smc_core.c 23 KB

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  1. // SPDX-License-Identifier: GPL-2.0
  2. /*
  3. * Shared Memory Communications over RDMA (SMC-R) and RoCE
  4. *
  5. * Basic Transport Functions exploiting Infiniband API
  6. *
  7. * Copyright IBM Corp. 2016
  8. *
  9. * Author(s): Ursula Braun <ubraun@linux.vnet.ibm.com>
  10. */
  11. #include <linux/socket.h>
  12. #include <linux/if_vlan.h>
  13. #include <linux/random.h>
  14. #include <linux/workqueue.h>
  15. #include <net/tcp.h>
  16. #include <net/sock.h>
  17. #include <rdma/ib_verbs.h>
  18. #include "smc.h"
  19. #include "smc_clc.h"
  20. #include "smc_core.h"
  21. #include "smc_ib.h"
  22. #include "smc_wr.h"
  23. #include "smc_llc.h"
  24. #include "smc_cdc.h"
  25. #include "smc_close.h"
  26. #define SMC_LGR_NUM_INCR 256
  27. #define SMC_LGR_FREE_DELAY_SERV (600 * HZ)
  28. #define SMC_LGR_FREE_DELAY_CLNT (SMC_LGR_FREE_DELAY_SERV + 10 * HZ)
  29. static struct smc_lgr_list smc_lgr_list = { /* established link groups */
  30. .lock = __SPIN_LOCK_UNLOCKED(smc_lgr_list.lock),
  31. .list = LIST_HEAD_INIT(smc_lgr_list.list),
  32. .num = 0,
  33. };
  34. static void smc_buf_free(struct smc_link_group *lgr, bool is_rmb,
  35. struct smc_buf_desc *buf_desc);
  36. static void smc_lgr_schedule_free_work(struct smc_link_group *lgr)
  37. {
  38. /* client link group creation always follows the server link group
  39. * creation. For client use a somewhat higher removal delay time,
  40. * otherwise there is a risk of out-of-sync link groups.
  41. */
  42. mod_delayed_work(system_wq, &lgr->free_work,
  43. lgr->role == SMC_CLNT ? SMC_LGR_FREE_DELAY_CLNT :
  44. SMC_LGR_FREE_DELAY_SERV);
  45. }
  46. /* Register connection's alert token in our lookup structure.
  47. * To use rbtrees we have to implement our own insert core.
  48. * Requires @conns_lock
  49. * @smc connection to register
  50. * Returns 0 on success, != otherwise.
  51. */
  52. static void smc_lgr_add_alert_token(struct smc_connection *conn)
  53. {
  54. struct rb_node **link, *parent = NULL;
  55. u32 token = conn->alert_token_local;
  56. link = &conn->lgr->conns_all.rb_node;
  57. while (*link) {
  58. struct smc_connection *cur = rb_entry(*link,
  59. struct smc_connection, alert_node);
  60. parent = *link;
  61. if (cur->alert_token_local > token)
  62. link = &parent->rb_left;
  63. else
  64. link = &parent->rb_right;
  65. }
  66. /* Put the new node there */
  67. rb_link_node(&conn->alert_node, parent, link);
  68. rb_insert_color(&conn->alert_node, &conn->lgr->conns_all);
  69. }
  70. /* Register connection in link group by assigning an alert token
  71. * registered in a search tree.
  72. * Requires @conns_lock
  73. * Note that '0' is a reserved value and not assigned.
