blob: c4cfeef6e0f770ea58867d68daa205485b89ae83 [file] [log] [blame]
rminnich8d3ff912003-10-25 17:01:29 +00001/*
uweb25f1ea2007-08-29 17:52:32 +00002 * This file is part of the flashrom project.
rminnich8d3ff912003-10-25 17:01:29 +00003 *
uwe555dd972007-09-09 20:21:05 +00004 * Copyright (C) 2000 Silicon Integrated System Corporation
5 * Copyright (C) 2004 Tyan Corp <yhlu@tyan.com>
uwe4475e902009-05-19 14:14:21 +00006 * Copyright (C) 2005-2008 coresystems GmbH
hailfinger23060112009-05-08 12:49:03 +00007 * Copyright (C) 2008,2009 Carl-Daniel Hailfinger
rminnich8d3ff912003-10-25 17:01:29 +00008 *
uweb25f1ea2007-08-29 17:52:32 +00009 * This program is free software; you can redistribute it and/or modify
10 * it under the terms of the GNU General Public License as published by
11 * the Free Software Foundation; either version 2 of the License, or
12 * (at your option) any later version.
rminnich8d3ff912003-10-25 17:01:29 +000013 *
uweb25f1ea2007-08-29 17:52:32 +000014 * This program is distributed in the hope that it will be useful,
15 * but WITHOUT ANY WARRANTY; without even the implied warranty of
16 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 * GNU General Public License for more details.
rminnich8d3ff912003-10-25 17:01:29 +000018 *
uweb25f1ea2007-08-29 17:52:32 +000019 * You should have received a copy of the GNU General Public License
20 * along with this program; if not, write to the Free Software
21 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
rminnich8d3ff912003-10-25 17:01:29 +000022 */
23
rminnich8d3ff912003-10-25 17:01:29 +000024#include <fcntl.h>
stepan1da96c02006-11-21 23:48:51 +000025#include <sys/types.h>
26#include <sys/stat.h>
rminnich8d3ff912003-10-25 17:01:29 +000027#include <string.h>
28#include <stdlib.h>
ollie6a600992005-11-26 21:55:36 +000029#include <getopt.h>
rminnich8d3ff912003-10-25 17:01:29 +000030#include "flash.h"
hailfinger66966da2009-06-15 14:14:48 +000031#include "flashchips.h"
rminnich8d3ff912003-10-25 17:01:29 +000032
hailfinger2d83b5b2009-07-22 20:13:00 +000033const char *flashrom_version = FLASHROM_VERSION;
rminnich8d3ff912003-10-25 17:01:29 +000034char *chip_to_probe = NULL;
stuge98c09aa2008-06-18 02:08:40 +000035int verbose = 0;
hailfinger6fe23d62009-08-12 11:39:29 +000036enum programmer programmer = PROGRAMMER_INTERNAL;
hailfinger4f45a4f2009-08-12 13:32:56 +000037char *programmer_param = NULL;
stepan782fb172007-04-06 11:58:03 +000038
hailfingerabe249e2009-05-08 17:43:22 +000039const struct programmer_entry programmer_table[] = {
40 {
hailfinger3548a9a2009-08-12 14:34:35 +000041 .name = "internal",
hailfinger6c69ab02009-05-11 15:46:43 +000042 .init = internal_init,
43 .shutdown = internal_shutdown,
hailfinger11ae3c42009-05-11 14:13:25 +000044 .map_flash_region = physmap,
45 .unmap_flash_region = physunmap,
hailfinger6c69ab02009-05-11 15:46:43 +000046 .chip_readb = internal_chip_readb,
47 .chip_readw = internal_chip_readw,
48 .chip_readl = internal_chip_readl,
hailfinger9d987ef2009-06-05 18:32:07 +000049 .chip_readn = internal_chip_readn,
hailfinger6c69ab02009-05-11 15:46:43 +000050 .chip_writeb = internal_chip_writeb,
51 .chip_writew = internal_chip_writew,
52 .chip_writel = internal_chip_writel,
hailfinger9d987ef2009-06-05 18:32:07 +000053 .chip_writen = fallback_chip_writen,
hailfingere5829f62009-06-05 17:48:08 +000054 .delay = internal_delay,
hailfingerabe249e2009-05-08 17:43:22 +000055 },
stepan927d4e22007-04-04 22:45:58 +000056
hailfinger571a6b32009-09-16 10:09:21 +000057#if DUMMY_SUPPORT == 1
hailfingera9df33c2009-05-09 00:54:55 +000058 {
hailfinger3548a9a2009-08-12 14:34:35 +000059 .name = "dummy",
hailfinger6c69ab02009-05-11 15:46:43 +000060 .init = dummy_init,
61 .shutdown = dummy_shutdown,
hailfinger11ae3c42009-05-11 14:13:25 +000062 .map_flash_region = dummy_map,
63 .unmap_flash_region = dummy_unmap,
hailfinger6c69ab02009-05-11 15:46:43 +000064 .chip_readb = dummy_chip_readb,
65 .chip_readw = dummy_chip_readw,
66 .chip_readl = dummy_chip_readl,
hailfinger9d987ef2009-06-05 18:32:07 +000067 .chip_readn = dummy_chip_readn,
hailfinger6c69ab02009-05-11 15:46:43 +000068 .chip_writeb = dummy_chip_writeb,
69 .chip_writew = dummy_chip_writew,
70 .chip_writel = dummy_chip_writel,
hailfinger9d987ef2009-06-05 18:32:07 +000071 .chip_writen = dummy_chip_writen,
hailfingere5829f62009-06-05 17:48:08 +000072 .delay = internal_delay,
hailfingera9df33c2009-05-09 00:54:55 +000073 },
hailfinger571a6b32009-09-16 10:09:21 +000074#endif
hailfingera9df33c2009-05-09 00:54:55 +000075
hailfinger571a6b32009-09-16 10:09:21 +000076#if NIC3COM_SUPPORT == 1
uwe0f5a3a22009-05-13 11:36:06 +000077 {
hailfinger3548a9a2009-08-12 14:34:35 +000078 .name = "nic3com",
uwe0f5a3a22009-05-13 11:36:06 +000079 .init = nic3com_init,
80 .shutdown = nic3com_shutdown,
uwe3e656bd2009-05-17 23:12:17 +000081 .map_flash_region = fallback_map,
82 .unmap_flash_region = fallback_unmap,
uwe0f5a3a22009-05-13 11:36:06 +000083 .chip_readb = nic3com_chip_readb,
hailfinger43716942009-05-16 01:23:55 +000084 .chip_readw = fallback_chip_readw,
85 .chip_readl = fallback_chip_readl,
hailfinger9d987ef2009-06-05 18:32:07 +000086 .chip_readn = fallback_chip_readn,
uwe0f5a3a22009-05-13 11:36:06 +000087 .chip_writeb = nic3com_chip_writeb,
hailfinger43716942009-05-16 01:23:55 +000088 .chip_writew = fallback_chip_writew,
89 .chip_writel = fallback_chip_writel,
hailfinger9d987ef2009-06-05 18:32:07 +000090 .chip_writen = fallback_chip_writen,
hailfingere5829f62009-06-05 17:48:08 +000091 .delay = internal_delay,
uwe0f5a3a22009-05-13 11:36:06 +000092 },
hailfinger571a6b32009-09-16 10:09:21 +000093#endif
uwe0f5a3a22009-05-13 11:36:06 +000094
uweff4576d2009-09-30 18:29:55 +000095#if GFXNVIDIA_SUPPORT == 1
96 {
97 .name = "gfxnvidia",
98 .init = gfxnvidia_init,
99 .shutdown = gfxnvidia_shutdown,
100 .map_flash_region = fallback_map,
101 .unmap_flash_region = fallback_unmap,
102 .chip_readb = gfxnvidia_chip_readb,
103 .chip_readw = fallback_chip_readw,
104 .chip_readl = fallback_chip_readl,
105 .chip_readn = fallback_chip_readn,
106 .chip_writeb = gfxnvidia_chip_writeb,
107 .chip_writew = fallback_chip_writew,
108 .chip_writel = fallback_chip_writel,
109 .chip_writen = fallback_chip_writen,
110 .delay = internal_delay,
111 },
112#endif
113
hailfinger571a6b32009-09-16 10:09:21 +0000114#if DRKAISER_SUPPORT == 1
ruikda922a12009-05-17 19:39:27 +0000115 {
uwee2f95ef2009-09-02 23:00:46 +0000116 .name = "drkaiser",
117 .init = drkaiser_init,
118 .shutdown = drkaiser_shutdown,
119 .map_flash_region = fallback_map,
120 .unmap_flash_region = fallback_unmap,
121 .chip_readb = drkaiser_chip_readb,
122 .chip_readw = fallback_chip_readw,
123 .chip_readl = fallback_chip_readl,
124 .chip_readn = fallback_chip_readn,
125 .chip_writeb = drkaiser_chip_writeb,
126 .chip_writew = fallback_chip_writew,
127 .chip_writel = fallback_chip_writel,
128 .chip_writen = fallback_chip_writen,
129 .delay = internal_delay,
130 },
hailfinger571a6b32009-09-16 10:09:21 +0000131#endif
uwee2f95ef2009-09-02 23:00:46 +0000132
hailfinger571a6b32009-09-16 10:09:21 +0000133#if SATASII_SUPPORT == 1
uwee2f95ef2009-09-02 23:00:46 +0000134 {
hailfinger3548a9a2009-08-12 14:34:35 +0000135 .name = "satasii",
ruikda922a12009-05-17 19:39:27 +0000136 .init = satasii_init,
137 .shutdown = satasii_shutdown,
uwe3e656bd2009-05-17 23:12:17 +0000138 .map_flash_region = fallback_map,
139 .unmap_flash_region = fallback_unmap,
ruikda922a12009-05-17 19:39:27 +0000140 .chip_readb = satasii_chip_readb,
141 .chip_readw = fallback_chip_readw,
142 .chip_readl = fallback_chip_readl,
hailfinger9d987ef2009-06-05 18:32:07 +0000143 .chip_readn = fallback_chip_readn,
ruikda922a12009-05-17 19:39:27 +0000144 .chip_writeb = satasii_chip_writeb,
145 .chip_writew = fallback_chip_writew,
146 .chip_writel = fallback_chip_writel,
hailfinger9d987ef2009-06-05 18:32:07 +0000147 .chip_writen = fallback_chip_writen,
hailfingere5829f62009-06-05 17:48:08 +0000148 .delay = internal_delay,
ruikda922a12009-05-17 19:39:27 +0000149 },
hailfinger571a6b32009-09-16 10:09:21 +0000150#endif
ruikda922a12009-05-17 19:39:27 +0000151
hailfinger26e212b2009-05-31 18:00:57 +0000152 {
hailfinger3548a9a2009-08-12 14:34:35 +0000153 .name = "it87spi",
