bcmsdh.c 16 KB

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  1. /*
  2. * BCMSDH interface glue
  3. * implement bcmsdh API for SDIOH driver
  4. *
  5. * Copyright (C) 1999-2010, Broadcom Corporation
  6. *
  7. * Unless you and Broadcom execute a separate written software license
  8. * agreement governing use of this software, this software is licensed to you
  9. * under the terms of the GNU General Public License version 2 (the "GPL"),
  10. * available at http://www.broadcom.com/licenses/GPLv2.php, with the
  11. * following added to such license:
  12. *
  13. * As a special exception, the copyright holders of this software give you
  14. * permission to link this software with independent modules, and to copy and
  15. * distribute the resulting executable under terms of your choice, provided that
  16. * you also meet, for each linked independent module, the terms and conditions of
  17. * the license of that module. An independent module is a module which is not
  18. * derived from this software. The special exception does not apply to any
  19. * modifications of the software.
  20. *
  21. * Notwithstanding the above, under no circumstances may you combine this
  22. * software in any way with any other Broadcom software provided under a license
  23. * other than the GPL, without Broadcom's express prior written consent.
  24. *
  25. * $Id: bcmsdh.c,v 1.35.2.1.4.8.6.13 2010/04/06 03:26:57 Exp $
  26. */
  27. /* ****************** BCMSDH Interface Functions *************************** */
  28. #include <typedefs.h>
  29. #include <bcmdevs.h>
  30. #include <bcmendian.h>
  31. #include <bcmutils.h>
  32. #include <hndsoc.h>
  33. #include <siutils.h>
  34. #include <osl.h>
  35. #include <bcmsdh.h> /* BRCM API for SDIO clients (such as wl, dhd) */
  36. #include <bcmsdbus.h> /* common SDIO/controller interface */
  37. #include <sbsdio.h> /* BRCM sdio device core */
  38. #include <sdio.h> /* sdio spec */
  39. #define SDIOH_API_ACCESS_RETRY_LIMIT 2
  40. const uint bcmsdh_msglevel = BCMSDH_ERROR_VAL;
  41. struct bcmsdh_info
  42. {
  43. bool init_success; /* underlying driver successfully attached */
  44. void *sdioh; /* handler for sdioh */
  45. uint32 vendevid; /* Target Vendor and Device ID on SD bus */
  46. osl_t *osh;
  47. bool regfail; /* Save status of last reg_read/reg_write call */
  48. uint32 sbwad; /* Save backplane window address */
  49. };
  50. /* local copy of bcm sd handler */
  51. bcmsdh_info_t * l_bcmsdh = NULL;
  52. #if defined(OOB_INTR_ONLY) && defined(HW_OOB)
  53. extern int
  54. sdioh_enable_hw_oob_intr(void *sdioh, bool enable);
