------------------------------------------------------------------------------- flashrom README ------------------------------------------------------------------------------- flashrom is a utility for detecting, reading, writing, verifying and erasing flash chips. It is often used to flash BIOS/EFI/coreboot/firmware images in-system using a supported mainboard, but it also supports flashing of network cards (NICs), SATA controller cards, and other external devices which can program flash chips. It supports a wide range of DIP32, PLCC32, DIP8, SO8/SOIC8, TSOP32, and TSOP40 chips, which use various protocols such as LPC, FWH, parallel flash, or SPI. Do not use flashrom on laptops! The embedded controller (EC) present in many laptops interacts badly with any flash attempts and can brick your laptop permanently. Please make a backup of your flash chip before writing to it. Please see the flashrom(8) manpage. Packaging --------- To package flashrom and remove dependencies on subversion, either use make export or make tarball make export will export all flashrom files from the subversion repository at revision BASE into a directory named $EXPORTDIR/flashrom-$VERSION-r$SVNREVISION and will additionally modify the Makefile in that directory to contain the svn revision of the exported tree. make tarball will simply tar up the result of make export and gzip compress it. The snapshot tarballs are the result of make tarball and require no further processing. Build Instructions ------------------ To build flashrom you need to install the following packages or ports: Linux et al: * pciutils / libpci * pciutils-devel / pciutils-dev / libpci-dev * zlib-devel / zlib1g-dev (needed if libpci was compiled with libz support) On FreeBSD, you need the following ports: * devel/gmake * devel/libpci To compile on Linux, use: make To compile on FreeBSD, use: gmake To compile on Nexenta, use: make To compile on Solaris, use: gmake LDFLAGS="-L$pathtolibpci" CC="gcc -I$pathtopciheaders" CFLAGS=-O2 To compile on NetBSD or DragonFly BSD, use: ln -s /usr/pkg/include/pciutils pci gmake CPPFLAGS=-I. LDFLAGS="-L/usr/pkg/lib -Wl,-rpath-link,/usr/pkg/lib" To compile and run on Darwin/Mac OS X: Install DirectIO from coresystems GmbH. DirectIO is available at http://www.coresystems.de/en/directio. To cross-compile on Linux for DOS: Get RPMs of the cross compiler from the DJGPP site and install them: djcross-binutils-2.19.1-10ap.i386.rpm djcross-gcc-tools-4.4.1-1ap.i686.rpm djcross-gcc-4.3.2-8ap.i686.rpm Download pciutils 3.1.5 and apply http://assembler.cz/flashrom/pciutils.patch Download and compile http://assembler.cz/flashrom/libgetopt/ Compile pciutils, see README.DJGPP for instructions. Enter the flashrom directory. ../libpci should contain pciutils source and binaries. ../libgetopt should contain getopt.a from libgetopt. Run either (change settings where appropriate) make CC=i586-pc-msdosdjgpp-gcc STRIP=i586-pc-msdosdjgpp-strip OS_ARCH=DOS or (above settings hardcoded) make djgpp-dos You might have to add WARNERROR=no to the make command line. To run flashrom.exe, download http://clio.rice.edu/djgpp/csdpmi7b.zip and make sure CWSDPMI.EXE is in the current directory. Installation ------------ In order to install flashrom and the manpage into /usr/local, type: make install For installation in a different directory use DESTDIR, e.g. like this: make DESTDIR=/usr install If you have insufficient permissions for the destination directory, use sudo by adding sudo in front of the commands above. Contact ------- The official flashrom website is: http://www.flashrom.org/ The IRC channel is #flashrom at irc.freenode.net The mailing list address is flashrom@flashrom.org a> 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140 141 142 143 144 145 146 147 148 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186 187 188 189 190 191 192 193 194 195 196 197 198 199 200 201 202 203 204 205 206 207 208 209 210 211 212 213 214 215 216 217 218 219 220 221 222 223 224 225 226 227 228 229 230 231 232 233 234 235 236 237 238 239 240 241 242 243 244 245 246 247 248 249 250 251 252 253 254 255 256 257 258 259 260 261 262 263 264 265 266 267 268 269 270 271 272 273 274 275 276 277 278 279 280 281 282 283 284 285 286 287 288 289 290 291 292 293 294 295 296 297 298 299 300 301 302 303 304 305 306 307 308 309 310 311 312 313 314 315 316 317 318 319 320 321 322 323 324 325 326 327 328 329 330 331 332 333 334 335 336 337 338 339 340 341 342 343 344 345 346 347 348 349 350 351 352 353 354 355 356 357 358 359 360 361 362 363 364 365 366 367 368 369 370 371 372 373 374 375 376 377 378 379 380 381 382 383 384 385 386 387 388 389 390 391 392 393 394 395 396 397 398 399 400 401 402 403 404 405 406 407 408 409 410 411 412 413 414 415 416 417 418 419 420 421 422 423 424 425 426 427 428 429 430 431 432 433 434 435 436 437 438 439 440 441 442 443 444 445 446 447 448 449 450 451 452 453 454 455 456 457 458 459 460 461 462 463 464 465 466 467 468 469 470 471 472 473
/*
* This file is part of the flashrom project.
