nfssvc.c 16 KB

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  1. /*
  2. * Central processing for nfsd.
  3. *
  4. * Authors: Olaf Kirch (okir@monad.swb.de)
  5. *
  6. * Copyright (C) 1995, 1996, 1997 Olaf Kirch <okir@monad.swb.de>
  7. */
  8. #include <linux/sched.h>
  9. #include <linux/freezer.h>
  10. #include <linux/module.h>
  11. #include <linux/fs_struct.h>
  12. #include <linux/swap.h>
  13. #include <linux/sunrpc/stats.h>
  14. #include <linux/sunrpc/svcsock.h>
  15. #include <linux/lockd/bind.h>
  16. #include <linux/nfsacl.h>
  17. #include <linux/seq_file.h>
  18. #include <net/net_namespace.h>
  19. #include "nfsd.h"
  20. #include "cache.h"
  21. #include "vfs.h"
  22. #define NFSDDBG_FACILITY NFSDDBG_SVC
  23. extern struct svc_program nfsd_program;
  24. static int nfsd(void *vrqstp);
  25. struct timeval nfssvc_boot;
  26. /*
  27. * nfsd_mutex protects nfsd_serv -- both the pointer itself and the members
  28. * of the svc_serv struct. In particular, ->sv_nrthreads but also to some
  29. * extent ->sv_temp_socks and ->sv_permsocks. It also protects nfsdstats.th_cnt
  30. *
  31. * If (out side the lock) nfsd_serv is non-NULL, then it must point to a
  32. * properly initialised 'struct svc_serv' with ->sv_nrthreads > 0. That number
  33. * of nfsd threads must exist and each must listed in ->sp_all_threads in each
  34. * entry of ->sv_pools[].
  35. *
  36. * Transitions of the thread count between zero and non-zero are of particular
  37. * interest since the svc_serv needs to be created and initialized at that
  38. * point, or freed.
  39. *
  40. * Finally, the nfsd_mutex also protects some of the global variables that are
  41. * accessed when nfsd starts and that are settable via the write_* routines in
  42. * nfsctl.c. In particular:
  43. *
  44. * user_recovery_dirname
  45. * user_lease_time
  46. * nfsd_versions
  47. */
  48. DEFINE_MUTEX(nfsd_mutex);
  49. struct svc_serv *nfsd_serv;
  50. /*
  51. * nfsd_drc_lock protects nfsd_drc_max_pages and nfsd_drc_pages_used.
  52. * nfsd_drc_max_pages limits the total amount of memory available for
  53. * version 4.1 DRC caches.
  54. * nfsd_drc_pages_used tracks the current version 4.1 DRC memory usage.
  55. */
  56. spinlock_t nfsd_drc_lock;
  57. unsigned int nfsd_drc_max_mem;
  58. unsigned int nfsd_drc_mem_used;
  59. #if defined(CONFIG_NFSD_V2_ACL) || defined(CONFIG_NFSD_V3_ACL)
  60. static struct svc_stat nfsd_acl_svcstats;
  61. static struct svc_version * nfsd_acl_version[] = {
  62. [2] = &nfsd_acl_version2,
  63. [3] = &nfsd_acl_version3,
  64. };
  65. #define NFSD_ACL_MINVERS 2
  66. #define NFSD_ACL_NRVERS ARRAY_SIZE(nfsd_acl_version)
  67. static struct svc_version *nfsd_acl_versions[NFSD_ACL_NRVERS];
  68. static struct svc_program nfsd_acl_program = {
  69. .pg_prog = NFS_ACL_PROGRAM,
  70. .pg_nvers = NFSD_ACL_NRVERS,
  71. .pg_vers = nfsd_acl_versions,
  72. .pg_name = "nfsacl",
  73. .pg_class = "nfsd",
  74. .pg_stats = &nfsd_acl_svcstats,
  75. .pg_authenticate = &svc_set_client,
  76. };
  77. static struct svc_stat nfsd_acl_svcstats = {
  78. .program = &nfsd_acl_program,
  79. };
  80. #endif /* defined(CONFIG_NFSD_V2_ACL) || defined(CONFIG_NFSD_V3_ACL) */
  81. static struct svc_version * nfsd_version[] = {
  82. [2] = &nfsd_version2,
  83. #if defined(CONFIG_NFSD_V3)
