sd.c 46 KB

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  1. /*
  2. * SD Memory Card emulation as defined in the "SD Memory Card Physical
  3. * layer specification, Version 1.10."
  4. *
  5. * Copyright (c) 2006 Andrzej Zaborowski <balrog@zabor.org>
  6. * Copyright (c) 2007 CodeSourcery
  7. *
  8. * Redistribution and use in source and binary forms, with or without
  9. * modification, are permitted provided that the following conditions
  10. * are met:
  11. *
  12. * 1. Redistributions of source code must retain the above copyright
  13. * notice, this list of conditions and the following disclaimer.
  14. * 2. Redistributions in binary form must reproduce the above copyright
  15. * notice, this list of conditions and the following disclaimer in
  16. * the documentation and/or other materials provided with the
  17. * distribution.
  18. *
  19. * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS''
  20. * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO,
  21. * THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A
  22. * PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR
  23. * CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
  24. * EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
  25. * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
  26. * PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY
  27. * OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
  28. * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
  29. * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
  30. */
  31. #include "hw.h"
  32. #include "block.h"
  33. #include "sd.h"
  34. //#define DEBUG_SD 1
  35. #ifdef DEBUG_SD
  36. #define DPRINTF(fmt, ...) \
  37. do { fprintf(stderr, "SD: " fmt , ## __VA_ARGS__); } while (0)
  38. #else
  39. #define DPRINTF(fmt, ...) do {} while(0)
  40. #endif
  41. typedef enum {
  42. sd_r0 = 0, /* no response */
  43. sd_r1, /* normal response command */
  44. sd_r2_i, /* CID register */
  45. sd_r2_s, /* CSD register */
  46. sd_r3, /* OCR register */
  47. sd_r6 = 6, /* Published RCA response */
  48. sd_r7, /* Operating voltage */
  49. sd_r1b = -1,
  50. } sd_rsp_type_t;
  51. struct SDState {
  52. enum {
  53. sd_inactive,
  54. sd_card_identification_mode,
  55. sd_data_transfer_mode,
  56. } mode;
  57. enum {
  58. sd_inactive_state = -1,
  59. sd_idle_state = 0,
  60. sd_ready_state,
  61. sd_identification_state,
  62. sd_standby_state,
  63. sd_transfer_state,
  64. sd_sendingdata_state,
  65. sd_receivingdata_state,
  66. sd_programming_state,
  67. sd_disconnect_state,
  68. } state;
  69. uint32_t ocr;
  70. uint8_t scr[8];
  71. uint8_t cid[16];
  72. uint8_t csd[16];
  73. uint16_t rca;
  74. uint32_t card_status;
  75. uint8_t sd_status[64];
  76. uint32_t vhs;
  77. int wp_switch;
  78. int *wp_groups;
  79. uint64_t size;
  80. int blk_len;
  81. uint32_t erase_start;
  82. uint32_t erase_end;
  83. uint8_t pwd[16];
  84. int pwd_len;
  85. int function_group[6];
  86. int spi;
  87. int current_cmd;
  88. int blk_written;
  89. uint64_t data_start;
  90. uint32_t data_offset;
  91. uint8_t data[512];
  92. qemu_irq readonly_cb;
  93. qemu_irq inserted_cb;
  94. BlockDriverState *bdrv;
  95. uint8_t *buf;
  96. int enable;
  97. };
  98. static void sd_set_status(SDState *sd)
  99. {
  100. switch (sd->state) {
  101. case sd_inactive_state:
  102. sd->mode = sd_inactive;
  103. break;
  104. case sd_idle_state:
  105. case sd_ready_state:
  106. case sd_identification_state:
  107. sd->mode = sd_card_identification_mode;
  108. break;
  109. case sd_standby_state:
  110. case sd_transfer_state:
  111. case sd_sendingdata_state:
  112. case sd_receivingdata_state:
  113. case sd_programming_state:
  114. case sd_disconnect_state:
  115. sd->mode = sd_data_transfer_mode;
  116. break;
  117. }
  118. sd->card_status &= ~CURRENT_STATE;
  119. sd->card_status |= sd->state << 9;
  120. }
  121. static const sd_cmd_type_t sd_cmd_type[64] = {
  122. sd_bc, sd_none, sd_bcr, sd_bcr, sd_none, sd_none, sd_none, sd_ac,
  123. sd_bcr, sd_ac, sd_ac, sd_adtc, sd_ac, sd_ac, sd_none, sd_ac,
  124. sd_ac, sd_adtc, sd_adtc, sd_none, sd_none, sd_none, sd_none, sd_none,
  125. sd_adtc, sd_adtc, sd_adtc, sd_adtc, sd_ac, sd_ac, sd_adtc, sd_none,
  126. sd_ac, sd_ac, sd_none, sd_none, sd_none, sd_none, sd_ac, sd_none,
  127. sd_none, sd_none, sd_bc, sd_none, sd_none, sd_none, sd_none, sd_none,
  128. sd_none, sd_none, sd_none, sd_none, sd_none, sd_none, sd_none, sd_ac,
  129. sd_adtc, sd_none, sd_none, sd_none, sd_none, sd_none, sd_none, sd_none,
  130. };
  131. static const sd_cmd_type_t sd_acmd_type[64] = {
  132. sd_none, sd_none, sd_none, sd_none, sd_none, sd_none, sd_ac, sd_none,
  133. sd_none, sd_none, sd_none, sd_none, sd_none, sd_adtc, sd_none, sd_none,
  134. sd_none, sd_none, sd_none, sd_none, sd_none, sd_none, sd_adtc, sd_ac,
  135. sd_none, sd_none, sd_none, sd_none, sd_none, sd_none, sd_none, sd_none,
  136. sd_none, sd_none, sd_none, sd_none, sd_none, sd_none, sd_none, sd_none,
  137. sd_none, sd_bcr, sd_ac, sd_none, sd_none, sd_none, sd_none, sd_none,
  138. sd_none, sd_none, sd_none, sd_adtc, sd_none, sd_none, sd_none, sd_none,
  139. sd_none, sd_none, sd_none, sd_none, sd_none, sd_none, sd_none, sd_none,
  140. };
  141. static const int sd_cmd_class[64] = {
  142. 0, 0, 0, 0, 0, 9, 10, 0, 0, 0, 0, 1, 0, 0, 0, 0,
  143. 2, 2, 2, 2, 3, 3, 3, 3, 4, 4, 4, 4, 6, 6, 6, 6,
  144. 5, 5, 10, 10, 10, 10, 5, 9, 9, 9, 7, 7, 7, 7, 7, 7,
  145. 7, 7, 10, 7, 9, 9, 9, 8, 8, 10, 8, 8, 8, 8, 8, 8,
  146. };
  147. static uint8_t sd_crc7(void *message, size_t width)
  148. {
  149. int i, bit;
  150. uint8_t shift_reg = 0x00;
  151. uint8_t *msg = (uint8_t *) message;
  152. for (i = 0; i < width; i ++, msg ++)
  153. for (bit = 7; bit >= 0; bit --) {
  154. shift_reg <<= 1;
  155. if ((shift_reg >> 7) ^ ((*msg >> bit) & 1))
  156. shift_reg ^= 0x89;
  157. }
  158. return shift_reg;
  159. }
  160. static uint16_t sd_crc16(void *message, size_t width)
  161. {
  162. int i, bit;
  163. uint16_t shift_reg = 0x0000;
  164. uint16_t *msg = (uint16_t *) message;
  165. width <<= 1;
  166. for (i = 0; i < width; i ++, msg ++)
  167. for (bit = 15; bit >= 0; bit --) {
  168. shift_reg <<= 1;
  169. if ((shift_reg >> 15) ^ ((*msg >> bit) & 1))
  170. shift_reg ^= 0x1011;
  171. }
  172. return shift_reg;
  173. }
  174. static void sd_set_ocr(SDState *sd)
  175. {
  176. /* All voltages OK, card power-up OK, Standard Capacity SD Memory Card */
  177. sd->ocr = 0x80ffff00;
  178. }
  179. static void sd_set_scr(SDState *sd)
  180. {
  181. sd->scr[0] = 0x00; /* SCR Structure */
  182. sd->scr[1] = 0x2f; /* SD Security Support */
  183. sd->scr[2] = 0x00;
  184. sd->scr[3] = 0x00;
  185. sd->scr[4] = 0x00;
  186. sd->scr[5] = 0x00;
  187. sd->scr[6] = 0x00;
  188. sd->scr[7] = 0x00;
  189. }
  190. #define MID 0xaa
  191. #define OID "XY"
  192. #define PNM "QEMU!"
