ehea_main.c 73 KB

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  1. /*
  2. * linux/drivers/net/ehea/ehea_main.c
  3. *
  4. * eHEA ethernet device driver for IBM eServer System p
  5. *
  6. * (C) Copyright IBM Corp. 2006
  7. *
  8. * Authors:
  9. * Christoph Raisch <raisch@de.ibm.com>
  10. * Jan-Bernd Themann <themann@de.ibm.com>
  11. * Thomas Klein <tklein@de.ibm.com>
  12. *
  13. *
  14. * This program is free software; you can redistribute it and/or modify
  15. * it under the terms of the GNU General Public License as published by
  16. * the Free Software Foundation; either version 2, or (at your option)
  17. * any later version.
  18. *
  19. * This program is distributed in the hope that it will be useful,
  20. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  21. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  22. * GNU General Public License for more details.
  23. *
  24. * You should have received a copy of the GNU General Public License
  25. * along with this program; if not, write to the Free Software
  26. * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  27. */
  28. #include <linux/in.h>
  29. #include <linux/ip.h>
  30. #include <linux/tcp.h>
  31. #include <linux/udp.h>
  32. #include <linux/if.h>
  33. #include <linux/list.h>
  34. #include <linux/if_ether.h>
  35. #include <net/ip.h>
  36. #include "ehea.h"
  37. #include "ehea_qmr.h"
  38. #include "ehea_phyp.h"
  39. MODULE_LICENSE("GPL");
  40. MODULE_AUTHOR("Christoph Raisch <raisch@de.ibm.com>");
  41. MODULE_DESCRIPTION("IBM eServer HEA Driver");
  42. MODULE_VERSION(DRV_VERSION);
  43. static int msg_level = -1;
  44. static int rq1_entries = EHEA_DEF_ENTRIES_RQ1;
  45. static int rq2_entries = EHEA_DEF_ENTRIES_RQ2;
  46. static int rq3_entries = EHEA_DEF_ENTRIES_RQ3;
  47. static int sq_entries = EHEA_DEF_ENTRIES_SQ;
  48. static int use_mcs = 0;
  49. static int num_tx_qps = EHEA_NUM_TX_QP;
  50. static int prop_carrier_state = 0;
  51. module_param(msg_level, int, 0);
  52. module_param(rq1_entries, int, 0);
  53. module_param(rq2_entries, int, 0);
  54. module_param(rq3_entries, int, 0);
  55. module_param(sq_entries, int, 0);
  56. module_param(prop_carrier_state, int, 0);
  57. module_param(use_mcs, int, 0);
  58. module_param(num_tx_qps, int, 0);
  59. MODULE_PARM_DESC(num_tx_qps, "Number of TX-QPS");
  60. MODULE_PARM_DESC(msg_level, "msg_level");
  61. MODULE_PARM_DESC(prop_carrier_state, "Propagate carrier state of physical "
  62. "port to stack. 1:yes, 0:no. Default = 0 ");
  63. MODULE_PARM_DESC(rq3_entries, "Number of entries for Receive Queue 3 "
  64. "[2^x - 1], x = [6..14]. Default = "
  65. __MODULE_STRING(EHEA_DEF_ENTRIES_RQ3) ")");
  66. MODULE_PARM_DESC(rq2_entries, "Number of entries for Receive Queue 2 "
  67. "[2^x - 1], x = [6..14]. Default = "
  68. __MODULE_STRING(EHEA_DEF_ENTRIES_RQ2) ")");
  69. MODULE_PARM_DESC(rq1_entries, "Number of entries for Receive Queue 1 "
  70. "[2^x - 1], x = [6..14]. Default = "
  71. __MODULE_STRING(EHEA_DEF_ENTRIES_RQ1) ")");
  72. MODULE_PARM_DESC(sq_entries, " Number of entries for the Send Queue "
  73. "[2^x - 1], x = [6..14]. Default = "
  74. __MODULE_STRING(EHEA_DEF_ENTRIES_SQ) ")");
  75. MODULE_PARM_DESC(use_mcs, " 0:NAPI, 1:Multiple receive queues, Default = 0 ");
  76. static int port_name_cnt = 0;
  77. static LIST_HEAD(adapter_list);
  78. u64 ehea_driver_flags = 0;
  79. struct workqueue_struct *ehea_driver_wq;
  80. struct work_struct ehea_rereg_mr_task;
  81. static int __devinit ehea_probe_adapter(struct ibmebus_dev *dev,
  82. const struct of_device_id *id);
  83. static int __devexit ehea_remove(struct ibmebus_dev *dev);
  84. static struct of_device_id ehea_device_table[] = {
  85. {
  86. .name = "lhea",
  87. .compatible = "IBM,lhea",
  88. },
  89. {},
  90. };
  91. static struct ibmebus_driver ehea_driver = {
  92. .name = "ehea",
  93. .id_table = ehea_device_table,
  94. .probe = ehea_probe_adapter,
  95. .remove = ehea_remove,
  96. };
  97. void ehea_dump(void *adr, int len, char *msg) {
  98. int x;
  99. unsigned char *deb = adr;
  100. for (x = 0; x < len; x += 16) {
  101. printk(DRV_NAME " %s adr=%p ofs=%04x %016lx %016lx\n", msg,
  102. deb, x, *((u64*)&deb[0]), *((u64*)&deb[8]));
  103. deb += 16;
  104. }
  105. }
  106. static struct net_device_stats *ehea_get_stats(struct net_device *dev)
  107. {
  108. struct ehea_port *port = netdev_priv(dev);
  109. struct net_device_stats *stats = &port->stats;
  110. struct hcp_ehea_port_cb2 *cb2;
  111. u64 hret, rx_packets;
  112. int i;
  113. memset(stats, 0, sizeof(*stats));
  114. cb2 = kzalloc(PAGE_SIZE, GFP_KERNEL);
  115. if (!cb2) {
  116. ehea_error("no mem for cb2");
  117. goto out;
  118. }
  119. hret = ehea_h_query_ehea_port(port->adapter->handle,
  120. port->logical_port_id,
  121. H_PORT_CB2, H_PORT_CB2_ALL, cb2);
  122. if (hret != H_SUCCESS) {
  123. ehea_error("query_ehea_port failed");
  124. goto out_herr;
  125. }
  126. if (netif_msg_hw(port))
  127. ehea_dump(cb2, sizeof(*cb2), "net_device_stats");
  128. rx_packets = 0;
  129. for (i = 0; i < port->num_def_qps; i++)
  130. rx_packets += port->port_res[i].rx_packets;
  131. stats->tx_packets = cb2->txucp + cb2->txmcp + cb2->txbcp;
  132. stats->multicast = cb2->rxmcp;
  133. stats->rx_errors = cb2->rxuerr;
  134. stats->rx_bytes = cb2->rxo;
  135. stats->tx_bytes = cb2->txo;
  136. stats->rx_packets = rx_packets;
  137. out_herr:
  138. kfree(cb2);
  139. out:
  140. return stats;
  141. }
  142. static void ehea_refill_rq1(struct ehea_port_res *pr, int index, int nr_of_wqes)
  143. {
  144. struct sk_buff **skb_arr_rq1 = pr->rq1_skba.arr;
  145. struct net_device *dev = pr->port->netdev;
  146. int max_index_mask = pr->rq1_skba.len - 1;
  147. int i;
  148. if (!nr_of_wqes)
  149. return;
  150. for (i = 0; i < nr_of_wqes; i++) {
  151. if (!skb_arr_rq1[index]) {
  152. skb_arr_rq1[index] = netdev_alloc_skb(dev,
  153. EHEA_L_PKT_SIZE);
  154. if (!skb_arr_rq1[index]) {
  155. ehea_error("%s: no mem for skb/%d wqes filled",
  156. dev->name, i);
  157. break;
  158. }
  159. }
  160. index--;
  161. index &= max_index_mask;
  162. }
  163. /* Ring doorbell */
  164. ehea_update_rq1a(pr->qp, i);
  165. }
  166. static int ehea_init_fill_rq1(struct ehea_port_res *pr, int nr_rq1a)
  167. {
  168. int ret = 0;
  169. struct sk_buff **skb_arr_rq1 = pr->rq1_skba.arr;
  170. struct net_device *dev = pr->port->netdev;
  171. int i;
  172. for (i = 0; i < pr->rq1_skba.len; i++) {
  173. skb_arr_rq1[i] = netdev_alloc_skb(dev, EHEA_L_PKT_SIZE);
  174. if (!skb_arr_rq1[i]) {
  175. ehea_error("%s: no mem for skb/%d wqes filled",
  176. dev->name, i);
  177. ret = -ENOMEM;
  178. goto out;
  179. }
  180. }
  181. /* Ring doorbell */
  182. ehea_update_rq1a(pr->qp, nr_rq1a);
  183. out:
  184. return ret;
  185. }
  186. static int ehea_refill_rq_def(struct ehea_port_res *pr,
  187. struct ehea_q_skb_arr *q_skba, int rq_nr,
  188. int num_wqes, int wqe_type, int packet_size)
  189. {
  190. struct net_device *dev = pr->port->netdev;
  191. struct ehea_qp *qp = pr->qp;
  192. struct sk_buff **skb_arr = q_skba->arr;
  193. struct ehea_rwqe *rwqe;
  194. int i, index, max_index_mask, fill_wqes;
  195. int ret = 0;
  196. fill_wqes = q_skba->os_skbs + num_wqes;
  197. if (!fill_wqes)
  198. return ret;
  199. index = q_skba->index;
  200. max_index_mask = q_skba->len - 1;
  201. for (i = 0; i < fill_wqes; i++) {
  202. struct sk_buff *skb = netdev_alloc_skb(dev, packet_size);
  203. if (!skb) {
  204. ehea_error("%s: no mem for skb/%d wqes filled",
  205. pr->port->netdev->name, i);
  206. q_skba->os_skbs = fill_wqes - i;
  207. ret = -ENOMEM;
  208. break;
  209. }
  210. skb_reserve(skb, NET_IP_ALIGN);
  211. skb_arr[index] = skb;
  212. rwqe = ehea_get_next_rwqe(qp, rq_nr);
  213. rwqe->wr_id = EHEA_BMASK_SET(EHEA_WR_ID_TYPE, wqe_type)
  214. | EHEA_BMASK_SET(EHEA_WR_ID_INDEX, index);
  215. rwqe->sg_list[0].l_key = pr->recv_mr.lkey;
  216. rwqe->sg_list[0].vaddr = ehea_map_vaddr(skb->data);
  217. rwqe->sg_list[0].len = packet_size;
  218. rwqe->data_segments = 1;
  219. index++;
  220. index &= max_index_mask;
  221. if (unlikely(test_bit(__EHEA_STOP_XFER, &ehea_driver_flags)))
  222. goto out;
  223. }
  224. q_skba->index = index;
  225. /* Ring doorbell */
  226. iosync();
  227. if (rq_nr == 2)
  228. ehea_update_rq2a(pr->qp, i);
  229. else
  230. ehea_update_rq3a(pr->qp, i);
  231. out:
  232. return ret;
  233. }
  234. static int ehea_refill_rq2(struct ehea_port_res *pr, int nr_of_wqes)
  235. {
  236. return ehea_refill_rq_def(pr, &pr->rq2_skba, 2,
  237. nr_of_wqes, EHEA_RWQE2_TYPE,
  238. EHEA_RQ2_PKT_SIZE + NET_IP_ALIGN);
  239. }
  240. static int ehea_refill_rq3(struct ehea_port_res *pr, int nr_of_wqes)
  241. {
  242. return ehea_refill_rq_def(pr, &pr->rq3_skba, 3,
  243. nr_of_wqes, EHEA_RWQE3_TYPE,
  244. EHEA_MAX_PACKET_SIZE + NET_IP_ALIGN);
  245. }
  246. static inline int ehea_check_cqe(struct ehea_cqe *cqe, int *rq_num)
  247. {
  248. *rq_num = (cqe->type & EHEA_CQE_TYPE_RQ) >> 5;
  249. if ((cqe->status & EHEA_CQE_STAT_ERR_MASK) == 0)
  250. return 0;
  251. if (((cqe->status & EHEA_CQE_STAT_ERR_TCP) != 0) &&
  252. (cqe->header_length == 0))
  253. return 0;
  254. return -EINVAL;
  255. }
  256. static inline void ehea_fill_skb(struct net_device *dev,
  257. struct sk_buff *skb, struct ehea_cqe *cqe)
  258. {
  259. int length = cqe->num_bytes_transfered - 4; /*remove CRC */
  260. skb_put(skb, length);
  261. skb->ip_summed = CHECKSUM_UNNECESSARY;
  262. skb->protocol = eth_type_trans(skb, dev);
  263. }
  264. static inline struct sk_buff *get_skb_by_index(struct sk_buff **skb_array,
  265. int arr_len,
  266. struct ehea_cqe *cqe)
  267. {
  268. int skb_index = EHEA_BMASK_GET(EHEA_WR_ID_INDEX, cqe->wr_id);
  269. struct sk_buff *skb;
  270. void *pref;
  271. int x;
  272. x = skb_index + 1;
  273. x &= (arr_len - 1);
  274. pref = skb_array[x];
  275. prefetchw(pref);
  276. prefetchw(pref + EHEA_CACHE_LINE);
  277. pref = (skb_array[x]->data);
  278. prefetch(pref);
  279. prefetch(pref + EHEA_CACHE_LINE);
  280. prefetch(pref + EHEA_CACHE_LINE * 2);
  281. prefetch(pref + EHEA_CACHE_LINE * 3);
  282. skb = skb_array[skb_index];
  283. skb_array[skb_index] = NULL;
  284. return skb;
  285. }
  286. static inline struct sk_buff *get_skb_by_index_ll(struct sk_buff **skb_array,
  287. int arr_len, int wqe_index)
  288. {
  289. struct sk_buff *skb;
  290. void *pref;
  291. int x;
  292. x = wqe_index + 1;
  293. x &= (arr_len - 1);
  294. pref = skb_array[x];
  295. prefetchw(pref);
  296. prefetchw(pref + EHEA_CACHE_LINE);
  297. pref = (skb_array[x]->data);
  298. prefetchw(pref);
  299. prefetchw(pref + EHEA_CACHE_LINE);
  300. skb = skb_array[wqe_index];
  301. skb_array[wqe_index] = NULL;
  302. return skb;
  303. }
  304. static int ehea_treat_poll_error(struct ehea_port_res *pr, int rq,
  305. struct ehea_cqe *cqe, int *processed_rq2,
  306. int *processed_rq3)
  307. {
  308. struct sk_buff *skb;
  309. if (cqe->status & EHEA_CQE_STAT_ERR_TCP)
