qla_isr.c 48 KB

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  1. /*
  2. * QLogic Fibre Channel HBA Driver
  3. * Copyright (c) 2003-2008 QLogic Corporation
  4. *
  5. * See LICENSE.qla2xxx for copyright and licensing details.
  6. */
  7. #include "qla_def.h"
  8. #include <linux/delay.h>
  9. #include <scsi/scsi_tcq.h>
  10. static void qla2x00_mbx_completion(scsi_qla_host_t *, uint16_t);
  11. static void qla2x00_process_completed_request(struct scsi_qla_host *, uint32_t);
  12. static void qla2x00_status_entry(scsi_qla_host_t *, void *);
  13. static void qla2x00_status_cont_entry(scsi_qla_host_t *, sts_cont_entry_t *);
  14. static void qla2x00_error_entry(scsi_qla_host_t *, sts_entry_t *);
  15. /**
  16. * qla2100_intr_handler() - Process interrupts for the ISP2100 and ISP2200.
  17. * @irq:
  18. * @dev_id: SCSI driver HA context
  19. *
  20. * Called by system whenever the host adapter generates an interrupt.
  21. *
  22. * Returns handled flag.
  23. */
  24. irqreturn_t
  25. qla2100_intr_handler(int irq, void *dev_id)
  26. {
  27. scsi_qla_host_t *ha;
  28. struct device_reg_2xxx __iomem *reg;
  29. int status;
  30. unsigned long iter;
  31. uint16_t hccr;
  32. uint16_t mb[4];
  33. ha = (scsi_qla_host_t *) dev_id;
  34. if (!ha) {
  35. printk(KERN_INFO
  36. "%s(): NULL host pointer\n", __func__);
  37. return (IRQ_NONE);
  38. }
  39. reg = &ha->iobase->isp;
  40. status = 0;
  41. spin_lock(&ha->hardware_lock);
  42. for (iter = 50; iter--; ) {
  43. hccr = RD_REG_WORD(&reg->hccr);
  44. if (hccr & HCCR_RISC_PAUSE) {
  45. if (pci_channel_offline(ha->pdev))
  46. break;
  47. /*
  48. * Issue a "HARD" reset in order for the RISC interrupt
  49. * bit to be cleared. Schedule a big hammmer to get
  50. * out of the RISC PAUSED state.
  51. */
  52. WRT_REG_WORD(&reg->hccr, HCCR_RESET_RISC);
  53. RD_REG_WORD(&reg->hccr);
  54. ha->isp_ops->fw_dump(ha, 1);
  55. set_bit(ISP_ABORT_NEEDED, &ha->dpc_flags);
  56. break;
  57. } else if ((RD_REG_WORD(&reg->istatus) & ISR_RISC_INT) == 0)
  58. break;
  59. if (RD_REG_WORD(&reg->semaphore) & BIT_0) {
  60. WRT_REG_WORD(&reg->hccr, HCCR_CLR_RISC_INT);
  61. RD_REG_WORD(&reg->hccr);
  62. /* Get mailbox data. */
  63. mb[0] = RD_MAILBOX_REG(ha, reg, 0);
  64. if (mb[0] > 0x3fff && mb[0] < 0x8000) {
  65. qla2x00_mbx_completion(ha, mb[0]);
  66. status |= MBX_INTERRUPT;
  67. } else if (mb[0] > 0x7fff && mb[0] < 0xc000) {
  68. mb[1] = RD_MAILBOX_REG(ha, reg, 1);
  69. mb[2] = RD_MAILBOX_REG(ha, reg, 2);
  70. mb[3] = RD_MAILBOX_REG(ha, reg, 3);
  71. qla2x00_async_event(ha, mb);
  72. } else {
  73. /*EMPTY*/
  74. DEBUG2(printk("scsi(%ld): Unrecognized "
  75. "interrupt type (%d).\n",
  76. ha->host_no, mb[0]));
  77. }
  78. /* Release mailbox registers. */
  79. WRT_REG_WORD(&reg->semaphore, 0);
  80. RD_REG_WORD(&reg->semaphore);
  81. } else {
  82. qla2x00_process_response_queue(ha);
  83. WRT_REG_WORD(&reg->hccr, HCCR_CLR_RISC_INT);
  84. RD_REG_WORD(&reg->hccr);
  85. }
  86. }
  87. spin_unlock(&ha->hardware_lock);
  88. if (test_bit(MBX_INTR_WAIT, &ha->mbx_cmd_flags) &&
  89. (status & MBX_INTERRUPT) && ha->flags.mbox_int) {
  90. set_bit(MBX_INTERRUPT, &ha->mbx_cmd_flags);
  91. complete(&ha->mbx_intr_comp);
  92. }
  93. return (IRQ_HANDLED);
  94. }
  95. /**
  96. * qla2300_intr_handler() - Process interrupts for the ISP23xx and ISP63xx.
  97. * @irq:
  98. * @dev_id: SCSI driver HA context
  99. *
  100. * Called by system whenever the host adapter generates an interrupt.
  101. *
  102. * Returns handled flag.
  103. */
  104. irqreturn_t
  105. qla2300_intr_handler(int irq, void *dev_id)
  106. {
  107. scsi_qla_host_t *ha;
  108. struct device_reg_2xxx __iomem *reg;
  109. int status;
  110. unsigned long iter;
  111. uint32_t stat;
  112. uint16_t hccr;
  113. uint16_t mb[4];
  114. ha = (scsi_qla_host_t *) dev_id;
  115. if (!ha) {
  116. printk(KERN_INFO
  117. "%s(): NULL host pointer\n", __func__);
  118. return (IRQ_NONE);
  119. }
  120. reg = &ha->iobase->isp;
  121. status = 0;
  122. spin_lock(&ha->hardware_lock);
  123. for (iter = 50; iter--; ) {
  124. stat = RD_REG_DWORD(&reg->u.isp2300.host_status);
  125. if (stat & HSR_RISC_PAUSED) {
  126. if (pci_channel_offline(ha->pdev))
  127. break;
  128. hccr = RD_REG_WORD(&reg->hccr);
  129. if (hccr & (BIT_15 | BIT_13 | BIT_11 | BIT_8))
  130. qla_printk(KERN_INFO, ha, "Parity error -- "
  131. "HCCR=%x, Dumping firmware!\n", hccr);
  132. else
  133. qla_printk(KERN_INFO, ha, "RISC paused -- "
  134. "HCCR=%x, Dumping firmware!\n", hccr);
  135. /*
  136. * Issue a "HARD" reset in order for the RISC
  137. * interrupt bit to be cleared. Schedule a big
  138. * hammmer to get out of the RISC PAUSED state.
  139. */
  140. WRT_REG_WORD(&reg->hccr, HCCR_RESET_RISC);
  141. RD_REG_WORD(&reg->hccr);
  142. ha->isp_ops->fw_dump(ha, 1);
  143. set_bit(ISP_ABORT_NEEDED, &ha->dpc_flags);
  144. break;
  145. } else if ((stat & HSR_RISC_INT) == 0)
  146. break;
  147. switch (stat & 0xff) {
  148. case 0x1:
  149. case 0x2:
  150. case 0x10:
  151. case 0x11:
  152. qla2x00_mbx_completion(ha, MSW(stat));
  153. status |= MBX_INTERRUPT;
  154. /* Release mailbox registers. */
  155. WRT_REG_WORD(&reg->semaphore, 0);
  156. break;
  157. case 0x12:
  158. mb[0] = MSW(stat);
  159. mb[1] = RD_MAILBOX_REG(ha, reg, 1);
  160. mb[2] = RD_MAILBOX_REG(ha, reg, 2);
  161. mb[3] = RD_MAILBOX_REG(ha, reg, 3);
  162. qla2x00_async_event(ha, mb);
  163. break;
  164. case 0x13:
  165. qla2x00_process_response_queue(ha);
  166. break;
  167. case 0x15:
  168. mb[0] = MBA_CMPLT_1_16BIT;
  169. mb[1] = MSW(stat);
  170. qla2x00_async_event(ha, mb);
  171. break;
  172. case 0x16:
  173. mb[0] = MBA_SCSI_COMPLETION;
  174. mb[1] = MSW(stat);
  175. mb[2] = RD_MAILBOX_REG(ha, reg, 2);
  176. qla2x00_async_event(ha, mb);
  177. break;
  178. default:
  179. DEBUG2(printk("scsi(%ld): Unrecognized interrupt type "
  180. "(%d).\n",
  181. ha->host_no, stat & 0xff));
  182. break;
  183. }
  184. WRT_REG_WORD(&reg->hccr, HCCR_CLR_RISC_INT);
  185. RD_REG_WORD_RELAXED(&reg->hccr);
  186. }
  187. spin_unlock(&ha->hardware_lock);
  188. if (test_bit(MBX_INTR_WAIT, &ha->mbx_cmd_flags) &&
  189. (status & MBX_INTERRUPT) && ha->flags.mbox_int) {
  190. set_bit(MBX_INTERRUPT, &ha->mbx_cmd_flags);
  191. complete(&ha->mbx_intr_comp);
  192. }
  193. return (IRQ_HANDLED);
  194. }
  195. /**
  196. * qla2x00_mbx_completion() - Process mailbox command completions.
  197. * @ha: SCSI driver HA context
  198. * @mb0: Mailbox0 register
  199. */
  200. static void
  201. qla2x00_mbx_completion(scsi_qla_host_t *ha, uint16_t mb0)
  202. {
  203. uint16_t cnt;
  204. uint16_t __iomem *wptr;
  205. struct device_reg_2xxx __iomem *reg = &ha->iobase->isp;
  206. /* Load return mailbox registers. */
  207. ha->flags.mbox_int = 1;
  208. ha->mailbox_out[0] = mb0;
  209. wptr = (uint16_t __iomem *)MAILBOX_REG(ha, reg, 1);
  210. for (cnt = 1; cnt < ha->mbx_count; cnt++) {
  211. if (IS_QLA2200(ha) && cnt == 8)
  212. wptr = (uint16_t __iomem *)MAILBOX_REG(ha, reg, 8);
  213. if (cnt == 4 || cnt == 5)
  214. ha->mailbox_out[cnt] = qla2x00_debounce_register(wptr);
  215. else
  216. ha->mailbox_out[cnt] = RD_REG_WORD(wptr);
  217. wptr++;
  218. }
  219. if (ha->mcp) {
  220. DEBUG3(printk("%s(%ld): Got mailbox completion. cmd=%x.\n",
  221. __func__, ha->host_no, ha->mcp->mb[0]));
  222. } else {
  223. DEBUG2_3(printk("%s(%ld): MBX pointer ERROR!\n",
  224. __func__, ha->host_no));
  225. }
  226. }
  227. /**
  228. * qla2x00_async_event() - Process aynchronous events.
