qlge_mpi.c 20 KB

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  1. #include "qlge.h"
  2. static void ql_display_mb_sts(struct ql_adapter *qdev,
  3. struct mbox_params *mbcp)
  4. {
  5. int i;
  6. static char *err_sts[] = {
  7. "Command Complete",
  8. "Command Not Supported",
  9. "Host Interface Error",
  10. "Checksum Error",
  11. "Unused Completion Status",
  12. "Test Failed",
  13. "Command Parameter Error"};
  14. QPRINTK(qdev, DRV, DEBUG, "%s.\n",
  15. err_sts[mbcp->mbox_out[0] & 0x0000000f]);
  16. for (i = 0; i < mbcp->out_count; i++)
  17. QPRINTK(qdev, DRV, DEBUG, "mbox_out[%d] = 0x%.08x.\n",
  18. i, mbcp->mbox_out[i]);
  19. }
  20. int ql_read_mpi_reg(struct ql_adapter *qdev, u32 reg, u32 *data)
  21. {
  22. int status;
  23. /* wait for reg to come ready */
  24. status = ql_wait_reg_rdy(qdev, PROC_ADDR, PROC_ADDR_RDY, PROC_ADDR_ERR);
  25. if (status)
  26. goto exit;
  27. /* set up for reg read */
  28. ql_write32(qdev, PROC_ADDR, reg | PROC_ADDR_R);
  29. /* wait for reg to come ready */
  30. status = ql_wait_reg_rdy(qdev, PROC_ADDR, PROC_ADDR_RDY, PROC_ADDR_ERR);
  31. if (status)
  32. goto exit;
  33. /* get the data */
  34. *data = ql_read32(qdev, PROC_DATA);
  35. exit:
  36. return status;
  37. }
  38. int ql_write_mpi_reg(struct ql_adapter *qdev, u32 reg, u32 data)
  39. {
  40. int status = 0;
  41. /* wait for reg to come ready */
  42. status = ql_wait_reg_rdy(qdev, PROC_ADDR, PROC_ADDR_RDY, PROC_ADDR_ERR);
  43. if (status)
  44. goto exit;
  45. /* write the data to the data reg */
  46. ql_write32(qdev, PROC_DATA, data);
  47. /* trigger the write */
  48. ql_write32(qdev, PROC_ADDR, reg);
  49. /* wait for reg to come ready */
  50. status = ql_wait_reg_rdy(qdev, PROC_ADDR, PROC_ADDR_RDY, PROC_ADDR_ERR);
  51. if (status)
  52. goto exit;
  53. exit:
  54. return status;
  55. }
  56. int ql_soft_reset_mpi_risc(struct ql_adapter *qdev)
  57. {
  58. int status;
  59. status = ql_write_mpi_reg(qdev, 0x00001010, 1);
  60. return status;
  61. }
  62. static int ql_get_mb_sts(struct ql_adapter *qdev, struct mbox_params *mbcp)
  63. {
  64. int i, status;
  65. status = ql_sem_spinlock(qdev, SEM_PROC_REG_MASK);
  66. if (status)
  67. return -EBUSY;
  68. for (i = 0; i < mbcp->out_count; i++) {
  69. status =
  70. ql_read_mpi_reg(qdev, qdev->mailbox_out + i,
  71. &mbcp->mbox_out[i]);
  72. if (status) {
  73. QPRINTK(qdev, DRV, ERR, "Failed mailbox read.\n");
  74. break;
  75. }
  76. }
  77. ql_sem_unlock(qdev, SEM_PROC_REG_MASK); /* does flush too */
  78. return status;
  79. }
  80. /* Wait for a single mailbox command to complete.
  81. * Returns zero on success.
  82. */
  83. static int ql_wait_mbx_cmd_cmplt(struct ql_adapter *qdev)
  84. {
  85. int count = 50; /* TODO: arbitrary for now. */
  86. u32 value;
  87. do {
  88. value = ql_read32(qdev, STS);
  89. if (value & STS_PI)
  90. return 0;
  91. udelay(UDELAY_DELAY); /* 10us */
  92. } while (--count);
  93. return -ETIMEDOUT;
  94. }
  95. /* Execute a single mailbox command.
