atmel.c 12 KB

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  1. /*
  2. * Atmel SPI DataFlash support
  3. *
  4. * Copyright (C) 2008 Atmel Corporation
  5. * Licensed under the GPL-2 or later.
  6. */
  7. #include <common.h>
  8. #include <malloc.h>
  9. #include <spi_flash.h>
  10. #include "spi_flash_internal.h"
  11. /* AT45-specific commands */
  12. #define CMD_AT45_READ_STATUS 0xd7
  13. #define CMD_AT45_ERASE_PAGE 0x81
  14. #define CMD_AT45_LOAD_PROG_BUF1 0x82
  15. #define CMD_AT45_LOAD_BUF1 0x84
  16. #define CMD_AT45_LOAD_PROG_BUF2 0x85
  17. #define CMD_AT45_LOAD_BUF2 0x87
  18. #define CMD_AT45_PROG_BUF1 0x88
  19. #define CMD_AT45_PROG_BUF2 0x89
  20. /* AT45 status register bits */
  21. #define AT45_STATUS_P2_PAGE_SIZE (1 << 0)
  22. #define AT45_STATUS_READY (1 << 7)
  23. /* DataFlash family IDs, as obtained from the second idcode byte */
  24. #define DF_FAMILY_AT26F 0
  25. #define DF_FAMILY_AT45 1
  26. #define DF_FAMILY_AT26DF 2 /* AT25DF and AT26DF */
  27. struct atmel_spi_flash_params {
  28. u8 idcode1;
  29. /* Log2 of page size in power-of-two mode */
  30. u8 l2_page_size;
  31. u8 pages_per_block;
  32. u8 blocks_per_sector;
  33. u8 nr_sectors;
  34. const char *name;
  35. };
  36. /* spi_flash needs to be first so upper layers can free() it */
  37. struct atmel_spi_flash {
  38. struct spi_flash flash;
  39. const struct atmel_spi_flash_params *params;
  40. };
  41. static inline struct atmel_spi_flash *
  42. to_atmel_spi_flash(struct spi_flash *flash)
  43. {
  44. return container_of(flash, struct atmel_spi_flash, flash);
  45. }
  46. static const struct atmel_spi_flash_params atmel_spi_flash_table[] = {
  47. {
  48. .idcode1 = 0x22,
  49. .l2_page_size = 8,
  50. .pages_per_block = 8,
  51. .blocks_per_sector = 16,
  52. .nr_sectors = 4,
  53. .name = "AT45DB011D",
  54. },
  55. {
  56. .idcode1 = 0x23,
  57. .l2_page_size = 8,
  58. .pages_per_block = 8,
  59. .blocks_per_sector = 16,
  60. .nr_sectors = 8,
  61. .name = "AT45DB021D",
  62. },
  63. {
  64. .idcode1 = 0x24,
  65. .l2_page_size = 8,
  66. .pages_per_block = 8,
  67. .blocks_per_sector = 32,
  68. .nr_sectors = 8,
  69. .name = "AT45DB041D",
  70. },
  71. {
  72. .idcode1 = 0x25,
  73. .l2_page_size = 8,
  74. .pages_per_block = 8,
  75. .blocks_per_sector = 32,
  76. .nr_sectors = 16,
  77. .name = "AT45DB081D",
  78. },
  79. {
  80. .idcode1 = 0x26,
  81. .l2_page_size = 9,
  82. .pages_per_block = 8,
  83. .blocks_per_sector = 32,
  84. .nr_sectors = 16,
  85. .name = "AT45DB161D",
  86. },
  87. {
  88. .idcode1 = 0x27,
  89. .l2_page_size = 9,
  90. .pages_per_block = 8,
  91. .blocks_per_sector = 64,
  92. .nr_sectors = 64,
  93. .name = "AT45DB321D",
  94. },
  95. {
  96. .idcode1 = 0x28,
  97. .l2_page_size = 10,
  98. .pages_per_block = 8,
  99. .blocks_per_sector = 32,
  100. .nr_sectors = 32,
  101. .name = "AT45DB642D",
  102. },
  103. };
  104. static int at45_wait_ready(struct spi_flash *flash, unsigned long timeout)
  105. {
  106. struct spi_slave *spi = flash->spi;
  107. unsigned long timebase;
  108. int ret;
  109. u8 cmd = CMD_AT45_READ_STATUS;
  110. u8 status;
  111. timebase = get_timer(0);
  112. ret = spi_xfer(spi, 8, &cmd, NULL, SPI_XFER_BEGIN);
  113. if (ret)
  114. return -1;
  115. do {
  116. ret = spi_xfer(spi, 8, NULL, &status, 0);
  117. if (ret)
  118. return -1;
  119. if (status & AT45_STATUS_READY)
  120. break;
  121. } while (get_timer(timebase) < timeout);
  122. /* Deactivate CS */
  123. spi_xfer(spi, 0, NULL, NULL, SPI_XFER_END);
  124. if (status & AT45_STATUS_READY)
  125. return 0;
  126. /* Timed out */
  127. return -1;
  128. }
  129. /*
  130. * Assemble the address part of a command for AT45 devices in
  131. * non-power-of-two page size mode.