  74. */
  75. static void smc_lgr_register_conn(struct smc_connection *conn)
  76. {
  77. struct smc_sock *smc = container_of(conn, struct smc_sock, conn);
  78. static atomic_t nexttoken = ATOMIC_INIT(0);
  79. /* find a new alert_token_local value not yet used by some connection
  80. * in this link group
  81. */
  82. sock_hold(&smc->sk); /* sock_put in smc_lgr_unregister_conn() */
  83. while (!conn->alert_token_local) {
  84. conn->alert_token_local = atomic_inc_return(&nexttoken);
  85. if (smc_lgr_find_conn(conn->alert_token_local, conn->lgr))
  86. conn->alert_token_local = 0;
  87. }
  88. smc_lgr_add_alert_token(conn);
  89. conn->lgr->conns_num++;
  90. }
  91. /* Unregister connection and reset the alert token of the given connection<
  92. */
  93. static void __smc_lgr_unregister_conn(struct smc_connection *conn)
  94. {
  95. struct smc_sock *smc = container_of(conn, struct smc_sock, conn);
  96. struct smc_link_group *lgr = conn->lgr;
  97. rb_erase(&conn->alert_node, &lgr->conns_all);
  98. lgr->conns_num--;
  99. conn->alert_token_local = 0;
  100. conn->lgr = NULL;
  101. sock_put(&smc->sk); /* sock_hold in smc_lgr_register_conn() */
  102. }
  103. /* Unregister connection and trigger lgr freeing if applicable
  104. */
  105. static void smc_lgr_unregister_conn(struct smc_connection *conn)
  106. {
  107. struct smc_link_group *lgr = conn->lgr;
  108. int reduced = 0;
  109. write_lock_bh(&lgr->conns_lock);
  110. if (conn->alert_token_local) {
  111. reduced = 1;
  112. __smc_lgr_unregister_conn(conn);
  113. }
  114. write_unlock_bh(&lgr->conns_lock);
  115. if (!reduced || lgr->conns_num)
  116. return;
  117. smc_lgr_schedule_free_work(lgr);
  118. }
  119. static void smc_lgr_free_work(struct work_struct *work)
  120. {
  121. struct smc_link_group *lgr = container_of(to_delayed_work(work),
  122. struct smc_link_group,
  123. free_work);
  124. bool conns;
  125. spin_lock_bh(&smc_lgr_list.lock);
  126. if (list_empty(&lgr->list))
  127. goto free;
  128. read_lock_bh(&lgr->conns_lock);
  129. conns = RB_EMPTY_ROOT(&lgr->conns_all);
  130. read_unlock_bh(&lgr->conns_lock);
  131. if (!conns) { /* number of lgr connections is no longer zero */
  132. spin_unlock_bh(&smc_lgr_list.lock);
  133. return;
  134. }
  135. list_del_init(&lgr->list); /* remove from smc_lgr_list */
  136. free:
  137. spin_unlock_bh(&smc_lgr_list.lock);
  138. if (!delayed_work_pending(&lgr->free_work)) {
  139. if (lgr->lnk[SMC_SINGLE_LINK].state != SMC_LNK_INACTIVE)
  140. smc_llc_link_inactive(&lgr->lnk[SMC_SINGLE_LINK]);
  141. smc_lgr_free(lgr);
  142. }
  143. }
  144. /* create a new SMC link group */
  145. static int smc_lgr_create(struct smc_sock *smc,
  146. struct smc_ib_device *smcibdev, u8 ibport,
  147. char *peer_systemid, unsigned short vlan_id)
  148. {
  149. struct smc_link_group *lgr;
  150. struct smc_link *lnk;
  151. u8 rndvec[3];
  152. int rc = 0;
  153. int i;
  154. lgr = kzalloc(sizeof(*lgr), GFP_KERNEL);
  155. if (!lgr) {
  156. rc = -ENOMEM;
  157. goto out;
  158. }
  159. lgr->role = smc->listen_smc ? SMC_SERV : SMC_CLNT;
  160. lgr->sync_err = 0;
  161. memcpy(lgr->peer_systemid, peer_systemid, SMC_SYSTEMID_LEN);
  162. lgr->vlan_id = vlan_id;
  163. rwlock_init(&lgr->sndbufs_lock);
  164. rwlock_init(&lgr->rmbs_lock);
  165. for (i = 0; i < SMC_RMBE_SIZES; i++) {
