sd.c 29 KB

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  1. /*
  2. * linux/drivers/mmc/core/sd.c
  3. *
  4. * Copyright (C) 2003-2004 Russell King, All Rights Reserved.
  5. * SD support Copyright (C) 2004 Ian Molton, All Rights Reserved.
  6. * Copyright (C) 2005-2007 Pierre Ossman, All Rights Reserved.
  7. *
  8. * This program is free software; you can redistribute it and/or modify
  9. * it under the terms of the GNU General Public License version 2 as
  10. * published by the Free Software Foundation.
  11. */
  12. #include <linux/err.h>
  13. #include <linux/slab.h>
  14. #include <linux/stat.h>
  15. #include <linux/mmc/host.h>
  16. #include <linux/mmc/card.h>
  17. #include <linux/mmc/mmc.h>
  18. #include <linux/mmc/sd.h>
  19. #include "core.h"
  20. #include "bus.h"
  21. #include "mmc_ops.h"
  22. #include "sd.h"
  23. #include "sd_ops.h"
  24. static const unsigned int tran_exp[] = {
  25. 10000, 100000, 1000000, 10000000,
  26. 0, 0, 0, 0
  27. };
  28. static const unsigned char tran_mant[] = {
  29. 0, 10, 12, 13, 15, 20, 25, 30,
  30. 35, 40, 45, 50, 55, 60, 70, 80,
  31. };
  32. static const unsigned int tacc_exp[] = {
  33. 1, 10, 100, 1000, 10000, 100000, 1000000, 10000000,
  34. };
  35. static const unsigned int tacc_mant[] = {
  36. 0, 10, 12, 13, 15, 20, 25, 30,
  37. 35, 40, 45, 50, 55, 60, 70, 80,
  38. };
  39. #define UNSTUFF_BITS(resp,start,size) \
  40. ({ \
  41. const int __size = size; \
  42. const u32 __mask = (__size < 32 ? 1 << __size : 0) - 1; \
  43. const int __off = 3 - ((start) / 32); \
  44. const int __shft = (start) & 31; \
  45. u32 __res; \
  46. \
  47. __res = resp[__off] >> __shft; \
  48. if (__size + __shft > 32) \
  49. __res |= resp[__off-1] << ((32 - __shft) % 32); \
  50. __res & __mask; \
  51. })
  52. /*
  53. * Given the decoded CSD structure, decode the raw CID to our CID structure.
  54. */
  55. void mmc_decode_cid(struct mmc_card *card)
  56. {
  57. u32 *resp = card->raw_cid;
  58. memset(&card->cid, 0, sizeof(struct mmc_cid));
  59. /*
  60. * SD doesn't currently have a version field so we will
  61. * have to assume we can parse this.
  62. */
  63. card->cid.manfid = UNSTUFF_BITS(resp, 120, 8);
  64. card->cid.oemid = UNSTUFF_BITS(resp, 104, 16);
  65. card->cid.prod_name[0] = UNSTUFF_BITS(resp, 96, 8);
  66. card->cid.prod_name[1] = UNSTUFF_BITS(resp, 88, 8);
  67. card->cid.prod_name[2] = UNSTUFF_BITS(resp, 80, 8);
  68. card->cid.prod_name[3] = UNSTUFF_BITS(resp, 72, 8);
  69. card->cid.prod_name[4] = UNSTUFF_BITS(resp, 64, 8);
  70. card->cid.hwrev = UNSTUFF_BITS(resp, 60, 4);
  71. card->cid.fwrev = UNSTUFF_BITS(resp, 56, 4);
  72. card->cid.serial = UNSTUFF_BITS(resp, 24, 32);
  73. card->cid.year = UNSTUFF_BITS(resp, 12, 8);
  74. card->cid.month = UNSTUFF_BITS(resp, 8, 4);
  75. card->cid.year += 2000; /* SD cards year offset */
  76. }
  77. /*
  78. * Given a 128-bit response, decode to our card CSD structure.
  79. */
  80. static int mmc_decode_csd(struct mmc_card *card)
  81. {
  82. struct mmc_csd *csd = &card->csd;
  83. unsigned int e, m, csd_struct;
  84. u32 *resp = card->raw_csd;
  85. csd_struct = UNSTUFF_BITS(resp, 126, 2);
  86. switch (csd_struct) {
  87. case 0:
  88. m = UNSTUFF_BITS(resp, 115, 4);
  89. e = UNSTUFF_BITS(resp, 112, 3);
  90. csd->tacc_ns = (tacc_exp[e] * tacc_mant[m] + 9) / 10;
  91. csd->tacc_clks = UNSTUFF_BITS(resp, 104, 8) * 100;
  92. m = UNSTUFF_BITS(resp, 99, 4);
  93. e = UNSTUFF_BITS(resp, 96, 3);
  94. csd->max_dtr = tran_exp[e] * tran_mant[m];
  95. csd->cmdclass = UNSTUFF_BITS(resp, 84, 12);
  96. e = UNSTUFF_BITS(resp, 47, 3);
  97. m = UNSTUFF_BITS(resp, 62, 12);
  98. csd->capacity = (1 + m) << (e + 2);
  99. csd->read_blkbits = UNSTUFF_BITS(resp, 80, 4);
  100. csd->read_partial = UNSTUFF_BITS(resp, 79, 1);
  101. csd->write_misalign = UNSTUFF_BITS(resp, 78, 1);
  102. csd->read_misalign = UNSTUFF_BITS(resp, 77, 1);
  103. csd->r2w_factor = UNSTUFF_BITS(resp, 26, 3);
  104. csd->write_blkbits = UNSTUFF_BITS(resp, 22, 4);
  105. csd->write_partial = UNSTUFF_BITS(resp, 21, 1);
  106. if (UNSTUFF_BITS(resp, 46, 1)) {
  107. csd->erase_size = 1;
  108. } else if (csd->write_blkbits >= 9) {
  109. csd->erase_size = UNSTUFF_BITS(resp, 39, 7) + 1;
  110. csd->erase_size <<= csd->write_blkbits - 9;
  111. }
  112. break;
  113. case 1:
  114. /*
  115. * This is a block-addressed SDHC or SDXC card. Most
  116. * interesting fields are unused and have fixed
  117. * values. To avoid getting tripped by buggy cards,
  118. * we assume those fixed values ourselves.