  132. */
  133. static void at45_build_address(struct atmel_spi_flash *asf, u8 *cmd, u32 offset)
  134. {
  135. unsigned long page_addr;
  136. unsigned long byte_addr;
  137. unsigned long page_size;
  138. unsigned int page_shift;
  139. /*
  140. * The "extra" space per page is the power-of-two page size
  141. * divided by 32.
  142. */
  143. page_shift = asf->params->l2_page_size;
  144. page_size = (1 << page_shift) + (1 << (page_shift - 5));
  145. page_shift++;
  146. page_addr = offset / page_size;
  147. byte_addr = offset % page_size;
  148. cmd[0] = page_addr >> (16 - page_shift);
  149. cmd[1] = page_addr << (page_shift - 8) | (byte_addr >> 8);
  150. cmd[2] = byte_addr;
  151. }
  152. static int dataflash_read_fast_at45(struct spi_flash *flash,
  153. u32 offset, size_t len, void *buf)
  154. {
  155. struct atmel_spi_flash *asf = to_atmel_spi_flash(flash);
  156. u8 cmd[5];
  157. cmd[0] = CMD_READ_ARRAY_FAST;
  158. at45_build_address(asf, cmd + 1, offset);
  159. cmd[4] = 0x00;
  160. return spi_flash_read_common(flash, cmd, sizeof(cmd), buf, len);
  161. }
  162. /*
  163. * TODO: the two write funcs (_p2/_at45) should get unified ...
  164. */
  165. static int dataflash_write_p2(struct spi_flash *flash,
  166. u32 offset, size_t len, const void *buf)
  167. {
  168. struct atmel_spi_flash *asf = to_atmel_spi_flash(flash);
  169. unsigned long page_size;
  170. u32 addr = offset;
  171. size_t chunk_len;
  172. size_t actual;
  173. int ret;
  174. u8 cmd[4];
  175. /*
  176. * TODO: This function currently uses only page buffer #1. We can
  177. * speed this up by using both buffers and loading one buffer while
  178. * the other is being programmed into main memory.
  179. */
  180. page_size = (1 << asf->params->l2_page_size);
  181. ret = spi_claim_bus(flash->spi);
  182. if (ret) {
  183. debug("SF: Unable to claim SPI bus\n");
  184. return ret;
  185. }
  186. for (actual = 0; actual < len; actual += chunk_len) {
  187. chunk_len = min(len - actual, page_size - (addr % page_size));
  188. /* Use the same address bits for both commands */
  189. cmd[0] = CMD_AT45_LOAD_BUF1;
  190. cmd[1] = addr >> 16;
  191. cmd[2] = addr >> 8;
  192. cmd[3] = addr;
  193. ret = spi_flash_cmd_write(flash->spi, cmd, 4,
  194. buf + actual, chunk_len);
  195. if (ret < 0) {
  196. debug("SF: Loading AT45 buffer failed\n");
  197. goto out;
  198. }
  199. cmd[0] = CMD_AT45_PROG_BUF1;
  200. ret = spi_flash_cmd_write(flash->spi, cmd, 4, NULL, 0);
  201. if (ret < 0) {
  202. debug("SF: AT45 page programming failed\n");
  203. goto out;
  204. }
  205. ret = at45_wait_ready(flash, SPI_FLASH_PROG_TIMEOUT);
  206. if (ret < 0) {
  207. debug("SF: AT45 page programming timed out\n");
  208. goto out;
  209. }
  210. addr += chunk_len;
  211. }
  212. debug("SF: AT45: Successfully programmed %zu bytes @ 0x%x\n",
  213. len, offset);
  214. ret = 0;
  215. out:
  216. spi_release_bus(flash->spi);
  217. return ret;
  218. }
  219. static int dataflash_write_at45(struct spi_flash *flash,
  220. u32 offset, size_t len, const void *buf)
  221. {
  222. struct atmel_spi_flash *asf = to_atmel_spi_flash(flash);
  223. unsigned long page_addr;
  224. unsigned long byte_addr;
  225. unsigned long page_size;
  226. unsigned int page_shift;
  227. size_t chunk_len;
  228. size_t actual;
  229. int ret;
  230. u8 cmd[4];
  231. /*
  232. * TODO: This function currently uses only page buffer #1. We can
  233. * speed this up by using both buffers and loading one buffer while
  234. * the other is being programmed into main memory.