  166. INIT_LIST_HEAD(&lgr->sndbufs[i]);
  167. INIT_LIST_HEAD(&lgr->rmbs[i]);
  168. }
  169. smc_lgr_list.num += SMC_LGR_NUM_INCR;
  170. memcpy(&lgr->id, (u8 *)&smc_lgr_list.num, SMC_LGR_ID_SIZE);
  171. INIT_DELAYED_WORK(&lgr->free_work, smc_lgr_free_work);
  172. lgr->conns_all = RB_ROOT;
  173. lnk = &lgr->lnk[SMC_SINGLE_LINK];
  174. /* initialize link */
  175. lnk->state = SMC_LNK_ACTIVATING;
  176. lnk->link_id = SMC_SINGLE_LINK;
  177. lnk->smcibdev = smcibdev;
  178. lnk->ibport = ibport;
  179. lnk->path_mtu = smcibdev->pattr[ibport - 1].active_mtu;
  180. if (!smcibdev->initialized)
  181. smc_ib_setup_per_ibdev(smcibdev);
  182. get_random_bytes(rndvec, sizeof(rndvec));
  183. lnk->psn_initial = rndvec[0] + (rndvec[1] << 8) + (rndvec[2] << 16);
  184. rc = smc_llc_link_init(lnk);
  185. if (rc)
  186. goto free_lgr;
  187. rc = smc_wr_alloc_link_mem(lnk);
  188. if (rc)
  189. goto clear_llc_lnk;
  190. rc = smc_ib_create_protection_domain(lnk);
  191. if (rc)
  192. goto free_link_mem;
  193. rc = smc_ib_create_queue_pair(lnk);
  194. if (rc)
  195. goto dealloc_pd;
  196. rc = smc_wr_create_link(lnk);
  197. if (rc)
  198. goto destroy_qp;
  199. smc->conn.lgr = lgr;
  200. rwlock_init(&lgr->conns_lock);
  201. spin_lock_bh(&smc_lgr_list.lock);
  202. list_add(&lgr->list, &smc_lgr_list.list);
  203. spin_unlock_bh(&smc_lgr_list.lock);
  204. return 0;
  205. destroy_qp:
  206. smc_ib_destroy_queue_pair(lnk);
  207. dealloc_pd:
  208. smc_ib_dealloc_protection_domain(lnk);
  209. free_link_mem:
  210. smc_wr_free_link_mem(lnk);
  211. clear_llc_lnk:
  212. smc_llc_link_clear(lnk);
  213. free_lgr:
  214. kfree(lgr);
  215. out:
  216. return rc;
  217. }
  218. static void smc_buf_unuse(struct smc_connection *conn)
  219. {
  220. if (conn->sndbuf_desc)
  221. conn->sndbuf_desc->used = 0;
  222. if (conn->rmb_desc) {
  223. if (!conn->rmb_desc->regerr) {
  224. conn->rmb_desc->reused = 1;
  225. conn->rmb_desc->used = 0;
  226. } else {
  227. /* buf registration failed, reuse not possible */
  228. struct smc_link_group *lgr = conn->lgr;
  229. write_lock_bh(&lgr->rmbs_lock);
  230. list_del(&conn->rmb_desc->list);
  231. write_unlock_bh(&lgr->rmbs_lock);
  232. smc_buf_free(lgr, true, conn->rmb_desc);
  233. }
  234. }
  235. }
  236. /* remove a finished connection from its link group */
  237. void smc_conn_free(struct smc_connection *conn)
  238. {
  239. if (!conn->lgr)
  240. return;
  241. smc_cdc_tx_dismiss_slots(conn);
  242. smc_lgr_unregister_conn(conn);
  243. smc_buf_unuse(conn);
  244. }
  245. static void smc_link_clear(struct smc_link *lnk)
  246. {
  247. lnk->peer_qpn = 0;
  248. smc_llc_link_clear(lnk);
  249. smc_ib_modify_qp_reset(lnk);
  250. smc_wr_free_link(lnk);
  251. smc_ib_destroy_queue_pair(lnk);
  252. smc_ib_dealloc_protection_domain(lnk);
  253. smc_wr_free_link_mem(lnk);
  254. }
  255. static void smc_buf_free(struct smc_link_group *lgr, bool is_rmb,
  256. struct smc_buf_desc *buf_desc)
  257. {
  258. struct smc_link *lnk = &lgr->lnk[SMC_SINGLE_LINK];
  259. if (is_rmb) {
  260. if (buf_desc->mr_rx[SMC_SINGLE_LINK])
  261. smc_ib_put_memory_region(
  262. buf_desc->mr_rx[SMC_SINGLE_LINK]);
  263. smc_ib_buf_unmap_sg(lnk->smcibdev, buf_desc,
  264. DMA_FROM_DEVICE);
  265. } else {
  266. smc_ib_buf_unmap_sg(lnk->smcibdev, buf_desc,