  193. #define PRV 0x01
  194. #define MDT_YR 2006
  195. #define MDT_MON 2
  196. static void sd_set_cid(SDState *sd)
  197. {
  198. sd->cid[0] = MID; /* Fake card manufacturer ID (MID) */
  199. sd->cid[1] = OID[0]; /* OEM/Application ID (OID) */
  200. sd->cid[2] = OID[1];
  201. sd->cid[3] = PNM[0]; /* Fake product name (PNM) */
  202. sd->cid[4] = PNM[1];
  203. sd->cid[5] = PNM[2];
  204. sd->cid[6] = PNM[3];
  205. sd->cid[7] = PNM[4];
  206. sd->cid[8] = PRV; /* Fake product revision (PRV) */
  207. sd->cid[9] = 0xde; /* Fake serial number (PSN) */
  208. sd->cid[10] = 0xad;
  209. sd->cid[11] = 0xbe;
  210. sd->cid[12] = 0xef;
  211. sd->cid[13] = 0x00 | /* Manufacture date (MDT) */
  212. ((MDT_YR - 2000) / 10);
  213. sd->cid[14] = ((MDT_YR % 10) << 4) | MDT_MON;
  214. sd->cid[15] = (sd_crc7(sd->cid, 15) << 1) | 1;
  215. }
  216. #define HWBLOCK_SHIFT 9 /* 512 bytes */
  217. #define SECTOR_SHIFT 5 /* 16 kilobytes */
  218. #define WPGROUP_SHIFT 7 /* 2 megs */
  219. #define CMULT_SHIFT 9 /* 512 times HWBLOCK_SIZE */
  220. #define WPGROUP_SIZE (1 << (HWBLOCK_SHIFT + SECTOR_SHIFT + WPGROUP_SHIFT))
  221. static const uint8_t sd_csd_rw_mask[16] = {
  222. 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
  223. 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xfc, 0xfe,
  224. };
  225. static void sd_set_csd(SDState *sd, uint64_t size)
  226. {
  227. uint32_t csize = (size >> (CMULT_SHIFT + HWBLOCK_SHIFT)) - 1;
  228. uint32_t sectsize = (1 << (SECTOR_SHIFT + 1)) - 1;
  229. uint32_t wpsize = (1 << (WPGROUP_SHIFT + 1)) - 1;
  230. if (size <= 0x40000000) { /* Standard Capacity SD */
  231. sd->csd[0] = 0x00; /* CSD structure */
  232. sd->csd[1] = 0x26; /* Data read access-time-1 */
  233. sd->csd[2] = 0x00; /* Data read access-time-2 */
  234. sd->csd[3] = 0x5a; /* Max. data transfer rate */
  235. sd->csd[4] = 0x5f; /* Card Command Classes */
  236. sd->csd[5] = 0x50 | /* Max. read data block length */
  237. HWBLOCK_SHIFT;
  238. sd->csd[6] = 0xe0 | /* Partial block for read allowed */
  239. ((csize >> 10) & 0x03);
  240. sd->csd[7] = 0x00 | /* Device size */
  241. ((csize >> 2) & 0xff);
  242. sd->csd[8] = 0x3f | /* Max. read current */
  243. ((csize << 6) & 0xc0);
  244. sd->csd[9] = 0xfc | /* Max. write current */
  245. ((CMULT_SHIFT - 2) >> 1);
  246. sd->csd[10] = 0x40 | /* Erase sector size */
  247. (((CMULT_SHIFT - 2) << 7) & 0x80) | (sectsize >> 1);
  248. sd->csd[11] = 0x00 | /* Write protect group size */
  249. ((sectsize << 7) & 0x80) | wpsize;
  250. sd->csd[12] = 0x90 | /* Write speed factor */
  251. (HWBLOCK_SHIFT >> 2);
  252. sd->csd[13] = 0x20 | /* Max. write data block length */
  253. ((HWBLOCK_SHIFT << 6) & 0xc0);
  254. sd->csd[14] = 0x00; /* File format group */
  255. sd->csd[15] = (sd_crc7(sd->csd, 15) << 1) | 1;
  256. } else { /* SDHC */
  257. size /= 512 * 1024;
  258. size -= 1;
  259. sd->csd[0] = 0x40;
  260. sd->csd[1] = 0x0e;
  261. sd->csd[2] = 0x00;
  262. sd->csd[3] = 0x32;
  263. sd->csd[4] = 0x5b;
  264. sd->csd[5] = 0x59;
  265. sd->csd[6] = 0x00;
  266. sd->csd[7] = (size >> 16) & 0xff;
  267. sd->csd[8] = (size >> 8) & 0xff;
  268. sd->csd[9] = (size & 0xff);
  269. sd->csd[10] = 0x7f;
  270. sd->csd[11] = 0x80;
  271. sd->csd[12] = 0x0a;
  272. sd->csd[13] = 0x40;
  273. sd->csd[14] = 0x00;
  274. sd->csd[15] = 0x00;
  275. sd->ocr |= 1 << 30; /* High Capacity SD Memort Card */
  276. }
  277. }
  278. static void sd_set_rca(SDState *sd)
  279. {
  280. sd->rca += 0x4567;
  281. }
  282. #define CARD_STATUS_A 0x02004100
  283. #define CARD_STATUS_B 0x00c01e00
  284. #define CARD_STATUS_C 0xfd39a028
  285. static void sd_set_cardstatus(SDState *sd)
  286. {
  287. sd->card_status = 0x00000100;
  288. }
  289. static void sd_set_sdstatus(SDState *sd)
  290. {
  291. memset(sd->sd_status, 0, 64);
  292. }
  293. static int sd_req_crc_validate(SDRequest *req)
  294. {
  295. uint8_t buffer[5];
  296. buffer[0] = 0x40 | req->cmd;
  297. buffer[1] = (req->arg >> 24) & 0xff;
  298. buffer[2] = (req->arg >> 16) & 0xff;
  299. buffer[3] = (req->arg >> 8) & 0xff;
  300. buffer[4] = (req->arg >> 0) & 0xff;
  301. return 0;
  302. return sd_crc7(buffer, 5) != req->crc; /* TODO */
  303. }
  304. static void sd_response_r1_make(SDState *sd,
  305. uint8_t *response, uint32_t last_status)
  306. {
  307. uint32_t mask = CARD_STATUS_B ^ ILLEGAL_COMMAND;
  308. uint32_t status;
  309. status = (sd->card_status & ~mask) | (last_status & mask);
  310. sd->card_status &= ~CARD_STATUS_C | APP_CMD;
  311. response[0] = (status >> 24) & 0xff;
  312. response[1] = (status >> 16) & 0xff;
  313. response[2] = (status >> 8) & 0xff;
  314. response[3] = (status >> 0) & 0xff;
  315. }
  316. static void sd_response_r3_make(SDState *sd, uint8_t *response)
  317. {
  318. response[0] = (sd->ocr >> 24) & 0xff;
  319. response[1] = (sd->ocr >> 16) & 0xff;
  320. response[2] = (sd->ocr >> 8) & 0xff;
  321. response[3] = (sd->ocr >> 0) & 0xff;
  322. }
  323. static void sd_response_r6_make(SDState *sd, uint8_t *response)
  324. {
  325. uint16_t arg;
  326. uint16_t status;
  327. arg = sd->rca;
  328. status = ((sd->card_status >> 8) & 0xc000) |
  329. ((sd->card_status >> 6) & 0x2000) |
  330. (sd->card_status & 0x1fff);
  331. response[0] = (arg >> 8) & 0xff;
  332. response[1] = arg & 0xff;
  333. response[2] = (status >> 8) & 0xff;
  334. response[3] = status & 0xff;
  335. }
  336. static void sd_response_r7_make(SDState *sd, uint8_t *response)
  337. {
  338. response[0] = (sd->vhs >> 24) & 0xff;
  339. response[1] = (sd->vhs >> 16) & 0xff;
  340. response[2] = (sd->vhs >> 8) & 0xff;
  341. response[3] = (sd->vhs >> 0) & 0xff;
  342. }
  343. static void sd_reset(SDState *sd, BlockDriverState *bdrv)
  344. {
  345. uint64_t size;
  346. uint64_t sect;
  347. if (bdrv) {
  348. bdrv_get_geometry(bdrv, &sect);
  349. } else {
  350. sect = 0;
  351. }
  352. size = sect << 9;
