blob: 807a566c6f0c00ae00479c232d431c51c5510a97 [file] [log] [blame]
Christopher Collins92ea77f2016-12-12 15:59:26 -08001/*
David Brownaac71112020-02-03 16:13:42 -07002 * SPDX-License-Identifier: Apache-2.0
3 *
4 * Copyright (c) 2016-2020 Linaro LTD
5 * Copyright (c) 2016-2019 JUUL Labs
Antonio de Angelisba5fb1c2022-10-11 10:10:37 +01006 * Copyright (c) 2019-2023 Arm Limited
Dominik Ermel6f7f8732024-02-01 11:59:24 +00007 * Copyright (c) 2024 Nordic Semiconductor ASA
David Brownaac71112020-02-03 16:13:42 -07008 *
9 * Original license:
10 *
Christopher Collins92ea77f2016-12-12 15:59:26 -080011 * Licensed to the Apache Software Foundation (ASF) under one
12 * or more contributor license agreements. See the NOTICE file
13 * distributed with this work for additional information
14 * regarding copyright ownership. The ASF licenses this file
15 * to you under the Apache License, Version 2.0 (the
16 * "License"); you may not use this file except in compliance
17 * with the License. You may obtain a copy of the License at
18 *
19 * http://www.apache.org/licenses/LICENSE-2.0
20 *
21 * Unless required by applicable law or agreed to in writing,
22 * software distributed under the License is distributed on an
23 * "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
24 * KIND, either express or implied. See the License for the
25 * specific language governing permissions and limitations
26 * under the License.
27 */
28
29/**
30 * This file provides an interface to the boot loader. Functions defined in
31 * this file should only be called while the boot loader is running.
32 */
33
Christopher Collins92ea77f2016-12-12 15:59:26 -080034#include <stddef.h>
David Brown52eee562017-07-05 11:25:09 -060035#include <stdbool.h>
Christopher Collins92ea77f2016-12-12 15:59:26 -080036#include <inttypes.h>
37#include <stdlib.h>
38#include <string.h>
Christopher Collins92ea77f2016-12-12 15:59:26 -080039#include "bootutil/bootutil.h"
Kristine Jassmann73c38c62021-02-03 16:56:14 +000040#include "bootutil/bootutil_public.h"
Christopher Collins92ea77f2016-12-12 15:59:26 -080041#include "bootutil/image.h"
42#include "bootutil_priv.h"
Fabio Utzig12d59162019-11-28 10:01:59 -030043#include "swap_priv.h"
Marti Bolivarfd20c762017-02-07 16:52:50 -050044#include "bootutil/bootutil_log.h"
David Vinczec3084132020-02-18 14:50:47 +010045#include "bootutil/security_cnt.h"
David Vincze1cf11b52020-03-24 07:51:09 +010046#include "bootutil/boot_record.h"
Raef Colese8fe6cf2020-05-26 13:07:40 +010047#include "bootutil/fault_injection_hardening.h"
Mark Horvathccaf7f82021-01-04 18:16:42 +010048#include "bootutil/ramload.h"
Andrzej Puzdrowskib8f39692021-07-02 15:05:37 +020049#include "bootutil/boot_hooks.h"
Jamie McCrae56cb6102022-03-23 11:57:03 +000050#include "bootutil/mcuboot_status.h"
Marti Bolivarfd20c762017-02-07 16:52:50 -050051
Fabio Utzigba829042018-09-18 08:29:34 -030052#ifdef MCUBOOT_ENC_IMAGES
53#include "bootutil/enc_key.h"
54#endif
55
Carlos Falgueras García391b1972021-06-21 16:58:07 +020056#if !defined(MCUBOOT_DIRECT_XIP) && !defined(MCUBOOT_RAM_LOAD)
57#include <os/os_malloc.h>
58#endif
59
Fabio Utzigba1fbe62017-07-21 14:01:20 -030060#include "mcuboot_config/mcuboot_config.h"
Fabio Utzigeed80b62017-06-10 08:03:05 -030061
Carlos Falgueras Garcíaa4b4b0f2021-06-22 10:00:22 +020062BOOT_LOG_MODULE_DECLARE(mcuboot);
Emanuele Di Santo9f1933d2018-11-20 10:59:59 +010063
Marti Bolivar9b1f8bb2017-06-12 15:24:13 -040064static struct boot_loader_state boot_data;
Christopher Collins92ea77f2016-12-12 15:59:26 -080065
Fabio Utzigabec0732019-07-31 08:40:22 -030066#if (BOOT_IMAGE_NUMBER > 1)
67#define IMAGES_ITER(x) for ((x) = 0; (x) < BOOT_IMAGE_NUMBER; ++(x))
68#else
69#define IMAGES_ITER(x)
70#endif
71
Fabio Utzig10ee6482019-08-01 12:04:52 -030072/*
73 * This macro allows some control on the allocation of local variables.
74 * When running natively on a target, we don't want to allocated huge
75 * variables on the stack, so make them global instead. For the simulator
76 * we want to run as many threads as there are tests, and it's safer
77 * to just make those variables stack allocated.
78 */
79#if !defined(__BOOTSIM__)
80#define TARGET_STATIC static
81#else
82#define TARGET_STATIC
83#endif
84
Kristine Jassmann73c38c62021-02-03 16:56:14 +000085#if BOOT_MAX_ALIGN > 1024
86#define BUF_SZ BOOT_MAX_ALIGN
87#else
88#define BUF_SZ 1024
89#endif
90
Dominik Ermelaafcbad2024-02-29 20:40:20 +000091#define NO_ACTIVE_SLOT UINT32_MAX
92
David Vinczee574f2d2020-07-10 11:42:03 +020093static int
94boot_read_image_headers(struct boot_loader_state *state, bool require_all,
95 struct boot_status *bs)
96{
97 int rc;
98 int i;
99
100 for (i = 0; i < BOOT_NUM_SLOTS; i++) {
Andrzej Puzdrowskib8f39692021-07-02 15:05:37 +0200101 rc = BOOT_HOOK_CALL(boot_read_image_header_hook, BOOT_HOOK_REGULAR,
102 BOOT_CURR_IMG(state), i, boot_img_hdr(state, i));
103 if (rc == BOOT_HOOK_REGULAR)
104 {
105 rc = boot_read_image_header(state, i, boot_img_hdr(state, i), bs);
106 }
David Vinczee574f2d2020-07-10 11:42:03 +0200107 if (rc != 0) {
108 /* If `require_all` is set, fail on any single fail, otherwise
109 * if at least the first slot's header was read successfully,
110 * then the boot loader can attempt a boot.
111 *
112 * Failure to read any headers is a fatal error.
113 */
114 if (i > 0 && !require_all) {
115 return 0;
116 } else {
117 return rc;
118 }
119 }
120 }
121
122 return 0;
123}
124
Mark Horvathccaf7f82021-01-04 18:16:42 +0100125/**
126 * Saves boot status and shared data for current image.
127 *
128 * @param state Boot loader status information.
129 * @param active_slot Index of the slot will be loaded for current image.
130 *
131 * @return 0 on success; nonzero on failure.
132 */
133static int
134boot_add_shared_data(struct boot_loader_state *state,
Jamie McCrae3016d002023-03-14 12:35:51 +0000135 uint8_t active_slot)
Mark Horvathccaf7f82021-01-04 18:16:42 +0100136{
137#if defined(MCUBOOT_MEASURED_BOOT) || defined(MCUBOOT_DATA_SHARING)
138 int rc;
139
Jamie McCrae3016d002023-03-14 12:35:51 +0000140#ifdef MCUBOOT_DATA_SHARING
141 int max_app_size;
142#endif
143
Mark Horvathccaf7f82021-01-04 18:16:42 +0100144#ifdef MCUBOOT_MEASURED_BOOT
145 rc = boot_save_boot_status(BOOT_CURR_IMG(state),
146 boot_img_hdr(state, active_slot),
147 BOOT_IMG_AREA(state, active_slot));
148 if (rc != 0) {
149 BOOT_LOG_ERR("Failed to add image data to shared area");
150 return rc;
151 }
152#endif /* MCUBOOT_MEASURED_BOOT */
153
154#ifdef MCUBOOT_DATA_SHARING
Jamie McCrae3016d002023-03-14 12:35:51 +0000155 max_app_size = app_max_size(state);
Mark Horvathccaf7f82021-01-04 18:16:42 +0100156 rc = boot_save_shared_data(boot_img_hdr(state, active_slot),
Jamie McCrae3016d002023-03-14 12:35:51 +0000157 BOOT_IMG_AREA(state, active_slot),
158 active_slot, max_app_size);
Mark Horvathccaf7f82021-01-04 18:16:42 +0100159 if (rc != 0) {
160 BOOT_LOG_ERR("Failed to add data to shared memory area.");
161 return rc;
162 }
163#endif /* MCUBOOT_DATA_SHARING */
164
165 return 0;
166
167#else /* MCUBOOT_MEASURED_BOOT || MCUBOOT_DATA_SHARING */
168 (void) (state);
169 (void) (active_slot);
170
171 return 0;
172#endif
173}
174
175/**
176 * Fills rsp to indicate how booting should occur.
177 *
178 * @param state Boot loader status information.
Mark Horvathccaf7f82021-01-04 18:16:42 +0100179 * @param rsp boot_rsp struct to fill.
180 */
181static void
Raef Colesfe57e7d2021-10-15 11:07:09 +0100182fill_rsp(struct boot_loader_state *state, struct boot_rsp *rsp)
Mark Horvathccaf7f82021-01-04 18:16:42 +0100183{
184 uint32_t active_slot;
185
186#if (BOOT_IMAGE_NUMBER > 1)
Raef Colesf11de642021-10-15 11:11:56 +0100187 /* Always boot from the first enabled image. */
Mark Horvathccaf7f82021-01-04 18:16:42 +0100188 BOOT_CURR_IMG(state) = 0;
Raef Colesf11de642021-10-15 11:11:56 +0100189 IMAGES_ITER(BOOT_CURR_IMG(state)) {
190 if (!state->img_mask[BOOT_CURR_IMG(state)]) {
191 break;
192 }
193 }
INFINEON\DovhalA94360d52023-01-18 17:21:56 +0200194 /* At least one image must be active, otherwise skip the execution */
195 if (BOOT_CURR_IMG(state) >= BOOT_IMAGE_NUMBER) {
196 return;
197 }
Mark Horvathccaf7f82021-01-04 18:16:42 +0100198#endif
199
200#if defined(MCUBOOT_DIRECT_XIP) || defined(MCUBOOT_RAM_LOAD)
Raef Colesfe57e7d2021-10-15 11:07:09 +0100201 active_slot = state->slot_usage[BOOT_CURR_IMG(state)].active_slot;
Mark Horvathccaf7f82021-01-04 18:16:42 +0100202#else
Mark Horvathccaf7f82021-01-04 18:16:42 +0100203 active_slot = BOOT_PRIMARY_SLOT;
204#endif
205
Dominik Ermel260ae092021-04-23 05:38:45 +0000206 rsp->br_flash_dev_id = flash_area_get_device_id(BOOT_IMG_AREA(state, active_slot));
Mark Horvathccaf7f82021-01-04 18:16:42 +0100207 rsp->br_image_off = boot_img_slot_off(state, active_slot);
208 rsp->br_hdr = boot_img_hdr(state, active_slot);
209}
210
211/**
212 * Closes all flash areas.
213 *
214 * @param state Boot loader status information.
215 */
216static void
217close_all_flash_areas(struct boot_loader_state *state)
218{
219 uint32_t slot;
220
221 IMAGES_ITER(BOOT_CURR_IMG(state)) {
Raef Colesf11de642021-10-15 11:11:56 +0100222#if BOOT_IMAGE_NUMBER > 1
223 if (state->img_mask[BOOT_CURR_IMG(state)]) {
224 continue;
225 }
226#endif
Mark Horvathccaf7f82021-01-04 18:16:42 +0100227#if MCUBOOT_SWAP_USING_SCRATCH
228 flash_area_close(BOOT_SCRATCH_AREA(state));
229#endif
230 for (slot = 0; slot < BOOT_NUM_SLOTS; slot++) {
231 flash_area_close(BOOT_IMG_AREA(state, BOOT_NUM_SLOTS - 1 - slot));
232 }
233 }
234}
235
Dominik Ermelaafcbad2024-02-29 20:40:20 +0000236#if (BOOT_IMAGE_NUMBER > 1) || \
237 defined(MCUBOOT_DIRECT_XIP) || \
238 defined(MCUBOOT_RAM_LOAD) || \
239 defined(MCUBOOT_DOWNGRADE_PREVENTION)
240/**
241 * Compare image version numbers
242 *
243 * By default, the comparison does not take build number into account.
244 * Enable MCUBOOT_VERSION_CMP_USE_BUILD_NUMBER to take the build number into account.
245 *
246 * @param ver1 Pointer to the first image version to compare.
247 * @param ver2 Pointer to the second image version to compare.
248 *
249 * @retval -1 If ver1 is less than ver2.
250 * @retval 0 If the image version numbers are equal.
251 * @retval 1 If ver1 is greater than ver2.
252 */
253static int
254boot_version_cmp(const struct image_version *ver1,
255 const struct image_version *ver2)
256{
257 if (ver1->iv_major > ver2->iv_major) {
258 return 1;
259 }
260 if (ver1->iv_major < ver2->iv_major) {
261 return -1;
262 }
263 /* The major version numbers are equal, continue comparison. */
264 if (ver1->iv_minor > ver2->iv_minor) {
265 return 1;
266 }
267 if (ver1->iv_minor < ver2->iv_minor) {
268 return -1;
269 }
270 /* The minor version numbers are equal, continue comparison. */
271 if (ver1->iv_revision > ver2->iv_revision) {
272 return 1;
273 }
274 if (ver1->iv_revision < ver2->iv_revision) {
275 return -1;
276 }
277
278#if defined(MCUBOOT_VERSION_CMP_USE_BUILD_NUMBER)
279 /* The revisions are equal, continue comparison. */
280 if (ver1->iv_build_num > ver2->iv_build_num) {
281 return 1;
282 }
283 if (ver1->iv_build_num < ver2->iv_build_num) {
284 return -1;
285 }
286#endif
287
288 return 0;
289}
290#endif
291
292
293#if (BOOT_IMAGE_NUMBER > 1)
294
295static int
296boot_verify_slot_dependencies(struct boot_loader_state *state, uint32_t slot);
297
298/**
299 * Check the image dependency whether it is satisfied and modify
300 * the swap type if necessary.
301 *
302 * @param dep Image dependency which has to be verified.
303 *
304 * @return 0 on success; nonzero on failure.
305 */
306static int
307boot_verify_slot_dependency(struct boot_loader_state *state,
308 struct image_dependency *dep)
309{
310 struct image_version *dep_version;
311 size_t dep_slot;
312 int rc;
313
314 /* Determine the source of the image which is the subject of
315 * the dependency and get it's version. */
316#if !defined(MCUBOOT_DIRECT_XIP) && !defined(MCUBOOT_RAM_LOAD)
317 uint8_t swap_type = state->swap_type[dep->image_id];
318 dep_slot = BOOT_IS_UPGRADE(swap_type) ? BOOT_SECONDARY_SLOT
319 : BOOT_PRIMARY_SLOT;
320#else
321 dep_slot = state->slot_usage[dep->image_id].active_slot;
322#endif
323
324 dep_version = &state->imgs[dep->image_id][dep_slot].hdr.ih_ver;
325
326 rc = boot_version_cmp(dep_version, &dep->image_min_version);
327#if !defined(MCUBOOT_DIRECT_XIP) && !defined(MCUBOOT_RAM_LOAD)
328 if (rc < 0) {
329 /* Dependency not satisfied.
330 * Modify the swap type to decrease the version number of the image
331 * (which will be located in the primary slot after the boot process),
332 * consequently the number of unsatisfied dependencies will be
333 * decreased or remain the same.
334 */
335 switch (BOOT_SWAP_TYPE(state)) {
336 case BOOT_SWAP_TYPE_TEST:
337 case BOOT_SWAP_TYPE_PERM:
338 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_NONE;
339 break;
340 case BOOT_SWAP_TYPE_NONE:
341 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_REVERT;
342 break;
343 default:
344 break;
345 }
346 } else {
347 /* Dependency satisfied. */
348 rc = 0;
349 }
350#else
351 if (rc >= 0) {
352 /* Dependency satisfied. */
353 rc = 0;
354 }
355#endif
356
357 return rc;
358}
359
360#if !defined(MCUBOOT_DIRECT_XIP) && !defined(MCUBOOT_RAM_LOAD)
361/**
362 * Iterate over all the images and verify whether the image dependencies in the
363 * TLV area are all satisfied and update the related swap type if necessary.
364 */
365static int
366boot_verify_dependencies(struct boot_loader_state *state)
367{
368 int rc = -1;
369 uint8_t slot;
370
371 BOOT_CURR_IMG(state) = 0;
372 while (BOOT_CURR_IMG(state) < BOOT_IMAGE_NUMBER) {
373 if (state->img_mask[BOOT_CURR_IMG(state)]) {
374 BOOT_CURR_IMG(state)++;
375 continue;
376 }
377 if (BOOT_SWAP_TYPE(state) != BOOT_SWAP_TYPE_NONE &&
378 BOOT_SWAP_TYPE(state) != BOOT_SWAP_TYPE_FAIL) {
379 slot = BOOT_SECONDARY_SLOT;
380 } else {
381 slot = BOOT_PRIMARY_SLOT;
382 }
383
384 rc = boot_verify_slot_dependencies(state, slot);
385 if (rc == 0) {
386 /* All dependencies've been satisfied, continue with next image. */
387 BOOT_CURR_IMG(state)++;
388 } else {
389 /* Cannot upgrade due to non-met dependencies, so disable all
390 * image upgrades.
391 */
392 for (int idx = 0; idx < BOOT_IMAGE_NUMBER; idx++) {
393 BOOT_CURR_IMG(state) = idx;
394 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_NONE;
395 }
396 break;
397 }
398 }
399 return rc;
400}
401#else
402
403#if defined MCUBOOT_RAM_LOAD
404static inline int
405boot_remove_image_from_sram(struct boot_loader_state *state);
406#endif
407
408/**
409 * Checks the dependency of all the active slots. If an image found with
410 * invalid or not satisfied dependencies the image is removed from SRAM (in
411 * case of MCUBOOT_RAM_LOAD strategy) and its slot is set to unavailable.
412 *
413 * @param state Boot loader status information.
414 *
415 * @return 0 if dependencies are met; nonzero otherwise.
416 */
417static int
418boot_verify_dependencies(struct boot_loader_state *state)
419{
420 int rc = -1;
421 uint32_t active_slot;
422
423 IMAGES_ITER(BOOT_CURR_IMG(state)) {
424 if (state->img_mask[BOOT_CURR_IMG(state)]) {
425 continue;
426 }
427 active_slot = state->slot_usage[BOOT_CURR_IMG(state)].active_slot;
428 rc = boot_verify_slot_dependencies(state, active_slot);
429 if (rc != 0) {
430 /* Dependencies not met or invalid dependencies. */
431
432#ifdef MCUBOOT_RAM_LOAD
433 boot_remove_image_from_sram(state);
434#endif /* MCUBOOT_RAM_LOAD */
435
436 state->slot_usage[BOOT_CURR_IMG(state)].slot_available[active_slot] = false;
437 state->slot_usage[BOOT_CURR_IMG(state)].active_slot = NO_ACTIVE_SLOT;
438
439 return rc;
440 }
441 }
442
443 return rc;
444}
445#endif
446
447/**
448 * Read all dependency TLVs of an image from the flash and verify
449 * one after another to see if they are all satisfied.
450 *
451 * @param slot Image slot number.
452 *
453 * @return 0 on success; nonzero on failure.
454 */
455static int
456boot_verify_slot_dependencies(struct boot_loader_state *state, uint32_t slot)
457{
458 const struct flash_area *fap;
459 struct image_tlv_iter it;
460 struct image_dependency dep;
461 uint32_t off;
462 uint16_t len;
463 int area_id;
464 int rc;
465
466 area_id = flash_area_id_from_multi_image_slot(BOOT_CURR_IMG(state), slot);
467 rc = flash_area_open(area_id, &fap);
468 if (rc != 0) {
469 rc = BOOT_EFLASH;
470 goto done;
471 }
472
473 rc = bootutil_tlv_iter_begin(&it, boot_img_hdr(state, slot), fap,
474 IMAGE_TLV_DEPENDENCY, true);
475 if (rc != 0) {
476 goto done;
477 }
478
479 while (true) {
480 rc = bootutil_tlv_iter_next(&it, &off, &len, NULL);
481 if (rc < 0) {
482 return -1;
483 } else if (rc > 0) {
484 rc = 0;
485 break;
486 }
487
488 if (len != sizeof(dep)) {
489 rc = BOOT_EBADIMAGE;
490 goto done;
491 }
492
493 rc = LOAD_IMAGE_DATA(boot_img_hdr(state, slot),
494 fap, off, &dep, len);
495 if (rc != 0) {
496 rc = BOOT_EFLASH;
497 goto done;
498 }
499
500 if (dep.image_id >= BOOT_IMAGE_NUMBER) {
501 rc = BOOT_EBADARGS;
502 goto done;
503 }
504
505 /* Verify dependency and modify the swap type if not satisfied. */
506 rc = boot_verify_slot_dependency(state, &dep);
507 if (rc != 0) {
508 /* Dependency not satisfied */
509 goto done;
510 }
511 }
512
513done:
514 flash_area_close(fap);
515 return rc;
516}
517
518#endif /* (BOOT_IMAGE_NUMBER > 1) */
519
Tamas Banfe031092020-09-10 17:32:39 +0200520#if !defined(MCUBOOT_DIRECT_XIP)
David Brownf5b33d82017-09-01 10:58:27 -0600521/*
522 * Compute the total size of the given image. Includes the size of
523 * the TLVs.
524 */
Tamas Banfe031092020-09-10 17:32:39 +0200525#if !defined(MCUBOOT_OVERWRITE_ONLY) || defined(MCUBOOT_OVERWRITE_ONLY_FAST)
David Brownf5b33d82017-09-01 10:58:27 -0600526static int
Fabio Utzigd638b172019-08-09 10:38:05 -0300527boot_read_image_size(struct boot_loader_state *state, int slot, uint32_t *size)
David Brownf5b33d82017-09-01 10:58:27 -0600528{
529 const struct flash_area *fap;
Fabio Utzig61fd8882019-09-14 20:00:20 -0300530 struct image_tlv_info info;
Fabio Utzig233af7d2019-08-26 12:06:16 -0300531 uint32_t off;
Fabio Utzige52c08e2019-09-11 19:32:00 -0300532 uint32_t protect_tlv_size;
David Brownf5b33d82017-09-01 10:58:27 -0600533 int area_id;
534 int rc;
535
Fabio Utzig10ee6482019-08-01 12:04:52 -0300536#if (BOOT_IMAGE_NUMBER == 1)
537 (void)state;
538#endif
539
540 area_id = flash_area_id_from_multi_image_slot(BOOT_CURR_IMG(state), slot);
David Brownf5b33d82017-09-01 10:58:27 -0600541 rc = flash_area_open(area_id, &fap);
542 if (rc != 0) {
543 rc = BOOT_EFLASH;
544 goto done;
545 }
546
Fabio Utzig61fd8882019-09-14 20:00:20 -0300547 off = BOOT_TLV_OFF(boot_img_hdr(state, slot));
548
549 if (flash_area_read(fap, off, &info, sizeof(info))) {
550 rc = BOOT_EFLASH;
David Brownf5b33d82017-09-01 10:58:27 -0600551 goto done;
552 }
Fabio Utzig61fd8882019-09-14 20:00:20 -0300553
Fabio Utzige52c08e2019-09-11 19:32:00 -0300554 protect_tlv_size = boot_img_hdr(state, slot)->ih_protect_tlv_size;
555 if (info.it_magic == IMAGE_TLV_PROT_INFO_MAGIC) {
556 if (protect_tlv_size != info.it_tlv_tot) {
557 rc = BOOT_EBADIMAGE;
558 goto done;
559 }
560
561 if (flash_area_read(fap, off + info.it_tlv_tot, &info, sizeof(info))) {
562 rc = BOOT_EFLASH;
563 goto done;
564 }
565 } else if (protect_tlv_size != 0) {
566 rc = BOOT_EBADIMAGE;
567 goto done;
568 }
569
Fabio Utzig61fd8882019-09-14 20:00:20 -0300570 if (info.it_magic != IMAGE_TLV_INFO_MAGIC) {
571 rc = BOOT_EBADIMAGE;
572 goto done;
573 }
574
Fabio Utzige52c08e2019-09-11 19:32:00 -0300575 *size = off + protect_tlv_size + info.it_tlv_tot;
David Brownf5b33d82017-09-01 10:58:27 -0600576 rc = 0;
577
578done:
579 flash_area_close(fap);
Fabio Utzig2eebf112017-09-04 15:25:08 -0300580 return rc;
David Brownf5b33d82017-09-01 10:58:27 -0600581}
Fabio Utzig36ec0e72017-09-05 08:10:33 -0300582#endif /* !MCUBOOT_OVERWRITE_ONLY */
David Brownf5b33d82017-09-01 10:58:27 -0600583
Tamas Banfe031092020-09-10 17:32:39 +0200584#if !defined(MCUBOOT_RAM_LOAD)
David Brownab449182019-11-15 09:32:52 -0700585static uint32_t
Fabio Utzig10ee6482019-08-01 12:04:52 -0300586boot_write_sz(struct boot_loader_state *state)
Christopher Collins92ea77f2016-12-12 15:59:26 -0800587{
David Brownab449182019-11-15 09:32:52 -0700588 uint32_t elem_sz;
Fabio Utzig12d59162019-11-28 10:01:59 -0300589#if MCUBOOT_SWAP_USING_SCRATCH
David Brownab449182019-11-15 09:32:52 -0700590 uint32_t align;
Fabio Utzig12d59162019-11-28 10:01:59 -0300591#endif
Christopher Collins92ea77f2016-12-12 15:59:26 -0800592
593 /* Figure out what size to write update status update as. The size depends
594 * on what the minimum write size is for scratch area, active image slot.
