libfcoe.c 37 KB

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  1. /*
  2. * Copyright (c) 2008-2009 Cisco Systems, Inc. All rights reserved.
  3. * Copyright (c) 2009 Intel Corporation. All rights reserved.
  4. *
  5. * This program is free software; you can redistribute it and/or modify it
  6. * under the terms and conditions of the GNU General Public License,
  7. * version 2, as published by the Free Software Foundation.
  8. *
  9. * This program is distributed in the hope it will be useful, but WITHOUT
  10. * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
  11. * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
  12. * more details.
  13. *
  14. * You should have received a copy of the GNU General Public License along with
  15. * this program; if not, write to the Free Software Foundation, Inc.,
  16. * 51 Franklin St - Fifth Floor, Boston, MA 02110-1301 USA.
  17. *
  18. * Maintained at www.Open-FCoE.org
  19. */
  20. #include <linux/types.h>
  21. #include <linux/module.h>
  22. #include <linux/kernel.h>
  23. #include <linux/list.h>
  24. #include <linux/spinlock.h>
  25. #include <linux/timer.h>
  26. #include <linux/netdevice.h>
  27. #include <linux/etherdevice.h>
  28. #include <linux/ethtool.h>
  29. #include <linux/if_ether.h>
  30. #include <linux/if_vlan.h>
  31. #include <linux/errno.h>
  32. #include <linux/bitops.h>
  33. #include <net/rtnetlink.h>
  34. #include <scsi/fc/fc_els.h>
  35. #include <scsi/fc/fc_fs.h>
  36. #include <scsi/fc/fc_fip.h>
  37. #include <scsi/fc/fc_encaps.h>
  38. #include <scsi/fc/fc_fcoe.h>
  39. #include <scsi/libfc.h>
  40. #include <scsi/libfcoe.h>
  41. MODULE_AUTHOR("Open-FCoE.org");
  42. MODULE_DESCRIPTION("FIP discovery protocol support for FCoE HBAs");
  43. MODULE_LICENSE("GPL v2");
  44. #define FCOE_CTLR_MIN_FKA 500 /* min keep alive (mS) */
  45. #define FCOE_CTLR_DEF_FKA FIP_DEF_FKA /* default keep alive (mS) */
  46. static void fcoe_ctlr_timeout(unsigned long);
  47. static void fcoe_ctlr_link_work(struct work_struct *);
  48. static void fcoe_ctlr_recv_work(struct work_struct *);
  49. static u8 fcoe_all_fcfs[ETH_ALEN] = FIP_ALL_FCF_MACS;
  50. unsigned int libfcoe_debug_logging;
  51. module_param_named(debug_logging, libfcoe_debug_logging, int, S_IRUGO|S_IWUSR);
  52. MODULE_PARM_DESC(debug_logging, "a bit mask of logging levels");
  53. #define LIBFCOE_LOGGING 0x01 /* General logging, not categorized */
  54. #define LIBFCOE_FIP_LOGGING 0x02 /* FIP logging */
  55. #define LIBFCOE_CHECK_LOGGING(LEVEL, CMD) \
  56. do { \
  57. if (unlikely(libfcoe_debug_logging & LEVEL)) \
  58. do { \
  59. CMD; \
  60. } while (0); \
  61. } while (0)
  62. #define LIBFCOE_DBG(fmt, args...) \
  63. LIBFCOE_CHECK_LOGGING(LIBFCOE_LOGGING, \
  64. printk(KERN_INFO "libfcoe: " fmt, ##args);)
  65. #define LIBFCOE_FIP_DBG(fip, fmt, args...) \
  66. LIBFCOE_CHECK_LOGGING(LIBFCOE_FIP_LOGGING, \
  67. printk(KERN_INFO "host%d: fip: " fmt, \
  68. (fip)->lp->host->host_no, ##args);)
  69. /**
  70. * fcoe_ctlr_mtu_valid() - Check if a FCF's MTU is valid
  71. * @fcf: The FCF to check
  72. *
  73. * Return non-zero if FCF fcoe_size has been validated.
  74. */
  75. static inline int fcoe_ctlr_mtu_valid(const struct fcoe_fcf *fcf)
  76. {
  77. return (fcf->flags & FIP_FL_SOL) != 0;
  78. }
  79. /**
  80. * fcoe_ctlr_fcf_usable() - Check if a FCF is usable
  81. * @fcf: The FCF to check
  82. *
  83. * Return non-zero if the FCF is usable.
  84. */
  85. static inline int fcoe_ctlr_fcf_usable(struct fcoe_fcf *fcf)
  86. {
  87. u16 flags = FIP_FL_SOL | FIP_FL_AVAIL;
  88. return (fcf->flags & flags) == flags;
  89. }
  90. /**
  91. * fcoe_ctlr_init() - Initialize the FCoE Controller instance
  92. * @fip: The FCoE controller to initialize
  93. */
  94. void fcoe_ctlr_init(struct fcoe_ctlr *fip)
  95. {
  96. fip->state = FIP_ST_LINK_WAIT;
  97. fip->mode = FIP_ST_AUTO;
  98. INIT_LIST_HEAD(&fip->fcfs);
  99. spin_lock_init(&fip->lock);
  100. fip->flogi_oxid = FC_XID_UNKNOWN;
  101. setup_timer(&fip->timer, fcoe_ctlr_timeout, (unsigned long)fip);
  102. INIT_WORK(&fip->link_work, fcoe_ctlr_link_work);
  103. INIT_WORK(&fip->recv_work, fcoe_ctlr_recv_work);
  104. skb_queue_head_init(&fip->fip_recv_list);
  105. }
  106. EXPORT_SYMBOL(fcoe_ctlr_init);
  107. /**
  108. * fcoe_ctlr_reset_fcfs() - Reset and free all FCFs for a controller
  109. * @fip: The FCoE controller whose FCFs are to be reset
  110. *
  111. * Called with &fcoe_ctlr lock held.
  112. */
  113. static void fcoe_ctlr_reset_fcfs(struct fcoe_ctlr *fip)
  114. {
  115. struct fcoe_fcf *fcf;
  116. struct fcoe_fcf *next;
  117. fip->sel_fcf = NULL;
  118. list_for_each_entry_safe(fcf, next, &fip->fcfs, list) {
  119. list_del(&fcf->list);
  120. kfree(fcf);
  121. }
  122. fip->fcf_count = 0;
  123. fip->sel_time = 0;
  124. }
  125. /**
  126. * fcoe_ctlr_destroy() - Disable and tear down a FCoE controller
  127. * @fip: The FCoE controller to tear down
  128. *
  129. * This is called by FCoE drivers before freeing the &fcoe_ctlr.
  130. *
  131. * The receive handler will have been deleted before this to guarantee
  132. * that no more recv_work will be scheduled.
  133. *
  134. * The timer routine will simply return once we set FIP_ST_DISABLED.
  135. * This guarantees that no further timeouts or work will be scheduled.
  136. */
  137. void fcoe_ctlr_destroy(struct fcoe_ctlr *fip)
  138. {
  139. cancel_work_sync(&fip->recv_work);
  140. skb_queue_purge(&fip->fip_recv_list);
  141. spin_lock_bh(&fip->lock);
  142. fip->state = FIP_ST_DISABLED;
  143. fcoe_ctlr_reset_fcfs(fip);
  144. spin_unlock_bh(&fip->lock);
  145. del_timer_sync(&fip->timer);
  146. cancel_work_sync(&fip->link_work);
  147. }
  148. EXPORT_SYMBOL(fcoe_ctlr_destroy);
  149. /**
  150. * fcoe_ctlr_fcoe_size() - Return the maximum FCoE size required for VN_Port
  151. * @fip: The FCoE controller to get the maximum FCoE size from
  152. *
  153. * Returns the maximum packet size including the FCoE header and trailer,
  154. * but not including any Ethernet or VLAN headers.
