blob: 48d4289062a71ed4fb79bc6f2dce194ef1984557 [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
hailfingera83a5fe2010-05-30 22:24:40 +000024#include <stdio.h>
stepan1da96c02006-11-21 23:48:51 +000025#include <sys/types.h>
oxygene50275892010-09-30 17:03:32 +000026#ifndef __LIBPAYLOAD__
27#include <fcntl.h>
stepan1da96c02006-11-21 23:48:51 +000028#include <sys/stat.h>
oxygene50275892010-09-30 17:03:32 +000029#endif
rminnich8d3ff912003-10-25 17:01:29 +000030#include <string.h>
31#include <stdlib.h>
hailfingerf76cc322010-11-09 22:00:31 +000032#include <ctype.h>
ollie6a600992005-11-26 21:55:36 +000033#include <getopt.h>
hailfinger3b471632010-03-27 16:36:40 +000034#if HAVE_UTSNAME == 1
35#include <sys/utsname.h>
36#endif
rminnich8d3ff912003-10-25 17:01:29 +000037#include "flash.h"
hailfinger66966da2009-06-15 14:14:48 +000038#include "flashchips.h"
Simon Glass9ad06c12013-07-03 22:08:17 +090039#include "layout.h"
hailfinger428f6852010-07-27 22:41:39 +000040#include "programmer.h"
rminnich8d3ff912003-10-25 17:01:29 +000041
krause2eb76212011-01-17 07:50:42 +000042const char flashrom_version[] = FLASHROM_VERSION;
rminnich8d3ff912003-10-25 17:01:29 +000043char *chip_to_probe = NULL;
stuge98c09aa2008-06-18 02:08:40 +000044int verbose = 0;
hailfinger80422e22009-12-13 22:28:00 +000045
David Hendricks1ed1d352011-11-23 17:54:37 -080046/* error handling stuff */
47enum error_action access_denied_action = error_ignore;
48
49int ignore_error(int err) {
50 int rc = 0;
51
52 switch(err) {
53 case ACCESS_DENIED:
54 if (access_denied_action == error_ignore)
55 rc = 1;
56 break;
57 default:
58 break;
59 }
60
61 return rc;
62}
63
hailfinger969e2f32011-09-08 00:00:29 +000064static enum programmer programmer = PROGRAMMER_INVALID;
hailfinger80422e22009-12-13 22:28:00 +000065
hailfingerddeb4ac2010-07-08 10:13:37 +000066static char *programmer_param = NULL;
stepan782fb172007-04-06 11:58:03 +000067
hailfinger1ff33dc2010-07-03 11:02:10 +000068/* Supported buses for the current programmer. */
69enum chipbustype buses_supported;
hailfinger80422e22009-12-13 22:28:00 +000070
uwee15beb92010-08-08 17:01:18 +000071/*
hailfinger80422e22009-12-13 22:28:00 +000072 * Programmers supporting multiple buses can have differing size limits on
73 * each bus. Store the limits for each bus in a common struct.
74 */
hailfinger1ff33dc2010-07-03 11:02:10 +000075struct decode_sizes max_rom_decode;
76
77/* If nonzero, used as the start address of bottom-aligned flash. */
78unsigned long flashbase;
hailfinger80422e22009-12-13 22:28:00 +000079
hailfinger5828baf2010-07-03 12:14:25 +000080/* Is writing allowed with this programmer? */
81int programmer_may_write;
82
hailfingerabe249e2009-05-08 17:43:22 +000083const struct programmer_entry programmer_table[] = {
hailfinger90c7d542010-05-31 15:27:27 +000084#if CONFIG_INTERNAL == 1
hailfingerabe249e2009-05-08 17:43:22 +000085 {
hailfinger3548a9a2009-08-12 14:34:35 +000086 .name = "internal",
hailfinger6c69ab02009-05-11 15:46:43 +000087 .init = internal_init,
hailfinger11ae3c42009-05-11 14:13:25 +000088 .map_flash_region = physmap,
89 .unmap_flash_region = physunmap,
hailfingere5829f62009-06-05 17:48:08 +000090 .delay = internal_delay,
hailfingerabe249e2009-05-08 17:43:22 +000091 },
hailfinger80422e22009-12-13 22:28:00 +000092#endif
stepan927d4e22007-04-04 22:45:58 +000093
hailfinger90c7d542010-05-31 15:27:27 +000094#if CONFIG_DUMMY == 1
hailfingera9df33c2009-05-09 00:54:55 +000095 {
hailfinger3548a9a2009-08-12 14:34:35 +000096 .name = "dummy",
hailfinger6c69ab02009-05-11 15:46:43 +000097 .init = dummy_init,
hailfinger11ae3c42009-05-11 14:13:25 +000098 .map_flash_region = dummy_map,
99 .unmap_flash_region = dummy_unmap,
hailfingere5829f62009-06-05 17:48:08 +0000100 .delay = internal_delay,
hailfingera9df33c2009-05-09 00:54:55 +0000101 },
hailfinger571a6b32009-09-16 10:09:21 +0000102#endif
hailfingera9df33c2009-05-09 00:54:55 +0000103
hailfinger90c7d542010-05-31 15:27:27 +0000104#if CONFIG_NIC3COM == 1
uwe0f5a3a22009-05-13 11:36:06 +0000105 {
hailfinger3548a9a2009-08-12 14:34:35 +0000106 .name = "nic3com",
uwe0f5a3a22009-05-13 11:36:06 +0000107 .init = nic3com_init,
uwe3e656bd2009-05-17 23:12:17 +0000108 .map_flash_region = fallback_map,
109 .unmap_flash_region = fallback_unmap,
hailfingere5829f62009-06-05 17:48:08 +0000110 .delay = internal_delay,
uwe0f5a3a22009-05-13 11:36:06 +0000111 },
hailfinger571a6b32009-09-16 10:09:21 +0000112#endif
uwe0f5a3a22009-05-13 11:36:06 +0000113
hailfinger90c7d542010-05-31 15:27:27 +0000114#if CONFIG_NICREALTEK == 1
hailfinger5aa36982010-05-21 21:54:07 +0000115 {
hailfinger0d703d42011-03-07 01:08:09 +0000116 /* This programmer works for Realtek RTL8139 and SMC 1211. */
uwe8d342eb2011-07-28 08:13:25 +0000117 .name = "nicrealtek",
118 //.name = "nicsmc1211",
119 .init = nicrealtek_init,
120 .map_flash_region = fallback_map,
121 .unmap_flash_region = fallback_unmap,
uwe8d342eb2011-07-28 08:13:25 +0000122 .delay = internal_delay,
hailfinger5aa36982010-05-21 21:54:07 +0000123 },
hailfinger5aa36982010-05-21 21:54:07 +0000124#endif
125
hailfingerf0a368f2010-06-07 22:37:54 +0000126#if CONFIG_NICNATSEMI == 1
127 {
uwe8d342eb2011-07-28 08:13:25 +0000128 .name = "nicnatsemi",
129 .init = nicnatsemi_init,
130 .map_flash_region = fallback_map,
131 .unmap_flash_region = fallback_unmap,
uwe8d342eb2011-07-28 08:13:25 +0000132 .delay = internal_delay,
hailfingerf0a368f2010-06-07 22:37:54 +0000133 },
134#endif
hailfinger5aa36982010-05-21 21:54:07 +0000135
hailfinger90c7d542010-05-31 15:27:27 +0000136#if CONFIG_GFXNVIDIA == 1
uweff4576d2009-09-30 18:29:55 +0000137 {
138 .name = "gfxnvidia",
139 .init = gfxnvidia_init,
uweff4576d2009-09-30 18:29:55 +0000140 .map_flash_region = fallback_map,
141 .unmap_flash_region = fallback_unmap,
uweff4576d2009-09-30 18:29:55 +0000142 .delay = internal_delay,
143 },
144#endif
145
hailfinger90c7d542010-05-31 15:27:27 +0000146#if CONFIG_DRKAISER == 1
ruikda922a12009-05-17 19:39:27 +0000147 {
uwee2f95ef2009-09-02 23:00:46 +0000148 .name = "drkaiser",
149 .init = drkaiser_init,
uwee2f95ef2009-09-02 23:00:46 +0000150 .map_flash_region = fallback_map,
151 .unmap_flash_region = fallback_unmap,
uwee2f95ef2009-09-02 23:00:46 +0000152 .delay = internal_delay,
153 },
hailfinger571a6b32009-09-16 10:09:21 +0000154#endif
uwee2f95ef2009-09-02 23:00:46 +0000155
hailfinger90c7d542010-05-31 15:27:27 +0000156#if CONFIG_SATASII == 1
uwee2f95ef2009-09-02 23:00:46 +0000157 {
hailfinger3548a9a2009-08-12 14:34:35 +0000158 .name = "satasii",
ruikda922a12009-05-17 19:39:27 +0000159 .init = satasii_init,
uwe3e656bd2009-05-17 23:12:17 +0000160 .map_flash_region = fallback_map,
161 .unmap_flash_region = fallback_unmap,
hailfingere5829f62009-06-05 17:48:08 +0000162 .delay = internal_delay,
ruikda922a12009-05-17 19:39:27 +0000163 },
hailfinger571a6b32009-09-16 10:09:21 +0000164#endif
ruikda922a12009-05-17 19:39:27 +0000165
hailfinger90c7d542010-05-31 15:27:27 +0000166#if CONFIG_ATAHPT == 1
uwe7e627c82010-02-21 21:17:00 +0000167 {
168 .name = "atahpt",
169 .init = atahpt_init,
uwe7e627c82010-02-21 21:17:00 +0000170 .map_flash_region = fallback_map,
171 .unmap_flash_region = fallback_unmap,
uwe7e627c82010-02-21 21:17:00 +0000172 .delay = internal_delay,
173 },
174#endif
175
hailfinger90c7d542010-05-31 15:27:27 +0000176#if CONFIG_FT2232_SPI == 1
hailfingerf31da3d2009-06-16 21:08:06 +0000177 {
hailfinger90c7d542010-05-31 15:27:27 +0000178 .name = "ft2232_spi",
hailfingerf31da3d2009-06-16 21:08:06 +0000179 .init = ft2232_spi_init,
hailfinger6fe23d62009-08-12 11:39:29 +0000180 .map_flash_region = fallback_map,
181 .unmap_flash_region = fallback_unmap,
hailfingerf31da3d2009-06-16 21:08:06 +0000182 .delay = internal_delay,
183 },
hailfingerd9dcfbd2009-08-19 13:27:58 +0000184#endif
hailfinger6fe23d62009-08-12 11:39:29 +0000185
hailfinger90c7d542010-05-31 15:27:27 +0000186#if CONFIG_SERPROG == 1
hailfinger37b4fbf2009-06-23 11:33:43 +0000187 {
hailfinger3548a9a2009-08-12 14:34:35 +0000188 .name = "serprog",
hailfinger37b4fbf2009-06-23 11:33:43 +0000189 .init = serprog_init,
hailfinger37b4fbf2009-06-23 11:33:43 +0000190 .map_flash_region = fallback_map,
191 .unmap_flash_region = fallback_unmap,
hailfinger37b4fbf2009-06-23 11:33:43 +0000192 .delay = serprog_delay,
193 },
hailfinger74d88a72009-08-12 16:17:41 +0000194#endif
hailfingerf31da3d2009-06-16 21:08:06 +0000195
hailfinger90c7d542010-05-31 15:27:27 +0000196#if CONFIG_BUSPIRATE_SPI == 1
hailfinger9c5add72009-11-24 00:20:03 +0000197 {
hailfinger90c7d542010-05-31 15:27:27 +0000198 .name = "buspirate_spi",
hailfinger9c5add72009-11-24 00:20:03 +0000199 .init = buspirate_spi_init,
hailfinger9c5add72009-11-24 00:20:03 +0000200 .map_flash_region = fallback_map,
201 .unmap_flash_region = fallback_unmap,
hailfinger9c5add72009-11-24 00:20:03 +0000202 .delay = internal_delay,
203 },
204#endif
205
hailfinger90c7d542010-05-31 15:27:27 +0000206#if CONFIG_DEDIPROG == 1
hailfingerdfb32a02010-01-19 11:15:48 +0000207 {
208 .name = "dediprog",
209 .init = dediprog_init,
hailfingerdfb32a02010-01-19 11:15:48 +0000210 .map_flash_region = fallback_map,
211 .unmap_flash_region = fallback_unmap,
hailfingerdfb32a02010-01-19 11:15:48 +0000212 .delay = internal_delay,
213 },
214#endif
215
hailfinger52c4fa02010-07-21 10:26:01 +0000216#if CONFIG_RAYER_SPI == 1
217 {
218 .name = "rayer_spi",
219 .init = rayer_spi_init,
hailfinger52c4fa02010-07-21 10:26:01 +0000220 .map_flash_region = fallback_map,
221 .unmap_flash_region = fallback_unmap,
hailfinger52c4fa02010-07-21 10:26:01 +0000222 .delay = internal_delay,
223 },
224#endif
225
hailfinger7949b652011-05-08 00:24:18 +0000226#if CONFIG_NICINTEL == 1
227 {
228 .name = "nicintel",
229 .init = nicintel_init,
hailfinger7949b652011-05-08 00:24:18 +0000230 .map_flash_region = fallback_map,
231 .unmap_flash_region = fallback_unmap,
hailfinger7949b652011-05-08 00:24:18 +0000232 .delay = internal_delay,
233 },
234#endif
235
uwe6764e922010-09-03 18:21:21 +0000236#if CONFIG_NICINTEL_SPI == 1
237 {
uwe8d342eb2011-07-28 08:13:25 +0000238 .name = "nicintel_spi",
239 .init = nicintel_spi_init,
240 .map_flash_region = fallback_map,
241 .unmap_flash_region = fallback_unmap,
uwe8d342eb2011-07-28 08:13:25 +0000242 .delay = internal_delay,
uwe6764e922010-09-03 18:21:21 +0000243 },
244#endif
245
hailfingerfb1f31f2010-12-03 14:48:11 +0000246#if CONFIG_OGP_SPI == 1
247 {
uwe8d342eb2011-07-28 08:13:25 +0000248 .name = "ogp_spi",
249 .init = ogp_spi_init,
250 .map_flash_region = fallback_map,
251 .unmap_flash_region = fallback_unmap,
uwe8d342eb2011-07-28 08:13:25 +0000252 .delay = internal_delay,
hailfingerfb1f31f2010-12-03 14:48:11 +0000253 },
254#endif
255
hailfinger935365d2011-02-04 21:37:59 +0000256#if CONFIG_SATAMV == 1
257 {
258 .name = "satamv",
259 .init = satamv_init,
hailfinger935365d2011-02-04 21:37:59 +0000260 .map_flash_region = fallback_map,
261 .unmap_flash_region = fallback_unmap,
hailfinger935365d2011-02-04 21:37:59 +0000262 .delay = internal_delay,
263 },
264#endif
265
uwe7df6dda2011-09-03 18:37:52 +0000266#if CONFIG_LINUX_SPI == 1
267 {
268 .name = "linux_spi",
269 .init = linux_spi_init,
270 .map_flash_region = fallback_map,
271 .unmap_flash_region = fallback_unmap,
uwe7df6dda2011-09-03 18:37:52 +0000272 .delay = internal_delay,
273 },
274#endif
275
hailfinger3548a9a2009-08-12 14:34:35 +0000276 {}, /* This entry corresponds to PROGRAMMER_INVALID. */
hailfingerabe249e2009-05-08 17:43:22 +0000277};
stepan927d4e22007-04-04 22:45:58 +0000278
David Hendricksbf36f092010-11-02 23:39:29 -0700279#define CHIP_RESTORE_MAXFN 4
280static int chip_restore_fn_count = 0;
281struct chip_restore_func_data {
282 CHIP_RESTORE_CALLBACK;
283 struct flashchip *flash;
284 uint8_t status;
285} static chip_restore_fn[CHIP_RESTORE_MAXFN];
286
David Hendricks668f29d2011-01-27 18:51:45 -0800287
hailfingerf31cbdc2010-11-10 15:25:18 +0000288#define SHUTDOWN_MAXFN 32
hailfingerdc6f7972010-02-14 01:20:28 +0000289static int shutdown_fn_count = 0;
290struct shutdown_func_data {
dhendrix0ffc2eb2011-06-14 01:35:36 +0000291 int (*func) (void *data);
hailfingerdc6f7972010-02-14 01:20:28 +0000292 void *data;
hailfinger1ff33dc2010-07-03 11:02:10 +0000293} static shutdown_fn[SHUTDOWN_MAXFN];
294/* Initialize to 0 to make sure nobody registers a shutdown function before
295 * programmer init.
