qdio_setup.c 13 KB

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  1. /*
  2. * driver/s390/cio/qdio_setup.c
  3. *
  4. * qdio queue initialization
  5. *
  6. * Copyright (C) IBM Corp. 2008
  7. * Author(s): Jan Glauber <jang@linux.vnet.ibm.com>
  8. */
  9. #include <linux/kernel.h>
  10. #include <linux/slab.h>
  11. #include <asm/qdio.h>
  12. #include "cio.h"
  13. #include "css.h"
  14. #include "device.h"
  15. #include "ioasm.h"
  16. #include "chsc.h"
  17. #include "qdio.h"
  18. #include "qdio_debug.h"
  19. static struct kmem_cache *qdio_q_cache;
  20. /*
  21. * qebsm is only available under 64bit but the adapter sets the feature
  22. * flag anyway, so we manually override it.
  23. */
  24. static inline int qebsm_possible(void)
  25. {
  26. #ifdef CONFIG_64BIT
  27. return css_general_characteristics.qebsm;
  28. #endif
  29. return 0;
  30. }
  31. /*
  32. * qib_param_field: pointer to 128 bytes or NULL, if no param field
  33. * nr_input_qs: pointer to nr_queues*128 words of data or NULL
  34. */
  35. static void set_impl_params(struct qdio_irq *irq_ptr,
  36. unsigned int qib_param_field_format,
  37. unsigned char *qib_param_field,
  38. unsigned long *input_slib_elements,
  39. unsigned long *output_slib_elements)
  40. {
  41. struct qdio_q *q;
  42. int i, j;
  43. if (!irq_ptr)
  44. return;
  45. irq_ptr->qib.pfmt = qib_param_field_format;
  46. if (qib_param_field)
  47. memcpy(irq_ptr->qib.parm, qib_param_field,
  48. QDIO_MAX_BUFFERS_PER_Q);
  49. if (!input_slib_elements)
  50. goto output;
  51. for_each_input_queue(irq_ptr, q, i) {
  52. for (j = 0; j < QDIO_MAX_BUFFERS_PER_Q; j++)
  53. q->slib->slibe[j].parms =
  54. input_slib_elements[i * QDIO_MAX_BUFFERS_PER_Q + j];
  55. }
  56. output:
  57. if (!output_slib_elements)
  58. return;
  59. for_each_output_queue(irq_ptr, q, i) {
  60. for (j = 0; j < QDIO_MAX_BUFFERS_PER_Q; j++)
  61. q->slib->slibe[j].parms =
  62. output_slib_elements[i * QDIO_MAX_BUFFERS_PER_Q + j];
  63. }
  64. }
  65. static int __qdio_allocate_qs(struct qdio_q **irq_ptr_qs, int nr_queues)
  66. {
  67. struct qdio_q *q;
  68. int i;
  69. for (i = 0; i < nr_queues; i++) {
  70. q = kmem_cache_alloc(qdio_q_cache, GFP_KERNEL);
  71. if (!q)
  72. return -ENOMEM;
  73. q->slib = (struct slib *) __get_free_page(GFP_KERNEL);
  74. if (!q->slib) {
  75. kmem_cache_free(qdio_q_cache, q);
  76. return -ENOMEM;
  77. }
  78. irq_ptr_qs[i] = q;
  79. }
  80. return 0;
  81. }
  82. int qdio_allocate_qs(struct qdio_irq *irq_ptr, int nr_input_qs, int nr_output_qs)
  83. {
  84. int rc;
  85. rc = __qdio_allocate_qs(irq_ptr->input_qs, nr_input_qs);
  86. if (rc)
  87. return rc;
  88. rc = __qdio_allocate_qs(irq_ptr->output_qs, nr_output_qs);
  89. return rc;
  90. }
  91. static void setup_queues_misc(struct qdio_q *q, struct qdio_irq *irq_ptr,
  92. qdio_handler_t *handler, int i)
  93. {
  94. struct slib *slib = q->slib;
  95. /* queue must be cleared for qdio_establish */
  96. memset(q, 0, sizeof(*q));
  97. memset(slib, 0, PAGE_SIZE);
  98. q->slib = slib;
  99. q->irq_ptr = irq_ptr;
  100. q->mask = 1 << (31 - i);
  101. q->nr = i;
  102. q->handler = handler;
  103. }
  104. static void setup_storage_lists(struct qdio_q *q, struct qdio_irq *irq_ptr,
  105. void **sbals_array, int i)
  106. {
  107. struct qdio_q *prev;
  108. int j;
  109. DBF_HEX(&q, sizeof(void *));