  353. sect = (size >> (HWBLOCK_SHIFT + SECTOR_SHIFT + WPGROUP_SHIFT)) + 1;
  354. sd->state = sd_idle_state;
  355. sd->rca = 0x0000;
  356. sd_set_ocr(sd);
  357. sd_set_scr(sd);
  358. sd_set_cid(sd);
  359. sd_set_csd(sd, size);
  360. sd_set_cardstatus(sd);
  361. sd_set_sdstatus(sd);
  362. sd->bdrv = bdrv;
  363. if (sd->wp_groups)
  364. g_free(sd->wp_groups);
  365. sd->wp_switch = bdrv ? bdrv_is_read_only(bdrv) : 0;
  366. sd->wp_groups = (int *) g_malloc0(sizeof(int) * sect);
  367. memset(sd->function_group, 0, sizeof(int) * 6);
  368. sd->erase_start = 0;
  369. sd->erase_end = 0;
  370. sd->size = size;
  371. sd->blk_len = 0x200;
  372. sd->pwd_len = 0;
  373. }
  374. static void sd_cardchange(void *opaque, bool load)
  375. {
  376. SDState *sd = opaque;
  377. qemu_set_irq(sd->inserted_cb, bdrv_is_inserted(sd->bdrv));
  378. if (bdrv_is_inserted(sd->bdrv)) {
  379. sd_reset(sd, sd->bdrv);
  380. qemu_set_irq(sd->readonly_cb, sd->wp_switch);
  381. }
  382. }
  383. static const BlockDevOps sd_block_ops = {
  384. .change_media_cb = sd_cardchange,
  385. };
  386. /* We do not model the chip select pin, so allow the board to select
  387. whether card should be in SSI or MMC/SD mode. It is also up to the
  388. board to ensure that ssi transfers only occur when the chip select
  389. is asserted. */
  390. SDState *sd_init(BlockDriverState *bs, int is_spi)
  391. {
  392. SDState *sd;
  393. sd = (SDState *) g_malloc0(sizeof(SDState));
  394. sd->buf = qemu_blockalign(bs, 512);
  395. sd->spi = is_spi;
  396. sd->enable = 1;
  397. sd_reset(sd, bs);
  398. if (sd->bdrv) {
  399. bdrv_attach_dev_nofail(sd->bdrv, sd);
  400. bdrv_set_dev_ops(sd->bdrv, &sd_block_ops, sd);
  401. }
  402. return sd;
  403. }
  404. void sd_set_cb(SDState *sd, qemu_irq readonly, qemu_irq insert)
  405. {
  406. sd->readonly_cb = readonly;
  407. sd->inserted_cb = insert;
  408. qemu_set_irq(readonly, sd->bdrv ? bdrv_is_read_only(sd->bdrv) : 0);
  409. qemu_set_irq(insert, sd->bdrv ? bdrv_is_inserted(sd->bdrv) : 0);
  410. }
  411. static void sd_erase(SDState *sd)
  412. {
  413. int i, start, end;
  414. if (!sd->erase_start || !sd->erase_end) {
  415. sd->card_status |= ERASE_SEQ_ERROR;
  416. return;
  417. }
  418. start = sd->erase_start >>
  419. (HWBLOCK_SHIFT + SECTOR_SHIFT + WPGROUP_SHIFT);
  420. end = sd->erase_end >>
  421. (HWBLOCK_SHIFT + SECTOR_SHIFT + WPGROUP_SHIFT);
  422. sd->erase_start = 0;
  423. sd->erase_end = 0;
  424. sd->csd[14] |= 0x40;
  425. for (i = start; i <= end; i ++)
  426. if (sd->wp_groups[i])
  427. sd->card_status |= WP_ERASE_SKIP;
  428. }
  429. static uint32_t sd_wpbits(SDState *sd, uint64_t addr)
  430. {
  431. uint32_t i, wpnum;
  432. uint32_t ret = 0;
  433. wpnum = addr >> (HWBLOCK_SHIFT + SECTOR_SHIFT + WPGROUP_SHIFT);
  434. for (i = 0; i < 32; i ++, wpnum ++, addr += WPGROUP_SIZE)
  435. if (addr < sd->size && sd->wp_groups[wpnum])
  436. ret |= (1 << i);
  437. return ret;
  438. }
  439. static void sd_function_switch(SDState *sd, uint32_t arg)
  440. {
  441. int i, mode, new_func, crc;
  442. mode = !!(arg & 0x80000000);
  443. sd->data[0] = 0x00; /* Maximum current consumption */
  444. sd->data[1] = 0x01;
  445. sd->data[2] = 0x80; /* Supported group 6 functions */
  446. sd->data[3] = 0x01;
  447. sd->data[4] = 0x80; /* Supported group 5 functions */
  448. sd->data[5] = 0x01;
  449. sd->data[6] = 0x80; /* Supported group 4 functions */
  450. sd->data[7] = 0x01;
  451. sd->data[8] = 0x80; /* Supported group 3 functions */
  452. sd->data[9] = 0x01;
  453. sd->data[10] = 0x80; /* Supported group 2 functions */
  454. sd->data[11] = 0x43;
  455. sd->data[12] = 0x80; /* Supported group 1 functions */
  456. sd->data[13] = 0x03;
  457. for (i = 0; i < 6; i ++) {
  458. new_func = (arg >> (i * 4)) & 0x0f;
  459. if (mode && new_func != 0x0f)
  460. sd->function_group[i] = new_func;
  461. sd->data[14 + (i >> 1)] = new_func << ((i * 4) & 4);
  462. }
  463. memset(&sd->data[17], 0, 47);
  464. crc = sd_crc16(sd->data, 64);
  465. sd->data[65] = crc >> 8;
  466. sd->data[66] = crc & 0xff;
  467. }
  468. static inline int sd_wp_addr(SDState *sd, uint32_t addr)
  469. {
  470. return sd->wp_groups[addr >>
  471. (HWBLOCK_SHIFT + SECTOR_SHIFT + WPGROUP_SHIFT)];
  472. }
  473. static void sd_lock_command(SDState *sd)
  474. {
  475. int erase, lock, clr_pwd, set_pwd, pwd_len;
  476. erase = !!(sd->data[0] & 0x08);
  477. lock = sd->data[0] & 0x04;
  478. clr_pwd = sd->data[0] & 0x02;
  479. set_pwd = sd->data[0] & 0x01;
  480. if (sd->blk_len > 1)
  481. pwd_len = sd->data[1];
  482. else
  483. pwd_len = 0;
  484. if (erase) {
  485. if (!(sd->card_status & CARD_IS_LOCKED) || sd->blk_len > 1 ||
  486. set_pwd || clr_pwd || lock || sd->wp_switch ||
  487. (sd->csd[14] & 0x20)) {
  488. sd->card_status |= LOCK_UNLOCK_FAILED;
  489. return;
  490. }
  491. memset(sd->wp_groups, 0, sizeof(int) * (sd->size >>
  492. (HWBLOCK_SHIFT + SECTOR_SHIFT + WPGROUP_SHIFT)));
  493. sd->csd[14] &= ~0x10;
  494. sd->card_status &= ~CARD_IS_LOCKED;
  495. sd->pwd_len = 0;
  496. /* Erasing the entire card here! */
  497. fprintf(stderr, "SD: Card force-erased by CMD42\n");
  498. return;
  499. }
  500. if (sd->blk_len < 2 + pwd_len ||
  501. pwd_len <= sd->pwd_len ||
  502. pwd_len > sd->pwd_len + 16) {
  503. sd->card_status |= LOCK_UNLOCK_FAILED;
  504. return;
  505. }
  506. if (sd->pwd_len && memcmp(sd->pwd, sd->data + 2, sd->pwd_len)) {
  507. sd->card_status |= LOCK_UNLOCK_FAILED;
  508. return;
  509. }
  510. pwd_len -= sd->pwd_len;
  511. if ((pwd_len && !set_pwd) ||
  512. (clr_pwd && (set_pwd || lock)) ||
  513. (lock && !sd->pwd_len && !set_pwd) ||
  514. (!set_pwd && !clr_pwd &&
  515. (((sd->card_status & CARD_IS_LOCKED) && lock) ||
  516. (!(sd->card_status & CARD_IS_LOCKED) && !lock)))) {
  517. sd->card_status |= LOCK_UNLOCK_FAILED;
  518. return;
  519. }
  520. if (set_pwd) {
  521. memcpy(sd->pwd, sd->data + 2 + sd->pwd_len, pwd_len);
