zfcp_aux.c 19 KB

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  1. /*
  2. * zfcp device driver
  3. *
  4. * Module interface and handling of zfcp data structures.
  5. *
  6. * Copyright IBM Corporation 2002, 2009
  7. */
  8. /*
  9. * Driver authors:
  10. * Martin Peschke (originator of the driver)
  11. * Raimund Schroeder
  12. * Aron Zeh
  13. * Wolfgang Taphorn
  14. * Stefan Bader
  15. * Heiko Carstens (kernel 2.6 port of the driver)
  16. * Andreas Herrmann
  17. * Maxim Shchetynin
  18. * Volker Sameske
  19. * Ralph Wuerthner
  20. * Michael Loehr
  21. * Swen Schillig
  22. * Christof Schmitt
  23. * Martin Petermann
  24. * Sven Schuetz
  25. */
  26. #define KMSG_COMPONENT "zfcp"
  27. #define pr_fmt(fmt) KMSG_COMPONENT ": " fmt
  28. #include <linux/miscdevice.h>
  29. #include <linux/seq_file.h>
  30. #include "zfcp_ext.h"
  31. #include "zfcp_fc.h"
  32. #define ZFCP_BUS_ID_SIZE 20
  33. MODULE_AUTHOR("IBM Deutschland Entwicklung GmbH - linux390@de.ibm.com");
  34. MODULE_DESCRIPTION("FCP HBA driver");
  35. MODULE_LICENSE("GPL");
  36. static char *init_device;
  37. module_param_named(device, init_device, charp, 0400);
  38. MODULE_PARM_DESC(device, "specify initial device");
  39. static struct kmem_cache *zfcp_cache_hw_align(const char *name,
  40. unsigned long size)
  41. {
  42. return kmem_cache_create(name, size, roundup_pow_of_two(size), 0, NULL);
  43. }
  44. static int zfcp_reqlist_alloc(struct zfcp_adapter *adapter)
  45. {
  46. int idx;
  47. adapter->req_list = kcalloc(REQUEST_LIST_SIZE, sizeof(struct list_head),
  48. GFP_KERNEL);
  49. if (!adapter->req_list)
  50. return -ENOMEM;
  51. for (idx = 0; idx < REQUEST_LIST_SIZE; idx++)
  52. INIT_LIST_HEAD(&adapter->req_list[idx]);
  53. return 0;
  54. }
  55. /**
  56. * zfcp_reqlist_isempty - is the request list empty
  57. * @adapter: pointer to struct zfcp_adapter
  58. *
  59. * Returns: true if list is empty, false otherwise
  60. */
  61. int zfcp_reqlist_isempty(struct zfcp_adapter *adapter)
  62. {
  63. unsigned int idx;
  64. for (idx = 0; idx < REQUEST_LIST_SIZE; idx++)
  65. if (!list_empty(&adapter->req_list[idx]))
  66. return 0;
  67. return 1;
  68. }
  69. static void __init zfcp_init_device_configure(char *busid, u64 wwpn, u64 lun)
  70. {
  71. struct ccw_device *cdev;
  72. struct zfcp_adapter *adapter;
  73. struct zfcp_port *port;
  74. struct zfcp_unit *unit;
  75. cdev = get_ccwdev_by_busid(&zfcp_ccw_driver, busid);
  76. if (!cdev)
  77. return;
  78. if (ccw_device_set_online(cdev))
  79. goto out_ccw_device;
  80. adapter = zfcp_ccw_adapter_by_cdev(cdev);
  81. if (!adapter)
  82. goto out_ccw_device;
  83. port = zfcp_get_port_by_wwpn(adapter, wwpn);
  84. if (!port)
  85. goto out_port;
  86. unit = zfcp_unit_enqueue(port, lun);
  87. if (IS_ERR(unit))
  88. goto out_unit;
  89. zfcp_erp_unit_reopen(unit, 0, "auidc_1", NULL);
  90. zfcp_erp_wait(adapter);
  91. flush_work(&unit->scsi_work);
  92. out_unit:
  93. put_device(&port->sysfs_device);
  94. out_port:
  95. zfcp_ccw_adapter_put(adapter);