  310. pr->p_stats.err_tcp_cksum++;
  311. if (cqe->status & EHEA_CQE_STAT_ERR_IP)
  312. pr->p_stats.err_ip_cksum++;
  313. if (cqe->status & EHEA_CQE_STAT_ERR_CRC)
  314. pr->p_stats.err_frame_crc++;
  315. if (netif_msg_rx_err(pr->port)) {
  316. ehea_error("CQE Error for QP %d", pr->qp->init_attr.qp_nr);
  317. ehea_dump(cqe, sizeof(*cqe), "CQE");
  318. }
  319. if (rq == 2) {
  320. *processed_rq2 += 1;
  321. skb = get_skb_by_index(pr->rq2_skba.arr, pr->rq2_skba.len, cqe);
  322. dev_kfree_skb(skb);
  323. } else if (rq == 3) {
  324. *processed_rq3 += 1;
  325. skb = get_skb_by_index(pr->rq3_skba.arr, pr->rq3_skba.len, cqe);
  326. dev_kfree_skb(skb);
  327. }
  328. if (cqe->status & EHEA_CQE_STAT_FAT_ERR_MASK) {
  329. ehea_error("Critical receive error. Resetting port.");
  330. queue_work(pr->port->adapter->ehea_wq, &pr->port->reset_task);
  331. return 1;
  332. }
  333. return 0;
  334. }
  335. static struct ehea_cqe *ehea_proc_rwqes(struct net_device *dev,
  336. struct ehea_port_res *pr,
  337. int *budget)
  338. {
  339. struct ehea_port *port = pr->port;
  340. struct ehea_qp *qp = pr->qp;
  341. struct ehea_cqe *cqe;
  342. struct sk_buff *skb;
  343. struct sk_buff **skb_arr_rq1 = pr->rq1_skba.arr;
  344. struct sk_buff **skb_arr_rq2 = pr->rq2_skba.arr;
  345. struct sk_buff **skb_arr_rq3 = pr->rq3_skba.arr;
  346. int skb_arr_rq1_len = pr->rq1_skba.len;
  347. int skb_arr_rq2_len = pr->rq2_skba.len;
  348. int skb_arr_rq3_len = pr->rq3_skba.len;
  349. int processed, processed_rq1, processed_rq2, processed_rq3;
  350. int wqe_index, last_wqe_index, rq, my_quota, port_reset;
  351. processed = processed_rq1 = processed_rq2 = processed_rq3 = 0;
  352. last_wqe_index = 0;
  353. my_quota = min(*budget, dev->quota);
  354. cqe = ehea_poll_rq1(qp, &wqe_index);
  355. while ((my_quota > 0) && cqe) {
  356. ehea_inc_rq1(qp);
  357. processed_rq1++;
  358. processed++;
  359. my_quota--;
  360. if (netif_msg_rx_status(port))
  361. ehea_dump(cqe, sizeof(*cqe), "CQE");
  362. last_wqe_index = wqe_index;
  363. rmb();
  364. if (!ehea_check_cqe(cqe, &rq)) {
  365. if (rq == 1) { /* LL RQ1 */
  366. skb = get_skb_by_index_ll(skb_arr_rq1,
  367. skb_arr_rq1_len,
  368. wqe_index);
  369. if (unlikely(!skb)) {
  370. if (netif_msg_rx_err(port))
  371. ehea_error("LL rq1: skb=NULL");
  372. skb = netdev_alloc_skb(port->netdev,
  373. EHEA_L_PKT_SIZE);
  374. if (!skb)
  375. break;
  376. }
  377. skb_copy_to_linear_data(skb, ((char*)cqe) + 64,
  378. cqe->num_bytes_transfered - 4);
  379. ehea_fill_skb(port->netdev, skb, cqe);
  380. } else if (rq == 2) { /* RQ2 */
  381. skb = get_skb_by_index(skb_arr_rq2,
  382. skb_arr_rq2_len, cqe);
  383. if (unlikely(!skb)) {
  384. if (netif_msg_rx_err(port))
  385. ehea_error("rq2: skb=NULL");
  386. break;
  387. }
  388. ehea_fill_skb(port->netdev, skb, cqe);
  389. processed_rq2++;
  390. } else { /* RQ3 */
  391. skb = get_skb_by_index(skb_arr_rq3,
  392. skb_arr_rq3_len, cqe);
  393. if (unlikely(!skb)) {
  394. if (netif_msg_rx_err(port))
  395. ehea_error("rq3: skb=NULL");
  396. break;
  397. }
  398. ehea_fill_skb(port->netdev, skb, cqe);
  399. processed_rq3++;
  400. }
  401. if ((cqe->status & EHEA_CQE_VLAN_TAG_XTRACT)
  402. && port->vgrp)
  403. vlan_hwaccel_receive_skb(skb, port->vgrp,
  404. cqe->vlan_tag);
  405. else
  406. netif_receive_skb(skb);
  407. port->netdev->last_rx = jiffies;
  408. } else {
  409. pr->p_stats.poll_receive_errors++;
  410. port_reset = ehea_treat_poll_error(pr, rq, cqe,
  411. &processed_rq2,
  412. &processed_rq3);
  413. if (port_reset)
  414. break;
  415. }
  416. cqe = ehea_poll_rq1(qp, &wqe_index);
  417. }
  418. pr->rx_packets += processed;
  419. *budget -= processed;
  420. ehea_refill_rq1(pr, last_wqe_index, processed_rq1);
  421. ehea_refill_rq2(pr, processed_rq2);
  422. ehea_refill_rq3(pr, processed_rq3);
  423. cqe = ehea_poll_rq1(qp, &wqe_index);
  424. return cqe;
  425. }
  426. static struct ehea_cqe *ehea_proc_cqes(struct ehea_port_res *pr, int my_quota)
  427. {
  428. struct sk_buff *skb;
  429. struct ehea_cq *send_cq = pr->send_cq;
  430. struct ehea_cqe *cqe;
  431. int quota = my_quota;
  432. int cqe_counter = 0;
  433. int swqe_av = 0;
  434. int index;
  435. unsigned long flags;
  436. cqe = ehea_poll_cq(send_cq);
  437. while(cqe && (quota > 0)) {
  438. ehea_inc_cq(send_cq);
  439. cqe_counter++;
  440. rmb();
  441. if (cqe->status & EHEA_CQE_STAT_ERR_MASK) {
  442. ehea_error("Send Completion Error: Resetting port");
  443. if (netif_msg_tx_err(pr->port))
  444. ehea_dump(cqe, sizeof(*cqe), "Send CQE");
  445. queue_work(pr->port->adapter->ehea_wq,
  446. &pr->port->reset_task);
  447. break;
  448. }
  449. if (netif_msg_tx_done(pr->port))
  450. ehea_dump(cqe, sizeof(*cqe), "CQE");
  451. if (likely(EHEA_BMASK_GET(EHEA_WR_ID_TYPE, cqe->wr_id)
  452. == EHEA_SWQE2_TYPE)) {
  453. index = EHEA_BMASK_GET(EHEA_WR_ID_INDEX, cqe->wr_id);
  454. skb = pr->sq_skba.arr[index];
  455. dev_kfree_skb(skb);
  456. pr->sq_skba.arr[index] = NULL;
  457. }
  458. swqe_av += EHEA_BMASK_GET(EHEA_WR_ID_REFILL, cqe->wr_id);
  459. quota--;
  460. cqe = ehea_poll_cq(send_cq);
  461. };
  462. ehea_update_feca(send_cq, cqe_counter);
  463. atomic_add(swqe_av, &pr->swqe_avail);
  464. spin_lock_irqsave(&pr->netif_queue, flags);
  465. if (pr->queue_stopped && (atomic_read(&pr->swqe_avail)
  466. >= pr->swqe_refill_th)) {
  467. netif_wake_queue(pr->port->netdev);
  468. pr->queue_stopped = 0;
  469. }
  470. spin_unlock_irqrestore(&pr->netif_queue, flags);
  471. return cqe;
  472. }
  473. #define EHEA_NAPI_POLL_NUM_BEFORE_IRQ 16
  474. static int ehea_poll(struct net_device *dev, int *budget)
  475. {
  476. struct ehea_port_res *pr = dev->priv;
  477. struct ehea_cqe *cqe;
  478. struct ehea_cqe *cqe_skb = NULL;
  479. int force_irq, wqe_index;
  480. cqe = ehea_poll_rq1(pr->qp, &wqe_index);
  481. cqe_skb = ehea_poll_cq(pr->send_cq);
  482. force_irq = (pr->poll_counter > EHEA_NAPI_POLL_NUM_BEFORE_IRQ);
  483. if ((!cqe && !cqe_skb) || force_irq) {
  484. pr->poll_counter = 0;
  485. netif_rx_complete(dev);
  486. ehea_reset_cq_ep(pr->recv_cq);
  487. ehea_reset_cq_ep(pr->send_cq);
  488. ehea_reset_cq_n1(pr->recv_cq);
  489. ehea_reset_cq_n1(pr->send_cq);
  490. cqe = ehea_poll_rq1(pr->qp, &wqe_index);
  491. cqe_skb = ehea_poll_cq(pr->send_cq);
  492. if (!cqe && !cqe_skb)
  493. return 0;
  494. if (!netif_rx_reschedule(dev, dev->quota))
  495. return 0;
  496. }
  497. cqe = ehea_proc_rwqes(dev, pr, budget);
  498. cqe_skb = ehea_proc_cqes(pr, 300);
  499. if (cqe || cqe_skb)
  500. pr->poll_counter++;
  501. return 1;
  502. }
  503. #ifdef CONFIG_NET_POLL_CONTROLLER
  504. static void ehea_netpoll(struct net_device *dev)
  505. {
  506. struct ehea_port *port = netdev_priv(dev);
  507. netif_rx_schedule(port->port_res[0].d_netdev);
  508. }
  509. #endif
  510. static int ehea_poll_firstqueue(struct net_device *dev, int *budget)
  511. {
  512. struct ehea_port *port = netdev_priv(dev);
  513. struct net_device *d_dev = port->port_res[0].d_netdev;
  514. return ehea_poll(d_dev, budget);
  515. }
  516. static irqreturn_t ehea_recv_irq_handler(int irq, void *param)
  517. {
  518. struct ehea_port_res *pr = param;
  519. netif_rx_schedule(pr->d_netdev);
  520. return IRQ_HANDLED;
  521. }
  522. static irqreturn_t ehea_qp_aff_irq_handler(int irq, void *param)
  523. {
  524. struct ehea_port *port = param;
  525. struct ehea_eqe *eqe;
  526. struct ehea_qp *qp;
  527. u32 qp_token;
  528. eqe = ehea_poll_eq(port->qp_eq);
  529. while (eqe) {
  530. qp_token = EHEA_BMASK_GET(EHEA_EQE_QP_TOKEN, eqe->entry);
  531. ehea_error("QP aff_err: entry=0x%lx, token=0x%x",
  532. eqe->entry, qp_token);
  533. qp = port->port_res[qp_token].qp;
  534. ehea_error_data(port->adapter, qp->fw_handle);
  535. eqe = ehea_poll_eq(port->qp_eq);
  536. }
  537. queue_work(port->adapter->ehea_wq, &port->reset_task);
  538. return IRQ_HANDLED;
  539. }
  540. static struct ehea_port *ehea_get_port(struct ehea_adapter *adapter,
  541. int logical_port)
  542. {
  543. int i;
  544. for (i = 0; i < EHEA_MAX_PORTS; i++)
  545. if (adapter->port[i])
  546. if (adapter->port[i]->logical_port_id == logical_port)
  547. return adapter->port[i];
  548. return NULL;
  549. }
  550. int ehea_sense_port_attr(struct ehea_port *port)
  551. {
  552. int ret;
  553. u64 hret;
  554. struct hcp_ehea_port_cb0 *cb0;
  555. cb0 = kzalloc(PAGE_SIZE, GFP_ATOMIC); /* May be called via */
  556. if (!cb0) { /* ehea_neq_tasklet() */
  557. ehea_error("no mem for cb0");
  558. ret = -ENOMEM;
  559. goto out;
  560. }
  561. hret = ehea_h_query_ehea_port(port->adapter->handle,
  562. port->logical_port_id, H_PORT_CB0,
  563. EHEA_BMASK_SET(H_PORT_CB0_ALL, 0xFFFF),
  564. cb0);
  565. if (hret != H_SUCCESS) {
  566. ret = -EIO;
  567. goto out_free;
  568. }
  569. /* MAC address */
  570. port->mac_addr = cb0->port_mac_addr << 16;
  571. if (!is_valid_ether_addr((u8*)&port->mac_addr)) {
  572. ret = -EADDRNOTAVAIL;
  573. goto out_free;
  574. }
  575. /* Port speed */
  576. switch (cb0->port_speed) {
  577. case H_SPEED_10M_H:
  578. port->port_speed = EHEA_SPEED_10M;
  579. port->full_duplex = 0;
  580. break;
  581. case H_SPEED_10M_F:
  582. port->port_speed = EHEA_SPEED_10M;
  583. port->full_duplex = 1;
  584. break;
  585. case H_SPEED_100M_H:
  586. port->port_speed = EHEA_SPEED_100M;
  587. port->full_duplex = 0;
  588. break;
  589. case H_SPEED_100M_F:
  590. port->port_speed = EHEA_SPEED_100M;
  591. port->full_duplex = 1;
  592. break;
  593. case H_SPEED_1G_F:
  594. port->port_speed = EHEA_SPEED_1G;
  595. port->full_duplex = 1;
  596. break;
  597. case H_SPEED_10G_F:
  598. port->port_speed = EHEA_SPEED_10G;
  599. port->full_duplex = 1;
  600. break;
  601. default:
  602. port->port_speed = 0;
  603. port->full_duplex = 0;
  604. break;
  605. }
  606. port->autoneg = 1;
  607. port->num_mcs = cb0->num_default_qps;
  608. /* Number of default QPs */
  609. if (use_mcs)
  610. port->num_def_qps = cb0->num_default_qps;
  611. else
  612. port->num_def_qps = 1;
  613. if (!port->num_def_qps) {
  614. ret = -EINVAL;
  615. goto out_free;
  616. }
  617. port->num_tx_qps = num_tx_qps;
  618. if (port->num_def_qps >= port->num_tx_qps)
  619. port->num_add_tx_qps = 0;
  620. else
  621. port->num_add_tx_qps = port->num_tx_qps - port->num_def_qps;
  622. ret = 0;
  623. out_free:
  624. if (ret || netif_msg_probe(port))
  625. ehea_dump(cb0, sizeof(*cb0), "ehea_sense_port_attr");
  626. kfree(cb0);
  627. out:
  628. return ret;
  629. }
  630. int ehea_set_portspeed(struct ehea_port *port, u32 port_speed)
  631. {
  632. struct hcp_ehea_port_cb4 *cb4;
  633. u64 hret;
  634. int ret = 0;
  635. cb4 = kzalloc(PAGE_SIZE, GFP_KERNEL);
  636. if (!cb4) {
  637. ehea_error("no mem for cb4");
  638. ret = -ENOMEM;
  639. goto out;
  640. }
  641. cb4->port_speed = port_speed;
  642. netif_carrier_off(port->netdev);
  643. hret = ehea_h_modify_ehea_port(port->adapter->handle,
  644. port->logical_port_id,
