cfi_flash: Use map_physmem() and unmap_physmem()
[platform/kernel/u-boot.git] / drivers / mtd / cfi_flash.c
1 /*
2  * (C) Copyright 2002-2004
3  * Brad Kemp, Seranoa Networks, Brad.Kemp@seranoa.com
4  *
5  * Copyright (C) 2003 Arabella Software Ltd.
6  * Yuli Barcohen <yuli@arabellasw.com>
7  *
8  * Copyright (C) 2004
9  * Ed Okerson
10  *
11  * Copyright (C) 2006
12  * Tolunay Orkun <listmember@orkun.us>
13  *
14  * See file CREDITS for list of people who contributed to this
15  * project.
16  *
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.
21  *
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.
26  *
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,
30  * MA 02111-1307 USA
31  *
32  */
33
34 /* The DEBUG define must be before common to enable debugging */
35 /* #define DEBUG        */
36
37 #include <common.h>
38 #include <asm/processor.h>
39 #include <asm/io.h>
40 #include <asm/byteorder.h>
41 #include <environment.h>
42 #ifdef  CFG_FLASH_CFI_DRIVER
43
44 /*
45  * This file implements a Common Flash Interface (CFI) driver for
46  * U-Boot.
47  *
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.
51  *
52  * References
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
60  *
61  * Define CFG_WRITE_SWAPPED_DATA, if you have to swap the Bytes between
62  * reading and writing ... (yes there is such a Hardware).
63  */
64
65 #ifndef CFG_FLASH_BANKS_LIST
66 #define CFG_FLASH_BANKS_LIST { CFG_FLASH_BASE }
67 #endif
68
69 #define FLASH_CMD_CFI                   0x98
70 #define FLASH_CMD_READ_ID               0x90
71 #define FLASH_CMD_RESET                 0xff
72 #define FLASH_CMD_BLOCK_ERASE           0x20
73 #define FLASH_CMD_ERASE_CONFIRM         0xD0
74 #define FLASH_CMD_WRITE                 0x40
75 #define FLASH_CMD_PROTECT               0x60
76 #define FLASH_CMD_PROTECT_SET           0x01
77 #define FLASH_CMD_PROTECT_CLEAR         0xD0
78 #define FLASH_CMD_CLEAR_STATUS          0x50
79 #define FLASH_CMD_WRITE_TO_BUFFER       0xE8
80 #define FLASH_CMD_WRITE_BUFFER_CONFIRM  0xD0
81
82 #define FLASH_STATUS_DONE               0x80
83 #define FLASH_STATUS_ESS                0x40
84 #define FLASH_STATUS_ECLBS              0x20
85 #define FLASH_STATUS_PSLBS              0x10
86 #define FLASH_STATUS_VPENS              0x08
87 #define FLASH_STATUS_PSS                0x04
88 #define FLASH_STATUS_DPS                0x02
89 #define FLASH_STATUS_R                  0x01
90 #define FLASH_STATUS_PROTECT            0x01
91
92 #define AMD_CMD_RESET                   0xF0
93 #define AMD_CMD_WRITE                   0xA0
94 #define AMD_CMD_ERASE_START             0x80
95 #define AMD_CMD_ERASE_SECTOR            0x30
96 #define AMD_CMD_UNLOCK_START            0xAA
97 #define AMD_CMD_UNLOCK_ACK              0x55
98 #define AMD_CMD_WRITE_TO_BUFFER         0x25
99 #define AMD_CMD_WRITE_BUFFER_CONFIRM    0x29
100
101 #define AMD_STATUS_TOGGLE               0x40
102 #define AMD_STATUS_ERROR                0x20
103
104 #define FLASH_OFFSET_MANUFACTURER_ID    0x00
105 #define FLASH_OFFSET_DEVICE_ID          0x01
106 #define FLASH_OFFSET_DEVICE_ID2         0x0E
107 #define FLASH_OFFSET_DEVICE_ID3         0x0F
108 #define FLASH_OFFSET_CFI                0x55
109 #define FLASH_OFFSET_CFI_ALT            0x555
110 #define FLASH_OFFSET_CFI_RESP           0x10
111 #define FLASH_OFFSET_PRIMARY_VENDOR     0x13
112 /* extended query table primary address */
113 #define FLASH_OFFSET_EXT_QUERY_T_P_ADDR 0x15
114 #define FLASH_OFFSET_WTOUT              0x1F
115 #define FLASH_OFFSET_WBTOUT             0x20
116 #define FLASH_OFFSET_ETOUT              0x21
117 #define FLASH_OFFSET_CETOUT             0x22
118 #define FLASH_OFFSET_WMAX_TOUT          0x23
119 #define FLASH_OFFSET_WBMAX_TOUT         0x24
120 #define FLASH_OFFSET_EMAX_TOUT          0x25
121 #define FLASH_OFFSET_CEMAX_TOUT         0x26
122 #define FLASH_OFFSET_SIZE               0x27
123 #define FLASH_OFFSET_INTERFACE          0x28
124 #define FLASH_OFFSET_BUFFER_SIZE        0x2A
125 #define FLASH_OFFSET_NUM_ERASE_REGIONS  0x2C
126 #define FLASH_OFFSET_ERASE_REGIONS      0x2D
127 #define FLASH_OFFSET_PROTECT            0x02
128 #define FLASH_OFFSET_USER_PROTECTION    0x85
129 #define FLASH_OFFSET_INTEL_PROTECTION   0x81
130
131 #define CFI_CMDSET_NONE                 0
132 #define CFI_CMDSET_INTEL_EXTENDED       1
133 #define CFI_CMDSET_AMD_STANDARD         2
134 #define CFI_CMDSET_INTEL_STANDARD       3
135 #define CFI_CMDSET_AMD_EXTENDED         4
136 #define CFI_CMDSET_MITSU_STANDARD       256
137 #define CFI_CMDSET_MITSU_EXTENDED       257
138 #define CFI_CMDSET_SST                  258
139
140 #ifdef CFG_FLASH_CFI_AMD_RESET /* needed for STM_ID_29W320DB on UC100 */
141 # undef  FLASH_CMD_RESET
142 # define FLASH_CMD_RESET        AMD_CMD_RESET /* use AMD-Reset instead */
143 #endif
144
145 typedef union {
146         unsigned char c;
147         unsigned short w;
148         unsigned long l;
149         unsigned long long ll;
150 } cfiword_t;
151
152 #define NUM_ERASE_REGIONS       4 /* max. number of erase regions */
153
154 static uint flash_offset_cfi[2] = { FLASH_OFFSET_CFI, FLASH_OFFSET_CFI_ALT };
155
156 /* use CFG_MAX_FLASH_BANKS_DETECT if defined */
157 #ifdef CFG_MAX_FLASH_BANKS_DETECT
158 static ulong bank_base[CFG_MAX_FLASH_BANKS_DETECT] = CFG_FLASH_BANKS_LIST;
159 flash_info_t flash_info[CFG_MAX_FLASH_BANKS_DETECT];    /* FLASH chips info */
160 #else
161 static ulong bank_base[CFG_MAX_FLASH_BANKS] = CFG_FLASH_BANKS_LIST;
162 flash_info_t flash_info[CFG_MAX_FLASH_BANKS];           /* FLASH chips info */
163 #endif
164
165 /*
166  * Check if chip width is defined. If not, start detecting with 8bit.
