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Tamas Banf70ef8c2017-12-19 15:35:09 +00001/*
2 * Licensed to the Apache Software Foundation (ASF) under one
3 * or more contributor license agreements. See the NOTICE file
4 * distributed with this work for additional information
5 * regarding copyright ownership. The ASF licenses this file
6 * to you under the Apache License, Version 2.0 (the
7 * "License"); you may not use this file except in compliance
8 * with the License. You may obtain a copy of the License at
9 *
10 * http://www.apache.org/licenses/LICENSE-2.0
11 *
12 * Unless required by applicable law or agreed to in writing,
13 * software distributed under the License is distributed on an
14 * "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
15 * KIND, either express or implied. See the License for the
16 * specific language governing permissions and limitations
17 * under the License.
18 */
19
Tamas Ban581034a2017-12-19 19:54:37 +000020/*
Tamas Ban4fb8e9d2018-02-23 14:22:03 +000021 * Original code taken from mcuboot project at:
David Vincze39e78552018-10-10 17:10:01 +020022 * https://github.com/JuulLabs-OSS/mcuboot
David Vincze2ddc1372019-10-25 11:10:08 +020023 * Git SHA of the original version: ac55554059147fff718015be9f4bd3108123f50a
Tamas Ban5b647472019-01-05 08:59:30 +000024 * Modifications are Copyright (c) 2018-2019 Arm Limited.
Tamas Ban581034a2017-12-19 19:54:37 +000025 */
26
Tamas Banf70ef8c2017-12-19 15:35:09 +000027/**
28 * This file provides an interface to the boot loader. Functions defined in
29 * this file should only be called while the boot loader is running.
30 */
31
32#include <assert.h>
33#include <stddef.h>
34#include <stdbool.h>
35#include <inttypes.h>
36#include <stdlib.h>
37#include <string.h>
Tamas Banc3828852018-02-01 12:24:16 +000038#include "flash_map/flash_map.h"
Tamas Banf70ef8c2017-12-19 15:35:09 +000039#include "bootutil/bootutil.h"
40#include "bootutil/image.h"
41#include "bootutil_priv.h"
David Vincze73dfbc52019-10-11 13:54:58 +020042#include "bootutil/bootutil_log.h"
Tamas Bana9de4a62018-09-18 08:09:45 +010043#include "bl2/include/tfm_boot_status.h"
44#include "bl2/include/boot_record.h"
David Vincze060968d2019-05-23 01:13:14 +020045#include "security_cnt.h"
Tamas Banf70ef8c2017-12-19 15:35:09 +000046
Tamas Banf70ef8c2017-12-19 15:35:09 +000047static struct boot_loader_state boot_data;
David Vinczecea8b592019-10-29 16:09:51 +010048
49#if (BOOT_IMAGE_NUMBER > 1)
50#define IMAGES_ITER(x) for ((x) = 0; (x) < BOOT_IMAGE_NUMBER; ++(x))
51#else
52#define IMAGES_ITER(x)
53#endif
Tamas Banf70ef8c2017-12-19 15:35:09 +000054
Oliver Swedef9982442018-08-24 18:37:44 +010055#if !defined(MCUBOOT_NO_SWAP) && !defined(MCUBOOT_RAM_LOADING)
David Vincze39e78552018-10-10 17:10:01 +020056
David Vincze8bdfc2d2019-03-18 15:49:23 +010057#if defined(MCUBOOT_VALIDATE_PRIMARY_SLOT) && !defined(MCUBOOT_OVERWRITE_ONLY)
David Vincze39e78552018-10-10 17:10:01 +020058static int boot_status_fails = 0;
59#define BOOT_STATUS_ASSERT(x) \
60 do { \
61 if (!(x)) { \
62 boot_status_fails++; \
63 } \
64 } while (0)
65#else
David Vincze401c7422019-06-21 20:44:05 +020066#define BOOT_STATUS_ASSERT(x) ASSERT(x)
David Vincze39e78552018-10-10 17:10:01 +020067#endif
68
Tamas Banf70ef8c2017-12-19 15:35:09 +000069struct boot_status_table {
David Vincze8bdfc2d2019-03-18 15:49:23 +010070 uint8_t bst_magic_primary_slot;
Tamas Banf70ef8c2017-12-19 15:35:09 +000071 uint8_t bst_magic_scratch;
David Vincze8bdfc2d2019-03-18 15:49:23 +010072 uint8_t bst_copy_done_primary_slot;
Tamas Banf70ef8c2017-12-19 15:35:09 +000073 uint8_t bst_status_source;
74};
75
76/**
77 * This set of tables maps swap state contents to boot status location.
78 * When searching for a match, these tables must be iterated in order.
79 */
80static const struct boot_status_table boot_status_tables[] = {
81 {
David Vincze8bdfc2d2019-03-18 15:49:23 +010082 /* | primary slot | scratch |
83 * ----------+--------------+--------------|
84 * magic | Good | Any |
85 * copy-done | Set | N/A |
86 * ----------+--------------+--------------'
87 * source: none |
88 * ----------------------------------------'
Tamas Banf70ef8c2017-12-19 15:35:09 +000089 */
David Vincze8bdfc2d2019-03-18 15:49:23 +010090 .bst_magic_primary_slot = BOOT_MAGIC_GOOD,
David Vincze401c7422019-06-21 20:44:05 +020091 .bst_magic_scratch = BOOT_MAGIC_NOTGOOD,
David Vincze8bdfc2d2019-03-18 15:49:23 +010092 .bst_copy_done_primary_slot = BOOT_FLAG_SET,
93 .bst_status_source = BOOT_STATUS_SOURCE_NONE,
Tamas Banf70ef8c2017-12-19 15:35:09 +000094 },
95
96 {
David Vincze8bdfc2d2019-03-18 15:49:23 +010097 /* | primary slot | scratch |
98 * ----------+--------------+--------------|
99 * magic | Good | Any |
100 * copy-done | Unset | N/A |
101 * ----------+--------------+--------------'
102 * source: primary slot |
103 * ----------------------------------------'
Tamas Banf70ef8c2017-12-19 15:35:09 +0000104 */
David Vincze8bdfc2d2019-03-18 15:49:23 +0100105 .bst_magic_primary_slot = BOOT_MAGIC_GOOD,
David Vincze401c7422019-06-21 20:44:05 +0200106 .bst_magic_scratch = BOOT_MAGIC_NOTGOOD,
David Vincze8bdfc2d2019-03-18 15:49:23 +0100107 .bst_copy_done_primary_slot = BOOT_FLAG_UNSET,
108 .bst_status_source = BOOT_STATUS_SOURCE_PRIMARY_SLOT,
Tamas Banf70ef8c2017-12-19 15:35:09 +0000109 },
110
111 {
David Vincze8bdfc2d2019-03-18 15:49:23 +0100112 /* | primary slot | scratch |
113 * ----------+--------------+--------------|
114 * magic | Any | Good |
115 * copy-done | Any | N/A |
116 * ----------+--------------+--------------'
117 * source: scratch |
118 * ----------------------------------------'
Tamas Banf70ef8c2017-12-19 15:35:09 +0000119 */
David Vincze8bdfc2d2019-03-18 15:49:23 +0100120 .bst_magic_primary_slot = BOOT_MAGIC_ANY,
121 .bst_magic_scratch = BOOT_MAGIC_GOOD,
122 .bst_copy_done_primary_slot = BOOT_FLAG_ANY,
123 .bst_status_source = BOOT_STATUS_SOURCE_SCRATCH,
Tamas Banf70ef8c2017-12-19 15:35:09 +0000124 },
125
126 {
David Vincze8bdfc2d2019-03-18 15:49:23 +0100127 /* | primary slot | scratch |
128 * ----------+--------------+--------------|
129 * magic | Unset | Any |
130 * copy-done | Unset | N/A |
131 * ----------+--------------+--------------|
132 * source: varies |
133 * ----------------------------------------+--------------------------+
Tamas Banf70ef8c2017-12-19 15:35:09 +0000134 * This represents one of two cases: |
135 * o No swaps ever (no status to read, so no harm in checking). |
David Vincze8bdfc2d2019-03-18 15:49:23 +0100136 * o Mid-revert; status in the primary slot. |
Tamas Banf70ef8c2017-12-19 15:35:09 +0000137 * -------------------------------------------------------------------'
138 */
David Vincze8bdfc2d2019-03-18 15:49:23 +0100139 .bst_magic_primary_slot = BOOT_MAGIC_UNSET,
140 .bst_magic_scratch = BOOT_MAGIC_ANY,
141 .bst_copy_done_primary_slot = BOOT_FLAG_UNSET,
142 .bst_status_source = BOOT_STATUS_SOURCE_PRIMARY_SLOT,
Tamas Banf70ef8c2017-12-19 15:35:09 +0000143 },
144};
145
146#define BOOT_STATUS_TABLES_COUNT \
Tamas Ban581034a2017-12-19 19:54:37 +0000147 (sizeof(boot_status_tables) / sizeof(boot_status_tables[0]))
Tamas Banf70ef8c2017-12-19 15:35:09 +0000148
149#define BOOT_LOG_SWAP_STATE(area, state) \
David Vincze401c7422019-06-21 20:44:05 +0200150 BOOT_LOG_INF("%s: magic=%5s, swap_type=0x%x, copy_done=0x%x, " \
151 "image_ok=0x%x", \
Tamas Banf70ef8c2017-12-19 15:35:09 +0000152 (area), \
153 ((state)->magic == BOOT_MAGIC_GOOD ? "good" : \
154 (state)->magic == BOOT_MAGIC_UNSET ? "unset" : \
155 "bad"), \
David Vincze401c7422019-06-21 20:44:05 +0200156 (state)->swap_type, \
Tamas Banf70ef8c2017-12-19 15:35:09 +0000157 (state)->copy_done, \
158 (state)->image_ok)
Oliver Swedef9982442018-08-24 18:37:44 +0100159#endif /* !MCUBOOT_NO_SWAP && !MCUBOOT_RAM_LOADING */
Tamas Banf70ef8c2017-12-19 15:35:09 +0000160
Tamas Ban056ed0b2019-09-16 12:48:32 +0100161/*
162 * \brief Verifies the image header: magic value, flags, integer overflow.
163 *
164 * \retval 0
165 * \retval BOOT_EBADIMAGE
166 */
167static int
168boot_verify_image_header(struct image_header *hdr)
169{
170 uint32_t image_end;
David Vincze0dc41d22019-10-28 14:56:29 +0100171 uint32_t x;
Tamas Ban056ed0b2019-09-16 12:48:32 +0100172
173 if (hdr->ih_magic != IMAGE_MAGIC) {
174 return BOOT_EBADIMAGE;
175 }
176
177 /* Check input parameters against integer overflow */
David Vincze0dc41d22019-10-28 14:56:29 +0100178 if (!boot_u32_safe_add(&image_end, hdr->ih_hdr_size, hdr->ih_img_size)) {
Tamas Ban056ed0b2019-09-16 12:48:32 +0100179 return BOOT_EBADIMAGE;
180 }
181
David Vincze0dc41d22019-10-28 14:56:29 +0100182 if (!boot_u32_safe_add(&x, image_end, hdr->ih_protect_tlv_size)) {
Tamas Ban056ed0b2019-09-16 12:48:32 +0100183 return BOOT_EBADIMAGE;
184 }
185
Tamas Ban056ed0b2019-09-16 12:48:32 +0100186#if MCUBOOT_RAM_LOADING
187 if (!(hdr->ih_flags & IMAGE_F_RAM_LOAD)) {
188 return BOOT_EBADIMAGE;
189 }
190
191 /* Check input parameters against integer overflow */
David Vincze0dc41d22019-10-28 14:56:29 +0100192 if (!boot_u32_safe_add(&x, image_end, hdr->ih_load_addr)) {
Tamas Ban056ed0b2019-09-16 12:48:32 +0100193 return BOOT_EBADIMAGE;
194 }
195#endif
196
197 return 0;
198}
Tamas Ban4fb8e9d2018-02-23 14:22:03 +0000199
200static int
David Vinczecea8b592019-10-29 16:09:51 +0100201boot_read_image_header(struct boot_loader_state *state, int slot,
202 struct image_header *out_hdr)
Tamas Ban4fb8e9d2018-02-23 14:22:03 +0000203{
204 const struct flash_area *fap = NULL;
205 int area_id;
206 int rc;
207
David Vinczecea8b592019-10-29 16:09:51 +0100208#if (BOOT_IMAGE_NUMBER == 1)
209 (void)state;
210#endif
211
212 area_id = flash_area_id_from_multi_image_slot(BOOT_CURR_IMG(state), slot);
Tamas Ban4fb8e9d2018-02-23 14:22:03 +0000213 rc = flash_area_open(area_id, &fap);
214 if (rc != 0) {
215 rc = BOOT_EFLASH;
216 goto done;
217 }
218
219 rc = flash_area_read(fap, 0, out_hdr, sizeof(*out_hdr));
220 if (rc != 0) {
221 rc = BOOT_EFLASH;
222 goto done;
223 }
224
Tamas Ban056ed0b2019-09-16 12:48:32 +0100225 rc = boot_verify_image_header(out_hdr);
David Vinczecea8b592019-10-29 16:09:51 +0100226 BOOT_IMG_HDR_IS_VALID(state, slot) = (rc == 0);
Tamas Ban4fb8e9d2018-02-23 14:22:03 +0000227
228done:
229 flash_area_close(fap);
230 return rc;
231}
232
233static int
David Vinczecea8b592019-10-29 16:09:51 +0100234boot_read_image_headers(struct boot_loader_state *state, bool require_all)
Tamas Ban4fb8e9d2018-02-23 14:22:03 +0000235{
236 int rc;
237 int i;
238
239 for (i = 0; i < BOOT_NUM_SLOTS; i++) {
David Vinczecea8b592019-10-29 16:09:51 +0100240 rc = boot_read_image_header(state, i, boot_img_hdr(state, i));
Tamas Ban4fb8e9d2018-02-23 14:22:03 +0000241 if (rc != 0) {
David Vincze39e78552018-10-10 17:10:01 +0200242 /* If `require_all` is set, fail on any single fail, otherwise
243 * if at least the first slot's header was read successfully,
244 * then the boot loader can attempt a boot.
245 *
246 * Failure to read any headers is a fatal error.
Tamas Ban4fb8e9d2018-02-23 14:22:03 +0000247 */
David Vincze39e78552018-10-10 17:10:01 +0200248 if (i > 0 && !require_all) {
Tamas Ban4fb8e9d2018-02-23 14:22:03 +0000249 return 0;
250 } else {
251 return rc;
252 }
253 }
254 }
255
256 return 0;
257}
258
Raef Coles204c5b42019-09-05 09:18:47 +0100259static uint32_t
David Vinczecea8b592019-10-29 16:09:51 +0100260boot_write_sz(struct boot_loader_state *state)
Tamas Ban4fb8e9d2018-02-23 14:22:03 +0000261{
Raef Coles204c5b42019-09-05 09:18:47 +0100262 uint32_t elem_sz;
263 uint32_t align;
Tamas Ban4fb8e9d2018-02-23 14:22:03 +0000264
265 /* Figure out what size to write update status update as. The size depends
266 * on what the minimum write size is for scratch area, active image slot.