  96. * Caller must hold PROC_ADDR semaphore.
  97. */
  98. static int ql_exec_mb_cmd(struct ql_adapter *qdev, struct mbox_params *mbcp)
  99. {
  100. int i, status;
  101. /*
  102. * Make sure there's nothing pending.
  103. * This shouldn't happen.
  104. */
  105. if (ql_read32(qdev, CSR) & CSR_HRI)
  106. return -EIO;
  107. status = ql_sem_spinlock(qdev, SEM_PROC_REG_MASK);
  108. if (status)
  109. return status;
  110. /*
  111. * Fill the outbound mailboxes.
  112. */
  113. for (i = 0; i < mbcp->in_count; i++) {
  114. status = ql_write_mpi_reg(qdev, qdev->mailbox_in + i,
  115. mbcp->mbox_in[i]);
  116. if (status)
  117. goto end;
  118. }
  119. /*
  120. * Wake up the MPI firmware.
  121. */
  122. ql_write32(qdev, CSR, CSR_CMD_SET_H2R_INT);
  123. end:
  124. ql_sem_unlock(qdev, SEM_PROC_REG_MASK);
  125. return status;
  126. }
  127. /* We are being asked by firmware to accept
  128. * a change to the port. This is only
  129. * a change to max frame sizes (Tx/Rx), pause
  130. * paramters, or loopback mode. We wake up a worker
  131. * to handler processing this since a mailbox command
  132. * will need to be sent to ACK the request.
  133. */
  134. static int ql_idc_req_aen(struct ql_adapter *qdev)
  135. {
  136. int status;
  137. struct mbox_params *mbcp = &qdev->idc_mbc;
  138. QPRINTK(qdev, DRV, ERR, "Enter!\n");
  139. /* Get the status data and start up a thread to
  140. * handle the request.
  141. */
  142. mbcp = &qdev->idc_mbc;
  143. mbcp->out_count = 4;
  144. status = ql_get_mb_sts(qdev, mbcp);
  145. if (status) {
  146. QPRINTK(qdev, DRV, ERR,
  147. "Could not read MPI, resetting ASIC!\n");
  148. ql_queue_asic_error(qdev);
  149. } else {
  150. /* Begin polled mode early so
  151. * we don't get another interrupt
  152. * when we leave mpi_worker.
  153. */
  154. ql_write32(qdev, INTR_MASK, (INTR_MASK_PI << 16));
  155. queue_delayed_work(qdev->workqueue, &qdev->mpi_idc_work, 0);
  156. }
  157. return status;
  158. }
  159. /* Process an inter-device event completion.
  160. * If good, signal the caller's completion.
  161. */
  162. static int ql_idc_cmplt_aen(struct ql_adapter *qdev)
  163. {
  164. int status;
  165. struct mbox_params *mbcp = &qdev->idc_mbc;
  166. mbcp->out_count = 4;
  167. status = ql_get_mb_sts(qdev, mbcp);
  168. if (status) {
  169. QPRINTK(qdev, DRV, ERR,
  170. "Could not read MPI, resetting RISC!\n");
  171. ql_queue_fw_error(qdev);
  172. } else
  173. /* Wake up the sleeping mpi_idc_work thread that is
  174. * waiting for this event.
  175. */
  176. complete(&qdev->ide_completion);
  177. return status;
  178. }
  179. static void ql_link_up(struct ql_adapter *qdev, struct mbox_params *mbcp)
  180. {
  181. int status;
  182. mbcp->out_count = 2;
  183. status = ql_get_mb_sts(qdev, mbcp);
  184. if (status) {
  185. QPRINTK(qdev, DRV, ERR,
  186. "%s: Could not get mailbox status.\n", __func__);
  187. return;
  188. }
  189. qdev->link_status = mbcp->mbox_out[1];
  190. QPRINTK(qdev, DRV, ERR, "Link Up.\n");
  191. /* If we're coming back from an IDC event
  192. * then set up the CAM and frame routing.
