2 * (C) Copyright 2002-2004
3 * Brad Kemp, Seranoa Networks, Brad.Kemp@seranoa.com
5 * Copyright (C) 2003 Arabella Software Ltd.
6 * Yuli Barcohen <yuli@arabellasw.com>
12 * Tolunay Orkun <listmember@orkun.us>
14 * See file CREDITS for list of people who contributed to this
17 * This program is free software; you can redistribute it and/or
18 * modify it under the terms of the GNU General Public License as
19 * published by the Free Software Foundation; either version 2 of
20 * the License, or (at your option) any later version.
22 * This program is distributed in the hope that it will be useful,
23 * but WITHOUT ANY WARRANTY; without even the implied warranty of
24 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
25 * GNU General Public License for more details.
27 * You should have received a copy of the GNU General Public License
28 * along with this program; if not, write to the Free Software
29 * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
34 /* The DEBUG define must be before common to enable debugging */
38 #include <asm/processor.h>
40 #include <asm/byteorder.h>
41 #include <environment.h>
42 #include <mtd/cfi_flash.h>
45 * This file implements a Common Flash Interface (CFI) driver for
48 * The width of the port and the width of the chips are determined at
49 * initialization. These widths are used to calculate the address for
50 * access CFI data structures.
53 * JEDEC Standard JESD68 - Common Flash Interface (CFI)
54 * JEDEC Standard JEP137-A Common Flash Interface (CFI) ID Codes
55 * Intel Application Note 646 Common Flash Interface (CFI) and Command Sets
56 * Intel 290667-008 3 Volt Intel StrataFlash Memory datasheet
57 * AMD CFI Specification, Release 2.0 December 1, 2001
58 * AMD/Spansion Application Note: Migration from Single-byte to Three-byte
59 * Device IDs, Publication Number 25538 Revision A, November 8, 2001
61 * Define CONFIG_SYS_WRITE_SWAPPED_DATA, if you have to swap the Bytes between
62 * reading and writing ... (yes there is such a Hardware).
65 static uint flash_offset_cfi[2] = { FLASH_OFFSET_CFI, FLASH_OFFSET_CFI_ALT };
66 #ifdef CONFIG_FLASH_CFI_MTD
67 static uint flash_verbose = 1;
69 #define flash_verbose 1
72 flash_info_t flash_info[CFI_MAX_FLASH_BANKS]; /* FLASH chips info */
75 * Check if chip width is defined. If not, start detecting with 8bit.
77 #ifndef CONFIG_SYS_FLASH_CFI_WIDTH
78 #define CONFIG_SYS_FLASH_CFI_WIDTH FLASH_CFI_8BIT
82 * 0xffff is an undefined value for the configuration register. When
83 * this value is returned, the configuration register shall not be
84 * written at all (default mode).
86 static u16 cfi_flash_config_reg(int i)
88 #ifdef CONFIG_SYS_CFI_FLASH_CONFIG_REGS
89 return ((u16 [])CONFIG_SYS_CFI_FLASH_CONFIG_REGS)[i];
95 #if defined(CONFIG_SYS_MAX_FLASH_BANKS_DETECT)
96 int cfi_flash_num_flash_banks = CONFIG_SYS_MAX_FLASH_BANKS_DETECT;
99 static phys_addr_t __cfi_flash_bank_addr(int i)
101 return ((phys_addr_t [])CONFIG_SYS_FLASH_BANKS_LIST)[i];
103 phys_addr_t cfi_flash_bank_addr(int i)
104 __attribute__((weak, alias("__cfi_flash_bank_addr")));
106 static unsigned long __cfi_flash_bank_size(int i)
108 #ifdef CONFIG_SYS_FLASH_BANKS_SIZES
109 return ((unsigned long [])CONFIG_SYS_FLASH_BANKS_SIZES)[i];
114 unsigned long cfi_flash_bank_size(int i)
115 __attribute__((weak, alias("__cfi_flash_bank_size")));
117 static void __flash_write8(u8 value, void *addr)
119 __raw_writeb(value, addr);
122 static void __flash_write16(u16 value, void *addr)
124 __raw_writew(value, addr);
127 static void __flash_write32(u32 value, void *addr)
129 __raw_writel(value, addr);
132 static void __flash_write64(u64 value, void *addr)
134 /* No architectures currently implement __raw_writeq() */
135 *(volatile u64 *)addr = value;
138 static u8 __flash_read8(void *addr)
140 return __raw_readb(addr);
143 static u16 __flash_read16(void *addr)
145 return __raw_readw(addr);
148 static u32 __flash_read32(void *addr)
150 return __raw_readl(addr);
153 static u64 __flash_read64(void *addr)
155 /* No architectures currently implement __raw_readq() */
156 return *(volatile u64 *)addr;
159 #ifdef CONFIG_CFI_FLASH_USE_WEAK_ACCESSORS
160 void flash_write8(u8 value, void *addr)__attribute__((weak, alias("__flash_write8")));
161 void flash_write16(u16 value, void *addr)__attribute__((weak, alias("__flash_write16")));
162 void flash_write32(u32 value, void *addr)__attribute__((weak, alias("__flash_write32")));
163 void flash_write64(u64 value, void *addr)__attribute__((weak, alias("__flash_write64")));
164 u8 flash_read8(void *addr)__attribute__((weak, alias("__flash_read8")));
165 u16 flash_read16(void *addr)__attribute__((weak, alias("__flash_read16")));
166 u32 flash_read32(void *addr)__attribute__((weak, alias("__flash_read32")));
167 u64 flash_read64(void *addr)__attribute__((weak, alias("__flash_read64")));
169 #define flash_write8 __flash_write8
170 #define flash_write16 __flash_write16
171 #define flash_write32 __flash_write32
172 #define flash_write64 __flash_write64
173 #define flash_read8 __flash_read8
174 #define flash_read16 __flash_read16
175 #define flash_read32 __flash_read32
176 #define flash_read64 __flash_read64
179 /*-----------------------------------------------------------------------
181 #if defined(CONFIG_ENV_IS_IN_FLASH) || defined(CONFIG_ENV_ADDR_REDUND) || (CONFIG_SYS_MONITOR_BASE >= CONFIG_SYS_FLASH_BASE)
182 flash_info_t *flash_get_info(ulong base)
185 flash_info_t *info = NULL;
187 for (i = 0; i < CONFIG_SYS_MAX_FLASH_BANKS; i++) {
188 info = & flash_info[i];
189 if (info->size && info->start[0] <= base &&
190 base <= info->start[0] + info->size - 1)
198 unsigned long flash_sector_size(flash_info_t *info, flash_sect_t sect)
200 if (sect != (info->sector_count - 1))
201 return info->start[sect + 1] - info->start[sect];
203 return info->start[0] + info->size - info->start[sect];
206 /*-----------------------------------------------------------------------
207 * create an address based on the offset and the port width
210 flash_map (flash_info_t * info, flash_sect_t sect, uint offset)
212 unsigned int byte_offset = offset * info->portwidth;
214 return (void *)(info->start[sect] + byte_offset);
217 static inline void flash_unmap(flash_info_t *info, flash_sect_t sect,
218 unsigned int offset, void *addr)
222 /*-----------------------------------------------------------------------
223 * make a proper sized command based on the port and chip widths
225 static void flash_make_cmd(flash_info_t *info, u32 cmd, void *cmdbuf)
230 #if defined(__LITTLE_ENDIAN) || defined(CONFIG_SYS_WRITE_SWAPPED_DATA)
231 u32 cmd_le = cpu_to_le32(cmd);
234 uchar *cp = (uchar *) cmdbuf;
236 for (i = info->portwidth; i > 0; i--){
237 cword_offset = (info->portwidth-i)%info->chipwidth;
238 #if defined(__LITTLE_ENDIAN) || defined(CONFIG_SYS_WRITE_SWAPPED_DATA)
239 cp_offset = info->portwidth - i;
240 val = *((uchar*)&cmd_le + cword_offset);
243 val = *((uchar*)&cmd + sizeof(u32) - cword_offset - 1);
245 cp[cp_offset] = (cword_offset >= sizeof(u32)) ? 0x00 : val;
250 /*-----------------------------------------------------------------------
253 static void print_longlong (char *str, unsigned long long data)
259 for (i = 0; i < 8; i++)
260 sprintf (&str[i * 2], "%2.2x", *cp++);
263 static void flash_printqry (struct cfi_qry *qry)
268 for (x = 0; x < sizeof(struct cfi_qry); x += 16) {
270 for (y = 0; y < 16; y++)
271 debug("%2.2x ", p[x + y]);
273 for (y = 0; y < 16; y++) {
274 unsigned char c = p[x + y];
275 if (c >= 0x20 && c <= 0x7e)
286 /*-----------------------------------------------------------------------
287 * read a character at a port width address
289 static inline uchar flash_read_uchar (flash_info_t * info, uint offset)
294 cp = flash_map (info, 0, offset);
295 #if defined(__LITTLE_ENDIAN) || defined(CONFIG_SYS_WRITE_SWAPPED_DATA)
296 retval = flash_read8(cp);
298 retval = flash_read8(cp + info->portwidth - 1);
300 flash_unmap (info, 0, offset, cp);
304 /*-----------------------------------------------------------------------
305 * read a word at a port width address, assume 16bit bus
307 static inline ushort flash_read_word (flash_info_t * info, uint offset)
309 ushort *addr, retval;
311 addr = flash_map (info, 0, offset);
312 retval = flash_read16 (addr);
313 flash_unmap (info, 0, offset, addr);
318 /*-----------------------------------------------------------------------
319 * read a long word by picking the least significant byte of each maximum
320 * port size word. Swap for ppc format.