  155. */
  156. static inline u32 fcoe_ctlr_fcoe_size(struct fcoe_ctlr *fip)
  157. {
  158. /*
  159. * Determine the max FCoE frame size allowed, including
  160. * FCoE header and trailer.
  161. * Note: lp->mfs is currently the payload size, not the frame size.
  162. */
  163. return fip->lp->mfs + sizeof(struct fc_frame_header) +
  164. sizeof(struct fcoe_hdr) + sizeof(struct fcoe_crc_eof);
  165. }
  166. /**
  167. * fcoe_ctlr_solicit() - Send a FIP solicitation
  168. * @fip: The FCoE controller to send the solicitation on
  169. * @fcf: The destination FCF (if NULL, a multicast solicitation is sent)
  170. */
  171. static void fcoe_ctlr_solicit(struct fcoe_ctlr *fip, struct fcoe_fcf *fcf)
  172. {
  173. struct sk_buff *skb;
  174. struct fip_sol {
  175. struct ethhdr eth;
  176. struct fip_header fip;
  177. struct {
  178. struct fip_mac_desc mac;
  179. struct fip_wwn_desc wwnn;
  180. struct fip_size_desc size;
  181. } __attribute__((packed)) desc;
  182. } __attribute__((packed)) *sol;
  183. u32 fcoe_size;
  184. skb = dev_alloc_skb(sizeof(*sol));
  185. if (!skb)
  186. return;
  187. sol = (struct fip_sol *)skb->data;
  188. memset(sol, 0, sizeof(*sol));
  189. memcpy(sol->eth.h_dest, fcf ? fcf->fcf_mac : fcoe_all_fcfs, ETH_ALEN);
  190. memcpy(sol->eth.h_source, fip->ctl_src_addr, ETH_ALEN);
  191. sol->eth.h_proto = htons(ETH_P_FIP);
  192. sol->fip.fip_ver = FIP_VER_ENCAPS(FIP_VER);
  193. sol->fip.fip_op = htons(FIP_OP_DISC);
  194. sol->fip.fip_subcode = FIP_SC_SOL;
  195. sol->fip.fip_dl_len = htons(sizeof(sol->desc) / FIP_BPW);
  196. sol->fip.fip_flags = htons(FIP_FL_FPMA);
  197. if (fip->spma)
  198. sol->fip.fip_flags |= htons(FIP_FL_SPMA);
  199. sol->desc.mac.fd_desc.fip_dtype = FIP_DT_MAC;
  200. sol->desc.mac.fd_desc.fip_dlen = sizeof(sol->desc.mac) / FIP_BPW;
  201. memcpy(sol->desc.mac.fd_mac, fip->ctl_src_addr, ETH_ALEN);
  202. sol->desc.wwnn.fd_desc.fip_dtype = FIP_DT_NAME;
  203. sol->desc.wwnn.fd_desc.fip_dlen = sizeof(sol->desc.wwnn) / FIP_BPW;
  204. put_unaligned_be64(fip->lp->wwnn, &sol->desc.wwnn.fd_wwn);
  205. fcoe_size = fcoe_ctlr_fcoe_size(fip);
  206. sol->desc.size.fd_desc.fip_dtype = FIP_DT_FCOE_SIZE;
  207. sol->desc.size.fd_desc.fip_dlen = sizeof(sol->desc.size) / FIP_BPW;
  208. sol->desc.size.fd_size = htons(fcoe_size);
  209. skb_put(skb, sizeof(*sol));
  210. skb->protocol = htons(ETH_P_FIP);
  211. skb_reset_mac_header(skb);
  212. skb_reset_network_header(skb);
  213. fip->send(fip, skb);
  214. if (!fcf)
  215. fip->sol_time = jiffies;
  216. }
  217. /**
  218. * fcoe_ctlr_link_up() - Start FCoE controller
  219. * @fip: The FCoE controller to start
  220. *
  221. * Called from the LLD when the network link is ready.
  222. */
  223. void fcoe_ctlr_link_up(struct fcoe_ctlr *fip)
  224. {
  225. spin_lock_bh(&fip->lock);
  226. if (fip->state == FIP_ST_NON_FIP || fip->state == FIP_ST_AUTO) {
  227. fip->last_link = 1;
  228. fip->link = 1;
  229. spin_unlock_bh(&fip->lock);
  230. fc_linkup(fip->lp);
  231. } else if (fip->state == FIP_ST_LINK_WAIT) {
  232. fip->state = fip->mode;
  233. fip->last_link = 1;
  234. fip->link = 1;
  235. spin_unlock_bh(&fip->lock);
  236. if (fip->state == FIP_ST_AUTO)
  237. LIBFCOE_FIP_DBG(fip, "%s", "setting AUTO mode.\n");
  238. fc_linkup(fip->lp);
  239. fcoe_ctlr_solicit(fip, NULL);
  240. } else
  241. spin_unlock_bh(&fip->lock);
  242. }
  243. EXPORT_SYMBOL(fcoe_ctlr_link_up);
  244. /**
  245. * fcoe_ctlr_reset() - Reset a FCoE controller
  246. * @fip: The FCoE controller to reset
  247. */
  248. static void fcoe_ctlr_reset(struct fcoe_ctlr *fip)
  249. {
  250. fcoe_ctlr_reset_fcfs(fip);
  251. del_timer(&fip->timer);
  252. fip->ctlr_ka_time = 0;
  253. fip->port_ka_time = 0;
  254. fip->sol_time = 0;
  255. fip->flogi_oxid = FC_XID_UNKNOWN;
  256. fip->map_dest = 0;
  257. }
  258. /**
  259. * fcoe_ctlr_link_down() - Stop a FCoE controller
  260. * @fip: The FCoE controller to be stopped
  261. *
  262. * Returns non-zero if the link was up and now isn't.
  263. *
  264. * Called from the LLD when the network link is not ready.
  265. * There may be multiple calls while the link is down.
  266. */
  267. int fcoe_ctlr_link_down(struct fcoe_ctlr *fip)
  268. {
  269. int link_dropped;
  270. LIBFCOE_FIP_DBG(fip, "link down.\n");
  271. spin_lock_bh(&fip->lock);
  272. fcoe_ctlr_reset(fip);
  273. link_dropped = fip->link;
  274. fip->link = 0;
  275. fip->last_link = 0;
  276. fip->state = FIP_ST_LINK_WAIT;
  277. spin_unlock_bh(&fip->lock);
  278. if (link_dropped)
  279. fc_linkdown(fip->lp);
  280. return link_dropped;
  281. }
  282. EXPORT_SYMBOL(fcoe_ctlr_link_down);
  283. /**
  284. * fcoe_ctlr_send_keep_alive() - Send a keep-alive to the selected FCF
  285. * @fip: The FCoE controller to send the FKA on
  286. * @lport: libfc fc_lport to send from
  287. * @ports: 0 for controller keep-alive, 1 for port keep-alive
  288. * @sa: The source MAC address
  289. *
  290. * A controller keep-alive is sent every fka_period (typically 8 seconds).
  291. * The source MAC is the native MAC address.
  292. *
  293. * A port keep-alive is sent every 90 seconds while logged in.
  294. * The source MAC is the assigned mapped source address.
  295. * The destination is the FCF's F-port.