296 */
297static int may_register_shutdown = 0;
hailfingerdc6f7972010-02-14 01:20:28 +0000298
stefanct569dbb62011-07-01 00:19:12 +0000299static int check_block_eraser(const struct flashchip *flash, int k, int log);
300
hailfingerdc6f7972010-02-14 01:20:28 +0000301/* Register a function to be executed on programmer shutdown.
302 * The advantage over atexit() is that you can supply a void pointer which will
303 * be used as parameter to the registered function upon programmer shutdown.
304 * This pointer can point to arbitrary data used by said function, e.g. undo
305 * information for GPIO settings etc. If unneeded, set data=NULL.
306 * Please note that the first (void *data) belongs to the function signature of
307 * the function passed as first parameter.
308 */
dhendrix0ffc2eb2011-06-14 01:35:36 +0000309int register_shutdown(int (*function) (void *data), void *data)
hailfingerdc6f7972010-02-14 01:20:28 +0000310{
311 if (shutdown_fn_count >= SHUTDOWN_MAXFN) {
hailfinger63932d42010-06-04 23:20:21 +0000312 msg_perr("Tried to register more than %i shutdown functions.\n",
hailfingerdc6f7972010-02-14 01:20:28 +0000313 SHUTDOWN_MAXFN);
314 return 1;
315 }
hailfinger1ff33dc2010-07-03 11:02:10 +0000316 if (!may_register_shutdown) {
317 msg_perr("Tried to register a shutdown function before "
318 "programmer init.\n");
319 return 1;
320 }
hailfingerdc6f7972010-02-14 01:20:28 +0000321 shutdown_fn[shutdown_fn_count].func = function;
322 shutdown_fn[shutdown_fn_count].data = data;
323 shutdown_fn_count++;
324
325 return 0;
326}
327
David Hendricksbf36f092010-11-02 23:39:29 -0700328//int register_chip_restore(int (*function) (void *data), void *data)
329int register_chip_restore(CHIP_RESTORE_CALLBACK,
330 struct flashchip *flash, uint8_t status)
331{
332 if (chip_restore_fn_count >= CHIP_RESTORE_MAXFN) {
333 msg_perr("Tried to register more than %i chip restore"
334 " functions.\n", CHIP_RESTORE_MAXFN);
335 return 1;
336 }
337 chip_restore_fn[chip_restore_fn_count].func = func; /* from macro */
338 chip_restore_fn[chip_restore_fn_count].flash = flash;
339 chip_restore_fn[chip_restore_fn_count].status = status;
340 chip_restore_fn_count++;
341
342 return 0;
343}
344
hailfinger969e2f32011-09-08 00:00:29 +0000345int programmer_init(enum programmer prog, char *param)
uweabe92a52009-05-16 22:36:00 +0000346{
hailfinger1ef766d2010-07-06 09:55:48 +0000347 int ret;
hailfinger969e2f32011-09-08 00:00:29 +0000348
349 if (prog >= PROGRAMMER_INVALID) {
350 msg_perr("Invalid programmer specified!\n");
351 return -1;
352 }
353 programmer = prog;
hailfinger1ff33dc2010-07-03 11:02:10 +0000354 /* Initialize all programmer specific data. */
355 /* Default to unlimited decode sizes. */
356 max_rom_decode = (const struct decode_sizes) {
357 .parallel = 0xffffffff,
358 .lpc = 0xffffffff,
359 .fwh = 0xffffffff,
uwe8d342eb2011-07-28 08:13:25 +0000360 .spi = 0xffffffff,
hailfinger1ff33dc2010-07-03 11:02:10 +0000361 };
hailfingere1e41ea2011-07-27 07:13:06 +0000362 buses_supported = BUS_NONE;
hailfinger1ff33dc2010-07-03 11:02:10 +0000363 /* Default to top aligned flash at 4 GB. */
364 flashbase = 0;
365 /* Registering shutdown functions is now allowed. */
366 may_register_shutdown = 1;
hailfinger5828baf2010-07-03 12:14:25 +0000367 /* Default to allowing writes. Broken programmers set this to 0. */
368 programmer_may_write = 1;
hailfinger1ff33dc2010-07-03 11:02:10 +0000369
370 programmer_param = param;
371 msg_pdbg("Initializing %s programmer\n",
372 programmer_table[programmer].name);
hailfinger1ef766d2010-07-06 09:55:48 +0000373 ret = programmer_table[programmer].init();
374 if (programmer_param && strlen(programmer_param)) {
375 msg_perr("Unhandled programmer parameters: %s\n",
376 programmer_param);
377 /* Do not error out here, the init itself was successful. */
378 }
379 return ret;
uweabe92a52009-05-16 22:36:00 +0000380}
381
David Hendricksbf36f092010-11-02 23:39:29 -0700382int chip_restore()
383{
384 int rc = 0;
385
386 while (chip_restore_fn_count > 0) {
387 int i = --chip_restore_fn_count;
388 rc |= chip_restore_fn[i].func(chip_restore_fn[i].flash,
389 chip_restore_fn[i].status);
390 }
391
392 return rc;
393}
394
uweabe92a52009-05-16 22:36:00 +0000395int programmer_shutdown(void)
396{
dhendrix0ffc2eb2011-06-14 01:35:36 +0000397 int ret = 0;
398
hailfinger1ff33dc2010-07-03 11:02:10 +0000399 /* Registering shutdown functions is no longer allowed. */
400 may_register_shutdown = 0;
401 while (shutdown_fn_count > 0) {
402 int i = --shutdown_fn_count;
dhendrix0ffc2eb2011-06-14 01:35:36 +0000403 ret |= shutdown_fn[i].func(shutdown_fn[i].data);
hailfinger1ff33dc2010-07-03 11:02:10 +0000404 }
dhendrix0ffc2eb2011-06-14 01:35:36 +0000405 return ret;
uweabe92a52009-05-16 22:36:00 +0000406}
407
408void *programmer_map_flash_region(const char *descr, unsigned long phys_addr,
409 size_t len)
410{
411 return programmer_table[programmer].map_flash_region(descr,
412 phys_addr, len);
413}
414
415void programmer_unmap_flash_region(void *virt_addr, size_t len)
416{
417 programmer_table[programmer].unmap_flash_region(virt_addr, len);
418}
419
420void chip_writeb(uint8_t val, chipaddr addr)
421{
hailfinger76bb7e92011-11-09 23:40:00 +0000422 par_programmer->chip_writeb(val, addr);
uweabe92a52009-05-16 22:36:00 +0000423}
424
425void chip_writew(uint16_t val, chipaddr addr)
426{
hailfinger76bb7e92011-11-09 23:40:00 +0000427 par_programmer->chip_writew(val, addr);
uweabe92a52009-05-16 22:36:00 +0000428}
429
430void chip_writel(uint32_t val, chipaddr addr)
431{
hailfinger76bb7e92011-11-09 23:40:00 +0000432 par_programmer->chip_writel(val, addr);
uweabe92a52009-05-16 22:36:00 +0000433}
434
hailfinger9d987ef2009-06-05 18:32:07 +0000435void chip_writen(uint8_t *buf, chipaddr addr, size_t len)
436{
hailfinger76bb7e92011-11-09 23:40:00 +0000437 par_programmer->chip_writen(buf, addr, len);
hailfinger9d987ef2009-06-05 18:32:07 +0000438}
439
uweabe92a52009-05-16 22:36:00 +0000440uint8_t chip_readb(const chipaddr addr)
441{
hailfinger76bb7e92011-11-09 23:40:00 +0000442 return par_programmer->chip_readb(addr);
uweabe92a52009-05-16 22:36:00 +0000443}
444
445uint16_t chip_readw(const chipaddr addr)
446{
hailfinger76bb7e92011-11-09 23:40:00 +0000447 return par_programmer->chip_readw(addr);
uweabe92a52009-05-16 22:36:00 +0000448}
449
450uint32_t chip_readl(const chipaddr addr)
451{
hailfinger76bb7e92011-11-09 23:40:00 +0000452 return par_programmer->chip_readl(addr);
uweabe92a52009-05-16 22:36:00 +0000453}
454
hailfinger9d987ef2009-06-05 18:32:07 +0000455void chip_readn(uint8_t *buf, chipaddr addr, size_t len)
456{
hailfinger76bb7e92011-11-09 23:40:00 +0000457 par_programmer->chip_readn(buf, addr, len);
hailfinger9d987ef2009-06-05 18:32:07 +0000458}
459
hailfingere5829f62009-06-05 17:48:08 +0000460void programmer_delay(int usecs)
461{
462 programmer_table[programmer].delay(usecs);
463}
464
stuge5ff0e6c2009-01-26 00:39:57 +0000465void map_flash_registers(struct flashchip *flash)
stepan15e64bc2007-05-24 08:48:10 +0000466{
stepan15e64bc2007-05-24 08:48:10 +0000467 size_t size = flash->total_size * 1024;
hailfinger8577ad12009-05-11 14:01:17 +0000468 /* Flash registers live 4 MByte below the flash. */
hailfinger0459e1c2009-08-19 13:55:34 +0000469 /* FIXME: This is incorrect for nonstandard flashbase. */
hailfingerb91c08c2011-08-15 19:54:20 +0000470 flash->virtual_registers = (chipaddr)programmer_map_flash_region("flash chip registers", (0xFFFFFFFF - 0x400000 - size + 1), size);
stepan15e64bc2007-05-24 08:48:10 +0000471}
472
stefanctc5eb8a92011-11-23 09:13:48 +0000473int read_memmapped(struct flashchip *flash, uint8_t *buf, unsigned int start, int unsigned len)
hailfinger23060112009-05-08 12:49:03 +0000474{
hailfinger0f08b7a2009-06-16 08:55:44 +0000475 chip_readn(buf, flash->virtual_memory + start, len);
uwe8d342eb2011-07-28 08:13:25 +0000476
hailfinger23060112009-05-08 12:49:03 +0000477 return 0;
478}
479
hailfinger7b414742009-06-13 12:04:03 +0000480int min(int a, int b)
481{
482 return (a < b) ? a : b;
483}
484
hailfinger7af83692009-06-15 17:23:36 +0000485int max(int a, int b)
486{
487 return (a > b) ? a : b;
488}
489
hailfingeraec9c962009-10-31 01:53:09 +0000490int bitcount(unsigned long a)
491{
492 int i = 0;
493 for (; a != 0; a >>= 1)
494 if (a & 1)
495 i++;
496 return i;
497}
498
hailfingerf76cc322010-11-09 22:00:31 +0000499void tolower_string(char *str)
500{
501 for (; *str != '\0'; str++)
502 *str = (char)tolower((unsigned char)*str);
503}
504
hailfingera916b422009-06-01 02:08:58 +0000505char *strcat_realloc(char *dest, const char *src)
506{
507 dest = realloc(dest, strlen(dest) + strlen(src) + 1);
hailfinger1ef766d2010-07-06 09:55:48 +0000508 if (!dest) {
509 msg_gerr("Out of memory!\n");
hailfingera916b422009-06-01 02:08:58 +0000510 return NULL;
hailfinger1ef766d2010-07-06 09:55:48 +0000511 }
hailfingera916b422009-06-01 02:08:58 +0000512 strcat(dest, src);
513 return dest;
514}
515
hailfinger6e5a52a2009-11-24 18:27:10 +0000516/* This is a somewhat hacked function similar in some ways to strtok().
hailfinger1ef766d2010-07-06 09:55:48 +0000517 * It will look for needle with a subsequent '=' in haystack, return a copy of
518 * needle and remove everything from the first occurrence of needle to the next
519 * delimiter from haystack.