167  */
168 #ifndef CFG_FLASH_CFI_WIDTH
169 #define CFG_FLASH_CFI_WIDTH     FLASH_CFI_8BIT
170 #endif
171
172 typedef unsigned long flash_sect_t;
173
174 static void flash_write8(u8 value, void *addr)
175 {
176         __raw_writeb(value, addr);
177 }
178
179 static void flash_write16(u16 value, void *addr)
180 {
181         __raw_writew(value, addr);
182 }
183
184 static void flash_write32(u32 value, void *addr)
185 {
186         __raw_writel(value, addr);
187 }
188
189 static void flash_write64(u64 value, void *addr)
190 {
191         /* No architectures currently implement __raw_writeq() */
192         *(volatile u64 *)addr = value;
193 }
194
195 static u8 flash_read8(void *addr)
196 {
197         return __raw_readb(addr);
198 }
199
200 static u16 flash_read16(void *addr)
201 {
202         return __raw_readw(addr);
203 }
204
205 static u32 flash_read32(void *addr)
206 {
207         return __raw_readl(addr);
208 }
209
210 static u64 flash_read64(void *addr)
211 {
212         /* No architectures currently implement __raw_readq() */
213         return *(volatile u64 *)addr;
214 }
215
216 /*-----------------------------------------------------------------------
217  */
218 #if defined(CFG_ENV_IS_IN_FLASH) || defined(CFG_ENV_ADDR_REDUND) || (CFG_MONITOR_BASE >= CFG_FLASH_BASE)
219 static flash_info_t *flash_get_info(ulong base)
220 {
221         int i;
222         flash_info_t * info = 0;
223
224         for (i = 0; i < CFG_MAX_FLASH_BANKS; i++) {
225                 info = & flash_info[i];
226                 if (info->size && info->start[0] <= base &&
227                     base <= info->start[0] + info->size - 1)
228                         break;
229         }
230
231         return i == CFG_MAX_FLASH_BANKS ? 0 : info;
232 }
233 #endif
234
235 unsigned long flash_sector_size(flash_info_t *info, flash_sect_t sect)
236 {
237         if (sect != (info->sector_count - 1))
238                 return info->start[sect + 1] - info->start[sect];
239         else
240                 return info->start[0] + info->size - info->start[sect];
241 }
242
243 /*-----------------------------------------------------------------------
244  * create an address based on the offset and the port width
245  */
246 static inline void *
247 flash_map (flash_info_t * info, flash_sect_t sect, uint offset)
248 {
249         unsigned int byte_offset = offset * info->portwidth;
250
251         return map_physmem(info->start[sect] + byte_offset,
252                         flash_sector_size(info, sect) - byte_offset,
253                         MAP_NOCACHE);
254 }
255
256 static inline void flash_unmap(flash_info_t *info, flash_sect_t sect,
257                 unsigned int offset, void *addr)
258 {
259         unsigned int byte_offset = offset * info->portwidth;
260
261         unmap_physmem(addr, flash_sector_size(info, sect) - byte_offset);
262 }
263
264 /*-----------------------------------------------------------------------
265  * make a proper sized command based on the port and chip widths
266  */
267 static void flash_make_cmd (flash_info_t * info, uchar cmd, void *cmdbuf)
268 {
269         int i;
270         uchar *cp = (uchar *) cmdbuf;
271
272 #if defined(__LITTLE_ENDIAN) || defined(CFG_WRITE_SWAPPED_DATA)
273         for (i = info->portwidth; i > 0; i--)
274 #else
275         for (i = 1; i <= info->portwidth; i++)
276 #endif
277                 *cp++ = (i & (info->chipwidth - 1)) ? '\0' : cmd;
278 }
279
280 #ifdef DEBUG
281 /*-----------------------------------------------------------------------
282  * Debug support
283  */
284 static void print_longlong (char *str, unsigned long long data)
285 {
286         int i;
287         char *cp;
288
289         cp = (unsigned char *) &data;
290         for (i = 0; i < 8; i++)
291                 sprintf (&str[i * 2], "%2.2x", *cp++);
292 }
293
294 static void flash_printqry (flash_info_t * info, flash_sect_t sect)
295 {
296         void *addr;
297         int x, y;
298
299         for (x = 0; x < 0x40; x += 16U / info->portwidth) {
300                 addr = flash_map(info, sect, x + FLASH_OFFSET_CFI_RESP);
301                 debug ("%p : ", addr);
302                 for (y = 0; y < 16; y++) {
303                         debug ("%2.2x ", flash_read8(addr + y));
304                 }
305                 debug (" ");
306                 for (y = 0; y < 16; y++) {
307                         unsigned char c = flash_read8(addr + y);
308                         if (c >= 0x20 && c <= 0x7e) {
309                                 debug ("%c", c);
310                         } else {
311                                 debug (".");
312                         }
313                 }
314                 debug ("\n");
315                 flash_unmap(info, sect, x + FLASH_OFFSET_CFI_RESP, addr);
316         }
317 }
318 #endif
319
320
321 /*-----------------------------------------------------------------------
322  * read a character at a port width address
323  */
324 static inline uchar flash_read_uchar (flash_info_t * info, uint offset)
325 {
326         uchar *cp;
327         uchar retval;
328
329         cp = flash_map (info, 0, offset);
330 #if defined(__LITTLE_ENDIAN) || defined(CFG_WRITE_SWAPPED_DATA)
331         retval = flash_read8(cp);
332 #else
333         retval = flash_read8(cp + info->portwidth - 1);
334 #endif
335         flash_unmap (info, 0, offset, cp);
336         return retval;
337 }
338
339 /*-----------------------------------------------------------------------
340  * read a short word by swapping for ppc format.
341  */
342 static ushort flash_read_ushort (flash_info_t * info, flash_sect_t sect,
343                                  uint offset)
344 {
345         uchar *addr;
346         ushort retval;
347
348 #ifdef DEBUG
349         int x;
350 #endif
351         addr = flash_map (info, sect, offset);
352
353 #ifdef DEBUG
354         debug ("ushort addr is at %p info->portwidth = %d\n", addr,
355                info->portwidth);
356         for (x = 0; x < 2 * info->portwidth; x++) {
357                 debug ("addr[%x] = 0x%x\n", x, flash_read8(addr + x));
358         }
359 #endif
360 #if defined(__LITTLE_ENDIAN) || defined(CFG_WRITE_SWAPPED_DATA)
361         retval = ((flash_read8(addr + info->portwidth) << 8) |
362                   flash_read8(addr));
363 #else
364         retval = ((flash_read8(addr + 2 * info->portwidth - 1) << 8) |
365                   flash_read8(addr + info->portwidth - 1));
366 #endif
367
368         debug ("retval = 0x%x\n", retval);
369         flash_unmap (info, sect, offset, addr);
370
371         return retval;
372 }
373
374 /*-----------------------------------------------------------------------
375  * read a long word by picking the least significant byte of each maximum
376  * port size word. Swap for ppc format.
377  */
378 static ulong flash_read_long (flash_info_t * info, flash_sect_t sect,
379                               uint offset)
380 {
381         uchar *addr;
382         ulong retval;
383
384 #ifdef DEBUG
385         int x;
386 #endif
387         addr = flash_map (info, sect, offset);
388
389 #ifdef DEBUG
390         debug ("long addr is at %p info->portwidth = %d\n", addr,
391                info->portwidth);
392         for (x = 0; x < 4 * info->portwidth; x++) {
393                 debug ("addr[%x] = 0x%x\n", x, flash_read8(addr + x));
394         }
395 #endif
396 #if defined(__LITTLE_ENDIAN) || defined(CFG_WRITE_SWAPPED_DATA)
397         retval = ((flash_read8(addr) << 16) |
398                   (flash_read8(addr + info->portwidth) << 24) |
399                   (flash_read8(addr + 2 * info->portwidth)) |
400                   (flash_read8(addr + 3 * info->portwidth) << 8));
401 #else
402         retval = ((flash_read8(addr + 2 * info->portwidth - 1) << 24) |
403                   (flash_read8(addr + info->portwidth - 1) << 16) |
404                   (flash_read8(addr + 4 * info->portwidth - 1) << 8) |
405                   (flash_read8(addr + 3 * info->portwidth - 1)));
406 #endif
407         flash_unmap(info, sect, offset, addr);
408
409         return retval;
410 }
411
412 /*
413  * Write a proper sized command to the correct address
414  */
415 static void flash_write_cmd (flash_info_t * info, flash_sect_t sect,
416                              uint offset, uchar cmd)
417 {
418
419         void *addr;
420         cfiword_t cword;
421
422         addr = flash_map (info, sect, offset);
423         flash_make_cmd (info, cmd, &cword);
