zfcp_qdio.c 14 KB

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  1. /*
  2. * zfcp device driver
  3. *
  4. * Setup and helper functions to access QDIO.
  5. *
  6. * Copyright IBM Corporation 2002, 2008
  7. */
  8. #include "zfcp_ext.h"
  9. /* FIXME(tune): free space should be one max. SBAL chain plus what? */
  10. #define ZFCP_QDIO_PCI_INTERVAL (QDIO_MAX_BUFFERS_PER_Q \
  11. - (FSF_MAX_SBALS_PER_REQ + 4))
  12. #define QBUFF_PER_PAGE (PAGE_SIZE / sizeof(struct qdio_buffer))
  13. static int zfcp_qdio_buffers_enqueue(struct qdio_buffer **sbal)
  14. {
  15. int pos;
  16. for (pos = 0; pos < QDIO_MAX_BUFFERS_PER_Q; pos += QBUFF_PER_PAGE) {
  17. sbal[pos] = (struct qdio_buffer *) get_zeroed_page(GFP_KERNEL);
  18. if (!sbal[pos])
  19. return -ENOMEM;
  20. }
  21. for (pos = 0; pos < QDIO_MAX_BUFFERS_PER_Q; pos++)
  22. if (pos % QBUFF_PER_PAGE)
  23. sbal[pos] = sbal[pos - 1] + 1;
  24. return 0;
  25. }
  26. static struct qdio_buffer_element *
  27. zfcp_qdio_sbale(struct zfcp_qdio_queue *q, int sbal_idx, int sbale_idx)
  28. {
  29. return &q->sbal[sbal_idx]->element[sbale_idx];
  30. }
  31. /**
  32. * zfcp_qdio_free - free memory used by request- and resposne queue
  33. * @adapter: pointer to the zfcp_adapter structure
  34. */
  35. void zfcp_qdio_free(struct zfcp_adapter *adapter)
  36. {
  37. struct qdio_buffer **sbal_req, **sbal_resp;
  38. int p;
  39. if (adapter->ccw_device)
  40. qdio_free(adapter->ccw_device);
  41. sbal_req = adapter->req_q.sbal;
  42. sbal_resp = adapter->resp_q.sbal;
  43. for (p = 0; p < QDIO_MAX_BUFFERS_PER_Q; p += QBUFF_PER_PAGE) {
  44. free_page((unsigned long) sbal_req[p]);
  45. free_page((unsigned long) sbal_resp[p]);
  46. }
  47. }
  48. static void zfcp_qdio_handler_error(struct zfcp_adapter *adapter, u8 id)
  49. {
  50. dev_warn(&adapter->ccw_device->dev, "A QDIO problem occurred\n");
  51. zfcp_erp_adapter_reopen(adapter,
  52. ZFCP_STATUS_ADAPTER_LINK_UNPLUGGED |
  53. ZFCP_STATUS_COMMON_ERP_FAILED, id, NULL);
  54. }
  55. static void zfcp_qdio_zero_sbals(struct qdio_buffer *sbal[], int first, int cnt)
  56. {
  57. int i, sbal_idx;
  58. for (i = first; i < first + cnt; i++) {
  59. sbal_idx = i % QDIO_MAX_BUFFERS_PER_Q;
  60. memset(sbal[sbal_idx], 0, sizeof(struct qdio_buffer));
  61. }
  62. }
  63. static void zfcp_qdio_int_req(struct ccw_device *cdev, unsigned int qdio_err,
  64. int queue_no, int first, int count,
  65. unsigned long parm)
  66. {
  67. struct zfcp_adapter *adapter = (struct zfcp_adapter *) parm;
  68. struct zfcp_qdio_queue *queue = &adapter->req_q;
  69. if (unlikely(qdio_err)) {
  70. zfcp_hba_dbf_event_qdio(adapter, qdio_err, first, count);
  71. zfcp_qdio_handler_error(adapter, 140);
  72. return;
  73. }
  74. /* cleanup all SBALs being program-owned now */
  75. zfcp_qdio_zero_sbals(queue->sbal, first, count);
  76. atomic_add(count, &queue->count);
  77. wake_up(&adapter->request_wq);
  78. }
  79. static void zfcp_qdio_reqid_check(struct zfcp_adapter *adapter,
  80. unsigned long req_id, int sbal_idx)
  81. {
  82. struct zfcp_fsf_req *fsf_req;
  83. unsigned long flags;
  84. spin_lock_irqsave(&adapter->req_list_lock, flags);
  85. fsf_req = zfcp_reqlist_find(adapter, req_id);
  86. if (!fsf_req)
  87. /*
  88. * Unknown request means that we have potentially memory
  89. * corruption and must stop the machine immediatly.