  84. [3] = &nfsd_version3,
  85. #endif
  86. #if defined(CONFIG_NFSD_V4)
  87. [4] = &nfsd_version4,
  88. #endif
  89. };
  90. #define NFSD_MINVERS 2
  91. #define NFSD_NRVERS ARRAY_SIZE(nfsd_version)
  92. static struct svc_version *nfsd_versions[NFSD_NRVERS];
  93. struct svc_program nfsd_program = {
  94. #if defined(CONFIG_NFSD_V2_ACL) || defined(CONFIG_NFSD_V3_ACL)
  95. .pg_next = &nfsd_acl_program,
  96. #endif
  97. .pg_prog = NFS_PROGRAM, /* program number */
  98. .pg_nvers = NFSD_NRVERS, /* nr of entries in nfsd_version */
  99. .pg_vers = nfsd_versions, /* version table */
  100. .pg_name = "nfsd", /* program name */
  101. .pg_class = "nfsd", /* authentication class */
  102. .pg_stats = &nfsd_svcstats, /* version table */
  103. .pg_authenticate = &svc_set_client, /* export authentication */
  104. };
  105. u32 nfsd_supported_minorversion;
  106. int nfsd_vers(int vers, enum vers_op change)
  107. {
  108. if (vers < NFSD_MINVERS || vers >= NFSD_NRVERS)
  109. return 0;
  110. switch(change) {
  111. case NFSD_SET:
  112. nfsd_versions[vers] = nfsd_version[vers];
  113. #if defined(CONFIG_NFSD_V2_ACL) || defined(CONFIG_NFSD_V3_ACL)
  114. if (vers < NFSD_ACL_NRVERS)
  115. nfsd_acl_versions[vers] = nfsd_acl_version[vers];
  116. #endif
  117. break;
  118. case NFSD_CLEAR:
  119. nfsd_versions[vers] = NULL;
  120. #if defined(CONFIG_NFSD_V2_ACL) || defined(CONFIG_NFSD_V3_ACL)
  121. if (vers < NFSD_ACL_NRVERS)
  122. nfsd_acl_versions[vers] = NULL;
  123. #endif
  124. break;
  125. case NFSD_TEST:
  126. return nfsd_versions[vers] != NULL;
  127. case NFSD_AVAIL:
  128. return nfsd_version[vers] != NULL;
  129. }
  130. return 0;
  131. }
  132. int nfsd_minorversion(u32 minorversion, enum vers_op change)
  133. {
  134. if (minorversion > NFSD_SUPPORTED_MINOR_VERSION)
  135. return -1;
  136. switch(change) {
  137. case NFSD_SET:
  138. nfsd_supported_minorversion = minorversion;
  139. break;
  140. case NFSD_CLEAR:
  141. if (minorversion == 0)
  142. return -1;
  143. nfsd_supported_minorversion = minorversion - 1;
  144. break;
  145. case NFSD_TEST:
  146. return minorversion <= nfsd_supported_minorversion;
  147. case NFSD_AVAIL:
  148. return minorversion <= NFSD_SUPPORTED_MINOR_VERSION;
  149. }
  150. return 0;
  151. }
  152. /*
  153. * Maximum number of nfsd processes
  154. */
  155. #define NFSD_MAXSERVS 8192
  156. int nfsd_nrthreads(void)
  157. {
  158. int rv = 0;
  159. mutex_lock(&nfsd_mutex);
  160. if (nfsd_serv)
  161. rv = nfsd_serv->sv_nrthreads;
  162. mutex_unlock(&nfsd_mutex);
  163. return rv;
  164. }
  165. static int nfsd_init_socks(int port, struct net *net)
  166. {
  167. int error;
  168. if (!list_empty(&nfsd_serv->sv_permsocks))
  169. return 0;
  170. error = svc_create_xprt(nfsd_serv, "udp", net, PF_INET, port,
  171. SVC_SOCK_DEFAULTS);
  172. if (error < 0)
  173. return error;
  174. error = svc_create_xprt(nfsd_serv, "tcp", net, PF_INET, port,
  175. SVC_SOCK_DEFAULTS);
  176. if (error < 0)
  177. return error;
  178. return 0;
  179. }
  180. static bool nfsd_up = false;
  181. static int nfsd_startup(unsigned short port, int nrservs, struct net *net)
  182. {
  183. int ret;
  184. if (nfsd_up)
  185. return 0;
  186. /*
  187. * Readahead param cache - will no-op if it already exists.
