proc.c 15 KB

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  1. /* SCTP kernel implementation
  2. * Copyright (c) 2003 International Business Machines, Corp.
  3. *
  4. * This file is part of the SCTP kernel implementation
  5. *
  6. * This SCTP implementation is free software;
  7. * you can redistribute it and/or modify it under the terms of
  8. * the GNU General Public License as published by
  9. * the Free Software Foundation; either version 2, or (at your option)
  10. * any later version.
  11. *
  12. * This SCTP implementation is distributed in the hope that it
  13. * will be useful, but WITHOUT ANY WARRANTY; without even the implied
  14. * ************************
  15. * warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
  16. * See the GNU General Public License for more details.
  17. *
  18. * You should have received a copy of the GNU General Public License
  19. * along with GNU CC; see the file COPYING. If not, see
  20. * <http://www.gnu.org/licenses/>.
  21. *
  22. * Please send any bug reports or fixes you make to the
  23. * email address(es):
  24. * lksctp developers <linux-sctp@vger.kernel.org>
  25. *
  26. * Written or modified by:
  27. * Sridhar Samudrala <sri@us.ibm.com>
  28. */
  29. #include <linux/types.h>
  30. #include <linux/seq_file.h>
  31. #include <linux/init.h>
  32. #include <linux/export.h>
  33. #include <net/sctp/sctp.h>
  34. #include <net/ip.h> /* for snmp_fold_field */
  35. static const struct snmp_mib sctp_snmp_list[] = {
  36. SNMP_MIB_ITEM("SctpCurrEstab", SCTP_MIB_CURRESTAB),
  37. SNMP_MIB_ITEM("SctpActiveEstabs", SCTP_MIB_ACTIVEESTABS),
  38. SNMP_MIB_ITEM("SctpPassiveEstabs", SCTP_MIB_PASSIVEESTABS),
  39. SNMP_MIB_ITEM("SctpAborteds", SCTP_MIB_ABORTEDS),
  40. SNMP_MIB_ITEM("SctpShutdowns", SCTP_MIB_SHUTDOWNS),
  41. SNMP_MIB_ITEM("SctpOutOfBlues", SCTP_MIB_OUTOFBLUES),
  42. SNMP_MIB_ITEM("SctpChecksumErrors", SCTP_MIB_CHECKSUMERRORS),
  43. SNMP_MIB_ITEM("SctpOutCtrlChunks", SCTP_MIB_OUTCTRLCHUNKS),
  44. SNMP_MIB_ITEM("SctpOutOrderChunks", SCTP_MIB_OUTORDERCHUNKS),
  45. SNMP_MIB_ITEM("SctpOutUnorderChunks", SCTP_MIB_OUTUNORDERCHUNKS),
  46. SNMP_MIB_ITEM("SctpInCtrlChunks", SCTP_MIB_INCTRLCHUNKS),
  47. SNMP_MIB_ITEM("SctpInOrderChunks", SCTP_MIB_INORDERCHUNKS),
  48. SNMP_MIB_ITEM("SctpInUnorderChunks", SCTP_MIB_INUNORDERCHUNKS),
  49. SNMP_MIB_ITEM("SctpFragUsrMsgs", SCTP_MIB_FRAGUSRMSGS),
  50. SNMP_MIB_ITEM("SctpReasmUsrMsgs", SCTP_MIB_REASMUSRMSGS),
  51. SNMP_MIB_ITEM("SctpOutSCTPPacks", SCTP_MIB_OUTSCTPPACKS),
  52. SNMP_MIB_ITEM("SctpInSCTPPacks", SCTP_MIB_INSCTPPACKS),
  53. SNMP_MIB_ITEM("SctpT1InitExpireds", SCTP_MIB_T1_INIT_EXPIREDS),
  54. SNMP_MIB_ITEM("SctpT1CookieExpireds", SCTP_MIB_T1_COOKIE_EXPIREDS),
  55. SNMP_MIB_ITEM("SctpT2ShutdownExpireds", SCTP_MIB_T2_SHUTDOWN_EXPIREDS),
  56. SNMP_MIB_ITEM("SctpT3RtxExpireds", SCTP_MIB_T3_RTX_EXPIREDS),
  57. SNMP_MIB_ITEM("SctpT4RtoExpireds", SCTP_MIB_T4_RTO_EXPIREDS),
