zfcp_sysfs.c 16 KB

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  1. /*
  2. * zfcp device driver
  3. *
  4. * sysfs attributes.
  5. *
  6. * Copyright IBM Corporation 2008
  7. */
  8. #define KMSG_COMPONENT "zfcp"
  9. #define pr_fmt(fmt) KMSG_COMPONENT ": " fmt
  10. #include "zfcp_ext.h"
  11. #define ZFCP_DEV_ATTR(_feat, _name, _mode, _show, _store) \
  12. struct device_attribute dev_attr_##_feat##_##_name = __ATTR(_name, _mode,\
  13. _show, _store)
  14. #define ZFCP_DEFINE_ATTR(_feat_def, _feat, _name, _format, _value) \
  15. static ssize_t zfcp_sysfs_##_feat##_##_name##_show(struct device *dev, \
  16. struct device_attribute *at,\
  17. char *buf) \
  18. { \
  19. struct _feat_def *_feat = dev_get_drvdata(dev); \
  20. \
  21. return sprintf(buf, _format, _value); \
  22. } \
  23. static ZFCP_DEV_ATTR(_feat, _name, S_IRUGO, \
  24. zfcp_sysfs_##_feat##_##_name##_show, NULL);
  25. ZFCP_DEFINE_ATTR(zfcp_adapter, adapter, status, "0x%08x\n",
  26. atomic_read(&adapter->status));
  27. ZFCP_DEFINE_ATTR(zfcp_adapter, adapter, peer_wwnn, "0x%016llx\n",
  28. (unsigned long long) adapter->peer_wwnn);
  29. ZFCP_DEFINE_ATTR(zfcp_adapter, adapter, peer_wwpn, "0x%016llx\n",
  30. (unsigned long long) adapter->peer_wwpn);
  31. ZFCP_DEFINE_ATTR(zfcp_adapter, adapter, peer_d_id, "0x%06x\n",
  32. adapter->peer_d_id);
  33. ZFCP_DEFINE_ATTR(zfcp_adapter, adapter, card_version, "0x%04x\n",
  34. adapter->hydra_version);
  35. ZFCP_DEFINE_ATTR(zfcp_adapter, adapter, lic_version, "0x%08x\n",
  36. adapter->fsf_lic_version);
  37. ZFCP_DEFINE_ATTR(zfcp_adapter, adapter, hardware_version, "0x%08x\n",
  38. adapter->hardware_version);
  39. ZFCP_DEFINE_ATTR(zfcp_adapter, adapter, in_recovery, "%d\n",
  40. (atomic_read(&adapter->status) &
  41. ZFCP_STATUS_COMMON_ERP_INUSE) != 0);
  42. ZFCP_DEFINE_ATTR(zfcp_port, port, status, "0x%08x\n",
  43. atomic_read(&port->status));
  44. ZFCP_DEFINE_ATTR(zfcp_port, port, in_recovery, "%d\n",
  45. (atomic_read(&port->status) &
  46. ZFCP_STATUS_COMMON_ERP_INUSE) != 0);
  47. ZFCP_DEFINE_ATTR(zfcp_port, port, access_denied, "%d\n",
  48. (atomic_read(&port->status) &
  49. ZFCP_STATUS_COMMON_ACCESS_DENIED) != 0);
  50. ZFCP_DEFINE_ATTR(zfcp_unit, unit, status, "0x%08x\n",
  51. atomic_read(&unit->status));
  52. ZFCP_DEFINE_ATTR(zfcp_unit, unit, in_recovery, "%d\n",
  53. (atomic_read(&unit->status) &
  54. ZFCP_STATUS_COMMON_ERP_INUSE) != 0);
  55. ZFCP_DEFINE_ATTR(zfcp_unit, unit, access_denied, "%d\n",
  56. (atomic_read(&unit->status) &
  57. ZFCP_STATUS_COMMON_ACCESS_DENIED) != 0);
  58. ZFCP_DEFINE_ATTR(zfcp_unit, unit, access_shared, "%d\n",
  59. (atomic_read(&unit->status) &
  60. ZFCP_STATUS_UNIT_SHARED) != 0);
  61. ZFCP_DEFINE_ATTR(zfcp_unit, unit, access_readonly, "%d\n",
  62. (atomic_read(&unit->status) &
  63. ZFCP_STATUS_UNIT_READONLY) != 0);
  64. #define ZFCP_SYSFS_FAILED(_feat_def, _feat, _adapter, _mod_id, _reopen_id) \