267 * We need to use the bigger of those 2 values.
268 */
David Vinczecea8b592019-10-29 16:09:51 +0100269 elem_sz = flash_area_align(BOOT_IMG_AREA(state, BOOT_PRIMARY_SLOT));
270 align = flash_area_align(BOOT_SCRATCH_AREA(state));
Tamas Ban4fb8e9d2018-02-23 14:22:03 +0000271 if (align > elem_sz) {
272 elem_sz = align;
273 }
274
275 return elem_sz;
276}
277
David Vinczecea8b592019-10-29 16:09:51 +0100278#ifndef MCUBOOT_USE_FLASH_AREA_GET_SECTORS
279static int
280boot_initialize_area(struct boot_loader_state *state, int flash_area)
281{
282 int num_sectors = BOOT_MAX_IMG_SECTORS;
283 int rc;
284
285 if (flash_area == FLASH_AREA_IMAGE_PRIMARY(BOOT_CURR_IMG(state))) {
286 rc = flash_area_to_sectors(flash_area, &num_sectors,
287 BOOT_IMG(state, BOOT_PRIMARY_SLOT).sectors);
288 BOOT_IMG(state, BOOT_PRIMARY_SLOT).num_sectors = (size_t)num_sectors;
289
290 } else if (flash_area == FLASH_AREA_IMAGE_SECONDARY(BOOT_CURR_IMG(state))) {
291 rc = flash_area_to_sectors(flash_area, &num_sectors,
292 BOOT_IMG(state, BOOT_SECONDARY_SLOT).sectors);
293 BOOT_IMG(state, BOOT_SECONDARY_SLOT).num_sectors = (size_t)num_sectors;
294
295 } else if (flash_area == FLASH_AREA_IMAGE_SCRATCH) {
296 rc = flash_area_to_sectors(flash_area, &num_sectors,
297 state->scratch.sectors);
298 state->scratch.num_sectors = (size_t)num_sectors;
299 } else {
300 return BOOT_EFLASH;
301 }
302
303 return rc;
304}
305#else /* defined(MCUBOOT_USE_FLASH_AREA_GET_SECTORS) */
306static int
307boot_initialize_area(struct boot_loader_state *state, int flash_area)
308{
309 uint32_t num_sectors;
310 struct flash_sector *out_sectors;
311 size_t *out_num_sectors;
312 int rc;
313
314 num_sectors = BOOT_MAX_IMG_SECTORS;
315
316 if (flash_area == FLASH_AREA_IMAGE_PRIMARY(BOOT_CURR_IMG(state))) {
317 out_sectors = BOOT_IMG(state, BOOT_PRIMARY_SLOT).sectors;
318 out_num_sectors = &BOOT_IMG(state, BOOT_PRIMARY_SLOT).num_sectors;
319 } else if (flash_area == FLASH_AREA_IMAGE_SECONDARY(BOOT_CURR_IMG(state))) {
320 out_sectors = BOOT_IMG(state, BOOT_SECONDARY_SLOT).sectors;
321 out_num_sectors = &BOOT_IMG(state, BOOT_SECONDARY_SLOT).num_sectors;
322 } else if (flash_area == FLASH_AREA_IMAGE_SCRATCH) {
323 out_sectors = state->scratch.sectors;
324 out_num_sectors = &state->scratch.num_sectors;
325 } else {
326 return BOOT_EFLASH;
327 }
328
329 rc = flash_area_get_sectors(flash_area, &num_sectors, out_sectors);
330 if (rc != 0) {
331 return rc;
332 }
333 *out_num_sectors = num_sectors;
334 return 0;
335}
336#endif /* !defined(MCUBOOT_USE_FLASH_AREA_GET_SECTORS) */
337
Tamas Ban4fb8e9d2018-02-23 14:22:03 +0000338/**
339 * Determines the sector layout of both image slots and the scratch area.
340 * This information is necessary for calculating the number of bytes to erase
341 * and copy during an image swap. The information collected during this
David Vinczecea8b592019-10-29 16:09:51 +0100342 * function is used to populate the state.
Tamas Ban4fb8e9d2018-02-23 14:22:03 +0000343 */
344static int
David Vinczecea8b592019-10-29 16:09:51 +0100345boot_read_sectors(struct boot_loader_state *state)
Tamas Ban4fb8e9d2018-02-23 14:22:03 +0000346{
David Vinczecea8b592019-10-29 16:09:51 +0100347 uint8_t image_index;
Tamas Ban4fb8e9d2018-02-23 14:22:03 +0000348 int rc;
349
David Vinczecea8b592019-10-29 16:09:51 +0100350 image_index = BOOT_CURR_IMG(state);
351
352 rc = boot_initialize_area(state, FLASH_AREA_IMAGE_PRIMARY(image_index));
Tamas Ban4fb8e9d2018-02-23 14:22:03 +0000353 if (rc != 0) {
354 return BOOT_EFLASH;
355 }
356
David Vinczecea8b592019-10-29 16:09:51 +0100357 rc = boot_initialize_area(state, FLASH_AREA_IMAGE_SECONDARY(image_index));
Tamas Ban4fb8e9d2018-02-23 14:22:03 +0000358 if (rc != 0) {
359 return BOOT_EFLASH;
360 }
361
David Vinczecea8b592019-10-29 16:09:51 +0100362 rc = boot_initialize_area(state, FLASH_AREA_IMAGE_SCRATCH);
David Vincze401c7422019-06-21 20:44:05 +0200363 if (rc != 0) {
364 return BOOT_EFLASH;
365 }
366
David Vinczecea8b592019-10-29 16:09:51 +0100367 BOOT_WRITE_SZ(state) = boot_write_sz(state);
Tamas Ban4fb8e9d2018-02-23 14:22:03 +0000368
369 return 0;
370}
371
David Vincze060968d2019-05-23 01:13:14 +0200372/**
373 * Validate image hash/signature and security counter in a slot.
Tamas Ban4fb8e9d2018-02-23 14:22:03 +0000374 */
375static int
David Vinczecea8b592019-10-29 16:09:51 +0100376boot_image_check(struct boot_loader_state *state, struct image_header *hdr,
377 const struct flash_area *fap, struct boot_status *bs)
Tamas Ban4fb8e9d2018-02-23 14:22:03 +0000378{
379 static uint8_t tmpbuf[BOOT_TMPBUF_SZ];
David Vinczecea8b592019-10-29 16:09:51 +0100380 uint8_t image_index;
381
382#if (BOOT_IMAGE_NUMBER == 1)
383 (void)state;
384#endif
Tamas Ban4fb8e9d2018-02-23 14:22:03 +0000385
David Vincze401c7422019-06-21 20:44:05 +0200386 (void)bs;
387
David Vinczecea8b592019-10-29 16:09:51 +0100388 image_index = BOOT_CURR_IMG(state);
389
390 if (bootutil_img_validate(image_index, hdr, fap, tmpbuf,
391 BOOT_TMPBUF_SZ, NULL, 0, NULL)) {
Tamas Ban4fb8e9d2018-02-23 14:22:03 +0000392 return BOOT_EBADIMAGE;
393 }
David Vinczecea8b592019-10-29 16:09:51 +0100394
Tamas Ban4fb8e9d2018-02-23 14:22:03 +0000395 return 0;
396}
397
David Vincze401c7422019-06-21 20:44:05 +0200398/*
399 * Check that a memory area consists of a given value.
400 */
401static inline bool
402boot_data_is_set_to(uint8_t val, void *data, size_t len)
David Vincze39e78552018-10-10 17:10:01 +0200403{
404 uint8_t i;
David Vincze401c7422019-06-21 20:44:05 +0200405 uint8_t *p = (uint8_t *)data;
406 for (i = 0; i < len; i++) {
407 if (val != p[i]) {
408 return false;
David Vincze39e78552018-10-10 17:10:01 +0200409 }
410 }
David Vincze401c7422019-06-21 20:44:05 +0200411 return true;
David Vincze39e78552018-10-10 17:10:01 +0200412}
413
Tamas Ban4fb8e9d2018-02-23 14:22:03 +0000414static int
David Vinczecea8b592019-10-29 16:09:51 +0100415boot_check_header_erased(struct boot_loader_state *state, int slot)
David Vincze401c7422019-06-21 20:44:05 +0200416{
417 const struct flash_area *fap;
418 struct image_header *hdr;
419 uint8_t erased_val;
David Vinczecea8b592019-10-29 16:09:51 +0100420 int area_id;
David Vincze401c7422019-06-21 20:44:05 +0200421 int rc;
422
David Vinczecea8b592019-10-29 16:09:51 +0100423 area_id = flash_area_id_from_multi_image_slot(BOOT_CURR_IMG(state), slot);
424 rc = flash_area_open(area_id, &fap);
David Vincze401c7422019-06-21 20:44:05 +0200425 if (rc != 0) {
426 return -1;
427 }
428
429 erased_val = flash_area_erased_val(fap);
430 flash_area_close(fap);
431
David Vinczecea8b592019-10-29 16:09:51 +0100432 hdr = boot_img_hdr(state, slot);
David Vincze401c7422019-06-21 20:44:05 +0200433 if (!boot_data_is_set_to(erased_val, &hdr->ih_magic,
434 sizeof(hdr->ih_magic))) {
435 return -1;
436 }
437
438 return 0;
439}
440
David Vinczecea8b592019-10-29 16:09:51 +0100441/*
442 * Check that there is a valid image in a slot
443 *
444 * @returns
445 * 0 if image was succesfully validated
446 * 1 if no bootloable image was found
447 * -1 on any errors
448 */
David Vincze401c7422019-06-21 20:44:05 +0200449static int
David Vinczecea8b592019-10-29 16:09:51 +0100450boot_validate_slot(struct boot_loader_state *state, int slot,
451 struct boot_status *bs)
Tamas Ban4fb8e9d2018-02-23 14:22:03 +0000452{
453 const struct flash_area *fap;
454 struct image_header *hdr;
David Vinczecea8b592019-10-29 16:09:51 +0100455 int area_id;
Tamas Ban4fb8e9d2018-02-23 14:22:03 +0000456 int rc;
457
David Vinczecea8b592019-10-29 16:09:51 +0100458 area_id = flash_area_id_from_multi_image_slot(BOOT_CURR_IMG(state), slot);
459 rc = flash_area_open(area_id, &fap);
Tamas Ban4fb8e9d2018-02-23 14:22:03 +0000460 if (rc != 0) {
David Vinczecea8b592019-10-29 16:09:51 +0100461 return -1;
Tamas Ban4fb8e9d2018-02-23 14:22:03 +0000462 }
463
David Vinczecea8b592019-10-29 16:09:51 +0100464 hdr = boot_img_hdr(state, slot);
465 if ((boot_check_header_erased(state, slot) == 0) ||
David Vincze401c7422019-06-21 20:44:05 +0200466 (hdr->ih_flags & IMAGE_F_NON_BOOTABLE)) {
David Vincze8bdfc2d2019-03-18 15:49:23 +0100467 /* No bootable image in slot; continue booting from the primary slot. */
David Vinczecea8b592019-10-29 16:09:51 +0100468 rc = 1;
David Vincze401c7422019-06-21 20:44:05 +0200469 goto out;
David Vincze39e78552018-10-10 17:10:01 +0200470 }
471
David Vinczecea8b592019-10-29 16:09:51 +0100472 if ((!BOOT_IMG_HDR_IS_VALID(state, slot)) ||
473 (boot_image_check(state, hdr, fap, bs) != 0)) {
David Vincze401c7422019-06-21 20:44:05 +0200474 if (slot != BOOT_PRIMARY_SLOT) {
David Vinczecea8b592019-10-29 16:09:51 +0100475 flash_area_erase(fap, 0, fap->fa_size);
David Vincze8bdfc2d2019-03-18 15:49:23 +0100476 /* Image in the secondary slot is invalid. Erase the image and
477 * continue booting from the primary slot.
Tamas Ban4fb8e9d2018-02-23 14:22:03 +0000478 */
479 }
David Vinczecea8b592019-10-29 16:09:51 +0100480 BOOT_LOG_ERR("Image in the %s slot is not valid!",
481 (slot == BOOT_PRIMARY_SLOT) ? "primary" : "secondary");
David Vincze401c7422019-06-21 20:44:05 +0200482 rc = -1;
483 goto out;
Tamas Ban4fb8e9d2018-02-23 14:22:03 +0000484 }
485
David Vincze8bdfc2d2019-03-18 15:49:23 +0100486 /* Image in the secondary slot is valid. */
David Vincze401c7422019-06-21 20:44:05 +0200487 rc = 0;
488
489out:
490 flash_area_close(fap);
491 return rc;
Tamas Ban4fb8e9d2018-02-23 14:22:03 +0000492}
493
David Vincze060968d2019-05-23 01:13:14 +0200494/**
495 * Updates the stored security counter value with the image's security counter
496 * value which resides in the given slot if it's greater than the stored value.
497 *
David Vinczecea8b592019-10-29 16:09:51 +0100498 * @param image_index Index of the image to determine which security
499 * counter to update.
500 * @param slot Slot number of the image.
501 * @param hdr Pointer to the image header structure of the image
502 * that is currently stored in the given slot.
David Vincze060968d2019-05-23 01:13:14 +0200503 *
David Vinczecea8b592019-10-29 16:09:51 +0100504 * @return 0 on success; nonzero on failure.
David Vincze060968d2019-05-23 01:13:14 +0200505 */
506static int
David Vinczecea8b592019-10-29 16:09:51 +0100507boot_update_security_counter(uint8_t image_index, int slot,
508 struct image_header *hdr)
David Vincze060968d2019-05-23 01:13:14 +0200509{
510 const struct flash_area *fap = NULL;
511 uint32_t img_security_cnt;
512 int rc;
513
David Vinczecea8b592019-10-29 16:09:51 +0100514 rc = flash_area_open(flash_area_id_from_multi_image_slot(image_index, slot),
515 &fap);
David Vincze060968d2019-05-23 01:13:14 +0200516 if (rc != 0) {
517 rc = BOOT_EFLASH;
518 goto done;
519 }
520
521 rc = bootutil_get_img_security_cnt(hdr, fap, &img_security_cnt);
522 if (rc != 0) {
523 goto done;
524 }
525
David Vinczecea8b592019-10-29 16:09:51 +0100526 rc = boot_nv_security_counter_update(image_index, img_security_cnt);
David Vincze060968d2019-05-23 01:13:14 +0200527 if (rc != 0) {
528 goto done;
529 }
530
531done:
532 flash_area_close(fap);
533 return rc;
534}
535
Oliver Swedef9982442018-08-24 18:37:44 +0100536#if !defined(MCUBOOT_NO_SWAP) && !defined(MCUBOOT_OVERWRITE_ONLY)
537/*
538 * Compute the total size of the given image. Includes the size of
539 * the TLVs.