*
* Copyright (C) 2000 Silicon Integrated System Corporation
* Copyright (C) 2006 Giampiero Giancipoli <gianci@email.it>
* Copyright (C) 2006 coresystems GmbH <info@coresystems.de>
* Copyright (C) 2007 Carl-Daniel Hailfinger
* Copyright (C) 2009 Sean Nelson <audiohacked@gmail.com>
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation; either version 2 of the License, or
* (at your option) any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program; if not, write to the Free Software
* Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
#include "flash.h"
#define MAX_REFLASH_TRIES 0x10
#define MASK_FULL 0xffff
#define MASK_2AA 0x7ff
/* Check one byte for odd parity */
uint8_t oddparity(uint8_t val)
{
val = (val ^ (val >> 4)) & 0xf;
val = (val ^ (val >> 2)) & 0x3;
return (val ^ (val >> 1)) & 0x1;
}
void toggle_ready_jedec_common(chipaddr dst, int delay)
{
unsigned int i = 0;
uint8_t tmp1, tmp2;
tmp1 = chip_readb(dst) & 0x40;
while (i++ < 0xFFFFFFF) {
if (delay)
programmer_delay(delay);
tmp2 = chip_readb(dst) & 0x40;
if (tmp1 == tmp2) {
break;
}
tmp1 = tmp2;
}
if (i > 0x100000)
printf_debug("%s: excessive loops, i=0x%x\n", __func__, i);
}
void toggle_ready_jedec(chipaddr dst)
{
toggle_ready_jedec_common(dst, 0);
}
/* Some chips require a minimum delay between toggle bit reads.
* The Winbond W39V040C wants 50 ms between reads on sector erase toggle,
* but experiments show that 2 ms are already enough. Pick a safety factor
* of 4 and use an 8 ms delay.
* Given that erase is slow on all chips, it is recommended to use
* toggle_ready_jedec_slow in erase functions.
*/
void toggle_ready_jedec_slow(chipaddr dst)
{
toggle_ready_jedec_common(dst, 8 * 1000);
}
void data_polling_jedec(chipaddr dst, uint8_t data)
{
unsigned int i = 0;
uint8_t tmp;
data &= 0x80;
while (i++ < 0xFFFFFFF) {
tmp = chip_readb(dst) & 0x80;
if (tmp == data) {
break;
}
}
if (i > 0x100000)
printf_debug("%s: excessive loops, i=0x%x\n", __func__, i);
}
void start_program_jedec_common(struct flashchip *flash, unsigned int mask)
{
chipaddr bios = flash->virtual_memory;
chip_writeb(0xAA, bios + (0x5555 & mask));
chip_writeb(0x55, bios + (0x2AAA & mask));
chip_writeb(0xA0, bios + (0x5555 & mask));
}
int probe_jedec_common(struct flashchip *flash,
unsigned int mask, int long_reset)
{
chipaddr bios = flash->virtual_memory;
uint8_t id1, id2;
uint32_t largeid1, largeid2;
uint32_t flashcontent1, flashcontent2;
int probe_timing_enter, probe_timing_exit;
if (flash->probe_timing > 0)
probe_timing_enter = probe_timing_exit = flash->probe_timing;
else if (flash->probe_timing == TIMING_ZERO) { /* No delay. */
probe_timing_enter = probe_timing_exit = 0;
} else if (flash->probe_timing == TIMING_FIXME) { /* == _IGNORED */
printf_debug("Chip lacks correct probe timing information, "
"using default 10mS/40uS. ");
probe_timing_enter = 10000;
probe_timing_exit = 40;
} else {
printf("Chip has negative value in probe_timing, failing "
"without chip access\n");
return 0;
}
/* Issue JEDEC Product ID Entry command */
chip_writeb(0xAA, bios + (0x5555 & mask));
if (probe_timing_enter)
programmer_delay(10);
chip_writeb(0x55, bios + (0x2AAA & mask));
if (probe_timing_enter)
programmer_delay(10);
chip_writeb(0x90, bios + (0x5555 & mask));
if (probe_timing_enter)
programmer_delay(probe_timing_enter);
/* Read product ID */
id1 = chip_readb(bios);
id2 = chip_readb(bios + 0x01);
largeid1 = id1;
largeid2 = id2;
/* Check if it is a continuation ID, this should be a while loop. */
if (id1 == 0x7F) {
largeid1 <<= 8;
id1 = chip_readb(bios + 0x100);
largeid1 |= id1;
}
if (id2 == 0x7F) {
largeid2 <<= 8;
id2 = chip_readb(bios + 0x101);
largeid2 |= id2;
}
/* Issue JEDEC Product ID Exit command */
if (long_reset)
{
