blob: 8db9d20186d1d5730db3defa2af7eb54c74d34f5 [file] [log] [blame]
Nico Huber454f6132012-12-10 13:34:10 +00001/*
2 * This file is part of the flashrom project.
3 *
4 * Copyright (C) 2012, 2016 secunet Security Networks AG
5 * (Written by Nico Huber <nico.huber@secunet.com> for secunet)
6 *
Nico Huberd4926fe2026-03-08 21:37:52 +01007 * Copyright (C) 2026 Nico Huber <nico.h@gmx.de>
8 *
Nico Huber454f6132012-12-10 13:34:10 +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.
13 *
14 * 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.
Nico Huber454f6132012-12-10 13:34:10 +000018 */
19/**
20 * @mainpage
21 *
22 * Have a look at the Modules section for a function reference.
23 */
24
Nico Huber70461a92019-06-15 14:56:19 +020025#include <errno.h>
Nico Huber454f6132012-12-10 13:34:10 +000026#include <stdlib.h>
27#include <string.h>
28#include <stdarg.h>
29
Nico Huberd4926fe2026-03-08 21:37:52 +010030#define flashprog_chip flashchip /* For now, we use direct pointers */
31#include "libflashprog.h" /* to the internal struct flashchip. */
32
Nico Huber454f6132012-12-10 13:34:10 +000033#include "flash.h"
Arthur Heymansc82900b2018-01-10 12:48:16 +010034#include "fmap.h"
Nico Huber454f6132012-12-10 13:34:10 +000035#include "programmer.h"
36#include "layout.h"
Nico Huberd4926fe2026-03-08 21:37:52 +010037#include "hwaccess_physmap.h"
Nico Huber305f4172013-06-14 11:55:26 +020038#include "ich_descriptors.h"
Nikolai Artemievda1c8342021-10-21 00:58:12 +110039#include "writeprotect.h"
Nico Huber454f6132012-12-10 13:34:10 +000040
41/**
Nico Huberc3b02dc2023-08-12 01:13:45 +020042 * @defgroup flashprog-general General
Nico Huber454f6132012-12-10 13:34:10 +000043 * @{
44 */
45
46/** Pointer to log callback function. */
Nico Huberc3b02dc2023-08-12 01:13:45 +020047static flashprog_log_callback *global_log_callback = NULL;
Nico Huber454f6132012-12-10 13:34:10 +000048
49/**
Nico Huberc3b02dc2023-08-12 01:13:45 +020050 * @brief Initialize libflashprog.
Nico Huber454f6132012-12-10 13:34:10 +000051 *
52 * @param perform_selfcheck If not zero, perform a self check.
53 * @return 0 on success
54 */
Nico Huberc3b02dc2023-08-12 01:13:45 +020055int flashprog_init(const int perform_selfcheck)
Nico Huber454f6132012-12-10 13:34:10 +000056{
57 if (perform_selfcheck && selfcheck())
58 return 1;
59 myusec_calibrate_delay();
60 return 0;
61}
62
63/**
Nico Huberc3b02dc2023-08-12 01:13:45 +020064 * @brief Shut down libflashprog.
Nico Huber454f6132012-12-10 13:34:10 +000065 * @return 0 on success
66 */
Nico Huberc3b02dc2023-08-12 01:13:45 +020067int flashprog_shutdown(void)
Nico Huber454f6132012-12-10 13:34:10 +000068{
69 return 0; /* TODO: nothing to do? */
70}
71
Nico Huberc3b02dc2023-08-12 01:13:45 +020072/* TODO: flashprog_set_loglevel()? do we need it?
Angel Pons0be623c2021-04-17 17:08:44 +020073 For now, let the user decide in their callback. */
Nico Huber454f6132012-12-10 13:34:10 +000074
75/**
76 * @brief Set the log callback function.
77 *
Nico Huberc3b02dc2023-08-12 01:13:45 +020078 * Set a callback function which will be invoked whenever libflashprog wants
Nico Huber454f6132012-12-10 13:34:10 +000079 * to output messages. This allows frontends to do whatever they see fit with
80 * such messages, e.g. write them to syslog, or to file, or print them in a
81 * GUI window, etc.
82 *
83 * @param log_callback Pointer to the new log callback function.
84 */
Nico Huberc3b02dc2023-08-12 01:13:45 +020085void flashprog_set_log_callback(flashprog_log_callback *const log_callback)
Nico Huber454f6132012-12-10 13:34:10 +000086{
87 global_log_callback = log_callback;
88}
89/** @private */
Nico Huberc3b02dc2023-08-12 01:13:45 +020090int print(const enum flashprog_log_level level, const char *const fmt, ...)
Nico Huber454f6132012-12-10 13:34:10 +000091{
92 if (global_log_callback) {
93 int ret;
94 va_list args;
95 va_start(args, fmt);
Nico Huberd152fb92017-06-19 12:57:10 +020096 ret = global_log_callback(level, fmt, args);
Nico Huber454f6132012-12-10 13:34:10 +000097 va_end(args);
98 return ret;
99 }
100 return 0;
101}
102
Nico Huberc3b02dc2023-08-12 01:13:45 +0200103/** @} */ /* end flashprog-general */
Nico Huber454f6132012-12-10 13:34:10 +0000104
105
106
107/**
Nico Huberc3b02dc2023-08-12 01:13:45 +0200108 * @defgroup flashprog-prog Programmers
Nico Huber454f6132012-12-10 13:34:10 +0000109 * @{
110 */
111
112/**
113 * @brief Initialize the specified programmer.
114 *
115 * Currently, only one programmer may be initialized at a time.
116 *
Nico Huberc3b02dc2023-08-12 01:13:45 +0200117 * @param[out] flashprog Points to a pointer of type struct flashprog_programmer
Nico Huber454f6132012-12-10 13:34:10 +0000118 * that will be set if programmer initialization succeeds.
119 * *flashprog has to be shutdown by the caller with @ref
Nico Huberc3b02dc2023-08-12 01:13:45 +0200120 * flashprog_programmer_shutdown.
Nico Huber454f6132012-12-10 13:34:10 +0000121 * @param[in] prog_name Name of the programmer to initialize.
