qla_os.c 69 KB

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  1. /*
  2. * QLogic Fibre Channel HBA Driver
  3. * Copyright (c) 2003-2005 QLogic Corporation
  4. *
  5. * See LICENSE.qla2xxx for copyright and licensing details.
  6. */
  7. #include "qla_def.h"
  8. #include <linux/moduleparam.h>
  9. #include <linux/vmalloc.h>
  10. #include <linux/delay.h>
  11. #include <linux/kthread.h>
  12. #include <scsi/scsi_tcq.h>
  13. #include <scsi/scsicam.h>
  14. #include <scsi/scsi_transport.h>
  15. #include <scsi/scsi_transport_fc.h>
  16. /*
  17. * Driver version
  18. */
  19. char qla2x00_version_str[40];
  20. /*
  21. * SRB allocation cache
  22. */
  23. static kmem_cache_t *srb_cachep;
  24. /*
  25. * Ioctl related information.
  26. */
  27. static int num_hosts;
  28. int ql2xlogintimeout = 20;
  29. module_param(ql2xlogintimeout, int, S_IRUGO|S_IRUSR);
  30. MODULE_PARM_DESC(ql2xlogintimeout,
  31. "Login timeout value in seconds.");
  32. int qlport_down_retry = 30;
  33. module_param(qlport_down_retry, int, S_IRUGO|S_IRUSR);
  34. MODULE_PARM_DESC(qlport_down_retry,
  35. "Maximum number of command retries to a port that returns"
  36. "a PORT-DOWN status.");
  37. int ql2xplogiabsentdevice;
  38. module_param(ql2xplogiabsentdevice, int, S_IRUGO|S_IWUSR);
  39. MODULE_PARM_DESC(ql2xplogiabsentdevice,
  40. "Option to enable PLOGI to devices that are not present after "
  41. "a Fabric scan. This is needed for several broken switches."
  42. "Default is 0 - no PLOGI. 1 - perfom PLOGI.");
  43. int ql2xloginretrycount = 0;
  44. module_param(ql2xloginretrycount, int, S_IRUGO|S_IRUSR);
  45. MODULE_PARM_DESC(ql2xloginretrycount,
  46. "Specify an alternate value for the NVRAM login retry count.");
  47. #if defined(CONFIG_SCSI_QLA2XXX_EMBEDDED_FIRMWARE)
  48. int ql2xfwloadflash;
  49. module_param(ql2xfwloadflash, int, S_IRUGO|S_IRUSR);
  50. MODULE_PARM_DESC(ql2xfwloadflash,
  51. "Load ISP24xx firmware image from FLASH (onboard memory).");
  52. #endif
  53. static void qla2x00_free_device(scsi_qla_host_t *);
  54. static void qla2x00_config_dma_addressing(scsi_qla_host_t *ha);
  55. int ql2xfdmienable;
  56. module_param(ql2xfdmienable, int, S_IRUGO|S_IRUSR);
  57. MODULE_PARM_DESC(ql2xfdmienable,
  58. "Enables FDMI registratons "
  59. "Default is 0 - no FDMI. 1 - perfom FDMI.");
  60. int ql2xprocessrscn;
  61. module_param(ql2xprocessrscn, int, S_IRUGO|S_IRUSR);
  62. MODULE_PARM_DESC(ql2xprocessrscn,
  63. "Option to enable port RSCN handling via a series of less"
  64. "fabric intrusive ADISCs and PLOGIs.");
  65. /*
  66. * SCSI host template entry points
  67. */
  68. static int qla2xxx_slave_configure(struct scsi_device * device);
  69. static int qla2xxx_slave_alloc(struct scsi_device *);
  70. static void qla2xxx_slave_destroy(struct scsi_device *);
  71. static int qla2x00_queuecommand(struct scsi_cmnd *cmd,
  72. void (*fn)(struct scsi_cmnd *));
  73. static int qla24xx_queuecommand(struct scsi_cmnd *cmd,
  74. void (*fn)(struct scsi_cmnd *));
  75. static int qla2xxx_eh_abort(struct scsi_cmnd *);
  76. static int qla2xxx_eh_device_reset(struct scsi_cmnd *);
  77. static int qla2xxx_eh_bus_reset(struct scsi_cmnd *);
  78. static int qla2xxx_eh_host_reset(struct scsi_cmnd *);
  79. static int qla2x00_loop_reset(scsi_qla_host_t *ha);
  80. static int qla2x00_device_reset(scsi_qla_host_t *, fc_port_t *);
  81. static int qla2x00_change_queue_depth(struct scsi_device *, int);
  82. static int qla2x00_change_queue_type(struct scsi_device *, int);
  83. static struct scsi_host_template qla2x00_driver_template = {
  84. .module = THIS_MODULE,
  85. .name = "qla2xxx",
  86. .queuecommand = qla2x00_queuecommand,
  87. .eh_abort_handler = qla2xxx_eh_abort,
  88. .eh_device_reset_handler = qla2xxx_eh_device_reset,
  89. .eh_bus_reset_handler = qla2xxx_eh_bus_reset,
  90. .eh_host_reset_handler = qla2xxx_eh_host_reset,
  91. .slave_configure = qla2xxx_slave_configure,
  92. .slave_alloc = qla2xxx_slave_alloc,
  93. .slave_destroy = qla2xxx_slave_destroy,
  94. .change_queue_depth = qla2x00_change_queue_depth,
  95. .change_queue_type = qla2x00_change_queue_type,
  96. .this_id = -1,
  97. .cmd_per_lun = 3,
  98. .use_clustering = ENABLE_CLUSTERING,
  99. .sg_tablesize = SG_ALL,
  100. /*
  101. * The RISC allows for each command to transfer (2^32-1) bytes of data,
  102. * which equates to 0x800000 sectors.
  103. */
  104. .max_sectors = 0xFFFF,
  105. .shost_attrs = qla2x00_host_attrs,
  106. };
  107. static struct scsi_host_template qla24xx_driver_template = {
  108. .module = THIS_MODULE,
  109. .name = "qla2xxx",
  110. .queuecommand = qla24xx_queuecommand,
  111. .eh_abort_handler = qla2xxx_eh_abort,
  112. .eh_device_reset_handler = qla2xxx_eh_device_reset,
  113. .eh_bus_reset_handler = qla2xxx_eh_bus_reset,
  114. .eh_host_reset_handler = qla2xxx_eh_host_reset,
  115. .slave_configure = qla2xxx_slave_configure,
  116. .slave_alloc = qla2xxx_slave_alloc,
  117. .slave_destroy = qla2xxx_slave_destroy,
  118. .change_queue_depth = qla2x00_change_queue_depth,
  119. .change_queue_type = qla2x00_change_queue_type,
  120. .this_id = -1,
  121. .cmd_per_lun = 3,
  122. .use_clustering = ENABLE_CLUSTERING,
  123. .sg_tablesize = SG_ALL,
  124. .max_sectors = 0xFFFF,
  125. .shost_attrs = qla2x00_host_attrs,
  126. };
  127. static struct scsi_transport_template *qla2xxx_transport_template = NULL;
  128. /* TODO Convert to inlines
  129. *
  130. * Timer routines
  131. */
  132. #define WATCH_INTERVAL 1 /* number of seconds */
  133. static void qla2x00_timer(scsi_qla_host_t *);
  134. static __inline__ void qla2x00_start_timer(scsi_qla_host_t *,
  135. void *, unsigned long);
  136. static __inline__ void qla2x00_restart_timer(scsi_qla_host_t *, unsigned long);
  137. static __inline__ void qla2x00_stop_timer(scsi_qla_host_t *);
  138. static inline void
  139. qla2x00_start_timer(scsi_qla_host_t *ha, void *func, unsigned long interval)
  140. {
  141. init_timer(&ha->timer);
  142. ha->timer.expires = jiffies + interval * HZ;
  143. ha->timer.data = (unsigned long)ha;
  144. ha->timer.function = (void (*)(unsigned long))func;
  145. add_timer(&ha->timer);
  146. ha->timer_active = 1;
  147. }
  148. static inline void
  149. qla2x00_restart_timer(scsi_qla_host_t *ha, unsigned long interval)
  150. {
  151. mod_timer(&ha->timer, jiffies + interval * HZ);
  152. }
  153. static __inline__ void
  154. qla2x00_stop_timer(scsi_qla_host_t *ha)
  155. {
  156. del_timer_sync(&ha->timer);
  157. ha->timer_active = 0;
  158. }
  159. static int qla2x00_do_dpc(void *data);
  160. static void qla2x00_rst_aen(scsi_qla_host_t *);
  161. static uint8_t qla2x00_mem_alloc(scsi_qla_host_t *);
  162. static void qla2x00_mem_free(scsi_qla_host_t *ha);
  163. static int qla2x00_allocate_sp_pool( scsi_qla_host_t *ha);
  164. static void qla2x00_free_sp_pool(scsi_qla_host_t *ha);
  165. static void qla2x00_sp_free_dma(scsi_qla_host_t *, srb_t *);
  166. void qla2x00_sp_compl(scsi_qla_host_t *ha, srb_t *);
  167. /* -------------------------------------------------------------------------- */
  168. static char *
  169. qla2x00_pci_info_str(struct scsi_qla_host *ha, char *str)
  170. {
  171. static char *pci_bus_modes[] = {
  172. "33", "66", "100", "133",
  173. };
  174. uint16_t pci_bus;
  175. strcpy(str, "PCI");
  176. pci_bus = (ha->pci_attr & (BIT_9 | BIT_10)) >> 9;
  177. if (pci_bus) {
  178. strcat(str, "-X (");
  179. strcat(str, pci_bus_modes[pci_bus]);
  180. } else {
  181. pci_bus = (ha->pci_attr & BIT_8) >> 8;
  182. strcat(str, " (");
  183. strcat(str, pci_bus_modes[pci_bus]);
  184. }
  185. strcat(str, " MHz)");
  186. return (str);
  187. }
  188. static char *
  189. qla24xx_pci_info_str(struct scsi_qla_host *ha, char *str)
  190. {
  191. static char *pci_bus_modes[] = { "33", "66", "100", "133", };
  192. uint32_t pci_bus;
  193. int pcie_reg;
  194. pcie_reg = pci_find_capability(ha->pdev, PCI_CAP_ID_EXP);
  195. if (pcie_reg) {
  196. char lwstr[6];
  197. uint16_t pcie_lstat, lspeed, lwidth;
  198. pcie_reg += 0x12;
  199. pci_read_config_word(ha->pdev, pcie_reg, &pcie_lstat);
  200. lspeed = pcie_lstat & (BIT_0 | BIT_1 | BIT_2 | BIT_3);
  201. lwidth = (pcie_lstat &
  202. (BIT_4 | BIT_5 | BIT_6 | BIT_7 | BIT_8 | BIT_9)) >> 4;
  203. strcpy(str, "PCIe (");
  204. if (lspeed == 1)
  205. strcat(str, "2.5Gb/s ");
  206. else
  207. strcat(str, "<unknown> ");
  208. snprintf(lwstr, sizeof(lwstr), "x%d)", lwidth);
  209. strcat(str, lwstr);
  210. return str;
  211. }
  212. strcpy(str, "PCI");
  213. pci_bus = (ha->pci_attr & CSRX_PCIX_BUS_MODE_MASK) >> 8;
  214. if (pci_bus == 0 || pci_bus == 8) {
  215. strcat(str, " (");
  216. strcat(str, pci_bus_modes[pci_bus >> 3]);
  217. } else {
  218. strcat(str, "-X ");
  219. if (pci_bus & BIT_2)
  220. strcat(str, "Mode 2");
  221. else
  222. strcat(str, "Mode 1");
  223. strcat(str, " (");
  224. strcat(str, pci_bus_modes[pci_bus & ~BIT_2]);
  225. }
  226. strcat(str, " MHz)");
  227. return str;
  228. }
  229. char *
  230. qla2x00_fw_version_str(struct scsi_qla_host *ha, char *str)
  231. {
  232. char un_str[10];
  233. sprintf(str, "%d.%02d.%02d ", ha->fw_major_version,
  234. ha->fw_minor_version,
  235. ha->fw_subminor_version);
  236. if (ha->fw_attributes & BIT_9) {
  237. strcat(str, "FLX");
  238. return (str);
  239. }
  240. switch (ha->fw_attributes & 0xFF) {
  241. case 0x7:
  242. strcat(str, "EF");
  243. break;
  244. case 0x17:
  245. strcat(str, "TP");
  246. break;
  247. case 0x37:
  248. strcat(str, "IP");
  249. break;
  250. case 0x77:
  251. strcat(str, "VI");
  252. break;
  253. default:
  254. sprintf(un_str, "(%x)", ha->fw_attributes);
  255. strcat(str, un_str);
  256. break;
  257. }
  258. if (ha->fw_attributes & 0x100)
  259. strcat(str, "X");
  260. return (str);
  261. }
  262. char *
  263. qla24xx_fw_version_str(struct scsi_qla_host *ha, char *str)
  264. {
  265. sprintf(str, "%d.%02d.%02d ", ha->fw_major_version,
  266. ha->fw_minor_version,
  267. ha->fw_subminor_version);
  268. if (ha->fw_attributes & BIT_0)
  269. strcat(str, "[Class 2] ");
  270. if (ha->fw_attributes & BIT_1)
  271. strcat(str, "[IP] ");
  272. if (ha->fw_attributes & BIT_2)
  273. strcat(str, "[Multi-ID] ");
  274. if (ha->fw_attributes & BIT_13)
  275. strcat(str, "[Experimental]");
  276. return str;
  277. }
  278. static inline srb_t *
  279. qla2x00_get_new_sp(scsi_qla_host_t *ha, fc_port_t *fcport,
  280. struct scsi_cmnd *cmd, void (*done)(struct scsi_cmnd *))
  281. {
  282. srb_t *sp;
  283. sp = mempool_alloc(ha->srb_mempool, GFP_ATOMIC);
  284. if (!sp)
  285. return sp;
  286. atomic_set(&sp->ref_count, 1);
  287. sp->ha = ha;
  288. sp->fcport = fcport;