540 */
541static int
David Vinczecea8b592019-10-29 16:09:51 +0100542boot_read_image_size(struct boot_loader_state *state, int slot, uint32_t *size)
Oliver Swedef9982442018-08-24 18:37:44 +0100543{
544 const struct flash_area *fap = NULL;
David Vincze07706a42019-12-12 18:20:12 +0100545 struct image_tlv_info info;
David Vinczecea8b592019-10-29 16:09:51 +0100546 uint32_t off;
David Vincze61bd1e52019-10-24 16:47:31 +0200547 uint32_t protect_tlv_size;
Oliver Swedef9982442018-08-24 18:37:44 +0100548 int area_id;
549 int rc;
550
David Vinczecea8b592019-10-29 16:09:51 +0100551#if (BOOT_IMAGE_NUMBER == 1)
552 (void)state;
553#endif
554
555 area_id = flash_area_id_from_multi_image_slot(BOOT_CURR_IMG(state), slot);
Oliver Swedef9982442018-08-24 18:37:44 +0100556 rc = flash_area_open(area_id, &fap);
557 if (rc != 0) {
558 rc = BOOT_EFLASH;
559 goto done;
560 }
561
David Vincze07706a42019-12-12 18:20:12 +0100562 off = BOOT_TLV_OFF(boot_img_hdr(state, slot));
563
564 if (flash_area_read(fap, off, &info, sizeof(info))) {
565 rc = BOOT_EFLASH;
Oliver Swedef9982442018-08-24 18:37:44 +0100566 goto done;
567 }
David Vincze07706a42019-12-12 18:20:12 +0100568
David Vincze61bd1e52019-10-24 16:47:31 +0200569 protect_tlv_size = boot_img_hdr(state, slot)->ih_protect_tlv_size;
570 if (info.it_magic == IMAGE_TLV_PROT_INFO_MAGIC) {
571 if (protect_tlv_size != info.it_tlv_tot) {
572 rc = BOOT_EBADIMAGE;
573 goto done;
574 }
575
576 if (flash_area_read(fap, off + info.it_tlv_tot, &info, sizeof(info))) {
577 rc = BOOT_EFLASH;
578 goto done;
579 }
580 } else if (protect_tlv_size != 0) {
581 rc = BOOT_EBADIMAGE;
582 goto done;
583 }
584
David Vincze07706a42019-12-12 18:20:12 +0100585 if (info.it_magic != IMAGE_TLV_INFO_MAGIC) {
586 rc = BOOT_EBADIMAGE;
587 goto done;
588 }
589
David Vincze61bd1e52019-10-24 16:47:31 +0200590 *size = off + protect_tlv_size + info.it_tlv_tot;
Oliver Swedef9982442018-08-24 18:37:44 +0100591 rc = 0;
592
593done:
594 flash_area_close(fap);
595 return rc;
596}
597#endif /* !MCUBOOT_NO_SWAP && !MCUBOOT_OVERWRITE_ONLY */
598
599#if !defined(MCUBOOT_NO_SWAP) && !defined(MCUBOOT_RAM_LOADING)
Tamas Banf70ef8c2017-12-19 15:35:09 +0000600/**
Tamas Ban581034a2017-12-19 19:54:37 +0000601 * Determines where in flash the most recent boot status is stored. The boot
Tamas Banf70ef8c2017-12-19 15:35:09 +0000602 * status is necessary for completing a swap that was interrupted by a boot
603 * loader reset.
604 *
David Vincze401c7422019-06-21 20:44:05 +0200605 * @return A BOOT_STATUS_SOURCE_[...] code indicating where status should
606 * be read from.
Tamas Banf70ef8c2017-12-19 15:35:09 +0000607 */
608static int
David Vinczecea8b592019-10-29 16:09:51 +0100609boot_status_source(struct boot_loader_state *state)
Tamas Banf70ef8c2017-12-19 15:35:09 +0000610{
611 const struct boot_status_table *table;
612 struct boot_swap_state state_scratch;
David Vincze8bdfc2d2019-03-18 15:49:23 +0100613 struct boot_swap_state state_primary_slot;
Tamas Banf70ef8c2017-12-19 15:35:09 +0000614 int rc;
David Vincze39e78552018-10-10 17:10:01 +0200615 size_t i;
Tamas Banf70ef8c2017-12-19 15:35:09 +0000616 uint8_t source;
David Vinczecea8b592019-10-29 16:09:51 +0100617 uint8_t image_index;
Tamas Banf70ef8c2017-12-19 15:35:09 +0000618
David Vinczecea8b592019-10-29 16:09:51 +0100619#if (BOOT_IMAGE_NUMBER == 1)
620 (void)state;
621#endif
622
623 image_index = BOOT_CURR_IMG(state);
624 rc = boot_read_swap_state_by_id(FLASH_AREA_IMAGE_PRIMARY(image_index),
625 &state_primary_slot);
Tamas Banf70ef8c2017-12-19 15:35:09 +0000626 assert(rc == 0);
627
628 rc = boot_read_swap_state_by_id(FLASH_AREA_IMAGE_SCRATCH, &state_scratch);
629 assert(rc == 0);
630
David Vincze401c7422019-06-21 20:44:05 +0200631 BOOT_LOG_SWAP_STATE("Primary image", &state_primary_slot);
Tamas Banf70ef8c2017-12-19 15:35:09 +0000632 BOOT_LOG_SWAP_STATE("Scratch", &state_scratch);
633
634 for (i = 0; i < BOOT_STATUS_TABLES_COUNT; i++) {
635 table = &boot_status_tables[i];
636
David Vincze401c7422019-06-21 20:44:05 +0200637 if (boot_magic_compatible_check(table->bst_magic_primary_slot,
638 state_primary_slot.magic) &&
639 boot_magic_compatible_check(table->bst_magic_scratch,
640 state_scratch.magic) &&
David Vincze8bdfc2d2019-03-18 15:49:23 +0100641 (table->bst_copy_done_primary_slot == BOOT_FLAG_ANY ||
642 table->bst_copy_done_primary_slot == state_primary_slot.copy_done))
643 {
Tamas Banf70ef8c2017-12-19 15:35:09 +0000644 source = table->bst_status_source;
David Vincze7384ee72019-07-23 17:00:42 +0200645
646#if (BOOT_IMAGE_NUMBER > 1)
647 /* In case of multi-image boot it can happen that if boot status
648 * info is found on scratch area then it does not belong to the
649 * currently examined image.
650 */
651 if (source == BOOT_STATUS_SOURCE_SCRATCH &&
David Vinczecea8b592019-10-29 16:09:51 +0100652 state_scratch.image_num != BOOT_CURR_IMG(state)) {
David Vincze7384ee72019-07-23 17:00:42 +0200653 source = BOOT_STATUS_SOURCE_NONE;
654 }
655#endif
656
Tamas Banf70ef8c2017-12-19 15:35:09 +0000657 BOOT_LOG_INF("Boot source: %s",
658 source == BOOT_STATUS_SOURCE_NONE ? "none" :
659 source == BOOT_STATUS_SOURCE_SCRATCH ? "scratch" :
David Vincze8bdfc2d2019-03-18 15:49:23 +0100660 source == BOOT_STATUS_SOURCE_PRIMARY_SLOT ?
661 "primary slot" : "BUG; can't happen");
Tamas Banf70ef8c2017-12-19 15:35:09 +0000662 return source;
663 }
664 }
665
666 BOOT_LOG_INF("Boot source: none");
667 return BOOT_STATUS_SOURCE_NONE;
668}
669
David Vincze401c7422019-06-21 20:44:05 +0200670/*
671 * Slots are compatible when all sectors that store upto to size of the image
672 * round up to sector size, in both slot's are able to fit in the scratch
673 * area, and have sizes that are a multiple of each other (powers of two
674 * presumably!).
Tamas Banf70ef8c2017-12-19 15:35:09 +0000675 */
676static int
David Vinczecea8b592019-10-29 16:09:51 +0100677boot_slots_compatible(struct boot_loader_state *state)
Tamas Banf70ef8c2017-12-19 15:35:09 +0000678{
David Vincze401c7422019-06-21 20:44:05 +0200679 size_t num_sectors_primary;
680 size_t num_sectors_secondary;
681 size_t sz0, sz1;
682 size_t primary_slot_sz, secondary_slot_sz;
683 size_t scratch_sz;
684 size_t i, j;
685 int8_t smaller;
Tamas Banf70ef8c2017-12-19 15:35:09 +0000686
David Vinczecea8b592019-10-29 16:09:51 +0100687 num_sectors_primary = boot_img_num_sectors(state, BOOT_PRIMARY_SLOT);
688 num_sectors_secondary = boot_img_num_sectors(state, BOOT_SECONDARY_SLOT);
David Vincze401c7422019-06-21 20:44:05 +0200689 if ((num_sectors_primary > BOOT_MAX_IMG_SECTORS) ||
690 (num_sectors_secondary > BOOT_MAX_IMG_SECTORS)) {
David Vincze39e78552018-10-10 17:10:01 +0200691 BOOT_LOG_WRN("Cannot upgrade: more sectors than allowed");
Tamas Banf70ef8c2017-12-19 15:35:09 +0000692 return 0;
693 }
David Vincze39e78552018-10-10 17:10:01 +0200694
David Vinczecea8b592019-10-29 16:09:51 +0100695 scratch_sz = boot_scratch_area_size(state);
David Vincze401c7422019-06-21 20:44:05 +0200696
697 /*
698 * The following loop scans all sectors in a linear fashion, assuring that
699 * for each possible sector in each slot, it is able to fit in the other
700 * slot's sector or sectors. Slot's should be compatible as long as any
701 * number of a slot's sectors are able to fit into another, which only
702 * excludes cases where sector sizes are not a multiple of each other.
703 */
704 i = sz0 = primary_slot_sz = 0;
705 j = sz1 = secondary_slot_sz = 0;
706 smaller = 0;
707 while (i < num_sectors_primary || j < num_sectors_secondary) {
708 if (sz0 == sz1) {
David Vinczecea8b592019-10-29 16:09:51 +0100709 sz0 += boot_img_sector_size(state, BOOT_PRIMARY_SLOT, i);
710 sz1 += boot_img_sector_size(state, BOOT_SECONDARY_SLOT, j);
David Vincze401c7422019-06-21 20:44:05 +0200711 i++;
712 j++;
713 } else if (sz0 < sz1) {
David Vinczecea8b592019-10-29 16:09:51 +0100714 sz0 += boot_img_sector_size(state, BOOT_PRIMARY_SLOT, i);
David Vincze401c7422019-06-21 20:44:05 +0200715 /* Guarantee that multiple sectors of the secondary slot
716 * fit into the primary slot.
717 */
718 if (smaller == 2) {
719 BOOT_LOG_WRN("Cannot upgrade: slots have non-compatible"
720 " sectors");
721 return 0;
722 }
723 smaller = 1;
724 i++;
725 } else {
David Vinczecea8b592019-10-29 16:09:51 +0100726 sz1 += boot_img_sector_size(state, BOOT_SECONDARY_SLOT, j);
David Vincze401c7422019-06-21 20:44:05 +0200727 /* Guarantee that multiple sectors of the primary slot
728 * fit into the secondary slot.
729 */
730 if (smaller == 1) {
731 BOOT_LOG_WRN("Cannot upgrade: slots have non-compatible"
732 " sectors");
733 return 0;
734 }
735 smaller = 2;
736 j++;
737 }
738 if (sz0 == sz1) {
739 primary_slot_sz += sz0;
740 secondary_slot_sz += sz1;
741 /* Scratch has to fit each swap operation to the size of the larger
742 * sector among the primary slot and the secondary slot.
743 */
744 if (sz0 > scratch_sz || sz1 > scratch_sz) {
745 BOOT_LOG_WRN("Cannot upgrade: not all sectors fit inside"
746 " scratch");
747 return 0;
748 }
749 smaller = sz0 = sz1 = 0;
750 }
David Vincze39e78552018-10-10 17:10:01 +0200751 }
752
David Vincze401c7422019-06-21 20:44:05 +0200753 if ((i != num_sectors_primary) ||
754 (j != num_sectors_secondary) ||
755 (primary_slot_sz != secondary_slot_sz)) {
756 BOOT_LOG_WRN("Cannot upgrade: slots are not compatible");
757 return 0;
Tamas Banf70ef8c2017-12-19 15:35:09 +0000758 }
759
760 return 1;
761}
762
Tamas Banf70ef8c2017-12-19 15:35:09 +0000763static uint32_t
764boot_status_internal_off(int idx, int state, int elem_sz)
765{
766 int idx_sz;
767
768 idx_sz = elem_sz * BOOT_STATUS_STATE_COUNT;
769
David Vincze39e78552018-10-10 17:10:01 +0200770 return (idx - BOOT_STATUS_IDX_0) * idx_sz +
771 (state - BOOT_STATUS_STATE_0) * elem_sz;
Tamas Banf70ef8c2017-12-19 15:35:09 +0000772}
773
774/**
775 * Reads the status of a partially-completed swap, if any. This is necessary
776 * to recover in case the boot lodaer was reset in the middle of a swap
777 * operation.
778 */
779static int
David Vinczecea8b592019-10-29 16:09:51 +0100780boot_read_status_bytes(const struct flash_area *fap,
781 struct boot_loader_state *state, struct boot_status *bs)
Tamas Banf70ef8c2017-12-19 15:35:09 +0000782{
783 uint32_t off;
784 uint8_t status;
785 int max_entries;
786 int found;
David Vincze39e78552018-10-10 17:10:01 +0200787 int found_idx;
788 int invalid;
Tamas Banf70ef8c2017-12-19 15:35:09 +0000789 int rc;
790 int i;
791
792 off = boot_status_off(fap);
David Vinczecea8b592019-10-29 16:09:51 +0100793 max_entries = boot_status_entries(BOOT_CURR_IMG(state), fap);
794 if (max_entries < 0) {
795 return BOOT_EBADARGS;
796 }
Tamas Banf70ef8c2017-12-19 15:35:09 +0000797
798 found = 0;
David Vincze39e78552018-10-10 17:10:01 +0200799 found_idx = 0;
800 invalid = 0;
Tamas Banf70ef8c2017-12-19 15:35:09 +0000801 for (i = 0; i < max_entries; i++) {
David Vinczecea8b592019-10-29 16:09:51 +0100802 rc = flash_area_read_is_empty(fap, off + i * BOOT_WRITE_SZ(state),
David Vincze39e78552018-10-10 17:10:01 +0200803 &status, 1);
804 if (rc < 0) {
Tamas Banf70ef8c2017-12-19 15:35:09 +0000805 return BOOT_EFLASH;
806 }
807
David Vincze39e78552018-10-10 17:10:01 +0200808 if (rc == 1) {
809 if (found && !found_idx) {
810 found_idx = i;
Tamas Banf70ef8c2017-12-19 15:35:09 +0000811 }
812 } else if (!found) {
813 found = 1;
David Vincze39e78552018-10-10 17:10:01 +0200814 } else if (found_idx) {
815 invalid = 1;
816 break;
Tamas Banf70ef8c2017-12-19 15:35:09 +0000817 }
818 }
819
David Vincze39e78552018-10-10 17:10:01 +0200820 if (invalid) {
821 /* This means there was an error writing status on the last
822 * swap. Tell user and move on to validation!