122 * @param[in] prog_param Pointer to programmer specific parameters.
123 * @return 0 on success
124 */
Nico Huberc3b02dc2023-08-12 01:13:45 +0200125int flashprog_programmer_init(struct flashprog_programmer **const flashprog,
Nico Huber454f6132012-12-10 13:34:10 +0000126 const char *const prog_name, const char *const prog_param)
127{
128 unsigned prog;
129
Thomas Heijligend45cb592021-05-19 14:12:18 +0200130 for (prog = 0; prog < programmer_table_size; prog++) {
Thomas Heijligen633d6db2021-03-31 19:09:44 +0200131 if (strcmp(prog_name, programmer_table[prog]->name) == 0)
Nico Huber454f6132012-12-10 13:34:10 +0000132 break;
133 }
Thomas Heijligend45cb592021-05-19 14:12:18 +0200134 if (prog >= programmer_table_size) {
Nico Huber454f6132012-12-10 13:34:10 +0000135 msg_ginfo("Error: Unknown programmer \"%s\". Valid choices are:\n", prog_name);
136 list_programmers_linebreak(0, 80, 0);
Nico Huberdafd51e2023-02-10 23:58:19 +0100137 msg_ginfo(".\n");
Nico Huber454f6132012-12-10 13:34:10 +0000138 return 1;
139 }
Nico Huber2b66ad92023-01-11 20:15:15 +0100140
141 *flashprog = malloc(sizeof(**flashprog));
142 if (!*flashprog) {
143 msg_gerr("Out of memory!\n");
144 return 1;
145 }
146
147 (*flashprog)->driver = programmer_table[prog];
148 if (prog_param) {
149 (*flashprog)->param = strdup(prog_param);
150 if (!(*flashprog)->param) {
151 msg_gerr("Out of memory!\n");
152 goto _free_err;
153 }
154 } else {
155 (*flashprog)->param = NULL;
156 }
157
158 if (programmer_init(*flashprog))
159 goto _free_err;
160
161 return 0;
162
163_free_err:
Nico Huber74275692024-08-16 13:49:10 +0200164 programmer_shutdown(*flashprog);
Nico Huber2b66ad92023-01-11 20:15:15 +0100165 free((*flashprog)->param);
166 free(*flashprog);
167 return 1;
Nico Huber454f6132012-12-10 13:34:10 +0000168}
169
170/**
171 * @brief Shut down the initialized programmer.
172 *
173 * @param flashprog The programmer to shut down.
174 * @return 0 on success
175 */
Nico Huberc3b02dc2023-08-12 01:13:45 +0200176int flashprog_programmer_shutdown(struct flashprog_programmer *const flashprog)
Nico Huber454f6132012-12-10 13:34:10 +0000177{
Nico Huber2b66ad92023-01-11 20:15:15 +0100178 if (programmer_shutdown(flashprog))
179 return 1;
180 free(flashprog);
181 return 0;
Nico Huber454f6132012-12-10 13:34:10 +0000182}
183
Nico Huberc3b02dc2023-08-12 01:13:45 +0200184/* TODO: flashprog_programmer_capabilities()? */
Nico Huber454f6132012-12-10 13:34:10 +0000185
Nico Huberc3b02dc2023-08-12 01:13:45 +0200186/** @} */ /* end flashprog-prog */
Nico Huber454f6132012-12-10 13:34:10 +0000187
188
189
190/**
Nico Huberc3b02dc2023-08-12 01:13:45 +0200191 * @defgroup flashprog-flash Flash chips
Nico Huber454f6132012-12-10 13:34:10 +0000192 * @{
193 */
194
Nico Huberda16bd42026-03-08 22:00:28 +0100195static int flashprog_flash_probe_any(struct flashprog_flashctx **flashctx,
196 const struct flashprog_programmer *flashprog)
197{
198 struct flashprog_chips *chip_matches;
199 const struct flashprog_chip *chip;
200 bool first = true;
201 int ret;
202
203 if (flashprog_chips_probe(&chip_matches, flashprog))
204 return 1;
205
206 switch (flashprog_chips_count(chip_matches)) {
207 case 0:
208 ret = 2;
209 goto release_matches;
210 case 1:
211 chip = flashprog_chip_first(chip_matches);
212 break;
213 default:
214 msg_cinfo("Multiple flash chip definitions match the detected chip(s): ");
215 for (chip = flashprog_chip_first(chip_matches); chip;
216 chip = flashprog_chip_next(chip), first = false)
217 msg_cinfo("%s\"%s\"", first ? "" : ", ", flashprog_chip_name(chip));
218 msg_cinfo("\n");
219 ret = 3;
220 goto release_matches;
221 }
222
223 ret = flashprog_flash_probe_chip(flashctx, flashprog, chip);
224
225release_matches:
226 flashprog_chips_release(chip_matches);
227 return ret;
228}
229
Nico Huber278985c2026-07-19 00:58:16 +0200230/*
231 * Match our database-entry name patterns. The `searched` string can either
232 * be an actual chip name or the full pattern (i.e. containing '/' and parents).
233 *
234 * Our entry patterns can contain alternatives, separated by '/', for instance
235 * "MX25L4005A/MX25L4006E", optional sub-patterns in parentheses, for instance
236 * "Am29F002(N)BT" which matches both "Am29F002BT" and "Am29F002NBT", and wild-
237 * cards '.' that match any character.
238 *
239 * We compare the entry's pattern and `searched` char-by-char. The pattern
240 * only moves forward, `searched` can be rewinded when the pattern contains
241 * alternatives.
242 *
243 * TODO: Sub-patterns are not supported yet.
244 *
245 * Returns the remaining part of `searched` that wasn't matched.