  119. */
  120. mmc_card_set_blockaddr(card);
  121. csd->tacc_ns = 0; /* Unused */
  122. csd->tacc_clks = 0; /* Unused */
  123. m = UNSTUFF_BITS(resp, 99, 4);
  124. e = UNSTUFF_BITS(resp, 96, 3);
  125. csd->max_dtr = tran_exp[e] * tran_mant[m];
  126. csd->cmdclass = UNSTUFF_BITS(resp, 84, 12);
  127. csd->c_size = UNSTUFF_BITS(resp, 48, 22);
  128. /* SDXC cards have a minimum C_SIZE of 0x00FFFF */
  129. if (csd->c_size >= 0xFFFF)
  130. mmc_card_set_ext_capacity(card);
  131. m = UNSTUFF_BITS(resp, 48, 22);
  132. csd->capacity = (1 + m) << 10;
  133. csd->read_blkbits = 9;
  134. csd->read_partial = 0;
  135. csd->write_misalign = 0;
  136. csd->read_misalign = 0;
  137. csd->r2w_factor = 4; /* Unused */
  138. csd->write_blkbits = 9;
  139. csd->write_partial = 0;
  140. csd->erase_size = 1;
  141. break;
  142. default:
  143. pr_err("%s: unrecognised CSD structure version %d\n",
  144. mmc_hostname(card->host), csd_struct);
  145. return -EINVAL;
  146. }
  147. card->erase_size = csd->erase_size;
  148. return 0;
  149. }
  150. /*
  151. * Given a 64-bit response, decode to our card SCR structure.
  152. */
  153. static int mmc_decode_scr(struct mmc_card *card)
  154. {
  155. struct sd_scr *scr = &card->scr;
  156. unsigned int scr_struct;
  157. u32 resp[4];
  158. resp[3] = card->raw_scr[1];
  159. resp[2] = card->raw_scr[0];
  160. scr_struct = UNSTUFF_BITS(resp, 60, 4);
  161. if (scr_struct != 0) {
  162. pr_err("%s: unrecognised SCR structure version %d\n",
  163. mmc_hostname(card->host), scr_struct);
  164. return -EINVAL;
  165. }
  166. scr->sda_vsn = UNSTUFF_BITS(resp, 56, 4);
  167. scr->bus_widths = UNSTUFF_BITS(resp, 48, 4);
  168. if (scr->sda_vsn == SCR_SPEC_VER_2)
  169. /* Check if Physical Layer Spec v3.0 is supported */
  170. scr->sda_spec3 = UNSTUFF_BITS(resp, 47, 1);
  171. if (UNSTUFF_BITS(resp, 55, 1))
  172. card->erased_byte = 0xFF;
  173. else
  174. card->erased_byte = 0x0;
  175. if (scr->sda_spec3)
  176. scr->cmds = UNSTUFF_BITS(resp, 32, 2);
  177. return 0;
  178. }
  179. /*
  180. * Fetch and process SD Status register.
  181. */
  182. static int mmc_read_ssr(struct mmc_card *card)
  183. {
  184. unsigned int au, es, et, eo;
  185. int err, i, max_au;
  186. u32 *ssr;
  187. if (!(card->csd.cmdclass & CCC_APP_SPEC)) {
  188. pr_warning("%s: card lacks mandatory SD Status "
  189. "function.\n", mmc_hostname(card->host));
  190. return 0;
  191. }
  192. ssr = kmalloc(64, GFP_KERNEL);
  193. if (!ssr)
  194. return -ENOMEM;
  195. err = mmc_app_sd_status(card, ssr);
  196. if (err) {
  197. pr_warning("%s: problem reading SD Status "
  198. "register.\n", mmc_hostname(card->host));
  199. err = 0;
  200. goto out;
  201. }
  202. for (i = 0; i < 16; i++)
  203. ssr[i] = be32_to_cpu(ssr[i]);
  204. /* SD3.0 increases max AU size to 64MB (0xF) from 4MB (0x9) */
  205. max_au = card->scr.sda_spec3 ? 0xF : 0x9;
  206. /*
  207. * UNSTUFF_BITS only works with four u32s so we have to offset the
  208. * bitfield positions accordingly.
  209. */
  210. au = UNSTUFF_BITS(ssr, 428 - 384, 4);
  211. if (au > 0 && au <= max_au) {
  212. card->ssr.au = 1 << (au + 4);
  213. es = UNSTUFF_BITS(ssr, 408 - 384, 16);
  214. et = UNSTUFF_BITS(ssr, 402 - 384, 6);
  215. eo = UNSTUFF_BITS(ssr, 400 - 384, 2);
  216. if (es && et) {
  217. card->ssr.erase_timeout = (et * 1000) / es;
  218. card->ssr.erase_offset = eo * 1000;
  219. }
  220. } else {
  221. pr_warning("%s: SD Status: Invalid Allocation Unit "
  222. "size.\n", mmc_hostname(card->host));
  223. }
  224. out:
  225. kfree(ssr);
  226. return err;
  227. }
  228. /*
  229. * Fetches and decodes switch information
  230. */
  231. static int mmc_read_switch(struct mmc_card *card)
  232. {
  233. int err;
  234. u8 *status;
  235. if (card->scr.sda_vsn < SCR_SPEC_VER_1)
  236. return 0;
  237. if (!(card->csd.cmdclass & CCC_SWITCH)) {
  238. pr_warning("%s: card lacks mandatory switch "
  239. "function, performance might suffer.\n",
  240. mmc_hostname(card->host));
  241. return 0;
  242. }
  243. err = -EIO;
  244. status = kmalloc(64, GFP_KERNEL);
  245. if (!status) {
  246. pr_err("%s: could not allocate a buffer for "
  247. "switch capabilities.\n",
  248. mmc_hostname(card->host));
  249. return -ENOMEM;
  250. }
  251. /*
  252. * Find out the card's support bits with a mode 0 operation.
