek = svc_expkey_lookup(&key);
  546. if (ek)
  547. ek = svc_expkey_update(&key,ek);
  548. if (ek) {
  549. cache_put(&ek->h, &svc_expkey_cache);
  550. return 0;
  551. }
  552. return -ENOMEM;
  553. }
  554. /*
  555. * Find the client's export entry matching xdev/xino.
  556. */
  557. static inline struct svc_expkey *
  558. exp_get_key(svc_client *clp, dev_t dev, ino_t ino)
  559. {
  560. u32 fsidv[3];
  561. if (old_valid_dev(dev)) {
  562. mk_fsid_v0(fsidv, dev, ino);
  563. return exp_find_key(clp, 0, fsidv, NULL);
  564. }
  565. mk_fsid_v3(fsidv, dev, ino);
  566. return exp_find_key(clp, 3, fsidv, NULL);
  567. }
  568. /*
  569. * Find the client's export entry matching fsid
  570. */
  571. static inline struct svc_expkey *
  572. exp_get_fsid_key(svc_client *clp, int fsid)
  573. {
  574. u32 fsidv[2];
  575. mk_fsid_v1(fsidv, fsid);
  576. return exp_find_key(clp, 1, fsidv, NULL);
  577. }
  578. svc_export *
  579. exp_get_by_name(svc_client *clp, struct vfsmount *mnt, struct dentry *dentry,
  580. struct cache_req *reqp)
  581. {
  582. struct svc_export *exp, key;
  583. if (!clp)
  584. return NULL;
  585. key.ex_client = clp;
  586. key.ex_mnt = mnt;
  587. key.ex_dentry = dentry;
  588. exp = svc_export_lookup(&key);
  589. if (exp != NULL)
  590. switch (cache_check(&svc_export_cache, &exp->h, reqp)) {
  591. case 0: break;
  592. case -EAGAIN:
  593. exp = ERR_PTR(-EAGAIN);
  594. break;
  595. default:
  596. exp = NULL;
  597. }
  598. return exp;
  599. }
  600. /*
  601. * Find the export entry for a given dentry.
  602. */
  603. struct svc_export *
  604. exp_parent(svc_client *clp, struct vfsmount *mnt, struct dentry *dentry,
  605. struct cache_req *reqp)
  606. {
  607. svc_export *exp;
  608. dget(dentry);
  609. exp = exp_get_by_name(clp, mnt, dentry, reqp);
  610. while (exp == NULL && !IS_ROOT(dentry)) {
  611. struct dentry *parent;
  612. parent = dget_parent(dentry);
  613. dput(dentry);
  614. dentry = parent;
  615. exp = exp_get_by_name(clp, mnt, dentry, reqp);
  616. }
  617. dput(dentry);
  618. return exp;
  619. }
  620. /*
  621. * Hashtable locking. Write locks are placed only by user processes
  622. * wanting to modify export information.
  623. * Write locking only done in this file. Read locking
  624. * needed externally.
