libcxgbi.c 66 KB

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  1. /*
  2. * libcxgbi.c: Chelsio common library for T3/T4 iSCSI driver.
  3. *
  4. * Copyright (c) 2010 Chelsio Communications, Inc.
  5. *
  6. * This program is free software; you can redistribute it and/or modify
  7. * it under the terms of the GNU General Public License as published by
  8. * the Free Software Foundation.
  9. *
  10. * Written by: Karen Xie (kxie@chelsio.com)
  11. * Written by: Rakesh Ranjan (rranjan@chelsio.com)
  12. */
  13. #define pr_fmt(fmt) KBUILD_MODNAME ":%s: " fmt, __func__
  14. #include <linux/skbuff.h>
  15. #include <linux/crypto.h>
  16. #include <linux/scatterlist.h>
  17. #include <linux/pci.h>
  18. #include <scsi/scsi.h>
  19. #include <scsi/scsi_cmnd.h>
  20. #include <scsi/scsi_host.h>
  21. #include <linux/if_vlan.h>
  22. #include <linux/inet.h>
  23. #include <net/dst.h>
  24. #include <net/route.h>
  25. #include <linux/inetdevice.h> /* ip_dev_find */
  26. #include <net/tcp.h>
  27. static unsigned int dbg_level;
  28. #include "libcxgbi.h"
  29. #define DRV_MODULE_NAME "libcxgbi"
  30. #define DRV_MODULE_DESC "Chelsio iSCSI driver library"
  31. #define DRV_MODULE_VERSION "0.9.0"
  32. #define DRV_MODULE_RELDATE "Jun. 2010"
  33. MODULE_AUTHOR("Chelsio Communications, Inc.");
  34. MODULE_DESCRIPTION(DRV_MODULE_DESC);
  35. MODULE_VERSION(DRV_MODULE_VERSION);
  36. MODULE_LICENSE("GPL");
  37. module_param(dbg_level, uint, 0644);
  38. MODULE_PARM_DESC(dbg_level, "libiscsi debug level (default=0)");
  39. /*
  40. * cxgbi device management
  41. * maintains a list of the cxgbi devices
  42. */
  43. static LIST_HEAD(cdev_list);
  44. static DEFINE_MUTEX(cdev_mutex);
  45. int cxgbi_device_portmap_create(struct cxgbi_device *cdev, unsigned int base,
  46. unsigned int max_conn)
  47. {
  48. struct cxgbi_ports_map *pmap = &cdev->pmap;
  49. pmap->port_csk = cxgbi_alloc_big_mem(max_conn *
  50. sizeof(struct cxgbi_sock *),
  51. GFP_KERNEL);
  52. if (!pmap->port_csk) {
  53. pr_warn("cdev 0x%p, portmap OOM %u.\n", cdev, max_conn);
  54. return -ENOMEM;
  55. }
  56. pmap->max_connect = max_conn;
  57. pmap->sport_base = base;
  58. spin_lock_init(&pmap->lock);
  59. return 0;
  60. }
  61. EXPORT_SYMBOL_GPL(cxgbi_device_portmap_create);
  62. void cxgbi_device_portmap_cleanup(struct cxgbi_device *cdev)
  63. {
  64. struct cxgbi_ports_map *pmap = &cdev->pmap;
  65. struct cxgbi_sock *csk;
  66. int i;
  67. for (i = 0; i < pmap->max_connect; i++) {
  68. if (pmap->port_csk[i]) {
  69. csk = pmap->port_csk[i];
  70. pmap->port_csk[i] = NULL;
  71. log_debug(1 << CXGBI_DBG_SOCK,
  72. "csk 0x%p, cdev 0x%p, offload down.\n",
  73. csk, cdev);
  74. spin_lock_bh(&csk->lock);
  75. cxgbi_sock_set_flag(csk, CTPF_OFFLOAD_DOWN);
  76. cxgbi_sock_closed(csk);
  77. spin_unlock_bh(&csk->lock);
  78. cxgbi_sock_put(csk);
  79. }
  80. }
  81. }
  82. EXPORT_SYMBOL_GPL(cxgbi_device_portmap_cleanup);
  83. static inline void cxgbi_device_destroy(struct cxgbi_device *cdev)
  84. {
  85. log_debug(1 << CXGBI_DBG_DEV,
  86. "cdev 0x%p, p# %u.\n", cdev, cdev->nports);
  87. cxgbi_hbas_remove(cdev);
  88. cxgbi_device_portmap_cleanup(cdev);
  89. if (cdev->dev_ddp_cleanup)
  90. cdev->dev_ddp_cleanup(cdev);
  91. else
  92. cxgbi_ddp_cleanup(cdev);
  93. if (cdev->ddp)
  94. cxgbi_ddp_cleanup(cdev);
  95. if (cdev->pmap.max_connect)
  96. cxgbi_free_big_mem(cdev->pmap.port_csk);
  97. kfree(cdev);
  98. }
  99. struct cxgbi_device *cxgbi_device_register(unsigned int extra,
  100. unsigned int nports)
  101. {
  102. struct cxgbi_device *cdev;
  103. cdev = kzalloc(sizeof(*cdev) + extra + nports *
  104. (sizeof(struct cxgbi_hba *) +
  105. sizeof(struct net_device *)),
  106. GFP_KERNEL);
  107. if (!cdev) {
  108. pr_warn("nport %d, OOM.\n", nports);
  109. return NULL;
  110. }
  111. cdev->ports = (struct net_device **)(cdev + 1);
  112. cdev->hbas = (struct cxgbi_hba **)(((char*)cdev->ports) + nports *
  113. sizeof(struct net_device *));
  114. if (extra)
  115. cdev->dd_data = ((char *)cdev->hbas) +
  116. nports * sizeof(struct cxgbi_hba *);
  117. spin_lock_init(&cdev->pmap.lock);
  118. mutex_lock(&cdev_mutex);
  119. list_add_tail(&cdev->list_head, &cdev_list);
  120. mutex_unlock(&cdev_mutex);
  121. log_debug(1 << CXGBI_DBG_DEV,
  122. "cdev 0x%p, p# %u.\n", cdev, nports);
  123. return cdev;
  124. }
  125. EXPORT_SYMBOL_GPL(cxgbi_device_register);
  126. void cxgbi_device_unregister(struct cxgbi_device *cdev)
  127. {
  128. log_debug(1 << CXGBI_DBG_DEV,
  129. "cdev 0x%p, p# %u,%s.\n",
  130. cdev, cdev->nports, cdev->nports ? cdev->ports[0]->name : "");
  131. mutex_lock(&cdev_mutex);
  132. list_del(&cdev->list_head);
  133. mutex_unlock(&cdev_mutex);
  134. cxgbi_device_destroy(cdev);
  135. }
  136. EXPORT_SYMBOL_GPL(cxgbi_device_unregister);
  137. void cxgbi_device_unregister_all(unsigned int flag)
  138. {
  139. struct cxgbi_device *cdev, *tmp;
  140. mutex_lock(&cdev_mutex);
  141. list_for_each_entry_safe(cdev, tmp, &cdev_list, list_head) {
  142. if ((cdev->flags & flag) == flag) {
  143. log_debug(1 << CXGBI_DBG_DEV,
  144. "cdev 0x%p, p# %u,%s.\n",
  145. cdev, cdev->nports, cdev->nports ?
  146. cdev->ports[0]->name : "");
  147. list_del(&cdev->list_head);
  148. cxgbi_device_destroy(cdev);
  149. }
  150. }
  151. mutex_unlock(&cdev_mutex);
  152. }
  153. EXPORT_SYMBOL_GPL(cxgbi_device_unregister_all);
  154. struct cxgbi_device *cxgbi_device_find_by_lldev(void *lldev)
  155. {
  156. struct cxgbi_device *cdev, *tmp;
  157. mutex_lock(&cdev_mutex);
  158. list_for_each_entry_safe(cdev, tmp, &cdev_list, list_head) {
  159. if (cdev->lldev == lldev) {
  160. mutex_unlock(&cdev_mutex);
  161. return cdev;
  162. }
  163. }
  164. mutex_unlock(&cdev_mutex);
  165. log_debug(1 << CXGBI_DBG_DEV,
  166. "lldev 0x%p, NO match found.\n", lldev);
  167. return NULL;
  168. }
  169. EXPORT_SYMBOL_GPL(cxgbi_device_find_by_lldev);
  170. static struct cxgbi_device *cxgbi_device_find_by_netdev(struct net_device *ndev,
  171. int *port)
  172. {
  173. struct net_device *vdev = NULL;
  174. struct cxgbi_device *cdev, *tmp;
  175. int i;
  176. if (ndev->priv_flags & IFF_802_1Q_VLAN) {
  177. vdev = ndev;
  178. ndev = vlan_dev_real_dev(ndev);
  179. log_debug(1 << CXGBI_DBG_DEV,
  180. "vlan dev %s -> %s.\n", vdev->name, ndev->name);
  181. }
  182. mutex_lock(&cdev_mutex);
  183. list_for_each_entry_safe(cdev, tmp, &cdev_list, list_head) {
  184. for (i = 0; i < cdev->nports; i++) {
  185. if (ndev == cdev->ports[i]) {
  186. cdev->hbas[i]->vdev = vdev;
  187. mutex_unlock(&cdev_mutex);
  188. if (port)
  189. *port = i;
  190. return cdev;
  191. }
  192. }
  193. }
  194. mutex_unlock(&cdev_mutex);
  195. log_debug(1 << CXGBI_DBG_DEV,
  196. "ndev 0x%p, %s, NO match found.\n", ndev, ndev->name);
  197. return NULL;
  198. }
  199. void cxgbi_hbas_remove(struct cxgbi_device *cdev)
  200. {
  201. int i;
  202. struct cxgbi_hba *chba;
  203. log_debug(1 << CXGBI_DBG_DEV,
  204. "cdev 0x%p, p#%u.\n", cdev, cdev->nports);
  205. for (i = 0; i < cdev->nports; i++) {
  206. chba = cdev->hbas[i];
  207. if (chba) {
  208. cdev->hbas[i] = NULL;
  209. iscsi_host_remove(chba->shost);
  210. pci_dev_put(cdev->pdev);
  211. iscsi_host_free(chba->shost);
  212. }
  213. }
  214. }
  215. EXPORT_SYMBOL_GPL(cxgbi_hbas_remove);
  216. int cxgbi_hbas_add(struct cxgbi_device *cdev, unsigned int max_lun,
  217. unsigned int max_id, struct scsi_host_template *sht,
  218. struct scsi_transport_template *stt)
  219. {
  220. struct cxgbi_hba *chba;
  221. struct Scsi_Host *shost;
  222. int i, err;
  223. log_debug(1 << CXGBI_DBG_DEV, "cdev 0x%p, p#%u.\n", cdev, cdev->nports);
  224. for (i = 0; i < cdev->nports; i++) {
  225. shost = iscsi_host_alloc(sht, sizeof(*chba), 1);
  226. if (!shost) {
  227. pr_info("0x%p, p%d, %s, host alloc failed.\n",
  228. cdev, i, cdev->ports[i]->name);
  229. err = -ENOMEM;
  230. goto err_out;
  231. }
  232. shost->transportt = stt;
  233. shost->max_lun = max_lun;
  234. shost->max_id = max_id;
  235. shost->max_channel = 0;
  236. shost->max_cmd_len = 16;
  237. chba = iscsi_host_priv(shost);
  238. chba->cdev = cdev;
  239. chba->ndev = cdev->ports[i];
  240. chba->shost = shost;
  241. log_debug(1 << CXGBI_DBG_DEV,
  242. "cdev 0x%p, p#%d %s: chba 0x%p.\n",
  243. cdev, i, cdev->ports[i]->name, chba);
  244. pci_dev_get(cdev->pdev);
  245. err = iscsi_host_add(shost, &cdev->pdev->dev);
  246. if (err) {
  247. pr_info("cdev 0x%p, p#%d %s, host add failed.\n",
  248. cdev, i, cdev->ports[i]->name);
  249. pci_dev_put(cdev->pdev);
  250. scsi_host_put(shost);
  251. goto err_out;
  252. }
  253. cdev->hbas[i] = chba;
  254. }
  255. return 0;
  256. err_out:
  257. cxgbi_hbas_remove(cdev);
  258. return err;
  259. }
  260. EXPORT_SYMBOL_GPL(cxgbi_hbas_add);
  261. /*
  262. * iSCSI offload
  263. *
  264. * - source port management
  265. * To find a free source port in the port allocation map we use a very simple
  266. * rotor scheme to look for the next free port.
  267. *
  268. * If a source port has been specified make sure that it doesn't collide with
  269. * our normal source port allocation map. If it's outside the range of our
  270. * allocation/deallocation scheme just let them use it.
  271. *
  272. * If the source port is outside our allocation range, the caller is
  273. * responsible for keeping track of their port usage.