chip_writeb(0xAA, bios + (0x5555 & mask));
if (probe_timing_exit)
programmer_delay(10);
chip_writeb(0x55, bios + (0x2AAA & mask));
if (probe_timing_exit)
programmer_delay(10);
}
chip_writeb(0xF0, bios + (0x5555 & mask));
if (probe_timing_exit)
programmer_delay(probe_timing_exit);
printf_debug("%s: id1 0x%02x, id2 0x%02x", __func__, largeid1, largeid2);
if (!oddparity(id1))
printf_debug(", id1 parity violation");
/* Read the product ID location again. We should now see normal flash contents. */
flashcontent1 = chip_readb(bios);
flashcontent2 = chip_readb(bios + 0x01);
/* Check if it is a continuation ID, this should be a while loop. */
if (flashcontent1 == 0x7F) {
flashcontent1 <<= 8;
flashcontent1 |= chip_readb(bios + 0x100);
}
if (flashcontent2 == 0x7F) {
flashcontent2 <<= 8;
flashcontent2 |= chip_readb(bios + 0x101);
}
if (largeid1 == flashcontent1)
printf_debug(", id1 is normal flash content");
if (largeid2 == flashcontent2)
printf_debug(", id2 is normal flash content");
printf_debug("\n");
if (largeid1 != flash->manufacture_id || largeid2 != flash->model_id)
return 0;
if (flash->feature_bits & FEATURE_REGISTERMAP)
map_flash_registers(flash);
return 1;
}
int erase_sector_jedec_common(struct flashchip *flash, unsigned int page,
unsigned int pagesize, unsigned int mask)
{
chipaddr bios = flash->virtual_memory;
/* Issue the Sector Erase command */
chip_writeb(0xAA, bios + (0x5555 & mask));
programmer_delay(10);
chip_writeb(0x55, bios + (0x2AAA & mask));
programmer_delay(10);
chip_writeb(0x80, bios + (0x5555 & mask));
programmer_delay(10);
chip_writeb(0xAA, bios + (0x5555 & mask));
programmer_delay(10);
chip_writeb(0x55, bios + (0x2AAA & mask));
programmer_delay(10);
chip_writeb(0x30, bios + page);
programmer_delay(10);
/* wait for Toggle bit ready */
toggle_ready_jedec_slow(bios);
if (check_erased_range(flash, page, pagesize)) {
fprintf(stderr,"ERASE FAILED!\n");
return -1;
}
return 0;
}
int erase_block_jedec_common(struct flashchip *flash, unsigned int block,
unsigned int blocksize, unsigned int mask)
{
chipaddr bios = flash->virtual_memory;
/* Issue the Sector Erase command */
chip_writeb(0xAA, bios + (0x5555 & mask));
programmer_delay(10);
chip_writeb(0x55, bios + (0x2AAA & mask));
programmer_delay(10);
chip_writeb(0x80, bios + (0x5555 & mask));
programmer_delay(10);
chip_writeb(0xAA, bios + (0x5555 & mask));
programmer_delay(10);
chip_writeb(0x55, bios + (0x2AAA & mask));
programmer_delay(10);
chip_writeb(0x50, bios + block);
programmer_delay(10);
/* wait for Toggle bit ready */
toggle_ready_jedec_slow(bios);
if (check_erased_range(flash, block, blocksize)) {
fprintf(stderr,"ERASE FAILED!\n");
return -1;
}
return 0;
}
int erase_chip_jedec_common(struct flashchip *flash, unsigned int mask)
{
int total_size = flash->total_size * 1024;
chipaddr bios = flash->virtual_memory;
/* Issue the JEDEC Chip Erase command */
chip_writeb(0xAA, bios + (0x5555 & mask));
programmer_delay(10);
chip_writeb(0x55, bios + (0x2AAA & mask));
programmer_delay(10);
chip_writeb(0x80, bios + (0x5555 & mask));
programmer_delay(10);
chip_writeb(0xAA, bios + (0x5555 & mask));
programmer_delay(10);
chip_writeb(0x55, bios + (0x2AAA & mask));
programmer_delay(10);
chip_writeb(0x10, bios + (0x5555 & mask));
programmer_delay(10);
toggle_ready_jedec_slow(bios);
if (check_erased_range(flash, 0, total_size)) {
fprintf(stderr,"ERASE FAILED!\n");
return -1;
}
return 0;
}
int write_byte_program_jedec_common(struct flashchip *flash, uint8_t *src,
chipaddr dst, unsigned int mask)
{
int tried = 0, failed = 0;
chipaddr bios = flash->virtual_memory;
/* If the data is 0xFF, don't program it and don't complain. */
if (*src == 0xFF) {
return 0;
}
retry:
/* Issue JEDEC Byte Program command */