  55. void
  56. bcmsdh_enable_hw_oob_intr(bcmsdh_info_t *sdh, bool enable)
  57. {
  58. sdioh_enable_hw_oob_intr(sdh->sdioh, enable);
  59. }
  60. #endif
  61. bcmsdh_info_t *
  62. bcmsdh_attach(osl_t *osh, void *cfghdl, void **regsva, uint irq)
  63. {
  64. bcmsdh_info_t *bcmsdh;
  65. if ((bcmsdh = (bcmsdh_info_t *)MALLOC(osh, sizeof(bcmsdh_info_t))) == NULL) {
  66. BCMSDH_ERROR(("bcmsdh_attach: out of memory, malloced %d bytes\n", MALLOCED(osh)));
  67. return NULL;
  68. }
  69. bzero((char *)bcmsdh, sizeof(bcmsdh_info_t));
  70. /* save the handler locally */
  71. l_bcmsdh = bcmsdh;
  72. if (!(bcmsdh->sdioh = sdioh_attach(osh, cfghdl, irq))) {
  73. bcmsdh_detach(osh, bcmsdh);
  74. return NULL;
  75. }
  76. bcmsdh->osh = osh;
  77. bcmsdh->init_success = TRUE;
  78. *regsva = (uint32 *)SI_ENUM_BASE;
  79. /* Report the BAR, to fix if needed */
  80. bcmsdh->sbwad = SI_ENUM_BASE;
  81. return bcmsdh;
  82. }
  83. int
  84. bcmsdh_detach(osl_t *osh, void *sdh)
  85. {
  86. bcmsdh_info_t *bcmsdh = (bcmsdh_info_t *)sdh;
  87. if (bcmsdh != NULL) {
  88. if (bcmsdh->sdioh) {
  89. sdioh_detach(osh, bcmsdh->sdioh);
  90. bcmsdh->sdioh = NULL;
  91. }
  92. MFREE(osh, bcmsdh, sizeof(bcmsdh_info_t));
  93. }
  94. l_bcmsdh = NULL;
  95. return 0;
  96. }
  97. int
  98. bcmsdh_iovar_op(void *sdh, const char *name,
  99. void *params, int plen, void *arg, int len, bool set)
  100. {
  101. bcmsdh_info_t *bcmsdh = (bcmsdh_info_t *)sdh;
  102. return sdioh_iovar_op(bcmsdh->sdioh, name, params, plen, arg, len, set);
  103. }
  104. bool
  105. bcmsdh_intr_query(void *sdh)
  106. {
  107. bcmsdh_info_t *bcmsdh = (bcmsdh_info_t *)sdh;
  108. SDIOH_API_RC status;
  109. bool on;
  110. ASSERT(bcmsdh);
  111. status = sdioh_interrupt_query(bcmsdh->sdioh, &on);
  112. if (SDIOH_API_SUCCESS(status))
  113. return FALSE;
  114. else
  115. return on;
  116. }
  117. int
  118. bcmsdh_intr_enable(void *sdh)
  119. {
  120. bcmsdh_info_t *bcmsdh = (bcmsdh_info_t *)sdh;
  121. SDIOH_API_RC status;
  122. ASSERT(bcmsdh);
  123. status = sdioh_interrupt_set(bcmsdh->sdioh, TRUE);
  124. return (SDIOH_API_SUCCESS(status) ? 0 : BCME_ERROR);
  125. }
  126. int
  127. bcmsdh_intr_disable(void *sdh)
  128. {
  129. bcmsdh_info_t *bcmsdh = (bcmsdh_info_t *)sdh;
  130. SDIOH_API_RC status;
  131. ASSERT(bcmsdh);
  132. status = sdioh_interrupt_set(bcmsdh->sdioh, FALSE);
  133. return (SDIOH_API_SUCCESS(status) ? 0 : BCME_ERROR);
  134. }
  135. int
  136. bcmsdh_intr_reg(void *sdh, bcmsdh_cb_fn_t fn, void *argh)
  137. {
  138. bcmsdh_info_t *bcmsdh = (bcmsdh_info_t *)sdh;
  139. SDIOH_API_RC status;