595 * We need to use the bigger of those 2 values.
596 */
Fabio Utzig10ee6482019-08-01 12:04:52 -0300597 elem_sz = flash_area_align(BOOT_IMG_AREA(state, BOOT_PRIMARY_SLOT));
Fabio Utzig12d59162019-11-28 10:01:59 -0300598#if MCUBOOT_SWAP_USING_SCRATCH
Fabio Utzig10ee6482019-08-01 12:04:52 -0300599 align = flash_area_align(BOOT_SCRATCH_AREA(state));
Christopher Collins92ea77f2016-12-12 15:59:26 -0800600 if (align > elem_sz) {
601 elem_sz = align;
602 }
Fabio Utzig12d59162019-11-28 10:01:59 -0300603#endif
Christopher Collins92ea77f2016-12-12 15:59:26 -0800604
605 return elem_sz;
606}
607
Fabio Utzig10ee6482019-08-01 12:04:52 -0300608static int
609boot_initialize_area(struct boot_loader_state *state, int flash_area)
610{
Dominik Ermel51c8d762021-05-24 15:34:01 +0000611 uint32_t num_sectors = BOOT_MAX_IMG_SECTORS;
612 boot_sector_t *out_sectors;
613 uint32_t *out_num_sectors;
Fabio Utzig10ee6482019-08-01 12:04:52 -0300614 int rc;
615
616 num_sectors = BOOT_MAX_IMG_SECTORS;
617
618 if (flash_area == FLASH_AREA_IMAGE_PRIMARY(BOOT_CURR_IMG(state))) {
619 out_sectors = BOOT_IMG(state, BOOT_PRIMARY_SLOT).sectors;
620 out_num_sectors = &BOOT_IMG(state, BOOT_PRIMARY_SLOT).num_sectors;
621 } else if (flash_area == FLASH_AREA_IMAGE_SECONDARY(BOOT_CURR_IMG(state))) {
622 out_sectors = BOOT_IMG(state, BOOT_SECONDARY_SLOT).sectors;
623 out_num_sectors = &BOOT_IMG(state, BOOT_SECONDARY_SLOT).num_sectors;
Fabio Utzig12d59162019-11-28 10:01:59 -0300624#if MCUBOOT_SWAP_USING_SCRATCH
Fabio Utzig10ee6482019-08-01 12:04:52 -0300625 } else if (flash_area == FLASH_AREA_IMAGE_SCRATCH) {
626 out_sectors = state->scratch.sectors;
627 out_num_sectors = &state->scratch.num_sectors;
Fabio Utzig12d59162019-11-28 10:01:59 -0300628#endif
Fabio Utzig10ee6482019-08-01 12:04:52 -0300629 } else {
630 return BOOT_EFLASH;
631 }
632
Dominik Ermel51c8d762021-05-24 15:34:01 +0000633#ifdef MCUBOOT_USE_FLASH_AREA_GET_SECTORS
Fabio Utzig10ee6482019-08-01 12:04:52 -0300634 rc = flash_area_get_sectors(flash_area, &num_sectors, out_sectors);
Dominik Ermel51c8d762021-05-24 15:34:01 +0000635#else
636 _Static_assert(sizeof(int) <= sizeof(uint32_t), "Fix needed");
637 rc = flash_area_to_sectors(flash_area, (int *)&num_sectors, out_sectors);
638#endif /* defined(MCUBOOT_USE_FLASH_AREA_GET_SECTORS) */
Fabio Utzig10ee6482019-08-01 12:04:52 -0300639 if (rc != 0) {
640 return rc;
641 }
642 *out_num_sectors = num_sectors;
643 return 0;
644}
Fabio Utzig10ee6482019-08-01 12:04:52 -0300645
Christopher Collins92ea77f2016-12-12 15:59:26 -0800646/**
647 * Determines the sector layout of both image slots and the scratch area.
648 * This information is necessary for calculating the number of bytes to erase
649 * and copy during an image swap. The information collected during this
Fabio Utzig10ee6482019-08-01 12:04:52 -0300650 * function is used to populate the state.
Christopher Collins92ea77f2016-12-12 15:59:26 -0800651 */
652static int
Fabio Utzig10ee6482019-08-01 12:04:52 -0300653boot_read_sectors(struct boot_loader_state *state)
Christopher Collins92ea77f2016-12-12 15:59:26 -0800654{
Fabio Utzigb0f04732019-07-31 09:49:19 -0300655 uint8_t image_index;
Christopher Collins92ea77f2016-12-12 15:59:26 -0800656 int rc;
Christopher Collins92ea77f2016-12-12 15:59:26 -0800657
Fabio Utzig10ee6482019-08-01 12:04:52 -0300658 image_index = BOOT_CURR_IMG(state);
Fabio Utzigb0f04732019-07-31 09:49:19 -0300659
660 rc = boot_initialize_area(state, FLASH_AREA_IMAGE_PRIMARY(image_index));
Christopher Collins92ea77f2016-12-12 15:59:26 -0800661 if (rc != 0) {
662 return BOOT_EFLASH;
663 }
664
Fabio Utzig10ee6482019-08-01 12:04:52 -0300665 rc = boot_initialize_area(state, FLASH_AREA_IMAGE_SECONDARY(image_index));
Christopher Collins92ea77f2016-12-12 15:59:26 -0800666 if (rc != 0) {
Andrzej Puzdrowski54b4ad92021-06-22 13:21:22 +0200667 /* We need to differentiate from the primary image issue */
668 return BOOT_EFLASH_SEC;
Christopher Collins92ea77f2016-12-12 15:59:26 -0800669 }
670
Fabio Utzig12d59162019-11-28 10:01:59 -0300671#if MCUBOOT_SWAP_USING_SCRATCH
Fabio Utzig10ee6482019-08-01 12:04:52 -0300672 rc = boot_initialize_area(state, FLASH_AREA_IMAGE_SCRATCH);
Fabio Utzig2bd980a2018-11-26 10:38:17 -0200673 if (rc != 0) {
674 return BOOT_EFLASH;
675 }
Fabio Utzig12d59162019-11-28 10:01:59 -0300676#endif
Fabio Utzig2bd980a2018-11-26 10:38:17 -0200677
Fabio Utzig10ee6482019-08-01 12:04:52 -0300678 BOOT_WRITE_SZ(state) = boot_write_sz(state);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800679
680 return 0;
681}
682
Fabio Utzig12d59162019-11-28 10:01:59 -0300683void
684boot_status_reset(struct boot_status *bs)
Christopher Collins92ea77f2016-12-12 15:59:26 -0800685{
Fabio Utzig4741c452019-12-19 15:32:41 -0300686#ifdef MCUBOOT_ENC_IMAGES
Kristine Jassmann73c38c62021-02-03 16:56:14 +0000687 memset(&bs->enckey, 0xff, BOOT_NUM_SLOTS * BOOT_ENC_KEY_ALIGN_SIZE);
Fabio Utzig4741c452019-12-19 15:32:41 -0300688#if MCUBOOT_SWAP_SAVE_ENCTLV
689 memset(&bs->enctlv, 0xff, BOOT_NUM_SLOTS * BOOT_ENC_TLV_ALIGN_SIZE);
690#endif
691#endif /* MCUBOOT_ENC_IMAGES */
692
693 bs->use_scratch = 0;
694 bs->swap_size = 0;
695 bs->source = 0;
696
Fabio Utzig74aef312019-11-28 11:05:34 -0300697 bs->op = BOOT_STATUS_OP_MOVE;
Fabio Utzig39000012018-07-30 12:40:20 -0300698 bs->idx = BOOT_STATUS_IDX_0;
699 bs->state = BOOT_STATUS_STATE_0;
Christopher Collinsa1c12042019-05-23 14:00:28 -0700700 bs->swap_type = BOOT_SWAP_TYPE_NONE;
Fabio Utzig12d59162019-11-28 10:01:59 -0300701}
Christopher Collins92ea77f2016-12-12 15:59:26 -0800702
Fabio Utzig12d59162019-11-28 10:01:59 -0300703bool
704boot_status_is_reset(const struct boot_status *bs)
705{
Fabio Utzig74aef312019-11-28 11:05:34 -0300706 return (bs->op == BOOT_STATUS_OP_MOVE &&
707 bs->idx == BOOT_STATUS_IDX_0 &&
708 bs->state == BOOT_STATUS_STATE_0);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800709}
710
711/**
712 * Writes the supplied boot status to the flash file system. The boot status
713 * contains the current state of an in-progress image copy operation.
714 *
715 * @param bs The boot status to write.
716 *
717 * @return 0 on success; nonzero on failure.
718 */
719int
Fabio Utzig12d59162019-11-28 10:01:59 -0300720boot_write_status(const struct boot_loader_state *state, struct boot_status *bs)
Christopher Collins92ea77f2016-12-12 15:59:26 -0800721{
722 const struct flash_area *fap;
723 uint32_t off;
724 int area_id;
Dominik Ermel9479af02021-10-19 10:06:44 +0000725 int rc = 0;
Fabio Utziga0bc9b52017-06-28 09:19:55 -0300726 uint8_t buf[BOOT_MAX_ALIGN];
Gustavo Henrique Nihei4aa286d2021-11-24 14:54:56 -0300727 uint32_t align;
Fabio Utzig39000012018-07-30 12:40:20 -0300728 uint8_t erased_val;
Christopher Collins92ea77f2016-12-12 15:59:26 -0800729
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300730 /* NOTE: The first sector copied (that is the last sector on slot) contains
David Vincze2d736ad2019-02-18 11:50:22 +0100731 * the trailer. Since in the last step the primary slot is erased, the
732 * first two status writes go to the scratch which will be copied to
733 * the primary slot!
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300734 */
735
Fabio Utzig12d59162019-11-28 10:01:59 -0300736#if MCUBOOT_SWAP_USING_SCRATCH
Fabio Utzig2473ac02017-05-02 12:45:02 -0300737 if (bs->use_scratch) {
Christopher Collins92ea77f2016-12-12 15:59:26 -0800738 /* Write to scratch. */
739 area_id = FLASH_AREA_IMAGE_SCRATCH;
740 } else {
Fabio Utzig12d59162019-11-28 10:01:59 -0300741#endif
David Vincze2d736ad2019-02-18 11:50:22 +0100742 /* Write to the primary slot. */
Fabio Utzig10ee6482019-08-01 12:04:52 -0300743 area_id = FLASH_AREA_IMAGE_PRIMARY(BOOT_CURR_IMG(state));
Fabio Utzig12d59162019-11-28 10:01:59 -0300744#if MCUBOOT_SWAP_USING_SCRATCH
Christopher Collins92ea77f2016-12-12 15:59:26 -0800745 }
Fabio Utzig12d59162019-11-28 10:01:59 -0300746#endif
Christopher Collins92ea77f2016-12-12 15:59:26 -0800747
748 rc = flash_area_open(area_id, &fap);
749 if (rc != 0) {
Dominik Ermel9479af02021-10-19 10:06:44 +0000750 return BOOT_EFLASH;
Christopher Collins92ea77f2016-12-12 15:59:26 -0800751 }
752
753 off = boot_status_off(fap) +
Fabio Utzig12d59162019-11-28 10:01:59 -0300754 boot_status_internal_off(bs, BOOT_WRITE_SZ(state));
Andrzej Puzdrowskib788c712018-04-12 12:42:49 +0200755 align = flash_area_align(fap);
Fabio Utzig39000012018-07-30 12:40:20 -0300756 erased_val = flash_area_erased_val(fap);
757 memset(buf, erased_val, BOOT_MAX_ALIGN);
David Brown9d725462017-01-23 15:50:58 -0700758 buf[0] = bs->state;
759
Jamie McCrae35e99312024-01-03 07:37:55 +0000760 BOOT_LOG_DBG("writing swap status; fa_id=%d off=0x%lx (0x%lx)",
761 flash_area_get_id(fap), (unsigned long)off,
762 (unsigned long)flash_area_get_off(fap) + off);
763
David Brown9d725462017-01-23 15:50:58 -0700764 rc = flash_area_write(fap, off, buf, align);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800765 if (rc != 0) {
766 rc = BOOT_EFLASH;
Christopher Collins92ea77f2016-12-12 15:59:26 -0800767 }
768
Christopher Collins92ea77f2016-12-12 15:59:26 -0800769 flash_area_close(fap);
Dominik Ermel9479af02021-10-19 10:06:44 +0000770
Christopher Collins92ea77f2016-12-12 15:59:26 -0800771 return rc;
772}
Tamas Banfe031092020-09-10 17:32:39 +0200773#endif /* !MCUBOOT_RAM_LOAD */
David Vinczee574f2d2020-07-10 11:42:03 +0200774#endif /* !MCUBOOT_DIRECT_XIP */
Christopher Collins92ea77f2016-12-12 15:59:26 -0800775
776/*
David Vinczec3084132020-02-18 14:50:47 +0100777 * Validate image hash/signature and optionally the security counter in a slot.
Christopher Collins92ea77f2016-12-12 15:59:26 -0800778 */
Michael Grand5047f032022-11-24 16:49:56 +0100779static fih_ret
Fabio Utzig10ee6482019-08-01 12:04:52 -0300780boot_image_check(struct boot_loader_state *state, struct image_header *hdr,
781 const struct flash_area *fap, struct boot_status *bs)
Christopher Collins92ea77f2016-12-12 15:59:26 -0800782{
Fabio Utzig10ee6482019-08-01 12:04:52 -0300783 TARGET_STATIC uint8_t tmpbuf[BOOT_TMPBUF_SZ];
Fabio Utzigb0f04732019-07-31 09:49:19 -0300784 uint8_t image_index;
Fabio Utzigba829042018-09-18 08:29:34 -0300785 int rc;
Michael Grand5047f032022-11-24 16:49:56 +0100786 FIH_DECLARE(fih_rc, FIH_FAILURE);
Fabio Utzigba829042018-09-18 08:29:34 -0300787
Fabio Utzig10ee6482019-08-01 12:04:52 -0300788#if (BOOT_IMAGE_NUMBER == 1)
789 (void)state;
790#endif
791
Fabio Utzigba829042018-09-18 08:29:34 -0300792 (void)bs;
793 (void)rc;
Fabio Utzigbc077932019-08-26 11:16:34 -0300794
795 image_index = BOOT_CURR_IMG(state);
796
Hugo L'Hostisdb543e52021-03-09 18:00:31 +0000797/* In the case of ram loading the image has already been decrypted as it is
798 * decrypted when copied in ram */
799#if defined(MCUBOOT_ENC_IMAGES) && !defined(MCUBOOT_RAM_LOAD)
Fabio Utzigbc077932019-08-26 11:16:34 -0300800 if (MUST_DECRYPT(fap, image_index, hdr)) {
Fabio Utzig4741c452019-12-19 15:32:41 -0300801 rc = boot_enc_load(BOOT_CURR_ENC(state), image_index, hdr, fap, bs);
Fabio Utzigba829042018-09-18 08:29:34 -0300802 if (rc < 0) {
Raef Colese8fe6cf2020-05-26 13:07:40 +0100803 FIH_RET(fih_rc);
Fabio Utzigba829042018-09-18 08:29:34 -0300804 }
Fabio Utzig4741c452019-12-19 15:32:41 -0300805 if (rc == 0 && boot_enc_set_key(BOOT_CURR_ENC(state), 1, bs)) {
Raef Colese8fe6cf2020-05-26 13:07:40 +0100806 FIH_RET(fih_rc);
Fabio Utzigba829042018-09-18 08:29:34 -0300807 }
808 }
Fabio Utzigbc077932019-08-26 11:16:34 -0300809#endif
810
Raef Colese8fe6cf2020-05-26 13:07:40 +0100811 FIH_CALL(bootutil_img_validate, fih_rc, BOOT_CURR_ENC(state), image_index,
812 hdr, fap, tmpbuf, BOOT_TMPBUF_SZ, NULL, 0, NULL);
Fabio Utzig10ee6482019-08-01 12:04:52 -0300813
Raef Colese8fe6cf2020-05-26 13:07:40 +0100814 FIH_RET(fih_rc);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800815}
816
Tamas Banfe031092020-09-10 17:32:39 +0200817#if !defined(MCUBOOT_DIRECT_XIP) && !defined(MCUBOOT_RAM_LOAD)
Michael Grand5047f032022-11-24 16:49:56 +0100818static fih_ret
Christopher Collins92ea77f2016-12-12 15:59:26 -0800819split_image_check(struct image_header *app_hdr,
820 const struct flash_area *app_fap,
821 struct image_header *loader_hdr,
822 const struct flash_area *loader_fap)
823{
824 static void *tmpbuf;
825 uint8_t loader_hash[32];
Michael Grand5047f032022-11-24 16:49:56 +0100826 FIH_DECLARE(fih_rc, FIH_FAILURE);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800827
828 if (!tmpbuf) {
829 tmpbuf = malloc(BOOT_TMPBUF_SZ);
830 if (!tmpbuf) {
Raef Colese8fe6cf2020-05-26 13:07:40 +0100831 goto out;
Christopher Collins92ea77f2016-12-12 15:59:26 -0800832 }
833 }
834
Raef Colese8fe6cf2020-05-26 13:07:40 +0100835 FIH_CALL(bootutil_img_validate, fih_rc, NULL, 0, loader_hdr, loader_fap,
836 tmpbuf, BOOT_TMPBUF_SZ, NULL, 0, loader_hash);
Michael Grand5047f032022-11-24 16:49:56 +0100837 if (FIH_NOT_EQ(fih_rc, FIH_SUCCESS)) {
Raef Colese8fe6cf2020-05-26 13:07:40 +0100838 FIH_RET(fih_rc);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800839 }
840
Raef Colese8fe6cf2020-05-26 13:07:40 +0100841 FIH_CALL(bootutil_img_validate, fih_rc, NULL, 0, app_hdr, app_fap,
842 tmpbuf, BOOT_TMPBUF_SZ, loader_hash, 32, NULL);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800843
Raef Colese8fe6cf2020-05-26 13:07:40 +0100844out:
845 FIH_RET(fih_rc);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800846}
Tamas Banfe031092020-09-10 17:32:39 +0200847#endif /* !MCUBOOT_DIRECT_XIP && !MCUBOOT_RAM_LOAD */
Christopher Collins92ea77f2016-12-12 15:59:26 -0800848
Fabio Utzig338a19f2018-12-03 08:37:08 -0200849/*
David Brown9bf95af2019-10-10 15:36:36 -0600850 * Check that this is a valid header. Valid means that the magic is
851 * correct, and that the sizes/offsets are "sane". Sane means that
852 * there is no overflow on the arithmetic, and that the result fits
853 * within the flash area we are in.
854 */
855static bool
856boot_is_header_valid(const struct image_header *hdr, const struct flash_area *fap)
857{
858 uint32_t size;
859
860 if (hdr->ih_magic != IMAGE_MAGIC) {
861 return false;
862 }
863
864 if (!boot_u32_safe_add(&size, hdr->ih_img_size, hdr->ih_hdr_size)) {
865 return false;
866 }
867
Dominik Ermel260ae092021-04-23 05:38:45 +0000868 if (size >= flash_area_get_size(fap)) {
David Brown9bf95af2019-10-10 15:36:36 -0600869 return false;
870 }
871
872 return true;
873}
874
875/*
Fabio Utzig338a19f2018-12-03 08:37:08 -0200876 * Check that a memory area consists of a given value.
877 */
878static inline bool
879boot_data_is_set_to(uint8_t val, void *data, size_t len)
Fabio Utzig39000012018-07-30 12:40:20 -0300880{
881 uint8_t i;
Fabio Utzig338a19f2018-12-03 08:37:08 -0200882 uint8_t *p = (uint8_t *)data;
883 for (i = 0; i < len; i++) {
884 if (val != p[i]) {
885 return false;
Fabio Utzig39000012018-07-30 12:40:20 -0300886 }
887 }
Fabio Utzig338a19f2018-12-03 08:37:08 -0200888 return true;
889}
890
891static int
Fabio Utzig10ee6482019-08-01 12:04:52 -0300892boot_check_header_erased(struct boot_loader_state *state, int slot)
Fabio Utzig338a19f2018-12-03 08:37:08 -0200893{
894 const struct flash_area *fap;
895 struct image_header *hdr;
896 uint8_t erased_val;
Fabio Utzigb0f04732019-07-31 09:49:19 -0300897 int area_id;
Fabio Utzig338a19f2018-12-03 08:37:08 -0200898 int rc;
899
Fabio Utzig10ee6482019-08-01 12:04:52 -0300900 area_id = flash_area_id_from_multi_image_slot(BOOT_CURR_IMG(state), slot);
Fabio Utzigb0f04732019-07-31 09:49:19 -0300901 rc = flash_area_open(area_id, &fap);
Fabio Utzig338a19f2018-12-03 08:37:08 -0200902 if (rc != 0) {
903 return -1;
904 }
905
906 erased_val = flash_area_erased_val(fap);
907 flash_area_close(fap);
908
Fabio Utzig10ee6482019-08-01 12:04:52 -0300909 hdr = boot_img_hdr(state, slot);
Fabio Utzig338a19f2018-12-03 08:37:08 -0200910 if (!boot_data_is_set_to(erased_val, &hdr->ih_magic, sizeof(hdr->ih_magic))) {
911 return -1;
912 }
913
914 return 0;
Fabio Utzig39000012018-07-30 12:40:20 -0300915}
916
Dominik Ermel0c8c8d52021-02-17 14:45:02 +0000917#if defined(MCUBOOT_DIRECT_XIP)
918/**
919 * Check if image in slot has been set with specific ROM address to run from
920 * and whether the slot starts at that address.
921 *
922 * @returns 0 if IMAGE_F_ROM_FIXED flag is not set;
923 * 0 if IMAGE_F_ROM_FIXED flag is set and ROM address specified in
924 * header matches the slot address;
925 * 1 if IMF_F_ROM_FIXED flag is set but ROM address specified in header
926 * does not match the slot address.
927 */
928static bool
Raef Colesfe57e7d2021-10-15 11:07:09 +0100929boot_rom_address_check(struct boot_loader_state *state)
Dominik Ermel0c8c8d52021-02-17 14:45:02 +0000930{
Mark Horvathccaf7f82021-01-04 18:16:42 +0100931 uint32_t active_slot;
932 const struct image_header *hdr;
933 uint32_t f_off;
934
Raef Colesfe57e7d2021-10-15 11:07:09 +0100935 active_slot = state->slot_usage[BOOT_CURR_IMG(state)].active_slot;
Mark Horvathccaf7f82021-01-04 18:16:42 +0100936 hdr = boot_img_hdr(state, active_slot);
937 f_off = boot_img_slot_off(state, active_slot);
938
Dominik Ermel0c8c8d52021-02-17 14:45:02 +0000939 if (hdr->ih_flags & IMAGE_F_ROM_FIXED && hdr->ih_load_addr != f_off) {
940 BOOT_LOG_WRN("Image in %s slot at 0x%x has been built for offset 0x%x"\
Mark Horvathccaf7f82021-01-04 18:16:42 +0100941 ", skipping",
942 active_slot == 0 ? "primary" : "secondary", f_off,
Dominik Ermel0c8c8d52021-02-17 14:45:02 +0000943 hdr->ih_load_addr);
944
945 /* If there is address mismatch, the image is not bootable from this
946 * slot.