424         switch (info->portwidth) {
425         case FLASH_CFI_8BIT:
426                 debug ("fwc addr %p cmd %x %x 8bit x %d bit\n", addr, cmd,
427                        cword.c, info->chipwidth << CFI_FLASH_SHIFT_WIDTH);
428                 flash_write8(cword.c, addr);
429                 break;
430         case FLASH_CFI_16BIT:
431                 debug ("fwc addr %p cmd %x %4.4x 16bit x %d bit\n", addr,
432                        cmd, cword.w,
433                        info->chipwidth << CFI_FLASH_SHIFT_WIDTH);
434                 flash_write16(cword.w, addr);
435                 break;
436         case FLASH_CFI_32BIT:
437                 debug ("fwc addr %p cmd %x %8.8lx 32bit x %d bit\n", addr,
438                        cmd, cword.l,
439                        info->chipwidth << CFI_FLASH_SHIFT_WIDTH);
440                 flash_write32(cword.l, addr);
441                 break;
442         case FLASH_CFI_64BIT:
443 #ifdef DEBUG
444                 {
445                         char str[20];
446
447                         print_longlong (str, cword.ll);
448
449                         debug ("fwrite addr %p cmd %x %s 64 bit x %d bit\n",
450                                addr, cmd, str,
451                                info->chipwidth << CFI_FLASH_SHIFT_WIDTH);
452                 }
453 #endif
454                 flash_write64(cword.ll, addr);
455                 break;
456         }
457
458         /* Ensure all the instructions are fully finished */
459         sync();
460
461         flash_unmap(info, sect, offset, addr);
462 }
463
464 static void flash_unlock_seq (flash_info_t * info, flash_sect_t sect)
465 {
466         flash_write_cmd (info, sect, info->addr_unlock1, AMD_CMD_UNLOCK_START);
467         flash_write_cmd (info, sect, info->addr_unlock2, AMD_CMD_UNLOCK_ACK);
468 }
469
470 /*-----------------------------------------------------------------------
471  */
472 static int flash_isequal (flash_info_t * info, flash_sect_t sect,
473                           uint offset, uchar cmd)
474 {
475         void *addr;
476         cfiword_t cword;
477         int retval;
478
479         addr = flash_map (info, sect, offset);
480         flash_make_cmd (info, cmd, &cword);
481
482         debug ("is= cmd %x(%c) addr %p ", cmd, cmd, addr);
483         switch (info->portwidth) {
484         case FLASH_CFI_8BIT:
485                 debug ("is= %x %x\n", flash_read8(addr), cword.c);
486                 retval = (flash_read8(addr) == cword.c);
487                 break;
488         case FLASH_CFI_16BIT:
489                 debug ("is= %4.4x %4.4x\n", flash_read16(addr), cword.w);
490                 retval = (flash_read16(addr) == cword.w);
491                 break;
492         case FLASH_CFI_32BIT:
493                 debug ("is= %8.8lx %8.8lx\n", flash_read32(addr), cword.l);
494                 retval = (flash_read32(addr) == cword.l);
495                 break;
496         case FLASH_CFI_64BIT:
497 #ifdef DEBUG
498                 {
499                         char str1[20];
500                         char str2[20];
501
502                         print_longlong (str1, flash_read64(addr));
503                         print_longlong (str2, cword.ll);
504                         debug ("is= %s %s\n", str1, str2);
505                 }
506 #endif
507                 retval = (flash_read64(addr) == cword.ll);
508                 break;
509         default:
510                 retval = 0;
511                 break;
512         }
513         flash_unmap(info, sect, offset, addr);
514
515         return retval;
516 }
517
518 /*-----------------------------------------------------------------------
519  */
520 static int flash_isset (flash_info_t * info, flash_sect_t sect,
521                         uint offset, uchar cmd)
522 {
523         void *addr;
524         cfiword_t cword;
525         int retval;
526
527         addr = flash_map (info, sect, offset);
528         flash_make_cmd (info, cmd, &cword);
529         switch (info->portwidth) {
530         case FLASH_CFI_8BIT:
531                 retval = ((flash_read8(addr) & cword.c) == cword.c);
532                 break;
533         case FLASH_CFI_16BIT:
534                 retval = ((flash_read16(addr) & cword.w) == cword.w);
535                 break;
536         case FLASH_CFI_32BIT:
537                 retval = ((flash_read16(addr) & cword.l) == cword.l);
538                 break;
539         case FLASH_CFI_64BIT:
540                 retval = ((flash_read64(addr) & cword.ll) == cword.ll);
541                 break;
542         default:
543                 retval = 0;
544                 break;
545         }
546         flash_unmap(info, sect, offset, addr);
547
548         return retval;
549 }
550
551 /*-----------------------------------------------------------------------
552  */
553 static int flash_toggle (flash_info_t * info, flash_sect_t sect,
554                          uint offset, uchar cmd)
555 {
556         void *addr;
557         cfiword_t cword;
558         int retval;
559
560         addr = flash_map (info, sect, offset);
561         flash_make_cmd (info, cmd, &cword);
562         switch (info->portwidth) {
563         case FLASH_CFI_8BIT:
564                 retval = ((flash_read8(addr) & cword.c) !=
565                           (flash_read8(addr) & cword.c));
566                 break;
567         case FLASH_CFI_16BIT:
568                 retval = ((flash_read16(addr) & cword.w) !=
569                           (flash_read16(addr) & cword.w));
570                 break;
571         case FLASH_CFI_32BIT:
572                 retval = ((flash_read32(addr) & cword.l) !=
573                           (flash_read32(addr) & cword.l));
574                 break;
575         case FLASH_CFI_64BIT:
576                 retval = ((flash_read64(addr) & cword.ll) !=
577                           (flash_read64(addr) & cword.ll));
578                 break;
579         default:
580                 retval = 0;
581                 break;
582         }
583         flash_unmap(info, sect, offset, addr);
584
585         return retval;
586 }
587
588 /*
589  * flash_is_busy - check to see if the flash is busy
590  *
591  * This routine checks the status of the chip and returns true if the
592  * chip is busy.
593  */
594 static int flash_is_busy (flash_info_t * info, flash_sect_t sect)
595 {
596         int retval;
597
598         switch (info->vendor) {
599         case CFI_CMDSET_INTEL_STANDARD:
600         case CFI_CMDSET_INTEL_EXTENDED:
601                 retval = !flash_isset (info, sect, 0, FLASH_STATUS_DONE);
602                 break;
603         case CFI_CMDSET_AMD_STANDARD:
604         case CFI_CMDSET_AMD_EXTENDED:
605 #ifdef CONFIG_FLASH_CFI_LEGACY
606         case CFI_CMDSET_AMD_LEGACY:
607 #endif
608                 retval = flash_toggle (info, sect, 0, AMD_STATUS_TOGGLE);
609                 break;
610         default:
611                 retval = 0;
612         }
613         debug ("flash_is_busy: %d\n", retval);
614         return retval;
615 }
616
617 /*-----------------------------------------------------------------------
618  *  wait for XSR.7 to be set. Time out with an error if it does not.
619  *  This routine does not set the flash to read-array mode.
620  */
621 static int flash_status_check (flash_info_t * info, flash_sect_t sector,
622                                ulong tout, char *prompt)
623 {
624         ulong start;
625
626 #if CFG_HZ != 1000
627         tout *= CFG_HZ/1000;
628 #endif
629
630         /* Wait for command completion */
631         start = get_timer (0);
632         while (flash_is_busy (info, sector)) {
633                 if (get_timer (start) > tout) {
634                         printf ("Flash %s timeout at address %lx data %lx\n",
635                                 prompt, info->start[sector],
636                                 flash_read_long (info, sector, 0));
637                         flash_write_cmd (info, sector, 0, info->cmd_reset);
638                         return ERR_TIMOUT;
639                 }
640                 udelay (1);             /* also triggers watchdog */
641         }
642         return ERR_OK;
643 }
644
645 /*-----------------------------------------------------------------------
646  * Wait for XSR.7 to be set, if it times out print an error, otherwise
647  * do a full status check.
648  *
649  * This routine sets the flash to read-array mode.
