flash.c 17 KB

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  1. /*
  2. * (C) Copyright 2000-2004
  3. * Wolfgang Denk, DENX Software Engineering, wd@denx.de.
  4. *
  5. * See file CREDITS for list of people who contributed to this
  6. * project.
  7. *
  8. * This program is free software; you can redistribute it and/or
  9. * modify it under the terms of the GNU General Public License as
  10. * published by the Free Software Foundation; either version 2 of
  11. * the License, or (at your option) any later version.
  12. *
  13. * This program is distributed in the hope that it will be useful,
  14. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  15. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  16. * GNU General Public License for more details.
  17. *
  18. * You should have received a copy of the GNU General Public License
  19. * along with this program; if not, write to the Free Software
  20. * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
  21. * MA 02111-1307 USA
  22. */
  23. /*
  24. * Modified 4/5/2001
  25. * Wait for completion of each sector erase command issued
  26. * 4/5/2001
  27. * Chris Hallinan - DS4.COM, Inc. - clh@net1plus.com
  28. */
  29. #include <common.h>
  30. #include <ppc4xx.h>
  31. #include <asm/processor.h>
  32. #if CFG_MAX_FLASH_BANKS != 1
  33. #error "CFG_MAX_FLASH_BANKS must be 1"
  34. #endif
  35. flash_info_t flash_info[CFG_MAX_FLASH_BANKS]; /* info for FLASH chips */
  36. /*-----------------------------------------------------------------------
  37. * Functions
  38. */
  39. static ulong flash_get_size (vu_long * addr, flash_info_t * info);
  40. static int write_word (flash_info_t * info, ulong dest, ulong data);
  41. static void flash_get_offsets (ulong base, flash_info_t * info);
  42. #define ADDR0 0x5555
  43. #define ADDR1 0x2aaa
  44. #define FLASH_WORD_SIZE unsigned char
  45. /*-----------------------------------------------------------------------
  46. */
  47. unsigned long flash_init (void)
  48. {
  49. unsigned long size_b0;
  50. unsigned long base_b0;
  51. /* Init: no FLASHes known */
  52. flash_info[0].flash_id = FLASH_UNKNOWN;
  53. /* Static FLASH Bank configuration here - FIXME XXX */
  54. size_b0 =
  55. flash_get_size ((vu_long *) FLASH_BASE0_PRELIM,
  56. &flash_info[0]);
  57. if (flash_info[0].flash_id == FLASH_UNKNOWN) {
  58. printf ("## Unknown FLASH on Bank 0 - Size = 0x%08lx = %ld MB\n", size_b0, size_b0 << 20);
  59. }
  60. /* Only one bank */
  61. /* Setup offsets */
  62. flash_get_offsets (FLASH_BASE0_PRELIM, &flash_info[0]);
  63. /* Monitor protection ON by default */
  64. (void) flash_protect (FLAG_PROTECT_SET,
  65. FLASH_BASE0_PRELIM,
  66. FLASH_BASE0_PRELIM + monitor_flash_len - 1,
  67. &flash_info[0]);
  68. flash_info[0].size = size_b0;
  69. return size_b0;
  70. }
  71. /*-----------------------------------------------------------------------
  72. */
  73. static void flash_get_offsets (ulong base, flash_info_t * info)
  74. {
  75. int i;
  76. /* set up sector start address table */
  77. if (((info->flash_id & FLASH_VENDMASK) == FLASH_MAN_SST) ||
  78. (info->flash_id == FLASH_AM040)) {
  79. for (i = 0; i < info->sector_count; i++)
  80. info->start[i] = base + (i * 0x00010000);
  81. } else {
  82. if (info->flash_id & FLASH_BTYPE) {
  83. /* set sector offsets for bottom boot block type */
  84. info->start[0] = base + 0x00000000;
  85. info->start[1] = base + 0x00004000;
  86. info->start[2] = base + 0x00006000;
  87. info->start[3] = base + 0x00008000;
  88. for (i = 4; i < info->sector_count; i++) {
  89. info->start[i] =