hailfinger26e212b2009-05-31 18:00:57 +0000154 .init = it87spi_init,
hailfinger571a6b32009-09-16 10:09:21 +0000155 .shutdown = noop_shutdown,
hailfinger6fe23d62009-08-12 11:39:29 +0000156 .map_flash_region = fallback_map,
157 .unmap_flash_region = fallback_unmap,
hailfinger571a6b32009-09-16 10:09:21 +0000158 .chip_readb = noop_chip_readb,
hailfinger9d987ef2009-06-05 18:32:07 +0000159 .chip_readw = fallback_chip_readw,
160 .chip_readl = fallback_chip_readl,
161 .chip_readn = fallback_chip_readn,
hailfinger571a6b32009-09-16 10:09:21 +0000162 .chip_writeb = noop_chip_writeb,
hailfinger9d987ef2009-06-05 18:32:07 +0000163 .chip_writew = fallback_chip_writew,
164 .chip_writel = fallback_chip_writel,
165 .chip_writen = fallback_chip_writen,
hailfingere5829f62009-06-05 17:48:08 +0000166 .delay = internal_delay,
hailfinger26e212b2009-05-31 18:00:57 +0000167 },
168
hailfingerd9dcfbd2009-08-19 13:27:58 +0000169#if FT2232_SPI_SUPPORT == 1
hailfingerf31da3d2009-06-16 21:08:06 +0000170 {
hailfinger3548a9a2009-08-12 14:34:35 +0000171 .name = "ft2232spi",
hailfingerf31da3d2009-06-16 21:08:06 +0000172 .init = ft2232_spi_init,
hailfinger571a6b32009-09-16 10:09:21 +0000173 .shutdown = noop_shutdown, /* Missing shutdown */
hailfinger6fe23d62009-08-12 11:39:29 +0000174 .map_flash_region = fallback_map,
175 .unmap_flash_region = fallback_unmap,
hailfinger571a6b32009-09-16 10:09:21 +0000176 .chip_readb = noop_chip_readb,
hailfingerf31da3d2009-06-16 21:08:06 +0000177 .chip_readw = fallback_chip_readw,
178 .chip_readl = fallback_chip_readl,
179 .chip_readn = fallback_chip_readn,
hailfinger571a6b32009-09-16 10:09:21 +0000180 .chip_writeb = noop_chip_writeb,
hailfingerf31da3d2009-06-16 21:08:06 +0000181 .chip_writew = fallback_chip_writew,
182 .chip_writel = fallback_chip_writel,
183 .chip_writen = fallback_chip_writen,
184 .delay = internal_delay,
185 },
hailfingerd9dcfbd2009-08-19 13:27:58 +0000186#endif
hailfinger6fe23d62009-08-12 11:39:29 +0000187
hailfinger74d88a72009-08-12 16:17:41 +0000188#if SERPROG_SUPPORT == 1
hailfinger37b4fbf2009-06-23 11:33:43 +0000189 {
hailfinger3548a9a2009-08-12 14:34:35 +0000190 .name = "serprog",
hailfinger37b4fbf2009-06-23 11:33:43 +0000191 .init = serprog_init,
192 .shutdown = serprog_shutdown,
193 .map_flash_region = fallback_map,
194 .unmap_flash_region = fallback_unmap,
195 .chip_readb = serprog_chip_readb,
196 .chip_readw = fallback_chip_readw,
197 .chip_readl = fallback_chip_readl,
198 .chip_readn = serprog_chip_readn,
199 .chip_writeb = serprog_chip_writeb,
200 .chip_writew = fallback_chip_writew,
201 .chip_writel = fallback_chip_writel,
202 .chip_writen = fallback_chip_writen,
203 .delay = serprog_delay,
204 },
hailfinger74d88a72009-08-12 16:17:41 +0000205#endif
hailfingerf31da3d2009-06-16 21:08:06 +0000206
hailfinger3548a9a2009-08-12 14:34:35 +0000207 {}, /* This entry corresponds to PROGRAMMER_INVALID. */
hailfingerabe249e2009-05-08 17:43:22 +0000208};
stepan927d4e22007-04-04 22:45:58 +0000209
uweabe92a52009-05-16 22:36:00 +0000210int programmer_init(void)
211{
212 return programmer_table[programmer].init();
213}
214
215int programmer_shutdown(void)
216{
217 return programmer_table[programmer].shutdown();
218}
219
220void *programmer_map_flash_region(const char *descr, unsigned long phys_addr,
221 size_t len)
222{
223 return programmer_table[programmer].map_flash_region(descr,
224 phys_addr, len);
225}
226
227void programmer_unmap_flash_region(void *virt_addr, size_t len)
228{
229 programmer_table[programmer].unmap_flash_region(virt_addr, len);
230}
231
232void chip_writeb(uint8_t val, chipaddr addr)
233{
234 programmer_table[programmer].chip_writeb(val, addr);
235}
236
237void chip_writew(uint16_t val, chipaddr addr)
238{
239 programmer_table[programmer].chip_writew(val, addr);
240}
241
242void chip_writel(uint32_t val, chipaddr addr)
243{
244 programmer_table[programmer].chip_writel(val, addr);
245}
246
hailfinger9d987ef2009-06-05 18:32:07 +0000247void chip_writen(uint8_t *buf, chipaddr addr, size_t len)
248{
249 programmer_table[programmer].chip_writen(buf, addr, len);
250}
251
uweabe92a52009-05-16 22:36:00 +0000252uint8_t chip_readb(const chipaddr addr)
253{
254 return programmer_table[programmer].chip_readb(addr);
255}
256
257uint16_t chip_readw(const chipaddr addr)
258{
259 return programmer_table[programmer].chip_readw(addr);
260}
261
262uint32_t chip_readl(const chipaddr addr)
263{
264 return programmer_table[programmer].chip_readl(addr);
265}
266
hailfinger9d987ef2009-06-05 18:32:07 +0000267void chip_readn(uint8_t *buf, chipaddr addr, size_t len)
268{
269 programmer_table[programmer].chip_readn(buf, addr, len);
hailfinger9d987ef2009-06-05 18:32:07 +0000270}
271
hailfingere5829f62009-06-05 17:48:08 +0000272void programmer_delay(int usecs)
273{
274 programmer_table[programmer].delay(usecs);
275}
276
stuge5ff0e6c2009-01-26 00:39:57 +0000277void map_flash_registers(struct flashchip *flash)
stepan15e64bc2007-05-24 08:48:10 +0000278{
stepan15e64bc2007-05-24 08:48:10 +0000279 size_t size = flash->total_size * 1024;
hailfinger8577ad12009-05-11 14:01:17 +0000280 /* Flash registers live 4 MByte below the flash. */
hailfinger0459e1c2009-08-19 13:55:34 +0000281 /* FIXME: This is incorrect for nonstandard flashbase. */
hailfinger82719632009-05-16 21:22:56 +0000282 flash->virtual_registers = (chipaddr)programmer_map_flash_region("flash chip registers", (0xFFFFFFFF - 0x400000 - size + 1), size);
stepan15e64bc2007-05-24 08:48:10 +0000283}
284
hailfinger0f08b7a2009-06-16 08:55:44 +0000285int read_memmapped(struct flashchip *flash, uint8_t *buf, int start, int len)
hailfinger23060112009-05-08 12:49:03 +0000286{
hailfinger0f08b7a2009-06-16 08:55:44 +0000287 chip_readn(buf, flash->virtual_memory + start, len);
hailfinger23060112009-05-08 12:49:03 +0000288
289 return 0;
290}
291
hailfinger7b414742009-06-13 12:04:03 +0000292int min(int a, int b)
293{
294 return (a < b) ? a : b;
295}
296
hailfinger7af83692009-06-15 17:23:36 +0000297int max(int a, int b)
298{
299 return (a > b) ? a : b;
300}
301
hailfingeraec9c962009-10-31 01:53:09 +0000302int bitcount(unsigned long a)
303{
304 int i = 0;
305 for (; a != 0; a >>= 1)
306 if (a & 1)
307 i++;
308 return i;
309}
310
hailfingera916b422009-06-01 02:08:58 +0000311char *strcat_realloc(char *dest, const char *src)
312{
313 dest = realloc(dest, strlen(dest) + strlen(src) + 1);
314 if (!dest)
315 return NULL;
316 strcat(dest, src);
317 return dest;
318}
319
hailfinger7af83692009-06-15 17:23:36 +0000320/* start is an offset to the base address of the flash chip */
321int check_erased_range(struct flashchip *flash, int start, int len)
322{
323 int ret;
324 uint8_t *cmpbuf = malloc(len);
325
326 if (!cmpbuf) {
327 fprintf(stderr, "Could not allocate memory!\n");
328 exit(1);
329 }
330 memset(cmpbuf, 0xff, len);
331 ret = verify_range(flash, cmpbuf, start, len, "ERASE");
332 free(cmpbuf);
333 return ret;
334}
335
336/**
337 * @cmpbuf buffer to compare against
338 * @start offset to the base address of the flash chip
339 * @len length of the verified area
340 * @message string to print in the "FAILED" message
341 * @return 0 for success, -1 for failure
342 */
343int verify_range(struct flashchip *flash, uint8_t *cmpbuf, int start, int len, char *message)
344{
345 int i, j, starthere, lenhere, ret = 0;
hailfinger7af83692009-06-15 17:23:36 +0000346 int page_size = flash->page_size;
347 uint8_t *readbuf = malloc(page_size);
hailfinger5be6c0f2009-07-23 01:42:56 +0000348 int failcount = 0;
hailfinger7af83692009-06-15 17:23:36 +0000349
350 if (!len)
351 goto out_free;
352
hailfingerb0f4d122009-06-24 08:20:45 +0000353 if (!flash->read) {
354 fprintf(stderr, "ERROR: flashrom has no read function for this flash chip.\n");
355 return 1;
356 }
hailfinger7af83692009-06-15 17:23:36 +0000357 if (!readbuf) {
358 fprintf(stderr, "Could not allocate memory!\n");
359 exit(1);
360 }
361
362 if (start + len > flash->total_size * 1024) {
363 fprintf(stderr, "Error: %s called with start 0x%x + len 0x%x >"
364 " total_size 0x%x\n", __func__, start, len,
365 flash->total_size * 1024);
366 ret = -1;
367 goto out_free;
368 }
369 if (!message)
370 message = "VERIFY";
371
372 /* Warning: This loop has a very unusual condition and body.