  296. */
  297. static void fcoe_ctlr_send_keep_alive(struct fcoe_ctlr *fip,
  298. struct fc_lport *lport,
  299. int ports, u8 *sa)
  300. {
  301. struct sk_buff *skb;
  302. struct fip_kal {
  303. struct ethhdr eth;
  304. struct fip_header fip;
  305. struct fip_mac_desc mac;
  306. } __attribute__((packed)) *kal;
  307. struct fip_vn_desc *vn;
  308. u32 len;
  309. struct fc_lport *lp;
  310. struct fcoe_fcf *fcf;
  311. fcf = fip->sel_fcf;
  312. lp = fip->lp;
  313. if (!fcf || !fc_host_port_id(lp->host))
  314. return;
  315. len = sizeof(*kal) + ports * sizeof(*vn);
  316. skb = dev_alloc_skb(len);
  317. if (!skb)
  318. return;
  319. kal = (struct fip_kal *)skb->data;
  320. memset(kal, 0, len);
  321. memcpy(kal->eth.h_dest, fcf->fcf_mac, ETH_ALEN);
  322. memcpy(kal->eth.h_source, sa, ETH_ALEN);
  323. kal->eth.h_proto = htons(ETH_P_FIP);
  324. kal->fip.fip_ver = FIP_VER_ENCAPS(FIP_VER);
  325. kal->fip.fip_op = htons(FIP_OP_CTRL);
  326. kal->fip.fip_subcode = FIP_SC_KEEP_ALIVE;
  327. kal->fip.fip_dl_len = htons((sizeof(kal->mac) +
  328. ports * sizeof(*vn)) / FIP_BPW);
  329. kal->fip.fip_flags = htons(FIP_FL_FPMA);
  330. if (fip->spma)
  331. kal->fip.fip_flags |= htons(FIP_FL_SPMA);
  332. kal->mac.fd_desc.fip_dtype = FIP_DT_MAC;
  333. kal->mac.fd_desc.fip_dlen = sizeof(kal->mac) / FIP_BPW;
  334. memcpy(kal->mac.fd_mac, fip->ctl_src_addr, ETH_ALEN);
  335. if (ports) {
  336. vn = (struct fip_vn_desc *)(kal + 1);
  337. vn->fd_desc.fip_dtype = FIP_DT_VN_ID;
  338. vn->fd_desc.fip_dlen = sizeof(*vn) / FIP_BPW;
  339. memcpy(vn->fd_mac, fip->get_src_addr(lport), ETH_ALEN);
  340. hton24(vn->fd_fc_id, fc_host_port_id(lp->host));
  341. put_unaligned_be64(lp->wwpn, &vn->fd_wwpn);
  342. }
  343. skb_put(skb, len);
  344. skb->protocol = htons(ETH_P_FIP);
  345. skb_reset_mac_header(skb);
  346. skb_reset_network_header(skb);
  347. fip->send(fip, skb);
  348. }
  349. /**
  350. * fcoe_ctlr_encaps() - Encapsulate an ELS frame for FIP, without sending it
  351. * @fip: The FCoE controller for the ELS frame
  352. * @dtype: The FIP descriptor type for the frame
  353. * @skb: The FCoE ELS frame including FC header but no FCoE headers
  354. *
  355. * Returns non-zero error code on failure.
  356. *
  357. * The caller must check that the length is a multiple of 4.
  358. *
  359. * The @skb must have enough headroom (28 bytes) and tailroom (8 bytes).
  360. * Headroom includes the FIP encapsulation description, FIP header, and
  361. * Ethernet header. The tailroom is for the FIP MAC descriptor.
  362. */
  363. static int fcoe_ctlr_encaps(struct fcoe_ctlr *fip, struct fc_lport *lport,
  364. u8 dtype, struct sk_buff *skb)
  365. {
  366. struct fip_encaps_head {
  367. struct ethhdr eth;
  368. struct fip_header fip;
  369. struct fip_encaps encaps;
  370. } __attribute__((packed)) *cap;
  371. struct fip_mac_desc *mac;
  372. struct fcoe_fcf *fcf;
  373. size_t dlen;
  374. u16 fip_flags;
  375. fcf = fip->sel_fcf;
  376. if (!fcf)
  377. return -ENODEV;
  378. /* set flags according to both FCF and lport's capability on SPMA */
  379. fip_flags = fcf->flags;
  380. fip_flags &= fip->spma ? FIP_FL_SPMA | FIP_FL_FPMA : FIP_FL_FPMA;
  381. if (!fip_flags)
  382. return -ENODEV;
  383. dlen = sizeof(struct fip_encaps) + skb->len; /* len before push */
  384. cap = (struct fip_encaps_head *)skb_push(skb, sizeof(*cap));
  385. memset(cap, 0, sizeof(*cap));
  386. memcpy(cap->eth.h_dest, fcf->fcf_mac, ETH_ALEN);
  387. memcpy(cap->eth.h_source, fip->ctl_src_addr, ETH_ALEN);
  388. cap->eth.h_proto = htons(ETH_P_FIP);
  389. cap->fip.fip_ver = FIP_VER_ENCAPS(FIP_VER);
  390. cap->fip.fip_op = htons(FIP_OP_LS);
  391. cap->fip.fip_subcode = FIP_SC_REQ;
  392. cap->fip.fip_dl_len = htons((dlen + sizeof(*mac)) / FIP_BPW);
  393. cap->fip.fip_flags = htons(fip_flags);
  394. cap->encaps.fd_desc.fip_dtype = dtype;
  395. cap->encaps.fd_desc.fip_dlen = dlen / FIP_BPW;
  396. mac = (struct fip_mac_desc *)skb_put(skb, sizeof(*mac));
  397. memset(mac, 0, sizeof(mac));
  398. mac->fd_desc.fip_dtype = FIP_DT_MAC;
  399. mac->fd_desc.fip_dlen = sizeof(*mac) / FIP_BPW;
  400. if (dtype != FIP_DT_FLOGI && dtype != FIP_DT_FDISC)
  401. memcpy(mac->fd_mac, fip->get_src_addr(lport), ETH_ALEN);
  402. else if (fip->spma)
  403. memcpy(mac->fd_mac, fip->ctl_src_addr, ETH_ALEN);
  404. skb->protocol = htons(ETH_P_FIP);
  405. skb_reset_mac_header(skb);
  406. skb_reset_network_header(skb);
  407. return 0;
  408. }
  409. /**
  410. * fcoe_ctlr_els_send() - Send an ELS frame encapsulated by FIP if appropriate.
  411. * @fip: FCoE controller.
  412. * @lport: libfc fc_lport to send from
  413. * @skb: FCoE ELS frame including FC header but no FCoE headers.
  414. *
  415. * Returns a non-zero error code if the frame should not be sent.
  416. * Returns zero if the caller should send the frame with FCoE encapsulation.
  417. *
  418. * The caller must check that the length is a multiple of 4.
  419. * The SKB must have enough headroom (28 bytes) and tailroom (8 bytes).
