mmc_rpmb.c 13 KB

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  1. #include "mmc_rpmb.h"
  2. #include "msdc.h"
  3. #define RPMB_KEY_DUMP 0
  4. extern int32_t rpmb_hmac(uint32_t pattern, uint32_t size);
  5. extern unsigned int g_random_pattern;
  6. u32 *shared_msg_addr = 0x44A02040;
  7. u32 *shared_hmac_addr = 0x44A02CE0;
  8. static const char * const rpmb_err_msg[] = {
  9. "",
  10. "General failure",
  11. "Authentication failure",
  12. "Counter failure",
  13. "Address failure",
  14. "Write failure",
  15. "Read failure",
  16. "Authentication key not yet programmed",
  17. };
  18. u16 cpu_to_be16p(u16 *p)
  19. {
  20. return (((*p << 8)&0xFF00) | (*p >> 8));
  21. }
  22. u32 cpu_to_be32p(u32 *p)
  23. {
  24. return (((*p & 0xFF) << 24) | ((*p & 0xFF00) << 8) | ((*p & 0xFF0000) >> 8) | (*p & 0xFF000000) >> 24 );
  25. }
  26. static int mmc_rpmb_pre_frame(struct mmc_rpmb_req *rpmb_req)
  27. {
  28. struct mmc_rpmb_cfg *rpmb_cfg = rpmb_req->rpmb_cfg;
  29. u8 *data_frame = rpmb_req->data_frame;
  30. u32 wc;
  31. u16 blks = rpmb_cfg->blk_cnt;
  32. u16 addr;
  33. u16 type;
  34. u8 *nonce = rpmb_cfg->nonce;
  35. memset(data_frame, 0, 512 * blks);
  36. type = cpu_to_be16p(&rpmb_cfg->type);
  37. memcpy(data_frame + RPMB_TYPE_BEG, &type, 2);
  38. if (rpmb_cfg->type == RPMB_PROGRAM_KEY) {
  39. memcpy(data_frame + RPMB_MAC_BEG, rpmb_cfg->mac, RPMB_SZ_MAC);
  40. }
  41. else if (rpmb_cfg->type == RPMB_GET_WRITE_COUNTER ||
  42. rpmb_cfg->type == RPMB_READ_DATA) {
  43. /*
  44. * One package prepared
  45. * This request needs Nonce and type
  46. * If is data read, then also need addr
  47. */
  48. if (type == RPMB_READ_DATA) {
  49. addr = cpu_to_be16p(&rpmb_cfg->addr);
  50. memcpy(data_frame + RPMB_ADDR_BEG, &addr, 2);
  51. }
  52. /* convert Nonce code */
  53. memcpy(data_frame + RPMB_NONCE_BEG, nonce, RPMB_SZ_NONCE);
  54. }
  55. else if (rpmb_cfg->type == RPMB_WRITE_DATA) {
  56. addr = cpu_to_be16p(&rpmb_cfg->addr);
  57. memcpy(data_frame + RPMB_ADDR_BEG, &addr, 2);
  58. wc = cpu_to_be32p(&rpmb_cfg->wc);
  59. memcpy(data_frame + RPMB_WCOUNTER_BEG, &wc, 4);
  60. blks = cpu_to_be16p(&rpmb_cfg->blk_cnt);
  61. memcpy(data_frame + RPMB_BLKS_BEG, &blks, 2);
  62. }
  63. return 0;
  64. }
  65. static int mmc_rpmb_post_frame(struct mmc_rpmb_req *rpmb_req)
  66. {
  67. struct mmc_rpmb_cfg *rpmb_cfg = rpmb_req->rpmb_cfg;
  68. u8 *data_frame = rpmb_req->data_frame;
  69. u16 result;
  70. memcpy(&result, data_frame + RPMB_RES_BEG, 2);
  71. rpmb_cfg->result = cpu_to_be16p(&result);
  72. if (rpmb_cfg->type == RPMB_GET_WRITE_COUNTER ||
  73. rpmb_cfg->type == RPMB_WRITE_DATA) {
  74. rpmb_cfg->wc = cpu_to_be32p((u32 *)&data_frame[RPMB_WCOUNTER_BEG]);
  75. dprintf(INFO, "%s, rpmb_cfg->wc = %x\n", __func__, rpmb_cfg->wc);
  76. }
  77. if (rpmb_cfg->type == RPMB_GET_WRITE_COUNTER ||
  78. rpmb_cfg->type == RPMB_READ_DATA) {
  79. /* nonce copy */
  80. memcpy(rpmb_cfg->nonce, data_frame + RPMB_NONCE_BEG, RPMB_SZ_NONCE);
  81. }
  82. if (rpmb_cfg->mac) {
  83. /*
  84. * To do. compute if mac is legal or not. Current we don't do this since we just perform get wc to check if we need set key.