  229. * @ha: SCSI driver HA context
  230. * @mb: Mailbox registers (0 - 3)
  231. */
  232. void
  233. qla2x00_async_event(scsi_qla_host_t *ha, uint16_t *mb)
  234. {
  235. #define LS_UNKNOWN 2
  236. static char *link_speeds[5] = { "1", "2", "?", "4", "8" };
  237. char *link_speed;
  238. uint16_t handle_cnt;
  239. uint16_t cnt;
  240. uint32_t handles[5];
  241. struct device_reg_2xxx __iomem *reg = &ha->iobase->isp;
  242. uint32_t rscn_entry, host_pid;
  243. uint8_t rscn_queue_index;
  244. unsigned long flags;
  245. /* Setup to process RIO completion. */
  246. handle_cnt = 0;
  247. switch (mb[0]) {
  248. case MBA_SCSI_COMPLETION:
  249. handles[0] = le32_to_cpu((uint32_t)((mb[2] << 16) | mb[1]));
  250. handle_cnt = 1;
  251. break;
  252. case MBA_CMPLT_1_16BIT:
  253. handles[0] = mb[1];
  254. handle_cnt = 1;
  255. mb[0] = MBA_SCSI_COMPLETION;
  256. break;
  257. case MBA_CMPLT_2_16BIT:
  258. handles[0] = mb[1];
  259. handles[1] = mb[2];
  260. handle_cnt = 2;
  261. mb[0] = MBA_SCSI_COMPLETION;
  262. break;
  263. case MBA_CMPLT_3_16BIT:
  264. handles[0] = mb[1];
  265. handles[1] = mb[2];
  266. handles[2] = mb[3];
  267. handle_cnt = 3;
  268. mb[0] = MBA_SCSI_COMPLETION;
  269. break;
  270. case MBA_CMPLT_4_16BIT:
  271. handles[0] = mb[1];
  272. handles[1] = mb[2];
  273. handles[2] = mb[3];
  274. handles[3] = (uint32_t)RD_MAILBOX_REG(ha, reg, 6);
  275. handle_cnt = 4;
  276. mb[0] = MBA_SCSI_COMPLETION;
  277. break;
  278. case MBA_CMPLT_5_16BIT:
  279. handles[0] = mb[1];
  280. handles[1] = mb[2];
  281. handles[2] = mb[3];
  282. handles[3] = (uint32_t)RD_MAILBOX_REG(ha, reg, 6);
  283. handles[4] = (uint32_t)RD_MAILBOX_REG(ha, reg, 7);
  284. handle_cnt = 5;
  285. mb[0] = MBA_SCSI_COMPLETION;
  286. break;
  287. case MBA_CMPLT_2_32BIT:
  288. handles[0] = le32_to_cpu((uint32_t)((mb[2] << 16) | mb[1]));
  289. handles[1] = le32_to_cpu(
  290. ((uint32_t)(RD_MAILBOX_REG(ha, reg, 7) << 16)) |
  291. RD_MAILBOX_REG(ha, reg, 6));
  292. handle_cnt = 2;
  293. mb[0] = MBA_SCSI_COMPLETION;
  294. break;
  295. default:
  296. break;
  297. }
  298. switch (mb[0]) {
  299. case MBA_SCSI_COMPLETION: /* Fast Post */
  300. if (!ha->flags.online)
  301. break;
  302. for (cnt = 0; cnt < handle_cnt; cnt++)
  303. qla2x00_process_completed_request(ha, handles[cnt]);
  304. break;
  305. case MBA_RESET: /* Reset */
  306. DEBUG2(printk("scsi(%ld): Asynchronous RESET.\n", ha->host_no));
  307. set_bit(RESET_MARKER_NEEDED, &ha->dpc_flags);
  308. break;
  309. case MBA_SYSTEM_ERR: /* System Error */
  310. qla_printk(KERN_INFO, ha,
  311. "ISP System Error - mbx1=%xh mbx2=%xh mbx3=%xh.\n",
  312. mb[1], mb[2], mb[3]);
  313. qla2x00_post_hwe_work(ha, mb[0], mb[1], mb[2], mb[3]);
  314. ha->isp_ops->fw_dump(ha, 1);
  315. if (IS_FWI2_CAPABLE(ha)) {
  316. if (mb[1] == 0 && mb[2] == 0) {
  317. qla_printk(KERN_ERR, ha,
  318. "Unrecoverable Hardware Error: adapter "
  319. "marked OFFLINE!\n");
  320. ha->flags.online = 0;
  321. } else
  322. set_bit(ISP_ABORT_NEEDED, &ha->dpc_flags);
  323. } else if (mb[1] == 0) {
  324. qla_printk(KERN_INFO, ha,
  325. "Unrecoverable Hardware Error: adapter marked "
  326. "OFFLINE!\n");
  327. ha->flags.online = 0;
  328. } else
  329. set_bit(ISP_ABORT_NEEDED, &ha->dpc_flags);
  330. break;
  331. case MBA_REQ_TRANSFER_ERR: /* Request Transfer Error */
  332. DEBUG2(printk("scsi(%ld): ISP Request Transfer Error.\n",
  333. ha->host_no));
  334. qla_printk(KERN_WARNING, ha, "ISP Request Transfer Error.\n");
  335. qla2x00_post_hwe_work(ha, mb[0], mb[1], mb[2], mb[3]);
  336. set_bit(ISP_ABORT_NEEDED, &ha->dpc_flags);
  337. break;
  338. case MBA_RSP_TRANSFER_ERR: /* Response Transfer Error */
  339. DEBUG2(printk("scsi(%ld): ISP Response Transfer Error.\n",
  340. ha->host_no));
  341. qla_printk(KERN_WARNING, ha, "ISP Response Transfer Error.\n");
  342. qla2x00_post_hwe_work(ha, mb[0], mb[1], mb[2], mb[3]);
  343. set_bit(ISP_ABORT_NEEDED, &ha->dpc_flags);
  344. break;
  345. case MBA_WAKEUP_THRES: /* Request Queue Wake-up */
  346. DEBUG2(printk("scsi(%ld): Asynchronous WAKEUP_THRES.\n",
  347. ha->host_no));
  348. break;
  349. case MBA_LIP_OCCURRED: /* Loop Initialization Procedure */
  350. DEBUG2(printk("scsi(%ld): LIP occured (%x).\n", ha->host_no,
  351. mb[1]));
  352. qla_printk(KERN_INFO, ha, "LIP occured (%x).\n", mb[1]);
  353. if (atomic_read(&ha->loop_state) != LOOP_DOWN) {
  354. atomic_set(&ha->loop_state, LOOP_DOWN);
  355. atomic_set(&ha->loop_down_timer, LOOP_DOWN_TIME);
  356. qla2x00_mark_all_devices_lost(ha, 1);
  357. }
  358. if (ha->parent) {
  359. atomic_set(&ha->vp_state, VP_FAILED);
  360. fc_vport_set_state(ha->fc_vport, FC_VPORT_FAILED);
  361. }
  362. set_bit(REGISTER_FC4_NEEDED, &ha->dpc_flags);
  363. set_bit(REGISTER_FDMI_NEEDED, &ha->dpc_flags);
  364. ha->flags.management_server_logged_in = 0;
  365. qla2x00_post_aen_work(ha, FCH_EVT_LIP, mb[1]);
  366. break;
  367. case MBA_LOOP_UP: /* Loop Up Event */
  368. if (IS_QLA2100(ha) || IS_QLA2200(ha)) {
  369. link_speed = link_speeds[0];
  370. ha->link_data_rate = PORT_SPEED_1GB;
  371. } else {
  372. link_speed = link_speeds[LS_UNKNOWN];
  373. if (mb[1] < 5)
  374. link_speed = link_speeds[mb[1]];
  375. ha->link_data_rate = mb[1];
  376. }
  377. DEBUG2(printk("scsi(%ld): Asynchronous LOOP UP (%s Gbps).\n",
  378. ha->host_no, link_speed));
  379. qla_printk(KERN_INFO, ha, "LOOP UP detected (%s Gbps).\n",
  380. link_speed);
  381. ha->flags.management_server_logged_in = 0;
  382. qla2x00_post_aen_work(ha, FCH_EVT_LINKUP, ha->link_data_rate);
  383. break;
  384. case MBA_LOOP_DOWN: /* Loop Down Event */
  385. DEBUG2(printk("scsi(%ld): Asynchronous LOOP DOWN "
  386. "(%x %x %x).\n", ha->host_no, mb[1], mb[2], mb[3]));
  387. qla_printk(KERN_INFO, ha, "LOOP DOWN detected (%x %x %x).\n",
  388. mb[1], mb[2], mb[3]);
  389. if (atomic_read(&ha->loop_state) != LOOP_DOWN) {
  390. atomic_set(&ha->loop_state, LOOP_DOWN);
  391. atomic_set(&ha->loop_down_timer, LOOP_DOWN_TIME);
  392. ha->device_flags |= DFLG_NO_CABLE;
  393. qla2x00_mark_all_devices_lost(ha, 1);
  394. }
  395. if (ha->parent) {
  396. atomic_set(&ha->vp_state, VP_FAILED);
  397. fc_vport_set_state(ha->fc_vport, FC_VPORT_FAILED);
  398. }
  399. ha->flags.management_server_logged_in = 0;
  400. ha->link_data_rate = PORT_SPEED_UNKNOWN;
  401. qla2x00_post_aen_work(ha, FCH_EVT_LINKDOWN, 0);
  402. break;
  403. case MBA_LIP_RESET: /* LIP reset occurred */
  404. DEBUG2(printk("scsi(%ld): Asynchronous LIP RESET (%x).\n",
  405. ha->host_no, mb[1]));
  406. qla_printk(KERN_INFO, ha,
  407. "LIP reset occured (%x).\n", mb[1]);
  408. if (atomic_read(&ha->loop_state) != LOOP_DOWN) {
  409. atomic_set(&ha->loop_state, LOOP_DOWN);
  410. atomic_set(&ha->loop_down_timer, LOOP_DOWN_TIME);
  411. qla2x00_mark_all_devices_lost(ha, 1);
  412. }
  413. if (ha->parent) {
  414. atomic_set(&ha->vp_state, VP_FAILED);
  415. fc_vport_set_state(ha->fc_vport, FC_VPORT_FAILED);
  416. }
  417. set_bit(RESET_MARKER_NEEDED, &ha->dpc_flags);
  418. ha->operating_mode = LOOP;
  419. ha->flags.management_server_logged_in = 0;
  420. qla2x00_post_aen_work(ha, FCH_EVT_LIPRESET, mb[1]);
  421. break;
  422. case MBA_POINT_TO_POINT: /* Point-to-Point */
  423. if (IS_QLA2100(ha))
  424. break;
  425. DEBUG2(printk("scsi(%ld): Asynchronous P2P MODE received.\n",
  426. ha->host_no));
  427. /*
  428. * Until there's a transition from loop down to loop up, treat
  429. * this as loop down only.