  58. SNMP_MIB_ITEM("SctpT5ShutdownGuardExpireds", SCTP_MIB_T5_SHUTDOWN_GUARD_EXPIREDS),
  59. SNMP_MIB_ITEM("SctpDelaySackExpireds", SCTP_MIB_DELAY_SACK_EXPIREDS),
  60. SNMP_MIB_ITEM("SctpAutocloseExpireds", SCTP_MIB_AUTOCLOSE_EXPIREDS),
  61. SNMP_MIB_ITEM("SctpT3Retransmits", SCTP_MIB_T3_RETRANSMITS),
  62. SNMP_MIB_ITEM("SctpPmtudRetransmits", SCTP_MIB_PMTUD_RETRANSMITS),
  63. SNMP_MIB_ITEM("SctpFastRetransmits", SCTP_MIB_FAST_RETRANSMITS),
  64. SNMP_MIB_ITEM("SctpInPktSoftirq", SCTP_MIB_IN_PKT_SOFTIRQ),
  65. SNMP_MIB_ITEM("SctpInPktBacklog", SCTP_MIB_IN_PKT_BACKLOG),
  66. SNMP_MIB_ITEM("SctpInPktDiscards", SCTP_MIB_IN_PKT_DISCARDS),
  67. SNMP_MIB_ITEM("SctpInDataChunkDiscards", SCTP_MIB_IN_DATA_CHUNK_DISCARDS),
  68. SNMP_MIB_SENTINEL
  69. };
  70. /* Display sctp snmp mib statistics(/proc/net/sctp/snmp). */
  71. static int sctp_snmp_seq_show(struct seq_file *seq, void *v)
  72. {
  73. struct net *net = seq->private;
  74. int i;
  75. for (i = 0; sctp_snmp_list[i].name != NULL; i++)
  76. seq_printf(seq, "%-32s\t%ld\n", sctp_snmp_list[i].name,
  77. snmp_fold_field(net->sctp.sctp_statistics,
  78. sctp_snmp_list[i].entry));
  79. return 0;
  80. }
  81. /* Initialize the seq file operations for 'snmp' object. */
  82. static int sctp_snmp_seq_open(struct inode *inode, struct file *file)
  83. {
  84. return single_open_net(inode, file, sctp_snmp_seq_show);
  85. }
  86. static const struct file_operations sctp_snmp_seq_fops = {
  87. .owner = THIS_MODULE,
  88. .open = sctp_snmp_seq_open,
  89. .read = seq_read,
  90. .llseek = seq_lseek,
  91. .release = single_release_net,
  92. };
  93. /* Set up the proc fs entry for 'snmp' object. */
  94. int __net_init sctp_snmp_proc_init(struct net *net)
  95. {
  96. struct proc_dir_entry *p;
  97. p = proc_create("snmp", S_IRUGO, net->sctp.proc_net_sctp,
  98. &sctp_snmp_seq_fops);
  99. if (!p)
  100. return -ENOMEM;
  101. return 0;
  102. }
  103. /* Cleanup the proc fs entry for 'snmp' object. */
  104. void sctp_snmp_proc_exit(struct net *net)
  105. {
  106. remove_proc_entry("snmp", net->sctp.proc_net_sctp);
  107. }
  108. /* Dump local addresses of an association/endpoint. */
  109. static void sctp_seq_dump_local_addrs(struct seq_file *seq, struct sctp_ep_common *epb)
  110. {
  111. struct sctp_association *asoc;
  112. struct sctp_sockaddr_entry *laddr;
  113. struct sctp_transport *peer;
  114. union sctp_addr *addr, *primary = NULL;
  115. struct sctp_af *af;
  116. if (epb->type == SCTP_EP_TYPE_ASSOCIATION) {
  117. asoc = sctp_assoc(epb);
  118. peer = asoc->peer.primary_path;
  119. if (unlikely(peer == NULL)) {
  120. WARN(1, "Association %p with NULL primary path!\n", asoc);
  121. return;
  122. }
  123. primary = &peer->saddr;
  124. }
  125. rcu_read_lock();
  126. list_for_each_entry_rcu(laddr, &epb->bind_addr.address_list, list) {
  127. if (!laddr->valid)
  128. continue;
  129. addr = &laddr->a;
  130. af = sctp_get_af_specific(addr->sa.sa_family);
  131. if (primary && af->cmp_addr(addr, primary)) {