hailfinger6e5a52a2009-11-24 18:27:10 +0000520 */
stefanct52700282011-06-26 17:38:17 +0000521char *extract_param(char **haystack, const char *needle, const char *delim)
hailfinger6e5a52a2009-11-24 18:27:10 +0000522{
hailfinger1ef766d2010-07-06 09:55:48 +0000523 char *param_pos, *opt_pos, *rest;
524 char *opt = NULL;
525 int optlen;
hailfingerf4aaccc2010-04-28 15:22:14 +0000526 int needlelen;
hailfinger6e5a52a2009-11-24 18:27:10 +0000527
hailfingerf4aaccc2010-04-28 15:22:14 +0000528 needlelen = strlen(needle);
529 if (!needlelen) {
530 msg_gerr("%s: empty needle! Please report a bug at "
531 "flashrom@flashrom.org\n", __func__);
532 return NULL;
533 }
534 /* No programmer parameters given. */
535 if (*haystack == NULL)
536 return NULL;
hailfinger6e5a52a2009-11-24 18:27:10 +0000537 param_pos = strstr(*haystack, needle);
538 do {
539 if (!param_pos)
540 return NULL;
hailfinger1ef766d2010-07-06 09:55:48 +0000541 /* Needle followed by '='? */
542 if (param_pos[needlelen] == '=') {
Simon Glass8dc82732013-07-16 10:13:51 -0600543
hailfinger1ef766d2010-07-06 09:55:48 +0000544 /* Beginning of the string? */
545 if (param_pos == *haystack)
546 break;
547 /* After a delimiter? */
548 if (strchr(delim, *(param_pos - 1)))
549 break;
550 }
hailfinger6e5a52a2009-11-24 18:27:10 +0000551 /* Continue searching. */
552 param_pos++;
553 param_pos = strstr(param_pos, needle);
554 } while (1);
uwe8d342eb2011-07-28 08:13:25 +0000555
hailfinger6e5a52a2009-11-24 18:27:10 +0000556 if (param_pos) {
hailfinger1ef766d2010-07-06 09:55:48 +0000557 /* Get the string after needle and '='. */
558 opt_pos = param_pos + needlelen + 1;
559 optlen = strcspn(opt_pos, delim);
560 /* Return an empty string if the parameter was empty. */
561 opt = malloc(optlen + 1);
562 if (!opt) {
snelsone42c3802010-05-07 20:09:04 +0000563 msg_gerr("Out of memory!\n");
hailfinger6e5a52a2009-11-24 18:27:10 +0000564 exit(1);
565 }
hailfinger1ef766d2010-07-06 09:55:48 +0000566 strncpy(opt, opt_pos, optlen);
567 opt[optlen] = '\0';
568 rest = opt_pos + optlen;
569 /* Skip all delimiters after the current parameter. */
570 rest += strspn(rest, delim);
571 memmove(param_pos, rest, strlen(rest) + 1);
572 /* We could shrink haystack, but the effort is not worth it. */
hailfinger6e5a52a2009-11-24 18:27:10 +0000573 }
hailfinger6e5a52a2009-11-24 18:27:10 +0000574
hailfinger1ef766d2010-07-06 09:55:48 +0000575 return opt;
hailfinger6e5a52a2009-11-24 18:27:10 +0000576}
577
stefanct52700282011-06-26 17:38:17 +0000578char *extract_programmer_param(const char *param_name)
hailfingerddeb4ac2010-07-08 10:13:37 +0000579{
580 return extract_param(&programmer_param, param_name, ",");
581}
582
stefancte1c5acf2011-07-04 07:27:17 +0000583/* Returns the number of well-defined erasers for a chip. */
584static unsigned int count_usable_erasers(const struct flashchip *flash)
stefanct569dbb62011-07-01 00:19:12 +0000585{
586 unsigned int usable_erasefunctions = 0;
587 int k;
588 for (k = 0; k < NUM_ERASEFUNCTIONS; k++) {
589 if (!check_block_eraser(flash, k, 0))
590 usable_erasefunctions++;
591 }
592 return usable_erasefunctions;
593}
594
hailfinger7af83692009-06-15 17:23:36 +0000595/* start is an offset to the base address of the flash chip */
stefanctc5eb8a92011-11-23 09:13:48 +0000596int check_erased_range(struct flashchip *flash, unsigned int start, unsigned int len)
hailfinger7af83692009-06-15 17:23:36 +0000597{
598 int ret;
599 uint8_t *cmpbuf = malloc(len);
600
601 if (!cmpbuf) {
snelsone42c3802010-05-07 20:09:04 +0000602 msg_gerr("Could not allocate memory!\n");
hailfinger7af83692009-06-15 17:23:36 +0000603 exit(1);
604 }
Simon Glass4c214132013-07-16 10:09:28 -0600605 memset(cmpbuf, flash_erase_value(flash), len);
hailfinger7af83692009-06-15 17:23:36 +0000606 ret = verify_range(flash, cmpbuf, start, len, "ERASE");
607 free(cmpbuf);
608 return ret;
609}
610
uwee15beb92010-08-08 17:01:18 +0000611/*
hailfinger7af3d192009-11-25 17:05:52 +0000612 * @cmpbuf buffer to compare against, cmpbuf[0] is expected to match the
uwe8d342eb2011-07-28 08:13:25 +0000613 * flash content at location start
hailfinger7af83692009-06-15 17:23:36 +0000614 * @start offset to the base address of the flash chip
615 * @len length of the verified area
616 * @message string to print in the "FAILED" message
617 * @return 0 for success, -1 for failure
618 */
stefanctc5eb8a92011-11-23 09:13:48 +0000619int verify_range(struct flashchip *flash, uint8_t *cmpbuf, unsigned int start, unsigned int len,
uwe8d342eb2011-07-28 08:13:25 +0000620 const char *message)
hailfinger7af83692009-06-15 17:23:36 +0000621{
stefanctc5eb8a92011-11-23 09:13:48 +0000622 unsigned int i;
hailfinger8cb6ece2010-11-16 17:21:58 +0000623 uint8_t *readbuf = malloc(len);
hailfingerb91c08c2011-08-15 19:54:20 +0000624 int ret = 0, failcount = 0;
David Hendricks1ed1d352011-11-23 17:54:37 -0800625 unsigned int chunksize;
hailfinger7af83692009-06-15 17:23:36 +0000626
627 if (!len)
628 goto out_free;
629
hailfingerb0f4d122009-06-24 08:20:45 +0000630 if (!flash->read) {
snelsone42c3802010-05-07 20:09:04 +0000631 msg_cerr("ERROR: flashrom has no read function for this flash chip.\n");
hailfingerb0f4d122009-06-24 08:20:45 +0000632 return 1;
633 }
hailfinger7af83692009-06-15 17:23:36 +0000634 if (!readbuf) {
snelsone42c3802010-05-07 20:09:04 +0000635 msg_gerr("Could not allocate memory!\n");
hailfinger7af83692009-06-15 17:23:36 +0000636 exit(1);
637 }
638
639 if (start + len > flash->total_size * 1024) {
snelsone42c3802010-05-07 20:09:04 +0000640 msg_gerr("Error: %s called with start 0x%x + len 0x%x >"
hailfinger7af83692009-06-15 17:23:36 +0000641 " total_size 0x%x\n", __func__, start, len,
642 flash->total_size * 1024);
643 ret = -1;
644 goto out_free;
645 }
646 if (!message)
647 message = "VERIFY";
uwe8d342eb2011-07-28 08:13:25 +0000648
David Hendricks758e2fb2014-08-19 20:34:43 -0700649 for (i = 0, chunksize = 0; i < len; i += chunksize) {
David Hendricks1ed1d352011-11-23 17:54:37 -0800650 int tmp, j;
651
David Hendricks758e2fb2014-08-19 20:34:43 -0700652 chunksize = min(flash->page_size, len - i);
David Hendricks1ed1d352011-11-23 17:54:37 -0800653 tmp = flash->read(flash, readbuf + i, start + i, chunksize);
654
David Hendrickse3451942013-03-21 17:23:29 -0700655 /* Since this function explicitly compares the bytes, we need
656 to handle errors manually */
David Hendricks1ed1d352011-11-23 17:54:37 -0800657 if (tmp) {
658 ret = tmp;
David Hendricks758e2fb2014-08-19 20:34:43 -0700659 if (ignore_error(tmp))
David Hendricks1ed1d352011-11-23 17:54:37 -0800660 continue;
David Hendricks758e2fb2014-08-19 20:34:43 -0700661 else
David Hendricks1ed1d352011-11-23 17:54:37 -0800662 goto out_free;
David Hendricks1ed1d352011-11-23 17:54:37 -0800663 }
664
665 for (j = 0; j < chunksize; j++) {
666 if (cmpbuf[i + j] != readbuf[i + j]) {
667 /* Only print the first failure. */
668 if (!failcount++)
669 msg_cerr("%s FAILED at 0x%08x! "
670 "Expected=0x%02x, Read=0x%02x,",
671 message, start + i + j, cmpbuf[i + j],
672 readbuf[j]);
673 }
674 }
hailfinger8cb6ece2010-11-16 17:21:58 +0000675 }
676
hailfinger5be6c0f2009-07-23 01:42:56 +0000677 if (failcount) {
snelsone42c3802010-05-07 20:09:04 +0000678 msg_cerr(" failed byte count from 0x%08x-0x%08x: 0x%x\n",
uwe8d342eb2011-07-28 08:13:25 +0000679 start, start + len - 1, failcount);
hailfinger5be6c0f2009-07-23 01:42:56 +0000680 ret = -1;
681 }
hailfinger7af83692009-06-15 17:23:36 +0000682
683out_free:
684 free(readbuf);
685 return ret;
686}
687
uwee15beb92010-08-08 17:01:18 +0000688/*
hailfingerb247c7a2010-03-08 00:42:32 +0000689 * Check if the buffer @have can be programmed to the content of @want without
690 * erasing. This is only possible if all chunks of size @gran are either kept
691 * as-is or changed from an all-ones state to any other state.
hailfingerb437e282010-11-04 01:04:27 +0000692 *
hailfingerb247c7a2010-03-08 00:42:32 +0000693 * The following write granularities (enum @gran) are known:
694 * - 1 bit. Each bit can be cleared individually.
695 * - 1 byte. A byte can be written once. Further writes to an already written
696 * byte cause the contents to be either undefined or to stay unchanged.
697 * - 128 bytes. If less than 128 bytes are written, the rest will be
698 * erased. Each write to a 128-byte region will trigger an automatic erase
699 * before anything is written. Very uncommon behaviour and unsupported by
700 * this function.
701 * - 256 bytes. If less than 256 bytes are written, the contents of the
702 * unwritten bytes are undefined.
hailfingerb437e282010-11-04 01:04:27 +0000703 * Warning: This function assumes that @have and @want point to naturally
704 * aligned regions.
hailfingerb247c7a2010-03-08 00:42:32 +0000705 *
706 * @have buffer with current content
707 * @want buffer with desired content
hailfingerb437e282010-11-04 01:04:27 +0000708 * @len length of the checked area
hailfingerb247c7a2010-03-08 00:42:32 +0000709 * @gran write granularity (enum, not count)
710 * @return 0 if no erase is needed, 1 otherwise
711 */
Simon Glass4c214132013-07-16 10:09:28 -0600712static int need_erase(struct flashchip *flash, uint8_t *have, uint8_t *want,
713 unsigned int len, enum write_granularity gran)
hailfingerb247c7a2010-03-08 00:42:32 +0000714{
hailfingerb91c08c2011-08-15 19:54:20 +0000715 int result = 0;
stefanctc5eb8a92011-11-23 09:13:48 +0000716 unsigned int i, j, limit;
Simon Glass4c214132013-07-16 10:09:28 -0600717 int erase_value = flash_erase_value(flash);
hailfingerb247c7a2010-03-08 00:42:32 +0000718
719 switch (gran) {
720 case write_gran_1bit:
721 for (i = 0; i < len; i++)
722 if ((have[i] & want[i]) != want[i]) {
723 result = 1;
724 break;
725 }
726 break;
727 case write_gran_1byte:
728 for (i = 0; i < len; i++)
Simon Glass4c214132013-07-16 10:09:28 -0600729 if ((have[i] != want[i]) && (have[i] != erase_value)) {
hailfingerb247c7a2010-03-08 00:42:32 +0000730 result = 1;
731 break;
732 }
733 break;
734 case write_gran_256bytes:
735 for (j = 0; j < len / 256; j++) {
736 limit = min (256, len - j * 256);
uwef6f94d42010-03-13 17:28:29 +0000737 /* Are 'have' and 'want' identical? */
hailfingerb247c7a2010-03-08 00:42:32 +0000738 if (!memcmp(have + j * 256, want + j * 256, limit))
739 continue;
740 /* have needs to be in erased state. */
741 for (i = 0; i < limit; i++)
Simon Glass4c214132013-07-16 10:09:28 -0600742 if (have[j * 256 + i] != erase_value) {
hailfingerb247c7a2010-03-08 00:42:32 +0000743 result = 1;
744 break;
745 }
746 if (result)
747 break;
748 }
749 break;
hailfingerb437e282010-11-04 01:04:27 +0000750 default:
751 msg_cerr("%s: Unsupported granularity! Please report a bug at "
752 "flashrom@flashrom.org\n", __func__);
hailfingerb247c7a2010-03-08 00:42:32 +0000753 }
754 return result;
755}
756
hailfingerb437e282010-11-04 01:04:27 +0000757/**
758 * Check if the buffer @have needs to be programmed to get the content of @want.
759 * If yes, return 1 and fill in first_start with the start address of the
760 * write operation and first_len with the length of the first to-be-written
761 * chunk. If not, return 0 and leave first_start and first_len undefined.
762 *
763 * Warning: This function assumes that @have and @want point to naturally
764 * aligned regions.
765 *
766 * @have buffer with current content
767 * @want buffer with desired content
768 * @len length of the checked area
769 * @gran write granularity (enum, not count)
hailfinger90fcf9b2010-11-05 14:51:59 +0000770 * @first_start offset of the first byte which needs to be written (passed in
771 * value is increased by the offset of the first needed write
772 * relative to have/want or unchanged if no write is needed)
773 * @return length of the first contiguous area which needs to be written
774 * 0 if no write is needed
hailfingerb437e282010-11-04 01:04:27 +0000775 *
776 * FIXME: This function needs a parameter which tells it about coalescing
777 * in relation to the max write length of the programmer and the max write
778 * length of the chip.
779 */
stefanctc5eb8a92011-11-23 09:13:48 +0000780static unsigned int get_next_write(uint8_t *have, uint8_t *want, unsigned int len,
781 unsigned int *first_start,
782 enum write_granularity gran)
hailfingerb437e282010-11-04 01:04:27 +0000783{
stefanctc5eb8a92011-11-23 09:13:48 +0000784 int need_write = 0;
785 unsigned int rel_start = 0, first_len = 0;
786 unsigned int i, limit, stride;
hailfingerb437e282010-11-04 01:04:27 +0000787
hailfingerb437e282010-11-04 01:04:27 +0000788 switch (gran) {
789 case write_gran_1bit:
790 case write_gran_1byte:
hailfinger90fcf9b2010-11-05 14:51:59 +0000791 stride = 1;
hailfingerb437e282010-11-04 01:04:27 +0000792 break;
793 case write_gran_256bytes:
hailfinger90fcf9b2010-11-05 14:51:59 +0000794 stride = 256;
hailfingerb437e282010-11-04 01:04:27 +0000795 break;
796 default:
797 msg_cerr("%s: Unsupported granularity! Please report a bug at "
798 "flashrom@flashrom.org\n", __func__);
hailfinger90fcf9b2010-11-05 14:51:59 +0000799 /* Claim that no write was needed. A write with unknown
800 * granularity is too dangerous to try.
801 */
802 return 0;
hailfingerb437e282010-11-04 01:04:27 +0000803 }
hailfinger90fcf9b2010-11-05 14:51:59 +0000804 for (i = 0; i < len / stride; i++) {
805 limit = min(stride, len - i * stride);
806 /* Are 'have' and 'want' identical? */
807 if (memcmp(have + i * stride, want + i * stride, limit)) {
808 if (!need_write) {
809 /* First location where have and want differ. */
810 need_write = 1;
811 rel_start = i * stride;
812 }
813 } else {
814 if (need_write) {
815 /* First location where have and want
816 * do not differ anymore.
817 */
hailfinger90fcf9b2010-11-05 14:51:59 +0000818 break;
819 }
820 }
821 }
hailfingerffb7f382010-12-06 13:05:44 +0000822 if (need_write)
hailfinger90fcf9b2010-11-05 14:51:59 +0000823 first_len = min(i * stride - rel_start, len);
hailfingerb437e282010-11-04 01:04:27 +0000824 *first_start += rel_start;
hailfinger90fcf9b2010-11-05 14:51:59 +0000825 return first_len;
hailfingerb437e282010-11-04 01:04:27 +0000826}
827
hailfinger0c515352009-11-23 12:55:31 +0000828/* This function generates various test patterns useful for testing controller
829 * and chip communication as well as chip behaviour.