  85. */
  86. memcpy(rpmb_cfg->mac, data_frame + RPMB_MAC_BEG, RPMB_SZ_MAC);
  87. }
  88. return 0;
  89. }
  90. static int mmc_rpmb_send_command(struct mmc_card *card, u8 *data_frame, u16 blks, u16 type, u8 req_type)
  91. {
  92. struct mmc_host *host = card->host;
  93. int err;
  94. /*
  95. * Auto CMD23 and CMD25 or CMD18
  96. */
  97. if ((req_type == RPMB_REQ && type == RPMB_WRITE_DATA) ||
  98. (req_type == RPMB_REQ && type == RPMB_PROGRAM_KEY))
  99. msdc_set_reliable_write(host, 1);
  100. else
  101. msdc_set_reliable_write(host, 0);
  102. msdc_set_autocmd(host, MSDC_AUTOCMD23, 1);
  103. if (req_type == RPMB_REQ)
  104. err = mmc_block_write(0, 0, blks, (unsigned long *) data_frame);
  105. else
  106. err = mmc_block_read(0, 0, blks, (unsigned long *) data_frame);
  107. msdc_set_autocmd(host, MSDC_AUTOCMD23, 0);
  108. if (err)
  109. dprintf(CRITICAL, "%s: CMD%s failed. (%d)\n", __func__, ((req_type==RPMB_REQ) ? "25":"18"), err);
  110. return err;
  111. }
  112. static int mmc_rpmb_start_req(struct mmc_card *card, struct mmc_rpmb_req *rpmb_req)
  113. {
  114. int err = 0;
  115. u16 blks = rpmb_req->rpmb_cfg->blk_cnt;
  116. u16 type = rpmb_req->rpmb_cfg->type;
  117. u8 *data_frame = rpmb_req->data_frame;
  118. /*
  119. * STEP 1: send request to RPMB partition
  120. */
  121. if (type == RPMB_WRITE_DATA)
  122. err = mmc_rpmb_send_command(card, data_frame, blks, type, RPMB_REQ);
  123. else
  124. err = mmc_rpmb_send_command(card, data_frame, 1, type, RPMB_REQ);
  125. if (err) {
  126. dprintf(CRITICAL, "%s step 1, request failed (%d)\n", __func__, err);
  127. goto out;
  128. }
  129. /*
  130. * STEP 2: check write result
  131. * Only for WRITE_DATA or Program key
  132. */
  133. memset(data_frame, 0, 512 * blks);
  134. if (type == RPMB_WRITE_DATA || type == RPMB_PROGRAM_KEY) {
  135. data_frame[RPMB_TYPE_BEG + 1] = RPMB_RESULT_READ;
  136. err = mmc_rpmb_send_command(card, data_frame, 1, RPMB_RESULT_READ, RPMB_REQ);
  137. if (err) {
  138. dprintf(CRITICAL, "%s step 2, request result failed (%d)\n", __func__, err);
  139. goto out;
  140. }
  141. }
  142. /*
  143. * STEP 3: get response from RPMB partition
  144. */
  145. data_frame[RPMB_TYPE_BEG] = 0;
  146. data_frame[RPMB_TYPE_BEG + 1] = type;
  147. if (type == RPMB_READ_DATA)
  148. err = mmc_rpmb_send_command(card, data_frame, blks, type, RPMB_RESP);
  149. else
  150. err = mmc_rpmb_send_command(card, data_frame, 1, type, RPMB_RESP);
  151. if (err) {