start_program_jedec_common(flash, mask);
/* transfer data from source to destination */
chip_writeb(*src, dst);
toggle_ready_jedec(bios);
if (chip_readb(dst) != *src && tried++ < MAX_REFLASH_TRIES) {
goto retry;
}
if (tried >= MAX_REFLASH_TRIES)
failed = 1;
return failed;
}
int write_sector_jedec_common(struct flashchip *flash, uint8_t *src,
chipaddr dst, unsigned int page_size, unsigned int mask)
{
int i, failed = 0;
chipaddr olddst;
olddst = dst;
for (i = 0; i < page_size; i++) {
if (write_byte_program_jedec_common(flash, src, dst, mask))
failed = 1;
dst++, src++;
}
if (failed)
fprintf(stderr, " writing sector at 0x%lx failed!\n", olddst);
return failed;
}
int write_page_write_jedec_common(struct flashchip *flash, uint8_t *src,
int start, int page_size, unsigned int mask)
{
int i, tried = 0, failed;
uint8_t *s = src;
chipaddr bios = flash->virtual_memory;
chipaddr dst = bios + start;
chipaddr d = dst;
retry:
/* Issue JEDEC Start Program comand */
start_program_jedec_common(flash, mask);
/* transfer data from source to destination */
for (i = 0; i < page_size; i++) {
/* If the data is 0xFF, don't program it */
if (*src != 0xFF)
chip_writeb(*src, dst);
dst++;
src++;
}
toggle_ready_jedec(dst - 1);
dst = d;
src = s;
failed = verify_range(flash, src, start, page_size, NULL);
if (failed && tried++ < MAX_REFLASH_TRIES) {
fprintf(stderr, "retrying.\n");
goto retry;
}
if (failed) {
fprintf(stderr, " page 0x%lx failed!\n",
(d - bios) / page_size);
}
return failed;
}
int getaddrmask(struct flashchip *flash)
{
switch (flash->feature_bits & FEATURE_ADDR_MASK) {
case FEATURE_ADDR_FULL:
return MASK_FULL;
break;
default:
fprintf(stderr, "%s called with unknown mask\n", __func__);
return 0;
break;
}
}
int write_jedec(struct flashchip *flash, uint8_t *buf)
{
int i, failed = 0;
int total_size = flash->total_size * 1024;
int page_size = flash->page_size;
if (erase_chip_jedec(flash)) {
fprintf(stderr,"ERASE FAILED!\n");
return -1;
}
printf("Programming page: ");
for (i = 0; i < total_size / page_size; i++) {
printf("%04d at address: 0x%08x", i, i * page_size);
if (write_page_write_jedec_common(flash, buf + i * page_size,
i * page_size, page_size, MASK_FULL))
failed = 1;
printf("\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b");
}
printf("\n");
return failed;
}
int write_jedec_1(struct flashchip *flash, uint8_t * buf)
{
int i;
chipaddr bios = flash->virtual_memory;
chipaddr dst = bios;
programmer_delay(10);
if (erase_flash(flash)) {
fprintf(stderr, "ERASE FAILED!\n");
return -1;
}
printf("Programming page: ");
for (i = 0; i < flash->total_size; i++) {
if ((i & 0x3) == 0)
printf("address: 0x%08lx", (unsigned long)i * 1024);
write_sector_jedec_common(flash, buf + i * 1024, dst + i * 1024, 1024, MASK_FULL);
if ((i & 0x3) == 0)
printf("\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b");
}
printf("\n");
return 0;
}
/* erase chip with block_erase() prototype */
int erase_chip_block_jedec(struct flashchip *flash, unsigned int addr,
unsigned int blocksize)
{
if ((addr != 0) || (blocksize != flash->total_size * 1024)) {
fprintf(stderr, "%s called with incorrect arguments\n",
__func__);
return -1;
}
return erase_chip_jedec_common(flash, MASK_FULL);
}
int probe_jedec(struct flashchip *flash)
{
int mask;
mask = getaddrmask(flash);
return probe_jedec_common(flash, mask, 1);
}
int erase_sector_jedec(struct flashchip *flash, unsigned int page, unsigned int size)
{
return erase_sector_jedec_common(flash, page, size, MASK_FULL);
}
int erase_block_jedec(struct flashchip *flash, unsigned int page, unsigned int size)
{
return erase_block_jedec_common(flash, page, size, MASK_FULL);
}
int erase_chip_jedec(struct flashchip *flash)
{
return erase_chip_jedec_common(flash, MASK_FULL);
}