  267. DMA_TO_DEVICE);
  268. }
  269. sg_free_table(&buf_desc->sgt[SMC_SINGLE_LINK]);
  270. if (buf_desc->pages)
  271. __free_pages(buf_desc->pages, buf_desc->order);
  272. kfree(buf_desc);
  273. }
  274. static void __smc_lgr_free_bufs(struct smc_link_group *lgr, bool is_rmb)
  275. {
  276. struct smc_buf_desc *buf_desc, *bf_desc;
  277. struct list_head *buf_list;
  278. int i;
  279. for (i = 0; i < SMC_RMBE_SIZES; i++) {
  280. if (is_rmb)
  281. buf_list = &lgr->rmbs[i];
  282. else
  283. buf_list = &lgr->sndbufs[i];
  284. list_for_each_entry_safe(buf_desc, bf_desc, buf_list,
  285. list) {
  286. list_del(&buf_desc->list);
  287. smc_buf_free(lgr, is_rmb, buf_desc);
  288. }
  289. }
  290. }
  291. static void smc_lgr_free_bufs(struct smc_link_group *lgr)
  292. {
  293. /* free send buffers */
  294. __smc_lgr_free_bufs(lgr, false);
  295. /* free rmbs */
  296. __smc_lgr_free_bufs(lgr, true);
  297. }
  298. /* remove a link group */
  299. void smc_lgr_free(struct smc_link_group *lgr)
  300. {
  301. smc_lgr_free_bufs(lgr);
  302. smc_link_clear(&lgr->lnk[SMC_SINGLE_LINK]);
  303. kfree(lgr);
  304. }
  305. void smc_lgr_forget(struct smc_link_group *lgr)
  306. {
  307. spin_lock_bh(&smc_lgr_list.lock);
  308. /* do not use this link group for new connections */
  309. if (!list_empty(&lgr->list))
  310. list_del_init(&lgr->list);
  311. spin_unlock_bh(&smc_lgr_list.lock);
  312. }
  313. /* terminate linkgroup abnormally */
  314. static void __smc_lgr_terminate(struct smc_link_group *lgr)
  315. {
  316. struct smc_connection *conn;
  317. struct smc_sock *smc;
  318. struct rb_node *node;
  319. if (lgr->terminating)
  320. return; /* lgr already terminating */
  321. lgr->terminating = 1;
  322. if (!list_empty(&lgr->list)) /* forget lgr */
  323. list_del_init(&lgr->list);
  324. smc_llc_link_inactive(&lgr->lnk[SMC_SINGLE_LINK]);
  325. write_lock_bh(&lgr->conns_lock);
  326. node = rb_first(&lgr->conns_all);
  327. while (node) {
  328. conn = rb_entry(node, struct smc_connection, alert_node);
  329. smc = container_of(conn, struct smc_sock, conn);
  330. sock_hold(&smc->sk); /* sock_put in close work */
  331. conn->local_tx_ctrl.conn_state_flags.peer_conn_abort = 1;
  332. __smc_lgr_unregister_conn(conn);
  333. write_unlock_bh(&lgr->conns_lock);
  334. if (!schedule_work(&conn->close_work))
  335. sock_put(&smc->sk);
  336. write_lock_bh(&lgr->conns_lock);
  337. node = rb_first(&lgr->conns_all);
  338. }
  339. write_unlock_bh(&lgr->conns_lock);
  340. wake_up(&lgr->lnk[SMC_SINGLE_LINK].wr_reg_wait);
  341. smc_lgr_schedule_free_work(lgr);
  342. }
  343. void smc_lgr_terminate(struct smc_link_group *lgr)
  344. {
  345. spin_lock_bh(&smc_lgr_list.lock);
  346. __smc_lgr_terminate(lgr);
  347. spin_unlock_bh(&smc_lgr_list.lock);
  348. }
  349. /* Called when IB port is terminated */
  350. void smc_port_terminate(struct smc_ib_device *smcibdev, u8 ibport)
  351. {
  352. struct smc_link_group *lgr, *l;
  353. spin_lock_bh(&smc_lgr_list.lock);
  354. list_for_each_entry_safe(lgr, l, &smc_lgr_list.list, list) {
  355. if (lgr->lnk[SMC_SINGLE_LINK].smcibdev == smcibdev &&
  356. lgr->lnk[SMC_SINGLE_LINK].ibport == ibport)
  357. __smc_lgr_terminate(lgr);
  358. }
  359. spin_unlock_bh(&smc_lgr_list.lock);
  360. }
  361. /* Determine vlan of internal TCP socket.