  420. */
  421. int fcoe_ctlr_els_send(struct fcoe_ctlr *fip, struct fc_lport *lport,
  422. struct sk_buff *skb)
  423. {
  424. struct fc_frame_header *fh;
  425. u16 old_xid;
  426. u8 op;
  427. u8 mac[ETH_ALEN];
  428. fh = (struct fc_frame_header *)skb->data;
  429. op = *(u8 *)(fh + 1);
  430. if (op == ELS_FLOGI) {
  431. old_xid = fip->flogi_oxid;
  432. fip->flogi_oxid = ntohs(fh->fh_ox_id);
  433. if (fip->state == FIP_ST_AUTO) {
  434. if (old_xid == FC_XID_UNKNOWN)
  435. fip->flogi_count = 0;
  436. fip->flogi_count++;
  437. if (fip->flogi_count < 3)
  438. goto drop;
  439. fip->map_dest = 1;
  440. return 0;
  441. }
  442. if (fip->state == FIP_ST_NON_FIP)
  443. fip->map_dest = 1;
  444. }
  445. if (fip->state == FIP_ST_NON_FIP)
  446. return 0;
  447. if (!fip->sel_fcf)
  448. goto drop;
  449. switch (op) {
  450. case ELS_FLOGI:
  451. op = FIP_DT_FLOGI;
  452. break;
  453. case ELS_FDISC:
  454. if (ntoh24(fh->fh_s_id))
  455. return 0;
  456. op = FIP_DT_FDISC;
  457. break;
  458. case ELS_LOGO:
  459. if (fip->state != FIP_ST_ENABLED)
  460. return 0;
  461. if (ntoh24(fh->fh_d_id) != FC_FID_FLOGI)
  462. return 0;
  463. op = FIP_DT_LOGO;
  464. break;
  465. case ELS_LS_ACC:
  466. if (fip->flogi_oxid == FC_XID_UNKNOWN)
  467. return 0;
  468. if (!ntoh24(fh->fh_s_id))
  469. return 0;
  470. if (fip->state == FIP_ST_AUTO)
  471. return 0;
  472. /*
  473. * Here we must've gotten an SID by accepting an FLOGI
  474. * from a point-to-point connection. Switch to using
  475. * the source mac based on the SID. The destination
  476. * MAC in this case would have been set by receving the
  477. * FLOGI.
  478. */
  479. fip->flogi_oxid = FC_XID_UNKNOWN;
  480. fc_fcoe_set_mac(mac, fh->fh_d_id);
  481. fip->update_mac(lport, mac);
  482. return 0;
  483. default:
  484. if (fip->state != FIP_ST_ENABLED)
  485. goto drop;
  486. return 0;
  487. }
  488. if (fcoe_ctlr_encaps(fip, lport, op, skb))
  489. goto drop;
  490. fip->send(fip, skb);
  491. return -EINPROGRESS;
  492. drop:
  493. kfree_skb(skb);
  494. return -EINVAL;
  495. }
  496. EXPORT_SYMBOL(fcoe_ctlr_els_send);
  497. /**
  498. * fcoe_ctlr_age_fcfs() - Reset and free all old FCFs for a controller
  499. * @fip: The FCoE controller to free FCFs on
  500. *
  501. * Called with lock held.
  502. *
  503. * An FCF is considered old if we have missed three advertisements.
  504. * That is, there have been no valid advertisement from it for three
  505. * times its keep-alive period including fuzz.
  506. *
  507. * In addition, determine the time when an FCF selection can occur.
  508. */
  509. static void fcoe_ctlr_age_fcfs(struct fcoe_ctlr *fip)
  510. {
  511. struct fcoe_fcf *fcf;
  512. struct fcoe_fcf *next;
  513. unsigned long sel_time = 0;
  514. list_for_each_entry_safe(fcf, next, &fip->fcfs, list) {
  515. if (time_after(jiffies, fcf->time + fcf->fka_period * 3 +
  516. msecs_to_jiffies(FIP_FCF_FUZZ * 3))) {
  517. if (fip->sel_fcf == fcf)
  518. fip->sel_fcf = NULL;
  519. list_del(&fcf->list);
  520. WARN_ON(!fip->fcf_count);
  521. fip->fcf_count--;
  522. kfree(fcf);
  523. } else if (fcoe_ctlr_mtu_valid(fcf) &&
  524. (!sel_time || time_before(sel_time, fcf->time))) {
  525. sel_time = fcf->time;
  526. }
  527. }
  528. if (sel_time) {
  529. sel_time += msecs_to_jiffies(FCOE_CTLR_START_DELAY);
  530. fip->sel_time = sel_time;
  531. if (time_before(sel_time, fip->timer.expires))
  532. mod_timer(&fip->timer, sel_time);
  533. } else {
  534. fip->sel_time = 0;
  535. }
  536. }
  537. /**
  538. * fcoe_ctlr_parse_adv() - Decode a FIP advertisement into a new FCF entry
  539. * @fip: The FCoE controller receiving the advertisement
  540. * @skb: The received FIP advertisement frame
  541. * @fcf: The resulting FCF entry
  542. *
  543. * Returns zero on a valid parsed advertisement,
  544. * otherwise returns non zero value.
  545. */
  546. static int fcoe_ctlr_parse_adv(struct fcoe_ctlr *fip,
  547. struct sk_buff *skb, struct fcoe_fcf *fcf)
  548. {
  549. struct fip_header *fiph;
  550. struct fip_desc *desc = NULL;
  551. struct fip_wwn_desc *wwn;
  552. struct fip_fab_desc *fab;
  553. struct fip_fka_desc *fka;
  554. unsigned long t;
  555. size_t rlen;
  556. size_t dlen;
  557. memset(fcf, 0, sizeof(*fcf));
  558. fcf->fka_period = msecs_to_jiffies(FCOE_CTLR_DEF_FKA);
  559. fiph = (struct fip_header *)skb->data;
  560. fcf->flags = ntohs(fiph->fip_flags);
  561. rlen = ntohs(fiph->fip_dl_len) * 4;
  562. if (rlen + sizeof(*fiph) > skb->len)
  563. return -EINVAL;
  564. desc = (struct fip_desc *)(fiph + 1);
  565. while (rlen > 0) {
  566. dlen = desc->fip_dlen * FIP_BPW;
  567. if (dlen < sizeof(*desc) || dlen > rlen)
  568. return -EINVAL;
  569. switch (desc->fip_dtype) {
  570. case FIP_DT_PRI:
  571. if (dlen != sizeof(struct fip_pri_desc))
  572. goto len_err;
  573. fcf->pri = ((struct fip_pri_desc *)desc)->fd_pri;
  574. break;
  575. case FIP_DT_MAC:
  576. if (dlen != sizeof(struct fip_mac_desc))
  577. goto len_err;
  578. memcpy(fcf->fcf_mac,
  579. ((struct fip_mac_desc *)desc)->fd_mac,
  580. ETH_ALEN);
  581. if (!is_valid_ether_addr(fcf->fcf_mac)) {
  582. LIBFCOE_FIP_DBG(fip, "Invalid MAC address "
  583. "in FIP adv\n");
  584. return -EINVAL;
  585. }
  586. break;
  587. case FIP_DT_NAME:
  588. if (dlen != sizeof(struct fip_wwn_desc))
  589. goto len_err;
  590. wwn = (struct fip_wwn_desc *)desc;
  591. fcf->switch_name = get_unaligned_be64(&wwn->fd_wwn);
  592. break;
  593. case FIP_DT_FAB:
  594. if (dlen != sizeof(struct fip_fab_desc))
  595. goto len_err;
  596. fab = (struct fip_fab_desc *)desc;
  597. fcf->fabric_name = get_unaligned_be64(&fab->fd_wwn);
  598. fcf->vfid = ntohs(fab->fd_vfid);
  599. fcf->fc_map = ntoh24(fab->fd_map);
  600. break;
  601. case FIP_DT_FKA:
  602. if (dlen != sizeof(struct fip_fka_desc))
  603. goto len_err;
  604. fka = (struct fip_fka_desc *)desc;
  605. t = ntohl(fka->fd_fka_period);
  606. if (t >= FCOE_CTLR_MIN_FKA)
  607. fcf->fka_period = msecs_to_jiffies(t);
  608. break;
  609. case FIP_DT_MAP_OUI:
  610. case FIP_DT_FCOE_SIZE:
  611. case FIP_DT_FLOGI:
  612. case FIP_DT_FDISC:
  613. case FIP_DT_LOGO:
  614. case FIP_DT_ELP:
  615. default:
  616. LIBFCOE_FIP_DBG(fip, "unexpected descriptor type %x "
  617. "in FIP adv\n", desc->fip_dtype);
  618. /* standard says ignore unknown descriptors >= 128 */