  430. */
  431. if (atomic_read(&ha->loop_state) != LOOP_DOWN) {
  432. atomic_set(&ha->loop_state, LOOP_DOWN);
  433. if (!atomic_read(&ha->loop_down_timer))
  434. atomic_set(&ha->loop_down_timer,
  435. LOOP_DOWN_TIME);
  436. qla2x00_mark_all_devices_lost(ha, 1);
  437. }
  438. if (ha->parent) {
  439. atomic_set(&ha->vp_state, VP_FAILED);
  440. fc_vport_set_state(ha->fc_vport, FC_VPORT_FAILED);
  441. }
  442. if (!(test_bit(ABORT_ISP_ACTIVE, &ha->dpc_flags))) {
  443. set_bit(RESET_MARKER_NEEDED, &ha->dpc_flags);
  444. }
  445. set_bit(REGISTER_FC4_NEEDED, &ha->dpc_flags);
  446. set_bit(REGISTER_FDMI_NEEDED, &ha->dpc_flags);
  447. ha->flags.gpsc_supported = 1;
  448. ha->flags.management_server_logged_in = 0;
  449. break;
  450. case MBA_CHG_IN_CONNECTION: /* Change in connection mode */
  451. if (IS_QLA2100(ha))
  452. break;
  453. DEBUG2(printk("scsi(%ld): Asynchronous Change In Connection "
  454. "received.\n",
  455. ha->host_no));
  456. qla_printk(KERN_INFO, ha,
  457. "Configuration change detected: value=%x.\n", mb[1]);
  458. if (atomic_read(&ha->loop_state) != LOOP_DOWN) {
  459. atomic_set(&ha->loop_state, LOOP_DOWN);
  460. if (!atomic_read(&ha->loop_down_timer))
  461. atomic_set(&ha->loop_down_timer,
  462. LOOP_DOWN_TIME);
  463. qla2x00_mark_all_devices_lost(ha, 1);
  464. }
  465. if (ha->parent) {
  466. atomic_set(&ha->vp_state, VP_FAILED);
  467. fc_vport_set_state(ha->fc_vport, FC_VPORT_FAILED);
  468. }
  469. set_bit(LOOP_RESYNC_NEEDED, &ha->dpc_flags);
  470. set_bit(LOCAL_LOOP_UPDATE, &ha->dpc_flags);
  471. break;
  472. case MBA_PORT_UPDATE: /* Port database update */
  473. /*
  474. * If PORT UPDATE is global (recieved LIP_OCCURED/LIP_RESET
  475. * event etc. earlier indicating loop is down) then process
  476. * it. Otherwise ignore it and Wait for RSCN to come in.
  477. */
  478. atomic_set(&ha->loop_down_timer, 0);
  479. if (atomic_read(&ha->loop_state) != LOOP_DOWN &&
  480. atomic_read(&ha->loop_state) != LOOP_DEAD) {
  481. DEBUG2(printk("scsi(%ld): Asynchronous PORT UPDATE "
  482. "ignored %04x/%04x/%04x.\n", ha->host_no, mb[1],
  483. mb[2], mb[3]));
  484. break;
  485. }
  486. DEBUG2(printk("scsi(%ld): Asynchronous PORT UPDATE.\n",
  487. ha->host_no));
  488. DEBUG(printk(KERN_INFO
  489. "scsi(%ld): Port database changed %04x %04x %04x.\n",
  490. ha->host_no, mb[1], mb[2], mb[3]));
  491. /*
  492. * Mark all devices as missing so we will login again.
  493. */
  494. atomic_set(&ha->loop_state, LOOP_UP);
  495. qla2x00_mark_all_devices_lost(ha, 1);
  496. ha->flags.rscn_queue_overflow = 1;
  497. set_bit(LOOP_RESYNC_NEEDED, &ha->dpc_flags);
  498. set_bit(LOCAL_LOOP_UPDATE, &ha->dpc_flags);
  499. break;
  500. case MBA_RSCN_UPDATE: /* State Change Registration */
  501. /* Check if the Vport has issued a SCR */
  502. if (ha->parent && test_bit(VP_SCR_NEEDED, &ha->vp_flags))
  503. break;
  504. /* Only handle SCNs for our Vport index. */
  505. if (ha->parent && ha->vp_idx != (mb[3] & 0xff))
  506. break;
  507. DEBUG2(printk("scsi(%ld): Asynchronous RSCR UPDATE.\n",
  508. ha->host_no));
  509. DEBUG(printk(KERN_INFO
  510. "scsi(%ld): RSCN database changed -- %04x %04x %04x.\n",
  511. ha->host_no, mb[1], mb[2], mb[3]));
  512. rscn_entry = (mb[1] << 16) | mb[2];
  513. host_pid = (ha->d_id.b.domain << 16) | (ha->d_id.b.area << 8) |
  514. ha->d_id.b.al_pa;
  515. if (rscn_entry == host_pid) {
  516. DEBUG(printk(KERN_INFO
  517. "scsi(%ld): Ignoring RSCN update to local host "
  518. "port ID (%06x)\n",
  519. ha->host_no, host_pid));
  520. break;
  521. }
  522. rscn_queue_index = ha->rscn_in_ptr + 1;
  523. if (rscn_queue_index == MAX_RSCN_COUNT)
  524. rscn_queue_index = 0;
  525. if (rscn_queue_index != ha->rscn_out_ptr) {
  526. ha->rscn_queue[ha->rscn_in_ptr] = rscn_entry;
  527. ha->rscn_in_ptr = rscn_queue_index;
  528. } else {
  529. ha->flags.rscn_queue_overflow = 1;
  530. }
  531. atomic_set(&ha->loop_state, LOOP_UPDATE);
  532. atomic_set(&ha->loop_down_timer, 0);
  533. ha->flags.management_server_logged_in = 0;
  534. set_bit(LOOP_RESYNC_NEEDED, &ha->dpc_flags);
  535. set_bit(RSCN_UPDATE, &ha->dpc_flags);
  536. qla2x00_post_aen_work(ha, FCH_EVT_RSCN, rscn_entry);
  537. break;
  538. /* case MBA_RIO_RESPONSE: */
  539. case MBA_ZIO_RESPONSE:
  540. DEBUG2(printk("scsi(%ld): [R|Z]IO update completion.\n",
  541. ha->host_no));
  542. DEBUG(printk(KERN_INFO
  543. "scsi(%ld): [R|Z]IO update completion.\n",
  544. ha->host_no));
  545. if (IS_FWI2_CAPABLE(ha))
  546. qla24xx_process_response_queue(ha);
  547. else
  548. qla2x00_process_response_queue(ha);
  549. break;
  550. case MBA_DISCARD_RND_FRAME:
  551. DEBUG2(printk("scsi(%ld): Discard RND Frame -- %04x %04x "
  552. "%04x.\n", ha->host_no, mb[1], mb[2], mb[3]));
  553. break;
  554. case MBA_TRACE_NOTIFICATION:
  555. DEBUG2(printk("scsi(%ld): Trace Notification -- %04x %04x.\n",
  556. ha->host_no, mb[1], mb[2]));
  557. break;
  558. case MBA_ISP84XX_ALERT:
  559. DEBUG2(printk("scsi(%ld): ISP84XX Alert Notification -- "
  560. "%04x %04x %04x\n", ha->host_no, mb[1], mb[2], mb[3]));
  561. spin_lock_irqsave(&ha->cs84xx->access_lock, flags);
  562. switch (mb[1]) {
  563. case A84_PANIC_RECOVERY:
  564. qla_printk(KERN_INFO, ha, "Alert 84XX: panic recovery "
  565. "%04x %04x\n", mb[2], mb[3]);
  566. break;
  567. case A84_OP_LOGIN_COMPLETE:
  568. ha->cs84xx->op_fw_version = mb[3] << 16 | mb[2];
  569. DEBUG2(qla_printk(KERN_INFO, ha, "Alert 84XX:"
  570. "firmware version %x\n", ha->cs84xx->op_fw_version));
  571. break;
  572. case A84_DIAG_LOGIN_COMPLETE:
  573. ha->cs84xx->diag_fw_version = mb[3] << 16 | mb[2];
  574. DEBUG2(qla_printk(KERN_INFO, ha, "Alert 84XX:"
  575. "diagnostic firmware version %x\n",
  576. ha->cs84xx->diag_fw_version));
  577. break;
  578. case A84_GOLD_LOGIN_COMPLETE:
  579. ha->cs84xx->diag_fw_version = mb[3] << 16 | mb[2];
  580. ha->cs84xx->fw_update = 1;
  581. DEBUG2(qla_printk(KERN_INFO, ha, "Alert 84XX: gold "
  582. "firmware version %x\n",
  583. ha->cs84xx->gold_fw_version));
  584. break;
  585. default:
  586. qla_printk(KERN_ERR, ha,
  587. "Alert 84xx: Invalid Alert %04x %04x %04x\n",
  588. mb[1], mb[2], mb[3]);
  589. }
  590. spin_unlock_irqrestore(&ha->cs84xx->access_lock, flags);
  591. break;
  592. }