322 static ulong flash_read_long (flash_info_t * info, flash_sect_t sect,
331 addr = flash_map (info, sect, offset);
334 debug ("long addr is at %p info->portwidth = %d\n", addr,
336 for (x = 0; x < 4 * info->portwidth; x++) {
337 debug ("addr[%x] = 0x%x\n", x, flash_read8(addr + x));
340 #if defined(__LITTLE_ENDIAN) || defined(CONFIG_SYS_WRITE_SWAPPED_DATA)
341 retval = ((flash_read8(addr) << 16) |
342 (flash_read8(addr + info->portwidth) << 24) |
343 (flash_read8(addr + 2 * info->portwidth)) |
344 (flash_read8(addr + 3 * info->portwidth) << 8));
346 retval = ((flash_read8(addr + 2 * info->portwidth - 1) << 24) |
347 (flash_read8(addr + info->portwidth - 1) << 16) |
348 (flash_read8(addr + 4 * info->portwidth - 1) << 8) |
349 (flash_read8(addr + 3 * info->portwidth - 1)));
351 flash_unmap(info, sect, offset, addr);
357 * Write a proper sized command to the correct address
359 void flash_write_cmd (flash_info_t * info, flash_sect_t sect,
360 uint offset, u32 cmd)
366 addr = flash_map (info, sect, offset);
367 flash_make_cmd (info, cmd, &cword);
368 switch (info->portwidth) {
370 debug ("fwc addr %p cmd %x %x 8bit x %d bit\n", addr, cmd,
371 cword.c, info->chipwidth << CFI_FLASH_SHIFT_WIDTH);
372 flash_write8(cword.c, addr);
374 case FLASH_CFI_16BIT:
375 debug ("fwc addr %p cmd %x %4.4x 16bit x %d bit\n", addr,
377 info->chipwidth << CFI_FLASH_SHIFT_WIDTH);
378 flash_write16(cword.w, addr);
380 case FLASH_CFI_32BIT:
381 debug ("fwc addr %p cmd %x %8.8lx 32bit x %d bit\n", addr,
383 info->chipwidth << CFI_FLASH_SHIFT_WIDTH);
384 flash_write32(cword.l, addr);
386 case FLASH_CFI_64BIT:
391 print_longlong (str, cword.ll);
393 debug ("fwrite addr %p cmd %x %s 64 bit x %d bit\n",
395 info->chipwidth << CFI_FLASH_SHIFT_WIDTH);
398 flash_write64(cword.ll, addr);
402 /* Ensure all the instructions are fully finished */
405 flash_unmap(info, sect, offset, addr);
408 static void flash_unlock_seq (flash_info_t * info, flash_sect_t sect)
410 flash_write_cmd (info, sect, info->addr_unlock1, AMD_CMD_UNLOCK_START);
411 flash_write_cmd (info, sect, info->addr_unlock2, AMD_CMD_UNLOCK_ACK);
414 /*-----------------------------------------------------------------------
416 static int flash_isequal (flash_info_t * info, flash_sect_t sect,
417 uint offset, uchar cmd)
423 addr = flash_map (info, sect, offset);
424 flash_make_cmd (info, cmd, &cword);
426 debug ("is= cmd %x(%c) addr %p ", cmd, cmd, addr);
427 switch (info->portwidth) {
429 debug ("is= %x %x\n", flash_read8(addr), cword.c);
430 retval = (flash_read8(addr) == cword.c);
432 case FLASH_CFI_16BIT:
433 debug ("is= %4.4x %4.4x\n", flash_read16(addr), cword.w);
434 retval = (flash_read16(addr) == cword.w);
436 case FLASH_CFI_32BIT:
437 debug ("is= %8.8x %8.8lx\n", flash_read32(addr), cword.l);
438 retval = (flash_read32(addr) == cword.l);
440 case FLASH_CFI_64BIT:
446 print_longlong (str1, flash_read64(addr));
447 print_longlong (str2, cword.ll);
448 debug ("is= %s %s\n", str1, str2);
451 retval = (flash_read64(addr) == cword.ll);
457 flash_unmap(info, sect, offset, addr);
462 /*-----------------------------------------------------------------------
464 static int flash_isset (flash_info_t * info, flash_sect_t sect,
465 uint offset, uchar cmd)
471 addr = flash_map (info, sect, offset);
472 flash_make_cmd (info, cmd, &cword);
473 switch (info->portwidth) {
475 retval = ((flash_read8(addr) & cword.c) == cword.c);
477 case FLASH_CFI_16BIT:
478 retval = ((flash_read16(addr) & cword.w) == cword.w);
480 case FLASH_CFI_32BIT:
481 retval = ((flash_read32(addr) & cword.l) == cword.l);
483 case FLASH_CFI_64BIT:
484 retval = ((flash_read64(addr) & cword.ll) == cword.ll);
490 flash_unmap(info, sect, offset, addr);
495 /*-----------------------------------------------------------------------
497 static int flash_toggle (flash_info_t * info, flash_sect_t sect,
498 uint offset, uchar cmd)
504 addr = flash_map (info, sect, offset);
505 flash_make_cmd (info, cmd, &cword);
506 switch (info->portwidth) {
508 retval = flash_read8(addr) != flash_read8(addr);
510 case FLASH_CFI_16BIT:
511 retval = flash_read16(addr) != flash_read16(addr);
513 case FLASH_CFI_32BIT:
514 retval = flash_read32(addr) != flash_read32(addr);
516 case FLASH_CFI_64BIT:
517 retval = ( (flash_read32( addr ) != flash_read32( addr )) ||
518 (flash_read32(addr+4) != flash_read32(addr+4)) );
524 flash_unmap(info, sect, offset, addr);
530 * flash_is_busy - check to see if the flash is busy
532 * This routine checks the status of the chip and returns true if the
535 static int flash_is_busy (flash_info_t * info, flash_sect_t sect)
539 switch (info->vendor) {
540 case CFI_CMDSET_INTEL_PROG_REGIONS:
541 case CFI_CMDSET_INTEL_STANDARD:
542 case CFI_CMDSET_INTEL_EXTENDED:
543 retval = !flash_isset (info, sect, 0, FLASH_STATUS_DONE);
545 case CFI_CMDSET_AMD_STANDARD:
546 case CFI_CMDSET_AMD_EXTENDED:
547 #ifdef CONFIG_FLASH_CFI_LEGACY
548 case CFI_CMDSET_AMD_LEGACY:
550 retval = flash_toggle (info, sect, 0, AMD_STATUS_TOGGLE);
555 debug ("flash_is_busy: %d\n", retval);
559 /*-----------------------------------------------------------------------
560 * wait for XSR.7 to be set. Time out with an error if it does not.
561 * This routine does not set the flash to read-array mode.
563 static int flash_status_check (flash_info_t * info, flash_sect_t sector,
564 ulong tout, char *prompt)
568 #if CONFIG_SYS_HZ != 1000
569 if ((ulong)CONFIG_SYS_HZ > 100000)
570 tout *= (ulong)CONFIG_SYS_HZ / 1000; /* for a big HZ, avoid overflow */
572 tout = DIV_ROUND_UP(tout * (ulong)CONFIG_SYS_HZ, 1000);
575 /* Wait for command completion */
577 start = get_timer (0);
578 while (flash_is_busy (info, sector)) {
579 if (get_timer (start) > tout) {
580 printf ("Flash %s timeout at address %lx data %lx\n",
581 prompt, info->start[sector],
582 flash_read_long (info, sector, 0));
583 flash_write_cmd (info, sector, 0, info->cmd_reset);
587 udelay (1); /* also triggers watchdog */
592 /*-----------------------------------------------------------------------
593 * Wait for XSR.7 to be set, if it times out print an error, otherwise
594 * do a full status check.