  140. ASSERT(bcmsdh);
  141. status = sdioh_interrupt_register(bcmsdh->sdioh, fn, argh);
  142. return (SDIOH_API_SUCCESS(status) ? 0 : BCME_ERROR);
  143. }
  144. int
  145. bcmsdh_intr_dereg(void *sdh)
  146. {
  147. bcmsdh_info_t *bcmsdh = (bcmsdh_info_t *)sdh;
  148. SDIOH_API_RC status;
  149. ASSERT(bcmsdh);
  150. status = sdioh_interrupt_deregister(bcmsdh->sdioh);
  151. return (SDIOH_API_SUCCESS(status) ? 0 : BCME_ERROR);
  152. }
  153. #if defined(DHD_DEBUG)
  154. bool
  155. bcmsdh_intr_pending(void *sdh)
  156. {
  157. bcmsdh_info_t *bcmsdh = (bcmsdh_info_t *)sdh;
  158. ASSERT(sdh);
  159. return sdioh_interrupt_pending(bcmsdh->sdioh);
  160. }
  161. #endif
  162. int
  163. bcmsdh_devremove_reg(void *sdh, bcmsdh_cb_fn_t fn, void *argh)
  164. {
  165. ASSERT(sdh);
  166. /* don't support yet */
  167. return BCME_UNSUPPORTED;
  168. }
  169. uint8
  170. bcmsdh_cfg_read(void *sdh, uint fnc_num, uint32 addr, int *err)
  171. {
  172. bcmsdh_info_t *bcmsdh = (bcmsdh_info_t *)sdh;
  173. SDIOH_API_RC status;
  174. #ifdef SDIOH_API_ACCESS_RETRY_LIMIT
  175. int32 retry = 0;
  176. #endif
  177. uint8 data = 0;
  178. if (!bcmsdh)
  179. bcmsdh = l_bcmsdh;
  180. ASSERT(bcmsdh->init_success);
  181. #ifdef SDIOH_API_ACCESS_RETRY_LIMIT
  182. do {
  183. if (retry) /* wait for 1 ms till bus get settled down */
  184. OSL_DELAY(1000);
  185. #endif
  186. status = sdioh_cfg_read(bcmsdh->sdioh, fnc_num, addr, (uint8 *)&data);
  187. #ifdef SDIOH_API_ACCESS_RETRY_LIMIT
  188. } while (!SDIOH_API_SUCCESS(status) && (retry++ < SDIOH_API_ACCESS_RETRY_LIMIT));
  189. #endif
  190. if (err)
  191. *err = (SDIOH_API_SUCCESS(status) ? 0 : BCME_SDIO_ERROR);
  192. BCMSDH_INFO(("%s:fun = %d, addr = 0x%x, uint8data = 0x%x\n", __FUNCTION__,
  193. fnc_num, addr, data));
  194. return data;
  195. }
  196. void
  197. bcmsdh_cfg_write(void *sdh, uint fnc_num, uint32 addr, uint8 data, int *err)
  198. {
  199. bcmsdh_info_t *bcmsdh = (bcmsdh_info_t *)sdh;
  200. SDIOH_API_RC status;
  201. #ifdef SDIOH_API_ACCESS_RETRY_LIMIT
  202. int32 retry = 0;
  203. #endif
  204. if (!bcmsdh)
  205. bcmsdh = l_bcmsdh;
  206. ASSERT(bcmsdh->init_success);
  207. #ifdef SDIOH_API_ACCESS_RETRY_LIMIT
  208. do {
  209. if (retry) /* wait for 1 ms till bus get settled down */
  210. OSL_DELAY(1000);
  211. #endif
  212. status = sdioh_cfg_write(bcmsdh->sdioh, fnc_num, addr, (uint8 *)&data);
  213. #ifdef SDIOH_API_ACCESS_RETRY_LIMIT
  214. } while (!SDIOH_API_SUCCESS(status) && (retry++ < SDIOH_API_ACCESS_RETRY_LIMIT));
  215. #endif
  216. if (err)
  217. *err = SDIOH_API_SUCCESS(status) ? 0 : BCME_SDIO_ERROR;