  362. * @vlan_id: address to store the determined vlan id into
  363. */
  364. static int smc_vlan_by_tcpsk(struct socket *clcsock, unsigned short *vlan_id)
  365. {
  366. struct dst_entry *dst = sk_dst_get(clcsock->sk);
  367. struct net_device *ndev;
  368. int i, nest_lvl, rc = 0;
  369. *vlan_id = 0;
  370. if (!dst) {
  371. rc = -ENOTCONN;
  372. goto out;
  373. }
  374. if (!dst->dev) {
  375. rc = -ENODEV;
  376. goto out_rel;
  377. }
  378. ndev = dst->dev;
  379. if (is_vlan_dev(ndev)) {
  380. *vlan_id = vlan_dev_vlan_id(ndev);
  381. goto out_rel;
  382. }
  383. rtnl_lock();
  384. nest_lvl = dev_get_nest_level(ndev);
  385. for (i = 0; i < nest_lvl; i++) {
  386. struct list_head *lower = &ndev->adj_list.lower;
  387. if (list_empty(lower))
  388. break;
  389. lower = lower->next;
  390. ndev = (struct net_device *)netdev_lower_get_next(ndev, &lower);
  391. if (is_vlan_dev(ndev)) {
  392. *vlan_id = vlan_dev_vlan_id(ndev);
  393. break;
  394. }
  395. }
  396. rtnl_unlock();
  397. out_rel:
  398. dst_release(dst);
  399. out:
  400. return rc;
  401. }
  402. /* determine the link gid matching the vlan id of the link group */
  403. static int smc_link_determine_gid(struct smc_link_group *lgr)
  404. {
  405. struct smc_link *lnk = &lgr->lnk[SMC_SINGLE_LINK];
  406. struct ib_gid_attr gattr;
  407. union ib_gid gid;
  408. int i;
  409. if (!lgr->vlan_id) {
  410. lnk->gid = lnk->smcibdev->gid[lnk->ibport - 1];
  411. return 0;
  412. }
  413. for (i = 0; i < lnk->smcibdev->pattr[lnk->ibport - 1].gid_tbl_len;
  414. i++) {
  415. if (ib_query_gid(lnk->smcibdev->ibdev, lnk->ibport, i, &gid,
  416. &gattr))
  417. continue;
  418. if (gattr.ndev) {
  419. if (is_vlan_dev(gattr.ndev) &&
  420. vlan_dev_vlan_id(gattr.ndev) == lgr->vlan_id) {
  421. lnk->gid = gid;
  422. dev_put(gattr.ndev);
  423. return 0;
  424. }
  425. dev_put(gattr.ndev);
  426. }
  427. }
  428. return -ENODEV;
  429. }
  430. /* create a new SMC connection (and a new link group if necessary) */
  431. int smc_conn_create(struct smc_sock *smc,
  432. struct smc_ib_device *smcibdev, u8 ibport,
  433. struct smc_clc_msg_local *lcl, int srv_first_contact)
  434. {
  435. struct smc_connection *conn = &smc->conn;
  436. int local_contact = SMC_FIRST_CONTACT;
  437. struct smc_link_group *lgr;
  438. unsigned short vlan_id;
  439. enum smc_lgr_role role;
  440. int rc = 0;
  441. role = smc->listen_smc ? SMC_SERV : SMC_CLNT;
  442. rc = smc_vlan_by_tcpsk(smc->clcsock, &vlan_id);
  443. if (rc)
  444. return rc;
  445. if ((role == SMC_CLNT) && srv_first_contact)
  446. /* create new link group as well */
  447. goto create;
  448. /* determine if an existing link group can be reused */
  449. spin_lock_bh(&smc_lgr_list.lock);
  450. list_for_each_entry(lgr, &smc_lgr_list.list, list) {
  451. write_lock_bh(&lgr->conns_lock);
  452. if (!memcmp(lgr->peer_systemid, lcl->id_for_peer,
  453. SMC_SYSTEMID_LEN) &&
  454. !memcmp(lgr->lnk[SMC_SINGLE_LINK].peer_gid, &lcl->gid,
  455. SMC_GID_SIZE) &&
  456. !memcmp(lgr->lnk[SMC_SINGLE_LINK].peer_mac, lcl->mac,
  457. sizeof(lcl->mac)) &&
  458. !lgr->sync_err &&
  459. (lgr->role == role) &&
  460. (lgr->vlan_id == vlan_id) &&
  461. ((role == SMC_CLNT) ||
  462. (lgr->conns_num < SMC_RMBS_PER_LGR_MAX))) {
  463. /* link group found */
  464. local_contact = SMC_REUSE_CONTACT;
  465. conn->lgr = lgr;
  466. smc_lgr_register_conn(conn); /* add smc conn to lgr */
  467. write_unlock_bh(&lgr->conns_lock);
  468. break;
  469. }
  470. write_unlock_bh(&lgr->conns_lock);
  471. }
  472. spin_unlock_bh(&smc_lgr_list.lock);
  473. if (role == SMC_CLNT && !srv_first_contact &&
  474. (local_contact == SMC_FIRST_CONTACT)) {
  475. /* Server reuses a link group, but Client wants to start
  476. * a new one
  477. * send out_of_sync decline, reason synchr. error
  478. */
  479. return -ENOLINK;
  480. }
  481. create:
  482. if (local_contact == SMC_FIRST_CONTACT) {
  483. rc = smc_lgr_create(smc, smcibdev, ibport,
  484. lcl->id_for_peer, vlan_id);
  485. if (rc)
  486. goto out;
  487. smc_lgr_register_conn(conn); /* add smc conn to lgr */
  488. rc = smc_link_determine_gid(conn->lgr);
  489. }
  490. conn->local_tx_ctrl.common.type = SMC_CDC_MSG_TYPE;
  491. conn->local_tx_ctrl.len = SMC_WR_TX_SIZE;
  492. conn->urg_state = SMC_URG_READ;
  493. #ifndef KERNEL_HAS_ATOMIC64
  494. spin_lock_init(&conn->acurs_lock);
  495. #endif
  496. out:
  497. return rc ? rc : local_contact;
  498. }
  499. /* convert the RMB size into the compressed notation - minimum 16K.