  253. * The argument does not matter, as the support bits do not
  254. * change with the arguments.
  255. */
  256. err = mmc_sd_switch(card, 0, 0, 0, status);
  257. if (err) {
  258. /*
  259. * If the host or the card can't do the switch,
  260. * fail more gracefully.
  261. */
  262. if (err != -EINVAL && err != -ENOSYS && err != -EFAULT)
  263. goto out;
  264. pr_warning("%s: problem reading Bus Speed modes.\n",
  265. mmc_hostname(card->host));
  266. err = 0;
  267. goto out;
  268. }
  269. if (status[13] & SD_MODE_HIGH_SPEED)
  270. card->sw_caps.hs_max_dtr = HIGH_SPEED_MAX_DTR;
  271. if (card->scr.sda_spec3) {
  272. card->sw_caps.sd3_bus_mode = status[13];
  273. /* Driver Strengths supported by the card */
  274. card->sw_caps.sd3_drv_type = status[9];
  275. }
  276. out:
  277. kfree(status);
  278. return err;
  279. }
  280. /*
  281. * Test if the card supports high-speed mode and, if so, switch to it.
  282. */
  283. int mmc_sd_switch_hs(struct mmc_card *card)
  284. {
  285. int err;
  286. u8 *status;
  287. if (card->scr.sda_vsn < SCR_SPEC_VER_1)
  288. return 0;
  289. if (!(card->csd.cmdclass & CCC_SWITCH))
  290. return 0;
  291. if (!(card->host->caps & MMC_CAP_SD_HIGHSPEED))
  292. return 0;
  293. if (card->sw_caps.hs_max_dtr == 0)
  294. return 0;
  295. err = -EIO;
  296. status = kmalloc(64, GFP_KERNEL);
  297. if (!status) {
  298. pr_err("%s: could not allocate a buffer for "
  299. "switch capabilities.\n", mmc_hostname(card->host));
  300. return -ENOMEM;
  301. }
  302. err = mmc_sd_switch(card, 1, 0, 1, status);
  303. if (err)
  304. goto out;
  305. if ((status[16] & 0xF) != 1) {
  306. pr_warning("%s: Problem switching card "
  307. "into high-speed mode!\n",
  308. mmc_hostname(card->host));
  309. err = 0;
  310. } else {
  311. err = 1;
  312. }
  313. out:
  314. kfree(status);
  315. return err;
  316. }
  317. static int sd_select_driver_type(struct mmc_card *card, u8 *status)
  318. {
  319. int host_drv_type = SD_DRIVER_TYPE_B;
  320. int card_drv_type = SD_DRIVER_TYPE_B;
  321. int drive_strength;
  322. int err;
  323. /*
  324. * If the host doesn't support any of the Driver Types A,C or D,
  325. * or there is no board specific handler then default Driver
  326. * Type B is used.
  327. */
  328. if (!(card->host->caps & (MMC_CAP_DRIVER_TYPE_A | MMC_CAP_DRIVER_TYPE_C
  329. | MMC_CAP_DRIVER_TYPE_D)))
  330. return 0;
  331. if (!card->host->ops->select_drive_strength)
  332. return 0;
  333. if (card->host->caps & MMC_CAP_DRIVER_TYPE_A)
  334. host_drv_type |= SD_DRIVER_TYPE_A;
  335. if (card->host->caps & MMC_CAP_DRIVER_TYPE_C)
  336. host_drv_type |= SD_DRIVER_TYPE_C;
  337. if (card->host->caps & MMC_CAP_DRIVER_TYPE_D)
  338. host_drv_type |= SD_DRIVER_TYPE_D;
  339. if (card->sw_caps.sd3_drv_type & SD_DRIVER_TYPE_A)
  340. card_drv_type |= SD_DRIVER_TYPE_A;
  341. if (card->sw_caps.sd3_drv_type & SD_DRIVER_TYPE_C)
  342. card_drv_type |= SD_DRIVER_TYPE_C;
  343. if (card->sw_caps.sd3_drv_type & SD_DRIVER_TYPE_D)
  344. card_drv_type |= SD_DRIVER_TYPE_D;
  345. /*
  346. * The drive strength that the hardware can support
  347. * depends on the board design. Pass the appropriate
  348. * information and let the hardware specific code
  349. * return what is possible given the options
  350. */
  351. mmc_host_clk_hold(card->host);
  352. drive_strength = card->host->ops->select_drive_strength(
  353. card->sw_caps.uhs_max_dtr,
  354. host_drv_type, card_drv_type);
  355. mmc_host_clk_release(card->host);
  356. err = mmc_sd_switch(card, 1, 2, drive_strength, status);
  357. if (err)
  358. return err;
  359. if ((status[15] & 0xF) != drive_strength) {
  360. pr_warning("%s: Problem setting drive strength!\n",
  361. mmc_hostname(card->host));
  362. return 0;
  363. }
  364. mmc_set_driver_type(card->host, drive_strength);
  365. return 0;
  366. }
  367. static void sd_update_bus_speed_mode(struct mmc_card *card)
  368. {
  369. /*
  370. * If the host doesn't support any of the UHS-I modes, fallback on
  371. * default speed.