373 * The loop needs to go through each page with at least one affected
374 * byte. The lowest page number is (start / page_size) since that
375 * division rounds down. The highest page number we want is the page
376 * where the last byte of the range lives. That last byte has the
377 * address (start + len - 1), thus the highest page number is
378 * (start + len - 1) / page_size. Since we want to include that last
379 * page as well, the loop condition uses <=.
380 */
381 for (i = start / page_size; i <= (start + len - 1) / page_size; i++) {
382 /* Byte position of the first byte in the range in this page. */
383 starthere = max(start, i * page_size);
384 /* Length of bytes in the range in this page. */
385 lenhere = min(start + len, (i + 1) * page_size) - starthere;
hailfingerb0f4d122009-06-24 08:20:45 +0000386 flash->read(flash, readbuf, starthere, lenhere);
hailfinger7af83692009-06-15 17:23:36 +0000387 for (j = 0; j < lenhere; j++) {
388 if (cmpbuf[starthere - start + j] != readbuf[j]) {
hailfinger5be6c0f2009-07-23 01:42:56 +0000389 /* Only print the first failure. */
390 if (!failcount++)
391 fprintf(stderr, "%s FAILED at 0x%08x! "
392 "Expected=0x%02x, Read=0x%02x,",
393 message, starthere + j,
394 cmpbuf[starthere - start + j],
395 readbuf[j]);
hailfinger7af83692009-06-15 17:23:36 +0000396 }
397 }
398 }
hailfinger5be6c0f2009-07-23 01:42:56 +0000399 if (failcount) {
400 fprintf(stderr, " failed byte count from 0x%08x-0x%08x: 0x%x\n",
401 start, start + len - 1, failcount);
402 ret = -1;
403 }
hailfinger7af83692009-06-15 17:23:36 +0000404
405out_free:
406 free(readbuf);
407 return ret;
408}
409
hailfinger0c515352009-11-23 12:55:31 +0000410/* This function generates various test patterns useful for testing controller
411 * and chip communication as well as chip behaviour.
412 *
413 * If a byte can be written multiple times, each time keeping 0-bits at 0
414 * and changing 1-bits to 0 if the new value for that bit is 0, the effect
415 * is essentially an AND operation. That's also the reason why this function
416 * provides the result of AND between various patterns.
417 *
418 * Below is a list of patterns (and their block length).
419 * Pattern 0 is 05 15 25 35 45 55 65 75 85 95 a5 b5 c5 d5 e5 f5 (16 Bytes)
420 * Pattern 1 is 0a 1a 2a 3a 4a 5a 6a 7a 8a 9a aa ba ca da ea fa (16 Bytes)
421 * Pattern 2 is 50 51 52 53 54 55 56 57 58 59 5a 5b 5c 5d 5e 5f (16 Bytes)
422 * Pattern 3 is a0 a1 a2 a3 a4 a5 a6 a7 a8 a9 aa ab ac ad ae af (16 Bytes)
423 * Pattern 4 is 00 10 20 30 40 50 60 70 80 90 a0 b0 c0 d0 e0 f0 (16 Bytes)
424 * Pattern 5 is 00 01 02 03 04 05 06 07 08 09 0a 0b 0c 0d 0e 0f (16 Bytes)
425 * Pattern 6 is 00 (1 Byte)
426 * Pattern 7 is ff (1 Byte)
427 * Patterns 0-7 have a big-endian block number in the last 2 bytes of each 256
428 * byte block.
429 *
430 * Pattern 8 is 00 01 02 03 04 05 06 07 08 09 0a 0b 0c 0d 0e 0f 10 11... (256 B)
431 * Pattern 9 is ff fe fd fc fb fa f9 f8 f7 f6 f5 f4 f3 f2 f1 f0 ef ee... (256 B)
432 * Pattern 10 is 00 00 00 01 00 02 00 03 00 04... (128 kB big-endian counter)
433 * Pattern 11 is ff ff ff fe ff fd ff fc ff fb... (128 kB big-endian downwards)
434 * Pattern 12 is 00 (1 Byte)
435 * Pattern 13 is ff (1 Byte)
436 * Patterns 8-13 have no block number.
437 *
438 * Patterns 0-3 are created to detect and efficiently diagnose communication
439 * slips like missed bits or bytes and their repetitive nature gives good visual
440 * cues to the person inspecting the results. In addition, the following holds:
441 * AND Pattern 0/1 == Pattern 4
442 * AND Pattern 2/3 == Pattern 5
443 * AND Pattern 0/1/2/3 == AND Pattern 4/5 == Pattern 6
444 * A weakness of pattern 0-5 is the inability to detect swaps/copies between
445 * any two 16-byte blocks except for the last 16-byte block in a 256-byte bloc.
446 * They work perfectly for detecting any swaps/aliasing of blocks >= 256 bytes.
447 * 0x5 and 0xa were picked because they are 0101 and 1010 binary.
448 * Patterns 8-9 are best for detecting swaps/aliasing of blocks < 256 bytes.
449 * Besides that, they provide for bit testing of the last two bytes of every
450 * 256 byte block which contains the block number for patterns 0-6.
451 * Patterns 10-11 are special purpose for detecting subblock aliasing with
452 * block sizes >256 bytes (some Dataflash chips etc.)
453 * AND Pattern 8/9 == Pattern 12
454 * AND Pattern 10/11 == Pattern 12
455 * Pattern 13 is the completely erased state.
456 * None of the patterns can detect aliasing at boundaries which are a multiple
457 * of 16 MBytes (but such chips do not exist anyway for Parallel/LPC/FWH/SPI).