  289. sp->cmd = cmd;
  290. sp->flags = 0;
  291. CMD_SP(cmd) = (void *)sp;
  292. cmd->scsi_done = done;
  293. return sp;
  294. }
  295. static int
  296. qla2x00_queuecommand(struct scsi_cmnd *cmd, void (*done)(struct scsi_cmnd *))
  297. {
  298. scsi_qla_host_t *ha = to_qla_host(cmd->device->host);
  299. fc_port_t *fcport = (struct fc_port *) cmd->device->hostdata;
  300. struct fc_rport *rport = starget_to_rport(scsi_target(cmd->device));
  301. srb_t *sp;
  302. int rval;
  303. rval = fc_remote_port_chkready(rport);
  304. if (rval) {
  305. cmd->result = rval;
  306. goto qc_fail_command;
  307. }
  308. /* Close window on fcport/rport state-transitioning. */
  309. if (!*(fc_port_t **)rport->dd_data) {
  310. cmd->result = DID_IMM_RETRY << 16;
  311. goto qc_fail_command;
  312. }
  313. if (atomic_read(&fcport->state) != FCS_ONLINE) {
  314. if (atomic_read(&fcport->state) == FCS_DEVICE_DEAD ||
  315. atomic_read(&ha->loop_state) == LOOP_DEAD) {
  316. cmd->result = DID_NO_CONNECT << 16;
  317. goto qc_fail_command;
  318. }
  319. goto qc_host_busy;
  320. }
  321. spin_unlock_irq(ha->host->host_lock);
  322. sp = qla2x00_get_new_sp(ha, fcport, cmd, done);
  323. if (!sp)
  324. goto qc_host_busy_lock;
  325. rval = qla2x00_start_scsi(sp);
  326. if (rval != QLA_SUCCESS)
  327. goto qc_host_busy_free_sp;
  328. spin_lock_irq(ha->host->host_lock);
  329. return 0;
  330. qc_host_busy_free_sp:
  331. qla2x00_sp_free_dma(ha, sp);
  332. mempool_free(sp, ha->srb_mempool);
  333. qc_host_busy_lock:
  334. spin_lock_irq(ha->host->host_lock);
  335. qc_host_busy:
  336. return SCSI_MLQUEUE_HOST_BUSY;
  337. qc_fail_command:
  338. done(cmd);
  339. return 0;
  340. }
  341. static int
  342. qla24xx_queuecommand(struct scsi_cmnd *cmd, void (*done)(struct scsi_cmnd *))
  343. {
  344. scsi_qla_host_t *ha = to_qla_host(cmd->device->host);
  345. fc_port_t *fcport = (struct fc_port *) cmd->device->hostdata;
  346. struct fc_rport *rport = starget_to_rport(scsi_target(cmd->device));
  347. srb_t *sp;
  348. int rval;
  349. rval = fc_remote_port_chkready(rport);
  350. if (rval) {
  351. cmd->result = rval;
  352. goto qc24_fail_command;
  353. }
  354. /* Close window on fcport/rport state-transitioning. */
  355. if (!*(fc_port_t **)rport->dd_data) {
  356. cmd->result = DID_IMM_RETRY << 16;
  357. goto qc24_fail_command;
  358. }
  359. if (atomic_read(&fcport->state) != FCS_ONLINE) {
  360. if (atomic_read(&fcport->state) == FCS_DEVICE_DEAD ||
  361. atomic_read(&ha->loop_state) == LOOP_DEAD) {
  362. cmd->result = DID_NO_CONNECT << 16;
  363. goto qc24_fail_command;
  364. }
  365. goto qc24_host_busy;
  366. }
  367. spin_unlock_irq(ha->host->host_lock);
  368. sp = qla2x00_get_new_sp(ha, fcport, cmd, done);
  369. if (!sp)
  370. goto qc24_host_busy_lock;
  371. rval = qla24xx_start_scsi(sp);
  372. if (rval != QLA_SUCCESS)
  373. goto qc24_host_busy_free_sp;
  374. spin_lock_irq(ha->host->host_lock);
  375. return 0;
  376. qc24_host_busy_free_sp:
  377. qla2x00_sp_free_dma(ha, sp);
  378. mempool_free(sp, ha->srb_mempool);
  379. qc24_host_busy_lock:
  380. spin_lock_irq(ha->host->host_lock);
  381. qc24_host_busy:
  382. return SCSI_MLQUEUE_HOST_BUSY;
  383. qc24_fail_command:
  384. done(cmd);
  385. return 0;
  386. }
  387. /*
  388. * qla2x00_eh_wait_on_command
  389. * Waits for the command to be returned by the Firmware for some
  390. * max time.
  391. *
  392. * Input:
  393. * ha = actual ha whose done queue will contain the command
  394. * returned by firmware.
  395. * cmd = Scsi Command to wait on.
  396. * flag = Abort/Reset(Bus or Device Reset)
  397. *
  398. * Return:
  399. * Not Found : 0
  400. * Found : 1
  401. */
  402. static int
  403. qla2x00_eh_wait_on_command(scsi_qla_host_t *ha, struct scsi_cmnd *cmd)
  404. {
  405. #define ABORT_POLLING_PERIOD 1000
  406. #define ABORT_WAIT_ITER ((10 * 1000) / (ABORT_POLLING_PERIOD))
  407. unsigned long wait_iter = ABORT_WAIT_ITER;
  408. int ret = QLA_SUCCESS;
  409. while (CMD_SP(cmd)) {
  410. msleep(ABORT_POLLING_PERIOD);
  411. if (--wait_iter)
  412. break;
  413. }
  414. if (CMD_SP(cmd))
  415. ret = QLA_FUNCTION_FAILED;
  416. return ret;
  417. }
  418. /*
  419. * qla2x00_wait_for_hba_online
  420. * Wait till the HBA is online after going through
  421. * <= MAX_RETRIES_OF_ISP_ABORT or
  422. * finally HBA is disabled ie marked offline
  423. *
  424. * Input:
  425. * ha - pointer to host adapter structure
  426. *
  427. * Note:
  428. * Does context switching-Release SPIN_LOCK
  429. * (if any) before calling this routine.
  430. *
  431. * Return:
  432. * Success (Adapter is online) : 0
  433. * Failed (Adapter is offline/disabled) : 1
  434. */
  435. int
  436. qla2x00_wait_for_hba_online(scsi_qla_host_t *ha)
  437. {
  438. int return_status;
  439. unsigned long wait_online;
  440. wait_online = jiffies + (MAX_LOOP_TIMEOUT * HZ);
  441. while (((test_bit(ISP_ABORT_NEEDED, &ha->dpc_flags)) ||
  442. test_bit(ABORT_ISP_ACTIVE, &ha->dpc_flags) ||
  443. test_bit(ISP_ABORT_RETRY, &ha->dpc_flags) ||
  444. ha->dpc_active) && time_before(jiffies, wait_online)) {
  445. msleep(1000);
  446. }
  447. if (ha->flags.online)
  448. return_status = QLA_SUCCESS;
  449. else
  450. return_status = QLA_FUNCTION_FAILED;
  451. DEBUG2(printk("%s return_status=%d\n",__func__,return_status));
  452. return (return_status);
  453. }
  454. /*
  455. * qla2x00_wait_for_loop_ready
  456. * Wait for MAX_LOOP_TIMEOUT(5 min) value for loop
  457. * to be in LOOP_READY state.
  458. * Input:
  459. * ha - pointer to host adapter structure
  460. *
  461. * Note:
  462. * Does context switching-Release SPIN_LOCK
  463. * (if any) before calling this routine.
  464. *
  465. *
  466. * Return:
  467. * Success (LOOP_READY) : 0
  468. * Failed (LOOP_NOT_READY) : 1
  469. */
  470. static inline int
  471. qla2x00_wait_for_loop_ready(scsi_qla_host_t *ha)
  472. {
  473. int return_status = QLA_SUCCESS;
  474. unsigned long loop_timeout ;
  475. /* wait for 5 min at the max for loop to be ready */
  476. loop_timeout = jiffies + (MAX_LOOP_TIMEOUT * HZ);
  477. while ((!atomic_read(&ha->loop_down_timer) &&
  478. atomic_read(&ha->loop_state) == LOOP_DOWN) ||
  479. atomic_read(&ha->loop_state) != LOOP_READY) {
  480. msleep(1000);
  481. if (time_after_eq(jiffies, loop_timeout)) {
  482. return_status = QLA_FUNCTION_FAILED;
  483. break;
  484. }
  485. }
  486. return (return_status);
  487. }
  488. /**************************************************************************
  489. * qla2xxx_eh_abort
  490. *
  491. * Description:
  492. * The abort function will abort the specified command.
  493. *
  494. * Input:
  495. * cmd = Linux SCSI command packet to be aborted.
  496. *
  497. * Returns:
  498. * Either SUCCESS or FAILED.
  499. *
  500. * Note:
  501. **************************************************************************/
  502. int
  503. qla2xxx_eh_abort(struct scsi_cmnd *cmd)
  504. {
  505. scsi_qla_host_t *ha = to_qla_host(cmd->device->host);
  506. srb_t *sp;
  507. int ret, i;
  508. unsigned int id, lun;
  509. unsigned long serial;
  510. unsigned long flags;
  511. if (!CMD_SP(cmd))
  512. return FAILED;
  513. ret = FAILED;
  514. id = cmd->device->id;
  515. lun = cmd->device->lun;
  516. serial = cmd->serial_number;
  517. /* Check active list for command command. */
  518. spin_lock_irqsave(&ha->hardware_lock, flags);
  519. for (i = 1; i < MAX_OUTSTANDING_COMMANDS; i++) {
  520. sp = ha->outstanding_cmds[i];
  521. if (sp == NULL)
  522. continue;
  523. if (sp->cmd != cmd)
  524. continue;
  525. DEBUG2(printk("%s(%ld): aborting sp %p from RISC. pid=%ld "
  526. "sp->state=%x\n", __func__, ha->host_no, sp, serial,
  527. sp->state));
  528. DEBUG3(qla2x00_print_scsi_cmd(cmd);)
  529. spin_unlock_irqrestore(&ha->hardware_lock, flags);
  530. if (ha->isp_ops.abort_command(ha, sp)) {
  531. DEBUG2(printk("%s(%ld): abort_command "
  532. "mbx failed.\n", __func__, ha->host_no));
  533. } else {
  534. DEBUG3(printk("%s(%ld): abort_command "
  535. "mbx success.\n", __func__, ha->host_no));
  536. ret = SUCCESS;
  537. }
  538. spin_lock_irqsave(&ha->hardware_lock, flags);
  539. break;
  540. }
  541. spin_unlock_irqrestore(&ha->hardware_lock, flags);
  542. /* Wait for the command to be returned. */
  543. if (ret == SUCCESS) {
  544. if (qla2x00_eh_wait_on_command(ha, cmd) != QLA_SUCCESS) {
  545. qla_printk(KERN_ERR, ha,
  546. "scsi(%ld:%d:%d): Abort handler timed out -- %lx "
  547. "%x.\n", ha->host_no, id, lun, serial, ret);
  548. }
  549. }
  550. qla_printk(KERN_INFO, ha,
  551. "scsi(%ld:%d:%d): Abort command issued -- %lx %x.\n", ha->host_no,
  552. id, lun, serial, ret);
  553. return ret;
  554. }
  555. /**************************************************************************
  556. * qla2x00_eh_wait_for_pending_target_commands
  557. *
  558. * Description:
  559. * Waits for all the commands to come back from the specified target.
  560. *
  561. * Input:
  562. * ha - pointer to scsi_qla_host structure.
  563. * t - target
  564. * Returns:
  565. * Either SUCCESS or FAILED.
  566. *
  567. * Note:
  568. **************************************************************************/
  569. static int
  570. qla2x00_eh_wait_for_pending_target_commands(scsi_qla_host_t *ha, unsigned int t)
  571. {
  572. int cnt;
  573. int status;
  574. srb_t *sp;
  575. struct scsi_cmnd *cmd;
  576. unsigned long flags;
  577. status = 0;
  578. /*
  579. * Waiting for all commands for the designated target in the active
  580. * array
  581. */
  582. for (cnt = 1; cnt < MAX_OUTSTANDING_COMMANDS; cnt++) {
  583. spin_lock_irqsave(&ha->hardware_lock, flags);
  584. sp = ha->outstanding_cmds[cnt];
  585. if (sp) {
  586. cmd = sp->cmd;
  587. spin_unlock_irqrestore(&ha->hardware_lock, flags);
  588. if (cmd->device->id == t) {
  589. if (!qla2x00_eh_wait_on_command(ha, cmd)) {
  590. status = 1;
  591. break;
  592. }
  593. }
  594. } else {
  595. spin_unlock_irqrestore(&ha->hardware_lock, flags);
  596. }
  597. }
  598. return (status);
  599. }
  600. /**************************************************************************
  601. * qla2xxx_eh_device_reset
  602. *
  603. * Description:
  604. * The device reset function will reset the target and abort any
  605. * executing commands.
  606. *
  607. * NOTE: The use of SP is undefined within this context. Do *NOT*
  608. * attempt to use this value, even if you determine it is
  609. * non-null.
  610. *
  611. * Input:
  612. * cmd = Linux SCSI command packet of the command that cause the
  613. * bus device reset.
  614. *
  615. * Returns:
  616. * SUCCESS/FAILURE (defined as macro in scsi.h).