  96. out_ccw_device:
  97. put_device(&cdev->dev);
  98. return;
  99. }
  100. static void __init zfcp_init_device_setup(char *devstr)
  101. {
  102. char *token;
  103. char *str, *str_saved;
  104. char busid[ZFCP_BUS_ID_SIZE];
  105. u64 wwpn, lun;
  106. /* duplicate devstr and keep the original for sysfs presentation*/
  107. str_saved = kmalloc(strlen(devstr) + 1, GFP_KERNEL);
  108. str = str_saved;
  109. if (!str)
  110. return;
  111. strcpy(str, devstr);
  112. token = strsep(&str, ",");
  113. if (!token || strlen(token) >= ZFCP_BUS_ID_SIZE)
  114. goto err_out;
  115. strncpy(busid, token, ZFCP_BUS_ID_SIZE);
  116. token = strsep(&str, ",");
  117. if (!token || strict_strtoull(token, 0, (unsigned long long *) &wwpn))
  118. goto err_out;
  119. token = strsep(&str, ",");
  120. if (!token || strict_strtoull(token, 0, (unsigned long long *) &lun))
  121. goto err_out;
  122. kfree(str_saved);
  123. zfcp_init_device_configure(busid, wwpn, lun);
  124. return;
  125. err_out:
  126. kfree(str_saved);
  127. pr_err("%s is not a valid SCSI device\n", devstr);
  128. }
  129. static int __init zfcp_module_init(void)
  130. {
  131. int retval = -ENOMEM;
  132. zfcp_data.gpn_ft_cache = zfcp_cache_hw_align("zfcp_gpn",
  133. sizeof(struct zfcp_fc_gpn_ft_req));
  134. if (!zfcp_data.gpn_ft_cache)
  135. goto out;
  136. zfcp_data.qtcb_cache = zfcp_cache_hw_align("zfcp_qtcb",
  137. sizeof(struct fsf_qtcb));
  138. if (!zfcp_data.qtcb_cache)
  139. goto out_qtcb_cache;
  140. zfcp_data.sr_buffer_cache = zfcp_cache_hw_align("zfcp_sr",
  141. sizeof(struct fsf_status_read_buffer));
  142. if (!zfcp_data.sr_buffer_cache)
  143. goto out_sr_cache;
  144. zfcp_data.gid_pn_cache = zfcp_cache_hw_align("zfcp_gid",
  145. sizeof(struct zfcp_fc_gid_pn));
  146. if (!zfcp_data.gid_pn_cache)
  147. goto out_gid_cache;
  148. zfcp_data.adisc_cache = zfcp_cache_hw_align("zfcp_adisc",
  149. sizeof(struct zfcp_fc_els_adisc));
  150. if (!zfcp_data.adisc_cache)
  151. goto out_adisc_cache;
  152. zfcp_data.scsi_transport_template =
  153. fc_attach_transport(&zfcp_transport_functions);
  154. if (!zfcp_data.scsi_transport_template)
  155. goto out_transport;
  156. retval = misc_register(&zfcp_cfdc_misc);
  157. if (retval) {
  158. pr_err("Registering the misc device zfcp_cfdc failed\n");
  159. goto out_misc;
  160. }
  161. retval = ccw_driver_register(&zfcp_ccw_driver);
  162. if (retval) {
  163. pr_err("The zfcp device driver could not register with "
  164. "the common I/O layer\n");
  165. goto out_ccw_register;
  166. }
  167. if (init_device)
  168. zfcp_init_device_setup(init_device);
  169. return 0;
  170. out_ccw_register:
  171. misc_deregister(&zfcp_cfdc_misc);
  172. out_misc:
  173. fc_release_transport(zfcp_data.scsi_transport_template);
  174. out_transport:
  175. kmem_cache_destroy(zfcp_data.adisc_cache);
  176. out_adisc_cache:
  177. kmem_cache_destroy(zfcp_data.gid_pn_cache);
  178. out_gid_cache:
  179. kmem_cache_destroy(zfcp_data.sr_buffer_cache);
  180. out_sr_cache:
  181. kmem_cache_destroy(zfcp_data.qtcb_cache);