458 */
459int generate_testpattern(uint8_t *buf, uint32_t size, int variant)
460{
461 int i;
462
463 if (!buf) {
464 fprintf(stderr, "Invalid buffer!\n");
465 return 1;
466 }
467
468 switch (variant) {
469 case 0:
470 for (i = 0; i < size; i++)
471 buf[i] = (i & 0xf) << 4 | 0x5;
472 break;
473 case 1:
474 for (i = 0; i < size; i++)
475 buf[i] = (i & 0xf) << 4 | 0xa;
476 break;
477 case 2:
478 for (i = 0; i < size; i++)
479 buf[i] = 0x50 | (i & 0xf);
480 break;
481 case 3:
482 for (i = 0; i < size; i++)
483 buf[i] = 0xa0 | (i & 0xf);
484 break;
485 case 4:
486 for (i = 0; i < size; i++)
487 buf[i] = (i & 0xf) << 4;
488 break;
489 case 5:
490 for (i = 0; i < size; i++)
491 buf[i] = i & 0xf;
492 break;
493 case 6:
494 memset(buf, 0x00, size);
495 break;
496 case 7:
497 memset(buf, 0xff, size);
498 break;
499 case 8:
500 for (i = 0; i < size; i++)
501 buf[i] = i & 0xff;
502 break;
503 case 9:
504 for (i = 0; i < size; i++)
505 buf[i] = ~(i & 0xff);
506 break;
507 case 10:
508 for (i = 0; i < size % 2; i++) {
509 buf[i * 2] = (i >> 8) & 0xff;
510 buf[i * 2 + 1] = i & 0xff;
511 }
512 if (size & 0x1)
513 buf[i * 2] = (i >> 8) & 0xff;
514 break;
515 case 11:
516 for (i = 0; i < size % 2; i++) {
517 buf[i * 2] = ~((i >> 8) & 0xff);
518 buf[i * 2 + 1] = ~(i & 0xff);
519 }
520 if (size & 0x1)
521 buf[i * 2] = ~((i >> 8) & 0xff);
522 break;
523 case 12:
524 memset(buf, 0x00, size);
525 break;
526 case 13:
527 memset(buf, 0xff, size);
528 break;
529 }
530
531 if ((variant >= 0) && (variant <= 7)) {
532 /* Write block number in the last two bytes of each 256-byte
533 * block, big endian for easier reading of the hexdump.
534 * Note that this wraps around for chips larger than 2^24 bytes
535 * (16 MB).
536 */
537 for (i = 0; i < size / 256; i++) {
538 buf[i * 256 + 254] = (i >> 8) & 0xff;
539 buf[i * 256 + 255] = i & 0xff;
540 }
541 }
542
543 return 0;
544}
545
hailfingeraec9c962009-10-31 01:53:09 +0000546int check_max_decode(enum chipbustype buses, uint32_t size)
547{
548 int limitexceeded = 0;
549 if ((buses & CHIP_BUSTYPE_PARALLEL) &&
550 (max_rom_decode.parallel < size)) {
551 limitexceeded++;
552 printf_debug("Chip size %u kB is bigger than supported "
553 "size %u kB of chipset/board/programmer "
554 "for %s interface, "
555 "probe/read/erase/write may fail. ", size / 1024,
556 max_rom_decode.parallel / 1024, "Parallel");
557 }
558 if ((buses & CHIP_BUSTYPE_LPC) && (max_rom_decode.lpc < size)) {
559 limitexceeded++;
560 printf_debug("Chip size %u kB is bigger than supported "
561 "size %u kB of chipset/board/programmer "
562 "for %s interface, "
563 "probe/read/erase/write may fail. ", size / 1024,
564 max_rom_decode.lpc / 1024, "LPC");
565 }
566 if ((buses & CHIP_BUSTYPE_FWH) && (max_rom_decode.fwh < size)) {
567 limitexceeded++;
568 printf_debug("Chip size %u kB is bigger than supported "
569 "size %u kB of chipset/board/programmer "
570 "for %s interface, "
571 "probe/read/erase/write may fail. ", size / 1024,
572 max_rom_decode.fwh / 1024, "FWH");
573 }
574 if ((buses & CHIP_BUSTYPE_SPI) && (max_rom_decode.spi < size)) {
575 limitexceeded++;
576 printf_debug("Chip size %u kB is bigger than supported "
577 "size %u kB of chipset/board/programmer "
578 "for %s interface, "
579 "probe/read/erase/write may fail. ", size / 1024,
580 max_rom_decode.spi / 1024, "SPI");
581 }
582 if (!limitexceeded)
583 return 0;
584 /* Sometimes chip and programmer have more than one bus in common,
585 * and the limit is not exceeded on all buses. Tell the user.
586 */
587 if (bitcount(buses) > limitexceeded)
588 printf_debug("There is at least one common chip/programmer "
589 "interface which can support a chip of this size. "
590 "You can try --force at your own risk.\n");
591 return 1;
592}
593
stuge56300c32008-09-03 23:10:05 +0000594struct flashchip *probe_flash(struct flashchip *first_flash, int force)
rminnich8d3ff912003-10-25 17:01:29 +0000595{
stuge56300c32008-09-03 23:10:05 +0000596 struct flashchip *flash;
hailfingeraec9c962009-10-31 01:53:09 +0000597 unsigned long base = 0;
598 uint32_t size;
599 enum chipbustype buses_common;
hailfingera916b422009-06-01 02:08:58 +0000600 char *tmp;
rminnich8d3ff912003-10-25 17:01:29 +0000601
stuge56300c32008-09-03 23:10:05 +0000602 for (flash = first_flash; flash && flash->name; flash++) {
stugec1e55fe2008-07-02 17:15:47 +0000603 if (chip_to_probe && strcmp(flash->name, chip_to_probe) != 0)
ollie5672ac62004-03-17 22:22:08 +0000604 continue;
stepanb8361b92008-03-17 22:59:40 +0000605 printf_debug("Probing for %s %s, %d KB: ",
606 flash->vendor, flash->name, flash->total_size);
stuge98c09aa2008-06-18 02:08:40 +0000607 if (!flash->probe && !force) {
stuge8ce3a3c2008-04-28 14:47:30 +0000608 printf_debug("failed! flashrom has no probe function for this flash chip.\n");
stuge8ce3a3c2008-04-28 14:47:30 +0000609 continue;
610 }
hailfingeraec9c962009-10-31 01:53:09 +0000611 buses_common = buses_supported & flash->bustype;
612 if (!buses_common) {
hailfingera916b422009-06-01 02:08:58 +0000613 tmp = flashbuses_to_text(buses_supported);
614 printf_debug("skipped. Host bus type %s ", tmp);
615 free(tmp);
616 tmp = flashbuses_to_text(flash->bustype);
617 printf_debug("and chip bus type %s are incompatible.\n", tmp);
618 free(tmp);
619 continue;
620 }
stepan782fb172007-04-06 11:58:03 +0000621
ollie5672ac62004-03-17 22:22:08 +0000622 size = flash->total_size * 1024;
hailfingeraec9c962009-10-31 01:53:09 +0000623 check_max_decode(buses_common, size);
stepan782fb172007-04-06 11:58:03 +0000624
hailfinger72d3b982009-05-09 07:27:23 +0000625 base = flashbase ? flashbase : (0xffffffff - size + 1);
hailfinger82719632009-05-16 21:22:56 +0000626 flash->virtual_memory = (chipaddr)programmer_map_flash_region("flash chip", base, size);
rminnich8d3ff912003-10-25 17:01:29 +0000627
stugec1e55fe2008-07-02 17:15:47 +0000628 if (force)
629 break;
stepanc98b80b2006-03-16 16:57:41 +0000630
stuge56300c32008-09-03 23:10:05 +0000631 if (flash->probe(flash) != 1)
632 goto notfound;
633
uwefa98ca12008-10-18 21:14:13 +0000634 if (first_flash == flashchips
635 || flash->model_id != GENERIC_DEVICE_ID)
stugec1e55fe2008-07-02 17:15:47 +0000636 break;
637
stuge56300c32008-09-03 23:10:05 +0000638notfound:
hailfinger82719632009-05-16 21:22:56 +0000639 programmer_unmap_flash_region((void *)flash->virtual_memory, size);
rminnich8d3ff912003-10-25 17:01:29 +0000640 }
uwebe4477b2007-08-23 16:08:21 +0000641
stugec1e55fe2008-07-02 17:15:47 +0000642 if (!flash || !flash->name)
643 return NULL;
644
uwe9e6811e2009-06-28 21:47:57 +0000645 printf("Found chip \"%s %s\" (%d KB, %s) at physical address 0x%lx.\n",
646 flash->vendor, flash->name, flash->total_size,
647 flashbuses_to_text(flash->bustype), base);
648
stugec1e55fe2008-07-02 17:15:47 +0000649 return flash;
rminnich8d3ff912003-10-25 17:01:29 +0000650}
651
stepan193c9c22005-12-18 16:41:10 +0000652int verify_flash(struct flashchip *flash, uint8_t *buf)
rminnich8d3ff912003-10-25 17:01:29 +0000653{
hailfingerb0f4d122009-06-24 08:20:45 +0000654 int ret;
ollie5b621572004-03-20 16:46:10 +0000655 int total_size = flash->total_size * 1024;
rminnich8d3ff912003-10-25 17:01:29 +0000656
uwefd2d0fe2007-10-17 23:55:15 +0000657 printf("Verifying flash... ");
uwef6641642007-05-09 10:17:44 +0000658
hailfingerb0f4d122009-06-24 08:20:45 +0000659 ret = verify_range(flash, buf, 0, total_size, NULL);
uwef6641642007-05-09 10:17:44 +0000660
hailfingerb0f4d122009-06-24 08:20:45 +0000661 if (!ret)
662 printf("VERIFIED. \n");
stepanc98b80b2006-03-16 16:57:41 +0000663
hailfingerb0f4d122009-06-24 08:20:45 +0000664 return ret;
rminnich8d3ff912003-10-25 17:01:29 +0000665}
666
hailfinger09bd6f02009-06-19 11:23:57 +0000667int read_flash(struct flashchip *flash, char *filename)
hailfingerd219a232009-01-28 00:27:54 +0000668{
669 unsigned long numbytes;
670 FILE *image;
671 unsigned long size = flash->total_size * 1024;
672 unsigned char *buf = calloc(size, sizeof(char));
hailfingerde345862009-06-01 22:07:52 +0000673
674 if (!filename) {
675 printf("Error: No filename specified.\n");
676 return 1;
677 }
hailfingerd219a232009-01-28 00:27:54 +0000678 if ((image = fopen(filename, "w")) == NULL) {
679 perror(filename);
680 exit(1);
681 }
682 printf("Reading flash... ");
hailfinger23060112009-05-08 12:49:03 +0000683 if (!flash->read) {
684 printf("FAILED!\n");
685 fprintf(stderr, "ERROR: flashrom has no read function for this flash chip.\n");
686 return 1;
687 } else
hailfinger0f08b7a2009-06-16 08:55:44 +0000688 flash->read(flash, buf, 0, size);
hailfingerd219a232009-01-28 00:27:54 +0000689
hailfingerd219a232009-01-28 00:27:54 +0000690 numbytes = fwrite(buf, 1, size, image);
691 fclose(image);
hailfingera2615252009-06-01 21:37:00 +0000692 free(buf);
hailfingerd219a232009-01-28 00:27:54 +0000693 printf("%s.\n", numbytes == size ? "done" : "FAILED");
694 if (numbytes != size)
695 return 1;
696 return 0;
697}
698
699int erase_flash(struct flashchip *flash)
700{
hailfinger7df21362009-09-05 02:30:58 +0000701 int i, j, k, ret = 0, found = 0;
702
hailfingerd219a232009-01-28 00:27:54 +0000703 printf("Erasing flash chip... ");
hailfinger7df21362009-09-05 02:30:58 +0000704 for (k = 0; k < NUM_ERASEFUNCTIONS; k++) {
705 unsigned long done = 0;
706 struct block_eraser eraser = flash->block_erasers[k];
707
708 printf_debug("Looking at blockwise erase function %i... ", k);
709 if (!eraser.block_erase && !eraser.eraseblocks[0].count) {
710 printf_debug("not defined. "
711 "Looking for another erase function.\n");
712 continue;
713 }
714 if (!eraser.block_erase && eraser.eraseblocks[0].count) {
715 printf_debug("eraseblock layout is known, but no "
716 "matching block erase function found. "
717 "Looking for another erase function.\n");
718 continue;
719 }
720 if (eraser.block_erase && !eraser.eraseblocks[0].count) {
721 printf_debug("block erase function found, but "
722 "eraseblock layout is unknown. "
723 "Looking for another erase function.\n");
724 continue;
725 }
726 found = 1;
727 printf_debug("trying... ");
728 for (i = 0; i < NUM_ERASEREGIONS; i++) {
729 /* count==0 for all automatically initialized array
730 * members so the loop below won't be executed for them.