  218. BCMSDH_INFO(("%s:fun = %d, addr = 0x%x, uint8data = 0x%x\n", __FUNCTION__,
  219. fnc_num, addr, data));
  220. }
  221. uint32
  222. bcmsdh_cfg_read_word(void *sdh, uint fnc_num, uint32 addr, int *err)
  223. {
  224. bcmsdh_info_t *bcmsdh = (bcmsdh_info_t *)sdh;
  225. SDIOH_API_RC status;
  226. uint32 data = 0;
  227. if (!bcmsdh)
  228. bcmsdh = l_bcmsdh;
  229. ASSERT(bcmsdh->init_success);
  230. status = sdioh_request_word(bcmsdh->sdioh, SDIOH_CMD_TYPE_NORMAL, SDIOH_READ, fnc_num,
  231. addr, &data, 4);
  232. if (err)
  233. *err = (SDIOH_API_SUCCESS(status) ? 0 : BCME_SDIO_ERROR);
  234. BCMSDH_INFO(("%s:fun = %d, addr = 0x%x, uint32data = 0x%x\n", __FUNCTION__,
  235. fnc_num, addr, data));
  236. return data;
  237. }
  238. void
  239. bcmsdh_cfg_write_word(void *sdh, uint fnc_num, uint32 addr, uint32 data, int *err)
  240. {
  241. bcmsdh_info_t *bcmsdh = (bcmsdh_info_t *)sdh;
  242. SDIOH_API_RC status;
  243. if (!bcmsdh)
  244. bcmsdh = l_bcmsdh;
  245. ASSERT(bcmsdh->init_success);
  246. status = sdioh_request_word(bcmsdh->sdioh, SDIOH_CMD_TYPE_NORMAL, SDIOH_WRITE, fnc_num,
  247. addr, &data, 4);
  248. if (err)
  249. *err = (SDIOH_API_SUCCESS(status) ? 0 : BCME_SDIO_ERROR);
  250. BCMSDH_INFO(("%s:fun = %d, addr = 0x%x, uint32data = 0x%x\n", __FUNCTION__, fnc_num,
  251. addr, data));
  252. }
  253. int
  254. bcmsdh_cis_read(void *sdh, uint func, uint8 *cis, uint length)
  255. {
  256. bcmsdh_info_t *bcmsdh = (bcmsdh_info_t *)sdh;
  257. SDIOH_API_RC status;
  258. uint8 *tmp_buf, *tmp_ptr;
  259. uint8 *ptr;
  260. bool ascii = func & ~0xf;
  261. func &= 0x7;
  262. if (!bcmsdh)
  263. bcmsdh = l_bcmsdh;
  264. ASSERT(bcmsdh->init_success);
  265. ASSERT(cis);
  266. ASSERT(length <= SBSDIO_CIS_SIZE_LIMIT);
  267. status = sdioh_cis_read(bcmsdh->sdioh, func, cis, length);
  268. if (ascii) {
  269. /* Move binary bits to tmp and format them into the provided buffer. */
  270. if ((tmp_buf = (uint8 *)MALLOC(bcmsdh->osh, length)) == NULL) {
  271. BCMSDH_ERROR(("%s: out of memory\n", __FUNCTION__));
  272. return BCME_NOMEM;
  273. }
  274. bcopy(cis, tmp_buf, length);
  275. for (tmp_ptr = tmp_buf, ptr = cis; ptr < (cis + length - 4); tmp_ptr++) {
  276. ptr += sprintf((char*)ptr, "%.2x ", *tmp_ptr & 0xff);
  277. if ((((tmp_ptr - tmp_buf) + 1) & 0xf) == 0)
  278. ptr += sprintf((char *)ptr, "\n");
  279. }
  280. MFREE(bcmsdh->osh, tmp_buf, length);
  281. }
  282. return (SDIOH_API_SUCCESS(status) ? 0 : BCME_ERROR);
  283. }
  284. static int
  285. bcmsdhsdio_set_sbaddr_window(void *sdh, uint32 address)
  286. {
  287. int err = 0;