947 */
948 return 1;
949 }
950 return 0;
951}
952#endif
953
Fabio Utzigb1adb1e2019-09-11 11:42:53 -0300954/*
955 * Check that there is a valid image in a slot
956 *
957 * @returns
Raef Colese8fe6cf2020-05-26 13:07:40 +0100958 * FIH_SUCCESS if image was successfully validated
Michael Grand5047f032022-11-24 16:49:56 +0100959 * FIH_NO_BOOTABLE_IMAGE if no bootloable image was found
Raef Colese8fe6cf2020-05-26 13:07:40 +0100960 * FIH_FAILURE on any errors
Fabio Utzigb1adb1e2019-09-11 11:42:53 -0300961 */
Michael Grand5047f032022-11-24 16:49:56 +0100962static fih_ret
Fabio Utzig10ee6482019-08-01 12:04:52 -0300963boot_validate_slot(struct boot_loader_state *state, int slot,
964 struct boot_status *bs)
Christopher Collins92ea77f2016-12-12 15:59:26 -0800965{
966 const struct flash_area *fap;
Marti Bolivarf804f622017-06-12 15:41:48 -0400967 struct image_header *hdr;
Fabio Utzigb0f04732019-07-31 09:49:19 -0300968 int area_id;
Michael Grand5047f032022-11-24 16:49:56 +0100969 FIH_DECLARE(fih_rc, FIH_FAILURE);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800970 int rc;
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300971
Fabio Utzig10ee6482019-08-01 12:04:52 -0300972 area_id = flash_area_id_from_multi_image_slot(BOOT_CURR_IMG(state), slot);
Fabio Utzigb0f04732019-07-31 09:49:19 -0300973 rc = flash_area_open(area_id, &fap);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800974 if (rc != 0) {
Raef Colese8fe6cf2020-05-26 13:07:40 +0100975 FIH_RET(fih_rc);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800976 }
977
Fabio Utzig10ee6482019-08-01 12:04:52 -0300978 hdr = boot_img_hdr(state, slot);
979 if (boot_check_header_erased(state, slot) == 0 ||
980 (hdr->ih_flags & IMAGE_F_NON_BOOTABLE)) {
Fabio Utzig260ec452020-07-09 18:40:07 -0300981
982#if defined(MCUBOOT_SWAP_USING_SCRATCH) || defined(MCUBOOT_SWAP_USING_MOVE)
983 /*
984 * This fixes an issue where an image might be erased, but a trailer
985 * be left behind. It can happen if the image is in the secondary slot
986 * and did not pass validation, in which case the whole slot is erased.
987 * If during the erase operation, a reset occurs, parts of the slot
988 * might have been erased while some did not. The concerning part is
989 * the trailer because it might disable a new image from being loaded
990 * through mcumgr; so we just get rid of the trailer here, if the header
991 * is erased.
992 */
993 if (slot != BOOT_PRIMARY_SLOT) {
994 swap_erase_trailer_sectors(state, fap);
995 }
996#endif
997
David Vincze2d736ad2019-02-18 11:50:22 +0100998 /* No bootable image in slot; continue booting from the primary slot. */
Michael Grand5047f032022-11-24 16:49:56 +0100999 fih_rc = FIH_NO_BOOTABLE_IMAGE;
Fabio Utzig338a19f2018-12-03 08:37:08 -02001000 goto out;
Fabio Utzig39000012018-07-30 12:40:20 -03001001 }
1002
Håkon Øye Amundsen2d1bac12020-01-03 13:08:09 +00001003#if defined(MCUBOOT_OVERWRITE_ONLY) && defined(MCUBOOT_DOWNGRADE_PREVENTION)
1004 if (slot != BOOT_PRIMARY_SLOT) {
1005 /* Check if version of secondary slot is sufficient */
David Vincze8b0b6372020-05-20 19:54:44 +02001006 rc = boot_version_cmp(
1007 &boot_img_hdr(state, BOOT_SECONDARY_SLOT)->ih_ver,
1008 &boot_img_hdr(state, BOOT_PRIMARY_SLOT)->ih_ver);
1009 if (rc < 0 && boot_check_header_erased(state, BOOT_PRIMARY_SLOT)) {
Håkon Øye Amundsen2d1bac12020-01-03 13:08:09 +00001010 BOOT_LOG_ERR("insufficient version in secondary slot");
Dominik Ermel260ae092021-04-23 05:38:45 +00001011 flash_area_erase(fap, 0, flash_area_get_size(fap));
Håkon Øye Amundsen2d1bac12020-01-03 13:08:09 +00001012 /* Image in the secondary slot does not satisfy version requirement.
1013 * Erase the image and continue booting from the primary slot.
1014 */
Michael Grand5047f032022-11-24 16:49:56 +01001015 fih_rc = FIH_NO_BOOTABLE_IMAGE;
Håkon Øye Amundsen2d1bac12020-01-03 13:08:09 +00001016 goto out;
1017 }
1018 }
1019#endif
Michael Grand5047f032022-11-24 16:49:56 +01001020 BOOT_HOOK_CALL_FIH(boot_image_check_hook, FIH_BOOT_HOOK_REGULAR,
Andrzej Puzdrowskib8f39692021-07-02 15:05:37 +02001021 fih_rc, BOOT_CURR_IMG(state), slot);
Michael Grand5047f032022-11-24 16:49:56 +01001022 if (FIH_EQ(fih_rc, FIH_BOOT_HOOK_REGULAR))
Andrzej Puzdrowskib8f39692021-07-02 15:05:37 +02001023 {
1024 FIH_CALL(boot_image_check, fih_rc, state, hdr, fap, bs);
1025 }
Michael Grand5047f032022-11-24 16:49:56 +01001026 if (!boot_is_header_valid(hdr, fap) || FIH_NOT_EQ(fih_rc, FIH_SUCCESS)) {
Tamas Banfe031092020-09-10 17:32:39 +02001027 if ((slot != BOOT_PRIMARY_SLOT) || ARE_SLOTS_EQUIVALENT()) {
Dominik Ermel260ae092021-04-23 05:38:45 +00001028 flash_area_erase(fap, 0, flash_area_get_size(fap));
David Vinczee574f2d2020-07-10 11:42:03 +02001029 /* Image is invalid, erase it to prevent further unnecessary
1030 * attempts to validate and boot it.
David Brownb38e0442017-02-24 13:57:12 -07001031 */
1032 }
David Brown098de832019-12-10 11:58:01 -07001033#if !defined(__BOOTSIM__)
David Vincze2d736ad2019-02-18 11:50:22 +01001034 BOOT_LOG_ERR("Image in the %s slot is not valid!",
1035 (slot == BOOT_PRIMARY_SLOT) ? "primary" : "secondary");
David Brown098de832019-12-10 11:58:01 -07001036#endif
Michael Grand5047f032022-11-24 16:49:56 +01001037 fih_rc = FIH_NO_BOOTABLE_IMAGE;
Fabio Utzig338a19f2018-12-03 08:37:08 -02001038 goto out;
Christopher Collins92ea77f2016-12-12 15:59:26 -08001039 }
1040
Håkon Øye Amundsene829e9d2021-11-12 14:01:01 +00001041#if MCUBOOT_IMAGE_NUMBER > 1 && !defined(MCUBOOT_ENC_IMAGES) && defined(MCUBOOT_VERIFY_IMG_ADDRESS)
1042 /* Verify that the image in the secondary slot has a reset address
1043 * located in the primary slot. This is done to avoid users incorrectly
1044 * overwriting an application written to the incorrect slot.
1045 * This feature is only supported by ARM platforms.
1046 */
1047 if (area_id == FLASH_AREA_IMAGE_SECONDARY(BOOT_CURR_IMG(state))) {
1048 const struct flash_area *pri_fa = BOOT_IMG_AREA(state, BOOT_PRIMARY_SLOT);
1049 struct image_header *secondary_hdr = boot_img_hdr(state, slot);
1050 uint32_t reset_value = 0;
1051 uint32_t reset_addr = secondary_hdr->ih_hdr_size + sizeof(reset_value);
1052
1053 rc = flash_area_read(fap, reset_addr, &reset_value, sizeof(reset_value));
1054 if (rc != 0) {
Michael Grand5047f032022-11-24 16:49:56 +01001055 fih_rc = FIH_NO_BOOTABLE_IMAGE;
Håkon Øye Amundsene829e9d2021-11-12 14:01:01 +00001056 goto out;
1057 }
1058
1059 if (reset_value < pri_fa->fa_off || reset_value> (pri_fa->fa_off + pri_fa->fa_size)) {
1060 BOOT_LOG_ERR("Reset address of image in secondary slot is not in the primary slot");
1061 BOOT_LOG_ERR("Erasing image from secondary slot");
1062
1063 /* The vector table in the image located in the secondary
1064 * slot does not target the primary slot. This might
1065 * indicate that the image was loaded to the wrong slot.
1066 *
1067 * Erase the image and continue booting from the primary slot.
1068 */
1069 flash_area_erase(fap, 0, fap->fa_size);
Michael Grand5047f032022-11-24 16:49:56 +01001070 fih_rc = FIH_NO_BOOTABLE_IMAGE;
Håkon Øye Amundsene829e9d2021-11-12 14:01:01 +00001071 goto out;
1072 }
1073 }
1074#endif
1075
Fabio Utzig338a19f2018-12-03 08:37:08 -02001076out:
1077 flash_area_close(fap);
Raef Colese8fe6cf2020-05-26 13:07:40 +01001078
1079 FIH_RET(fih_rc);
Christopher Collins92ea77f2016-12-12 15:59:26 -08001080}
1081
David Vinczec3084132020-02-18 14:50:47 +01001082#ifdef MCUBOOT_HW_ROLLBACK_PROT
1083/**
1084 * Updates the stored security counter value with the image's security counter
1085 * value which resides in the given slot, only if it's greater than the stored
1086 * value.
1087 *
1088 * @param image_index Index of the image to determine which security
1089 * counter to update.
1090 * @param slot Slot number of the image.
1091 * @param hdr Pointer to the image header structure of the image
1092 * that is currently stored in the given slot.
1093 *
1094 * @return 0 on success; nonzero on failure.
1095 */
1096static int
1097boot_update_security_counter(uint8_t image_index, int slot,
1098 struct image_header *hdr)
1099{
1100 const struct flash_area *fap = NULL;
1101 uint32_t img_security_cnt;
1102 int rc;
1103
1104 rc = flash_area_open(flash_area_id_from_multi_image_slot(image_index, slot),
1105 &fap);
1106 if (rc != 0) {
1107 rc = BOOT_EFLASH;
1108 goto done;
1109 }
1110
1111 rc = bootutil_get_img_security_cnt(hdr, fap, &img_security_cnt);
1112 if (rc != 0) {
1113 goto done;
1114 }
1115
1116 rc = boot_nv_security_counter_update(image_index, img_security_cnt);
1117 if (rc != 0) {
1118 goto done;
1119 }
1120
1121done:
1122 flash_area_close(fap);
1123 return rc;
1124}
1125#endif /* MCUBOOT_HW_ROLLBACK_PROT */
1126
Tamas Banfe031092020-09-10 17:32:39 +02001127#if !defined(MCUBOOT_DIRECT_XIP) && !defined(MCUBOOT_RAM_LOAD)
David Vinczee574f2d2020-07-10 11:42:03 +02001128/**
1129 * Determines which swap operation to perform, if any. If it is determined
1130 * that a swap operation is required, the image in the secondary slot is checked
1131 * for validity. If the image in the secondary slot is invalid, it is erased,
1132 * and a swap type of "none" is indicated.
1133 *
1134 * @return The type of swap to perform (BOOT_SWAP_TYPE...)
1135 */
1136static int
1137boot_validated_swap_type(struct boot_loader_state *state,
1138 struct boot_status *bs)
1139{
1140 int swap_type;
Michael Grand5047f032022-11-24 16:49:56 +01001141 FIH_DECLARE(fih_rc, FIH_FAILURE);
David Vinczee574f2d2020-07-10 11:42:03 +02001142
1143 swap_type = boot_swap_type_multi(BOOT_CURR_IMG(state));
1144 if (BOOT_IS_UPGRADE(swap_type)) {
1145 /* Boot loader wants to switch to the secondary slot.
1146 * Ensure image is valid.
1147 */
Raef Colese8fe6cf2020-05-26 13:07:40 +01001148 FIH_CALL(boot_validate_slot, fih_rc, state, BOOT_SECONDARY_SLOT, bs);
Michael Grand5047f032022-11-24 16:49:56 +01001149 if (FIH_NOT_EQ(fih_rc, FIH_SUCCESS)) {
1150 if (FIH_EQ(fih_rc, FIH_NO_BOOTABLE_IMAGE)) {
Raef Colese8fe6cf2020-05-26 13:07:40 +01001151 swap_type = BOOT_SWAP_TYPE_NONE;
1152 } else {
1153 swap_type = BOOT_SWAP_TYPE_FAIL;
1154 }
David Vinczee574f2d2020-07-10 11:42:03 +02001155 }
1156 }
1157
1158 return swap_type;
1159}
David Brown94ed12c2021-05-26 16:28:14 -06001160#endif
David Vinczee574f2d2020-07-10 11:42:03 +02001161
Christopher Collins92ea77f2016-12-12 15:59:26 -08001162/**
Christopher Collins92ea77f2016-12-12 15:59:26 -08001163 * Erases a region of flash.
1164 *
Fabio Utzigba829042018-09-18 08:29:34 -03001165 * @param flash_area The flash_area containing the region to erase.
Christopher Collins92ea77f2016-12-12 15:59:26 -08001166 * @param off The offset within the flash area to start the
1167 * erase.
1168 * @param sz The number of bytes to erase.
1169 *
1170 * @return 0 on success; nonzero on failure.
1171 */
Fabio Utzig12d59162019-11-28 10:01:59 -03001172int
Fabio Utzigc28005b2019-09-10 12:18:29 -03001173boot_erase_region(const struct flash_area *fap, uint32_t off, uint32_t sz)
Christopher Collins92ea77f2016-12-12 15:59:26 -08001174{
Fabio Utzigba829042018-09-18 08:29:34 -03001175 return flash_area_erase(fap, off, sz);
Christopher Collins92ea77f2016-12-12 15:59:26 -08001176}
1177
David Brown94ed12c2021-05-26 16:28:14 -06001178#if !defined(MCUBOOT_DIRECT_XIP) && !defined(MCUBOOT_RAM_LOAD)
Dominik Ermel256bc372022-12-07 15:51:31 +00001179
1180#if defined(MCUBOOT_ENC_IMAGES) || defined(MCUBOOT_SWAP_SAVE_ENCTLV)
1181/* Replacement for memset(p, 0, sizeof(*p) that does not get
1182 * optimized out.
1183 */
1184static void like_mbedtls_zeroize(void *p, size_t n)
1185{
1186 volatile unsigned char *v = (unsigned char *)p;
1187
1188 for (size_t i = 0; i < n; i++) {
1189 v[i] = 0;
1190 }
1191}
1192#endif
1193
Christopher Collins92ea77f2016-12-12 15:59:26 -08001194/**
1195 * Copies the contents of one flash region to another. You must erase the
1196 * destination region prior to calling this function.
1197 *
1198 * @param flash_area_id_src The ID of the source flash area.
1199 * @param flash_area_id_dst The ID of the destination flash area.
1200 * @param off_src The offset within the source flash area to
1201 * copy from.
1202 * @param off_dst The offset within the destination flash area to
1203 * copy to.
1204 * @param sz The number of bytes to copy.
1205 *
1206 * @return 0 on success; nonzero on failure.
1207 */
Fabio Utzig12d59162019-11-28 10:01:59 -03001208int
Fabio Utzigc28005b2019-09-10 12:18:29 -03001209boot_copy_region(struct boot_loader_state *state,
Fabio Utzig10ee6482019-08-01 12:04:52 -03001210 const struct flash_area *fap_src,
Fabio Utzigba829042018-09-18 08:29:34 -03001211 const struct flash_area *fap_dst,
Christopher Collins92ea77f2016-12-12 15:59:26 -08001212 uint32_t off_src, uint32_t off_dst, uint32_t sz)
1213{
Christopher Collins92ea77f2016-12-12 15:59:26 -08001214 uint32_t bytes_copied;
1215 int chunk_sz;
1216 int rc;
Fabio Utzigba829042018-09-18 08:29:34 -03001217#ifdef MCUBOOT_ENC_IMAGES
1218 uint32_t off;
Fabio Utziga87cc7d2019-08-26 11:21:45 -03001219 uint32_t tlv_off;
Fabio Utzigba829042018-09-18 08:29:34 -03001220 size_t blk_off;
1221 struct image_header *hdr;
1222 uint16_t idx;
1223 uint32_t blk_sz;
Fabio Utzigb0f04732019-07-31 09:49:19 -03001224 uint8_t image_index;
Fabio Utzigba829042018-09-18 08:29:34 -03001225#endif
Christopher Collins92ea77f2016-12-12 15:59:26 -08001226
Kristine Jassmann73c38c62021-02-03 16:56:14 +00001227 TARGET_STATIC uint8_t buf[BUF_SZ] __attribute__((aligned(4)));
Fabio Utzig10ee6482019-08-01 12:04:52 -03001228
1229#if !defined(MCUBOOT_ENC_IMAGES)
1230 (void)state;
1231#endif
Christopher Collins92ea77f2016-12-12 15:59:26 -08001232
Christopher Collins92ea77f2016-12-12 15:59:26 -08001233 bytes_copied = 0;
1234 while (bytes_copied < sz) {
1235 if (sz - bytes_copied > sizeof buf) {
1236 chunk_sz = sizeof buf;
1237 } else {
1238 chunk_sz = sz - bytes_copied;
1239 }
1240
1241 rc = flash_area_read(fap_src, off_src + bytes_copied, buf, chunk_sz);
1242 if (rc != 0) {
Fabio Utzigba829042018-09-18 08:29:34 -03001243 return BOOT_EFLASH;
Christopher Collins92ea77f2016-12-12 15:59:26 -08001244 }
1245
Fabio Utzigba829042018-09-18 08:29:34 -03001246#ifdef MCUBOOT_ENC_IMAGES
Fabio Utzig10ee6482019-08-01 12:04:52 -03001247 image_index = BOOT_CURR_IMG(state);
Dominik Ermel260ae092021-04-23 05:38:45 +00001248 if ((flash_area_get_id(fap_src) == FLASH_AREA_IMAGE_SECONDARY(image_index) ||
1249 flash_area_get_id(fap_dst) == FLASH_AREA_IMAGE_SECONDARY(image_index)) &&
1250 !(flash_area_get_id(fap_src) == FLASH_AREA_IMAGE_SECONDARY(image_index) &&
1251 flash_area_get_id(fap_dst) == FLASH_AREA_IMAGE_SECONDARY(image_index))) {
David Vincze2d736ad2019-02-18 11:50:22 +01001252 /* assume the secondary slot as src, needs decryption */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001253 hdr = boot_img_hdr(state, BOOT_SECONDARY_SLOT);
Fabio Utzig74aef312019-11-28 11:05:34 -03001254#if !defined(MCUBOOT_SWAP_USING_MOVE)
Fabio Utzigba829042018-09-18 08:29:34 -03001255 off = off_src;
Dominik Ermel260ae092021-04-23 05:38:45 +00001256 if (flash_area_get_id(fap_dst) == FLASH_AREA_IMAGE_SECONDARY(image_index)) {
David Vincze2d736ad2019-02-18 11:50:22 +01001257 /* might need encryption (metadata from the primary slot) */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001258 hdr = boot_img_hdr(state, BOOT_PRIMARY_SLOT);
Fabio Utzigba829042018-09-18 08:29:34 -03001259 off = off_dst;
1260 }
Fabio Utzig74aef312019-11-28 11:05:34 -03001261#else
1262 off = off_dst;
Dominik Ermel260ae092021-04-23 05:38:45 +00001263 if (flash_area_get_id(fap_dst) == FLASH_AREA_IMAGE_SECONDARY(image_index)) {
Fabio Utzig74aef312019-11-28 11:05:34 -03001264 hdr = boot_img_hdr(state, BOOT_PRIMARY_SLOT);
1265 }
1266#endif
Fabio Utzig2fc80df2018-12-14 06:47:38 -02001267 if (IS_ENCRYPTED(hdr)) {
Andrzej Puzdrowskifa39e3a2021-11-15 11:51:36 +01001268 uint32_t abs_off = off + bytes_copied;
1269 if (abs_off < hdr->ih_hdr_size) {
Fabio Utzigba829042018-09-18 08:29:34 -03001270 /* do not decrypt header */
Andrzej Puzdrowskifa39e3a2021-11-15 11:51:36 +01001271 if (abs_off + chunk_sz > hdr->ih_hdr_size) {
Andrzej Puzdrowskie38b0af2021-11-04 13:34:11 +01001272 /* The lower part of the chunk contains header data */
1273 blk_off = 0;
Andrzej Puzdrowskifa39e3a2021-11-15 11:51:36 +01001274 blk_sz = chunk_sz - (hdr->ih_hdr_size - abs_off);
1275 idx = hdr->ih_hdr_size - abs_off;
Andrzej Puzdrowskie38b0af2021-11-04 13:34:11 +01001276 } else {
1277 /* The chunk contains exclusively header data */
1278 blk_sz = 0; /* nothing to decrypt */
1279 }
Fabio Utzigba829042018-09-18 08:29:34 -03001280 } else {
Andrzej Puzdrowskie38b0af2021-11-04 13:34:11 +01001281 idx = 0;
1282 blk_sz = chunk_sz;
Andrzej Puzdrowskifa39e3a2021-11-15 11:51:36 +01001283 blk_off = (abs_off - hdr->ih_hdr_size) & 0xf;
Fabio Utzigba829042018-09-18 08:29:34 -03001284 }
Andrzej Puzdrowskie38b0af2021-11-04 13:34:11 +01001285
1286 if (blk_sz > 0)
1287 {
1288 tlv_off = BOOT_TLV_OFF(hdr);
Andrzej Puzdrowskifa39e3a2021-11-15 11:51:36 +01001289 if (abs_off + chunk_sz > tlv_off) {
Andrzej Puzdrowskie38b0af2021-11-04 13:34:11 +01001290 /* do not decrypt TLVs */
Andrzej Puzdrowskifa39e3a2021-11-15 11:51:36 +01001291 if (abs_off >= tlv_off) {
Andrzej Puzdrowskie38b0af2021-11-04 13:34:11 +01001292 blk_sz = 0;
1293 } else {
Andrzej Puzdrowskifa39e3a2021-11-15 11:51:36 +01001294 blk_sz = tlv_off - abs_off;
Andrzej Puzdrowskie38b0af2021-11-04 13:34:11 +01001295 }
Fabio Utzigba829042018-09-18 08:29:34 -03001296 }
Andrzej Puzdrowskie38b0af2021-11-04 13:34:11 +01001297 boot_encrypt(BOOT_CURR_ENC(state), image_index, fap_src,
Andrzej Puzdrowskifa39e3a2021-11-15 11:51:36 +01001298 (abs_off + idx) - hdr->ih_hdr_size, blk_sz,
Andrzej Puzdrowskie38b0af2021-11-04 13:34:11 +01001299 blk_off, &buf[idx]);
Fabio Utzigba829042018-09-18 08:29:34 -03001300 }
Fabio Utzigba829042018-09-18 08:29:34 -03001301 }
1302 }
1303#endif
1304
Christopher Collins92ea77f2016-12-12 15:59:26 -08001305 rc = flash_area_write(fap_dst, off_dst + bytes_copied, buf, chunk_sz);
1306 if (rc != 0) {
Fabio Utzigba829042018-09-18 08:29:34 -03001307 return BOOT_EFLASH;
Christopher Collins92ea77f2016-12-12 15:59:26 -08001308 }
1309
1310 bytes_copied += chunk_sz;
Fabio Utzig853657c2019-05-07 08:06:07 -03001311
1312 MCUBOOT_WATCHDOG_FEED();
Christopher Collins92ea77f2016-12-12 15:59:26 -08001313 }
1314
Fabio Utzigba829042018-09-18 08:29:34 -03001315 return 0;
Christopher Collins92ea77f2016-12-12 15:59:26 -08001316}
1317
Christopher Collins92ea77f2016-12-12 15:59:26 -08001318/**
David Vincze2d736ad2019-02-18 11:50:22 +01001319 * Overwrite primary slot with the image contained in the secondary slot.
1320 * If a prior copy operation was interrupted by a system reset, this function
1321 * redos the copy.
Christopher Collins92ea77f2016-12-12 15:59:26 -08001322 *
1323 * @param bs The current boot status. This function reads
1324 * this struct to determine if it is resuming
1325 * an interrupted swap operation. This
1326 * function writes the updated status to this
1327 * function on return.
1328 *
1329 * @return 0 on success; nonzero on failure.