731 */
732 for (j = 0; j < eraser.eraseblocks[i].count; j++) {
733 ret = eraser.block_erase(flash, done + eraser.eraseblocks[i].size * j, eraser.eraseblocks[i].size);
734 if (ret)
735 break;
736 }
737 if (ret)
738 break;
739 }
740 /* If everything is OK, don't try another erase function. */
741 if (!ret)
742 break;
743 }
744 /* If no block erase function was found or block erase failed, retry. */
745 if ((!found || ret) && (flash->erase)) {
746 found = 1;
747 printf_debug("Trying whole-chip erase function... ");
748 ret = flash->erase(flash);
749 }
750 if (!found) {
hailfingerd219a232009-01-28 00:27:54 +0000751 fprintf(stderr, "ERROR: flashrom has no erase function for this flash chip.\n");
752 return 1;
753 }
hailfinger1e9ee0f2009-05-08 17:15:15 +0000754
hailfinger7df21362009-09-05 02:30:58 +0000755 if (ret) {
756 fprintf(stderr, "FAILED!\n");
757 } else {
758 printf("SUCCESS.\n");
759 }
760 return ret;
hailfingerd219a232009-01-28 00:27:54 +0000761}
762
uweb34ec9f2009-10-01 18:40:02 +0000763void emergency_help_message(void)
hailfinger0459e1c2009-08-19 13:55:34 +0000764{
765 fprintf(stderr, "Your flash chip is in an unknown state.\n"
uweb34ec9f2009-10-01 18:40:02 +0000766 "Get help on IRC at irc.freenode.net (channel #flashrom) or\n"
767 "mail flashrom@flashrom.org!\n--------------------"
768 "-----------------------------------------------------------\n"
hailfinger0459e1c2009-08-19 13:55:34 +0000769 "DO NOT REBOOT OR POWEROFF!\n");
770}
771
rminnich8d3ff912003-10-25 17:01:29 +0000772void usage(const char *name)
773{
hailfinger889cfa52009-08-13 11:38:44 +0000774 const char *pname;
775 int pnamelen;
776 int remaining = 0;
777 enum programmer p;
778
hailfinger09bd6f02009-06-19 11:23:57 +0000779 printf("usage: %s [-VfLzhR] [-E|-r file|-w file|-v file] [-c chipname]\n"
hailfingerf3cca3b2009-06-24 08:18:38 +0000780 " [-m [vendor:]part] [-l file] [-i image] [-p programmer]\n\n", name);
uwe4475e902009-05-19 14:14:21 +0000781
oxygene4a497262009-05-22 11:37:27 +0000782 printf("Please note that the command line interface for flashrom will "
783 "change before\nflashrom 1.0. Do not use flashrom in scripts "
784 "or other automated tools without\nchecking that your flashrom"
785 " version won't interpret options in a different way.\n\n");
uwe4475e902009-05-19 14:14:21 +0000786
uwef6641642007-05-09 10:17:44 +0000787 printf
stugeb9b411f2008-01-27 16:21:21 +0000788 (" -r | --read: read flash and save into file\n"
789 " -w | --write: write file into flash\n"
790 " -v | --verify: verify flash against file\n"
uwe889a4992009-06-24 17:31:08 +0000791 " -n | --noverify: don't verify flash against file\n"
stugeb9b411f2008-01-27 16:21:21 +0000792 " -E | --erase: erase flash device\n"
793 " -V | --verbose: more verbose output\n"
794 " -c | --chip <chipname>: probe only for specified flash chip\n"
stugeb9b411f2008-01-27 16:21:21 +0000795 " -m | --mainboard <[vendor:]part>: override mainboard settings\n"
796 " -f | --force: force write without checking image\n"
oxygene4a497262009-05-22 11:37:27 +0000797 " -l | --layout <file.layout>: read ROM layout from file\n"
stugeb9b411f2008-01-27 16:21:21 +0000798 " -i | --image <name>: only flash image name from flash layout\n"
uwe16f99092008-03-12 11:54:51 +0000799 " -L | --list-supported: print supported devices\n"
uwe61bf0dd2009-09-18 13:38:14 +0000800#if PRINT_WIKI_SUPPORT == 1
uwe8b452372009-06-19 10:42:43 +0000801 " -z | --list-supported-wiki: print supported devices in wiki syntax\n"
hailfinger0d784cd2009-09-16 12:19:03 +0000802#endif
hailfinger889cfa52009-08-13 11:38:44 +0000803 " -p | --programmer <name>: specify the programmer device");
804
805 for (p = 0; p < PROGRAMMER_INVALID; p++) {
806 pname = programmer_table[p].name;
807 pnamelen = strlen(pname);
808 if (remaining - pnamelen - 2 < 0) {
809 printf("\n ");
810 remaining = 43;
811 } else {
812 printf(" ");
813 remaining--;
814 }
815 if (p == 0) {
816 printf("(");
817 remaining--;
818 }
819 printf("%s", pname);
820 remaining -= pnamelen;
821 if (p < PROGRAMMER_INVALID - 1) {
822 printf(",");
823 remaining--;
824 } else {
825 printf(")\n");
826 }
827 }
828
829 printf(
uwe16f99092008-03-12 11:54:51 +0000830 " -h | --help: print this help text\n"
stugeb9b411f2008-01-27 16:21:21 +0000831 " -R | --version: print the version (release)\n"
hailfingerf3cca3b2009-06-24 08:18:38 +0000832 "\nYou can specify one of -E, -r, -w, -v or no operation. If no operation is\n"
833 "specified, then all that happens is that flash info is dumped.\n\n");
ollie5672ac62004-03-17 22:22:08 +0000834 exit(1);
rminnich8d3ff912003-10-25 17:01:29 +0000835}
836
uwefdeca092008-01-21 15:24:22 +0000837void print_version(void)
838{
hailfinger2d83b5b2009-07-22 20:13:00 +0000839 printf("flashrom v%s\n", flashrom_version);
uwefdeca092008-01-21 15:24:22 +0000840}
841
ollie5b621572004-03-20 16:46:10 +0000842int main(int argc, char *argv[])
rminnich8d3ff912003-10-25 17:01:29 +0000843{
ollie6a600992005-11-26 21:55:36 +0000844 uint8_t *buf;
stugebbcc2f12009-01-12 21:00:35 +0000845 unsigned long size, numbytes;
ollie5b621572004-03-20 16:46:10 +0000846 FILE *image;
stugec7354dc2008-05-08 00:31:44 +0000847 /* Probe for up to three flash chips. */
848 struct flashchip *flash, *flashes[3];
hailfinger3548a9a2009-08-12 14:34:35 +0000849 const char *name;
850 int namelen;
ollie5672ac62004-03-17 22:22:08 +0000851 int opt;
ollie6a600992005-11-26 21:55:36 +0000852 int option_index = 0;
stuge98c09aa2008-06-18 02:08:40 +0000853 int force = 0;
uwef6641642007-05-09 10:17:44 +0000854 int read_it = 0, write_it = 0, erase_it = 0, verify_it = 0;
hailfinger0d784cd2009-09-16 12:19:03 +0000855 int dont_verify_it = 0, list_supported = 0;
uwe61bf0dd2009-09-18 13:38:14 +0000856#if PRINT_WIKI_SUPPORT == 1
hailfinger0d784cd2009-09-16 12:19:03 +0000857 int list_supported_wiki = 0;
858#endif
hailfingerccbad522009-06-12 14:02:07 +0000859 int operation_specified = 0;
stugec7354dc2008-05-08 00:31:44 +0000860 int ret = 0, i;
ollie6a600992005-11-26 21:55:36 +0000861
uwe61bf0dd2009-09-18 13:38:14 +0000862#if PRINT_WIKI_SUPPORT == 1
hailfinger0d784cd2009-09-16 12:19:03 +0000863 const char *optstring = "rRwvnVEfc:m:l:i:p:Lzh";
864#else
865 const char *optstring = "rRwvnVEfc:m:l:i:p:Lh";
866#endif
uwef6641642007-05-09 10:17:44 +0000867 static struct option long_options[] = {
868 {"read", 0, 0, 'r'},
869 {"write", 0, 0, 'w'},
870 {"erase", 0, 0, 'E'},
871 {"verify", 0, 0, 'v'},