  90. base + (i * 0x00010000) - 0x00030000;
  91. }
  92. } else {
  93. /* set sector offsets for top boot block type */
  94. i = info->sector_count - 1;
  95. info->start[i--] = base + info->size - 0x00004000;
  96. info->start[i--] = base + info->size - 0x00006000;
  97. info->start[i--] = base + info->size - 0x00008000;
  98. for (; i >= 0; i--) {
  99. info->start[i] = base + i * 0x00010000;
  100. }
  101. }
  102. }
  103. }
  104. /*-----------------------------------------------------------------------
  105. */
  106. void flash_print_info (flash_info_t * info)
  107. {
  108. int i;
  109. int k;
  110. int size;
  111. int erased;
  112. volatile unsigned long *flash;
  113. if (info->flash_id == FLASH_UNKNOWN) {
  114. printf ("missing or unknown FLASH type\n");
  115. return;
  116. }
  117. switch (info->flash_id & FLASH_VENDMASK) {
  118. case FLASH_MAN_AMD:
  119. printf ("AMD ");
  120. break;
  121. case FLASH_MAN_FUJ:
  122. printf ("FUJITSU ");
  123. break;
  124. case FLASH_MAN_SST:
  125. printf ("SST ");
  126. break;
  127. default:
  128. printf ("Unknown Vendor ");
  129. break;
  130. }
  131. switch (info->flash_id & FLASH_TYPEMASK) {
  132. case FLASH_AM040:
  133. printf ("AM29F040 (512 Kbit, uniform sector size)\n");
  134. break;
  135. case FLASH_AM400B:
  136. printf ("AM29LV400B (4 Mbit, bottom boot sect)\n");
  137. break;
  138. case FLASH_AM400T:
  139. printf ("AM29LV400T (4 Mbit, top boot sector)\n");
  140. break;
  141. case FLASH_AM800B:
  142. printf ("AM29LV800B (8 Mbit, bottom boot sect)\n");
  143. break;
  144. case FLASH_AM800T:
  145. printf ("AM29LV800T (8 Mbit, top boot sector)\n");
  146. break;
  147. case FLASH_AM160B:
  148. printf ("AM29LV160B (16 Mbit, bottom boot sect)\n");
  149. break;
  150. case FLASH_AM160T:
  151. printf ("AM29LV160T (16 Mbit, top boot sector)\n");
  152. break;
  153. case FLASH_AM320B:
  154. printf ("AM29LV320B (32 Mbit, bottom boot sect)\n");
  155. break;
  156. case FLASH_AM320T:
  157. printf ("AM29LV320T (32 Mbit, top boot sector)\n");
  158. break;
  159. case FLASH_SST800A:
  160. printf ("SST39LF/VF800 (8 Mbit, uniform sector size)\n");
  161. break;
  162. case FLASH_SST160A:
  163. printf ("SST39LF/VF160 (16 Mbit, uniform sector size)\n");
  164. break;
  165. default:
  166. printf ("Unknown Chip Type\n");
  167. break;
  168. }
  169. printf (" Size: %ld KB in %d Sectors\n",
  170. info->size >> 10, info->sector_count);
  171. printf (" Sector Start Addresses:");
  172. for (i = 0; i < info->sector_count; ++i) {
  173. /*
  174. * Check if whole sector is erased
  175. */
  176. if (i != (info->sector_count - 1))
  177. size = info->start[i + 1] - info->start[i];
  178. else
  179. size = info->start[0] + info->size - info->start[i];
  180. erased = 1;
  181. flash = (volatile unsigned long *) info->start[i];
  182. size = size >> 2; /* divide by 4 for longword access */
  183. for (k = 0; k < size; k++) {
  184. if (*flash++ != 0xffffffff) {
  185. erased = 0;
  186. break;
  187. }
  188. }
  189. if ((i % 5) == 0)
  190. printf ("\n ");
  191. #if 0 /* test-only */
  192. printf (" %08lX%s",
  193. info->start[i], info->protect[i] ? " (RO)" : " "
  194. #else
  195. printf (" %08lX%s%s",
  196. info->start[i],
  197. erased ? " E" : " ", info->protect[i] ? "RO " : " "
  198. #endif
  199. );
  200. }
  201. printf ("\n");
  202. return;
  203. }
  204. /*-----------------------------------------------------------------------
  205. */
  206. /*-----------------------------------------------------------------------
  207. */
  208. /*
  209. * The following code cannot be run from FLASH!