246 */
247static const char *match_chip_name(const char *pattern, const char *const searched)
248{
249 const char *cur_match, *best_alt_match = searched;
250
251next_alternative:
252 for (cur_match = searched; *pattern != '\0'; ++cur_match, ++pattern) {
253 if (*pattern == '/') {
254 if (*cur_match == '\0') /* exact (sub-)pattern match */
255 return cur_match;
256 if (cur_match > best_alt_match) /* cache current, best match */
257 best_alt_match = cur_match;
258 }
259
260 if (*cur_match == *pattern) /* character match */
261 continue;
262 if (*cur_match != '\0' && *pattern == '.') /* wildcard match */
263 continue;
264
265 /* skip current alternative, it didn't match */
266 const char *const delim = strchr(pattern, '/');
267 if (delim) {
268 pattern = delim + 1;
269 goto next_alternative;
270 }
271
272 /* last alternative didn't match, return cached match if any */
273 return best_alt_match;
274 }
275
276 return MAX(cur_match, best_alt_match);
277}
278
Nico Huber47412a92026-03-10 23:48:25 +0100279/** @private */
280const struct flashchip *flashprog_chip_by_name(const char *chip_name)
Nico Huberda16bd42026-03-08 22:00:28 +0100281{
282 const struct flashchip *chip;
Nico Huber278985c2026-07-19 00:58:16 +0200283 for (chip = flashchips; *chip_name != '\0' && chip->name; ++chip) {
284 if (*match_chip_name(chip->name, chip_name) == '\0')
Nico Huberda16bd42026-03-08 22:00:28 +0100285 return chip;
286 }
287 msg_cerr("Error: Unknown chip '%s' specified.\n", chip_name);
288 return NULL;
289}
290
Nico Huber454f6132012-12-10 13:34:10 +0000291/**
292 * @brief Probe for a flash chip.
293 *
294 * Probes for a flash chip and returns a flash context, that can be used
Nico Huberc3b02dc2023-08-12 01:13:45 +0200295 * later with flash chip and @ref flashprog-ops "image operations", if
Nico Huber454f6132012-12-10 13:34:10 +0000296 * exactly one matching chip is found.
297 *
Nico Huberc3b02dc2023-08-12 01:13:45 +0200298 * @param[out] flashctx Points to a pointer of type struct flashprog_flashctx
Nico Huber454f6132012-12-10 13:34:10 +0000299 * that will be set if exactly one chip is found. *flashctx
Nico Huberc3b02dc2023-08-12 01:13:45 +0200300 * has to be freed by the caller with @ref flashprog_flash_release.
Nico Huber454f6132012-12-10 13:34:10 +0000301 * @param[in] flashprog The flash programmer used to access the chip.
302 * @param[in] chip_name Name of a chip to probe for, or NULL to probe for
303 * all known chips.
304 * @return 0 on success,
Nico Huberda16bd42026-03-08 22:00:28 +0100305 * 5 if an unknown chip name was provided,
306 * 4 if the chip was detected, but preparation failed,
Nico Huber454f6132012-12-10 13:34:10 +0000307 * 3 if multiple chips were found,
308 * 2 if no chip was found,
309 * or 1 on any other error.
310 */
Nico Huberc3b02dc2023-08-12 01:13:45 +0200311int flashprog_flash_probe(struct flashprog_flashctx **const flashctx,
312 const struct flashprog_programmer *const flashprog,
Nico Huber454f6132012-12-10 13:34:10 +0000313 const char *const chip_name)
314{
Nico Huberda16bd42026-03-08 22:00:28 +0100315 if (!chip_name)
316 return flashprog_flash_probe_any(flashctx, flashprog);
Nico Huber454f6132012-12-10 13:34:10 +0000317
Nico Huberda16bd42026-03-08 22:00:28 +0100318 const struct flashchip *const chip = flashprog_chip_by_name(chip_name);
319 if (!chip)
320 return 5;
Nico Huber454f6132012-12-10 13:34:10 +0000321
Nico Huberda16bd42026-03-08 22:00:28 +0100322 return flashprog_flash_probe_chip(flashctx, flashprog, chip);
Nico Huber454f6132012-12-10 13:34:10 +0000323}
324
Nico Huberd4926fe2026-03-08 21:37:52 +0100325/** @private */
326int flashprog_flash_prepare_context(struct flashprog_flashctx **flashctx,
327 const struct flashprog_programmer *flashprog,
328 const struct master_common *bus,
329 const struct flashchip *chip)
330{
331 if (bus->adapt_voltage) {
332 if (bus->adapt_voltage(bus, chip->voltage.min, chip->voltage.max))
333 return 4;
334 }
335
336 struct flashprog_flashctx *const flash = calloc(1, sizeof(*flash));
337 if (!flash) {
338 msg_gerr("Out of memory!\n");
339 return 1;
340 }
341
Nico Huber45290d02026-03-14 20:15:55 +0100342 flash->chip = *chip;
Nico Huberd4926fe2026-03-08 21:37:52 +0100343 flash->mst.common = bus; /* `mst` is a union, so we need only one pointer */
344
Nico Huber517d9372026-03-14 21:48:36 +0100345 if (chip->prepare_access && chip->prepare_access(flash)) {
346 free(flash);
347 return 4;
348 }
Nico Huberd4926fe2026-03-08 21:37:52 +0100349
350 /* Fill default layout covering the whole chip. */
351 if (flashprog_layout_new(&flash->default_layout) ||
352 flashprog_layout_add_region(flash->default_layout,
Nico Huber5421b1b2026-03-14 20:18:56 +0100353 0, flashprog_flash_getsize(flash) - 1, "complete flash") ||
Nico Huber517d9372026-03-14 21:48:36 +0100354 flashprog_layout_include_region(flash->default_layout, "complete flash")) {
355 flashprog_flash_release(flash);
356 return 1;
357 }
Nico Huberd4926fe2026-03-08 21:37:52 +0100358
Nico Huber45290d02026-03-14 20:15:55 +0100359 char *const tmp = flashbuses_to_text(flash->chip.bustype);
Nico Huberd4926fe2026-03-08 21:37:52 +0100360 msg_cinfo("Using %s flash chip \"%s\" (%d kB, %s) ",
Nico Huber45290d02026-03-14 20:15:55 +0100361 flash->chip.vendor, flash->chip.name, flash->chip.total_size, tmp);
Nico Huberd4926fe2026-03-08 21:37:52 +0100362 free(tmp);
363 if (strcmp(flashprog->driver->name, "internal") == 0 && flash->physical_memory != 0)
364 msg_cinfo("mapped at physical address 0x%0*" PRIxPTR ".\n",
365 PRIxPTR_WIDTH, flash->physical_memory);
366 else
367 msg_cinfo("on %s.\n", flashprog->driver->name);
368
Nico Huber45290d02026-03-14 20:15:55 +0100369 if (flash->chip.printlock)
370 flash->chip.printlock(flash);
Nico Huberd4926fe2026-03-08 21:37:52 +0100371
Nico Huberd4926fe2026-03-08 21:37:52 +0100372 *flashctx = flash;
373 return 0;
Nico Huberd4926fe2026-03-08 21:37:52 +0100374}
375
376/**
377 * @brief Probe for a specific flash chip.