uwe889a4992009-06-24 17:31:08 +0000872 {"noverify", 0, 0, 'n'},
uwef6641642007-05-09 10:17:44 +0000873 {"chip", 1, 0, 'c'},
uwef6641642007-05-09 10:17:44 +0000874 {"mainboard", 1, 0, 'm'},
875 {"verbose", 0, 0, 'V'},
876 {"force", 0, 0, 'f'},
877 {"layout", 1, 0, 'l'},
878 {"image", 1, 0, 'i'},
uwe16f99092008-03-12 11:54:51 +0000879 {"list-supported", 0, 0, 'L'},
uwe61bf0dd2009-09-18 13:38:14 +0000880#if PRINT_WIKI_SUPPORT == 1
uwe8b452372009-06-19 10:42:43 +0000881 {"list-supported-wiki", 0, 0, 'z'},
hailfinger0d784cd2009-09-16 12:19:03 +0000882#endif
hailfingerabe249e2009-05-08 17:43:22 +0000883 {"programmer", 1, 0, 'p'},
uwef6641642007-05-09 10:17:44 +0000884 {"help", 0, 0, 'h'},
uwefdeca092008-01-21 15:24:22 +0000885 {"version", 0, 0, 'R'},
uwef6641642007-05-09 10:17:44 +0000886 {0, 0, 0, 0}
ollie6a600992005-11-26 21:55:36 +0000887 };
uwef6641642007-05-09 10:17:44 +0000888
ollie5672ac62004-03-17 22:22:08 +0000889 char *filename = NULL;
rminnich8d3ff912003-10-25 17:01:29 +0000890
uwef6641642007-05-09 10:17:44 +0000891 char *tempstr = NULL, *tempstr2 = NULL;
yhlu5d4383a2004-10-20 05:07:16 +0000892
hailfingerf17c52f2009-05-07 00:59:53 +0000893 print_version();
894
yhlu5d4383a2004-10-20 05:07:16 +0000895 if (argc > 1) {
896 /* Yes, print them. */
897 int i;
uwef6641642007-05-09 10:17:44 +0000898 printf_debug("The arguments are:\n");
yhlu5d4383a2004-10-20 05:07:16 +0000899 for (i = 1; i < argc; ++i)
uwef6641642007-05-09 10:17:44 +0000900 printf_debug("%s\n", argv[i]);
yhlu5d4383a2004-10-20 05:07:16 +0000901 }
902
hailfinger3548a9a2009-08-12 14:34:35 +0000903 /* Safety check. */
904 if (ARRAY_SIZE(programmer_table) - 1 != PROGRAMMER_INVALID) {
905 fprintf(stderr, "Programmer table miscompilation!\n");
906 exit(1);
907 }
hailfingerd9dcfbd2009-08-19 13:27:58 +0000908 if (spi_programmer_count - 1 != SPI_CONTROLLER_INVALID) {
909 fprintf(stderr, "SPI programmer table miscompilation!\n");
910 exit(1);
911 }
hailfingeracce2df2009-09-28 13:15:16 +0000912#if BITBANG_SPI_SUPPORT == 1
hailfinger8e278892009-10-01 14:51:25 +0000913 if (bitbang_spi_master_count - 1 != BITBANG_SPI_INVALID) {
hailfingeracce2df2009-09-28 13:15:16 +0000914 fprintf(stderr, "Bitbanging SPI master table miscompilation!\n");
915 exit(1);
916 }
917#endif
hailfinger3548a9a2009-08-12 14:34:35 +0000918
ollie5672ac62004-03-17 22:22:08 +0000919 setbuf(stdout, NULL);
hailfinger0d784cd2009-09-16 12:19:03 +0000920 while ((opt = getopt_long(argc, argv, optstring,
uwef6641642007-05-09 10:17:44 +0000921 long_options, &option_index)) != EOF) {
ollie5672ac62004-03-17 22:22:08 +0000922 switch (opt) {
923 case 'r':
hailfingerccbad522009-06-12 14:02:07 +0000924 if (++operation_specified > 1) {
925 fprintf(stderr, "More than one operation "
926 "specified. Aborting.\n");
927 exit(1);
928 }
ollie5672ac62004-03-17 22:22:08 +0000929 read_it = 1;
930 break;
931 case 'w':
hailfingerccbad522009-06-12 14:02:07 +0000932 if (++operation_specified > 1) {
933 fprintf(stderr, "More than one operation "
934 "specified. Aborting.\n");
935 exit(1);
936 }
ollie5672ac62004-03-17 22:22:08 +0000937 write_it = 1;
938 break;
939 case 'v':
hailfingera50d60e2009-11-17 09:57:34 +0000940 //FIXME: gracefully handle superfluous -v
hailfingerccbad522009-06-12 14:02:07 +0000941 if (++operation_specified > 1) {
942 fprintf(stderr, "More than one operation "
943 "specified. Aborting.\n");
944 exit(1);
945 }
hailfingera50d60e2009-11-17 09:57:34 +0000946 if (dont_verify_it) {
947 fprintf(stderr, "--verify and --noverify are"
948 "mutually exclusive. Aborting.\n");
949 exit(1);
950 }
ollie5672ac62004-03-17 22:22:08 +0000951 verify_it = 1;
952 break;
uwe889a4992009-06-24 17:31:08 +0000953 case 'n':
hailfingera50d60e2009-11-17 09:57:34 +0000954 if (verify_it) {
955 fprintf(stderr, "--verify and --noverify are"
956 "mutually exclusive. Aborting.\n");
957 exit(1);
958 }
uwe889a4992009-06-24 17:31:08 +0000959 dont_verify_it = 1;
960 break;
ollie5672ac62004-03-17 22:22:08 +0000961 case 'c':
962 chip_to_probe = strdup(optarg);
963 break;
ollie077017b2004-03-18 20:27:33 +0000964 case 'V':
965 verbose = 1;
966 break;
ollie0eb62d62004-12-08 20:10:01 +0000967 case 'E':
hailfingerccbad522009-06-12 14:02:07 +0000968 if (++operation_specified > 1) {
969 fprintf(stderr, "More than one operation "
970 "specified. Aborting.\n");
971 exit(1);
972 }
ollie0eb62d62004-12-08 20:10:01 +0000973 erase_it = 1;
974 break;
ollie6a600992005-11-26 21:55:36 +0000975 case 'm':
976 tempstr = strdup(optarg);
977 strtok(tempstr, ":");
uwef6641642007-05-09 10:17:44 +0000978 tempstr2 = strtok(NULL, ":");
ollie6a600992005-11-26 21:55:36 +0000979 if (tempstr2) {
uwef6641642007-05-09 10:17:44 +0000980 lb_vendor = tempstr;
981 lb_part = tempstr2;
ollie6a600992005-11-26 21:55:36 +0000982 } else {
stugeb9b411f2008-01-27 16:21:21 +0000983 lb_vendor = NULL;
984 lb_part = tempstr;
ollie6a600992005-11-26 21:55:36 +0000985 }
986 break;
987 case 'f':
uwef6641642007-05-09 10:17:44 +0000988 force = 1;
ollie6a600992005-11-26 21:55:36 +0000989 break;
990 case 'l':
uwef6641642007-05-09 10:17:44 +0000991 tempstr = strdup(optarg);
stepan14566ee2007-04-14 16:32:59 +0000992 if (read_romlayout(tempstr))
993 exit(1);
ollie6a600992005-11-26 21:55:36 +0000994 break;
995 case 'i':
uwef6641642007-05-09 10:17:44 +0000996 tempstr = strdup(optarg);
ollie6a600992005-11-26 21:55:36 +0000997 find_romentry(tempstr);
998 break;
uwe16f99092008-03-12 11:54:51 +0000999 case 'L':
uwe5f612c82009-05-16 23:42:17 +00001000 list_supported = 1;
uwe16f99092008-03-12 11:54:51 +00001001 break;
uwe61bf0dd2009-09-18 13:38:14 +00001002#if PRINT_WIKI_SUPPORT == 1
uwe8b452372009-06-19 10:42:43 +00001003 case 'z':
1004 list_supported_wiki = 1;
1005 break;
hailfinger0d784cd2009-09-16 12:19:03 +00001006#endif
hailfingerabe249e2009-05-08 17:43:22 +00001007 case 'p':
hailfinger3548a9a2009-08-12 14:34:35 +00001008 for (programmer = 0; programmer < PROGRAMMER_INVALID; programmer++) {
1009 name = programmer_table[programmer].name;
1010 namelen = strlen(name);
1011 if (strncmp(optarg, name, namelen) == 0) {
1012 switch (optarg[namelen]) {
hailfinger901b2a22009-08-19 15:03:28 +00001013 case ':':
hailfinger3548a9a2009-08-12 14:34:35 +00001014 programmer_param = strdup(optarg + namelen + 1);
1015 break;
1016 case '\0':
1017 break;
1018 default:
1019 /* The continue refers to the
1020 * for loop. It is here to be
1021 * able to differentiate between
1022 * foo and foobar.