  593. if (!ha->parent && ha->num_vhosts)
  594. qla2x00_alert_all_vps(ha, mb);
  595. }
  596. static void
  597. qla2x00_adjust_sdev_qdepth_up(struct scsi_device *sdev, void *data)
  598. {
  599. fc_port_t *fcport = data;
  600. if (fcport->ha->max_q_depth <= sdev->queue_depth)
  601. return;
  602. if (sdev->ordered_tags)
  603. scsi_adjust_queue_depth(sdev, MSG_ORDERED_TAG,
  604. sdev->queue_depth + 1);
  605. else
  606. scsi_adjust_queue_depth(sdev, MSG_SIMPLE_TAG,
  607. sdev->queue_depth + 1);
  608. fcport->last_ramp_up = jiffies;
  609. DEBUG2(qla_printk(KERN_INFO, fcport->ha,
  610. "scsi(%ld:%d:%d:%d): Queue depth adjusted-up to %d.\n",
  611. fcport->ha->host_no, sdev->channel, sdev->id, sdev->lun,
  612. sdev->queue_depth));
  613. }
  614. static void
  615. qla2x00_adjust_sdev_qdepth_down(struct scsi_device *sdev, void *data)
  616. {
  617. fc_port_t *fcport = data;
  618. if (!scsi_track_queue_full(sdev, sdev->queue_depth - 1))
  619. return;
  620. DEBUG2(qla_printk(KERN_INFO, fcport->ha,
  621. "scsi(%ld:%d:%d:%d): Queue depth adjusted-down to %d.\n",
  622. fcport->ha->host_no, sdev->channel, sdev->id, sdev->lun,
  623. sdev->queue_depth));
  624. }
  625. static inline void
  626. qla2x00_ramp_up_queue_depth(scsi_qla_host_t *ha, srb_t *sp)
  627. {
  628. fc_port_t *fcport;
  629. struct scsi_device *sdev;
  630. sdev = sp->cmd->device;
  631. if (sdev->queue_depth >= ha->max_q_depth)
  632. return;
  633. fcport = sp->fcport;
  634. if (time_before(jiffies,
  635. fcport->last_ramp_up + ql2xqfullrampup * HZ))
  636. return;
  637. if (time_before(jiffies,
  638. fcport->last_queue_full + ql2xqfullrampup * HZ))
  639. return;
  640. starget_for_each_device(sdev->sdev_target, fcport,
  641. qla2x00_adjust_sdev_qdepth_up);
  642. }
  643. /**
  644. * qla2x00_process_completed_request() - Process a Fast Post response.
  645. * @ha: SCSI driver HA context
  646. * @index: SRB index
  647. */
  648. static void
  649. qla2x00_process_completed_request(struct scsi_qla_host *ha, uint32_t index)
  650. {
  651. srb_t *sp;
  652. /* Validate handle. */
  653. if (index >= MAX_OUTSTANDING_COMMANDS) {
  654. DEBUG2(printk("scsi(%ld): Invalid SCSI completion handle %d.\n",
  655. ha->host_no, index));
  656. qla_printk(KERN_WARNING, ha,
  657. "Invalid SCSI completion handle %d.\n", index);
  658. set_bit(ISP_ABORT_NEEDED, &ha->dpc_flags);
  659. return;
  660. }
  661. sp = ha->outstanding_cmds[index];
  662. if (sp) {
  663. /* Free outstanding command slot. */
  664. ha->outstanding_cmds[index] = NULL;
  665. CMD_COMPL_STATUS(sp->cmd) = 0L;
  666. CMD_SCSI_STATUS(sp->cmd) = 0L;
  667. /* Save ISP completion status */
  668. sp->cmd->result = DID_OK << 16;
  669. qla2x00_ramp_up_queue_depth(ha, sp);
  670. qla2x00_sp_compl(ha, sp);
  671. } else {
  672. DEBUG2(printk("scsi(%ld): Invalid ISP SCSI completion handle\n",
  673. ha->host_no));
  674. qla_printk(KERN_WARNING, ha,
  675. "Invalid ISP SCSI completion handle\n");
  676. set_bit(ISP_ABORT_NEEDED, &ha->dpc_flags);
  677. }
  678. }
  679. /**
  680. * qla2x00_process_response_queue() - Process response queue entries.
  681. * @ha: SCSI driver HA context
  682. */
  683. void
  684. qla2x00_process_response_queue(struct scsi_qla_host *ha)
  685. {
  686. struct device_reg_2xxx __iomem *reg = &ha->iobase->isp;
  687. sts_entry_t *pkt;
  688. uint16_t handle_cnt;
  689. uint16_t cnt;
  690. if (!ha->flags.online)
  691. return;
  692. while (ha->response_ring_ptr->signature != RESPONSE_PROCESSED) {
  693. pkt = (sts_entry_t *)ha->response_ring_ptr;
  694. ha->rsp_ring_index++;
  695. if (ha->rsp_ring_index == ha->response_q_length) {
  696. ha->rsp_ring_index = 0;
  697. ha->response_ring_ptr = ha->response_ring;
  698. } else {
  699. ha->response_ring_ptr++;
  700. }
  701. if (pkt->entry_status != 0) {
  702. DEBUG3(printk(KERN_INFO
  703. "scsi(%ld): Process error entry.\n", ha->host_no));
  704. qla2x00_error_entry(ha, pkt);
  705. ((response_t *)pkt)->signature = RESPONSE_PROCESSED;
  706. wmb();
  707. continue;
  708. }
  709. switch (pkt->entry_type) {
  710. case STATUS_TYPE:
  711. qla2x00_status_entry(ha, pkt);
  712. break;
  713. case STATUS_TYPE_21:
  714. handle_cnt = ((sts21_entry_t *)pkt)->handle_count;
  715. for (cnt = 0; cnt < handle_cnt; cnt++) {
  716. qla2x00_process_completed_request(ha,
  717. ((sts21_entry_t *)pkt)->handle[cnt]);
  718. }
  719. break;
  720. case STATUS_TYPE_22:
  721. handle_cnt = ((sts22_entry_t *)pkt)->handle_count;
  722. for (cnt = 0; cnt < handle_cnt; cnt++) {
  723. qla2x00_process_completed_request(ha,
  724. ((sts22_entry_t *)pkt)->handle[cnt]);
  725. }
  726. break;
  727. case STATUS_CONT_TYPE:
  728. qla2x00_status_cont_entry(ha, (sts_cont_entry_t *)pkt);
  729. break;
  730. default:
  731. /* Type Not Supported. */
  732. DEBUG4(printk(KERN_WARNING
  733. "scsi(%ld): Received unknown response pkt type %x "
  734. "entry status=%x.\n",
  735. ha->host_no, pkt->entry_type, pkt->entry_status));
  736. break;
  737. }
  738. ((response_t *)pkt)->signature = RESPONSE_PROCESSED;
  739. wmb();
  740. }
  741. /* Adjust ring index */
  742. WRT_REG_WORD(ISP_RSP_Q_OUT(ha, reg), ha->rsp_ring_index);
  743. }
  744. static inline void
  745. qla2x00_handle_sense(srb_t *sp, uint8_t *sense_data, uint32_t sense_len)
  746. {
  747. struct scsi_cmnd *cp = sp->cmd;
  748. if (sense_len >= SCSI_SENSE_BUFFERSIZE)
  749. sense_len = SCSI_SENSE_BUFFERSIZE;
  750. CMD_ACTUAL_SNSLEN(cp) = sense_len;
  751. sp->request_sense_length = sense_len;
  752. sp->request_sense_ptr = cp->sense_buffer;
  753. if (sp->request_sense_length > 32)
  754. sense_len = 32;
  755. memcpy(cp->sense_buffer, sense_data, sense_len);
  756. sp->request_sense_ptr += sense_len;
  757. sp->request_sense_length -= sense_len;
  758. if (sp->request_sense_length != 0)
  759. sp->fcport->ha->status_srb = sp;
  760. DEBUG5(printk("%s(): Check condition Sense data, scsi(%ld:%d:%d:%d) "
  761. "cmd=%p pid=%ld\n", __func__, sp->fcport->ha->host_no,
  762. cp->device->channel, cp->device->id, cp->device->lun, cp,
  763. cp->serial_number));
  764. if (sense_len)
  765. DEBUG5(qla2x00_dump_buffer(cp->sense_buffer,
  766. CMD_ACTUAL_SNSLEN(cp)));
  767. }
  768. /**
  769. * qla2x00_status_entry() - Process a Status IOCB entry.