  188. * (Note therefore results will be suboptimal if number of
  189. * threads is modified after nfsd start.)
  190. */
  191. ret = nfsd_racache_init(2*nrservs);
  192. if (ret)
  193. return ret;
  194. ret = nfsd_init_socks(port, net);
  195. if (ret)
  196. goto out_racache;
  197. ret = lockd_up(net);
  198. if (ret)
  199. goto out_racache;
  200. ret = nfs4_state_start();
  201. if (ret)
  202. goto out_lockd;
  203. nfsd_up = true;
  204. return 0;
  205. out_lockd:
  206. lockd_down(net);
  207. out_racache:
  208. nfsd_racache_shutdown();
  209. return ret;
  210. }
  211. static void nfsd_shutdown(struct net *net)
  212. {
  213. /*
  214. * write_ports can create the server without actually starting
  215. * any threads--if we get shut down before any threads are
  216. * started, then nfsd_last_thread will be run before any of this
  217. * other initialization has been done.
  218. */
  219. if (!nfsd_up)
  220. return;
  221. nfs4_state_shutdown();
  222. lockd_down(net);
  223. nfsd_racache_shutdown();
  224. nfsd_up = false;
  225. }
  226. static void nfsd_last_thread(struct svc_serv *serv, struct net *net)
  227. {
  228. nfsd_shutdown(net);
  229. svc_rpcb_cleanup(serv, net);
  230. printk(KERN_WARNING "nfsd: last server has exited, flushing export "
  231. "cache\n");
  232. nfsd_export_flush();
  233. }
  234. void nfsd_reset_versions(void)
  235. {
  236. int found_one = 0;
  237. int i;
  238. for (i = NFSD_MINVERS; i < NFSD_NRVERS; i++) {
  239. if (nfsd_program.pg_vers[i])
  240. found_one = 1;
  241. }
  242. if (!found_one) {
  243. for (i = NFSD_MINVERS; i < NFSD_NRVERS; i++)
  244. nfsd_program.pg_vers[i] = nfsd_version[i];
  245. #if defined(CONFIG_NFSD_V2_ACL) || defined(CONFIG_NFSD_V3_ACL)
  246. for (i = NFSD_ACL_MINVERS; i < NFSD_ACL_NRVERS; i++)
  247. nfsd_acl_program.pg_vers[i] =
  248. nfsd_acl_version[i];
  249. #endif
  250. }
  251. }
  252. /*
  253. * Each session guarantees a negotiated per slot memory cache for replies
  254. * which in turn consumes memory beyond the v2/v3/v4.0 server. A dedicated
  255. * NFSv4.1 server might want to use more memory for a DRC than a machine
  256. * with mutiple services.
  257. *
  258. * Impose a hard limit on the number of pages for the DRC which varies
  259. * according to the machines free pages. This is of course only a default.
  260. *
  261. * For now this is a #defined shift which could be under admin control
  262. * in the future.
  263. */
  264. static void set_max_drc(void)
  265. {
  266. #define NFSD_DRC_SIZE_SHIFT 10
  267. nfsd_drc_max_mem = (nr_free_buffer_pages()
  268. >> NFSD_DRC_SIZE_SHIFT) * PAGE_SIZE;
  269. nfsd_drc_mem_used = 0;
  270. spin_lock_init(&nfsd_drc_lock);
  271. dprintk("%s nfsd_drc_max_mem %u \n", __func__, nfsd_drc_max_mem);
  272. }
  273. static int nfsd_get_default_max_blksize(void)
  274. {
  275. struct sysinfo i;
  276. unsigned long long target;
  277. unsigned long ret;
  278. si_meminfo(&i);
  279. target = (i.totalram - i.totalhigh) << PAGE_SHIFT;
  280. /*
  281. * Aim for 1/4096 of memory per thread This gives 1MB on 4Gig
  282. * machines, but only uses 32K on 128M machines. Bottom out at
  283. * 8K on 32M and smaller. Of course, this is only a default.