  274. */
  275. static int sock_get_port(struct cxgbi_sock *csk)
  276. {
  277. struct cxgbi_device *cdev = csk->cdev;
  278. struct cxgbi_ports_map *pmap = &cdev->pmap;
  279. unsigned int start;
  280. int idx;
  281. if (!pmap->max_connect) {
  282. pr_err("cdev 0x%p, p#%u %s, NO port map.\n",
  283. cdev, csk->port_id, cdev->ports[csk->port_id]->name);
  284. return -EADDRNOTAVAIL;
  285. }
  286. if (csk->saddr.sin_port) {
  287. pr_err("source port NON-ZERO %u.\n",
  288. ntohs(csk->saddr.sin_port));
  289. return -EADDRINUSE;
  290. }
  291. spin_lock_bh(&pmap->lock);
  292. if (pmap->used >= pmap->max_connect) {
  293. spin_unlock_bh(&pmap->lock);
  294. pr_info("cdev 0x%p, p#%u %s, ALL ports used.\n",
  295. cdev, csk->port_id, cdev->ports[csk->port_id]->name);
  296. return -EADDRNOTAVAIL;
  297. }
  298. start = idx = pmap->next;
  299. do {
  300. if (++idx >= pmap->max_connect)
  301. idx = 0;
  302. if (!pmap->port_csk[idx]) {
  303. pmap->used++;
  304. csk->saddr.sin_port =
  305. htons(pmap->sport_base + idx);
  306. pmap->next = idx;
  307. pmap->port_csk[idx] = csk;
  308. spin_unlock_bh(&pmap->lock);
  309. cxgbi_sock_get(csk);
  310. log_debug(1 << CXGBI_DBG_SOCK,
  311. "cdev 0x%p, p#%u %s, p %u, %u.\n",
  312. cdev, csk->port_id,
  313. cdev->ports[csk->port_id]->name,
  314. pmap->sport_base + idx, pmap->next);
  315. return 0;
  316. }
  317. } while (idx != start);
  318. spin_unlock_bh(&pmap->lock);
  319. /* should not happen */
  320. pr_warn("cdev 0x%p, p#%u %s, next %u?\n",
  321. cdev, csk->port_id, cdev->ports[csk->port_id]->name,
  322. pmap->next);
  323. return -EADDRNOTAVAIL;
  324. }
  325. static void sock_put_port(struct cxgbi_sock *csk)
  326. {
  327. struct cxgbi_device *cdev = csk->cdev;
  328. struct cxgbi_ports_map *pmap = &cdev->pmap;
  329. if (csk->saddr.sin_port) {
  330. int idx = ntohs(csk->saddr.sin_port) - pmap->sport_base;
  331. csk->saddr.sin_port = 0;
  332. if (idx < 0 || idx >= pmap->max_connect) {
  333. pr_err("cdev 0x%p, p#%u %s, port %u OOR.\n",
  334. cdev, csk->port_id,
  335. cdev->ports[csk->port_id]->name,
  336. ntohs(csk->saddr.sin_port));
  337. return;
  338. }
  339. spin_lock_bh(&pmap->lock);
  340. pmap->port_csk[idx] = NULL;
  341. pmap->used--;
  342. spin_unlock_bh(&pmap->lock);
  343. log_debug(1 << CXGBI_DBG_SOCK,
  344. "cdev 0x%p, p#%u %s, release %u.\n",
  345. cdev, csk->port_id, cdev->ports[csk->port_id]->name,
  346. pmap->sport_base + idx);
  347. cxgbi_sock_put(csk);
  348. }
  349. }
  350. /*
  351. * iscsi tcp connection
  352. */
  353. void cxgbi_sock_free_cpl_skbs(struct cxgbi_sock *csk)
  354. {
  355. if (csk->cpl_close) {
  356. kfree_skb(csk->cpl_close);
  357. csk->cpl_close = NULL;
  358. }
  359. if (csk->cpl_abort_req) {
  360. kfree_skb(csk->cpl_abort_req);
  361. csk->cpl_abort_req = NULL;
  362. }
  363. if (csk->cpl_abort_rpl) {
  364. kfree_skb(csk->cpl_abort_rpl);
  365. csk->cpl_abort_rpl = NULL;
  366. }
  367. }
  368. EXPORT_SYMBOL_GPL(cxgbi_sock_free_cpl_skbs);
  369. static struct cxgbi_sock *cxgbi_sock_create(struct cxgbi_device *cdev)
  370. {
  371. struct cxgbi_sock *csk = kzalloc(sizeof(*csk), GFP_NOIO);
  372. if (!csk) {
  373. pr_info("alloc csk %zu failed.\n", sizeof(*csk));
  374. return NULL;
  375. }
  376. if (cdev->csk_alloc_cpls(csk) < 0) {
  377. pr_info("csk 0x%p, alloc cpls failed.\n", csk);
  378. kfree(csk);
  379. return NULL;
  380. }
  381. spin_lock_init(&csk->lock);
  382. kref_init(&csk->refcnt);
  383. skb_queue_head_init(&csk->receive_queue);
  384. skb_queue_head_init(&csk->write_queue);
  385. setup_timer(&csk->retry_timer, NULL, (unsigned long)csk);
  386. rwlock_init(&csk->callback_lock);
  387. csk->cdev = cdev;
  388. csk->flags = 0;
  389. cxgbi_sock_set_state(csk, CTP_CLOSED);
  390. log_debug(1 << CXGBI_DBG_SOCK, "cdev 0x%p, new csk 0x%p.\n", cdev, csk);
  391. return csk;
  392. }
  393. static struct rtable *find_route_ipv4(__be32 saddr, __be32 daddr,
  394. __be16 sport, __be16 dport, u8 tos)
  395. {
  396. struct rtable *rt;
  397. struct flowi4 fl4;
  398. rt = ip_route_output_ports(&init_net, &fl4, NULL, daddr, saddr,
  399. dport, sport, IPPROTO_TCP, tos, 0);
  400. if (IS_ERR(rt))
  401. return NULL;
  402. return rt;
  403. }
  404. static struct cxgbi_sock *cxgbi_check_route(struct sockaddr *dst_addr)
  405. {
  406. struct sockaddr_in *daddr = (struct sockaddr_in *)dst_addr;
  407. struct dst_entry *dst;
  408. struct net_device *ndev;
  409. struct cxgbi_device *cdev;
  410. struct rtable *rt = NULL;
  411. struct cxgbi_sock *csk = NULL;
  412. unsigned int mtu = 0;
  413. int port = 0xFFFF;
  414. int err = 0;
  415. if (daddr->sin_family != AF_INET) {
  416. pr_info("address family 0x%x NOT supported.\n",
  417. daddr->sin_family);
  418. err = -EAFNOSUPPORT;
  419. goto err_out;
  420. }
  421. rt = find_route_ipv4(0, daddr->sin_addr.s_addr, 0, daddr->sin_port, 0);
  422. if (!rt) {
  423. pr_info("no route to ipv4 0x%x, port %u.\n",
  424. daddr->sin_addr.s_addr, daddr->sin_port);
  425. err = -ENETUNREACH;
  426. goto err_out;
  427. }
  428. dst = &rt->dst;
  429. ndev = dst->neighbour->dev;
  430. if (rt->rt_flags & (RTCF_MULTICAST | RTCF_BROADCAST)) {
  431. pr_info("multi-cast route %pI4, port %u, dev %s.\n",
  432. &daddr->sin_addr.s_addr, ntohs(daddr->sin_port),
  433. ndev->name);
  434. err = -ENETUNREACH;
  435. goto rel_rt;
  436. }
  437. if (ndev->flags & IFF_LOOPBACK) {
  438. ndev = ip_dev_find(&init_net, daddr->sin_addr.s_addr);
  439. mtu = ndev->mtu;
  440. pr_info("rt dev %s, loopback -> %s, mtu %u.\n",
  441. dst->neighbour->dev->name, ndev->name, mtu);
  442. }
  443. cdev = cxgbi_device_find_by_netdev(ndev, &port);
  444. if (!cdev) {
  445. pr_info("dst %pI4, %s, NOT cxgbi device.\n",
  446. &daddr->sin_addr.s_addr, ndev->name);
  447. err = -ENETUNREACH;
  448. goto rel_rt;
  449. }
  450. log_debug(1 << CXGBI_DBG_SOCK,
  451. "route to %pI4 :%u, ndev p#%d,%s, cdev 0x%p.\n",
  452. &daddr->sin_addr.s_addr, ntohs(daddr->sin_port),
  453. port, ndev->name, cdev);
  454. csk = cxgbi_sock_create(cdev);
  455. if (!csk) {
  456. err = -ENOMEM;
  457. goto rel_rt;
  458. }
  459. csk->cdev = cdev;
  460. csk->port_id = port;
  461. csk->mtu = mtu;
  462. csk->dst = dst;
  463. csk->daddr.sin_addr.s_addr = daddr->sin_addr.s_addr;
  464. csk->daddr.sin_port = daddr->sin_port;
  465. csk->daddr.sin_family = daddr->sin_family;
  466. csk->saddr.sin_addr.s_addr = rt->rt_src;
  467. return csk;
  468. rel_rt:
  469. ip_rt_put(rt);
  470. if (csk)
  471. cxgbi_sock_closed(csk);
  472. err_out:
  473. return ERR_PTR(err);
  474. }
  475. void cxgbi_sock_established(struct cxgbi_sock *csk, unsigned int snd_isn,
  476. unsigned int opt)
  477. {
  478. csk->write_seq = csk->snd_nxt = csk->snd_una = snd_isn;
  479. dst_confirm(csk->dst);
  480. smp_mb();
  481. cxgbi_sock_set_state(csk, CTP_ESTABLISHED);
  482. }
  483. EXPORT_SYMBOL_GPL(cxgbi_sock_established);
  484. static void cxgbi_inform_iscsi_conn_closing(struct cxgbi_sock *csk)
  485. {
  486. log_debug(1 << CXGBI_DBG_SOCK,
  487. "csk 0x%p, state %u, flags 0x%lx, conn 0x%p.\n",
  488. csk, csk->state, csk->flags, csk->user_data);
  489. if (csk->state != CTP_ESTABLISHED) {
  490. read_lock_bh(&csk->callback_lock);
  491. if (csk->user_data)
  492. iscsi_conn_failure(csk->user_data,
  493. ISCSI_ERR_CONN_FAILED);
  494. read_unlock_bh(&csk->callback_lock);
  495. }
  496. }
  497. void cxgbi_sock_closed(struct cxgbi_sock *csk)
  498. {
  499. log_debug(1 << CXGBI_DBG_SOCK, "csk 0x%p,%u,0x%lx,%u.\n",
  500. csk, (csk)->state, (csk)->flags, (csk)->tid);
  501. cxgbi_sock_set_flag(csk, CTPF_ACTIVE_CLOSE_NEEDED);
  502. if (csk->state == CTP_ACTIVE_OPEN || csk->state == CTP_CLOSED)
  503. return;
  504. if (csk->saddr.sin_port)
  505. sock_put_port(csk);
  506. if (csk->dst)
  507. dst_release(csk->dst);
  508. csk->cdev->csk_release_offload_resources(csk);
  509. cxgbi_sock_set_state(csk, CTP_CLOSED);
  510. cxgbi_inform_iscsi_conn_closing(csk);
  511. cxgbi_sock_put(csk);
  512. }
  513. EXPORT_SYMBOL_GPL(cxgbi_sock_closed);
  514. static void need_active_close(struct cxgbi_sock *csk)
  515. {
  516. int data_lost;
  517. int close_req = 0;
  518. log_debug(1 << CXGBI_DBG_SOCK, "csk 0x%p,%u,0x%lx,%u.\n",
  519. csk, (csk)->state, (csk)->flags, (csk)->tid);
  520. spin_lock_bh(&csk->lock);
  521. dst_confirm(csk->dst);
  522. data_lost = skb_queue_len(&csk->receive_queue);
  523. __skb_queue_purge(&csk->receive_queue);
  524. if (csk->state == CTP_ACTIVE_OPEN)
  525. cxgbi_sock_set_flag(csk, CTPF_ACTIVE_CLOSE_NEEDED);
  526. else if (csk->state == CTP_ESTABLISHED) {
  527. close_req = 1;
  528. cxgbi_sock_set_state(csk, CTP_ACTIVE_CLOSE);
  529. } else if (csk->state == CTP_PASSIVE_CLOSE) {
  530. close_req = 1;
  531. cxgbi_sock_set_state(csk, CTP_CLOSE_WAIT_2);
  532. }
  533. if (close_req) {
  534. if (data_lost)
  535. csk->cdev->csk_send_abort_req(csk);
  536. else
  537. csk->cdev->csk_send_close_req(csk);
  538. }
  539. spin_unlock_bh(&csk->lock);
  540. }
  541. void cxgbi_sock_fail_act_open(struct cxgbi_sock *csk, int errno)
  542. {
  543. pr_info("csk 0x%p,%u,%lx, %pI4:%u-%pI4:%u, err %d.\n",
  544. csk, csk->state, csk->flags,
  545. &csk->saddr.sin_addr.s_addr, csk->saddr.sin_port,
  546. &csk->daddr.sin_addr.s_addr, csk->daddr.sin_port,
  547. errno);
  548. cxgbi_sock_set_state(csk, CTP_CONNECTING);
  549. csk->err = errno;
  550. cxgbi_sock_closed(csk);
  551. }
  552. EXPORT_SYMBOL_GPL(cxgbi_sock_fail_act_open);
  553. void cxgbi_sock_act_open_req_arp_failure(void *handle, struct sk_buff *skb)
  554. {
  555. struct cxgbi_sock *csk = (struct cxgbi_sock *)skb->sk;
  556. log_debug(1 << CXGBI_DBG_SOCK, "csk 0x%p,%u,0x%lx,%u.\n",
  557. csk, (csk)->state, (csk)->flags, (csk)->tid);
  558. cxgbi_sock_get(csk);
  559. spin_lock_bh(&csk->lock);
  560. if (csk->state == CTP_ACTIVE_OPEN)
  561. cxgbi_sock_fail_act_open(csk, -EHOSTUNREACH);
  562. spin_unlock_bh(&csk->lock);
  563. cxgbi_sock_put(csk);
  564. __kfree_skb(skb);
  565. }
  566. EXPORT_SYMBOL_GPL(cxgbi_sock_act_open_req_arp_failure);
  567. void cxgbi_sock_rcv_abort_rpl(struct cxgbi_sock *csk)
  568. {
  569. cxgbi_sock_get(csk);
  570. spin_lock_bh(&csk->lock);
  571. if (cxgbi_sock_flag(csk, CTPF_ABORT_RPL_PENDING)) {
  572. if (!cxgbi_sock_flag(csk, CTPF_ABORT_RPL_RCVD))
  573. cxgbi_sock_set_flag(csk, CTPF_ABORT_RPL_RCVD);
  574. else {
  575. cxgbi_sock_clear_flag(csk, CTPF_ABORT_RPL_RCVD);
  576. cxgbi_sock_clear_flag(csk, CTPF_ABORT_RPL_PENDING);
  577. if (cxgbi_sock_flag(csk, CTPF_ABORT_REQ_RCVD))
  578. pr_err("csk 0x%p,%u,0x%lx,%u,ABT_RPL_RSS.\n",
