bcmsdh_sdmmc.c 17 KB

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  1. /*
  2. * Copyright (c) 2010 Broadcom Corporation
  3. *
  4. * Permission to use, copy, modify, and/or distribute this software for any
  5. * purpose with or without fee is hereby granted, provided that the above
  6. * copyright notice and this permission notice appear in all copies.
  7. *
  8. * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
  9. * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
  10. * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY
  11. * SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
  12. * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION
  13. * OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN
  14. * CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
  15. */
  16. #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
  17. #include <linux/types.h>
  18. #include <linux/netdevice.h>
  19. #include <linux/mmc/sdio.h>
  20. #include <linux/mmc/core.h>
  21. #include <linux/mmc/sdio_func.h>
  22. #include <linux/mmc/sdio_ids.h>
  23. #include <linux/mmc/card.h>
  24. #include <linux/suspend.h>
  25. #include <linux/errno.h>
  26. #include <linux/sched.h> /* request_irq() */
  27. #include <linux/module.h>
  28. #include <linux/platform_device.h>
  29. #include <net/cfg80211.h>
  30. #include <defs.h>
  31. #include <brcm_hw_ids.h>
  32. #include <brcmu_utils.h>
  33. #include <brcmu_wifi.h>
  34. #include "sdio_host.h"
  35. #include "dhd_dbg.h"
  36. #include "dhd_bus.h"
  37. #define SDIO_VENDOR_ID_BROADCOM 0x02d0
  38. #define DMA_ALIGN_MASK 0x03
  39. #define SDIO_DEVICE_ID_BROADCOM_43241 0x4324
  40. #define SDIO_DEVICE_ID_BROADCOM_4329 0x4329
  41. #define SDIO_DEVICE_ID_BROADCOM_4330 0x4330
  42. #define SDIO_DEVICE_ID_BROADCOM_4334 0x4334
  43. #define SDIO_FUNC1_BLOCKSIZE 64
  44. #define SDIO_FUNC2_BLOCKSIZE 512
  45. /* devices we support, null terminated */
  46. static const struct sdio_device_id brcmf_sdmmc_ids[] = {
  47. {SDIO_DEVICE(SDIO_VENDOR_ID_BROADCOM, SDIO_DEVICE_ID_BROADCOM_43241)},
  48. {SDIO_DEVICE(SDIO_VENDOR_ID_BROADCOM, SDIO_DEVICE_ID_BROADCOM_4329)},
  49. {SDIO_DEVICE(SDIO_VENDOR_ID_BROADCOM, SDIO_DEVICE_ID_BROADCOM_4330)},
  50. {SDIO_DEVICE(SDIO_VENDOR_ID_BROADCOM, SDIO_DEVICE_ID_BROADCOM_4334)},
  51. { /* end: all zeroes */ },
  52. };
  53. MODULE_DEVICE_TABLE(sdio, brcmf_sdmmc_ids);
  54. #ifdef CONFIG_BRCMFMAC_SDIO_OOB
  55. static struct list_head oobirq_lh;
  56. struct brcmf_sdio_oobirq {
  57. unsigned int irq;
  58. unsigned long flags;
  59. struct list_head list;
  60. };
  61. #endif /* CONFIG_BRCMFMAC_SDIO_OOB */
  62. static bool
  63. brcmf_pm_resume_error(struct brcmf_sdio_dev *sdiodev)
  64. {
  65. bool is_err = false;
  66. #ifdef CONFIG_PM_SLEEP
  67. is_err = atomic_read(&sdiodev->suspend);
  68. #endif
  69. return is_err;
  70. }
  71. static void
  72. brcmf_pm_resume_wait(struct brcmf_sdio_dev *sdiodev, wait_queue_head_t *wq)
  73. {
  74. #ifdef CONFIG_PM_SLEEP
  75. int retry = 0;
  76. while (atomic_read(&sdiodev->suspend) && retry++ != 30)
  77. wait_event_timeout(*wq, false, HZ/100);
  78. #endif
  79. }
  80. static inline int brcmf_sdioh_f0_write_byte(struct brcmf_sdio_dev *sdiodev,
  81. uint regaddr, u8 *byte)
  82. {
  83. struct sdio_func *sdfunc = sdiodev->func[0];
  84. int err_ret;
  85. /*
  86. * Can only directly write to some F0 registers.