  182. out_qtcb_cache:
  183. kmem_cache_destroy(zfcp_data.gpn_ft_cache);
  184. out:
  185. return retval;
  186. }
  187. module_init(zfcp_module_init);
  188. static void __exit zfcp_module_exit(void)
  189. {
  190. ccw_driver_unregister(&zfcp_ccw_driver);
  191. misc_deregister(&zfcp_cfdc_misc);
  192. fc_release_transport(zfcp_data.scsi_transport_template);
  193. kmem_cache_destroy(zfcp_data.adisc_cache);
  194. kmem_cache_destroy(zfcp_data.gid_pn_cache);
  195. kmem_cache_destroy(zfcp_data.sr_buffer_cache);
  196. kmem_cache_destroy(zfcp_data.qtcb_cache);
  197. kmem_cache_destroy(zfcp_data.gpn_ft_cache);
  198. }
  199. module_exit(zfcp_module_exit);
  200. /**
  201. * zfcp_get_unit_by_lun - find unit in unit list of port by FCP LUN
  202. * @port: pointer to port to search for unit
  203. * @fcp_lun: FCP LUN to search for
  204. *
  205. * Returns: pointer to zfcp_unit or NULL
  206. */
  207. struct zfcp_unit *zfcp_get_unit_by_lun(struct zfcp_port *port, u64 fcp_lun)
  208. {
  209. unsigned long flags;
  210. struct zfcp_unit *unit;
  211. read_lock_irqsave(&port->unit_list_lock, flags);
  212. list_for_each_entry(unit, &port->unit_list, list)
  213. if (unit->fcp_lun == fcp_lun) {
  214. if (!get_device(&unit->sysfs_device))
  215. unit = NULL;
  216. read_unlock_irqrestore(&port->unit_list_lock, flags);
  217. return unit;
  218. }
  219. read_unlock_irqrestore(&port->unit_list_lock, flags);
  220. return NULL;
  221. }
  222. /**
  223. * zfcp_get_port_by_wwpn - find port in port list of adapter by wwpn
  224. * @adapter: pointer to adapter to search for port
  225. * @wwpn: wwpn to search for
  226. *
  227. * Returns: pointer to zfcp_port or NULL
  228. */
  229. struct zfcp_port *zfcp_get_port_by_wwpn(struct zfcp_adapter *adapter,
  230. u64 wwpn)
  231. {
  232. unsigned long flags;
  233. struct zfcp_port *port;
  234. read_lock_irqsave(&adapter->port_list_lock, flags);
  235. list_for_each_entry(port, &adapter->port_list, list)
  236. if (port->wwpn == wwpn) {
  237. if (!get_device(&port->sysfs_device))
  238. port = NULL;
  239. read_unlock_irqrestore(&adapter->port_list_lock, flags);
  240. return port;
  241. }
  242. read_unlock_irqrestore(&adapter->port_list_lock, flags);
  243. return NULL;
  244. }
  245. /**
  246. * zfcp_unit_release - dequeue unit
  247. * @dev: pointer to device
  248. *
  249. * waits until all work is done on unit and removes it then from the unit->list
  250. * of the associated port.
  251. */
  252. static void zfcp_unit_release(struct device *dev)
  253. {
  254. struct zfcp_unit *unit = container_of(dev, struct zfcp_unit,
  255. sysfs_device);
  256. put_device(&unit->port->sysfs_device);
  257. kfree(unit);
  258. }
  259. /**
  260. * zfcp_unit_enqueue - enqueue unit to unit list of a port.
  261. * @port: pointer to port where unit is added
  262. * @fcp_lun: FCP LUN of unit to be enqueued
  263. * Returns: pointer to enqueued unit on success, ERR_PTR on error
  264. *
  265. * Sets up some unit internal structures and creates sysfs entry.