  152. dprintf(CRITICAL, "%s step 3, response failed (%d)\n", __func__, err);
  153. }
  154. out:
  155. return err;
  156. }
  157. int mmc_rpmb_check_result(u16 result)
  158. {
  159. if (result) {
  160. dprintf(CRITICAL, "%s %s %s\n", __func__, rpmb_err_msg[result & 0x7],
  161. (result & 0x80) ? "Write counter has expired" : "");
  162. }
  163. return result;
  164. }
  165. int mmc_rpmb_get_wc(u32 *wc, int *rpmb_result)
  166. {
  167. struct mmc_card *card = mmc_get_card(0);
  168. struct mmc_rpmb_cfg rpmb_cfg;
  169. struct mmc_rpmb_req rpmb_req;
  170. u8 *ext_csd = &card->raw_ext_csd[0];
  171. u8 rpmb_frame[512];
  172. u8 nonce[16];
  173. u8 val;
  174. int ret = 0;
  175. memset(&rpmb_cfg, 0, sizeof(struct mmc_rpmb_cfg));
  176. memset(nonce, 0, 16);
  177. rpmb_cfg.type = RPMB_GET_WRITE_COUNTER;
  178. rpmb_cfg.result = 0;
  179. rpmb_cfg.blk_cnt = 1;
  180. rpmb_cfg.addr = 0;
  181. rpmb_cfg.wc = 0;
  182. rpmb_cfg.nonce = nonce;
  183. rpmb_cfg.data = NULL;
  184. rpmb_cfg.mac = NULL;
  185. /*
  186. * 1. Switch to RPMB partition.
  187. */
  188. val = (ext_csd[EXT_CSD_PART_CFG] & ~0x7) | (EXT_CSD_PART_CFG_RPMB_PART & 0x7);
  189. ret = mmc_set_part_config(card, val);
  190. if (ret) {
  191. dprintf(CRITICAL, "%s, mmc_set_part_config failed!! (%x)\n", __func__, ret);
  192. return ret;
  193. }
  194. dprintf(INFO, "%s, mmc_set_part_config done!!\n", __func__);
  195. rpmb_req.rpmb_cfg = &rpmb_cfg;
  196. rpmb_req.data_frame = rpmb_frame;
  197. /*
  198. * 2. Prepare get wc data frame.
  199. */
  200. ret = mmc_rpmb_pre_frame(&rpmb_req);
  201. /*
  202. * 3. CMD 23 and followed CMD25/18 procedure.
  203. */
  204. ret = mmc_rpmb_start_req(card, &rpmb_req);
  205. if (ret) {
  206. dprintf(CRITICAL, "%s, mmc_rpmb_part_ops failed!! (%x)\n", __func__, ret);
  207. return ret;
  208. }
  209. ret = mmc_rpmb_post_frame(&rpmb_req);
  210. dprintf(INFO, "%s, rpmb_req.result=%x\n", __func__, rpmb_cfg.result);
  211. memcpy(shared_msg_addr, rpmb_frame + RPMB_DATA_BEG, 284);
  212. arch_clean_invalidate_cache_range((addr_t) shared_msg_addr, 4096);
  213. ret = rpmb_hmac(g_random_pattern, 284);
  214. if (ret) {
  215. dprintf(CRITICAL, "%s, rpmb_hmac error.\n", __func__);
  216. }
  217. if (memcmp(rpmb_frame + RPMB_MAC_BEG, shared_hmac_addr, 32) != 0) {
  218. dprintf(CRITICAL, "%s, compare hmac error!!\n", __func__);
  219. return ret;
  220. }
  221. //ret = be16_to_cpu(rpmb_req.result);
  222. /*
  223. * 4. Check result.