  87. * Handle F2 enable/disable and Abort command
  88. * as a special case.
  89. */
  90. if (regaddr == SDIO_CCCR_IOEx) {
  91. sdfunc = sdiodev->func[2];
  92. if (sdfunc) {
  93. sdio_claim_host(sdfunc);
  94. if (*byte & SDIO_FUNC_ENABLE_2) {
  95. /* Enable Function 2 */
  96. err_ret = sdio_enable_func(sdfunc);
  97. if (err_ret)
  98. brcmf_dbg(ERROR,
  99. "enable F2 failed:%d\n",
  100. err_ret);
  101. } else {
  102. /* Disable Function 2 */
  103. err_ret = sdio_disable_func(sdfunc);
  104. if (err_ret)
  105. brcmf_dbg(ERROR,
  106. "Disable F2 failed:%d\n",
  107. err_ret);
  108. }
  109. sdio_release_host(sdfunc);
  110. }
  111. } else if ((regaddr == SDIO_CCCR_ABORT) ||
  112. (regaddr == SDIO_CCCR_IENx)) {
  113. sdfunc = kmemdup(sdiodev->func[0], sizeof(struct sdio_func),
  114. GFP_KERNEL);
  115. if (!sdfunc)
  116. return -ENOMEM;
  117. sdfunc->num = 0;
  118. sdio_claim_host(sdfunc);
  119. sdio_writeb(sdfunc, *byte, regaddr, &err_ret);
  120. sdio_release_host(sdfunc);
  121. kfree(sdfunc);
  122. } else if (regaddr < 0xF0) {
  123. brcmf_dbg(ERROR, "F0 Wr:0x%02x: write disallowed\n", regaddr);
  124. err_ret = -EPERM;
  125. } else {
  126. sdio_claim_host(sdfunc);
  127. sdio_f0_writeb(sdfunc, *byte, regaddr, &err_ret);
  128. sdio_release_host(sdfunc);
  129. }
  130. return err_ret;
  131. }
  132. int brcmf_sdioh_request_byte(struct brcmf_sdio_dev *sdiodev, uint rw, uint func,
  133. uint regaddr, u8 *byte)
  134. {
  135. int err_ret;
  136. brcmf_dbg(INFO, "rw=%d, func=%d, addr=0x%05x\n", rw, func, regaddr);
  137. brcmf_pm_resume_wait(sdiodev, &sdiodev->request_byte_wait);
  138. if (brcmf_pm_resume_error(sdiodev))
  139. return -EIO;
  140. if (rw && func == 0) {
  141. /* handle F0 separately */
  142. err_ret = brcmf_sdioh_f0_write_byte(sdiodev, regaddr, byte);
  143. } else {
  144. sdio_claim_host(sdiodev->func[func]);
  145. if (rw) /* CMD52 Write */
  146. sdio_writeb(sdiodev->func[func], *byte, regaddr,
  147. &err_ret);
  148. else if (func == 0) {
  149. *byte = sdio_f0_readb(sdiodev->func[func], regaddr,
  150. &err_ret);
  151. } else {
  152. *byte = sdio_readb(sdiodev->func[func], regaddr,
  153. &err_ret);
  154. }
  155. sdio_release_host(sdiodev->func[func]);
  156. }
  157. if (err_ret)
  158. brcmf_dbg(ERROR, "Failed to %s byte F%d:@0x%05x=%02x, Err: %d\n",
  159. rw ? "write" : "read", func, regaddr, *byte, err_ret);
  160. return err_ret;
  161. }
  162. int brcmf_sdioh_request_word(struct brcmf_sdio_dev *sdiodev,
  163. uint rw, uint func, uint addr, u32 *word,
  164. uint nbytes)
  165. {
  166. int err_ret = -EIO;
  167. if (func == 0) {
  168. brcmf_dbg(ERROR, "Only CMD52 allowed to F0\n");
  169. return -EINVAL;
  170. }
  171. brcmf_dbg(INFO, "rw=%d, func=%d, addr=0x%05x, nbytes=%d\n",
  172. rw, func, addr, nbytes);
  173. brcmf_pm_resume_wait(sdiodev, &sdiodev->request_word_wait);
  174. if (brcmf_pm_resume_error(sdiodev))
  175. return -EIO;
  176. /* Claim host controller */
  177. sdio_claim_host(sdiodev->func[func]);
  178. if (rw) { /* CMD52 Write */
  179. if (nbytes == 4)