  619. if (desc->fip_dtype < FIP_DT_VENDOR_BASE)
  620. return -EINVAL;
  621. continue;
  622. }
  623. desc = (struct fip_desc *)((char *)desc + dlen);
  624. rlen -= dlen;
  625. }
  626. if (!fcf->fc_map || (fcf->fc_map & 0x10000))
  627. return -EINVAL;
  628. if (!fcf->switch_name || !fcf->fabric_name)
  629. return -EINVAL;
  630. return 0;
  631. len_err:
  632. LIBFCOE_FIP_DBG(fip, "FIP length error in descriptor type %x len %zu\n",
  633. desc->fip_dtype, dlen);
  634. return -EINVAL;
  635. }
  636. /**
  637. * fcoe_ctlr_recv_adv() - Handle an incoming advertisement
  638. * @fip: The FCoE controller receiving the advertisement
  639. * @skb: The received FIP packet
  640. */
  641. static void fcoe_ctlr_recv_adv(struct fcoe_ctlr *fip, struct sk_buff *skb)
  642. {
  643. struct fcoe_fcf *fcf;
  644. struct fcoe_fcf new;
  645. struct fcoe_fcf *found;
  646. unsigned long sol_tov = msecs_to_jiffies(FCOE_CTRL_SOL_TOV);
  647. int first = 0;
  648. int mtu_valid;
  649. if (fcoe_ctlr_parse_adv(fip, skb, &new))
  650. return;
  651. spin_lock_bh(&fip->lock);
  652. first = list_empty(&fip->fcfs);
  653. found = NULL;
  654. list_for_each_entry(fcf, &fip->fcfs, list) {
  655. if (fcf->switch_name == new.switch_name &&
  656. fcf->fabric_name == new.fabric_name &&
  657. fcf->fc_map == new.fc_map &&
  658. compare_ether_addr(fcf->fcf_mac, new.fcf_mac) == 0) {
  659. found = fcf;
  660. break;
  661. }
  662. }
  663. if (!found) {
  664. if (fip->fcf_count >= FCOE_CTLR_FCF_LIMIT)
  665. goto out;
  666. fcf = kmalloc(sizeof(*fcf), GFP_ATOMIC);
  667. if (!fcf)
  668. goto out;
  669. fip->fcf_count++;
  670. memcpy(fcf, &new, sizeof(new));
  671. list_add(&fcf->list, &fip->fcfs);
  672. } else {
  673. /*
  674. * Flags in advertisements are ignored once the FCF is
  675. * selected. Flags in unsolicited advertisements are
  676. * ignored after a usable solicited advertisement
  677. * has been received.
  678. */
  679. if (fcf == fip->sel_fcf) {
  680. fip->ctlr_ka_time -= fcf->fka_period;
  681. fip->ctlr_ka_time += new.fka_period;
  682. if (time_before(fip->ctlr_ka_time, fip->timer.expires))
  683. mod_timer(&fip->timer, fip->ctlr_ka_time);
  684. } else if (!fcoe_ctlr_fcf_usable(fcf))
  685. fcf->flags = new.flags;
  686. fcf->fka_period = new.fka_period;
  687. memcpy(fcf->fcf_mac, new.fcf_mac, ETH_ALEN);
  688. }
  689. mtu_valid = fcoe_ctlr_mtu_valid(fcf);
  690. fcf->time = jiffies;
  691. if (!found) {
  692. LIBFCOE_FIP_DBG(fip, "New FCF for fab %llx map %x val %d\n",
  693. fcf->fabric_name, fcf->fc_map, mtu_valid);
  694. }
  695. /*
  696. * If this advertisement is not solicited and our max receive size
  697. * hasn't been verified, send a solicited advertisement.
  698. */
  699. if (!mtu_valid)
  700. fcoe_ctlr_solicit(fip, fcf);
  701. /*
  702. * If its been a while since we did a solicit, and this is
  703. * the first advertisement we've received, do a multicast
  704. * solicitation to gather as many advertisements as we can
  705. * before selection occurs.
  706. */
  707. if (first && time_after(jiffies, fip->sol_time + sol_tov))
  708. fcoe_ctlr_solicit(fip, NULL);
  709. /*
  710. * If this is the first validated FCF, note the time and
  711. * set a timer to trigger selection.
  712. */
  713. if (mtu_valid && !fip->sel_time && fcoe_ctlr_fcf_usable(fcf)) {
  714. fip->sel_time = jiffies +
  715. msecs_to_jiffies(FCOE_CTLR_START_DELAY);
  716. if (!timer_pending(&fip->timer) ||
  717. time_before(fip->sel_time, fip->timer.expires))
  718. mod_timer(&fip->timer, fip->sel_time);
  719. }
  720. out:
  721. spin_unlock_bh(&fip->lock);
  722. }
  723. /**
  724. * fcoe_ctlr_recv_els() - Handle an incoming FIP encapsulated ELS frame
  725. * @fip: The FCoE controller which received the packet
  726. * @skb: The received FIP packet
  727. */
  728. static void fcoe_ctlr_recv_els(struct fcoe_ctlr *fip, struct sk_buff *skb)
  729. {
  730. struct fc_lport *lport = fip->lp;
  731. struct fip_header *fiph;
  732. struct fc_frame *fp = (struct fc_frame *)skb;
  733. struct fc_frame_header *fh = NULL;
  734. struct fip_desc *desc;
  735. struct fip_encaps *els;
  736. struct fcoe_dev_stats *stats;
  737. enum fip_desc_type els_dtype = 0;
  738. u8 els_op;
  739. u8 sub;
  740. u8 granted_mac[ETH_ALEN] = { 0 };
  741. size_t els_len = 0;
  742. size_t rlen;
  743. size_t dlen;
  744. fiph = (struct fip_header *)skb->data;
  745. sub = fiph->fip_subcode;
  746. if (sub != FIP_SC_REQ && sub != FIP_SC_REP)
  747. goto drop;
  748. rlen = ntohs(fiph->fip_dl_len) * 4;
  749. if (rlen + sizeof(*fiph) > skb->len)
  750. goto drop;
  751. desc = (struct fip_desc *)(fiph + 1);
  752. while (rlen > 0) {
  753. dlen = desc->fip_dlen * FIP_BPW;
  754. if (dlen < sizeof(*desc) || dlen > rlen)
  755. goto drop;
  756. switch (desc->fip_dtype) {
  757. case FIP_DT_MAC:
  758. if (dlen != sizeof(struct fip_mac_desc))
  759. goto len_err;
  760. memcpy(granted_mac,
  761. ((struct fip_mac_desc *)desc)->fd_mac,
  762. ETH_ALEN);
  763. if (!is_valid_ether_addr(granted_mac)) {
  764. LIBFCOE_FIP_DBG(fip, "Invalid MAC address "
  765. "in FIP ELS\n");
  766. goto drop;
  767. }
  768. memcpy(fr_cb(fp)->granted_mac, granted_mac, ETH_ALEN);
  769. break;
  770. case FIP_DT_FLOGI:
  771. case FIP_DT_FDISC:
  772. case FIP_DT_LOGO:
  773. case FIP_DT_ELP:
  774. if (fh)
  775. goto drop;
  776. if (dlen < sizeof(*els) + sizeof(*fh) + 1)
  777. goto len_err;
  778. els_len = dlen - sizeof(*els);
  779. els = (struct fip_encaps *)desc;
  780. fh = (struct fc_frame_header *)(els + 1);
  781. els_dtype = desc->fip_dtype;
  782. break;
  783. default:
  784. LIBFCOE_FIP_DBG(fip, "unexpected descriptor type %x "
  785. "in FIP adv\n", desc->fip_dtype);
  786. /* standard says ignore unknown descriptors >= 128 */
  787. if (desc->fip_dtype < FIP_DT_VENDOR_BASE)
  788. goto drop;
  789. continue;
  790. }
  791. desc = (struct fip_desc *)((char *)desc + dlen);
  792. rlen -= dlen;
  793. }
  794. if (!fh)
  795. goto drop;
  796. els_op = *(u8 *)(fh + 1);
  797. if (els_dtype == FIP_DT_FLOGI && sub == FIP_SC_REP &&
  798. fip->flogi_oxid == ntohs(fh->fh_ox_id) &&
  799. els_op == ELS_LS_ACC && is_valid_ether_addr(granted_mac))
  800. fip->flogi_oxid = FC_XID_UNKNOWN;
  801. /*
  802. * Convert skb into an fc_frame containing only the ELS.