378 *
379 * Probes for a flash chip and returns a flash context, that can be used
380 * later with flash chip and @ref flashprog-ops "image operations".
381 *
382 * @param[out] flashctx Points to a pointer of type struct flashprog_flashctx
383 * that will be set. *flashctx has to be freed by the
384 * caller with @ref flashprog_flash_release.
385 * @param[in] flashprog The flash programmer used to access the chip.
386 * @param[in] chip A reference to a chip structure that was previously
387 * fetched by @ref flashprog-chips "enumeration". Its
388 * contents will be copied, so the underlying chip
389 * enumeration can be released directly after the call.
390 * @return 0 on success,
391 * 4 if the chip was detected, but preparation failed,
392 * 3 if multiple chips were found,
393 * 2 if no chip was detected,
394 * or 1 on any other error.
395 */
396int flashprog_flash_probe_chip(struct flashprog_flashctx **flashctx,
397 const struct flashprog_programmer *flashprog,
398 const struct flashprog_chip *chip)
399{
400 const struct master_common *const bus = flashprog_chip_probe(flashprog, chip);
401 if (!bus)
402 return 2;
403
404 return flashprog_flash_prepare_context(flashctx, flashprog, bus, chip);
405}
406
Nico Huber454f6132012-12-10 13:34:10 +0000407/**
408 * @brief Returns the size of the specified flash chip in bytes.
409 *
410 * @param flashctx The queried flash context.
411 * @return Size of flash chip in bytes.
412 */
Nico Huberc3b02dc2023-08-12 01:13:45 +0200413size_t flashprog_flash_getsize(const struct flashprog_flashctx *const flashctx)
Nico Huber454f6132012-12-10 13:34:10 +0000414{
Nico Huber45290d02026-03-14 20:15:55 +0100415 return flashctx->chip.total_size * 1024;
Nico Huber454f6132012-12-10 13:34:10 +0000416}
417
418/**
419 * @brief Free a flash context.
420 *
421 * @param flashctx Flash context to free.
422 */
Nico Huberc3b02dc2023-08-12 01:13:45 +0200423void flashprog_flash_release(struct flashprog_flashctx *const flashctx)
Nico Huber454f6132012-12-10 13:34:10 +0000424{
Nico Huber6fb2f622022-02-24 18:17:40 +0100425 if (!flashctx)
426 return;
427
Nico Huber45290d02026-03-14 20:15:55 +0100428 if (flashctx->chip.finish_access)
429 flashctx->chip.finish_access(flashctx);
Nico Huberc3b02dc2023-08-12 01:13:45 +0200430 flashprog_layout_release(flashctx->default_layout);
Nico Huber454f6132012-12-10 13:34:10 +0000431 free(flashctx);
432}
433
434/**
Richard Hughes842d6782021-01-15 09:48:12 +0000435 * @brief Set the progress callback function.
436 *
437 * Set a callback function which will be invoked whenever libflashprog wants
438 * to indicate the progress has changed. This allows frontends to do whatever
439 * they see fit with such values, e.g. update a progress bar in a GUI tool.
440 *
441 * @param flashctx Current flash context.
442 * @param progress_callback Pointer to the new progress callback function.
443 * @param user_data Pointer to any data the API user wants to have passed to the callback.
444 */
445void flashprog_set_progress_callback(struct flashprog_flashctx *const flashctx,
446 flashprog_progress_callback *const progress_callback,
447 void *const user_data)
448{
449 flashctx->progress.callback = progress_callback;
450 flashctx->progress.user_data = user_data;
451}
452
453/**
Nico Huber454f6132012-12-10 13:34:10 +0000454 * @brief Set a flag in the given flash context.
455 *
456 * @param flashctx Flash context to alter.
457 * @param flag Flag that is to be set / cleared.
458 * @param value Value to set.
459 */
Nico Huberc3b02dc2023-08-12 01:13:45 +0200460void flashprog_flag_set(struct flashprog_flashctx *const flashctx,
461 const enum flashprog_flag flag, const bool value)
Nico Huber454f6132012-12-10 13:34:10 +0000462{
463 switch (flag) {
Nico Huberc3b02dc2023-08-12 01:13:45 +0200464 case FLASHPROG_FLAG_FORCE: flashctx->flags.force = value; break;
465 case FLASHPROG_FLAG_FORCE_BOARDMISMATCH: flashctx->flags.force_boardmismatch = value; break;
466 case FLASHPROG_FLAG_VERIFY_AFTER_WRITE: flashctx->flags.verify_after_write = value; break;
467 case FLASHPROG_FLAG_VERIFY_WHOLE_CHIP: flashctx->flags.verify_whole_chip = value; break;
Nico Huber55e78842024-07-21 00:46:19 +0200468 case FLASHPROG_FLAG_NON_VOLATILE_WRSR: flashctx->flags.non_volatile_wrsr = value; break;
Nico Huber454f6132012-12-10 13:34:10 +0000469 }
470}
471
472/**
473 * @brief Return the current value of a flag in the given flash context.
474 *
475 * @param flashctx Flash context to read from.
476 * @param flag Flag to be read.
477 * @return Current value of the flag.