  500. * In contrast to plain ilog2, this rounds towards the next power of 2,
  501. * so the socket application gets at least its desired sndbuf / rcvbuf size.
  502. */
  503. static u8 smc_compress_bufsize(int size)
  504. {
  505. u8 compressed;
  506. if (size <= SMC_BUF_MIN_SIZE)
  507. return 0;
  508. size = (size - 1) >> 14;
  509. compressed = ilog2(size) + 1;
  510. if (compressed >= SMC_RMBE_SIZES)
  511. compressed = SMC_RMBE_SIZES - 1;
  512. return compressed;
  513. }
  514. /* convert the RMB size from compressed notation into integer */
  515. int smc_uncompress_bufsize(u8 compressed)
  516. {
  517. u32 size;
  518. size = 0x00000001 << (((int)compressed) + 14);
  519. return (int)size;
  520. }
  521. /* try to reuse a sndbuf or rmb description slot for a certain
  522. * buffer size; if not available, return NULL
  523. */
  524. static struct smc_buf_desc *smc_buf_get_slot(int compressed_bufsize,
  525. rwlock_t *lock,
  526. struct list_head *buf_list)
  527. {
  528. struct smc_buf_desc *buf_slot;
  529. read_lock_bh(lock);
  530. list_for_each_entry(buf_slot, buf_list, list) {
  531. if (cmpxchg(&buf_slot->used, 0, 1) == 0) {
  532. read_unlock_bh(lock);
  533. return buf_slot;
  534. }
  535. }
  536. read_unlock_bh(lock);
  537. return NULL;
  538. }
  539. /* one of the conditions for announcing a receiver's current window size is
  540. * that it "results in a minimum increase in the window size of 10% of the
  541. * receive buffer space" [RFC7609]
  542. */
  543. static inline int smc_rmb_wnd_update_limit(int rmbe_size)
  544. {
  545. return min_t(int, rmbe_size / 10, SOCK_MIN_SNDBUF / 2);
  546. }
  547. static struct smc_buf_desc *smc_new_buf_create(struct smc_link_group *lgr,
  548. bool is_rmb, int bufsize)
  549. {
  550. struct smc_buf_desc *buf_desc;
  551. struct smc_link *lnk;
  552. int rc;
  553. /* try to alloc a new buffer */
  554. buf_desc = kzalloc(sizeof(*buf_desc), GFP_KERNEL);
  555. if (!buf_desc)
  556. return ERR_PTR(-ENOMEM);
  557. buf_desc->order = get_order(bufsize);
  558. buf_desc->pages = alloc_pages(GFP_KERNEL | __GFP_NOWARN |
  559. __GFP_NOMEMALLOC | __GFP_COMP |
  560. __GFP_NORETRY | __GFP_ZERO,
  561. buf_desc->order);
  562. if (!buf_desc->pages) {
  563. kfree(buf_desc);
  564. return ERR_PTR(-EAGAIN);
  565. }
  566. buf_desc->cpu_addr = (void *)page_address(buf_desc->pages);
  567. /* build the sg table from the pages */
  568. lnk = &lgr->lnk[SMC_SINGLE_LINK];
  569. rc = sg_alloc_table(&buf_desc->sgt[SMC_SINGLE_LINK], 1,
  570. GFP_KERNEL);
  571. if (rc) {
  572. smc_buf_free(lgr, is_rmb, buf_desc);
  573. return ERR_PTR(rc);
  574. }
  575. sg_set_buf(buf_desc->sgt[SMC_SINGLE_LINK].sgl,
  576. buf_desc->cpu_addr, bufsize);
  577. /* map sg table to DMA address */
  578. rc = smc_ib_buf_map_sg(lnk->smcibdev, buf_desc,
  579. is_rmb ? DMA_FROM_DEVICE : DMA_TO_DEVICE);
  580. /* SMC protocol depends on mapping to one DMA address only */
  581. if (rc != 1) {
  582. smc_buf_free(lgr, is_rmb, buf_desc);
  583. return ERR_PTR(-EAGAIN);
  584. }
  585. /* create a new memory region for the RMB */
  586. if (is_rmb) {
  587. rc = smc_ib_get_memory_region(lnk->roce_pd,
  588. IB_ACCESS_REMOTE_WRITE |
  589. IB_ACCESS_LOCAL_WRITE,
  590. buf_desc);