  266. */
  267. struct zfcp_unit *zfcp_unit_enqueue(struct zfcp_port *port, u64 fcp_lun)
  268. {
  269. struct zfcp_unit *unit;
  270. int retval = -ENOMEM;
  271. get_device(&port->sysfs_device);
  272. unit = zfcp_get_unit_by_lun(port, fcp_lun);
  273. if (unit) {
  274. put_device(&unit->sysfs_device);
  275. retval = -EEXIST;
  276. goto err_out;
  277. }
  278. unit = kzalloc(sizeof(struct zfcp_unit), GFP_KERNEL);
  279. if (!unit)
  280. goto err_out;
  281. unit->port = port;
  282. unit->fcp_lun = fcp_lun;
  283. unit->sysfs_device.parent = &port->sysfs_device;
  284. unit->sysfs_device.release = zfcp_unit_release;
  285. if (dev_set_name(&unit->sysfs_device, "0x%016llx",
  286. (unsigned long long) fcp_lun)) {
  287. kfree(unit);
  288. goto err_out;
  289. }
  290. retval = -EINVAL;
  291. INIT_WORK(&unit->scsi_work, zfcp_scsi_scan);
  292. spin_lock_init(&unit->latencies.lock);
  293. unit->latencies.write.channel.min = 0xFFFFFFFF;
  294. unit->latencies.write.fabric.min = 0xFFFFFFFF;
  295. unit->latencies.read.channel.min = 0xFFFFFFFF;
  296. unit->latencies.read.fabric.min = 0xFFFFFFFF;
  297. unit->latencies.cmd.channel.min = 0xFFFFFFFF;
  298. unit->latencies.cmd.fabric.min = 0xFFFFFFFF;
  299. if (device_register(&unit->sysfs_device)) {
  300. put_device(&unit->sysfs_device);
  301. goto err_out;
  302. }
  303. if (sysfs_create_group(&unit->sysfs_device.kobj,
  304. &zfcp_sysfs_unit_attrs))
  305. goto err_out_put;
  306. write_lock_irq(&port->unit_list_lock);
  307. list_add_tail(&unit->list, &port->unit_list);
  308. write_unlock_irq(&port->unit_list_lock);
  309. atomic_set_mask(ZFCP_STATUS_COMMON_RUNNING, &unit->status);
  310. return unit;
  311. err_out_put:
  312. device_unregister(&unit->sysfs_device);
  313. err_out:
  314. put_device(&port->sysfs_device);
  315. return ERR_PTR(retval);
  316. }
  317. static int zfcp_allocate_low_mem_buffers(struct zfcp_adapter *adapter)
  318. {
  319. adapter->pool.erp_req =
  320. mempool_create_kmalloc_pool(1, sizeof(struct zfcp_fsf_req));
  321. if (!adapter->pool.erp_req)
  322. return -ENOMEM;
  323. adapter->pool.gid_pn_req =
  324. mempool_create_kmalloc_pool(1, sizeof(struct zfcp_fsf_req));
  325. if (!adapter->pool.gid_pn_req)
  326. return -ENOMEM;
  327. adapter->pool.scsi_req =
  328. mempool_create_kmalloc_pool(1, sizeof(struct zfcp_fsf_req));
  329. if (!adapter->pool.scsi_req)
  330. return -ENOMEM;
  331. adapter->pool.scsi_abort =
  332. mempool_create_kmalloc_pool(1, sizeof(struct zfcp_fsf_req));
  333. if (!adapter->pool.scsi_abort)
  334. return -ENOMEM;
  335. adapter->pool.status_read_req =
  336. mempool_create_kmalloc_pool(FSF_STATUS_READS_RECOM,
  337. sizeof(struct zfcp_fsf_req));
  338. if (!adapter->pool.status_read_req)
  339. return -ENOMEM;
  340. adapter->pool.qtcb_pool =
  341. mempool_create_slab_pool(4, zfcp_data.qtcb_cache);
  342. if (!adapter->pool.qtcb_pool)
  343. return -ENOMEM;
  344. adapter->pool.status_read_data =
  345. mempool_create_slab_pool(FSF_STATUS_READS_RECOM,
  346. zfcp_data.sr_buffer_cache);
  347. if (!adapter->pool.status_read_data)