  284. */
  285. target >>= 12;
  286. ret = NFSSVC_MAXBLKSIZE;
  287. while (ret > target && ret >= 8*1024*2)
  288. ret /= 2;
  289. return ret;
  290. }
  291. int nfsd_create_serv(struct net *net)
  292. {
  293. int error;
  294. WARN_ON(!mutex_is_locked(&nfsd_mutex));
  295. if (nfsd_serv) {
  296. svc_get(nfsd_serv);
  297. return 0;
  298. }
  299. if (nfsd_max_blksize == 0)
  300. nfsd_max_blksize = nfsd_get_default_max_blksize();
  301. nfsd_reset_versions();
  302. nfsd_serv = svc_create_pooled(&nfsd_program, nfsd_max_blksize,
  303. nfsd_last_thread, nfsd, THIS_MODULE);
  304. if (nfsd_serv == NULL)
  305. return -ENOMEM;
  306. error = svc_bind(nfsd_serv, net);
  307. if (error < 0) {
  308. svc_destroy(nfsd_serv);
  309. return error;
  310. }
  311. set_max_drc();
  312. do_gettimeofday(&nfssvc_boot); /* record boot time */
  313. return 0;
  314. }
  315. int nfsd_nrpools(void)
  316. {
  317. if (nfsd_serv == NULL)
  318. return 0;
  319. else
  320. return nfsd_serv->sv_nrpools;
  321. }
  322. int nfsd_get_nrthreads(int n, int *nthreads)
  323. {
  324. int i = 0;
  325. if (nfsd_serv != NULL) {
  326. for (i = 0; i < nfsd_serv->sv_nrpools && i < n; i++)
  327. nthreads[i] = nfsd_serv->sv_pools[i].sp_nrthreads;
  328. }
  329. return 0;
  330. }
  331. int nfsd_set_nrthreads(int n, int *nthreads, struct net *net)
  332. {
  333. int i = 0;
  334. int tot = 0;
  335. int err = 0;
  336. WARN_ON(!mutex_is_locked(&nfsd_mutex));
  337. if (nfsd_serv == NULL || n <= 0)
  338. return 0;
  339. if (n > nfsd_serv->sv_nrpools)
  340. n = nfsd_serv->sv_nrpools;
  341. /* enforce a global maximum number of threads */
  342. tot = 0;
  343. for (i = 0; i < n; i++) {
  344. if (nthreads[i] > NFSD_MAXSERVS)
  345. nthreads[i] = NFSD_MAXSERVS;
  346. tot += nthreads[i];
  347. }
  348. if (tot > NFSD_MAXSERVS) {
  349. /* total too large: scale down requested numbers */
  350. for (i = 0; i < n && tot > 0; i++) {
  351. int new = nthreads[i] * NFSD_MAXSERVS / tot;
  352. tot -= (nthreads[i] - new);
  353. nthreads[i] = new;
  354. }
  355. for (i = 0; i < n && tot > 0; i++) {
  356. nthreads[i]--;
  357. tot--;
  358. }
  359. }
  360. /*
  361. * There must always be a thread in pool 0; the admin
  362. * can't shut down NFS completely using pool_threads.
  363. */
  364. if (nthreads[0] == 0)
  365. nthreads[0] = 1;
  366. /* apply the new numbers */
  367. svc_get(nfsd_serv);
  368. for (i = 0; i < n; i++) {
  369. err = svc_set_num_threads(nfsd_serv, &nfsd_serv->sv_pools[i],
  370. nthreads[i]);
  371. if (err)
  372. break;
  373. }
  374. nfsd_destroy(net);
  375. return err;
  376. }
  377. /*
  378. * Adjust the number of threads and return the new number of threads.
  379. * This is also the function that starts the server if necessary, if
  380. * this is the first time nrservs is nonzero.