  645. H_PORT_CB4, H_PORT_CB4_SPEED, cb4);
  646. if (hret == H_SUCCESS) {
  647. port->autoneg = port_speed == EHEA_SPEED_AUTONEG ? 1 : 0;
  648. hret = ehea_h_query_ehea_port(port->adapter->handle,
  649. port->logical_port_id,
  650. H_PORT_CB4, H_PORT_CB4_SPEED,
  651. cb4);
  652. if (hret == H_SUCCESS) {
  653. switch (cb4->port_speed) {
  654. case H_SPEED_10M_H:
  655. port->port_speed = EHEA_SPEED_10M;
  656. port->full_duplex = 0;
  657. break;
  658. case H_SPEED_10M_F:
  659. port->port_speed = EHEA_SPEED_10M;
  660. port->full_duplex = 1;
  661. break;
  662. case H_SPEED_100M_H:
  663. port->port_speed = EHEA_SPEED_100M;
  664. port->full_duplex = 0;
  665. break;
  666. case H_SPEED_100M_F:
  667. port->port_speed = EHEA_SPEED_100M;
  668. port->full_duplex = 1;
  669. break;
  670. case H_SPEED_1G_F:
  671. port->port_speed = EHEA_SPEED_1G;
  672. port->full_duplex = 1;
  673. break;
  674. case H_SPEED_10G_F:
  675. port->port_speed = EHEA_SPEED_10G;
  676. port->full_duplex = 1;
  677. break;
  678. default:
  679. port->port_speed = 0;
  680. port->full_duplex = 0;
  681. break;
  682. }
  683. } else {
  684. ehea_error("Failed sensing port speed");
  685. ret = -EIO;
  686. }
  687. } else {
  688. if (hret == H_AUTHORITY) {
  689. ehea_info("Hypervisor denied setting port speed");
  690. ret = -EPERM;
  691. } else {
  692. ret = -EIO;
  693. ehea_error("Failed setting port speed");
  694. }
  695. }
  696. if (!prop_carrier_state || (port->phy_link == EHEA_PHY_LINK_UP))
  697. netif_carrier_on(port->netdev);
  698. kfree(cb4);
  699. out:
  700. return ret;
  701. }
  702. static void ehea_parse_eqe(struct ehea_adapter *adapter, u64 eqe)
  703. {
  704. int ret;
  705. u8 ec;
  706. u8 portnum;
  707. struct ehea_port *port;
  708. ec = EHEA_BMASK_GET(NEQE_EVENT_CODE, eqe);
  709. portnum = EHEA_BMASK_GET(NEQE_PORTNUM, eqe);
  710. port = ehea_get_port(adapter, portnum);
  711. switch (ec) {
  712. case EHEA_EC_PORTSTATE_CHG: /* port state change */
  713. if (!port) {
  714. ehea_error("unknown portnum %x", portnum);
  715. break;
  716. }
  717. if (EHEA_BMASK_GET(NEQE_PORT_UP, eqe)) {
  718. if (!netif_carrier_ok(port->netdev)) {
  719. ret = ehea_sense_port_attr(port);
  720. if (ret) {
  721. ehea_error("failed resensing port "
  722. "attributes");
  723. break;
  724. }
  725. if (netif_msg_link(port))
  726. ehea_info("%s: Logical port up: %dMbps "
  727. "%s Duplex",
  728. port->netdev->name,
  729. port->port_speed,
  730. port->full_duplex ==
  731. 1 ? "Full" : "Half");
  732. netif_carrier_on(port->netdev);
  733. netif_wake_queue(port->netdev);
  734. }
  735. } else
  736. if (netif_carrier_ok(port->netdev)) {
  737. if (netif_msg_link(port))
  738. ehea_info("%s: Logical port down",
  739. port->netdev->name);
  740. netif_carrier_off(port->netdev);
  741. netif_stop_queue(port->netdev);
  742. }
  743. if (EHEA_BMASK_GET(NEQE_EXTSWITCH_PORT_UP, eqe)) {
  744. port->phy_link = EHEA_PHY_LINK_UP;
  745. if (netif_msg_link(port))
  746. ehea_info("%s: Physical port up",
  747. port->netdev->name);
  748. if (prop_carrier_state)
  749. netif_carrier_on(port->netdev);
  750. } else {
  751. port->phy_link = EHEA_PHY_LINK_DOWN;
  752. if (netif_msg_link(port))
  753. ehea_info("%s: Physical port down",
  754. port->netdev->name);
  755. if (prop_carrier_state)
  756. netif_carrier_off(port->netdev);
  757. }
  758. if (EHEA_BMASK_GET(NEQE_EXTSWITCH_PRIMARY, eqe))
  759. ehea_info("External switch port is primary port");
  760. else
  761. ehea_info("External switch port is backup port");
  762. break;
  763. case EHEA_EC_ADAPTER_MALFUNC:
  764. ehea_error("Adapter malfunction");
  765. break;
  766. case EHEA_EC_PORT_MALFUNC:
  767. ehea_info("Port malfunction: Device: %s", port->netdev->name);
  768. netif_carrier_off(port->netdev);
  769. netif_stop_queue(port->netdev);
  770. break;
  771. default:
  772. ehea_error("unknown event code %x, eqe=0x%lX", ec, eqe);
  773. break;
  774. }
  775. }
  776. static void ehea_neq_tasklet(unsigned long data)
  777. {
  778. struct ehea_adapter *adapter = (struct ehea_adapter*)data;
  779. struct ehea_eqe *eqe;
  780. u64 event_mask;
  781. eqe = ehea_poll_eq(adapter->neq);
  782. ehea_debug("eqe=%p", eqe);
  783. while (eqe) {
  784. ehea_debug("*eqe=%lx", eqe->entry);
  785. ehea_parse_eqe(adapter, eqe->entry);
  786. eqe = ehea_poll_eq(adapter->neq);
  787. ehea_debug("next eqe=%p", eqe);
  788. }
  789. event_mask = EHEA_BMASK_SET(NELR_PORTSTATE_CHG, 1)
  790. | EHEA_BMASK_SET(NELR_ADAPTER_MALFUNC, 1)
  791. | EHEA_BMASK_SET(NELR_PORT_MALFUNC, 1);
  792. ehea_h_reset_events(adapter->handle,
  793. adapter->neq->fw_handle, event_mask);
  794. }
  795. static irqreturn_t ehea_interrupt_neq(int irq, void *param)
  796. {
  797. struct ehea_adapter *adapter = param;
  798. tasklet_hi_schedule(&adapter->neq_tasklet);
  799. return IRQ_HANDLED;
  800. }
  801. static int ehea_fill_port_res(struct ehea_port_res *pr)
  802. {
  803. int ret;
  804. struct ehea_qp_init_attr *init_attr = &pr->qp->init_attr;
  805. ret = ehea_init_fill_rq1(pr, init_attr->act_nr_rwqes_rq1
  806. - init_attr->act_nr_rwqes_rq2
  807. - init_attr->act_nr_rwqes_rq3 - 1);
  808. ret |= ehea_refill_rq2(pr, init_attr->act_nr_rwqes_rq2 - 1);
  809. ret |= ehea_refill_rq3(pr, init_attr->act_nr_rwqes_rq3 - 1);
  810. return ret;
  811. }
  812. static int ehea_reg_interrupts(struct net_device *dev)
  813. {
  814. struct ehea_port *port = netdev_priv(dev);
  815. struct ehea_port_res *pr;
  816. int i, ret;
  817. snprintf(port->int_aff_name, EHEA_IRQ_NAME_SIZE - 1, "%s-aff",
  818. dev->name);
  819. ret = ibmebus_request_irq(NULL, port->qp_eq->attr.ist1,
  820. ehea_qp_aff_irq_handler,
  821. IRQF_DISABLED, port->int_aff_name, port);
  822. if (ret) {
  823. ehea_error("failed registering irq for qp_aff_irq_handler:"
  824. "ist=%X", port->qp_eq->attr.ist1);
  825. goto out_free_qpeq;
  826. }
  827. if (netif_msg_ifup(port))
  828. ehea_info("irq_handle 0x%X for function qp_aff_irq_handler "
  829. "registered", port->qp_eq->attr.ist1);
  830. for (i = 0; i < port->num_def_qps + port->num_add_tx_qps; i++) {
  831. pr = &port->port_res[i];
  832. snprintf(pr->int_send_name, EHEA_IRQ_NAME_SIZE - 1,
  833. "%s-queue%d", dev->name, i);
  834. ret = ibmebus_request_irq(NULL, pr->eq->attr.ist1,
  835. ehea_recv_irq_handler,
  836. IRQF_DISABLED, pr->int_send_name,
  837. pr);
  838. if (ret) {
  839. ehea_error("failed registering irq for ehea_queue "
  840. "port_res_nr:%d, ist=%X", i,
  841. pr->eq->attr.ist1);
  842. goto out_free_req;
  843. }
  844. if (netif_msg_ifup(port))
  845. ehea_info("irq_handle 0x%X for function ehea_queue_int "
  846. "%d registered", pr->eq->attr.ist1, i);
  847. }
  848. out:
  849. return ret;
  850. out_free_req:
  851. while (--i >= 0) {
  852. u32 ist = port->port_res[i].eq->attr.ist1;
  853. ibmebus_free_irq(NULL, ist, &port->port_res[i]);
  854. }
  855. out_free_qpeq:
  856. ibmebus_free_irq(NULL, port->qp_eq->attr.ist1, port);
  857. i = port->num_def_qps;
  858. goto out;
  859. }
  860. static void ehea_free_interrupts(struct net_device *dev)
  861. {
  862. struct ehea_port *port = netdev_priv(dev);
  863. struct ehea_port_res *pr;
  864. int i;
  865. /* send */
  866. for (i = 0; i < port->num_def_qps + port->num_add_tx_qps; i++) {
  867. pr = &port->port_res[i];
  868. ibmebus_free_irq(NULL, pr->eq->attr.ist1, pr);
  869. if (netif_msg_intr(port))
  870. ehea_info("free send irq for res %d with handle 0x%X",
  871. i, pr->eq->attr.ist1);
  872. }
  873. /* associated events */
  874. ibmebus_free_irq(NULL, port->qp_eq->attr.ist1, port);
  875. if (netif_msg_intr(port))
  876. ehea_info("associated event interrupt for handle 0x%X freed",
  877. port->qp_eq->attr.ist1);
  878. }
  879. static int ehea_configure_port(struct ehea_port *port)
  880. {
  881. int ret, i;
  882. u64 hret, mask;
  883. struct hcp_ehea_port_cb0 *cb0;
  884. ret = -ENOMEM;
  885. cb0 = kzalloc(PAGE_SIZE, GFP_KERNEL);
  886. if (!cb0)
  887. goto out;
  888. cb0->port_rc = EHEA_BMASK_SET(PXLY_RC_VALID, 1)
  889. | EHEA_BMASK_SET(PXLY_RC_IP_CHKSUM, 1)
  890. | EHEA_BMASK_SET(PXLY_RC_TCP_UDP_CHKSUM, 1)
  891. | EHEA_BMASK_SET(PXLY_RC_VLAN_XTRACT, 1)
  892. | EHEA_BMASK_SET(PXLY_RC_VLAN_TAG_FILTER,
  893. PXLY_RC_VLAN_FILTER)
  894. | EHEA_BMASK_SET(PXLY_RC_JUMBO_FRAME, 1);
  895. for (i = 0; i < port->num_mcs; i++)
  896. if (use_mcs)
  897. cb0->default_qpn_arr[i] =
  898. port->port_res[i].qp->init_attr.qp_nr;
  899. else
  900. cb0->default_qpn_arr[i] =
  901. port->port_res[0].qp->init_attr.qp_nr;
  902. if (netif_msg_ifup(port))
  903. ehea_dump(cb0, sizeof(*cb0), "ehea_configure_port");
  904. mask = EHEA_BMASK_SET(H_PORT_CB0_PRC, 1)
  905. | EHEA_BMASK_SET(H_PORT_CB0_DEFQPNARRAY, 1);
  906. hret = ehea_h_modify_ehea_port(port->adapter->handle,
  907. port->logical_port_id,
  908. H_PORT_CB0, mask, cb0);
  909. ret = -EIO;
  910. if (hret != H_SUCCESS)
  911. goto out_free;
  912. ret = 0;
  913. out_free:
  914. kfree(cb0);
  915. out:
  916. return ret;
  917. }
  918. int ehea_gen_smrs(struct ehea_port_res *pr)
  919. {
  920. int ret;
  921. struct ehea_adapter *adapter = pr->port->adapter;
  922. ret = ehea_gen_smr(adapter, &adapter->mr, &pr->send_mr);
  923. if (ret)
  924. goto out;
  925. ret = ehea_gen_smr(adapter, &adapter->mr, &pr->recv_mr);
  926. if (ret)
  927. goto out_free;
  928. return 0;
  929. out_free:
  930. ehea_rem_mr(&pr->send_mr);
  931. out:
  932. ehea_error("Generating SMRS failed\n");
  933. return -EIO;
  934. }
  935. int ehea_rem_smrs(struct ehea_port_res *pr)
  936. {
  937. if ((ehea_rem_mr(&pr->send_mr))
  938. || (ehea_rem_mr(&pr->recv_mr)))
  939. return -EIO;
  940. else
  941. return 0;
  942. }
  943. static int ehea_init_q_skba(struct ehea_q_skb_arr *q_skba, int max_q_entries)
  944. {
  945. int arr_size = sizeof(void*) * max_q_entries;
  946. q_skba->arr = vmalloc(arr_size);
  947. if (!q_skba->arr)
  948. return -ENOMEM;
  949. memset(q_skba->arr, 0, arr_size);
  950. q_skba->len = max_q_entries;
  951. q_skba->index = 0;
  952. q_skba->os_skbs = 0;
  953. return 0;
  954. }
  955. static int ehea_init_port_res(struct ehea_port *port, struct ehea_port_res *pr,
  956. struct port_res_cfg *pr_cfg, int queue_token)
  957. {
  958. struct ehea_adapter *adapter = port->adapter;
  959. enum ehea_eq_type eq_type = EHEA_EQ;
  960. struct ehea_qp_init_attr *init_attr = NULL;
  961. int ret = -EIO;
  962. memset(pr, 0, sizeof(struct ehea_port_res));
  963. pr->port = port;
  964. spin_lock_init(&pr->xmit_lock);
  965. spin_lock_init(&pr->netif_queue);
  966. pr->eq = ehea_create_eq(adapter, eq_type, EHEA_MAX_ENTRIES_EQ, 0);
  967. if (!pr->eq) {
  968. ehea_error("create_eq failed (eq)");
  969. goto out_free;
  970. }
  971. pr->recv_cq = ehea_create_cq(adapter, pr_cfg->max_entries_rcq,
  972. pr->eq->fw_handle,
  973. port->logical_port_id);
  974. if (!pr->recv_cq) {
  975. ehea_error("create_cq failed (cq_recv)");
  976. goto out_free;
  977. }
  978. pr->send_cq = ehea_create_cq(adapter, pr_cfg->max_entries_scq,