  348. return -ENOMEM;
  349. adapter->pool.gid_pn =
  350. mempool_create_slab_pool(1, zfcp_data.gid_pn_cache);
  351. if (!adapter->pool.gid_pn)
  352. return -ENOMEM;
  353. return 0;
  354. }
  355. static void zfcp_free_low_mem_buffers(struct zfcp_adapter *adapter)
  356. {
  357. if (adapter->pool.erp_req)
  358. mempool_destroy(adapter->pool.erp_req);
  359. if (adapter->pool.scsi_req)
  360. mempool_destroy(adapter->pool.scsi_req);
  361. if (adapter->pool.scsi_abort)
  362. mempool_destroy(adapter->pool.scsi_abort);
  363. if (adapter->pool.qtcb_pool)
  364. mempool_destroy(adapter->pool.qtcb_pool);
  365. if (adapter->pool.status_read_req)
  366. mempool_destroy(adapter->pool.status_read_req);
  367. if (adapter->pool.status_read_data)
  368. mempool_destroy(adapter->pool.status_read_data);
  369. if (adapter->pool.gid_pn)
  370. mempool_destroy(adapter->pool.gid_pn);
  371. }
  372. /**
  373. * zfcp_status_read_refill - refill the long running status_read_requests
  374. * @adapter: ptr to struct zfcp_adapter for which the buffers should be refilled
  375. *
  376. * Returns: 0 on success, 1 otherwise
  377. *
  378. * if there are 16 or more status_read requests missing an adapter_reopen
  379. * is triggered
  380. */
  381. int zfcp_status_read_refill(struct zfcp_adapter *adapter)
  382. {
  383. while (atomic_read(&adapter->stat_miss) > 0)
  384. if (zfcp_fsf_status_read(adapter->qdio)) {
  385. if (atomic_read(&adapter->stat_miss) >= 16) {
  386. zfcp_erp_adapter_reopen(adapter, 0, "axsref1",
  387. NULL);
  388. return 1;
  389. }
  390. break;
  391. } else
  392. atomic_dec(&adapter->stat_miss);
  393. return 0;
  394. }
  395. static void _zfcp_status_read_scheduler(struct work_struct *work)
  396. {
  397. zfcp_status_read_refill(container_of(work, struct zfcp_adapter,
  398. stat_work));
  399. }
  400. static void zfcp_print_sl(struct seq_file *m, struct service_level *sl)
  401. {
  402. struct zfcp_adapter *adapter =
  403. container_of(sl, struct zfcp_adapter, service_level);
  404. seq_printf(m, "zfcp: %s microcode level %x\n",
  405. dev_name(&adapter->ccw_device->dev),
  406. adapter->fsf_lic_version);
  407. }
  408. static int zfcp_setup_adapter_work_queue(struct zfcp_adapter *adapter)
  409. {
  410. char name[TASK_COMM_LEN];
  411. snprintf(name, sizeof(name), "zfcp_q_%s",
  412. dev_name(&adapter->ccw_device->dev));
  413. adapter->work_queue = create_singlethread_workqueue(name);
  414. if (adapter->work_queue)
  415. return 0;
  416. return -ENOMEM;
  417. }
  418. static void zfcp_destroy_adapter_work_queue(struct zfcp_adapter *adapter)
  419. {
  420. if (adapter->work_queue)
  421. destroy_workqueue(adapter->work_queue);
  422. adapter->work_queue = NULL;
  423. }
  424. /**
  425. * zfcp_adapter_enqueue - enqueue a new adapter to the list
  426. * @ccw_device: pointer to the struct cc_device
  427. *
  428. * Returns: struct zfcp_adapter*
  429. * Enqueues an adapter at the end of the adapter list in the driver data.
  430. * All adapter internal structures are set up.
  431. * Proc-fs entries are also created.