  235. */
  236. page_shift = asf->params->l2_page_size;
  237. page_size = (1 << page_shift) + (1 << (page_shift - 5));
  238. page_shift++;
  239. page_addr = offset / page_size;
  240. byte_addr = offset % page_size;
  241. ret = spi_claim_bus(flash->spi);
  242. if (ret) {
  243. debug("SF: Unable to claim SPI bus\n");
  244. return ret;
  245. }
  246. for (actual = 0; actual < len; actual += chunk_len) {
  247. chunk_len = min(len - actual, page_size - byte_addr);
  248. /* Use the same address bits for both commands */
  249. cmd[0] = CMD_AT45_LOAD_BUF1;
  250. cmd[1] = page_addr >> (16 - page_shift);
  251. cmd[2] = page_addr << (page_shift - 8) | (byte_addr >> 8);
  252. cmd[3] = byte_addr;
  253. ret = spi_flash_cmd_write(flash->spi, cmd, 4,
  254. buf + actual, chunk_len);
  255. if (ret < 0) {
  256. debug("SF: Loading AT45 buffer failed\n");
  257. goto out;
  258. }
  259. cmd[0] = CMD_AT45_PROG_BUF1;
  260. ret = spi_flash_cmd_write(flash->spi, cmd, 4, NULL, 0);
  261. if (ret < 0) {
  262. debug("SF: AT45 page programming failed\n");
  263. goto out;
  264. }
  265. ret = at45_wait_ready(flash, SPI_FLASH_PROG_TIMEOUT);
  266. if (ret < 0) {
  267. debug("SF: AT45 page programming timed out\n");
  268. goto out;
  269. }
  270. page_addr++;
  271. byte_addr = 0;
  272. }
  273. debug("SF: AT45: Successfully programmed %zu bytes @ 0x%x\n",
  274. len, offset);
  275. ret = 0;
  276. out:
  277. spi_release_bus(flash->spi);
  278. return ret;
  279. }
  280. /*
  281. * TODO: the two erase funcs (_p2/_at45) should get unified ...
  282. */
  283. static int dataflash_erase_p2(struct spi_flash *flash, u32 offset, size_t len)
  284. {
  285. struct atmel_spi_flash *asf = to_atmel_spi_flash(flash);
  286. unsigned long page_size;
  287. size_t actual;
  288. int ret;
  289. u8 cmd[4];
  290. /*
  291. * TODO: This function currently uses page erase only. We can
  292. * probably speed things up by using block and/or sector erase
  293. * when possible.
  294. */
  295. page_size = (1 << asf->params->l2_page_size);
  296. if (offset % page_size || len % page_size) {
  297. debug("SF: Erase offset/length not multiple of page size\n");
  298. return -1;
  299. }
  300. cmd[0] = CMD_AT45_ERASE_PAGE;
  301. cmd[3] = 0x00;
  302. ret = spi_claim_bus(flash->spi);
  303. if (ret) {
  304. debug("SF: Unable to claim SPI bus\n");
  305. return ret;
  306. }
  307. for (actual = 0; actual < len; actual += page_size) {
  308. cmd[1] = offset >> 16;
  309. cmd[2] = offset >> 8;
  310. ret = spi_flash_cmd_write(flash->spi, cmd, 4, NULL, 0);
  311. if (ret < 0) {
  312. debug("SF: AT45 page erase failed\n");
  313. goto out;
  314. }
  315. ret = at45_wait_ready(flash, SPI_FLASH_PAGE_ERASE_TIMEOUT);
  316. if (ret < 0) {
  317. debug("SF: AT45 page erase timed out\n");
  318. goto out;
  319. }
  320. offset += page_size;
  321. }
  322. debug("SF: AT45: Successfully erased %zu bytes @ 0x%x\n",
  323. len, offset);
  324. ret = 0;
  325. out:
  326. spi_release_bus(flash->spi);
  327. return ret;
  328. }
  329. static int dataflash_erase_at45(struct spi_flash *flash, u32 offset, size_t len)
  330. {
  331. struct atmel_spi_flash *asf = to_atmel_spi_flash(flash);
  332. unsigned long page_addr;
  333. unsigned long page_size;
  334. unsigned int page_shift;
  335. size_t actual;
  336. int ret;
  337. u8 cmd[4];
  338. /*
  339. * TODO: This function currently uses page erase only. We can
  340. * probably speed things up by using block and/or sector erase
  341. * when possible.