  110. q->sl = (struct sl *)((char *)q->slib + PAGE_SIZE / 2);
  111. /* fill in sbal */
  112. for (j = 0; j < QDIO_MAX_BUFFERS_PER_Q; j++) {
  113. q->sbal[j] = *sbals_array++;
  114. BUG_ON((unsigned long)q->sbal[j] & 0xff);
  115. }
  116. /* fill in slib */
  117. if (i > 0) {
  118. prev = (q->is_input_q) ? irq_ptr->input_qs[i - 1]
  119. : irq_ptr->output_qs[i - 1];
  120. prev->slib->nsliba = (unsigned long)q->slib;
  121. }
  122. q->slib->sla = (unsigned long)q->sl;
  123. q->slib->slsba = (unsigned long)&q->slsb.val[0];
  124. /* fill in sl */
  125. for (j = 0; j < QDIO_MAX_BUFFERS_PER_Q; j++)
  126. q->sl->element[j].sbal = (unsigned long)q->sbal[j];
  127. }
  128. static void setup_queues(struct qdio_irq *irq_ptr,
  129. struct qdio_initialize *qdio_init)
  130. {
  131. struct qdio_q *q;
  132. void **input_sbal_array = qdio_init->input_sbal_addr_array;
  133. void **output_sbal_array = qdio_init->output_sbal_addr_array;
  134. int i;
  135. for_each_input_queue(irq_ptr, q, i) {
  136. DBF_EVENT("in-q:%1d", i);
  137. setup_queues_misc(q, irq_ptr, qdio_init->input_handler, i);
  138. q->is_input_q = 1;
  139. setup_storage_lists(q, irq_ptr, input_sbal_array, i);
  140. input_sbal_array += QDIO_MAX_BUFFERS_PER_Q;
  141. if (is_thinint_irq(irq_ptr))
  142. tasklet_init(&q->tasklet, tiqdio_inbound_processing,
  143. (unsigned long) q);
  144. else
  145. tasklet_init(&q->tasklet, qdio_inbound_processing,
  146. (unsigned long) q);
  147. }
  148. for_each_output_queue(irq_ptr, q, i) {
  149. DBF_EVENT("outq:%1d", i);
  150. setup_queues_misc(q, irq_ptr, qdio_init->output_handler, i);
  151. q->is_input_q = 0;
  152. setup_storage_lists(q, irq_ptr, output_sbal_array, i);
  153. output_sbal_array += QDIO_MAX_BUFFERS_PER_Q;
  154. tasklet_init(&q->tasklet, qdio_outbound_processing,
  155. (unsigned long) q);
  156. setup_timer(&q->u.out.timer, (void(*)(unsigned long))
  157. &qdio_outbound_timer, (unsigned long)q);
  158. }
  159. }
  160. static void process_ac_flags(struct qdio_irq *irq_ptr, unsigned char qdioac)
  161. {
  162. if (qdioac & AC1_SIGA_INPUT_NEEDED)
  163. irq_ptr->siga_flag.input = 1;
  164. if (qdioac & AC1_SIGA_OUTPUT_NEEDED)
  165. irq_ptr->siga_flag.output = 1;
  166. if (qdioac & AC1_SIGA_SYNC_NEEDED)
  167. irq_ptr->siga_flag.sync = 1;
  168. if (qdioac & AC1_AUTOMATIC_SYNC_ON_THININT)
  169. irq_ptr->siga_flag.no_sync_ti = 1;
  170. if (qdioac & AC1_AUTOMATIC_SYNC_ON_OUT_PCI)
  171. irq_ptr->siga_flag.no_sync_out_pci = 1;
  172. if (irq_ptr->siga_flag.no_sync_out_pci &&
  173. irq_ptr->siga_flag.no_sync_ti)
  174. irq_ptr->siga_flag.no_sync_out_ti = 1;
  175. }
  176. static void check_and_setup_qebsm(struct qdio_irq *irq_ptr,
  177. unsigned char qdioac, unsigned long token)
  178. {
  179. if (!(irq_ptr->qib.rflags & QIB_RFLAGS_ENABLE_QEBSM))
  180. goto no_qebsm;
  181. if (!(qdioac & AC1_SC_QEBSM_AVAILABLE) ||
  182. (!(qdioac & AC1_SC_QEBSM_ENABLED)))
  183. goto no_qebsm;
  184. irq_ptr->sch_token = token;
  185. DBF_EVENT("V=V:1");
  186. DBF_EVENT("%8lx", irq_ptr->sch_token);
  187. return;
  188. no_qebsm:
  189. irq_ptr->sch_token = 0;
  190. irq_ptr->qib.rflags &= ~QIB_RFLAGS_ENABLE_QEBSM;
  191. DBF_EVENT("noV=V");
  192. }
  193. /*
  194. * If there is a qdio_irq we use the chsc_page and store the information
  195. * in the qdio_irq, otherwise we copy it to the specified structure.