823 */
824 BOOT_LOG_ERR("Detected inconsistent status!");
825
David Vincze8bdfc2d2019-03-18 15:49:23 +0100826#if !defined(MCUBOOT_VALIDATE_PRIMARY_SLOT)
827 /* With validation of the primary slot disabled, there is no way
828 * to be sure the swapped primary slot is OK, so abort!
David Vincze39e78552018-10-10 17:10:01 +0200829 */
830 assert(0);
831#endif
832 }
833
Tamas Banf70ef8c2017-12-19 15:35:09 +0000834 if (found) {
David Vincze39e78552018-10-10 17:10:01 +0200835 if (!found_idx) {
836 found_idx = i;
837 }
David Vincze39e78552018-10-10 17:10:01 +0200838 bs->idx = (found_idx / BOOT_STATUS_STATE_COUNT) + 1;
839 bs->state = (found_idx % BOOT_STATUS_STATE_COUNT) + 1;
Tamas Banf70ef8c2017-12-19 15:35:09 +0000840 }
841
842 return 0;
843}
844
845/**
846 * Reads the boot status from the flash. The boot status contains
847 * the current state of an interrupted image copy operation. If the boot
848 * status is not present, or it indicates that previous copy finished,
849 * there is no operation in progress.
850 */
851static int
David Vinczecea8b592019-10-29 16:09:51 +0100852boot_read_status(struct boot_loader_state *state, struct boot_status *bs)
Tamas Banf70ef8c2017-12-19 15:35:09 +0000853{
854 const struct flash_area *fap;
David Vincze401c7422019-06-21 20:44:05 +0200855 uint32_t off;
David Vincze91b71ef2019-06-24 13:06:47 +0200856 uint8_t swap_info;
Tamas Banf70ef8c2017-12-19 15:35:09 +0000857 int status_loc;
858 int area_id;
859 int rc;
860
David Vincze39e78552018-10-10 17:10:01 +0200861 memset(bs, 0, sizeof *bs);
862 bs->idx = BOOT_STATUS_IDX_0;
863 bs->state = BOOT_STATUS_STATE_0;
David Vincze401c7422019-06-21 20:44:05 +0200864 bs->swap_type = BOOT_SWAP_TYPE_NONE;
David Vincze39e78552018-10-10 17:10:01 +0200865
866#ifdef MCUBOOT_OVERWRITE_ONLY
867 /* Overwrite-only doesn't make use of the swap status area. */
868 return 0;
869#endif
Tamas Banf70ef8c2017-12-19 15:35:09 +0000870
David Vinczecea8b592019-10-29 16:09:51 +0100871 status_loc = boot_status_source(state);
Tamas Banf70ef8c2017-12-19 15:35:09 +0000872 switch (status_loc) {
873 case BOOT_STATUS_SOURCE_NONE:
874 return 0;
875
876 case BOOT_STATUS_SOURCE_SCRATCH:
877 area_id = FLASH_AREA_IMAGE_SCRATCH;
878 break;
879
David Vincze8bdfc2d2019-03-18 15:49:23 +0100880 case BOOT_STATUS_SOURCE_PRIMARY_SLOT:
David Vinczecea8b592019-10-29 16:09:51 +0100881 area_id = FLASH_AREA_IMAGE_PRIMARY(BOOT_CURR_IMG(state));
Tamas Banf70ef8c2017-12-19 15:35:09 +0000882 break;
883
884 default:
885 assert(0);
886 return BOOT_EBADARGS;
887 }
888
889 rc = flash_area_open(area_id, &fap);
890 if (rc != 0) {
891 return BOOT_EFLASH;
892 }
893
David Vinczecea8b592019-10-29 16:09:51 +0100894 rc = boot_read_status_bytes(fap, state, bs);
David Vincze401c7422019-06-21 20:44:05 +0200895 if (rc == 0) {
David Vincze91b71ef2019-06-24 13:06:47 +0200896 off = boot_swap_info_off(fap);
897 rc = flash_area_read_is_empty(fap, off, &swap_info, sizeof swap_info);
David Vincze401c7422019-06-21 20:44:05 +0200898 if (rc == 1) {
David Vincze91b71ef2019-06-24 13:06:47 +0200899 BOOT_SET_SWAP_INFO(swap_info, 0, BOOT_SWAP_TYPE_NONE);
David Vincze401c7422019-06-21 20:44:05 +0200900 rc = 0;
901 }
David Vincze91b71ef2019-06-24 13:06:47 +0200902
903 /* Extract the swap type info */
904 bs->swap_type = BOOT_GET_SWAP_TYPE(swap_info);
David Vincze401c7422019-06-21 20:44:05 +0200905 }
Tamas Banf70ef8c2017-12-19 15:35:09 +0000906
907 flash_area_close(fap);
David Vincze39e78552018-10-10 17:10:01 +0200908
Tamas Banf70ef8c2017-12-19 15:35:09 +0000909 return rc;
910}
911
912/**
913 * Writes the supplied boot status to the flash file system. The boot status
914 * contains the current state of an in-progress image copy operation.
915 *
916 * @param bs The boot status to write.
917 *
918 * @return 0 on success; nonzero on failure.
919 */
920int
David Vinczecea8b592019-10-29 16:09:51 +0100921boot_write_status(struct boot_loader_state *state, struct boot_status *bs)
Tamas Banf70ef8c2017-12-19 15:35:09 +0000922{
Tamas Ban581034a2017-12-19 19:54:37 +0000923 const struct flash_area *fap = NULL;
Tamas Banf70ef8c2017-12-19 15:35:09 +0000924 uint32_t off;
925 int area_id;
926 int rc;
927 uint8_t buf[BOOT_MAX_ALIGN];
Raef Coles204c5b42019-09-05 09:18:47 +0100928 uint32_t align;
David Vincze39e78552018-10-10 17:10:01 +0200929 uint8_t erased_val;
Tamas Banf70ef8c2017-12-19 15:35:09 +0000930
931 /* NOTE: The first sector copied (that is the last sector on slot) contains
David Vincze8bdfc2d2019-03-18 15:49:23 +0100932 * the trailer. Since in the last step the primary slot is erased, the
933 * first two status writes go to the scratch which will be copied to
934 * the primary slot!
Tamas Banf70ef8c2017-12-19 15:35:09 +0000935 */
936
937 if (bs->use_scratch) {
938 /* Write to scratch. */
939 area_id = FLASH_AREA_IMAGE_SCRATCH;
940 } else {
David Vincze8bdfc2d2019-03-18 15:49:23 +0100941 /* Write to the primary slot. */
David Vinczecea8b592019-10-29 16:09:51 +0100942 area_id = FLASH_AREA_IMAGE_PRIMARY(BOOT_CURR_IMG(state));
Tamas Banf70ef8c2017-12-19 15:35:09 +0000943 }
944
945 rc = flash_area_open(area_id, &fap);
946 if (rc != 0) {
947 rc = BOOT_EFLASH;
948 goto done;
949 }
950
951 off = boot_status_off(fap) +
David Vinczecea8b592019-10-29 16:09:51 +0100952 boot_status_internal_off(bs->idx, bs->state, BOOT_WRITE_SZ(state));
Tamas Banc3828852018-02-01 12:24:16 +0000953 align = flash_area_align(fap);
David Vincze39e78552018-10-10 17:10:01 +0200954 erased_val = flash_area_erased_val(fap);
955 memset(buf, erased_val, BOOT_MAX_ALIGN);
Tamas Banf70ef8c2017-12-19 15:35:09 +0000956 buf[0] = bs->state;
957
958 rc = flash_area_write(fap, off, buf, align);
959 if (rc != 0) {
960 rc = BOOT_EFLASH;
961 goto done;
962 }
963
964 rc = 0;
965
966done:
967 flash_area_close(fap);
968 return rc;
969}
970
Tamas Banf70ef8c2017-12-19 15:35:09 +0000971/**
972 * Determines which swap operation to perform, if any. If it is determined
David Vincze8bdfc2d2019-03-18 15:49:23 +0100973 * that a swap operation is required, the image in the secondary slot is checked
974 * for validity. If the image in the secondary slot is invalid, it is erased,
975 * and a swap type of "none" is indicated.
Tamas Banf70ef8c2017-12-19 15:35:09 +0000976 *
977 * @return The type of swap to perform (BOOT_SWAP_TYPE...)
978 */
979static int
David Vinczecea8b592019-10-29 16:09:51 +0100980boot_validated_swap_type(struct boot_loader_state *state,
981 struct boot_status *bs)
Tamas Banf70ef8c2017-12-19 15:35:09 +0000982{
983 int swap_type;
David Vinczecea8b592019-10-29 16:09:51 +0100984 int rc;
Tamas Banf70ef8c2017-12-19 15:35:09 +0000985
David Vinczecea8b592019-10-29 16:09:51 +0100986 swap_type = boot_swap_type_multi(BOOT_CURR_IMG(state));
987 if (BOOT_IS_UPGRADE(swap_type)) {
David Vincze8bdfc2d2019-03-18 15:49:23 +0100988 /* Boot loader wants to switch to the secondary slot.
989 * Ensure image is valid.
990 */
David Vinczecea8b592019-10-29 16:09:51 +0100991 rc = boot_validate_slot(state, BOOT_SECONDARY_SLOT, bs);
992 if (rc == 1) {
993 swap_type = BOOT_SWAP_TYPE_NONE;
994 } else if (rc != 0) {
Tamas Banf70ef8c2017-12-19 15:35:09 +0000995 swap_type = BOOT_SWAP_TYPE_FAIL;
996 }
997 }
998
999 return swap_type;
1000}
1001
1002/**
1003 * Calculates the number of sectors the scratch area can contain. A "last"
1004 * source sector is specified because images are copied backwards in flash
1005 * (final index to index number 0).
1006 *
1007 * @param last_sector_idx The index of the last source sector
1008 * (inclusive).
1009 * @param out_first_sector_idx The index of the first source sector
1010 * (inclusive) gets written here.
1011 *
1012 * @return The number of bytes comprised by the
1013 * [first-sector, last-sector] range.
1014 */
1015#ifndef MCUBOOT_OVERWRITE_ONLY
1016static uint32_t
David Vinczecea8b592019-10-29 16:09:51 +01001017boot_copy_sz(struct boot_loader_state *state, int last_sector_idx,
1018 int *out_first_sector_idx)
Tamas Banf70ef8c2017-12-19 15:35:09 +00001019{
1020 size_t scratch_sz;
1021 uint32_t new_sz;
1022 uint32_t sz;
1023 int i;
1024
1025 sz = 0;
1026
David Vinczecea8b592019-10-29 16:09:51 +01001027 scratch_sz = boot_scratch_area_size(state);
Tamas Banf70ef8c2017-12-19 15:35:09 +00001028 for (i = last_sector_idx; i >= 0; i--) {
David Vinczecea8b592019-10-29 16:09:51 +01001029 new_sz = sz + boot_img_sector_size(state, BOOT_PRIMARY_SLOT, i);
David Vincze401c7422019-06-21 20:44:05 +02001030 /*
1031 * The secondary slot is not being checked here, because
1032 * `boot_slots_compatible` already provides assurance that the copy size
1033 * will be compatible with the primary slot and scratch.
1034 */
Tamas Banf70ef8c2017-12-19 15:35:09 +00001035 if (new_sz > scratch_sz) {
1036 break;
1037 }
1038 sz = new_sz;
1039 }
1040
1041 /* i currently refers to a sector that doesn't fit or it is -1 because all
1042 * sectors have been processed. In both cases, exclude sector i.
1043 */
1044 *out_first_sector_idx = i + 1;
1045 return sz;
1046}
1047#endif /* !MCUBOOT_OVERWRITE_ONLY */
1048
1049/**
David Vinczef7641fa2018-09-04 18:29:46 +02001050 * Erases a region of flash.
1051 *
David Vincze401c7422019-06-21 20:44:05 +02001052 * @param flash_area The flash_area containing the region to erase.
David Vinczef7641fa2018-09-04 18:29:46 +02001053 * @param off The offset within the flash area to start the
1054 * erase.
1055 * @param sz The number of bytes to erase.
1056 *
1057 * @return 0 on success; nonzero on failure.
1058 */
David Vincze401c7422019-06-21 20:44:05 +02001059static inline int
David Vinczecea8b592019-10-29 16:09:51 +01001060boot_erase_region(const struct flash_area *fap, uint32_t off, uint32_t sz)
David Vinczef7641fa2018-09-04 18:29:46 +02001061{
David Vincze401c7422019-06-21 20:44:05 +02001062 return flash_area_erase(fap, off, sz);
David Vinczef7641fa2018-09-04 18:29:46 +02001063}
1064
1065/**
Tamas Banf70ef8c2017-12-19 15:35:09 +00001066 * Copies the contents of one flash region to another. You must erase the
1067 * destination region prior to calling this function.
1068 *
1069 * @param flash_area_id_src The ID of the source flash area.
1070 * @param flash_area_id_dst The ID of the destination flash area.
1071 * @param off_src The offset within the source flash area to
1072 * copy from.
1073 * @param off_dst The offset within the destination flash area to
1074 * copy to.
1075 * @param sz The number of bytes to copy.
1076 *
1077 * @return 0 on success; nonzero on failure.