  90. */
  91. panic("error: unknown request id (%lx) on adapter %s.\n",
  92. req_id, zfcp_get_busid_by_adapter(adapter));
  93. zfcp_reqlist_remove(adapter, fsf_req);
  94. spin_unlock_irqrestore(&adapter->req_list_lock, flags);
  95. fsf_req->sbal_response = sbal_idx;
  96. zfcp_fsf_req_complete(fsf_req);
  97. }
  98. static void zfcp_qdio_resp_put_back(struct zfcp_adapter *adapter, int processed)
  99. {
  100. struct zfcp_qdio_queue *queue = &adapter->resp_q;
  101. struct ccw_device *cdev = adapter->ccw_device;
  102. u8 count, start = queue->first;
  103. unsigned int retval;
  104. count = atomic_read(&queue->count) + processed;
  105. retval = do_QDIO(cdev, QDIO_FLAG_SYNC_INPUT, 0, start, count);
  106. if (unlikely(retval)) {
  107. atomic_set(&queue->count, count);
  108. /* FIXME: Recover this with an adapter reopen? */
  109. } else {
  110. queue->first += count;
  111. queue->first %= QDIO_MAX_BUFFERS_PER_Q;
  112. atomic_set(&queue->count, 0);
  113. }
  114. }
  115. static void zfcp_qdio_int_resp(struct ccw_device *cdev, unsigned int qdio_err,
  116. int queue_no, int first, int count,
  117. unsigned long parm)
  118. {
  119. struct zfcp_adapter *adapter = (struct zfcp_adapter *) parm;
  120. struct zfcp_qdio_queue *queue = &adapter->resp_q;
  121. struct qdio_buffer_element *sbale;
  122. int sbal_idx, sbale_idx, sbal_no;
  123. if (unlikely(qdio_err)) {
  124. zfcp_hba_dbf_event_qdio(adapter, qdio_err, first, count);
  125. zfcp_qdio_handler_error(adapter, 147);
  126. return;
  127. }
  128. /*
  129. * go through all SBALs from input queue currently
  130. * returned by QDIO layer
  131. */
  132. for (sbal_no = 0; sbal_no < count; sbal_no++) {
  133. sbal_idx = (first + sbal_no) % QDIO_MAX_BUFFERS_PER_Q;
  134. /* go through all SBALEs of SBAL */
  135. for (sbale_idx = 0; sbale_idx < QDIO_MAX_ELEMENTS_PER_BUFFER;
  136. sbale_idx++) {
  137. sbale = zfcp_qdio_sbale(queue, sbal_idx, sbale_idx);
  138. zfcp_qdio_reqid_check(adapter,
  139. (unsigned long) sbale->addr,
  140. sbal_idx);
  141. if (likely(sbale->flags & SBAL_FLAGS_LAST_ENTRY))
  142. break;
  143. };
  144. if (unlikely(!(sbale->flags & SBAL_FLAGS_LAST_ENTRY)))
  145. dev_warn(&adapter->ccw_device->dev,
  146. "A QDIO protocol error occurred, "
  147. "operations continue\n");
  148. }
  149. /*
  150. * put range of SBALs back to response queue
  151. * (including SBALs which have already been free before)
  152. */
  153. zfcp_qdio_resp_put_back(adapter, count);
  154. }
  155. /**
  156. * zfcp_qdio_sbale_req - return ptr to SBALE of req_q for a struct zfcp_fsf_req
  157. * @fsf_req: pointer to struct fsf_req
  158. * Returns: pointer to qdio_buffer_element (SBALE) structure
  159. */
  160. struct qdio_buffer_element *zfcp_qdio_sbale_req(struct zfcp_fsf_req *req)
  161. {
  162. return zfcp_qdio_sbale(&req->adapter->req_q, req->sbal_last, 0);
  163. }
  164. /**
  165. * zfcp_qdio_sbale_curr - return curr SBALE on req_q for a struct zfcp_fsf_req
  166. * @fsf_req: pointer to struct fsf_req
  167. * Returns: pointer to qdio_buffer_element (SBALE) structure
  168. */
  169. struct qdio_buffer_element *zfcp_qdio_sbale_curr(struct zfcp_fsf_req *req)