  625. */
  626. static DECLARE_RWSEM(hash_sem);
  627. void
  628. exp_readlock(void)
  629. {
  630. down_read(&hash_sem);
  631. }
  632. static inline void
  633. exp_writelock(void)
  634. {
  635. down_write(&hash_sem);
  636. }
  637. void
  638. exp_readunlock(void)
  639. {
  640. up_read(&hash_sem);
  641. }
  642. static inline void
  643. exp_writeunlock(void)
  644. {
  645. up_write(&hash_sem);
  646. }
  647. static void exp_fsid_unhash(struct svc_export *exp)
  648. {
  649. struct svc_expkey *ek;
  650. if ((exp->ex_flags & NFSEXP_FSID) == 0)
  651. return;
  652. ek = exp_get_fsid_key(exp->ex_client, exp->ex_fsid);
  653. if (ek && !IS_ERR(ek)) {
  654. ek->h.expiry_time = get_seconds()-1;
  655. cache_put(&ek->h, &svc_expkey_cache);
  656. }
  657. svc_expkey_cache.nextcheck = get_seconds();
  658. }
  659. static int exp_fsid_hash(svc_client *clp, struct svc_export *exp)
  660. {
  661. u32 fsid[2];
  662. if ((exp->ex_flags & NFSEXP_FSID) == 0)
  663. return 0;
  664. mk_fsid_v1(fsid, exp->ex_fsid);
  665. return exp_set_key(clp, 1, fsid, exp);
  666. }
  667. static int exp_hash(struct auth_domain *clp, struct svc_export *exp)
  668. {
  669. u32 fsid[2];
  670. struct inode *inode = exp->ex_dentry->d_inode;
  671. dev_t dev = inode->i_sb->s_dev;
  672. if (old_valid_dev(dev)) {
  673. mk_fsid_v0(fsid, dev, inode->i_ino);
  674. return exp_set_key(clp, 0, fsid, exp);
  675. }
  676. mk_fsid_v3(fsid, dev, inode->i_ino);
  677. return exp_set_key(clp, 3, fsid, exp);
  678. }
  679. static void exp_unhash(struct svc_export *exp)
  680. {
  681. struct svc_expkey *ek;
  682. struct inode *inode = exp->ex_dentry->d_inode;
  683. ek = exp_get_key(exp->ex_client, inode->i_sb->s_dev, inode->i_ino);
  684. if (ek && !IS_ERR(ek)) {
  685. ek->h.expiry_time = get_seconds()-1;
  686. cache_put(&ek->h, &svc_expkey_cache);
  687. }
  688. svc_expkey_cache.nextcheck = get_seconds();
  689. }
  690. /*
  691. * Export a file system.
  692. */
  693. int
  694. exp_export(struct nfsctl_export *nxp)
  695. {
  696. svc_client *clp;
  697. struct svc_export *exp = NULL;
  698. struct svc_export new;
  699. struct svc_expkey *fsid_key = NULL;
  700. struct nameidata nd;
  701. int err;
  702. /* Consistency check */
  703. err = -EINVAL;
  704. if (!exp_verify_string(nxp->ex_path, NFS_MAXPATHLEN) ||
  705. !exp_verify_string(nxp->ex_client, NFSCLNT_IDMAX))
  706. goto out;
  707. dprintk("exp_export called for %s:%s (%x/%ld fl %x).\n",
  708. nxp->ex_client, nxp->ex_path,
  709. (unsigned)nxp->ex_dev, (long)nxp->ex_ino,
  710. nxp->ex_flags);
  711. /* Try to lock the export table for update */
  712. exp_writelock();
  713. /* Look up client info */
  714. if (!(clp = auth_domain_find(nxp->ex_client)))
  715. goto out_unlock;
  716. /* Look up the dentry */
  717. err = path_lookup(nxp->ex_path, 0, &nd);
  718. if (err)
  719. goto out_unlock;
  720. err = -EINVAL;
  721. exp = exp_get_by_name(clp, nd.mnt, nd.dentry, NULL);
  722. /* must make sure there won't be an ex_fsid clash */
  723. if ((nxp->ex_flags & NFSEXP_FSID) &&
  724. (fsid_key = exp_get_fsid_key(clp, nxp->ex_dev)) &&
  725. !IS_ERR(fsid_key) &&
  726. fsid_key->ek_mnt &&