  224. */
  225. *rpmb_result = mmc_rpmb_check_result(rpmb_cfg.result);
  226. *wc = rpmb_cfg.wc;
  227. return ret;
  228. }
  229. int mmc_rpmb_set_key(u8 *key)
  230. {
  231. struct mmc_card *card = mmc_get_card(0);
  232. struct mmc_rpmb_cfg rpmb_cfg;
  233. struct mmc_rpmb_req rpmb_req;
  234. u8 *ext_csd = &card->raw_ext_csd[0];
  235. u8 rpmb_frame[512];
  236. u8 val;
  237. int ret, rpmb_result = 0;
  238. u32 wc;
  239. ret = mmc_rpmb_get_wc(&wc, &rpmb_result);
  240. #if RPMB_KEY_DUMP
  241. dprintf(INFO, "rpmb key=\n");
  242. for (i=0;i<32;i++)
  243. dprintf(INFO, "0x%x, ", key[i]);
  244. #endif
  245. /* if any errors, return it */
  246. if (ret) {
  247. dprintf(CRITICAL, "%s, get wc failed!! (%d)\n", __func__, ret);
  248. return ret;
  249. }
  250. if (rpmb_result != 7) {
  251. dprintf(CRITICAL, "mmc rpmb key is already programmed!!\n");
  252. return ret;
  253. }
  254. memset(&rpmb_cfg, 0, sizeof(struct mmc_rpmb_cfg));
  255. rpmb_cfg.type = RPMB_PROGRAM_KEY;
  256. rpmb_cfg.result = 0;
  257. rpmb_cfg.blk_cnt = 1;
  258. rpmb_cfg.addr = 0;
  259. rpmb_cfg.wc = NULL;
  260. rpmb_cfg.nonce = NULL;
  261. rpmb_cfg.data = NULL;
  262. rpmb_cfg.mac = key;
  263. /*
  264. * 1. Switch to RPMB partition.
  265. */
  266. val = (ext_csd[EXT_CSD_PART_CFG] & ~0x7) | (EXT_CSD_PART_CFG_RPMB_PART & 0x7);
  267. ret = mmc_set_part_config(card, val);
  268. if (ret) {
  269. dprintf(CRITICAL, "%s, mmc_set_part_config failed!! (%x)\n", __func__, ret);
  270. return ret;
  271. }
  272. rpmb_req.rpmb_cfg = &rpmb_cfg;
  273. rpmb_req.data_frame = rpmb_frame;
  274. /*
  275. * 2. Prepare program key data frame.
  276. */
  277. ret = mmc_rpmb_pre_frame(&rpmb_req);
  278. /*
  279. * 3. CMD 23 and followed CMD25/18 procedure.
  280. */
  281. ret = mmc_rpmb_start_req(card, &rpmb_req);
  282. if (ret) {
  283. dprintf(CRITICAL, "%s, mmc_rpmb_part_ops failed!! (%x)\n", __func__, ret);
  284. return ret;
  285. }
  286. ret = mmc_rpmb_post_frame(&rpmb_req);
  287. dprintf(INFO, "%s, rpmb_req.result=%x\n", __func__, rpmb_cfg.result);
  288. //ret = be16_to_cpu(rpmb_req.result);
  289. /*
  290. * 4. Check result.
  291. */
  292. ret = mmc_rpmb_check_result(rpmb_cfg.result);
  293. if (ret == 0)
  294. dprintf(INFO, "RPMB key is successfully programmed!!\n");
  295. return ret;
  296. }
  297. int mmc_rpmb_read_data(u32 blkAddr, u32 *buf, u32 bufLen)
  298. {
  299. struct mmc_card *card = mmc_get_card(0);
  300. struct mmc_rpmb_cfg rpmb_cfg;
  301. struct mmc_rpmb_req rpmb_req;
  302. u32 blkLen;
  303. u32 left_size = bufLen;
  304. u32 tran_size;
  305. u8 *ext_csd = &card->raw_ext_csd[0];
  306. u8 rpmb_frame[512];
  307. u8 nonce[16];
  308. u8 val;
  309. u32 ret = 0, i;
  310. /*
  311. * 1. Switch to RPMB partition.