  432. */
  433. struct zfcp_adapter *zfcp_adapter_enqueue(struct ccw_device *ccw_device)
  434. {
  435. struct zfcp_adapter *adapter;
  436. if (!get_device(&ccw_device->dev))
  437. return ERR_PTR(-ENODEV);
  438. adapter = kzalloc(sizeof(struct zfcp_adapter), GFP_KERNEL);
  439. if (!adapter) {
  440. put_device(&ccw_device->dev);
  441. return ERR_PTR(-ENOMEM);
  442. }
  443. kref_init(&adapter->ref);
  444. ccw_device->handler = NULL;
  445. adapter->ccw_device = ccw_device;
  446. INIT_WORK(&adapter->stat_work, _zfcp_status_read_scheduler);
  447. INIT_WORK(&adapter->scan_work, zfcp_fc_scan_ports);
  448. if (zfcp_qdio_setup(adapter))
  449. goto failed;
  450. if (zfcp_allocate_low_mem_buffers(adapter))
  451. goto failed;
  452. if (zfcp_reqlist_alloc(adapter))
  453. goto failed;
  454. if (zfcp_dbf_adapter_register(adapter))
  455. goto failed;
  456. if (zfcp_setup_adapter_work_queue(adapter))
  457. goto failed;
  458. if (zfcp_fc_gs_setup(adapter))
  459. goto failed;
  460. rwlock_init(&adapter->port_list_lock);
  461. INIT_LIST_HEAD(&adapter->port_list);
  462. init_waitqueue_head(&adapter->erp_ready_wq);
  463. init_waitqueue_head(&adapter->erp_done_wqh);
  464. INIT_LIST_HEAD(&adapter->erp_ready_head);
  465. INIT_LIST_HEAD(&adapter->erp_running_head);
  466. spin_lock_init(&adapter->req_list_lock);
  467. rwlock_init(&adapter->erp_lock);
  468. rwlock_init(&adapter->abort_lock);
  469. if (zfcp_erp_thread_setup(adapter))
  470. goto failed;
  471. adapter->service_level.seq_print = zfcp_print_sl;
  472. dev_set_drvdata(&ccw_device->dev, adapter);
  473. if (sysfs_create_group(&ccw_device->dev.kobj,
  474. &zfcp_sysfs_adapter_attrs))
  475. goto failed;
  476. if (!zfcp_adapter_scsi_register(adapter))
  477. return adapter;
  478. failed:
  479. zfcp_adapter_unregister(adapter);
  480. return ERR_PTR(-ENOMEM);
  481. }
  482. void zfcp_adapter_unregister(struct zfcp_adapter *adapter)
  483. {
  484. struct ccw_device *cdev = adapter->ccw_device;
  485. cancel_work_sync(&adapter->scan_work);
  486. cancel_work_sync(&adapter->stat_work);
  487. zfcp_destroy_adapter_work_queue(adapter);
  488. zfcp_fc_wka_ports_force_offline(adapter->gs);
  489. zfcp_adapter_scsi_unregister(adapter);
  490. sysfs_remove_group(&cdev->dev.kobj, &zfcp_sysfs_adapter_attrs);
  491. zfcp_erp_thread_kill(adapter);
  492. zfcp_dbf_adapter_unregister(adapter->dbf);
  493. zfcp_qdio_destroy(adapter->qdio);
  494. zfcp_ccw_adapter_put(adapter); /* final put to release */
  495. }
  496. /**
  497. * zfcp_adapter_release - remove the adapter from the resource list
  498. * @ref: pointer to struct kref
  499. * locks: adapter list write lock is assumed to be held by caller
  500. */
  501. void zfcp_adapter_release(struct kref *ref)
  502. {
  503. struct zfcp_adapter *adapter = container_of(ref, struct zfcp_adapter,
  504. ref);
  505. struct ccw_device *cdev = adapter->ccw_device;
  506. dev_set_drvdata(&adapter->ccw_device->dev, NULL);
  507. zfcp_fc_gs_destroy(adapter);
  508. zfcp_free_low_mem_buffers(adapter);
  509. kfree(adapter->req_list);
  510. kfree(adapter->fc_stats);
  511. kfree(adapter->stats_reset_data);
  512. kfree(adapter);
  513. put_device(&cdev->dev);
  514. }
  515. /**
  516. * zfcp_device_unregister - remove port, unit from system
  517. * @dev: reference to device which is to be removed
  518. * @grp: related reference to attribute group
  519. *
  520. * Helper function to unregister port, unit from system
  521. */
  522. void zfcp_device_unregister(struct device *dev,
  523. const struct attribute_group *grp)
  524. {
  525. sysfs_remove_group(&dev->kobj, grp);
  526. device_unregister(dev);
  527. }
  528. static void zfcp_port_release(struct device *dev)
  529. {
  530. struct zfcp_port *port = container_of(dev, struct zfcp_port,
  531. sysfs_device);
  532. zfcp_ccw_adapter_put(port->adapter);
  533. kfree(port);
  534. }
  535. /**
  536. * zfcp_port_enqueue - enqueue port to port list of adapter
  537. * @adapter: adapter where remote port is added
  538. * @wwpn: WWPN of the remote port to be enqueued
  539. * @status: initial status for the port
  540. * @d_id: destination id of the remote port to be enqueued
  541. * Returns: pointer to enqueued port on success, ERR_PTR on error
  542. *
  543. * All port internal structures are set up and the sysfs entry is generated.
