omap3_mmc.c 13 KB

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  1. /*
  2. * (C) Copyright 2008
  3. * Texas Instruments, <www.ti.com>
  4. * Syed Mohammed Khasim <khasim@ti.com>
  5. *
  6. * See file CREDITS for list of people who contributed to this
  7. * project.
  8. *
  9. * This program is free software; you can redistribute it and/or
  10. * modify it under the terms of the GNU General Public License as
  11. * published by the Free Software Foundation's version 2 of
  12. * the License.
  13. *
  14. * This program is distributed in the hope that it will be useful,
  15. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  16. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  17. * GNU General Public License for more details.
  18. *
  19. * You should have received a copy of the GNU General Public License
  20. * along with this program; if not, write to the Free Software
  21. * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
  22. * MA 02111-1307 USA
  23. */
  24. #include <config.h>
  25. #include <common.h>
  26. #include <fat.h>
  27. #include <mmc.h>
  28. #include <part.h>
  29. #include <i2c.h>
  30. const unsigned short mmc_transspeed_val[15][4] = {
  31. {CLKD(10, 1), CLKD(10, 10), CLKD(10, 100), CLKD(10, 1000)},
  32. {CLKD(12, 1), CLKD(12, 10), CLKD(12, 100), CLKD(12, 1000)},
  33. {CLKD(13, 1), CLKD(13, 10), CLKD(13, 100), CLKD(13, 1000)},
  34. {CLKD(15, 1), CLKD(15, 10), CLKD(15, 100), CLKD(15, 1000)},
  35. {CLKD(20, 1), CLKD(20, 10), CLKD(20, 100), CLKD(20, 1000)},
  36. {CLKD(26, 1), CLKD(26, 10), CLKD(26, 100), CLKD(26, 1000)},
  37. {CLKD(30, 1), CLKD(30, 10), CLKD(30, 100), CLKD(30, 1000)},
  38. {CLKD(35, 1), CLKD(35, 10), CLKD(35, 100), CLKD(35, 1000)},
  39. {CLKD(40, 1), CLKD(40, 10), CLKD(40, 100), CLKD(40, 1000)},
  40. {CLKD(45, 1), CLKD(45, 10), CLKD(45, 100), CLKD(45, 1000)},
  41. {CLKD(52, 1), CLKD(52, 10), CLKD(52, 100), CLKD(52, 1000)},
  42. {CLKD(55, 1), CLKD(55, 10), CLKD(55, 100), CLKD(55, 1000)},
  43. {CLKD(60, 1), CLKD(60, 10), CLKD(60, 100), CLKD(60, 1000)},
  44. {CLKD(70, 1), CLKD(70, 10), CLKD(70, 100), CLKD(70, 1000)},
  45. {CLKD(80, 1), CLKD(80, 10), CLKD(80, 100), CLKD(80, 1000)}
  46. };
  47. mmc_card_data cur_card_data;
  48. static block_dev_desc_t mmc_blk_dev;
  49. block_dev_desc_t *mmc_get_dev(int dev)
  50. {
  51. return (block_dev_desc_t *) &mmc_blk_dev;
  52. }
  53. void twl4030_mmc_config(void)
  54. {
  55. unsigned char data;
  56. data = 0x20;