  617. *
  618. **************************************************************************/
  619. int
  620. qla2xxx_eh_device_reset(struct scsi_cmnd *cmd)
  621. {
  622. scsi_qla_host_t *ha = to_qla_host(cmd->device->host);
  623. fc_port_t *fcport = (struct fc_port *) cmd->device->hostdata;
  624. srb_t *sp;
  625. int ret;
  626. unsigned int id, lun;
  627. unsigned long serial;
  628. ret = FAILED;
  629. id = cmd->device->id;
  630. lun = cmd->device->lun;
  631. serial = cmd->serial_number;
  632. sp = (srb_t *) CMD_SP(cmd);
  633. if (!sp || !fcport)
  634. return ret;
  635. qla_printk(KERN_INFO, ha,
  636. "scsi(%ld:%d:%d): DEVICE RESET ISSUED.\n", ha->host_no, id, lun);
  637. if (qla2x00_wait_for_hba_online(ha) != QLA_SUCCESS)
  638. goto eh_dev_reset_done;
  639. if (qla2x00_wait_for_loop_ready(ha) == QLA_SUCCESS) {
  640. if (qla2x00_device_reset(ha, fcport) == 0)
  641. ret = SUCCESS;
  642. #if defined(LOGOUT_AFTER_DEVICE_RESET)
  643. if (ret == SUCCESS) {
  644. if (fcport->flags & FC_FABRIC_DEVICE) {
  645. ha->isp_ops.fabric_logout(ha, fcport->loop_id);
  646. qla2x00_mark_device_lost(ha, fcport, 0, 0);
  647. }
  648. }
  649. #endif
  650. } else {
  651. DEBUG2(printk(KERN_INFO
  652. "%s failed: loop not ready\n",__func__);)
  653. }
  654. if (ret == FAILED) {
  655. DEBUG3(printk("%s(%ld): device reset failed\n",
  656. __func__, ha->host_no));
  657. qla_printk(KERN_INFO, ha, "%s: device reset failed\n",
  658. __func__);
  659. goto eh_dev_reset_done;
  660. }
  661. /* Flush outstanding commands. */
  662. if (qla2x00_eh_wait_for_pending_target_commands(ha, id))
  663. ret = FAILED;
  664. if (ret == FAILED) {
  665. DEBUG3(printk("%s(%ld): failed while waiting for commands\n",
  666. __func__, ha->host_no));
  667. qla_printk(KERN_INFO, ha,
  668. "%s: failed while waiting for commands\n", __func__);
  669. } else
  670. qla_printk(KERN_INFO, ha,
  671. "scsi(%ld:%d:%d): DEVICE RESET SUCCEEDED.\n", ha->host_no,
  672. id, lun);
  673. eh_dev_reset_done:
  674. return ret;
  675. }
  676. /**************************************************************************
  677. * qla2x00_eh_wait_for_pending_commands
  678. *
  679. * Description:
  680. * Waits for all the commands to come back from the specified host.
  681. *
  682. * Input:
  683. * ha - pointer to scsi_qla_host structure.
  684. *
  685. * Returns:
  686. * 1 : SUCCESS
  687. * 0 : FAILED
  688. *
  689. * Note:
  690. **************************************************************************/
  691. static int
  692. qla2x00_eh_wait_for_pending_commands(scsi_qla_host_t *ha)
  693. {
  694. int cnt;
  695. int status;
  696. srb_t *sp;
  697. struct scsi_cmnd *cmd;
  698. unsigned long flags;
  699. status = 1;
  700. /*
  701. * Waiting for all commands for the designated target in the active
  702. * array
  703. */
  704. for (cnt = 1; cnt < MAX_OUTSTANDING_COMMANDS; cnt++) {
  705. spin_lock_irqsave(&ha->hardware_lock, flags);
  706. sp = ha->outstanding_cmds[cnt];
  707. if (sp) {
  708. cmd = sp->cmd;
  709. spin_unlock_irqrestore(&ha->hardware_lock, flags);
  710. status = qla2x00_eh_wait_on_command(ha, cmd);
  711. if (status == 0)
  712. break;
  713. }
  714. else {
  715. spin_unlock_irqrestore(&ha->hardware_lock, flags);
  716. }
  717. }
  718. return (status);
  719. }
  720. /**************************************************************************
  721. * qla2xxx_eh_bus_reset
  722. *
  723. * Description:
  724. * The bus reset function will reset the bus and abort any executing
  725. * commands.
  726. *
  727. * Input:
  728. * cmd = Linux SCSI command packet of the command that cause the
  729. * bus reset.
  730. *
  731. * Returns:
  732. * SUCCESS/FAILURE (defined as macro in scsi.h).
  733. *
  734. **************************************************************************/
  735. int
  736. qla2xxx_eh_bus_reset(struct scsi_cmnd *cmd)
  737. {
  738. scsi_qla_host_t *ha = to_qla_host(cmd->device->host);
  739. fc_port_t *fcport = (struct fc_port *) cmd->device->hostdata;
  740. srb_t *sp;
  741. int ret;
  742. unsigned int id, lun;
  743. unsigned long serial;
  744. ret = FAILED;
  745. id = cmd->device->id;
  746. lun = cmd->device->lun;
  747. serial = cmd->serial_number;
  748. sp = (srb_t *) CMD_SP(cmd);
  749. if (!sp || !fcport)
  750. return ret;
  751. qla_printk(KERN_INFO, ha,
  752. "scsi(%ld:%d:%d): LOOP RESET ISSUED.\n", ha->host_no, id, lun);
  753. if (qla2x00_wait_for_hba_online(ha) != QLA_SUCCESS) {
  754. DEBUG2(printk("%s failed:board disabled\n",__func__));
  755. goto eh_bus_reset_done;
  756. }
  757. if (qla2x00_wait_for_loop_ready(ha) == QLA_SUCCESS) {
  758. if (qla2x00_loop_reset(ha) == QLA_SUCCESS)
  759. ret = SUCCESS;
  760. }
  761. if (ret == FAILED)
  762. goto eh_bus_reset_done;
  763. /* Flush outstanding commands. */
  764. if (!qla2x00_eh_wait_for_pending_commands(ha))
  765. ret = FAILED;
  766. eh_bus_reset_done:
  767. qla_printk(KERN_INFO, ha, "%s: reset %s\n", __func__,
  768. (ret == FAILED) ? "failed" : "succeded");
  769. return ret;
  770. }
  771. /**************************************************************************
  772. * qla2xxx_eh_host_reset
  773. *
  774. * Description:
  775. * The reset function will reset the Adapter.
  776. *
  777. * Input:
  778. * cmd = Linux SCSI command packet of the command that cause the
  779. * adapter reset.
  780. *
  781. * Returns:
  782. * Either SUCCESS or FAILED.
  783. *
  784. * Note:
  785. **************************************************************************/
  786. int
  787. qla2xxx_eh_host_reset(struct scsi_cmnd *cmd)
  788. {
  789. scsi_qla_host_t *ha = to_qla_host(cmd->device->host);
  790. fc_port_t *fcport = (struct fc_port *) cmd->device->hostdata;
  791. srb_t *sp;
  792. int ret;
  793. unsigned int id, lun;
  794. unsigned long serial;
  795. ret = FAILED;
  796. id = cmd->device->id;
  797. lun = cmd->device->lun;
  798. serial = cmd->serial_number;
  799. sp = (srb_t *) CMD_SP(cmd);
  800. if (!sp || !fcport)
  801. return ret;
  802. qla_printk(KERN_INFO, ha,
  803. "scsi(%ld:%d:%d): ADAPTER RESET ISSUED.\n", ha->host_no, id, lun);
  804. if (qla2x00_wait_for_hba_online(ha) != QLA_SUCCESS)
  805. goto eh_host_reset_lock;
  806. /*
  807. * Fixme-may be dpc thread is active and processing
  808. * loop_resync,so wait a while for it to
  809. * be completed and then issue big hammer.Otherwise
  810. * it may cause I/O failure as big hammer marks the
  811. * devices as lost kicking of the port_down_timer
  812. * while dpc is stuck for the mailbox to complete.
  813. */
  814. qla2x00_wait_for_loop_ready(ha);
  815. set_bit(ABORT_ISP_ACTIVE, &ha->dpc_flags);
  816. if (qla2x00_abort_isp(ha)) {
  817. clear_bit(ABORT_ISP_ACTIVE, &ha->dpc_flags);
  818. /* failed. schedule dpc to try */
  819. set_bit(ISP_ABORT_NEEDED, &ha->dpc_flags);
  820. if (qla2x00_wait_for_hba_online(ha) != QLA_SUCCESS)
  821. goto eh_host_reset_lock;
  822. }
  823. clear_bit(ABORT_ISP_ACTIVE, &ha->dpc_flags);
  824. /* Waiting for our command in done_queue to be returned to OS.*/
  825. if (qla2x00_eh_wait_for_pending_commands(ha))
  826. ret = SUCCESS;
  827. eh_host_reset_lock:
  828. qla_printk(KERN_INFO, ha, "%s: reset %s\n", __func__,
  829. (ret == FAILED) ? "failed" : "succeded");
  830. return ret;
  831. }
  832. /*
  833. * qla2x00_loop_reset
  834. * Issue loop reset.
  835. *
  836. * Input:
  837. * ha = adapter block pointer.
  838. *
  839. * Returns:
  840. * 0 = success
  841. */
  842. static int
  843. qla2x00_loop_reset(scsi_qla_host_t *ha)
  844. {
  845. int status = QLA_SUCCESS;
  846. struct fc_port *fcport;
  847. if (ha->flags.enable_lip_reset) {
  848. status = qla2x00_lip_reset(ha);
  849. }
  850. if (status == QLA_SUCCESS && ha->flags.enable_target_reset) {
  851. list_for_each_entry(fcport, &ha->fcports, list) {
  852. if (fcport->port_type != FCT_TARGET)
  853. continue;
  854. status = qla2x00_device_reset(ha, fcport);
  855. if (status != QLA_SUCCESS)
  856. break;
  857. }
  858. }
  859. if (status == QLA_SUCCESS &&
  860. ((!ha->flags.enable_target_reset &&
  861. !ha->flags.enable_lip_reset) ||
  862. ha->flags.enable_lip_full_login)) {
  863. status = qla2x00_full_login_lip(ha);
  864. }
  865. /* Issue marker command only when we are going to start the I/O */
  866. ha->marker_needed = 1;
  867. if (status) {
  868. /* Empty */
  869. DEBUG2_3(printk("%s(%ld): **** FAILED ****\n",
  870. __func__,
  871. ha->host_no);)
  872. } else {
  873. /* Empty */
  874. DEBUG3(printk("%s(%ld): exiting normally.\n",
  875. __func__,
  876. ha->host_no);)
  877. }
  878. return(status);
  879. }
  880. /*
  881. * qla2x00_device_reset
  882. * Issue bus device reset message to the target.
  883. *
  884. * Input:
  885. * ha = adapter block pointer.
  886. * t = SCSI ID.
  887. * TARGET_QUEUE_LOCK must be released.
  888. * ADAPTER_STATE_LOCK must be released.
  889. *
  890. * Context:
  891. * Kernel context.
  892. */
  893. static int
  894. qla2x00_device_reset(scsi_qla_host_t *ha, fc_port_t *reset_fcport)
  895. {
  896. /* Abort Target command will clear Reservation */
  897. return ha->isp_ops.abort_target(reset_fcport);
  898. }
  899. static int
  900. qla2xxx_slave_alloc(struct scsi_device *sdev)
  901. {
  902. struct fc_rport *rport = starget_to_rport(scsi_target(sdev));
  903. if (!rport || fc_remote_port_chkready(rport))
  904. return -ENXIO;
  905. sdev->hostdata = *(fc_port_t **)rport->dd_data;
  906. return 0;
  907. }
  908. static int
  909. qla2xxx_slave_configure(struct scsi_device *sdev)
  910. {
  911. scsi_qla_host_t *ha = to_qla_host(sdev->host);
  912. struct fc_rport *rport = starget_to_rport(sdev->sdev_target);
  913. if (sdev->tagged_supported)
  914. scsi_activate_tcq(sdev, 32);
  915. else
  916. scsi_deactivate_tcq(sdev, 32);
  917. rport->dev_loss_tmo = ha->port_down_retry_count + 5;
  918. return 0;
  919. }
  920. static void
  921. qla2xxx_slave_destroy(struct scsi_device *sdev)
  922. {
  923. sdev->hostdata = NULL;
  924. }
  925. static int
  926. qla2x00_change_queue_depth(struct scsi_device *sdev, int qdepth)
  927. {
  928. scsi_adjust_queue_depth(sdev, scsi_get_tag_type(sdev), qdepth);
  929. return sdev->queue_depth;
  930. }
  931. static int
  932. qla2x00_change_queue_type(struct scsi_device *sdev, int tag_type)
  933. {
  934. if (sdev->tagged_supported) {
  935. scsi_set_tag_type(sdev, tag_type);
  936. if (tag_type)
  937. scsi_activate_tcq(sdev, sdev->queue_depth);
  938. else
  939. scsi_deactivate_tcq(sdev, sdev->queue_depth);
  940. } else
  941. tag_type = 0;
  942. return tag_type;
  943. }
  944. /**
  945. * qla2x00_config_dma_addressing() - Configure OS DMA addressing method.
  946. * @ha: HA context
  947. *
  948. * At exit, the @ha's flags.enable_64bit_addressing set to indicated
  949. * supported addressing method.