  193. */
  194. if (test_bit(QL_CAM_RT_SET, &qdev->flags)) {
  195. status = ql_cam_route_initialize(qdev);
  196. if (status) {
  197. QPRINTK(qdev, IFUP, ERR,
  198. "Failed to init CAM/Routing tables.\n");
  199. return;
  200. } else
  201. clear_bit(QL_CAM_RT_SET, &qdev->flags);
  202. }
  203. /* Queue up a worker to check the frame
  204. * size information, and fix it if it's not
  205. * to our liking.
  206. */
  207. if (!test_bit(QL_PORT_CFG, &qdev->flags)) {
  208. QPRINTK(qdev, DRV, ERR, "Queue Port Config Worker!\n");
  209. set_bit(QL_PORT_CFG, &qdev->flags);
  210. /* Begin polled mode early so
  211. * we don't get another interrupt
  212. * when we leave mpi_worker dpc.
  213. */
  214. ql_write32(qdev, INTR_MASK, (INTR_MASK_PI << 16));
  215. queue_delayed_work(qdev->workqueue,
  216. &qdev->mpi_port_cfg_work, 0);
  217. }
  218. netif_carrier_on(qdev->ndev);
  219. }
  220. static void ql_link_down(struct ql_adapter *qdev, struct mbox_params *mbcp)
  221. {
  222. int status;
  223. mbcp->out_count = 3;
  224. status = ql_get_mb_sts(qdev, mbcp);
  225. if (status)
  226. QPRINTK(qdev, DRV, ERR, "Link down AEN broken!\n");
  227. netif_carrier_off(qdev->ndev);
  228. }
  229. static int ql_sfp_in(struct ql_adapter *qdev, struct mbox_params *mbcp)
  230. {
  231. int status;
  232. mbcp->out_count = 5;
  233. status = ql_get_mb_sts(qdev, mbcp);
  234. if (status)
  235. QPRINTK(qdev, DRV, ERR, "SFP in AEN broken!\n");
  236. else
  237. QPRINTK(qdev, DRV, ERR, "SFP insertion detected.\n");
  238. return status;
  239. }
  240. static int ql_sfp_out(struct ql_adapter *qdev, struct mbox_params *mbcp)
  241. {
  242. int status;
  243. mbcp->out_count = 1;
  244. status = ql_get_mb_sts(qdev, mbcp);
  245. if (status)
  246. QPRINTK(qdev, DRV, ERR, "SFP out AEN broken!\n");
  247. else
  248. QPRINTK(qdev, DRV, ERR, "SFP removal detected.\n");
  249. return status;
  250. }
  251. static int ql_aen_lost(struct ql_adapter *qdev, struct mbox_params *mbcp)
  252. {
  253. int status;
  254. mbcp->out_count = 6;
  255. status = ql_get_mb_sts(qdev, mbcp);
  256. if (status)
  257. QPRINTK(qdev, DRV, ERR, "Lost AEN broken!\n");
  258. else {
  259. int i;
  260. QPRINTK(qdev, DRV, ERR, "Lost AEN detected.\n");
  261. for (i = 0; i < mbcp->out_count; i++)
  262. QPRINTK(qdev, DRV, ERR, "mbox_out[%d] = 0x%.08x.\n",
  263. i, mbcp->mbox_out[i]);
  264. }
  265. return status;
  266. }
  267. static void ql_init_fw_done(struct ql_adapter *qdev, struct mbox_params *mbcp)
  268. {
  269. int status;
  270. mbcp->out_count = 2;
  271. status = ql_get_mb_sts(qdev, mbcp);
  272. if (status) {
  273. QPRINTK(qdev, DRV, ERR, "Firmware did not initialize!\n");
  274. } else {
  275. QPRINTK(qdev, DRV, ERR, "Firmware Revision = 0x%.08x.\n",
  276. mbcp->mbox_out[1]);
  277. status = ql_cam_route_initialize(qdev);
  278. if (status)
  279. QPRINTK(qdev, IFUP, ERR,
  280. "Failed to init CAM/Routing tables.\n");
  281. }
  282. }
  283. /* Process an async event and clear it unless it's an
  284. * error condition.