478 */
Nico Huberc3b02dc2023-08-12 01:13:45 +0200479bool flashprog_flag_get(const struct flashprog_flashctx *const flashctx, const enum flashprog_flag flag)
Nico Huber454f6132012-12-10 13:34:10 +0000480{
481 switch (flag) {
Nico Huberc3b02dc2023-08-12 01:13:45 +0200482 case FLASHPROG_FLAG_FORCE: return flashctx->flags.force;
483 case FLASHPROG_FLAG_FORCE_BOARDMISMATCH: return flashctx->flags.force_boardmismatch;
484 case FLASHPROG_FLAG_VERIFY_AFTER_WRITE: return flashctx->flags.verify_after_write;
485 case FLASHPROG_FLAG_VERIFY_WHOLE_CHIP: return flashctx->flags.verify_whole_chip;
Nico Huber55e78842024-07-21 00:46:19 +0200486 case FLASHPROG_FLAG_NON_VOLATILE_WRSR: return flashctx->flags.non_volatile_wrsr;
Nico Huberc3b02dc2023-08-12 01:13:45 +0200487 default: return false;
Nico Huber454f6132012-12-10 13:34:10 +0000488 }
489}
490
Nico Huberc3b02dc2023-08-12 01:13:45 +0200491/** @} */ /* end flashprog-flash */
Nico Huber454f6132012-12-10 13:34:10 +0000492
493
494
495/**
Nico Huberc3b02dc2023-08-12 01:13:45 +0200496 * @defgroup flashprog-layout Layout handling
Nico Huber454f6132012-12-10 13:34:10 +0000497 * @{
498 */
499
Nico Huberdb90cf72023-01-24 23:35:52 +0100500#ifdef __FLASHPROG_LITTLE_ENDIAN__
501static int layout_cmp(const struct romentry *const a, const struct romentry *const b)
502{
503 int ret;
504
505 ret = (int)a->start - (int)b->start;
506 if (ret)
507 return ret;
508
509 ret = (int)a->end - (int)b->end;
510 if (ret)
511 return ret;
512
513 return strcmp(a->name, b->name);
514}
515#endif
516
Nico Huber454f6132012-12-10 13:34:10 +0000517/**
Nico Huber305f4172013-06-14 11:55:26 +0200518 * @brief Read a layout from the Intel ICH descriptor in the flash.
519 *
520 * Optionally verify that the layout matches the one in the given
521 * descriptor dump.
522 *
Nico Huberc3b02dc2023-08-12 01:13:45 +0200523 * @param[out] layout Points to a struct flashprog_layout pointer that
Nico Huber305f4172013-06-14 11:55:26 +0200524 * gets set if the descriptor is read and parsed
525 * successfully.
526 * @param[in] flashctx Flash context to read the descriptor from flash.
527 * @param[in] dump The descriptor dump to compare to or NULL.
528 * @param[in] len The length of the descriptor dump.
529 *
530 * @return 0 on success,
531 * 6 if descriptor parsing isn't implemented for the host,
532 * 5 if the descriptors don't match,
533 * 4 if the descriptor dump couldn't be parsed,
534 * 3 if the descriptor on flash couldn't be parsed,
535 * 2 if the descriptor on flash couldn't be read,
536 * 1 on any other error.
537 */
Nico Huberc3b02dc2023-08-12 01:13:45 +0200538int flashprog_layout_read_from_ifd(struct flashprog_layout **const layout, struct flashctx *const flashctx,
Nico Huber305f4172013-06-14 11:55:26 +0200539 const void *const dump, const size_t len)
540{
Nico Huberc3b02dc2023-08-12 01:13:45 +0200541#ifndef __FLASHPROG_LITTLE_ENDIAN__
Nico Huber305f4172013-06-14 11:55:26 +0200542 return 6;
543#else
Nico Huberc3b02dc2023-08-12 01:13:45 +0200544 struct flashprog_layout *dump_layout = NULL, *chip_layout = NULL;
Nico Huber305f4172013-06-14 11:55:26 +0200545 int ret = 1;
546
547 void *const desc = malloc(0x1000);
Nico Huber305f4172013-06-14 11:55:26 +0200548 if (prepare_flash_access(flashctx, true, false, false, false))
549 goto _free_ret;
550
551 msg_cinfo("Reading ich descriptor... ");
Richard Hughes842d6782021-01-15 09:48:12 +0000552 if (flashprog_read_range(flashctx, desc, 0, 0x1000)) {
Nico Huber305f4172013-06-14 11:55:26 +0200553 msg_cerr("Read operation failed!\n");
554 msg_cinfo("FAILED.\n");
555 ret = 2;
556 goto _finalize_ret;
557 }
558 msg_cinfo("done.\n");
559
Nico Huber5bd990c2019-06-16 19:46:46 +0200560 if (layout_from_ich_descriptors(&chip_layout, desc, 0x1000)) {
Patrick Rudolph911b8d82019-06-06 11:23:55 +0200561 msg_cerr("Couldn't parse the descriptor!\n");
Nico Huber305f4172013-06-14 11:55:26 +0200562 ret = 3;
563 goto _finalize_ret;
564 }
565
566 if (dump) {
567 if (layout_from_ich_descriptors(&dump_layout, dump, len)) {
Patrick Rudolph911b8d82019-06-06 11:23:55 +0200568 msg_cerr("Couldn't parse the descriptor!\n");
Nico Huber305f4172013-06-14 11:55:26 +0200569 ret = 4;
570 goto _finalize_ret;
571 }
572
Nico Huber5bd990c2019-06-16 19:46:46 +0200573 const struct romentry *chip_entry = layout_next(chip_layout, NULL);
574 const struct romentry *dump_entry = layout_next(dump_layout, NULL);
Nico Huberdb90cf72023-01-24 23:35:52 +0100575 while (chip_entry && dump_entry && !layout_cmp(chip_entry, dump_entry)) {
Nico Huber5bd990c2019-06-16 19:46:46 +0200576 chip_entry = layout_next(chip_layout, chip_entry);
577 dump_entry = layout_next(dump_layout, dump_entry);
Nico Huber354766b2019-06-16 19:28:35 +0200578 }
Nico Huberc3b02dc2023-08-12 01:13:45 +0200579 flashprog_layout_release(dump_layout);
Nico Huber354766b2019-06-16 19:28:35 +0200580 if (chip_entry || dump_entry) {
Patrick Rudolph911b8d82019-06-06 11:23:55 +0200581 msg_cerr("Descriptors don't match!\n");
Nico Huber305f4172013-06-14 11:55:26 +0200582 ret = 5;
583 goto _finalize_ret;
584 }
585 }
586
Nico Huberc3b02dc2023-08-12 01:13:45 +0200587 *layout = (struct flashprog_layout *)chip_layout;