650  */
651 static int flash_full_status_check (flash_info_t * info, flash_sect_t sector,
652                                     ulong tout, char *prompt)
653 {
654         int retcode;
655
656         retcode = flash_status_check (info, sector, tout, prompt);
657         switch (info->vendor) {
658         case CFI_CMDSET_INTEL_EXTENDED:
659         case CFI_CMDSET_INTEL_STANDARD:
660                 if ((retcode == ERR_OK)
661                     && !flash_isequal (info, sector, 0, FLASH_STATUS_DONE)) {
662                         retcode = ERR_INVAL;
663                         printf ("Flash %s error at address %lx\n", prompt,
664                                 info->start[sector]);
665                         if (flash_isset (info, sector, 0, FLASH_STATUS_ECLBS |
666                                          FLASH_STATUS_PSLBS)) {
667                                 puts ("Command Sequence Error.\n");
668                         } else if (flash_isset (info, sector, 0,
669                                                 FLASH_STATUS_ECLBS)) {
670                                 puts ("Block Erase Error.\n");
671                                 retcode = ERR_NOT_ERASED;
672                         } else if (flash_isset (info, sector, 0,
673                                                 FLASH_STATUS_PSLBS)) {
674                                 puts ("Locking Error\n");
675                         }
676                         if (flash_isset (info, sector, 0, FLASH_STATUS_DPS)) {
677                                 puts ("Block locked.\n");
678                                 retcode = ERR_PROTECTED;
679                         }
680                         if (flash_isset (info, sector, 0, FLASH_STATUS_VPENS))
681                                 puts ("Vpp Low Error.\n");
682                 }
683                 flash_write_cmd (info, sector, 0, info->cmd_reset);
684                 break;
685         default:
686                 break;
687         }
688         return retcode;
689 }
690
691 /*-----------------------------------------------------------------------
692  */
693 static void flash_add_byte (flash_info_t * info, cfiword_t * cword, uchar c)
694 {
695 #if defined(__LITTLE_ENDIAN) && !defined(CFG_WRITE_SWAPPED_DATA)
696         unsigned short  w;
697         unsigned int    l;
698         unsigned long long ll;
699 #endif
700
701         switch (info->portwidth) {
702         case FLASH_CFI_8BIT:
703                 cword->c = c;
704                 break;
705         case FLASH_CFI_16BIT:
706 #if defined(__LITTLE_ENDIAN) && !defined(CFG_WRITE_SWAPPED_DATA)
707                 w = c;
708                 w <<= 8;
709                 cword->w = (cword->w >> 8) | w;
710 #else
711                 cword->w = (cword->w << 8) | c;
712 #endif
713                 break;
714         case FLASH_CFI_32BIT:
715 #if defined(__LITTLE_ENDIAN) && !defined(CFG_WRITE_SWAPPED_DATA)
716                 l = c;
717                 l <<= 24;
718                 cword->l = (cword->l >> 8) | l;
719 #else
720                 cword->l = (cword->l << 8) | c;
721 #endif
722                 break;
723         case FLASH_CFI_64BIT:
724 #if defined(__LITTLE_ENDIAN) && !defined(CFG_WRITE_SWAPPED_DATA)
725                 ll = c;
726                 ll <<= 56;
727                 cword->ll = (cword->ll >> 8) | ll;
728 #else
729                 cword->ll = (cword->ll << 8) | c;
730 #endif
731                 break;
732         }
733 }
734
735 /* loop through the sectors from the highest address when the passed
736  * address is greater or equal to the sector address we have a match
737  */
738 static flash_sect_t find_sector (flash_info_t * info, ulong addr)
739 {
740         flash_sect_t sector;
741
742         for (sector = info->sector_count - 1; sector >= 0; sector--) {
743                 if (addr >= info->start[sector])
744                         break;
745         }
746         return sector;
747 }
748
749 /*-----------------------------------------------------------------------
750  */
751 static int flash_write_cfiword (flash_info_t * info, ulong dest,
752                                 cfiword_t cword)
753 {
754         void *dstaddr;
755         int flag;
756
757         dstaddr = map_physmem(dest, info->portwidth, MAP_NOCACHE);
758
759         /* Check if Flash is (sufficiently) erased */
760         switch (info->portwidth) {
761         case FLASH_CFI_8BIT:
762                 flag = ((flash_read8(dstaddr) & cword.c) == cword.c);
763                 break;
764         case FLASH_CFI_16BIT:
765                 flag = ((flash_read16(dstaddr) & cword.w) == cword.w);
766                 break;
767         case FLASH_CFI_32BIT:
768                 flag = ((flash_read32(dstaddr) & cword.l) == cword.l);
769                 break;
770         case FLASH_CFI_64BIT:
771                 flag = ((flash_read64(dstaddr) & cword.ll) == cword.ll);
772                 break;
773         default:
774                 flag = 0;
775                 break;
776         }
777         if (!flag) {
778                 unmap_physmem(dstaddr, info->portwidth);
779                 return 2;
780         }
781
782         /* Disable interrupts which might cause a timeout here */
783         flag = disable_interrupts ();
784
785         switch (info->vendor) {
786         case CFI_CMDSET_INTEL_EXTENDED:
787         case CFI_CMDSET_INTEL_STANDARD:
788                 flash_write_cmd (info, 0, 0, FLASH_CMD_CLEAR_STATUS);
789                 flash_write_cmd (info, 0, 0, FLASH_CMD_WRITE);
790                 break;
791         case CFI_CMDSET_AMD_EXTENDED:
792         case CFI_CMDSET_AMD_STANDARD:
793 #ifdef CONFIG_FLASH_CFI_LEGACY
794         case CFI_CMDSET_AMD_LEGACY:
795 #endif
796                 flash_unlock_seq (info, 0);
797                 flash_write_cmd (info, 0, info->addr_unlock1, AMD_CMD_WRITE);
798                 break;
799         }
800
801         switch (info->portwidth) {
802         case FLASH_CFI_8BIT:
803                 flash_write8(cword.c, dstaddr);
804                 break;
805         case FLASH_CFI_16BIT:
806                 flash_write16(cword.w, dstaddr);
807                 break;
808         case FLASH_CFI_32BIT:
809                 flash_write32(cword.l, dstaddr);
810                 break;
811         case FLASH_CFI_64BIT:
812                 flash_write64(cword.ll, dstaddr);
813                 break;
814         }
815
816         /* re-enable interrupts if necessary */
817         if (flag)
818                 enable_interrupts ();
819
820         unmap_physmem(dstaddr, info->portwidth);
821
822         return flash_full_status_check (info, find_sector (info, dest),
823                                         info->write_tout, "write");
824 }
825
826 #ifdef CFG_FLASH_USE_BUFFER_WRITE
827
828 static int flash_write_cfibuffer (flash_info_t * info, ulong dest, uchar * cp,
829                                   int len)
830 {
831         flash_sect_t sector;
832         int cnt;
833         int retcode;
834         void *src = cp;
835         void *dst = map_physmem(dest, len, MAP_NOCACHE);
836
837         sector = find_sector (info, dest);
838
839         switch (info->vendor) {
840         case CFI_CMDSET_INTEL_STANDARD:
841         case CFI_CMDSET_INTEL_EXTENDED:
842                 flash_write_cmd (info, sector, 0, FLASH_CMD_CLEAR_STATUS);
843                 flash_write_cmd (info, sector, 0, FLASH_CMD_WRITE_TO_BUFFER);
844                 retcode = flash_status_check (info, sector,
845                                               info->buffer_write_tout,
846                                               "write to buffer");
847                 if (retcode == ERR_OK) {
848                         /* reduce the number of loops by the width of
849                          * the port */
850                         switch (info->portwidth) {
851                         case FLASH_CFI_8BIT:
852                                 cnt = len;
853                                 break;
854                         case FLASH_CFI_16BIT:
855                                 cnt = len >> 1;
856                                 break;
857                         case FLASH_CFI_32BIT:
858                                 cnt = len >> 2;
859                                 break;
860                         case FLASH_CFI_64BIT:
861                                 cnt = len >> 3;
862                                 break;
863                         default:
864                                 retcode = ERR_INVAL;
865                                 goto out_unmap;
866                         }
867                         flash_write_cmd (info, sector, 0, (uchar) cnt - 1);
868                         while (cnt-- > 0) {
869                                 switch (info->portwidth) {
870                                 case FLASH_CFI_8BIT:
871                                         flash_write8(flash_read8(src), dst);
872                                         src += 1, dst += 1;
873                                         break;
874                                 case FLASH_CFI_16BIT:
875                                         flash_write16(flash_read16(src), dst);
876                                         src += 2, dst += 2;
877                                         break;
878                                 case FLASH_CFI_32BIT:
879                                         flash_write32(flash_read32(src), dst);
880                                         src += 4, dst += 4;
881                                         break;
882                                 case FLASH_CFI_64BIT:
883                                         flash_write64(flash_read64(src), dst);
884                                         src += 8, dst += 8;
885                                         break;
886                                 default:
887                                         retcode = ERR_INVAL;
888                                         goto out_unmap;
889                                 }
890                         }
891                         flash_write_cmd (info, sector, 0,