  727. (fsid_key->ek_mnt != nd.mnt || fsid_key->ek_dentry != nd.dentry) )
  728. goto finish;
  729. if (exp) {
  730. /* just a flags/id/fsid update */
  731. exp_fsid_unhash(exp);
  732. exp->ex_flags = nxp->ex_flags;
  733. exp->ex_anon_uid = nxp->ex_anon_uid;
  734. exp->ex_anon_gid = nxp->ex_anon_gid;
  735. exp->ex_fsid = nxp->ex_dev;
  736. err = exp_fsid_hash(clp, exp);
  737. goto finish;
  738. }
  739. err = check_export(nd.dentry->d_inode, nxp->ex_flags);
  740. if (err) goto finish;
  741. err = -ENOMEM;
  742. dprintk("nfsd: creating export entry %p for client %p\n", exp, clp);
  743. new.h.expiry_time = NEVER;
  744. new.h.flags = 0;
  745. new.ex_client = clp;
  746. new.ex_mnt = nd.mnt;
  747. new.ex_dentry = nd.dentry;
  748. new.ex_flags = nxp->ex_flags;
  749. new.ex_anon_uid = nxp->ex_anon_uid;
  750. new.ex_anon_gid = nxp->ex_anon_gid;
  751. new.ex_fsid = nxp->ex_dev;
  752. exp = svc_export_lookup(&new);
  753. if (exp)
  754. exp = svc_export_update(&new, exp);
  755. if (!exp)
  756. goto finish;
  757. if (exp_hash(clp, exp) ||
  758. exp_fsid_hash(clp, exp)) {
  759. /* failed to create at least one index */
  760. exp_do_unexport(exp);
  761. cache_flush();
  762. err = -ENOMEM;
  763. }
  764. finish:
  765. if (exp)
  766. exp_put(exp);
  767. if (fsid_key && !IS_ERR(fsid_key))
  768. cache_put(&fsid_key->h, &svc_expkey_cache);
  769. if (clp)
  770. auth_domain_put(clp);
  771. path_release(&nd);
  772. out_unlock:
  773. exp_writeunlock();
  774. out:
  775. return err;
  776. }
  777. /*
  778. * Unexport a file system. The export entry has already
  779. * been removed from the client's list of exported fs's.
  780. */
  781. static void
  782. exp_do_unexport(svc_export *unexp)
  783. {
  784. unexp->h.expiry_time = get_seconds()-1;
  785. svc_export_cache.nextcheck = get_seconds();
  786. exp_unhash(unexp);
  787. exp_fsid_unhash(unexp);
  788. }
  789. /*
  790. * unexport syscall.
  791. */
  792. int
  793. exp_unexport(struct nfsctl_export *nxp)
  794. {
  795. struct auth_domain *dom;
  796. svc_export *exp;
  797. struct nameidata nd;
  798. int err;
  799. /* Consistency check */
  800. if (!exp_verify_string(nxp->ex_path, NFS_MAXPATHLEN) ||
  801. !exp_verify_string(nxp->ex_client, NFSCLNT_IDMAX))
  802. return -EINVAL;
  803. exp_writelock();
  804. err = -EINVAL;
  805. dom = auth_domain_find(nxp->ex_client);
  806. if (!dom) {
  807. dprintk("nfsd: unexport couldn't find %s\n", nxp->ex_client);
  808. goto out_unlock;
  809. }
  810. err = path_lookup(nxp->ex_path, 0, &nd);
  811. if (err)
  812. goto out_domain;
  813. err = -EINVAL;
  814. exp = exp_get_by_name(dom, nd.mnt, nd.dentry, NULL);
  815. path_release(&nd);
  816. if (!exp)
  817. goto out_domain;
  818. exp_do_unexport(exp);
  819. exp_put(exp);
  820. err = 0;
  821. out_domain:
  822. auth_domain_put(dom);
  823. cache_flush();
  824. out_unlock:
  825. exp_writeunlock();
  826. return err;
  827. }
  828. /*
  829. * Obtain the root fh on behalf of a client.
  830. * This could be done in user space, but I feel that it adds some safety
  831. * since its harder to fool a kernel module than a user space program.