  342. */
  343. page_shift = asf->params->l2_page_size;
  344. page_size = (1 << page_shift) + (1 << (page_shift - 5));
  345. page_shift++;
  346. page_addr = offset / page_size;
  347. if (offset % page_size || len % page_size) {
  348. debug("SF: Erase offset/length not multiple of page size\n");
  349. return -1;
  350. }
  351. cmd[0] = CMD_AT45_ERASE_PAGE;
  352. cmd[3] = 0x00;
  353. ret = spi_claim_bus(flash->spi);
  354. if (ret) {
  355. debug("SF: Unable to claim SPI bus\n");
  356. return ret;
  357. }
  358. for (actual = 0; actual < len; actual += page_size) {
  359. cmd[1] = page_addr >> (16 - page_shift);
  360. cmd[2] = page_addr << (page_shift - 8);
  361. ret = spi_flash_cmd_write(flash->spi, cmd, 4, NULL, 0);
  362. if (ret < 0) {
  363. debug("SF: AT45 page erase failed\n");
  364. goto out;
  365. }
  366. ret = at45_wait_ready(flash, SPI_FLASH_PAGE_ERASE_TIMEOUT);
  367. if (ret < 0) {
  368. debug("SF: AT45 page erase timed out\n");
  369. goto out;
  370. }
  371. page_addr++;
  372. }
  373. debug("SF: AT45: Successfully erased %zu bytes @ 0x%x\n",
  374. len, offset);
  375. ret = 0;
  376. out:
  377. spi_release_bus(flash->spi);
  378. return ret;
  379. }
  380. struct spi_flash *spi_flash_probe_atmel(struct spi_slave *spi, u8 *idcode)
  381. {
  382. const struct atmel_spi_flash_params *params;
  383. unsigned page_size;
  384. unsigned int family;
  385. struct atmel_spi_flash *asf;
  386. unsigned int i;
  387. int ret;
  388. u8 status;
  389. for (i = 0; i < ARRAY_SIZE(atmel_spi_flash_table); i++) {
  390. params = &atmel_spi_flash_table[i];
  391. if (params->idcode1 == idcode[1])
  392. break;
  393. }
  394. if (i == ARRAY_SIZE(atmel_spi_flash_table)) {
  395. debug("SF: Unsupported DataFlash ID %02x\n",
  396. idcode[1]);
  397. return NULL;
  398. }
  399. asf = malloc(sizeof(struct atmel_spi_flash));
  400. if (!asf) {
  401. debug("SF: Failed to allocate memory\n");
  402. return NULL;
  403. }
  404. asf->params = params;
  405. asf->flash.spi = spi;
  406. asf->flash.name = params->name;
  407. /* Assuming power-of-two page size initially. */
  408. page_size = 1 << params->l2_page_size;
  409. family = idcode[1] >> 5;
  410. switch (family) {
  411. case DF_FAMILY_AT45:
  412. /*
  413. * AT45 chips have configurable page size. The status
  414. * register indicates which configuration is active.
  415. */
  416. ret = spi_flash_cmd(spi, CMD_AT45_READ_STATUS, &status, 1);
  417. if (ret)
  418. goto err;
  419. debug("SF: AT45 status register: %02x\n", status);
  420. if (!(status & AT45_STATUS_P2_PAGE_SIZE)) {
  421. asf->flash.read = dataflash_read_fast_at45;
  422. asf->flash.write = dataflash_write_at45;
  423. asf->flash.erase = dataflash_erase_at45;
  424. page_size += 1 << (params->l2_page_size - 5);
  425. } else {
  426. asf->flash.read = spi_flash_cmd_read_fast;
  427. asf->flash.write = dataflash_write_p2;
  428. asf->flash.erase = dataflash_erase_p2;
  429. }
  430. break;
  431. case DF_FAMILY_AT26F:
  432. case DF_FAMILY_AT26DF:
  433. asf->flash.read = spi_flash_cmd_read_fast;
  434. break;
  435. default:
  436. debug("SF: Unsupported DataFlash family %u\n", family);
  437. goto err;
  438. }
  439. asf->flash.sector_size = page_size;
  440. asf->flash.size = page_size * params->pages_per_block
  441. * params->blocks_per_sector
  442. * params->nr_sectors;
  443. return &asf->flash;
  444. err:
  445. free(asf);
  446. return NULL;
  447. }