  950. */
  951. static void
  952. qla2x00_config_dma_addressing(scsi_qla_host_t *ha)
  953. {
  954. /* Assume a 32bit DMA mask. */
  955. ha->flags.enable_64bit_addressing = 0;
  956. if (!dma_set_mask(&ha->pdev->dev, DMA_64BIT_MASK)) {
  957. /* Any upper-dword bits set? */
  958. if (MSD(dma_get_required_mask(&ha->pdev->dev)) &&
  959. !pci_set_consistent_dma_mask(ha->pdev, DMA_64BIT_MASK)) {
  960. /* Ok, a 64bit DMA mask is applicable. */
  961. ha->flags.enable_64bit_addressing = 1;
  962. ha->isp_ops.calc_req_entries = qla2x00_calc_iocbs_64;
  963. ha->isp_ops.build_iocbs = qla2x00_build_scsi_iocbs_64;
  964. return;
  965. }
  966. }
  967. dma_set_mask(&ha->pdev->dev, DMA_32BIT_MASK);
  968. pci_set_consistent_dma_mask(ha->pdev, DMA_32BIT_MASK);
  969. }
  970. static inline void
  971. qla2x00_set_isp_flags(scsi_qla_host_t *ha)
  972. {
  973. ha->device_type = DT_EXTENDED_IDS;
  974. switch (ha->pdev->device) {
  975. case PCI_DEVICE_ID_QLOGIC_ISP2100:
  976. ha->device_type |= DT_ISP2100;
  977. ha->device_type &= ~DT_EXTENDED_IDS;
  978. break;
  979. case PCI_DEVICE_ID_QLOGIC_ISP2200:
  980. ha->device_type |= DT_ISP2200;
  981. ha->device_type &= ~DT_EXTENDED_IDS;
  982. break;
  983. case PCI_DEVICE_ID_QLOGIC_ISP2300:
  984. ha->device_type |= DT_ISP2300;
  985. ha->device_type |= DT_ZIO_SUPPORTED;
  986. break;
  987. case PCI_DEVICE_ID_QLOGIC_ISP2312:
  988. ha->device_type |= DT_ISP2312;
  989. ha->device_type |= DT_ZIO_SUPPORTED;
  990. break;
  991. case PCI_DEVICE_ID_QLOGIC_ISP2322:
  992. ha->device_type |= DT_ISP2322;
  993. ha->device_type |= DT_ZIO_SUPPORTED;
  994. if (ha->pdev->subsystem_vendor == 0x1028 &&
  995. ha->pdev->subsystem_device == 0x0170)
  996. ha->device_type |= DT_OEM_001;
  997. break;
  998. case PCI_DEVICE_ID_QLOGIC_ISP6312:
  999. ha->device_type |= DT_ISP6312;
  1000. break;
  1001. case PCI_DEVICE_ID_QLOGIC_ISP6322:
  1002. ha->device_type |= DT_ISP6322;
  1003. break;
  1004. case PCI_DEVICE_ID_QLOGIC_ISP2422:
  1005. ha->device_type |= DT_ISP2422;
  1006. ha->device_type |= DT_ZIO_SUPPORTED;
  1007. break;
  1008. case PCI_DEVICE_ID_QLOGIC_ISP2432:
  1009. ha->device_type |= DT_ISP2432;
  1010. ha->device_type |= DT_ZIO_SUPPORTED;
  1011. break;
  1012. case PCI_DEVICE_ID_QLOGIC_ISP5422:
  1013. ha->device_type |= DT_ISP5422;
  1014. break;
  1015. case PCI_DEVICE_ID_QLOGIC_ISP5432:
  1016. ha->device_type |= DT_ISP5432;
  1017. break;
  1018. }
  1019. }
  1020. static int
  1021. qla2x00_iospace_config(scsi_qla_host_t *ha)
  1022. {
  1023. unsigned long pio, pio_len, pio_flags;
  1024. unsigned long mmio, mmio_len, mmio_flags;
  1025. /* We only need PIO for Flash operations on ISP2312 v2 chips. */
  1026. pio = pci_resource_start(ha->pdev, 0);
  1027. pio_len = pci_resource_len(ha->pdev, 0);
  1028. pio_flags = pci_resource_flags(ha->pdev, 0);
  1029. if (pio_flags & IORESOURCE_IO) {
  1030. if (pio_len < MIN_IOBASE_LEN) {
  1031. qla_printk(KERN_WARNING, ha,
  1032. "Invalid PCI I/O region size (%s)...\n",
  1033. pci_name(ha->pdev));
  1034. pio = 0;
  1035. }
  1036. } else {
  1037. qla_printk(KERN_WARNING, ha,
  1038. "region #0 not a PIO resource (%s)...\n",
  1039. pci_name(ha->pdev));
  1040. pio = 0;
  1041. }
  1042. /* Use MMIO operations for all accesses. */
  1043. mmio = pci_resource_start(ha->pdev, 1);
  1044. mmio_len = pci_resource_len(ha->pdev, 1);
  1045. mmio_flags = pci_resource_flags(ha->pdev, 1);
  1046. if (!(mmio_flags & IORESOURCE_MEM)) {
  1047. qla_printk(KERN_ERR, ha,
  1048. "region #0 not an MMIO resource (%s), aborting\n",
  1049. pci_name(ha->pdev));
  1050. goto iospace_error_exit;
  1051. }
  1052. if (mmio_len < MIN_IOBASE_LEN) {
  1053. qla_printk(KERN_ERR, ha,
  1054. "Invalid PCI mem region size (%s), aborting\n",
  1055. pci_name(ha->pdev));
  1056. goto iospace_error_exit;
  1057. }
  1058. if (pci_request_regions(ha->pdev, ha->brd_info->drv_name)) {
  1059. qla_printk(KERN_WARNING, ha,
  1060. "Failed to reserve PIO/MMIO regions (%s)\n",
  1061. pci_name(ha->pdev));
  1062. goto iospace_error_exit;
  1063. }
  1064. ha->pio_address = pio;
  1065. ha->pio_length = pio_len;
  1066. ha->iobase = ioremap(mmio, MIN_IOBASE_LEN);
  1067. if (!ha->iobase) {
  1068. qla_printk(KERN_ERR, ha,
  1069. "cannot remap MMIO (%s), aborting\n", pci_name(ha->pdev));
  1070. goto iospace_error_exit;
  1071. }
  1072. return (0);
  1073. iospace_error_exit:
  1074. return (-ENOMEM);
  1075. }
  1076. static void
  1077. qla2x00_enable_intrs(scsi_qla_host_t *ha)
  1078. {
  1079. unsigned long flags = 0;
  1080. struct device_reg_2xxx __iomem *reg = &ha->iobase->isp;
  1081. spin_lock_irqsave(&ha->hardware_lock, flags);
  1082. ha->interrupts_on = 1;
  1083. /* enable risc and host interrupts */
  1084. WRT_REG_WORD(&reg->ictrl, ICR_EN_INT | ICR_EN_RISC);
  1085. RD_REG_WORD(&reg->ictrl);
  1086. spin_unlock_irqrestore(&ha->hardware_lock, flags);
  1087. }
  1088. static void
  1089. qla2x00_disable_intrs(scsi_qla_host_t *ha)
  1090. {
  1091. unsigned long flags = 0;
  1092. struct device_reg_2xxx __iomem *reg = &ha->iobase->isp;
  1093. spin_lock_irqsave(&ha->hardware_lock, flags);
  1094. ha->interrupts_on = 0;
  1095. /* disable risc and host interrupts */
  1096. WRT_REG_WORD(&reg->ictrl, 0);
  1097. RD_REG_WORD(&reg->ictrl);
  1098. spin_unlock_irqrestore(&ha->hardware_lock, flags);
  1099. }
  1100. static void
  1101. qla24xx_enable_intrs(scsi_qla_host_t *ha)
  1102. {
  1103. unsigned long flags = 0;
  1104. struct device_reg_24xx __iomem *reg = &ha->iobase->isp24;
  1105. spin_lock_irqsave(&ha->hardware_lock, flags);
  1106. ha->interrupts_on = 1;
  1107. WRT_REG_DWORD(&reg->ictrl, ICRX_EN_RISC_INT);
  1108. RD_REG_DWORD(&reg->ictrl);
  1109. spin_unlock_irqrestore(&ha->hardware_lock, flags);
  1110. }
  1111. static void
  1112. qla24xx_disable_intrs(scsi_qla_host_t *ha)
  1113. {
  1114. unsigned long flags = 0;
  1115. struct device_reg_24xx __iomem *reg = &ha->iobase->isp24;
  1116. spin_lock_irqsave(&ha->hardware_lock, flags);
  1117. ha->interrupts_on = 0;
  1118. WRT_REG_DWORD(&reg->ictrl, 0);
  1119. RD_REG_DWORD(&reg->ictrl);
  1120. spin_unlock_irqrestore(&ha->hardware_lock, flags);
  1121. }
  1122. /*
  1123. * PCI driver interface
  1124. */
  1125. int qla2x00_probe_one(struct pci_dev *pdev, struct qla_board_info *brd_info)
  1126. {
  1127. int ret = -ENODEV;
  1128. device_reg_t __iomem *reg;
  1129. struct Scsi_Host *host;
  1130. scsi_qla_host_t *ha;
  1131. unsigned long flags = 0;
  1132. unsigned long wait_switch = 0;
  1133. char pci_info[20];
  1134. char fw_str[30];
  1135. fc_port_t *fcport;
  1136. struct scsi_host_template *sht;
  1137. if (pci_enable_device(pdev))
  1138. goto probe_out;
  1139. sht = &qla2x00_driver_template;
  1140. if (pdev->device == PCI_DEVICE_ID_QLOGIC_ISP2422 ||
  1141. pdev->device == PCI_DEVICE_ID_QLOGIC_ISP2432)
  1142. sht = &qla24xx_driver_template;
  1143. host = scsi_host_alloc(sht, sizeof(scsi_qla_host_t));
  1144. if (host == NULL) {
  1145. printk(KERN_WARNING
  1146. "qla2xxx: Couldn't allocate host from scsi layer!\n");
  1147. goto probe_disable_device;
  1148. }
  1149. /* Clear our data area */
  1150. ha = (scsi_qla_host_t *)host->hostdata;
  1151. memset(ha, 0, sizeof(scsi_qla_host_t));
  1152. ha->pdev = pdev;
  1153. ha->host = host;
  1154. ha->host_no = host->host_no;
  1155. ha->brd_info = brd_info;
  1156. sprintf(ha->host_str, "%s_%ld", ha->brd_info->drv_name, ha->host_no);
  1157. /* Set ISP-type information. */
  1158. qla2x00_set_isp_flags(ha);
  1159. /* Configure PCI I/O space */
  1160. ret = qla2x00_iospace_config(ha);
  1161. if (ret)
  1162. goto probe_failed;
  1163. qla_printk(KERN_INFO, ha,
  1164. "Found an ISP%04X, irq %d, iobase 0x%p\n", pdev->device, pdev->irq,
  1165. ha->iobase);
  1166. spin_lock_init(&ha->hardware_lock);
  1167. ha->prev_topology = 0;
  1168. ha->ports = MAX_BUSES;
  1169. ha->init_cb_size = sizeof(init_cb_t);
  1170. ha->mgmt_svr_loop_id = MANAGEMENT_SERVER;
  1171. ha->link_data_rate = LDR_UNKNOWN;
  1172. ha->optrom_size = OPTROM_SIZE_2300;
  1173. /* Assign ISP specific operations. */
  1174. ha->isp_ops.pci_config = qla2100_pci_config;
  1175. ha->isp_ops.reset_chip = qla2x00_reset_chip;
  1176. ha->isp_ops.chip_diag = qla2x00_chip_diag;
  1177. ha->isp_ops.config_rings = qla2x00_config_rings;
  1178. ha->isp_ops.reset_adapter = qla2x00_reset_adapter;
  1179. ha->isp_ops.nvram_config = qla2x00_nvram_config;
  1180. ha->isp_ops.update_fw_options = qla2x00_update_fw_options;
  1181. ha->isp_ops.load_risc = qla2x00_load_risc;
  1182. ha->isp_ops.pci_info_str = qla2x00_pci_info_str;
  1183. ha->isp_ops.fw_version_str = qla2x00_fw_version_str;
  1184. ha->isp_ops.intr_handler = qla2100_intr_handler;
  1185. ha->isp_ops.enable_intrs = qla2x00_enable_intrs;
  1186. ha->isp_ops.disable_intrs = qla2x00_disable_intrs;
  1187. ha->isp_ops.abort_command = qla2x00_abort_command;
  1188. ha->isp_ops.abort_target = qla2x00_abort_target;
  1189. ha->isp_ops.fabric_login = qla2x00_login_fabric;
  1190. ha->isp_ops.fabric_logout = qla2x00_fabric_logout;
  1191. ha->isp_ops.calc_req_entries = qla2x00_calc_iocbs_32;
  1192. ha->isp_ops.build_iocbs = qla2x00_build_scsi_iocbs_32;
  1193. ha->isp_ops.prep_ms_iocb = qla2x00_prep_ms_iocb;
  1194. ha->isp_ops.prep_ms_fdmi_iocb = qla2x00_prep_ms_fdmi_iocb;
  1195. ha->isp_ops.read_nvram = qla2x00_read_nvram_data;
  1196. ha->isp_ops.write_nvram = qla2x00_write_nvram_data;
  1197. ha->isp_ops.fw_dump = qla2100_fw_dump;
  1198. ha->isp_ops.ascii_fw_dump = qla2100_ascii_fw_dump;
  1199. ha->isp_ops.read_optrom = qla2x00_read_optrom_data;
  1200. ha->isp_ops.write_optrom = qla2x00_write_optrom_data;
  1201. if (IS_QLA2100(ha)) {
  1202. host->max_id = MAX_TARGETS_2100;
  1203. ha->mbx_count = MAILBOX_REGISTER_COUNT_2100;
  1204. ha->request_q_length = REQUEST_ENTRY_CNT_2100;
  1205. ha->response_q_length = RESPONSE_ENTRY_CNT_2100;
  1206. ha->last_loop_id = SNS_LAST_LOOP_ID_2100;
  1207. host->sg_tablesize = 32;
  1208. ha->gid_list_info_size = 4;
  1209. } else if (IS_QLA2200(ha)) {
  1210. host->max_id = MAX_TARGETS_2200;
  1211. ha->mbx_count = MAILBOX_REGISTER_COUNT;
  1212. ha->request_q_length = REQUEST_ENTRY_CNT_2200;
  1213. ha->response_q_length = RESPONSE_ENTRY_CNT_2100;
  1214. ha->last_loop_id = SNS_LAST_LOOP_ID_2100;
  1215. ha->gid_list_info_size = 4;
  1216. } else if (IS_QLA23XX(ha)) {