  312. */
  313. val = (ext_csd[EXT_CSD_PART_CFG] & ~0x7) | (EXT_CSD_PART_CFG_RPMB_PART & 0x7);
  314. ret = mmc_set_part_config(card, val);
  315. if (ret) {
  316. dprintf(CRITICAL, "%s, mmc_set_part_config failed!! (%x)\n", __func__, ret);
  317. return ret;
  318. }
  319. dprintf(INFO, "%s, mmc_set_part_config done!!\n", __func__);
  320. blkLen = (bufLen % RPMB_SZ_DATA) ? (bufLen / RPMB_SZ_DATA + 1) : (bufLen / RPMB_SZ_DATA);
  321. for (i = 0; i < blkLen; i++) {
  322. memset(&rpmb_cfg, 0, sizeof(struct mmc_rpmb_cfg));
  323. memset(nonce, 0, 16);
  324. rpmb_cfg.type = RPMB_READ_DATA;
  325. rpmb_cfg.result = 0;
  326. rpmb_cfg.blk_cnt = 1;
  327. rpmb_cfg.addr = blkAddr + i;
  328. rpmb_cfg.wc = NULL;
  329. rpmb_cfg.nonce = nonce;
  330. rpmb_cfg.data = NULL;
  331. rpmb_cfg.mac = NULL;
  332. rpmb_req.rpmb_cfg = &rpmb_cfg;
  333. rpmb_req.data_frame = rpmb_frame;
  334. /*
  335. * 2. Prepare read data frame.
  336. */
  337. ret = mmc_rpmb_pre_frame(&rpmb_req);
  338. /*
  339. * 3. CMD 23 and followed CMD25/18 procedure.
  340. */
  341. ret = mmc_rpmb_start_req(card, &rpmb_req);
  342. if (ret) {
  343. dprintf(CRITICAL, "%s, mmc_rpmb_start_req failed!! (%x)\n", __func__, ret);
  344. return ret;
  345. }
  346. ret = mmc_rpmb_post_frame(&rpmb_req);
  347. dprintf(INFO, "%s, rpmb_req.result=%x\n", __func__, rpmb_cfg.result);
  348. //ret = be16_to_cpu(rpmb_req.result);
  349. /*
  350. * 4. Authenticate hmac.
  351. */
  352. memcpy(shared_msg_addr, rpmb_frame + RPMB_DATA_BEG, 284);
  353. arch_clean_invalidate_cache_range((addr_t) shared_msg_addr, 4096);
  354. ret = rpmb_hmac(g_random_pattern, 284);
  355. if (ret) {
  356. dprintf(CRITICAL, "%s, rpmb_hmac error.\n", __func__);
  357. }
  358. if (memcmp(rpmb_frame + RPMB_MAC_BEG, shared_hmac_addr, 32) != 0) {
  359. dprintf(CRITICAL, "%s, compare hmac error!!\n", __func__);
  360. return ret;
  361. }
  362. /*
  363. * 5. Authenticate nonce.
  364. */
  365. if (memcmp(nonce, rpmb_cfg.nonce, RPMB_SZ_NONCE) != 0) {
  366. dprintf(CRITICAL, "%s, compare nonce error!!\n", __func__);
  367. return ret;
  368. }
  369. /*
  370. * 6. Check result.