  803. */
  804. skb_pull(skb, (u8 *)fh - skb->data);
  805. skb_trim(skb, els_len);
  806. fp = (struct fc_frame *)skb;
  807. fc_frame_init(fp);
  808. fr_sof(fp) = FC_SOF_I3;
  809. fr_eof(fp) = FC_EOF_T;
  810. fr_dev(fp) = lport;
  811. stats = fc_lport_get_stats(lport);
  812. stats->RxFrames++;
  813. stats->RxWords += skb->len / FIP_BPW;
  814. fc_exch_recv(lport, fp);
  815. return;
  816. len_err:
  817. LIBFCOE_FIP_DBG(fip, "FIP length error in descriptor type %x len %zu\n",
  818. desc->fip_dtype, dlen);
  819. drop:
  820. kfree_skb(skb);
  821. }
  822. /**
  823. * fcoe_ctlr_recv_els() - Handle an incoming link reset frame
  824. * @fip: The FCoE controller that received the frame
  825. * @fh: The received FIP header
  826. *
  827. * There may be multiple VN_Port descriptors.
  828. * The overall length has already been checked.
  829. */
  830. static void fcoe_ctlr_recv_clr_vlink(struct fcoe_ctlr *fip,
  831. struct fip_header *fh)
  832. {
  833. struct fip_desc *desc;
  834. struct fip_mac_desc *mp;
  835. struct fip_wwn_desc *wp;
  836. struct fip_vn_desc *vp;
  837. size_t rlen;
  838. size_t dlen;
  839. struct fcoe_fcf *fcf = fip->sel_fcf;
  840. struct fc_lport *lport = fip->lp;
  841. u32 desc_mask;
  842. LIBFCOE_FIP_DBG(fip, "Clear Virtual Link received\n");
  843. if (!fcf)
  844. return;
  845. if (!fcf || !fc_host_port_id(lport->host))
  846. return;
  847. /*
  848. * mask of required descriptors. Validating each one clears its bit.
  849. */
  850. desc_mask = BIT(FIP_DT_MAC) | BIT(FIP_DT_NAME) | BIT(FIP_DT_VN_ID);
  851. rlen = ntohs(fh->fip_dl_len) * FIP_BPW;
  852. desc = (struct fip_desc *)(fh + 1);
  853. while (rlen >= sizeof(*desc)) {
  854. dlen = desc->fip_dlen * FIP_BPW;
  855. if (dlen > rlen)
  856. return;
  857. switch (desc->fip_dtype) {
  858. case FIP_DT_MAC:
  859. mp = (struct fip_mac_desc *)desc;
  860. if (dlen < sizeof(*mp))
  861. return;
  862. if (compare_ether_addr(mp->fd_mac, fcf->fcf_mac))
  863. return;
  864. desc_mask &= ~BIT(FIP_DT_MAC);
  865. break;
  866. case FIP_DT_NAME:
  867. wp = (struct fip_wwn_desc *)desc;
  868. if (dlen < sizeof(*wp))
  869. return;
  870. if (get_unaligned_be64(&wp->fd_wwn) != fcf->switch_name)
  871. return;
  872. desc_mask &= ~BIT(FIP_DT_NAME);
  873. break;
  874. case FIP_DT_VN_ID:
  875. vp = (struct fip_vn_desc *)desc;
  876. if (dlen < sizeof(*vp))
  877. return;
  878. if (compare_ether_addr(vp->fd_mac,
  879. fip->get_src_addr(lport)) == 0 &&
  880. get_unaligned_be64(&vp->fd_wwpn) == lport->wwpn &&
  881. ntoh24(vp->fd_fc_id) ==
  882. fc_host_port_id(lport->host))
  883. desc_mask &= ~BIT(FIP_DT_VN_ID);
  884. break;
  885. default:
  886. /* standard says ignore unknown descriptors >= 128 */
  887. if (desc->fip_dtype < FIP_DT_VENDOR_BASE)
  888. return;
  889. break;
  890. }
  891. desc = (struct fip_desc *)((char *)desc + dlen);
  892. rlen -= dlen;
  893. }
  894. /*
  895. * reset only if all required descriptors were present and valid.
  896. */
  897. if (desc_mask) {
  898. LIBFCOE_FIP_DBG(fip, "missing descriptors mask %x\n",
  899. desc_mask);
  900. } else {
  901. LIBFCOE_FIP_DBG(fip, "performing Clear Virtual Link\n");
  902. spin_lock_bh(&fip->lock);
  903. fcoe_ctlr_reset(fip);
  904. spin_unlock_bh(&fip->lock);
  905. fc_lport_reset(fip->lp);
  906. fcoe_ctlr_solicit(fip, NULL);
  907. }
  908. }
  909. /**
  910. * fcoe_ctlr_recv() - Receive a FIP packet
  911. * @fip: The FCoE controller that received the packet
  912. * @skb: The received FIP packet
  913. *
  914. * This may be called from either NET_RX_SOFTIRQ or IRQ.
  915. */
  916. void fcoe_ctlr_recv(struct fcoe_ctlr *fip, struct sk_buff *skb)
  917. {
  918. skb_queue_tail(&fip->fip_recv_list, skb);
  919. schedule_work(&fip->recv_work);
  920. }
  921. EXPORT_SYMBOL(fcoe_ctlr_recv);
  922. /**
  923. * fcoe_ctlr_recv_handler() - Receive a FIP frame
  924. * @fip: The FCoE controller that received the frame
  925. * @skb: The received FIP frame
  926. *
  927. * Returns non-zero if the frame is dropped.