  770. * @ha: SCSI driver HA context
  771. * @pkt: Entry pointer
  772. */
  773. static void
  774. qla2x00_status_entry(scsi_qla_host_t *ha, void *pkt)
  775. {
  776. srb_t *sp;
  777. fc_port_t *fcport;
  778. struct scsi_cmnd *cp;
  779. sts_entry_t *sts;
  780. struct sts_entry_24xx *sts24;
  781. uint16_t comp_status;
  782. uint16_t scsi_status;
  783. uint8_t lscsi_status;
  784. int32_t resid;
  785. uint32_t sense_len, rsp_info_len, resid_len, fw_resid_len;
  786. uint8_t *rsp_info, *sense_data;
  787. sts = (sts_entry_t *) pkt;
  788. sts24 = (struct sts_entry_24xx *) pkt;
  789. if (IS_FWI2_CAPABLE(ha)) {
  790. comp_status = le16_to_cpu(sts24->comp_status);
  791. scsi_status = le16_to_cpu(sts24->scsi_status) & SS_MASK;
  792. } else {
  793. comp_status = le16_to_cpu(sts->comp_status);
  794. scsi_status = le16_to_cpu(sts->scsi_status) & SS_MASK;
  795. }
  796. /* Fast path completion. */
  797. if (comp_status == CS_COMPLETE && scsi_status == 0) {
  798. qla2x00_process_completed_request(ha, sts->handle);
  799. return;
  800. }
  801. /* Validate handle. */
  802. if (sts->handle < MAX_OUTSTANDING_COMMANDS) {
  803. sp = ha->outstanding_cmds[sts->handle];
  804. ha->outstanding_cmds[sts->handle] = NULL;
  805. } else
  806. sp = NULL;
  807. if (sp == NULL) {
  808. DEBUG2(printk("scsi(%ld): Status Entry invalid handle.\n",
  809. ha->host_no));
  810. qla_printk(KERN_WARNING, ha, "Status Entry invalid handle.\n");
  811. set_bit(ISP_ABORT_NEEDED, &ha->dpc_flags);
  812. qla2xxx_wake_dpc(ha);
  813. return;
  814. }
  815. cp = sp->cmd;
  816. if (cp == NULL) {
  817. DEBUG2(printk("scsi(%ld): Command already returned back to OS "
  818. "pkt->handle=%d sp=%p.\n", ha->host_no, sts->handle, sp));
  819. qla_printk(KERN_WARNING, ha,
  820. "Command is NULL: already returned to OS (sp=%p)\n", sp);
  821. return;
  822. }
  823. lscsi_status = scsi_status & STATUS_MASK;
  824. CMD_ENTRY_STATUS(cp) = sts->entry_status;
  825. CMD_COMPL_STATUS(cp) = comp_status;
  826. CMD_SCSI_STATUS(cp) = scsi_status;
  827. fcport = sp->fcport;
  828. sense_len = rsp_info_len = resid_len = fw_resid_len = 0;
  829. if (IS_FWI2_CAPABLE(ha)) {
  830. sense_len = le32_to_cpu(sts24->sense_len);
  831. rsp_info_len = le32_to_cpu(sts24->rsp_data_len);
  832. resid_len = le32_to_cpu(sts24->rsp_residual_count);
  833. fw_resid_len = le32_to_cpu(sts24->residual_len);
  834. rsp_info = sts24->data;
  835. sense_data = sts24->data;
  836. host_to_fcp_swap(sts24->data, sizeof(sts24->data));
  837. } else {
  838. sense_len = le16_to_cpu(sts->req_sense_length);
  839. rsp_info_len = le16_to_cpu(sts->rsp_info_len);
  840. resid_len = le32_to_cpu(sts->residual_length);
  841. rsp_info = sts->rsp_info;
  842. sense_data = sts->req_sense_data;
  843. }
  844. /* Check for any FCP transport errors. */
  845. if (scsi_status & SS_RESPONSE_INFO_LEN_VALID) {
  846. /* Sense data lies beyond any FCP RESPONSE data. */
  847. if (IS_FWI2_CAPABLE(ha))
  848. sense_data += rsp_info_len;
  849. if (rsp_info_len > 3 && rsp_info[3]) {
  850. DEBUG2(printk("scsi(%ld:%d:%d:%d) FCP I/O protocol "
  851. "failure (%x/%02x%02x%02x%02x%02x%02x%02x%02x)..."
  852. "retrying command\n", ha->host_no,
  853. cp->device->channel, cp->device->id,
  854. cp->device->lun, rsp_info_len, rsp_info[0],
  855. rsp_info[1], rsp_info[2], rsp_info[3], rsp_info[4],
  856. rsp_info[5], rsp_info[6], rsp_info[7]));
  857. cp->result = DID_BUS_BUSY << 16;
  858. qla2x00_sp_compl(ha, sp);
  859. return;
  860. }
  861. }
  862. /* Check for overrun. */
  863. if (IS_FWI2_CAPABLE(ha) && comp_status == CS_COMPLETE &&
  864. scsi_status & SS_RESIDUAL_OVER)
  865. comp_status = CS_DATA_OVERRUN;
  866. /*
  867. * Based on Host and scsi status generate status code for Linux
  868. */
  869. switch (comp_status) {
  870. case CS_COMPLETE:
  871. case CS_QUEUE_FULL:
  872. if (scsi_status == 0) {
  873. cp->result = DID_OK << 16;
  874. break;
  875. }
  876. if (scsi_status & (SS_RESIDUAL_UNDER | SS_RESIDUAL_OVER)) {
  877. resid = resid_len;
  878. scsi_set_resid(cp, resid);
  879. CMD_RESID_LEN(cp) = resid;
  880. if (!lscsi_status &&
  881. ((unsigned)(scsi_bufflen(cp) - resid) <
  882. cp->underflow)) {
  883. qla_printk(KERN_INFO, ha,
  884. "scsi(%ld:%d:%d:%d): Mid-layer underflow "
  885. "detected (%x of %x bytes)...returning "
  886. "error status.\n", ha->host_no,
  887. cp->device->channel, cp->device->id,
  888. cp->device->lun, resid,
  889. scsi_bufflen(cp));
  890. cp->result = DID_ERROR << 16;
  891. break;
  892. }
  893. }
  894. cp->result = DID_OK << 16 | lscsi_status;
  895. if (lscsi_status == SAM_STAT_TASK_SET_FULL) {
  896. DEBUG2(printk(KERN_INFO
  897. "scsi(%ld): QUEUE FULL status detected "
  898. "0x%x-0x%x.\n", ha->host_no, comp_status,
  899. scsi_status));
  900. /* Adjust queue depth for all luns on the port. */
  901. fcport->last_queue_full = jiffies;
  902. starget_for_each_device(cp->device->sdev_target,
  903. fcport, qla2x00_adjust_sdev_qdepth_down);
  904. break;
  905. }
  906. if (lscsi_status != SS_CHECK_CONDITION)
  907. break;
  908. memset(cp->sense_buffer, 0, SCSI_SENSE_BUFFERSIZE);
  909. if (!(scsi_status & SS_SENSE_LEN_VALID))
  910. break;
  911. qla2x00_handle_sense(sp, sense_data, sense_len);
  912. break;
  913. case CS_DATA_UNDERRUN:
  914. resid = resid_len;
  915. /* Use F/W calculated residual length. */
  916. if (IS_FWI2_CAPABLE(ha)) {
  917. if (scsi_status & SS_RESIDUAL_UNDER &&
  918. resid != fw_resid_len) {
  919. scsi_status &= ~SS_RESIDUAL_UNDER;
  920. lscsi_status = 0;
  921. }
  922. resid = fw_resid_len;
  923. }
  924. if (scsi_status & SS_RESIDUAL_UNDER) {
  925. scsi_set_resid(cp, resid);
  926. CMD_RESID_LEN(cp) = resid;
  927. } else {
  928. DEBUG2(printk(KERN_INFO
  929. "scsi(%ld:%d:%d) UNDERRUN status detected "
  930. "0x%x-0x%x. resid=0x%x fw_resid=0x%x cdb=0x%x "
  931. "os_underflow=0x%x\n", ha->host_no,
  932. cp->device->id, cp->device->lun, comp_status,
  933. scsi_status, resid_len, resid, cp->cmnd[0],
  934. cp->underflow));
  935. }
  936. /*
  937. * Check to see if SCSI Status is non zero. If so report SCSI
  938. * Status.
  939. */
  940. if (lscsi_status != 0) {
  941. cp->result = DID_OK << 16 | lscsi_status;
  942. if (lscsi_status == SAM_STAT_TASK_SET_FULL) {
  943. DEBUG2(printk(KERN_INFO
  944. "scsi(%ld): QUEUE FULL status detected "
  945. "0x%x-0x%x.\n", ha->host_no, comp_status,
  946. scsi_status));
  947. /*
  948. * Adjust queue depth for all luns on the
  949. * port.
  950. */
  951. fcport->last_queue_full = jiffies;
  952. starget_for_each_device(
  953. cp->device->sdev_target, fcport,
  954. qla2x00_adjust_sdev_qdepth_down);
  955. break;
  956. }
  957. if (lscsi_status != SS_CHECK_CONDITION)
  958. break;
  959. memset(cp->sense_buffer, 0, SCSI_SENSE_BUFFERSIZE);
  960. if (!(scsi_status & SS_SENSE_LEN_VALID))
  961. break;
  962. qla2x00_handle_sense(sp, sense_data, sense_len);
  963. } else {
  964. /*
  965. * If RISC reports underrun and target does not report
  966. * it then we must have a lost frame, so tell upper
  967. * layer to retry it by reporting a bus busy.
  968. */
  969. if (!(scsi_status & SS_RESIDUAL_UNDER)) {
  970. DEBUG2(printk("scsi(%ld:%d:%d:%d) Dropped "
  971. "frame(s) detected (%x of %x bytes)..."