830 *
831 * If a byte can be written multiple times, each time keeping 0-bits at 0
832 * and changing 1-bits to 0 if the new value for that bit is 0, the effect
833 * is essentially an AND operation. That's also the reason why this function
834 * provides the result of AND between various patterns.
835 *
836 * Below is a list of patterns (and their block length).
837 * Pattern 0 is 05 15 25 35 45 55 65 75 85 95 a5 b5 c5 d5 e5 f5 (16 Bytes)
838 * Pattern 1 is 0a 1a 2a 3a 4a 5a 6a 7a 8a 9a aa ba ca da ea fa (16 Bytes)
839 * Pattern 2 is 50 51 52 53 54 55 56 57 58 59 5a 5b 5c 5d 5e 5f (16 Bytes)
840 * Pattern 3 is a0 a1 a2 a3 a4 a5 a6 a7 a8 a9 aa ab ac ad ae af (16 Bytes)
841 * Pattern 4 is 00 10 20 30 40 50 60 70 80 90 a0 b0 c0 d0 e0 f0 (16 Bytes)
842 * Pattern 5 is 00 01 02 03 04 05 06 07 08 09 0a 0b 0c 0d 0e 0f (16 Bytes)
843 * Pattern 6 is 00 (1 Byte)
844 * Pattern 7 is ff (1 Byte)
845 * Patterns 0-7 have a big-endian block number in the last 2 bytes of each 256
846 * byte block.
847 *
848 * Pattern 8 is 00 01 02 03 04 05 06 07 08 09 0a 0b 0c 0d 0e 0f 10 11... (256 B)
849 * Pattern 9 is ff fe fd fc fb fa f9 f8 f7 f6 f5 f4 f3 f2 f1 f0 ef ee... (256 B)
850 * Pattern 10 is 00 00 00 01 00 02 00 03 00 04... (128 kB big-endian counter)
851 * Pattern 11 is ff ff ff fe ff fd ff fc ff fb... (128 kB big-endian downwards)
852 * Pattern 12 is 00 (1 Byte)
853 * Pattern 13 is ff (1 Byte)
854 * Patterns 8-13 have no block number.
855 *
856 * Patterns 0-3 are created to detect and efficiently diagnose communication
857 * slips like missed bits or bytes and their repetitive nature gives good visual
858 * cues to the person inspecting the results. In addition, the following holds:
859 * AND Pattern 0/1 == Pattern 4
860 * AND Pattern 2/3 == Pattern 5
861 * AND Pattern 0/1/2/3 == AND Pattern 4/5 == Pattern 6
862 * A weakness of pattern 0-5 is the inability to detect swaps/copies between
863 * any two 16-byte blocks except for the last 16-byte block in a 256-byte bloc.
864 * They work perfectly for detecting any swaps/aliasing of blocks >= 256 bytes.
865 * 0x5 and 0xa were picked because they are 0101 and 1010 binary.
866 * Patterns 8-9 are best for detecting swaps/aliasing of blocks < 256 bytes.
867 * Besides that, they provide for bit testing of the last two bytes of every
868 * 256 byte block which contains the block number for patterns 0-6.
869 * Patterns 10-11 are special purpose for detecting subblock aliasing with
870 * block sizes >256 bytes (some Dataflash chips etc.)
871 * AND Pattern 8/9 == Pattern 12
872 * AND Pattern 10/11 == Pattern 12
873 * Pattern 13 is the completely erased state.
874 * None of the patterns can detect aliasing at boundaries which are a multiple
875 * of 16 MBytes (but such chips do not exist anyway for Parallel/LPC/FWH/SPI).
876 */
877int generate_testpattern(uint8_t *buf, uint32_t size, int variant)
878{
879 int i;
880
881 if (!buf) {
snelsone42c3802010-05-07 20:09:04 +0000882 msg_gerr("Invalid buffer!\n");
hailfinger0c515352009-11-23 12:55:31 +0000883 return 1;
884 }
885
886 switch (variant) {
887 case 0:
888 for (i = 0; i < size; i++)
889 buf[i] = (i & 0xf) << 4 | 0x5;
890 break;
891 case 1:
892 for (i = 0; i < size; i++)
893 buf[i] = (i & 0xf) << 4 | 0xa;
894 break;
895 case 2:
896 for (i = 0; i < size; i++)
897 buf[i] = 0x50 | (i & 0xf);
898 break;
899 case 3:
900 for (i = 0; i < size; i++)
901 buf[i] = 0xa0 | (i & 0xf);
902 break;
903 case 4:
904 for (i = 0; i < size; i++)
905 buf[i] = (i & 0xf) << 4;
906 break;
907 case 5:
908 for (i = 0; i < size; i++)
909 buf[i] = i & 0xf;
910 break;
911 case 6:
912 memset(buf, 0x00, size);
913 break;
914 case 7:
915 memset(buf, 0xff, size);
916 break;
917 case 8:
918 for (i = 0; i < size; i++)
919 buf[i] = i & 0xff;
920 break;
921 case 9:
922 for (i = 0; i < size; i++)
923 buf[i] = ~(i & 0xff);
924 break;
925 case 10:
926 for (i = 0; i < size % 2; i++) {
927 buf[i * 2] = (i >> 8) & 0xff;
928 buf[i * 2 + 1] = i & 0xff;
929 }
930 if (size & 0x1)
931 buf[i * 2] = (i >> 8) & 0xff;
932 break;
933 case 11:
934 for (i = 0; i < size % 2; i++) {
935 buf[i * 2] = ~((i >> 8) & 0xff);
936 buf[i * 2 + 1] = ~(i & 0xff);
937 }
938 if (size & 0x1)
939 buf[i * 2] = ~((i >> 8) & 0xff);
940 break;
941 case 12:
942 memset(buf, 0x00, size);
943 break;
944 case 13:
945 memset(buf, 0xff, size);
946 break;
947 }
948
949 if ((variant >= 0) && (variant <= 7)) {
950 /* Write block number in the last two bytes of each 256-byte
951 * block, big endian for easier reading of the hexdump.
952 * Note that this wraps around for chips larger than 2^24 bytes
953 * (16 MB).
954 */
955 for (i = 0; i < size / 256; i++) {
956 buf[i * 256 + 254] = (i >> 8) & 0xff;
957 buf[i * 256 + 255] = i & 0xff;
958 }
959 }
960
961 return 0;
962}
963
hailfingeraec9c962009-10-31 01:53:09 +0000964int check_max_decode(enum chipbustype buses, uint32_t size)
965{
966 int limitexceeded = 0;
uwe8d342eb2011-07-28 08:13:25 +0000967
968 if ((buses & BUS_PARALLEL) && (max_rom_decode.parallel < size)) {
hailfingeraec9c962009-10-31 01:53:09 +0000969 limitexceeded++;
snelsone42c3802010-05-07 20:09:04 +0000970 msg_pdbg("Chip size %u kB is bigger than supported "
uwe8d342eb2011-07-28 08:13:25 +0000971 "size %u kB of chipset/board/programmer "
972 "for %s interface, "
973 "probe/read/erase/write may fail. ", size / 1024,
974 max_rom_decode.parallel / 1024, "Parallel");
hailfingeraec9c962009-10-31 01:53:09 +0000975 }
hailfingere1e41ea2011-07-27 07:13:06 +0000976 if ((buses & BUS_LPC) && (max_rom_decode.lpc < size)) {
hailfingeraec9c962009-10-31 01:53:09 +0000977 limitexceeded++;
snelsone42c3802010-05-07 20:09:04 +0000978 msg_pdbg("Chip size %u kB is bigger than supported "
uwe8d342eb2011-07-28 08:13:25 +0000979 "size %u kB of chipset/board/programmer "
980 "for %s interface, "
981 "probe/read/erase/write may fail. ", size / 1024,
982 max_rom_decode.lpc / 1024, "LPC");
hailfingeraec9c962009-10-31 01:53:09 +0000983 }
hailfingere1e41ea2011-07-27 07:13:06 +0000984 if ((buses & BUS_FWH) && (max_rom_decode.fwh < size)) {
hailfingeraec9c962009-10-31 01:53:09 +0000985 limitexceeded++;
snelsone42c3802010-05-07 20:09:04 +0000986 msg_pdbg("Chip size %u kB is bigger than supported "
uwe8d342eb2011-07-28 08:13:25 +0000987 "size %u kB of chipset/board/programmer "
988 "for %s interface, "
989 "probe/read/erase/write may fail. ", size / 1024,
990 max_rom_decode.fwh / 1024, "FWH");
hailfingeraec9c962009-10-31 01:53:09 +0000991 }
hailfingere1e41ea2011-07-27 07:13:06 +0000992 if ((buses & BUS_SPI) && (max_rom_decode.spi < size)) {
hailfingeraec9c962009-10-31 01:53:09 +0000993 limitexceeded++;
snelsone42c3802010-05-07 20:09:04 +0000994 msg_pdbg("Chip size %u kB is bigger than supported "
uwe8d342eb2011-07-28 08:13:25 +0000995 "size %u kB of chipset/board/programmer "
996 "for %s interface, "
997 "probe/read/erase/write may fail. ", size / 1024,
998 max_rom_decode.spi / 1024, "SPI");
hailfingeraec9c962009-10-31 01:53:09 +0000999 }
1000 if (!limitexceeded)
1001 return 0;
1002 /* Sometimes chip and programmer have more than one bus in common,
1003 * and the limit is not exceeded on all buses. Tell the user.
1004 */
1005 if (bitcount(buses) > limitexceeded)
hailfinger92cd8e32010-01-07 03:24:05 +00001006 /* FIXME: This message is designed towards CLI users. */
snelsone42c3802010-05-07 20:09:04 +00001007 msg_pdbg("There is at least one common chip/programmer "
uwe8d342eb2011-07-28 08:13:25 +00001008 "interface which can support a chip of this size. "
1009 "You can try --force at your own risk.\n");
hailfingeraec9c962009-10-31 01:53:09 +00001010 return 1;
1011}
1012
hailfinger48ed3e22011-05-04 00:39:50 +00001013int probe_flash(int startchip, struct flashchip *fill_flash, int force)
rminnich8d3ff912003-10-25 17:01:29 +00001014{
hailfinger48ed3e22011-05-04 00:39:50 +00001015 const struct flashchip *flash;
hailfingeraec9c962009-10-31 01:53:09 +00001016 unsigned long base = 0;
stepan3e7aeae2011-01-19 06:21:54 +00001017 char location[64];
hailfingeraec9c962009-10-31 01:53:09 +00001018 uint32_t size;
1019 enum chipbustype buses_common;
hailfingera916b422009-06-01 02:08:58 +00001020 char *tmp;
rminnich8d3ff912003-10-25 17:01:29 +00001021
hailfinger48ed3e22011-05-04 00:39:50 +00001022 for (flash = flashchips + startchip; flash && flash->name; flash++) {
stugec1e55fe2008-07-02 17:15:47 +00001023 if (chip_to_probe && strcmp(flash->name, chip_to_probe) != 0)
ollie5672ac62004-03-17 22:22:08 +00001024 continue;
hailfingeraec9c962009-10-31 01:53:09 +00001025 buses_common = buses_supported & flash->bustype;
1026 if (!buses_common) {
hailfinger18bd4cc2011-06-17 22:38:53 +00001027 msg_gspew("Probing for %s %s, %d kB: skipped. ",
1028 flash->vendor, flash->name, flash->total_size);
hailfingera916b422009-06-01 02:08:58 +00001029 tmp = flashbuses_to_text(buses_supported);
hailfinger18bd4cc2011-06-17 22:38:53 +00001030 msg_gspew("Host bus type %s ", tmp);
hailfingera916b422009-06-01 02:08:58 +00001031 free(tmp);
1032 tmp = flashbuses_to_text(flash->bustype);
hailfinger327d2522010-03-22 23:43:51 +00001033 msg_gspew("and chip bus type %s are incompatible.",
1034 tmp);
hailfingera916b422009-06-01 02:08:58 +00001035 free(tmp);
hailfinger18bd4cc2011-06-17 22:38:53 +00001036 msg_gspew("\n");
1037 continue;
1038 }
1039 msg_gdbg("Probing for %s %s, %d kB: ",
1040 flash->vendor, flash->name, flash->total_size);
1041 if (!flash->probe && !force) {
1042 msg_gdbg("failed! flashrom has no probe function for "
1043 "this flash chip.\n");
hailfingera916b422009-06-01 02:08:58 +00001044 continue;
1045 }
stepan782fb172007-04-06 11:58:03 +00001046
ollie5672ac62004-03-17 22:22:08 +00001047 size = flash->total_size * 1024;
hailfingeraec9c962009-10-31 01:53:09 +00001048 check_max_decode(buses_common, size);
stepan782fb172007-04-06 11:58:03 +00001049
hailfinger48ed3e22011-05-04 00:39:50 +00001050 /* Start filling in the dynamic data. */
1051 *fill_flash = *flash;
1052
hailfinger72d3b982009-05-09 07:27:23 +00001053 base = flashbase ? flashbase : (0xffffffff - size + 1);
hailfinger48ed3e22011-05-04 00:39:50 +00001054 fill_flash->virtual_memory = (chipaddr)programmer_map_flash_region("flash chip", base, size);
rminnich8d3ff912003-10-25 17:01:29 +00001055
stugec1e55fe2008-07-02 17:15:47 +00001056 if (force)
1057 break;
stepanc98b80b2006-03-16 16:57:41 +00001058
hailfinger48ed3e22011-05-04 00:39:50 +00001059 if (fill_flash->probe(fill_flash) != 1)
stuge56300c32008-09-03 23:10:05 +00001060 goto notfound;
1061
hailfinger48ed3e22011-05-04 00:39:50 +00001062 /* If this is the first chip found, accept it.
1063 * If this is not the first chip found, accept it only if it is
1064 * a non-generic match.
1065 * We could either make chipcount global or provide it as
1066 * parameter, or we assume that startchip==0 means this call to
1067 * probe_flash() is the first one and thus no chip has been
1068 * found before.