596 * This routine sets the flash to read-array mode.
598 static int flash_full_status_check (flash_info_t * info, flash_sect_t sector,
599 ulong tout, char *prompt)
603 retcode = flash_status_check (info, sector, tout, prompt);
604 switch (info->vendor) {
605 case CFI_CMDSET_INTEL_PROG_REGIONS:
606 case CFI_CMDSET_INTEL_EXTENDED:
607 case CFI_CMDSET_INTEL_STANDARD:
608 if ((retcode != ERR_OK)
609 && !flash_isequal (info, sector, 0, FLASH_STATUS_DONE)) {
611 printf ("Flash %s error at address %lx\n", prompt,
612 info->start[sector]);
613 if (flash_isset (info, sector, 0, FLASH_STATUS_ECLBS |
614 FLASH_STATUS_PSLBS)) {
615 puts ("Command Sequence Error.\n");
616 } else if (flash_isset (info, sector, 0,
617 FLASH_STATUS_ECLBS)) {
618 puts ("Block Erase Error.\n");
619 retcode = ERR_NOT_ERASED;
620 } else if (flash_isset (info, sector, 0,
621 FLASH_STATUS_PSLBS)) {
622 puts ("Locking Error\n");
624 if (flash_isset (info, sector, 0, FLASH_STATUS_DPS)) {
625 puts ("Block locked.\n");
626 retcode = ERR_PROTECTED;
628 if (flash_isset (info, sector, 0, FLASH_STATUS_VPENS))
629 puts ("Vpp Low Error.\n");
631 flash_write_cmd (info, sector, 0, info->cmd_reset);
640 static int use_flash_status_poll(flash_info_t *info)
642 #ifdef CONFIG_SYS_CFI_FLASH_STATUS_POLL
643 if (info->vendor == CFI_CMDSET_AMD_EXTENDED ||
644 info->vendor == CFI_CMDSET_AMD_STANDARD)
650 static int flash_status_poll(flash_info_t *info, void *src, void *dst,
651 ulong tout, char *prompt)
653 #ifdef CONFIG_SYS_CFI_FLASH_STATUS_POLL
657 #if CONFIG_SYS_HZ != 1000
658 if ((ulong)CONFIG_SYS_HZ > 100000)
659 tout *= (ulong)CONFIG_SYS_HZ / 1000; /* for a big HZ, avoid overflow */
661 tout = DIV_ROUND_UP(tout * (ulong)CONFIG_SYS_HZ, 1000);
664 /* Wait for command completion */
666 start = get_timer(0);
668 switch (info->portwidth) {
670 ready = flash_read8(dst) == flash_read8(src);
672 case FLASH_CFI_16BIT:
673 ready = flash_read16(dst) == flash_read16(src);
675 case FLASH_CFI_32BIT:
676 ready = flash_read32(dst) == flash_read32(src);
678 case FLASH_CFI_64BIT:
679 ready = flash_read64(dst) == flash_read64(src);
687 if (get_timer(start) > tout) {
688 printf("Flash %s timeout at address %lx data %lx\n",
689 prompt, (ulong)dst, (ulong)flash_read8(dst));
692 udelay(1); /* also triggers watchdog */
694 #endif /* CONFIG_SYS_CFI_FLASH_STATUS_POLL */
698 /*-----------------------------------------------------------------------
700 static void flash_add_byte (flash_info_t * info, cfiword_t * cword, uchar c)
702 #if defined(__LITTLE_ENDIAN) && !defined(CONFIG_SYS_WRITE_SWAPPED_DATA)
705 unsigned long long ll;
708 switch (info->portwidth) {
712 case FLASH_CFI_16BIT:
713 #if defined(__LITTLE_ENDIAN) && !defined(CONFIG_SYS_WRITE_SWAPPED_DATA)
716 cword->w = (cword->w >> 8) | w;
718 cword->w = (cword->w << 8) | c;
721 case FLASH_CFI_32BIT:
722 #if defined(__LITTLE_ENDIAN) && !defined(CONFIG_SYS_WRITE_SWAPPED_DATA)
725 cword->l = (cword->l >> 8) | l;
727 cword->l = (cword->l << 8) | c;
730 case FLASH_CFI_64BIT:
731 #if defined(__LITTLE_ENDIAN) && !defined(CONFIG_SYS_WRITE_SWAPPED_DATA)
734 cword->ll = (cword->ll >> 8) | ll;
736 cword->ll = (cword->ll << 8) | c;
743 * Loop through the sector table starting from the previously found sector.
744 * Searches forwards or backwards, dependent on the passed address.
746 static flash_sect_t find_sector (flash_info_t * info, ulong addr)
748 static flash_sect_t saved_sector = 0; /* previously found sector */
749 static flash_info_t *saved_info = 0; /* previously used flash bank */
750 flash_sect_t sector = saved_sector;
752 if ((info != saved_info) || (sector >= info->sector_count))
755 while ((info->start[sector] < addr)
756 && (sector < info->sector_count - 1))
758 while ((info->start[sector] > addr) && (sector > 0))
760 * also decrements the sector in case of an overshot
765 saved_sector = sector;
770 /*-----------------------------------------------------------------------
772 static int flash_write_cfiword (flash_info_t * info, ulong dest,
775 void *dstaddr = (void *)dest;
777 flash_sect_t sect = 0;
780 /* Check if Flash is (sufficiently) erased */
781 switch (info->portwidth) {
783 flag = ((flash_read8(dstaddr) & cword.c) == cword.c);
785 case FLASH_CFI_16BIT:
786 flag = ((flash_read16(dstaddr) & cword.w) == cword.w);
788 case FLASH_CFI_32BIT:
789 flag = ((flash_read32(dstaddr) & cword.l) == cword.l);
791 case FLASH_CFI_64BIT:
792 flag = ((flash_read64(dstaddr) & cword.ll) == cword.ll);
799 return ERR_NOT_ERASED;
801 /* Disable interrupts which might cause a timeout here */
802 flag = disable_interrupts ();
804 switch (info->vendor) {
805 case CFI_CMDSET_INTEL_PROG_REGIONS:
806 case CFI_CMDSET_INTEL_EXTENDED:
807 case CFI_CMDSET_INTEL_STANDARD:
808 flash_write_cmd (info, 0, 0, FLASH_CMD_CLEAR_STATUS);
809 flash_write_cmd (info, 0, 0, FLASH_CMD_WRITE);
811 case CFI_CMDSET_AMD_EXTENDED:
812 case CFI_CMDSET_AMD_STANDARD:
813 sect = find_sector(info, dest);
814 flash_unlock_seq (info, sect);
815 flash_write_cmd (info, sect, info->addr_unlock1, AMD_CMD_WRITE);
818 #ifdef CONFIG_FLASH_CFI_LEGACY
819 case CFI_CMDSET_AMD_LEGACY:
820 sect = find_sector(info, dest);
821 flash_unlock_seq (info, 0);
822 flash_write_cmd (info, 0, info->addr_unlock1, AMD_CMD_WRITE);
828 switch (info->portwidth) {
830 flash_write8(cword.c, dstaddr);
832 case FLASH_CFI_16BIT:
833 flash_write16(cword.w, dstaddr);
835 case FLASH_CFI_32BIT:
836 flash_write32(cword.l, dstaddr);
838 case FLASH_CFI_64BIT:
839 flash_write64(cword.ll, dstaddr);
843 /* re-enable interrupts if necessary */
845 enable_interrupts ();
848 sect = find_sector (info, dest);
850 if (use_flash_status_poll(info))
851 return flash_status_poll(info, &cword, dstaddr,
852 info->write_tout, "write");
854 return flash_full_status_check(info, sect,
855 info->write_tout, "write");
858 #ifdef CONFIG_SYS_FLASH_USE_BUFFER_WRITE
860 static int flash_write_cfibuffer (flash_info_t * info, ulong dest, uchar * cp,
867 void *dst = (void *)dest;
874 switch (info->portwidth) {
878 case FLASH_CFI_16BIT:
881 case FLASH_CFI_32BIT:
884 case FLASH_CFI_64BIT:
894 while ((cnt-- > 0) && (flag == 0)) {
895 switch (info->portwidth) {
897 flag = ((flash_read8(dst2) & flash_read8(src)) ==
901 case FLASH_CFI_16BIT:
902 flag = ((flash_read16(dst2) & flash_read16(src)) ==
906 case FLASH_CFI_32BIT:
907 flag = ((flash_read32(dst2) & flash_read32(src)) ==
911 case FLASH_CFI_64BIT:
912 flag = ((flash_read64(dst2) & flash_read64(src)) ==
919 retcode = ERR_NOT_ERASED;
924 sector = find_sector (info, dest);
926 switch (info->vendor) {
927 case CFI_CMDSET_INTEL_PROG_REGIONS:
928 case CFI_CMDSET_INTEL_STANDARD:
929 case CFI_CMDSET_INTEL_EXTENDED:
930 write_cmd = (info->vendor == CFI_CMDSET_INTEL_PROG_REGIONS) ?