  972. "retrying command.\n", ha->host_no,
  973. cp->device->channel, cp->device->id,
  974. cp->device->lun, resid,
  975. scsi_bufflen(cp)));
  976. cp->result = DID_BUS_BUSY << 16;
  977. break;
  978. }
  979. /* Handle mid-layer underflow */
  980. if ((unsigned)(scsi_bufflen(cp) - resid) <
  981. cp->underflow) {
  982. qla_printk(KERN_INFO, ha,
  983. "scsi(%ld:%d:%d:%d): Mid-layer underflow "
  984. "detected (%x of %x bytes)...returning "
  985. "error status.\n", ha->host_no,
  986. cp->device->channel, cp->device->id,
  987. cp->device->lun, resid,
  988. scsi_bufflen(cp));
  989. cp->result = DID_ERROR << 16;
  990. break;
  991. }
  992. /* Everybody online, looking good... */
  993. cp->result = DID_OK << 16;
  994. }
  995. break;
  996. case CS_DATA_OVERRUN:
  997. DEBUG2(printk(KERN_INFO
  998. "scsi(%ld:%d:%d): OVERRUN status detected 0x%x-0x%x\n",
  999. ha->host_no, cp->device->id, cp->device->lun, comp_status,
  1000. scsi_status));
  1001. DEBUG2(printk(KERN_INFO
  1002. "CDB: 0x%x 0x%x 0x%x 0x%x 0x%x 0x%x\n",
  1003. cp->cmnd[0], cp->cmnd[1], cp->cmnd[2], cp->cmnd[3],
  1004. cp->cmnd[4], cp->cmnd[5]));
  1005. DEBUG2(printk(KERN_INFO
  1006. "PID=0x%lx req=0x%x xtra=0x%x -- returning DID_ERROR "
  1007. "status!\n",
  1008. cp->serial_number, scsi_bufflen(cp), resid_len));
  1009. cp->result = DID_ERROR << 16;
  1010. break;
  1011. case CS_PORT_LOGGED_OUT:
  1012. case CS_PORT_CONFIG_CHG:
  1013. case CS_PORT_BUSY:
  1014. case CS_INCOMPLETE:
  1015. case CS_PORT_UNAVAILABLE:
  1016. /*
  1017. * If the port is in Target Down state, return all IOs for this
  1018. * Target with DID_NO_CONNECT ELSE Queue the IOs in the
  1019. * retry_queue.
  1020. */
  1021. DEBUG2(printk("scsi(%ld:%d:%d): status_entry: Port Down "
  1022. "pid=%ld, compl status=0x%x, port state=0x%x\n",
  1023. ha->host_no, cp->device->id, cp->device->lun,
  1024. cp->serial_number, comp_status,
  1025. atomic_read(&fcport->state)));
  1026. cp->result = DID_BUS_BUSY << 16;
  1027. if (atomic_read(&fcport->state) == FCS_ONLINE)
  1028. qla2x00_mark_device_lost(fcport->ha, fcport, 1, 1);
  1029. break;
  1030. case CS_RESET:
  1031. DEBUG2(printk(KERN_INFO
  1032. "scsi(%ld): RESET status detected 0x%x-0x%x.\n",
  1033. ha->host_no, comp_status, scsi_status));
  1034. cp->result = DID_RESET << 16;
  1035. break;
  1036. case CS_ABORTED:
  1037. /*
  1038. * hv2.19.12 - DID_ABORT does not retry the request if we
  1039. * aborted this request then abort otherwise it must be a
  1040. * reset.
  1041. */
  1042. DEBUG2(printk(KERN_INFO
  1043. "scsi(%ld): ABORT status detected 0x%x-0x%x.\n",
  1044. ha->host_no, comp_status, scsi_status));
  1045. cp->result = DID_RESET << 16;
  1046. break;
  1047. case CS_TIMEOUT:
  1048. cp->result = DID_BUS_BUSY << 16;
  1049. if (IS_FWI2_CAPABLE(ha)) {
  1050. DEBUG2(printk(KERN_INFO
  1051. "scsi(%ld:%d:%d:%d): TIMEOUT status detected "
  1052. "0x%x-0x%x\n", ha->host_no, cp->device->channel,
  1053. cp->device->id, cp->device->lun, comp_status,
  1054. scsi_status));
  1055. break;
  1056. }
  1057. DEBUG2(printk(KERN_INFO
  1058. "scsi(%ld:%d:%d:%d): TIMEOUT status detected 0x%x-0x%x "
  1059. "sflags=%x.\n", ha->host_no, cp->device->channel,
  1060. cp->device->id, cp->device->lun, comp_status, scsi_status,
  1061. le16_to_cpu(sts->status_flags)));
  1062. /* Check to see if logout occurred. */
  1063. if ((le16_to_cpu(sts->status_flags) & SF_LOGOUT_SENT))
  1064. qla2x00_mark_device_lost(fcport->ha, fcport, 1, 1);
  1065. break;
  1066. default:
  1067. DEBUG3(printk("scsi(%ld): Error detected (unknown status) "
  1068. "0x%x-0x%x.\n", ha->host_no, comp_status, scsi_status));
  1069. qla_printk(KERN_INFO, ha,
  1070. "Unknown status detected 0x%x-0x%x.\n",
  1071. comp_status, scsi_status);
  1072. cp->result = DID_ERROR << 16;
  1073. break;
  1074. }
  1075. /* Place command on done queue. */
  1076. if (ha->status_srb == NULL)
  1077. qla2x00_sp_compl(ha, sp);
  1078. }
  1079. /**
  1080. * qla2x00_status_cont_entry() - Process a Status Continuations entry.
  1081. * @ha: SCSI driver HA context
  1082. * @pkt: Entry pointer
  1083. *
  1084. * Extended sense data.
  1085. */
  1086. static void
  1087. qla2x00_status_cont_entry(scsi_qla_host_t *ha, sts_cont_entry_t *pkt)
  1088. {
  1089. uint8_t sense_sz = 0;
  1090. srb_t *sp = ha->status_srb;
  1091. struct scsi_cmnd *cp;
  1092. if (sp != NULL && sp->request_sense_length != 0) {
  1093. cp = sp->cmd;
  1094. if (cp == NULL) {
  1095. DEBUG2(printk("%s(): Cmd already returned back to OS "
  1096. "sp=%p.\n", __func__, sp));
  1097. qla_printk(KERN_INFO, ha,
  1098. "cmd is NULL: already returned to OS (sp=%p)\n",
  1099. sp);
  1100. ha->status_srb = NULL;
  1101. return;
  1102. }
  1103. if (sp->request_sense_length > sizeof(pkt->data)) {
  1104. sense_sz = sizeof(pkt->data);
  1105. } else {
  1106. sense_sz = sp->request_sense_length;
  1107. }
  1108. /* Move sense data. */
  1109. if (IS_FWI2_CAPABLE(ha))
  1110. host_to_fcp_swap(pkt->data, sizeof(pkt->data));
  1111. memcpy(sp->request_sense_ptr, pkt->data, sense_sz);
  1112. DEBUG5(qla2x00_dump_buffer(sp->request_sense_ptr, sense_sz));
  1113. sp->request_sense_ptr += sense_sz;
  1114. sp->request_sense_length -= sense_sz;
  1115. /* Place command on done queue. */
  1116. if (sp->request_sense_length == 0) {
  1117. ha->status_srb = NULL;
  1118. qla2x00_sp_compl(ha, sp);
  1119. }
  1120. }
  1121. }
  1122. /**
  1123. * qla2x00_error_entry() - Process an error entry.
  1124. * @ha: SCSI driver HA context
  1125. * @pkt: Entry pointer
  1126. */
  1127. static void
  1128. qla2x00_error_entry(scsi_qla_host_t *ha, sts_entry_t *pkt)
  1129. {
  1130. srb_t *sp;
  1131. #if defined(QL_DEBUG_LEVEL_2)
  1132. if (pkt->entry_status & RF_INV_E_ORDER)
  1133. qla_printk(KERN_ERR, ha, "%s: Invalid Entry Order\n", __func__);
  1134. else if (pkt->entry_status & RF_INV_E_COUNT)
  1135. qla_printk(KERN_ERR, ha, "%s: Invalid Entry Count\n", __func__);
  1136. else if (pkt->entry_status & RF_INV_E_PARAM)
  1137. qla_printk(KERN_ERR, ha,
  1138. "%s: Invalid Entry Parameter\n", __func__);
  1139. else if (pkt->entry_status & RF_INV_E_TYPE)
  1140. qla_printk(KERN_ERR, ha, "%s: Invalid Entry Type\n", __func__);
  1141. else if (pkt->entry_status & RF_BUSY)
  1142. qla_printk(KERN_ERR, ha, "%s: Busy\n", __func__);
  1143. else
  1144. qla_printk(KERN_ERR, ha, "%s: UNKNOWN flag error\n", __func__);
  1145. #endif
  1146. /* Validate handle. */
  1147. if (pkt->handle < MAX_OUTSTANDING_COMMANDS)
  1148. sp = ha->outstanding_cmds[pkt->handle];
  1149. else
  1150. sp = NULL;
  1151. if (sp) {
  1152. /* Free outstanding command slot. */
  1153. ha->outstanding_cmds[pkt->handle] = NULL;
  1154. /* Bad payload or header */
  1155. if (pkt->entry_status &
  1156. (RF_INV_E_ORDER | RF_INV_E_COUNT |
  1157. RF_INV_E_PARAM | RF_INV_E_TYPE)) {
  1158. sp->cmd->result = DID_ERROR << 16;
  1159. } else if (pkt->entry_status & RF_BUSY) {
  1160. sp->cmd->result = DID_BUS_BUSY << 16;
  1161. } else {
  1162. sp->cmd->result = DID_ERROR << 16;
  1163. }
  1164. qla2x00_sp_compl(ha, sp);
  1165. } else if (pkt->entry_type == COMMAND_A64_TYPE || pkt->entry_type ==
  1166. COMMAND_TYPE || pkt->entry_type == COMMAND_TYPE_7) {
  1167. DEBUG2(printk("scsi(%ld): Error entry - invalid handle\n",
  1168. ha->host_no));
  1169. qla_printk(KERN_WARNING, ha,
  1170. "Error entry - invalid handle\n");
  1171. set_bit(ISP_ABORT_NEEDED, &ha->dpc_flags);
  1172. qla2xxx_wake_dpc(ha);
  1173. }
  1174. }
  1175. /**
  1176. * qla24xx_mbx_completion() - Process mailbox command completions.