  210. */
  211. static ulong flash_get_size (vu_long * addr, flash_info_t * info)
  212. {
  213. short i;
  214. FLASH_WORD_SIZE value;
  215. ulong base = (ulong) addr;
  216. volatile FLASH_WORD_SIZE *addr2 = (FLASH_WORD_SIZE *) addr;
  217. /* Write auto select command: read Manufacturer ID */
  218. addr2[ADDR0] = (FLASH_WORD_SIZE) 0x00AA00AA;
  219. addr2[ADDR1] = (FLASH_WORD_SIZE) 0x00550055;
  220. addr2[ADDR0] = (FLASH_WORD_SIZE) 0x00900090;
  221. #ifdef CONFIG_ADCIOP
  222. value = addr2[2];
  223. #else
  224. value = addr2[0];
  225. #endif
  226. switch (value) {
  227. case (FLASH_WORD_SIZE) AMD_MANUFACT:
  228. info->flash_id = FLASH_MAN_AMD;
  229. break;
  230. case (FLASH_WORD_SIZE) FUJ_MANUFACT:
  231. info->flash_id = FLASH_MAN_FUJ;
  232. break;
  233. case (FLASH_WORD_SIZE) SST_MANUFACT:
  234. info->flash_id = FLASH_MAN_SST;
  235. break;
  236. default:
  237. info->flash_id = FLASH_UNKNOWN;
  238. info->sector_count = 0;
  239. info->size = 0;
  240. return (0); /* no or unknown flash */
  241. }
  242. #ifdef CONFIG_ADCIOP
  243. value = addr2[0]; /* device ID */
  244. /* printf("\ndev_code=%x\n", value); */
  245. #else
  246. value = addr2[1]; /* device ID */
  247. #endif
  248. switch (value) {
  249. case (FLASH_WORD_SIZE) AMD_ID_F040B:
  250. info->flash_id += FLASH_AM040;
  251. info->sector_count = 8;
  252. info->size = 0x0080000; /* => 512 ko */
  253. break;
  254. case (FLASH_WORD_SIZE) AMD_ID_LV040B:
  255. info->flash_id += FLASH_AM040;
  256. info->sector_count = 8;
  257. info->size = 0x0080000; /* => 512 ko */
  258. break;
  259. case (FLASH_WORD_SIZE) AMD_ID_LV400T:
  260. info->flash_id += FLASH_AM400T;
  261. info->sector_count = 11;
  262. info->size = 0x00080000;
  263. break; /* => 0.5 MB */
  264. case (FLASH_WORD_SIZE) AMD_ID_LV400B:
  265. info->flash_id += FLASH_AM400B;
  266. info->sector_count = 11;
  267. info->size = 0x00080000;
  268. break; /* => 0.5 MB */
  269. case (FLASH_WORD_SIZE) AMD_ID_LV800T:
  270. info->flash_id += FLASH_AM800T;
  271. info->sector_count = 19;
  272. info->size = 0x00100000;
  273. break; /* => 1 MB */
  274. case (FLASH_WORD_SIZE) AMD_ID_LV800B:
  275. info->flash_id += FLASH_AM800B;
  276. info->sector_count = 19;
  277. info->size = 0x00100000;
  278. break; /* => 1 MB */
  279. case (FLASH_WORD_SIZE) AMD_ID_LV160T:
  280. info->flash_id += FLASH_AM160T;
  281. info->sector_count = 35;
  282. info->size = 0x00200000;
  283. break; /* => 2 MB */
  284. case (FLASH_WORD_SIZE) AMD_ID_LV160B:
  285. info->flash_id += FLASH_AM160B;
  286. info->sector_count = 35;
  287. info->size = 0x00200000;
  288. break; /* => 2 MB */
  289. #if 0 /* enable when device IDs are available */
  290. case (FLASH_WORD_SIZE) AMD_ID_LV320T:
  291. info->flash_id += FLASH_AM320T;
  292. info->sector_count = 67;
  293. info->size = 0x00400000;
  294. break; /* => 4 MB */
  295. case (FLASH_WORD_SIZE) AMD_ID_LV320B:
  296. info->flash_id += FLASH_AM320B;