  65. static ssize_t zfcp_sysfs_##_feat##_failed_show(struct device *dev, \
  66. struct device_attribute *attr, \
  67. char *buf) \
  68. { \
  69. struct _feat_def *_feat = dev_get_drvdata(dev); \
  70. \
  71. if (atomic_read(&_feat->status) & ZFCP_STATUS_COMMON_ERP_FAILED) \
  72. return sprintf(buf, "1\n"); \
  73. else \
  74. return sprintf(buf, "0\n"); \
  75. } \
  76. static ssize_t zfcp_sysfs_##_feat##_failed_store(struct device *dev, \
  77. struct device_attribute *attr,\
  78. const char *buf, size_t count)\
  79. { \
  80. struct _feat_def *_feat = dev_get_drvdata(dev); \
  81. unsigned long val; \
  82. int retval = 0; \
  83. \
  84. down(&zfcp_data.config_sema); \
  85. if (atomic_read(&_feat->status) & ZFCP_STATUS_COMMON_REMOVE) { \
  86. retval = -EBUSY; \
  87. goto out; \
  88. } \
  89. \
  90. if (strict_strtoul(buf, 0, &val) || val != 0) { \
  91. retval = -EINVAL; \
  92. goto out; \
  93. } \
  94. \
  95. zfcp_erp_modify_##_feat##_status(_feat, _mod_id, NULL, \
  96. ZFCP_STATUS_COMMON_RUNNING, ZFCP_SET);\
  97. zfcp_erp_##_feat##_reopen(_feat, ZFCP_STATUS_COMMON_ERP_FAILED, \
  98. _reopen_id, NULL); \
  99. zfcp_erp_wait(_adapter); \
  100. out: \
  101. up(&zfcp_data.config_sema); \
  102. return retval ? retval : (ssize_t) count; \
  103. } \
  104. static ZFCP_DEV_ATTR(_feat, failed, S_IWUSR | S_IRUGO, \
  105. zfcp_sysfs_##_feat##_failed_show, \
  106. zfcp_sysfs_##_feat##_failed_store);
  107. ZFCP_SYSFS_FAILED(zfcp_adapter, adapter, adapter, "syafai1", "syafai2");
  108. ZFCP_SYSFS_FAILED(zfcp_port, port, port->adapter, "sypfai1", "sypfai2");
  109. ZFCP_SYSFS_FAILED(zfcp_unit, unit, unit->port->adapter, "syufai1", "syufai2");
  110. static ssize_t zfcp_sysfs_port_rescan_store(struct device *dev,
  111. struct device_attribute *attr,
  112. const char *buf, size_t count)
  113. {
  114. struct zfcp_adapter *adapter = dev_get_drvdata(dev);
  115. int ret;
  116. if (atomic_read(&adapter->status) & ZFCP_STATUS_COMMON_REMOVE)
  117. return -EBUSY;
  118. ret = zfcp_scan_ports(adapter);
  119. return ret ? ret : (ssize_t) count;
  120. }
  121. static ZFCP_DEV_ATTR(adapter, port_rescan, S_IWUSR, NULL,
  122. zfcp_sysfs_port_rescan_store);
  123. static ssize_t zfcp_sysfs_port_remove_store(struct device *dev,
  124. struct device_attribute *attr,
  125. const char *buf, size_t count)
  126. {
  127. struct zfcp_adapter *adapter = dev_get_drvdata(dev);
  128. struct zfcp_port *port;
  129. u64 wwpn;
  130. int retval = 0;
  131. LIST_HEAD(port_remove_lh);
  132. down(&zfcp_data.config_sema);
  133. if (atomic_read(&adapter->status) & ZFCP_STATUS_COMMON_REMOVE) {
  134. retval = -EBUSY;
  135. goto out;
  136. }
  137. if (strict_strtoull(buf, 0, (unsigned long long *) &wwpn)) {
  138. retval = -EINVAL;
  139. goto out;
  140. }
  141. write_lock_irq(&zfcp_data.config_lock);
  142. port = zfcp_get_port_by_wwpn(adapter, wwpn);