  57. i2c_write(0x4B, 0x82, 1, &data, 1);
  58. data = 0x2;
  59. i2c_write(0x4B, 0x85, 1, &data, 1);
  60. }
  61. unsigned char mmc_board_init(void)
  62. {
  63. unsigned int value = 0;
  64. twl4030_mmc_config();
  65. value = CONTROL_PBIAS_LITE;
  66. CONTROL_PBIAS_LITE = value | (1 << 2) | (1 << 1) | (1 << 9);
  67. value = CONTROL_DEV_CONF0;
  68. CONTROL_DEV_CONF0 = value | (1 << 24);
  69. return 1;
  70. }
  71. void mmc_init_stream(void)
  72. {
  73. volatile unsigned int mmc_stat;
  74. OMAP_HSMMC_CON |= INIT_INITSTREAM;
  75. OMAP_HSMMC_CMD = MMC_CMD0;
  76. do {
  77. mmc_stat = OMAP_HSMMC_STAT;
  78. } while (!(mmc_stat & CC_MASK));
  79. OMAP_HSMMC_STAT = CC_MASK;
  80. OMAP_HSMMC_CMD = MMC_CMD0;
  81. do {
  82. mmc_stat = OMAP_HSMMC_STAT;
  83. } while (!(mmc_stat & CC_MASK));
  84. OMAP_HSMMC_STAT = OMAP_HSMMC_STAT;
  85. OMAP_HSMMC_CON &= ~INIT_INITSTREAM;
  86. }
  87. unsigned char mmc_clock_config(unsigned int iclk, unsigned short clk_div)
  88. {
  89. unsigned int val;
  90. mmc_reg_out(OMAP_HSMMC_SYSCTL, (ICE_MASK | DTO_MASK | CEN_MASK),
  91. (ICE_STOP | DTO_15THDTO | CEN_DISABLE));
  92. switch (iclk) {
  93. case CLK_INITSEQ:
  94. val = MMC_INIT_SEQ_CLK / 2;
  95. break;
  96. case CLK_400KHZ:
  97. val = MMC_400kHz_CLK;
  98. break;
  99. case CLK_MISC:
  100. val = clk_div;
  101. break;
  102. default:
  103. return 0;
  104. }
  105. mmc_reg_out(OMAP_HSMMC_SYSCTL,
  106. ICE_MASK | CLKD_MASK, (val << CLKD_OFFSET) | ICE_OSCILLATE);
  107. while ((OMAP_HSMMC_SYSCTL & ICS_MASK) == ICS_NOTREADY) ;
  108. OMAP_HSMMC_SYSCTL |= CEN_ENABLE;
  109. return 1;
  110. }
  111. unsigned char mmc_init_setup(void)
  112. {
  113. unsigned int reg_val;
  114. mmc_board_init();
  115. OMAP_HSMMC_SYSCONFIG |= MMC_SOFTRESET;
  116. while ((OMAP_HSMMC_SYSSTATUS & RESETDONE) == 0) ;
  117. OMAP_HSMMC_SYSCTL |= SOFTRESETALL;
  118. while ((OMAP_HSMMC_SYSCTL & SOFTRESETALL) != 0x0) ;
  119. OMAP_HSMMC_HCTL = DTW_1_BITMODE | SDBP_PWROFF | SDVS_3V0;
  120. OMAP_HSMMC_CAPA |= VS30_3V0SUP | VS18_1V8SUP;
  121. reg_val = OMAP_HSMMC_CON & RESERVED_MASK;
  122. OMAP_HSMMC_CON = CTPL_MMC_SD | reg_val | WPP_ACTIVEHIGH |
  123. CDP_ACTIVEHIGH | MIT_CTO | DW8_1_4BITMODE | MODE_FUNC |
  124. STR_BLOCK | HR_NOHOSTRESP | INIT_NOINIT | NOOPENDRAIN;
  125. mmc_clock_config(CLK_INITSEQ, 0);
  126. OMAP_HSMMC_HCTL |= SDBP_PWRON;
  127. OMAP_HSMMC_IE = 0x307f0033;
  128. mmc_init_stream();
  129. return 1;
  130. }
  131. unsigned char mmc_send_cmd(unsigned int cmd, unsigned int arg,