  285. * This can get called iteratively from the mpi_work thread
  286. * when events arrive via an interrupt.
  287. * It also gets called when a mailbox command is polling for
  288. * it's completion. */
  289. static int ql_mpi_handler(struct ql_adapter *qdev, struct mbox_params *mbcp)
  290. {
  291. int status;
  292. int orig_count = mbcp->out_count;
  293. /* Just get mailbox zero for now. */
  294. mbcp->out_count = 1;
  295. status = ql_get_mb_sts(qdev, mbcp);
  296. if (status) {
  297. QPRINTK(qdev, DRV, ERR,
  298. "Could not read MPI, resetting ASIC!\n");
  299. ql_queue_asic_error(qdev);
  300. goto end;
  301. }
  302. switch (mbcp->mbox_out[0]) {
  303. /* This case is only active when we arrive here
  304. * as a result of issuing a mailbox command to
  305. * the firmware.
  306. */
  307. case MB_CMD_STS_INTRMDT:
  308. case MB_CMD_STS_GOOD:
  309. case MB_CMD_STS_INVLD_CMD:
  310. case MB_CMD_STS_XFC_ERR:
  311. case MB_CMD_STS_CSUM_ERR:
  312. case MB_CMD_STS_ERR:
  313. case MB_CMD_STS_PARAM_ERR:
  314. /* We can only get mailbox status if we're polling from an
  315. * unfinished command. Get the rest of the status data and
  316. * return back to the caller.
  317. * We only end up here when we're polling for a mailbox
  318. * command completion.
  319. */
  320. mbcp->out_count = orig_count;
  321. status = ql_get_mb_sts(qdev, mbcp);
  322. return status;
  323. /* We are being asked by firmware to accept
  324. * a change to the port. This is only
  325. * a change to max frame sizes (Tx/Rx), pause
  326. * paramters, or loopback mode.
  327. */
  328. case AEN_IDC_REQ:
  329. status = ql_idc_req_aen(qdev);
  330. break;
  331. /* Process and inbound IDC event.
  332. * This will happen when we're trying to
  333. * change tx/rx max frame size, change pause
  334. * paramters or loopback mode.
  335. */
  336. case AEN_IDC_CMPLT:
  337. case AEN_IDC_EXT:
  338. status = ql_idc_cmplt_aen(qdev);
  339. break;
  340. case AEN_LINK_UP:
  341. ql_link_up(qdev, mbcp);
  342. break;
  343. case AEN_LINK_DOWN:
  344. ql_link_down(qdev, mbcp);
  345. break;
  346. case AEN_FW_INIT_DONE:
  347. /* If we're in process on executing the firmware,
  348. * then convert the status to normal mailbox status.
  349. */
  350. if (mbcp->mbox_in[0] == MB_CMD_EX_FW) {
  351. mbcp->out_count = orig_count;
  352. status = ql_get_mb_sts(qdev, mbcp);
  353. mbcp->mbox_out[0] = MB_CMD_STS_GOOD;
  354. return status;
  355. }
  356. ql_init_fw_done(qdev, mbcp);
  357. break;
  358. case AEN_AEN_SFP_IN:
  359. ql_sfp_in(qdev, mbcp);
  360. break;
  361. case AEN_AEN_SFP_OUT:
  362. ql_sfp_out(qdev, mbcp);
  363. break;
  364. /* This event can arrive at boot time or after an
  365. * MPI reset if the firmware failed to initialize.
  366. */
  367. case AEN_FW_INIT_FAIL:
  368. /* If we're in process on executing the firmware,
  369. * then convert the status to normal mailbox status.