  372. */
  373. if (!mmc_host_uhs(card->host)) {
  374. card->sd_bus_speed = 0;
  375. return;
  376. }
  377. if ((card->host->caps & MMC_CAP_UHS_SDR104) &&
  378. (card->sw_caps.sd3_bus_mode & SD_MODE_UHS_SDR104)) {
  379. card->sd_bus_speed = UHS_SDR104_BUS_SPEED;
  380. } else if ((card->host->caps & MMC_CAP_UHS_DDR50) &&
  381. (card->sw_caps.sd3_bus_mode & SD_MODE_UHS_DDR50)) {
  382. card->sd_bus_speed = UHS_DDR50_BUS_SPEED;
  383. } else if ((card->host->caps & (MMC_CAP_UHS_SDR104 |
  384. MMC_CAP_UHS_SDR50)) && (card->sw_caps.sd3_bus_mode &
  385. SD_MODE_UHS_SDR50)) {
  386. card->sd_bus_speed = UHS_SDR50_BUS_SPEED;
  387. } else if ((card->host->caps & (MMC_CAP_UHS_SDR104 |
  388. MMC_CAP_UHS_SDR50 | MMC_CAP_UHS_SDR25)) &&
  389. (card->sw_caps.sd3_bus_mode & SD_MODE_UHS_SDR25)) {
  390. card->sd_bus_speed = UHS_SDR25_BUS_SPEED;
  391. } else if ((card->host->caps & (MMC_CAP_UHS_SDR104 |
  392. MMC_CAP_UHS_SDR50 | MMC_CAP_UHS_SDR25 |
  393. MMC_CAP_UHS_SDR12)) && (card->sw_caps.sd3_bus_mode &
  394. SD_MODE_UHS_SDR12)) {
  395. card->sd_bus_speed = UHS_SDR12_BUS_SPEED;
  396. }
  397. }
  398. static int sd_set_bus_speed_mode(struct mmc_card *card, u8 *status)
  399. {
  400. int err;
  401. unsigned int timing = 0;
  402. switch (card->sd_bus_speed) {
  403. case UHS_SDR104_BUS_SPEED:
  404. timing = MMC_TIMING_UHS_SDR104;
  405. card->sw_caps.uhs_max_dtr = UHS_SDR104_MAX_DTR;
  406. break;
  407. case UHS_DDR50_BUS_SPEED:
  408. timing = MMC_TIMING_UHS_DDR50;
  409. card->sw_caps.uhs_max_dtr = UHS_DDR50_MAX_DTR;
  410. break;
  411. case UHS_SDR50_BUS_SPEED:
  412. timing = MMC_TIMING_UHS_SDR50;
  413. card->sw_caps.uhs_max_dtr = UHS_SDR50_MAX_DTR;
  414. break;
  415. case UHS_SDR25_BUS_SPEED:
  416. timing = MMC_TIMING_UHS_SDR25;
  417. card->sw_caps.uhs_max_dtr = UHS_SDR25_MAX_DTR;
  418. break;
  419. case UHS_SDR12_BUS_SPEED:
  420. timing = MMC_TIMING_UHS_SDR12;
  421. card->sw_caps.uhs_max_dtr = UHS_SDR12_MAX_DTR;
  422. break;
  423. default:
  424. return 0;
  425. }
  426. err = mmc_sd_switch(card, 1, 0, card->sd_bus_speed, status);
  427. if (err)
  428. return err;
  429. if ((status[16] & 0xF) != card->sd_bus_speed)
  430. pr_warning("%s: Problem setting bus speed mode!\n",
  431. mmc_hostname(card->host));
  432. else {
  433. mmc_set_timing(card->host, timing);
  434. mmc_set_clock(card->host, card->sw_caps.uhs_max_dtr);
  435. }
  436. return 0;
  437. }
  438. /* Get host's max current setting at its current voltage */
  439. static u32 sd_get_host_max_current(struct mmc_host *host)
  440. {
  441. u32 voltage, max_current;
  442. voltage = 1 << host->ios.vdd;
  443. switch (voltage) {
  444. case MMC_VDD_165_195:
  445. max_current = host->max_current_180;
  446. break;
  447. case MMC_VDD_29_30:
  448. case MMC_VDD_30_31:
  449. max_current = host->max_current_300;
  450. break;
  451. case MMC_VDD_32_33:
  452. case MMC_VDD_33_34:
  453. max_current = host->max_current_330;
  454. break;
  455. default:
  456. max_current = 0;
  457. }
  458. return max_current;
  459. }
  460. static int sd_set_current_limit(struct mmc_card *card, u8 *status)
  461. {
  462. int current_limit = SD_SET_CURRENT_NO_CHANGE;
  463. int err;
  464. u32 max_current;
  465. /*
  466. * Current limit switch is only defined for SDR50, SDR104, and DDR50
  467. * bus speed modes. For other bus speed modes, we do not change the
  468. * current limit.
  469. */
  470. if ((card->sd_bus_speed != UHS_SDR50_BUS_SPEED) &&
  471. (card->sd_bus_speed != UHS_SDR104_BUS_SPEED) &&
  472. (card->sd_bus_speed != UHS_DDR50_BUS_SPEED))
  473. return 0;
  474. /*
  475. * Host has different current capabilities when operating at
  476. * different voltages, so find out its max current first.