  132. unsigned int *response)
  133. {
  134. volatile unsigned int mmc_stat;
  135. while ((OMAP_HSMMC_PSTATE & DATI_MASK) == DATI_CMDDIS) ;
  136. OMAP_HSMMC_BLK = BLEN_512BYTESLEN | NBLK_STPCNT;
  137. OMAP_HSMMC_STAT = 0xFFFFFFFF;
  138. OMAP_HSMMC_ARG = arg;
  139. OMAP_HSMMC_CMD = cmd | CMD_TYPE_NORMAL | CICE_NOCHECK |
  140. CCCE_NOCHECK | MSBS_SGLEBLK | ACEN_DISABLE | BCE_DISABLE |
  141. DE_DISABLE;
  142. while (1) {
  143. do {
  144. mmc_stat = OMAP_HSMMC_STAT;
  145. } while (mmc_stat == 0);
  146. if ((mmc_stat & ERRI_MASK) != 0)
  147. return (unsigned char) mmc_stat;
  148. if (mmc_stat & CC_MASK) {
  149. OMAP_HSMMC_STAT = CC_MASK;
  150. response[0] = OMAP_HSMMC_RSP10;
  151. if ((cmd & RSP_TYPE_MASK) == RSP_TYPE_LGHT136) {
  152. response[1] = OMAP_HSMMC_RSP32;
  153. response[2] = OMAP_HSMMC_RSP54;
  154. response[3] = OMAP_HSMMC_RSP76;
  155. }
  156. break;
  157. }
  158. }
  159. return 1;
  160. }
  161. unsigned char mmc_read_data(unsigned int *output_buf)
  162. {
  163. volatile unsigned int mmc_stat;
  164. unsigned int read_count = 0;
  165. /*
  166. * Start Polled Read
  167. */
  168. while (1) {
  169. do {
  170. mmc_stat = OMAP_HSMMC_STAT;
  171. } while (mmc_stat == 0);
  172. if ((mmc_stat & ERRI_MASK) != 0)
  173. return (unsigned char) mmc_stat;
  174. if (mmc_stat & BRR_MASK) {
  175. unsigned int k;
  176. OMAP_HSMMC_STAT |= BRR_MASK;
  177. for (k = 0; k < MMCSD_SECTOR_SIZE / 4; k++) {
  178. *output_buf = OMAP_HSMMC_DATA;
  179. output_buf++;
  180. read_count += 4;
  181. }
  182. }
  183. if (mmc_stat & BWR_MASK)
  184. OMAP_HSMMC_STAT |= BWR_MASK;
  185. if (mmc_stat & TC_MASK) {
  186. OMAP_HSMMC_STAT |= TC_MASK;
  187. break;
  188. }
  189. }
  190. return 1;
  191. }
  192. unsigned char mmc_detect_card(mmc_card_data *mmc_card_cur)
  193. {
  194. unsigned char err;
  195. unsigned int argument = 0;
  196. unsigned int ocr_value, ocr_recvd, ret_cmd41, hcs_val;
  197. unsigned int resp[4];
  198. unsigned short retry_cnt = 2000;
  199. /* Set to Initialization Clock */
  200. err = mmc_clock_config(CLK_400KHZ, 0);
  201. if (err != 1)
  202. return err;
  203. mmc_card_cur->RCA = MMC_RELATIVE_CARD_ADDRESS;
  204. argument = 0x00000000;
  205. ocr_value = (0x1FF << 15);
  206. err = mmc_send_cmd(MMC_CMD0, argument, resp);
  207. if (err != 1)
  208. return err;
  209. argument = SD_CMD8_CHECK_PATTERN | SD_CMD8_2_7_3_6_V_RANGE;
  210. err = mmc_send_cmd(MMC_SDCMD8, argument, resp);
  211. hcs_val = (err == 1) ?