1078 */
1079static int
David Vinczecea8b592019-10-29 16:09:51 +01001080boot_copy_region(struct boot_loader_state *state,
1081 const struct flash_area *fap_src,
David Vincze401c7422019-06-21 20:44:05 +02001082 const struct flash_area *fap_dst,
Tamas Banf70ef8c2017-12-19 15:35:09 +00001083 uint32_t off_src, uint32_t off_dst, uint32_t sz)
1084{
Tamas Banf70ef8c2017-12-19 15:35:09 +00001085 uint32_t bytes_copied;
1086 int chunk_sz;
1087 int rc;
1088
1089 static uint8_t buf[1024];
1090
David Vinczecea8b592019-10-29 16:09:51 +01001091 (void)state;
1092
Tamas Banf70ef8c2017-12-19 15:35:09 +00001093 bytes_copied = 0;
1094 while (bytes_copied < sz) {
Tamas Ban581034a2017-12-19 19:54:37 +00001095 if (sz - bytes_copied > sizeof(buf)) {
1096 chunk_sz = sizeof(buf);
Tamas Banf70ef8c2017-12-19 15:35:09 +00001097 } else {
1098 chunk_sz = sz - bytes_copied;
1099 }
1100
1101 rc = flash_area_read(fap_src, off_src + bytes_copied, buf, chunk_sz);
1102 if (rc != 0) {
David Vincze401c7422019-06-21 20:44:05 +02001103 return BOOT_EFLASH;
Tamas Banf70ef8c2017-12-19 15:35:09 +00001104 }
1105
1106 rc = flash_area_write(fap_dst, off_dst + bytes_copied, buf, chunk_sz);
1107 if (rc != 0) {
David Vincze401c7422019-06-21 20:44:05 +02001108 return BOOT_EFLASH;
Tamas Banf70ef8c2017-12-19 15:35:09 +00001109 }
1110
1111 bytes_copied += chunk_sz;
1112 }
1113
David Vincze401c7422019-06-21 20:44:05 +02001114 return 0;
Tamas Banf70ef8c2017-12-19 15:35:09 +00001115}
1116
1117#ifndef MCUBOOT_OVERWRITE_ONLY
1118static inline int
David Vinczecea8b592019-10-29 16:09:51 +01001119boot_status_init(const struct boot_loader_state *state,
1120 const struct flash_area *fap,
1121 const struct boot_status *bs)
Tamas Banf70ef8c2017-12-19 15:35:09 +00001122{
Tamas Banf70ef8c2017-12-19 15:35:09 +00001123 struct boot_swap_state swap_state;
David Vinczecea8b592019-10-29 16:09:51 +01001124 uint8_t image_index;
Tamas Banf70ef8c2017-12-19 15:35:09 +00001125 int rc;
1126
David Vinczecea8b592019-10-29 16:09:51 +01001127#if (BOOT_IMAGE_NUMBER == 1)
1128 (void)state;
1129#endif
1130
1131 image_index = BOOT_CURR_IMG(state);
1132
David Vincze401c7422019-06-21 20:44:05 +02001133 BOOT_LOG_DBG("initializing status; fa_id=%d", fap->fa_id);
Tamas Banf70ef8c2017-12-19 15:35:09 +00001134
David Vinczecea8b592019-10-29 16:09:51 +01001135 rc = boot_read_swap_state_by_id(FLASH_AREA_IMAGE_SECONDARY(image_index),
1136 &swap_state);
Tamas Banf70ef8c2017-12-19 15:35:09 +00001137 assert(rc == 0);
1138
David Vincze401c7422019-06-21 20:44:05 +02001139 if (bs->swap_type != BOOT_SWAP_TYPE_NONE) {
David Vinczecea8b592019-10-29 16:09:51 +01001140 rc = boot_write_swap_info(fap, bs->swap_type, image_index);
David Vincze401c7422019-06-21 20:44:05 +02001141 assert(rc == 0);
1142 }
1143
Tamas Banf70ef8c2017-12-19 15:35:09 +00001144 if (swap_state.image_ok == BOOT_FLAG_SET) {
1145 rc = boot_write_image_ok(fap);
1146 assert(rc == 0);
1147 }
1148
1149 rc = boot_write_swap_size(fap, bs->swap_size);
1150 assert(rc == 0);
1151
1152 rc = boot_write_magic(fap);
1153 assert(rc == 0);
1154
Tamas Banf70ef8c2017-12-19 15:35:09 +00001155 return 0;
1156}
David Vinczef7641fa2018-09-04 18:29:46 +02001157
1158static int
David Vinczecea8b592019-10-29 16:09:51 +01001159boot_erase_trailer_sectors(const struct boot_loader_state *state,
1160 const struct flash_area *fap)
David Vinczef7641fa2018-09-04 18:29:46 +02001161{
1162 uint8_t slot;
David Vincze401c7422019-06-21 20:44:05 +02001163 uint32_t sector;
1164 uint32_t trailer_sz;
1165 uint32_t total_sz;
1166 uint32_t off;
1167 uint32_t sz;
David Vinczebb207982019-08-21 15:13:04 +02001168 int fa_id_primary;
1169 int fa_id_secondary;
David Vinczecea8b592019-10-29 16:09:51 +01001170 uint8_t image_index;
David Vinczef7641fa2018-09-04 18:29:46 +02001171 int rc;
1172
David Vincze401c7422019-06-21 20:44:05 +02001173 BOOT_LOG_DBG("erasing trailer; fa_id=%d", fap->fa_id);
1174
David Vinczecea8b592019-10-29 16:09:51 +01001175 image_index = BOOT_CURR_IMG(state);
1176 fa_id_primary = flash_area_id_from_multi_image_slot(image_index,
1177 BOOT_PRIMARY_SLOT);
1178 fa_id_secondary = flash_area_id_from_multi_image_slot(image_index,
1179 BOOT_SECONDARY_SLOT);
David Vinczebb207982019-08-21 15:13:04 +02001180
1181 if (fap->fa_id == fa_id_primary) {
David Vincze8bdfc2d2019-03-18 15:49:23 +01001182 slot = BOOT_PRIMARY_SLOT;
David Vinczebb207982019-08-21 15:13:04 +02001183 } else if (fap->fa_id == fa_id_secondary) {
David Vincze8bdfc2d2019-03-18 15:49:23 +01001184 slot = BOOT_SECONDARY_SLOT;
David Vinczebb207982019-08-21 15:13:04 +02001185 } else {
David Vinczef7641fa2018-09-04 18:29:46 +02001186 return BOOT_EFLASH;
1187 }
1188
David Vincze401c7422019-06-21 20:44:05 +02001189 /* delete starting from last sector and moving to beginning */
David Vinczecea8b592019-10-29 16:09:51 +01001190 sector = boot_img_num_sectors(state, slot) - 1;
1191 trailer_sz = boot_trailer_sz(BOOT_WRITE_SZ(state));
David Vincze401c7422019-06-21 20:44:05 +02001192 total_sz = 0;
1193 do {
David Vinczecea8b592019-10-29 16:09:51 +01001194 sz = boot_img_sector_size(state, slot, sector);
1195 off = boot_img_sector_off(state, slot, sector);
1196 rc = boot_erase_region(fap, off, sz);
David Vincze401c7422019-06-21 20:44:05 +02001197 assert(rc == 0);
1198
1199 sector--;
1200 total_sz += sz;
1201 } while (total_sz < trailer_sz);
David Vinczef7641fa2018-09-04 18:29:46 +02001202
1203 return rc;
1204}
1205#endif /* !MCUBOOT_OVERWRITE_ONLY */
Tamas Banf70ef8c2017-12-19 15:35:09 +00001206
Tamas Banf70ef8c2017-12-19 15:35:09 +00001207/**
1208 * Swaps the contents of two flash regions within the two image slots.
1209 *
1210 * @param idx The index of the first sector in the range of
1211 * sectors being swapped.
1212 * @param sz The number of bytes to swap.
1213 * @param bs The current boot status. This struct gets
1214 * updated according to the outcome.
1215 *
1216 * @return 0 on success; nonzero on failure.
1217 */
1218#ifndef MCUBOOT_OVERWRITE_ONLY
1219static void
David Vinczecea8b592019-10-29 16:09:51 +01001220boot_swap_sectors(int idx, uint32_t sz, struct boot_loader_state *state,
1221 struct boot_status *bs)
Tamas Banf70ef8c2017-12-19 15:35:09 +00001222{
David Vincze401c7422019-06-21 20:44:05 +02001223 const struct flash_area *fap_primary_slot;
1224 const struct flash_area *fap_secondary_slot;
1225 const struct flash_area *fap_scratch;
Tamas Banf70ef8c2017-12-19 15:35:09 +00001226 uint32_t copy_sz;
1227 uint32_t trailer_sz;
1228 uint32_t img_off;
1229 uint32_t scratch_trailer_off;
1230 struct boot_swap_state swap_state;
1231 size_t last_sector;
David Vincze401c7422019-06-21 20:44:05 +02001232 bool erase_scratch;
David Vinczecea8b592019-10-29 16:09:51 +01001233 uint8_t image_index;
Tamas Banf70ef8c2017-12-19 15:35:09 +00001234 int rc;
1235
1236 /* Calculate offset from start of image area. */
David Vinczecea8b592019-10-29 16:09:51 +01001237 img_off = boot_img_sector_off(state, BOOT_PRIMARY_SLOT, idx);
Tamas Banf70ef8c2017-12-19 15:35:09 +00001238
1239 copy_sz = sz;
David Vinczecea8b592019-10-29 16:09:51 +01001240 trailer_sz = boot_trailer_sz(BOOT_WRITE_SZ(state));
Tamas Banf70ef8c2017-12-19 15:35:09 +00001241
David Vincze401c7422019-06-21 20:44:05 +02001242 /* sz in this function is always sized on a multiple of the sector size.
1243 * The check against the start offset of the last sector
Tamas Banf70ef8c2017-12-19 15:35:09 +00001244 * is to determine if we're swapping the last sector. The last sector
1245 * needs special handling because it's where the trailer lives. If we're
1246 * copying it, we need to use scratch to write the trailer temporarily.
1247 *
1248 * NOTE: `use_scratch` is a temporary flag (never written to flash) which
1249 * controls if special handling is needed (swapping last sector).
1250 */
David Vinczecea8b592019-10-29 16:09:51 +01001251 last_sector = boot_img_num_sectors(state, BOOT_PRIMARY_SLOT) - 1;
David Vincze7384ee72019-07-23 17:00:42 +02001252 if ((img_off + sz) >
David Vinczecea8b592019-10-29 16:09:51 +01001253 boot_img_sector_off(state, BOOT_PRIMARY_SLOT, last_sector)) {
Tamas Banf70ef8c2017-12-19 15:35:09 +00001254 copy_sz -= trailer_sz;
1255 }
1256
David Vincze39e78552018-10-10 17:10:01 +02001257 bs->use_scratch = (bs->idx == BOOT_STATUS_IDX_0 && copy_sz != sz);
Tamas Banf70ef8c2017-12-19 15:35:09 +00001258
David Vinczecea8b592019-10-29 16:09:51 +01001259 image_index = BOOT_CURR_IMG(state);
1260
1261 rc = flash_area_open(FLASH_AREA_IMAGE_PRIMARY(image_index),
1262 &fap_primary_slot);
David Vincze401c7422019-06-21 20:44:05 +02001263 assert (rc == 0);
Tamas Banf70ef8c2017-12-19 15:35:09 +00001264
David Vinczecea8b592019-10-29 16:09:51 +01001265 rc = flash_area_open(FLASH_AREA_IMAGE_SECONDARY(image_index),
1266 &fap_secondary_slot);
David Vincze401c7422019-06-21 20:44:05 +02001267 assert (rc == 0);
1268
1269 rc = flash_area_open(FLASH_AREA_IMAGE_SCRATCH, &fap_scratch);
1270 assert (rc == 0);
1271
1272 if (bs->state == BOOT_STATUS_STATE_0) {
1273 BOOT_LOG_DBG("erasing scratch area");
David Vinczecea8b592019-10-29 16:09:51 +01001274 rc = boot_erase_region(fap_scratch, 0, fap_scratch->fa_size);
Tamas Banf70ef8c2017-12-19 15:35:09 +00001275 assert(rc == 0);
1276
David Vincze39e78552018-10-10 17:10:01 +02001277 if (bs->idx == BOOT_STATUS_IDX_0) {
David Vincze401c7422019-06-21 20:44:05 +02001278 /* Write a trailer to the scratch area, even if we don't need the
1279 * scratch area for status. We need a temporary place to store the
1280 * `swap-type` while we erase the primary trailer.
1281 */
David Vinczecea8b592019-10-29 16:09:51 +01001282 rc = boot_status_init(state, fap_scratch, bs);
David Vincze401c7422019-06-21 20:44:05 +02001283 assert(rc == 0);
1284
1285 if (!bs->use_scratch) {
1286 /* Prepare the primary status area... here it is known that the
1287 * last sector is not being used by the image data so it's safe
1288 * to erase.
Tamas Banf70ef8c2017-12-19 15:35:09 +00001289 */
David Vinczecea8b592019-10-29 16:09:51 +01001290 rc = boot_erase_trailer_sectors(state, fap_primary_slot);
Tamas Banf70ef8c2017-12-19 15:35:09 +00001291 assert(rc == 0);
1292
David Vinczecea8b592019-10-29 16:09:51 +01001293 rc = boot_status_init(state, fap_primary_slot, bs);
David Vincze401c7422019-06-21 20:44:05 +02001294 assert(rc == 0);
1295
1296 /* Erase the temporary trailer from the scratch area. */
David Vinczecea8b592019-10-29 16:09:51 +01001297 rc = boot_erase_region(fap_scratch, 0, fap_scratch->fa_size);
David Vincze401c7422019-06-21 20:44:05 +02001298 assert(rc == 0);
Tamas Banf70ef8c2017-12-19 15:35:09 +00001299 }
1300 }
1301
David Vinczecea8b592019-10-29 16:09:51 +01001302 rc = boot_copy_region(state, fap_secondary_slot, fap_scratch,
David Vincze401c7422019-06-21 20:44:05 +02001303 img_off, 0, copy_sz);
1304 assert(rc == 0);
1305
David Vinczecea8b592019-10-29 16:09:51 +01001306 rc = boot_write_status(state, bs);
David Vincze39e78552018-10-10 17:10:01 +02001307 bs->state = BOOT_STATUS_STATE_1;
David Vincze39e78552018-10-10 17:10:01 +02001308 BOOT_STATUS_ASSERT(rc == 0);
Tamas Banf70ef8c2017-12-19 15:35:09 +00001309 }
1310
David Vincze39e78552018-10-10 17:10:01 +02001311 if (bs->state == BOOT_STATUS_STATE_1) {
David Vinczecea8b592019-10-29 16:09:51 +01001312 rc = boot_erase_region(fap_secondary_slot, img_off, sz);
Tamas Banf70ef8c2017-12-19 15:35:09 +00001313 assert(rc == 0);
1314
David Vinczecea8b592019-10-29 16:09:51 +01001315 rc = boot_copy_region(state, fap_primary_slot, fap_secondary_slot,
Tamas Banf70ef8c2017-12-19 15:35:09 +00001316 img_off, img_off, copy_sz);
1317 assert(rc == 0);
1318
David Vincze39e78552018-10-10 17:10:01 +02001319 if (bs->idx == BOOT_STATUS_IDX_0 && !bs->use_scratch) {
Tamas Banf70ef8c2017-12-19 15:35:09 +00001320 /* If not all sectors of the slot are being swapped,
David Vincze8bdfc2d2019-03-18 15:49:23 +01001321 * guarantee here that only the primary slot will have the state.
Tamas Banf70ef8c2017-12-19 15:35:09 +00001322 */
David Vinczecea8b592019-10-29 16:09:51 +01001323 rc = boot_erase_trailer_sectors(state, fap_secondary_slot);
Tamas Banf70ef8c2017-12-19 15:35:09 +00001324 assert(rc == 0);
1325 }
1326
David Vinczecea8b592019-10-29 16:09:51 +01001327 rc = boot_write_status(state, bs);
David Vincze39e78552018-10-10 17:10:01 +02001328 bs->state = BOOT_STATUS_STATE_2;
David Vincze39e78552018-10-10 17:10:01 +02001329 BOOT_STATUS_ASSERT(rc == 0);
Tamas Banf70ef8c2017-12-19 15:35:09 +00001330 }
1331
David Vincze39e78552018-10-10 17:10:01 +02001332 if (bs->state == BOOT_STATUS_STATE_2) {
David Vinczecea8b592019-10-29 16:09:51 +01001333 rc = boot_erase_region(fap_primary_slot, img_off, sz);
Tamas Banf70ef8c2017-12-19 15:35:09 +00001334 assert(rc == 0);
1335
David Vincze401c7422019-06-21 20:44:05 +02001336 /* NOTE: If this is the final sector, we exclude the image trailer from
1337 * this copy (copy_sz was truncated earlier).