  579. csk, csk->state, csk->flags, csk->tid);
  580. cxgbi_sock_closed(csk);
  581. }
  582. }
  583. spin_unlock_bh(&csk->lock);
  584. cxgbi_sock_put(csk);
  585. }
  586. EXPORT_SYMBOL_GPL(cxgbi_sock_rcv_abort_rpl);
  587. void cxgbi_sock_rcv_peer_close(struct cxgbi_sock *csk)
  588. {
  589. log_debug(1 << CXGBI_DBG_SOCK, "csk 0x%p,%u,0x%lx,%u.\n",
  590. csk, (csk)->state, (csk)->flags, (csk)->tid);
  591. cxgbi_sock_get(csk);
  592. spin_lock_bh(&csk->lock);
  593. if (cxgbi_sock_flag(csk, CTPF_ABORT_RPL_PENDING))
  594. goto done;
  595. switch (csk->state) {
  596. case CTP_ESTABLISHED:
  597. cxgbi_sock_set_state(csk, CTP_PASSIVE_CLOSE);
  598. break;
  599. case CTP_ACTIVE_CLOSE:
  600. cxgbi_sock_set_state(csk, CTP_CLOSE_WAIT_2);
  601. break;
  602. case CTP_CLOSE_WAIT_1:
  603. cxgbi_sock_closed(csk);
  604. break;
  605. case CTP_ABORTING:
  606. break;
  607. default:
  608. pr_err("csk 0x%p,%u,0x%lx,%u, bad state.\n",
  609. csk, csk->state, csk->flags, csk->tid);
  610. }
  611. cxgbi_inform_iscsi_conn_closing(csk);
  612. done:
  613. spin_unlock_bh(&csk->lock);
  614. cxgbi_sock_put(csk);
  615. }
  616. EXPORT_SYMBOL_GPL(cxgbi_sock_rcv_peer_close);
  617. void cxgbi_sock_rcv_close_conn_rpl(struct cxgbi_sock *csk, u32 snd_nxt)
  618. {
  619. log_debug(1 << CXGBI_DBG_SOCK, "csk 0x%p,%u,0x%lx,%u.\n",
  620. csk, (csk)->state, (csk)->flags, (csk)->tid);
  621. cxgbi_sock_get(csk);
  622. spin_lock_bh(&csk->lock);
  623. csk->snd_una = snd_nxt - 1;
  624. if (cxgbi_sock_flag(csk, CTPF_ABORT_RPL_PENDING))
  625. goto done;
  626. switch (csk->state) {
  627. case CTP_ACTIVE_CLOSE:
  628. cxgbi_sock_set_state(csk, CTP_CLOSE_WAIT_1);
  629. break;
  630. case CTP_CLOSE_WAIT_1:
  631. case CTP_CLOSE_WAIT_2:
  632. cxgbi_sock_closed(csk);
  633. break;
  634. case CTP_ABORTING:
  635. break;
  636. default:
  637. pr_err("csk 0x%p,%u,0x%lx,%u, bad state.\n",
  638. csk, csk->state, csk->flags, csk->tid);
  639. }
  640. done:
  641. spin_unlock_bh(&csk->lock);
  642. cxgbi_sock_put(csk);
  643. }
  644. EXPORT_SYMBOL_GPL(cxgbi_sock_rcv_close_conn_rpl);
  645. void cxgbi_sock_rcv_wr_ack(struct cxgbi_sock *csk, unsigned int credits,
  646. unsigned int snd_una, int seq_chk)
  647. {
  648. log_debug(1 << CXGBI_DBG_TOE | 1 << CXGBI_DBG_SOCK,
  649. "csk 0x%p,%u,0x%lx,%u, cr %u,%u+%u, snd_una %u,%d.\n",
  650. csk, csk->state, csk->flags, csk->tid, credits,
  651. csk->wr_cred, csk->wr_una_cred, snd_una, seq_chk);
  652. spin_lock_bh(&csk->lock);
  653. csk->wr_cred += credits;
  654. if (csk->wr_una_cred > csk->wr_max_cred - csk->wr_cred)
  655. csk->wr_una_cred = csk->wr_max_cred - csk->wr_cred;
  656. while (credits) {
  657. struct sk_buff *p = cxgbi_sock_peek_wr(csk);
  658. if (unlikely(!p)) {
  659. pr_err("csk 0x%p,%u,0x%lx,%u, cr %u,%u+%u, empty.\n",
  660. csk, csk->state, csk->flags, csk->tid, credits,
  661. csk->wr_cred, csk->wr_una_cred);
  662. break;
  663. }
  664. if (unlikely(credits < p->csum)) {
  665. pr_warn("csk 0x%p,%u,0x%lx,%u, cr %u,%u+%u, < %u.\n",
  666. csk, csk->state, csk->flags, csk->tid,
  667. credits, csk->wr_cred, csk->wr_una_cred,
  668. p->csum);
  669. p->csum -= credits;
  670. break;
  671. } else {
  672. cxgbi_sock_dequeue_wr(csk);
  673. credits -= p->csum;
  674. kfree_skb(p);
  675. }
  676. }
  677. cxgbi_sock_check_wr_invariants(csk);
  678. if (seq_chk) {
  679. if (unlikely(before(snd_una, csk->snd_una))) {
  680. pr_warn("csk 0x%p,%u,0x%lx,%u, snd_una %u/%u.",
  681. csk, csk->state, csk->flags, csk->tid, snd_una,
  682. csk->snd_una);
  683. goto done;
  684. }
  685. if (csk->snd_una != snd_una) {
  686. csk->snd_una = snd_una;
  687. dst_confirm(csk->dst);
  688. }
  689. }
  690. if (skb_queue_len(&csk->write_queue)) {
  691. if (csk->cdev->csk_push_tx_frames(csk, 0))
  692. cxgbi_conn_tx_open(csk);
  693. } else
  694. cxgbi_conn_tx_open(csk);
  695. done:
  696. spin_unlock_bh(&csk->lock);
  697. }
  698. EXPORT_SYMBOL_GPL(cxgbi_sock_rcv_wr_ack);
  699. static unsigned int cxgbi_sock_find_best_mtu(struct cxgbi_sock *csk,
  700. unsigned short mtu)
  701. {
  702. int i = 0;
  703. while (i < csk->cdev->nmtus - 1 && csk->cdev->mtus[i + 1] <= mtu)
  704. ++i;
  705. return i;
  706. }
  707. unsigned int cxgbi_sock_select_mss(struct cxgbi_sock *csk, unsigned int pmtu)
  708. {
  709. unsigned int idx;
  710. struct dst_entry *dst = csk->dst;
  711. csk->advmss = dst_metric_advmss(dst);
  712. if (csk->advmss > pmtu - 40)
  713. csk->advmss = pmtu - 40;
  714. if (csk->advmss < csk->cdev->mtus[0] - 40)
  715. csk->advmss = csk->cdev->mtus[0] - 40;
  716. idx = cxgbi_sock_find_best_mtu(csk, csk->advmss + 40);
  717. return idx;
  718. }
  719. EXPORT_SYMBOL_GPL(cxgbi_sock_select_mss);
  720. void cxgbi_sock_skb_entail(struct cxgbi_sock *csk, struct sk_buff *skb)
  721. {
  722. cxgbi_skcb_tcp_seq(skb) = csk->write_seq;
  723. __skb_queue_tail(&csk->write_queue, skb);
  724. }
  725. EXPORT_SYMBOL_GPL(cxgbi_sock_skb_entail);
  726. void cxgbi_sock_purge_wr_queue(struct cxgbi_sock *csk)
  727. {
  728. struct sk_buff *skb;
  729. while ((skb = cxgbi_sock_dequeue_wr(csk)) != NULL)
  730. kfree_skb(skb);
  731. }
  732. EXPORT_SYMBOL_GPL(cxgbi_sock_purge_wr_queue);
  733. void cxgbi_sock_check_wr_invariants(const struct cxgbi_sock *csk)
  734. {
  735. int pending = cxgbi_sock_count_pending_wrs(csk);
  736. if (unlikely(csk->wr_cred + pending != csk->wr_max_cred))
  737. pr_err("csk 0x%p, tid %u, credit %u + %u != %u.\n",
  738. csk, csk->tid, csk->wr_cred, pending, csk->wr_max_cred);
  739. }
  740. EXPORT_SYMBOL_GPL(cxgbi_sock_check_wr_invariants);
  741. static int cxgbi_sock_send_pdus(struct cxgbi_sock *csk, struct sk_buff *skb)
  742. {
  743. struct cxgbi_device *cdev = csk->cdev;
  744. struct sk_buff *next;
  745. int err, copied = 0;
  746. spin_lock_bh(&csk->lock);
  747. if (csk->state != CTP_ESTABLISHED) {
  748. log_debug(1 << CXGBI_DBG_PDU_TX,
  749. "csk 0x%p,%u,0x%lx,%u, EAGAIN.\n",
  750. csk, csk->state, csk->flags, csk->tid);
  751. err = -EAGAIN;
  752. goto out_err;
  753. }
  754. if (csk->err) {
  755. log_debug(1 << CXGBI_DBG_PDU_TX,
  756. "csk 0x%p,%u,0x%lx,%u, EPIPE %d.\n",
  757. csk, csk->state, csk->flags, csk->tid, csk->err);
  758. err = -EPIPE;
  759. goto out_err;
  760. }
  761. if (csk->write_seq - csk->snd_una >= cdev->snd_win) {
  762. log_debug(1 << CXGBI_DBG_PDU_TX,
  763. "csk 0x%p,%u,0x%lx,%u, FULL %u-%u >= %u.\n",
  764. csk, csk->state, csk->flags, csk->tid, csk->write_seq,
  765. csk->snd_una, cdev->snd_win);
  766. err = -ENOBUFS;
  767. goto out_err;
  768. }
  769. while (skb) {
  770. int frags = skb_shinfo(skb)->nr_frags +
  771. (skb->len != skb->data_len);
  772. if (unlikely(skb_headroom(skb) < cdev->skb_tx_rsvd)) {
  773. pr_err("csk 0x%p, skb head %u < %u.\n",
  774. csk, skb_headroom(skb), cdev->skb_tx_rsvd);
  775. err = -EINVAL;
  776. goto out_err;
  777. }
  778. if (frags >= SKB_WR_LIST_SIZE) {
  779. pr_err("csk 0x%p, frags %d, %u,%u >%u.\n",
  780. csk, skb_shinfo(skb)->nr_frags, skb->len,
  781. skb->data_len, (uint)(SKB_WR_LIST_SIZE));
  782. err = -EINVAL;
  783. goto out_err;
  784. }
  785. next = skb->next;
  786. skb->next = NULL;
  787. cxgbi_skcb_set_flag(skb, SKCBF_TX_NEED_HDR);
  788. cxgbi_sock_skb_entail(csk, skb);
  789. copied += skb->len;
  790. csk->write_seq += skb->len +
  791. cxgbi_ulp_extra_len(cxgbi_skcb_ulp_mode(skb));
  792. skb = next;
  793. }
  794. done:
  795. if (likely(skb_queue_len(&csk->write_queue)))
  796. cdev->csk_push_tx_frames(csk, 1);
  797. spin_unlock_bh(&csk->lock);
  798. return copied;
  799. out_err:
  800. if (copied == 0 && err == -EPIPE)
  801. copied = csk->err ? csk->err : -EPIPE;
  802. else
  803. copied = err;
  804. goto done;
  805. }
  806. /*
  807. * Direct Data Placement -
  808. * Directly place the iSCSI Data-In or Data-Out PDU's payload into pre-posted
  809. * final destination host-memory buffers based on the Initiator Task Tag (ITT)
  810. * in Data-In or Target Task Tag (TTT) in Data-Out PDUs.
  811. * The host memory address is programmed into h/w in the format of pagepod
  812. * entries.
  813. * The location of the pagepod entry is encoded into ddp tag which is used as
  814. * the base for ITT/TTT.
  815. */
  816. static unsigned char ddp_page_order[DDP_PGIDX_MAX] = {0, 1, 2, 4};
  817. static unsigned char ddp_page_shift[DDP_PGIDX_MAX] = {12, 13, 14, 16};
  818. static unsigned char page_idx = DDP_PGIDX_MAX;
  819. static unsigned char sw_tag_idx_bits;
  820. static unsigned char sw_tag_age_bits;
  821. /*
  822. * Direct-Data Placement page size adjustment
  823. */
  824. static int ddp_adjust_page_table(void)
  825. {
  826. int i;
  827. unsigned int base_order, order;
  828. if (PAGE_SIZE < (1UL << ddp_page_shift[0])) {
  829. pr_info("PAGE_SIZE 0x%lx too small, min 0x%lx\n",
  830. PAGE_SIZE, 1UL << ddp_page_shift[0]);
  831. return -EINVAL;
  832. }
  833. base_order = get_order(1UL << ddp_page_shift[0]);
  834. order = get_order(1UL << PAGE_SHIFT);
  835. for (i = 0; i < DDP_PGIDX_MAX; i++) {
  836. /* first is the kernel page size, then just doubling */
  837. ddp_page_order[i] = order - base_order + i;
  838. ddp_page_shift[i] = PAGE_SHIFT + i;
  839. }
  840. return 0;
  841. }
  842. static int ddp_find_page_index(unsigned long pgsz)
  843. {
  844. int i;
  845. for (i = 0; i < DDP_PGIDX_MAX; i++) {
  846. if (pgsz == (1UL << ddp_page_shift[i]))
  847. return i;
  848. }
  849. pr_info("ddp page size %lu not supported.\n", pgsz);
  850. return DDP_PGIDX_MAX;
  851. }
  852. static void ddp_setup_host_page_size(void)
  853. {
  854. if (page_idx == DDP_PGIDX_MAX) {
  855. page_idx = ddp_find_page_index(PAGE_SIZE);
  856. if (page_idx == DDP_PGIDX_MAX) {
  857. pr_info("system PAGE %lu, update hw.\n", PAGE_SIZE);
  858. if (ddp_adjust_page_table() < 0) {
  859. pr_info("PAGE %lu, disable ddp.\n", PAGE_SIZE);
  860. return;
  861. }
  862. page_idx = ddp_find_page_index(PAGE_SIZE);
  863. }
  864. pr_info("system PAGE %lu, ddp idx %u.\n", PAGE_SIZE, page_idx);
  865. }
  866. }
  867. void cxgbi_ddp_page_size_factor(int *pgsz_factor)
  868. {
  869. int i;
  870. for (i = 0; i < DDP_PGIDX_MAX; i++)
  871. pgsz_factor[i] = ddp_page_order[i];
  872. }
  873. EXPORT_SYMBOL_GPL(cxgbi_ddp_page_size_factor);
  874. /*
  875. * DDP setup & teardown
  876. */
  877. void cxgbi_ddp_ppod_set(struct cxgbi_pagepod *ppod,
  878. struct cxgbi_pagepod_hdr *hdr,
  879. struct cxgbi_gather_list *gl, unsigned int gidx)
  880. {
  881. int i;
  882. memcpy(ppod, hdr, sizeof(*hdr));
  883. for (i = 0; i < (PPOD_PAGES_MAX + 1); i++, gidx++) {
  884. ppod->addr[i] = gidx < gl->nelem ?