  1177. * @ha: SCSI driver HA context
  1178. * @mb0: Mailbox0 register
  1179. */
  1180. static void
  1181. qla24xx_mbx_completion(scsi_qla_host_t *ha, uint16_t mb0)
  1182. {
  1183. uint16_t cnt;
  1184. uint16_t __iomem *wptr;
  1185. struct device_reg_24xx __iomem *reg = &ha->iobase->isp24;
  1186. /* Load return mailbox registers. */
  1187. ha->flags.mbox_int = 1;
  1188. ha->mailbox_out[0] = mb0;
  1189. wptr = (uint16_t __iomem *)&reg->mailbox1;
  1190. for (cnt = 1; cnt < ha->mbx_count; cnt++) {
  1191. ha->mailbox_out[cnt] = RD_REG_WORD(wptr);
  1192. wptr++;
  1193. }
  1194. if (ha->mcp) {
  1195. DEBUG3(printk("%s(%ld): Got mailbox completion. cmd=%x.\n",
  1196. __func__, ha->host_no, ha->mcp->mb[0]));
  1197. } else {
  1198. DEBUG2_3(printk("%s(%ld): MBX pointer ERROR!\n",
  1199. __func__, ha->host_no));
  1200. }
  1201. }
  1202. /**
  1203. * qla24xx_process_response_queue() - Process response queue entries.
  1204. * @ha: SCSI driver HA context
  1205. */
  1206. void
  1207. qla24xx_process_response_queue(struct scsi_qla_host *ha)
  1208. {
  1209. struct device_reg_24xx __iomem *reg = &ha->iobase->isp24;
  1210. struct sts_entry_24xx *pkt;
  1211. if (!ha->flags.online)
  1212. return;
  1213. while (ha->response_ring_ptr->signature != RESPONSE_PROCESSED) {
  1214. pkt = (struct sts_entry_24xx *)ha->response_ring_ptr;
  1215. ha->rsp_ring_index++;
  1216. if (ha->rsp_ring_index == ha->response_q_length) {
  1217. ha->rsp_ring_index = 0;
  1218. ha->response_ring_ptr = ha->response_ring;
  1219. } else {
  1220. ha->response_ring_ptr++;
  1221. }
  1222. if (pkt->entry_status != 0) {
  1223. DEBUG3(printk(KERN_INFO
  1224. "scsi(%ld): Process error entry.\n", ha->host_no));
  1225. qla2x00_error_entry(ha, (sts_entry_t *) pkt);
  1226. ((response_t *)pkt)->signature = RESPONSE_PROCESSED;
  1227. wmb();
  1228. continue;
  1229. }
  1230. switch (pkt->entry_type) {
  1231. case STATUS_TYPE:
  1232. qla2x00_status_entry(ha, pkt);
  1233. break;
  1234. case STATUS_CONT_TYPE:
  1235. qla2x00_status_cont_entry(ha, (sts_cont_entry_t *)pkt);
  1236. break;
  1237. case VP_RPT_ID_IOCB_TYPE:
  1238. qla24xx_report_id_acquisition(ha,
  1239. (struct vp_rpt_id_entry_24xx *)pkt);
  1240. break;
  1241. default:
  1242. /* Type Not Supported. */
  1243. DEBUG4(printk(KERN_WARNING
  1244. "scsi(%ld): Received unknown response pkt type %x "
  1245. "entry status=%x.\n",
  1246. ha->host_no, pkt->entry_type, pkt->entry_status));
  1247. break;
  1248. }
  1249. ((response_t *)pkt)->signature = RESPONSE_PROCESSED;
  1250. wmb();
  1251. }
  1252. /* Adjust ring index */
  1253. WRT_REG_DWORD(&reg->rsp_q_out, ha->rsp_ring_index);
  1254. }
  1255. static void
  1256. qla2xxx_check_risc_status(scsi_qla_host_t *ha)
  1257. {
  1258. int rval;
  1259. uint32_t cnt;
  1260. struct device_reg_24xx __iomem *reg = &ha->iobase->isp24;
  1261. if (!IS_QLA25XX(ha))
  1262. return;
  1263. rval = QLA_SUCCESS;
  1264. WRT_REG_DWORD(&reg->iobase_addr, 0x7C00);
  1265. RD_REG_DWORD(&reg->iobase_addr);
  1266. WRT_REG_DWORD(&reg->iobase_window, 0x0001);
  1267. for (cnt = 10000; (RD_REG_DWORD(&reg->iobase_window) & BIT_0) == 0 &&
  1268. rval == QLA_SUCCESS; cnt--) {
  1269. if (cnt) {
  1270. WRT_REG_DWORD(&reg->iobase_window, 0x0001);
  1271. udelay(10);
  1272. } else
  1273. rval = QLA_FUNCTION_TIMEOUT;
  1274. }
  1275. if (rval == QLA_SUCCESS)
  1276. goto next_test;
  1277. WRT_REG_DWORD(&reg->iobase_window, 0x0003);
  1278. for (cnt = 100; (RD_REG_DWORD(&reg->iobase_window) & BIT_0) == 0 &&
  1279. rval == QLA_SUCCESS; cnt--) {
  1280. if (cnt) {
  1281. WRT_REG_DWORD(&reg->iobase_window, 0x0003);
  1282. udelay(10);
  1283. } else
  1284. rval = QLA_FUNCTION_TIMEOUT;
  1285. }
  1286. if (rval != QLA_SUCCESS)
  1287. goto done;
  1288. next_test:
  1289. if (RD_REG_DWORD(&reg->iobase_c8) & BIT_3)
  1290. qla_printk(KERN_INFO, ha, "Additional code -- 0x55AA.\n");
  1291. done:
  1292. WRT_REG_DWORD(&reg->iobase_window, 0x0000);
  1293. RD_REG_DWORD(&reg->iobase_window);
  1294. }
  1295. /**
  1296. * qla24xx_intr_handler() - Process interrupts for the ISP23xx and ISP63xx.
  1297. * @irq:
  1298. * @dev_id: SCSI driver HA context
  1299. *
  1300. * Called by system whenever the host adapter generates an interrupt.
  1301. *
  1302. * Returns handled flag.
  1303. */
  1304. irqreturn_t
  1305. qla24xx_intr_handler(int irq, void *dev_id)
  1306. {
  1307. scsi_qla_host_t *ha;
  1308. struct device_reg_24xx __iomem *reg;
  1309. int status;
  1310. unsigned long iter;
  1311. uint32_t stat;
  1312. uint32_t hccr;
  1313. uint16_t mb[4];
  1314. ha = (scsi_qla_host_t *) dev_id;
  1315. if (!ha) {
  1316. printk(KERN_INFO
  1317. "%s(): NULL host pointer\n", __func__);
  1318. return IRQ_NONE;
  1319. }
  1320. reg = &ha->iobase->isp24;
  1321. status = 0;
  1322. spin_lock(&ha->hardware_lock);
  1323. for (iter = 50; iter--; ) {
  1324. stat = RD_REG_DWORD(&reg->host_status);
  1325. if (stat & HSRX_RISC_PAUSED) {
  1326. if (pci_channel_offline(ha->pdev))
  1327. break;
  1328. if (ha->hw_event_pause_errors == 0)
  1329. qla2x00_post_hwe_work(ha, HW_EVENT_PARITY_ERR,
  1330. 0, MSW(stat), LSW(stat));
  1331. else if (ha->hw_event_pause_errors < 0xffffffff)
  1332. ha->hw_event_pause_errors++;
  1333. hccr = RD_REG_DWORD(&reg->hccr);
  1334. qla_printk(KERN_INFO, ha, "RISC paused -- HCCR=%x, "
  1335. "Dumping firmware!\n", hccr);
  1336. qla2xxx_check_risc_status(ha);
  1337. ha->isp_ops->fw_dump(ha, 1);
  1338. set_bit(ISP_ABORT_NEEDED, &ha->dpc_flags);
  1339. break;
  1340. } else if ((stat & HSRX_RISC_INT) == 0)
  1341. break;
  1342. switch (stat & 0xff) {
  1343. case 0x1:
  1344. case 0x2:
  1345. case 0x10:
  1346. case 0x11:
  1347. qla24xx_mbx_completion(ha, MSW(stat));
  1348. status |= MBX_INTERRUPT;
  1349. break;
  1350. case 0x12:
  1351. mb[0] = MSW(stat);
  1352. mb[1] = RD_REG_WORD(&reg->mailbox1);
  1353. mb[2] = RD_REG_WORD(&reg->mailbox2);
  1354. mb[3] = RD_REG_WORD(&reg->mailbox3);
  1355. qla2x00_async_event(ha, mb);
  1356. break;
  1357. case 0x13:
  1358. qla24xx_process_response_queue(ha);
  1359. break;
  1360. default:
  1361. DEBUG2(printk("scsi(%ld): Unrecognized interrupt type "
  1362. "(%d).\n",
  1363. ha->host_no, stat & 0xff));
  1364. break;
  1365. }
  1366. WRT_REG_DWORD(&reg->hccr, HCCRX_CLR_RISC_INT);
  1367. RD_REG_DWORD_RELAXED(&reg->hccr);
  1368. }
  1369. spin_unlock(&ha->hardware_lock);
  1370. if (test_bit(MBX_INTR_WAIT, &ha->mbx_cmd_flags) &&
  1371. (status & MBX_INTERRUPT) && ha->flags.mbox_int) {
  1372. set_bit(MBX_INTERRUPT, &ha->mbx_cmd_flags);
  1373. complete(&ha->mbx_intr_comp);
  1374. }
  1375. return IRQ_HANDLED;
  1376. }
  1377. static irqreturn_t
  1378. qla24xx_msix_rsp_q(int irq, void *dev_id)
  1379. {
  1380. scsi_qla_host_t *ha;
  1381. struct device_reg_24xx __iomem *reg;
  1382. ha = dev_id;
  1383. reg = &ha->iobase->isp24;
  1384. spin_lock_irq(&ha->hardware_lock);
  1385. qla24xx_process_response_queue(ha);
  1386. WRT_REG_DWORD(&reg->hccr, HCCRX_CLR_RISC_INT);
  1387. spin_unlock_irq(&ha->hardware_lock);