931 FLASH_CMD_WRITE_BUFFER_PROG : FLASH_CMD_WRITE_TO_BUFFER;
932 flash_write_cmd (info, sector, 0, FLASH_CMD_CLEAR_STATUS);
933 flash_write_cmd (info, sector, 0, FLASH_CMD_READ_STATUS);
934 flash_write_cmd (info, sector, 0, write_cmd);
935 retcode = flash_status_check (info, sector,
936 info->buffer_write_tout,
938 if (retcode == ERR_OK) {
939 /* reduce the number of loops by the width of
942 flash_write_cmd (info, sector, 0, cnt - 1);
944 switch (info->portwidth) {
946 flash_write8(flash_read8(src), dst);
949 case FLASH_CFI_16BIT:
950 flash_write16(flash_read16(src), dst);
953 case FLASH_CFI_32BIT:
954 flash_write32(flash_read32(src), dst);
957 case FLASH_CFI_64BIT:
958 flash_write64(flash_read64(src), dst);
966 flash_write_cmd (info, sector, 0,
967 FLASH_CMD_WRITE_BUFFER_CONFIRM);
968 retcode = flash_full_status_check (
969 info, sector, info->buffer_write_tout,
975 case CFI_CMDSET_AMD_STANDARD:
976 case CFI_CMDSET_AMD_EXTENDED:
977 flash_unlock_seq(info,0);
979 #ifdef CONFIG_FLASH_SPANSION_S29WS_N
980 offset = ((unsigned long)dst - info->start[sector]) >> shift;
982 flash_write_cmd(info, sector, offset, AMD_CMD_WRITE_TO_BUFFER);
984 flash_write_cmd(info, sector, offset, cnt - 1);
986 switch (info->portwidth) {
989 flash_write8(flash_read8(src), dst);
993 case FLASH_CFI_16BIT:
995 flash_write16(flash_read16(src), dst);
999 case FLASH_CFI_32BIT:
1001 flash_write32(flash_read32(src), dst);
1005 case FLASH_CFI_64BIT:
1007 flash_write64(flash_read64(src), dst);
1012 retcode = ERR_INVAL;
1016 flash_write_cmd (info, sector, 0, AMD_CMD_WRITE_BUFFER_CONFIRM);
1017 if (use_flash_status_poll(info))
1018 retcode = flash_status_poll(info, src - (1 << shift),
1020 info->buffer_write_tout,
1023 retcode = flash_full_status_check(info, sector,
1024 info->buffer_write_tout,
1029 debug ("Unknown Command Set\n");
1030 retcode = ERR_INVAL;
1037 #endif /* CONFIG_SYS_FLASH_USE_BUFFER_WRITE */
1040 /*-----------------------------------------------------------------------
1042 int flash_erase (flash_info_t * info, int s_first, int s_last)
1049 if (info->flash_id != FLASH_MAN_CFI) {
1050 puts ("Can't erase unknown flash type - aborted\n");
1053 if ((s_first < 0) || (s_first > s_last)) {
1054 puts ("- no sectors to erase\n");
1059 for (sect = s_first; sect <= s_last; ++sect) {
1060 if (info->protect[sect]) {
1065 printf ("- Warning: %d protected sectors will not be erased!\n",
1067 } else if (flash_verbose) {
1072 for (sect = s_first; sect <= s_last; sect++) {
1073 if (info->protect[sect] == 0) { /* not protected */
1074 switch (info->vendor) {
1075 case CFI_CMDSET_INTEL_PROG_REGIONS:
1076 case CFI_CMDSET_INTEL_STANDARD:
1077 case CFI_CMDSET_INTEL_EXTENDED:
1078 flash_write_cmd (info, sect, 0,
1079 FLASH_CMD_CLEAR_STATUS);
1080 flash_write_cmd (info, sect, 0,
1081 FLASH_CMD_BLOCK_ERASE);
1082 flash_write_cmd (info, sect, 0,
1083 FLASH_CMD_ERASE_CONFIRM);
1085 case CFI_CMDSET_AMD_STANDARD:
1086 case CFI_CMDSET_AMD_EXTENDED:
1087 flash_unlock_seq (info, sect);
1088 flash_write_cmd (info, sect,
1090 AMD_CMD_ERASE_START);
1091 flash_unlock_seq (info, sect);
1092 flash_write_cmd (info, sect, 0,
1093 AMD_CMD_ERASE_SECTOR);
1095 #ifdef CONFIG_FLASH_CFI_LEGACY
1096 case CFI_CMDSET_AMD_LEGACY:
1097 flash_unlock_seq (info, 0);
1098 flash_write_cmd (info, 0, info->addr_unlock1,
1099 AMD_CMD_ERASE_START);
1100 flash_unlock_seq (info, 0);
1101 flash_write_cmd (info, sect, 0,
1102 AMD_CMD_ERASE_SECTOR);
1106 debug ("Unkown flash vendor %d\n",
1111 if (use_flash_status_poll(info)) {
1112 cfiword_t cword = (cfiword_t)0xffffffffffffffffULL;
1114 dest = flash_map(info, sect, 0);
1115 st = flash_status_poll(info, &cword, dest,
1116 info->erase_blk_tout, "erase");
1117 flash_unmap(info, sect, 0, dest);
1119 st = flash_full_status_check(info, sect,
1120 info->erase_blk_tout,
1124 else if (flash_verbose)
1135 #ifdef CONFIG_SYS_FLASH_EMPTY_INFO
1136 static int sector_erased(flash_info_t *info, int i)
1143 * Check if whole sector is erased
1145 size = flash_sector_size(info, i);
1146 flash = (u32 *)info->start[i];
1147 /* divide by 4 for longword access */
1150 for (k = 0; k < size; k++) {
1151 if (flash_read32(flash++) != 0xffffffff)
1152 return 0; /* not erased */
1155 return 1; /* erased */
1157 #endif /* CONFIG_SYS_FLASH_EMPTY_INFO */
1159 void flash_print_info (flash_info_t * info)
1163 if (info->flash_id != FLASH_MAN_CFI) {
1164 puts ("missing or unknown FLASH type\n");
1168 printf ("%s flash (%d x %d)",
1170 (info->portwidth << 3), (info->chipwidth << 3));
1171 if (info->size < 1024*1024)
1172 printf (" Size: %ld kB in %d Sectors\n",
1173 info->size >> 10, info->sector_count);
1175 printf (" Size: %ld MB in %d Sectors\n",
1176 info->size >> 20, info->sector_count);
1178 switch (info->vendor) {
1179 case CFI_CMDSET_INTEL_PROG_REGIONS:
1180 printf ("Intel Prog Regions");
1182 case CFI_CMDSET_INTEL_STANDARD:
1183 printf ("Intel Standard");
1185 case CFI_CMDSET_INTEL_EXTENDED:
1186 printf ("Intel Extended");
1188 case CFI_CMDSET_AMD_STANDARD:
1189 printf ("AMD Standard");
1191 case CFI_CMDSET_AMD_EXTENDED:
1192 printf ("AMD Extended");
1194 #ifdef CONFIG_FLASH_CFI_LEGACY
1195 case CFI_CMDSET_AMD_LEGACY:
1196 printf ("AMD Legacy");
1200 printf ("Unknown (%d)", info->vendor);
1203 printf (" command set, Manufacturer ID: 0x%02X, Device ID: 0x",
1204 info->manufacturer_id);
1205 printf (info->chipwidth == FLASH_CFI_16BIT ? "%04X" : "%02X",
1207 if ((info->device_id & 0xff) == 0x7E) {
1208 printf(info->chipwidth == FLASH_CFI_16BIT ? "%04X" : "%02X",
1211 printf ("\n Erase timeout: %ld ms, write timeout: %ld ms\n",
1212 info->erase_blk_tout,
1214 if (info->buffer_size > 1) {
1215 printf (" Buffer write timeout: %ld ms, "
1216 "buffer size: %d bytes\n",
1217 info->buffer_write_tout,
1221 puts ("\n Sector Start Addresses:");
1222 for (i = 0; i < info->sector_count; ++i) {
1227 #ifdef CONFIG_SYS_FLASH_EMPTY_INFO
1228 /* print empty and read-only info */
1229 printf (" %08lX %c %s ",
1231 sector_erased(info, i) ? 'E' : ' ',
1232 info->protect[i] ? "RO" : " ");
1233 #else /* ! CONFIG_SYS_FLASH_EMPTY_INFO */
1234 printf (" %08lX %s ",
1236 info->protect[i] ? "RO" : " ");
1243 /*-----------------------------------------------------------------------
1244 * This is used in a few places in write_buf() to show programming
1245 * progress. Making it a function is nasty because it needs to do side
1246 * effect updates to digit and dots. Repeated code is nasty too, so
1247 * we define it once here.