  196. */
  197. int qdio_setup_get_ssqd(struct qdio_irq *irq_ptr,
  198. struct subchannel_id *schid,
  199. struct qdio_ssqd_desc *data)
  200. {
  201. struct chsc_ssqd_area *ssqd;
  202. int rc;
  203. DBF_EVENT("getssqd:%4x", schid->sch_no);
  204. if (irq_ptr != NULL)
  205. ssqd = (struct chsc_ssqd_area *)irq_ptr->chsc_page;
  206. else
  207. ssqd = (struct chsc_ssqd_area *)__get_free_page(GFP_KERNEL);
  208. memset(ssqd, 0, PAGE_SIZE);
  209. ssqd->request = (struct chsc_header) {
  210. .length = 0x0010,
  211. .code = 0x0024,
  212. };
  213. ssqd->first_sch = schid->sch_no;
  214. ssqd->last_sch = schid->sch_no;
  215. ssqd->ssid = schid->ssid;
  216. if (chsc(ssqd))
  217. return -EIO;
  218. rc = chsc_error_from_response(ssqd->response.code);
  219. if (rc)
  220. return rc;
  221. if (!(ssqd->qdio_ssqd.flags & CHSC_FLAG_QDIO_CAPABILITY) ||
  222. !(ssqd->qdio_ssqd.flags & CHSC_FLAG_VALIDITY) ||
  223. (ssqd->qdio_ssqd.sch != schid->sch_no))
  224. return -EINVAL;
  225. if (irq_ptr != NULL)
  226. memcpy(&irq_ptr->ssqd_desc, &ssqd->qdio_ssqd,
  227. sizeof(struct qdio_ssqd_desc));
  228. else {
  229. memcpy(data, &ssqd->qdio_ssqd,
  230. sizeof(struct qdio_ssqd_desc));
  231. free_page((unsigned long)ssqd);
  232. }
  233. return 0;
  234. }
  235. void qdio_setup_ssqd_info(struct qdio_irq *irq_ptr)
  236. {
  237. unsigned char qdioac;
  238. int rc;
  239. rc = qdio_setup_get_ssqd(irq_ptr, &irq_ptr->schid, NULL);
  240. if (rc) {
  241. DBF_ERROR("%4x ssqd ERR", irq_ptr->schid.sch_no);
  242. DBF_ERROR("rc:%x", rc);
  243. /* all flags set, worst case */
  244. qdioac = AC1_SIGA_INPUT_NEEDED | AC1_SIGA_OUTPUT_NEEDED |
  245. AC1_SIGA_SYNC_NEEDED;
  246. } else
  247. qdioac = irq_ptr->ssqd_desc.qdioac1;
  248. check_and_setup_qebsm(irq_ptr, qdioac, irq_ptr->ssqd_desc.sch_token);
  249. process_ac_flags(irq_ptr, qdioac);
  250. DBF_EVENT("qdioac:%4x", qdioac);
  251. }
  252. void qdio_release_memory(struct qdio_irq *irq_ptr)
  253. {
  254. struct qdio_q *q;
  255. int i;
  256. /*
  257. * Must check queue array manually since irq_ptr->nr_input_queues /
  258. * irq_ptr->nr_input_queues may not yet be set.