  180. sdio_writel(sdiodev->func[func], *word, addr,
  181. &err_ret);
  182. else if (nbytes == 2)
  183. sdio_writew(sdiodev->func[func], (*word & 0xFFFF),
  184. addr, &err_ret);
  185. else
  186. brcmf_dbg(ERROR, "Invalid nbytes: %d\n", nbytes);
  187. } else { /* CMD52 Read */
  188. if (nbytes == 4)
  189. *word = sdio_readl(sdiodev->func[func], addr, &err_ret);
  190. else if (nbytes == 2)
  191. *word = sdio_readw(sdiodev->func[func], addr,
  192. &err_ret) & 0xFFFF;
  193. else
  194. brcmf_dbg(ERROR, "Invalid nbytes: %d\n", nbytes);
  195. }
  196. /* Release host controller */
  197. sdio_release_host(sdiodev->func[func]);
  198. if (err_ret)
  199. brcmf_dbg(ERROR, "Failed to %s word, Err: 0x%08x\n",
  200. rw ? "write" : "read", err_ret);
  201. return err_ret;
  202. }
  203. /* precondition: host controller is claimed */
  204. static int
  205. brcmf_sdioh_request_data(struct brcmf_sdio_dev *sdiodev, uint write, bool fifo,
  206. uint func, uint addr, struct sk_buff *pkt, uint pktlen)
  207. {
  208. int err_ret = 0;
  209. if ((write) && (!fifo)) {
  210. err_ret = sdio_memcpy_toio(sdiodev->func[func], addr,
  211. ((u8 *) (pkt->data)), pktlen);
  212. } else if (write) {
  213. err_ret = sdio_memcpy_toio(sdiodev->func[func], addr,
  214. ((u8 *) (pkt->data)), pktlen);
  215. } else if (fifo) {
  216. err_ret = sdio_readsb(sdiodev->func[func],
  217. ((u8 *) (pkt->data)), addr, pktlen);
  218. } else {
  219. err_ret = sdio_memcpy_fromio(sdiodev->func[func],
  220. ((u8 *) (pkt->data)),
  221. addr, pktlen);
  222. }
  223. return err_ret;
  224. }
  225. /*
  226. * This function takes a queue of packets. The packets on the queue
  227. * are assumed to be properly aligned by the caller.
  228. */
  229. int
  230. brcmf_sdioh_request_chain(struct brcmf_sdio_dev *sdiodev, uint fix_inc,
  231. uint write, uint func, uint addr,
  232. struct sk_buff_head *pktq)
  233. {
  234. bool fifo = (fix_inc == SDIOH_DATA_FIX);
  235. u32 SGCount = 0;
  236. int err_ret = 0;
  237. struct sk_buff *pkt;
  238. brcmf_dbg(TRACE, "Enter\n");
  239. brcmf_pm_resume_wait(sdiodev, &sdiodev->request_chain_wait);
  240. if (brcmf_pm_resume_error(sdiodev))
  241. return -EIO;
  242. /* Claim host controller */
  243. sdio_claim_host(sdiodev->func[func]);
  244. skb_queue_walk(pktq, pkt) {
  245. uint pkt_len = pkt->len;
  246. pkt_len += 3;
  247. pkt_len &= 0xFFFFFFFC;
  248. err_ret = brcmf_sdioh_request_data(sdiodev, write, fifo, func,
  249. addr, pkt, pkt_len);
  250. if (err_ret) {
  251. brcmf_dbg(ERROR, "%s FAILED %p[%d], addr=0x%05x, pkt_len=%d, ERR=0x%08x\n",
  252. write ? "TX" : "RX", pkt, SGCount, addr,
  253. pkt_len, err_ret);
  254. } else {
  255. brcmf_dbg(TRACE, "%s xfr'd %p[%d], addr=0x%05x, len=%d\n",
  256. write ? "TX" : "RX", pkt, SGCount, addr,
  257. pkt_len);
  258. }
  259. if (!fifo)
  260. addr += pkt_len;
  261. SGCount++;
  262. }
  263. /* Release host controller */
  264. sdio_release_host(sdiodev->func[func]);
  265. brcmf_dbg(TRACE, "Exit\n");
  266. return err_ret;
  267. }
  268. /*
  269. * This function takes a single DMA-able packet.