  1217. host->max_id = MAX_TARGETS_2200;
  1218. ha->mbx_count = MAILBOX_REGISTER_COUNT;
  1219. ha->request_q_length = REQUEST_ENTRY_CNT_2200;
  1220. ha->response_q_length = RESPONSE_ENTRY_CNT_2300;
  1221. ha->last_loop_id = SNS_LAST_LOOP_ID_2300;
  1222. ha->isp_ops.pci_config = qla2300_pci_config;
  1223. ha->isp_ops.intr_handler = qla2300_intr_handler;
  1224. ha->isp_ops.fw_dump = qla2300_fw_dump;
  1225. ha->isp_ops.ascii_fw_dump = qla2300_ascii_fw_dump;
  1226. ha->isp_ops.beacon_on = qla2x00_beacon_on;
  1227. ha->isp_ops.beacon_off = qla2x00_beacon_off;
  1228. ha->isp_ops.beacon_blink = qla2x00_beacon_blink;
  1229. ha->gid_list_info_size = 6;
  1230. if (IS_QLA2322(ha) || IS_QLA6322(ha))
  1231. ha->optrom_size = OPTROM_SIZE_2322;
  1232. } else if (IS_QLA24XX(ha) || IS_QLA54XX(ha)) {
  1233. host->max_id = MAX_TARGETS_2200;
  1234. ha->mbx_count = MAILBOX_REGISTER_COUNT;
  1235. ha->request_q_length = REQUEST_ENTRY_CNT_24XX;
  1236. ha->response_q_length = RESPONSE_ENTRY_CNT_2300;
  1237. ha->last_loop_id = SNS_LAST_LOOP_ID_2300;
  1238. ha->init_cb_size = sizeof(struct init_cb_24xx);
  1239. ha->mgmt_svr_loop_id = 10;
  1240. ha->isp_ops.pci_config = qla24xx_pci_config;
  1241. ha->isp_ops.reset_chip = qla24xx_reset_chip;
  1242. ha->isp_ops.chip_diag = qla24xx_chip_diag;
  1243. ha->isp_ops.config_rings = qla24xx_config_rings;
  1244. ha->isp_ops.reset_adapter = qla24xx_reset_adapter;
  1245. ha->isp_ops.nvram_config = qla24xx_nvram_config;
  1246. ha->isp_ops.update_fw_options = qla24xx_update_fw_options;
  1247. ha->isp_ops.load_risc = qla24xx_load_risc;
  1248. #if defined(CONFIG_SCSI_QLA2XXX_EMBEDDED_FIRMWARE)
  1249. if (ql2xfwloadflash)
  1250. ha->isp_ops.load_risc = qla24xx_load_risc_flash;
  1251. #endif
  1252. ha->isp_ops.pci_info_str = qla24xx_pci_info_str;
  1253. ha->isp_ops.fw_version_str = qla24xx_fw_version_str;
  1254. ha->isp_ops.intr_handler = qla24xx_intr_handler;
  1255. ha->isp_ops.enable_intrs = qla24xx_enable_intrs;
  1256. ha->isp_ops.disable_intrs = qla24xx_disable_intrs;
  1257. ha->isp_ops.abort_command = qla24xx_abort_command;
  1258. ha->isp_ops.abort_target = qla24xx_abort_target;
  1259. ha->isp_ops.fabric_login = qla24xx_login_fabric;
  1260. ha->isp_ops.fabric_logout = qla24xx_fabric_logout;
  1261. ha->isp_ops.prep_ms_iocb = qla24xx_prep_ms_iocb;
  1262. ha->isp_ops.prep_ms_fdmi_iocb = qla24xx_prep_ms_fdmi_iocb;
  1263. ha->isp_ops.read_nvram = qla24xx_read_nvram_data;
  1264. ha->isp_ops.write_nvram = qla24xx_write_nvram_data;
  1265. ha->isp_ops.fw_dump = qla24xx_fw_dump;
  1266. ha->isp_ops.ascii_fw_dump = qla24xx_ascii_fw_dump;
  1267. ha->isp_ops.read_optrom = qla24xx_read_optrom_data;
  1268. ha->isp_ops.write_optrom = qla24xx_write_optrom_data;
  1269. ha->isp_ops.beacon_on = qla24xx_beacon_on;
  1270. ha->isp_ops.beacon_off = qla24xx_beacon_off;
  1271. ha->isp_ops.beacon_blink = qla24xx_beacon_blink;
  1272. ha->gid_list_info_size = 8;
  1273. ha->optrom_size = OPTROM_SIZE_24XX;
  1274. }
  1275. host->can_queue = ha->request_q_length + 128;
  1276. /* load the F/W, read paramaters, and init the H/W */
  1277. ha->instance = num_hosts;
  1278. init_MUTEX(&ha->mbx_cmd_sem);
  1279. init_MUTEX_LOCKED(&ha->mbx_intr_sem);
  1280. INIT_LIST_HEAD(&ha->list);
  1281. INIT_LIST_HEAD(&ha->fcports);
  1282. INIT_LIST_HEAD(&ha->rscn_fcports);
  1283. /*
  1284. * These locks are used to prevent more than one CPU
  1285. * from modifying the queue at the same time. The
  1286. * higher level "host_lock" will reduce most
  1287. * contention for these locks.
  1288. */
  1289. spin_lock_init(&ha->mbx_reg_lock);
  1290. qla2x00_config_dma_addressing(ha);
  1291. if (qla2x00_mem_alloc(ha)) {
  1292. qla_printk(KERN_WARNING, ha,
  1293. "[ERROR] Failed to allocate memory for adapter\n");
  1294. ret = -ENOMEM;
  1295. goto probe_failed;
  1296. }
  1297. if (qla2x00_initialize_adapter(ha) &&
  1298. !(ha->device_flags & DFLG_NO_CABLE)) {
  1299. qla_printk(KERN_WARNING, ha,
  1300. "Failed to initialize adapter\n");
  1301. DEBUG2(printk("scsi(%ld): Failed to initialize adapter - "
  1302. "Adapter flags %x.\n",
  1303. ha->host_no, ha->device_flags));
  1304. ret = -ENODEV;
  1305. goto probe_failed;
  1306. }
  1307. /*
  1308. * Startup the kernel thread for this host adapter
  1309. */
  1310. ha->dpc_thread = kthread_create(qla2x00_do_dpc, ha,
  1311. "%s_dpc", ha->host_str);
  1312. if (IS_ERR(ha->dpc_thread)) {
  1313. qla_printk(KERN_WARNING, ha,
  1314. "Unable to start DPC thread!\n");
  1315. ret = PTR_ERR(ha->dpc_thread);
  1316. goto probe_failed;
  1317. }
  1318. host->this_id = 255;
  1319. host->cmd_per_lun = 3;
  1320. host->unique_id = ha->instance;
  1321. host->max_cmd_len = MAX_CMDSZ;
  1322. host->max_channel = ha->ports - 1;
  1323. host->max_lun = MAX_LUNS;
  1324. host->transportt = qla2xxx_transport_template;
  1325. ret = request_irq(pdev->irq, ha->isp_ops.intr_handler,
  1326. SA_INTERRUPT|SA_SHIRQ, ha->brd_info->drv_name, ha);
  1327. if (ret) {
  1328. qla_printk(KERN_WARNING, ha,
  1329. "Failed to reserve interrupt %d already in use.\n",
  1330. pdev->irq);
  1331. goto probe_failed;
  1332. }
  1333. host->irq = pdev->irq;
  1334. /* Initialized the timer */
  1335. qla2x00_start_timer(ha, qla2x00_timer, WATCH_INTERVAL);
  1336. DEBUG2(printk("DEBUG: detect hba %ld at address = %p\n",
  1337. ha->host_no, ha));
  1338. ha->isp_ops.disable_intrs(ha);
  1339. spin_lock_irqsave(&ha->hardware_lock, flags);
  1340. reg = ha->iobase;
  1341. if (IS_QLA24XX(ha) || IS_QLA54XX(ha)) {
  1342. WRT_REG_DWORD(&reg->isp24.hccr, HCCRX_CLR_HOST_INT);
  1343. WRT_REG_DWORD(&reg->isp24.hccr, HCCRX_CLR_RISC_INT);
  1344. } else {
  1345. WRT_REG_WORD(&reg->isp.semaphore, 0);
  1346. WRT_REG_WORD(&reg->isp.hccr, HCCR_CLR_RISC_INT);
  1347. WRT_REG_WORD(&reg->isp.hccr, HCCR_CLR_HOST_INT);
  1348. /* Enable proper parity */
  1349. if (!IS_QLA2100(ha) && !IS_QLA2200(ha)) {
  1350. if (IS_QLA2300(ha))
  1351. /* SRAM parity */
  1352. WRT_REG_WORD(&reg->isp.hccr,
  1353. (HCCR_ENABLE_PARITY + 0x1));
  1354. else
  1355. /* SRAM, Instruction RAM and GP RAM parity */
  1356. WRT_REG_WORD(&reg->isp.hccr,
  1357. (HCCR_ENABLE_PARITY + 0x7));
  1358. }
  1359. }
  1360. spin_unlock_irqrestore(&ha->hardware_lock, flags);
  1361. ha->isp_ops.enable_intrs(ha);
  1362. /* v2.19.5b6 */
  1363. /*
  1364. * Wait around max loop_reset_delay secs for the devices to come
  1365. * on-line. We don't want Linux scanning before we are ready.
  1366. *
  1367. */
  1368. for (wait_switch = jiffies + (ha->loop_reset_delay * HZ);
  1369. time_before(jiffies,wait_switch) &&
  1370. !(ha->device_flags & (DFLG_NO_CABLE | DFLG_FABRIC_DEVICES))
  1371. && (ha->device_flags & SWITCH_FOUND) ;) {
  1372. qla2x00_check_fabric_devices(ha);
  1373. msleep(10);
  1374. }
  1375. pci_set_drvdata(pdev, ha);
  1376. ha->flags.init_done = 1;
  1377. num_hosts++;
  1378. ret = scsi_add_host(host, &pdev->dev);
  1379. if (ret)
  1380. goto probe_failed;
  1381. qla2x00_alloc_sysfs_attr(ha);
  1382. qla2x00_init_host_attr(ha);
  1383. qla_printk(KERN_INFO, ha, "\n"
  1384. " QLogic Fibre Channel HBA Driver: %s\n"
  1385. " QLogic %s - %s\n"
  1386. " ISP%04X: %s @ %s hdma%c, host#=%ld, fw=%s\n",
  1387. qla2x00_version_str, ha->model_number,
  1388. ha->model_desc ? ha->model_desc: "", pdev->device,
  1389. ha->isp_ops.pci_info_str(ha, pci_info), pci_name(pdev),
  1390. ha->flags.enable_64bit_addressing ? '+': '-', ha->host_no,
  1391. ha->isp_ops.fw_version_str(ha, fw_str));
  1392. /* Go with fc_rport registration. */
  1393. list_for_each_entry(fcport, &ha->fcports, list)
  1394. qla2x00_reg_remote_port(ha, fcport);
  1395. return 0;
  1396. probe_failed:
  1397. qla2x00_free_device(ha);
  1398. scsi_host_put(host);
  1399. probe_disable_device:
  1400. pci_disable_device(pdev);
  1401. probe_out:
  1402. return ret;
  1403. }
  1404. EXPORT_SYMBOL_GPL(qla2x00_probe_one);
  1405. void qla2x00_remove_one(struct pci_dev *pdev)
  1406. {
  1407. scsi_qla_host_t *ha;
  1408. ha = pci_get_drvdata(pdev);
  1409. qla2x00_free_sysfs_attr(ha);
  1410. fc_remove_host(ha->host);
  1411. scsi_remove_host(ha->host);
  1412. qla2x00_free_device(ha);
  1413. scsi_host_put(ha->host);
  1414. pci_set_drvdata(pdev, NULL);
  1415. }
  1416. EXPORT_SYMBOL_GPL(qla2x00_remove_one);
  1417. static void
  1418. qla2x00_free_device(scsi_qla_host_t *ha)
  1419. {
  1420. /* Abort any outstanding IO descriptors. */
  1421. if (!IS_QLA2100(ha) && !IS_QLA2200(ha))
  1422. qla2x00_cancel_io_descriptors(ha);
  1423. /* Disable timer */
  1424. if (ha->timer_active)
  1425. qla2x00_stop_timer(ha);
  1426. /* Kill the kernel thread for this host */
  1427. if (ha->dpc_thread) {
  1428. struct task_struct *t = ha->dpc_thread;
  1429. /*
  1430. * qla2xxx_wake_dpc checks for ->dpc_thread
  1431. * so we need to zero it out.
  1432. */
  1433. ha->dpc_thread = NULL;
  1434. kthread_stop(t);
  1435. }
  1436. /* Stop currently executing firmware. */
  1437. qla2x00_stop_firmware(ha);
  1438. /* turn-off interrupts on the card */
  1439. if (ha->interrupts_on)
  1440. ha->isp_ops.disable_intrs(ha);
  1441. qla2x00_mem_free(ha);
  1442. ha->flags.online = 0;
  1443. /* Detach interrupts */
  1444. if (ha->pdev->irq)
  1445. free_irq(ha->pdev->irq, ha);
  1446. /* release io space registers */
  1447. if (ha->iobase)
  1448. iounmap(ha->iobase);
  1449. pci_release_regions(ha->pdev);
  1450. pci_disable_device(ha->pdev);
  1451. }
  1452. static inline void
  1453. qla2x00_schedule_rport_del(struct scsi_qla_host *ha, fc_port_t *fcport,
  1454. int defer)
  1455. {
  1456. unsigned long flags;
  1457. struct fc_rport *rport;
  1458. if (!fcport->rport)
  1459. return;
  1460. rport = fcport->rport;
  1461. if (defer) {
  1462. spin_lock_irqsave(&fcport->rport_lock, flags);
  1463. fcport->drport = rport;
  1464. fcport->rport = NULL;
  1465. *(fc_port_t **)rport->dd_data = NULL;
  1466. spin_unlock_irqrestore(&fcport->rport_lock, flags);
  1467. set_bit(FCPORT_UPDATE_NEEDED, &ha->dpc_flags);
  1468. } else {
  1469. spin_lock_irqsave(&fcport->rport_lock, flags);
  1470. fcport->rport = NULL;
  1471. *(fc_port_t **)rport->dd_data = NULL;
  1472. spin_unlock_irqrestore(&fcport->rport_lock, flags);
  1473. fc_remote_port_delete(rport);
  1474. }
  1475. }
  1476. /*
  1477. * qla2x00_mark_device_lost Updates fcport state when device goes offline.