  288. bcmsdh_info_t *bcmsdh = (bcmsdh_info_t *)sdh;
  289. bcmsdh_cfg_write(bcmsdh, SDIO_FUNC_1, SBSDIO_FUNC1_SBADDRLOW,
  290. (address >> 8) & SBSDIO_SBADDRLOW_MASK, &err);
  291. if (!err)
  292. bcmsdh_cfg_write(bcmsdh, SDIO_FUNC_1, SBSDIO_FUNC1_SBADDRMID,
  293. (address >> 16) & SBSDIO_SBADDRMID_MASK, &err);
  294. if (!err)
  295. bcmsdh_cfg_write(bcmsdh, SDIO_FUNC_1, SBSDIO_FUNC1_SBADDRHIGH,
  296. (address >> 24) & SBSDIO_SBADDRHIGH_MASK, &err);
  297. return err;
  298. }
  299. uint32
  300. bcmsdh_reg_read(void *sdh, uint32 addr, uint size)
  301. {
  302. bcmsdh_info_t *bcmsdh = (bcmsdh_info_t *)sdh;
  303. SDIOH_API_RC status;
  304. uint32 word = 0;
  305. uint bar0 = addr & ~SBSDIO_SB_OFT_ADDR_MASK;
  306. BCMSDH_INFO(("%s:fun = 1, addr = 0x%x, ", __FUNCTION__, addr));
  307. if (!bcmsdh)
  308. bcmsdh = l_bcmsdh;
  309. ASSERT(bcmsdh->init_success);
  310. if (bar0 != bcmsdh->sbwad) {
  311. if (bcmsdhsdio_set_sbaddr_window(bcmsdh, bar0))
  312. return 0xFFFFFFFF;
  313. bcmsdh->sbwad = bar0;
  314. }
  315. addr &= SBSDIO_SB_OFT_ADDR_MASK;
  316. if (size == 4)
  317. addr |= SBSDIO_SB_ACCESS_2_4B_FLAG;
  318. status = sdioh_request_word(bcmsdh->sdioh, SDIOH_CMD_TYPE_NORMAL,
  319. SDIOH_READ, SDIO_FUNC_1, addr, &word, size);
  320. bcmsdh->regfail = !(SDIOH_API_SUCCESS(status));
  321. BCMSDH_INFO(("uint32data = 0x%x\n", word));
  322. /* if ok, return appropriately masked word */
  323. if (SDIOH_API_SUCCESS(status)) {
  324. switch (size) {
  325. case sizeof(uint8):
  326. return (word & 0xff);
  327. case sizeof(uint16):
  328. return (word & 0xffff);
  329. case sizeof(uint32):
  330. return word;
  331. default:
  332. bcmsdh->regfail = TRUE;
  333. }
  334. }
  335. /* otherwise, bad sdio access or invalid size */
  336. BCMSDH_ERROR(("%s: error reading addr 0x%04x size %d\n", __FUNCTION__, addr, size));
  337. return 0xFFFFFFFF;
  338. }
  339. uint32
  340. bcmsdh_reg_write(void *sdh, uint32 addr, uint size, uint32 data)
  341. {
  342. bcmsdh_info_t *bcmsdh = (bcmsdh_info_t *)sdh;
  343. SDIOH_API_RC status;
  344. uint bar0 = addr & ~SBSDIO_SB_OFT_ADDR_MASK;
  345. int err = 0;
  346. BCMSDH_INFO(("%s:fun = 1, addr = 0x%x, uint%ddata = 0x%x\n",
  347. __FUNCTION__, addr, size*8, data));
  348. if (!bcmsdh)
  349. bcmsdh = l_bcmsdh;
  350. ASSERT(bcmsdh->init_success);
  351. if (bar0 != bcmsdh->sbwad) {
  352. if ((err = bcmsdhsdio_set_sbaddr_window(bcmsdh, bar0)))
  353. return err;
  354. bcmsdh->sbwad = bar0;
  355. }
  356. addr &= SBSDIO_SB_OFT_ADDR_MASK;
  357. if (size == 4)
  358. addr |= SBSDIO_SB_ACCESS_2_4B_FLAG;