1069 */
1070 if (startchip == 0 || fill_flash->model_id != GENERIC_DEVICE_ID)
stugec1e55fe2008-07-02 17:15:47 +00001071 break;
1072
stuge56300c32008-09-03 23:10:05 +00001073notfound:
hailfinger48ed3e22011-05-04 00:39:50 +00001074 programmer_unmap_flash_region((void *)fill_flash->virtual_memory, size);
rminnich8d3ff912003-10-25 17:01:29 +00001075 }
uwebe4477b2007-08-23 16:08:21 +00001076
stugec1e55fe2008-07-02 17:15:47 +00001077 if (!flash || !flash->name)
hailfinger48ed3e22011-05-04 00:39:50 +00001078 return -1;
stugec1e55fe2008-07-02 17:15:47 +00001079
hailfingere11396b2011-03-08 00:09:11 +00001080#if CONFIG_INTERNAL == 1
1081 if (programmer_table[programmer].map_flash_region == physmap)
stepan3e7aeae2011-01-19 06:21:54 +00001082 snprintf(location, sizeof(location), "at physical address 0x%lx", base);
hailfingere11396b2011-03-08 00:09:11 +00001083 else
1084#endif
stepan3e7aeae2011-01-19 06:21:54 +00001085 snprintf(location, sizeof(location), "on %s", programmer_table[programmer].name);
stepan3e7aeae2011-01-19 06:21:54 +00001086
stefanct588b6d22011-06-26 20:45:35 +00001087 tmp = flashbuses_to_text(flash->bustype);
stefanctdfd58832011-07-25 20:38:52 +00001088 msg_cdbg("%s %s flash chip \"%s\" (%d kB, %s) %s.\n",
1089 force ? "Assuming" : "Found", fill_flash->vendor,
1090 fill_flash->name, fill_flash->total_size, tmp, location);
stefanct588b6d22011-06-26 20:45:35 +00001091 free(tmp);
uwe9e6811e2009-06-28 21:47:57 +00001092
hailfinger0f4c3952010-12-02 21:59:42 +00001093 /* Flash registers will not be mapped if the chip was forced. Lock info
1094 * may be stored in registers, so avoid lock info printing.
1095 */
1096 if (!force)
hailfinger48ed3e22011-05-04 00:39:50 +00001097 if (fill_flash->printlock)
1098 fill_flash->printlock(fill_flash);
snelson1ee293c2010-02-19 00:52:10 +00001099
hailfinger48ed3e22011-05-04 00:39:50 +00001100 /* Return position of matching chip. */
1101 return flash - flashchips;
rminnich8d3ff912003-10-25 17:01:29 +00001102}
1103
Louis Yung-Chieh Lo5d95f042011-09-01 17:33:06 +08001104int verify_flash(struct flashchip *flash, uint8_t *buf, int verify_it)
rminnich8d3ff912003-10-25 17:01:29 +00001105{
hailfingerb0f4d122009-06-24 08:20:45 +00001106 int ret;
stefanctc5eb8a92011-11-23 09:13:48 +00001107 unsigned int total_size = flash->total_size * 1024;
rminnich8d3ff912003-10-25 17:01:29 +00001108
snelsone42c3802010-05-07 20:09:04 +00001109 msg_cinfo("Verifying flash... ");
uwef6641642007-05-09 10:17:44 +00001110
Louis Yung-Chieh Lo5d95f042011-09-01 17:33:06 +08001111 if (specified_partition() && verify_it == VERIFY_PARTIAL) {
1112 ret = handle_partial_verify(flash, buf, verify_range);
1113 } else {
1114 ret = verify_range(flash, buf, 0, total_size, NULL);
1115 }
uwef6641642007-05-09 10:17:44 +00001116
David Hendricks1ed1d352011-11-23 17:54:37 -08001117 if (ret == ACCESS_DENIED) {
1118 msg_gdbg("Could not fully verify due to access error, ");
1119 if (access_denied_action == error_ignore) {
1120 msg_gdbg("ignoring\n");
1121 ret = 0;
1122 } else {
1123 msg_gdbg("aborting\n");
1124 }
1125 }
1126
hailfingerb0f4d122009-06-24 08:20:45 +00001127 if (!ret)
snelsone42c3802010-05-07 20:09:04 +00001128 msg_cinfo("VERIFIED. \n");
stepanc98b80b2006-03-16 16:57:41 +00001129
hailfingerb0f4d122009-06-24 08:20:45 +00001130 return ret;
rminnich8d3ff912003-10-25 17:01:29 +00001131}
1132
uwe8d342eb2011-07-28 08:13:25 +00001133int read_buf_from_file(unsigned char *buf, unsigned long size,
1134 const char *filename)
hailfinger771fc182010-10-15 00:01:14 +00001135{
1136 unsigned long numbytes;
1137 FILE *image;
1138 struct stat image_stat;
1139
1140 if ((image = fopen(filename, "rb")) == NULL) {
1141 perror(filename);
1142 return 1;
1143 }
1144 if (fstat(fileno(image), &image_stat) != 0) {
1145 perror(filename);
1146 fclose(image);
1147 return 1;
1148 }
1149 if (image_stat.st_size != size) {
1150 msg_gerr("Error: Image size doesn't match\n");
1151 fclose(image);
1152 return 1;
1153 }
1154 numbytes = fread(buf, 1, size, image);
1155 if (fclose(image)) {
1156 perror(filename);
1157 return 1;
1158 }
1159 if (numbytes != size) {
1160 msg_gerr("Error: Failed to read complete file. Got %ld bytes, "
1161 "wanted %ld!\n", numbytes, size);
1162 return 1;
1163 }
1164 return 0;
1165}
1166
uwe8d342eb2011-07-28 08:13:25 +00001167int write_buf_to_file(unsigned char *buf, unsigned long size,
1168 const char *filename)
hailfingerd219a232009-01-28 00:27:54 +00001169{
1170 unsigned long numbytes;
1171 FILE *image;
hailfingerde345862009-06-01 22:07:52 +00001172
1173 if (!filename) {
hailfinger42a850a2010-07-13 23:56:13 +00001174 msg_gerr("No filename specified.\n");
hailfingerde345862009-06-01 22:07:52 +00001175 return 1;
1176 }
oxygenebf70d352010-01-25 22:55:33 +00001177 if ((image = fopen(filename, "wb")) == NULL) {
hailfingerd219a232009-01-28 00:27:54 +00001178 perror(filename);
hailfinger23060112009-05-08 12:49:03 +00001179 return 1;
hailfinger42a850a2010-07-13 23:56:13 +00001180 }
hailfingerd219a232009-01-28 00:27:54 +00001181
hailfingerd219a232009-01-28 00:27:54 +00001182 numbytes = fwrite(buf, 1, size, image);
1183 fclose(image);
hailfinger42a850a2010-07-13 23:56:13 +00001184 if (numbytes != size) {
1185 msg_gerr("File %s could not be written completely.\n",
1186 filename);
hailfingerd219a232009-01-28 00:27:54 +00001187 return 1;
hailfinger42a850a2010-07-13 23:56:13 +00001188 }
hailfingerd219a232009-01-28 00:27:54 +00001189 return 0;
1190}
1191
David Hendrickse3451942013-03-21 17:23:29 -07001192/*
1193 * read_flash - wrapper for flash->read() with additional high-level policy
1194 *
1195 * @flash flash chip
1196 * @buf buffer to store data in
1197 * @start start address
1198 * @len number of bytes to read
1199 *
1200 * This wrapper simplifies most cases when the flash chip needs to be read
1201 * since policy decisions such as non-fatal error handling is centralized.
1202 */
1203int read_flash(struct flashchip *flash, uint8_t *buf,
1204 unsigned int start, unsigned int len)
1205{
David Hendricks4e76fdc2013-05-13 16:05:36 -07001206 int ret;
David Hendrickse3451942013-03-21 17:23:29 -07001207
1208 if (!flash || !flash->read)
1209 return -1;
1210
David Hendricks4e76fdc2013-05-13 16:05:36 -07001211 ret = flash->read(flash, buf, start, len);
David Hendrickse3451942013-03-21 17:23:29 -07001212 if (ret) {
1213 if (ignore_error(ret)) {
1214 msg_gdbg("ignoring error when reading 0x%x-0x%x\n",
1215 start, start + len - 1);
1216 ret = 0;
1217 } else {
1218 msg_gdbg("failed to read 0x%x-0x%x\n",
1219 start, start + len - 1);
1220 }
1221 }
1222
1223 return ret;
1224}
1225
David Hendricks7c8a1612013-04-26 19:14:44 -07001226/*
1227 * write_flash - wrapper for flash->write() with additional high-level policy
1228 *
1229 * @flash flash chip
1230 * @buf buffer to write to flash
1231 * @start start address in flash
1232 * @len number of bytes to write
1233 *
1234 * TODO: Look up regions that are write-protected and avoid attempt to write
1235 * to them at all.
1236 */
1237int write_flash(struct flashchip *flash, uint8_t *buf,
1238 unsigned int start, unsigned int len)
1239{
1240 if (!flash || !flash->write)
1241 return -1;
1242
1243 return flash->write(flash, buf, start, len);
1244}
1245
stefanct52700282011-06-26 17:38:17 +00001246int read_flash_to_file(struct flashchip *flash, const char *filename)
hailfinger42a850a2010-07-13 23:56:13 +00001247{
1248 unsigned long size = flash->total_size * 1024;
1249 unsigned char *buf = calloc(size, sizeof(char));
1250 int ret = 0;
1251
1252 msg_cinfo("Reading flash... ");
1253 if (!buf) {
1254 msg_gerr("Memory allocation failed!\n");
1255 msg_cinfo("FAILED.\n");
1256 return 1;
1257 }
Louis Yung-Chieh Lo9c7525f2011-03-04 12:32:02 +08001258
1259 /* To support partial read, fill buffer to all 0xFF at beginning to make
1260 * debug easier. */
Simon Glass4c214132013-07-16 10:09:28 -06001261 memset(buf, flash_erase_value(flash), size);
Louis Yung-Chieh Lo9c7525f2011-03-04 12:32:02 +08001262
hailfinger42a850a2010-07-13 23:56:13 +00001263 if (!flash->read) {
1264 msg_cerr("No read function available for this flash chip.\n");
1265 ret = 1;
1266 goto out_free;
1267 }
Louis Yung-Chieh Lo9c7525f2011-03-04 12:32:02 +08001268
1269 /* First try to handle partial read case, rather than read the whole
1270 * flash, which is slow. */
David Hendrickse3451942013-03-21 17:23:29 -07001271 ret = handle_partial_read(flash, buf, read_flash, 1);
Louis Yung-Chieh Lo9c7525f2011-03-04 12:32:02 +08001272 if (ret < 0) {
1273 msg_cerr("Partial read operation failed!\n");
1274 ret = 1;
1275 goto out_free;
1276 } else if (ret > 0) {
David Hendricksdf29a832013-06-28 14:33:51 -07001277 int num_regions = get_num_include_args();
1278
1279 if (ret != num_regions) {
1280 msg_cerr("Requested %d regions, but only read %d\n",
1281 num_regions, ret);
1282 ret = 1;
1283 goto out_free;
1284 }
1285
1286 ret = 0;
David Hendricks1ed1d352011-11-23 17:54:37 -08001287 } else {
David Hendrickse3451942013-03-21 17:23:29 -07001288 if (read_flash(flash, buf, 0, size)) {
David Hendricks1ed1d352011-11-23 17:54:37 -08001289 msg_cerr("Read operation failed!\n");
1290 ret = 1;
1291 goto out_free;
1292 }
hailfinger42a850a2010-07-13 23:56:13 +00001293 }
1294
David Hendricksdf29a832013-06-28 14:33:51 -07001295 if (filename)
1296 ret = write_buf_to_file(buf, size, filename);
1297
hailfinger42a850a2010-07-13 23:56:13 +00001298out_free:
1299 free(buf);
David Hendricksc6c9f822010-11-03 15:07:01 -07001300 if (ret)
1301 msg_cerr("FAILED.");
1302 else
1303 msg_cdbg("done.");
hailfinger42a850a2010-07-13 23:56:13 +00001304 return ret;
1305}
1306
hailfingerb437e282010-11-04 01:04:27 +00001307/* This function shares a lot of its structure with erase_and_write_flash() and
1308 * walk_eraseregions().
hailfinger9fed35d2010-01-19 06:42:46 +00001309 * Even if an error is found, the function will keep going and check the rest.
1310 */
hailfinger48ed3e22011-05-04 00:39:50 +00001311static int selfcheck_eraseblocks(const struct flashchip *flash)
hailfinger45177872010-01-18 08:14:43 +00001312{
hailfingerb91c08c2011-08-15 19:54:20 +00001313 int i, j, k;
1314 int ret = 0;
hailfinger45177872010-01-18 08:14:43 +00001315
1316 for (k = 0; k < NUM_ERASEFUNCTIONS; k++) {
1317 unsigned int done = 0;
1318 struct block_eraser eraser = flash->block_erasers[k];
1319
1320 for (i = 0; i < NUM_ERASEREGIONS; i++) {
1321 /* Blocks with zero size are bugs in flashchips.c. */
1322 if (eraser.eraseblocks[i].count &&
1323 !eraser.eraseblocks[i].size) {
1324 msg_gerr("ERROR: Flash chip %s erase function "
1325 "%i region %i has size 0. Please report"
1326 " a bug at flashrom@flashrom.org\n",
1327 flash->name, k, i);
hailfinger9fed35d2010-01-19 06:42:46 +00001328 ret = 1;
hailfinger45177872010-01-18 08:14:43 +00001329 }
1330 /* Blocks with zero count are bugs in flashchips.c. */
1331 if (!eraser.eraseblocks[i].count &&
1332 eraser.eraseblocks[i].size) {
1333 msg_gerr("ERROR: Flash chip %s erase function "
1334 "%i region %i has count 0. Please report"
1335 " a bug at flashrom@flashrom.org\n",
1336 flash->name, k, i);
hailfinger9fed35d2010-01-19 06:42:46 +00001337 ret = 1;
hailfinger45177872010-01-18 08:14:43 +00001338 }
1339 done += eraser.eraseblocks[i].count *
1340 eraser.eraseblocks[i].size;
1341 }
hailfinger9fed35d2010-01-19 06:42:46 +00001342 /* Empty eraseblock definition with erase function. */
1343 if (!done && eraser.block_erase)
snelsone42c3802010-05-07 20:09:04 +00001344 msg_gspew("Strange: Empty eraseblock definition with "
uwe8d342eb2011-07-28 08:13:25 +00001345 "non-empty erase function. Not an error.\n");
hailfinger45177872010-01-18 08:14:43 +00001346 if (!done)
1347 continue;
1348 if (done != flash->total_size * 1024) {
1349 msg_gerr("ERROR: Flash chip %s erase function %i "
1350 "region walking resulted in 0x%06x bytes total,"
1351 " expected 0x%06x bytes. Please report a bug at"
1352 " flashrom@flashrom.org\n", flash->name, k,
1353 done, flash->total_size * 1024);
hailfinger9fed35d2010-01-19 06:42:46 +00001354 ret = 1;
hailfinger45177872010-01-18 08:14:43 +00001355 }
hailfinger9fed35d2010-01-19 06:42:46 +00001356 if (!eraser.block_erase)
1357 continue;
1358 /* Check if there are identical erase functions for different
1359 * layouts. That would imply "magic" erase functions. The
1360 * easiest way to check this is with function pointers.