  143. if (port && (atomic_read(&port->refcount) == 0)) {
  144. zfcp_port_get(port);
  145. atomic_set_mask(ZFCP_STATUS_COMMON_REMOVE, &port->status);
  146. list_move(&port->list, &port_remove_lh);
  147. } else
  148. port = NULL;
  149. write_unlock_irq(&zfcp_data.config_lock);
  150. if (!port) {
  151. retval = -ENXIO;
  152. goto out;
  153. }
  154. zfcp_erp_port_shutdown(port, 0, "syprs_1", NULL);
  155. zfcp_erp_wait(adapter);
  156. zfcp_port_put(port);
  157. zfcp_port_dequeue(port);
  158. out:
  159. up(&zfcp_data.config_sema);
  160. return retval ? retval : (ssize_t) count;
  161. }
  162. static ZFCP_DEV_ATTR(adapter, port_remove, S_IWUSR, NULL,
  163. zfcp_sysfs_port_remove_store);
  164. static struct attribute *zfcp_adapter_attrs[] = {
  165. &dev_attr_adapter_failed.attr,
  166. &dev_attr_adapter_in_recovery.attr,
  167. &dev_attr_adapter_port_remove.attr,
  168. &dev_attr_adapter_port_rescan.attr,
  169. &dev_attr_adapter_peer_wwnn.attr,
  170. &dev_attr_adapter_peer_wwpn.attr,
  171. &dev_attr_adapter_peer_d_id.attr,
  172. &dev_attr_adapter_card_version.attr,
  173. &dev_attr_adapter_lic_version.attr,
  174. &dev_attr_adapter_status.attr,
  175. &dev_attr_adapter_hardware_version.attr,
  176. NULL
  177. };
  178. struct attribute_group zfcp_sysfs_adapter_attrs = {
  179. .attrs = zfcp_adapter_attrs,
  180. };
  181. static ssize_t zfcp_sysfs_unit_add_store(struct device *dev,
  182. struct device_attribute *attr,
  183. const char *buf, size_t count)
  184. {
  185. struct zfcp_port *port = dev_get_drvdata(dev);
  186. struct zfcp_unit *unit;
  187. u64 fcp_lun;
  188. int retval = -EINVAL;
  189. down(&zfcp_data.config_sema);
  190. if (atomic_read(&port->status) & ZFCP_STATUS_COMMON_REMOVE) {
  191. retval = -EBUSY;
  192. goto out;
  193. }
  194. if (strict_strtoull(buf, 0, (unsigned long long *) &fcp_lun))
  195. goto out;
  196. unit = zfcp_unit_enqueue(port, fcp_lun);
  197. if (IS_ERR(unit))
  198. goto out;
  199. retval = 0;
  200. zfcp_erp_unit_reopen(unit, 0, "syuas_1", NULL);
  201. zfcp_erp_wait(unit->port->adapter);
  202. zfcp_unit_put(unit);
  203. out:
  204. up(&zfcp_data.config_sema);
  205. return retval ? retval : (ssize_t) count;
  206. }
  207. static DEVICE_ATTR(unit_add, S_IWUSR, NULL, zfcp_sysfs_unit_add_store);
  208. static ssize_t zfcp_sysfs_unit_remove_store(struct device *dev,
  209. struct device_attribute *attr,
  210. const char *buf, size_t count)
  211. {
  212. struct zfcp_port *port = dev_get_drvdata(dev);
  213. struct zfcp_unit *unit;
  214. u64 fcp_lun;
  215. int retval = 0;
  216. LIST_HEAD(unit_remove_lh);
  217. down(&zfcp_data.config_sema);
  218. if (atomic_read(&port->status) & ZFCP_STATUS_COMMON_REMOVE) {
  219. retval = -EBUSY;
  220. goto out;
  221. }
  222. if (strict_strtoull(buf, 0, (unsigned long long *) &fcp_lun)) {
  223. retval = -EINVAL;
  224. goto out;
  225. }