  477. */
  478. max_current = sd_get_host_max_current(card->host);
  479. /*
  480. * We only check host's capability here, if we set a limit that is
  481. * higher than the card's maximum current, the card will be using its
  482. * maximum current, e.g. if the card's maximum current is 300ma, and
  483. * when we set current limit to 200ma, the card will draw 200ma, and
  484. * when we set current limit to 400/600/800ma, the card will draw its
  485. * maximum 300ma from the host.
  486. */
  487. if (max_current >= 800)
  488. current_limit = SD_SET_CURRENT_LIMIT_800;
  489. else if (max_current >= 600)
  490. current_limit = SD_SET_CURRENT_LIMIT_600;
  491. else if (max_current >= 400)
  492. current_limit = SD_SET_CURRENT_LIMIT_400;
  493. else if (max_current >= 200)
  494. current_limit = SD_SET_CURRENT_LIMIT_200;
  495. if (current_limit != SD_SET_CURRENT_NO_CHANGE) {
  496. err = mmc_sd_switch(card, 1, 3, current_limit, status);
  497. if (err)
  498. return err;
  499. if (((status[15] >> 4) & 0x0F) != current_limit)
  500. pr_warning("%s: Problem setting current limit!\n",
  501. mmc_hostname(card->host));
  502. }
  503. return 0;
  504. }
  505. /*
  506. * UHS-I specific initialization procedure
  507. */
  508. static int mmc_sd_init_uhs_card(struct mmc_card *card)
  509. {
  510. int err;
  511. u8 *status;
  512. if (!card->scr.sda_spec3)
  513. return 0;
  514. if (!(card->csd.cmdclass & CCC_SWITCH))
  515. return 0;
  516. status = kmalloc(64, GFP_KERNEL);
  517. if (!status) {
  518. pr_err("%s: could not allocate a buffer for "
  519. "switch capabilities.\n", mmc_hostname(card->host));
  520. return -ENOMEM;
  521. }
  522. /* Set 4-bit bus width */
  523. if ((card->host->caps & MMC_CAP_4_BIT_DATA) &&
  524. (card->scr.bus_widths & SD_SCR_BUS_WIDTH_4)) {
  525. err = mmc_app_set_bus_width(card, MMC_BUS_WIDTH_4);
  526. if (err)
  527. goto out;
  528. mmc_set_bus_width(card->host, MMC_BUS_WIDTH_4);
  529. }
  530. /*
  531. * Select the bus speed mode depending on host
  532. * and card capability.
  533. */
  534. sd_update_bus_speed_mode(card);
  535. /* Set the driver strength for the card */
  536. err = sd_select_driver_type(card, status);
  537. if (err)
  538. goto out;
  539. /* Set current limit for the card */
  540. err = sd_set_current_limit(card, status);
  541. if (err)
  542. goto out;
  543. /* Set bus speed mode of the card */
  544. err = sd_set_bus_speed_mode(card, status);
  545. if (err)
  546. goto out;
  547. /*
  548. * SPI mode doesn't define CMD19 and tuning is only valid for SDR50 and
  549. * SDR104 mode SD-cards. Note that tuning is mandatory for SDR104.
  550. */
  551. if (!mmc_host_is_spi(card->host) && card->host->ops->execute_tuning &&
  552. (card->sd_bus_speed == UHS_SDR50_BUS_SPEED ||
  553. card->sd_bus_speed == UHS_SDR104_BUS_SPEED)) {
  554. mmc_host_clk_hold(card->host);
  555. err = card->host->ops->execute_tuning(card->host,
  556. MMC_SEND_TUNING_BLOCK);
  557. mmc_host_clk_release(card->host);
  558. }
  559. out:
  560. kfree(status);
  561. return err;
  562. }
  563. MMC_DEV_ATTR(cid, "%08x%08x%08x%08x\n", card->raw_cid[0], card->raw_cid[1],
  564. card->raw_cid[2], card->raw_cid[3]);
  565. MMC_DEV_ATTR(csd, "%08x%08x%08x%08x\n", card->raw_csd[0], card->raw_csd[1],
  566. card->raw_csd[2], card->raw_csd[3]);
  567. MMC_DEV_ATTR(scr, "%08x%08x\n", card->raw_scr[0], card->raw_scr[1]);
  568. MMC_DEV_ATTR(date, "%02d/%04d\n", card->cid.month, card->cid.year);
  569. MMC_DEV_ATTR(erase_size, "%u\n", card->erase_size << 9);
  570. MMC_DEV_ATTR(preferred_erase_size, "%u\n", card->pref_erase << 9);
  571. MMC_DEV_ATTR(fwrev, "0x%x\n", card->cid.fwrev);
  572. MMC_DEV_ATTR(hwrev, "0x%x\n", card->cid.hwrev);
  573. MMC_DEV_ATTR(manfid, "0x%06x\n", card->cid.manfid);
  574. MMC_DEV_ATTR(name, "%s\n", card->cid.prod_name);
  575. MMC_DEV_ATTR(oemid, "0x%04x\n", card->cid.oemid);
  576. MMC_DEV_ATTR(serial, "0x%08x\n", card->cid.serial);
  577. static struct attribute *sd_std_attrs[] = {
  578. &dev_attr_cid.attr,
  579. &dev_attr_csd.attr,
  580. &dev_attr_scr.attr,
  581. &dev_attr_date.attr,
  582. &dev_attr_erase_size.attr,
  583. &dev_attr_preferred_erase_size.attr,
  584. &dev_attr_fwrev.attr,
  585. &dev_attr_hwrev.attr,
  586. &dev_attr_manfid.attr,
  587. &dev_attr_name.attr,
  588. &dev_attr_oemid.attr,
  589. &dev_attr_serial.attr,
  590. NULL,
  591. };
  592. static struct attribute_group sd_std_attr_group = {
  593. .attrs = sd_std_attrs,
  594. };
  595. static const struct attribute_group *sd_attr_groups[] = {
  596. &sd_std_attr_group,
  597. NULL,
  598. };
  599. struct device_type sd_type = {
  600. .groups = sd_attr_groups,
  601. };
  602. /*
  603. * Fetch CID from card.