  170. {
  171. return zfcp_qdio_sbale(&req->adapter->req_q, req->sbal_last,
  172. req->sbale_curr);
  173. }
  174. static void zfcp_qdio_sbal_limit(struct zfcp_fsf_req *fsf_req, int max_sbals)
  175. {
  176. int count = atomic_read(&fsf_req->adapter->req_q.count);
  177. count = min(count, max_sbals);
  178. fsf_req->sbal_limit = (fsf_req->sbal_first + count - 1)
  179. % QDIO_MAX_BUFFERS_PER_Q;
  180. }
  181. static struct qdio_buffer_element *
  182. zfcp_qdio_sbal_chain(struct zfcp_fsf_req *fsf_req, unsigned long sbtype)
  183. {
  184. struct qdio_buffer_element *sbale;
  185. /* set last entry flag in current SBALE of current SBAL */
  186. sbale = zfcp_qdio_sbale_curr(fsf_req);
  187. sbale->flags |= SBAL_FLAGS_LAST_ENTRY;
  188. /* don't exceed last allowed SBAL */
  189. if (fsf_req->sbal_last == fsf_req->sbal_limit)
  190. return NULL;
  191. /* set chaining flag in first SBALE of current SBAL */
  192. sbale = zfcp_qdio_sbale_req(fsf_req);
  193. sbale->flags |= SBAL_FLAGS0_MORE_SBALS;
  194. /* calculate index of next SBAL */
  195. fsf_req->sbal_last++;
  196. fsf_req->sbal_last %= QDIO_MAX_BUFFERS_PER_Q;
  197. /* keep this requests number of SBALs up-to-date */
  198. fsf_req->sbal_number++;
  199. /* start at first SBALE of new SBAL */
  200. fsf_req->sbale_curr = 0;
  201. /* set storage-block type for new SBAL */
  202. sbale = zfcp_qdio_sbale_curr(fsf_req);
  203. sbale->flags |= sbtype;
  204. return sbale;
  205. }
  206. static struct qdio_buffer_element *
  207. zfcp_qdio_sbale_next(struct zfcp_fsf_req *fsf_req, unsigned long sbtype)
  208. {
  209. if (fsf_req->sbale_curr == ZFCP_LAST_SBALE_PER_SBAL)
  210. return zfcp_qdio_sbal_chain(fsf_req, sbtype);
  211. fsf_req->sbale_curr++;
  212. return zfcp_qdio_sbale_curr(fsf_req);
  213. }
  214. static void zfcp_qdio_undo_sbals(struct zfcp_fsf_req *fsf_req)
  215. {
  216. struct qdio_buffer **sbal = fsf_req->adapter->req_q.sbal;
  217. int first = fsf_req->sbal_first;
  218. int last = fsf_req->sbal_last;
  219. int count = (last - first + QDIO_MAX_BUFFERS_PER_Q) %
  220. QDIO_MAX_BUFFERS_PER_Q + 1;
  221. zfcp_qdio_zero_sbals(sbal, first, count);
  222. }
  223. static int zfcp_qdio_fill_sbals(struct zfcp_fsf_req *fsf_req,
  224. unsigned int sbtype, void *start_addr,
  225. unsigned int total_length)
  226. {
  227. struct qdio_buffer_element *sbale;
  228. unsigned long remaining, length;
  229. void *addr;
  230. /* split segment up */
  231. for (addr = start_addr, remaining = total_length; remaining > 0;
  232. addr += length, remaining -= length) {
  233. sbale = zfcp_qdio_sbale_next(fsf_req, sbtype);
  234. if (!sbale) {
  235. atomic_inc(&fsf_req->adapter->qdio_outb_full);
  236. zfcp_qdio_undo_sbals(fsf_req);
  237. return -EINVAL;
  238. }
  239. /* new piece must not exceed next page boundary */
  240. length = min(remaining,
  241. (PAGE_SIZE - ((unsigned long)addr &
  242. (PAGE_SIZE - 1))));
  243. sbale->addr = addr;
  244. sbale->length = length;
  245. }
  246. return 0;
  247. }
  248. /**
  249. * zfcp_qdio_sbals_from_sg - fill SBALs from scatter-gather list
  250. * @fsf_req: request to be processed
  251. * @sbtype: SBALE flags