Nico Huber305f4172013-06-14 11:55:26 +0200588 ret = 0;
589
590_finalize_ret:
591 finalize_flash_access(flashctx);
592_free_ret:
593 if (ret)
Nico Huberc3b02dc2023-08-12 01:13:45 +0200594 flashprog_layout_release(chip_layout);
Nico Huber305f4172013-06-14 11:55:26 +0200595 free(desc);
596 return ret;
597#endif
598}
599
Nico Huberc3b02dc2023-08-12 01:13:45 +0200600#ifdef __FLASHPROG_LITTLE_ENDIAN__
601static int flashprog_layout_parse_fmap(struct flashprog_layout **layout,
Arthur Heymansc82900b2018-01-10 12:48:16 +0100602 struct flashctx *const flashctx, const struct fmap *const fmap)
603{
604 int i;
Nico Huber92e0b622019-06-15 15:55:11 +0200605 char name[FMAP_STRLEN + 1];
606 const struct fmap_area *area;
Nico Huberc3b02dc2023-08-12 01:13:45 +0200607 struct flashprog_layout *l;
Arthur Heymansc82900b2018-01-10 12:48:16 +0100608
Nico Huberc3b02dc2023-08-12 01:13:45 +0200609 if (!fmap || flashprog_layout_new(&l))
Arthur Heymansc82900b2018-01-10 12:48:16 +0100610 return 1;
611
Nico Huber92e0b622019-06-15 15:55:11 +0200612 for (i = 0, area = fmap->areas; i < fmap->nareas; i++, area++) {
613 snprintf(name, sizeof(name), "%s", area->name);
Nico Huberc3b02dc2023-08-12 01:13:45 +0200614 if (flashprog_layout_add_region(l, area->offset, area->offset + area->size - 1, name)) {
615 flashprog_layout_release(l);
Nico Huber70461a92019-06-15 14:56:19 +0200616 return 1;
Nico Huberefe96a92021-05-14 00:39:24 +0200617 }
Arthur Heymansc82900b2018-01-10 12:48:16 +0100618 }
619
620 *layout = l;
621 return 0;
622}
Nico Huberc3b02dc2023-08-12 01:13:45 +0200623#endif /* __FLASHPROG_LITTLE_ENDIAN__ */
Arthur Heymansc82900b2018-01-10 12:48:16 +0100624
625/**
626 * @brief Read a layout by searching the flash chip for fmap.
627 *
Nico Huberc3b02dc2023-08-12 01:13:45 +0200628 * @param[out] layout Points to a struct flashprog_layout pointer that
Arthur Heymansc82900b2018-01-10 12:48:16 +0100629 * gets set if the fmap is read and parsed successfully.
630 * @param[in] flashctx Flash context
631 * @param[in] offset Offset to begin searching for fmap.
632 * @param[in] offset Length of address space to search.
633 *
634 * @return 0 on success,
635 * 3 if fmap parsing isn't implemented for the host,
636 * 2 if the fmap couldn't be read,
637 * 1 on any other error.
638 */
Nico Huberc3b02dc2023-08-12 01:13:45 +0200639int flashprog_layout_read_fmap_from_rom(struct flashprog_layout **const layout,
Julius Werner8f0db7d2022-02-14 17:07:39 -0800640 struct flashctx *const flashctx, size_t offset, size_t len)
Arthur Heymansc82900b2018-01-10 12:48:16 +0100641{
Nico Huberc3b02dc2023-08-12 01:13:45 +0200642#ifndef __FLASHPROG_LITTLE_ENDIAN__
Arthur Heymansc82900b2018-01-10 12:48:16 +0100643 return 3;
644#else
645 struct fmap *fmap = NULL;
646 int ret = 0;
647
648 msg_gdbg("Attempting to read fmap from ROM content.\n");
649 if (fmap_read_from_rom(&fmap, flashctx, offset, len)) {
650 msg_gerr("Failed to read fmap from ROM.\n");
651 return 1;
652 }
653
654 msg_gdbg("Adding fmap layout to global layout.\n");
Nico Huberc3b02dc2023-08-12 01:13:45 +0200655 if (flashprog_layout_parse_fmap(layout, flashctx, fmap)) {
Arthur Heymansc82900b2018-01-10 12:48:16 +0100656 msg_gerr("Failed to add fmap regions to layout.\n");
657 ret = 1;
658 }
659
660 free(fmap);
661 return ret;
662#endif
663}
664
665/**
666 * @brief Read a layout by searching buffer for fmap.
667 *
Nico Huberc3b02dc2023-08-12 01:13:45 +0200668 * @param[out] layout Points to a struct flashprog_layout pointer that
Arthur Heymansc82900b2018-01-10 12:48:16 +0100669 * gets set if the fmap is read and parsed successfully.
670 * @param[in] flashctx Flash context
671 * @param[in] buffer Buffer to search in
672 * @param[in] size Size of buffer to search
673 *
674 * @return 0 on success,
675 * 3 if fmap parsing isn't implemented for the host,
676 * 2 if the fmap couldn't be read,
677 * 1 on any other error.
678 */
Nico Huberc3b02dc2023-08-12 01:13:45 +0200679int flashprog_layout_read_fmap_from_buffer(struct flashprog_layout **const layout,
Arthur Heymansc82900b2018-01-10 12:48:16 +0100680 struct flashctx *const flashctx, const uint8_t *const buf, size_t size)
681{
Nico Huberc3b02dc2023-08-12 01:13:45 +0200682#ifndef __FLASHPROG_LITTLE_ENDIAN__
Arthur Heymansc82900b2018-01-10 12:48:16 +0100683 return 3;
684#else
685 struct fmap *fmap = NULL;
686 int ret = 1;
687
688 if (!buf || !size)
689 goto _ret;
690
691 msg_gdbg("Attempting to read fmap from buffer.\n");
692 if (fmap_read_from_buffer(&fmap, buf, size)) {
693 msg_gerr("Failed to read fmap from buffer.\n");
694 goto _ret;
695 }
696
697 msg_gdbg("Adding fmap layout to global layout.\n");
Nico Huberc3b02dc2023-08-12 01:13:45 +0200698 if (flashprog_layout_parse_fmap(layout, flashctx, fmap)) {
Arthur Heymansc82900b2018-01-10 12:48:16 +0100699 msg_gerr("Failed to add fmap regions to layout.\n");
700 goto _free_ret;
701 }
702
703 ret = 0;
704_free_ret:
705 free(fmap);
706_ret:
707 return ret;
708#endif
709}
710
Nico Huber305f4172013-06-14 11:55:26 +0200711/**
Nico Huber454f6132012-12-10 13:34:10 +0000712 * @brief Set the active layout for a flash context.