  132. seq_printf(seq, "*");
  133. }
  134. af->seq_dump_addr(seq, addr);
  135. }
  136. rcu_read_unlock();
  137. }
  138. /* Dump remote addresses of an association. */
  139. static void sctp_seq_dump_remote_addrs(struct seq_file *seq, struct sctp_association *assoc)
  140. {
  141. struct sctp_transport *transport;
  142. union sctp_addr *addr, *primary;
  143. struct sctp_af *af;
  144. primary = &assoc->peer.primary_addr;
  145. list_for_each_entry_rcu(transport, &assoc->peer.transport_addr_list,
  146. transports) {
  147. addr = &transport->ipaddr;
  148. af = sctp_get_af_specific(addr->sa.sa_family);
  149. if (af->cmp_addr(addr, primary)) {
  150. seq_printf(seq, "*");
  151. }
  152. af->seq_dump_addr(seq, addr);
  153. }
  154. }
  155. static void *sctp_eps_seq_start(struct seq_file *seq, loff_t *pos)
  156. {
  157. if (*pos >= sctp_ep_hashsize)
  158. return NULL;
  159. if (*pos < 0)
  160. *pos = 0;
  161. if (*pos == 0)
  162. seq_printf(seq, " ENDPT SOCK STY SST HBKT LPORT UID INODE LADDRS\n");
  163. return (void *)pos;
  164. }
  165. static void sctp_eps_seq_stop(struct seq_file *seq, void *v)
  166. {
  167. }
  168. static void *sctp_eps_seq_next(struct seq_file *seq, void *v, loff_t *pos)
  169. {
  170. if (++*pos >= sctp_ep_hashsize)
  171. return NULL;
  172. return pos;
  173. }
  174. /* Display sctp endpoints (/proc/net/sctp/eps). */
  175. static int sctp_eps_seq_show(struct seq_file *seq, void *v)
  176. {
  177. struct sctp_hashbucket *head;
  178. struct sctp_ep_common *epb;
  179. struct sctp_endpoint *ep;
  180. struct sock *sk;
  181. int hash = *(loff_t *)v;
  182. if (hash >= sctp_ep_hashsize)
  183. return -ENOMEM;
  184. head = &sctp_ep_hashtable[hash];
  185. local_bh_disable();
  186. read_lock(&head->lock);
  187. sctp_for_each_hentry(epb, &head->chain) {
  188. ep = sctp_ep(epb);
  189. sk = epb->sk;
  190. if (!net_eq(sock_net(sk), seq_file_net(seq)))
  191. continue;
  192. seq_printf(seq, "%8pK %8pK %-3d %-3d %-4d %-5d %5u %5lu ", ep, sk,
  193. sctp_sk(sk)->type, sk->sk_state, hash,
  194. epb->bind_addr.port,
  195. from_kuid_munged(seq_user_ns(seq), sock_i_uid(sk)),
  196. sock_i_ino(sk));
  197. sctp_seq_dump_local_addrs(seq, epb);
  198. seq_printf(seq, "\n");
  199. }
  200. read_unlock(&head->lock);
  201. local_bh_enable();
  202. return 0;
  203. }
  204. static const struct seq_operations sctp_eps_ops = {
  205. .start = sctp_eps_seq_start,
  206. .next = sctp_eps_seq_next,
  207. .stop = sctp_eps_seq_stop,
  208. .show = sctp_eps_seq_show,
  209. };
  210. /* Initialize the seq file operations for 'eps' object. */
  211. static int sctp_eps_seq_open(struct inode *inode, struct file *file)
  212. {
  213. return seq_open_net(inode, file, &sctp_eps_ops,
  214. sizeof(struct seq_net_private));
  215. }
  216. static const struct file_operations sctp_eps_seq_fops = {
  217. .open = sctp_eps_seq_open,
  218. .read = seq_read,
  219. .llseek = seq_lseek,
  220. .release = seq_release_net,
  221. };