  381. */
  382. int
  383. nfsd_svc(unsigned short port, int nrservs, struct net *net)
  384. {
  385. int error;
  386. bool nfsd_up_before;
  387. mutex_lock(&nfsd_mutex);
  388. dprintk("nfsd: creating service\n");
  389. if (nrservs <= 0)
  390. nrservs = 0;
  391. if (nrservs > NFSD_MAXSERVS)
  392. nrservs = NFSD_MAXSERVS;
  393. error = 0;
  394. if (nrservs == 0 && nfsd_serv == NULL)
  395. goto out;
  396. error = nfsd_create_serv(net);
  397. if (error)
  398. goto out;
  399. nfsd_up_before = nfsd_up;
  400. error = nfsd_startup(port, nrservs, net);
  401. if (error)
  402. goto out_destroy;
  403. error = svc_set_num_threads(nfsd_serv, NULL, nrservs);
  404. if (error)
  405. goto out_shutdown;
  406. /* We are holding a reference to nfsd_serv which
  407. * we don't want to count in the return value,
  408. * so subtract 1
  409. */
  410. error = nfsd_serv->sv_nrthreads - 1;
  411. out_shutdown:
  412. if (error < 0 && !nfsd_up_before)
  413. nfsd_shutdown(net);
  414. out_destroy:
  415. nfsd_destroy(net); /* Release server */
  416. out:
  417. mutex_unlock(&nfsd_mutex);
  418. return error;
  419. }
  420. /*
  421. * This is the NFS server kernel thread
  422. */
  423. static int
  424. nfsd(void *vrqstp)
  425. {
  426. struct svc_rqst *rqstp = (struct svc_rqst *) vrqstp;
  427. struct svc_xprt *perm_sock = list_entry(rqstp->rq_server->sv_permsocks.next, typeof(struct svc_xprt), xpt_list);
  428. struct net *net = perm_sock->xpt_net;
  429. int err, preverr = 0;
  430. /* Lock module and set up kernel thread */
  431. mutex_lock(&nfsd_mutex);
  432. /* At this point, the thread shares current->fs
  433. * with the init process. We need to create files with a
  434. * umask of 0 instead of init's umask. */
  435. if (unshare_fs_struct() < 0) {
  436. printk("Unable to start nfsd thread: out of memory\n");
  437. goto out;
  438. }
  439. current->fs->umask = 0;
  440. /*
  441. * thread is spawned with all signals set to SIG_IGN, re-enable
  442. * the ones that will bring down the thread
  443. */
  444. allow_signal(SIGKILL);
  445. allow_signal(SIGHUP);
  446. allow_signal(SIGINT);
  447. allow_signal(SIGQUIT);
  448. nfsdstats.th_cnt++;
  449. mutex_unlock(&nfsd_mutex);
  450. /*
  451. * We want less throttling in balance_dirty_pages() so that nfs to
  452. * localhost doesn't cause nfsd to lock up due to all the client's
  453. * dirty pages.
  454. */
  455. current->flags |= PF_LESS_THROTTLE;
  456. set_freezable();
  457. /*
  458. * The main request loop
  459. */
  460. for (;;) {
  461. /*
  462. * Find a socket with data available and call its
  463. * recvfrom routine.
  464. */
  465. while ((err = svc_recv(rqstp, 60*60*HZ)) == -EAGAIN)
  466. ;
  467. if (err == -EINTR)
  468. break;
  469. else if (err < 0) {
  470. if (err != preverr) {
  471. printk(KERN_WARNING "%s: unexpected error "
  472. "from svc_recv (%d)\n", __func__, -err);
  473. preverr = err;
  474. }
  475. schedule_timeout_uninterruptible(HZ);
  476. continue;
  477. }
  478. validate_process_creds();
  479. svc_process(rqstp);
  480. validate_process_creds();
  481. }
  482. /* Clear signals before calling svc_exit_thread() */
  483. flush_signals(current);
  484. mutex_lock(&nfsd_mutex);
  485. nfsdstats.th_cnt --;
  486. out:
  487. rqstp->rq_server = NULL;
  488. /* Release the thread */
  489. svc_exit_thread(rqstp);
  490. nfsd_destroy(net);
  491. /* Release module */
  492. mutex_unlock(&nfsd_mutex);