  1478. *
  1479. * Input: ha = adapter block pointer. fcport = port structure pointer.
  1480. *
  1481. * Return: None.
  1482. *
  1483. * Context:
  1484. */
  1485. void qla2x00_mark_device_lost(scsi_qla_host_t *ha, fc_port_t *fcport,
  1486. int do_login, int defer)
  1487. {
  1488. if (atomic_read(&fcport->state) == FCS_ONLINE)
  1489. qla2x00_schedule_rport_del(ha, fcport, defer);
  1490. /*
  1491. * We may need to retry the login, so don't change the state of the
  1492. * port but do the retries.
  1493. */
  1494. if (atomic_read(&fcport->state) != FCS_DEVICE_DEAD)
  1495. atomic_set(&fcport->state, FCS_DEVICE_LOST);
  1496. if (!do_login)
  1497. return;
  1498. if (fcport->login_retry == 0) {
  1499. fcport->login_retry = ha->login_retry_count;
  1500. set_bit(RELOGIN_NEEDED, &ha->dpc_flags);
  1501. DEBUG(printk("scsi(%ld): Port login retry: "
  1502. "%02x%02x%02x%02x%02x%02x%02x%02x, "
  1503. "id = 0x%04x retry cnt=%d\n",
  1504. ha->host_no,
  1505. fcport->port_name[0],
  1506. fcport->port_name[1],
  1507. fcport->port_name[2],
  1508. fcport->port_name[3],
  1509. fcport->port_name[4],
  1510. fcport->port_name[5],
  1511. fcport->port_name[6],
  1512. fcport->port_name[7],
  1513. fcport->loop_id,
  1514. fcport->login_retry));
  1515. }
  1516. }
  1517. /*
  1518. * qla2x00_mark_all_devices_lost
  1519. * Updates fcport state when device goes offline.
  1520. *
  1521. * Input:
  1522. * ha = adapter block pointer.
  1523. * fcport = port structure pointer.
  1524. *
  1525. * Return:
  1526. * None.
  1527. *
  1528. * Context:
  1529. */
  1530. void
  1531. qla2x00_mark_all_devices_lost(scsi_qla_host_t *ha, int defer)
  1532. {
  1533. fc_port_t *fcport;
  1534. list_for_each_entry(fcport, &ha->fcports, list) {
  1535. if (fcport->port_type != FCT_TARGET)
  1536. continue;
  1537. /*
  1538. * No point in marking the device as lost, if the device is
  1539. * already DEAD.
  1540. */
  1541. if (atomic_read(&fcport->state) == FCS_DEVICE_DEAD)
  1542. continue;
  1543. if (atomic_read(&fcport->state) == FCS_ONLINE)
  1544. qla2x00_schedule_rport_del(ha, fcport, defer);
  1545. atomic_set(&fcport->state, FCS_DEVICE_LOST);
  1546. }
  1547. if (defer)
  1548. qla2xxx_wake_dpc(ha);
  1549. }
  1550. /*
  1551. * qla2x00_mem_alloc
  1552. * Allocates adapter memory.
  1553. *
  1554. * Returns:
  1555. * 0 = success.
  1556. * 1 = failure.
  1557. */
  1558. static uint8_t
  1559. qla2x00_mem_alloc(scsi_qla_host_t *ha)
  1560. {
  1561. char name[16];
  1562. uint8_t status = 1;
  1563. int retry= 10;
  1564. do {
  1565. /*
  1566. * This will loop only once if everything goes well, else some
  1567. * number of retries will be performed to get around a kernel
  1568. * bug where available mem is not allocated until after a
  1569. * little delay and a retry.
  1570. */
  1571. ha->request_ring = dma_alloc_coherent(&ha->pdev->dev,
  1572. (ha->request_q_length + 1) * sizeof(request_t),
  1573. &ha->request_dma, GFP_KERNEL);
  1574. if (ha->request_ring == NULL) {
  1575. qla_printk(KERN_WARNING, ha,
  1576. "Memory Allocation failed - request_ring\n");
  1577. qla2x00_mem_free(ha);
  1578. msleep(100);
  1579. continue;
  1580. }
  1581. ha->response_ring = dma_alloc_coherent(&ha->pdev->dev,
  1582. (ha->response_q_length + 1) * sizeof(response_t),
  1583. &ha->response_dma, GFP_KERNEL);
  1584. if (ha->response_ring == NULL) {
  1585. qla_printk(KERN_WARNING, ha,
  1586. "Memory Allocation failed - response_ring\n");
  1587. qla2x00_mem_free(ha);
  1588. msleep(100);
  1589. continue;
  1590. }
  1591. ha->gid_list = dma_alloc_coherent(&ha->pdev->dev, GID_LIST_SIZE,
  1592. &ha->gid_list_dma, GFP_KERNEL);
  1593. if (ha->gid_list == NULL) {
  1594. qla_printk(KERN_WARNING, ha,
  1595. "Memory Allocation failed - gid_list\n");
  1596. qla2x00_mem_free(ha);
  1597. msleep(100);
  1598. continue;
  1599. }
  1600. ha->rlc_rsp = dma_alloc_coherent(&ha->pdev->dev,
  1601. sizeof(rpt_lun_cmd_rsp_t), &ha->rlc_rsp_dma, GFP_KERNEL);
  1602. if (ha->rlc_rsp == NULL) {
  1603. qla_printk(KERN_WARNING, ha,
  1604. "Memory Allocation failed - rlc");
  1605. qla2x00_mem_free(ha);
  1606. msleep(100);
  1607. continue;
  1608. }
  1609. snprintf(name, sizeof(name), "qla2xxx_%ld", ha->host_no);
  1610. ha->s_dma_pool = dma_pool_create(name, &ha->pdev->dev,
  1611. DMA_POOL_SIZE, 8, 0);
  1612. if (ha->s_dma_pool == NULL) {
  1613. qla_printk(KERN_WARNING, ha,
  1614. "Memory Allocation failed - s_dma_pool\n");
  1615. qla2x00_mem_free(ha);
  1616. msleep(100);
  1617. continue;
  1618. }
  1619. /* get consistent memory allocated for init control block */
  1620. ha->init_cb = dma_pool_alloc(ha->s_dma_pool, GFP_KERNEL,
  1621. &ha->init_cb_dma);
  1622. if (ha->init_cb == NULL) {
  1623. qla_printk(KERN_WARNING, ha,
  1624. "Memory Allocation failed - init_cb\n");
  1625. qla2x00_mem_free(ha);
  1626. msleep(100);
  1627. continue;
  1628. }
  1629. memset(ha->init_cb, 0, ha->init_cb_size);
  1630. /* Get consistent memory allocated for Get Port Database cmd */
  1631. ha->iodesc_pd = dma_pool_alloc(ha->s_dma_pool, GFP_KERNEL,
  1632. &ha->iodesc_pd_dma);
  1633. if (ha->iodesc_pd == NULL) {
  1634. /* error */
  1635. qla_printk(KERN_WARNING, ha,
  1636. "Memory Allocation failed - iodesc_pd\n");
  1637. qla2x00_mem_free(ha);
  1638. msleep(100);
  1639. continue;
  1640. }
  1641. memset(ha->iodesc_pd, 0, PORT_DATABASE_SIZE);
  1642. /* Allocate ioctl related memory. */
  1643. if (qla2x00_alloc_ioctl_mem(ha)) {
  1644. qla_printk(KERN_WARNING, ha,
  1645. "Memory Allocation failed - ioctl_mem\n");
  1646. qla2x00_mem_free(ha);
  1647. msleep(100);
  1648. continue;
  1649. }
  1650. if (qla2x00_allocate_sp_pool(ha)) {
  1651. qla_printk(KERN_WARNING, ha,
  1652. "Memory Allocation failed - "
  1653. "qla2x00_allocate_sp_pool()\n");
  1654. qla2x00_mem_free(ha);
  1655. msleep(100);
  1656. continue;
  1657. }
  1658. /* Allocate memory for SNS commands */
  1659. if (IS_QLA2100(ha) || IS_QLA2200(ha)) {
  1660. /* Get consistent memory allocated for SNS commands */
  1661. ha->sns_cmd = dma_alloc_coherent(&ha->pdev->dev,
  1662. sizeof(struct sns_cmd_pkt), &ha->sns_cmd_dma,
  1663. GFP_KERNEL);
  1664. if (ha->sns_cmd == NULL) {
  1665. /* error */
  1666. qla_printk(KERN_WARNING, ha,
  1667. "Memory Allocation failed - sns_cmd\n");
  1668. qla2x00_mem_free(ha);
  1669. msleep(100);
  1670. continue;
  1671. }
  1672. memset(ha->sns_cmd, 0, sizeof(struct sns_cmd_pkt));
  1673. } else {
  1674. /* Get consistent memory allocated for MS IOCB */
  1675. ha->ms_iocb = dma_pool_alloc(ha->s_dma_pool, GFP_KERNEL,
  1676. &ha->ms_iocb_dma);
  1677. if (ha->ms_iocb == NULL) {
  1678. /* error */
  1679. qla_printk(KERN_WARNING, ha,
  1680. "Memory Allocation failed - ms_iocb\n");
  1681. qla2x00_mem_free(ha);
  1682. msleep(100);
  1683. continue;
  1684. }
  1685. memset(ha->ms_iocb, 0, sizeof(ms_iocb_entry_t));
  1686. /*
  1687. * Get consistent memory allocated for CT SNS
  1688. * commands
  1689. */
  1690. ha->ct_sns = dma_alloc_coherent(&ha->pdev->dev,
  1691. sizeof(struct ct_sns_pkt), &ha->ct_sns_dma,
  1692. GFP_KERNEL);
  1693. if (ha->ct_sns == NULL) {
  1694. /* error */
  1695. qla_printk(KERN_WARNING, ha,
  1696. "Memory Allocation failed - ct_sns\n");
  1697. qla2x00_mem_free(ha);
  1698. msleep(100);
  1699. continue;
  1700. }
  1701. memset(ha->ct_sns, 0, sizeof(struct ct_sns_pkt));
  1702. }
  1703. /* Done all allocations without any error. */
  1704. status = 0;
  1705. } while (retry-- && status != 0);
  1706. if (status) {
  1707. printk(KERN_WARNING
  1708. "%s(): **** FAILED ****\n", __func__);
  1709. }
  1710. return(status);
  1711. }
  1712. /*
  1713. * qla2x00_mem_free
  1714. * Frees all adapter allocated memory.
  1715. *
  1716. * Input:
  1717. * ha = adapter block pointer.
  1718. */
  1719. static void
  1720. qla2x00_mem_free(scsi_qla_host_t *ha)
  1721. {
  1722. struct list_head *fcpl, *fcptemp;
  1723. fc_port_t *fcport;
  1724. if (ha == NULL) {
  1725. /* error */
  1726. DEBUG2(printk("%s(): ERROR invalid ha pointer.\n", __func__));
  1727. return;
  1728. }
  1729. /* free ioctl memory */
  1730. qla2x00_free_ioctl_mem(ha);
  1731. /* free sp pool */
  1732. qla2x00_free_sp_pool(ha);
  1733. if (ha->sns_cmd)
  1734. dma_free_coherent(&ha->pdev->dev, sizeof(struct sns_cmd_pkt),
  1735. ha->sns_cmd, ha->sns_cmd_dma);
  1736. if (ha->ct_sns)
  1737. dma_free_coherent(&ha->pdev->dev, sizeof(struct ct_sns_pkt),
  1738. ha->ct_sns, ha->ct_sns_dma);
  1739. if (ha->ms_iocb)
  1740. dma_pool_free(ha->s_dma_pool, ha->ms_iocb, ha->ms_iocb_dma);
  1741. if (ha->iodesc_pd)
  1742. dma_pool_free(ha->s_dma_pool, ha->iodesc_pd, ha->iodesc_pd_dma);
  1743. if (ha->init_cb)
  1744. dma_pool_free(ha->s_dma_pool, ha->init_cb, ha->init_cb_dma);
  1745. if (ha->s_dma_pool)
  1746. dma_pool_destroy(ha->s_dma_pool);
  1747. if (ha->rlc_rsp)
  1748. dma_free_coherent(&ha->pdev->dev,
  1749. sizeof(rpt_lun_cmd_rsp_t), ha->rlc_rsp,
  1750. ha->rlc_rsp_dma);
  1751. if (ha->gid_list)
  1752. dma_free_coherent(&ha->pdev->dev, GID_LIST_SIZE, ha->gid_list,
  1753. ha->gid_list_dma);
  1754. if (ha->response_ring)
  1755. dma_free_coherent(&ha->pdev->dev,
  1756. (ha->response_q_length + 1) * sizeof(response_t),
  1757. ha->response_ring, ha->response_dma);
  1758. if (ha->request_ring)
  1759. dma_free_coherent(&ha->pdev->dev,
  1760. (ha->request_q_length + 1) * sizeof(request_t),
  1761. ha->request_ring, ha->request_dma);
  1762. ha->sns_cmd = NULL;
  1763. ha->sns_cmd_dma = 0;
  1764. ha->ct_sns = NULL;
  1765. ha->ct_sns_dma = 0;
  1766. ha->ms_iocb = NULL;
  1767. ha->ms_iocb_dma = 0;
  1768. ha->iodesc_pd = NULL;
  1769. ha->iodesc_pd_dma = 0;
  1770. ha->init_cb = NULL;
  1771. ha->init_cb_dma = 0;
  1772. ha->s_dma_pool = NULL;
  1773. ha->rlc_rsp = NULL;
  1774. ha->rlc_rsp_dma = 0;
  1775. ha->gid_list = NULL;
  1776. ha->gid_list_dma = 0;
  1777. ha->response_ring = NULL;
  1778. ha->response_dma = 0;
  1779. ha->request_ring = NULL;
  1780. ha->request_dma = 0;
  1781. list_for_each_safe(fcpl, fcptemp, &ha->fcports) {
  1782. fcport = list_entry(fcpl, fc_port_t, list);
  1783. /* fc ports */
  1784. list_del_init(&fcport->list);
  1785. kfree(fcport);
  1786. }
  1787. INIT_LIST_HEAD(&ha->fcports);
  1788. if (ha->fw_dump)
  1789. free_pages((unsigned long)ha->fw_dump, ha->fw_dump_order);
  1790. vfree(ha->fw_dump24);
  1791. vfree(ha->fw_dump_buffer);
  1792. ha->fw_dump = NULL;
  1793. ha->fw_dump24 = NULL;
  1794. ha->fw_dumped = 0;
  1795. ha->fw_dump_reading = 0;
  1796. ha->fw_dump_buffer = NULL;
  1797. vfree(ha->optrom_buffer);
  1798. }
  1799. /*
  1800. * qla2x00_allocate_sp_pool
  1801. * This routine is called during initialization to allocate
  1802. * memory for local srb_t.