1249 #ifdef CONFIG_FLASH_SHOW_PROGRESS
1250 #define FLASH_SHOW_PROGRESS(scale, dots, digit, dots_sub) \
1251 if (flash_verbose) { \
1253 if ((scale > 0) && (dots <= 0)) { \
1254 if ((digit % 5) == 0) \
1255 printf ("%d", digit / 5); \
1263 #define FLASH_SHOW_PROGRESS(scale, dots, digit, dots_sub)
1266 /*-----------------------------------------------------------------------
1267 * Copy memory to flash, returns:
1270 * 2 - Flash not erased
1272 int write_buff (flash_info_t * info, uchar * src, ulong addr, ulong cnt)
1279 #ifdef CONFIG_SYS_FLASH_USE_BUFFER_WRITE
1282 #ifdef CONFIG_FLASH_SHOW_PROGRESS
1283 int digit = CONFIG_FLASH_SHOW_PROGRESS;
1288 * Suppress if there are fewer than CONFIG_FLASH_SHOW_PROGRESS writes.
1290 if (cnt >= CONFIG_FLASH_SHOW_PROGRESS) {
1291 scale = (int)((cnt + CONFIG_FLASH_SHOW_PROGRESS - 1) /
1292 CONFIG_FLASH_SHOW_PROGRESS);
1296 /* get lower aligned address */
1297 wp = (addr & ~(info->portwidth - 1));
1299 /* handle unaligned start */
1300 if ((aln = addr - wp) != 0) {
1303 for (i = 0; i < aln; ++i)
1304 flash_add_byte (info, &cword, flash_read8(p + i));
1306 for (; (i < info->portwidth) && (cnt > 0); i++) {
1307 flash_add_byte (info, &cword, *src++);
1310 for (; (cnt == 0) && (i < info->portwidth); ++i)
1311 flash_add_byte (info, &cword, flash_read8(p + i));
1313 rc = flash_write_cfiword (info, wp, cword);
1318 FLASH_SHOW_PROGRESS(scale, dots, digit, i);
1321 /* handle the aligned part */
1322 #ifdef CONFIG_SYS_FLASH_USE_BUFFER_WRITE
1323 buffered_size = (info->portwidth / info->chipwidth);
1324 buffered_size *= info->buffer_size;
1325 while (cnt >= info->portwidth) {
1326 /* prohibit buffer write when buffer_size is 1 */
1327 if (info->buffer_size == 1) {
1329 for (i = 0; i < info->portwidth; i++)
1330 flash_add_byte (info, &cword, *src++);
1331 if ((rc = flash_write_cfiword (info, wp, cword)) != 0)
1333 wp += info->portwidth;
1334 cnt -= info->portwidth;
1338 /* write buffer until next buffered_size aligned boundary */
1339 i = buffered_size - (wp % buffered_size);
1342 if ((rc = flash_write_cfibuffer (info, wp, src, i)) != ERR_OK)
1344 i -= i & (info->portwidth - 1);
1348 FLASH_SHOW_PROGRESS(scale, dots, digit, i);
1351 while (cnt >= info->portwidth) {
1353 for (i = 0; i < info->portwidth; i++) {
1354 flash_add_byte (info, &cword, *src++);
1356 if ((rc = flash_write_cfiword (info, wp, cword)) != 0)
1358 wp += info->portwidth;
1359 cnt -= info->portwidth;
1360 FLASH_SHOW_PROGRESS(scale, dots, digit, info->portwidth);
1362 #endif /* CONFIG_SYS_FLASH_USE_BUFFER_WRITE */
1369 * handle unaligned tail bytes
1373 for (i = 0; (i < info->portwidth) && (cnt > 0); ++i) {
1374 flash_add_byte (info, &cword, *src++);
1377 for (; i < info->portwidth; ++i)
1378 flash_add_byte (info, &cword, flash_read8(p + i));
1380 return flash_write_cfiword (info, wp, cword);
1383 /*-----------------------------------------------------------------------
1385 #ifdef CONFIG_SYS_FLASH_PROTECTION
1387 int flash_real_protect (flash_info_t * info, long sector, int prot)
1391 switch (info->vendor) {
1392 case CFI_CMDSET_INTEL_PROG_REGIONS:
1393 case CFI_CMDSET_INTEL_STANDARD:
1394 case CFI_CMDSET_INTEL_EXTENDED:
1397 * "Numonyx Axcell P33/P30 Specification Update" :)
1399 flash_write_cmd (info, sector, 0, FLASH_CMD_READ_ID);
1400 if (!flash_isequal (info, sector, FLASH_OFFSET_PROTECT,
1403 * cmd must come before FLASH_CMD_PROTECT + 20us
1404 * Disable interrupts which might cause a timeout here.
1406 int flag = disable_interrupts ();
1410 cmd = FLASH_CMD_PROTECT_SET;
1412 cmd = FLASH_CMD_PROTECT_CLEAR;
1414 flash_write_cmd (info, sector, 0,
1416 flash_write_cmd (info, sector, 0, cmd);
1417 /* re-enable interrupts if necessary */
1419 enable_interrupts ();
1422 case CFI_CMDSET_AMD_EXTENDED:
1423 case CFI_CMDSET_AMD_STANDARD:
1424 /* U-Boot only checks the first byte */
1425 if (info->manufacturer_id == (uchar)ATM_MANUFACT) {
1427 flash_unlock_seq (info, 0);
1428 flash_write_cmd (info, 0,
1430 ATM_CMD_SOFTLOCK_START);
1431 flash_unlock_seq (info, 0);
1432 flash_write_cmd (info, sector, 0,
1435 flash_write_cmd (info, 0,
1437 AMD_CMD_UNLOCK_START);
1438 if (info->device_id == ATM_ID_BV6416)
1439 flash_write_cmd (info, sector,
1440 0, ATM_CMD_UNLOCK_SECT);
1444 #ifdef CONFIG_FLASH_CFI_LEGACY
1445 case CFI_CMDSET_AMD_LEGACY:
1446 flash_write_cmd (info, sector, 0, FLASH_CMD_CLEAR_STATUS);
1447 flash_write_cmd (info, sector, 0, FLASH_CMD_PROTECT);
1449 flash_write_cmd (info, sector, 0, FLASH_CMD_PROTECT_SET);
1451 flash_write_cmd (info, sector, 0, FLASH_CMD_PROTECT_CLEAR);
1456 * Flash needs to be in status register read mode for
1457 * flash_full_status_check() to work correctly
1459 flash_write_cmd(info, sector, 0, FLASH_CMD_READ_STATUS);
1461 flash_full_status_check (info, sector, info->erase_blk_tout,
1462 prot ? "protect" : "unprotect")) == 0) {
1464 info->protect[sector] = prot;
1467 * On some of Intel's flash chips (marked via legacy_unlock)
1468 * unprotect unprotects all locking.
1470 if ((prot == 0) && (info->legacy_unlock)) {
1473 for (i = 0; i < info->sector_count; i++) {
1474 if (info->protect[i])
1475 flash_real_protect (info, i, 1);
1482 /*-----------------------------------------------------------------------
1483 * flash_read_user_serial - read the OneTimeProgramming cells
1485 void flash_read_user_serial (flash_info_t * info, void *buffer, int offset,
1492 src = flash_map (info, 0, FLASH_OFFSET_USER_PROTECTION);
1493 flash_write_cmd (info, 0, 0, FLASH_CMD_READ_ID);
1494 memcpy (dst, src + offset, len);
1495 flash_write_cmd (info, 0, 0, info->cmd_reset);
1497 flash_unmap(info, 0, FLASH_OFFSET_USER_PROTECTION, src);
1501 * flash_read_factory_serial - read the device Id from the protection area
1503 void flash_read_factory_serial (flash_info_t * info, void *buffer, int offset,
1508 src = flash_map (info, 0, FLASH_OFFSET_INTEL_PROTECTION);
1509 flash_write_cmd (info, 0, 0, FLASH_CMD_READ_ID);
1510 memcpy (buffer, src + offset, len);
1511 flash_write_cmd (info, 0, 0, info->cmd_reset);
1513 flash_unmap(info, 0, FLASH_OFFSET_INTEL_PROTECTION, src);
1516 #endif /* CONFIG_SYS_FLASH_PROTECTION */
1518 /*-----------------------------------------------------------------------
1519 * Reverse the order of the erase regions in the CFI QRY structure.