  359. status = sdioh_request_word(bcmsdh->sdioh, SDIOH_CMD_TYPE_NORMAL, SDIOH_WRITE, SDIO_FUNC_1,
  360. addr, &data, size);
  361. bcmsdh->regfail = !(SDIOH_API_SUCCESS(status));
  362. if (SDIOH_API_SUCCESS(status))
  363. return 0;
  364. BCMSDH_ERROR(("%s: error writing 0x%08x to addr 0x%04x size %d\n",
  365. __FUNCTION__, data, addr, size));
  366. return 0xFFFFFFFF;
  367. }
  368. bool
  369. bcmsdh_regfail(void *sdh)
  370. {
  371. return ((bcmsdh_info_t *)sdh)->regfail;
  372. }
  373. int
  374. bcmsdh_recv_buf(void *sdh, uint32 addr, uint fn, uint flags,
  375. uint8 *buf, uint nbytes, void *pkt,
  376. bcmsdh_cmplt_fn_t complete, void *handle)
  377. {
  378. bcmsdh_info_t *bcmsdh = (bcmsdh_info_t *)sdh;
  379. SDIOH_API_RC status;
  380. uint incr_fix;
  381. uint width;
  382. uint bar0 = addr & ~SBSDIO_SB_OFT_ADDR_MASK;
  383. int err = 0;
  384. ASSERT(bcmsdh);
  385. ASSERT(bcmsdh->init_success);
  386. BCMSDH_INFO(("%s:fun = %d, addr = 0x%x, size = %d\n",
  387. __FUNCTION__, fn, addr, nbytes));
  388. /* Async not implemented yet */
  389. ASSERT(!(flags & SDIO_REQ_ASYNC));
  390. if (flags & SDIO_REQ_ASYNC)
  391. return BCME_UNSUPPORTED;
  392. if (bar0 != bcmsdh->sbwad) {
  393. if ((err = bcmsdhsdio_set_sbaddr_window(bcmsdh, bar0)))
  394. return err;
  395. bcmsdh->sbwad = bar0;
  396. }
  397. addr &= SBSDIO_SB_OFT_ADDR_MASK;
  398. incr_fix = (flags & SDIO_REQ_FIXED) ? SDIOH_DATA_FIX : SDIOH_DATA_INC;
  399. width = (flags & SDIO_REQ_4BYTE) ? 4 : 2;
  400. if (width == 4)
  401. addr |= SBSDIO_SB_ACCESS_2_4B_FLAG;
  402. status = sdioh_request_buffer(bcmsdh->sdioh, SDIOH_DATA_PIO, incr_fix,
  403. SDIOH_READ, fn, addr, width, nbytes, buf, pkt);
  404. return (SDIOH_API_SUCCESS(status) ? 0 : BCME_SDIO_ERROR);
  405. }
  406. int
  407. bcmsdh_send_buf(void *sdh, uint32 addr, uint fn, uint flags,
  408. uint8 *buf, uint nbytes, void *pkt,
  409. bcmsdh_cmplt_fn_t complete, void *handle)
  410. {
  411. bcmsdh_info_t *bcmsdh = (bcmsdh_info_t *)sdh;
  412. SDIOH_API_RC status;
  413. uint incr_fix;
  414. uint width;
  415. uint bar0 = addr & ~SBSDIO_SB_OFT_ADDR_MASK;
  416. int err = 0;
  417. ASSERT(bcmsdh);
  418. ASSERT(bcmsdh->init_success);
  419. BCMSDH_INFO(("%s:fun = %d, addr = 0x%x, size = %d\n",
  420. __FUNCTION__, fn, addr, nbytes));
  421. /* Async not implemented yet */
  422. ASSERT(!(flags & SDIO_REQ_ASYNC));
  423. if (flags & SDIO_REQ_ASYNC)
  424. return BCME_UNSUPPORTED;
  425. if (bar0 != bcmsdh->sbwad) {
  426. if ((err = bcmsdhsdio_set_sbaddr_window(bcmsdh, bar0)))
  427. return err;
  428. bcmsdh->sbwad = bar0;
  429. }
  430. addr &= SBSDIO_SB_OFT_ADDR_MASK;