  371. */
  372. if (mmc_rpmb_check_result(rpmb_cfg.result))
  373. return ret;
  374. if (left_size >= RPMB_SZ_DATA)
  375. tran_size = RPMB_SZ_DATA;
  376. else
  377. tran_size = left_size;
  378. memcpy(buf + i * RPMB_SZ_DATA, rpmb_frame + RPMB_DATA_BEG, tran_size);
  379. left_size -= tran_size;
  380. }
  381. return ret;
  382. }
  383. int mmc_rpmb_write_data(u32 blkAddr, u32 *buf, u32 bufLen)
  384. {
  385. struct mmc_card *card = mmc_get_card(0);
  386. struct mmc_rpmb_cfg rpmb_cfg;
  387. struct mmc_rpmb_req rpmb_req;
  388. u32 blkLen;
  389. u32 left_size = bufLen;
  390. u32 tran_size;
  391. u8 rpmb_frame[512];
  392. int ret, rpmb_result = 0;
  393. u32 wc;
  394. int i;
  395. blkLen = (bufLen % RPMB_SZ_DATA) ? (bufLen / RPMB_SZ_DATA + 1) : (bufLen / RPMB_SZ_DATA);
  396. for (i = 0; i < blkLen; i++) {
  397. ret = mmc_rpmb_get_wc(&wc, &rpmb_result);
  398. /* if any errors, return it */
  399. if (ret) {
  400. dprintf(CRITICAL, "%s, get wc failed!! (%d)\n", __func__, ret);
  401. return ret;
  402. }
  403. memset(&rpmb_cfg, 0, sizeof(struct mmc_rpmb_cfg));
  404. rpmb_cfg.type = RPMB_WRITE_DATA;
  405. rpmb_cfg.result = 0;
  406. rpmb_cfg.blk_cnt = 1;
  407. rpmb_cfg.addr = blkAddr + i;
  408. rpmb_cfg.wc = wc;
  409. rpmb_cfg.nonce = NULL;
  410. rpmb_cfg.data = buf;
  411. rpmb_cfg.mac = NULL;
  412. rpmb_req.rpmb_cfg = &rpmb_cfg;
  413. rpmb_req.data_frame = rpmb_frame;
  414. /*
  415. * 1. Prepare write data frame.
  416. */
  417. ret = mmc_rpmb_pre_frame(&rpmb_req);
  418. if (left_size >= RPMB_SZ_DATA)
  419. tran_size = RPMB_SZ_DATA;
  420. else
  421. tran_size = left_size;
  422. memcpy(rpmb_frame + RPMB_DATA_BEG, buf + i * RPMB_SZ_DATA, tran_size);
  423. /*
  424. * 2. Compute hmac.
  425. */
  426. memcpy(shared_msg_addr, rpmb_frame + RPMB_DATA_BEG, 284);
  427. arch_clean_invalidate_cache_range((addr_t) shared_msg_addr, 4096);
  428. ret = rpmb_hmac(g_random_pattern, 284);
  429. if (ret)
  430. dprintf(CRITICAL, "%s, rpmb_hmac error!!\n", __func__);
  431. memcpy(rpmb_frame + RPMB_MAC_BEG, shared_hmac_addr, 32);
  432. /*
  433. * 3. CMD 23 and followed CMD25/18 procedure.
  434. */
  435. ret = mmc_rpmb_start_req(card, &rpmb_req);
  436. if (ret) {
  437. dprintf(CRITICAL, "%s, mmc_rpmb_part_ops failed!! (%x)\n", __func__, ret);
  438. return ret;
  439. }
  440. ret = mmc_rpmb_post_frame(&rpmb_req);
  441. dprintf(INFO, "%s, rpmb_req.result=%x\n", __func__, rpmb_cfg.result);
  442. /*
  443. * 4. Check result.
  444. */
  445. ret = mmc_rpmb_check_result(rpmb_cfg.result);
  446. if (ret)
  447. dprintf(CRITICAL, "%s, check result error!!\n", __func__);
  448. left_size -= tran_size;
  449. }
  450. return ret;
  451. }
  452. u32 mmc_rpmb_get_size(void)
  453. {
  454. struct mmc_card *card = mmc_get_card(0);
  455. u8 *ext_csd = &card->raw_ext_csd[0];
  456. return ext_csd[EXT_CSD_RPMB_SIZE_MULT] * 128 * 1024;
  457. }