892                                          FLASH_CMD_WRITE_BUFFER_CONFIRM);
893                         retcode = flash_full_status_check (
894                                 info, sector, info->buffer_write_tout,
895                                 "buffer write");
896                 }
897
898                 break;
899
900         case CFI_CMDSET_AMD_STANDARD:
901         case CFI_CMDSET_AMD_EXTENDED:
902                 flash_unlock_seq(info,0);
903                 flash_write_cmd (info, sector, 0, AMD_CMD_WRITE_TO_BUFFER);
904
905                 switch (info->portwidth) {
906                 case FLASH_CFI_8BIT:
907                         cnt = len;
908                         flash_write_cmd (info, sector, 0,  (uchar) cnt - 1);
909                         while (cnt-- > 0) {
910                                 flash_write8(flash_read8(src), dst);
911                                 src += 1, dst += 1;
912                         }
913                         break;
914                 case FLASH_CFI_16BIT:
915                         cnt = len >> 1;
916                         flash_write_cmd (info, sector, 0,  (uchar) cnt - 1);
917                         while (cnt-- > 0) {
918                                 flash_write16(flash_read16(src), dst);
919                                 src += 2, dst += 2;
920                         }
921                         break;
922                 case FLASH_CFI_32BIT:
923                         cnt = len >> 2;
924                         flash_write_cmd (info, sector, 0,  (uchar) cnt - 1);
925                         while (cnt-- > 0) {
926                                 flash_write32(flash_read32(src), dst);
927                                 src += 4, dst += 4;
928                         }
929                         break;
930                 case FLASH_CFI_64BIT:
931                         cnt = len >> 3;
932                         flash_write_cmd (info, sector, 0,  (uchar) cnt - 1);
933                         while (cnt-- > 0) {
934                                 flash_write64(flash_read64(src), dst);
935                                 src += 8, dst += 8;
936                         }
937                         break;
938                 default:
939                         retcode = ERR_INVAL;
940                         goto out_unmap;
941                 }
942
943                 flash_write_cmd (info, sector, 0, AMD_CMD_WRITE_BUFFER_CONFIRM);
944                 retcode = flash_full_status_check (info, sector,
945                                                    info->buffer_write_tout,
946                                                    "buffer write");
947                 break;
948
949         default:
950                 debug ("Unknown Command Set\n");
951                 retcode = ERR_INVAL;
952                 break;
953         }
954
955 out_unmap:
956         unmap_physmem(dst, len);
957         return retcode;
958 }
959 #endif /* CFG_FLASH_USE_BUFFER_WRITE */
960
961
962 /*-----------------------------------------------------------------------
963  */
964 int flash_erase (flash_info_t * info, int s_first, int s_last)
965 {
966         int rcode = 0;
967         int prot;
968         flash_sect_t sect;
969
970         if (info->flash_id != FLASH_MAN_CFI) {
971                 puts ("Can't erase unknown flash type - aborted\n");
972                 return 1;
973         }
974         if ((s_first < 0) || (s_first > s_last)) {
975                 puts ("- no sectors to erase\n");
976                 return 1;
977         }
978
979         prot = 0;
980         for (sect = s_first; sect <= s_last; ++sect) {
981                 if (info->protect[sect]) {
982                         prot++;
983                 }
984         }
985         if (prot) {
986                 printf ("- Warning: %d protected sectors will not be erased!\n",
987                         prot);
988         } else {
989                 putc ('\n');
990         }
991
992
993         for (sect = s_first; sect <= s_last; sect++) {
994                 if (info->protect[sect] == 0) { /* not protected */
995                         switch (info->vendor) {
996                         case CFI_CMDSET_INTEL_STANDARD:
997                         case CFI_CMDSET_INTEL_EXTENDED:
998                                 flash_write_cmd (info, sect, 0,
999                                                  FLASH_CMD_CLEAR_STATUS);
1000                                 flash_write_cmd (info, sect, 0,
1001                                                  FLASH_CMD_BLOCK_ERASE);
1002                                 flash_write_cmd (info, sect, 0,
1003                                                  FLASH_CMD_ERASE_CONFIRM);
1004                                 break;
1005                         case CFI_CMDSET_AMD_STANDARD:
1006                         case CFI_CMDSET_AMD_EXTENDED:
1007                                 flash_unlock_seq (info, sect);
1008                                 flash_write_cmd (info, sect,
1009                                                 info->addr_unlock1,
1010                                                 AMD_CMD_ERASE_START);
1011                                 flash_unlock_seq (info, sect);
1012                                 flash_write_cmd (info, sect, 0,
1013                                                  AMD_CMD_ERASE_SECTOR);
1014                                 break;
1015 #ifdef CONFIG_FLASH_CFI_LEGACY
1016                         case CFI_CMDSET_AMD_LEGACY:
1017                                 flash_unlock_seq (info, 0);
1018                                 flash_write_cmd (info, 0, info->addr_unlock1,
1019                                                 AMD_CMD_ERASE_START);
1020                                 flash_unlock_seq (info, 0);
1021                                 flash_write_cmd (info, sect, 0,
1022                                                 AMD_CMD_ERASE_SECTOR);
1023                                 break;
1024 #endif
1025                         default:
1026                                 debug ("Unkown flash vendor %d\n",
1027                                        info->vendor);
1028                                 break;
1029                         }
1030
1031                         if (flash_full_status_check
1032                             (info, sect, info->erase_blk_tout, "erase")) {
1033                                 rcode = 1;
1034                         } else
1035                                 putc ('.');
1036                 }
1037         }
1038         puts (" done\n");
1039         return rcode;
1040 }
1041
1042 /*-----------------------------------------------------------------------
1043  */
1044 void flash_print_info (flash_info_t * info)
1045 {
1046         int i;
1047
1048         if (info->flash_id != FLASH_MAN_CFI) {
1049                 puts ("missing or unknown FLASH type\n");
1050                 return;
1051         }
1052
1053         printf ("%s FLASH (%d x %d)",
1054                 info->name,
1055                 (info->portwidth << 3), (info->chipwidth << 3));
1056         if (info->size < 1024*1024)
1057                 printf ("  Size: %ld kB in %d Sectors\n",
1058                         info->size >> 10, info->sector_count);
1059         else
1060                 printf ("  Size: %ld MB in %d Sectors\n",
1061                         info->size >> 20, info->sector_count);
1062         printf ("  ");
1063         switch (info->vendor) {
1064                 case CFI_CMDSET_INTEL_STANDARD:
1065                         printf ("Intel Standard");
1066                         break;
1067                 case CFI_CMDSET_INTEL_EXTENDED:
1068                         printf ("Intel Extended");
1069                         break;
1070                 case CFI_CMDSET_AMD_STANDARD:
1071                         printf ("AMD Standard");
1072                         break;
1073                 case CFI_CMDSET_AMD_EXTENDED:
1074                         printf ("AMD Extended");
1075                         break;
1076 #ifdef CONFIG_FLASH_CFI_LEGACY
1077                 case CFI_CMDSET_AMD_LEGACY:
1078                         printf ("AMD Legacy");
1079                         break;
1080 #endif
1081                 default:
1082                         printf ("Unknown (%d)", info->vendor);
1083                         break;
1084         }
1085         printf (" command set, Manufacturer ID: 0x%02X, Device ID: 0x%02X",
1086                 info->manufacturer_id, info->device_id);
1087         if (info->device_id == 0x7E) {
1088                 printf("%04X", info->device_id2);
1089         }
1090         printf ("\n  Erase timeout: %ld ms, write timeout: %ld ms\n",
1091                 info->erase_blk_tout,
1092                 info->write_tout);
1093         if (info->buffer_size > 1) {
1094                 printf ("  Buffer write timeout: %ld ms, "
1095                         "buffer size: %d bytes\n",
1096                 info->buffer_write_tout,
1097                 info->buffer_size);
1098         }
1099
1100         puts ("\n  Sector Start Addresses:");
1101         for (i = 0; i < info->sector_count; ++i) {
1102                 if ((i % 5) == 0)
1103                         printf ("\n");
1104 #ifdef CFG_FLASH_EMPTY_INFO
1105                 int k;
1106                 int size;
1107                 int erased;
1108                 volatile unsigned long *flash;
1109
1110                 /*
1111                  * Check if whole sector is erased
1112                  */
1113                 size = flash_sector_size(info, i);
1114                 erased = 1;
1115                 flash = (volatile unsigned long *) info->start[i];
1116                 size = size >> 2;       /* divide by 4 for longword access */
1117                 for (k = 0; k < size; k++) {
1118                         if (*flash++ != 0xffffffff) {
1119                                 erased = 0;
1120                                 break;
1121                         }
1122                 }
1123
1124                 /* print empty and read-only info */