1338 */
David Vinczecea8b592019-10-29 16:09:51 +01001339 rc = boot_copy_region(state, fap_scratch, fap_primary_slot,
Tamas Banf70ef8c2017-12-19 15:35:09 +00001340 0, img_off, copy_sz);
1341 assert(rc == 0);
1342
1343 if (bs->use_scratch) {
David Vincze401c7422019-06-21 20:44:05 +02001344 scratch_trailer_off = boot_status_off(fap_scratch);
Tamas Banf70ef8c2017-12-19 15:35:09 +00001345
1346 /* copy current status that is being maintained in scratch */
David Vinczecea8b592019-10-29 16:09:51 +01001347 rc = boot_copy_region(state, fap_scratch, fap_primary_slot,
David Vincze401c7422019-06-21 20:44:05 +02001348 scratch_trailer_off, img_off + copy_sz,
David Vinczecea8b592019-10-29 16:09:51 +01001349 (BOOT_STATUS_STATE_COUNT - 1) * BOOT_WRITE_SZ(state));
David Vincze39e78552018-10-10 17:10:01 +02001350 BOOT_STATUS_ASSERT(rc == 0);
Tamas Banf70ef8c2017-12-19 15:35:09 +00001351
1352 rc = boot_read_swap_state_by_id(FLASH_AREA_IMAGE_SCRATCH,
1353 &swap_state);
1354 assert(rc == 0);
1355
1356 if (swap_state.image_ok == BOOT_FLAG_SET) {
David Vincze401c7422019-06-21 20:44:05 +02001357 rc = boot_write_image_ok(fap_primary_slot);
Tamas Banf70ef8c2017-12-19 15:35:09 +00001358 assert(rc == 0);
1359 }
1360
David Vincze401c7422019-06-21 20:44:05 +02001361 if (swap_state.swap_type != BOOT_SWAP_TYPE_NONE) {
David Vincze91b71ef2019-06-24 13:06:47 +02001362 rc = boot_write_swap_info(fap_primary_slot,
1363 swap_state.swap_type,
David Vinczecea8b592019-10-29 16:09:51 +01001364 image_index);
David Vincze401c7422019-06-21 20:44:05 +02001365 assert(rc == 0);
1366 }
1367
1368 rc = boot_write_swap_size(fap_primary_slot, bs->swap_size);
Tamas Banf70ef8c2017-12-19 15:35:09 +00001369 assert(rc == 0);
1370
David Vincze401c7422019-06-21 20:44:05 +02001371 rc = boot_write_magic(fap_primary_slot);
Tamas Banf70ef8c2017-12-19 15:35:09 +00001372 assert(rc == 0);
Tamas Banf70ef8c2017-12-19 15:35:09 +00001373 }
1374
David Vincze401c7422019-06-21 20:44:05 +02001375 /* If we wrote a trailer to the scratch area, erase it after we persist
1376 * a trailer to the primary slot. We do this to prevent mcuboot from
1377 * reading a stale status from the scratch area in case of immediate
1378 * reset.
1379 */
1380 erase_scratch = bs->use_scratch;
1381 bs->use_scratch = 0;
1382
David Vinczecea8b592019-10-29 16:09:51 +01001383 rc = boot_write_status(state, bs);
Tamas Banf70ef8c2017-12-19 15:35:09 +00001384 bs->idx++;
David Vincze39e78552018-10-10 17:10:01 +02001385 bs->state = BOOT_STATUS_STATE_0;
David Vincze39e78552018-10-10 17:10:01 +02001386 BOOT_STATUS_ASSERT(rc == 0);
David Vincze401c7422019-06-21 20:44:05 +02001387
1388 if (erase_scratch) {
David Vinczecea8b592019-10-29 16:09:51 +01001389 rc = boot_erase_region(fap_scratch, 0, sz);
David Vincze401c7422019-06-21 20:44:05 +02001390 assert(rc == 0);
1391 }
Tamas Banf70ef8c2017-12-19 15:35:09 +00001392 }
David Vincze401c7422019-06-21 20:44:05 +02001393
1394 flash_area_close(fap_primary_slot);
1395 flash_area_close(fap_secondary_slot);
1396 flash_area_close(fap_scratch);
Tamas Banf70ef8c2017-12-19 15:35:09 +00001397}
1398#endif /* !MCUBOOT_OVERWRITE_ONLY */
1399
1400/**
David Vincze401c7422019-06-21 20:44:05 +02001401 * Overwrite primary slot with the image contained in the secondary slot.
1402 * If a prior copy operation was interrupted by a system reset, this function
1403 * redos the copy.
Tamas Banf70ef8c2017-12-19 15:35:09 +00001404 *
1405 * @param bs The current boot status. This function reads
1406 * this struct to determine if it is resuming
1407 * an interrupted swap operation. This
1408 * function writes the updated status to this
1409 * function on return.
1410 *
1411 * @return 0 on success; nonzero on failure.
1412 */
1413#ifdef MCUBOOT_OVERWRITE_ONLY
1414static int
David Vinczecea8b592019-10-29 16:09:51 +01001415boot_copy_image(struct boot_loader_state *state, struct boot_status *bs)
Tamas Banf70ef8c2017-12-19 15:35:09 +00001416{
1417 size_t sect_count;
1418 size_t sect;
1419 int rc;
David Vinczecea8b592019-10-29 16:09:51 +01001420 size_t size;
Tamas Banf70ef8c2017-12-19 15:35:09 +00001421 size_t this_size;
David Vincze39e78552018-10-10 17:10:01 +02001422 size_t last_sector;
David Vincze401c7422019-06-21 20:44:05 +02001423 const struct flash_area *fap_primary_slot;
1424 const struct flash_area *fap_secondary_slot;
David Vinczecea8b592019-10-29 16:09:51 +01001425 uint8_t image_index;
David Vincze39e78552018-10-10 17:10:01 +02001426
1427 (void)bs;
Tamas Banf70ef8c2017-12-19 15:35:09 +00001428
David Vincze8bdfc2d2019-03-18 15:49:23 +01001429 BOOT_LOG_INF("Image upgrade secondary slot -> primary slot");
1430 BOOT_LOG_INF("Erasing the primary slot");
Tamas Banf70ef8c2017-12-19 15:35:09 +00001431
David Vinczecea8b592019-10-29 16:09:51 +01001432 image_index = BOOT_CURR_IMG(state);
1433
1434 rc = flash_area_open(FLASH_AREA_IMAGE_PRIMARY(image_index),
1435 &fap_primary_slot);
David Vincze401c7422019-06-21 20:44:05 +02001436 assert (rc == 0);
1437
David Vinczecea8b592019-10-29 16:09:51 +01001438 rc = flash_area_open(FLASH_AREA_IMAGE_SECONDARY(image_index),
1439 &fap_secondary_slot);
David Vincze401c7422019-06-21 20:44:05 +02001440 assert (rc == 0);
1441
David Vinczecea8b592019-10-29 16:09:51 +01001442 sect_count = boot_img_num_sectors(state, BOOT_PRIMARY_SLOT);
1443 for (sect = 0, size = 0; sect < sect_count; sect++) {
1444 this_size = boot_img_sector_size(state, BOOT_PRIMARY_SLOT, sect);
1445 rc = boot_erase_region(fap_primary_slot, size, this_size);
Tamas Banf70ef8c2017-12-19 15:35:09 +00001446 assert(rc == 0);
1447
1448 size += this_size;
1449 }
1450
David Vincze8bdfc2d2019-03-18 15:49:23 +01001451 BOOT_LOG_INF("Copying the secondary slot to the primary slot: 0x%zx bytes",
1452 size);
David Vinczecea8b592019-10-29 16:09:51 +01001453 rc = boot_copy_region(state, fap_secondary_slot, fap_primary_slot,
1454 0, 0, size);
Tamas Banf70ef8c2017-12-19 15:35:09 +00001455
David Vincze060968d2019-05-23 01:13:14 +02001456 /* Update the stored security counter with the new image's security counter
David Vincze8bdfc2d2019-03-18 15:49:23 +01001457 * value. Both slots hold the new image at this point, but the secondary
1458 * slot's image header must be passed because the read image headers in the
1459 * boot_data structure have not been updated yet.
David Vincze060968d2019-05-23 01:13:14 +02001460 */
David Vinczecea8b592019-10-29 16:09:51 +01001461 rc = boot_update_security_counter(BOOT_CURR_IMG(state), BOOT_PRIMARY_SLOT,
1462 boot_img_hdr(state, BOOT_SECONDARY_SLOT));
David Vincze060968d2019-05-23 01:13:14 +02001463 if (rc != 0) {
1464 BOOT_LOG_ERR("Security counter update failed after image upgrade.");
1465 return rc;
1466 }
1467
David Vincze39e78552018-10-10 17:10:01 +02001468 /*
1469 * Erases header and trailer. The trailer is erased because when a new
1470 * image is written without a trailer as is the case when using newt, the
1471 * trailer that was left might trigger a new upgrade.
1472 */
David Vincze401c7422019-06-21 20:44:05 +02001473 BOOT_LOG_DBG("erasing secondary header");
David Vinczecea8b592019-10-29 16:09:51 +01001474 rc = boot_erase_region(fap_secondary_slot,
1475 boot_img_sector_off(state, BOOT_SECONDARY_SLOT, 0),
1476 boot_img_sector_size(state, BOOT_SECONDARY_SLOT, 0));
Tamas Banf70ef8c2017-12-19 15:35:09 +00001477 assert(rc == 0);
David Vinczecea8b592019-10-29 16:09:51 +01001478 last_sector = boot_img_num_sectors(state, BOOT_SECONDARY_SLOT) - 1;
David Vincze401c7422019-06-21 20:44:05 +02001479 BOOT_LOG_DBG("erasing secondary trailer");
David Vinczecea8b592019-10-29 16:09:51 +01001480 rc = boot_erase_region(fap_secondary_slot,
1481 boot_img_sector_off(state, BOOT_SECONDARY_SLOT,
1482 last_sector),
1483 boot_img_sector_size(state, BOOT_SECONDARY_SLOT,
1484 last_sector));
David Vincze39e78552018-10-10 17:10:01 +02001485 assert(rc == 0);
1486
David Vincze401c7422019-06-21 20:44:05 +02001487 flash_area_close(fap_primary_slot);
1488 flash_area_close(fap_secondary_slot);
1489
David Vincze8bdfc2d2019-03-18 15:49:23 +01001490 /* TODO: Perhaps verify the primary slot's signature again? */
Tamas Banf70ef8c2017-12-19 15:35:09 +00001491
1492 return 0;
1493}
1494#else
David Vincze401c7422019-06-21 20:44:05 +02001495/**
1496 * Swaps the two images in flash. If a prior copy operation was interrupted
1497 * by a system reset, this function completes that operation.
1498 *
1499 * @param bs The current boot status. This function reads
1500 * this struct to determine if it is resuming
1501 * an interrupted swap operation. This
1502 * function writes the updated status to this
1503 * function on return.
1504 *
1505 * @return 0 on success; nonzero on failure.
1506 */
Tamas Banf70ef8c2017-12-19 15:35:09 +00001507static int
David Vinczecea8b592019-10-29 16:09:51 +01001508boot_swap_image(struct boot_loader_state *state, struct boot_status *bs)
Tamas Banf70ef8c2017-12-19 15:35:09 +00001509{
1510 uint32_t sz;
1511 int first_sector_idx;
1512 int last_sector_idx;
David Vincze401c7422019-06-21 20:44:05 +02001513 int last_idx_secondary_slot;
David Vincze39e78552018-10-10 17:10:01 +02001514 uint32_t swap_idx;
Tamas Banf70ef8c2017-12-19 15:35:09 +00001515 struct image_header *hdr;
1516 uint32_t size;
1517 uint32_t copy_size;
David Vincze401c7422019-06-21 20:44:05 +02001518 uint32_t primary_slot_size;
1519 uint32_t secondary_slot_size;
David Vinczecea8b592019-10-29 16:09:51 +01001520 uint8_t image_index;
Tamas Banf70ef8c2017-12-19 15:35:09 +00001521 int rc;
1522
1523 /* FIXME: just do this if asked by user? */
1524
1525 size = copy_size = 0;
David Vinczecea8b592019-10-29 16:09:51 +01001526 image_index = BOOT_CURR_IMG(state);
Tamas Banf70ef8c2017-12-19 15:35:09 +00001527
David Vincze39e78552018-10-10 17:10:01 +02001528 if (bs->idx == BOOT_STATUS_IDX_0 && bs->state == BOOT_STATUS_STATE_0) {
Tamas Banf70ef8c2017-12-19 15:35:09 +00001529 /*
1530 * No swap ever happened, so need to find the largest image which
1531 * will be used to determine the amount of sectors to swap.
1532 */
David Vinczecea8b592019-10-29 16:09:51 +01001533 hdr = boot_img_hdr(state, BOOT_PRIMARY_SLOT);
1534 if (hdr->ih_magic == IMAGE_MAGIC) {
1535 rc = boot_read_image_size(state, BOOT_PRIMARY_SLOT, &copy_size);
1536 assert(rc == 0);
1537 }
Tamas Banf70ef8c2017-12-19 15:35:09 +00001538
David Vinczecea8b592019-10-29 16:09:51 +01001539 hdr = boot_img_hdr(state, BOOT_SECONDARY_SLOT);
1540 if (hdr->ih_magic == IMAGE_MAGIC) {
1541 rc = boot_read_image_size(state, BOOT_SECONDARY_SLOT, &size);
1542 assert(rc == 0);
1543 }
Tamas Banf70ef8c2017-12-19 15:35:09 +00001544
1545 if (size > copy_size) {
1546 copy_size = size;
1547 }
1548
1549 bs->swap_size = copy_size;
1550 } else {
1551 /*
1552 * If a swap was under way, the swap_size should already be present
1553 * in the trailer...
1554 */
David Vinczecea8b592019-10-29 16:09:51 +01001555 rc = boot_read_swap_size(image_index, &bs->swap_size);
Tamas Banf70ef8c2017-12-19 15:35:09 +00001556 assert(rc == 0);
1557
1558 copy_size = bs->swap_size;
1559 }
1560
David Vincze401c7422019-06-21 20:44:05 +02001561 primary_slot_size = 0;
1562 secondary_slot_size = 0;
Tamas Banf70ef8c2017-12-19 15:35:09 +00001563 last_sector_idx = 0;
David Vincze401c7422019-06-21 20:44:05 +02001564 last_idx_secondary_slot = 0;
1565
1566 /*
1567 * Knowing the size of the largest image between both slots, here we
1568 * find what is the last sector in the primary slot that needs swapping.
1569 * Since we already know that both slots are compatible, the secondary
1570 * slot's last sector is not really required after this check is finished.