  979. pr->eq->fw_handle,
  980. port->logical_port_id);
  981. if (!pr->send_cq) {
  982. ehea_error("create_cq failed (cq_send)");
  983. goto out_free;
  984. }
  985. if (netif_msg_ifup(port))
  986. ehea_info("Send CQ: act_nr_cqes=%d, Recv CQ: act_nr_cqes=%d",
  987. pr->send_cq->attr.act_nr_of_cqes,
  988. pr->recv_cq->attr.act_nr_of_cqes);
  989. init_attr = kzalloc(sizeof(*init_attr), GFP_KERNEL);
  990. if (!init_attr) {
  991. ret = -ENOMEM;
  992. ehea_error("no mem for ehea_qp_init_attr");
  993. goto out_free;
  994. }
  995. init_attr->low_lat_rq1 = 1;
  996. init_attr->signalingtype = 1; /* generate CQE if specified in WQE */
  997. init_attr->rq_count = 3;
  998. init_attr->qp_token = queue_token;
  999. init_attr->max_nr_send_wqes = pr_cfg->max_entries_sq;
  1000. init_attr->max_nr_rwqes_rq1 = pr_cfg->max_entries_rq1;
  1001. init_attr->max_nr_rwqes_rq2 = pr_cfg->max_entries_rq2;
  1002. init_attr->max_nr_rwqes_rq3 = pr_cfg->max_entries_rq3;
  1003. init_attr->wqe_size_enc_sq = EHEA_SG_SQ;
  1004. init_attr->wqe_size_enc_rq1 = EHEA_SG_RQ1;
  1005. init_attr->wqe_size_enc_rq2 = EHEA_SG_RQ2;
  1006. init_attr->wqe_size_enc_rq3 = EHEA_SG_RQ3;
  1007. init_attr->rq2_threshold = EHEA_RQ2_THRESHOLD;
  1008. init_attr->rq3_threshold = EHEA_RQ3_THRESHOLD;
  1009. init_attr->port_nr = port->logical_port_id;
  1010. init_attr->send_cq_handle = pr->send_cq->fw_handle;
  1011. init_attr->recv_cq_handle = pr->recv_cq->fw_handle;
  1012. init_attr->aff_eq_handle = port->qp_eq->fw_handle;
  1013. pr->qp = ehea_create_qp(adapter, adapter->pd, init_attr);
  1014. if (!pr->qp) {
  1015. ehea_error("create_qp failed");
  1016. ret = -EIO;
  1017. goto out_free;
  1018. }
  1019. if (netif_msg_ifup(port))
  1020. ehea_info("QP: qp_nr=%d\n act_nr_snd_wqe=%d\n nr_rwqe_rq1=%d\n "
  1021. "nr_rwqe_rq2=%d\n nr_rwqe_rq3=%d", init_attr->qp_nr,
  1022. init_attr->act_nr_send_wqes,
  1023. init_attr->act_nr_rwqes_rq1,
  1024. init_attr->act_nr_rwqes_rq2,
  1025. init_attr->act_nr_rwqes_rq3);
  1026. ret = ehea_init_q_skba(&pr->sq_skba, init_attr->act_nr_send_wqes + 1);
  1027. ret |= ehea_init_q_skba(&pr->rq1_skba, init_attr->act_nr_rwqes_rq1 + 1);
  1028. ret |= ehea_init_q_skba(&pr->rq2_skba, init_attr->act_nr_rwqes_rq2 + 1);
  1029. ret |= ehea_init_q_skba(&pr->rq3_skba, init_attr->act_nr_rwqes_rq3 + 1);
  1030. if (ret)
  1031. goto out_free;
  1032. pr->swqe_refill_th = init_attr->act_nr_send_wqes / 10;
  1033. if (ehea_gen_smrs(pr) != 0) {
  1034. ret = -EIO;
  1035. goto out_free;
  1036. }
  1037. atomic_set(&pr->swqe_avail, init_attr->act_nr_send_wqes - 1);
  1038. kfree(init_attr);
  1039. pr->d_netdev = alloc_netdev(0, "", ether_setup);
  1040. if (!pr->d_netdev)
  1041. goto out_free;
  1042. pr->d_netdev->priv = pr;
  1043. pr->d_netdev->weight = 64;
  1044. pr->d_netdev->poll = ehea_poll;
  1045. set_bit(__LINK_STATE_START, &pr->d_netdev->state);
  1046. strcpy(pr->d_netdev->name, port->netdev->name);
  1047. ret = 0;
  1048. goto out;
  1049. out_free:
  1050. kfree(init_attr);
  1051. vfree(pr->sq_skba.arr);
  1052. vfree(pr->rq1_skba.arr);
  1053. vfree(pr->rq2_skba.arr);
  1054. vfree(pr->rq3_skba.arr);
  1055. ehea_destroy_qp(pr->qp);
  1056. ehea_destroy_cq(pr->send_cq);
  1057. ehea_destroy_cq(pr->recv_cq);
  1058. ehea_destroy_eq(pr->eq);
  1059. out:
  1060. return ret;
  1061. }
  1062. static int ehea_clean_portres(struct ehea_port *port, struct ehea_port_res *pr)
  1063. {
  1064. int ret, i;
  1065. free_netdev(pr->d_netdev);
  1066. ret = ehea_destroy_qp(pr->qp);
  1067. if (!ret) {
  1068. ehea_destroy_cq(pr->send_cq);
  1069. ehea_destroy_cq(pr->recv_cq);
  1070. ehea_destroy_eq(pr->eq);
  1071. for (i = 0; i < pr->rq1_skba.len; i++)
  1072. if (pr->rq1_skba.arr[i])
  1073. dev_kfree_skb(pr->rq1_skba.arr[i]);
  1074. for (i = 0; i < pr->rq2_skba.len; i++)
  1075. if (pr->rq2_skba.arr[i])
  1076. dev_kfree_skb(pr->rq2_skba.arr[i]);
  1077. for (i = 0; i < pr->rq3_skba.len; i++)
  1078. if (pr->rq3_skba.arr[i])
  1079. dev_kfree_skb(pr->rq3_skba.arr[i]);
  1080. for (i = 0; i < pr->sq_skba.len; i++)
  1081. if (pr->sq_skba.arr[i])
  1082. dev_kfree_skb(pr->sq_skba.arr[i]);
  1083. vfree(pr->rq1_skba.arr);
  1084. vfree(pr->rq2_skba.arr);
  1085. vfree(pr->rq3_skba.arr);
  1086. vfree(pr->sq_skba.arr);
  1087. ret = ehea_rem_smrs(pr);
  1088. }
  1089. return ret;
  1090. }
  1091. /*
  1092. * The write_* functions store information in swqe which is used by
  1093. * the hardware to calculate the ip/tcp/udp checksum
  1094. */
  1095. static inline void write_ip_start_end(struct ehea_swqe *swqe,
  1096. const struct sk_buff *skb)
  1097. {
  1098. swqe->ip_start = skb_network_offset(skb);
  1099. swqe->ip_end = (u8)(swqe->ip_start + ip_hdrlen(skb) - 1);
  1100. }
  1101. static inline void write_tcp_offset_end(struct ehea_swqe *swqe,
  1102. const struct sk_buff *skb)
  1103. {
  1104. swqe->tcp_offset =
  1105. (u8)(swqe->ip_end + 1 + offsetof(struct tcphdr, check));
  1106. swqe->tcp_end = (u16)skb->len - 1;
  1107. }
  1108. static inline void write_udp_offset_end(struct ehea_swqe *swqe,
  1109. const struct sk_buff *skb)
  1110. {
  1111. swqe->tcp_offset =
  1112. (u8)(swqe->ip_end + 1 + offsetof(struct udphdr, check));
  1113. swqe->tcp_end = (u16)skb->len - 1;
  1114. }
  1115. static void write_swqe2_TSO(struct sk_buff *skb,
  1116. struct ehea_swqe *swqe, u32 lkey)
  1117. {
  1118. struct ehea_vsgentry *sg1entry = &swqe->u.immdata_desc.sg_entry;
  1119. u8 *imm_data = &swqe->u.immdata_desc.immediate_data[0];
  1120. int skb_data_size = skb->len - skb->data_len;
  1121. int headersize;
  1122. /* Packet is TCP with TSO enabled */
  1123. swqe->tx_control |= EHEA_SWQE_TSO;
  1124. swqe->mss = skb_shinfo(skb)->gso_size;
  1125. /* copy only eth/ip/tcp headers to immediate data and
  1126. * the rest of skb->data to sg1entry
  1127. */
  1128. headersize = ETH_HLEN + ip_hdrlen(skb) + tcp_hdrlen(skb);
  1129. skb_data_size = skb->len - skb->data_len;
  1130. if (skb_data_size >= headersize) {
  1131. /* copy immediate data */
  1132. skb_copy_from_linear_data(skb, imm_data, headersize);
  1133. swqe->immediate_data_length = headersize;
  1134. if (skb_data_size > headersize) {
  1135. /* set sg1entry data */
  1136. sg1entry->l_key = lkey;
  1137. sg1entry->len = skb_data_size - headersize;
  1138. sg1entry->vaddr =
  1139. ehea_map_vaddr(skb->data + headersize);
  1140. swqe->descriptors++;
  1141. }
  1142. } else
  1143. ehea_error("cannot handle fragmented headers");
  1144. }
  1145. static void write_swqe2_nonTSO(struct sk_buff *skb,
  1146. struct ehea_swqe *swqe, u32 lkey)
  1147. {
  1148. int skb_data_size = skb->len - skb->data_len;
  1149. u8 *imm_data = &swqe->u.immdata_desc.immediate_data[0];
  1150. struct ehea_vsgentry *sg1entry = &swqe->u.immdata_desc.sg_entry;
  1151. /* Packet is any nonTSO type
  1152. *
  1153. * Copy as much as possible skb->data to immediate data and
  1154. * the rest to sg1entry
  1155. */
  1156. if (skb_data_size >= SWQE2_MAX_IMM) {
  1157. /* copy immediate data */
  1158. skb_copy_from_linear_data(skb, imm_data, SWQE2_MAX_IMM);
  1159. swqe->immediate_data_length = SWQE2_MAX_IMM;
  1160. if (skb_data_size > SWQE2_MAX_IMM) {
  1161. /* copy sg1entry data */
  1162. sg1entry->l_key = lkey;
  1163. sg1entry->len = skb_data_size - SWQE2_MAX_IMM;
  1164. sg1entry->vaddr =
  1165. ehea_map_vaddr(skb->data + SWQE2_MAX_IMM);
  1166. swqe->descriptors++;
  1167. }
  1168. } else {
  1169. skb_copy_from_linear_data(skb, imm_data, skb_data_size);
  1170. swqe->immediate_data_length = skb_data_size;
  1171. }
  1172. }
  1173. static inline void write_swqe2_data(struct sk_buff *skb, struct net_device *dev,
  1174. struct ehea_swqe *swqe, u32 lkey)
  1175. {
  1176. struct ehea_vsgentry *sg_list, *sg1entry, *sgentry;
  1177. skb_frag_t *frag;
  1178. int nfrags, sg1entry_contains_frag_data, i;
  1179. nfrags = skb_shinfo(skb)->nr_frags;
  1180. sg1entry = &swqe->u.immdata_desc.sg_entry;
  1181. sg_list = (struct ehea_vsgentry*)&swqe->u.immdata_desc.sg_list;
  1182. swqe->descriptors = 0;
  1183. sg1entry_contains_frag_data = 0;
  1184. if ((dev->features & NETIF_F_TSO) && skb_shinfo(skb)->gso_size)
  1185. write_swqe2_TSO(skb, swqe, lkey);
  1186. else
  1187. write_swqe2_nonTSO(skb, swqe, lkey);
  1188. /* write descriptors */
  1189. if (nfrags > 0) {
  1190. if (swqe->descriptors == 0) {
  1191. /* sg1entry not yet used */
  1192. frag = &skb_shinfo(skb)->frags[0];
  1193. /* copy sg1entry data */
  1194. sg1entry->l_key = lkey;
  1195. sg1entry->len = frag->size;
  1196. sg1entry->vaddr =
  1197. ehea_map_vaddr(page_address(frag->page)
  1198. + frag->page_offset);
  1199. swqe->descriptors++;
  1200. sg1entry_contains_frag_data = 1;
  1201. }
  1202. for (i = sg1entry_contains_frag_data; i < nfrags; i++) {
  1203. frag = &skb_shinfo(skb)->frags[i];
  1204. sgentry = &sg_list[i - sg1entry_contains_frag_data];
  1205. sgentry->l_key = lkey;
  1206. sgentry->len = frag->size;
  1207. sgentry->vaddr =
  1208. ehea_map_vaddr(page_address(frag->page)
  1209. + frag->page_offset);
  1210. swqe->descriptors++;
  1211. }
  1212. }
  1213. }
  1214. static int ehea_broadcast_reg_helper(struct ehea_port *port, u32 hcallid)
  1215. {
  1216. int ret = 0;
  1217. u64 hret;
  1218. u8 reg_type;
  1219. /* De/Register untagged packets */
  1220. reg_type = EHEA_BCMC_BROADCAST | EHEA_BCMC_UNTAGGED;
  1221. hret = ehea_h_reg_dereg_bcmc(port->adapter->handle,
  1222. port->logical_port_id,
  1223. reg_type, port->mac_addr, 0, hcallid);
  1224. if (hret != H_SUCCESS) {
  1225. ehea_error("%sregistering bc address failed (tagged)",
  1226. hcallid == H_REG_BCMC ? "" : "de");
  1227. ret = -EIO;
  1228. goto out_herr;
  1229. }
  1230. /* De/Register VLAN packets */
  1231. reg_type = EHEA_BCMC_BROADCAST | EHEA_BCMC_VLANID_ALL;
  1232. hret = ehea_h_reg_dereg_bcmc(port->adapter->handle,
  1233. port->logical_port_id,
  1234. reg_type, port->mac_addr, 0, hcallid);
  1235. if (hret != H_SUCCESS) {
  1236. ehea_error("%sregistering bc address failed (vlan)",
  1237. hcallid == H_REG_BCMC ? "" : "de");
  1238. ret = -EIO;
  1239. }
  1240. out_herr:
  1241. return ret;
  1242. }
  1243. static int ehea_set_mac_addr(struct net_device *dev, void *sa)
  1244. {
  1245. struct ehea_port *port = netdev_priv(dev);
  1246. struct sockaddr *mac_addr = sa;
  1247. struct hcp_ehea_port_cb0 *cb0;
  1248. int ret;
  1249. u64 hret;
  1250. if (!is_valid_ether_addr(mac_addr->sa_data)) {
  1251. ret = -EADDRNOTAVAIL;
  1252. goto out;
  1253. }
  1254. cb0 = kzalloc(PAGE_SIZE, GFP_KERNEL);
  1255. if (!cb0) {
  1256. ehea_error("no mem for cb0");
  1257. ret = -ENOMEM;
  1258. goto out;
  1259. }
  1260. memcpy(&(cb0->port_mac_addr), &(mac_addr->sa_data[0]), ETH_ALEN);
  1261. cb0->port_mac_addr = cb0->port_mac_addr >> 16;
  1262. hret = ehea_h_modify_ehea_port(port->adapter->handle,
  1263. port->logical_port_id, H_PORT_CB0,
  1264. EHEA_BMASK_SET(H_PORT_CB0_MAC, 1), cb0);
  1265. if (hret != H_SUCCESS) {
  1266. ret = -EIO;
  1267. goto out_free;
  1268. }