  270. */
  271. int brcmf_sdioh_request_buffer(struct brcmf_sdio_dev *sdiodev,
  272. uint fix_inc, uint write, uint func, uint addr,
  273. struct sk_buff *pkt)
  274. {
  275. int status;
  276. uint pkt_len;
  277. bool fifo = (fix_inc == SDIOH_DATA_FIX);
  278. brcmf_dbg(TRACE, "Enter\n");
  279. if (pkt == NULL)
  280. return -EINVAL;
  281. pkt_len = pkt->len;
  282. brcmf_pm_resume_wait(sdiodev, &sdiodev->request_buffer_wait);
  283. if (brcmf_pm_resume_error(sdiodev))
  284. return -EIO;
  285. /* Claim host controller */
  286. sdio_claim_host(sdiodev->func[func]);
  287. pkt_len += 3;
  288. pkt_len &= (uint)~3;
  289. status = brcmf_sdioh_request_data(sdiodev, write, fifo, func,
  290. addr, pkt, pkt_len);
  291. if (status) {
  292. brcmf_dbg(ERROR, "%s FAILED %p, addr=0x%05x, pkt_len=%d, ERR=0x%08x\n",
  293. write ? "TX" : "RX", pkt, addr, pkt_len, status);
  294. } else {
  295. brcmf_dbg(TRACE, "%s xfr'd %p, addr=0x%05x, len=%d\n",
  296. write ? "TX" : "RX", pkt, addr, pkt_len);
  297. }
  298. /* Release host controller */
  299. sdio_release_host(sdiodev->func[func]);
  300. return status;
  301. }
  302. static int brcmf_sdioh_get_cisaddr(struct brcmf_sdio_dev *sdiodev, u32 regaddr)
  303. {
  304. /* read 24 bits and return valid 17 bit addr */
  305. int i, ret;
  306. u32 scratch, regdata;
  307. __le32 scratch_le;
  308. u8 *ptr = (u8 *)&scratch_le;
  309. for (i = 0; i < 3; i++) {
  310. regdata = brcmf_sdio_regrl(sdiodev, regaddr, &ret);
  311. if (ret != 0)
  312. brcmf_dbg(ERROR, "Can't read!\n");
  313. *ptr++ = (u8) regdata;
  314. regaddr++;
  315. }
  316. /* Only the lower 17-bits are valid */
  317. scratch = le32_to_cpu(scratch_le);
  318. scratch &= 0x0001FFFF;
  319. return scratch;
  320. }
  321. static int brcmf_sdioh_enablefuncs(struct brcmf_sdio_dev *sdiodev)
  322. {
  323. int err_ret;
  324. u32 fbraddr;
  325. u8 func;
  326. brcmf_dbg(TRACE, "\n");
  327. /* Get the Card's common CIS address */
  328. sdiodev->func_cis_ptr[0] = brcmf_sdioh_get_cisaddr(sdiodev,
  329. SDIO_CCCR_CIS);
  330. brcmf_dbg(INFO, "Card's Common CIS Ptr = 0x%x\n",
  331. sdiodev->func_cis_ptr[0]);
  332. /* Get the Card's function CIS (for each function) */
  333. for (fbraddr = SDIO_FBR_BASE(1), func = 1;
  334. func <= sdiodev->num_funcs; func++, fbraddr += SDIOD_FBR_SIZE) {
  335. sdiodev->func_cis_ptr[func] =
  336. brcmf_sdioh_get_cisaddr(sdiodev, SDIO_FBR_CIS + fbraddr);
  337. brcmf_dbg(INFO, "Function %d CIS Ptr = 0x%x\n",
  338. func, sdiodev->func_cis_ptr[func]);
  339. }
  340. /* Enable Function 1 */
  341. sdio_claim_host(sdiodev->func[1]);
  342. err_ret = sdio_enable_func(sdiodev->func[1]);
  343. sdio_release_host(sdiodev->func[1]);
  344. if (err_ret)
  345. brcmf_dbg(ERROR, "Failed to enable F1 Err: 0x%08x\n", err_ret);