  832. */
  833. int
  834. exp_rootfh(svc_client *clp, char *path, struct knfsd_fh *f, int maxsize)
  835. {
  836. struct svc_export *exp;
  837. struct nameidata nd;
  838. struct inode *inode;
  839. struct svc_fh fh;
  840. int err;
  841. err = -EPERM;
  842. /* NB: we probably ought to check that it's NUL-terminated */
  843. if (path_lookup(path, 0, &nd)) {
  844. printk("nfsd: exp_rootfh path not found %s", path);
  845. return err;
  846. }
  847. inode = nd.dentry->d_inode;
  848. dprintk("nfsd: exp_rootfh(%s [%p] %s:%s/%ld)\n",
  849. path, nd.dentry, clp->name,
  850. inode->i_sb->s_id, inode->i_ino);
  851. exp = exp_parent(clp, nd.mnt, nd.dentry, NULL);
  852. if (!exp) {
  853. dprintk("nfsd: exp_rootfh export not found.\n");
  854. goto out;
  855. }
  856. /*
  857. * fh must be initialized before calling fh_compose
  858. */
  859. fh_init(&fh, maxsize);
  860. if (fh_compose(&fh, exp, nd.dentry, NULL))
  861. err = -EINVAL;
  862. else
  863. err = 0;
  864. memcpy(f, &fh.fh_handle, sizeof(struct knfsd_fh));
  865. fh_put(&fh);
  866. exp_put(exp);
  867. out:
  868. path_release(&nd);
  869. return err;
  870. }
  871. struct svc_export *
  872. exp_find(struct auth_domain *clp, int fsid_type, u32 *fsidv,
  873. struct cache_req *reqp)
  874. {
  875. struct svc_export *exp;
  876. struct svc_expkey *ek = exp_find_key(clp, fsid_type, fsidv, reqp);
  877. if (!ek || IS_ERR(ek))
  878. return ERR_PTR(PTR_ERR(ek));
  879. exp = exp_get_by_name(clp, ek->ek_mnt, ek->ek_dentry, reqp);
  880. cache_put(&ek->h, &svc_expkey_cache);
  881. if (!exp || IS_ERR(exp))
  882. return ERR_PTR(PTR_ERR(exp));
  883. return exp;
  884. }
  885. /*
  886. * Called when we need the filehandle for the root of the pseudofs,
  887. * for a given NFSv4 client. The root is defined to be the
  888. * export point with fsid==0
  889. */
  890. int
  891. exp_pseudoroot(struct auth_domain *clp, struct svc_fh *fhp,
  892. struct cache_req *creq)
  893. {
  894. struct svc_expkey *fsid_key;
  895. struct svc_export *exp;
  896. int rv;
  897. u32 fsidv[2];
  898. mk_fsid_v1(fsidv, 0);
  899. fsid_key = exp_find_key(clp, 1, fsidv, creq);
  900. if (IS_ERR(fsid_key) && PTR_ERR(fsid_key) == -EAGAIN)
  901. return nfserr_dropit;
  902. if (!fsid_key || IS_ERR(fsid_key))
  903. return nfserr_perm;
  904. exp = exp_get_by_name(clp, fsid_key->ek_mnt, fsid_key->ek_dentry, creq);
  905. if (exp == NULL)
  906. rv = nfserr_perm;
  907. else if (IS_ERR(exp))
  908. rv = nfserrno(PTR_ERR(exp));
  909. else
  910. rv = fh_compose(fhp, exp,
  911. fsid_key->ek_dentry, NULL);
  912. cache_put(&fsid_key->h, &svc_expkey_cache);
  913. return rv;
  914. }
  915. /* Iterator */
  916. static void *e_start(struct seq_file *m, loff_t *pos)
  917. {
  918. loff_t n = *pos;
  919. unsigned hash, export;
  920. struct cache_head *ch;
  921. exp_readlock();
  922. read_lock(&svc_export_cache.hash_lock);
  923. if (!n--)
  924. return (void *)1;
  925. hash = n >> 32;
  926. export = n & ((1LL<<32) - 1);
  927. for (ch=export_table[hash]; ch; ch=ch->next)
  928. if (!export--)
  929. return ch;
  930. n &= ~((1LL<<32) - 1);