  222. /* Set up the proc fs entry for 'eps' object. */
  223. int __net_init sctp_eps_proc_init(struct net *net)
  224. {
  225. struct proc_dir_entry *p;
  226. p = proc_create("eps", S_IRUGO, net->sctp.proc_net_sctp,
  227. &sctp_eps_seq_fops);
  228. if (!p)
  229. return -ENOMEM;
  230. return 0;
  231. }
  232. /* Cleanup the proc fs entry for 'eps' object. */
  233. void sctp_eps_proc_exit(struct net *net)
  234. {
  235. remove_proc_entry("eps", net->sctp.proc_net_sctp);
  236. }
  237. struct sctp_ht_iter {
  238. struct seq_net_private p;
  239. struct rhashtable_iter hti;
  240. };
  241. static struct sctp_transport *sctp_transport_get_next(struct seq_file *seq)
  242. {
  243. struct sctp_ht_iter *iter = seq->private;
  244. struct sctp_transport *t;
  245. t = rhashtable_walk_next(&iter->hti);
  246. for (; t; t = rhashtable_walk_next(&iter->hti)) {
  247. if (IS_ERR(t)) {
  248. if (PTR_ERR(t) == -EAGAIN)
  249. continue;
  250. break;
  251. }
  252. if (net_eq(sock_net(t->asoc->base.sk), seq_file_net(seq)) &&
  253. t->asoc->peer.primary_path == t)
  254. break;
  255. }
  256. return t;
  257. }
  258. static struct sctp_transport *sctp_transport_get_idx(struct seq_file *seq,
  259. loff_t pos)
  260. {
  261. void *obj = SEQ_START_TOKEN;
  262. while (pos && (obj = sctp_transport_get_next(seq)) && !IS_ERR(obj))
  263. pos--;
  264. return obj;
  265. }
  266. static int sctp_transport_walk_start(struct seq_file *seq)
  267. {
  268. struct sctp_ht_iter *iter = seq->private;
  269. int err;
  270. err = rhashtable_walk_init(&sctp_transport_hashtable, &iter->hti,
  271. GFP_KERNEL);
  272. if (err)
  273. return err;
  274. err = rhashtable_walk_start(&iter->hti);
  275. return err == -EAGAIN ? 0 : err;
  276. }
  277. static void sctp_transport_walk_stop(struct seq_file *seq)
  278. {
  279. struct sctp_ht_iter *iter = seq->private;
  280. rhashtable_walk_stop(&iter->hti);
  281. rhashtable_walk_exit(&iter->hti);
  282. }
  283. static void *sctp_assocs_seq_start(struct seq_file *seq, loff_t *pos)
  284. {
  285. int err = sctp_transport_walk_start(seq);
  286. if (err)
  287. return ERR_PTR(err);
  288. return sctp_transport_get_idx(seq, *pos);
  289. }
  290. static void sctp_assocs_seq_stop(struct seq_file *seq, void *v)
  291. {
  292. sctp_transport_walk_stop(seq);
  293. }
  294. static void *sctp_assocs_seq_next(struct seq_file *seq, void *v, loff_t *pos)
  295. {
  296. ++*pos;
  297. return sctp_transport_get_next(seq);
  298. }
  299. /* Display sctp associations (/proc/net/sctp/assocs). */
  300. static int sctp_assocs_seq_show(struct seq_file *seq, void *v)
  301. {
  302. struct sctp_transport *transport;
  303. struct sctp_association *assoc;
  304. struct sctp_ep_common *epb;
  305. struct sock *sk;
  306. if (v == SEQ_START_TOKEN) {
  307. seq_printf(seq, " ASSOC SOCK STY SST ST HBKT "
  308. "ASSOC-ID TX_QUEUE RX_QUEUE UID INODE LPORT "
  309. "RPORT LADDRS <-> RADDRS "
  310. "HBINT INS OUTS MAXRT T1X T2X RTXC "