  259. */
  260. for (i = 0; i < QDIO_MAX_QUEUES_PER_IRQ; i++) {
  261. q = irq_ptr->input_qs[i];
  262. if (q) {
  263. free_page((unsigned long) q->slib);
  264. kmem_cache_free(qdio_q_cache, q);
  265. }
  266. }
  267. for (i = 0; i < QDIO_MAX_QUEUES_PER_IRQ; i++) {
  268. q = irq_ptr->output_qs[i];
  269. if (q) {
  270. free_page((unsigned long) q->slib);
  271. kmem_cache_free(qdio_q_cache, q);
  272. }
  273. }
  274. free_page((unsigned long) irq_ptr->qdr);
  275. free_page(irq_ptr->chsc_page);
  276. free_page((unsigned long) irq_ptr);
  277. }
  278. static void __qdio_allocate_fill_qdr(struct qdio_irq *irq_ptr,
  279. struct qdio_q **irq_ptr_qs,
  280. int i, int nr)
  281. {
  282. irq_ptr->qdr->qdf0[i + nr].sliba =
  283. (unsigned long)irq_ptr_qs[i]->slib;
  284. irq_ptr->qdr->qdf0[i + nr].sla =
  285. (unsigned long)irq_ptr_qs[i]->sl;
  286. irq_ptr->qdr->qdf0[i + nr].slsba =
  287. (unsigned long)&irq_ptr_qs[i]->slsb.val[0];
  288. irq_ptr->qdr->qdf0[i + nr].akey = PAGE_DEFAULT_KEY >> 4;
  289. irq_ptr->qdr->qdf0[i + nr].bkey = PAGE_DEFAULT_KEY >> 4;
  290. irq_ptr->qdr->qdf0[i + nr].ckey = PAGE_DEFAULT_KEY >> 4;
  291. irq_ptr->qdr->qdf0[i + nr].dkey = PAGE_DEFAULT_KEY >> 4;
  292. }
  293. static void setup_qdr(struct qdio_irq *irq_ptr,
  294. struct qdio_initialize *qdio_init)
  295. {
  296. int i;
  297. irq_ptr->qdr->qfmt = qdio_init->q_format;
  298. irq_ptr->qdr->iqdcnt = qdio_init->no_input_qs;
  299. irq_ptr->qdr->oqdcnt = qdio_init->no_output_qs;
  300. irq_ptr->qdr->iqdsz = sizeof(struct qdesfmt0) / 4; /* size in words */
  301. irq_ptr->qdr->oqdsz = sizeof(struct qdesfmt0) / 4;
  302. irq_ptr->qdr->qiba = (unsigned long)&irq_ptr->qib;
  303. irq_ptr->qdr->qkey = PAGE_DEFAULT_KEY >> 4;
  304. for (i = 0; i < qdio_init->no_input_qs; i++)
  305. __qdio_allocate_fill_qdr(irq_ptr, irq_ptr->input_qs, i, 0);
  306. for (i = 0; i < qdio_init->no_output_qs; i++)
  307. __qdio_allocate_fill_qdr(irq_ptr, irq_ptr->output_qs, i,
  308. qdio_init->no_input_qs);
  309. }
  310. static void setup_qib(struct qdio_irq *irq_ptr,
  311. struct qdio_initialize *init_data)
  312. {
  313. if (qebsm_possible())
  314. irq_ptr->qib.rflags |= QIB_RFLAGS_ENABLE_QEBSM;
  315. irq_ptr->qib.rflags |= init_data->qib_rflags;
  316. irq_ptr->qib.qfmt = init_data->q_format;
  317. if (init_data->no_input_qs)
  318. irq_ptr->qib.isliba =
  319. (unsigned long)(irq_ptr->input_qs[0]->slib);
  320. if (init_data->no_output_qs)
  321. irq_ptr->qib.osliba =
  322. (unsigned long)(irq_ptr->output_qs[0]->slib);
  323. memcpy(irq_ptr->qib.ebcnam, init_data->adapter_name, 8);
  324. }
  325. int qdio_setup_irq(struct qdio_initialize *init_data)
  326. {
  327. struct ciw *ciw;
  328. struct qdio_irq *irq_ptr = init_data->cdev->private->qdio_data;
  329. int rc;
  330. memset(&irq_ptr->qib, 0, sizeof(irq_ptr->qib));
  331. memset(&irq_ptr->siga_flag, 0, sizeof(irq_ptr->siga_flag));
  332. memset(&irq_ptr->ccw, 0, sizeof(irq_ptr->ccw));
  333. memset(&irq_ptr->ssqd_desc, 0, sizeof(irq_ptr->ssqd_desc));
  334. memset(&irq_ptr->perf_stat, 0, sizeof(irq_ptr->perf_stat));
  335. irq_ptr->debugfs_dev = irq_ptr->debugfs_perf = NULL;