  885. cpu_to_be64(gl->phys_addr[gidx]) : 0ULL;
  886. }
  887. }
  888. EXPORT_SYMBOL_GPL(cxgbi_ddp_ppod_set);
  889. void cxgbi_ddp_ppod_clear(struct cxgbi_pagepod *ppod)
  890. {
  891. memset(ppod, 0, sizeof(*ppod));
  892. }
  893. EXPORT_SYMBOL_GPL(cxgbi_ddp_ppod_clear);
  894. static inline int ddp_find_unused_entries(struct cxgbi_ddp_info *ddp,
  895. unsigned int start, unsigned int max,
  896. unsigned int count,
  897. struct cxgbi_gather_list *gl)
  898. {
  899. unsigned int i, j, k;
  900. /* not enough entries */
  901. if ((max - start) < count) {
  902. log_debug(1 << CXGBI_DBG_DDP,
  903. "NOT enough entries %u+%u < %u.\n", start, count, max);
  904. return -EBUSY;
  905. }
  906. max -= count;
  907. spin_lock(&ddp->map_lock);
  908. for (i = start; i < max;) {
  909. for (j = 0, k = i; j < count; j++, k++) {
  910. if (ddp->gl_map[k])
  911. break;
  912. }
  913. if (j == count) {
  914. for (j = 0, k = i; j < count; j++, k++)
  915. ddp->gl_map[k] = gl;
  916. spin_unlock(&ddp->map_lock);
  917. return i;
  918. }
  919. i += j + 1;
  920. }
  921. spin_unlock(&ddp->map_lock);
  922. log_debug(1 << CXGBI_DBG_DDP,
  923. "NO suitable entries %u available.\n", count);
  924. return -EBUSY;
  925. }
  926. static inline void ddp_unmark_entries(struct cxgbi_ddp_info *ddp,
  927. int start, int count)
  928. {
  929. spin_lock(&ddp->map_lock);
  930. memset(&ddp->gl_map[start], 0,
  931. count * sizeof(struct cxgbi_gather_list *));
  932. spin_unlock(&ddp->map_lock);
  933. }
  934. static inline void ddp_gl_unmap(struct pci_dev *pdev,
  935. struct cxgbi_gather_list *gl)
  936. {
  937. int i;
  938. for (i = 0; i < gl->nelem; i++)
  939. dma_unmap_page(&pdev->dev, gl->phys_addr[i], PAGE_SIZE,
  940. PCI_DMA_FROMDEVICE);
  941. }
  942. static inline int ddp_gl_map(struct pci_dev *pdev,
  943. struct cxgbi_gather_list *gl)
  944. {
  945. int i;
  946. for (i = 0; i < gl->nelem; i++) {
  947. gl->phys_addr[i] = dma_map_page(&pdev->dev, gl->pages[i], 0,
  948. PAGE_SIZE,
  949. PCI_DMA_FROMDEVICE);
  950. if (unlikely(dma_mapping_error(&pdev->dev, gl->phys_addr[i]))) {
  951. log_debug(1 << CXGBI_DBG_DDP,
  952. "page %d 0x%p, 0x%p dma mapping err.\n",
  953. i, gl->pages[i], pdev);
  954. goto unmap;
  955. }
  956. }
  957. return i;
  958. unmap:
  959. if (i) {
  960. unsigned int nelem = gl->nelem;
  961. gl->nelem = i;
  962. ddp_gl_unmap(pdev, gl);
  963. gl->nelem = nelem;
  964. }
  965. return -EINVAL;
  966. }
  967. static void ddp_release_gl(struct cxgbi_gather_list *gl,
  968. struct pci_dev *pdev)
  969. {
  970. ddp_gl_unmap(pdev, gl);
  971. kfree(gl);
  972. }
  973. static struct cxgbi_gather_list *ddp_make_gl(unsigned int xferlen,
  974. struct scatterlist *sgl,
  975. unsigned int sgcnt,
  976. struct pci_dev *pdev,
  977. gfp_t gfp)
  978. {
  979. struct cxgbi_gather_list *gl;
  980. struct scatterlist *sg = sgl;
  981. struct page *sgpage = sg_page(sg);
  982. unsigned int sglen = sg->length;
  983. unsigned int sgoffset = sg->offset;
  984. unsigned int npages = (xferlen + sgoffset + PAGE_SIZE - 1) >>
  985. PAGE_SHIFT;
  986. int i = 1, j = 0;
  987. if (xferlen < DDP_THRESHOLD) {
  988. log_debug(1 << CXGBI_DBG_DDP,
  989. "xfer %u < threshold %u, no ddp.\n",
  990. xferlen, DDP_THRESHOLD);
  991. return NULL;
  992. }
  993. gl = kzalloc(sizeof(struct cxgbi_gather_list) +
  994. npages * (sizeof(dma_addr_t) +
  995. sizeof(struct page *)), gfp);
  996. if (!gl) {
  997. log_debug(1 << CXGBI_DBG_DDP,
  998. "xfer %u, %u pages, OOM.\n", xferlen, npages);
  999. return NULL;
  1000. }
  1001. log_debug(1 << CXGBI_DBG_DDP,
  1002. "xfer %u, sgl %u, gl max %u.\n", xferlen, sgcnt, npages);
  1003. gl->pages = (struct page **)&gl->phys_addr[npages];
  1004. gl->nelem = npages;
  1005. gl->length = xferlen;
  1006. gl->offset = sgoffset;
  1007. gl->pages[0] = sgpage;
  1008. for (i = 1, sg = sg_next(sgl), j = 0; i < sgcnt;
  1009. i++, sg = sg_next(sg)) {
  1010. struct page *page = sg_page(sg);
  1011. if (sgpage == page && sg->offset == sgoffset + sglen)
  1012. sglen += sg->length;
  1013. else {
  1014. /* make sure the sgl is fit for ddp:
  1015. * each has the same page size, and
  1016. * all of the middle pages are used completely
  1017. */
  1018. if ((j && sgoffset) || ((i != sgcnt - 1) &&
  1019. ((sglen + sgoffset) & ~PAGE_MASK))) {
  1020. log_debug(1 << CXGBI_DBG_DDP,
  1021. "page %d/%u, %u + %u.\n",
  1022. i, sgcnt, sgoffset, sglen);
  1023. goto error_out;
  1024. }
  1025. j++;
  1026. if (j == gl->nelem || sg->offset) {
  1027. log_debug(1 << CXGBI_DBG_DDP,
  1028. "page %d/%u, offset %u.\n",
  1029. j, gl->nelem, sg->offset);
  1030. goto error_out;
  1031. }
  1032. gl->pages[j] = page;
  1033. sglen = sg->length;
  1034. sgoffset = sg->offset;
  1035. sgpage = page;
  1036. }
  1037. }
  1038. gl->nelem = ++j;
  1039. if (ddp_gl_map(pdev, gl) < 0)
  1040. goto error_out;
  1041. return gl;
  1042. error_out:
  1043. kfree(gl);
  1044. return NULL;
  1045. }
  1046. static void ddp_tag_release(struct cxgbi_hba *chba, u32 tag)
  1047. {
  1048. struct cxgbi_device *cdev = chba->cdev;
  1049. struct cxgbi_ddp_info *ddp = cdev->ddp;
  1050. u32 idx;
  1051. idx = (tag >> PPOD_IDX_SHIFT) & ddp->idx_mask;
  1052. if (idx < ddp->nppods) {
  1053. struct cxgbi_gather_list *gl = ddp->gl_map[idx];
  1054. unsigned int npods;
  1055. if (!gl || !gl->nelem) {
  1056. pr_warn("tag 0x%x, idx %u, gl 0x%p, %u.\n",
  1057. tag, idx, gl, gl ? gl->nelem : 0);
  1058. return;
  1059. }
  1060. npods = (gl->nelem + PPOD_PAGES_MAX - 1) >> PPOD_PAGES_SHIFT;
  1061. log_debug(1 << CXGBI_DBG_DDP,
  1062. "tag 0x%x, release idx %u, npods %u.\n",
  1063. tag, idx, npods);
  1064. cdev->csk_ddp_clear(chba, tag, idx, npods);
  1065. ddp_unmark_entries(ddp, idx, npods);
  1066. ddp_release_gl(gl, ddp->pdev);
  1067. } else
  1068. pr_warn("tag 0x%x, idx %u > max %u.\n", tag, idx, ddp->nppods);
  1069. }
  1070. static int ddp_tag_reserve(struct cxgbi_sock *csk, unsigned int tid,
  1071. u32 sw_tag, u32 *tagp, struct cxgbi_gather_list *gl,
  1072. gfp_t gfp)
  1073. {
  1074. struct cxgbi_device *cdev = csk->cdev;
  1075. struct cxgbi_ddp_info *ddp = cdev->ddp;
  1076. struct cxgbi_tag_format *tformat = &cdev->tag_format;
  1077. struct cxgbi_pagepod_hdr hdr;
  1078. unsigned int npods;
  1079. int idx = -1;
  1080. int err = -ENOMEM;
  1081. u32 tag;
  1082. npods = (gl->nelem + PPOD_PAGES_MAX - 1) >> PPOD_PAGES_SHIFT;
  1083. if (ddp->idx_last == ddp->nppods)
  1084. idx = ddp_find_unused_entries(ddp, 0, ddp->nppods,
  1085. npods, gl);
  1086. else {
  1087. idx = ddp_find_unused_entries(ddp, ddp->idx_last + 1,
  1088. ddp->nppods, npods,
  1089. gl);
  1090. if (idx < 0 && ddp->idx_last >= npods) {
  1091. idx = ddp_find_unused_entries(ddp, 0,
  1092. min(ddp->idx_last + npods, ddp->nppods),
  1093. npods, gl);
  1094. }
  1095. }
  1096. if (idx < 0) {
  1097. log_debug(1 << CXGBI_DBG_DDP,
  1098. "xferlen %u, gl %u, npods %u NO DDP.\n",
  1099. gl->length, gl->nelem, npods);
  1100. return idx;
  1101. }
  1102. tag = cxgbi_ddp_tag_base(tformat, sw_tag);
  1103. tag |= idx << PPOD_IDX_SHIFT;
  1104. hdr.rsvd = 0;
  1105. hdr.vld_tid = htonl(PPOD_VALID_FLAG | PPOD_TID(tid));
  1106. hdr.pgsz_tag_clr = htonl(tag & ddp->rsvd_tag_mask);
  1107. hdr.max_offset = htonl(gl->length);
  1108. hdr.page_offset = htonl(gl->offset);
  1109. err = cdev->csk_ddp_set(csk, &hdr, idx, npods, gl);
  1110. if (err < 0)
  1111. goto unmark_entries;
  1112. ddp->idx_last = idx;
  1113. log_debug(1 << CXGBI_DBG_DDP,
  1114. "xfer %u, gl %u,%u, tid 0x%x, tag 0x%x->0x%x(%u,%u).\n",
  1115. gl->length, gl->nelem, gl->offset, tid, sw_tag, tag, idx,
  1116. npods);
  1117. *tagp = tag;
  1118. return 0;
  1119. unmark_entries:
  1120. ddp_unmark_entries(ddp, idx, npods);
  1121. return err;
  1122. }
  1123. int cxgbi_ddp_reserve(struct cxgbi_sock *csk, unsigned int *tagp,
  1124. unsigned int sw_tag, unsigned int xferlen,
  1125. struct scatterlist *sgl, unsigned int sgcnt, gfp_t gfp)
  1126. {
  1127. struct cxgbi_device *cdev = csk->cdev;
  1128. struct cxgbi_tag_format *tformat = &cdev->tag_format;
  1129. struct cxgbi_gather_list *gl;
  1130. int err;
  1131. if (page_idx >= DDP_PGIDX_MAX || !cdev->ddp ||
  1132. xferlen < DDP_THRESHOLD) {