  931. do {
  932. hash++;
  933. n += 1LL<<32;
  934. } while(hash < EXPORT_HASHMAX && export_table[hash]==NULL);
  935. if (hash >= EXPORT_HASHMAX)
  936. return NULL;
  937. *pos = n+1;
  938. return export_table[hash];
  939. }
  940. static void *e_next(struct seq_file *m, void *p, loff_t *pos)
  941. {
  942. struct cache_head *ch = p;
  943. int hash = (*pos >> 32);
  944. if (p == (void *)1)
  945. hash = 0;
  946. else if (ch->next == NULL) {
  947. hash++;
  948. *pos += 1LL<<32;
  949. } else {
  950. ++*pos;
  951. return ch->next;
  952. }
  953. *pos &= ~((1LL<<32) - 1);
  954. while (hash < EXPORT_HASHMAX && export_table[hash] == NULL) {
  955. hash++;
  956. *pos += 1LL<<32;
  957. }
  958. if (hash >= EXPORT_HASHMAX)
  959. return NULL;
  960. ++*pos;
  961. return export_table[hash];
  962. }
  963. static void e_stop(struct seq_file *m, void *p)
  964. {
  965. read_unlock(&svc_export_cache.hash_lock);
  966. exp_readunlock();
  967. }
  968. static struct flags {
  969. int flag;
  970. char *name[2];
  971. } expflags[] = {
  972. { NFSEXP_READONLY, {"ro", "rw"}},
  973. { NFSEXP_INSECURE_PORT, {"insecure", ""}},
  974. { NFSEXP_ROOTSQUASH, {"root_squash", "no_root_squash"}},
  975. { NFSEXP_ALLSQUASH, {"all_squash", ""}},
  976. { NFSEXP_ASYNC, {"async", "sync"}},
  977. { NFSEXP_GATHERED_WRITES, {"wdelay", "no_wdelay"}},
  978. { NFSEXP_NOHIDE, {"nohide", ""}},
  979. { NFSEXP_CROSSMOUNT, {"crossmnt", ""}},
  980. { NFSEXP_NOSUBTREECHECK, {"no_subtree_check", ""}},
  981. { NFSEXP_NOAUTHNLM, {"insecure_locks", ""}},
  982. #ifdef MSNFS
  983. { NFSEXP_MSNFS, {"msnfs", ""}},
  984. #endif
  985. { 0, {"", ""}}
  986. };
  987. static void exp_flags(struct seq_file *m, int flag, int fsid, uid_t anonu, uid_t anong)
  988. {
  989. int first = 0;
  990. struct flags *flg;
  991. for (flg = expflags; flg->flag; flg++) {
  992. int state = (flg->flag & flag)?0:1;
  993. if (*flg->name[state])
  994. seq_printf(m, "%s%s", first++?",":"", flg->name[state]);
  995. }
  996. if (flag & NFSEXP_FSID)
  997. seq_printf(m, "%sfsid=%d", first++?",":"", fsid);
  998. if (anonu != (uid_t)-2 && anonu != (0x10000-2))
  999. seq_printf(m, "%sanonuid=%d", first++?",":"", anonu);
  1000. if (anong != (gid_t)-2 && anong != (0x10000-2))
  1001. seq_printf(m, "%sanongid=%d", first++?",":"", anong);
  1002. }
  1003. static int e_show(struct seq_file *m, void *p)
  1004. {
  1005. struct cache_head *cp = p;
  1006. struct svc_export *exp = container_of(cp, struct svc_export, h);
  1007. svc_client *clp;
  1008. if (p == (void *)1) {
  1009. seq_puts(m, "# Version 1.1\n");
  1010. seq_puts(m, "# Path Client(Flags) # IPs\n");
  1011. return 0;
  1012. }
  1013. clp = exp->ex_client;
  1014. cache_get(&exp->h);
  1015. if (cache_check(&svc_export_cache, &exp->h, NULL))
  1016. return 0;
  1017. cache_put(&exp->h, &svc_export_cache);
  1018. return svc_export_show(m, &svc_export_cache, cp);
  1019. }
  1020. struct seq_operations nfs_exports_op = {
  1021. .start = e_start,
  1022. .next = e_next,
  1023. .stop = e_stop,
  1024. .show = e_show,
  1025. };
  1026. /*
  1027. * Add or modify a client.