1023 */
1024 continue;
1025 }
1026 break;
1027 }
1028 }
1029 if (programmer == PROGRAMMER_INVALID) {
hailfinger901b2a22009-08-19 15:03:28 +00001030 printf("Error: Unknown programmer %s.\n", optarg);
hailfingerabe249e2009-05-08 17:43:22 +00001031 exit(1);
1032 }
1033 break;
uwefdeca092008-01-21 15:24:22 +00001034 case 'R':
hailfingerf17c52f2009-05-07 00:59:53 +00001035 /* print_version() is always called during startup. */
uwefdeca092008-01-21 15:24:22 +00001036 exit(0);
1037 break;
ollie6a600992005-11-26 21:55:36 +00001038 case 'h':
ollie5672ac62004-03-17 22:22:08 +00001039 default:
1040 usage(argv[0]);
1041 break;
1042 }
1043 }
yhlu5d4383a2004-10-20 05:07:16 +00001044
uwe5f612c82009-05-16 23:42:17 +00001045 if (list_supported) {
hailfingera50d60e2009-11-17 09:57:34 +00001046 print_supported();
uwe5f612c82009-05-16 23:42:17 +00001047 exit(0);
1048 }
1049
uwe61bf0dd2009-09-18 13:38:14 +00001050#if PRINT_WIKI_SUPPORT == 1
uwe8b452372009-06-19 10:42:43 +00001051 if (list_supported_wiki) {
hailfingera50d60e2009-11-17 09:57:34 +00001052 print_supported_wiki();
uwe8b452372009-06-19 10:42:43 +00001053 exit(0);
1054 }
hailfinger0d784cd2009-09-16 12:19:03 +00001055#endif
uwe8b452372009-06-19 10:42:43 +00001056
ollie5672ac62004-03-17 22:22:08 +00001057 if (read_it && write_it) {
uwe017911e2008-05-22 22:47:04 +00001058 printf("Error: -r and -w are mutually exclusive.\n");
ollie5672ac62004-03-17 22:22:08 +00001059 usage(argv[0]);
1060 }
rminnich8d3ff912003-10-25 17:01:29 +00001061
ollie5672ac62004-03-17 22:22:08 +00001062 if (optind < argc)
1063 filename = argv[optind++];
hailfingera50d60e2009-11-17 09:57:34 +00001064
1065 if (optind < argc) {
1066 printf("Error: Extra parameter found.\n");
1067 usage(argv[0]);
1068 }
rminnich8d3ff912003-10-25 17:01:29 +00001069
hailfingerd9f5da22009-06-28 10:57:58 +00001070 if (programmer_init()) {
1071 fprintf(stderr, "Error: Programmer initialization failed.\n");
1072 exit(1);
1073 }
stepan927d4e22007-04-04 22:45:58 +00001074
ollie5672ac62004-03-17 22:22:08 +00001075 myusec_calibrate_delay();
ollie6a600992005-11-26 21:55:36 +00001076
stugec7354dc2008-05-08 00:31:44 +00001077 for (i = 0; i < ARRAY_SIZE(flashes); i++) {
uwefa98ca12008-10-18 21:14:13 +00001078 flashes[i] =
1079 probe_flash(i ? flashes[i - 1] + 1 : flashchips, 0);
stugec7354dc2008-05-08 00:31:44 +00001080 if (!flashes[i])
1081 for (i++; i < ARRAY_SIZE(flashes); i++)
1082 flashes[i] = NULL;
1083 }
1084
1085 if (flashes[1]) {
1086 printf("Multiple flash chips were detected:");
1087 for (i = 0; i < ARRAY_SIZE(flashes) && flashes[i]; i++)
1088 printf(" %s", flashes[i]->name);
1089 printf("\nPlease specify which chip to use with the -c <chipname> option.\n");
uweff4576d2009-09-30 18:29:55 +00001090 programmer_shutdown();
stugec7354dc2008-05-08 00:31:44 +00001091 exit(1);
1092 } else if (!flashes[0]) {
ollie6a600992005-11-26 21:55:36 +00001093 printf("No EEPROM/flash device found.\n");
stuge98c09aa2008-06-18 02:08:40 +00001094 if (!force || !chip_to_probe) {
1095 printf("If you know which flash chip you have, and if this version of flashrom\n");
1096 printf("supports a similar flash chip, you can try to force read your chip. Run:\n");
1097 printf("flashrom -f -r -c similar_supported_flash_chip filename\n");
1098 printf("\n");
1099 printf("Note: flashrom can never write when the flash chip isn't found automatically.\n");
1100 }
1101 if (force && read_it && chip_to_probe) {
1102 printf("Force read (-f -r -c) requested, forcing chip probe success:\n");
1103 flashes[0] = probe_flash(flashchips, 1);
1104 if (!flashes[0]) {
1105 printf("flashrom does not support a flash chip named '%s'.\n", chip_to_probe);
1106 printf("Run flashrom -L to view the hardware supported in this flashrom version.\n");
1107 exit(1);
1108 }
hailfinger0459e1c2009-08-19 13:55:34 +00001109 printf("Please note that forced reads most likely contain garbage.\n");
hailfinger09bd6f02009-06-19 11:23:57 +00001110 return read_flash(flashes[0], filename);
stuge98c09aa2008-06-18 02:08:40 +00001111 }
stepan9cbfb252007-10-04 06:26:41 +00001112 // FIXME: flash writes stay enabled!
uweff4576d2009-09-30 18:29:55 +00001113 programmer_shutdown();
ollie5672ac62004-03-17 22:22:08 +00001114 exit(1);
1115 }
rminnich8d3ff912003-10-25 17:01:29 +00001116
stugec7354dc2008-05-08 00:31:44 +00001117 flash = flashes[0];
1118
stuge9cd64bd2008-05-03 04:34:37 +00001119 if (TEST_OK_MASK != (flash->tested & TEST_OK_MASK)) {
1120 printf("===\n");
1121 if (flash->tested & TEST_BAD_MASK) {
1122 printf("This flash part has status NOT WORKING for operations:");
1123 if (flash->tested & TEST_BAD_PROBE)
1124 printf(" PROBE");
1125 if (flash->tested & TEST_BAD_READ)
1126 printf(" READ");
1127 if (flash->tested & TEST_BAD_ERASE)
1128 printf(" ERASE");
1129 if (flash->tested & TEST_BAD_WRITE)
1130 printf(" WRITE");
1131 printf("\n");
hailfinger6aaf46a2008-11-28 23:45:27 +00001132 }
1133 if ((!(flash->tested & TEST_BAD_PROBE) && !(flash->tested & TEST_OK_PROBE)) ||
1134 (!(flash->tested & TEST_BAD_READ) && !(flash->tested & TEST_OK_READ)) ||
1135 (!(flash->tested & TEST_BAD_ERASE) && !(flash->tested & TEST_OK_ERASE)) ||
1136 (!(flash->tested & TEST_BAD_WRITE) && !(flash->tested & TEST_OK_WRITE))) {
stuge9cd64bd2008-05-03 04:34:37 +00001137 printf("This flash part has status UNTESTED for operations:");
hailfinger6aaf46a2008-11-28 23:45:27 +00001138 if (!(flash->tested & TEST_BAD_PROBE) && !(flash->tested & TEST_OK_PROBE))
stuge9cd64bd2008-05-03 04:34:37 +00001139 printf(" PROBE");
hailfinger6aaf46a2008-11-28 23:45:27 +00001140 if (!(flash->tested & TEST_BAD_READ) && !(flash->tested & TEST_OK_READ))
stuge9cd64bd2008-05-03 04:34:37 +00001141 printf(" READ");
hailfinger6aaf46a2008-11-28 23:45:27 +00001142 if (!(flash->tested & TEST_BAD_ERASE) && !(flash->tested & TEST_OK_ERASE))
stuge9cd64bd2008-05-03 04:34:37 +00001143 printf(" ERASE");
hailfinger6aaf46a2008-11-28 23:45:27 +00001144 if (!(flash->tested & TEST_BAD_WRITE) && !(flash->tested & TEST_OK_WRITE))
stuge9cd64bd2008-05-03 04:34:37 +00001145 printf(" WRITE");
1146 printf("\n");
1147 }
stepan5388f172009-07-30 13:32:26 +00001148 printf("Please email a report to flashrom@flashrom.org if any "
uwe3cfe8a52009-05-21 15:55:46 +00001149 "of the above operations\nwork correctly for you with "
1150 "this flash part. Please include the flashrom\noutput "
1151 "with the additional -V option for all operations you "
1152 "tested (-V, -rV,\n-wV, -EV), and mention which "
1153 "mainboard you tested. Thanks for your help!\n===\n");
stuge9cd64bd2008-05-03 04:34:37 +00001154 }
ollie6a600992005-11-26 21:55:36 +00001155
hailfingeraec9c962009-10-31 01:53:09 +00001156 size = flash->total_size * 1024;
1157 if (check_max_decode((buses_supported & flash->bustype), size) &&
1158 (!force)) {
1159 fprintf(stderr, "Chip is too big for this programmer "
1160 "(-V gives details). Use --force to override.\n");
1161 programmer_shutdown();
1162 return 1;
1163 }
1164
stepan9cbfb252007-10-04 06:26:41 +00001165 if (!(read_it | write_it | verify_it | erase_it)) {
1166 printf("No operations were specified.\n");
1167 // FIXME: flash writes stay enabled!