  370. */
  371. if (mbcp->mbox_in[0] == MB_CMD_EX_FW) {
  372. mbcp->out_count = orig_count;
  373. status = ql_get_mb_sts(qdev, mbcp);
  374. mbcp->mbox_out[0] = MB_CMD_STS_ERR;
  375. return status;
  376. }
  377. QPRINTK(qdev, DRV, ERR,
  378. "Firmware initialization failed.\n");
  379. status = -EIO;
  380. ql_queue_fw_error(qdev);
  381. break;
  382. case AEN_SYS_ERR:
  383. QPRINTK(qdev, DRV, ERR,
  384. "System Error.\n");
  385. ql_queue_fw_error(qdev);
  386. status = -EIO;
  387. break;
  388. case AEN_AEN_LOST:
  389. ql_aen_lost(qdev, mbcp);
  390. break;
  391. default:
  392. QPRINTK(qdev, DRV, ERR,
  393. "Unsupported AE %.08x.\n", mbcp->mbox_out[0]);
  394. /* Clear the MPI firmware status. */
  395. }
  396. end:
  397. ql_write32(qdev, CSR, CSR_CMD_CLR_R2PCI_INT);
  398. return status;
  399. }
  400. /* Execute a single mailbox command.
  401. * mbcp is a pointer to an array of u32. Each
  402. * element in the array contains the value for it's
  403. * respective mailbox register.
  404. */
  405. static int ql_mailbox_command(struct ql_adapter *qdev, struct mbox_params *mbcp)
  406. {
  407. int status, count;
  408. mutex_lock(&qdev->mpi_mutex);
  409. /* Begin polled mode for MPI */
  410. ql_write32(qdev, INTR_MASK, (INTR_MASK_PI << 16));
  411. /* Load the mailbox registers and wake up MPI RISC. */
  412. status = ql_exec_mb_cmd(qdev, mbcp);
  413. if (status)
  414. goto end;
  415. /* If we're generating a system error, then there's nothing
  416. * to wait for.
  417. */
  418. if (mbcp->mbox_in[0] == MB_CMD_MAKE_SYS_ERR)
  419. goto end;
  420. /* Wait for the command to complete. We loop
  421. * here because some AEN might arrive while
  422. * we're waiting for the mailbox command to
  423. * complete. If more than 5 arrive then we can
  424. * assume something is wrong. */
  425. count = 5;
  426. do {
  427. /* Wait for the interrupt to come in. */
  428. status = ql_wait_mbx_cmd_cmplt(qdev);
  429. if (status)
  430. goto end;
  431. /* Process the event. If it's an AEN, it
  432. * will be handled in-line or a worker
  433. * will be spawned. If it's our completion
  434. * we will catch it below.
  435. */
  436. status = ql_mpi_handler(qdev, mbcp);
  437. if (status)
  438. goto end;
  439. /* It's either the completion for our mailbox
  440. * command complete or an AEN. If it's our
  441. * completion then get out.
  442. */
  443. if (((mbcp->mbox_out[0] & 0x0000f000) ==
  444. MB_CMD_STS_GOOD) ||
  445. ((mbcp->mbox_out[0] & 0x0000f000) ==
  446. MB_CMD_STS_INTRMDT))
  447. break;
  448. } while (--count);
  449. if (!count) {
  450. QPRINTK(qdev, DRV, ERR,
  451. "Timed out waiting for mailbox complete.\n");
  452. status = -ETIMEDOUT;
  453. goto end;
  454. }
  455. /* Now we can clear the interrupt condition
  456. * and look at our status.
  457. */
  458. ql_write32(qdev, CSR, CSR_CMD_CLR_R2PCI_INT);
  459. if (((mbcp->mbox_out[0] & 0x0000f000) !=
  460. MB_CMD_STS_GOOD) &&
  461. ((mbcp->mbox_out[0] & 0x0000f000) !=
  462. MB_CMD_STS_INTRMDT)) {
  463. ql_display_mb_sts(qdev, mbcp);
  464. status = -EIO;
  465. }
  466. end:
  467. mutex_unlock(&qdev->mpi_mutex);
  468. /* End polled mode for MPI */
  469. ql_write32(qdev, INTR_MASK, (INTR_MASK_PI << 16) | INTR_MASK_PI);
  470. return status;
  471. }
  472. /* Get functional state for MPI firmware.