713 *
714 * Note: This just sets a pointer. The caller must not release the layout
715 * as long as he uses it through the given flash context.
716 *
717 * @param flashctx Flash context whose layout will be set.
718 * @param layout Layout to bet set.
719 */
Nico Huberc3b02dc2023-08-12 01:13:45 +0200720void flashprog_layout_set(struct flashprog_flashctx *const flashctx, const struct flashprog_layout *const layout)
Nico Huber454f6132012-12-10 13:34:10 +0000721{
722 flashctx->layout = layout;
723}
724
Nico Huberc3b02dc2023-08-12 01:13:45 +0200725/** @} */ /* end flashprog-layout */
Nikolai Artemievda1c8342021-10-21 00:58:12 +1100726
727
728/**
Nico Huberfd0fa752026-06-17 21:10:59 +0200729 * @defgroup flashprog-wp Write Protection
Nikolai Artemievda1c8342021-10-21 00:58:12 +1100730 * @{
731 */
732
733/**
734 * @brief Create a new empty WP configuration.
735 *
Nico Huberc3b02dc2023-08-12 01:13:45 +0200736 * @param[out] cfg Points to a pointer of type struct flashprog_wp_cfg that will
Nikolai Artemievda1c8342021-10-21 00:58:12 +1100737 * be set if creation succeeds. *cfg has to be freed by the
Nico Huberc3b02dc2023-08-12 01:13:45 +0200738 * caller with @ref flashprog_wp_cfg_release.
Nikolai Artemievda1c8342021-10-21 00:58:12 +1100739 * @return 0 on success
740 * >0 on failure
741 */
Nico Huberc3b02dc2023-08-12 01:13:45 +0200742enum flashprog_wp_result flashprog_wp_cfg_new(struct flashprog_wp_cfg **cfg)
Nikolai Artemievda1c8342021-10-21 00:58:12 +1100743{
744 *cfg = calloc(1, sizeof(**cfg));
Nico Huberc3b02dc2023-08-12 01:13:45 +0200745 return *cfg ? 0 : FLASHPROG_WP_ERR_OTHER;
Nikolai Artemievda1c8342021-10-21 00:58:12 +1100746}
747
748/**
749 * @brief Free a WP configuration.
750 *
Nico Huberc3b02dc2023-08-12 01:13:45 +0200751 * @param[out] cfg Pointer to the flashprog_wp_cfg to free.
Nikolai Artemievda1c8342021-10-21 00:58:12 +1100752 */
Nico Huberc3b02dc2023-08-12 01:13:45 +0200753void flashprog_wp_cfg_release(struct flashprog_wp_cfg *cfg)
Nikolai Artemievda1c8342021-10-21 00:58:12 +1100754{
755 free(cfg);
756}
757
758/**
759 * @brief Set the protection mode for a WP configuration.
760 *
761 * @param[in] mode The protection mode to set.
Nico Huberc3b02dc2023-08-12 01:13:45 +0200762 * @param[out] cfg Pointer to the flashprog_wp_cfg structure to modify.
Nikolai Artemievda1c8342021-10-21 00:58:12 +1100763 */
Nico Huberc3b02dc2023-08-12 01:13:45 +0200764void flashprog_wp_set_mode(struct flashprog_wp_cfg *cfg, enum flashprog_wp_mode mode)
Nikolai Artemievda1c8342021-10-21 00:58:12 +1100765{
766 cfg->mode = mode;
767}
768
769/**
770 * @brief Get the protection mode from a WP configuration.
771 *
772 * @param[in] cfg The WP configuration to get the protection mode from.
773 * @return The configuration's protection mode.
774 */
Nico Huberc3b02dc2023-08-12 01:13:45 +0200775enum flashprog_wp_mode flashprog_wp_get_mode(const struct flashprog_wp_cfg *cfg)
Nikolai Artemievda1c8342021-10-21 00:58:12 +1100776{
777 return cfg->mode;
778}
779
780/**
781 * @brief Set the protection range for a WP configuration.
782 *
Nico Huberc3b02dc2023-08-12 01:13:45 +0200783 * @param[out] cfg Pointer to the flashprog_wp_cfg structure to modify.
Nikolai Artemievda1c8342021-10-21 00:58:12 +1100784 * @param[in] start The range's start address.
785 * @param[in] len The range's length.
786 */
Nico Huberc3b02dc2023-08-12 01:13:45 +0200787void flashprog_wp_set_range(struct flashprog_wp_cfg *cfg, size_t start, size_t len)
Nikolai Artemievda1c8342021-10-21 00:58:12 +1100788{
789 cfg->range.start = start;
790 cfg->range.len = len;
791}
792
793/**
794 * @brief Get the protection range from a WP configuration.
795 *
796 * @param[out] start Points to a size_t to write the range start to.
797 * @param[out] len Points to a size_t to write the range length to.
798 * @param[in] cfg The WP configuration to get the range from.
799 */
Nico Huberc3b02dc2023-08-12 01:13:45 +0200800void flashprog_wp_get_range(size_t *start, size_t *len, const struct flashprog_wp_cfg *cfg)
Nikolai Artemievda1c8342021-10-21 00:58:12 +1100801{
802 *start = cfg->range.start;
803 *len = cfg->range.len;
804}
805
806/**
807 * @brief Write a WP configuration to a flash chip.
808 *
809 * @param[in] flash The flash context used to access the chip.
810 * @param[in] cfg The WP configuration to write to the chip.