  1269. memcpy(dev->dev_addr, mac_addr->sa_data, dev->addr_len);
  1270. /* Deregister old MAC in pHYP */
  1271. ret = ehea_broadcast_reg_helper(port, H_DEREG_BCMC);
  1272. if (ret)
  1273. goto out_free;
  1274. port->mac_addr = cb0->port_mac_addr << 16;
  1275. /* Register new MAC in pHYP */
  1276. ret = ehea_broadcast_reg_helper(port, H_REG_BCMC);
  1277. if (ret)
  1278. goto out_free;
  1279. ret = 0;
  1280. out_free:
  1281. kfree(cb0);
  1282. out:
  1283. return ret;
  1284. }
  1285. static void ehea_promiscuous_error(u64 hret, int enable)
  1286. {
  1287. if (hret == H_AUTHORITY)
  1288. ehea_info("Hypervisor denied %sabling promiscuous mode",
  1289. enable == 1 ? "en" : "dis");
  1290. else
  1291. ehea_error("failed %sabling promiscuous mode",
  1292. enable == 1 ? "en" : "dis");
  1293. }
  1294. static void ehea_promiscuous(struct net_device *dev, int enable)
  1295. {
  1296. struct ehea_port *port = netdev_priv(dev);
  1297. struct hcp_ehea_port_cb7 *cb7;
  1298. u64 hret;
  1299. if ((enable && port->promisc) || (!enable && !port->promisc))
  1300. return;
  1301. cb7 = kzalloc(PAGE_SIZE, GFP_ATOMIC);
  1302. if (!cb7) {
  1303. ehea_error("no mem for cb7");
  1304. goto out;
  1305. }
  1306. /* Modify Pxs_DUCQPN in CB7 */
  1307. cb7->def_uc_qpn = enable == 1 ? port->port_res[0].qp->fw_handle : 0;
  1308. hret = ehea_h_modify_ehea_port(port->adapter->handle,
  1309. port->logical_port_id,
  1310. H_PORT_CB7, H_PORT_CB7_DUCQPN, cb7);
  1311. if (hret) {
  1312. ehea_promiscuous_error(hret, enable);
  1313. goto out;
  1314. }
  1315. port->promisc = enable;
  1316. out:
  1317. kfree(cb7);
  1318. return;
  1319. }
  1320. static u64 ehea_multicast_reg_helper(struct ehea_port *port, u64 mc_mac_addr,
  1321. u32 hcallid)
  1322. {
  1323. u64 hret;
  1324. u8 reg_type;
  1325. reg_type = EHEA_BCMC_SCOPE_ALL | EHEA_BCMC_MULTICAST
  1326. | EHEA_BCMC_UNTAGGED;
  1327. hret = ehea_h_reg_dereg_bcmc(port->adapter->handle,
  1328. port->logical_port_id,
  1329. reg_type, mc_mac_addr, 0, hcallid);
  1330. if (hret)
  1331. goto out;
  1332. reg_type = EHEA_BCMC_SCOPE_ALL | EHEA_BCMC_MULTICAST
  1333. | EHEA_BCMC_VLANID_ALL;
  1334. hret = ehea_h_reg_dereg_bcmc(port->adapter->handle,
  1335. port->logical_port_id,
  1336. reg_type, mc_mac_addr, 0, hcallid);
  1337. out:
  1338. return hret;
  1339. }
  1340. static int ehea_drop_multicast_list(struct net_device *dev)
  1341. {
  1342. struct ehea_port *port = netdev_priv(dev);
  1343. struct ehea_mc_list *mc_entry = port->mc_list;
  1344. struct list_head *pos;
  1345. struct list_head *temp;
  1346. int ret = 0;
  1347. u64 hret;
  1348. list_for_each_safe(pos, temp, &(port->mc_list->list)) {
  1349. mc_entry = list_entry(pos, struct ehea_mc_list, list);
  1350. hret = ehea_multicast_reg_helper(port, mc_entry->macaddr,
  1351. H_DEREG_BCMC);
  1352. if (hret) {
  1353. ehea_error("failed deregistering mcast MAC");
  1354. ret = -EIO;
  1355. }
  1356. list_del(pos);
  1357. kfree(mc_entry);
  1358. }
  1359. return ret;
  1360. }
  1361. static void ehea_allmulti(struct net_device *dev, int enable)
  1362. {
  1363. struct ehea_port *port = netdev_priv(dev);
  1364. u64 hret;
  1365. if (!port->allmulti) {
  1366. if (enable) {
  1367. /* Enable ALLMULTI */
  1368. ehea_drop_multicast_list(dev);
  1369. hret = ehea_multicast_reg_helper(port, 0, H_REG_BCMC);
  1370. if (!hret)
  1371. port->allmulti = 1;
  1372. else
  1373. ehea_error("failed enabling IFF_ALLMULTI");
  1374. }
  1375. } else
  1376. if (!enable) {
  1377. /* Disable ALLMULTI */
  1378. hret = ehea_multicast_reg_helper(port, 0, H_DEREG_BCMC);
  1379. if (!hret)
  1380. port->allmulti = 0;
  1381. else
  1382. ehea_error("failed disabling IFF_ALLMULTI");
  1383. }
  1384. }
  1385. static void ehea_add_multicast_entry(struct ehea_port* port, u8* mc_mac_addr)
  1386. {
  1387. struct ehea_mc_list *ehea_mcl_entry;
  1388. u64 hret;
  1389. ehea_mcl_entry = kzalloc(sizeof(*ehea_mcl_entry), GFP_ATOMIC);
  1390. if (!ehea_mcl_entry) {
  1391. ehea_error("no mem for mcl_entry");
  1392. return;
  1393. }
  1394. INIT_LIST_HEAD(&ehea_mcl_entry->list);
  1395. memcpy(&ehea_mcl_entry->macaddr, mc_mac_addr, ETH_ALEN);
  1396. hret = ehea_multicast_reg_helper(port, ehea_mcl_entry->macaddr,
  1397. H_REG_BCMC);
  1398. if (!hret)
  1399. list_add(&ehea_mcl_entry->list, &port->mc_list->list);
  1400. else {
  1401. ehea_error("failed registering mcast MAC");
  1402. kfree(ehea_mcl_entry);
  1403. }
  1404. }
  1405. static void ehea_set_multicast_list(struct net_device *dev)
  1406. {
  1407. struct ehea_port *port = netdev_priv(dev);
  1408. struct dev_mc_list *k_mcl_entry;
  1409. int ret, i;
  1410. if (dev->flags & IFF_PROMISC) {
  1411. ehea_promiscuous(dev, 1);
  1412. return;
  1413. }
  1414. ehea_promiscuous(dev, 0);
  1415. if (dev->flags & IFF_ALLMULTI) {
  1416. ehea_allmulti(dev, 1);
  1417. return;
  1418. }
  1419. ehea_allmulti(dev, 0);
  1420. if (dev->mc_count) {
  1421. ret = ehea_drop_multicast_list(dev);
  1422. if (ret) {
  1423. /* Dropping the current multicast list failed.
  1424. * Enabling ALL_MULTI is the best we can do.
  1425. */
  1426. ehea_allmulti(dev, 1);
  1427. }
  1428. if (dev->mc_count > port->adapter->max_mc_mac) {
  1429. ehea_info("Mcast registration limit reached (0x%lx). "
  1430. "Use ALLMULTI!",
  1431. port->adapter->max_mc_mac);
  1432. goto out;
  1433. }
  1434. for (i = 0, k_mcl_entry = dev->mc_list;
  1435. i < dev->mc_count;
  1436. i++, k_mcl_entry = k_mcl_entry->next) {
  1437. ehea_add_multicast_entry(port, k_mcl_entry->dmi_addr);
  1438. }
  1439. }
  1440. out:
  1441. return;
  1442. }
  1443. static int ehea_change_mtu(struct net_device *dev, int new_mtu)
  1444. {
  1445. if ((new_mtu < 68) || (new_mtu > EHEA_MAX_PACKET_SIZE))
  1446. return -EINVAL;
  1447. dev->mtu = new_mtu;
  1448. return 0;
  1449. }
  1450. static void ehea_xmit2(struct sk_buff *skb, struct net_device *dev,
  1451. struct ehea_swqe *swqe, u32 lkey)
  1452. {
  1453. if (skb->protocol == htons(ETH_P_IP)) {
  1454. const struct iphdr *iph = ip_hdr(skb);
  1455. /* IPv4 */
  1456. swqe->tx_control |= EHEA_SWQE_CRC
  1457. | EHEA_SWQE_IP_CHECKSUM
  1458. | EHEA_SWQE_TCP_CHECKSUM
  1459. | EHEA_SWQE_IMM_DATA_PRESENT
  1460. | EHEA_SWQE_DESCRIPTORS_PRESENT;
  1461. write_ip_start_end(swqe, skb);
  1462. if (iph->protocol == IPPROTO_UDP) {
  1463. if ((iph->frag_off & IP_MF)
  1464. || (iph->frag_off & IP_OFFSET))
  1465. /* IP fragment, so don't change cs */
  1466. swqe->tx_control &= ~EHEA_SWQE_TCP_CHECKSUM;
  1467. else
  1468. write_udp_offset_end(swqe, skb);
  1469. } else if (iph->protocol == IPPROTO_TCP) {
  1470. write_tcp_offset_end(swqe, skb);
  1471. }
  1472. /* icmp (big data) and ip segmentation packets (all other ip
  1473. packets) do not require any special handling */
  1474. } else {
  1475. /* Other Ethernet Protocol */
  1476. swqe->tx_control |= EHEA_SWQE_CRC
  1477. | EHEA_SWQE_IMM_DATA_PRESENT
  1478. | EHEA_SWQE_DESCRIPTORS_PRESENT;
  1479. }
  1480. write_swqe2_data(skb, dev, swqe, lkey);
  1481. }
  1482. static void ehea_xmit3(struct sk_buff *skb, struct net_device *dev,
  1483. struct ehea_swqe *swqe)
  1484. {
  1485. int nfrags = skb_shinfo(skb)->nr_frags;
  1486. u8 *imm_data = &swqe->u.immdata_nodesc.immediate_data[0];
  1487. skb_frag_t *frag;
  1488. int i;
  1489. if (skb->protocol == htons(ETH_P_IP)) {
  1490. const struct iphdr *iph = ip_hdr(skb);
  1491. /* IPv4 */
  1492. write_ip_start_end(swqe, skb);
  1493. if (iph->protocol == IPPROTO_TCP) {
  1494. swqe->tx_control |= EHEA_SWQE_CRC
  1495. | EHEA_SWQE_IP_CHECKSUM
  1496. | EHEA_SWQE_TCP_CHECKSUM
  1497. | EHEA_SWQE_IMM_DATA_PRESENT;
  1498. write_tcp_offset_end(swqe, skb);
  1499. } else if (iph->protocol == IPPROTO_UDP) {
  1500. if ((iph->frag_off & IP_MF)
  1501. || (iph->frag_off & IP_OFFSET))
  1502. /* IP fragment, so don't change cs */
  1503. swqe->tx_control |= EHEA_SWQE_CRC
  1504. | EHEA_SWQE_IMM_DATA_PRESENT;
  1505. else {
  1506. swqe->tx_control |= EHEA_SWQE_CRC
  1507. | EHEA_SWQE_IP_CHECKSUM
  1508. | EHEA_SWQE_TCP_CHECKSUM
  1509. | EHEA_SWQE_IMM_DATA_PRESENT;
  1510. write_udp_offset_end(swqe, skb);
  1511. }
  1512. } else {
  1513. /* icmp (big data) and
  1514. ip segmentation packets (all other ip packets) */
  1515. swqe->tx_control |= EHEA_SWQE_CRC
  1516. | EHEA_SWQE_IP_CHECKSUM
  1517. | EHEA_SWQE_IMM_DATA_PRESENT;
  1518. }
  1519. } else {
  1520. /* Other Ethernet Protocol */
  1521. swqe->tx_control |= EHEA_SWQE_CRC | EHEA_SWQE_IMM_DATA_PRESENT;
  1522. }
  1523. /* copy (immediate) data */
  1524. if (nfrags == 0) {
  1525. /* data is in a single piece */
  1526. skb_copy_from_linear_data(skb, imm_data, skb->len);
  1527. } else {
  1528. /* first copy data from the skb->data buffer ... */
  1529. skb_copy_from_linear_data(skb, imm_data,
  1530. skb->len - skb->data_len);
  1531. imm_data += skb->len - skb->data_len;
  1532. /* ... then copy data from the fragments */
  1533. for (i = 0; i < nfrags; i++) {
  1534. frag = &skb_shinfo(skb)->frags[i];
  1535. memcpy(imm_data,
  1536. page_address(frag->page) + frag->page_offset,
  1537. frag->size);
  1538. imm_data += frag->size;
  1539. }
  1540. }
  1541. swqe->immediate_data_length = skb->len;
  1542. dev_kfree_skb(skb);
  1543. }
  1544. static inline int ehea_hash_skb(struct sk_buff *skb, int num_qps)
  1545. {
  1546. struct tcphdr *tcp;
  1547. u32 tmp;
  1548. if ((skb->protocol == htons(ETH_P_IP)) &&
  1549. (ip_hdr(skb)->protocol == IPPROTO_TCP)) {
  1550. tcp = (struct tcphdr*)(skb_network_header(skb) + (ip_hdr(skb)->ihl * 4));
  1551. tmp = (tcp->source + (tcp->dest << 16)) % 31;
  1552. tmp += ip_hdr(skb)->daddr % 31;
  1553. return tmp % num_qps;
  1554. }
  1555. else
  1556. return 0;
  1557. }
  1558. static int ehea_start_xmit(struct sk_buff *skb, struct net_device *dev)
  1559. {
  1560. struct ehea_port *port = netdev_priv(dev);
  1561. struct ehea_swqe *swqe;
  1562. unsigned long flags;
  1563. u32 lkey;
  1564. int swqe_index;
  1565. struct ehea_port_res *pr;
  1566. pr = &port->port_res[ehea_hash_skb(skb, port->num_tx_qps)];
  1567. if (!spin_trylock(&pr->xmit_lock))
  1568. return NETDEV_TX_BUSY;
  1569. if (pr->queue_stopped) {
  1570. spin_unlock(&pr->xmit_lock);
  1571. return NETDEV_TX_BUSY;
  1572. }
  1573. swqe = ehea_get_swqe(pr->qp, &swqe_index);
  1574. memset(swqe, 0, SWQE_HEADER_SIZE);
  1575. atomic_dec(&pr->swqe_avail);
  1576. if (skb->len <= SWQE3_MAX_IMM) {
  1577. u32 sig_iv = port->sig_comp_iv;
  1578. u32 swqe_num = pr->swqe_id_counter;
  1579. ehea_xmit3(skb, dev, swqe);
  1580. swqe->wr_id = EHEA_BMASK_SET(EHEA_WR_ID_TYPE, EHEA_SWQE3_TYPE)
  1581. | EHEA_BMASK_SET(EHEA_WR_ID_COUNT, swqe_num);
  1582. if (pr->swqe_ll_count >= (sig_iv - 1)) {
  1583. swqe->wr_id |= EHEA_BMASK_SET(EHEA_WR_ID_REFILL,
  1584. sig_iv);
  1585. swqe->tx_control |= EHEA_SWQE_SIGNALLED_COMPLETION;
  1586. pr->swqe_ll_count = 0;
  1587. } else
  1588. pr->swqe_ll_count += 1;
  1589. } else {
  1590. swqe->wr_id =
  1591. EHEA_BMASK_SET(EHEA_WR_ID_TYPE, EHEA_SWQE2_TYPE)