  522. sd->pwd_len = pwd_len;
  523. }
  524. if (clr_pwd) {
  525. sd->pwd_len = 0;
  526. }
  527. if (lock)
  528. sd->card_status |= CARD_IS_LOCKED;
  529. else
  530. sd->card_status &= ~CARD_IS_LOCKED;
  531. }
  532. static sd_rsp_type_t sd_normal_command(SDState *sd,
  533. SDRequest req)
  534. {
  535. uint32_t rca = 0x0000;
  536. uint64_t addr = (sd->ocr & (1 << 30)) ? (uint64_t) req.arg << 9 : req.arg;
  537. if (sd_cmd_type[req.cmd] == sd_ac || sd_cmd_type[req.cmd] == sd_adtc)
  538. rca = req.arg >> 16;
  539. DPRINTF("CMD%d 0x%08x state %d\n", req.cmd, req.arg, sd->state);
  540. switch (req.cmd) {
  541. /* Basic commands (Class 0 and Class 1) */
  542. case 0: /* CMD0: GO_IDLE_STATE */
  543. switch (sd->state) {
  544. case sd_inactive_state:
  545. return sd->spi ? sd_r1 : sd_r0;
  546. default:
  547. sd->state = sd_idle_state;
  548. sd_reset(sd, sd->bdrv);
  549. return sd->spi ? sd_r1 : sd_r0;
  550. }
  551. break;
  552. case 1: /* CMD1: SEND_OP_CMD */
  553. if (!sd->spi)
  554. goto bad_cmd;
  555. sd->state = sd_transfer_state;
  556. return sd_r1;
  557. case 2: /* CMD2: ALL_SEND_CID */
  558. if (sd->spi)
  559. goto bad_cmd;
  560. switch (sd->state) {
  561. case sd_ready_state:
  562. sd->state = sd_identification_state;
  563. return sd_r2_i;
  564. default:
  565. break;
  566. }
  567. break;
  568. case 3: /* CMD3: SEND_RELATIVE_ADDR */
  569. if (sd->spi)
  570. goto bad_cmd;
  571. switch (sd->state) {
  572. case sd_identification_state:
  573. case sd_standby_state:
  574. sd->state = sd_standby_state;
  575. sd_set_rca(sd);
  576. return sd_r6;
  577. default:
  578. break;
  579. }
  580. break;
  581. case 4: /* CMD4: SEND_DSR */
  582. if (sd->spi)
  583. goto bad_cmd;
  584. switch (sd->state) {
  585. case sd_standby_state:
  586. break;
  587. default:
  588. break;
  589. }
  590. break;
  591. case 5: /* CMD5: reserved for SDIO cards */
  592. sd->card_status |= ILLEGAL_COMMAND;
  593. return sd_r0;
  594. case 6: /* CMD6: SWITCH_FUNCTION */
  595. if (sd->spi)
  596. goto bad_cmd;
  597. switch (sd->mode) {
  598. case sd_data_transfer_mode:
  599. sd_function_switch(sd, req.arg);
  600. sd->state = sd_sendingdata_state;
  601. sd->data_start = 0;
  602. sd->data_offset = 0;
  603. return sd_r1;
  604. default:
  605. break;
  606. }
  607. break;
  608. case 7: /* CMD7: SELECT/DESELECT_CARD */
  609. if (sd->spi)
  610. goto bad_cmd;
  611. switch (sd->state) {
  612. case sd_standby_state:
  613. if (sd->rca != rca)
  614. return sd_r0;
  615. sd->state = sd_transfer_state;
  616. return sd_r1b;
  617. case sd_transfer_state:
  618. case sd_sendingdata_state:
  619. if (sd->rca == rca)
  620. break;
  621. sd->state = sd_standby_state;
  622. return sd_r1b;
  623. case sd_disconnect_state:
  624. if (sd->rca != rca)
  625. return sd_r0;
  626. sd->state = sd_programming_state;
  627. return sd_r1b;
  628. case sd_programming_state:
  629. if (sd->rca == rca)
  630. break;
  631. sd->state = sd_disconnect_state;
  632. return sd_r1b;
  633. default:
  634. break;
  635. }
  636. break;
  637. case 8: /* CMD8: SEND_IF_COND */
  638. /* Physical Layer Specification Version 2.00 command */
  639. switch (sd->state) {
  640. case sd_idle_state:
  641. sd->vhs = 0;
  642. /* No response if not exactly one VHS bit is set. */
  643. if (!(req.arg >> 8) || (req.arg >> ffs(req.arg & ~0xff)))
  644. return sd->spi ? sd_r7 : sd_r0;
  645. /* Accept. */
  646. sd->vhs = req.arg;
  647. return sd_r7;
  648. default:
  649. break;
  650. }
  651. break;
  652. case 9: /* CMD9: SEND_CSD */
  653. switch (sd->state) {
  654. case sd_standby_state:
  655. if (sd->rca != rca)
  656. return sd_r0;
  657. return sd_r2_s;
  658. case sd_transfer_state:
  659. if (!sd->spi)
  660. break;
  661. sd->state = sd_sendingdata_state;
  662. memcpy(sd->data, sd->csd, 16);
  663. sd->data_start = addr;
  664. sd->data_offset = 0;
  665. return sd_r1;
  666. default:
  667. break;
  668. }
  669. break;
  670. case 10: /* CMD10: SEND_CID */
  671. switch (sd->state) {
  672. case sd_standby_state:
  673. if (sd->rca != rca)
  674. return sd_r0;
  675. return sd_r2_i;
  676. case sd_transfer_state:
  677. if (!sd->spi)
  678. break;
  679. sd->state = sd_sendingdata_state;
  680. memcpy(sd->data, sd->cid, 16);
  681. sd->data_start = addr;
  682. sd->data_offset = 0;
  683. return sd_r1;
  684. default:
  685. break;
  686. }
  687. break;
  688. case 11: /* CMD11: READ_DAT_UNTIL_STOP */
  689. if (sd->spi)
  690. goto bad_cmd;
  691. switch (sd->state) {
  692. case sd_transfer_state:
  693. sd->state = sd_sendingdata_state;
  694. sd->data_start = req.arg;
  695. sd->data_offset = 0;
  696. if (sd->data_start + sd->blk_len > sd->size)
  697. sd->card_status |= ADDRESS_ERROR;
  698. return sd_r0;
  699. default:
  700. break;
  701. }
  702. break;
  703. case 12: /* CMD12: STOP_TRANSMISSION */
  704. switch (sd->state) {
  705. case sd_sendingdata_state:
  706. sd->state = sd_transfer_state;
  707. return sd_r1b;
  708. case sd_receivingdata_state:
  709. sd->state = sd_programming_state;
  710. /* Bzzzzzzztt .... Operation complete. */
  711. sd->state = sd_transfer_state;
  712. return sd_r1b;
  713. default:
  714. break;
  715. }
  716. break;
  717. case 13: /* CMD13: SEND_STATUS */
  718. switch (sd->mode) {
  719. case sd_data_transfer_mode:
  720. if (sd->rca != rca)
  721. return sd_r0;
  722. return sd_r1;
  723. default:
  724. break;
  725. }
  726. break;
  727. case 15: /* CMD15: GO_INACTIVE_STATE */
  728. if (sd->spi)
  729. goto bad_cmd;
  730. switch (sd->mode) {
  731. case sd_data_transfer_mode:
  732. if (sd->rca != rca)
  733. return sd_r0;
  734. sd->state = sd_inactive_state;
  735. return sd_r0;
  736. default:
  737. break;
  738. }
  739. break;
  740. /* Block read commands (Classs 2) */
  741. case 16: /* CMD16: SET_BLOCKLEN */
  742. switch (sd->state) {