  346. return false;
  347. }
  348. /*
  349. * Public entry points & extern's
  350. */
  351. int brcmf_sdioh_attach(struct brcmf_sdio_dev *sdiodev)
  352. {
  353. int err_ret = 0;
  354. brcmf_dbg(TRACE, "\n");
  355. sdiodev->num_funcs = 2;
  356. sdio_claim_host(sdiodev->func[1]);
  357. err_ret = sdio_set_block_size(sdiodev->func[1], SDIO_FUNC1_BLOCKSIZE);
  358. sdio_release_host(sdiodev->func[1]);
  359. if (err_ret) {
  360. brcmf_dbg(ERROR, "Failed to set F1 blocksize\n");
  361. goto out;
  362. }
  363. sdio_claim_host(sdiodev->func[2]);
  364. err_ret = sdio_set_block_size(sdiodev->func[2], SDIO_FUNC2_BLOCKSIZE);
  365. sdio_release_host(sdiodev->func[2]);
  366. if (err_ret) {
  367. brcmf_dbg(ERROR, "Failed to set F2 blocksize\n");
  368. goto out;
  369. }
  370. brcmf_sdioh_enablefuncs(sdiodev);
  371. out:
  372. brcmf_dbg(TRACE, "Done\n");
  373. return err_ret;
  374. }
  375. void brcmf_sdioh_detach(struct brcmf_sdio_dev *sdiodev)
  376. {
  377. brcmf_dbg(TRACE, "\n");
  378. /* Disable Function 2 */
  379. sdio_claim_host(sdiodev->func[2]);
  380. sdio_disable_func(sdiodev->func[2]);
  381. sdio_release_host(sdiodev->func[2]);
  382. /* Disable Function 1 */
  383. sdio_claim_host(sdiodev->func[1]);
  384. sdio_disable_func(sdiodev->func[1]);
  385. sdio_release_host(sdiodev->func[1]);
  386. }
  387. #ifdef CONFIG_BRCMFMAC_SDIO_OOB
  388. static int brcmf_sdio_getintrcfg(struct brcmf_sdio_dev *sdiodev)
  389. {
  390. struct brcmf_sdio_oobirq *oobirq_entry;
  391. if (list_empty(&oobirq_lh)) {
  392. brcmf_dbg(ERROR, "no valid oob irq resource\n");
  393. return -ENXIO;
  394. }
  395. oobirq_entry = list_first_entry(&oobirq_lh, struct brcmf_sdio_oobirq,
  396. list);
  397. sdiodev->irq = oobirq_entry->irq;
  398. sdiodev->irq_flags = oobirq_entry->flags;
  399. list_del(&oobirq_entry->list);
  400. kfree(oobirq_entry);
  401. return 0;
  402. }
  403. #else
  404. static inline int brcmf_sdio_getintrcfg(struct brcmf_sdio_dev *sdiodev)
  405. {
  406. return 0;
  407. }
  408. #endif /* CONFIG_BRCMFMAC_SDIO_OOB */
  409. static int brcmf_ops_sdio_probe(struct sdio_func *func,
  410. const struct sdio_device_id *id)
  411. {
  412. int ret = 0;
  413. struct brcmf_sdio_dev *sdiodev;
  414. struct brcmf_bus *bus_if;
  415. brcmf_dbg(TRACE, "Enter\n");
  416. brcmf_dbg(TRACE, "func->class=%x\n", func->class);
  417. brcmf_dbg(TRACE, "sdio_vendor: 0x%04x\n", func->vendor);
  418. brcmf_dbg(TRACE, "sdio_device: 0x%04x\n", func->device);
  419. brcmf_dbg(TRACE, "Function#: 0x%04x\n", func->num);
  420. if (func->num == 1) {
  421. if (dev_get_drvdata(&func->card->dev)) {
  422. brcmf_dbg(ERROR, "card private drvdata occupied\n");
  423. return -ENXIO;
  424. }
  425. bus_if = kzalloc(sizeof(struct brcmf_bus), GFP_KERNEL);