811 * @return 0 on success
812 * >0 on failure
813 */
Nico Huberc3b02dc2023-08-12 01:13:45 +0200814enum flashprog_wp_result flashprog_wp_write_cfg(struct flashctx *flash, const struct flashprog_wp_cfg *cfg)
Nikolai Artemievda1c8342021-10-21 00:58:12 +1100815{
Nico Huber45290d02026-03-14 20:15:55 +0100816 if (!flash->chip.wp_write_cfg)
Nico Huberaabb3e02023-01-13 00:22:30 +0100817 return FLASHPROG_WP_ERR_CHIP_UNSUPPORTED;
Nikolai Artemievda1c8342021-10-21 00:58:12 +1100818
Nico Huber45290d02026-03-14 20:15:55 +0100819 return flash->chip.wp_write_cfg(flash, cfg);
Nikolai Artemievda1c8342021-10-21 00:58:12 +1100820}
821
822/**
823 * @brief Read the current WP configuration from a flash chip.
824 *
Nico Huberc3b02dc2023-08-12 01:13:45 +0200825 * @param[out] cfg Pointer to a struct flashprog_wp_cfg to store the chip's
Nikolai Artemievda1c8342021-10-21 00:58:12 +1100826 * configuration in.
827 * @param[in] flash The flash context used to access the chip.
828 * @return 0 on success
829 * >0 on failure
830 */
Nico Huberc3b02dc2023-08-12 01:13:45 +0200831enum flashprog_wp_result flashprog_wp_read_cfg(struct flashprog_wp_cfg *cfg, struct flashctx *flash)
Nikolai Artemievda1c8342021-10-21 00:58:12 +1100832{
Nico Huber45290d02026-03-14 20:15:55 +0100833 if (!flash->chip.wp_read_cfg)
Nico Huberaabb3e02023-01-13 00:22:30 +0100834 return FLASHPROG_WP_ERR_CHIP_UNSUPPORTED;
Nikolai Artemievda1c8342021-10-21 00:58:12 +1100835
Nico Huber45290d02026-03-14 20:15:55 +0100836 return flash->chip.wp_read_cfg(cfg, flash);
Nikolai Artemievda1c8342021-10-21 00:58:12 +1100837}
838
Nikolai Artemiev077c0d12021-10-21 01:50:15 +1100839/**
840 * @brief Get a list of protection ranges supported by the flash chip.
841 *
Nico Huberc3b02dc2023-08-12 01:13:45 +0200842 * @param[out] ranges Points to a pointer of type struct flashprog_wp_ranges
Nikolai Artemiev077c0d12021-10-21 01:50:15 +1100843 * that will be set if available ranges are found. Finding
844 * available ranges may not always be possible, even if the
845 * chip's protection range can be read or modified. *ranges
Nico Huberc3b02dc2023-08-12 01:13:45 +0200846 * must be freed using @ref flashprog_wp_ranges_free.
Nikolai Artemiev077c0d12021-10-21 01:50:15 +1100847 * @param[in] flash The flash context used to access the chip.
848 * @return 0 on success
849 * >0 on failure
850 */
Nico Huberc3b02dc2023-08-12 01:13:45 +0200851enum flashprog_wp_result flashprog_wp_get_available_ranges(struct flashprog_wp_ranges **list, struct flashprog_flashctx *flash)
Nikolai Artemiev077c0d12021-10-21 01:50:15 +1100852{
Nico Huber45290d02026-03-14 20:15:55 +0100853 if (!flash->chip.wp_get_ranges)
Nico Huberaabb3e02023-01-13 00:22:30 +0100854 return FLASHPROG_WP_ERR_CHIP_UNSUPPORTED;
Nikolai Artemiev077c0d12021-10-21 01:50:15 +1100855
Nico Huber45290d02026-03-14 20:15:55 +0100856 return flash->chip.wp_get_ranges(list, flash);
Nikolai Artemiev077c0d12021-10-21 01:50:15 +1100857}
858
859/**
860 * @brief Get a number of protection ranges in a range list.
861 *
862 * @param[in] ranges The range list to get the count from.
863 * @return Number of ranges in the list.
864 */
Nico Huberc3b02dc2023-08-12 01:13:45 +0200865size_t flashprog_wp_ranges_get_count(const struct flashprog_wp_ranges *list)
Nikolai Artemiev077c0d12021-10-21 01:50:15 +1100866{
867 return list->count;
868}
869
870/**
871 * @brief Get a protection range from a range list.
872 *
873 * @param[out] start Points to a size_t to write the range's start to.
874 * @param[out] len Points to a size_t to write the range's length to.
875 * @param[in] ranges The range list to get the range from.
876 * @param[in] index Index of the range to get.
877 * @return 0 on success
878 * >0 on failure
879 */
Nico Huberc3b02dc2023-08-12 01:13:45 +0200880enum flashprog_wp_result flashprog_wp_ranges_get_range(size_t *start, size_t *len, const struct flashprog_wp_ranges *list, unsigned int index)
Nikolai Artemiev077c0d12021-10-21 01:50:15 +1100881{
882 if (index >= list->count)
Nico Huberc3b02dc2023-08-12 01:13:45 +0200883 return FLASHPROG_WP_ERR_OTHER;
Nikolai Artemiev077c0d12021-10-21 01:50:15 +1100884
885 *start = list->ranges[index].start;
886 *len = list->ranges[index].len;
887
888 return 0;
889}
890
891/**
892 * @brief Free a WP range list.
893 *
Nico Huberc3b02dc2023-08-12 01:13:45 +0200894 * @param[out] cfg Pointer to the flashprog_wp_ranges to free.
Nikolai Artemiev077c0d12021-10-21 01:50:15 +1100895 */
Nico Huberc3b02dc2023-08-12 01:13:45 +0200896void flashprog_wp_ranges_release(struct flashprog_wp_ranges *list)
Nikolai Artemiev077c0d12021-10-21 01:50:15 +1100897{
898 if (!list)
899 return;
900
901 free(list->ranges);
902 free(list);
903}
904
905
Nico Huberc3b02dc2023-08-12 01:13:45 +0200906/** @} */ /* end flashprog-wp */