1361 */
uwef6f94d42010-03-13 17:28:29 +00001362 for (j = k + 1; j < NUM_ERASEFUNCTIONS; j++) {
hailfinger9fed35d2010-01-19 06:42:46 +00001363 if (eraser.block_erase ==
1364 flash->block_erasers[j].block_erase) {
1365 msg_gerr("ERROR: Flash chip %s erase function "
1366 "%i and %i are identical. Please report"
1367 " a bug at flashrom@flashrom.org\n",
1368 flash->name, k, j);
1369 ret = 1;
1370 }
uwef6f94d42010-03-13 17:28:29 +00001371 }
hailfinger45177872010-01-18 08:14:43 +00001372 }
hailfinger9fed35d2010-01-19 06:42:46 +00001373 return ret;
hailfinger45177872010-01-18 08:14:43 +00001374}
1375
hailfingerb437e282010-11-04 01:04:27 +00001376static int erase_and_write_block_helper(struct flashchip *flash,
1377 unsigned int start, unsigned int len,
hailfinger90fcf9b2010-11-05 14:51:59 +00001378 uint8_t *curcontents,
hailfingerb437e282010-11-04 01:04:27 +00001379 uint8_t *newcontents,
1380 int (*erasefn) (struct flashchip *flash,
1381 unsigned int addr,
1382 unsigned int len))
1383{
stefanctc5eb8a92011-11-23 09:13:48 +00001384 unsigned int starthere = 0, lenhere = 0;
1385 int ret = 0, skip = 1, writecount = 0;
hailfingerb437e282010-11-04 01:04:27 +00001386 enum write_granularity gran = write_gran_256bytes; /* FIXME */
1387
hailfinger90fcf9b2010-11-05 14:51:59 +00001388 /* curcontents and newcontents are opaque to walk_eraseregions, and
hailfingerb437e282010-11-04 01:04:27 +00001389 * need to be adjusted here to keep the impression of proper abstraction
1390 */
hailfinger90fcf9b2010-11-05 14:51:59 +00001391 curcontents += start;
hailfingerb437e282010-11-04 01:04:27 +00001392 newcontents += start;
1393 msg_cdbg(":");
1394 /* FIXME: Assume 256 byte granularity for now to play it safe. */
Simon Glass4c214132013-07-16 10:09:28 -06001395 if (need_erase(flash, curcontents, newcontents, len, gran)) {
hailfingerb437e282010-11-04 01:04:27 +00001396 msg_cdbg("E");
1397 ret = erasefn(flash, start, len);
David Hendricks1ed1d352011-11-23 17:54:37 -08001398 if (ret) {
1399 if (ret == ACCESS_DENIED)
1400 msg_cdbg("D");
1401 else
1402 msg_cerr("ERASE FAILED!\n");
hailfingerb437e282010-11-04 01:04:27 +00001403 return ret;
David Hendricks1ed1d352011-11-23 17:54:37 -08001404 }
1405
hailfingerac8e3182011-06-26 17:04:16 +00001406 if (check_erased_range(flash, start, len)) {
1407 msg_cerr("ERASE FAILED!\n");
1408 return -1;
1409 }
hailfinger90fcf9b2010-11-05 14:51:59 +00001410 /* Erase was successful. Adjust curcontents. */
Simon Glass4c214132013-07-16 10:09:28 -06001411 memset(curcontents, flash_erase_value(flash), len);
hailfingerb437e282010-11-04 01:04:27 +00001412 skip = 0;
1413 }
hailfinger90fcf9b2010-11-05 14:51:59 +00001414 /* get_next_write() sets starthere to a new value after the call. */
1415 while ((lenhere = get_next_write(curcontents + starthere,
1416 newcontents + starthere,
1417 len - starthere, &starthere, gran))) {
hailfingerb437e282010-11-04 01:04:27 +00001418 if (!writecount++)
1419 msg_cdbg("W");
1420 /* Needs the partial write function signature. */
David Hendricks7c8a1612013-04-26 19:14:44 -07001421 ret = write_flash(flash, newcontents + starthere,
hailfingerb437e282010-11-04 01:04:27 +00001422 start + starthere, lenhere);
David Hendricks1ed1d352011-11-23 17:54:37 -08001423 if (ret) {
1424 if (ret == ACCESS_DENIED)
1425 msg_cdbg("D");
hailfingerb437e282010-11-04 01:04:27 +00001426 return ret;
David Hendricks1ed1d352011-11-23 17:54:37 -08001427 }
hailfingerb437e282010-11-04 01:04:27 +00001428 starthere += lenhere;
1429 skip = 0;
1430 }
1431 if (skip)
1432 msg_cdbg("S");
1433 return ret;
1434}
1435
hailfinger83541b32010-07-13 00:42:00 +00001436static int walk_eraseregions(struct flashchip *flash, int erasefunction,
1437 int (*do_something) (struct flashchip *flash,
1438 unsigned int addr,
hailfingerb437e282010-11-04 01:04:27 +00001439 unsigned int len,
1440 uint8_t *param1,
1441 uint8_t *param2,
1442 int (*erasefn) (
1443 struct flashchip *flash,
1444 unsigned int addr,
1445 unsigned int len)),
1446 void *param1, void *param2)
hailfinger2b8c9382010-07-13 00:37:19 +00001447{
David Hendricks1ed1d352011-11-23 17:54:37 -08001448 int i, j, rc = 0;
hailfingerb91c08c2011-08-15 19:54:20 +00001449 unsigned int start = 0;
1450 unsigned int len;
hailfinger2b8c9382010-07-13 00:37:19 +00001451 struct block_eraser eraser = flash->block_erasers[erasefunction];
uwe8d342eb2011-07-28 08:13:25 +00001452
hailfinger2b8c9382010-07-13 00:37:19 +00001453 for (i = 0; i < NUM_ERASEREGIONS; i++) {
1454 /* count==0 for all automatically initialized array
1455 * members so the loop below won't be executed for them.
1456 */
1457 len = eraser.eraseblocks[i].size;
1458 for (j = 0; j < eraser.eraseblocks[i].count; j++) {
hailfingerb437e282010-11-04 01:04:27 +00001459 /* Print this for every block except the first one. */
1460 if (i || j)
1461 msg_cdbg(", ");
1462 msg_cdbg("0x%06x-0x%06x", start,
hailfinger2b8c9382010-07-13 00:37:19 +00001463 start + len - 1);
David Hendricks1ed1d352011-11-23 17:54:37 -08001464 rc = do_something(flash, start, len, param1, param2,
1465 eraser.block_erase);
1466 if (rc) {
1467 if (ignore_error(rc))
1468 rc = 0;
1469 else
1470 return rc;
hailfingerb437e282010-11-04 01:04:27 +00001471 }
hailfinger2b8c9382010-07-13 00:37:19 +00001472 start += len;
1473 }
1474 }
hailfingerb437e282010-11-04 01:04:27 +00001475 msg_cdbg("\n");
David Hendricks1ed1d352011-11-23 17:54:37 -08001476 return rc;
hailfinger2b8c9382010-07-13 00:37:19 +00001477}
1478
stefanct569dbb62011-07-01 00:19:12 +00001479static int check_block_eraser(const struct flashchip *flash, int k, int log)
hailfingercf848f12010-12-05 15:14:44 +00001480{
1481 struct block_eraser eraser = flash->block_erasers[k];
1482
1483 if (!eraser.block_erase && !eraser.eraseblocks[0].count) {
1484 if (log)
1485 msg_cdbg("not defined. ");
1486 return 1;
1487 }
1488 if (!eraser.block_erase && eraser.eraseblocks[0].count) {
1489 if (log)
1490 msg_cdbg("eraseblock layout is known, but matching "
stefanct9e6b98a2011-05-28 02:37:14 +00001491 "block erase function is not implemented. ");
hailfingercf848f12010-12-05 15:14:44 +00001492 return 1;
1493 }
1494 if (eraser.block_erase && !eraser.eraseblocks[0].count) {
1495 if (log)
1496 msg_cdbg("block erase function found, but "
stefanct9e6b98a2011-05-28 02:37:14 +00001497 "eraseblock layout is not defined. ");
hailfingercf848f12010-12-05 15:14:44 +00001498 return 1;
1499 }
1500 return 0;
1501}
1502
uwe8d342eb2011-07-28 08:13:25 +00001503int erase_and_write_flash(struct flashchip *flash, uint8_t *oldcontents,
1504 uint8_t *newcontents)
hailfingerd219a232009-01-28 00:27:54 +00001505{
hailfinger8f524a82011-07-21 21:21:04 +00001506 int k, ret = 1;
hailfingerb437e282010-11-04 01:04:27 +00001507 uint8_t *curcontents;
1508 unsigned long size = flash->total_size * 1024;
stefancte1c5acf2011-07-04 07:27:17 +00001509 unsigned int usable_erasefunctions = count_usable_erasers(flash);
hailfingercf848f12010-12-05 15:14:44 +00001510
hailfingercf848f12010-12-05 15:14:44 +00001511 msg_cinfo("Erasing and writing flash chip... ");
stefanctd611e8f2011-07-12 22:35:21 +00001512 curcontents = malloc(size);
1513 if (!curcontents) {
1514 msg_gerr("Out of memory!\n");
1515 exit(1);
1516 }
hailfingerb437e282010-11-04 01:04:27 +00001517 /* Copy oldcontents to curcontents to avoid clobbering oldcontents. */
1518 memcpy(curcontents, oldcontents, size);
1519
hailfinger7df21362009-09-05 02:30:58 +00001520 for (k = 0; k < NUM_ERASEFUNCTIONS; k++) {
stefanctf0bc4712011-07-26 14:28:35 +00001521 if (k != 0)
1522 msg_cdbg("Looking for another erase function.\n");
hailfinger8f524a82011-07-21 21:21:04 +00001523 if (!usable_erasefunctions) {
1524 msg_cdbg("No usable erase functions left.\n");
1525 break;
1526 }
stefanctf0bc4712011-07-26 14:28:35 +00001527 msg_cdbg("Trying erase function %i... ", k);
1528 if (check_block_eraser(flash, k, 1))
hailfinger7df21362009-09-05 02:30:58 +00001529 continue;
hailfingercf848f12010-12-05 15:14:44 +00001530 usable_erasefunctions--;
stefanctf0bc4712011-07-26 14:28:35 +00001531 ret = walk_eraseregions(flash, k, &erase_and_write_block_helper,
1532 curcontents, newcontents);
hailfinger7df21362009-09-05 02:30:58 +00001533 /* If everything is OK, don't try another erase function. */
1534 if (!ret)
1535 break;
hailfinger6237f5e2010-12-02 02:41:55 +00001536 /* Write/erase failed, so try to find out what the current chip
hailfinger8f524a82011-07-21 21:21:04 +00001537 * contents are. If no usable erase functions remain, we can
1538 * skip this: the next iteration will break immediately anyway.
hailfingerb437e282010-11-04 01:04:27 +00001539 */
hailfingercf848f12010-12-05 15:14:44 +00001540 if (!usable_erasefunctions)
1541 continue;
stefanctf0bc4712011-07-26 14:28:35 +00001542 /* Reading the whole chip may take a while, inform the user even
1543 * in non-verbose mode.
1544 */
1545 msg_cinfo("Reading current flash chip contents... ");
David Hendrickse3451942013-03-21 17:23:29 -07001546 if (read_flash(flash, curcontents, 0, size)) {
hailfinger6237f5e2010-12-02 02:41:55 +00001547 /* Now we are truly screwed. Read failed as well. */
stefanctf0bc4712011-07-26 14:28:35 +00001548 msg_cerr("Can't read anymore! Aborting.\n");
hailfinger6237f5e2010-12-02 02:41:55 +00001549 /* We have no idea about the flash chip contents, so
1550 * retrying with another erase function is pointless.