  336. irq_ptr->sch_token = irq_ptr->state = irq_ptr->perf_stat_enabled = 0;
  337. /* wipes qib.ac, required by ar7063 */
  338. memset(irq_ptr->qdr, 0, sizeof(struct qdr));
  339. irq_ptr->int_parm = init_data->int_parm;
  340. irq_ptr->nr_input_qs = init_data->no_input_qs;
  341. irq_ptr->nr_output_qs = init_data->no_output_qs;
  342. irq_ptr->schid = ccw_device_get_subchannel_id(init_data->cdev);
  343. irq_ptr->cdev = init_data->cdev;
  344. setup_queues(irq_ptr, init_data);
  345. setup_qib(irq_ptr, init_data);
  346. qdio_setup_thinint(irq_ptr);
  347. set_impl_params(irq_ptr, init_data->qib_param_field_format,
  348. init_data->qib_param_field,
  349. init_data->input_slib_elements,
  350. init_data->output_slib_elements);
  351. /* fill input and output descriptors */
  352. setup_qdr(irq_ptr, init_data);
  353. /* qdr, qib, sls, slsbs, slibs, sbales are filled now */
  354. /* get qdio commands */
  355. ciw = ccw_device_get_ciw(init_data->cdev, CIW_TYPE_EQUEUE);
  356. if (!ciw) {
  357. DBF_ERROR("%4x NO EQ", irq_ptr->schid.sch_no);
  358. rc = -EINVAL;
  359. goto out_err;
  360. }
  361. irq_ptr->equeue = *ciw;
  362. ciw = ccw_device_get_ciw(init_data->cdev, CIW_TYPE_AQUEUE);
  363. if (!ciw) {
  364. DBF_ERROR("%4x NO AQ", irq_ptr->schid.sch_no);
  365. rc = -EINVAL;
  366. goto out_err;
  367. }
  368. irq_ptr->aqueue = *ciw;
  369. /* set new interrupt handler */
  370. irq_ptr->orig_handler = init_data->cdev->handler;
  371. init_data->cdev->handler = qdio_int_handler;
  372. return 0;
  373. out_err:
  374. qdio_release_memory(irq_ptr);
  375. return rc;
  376. }
  377. void qdio_print_subchannel_info(struct qdio_irq *irq_ptr,
  378. struct ccw_device *cdev)
  379. {
  380. char s[80];
  381. snprintf(s, 80, "qdio: %s %s on SC %x using "
  382. "AI:%d QEBSM:%d PCI:%d TDD:%d SIGA:%s%s%s%s%s%s\n",
  383. dev_name(&cdev->dev),
  384. (irq_ptr->qib.qfmt == QDIO_QETH_QFMT) ? "OSA" :
  385. ((irq_ptr->qib.qfmt == QDIO_ZFCP_QFMT) ? "ZFCP" : "HS"),
  386. irq_ptr->schid.sch_no,
  387. is_thinint_irq(irq_ptr),
  388. (irq_ptr->sch_token) ? 1 : 0,
  389. (irq_ptr->qib.ac & QIB_AC_OUTBOUND_PCI_SUPPORTED) ? 1 : 0,
  390. css_general_characteristics.aif_tdd,
  391. (irq_ptr->siga_flag.input) ? "R" : " ",
  392. (irq_ptr->siga_flag.output) ? "W" : " ",
  393. (irq_ptr->siga_flag.sync) ? "S" : " ",
  394. (!irq_ptr->siga_flag.no_sync_ti) ? "A" : " ",
  395. (!irq_ptr->siga_flag.no_sync_out_ti) ? "O" : " ",
  396. (!irq_ptr->siga_flag.no_sync_out_pci) ? "P" : " ");
  397. printk(KERN_INFO "%s", s);
  398. }
  399. int __init qdio_setup_init(void)
  400. {
  401. qdio_q_cache = kmem_cache_create("qdio_q", sizeof(struct qdio_q),
  402. 256, 0, NULL);
  403. if (!qdio_q_cache)
  404. return -ENOMEM;
  405. /* Check for OSA/FCP thin interrupts (bit 67). */
  406. DBF_EVENT("thinint:%1d",
  407. (css_general_characteristics.aif_osa) ? 1 : 0);
  408. /* Check for QEBSM support in general (bit 58). */
  409. DBF_EVENT("cssQEBSM:%1d", (qebsm_possible()) ? 1 : 0);
  410. return 0;
  411. }
  412. void qdio_setup_exit(void)
  413. {
  414. kmem_cache_destroy(qdio_q_cache);
  415. }