  226. write_lock_irq(&zfcp_data.config_lock);
  227. unit = zfcp_get_unit_by_lun(port, fcp_lun);
  228. if (unit) {
  229. write_unlock_irq(&zfcp_data.config_lock);
  230. /* wait for possible timeout during SCSI probe */
  231. flush_work(&unit->scsi_work);
  232. write_lock_irq(&zfcp_data.config_lock);
  233. if (atomic_read(&unit->refcount) == 0) {
  234. zfcp_unit_get(unit);
  235. atomic_set_mask(ZFCP_STATUS_COMMON_REMOVE,
  236. &unit->status);
  237. list_move(&unit->list, &unit_remove_lh);
  238. } else {
  239. unit = NULL;
  240. }
  241. }
  242. write_unlock_irq(&zfcp_data.config_lock);
  243. if (!unit) {
  244. retval = -ENXIO;
  245. goto out;
  246. }
  247. zfcp_erp_unit_shutdown(unit, 0, "syurs_1", NULL);
  248. zfcp_erp_wait(unit->port->adapter);
  249. zfcp_unit_put(unit);
  250. zfcp_unit_dequeue(unit);
  251. out:
  252. up(&zfcp_data.config_sema);
  253. return retval ? retval : (ssize_t) count;
  254. }
  255. static DEVICE_ATTR(unit_remove, S_IWUSR, NULL, zfcp_sysfs_unit_remove_store);
  256. static struct attribute *zfcp_port_attrs[] = {
  257. &dev_attr_unit_add.attr,
  258. &dev_attr_unit_remove.attr,
  259. &dev_attr_port_failed.attr,
  260. &dev_attr_port_in_recovery.attr,
  261. &dev_attr_port_status.attr,
  262. &dev_attr_port_access_denied.attr,
  263. NULL
  264. };
  265. /**
  266. * zfcp_sysfs_port_attrs - sysfs attributes for all other ports
  267. */
  268. struct attribute_group zfcp_sysfs_port_attrs = {
  269. .attrs = zfcp_port_attrs,
  270. };
  271. static struct attribute *zfcp_unit_attrs[] = {
  272. &dev_attr_unit_failed.attr,
  273. &dev_attr_unit_in_recovery.attr,
  274. &dev_attr_unit_status.attr,
  275. &dev_attr_unit_access_denied.attr,
  276. &dev_attr_unit_access_shared.attr,
  277. &dev_attr_unit_access_readonly.attr,
  278. NULL
  279. };
  280. struct attribute_group zfcp_sysfs_unit_attrs = {
  281. .attrs = zfcp_unit_attrs,
  282. };
  283. #define ZFCP_DEFINE_LATENCY_ATTR(_name) \
  284. static ssize_t \
  285. zfcp_sysfs_unit_##_name##_latency_show(struct device *dev, \
  286. struct device_attribute *attr, \
  287. char *buf) { \
  288. struct scsi_device *sdev = to_scsi_device(dev); \
  289. struct zfcp_unit *unit = sdev->hostdata; \
  290. struct zfcp_latencies *lat = &unit->latencies; \
  291. struct zfcp_adapter *adapter = unit->port->adapter; \
  292. unsigned long long fsum, fmin, fmax, csum, cmin, cmax, cc; \
  293. \
  294. spin_lock_bh(&lat->lock); \
  295. fsum = lat->_name.fabric.sum * adapter->timer_ticks; \
  296. fmin = lat->_name.fabric.min * adapter->timer_ticks; \
  297. fmax = lat->_name.fabric.max * adapter->timer_ticks; \
  298. csum = lat->_name.channel.sum * adapter->timer_ticks; \
  299. cmin = lat->_name.channel.min * adapter->timer_ticks; \
  300. cmax = lat->_name.channel.max * adapter->timer_ticks; \
  301. cc = lat->_name.counter; \
  302. spin_unlock_bh(&lat->lock); \
  303. \