1551 */
1552 break;
1553 }
David Hendricks89a45e52011-11-22 16:56:22 -08001554 msg_cdbg("done. ");
hailfinger7df21362009-09-05 02:30:58 +00001555 }
hailfingerb437e282010-11-04 01:04:27 +00001556 /* Free the scratchpad. */
1557 free(curcontents);
hailfinger1e9ee0f2009-05-08 17:15:15 +00001558
hailfinger7df21362009-09-05 02:30:58 +00001559 if (ret) {
snelsone42c3802010-05-07 20:09:04 +00001560 msg_cerr("FAILED!\n");
hailfinger7df21362009-09-05 02:30:58 +00001561 } else {
David Hendricksc6c9f822010-11-03 15:07:01 -07001562 msg_cdbg("SUCCESS.\n");
hailfinger7df21362009-09-05 02:30:58 +00001563 }
1564 return ret;
hailfingerd219a232009-01-28 00:27:54 +00001565}
1566
hailfinger4c47e9d2010-10-19 22:06:20 +00001567void nonfatal_help_message(void)
1568{
1569 msg_gerr("Writing to the flash chip apparently didn't do anything.\n"
1570 "This means we have to add special support for your board, "
1571 "programmer or flash chip.\n"
1572 "Please report this on IRC at irc.freenode.net (channel "
1573 "#flashrom) or\n"
1574 "mail flashrom@flashrom.org!\n"
1575 "-------------------------------------------------------------"
1576 "------------------\n"
1577 "You may now reboot or simply leave the machine running.\n");
1578}
1579
uweb34ec9f2009-10-01 18:40:02 +00001580void emergency_help_message(void)
hailfinger0459e1c2009-08-19 13:55:34 +00001581{
snelsone42c3802010-05-07 20:09:04 +00001582 msg_gerr("Your flash chip is in an unknown state.\n"
uweb34ec9f2009-10-01 18:40:02 +00001583 "Get help on IRC at irc.freenode.net (channel #flashrom) or\n"
hailfinger5bae2332010-10-08 11:03:02 +00001584 "mail flashrom@flashrom.org with FAILED: your board name in "
1585 "the subject line!\n"
hailfinger74819ad2010-05-15 15:04:37 +00001586 "-------------------------------------------------------------"
1587 "------------------\n"
hailfinger0459e1c2009-08-19 13:55:34 +00001588 "DO NOT REBOOT OR POWEROFF!\n");
1589}
1590
uwe8d342eb2011-07-28 08:13:25 +00001591/* The way to go if you want a delimited list of programmers */
stefanct52700282011-06-26 17:38:17 +00001592void list_programmers(const char *delim)
hailfingerc77acb52009-12-24 02:15:55 +00001593{
1594 enum programmer p;
1595 for (p = 0; p < PROGRAMMER_INVALID; p++) {
snelsone42c3802010-05-07 20:09:04 +00001596 msg_ginfo("%s", programmer_table[p].name);
hailfingerc77acb52009-12-24 02:15:55 +00001597 if (p < PROGRAMMER_INVALID - 1)
snelsone42c3802010-05-07 20:09:04 +00001598 msg_ginfo("%s", delim);
hailfingerc77acb52009-12-24 02:15:55 +00001599 }
Simon Glass8dc82732013-07-16 10:13:51 -06001600 msg_ginfo("\n");
hailfingerc77acb52009-12-24 02:15:55 +00001601}
1602
hailfingerf79d1712010-10-06 23:48:34 +00001603void list_programmers_linebreak(int startcol, int cols, int paren)
1604{
1605 const char *pname;
hailfingerb91c08c2011-08-15 19:54:20 +00001606 int pnamelen;
1607 int remaining = 0, firstline = 1;
hailfingerf79d1712010-10-06 23:48:34 +00001608 enum programmer p;
hailfingerb91c08c2011-08-15 19:54:20 +00001609 int i;
hailfingerf79d1712010-10-06 23:48:34 +00001610
1611 for (p = 0; p < PROGRAMMER_INVALID; p++) {
1612 pname = programmer_table[p].name;
1613 pnamelen = strlen(pname);
1614 if (remaining - pnamelen - 2 < 0) {
1615 if (firstline)
1616 firstline = 0;
1617 else
1618 printf("\n");
1619 for (i = 0; i < startcol; i++)
1620 printf(" ");
1621 remaining = cols - startcol;
1622 } else {
1623 printf(" ");
1624 remaining--;
1625 }
1626 if (paren && (p == 0)) {
1627 printf("(");
1628 remaining--;
1629 }
1630 printf("%s", pname);
1631 remaining -= pnamelen;
1632 if (p < PROGRAMMER_INVALID - 1) {
1633 printf(",");
1634 remaining--;
1635 } else {
1636 if (paren)
1637 printf(")");
1638 printf("\n");
1639 }
1640 }
1641}
1642
hailfinger3b471632010-03-27 16:36:40 +00001643void print_sysinfo(void)
1644{
David Hendricksc6c9f822010-11-03 15:07:01 -07001645 /* send to stderr for chromium os */
hailfinger3b471632010-03-27 16:36:40 +00001646#if HAVE_UTSNAME == 1
1647 struct utsname osinfo;
1648 uname(&osinfo);
1649
David Hendricksc6c9f822010-11-03 15:07:01 -07001650 msg_gerr(" on %s %s (%s)", osinfo.sysname, osinfo.release,
hailfinger3b471632010-03-27 16:36:40 +00001651 osinfo.machine);
1652#else
David Hendricksc6c9f822010-11-03 15:07:01 -07001653 msg_gerr(" on unknown machine");
hailfinger3b471632010-03-27 16:36:40 +00001654#endif
David Hendricksc6c9f822010-11-03 15:07:01 -07001655 msg_gerr(", built with");
hailfinger3b471632010-03-27 16:36:40 +00001656#if NEED_PCI == 1
1657#ifdef PCILIB_VERSION
David Hendricksc6c9f822010-11-03 15:07:01 -07001658 msg_gerr(" libpci %s,", PCILIB_VERSION);
hailfinger3b471632010-03-27 16:36:40 +00001659#else
David Hendricksc6c9f822010-11-03 15:07:01 -07001660 msg_gerr(" unknown PCI library,");
hailfinger3b471632010-03-27 16:36:40 +00001661#endif
1662#endif
1663#ifdef __clang__
David Hendricksc6c9f822010-11-03 15:07:01 -07001664 msg_gerr(" LLVM Clang");
hailfinger3cc85ad2010-07-17 14:49:30 +00001665#ifdef __clang_version__
David Hendricksc6c9f822010-11-03 15:07:01 -07001666 msg_gerr(" %s,", __clang_version__);
hailfinger3cc85ad2010-07-17 14:49:30 +00001667#else
David Hendricksc6c9f822010-11-03 15:07:01 -07001668 msg_gerr(" unknown version (before r102686),");
hailfinger3cc85ad2010-07-17 14:49:30 +00001669#endif
hailfinger3b471632010-03-27 16:36:40 +00001670#elif defined(__GNUC__)
David Hendricksc6c9f822010-11-03 15:07:01 -07001671 msg_gerr(" GCC");
hailfinger3b471632010-03-27 16:36:40 +00001672#ifdef __VERSION__
David Hendricksc6c9f822010-11-03 15:07:01 -07001673 msg_gerr(" %s,", __VERSION__);
hailfinger3b471632010-03-27 16:36:40 +00001674#else
David Hendricksc6c9f822010-11-03 15:07:01 -07001675 msg_gerr(" unknown version,");
hailfinger3b471632010-03-27 16:36:40 +00001676#endif
1677#else
David Hendricksc6c9f822010-11-03 15:07:01 -07001678 msg_gerr(" unknown compiler,");
hailfinger324a9cc2010-05-26 01:45:41 +00001679#endif
1680#if defined (__FLASHROM_LITTLE_ENDIAN__)
David Hendricksc6c9f822010-11-03 15:07:01 -07001681 msg_gerr(" little endian");
hailfinger324a9cc2010-05-26 01:45:41 +00001682#else
David Hendricksc6c9f822010-11-03 15:07:01 -07001683 msg_gerr(" big endian");
hailfinger3b471632010-03-27 16:36:40 +00001684#endif
David Hendricksc6c9f822010-11-03 15:07:01 -07001685 msg_gerr("\n");
hailfinger3b471632010-03-27 16:36:40 +00001686}
1687
uwefdeca092008-01-21 15:24:22 +00001688void print_version(void)
1689{
David Hendricksc6c9f822010-11-03 15:07:01 -07001690 /* send to stderr for chromium os */
1691 msg_gerr("flashrom v%s", flashrom_version);
hailfinger3b471632010-03-27 16:36:40 +00001692 print_sysinfo();
uwefdeca092008-01-21 15:24:22 +00001693}
1694
hailfinger74819ad2010-05-15 15:04:37 +00001695void print_banner(void)
1696{
1697 msg_ginfo("flashrom is free software, get the source code at "
uwe8d342eb2011-07-28 08:13:25 +00001698 "http://www.flashrom.org\n");
hailfinger74819ad2010-05-15 15:04:37 +00001699 msg_ginfo("\n");
1700}
1701
hailfingerc77acb52009-12-24 02:15:55 +00001702int selfcheck(void)
1703{
hailfinger45177872010-01-18 08:14:43 +00001704 int ret = 0;
hailfinger48ed3e22011-05-04 00:39:50 +00001705 const struct flashchip *flash;
hailfinger45177872010-01-18 08:14:43 +00001706
1707 /* Safety check. Instead of aborting after the first error, check
1708 * if more errors exist.
1709 */
hailfingerc77acb52009-12-24 02:15:55 +00001710 if (ARRAY_SIZE(programmer_table) - 1 != PROGRAMMER_INVALID) {
snelsone42c3802010-05-07 20:09:04 +00001711 msg_gerr("Programmer table miscompilation!\n");
hailfinger45177872010-01-18 08:14:43 +00001712 ret = 1;
hailfingerc77acb52009-12-24 02:15:55 +00001713 }
stefanct8632c922011-07-26 14:33:46 +00001714 /* It would be favorable if we could also check for correct termination
stefanctdfd58832011-07-25 20:38:52 +00001715 * of the following arrays, but we don't know their sizes in here...
stefanct6d836ba2011-05-26 01:35:19 +00001716 * For 'flashchips' we check the first element to be non-null. In the
1717 * other cases there exist use cases where the first element can be
1718 * null. */
Yunlian Jiang9b1ab472014-02-27 15:07:08 -08001719 if (!flashchips || flashchips[0].vendor == NULL) {
stefanct6d836ba2011-05-26 01:35:19 +00001720 msg_gerr("Flashchips table miscompilation!\n");
1721 ret = 1;
1722 }
hailfinger45177872010-01-18 08:14:43 +00001723 for (flash = flashchips; flash && flash->name; flash++)
1724 if (selfcheck_eraseblocks(flash))
1725 ret = 1;
stefanct6d836ba2011-05-26 01:35:19 +00001726
1727#if CONFIG_INTERNAL == 1
Yunlian Jiang9b1ab472014-02-27 15:07:08 -08001728 if (!chipset_enables) {
stefanct6d836ba2011-05-26 01:35:19 +00001729 msg_gerr("Chipset enables table does not exist!\n");
1730 ret = 1;
1731 }
Yunlian Jiang9b1ab472014-02-27 15:07:08 -08001732 if (!board_matches) {
stefanct6d836ba2011-05-26 01:35:19 +00001733 msg_gerr("Board enables table does not exist!\n");
1734 ret = 1;
1735 }
Yunlian Jiang9b1ab472014-02-27 15:07:08 -08001736 if (!boards_known) {
stefanct6d836ba2011-05-26 01:35:19 +00001737 msg_gerr("Known boards table does not exist!\n");
1738 ret = 1;
1739 }
Yunlian Jiang9b1ab472014-02-27 15:07:08 -08001740 if (!laptops_known) {
stefanct6d836ba2011-05-26 01:35:19 +00001741 msg_gerr("Known laptops table does not exist!\n");
1742 ret = 1;
1743 }
uwe8d342eb2011-07-28 08:13:25 +00001744#endif
hailfinger45177872010-01-18 08:14:43 +00001745 return ret;
hailfingerc77acb52009-12-24 02:15:55 +00001746}
1747
hailfinger48ed3e22011-05-04 00:39:50 +00001748void check_chip_supported(const struct flashchip *flash)
hailfingerc77acb52009-12-24 02:15:55 +00001749{
1750 if (TEST_OK_MASK != (flash->tested & TEST_OK_MASK)) {
David Hendricksc801adb2010-12-09 16:58:56 -08001751 msg_cdbg("===\n");
hailfingerc77acb52009-12-24 02:15:55 +00001752 if (flash->tested & TEST_BAD_MASK) {
David Hendricksc801adb2010-12-09 16:58:56 -08001753 msg_cdbg("This flash part has status NOT WORKING for operations:");
hailfingerc77acb52009-12-24 02:15:55 +00001754 if (flash->tested & TEST_BAD_PROBE)
David Hendricksc801adb2010-12-09 16:58:56 -08001755 msg_cdbg(" PROBE");
hailfingerc77acb52009-12-24 02:15:55 +00001756 if (flash->tested & TEST_BAD_READ)
David Hendricksc801adb2010-12-09 16:58:56 -08001757 msg_cdbg(" READ");
hailfingerc77acb52009-12-24 02:15:55 +00001758 if (flash->tested & TEST_BAD_ERASE)
David Hendricksc801adb2010-12-09 16:58:56 -08001759 msg_cdbg(" ERASE");
hailfingerc77acb52009-12-24 02:15:55 +00001760 if (flash->tested & TEST_BAD_WRITE)
David Hendricksc801adb2010-12-09 16:58:56 -08001761 msg_cdbg(" WRITE");
1762 msg_cdbg("\n");
hailfingerc77acb52009-12-24 02:15:55 +00001763 }
1764 if ((!(flash->tested & TEST_BAD_PROBE) && !(flash->tested & TEST_OK_PROBE)) ||
1765 (!(flash->tested & TEST_BAD_READ) && !(flash->tested & TEST_OK_READ)) ||
1766 (!(flash->tested & TEST_BAD_ERASE) && !(flash->tested & TEST_OK_ERASE)) ||
1767 (!(flash->tested & TEST_BAD_WRITE) && !(flash->tested & TEST_OK_WRITE))) {
David Hendricksc801adb2010-12-09 16:58:56 -08001768 msg_cdbg("This flash part has status UNTESTED for operations:");
hailfingerc77acb52009-12-24 02:15:55 +00001769 if (!(flash->tested & TEST_BAD_PROBE) && !(flash->tested & TEST_OK_PROBE))
David Hendricksc801adb2010-12-09 16:58:56 -08001770 msg_cdbg(" PROBE");
hailfingerc77acb52009-12-24 02:15:55 +00001771 if (!(flash->tested & TEST_BAD_READ) && !(flash->tested & TEST_OK_READ))
David Hendricksc801adb2010-12-09 16:58:56 -08001772 msg_cdbg(" READ");
hailfingerc77acb52009-12-24 02:15:55 +00001773 if (!(flash->tested & TEST_BAD_ERASE) && !(flash->tested & TEST_OK_ERASE))
David Hendricksc801adb2010-12-09 16:58:56 -08001774 msg_cdbg(" ERASE");
hailfingerc77acb52009-12-24 02:15:55 +00001775 if (!(flash->tested & TEST_BAD_WRITE) && !(flash->tested & TEST_OK_WRITE))
David Hendricksc801adb2010-12-09 16:58:56 -08001776 msg_cdbg(" WRITE");
1777 msg_cdbg("\n");
hailfingerc77acb52009-12-24 02:15:55 +00001778 }
hailfinger92cd8e32010-01-07 03:24:05 +00001779 /* FIXME: This message is designed towards CLI users. */
David Hendricksc801adb2010-12-09 16:58:56 -08001780 msg_cdbg("The test status of this chip may have been updated "
hailfinger74819ad2010-05-15 15:04:37 +00001781 "in the latest development\n"
1782 "version of flashrom. If you are running the latest "
1783 "development version,\n"
1784 "please email a report to flashrom@flashrom.org if "
1785 "any of the above operations\n"
1786 "work correctly for you with this flash part. Please "
1787 "include the flashrom\n"
1788 "output with the additional -V option for all "
1789 "operations you tested (-V, -Vr,\n"
1790 "-Vw, -VE), and mention which mainboard or "
1791 "programmer you tested.\n"
hailfinger5bae2332010-10-08 11:03:02 +00001792 "Please mention your board in the subject line. "
1793 "Thanks for your help!\n");
hailfingerc77acb52009-12-24 02:15:55 +00001794 }
1795}
1796
hailfinger771fc182010-10-15 00:01:14 +00001797/* FIXME: This function signature needs to be improved once doit() has a better
1798 * function signature.
1799 */
stefanct02116582011-05-18 01:30:56 +00001800int chip_safety_check(struct flashchip *flash, int force, int read_it, int write_it, int erase_it, int verify_it)
hailfinger771fc182010-10-15 00:01:14 +00001801{
1802 if (!programmer_may_write && (write_it || erase_it)) {
1803 msg_perr("Write/erase is not working yet on your programmer in "
1804 "its current configuration.\n");
1805 /* --force is the wrong approach, but it's the best we can do
1806 * until the generic programmer parameter parser is merged.