1330 */
Fabio Utzig338a19f2018-12-03 08:37:08 -02001331#if defined(MCUBOOT_OVERWRITE_ONLY) || defined(MCUBOOT_BOOTSTRAP)
David Brown17609d82017-05-05 09:41:34 -06001332static int
Fabio Utzig10ee6482019-08-01 12:04:52 -03001333boot_copy_image(struct boot_loader_state *state, struct boot_status *bs)
David Brown17609d82017-05-05 09:41:34 -06001334{
Marti Bolivard3269fd2017-06-12 16:31:12 -04001335 size_t sect_count;
1336 size_t sect;
David Brown17609d82017-05-05 09:41:34 -06001337 int rc;
Fabio Utzig13d9e352017-10-05 20:32:31 -03001338 size_t size;
Marti Bolivard3269fd2017-06-12 16:31:12 -04001339 size_t this_size;
Fabio Utzig13d9e352017-10-05 20:32:31 -03001340 size_t last_sector;
David Vincze2d736ad2019-02-18 11:50:22 +01001341 const struct flash_area *fap_primary_slot;
1342 const struct flash_area *fap_secondary_slot;
Fabio Utzigb0f04732019-07-31 09:49:19 -03001343 uint8_t image_index;
David Vincze2d736ad2019-02-18 11:50:22 +01001344
Fabio Utzigb4f88102020-10-04 10:16:24 -03001345#if defined(MCUBOOT_OVERWRITE_ONLY_FAST)
1346 uint32_t sector;
1347 uint32_t trailer_sz;
1348 uint32_t off;
1349 uint32_t sz;
1350#endif
1351
Fabio Utzigaaf767c2017-12-05 10:22:46 -02001352 (void)bs;
1353
Fabio Utzig13d9e352017-10-05 20:32:31 -03001354#if defined(MCUBOOT_OVERWRITE_ONLY_FAST)
1355 uint32_t src_size = 0;
Fabio Utzigd638b172019-08-09 10:38:05 -03001356 rc = boot_read_image_size(state, BOOT_SECONDARY_SLOT, &src_size);
Fabio Utzig13d9e352017-10-05 20:32:31 -03001357 assert(rc == 0);
1358#endif
David Brown17609d82017-05-05 09:41:34 -06001359
Fabio Utzigb0f04732019-07-31 09:49:19 -03001360 image_index = BOOT_CURR_IMG(state);
1361
Antonio de Angelisba5fb1c2022-10-11 10:10:37 +01001362 BOOT_LOG_INF("Image %d upgrade secondary slot -> primary slot", image_index);
1363 BOOT_LOG_INF("Erasing the primary slot");
1364
Fabio Utzigb0f04732019-07-31 09:49:19 -03001365 rc = flash_area_open(FLASH_AREA_IMAGE_PRIMARY(image_index),
1366 &fap_primary_slot);
Fabio Utzigba829042018-09-18 08:29:34 -03001367 assert (rc == 0);
1368
Fabio Utzigb0f04732019-07-31 09:49:19 -03001369 rc = flash_area_open(FLASH_AREA_IMAGE_SECONDARY(image_index),
1370 &fap_secondary_slot);
Fabio Utzigba829042018-09-18 08:29:34 -03001371 assert (rc == 0);
1372
Fabio Utzig10ee6482019-08-01 12:04:52 -03001373 sect_count = boot_img_num_sectors(state, BOOT_PRIMARY_SLOT);
Fabio Utzig13d9e352017-10-05 20:32:31 -03001374 for (sect = 0, size = 0; sect < sect_count; sect++) {
Fabio Utzig10ee6482019-08-01 12:04:52 -03001375 this_size = boot_img_sector_size(state, BOOT_PRIMARY_SLOT, sect);
Fabio Utzigc28005b2019-09-10 12:18:29 -03001376 rc = boot_erase_region(fap_primary_slot, size, this_size);
David Brown17609d82017-05-05 09:41:34 -06001377 assert(rc == 0);
1378
Fabio Utzig13d9e352017-10-05 20:32:31 -03001379#if defined(MCUBOOT_OVERWRITE_ONLY_FAST)
Fabio Utzigb4f88102020-10-04 10:16:24 -03001380 if ((size + this_size) >= src_size) {
1381 size += src_size - size;
1382 size += BOOT_WRITE_SZ(state) - (size % BOOT_WRITE_SZ(state));
Fabio Utzig13d9e352017-10-05 20:32:31 -03001383 break;
1384 }
1385#endif
Fabio Utzigb4f88102020-10-04 10:16:24 -03001386
1387 size += this_size;
David Brown17609d82017-05-05 09:41:34 -06001388 }
1389
Fabio Utzigb4f88102020-10-04 10:16:24 -03001390#if defined(MCUBOOT_OVERWRITE_ONLY_FAST)
1391 trailer_sz = boot_trailer_sz(BOOT_WRITE_SZ(state));
1392 sector = boot_img_num_sectors(state, BOOT_PRIMARY_SLOT) - 1;
1393 sz = 0;
1394 do {
1395 sz += boot_img_sector_size(state, BOOT_PRIMARY_SLOT, sector);
1396 off = boot_img_sector_off(state, BOOT_PRIMARY_SLOT, sector);
1397 sector--;
1398 } while (sz < trailer_sz);
1399
1400 rc = boot_erase_region(fap_primary_slot, off, sz);
1401 assert(rc == 0);
1402#endif
1403
Fabio Utzigba829042018-09-18 08:29:34 -03001404#ifdef MCUBOOT_ENC_IMAGES
Fabio Utzig10ee6482019-08-01 12:04:52 -03001405 if (IS_ENCRYPTED(boot_img_hdr(state, BOOT_SECONDARY_SLOT))) {
Fabio Utzig1e4284b2019-08-23 11:55:27 -03001406 rc = boot_enc_load(BOOT_CURR_ENC(state), image_index,
Fabio Utzig10ee6482019-08-01 12:04:52 -03001407 boot_img_hdr(state, BOOT_SECONDARY_SLOT),
Fabio Utzig4741c452019-12-19 15:32:41 -03001408 fap_secondary_slot, bs);
David Vincze2d736ad2019-02-18 11:50:22 +01001409
Fabio Utzigba829042018-09-18 08:29:34 -03001410 if (rc < 0) {
1411 return BOOT_EBADIMAGE;
1412 }
Fabio Utzig4741c452019-12-19 15:32:41 -03001413 if (rc == 0 && boot_enc_set_key(BOOT_CURR_ENC(state), 1, bs)) {
Fabio Utzigba829042018-09-18 08:29:34 -03001414 return BOOT_EBADIMAGE;
1415 }
1416 }
1417#endif
1418
Antonio de Angelis48547002023-04-14 09:47:09 +01001419 BOOT_LOG_INF("Image %d copying the secondary slot to the primary slot: 0x%zx bytes",
1420 image_index, size);
Fabio Utzigc28005b2019-09-10 12:18:29 -03001421 rc = boot_copy_region(state, fap_secondary_slot, fap_primary_slot, 0, 0, size);
Fabio Utzigb4f88102020-10-04 10:16:24 -03001422 if (rc != 0) {
1423 return rc;
1424 }
1425
1426#if defined(MCUBOOT_OVERWRITE_ONLY_FAST)
1427 rc = boot_write_magic(fap_primary_slot);
1428 if (rc != 0) {
1429 return rc;
1430 }
1431#endif
David Brown17609d82017-05-05 09:41:34 -06001432
Andrzej Puzdrowskib8f39692021-07-02 15:05:37 +02001433 rc = BOOT_HOOK_CALL(boot_copy_region_post_hook, 0, BOOT_CURR_IMG(state),
1434 BOOT_IMG_AREA(state, BOOT_PRIMARY_SLOT), size);
1435 if (rc != 0) {
1436 return rc;
1437 }
1438
David Vinczec3084132020-02-18 14:50:47 +01001439#ifdef MCUBOOT_HW_ROLLBACK_PROT
1440 /* Update the stored security counter with the new image's security counter
1441 * value. Both slots hold the new image at this point, but the secondary
1442 * slot's image header must be passed since the image headers in the
1443 * boot_data structure have not been updated yet.
1444 */
1445 rc = boot_update_security_counter(BOOT_CURR_IMG(state), BOOT_PRIMARY_SLOT,
1446 boot_img_hdr(state, BOOT_SECONDARY_SLOT));
1447 if (rc != 0) {
1448 BOOT_LOG_ERR("Security counter update failed after image upgrade.");
1449 return rc;
1450 }
1451#endif /* MCUBOOT_HW_ROLLBACK_PROT */
1452
Fabio Utzig13d9e352017-10-05 20:32:31 -03001453 /*
1454 * Erases header and trailer. The trailer is erased because when a new
1455 * image is written without a trailer as is the case when using newt, the
1456 * trailer that was left might trigger a new upgrade.
1457 */
Christopher Collins2c88e692019-05-22 15:10:14 -07001458 BOOT_LOG_DBG("erasing secondary header");
Fabio Utzigc28005b2019-09-10 12:18:29 -03001459 rc = boot_erase_region(fap_secondary_slot,
Fabio Utzig10ee6482019-08-01 12:04:52 -03001460 boot_img_sector_off(state, BOOT_SECONDARY_SLOT, 0),
1461 boot_img_sector_size(state, BOOT_SECONDARY_SLOT, 0));
David Brown17609d82017-05-05 09:41:34 -06001462 assert(rc == 0);
Fabio Utzig10ee6482019-08-01 12:04:52 -03001463 last_sector = boot_img_num_sectors(state, BOOT_SECONDARY_SLOT) - 1;
Christopher Collins2c88e692019-05-22 15:10:14 -07001464 BOOT_LOG_DBG("erasing secondary trailer");
Fabio Utzigc28005b2019-09-10 12:18:29 -03001465 rc = boot_erase_region(fap_secondary_slot,
Fabio Utzig10ee6482019-08-01 12:04:52 -03001466 boot_img_sector_off(state, BOOT_SECONDARY_SLOT,
1467 last_sector),
1468 boot_img_sector_size(state, BOOT_SECONDARY_SLOT,
1469 last_sector));
Fabio Utzig13d9e352017-10-05 20:32:31 -03001470 assert(rc == 0);
1471
David Vincze2d736ad2019-02-18 11:50:22 +01001472 flash_area_close(fap_primary_slot);
1473 flash_area_close(fap_secondary_slot);
Fabio Utzigba829042018-09-18 08:29:34 -03001474
David Vincze2d736ad2019-02-18 11:50:22 +01001475 /* TODO: Perhaps verify the primary slot's signature again? */
David Brown17609d82017-05-05 09:41:34 -06001476
1477 return 0;
1478}
Fabio Utzig338a19f2018-12-03 08:37:08 -02001479#endif
Fabio Utzigba829042018-09-18 08:29:34 -03001480
Christopher Collinsa1c12042019-05-23 14:00:28 -07001481#if !defined(MCUBOOT_OVERWRITE_ONLY)
Fabio Utzigba829042018-09-18 08:29:34 -03001482/**
1483 * Swaps the two images in flash. If a prior copy operation was interrupted
1484 * by a system reset, this function completes that operation.
1485 *
1486 * @param bs The current boot status. This function reads
1487 * this struct to determine if it is resuming
1488 * an interrupted swap operation. This
1489 * function writes the updated status to this
1490 * function on return.
1491 *
1492 * @return 0 on success; nonzero on failure.
1493 */
Christopher Collins92ea77f2016-12-12 15:59:26 -08001494static int
Fabio Utzig10ee6482019-08-01 12:04:52 -03001495boot_swap_image(struct boot_loader_state *state, struct boot_status *bs)
Christopher Collins92ea77f2016-12-12 15:59:26 -08001496{
Fabio Utzig2473ac02017-05-02 12:45:02 -03001497 struct image_header *hdr;
Fabio Utzigba829042018-09-18 08:29:34 -03001498 const struct flash_area *fap;
Dominik Ermel472d4c72023-02-10 13:29:58 +00001499#ifdef MCUBOOT_ENC_IMAGES
Fabio Utzigba829042018-09-18 08:29:34 -03001500 uint8_t slot;
1501 uint8_t i;
Fabio Utzigba829042018-09-18 08:29:34 -03001502#endif
Fabio Utzig2473ac02017-05-02 12:45:02 -03001503 uint32_t size;
1504 uint32_t copy_size;
Fabio Utzigb0f04732019-07-31 09:49:19 -03001505 uint8_t image_index;
Fabio Utzig2473ac02017-05-02 12:45:02 -03001506 int rc;
1507
1508 /* FIXME: just do this if asked by user? */
1509
1510 size = copy_size = 0;
Fabio Utzig10ee6482019-08-01 12:04:52 -03001511 image_index = BOOT_CURR_IMG(state);
Fabio Utzig2473ac02017-05-02 12:45:02 -03001512
Fabio Utzig12d59162019-11-28 10:01:59 -03001513 if (boot_status_is_reset(bs)) {
Fabio Utzig46490722017-09-04 15:34:32 -03001514 /*
1515 * No swap ever happened, so need to find the largest image which
1516 * will be used to determine the amount of sectors to swap.
1517 */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001518 hdr = boot_img_hdr(state, BOOT_PRIMARY_SLOT);
Fabio Utzig2473ac02017-05-02 12:45:02 -03001519 if (hdr->ih_magic == IMAGE_MAGIC) {
Fabio Utzigd638b172019-08-09 10:38:05 -03001520 rc = boot_read_image_size(state, BOOT_PRIMARY_SLOT, &copy_size);
David Brownf5b33d82017-09-01 10:58:27 -06001521 assert(rc == 0);
Fabio Utzig2473ac02017-05-02 12:45:02 -03001522 }
Fabio Utzig2473ac02017-05-02 12:45:02 -03001523
Fabio Utzigba829042018-09-18 08:29:34 -03001524#ifdef MCUBOOT_ENC_IMAGES
Fabio Utzig2fc80df2018-12-14 06:47:38 -02001525 if (IS_ENCRYPTED(hdr)) {
Fabio Utzig10ee6482019-08-01 12:04:52 -03001526 fap = BOOT_IMG_AREA(state, BOOT_PRIMARY_SLOT);
Fabio Utzig4741c452019-12-19 15:32:41 -03001527 rc = boot_enc_load(BOOT_CURR_ENC(state), image_index, hdr, fap, bs);
Fabio Utzigba829042018-09-18 08:29:34 -03001528 assert(rc >= 0);
1529
1530 if (rc == 0) {
Fabio Utzig4741c452019-12-19 15:32:41 -03001531 rc = boot_enc_set_key(BOOT_CURR_ENC(state), 0, bs);
Fabio Utzigba829042018-09-18 08:29:34 -03001532 assert(rc == 0);
1533 } else {
1534 rc = 0;
1535 }
1536 } else {
Kristine Jassmann73c38c62021-02-03 16:56:14 +00001537 memset(bs->enckey[0], 0xff, BOOT_ENC_KEY_ALIGN_SIZE);
Fabio Utzigba829042018-09-18 08:29:34 -03001538 }
1539#endif
1540
Fabio Utzig10ee6482019-08-01 12:04:52 -03001541 hdr = boot_img_hdr(state, BOOT_SECONDARY_SLOT);
Fabio Utzig46490722017-09-04 15:34:32 -03001542 if (hdr->ih_magic == IMAGE_MAGIC) {
Fabio Utzigd638b172019-08-09 10:38:05 -03001543 rc = boot_read_image_size(state, BOOT_SECONDARY_SLOT, &size);
Fabio Utzig46490722017-09-04 15:34:32 -03001544 assert(rc == 0);
1545 }
1546
Fabio Utzigba829042018-09-18 08:29:34 -03001547#ifdef MCUBOOT_ENC_IMAGES
Fabio Utzig10ee6482019-08-01 12:04:52 -03001548 hdr = boot_img_hdr(state, BOOT_SECONDARY_SLOT);
Fabio Utzig2fc80df2018-12-14 06:47:38 -02001549 if (IS_ENCRYPTED(hdr)) {
Fabio Utzig10ee6482019-08-01 12:04:52 -03001550 fap = BOOT_IMG_AREA(state, BOOT_SECONDARY_SLOT);
Fabio Utzig4741c452019-12-19 15:32:41 -03001551 rc = boot_enc_load(BOOT_CURR_ENC(state), image_index, hdr, fap, bs);
Fabio Utzigba829042018-09-18 08:29:34 -03001552 assert(rc >= 0);
1553
1554 if (rc == 0) {
Fabio Utzig4741c452019-12-19 15:32:41 -03001555 rc = boot_enc_set_key(BOOT_CURR_ENC(state), 1, bs);
Fabio Utzigba829042018-09-18 08:29:34 -03001556 assert(rc == 0);
1557 } else {
1558 rc = 0;
1559 }
1560 } else {
Kristine Jassmann73c38c62021-02-03 16:56:14 +00001561 memset(bs->enckey[1], 0xff, BOOT_ENC_KEY_ALIGN_SIZE);
Fabio Utzigba829042018-09-18 08:29:34 -03001562 }
1563#endif
1564
Fabio Utzig46490722017-09-04 15:34:32 -03001565 if (size > copy_size) {
1566 copy_size = size;
1567 }
1568
1569 bs->swap_size = copy_size;
1570 } else {
1571 /*
1572 * If a swap was under way, the swap_size should already be present
1573 * in the trailer...
1574 */
Dominik Ermel472d4c72023-02-10 13:29:58 +00001575
1576 rc = boot_find_status(image_index, &fap);
1577 assert(fap != NULL);
1578 rc = boot_read_swap_size(fap, &bs->swap_size);
Fabio Utzig46490722017-09-04 15:34:32 -03001579 assert(rc == 0);
1580
1581 copy_size = bs->swap_size;
Fabio Utzigba829042018-09-18 08:29:34 -03001582
1583#ifdef MCUBOOT_ENC_IMAGES
Fabio Utzig4741c452019-12-19 15:32:41 -03001584 for (slot = 0; slot < BOOT_NUM_SLOTS; slot++) {
Dominik Ermel472d4c72023-02-10 13:29:58 +00001585 rc = boot_read_enc_key(fap, slot, bs);
Fabio Utzigba829042018-09-18 08:29:34 -03001586 assert(rc == 0);
1587
1588 for (i = 0; i < BOOT_ENC_KEY_SIZE; i++) {
Fabio Utzig1c7d9592018-12-03 10:35:56 -02001589 if (bs->enckey[slot][i] != 0xff) {
Fabio Utzigba829042018-09-18 08:29:34 -03001590 break;
1591 }
1592 }
1593
1594 if (i != BOOT_ENC_KEY_SIZE) {
Fabio Utzig4741c452019-12-19 15:32:41 -03001595 boot_enc_set_key(BOOT_CURR_ENC(state), slot, bs);
Fabio Utzigba829042018-09-18 08:29:34 -03001596 }
1597 }
1598#endif
Dominik Ermel472d4c72023-02-10 13:29:58 +00001599 flash_area_close(fap);
Fabio Utzig2473ac02017-05-02 12:45:02 -03001600 }
1601
Fabio Utzig12d59162019-11-28 10:01:59 -03001602 swap_run(state, bs, copy_size);
Christopher Collins92ea77f2016-12-12 15:59:26 -08001603
David Vincze2d736ad2019-02-18 11:50:22 +01001604#ifdef MCUBOOT_VALIDATE_PRIMARY_SLOT
Fabio Utzig12d59162019-11-28 10:01:59 -03001605 extern int boot_status_fails;
Fabio Utziga0e1cce2017-11-23 20:04:01 -02001606 if (boot_status_fails > 0) {
Christopher Collins2c88e692019-05-22 15:10:14 -07001607 BOOT_LOG_WRN("%d status write fails performing the swap",
1608 boot_status_fails);
Fabio Utziga0e1cce2017-11-23 20:04:01 -02001609 }
1610#endif
Sigvart Hovland3fd4cd42022-09-09 13:21:18 +02001611 rc = BOOT_HOOK_CALL(boot_copy_region_post_hook, 0, BOOT_CURR_IMG(state),
1612 BOOT_IMG_AREA(state, BOOT_PRIMARY_SLOT), size);
Fabio Utziga0e1cce2017-11-23 20:04:01 -02001613
Christopher Collins92ea77f2016-12-12 15:59:26 -08001614 return 0;
1615}
David Brown17609d82017-05-05 09:41:34 -06001616#endif
Christopher Collins92ea77f2016-12-12 15:59:26 -08001617
David Vinczee32483f2019-06-13 10:46:24 +02001618
Christopher Collins92ea77f2016-12-12 15:59:26 -08001619/**
David Vinczeba3bd602019-06-17 16:01:43 +02001620 * Performs a clean (not aborted) image update.
Christopher Collins0ff3c6c2016-12-21 12:04:17 -08001621 *
David Vinczeba3bd602019-06-17 16:01:43 +02001622 * @param bs The current boot status.
Christopher Collins0ff3c6c2016-12-21 12:04:17 -08001623 *
1624 * @return 0 on success; nonzero on failure.
1625 */
1626static int
Fabio Utzig10ee6482019-08-01 12:04:52 -03001627boot_perform_update(struct boot_loader_state *state, struct boot_status *bs)
Christopher Collins0ff3c6c2016-12-21 12:04:17 -08001628{
Christopher Collins0ff3c6c2016-12-21 12:04:17 -08001629 int rc;
Fabio Utzig10ee6482019-08-01 12:04:52 -03001630#ifndef MCUBOOT_OVERWRITE_ONLY
1631 uint8_t swap_type;
1632#endif
Christopher Collins0ff3c6c2016-12-21 12:04:17 -08001633
David Vinczeba3bd602019-06-17 16:01:43 +02001634 /* At this point there are no aborted swaps. */
1635#if defined(MCUBOOT_OVERWRITE_ONLY)
Fabio Utzig10ee6482019-08-01 12:04:52 -03001636 rc = boot_copy_image(state, bs);
David Vinczeba3bd602019-06-17 16:01:43 +02001637#elif defined(MCUBOOT_BOOTSTRAP)
1638 /* Check if the image update was triggered by a bad image in the
1639 * primary slot (the validity of the image in the secondary slot had
1640 * already been checked).
1641 */
Michael Grand5047f032022-11-24 16:49:56 +01001642 FIH_DECLARE(fih_rc, FIH_FAILURE);
Raef Colese8fe6cf2020-05-26 13:07:40 +01001643 rc = boot_check_header_erased(state, BOOT_PRIMARY_SLOT);
1644 FIH_CALL(boot_validate_slot, fih_rc, state, BOOT_PRIMARY_SLOT, bs);
Michael Grand5047f032022-11-24 16:49:56 +01001645 if (rc == 0 || FIH_NOT_EQ(fih_rc, FIH_SUCCESS)) {
Fabio Utzig10ee6482019-08-01 12:04:52 -03001646 rc = boot_copy_image(state, bs);
David Vinczeba3bd602019-06-17 16:01:43 +02001647 } else {
Fabio Utzig10ee6482019-08-01 12:04:52 -03001648 rc = boot_swap_image(state, bs);
David Vinczeba3bd602019-06-17 16:01:43 +02001649 }
1650#else
Fabio Utzig10ee6482019-08-01 12:04:52 -03001651 rc = boot_swap_image(state, bs);
David Vinczeba3bd602019-06-17 16:01:43 +02001652#endif
Fabio Utzig7ebb7c22017-04-26 10:59:31 -03001653 assert(rc == 0);
David Vinczeba3bd602019-06-17 16:01:43 +02001654
1655#ifndef MCUBOOT_OVERWRITE_ONLY
1656 /* The following state needs image_ok be explicitly set after the
1657 * swap was finished to avoid a new revert.
1658 */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001659 swap_type = BOOT_SWAP_TYPE(state);
1660 if (swap_type == BOOT_SWAP_TYPE_REVERT ||
1661 swap_type == BOOT_SWAP_TYPE_PERM) {
Fabio Utzig12d59162019-11-28 10:01:59 -03001662 rc = swap_set_image_ok(BOOT_CURR_IMG(state));
David Vinczeba3bd602019-06-17 16:01:43 +02001663 if (rc != 0) {
Fabio Utzig10ee6482019-08-01 12:04:52 -03001664 BOOT_SWAP_TYPE(state) = swap_type = BOOT_SWAP_TYPE_PANIC;
David Vinczeba3bd602019-06-17 16:01:43 +02001665 }
Christopher Collins0ff3c6c2016-12-21 12:04:17 -08001666 }
1667
David Vinczec3084132020-02-18 14:50:47 +01001668#ifdef MCUBOOT_HW_ROLLBACK_PROT
1669 if (swap_type == BOOT_SWAP_TYPE_PERM) {
1670 /* Update the stored security counter with the new image's security
1671 * counter value. The primary slot holds the new image at this point,
1672 * but the secondary slot's image header must be passed since image
1673 * headers in the boot_data structure have not been updated yet.
1674 *
1675 * In case of a permanent image swap mcuboot will never attempt to
1676 * revert the images on the next reboot. Therefore, the security
1677 * counter must be increased right after the image upgrade.
1678 */
1679 rc = boot_update_security_counter(
1680 BOOT_CURR_IMG(state),
1681 BOOT_PRIMARY_SLOT,
1682 boot_img_hdr(state, BOOT_SECONDARY_SLOT));
1683 if (rc != 0) {
1684 BOOT_LOG_ERR("Security counter update failed after "
1685 "image upgrade.");
1686 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_PANIC;
1687 }
1688 }
1689#endif /* MCUBOOT_HW_ROLLBACK_PROT */
1690
Fabio Utzige575b0b2019-09-11 12:34:23 -03001691 if (BOOT_IS_UPGRADE(swap_type)) {
Fabio Utzig12d59162019-11-28 10:01:59 -03001692 rc = swap_set_copy_done(BOOT_CURR_IMG(state));
David Vinczeba3bd602019-06-17 16:01:43 +02001693 if (rc != 0) {
Fabio Utzig10ee6482019-08-01 12:04:52 -03001694 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_PANIC;
Christopher Collinsa1c12042019-05-23 14:00:28 -07001695 }
David Vinczeba3bd602019-06-17 16:01:43 +02001696 }
1697#endif /* !MCUBOOT_OVERWRITE_ONLY */
Fabio Utzig338a19f2018-12-03 08:37:08 -02001698
David Vinczeba3bd602019-06-17 16:01:43 +02001699 return rc;
1700}
1701
1702/**
1703 * Completes a previously aborted image swap.