  431. incr_fix = (flags & SDIO_REQ_FIXED) ? SDIOH_DATA_FIX : SDIOH_DATA_INC;
  432. width = (flags & SDIO_REQ_4BYTE) ? 4 : 2;
  433. if (width == 4)
  434. addr |= SBSDIO_SB_ACCESS_2_4B_FLAG;
  435. status = sdioh_request_buffer(bcmsdh->sdioh, SDIOH_DATA_PIO, incr_fix,
  436. SDIOH_WRITE, fn, addr, width, nbytes, buf, pkt);
  437. return (SDIOH_API_SUCCESS(status) ? 0 : BCME_ERROR);
  438. }
  439. int
  440. bcmsdh_rwdata(void *sdh, uint rw, uint32 addr, uint8 *buf, uint nbytes)
  441. {
  442. bcmsdh_info_t *bcmsdh = (bcmsdh_info_t *)sdh;
  443. SDIOH_API_RC status;
  444. ASSERT(bcmsdh);
  445. ASSERT(bcmsdh->init_success);
  446. ASSERT((addr & SBSDIO_SBWINDOW_MASK) == 0);
  447. addr &= SBSDIO_SB_OFT_ADDR_MASK;
  448. addr |= SBSDIO_SB_ACCESS_2_4B_FLAG;
  449. status = sdioh_request_buffer(bcmsdh->sdioh, SDIOH_DATA_PIO, SDIOH_DATA_INC,
  450. (rw ? SDIOH_WRITE : SDIOH_READ), SDIO_FUNC_1,
  451. addr, 4, nbytes, buf, NULL);
  452. return (SDIOH_API_SUCCESS(status) ? 0 : BCME_ERROR);
  453. }
  454. int
  455. bcmsdh_abort(void *sdh, uint fn)
  456. {
  457. bcmsdh_info_t *bcmsdh = (bcmsdh_info_t *)sdh;
  458. return sdioh_abort(bcmsdh->sdioh, fn);
  459. }
  460. int
  461. bcmsdh_start(void *sdh, int stage)
  462. {
  463. bcmsdh_info_t *bcmsdh = (bcmsdh_info_t *)sdh;
  464. return sdioh_start(bcmsdh->sdioh, stage);
  465. }
  466. int
  467. bcmsdh_stop(void *sdh)
  468. {
  469. bcmsdh_info_t *bcmsdh = (bcmsdh_info_t *)sdh;
  470. return sdioh_stop(bcmsdh->sdioh);
  471. }
  472. int
  473. bcmsdh_query_device(void *sdh)
  474. {
  475. bcmsdh_info_t *bcmsdh = (bcmsdh_info_t *)sdh;
  476. bcmsdh->vendevid = (VENDOR_BROADCOM << 16) | 0;
  477. return (bcmsdh->vendevid);
  478. }
  479. uint
  480. bcmsdh_query_iofnum(void *sdh)
  481. {
  482. bcmsdh_info_t *bcmsdh = (bcmsdh_info_t *)sdh;
  483. if (!bcmsdh)
  484. bcmsdh = l_bcmsdh;
  485. return (sdioh_query_iofnum(bcmsdh->sdioh));
  486. }
  487. int
  488. bcmsdh_reset(bcmsdh_info_t *sdh)
  489. {
  490. bcmsdh_info_t *bcmsdh = (bcmsdh_info_t *)sdh;
  491. return sdioh_sdio_reset(bcmsdh->sdioh);
  492. }
  493. void *bcmsdh_get_sdioh(bcmsdh_info_t *sdh)
  494. {
  495. ASSERT(sdh);
  496. return sdh->sdioh;
  497. }
  498. /* Function to pass device-status bits to DHD. */
  499. uint32
  500. bcmsdh_get_dstatus(void *sdh)
  501. {
  502. return 0;
  503. }
  504. uint32
  505. bcmsdh_cur_sbwad(void *sdh)
  506. {
  507. bcmsdh_info_t *bcmsdh = (bcmsdh_info_t *)sdh;
  508. if (!bcmsdh)
  509. bcmsdh = l_bcmsdh;
  510. return (bcmsdh->sbwad);
  511. }
  512. void
  513. bcmsdh_chipinfo(void *sdh, uint32 chip, uint32 chiprev)
  514. {
  515. return;
  516. }