1520 * This is needed for chips that are either a) correctly detected as
1521 * top-boot, or b) buggy.
1523 static void cfi_reverse_geometry(struct cfi_qry *qry)
1528 for (i = 0, j = qry->num_erase_regions - 1; i < j; i++, j--) {
1529 tmp = qry->erase_region_info[i];
1530 qry->erase_region_info[i] = qry->erase_region_info[j];
1531 qry->erase_region_info[j] = tmp;
1535 /*-----------------------------------------------------------------------
1536 * read jedec ids from device and set corresponding fields in info struct
1538 * Note: assume cfi->vendor, cfi->portwidth and cfi->chipwidth are correct
1541 static void cmdset_intel_read_jedec_ids(flash_info_t *info)
1543 flash_write_cmd(info, 0, 0, FLASH_CMD_RESET);
1545 flash_write_cmd(info, 0, 0, FLASH_CMD_READ_ID);
1546 udelay(1000); /* some flash are slow to respond */
1547 info->manufacturer_id = flash_read_uchar (info,
1548 FLASH_OFFSET_MANUFACTURER_ID);
1549 info->device_id = (info->chipwidth == FLASH_CFI_16BIT) ?
1550 flash_read_word (info, FLASH_OFFSET_DEVICE_ID) :
1551 flash_read_uchar (info, FLASH_OFFSET_DEVICE_ID);
1552 flash_write_cmd(info, 0, 0, FLASH_CMD_RESET);
1555 static int cmdset_intel_init(flash_info_t *info, struct cfi_qry *qry)
1557 info->cmd_reset = FLASH_CMD_RESET;
1559 cmdset_intel_read_jedec_ids(info);
1560 flash_write_cmd(info, 0, info->cfi_offset, FLASH_CMD_CFI);
1562 #ifdef CONFIG_SYS_FLASH_PROTECTION
1563 /* read legacy lock/unlock bit from intel flash */
1564 if (info->ext_addr) {
1565 info->legacy_unlock = flash_read_uchar (info,
1566 info->ext_addr + 5) & 0x08;
1573 static void cmdset_amd_read_jedec_ids(flash_info_t *info)
1578 flash_write_cmd(info, 0, 0, AMD_CMD_RESET);
1579 flash_unlock_seq(info, 0);
1580 flash_write_cmd(info, 0, info->addr_unlock1, FLASH_CMD_READ_ID);
1581 udelay(1000); /* some flash are slow to respond */
1583 manuId = flash_read_uchar (info, FLASH_OFFSET_MANUFACTURER_ID);
1584 /* JEDEC JEP106Z specifies ID codes up to bank 7 */
1585 while (manuId == FLASH_CONTINUATION_CODE && bankId < 0x800) {
1587 manuId = flash_read_uchar (info,
1588 bankId | FLASH_OFFSET_MANUFACTURER_ID);
1590 info->manufacturer_id = manuId;
1592 switch (info->chipwidth){
1593 case FLASH_CFI_8BIT:
1594 info->device_id = flash_read_uchar (info,
1595 FLASH_OFFSET_DEVICE_ID);
1596 if (info->device_id == 0x7E) {
1597 /* AMD 3-byte (expanded) device ids */
1598 info->device_id2 = flash_read_uchar (info,
1599 FLASH_OFFSET_DEVICE_ID2);
1600 info->device_id2 <<= 8;
1601 info->device_id2 |= flash_read_uchar (info,
1602 FLASH_OFFSET_DEVICE_ID3);
1605 case FLASH_CFI_16BIT:
1606 info->device_id = flash_read_word (info,
1607 FLASH_OFFSET_DEVICE_ID);
1608 if ((info->device_id & 0xff) == 0x7E) {
1609 /* AMD 3-byte (expanded) device ids */
1610 info->device_id2 = flash_read_uchar (info,
1611 FLASH_OFFSET_DEVICE_ID2);
1612 info->device_id2 <<= 8;
1613 info->device_id2 |= flash_read_uchar (info,
1614 FLASH_OFFSET_DEVICE_ID3);
1620 flash_write_cmd(info, 0, 0, AMD_CMD_RESET);
1624 static int cmdset_amd_init(flash_info_t *info, struct cfi_qry *qry)
1626 info->cmd_reset = AMD_CMD_RESET;
1628 cmdset_amd_read_jedec_ids(info);
1629 flash_write_cmd(info, 0, info->cfi_offset, FLASH_CMD_CFI);
1634 #ifdef CONFIG_FLASH_CFI_LEGACY
1635 static void flash_read_jedec_ids (flash_info_t * info)
1637 info->manufacturer_id = 0;
1638 info->device_id = 0;
1639 info->device_id2 = 0;
1641 switch (info->vendor) {
1642 case CFI_CMDSET_INTEL_PROG_REGIONS:
1643 case CFI_CMDSET_INTEL_STANDARD:
1644 case CFI_CMDSET_INTEL_EXTENDED:
1645 cmdset_intel_read_jedec_ids(info);
1647 case CFI_CMDSET_AMD_STANDARD:
1648 case CFI_CMDSET_AMD_EXTENDED:
1649 cmdset_amd_read_jedec_ids(info);
1656 /*-----------------------------------------------------------------------
1657 * Call board code to request info about non-CFI flash.
1658 * board_flash_get_legacy needs to fill in at least:
1659 * info->portwidth, info->chipwidth and info->interface for Jedec probing.
1661 static int flash_detect_legacy(phys_addr_t base, int banknum)
1663 flash_info_t *info = &flash_info[banknum];
1665 if (board_flash_get_legacy(base, banknum, info)) {
1666 /* board code may have filled info completely. If not, we
1667 use JEDEC ID probing. */
1668 if (!info->vendor) {
1670 CFI_CMDSET_AMD_STANDARD,
1671 CFI_CMDSET_INTEL_STANDARD
1675 for (i = 0; i < sizeof(modes) / sizeof(modes[0]); i++) {
1676 info->vendor = modes[i];
1678 (ulong)map_physmem(base,
1681 if (info->portwidth == FLASH_CFI_8BIT
1682 && info->interface == FLASH_CFI_X8X16) {
1683 info->addr_unlock1 = 0x2AAA;
1684 info->addr_unlock2 = 0x5555;
1686 info->addr_unlock1 = 0x5555;
1687 info->addr_unlock2 = 0x2AAA;
1689 flash_read_jedec_ids(info);
1690 debug("JEDEC PROBE: ID %x %x %x\n",
1691 info->manufacturer_id,
1694 if (jedec_flash_match(info, info->start[0]))
1697 unmap_physmem((void *)info->start[0],
1702 switch(info->vendor) {
1703 case CFI_CMDSET_INTEL_PROG_REGIONS:
1704 case CFI_CMDSET_INTEL_STANDARD:
1705 case CFI_CMDSET_INTEL_EXTENDED:
1706 info->cmd_reset = FLASH_CMD_RESET;
1708 case CFI_CMDSET_AMD_STANDARD:
1709 case CFI_CMDSET_AMD_EXTENDED:
1710 case CFI_CMDSET_AMD_LEGACY:
1711 info->cmd_reset = AMD_CMD_RESET;
1714 info->flash_id = FLASH_MAN_CFI;
1717 return 0; /* use CFI */
1720 static inline int flash_detect_legacy(phys_addr_t base, int banknum)
1722 return 0; /* use CFI */
1726 /*-----------------------------------------------------------------------
1727 * detect if flash is compatible with the Common Flash Interface (CFI)
1728 * http://www.jedec.org/download/search/jesd68.pdf
1730 static void flash_read_cfi (flash_info_t *info, void *buf,
1731 unsigned int start, size_t len)
1736 for (i = 0; i < len; i++)
1737 p[i] = flash_read_uchar(info, start + i);
1740 void __flash_cmd_reset(flash_info_t *info)
1743 * We do not yet know what kind of commandset to use, so we issue
1744 * the reset command in both Intel and AMD variants, in the hope
1745 * that AMD flash roms ignore the Intel command.