1571 */
Tamas Banf70ef8c2017-12-19 15:35:09 +00001572 while (1) {
David Vincze401c7422019-06-21 20:44:05 +02001573 if ((primary_slot_size < copy_size) ||
1574 (primary_slot_size < secondary_slot_size)) {
David Vinczecea8b592019-10-29 16:09:51 +01001575 primary_slot_size += boot_img_sector_size(state,
David Vincze401c7422019-06-21 20:44:05 +02001576 BOOT_PRIMARY_SLOT,
1577 last_sector_idx);
1578 }
1579 if ((secondary_slot_size < copy_size) ||
1580 (secondary_slot_size < primary_slot_size)) {
David Vinczecea8b592019-10-29 16:09:51 +01001581 secondary_slot_size += boot_img_sector_size(state,
David Vincze401c7422019-06-21 20:44:05 +02001582 BOOT_SECONDARY_SLOT,
1583 last_idx_secondary_slot);
1584 }
1585 if (primary_slot_size >= copy_size &&
1586 secondary_slot_size >= copy_size &&
1587 primary_slot_size == secondary_slot_size) {
Tamas Banf70ef8c2017-12-19 15:35:09 +00001588 break;
1589 }
1590 last_sector_idx++;
David Vincze401c7422019-06-21 20:44:05 +02001591 last_idx_secondary_slot++;
Tamas Banf70ef8c2017-12-19 15:35:09 +00001592 }
1593
1594 swap_idx = 0;
1595 while (last_sector_idx >= 0) {
David Vinczecea8b592019-10-29 16:09:51 +01001596 sz = boot_copy_sz(state, last_sector_idx, &first_sector_idx);
David Vincze39e78552018-10-10 17:10:01 +02001597 if (swap_idx >= (bs->idx - BOOT_STATUS_IDX_0)) {
David Vinczecea8b592019-10-29 16:09:51 +01001598 boot_swap_sectors(first_sector_idx, sz, state, bs);
Tamas Banf70ef8c2017-12-19 15:35:09 +00001599 }
1600
1601 last_sector_idx = first_sector_idx - 1;
1602 swap_idx++;
1603 }
1604
David Vincze8bdfc2d2019-03-18 15:49:23 +01001605#ifdef MCUBOOT_VALIDATE_PRIMARY_SLOT
David Vincze39e78552018-10-10 17:10:01 +02001606 if (boot_status_fails > 0) {
David Vincze401c7422019-06-21 20:44:05 +02001607 BOOT_LOG_WRN("%d status write fails performing the swap",
1608 boot_status_fails);
David Vincze39e78552018-10-10 17:10:01 +02001609 }
1610#endif
1611
Tamas Banf70ef8c2017-12-19 15:35:09 +00001612 return 0;
1613}
1614#endif
1615
1616/**
David Vincze8bdfc2d2019-03-18 15:49:23 +01001617 * Marks the image in the primary slot as fully copied.
Tamas Banf70ef8c2017-12-19 15:35:09 +00001618 */
1619#ifndef MCUBOOT_OVERWRITE_ONLY
1620static int
David Vinczecea8b592019-10-29 16:09:51 +01001621boot_set_copy_done(uint8_t image_index)
Tamas Banf70ef8c2017-12-19 15:35:09 +00001622{
1623 const struct flash_area *fap;
1624 int rc;
1625
David Vinczecea8b592019-10-29 16:09:51 +01001626 rc = flash_area_open(FLASH_AREA_IMAGE_PRIMARY(image_index),
1627 &fap);
Tamas Banf70ef8c2017-12-19 15:35:09 +00001628 if (rc != 0) {
1629 return BOOT_EFLASH;
1630 }
1631
1632 rc = boot_write_copy_done(fap);
1633 flash_area_close(fap);
1634 return rc;
1635}
1636#endif /* !MCUBOOT_OVERWRITE_ONLY */
1637
1638/**
David Vincze8bdfc2d2019-03-18 15:49:23 +01001639 * Marks a reverted image in the primary slot as confirmed. This is necessary to
1640 * ensure the status bytes from the image revert operation don't get processed
1641 * on a subsequent boot.
Tamas Banf70ef8c2017-12-19 15:35:09 +00001642 *
1643 * NOTE: image_ok is tested before writing because if there's a valid permanent
David Vincze8bdfc2d2019-03-18 15:49:23 +01001644 * image installed on the primary slot and the new image to be upgrade to has a
1645 * bad sig, image_ok would be overwritten.
Tamas Banf70ef8c2017-12-19 15:35:09 +00001646 */
1647#ifndef MCUBOOT_OVERWRITE_ONLY
1648static int
David Vinczecea8b592019-10-29 16:09:51 +01001649boot_set_image_ok(uint8_t image_index)
Tamas Banf70ef8c2017-12-19 15:35:09 +00001650{
1651 const struct flash_area *fap;
1652 struct boot_swap_state state;
1653 int rc;
1654
David Vinczecea8b592019-10-29 16:09:51 +01001655 rc = flash_area_open(FLASH_AREA_IMAGE_PRIMARY(image_index),
1656 &fap);
Tamas Banf70ef8c2017-12-19 15:35:09 +00001657 if (rc != 0) {
1658 return BOOT_EFLASH;
1659 }
1660
1661 rc = boot_read_swap_state(fap, &state);
1662 if (rc != 0) {
1663 rc = BOOT_EFLASH;
1664 goto out;
1665 }
1666
1667 if (state.image_ok == BOOT_FLAG_UNSET) {
1668 rc = boot_write_image_ok(fap);
1669 }
1670
1671out:
1672 flash_area_close(fap);
1673 return rc;
1674}
1675#endif /* !MCUBOOT_OVERWRITE_ONLY */
1676
David Vinczebb6e3b62019-07-31 14:24:05 +02001677#if (BOOT_IMAGE_NUMBER > 1)
1678/**
David Vinczecea8b592019-10-29 16:09:51 +01001679 * Check if the version of the image is not older than required.
1680 *
1681 * @param req Required minimal image version.
1682 * @param ver Version of the image to be checked.
1683 *
1684 * @return 0 if the version is sufficient, nonzero otherwise.
1685 */
1686static int
1687boot_is_version_sufficient(struct image_version *req,
1688 struct image_version *ver)
1689{
1690 if (ver->iv_major > req->iv_major) {
1691 return 0;
1692 }
1693 if (ver->iv_major < req->iv_major) {
1694 return BOOT_EBADVERSION;
1695 }
1696 /* The major version numbers are equal. */
1697 if (ver->iv_minor > req->iv_minor) {
1698 return 0;
1699 }
1700 if (ver->iv_minor < req->iv_minor) {
1701 return BOOT_EBADVERSION;
1702 }
1703 /* The minor version numbers are equal. */
1704 if (ver->iv_revision < req->iv_revision) {
1705 return BOOT_EBADVERSION;
1706 }
1707
1708 return 0;
1709}
1710
1711/**
David Vinczebb6e3b62019-07-31 14:24:05 +02001712 * Check the image dependency whether it is satisfied and modify
1713 * the swap type if necessary.
1714 *
1715 * @param dep Image dependency which has to be verified.
1716 *
1717 * @return 0 on success; nonzero on failure.
1718 */
1719static int
David Vinczecea8b592019-10-29 16:09:51 +01001720boot_verify_slot_dependency(struct boot_loader_state *state,
1721 struct image_dependency *dep)
David Vinczebb6e3b62019-07-31 14:24:05 +02001722{
1723 struct image_version *dep_version;
1724 size_t dep_slot;
1725 int rc;
David Vinczecea8b592019-10-29 16:09:51 +01001726 uint8_t swap_type;
David Vinczebb6e3b62019-07-31 14:24:05 +02001727
1728 /* Determine the source of the image which is the subject of
1729 * the dependency and get it's version. */
David Vinczecea8b592019-10-29 16:09:51 +01001730 swap_type = state->swap_type[dep->image_id];
1731 dep_slot = (swap_type != BOOT_SWAP_TYPE_NONE) ?
David Vinczebb6e3b62019-07-31 14:24:05 +02001732 BOOT_SECONDARY_SLOT : BOOT_PRIMARY_SLOT;
David Vinczecea8b592019-10-29 16:09:51 +01001733 dep_version = &state->imgs[dep->image_id][dep_slot].hdr.ih_ver;
David Vinczebb6e3b62019-07-31 14:24:05 +02001734
1735 rc = boot_is_version_sufficient(&dep->image_min_version, dep_version);
1736 if (rc != 0) {
1737 /* Dependency not satisfied.
1738 * Modify the swap type to decrease the version number of the image
1739 * (which will be located in the primary slot after the boot process),
1740 * consequently the number of unsatisfied dependencies will be
1741 * decreased or remain the same.
1742 */
David Vinczecea8b592019-10-29 16:09:51 +01001743 switch (BOOT_SWAP_TYPE(state)) {
David Vinczebb6e3b62019-07-31 14:24:05 +02001744 case BOOT_SWAP_TYPE_TEST:
1745 case BOOT_SWAP_TYPE_PERM:
David Vinczecea8b592019-10-29 16:09:51 +01001746 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_NONE;
David Vinczebb6e3b62019-07-31 14:24:05 +02001747 break;
1748 case BOOT_SWAP_TYPE_NONE:
David Vinczecea8b592019-10-29 16:09:51 +01001749 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_REVERT;
David Vinczebb6e3b62019-07-31 14:24:05 +02001750 break;
1751 default:
1752 break;
1753 }
1754 }
1755
1756 return rc;
1757}
1758
1759/**
1760 * Read all dependency TLVs of an image from the flash and verify
1761 * one after another to see if they are all satisfied.
1762 *
1763 * @param slot Image slot number.
1764 *
1765 * @return 0 on success; nonzero on failure.
1766 */
1767static int
David Vinczecea8b592019-10-29 16:09:51 +01001768boot_verify_slot_dependencies(struct boot_loader_state *state, uint32_t slot)
David Vinczebb6e3b62019-07-31 14:24:05 +02001769{
1770 const struct flash_area *fap;
David Vincze07706a42019-12-12 18:20:12 +01001771 struct image_tlv_iter it;
David Vinczebb6e3b62019-07-31 14:24:05 +02001772 struct image_dependency dep;
1773 uint32_t off;
David Vincze07706a42019-12-12 18:20:12 +01001774 uint16_t len;
David Vinczecea8b592019-10-29 16:09:51 +01001775 int area_id;
David Vinczebb6e3b62019-07-31 14:24:05 +02001776 int rc;
1777
David Vinczecea8b592019-10-29 16:09:51 +01001778 area_id = flash_area_id_from_multi_image_slot(BOOT_CURR_IMG(state), slot);
1779 rc = flash_area_open(area_id, &fap);
David Vinczebb6e3b62019-07-31 14:24:05 +02001780 if (rc != 0) {
1781 rc = BOOT_EFLASH;
1782 goto done;
1783 }
1784
David Vincze07706a42019-12-12 18:20:12 +01001785 rc = bootutil_tlv_iter_begin(&it, boot_img_hdr(state, slot), fap,
1786 IMAGE_TLV_DEPENDENCY, true);
David Vinczebb6e3b62019-07-31 14:24:05 +02001787 if (rc != 0) {
David Vinczebb6e3b62019-07-31 14:24:05 +02001788 goto done;
1789 }
1790
David Vincze07706a42019-12-12 18:20:12 +01001791 while (true) {
1792 rc = bootutil_tlv_iter_next(&it, &off, &len, NULL);
1793 if (rc < 0) {
1794 return -1;
1795 } else if (rc > 0) {
1796 rc = 0;
David Vinczebb6e3b62019-07-31 14:24:05 +02001797 break;
1798 }
David Vincze07706a42019-12-12 18:20:12 +01001799
1800 if (len != sizeof(dep)) {
1801 rc = BOOT_EBADIMAGE;
1802 goto done;
1803 }
1804
1805 rc = flash_area_read(fap, off, &dep, len);
1806 if (rc != 0) {
1807 rc = BOOT_EFLASH;
1808 goto done;
1809 }
1810
1811 if (dep.image_id >= BOOT_IMAGE_NUMBER) {
1812 rc = BOOT_EBADARGS;
1813 goto done;
1814 }
1815
1816 /* Verify dependency and modify the swap type if not satisfied. */
1817 rc = boot_verify_slot_dependency(state, &dep);
1818 if (rc != 0) {
1819 /* Dependency not satisfied. */
1820 goto done;
Tamas Ban056ed0b2019-09-16 12:48:32 +01001821 }
David Vinczebb6e3b62019-07-31 14:24:05 +02001822 }
1823
1824done:
1825 flash_area_close(fap);
1826 return rc;
1827}
1828
1829/**
David Vinczebb6e3b62019-07-31 14:24:05 +02001830 * Iterate over all the images and verify whether the image dependencies in the
1831 * TLV area are all satisfied and update the related swap type if necessary.
1832 */
David Vinczecea8b592019-10-29 16:09:51 +01001833static int
1834boot_verify_dependencies(struct boot_loader_state *state)
David Vinczebb6e3b62019-07-31 14:24:05 +02001835{
David Vinczebb6e3b62019-07-31 14:24:05 +02001836 int rc;
David Vinczecea8b592019-10-29 16:09:51 +01001837 uint8_t slot;
David Vinczebb6e3b62019-07-31 14:24:05 +02001838
David Vinczecea8b592019-10-29 16:09:51 +01001839 BOOT_CURR_IMG(state) = 0;
1840 while (BOOT_CURR_IMG(state) < BOOT_IMAGE_NUMBER) {
1841 if (BOOT_SWAP_TYPE(state) != BOOT_SWAP_TYPE_NONE &&
1842 BOOT_SWAP_TYPE(state) != BOOT_SWAP_TYPE_FAIL) {
1843 slot = BOOT_SECONDARY_SLOT;
1844 } else {
1845 slot = BOOT_PRIMARY_SLOT;
1846 }
1847
1848 rc = boot_verify_slot_dependencies(state, slot);
David Vinczebb6e3b62019-07-31 14:24:05 +02001849 if (rc == 0) {
1850 /* All dependencies've been satisfied, continue with next image. */
David Vinczecea8b592019-10-29 16:09:51 +01001851 BOOT_CURR_IMG(state)++;
David Vinczebb6e3b62019-07-31 14:24:05 +02001852 } else if (rc == BOOT_EBADVERSION) {
David Vinczecea8b592019-10-29 16:09:51 +01001853 /* Cannot upgrade due to non-met dependencies, so disable all
1854 * image upgrades.
1855 */
1856 for (int idx = 0; idx < BOOT_IMAGE_NUMBER; idx++) {
1857 BOOT_CURR_IMG(state) = idx;
1858 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_NONE;
1859 }
1860 break;
David Vinczebb6e3b62019-07-31 14:24:05 +02001861 } else {
1862 /* Other error happened, images are inconsistent */
David Vinczecea8b592019-10-29 16:09:51 +01001863 return rc;
David Vinczebb6e3b62019-07-31 14:24:05 +02001864 }
1865 }
David Vinczecea8b592019-10-29 16:09:51 +01001866 return rc;
David Vinczebb6e3b62019-07-31 14:24:05 +02001867}
1868#endif /* (BOOT_IMAGE_NUMBER > 1) */
1869
Tamas Banf70ef8c2017-12-19 15:35:09 +00001870/**
David Vincze7384ee72019-07-23 17:00:42 +02001871 * Performs a clean (not aborted) image update.