  252. * @sg: scatter-gather list
  253. * @max_sbals: upper bound for number of SBALs to be used
  254. * Returns: number of bytes, or error (negativ)
  255. */
  256. int zfcp_qdio_sbals_from_sg(struct zfcp_fsf_req *fsf_req, unsigned long sbtype,
  257. struct scatterlist *sg, int max_sbals)
  258. {
  259. struct qdio_buffer_element *sbale;
  260. int retval, bytes = 0;
  261. /* figure out last allowed SBAL */
  262. zfcp_qdio_sbal_limit(fsf_req, max_sbals);
  263. /* set storage-block type for this request */
  264. sbale = zfcp_qdio_sbale_req(fsf_req);
  265. sbale->flags |= sbtype;
  266. for (; sg; sg = sg_next(sg)) {
  267. retval = zfcp_qdio_fill_sbals(fsf_req, sbtype, sg_virt(sg),
  268. sg->length);
  269. if (retval < 0)
  270. return retval;
  271. bytes += sg->length;
  272. }
  273. /* assume that no other SBALEs are to follow in the same SBAL */
  274. sbale = zfcp_qdio_sbale_curr(fsf_req);
  275. sbale->flags |= SBAL_FLAGS_LAST_ENTRY;
  276. return bytes;
  277. }
  278. /**
  279. * zfcp_qdio_send - set PCI flag in first SBALE and send req to QDIO
  280. * @fsf_req: pointer to struct zfcp_fsf_req
  281. * Returns: 0 on success, error otherwise
  282. */
  283. int zfcp_qdio_send(struct zfcp_fsf_req *fsf_req)
  284. {
  285. struct zfcp_adapter *adapter = fsf_req->adapter;
  286. struct zfcp_qdio_queue *req_q = &adapter->req_q;
  287. int first = fsf_req->sbal_first;
  288. int count = fsf_req->sbal_number;
  289. int retval, pci, pci_batch;
  290. struct qdio_buffer_element *sbale;
  291. /* acknowledgements for transferred buffers */
  292. pci_batch = adapter->req_q_pci_batch + count;
  293. if (unlikely(pci_batch >= ZFCP_QDIO_PCI_INTERVAL)) {
  294. pci_batch %= ZFCP_QDIO_PCI_INTERVAL;
  295. pci = first + count - (pci_batch + 1);
  296. pci %= QDIO_MAX_BUFFERS_PER_Q;
  297. sbale = zfcp_qdio_sbale(req_q, pci, 0);
  298. sbale->flags |= SBAL_FLAGS0_PCI;
  299. }
  300. retval = do_QDIO(adapter->ccw_device, QDIO_FLAG_SYNC_OUTPUT, 0, first,
  301. count);
  302. if (unlikely(retval)) {
  303. zfcp_qdio_zero_sbals(req_q->sbal, first, count);
  304. return retval;
  305. }
  306. /* account for transferred buffers */
  307. atomic_sub(count, &req_q->count);
  308. req_q->first += count;
  309. req_q->first %= QDIO_MAX_BUFFERS_PER_Q;
  310. adapter->req_q_pci_batch = pci_batch;
  311. return 0;
  312. }
  313. /**
  314. * zfcp_qdio_allocate - allocate queue memory and initialize QDIO data
  315. * @adapter: pointer to struct zfcp_adapter
  316. * Returns: -ENOMEM on memory allocation error or return value from
  317. * qdio_allocate
  318. */
  319. int zfcp_qdio_allocate(struct zfcp_adapter *adapter)
  320. {
  321. struct qdio_initialize *init_data;
  322. if (zfcp_qdio_buffers_enqueue(adapter->req_q.sbal) ||
  323. zfcp_qdio_buffers_enqueue(adapter->resp_q.sbal))
  324. return -ENOMEM;
  325. init_data = &adapter->qdio_init_data;
  326. init_data->cdev = adapter->ccw_device;
  327. init_data->q_format = QDIO_ZFCP_QFMT;
  328. memcpy(init_data->adapter_name, zfcp_get_busid_by_adapter(adapter), 8);
  329. ASCEBC(init_data->adapter_name, 8);
  330. init_data->qib_param_field_format = 0;
  331. init_data->qib_param_field = NULL;