1747 flash_write_cmd(info, 0, 0, AMD_CMD_RESET);
1749 flash_write_cmd(info, 0, 0, FLASH_CMD_RESET);
1751 void flash_cmd_reset(flash_info_t *info)
1752 __attribute__((weak,alias("__flash_cmd_reset")));
1754 static int __flash_detect_cfi (flash_info_t * info, struct cfi_qry *qry)
1758 /* Issue FLASH reset command */
1759 flash_cmd_reset(info);
1762 cfi_offset < sizeof(flash_offset_cfi) / sizeof(uint);
1764 flash_write_cmd (info, 0, flash_offset_cfi[cfi_offset],
1766 if (flash_isequal (info, 0, FLASH_OFFSET_CFI_RESP, 'Q')
1767 && flash_isequal (info, 0, FLASH_OFFSET_CFI_RESP + 1, 'R')
1768 && flash_isequal (info, 0, FLASH_OFFSET_CFI_RESP + 2, 'Y')) {
1769 flash_read_cfi(info, qry, FLASH_OFFSET_CFI_RESP,
1770 sizeof(struct cfi_qry));
1771 info->interface = le16_to_cpu(qry->interface_desc);
1773 info->cfi_offset = flash_offset_cfi[cfi_offset];
1774 debug ("device interface is %d\n",
1776 debug ("found port %d chip %d ",
1777 info->portwidth, info->chipwidth);
1778 debug ("port %d bits chip %d bits\n",
1779 info->portwidth << CFI_FLASH_SHIFT_WIDTH,
1780 info->chipwidth << CFI_FLASH_SHIFT_WIDTH);
1782 /* calculate command offsets as in the Linux driver */
1783 info->addr_unlock1 = 0x555;
1784 info->addr_unlock2 = 0x2aa;
1787 * modify the unlock address if we are
1788 * in compatibility mode
1790 if ( /* x8/x16 in x8 mode */
1791 ((info->chipwidth == FLASH_CFI_BY8) &&
1792 (info->interface == FLASH_CFI_X8X16)) ||
1793 /* x16/x32 in x16 mode */
1794 ((info->chipwidth == FLASH_CFI_BY16) &&
1795 (info->interface == FLASH_CFI_X16X32)))
1797 info->addr_unlock1 = 0xaaa;
1798 info->addr_unlock2 = 0x555;
1801 info->name = "CFI conformant";
1809 static int flash_detect_cfi (flash_info_t * info, struct cfi_qry *qry)
1811 debug ("flash detect cfi\n");
1813 for (info->portwidth = CONFIG_SYS_FLASH_CFI_WIDTH;
1814 info->portwidth <= FLASH_CFI_64BIT; info->portwidth <<= 1) {
1815 for (info->chipwidth = FLASH_CFI_BY8;
1816 info->chipwidth <= info->portwidth;
1817 info->chipwidth <<= 1)
1818 if (__flash_detect_cfi(info, qry))
1821 debug ("not found\n");
1826 * Manufacturer-specific quirks. Add workarounds for geometry
1827 * reversal, etc. here.
1829 static void flash_fixup_amd(flash_info_t *info, struct cfi_qry *qry)
1831 /* check if flash geometry needs reversal */
1832 if (qry->num_erase_regions > 1) {
1833 /* reverse geometry if top boot part */
1834 if (info->cfi_version < 0x3131) {
1835 /* CFI < 1.1, try to guess from device id */
1836 if ((info->device_id & 0x80) != 0)
1837 cfi_reverse_geometry(qry);
1838 } else if (flash_read_uchar(info, info->ext_addr + 0xf) == 3) {
1839 /* CFI >= 1.1, deduct from top/bottom flag */
1840 /* note: ext_addr is valid since cfi_version > 0 */
1841 cfi_reverse_geometry(qry);
1846 static void flash_fixup_atmel(flash_info_t *info, struct cfi_qry *qry)
1848 int reverse_geometry = 0;
1850 /* Check the "top boot" bit in the PRI */
1851 if (info->ext_addr && !(flash_read_uchar(info, info->ext_addr + 6) & 1))
1852 reverse_geometry = 1;
1854 /* AT49BV6416(T) list the erase regions in the wrong order.
1855 * However, the device ID is identical with the non-broken
1856 * AT49BV642D they differ in the high byte.
1858 if (info->device_id == 0xd6 || info->device_id == 0xd2)
1859 reverse_geometry = !reverse_geometry;
1861 if (reverse_geometry)
1862 cfi_reverse_geometry(qry);
1865 static void flash_fixup_stm(flash_info_t *info, struct cfi_qry *qry)
1867 /* check if flash geometry needs reversal */
1868 if (qry->num_erase_regions > 1) {
1869 /* reverse geometry if top boot part */
1870 if (info->cfi_version < 0x3131) {
1871 /* CFI < 1.1, guess by device id */
1872 if (info->device_id == 0x22CA || /* M29W320DT */
1873 info->device_id == 0x2256 || /* M29W320ET */
1874 info->device_id == 0x22D7) { /* M29W800DT */
1875 cfi_reverse_geometry(qry);
1882 * The following code cannot be run from FLASH!
1885 ulong flash_get_size (phys_addr_t base, int banknum)
1887 flash_info_t *info = &flash_info[banknum];
1889 flash_sect_t sect_cnt;
1893 uchar num_erase_regions;
1894 int erase_region_size;
1895 int erase_region_count;
1897 unsigned long max_size;
1899 memset(&qry, 0, sizeof(qry));
1902 info->cfi_version = 0;
1903 #ifdef CONFIG_SYS_FLASH_PROTECTION
1904 info->legacy_unlock = 0;
1907 info->start[0] = (ulong)map_physmem(base, info->portwidth, MAP_NOCACHE);
1909 if (flash_detect_cfi (info, &qry)) {
1910 info->vendor = le16_to_cpu(qry.p_id);
1911 info->ext_addr = le16_to_cpu(qry.p_adr);
1912 num_erase_regions = qry.num_erase_regions;
1914 if (info->ext_addr) {
1915 info->cfi_version = (ushort) flash_read_uchar (info,
1916 info->ext_addr + 3) << 8;
1917 info->cfi_version |= (ushort) flash_read_uchar (info,
1918 info->ext_addr + 4);
1922 flash_printqry (&qry);
1925 switch (info->vendor) {
1926 case CFI_CMDSET_INTEL_PROG_REGIONS:
1927 case CFI_CMDSET_INTEL_STANDARD:
1928 case CFI_CMDSET_INTEL_EXTENDED:
1929 cmdset_intel_init(info, &qry);
1931 case CFI_CMDSET_AMD_STANDARD:
1932 case CFI_CMDSET_AMD_EXTENDED:
1933 cmdset_amd_init(info, &qry);
1936 printf("CFI: Unknown command set 0x%x\n",
1939 * Unfortunately, this means we don't know how
1940 * to get the chip back to Read mode. Might
1941 * as well try an Intel-style reset...
1943 flash_write_cmd(info, 0, 0, FLASH_CMD_RESET);
1947 /* Do manufacturer-specific fixups */
1948 switch (info->manufacturer_id) {
1949 case 0x0001: /* AMD */
1950 case 0x0037: /* AMIC */
1951 flash_fixup_amd(info, &qry);
1954 flash_fixup_atmel(info, &qry);
1957 flash_fixup_stm(info, &qry);
1961 debug ("manufacturer is %d\n", info->vendor);
1962 debug ("manufacturer id is 0x%x\n", info->manufacturer_id);
1963 debug ("device id is 0x%x\n", info->device_id);
1964 debug ("device id2 is 0x%x\n", info->device_id2);
1965 debug ("cfi version is 0x%04x\n", info->cfi_version);
1967 size_ratio = info->portwidth / info->chipwidth;
1968 /* if the chip is x8/x16 reduce the ratio by half */
1969 if ((info->interface == FLASH_CFI_X8X16)
1970 && (info->chipwidth == FLASH_CFI_BY8)) {
1973 debug ("size_ratio %d port %d bits chip %d bits\n",
1974 size_ratio, info->portwidth << CFI_FLASH_SHIFT_WIDTH,
1975 info->chipwidth << CFI_FLASH_SHIFT_WIDTH);
1976 info->size = 1 << qry.dev_size;
1977 /* multiply the size by the number of chips */
1978 info->size *= size_ratio;
1979 max_size = cfi_flash_bank_size(banknum);
1980 if (max_size && (info->size > max_size)) {
1981 debug("[truncated from %ldMiB]", info->size >> 20);
1982 info->size = max_size;
1984 debug ("found %d erase regions\n", num_erase_regions);
1987 for (i = 0; i < num_erase_regions; i++) {
1988 if (i > NUM_ERASE_REGIONS) {
1989 printf ("%d erase regions found, only %d used\n",
1990 num_erase_regions, NUM_ERASE_REGIONS);
1994 tmp = le32_to_cpu(qry.erase_region_info[i]);
1995 debug("erase region %u: 0x%08lx\n", i, tmp);
1997 erase_region_count = (tmp & 0xffff) + 1;
2000 (tmp & 0xffff) ? ((tmp & 0xffff) * 256) : 128;
2001 debug ("erase_region_count = %d erase_region_size = %d\n",
2002 erase_region_count, erase_region_size);
2003 for (j = 0; j < erase_region_count; j++) {
2004 if (sector - base >= info->size)
2006 if (sect_cnt >= CONFIG_SYS_MAX_FLASH_SECT) {
2007 printf("ERROR: too many flash sectors\n");
2010 info->start[sect_cnt] =
2011 (ulong)map_physmem(sector,
2014 sector += (erase_region_size * size_ratio);
2017 * Only read protection status from
2018 * supported devices (intel...)