  1803. *
  1804. * Input:
  1805. * ha = adapter block pointer.
  1806. *
  1807. * Context:
  1808. * Kernel context.
  1809. *
  1810. * Note: Sets the ref_count for non Null sp to one.
  1811. */
  1812. static int
  1813. qla2x00_allocate_sp_pool(scsi_qla_host_t *ha)
  1814. {
  1815. int rval;
  1816. rval = QLA_SUCCESS;
  1817. ha->srb_mempool = mempool_create_slab_pool(SRB_MIN_REQ, srb_cachep);
  1818. if (ha->srb_mempool == NULL) {
  1819. qla_printk(KERN_INFO, ha, "Unable to allocate SRB mempool.\n");
  1820. rval = QLA_FUNCTION_FAILED;
  1821. }
  1822. return (rval);
  1823. }
  1824. /*
  1825. * This routine frees all adapter allocated memory.
  1826. *
  1827. */
  1828. static void
  1829. qla2x00_free_sp_pool( scsi_qla_host_t *ha)
  1830. {
  1831. if (ha->srb_mempool) {
  1832. mempool_destroy(ha->srb_mempool);
  1833. ha->srb_mempool = NULL;
  1834. }
  1835. }
  1836. /**************************************************************************
  1837. * qla2x00_do_dpc
  1838. * This kernel thread is a task that is schedule by the interrupt handler
  1839. * to perform the background processing for interrupts.
  1840. *
  1841. * Notes:
  1842. * This task always run in the context of a kernel thread. It
  1843. * is kick-off by the driver's detect code and starts up
  1844. * up one per adapter. It immediately goes to sleep and waits for
  1845. * some fibre event. When either the interrupt handler or
  1846. * the timer routine detects a event it will one of the task
  1847. * bits then wake us up.
  1848. **************************************************************************/
  1849. static int
  1850. qla2x00_do_dpc(void *data)
  1851. {
  1852. scsi_qla_host_t *ha;
  1853. fc_port_t *fcport;
  1854. uint8_t status;
  1855. uint16_t next_loopid;
  1856. ha = (scsi_qla_host_t *)data;
  1857. set_user_nice(current, -20);
  1858. while (!kthread_should_stop()) {
  1859. DEBUG3(printk("qla2x00: DPC handler sleeping\n"));
  1860. set_current_state(TASK_INTERRUPTIBLE);
  1861. schedule();
  1862. __set_current_state(TASK_RUNNING);
  1863. DEBUG3(printk("qla2x00: DPC handler waking up\n"));
  1864. /* Initialization not yet finished. Don't do anything yet. */
  1865. if (!ha->flags.init_done)
  1866. continue;
  1867. DEBUG3(printk("scsi(%ld): DPC handler\n", ha->host_no));
  1868. ha->dpc_active = 1;
  1869. if (ha->flags.mbox_busy) {
  1870. ha->dpc_active = 0;
  1871. continue;
  1872. }
  1873. if (test_and_clear_bit(ISP_ABORT_NEEDED, &ha->dpc_flags)) {
  1874. DEBUG(printk("scsi(%ld): dpc: sched "
  1875. "qla2x00_abort_isp ha = %p\n",
  1876. ha->host_no, ha));
  1877. if (!(test_and_set_bit(ABORT_ISP_ACTIVE,
  1878. &ha->dpc_flags))) {
  1879. if (qla2x00_abort_isp(ha)) {
  1880. /* failed. retry later */
  1881. set_bit(ISP_ABORT_NEEDED,
  1882. &ha->dpc_flags);
  1883. }
  1884. clear_bit(ABORT_ISP_ACTIVE, &ha->dpc_flags);
  1885. }
  1886. DEBUG(printk("scsi(%ld): dpc: qla2x00_abort_isp end\n",
  1887. ha->host_no));
  1888. }
  1889. if (test_and_clear_bit(FCPORT_UPDATE_NEEDED, &ha->dpc_flags))
  1890. qla2x00_update_fcports(ha);
  1891. if (test_and_clear_bit(LOOP_RESET_NEEDED, &ha->dpc_flags)) {
  1892. DEBUG(printk("scsi(%ld): dpc: sched loop_reset()\n",
  1893. ha->host_no));
  1894. qla2x00_loop_reset(ha);
  1895. }
  1896. if (test_and_clear_bit(RESET_MARKER_NEEDED, &ha->dpc_flags) &&
  1897. (!(test_and_set_bit(RESET_ACTIVE, &ha->dpc_flags)))) {
  1898. DEBUG(printk("scsi(%ld): qla2x00_reset_marker()\n",
  1899. ha->host_no));
  1900. qla2x00_rst_aen(ha);
  1901. clear_bit(RESET_ACTIVE, &ha->dpc_flags);
  1902. }
  1903. /* Retry each device up to login retry count */
  1904. if ((test_and_clear_bit(RELOGIN_NEEDED, &ha->dpc_flags)) &&
  1905. !test_bit(LOOP_RESYNC_NEEDED, &ha->dpc_flags) &&
  1906. atomic_read(&ha->loop_state) != LOOP_DOWN) {
  1907. DEBUG(printk("scsi(%ld): qla2x00_port_login()\n",
  1908. ha->host_no));
  1909. next_loopid = 0;
  1910. list_for_each_entry(fcport, &ha->fcports, list) {
  1911. if (fcport->port_type != FCT_TARGET)
  1912. continue;
  1913. /*
  1914. * If the port is not ONLINE then try to login
  1915. * to it if we haven't run out of retries.
  1916. */
  1917. if (atomic_read(&fcport->state) != FCS_ONLINE &&
  1918. fcport->login_retry) {
  1919. fcport->login_retry--;
  1920. if (fcport->flags & FCF_FABRIC_DEVICE) {
  1921. if (fcport->flags &
  1922. FCF_TAPE_PRESENT)
  1923. ha->isp_ops.fabric_logout(
  1924. ha, fcport->loop_id,
  1925. fcport->d_id.b.domain,
  1926. fcport->d_id.b.area,
  1927. fcport->d_id.b.al_pa);
  1928. status = qla2x00_fabric_login(
  1929. ha, fcport, &next_loopid);
  1930. } else
  1931. status =
  1932. qla2x00_local_device_login(
  1933. ha, fcport);
  1934. if (status == QLA_SUCCESS) {
  1935. fcport->old_loop_id = fcport->loop_id;
  1936. DEBUG(printk("scsi(%ld): port login OK: logged in ID 0x%x\n",
  1937. ha->host_no, fcport->loop_id));
  1938. qla2x00_update_fcport(ha,
  1939. fcport);
  1940. } else if (status == 1) {
  1941. set_bit(RELOGIN_NEEDED, &ha->dpc_flags);
  1942. /* retry the login again */
  1943. DEBUG(printk("scsi(%ld): Retrying %d login again loop_id 0x%x\n",
  1944. ha->host_no,
  1945. fcport->login_retry, fcport->loop_id));
  1946. } else {
  1947. fcport->login_retry = 0;
  1948. }
  1949. }
  1950. if (test_bit(LOOP_RESYNC_NEEDED, &ha->dpc_flags))
  1951. break;
  1952. }
  1953. DEBUG(printk("scsi(%ld): qla2x00_port_login - end\n",
  1954. ha->host_no));
  1955. }
  1956. if ((test_bit(LOGIN_RETRY_NEEDED, &ha->dpc_flags)) &&
  1957. atomic_read(&ha->loop_state) != LOOP_DOWN) {
  1958. clear_bit(LOGIN_RETRY_NEEDED, &ha->dpc_flags);
  1959. DEBUG(printk("scsi(%ld): qla2x00_login_retry()\n",
  1960. ha->host_no));
  1961. set_bit(LOOP_RESYNC_NEEDED, &ha->dpc_flags);
  1962. DEBUG(printk("scsi(%ld): qla2x00_login_retry - end\n",
  1963. ha->host_no));
  1964. }
  1965. if (test_and_clear_bit(LOOP_RESYNC_NEEDED, &ha->dpc_flags)) {
  1966. DEBUG(printk("scsi(%ld): qla2x00_loop_resync()\n",
  1967. ha->host_no));
  1968. if (!(test_and_set_bit(LOOP_RESYNC_ACTIVE,
  1969. &ha->dpc_flags))) {
  1970. qla2x00_loop_resync(ha);
  1971. clear_bit(LOOP_RESYNC_ACTIVE, &ha->dpc_flags);
  1972. }
  1973. DEBUG(printk("scsi(%ld): qla2x00_loop_resync - end\n",
  1974. ha->host_no));
  1975. }
  1976. if (test_and_clear_bit(FCPORT_RESCAN_NEEDED, &ha->dpc_flags)) {
  1977. DEBUG(printk("scsi(%ld): Rescan flagged fcports...\n",
  1978. ha->host_no));
  1979. qla2x00_rescan_fcports(ha);
  1980. DEBUG(printk("scsi(%ld): Rescan flagged fcports..."
  1981. "end.\n",
  1982. ha->host_no));
  1983. }
  1984. if (!ha->interrupts_on)
  1985. ha->isp_ops.enable_intrs(ha);
  1986. if (test_and_clear_bit(BEACON_BLINK_NEEDED, &ha->dpc_flags))
  1987. ha->isp_ops.beacon_blink(ha);
  1988. ha->dpc_active = 0;
  1989. } /* End of while(1) */
  1990. DEBUG(printk("scsi(%ld): DPC handler exiting\n", ha->host_no));
  1991. /*
  1992. * Make sure that nobody tries to wake us up again.
  1993. */
  1994. ha->dpc_active = 0;
  1995. return 0;
  1996. }
  1997. void
  1998. qla2xxx_wake_dpc(scsi_qla_host_t *ha)
  1999. {
  2000. if (ha->dpc_thread)
  2001. wake_up_process(ha->dpc_thread);
  2002. }
  2003. /*
  2004. * qla2x00_rst_aen
  2005. * Processes asynchronous reset.
  2006. *
  2007. * Input:
  2008. * ha = adapter block pointer.
  2009. */
  2010. static void
  2011. qla2x00_rst_aen(scsi_qla_host_t *ha)
  2012. {
  2013. if (ha->flags.online && !ha->flags.reset_active &&
  2014. !atomic_read(&ha->loop_down_timer) &&
  2015. !(test_bit(ABORT_ISP_ACTIVE, &ha->dpc_flags))) {
  2016. do {
  2017. clear_bit(RESET_MARKER_NEEDED, &ha->dpc_flags);
  2018. /*
  2019. * Issue marker command only when we are going to start
  2020. * the I/O.
  2021. */
  2022. ha->marker_needed = 1;
  2023. } while (!atomic_read(&ha->loop_down_timer) &&
  2024. (test_bit(RESET_MARKER_NEEDED, &ha->dpc_flags)));
  2025. }
  2026. }
  2027. static void
  2028. qla2x00_sp_free_dma(scsi_qla_host_t *ha, srb_t *sp)
  2029. {
  2030. struct scsi_cmnd *cmd = sp->cmd;
  2031. if (sp->flags & SRB_DMA_VALID) {
  2032. if (cmd->use_sg) {
  2033. dma_unmap_sg(&ha->pdev->dev, cmd->request_buffer,
  2034. cmd->use_sg, cmd->sc_data_direction);
  2035. } else if (cmd->request_bufflen) {
  2036. dma_unmap_single(&ha->pdev->dev, sp->dma_handle,
  2037. cmd->request_bufflen, cmd->sc_data_direction);
  2038. }
  2039. sp->flags &= ~SRB_DMA_VALID;
  2040. }
  2041. CMD_SP(cmd) = NULL;
  2042. }
  2043. void
  2044. qla2x00_sp_compl(scsi_qla_host_t *ha, srb_t *sp)
  2045. {
  2046. struct scsi_cmnd *cmd = sp->cmd;
  2047. qla2x00_sp_free_dma(ha, sp);
  2048. mempool_free(sp, ha->srb_mempool);
  2049. cmd->scsi_done(cmd);
  2050. }
  2051. /**************************************************************************
  2052. * qla2x00_timer
  2053. *
  2054. * Description:
  2055. * One second timer
  2056. *
  2057. * Context: Interrupt
  2058. ***************************************************************************/
  2059. static void
  2060. qla2x00_timer(scsi_qla_host_t *ha)
  2061. {
  2062. unsigned long cpu_flags = 0;
  2063. fc_port_t *fcport;
  2064. int start_dpc = 0;
  2065. int index;
  2066. srb_t *sp;
  2067. int t;
  2068. /*
  2069. * Ports - Port down timer.
  2070. *
  2071. * Whenever, a port is in the LOST state we start decrementing its port
  2072. * down timer every second until it reaches zero. Once it reaches zero
  2073. * the port it marked DEAD.