  604. */
  605. int mmc_sd_get_cid(struct mmc_host *host, u32 ocr, u32 *cid, u32 *rocr)
  606. {
  607. int err;
  608. u32 max_current;
  609. int retries = 10;
  610. try_again:
  611. if (!retries) {
  612. ocr &= ~SD_OCR_S18R;
  613. pr_warning("%s: Skipping voltage switch\n",
  614. mmc_hostname(host));
  615. }
  616. /*
  617. * Since we're changing the OCR value, we seem to
  618. * need to tell some cards to go back to the idle
  619. * state. We wait 1ms to give cards time to
  620. * respond.
  621. */
  622. mmc_go_idle(host);
  623. /*
  624. * If SD_SEND_IF_COND indicates an SD 2.0
  625. * compliant card and we should set bit 30
  626. * of the ocr to indicate that we can handle
  627. * block-addressed SDHC cards.
  628. */
  629. err = mmc_send_if_cond(host, ocr);
  630. if (!err)
  631. ocr |= SD_OCR_CCS;
  632. /*
  633. * If the host supports one of UHS-I modes, request the card
  634. * to switch to 1.8V signaling level. If the card has failed
  635. * repeatedly to switch however, skip this.
  636. */
  637. if (retries && mmc_host_uhs(host))
  638. ocr |= SD_OCR_S18R;
  639. /*
  640. * If the host can supply more than 150mA at current voltage,
  641. * XPC should be set to 1.
  642. */
  643. max_current = sd_get_host_max_current(host);
  644. if (max_current > 150)
  645. ocr |= SD_OCR_XPC;
  646. err = mmc_send_app_op_cond(host, ocr, rocr);
  647. if (err)
  648. return err;
  649. /*
  650. * In case CCS and S18A in the response is set, start Signal Voltage
  651. * Switch procedure. SPI mode doesn't support CMD11.
  652. */
  653. if (!mmc_host_is_spi(host) && rocr &&
  654. ((*rocr & 0x41000000) == 0x41000000)) {
  655. err = mmc_set_signal_voltage(host, MMC_SIGNAL_VOLTAGE_180);
  656. if (err == -EAGAIN) {
  657. retries--;
  658. goto try_again;
  659. } else if (err) {
  660. retries = 0;
  661. goto try_again;
  662. }
  663. }
  664. if (mmc_host_is_spi(host))
  665. err = mmc_send_cid(host, cid);
  666. else
  667. err = mmc_all_send_cid(host, cid);
  668. return err;
  669. }
  670. int mmc_sd_get_csd(struct mmc_host *host, struct mmc_card *card)
  671. {
  672. int err;
  673. /*
  674. * Fetch CSD from card.
  675. */
  676. err = mmc_send_csd(card, card->raw_csd);
  677. if (err)
  678. return err;
  679. err = mmc_decode_csd(card);
  680. if (err)
  681. return err;
  682. return 0;
  683. }
  684. int mmc_sd_setup_card(struct mmc_host *host, struct mmc_card *card,
  685. bool reinit)
  686. {
  687. int err;
  688. if (!reinit) {
  689. /*
  690. * Fetch SCR from card.
  691. */
  692. err = mmc_app_send_scr(card, card->raw_scr);
  693. if (err)
  694. return err;
  695. err = mmc_decode_scr(card);
  696. if (err)
  697. return err;
  698. /*
  699. * Fetch and process SD Status register.
  700. */
  701. err = mmc_read_ssr(card);
  702. if (err)
  703. return err;
  704. /* Erase init depends on CSD and SSR */
  705. mmc_init_erase(card);
  706. /*
  707. * Fetch switch information from card.
  708. */
  709. err = mmc_read_switch(card);
  710. if (err)
  711. return err;
  712. }
  713. /*
  714. * For SPI, enable CRC as appropriate.
  715. * This CRC enable is located AFTER the reading of the
  716. * card registers because some SDHC cards are not able
  717. * to provide valid CRCs for non-512-byte blocks.
  718. */
  719. if (mmc_host_is_spi(host)) {
  720. err = mmc_spi_set_crc(host, use_spi_crc);
  721. if (err)
  722. return err;
  723. }
  724. /*
  725. * Check if read-only switch is active.
  726. */
  727. if (!reinit) {
  728. int ro = -1;
  729. if (host->ops->get_ro) {
  730. mmc_host_clk_hold(card->host);
  731. ro = host->ops->get_ro(host);
  732. mmc_host_clk_release(card->host);
  733. }
  734. if (ro < 0) {
  735. pr_warning("%s: host does not "
  736. "support reading read-only "
  737. "switch. assuming write-enable.\n",
  738. mmc_hostname(host));
  739. } else if (ro > 0) {
  740. mmc_card_set_readonly(card);
  741. }
  742. }
  743. return 0;
  744. }
  745. unsigned mmc_sd_get_max_clock(struct mmc_card *card)
  746. {
  747. unsigned max_dtr = (unsigned int)-1;
  748. if (mmc_card_highspeed(card)) {
  749. if (max_dtr > card->sw_caps.hs_max_dtr)
  750. max_dtr = card->sw_caps.hs_max_dtr;
  751. } else if (max_dtr > card->csd.max_dtr) {
  752. max_dtr = card->csd.max_dtr;
  753. }
  754. return max_dtr;
  755. }
  756. void mmc_sd_go_highspeed(struct mmc_card *card)
  757. {
  758. mmc_card_set_highspeed(card);
  759. mmc_set_timing(card->host, MMC_TIMING_SD_HS);
  760. }
  761. /*
  762. * Handle the detection and initialisation of a card.