  743. case sd_transfer_state:
  744. if (req.arg > (1 << HWBLOCK_SHIFT))
  745. sd->card_status |= BLOCK_LEN_ERROR;
  746. else
  747. sd->blk_len = req.arg;
  748. return sd_r1;
  749. default:
  750. break;
  751. }
  752. break;
  753. case 17: /* CMD17: READ_SINGLE_BLOCK */
  754. switch (sd->state) {
  755. case sd_transfer_state:
  756. sd->state = sd_sendingdata_state;
  757. sd->data_start = addr;
  758. sd->data_offset = 0;
  759. if (sd->data_start + sd->blk_len > sd->size)
  760. sd->card_status |= ADDRESS_ERROR;
  761. return sd_r1;
  762. default:
  763. break;
  764. }
  765. break;
  766. case 18: /* CMD18: READ_MULTIPLE_BLOCK */
  767. switch (sd->state) {
  768. case sd_transfer_state:
  769. sd->state = sd_sendingdata_state;
  770. sd->data_start = addr;
  771. sd->data_offset = 0;
  772. if (sd->data_start + sd->blk_len > sd->size)
  773. sd->card_status |= ADDRESS_ERROR;
  774. return sd_r1;
  775. default:
  776. break;
  777. }
  778. break;
  779. /* Block write commands (Class 4) */
  780. case 24: /* CMD24: WRITE_SINGLE_BLOCK */
  781. if (sd->spi)
  782. goto unimplemented_cmd;
  783. switch (sd->state) {
  784. case sd_transfer_state:
  785. /* Writing in SPI mode not implemented. */
  786. if (sd->spi)
  787. break;
  788. sd->state = sd_receivingdata_state;
  789. sd->data_start = addr;
  790. sd->data_offset = 0;
  791. sd->blk_written = 0;
  792. if (sd->data_start + sd->blk_len > sd->size)
  793. sd->card_status |= ADDRESS_ERROR;
  794. if (sd_wp_addr(sd, sd->data_start))
  795. sd->card_status |= WP_VIOLATION;
  796. if (sd->csd[14] & 0x30)
  797. sd->card_status |= WP_VIOLATION;
  798. return sd_r1;
  799. default:
  800. break;
  801. }
  802. break;
  803. case 25: /* CMD25: WRITE_MULTIPLE_BLOCK */
  804. if (sd->spi)
  805. goto unimplemented_cmd;
  806. switch (sd->state) {
  807. case sd_transfer_state:
  808. /* Writing in SPI mode not implemented. */
  809. if (sd->spi)
  810. break;
  811. sd->state = sd_receivingdata_state;
  812. sd->data_start = addr;
  813. sd->data_offset = 0;
  814. sd->blk_written = 0;
  815. if (sd->data_start + sd->blk_len > sd->size)
  816. sd->card_status |= ADDRESS_ERROR;
  817. if (sd_wp_addr(sd, sd->data_start))
  818. sd->card_status |= WP_VIOLATION;
  819. if (sd->csd[14] & 0x30)
  820. sd->card_status |= WP_VIOLATION;
  821. return sd_r1;
  822. default:
  823. break;
  824. }
  825. break;
  826. case 26: /* CMD26: PROGRAM_CID */
  827. if (sd->spi)
  828. goto bad_cmd;
  829. switch (sd->state) {
  830. case sd_transfer_state:
  831. sd->state = sd_receivingdata_state;
  832. sd->data_start = 0;
  833. sd->data_offset = 0;
  834. return sd_r1;
  835. default:
  836. break;
  837. }
  838. break;
  839. case 27: /* CMD27: PROGRAM_CSD */
  840. if (sd->spi)
  841. goto unimplemented_cmd;
  842. switch (sd->state) {
  843. case sd_transfer_state:
  844. sd->state = sd_receivingdata_state;
  845. sd->data_start = 0;
  846. sd->data_offset = 0;
  847. return sd_r1;
  848. default:
  849. break;
  850. }
  851. break;
  852. /* Write protection (Class 6) */
  853. case 28: /* CMD28: SET_WRITE_PROT */
  854. switch (sd->state) {
  855. case sd_transfer_state:
  856. if (addr >= sd->size) {
  857. sd->card_status = ADDRESS_ERROR;
  858. return sd_r1b;
  859. }
  860. sd->state = sd_programming_state;
  861. sd->wp_groups[addr >> (HWBLOCK_SHIFT +
  862. SECTOR_SHIFT + WPGROUP_SHIFT)] = 1;
  863. /* Bzzzzzzztt .... Operation complete. */
  864. sd->state = sd_transfer_state;
  865. return sd_r1b;
  866. default:
  867. break;
  868. }
  869. break;
  870. case 29: /* CMD29: CLR_WRITE_PROT */
  871. switch (sd->state) {
  872. case sd_transfer_state:
  873. if (addr >= sd->size) {
  874. sd->card_status = ADDRESS_ERROR;
  875. return sd_r1b;
  876. }
  877. sd->state = sd_programming_state;
  878. sd->wp_groups[addr >> (HWBLOCK_SHIFT +
  879. SECTOR_SHIFT + WPGROUP_SHIFT)] = 0;
  880. /* Bzzzzzzztt .... Operation complete. */
  881. sd->state = sd_transfer_state;
  882. return sd_r1b;
  883. default:
  884. break;
  885. }
  886. break;
  887. case 30: /* CMD30: SEND_WRITE_PROT */
  888. switch (sd->state) {
  889. case sd_transfer_state:
  890. sd->state = sd_sendingdata_state;
  891. *(uint32_t *) sd->data = sd_wpbits(sd, req.arg);
  892. sd->data_start = addr;
  893. sd->data_offset = 0;
  894. return sd_r1b;
  895. default:
  896. break;
  897. }
  898. break;
  899. /* Erase commands (Class 5) */
  900. case 32: /* CMD32: ERASE_WR_BLK_START */
  901. switch (sd->state) {
  902. case sd_transfer_state:
  903. sd->erase_start = req.arg;
  904. return sd_r1;
  905. default:
  906. break;
  907. }
  908. break;
  909. case 33: /* CMD33: ERASE_WR_BLK_END */
  910. switch (sd->state) {
  911. case sd_transfer_state:
  912. sd->erase_end = req.arg;
  913. return sd_r1;
  914. default:
  915. break;
  916. }
  917. break;
  918. case 38: /* CMD38: ERASE */
  919. switch (sd->state) {
  920. case sd_transfer_state:
  921. if (sd->csd[14] & 0x30) {
  922. sd->card_status |= WP_VIOLATION;
  923. return sd_r1b;
  924. }
  925. sd->state = sd_programming_state;
  926. sd_erase(sd);
  927. /* Bzzzzzzztt .... Operation complete. */
  928. sd->state = sd_transfer_state;
  929. return sd_r1b;
  930. default:
  931. break;
  932. }
  933. break;
  934. /* Lock card commands (Class 7) */
  935. case 42: /* CMD42: LOCK_UNLOCK */
  936. if (sd->spi)
  937. goto unimplemented_cmd;
  938. switch (sd->state) {
  939. case sd_transfer_state:
  940. sd->state = sd_receivingdata_state;
  941. sd->data_start = 0;
  942. sd->data_offset = 0;
  943. return sd_r1;
  944. default:
  945. break;
  946. }
  947. break;
  948. case 52:
  949. case 53:
  950. /* CMD52, CMD53: reserved for SDIO cards
  951. * (see the SDIO Simplified Specification V2.0)
  952. * Handle as illegal command but do not complain
  953. * on stderr, as some OSes may use these in their
  954. * probing for presence of an SDIO card.