  304. do_div(fsum, 1000); \
  305. do_div(fmin, 1000); \
  306. do_div(fmax, 1000); \
  307. do_div(csum, 1000); \
  308. do_div(cmin, 1000); \
  309. do_div(cmax, 1000); \
  310. \
  311. return sprintf(buf, "%llu %llu %llu %llu %llu %llu %llu\n", \
  312. fmin, fmax, fsum, cmin, cmax, csum, cc); \
  313. } \
  314. static ssize_t \
  315. zfcp_sysfs_unit_##_name##_latency_store(struct device *dev, \
  316. struct device_attribute *attr, \
  317. const char *buf, size_t count) \
  318. { \
  319. struct scsi_device *sdev = to_scsi_device(dev); \
  320. struct zfcp_unit *unit = sdev->hostdata; \
  321. struct zfcp_latencies *lat = &unit->latencies; \
  322. unsigned long flags; \
  323. \
  324. spin_lock_irqsave(&lat->lock, flags); \
  325. lat->_name.fabric.sum = 0; \
  326. lat->_name.fabric.min = 0xFFFFFFFF; \
  327. lat->_name.fabric.max = 0; \
  328. lat->_name.channel.sum = 0; \
  329. lat->_name.channel.min = 0xFFFFFFFF; \
  330. lat->_name.channel.max = 0; \
  331. lat->_name.counter = 0; \
  332. spin_unlock_irqrestore(&lat->lock, flags); \
  333. \
  334. return (ssize_t) count; \
  335. } \
  336. static DEVICE_ATTR(_name##_latency, S_IWUSR | S_IRUGO, \
  337. zfcp_sysfs_unit_##_name##_latency_show, \
  338. zfcp_sysfs_unit_##_name##_latency_store);
  339. ZFCP_DEFINE_LATENCY_ATTR(read);
  340. ZFCP_DEFINE_LATENCY_ATTR(write);
  341. ZFCP_DEFINE_LATENCY_ATTR(cmd);
  342. #define ZFCP_DEFINE_SCSI_ATTR(_name, _format, _value) \
  343. static ssize_t zfcp_sysfs_scsi_##_name##_show(struct device *dev, \
  344. struct device_attribute *attr,\
  345. char *buf) \
  346. { \
  347. struct scsi_device *sdev = to_scsi_device(dev); \
  348. struct zfcp_unit *unit = sdev->hostdata; \
  349. \
  350. return sprintf(buf, _format, _value); \
  351. } \
  352. static DEVICE_ATTR(_name, S_IRUGO, zfcp_sysfs_scsi_##_name##_show, NULL);
  353. ZFCP_DEFINE_SCSI_ATTR(hba_id, "%s\n",
  354. dev_name(&unit->port->adapter->ccw_device->dev));
  355. ZFCP_DEFINE_SCSI_ATTR(wwpn, "0x%016llx\n",
  356. (unsigned long long) unit->port->wwpn);
  357. ZFCP_DEFINE_SCSI_ATTR(fcp_lun, "0x%016llx\n",
  358. (unsigned long long) unit->fcp_lun);
  359. struct device_attribute *zfcp_sysfs_sdev_attrs[] = {
  360. &dev_attr_fcp_lun,
  361. &dev_attr_wwpn,
  362. &dev_attr_hba_id,
  363. &dev_attr_read_latency,
  364. &dev_attr_write_latency,
  365. &dev_attr_cmd_latency,
  366. NULL
  367. };
  368. static ssize_t zfcp_sysfs_adapter_util_show(struct device *dev,
  369. struct device_attribute *attr,
  370. char *buf)
  371. {
  372. struct Scsi_Host *scsi_host = dev_to_shost(dev);
  373. struct fsf_qtcb_bottom_port *qtcb_port;
  374. struct zfcp_adapter *adapter;
  375. int retval;
  376. adapter = (struct zfcp_adapter *) scsi_host->hostdata[0];
  377. if (!(adapter->adapter_features & FSF_FEATURE_MEASUREMENT_DATA))
  378. return -EOPNOTSUPP;
  379. qtcb_port = kzalloc(sizeof(struct fsf_qtcb_bottom_port), GFP_KERNEL);