1704 *
1705 * @param bs The current boot status.
1706 *
1707 * @return 0 on success; nonzero on failure.
1708 */
1709#if !defined(MCUBOOT_OVERWRITE_ONLY)
1710static int
Fabio Utzig10ee6482019-08-01 12:04:52 -03001711boot_complete_partial_swap(struct boot_loader_state *state,
1712 struct boot_status *bs)
David Vinczeba3bd602019-06-17 16:01:43 +02001713{
1714 int rc;
1715
1716 /* Determine the type of swap operation being resumed from the
1717 * `swap-type` trailer field.
1718 */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001719 rc = boot_swap_image(state, bs);
David Vinczeba3bd602019-06-17 16:01:43 +02001720 assert(rc == 0);
1721
Fabio Utzig10ee6482019-08-01 12:04:52 -03001722 BOOT_SWAP_TYPE(state) = bs->swap_type;
David Vinczeba3bd602019-06-17 16:01:43 +02001723
1724 /* The following states need image_ok be explicitly set after the
1725 * swap was finished to avoid a new revert.
1726 */
1727 if (bs->swap_type == BOOT_SWAP_TYPE_REVERT ||
1728 bs->swap_type == BOOT_SWAP_TYPE_PERM) {
Fabio Utzig12d59162019-11-28 10:01:59 -03001729 rc = swap_set_image_ok(BOOT_CURR_IMG(state));
David Vinczeba3bd602019-06-17 16:01:43 +02001730 if (rc != 0) {
Fabio Utzig10ee6482019-08-01 12:04:52 -03001731 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_PANIC;
David Vinczeba3bd602019-06-17 16:01:43 +02001732 }
1733 }
1734
Fabio Utzige575b0b2019-09-11 12:34:23 -03001735 if (BOOT_IS_UPGRADE(bs->swap_type)) {
Fabio Utzig12d59162019-11-28 10:01:59 -03001736 rc = swap_set_copy_done(BOOT_CURR_IMG(state));
David Vinczeba3bd602019-06-17 16:01:43 +02001737 if (rc != 0) {
Fabio Utzig10ee6482019-08-01 12:04:52 -03001738 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_PANIC;
David Vinczeba3bd602019-06-17 16:01:43 +02001739 }
1740 }
1741
Fabio Utzig10ee6482019-08-01 12:04:52 -03001742 if (BOOT_SWAP_TYPE(state) == BOOT_SWAP_TYPE_PANIC) {
David Vinczeba3bd602019-06-17 16:01:43 +02001743 BOOT_LOG_ERR("panic!");
1744 assert(0);
1745
1746 /* Loop forever... */
1747 while (1) {}
1748 }
1749
1750 return rc;
1751}
1752#endif /* !MCUBOOT_OVERWRITE_ONLY */
1753
1754#if (BOOT_IMAGE_NUMBER > 1)
1755/**
1756 * Review the validity of previously determined swap types of other images.
1757 *
1758 * @param aborted_swap The current image upgrade is a
1759 * partial/aborted swap.
1760 */
1761static void
Fabio Utzig10ee6482019-08-01 12:04:52 -03001762boot_review_image_swap_types(struct boot_loader_state *state,
1763 bool aborted_swap)
David Vinczeba3bd602019-06-17 16:01:43 +02001764{
1765 /* In that case if we rebooted in the middle of an image upgrade process, we
1766 * must review the validity of swap types, that were previously determined
1767 * for other images. The image_ok flag had not been set before the reboot
1768 * for any of the updated images (only the copy_done flag) and thus falsely
1769 * the REVERT swap type has been determined for the previous images that had
1770 * been updated before the reboot.
1771 *
1772 * There are two separate scenarios that we have to deal with:
1773 *
1774 * 1. The reboot has happened during swapping an image:
1775 * The current image upgrade has been determined as a
1776 * partial/aborted swap.
1777 * 2. The reboot has happened between two separate image upgrades:
1778 * In this scenario we must check the swap type of the current image.
1779 * In those cases if it is NONE or REVERT we cannot certainly determine
1780 * the fact of a reboot. In a consistent state images must move in the
1781 * same direction or stay in place, e.g. in practice REVERT and TEST
1782 * swap types cannot be present at the same time. If the swap type of
1783 * the current image is either TEST, PERM or FAIL we must review the
1784 * already determined swap types of other images and set each false
1785 * REVERT swap types to NONE (these images had been successfully
1786 * updated before the system rebooted between two separate image
1787 * upgrades).
1788 */
1789
Fabio Utzig10ee6482019-08-01 12:04:52 -03001790 if (BOOT_CURR_IMG(state) == 0) {
David Vinczeba3bd602019-06-17 16:01:43 +02001791 /* Nothing to do */
1792 return;
1793 }
1794
1795 if (!aborted_swap) {
Fabio Utzig10ee6482019-08-01 12:04:52 -03001796 if ((BOOT_SWAP_TYPE(state) == BOOT_SWAP_TYPE_NONE) ||
1797 (BOOT_SWAP_TYPE(state) == BOOT_SWAP_TYPE_REVERT)) {
David Vinczeba3bd602019-06-17 16:01:43 +02001798 /* Nothing to do */
1799 return;
1800 }
1801 }
1802
Fabio Utzig10ee6482019-08-01 12:04:52 -03001803 for (uint8_t i = 0; i < BOOT_CURR_IMG(state); i++) {
1804 if (state->swap_type[i] == BOOT_SWAP_TYPE_REVERT) {
1805 state->swap_type[i] = BOOT_SWAP_TYPE_NONE;
David Vinczeba3bd602019-06-17 16:01:43 +02001806 }
1807 }
1808}
1809#endif
1810
1811/**
1812 * Prepare image to be updated if required.
1813 *
1814 * Prepare image to be updated if required with completing an image swap
1815 * operation if one was aborted and/or determining the type of the
1816 * swap operation. In case of any error set the swap type to NONE.
1817 *
Fabio Utzig10ee6482019-08-01 12:04:52 -03001818 * @param state TODO
David Vinczeba3bd602019-06-17 16:01:43 +02001819 * @param bs Pointer where the read and possibly updated
1820 * boot status can be written to.
1821 */
1822static void
Fabio Utzig10ee6482019-08-01 12:04:52 -03001823boot_prepare_image_for_update(struct boot_loader_state *state,
1824 struct boot_status *bs)
David Vinczeba3bd602019-06-17 16:01:43 +02001825{
1826 int rc;
Michael Grand5047f032022-11-24 16:49:56 +01001827 FIH_DECLARE(fih_rc, FIH_FAILURE);
David Vinczeba3bd602019-06-17 16:01:43 +02001828
1829 /* Determine the sector layout of the image slots and scratch area. */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001830 rc = boot_read_sectors(state);
David Vinczeba3bd602019-06-17 16:01:43 +02001831 if (rc != 0) {
1832 BOOT_LOG_WRN("Failed reading sectors; BOOT_MAX_IMG_SECTORS=%d"
1833 " - too small?", BOOT_MAX_IMG_SECTORS);
1834 /* Unable to determine sector layout, continue with next image
1835 * if there is one.
1836 */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001837 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_NONE;
Andrzej Puzdrowski54b4ad92021-06-22 13:21:22 +02001838 if (rc == BOOT_EFLASH)
1839 {
1840 /* Only return on error from the primary image flash */
1841 return;
1842 }
David Vinczeba3bd602019-06-17 16:01:43 +02001843 }
1844
1845 /* Attempt to read an image header from each slot. */
Fabio Utzig12d59162019-11-28 10:01:59 -03001846 rc = boot_read_image_headers(state, false, NULL);
David Vinczeba3bd602019-06-17 16:01:43 +02001847 if (rc != 0) {
1848 /* Continue with next image if there is one. */
Fabio Utzigb0f04732019-07-31 09:49:19 -03001849 BOOT_LOG_WRN("Failed reading image headers; Image=%u",
Fabio Utzig10ee6482019-08-01 12:04:52 -03001850 BOOT_CURR_IMG(state));
1851 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_NONE;
David Vinczeba3bd602019-06-17 16:01:43 +02001852 return;
1853 }
1854
1855 /* If the current image's slots aren't compatible, no swap is possible.
1856 * Just boot into primary slot.
1857 */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001858 if (boot_slots_compatible(state)) {
Fabio Utzig12d59162019-11-28 10:01:59 -03001859 boot_status_reset(bs);
1860
1861#ifndef MCUBOOT_OVERWRITE_ONLY
1862 rc = swap_read_status(state, bs);
David Vinczeba3bd602019-06-17 16:01:43 +02001863 if (rc != 0) {
1864 BOOT_LOG_WRN("Failed reading boot status; Image=%u",
Fabio Utzig10ee6482019-08-01 12:04:52 -03001865 BOOT_CURR_IMG(state));
David Vinczeba3bd602019-06-17 16:01:43 +02001866 /* Continue with next image if there is one. */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001867 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_NONE;
David Vinczeba3bd602019-06-17 16:01:43 +02001868 return;
1869 }
Fabio Utzig12d59162019-11-28 10:01:59 -03001870#endif
David Vinczeba3bd602019-06-17 16:01:43 +02001871
Fabio Utzig74aef312019-11-28 11:05:34 -03001872#ifdef MCUBOOT_SWAP_USING_MOVE
1873 /*
1874 * Must re-read image headers because the boot status might
1875 * have been updated in the previous function call.
1876 */
1877 rc = boot_read_image_headers(state, !boot_status_is_reset(bs), bs);
Fabio Utzig32afe852020-10-04 10:36:02 -03001878#ifdef MCUBOOT_BOOTSTRAP
1879 /* When bootstrapping it's OK to not have image magic in the primary slot */
1880 if (rc != 0 && (BOOT_CURR_IMG(state) != BOOT_PRIMARY_SLOT ||
1881 boot_check_header_erased(state, BOOT_PRIMARY_SLOT) != 0)) {
1882#else
Fabio Utzig74aef312019-11-28 11:05:34 -03001883 if (rc != 0) {
Fabio Utzig32afe852020-10-04 10:36:02 -03001884#endif
1885
Fabio Utzig74aef312019-11-28 11:05:34 -03001886 /* Continue with next image if there is one. */
1887 BOOT_LOG_WRN("Failed reading image headers; Image=%u",
1888 BOOT_CURR_IMG(state));
1889 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_NONE;
1890 return;
1891 }
1892#endif
1893
David Vinczeba3bd602019-06-17 16:01:43 +02001894 /* Determine if we rebooted in the middle of an image swap
1895 * operation. If a partial swap was detected, complete it.
1896 */
Fabio Utzig12d59162019-11-28 10:01:59 -03001897 if (!boot_status_is_reset(bs)) {
David Vinczeba3bd602019-06-17 16:01:43 +02001898
1899#if (BOOT_IMAGE_NUMBER > 1)
Fabio Utzig10ee6482019-08-01 12:04:52 -03001900 boot_review_image_swap_types(state, true);
David Vinczeba3bd602019-06-17 16:01:43 +02001901#endif
1902
1903#ifdef MCUBOOT_OVERWRITE_ONLY
1904 /* Should never arrive here, overwrite-only mode has
1905 * no swap state.
1906 */
1907 assert(0);
1908#else
1909 /* Determine the type of swap operation being resumed from the
1910 * `swap-type` trailer field.
1911 */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001912 rc = boot_complete_partial_swap(state, bs);
David Vinczeba3bd602019-06-17 16:01:43 +02001913 assert(rc == 0);
1914#endif
1915 /* Attempt to read an image header from each slot. Ensure that
1916 * image headers in slots are aligned with headers in boot_data.
1917 */
Fabio Utzig12d59162019-11-28 10:01:59 -03001918 rc = boot_read_image_headers(state, false, bs);
David Vinczeba3bd602019-06-17 16:01:43 +02001919 assert(rc == 0);
1920
1921 /* Swap has finished set to NONE */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001922 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_NONE;
David Vinczeba3bd602019-06-17 16:01:43 +02001923 } else {
1924 /* There was no partial swap, determine swap type. */
1925 if (bs->swap_type == BOOT_SWAP_TYPE_NONE) {
Fabio Utzig10ee6482019-08-01 12:04:52 -03001926 BOOT_SWAP_TYPE(state) = boot_validated_swap_type(state, bs);
David Vinczeba3bd602019-06-17 16:01:43 +02001927 } else {
Raef Colese8fe6cf2020-05-26 13:07:40 +01001928 FIH_CALL(boot_validate_slot, fih_rc,
1929 state, BOOT_SECONDARY_SLOT, bs);
Michael Grand5047f032022-11-24 16:49:56 +01001930 if (FIH_NOT_EQ(fih_rc, FIH_SUCCESS)) {
Raef Colese8fe6cf2020-05-26 13:07:40 +01001931 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_FAIL;
1932 } else {
1933 BOOT_SWAP_TYPE(state) = bs->swap_type;
1934 }
David Vinczeba3bd602019-06-17 16:01:43 +02001935 }
1936
1937#if (BOOT_IMAGE_NUMBER > 1)
Fabio Utzig10ee6482019-08-01 12:04:52 -03001938 boot_review_image_swap_types(state, false);
David Vinczeba3bd602019-06-17 16:01:43 +02001939#endif
1940
1941#ifdef MCUBOOT_BOOTSTRAP
Fabio Utzig10ee6482019-08-01 12:04:52 -03001942 if (BOOT_SWAP_TYPE(state) == BOOT_SWAP_TYPE_NONE) {
David Vinczeba3bd602019-06-17 16:01:43 +02001943 /* Header checks are done first because they are
1944 * inexpensive. Since overwrite-only copies starting from
1945 * offset 0, if interrupted, it might leave a valid header
1946 * magic, so also run validation on the primary slot to be
1947 * sure it's not OK.
1948 */
Raef Colese8fe6cf2020-05-26 13:07:40 +01001949 rc = boot_check_header_erased(state, BOOT_PRIMARY_SLOT);
1950 FIH_CALL(boot_validate_slot, fih_rc,
1951 state, BOOT_PRIMARY_SLOT, bs);
1952
Michael Grand5047f032022-11-24 16:49:56 +01001953 if (rc == 0 || FIH_NOT_EQ(fih_rc, FIH_SUCCESS)) {
Raef Colese8fe6cf2020-05-26 13:07:40 +01001954
Fabio Utzig3d77c952020-10-04 10:23:17 -03001955 rc = (boot_img_hdr(state, BOOT_SECONDARY_SLOT)->ih_magic == IMAGE_MAGIC) ? 1: 0;
Raef Colese8fe6cf2020-05-26 13:07:40 +01001956 FIH_CALL(boot_validate_slot, fih_rc,
1957 state, BOOT_SECONDARY_SLOT, bs);
1958
Michael Grand5047f032022-11-24 16:49:56 +01001959 if (rc == 1 && FIH_EQ(fih_rc, FIH_SUCCESS)) {
David Vinczeba3bd602019-06-17 16:01:43 +02001960 /* Set swap type to REVERT to overwrite the primary
1961 * slot with the image contained in secondary slot
1962 * and to trigger the explicit setting of the
1963 * image_ok flag.
1964 */
Fabio Utzig59b63e52019-09-10 12:22:35 -03001965 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_REVERT;
David Vinczeba3bd602019-06-17 16:01:43 +02001966 }
Fabio Utzig338a19f2018-12-03 08:37:08 -02001967 }
1968 }
Fabio Utzig338a19f2018-12-03 08:37:08 -02001969#endif
Christopher Collins0ff3c6c2016-12-21 12:04:17 -08001970 }
David Vinczeba3bd602019-06-17 16:01:43 +02001971 } else {
1972 /* In that case if slots are not compatible. */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001973 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_NONE;
Christopher Collins0ff3c6c2016-12-21 12:04:17 -08001974 }
Christopher Collins0ff3c6c2016-12-21 12:04:17 -08001975}
1976
Mark Horvathccaf7f82021-01-04 18:16:42 +01001977/**
1978 * Updates the security counter for the current image.
1979 *
1980 * @param state Boot loader status information.
1981 *
1982 * @return 0 on success; nonzero on failure.
1983 */
1984static int
1985boot_update_hw_rollback_protection(struct boot_loader_state *state)
1986{
1987#ifdef MCUBOOT_HW_ROLLBACK_PROT
1988 int rc;
1989
1990 /* Update the stored security counter with the active image's security
1991 * counter value. It will only be updated if the new security counter is
1992 * greater than the stored value.
1993 *
1994 * In case of a successful image swapping when the swap type is TEST the
1995 * security counter can be increased only after a reset, when the swap
1996 * type is NONE and the image has marked itself "OK" (the image_ok flag
1997 * has been set). This way a "revert" can be performed when it's
1998 * necessary.
1999 */
2000 if (BOOT_SWAP_TYPE(state) == BOOT_SWAP_TYPE_NONE) {
2001 rc = boot_update_security_counter(
2002 BOOT_CURR_IMG(state),
2003 BOOT_PRIMARY_SLOT,
2004 boot_img_hdr(state, BOOT_PRIMARY_SLOT));
2005 if (rc != 0) {
2006 BOOT_LOG_ERR("Security counter update failed after image "
2007 "validation.");
2008 return rc;
2009 }
2010 }
2011
2012 return 0;
2013
2014#else /* MCUBOOT_HW_ROLLBACK_PROT */
2015 (void) (state);
2016
2017 return 0;
2018#endif
2019}
2020
Jerzy Kasenberge3f895d2022-04-12 15:05:33 +02002021/**
2022 * Checks test swap downgrade prevention conditions.
2023 *
2024 * Function called only for swap upgrades test run. It may prevent
2025 * swap if slot 1 image has <= version number or < security counter
2026 *
2027 * @param state Boot loader status information.
2028 *
2029 * @return 0 - image can be swapped, -1 downgrade prevention
2030 */
2031static int
2032check_downgrade_prevention(struct boot_loader_state *state)
2033{
2034#if defined(MCUBOOT_DOWNGRADE_PREVENTION) && \
2035 (defined(MCUBOOT_SWAP_USING_MOVE) || defined(MCUBOOT_SWAP_USING_SCRATCH))
2036 uint32_t security_counter[2];
2037 int rc;
2038
2039 if (MCUBOOT_DOWNGRADE_PREVENTION_SECURITY_COUNTER) {
2040 /* If there was security no counter in slot 0, allow swap */
2041 rc = bootutil_get_img_security_cnt(&(BOOT_IMG(state, 0).hdr),
2042 BOOT_IMG(state, 0).area,
2043 &security_counter[0]);
2044 if (rc != 0) {
2045 return 0;
2046 }
2047 /* If there is no security counter in slot 1, or it's lower than
2048 * that of slot 0, prevent downgrade */
2049 rc = bootutil_get_img_security_cnt(&(BOOT_IMG(state, 1).hdr),
2050 BOOT_IMG(state, 1).area,
2051 &security_counter[1]);
2052 if (rc != 0 || security_counter[0] > security_counter[1]) {
2053 rc = -1;
2054 }
2055 }
2056 else {
2057 rc = boot_version_cmp(&boot_img_hdr(state, BOOT_SECONDARY_SLOT)->ih_ver,
2058 &boot_img_hdr(state, BOOT_PRIMARY_SLOT)->ih_ver);
2059 }
2060 if (rc < 0) {
2061 /* Image in slot 0 prevents downgrade, delete image in slot 1 */
Antonio de Angelis48547002023-04-14 09:47:09 +01002062 BOOT_LOG_INF("Image %d in slot 1 erased due to downgrade prevention", BOOT_CURR_IMG(state));
Jerzy Kasenberge3f895d2022-04-12 15:05:33 +02002063 flash_area_erase(BOOT_IMG(state, 1).area, 0,
2064 flash_area_get_size(BOOT_IMG(state, 1).area));
2065 } else {
2066 rc = 0;
2067 }
2068 return rc;
2069#else
2070 (void)state;
2071 return 0;
2072#endif
2073}
2074
Michael Grand5047f032022-11-24 16:49:56 +01002075fih_ret
Fabio Utzig10ee6482019-08-01 12:04:52 -03002076context_boot_go(struct boot_loader_state *state, struct boot_rsp *rsp)
Christopher Collins92ea77f2016-12-12 15:59:26 -08002077{
Marti Bolivar84898652017-06-13 17:20:22 -04002078 size_t slot;
David Vinczeba3bd602019-06-17 16:01:43 +02002079 struct boot_status bs;
David Vincze9015a5d2020-05-18 14:43:11 +02002080 int rc = -1;
Michael Grand5047f032022-11-24 16:49:56 +01002081 FIH_DECLARE(fih_rc, FIH_FAILURE);
Marti Bolivarc0b47912017-06-13 17:18:09 -04002082 int fa_id;
Fabio Utzigb0f04732019-07-31 09:49:19 -03002083 int image_index;
Fabio Utzig298913b2019-08-28 11:22:45 -03002084 bool has_upgrade;
Michael Grand5047f032022-11-24 16:49:56 +01002085 volatile int fih_cnt;
Christopher Collins92ea77f2016-12-12 15:59:26 -08002086
2087 /* The array of slot sectors are defined here (as opposed to file scope) so
2088 * that they don't get allocated for non-boot-loader apps. This is
2089 * necessary because the gcc option "-fdata-sections" doesn't seem to have
Christopher Collins0ff3c6c2016-12-21 12:04:17 -08002090 * any effect in older gcc versions (e.g., 4.8.4).
Christopher Collins92ea77f2016-12-12 15:59:26 -08002091 */
Fabio Utzig10ee6482019-08-01 12:04:52 -03002092 TARGET_STATIC boot_sector_t primary_slot_sectors[BOOT_IMAGE_NUMBER][BOOT_MAX_IMG_SECTORS];
2093 TARGET_STATIC boot_sector_t secondary_slot_sectors[BOOT_IMAGE_NUMBER][BOOT_MAX_IMG_SECTORS];
Fabio Utzig12d59162019-11-28 10:01:59 -03002094#if MCUBOOT_SWAP_USING_SCRATCH
Fabio Utzig10ee6482019-08-01 12:04:52 -03002095 TARGET_STATIC boot_sector_t scratch_sectors[BOOT_MAX_IMG_SECTORS];
Fabio Utzig12d59162019-11-28 10:01:59 -03002096#endif
Christopher Collins92ea77f2016-12-12 15:59:26 -08002097
Fabio Utzig298913b2019-08-28 11:22:45 -03002098 has_upgrade = false;
2099
2100#if (BOOT_IMAGE_NUMBER == 1)
2101 (void)has_upgrade;
2102#endif
Fabio Utzigba829042018-09-18 08:29:34 -03002103
David Vinczeba3bd602019-06-17 16:01:43 +02002104 /* Iterate over all the images. By the end of the loop the swap type has
2105 * to be determined for each image and all aborted swaps have to be
2106 * completed.
Christopher Collins0ff3c6c2016-12-21 12:04:17 -08002107 */
Fabio Utzig10ee6482019-08-01 12:04:52 -03002108 IMAGES_ITER(BOOT_CURR_IMG(state)) {
Raef Colesf11de642021-10-15 11:11:56 +01002109#if BOOT_IMAGE_NUMBER > 1
2110 if (state->img_mask[BOOT_CURR_IMG(state)]) {
2111 continue;
2112 }
2113#endif
David Vinczeba3bd602019-06-17 16:01:43 +02002114#if defined(MCUBOOT_ENC_IMAGES) && (BOOT_IMAGE_NUMBER > 1)
2115 /* The keys used for encryption may no longer be valid (could belong to
2116 * another images). Therefore, mark them as invalid to force their reload
2117 * by boot_enc_load().
Fabio Utzigdb5bd3c2017-07-13 22:20:22 -03002118 */
Fabio Utzig1e4284b2019-08-23 11:55:27 -03002119 boot_enc_zeroize(BOOT_CURR_ENC(state));
David Brown554c52e2017-06-30 16:01:07 -06002120#endif
2121
Fabio Utzig10ee6482019-08-01 12:04:52 -03002122 image_index = BOOT_CURR_IMG(state);
Fabio Utzigb0f04732019-07-31 09:49:19 -03002123
Fabio Utzig10ee6482019-08-01 12:04:52 -03002124 BOOT_IMG(state, BOOT_PRIMARY_SLOT).sectors =
Fabio Utzigb0f04732019-07-31 09:49:19 -03002125 primary_slot_sectors[image_index];
Fabio Utzig10ee6482019-08-01 12:04:52 -03002126 BOOT_IMG(state, BOOT_SECONDARY_SLOT).sectors =
Fabio Utzigb0f04732019-07-31 09:49:19 -03002127 secondary_slot_sectors[image_index];
Fabio Utzig12d59162019-11-28 10:01:59 -03002128#if MCUBOOT_SWAP_USING_SCRATCH
Fabio Utzig10ee6482019-08-01 12:04:52 -03002129 state->scratch.sectors = scratch_sectors;
Fabio Utzig12d59162019-11-28 10:01:59 -03002130#endif
David Vinczeba3bd602019-06-17 16:01:43 +02002131
2132 /* Open primary and secondary image areas for the duration
2133 * of this call.