  473. * Returns zero on success.
  474. */
  475. int ql_mb_get_fw_state(struct ql_adapter *qdev)
  476. {
  477. struct mbox_params mbc;
  478. struct mbox_params *mbcp = &mbc;
  479. int status = 0;
  480. memset(mbcp, 0, sizeof(struct mbox_params));
  481. mbcp->in_count = 1;
  482. mbcp->out_count = 2;
  483. mbcp->mbox_in[0] = MB_CMD_GET_FW_STATE;
  484. status = ql_mailbox_command(qdev, mbcp);
  485. if (status)
  486. return status;
  487. if (mbcp->mbox_out[0] != MB_CMD_STS_GOOD) {
  488. QPRINTK(qdev, DRV, ERR,
  489. "Failed Get Firmware State.\n");
  490. status = -EIO;
  491. }
  492. /* If bit zero is set in mbx 1 then the firmware is
  493. * running, but not initialized. This should never
  494. * happen.
  495. */
  496. if (mbcp->mbox_out[1] & 1) {
  497. QPRINTK(qdev, DRV, ERR,
  498. "Firmware waiting for initialization.\n");
  499. status = -EIO;
  500. }
  501. return status;
  502. }
  503. /* Send and ACK mailbox command to the firmware to
  504. * let it continue with the change.
  505. */
  506. int ql_mb_idc_ack(struct ql_adapter *qdev)
  507. {
  508. struct mbox_params mbc;
  509. struct mbox_params *mbcp = &mbc;
  510. int status = 0;
  511. memset(mbcp, 0, sizeof(struct mbox_params));
  512. mbcp->in_count = 5;
  513. mbcp->out_count = 1;
  514. mbcp->mbox_in[0] = MB_CMD_IDC_ACK;
  515. mbcp->mbox_in[1] = qdev->idc_mbc.mbox_out[1];
  516. mbcp->mbox_in[2] = qdev->idc_mbc.mbox_out[2];
  517. mbcp->mbox_in[3] = qdev->idc_mbc.mbox_out[3];
  518. mbcp->mbox_in[4] = qdev->idc_mbc.mbox_out[4];
  519. status = ql_mailbox_command(qdev, mbcp);
  520. if (status)
  521. return status;
  522. if (mbcp->mbox_out[0] != MB_CMD_STS_GOOD) {
  523. QPRINTK(qdev, DRV, ERR,
  524. "Failed IDC ACK send.\n");
  525. status = -EIO;
  526. }
  527. return status;
  528. }
  529. /* Get link settings and maximum frame size settings
  530. * for the current port.
  531. * Most likely will block.
  532. */
  533. static int ql_mb_set_port_cfg(struct ql_adapter *qdev)
  534. {
  535. struct mbox_params mbc;
  536. struct mbox_params *mbcp = &mbc;
  537. int status = 0;
  538. memset(mbcp, 0, sizeof(struct mbox_params));
  539. mbcp->in_count = 3;
  540. mbcp->out_count = 1;
  541. mbcp->mbox_in[0] = MB_CMD_SET_PORT_CFG;
  542. mbcp->mbox_in[1] = qdev->link_config;
  543. mbcp->mbox_in[2] = qdev->max_frame_size;
  544. status = ql_mailbox_command(qdev, mbcp);
  545. if (status)
  546. return status;
  547. if (mbcp->mbox_out[0] == MB_CMD_STS_INTRMDT) {
  548. QPRINTK(qdev, DRV, ERR,
  549. "Port Config sent, wait for IDC.\n");
  550. } else if (mbcp->mbox_out[0] != MB_CMD_STS_GOOD) {
  551. QPRINTK(qdev, DRV, ERR,
  552. "Failed Set Port Configuration.\n");
  553. status = -EIO;
  554. }
  555. return status;
  556. }
  557. /* Get link settings and maximum frame size settings
  558. * for the current port.