  1133. log_debug(1 << CXGBI_DBG_DDP,
  1134. "pgidx %u, xfer %u, NO ddp.\n", page_idx, xferlen);
  1135. return -EINVAL;
  1136. }
  1137. if (!cxgbi_sw_tag_usable(tformat, sw_tag)) {
  1138. log_debug(1 << CXGBI_DBG_DDP,
  1139. "sw_tag 0x%x NOT usable.\n", sw_tag);
  1140. return -EINVAL;
  1141. }
  1142. gl = ddp_make_gl(xferlen, sgl, sgcnt, cdev->pdev, gfp);
  1143. if (!gl)
  1144. return -ENOMEM;
  1145. err = ddp_tag_reserve(csk, csk->tid, sw_tag, tagp, gl, gfp);
  1146. if (err < 0)
  1147. ddp_release_gl(gl, cdev->pdev);
  1148. return err;
  1149. }
  1150. static void ddp_destroy(struct kref *kref)
  1151. {
  1152. struct cxgbi_ddp_info *ddp = container_of(kref,
  1153. struct cxgbi_ddp_info,
  1154. refcnt);
  1155. struct cxgbi_device *cdev = ddp->cdev;
  1156. int i = 0;
  1157. pr_info("kref 0, destroy ddp 0x%p, cdev 0x%p.\n", ddp, cdev);
  1158. while (i < ddp->nppods) {
  1159. struct cxgbi_gather_list *gl = ddp->gl_map[i];
  1160. if (gl) {
  1161. int npods = (gl->nelem + PPOD_PAGES_MAX - 1)
  1162. >> PPOD_PAGES_SHIFT;
  1163. pr_info("cdev 0x%p, ddp %d + %d.\n", cdev, i, npods);
  1164. kfree(gl);
  1165. i += npods;
  1166. } else
  1167. i++;
  1168. }
  1169. cxgbi_free_big_mem(ddp);
  1170. }
  1171. int cxgbi_ddp_cleanup(struct cxgbi_device *cdev)
  1172. {
  1173. struct cxgbi_ddp_info *ddp = cdev->ddp;
  1174. log_debug(1 << CXGBI_DBG_DDP,
  1175. "cdev 0x%p, release ddp 0x%p.\n", cdev, ddp);
  1176. cdev->ddp = NULL;
  1177. if (ddp)
  1178. return kref_put(&ddp->refcnt, ddp_destroy);
  1179. return 0;
  1180. }
  1181. EXPORT_SYMBOL_GPL(cxgbi_ddp_cleanup);
  1182. int cxgbi_ddp_init(struct cxgbi_device *cdev,
  1183. unsigned int llimit, unsigned int ulimit,
  1184. unsigned int max_txsz, unsigned int max_rxsz)
  1185. {
  1186. struct cxgbi_ddp_info *ddp;
  1187. unsigned int ppmax, bits;
  1188. ppmax = (ulimit - llimit + 1) >> PPOD_SIZE_SHIFT;
  1189. bits = __ilog2_u32(ppmax) + 1;
  1190. if (bits > PPOD_IDX_MAX_SIZE)
  1191. bits = PPOD_IDX_MAX_SIZE;
  1192. ppmax = (1 << (bits - 1)) - 1;
  1193. ddp = cxgbi_alloc_big_mem(sizeof(struct cxgbi_ddp_info) +
  1194. ppmax * (sizeof(struct cxgbi_gather_list *) +
  1195. sizeof(struct sk_buff *)),
  1196. GFP_KERNEL);
  1197. if (!ddp) {
  1198. pr_warn("cdev 0x%p, ddp ppmax %u OOM.\n", cdev, ppmax);
  1199. return -ENOMEM;
  1200. }
  1201. ddp->gl_map = (struct cxgbi_gather_list **)(ddp + 1);
  1202. cdev->ddp = ddp;
  1203. spin_lock_init(&ddp->map_lock);
  1204. kref_init(&ddp->refcnt);
  1205. ddp->cdev = cdev;
  1206. ddp->pdev = cdev->pdev;
  1207. ddp->llimit = llimit;
  1208. ddp->ulimit = ulimit;
  1209. ddp->max_txsz = min_t(unsigned int, max_txsz, ULP2_MAX_PKT_SIZE);
  1210. ddp->max_rxsz = min_t(unsigned int, max_rxsz, ULP2_MAX_PKT_SIZE);
  1211. ddp->nppods = ppmax;
  1212. ddp->idx_last = ppmax;
  1213. ddp->idx_bits = bits;
  1214. ddp->idx_mask = (1 << bits) - 1;
  1215. ddp->rsvd_tag_mask = (1 << (bits + PPOD_IDX_SHIFT)) - 1;
  1216. cdev->tag_format.sw_bits = sw_tag_idx_bits + sw_tag_age_bits;
  1217. cdev->tag_format.rsvd_bits = ddp->idx_bits;
  1218. cdev->tag_format.rsvd_shift = PPOD_IDX_SHIFT;
  1219. cdev->tag_format.rsvd_mask = (1 << cdev->tag_format.rsvd_bits) - 1;
  1220. pr_info("%s tag format, sw %u, rsvd %u,%u, mask 0x%x.\n",
  1221. cdev->ports[0]->name, cdev->tag_format.sw_bits,
  1222. cdev->tag_format.rsvd_bits, cdev->tag_format.rsvd_shift,
  1223. cdev->tag_format.rsvd_mask);
  1224. cdev->tx_max_size = min_t(unsigned int, ULP2_MAX_PDU_PAYLOAD,
  1225. ddp->max_txsz - ISCSI_PDU_NONPAYLOAD_LEN);
  1226. cdev->rx_max_size = min_t(unsigned int, ULP2_MAX_PDU_PAYLOAD,
  1227. ddp->max_rxsz - ISCSI_PDU_NONPAYLOAD_LEN);
  1228. log_debug(1 << CXGBI_DBG_DDP,
  1229. "%s max payload size: %u/%u, %u/%u.\n",
  1230. cdev->ports[0]->name, cdev->tx_max_size, ddp->max_txsz,
  1231. cdev->rx_max_size, ddp->max_rxsz);
  1232. return 0;
  1233. }
  1234. EXPORT_SYMBOL_GPL(cxgbi_ddp_init);
  1235. /*
  1236. * APIs interacting with open-iscsi libraries
  1237. */
  1238. static unsigned char padding[4];
  1239. static void task_release_itt(struct iscsi_task *task, itt_t hdr_itt)
  1240. {
  1241. struct scsi_cmnd *sc = task->sc;
  1242. struct iscsi_tcp_conn *tcp_conn = task->conn->dd_data;
  1243. struct cxgbi_conn *cconn = tcp_conn->dd_data;
  1244. struct cxgbi_hba *chba = cconn->chba;
  1245. struct cxgbi_tag_format *tformat = &chba->cdev->tag_format;
  1246. u32 tag = ntohl((__force u32)hdr_itt);
  1247. log_debug(1 << CXGBI_DBG_DDP,
  1248. "cdev 0x%p, release tag 0x%x.\n", chba->cdev, tag);
  1249. if (sc &&
  1250. (scsi_bidi_cmnd(sc) || sc->sc_data_direction == DMA_FROM_DEVICE) &&
  1251. cxgbi_is_ddp_tag(tformat, tag))
  1252. ddp_tag_release(chba, tag);
  1253. }
  1254. static int task_reserve_itt(struct iscsi_task *task, itt_t *hdr_itt)
  1255. {
  1256. struct scsi_cmnd *sc = task->sc;
  1257. struct iscsi_conn *conn = task->conn;
  1258. struct iscsi_session *sess = conn->session;
  1259. struct iscsi_tcp_conn *tcp_conn = conn->dd_data;
  1260. struct cxgbi_conn *cconn = tcp_conn->dd_data;
  1261. struct cxgbi_hba *chba = cconn->chba;
  1262. struct cxgbi_tag_format *tformat = &chba->cdev->tag_format;
  1263. u32 sw_tag = (sess->age << cconn->task_idx_bits) | task->itt;
  1264. u32 tag = 0;
  1265. int err = -EINVAL;
  1266. if (sc &&
  1267. (scsi_bidi_cmnd(sc) || sc->sc_data_direction == DMA_FROM_DEVICE)) {
  1268. err = cxgbi_ddp_reserve(cconn->cep->csk, &tag, sw_tag,
  1269. scsi_in(sc)->length,
  1270. scsi_in(sc)->table.sgl,
  1271. scsi_in(sc)->table.nents,
  1272. GFP_ATOMIC);
  1273. if (err < 0)
  1274. log_debug(1 << CXGBI_DBG_DDP,
  1275. "csk 0x%p, R task 0x%p, %u,%u, no ddp.\n",
  1276. cconn->cep->csk, task, scsi_in(sc)->length,
  1277. scsi_in(sc)->table.nents);
  1278. }
  1279. if (err < 0)
  1280. tag = cxgbi_set_non_ddp_tag(tformat, sw_tag);
  1281. /* the itt need to sent in big-endian order */
  1282. *hdr_itt = (__force itt_t)htonl(tag);
  1283. log_debug(1 << CXGBI_DBG_DDP,
  1284. "cdev 0x%p, task 0x%p, 0x%x(0x%x,0x%x)->0x%x/0x%x.\n",
  1285. chba->cdev, task, sw_tag, task->itt, sess->age, tag, *hdr_itt);
  1286. return 0;
  1287. }
  1288. void cxgbi_parse_pdu_itt(struct iscsi_conn *conn, itt_t itt, int *idx, int *age)
  1289. {
  1290. struct iscsi_tcp_conn *tcp_conn = conn->dd_data;
  1291. struct cxgbi_conn *cconn = tcp_conn->dd_data;
  1292. struct cxgbi_device *cdev = cconn->chba->cdev;
  1293. u32 tag = ntohl((__force u32) itt);
  1294. u32 sw_bits;
  1295. sw_bits = cxgbi_tag_nonrsvd_bits(&cdev->tag_format, tag);
  1296. if (idx)
  1297. *idx = sw_bits & ((1 << cconn->task_idx_bits) - 1);
  1298. if (age)
  1299. *age = (sw_bits >> cconn->task_idx_bits) & ISCSI_AGE_MASK;
  1300. log_debug(1 << CXGBI_DBG_DDP,
  1301. "cdev 0x%p, tag 0x%x/0x%x, -> 0x%x(0x%x,0x%x).\n",
  1302. cdev, tag, itt, sw_bits, idx ? *idx : 0xFFFFF,
  1303. age ? *age : 0xFF);
  1304. }
  1305. EXPORT_SYMBOL_GPL(cxgbi_parse_pdu_itt);
  1306. void cxgbi_conn_tx_open(struct cxgbi_sock *csk)
  1307. {
  1308. struct iscsi_conn *conn = csk->user_data;
  1309. if (conn) {
  1310. log_debug(1 << CXGBI_DBG_SOCK,
  1311. "csk 0x%p, cid %d.\n", csk, conn->id);
  1312. iscsi_conn_queue_work(conn);
  1313. }
  1314. }
  1315. EXPORT_SYMBOL_GPL(cxgbi_conn_tx_open);
  1316. /*
  1317. * pdu receive, interact with libiscsi_tcp
  1318. */
  1319. static inline int read_pdu_skb(struct iscsi_conn *conn,
  1320. struct sk_buff *skb,
  1321. unsigned int offset,
  1322. int offloaded)
  1323. {
  1324. int status = 0;
  1325. int bytes_read;
  1326. bytes_read = iscsi_tcp_recv_skb(conn, skb, offset, offloaded, &status);
  1327. switch (status) {
  1328. case ISCSI_TCP_CONN_ERR:
  1329. pr_info("skb 0x%p, off %u, %d, TCP_ERR.\n",
  1330. skb, offset, offloaded);
  1331. return -EIO;
  1332. case ISCSI_TCP_SUSPENDED:
  1333. log_debug(1 << CXGBI_DBG_PDU_RX,
  1334. "skb 0x%p, off %u, %d, TCP_SUSPEND, rc %d.\n",
  1335. skb, offset, offloaded, bytes_read);
  1336. /* no transfer - just have caller flush queue */
  1337. return bytes_read;
  1338. case ISCSI_TCP_SKB_DONE:
  1339. pr_info("skb 0x%p, off %u, %d, TCP_SKB_DONE.\n",
  1340. skb, offset, offloaded);
  1341. /*
  1342. * pdus should always fit in the skb and we should get
  1343. * segment done notifcation.