2134 */
2135 for (slot = 0; slot < BOOT_NUM_SLOTS; slot++) {
Fabio Utzigb0f04732019-07-31 09:49:19 -03002136 fa_id = flash_area_id_from_multi_image_slot(image_index, slot);
Fabio Utzig10ee6482019-08-01 12:04:52 -03002137 rc = flash_area_open(fa_id, &BOOT_IMG_AREA(state, slot));
David Vinczeba3bd602019-06-17 16:01:43 +02002138 assert(rc == 0);
Jamie McCrae2929a972023-09-25 11:12:20 +01002139
2140 if (rc != 0) {
2141 BOOT_LOG_ERR("Failed to open flash area ID %d (image %d slot %d): %d, "
2142 "cannot continue", fa_id, image_index, (int8_t)slot, rc);
2143 FIH_PANIC;
2144 }
David Vinczeba3bd602019-06-17 16:01:43 +02002145 }
Fabio Utzig12d59162019-11-28 10:01:59 -03002146#if MCUBOOT_SWAP_USING_SCRATCH
David Vinczeba3bd602019-06-17 16:01:43 +02002147 rc = flash_area_open(FLASH_AREA_IMAGE_SCRATCH,
Fabio Utzig10ee6482019-08-01 12:04:52 -03002148 &BOOT_SCRATCH_AREA(state));
David Vinczeba3bd602019-06-17 16:01:43 +02002149 assert(rc == 0);
Jamie McCrae2929a972023-09-25 11:12:20 +01002150
2151 if (rc != 0) {
2152 BOOT_LOG_ERR("Failed to open scratch flash area: %d, cannot continue", rc);
2153 FIH_PANIC;
2154 }
Fabio Utzig12d59162019-11-28 10:01:59 -03002155#endif
David Vinczeba3bd602019-06-17 16:01:43 +02002156
2157 /* Determine swap type and complete swap if it has been aborted. */
Fabio Utzig10ee6482019-08-01 12:04:52 -03002158 boot_prepare_image_for_update(state, &bs);
Fabio Utzig298913b2019-08-28 11:22:45 -03002159
Fabio Utzige575b0b2019-09-11 12:34:23 -03002160 if (BOOT_IS_UPGRADE(BOOT_SWAP_TYPE(state))) {
Fabio Utzig298913b2019-08-28 11:22:45 -03002161 has_upgrade = true;
2162 }
David Vinczeba3bd602019-06-17 16:01:43 +02002163 }
2164
David Vinczee32483f2019-06-13 10:46:24 +02002165#if (BOOT_IMAGE_NUMBER > 1)
Fabio Utzig298913b2019-08-28 11:22:45 -03002166 if (has_upgrade) {
2167 /* Iterate over all the images and verify whether the image dependencies
2168 * are all satisfied and update swap type if necessary.
2169 */
2170 rc = boot_verify_dependencies(state);
David Vincze8b0b6372020-05-20 19:54:44 +02002171 if (rc != 0) {
Fabio Utzig298913b2019-08-28 11:22:45 -03002172 /*
2173 * It was impossible to upgrade because the expected dependency version
2174 * was not available. Here we already changed the swap_type so that
2175 * instead of asserting the bootloader, we continue and no upgrade is
2176 * performed.
2177 */
2178 rc = 0;
2179 }
2180 }
David Vinczee32483f2019-06-13 10:46:24 +02002181#endif
2182
Jamie McCrae56cb6102022-03-23 11:57:03 +00002183 /* Trigger status change callback with upgrading status */
2184 mcuboot_status_change(MCUBOOT_STATUS_UPGRADING);
2185
David Vinczeba3bd602019-06-17 16:01:43 +02002186 /* Iterate over all the images. At this point there are no aborted swaps
2187 * and the swap types are determined for each image. By the end of the loop
2188 * all required update operations will have been finished.
2189 */
Fabio Utzig10ee6482019-08-01 12:04:52 -03002190 IMAGES_ITER(BOOT_CURR_IMG(state)) {
David Vinczeba3bd602019-06-17 16:01:43 +02002191#if (BOOT_IMAGE_NUMBER > 1)
Raef Colesf11de642021-10-15 11:11:56 +01002192 if (state->img_mask[BOOT_CURR_IMG(state)]) {
2193 continue;
2194 }
2195
David Vinczeba3bd602019-06-17 16:01:43 +02002196#ifdef MCUBOOT_ENC_IMAGES
2197 /* The keys used for encryption may no longer be valid (could belong to
2198 * another images). Therefore, mark them as invalid to force their reload
2199 * by boot_enc_load().
2200 */
Fabio Utzig1e4284b2019-08-23 11:55:27 -03002201 boot_enc_zeroize(BOOT_CURR_ENC(state));
David Vinczeba3bd602019-06-17 16:01:43 +02002202#endif /* MCUBOOT_ENC_IMAGES */
2203
2204 /* Indicate that swap is not aborted */
Fabio Utzig12d59162019-11-28 10:01:59 -03002205 boot_status_reset(&bs);
David Vinczeba3bd602019-06-17 16:01:43 +02002206#endif /* (BOOT_IMAGE_NUMBER > 1) */
2207
2208 /* Set the previously determined swap type */
Fabio Utzig10ee6482019-08-01 12:04:52 -03002209 bs.swap_type = BOOT_SWAP_TYPE(state);
David Vinczeba3bd602019-06-17 16:01:43 +02002210
Fabio Utzig10ee6482019-08-01 12:04:52 -03002211 switch (BOOT_SWAP_TYPE(state)) {
David Vinczeba3bd602019-06-17 16:01:43 +02002212 case BOOT_SWAP_TYPE_NONE:
2213 break;
2214
Jerzy Kasenberge3f895d2022-04-12 15:05:33 +02002215 case BOOT_SWAP_TYPE_TEST:
Michael Grand99613c62023-06-20 15:01:00 +02002216 /* fallthrough */
2217 case BOOT_SWAP_TYPE_PERM:
Jerzy Kasenberge3f895d2022-04-12 15:05:33 +02002218 if (check_downgrade_prevention(state) != 0) {
2219 /* Downgrade prevented */
2220 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_NONE;
2221 break;
2222 }
2223 /* fallthrough */
David Vinczeba3bd602019-06-17 16:01:43 +02002224 case BOOT_SWAP_TYPE_REVERT:
Andrzej Puzdrowskib8f39692021-07-02 15:05:37 +02002225 rc = BOOT_HOOK_CALL(boot_perform_update_hook, BOOT_HOOK_REGULAR,
2226 BOOT_CURR_IMG(state), &(BOOT_IMG(state, 1).hdr),
2227 BOOT_IMG_AREA(state, BOOT_SECONDARY_SLOT));
2228 if (rc == BOOT_HOOK_REGULAR)
2229 {
2230 rc = boot_perform_update(state, &bs);
2231 }
David Vinczeba3bd602019-06-17 16:01:43 +02002232 assert(rc == 0);
2233 break;
2234
2235 case BOOT_SWAP_TYPE_FAIL:
2236 /* The image in secondary slot was invalid and is now erased. Ensure
2237 * we don't try to boot into it again on the next reboot. Do this by
2238 * pretending we just reverted back to primary slot.
2239 */
2240#ifndef MCUBOOT_OVERWRITE_ONLY
2241 /* image_ok needs to be explicitly set to avoid a new revert. */
Fabio Utzig12d59162019-11-28 10:01:59 -03002242 rc = swap_set_image_ok(BOOT_CURR_IMG(state));
David Vinczeba3bd602019-06-17 16:01:43 +02002243 if (rc != 0) {
Fabio Utzig10ee6482019-08-01 12:04:52 -03002244 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_PANIC;
David Vinczeba3bd602019-06-17 16:01:43 +02002245 }
2246#endif /* !MCUBOOT_OVERWRITE_ONLY */
2247 break;
2248
2249 default:
Fabio Utzig10ee6482019-08-01 12:04:52 -03002250 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_PANIC;
David Vinczeba3bd602019-06-17 16:01:43 +02002251 }
2252
Fabio Utzig10ee6482019-08-01 12:04:52 -03002253 if (BOOT_SWAP_TYPE(state) == BOOT_SWAP_TYPE_PANIC) {
David Vinczeba3bd602019-06-17 16:01:43 +02002254 BOOT_LOG_ERR("panic!");
2255 assert(0);
2256
2257 /* Loop forever... */
Raef Colese8fe6cf2020-05-26 13:07:40 +01002258 FIH_PANIC;
David Vinczeba3bd602019-06-17 16:01:43 +02002259 }
2260 }
2261
2262 /* Iterate over all the images. At this point all required update operations
2263 * have finished. By the end of the loop each image in the primary slot will
2264 * have been re-validated.
2265 */
Michael Grand5047f032022-11-24 16:49:56 +01002266 FIH_SET(fih_cnt, 0);
Fabio Utzig10ee6482019-08-01 12:04:52 -03002267 IMAGES_ITER(BOOT_CURR_IMG(state)) {
Raef Colesf11de642021-10-15 11:11:56 +01002268#if BOOT_IMAGE_NUMBER > 1
Michael Grand5047f032022-11-24 16:49:56 +01002269 /* Hardenned to prevent from skipping check of a given image,
2270 * tmp_img_mask is declared volatile
2271 */
2272 volatile bool tmp_img_mask;
2273 FIH_SET(tmp_img_mask, state->img_mask[BOOT_CURR_IMG(state)]);
2274 if (FIH_EQ(tmp_img_mask, true)) {
2275 ++fih_cnt;
Raef Colesf11de642021-10-15 11:11:56 +01002276 continue;
2277 }
2278#endif
Fabio Utzig10ee6482019-08-01 12:04:52 -03002279 if (BOOT_SWAP_TYPE(state) != BOOT_SWAP_TYPE_NONE) {
David Vinczeba3bd602019-06-17 16:01:43 +02002280 /* Attempt to read an image header from each slot. Ensure that image
2281 * headers in slots are aligned with headers in boot_data.
Dominik Ermel6f7f8732024-02-01 11:59:24 +00002282 * Note: Quite complicated internal logic of boot_read_image_headers
2283 * uses boot state, the last parm, to figure out in which slot which
2284 * header is located; when boot state is not provided, then it
2285 * is assumed that headers are at proper slots (we are not in
2286 * the middle of moving images, etc).
David Vinczeba3bd602019-06-17 16:01:43 +02002287 */
Dominik Ermel6f7f8732024-02-01 11:59:24 +00002288 rc = boot_read_image_headers(state, false, NULL);
David Vinczeba3bd602019-06-17 16:01:43 +02002289 if (rc != 0) {
Michael Grand5047f032022-11-24 16:49:56 +01002290 FIH_SET(fih_rc, FIH_FAILURE);
David Vinczeba3bd602019-06-17 16:01:43 +02002291 goto out;
2292 }
2293 /* Since headers were reloaded, it can be assumed we just performed
2294 * a swap or overwrite. Now the header info that should be used to
2295 * provide the data for the bootstrap, which previously was at
2296 * secondary slot, was updated to primary slot.
2297 */
2298 }
2299
2300#ifdef MCUBOOT_VALIDATE_PRIMARY_SLOT
Raef Colese8fe6cf2020-05-26 13:07:40 +01002301 FIH_CALL(boot_validate_slot, fih_rc, state, BOOT_PRIMARY_SLOT, NULL);
Michael Grand5047f032022-11-24 16:49:56 +01002302 /* Check for all possible values is redundant in normal operation it
2303 * is meant to prevent FI attack.
2304 */
2305 if (FIH_NOT_EQ(fih_rc, FIH_SUCCESS) ||
2306 FIH_EQ(fih_rc, FIH_FAILURE) ||
2307 FIH_EQ(fih_rc, FIH_NO_BOOTABLE_IMAGE)) {
2308 FIH_SET(fih_rc, FIH_FAILURE);
David Vinczeba3bd602019-06-17 16:01:43 +02002309 goto out;
2310 }
2311#else
2312 /* Even if we're not re-validating the primary slot, we could be booting
2313 * onto an empty flash chip. At least do a basic sanity check that
2314 * the magic number on the image is OK.
2315 */
Fabio Utzig10ee6482019-08-01 12:04:52 -03002316 if (BOOT_IMG(state, BOOT_PRIMARY_SLOT).hdr.ih_magic != IMAGE_MAGIC) {
David Vinczeba3bd602019-06-17 16:01:43 +02002317 BOOT_LOG_ERR("bad image magic 0x%lx; Image=%u", (unsigned long)
Dominik Ermel4a4d1ac2021-08-06 11:23:52 +00002318 BOOT_IMG(state, BOOT_PRIMARY_SLOT).hdr.ih_magic,
Fabio Utzig10ee6482019-08-01 12:04:52 -03002319 BOOT_CURR_IMG(state));
David Vinczeba3bd602019-06-17 16:01:43 +02002320 rc = BOOT_EBADIMAGE;
Michael Grand5047f032022-11-24 16:49:56 +01002321 FIH_SET(fih_rc, FIH_FAILURE);
David Vinczeba3bd602019-06-17 16:01:43 +02002322 goto out;
2323 }
David Vinczec3084132020-02-18 14:50:47 +01002324#endif /* MCUBOOT_VALIDATE_PRIMARY_SLOT */
2325
Mark Horvathccaf7f82021-01-04 18:16:42 +01002326 rc = boot_update_hw_rollback_protection(state);
David Vincze1cf11b52020-03-24 07:51:09 +01002327 if (rc != 0) {
Michael Grand5047f032022-11-24 16:49:56 +01002328 FIH_SET(fih_rc, FIH_FAILURE);
Raef Colese8fe6cf2020-05-26 13:07:40 +01002329 goto out;
David Vincze1cf11b52020-03-24 07:51:09 +01002330 }
David Vincze1cf11b52020-03-24 07:51:09 +01002331
Mark Horvathccaf7f82021-01-04 18:16:42 +01002332 rc = boot_add_shared_data(state, BOOT_PRIMARY_SLOT);
David Vincze1cf11b52020-03-24 07:51:09 +01002333 if (rc != 0) {
Michael Grand5047f032022-11-24 16:49:56 +01002334 FIH_SET(fih_rc, FIH_FAILURE);
Raef Colese8fe6cf2020-05-26 13:07:40 +01002335 goto out;
David Vincze1cf11b52020-03-24 07:51:09 +01002336 }
Michael Grand5047f032022-11-24 16:49:56 +01002337 ++fih_cnt;
David Vinczeba3bd602019-06-17 16:01:43 +02002338 }
Michael Grand5047f032022-11-24 16:49:56 +01002339 /*
2340 * fih_cnt should be equal to BOOT_IMAGE_NUMBER now.
2341 * If this is not the case, at least one iteration of the loop
2342 * has been skipped.
2343 */
2344 if(FIH_NOT_EQ(fih_cnt, BOOT_IMAGE_NUMBER)) {
2345 FIH_PANIC;
2346 }
Fabio Utzigf616c542019-12-19 15:23:32 -03002347
Raef Colesfe57e7d2021-10-15 11:07:09 +01002348 fill_rsp(state, rsp);
Christopher Collins92ea77f2016-12-12 15:59:26 -08002349
Raef Colese8fe6cf2020-05-26 13:07:40 +01002350 fih_rc = FIH_SUCCESS;
Fabio Utzig298913b2019-08-28 11:22:45 -03002351out:
Dominik Ermel256bc372022-12-07 15:51:31 +00002352 /*
2353 * Since the boot_status struct stores plaintext encryption keys, reset
2354 * them here to avoid the possibility of jumping into an image that could
2355 * easily recover them.
2356 */
2357#if defined(MCUBOOT_ENC_IMAGES) || defined(MCUBOOT_SWAP_SAVE_ENCTLV)
2358 like_mbedtls_zeroize(&bs, sizeof(bs));
2359#else
2360 memset(&bs, 0, sizeof(struct boot_status));
2361#endif
2362
Mark Horvathccaf7f82021-01-04 18:16:42 +01002363 close_all_flash_areas(state);
Raef Colese8fe6cf2020-05-26 13:07:40 +01002364 FIH_RET(fih_rc);
Christopher Collins92ea77f2016-12-12 15:59:26 -08002365}
2366
Michael Grand5047f032022-11-24 16:49:56 +01002367fih_ret
Christopher Collins92ea77f2016-12-12 15:59:26 -08002368split_go(int loader_slot, int split_slot, void **entry)
2369{
Marti Bolivarc50926f2017-06-14 09:35:40 -04002370 boot_sector_t *sectors;
Christopher Collins034a6202017-01-11 12:19:37 -08002371 uintptr_t entry_val;
Christopher Collins92ea77f2016-12-12 15:59:26 -08002372 int loader_flash_id;
Marti Bolivarc0b47912017-06-13 17:18:09 -04002373 int split_flash_id;
Christopher Collins92ea77f2016-12-12 15:59:26 -08002374 int rc;
Michael Grand5047f032022-11-24 16:49:56 +01002375 FIH_DECLARE(fih_rc, FIH_FAILURE);
Christopher Collins92ea77f2016-12-12 15:59:26 -08002376
Christopher Collins92ea77f2016-12-12 15:59:26 -08002377 sectors = malloc(BOOT_MAX_IMG_SECTORS * 2 * sizeof *sectors);
2378 if (sectors == NULL) {
Raef Colese8fe6cf2020-05-26 13:07:40 +01002379 FIH_RET(FIH_FAILURE);
Christopher Collins92ea77f2016-12-12 15:59:26 -08002380 }
David Vinczeba3bd602019-06-17 16:01:43 +02002381 BOOT_IMG(&boot_data, loader_slot).sectors = sectors + 0;
2382 BOOT_IMG(&boot_data, split_slot).sectors = sectors + BOOT_MAX_IMG_SECTORS;
Marti Bolivarc0b47912017-06-13 17:18:09 -04002383
2384 loader_flash_id = flash_area_id_from_image_slot(loader_slot);
2385 rc = flash_area_open(loader_flash_id,
Alvaro Prieto63a2bdb2019-07-04 12:18:49 -07002386 &BOOT_IMG_AREA(&boot_data, loader_slot));
Marti Bolivarc0b47912017-06-13 17:18:09 -04002387 assert(rc == 0);
2388 split_flash_id = flash_area_id_from_image_slot(split_slot);
2389 rc = flash_area_open(split_flash_id,
2390 &BOOT_IMG_AREA(&boot_data, split_slot));
2391 assert(rc == 0);
Christopher Collins92ea77f2016-12-12 15:59:26 -08002392
2393 /* Determine the sector layout of the image slots and scratch area. */
Fabio Utzig10ee6482019-08-01 12:04:52 -03002394 rc = boot_read_sectors(&boot_data);
Christopher Collins92ea77f2016-12-12 15:59:26 -08002395 if (rc != 0) {
2396 rc = SPLIT_GO_ERR;
2397 goto done;
2398 }
2399
Fabio Utzig12d59162019-11-28 10:01:59 -03002400 rc = boot_read_image_headers(&boot_data, true, NULL);
Christopher Collins92ea77f2016-12-12 15:59:26 -08002401 if (rc != 0) {
2402 goto done;
2403 }
2404
Christopher Collins92ea77f2016-12-12 15:59:26 -08002405 /* Don't check the bootable image flag because we could really call a
2406 * bootable or non-bootable image. Just validate that the image check
2407 * passes which is distinct from the normal check.
2408 */
Raef Colese8fe6cf2020-05-26 13:07:40 +01002409 FIH_CALL(split_image_check, fih_rc,
2410 boot_img_hdr(&boot_data, split_slot),
2411 BOOT_IMG_AREA(&boot_data, split_slot),
2412 boot_img_hdr(&boot_data, loader_slot),
2413 BOOT_IMG_AREA(&boot_data, loader_slot));
Michael Grand5047f032022-11-24 16:49:56 +01002414 if (FIH_NOT_EQ(fih_rc, FIH_SUCCESS)) {
Christopher Collins92ea77f2016-12-12 15:59:26 -08002415 goto done;
2416 }
2417
Marti Bolivarea088872017-06-12 17:10:49 -04002418 entry_val = boot_img_slot_off(&boot_data, split_slot) +
Marti Bolivarf804f622017-06-12 15:41:48 -04002419 boot_img_hdr(&boot_data, split_slot)->ih_hdr_size;
Christopher Collins034a6202017-01-11 12:19:37 -08002420 *entry = (void *) entry_val;
Christopher Collins92ea77f2016-12-12 15:59:26 -08002421 rc = SPLIT_GO_OK;
2422
2423done:
Marti Bolivarc0b47912017-06-13 17:18:09 -04002424 flash_area_close(BOOT_IMG_AREA(&boot_data, split_slot));
2425 flash_area_close(BOOT_IMG_AREA(&boot_data, loader_slot));
Christopher Collins92ea77f2016-12-12 15:59:26 -08002426 free(sectors);
Raef Colese8fe6cf2020-05-26 13:07:40 +01002427
2428 if (rc) {
Michael Grand5047f032022-11-24 16:49:56 +01002429 FIH_SET(fih_rc, FIH_FAILURE);
Raef Colese8fe6cf2020-05-26 13:07:40 +01002430 }
2431
2432 FIH_RET(fih_rc);
Christopher Collins92ea77f2016-12-12 15:59:26 -08002433}
David Vinczee574f2d2020-07-10 11:42:03 +02002434
Tamas Banfe031092020-09-10 17:32:39 +02002435#else /* MCUBOOT_DIRECT_XIP || MCUBOOT_RAM_LOAD */
David Vinczee574f2d2020-07-10 11:42:03 +02002436
2437/**
Mark Horvathccaf7f82021-01-04 18:16:42 +01002438 * Opens all flash areas and checks which contain an image with a valid header.
David Vinczee574f2d2020-07-10 11:42:03 +02002439 *
Mark Horvathccaf7f82021-01-04 18:16:42 +01002440 * @param state Boot loader status information.
David Vinczee574f2d2020-07-10 11:42:03 +02002441 *
Mark Horvathccaf7f82021-01-04 18:16:42 +01002442 * @return 0 on success; nonzero on failure.
2443 */
2444static int
Raef Colesfe57e7d2021-10-15 11:07:09 +01002445boot_get_slot_usage(struct boot_loader_state *state)
Mark Horvathccaf7f82021-01-04 18:16:42 +01002446{
2447 uint32_t slot;
2448 int fa_id;
2449 int rc;
2450 struct image_header *hdr = NULL;
2451
2452 IMAGES_ITER(BOOT_CURR_IMG(state)) {
Raef Colesf11de642021-10-15 11:11:56 +01002453#if BOOT_IMAGE_NUMBER > 1
2454 if (state->img_mask[BOOT_CURR_IMG(state)]) {
2455 continue;
2456 }
2457#endif
Mark Horvathccaf7f82021-01-04 18:16:42 +01002458 /* Open all the slots */
2459 for (slot = 0; slot < BOOT_NUM_SLOTS; slot++) {
2460 fa_id = flash_area_id_from_multi_image_slot(
2461 BOOT_CURR_IMG(state), slot);
2462 rc = flash_area_open(fa_id, &BOOT_IMG_AREA(state, slot));
2463 assert(rc == 0);
2464 }
2465
2466 /* Attempt to read an image header from each slot. */
2467 rc = boot_read_image_headers(state, false, NULL);
2468 if (rc != 0) {
2469 BOOT_LOG_WRN("Failed reading image headers.");
2470 return rc;
2471 }
2472
2473 /* Check headers in all slots */
2474 for (slot = 0; slot < BOOT_NUM_SLOTS; slot++) {
2475 hdr = boot_img_hdr(state, slot);
2476
2477 if (boot_is_header_valid(hdr, BOOT_IMG_AREA(state, slot))) {
Raef Colesfe57e7d2021-10-15 11:07:09 +01002478 state->slot_usage[BOOT_CURR_IMG(state)].slot_available[slot] = true;
Mark Horvathccaf7f82021-01-04 18:16:42 +01002479 BOOT_LOG_IMAGE_INFO(slot, hdr);
2480 } else {
Raef Colesfe57e7d2021-10-15 11:07:09 +01002481 state->slot_usage[BOOT_CURR_IMG(state)].slot_available[slot] = false;
Mark Horvathccaf7f82021-01-04 18:16:42 +01002482 BOOT_LOG_INF("Image %d %s slot: Image not found",
2483 BOOT_CURR_IMG(state),
2484 (slot == BOOT_PRIMARY_SLOT)
2485 ? "Primary" : "Secondary");
2486 }
2487 }
2488
Raef Colesfe57e7d2021-10-15 11:07:09 +01002489 state->slot_usage[BOOT_CURR_IMG(state)].active_slot = NO_ACTIVE_SLOT;
Mark Horvathccaf7f82021-01-04 18:16:42 +01002490 }
2491
2492 return 0;
2493}
2494
2495/**
2496 * Finds the slot containing the image with the highest version number for the
2497 * current image.