  559. * Most likely will block.
  560. */
  561. static int ql_mb_get_port_cfg(struct ql_adapter *qdev)
  562. {
  563. struct mbox_params mbc;
  564. struct mbox_params *mbcp = &mbc;
  565. int status = 0;
  566. memset(mbcp, 0, sizeof(struct mbox_params));
  567. mbcp->in_count = 1;
  568. mbcp->out_count = 3;
  569. mbcp->mbox_in[0] = MB_CMD_GET_PORT_CFG;
  570. status = ql_mailbox_command(qdev, mbcp);
  571. if (status)
  572. return status;
  573. if (mbcp->mbox_out[0] != MB_CMD_STS_GOOD) {
  574. QPRINTK(qdev, DRV, ERR,
  575. "Failed Get Port Configuration.\n");
  576. status = -EIO;
  577. } else {
  578. QPRINTK(qdev, DRV, DEBUG,
  579. "Passed Get Port Configuration.\n");
  580. qdev->link_config = mbcp->mbox_out[1];
  581. qdev->max_frame_size = mbcp->mbox_out[2];
  582. }
  583. return status;
  584. }
  585. /* IDC - Inter Device Communication...
  586. * Some firmware commands require consent of adjacent FCOE
  587. * function. This function waits for the OK, or a
  588. * counter-request for a little more time.i
  589. * The firmware will complete the request if the other
  590. * function doesn't respond.
  591. */
  592. static int ql_idc_wait(struct ql_adapter *qdev)
  593. {
  594. int status = -ETIMEDOUT;
  595. long wait_time = 1 * HZ;
  596. struct mbox_params *mbcp = &qdev->idc_mbc;
  597. do {
  598. /* Wait here for the command to complete
  599. * via the IDC process.
  600. */
  601. wait_time =
  602. wait_for_completion_timeout(&qdev->ide_completion,
  603. wait_time);
  604. if (!wait_time) {
  605. QPRINTK(qdev, DRV, ERR,
  606. "IDC Timeout.\n");
  607. break;
  608. }
  609. /* Now examine the response from the IDC process.
  610. * We might have a good completion or a request for
  611. * more wait time.
  612. */
  613. if (mbcp->mbox_out[0] == AEN_IDC_EXT) {
  614. QPRINTK(qdev, DRV, ERR,
  615. "IDC Time Extension from function.\n");
  616. wait_time += (mbcp->mbox_out[1] >> 8) & 0x0000000f;
  617. } else if (mbcp->mbox_out[0] == AEN_IDC_CMPLT) {
  618. QPRINTK(qdev, DRV, ERR,
  619. "IDC Success.\n");
  620. status = 0;
  621. break;
  622. } else {
  623. QPRINTK(qdev, DRV, ERR,
  624. "IDC: Invalid State 0x%.04x.\n",
  625. mbcp->mbox_out[0]);
  626. status = -EIO;
  627. break;
  628. }
  629. } while (wait_time);
  630. return status;
  631. }
  632. /* API called in work thread context to set new TX/RX
  633. * maximum frame size values to match MTU.
  634. */
  635. static int ql_set_port_cfg(struct ql_adapter *qdev)
  636. {
  637. int status;
  638. status = ql_mb_set_port_cfg(qdev);
  639. if (status)
  640. return status;
  641. status = ql_idc_wait(qdev);
  642. return status;
  643. }
  644. /* The following routines are worker threads that process
  645. * events that may sleep waiting for completion.
  646. */
  647. /* This thread gets the maximum TX and RX frame size values
  648. * from the firmware and, if necessary, changes them to match
  649. * the MTU setting.