  212. MMC_OCR_REG_HOST_CAPACITY_SUPPORT_SECTOR :
  213. MMC_OCR_REG_HOST_CAPACITY_SUPPORT_BYTE;
  214. argument = 0x0000 << 16;
  215. err = mmc_send_cmd(MMC_CMD55, argument, resp);
  216. if (err == 1) {
  217. mmc_card_cur->card_type = SD_CARD;
  218. ocr_value |= hcs_val;
  219. ret_cmd41 = MMC_ACMD41;
  220. } else {
  221. mmc_card_cur->card_type = MMC_CARD;
  222. ocr_value |= MMC_OCR_REG_ACCESS_MODE_SECTOR;
  223. ret_cmd41 = MMC_CMD1;
  224. OMAP_HSMMC_CON &= ~OD;
  225. OMAP_HSMMC_CON |= OPENDRAIN;
  226. }
  227. argument = ocr_value;
  228. err = mmc_send_cmd(ret_cmd41, argument, resp);
  229. if (err != 1)
  230. return err;
  231. ocr_recvd = ((mmc_resp_r3 *) resp)->ocr;
  232. while (!(ocr_recvd & (0x1 << 31)) && (retry_cnt > 0)) {
  233. retry_cnt--;
  234. if (mmc_card_cur->card_type == SD_CARD) {
  235. argument = 0x0000 << 16;
  236. err = mmc_send_cmd(MMC_CMD55, argument, resp);
  237. }
  238. argument = ocr_value;
  239. err = mmc_send_cmd(ret_cmd41, argument, resp);
  240. if (err != 1)
  241. return err;
  242. ocr_recvd = ((mmc_resp_r3 *) resp)->ocr;
  243. }
  244. if (!(ocr_recvd & (0x1 << 31)))
  245. return 0;
  246. if (mmc_card_cur->card_type == MMC_CARD) {
  247. if ((ocr_recvd & MMC_OCR_REG_ACCESS_MODE_MASK) ==
  248. MMC_OCR_REG_ACCESS_MODE_SECTOR) {
  249. mmc_card_cur->mode = SECTOR_MODE;
  250. } else {
  251. mmc_card_cur->mode = BYTE_MODE;
  252. }
  253. ocr_recvd &= ~MMC_OCR_REG_ACCESS_MODE_MASK;
  254. } else {
  255. if ((ocr_recvd & MMC_OCR_REG_HOST_CAPACITY_SUPPORT_MASK)
  256. == MMC_OCR_REG_HOST_CAPACITY_SUPPORT_SECTOR) {
  257. mmc_card_cur->mode = SECTOR_MODE;
  258. } else {
  259. mmc_card_cur->mode = BYTE_MODE;
  260. }
  261. ocr_recvd &= ~MMC_OCR_REG_HOST_CAPACITY_SUPPORT_MASK;
  262. }
  263. ocr_recvd &= ~(0x1 << 31);
  264. if (!(ocr_recvd & ocr_value))
  265. return 0;
  266. err = mmc_send_cmd(MMC_CMD2, argument, resp);
  267. if (err != 1)
  268. return err;
  269. if (mmc_card_cur->card_type == MMC_CARD) {
  270. argument = mmc_card_cur->RCA << 16;
  271. err = mmc_send_cmd(MMC_CMD3, argument, resp);
  272. if (err != 1)
  273. return err;
  274. } else {
  275. argument = 0x00000000;
  276. err = mmc_send_cmd(MMC_SDCMD3, argument, resp);
  277. if (err != 1)
  278. return err;
  279. mmc_card_cur->RCA = ((mmc_resp_r6 *) resp)->newpublishedrca;
  280. }
  281. OMAP_HSMMC_CON &= ~OD;
  282. OMAP_HSMMC_CON |= NOOPENDRAIN;
  283. return 1;
  284. }
  285. unsigned char mmc_read_cardsize(mmc_card_data *mmc_dev_data,
  286. mmc_csd_reg_t *cur_csd)
  287. {
  288. mmc_extended_csd_reg_t ext_csd;
  289. unsigned int size, count, blk_len, blk_no, card_size, argument;
  290. unsigned char err;
  291. unsigned int resp[4];
  292. if (mmc_dev_data->mode == SECTOR_MODE) {
  293. if (mmc_dev_data->card_type == SD_CARD) {