2020 switch (info->vendor) {
2021 case CFI_CMDSET_INTEL_PROG_REGIONS:
2022 case CFI_CMDSET_INTEL_EXTENDED:
2023 case CFI_CMDSET_INTEL_STANDARD:
2025 * Set flash to read-id mode. Otherwise
2026 * reading protected status is not
2029 flash_write_cmd(info, sect_cnt, 0,
2031 info->protect[sect_cnt] =
2032 flash_isset (info, sect_cnt,
2033 FLASH_OFFSET_PROTECT,
2034 FLASH_STATUS_PROTECT);
2037 /* default: not protected */
2038 info->protect[sect_cnt] = 0;
2045 info->sector_count = sect_cnt;
2046 info->buffer_size = 1 << le16_to_cpu(qry.max_buf_write_size);
2047 tmp = 1 << qry.block_erase_timeout_typ;
2048 info->erase_blk_tout = tmp *
2049 (1 << qry.block_erase_timeout_max);
2050 tmp = (1 << qry.buf_write_timeout_typ) *
2051 (1 << qry.buf_write_timeout_max);
2053 /* round up when converting to ms */
2054 info->buffer_write_tout = (tmp + 999) / 1000;
2055 tmp = (1 << qry.word_write_timeout_typ) *
2056 (1 << qry.word_write_timeout_max);
2057 /* round up when converting to ms */
2058 info->write_tout = (tmp + 999) / 1000;
2059 info->flash_id = FLASH_MAN_CFI;
2060 if ((info->interface == FLASH_CFI_X8X16) &&
2061 (info->chipwidth == FLASH_CFI_BY8)) {
2062 /* XXX - Need to test on x8/x16 in parallel. */
2063 info->portwidth >>= 1;
2066 flash_write_cmd (info, 0, 0, info->cmd_reset);
2069 return (info->size);
2072 #ifdef CONFIG_FLASH_CFI_MTD
2073 void flash_set_verbose(uint v)
2079 static void cfi_flash_set_config_reg(u32 base, u16 val)
2081 #ifdef CONFIG_SYS_CFI_FLASH_CONFIG_REGS
2083 * Only set this config register if really defined
2084 * to a valid value (0xffff is invalid)
2090 * Set configuration register. Data is "encrypted" in the 16 lower
2093 flash_write16(FLASH_CMD_SETUP, (void *)(base + (val << 1)));
2094 flash_write16(FLASH_CMD_SET_CR_CONFIRM, (void *)(base + (val << 1)));
2097 * Finally issue reset-command to bring device back to
2100 flash_write16(FLASH_CMD_RESET, (void *)base);
2104 /*-----------------------------------------------------------------------
2107 void flash_protect_default(void)
2109 #if defined(CONFIG_SYS_FLASH_AUTOPROTECT_LIST)
2114 } apl[] = CONFIG_SYS_FLASH_AUTOPROTECT_LIST;
2117 /* Monitor protection ON by default */
2118 #if (CONFIG_SYS_MONITOR_BASE >= CONFIG_SYS_FLASH_BASE) && \
2119 (!defined(CONFIG_MONITOR_IS_IN_RAM))
2120 flash_protect(FLAG_PROTECT_SET,
2121 CONFIG_SYS_MONITOR_BASE,
2122 CONFIG_SYS_MONITOR_BASE + monitor_flash_len - 1,
2123 flash_get_info(CONFIG_SYS_MONITOR_BASE));
2126 /* Environment protection ON by default */
2127 #ifdef CONFIG_ENV_IS_IN_FLASH
2128 flash_protect(FLAG_PROTECT_SET,
2130 CONFIG_ENV_ADDR + CONFIG_ENV_SECT_SIZE - 1,
2131 flash_get_info(CONFIG_ENV_ADDR));
2134 /* Redundant environment protection ON by default */
2135 #ifdef CONFIG_ENV_ADDR_REDUND
2136 flash_protect(FLAG_PROTECT_SET,
2137 CONFIG_ENV_ADDR_REDUND,
2138 CONFIG_ENV_ADDR_REDUND + CONFIG_ENV_SECT_SIZE - 1,
2139 flash_get_info(CONFIG_ENV_ADDR_REDUND));
2142 #if defined(CONFIG_SYS_FLASH_AUTOPROTECT_LIST)
2143 for (i = 0; i < (sizeof(apl) / sizeof(struct apl_s)); i++) {
2144 debug("autoprotecting from %08x to %08x\n",
2145 apl[i].start, apl[i].start + apl[i].size - 1);
2146 flash_protect(FLAG_PROTECT_SET,
2148 apl[i].start + apl[i].size - 1,
2149 flash_get_info(apl[i].start));
2154 unsigned long flash_init (void)
2156 unsigned long size = 0;
2159 #ifdef CONFIG_SYS_FLASH_PROTECTION
2160 /* read environment from EEPROM */
2162 getenv_f("unlock", s, sizeof(s));
2165 /* Init: no FLASHes known */
2166 for (i = 0; i < CONFIG_SYS_MAX_FLASH_BANKS; ++i) {
2167 flash_info[i].flash_id = FLASH_UNKNOWN;
2169 /* Optionally write flash configuration register */
2170 cfi_flash_set_config_reg(cfi_flash_bank_addr(i),
2171 cfi_flash_config_reg(i));
2173 if (!flash_detect_legacy(cfi_flash_bank_addr(i), i))
2174 flash_get_size(cfi_flash_bank_addr(i), i);
2175 size += flash_info[i].size;
2176 if (flash_info[i].flash_id == FLASH_UNKNOWN) {
2177 #ifndef CONFIG_SYS_FLASH_QUIET_TEST
2178 printf ("## Unknown flash on Bank %d "
2179 "- Size = 0x%08lx = %ld MB\n",
2180 i+1, flash_info[i].size,
2181 flash_info[i].size >> 20);
2182 #endif /* CONFIG_SYS_FLASH_QUIET_TEST */
2184 #ifdef CONFIG_SYS_FLASH_PROTECTION
2185 else if ((s != NULL) && (strcmp(s, "yes") == 0)) {
2187 * Only the U-Boot image and it's environment
2188 * is protected, all other sectors are
2189 * unprotected (unlocked) if flash hardware
2190 * protection is used (CONFIG_SYS_FLASH_PROTECTION)
2191 * and the environment variable "unlock" is
2194 if (flash_info[i].legacy_unlock) {
2198 * Disable legacy_unlock temporarily,
2199 * since flash_real_protect would
2200 * relock all other sectors again
2203 flash_info[i].legacy_unlock = 0;
2206 * Legacy unlocking (e.g. Intel J3) ->
2207 * unlock only one sector. This will
2208 * unlock all sectors.
2210 flash_real_protect (&flash_info[i], 0, 0);
2212 flash_info[i].legacy_unlock = 1;
2215 * Manually mark other sectors as
2216 * unlocked (unprotected)
2218 for (k = 1; k < flash_info[i].sector_count; k++)
2219 flash_info[i].protect[k] = 0;
2222 * No legancy unlocking -> unlock all sectors
2224 flash_protect (FLAG_PROTECT_CLEAR,
2225 flash_info[i].start[0],
2226 flash_info[i].start[0]
2227 + flash_info[i].size - 1,
2231 #endif /* CONFIG_SYS_FLASH_PROTECTION */
2234 flash_protect_default();
2235 #ifdef CONFIG_FLASH_CFI_MTD