  591. if (rc) {
  592. smc_buf_free(lgr, is_rmb, buf_desc);
  593. return ERR_PTR(rc);
  594. }
  595. }
  596. buf_desc->len = bufsize;
  597. return buf_desc;
  598. }
  599. static int __smc_buf_create(struct smc_sock *smc, bool is_rmb)
  600. {
  601. struct smc_buf_desc *buf_desc = ERR_PTR(-ENOMEM);
  602. struct smc_connection *conn = &smc->conn;
  603. struct smc_link_group *lgr = conn->lgr;
  604. struct list_head *buf_list;
  605. int bufsize, bufsize_short;
  606. int sk_buf_size;
  607. rwlock_t *lock;
  608. if (is_rmb)
  609. /* use socket recv buffer size (w/o overhead) as start value */
  610. sk_buf_size = smc->sk.sk_rcvbuf / 2;
  611. else
  612. /* use socket send buffer size (w/o overhead) as start value */
  613. sk_buf_size = smc->sk.sk_sndbuf / 2;
  614. for (bufsize_short = smc_compress_bufsize(sk_buf_size);
  615. bufsize_short >= 0; bufsize_short--) {
  616. if (is_rmb) {
  617. lock = &lgr->rmbs_lock;
  618. buf_list = &lgr->rmbs[bufsize_short];
  619. } else {
  620. lock = &lgr->sndbufs_lock;
  621. buf_list = &lgr->sndbufs[bufsize_short];
  622. }
  623. bufsize = smc_uncompress_bufsize(bufsize_short);
  624. if ((1 << get_order(bufsize)) > SG_MAX_SINGLE_ALLOC)
  625. continue;
  626. /* check for reusable slot in the link group */
  627. buf_desc = smc_buf_get_slot(bufsize_short, lock, buf_list);
  628. if (buf_desc) {
  629. memset(buf_desc->cpu_addr, 0, bufsize);
  630. break; /* found reusable slot */
  631. }
  632. buf_desc = smc_new_buf_create(lgr, is_rmb, bufsize);
  633. if (PTR_ERR(buf_desc) == -ENOMEM)
  634. break;
  635. if (IS_ERR(buf_desc))
  636. continue;
  637. buf_desc->used = 1;
  638. write_lock_bh(lock);
  639. list_add(&buf_desc->list, buf_list);
  640. write_unlock_bh(lock);
  641. break; /* found */
  642. }
  643. if (IS_ERR(buf_desc))
  644. return -ENOMEM;
  645. if (is_rmb) {
  646. conn->rmb_desc = buf_desc;
  647. conn->rmbe_size_short = bufsize_short;
  648. smc->sk.sk_rcvbuf = bufsize * 2;
  649. atomic_set(&conn->bytes_to_rcv, 0);
  650. conn->rmbe_update_limit = smc_rmb_wnd_update_limit(bufsize);
  651. } else {
  652. conn->sndbuf_desc = buf_desc;
  653. smc->sk.sk_sndbuf = bufsize * 2;
  654. atomic_set(&conn->sndbuf_space, bufsize);
  655. }
  656. return 0;
  657. }
  658. void smc_sndbuf_sync_sg_for_cpu(struct smc_connection *conn)
  659. {
  660. struct smc_link_group *lgr = conn->lgr;
  661. smc_ib_sync_sg_for_cpu(lgr->lnk[SMC_SINGLE_LINK].smcibdev,
  662. conn->sndbuf_desc, DMA_TO_DEVICE);
  663. }
  664. void smc_sndbuf_sync_sg_for_device(struct smc_connection *conn)
  665. {
  666. struct smc_link_group *lgr = conn->lgr;
  667. smc_ib_sync_sg_for_device(lgr->lnk[SMC_SINGLE_LINK].smcibdev,
  668. conn->sndbuf_desc, DMA_TO_DEVICE);
  669. }
  670. void smc_rmb_sync_sg_for_cpu(struct smc_connection *conn)
  671. {
  672. struct smc_link_group *lgr = conn->lgr;
  673. smc_ib_sync_sg_for_cpu(lgr->lnk[SMC_SINGLE_LINK].smcibdev,
  674. conn->rmb_desc, DMA_FROM_DEVICE);
  675. }
  676. void smc_rmb_sync_sg_for_device(struct smc_connection *conn)
  677. {
  678. struct smc_link_group *lgr = conn->lgr;
  679. smc_ib_sync_sg_for_device(lgr->lnk[SMC_SINGLE_LINK].smcibdev,
  680. conn->rmb_desc, DMA_FROM_DEVICE);
  681. }