2498 *
2499 * @param state Boot loader status information.
Mark Horvathccaf7f82021-01-04 18:16:42 +01002500 *
2501 * @return NO_ACTIVE_SLOT if no available slot found, number of
2502 * the found slot otherwise.
David Vinczee574f2d2020-07-10 11:42:03 +02002503 */
2504static uint32_t
Raef Colesfe57e7d2021-10-15 11:07:09 +01002505find_slot_with_highest_version(struct boot_loader_state *state)
David Vinczee574f2d2020-07-10 11:42:03 +02002506{
David Vinczee574f2d2020-07-10 11:42:03 +02002507 uint32_t slot;
Mark Horvathccaf7f82021-01-04 18:16:42 +01002508 uint32_t candidate_slot = NO_ACTIVE_SLOT;
2509 int rc;
David Vinczee574f2d2020-07-10 11:42:03 +02002510
Mark Horvathccaf7f82021-01-04 18:16:42 +01002511 for (slot = 0; slot < BOOT_NUM_SLOTS; slot++) {
Raef Colesfe57e7d2021-10-15 11:07:09 +01002512 if (state->slot_usage[BOOT_CURR_IMG(state)].slot_available[slot]) {
Mark Horvathccaf7f82021-01-04 18:16:42 +01002513 if (candidate_slot == NO_ACTIVE_SLOT) {
2514 candidate_slot = slot;
2515 } else {
2516 rc = boot_version_cmp(
2517 &boot_img_hdr(state, slot)->ih_ver,
2518 &boot_img_hdr(state, candidate_slot)->ih_ver);
2519 if (rc == 1) {
2520 /* The version of the image being examined is greater than
2521 * the version of the current candidate.
2522 */
2523 candidate_slot = slot;
2524 }
2525 }
David Vinczee574f2d2020-07-10 11:42:03 +02002526 }
2527 }
2528
Mark Horvathccaf7f82021-01-04 18:16:42 +01002529 return candidate_slot;
David Vinczee574f2d2020-07-10 11:42:03 +02002530}
2531
Mark Horvathccaf7f82021-01-04 18:16:42 +01002532#ifdef MCUBOOT_HAVE_LOGGING
2533/**
2534 * Prints the state of the loaded images.
2535 *
2536 * @param state Boot loader status information.
Mark Horvathccaf7f82021-01-04 18:16:42 +01002537 */
2538static void
Raef Colesfe57e7d2021-10-15 11:07:09 +01002539print_loaded_images(struct boot_loader_state *state)
Mark Horvathccaf7f82021-01-04 18:16:42 +01002540{
2541 uint32_t active_slot;
2542
David Brown695e5912021-05-24 16:58:01 -06002543 (void)state;
2544
Mark Horvathccaf7f82021-01-04 18:16:42 +01002545 IMAGES_ITER(BOOT_CURR_IMG(state)) {
Raef Colesf11de642021-10-15 11:11:56 +01002546#if BOOT_IMAGE_NUMBER > 1
2547 if (state->img_mask[BOOT_CURR_IMG(state)]) {
2548 continue;
2549 }
2550#endif
Raef Colesfe57e7d2021-10-15 11:07:09 +01002551 active_slot = state->slot_usage[BOOT_CURR_IMG(state)].active_slot;
Mark Horvathccaf7f82021-01-04 18:16:42 +01002552
2553 BOOT_LOG_INF("Image %d loaded from the %s slot",
2554 BOOT_CURR_IMG(state),
2555 (active_slot == BOOT_PRIMARY_SLOT) ?
2556 "primary" : "secondary");
2557 }
2558}
2559#endif
2560
David Vincze1c456242021-06-29 15:25:24 +02002561#if defined(MCUBOOT_DIRECT_XIP) && defined(MCUBOOT_DIRECT_XIP_REVERT)
David Vincze505fba22020-10-22 13:53:29 +02002562/**
Mark Horvathccaf7f82021-01-04 18:16:42 +01002563 * Checks whether the active slot of the current image was previously selected
2564 * to run. Erases the image if it was selected but its execution failed,
2565 * otherwise marks it as selected if it has not been before.
David Vincze505fba22020-10-22 13:53:29 +02002566 *
Mark Horvathccaf7f82021-01-04 18:16:42 +01002567 * @param state Boot loader status information.
David Vincze505fba22020-10-22 13:53:29 +02002568 *
Mark Horvathccaf7f82021-01-04 18:16:42 +01002569 * @return 0 on success; nonzero on failure.
David Vincze505fba22020-10-22 13:53:29 +02002570 */
2571static int
Raef Colesfe57e7d2021-10-15 11:07:09 +01002572boot_select_or_erase(struct boot_loader_state *state)
David Vincze505fba22020-10-22 13:53:29 +02002573{
2574 const struct flash_area *fap;
2575 int fa_id;
2576 int rc;
Mark Horvathccaf7f82021-01-04 18:16:42 +01002577 uint32_t active_slot;
2578 struct boot_swap_state* active_swap_state;
David Vincze505fba22020-10-22 13:53:29 +02002579
Raef Colesfe57e7d2021-10-15 11:07:09 +01002580 active_slot = state->slot_usage[BOOT_CURR_IMG(state)].active_slot;
Mark Horvathccaf7f82021-01-04 18:16:42 +01002581
2582 fa_id = flash_area_id_from_multi_image_slot(BOOT_CURR_IMG(state), active_slot);
David Vincze505fba22020-10-22 13:53:29 +02002583 rc = flash_area_open(fa_id, &fap);
2584 assert(rc == 0);
2585
Raef Colesfe57e7d2021-10-15 11:07:09 +01002586 active_swap_state = &(state->slot_usage[BOOT_CURR_IMG(state)].swap_state);
Mark Horvathccaf7f82021-01-04 18:16:42 +01002587
2588 memset(active_swap_state, 0, sizeof(struct boot_swap_state));
2589 rc = boot_read_swap_state(fap, active_swap_state);
David Vincze505fba22020-10-22 13:53:29 +02002590 assert(rc == 0);
2591
Mark Horvathccaf7f82021-01-04 18:16:42 +01002592 if (active_swap_state->magic != BOOT_MAGIC_GOOD ||
2593 (active_swap_state->copy_done == BOOT_FLAG_SET &&
2594 active_swap_state->image_ok != BOOT_FLAG_SET)) {
David Vincze505fba22020-10-22 13:53:29 +02002595 /*
2596 * A reboot happened without the image being confirmed at
2597 * runtime or its trailer is corrupted/invalid. Erase the image
2598 * to prevent it from being selected again on the next reboot.
2599 */
2600 BOOT_LOG_DBG("Erasing faulty image in the %s slot.",
Carlos Falgueras Garcíaae13c3c2021-06-21 17:20:31 +02002601 (active_slot == BOOT_PRIMARY_SLOT) ? "primary" : "secondary");
Dominik Ermel260ae092021-04-23 05:38:45 +00002602 rc = flash_area_erase(fap, 0, flash_area_get_size(fap));
David Vincze505fba22020-10-22 13:53:29 +02002603 assert(rc == 0);
2604
2605 flash_area_close(fap);
2606 rc = -1;
2607 } else {
Mark Horvathccaf7f82021-01-04 18:16:42 +01002608 if (active_swap_state->copy_done != BOOT_FLAG_SET) {
2609 if (active_swap_state->copy_done == BOOT_FLAG_BAD) {
David Vincze505fba22020-10-22 13:53:29 +02002610 BOOT_LOG_DBG("The copy_done flag had an unexpected value. Its "
2611 "value was neither 'set' nor 'unset', but 'bad'.");
2612 }
2613 /*
2614 * Set the copy_done flag, indicating that the image has been
2615 * selected to boot. It can be set in advance, before even
2616 * validating the image, because in case the validation fails, the
2617 * entire image slot will be erased (including the trailer).
2618 */
2619 rc = boot_write_copy_done(fap);
2620 if (rc != 0) {
2621 BOOT_LOG_WRN("Failed to set copy_done flag of the image in "
Carlos Falgueras Garcíaae13c3c2021-06-21 17:20:31 +02002622 "the %s slot.", (active_slot == BOOT_PRIMARY_SLOT) ?
David Vincze505fba22020-10-22 13:53:29 +02002623 "primary" : "secondary");
2624 rc = 0;
2625 }
2626 }
2627 flash_area_close(fap);
2628 }
2629
2630 return rc;
2631}
David Vincze1c456242021-06-29 15:25:24 +02002632#endif /* MCUBOOT_DIRECT_XIP && MCUBOOT_DIRECT_XIP_REVERT */
David Vincze505fba22020-10-22 13:53:29 +02002633
Tamas Banfe031092020-09-10 17:32:39 +02002634#ifdef MCUBOOT_RAM_LOAD
2635
Mark Horvathccaf7f82021-01-04 18:16:42 +01002636#ifndef MULTIPLE_EXECUTABLE_RAM_REGIONS
Tamas Banfe031092020-09-10 17:32:39 +02002637#if !defined(IMAGE_EXECUTABLE_RAM_START) || !defined(IMAGE_EXECUTABLE_RAM_SIZE)
2638#error "Platform MUST define executable RAM bounds in case of RAM_LOAD"
2639#endif
Mark Horvathccaf7f82021-01-04 18:16:42 +01002640#endif
Tamas Banfe031092020-09-10 17:32:39 +02002641
2642/**
Mark Horvathccaf7f82021-01-04 18:16:42 +01002643 * Verifies that the active slot of the current image can be loaded within the
2644 * predefined bounds that are allowed to be used by executable images.
Tamas Banfe031092020-09-10 17:32:39 +02002645 *
Mark Horvathccaf7f82021-01-04 18:16:42 +01002646 * @param state Boot loader status information.
Tamas Banfe031092020-09-10 17:32:39 +02002647 *
Mark Horvathccaf7f82021-01-04 18:16:42 +01002648 * @return 0 on success; nonzero on failure.
Tamas Banfe031092020-09-10 17:32:39 +02002649 */
2650static int
Raef Colesfe57e7d2021-10-15 11:07:09 +01002651boot_verify_ram_load_address(struct boot_loader_state *state)
Tamas Banfe031092020-09-10 17:32:39 +02002652{
Mark Horvathccaf7f82021-01-04 18:16:42 +01002653 uint32_t img_dst;
2654 uint32_t img_sz;
Tamas Banfe031092020-09-10 17:32:39 +02002655 uint32_t img_end_addr;
Mark Horvathccaf7f82021-01-04 18:16:42 +01002656 uint32_t exec_ram_start;
2657 uint32_t exec_ram_size;
David Brown695e5912021-05-24 16:58:01 -06002658
2659 (void)state;
2660
Mark Horvathccaf7f82021-01-04 18:16:42 +01002661#ifdef MULTIPLE_EXECUTABLE_RAM_REGIONS
2662 int rc;
Tamas Banfe031092020-09-10 17:32:39 +02002663
Mark Horvathccaf7f82021-01-04 18:16:42 +01002664 rc = boot_get_image_exec_ram_info(BOOT_CURR_IMG(state), &exec_ram_start,
2665 &exec_ram_size);
2666 if (rc != 0) {
2667 return BOOT_EBADSTATUS;
2668 }
2669#else
2670 exec_ram_start = IMAGE_EXECUTABLE_RAM_START;
2671 exec_ram_size = IMAGE_EXECUTABLE_RAM_SIZE;
2672#endif
2673
Raef Colesfe57e7d2021-10-15 11:07:09 +01002674 img_dst = state->slot_usage[BOOT_CURR_IMG(state)].img_dst;
2675 img_sz = state->slot_usage[BOOT_CURR_IMG(state)].img_sz;
Mark Horvathccaf7f82021-01-04 18:16:42 +01002676
2677 if (img_dst < exec_ram_start) {
Tamas Banfe031092020-09-10 17:32:39 +02002678 return BOOT_EBADIMAGE;
2679 }
2680
2681 if (!boot_u32_safe_add(&img_end_addr, img_dst, img_sz)) {
2682 return BOOT_EBADIMAGE;
2683 }
2684
Mark Horvathccaf7f82021-01-04 18:16:42 +01002685 if (img_end_addr > (exec_ram_start + exec_ram_size)) {
Tamas Banfe031092020-09-10 17:32:39 +02002686 return BOOT_EBADIMAGE;
2687 }
2688
2689 return 0;
2690}
2691
Hugo L'Hostisdb543e52021-03-09 18:00:31 +00002692#ifdef MCUBOOT_ENC_IMAGES
2693
2694/**
2695 * Copies and decrypts an image from a slot in the flash to an SRAM address.
2696 *
2697 * @param state Boot loader status information.
2698 * @param slot The flash slot of the image to be copied to SRAM.
2699 * @param hdr The image header.
2700 * @param src_sz Size of the image.
2701 * @param img_dst Pointer to the address at which the image needs to be
2702 * copied to SRAM.
2703 *
2704 * @return 0 on success; nonzero on failure.
2705 */
2706static int
2707boot_decrypt_and_copy_image_to_sram(struct boot_loader_state *state,
2708 uint32_t slot, struct image_header *hdr,
2709 uint32_t src_sz, uint32_t img_dst)
2710{
2711 /* The flow for the decryption and copy of the image is as follows :
2712 * 1. The whole image is copied to the RAM (header + payload + TLV).
2713 * 2. The encryption key is loaded from the TLV in flash.
2714 * 3. The image is then decrypted chunk by chunk in RAM (1 chunk
2715 * is 1024 bytes). Only the payload section is decrypted.
2716 * 4. The image is authenticated in RAM.
2717 */
2718 const struct flash_area *fap_src = NULL;
2719 struct boot_status bs;
2720 uint32_t blk_off;
2721 uint32_t tlv_off;
2722 uint32_t blk_sz;
2723 uint32_t bytes_copied = hdr->ih_hdr_size;
2724 uint32_t chunk_sz;
2725 uint32_t max_sz = 1024;
2726 uint16_t idx;
2727 uint8_t image_index;
2728 uint8_t * cur_dst;
2729 int area_id;
2730 int rc;
2731 uint8_t * ram_dst = (void *)(IMAGE_RAM_BASE + img_dst);
2732
2733 image_index = BOOT_CURR_IMG(state);
2734 area_id = flash_area_id_from_multi_image_slot(BOOT_CURR_IMG(state), slot);
2735 rc = flash_area_open(area_id, &fap_src);
2736 if (rc != 0){
2737 return BOOT_EFLASH;
2738 }
2739
2740 tlv_off = BOOT_TLV_OFF(hdr);
2741
2742 /* Copying the whole image in RAM */
2743 rc = flash_area_read(fap_src, 0, ram_dst, src_sz);
2744 if (rc != 0) {
2745 goto done;
2746 }
2747
2748 rc = boot_enc_load(BOOT_CURR_ENC(state), image_index, hdr, fap_src, &bs);
2749 if (rc < 0) {
2750 goto done;
2751 }
2752
2753 /* if rc > 0 then the key has already been loaded */
2754 if (rc == 0 && boot_enc_set_key(BOOT_CURR_ENC(state), slot, &bs)) {
2755 goto done;
2756 }
2757
2758 /* Starting at the end of the header as the header section is not encrypted */
2759 while (bytes_copied < tlv_off) { /* TLV section copied previously */
2760 if (src_sz - bytes_copied > max_sz) {
2761 chunk_sz = max_sz;
2762 } else {
2763 chunk_sz = src_sz - bytes_copied;
2764 }
2765
2766 cur_dst = ram_dst + bytes_copied;
2767 blk_sz = chunk_sz;
2768 idx = 0;
2769 if (bytes_copied + chunk_sz > tlv_off) {
2770 /* Going over TLV section
2771 * Part of the chunk is encrypted payload */
2772 blk_off = ((bytes_copied) - hdr->ih_hdr_size) & 0xf;
2773 blk_sz = tlv_off - (bytes_copied);
2774 boot_encrypt(BOOT_CURR_ENC(state), image_index, fap_src,
2775 (bytes_copied + idx) - hdr->ih_hdr_size, blk_sz,
2776 blk_off, cur_dst);
2777 } else {
2778 /* Image encrypted payload section */
2779 blk_off = ((bytes_copied) - hdr->ih_hdr_size) & 0xf;
2780 boot_encrypt(BOOT_CURR_ENC(state), image_index, fap_src,
2781 (bytes_copied + idx) - hdr->ih_hdr_size, blk_sz,
2782 blk_off, cur_dst);
2783 }
2784
2785 bytes_copied += chunk_sz;
2786 }
2787 rc = 0;
2788
2789done:
2790 flash_area_close(fap_src);
2791
2792 return rc;
2793}
2794
2795#endif /* MCUBOOT_ENC_IMAGES */
Tamas Banfe031092020-09-10 17:32:39 +02002796/**
Mark Horvathccaf7f82021-01-04 18:16:42 +01002797 * Copies a slot of the current image into SRAM.
Tamas Banfe031092020-09-10 17:32:39 +02002798 *
Mark Horvathccaf7f82021-01-04 18:16:42 +01002799 * @param state Boot loader status information.
Tamas Banfe031092020-09-10 17:32:39 +02002800 * @param slot The flash slot of the image to be copied to SRAM.
2801 * @param img_dst The address at which the image needs to be copied to
2802 * SRAM.
2803 * @param img_sz The size of the image that needs to be copied to SRAM.
2804 *
2805 * @return 0 on success; nonzero on failure.
2806 */
2807static int
Mark Horvathccaf7f82021-01-04 18:16:42 +01002808boot_copy_image_to_sram(struct boot_loader_state *state, int slot,
2809 uint32_t img_dst, uint32_t img_sz)
Tamas Banfe031092020-09-10 17:32:39 +02002810{
2811 int rc;
2812 const struct flash_area *fap_src = NULL;
Mark Horvathccaf7f82021-01-04 18:16:42 +01002813 int area_id;
Tamas Banfe031092020-09-10 17:32:39 +02002814
Mark Horvathccaf7f82021-01-04 18:16:42 +01002815#if (BOOT_IMAGE_NUMBER == 1)
2816 (void)state;
2817#endif
2818
2819 area_id = flash_area_id_from_multi_image_slot(BOOT_CURR_IMG(state), slot);
2820
2821 rc = flash_area_open(area_id, &fap_src);
Tamas Banfe031092020-09-10 17:32:39 +02002822 if (rc != 0) {
2823 return BOOT_EFLASH;
2824 }
2825
2826 /* Direct copy from flash to its new location in SRAM. */
David Brown9bd7f902021-05-26 16:31:14 -06002827 rc = flash_area_read(fap_src, 0, (void *)(IMAGE_RAM_BASE + img_dst), img_sz);
Tamas Banfe031092020-09-10 17:32:39 +02002828 if (rc != 0) {
Antonio de Angelis48547002023-04-14 09:47:09 +01002829 BOOT_LOG_INF("Error whilst copying image %d from Flash to SRAM: %d",
2830 BOOT_CURR_IMG(state), rc);
Tamas Banfe031092020-09-10 17:32:39 +02002831 }
2832
2833 flash_area_close(fap_src);
2834
2835 return rc;
2836}
2837
Mark Horvathccaf7f82021-01-04 18:16:42 +01002838#if (BOOT_IMAGE_NUMBER > 1)
Tamas Banfe031092020-09-10 17:32:39 +02002839/**
Mark Horvathccaf7f82021-01-04 18:16:42 +01002840 * Checks if two memory regions (A and B) are overlap or not.
Tamas Banfe031092020-09-10 17:32:39 +02002841 *
Mark Horvathccaf7f82021-01-04 18:16:42 +01002842 * @param start_a Start of the A region.
2843 * @param end_a End of the A region.
2844 * @param start_b Start of the B region.
2845 * @param end_b End of the B region.
Tamas Banfe031092020-09-10 17:32:39 +02002846 *
Mark Horvathccaf7f82021-01-04 18:16:42 +01002847 * @return true if there is overlap; false otherwise.
2848 */
2849static bool
2850do_regions_overlap(uint32_t start_a, uint32_t end_a,
2851 uint32_t start_b, uint32_t end_b)
2852{
2853 if (start_b > end_a) {
2854 return false;
2855 } else if (start_b >= start_a) {
2856 return true;
2857 } else if (end_b > start_a) {
2858 return true;
2859 }
2860
2861 return false;
2862}
2863
2864/**
2865 * Checks if the image we want to load to memory overlap with an already
2866 * ramloaded image.
2867 *
Raef Colesfe57e7d2021-10-15 11:07:09 +01002868 * @param state Boot loader status information.
Mark Horvathccaf7f82021-01-04 18:16:42 +01002869 *
2870 * @return 0 if there is no overlap; nonzero otherwise.
Tamas Banfe031092020-09-10 17:32:39 +02002871 */
2872static int
Raef Colesfe57e7d2021-10-15 11:07:09 +01002873boot_check_ram_load_overlapping(struct boot_loader_state *state)
Tamas Banfe031092020-09-10 17:32:39 +02002874{
Mark Horvathccaf7f82021-01-04 18:16:42 +01002875 uint32_t i;
2876
2877 uint32_t start_a;
2878 uint32_t end_a;
2879 uint32_t start_b;
2880 uint32_t end_b;
Raef Colesfe57e7d2021-10-15 11:07:09 +01002881 uint32_t image_id_to_check = BOOT_CURR_IMG(state);
Mark Horvathccaf7f82021-01-04 18:16:42 +01002882
Raef Colesfe57e7d2021-10-15 11:07:09 +01002883 start_a = state->slot_usage[image_id_to_check].img_dst;
Mark Horvathccaf7f82021-01-04 18:16:42 +01002884 /* Safe to add here, values are already verified in
2885 * boot_verify_ram_load_address() */
Raef Colesfe57e7d2021-10-15 11:07:09 +01002886 end_a = start_a + state->slot_usage[image_id_to_check].img_sz;
Mark Horvathccaf7f82021-01-04 18:16:42 +01002887
2888 for (i = 0; i < BOOT_IMAGE_NUMBER; i++) {
Raef Colesfe57e7d2021-10-15 11:07:09 +01002889 if (state->slot_usage[i].active_slot == NO_ACTIVE_SLOT
Mark Horvathccaf7f82021-01-04 18:16:42 +01002890 || i == image_id_to_check) {
2891 continue;
2892 }
2893
Raef Colesfe57e7d2021-10-15 11:07:09 +01002894 start_b = state->slot_usage[i].img_dst;
Mark Horvathccaf7f82021-01-04 18:16:42 +01002895 /* Safe to add here, values are already verified in
2896 * boot_verify_ram_load_address() */
Raef Colesfe57e7d2021-10-15 11:07:09 +01002897 end_b = start_b + state->slot_usage[i].img_sz;
Mark Horvathccaf7f82021-01-04 18:16:42 +01002898
2899 if (do_regions_overlap(start_a, end_a, start_b, end_b)) {
2900 return -1;
2901 }
2902 }
2903
2904 return 0;
2905}
2906#endif
2907
2908/**
2909 * Loads the active slot of the current image into SRAM. The load address and
2910 * image size is extracted from the image header.
2911 *
2912 * @param state Boot loader status information.
Mark Horvathccaf7f82021-01-04 18:16:42 +01002913 *
2914 * @return 0 on success; nonzero on failure.
2915 */
2916static int
Raef Colesfe57e7d2021-10-15 11:07:09 +01002917boot_load_image_to_sram(struct boot_loader_state *state)
Mark Horvathccaf7f82021-01-04 18:16:42 +01002918{
2919 uint32_t active_slot;
2920 struct image_header *hdr = NULL;
2921 uint32_t img_dst;
2922 uint32_t img_sz;
Tamas Banfe031092020-09-10 17:32:39 +02002923 int rc;
2924
Raef Colesfe57e7d2021-10-15 11:07:09 +01002925 active_slot = state->slot_usage[BOOT_CURR_IMG(state)].active_slot;
Mark Horvathccaf7f82021-01-04 18:16:42 +01002926 hdr = boot_img_hdr(state, active_slot);
2927
Tamas Banfe031092020-09-10 17:32:39 +02002928 if (hdr->ih_flags & IMAGE_F_RAM_LOAD) {
2929
Mark Horvathccaf7f82021-01-04 18:16:42 +01002930 img_dst = hdr->ih_load_addr;
Tamas Banfe031092020-09-10 17:32:39 +02002931
Mark Horvathccaf7f82021-01-04 18:16:42 +01002932 rc = boot_read_image_size(state, active_slot, &img_sz);
Tamas Banfe031092020-09-10 17:32:39 +02002933 if (rc != 0) {
2934 return rc;
2935 }
2936
Raef Colesfe57e7d2021-10-15 11:07:09 +01002937 state->slot_usage[BOOT_CURR_IMG(state)].img_dst = img_dst;
2938 state->slot_usage[BOOT_CURR_IMG(state)].img_sz = img_sz;
Mark Horvathccaf7f82021-01-04 18:16:42 +01002939
Raef Colesfe57e7d2021-10-15 11:07:09 +01002940 rc = boot_verify_ram_load_address(state);
Tamas Banfe031092020-09-10 17:32:39 +02002941 if (rc != 0) {
Antonio de Angelisba5fb1c2022-10-11 10:10:37 +01002942 BOOT_LOG_INF("Image %d RAM load address 0x%x is invalid.", BOOT_CURR_IMG(state), img_dst);
Tamas Banfe031092020-09-10 17:32:39 +02002943 return rc;
2944 }
2945
Mark Horvathccaf7f82021-01-04 18:16:42 +01002946#if (BOOT_IMAGE_NUMBER > 1)
Raef Colesfe57e7d2021-10-15 11:07:09 +01002947 rc = boot_check_ram_load_overlapping(state);
Mark Horvathccaf7f82021-01-04 18:16:42 +01002948 if (rc != 0) {
Antonio de Angelisba5fb1c2022-10-11 10:10:37 +01002949 BOOT_LOG_INF("Image %d RAM loading to address 0x%x would overlap with\
2950 another image.", BOOT_CURR_IMG(state), img_dst);
Mark Horvathccaf7f82021-01-04 18:16:42 +01002951 return rc;
2952 }
2953#endif
Hugo L'Hostisdb543e52021-03-09 18:00:31 +00002954#ifdef MCUBOOT_ENC_IMAGES
2955 /* decrypt image if encrypted and copy it to RAM */
2956 if (IS_ENCRYPTED(hdr)) {
2957 rc = boot_decrypt_and_copy_image_to_sram(state, active_slot, hdr, img_sz, img_dst);
2958 } else {
2959 rc = boot_copy_image_to_sram(state, active_slot, img_dst, img_sz);
2960 }
2961#else
Tamas Banfe031092020-09-10 17:32:39 +02002962 /* Copy image to the load address from where it currently resides in
2963 * flash.