  955. */
  956. sd->card_status |= ILLEGAL_COMMAND;
  957. return sd_r0;
  958. /* Application specific commands (Class 8) */
  959. case 55: /* CMD55: APP_CMD */
  960. if (sd->rca != rca)
  961. return sd_r0;
  962. sd->card_status |= APP_CMD;
  963. return sd_r1;
  964. case 56: /* CMD56: GEN_CMD */
  965. fprintf(stderr, "SD: GEN_CMD 0x%08x\n", req.arg);
  966. switch (sd->state) {
  967. case sd_transfer_state:
  968. sd->data_offset = 0;
  969. if (req.arg & 1)
  970. sd->state = sd_sendingdata_state;
  971. else
  972. sd->state = sd_receivingdata_state;
  973. return sd_r1;
  974. default:
  975. break;
  976. }
  977. break;
  978. default:
  979. bad_cmd:
  980. sd->card_status |= ILLEGAL_COMMAND;
  981. fprintf(stderr, "SD: Unknown CMD%i\n", req.cmd);
  982. return sd_r0;
  983. unimplemented_cmd:
  984. /* Commands that are recognised but not yet implemented in SPI mode. */
  985. sd->card_status |= ILLEGAL_COMMAND;
  986. fprintf(stderr, "SD: CMD%i not implemented in SPI mode\n", req.cmd);
  987. return sd_r0;
  988. }
  989. sd->card_status |= ILLEGAL_COMMAND;
  990. fprintf(stderr, "SD: CMD%i in a wrong state\n", req.cmd);
  991. return sd_r0;
  992. }
  993. static sd_rsp_type_t sd_app_command(SDState *sd,
  994. SDRequest req)
  995. {
  996. DPRINTF("ACMD%d 0x%08x\n", req.cmd, req.arg);
  997. switch (req.cmd) {
  998. case 6: /* ACMD6: SET_BUS_WIDTH */
  999. switch (sd->state) {
  1000. case sd_transfer_state:
  1001. sd->sd_status[0] &= 0x3f;
  1002. sd->sd_status[0] |= (req.arg & 0x03) << 6;
  1003. return sd_r1;
  1004. default:
  1005. break;
  1006. }
  1007. break;
  1008. case 13: /* ACMD13: SD_STATUS */
  1009. switch (sd->state) {
  1010. case sd_transfer_state:
  1011. sd->state = sd_sendingdata_state;
  1012. sd->data_start = 0;
  1013. sd->data_offset = 0;
  1014. return sd_r1;
  1015. default:
  1016. break;
  1017. }
  1018. break;
  1019. case 22: /* ACMD22: SEND_NUM_WR_BLOCKS */
  1020. switch (sd->state) {
  1021. case sd_transfer_state:
  1022. *(uint32_t *) sd->data = sd->blk_written;
  1023. sd->state = sd_sendingdata_state;
  1024. sd->data_start = 0;
  1025. sd->data_offset = 0;
  1026. return sd_r1;
  1027. default:
  1028. break;
  1029. }
  1030. break;
  1031. case 23: /* ACMD23: SET_WR_BLK_ERASE_COUNT */
  1032. switch (sd->state) {
  1033. case sd_transfer_state:
  1034. return sd_r1;
  1035. default:
  1036. break;
  1037. }
  1038. break;
  1039. case 41: /* ACMD41: SD_APP_OP_COND */
  1040. if (sd->spi) {
  1041. /* SEND_OP_CMD */
  1042. sd->state = sd_transfer_state;
  1043. return sd_r1;
  1044. }
  1045. switch (sd->state) {
  1046. case sd_idle_state:
  1047. /* We accept any voltage. 10000 V is nothing. */
  1048. if (req.arg)
  1049. sd->state = sd_ready_state;
  1050. return sd_r3;
  1051. default:
  1052. break;
  1053. }
  1054. break;
  1055. case 42: /* ACMD42: SET_CLR_CARD_DETECT */
  1056. switch (sd->state) {
  1057. case sd_transfer_state:
  1058. /* Bringing in the 50KOhm pull-up resistor... Done. */
  1059. return sd_r1;
  1060. default:
  1061. break;
  1062. }
  1063. break;
  1064. case 51: /* ACMD51: SEND_SCR */
  1065. switch (sd->state) {
  1066. case sd_transfer_state:
  1067. sd->state = sd_sendingdata_state;
  1068. sd->data_start = 0;
  1069. sd->data_offset = 0;
  1070. return sd_r1;
  1071. default:
  1072. break;
  1073. }
  1074. break;
  1075. default:
  1076. /* Fall back to standard commands. */
  1077. sd->card_status &= ~APP_CMD;
  1078. return sd_normal_command(sd, req);
  1079. }
  1080. fprintf(stderr, "SD: ACMD%i in a wrong state\n", req.cmd);
  1081. return sd_r0;
  1082. }
  1083. int sd_do_command(SDState *sd, SDRequest *req,
  1084. uint8_t *response) {
  1085. uint32_t last_status = sd->card_status;
  1086. sd_rsp_type_t rtype;
  1087. int rsplen;
  1088. if (!sd->bdrv || !bdrv_is_inserted(sd->bdrv) || !sd->enable) {
  1089. return 0;
  1090. }
  1091. if (sd_req_crc_validate(req)) {
  1092. sd->card_status &= ~COM_CRC_ERROR;
  1093. return 0;
  1094. }
  1095. sd->card_status &= ~CARD_STATUS_B;
  1096. sd_set_status(sd);
  1097. if (last_status & CARD_IS_LOCKED)
  1098. if (((last_status & APP_CMD) &&
  1099. req->cmd == 41) ||
  1100. (!(last_status & APP_CMD) &&
  1101. (sd_cmd_class[req->cmd] == 0 ||
  1102. sd_cmd_class[req->cmd] == 7 ||
  1103. req->cmd == 16 || req->cmd == 55))) {
  1104. sd->card_status |= ILLEGAL_COMMAND;
  1105. fprintf(stderr, "SD: Card is locked\n");
  1106. return 0;
  1107. }
  1108. if (last_status & APP_CMD) {
  1109. rtype = sd_app_command(sd, *req);
  1110. sd->card_status &= ~APP_CMD;
  1111. } else
  1112. rtype = sd_normal_command(sd, *req);
  1113. sd->current_cmd = req->cmd;
  1114. switch (rtype) {
  1115. case sd_r1:
  1116. case sd_r1b:
  1117. sd_response_r1_make(sd, response, last_status);
  1118. rsplen = 4;
  1119. break;
  1120. case sd_r2_i:
  1121. memcpy(response, sd->cid, sizeof(sd->cid));
  1122. rsplen = 16;
  1123. break;
  1124. case sd_r2_s:
  1125. memcpy(response, sd->csd, sizeof(sd->csd));
  1126. rsplen = 16;
  1127. break;
  1128. case sd_r3:
  1129. sd_response_r3_make(sd, response);
  1130. rsplen = 4;