  426. if (!bus_if)
  427. return -ENOMEM;
  428. sdiodev = kzalloc(sizeof(struct brcmf_sdio_dev), GFP_KERNEL);
  429. if (!sdiodev) {
  430. kfree(bus_if);
  431. return -ENOMEM;
  432. }
  433. sdiodev->func[0] = func;
  434. sdiodev->func[1] = func;
  435. sdiodev->bus_if = bus_if;
  436. bus_if->bus_priv.sdio = sdiodev;
  437. bus_if->type = SDIO_BUS;
  438. bus_if->align = BRCMF_SDALIGN;
  439. dev_set_drvdata(&func->card->dev, sdiodev);
  440. atomic_set(&sdiodev->suspend, false);
  441. init_waitqueue_head(&sdiodev->request_byte_wait);
  442. init_waitqueue_head(&sdiodev->request_word_wait);
  443. init_waitqueue_head(&sdiodev->request_chain_wait);
  444. init_waitqueue_head(&sdiodev->request_buffer_wait);
  445. }
  446. if (func->num == 2) {
  447. sdiodev = dev_get_drvdata(&func->card->dev);
  448. if ((!sdiodev) || (sdiodev->func[1]->card != func->card))
  449. return -ENODEV;
  450. ret = brcmf_sdio_getintrcfg(sdiodev);
  451. if (ret)
  452. return ret;
  453. sdiodev->func[2] = func;
  454. bus_if = sdiodev->bus_if;
  455. sdiodev->dev = &func->dev;
  456. dev_set_drvdata(&func->dev, bus_if);
  457. brcmf_dbg(TRACE, "F2 found, calling brcmf_sdio_probe...\n");
  458. ret = brcmf_sdio_probe(sdiodev);
  459. }
  460. return ret;
  461. }
  462. static void brcmf_ops_sdio_remove(struct sdio_func *func)
  463. {
  464. struct brcmf_bus *bus_if;
  465. struct brcmf_sdio_dev *sdiodev;
  466. brcmf_dbg(TRACE, "Enter\n");
  467. brcmf_dbg(INFO, "func->class=%x\n", func->class);
  468. brcmf_dbg(INFO, "sdio_vendor: 0x%04x\n", func->vendor);
  469. brcmf_dbg(INFO, "sdio_device: 0x%04x\n", func->device);
  470. brcmf_dbg(INFO, "Function#: 0x%04x\n", func->num);
  471. if (func->num == 2) {
  472. bus_if = dev_get_drvdata(&func->dev);
  473. sdiodev = bus_if->bus_priv.sdio;
  474. brcmf_dbg(TRACE, "F2 found, calling brcmf_sdio_remove...\n");
  475. brcmf_sdio_remove(sdiodev);
  476. dev_set_drvdata(&func->card->dev, NULL);
  477. dev_set_drvdata(&func->dev, NULL);
  478. kfree(bus_if);
  479. kfree(sdiodev);
  480. }
  481. }
  482. #ifdef CONFIG_PM_SLEEP
  483. static int brcmf_sdio_suspend(struct device *dev)
  484. {
  485. mmc_pm_flag_t sdio_flags;
  486. struct sdio_func *func = dev_to_sdio_func(dev);
  487. struct brcmf_sdio_dev *sdiodev = dev_get_drvdata(&func->card->dev);
  488. int ret = 0;
  489. brcmf_dbg(TRACE, "\n");
  490. atomic_set(&sdiodev->suspend, true);
  491. sdio_flags = sdio_get_host_pm_caps(sdiodev->func[1]);
  492. if (!(sdio_flags & MMC_PM_KEEP_POWER)) {
  493. brcmf_dbg(ERROR, "Host can't keep power while suspended\n");
  494. return -EINVAL;
  495. }
  496. ret = sdio_set_host_pm_flags(sdiodev->func[1], MMC_PM_KEEP_POWER);
  497. if (ret) {
  498. brcmf_dbg(ERROR, "Failed to set pm_flags\n");