  294. card_size =
  295. (((mmc_sd2_csd_reg_t *) cur_csd)->
  296. c_size_lsb & MMC_SD2_CSD_C_SIZE_LSB_MASK) |
  297. ((((mmc_sd2_csd_reg_t *) cur_csd)->
  298. c_size_msb & MMC_SD2_CSD_C_SIZE_MSB_MASK)
  299. << MMC_SD2_CSD_C_SIZE_MSB_OFFSET);
  300. mmc_dev_data->size = card_size * 1024;
  301. if (mmc_dev_data->size == 0)
  302. return 0;
  303. } else {
  304. argument = 0x00000000;
  305. err = mmc_send_cmd(MMC_CMD8, argument, resp);
  306. if (err != 1)
  307. return err;
  308. err = mmc_read_data((unsigned int *) &ext_csd);
  309. if (err != 1)
  310. return err;
  311. mmc_dev_data->size = ext_csd.sectorcount;
  312. if (mmc_dev_data->size == 0)
  313. mmc_dev_data->size = 8388608;
  314. }
  315. } else {
  316. if (cur_csd->c_size_mult >= 8)
  317. return 0;
  318. if (cur_csd->read_bl_len >= 12)
  319. return 0;
  320. /* Compute size */
  321. count = 1 << (cur_csd->c_size_mult + 2);
  322. card_size = (cur_csd->c_size_lsb & MMC_CSD_C_SIZE_LSB_MASK) |
  323. ((cur_csd->c_size_msb & MMC_CSD_C_SIZE_MSB_MASK)
  324. << MMC_CSD_C_SIZE_MSB_OFFSET);
  325. blk_no = (card_size + 1) * count;
  326. blk_len = 1 << cur_csd->read_bl_len;
  327. size = blk_no * blk_len;
  328. mmc_dev_data->size = size / MMCSD_SECTOR_SIZE;
  329. if (mmc_dev_data->size == 0)
  330. return 0;
  331. }
  332. return 1;
  333. }
  334. unsigned char omap_mmc_read_sect(unsigned int start_sec, unsigned int num_bytes,
  335. mmc_card_data *mmc_c,
  336. unsigned long *output_buf)
  337. {
  338. unsigned char err;
  339. unsigned int argument;
  340. unsigned int resp[4];
  341. unsigned int num_sec_val =
  342. (num_bytes + (MMCSD_SECTOR_SIZE - 1)) / MMCSD_SECTOR_SIZE;
  343. unsigned int sec_inc_val;
  344. if (num_sec_val == 0)
  345. return 1;
  346. if (mmc_c->mode == SECTOR_MODE) {
  347. argument = start_sec;
  348. sec_inc_val = 1;
  349. } else {
  350. argument = start_sec * MMCSD_SECTOR_SIZE;
  351. sec_inc_val = MMCSD_SECTOR_SIZE;
  352. }
  353. while (num_sec_val) {
  354. err = mmc_send_cmd(MMC_CMD17, argument, resp);
  355. if (err != 1)
  356. return err;
  357. err = mmc_read_data((unsigned int *) output_buf);
  358. if (err != 1)
  359. return err;
  360. output_buf += (MMCSD_SECTOR_SIZE / 4);
  361. argument += sec_inc_val;
  362. num_sec_val--;
  363. }
  364. return 1;
  365. }
  366. unsigned char configure_mmc(mmc_card_data *mmc_card_cur)
  367. {
  368. unsigned char ret_val;
  369. unsigned int argument;
  370. unsigned int resp[4];
  371. unsigned int trans_clk, trans_fact, trans_unit, retries = 2;
  372. mmc_csd_reg_t Card_CSD;
  373. unsigned char trans_speed;
  374. ret_val = mmc_init_setup();
  375. if (ret_val != 1)
  376. return ret_val;
  377. do {
  378. ret_val = mmc_detect_card(mmc_card_cur);
  379. retries--;