  1344. */
  1345. iscsi_conn_printk(KERN_ERR, conn, "Invalid pdu or skb.");
  1346. return -EFAULT;
  1347. case ISCSI_TCP_SEGMENT_DONE:
  1348. log_debug(1 << CXGBI_DBG_PDU_RX,
  1349. "skb 0x%p, off %u, %d, TCP_SEG_DONE, rc %d.\n",
  1350. skb, offset, offloaded, bytes_read);
  1351. return bytes_read;
  1352. default:
  1353. pr_info("skb 0x%p, off %u, %d, invalid status %d.\n",
  1354. skb, offset, offloaded, status);
  1355. return -EINVAL;
  1356. }
  1357. }
  1358. static int skb_read_pdu_bhs(struct iscsi_conn *conn, struct sk_buff *skb)
  1359. {
  1360. struct iscsi_tcp_conn *tcp_conn = conn->dd_data;
  1361. log_debug(1 << CXGBI_DBG_PDU_RX,
  1362. "conn 0x%p, skb 0x%p, len %u, flag 0x%lx.\n",
  1363. conn, skb, skb->len, cxgbi_skcb_flags(skb));
  1364. if (!iscsi_tcp_recv_segment_is_hdr(tcp_conn)) {
  1365. pr_info("conn 0x%p, skb 0x%p, not hdr.\n", conn, skb);
  1366. iscsi_conn_failure(conn, ISCSI_ERR_PROTO);
  1367. return -EIO;
  1368. }
  1369. if (conn->hdrdgst_en &&
  1370. cxgbi_skcb_test_flag(skb, SKCBF_RX_HCRC_ERR)) {
  1371. pr_info("conn 0x%p, skb 0x%p, hcrc.\n", conn, skb);
  1372. iscsi_conn_failure(conn, ISCSI_ERR_HDR_DGST);
  1373. return -EIO;
  1374. }
  1375. return read_pdu_skb(conn, skb, 0, 0);
  1376. }
  1377. static int skb_read_pdu_data(struct iscsi_conn *conn, struct sk_buff *lskb,
  1378. struct sk_buff *skb, unsigned int offset)
  1379. {
  1380. struct iscsi_tcp_conn *tcp_conn = conn->dd_data;
  1381. bool offloaded = 0;
  1382. int opcode = tcp_conn->in.hdr->opcode & ISCSI_OPCODE_MASK;
  1383. log_debug(1 << CXGBI_DBG_PDU_RX,
  1384. "conn 0x%p, skb 0x%p, len %u, flag 0x%lx.\n",
  1385. conn, skb, skb->len, cxgbi_skcb_flags(skb));
  1386. if (conn->datadgst_en &&
  1387. cxgbi_skcb_test_flag(lskb, SKCBF_RX_DCRC_ERR)) {
  1388. pr_info("conn 0x%p, skb 0x%p, dcrc 0x%lx.\n",
  1389. conn, lskb, cxgbi_skcb_flags(lskb));
  1390. iscsi_conn_failure(conn, ISCSI_ERR_DATA_DGST);
  1391. return -EIO;
  1392. }
  1393. if (iscsi_tcp_recv_segment_is_hdr(tcp_conn))
  1394. return 0;
  1395. /* coalesced, add header digest length */
  1396. if (lskb == skb && conn->hdrdgst_en)
  1397. offset += ISCSI_DIGEST_SIZE;
  1398. if (cxgbi_skcb_test_flag(lskb, SKCBF_RX_DATA_DDPD))
  1399. offloaded = 1;
  1400. if (opcode == ISCSI_OP_SCSI_DATA_IN)
  1401. log_debug(1 << CXGBI_DBG_PDU_RX,
  1402. "skb 0x%p, op 0x%x, itt 0x%x, %u %s ddp'ed.\n",
  1403. skb, opcode, ntohl(tcp_conn->in.hdr->itt),
  1404. tcp_conn->in.datalen, offloaded ? "is" : "not");
  1405. return read_pdu_skb(conn, skb, offset, offloaded);
  1406. }
  1407. static void csk_return_rx_credits(struct cxgbi_sock *csk, int copied)
  1408. {
  1409. struct cxgbi_device *cdev = csk->cdev;
  1410. int must_send;
  1411. u32 credits;
  1412. log_debug(1 << CXGBI_DBG_PDU_RX,
  1413. "csk 0x%p,%u,0x%lu,%u, seq %u, wup %u, thre %u, %u.\n",
  1414. csk, csk->state, csk->flags, csk->tid, csk->copied_seq,
  1415. csk->rcv_wup, cdev->rx_credit_thres,
  1416. cdev->rcv_win);
  1417. if (csk->state != CTP_ESTABLISHED)
  1418. return;
  1419. credits = csk->copied_seq - csk->rcv_wup;
  1420. if (unlikely(!credits))
  1421. return;
  1422. if (unlikely(cdev->rx_credit_thres == 0))
  1423. return;
  1424. must_send = credits + 16384 >= cdev->rcv_win;
  1425. if (must_send || credits >= cdev->rx_credit_thres)
  1426. csk->rcv_wup += cdev->csk_send_rx_credits(csk, credits);
  1427. }
  1428. void cxgbi_conn_pdu_ready(struct cxgbi_sock *csk)
  1429. {
  1430. struct cxgbi_device *cdev = csk->cdev;
  1431. struct iscsi_conn *conn = csk->user_data;
  1432. struct sk_buff *skb;
  1433. unsigned int read = 0;
  1434. int err = 0;
  1435. log_debug(1 << CXGBI_DBG_PDU_RX,
  1436. "csk 0x%p, conn 0x%p.\n", csk, conn);
  1437. if (unlikely(!conn || conn->suspend_rx)) {
  1438. log_debug(1 << CXGBI_DBG_PDU_RX,
  1439. "csk 0x%p, conn 0x%p, id %d, suspend_rx %lu!\n",
  1440. csk, conn, conn ? conn->id : 0xFF,
  1441. conn ? conn->suspend_rx : 0xFF);
  1442. return;
  1443. }
  1444. while (!err) {
  1445. skb = skb_peek(&csk->receive_queue);
  1446. if (!skb ||
  1447. !(cxgbi_skcb_test_flag(skb, SKCBF_RX_STATUS))) {
  1448. if (skb)
  1449. log_debug(1 << CXGBI_DBG_PDU_RX,
  1450. "skb 0x%p, NOT ready 0x%lx.\n",
  1451. skb, cxgbi_skcb_flags(skb));
  1452. break;
  1453. }
  1454. __skb_unlink(skb, &csk->receive_queue);
  1455. read += cxgbi_skcb_rx_pdulen(skb);
  1456. log_debug(1 << CXGBI_DBG_PDU_RX,
  1457. "csk 0x%p, skb 0x%p,%u,f 0x%lx, pdu len %u.\n",
  1458. csk, skb, skb->len, cxgbi_skcb_flags(skb),
  1459. cxgbi_skcb_rx_pdulen(skb));
  1460. if (cxgbi_skcb_test_flag(skb, SKCBF_RX_COALESCED)) {
  1461. err = skb_read_pdu_bhs(conn, skb);
  1462. if (err < 0) {
  1463. pr_err("coalesced bhs, csk 0x%p, skb 0x%p,%u, "
  1464. "f 0x%lx, plen %u.\n",
  1465. csk, skb, skb->len,
  1466. cxgbi_skcb_flags(skb),
  1467. cxgbi_skcb_rx_pdulen(skb));
  1468. goto skb_done;
  1469. }
  1470. err = skb_read_pdu_data(conn, skb, skb,
  1471. err + cdev->skb_rx_extra);
  1472. if (err < 0)
  1473. pr_err("coalesced data, csk 0x%p, skb 0x%p,%u, "
  1474. "f 0x%lx, plen %u.\n",
  1475. csk, skb, skb->len,
  1476. cxgbi_skcb_flags(skb),
  1477. cxgbi_skcb_rx_pdulen(skb));
  1478. } else {
  1479. err = skb_read_pdu_bhs(conn, skb);
  1480. if (err < 0) {
  1481. pr_err("bhs, csk 0x%p, skb 0x%p,%u, "
  1482. "f 0x%lx, plen %u.\n",
  1483. csk, skb, skb->len,
  1484. cxgbi_skcb_flags(skb),
  1485. cxgbi_skcb_rx_pdulen(skb));
  1486. goto skb_done;
  1487. }
  1488. if (cxgbi_skcb_test_flag(skb, SKCBF_RX_DATA)) {
  1489. struct sk_buff *dskb;
  1490. dskb = skb_peek(&csk->receive_queue);
  1491. if (!dskb) {
  1492. pr_err("csk 0x%p, skb 0x%p,%u, f 0x%lx,"
  1493. " plen %u, NO data.\n",
  1494. csk, skb, skb->len,
  1495. cxgbi_skcb_flags(skb),
  1496. cxgbi_skcb_rx_pdulen(skb));
  1497. err = -EIO;
  1498. goto skb_done;
  1499. }
  1500. __skb_unlink(dskb, &csk->receive_queue);
  1501. err = skb_read_pdu_data(conn, skb, dskb, 0);
  1502. if (err < 0)
  1503. pr_err("data, csk 0x%p, skb 0x%p,%u, "
  1504. "f 0x%lx, plen %u, dskb 0x%p,"
  1505. "%u.\n",
  1506. csk, skb, skb->len,
  1507. cxgbi_skcb_flags(skb),
  1508. cxgbi_skcb_rx_pdulen(skb),
  1509. dskb, dskb->len);
  1510. __kfree_skb(dskb);
  1511. } else
  1512. err = skb_read_pdu_data(conn, skb, skb, 0);
  1513. }
  1514. skb_done:
  1515. __kfree_skb(skb);
  1516. if (err < 0)
  1517. break;
  1518. }
  1519. log_debug(1 << CXGBI_DBG_PDU_RX, "csk 0x%p, read %u.\n", csk, read);
  1520. if (read) {
  1521. csk->copied_seq += read;
  1522. csk_return_rx_credits(csk, read);
  1523. conn->rxdata_octets += read;
  1524. }
  1525. if (err < 0) {
  1526. pr_info("csk 0x%p, 0x%p, rx failed %d, read %u.\n",
  1527. csk, conn, err, read);
  1528. iscsi_conn_failure(conn, ISCSI_ERR_CONN_FAILED);
  1529. }
  1530. }
  1531. EXPORT_SYMBOL_GPL(cxgbi_conn_pdu_ready);
  1532. static int sgl_seek_offset(struct scatterlist *sgl, unsigned int sgcnt,
  1533. unsigned int offset, unsigned int *off,
  1534. struct scatterlist **sgp)
  1535. {
  1536. int i;
  1537. struct scatterlist *sg;
  1538. for_each_sg(sgl, sg, sgcnt, i) {
  1539. if (offset < sg->length) {
  1540. *off = offset;
  1541. *sgp = sg;
  1542. return 0;
  1543. }
  1544. offset -= sg->length;
  1545. }
  1546. return -EFAULT;
  1547. }
  1548. static int sgl_read_to_frags(struct scatterlist *sg, unsigned int sgoffset,
  1549. unsigned int dlen, skb_frag_t *frags,
  1550. int frag_max)
  1551. {
  1552. unsigned int datalen = dlen;
  1553. unsigned int sglen = sg->length - sgoffset;
  1554. struct page *page = sg_page(sg);
  1555. int i;
  1556. i = 0;
  1557. do {
  1558. unsigned int copy;
  1559. if (!sglen) {
  1560. sg = sg_next(sg);
  1561. if (!sg) {
  1562. pr_warn("sg %d NULL, len %u/%u.\n",
  1563. i, datalen, dlen);
  1564. return -EINVAL;
  1565. }
  1566. sgoffset = 0;
  1567. sglen = sg->length;
  1568. page = sg_page(sg);
  1569. }
  1570. copy = min(datalen, sglen);
  1571. if (i && page == frags[i - 1].page &&
  1572. sgoffset + sg->offset ==
  1573. frags[i - 1].page_offset + frags[i - 1].size) {
  1574. frags[i - 1].size += copy;
  1575. } else {
  1576. if (i >= frag_max) {
  1577. pr_warn("too many pages %u, dlen %u.\n",
  1578. frag_max, dlen);
  1579. return -EINVAL;
  1580. }
  1581. frags[i].page = page;
  1582. frags[i].page_offset = sg->offset + sgoffset;
  1583. frags[i].size = copy;
  1584. i++;
  1585. }
  1586. datalen -= copy;
  1587. sgoffset += copy;
  1588. sglen -= copy;
  1589. } while (datalen);
  1590. return i;
  1591. }
  1592. int cxgbi_conn_alloc_pdu(struct iscsi_task *task, u8 opcode)
  1593. {
  1594. struct iscsi_tcp_conn *tcp_conn = task->conn->dd_data;
  1595. struct cxgbi_conn *cconn = tcp_conn->dd_data;
  1596. struct cxgbi_device *cdev = cconn->chba->cdev;
  1597. struct iscsi_conn *conn = task->conn;
  1598. struct iscsi_tcp_task *tcp_task = task->dd_data;
  1599. struct cxgbi_task_data *tdata = iscsi_task_cxgbi_data(task);
  1600. struct scsi_cmnd *sc = task->sc;
  1601. int headroom = SKB_TX_ISCSI_PDU_HEADER_MAX;
  1602. tcp_task->dd_data = tdata;
  1603. task->hdr = NULL;
  1604. if (SKB_MAX_HEAD(cdev->skb_tx_rsvd) > (512 * MAX_SKB_FRAGS) &&
  1605. (opcode == ISCSI_OP_SCSI_DATA_OUT ||
  1606. (opcode == ISCSI_OP_SCSI_CMD &&
  1607. (scsi_bidi_cmnd(sc) || sc->sc_data_direction == DMA_TO_DEVICE))))
  1608. /* data could goes into skb head */
  1609. headroom += min_t(unsigned int,
  1610. SKB_MAX_HEAD(cdev->skb_tx_rsvd),
  1611. conn->max_xmit_dlength);
  1612. tdata->skb = alloc_skb(cdev->skb_tx_rsvd + headroom, GFP_ATOMIC);
  1613. if (!tdata->skb) {
  1614. pr_warn("alloc skb %u+%u, opcode 0x%x failed.\n",
  1615. cdev->skb_tx_rsvd, headroom, opcode);
  1616. return -ENOMEM;
  1617. }
  1618. skb_reserve(tdata->skb, cdev->skb_tx_rsvd);
  1619. task->hdr = (struct iscsi_hdr *)tdata->skb->data;
  1620. task->hdr_max = SKB_TX_ISCSI_PDU_HEADER_MAX; /* BHS + AHS */
  1621. /* data_out uses scsi_cmd's itt */
  1622. if (opcode != ISCSI_OP_SCSI_DATA_OUT)
  1623. task_reserve_itt(task, &task->hdr->itt);
  1624. log_debug(1 << CXGBI_DBG_ISCSI | 1 << CXGBI_DBG_PDU_TX,
  1625. "task 0x%p, op 0x%x, skb 0x%p,%u+%u/%u, itt 0x%x.\n",
  1626. task, opcode, tdata->skb, cdev->skb_tx_rsvd, headroom,
  1627. conn->max_xmit_dlength, ntohl(task->hdr->itt));
  1628. return 0;
  1629. }
  1630. EXPORT_SYMBOL_GPL(cxgbi_conn_alloc_pdu);
  1631. static inline void tx_skb_setmode(struct sk_buff *skb, int hcrc, int dcrc)
  1632. {
  1633. if (hcrc || dcrc) {
  1634. u8 submode = 0;
  1635. if (hcrc)
  1636. submode |= 1;
  1637. if (dcrc)
  1638. submode |= 2;
  1639. cxgbi_skcb_ulp_mode(skb) = (ULP2_MODE_ISCSI << 4) | submode;
  1640. } else
  1641. cxgbi_skcb_ulp_mode(skb) = 0;
  1642. }