  297. info->sector_count = 67;
  298. info->size = 0x00400000;
  299. break; /* => 4 MB */
  300. #endif
  301. case (FLASH_WORD_SIZE) SST_ID_xF800A:
  302. info->flash_id += FLASH_SST800A;
  303. info->sector_count = 16;
  304. info->size = 0x00100000;
  305. break; /* => 1 MB */
  306. case (FLASH_WORD_SIZE) SST_ID_xF160A:
  307. info->flash_id += FLASH_SST160A;
  308. info->sector_count = 32;
  309. info->size = 0x00200000;
  310. break; /* => 2 MB */
  311. default:
  312. info->flash_id = FLASH_UNKNOWN;
  313. return (0); /* => no or unknown flash */
  314. }
  315. /* set up sector start address table */
  316. if (((info->flash_id & FLASH_VENDMASK) == FLASH_MAN_SST) ||
  317. (info->flash_id == FLASH_AM040)) {
  318. for (i = 0; i < info->sector_count; i++)
  319. info->start[i] = base + (i * 0x00010000);
  320. } else {
  321. if (info->flash_id & FLASH_BTYPE) {
  322. /* set sector offsets for bottom boot block type */
  323. info->start[0] = base + 0x00000000;
  324. info->start[1] = base + 0x00004000;
  325. info->start[2] = base + 0x00006000;
  326. info->start[3] = base + 0x00008000;
  327. for (i = 4; i < info->sector_count; i++) {
  328. info->start[i] =
  329. base + (i * 0x00010000) - 0x00030000;
  330. }
  331. } else {
  332. /* set sector offsets for top boot block type */
  333. i = info->sector_count - 1;
  334. info->start[i--] = base + info->size - 0x00004000;
  335. info->start[i--] = base + info->size - 0x00006000;
  336. info->start[i--] = base + info->size - 0x00008000;
  337. for (; i >= 0; i--) {
  338. info->start[i] = base + i * 0x00010000;
  339. }
  340. }
  341. }
  342. /* check for protected sectors */
  343. for (i = 0; i < info->sector_count; i++) {
  344. /* read sector protection at sector address, (A7 .. A0) = 0x02 */
  345. /* D0 = 1 if protected */
  346. #ifdef CONFIG_ADCIOP
  347. addr2 = (volatile FLASH_WORD_SIZE *) (info->start[i]);
  348. info->protect[i] = addr2[4] & 1;
  349. #else
  350. addr2 = (volatile FLASH_WORD_SIZE *) (info->start[i]);
  351. if ((info->flash_id & FLASH_VENDMASK) == FLASH_MAN_SST)
  352. info->protect[i] = 0;
  353. else
  354. info->protect[i] = addr2[2] & 1;
  355. #endif
  356. }
  357. /*
  358. * Prevent writes to uninitialized FLASH.
  359. */
  360. if (info->flash_id != FLASH_UNKNOWN) {
  361. #if 0 /* test-only */
  362. #ifdef CONFIG_ADCIOP
  363. addr2 = (volatile unsigned char *) info->start[0];
  364. addr2[ADDR0] = 0xAA;
  365. addr2[ADDR1] = 0x55;
  366. addr2[ADDR0] = 0xF0; /* reset bank */
  367. #else
  368. addr2 = (FLASH_WORD_SIZE *) info->start[0];
  369. *addr2 = (FLASH_WORD_SIZE) 0x00F000F0; /* reset bank */
  370. #endif
  371. #else /* test-only */
  372. addr2 = (FLASH_WORD_SIZE *) info->start[0];
  373. *addr2 = (FLASH_WORD_SIZE) 0x00F000F0; /* reset bank */
  374. #endif /* test-only */
  375. }
  376. return (info->size);
  377. }
  378. int wait_for_DQ7 (flash_info_t * info, int sect)
  379. {
  380. ulong start, now, last;