1125                 printf ("  %08lX %c %s ",
1126                         info->start[i],
1127                         erased ? 'E' : ' ',
1128                         info->protect[i] ? "RO" : "  ");
1129 #else   /* ! CFG_FLASH_EMPTY_INFO */
1130                 printf ("  %08lX   %s ",
1131                         info->start[i],
1132                         info->protect[i] ? "RO" : "  ");
1133 #endif
1134         }
1135         putc ('\n');
1136         return;
1137 }
1138
1139 /*-----------------------------------------------------------------------
1140  * Copy memory to flash, returns:
1141  * 0 - OK
1142  * 1 - write timeout
1143  * 2 - Flash not erased
1144  */
1145 int write_buff (flash_info_t * info, uchar * src, ulong addr, ulong cnt)
1146 {
1147         ulong wp;
1148         uchar *p;
1149         int aln;
1150         cfiword_t cword;
1151         int i, rc;
1152
1153 #ifdef CFG_FLASH_USE_BUFFER_WRITE
1154         int buffered_size;
1155 #endif
1156         /* get lower aligned address */
1157         wp = (addr & ~(info->portwidth - 1));
1158
1159         /* handle unaligned start */
1160         if ((aln = addr - wp) != 0) {
1161                 cword.l = 0;
1162                 p = map_physmem(wp, info->portwidth, MAP_NOCACHE);
1163                 for (i = 0; i < aln; ++i)
1164                         flash_add_byte (info, &cword, flash_read8(p + i));
1165
1166                 for (; (i < info->portwidth) && (cnt > 0); i++) {
1167                         flash_add_byte (info, &cword, *src++);
1168                         cnt--;
1169                 }
1170                 for (; (cnt == 0) && (i < info->portwidth); ++i)
1171                         flash_add_byte (info, &cword, flash_read8(p + i));
1172
1173                 rc = flash_write_cfiword (info, wp, cword);
1174                 unmap_physmem(p, info->portwidth);
1175                 if (rc != 0)
1176                         return rc;
1177
1178                 wp += i;
1179         }
1180
1181         /* handle the aligned part */
1182 #ifdef CFG_FLASH_USE_BUFFER_WRITE
1183         buffered_size = (info->portwidth / info->chipwidth);
1184         buffered_size *= info->buffer_size;
1185         while (cnt >= info->portwidth) {
1186                 /* prohibit buffer write when buffer_size is 1 */
1187                 if (info->buffer_size == 1) {
1188                         cword.l = 0;
1189                         for (i = 0; i < info->portwidth; i++)
1190                                 flash_add_byte (info, &cword, *src++);
1191                         if ((rc = flash_write_cfiword (info, wp, cword)) != 0)
1192                                 return rc;
1193                         wp += info->portwidth;
1194                         cnt -= info->portwidth;
1195                         continue;
1196                 }
1197
1198                 /* write buffer until next buffered_size aligned boundary */
1199                 i = buffered_size - (wp % buffered_size);
1200                 if (i > cnt)
1201                         i = cnt;
1202                 if ((rc = flash_write_cfibuffer (info, wp, src, i)) != ERR_OK)
1203                         return rc;
1204                 i -= i & (info->portwidth - 1);
1205                 wp += i;
1206                 src += i;
1207                 cnt -= i;
1208         }
1209 #else
1210         while (cnt >= info->portwidth) {
1211                 cword.l = 0;
1212                 for (i = 0; i < info->portwidth; i++) {
1213                         flash_add_byte (info, &cword, *src++);
1214                 }
1215                 if ((rc = flash_write_cfiword (info, wp, cword)) != 0)
1216                         return rc;
1217                 wp += info->portwidth;
1218                 cnt -= info->portwidth;
1219         }
1220 #endif /* CFG_FLASH_USE_BUFFER_WRITE */
1221         if (cnt == 0) {
1222                 return (0);
1223         }
1224
1225         /*
1226          * handle unaligned tail bytes
1227          */
1228         cword.l = 0;
1229         p = map_physmem(wp, info->portwidth, MAP_NOCACHE);
1230         for (i = 0; (i < info->portwidth) && (cnt > 0); ++i) {
1231                 flash_add_byte (info, &cword, *src++);
1232                 --cnt;
1233         }
1234         for (; i < info->portwidth; ++i)
1235                 flash_add_byte (info, &cword, flash_read8(p + i));
1236         unmap_physmem(p, info->portwidth);
1237
1238         return flash_write_cfiword (info, wp, cword);
1239 }
1240
1241 /*-----------------------------------------------------------------------
1242  */
1243 #ifdef CFG_FLASH_PROTECTION
1244
1245 int flash_real_protect (flash_info_t * info, long sector, int prot)
1246 {
1247         int retcode = 0;
1248
1249         flash_write_cmd (info, sector, 0, FLASH_CMD_CLEAR_STATUS);
1250         flash_write_cmd (info, sector, 0, FLASH_CMD_PROTECT);
1251         if (prot)
1252                 flash_write_cmd (info, sector, 0, FLASH_CMD_PROTECT_SET);
1253         else
1254                 flash_write_cmd (info, sector, 0, FLASH_CMD_PROTECT_CLEAR);
1255
1256         if ((retcode =
1257              flash_full_status_check (info, sector, info->erase_blk_tout,
1258                                       prot ? "protect" : "unprotect")) == 0) {
1259
1260                 info->protect[sector] = prot;
1261
1262                 /*
1263                  * On some of Intel's flash chips (marked via legacy_unlock)
1264                  * unprotect unprotects all locking.
1265                  */
1266                 if ((prot == 0) && (info->legacy_unlock)) {
1267                         flash_sect_t i;
1268
1269                         for (i = 0; i < info->sector_count; i++) {
1270                                 if (info->protect[i])
1271                                         flash_real_protect (info, i, 1);
1272                         }
1273                 }
1274         }
1275         return retcode;
1276 }
1277
1278 /*-----------------------------------------------------------------------
1279  * flash_read_user_serial - read the OneTimeProgramming cells
1280  */
1281 void flash_read_user_serial (flash_info_t * info, void *buffer, int offset,
1282                              int len)
1283 {
1284         uchar *src;
1285         uchar *dst;
1286
1287         dst = buffer;
1288         src = flash_map (info, 0, FLASH_OFFSET_USER_PROTECTION);
1289         flash_write_cmd (info, 0, 0, FLASH_CMD_READ_ID);
1290         memcpy (dst, src + offset, len);
1291         flash_write_cmd (info, 0, 0, info->cmd_reset);
1292         flash_unmap(info, 0, FLASH_OFFSET_USER_PROTECTION, src);
1293 }
1294
1295 /*
1296  * flash_read_factory_serial - read the device Id from the protection area
1297  */
1298 void flash_read_factory_serial (flash_info_t * info, void *buffer, int offset,
1299                                 int len)
1300 {
1301         uchar *src;
1302
1303         src = flash_map (info, 0, FLASH_OFFSET_INTEL_PROTECTION);
1304         flash_write_cmd (info, 0, 0, FLASH_CMD_READ_ID);
1305         memcpy (buffer, src + offset, len);
1306         flash_write_cmd (info, 0, 0, info->cmd_reset);
1307         flash_unmap(info, 0, FLASH_OFFSET_INTEL_PROTECTION, src);
1308 }
1309
1310 #endif /* CFG_FLASH_PROTECTION */
1311
1312
1313 /*-----------------------------------------------------------------------
1314  * read jedec ids from device and set corresponding fields in info struct
1315  *
1316  * Note: assume cfi->vendor, cfi->portwidth and cfi->chipwidth are correct
1317  *
1318 */
1319 static void flash_read_jedec_ids (flash_info_t * info)
1320 {
1321         info->manufacturer_id = 0;
1322         info->device_id       = 0;
1323         info->device_id2      = 0;
1324
1325         switch (info->vendor) {
1326         case CFI_CMDSET_INTEL_STANDARD:
1327         case CFI_CMDSET_INTEL_EXTENDED:
1328                 flash_write_cmd(info, 0, 0, FLASH_CMD_RESET);
1329                 flash_write_cmd(info, 0, 0, FLASH_CMD_READ_ID);
1330                 udelay(1000); /* some flash are slow to respond */
1331                 info->manufacturer_id = flash_read_uchar (info,
1332                                                 FLASH_OFFSET_MANUFACTURER_ID);
1333                 info->device_id = flash_read_uchar (info,
1334                                                 FLASH_OFFSET_DEVICE_ID);
1335                 flash_write_cmd(info, 0, 0, FLASH_CMD_RESET);
1336                 break;
1337         case CFI_CMDSET_AMD_STANDARD:
1338         case CFI_CMDSET_AMD_EXTENDED:
1339                 flash_write_cmd(info, 0, 0, AMD_CMD_RESET);
1340                 flash_unlock_seq(info, 0);
1341                 flash_write_cmd(info, 0, info->addr_unlock1, FLASH_CMD_READ_ID);
1342                 udelay(1000); /* some flash are slow to respond */
1343                 info->manufacturer_id = flash_read_uchar (info,
1344                                                 FLASH_OFFSET_MANUFACTURER_ID);
1345                 info->device_id = flash_read_uchar (info,
1346                                                 FLASH_OFFSET_DEVICE_ID);
1347                 if (info->device_id == 0x7E) {
1348                         /* AMD 3-byte (expanded) device ids */
1349                         info->device_id2 = flash_read_uchar (info,
1350                                                 FLASH_OFFSET_DEVICE_ID2);
1351                         info->device_id2 <<= 8;
1352                         info->device_id2 |= flash_read_uchar (info,
1353                                                 FLASH_OFFSET_DEVICE_ID3);
1354                 }
1355                 flash_write_cmd(info, 0, 0, AMD_CMD_RESET);
1356                 break;
1357         default:
1358                 break;
1359         }
1360 }
1361
1362 #ifdef CONFIG_FLASH_CFI_LEGACY
1363 /*-----------------------------------------------------------------------
1364  * Call board code to request info about non-CFI flash.
1365  * board_flash_get_legacy needs to fill in at least:
1366  * info->portwidth, info->chipwidth and info->interface for Jedec probing.