  763. *
  764. * In the case of a resume, "oldcard" will contain the card
  765. * we're trying to reinitialise.
  766. */
  767. static int mmc_sd_init_card(struct mmc_host *host, u32 ocr,
  768. struct mmc_card *oldcard)
  769. {
  770. struct mmc_card *card;
  771. int err;
  772. u32 cid[4];
  773. u32 rocr = 0;
  774. BUG_ON(!host);
  775. WARN_ON(!host->claimed);
  776. err = mmc_sd_get_cid(host, ocr, cid, &rocr);
  777. if (err)
  778. return err;
  779. if (oldcard) {
  780. if (memcmp(cid, oldcard->raw_cid, sizeof(cid)) != 0)
  781. return -ENOENT;
  782. card = oldcard;
  783. } else {
  784. /*
  785. * Allocate card structure.
  786. */
  787. card = mmc_alloc_card(host, &sd_type);
  788. if (IS_ERR(card))
  789. return PTR_ERR(card);
  790. card->type = MMC_TYPE_SD;
  791. memcpy(card->raw_cid, cid, sizeof(card->raw_cid));
  792. }
  793. /*
  794. * For native busses: get card RCA and quit open drain mode.
  795. */
  796. if (!mmc_host_is_spi(host)) {
  797. err = mmc_send_relative_addr(host, &card->rca);
  798. if (err)
  799. goto free_card;
  800. }
  801. if (!oldcard) {
  802. err = mmc_sd_get_csd(host, card);
  803. if (err)
  804. goto free_card;
  805. mmc_decode_cid(card);
  806. }
  807. /*
  808. * Select card, as all following commands rely on that.
  809. */
  810. if (!mmc_host_is_spi(host)) {
  811. err = mmc_select_card(card);
  812. if (err)
  813. goto free_card;
  814. }
  815. err = mmc_sd_setup_card(host, card, oldcard != NULL);
  816. if (err)
  817. goto free_card;
  818. /* Initialization sequence for UHS-I cards */
  819. if (rocr & SD_ROCR_S18A) {
  820. err = mmc_sd_init_uhs_card(card);
  821. if (err)
  822. goto free_card;
  823. /* Card is an ultra-high-speed card */
  824. mmc_card_set_uhs(card);
  825. } else {
  826. /*
  827. * Attempt to change to high-speed (if supported)
  828. */
  829. err = mmc_sd_switch_hs(card);
  830. if (err > 0)
  831. mmc_sd_go_highspeed(card);
  832. else if (err)
  833. goto free_card;
  834. /*
  835. * Set bus speed.
  836. */
  837. mmc_set_clock(host, mmc_sd_get_max_clock(card));
  838. /*
  839. * Switch to wider bus (if supported).
  840. */
  841. if ((host->caps & MMC_CAP_4_BIT_DATA) &&
  842. (card->scr.bus_widths & SD_SCR_BUS_WIDTH_4)) {
  843. err = mmc_app_set_bus_width(card, MMC_BUS_WIDTH_4);
  844. if (err)
  845. goto free_card;
  846. mmc_set_bus_width(host, MMC_BUS_WIDTH_4);
  847. }
  848. }
  849. host->card = card;
  850. return 0;
  851. free_card:
  852. if (!oldcard)
  853. mmc_remove_card(card);
  854. return err;
  855. }
  856. /*
  857. * Host is being removed. Free up the current card.
  858. */
  859. static void mmc_sd_remove(struct mmc_host *host)
  860. {
  861. BUG_ON(!host);
  862. BUG_ON(!host->card);
  863. mmc_remove_card(host->card);
  864. host->card = NULL;
  865. }
  866. /*
  867. * Card detection - card is alive.
  868. */
  869. static int mmc_sd_alive(struct mmc_host *host)
  870. {
  871. return mmc_send_status(host->card, NULL);
  872. }
  873. /*
  874. * Card detection callback from host.
  875. */
  876. static void mmc_sd_detect(struct mmc_host *host)
  877. {
  878. int err;
  879. BUG_ON(!host);
  880. BUG_ON(!host->card);
  881. mmc_get_card(host->card);
  882. /*
  883. * Just check if our card has been removed.
  884. */
  885. err = _mmc_detect_card_removed(host);
  886. mmc_put_card(host->card);
  887. if (err) {
  888. mmc_sd_remove(host);
  889. mmc_claim_host(host);
  890. mmc_detach_bus(host);
  891. mmc_power_off(host);
  892. mmc_release_host(host);
  893. }
  894. }
  895. /*
  896. * Suspend callback from host.
  897. */
  898. static int mmc_sd_suspend(struct mmc_host *host)
  899. {
  900. int err = 0;
  901. BUG_ON(!host);
  902. BUG_ON(!host->card);
  903. mmc_claim_host(host);
  904. if (!mmc_host_is_spi(host))
  905. err = mmc_deselect_cards(host);
  906. host->card->state &= ~MMC_STATE_HIGHSPEED;
  907. if (!err)
  908. mmc_power_off(host);
  909. mmc_release_host(host);
  910. return err;
  911. }
  912. /*
  913. * Resume callback from host.
  914. *
  915. * This function tries to determine if the same card is still present
  916. * and, if so, restore all state to it.
  917. */
  918. static int mmc_sd_resume(struct mmc_host *host)
  919. {
  920. int err;
  921. BUG_ON(!host);
  922. BUG_ON(!host->card);
  923. mmc_claim_host(host);
  924. mmc_power_up(host);
  925. mmc_select_voltage(host, host->ocr);
  926. err = mmc_sd_init_card(host, host->ocr, host->card);
  927. mmc_release_host(host);
  928. return err;
  929. }
  930. /*
  931. * Callback for runtime_suspend.