  2074. */
  2075. t = 0;
  2076. list_for_each_entry(fcport, &ha->fcports, list) {
  2077. if (fcport->port_type != FCT_TARGET)
  2078. continue;
  2079. if (atomic_read(&fcport->state) == FCS_DEVICE_LOST) {
  2080. if (atomic_read(&fcport->port_down_timer) == 0)
  2081. continue;
  2082. if (atomic_dec_and_test(&fcport->port_down_timer) != 0)
  2083. atomic_set(&fcport->state, FCS_DEVICE_DEAD);
  2084. DEBUG(printk("scsi(%ld): fcport-%d - port retry count: "
  2085. "%d remaining\n",
  2086. ha->host_no,
  2087. t, atomic_read(&fcport->port_down_timer)));
  2088. }
  2089. t++;
  2090. } /* End of for fcport */
  2091. /* Loop down handler. */
  2092. if (atomic_read(&ha->loop_down_timer) > 0 &&
  2093. !(test_bit(ABORT_ISP_ACTIVE, &ha->dpc_flags)) && ha->flags.online) {
  2094. if (atomic_read(&ha->loop_down_timer) ==
  2095. ha->loop_down_abort_time) {
  2096. DEBUG(printk("scsi(%ld): Loop Down - aborting the "
  2097. "queues before time expire\n",
  2098. ha->host_no));
  2099. if (!IS_QLA2100(ha) && ha->link_down_timeout)
  2100. atomic_set(&ha->loop_state, LOOP_DEAD);
  2101. /* Schedule an ISP abort to return any tape commands. */
  2102. spin_lock_irqsave(&ha->hardware_lock, cpu_flags);
  2103. for (index = 1; index < MAX_OUTSTANDING_COMMANDS;
  2104. index++) {
  2105. fc_port_t *sfcp;
  2106. sp = ha->outstanding_cmds[index];
  2107. if (!sp)
  2108. continue;
  2109. sfcp = sp->fcport;
  2110. if (!(sfcp->flags & FCF_TAPE_PRESENT))
  2111. continue;
  2112. set_bit(ISP_ABORT_NEEDED, &ha->dpc_flags);
  2113. break;
  2114. }
  2115. spin_unlock_irqrestore(&ha->hardware_lock, cpu_flags);
  2116. set_bit(ABORT_QUEUES_NEEDED, &ha->dpc_flags);
  2117. start_dpc++;
  2118. }
  2119. /* if the loop has been down for 4 minutes, reinit adapter */
  2120. if (atomic_dec_and_test(&ha->loop_down_timer) != 0) {
  2121. DEBUG(printk("scsi(%ld): Loop down exceed 4 mins - "
  2122. "restarting queues.\n",
  2123. ha->host_no));
  2124. set_bit(RESTART_QUEUES_NEEDED, &ha->dpc_flags);
  2125. start_dpc++;
  2126. if (!(ha->device_flags & DFLG_NO_CABLE)) {
  2127. DEBUG(printk("scsi(%ld): Loop down - "
  2128. "aborting ISP.\n",
  2129. ha->host_no));
  2130. qla_printk(KERN_WARNING, ha,
  2131. "Loop down - aborting ISP.\n");
  2132. set_bit(ISP_ABORT_NEEDED, &ha->dpc_flags);
  2133. }
  2134. }
  2135. DEBUG3(printk("scsi(%ld): Loop Down - seconds remaining %d\n",
  2136. ha->host_no,
  2137. atomic_read(&ha->loop_down_timer)));
  2138. }
  2139. /* Check if beacon LED needs to be blinked */
  2140. if (ha->beacon_blink_led == 1) {
  2141. set_bit(BEACON_BLINK_NEEDED, &ha->dpc_flags);
  2142. start_dpc++;
  2143. }
  2144. /* Schedule the DPC routine if needed */
  2145. if ((test_bit(ISP_ABORT_NEEDED, &ha->dpc_flags) ||
  2146. test_bit(LOOP_RESYNC_NEEDED, &ha->dpc_flags) ||
  2147. test_bit(LOOP_RESET_NEEDED, &ha->dpc_flags) ||
  2148. test_bit(FCPORT_UPDATE_NEEDED, &ha->dpc_flags) ||
  2149. start_dpc ||
  2150. test_bit(LOGIN_RETRY_NEEDED, &ha->dpc_flags) ||
  2151. test_bit(RESET_MARKER_NEEDED, &ha->dpc_flags) ||
  2152. test_bit(BEACON_BLINK_NEEDED, &ha->dpc_flags) ||
  2153. test_bit(RELOGIN_NEEDED, &ha->dpc_flags)))
  2154. qla2xxx_wake_dpc(ha);
  2155. qla2x00_restart_timer(ha, WATCH_INTERVAL);
  2156. }
  2157. /* XXX(hch): crude hack to emulate a down_timeout() */
  2158. int
  2159. qla2x00_down_timeout(struct semaphore *sema, unsigned long timeout)
  2160. {
  2161. const unsigned int step = 100; /* msecs */
  2162. unsigned int iterations = jiffies_to_msecs(timeout)/100;
  2163. do {
  2164. if (!down_trylock(sema))
  2165. return 0;
  2166. if (msleep_interruptible(step))
  2167. break;
  2168. } while (--iterations >= 0);
  2169. return -ETIMEDOUT;
  2170. }
  2171. #if defined(CONFIG_SCSI_QLA2XXX_EMBEDDED_FIRMWARE)
  2172. #define qla2x00_release_firmware() do { } while (0)
  2173. #define qla2x00_pci_module_init() (0)
  2174. #define qla2x00_pci_module_exit() do { } while (0)
  2175. #else /* !defined(CONFIG_SCSI_QLA2XXX_EMBEDDED_FIRMWARE) */
  2176. /* Firmware interface routines. */
  2177. #define FW_BLOBS 5
  2178. #define FW_ISP21XX 0
  2179. #define FW_ISP22XX 1
  2180. #define FW_ISP2300 2
  2181. #define FW_ISP2322 3
  2182. #define FW_ISP24XX 4
  2183. static DECLARE_MUTEX(qla_fw_lock);
  2184. static struct fw_blob qla_fw_blobs[FW_BLOBS] = {
  2185. { .name = "ql2100_fw.bin", .segs = { 0x1000, 0 }, },
  2186. { .name = "ql2200_fw.bin", .segs = { 0x1000, 0 }, },
  2187. { .name = "ql2300_fw.bin", .segs = { 0x800, 0 }, },
  2188. { .name = "ql2322_fw.bin", .segs = { 0x800, 0x1c000, 0x1e000, 0 }, },
  2189. { .name = "ql2400_fw.bin", },
  2190. };
  2191. struct fw_blob *
  2192. qla2x00_request_firmware(scsi_qla_host_t *ha)
  2193. {
  2194. struct fw_blob *blob;
  2195. blob = NULL;
  2196. if (IS_QLA2100(ha)) {
  2197. blob = &qla_fw_blobs[FW_ISP21XX];
  2198. } else if (IS_QLA2200(ha)) {
  2199. blob = &qla_fw_blobs[FW_ISP22XX];
  2200. } else if (IS_QLA2300(ha) || IS_QLA2312(ha) || IS_QLA6312(ha)) {
  2201. blob = &qla_fw_blobs[FW_ISP2300];
  2202. } else if (IS_QLA2322(ha) || IS_QLA6322(ha)) {
  2203. blob = &qla_fw_blobs[FW_ISP2322];
  2204. } else if (IS_QLA24XX(ha) || IS_QLA54XX(ha)) {
  2205. blob = &qla_fw_blobs[FW_ISP24XX];
  2206. }
  2207. down(&qla_fw_lock);
  2208. if (blob->fw)
  2209. goto out;
  2210. if (request_firmware(&blob->fw, blob->name, &ha->pdev->dev)) {
  2211. DEBUG2(printk("scsi(%ld): Failed to load firmware image "
  2212. "(%s).\n", ha->host_no, blob->name));
  2213. blob->fw = NULL;
  2214. blob = NULL;
  2215. goto out;
  2216. }
  2217. out:
  2218. up(&qla_fw_lock);
  2219. return blob;
  2220. }
  2221. static void
  2222. qla2x00_release_firmware(void)
  2223. {
  2224. int idx;
  2225. down(&qla_fw_lock);
  2226. for (idx = 0; idx < FW_BLOBS; idx++)
  2227. if (qla_fw_blobs[idx].fw)
  2228. release_firmware(qla_fw_blobs[idx].fw);
  2229. up(&qla_fw_lock);
  2230. }
  2231. static struct qla_board_info qla_board_tbl = {
  2232. .drv_name = "qla2xxx",
  2233. };
  2234. static struct pci_device_id qla2xxx_pci_tbl[] = {
  2235. { PCI_VENDOR_ID_QLOGIC, PCI_DEVICE_ID_QLOGIC_ISP2100,
  2236. PCI_ANY_ID, PCI_ANY_ID, },
  2237. { PCI_VENDOR_ID_QLOGIC, PCI_DEVICE_ID_QLOGIC_ISP2200,
  2238. PCI_ANY_ID, PCI_ANY_ID, },
  2239. { PCI_VENDOR_ID_QLOGIC, PCI_DEVICE_ID_QLOGIC_ISP2300,
  2240. PCI_ANY_ID, PCI_ANY_ID, },
  2241. { PCI_VENDOR_ID_QLOGIC, PCI_DEVICE_ID_QLOGIC_ISP2312,
  2242. PCI_ANY_ID, PCI_ANY_ID, },
  2243. { PCI_VENDOR_ID_QLOGIC, PCI_DEVICE_ID_QLOGIC_ISP2322,
  2244. PCI_ANY_ID, PCI_ANY_ID, },
  2245. { PCI_VENDOR_ID_QLOGIC, PCI_DEVICE_ID_QLOGIC_ISP6312,
  2246. PCI_ANY_ID, PCI_ANY_ID, },
  2247. { PCI_VENDOR_ID_QLOGIC, PCI_DEVICE_ID_QLOGIC_ISP6322,
  2248. PCI_ANY_ID, PCI_ANY_ID, },
  2249. { PCI_VENDOR_ID_QLOGIC, PCI_DEVICE_ID_QLOGIC_ISP2422,
  2250. PCI_ANY_ID, PCI_ANY_ID, },
  2251. { PCI_VENDOR_ID_QLOGIC, PCI_DEVICE_ID_QLOGIC_ISP2432,
  2252. PCI_ANY_ID, PCI_ANY_ID, },
  2253. { PCI_VENDOR_ID_QLOGIC, PCI_DEVICE_ID_QLOGIC_ISP5422,
  2254. PCI_ANY_ID, PCI_ANY_ID, },
  2255. { PCI_VENDOR_ID_QLOGIC, PCI_DEVICE_ID_QLOGIC_ISP5432,
  2256. PCI_ANY_ID, PCI_ANY_ID, },
  2257. { 0 },
  2258. };
  2259. MODULE_DEVICE_TABLE(pci, qla2xxx_pci_tbl);
  2260. static int __devinit
  2261. qla2xxx_probe_one(struct pci_dev *pdev, const struct pci_device_id *id)
  2262. {
  2263. return qla2x00_probe_one(pdev, &qla_board_tbl);
  2264. }
  2265. static void __devexit
  2266. qla2xxx_remove_one(struct pci_dev *pdev)
  2267. {
  2268. qla2x00_remove_one(pdev);
  2269. }
  2270. static struct pci_driver qla2xxx_pci_driver = {
  2271. .name = "qla2xxx",
  2272. .driver = {
  2273. .owner = THIS_MODULE,
  2274. },
  2275. .id_table = qla2xxx_pci_tbl,
  2276. .probe = qla2xxx_probe_one,
  2277. .remove = __devexit_p(qla2xxx_remove_one),
  2278. };
  2279. static inline int
  2280. qla2x00_pci_module_init(void)
  2281. {
  2282. return pci_module_init(&qla2xxx_pci_driver);
  2283. }
  2284. static inline void
  2285. qla2x00_pci_module_exit(void)
  2286. {
  2287. pci_unregister_driver(&qla2xxx_pci_driver);
  2288. }
  2289. #endif
  2290. /**
  2291. * qla2x00_module_init - Module initialization.
  2292. **/
  2293. static int __init
  2294. qla2x00_module_init(void)
  2295. {
  2296. int ret = 0;
  2297. /* Allocate cache for SRBs. */
  2298. srb_cachep = kmem_cache_create("qla2xxx_srbs", sizeof(srb_t), 0,
  2299. SLAB_HWCACHE_ALIGN, NULL, NULL);
  2300. if (srb_cachep == NULL) {
  2301. printk(KERN_ERR
  2302. "qla2xxx: Unable to allocate SRB cache...Failing load!\n");
  2303. return -ENOMEM;
  2304. }
  2305. /* Derive version string. */
  2306. strcpy(qla2x00_version_str, QLA2XXX_VERSION);
  2307. #if defined(CONFIG_SCSI_QLA2XXX_EMBEDDED_FIRMWARE)
  2308. strcat(qla2x00_version_str, "-fw");
  2309. #endif
  2310. #if DEBUG_QLA2100
  2311. strcat(qla2x00_version_str, "-debug");
  2312. #endif
  2313. qla2xxx_transport_template =
  2314. fc_attach_transport(&qla2xxx_transport_functions);
  2315. if (!qla2xxx_transport_template)
  2316. return -ENODEV;
  2317. printk(KERN_INFO "QLogic Fibre Channel HBA Driver\n");
  2318. ret = qla2x00_pci_module_init();
  2319. if (ret) {
  2320. kmem_cache_destroy(srb_cachep);
  2321. fc_release_transport(qla2xxx_transport_template);
  2322. }
  2323. return ret;
  2324. }
  2325. /**
  2326. * qla2x00_module_exit - Module cleanup.
  2327. **/
  2328. static void __exit
  2329. qla2x00_module_exit(void)
  2330. {
  2331. qla2x00_pci_module_exit();
  2332. qla2x00_release_firmware();
  2333. kmem_cache_destroy(srb_cachep);
  2334. fc_release_transport(qla2xxx_transport_template);
  2335. }
  2336. module_init(qla2x00_module_init);
  2337. module_exit(qla2x00_module_exit);
  2338. MODULE_AUTHOR("QLogic Corporation");
  2339. MODULE_DESCRIPTION("QLogic Fibre Channel HBA Driver");
  2340. MODULE_LICENSE("GPL");
  2341. MODULE_VERSION(QLA2XXX_VERSION);