1367  */
1368 static int flash_detect_legacy(ulong base, int banknum)
1369 {
1370         flash_info_t *info = &flash_info[banknum];
1371
1372         if (board_flash_get_legacy(base, banknum, info)) {
1373                 /* board code may have filled info completely. If not, we
1374                    use JEDEC ID probing. */
1375                 if (!info->vendor) {
1376                         int modes[] = {
1377                                 CFI_CMDSET_AMD_STANDARD,
1378                                 CFI_CMDSET_INTEL_STANDARD
1379                         };
1380                         int i;
1381
1382                         for (i = 0; i < sizeof(modes) / sizeof(modes[0]); i++) {
1383                                 info->vendor = modes[i];
1384                                 info->start[0] = base;
1385                                 if (info->portwidth == FLASH_CFI_8BIT
1386                                         && info->interface == FLASH_CFI_X8X16) {
1387                                         info->addr_unlock1 = 0x2AAA;
1388                                         info->addr_unlock2 = 0x5555;
1389                                 } else {
1390                                         info->addr_unlock1 = 0x5555;
1391                                         info->addr_unlock2 = 0x2AAA;
1392                                 }
1393                                 flash_read_jedec_ids(info);
1394                                 debug("JEDEC PROBE: ID %x %x %x\n",
1395                                                 info->manufacturer_id,
1396                                                 info->device_id,
1397                                                 info->device_id2);
1398                                 if (jedec_flash_match(info, base))
1399                                         break;
1400                         }
1401                 }
1402
1403                 switch(info->vendor) {
1404                 case CFI_CMDSET_INTEL_STANDARD:
1405                 case CFI_CMDSET_INTEL_EXTENDED:
1406                         info->cmd_reset = FLASH_CMD_RESET;
1407                         break;
1408                 case CFI_CMDSET_AMD_STANDARD:
1409                 case CFI_CMDSET_AMD_EXTENDED:
1410                 case CFI_CMDSET_AMD_LEGACY:
1411                         info->cmd_reset = AMD_CMD_RESET;
1412                         break;
1413                 }
1414                 info->flash_id = FLASH_MAN_CFI;
1415                 return 1;
1416         }
1417         return 0; /* use CFI */
1418 }
1419 #else
1420 static inline int flash_detect_legacy(ulong base, int banknum)
1421 {
1422         return 0; /* use CFI */
1423 }
1424 #endif
1425
1426 /*-----------------------------------------------------------------------
1427  * detect if flash is compatible with the Common Flash Interface (CFI)
1428  * http://www.jedec.org/download/search/jesd68.pdf
1429  */
1430 static int __flash_detect_cfi (flash_info_t * info)
1431 {
1432         int cfi_offset;
1433
1434         flash_write_cmd (info, 0, 0, info->cmd_reset);
1435         for (cfi_offset=0;
1436              cfi_offset < sizeof(flash_offset_cfi) / sizeof(uint);
1437              cfi_offset++) {
1438                 flash_write_cmd (info, 0, flash_offset_cfi[cfi_offset],
1439                                  FLASH_CMD_CFI);
1440                 if (flash_isequal (info, 0, FLASH_OFFSET_CFI_RESP, 'Q')
1441                     && flash_isequal (info, 0, FLASH_OFFSET_CFI_RESP + 1, 'R')
1442                     && flash_isequal (info, 0, FLASH_OFFSET_CFI_RESP + 2, 'Y')) {
1443                         info->interface = flash_read_ushort (info, 0,
1444                                                 FLASH_OFFSET_INTERFACE);
1445                         info->cfi_offset = flash_offset_cfi[cfi_offset];
1446                         debug ("device interface is %d\n",
1447                                info->interface);
1448                         debug ("found port %d chip %d ",
1449                                info->portwidth, info->chipwidth);
1450                         debug ("port %d bits chip %d bits\n",
1451                                info->portwidth << CFI_FLASH_SHIFT_WIDTH,
1452                                info->chipwidth << CFI_FLASH_SHIFT_WIDTH);
1453
1454                         /* calculate command offsets as in the Linux driver */
1455                         info->addr_unlock1 = 0x555;
1456                         info->addr_unlock2 = 0x2aa;
1457
1458                         /*
1459                          * modify the unlock address if we are
1460                          * in compatibility mode
1461                          */
1462                         if (    /* x8/x16 in x8 mode */
1463                                 ((info->chipwidth == FLASH_CFI_BY8) &&
1464                                         (info->interface == FLASH_CFI_X8X16)) ||
1465                                 /* x16/x32 in x16 mode */
1466                                 ((info->chipwidth == FLASH_CFI_BY16) &&
1467                                         (info->interface == FLASH_CFI_X16X32)))
1468                         {
1469                                 info->addr_unlock1 = 0xaaa;
1470                                 info->addr_unlock2 = 0x555;
1471                         }
1472
1473                         info->name = "CFI conformant";
1474                         return 1;
1475                 }
1476         }
1477
1478         return 0;
1479 }
1480
1481 static int flash_detect_cfi (flash_info_t * info)
1482 {
1483         debug ("flash detect cfi\n");
1484
1485         for (info->portwidth = CFG_FLASH_CFI_WIDTH;
1486              info->portwidth <= FLASH_CFI_64BIT; info->portwidth <<= 1) {
1487                 for (info->chipwidth = FLASH_CFI_BY8;
1488                      info->chipwidth <= info->portwidth;
1489                      info->chipwidth <<= 1)
1490                         if (__flash_detect_cfi(info))
1491                                 return 1;
1492         }
1493         debug ("not found\n");
1494         return 0;
1495 }
1496
1497 /*
1498  * The following code cannot be run from FLASH!
1499  *
1500  */
1501 ulong flash_get_size (ulong base, int banknum)
1502 {
1503         flash_info_t *info = &flash_info[banknum];
1504         int i, j;
1505         flash_sect_t sect_cnt;
1506         unsigned long sector;
1507         unsigned long tmp;
1508         int size_ratio;
1509         uchar num_erase_regions;
1510         int erase_region_size;
1511         int erase_region_count;
1512         int geometry_reversed = 0;
1513
1514         info->ext_addr = 0;
1515         info->cfi_version = 0;
1516 #ifdef CFG_FLASH_PROTECTION
1517         info->legacy_unlock = 0;
1518 #endif
1519
1520         info->start[0] = base;
1521
1522         if (flash_detect_cfi (info)) {
1523                 info->vendor = flash_read_ushort (info, 0,
1524                                         FLASH_OFFSET_PRIMARY_VENDOR);
1525                 flash_read_jedec_ids (info);
1526                 flash_write_cmd (info, 0, info->cfi_offset, FLASH_CMD_CFI);
1527                 num_erase_regions = flash_read_uchar (info,
1528                                         FLASH_OFFSET_NUM_ERASE_REGIONS);
1529                 info->ext_addr = flash_read_ushort (info, 0,
1530                                         FLASH_OFFSET_EXT_QUERY_T_P_ADDR);
1531                 if (info->ext_addr) {
1532                         info->cfi_version = (ushort) flash_read_uchar (info,
1533                                                 info->ext_addr + 3) << 8;
1534                         info->cfi_version |= (ushort) flash_read_uchar (info,
1535                                                 info->ext_addr + 4);
1536                 }
1537 #ifdef DEBUG
1538                 flash_printqry (info, 0);
1539 #endif
1540                 switch (info->vendor) {
1541                 case CFI_CMDSET_INTEL_STANDARD:
1542                 case CFI_CMDSET_INTEL_EXTENDED:
1543                 default:
1544                         info->cmd_reset = FLASH_CMD_RESET;
1545 #ifdef CFG_FLASH_PROTECTION
1546                         /* read legacy lock/unlock bit from intel flash */
1547                         if (info->ext_addr) {
1548                                 info->legacy_unlock = flash_read_uchar (info,
1549                                                 info->ext_addr + 5) & 0x08;
1550                         }
1551 #endif
1552                         break;
1553                 case CFI_CMDSET_AMD_STANDARD:
1554                 case CFI_CMDSET_AMD_EXTENDED:
1555                         info->cmd_reset = AMD_CMD_RESET;
1556                         /* check if flash geometry needs reversal */
1557                         if (num_erase_regions <= 1)
1558                                 break;
1559                         /* reverse geometry if top boot part */
1560                         if (info->cfi_version < 0x3131) {
1561                                 /* CFI < 1.1, try to guess from device id */
1562                                 if ((info->device_id & 0x80) != 0) {
1563                                         geometry_reversed = 1;
1564                                 }
1565                                 break;
1566                         }
1567                         /* CFI >= 1.1, deduct from top/bottom flag */
1568                         /* note: ext_addr is valid since cfi_version > 0 */
1569                         if (flash_read_uchar(info, info->ext_addr + 0xf) == 3) {
1570                                 geometry_reversed = 1;
1571                         }
1572                         break;
1573                 }
1574
1575                 debug ("manufacturer is %d\n", info->vendor);
1576                 debug ("manufacturer id is 0x%x\n", info->manufacturer_id);
1577                 debug ("device id is 0x%x\n", info->device_id);
1578                 debug ("device id2 is 0x%x\n", info->device_id2);
1579                 debug ("cfi version is 0x%04x\n", info->cfi_version);
1580
1581                 size_ratio = info->portwidth / info->chipwidth;
1582                 /* if the chip is x8/x16 reduce the ratio by half */
1583                 if ((info->interface == FLASH_CFI_X8X16)
1584                     && (info->chipwidth == FLASH_CFI_BY8)) {
1585                         size_ratio >>= 1;
1586                 }
1587                 debug ("size_ratio %d port %d bits chip %d bits\n",
1588                        size_ratio, info->portwidth << CFI_FLASH_SHIFT_WIDTH,
1589                        info->chipwidth << CFI_FLASH_SHIFT_WIDTH);
1590                 debug ("found %d erase regions\n", num_erase_regions);
1591                 sect_cnt = 0;
1592                 sector = base;
1593                 for (i = 0; i < num_erase_regions; i++) {
1594                         if (i > NUM_ERASE_REGIONS) {
1595                                 printf ("%d erase regions found, only %d used\n",
1596                                         num_erase_regions, NUM_ERASE_REGIONS);
1597                                 break;
1598                         }
1599                         if (geometry_reversed)
1600                                 tmp = flash_read_long (info, 0,
1601                                                FLASH_OFFSET_ERASE_REGIONS +
1602                                                (num_erase_regions - 1 - i) * 4);
1603                         else
1604                                 tmp = flash_read_long (info, 0,
1605                                                FLASH_OFFSET_ERASE_REGIONS +
1606                                                i * 4);
1607                         erase_region_size =
1608                                 (tmp & 0xffff) ? ((tmp & 0xffff) * 256) : 128;
1609                         tmp >>= 16;
1610                         erase_region_count = (tmp & 0xffff) + 1;
1611                         debug ("erase_region_count = %d erase_region_size = %d\n",
1612                                 erase_region_count, erase_region_size);
1613                         for (j = 0; j < erase_region_count; j++) {
1614                                 if (sect_cnt >= CFG_MAX_FLASH_SECT) {
1615                                         printf("ERROR: too many flash sectors\n");
1616                                         break;
1617                                 }
1618                                 info->start[sect_cnt] = sector;
1619                                 sector += (erase_region_size * size_ratio);
1620
1621                                 /*
1622                                  * Only read protection status from
1623                                  * supported devices (intel...)