  1643. int cxgbi_conn_init_pdu(struct iscsi_task *task, unsigned int offset,
  1644. unsigned int count)
  1645. {
  1646. struct iscsi_conn *conn = task->conn;
  1647. struct cxgbi_task_data *tdata = iscsi_task_cxgbi_data(task);
  1648. struct sk_buff *skb = tdata->skb;
  1649. unsigned int datalen = count;
  1650. int i, padlen = iscsi_padding(count);
  1651. struct page *pg;
  1652. log_debug(1 << CXGBI_DBG_ISCSI | 1 << CXGBI_DBG_PDU_TX,
  1653. "task 0x%p,0x%p, skb 0x%p, 0x%x,0x%x,0x%x, %u+%u.\n",
  1654. task, task->sc, skb, (*skb->data) & ISCSI_OPCODE_MASK,
  1655. ntohl(task->cmdsn), ntohl(task->hdr->itt), offset, count);
  1656. skb_put(skb, task->hdr_len);
  1657. tx_skb_setmode(skb, conn->hdrdgst_en, datalen ? conn->datadgst_en : 0);
  1658. if (!count)
  1659. return 0;
  1660. if (task->sc) {
  1661. struct scsi_data_buffer *sdb = scsi_out(task->sc);
  1662. struct scatterlist *sg = NULL;
  1663. int err;
  1664. tdata->offset = offset;
  1665. tdata->count = count;
  1666. err = sgl_seek_offset(
  1667. sdb->table.sgl, sdb->table.nents,
  1668. tdata->offset, &tdata->sgoffset, &sg);
  1669. if (err < 0) {
  1670. pr_warn("tpdu, sgl %u, bad offset %u/%u.\n",
  1671. sdb->table.nents, tdata->offset, sdb->length);
  1672. return err;
  1673. }
  1674. err = sgl_read_to_frags(sg, tdata->sgoffset, tdata->count,
  1675. tdata->frags, MAX_PDU_FRAGS);
  1676. if (err < 0) {
  1677. pr_warn("tpdu, sgl %u, bad offset %u + %u.\n",
  1678. sdb->table.nents, tdata->offset, tdata->count);
  1679. return err;
  1680. }
  1681. tdata->nr_frags = err;
  1682. if (tdata->nr_frags > MAX_SKB_FRAGS ||
  1683. (padlen && tdata->nr_frags == MAX_SKB_FRAGS)) {
  1684. char *dst = skb->data + task->hdr_len;
  1685. skb_frag_t *frag = tdata->frags;
  1686. /* data fits in the skb's headroom */
  1687. for (i = 0; i < tdata->nr_frags; i++, frag++) {
  1688. char *src = kmap_atomic(frag->page,
  1689. KM_SOFTIRQ0);
  1690. memcpy(dst, src+frag->page_offset, frag->size);
  1691. dst += frag->size;
  1692. kunmap_atomic(src, KM_SOFTIRQ0);
  1693. }
  1694. if (padlen) {
  1695. memset(dst, 0, padlen);
  1696. padlen = 0;
  1697. }
  1698. skb_put(skb, count + padlen);
  1699. } else {
  1700. /* data fit into frag_list */
  1701. for (i = 0; i < tdata->nr_frags; i++)
  1702. get_page(tdata->frags[i].page);
  1703. memcpy(skb_shinfo(skb)->frags, tdata->frags,
  1704. sizeof(skb_frag_t) * tdata->nr_frags);
  1705. skb_shinfo(skb)->nr_frags = tdata->nr_frags;
  1706. skb->len += count;
  1707. skb->data_len += count;
  1708. skb->truesize += count;
  1709. }
  1710. } else {
  1711. pg = virt_to_page(task->data);
  1712. get_page(pg);
  1713. skb_fill_page_desc(skb, 0, pg, offset_in_page(task->data),
  1714. count);
  1715. skb->len += count;
  1716. skb->data_len += count;
  1717. skb->truesize += count;
  1718. }
  1719. if (padlen) {
  1720. i = skb_shinfo(skb)->nr_frags;
  1721. skb_fill_page_desc(skb, skb_shinfo(skb)->nr_frags,
  1722. virt_to_page(padding), offset_in_page(padding),
  1723. padlen);
  1724. skb->data_len += padlen;
  1725. skb->truesize += padlen;
  1726. skb->len += padlen;
  1727. }
  1728. return 0;
  1729. }
  1730. EXPORT_SYMBOL_GPL(cxgbi_conn_init_pdu);
  1731. int cxgbi_conn_xmit_pdu(struct iscsi_task *task)
  1732. {
  1733. struct iscsi_tcp_conn *tcp_conn = task->conn->dd_data;
  1734. struct cxgbi_conn *cconn = tcp_conn->dd_data;
  1735. struct cxgbi_task_data *tdata = iscsi_task_cxgbi_data(task);
  1736. struct sk_buff *skb = tdata->skb;
  1737. unsigned int datalen;
  1738. int err;
  1739. if (!skb) {
  1740. log_debug(1 << CXGBI_DBG_ISCSI | 1 << CXGBI_DBG_PDU_TX,
  1741. "task 0x%p, skb NULL.\n", task);
  1742. return 0;
  1743. }
  1744. datalen = skb->data_len;
  1745. tdata->skb = NULL;
  1746. err = cxgbi_sock_send_pdus(cconn->cep->csk, skb);
  1747. if (err > 0) {
  1748. int pdulen = err;
  1749. log_debug(1 << CXGBI_DBG_PDU_TX,
  1750. "task 0x%p,0x%p, skb 0x%p, len %u/%u, rv %d.\n",
  1751. task, task->sc, skb, skb->len, skb->data_len, err);
  1752. if (task->conn->hdrdgst_en)
  1753. pdulen += ISCSI_DIGEST_SIZE;
  1754. if (datalen && task->conn->datadgst_en)
  1755. pdulen += ISCSI_DIGEST_SIZE;
  1756. task->conn->txdata_octets += pdulen;
  1757. return 0;
  1758. }
  1759. if (err == -EAGAIN || err == -ENOBUFS) {
  1760. log_debug(1 << CXGBI_DBG_PDU_TX,
  1761. "task 0x%p, skb 0x%p, len %u/%u, %d EAGAIN.\n",
  1762. task, skb, skb->len, skb->data_len, err);
  1763. /* reset skb to send when we are called again */
  1764. tdata->skb = skb;
  1765. return err;
  1766. }
  1767. kfree_skb(skb);
  1768. log_debug(1 << CXGBI_DBG_ISCSI | 1 << CXGBI_DBG_PDU_TX,
  1769. "itt 0x%x, skb 0x%p, len %u/%u, xmit err %d.\n",
  1770. task->itt, skb, skb->len, skb->data_len, err);
  1771. iscsi_conn_printk(KERN_ERR, task->conn, "xmit err %d.\n", err);
  1772. iscsi_conn_failure(task->conn, ISCSI_ERR_XMIT_FAILED);
  1773. return err;
  1774. }
  1775. EXPORT_SYMBOL_GPL(cxgbi_conn_xmit_pdu);
  1776. void cxgbi_cleanup_task(struct iscsi_task *task)
  1777. {
  1778. struct cxgbi_task_data *tdata = iscsi_task_cxgbi_data(task);
  1779. log_debug(1 << CXGBI_DBG_ISCSI,
  1780. "task 0x%p, skb 0x%p, itt 0x%x.\n",
  1781. task, tdata->skb, task->hdr_itt);
  1782. /* never reached the xmit task callout */
  1783. if (tdata->skb)
  1784. __kfree_skb(tdata->skb);
  1785. memset(tdata, 0, sizeof(*tdata));
  1786. task_release_itt(task, task->hdr_itt);
  1787. iscsi_tcp_cleanup_task(task);
  1788. }
  1789. EXPORT_SYMBOL_GPL(cxgbi_cleanup_task);
  1790. void cxgbi_get_conn_stats(struct iscsi_cls_conn *cls_conn,
  1791. struct iscsi_stats *stats)
  1792. {
  1793. struct iscsi_conn *conn = cls_conn->dd_data;
  1794. stats->txdata_octets = conn->txdata_octets;
  1795. stats->rxdata_octets = conn->rxdata_octets;
  1796. stats->scsicmd_pdus = conn->scsicmd_pdus_cnt;
  1797. stats->dataout_pdus = conn->dataout_pdus_cnt;
  1798. stats->scsirsp_pdus = conn->scsirsp_pdus_cnt;
  1799. stats->datain_pdus = conn->datain_pdus_cnt;
  1800. stats->r2t_pdus = conn->r2t_pdus_cnt;
  1801. stats->tmfcmd_pdus = conn->tmfcmd_pdus_cnt;
  1802. stats->tmfrsp_pdus = conn->tmfrsp_pdus_cnt;
  1803. stats->digest_err = 0;
  1804. stats->timeout_err = 0;
  1805. stats->custom_length = 1;
  1806. strcpy(stats->custom[0].desc, "eh_abort_cnt");
  1807. stats->custom[0].value = conn->eh_abort_cnt;
  1808. }
  1809. EXPORT_SYMBOL_GPL(cxgbi_get_conn_stats);
  1810. static int cxgbi_conn_max_xmit_dlength(struct iscsi_conn *conn)
  1811. {
  1812. struct iscsi_tcp_conn *tcp_conn = conn->dd_data;
  1813. struct cxgbi_conn *cconn = tcp_conn->dd_data;
  1814. struct cxgbi_device *cdev = cconn->chba->cdev;
  1815. unsigned int headroom = SKB_MAX_HEAD(cdev->skb_tx_rsvd);
  1816. unsigned int max_def = 512 * MAX_SKB_FRAGS;
  1817. unsigned int max = max(max_def, headroom);
  1818. max = min(cconn->chba->cdev->tx_max_size, max);
  1819. if (conn->max_xmit_dlength)
  1820. conn->max_xmit_dlength = min(conn->max_xmit_dlength, max);
  1821. else
  1822. conn->max_xmit_dlength = max;
  1823. cxgbi_align_pdu_size(conn->max_xmit_dlength);
  1824. return 0;
  1825. }
  1826. static int cxgbi_conn_max_recv_dlength(struct iscsi_conn *conn)
  1827. {
  1828. struct iscsi_tcp_conn *tcp_conn = conn->dd_data;
  1829. struct cxgbi_conn *cconn = tcp_conn->dd_data;
  1830. unsigned int max = cconn->chba->cdev->rx_max_size;
  1831. cxgbi_align_pdu_size(max);
  1832. if (conn->max_recv_dlength) {
  1833. if (conn->max_recv_dlength > max) {
  1834. pr_err("MaxRecvDataSegmentLength %u > %u.\n",
  1835. conn->max_recv_dlength, max);
  1836. return -EINVAL;
  1837. }
  1838. conn->max_recv_dlength = min(conn->max_recv_dlength, max);
  1839. cxgbi_align_pdu_size(conn->max_recv_dlength);
  1840. } else
  1841. conn->max_recv_dlength = max;
  1842. return 0;
  1843. }
  1844. int cxgbi_set_conn_param(struct iscsi_cls_conn *cls_conn,
  1845. enum iscsi_param param, char *buf, int buflen)
  1846. {
  1847. struct iscsi_conn *conn = cls_conn->dd_data;
  1848. struct iscsi_session *session = conn->session;
  1849. struct iscsi_tcp_conn *tcp_conn = conn->dd_data;
  1850. struct cxgbi_conn *cconn = tcp_conn->dd_data;
  1851. struct cxgbi_sock *csk = cconn->cep->csk;
  1852. int value, err = 0;
  1853. log_debug(1 << CXGBI_DBG_ISCSI,
  1854. "cls_conn 0x%p, param %d, buf(%d) %s.\n",
  1855. cls_conn, param, buflen, buf);
  1856. switch (param) {
  1857. case ISCSI_PARAM_HDRDGST_EN:
  1858. err = iscsi_set_param(cls_conn, param, buf, buflen);
  1859. if (!err && conn->hdrdgst_en)
  1860. err = csk->cdev->csk_ddp_setup_digest(csk, csk->tid,
  1861. conn->hdrdgst_en,
  1862. conn->datadgst_en, 0);
  1863. break;
  1864. case ISCSI_PARAM_DATADGST_EN:
  1865. err = iscsi_set_param(cls_conn, param, buf, buflen);
  1866. if (!err && conn->datadgst_en)
  1867. err = csk->cdev->csk_ddp_setup_digest(csk, csk->tid,
  1868. conn->hdrdgst_en,
  1869. conn->datadgst_en, 0);
  1870. break;
  1871. case ISCSI_PARAM_MAX_R2T:
  1872. sscanf(buf, "%d", &value);
  1873. if (value <= 0 || !is_power_of_2(value))
  1874. return -EINVAL;
  1875. if (session->max_r2t == value)
  1876. break;
  1877. iscsi_tcp_r2tpool_free(session);
  1878. err = iscsi_set_param(cls_conn, param, buf, buflen);
  1879. if (!err && iscsi_tcp_r2tpool_alloc(session))
  1880. return -ENOMEM;
  1881. case ISCSI_PARAM_MAX_RECV_DLENGTH:
  1882. err = iscsi_set_param(cls_conn, param, buf, buflen);
  1883. if (!err)
  1884. err = cxgbi_conn_max_recv_dlength(conn);
  1885. break;
  1886. case ISCSI_PARAM_MAX_XMIT_DLENGTH:
  1887. err = iscsi_set_param(cls_conn, param, buf, buflen);
  1888. if (!err)
  1889. err = cxgbi_conn_max_xmit_dlength(conn);
  1890. break;
  1891. default:
  1892. return iscsi_set_param(cls_conn, param, buf, buflen);
  1893. }
  1894. return err;
  1895. }
  1896. EXPORT_SYMBOL_GPL(cxgbi_set_conn_param);
  1897. int cxgbi_get_ep_param(struct iscsi_endpoint *ep, enum iscsi_param param,
  1898. char *buf)
  1899. {
  1900. struct cxgbi_endpoint *cep = ep->dd_data;
  1901. struct cxgbi_sock *csk;
  1902. int len;
  1903. log_debug(1 << CXGBI_DBG_ISCSI,
  1904. "cls_conn 0x%p, param %d.\n", ep, param);
  1905. switch (param) {
  1906. case ISCSI_PARAM_CONN_PORT:
  1907. case ISCSI_PARAM_CONN_ADDRESS:
  1908. if (!cep)
  1909. return -ENOTCONN;
  1910. csk = cep->csk;
  1911. if (!csk)
  1912. return -ENOTCONN;
  1913. return iscsi_conn_get_addr_param((struct sockaddr_storage *)
  1914. &csk->daddr, param, buf);
  1915. default:
  1916. return -ENOSYS;
  1917. }
  1918. return len;
  1919. }
  1920. EXPORT_SYMBOL_GPL(cxgbi_get_ep_param);
  1921. struct iscsi_cls_conn *
  1922. cxgbi_create_conn(struct iscsi_cls_session *cls_session, u32 cid)
  1923. {
  1924. struct iscsi_cls_conn *cls_conn;