  311. "wmema wmemq sndbuf rcvbuf\n");
  312. return 0;
  313. }
  314. transport = (struct sctp_transport *)v;
  315. if (!sctp_transport_hold(transport))
  316. return 0;
  317. assoc = transport->asoc;
  318. epb = &assoc->base;
  319. sk = epb->sk;
  320. seq_printf(seq,
  321. "%8pK %8pK %-3d %-3d %-2d %-4d "
  322. "%4d %8d %8d %7u %5lu %-5d %5d ",
  323. assoc, sk, sctp_sk(sk)->type, sk->sk_state,
  324. assoc->state, 0,
  325. assoc->assoc_id,
  326. assoc->sndbuf_used,
  327. atomic_read(&assoc->rmem_alloc),
  328. from_kuid_munged(seq_user_ns(seq), sock_i_uid(sk)),
  329. sock_i_ino(sk),
  330. epb->bind_addr.port,
  331. assoc->peer.port);
  332. seq_printf(seq, " ");
  333. sctp_seq_dump_local_addrs(seq, epb);
  334. seq_printf(seq, "<-> ");
  335. sctp_seq_dump_remote_addrs(seq, assoc);
  336. seq_printf(seq, "\t%8lu %5d %5d %4d %4d %4d %8d "
  337. "%8d %8d %8d %8d",
  338. assoc->hbinterval, assoc->c.sinit_max_instreams,
  339. assoc->c.sinit_num_ostreams, assoc->max_retrans,
  340. assoc->init_retries, assoc->shutdown_retries,
  341. assoc->rtx_data_chunks,
  342. atomic_read(&sk->sk_wmem_alloc),
  343. sk->sk_wmem_queued,
  344. sk->sk_sndbuf,
  345. sk->sk_rcvbuf);
  346. seq_printf(seq, "\n");
  347. sctp_transport_put(transport);
  348. return 0;
  349. }
  350. static const struct seq_operations sctp_assoc_ops = {
  351. .start = sctp_assocs_seq_start,
  352. .next = sctp_assocs_seq_next,
  353. .stop = sctp_assocs_seq_stop,
  354. .show = sctp_assocs_seq_show,
  355. };
  356. /* Initialize the seq file operations for 'assocs' object. */
  357. static int sctp_assocs_seq_open(struct inode *inode, struct file *file)
  358. {
  359. return seq_open_net(inode, file, &sctp_assoc_ops,
  360. sizeof(struct sctp_ht_iter));
  361. }
  362. static const struct file_operations sctp_assocs_seq_fops = {
  363. .open = sctp_assocs_seq_open,
  364. .read = seq_read,
  365. .llseek = seq_lseek,
  366. .release = seq_release_net,
  367. };
  368. /* Set up the proc fs entry for 'assocs' object. */
  369. int __net_init sctp_assocs_proc_init(struct net *net)
  370. {
  371. struct proc_dir_entry *p;
  372. p = proc_create("assocs", S_IRUGO, net->sctp.proc_net_sctp,
  373. &sctp_assocs_seq_fops);
  374. if (!p)
  375. return -ENOMEM;
  376. return 0;
  377. }
  378. /* Cleanup the proc fs entry for 'assocs' object. */
  379. void sctp_assocs_proc_exit(struct net *net)
  380. {
  381. remove_proc_entry("assocs", net->sctp.proc_net_sctp);
  382. }
  383. static void *sctp_remaddr_seq_start(struct seq_file *seq, loff_t *pos)
  384. {
  385. int err = sctp_transport_walk_start(seq);
  386. if (err)
  387. return ERR_PTR(err);
  388. return sctp_transport_get_idx(seq, *pos);
  389. }
  390. static void *sctp_remaddr_seq_next(struct seq_file *seq, void *v, loff_t *pos)
  391. {
  392. ++*pos;
  393. return sctp_transport_get_next(seq);
  394. }
  395. static void sctp_remaddr_seq_stop(struct seq_file *seq, void *v)
  396. {
  397. sctp_transport_walk_stop(seq);