  332. init_data->input_slib_elements = NULL;
  333. init_data->output_slib_elements = NULL;
  334. init_data->no_input_qs = 1;
  335. init_data->no_output_qs = 1;
  336. init_data->input_handler = zfcp_qdio_int_resp;
  337. init_data->output_handler = zfcp_qdio_int_req;
  338. init_data->int_parm = (unsigned long) adapter;
  339. init_data->flags = QDIO_INBOUND_0COPY_SBALS |
  340. QDIO_OUTBOUND_0COPY_SBALS | QDIO_USE_OUTBOUND_PCIS;
  341. init_data->input_sbal_addr_array =
  342. (void **) (adapter->resp_q.sbal);
  343. init_data->output_sbal_addr_array =
  344. (void **) (adapter->req_q.sbal);
  345. return qdio_allocate(init_data);
  346. }
  347. /**
  348. * zfcp_close_qdio - close qdio queues for an adapter
  349. */
  350. void zfcp_qdio_close(struct zfcp_adapter *adapter)
  351. {
  352. struct zfcp_qdio_queue *req_q;
  353. int first, count;
  354. if (!(atomic_read(&adapter->status) & ZFCP_STATUS_ADAPTER_QDIOUP))
  355. return;
  356. /* clear QDIOUP flag, thus do_QDIO is not called during qdio_shutdown */
  357. req_q = &adapter->req_q;
  358. spin_lock_bh(&adapter->req_q_lock);
  359. atomic_clear_mask(ZFCP_STATUS_ADAPTER_QDIOUP, &adapter->status);
  360. spin_unlock_bh(&adapter->req_q_lock);
  361. qdio_shutdown(adapter->ccw_device, QDIO_FLAG_CLEANUP_USING_CLEAR);
  362. /* cleanup used outbound sbals */
  363. count = atomic_read(&req_q->count);
  364. if (count < QDIO_MAX_BUFFERS_PER_Q) {
  365. first = (req_q->first + count) % QDIO_MAX_BUFFERS_PER_Q;
  366. count = QDIO_MAX_BUFFERS_PER_Q - count;
  367. zfcp_qdio_zero_sbals(req_q->sbal, first, count);
  368. }
  369. req_q->first = 0;
  370. atomic_set(&req_q->count, 0);
  371. adapter->req_q_pci_batch = 0;
  372. adapter->resp_q.first = 0;
  373. atomic_set(&adapter->resp_q.count, 0);
  374. }
  375. /**
  376. * zfcp_qdio_open - prepare and initialize response queue
  377. * @adapter: pointer to struct zfcp_adapter
  378. * Returns: 0 on success, otherwise -EIO
  379. */
  380. int zfcp_qdio_open(struct zfcp_adapter *adapter)
  381. {
  382. struct qdio_buffer_element *sbale;
  383. int cc;
  384. if (atomic_read(&adapter->status) & ZFCP_STATUS_ADAPTER_QDIOUP)
  385. return -EIO;
  386. if (qdio_establish(&adapter->qdio_init_data))
  387. goto failed_establish;
  388. if (qdio_activate(adapter->ccw_device))
  389. goto failed_qdio;
  390. for (cc = 0; cc < QDIO_MAX_BUFFERS_PER_Q; cc++) {
  391. sbale = &(adapter->resp_q.sbal[cc]->element[0]);
  392. sbale->length = 0;
  393. sbale->flags = SBAL_FLAGS_LAST_ENTRY;
  394. sbale->addr = NULL;
  395. }
  396. if (do_QDIO(adapter->ccw_device, QDIO_FLAG_SYNC_INPUT, 0, 0,
  397. QDIO_MAX_BUFFERS_PER_Q))
  398. goto failed_qdio;
  399. /* set index of first avalable SBALS / number of available SBALS */
  400. adapter->req_q.first = 0;
  401. atomic_set(&adapter->req_q.count, QDIO_MAX_BUFFERS_PER_Q);
  402. adapter->req_q_pci_batch = 0;
  403. return 0;
  404. failed_qdio:
  405. qdio_shutdown(adapter->ccw_device, QDIO_FLAG_CLEANUP_USING_CLEAR);
  406. failed_establish:
  407. dev_err(&adapter->ccw_device->dev,
  408. "Setting up the QDIO connection to the FCP adapter failed\n");
  409. return -EIO;
  410. }