  381. volatile FLASH_WORD_SIZE *addr =
  382. (FLASH_WORD_SIZE *) (info->start[sect]);
  383. start = get_timer (0);
  384. last = start;
  385. while ((addr[0] & (FLASH_WORD_SIZE) 0x00800080) !=
  386. (FLASH_WORD_SIZE) 0x00800080) {
  387. if ((now = get_timer (start)) > CFG_FLASH_ERASE_TOUT) {
  388. printf ("Timeout\n");
  389. return -1;
  390. }
  391. /* show that we're waiting */
  392. if ((now - last) > 1000) { /* every second */
  393. putc ('.');
  394. last = now;
  395. }
  396. }
  397. return 0;
  398. }
  399. /*-----------------------------------------------------------------------
  400. */
  401. int flash_erase (flash_info_t * info, int s_first, int s_last)
  402. {
  403. volatile FLASH_WORD_SIZE *addr = (FLASH_WORD_SIZE *) (info->start[0]);
  404. volatile FLASH_WORD_SIZE *addr2;
  405. int flag, prot, sect, l_sect;
  406. int i;
  407. if ((s_first < 0) || (s_first > s_last)) {
  408. if (info->flash_id == FLASH_UNKNOWN) {
  409. printf ("- missing\n");
  410. } else {
  411. printf ("- no sectors to erase\n");
  412. }
  413. return 1;
  414. }
  415. if (info->flash_id == FLASH_UNKNOWN) {
  416. printf ("Can't erase unknown flash type - aborted\n");
  417. return 1;
  418. }
  419. prot = 0;
  420. for (sect = s_first; sect <= s_last; ++sect) {
  421. if (info->protect[sect]) {
  422. prot++;
  423. }
  424. }
  425. if (prot) {
  426. printf ("- Warning: %d protected sectors will not be erased!\n", prot);
  427. } else {
  428. printf ("\n");
  429. }
  430. l_sect = -1;
  431. /* Disable interrupts which might cause a timeout here */
  432. flag = disable_interrupts ();
  433. /* Start erase on unprotected sectors */
  434. for (sect = s_first; sect <= s_last; sect++) {
  435. if (info->protect[sect] == 0) { /* not protected */
  436. addr2 = (FLASH_WORD_SIZE *) (info->start[sect]);
  437. printf ("Erasing sector %p\n", addr2); /* CLH */
  438. if ((info->flash_id & FLASH_VENDMASK) ==
  439. FLASH_MAN_SST) {
  440. addr[ADDR0] = (FLASH_WORD_SIZE) 0x00AA00AA;
  441. addr[ADDR1] = (FLASH_WORD_SIZE) 0x00550055;
  442. addr[ADDR0] = (FLASH_WORD_SIZE) 0x00800080;
  443. addr[ADDR0] = (FLASH_WORD_SIZE) 0x00AA00AA;
  444. addr[ADDR1] = (FLASH_WORD_SIZE) 0x00550055;
  445. addr2[0] = (FLASH_WORD_SIZE) 0x00500050; /* block erase */
  446. for (i = 0; i < 50; i++)
  447. udelay (1000); /* wait 1 ms */
  448. } else {
  449. addr[ADDR0] = (FLASH_WORD_SIZE) 0x00AA00AA;
  450. addr[ADDR1] = (FLASH_WORD_SIZE) 0x00550055;
  451. addr[ADDR0] = (FLASH_WORD_SIZE) 0x00800080;
  452. addr[ADDR0] = (FLASH_WORD_SIZE) 0x00AA00AA;
  453. addr[ADDR1] = (FLASH_WORD_SIZE) 0x00550055;
  454. addr2[0] = (FLASH_WORD_SIZE) 0x00300030; /* sector erase */
  455. }
  456. l_sect = sect;
  457. /*
  458. * Wait for each sector to complete, it's more
  459. * reliable. According to AMD Spec, you must
  460. * issue all erase commands within a specified
  461. * timeout. This has been seen to fail, especially
  462. * if printf()s are included (for debug)!!