  1592. | EHEA_BMASK_SET(EHEA_WR_ID_COUNT, pr->swqe_id_counter)
  1593. | EHEA_BMASK_SET(EHEA_WR_ID_REFILL, 1)
  1594. | EHEA_BMASK_SET(EHEA_WR_ID_INDEX, pr->sq_skba.index);
  1595. pr->sq_skba.arr[pr->sq_skba.index] = skb;
  1596. pr->sq_skba.index++;
  1597. pr->sq_skba.index &= (pr->sq_skba.len - 1);
  1598. lkey = pr->send_mr.lkey;
  1599. ehea_xmit2(skb, dev, swqe, lkey);
  1600. swqe->tx_control |= EHEA_SWQE_SIGNALLED_COMPLETION;
  1601. }
  1602. pr->swqe_id_counter += 1;
  1603. if (port->vgrp && vlan_tx_tag_present(skb)) {
  1604. swqe->tx_control |= EHEA_SWQE_VLAN_INSERT;
  1605. swqe->vlan_tag = vlan_tx_tag_get(skb);
  1606. }
  1607. if (netif_msg_tx_queued(port)) {
  1608. ehea_info("post swqe on QP %d", pr->qp->init_attr.qp_nr);
  1609. ehea_dump(swqe, 512, "swqe");
  1610. }
  1611. if (unlikely(test_bit(__EHEA_STOP_XFER, &ehea_driver_flags)))
  1612. goto out;
  1613. ehea_post_swqe(pr->qp, swqe);
  1614. pr->tx_packets++;
  1615. if (unlikely(atomic_read(&pr->swqe_avail) <= 1)) {
  1616. spin_lock_irqsave(&pr->netif_queue, flags);
  1617. if (unlikely(atomic_read(&pr->swqe_avail) <= 1)) {
  1618. pr->p_stats.queue_stopped++;
  1619. netif_stop_queue(dev);
  1620. pr->queue_stopped = 1;
  1621. }
  1622. spin_unlock_irqrestore(&pr->netif_queue, flags);
  1623. }
  1624. dev->trans_start = jiffies;
  1625. spin_unlock(&pr->xmit_lock);
  1626. out:
  1627. return NETDEV_TX_OK;
  1628. }
  1629. static void ehea_vlan_rx_register(struct net_device *dev,
  1630. struct vlan_group *grp)
  1631. {
  1632. struct ehea_port *port = netdev_priv(dev);
  1633. struct ehea_adapter *adapter = port->adapter;
  1634. struct hcp_ehea_port_cb1 *cb1;
  1635. u64 hret;
  1636. port->vgrp = grp;
  1637. cb1 = kzalloc(PAGE_SIZE, GFP_KERNEL);
  1638. if (!cb1) {
  1639. ehea_error("no mem for cb1");
  1640. goto out;
  1641. }
  1642. memset(cb1->vlan_filter, 0, sizeof(cb1->vlan_filter));
  1643. hret = ehea_h_modify_ehea_port(adapter->handle, port->logical_port_id,
  1644. H_PORT_CB1, H_PORT_CB1_ALL, cb1);
  1645. if (hret != H_SUCCESS)
  1646. ehea_error("modify_ehea_port failed");
  1647. kfree(cb1);
  1648. out:
  1649. return;
  1650. }
  1651. static void ehea_vlan_rx_add_vid(struct net_device *dev, unsigned short vid)
  1652. {
  1653. struct ehea_port *port = netdev_priv(dev);
  1654. struct ehea_adapter *adapter = port->adapter;
  1655. struct hcp_ehea_port_cb1 *cb1;
  1656. int index;
  1657. u64 hret;
  1658. cb1 = kzalloc(PAGE_SIZE, GFP_KERNEL);
  1659. if (!cb1) {
  1660. ehea_error("no mem for cb1");
  1661. goto out;
  1662. }
  1663. hret = ehea_h_query_ehea_port(adapter->handle, port->logical_port_id,
  1664. H_PORT_CB1, H_PORT_CB1_ALL, cb1);
  1665. if (hret != H_SUCCESS) {
  1666. ehea_error("query_ehea_port failed");
  1667. goto out;
  1668. }
  1669. index = (vid / 64);
  1670. cb1->vlan_filter[index] |= ((u64)(0x8000000000000000 >> (vid & 0x3F)));
  1671. hret = ehea_h_modify_ehea_port(adapter->handle, port->logical_port_id,
  1672. H_PORT_CB1, H_PORT_CB1_ALL, cb1);
  1673. if (hret != H_SUCCESS)
  1674. ehea_error("modify_ehea_port failed");
  1675. out:
  1676. kfree(cb1);
  1677. return;
  1678. }
  1679. static void ehea_vlan_rx_kill_vid(struct net_device *dev, unsigned short vid)
  1680. {
  1681. struct ehea_port *port = netdev_priv(dev);
  1682. struct ehea_adapter *adapter = port->adapter;
  1683. struct hcp_ehea_port_cb1 *cb1;
  1684. int index;
  1685. u64 hret;
  1686. vlan_group_set_device(port->vgrp, vid, NULL);
  1687. cb1 = kzalloc(PAGE_SIZE, GFP_KERNEL);
  1688. if (!cb1) {
  1689. ehea_error("no mem for cb1");
  1690. goto out;
  1691. }
  1692. hret = ehea_h_query_ehea_port(adapter->handle, port->logical_port_id,
  1693. H_PORT_CB1, H_PORT_CB1_ALL, cb1);
  1694. if (hret != H_SUCCESS) {
  1695. ehea_error("query_ehea_port failed");
  1696. goto out;
  1697. }
  1698. index = (vid / 64);
  1699. cb1->vlan_filter[index] &= ~((u64)(0x8000000000000000 >> (vid & 0x3F)));
  1700. hret = ehea_h_modify_ehea_port(adapter->handle, port->logical_port_id,
  1701. H_PORT_CB1, H_PORT_CB1_ALL, cb1);
  1702. if (hret != H_SUCCESS)
  1703. ehea_error("modify_ehea_port failed");
  1704. out:
  1705. kfree(cb1);
  1706. return;
  1707. }
  1708. int ehea_activate_qp(struct ehea_adapter *adapter, struct ehea_qp *qp)
  1709. {
  1710. int ret = -EIO;
  1711. u64 hret;
  1712. u16 dummy16 = 0;
  1713. u64 dummy64 = 0;
  1714. struct hcp_modify_qp_cb0* cb0;
  1715. cb0 = kzalloc(PAGE_SIZE, GFP_KERNEL);
  1716. if (!cb0) {
  1717. ret = -ENOMEM;
  1718. goto out;
  1719. }
  1720. hret = ehea_h_query_ehea_qp(adapter->handle, 0, qp->fw_handle,
  1721. EHEA_BMASK_SET(H_QPCB0_ALL, 0xFFFF), cb0);
  1722. if (hret != H_SUCCESS) {
  1723. ehea_error("query_ehea_qp failed (1)");
  1724. goto out;
  1725. }
  1726. cb0->qp_ctl_reg = H_QP_CR_STATE_INITIALIZED;
  1727. hret = ehea_h_modify_ehea_qp(adapter->handle, 0, qp->fw_handle,
  1728. EHEA_BMASK_SET(H_QPCB0_QP_CTL_REG, 1), cb0,
  1729. &dummy64, &dummy64, &dummy16, &dummy16);
  1730. if (hret != H_SUCCESS) {
  1731. ehea_error("modify_ehea_qp failed (1)");
  1732. goto out;
  1733. }
  1734. hret = ehea_h_query_ehea_qp(adapter->handle, 0, qp->fw_handle,
  1735. EHEA_BMASK_SET(H_QPCB0_ALL, 0xFFFF), cb0);
  1736. if (hret != H_SUCCESS) {
  1737. ehea_error("query_ehea_qp failed (2)");
  1738. goto out;
  1739. }
  1740. cb0->qp_ctl_reg = H_QP_CR_ENABLED | H_QP_CR_STATE_INITIALIZED;
  1741. hret = ehea_h_modify_ehea_qp(adapter->handle, 0, qp->fw_handle,
  1742. EHEA_BMASK_SET(H_QPCB0_QP_CTL_REG, 1), cb0,
  1743. &dummy64, &dummy64, &dummy16, &dummy16);
  1744. if (hret != H_SUCCESS) {
  1745. ehea_error("modify_ehea_qp failed (2)");
  1746. goto out;
  1747. }
  1748. hret = ehea_h_query_ehea_qp(adapter->handle, 0, qp->fw_handle,
  1749. EHEA_BMASK_SET(H_QPCB0_ALL, 0xFFFF), cb0);
  1750. if (hret != H_SUCCESS) {
  1751. ehea_error("query_ehea_qp failed (3)");
  1752. goto out;
  1753. }
  1754. cb0->qp_ctl_reg = H_QP_CR_ENABLED | H_QP_CR_STATE_RDY2SND;
  1755. hret = ehea_h_modify_ehea_qp(adapter->handle, 0, qp->fw_handle,
  1756. EHEA_BMASK_SET(H_QPCB0_QP_CTL_REG, 1), cb0,
  1757. &dummy64, &dummy64, &dummy16, &dummy16);
  1758. if (hret != H_SUCCESS) {
  1759. ehea_error("modify_ehea_qp failed (3)");
  1760. goto out;
  1761. }
  1762. hret = ehea_h_query_ehea_qp(adapter->handle, 0, qp->fw_handle,
  1763. EHEA_BMASK_SET(H_QPCB0_ALL, 0xFFFF), cb0);
  1764. if (hret != H_SUCCESS) {
  1765. ehea_error("query_ehea_qp failed (4)");
  1766. goto out;
  1767. }
  1768. ret = 0;
  1769. out:
  1770. kfree(cb0);
  1771. return ret;
  1772. }
  1773. static int ehea_port_res_setup(struct ehea_port *port, int def_qps,
  1774. int add_tx_qps)
  1775. {
  1776. int ret, i;
  1777. struct port_res_cfg pr_cfg, pr_cfg_small_rx;
  1778. enum ehea_eq_type eq_type = EHEA_EQ;
  1779. port->qp_eq = ehea_create_eq(port->adapter, eq_type,
  1780. EHEA_MAX_ENTRIES_EQ, 1);
  1781. if (!port->qp_eq) {
  1782. ret = -EINVAL;
  1783. ehea_error("ehea_create_eq failed (qp_eq)");
  1784. goto out_kill_eq;
  1785. }
  1786. pr_cfg.max_entries_rcq = rq1_entries + rq2_entries + rq3_entries;
  1787. pr_cfg.max_entries_scq = sq_entries * 2;
  1788. pr_cfg.max_entries_sq = sq_entries;
  1789. pr_cfg.max_entries_rq1 = rq1_entries;
  1790. pr_cfg.max_entries_rq2 = rq2_entries;
  1791. pr_cfg.max_entries_rq3 = rq3_entries;
  1792. pr_cfg_small_rx.max_entries_rcq = 1;
  1793. pr_cfg_small_rx.max_entries_scq = sq_entries;
  1794. pr_cfg_small_rx.max_entries_sq = sq_entries;
  1795. pr_cfg_small_rx.max_entries_rq1 = 1;
  1796. pr_cfg_small_rx.max_entries_rq2 = 1;
  1797. pr_cfg_small_rx.max_entries_rq3 = 1;
  1798. for (i = 0; i < def_qps; i++) {
  1799. ret = ehea_init_port_res(port, &port->port_res[i], &pr_cfg, i);
  1800. if (ret)
  1801. goto out_clean_pr;
  1802. }
  1803. for (i = def_qps; i < def_qps + add_tx_qps; i++) {
  1804. ret = ehea_init_port_res(port, &port->port_res[i],
  1805. &pr_cfg_small_rx, i);
  1806. if (ret)
  1807. goto out_clean_pr;
  1808. }
  1809. return 0;
  1810. out_clean_pr:
  1811. while (--i >= 0)
  1812. ehea_clean_portres(port, &port->port_res[i]);
  1813. out_kill_eq:
  1814. ehea_destroy_eq(port->qp_eq);
  1815. return ret;
  1816. }
  1817. static int ehea_clean_all_portres(struct ehea_port *port)
  1818. {
  1819. int ret = 0;
  1820. int i;
  1821. for(i = 0; i < port->num_def_qps + port->num_add_tx_qps; i++)
  1822. ret |= ehea_clean_portres(port, &port->port_res[i]);
  1823. ret |= ehea_destroy_eq(port->qp_eq);
  1824. return ret;
  1825. }
  1826. static void ehea_remove_adapter_mr(struct ehea_adapter *adapter)
  1827. {
  1828. if (adapter->active_ports)
  1829. return;
  1830. ehea_rem_mr(&adapter->mr);
  1831. }
  1832. static int ehea_add_adapter_mr(struct ehea_adapter *adapter)
  1833. {
  1834. if (adapter->active_ports)
  1835. return 0;
  1836. return ehea_reg_kernel_mr(adapter, &adapter->mr);
  1837. }
  1838. static int ehea_up(struct net_device *dev)
  1839. {
  1840. int ret, i;
  1841. struct ehea_port *port = netdev_priv(dev);
  1842. if (port->state == EHEA_PORT_UP)
  1843. return 0;
  1844. ret = ehea_port_res_setup(port, port->num_def_qps,
  1845. port->num_add_tx_qps);
  1846. if (ret) {
  1847. ehea_error("port_res_failed");
  1848. goto out;
  1849. }
  1850. /* Set default QP for this port */
  1851. ret = ehea_configure_port(port);
  1852. if (ret) {
  1853. ehea_error("ehea_configure_port failed. ret:%d", ret);
  1854. goto out_clean_pr;
  1855. }
  1856. ret = ehea_reg_interrupts(dev);
  1857. if (ret) {
  1858. ehea_error("reg_interrupts failed. ret:%d", ret);
  1859. goto out_clean_pr;
  1860. }
  1861. for(i = 0; i < port->num_def_qps + port->num_add_tx_qps; i++) {
  1862. ret = ehea_activate_qp(port->adapter, port->port_res[i].qp);
  1863. if (ret) {
  1864. ehea_error("activate_qp failed");
  1865. goto out_free_irqs;
  1866. }
  1867. }
  1868. for(i = 0; i < port->num_def_qps; i++) {
  1869. ret = ehea_fill_port_res(&port->port_res[i]);
  1870. if (ret) {
  1871. ehea_error("out_free_irqs");
  1872. goto out_free_irqs;
  1873. }
  1874. }
  1875. ret = 0;
  1876. port->state = EHEA_PORT_UP;
  1877. goto out;
  1878. out_free_irqs:
  1879. ehea_free_interrupts(dev);
  1880. out_clean_pr:
  1881. ehea_clean_all_portres(port);
  1882. out:
  1883. if (ret)
  1884. ehea_info("Failed starting %s. ret=%i", dev->name, ret);
  1885. return ret;
  1886. }
  1887. static int ehea_open(struct net_device *dev)
  1888. {
  1889. int ret;
  1890. struct ehea_port *port = netdev_priv(dev);
  1891. down(&port->port_lock);
  1892. if (netif_msg_ifup(port))
  1893. ehea_info("enabling port %s", dev->name);
  1894. ret = ehea_up(dev);
  1895. if (!ret)
  1896. netif_start_queue(dev);
  1897. up(&port->port_lock);
  1898. return ret;
  1899. }
  1900. static int ehea_down(struct net_device *dev)
  1901. {
  1902. int ret, i;
  1903. struct ehea_port *port = netdev_priv(dev);
  1904. if (port->state == EHEA_PORT_DOWN)
  1905. return 0;
  1906. ehea_drop_multicast_list(dev);
  1907. ehea_free_interrupts(dev);
  1908. for (i = 0; i < port->num_def_qps; i++)