2964 */
Mark Horvathccaf7f82021-01-04 18:16:42 +01002965 rc = boot_copy_image_to_sram(state, active_slot, img_dst, img_sz);
Hugo L'Hostisdb543e52021-03-09 18:00:31 +00002966#endif
Tamas Banfe031092020-09-10 17:32:39 +02002967 if (rc != 0) {
Antonio de Angelisba5fb1c2022-10-11 10:10:37 +01002968 BOOT_LOG_INF("Image %d RAM loading to 0x%x is failed.", BOOT_CURR_IMG(state), img_dst);
Tamas Banfe031092020-09-10 17:32:39 +02002969 } else {
Antonio de Angelisba5fb1c2022-10-11 10:10:37 +01002970 BOOT_LOG_INF("Image %d RAM loading to 0x%x is succeeded.", BOOT_CURR_IMG(state), img_dst);
Tamas Banfe031092020-09-10 17:32:39 +02002971 }
2972 } else {
2973 /* Only images that support IMAGE_F_RAM_LOAD are allowed if
2974 * MCUBOOT_RAM_LOAD is set.
2975 */
2976 rc = BOOT_EBADIMAGE;
2977 }
2978
Mark Horvathccaf7f82021-01-04 18:16:42 +01002979 if (rc != 0) {
Raef Colesfe57e7d2021-10-15 11:07:09 +01002980 state->slot_usage[BOOT_CURR_IMG(state)].img_dst = 0;
2981 state->slot_usage[BOOT_CURR_IMG(state)].img_sz = 0;
Mark Horvathccaf7f82021-01-04 18:16:42 +01002982 }
2983
Tamas Banfe031092020-09-10 17:32:39 +02002984 return rc;
2985}
2986
2987/**
2988 * Removes an image from SRAM, by overwriting it with zeros.
2989 *
Mark Horvathccaf7f82021-01-04 18:16:42 +01002990 * @param state Boot loader status information.
Mark Horvathccaf7f82021-01-04 18:16:42 +01002991 *
2992 * @return 0 on success; nonzero on failure.
2993 */
2994static inline int
Raef Colesfe57e7d2021-10-15 11:07:09 +01002995boot_remove_image_from_sram(struct boot_loader_state *state)
Mark Horvathccaf7f82021-01-04 18:16:42 +01002996{
David Brown695e5912021-05-24 16:58:01 -06002997 (void)state;
2998
Antonio de Angelisba5fb1c2022-10-11 10:10:37 +01002999 BOOT_LOG_INF("Removing image %d from SRAM at address 0x%x",
3000 BOOT_CURR_IMG(state),
Raef Colesfe57e7d2021-10-15 11:07:09 +01003001 state->slot_usage[BOOT_CURR_IMG(state)].img_dst);
Mark Horvathccaf7f82021-01-04 18:16:42 +01003002
Raef Colesfe57e7d2021-10-15 11:07:09 +01003003 memset((void*)(IMAGE_RAM_BASE + state->slot_usage[BOOT_CURR_IMG(state)].img_dst),
3004 0, state->slot_usage[BOOT_CURR_IMG(state)].img_sz);
Mark Horvathccaf7f82021-01-04 18:16:42 +01003005
Raef Colesfe57e7d2021-10-15 11:07:09 +01003006 state->slot_usage[BOOT_CURR_IMG(state)].img_dst = 0;
3007 state->slot_usage[BOOT_CURR_IMG(state)].img_sz = 0;
Mark Horvathccaf7f82021-01-04 18:16:42 +01003008
3009 return 0;
3010}
3011
3012/**
3013 * Removes an image from flash by erasing the corresponding flash area
3014 *
3015 * @param state Boot loader status information.
3016 * @param slot The flash slot of the image to be erased.
Tamas Banfe031092020-09-10 17:32:39 +02003017 *
3018 * @return 0 on success; nonzero on failure.
3019 */
3020static inline int
Mark Horvathccaf7f82021-01-04 18:16:42 +01003021boot_remove_image_from_flash(struct boot_loader_state *state, uint32_t slot)
Tamas Banfe031092020-09-10 17:32:39 +02003022{
Mark Horvathccaf7f82021-01-04 18:16:42 +01003023 int area_id;
3024 int rc;
3025 const struct flash_area *fap;
Tamas Banfe031092020-09-10 17:32:39 +02003026
David Brown695e5912021-05-24 16:58:01 -06003027 (void)state;
3028
Mark Horvathccaf7f82021-01-04 18:16:42 +01003029 BOOT_LOG_INF("Removing image %d slot %d from flash", BOOT_CURR_IMG(state),
3030 slot);
3031 area_id = flash_area_id_from_multi_image_slot(BOOT_CURR_IMG(state), slot);
3032 rc = flash_area_open(area_id, &fap);
3033 if (rc == 0) {
Dominik Ermel260ae092021-04-23 05:38:45 +00003034 flash_area_erase(fap, 0, flash_area_get_size(fap));
Dominik Ermel245de812022-09-02 13:39:23 +00003035 flash_area_close(fap);
Mark Horvathccaf7f82021-01-04 18:16:42 +01003036 }
3037
3038 return rc;
Tamas Banfe031092020-09-10 17:32:39 +02003039}
3040#endif /* MCUBOOT_RAM_LOAD */
3041
Mark Horvathccaf7f82021-01-04 18:16:42 +01003042
3043/**
3044 * Tries to load a slot for all the images with validation.
3045 *
3046 * @param state Boot loader status information.
Mark Horvathccaf7f82021-01-04 18:16:42 +01003047 *
3048 * @return 0 on success; nonzero on failure.
3049 */
Michael Grand5047f032022-11-24 16:49:56 +01003050fih_ret
Raef Colesfe57e7d2021-10-15 11:07:09 +01003051boot_load_and_validate_images(struct boot_loader_state *state)
Mark Horvathccaf7f82021-01-04 18:16:42 +01003052{
3053 uint32_t active_slot;
3054 int rc;
Michael Grand5047f032022-11-24 16:49:56 +01003055 fih_ret fih_rc;
Mark Horvathccaf7f82021-01-04 18:16:42 +01003056
3057 /* Go over all the images and try to load one */
3058 IMAGES_ITER(BOOT_CURR_IMG(state)) {
3059 /* All slots tried until a valid image found. Breaking from this loop
3060 * means that a valid image found or already loaded. If no slot is
3061 * found the function returns with error code. */
3062 while (true) {
Mark Horvathccaf7f82021-01-04 18:16:42 +01003063 /* Go over all the slots and try to load one */
Raef Colesfe57e7d2021-10-15 11:07:09 +01003064 active_slot = state->slot_usage[BOOT_CURR_IMG(state)].active_slot;
Mark Horvathccaf7f82021-01-04 18:16:42 +01003065 if (active_slot != NO_ACTIVE_SLOT){
3066 /* A slot is already active, go to next image. */
3067 break;
David Vinczee574f2d2020-07-10 11:42:03 +02003068 }
David Vincze505fba22020-10-22 13:53:29 +02003069
Raef Colesfe57e7d2021-10-15 11:07:09 +01003070 active_slot = find_slot_with_highest_version(state);
Mark Horvathccaf7f82021-01-04 18:16:42 +01003071 if (active_slot == NO_ACTIVE_SLOT) {
3072 BOOT_LOG_INF("No slot to load for image %d",
3073 BOOT_CURR_IMG(state));
3074 FIH_RET(FIH_FAILURE);
3075 }
3076
3077 /* Save the number of the active slot. */
Raef Colesfe57e7d2021-10-15 11:07:09 +01003078 state->slot_usage[BOOT_CURR_IMG(state)].active_slot = active_slot;
Mark Horvathccaf7f82021-01-04 18:16:42 +01003079
Raef Colesf11de642021-10-15 11:11:56 +01003080#if BOOT_IMAGE_NUMBER > 1
3081 if (state->img_mask[BOOT_CURR_IMG(state)]) {
3082 continue;
3083 }
3084#endif
3085
Mark Horvathccaf7f82021-01-04 18:16:42 +01003086#ifdef MCUBOOT_DIRECT_XIP
Raef Colesfe57e7d2021-10-15 11:07:09 +01003087 rc = boot_rom_address_check(state);
Mark Horvathccaf7f82021-01-04 18:16:42 +01003088 if (rc != 0) {
3089 /* The image is placed in an unsuitable slot. */
Raef Colesfe57e7d2021-10-15 11:07:09 +01003090 state->slot_usage[BOOT_CURR_IMG(state)].slot_available[active_slot] = false;
3091 state->slot_usage[BOOT_CURR_IMG(state)].active_slot = NO_ACTIVE_SLOT;
Mark Horvathccaf7f82021-01-04 18:16:42 +01003092 continue;
3093 }
George Becksteind4d90f82021-05-11 02:00:00 -04003094
David Vincze505fba22020-10-22 13:53:29 +02003095#ifdef MCUBOOT_DIRECT_XIP_REVERT
Raef Colesfe57e7d2021-10-15 11:07:09 +01003096 rc = boot_select_or_erase(state);
David Vincze505fba22020-10-22 13:53:29 +02003097 if (rc != 0) {
3098 /* The selected image slot has been erased. */
Raef Colesfe57e7d2021-10-15 11:07:09 +01003099 state->slot_usage[BOOT_CURR_IMG(state)].slot_available[active_slot] = false;
3100 state->slot_usage[BOOT_CURR_IMG(state)].active_slot = NO_ACTIVE_SLOT;
David Vincze505fba22020-10-22 13:53:29 +02003101 continue;
3102 }
3103#endif /* MCUBOOT_DIRECT_XIP_REVERT */
David Vincze1c456242021-06-29 15:25:24 +02003104#endif /* MCUBOOT_DIRECT_XIP */
David Vincze505fba22020-10-22 13:53:29 +02003105
Tamas Banfe031092020-09-10 17:32:39 +02003106#ifdef MCUBOOT_RAM_LOAD
3107 /* Image is first loaded to RAM and authenticated there in order to
3108 * prevent TOCTOU attack during image copy. This could be applied
3109 * when loading images from external (untrusted) flash to internal
3110 * (trusted) RAM and image is authenticated before copying.
3111 */
Raef Colesfe57e7d2021-10-15 11:07:09 +01003112 rc = boot_load_image_to_sram(state);
Tamas Banfe031092020-09-10 17:32:39 +02003113 if (rc != 0 ) {
Mark Horvathccaf7f82021-01-04 18:16:42 +01003114 /* Image cannot be ramloaded. */
3115 boot_remove_image_from_flash(state, active_slot);
Raef Colesfe57e7d2021-10-15 11:07:09 +01003116 state->slot_usage[BOOT_CURR_IMG(state)].slot_available[active_slot] = false;
3117 state->slot_usage[BOOT_CURR_IMG(state)].active_slot = NO_ACTIVE_SLOT;
Tamas Banfe031092020-09-10 17:32:39 +02003118 continue;
Tamas Banfe031092020-09-10 17:32:39 +02003119 }
3120#endif /* MCUBOOT_RAM_LOAD */
Mark Horvathccaf7f82021-01-04 18:16:42 +01003121
3122 FIH_CALL(boot_validate_slot, fih_rc, state, active_slot, NULL);
Michael Grand5047f032022-11-24 16:49:56 +01003123 if (FIH_NOT_EQ(fih_rc, FIH_SUCCESS)) {
Mark Horvathccaf7f82021-01-04 18:16:42 +01003124 /* Image is invalid. */
Tamas Banfe031092020-09-10 17:32:39 +02003125#ifdef MCUBOOT_RAM_LOAD
Raef Colesfe57e7d2021-10-15 11:07:09 +01003126 boot_remove_image_from_sram(state);
Tamas Banfe031092020-09-10 17:32:39 +02003127#endif /* MCUBOOT_RAM_LOAD */
Raef Colesfe57e7d2021-10-15 11:07:09 +01003128 state->slot_usage[BOOT_CURR_IMG(state)].slot_available[active_slot] = false;
3129 state->slot_usage[BOOT_CURR_IMG(state)].active_slot = NO_ACTIVE_SLOT;
Mark Horvathccaf7f82021-01-04 18:16:42 +01003130 continue;
David Vincze505fba22020-10-22 13:53:29 +02003131 }
Mark Horvathccaf7f82021-01-04 18:16:42 +01003132
3133 /* Valid image loaded from a slot, go to next image. */
3134 break;
3135 }
3136 }
3137
3138 FIH_RET(FIH_SUCCESS);
3139}
3140
3141/**
3142 * Updates the security counter for the current image.
3143 *
3144 * @param state Boot loader status information.
Mark Horvathccaf7f82021-01-04 18:16:42 +01003145 *
3146 * @return 0 on success; nonzero on failure.
3147 */
3148static int
Raef Colesfe57e7d2021-10-15 11:07:09 +01003149boot_update_hw_rollback_protection(struct boot_loader_state *state)
Mark Horvathccaf7f82021-01-04 18:16:42 +01003150{
3151#ifdef MCUBOOT_HW_ROLLBACK_PROT
3152 int rc;
3153
3154 /* Update the stored security counter with the newer (active) image's
3155 * security counter value.
3156 */
David Vincze1c456242021-06-29 15:25:24 +02003157#if defined(MCUBOOT_DIRECT_XIP) && defined(MCUBOOT_DIRECT_XIP_REVERT)
Mark Horvathccaf7f82021-01-04 18:16:42 +01003158 /* When the 'revert' mechanism is enabled in direct-xip mode, the
3159 * security counter can be increased only after reboot, if the image
3160 * has been confirmed at runtime (the image_ok flag has been set).
3161 * This way a 'revert' can be performed when it's necessary.
3162 */
Raef Colesfe57e7d2021-10-15 11:07:09 +01003163 if (state->slot_usage[BOOT_CURR_IMG(state)].swap_state.image_ok == BOOT_FLAG_SET) {
David Vincze505fba22020-10-22 13:53:29 +02003164#endif
Sherry Zhang50b06ae2021-07-09 15:22:51 +08003165 rc = boot_update_security_counter(BOOT_CURR_IMG(state),
Raef Colesfe57e7d2021-10-15 11:07:09 +01003166 state->slot_usage[BOOT_CURR_IMG(state)].active_slot,
3167 boot_img_hdr(state, state->slot_usage[BOOT_CURR_IMG(state)].active_slot));
David Vinczee574f2d2020-07-10 11:42:03 +02003168 if (rc != 0) {
Antonio de Angelisba5fb1c2022-10-11 10:10:37 +01003169 BOOT_LOG_ERR("Security counter update failed after image %d validation.", BOOT_CURR_IMG(state));
Mark Horvathccaf7f82021-01-04 18:16:42 +01003170 return rc;
David Vinczee574f2d2020-07-10 11:42:03 +02003171 }
David Vincze1c456242021-06-29 15:25:24 +02003172#if defined(MCUBOOT_DIRECT_XIP) && defined(MCUBOOT_DIRECT_XIP_REVERT)
Mark Horvathccaf7f82021-01-04 18:16:42 +01003173 }
3174#endif
David Vinczee574f2d2020-07-10 11:42:03 +02003175
Mark Horvathccaf7f82021-01-04 18:16:42 +01003176 return 0;
David Vinczee574f2d2020-07-10 11:42:03 +02003177
Mark Horvathccaf7f82021-01-04 18:16:42 +01003178#else /* MCUBOOT_HW_ROLLBACK_PROT */
3179 (void) (state);
Mark Horvathccaf7f82021-01-04 18:16:42 +01003180 return 0;
3181#endif
3182}
3183
Michael Grand5047f032022-11-24 16:49:56 +01003184fih_ret
Mark Horvathccaf7f82021-01-04 18:16:42 +01003185context_boot_go(struct boot_loader_state *state, struct boot_rsp *rsp)
3186{
Mark Horvathccaf7f82021-01-04 18:16:42 +01003187 int rc;
Michael Grand5047f032022-11-24 16:49:56 +01003188 FIH_DECLARE(fih_rc, FIH_FAILURE);
Mark Horvathccaf7f82021-01-04 18:16:42 +01003189
Raef Colesfe57e7d2021-10-15 11:07:09 +01003190 rc = boot_get_slot_usage(state);
Mark Horvathccaf7f82021-01-04 18:16:42 +01003191 if (rc != 0) {
David Vinczee574f2d2020-07-10 11:42:03 +02003192 goto out;
3193 }
3194
Mark Horvathccaf7f82021-01-04 18:16:42 +01003195#if (BOOT_IMAGE_NUMBER > 1)
3196 while (true) {
3197#endif
Raef Colesfe57e7d2021-10-15 11:07:09 +01003198 FIH_CALL(boot_load_and_validate_images, fih_rc, state);
Michael Grand5047f032022-11-24 16:49:56 +01003199 if (FIH_NOT_EQ(fih_rc, FIH_SUCCESS)) {
3200 FIH_SET(fih_rc, FIH_FAILURE);
Mark Horvathccaf7f82021-01-04 18:16:42 +01003201 goto out;
3202 }
3203
3204#if (BOOT_IMAGE_NUMBER > 1)
Raef Colesfe57e7d2021-10-15 11:07:09 +01003205 rc = boot_verify_dependencies(state);
Mark Horvathccaf7f82021-01-04 18:16:42 +01003206 if (rc != 0) {
3207 /* Dependency check failed for an image, it has been removed from
3208 * SRAM in case of MCUBOOT_RAM_LOAD strategy, and set to
3209 * unavailable. Try to load an image from another slot.
3210 */
3211 continue;
3212 }
3213 /* Dependency check was successful. */
3214 break;
3215 }
3216#endif
3217
3218 IMAGES_ITER(BOOT_CURR_IMG(state)) {
Raef Colesf11de642021-10-15 11:11:56 +01003219#if BOOT_IMAGE_NUMBER > 1
3220 if (state->img_mask[BOOT_CURR_IMG(state)]) {
3221 continue;
3222 }
3223#endif
Raef Colesfe57e7d2021-10-15 11:07:09 +01003224 rc = boot_update_hw_rollback_protection(state);
Mark Horvathccaf7f82021-01-04 18:16:42 +01003225 if (rc != 0) {
Michael Grand5047f032022-11-24 16:49:56 +01003226 FIH_SET(fih_rc, FIH_FAILURE);
Mark Horvathccaf7f82021-01-04 18:16:42 +01003227 goto out;
3228 }
3229
Jamie McCrae3016d002023-03-14 12:35:51 +00003230 rc = boot_add_shared_data(state, (uint8_t)state->slot_usage[BOOT_CURR_IMG(state)].active_slot);
Mark Horvathccaf7f82021-01-04 18:16:42 +01003231 if (rc != 0) {
Michael Grand5047f032022-11-24 16:49:56 +01003232 FIH_SET(fih_rc, FIH_FAILURE);
Mark Horvathccaf7f82021-01-04 18:16:42 +01003233 goto out;
3234 }
3235 }
3236
3237 /* All image loaded successfully. */
3238#ifdef MCUBOOT_HAVE_LOGGING
Raef Colesfe57e7d2021-10-15 11:07:09 +01003239 print_loaded_images(state);
Mark Horvathccaf7f82021-01-04 18:16:42 +01003240#endif
3241
Raef Colesfe57e7d2021-10-15 11:07:09 +01003242 fill_rsp(state, rsp);
Mark Horvathccaf7f82021-01-04 18:16:42 +01003243
David Vinczee574f2d2020-07-10 11:42:03 +02003244out:
Mark Horvathccaf7f82021-01-04 18:16:42 +01003245 close_all_flash_areas(state);
Raef Colese8fe6cf2020-05-26 13:07:40 +01003246
Michael Grand5047f032022-11-24 16:49:56 +01003247 if (rc != 0) {
3248 FIH_SET(fih_rc, FIH_FAILURE);
Mark Horvathccaf7f82021-01-04 18:16:42 +01003249 }
Raef Colese8fe6cf2020-05-26 13:07:40 +01003250
Mark Horvathccaf7f82021-01-04 18:16:42 +01003251 FIH_RET(fih_rc);
David Vinczee574f2d2020-07-10 11:42:03 +02003252}
Tamas Banfe031092020-09-10 17:32:39 +02003253#endif /* MCUBOOT_DIRECT_XIP || MCUBOOT_RAM_LOAD */
David Vinczee574f2d2020-07-10 11:42:03 +02003254
3255/**
Raef Colese8fe6cf2020-05-26 13:07:40 +01003256 * Prepares the booting process. This function moves images around in flash as
David Vinczee574f2d2020-07-10 11:42:03 +02003257 * appropriate, and tells you what address to boot from.
3258 *
3259 * @param rsp On success, indicates how booting should occur.
3260 *
Raef Colese8fe6cf2020-05-26 13:07:40 +01003261 * @return FIH_SUCCESS on success; nonzero on failure.
David Vinczee574f2d2020-07-10 11:42:03 +02003262 */
Michael Grand5047f032022-11-24 16:49:56 +01003263fih_ret
David Vinczee574f2d2020-07-10 11:42:03 +02003264boot_go(struct boot_rsp *rsp)
3265{
Michael Grand5047f032022-11-24 16:49:56 +01003266 FIH_DECLARE(fih_rc, FIH_FAILURE);
Raef Colesf11de642021-10-15 11:11:56 +01003267
3268 boot_state_clear(NULL);
3269
Raef Colese8fe6cf2020-05-26 13:07:40 +01003270 FIH_CALL(context_boot_go, fih_rc, &boot_data, rsp);
3271 FIH_RET(fih_rc);
David Vinczee574f2d2020-07-10 11:42:03 +02003272}
Raef Colesf11de642021-10-15 11:11:56 +01003273
3274/**
3275 * Prepares the booting process, considering only a single image. This function
3276 * moves images around in flash as appropriate, and tells you what address to
3277 * boot from.
3278 *
3279 * @param rsp On success, indicates how booting should occur.
3280 *
3281 * @param image_id The image ID to prepare the boot process for.
3282 *
3283 * @return FIH_SUCCESS on success; nonzero on failure.
3284 */
Michael Grand5047f032022-11-24 16:49:56 +01003285fih_ret
Raef Colesf11de642021-10-15 11:11:56 +01003286boot_go_for_image_id(struct boot_rsp *rsp, uint32_t image_id)
3287{
Michael Grand5047f032022-11-24 16:49:56 +01003288 FIH_DECLARE(fih_rc, FIH_FAILURE);
Raef Colesf11de642021-10-15 11:11:56 +01003289
3290 if (image_id >= BOOT_IMAGE_NUMBER) {
3291 FIH_RET(FIH_FAILURE);
3292 }
3293
3294#if BOOT_IMAGE_NUMBER > 1
3295 memset(&boot_data.img_mask, 1, BOOT_IMAGE_NUMBER);
3296 boot_data.img_mask[image_id] = 0;
3297#endif
3298
3299 FIH_CALL(context_boot_go, fih_rc, &boot_data, rsp);
3300 FIH_RET(fih_rc);
3301}
3302
3303/**
3304 * Clears the boot state, so that previous operations have no effect on new
3305 * ones.
3306 *
3307 * @param state The state that should be cleared. If the value
3308 * is NULL, the default bootloader state will be
3309 * cleared.
3310 */
3311void boot_state_clear(struct boot_loader_state *state)
3312{
3313 if (state != NULL) {
3314 memset(state, 0, sizeof(struct boot_loader_state));
3315 } else {
3316 memset(&boot_data, 0, sizeof(struct boot_loader_state));
3317 }
3318}