  499. return ret;
  500. }
  501. brcmf_sdio_wdtmr_enable(sdiodev, false);
  502. return ret;
  503. }
  504. static int brcmf_sdio_resume(struct device *dev)
  505. {
  506. struct sdio_func *func = dev_to_sdio_func(dev);
  507. struct brcmf_sdio_dev *sdiodev = dev_get_drvdata(&func->card->dev);
  508. brcmf_sdio_wdtmr_enable(sdiodev, true);
  509. atomic_set(&sdiodev->suspend, false);
  510. return 0;
  511. }
  512. static const struct dev_pm_ops brcmf_sdio_pm_ops = {
  513. .suspend = brcmf_sdio_suspend,
  514. .resume = brcmf_sdio_resume,
  515. };
  516. #endif /* CONFIG_PM_SLEEP */
  517. static struct sdio_driver brcmf_sdmmc_driver = {
  518. .probe = brcmf_ops_sdio_probe,
  519. .remove = brcmf_ops_sdio_remove,
  520. .name = "brcmfmac",
  521. .id_table = brcmf_sdmmc_ids,
  522. #ifdef CONFIG_PM_SLEEP
  523. .drv = {
  524. .pm = &brcmf_sdio_pm_ops,
  525. },
  526. #endif /* CONFIG_PM_SLEEP */
  527. };
  528. #ifdef CONFIG_BRCMFMAC_SDIO_OOB
  529. static int brcmf_sdio_pd_probe(struct platform_device *pdev)
  530. {
  531. struct resource *res;
  532. struct brcmf_sdio_oobirq *oobirq_entry;
  533. int i, ret;
  534. INIT_LIST_HEAD(&oobirq_lh);
  535. for (i = 0; ; i++) {
  536. res = platform_get_resource(pdev, IORESOURCE_IRQ, i);
  537. if (!res)
  538. break;
  539. oobirq_entry = kzalloc(sizeof(struct brcmf_sdio_oobirq),
  540. GFP_KERNEL);
  541. oobirq_entry->irq = res->start;
  542. oobirq_entry->flags = res->flags & IRQF_TRIGGER_MASK;
  543. list_add_tail(&oobirq_entry->list, &oobirq_lh);
  544. }
  545. if (i == 0)
  546. return -ENXIO;
  547. ret = sdio_register_driver(&brcmf_sdmmc_driver);
  548. if (ret)
  549. brcmf_dbg(ERROR, "sdio_register_driver failed: %d\n", ret);
  550. return ret;
  551. }
  552. static struct platform_driver brcmf_sdio_pd = {
  553. .probe = brcmf_sdio_pd_probe,
  554. .driver = {
  555. .name = "brcmf_sdio_pd"
  556. }
  557. };
  558. void brcmf_sdio_exit(void)
  559. {
  560. brcmf_dbg(TRACE, "Enter\n");
  561. sdio_unregister_driver(&brcmf_sdmmc_driver);
  562. platform_driver_unregister(&brcmf_sdio_pd);
  563. }
  564. void brcmf_sdio_init(void)
  565. {
  566. int ret;
  567. brcmf_dbg(TRACE, "Enter\n");
  568. ret = platform_driver_register(&brcmf_sdio_pd);
  569. if (ret)
  570. brcmf_dbg(ERROR, "platform_driver_register failed: %d\n", ret);
  571. }
  572. #else
  573. void brcmf_sdio_exit(void)
  574. {
  575. brcmf_dbg(TRACE, "Enter\n");
  576. sdio_unregister_driver(&brcmf_sdmmc_driver);
  577. }
  578. void brcmf_sdio_init(void)
  579. {
  580. int ret;
  581. brcmf_dbg(TRACE, "Enter\n");
  582. ret = sdio_register_driver(&brcmf_sdmmc_driver);
  583. if (ret)
  584. brcmf_dbg(ERROR, "sdio_register_driver failed: %d\n", ret);
  585. }
  586. #endif /* CONFIG_BRCMFMAC_SDIO_OOB */