  1909. while (test_bit(__LINK_STATE_RX_SCHED,
  1910. &port->port_res[i].d_netdev->state))
  1911. msleep(1);
  1912. port->state = EHEA_PORT_DOWN;
  1913. ret = ehea_clean_all_portres(port);
  1914. if (ret)
  1915. ehea_info("Failed freeing resources for %s. ret=%i",
  1916. dev->name, ret);
  1917. return ret;
  1918. }
  1919. static int ehea_stop(struct net_device *dev)
  1920. {
  1921. int ret;
  1922. struct ehea_port *port = netdev_priv(dev);
  1923. if (netif_msg_ifdown(port))
  1924. ehea_info("disabling port %s", dev->name);
  1925. flush_workqueue(port->adapter->ehea_wq);
  1926. down(&port->port_lock);
  1927. netif_stop_queue(dev);
  1928. ret = ehea_down(dev);
  1929. up(&port->port_lock);
  1930. return ret;
  1931. }
  1932. static void ehea_reset_port(struct work_struct *work)
  1933. {
  1934. int ret;
  1935. struct ehea_port *port =
  1936. container_of(work, struct ehea_port, reset_task);
  1937. struct net_device *dev = port->netdev;
  1938. port->resets++;
  1939. down(&port->port_lock);
  1940. netif_stop_queue(dev);
  1941. netif_poll_disable(dev);
  1942. ehea_down(dev);
  1943. ret = ehea_up(dev);
  1944. if (ret)
  1945. goto out;
  1946. if (netif_msg_timer(port))
  1947. ehea_info("Device %s resetted successfully", dev->name);
  1948. netif_poll_enable(dev);
  1949. netif_wake_queue(dev);
  1950. out:
  1951. up(&port->port_lock);
  1952. return;
  1953. }
  1954. static void ehea_rereg_mrs(struct work_struct *work)
  1955. {
  1956. int ret, i;
  1957. struct ehea_adapter *adapter;
  1958. ehea_info("LPAR memory enlarged - re-initializing driver");
  1959. list_for_each_entry(adapter, &adapter_list, list)
  1960. if (adapter->active_ports) {
  1961. /* Shutdown all ports */
  1962. for (i = 0; i < EHEA_MAX_PORTS; i++) {
  1963. struct ehea_port *port = adapter->port[i];
  1964. if (port) {
  1965. struct net_device *dev = port->netdev;
  1966. if (dev->flags & IFF_UP) {
  1967. ehea_info("stopping %s",
  1968. dev->name);
  1969. down(&port->port_lock);
  1970. netif_stop_queue(dev);
  1971. netif_poll_disable(dev);
  1972. ehea_down(dev);
  1973. up(&port->port_lock);
  1974. }
  1975. }
  1976. }
  1977. /* Unregister old memory region */
  1978. ret = ehea_rem_mr(&adapter->mr);
  1979. if (ret) {
  1980. ehea_error("unregister MR failed - driver"
  1981. " inoperable!");
  1982. goto out;
  1983. }
  1984. }
  1985. ehea_destroy_busmap();
  1986. ret = ehea_create_busmap();
  1987. if (ret)
  1988. goto out;
  1989. clear_bit(__EHEA_STOP_XFER, &ehea_driver_flags);
  1990. list_for_each_entry(adapter, &adapter_list, list)
  1991. if (adapter->active_ports) {
  1992. /* Register new memory region */
  1993. ret = ehea_reg_kernel_mr(adapter, &adapter->mr);
  1994. if (ret) {
  1995. ehea_error("register MR failed - driver"
  1996. " inoperable!");
  1997. goto out;
  1998. }
  1999. /* Restart all ports */
  2000. for (i = 0; i < EHEA_MAX_PORTS; i++) {
  2001. struct ehea_port *port = adapter->port[i];
  2002. if (port) {
  2003. struct net_device *dev = port->netdev;
  2004. if (dev->flags & IFF_UP) {
  2005. ehea_info("restarting %s",
  2006. dev->name);
  2007. down(&port->port_lock);
  2008. ret = ehea_up(dev);
  2009. if (!ret) {
  2010. netif_poll_enable(dev);
  2011. netif_wake_queue(dev);
  2012. }
  2013. up(&port->port_lock);
  2014. }
  2015. }
  2016. }
  2017. }
  2018. out:
  2019. return;
  2020. }
  2021. static void ehea_tx_watchdog(struct net_device *dev)
  2022. {
  2023. struct ehea_port *port = netdev_priv(dev);
  2024. if (netif_carrier_ok(dev))
  2025. queue_work(port->adapter->ehea_wq, &port->reset_task);
  2026. }
  2027. int ehea_sense_adapter_attr(struct ehea_adapter *adapter)
  2028. {
  2029. struct hcp_query_ehea *cb;
  2030. u64 hret;
  2031. int ret;
  2032. cb = kzalloc(PAGE_SIZE, GFP_KERNEL);
  2033. if (!cb) {
  2034. ret = -ENOMEM;
  2035. goto out;
  2036. }
  2037. hret = ehea_h_query_ehea(adapter->handle, cb);
  2038. if (hret != H_SUCCESS) {
  2039. ret = -EIO;
  2040. goto out_herr;
  2041. }
  2042. adapter->max_mc_mac = cb->max_mc_mac - 1;
  2043. ret = 0;
  2044. out_herr:
  2045. kfree(cb);
  2046. out:
  2047. return ret;
  2048. }
  2049. int ehea_get_jumboframe_status(struct ehea_port *port, int *jumbo)
  2050. {
  2051. struct hcp_ehea_port_cb4 *cb4;
  2052. u64 hret;
  2053. int ret = 0;
  2054. *jumbo = 0;
  2055. /* (Try to) enable *jumbo frames */
  2056. cb4 = kzalloc(PAGE_SIZE, GFP_KERNEL);
  2057. if (!cb4) {
  2058. ehea_error("no mem for cb4");
  2059. ret = -ENOMEM;
  2060. goto out;
  2061. } else {
  2062. hret = ehea_h_query_ehea_port(port->adapter->handle,
  2063. port->logical_port_id,
  2064. H_PORT_CB4,
  2065. H_PORT_CB4_JUMBO, cb4);
  2066. if (hret == H_SUCCESS) {
  2067. if (cb4->jumbo_frame)
  2068. *jumbo = 1;
  2069. else {
  2070. cb4->jumbo_frame = 1;
  2071. hret = ehea_h_modify_ehea_port(port->adapter->
  2072. handle,
  2073. port->
  2074. logical_port_id,
  2075. H_PORT_CB4,
  2076. H_PORT_CB4_JUMBO,
  2077. cb4);
  2078. if (hret == H_SUCCESS)
  2079. *jumbo = 1;
  2080. }
  2081. } else
  2082. ret = -EINVAL;
  2083. kfree(cb4);
  2084. }
  2085. out:
  2086. return ret;
  2087. }
  2088. static ssize_t ehea_show_port_id(struct device *dev,
  2089. struct device_attribute *attr, char *buf)
  2090. {
  2091. struct ehea_port *port = container_of(dev, struct ehea_port, ofdev.dev);
  2092. return sprintf(buf, "%d", port->logical_port_id);
  2093. }
  2094. static DEVICE_ATTR(log_port_id, S_IRUSR | S_IRGRP | S_IROTH, ehea_show_port_id,
  2095. NULL);
  2096. static void __devinit logical_port_release(struct device *dev)
  2097. {
  2098. struct ehea_port *port = container_of(dev, struct ehea_port, ofdev.dev);
  2099. of_node_put(port->ofdev.node);
  2100. }
  2101. static int ehea_driver_sysfs_add(struct device *dev,
  2102. struct device_driver *driver)
  2103. {
  2104. int ret;
  2105. ret = sysfs_create_link(&driver->kobj, &dev->kobj,
  2106. kobject_name(&dev->kobj));
  2107. if (ret == 0) {
  2108. ret = sysfs_create_link(&dev->kobj, &driver->kobj,
  2109. "driver");
  2110. if (ret)
  2111. sysfs_remove_link(&driver->kobj,
  2112. kobject_name(&dev->kobj));
  2113. }
  2114. return ret;
  2115. }
  2116. static void ehea_driver_sysfs_remove(struct device *dev,
  2117. struct device_driver *driver)
  2118. {
  2119. struct device_driver *drv = driver;
  2120. if (drv) {
  2121. sysfs_remove_link(&drv->kobj, kobject_name(&dev->kobj));
  2122. sysfs_remove_link(&dev->kobj, "driver");
  2123. }
  2124. }
  2125. static struct device *ehea_register_port(struct ehea_port *port,
  2126. struct device_node *dn)
  2127. {
  2128. int ret;
  2129. port->ofdev.node = of_node_get(dn);
  2130. port->ofdev.dev.parent = &port->adapter->ebus_dev->ofdev.dev;
  2131. port->ofdev.dev.bus = &ibmebus_bus_type;
  2132. sprintf(port->ofdev.dev.bus_id, "port%d", port_name_cnt++);
  2133. port->ofdev.dev.release = logical_port_release;
  2134. ret = of_device_register(&port->ofdev);
  2135. if (ret) {
  2136. ehea_error("failed to register device. ret=%d", ret);
  2137. goto out;
  2138. }
  2139. ret = device_create_file(&port->ofdev.dev, &dev_attr_log_port_id);
  2140. if (ret) {
  2141. ehea_error("failed to register attributes, ret=%d", ret);
  2142. goto out_unreg_of_dev;
  2143. }
  2144. ret = ehea_driver_sysfs_add(&port->ofdev.dev, &ehea_driver.driver);
  2145. if (ret) {
  2146. ehea_error("failed to register sysfs driver link");
  2147. goto out_rem_dev_file;
  2148. }
  2149. return &port->ofdev.dev;
  2150. out_rem_dev_file:
  2151. device_remove_file(&port->ofdev.dev, &dev_attr_log_port_id);
  2152. out_unreg_of_dev:
  2153. of_device_unregister(&port->ofdev);
  2154. out:
  2155. return NULL;
  2156. }
  2157. static void ehea_unregister_port(struct ehea_port *port)
  2158. {
  2159. ehea_driver_sysfs_remove(&port->ofdev.dev, &ehea_driver.driver);
  2160. device_remove_file(&port->ofdev.dev, &dev_attr_log_port_id);
  2161. of_device_unregister(&port->ofdev);
  2162. }
  2163. struct ehea_port *ehea_setup_single_port(struct ehea_adapter *adapter,
  2164. u32 logical_port_id,
  2165. struct device_node *dn)
  2166. {
  2167. int ret;
  2168. struct net_device *dev;
  2169. struct ehea_port *port;
  2170. struct device *port_dev;
  2171. int jumbo;
  2172. /* allocate memory for the port structures */
  2173. dev = alloc_etherdev(sizeof(struct ehea_port));
  2174. if (!dev) {
  2175. ehea_error("no mem for net_device");
  2176. ret = -ENOMEM;
  2177. goto out_err;
  2178. }
  2179. port = netdev_priv(dev);
  2180. sema_init(&port->port_lock, 1);
  2181. port->state = EHEA_PORT_DOWN;
  2182. port->sig_comp_iv = sq_entries / 10;
  2183. port->adapter = adapter;
  2184. port->netdev = dev;
  2185. port->logical_port_id = logical_port_id;
  2186. port->msg_enable = netif_msg_init(msg_level, EHEA_MSG_DEFAULT);
  2187. port->mc_list = kzalloc(sizeof(struct ehea_mc_list), GFP_KERNEL);
  2188. if (!port->mc_list) {
  2189. ret = -ENOMEM;
  2190. goto out_free_ethdev;
  2191. }
  2192. INIT_LIST_HEAD(&port->mc_list->list);
  2193. ret = ehea_sense_port_attr(port);
  2194. if (ret)
  2195. goto out_free_mc_list;
  2196. port_dev = ehea_register_port(port, dn);
  2197. if (!port_dev)
  2198. goto out_free_mc_list;
  2199. SET_NETDEV_DEV(dev, port_dev);
  2200. /* initialize net_device structure */
  2201. SET_MODULE_OWNER(dev);
  2202. memcpy(dev->dev_addr, &port->mac_addr, ETH_ALEN);
  2203. dev->open = ehea_open;
  2204. dev->poll = ehea_poll_firstqueue;
  2205. #ifdef CONFIG_NET_POLL_CONTROLLER
  2206. dev->poll_controller = ehea_netpoll;
  2207. #endif
  2208. dev->weight = 64;
  2209. dev->stop = ehea_stop;
  2210. dev->hard_start_xmit = ehea_start_xmit;
  2211. dev->get_stats = ehea_get_stats;
  2212. dev->set_multicast_list = ehea_set_multicast_list;
  2213. dev->set_mac_address = ehea_set_mac_addr;
  2214. dev->change_mtu = ehea_change_mtu;
  2215. dev->vlan_rx_register = ehea_vlan_rx_register;
  2216. dev->vlan_rx_add_vid = ehea_vlan_rx_add_vid;
  2217. dev->vlan_rx_kill_vid = ehea_vlan_rx_kill_vid;
  2218. dev->features = NETIF_F_SG | NETIF_F_FRAGLIST | NETIF_F_TSO
  2219. | NETIF_F_HIGHDMA | NETIF_F_HW_CSUM | NETIF_F_HW_VLAN_TX
  2220. | NETIF_F_HW_VLAN_RX | NETIF_F_HW_VLAN_FILTER
  2221. | NETIF_F_LLTX;
  2222. dev->tx_timeout = &ehea_tx_watchdog;
  2223. dev->watchdog_timeo = EHEA_WATCH_DOG_TIMEOUT;
  2224. INIT_WORK(&port->reset_task, ehea_reset_port);
  2225. ret = ehea_broadcast_reg_helper(port, H_REG_BCMC);
  2226. if (ret) {
  2227. ret = -EIO;
  2228. goto out_unreg_port;
  2229. }
  2230. ehea_set_ethtool_ops(dev);
  2231. ret = register_netdev(dev);
  2232. if (ret) {
  2233. ehea_error("register_netdev failed. ret=%d", ret);
  2234. goto out_dereg_bc;
  2235. }
  2236. ret = ehea_get_jumboframe_status(port, &jumbo);
  2237. if (ret)
  2238. ehea_error("failed determining jumbo frame status for %s",
  2239. port->netdev->name);
  2240. ehea_info("%s: Jumbo frames are %sabled", dev->name,
  2241. jumbo == 1 ? "en" : "dis");
  2242. adapter->active_ports++;
  2243. return port;