  544. * d_id is used to enqueue ports with a well known address like the Directory
  545. * Service for nameserver lookup.
  546. */
  547. struct zfcp_port *zfcp_port_enqueue(struct zfcp_adapter *adapter, u64 wwpn,
  548. u32 status, u32 d_id)
  549. {
  550. struct zfcp_port *port;
  551. int retval = -ENOMEM;
  552. kref_get(&adapter->ref);
  553. port = zfcp_get_port_by_wwpn(adapter, wwpn);
  554. if (port) {
  555. put_device(&port->sysfs_device);
  556. retval = -EEXIST;
  557. goto err_out;
  558. }
  559. port = kzalloc(sizeof(struct zfcp_port), GFP_KERNEL);
  560. if (!port)
  561. goto err_out;
  562. rwlock_init(&port->unit_list_lock);
  563. INIT_LIST_HEAD(&port->unit_list);
  564. INIT_WORK(&port->gid_pn_work, zfcp_fc_port_did_lookup);
  565. INIT_WORK(&port->test_link_work, zfcp_fc_link_test_work);
  566. INIT_WORK(&port->rport_work, zfcp_scsi_rport_work);
  567. port->adapter = adapter;
  568. port->d_id = d_id;
  569. port->wwpn = wwpn;
  570. port->rport_task = RPORT_NONE;
  571. port->sysfs_device.parent = &adapter->ccw_device->dev;
  572. port->sysfs_device.release = zfcp_port_release;
  573. if (dev_set_name(&port->sysfs_device, "0x%016llx",
  574. (unsigned long long)wwpn)) {
  575. kfree(port);
  576. goto err_out;
  577. }
  578. retval = -EINVAL;
  579. if (device_register(&port->sysfs_device)) {
  580. put_device(&port->sysfs_device);
  581. goto err_out;
  582. }
  583. if (sysfs_create_group(&port->sysfs_device.kobj,
  584. &zfcp_sysfs_port_attrs))
  585. goto err_out_put;
  586. write_lock_irq(&adapter->port_list_lock);
  587. list_add_tail(&port->list, &adapter->port_list);
  588. write_unlock_irq(&adapter->port_list_lock);
  589. atomic_set_mask(status | ZFCP_STATUS_COMMON_RUNNING, &port->status);
  590. return port;
  591. err_out_put:
  592. device_unregister(&port->sysfs_device);
  593. err_out:
  594. zfcp_ccw_adapter_put(adapter);
  595. return ERR_PTR(retval);
  596. }
  597. /**
  598. * zfcp_sg_free_table - free memory used by scatterlists
  599. * @sg: pointer to scatterlist
  600. * @count: number of scatterlist which are to be free'ed
  601. * the scatterlist are expected to reference pages always
  602. */
  603. void zfcp_sg_free_table(struct scatterlist *sg, int count)
  604. {
  605. int i;
  606. for (i = 0; i < count; i++, sg++)
  607. if (sg)
  608. free_page((unsigned long) sg_virt(sg));
  609. else
  610. break;
  611. }
  612. /**
  613. * zfcp_sg_setup_table - init scatterlist and allocate, assign buffers
  614. * @sg: pointer to struct scatterlist
  615. * @count: number of scatterlists which should be assigned with buffers
  616. * of size page
  617. *
  618. * Returns: 0 on success, -ENOMEM otherwise
  619. */
  620. int zfcp_sg_setup_table(struct scatterlist *sg, int count)
  621. {
  622. void *addr;
  623. int i;
  624. sg_init_table(sg, count);
  625. for (i = 0; i < count; i++, sg++) {
  626. addr = (void *) get_zeroed_page(GFP_KERNEL);
  627. if (!addr) {
  628. zfcp_sg_free_table(sg, i);
  629. return -ENOMEM;
  630. }
  631. sg_set_buf(sg, addr, PAGE_SIZE);
  632. }
  633. return 0;
  634. }