1807 */
1808 if (!force)
1809 return 1;
1810 msg_cerr("Continuing anyway.\n");
1811 }
1812
1813 if (read_it || erase_it || write_it || verify_it) {
1814 /* Everything needs read. */
1815 if (flash->tested & TEST_BAD_READ) {
1816 msg_cerr("Read is not working on this chip. ");
1817 if (!force)
1818 return 1;
1819 msg_cerr("Continuing anyway.\n");
1820 }
1821 if (!flash->read) {
1822 msg_cerr("flashrom has no read function for this "
1823 "flash chip.\n");
1824 return 1;
1825 }
1826 }
1827 if (erase_it || write_it) {
1828 /* Write needs erase. */
1829 if (flash->tested & TEST_BAD_ERASE) {
1830 msg_cerr("Erase is not working on this chip. ");
1831 if (!force)
1832 return 1;
1833 msg_cerr("Continuing anyway.\n");
1834 }
stefancte1c5acf2011-07-04 07:27:17 +00001835 if(count_usable_erasers(flash) == 0) {
stefanct569dbb62011-07-01 00:19:12 +00001836 msg_cerr("flashrom has no erase function for this "
1837 "flash chip.\n");
1838 return 1;
1839 }
hailfinger771fc182010-10-15 00:01:14 +00001840 }
1841 if (write_it) {
1842 if (flash->tested & TEST_BAD_WRITE) {
1843 msg_cerr("Write is not working on this chip. ");
1844 if (!force)
1845 return 1;
1846 msg_cerr("Continuing anyway.\n");
1847 }
1848 if (!flash->write) {
1849 msg_cerr("flashrom has no write function for this "
1850 "flash chip.\n");
1851 return 1;
1852 }
1853 }
1854 return 0;
1855}
1856
hailfingerc77acb52009-12-24 02:15:55 +00001857/* This function signature is horrible. We need to design a better interface,
1858 * but right now it allows us to split off the CLI code.
hailfingerd217d122010-10-08 18:52:29 +00001859 * Besides that, the function itself is a textbook example of abysmal code flow.
hailfingerc77acb52009-12-24 02:15:55 +00001860 */
Simon Glass9ad06c12013-07-03 22:08:17 +09001861int doit(struct flashchip *flash, int force, const char *filename, int read_it,
1862 int write_it, int erase_it, int verify_it, int extract_it,
1863 const char *diff_file)
hailfingerc77acb52009-12-24 02:15:55 +00001864{
hailfinger4c47e9d2010-10-19 22:06:20 +00001865 uint8_t *oldcontents;
1866 uint8_t *newcontents;
hailfingerc77acb52009-12-24 02:15:55 +00001867 int ret = 0;
hailfinger4c47e9d2010-10-19 22:06:20 +00001868 unsigned long size = flash->total_size * 1024;
hailfingerc77acb52009-12-24 02:15:55 +00001869
stefanct02116582011-05-18 01:30:56 +00001870 if (chip_safety_check(flash, force, read_it, write_it, erase_it, verify_it)) {
hailfinger771fc182010-10-15 00:01:14 +00001871 msg_cerr("Aborting.\n");
hailfinger90fcf9b2010-11-05 14:51:59 +00001872 ret = 1;
1873 goto out_nofree;
hailfinger771fc182010-10-15 00:01:14 +00001874 }
1875
hailfinger771fc182010-10-15 00:01:14 +00001876 /* Given the existence of read locks, we want to unlock for read,
1877 * erase and write.
1878 */
1879 if (flash->unlock)
1880 flash->unlock(flash);
1881
David Hendricks6d62d752011-03-07 21:20:22 -08001882 /* add entries for regions specified in flashmap */
Louis Yung-Chieh Lo1f6bbf52011-04-06 10:24:38 +08001883 if (!set_ignore_fmap && add_fmap_entries(flash) < 0) {
David Hendricks6d62d752011-03-07 21:20:22 -08001884 ret = 1;
1885 goto out_nofree;
1886 }
1887
Simon Glass9ad06c12013-07-03 22:08:17 +09001888 if (extract_it) {
1889 ret = extract_regions(flash);
1890 goto out_nofree;
1891 }
1892
David Hendricksd0ea9ed2011-03-04 17:31:57 -08001893 /* mark entries included using -i argument as "included" if they are
1894 found in the master rom_entries list */
1895 if (process_include_args() < 0) {
1896 ret = 1;
1897 goto out_nofree;
1898 }
1899
hailfinger771fc182010-10-15 00:01:14 +00001900 if (read_it) {
1901 ret = read_flash_to_file(flash, filename);
hailfinger90fcf9b2010-11-05 14:51:59 +00001902 goto out_nofree;
hailfinger5828baf2010-07-03 12:14:25 +00001903 }
hailfingerb437e282010-11-04 01:04:27 +00001904
stefanctd611e8f2011-07-12 22:35:21 +00001905 oldcontents = malloc(size);
1906 if (!oldcontents) {
1907 msg_gerr("Out of memory!\n");
1908 exit(1);
1909 }
Simon Glass4c214132013-07-16 10:09:28 -06001910 /* Assume worst case: All blocks are not erased. */
1911 memset(oldcontents, flash_unerased_value(flash), size);
stefanctd611e8f2011-07-12 22:35:21 +00001912 newcontents = malloc(size);
1913 if (!newcontents) {
1914 msg_gerr("Out of memory!\n");
1915 exit(1);
1916 }
Simon Glass4c214132013-07-16 10:09:28 -06001917 /* Assume best case: All blocks are erased. */
1918 memset(newcontents, flash_erase_value(flash), size);
hailfingerb437e282010-11-04 01:04:27 +00001919 /* Side effect of the assumptions above: Default write action is erase
1920 * because newcontents looks like a completely erased chip, and
Simon Glass4c214132013-07-16 10:09:28 -06001921 * oldcontents being completely unerased means we have to erase
1922 * everything before we can write.
hailfingerb437e282010-11-04 01:04:27 +00001923 */
1924
ollie0eb62d62004-12-08 20:10:01 +00001925 if (erase_it) {
hailfinger4c47e9d2010-10-19 22:06:20 +00001926 /* FIXME: Do we really want the scary warning if erase failed?
1927 * After all, after erase the chip is either blank or partially
1928 * blank or it has the old contents. A blank chip won't boot,
1929 * so if the user wanted erase and reboots afterwards, the user
1930 * knows very well that booting won't work.
1931 */
hailfingerb437e282010-11-04 01:04:27 +00001932 if (erase_and_write_flash(flash, oldcontents, newcontents)) {
hailfinger0459e1c2009-08-19 13:55:34 +00001933 emergency_help_message();
hailfingerb437e282010-11-04 01:04:27 +00001934 ret = 1;
hailfinger0459e1c2009-08-19 13:55:34 +00001935 }
hailfinger90fcf9b2010-11-05 14:51:59 +00001936 goto out;
hailfingerd217d122010-10-08 18:52:29 +00001937 }
hailfinger771fc182010-10-15 00:01:14 +00001938
hailfingerd217d122010-10-08 18:52:29 +00001939 if (write_it || verify_it) {
David Hendricksdf29a832013-06-28 14:33:51 -07001940 /*
1941 * Note: This must be done before any files specified by -i
1942 * arguments are processed merged into the newcontents since
1943 * -i files take priority. See http://crbug.com/263495.
1944 */
1945 if (filename) {
1946 if (read_buf_from_file(newcontents, size, filename)) {
1947 ret = 1;
1948 goto out;
1949 }
1950 } else {
1951 /* Content will be read from -i args, so they must
1952 * not overlap. */
1953 if (included_regions_overlap()) {
1954 msg_gerr("Error: Included regions must "
1955 "not overlap.\n");
1956 ret = 1;
1957 goto out;
1958 }
stepan1da96c02006-11-21 23:48:51 +00001959 }
1960
David Hendricksac82cac2012-06-19 10:29:37 -07001961#if 0
1962 /*
1963 * FIXME: show_id() causes failure if vendor:mainboard do not
1964 * match. This may happen if codenames are in flux.
1965 * See chrome-os-partner:10414.
1966 */
hailfinger90c7d542010-05-31 15:27:27 +00001967#if CONFIG_INTERNAL == 1
hailfinger4c47e9d2010-10-19 22:06:20 +00001968 if (programmer == PROGRAMMER_INTERNAL)
1969 show_id(newcontents, size, force);
hailfinger80422e22009-12-13 22:28:00 +00001970#endif
David Hendricksac82cac2012-06-19 10:29:37 -07001971#endif
ollie5672ac62004-03-17 22:22:08 +00001972 }
1973
David Hendricksc44d7a02011-10-17 11:28:43 -07001974 /* Obtain a reference image so that we can check whether regions need
1975 * to be erased and to give better diagnostics in case write fails.
David Hendricks52ddff02013-07-23 15:05:14 -07001976 * If --fast-verify is used then only the regions which are included
1977 * using -i will be read.
hailfinger4c47e9d2010-10-19 22:06:20 +00001978 */
David Hendricksc44d7a02011-10-17 11:28:43 -07001979 if (diff_file) {
1980 msg_cdbg("Reading old contents from file... ");
1981 if (read_buf_from_file(oldcontents, size, diff_file)) {
1982 ret = 1;
1983 msg_cdbg("FAILED.\n");
1984 goto out;
1985 }
1986 } else {
1987 msg_cdbg("Reading old contents from flash chip... ");
David Hendricksd4e712c2013-08-02 17:06:16 -07001988 if (verify_it == VERIFY_PARTIAL) {
1989 if (handle_partial_read(flash, oldcontents,
1990 read_flash, 0) < 0) {
David Hendricks52ddff02013-07-23 15:05:14 -07001991 ret = 1;
1992 msg_cdbg("FAILED.\n");
1993 goto out;
1994 }
David Hendricksd4e712c2013-08-02 17:06:16 -07001995 } else {
1996 if (read_flash(flash, oldcontents, 0, size)) {
David Hendricks52ddff02013-07-23 15:05:14 -07001997 ret = 1;
1998 msg_cdbg("FAILED.\n");
1999 goto out;
2000 }
David Hendricksc44d7a02011-10-17 11:28:43 -07002001 }
hailfinger4c47e9d2010-10-19 22:06:20 +00002002 }
David Hendricks89a45e52011-11-22 16:56:22 -08002003 msg_cdbg("done.\n");
hailfinger4c47e9d2010-10-19 22:06:20 +00002004
David Hendricksdf29a832013-06-28 14:33:51 -07002005 /*
2006 * Note: This must be done after reading the file specified for the
2007 * -w/-v argument, if any, so that files specified using -i end up
2008 * in the "newcontents" buffer before being written.
2009 * See http://crbug.com/263495.
2010 */
Louis Yung-Chieh Lo404470d2011-09-06 16:59:40 +08002011 if (handle_romentries(flash, oldcontents, newcontents)) {
2012 ret = 1;
David Hendricks5d8ea572013-07-26 14:03:05 -07002013 msg_cerr("Error handling ROM entries.\n");
Louis Yung-Chieh Lo404470d2011-09-06 16:59:40 +08002014 goto out;
2015 }
uwef6641642007-05-09 10:17:44 +00002016
stuge8ce3a3c2008-04-28 14:47:30 +00002017 if (write_it) {
Louis Yung-Chieh Lo8d0971e2012-03-23 00:07:38 +08002018 // parse the new fmap
David Hendricksb907de32014-08-11 16:47:09 -07002019 if ((ret = cros_ec_prepare(newcontents, size))) {
2020 msg_cerr("CROS_EC prepare failed, ret=%d.\n", ret);
Louis Yung-Chieh Lo8d0971e2012-03-23 00:07:38 +08002021 goto out;
2022 }
Louis Yung-Chieh Lo8d0971e2012-03-23 00:07:38 +08002023
hailfingerb437e282010-11-04 01:04:27 +00002024 if (erase_and_write_flash(flash, oldcontents, newcontents)) {
2025 msg_cerr("Uh oh. Erase/write failed. Checking if "
2026 "anything changed.\n");
David Hendrickse3451942013-03-21 17:23:29 -07002027 if (!read_flash(flash, newcontents, 0, size)) {
hailfinger4c47e9d2010-10-19 22:06:20 +00002028 if (!memcmp(oldcontents, newcontents, size)) {
2029 msg_cinfo("Good. It seems nothing was "
2030 "changed.\n");
2031 nonfatal_help_message();
hailfinger90fcf9b2010-11-05 14:51:59 +00002032 ret = 1;
2033 goto out;
hailfinger4c47e9d2010-10-19 22:06:20 +00002034 }
2035 }
hailfingerd217d122010-10-08 18:52:29 +00002036 emergency_help_message();
hailfinger90fcf9b2010-11-05 14:51:59 +00002037 ret = 1;
2038 goto out;
stuge8ce3a3c2008-04-28 14:47:30 +00002039 }
Louis Yung-Chieh Lo8d0971e2012-03-23 00:07:38 +08002040
David Hendricksb907de32014-08-11 16:47:09 -07002041 ret = cros_ec_need_2nd_pass();
Louis Yung-Chieh Lo8d0971e2012-03-23 00:07:38 +08002042 if (ret < 0) {
2043 // Jump failed
David Hendricksb907de32014-08-11 16:47:09 -07002044 msg_cerr("cros_ec_need_2nd_pass() failed. Stop.\n");
Louis Yung-Chieh Lo8d0971e2012-03-23 00:07:38 +08002045 emergency_help_message();
2046 ret = 1;
2047 goto out;
2048 } else if (ret > 0) {
2049 // Need 2nd pass. Get the just written content.
David Hendricksb907de32014-08-11 16:47:09 -07002050 msg_pdbg("CROS_EC needs 2nd pass.\n");
David Hendrickse3451942013-03-21 17:23:29 -07002051 if (read_flash(flash, oldcontents, 0, size)) {
Louis Yung-Chieh Lo8d0971e2012-03-23 00:07:38 +08002052 msg_cerr("Uh oh. Cannot get latest content.\n");
2053 emergency_help_message();
2054 ret = 1;
2055 goto out;
2056 }
2057 // write 2nd pass
2058 if (erase_and_write_flash(flash, oldcontents,
2059 newcontents)) {
David Hendricksb907de32014-08-11 16:47:09 -07002060 msg_cerr("Uh oh. CROS_EC 2nd pass failed.\n");
Louis Yung-Chieh Lo8d0971e2012-03-23 00:07:38 +08002061 emergency_help_message();
2062 ret = 1;
2063 goto out;
2064 }
2065 ret = 0;
2066 }
Louis Yung-Chieh Lodeefd822012-07-09 17:07:43 +08002067
David Hendricksb907de32014-08-11 16:47:09 -07002068 if (cros_ec_finish() < 0) {
2069 msg_cerr("cros_ec_finish() failed. Stop.\n");
Louis Yung-Chieh Lodeefd822012-07-09 17:07:43 +08002070 emergency_help_message();
2071 ret = 1;
2072 goto out;
2073 }
stuge8ce3a3c2008-04-28 14:47:30 +00002074 }
ollie6a600992005-11-26 21:55:36 +00002075
hailfinger0459e1c2009-08-19 13:55:34 +00002076 if (verify_it) {
2077 /* Work around chips which need some time to calm down. */
Louis Yung-Chieh Lo5d95f042011-09-01 17:33:06 +08002078 if (write_it && verify_it != VERIFY_PARTIAL)
hailfinger0459e1c2009-08-19 13:55:34 +00002079 programmer_delay(1000*1000);
Louis Yung-Chieh Lo5d95f042011-09-01 17:33:06 +08002080
2081 ret = verify_flash(flash, newcontents, verify_it);
2082
hailfingera50d60e2009-11-17 09:57:34 +00002083 /* If we tried to write, and verification now fails, we
hailfinger0459e1c2009-08-19 13:55:34 +00002084 * might have an emergency situation.
2085 */
2086 if (ret && write_it)
2087 emergency_help_message();
2088 }
ollie6a600992005-11-26 21:55:36 +00002089
hailfinger90fcf9b2010-11-05 14:51:59 +00002090out:
2091 free(oldcontents);
2092 free(newcontents);
2093out_nofree:
David Hendricksbf36f092010-11-02 23:39:29 -07002094 chip_restore(); /* must be done before programmer_shutdown() */
David Hendricks668f29d2011-01-27 18:51:45 -08002095 /*
2096 * programmer_shutdown() call is moved to cli_mfg() in chromium os
2097 * tree. This is because some operations, such as write protection,
2098 * requires programmer_shutdown() but does not call doit().
2099 */
2100// programmer_shutdown();
stepan83eca252006-01-04 16:42:57 +00002101 return ret;
rminnich8d3ff912003-10-25 17:01:29 +00002102}