  380. if (!qtcb_port)
  381. return -ENOMEM;
  382. retval = zfcp_fsf_exchange_port_data_sync(adapter, qtcb_port);
  383. if (!retval)
  384. retval = sprintf(buf, "%u %u %u\n", qtcb_port->cp_util,
  385. qtcb_port->cb_util, qtcb_port->a_util);
  386. kfree(qtcb_port);
  387. return retval;
  388. }
  389. static DEVICE_ATTR(utilization, S_IRUGO, zfcp_sysfs_adapter_util_show, NULL);
  390. static int zfcp_sysfs_adapter_ex_config(struct device *dev,
  391. struct fsf_statistics_info *stat_inf)
  392. {
  393. struct Scsi_Host *scsi_host = dev_to_shost(dev);
  394. struct fsf_qtcb_bottom_config *qtcb_config;
  395. struct zfcp_adapter *adapter;
  396. int retval;
  397. adapter = (struct zfcp_adapter *) scsi_host->hostdata[0];
  398. if (!(adapter->adapter_features & FSF_FEATURE_MEASUREMENT_DATA))
  399. return -EOPNOTSUPP;
  400. qtcb_config = kzalloc(sizeof(struct fsf_qtcb_bottom_config),
  401. GFP_KERNEL);
  402. if (!qtcb_config)
  403. return -ENOMEM;
  404. retval = zfcp_fsf_exchange_config_data_sync(adapter, qtcb_config);
  405. if (!retval)
  406. *stat_inf = qtcb_config->stat_info;
  407. kfree(qtcb_config);
  408. return retval;
  409. }
  410. #define ZFCP_SHOST_ATTR(_name, _format, _arg...) \
  411. static ssize_t zfcp_sysfs_adapter_##_name##_show(struct device *dev, \
  412. struct device_attribute *attr,\
  413. char *buf) \
  414. { \
  415. struct fsf_statistics_info stat_info; \
  416. int retval; \
  417. \
  418. retval = zfcp_sysfs_adapter_ex_config(dev, &stat_info); \
  419. if (retval) \
  420. return retval; \
  421. \
  422. return sprintf(buf, _format, ## _arg); \
  423. } \
  424. static DEVICE_ATTR(_name, S_IRUGO, zfcp_sysfs_adapter_##_name##_show, NULL);
  425. ZFCP_SHOST_ATTR(requests, "%llu %llu %llu\n",
  426. (unsigned long long) stat_info.input_req,
  427. (unsigned long long) stat_info.output_req,
  428. (unsigned long long) stat_info.control_req);
  429. ZFCP_SHOST_ATTR(megabytes, "%llu %llu\n",
  430. (unsigned long long) stat_info.input_mb,
  431. (unsigned long long) stat_info.output_mb);
  432. ZFCP_SHOST_ATTR(seconds_active, "%llu\n",
  433. (unsigned long long) stat_info.seconds_act);
  434. static ssize_t zfcp_sysfs_adapter_q_full_show(struct device *dev,
  435. struct device_attribute *attr,
  436. char *buf)
  437. {
  438. struct Scsi_Host *scsi_host = class_to_shost(dev);
  439. struct zfcp_adapter *adapter =
  440. (struct zfcp_adapter *) scsi_host->hostdata[0];
  441. return sprintf(buf, "%d %llu\n", atomic_read(&adapter->qdio_outb_full),
  442. (unsigned long long)adapter->req_q_util);
  443. }
  444. static DEVICE_ATTR(queue_full, S_IRUGO, zfcp_sysfs_adapter_q_full_show, NULL);
  445. struct device_attribute *zfcp_sysfs_shost_attrs[] = {
  446. &dev_attr_utilization,
  447. &dev_attr_requests,
  448. &dev_attr_megabytes,
  449. &dev_attr_seconds_active,
  450. &dev_attr_queue_full,
  451. NULL
  452. };