1624                                  */
1625                                 switch (info->vendor) {
1626                                 case CFI_CMDSET_INTEL_EXTENDED:
1627                                 case CFI_CMDSET_INTEL_STANDARD:
1628                                         info->protect[sect_cnt] =
1629                                                 flash_isset (info, sect_cnt,
1630                                                              FLASH_OFFSET_PROTECT,
1631                                                              FLASH_STATUS_PROTECT);
1632                                         break;
1633                                 default:
1634                                         /* default: not protected */
1635                                         info->protect[sect_cnt] = 0;
1636                                 }
1637
1638                                 sect_cnt++;
1639                         }
1640                 }
1641
1642                 info->sector_count = sect_cnt;
1643                 info->size = 1 << flash_read_uchar (info, FLASH_OFFSET_SIZE);
1644                 /* multiply the size by the number of chips */
1645                 info->size *= size_ratio;
1646                 info->buffer_size = 1 << flash_read_ushort (info, 0,
1647                                                 FLASH_OFFSET_BUFFER_SIZE);
1648                 tmp = 1 << flash_read_uchar (info, FLASH_OFFSET_ETOUT);
1649                 info->erase_blk_tout = tmp *
1650                         (1 << flash_read_uchar (
1651                                  info, FLASH_OFFSET_EMAX_TOUT));
1652                 tmp = (1 << flash_read_uchar (info, FLASH_OFFSET_WBTOUT)) *
1653                         (1 << flash_read_uchar (info, FLASH_OFFSET_WBMAX_TOUT));
1654                 /* round up when converting to ms */
1655                 info->buffer_write_tout = tmp / 1000 + (tmp % 1000 ? 1 : 0);
1656                 tmp = (1 << flash_read_uchar (info, FLASH_OFFSET_WTOUT)) *
1657                       (1 << flash_read_uchar (info, FLASH_OFFSET_WMAX_TOUT));
1658                 /* round up when converting to ms */
1659                 info->write_tout = tmp / 1000 + (tmp % 1000 ? 1 : 0);
1660                 info->flash_id = FLASH_MAN_CFI;
1661                 if ((info->interface == FLASH_CFI_X8X16) &&
1662                     (info->chipwidth == FLASH_CFI_BY8)) {
1663                         /* XXX - Need to test on x8/x16 in parallel. */
1664                         info->portwidth >>= 1;
1665                 }
1666         }
1667
1668         flash_write_cmd (info, 0, 0, info->cmd_reset);
1669         return (info->size);
1670 }
1671
1672 /*-----------------------------------------------------------------------
1673  */
1674 unsigned long flash_init (void)
1675 {
1676         unsigned long size = 0;
1677         int i;
1678
1679 #ifdef CFG_FLASH_PROTECTION
1680         char *s = getenv("unlock");
1681 #endif
1682
1683         /* Init: no FLASHes known */
1684         for (i = 0; i < CFG_MAX_FLASH_BANKS; ++i) {
1685                 flash_info[i].flash_id = FLASH_UNKNOWN;
1686
1687                 if (!flash_detect_legacy (bank_base[i], i))
1688                         flash_get_size (bank_base[i], i);
1689                 size += flash_info[i].size;
1690                 if (flash_info[i].flash_id == FLASH_UNKNOWN) {
1691 #ifndef CFG_FLASH_QUIET_TEST
1692                         printf ("## Unknown FLASH on Bank %d "
1693                                 "- Size = 0x%08lx = %ld MB\n",
1694                                 i+1, flash_info[i].size,
1695                                 flash_info[i].size << 20);
1696 #endif /* CFG_FLASH_QUIET_TEST */
1697                 }
1698 #ifdef CFG_FLASH_PROTECTION
1699                 else if ((s != NULL) && (strcmp(s, "yes") == 0)) {
1700                         /*
1701                          * Only the U-Boot image and it's environment
1702                          * is protected, all other sectors are
1703                          * unprotected (unlocked) if flash hardware
1704                          * protection is used (CFG_FLASH_PROTECTION)
1705                          * and the environment variable "unlock" is
1706                          * set to "yes".
1707                          */
1708                         if (flash_info[i].legacy_unlock) {
1709                                 int k;
1710
1711                                 /*
1712                                  * Disable legacy_unlock temporarily,
1713                                  * since flash_real_protect would
1714                                  * relock all other sectors again
1715                                  * otherwise.
1716                                  */
1717                                 flash_info[i].legacy_unlock = 0;
1718
1719                                 /*
1720                                  * Legacy unlocking (e.g. Intel J3) ->
1721                                  * unlock only one sector. This will
1722                                  * unlock all sectors.
1723                                  */
1724                                 flash_real_protect (&flash_info[i], 0, 0);
1725
1726                                 flash_info[i].legacy_unlock = 1;
1727
1728                                 /*
1729                                  * Manually mark other sectors as
1730                                  * unlocked (unprotected)
1731                                  */
1732                                 for (k = 1; k < flash_info[i].sector_count; k++)
1733                                         flash_info[i].protect[k] = 0;
1734                         } else {
1735                                 /*
1736                                  * No legancy unlocking -> unlock all sectors
1737                                  */
1738                                 flash_protect (FLAG_PROTECT_CLEAR,
1739                                                flash_info[i].start[0],
1740                                                flash_info[i].start[0]
1741                                                + flash_info[i].size - 1,
1742                                                &flash_info[i]);
1743                         }
1744                 }
1745 #endif /* CFG_FLASH_PROTECTION */
1746         }
1747
1748         /* Monitor protection ON by default */
1749 #if (CFG_MONITOR_BASE >= CFG_FLASH_BASE)
1750         flash_protect (FLAG_PROTECT_SET,
1751                        CFG_MONITOR_BASE,
1752                        CFG_MONITOR_BASE + monitor_flash_len  - 1,
1753                        flash_get_info(CFG_MONITOR_BASE));
1754 #endif
1755
1756         /* Environment protection ON by default */
1757 #ifdef CFG_ENV_IS_IN_FLASH
1758         flash_protect (FLAG_PROTECT_SET,
1759                        CFG_ENV_ADDR,
1760                        CFG_ENV_ADDR + CFG_ENV_SECT_SIZE - 1,
1761                        flash_get_info(CFG_ENV_ADDR));
1762 #endif
1763
1764         /* Redundant environment protection ON by default */
1765 #ifdef CFG_ENV_ADDR_REDUND
1766         flash_protect (FLAG_PROTECT_SET,
1767                        CFG_ENV_ADDR_REDUND,
1768                        CFG_ENV_ADDR_REDUND + CFG_ENV_SIZE_REDUND - 1,
1769                        flash_get_info(CFG_ENV_ADDR_REDUND));
1770 #endif
1771         return (size);
1772 }
1773
1774 #endif /* CFG_FLASH_CFI */