  2244. out_dereg_bc:
  2245. ehea_broadcast_reg_helper(port, H_DEREG_BCMC);
  2246. out_unreg_port:
  2247. ehea_unregister_port(port);
  2248. out_free_mc_list:
  2249. kfree(port->mc_list);
  2250. out_free_ethdev:
  2251. free_netdev(dev);
  2252. out_err:
  2253. ehea_error("setting up logical port with id=%d failed, ret=%d",
  2254. logical_port_id, ret);
  2255. return NULL;
  2256. }
  2257. static void ehea_shutdown_single_port(struct ehea_port *port)
  2258. {
  2259. unregister_netdev(port->netdev);
  2260. ehea_unregister_port(port);
  2261. ehea_broadcast_reg_helper(port, H_DEREG_BCMC);
  2262. kfree(port->mc_list);
  2263. free_netdev(port->netdev);
  2264. port->adapter->active_ports--;
  2265. }
  2266. static int ehea_setup_ports(struct ehea_adapter *adapter)
  2267. {
  2268. struct device_node *lhea_dn;
  2269. struct device_node *eth_dn = NULL;
  2270. const u32 *dn_log_port_id;
  2271. int i = 0;
  2272. lhea_dn = adapter->ebus_dev->ofdev.node;
  2273. while ((eth_dn = of_get_next_child(lhea_dn, eth_dn))) {
  2274. dn_log_port_id = of_get_property(eth_dn, "ibm,hea-port-no",
  2275. NULL);
  2276. if (!dn_log_port_id) {
  2277. ehea_error("bad device node: eth_dn name=%s",
  2278. eth_dn->full_name);
  2279. continue;
  2280. }
  2281. if (ehea_add_adapter_mr(adapter)) {
  2282. ehea_error("creating MR failed");
  2283. of_node_put(eth_dn);
  2284. return -EIO;
  2285. }
  2286. adapter->port[i] = ehea_setup_single_port(adapter,
  2287. *dn_log_port_id,
  2288. eth_dn);
  2289. if (adapter->port[i])
  2290. ehea_info("%s -> logical port id #%d",
  2291. adapter->port[i]->netdev->name,
  2292. *dn_log_port_id);
  2293. else
  2294. ehea_remove_adapter_mr(adapter);
  2295. i++;
  2296. };
  2297. return 0;
  2298. }
  2299. static struct device_node *ehea_get_eth_dn(struct ehea_adapter *adapter,
  2300. u32 logical_port_id)
  2301. {
  2302. struct device_node *lhea_dn;
  2303. struct device_node *eth_dn = NULL;
  2304. const u32 *dn_log_port_id;
  2305. lhea_dn = adapter->ebus_dev->ofdev.node;
  2306. while ((eth_dn = of_get_next_child(lhea_dn, eth_dn))) {
  2307. dn_log_port_id = of_get_property(eth_dn, "ibm,hea-port-no",
  2308. NULL);
  2309. if (dn_log_port_id)
  2310. if (*dn_log_port_id == logical_port_id)
  2311. return eth_dn;
  2312. };
  2313. return NULL;
  2314. }
  2315. static ssize_t ehea_probe_port(struct device *dev,
  2316. struct device_attribute *attr,
  2317. const char *buf, size_t count)
  2318. {
  2319. struct ehea_adapter *adapter = dev->driver_data;
  2320. struct ehea_port *port;
  2321. struct device_node *eth_dn = NULL;
  2322. int i;
  2323. u32 logical_port_id;
  2324. sscanf(buf, "%d", &logical_port_id);
  2325. port = ehea_get_port(adapter, logical_port_id);
  2326. if (port) {
  2327. ehea_info("adding port with logical port id=%d failed. port "
  2328. "already configured as %s.", logical_port_id,
  2329. port->netdev->name);
  2330. return -EINVAL;
  2331. }
  2332. eth_dn = ehea_get_eth_dn(adapter, logical_port_id);
  2333. if (!eth_dn) {
  2334. ehea_info("no logical port with id %d found", logical_port_id);
  2335. return -EINVAL;
  2336. }
  2337. if (ehea_add_adapter_mr(adapter)) {
  2338. ehea_error("creating MR failed");
  2339. return -EIO;
  2340. }
  2341. port = ehea_setup_single_port(adapter, logical_port_id, eth_dn);
  2342. of_node_put(eth_dn);
  2343. if (port) {
  2344. for (i=0; i < EHEA_MAX_PORTS; i++)
  2345. if (!adapter->port[i]) {
  2346. adapter->port[i] = port;
  2347. break;
  2348. }
  2349. ehea_info("added %s (logical port id=%d)", port->netdev->name,
  2350. logical_port_id);
  2351. } else {
  2352. ehea_remove_adapter_mr(adapter);
  2353. return -EIO;
  2354. }
  2355. return (ssize_t) count;
  2356. }
  2357. static ssize_t ehea_remove_port(struct device *dev,
  2358. struct device_attribute *attr,
  2359. const char *buf, size_t count)
  2360. {
  2361. struct ehea_adapter *adapter = dev->driver_data;
  2362. struct ehea_port *port;
  2363. int i;
  2364. u32 logical_port_id;
  2365. sscanf(buf, "%d", &logical_port_id);
  2366. port = ehea_get_port(adapter, logical_port_id);
  2367. if (port) {
  2368. ehea_info("removed %s (logical port id=%d)", port->netdev->name,
  2369. logical_port_id);
  2370. ehea_shutdown_single_port(port);
  2371. for (i=0; i < EHEA_MAX_PORTS; i++)
  2372. if (adapter->port[i] == port) {
  2373. adapter->port[i] = NULL;
  2374. break;
  2375. }
  2376. } else {
  2377. ehea_error("removing port with logical port id=%d failed. port "
  2378. "not configured.", logical_port_id);
  2379. return -EINVAL;
  2380. }
  2381. ehea_remove_adapter_mr(adapter);
  2382. return (ssize_t) count;
  2383. }
  2384. static DEVICE_ATTR(probe_port, S_IWUSR, NULL, ehea_probe_port);
  2385. static DEVICE_ATTR(remove_port, S_IWUSR, NULL, ehea_remove_port);
  2386. int ehea_create_device_sysfs(struct ibmebus_dev *dev)
  2387. {
  2388. int ret = device_create_file(&dev->ofdev.dev, &dev_attr_probe_port);
  2389. if (ret)
  2390. goto out;
  2391. ret = device_create_file(&dev->ofdev.dev, &dev_attr_remove_port);
  2392. out:
  2393. return ret;
  2394. }
  2395. void ehea_remove_device_sysfs(struct ibmebus_dev *dev)
  2396. {
  2397. device_remove_file(&dev->ofdev.dev, &dev_attr_probe_port);
  2398. device_remove_file(&dev->ofdev.dev, &dev_attr_remove_port);
  2399. }
  2400. static int __devinit ehea_probe_adapter(struct ibmebus_dev *dev,
  2401. const struct of_device_id *id)
  2402. {
  2403. struct ehea_adapter *adapter;
  2404. const u64 *adapter_handle;
  2405. int ret;
  2406. if (!dev || !dev->ofdev.node) {
  2407. ehea_error("Invalid ibmebus device probed");
  2408. return -EINVAL;
  2409. }
  2410. adapter = kzalloc(sizeof(*adapter), GFP_KERNEL);
  2411. if (!adapter) {
  2412. ret = -ENOMEM;
  2413. dev_err(&dev->ofdev.dev, "no mem for ehea_adapter\n");
  2414. goto out;
  2415. }
  2416. list_add(&adapter->list, &adapter_list);
  2417. adapter->ebus_dev = dev;
  2418. adapter_handle = of_get_property(dev->ofdev.node, "ibm,hea-handle",
  2419. NULL);
  2420. if (adapter_handle)
  2421. adapter->handle = *adapter_handle;
  2422. if (!adapter->handle) {
  2423. dev_err(&dev->ofdev.dev, "failed getting handle for adapter"
  2424. " '%s'\n", dev->ofdev.node->full_name);
  2425. ret = -ENODEV;
  2426. goto out_free_ad;
  2427. }
  2428. adapter->pd = EHEA_PD_ID;
  2429. dev->ofdev.dev.driver_data = adapter;
  2430. /* initialize adapter and ports */
  2431. /* get adapter properties */
  2432. ret = ehea_sense_adapter_attr(adapter);
  2433. if (ret) {
  2434. dev_err(&dev->ofdev.dev, "sense_adapter_attr failed: %d", ret);
  2435. goto out_free_ad;
  2436. }
  2437. adapter->neq = ehea_create_eq(adapter,
  2438. EHEA_NEQ, EHEA_MAX_ENTRIES_EQ, 1);
  2439. if (!adapter->neq) {
  2440. ret = -EIO;
  2441. dev_err(&dev->ofdev.dev, "NEQ creation failed");
  2442. goto out_free_ad;
  2443. }
  2444. tasklet_init(&adapter->neq_tasklet, ehea_neq_tasklet,
  2445. (unsigned long)adapter);
  2446. ret = ibmebus_request_irq(NULL, adapter->neq->attr.ist1,
  2447. ehea_interrupt_neq, IRQF_DISABLED,
  2448. "ehea_neq", adapter);
  2449. if (ret) {
  2450. dev_err(&dev->ofdev.dev, "requesting NEQ IRQ failed");
  2451. goto out_kill_eq;
  2452. }
  2453. adapter->ehea_wq = create_workqueue("ehea_wq");
  2454. if (!adapter->ehea_wq) {
  2455. ret = -EIO;
  2456. goto out_free_irq;
  2457. }
  2458. ret = ehea_create_device_sysfs(dev);
  2459. if (ret)
  2460. goto out_kill_wq;
  2461. ret = ehea_setup_ports(adapter);
  2462. if (ret) {
  2463. dev_err(&dev->ofdev.dev, "setup_ports failed");
  2464. goto out_rem_dev_sysfs;
  2465. }
  2466. ret = 0;
  2467. goto out;
  2468. out_rem_dev_sysfs:
  2469. ehea_remove_device_sysfs(dev);
  2470. out_kill_wq:
  2471. destroy_workqueue(adapter->ehea_wq);
  2472. out_free_irq:
  2473. ibmebus_free_irq(NULL, adapter->neq->attr.ist1, adapter);
  2474. out_kill_eq:
  2475. ehea_destroy_eq(adapter->neq);
  2476. out_free_ad:
  2477. kfree(adapter);
  2478. out:
  2479. return ret;
  2480. }
  2481. static int __devexit ehea_remove(struct ibmebus_dev *dev)
  2482. {
  2483. struct ehea_adapter *adapter = dev->ofdev.dev.driver_data;
  2484. int i;
  2485. for (i = 0; i < EHEA_MAX_PORTS; i++)
  2486. if (adapter->port[i]) {
  2487. ehea_shutdown_single_port(adapter->port[i]);
  2488. adapter->port[i] = NULL;
  2489. }
  2490. ehea_remove_device_sysfs(dev);
  2491. destroy_workqueue(adapter->ehea_wq);
  2492. ibmebus_free_irq(NULL, adapter->neq->attr.ist1, adapter);
  2493. tasklet_kill(&adapter->neq_tasklet);
  2494. ehea_destroy_eq(adapter->neq);
  2495. ehea_remove_adapter_mr(adapter);
  2496. list_del(&adapter->list);
  2497. kfree(adapter);
  2498. return 0;
  2499. }
  2500. static int check_module_parm(void)
  2501. {
  2502. int ret = 0;
  2503. if ((rq1_entries < EHEA_MIN_ENTRIES_QP) ||
  2504. (rq1_entries > EHEA_MAX_ENTRIES_RQ1)) {
  2505. ehea_info("Bad parameter: rq1_entries");
  2506. ret = -EINVAL;
  2507. }
  2508. if ((rq2_entries < EHEA_MIN_ENTRIES_QP) ||
  2509. (rq2_entries > EHEA_MAX_ENTRIES_RQ2)) {
  2510. ehea_info("Bad parameter: rq2_entries");
  2511. ret = -EINVAL;
  2512. }
  2513. if ((rq3_entries < EHEA_MIN_ENTRIES_QP) ||
  2514. (rq3_entries > EHEA_MAX_ENTRIES_RQ3)) {
  2515. ehea_info("Bad parameter: rq3_entries");
  2516. ret = -EINVAL;
  2517. }
  2518. if ((sq_entries < EHEA_MIN_ENTRIES_QP) ||
  2519. (sq_entries > EHEA_MAX_ENTRIES_SQ)) {
  2520. ehea_info("Bad parameter: sq_entries");
  2521. ret = -EINVAL;
  2522. }
  2523. return ret;
  2524. }
  2525. static ssize_t ehea_show_capabilities(struct device_driver *drv,
  2526. char *buf)
  2527. {
  2528. return sprintf(buf, "%d", EHEA_CAPABILITIES);
  2529. }
  2530. static DRIVER_ATTR(capabilities, S_IRUSR | S_IRGRP | S_IROTH,
  2531. ehea_show_capabilities, NULL);
  2532. int __init ehea_module_init(void)
  2533. {
  2534. int ret;
  2535. printk(KERN_INFO "IBM eHEA ethernet device driver (Release %s)\n",
  2536. DRV_VERSION);
  2537. ehea_driver_wq = create_workqueue("ehea_driver_wq");
  2538. INIT_WORK(&ehea_rereg_mr_task, ehea_rereg_mrs);
  2539. ret = check_module_parm();
  2540. if (ret)
  2541. goto out;
  2542. ret = ehea_create_busmap();
  2543. if (ret)
  2544. goto out;
  2545. ret = ibmebus_register_driver(&ehea_driver);
  2546. if (ret) {
  2547. ehea_error("failed registering eHEA device driver on ebus");
  2548. goto out;
  2549. }
  2550. ret = driver_create_file(&ehea_driver.driver,
  2551. &driver_attr_capabilities);
  2552. if (ret) {
  2553. ehea_error("failed to register capabilities attribute, ret=%d",
  2554. ret);
  2555. ibmebus_unregister_driver(&ehea_driver);
  2556. goto out;
  2557. }
  2558. out:
  2559. return ret;
  2560. }
  2561. static void __exit ehea_module_exit(void)
  2562. {
  2563. destroy_workqueue(ehea_driver_wq);
  2564. driver_remove_file(&ehea_driver.driver, &driver_attr_capabilities);
  2565. ibmebus_unregister_driver(&ehea_driver);
  2566. ehea_destroy_busmap();
  2567. }
  2568. module_init(ehea_module_init);
  2569. module_exit(ehea_module_exit);