  928. */
  929. static int fcoe_ctlr_recv_handler(struct fcoe_ctlr *fip, struct sk_buff *skb)
  930. {
  931. struct fip_header *fiph;
  932. struct ethhdr *eh;
  933. enum fip_state state;
  934. u16 op;
  935. u8 sub;
  936. if (skb_linearize(skb))
  937. goto drop;
  938. if (skb->len < sizeof(*fiph))
  939. goto drop;
  940. eh = eth_hdr(skb);
  941. if (compare_ether_addr(eh->h_dest, fip->ctl_src_addr) &&
  942. compare_ether_addr(eh->h_dest, FIP_ALL_ENODE_MACS))
  943. goto drop;
  944. fiph = (struct fip_header *)skb->data;
  945. op = ntohs(fiph->fip_op);
  946. sub = fiph->fip_subcode;
  947. if (FIP_VER_DECAPS(fiph->fip_ver) != FIP_VER)
  948. goto drop;
  949. if (ntohs(fiph->fip_dl_len) * FIP_BPW + sizeof(*fiph) > skb->len)
  950. goto drop;
  951. spin_lock_bh(&fip->lock);
  952. state = fip->state;
  953. if (state == FIP_ST_AUTO) {
  954. fip->map_dest = 0;
  955. fip->state = FIP_ST_ENABLED;
  956. state = FIP_ST_ENABLED;
  957. LIBFCOE_FIP_DBG(fip, "Using FIP mode\n");
  958. }
  959. spin_unlock_bh(&fip->lock);
  960. if (state != FIP_ST_ENABLED)
  961. goto drop;
  962. if (op == FIP_OP_LS) {
  963. fcoe_ctlr_recv_els(fip, skb); /* consumes skb */
  964. return 0;
  965. }
  966. if (op == FIP_OP_DISC && sub == FIP_SC_ADV)
  967. fcoe_ctlr_recv_adv(fip, skb);
  968. else if (op == FIP_OP_CTRL && sub == FIP_SC_CLR_VLINK)
  969. fcoe_ctlr_recv_clr_vlink(fip, fiph);
  970. kfree_skb(skb);
  971. return 0;
  972. drop:
  973. kfree_skb(skb);
  974. return -1;
  975. }
  976. /**
  977. * fcoe_ctlr_select() - Select the best FCF (if possible)
  978. * @fip: The FCoE controller
  979. *
  980. * If there are conflicting advertisements, no FCF can be chosen.
  981. *
  982. * Called with lock held.
  983. */
  984. static void fcoe_ctlr_select(struct fcoe_ctlr *fip)
  985. {
  986. struct fcoe_fcf *fcf;
  987. struct fcoe_fcf *best = NULL;
  988. list_for_each_entry(fcf, &fip->fcfs, list) {
  989. LIBFCOE_FIP_DBG(fip, "consider FCF for fab %llx VFID %d map %x "
  990. "val %d\n", fcf->fabric_name, fcf->vfid,
  991. fcf->fc_map, fcoe_ctlr_mtu_valid(fcf));
  992. if (!fcoe_ctlr_fcf_usable(fcf)) {
  993. LIBFCOE_FIP_DBG(fip, "FCF for fab %llx map %x %svalid "
  994. "%savailable\n", fcf->fabric_name,
  995. fcf->fc_map, (fcf->flags & FIP_FL_SOL)
  996. ? "" : "in", (fcf->flags & FIP_FL_AVAIL)
  997. ? "" : "un");
  998. continue;
  999. }
  1000. if (!best) {
  1001. best = fcf;
  1002. continue;
  1003. }
  1004. if (fcf->fabric_name != best->fabric_name ||
  1005. fcf->vfid != best->vfid ||
  1006. fcf->fc_map != best->fc_map) {
  1007. LIBFCOE_FIP_DBG(fip, "Conflicting fabric, VFID, "
  1008. "or FC-MAP\n");
  1009. return;
  1010. }
  1011. if (fcf->pri < best->pri)
  1012. best = fcf;
  1013. }
  1014. fip->sel_fcf = best;
  1015. }
  1016. /**
  1017. * fcoe_ctlr_timeout() - FIP timeout handler
  1018. * @arg: The FCoE controller that timed out
  1019. *
  1020. * Ages FCFs. Triggers FCF selection if possible. Sends keep-alives.
  1021. */
  1022. static void fcoe_ctlr_timeout(unsigned long arg)
  1023. {
  1024. struct fcoe_ctlr *fip = (struct fcoe_ctlr *)arg;
  1025. struct fcoe_fcf *sel;
  1026. struct fcoe_fcf *fcf;
  1027. unsigned long next_timer = jiffies + msecs_to_jiffies(FIP_VN_KA_PERIOD);
  1028. spin_lock_bh(&fip->lock);
  1029. if (fip->state == FIP_ST_DISABLED) {
  1030. spin_unlock_bh(&fip->lock);
  1031. return;
  1032. }
  1033. fcf = fip->sel_fcf;
  1034. fcoe_ctlr_age_fcfs(fip);
  1035. sel = fip->sel_fcf;
  1036. if (!sel && fip->sel_time && time_after_eq(jiffies, fip->sel_time)) {
  1037. fcoe_ctlr_select(fip);
  1038. sel = fip->sel_fcf;
  1039. fip->sel_time = 0;
  1040. }
  1041. if (sel != fcf) {
  1042. fcf = sel; /* the old FCF may have been freed */
  1043. if (sel) {
  1044. printk(KERN_INFO "libfcoe: host%d: FIP selected "
  1045. "Fibre-Channel Forwarder MAC %pM\n",
  1046. fip->lp->host->host_no, sel->fcf_mac);
  1047. memcpy(fip->dest_addr, sel->fcf_mac, ETH_ALEN);
  1048. fip->port_ka_time = jiffies +
  1049. msecs_to_jiffies(FIP_VN_KA_PERIOD);
  1050. fip->ctlr_ka_time = jiffies + sel->fka_period;
  1051. } else {
  1052. printk(KERN_NOTICE "libfcoe: host%d: "
  1053. "FIP Fibre-Channel Forwarder timed out. "
  1054. "Starting FCF discovery.\n",
  1055. fip->lp->host->host_no);
  1056. fip->reset_req = 1;
  1057. schedule_work(&fip->link_work);
  1058. }
  1059. }
  1060. if (sel) {
  1061. if (time_after_eq(jiffies, fip->ctlr_ka_time)) {
  1062. fip->ctlr_ka_time = jiffies + sel->fka_period;
  1063. fip->send_ctlr_ka = 1;
  1064. }
  1065. if (time_after(next_timer, fip->ctlr_ka_time))
  1066. next_timer = fip->ctlr_ka_time;
  1067. if (time_after_eq(jiffies, fip->port_ka_time)) {
  1068. fip->port_ka_time += jiffies +
  1069. msecs_to_jiffies(FIP_VN_KA_PERIOD);
  1070. fip->send_port_ka = 1;
  1071. }
  1072. if (time_after(next_timer, fip->port_ka_time))
  1073. next_timer = fip->port_ka_time;
  1074. mod_timer(&fip->timer, next_timer);
  1075. } else if (fip->sel_time) {
  1076. next_timer = fip->sel_time +
  1077. msecs_to_jiffies(FCOE_CTLR_START_DELAY);
  1078. mod_timer(&fip->timer, next_timer);
  1079. }
  1080. if (fip->send_ctlr_ka || fip->send_port_ka)
  1081. schedule_work(&fip->link_work);
  1082. spin_unlock_bh(&fip->lock);
  1083. }
  1084. /**
  1085. * fcoe_ctlr_link_work() - Worker thread function for link changes
  1086. * @work: Handle to a FCoE controller
  1087. *
  1088. * See if the link status has changed and if so, report it.
  1089. *
  1090. * This is here because fc_linkup() and fc_linkdown() must not
  1091. * be called from the timer directly, since they use a mutex.