  398. }
  399. static int sctp_remaddr_seq_show(struct seq_file *seq, void *v)
  400. {
  401. struct sctp_association *assoc;
  402. struct sctp_transport *transport, *tsp;
  403. if (v == SEQ_START_TOKEN) {
  404. seq_printf(seq, "ADDR ASSOC_ID HB_ACT RTO MAX_PATH_RTX "
  405. "REM_ADDR_RTX START STATE\n");
  406. return 0;
  407. }
  408. transport = (struct sctp_transport *)v;
  409. if (!sctp_transport_hold(transport))
  410. return 0;
  411. assoc = transport->asoc;
  412. list_for_each_entry_rcu(tsp, &assoc->peer.transport_addr_list,
  413. transports) {
  414. /*
  415. * The remote address (ADDR)
  416. */
  417. tsp->af_specific->seq_dump_addr(seq, &tsp->ipaddr);
  418. seq_printf(seq, " ");
  419. /*
  420. * The association ID (ASSOC_ID)
  421. */
  422. seq_printf(seq, "%d ", tsp->asoc->assoc_id);
  423. /*
  424. * If the Heartbeat is active (HB_ACT)
  425. * Note: 1 = Active, 0 = Inactive
  426. */
  427. seq_printf(seq, "%d ", timer_pending(&tsp->hb_timer));
  428. /*
  429. * Retransmit time out (RTO)
  430. */
  431. seq_printf(seq, "%lu ", tsp->rto);
  432. /*
  433. * Maximum path retransmit count (PATH_MAX_RTX)
  434. */
  435. seq_printf(seq, "%d ", tsp->pathmaxrxt);
  436. /*
  437. * remote address retransmit count (REM_ADDR_RTX)
  438. * Note: We don't have a way to tally this at the moment
  439. * so lets just leave it as zero for the moment
  440. */
  441. seq_puts(seq, "0 ");
  442. /*
  443. * remote address start time (START). This is also not
  444. * currently implemented, but we can record it with a
  445. * jiffies marker in a subsequent patch
  446. */
  447. seq_puts(seq, "0 ");
  448. /*
  449. * The current state of this destination. I.e.
  450. * SCTP_ACTIVE, SCTP_INACTIVE, ...
  451. */
  452. seq_printf(seq, "%d", tsp->state);
  453. seq_printf(seq, "\n");
  454. }
  455. sctp_transport_put(transport);
  456. return 0;
  457. }
  458. static const struct seq_operations sctp_remaddr_ops = {
  459. .start = sctp_remaddr_seq_start,
  460. .next = sctp_remaddr_seq_next,
  461. .stop = sctp_remaddr_seq_stop,
  462. .show = sctp_remaddr_seq_show,
  463. };
  464. /* Cleanup the proc fs entry for 'remaddr' object. */
  465. void sctp_remaddr_proc_exit(struct net *net)
  466. {
  467. remove_proc_entry("remaddr", net->sctp.proc_net_sctp);
  468. }
  469. static int sctp_remaddr_seq_open(struct inode *inode, struct file *file)
  470. {
  471. return seq_open_net(inode, file, &sctp_remaddr_ops,
  472. sizeof(struct sctp_ht_iter));
  473. }
  474. static const struct file_operations sctp_remaddr_seq_fops = {
  475. .open = sctp_remaddr_seq_open,
  476. .read = seq_read,
  477. .llseek = seq_lseek,
  478. .release = seq_release_net,
  479. };
  480. int __net_init sctp_remaddr_proc_init(struct net *net)
  481. {
  482. struct proc_dir_entry *p;
  483. p = proc_create("remaddr", S_IRUGO, net->sctp.proc_net_sctp,
  484. &sctp_remaddr_seq_fops);
  485. if (!p)
  486. return -ENOMEM;
  487. return 0;
  488. }