  932. */
  933. static int mmc_sd_runtime_suspend(struct mmc_host *host)
  934. {
  935. int err;
  936. if (!(host->caps & MMC_CAP_AGGRESSIVE_PM))
  937. return 0;
  938. mmc_claim_host(host);
  939. err = mmc_sd_suspend(host);
  940. if (err) {
  941. pr_err("%s: error %d doing aggessive suspend\n",
  942. mmc_hostname(host), err);
  943. goto out;
  944. }
  945. mmc_power_off(host);
  946. out:
  947. mmc_release_host(host);
  948. return err;
  949. }
  950. /*
  951. * Callback for runtime_resume.
  952. */
  953. static int mmc_sd_runtime_resume(struct mmc_host *host)
  954. {
  955. int err;
  956. if (!(host->caps & MMC_CAP_AGGRESSIVE_PM))
  957. return 0;
  958. mmc_claim_host(host);
  959. mmc_power_up(host);
  960. err = mmc_sd_resume(host);
  961. if (err)
  962. pr_err("%s: error %d doing aggessive resume\n",
  963. mmc_hostname(host), err);
  964. mmc_release_host(host);
  965. return 0;
  966. }
  967. static int mmc_sd_power_restore(struct mmc_host *host)
  968. {
  969. int ret;
  970. host->card->state &= ~MMC_STATE_HIGHSPEED;
  971. mmc_claim_host(host);
  972. ret = mmc_sd_init_card(host, host->ocr, host->card);
  973. mmc_release_host(host);
  974. return ret;
  975. }
  976. static const struct mmc_bus_ops mmc_sd_ops = {
  977. .remove = mmc_sd_remove,
  978. .detect = mmc_sd_detect,
  979. .suspend = NULL,
  980. .resume = NULL,
  981. .power_restore = mmc_sd_power_restore,
  982. .alive = mmc_sd_alive,
  983. .shutdown = mmc_sd_suspend,
  984. };
  985. static const struct mmc_bus_ops mmc_sd_ops_unsafe = {
  986. .remove = mmc_sd_remove,
  987. .detect = mmc_sd_detect,
  988. .runtime_suspend = mmc_sd_runtime_suspend,
  989. .runtime_resume = mmc_sd_runtime_resume,
  990. .suspend = mmc_sd_suspend,
  991. .resume = mmc_sd_resume,
  992. .power_restore = mmc_sd_power_restore,
  993. .alive = mmc_sd_alive,
  994. .shutdown = mmc_sd_suspend,
  995. };
  996. static void mmc_sd_attach_bus_ops(struct mmc_host *host)
  997. {
  998. const struct mmc_bus_ops *bus_ops;
  999. if (!mmc_card_is_removable(host))
  1000. bus_ops = &mmc_sd_ops_unsafe;
  1001. else
  1002. bus_ops = &mmc_sd_ops;
  1003. mmc_attach_bus(host, bus_ops);
  1004. }
  1005. /*
  1006. * Starting point for SD card init.
  1007. */
  1008. int mmc_attach_sd(struct mmc_host *host)
  1009. {
  1010. int err;
  1011. u32 ocr;
  1012. BUG_ON(!host);
  1013. WARN_ON(!host->claimed);
  1014. err = mmc_send_app_op_cond(host, 0, &ocr);
  1015. if (err)
  1016. return err;
  1017. mmc_sd_attach_bus_ops(host);
  1018. if (host->ocr_avail_sd)
  1019. host->ocr_avail = host->ocr_avail_sd;
  1020. /*
  1021. * We need to get OCR a different way for SPI.
  1022. */
  1023. if (mmc_host_is_spi(host)) {
  1024. mmc_go_idle(host);
  1025. err = mmc_spi_read_ocr(host, 0, &ocr);
  1026. if (err)
  1027. goto err;
  1028. }
  1029. /*
  1030. * Sanity check the voltages that the card claims to
  1031. * support.
  1032. */
  1033. if (ocr & 0x7F) {
  1034. pr_warning("%s: card claims to support voltages "
  1035. "below the defined range. These will be ignored.\n",
  1036. mmc_hostname(host));
  1037. ocr &= ~0x7F;
  1038. }
  1039. if ((ocr & MMC_VDD_165_195) &&
  1040. !(host->ocr_avail_sd & MMC_VDD_165_195)) {
  1041. pr_warning("%s: SD card claims to support the "
  1042. "incompletely defined 'low voltage range'. This "
  1043. "will be ignored.\n", mmc_hostname(host));
  1044. ocr &= ~MMC_VDD_165_195;
  1045. }
  1046. host->ocr = mmc_select_voltage(host, ocr);
  1047. /*
  1048. * Can we support the voltage(s) of the card(s)?
  1049. */
  1050. if (!host->ocr) {
  1051. err = -EINVAL;
  1052. goto err;
  1053. }
  1054. /*
  1055. * Detect and init the card.
  1056. */
  1057. err = mmc_sd_init_card(host, host->ocr, NULL);
  1058. if (err)
  1059. goto err;
  1060. mmc_release_host(host);
  1061. err = mmc_add_card(host->card);
  1062. mmc_claim_host(host);
  1063. if (err)
  1064. goto remove_card;
  1065. return 0;
  1066. remove_card:
  1067. mmc_release_host(host);
  1068. mmc_remove_card(host->card);
  1069. host->card = NULL;
  1070. mmc_claim_host(host);
  1071. err:
  1072. mmc_detach_bus(host);
  1073. pr_err("%s: error %d whilst initialising SD card\n",
  1074. mmc_hostname(host), err);
  1075. return err;
  1076. }