  1131. break;
  1132. case sd_r6:
  1133. sd_response_r6_make(sd, response);
  1134. rsplen = 4;
  1135. break;
  1136. case sd_r7:
  1137. sd_response_r7_make(sd, response);
  1138. rsplen = 4;
  1139. break;
  1140. case sd_r0:
  1141. default:
  1142. rsplen = 0;
  1143. break;
  1144. }
  1145. if (sd->card_status & ILLEGAL_COMMAND)
  1146. rsplen = 0;
  1147. #ifdef DEBUG_SD
  1148. if (rsplen) {
  1149. int i;
  1150. DPRINTF("Response:");
  1151. for (i = 0; i < rsplen; i++)
  1152. printf(" %02x", response[i]);
  1153. printf(" state %d\n", sd->state);
  1154. } else {
  1155. DPRINTF("No response %d\n", sd->state);
  1156. }
  1157. #endif
  1158. return rsplen;
  1159. }
  1160. static void sd_blk_read(SDState *sd, uint64_t addr, uint32_t len)
  1161. {
  1162. uint64_t end = addr + len;
  1163. DPRINTF("sd_blk_read: addr = 0x%08llx, len = %d\n",
  1164. (unsigned long long) addr, len);
  1165. if (!sd->bdrv || bdrv_read(sd->bdrv, addr >> 9, sd->buf, 1) == -1) {
  1166. fprintf(stderr, "sd_blk_read: read error on host side\n");
  1167. return;
  1168. }
  1169. if (end > (addr & ~511) + 512) {
  1170. memcpy(sd->data, sd->buf + (addr & 511), 512 - (addr & 511));
  1171. if (bdrv_read(sd->bdrv, end >> 9, sd->buf, 1) == -1) {
  1172. fprintf(stderr, "sd_blk_read: read error on host side\n");
  1173. return;
  1174. }
  1175. memcpy(sd->data + 512 - (addr & 511), sd->buf, end & 511);
  1176. } else
  1177. memcpy(sd->data, sd->buf + (addr & 511), len);
  1178. }
  1179. static void sd_blk_write(SDState *sd, uint64_t addr, uint32_t len)
  1180. {
  1181. uint64_t end = addr + len;
  1182. if ((addr & 511) || len < 512)
  1183. if (!sd->bdrv || bdrv_read(sd->bdrv, addr >> 9, sd->buf, 1) == -1) {
  1184. fprintf(stderr, "sd_blk_write: read error on host side\n");
  1185. return;
  1186. }
  1187. if (end > (addr & ~511) + 512) {
  1188. memcpy(sd->buf + (addr & 511), sd->data, 512 - (addr & 511));
  1189. if (bdrv_write(sd->bdrv, addr >> 9, sd->buf, 1) == -1) {
  1190. fprintf(stderr, "sd_blk_write: write error on host side\n");
  1191. return;
  1192. }
  1193. if (bdrv_read(sd->bdrv, end >> 9, sd->buf, 1) == -1) {
  1194. fprintf(stderr, "sd_blk_write: read error on host side\n");
  1195. return;
  1196. }
  1197. memcpy(sd->buf, sd->data + 512 - (addr & 511), end & 511);
  1198. if (bdrv_write(sd->bdrv, end >> 9, sd->buf, 1) == -1)
  1199. fprintf(stderr, "sd_blk_write: write error on host side\n");
  1200. } else {
  1201. memcpy(sd->buf + (addr & 511), sd->data, len);
  1202. if (!sd->bdrv || bdrv_write(sd->bdrv, addr >> 9, sd->buf, 1) == -1)
  1203. fprintf(stderr, "sd_blk_write: write error on host side\n");
  1204. }
  1205. }
  1206. #define BLK_READ_BLOCK(a, len) sd_blk_read(sd, a, len)
  1207. #define BLK_WRITE_BLOCK(a, len) sd_blk_write(sd, a, len)
  1208. #define APP_READ_BLOCK(a, len) memset(sd->data, 0xec, len)
  1209. #define APP_WRITE_BLOCK(a, len)
  1210. void sd_write_data(SDState *sd, uint8_t value)
  1211. {
  1212. int i;
  1213. if (!sd->bdrv || !bdrv_is_inserted(sd->bdrv) || !sd->enable)
  1214. return;
  1215. if (sd->state != sd_receivingdata_state) {
  1216. fprintf(stderr, "sd_write_data: not in Receiving-Data state\n");
  1217. return;
  1218. }
  1219. if (sd->card_status & (ADDRESS_ERROR | WP_VIOLATION))
  1220. return;
  1221. switch (sd->current_cmd) {
  1222. case 24: /* CMD24: WRITE_SINGLE_BLOCK */
  1223. sd->data[sd->data_offset ++] = value;
  1224. if (sd->data_offset >= sd->blk_len) {
  1225. /* TODO: Check CRC before committing */
  1226. sd->state = sd_programming_state;
  1227. BLK_WRITE_BLOCK(sd->data_start, sd->data_offset);
  1228. sd->blk_written ++;
  1229. sd->csd[14] |= 0x40;
  1230. /* Bzzzzzzztt .... Operation complete. */
  1231. sd->state = sd_transfer_state;
  1232. }
  1233. break;
  1234. case 25: /* CMD25: WRITE_MULTIPLE_BLOCK */
  1235. if (sd->data_offset == 0) {
  1236. /* Start of the block - lets check the address is valid */
  1237. if (sd->data_start + sd->blk_len > sd->size) {
  1238. sd->card_status |= ADDRESS_ERROR;
  1239. break;
  1240. }
  1241. if (sd_wp_addr(sd, sd->data_start)) {
  1242. sd->card_status |= WP_VIOLATION;
  1243. break;
  1244. }
  1245. }
  1246. sd->data[sd->data_offset++] = value;
  1247. if (sd->data_offset >= sd->blk_len) {
  1248. /* TODO: Check CRC before committing */
  1249. sd->state = sd_programming_state;
  1250. BLK_WRITE_BLOCK(sd->data_start, sd->data_offset);
  1251. sd->blk_written++;
  1252. sd->data_start += sd->blk_len;
  1253. sd->data_offset = 0;
  1254. sd->csd[14] |= 0x40;
  1255. /* Bzzzzzzztt .... Operation complete. */
  1256. sd->state = sd_receivingdata_state;
  1257. }
  1258. break;
  1259. case 26: /* CMD26: PROGRAM_CID */
  1260. sd->data[sd->data_offset ++] = value;
  1261. if (sd->data_offset >= sizeof(sd->cid)) {
  1262. /* TODO: Check CRC before committing */
  1263. sd->state = sd_programming_state;
  1264. for (i = 0; i < sizeof(sd->cid); i ++)
  1265. if ((sd->cid[i] | 0x00) != sd->data[i])
  1266. sd->card_status |= CID_CSD_OVERWRITE;
  1267. if (!(sd->card_status & CID_CSD_OVERWRITE))
  1268. for (i = 0; i < sizeof(sd->cid); i ++) {