  493. module_put_and_exit(0);
  494. return 0;
  495. }
  496. static __be32 map_new_errors(u32 vers, __be32 nfserr)
  497. {
  498. if (nfserr == nfserr_jukebox && vers == 2)
  499. return nfserr_dropit;
  500. if (nfserr == nfserr_wrongsec && vers < 4)
  501. return nfserr_acces;
  502. return nfserr;
  503. }
  504. int
  505. nfsd_dispatch(struct svc_rqst *rqstp, __be32 *statp)
  506. {
  507. struct svc_procedure *proc;
  508. kxdrproc_t xdr;
  509. __be32 nfserr;
  510. __be32 *nfserrp;
  511. dprintk("nfsd_dispatch: vers %d proc %d\n",
  512. rqstp->rq_vers, rqstp->rq_proc);
  513. proc = rqstp->rq_procinfo;
  514. /*
  515. * Give the xdr decoder a chance to change this if it wants
  516. * (necessary in the NFSv4.0 compound case)
  517. */
  518. rqstp->rq_cachetype = proc->pc_cachetype;
  519. /* Decode arguments */
  520. xdr = proc->pc_decode;
  521. if (xdr && !xdr(rqstp, (__be32*)rqstp->rq_arg.head[0].iov_base,
  522. rqstp->rq_argp)) {
  523. dprintk("nfsd: failed to decode arguments!\n");
  524. *statp = rpc_garbage_args;
  525. return 1;
  526. }
  527. /* Check whether we have this call in the cache. */
  528. switch (nfsd_cache_lookup(rqstp)) {
  529. case RC_INTR:
  530. case RC_DROPIT:
  531. return 0;
  532. case RC_REPLY:
  533. return 1;
  534. case RC_DOIT:;
  535. /* do it */
  536. }
  537. /* need to grab the location to store the status, as
  538. * nfsv4 does some encoding while processing
  539. */
  540. nfserrp = rqstp->rq_res.head[0].iov_base
  541. + rqstp->rq_res.head[0].iov_len;
  542. rqstp->rq_res.head[0].iov_len += sizeof(__be32);
  543. /* Now call the procedure handler, and encode NFS status. */
  544. nfserr = proc->pc_func(rqstp, rqstp->rq_argp, rqstp->rq_resp);
  545. nfserr = map_new_errors(rqstp->rq_vers, nfserr);
  546. if (nfserr == nfserr_dropit || rqstp->rq_dropme) {
  547. dprintk("nfsd: Dropping request; may be revisited later\n");
  548. nfsd_cache_update(rqstp, RC_NOCACHE, NULL);
  549. return 0;
  550. }
  551. if (rqstp->rq_proc != 0)
  552. *nfserrp++ = nfserr;
  553. /* Encode result.
  554. * For NFSv2, additional info is never returned in case of an error.
  555. */
  556. if (!(nfserr && rqstp->rq_vers == 2)) {
  557. xdr = proc->pc_encode;
  558. if (xdr && !xdr(rqstp, nfserrp,
  559. rqstp->rq_resp)) {
  560. /* Failed to encode result. Release cache entry */
  561. dprintk("nfsd: failed to encode result!\n");
  562. nfsd_cache_update(rqstp, RC_NOCACHE, NULL);
  563. *statp = rpc_system_err;
  564. return 1;
  565. }
  566. }
  567. /* Store reply in cache. */
  568. nfsd_cache_update(rqstp, rqstp->rq_cachetype, statp + 1);
  569. return 1;
  570. }
  571. int nfsd_pool_stats_open(struct inode *inode, struct file *file)
  572. {
  573. int ret;
  574. mutex_lock(&nfsd_mutex);
  575. if (nfsd_serv == NULL) {
  576. mutex_unlock(&nfsd_mutex);
  577. return -ENODEV;
  578. }
  579. /* bump up the psudo refcount while traversing */
  580. svc_get(nfsd_serv);
  581. ret = svc_pool_stats_open(nfsd_serv, file);
  582. mutex_unlock(&nfsd_mutex);
  583. return ret;
  584. }
  585. int nfsd_pool_stats_release(struct inode *inode, struct file *file)
  586. {
  587. int ret = seq_release(inode, file);
  588. struct net *net = inode->i_sb->s_fs_info;
  589. mutex_lock(&nfsd_mutex);
  590. /* this function really, really should have been called svc_put() */
  591. nfsd_destroy(net);
  592. mutex_unlock(&nfsd_mutex);
  593. return ret;
  594. }