  1388. return IRQ_HANDLED;
  1389. }
  1390. static irqreturn_t
  1391. qla24xx_msix_default(int irq, void *dev_id)
  1392. {
  1393. scsi_qla_host_t *ha;
  1394. struct device_reg_24xx __iomem *reg;
  1395. int status;
  1396. uint32_t stat;
  1397. uint32_t hccr;
  1398. uint16_t mb[4];
  1399. ha = dev_id;
  1400. reg = &ha->iobase->isp24;
  1401. status = 0;
  1402. spin_lock_irq(&ha->hardware_lock);
  1403. do {
  1404. stat = RD_REG_DWORD(&reg->host_status);
  1405. if (stat & HSRX_RISC_PAUSED) {
  1406. if (pci_channel_offline(ha->pdev))
  1407. break;
  1408. if (ha->hw_event_pause_errors == 0)
  1409. qla2x00_post_hwe_work(ha, HW_EVENT_PARITY_ERR,
  1410. 0, MSW(stat), LSW(stat));
  1411. else if (ha->hw_event_pause_errors < 0xffffffff)
  1412. ha->hw_event_pause_errors++;
  1413. hccr = RD_REG_DWORD(&reg->hccr);
  1414. qla_printk(KERN_INFO, ha, "RISC paused -- HCCR=%x, "
  1415. "Dumping firmware!\n", hccr);
  1416. qla2xxx_check_risc_status(ha);
  1417. ha->isp_ops->fw_dump(ha, 1);
  1418. set_bit(ISP_ABORT_NEEDED, &ha->dpc_flags);
  1419. break;
  1420. } else if ((stat & HSRX_RISC_INT) == 0)
  1421. break;
  1422. switch (stat & 0xff) {
  1423. case 0x1:
  1424. case 0x2:
  1425. case 0x10:
  1426. case 0x11:
  1427. qla24xx_mbx_completion(ha, MSW(stat));
  1428. status |= MBX_INTERRUPT;
  1429. break;
  1430. case 0x12:
  1431. mb[0] = MSW(stat);
  1432. mb[1] = RD_REG_WORD(&reg->mailbox1);
  1433. mb[2] = RD_REG_WORD(&reg->mailbox2);
  1434. mb[3] = RD_REG_WORD(&reg->mailbox3);
  1435. qla2x00_async_event(ha, mb);
  1436. break;
  1437. case 0x13:
  1438. qla24xx_process_response_queue(ha);
  1439. break;
  1440. default:
  1441. DEBUG2(printk("scsi(%ld): Unrecognized interrupt type "
  1442. "(%d).\n",
  1443. ha->host_no, stat & 0xff));
  1444. break;
  1445. }
  1446. WRT_REG_DWORD(&reg->hccr, HCCRX_CLR_RISC_INT);
  1447. } while (0);
  1448. spin_unlock_irq(&ha->hardware_lock);
  1449. if (test_bit(MBX_INTR_WAIT, &ha->mbx_cmd_flags) &&
  1450. (status & MBX_INTERRUPT) && ha->flags.mbox_int) {
  1451. set_bit(MBX_INTERRUPT, &ha->mbx_cmd_flags);
  1452. complete(&ha->mbx_intr_comp);
  1453. }
  1454. return IRQ_HANDLED;
  1455. }
  1456. /* Interrupt handling helpers. */
  1457. struct qla_init_msix_entry {
  1458. uint16_t entry;
  1459. uint16_t index;
  1460. const char *name;
  1461. irq_handler_t handler;
  1462. };
  1463. static struct qla_init_msix_entry imsix_entries[QLA_MSIX_ENTRIES] = {
  1464. { QLA_MSIX_DEFAULT, QLA_MIDX_DEFAULT,
  1465. "qla2xxx (default)", qla24xx_msix_default },
  1466. { QLA_MSIX_RSP_Q, QLA_MIDX_RSP_Q,
  1467. "qla2xxx (rsp_q)", qla24xx_msix_rsp_q },
  1468. };
  1469. static void
  1470. qla24xx_disable_msix(scsi_qla_host_t *ha)
  1471. {
  1472. int i;
  1473. struct qla_msix_entry *qentry;
  1474. for (i = 0; i < QLA_MSIX_ENTRIES; i++) {
  1475. qentry = &ha->msix_entries[imsix_entries[i].index];
  1476. if (qentry->have_irq)
  1477. free_irq(qentry->msix_vector, ha);
  1478. }
  1479. pci_disable_msix(ha->pdev);
  1480. }
  1481. static int
  1482. qla24xx_enable_msix(scsi_qla_host_t *ha)
  1483. {
  1484. int i, ret;
  1485. struct msix_entry entries[QLA_MSIX_ENTRIES];
  1486. struct qla_msix_entry *qentry;
  1487. for (i = 0; i < QLA_MSIX_ENTRIES; i++)
  1488. entries[i].entry = imsix_entries[i].entry;
  1489. ret = pci_enable_msix(ha->pdev, entries, ARRAY_SIZE(entries));
  1490. if (ret) {
  1491. qla_printk(KERN_WARNING, ha,
  1492. "MSI-X: Failed to enable support -- %d/%d\n",
  1493. QLA_MSIX_ENTRIES, ret);
  1494. goto msix_out;
  1495. }
  1496. ha->flags.msix_enabled = 1;
  1497. for (i = 0; i < QLA_MSIX_ENTRIES; i++) {
  1498. qentry = &ha->msix_entries[imsix_entries[i].index];
  1499. qentry->msix_vector = entries[i].vector;
  1500. qentry->msix_entry = entries[i].entry;
  1501. qentry->have_irq = 0;
  1502. ret = request_irq(qentry->msix_vector,
  1503. imsix_entries[i].handler, 0, imsix_entries[i].name, ha);
  1504. if (ret) {
  1505. qla_printk(KERN_WARNING, ha,
  1506. "MSI-X: Unable to register handler -- %x/%d.\n",
  1507. imsix_entries[i].index, ret);
  1508. qla24xx_disable_msix(ha);
  1509. goto msix_out;
  1510. }
  1511. qentry->have_irq = 1;
  1512. }
  1513. msix_out:
  1514. return ret;
  1515. }
  1516. int
  1517. qla2x00_request_irqs(scsi_qla_host_t *ha)
  1518. {
  1519. int ret;
  1520. device_reg_t __iomem *reg = ha->iobase;
  1521. /* If possible, enable MSI-X. */
  1522. if (!IS_QLA2432(ha) && !IS_QLA2532(ha) && !IS_QLA8432(ha))
  1523. goto skip_msix;
  1524. if (IS_QLA2432(ha) && (ha->chip_revision < QLA_MSIX_CHIP_REV_24XX ||
  1525. !QLA_MSIX_FW_MODE_1(ha->fw_attributes))) {
  1526. DEBUG2(qla_printk(KERN_WARNING, ha,
  1527. "MSI-X: Unsupported ISP2432 (0x%X, 0x%X).\n",
  1528. ha->chip_revision, ha->fw_attributes));
  1529. goto skip_msix;
  1530. }
  1531. if (ha->pdev->subsystem_vendor == PCI_VENDOR_ID_HP &&
  1532. (ha->pdev->subsystem_device == 0x7040 ||
  1533. ha->pdev->subsystem_device == 0x7041 ||
  1534. ha->pdev->subsystem_device == 0x1705)) {
  1535. DEBUG2(qla_printk(KERN_WARNING, ha,
  1536. "MSI-X: Unsupported ISP2432 SSVID/SSDID (0x%X, 0x%X).\n",
  1537. ha->pdev->subsystem_vendor,
  1538. ha->pdev->subsystem_device));
  1539. goto skip_msi;
  1540. }
  1541. ret = qla24xx_enable_msix(ha);
  1542. if (!ret) {
  1543. DEBUG2(qla_printk(KERN_INFO, ha,
  1544. "MSI-X: Enabled (0x%X, 0x%X).\n", ha->chip_revision,
  1545. ha->fw_attributes));
  1546. goto clear_risc_ints;
  1547. }
  1548. qla_printk(KERN_WARNING, ha,
  1549. "MSI-X: Falling back-to INTa mode -- %d.\n", ret);
  1550. skip_msix:
  1551. if (!IS_QLA24XX(ha) && !IS_QLA2532(ha) && !IS_QLA8432(ha))
  1552. goto skip_msi;
  1553. ret = pci_enable_msi(ha->pdev);
  1554. if (!ret) {
  1555. DEBUG2(qla_printk(KERN_INFO, ha, "MSI: Enabled.\n"));
  1556. ha->flags.msi_enabled = 1;
  1557. }
  1558. skip_msi:
  1559. ret = request_irq(ha->pdev->irq, ha->isp_ops->intr_handler,
  1560. IRQF_DISABLED|IRQF_SHARED, QLA2XXX_DRIVER_NAME, ha);
  1561. if (ret) {
  1562. qla_printk(KERN_WARNING, ha,
  1563. "Failed to reserve interrupt %d already in use.\n",
  1564. ha->pdev->irq);
  1565. goto fail;
  1566. }
  1567. ha->flags.inta_enabled = 1;
  1568. ha->host->irq = ha->pdev->irq;
  1569. clear_risc_ints:
  1570. ha->isp_ops->disable_intrs(ha);
  1571. spin_lock_irq(&ha->hardware_lock);
  1572. if (IS_FWI2_CAPABLE(ha)) {
  1573. WRT_REG_DWORD(&reg->isp24.hccr, HCCRX_CLR_HOST_INT);
  1574. WRT_REG_DWORD(&reg->isp24.hccr, HCCRX_CLR_RISC_INT);
  1575. } else {
  1576. WRT_REG_WORD(&reg->isp.semaphore, 0);
  1577. WRT_REG_WORD(&reg->isp.hccr, HCCR_CLR_RISC_INT);
  1578. WRT_REG_WORD(&reg->isp.hccr, HCCR_CLR_HOST_INT);
  1579. }
  1580. spin_unlock_irq(&ha->hardware_lock);
  1581. ha->isp_ops->enable_intrs(ha);
  1582. fail:
  1583. return ret;
  1584. }
  1585. void
  1586. qla2x00_free_irqs(scsi_qla_host_t *ha)
  1587. {
  1588. if (ha->flags.msix_enabled)
  1589. qla24xx_disable_msix(ha);
  1590. else if (ha->flags.inta_enabled) {
  1591. free_irq(ha->host->irq, ha);
  1592. pci_disable_msi(ha->pdev);
  1593. }
  1594. }