  1028. * Change requests may involve the list of host addresses. The list of
  1029. * exports and possibly existing uid maps are left untouched.
  1030. */
  1031. int
  1032. exp_addclient(struct nfsctl_client *ncp)
  1033. {
  1034. struct auth_domain *dom;
  1035. int i, err;
  1036. /* First, consistency check. */
  1037. err = -EINVAL;
  1038. if (! exp_verify_string(ncp->cl_ident, NFSCLNT_IDMAX))
  1039. goto out;
  1040. if (ncp->cl_naddr > NFSCLNT_ADDRMAX)
  1041. goto out;
  1042. /* Lock the hashtable */
  1043. exp_writelock();
  1044. dom = unix_domain_find(ncp->cl_ident);
  1045. err = -ENOMEM;
  1046. if (!dom)
  1047. goto out_unlock;
  1048. /* Insert client into hashtable. */
  1049. for (i = 0; i < ncp->cl_naddr; i++)
  1050. auth_unix_add_addr(ncp->cl_addrlist[i], dom);
  1051. auth_unix_forget_old(dom);
  1052. auth_domain_put(dom);
  1053. err = 0;
  1054. out_unlock:
  1055. exp_writeunlock();
  1056. out:
  1057. return err;
  1058. }
  1059. /*
  1060. * Delete a client given an identifier.
  1061. */
  1062. int
  1063. exp_delclient(struct nfsctl_client *ncp)
  1064. {
  1065. int err;
  1066. struct auth_domain *dom;
  1067. err = -EINVAL;
  1068. if (!exp_verify_string(ncp->cl_ident, NFSCLNT_IDMAX))
  1069. goto out;
  1070. /* Lock the hashtable */
  1071. exp_writelock();
  1072. dom = auth_domain_find(ncp->cl_ident);
  1073. /* just make sure that no addresses work
  1074. * and that it will expire soon
  1075. */
  1076. if (dom) {
  1077. err = auth_unix_forget_old(dom);
  1078. auth_domain_put(dom);
  1079. }
  1080. exp_writeunlock();
  1081. out:
  1082. return err;
  1083. }
  1084. /*
  1085. * Verify that string is non-empty and does not exceed max length.
  1086. */
  1087. static int
  1088. exp_verify_string(char *cp, int max)
  1089. {
  1090. int i;
  1091. for (i = 0; i < max; i++)
  1092. if (!cp[i])
  1093. return i;
  1094. cp[i] = 0;
  1095. printk(KERN_NOTICE "nfsd: couldn't validate string %s\n", cp);
  1096. return 0;
  1097. }
  1098. /*
  1099. * Initialize the exports module.
  1100. */
  1101. void
  1102. nfsd_export_init(void)
  1103. {
  1104. dprintk("nfsd: initializing export module.\n");
  1105. cache_register(&svc_export_cache);
  1106. cache_register(&svc_expkey_cache);
  1107. }
  1108. /*
  1109. * Flush exports table - called when last nfsd thread is killed
  1110. */
  1111. void
  1112. nfsd_export_flush(void)
  1113. {
  1114. exp_writelock();
  1115. cache_purge(&svc_expkey_cache);
  1116. cache_purge(&svc_export_cache);
  1117. exp_writeunlock();
  1118. }
  1119. /*
  1120. * Shutdown the exports module.
  1121. */
  1122. void
  1123. nfsd_export_shutdown(void)
  1124. {
  1125. dprintk("nfsd: shutting down export module.\n");
  1126. exp_writelock();
  1127. if (cache_unregister(&svc_expkey_cache))
  1128. printk(KERN_ERR "nfsd: failed to unregister expkey cache\n");
  1129. if (cache_unregister(&svc_export_cache))
  1130. printk(KERN_ERR "nfsd: failed to unregister export cache\n");
  1131. svcauth_unix_purge();
  1132. exp_writeunlock();
  1133. dprintk("nfsd: export shutdown complete.\n");
  1134. }