uweff4576d2009-09-30 18:29:55 +00001168 programmer_shutdown();
stepan9cbfb252007-10-04 06:26:41 +00001169 exit(1);
1170 }
1171
ollie0eb62d62004-12-08 20:10:01 +00001172 if (!filename && !erase_it) {
stepan9cbfb252007-10-04 06:26:41 +00001173 printf("Error: No filename specified.\n");
1174 // FIXME: flash writes stay enabled!
uweff4576d2009-09-30 18:29:55 +00001175 programmer_shutdown();
stepan9cbfb252007-10-04 06:26:41 +00001176 exit(1);
ollie5672ac62004-03-17 22:22:08 +00001177 }
ollie5672ac62004-03-17 22:22:08 +00001178
uwe889a4992009-06-24 17:31:08 +00001179 /* Always verify write operations unless -n is used. */
1180 if (write_it && !dont_verify_it)
1181 verify_it = 1;
1182
ollie6a600992005-11-26 21:55:36 +00001183 buf = (uint8_t *) calloc(size, sizeof(char));
uwef6641642007-05-09 10:17:44 +00001184
ollie0eb62d62004-12-08 20:10:01 +00001185 if (erase_it) {
hailfinger0459e1c2009-08-19 13:55:34 +00001186 if (flash->tested & TEST_BAD_ERASE) {
1187 fprintf(stderr, "Erase is not working on this chip. ");
1188 if (!force) {
1189 fprintf(stderr, "Aborting.\n");
uweff4576d2009-09-30 18:29:55 +00001190 programmer_shutdown();
hailfinger0459e1c2009-08-19 13:55:34 +00001191 return 1;
1192 } else {
1193 fprintf(stderr, "Continuing anyway.\n");
1194 }
1195 }
1196 if (erase_flash(flash)) {
1197 emergency_help_message();
uweff4576d2009-09-30 18:29:55 +00001198 programmer_shutdown();
stuge8ce3a3c2008-04-28 14:47:30 +00001199 return 1;
hailfinger0459e1c2009-08-19 13:55:34 +00001200 }
ollie0eb62d62004-12-08 20:10:01 +00001201 } else if (read_it) {
uweff4576d2009-09-30 18:29:55 +00001202 if (read_flash(flash, filename)) {
1203 programmer_shutdown();
stugebbcc2f12009-01-12 21:00:35 +00001204 return 1;
uweff4576d2009-09-30 18:29:55 +00001205 }
ollie5672ac62004-03-17 22:22:08 +00001206 } else {
stepan1da96c02006-11-21 23:48:51 +00001207 struct stat image_stat;
1208
hailfinger0459e1c2009-08-19 13:55:34 +00001209 if (flash->tested & TEST_BAD_ERASE) {
1210 fprintf(stderr, "Erase is not working on this chip "
1211 "and erase is needed for write. ");
1212 if (!force) {
1213 fprintf(stderr, "Aborting.\n");
uweff4576d2009-09-30 18:29:55 +00001214 programmer_shutdown();
hailfinger0459e1c2009-08-19 13:55:34 +00001215 return 1;
1216 } else {
1217 fprintf(stderr, "Continuing anyway.\n");
1218 }
1219 }
1220 if (flash->tested & TEST_BAD_WRITE) {
1221 fprintf(stderr, "Write is not working on this chip. ");
1222 if (!force) {
1223 fprintf(stderr, "Aborting.\n");
uweff4576d2009-09-30 18:29:55 +00001224 programmer_shutdown();
hailfinger0459e1c2009-08-19 13:55:34 +00001225 return 1;
1226 } else {
1227 fprintf(stderr, "Continuing anyway.\n");
1228 }
1229 }
ollie5b621572004-03-20 16:46:10 +00001230 if ((image = fopen(filename, "r")) == NULL) {
ollie5672ac62004-03-17 22:22:08 +00001231 perror(filename);
uweff4576d2009-09-30 18:29:55 +00001232 programmer_shutdown();
ollie5672ac62004-03-17 22:22:08 +00001233 exit(1);
1234 }
stepan1da96c02006-11-21 23:48:51 +00001235 if (fstat(fileno(image), &image_stat) != 0) {
1236 perror(filename);
uweff4576d2009-09-30 18:29:55 +00001237 programmer_shutdown();
stepan1da96c02006-11-21 23:48:51 +00001238 exit(1);
1239 }
uwef6641642007-05-09 10:17:44 +00001240 if (image_stat.st_size != flash->total_size * 1024) {
uwe017911e2008-05-22 22:47:04 +00001241 fprintf(stderr, "Error: Image size doesn't match\n");
uweff4576d2009-09-30 18:29:55 +00001242 programmer_shutdown();
stepan1da96c02006-11-21 23:48:51 +00001243 exit(1);
1244 }
1245
stugebbcc2f12009-01-12 21:00:35 +00001246 numbytes = fread(buf, 1, size, image);
stuge98c09aa2008-06-18 02:08:40 +00001247 show_id(buf, size, force);
ollie5672ac62004-03-17 22:22:08 +00001248 fclose(image);
stugebbcc2f12009-01-12 21:00:35 +00001249 if (numbytes != size) {
1250 fprintf(stderr, "Error: Failed to read file. Got %ld bytes, wanted %ld!\n", numbytes, size);
uweff4576d2009-09-30 18:29:55 +00001251 programmer_shutdown();
stugebbcc2f12009-01-12 21:00:35 +00001252 return 1;
1253 }
ollie5672ac62004-03-17 22:22:08 +00001254 }
1255
ollie6a600992005-11-26 21:55:36 +00001256 // This should be moved into each flash part's code to do it
1257 // cleanly. This does the job.
hailfinger051b3442009-08-19 15:19:18 +00001258 handle_romentries(buf, flash);
uwef6641642007-05-09 10:17:44 +00001259
ollie6a600992005-11-26 21:55:36 +00001260 // ////////////////////////////////////////////////////////////
uwef6641642007-05-09 10:17:44 +00001261
stuge8ce3a3c2008-04-28 14:47:30 +00001262 if (write_it) {
hailfinger4e6f1fa2009-06-12 08:04:08 +00001263 printf("Writing flash chip... ");
stuge8ce3a3c2008-04-28 14:47:30 +00001264 if (!flash->write) {
1265 fprintf(stderr, "Error: flashrom has no write function for this flash chip.\n");
uweff4576d2009-09-30 18:29:55 +00001266 programmer_shutdown();
stuge8ce3a3c2008-04-28 14:47:30 +00001267 return 1;
1268 }
hailfingerdffbe6b2009-07-24 12:18:54 +00001269 ret = flash->write(flash, buf);
1270 if (ret) {
1271 fprintf(stderr, "FAILED!\n");
hailfinger0459e1c2009-08-19 13:55:34 +00001272 emergency_help_message();
uweff4576d2009-09-30 18:29:55 +00001273 programmer_shutdown();
hailfingerdffbe6b2009-07-24 12:18:54 +00001274 return 1;
1275 } else {
1276 printf("COMPLETE.\n");
1277 }
stuge8ce3a3c2008-04-28 14:47:30 +00001278 }
ollie6a600992005-11-26 21:55:36 +00001279
hailfinger0459e1c2009-08-19 13:55:34 +00001280 if (verify_it) {
1281 /* Work around chips which need some time to calm down. */
1282 if (write_it)
1283 programmer_delay(1000*1000);
hailfingerdffbe6b2009-07-24 12:18:54 +00001284 ret = verify_flash(flash, buf);
hailfingera50d60e2009-11-17 09:57:34 +00001285 /* If we tried to write, and verification now fails, we
hailfinger0459e1c2009-08-19 13:55:34 +00001286 * might have an emergency situation.
1287 */
1288 if (ret && write_it)
1289 emergency_help_message();
1290 }
ollie6a600992005-11-26 21:55:36 +00001291
hailfingerabe249e2009-05-08 17:43:22 +00001292 programmer_shutdown();
1293
stepan83eca252006-01-04 16:42:57 +00001294 return ret;
rminnich8d3ff912003-10-25 17:01:29 +00001295}