  650. */
  651. void ql_mpi_port_cfg_work(struct work_struct *work)
  652. {
  653. struct ql_adapter *qdev =
  654. container_of(work, struct ql_adapter, mpi_port_cfg_work.work);
  655. struct net_device *ndev = qdev->ndev;
  656. int status;
  657. status = ql_mb_get_port_cfg(qdev);
  658. if (status) {
  659. QPRINTK(qdev, DRV, ERR,
  660. "Bug: Failed to get port config data.\n");
  661. goto err;
  662. }
  663. if (ndev->mtu <= 2500)
  664. goto end;
  665. else if (qdev->link_config & CFG_JUMBO_FRAME_SIZE &&
  666. qdev->max_frame_size ==
  667. CFG_DEFAULT_MAX_FRAME_SIZE)
  668. goto end;
  669. qdev->link_config |= CFG_JUMBO_FRAME_SIZE;
  670. qdev->max_frame_size = CFG_DEFAULT_MAX_FRAME_SIZE;
  671. status = ql_set_port_cfg(qdev);
  672. if (status) {
  673. QPRINTK(qdev, DRV, ERR,
  674. "Bug: Failed to set port config data.\n");
  675. goto err;
  676. }
  677. end:
  678. clear_bit(QL_PORT_CFG, &qdev->flags);
  679. return;
  680. err:
  681. ql_queue_fw_error(qdev);
  682. goto end;
  683. }
  684. /* Process an inter-device request. This is issues by
  685. * the firmware in response to another function requesting
  686. * a change to the port. We set a flag to indicate a change
  687. * has been made and then send a mailbox command ACKing
  688. * the change request.
  689. */
  690. void ql_mpi_idc_work(struct work_struct *work)
  691. {
  692. struct ql_adapter *qdev =
  693. container_of(work, struct ql_adapter, mpi_idc_work.work);
  694. int status;
  695. struct mbox_params *mbcp = &qdev->idc_mbc;
  696. u32 aen;
  697. aen = mbcp->mbox_out[1] >> 16;
  698. switch (aen) {
  699. default:
  700. QPRINTK(qdev, DRV, ERR,
  701. "Bug: Unhandled IDC action.\n");
  702. break;
  703. case MB_CMD_PORT_RESET:
  704. case MB_CMD_SET_PORT_CFG:
  705. case MB_CMD_STOP_FW:
  706. netif_carrier_off(qdev->ndev);
  707. /* Signal the resulting link up AEN
  708. * that the frame routing and mac addr
  709. * needs to be set.
  710. * */
  711. set_bit(QL_CAM_RT_SET, &qdev->flags);
  712. status = ql_mb_idc_ack(qdev);
  713. if (status) {
  714. QPRINTK(qdev, DRV, ERR,
  715. "Bug: No pending IDC!\n");
  716. }
  717. }
  718. }
  719. void ql_mpi_work(struct work_struct *work)
  720. {
  721. struct ql_adapter *qdev =
  722. container_of(work, struct ql_adapter, mpi_work.work);
  723. struct mbox_params mbc;
  724. struct mbox_params *mbcp = &mbc;
  725. mutex_lock(&qdev->mpi_mutex);
  726. while (ql_read32(qdev, STS) & STS_PI) {
  727. memset(mbcp, 0, sizeof(struct mbox_params));
  728. mbcp->out_count = 1;
  729. ql_mpi_handler(qdev, mbcp);
  730. }
  731. mutex_unlock(&qdev->mpi_mutex);
  732. ql_enable_completion_interrupt(qdev, 0);
  733. }
  734. void ql_mpi_reset_work(struct work_struct *work)
  735. {
  736. struct ql_adapter *qdev =
  737. container_of(work, struct ql_adapter, mpi_reset_work.work);
  738. cancel_delayed_work_sync(&qdev->mpi_work);
  739. cancel_delayed_work_sync(&qdev->mpi_port_cfg_work);
  740. cancel_delayed_work_sync(&qdev->mpi_idc_work);
  741. ql_soft_reset_mpi_risc(qdev);
  742. }