  463. */
  464. wait_for_DQ7 (info, sect);
  465. }
  466. }
  467. /* re-enable interrupts if necessary */
  468. if (flag)
  469. enable_interrupts ();
  470. /* wait at least 80us - let's wait 1 ms */
  471. udelay (1000);
  472. #if 0
  473. /*
  474. * We wait for the last triggered sector
  475. */
  476. if (l_sect < 0)
  477. goto DONE;
  478. wait_for_DQ7 (info, l_sect);
  479. DONE:
  480. #endif
  481. /* reset to read mode */
  482. addr = (FLASH_WORD_SIZE *) info->start[0];
  483. addr[0] = (FLASH_WORD_SIZE) 0x00F000F0; /* reset bank */
  484. printf (" done\n");
  485. return 0;
  486. }
  487. /*-----------------------------------------------------------------------
  488. * Copy memory to flash, returns:
  489. * 0 - OK
  490. * 1 - write timeout
  491. * 2 - Flash not erased
  492. */
  493. int write_buff (flash_info_t * info, uchar * src, ulong addr, ulong cnt)
  494. {
  495. ulong cp, wp, data;
  496. int i, l, rc;
  497. wp = (addr & ~3); /* get lower word aligned address */
  498. /*
  499. * handle unaligned start bytes
  500. */
  501. if ((l = addr - wp) != 0) {
  502. data = 0;
  503. for (i = 0, cp = wp; i < l; ++i, ++cp) {
  504. data = (data << 8) | (*(uchar *) cp);
  505. }
  506. for (; i < 4 && cnt > 0; ++i) {
  507. data = (data << 8) | *src++;
  508. --cnt;
  509. ++cp;
  510. }
  511. for (; cnt == 0 && i < 4; ++i, ++cp) {
  512. data = (data << 8) | (*(uchar *) cp);
  513. }
  514. if ((rc = write_word (info, wp, data)) != 0) {
  515. return (rc);
  516. }
  517. wp += 4;
  518. }
  519. /*
  520. * handle word aligned part
  521. */
  522. while (cnt >= 4) {
  523. data = 0;
  524. for (i = 0; i < 4; ++i) {
  525. data = (data << 8) | *src++;
  526. }
  527. if ((rc = write_word (info, wp, data)) != 0) {
  528. return (rc);
  529. }
  530. wp += 4;
  531. cnt -= 4;
  532. }
  533. if (cnt == 0) {
  534. return (0);
  535. }
  536. /*
  537. * handle unaligned tail bytes
  538. */
  539. data = 0;
  540. for (i = 0, cp = wp; i < 4 && cnt > 0; ++i, ++cp) {
  541. data = (data << 8) | *src++;
  542. --cnt;
  543. }
  544. for (; i < 4; ++i, ++cp) {
  545. data = (data << 8) | (*(uchar *) cp);
  546. }
  547. return (write_word (info, wp, data));
  548. }
  549. /*-----------------------------------------------------------------------
  550. * Write a word to Flash, returns:
  551. * 0 - OK
  552. * 1 - write timeout
  553. * 2 - Flash not erased
  554. */
  555. static int write_word (flash_info_t * info, ulong dest, ulong data)
  556. {
  557. volatile FLASH_WORD_SIZE *addr2 =
  558. (FLASH_WORD_SIZE *) (info->start[0]);
  559. volatile FLASH_WORD_SIZE *dest2 = (FLASH_WORD_SIZE *) dest;
  560. volatile FLASH_WORD_SIZE *data2 = (FLASH_WORD_SIZE *) & data;
  561. ulong start;
  562. int i;
  563. /* Check if Flash is (sufficiently) erased */
  564. if ((*((volatile FLASH_WORD_SIZE *) dest) &
  565. (FLASH_WORD_SIZE) data) != (FLASH_WORD_SIZE) data) {
  566. return (2);
  567. }
  568. for (i = 0; i < 4 / sizeof (FLASH_WORD_SIZE); i++) {
  569. int flag;
  570. /* Disable interrupts which might cause a timeout here */
  571. flag = disable_interrupts ();
  572. addr2[ADDR0] = (FLASH_WORD_SIZE) 0x00AA00AA;
  573. addr2[ADDR1] = (FLASH_WORD_SIZE) 0x00550055;
  574. addr2[ADDR0] = (FLASH_WORD_SIZE) 0x00A000A0;
  575. dest2[i] = data2[i];
  576. /* re-enable interrupts if necessary */
  577. if (flag)
  578. enable_interrupts ();
  579. /* data polling for D7 */
  580. start = get_timer (0);
  581. while ((dest2[i] & (FLASH_WORD_SIZE) 0x00800080) !=
  582. (data2[i] & (FLASH_WORD_SIZE) 0x00800080)) {
  583. if (get_timer (start) > CFG_FLASH_WRITE_TOUT) {
  584. return (1);
  585. }
  586. }
  587. }
  588. return (0);
  589. }