  1269. sd->cid[i] |= 0x00;
  1270. sd->cid[i] &= sd->data[i];
  1271. }
  1272. /* Bzzzzzzztt .... Operation complete. */
  1273. sd->state = sd_transfer_state;
  1274. }
  1275. break;
  1276. case 27: /* CMD27: PROGRAM_CSD */
  1277. sd->data[sd->data_offset ++] = value;
  1278. if (sd->data_offset >= sizeof(sd->csd)) {
  1279. /* TODO: Check CRC before committing */
  1280. sd->state = sd_programming_state;
  1281. for (i = 0; i < sizeof(sd->csd); i ++)
  1282. if ((sd->csd[i] | sd_csd_rw_mask[i]) !=
  1283. (sd->data[i] | sd_csd_rw_mask[i]))
  1284. sd->card_status |= CID_CSD_OVERWRITE;
  1285. /* Copy flag (OTP) & Permanent write protect */
  1286. if (sd->csd[14] & ~sd->data[14] & 0x60)
  1287. sd->card_status |= CID_CSD_OVERWRITE;
  1288. if (!(sd->card_status & CID_CSD_OVERWRITE))
  1289. for (i = 0; i < sizeof(sd->csd); i ++) {
  1290. sd->csd[i] |= sd_csd_rw_mask[i];
  1291. sd->csd[i] &= sd->data[i];
  1292. }
  1293. /* Bzzzzzzztt .... Operation complete. */
  1294. sd->state = sd_transfer_state;
  1295. }
  1296. break;
  1297. case 42: /* CMD42: LOCK_UNLOCK */
  1298. sd->data[sd->data_offset ++] = value;
  1299. if (sd->data_offset >= sd->blk_len) {
  1300. /* TODO: Check CRC before committing */
  1301. sd->state = sd_programming_state;
  1302. sd_lock_command(sd);
  1303. /* Bzzzzzzztt .... Operation complete. */
  1304. sd->state = sd_transfer_state;
  1305. }
  1306. break;
  1307. case 56: /* CMD56: GEN_CMD */
  1308. sd->data[sd->data_offset ++] = value;
  1309. if (sd->data_offset >= sd->blk_len) {
  1310. APP_WRITE_BLOCK(sd->data_start, sd->data_offset);
  1311. sd->state = sd_transfer_state;
  1312. }
  1313. break;
  1314. default:
  1315. fprintf(stderr, "sd_write_data: unknown command\n");
  1316. break;
  1317. }
  1318. }
  1319. uint8_t sd_read_data(SDState *sd)
  1320. {
  1321. /* TODO: Append CRCs */
  1322. uint8_t ret;
  1323. int io_len;
  1324. if (!sd->bdrv || !bdrv_is_inserted(sd->bdrv) || !sd->enable)
  1325. return 0x00;
  1326. if (sd->state != sd_sendingdata_state) {
  1327. fprintf(stderr, "sd_read_data: not in Sending-Data state\n");
  1328. return 0x00;
  1329. }
  1330. if (sd->card_status & (ADDRESS_ERROR | WP_VIOLATION))
  1331. return 0x00;
  1332. io_len = (sd->ocr & (1 << 30)) ? 512 : sd->blk_len;
  1333. switch (sd->current_cmd) {
  1334. case 6: /* CMD6: SWITCH_FUNCTION */
  1335. ret = sd->data[sd->data_offset ++];
  1336. if (sd->data_offset >= 64)
  1337. sd->state = sd_transfer_state;
  1338. break;
  1339. case 9: /* CMD9: SEND_CSD */
  1340. case 10: /* CMD10: SEND_CID */
  1341. ret = sd->data[sd->data_offset ++];
  1342. if (sd->data_offset >= 16)
  1343. sd->state = sd_transfer_state;
  1344. break;
  1345. case 11: /* CMD11: READ_DAT_UNTIL_STOP */
  1346. if (sd->data_offset == 0)
  1347. BLK_READ_BLOCK(sd->data_start, io_len);
  1348. ret = sd->data[sd->data_offset ++];
  1349. if (sd->data_offset >= io_len) {
  1350. sd->data_start += io_len;
  1351. sd->data_offset = 0;
  1352. if (sd->data_start + io_len > sd->size) {
  1353. sd->card_status |= ADDRESS_ERROR;
  1354. break;
  1355. }
  1356. }
  1357. break;
  1358. case 13: /* ACMD13: SD_STATUS */
  1359. ret = sd->sd_status[sd->data_offset ++];
  1360. if (sd->data_offset >= sizeof(sd->sd_status))
  1361. sd->state = sd_transfer_state;
  1362. break;
  1363. case 17: /* CMD17: READ_SINGLE_BLOCK */
  1364. if (sd->data_offset == 0)
  1365. BLK_READ_BLOCK(sd->data_start, io_len);
  1366. ret = sd->data[sd->data_offset ++];
  1367. if (sd->data_offset >= io_len)
  1368. sd->state = sd_transfer_state;
  1369. break;
  1370. case 18: /* CMD18: READ_MULTIPLE_BLOCK */
  1371. if (sd->data_offset == 0)
  1372. BLK_READ_BLOCK(sd->data_start, io_len);
  1373. ret = sd->data[sd->data_offset ++];
  1374. if (sd->data_offset >= io_len) {
  1375. sd->data_start += io_len;
  1376. sd->data_offset = 0;
  1377. if (sd->data_start + io_len > sd->size) {
  1378. sd->card_status |= ADDRESS_ERROR;
  1379. break;
  1380. }
  1381. }
  1382. break;
  1383. case 22: /* ACMD22: SEND_NUM_WR_BLOCKS */
  1384. ret = sd->data[sd->data_offset ++];
  1385. if (sd->data_offset >= 4)
  1386. sd->state = sd_transfer_state;
  1387. break;
  1388. case 30: /* CMD30: SEND_WRITE_PROT */
  1389. ret = sd->data[sd->data_offset ++];
  1390. if (sd->data_offset >= 4)
  1391. sd->state = sd_transfer_state;
  1392. break;
  1393. case 51: /* ACMD51: SEND_SCR */
  1394. ret = sd->scr[sd->data_offset ++];
  1395. if (sd->data_offset >= sizeof(sd->scr))
  1396. sd->state = sd_transfer_state;
  1397. break;
  1398. case 56: /* CMD56: GEN_CMD */
  1399. if (sd->data_offset == 0)
  1400. APP_READ_BLOCK(sd->data_start, sd->blk_len);
  1401. ret = sd->data[sd->data_offset ++];
  1402. if (sd->data_offset >= sd->blk_len)
  1403. sd->state = sd_transfer_state;
  1404. break;
  1405. default:
  1406. fprintf(stderr, "sd_read_data: unknown command\n");
  1407. return 0x00;
  1408. }
  1409. return ret;
  1410. }
  1411. int sd_data_ready(SDState *sd)
  1412. {
  1413. return sd->state == sd_sendingdata_state;
  1414. }
  1415. void sd_enable(SDState *sd, int enable)
  1416. {
  1417. sd->enable = enable;
  1418. }