  380. } while ((retries > 0) && (ret_val != 1));
  381. argument = mmc_card_cur->RCA << 16;
  382. ret_val = mmc_send_cmd(MMC_CMD9, argument, resp);
  383. if (ret_val != 1)
  384. return ret_val;
  385. ((unsigned int *) &Card_CSD)[3] = resp[3];
  386. ((unsigned int *) &Card_CSD)[2] = resp[2];
  387. ((unsigned int *) &Card_CSD)[1] = resp[1];
  388. ((unsigned int *) &Card_CSD)[0] = resp[0];
  389. if (mmc_card_cur->card_type == MMC_CARD)
  390. mmc_card_cur->version = Card_CSD.spec_vers;
  391. trans_speed = Card_CSD.tran_speed;
  392. ret_val = mmc_send_cmd(MMC_CMD4, MMC_DSR_DEFAULT << 16, resp);
  393. if (ret_val != 1)
  394. return ret_val;
  395. trans_unit = trans_speed & MMC_CSD_TRAN_SPEED_UNIT_MASK;
  396. trans_fact = trans_speed & MMC_CSD_TRAN_SPEED_FACTOR_MASK;
  397. if (trans_unit > MMC_CSD_TRAN_SPEED_UNIT_100MHZ)
  398. return 0;
  399. if ((trans_fact < MMC_CSD_TRAN_SPEED_FACTOR_1_0) ||
  400. (trans_fact > MMC_CSD_TRAN_SPEED_FACTOR_8_0))
  401. return 0;
  402. trans_unit >>= 0;
  403. trans_fact >>= 3;
  404. trans_clk = mmc_transspeed_val[trans_fact - 1][trans_unit] * 2;
  405. ret_val = mmc_clock_config(CLK_MISC, trans_clk);
  406. if (ret_val != 1)
  407. return ret_val;
  408. argument = mmc_card_cur->RCA << 16;
  409. ret_val = mmc_send_cmd(MMC_CMD7_SELECT, argument, resp);
  410. if (ret_val != 1)
  411. return ret_val;
  412. /* Configure the block length to 512 bytes */
  413. argument = MMCSD_SECTOR_SIZE;
  414. ret_val = mmc_send_cmd(MMC_CMD16, argument, resp);
  415. if (ret_val != 1)
  416. return ret_val;
  417. /* get the card size in sectors */
  418. ret_val = mmc_read_cardsize(mmc_card_cur, &Card_CSD);
  419. if (ret_val != 1)
  420. return ret_val;
  421. return 1;
  422. }
  423. unsigned long mmc_bread(int dev_num, unsigned long blknr, lbaint_t blkcnt,
  424. void *dst)
  425. {
  426. omap_mmc_read_sect(blknr, (blkcnt * MMCSD_SECTOR_SIZE), &cur_card_data,
  427. (unsigned long *) dst);
  428. return 1;
  429. }
  430. int mmc_init(int verbose)
  431. {
  432. if (configure_mmc(&cur_card_data) != 1)
  433. return 1;
  434. mmc_blk_dev.if_type = IF_TYPE_MMC;
  435. mmc_blk_dev.part_type = PART_TYPE_DOS;
  436. mmc_blk_dev.dev = 0;
  437. mmc_blk_dev.lun = 0;
  438. mmc_blk_dev.type = 0;
  439. /* FIXME fill in the correct size (is set to 32MByte) */
  440. mmc_blk_dev.blksz = MMCSD_SECTOR_SIZE;
  441. mmc_blk_dev.lba = 0x10000;
  442. mmc_blk_dev.removable = 0;
  443. mmc_blk_dev.block_read = mmc_bread;
  444. fat_register_device(&mmc_blk_dev, 1);
  445. return 0;
  446. }
  447. int mmc_read(ulong src, uchar *dst, int size)
  448. {
  449. return 0;
  450. }
  451. int mmc_write(uchar *src, ulong dst, int size)
  452. {
  453. return 0;
  454. }
  455. int mmc2info(ulong addr)
  456. {
  457. return 0;
  458. }