  1925. struct iscsi_conn *conn;
  1926. struct iscsi_tcp_conn *tcp_conn;
  1927. struct cxgbi_conn *cconn;
  1928. cls_conn = iscsi_tcp_conn_setup(cls_session, sizeof(*cconn), cid);
  1929. if (!cls_conn)
  1930. return NULL;
  1931. conn = cls_conn->dd_data;
  1932. tcp_conn = conn->dd_data;
  1933. cconn = tcp_conn->dd_data;
  1934. cconn->iconn = conn;
  1935. log_debug(1 << CXGBI_DBG_ISCSI,
  1936. "cid %u(0x%x), cls 0x%p,0x%p, conn 0x%p,0x%p,0x%p.\n",
  1937. cid, cid, cls_session, cls_conn, conn, tcp_conn, cconn);
  1938. return cls_conn;
  1939. }
  1940. EXPORT_SYMBOL_GPL(cxgbi_create_conn);
  1941. int cxgbi_bind_conn(struct iscsi_cls_session *cls_session,
  1942. struct iscsi_cls_conn *cls_conn,
  1943. u64 transport_eph, int is_leading)
  1944. {
  1945. struct iscsi_conn *conn = cls_conn->dd_data;
  1946. struct iscsi_tcp_conn *tcp_conn = conn->dd_data;
  1947. struct cxgbi_conn *cconn = tcp_conn->dd_data;
  1948. struct iscsi_endpoint *ep;
  1949. struct cxgbi_endpoint *cep;
  1950. struct cxgbi_sock *csk;
  1951. int err;
  1952. ep = iscsi_lookup_endpoint(transport_eph);
  1953. if (!ep)
  1954. return -EINVAL;
  1955. /* setup ddp pagesize */
  1956. cep = ep->dd_data;
  1957. csk = cep->csk;
  1958. err = csk->cdev->csk_ddp_setup_pgidx(csk, csk->tid, page_idx, 0);
  1959. if (err < 0)
  1960. return err;
  1961. err = iscsi_conn_bind(cls_session, cls_conn, is_leading);
  1962. if (err)
  1963. return -EINVAL;
  1964. /* calculate the tag idx bits needed for this conn based on cmds_max */
  1965. cconn->task_idx_bits = (__ilog2_u32(conn->session->cmds_max - 1)) + 1;
  1966. write_lock_bh(&csk->callback_lock);
  1967. csk->user_data = conn;
  1968. cconn->chba = cep->chba;
  1969. cconn->cep = cep;
  1970. cep->cconn = cconn;
  1971. write_unlock_bh(&csk->callback_lock);
  1972. cxgbi_conn_max_xmit_dlength(conn);
  1973. cxgbi_conn_max_recv_dlength(conn);
  1974. log_debug(1 << CXGBI_DBG_ISCSI,
  1975. "cls 0x%p,0x%p, ep 0x%p, cconn 0x%p, csk 0x%p.\n",
  1976. cls_session, cls_conn, ep, cconn, csk);
  1977. /* init recv engine */
  1978. iscsi_tcp_hdr_recv_prep(tcp_conn);
  1979. return 0;
  1980. }
  1981. EXPORT_SYMBOL_GPL(cxgbi_bind_conn);
  1982. struct iscsi_cls_session *cxgbi_create_session(struct iscsi_endpoint *ep,
  1983. u16 cmds_max, u16 qdepth,
  1984. u32 initial_cmdsn)
  1985. {
  1986. struct cxgbi_endpoint *cep;
  1987. struct cxgbi_hba *chba;
  1988. struct Scsi_Host *shost;
  1989. struct iscsi_cls_session *cls_session;
  1990. struct iscsi_session *session;
  1991. if (!ep) {
  1992. pr_err("missing endpoint.\n");
  1993. return NULL;
  1994. }
  1995. cep = ep->dd_data;
  1996. chba = cep->chba;
  1997. shost = chba->shost;
  1998. BUG_ON(chba != iscsi_host_priv(shost));
  1999. cls_session = iscsi_session_setup(chba->cdev->itp, shost,
  2000. cmds_max, 0,
  2001. sizeof(struct iscsi_tcp_task) +
  2002. sizeof(struct cxgbi_task_data),
  2003. initial_cmdsn, ISCSI_MAX_TARGET);
  2004. if (!cls_session)
  2005. return NULL;
  2006. session = cls_session->dd_data;
  2007. if (iscsi_tcp_r2tpool_alloc(session))
  2008. goto remove_session;
  2009. log_debug(1 << CXGBI_DBG_ISCSI,
  2010. "ep 0x%p, cls sess 0x%p.\n", ep, cls_session);
  2011. return cls_session;
  2012. remove_session:
  2013. iscsi_session_teardown(cls_session);
  2014. return NULL;
  2015. }
  2016. EXPORT_SYMBOL_GPL(cxgbi_create_session);
  2017. void cxgbi_destroy_session(struct iscsi_cls_session *cls_session)
  2018. {
  2019. log_debug(1 << CXGBI_DBG_ISCSI,
  2020. "cls sess 0x%p.\n", cls_session);
  2021. iscsi_tcp_r2tpool_free(cls_session->dd_data);
  2022. iscsi_session_teardown(cls_session);
  2023. }
  2024. EXPORT_SYMBOL_GPL(cxgbi_destroy_session);
  2025. int cxgbi_set_host_param(struct Scsi_Host *shost, enum iscsi_host_param param,
  2026. char *buf, int buflen)
  2027. {
  2028. struct cxgbi_hba *chba = iscsi_host_priv(shost);
  2029. if (!chba->ndev) {
  2030. shost_printk(KERN_ERR, shost, "Could not get host param. "
  2031. "netdev for host not set.\n");
  2032. return -ENODEV;
  2033. }
  2034. log_debug(1 << CXGBI_DBG_ISCSI,
  2035. "shost 0x%p, hba 0x%p,%s, param %d, buf(%d) %s.\n",
  2036. shost, chba, chba->ndev->name, param, buflen, buf);
  2037. switch (param) {
  2038. case ISCSI_HOST_PARAM_IPADDRESS:
  2039. {
  2040. __be32 addr = in_aton(buf);
  2041. log_debug(1 << CXGBI_DBG_ISCSI,
  2042. "hba %s, req. ipv4 %pI4.\n", chba->ndev->name, &addr);
  2043. cxgbi_set_iscsi_ipv4(chba, addr);
  2044. return 0;
  2045. }
  2046. case ISCSI_HOST_PARAM_HWADDRESS:
  2047. case ISCSI_HOST_PARAM_NETDEV_NAME:
  2048. return 0;
  2049. default:
  2050. return iscsi_host_set_param(shost, param, buf, buflen);
  2051. }
  2052. }
  2053. EXPORT_SYMBOL_GPL(cxgbi_set_host_param);
  2054. int cxgbi_get_host_param(struct Scsi_Host *shost, enum iscsi_host_param param,
  2055. char *buf)
  2056. {
  2057. struct cxgbi_hba *chba = iscsi_host_priv(shost);
  2058. int len = 0;
  2059. if (!chba->ndev) {
  2060. shost_printk(KERN_ERR, shost, "Could not get host param. "
  2061. "netdev for host not set.\n");
  2062. return -ENODEV;
  2063. }
  2064. log_debug(1 << CXGBI_DBG_ISCSI,
  2065. "shost 0x%p, hba 0x%p,%s, param %d.\n",
  2066. shost, chba, chba->ndev->name, param);
  2067. switch (param) {
  2068. case ISCSI_HOST_PARAM_HWADDRESS:
  2069. len = sysfs_format_mac(buf, chba->ndev->dev_addr, 6);
  2070. break;
  2071. case ISCSI_HOST_PARAM_NETDEV_NAME:
  2072. len = sprintf(buf, "%s\n", chba->ndev->name);
  2073. break;
  2074. case ISCSI_HOST_PARAM_IPADDRESS:
  2075. {
  2076. __be32 addr;
  2077. addr = cxgbi_get_iscsi_ipv4(chba);
  2078. len = sprintf(buf, "%pI4", &addr);
  2079. log_debug(1 << CXGBI_DBG_ISCSI,
  2080. "hba %s, ipv4 %pI4.\n", chba->ndev->name, &addr);
  2081. break;
  2082. }
  2083. default:
  2084. return iscsi_host_get_param(shost, param, buf);
  2085. }
  2086. return len;
  2087. }
  2088. EXPORT_SYMBOL_GPL(cxgbi_get_host_param);
  2089. struct iscsi_endpoint *cxgbi_ep_connect(struct Scsi_Host *shost,
  2090. struct sockaddr *dst_addr,
  2091. int non_blocking)
  2092. {
  2093. struct iscsi_endpoint *ep;
  2094. struct cxgbi_endpoint *cep;
  2095. struct cxgbi_hba *hba = NULL;
  2096. struct cxgbi_sock *csk;
  2097. int err = -EINVAL;
  2098. log_debug(1 << CXGBI_DBG_ISCSI | 1 << CXGBI_DBG_SOCK,
  2099. "shost 0x%p, non_blocking %d, dst_addr 0x%p.\n",
  2100. shost, non_blocking, dst_addr);
  2101. if (shost) {
  2102. hba = iscsi_host_priv(shost);
  2103. if (!hba) {
  2104. pr_info("shost 0x%p, priv NULL.\n", shost);
  2105. goto err_out;
  2106. }
  2107. }
  2108. csk = cxgbi_check_route(dst_addr);
  2109. if (IS_ERR(csk))
  2110. return (struct iscsi_endpoint *)csk;
  2111. cxgbi_sock_get(csk);
  2112. if (!hba)
  2113. hba = csk->cdev->hbas[csk->port_id];
  2114. else if (hba != csk->cdev->hbas[csk->port_id]) {
  2115. pr_info("Could not connect through requested host %u"
  2116. "hba 0x%p != 0x%p (%u).\n",
  2117. shost->host_no, hba,
  2118. csk->cdev->hbas[csk->port_id], csk->port_id);
  2119. err = -ENOSPC;
  2120. goto release_conn;
  2121. }
  2122. err = sock_get_port(csk);
  2123. if (err)
  2124. goto release_conn;
  2125. cxgbi_sock_set_state(csk, CTP_CONNECTING);
  2126. err = csk->cdev->csk_init_act_open(csk);
  2127. if (err)
  2128. goto release_conn;
  2129. if (cxgbi_sock_is_closing(csk)) {
  2130. err = -ENOSPC;
  2131. pr_info("csk 0x%p is closing.\n", csk);
  2132. goto release_conn;
  2133. }
  2134. ep = iscsi_create_endpoint(sizeof(*cep));
  2135. if (!ep) {
  2136. err = -ENOMEM;
  2137. pr_info("iscsi alloc ep, OOM.\n");
  2138. goto release_conn;
  2139. }
  2140. cep = ep->dd_data;
  2141. cep->csk = csk;
  2142. cep->chba = hba;
  2143. log_debug(1 << CXGBI_DBG_ISCSI | 1 << CXGBI_DBG_SOCK,
  2144. "ep 0x%p, cep 0x%p, csk 0x%p, hba 0x%p,%s.\n",
  2145. ep, cep, csk, hba, hba->ndev->name);
  2146. return ep;
  2147. release_conn:
  2148. cxgbi_sock_put(csk);
  2149. cxgbi_sock_closed(csk);
  2150. err_out:
  2151. return ERR_PTR(err);
  2152. }
  2153. EXPORT_SYMBOL_GPL(cxgbi_ep_connect);
  2154. int cxgbi_ep_poll(struct iscsi_endpoint *ep, int timeout_ms)
  2155. {
  2156. struct cxgbi_endpoint *cep = ep->dd_data;
  2157. struct cxgbi_sock *csk = cep->csk;
  2158. if (!cxgbi_sock_is_established(csk))
  2159. return 0;
  2160. return 1;
  2161. }
  2162. EXPORT_SYMBOL_GPL(cxgbi_ep_poll);
  2163. void cxgbi_ep_disconnect(struct iscsi_endpoint *ep)
  2164. {
  2165. struct cxgbi_endpoint *cep = ep->dd_data;
  2166. struct cxgbi_conn *cconn = cep->cconn;
  2167. struct cxgbi_sock *csk = cep->csk;
  2168. log_debug(1 << CXGBI_DBG_ISCSI | 1 << CXGBI_DBG_SOCK,
  2169. "ep 0x%p, cep 0x%p, cconn 0x%p, csk 0x%p,%u,0x%lx.\n",
  2170. ep, cep, cconn, csk, csk->state, csk->flags);
  2171. if (cconn && cconn->iconn) {
  2172. iscsi_suspend_tx(cconn->iconn);
  2173. write_lock_bh(&csk->callback_lock);
  2174. cep->csk->user_data = NULL;
  2175. cconn->cep = NULL;
  2176. write_unlock_bh(&csk->callback_lock);
  2177. }
  2178. iscsi_destroy_endpoint(ep);
  2179. if (likely(csk->state >= CTP_ESTABLISHED))
  2180. need_active_close(csk);
  2181. else
  2182. cxgbi_sock_closed(csk);
  2183. cxgbi_sock_put(csk);
  2184. }
  2185. EXPORT_SYMBOL_GPL(cxgbi_ep_disconnect);
  2186. int cxgbi_iscsi_init(struct iscsi_transport *itp,
  2187. struct scsi_transport_template **stt)
  2188. {
  2189. *stt = iscsi_register_transport(itp);
  2190. if (*stt == NULL) {
  2191. pr_err("unable to register %s transport 0x%p.\n",
  2192. itp->name, itp);
  2193. return -ENODEV;
  2194. }
  2195. log_debug(1 << CXGBI_DBG_ISCSI,
  2196. "%s, registered iscsi transport 0x%p.\n",
  2197. itp->name, stt);
  2198. return 0;
  2199. }
  2200. EXPORT_SYMBOL_GPL(cxgbi_iscsi_init);
  2201. void cxgbi_iscsi_cleanup(struct iscsi_transport *itp,
  2202. struct scsi_transport_template **stt)
  2203. {
  2204. if (*stt) {
  2205. log_debug(1 << CXGBI_DBG_ISCSI,
  2206. "de-register transport 0x%p, %s, stt 0x%p.\n",
  2207. itp, itp->name, *stt);
  2208. *stt = NULL;
  2209. iscsi_unregister_transport(itp);
  2210. }
  2211. }
  2212. EXPORT_SYMBOL_GPL(cxgbi_iscsi_cleanup);
  2213. static int __init libcxgbi_init_module(void)
  2214. {
  2215. sw_tag_idx_bits = (__ilog2_u32(ISCSI_ITT_MASK)) + 1;
  2216. sw_tag_age_bits = (__ilog2_u32(ISCSI_AGE_MASK)) + 1;
  2217. pr_info("tag itt 0x%x, %u bits, age 0x%x, %u bits.\n",
  2218. ISCSI_ITT_MASK, sw_tag_idx_bits,
  2219. ISCSI_AGE_MASK, sw_tag_age_bits);
  2220. ddp_setup_host_page_size();
  2221. return 0;
  2222. }
  2223. static void __exit libcxgbi_exit_module(void)
  2224. {
  2225. cxgbi_device_unregister_all(0xFF);
  2226. return;
  2227. }
  2228. module_init(libcxgbi_init_module);
  2229. module_exit(libcxgbi_exit_module);