  1092. */
  1093. static void fcoe_ctlr_link_work(struct work_struct *work)
  1094. {
  1095. struct fcoe_ctlr *fip;
  1096. struct fc_lport *vport;
  1097. u8 *mac;
  1098. int link;
  1099. int last_link;
  1100. int reset;
  1101. fip = container_of(work, struct fcoe_ctlr, link_work);
  1102. spin_lock_bh(&fip->lock);
  1103. last_link = fip->last_link;
  1104. link = fip->link;
  1105. fip->last_link = link;
  1106. reset = fip->reset_req;
  1107. fip->reset_req = 0;
  1108. spin_unlock_bh(&fip->lock);
  1109. if (last_link != link) {
  1110. if (link)
  1111. fc_linkup(fip->lp);
  1112. else
  1113. fc_linkdown(fip->lp);
  1114. } else if (reset && link)
  1115. fc_lport_reset(fip->lp);
  1116. if (fip->send_ctlr_ka) {
  1117. fip->send_ctlr_ka = 0;
  1118. fcoe_ctlr_send_keep_alive(fip, NULL, 0, fip->ctl_src_addr);
  1119. }
  1120. if (fip->send_port_ka) {
  1121. fip->send_port_ka = 0;
  1122. mutex_lock(&fip->lp->lp_mutex);
  1123. mac = fip->get_src_addr(fip->lp);
  1124. fcoe_ctlr_send_keep_alive(fip, fip->lp, 1, mac);
  1125. list_for_each_entry(vport, &fip->lp->vports, list) {
  1126. mac = fip->get_src_addr(vport);
  1127. fcoe_ctlr_send_keep_alive(fip, vport, 1, mac);
  1128. }
  1129. mutex_unlock(&fip->lp->lp_mutex);
  1130. }
  1131. }
  1132. /**
  1133. * fcoe_ctlr_recv_work() - Worker thread function for receiving FIP frames
  1134. * @recv_work: Handle to a FCoE controller
  1135. */
  1136. static void fcoe_ctlr_recv_work(struct work_struct *recv_work)
  1137. {
  1138. struct fcoe_ctlr *fip;
  1139. struct sk_buff *skb;
  1140. fip = container_of(recv_work, struct fcoe_ctlr, recv_work);
  1141. while ((skb = skb_dequeue(&fip->fip_recv_list)))
  1142. fcoe_ctlr_recv_handler(fip, skb);
  1143. }
  1144. /**
  1145. * fcoe_ctlr_recv_flogi() - Snoop pre-FIP receipt of FLOGI response
  1146. * @fip: The FCoE controller
  1147. * @fp: The FC frame to snoop
  1148. *
  1149. * Snoop potential response to FLOGI or even incoming FLOGI.
  1150. *
  1151. * The caller has checked that we are waiting for login as indicated
  1152. * by fip->flogi_oxid != FC_XID_UNKNOWN.
  1153. *
  1154. * The caller is responsible for freeing the frame.
  1155. * Fill in the granted_mac address.
  1156. *
  1157. * Return non-zero if the frame should not be delivered to libfc.
  1158. */
  1159. int fcoe_ctlr_recv_flogi(struct fcoe_ctlr *fip, struct fc_lport *lport,
  1160. struct fc_frame *fp)
  1161. {
  1162. struct fc_frame_header *fh;
  1163. u8 op;
  1164. u8 *sa;
  1165. sa = eth_hdr(&fp->skb)->h_source;
  1166. fh = fc_frame_header_get(fp);
  1167. if (fh->fh_type != FC_TYPE_ELS)
  1168. return 0;
  1169. op = fc_frame_payload_op(fp);
  1170. if (op == ELS_LS_ACC && fh->fh_r_ctl == FC_RCTL_ELS_REP &&
  1171. fip->flogi_oxid == ntohs(fh->fh_ox_id)) {
  1172. spin_lock_bh(&fip->lock);
  1173. if (fip->state != FIP_ST_AUTO && fip->state != FIP_ST_NON_FIP) {
  1174. spin_unlock_bh(&fip->lock);
  1175. return -EINVAL;
  1176. }
  1177. fip->state = FIP_ST_NON_FIP;
  1178. LIBFCOE_FIP_DBG(fip,
  1179. "received FLOGI LS_ACC using non-FIP mode\n");
  1180. /*
  1181. * FLOGI accepted.
  1182. * If the src mac addr is FC_OUI-based, then we mark the
  1183. * address_mode flag to use FC_OUI-based Ethernet DA.
  1184. * Otherwise we use the FCoE gateway addr
  1185. */
  1186. if (!compare_ether_addr(sa, (u8[6])FC_FCOE_FLOGI_MAC)) {
  1187. fip->map_dest = 1;
  1188. } else {
  1189. memcpy(fip->dest_addr, sa, ETH_ALEN);
  1190. fip->map_dest = 0;
  1191. }
  1192. fip->flogi_oxid = FC_XID_UNKNOWN;
  1193. spin_unlock_bh(&fip->lock);
  1194. fc_fcoe_set_mac(fr_cb(fp)->granted_mac, fh->fh_d_id);
  1195. } else if (op == ELS_FLOGI && fh->fh_r_ctl == FC_RCTL_ELS_REQ && sa) {
  1196. /*
  1197. * Save source MAC for point-to-point responses.
  1198. */
  1199. spin_lock_bh(&fip->lock);
  1200. if (fip->state == FIP_ST_AUTO || fip->state == FIP_ST_NON_FIP) {
  1201. memcpy(fip->dest_addr, sa, ETH_ALEN);
  1202. fip->map_dest = 0;
  1203. if (fip->state == FIP_ST_NON_FIP)
  1204. LIBFCOE_FIP_DBG(fip, "received FLOGI REQ, "
  1205. "using non-FIP mode\n");
  1206. fip->state = FIP_ST_NON_FIP;
  1207. }
  1208. spin_unlock_bh(&fip->lock);
  1209. }
  1210. return 0;
  1211. }
  1212. EXPORT_SYMBOL(fcoe_ctlr_recv_flogi);
  1213. /**
  1214. * fcoe_wwn_from_mac() - Converts a 48-bit IEEE MAC address to a 64-bit FC WWN
  1215. * @mac: The MAC address to convert
  1216. * @scheme: The scheme to use when converting
  1217. * @port: The port indicator for converting
  1218. *
  1219. * Returns: u64 fc world wide name
  1220. */
  1221. u64 fcoe_wwn_from_mac(unsigned char mac[MAX_ADDR_LEN],
  1222. unsigned int scheme, unsigned int port)
  1223. {
  1224. u64 wwn;
  1225. u64 host_mac;
  1226. /* The MAC is in NO, so flip only the low 48 bits */
  1227. host_mac = ((u64) mac[0] << 40) |
  1228. ((u64) mac[1] << 32) |
  1229. ((u64) mac[2] << 24) |
  1230. ((u64) mac[3] << 16) |
  1231. ((u64) mac[4] << 8) |
  1232. (u64) mac[5];
  1233. WARN_ON(host_mac >= (1ULL << 48));
  1234. wwn = host_mac | ((u64) scheme << 60);
  1235. switch (scheme) {
  1236. case 1:
  1237. WARN_ON(port != 0);
  1238. break;
  1239. case 2:
  1240. WARN_ON(port >= 0xfff);
  1241. wwn |= (u64) port << 48;
  1242. break;
  1243. default:
  1244. WARN_ON(1);
  1245. break;
  1246. }
  1247. return wwn;
  1248. }
  1249. EXPORT_SYMBOL_GPL(fcoe_wwn_from_mac);
  1250. /**
  1251. * fcoe_libfc_config() - Sets up libfc related properties for local port
  1252. * @lp: The local port to configure libfc for
  1253. * @tt: The libfc function template
  1254. *
  1255. * Returns : 0 for success
  1256. */
  1257. int fcoe_libfc_config(struct fc_lport *lport,
  1258. struct libfc_function_template *tt)
  1259. {
  1260. /* Set the function pointers set by the LLDD */
  1261. memcpy(&lport->tt, tt, sizeof(*tt));
  1262. if (fc_fcp_init(lport))
  1263. return -ENOMEM;
  1264. fc_exch_init(lport);
  1265. fc_elsct_init(lport);
  1266. fc_lport_init(lport);
  1267. fc_rport_init(lport);
  1268. fc_disc_init(lport);
  1269. return 0;
  1270. }
  1271. EXPORT_SYMBOL_GPL(fcoe_libfc_config);