  682. /* create the send and receive buffer for an SMC socket;
  683. * receive buffers are called RMBs;
  684. * (even though the SMC protocol allows more than one RMB-element per RMB,
  685. * the Linux implementation uses just one RMB-element per RMB, i.e. uses an
  686. * extra RMB for every connection in a link group
  687. */
  688. int smc_buf_create(struct smc_sock *smc)
  689. {
  690. int rc;
  691. /* create send buffer */
  692. rc = __smc_buf_create(smc, false);
  693. if (rc)
  694. return rc;
  695. /* create rmb */
  696. rc = __smc_buf_create(smc, true);
  697. if (rc)
  698. smc_buf_free(smc->conn.lgr, false, smc->conn.sndbuf_desc);
  699. return rc;
  700. }
  701. static inline int smc_rmb_reserve_rtoken_idx(struct smc_link_group *lgr)
  702. {
  703. int i;
  704. for_each_clear_bit(i, lgr->rtokens_used_mask, SMC_RMBS_PER_LGR_MAX) {
  705. if (!test_and_set_bit(i, lgr->rtokens_used_mask))
  706. return i;
  707. }
  708. return -ENOSPC;
  709. }
  710. /* add a new rtoken from peer */
  711. int smc_rtoken_add(struct smc_link_group *lgr, __be64 nw_vaddr, __be32 nw_rkey)
  712. {
  713. u64 dma_addr = be64_to_cpu(nw_vaddr);
  714. u32 rkey = ntohl(nw_rkey);
  715. int i;
  716. for (i = 0; i < SMC_RMBS_PER_LGR_MAX; i++) {
  717. if ((lgr->rtokens[i][SMC_SINGLE_LINK].rkey == rkey) &&
  718. (lgr->rtokens[i][SMC_SINGLE_LINK].dma_addr == dma_addr) &&
  719. test_bit(i, lgr->rtokens_used_mask)) {
  720. /* already in list */
  721. return i;
  722. }
  723. }
  724. i = smc_rmb_reserve_rtoken_idx(lgr);
  725. if (i < 0)
  726. return i;
  727. lgr->rtokens[i][SMC_SINGLE_LINK].rkey = rkey;
  728. lgr->rtokens[i][SMC_SINGLE_LINK].dma_addr = dma_addr;
  729. return i;
  730. }
  731. /* delete an rtoken */
  732. int smc_rtoken_delete(struct smc_link_group *lgr, __be32 nw_rkey)
  733. {
  734. u32 rkey = ntohl(nw_rkey);
  735. int i;
  736. for (i = 0; i < SMC_RMBS_PER_LGR_MAX; i++) {
  737. if (lgr->rtokens[i][SMC_SINGLE_LINK].rkey == rkey &&
  738. test_bit(i, lgr->rtokens_used_mask)) {
  739. lgr->rtokens[i][SMC_SINGLE_LINK].rkey = 0;
  740. lgr->rtokens[i][SMC_SINGLE_LINK].dma_addr = 0;
  741. clear_bit(i, lgr->rtokens_used_mask);
  742. return 0;
  743. }
  744. }
  745. return -ENOENT;
  746. }
  747. /* save rkey and dma_addr received from peer during clc handshake */
  748. int smc_rmb_rtoken_handling(struct smc_connection *conn,
  749. struct smc_clc_msg_accept_confirm *clc)
  750. {
  751. conn->rtoken_idx = smc_rtoken_add(conn->lgr, clc->rmb_dma_addr,
  752. clc->rmb_rkey);
  753. if (conn->rtoken_idx < 0)
  754. return conn->rtoken_idx;
  755. return 0;
  756. }
  757. /* Called (from smc_exit) when module is removed */
  758. void smc_core_exit(void)
  759. {
  760. struct smc_link_group *lgr, *lg;
  761. LIST_HEAD(lgr_freeing_list);
  762. spin_lock_bh(&smc_lgr_list.lock);
  763. if (!list_empty(&smc_lgr_list.list))
  764. list_splice_init(&smc_lgr_list.list, &lgr_freeing_list);
  765. spin_unlock_bh(&smc_lgr_list.lock);
  766. list_for_each_entry_safe(lgr, lg, &lgr_freeing_list, list) {
  767. list_del_init(&lgr->list);
  768. smc_llc_link_inactive(&lgr->lnk[SMC_SINGLE_LINK]);
  769. cancel_delayed_work_sync(&lgr->free_work);
  770. smc_lgr_free(lgr); /* free link group */
  771. }
  772. }