Tamas Banf70ef8c2017-12-19 15:35:09 +00001872 *
David Vincze7384ee72019-07-23 17:00:42 +02001873 * @param bs The current boot status.
Tamas Banf70ef8c2017-12-19 15:35:09 +00001874 *
1875 * @return 0 on success; nonzero on failure.
1876 */
1877static int
David Vinczecea8b592019-10-29 16:09:51 +01001878boot_perform_update(struct boot_loader_state *state, struct boot_status *bs)
Tamas Banf70ef8c2017-12-19 15:35:09 +00001879{
Tamas Banf70ef8c2017-12-19 15:35:09 +00001880 int rc;
David Vinczecea8b592019-10-29 16:09:51 +01001881#ifndef MCUBOOT_OVERWRITE_ONLY
1882 uint8_t swap_type;
1883#endif
Tamas Banf70ef8c2017-12-19 15:35:09 +00001884
David Vincze7384ee72019-07-23 17:00:42 +02001885 /* At this point there are no aborted swaps. */
1886#if defined(MCUBOOT_OVERWRITE_ONLY)
David Vinczecea8b592019-10-29 16:09:51 +01001887 rc = boot_copy_image(state, bs);
David Vincze7384ee72019-07-23 17:00:42 +02001888#else
David Vinczecea8b592019-10-29 16:09:51 +01001889 rc = boot_swap_image(state, bs);
David Vincze7384ee72019-07-23 17:00:42 +02001890#endif
Tamas Banf70ef8c2017-12-19 15:35:09 +00001891 assert(rc == 0);
David Vincze7384ee72019-07-23 17:00:42 +02001892
1893#ifndef MCUBOOT_OVERWRITE_ONLY
1894 /* The following state needs image_ok be explicitly set after the
1895 * swap was finished to avoid a new revert.
1896 */
David Vinczecea8b592019-10-29 16:09:51 +01001897 swap_type = BOOT_SWAP_TYPE(state);
1898 if (swap_type == BOOT_SWAP_TYPE_REVERT ||
1899 swap_type == BOOT_SWAP_TYPE_PERM) {
1900 rc = boot_set_image_ok(BOOT_CURR_IMG(state));
David Vincze7384ee72019-07-23 17:00:42 +02001901 if (rc != 0) {
David Vinczecea8b592019-10-29 16:09:51 +01001902 BOOT_SWAP_TYPE(state) = swap_type = BOOT_SWAP_TYPE_PANIC;
David Vincze7384ee72019-07-23 17:00:42 +02001903 }
Tamas Banf70ef8c2017-12-19 15:35:09 +00001904 }
1905
David Vinczecea8b592019-10-29 16:09:51 +01001906 if (swap_type == BOOT_SWAP_TYPE_PERM) {
David Vincze7384ee72019-07-23 17:00:42 +02001907 /* Update the stored security counter with the new image's security
1908 * counter value. The primary slot holds the new image at this
1909 * point, but the secondary slot's image header must be passed
1910 * because the read image headers in the boot_data structure have
1911 * not been updated yet.
1912 *
1913 * In case of a permanent image swap mcuboot will never attempt to
1914 * revert the images on the next reboot. Therefore, the security
1915 * counter must be increased right after the image upgrade.
David Vincze401c7422019-06-21 20:44:05 +02001916 */
David Vinczecea8b592019-10-29 16:09:51 +01001917 rc = boot_update_security_counter(
1918 BOOT_CURR_IMG(state),
1919 BOOT_PRIMARY_SLOT,
1920 boot_img_hdr(state, BOOT_SECONDARY_SLOT));
David Vincze7384ee72019-07-23 17:00:42 +02001921 if (rc != 0) {
1922 BOOT_LOG_ERR("Security counter update failed after "
1923 "image upgrade.");
David Vinczecea8b592019-10-29 16:09:51 +01001924 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_PANIC;
Tamas Banf70ef8c2017-12-19 15:35:09 +00001925 }
1926 }
1927
David Vinczecea8b592019-10-29 16:09:51 +01001928 if (BOOT_IS_UPGRADE(swap_type)) {
1929 rc = boot_set_copy_done(BOOT_CURR_IMG(state));
David Vincze7384ee72019-07-23 17:00:42 +02001930 if (rc != 0) {
David Vinczecea8b592019-10-29 16:09:51 +01001931 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_PANIC;
David Vincze7384ee72019-07-23 17:00:42 +02001932 }
1933 }
1934#endif /* !MCUBOOT_OVERWRITE_ONLY */
1935
1936 return rc;
1937}
1938
1939/**
1940 * Completes a previously aborted image swap.
1941 *
1942 * @param bs The current boot status.
1943 *
1944 * @return 0 on success; nonzero on failure.
1945 */
1946#if !defined(MCUBOOT_OVERWRITE_ONLY)
1947static int
David Vinczecea8b592019-10-29 16:09:51 +01001948boot_complete_partial_swap(struct boot_loader_state *state,
1949 struct boot_status *bs)
David Vincze7384ee72019-07-23 17:00:42 +02001950{
1951 int rc;
1952
1953 /* Determine the type of swap operation being resumed from the
1954 * `swap-type` trailer field.
1955 */
David Vinczecea8b592019-10-29 16:09:51 +01001956 rc = boot_swap_image(state, bs);
David Vincze7384ee72019-07-23 17:00:42 +02001957 assert(rc == 0);
1958
David Vinczecea8b592019-10-29 16:09:51 +01001959 BOOT_SWAP_TYPE(state) = bs->swap_type;
David Vincze7384ee72019-07-23 17:00:42 +02001960
1961 /* The following states need image_ok be explicitly set after the
1962 * swap was finished to avoid a new revert.
1963 */
1964 if (bs->swap_type == BOOT_SWAP_TYPE_REVERT ||
1965 bs->swap_type == BOOT_SWAP_TYPE_PERM) {
David Vinczecea8b592019-10-29 16:09:51 +01001966 rc = boot_set_image_ok(BOOT_CURR_IMG(state));
David Vincze7384ee72019-07-23 17:00:42 +02001967 if (rc != 0) {
David Vinczecea8b592019-10-29 16:09:51 +01001968 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_PANIC;
David Vincze7384ee72019-07-23 17:00:42 +02001969 }
1970 }
1971
David Vinczecea8b592019-10-29 16:09:51 +01001972 if (BOOT_IS_UPGRADE(bs->swap_type)) {
1973 rc = boot_set_copy_done(BOOT_CURR_IMG(state));
David Vincze7384ee72019-07-23 17:00:42 +02001974 if (rc != 0) {
David Vinczecea8b592019-10-29 16:09:51 +01001975 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_PANIC;
David Vincze7384ee72019-07-23 17:00:42 +02001976 }
1977 }
1978
David Vinczecea8b592019-10-29 16:09:51 +01001979 if (BOOT_SWAP_TYPE(state) == BOOT_SWAP_TYPE_PANIC) {
David Vincze7384ee72019-07-23 17:00:42 +02001980 BOOT_LOG_ERR("panic!");
1981 assert(0);
1982
1983 /* Loop forever... */
1984 while (1) {}
1985 }
1986
1987 return rc;
1988}
1989#endif /* !MCUBOOT_OVERWRITE_ONLY */
1990
1991#if (BOOT_IMAGE_NUMBER > 1)
1992/**
1993 * Review the validity of previously determined swap types of other images.
1994 *
1995 * @param aborted_swap The current image upgrade is a
1996 * partial/aborted swap.
1997 */
1998static void
David Vinczecea8b592019-10-29 16:09:51 +01001999boot_review_image_swap_types(struct boot_loader_state *state,
2000 bool aborted_swap)
David Vincze7384ee72019-07-23 17:00:42 +02002001{
2002 /* In that case if we rebooted in the middle of an image upgrade process, we
2003 * must review the validity of swap types, that were previously determined
2004 * for other images. The image_ok flag had not been set before the reboot
2005 * for any of the updated images (only the copy_done flag) and thus falsely
2006 * the REVERT swap type has been determined for the previous images that had
2007 * been updated before the reboot.
2008 *
2009 * There are two separate scenarios that we have to deal with:
2010 *
2011 * 1. The reboot has happened during swapping an image:
2012 * The current image upgrade has been determined as a
2013 * partial/aborted swap.
2014 * 2. The reboot has happened between two separate image upgrades:
2015 * In this scenario we must check the swap type of the current image.
2016 * In those cases if it is NONE or REVERT we cannot certainly determine
2017 * the fact of a reboot. In a consistent state images must move in the
2018 * same direction or stay in place, e.g. in practice REVERT and TEST
2019 * swap types cannot be present at the same time. If the swap type of
2020 * the current image is either TEST, PERM or FAIL we must review the
2021 * already determined swap types of other images and set each false
2022 * REVERT swap types to NONE (these images had been successfully
2023 * updated before the system rebooted between two separate image
2024 * upgrades).
2025 */
2026
David Vinczecea8b592019-10-29 16:09:51 +01002027 if (BOOT_CURR_IMG(state) == 0) {
David Vincze7384ee72019-07-23 17:00:42 +02002028 /* Nothing to do */
2029 return;
2030 }
2031
2032 if (!aborted_swap) {
David Vinczecea8b592019-10-29 16:09:51 +01002033 if ((BOOT_SWAP_TYPE(state) == BOOT_SWAP_TYPE_NONE) ||
2034 (BOOT_SWAP_TYPE(state) == BOOT_SWAP_TYPE_REVERT)) {
David Vincze7384ee72019-07-23 17:00:42 +02002035 /* Nothing to do */
2036 return;
2037 }
2038 }
2039
David Vinczecea8b592019-10-29 16:09:51 +01002040 for (uint8_t i = 0; i < BOOT_CURR_IMG(state); i++) {
2041 if (state->swap_type[i] == BOOT_SWAP_TYPE_REVERT) {
2042 state->swap_type[i] = BOOT_SWAP_TYPE_NONE;
David Vincze7384ee72019-07-23 17:00:42 +02002043 }
2044 }
2045}
2046#endif
2047
2048/**
2049 * Prepare image to be updated if required.
2050 *
2051 * Prepare image to be updated if required with completing an image swap
2052 * operation if one was aborted and/or determining the type of the
2053 * swap operation. In case of any error set the swap type to NONE.
2054 *
David Vinczecea8b592019-10-29 16:09:51 +01002055 * @param state Boot loader status information.
David Vincze7384ee72019-07-23 17:00:42 +02002056 * @param bs Pointer where the read and possibly updated
2057 * boot status can be written to.
2058 */
2059static void
David Vinczecea8b592019-10-29 16:09:51 +01002060boot_prepare_image_for_update(struct boot_loader_state *state,
2061 struct boot_status *bs)
David Vincze7384ee72019-07-23 17:00:42 +02002062{
2063 int rc;
2064
2065 /* Determine the sector layout of the image slots and scratch area. */
David Vinczecea8b592019-10-29 16:09:51 +01002066 rc = boot_read_sectors(state);
David Vincze7384ee72019-07-23 17:00:42 +02002067 if (rc != 0) {
2068 BOOT_LOG_WRN("Failed reading sectors; BOOT_MAX_IMG_SECTORS=%d"
2069 " - too small?", BOOT_MAX_IMG_SECTORS);
2070 /* Unable to determine sector layout, continue with next image
2071 * if there is one.
2072 */
David Vinczecea8b592019-10-29 16:09:51 +01002073 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_NONE;
David Vincze7384ee72019-07-23 17:00:42 +02002074 return;
2075 }
2076
2077 /* Attempt to read an image header from each slot. */
David Vinczecea8b592019-10-29 16:09:51 +01002078 rc = boot_read_image_headers(state, false);
David Vincze7384ee72019-07-23 17:00:42 +02002079 if (rc != 0) {
2080 /* Continue with next image if there is one. */
David Vinczecea8b592019-10-29 16:09:51 +01002081 BOOT_LOG_WRN("Failed reading image headers; Image=%u",
2082 BOOT_CURR_IMG(state));
2083 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_NONE;
David Vincze7384ee72019-07-23 17:00:42 +02002084 return;
2085 }
2086
2087 /* If the current image's slots aren't compatible, no swap is possible.
2088 * Just boot into primary slot.
2089 */
David Vinczecea8b592019-10-29 16:09:51 +01002090 if (boot_slots_compatible(state)) {
2091 rc = boot_read_status(state, bs);
David Vincze7384ee72019-07-23 17:00:42 +02002092 if (rc != 0) {
2093 BOOT_LOG_WRN("Failed reading boot status; Image=%u",
David Vinczecea8b592019-10-29 16:09:51 +01002094 BOOT_CURR_IMG(state));
David Vincze7384ee72019-07-23 17:00:42 +02002095 /* Continue with next image if there is one. */
David Vinczecea8b592019-10-29 16:09:51 +01002096 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_NONE;
David Vincze7384ee72019-07-23 17:00:42 +02002097 return;
2098 }
2099
2100 /* Determine if we rebooted in the middle of an image swap
2101 * operation. If a partial swap was detected, complete it.
2102 */
2103 if (bs->idx != BOOT_STATUS_IDX_0 || bs->state != BOOT_STATUS_STATE_0) {
2104
2105#if (BOOT_IMAGE_NUMBER > 1)
David Vinczecea8b592019-10-29 16:09:51 +01002106 boot_review_image_swap_types(state, true);
David Vincze7384ee72019-07-23 17:00:42 +02002107#endif
2108
2109#ifdef MCUBOOT_OVERWRITE_ONLY
2110 /* Should never arrive here, overwrite-only mode has
2111 * no swap state.
2112 */
2113 assert(0);
2114#else
2115 /* Determine the type of swap operation being resumed from the
2116 * `swap-type` trailer field.
2117 */
David Vinczecea8b592019-10-29 16:09:51 +01002118 rc = boot_complete_partial_swap(state, bs);
David Vincze7384ee72019-07-23 17:00:42 +02002119 assert(rc == 0);
2120#endif
2121 /* Attempt to read an image header from each slot. Ensure that
2122 * image headers in slots are aligned with headers in boot_data.
2123 */
David Vinczecea8b592019-10-29 16:09:51 +01002124 rc = boot_read_image_headers(state, false);
David Vincze7384ee72019-07-23 17:00:42 +02002125 assert(rc == 0);
2126
2127 /* Swap has finished set to NONE */
David Vinczecea8b592019-10-29 16:09:51 +01002128 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_NONE;
David Vincze7384ee72019-07-23 17:00:42 +02002129 } else {
2130 /* There was no partial swap, determine swap type. */
2131 if (bs->swap_type == BOOT_SWAP_TYPE_NONE) {
David Vinczecea8b592019-10-29 16:09:51 +01002132 BOOT_SWAP_TYPE(state) = boot_validated_swap_type(state, bs);
2133 } else if (boot_validate_slot(state,
2134 BOOT_SECONDARY_SLOT, bs) != 0) {
2135 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_FAIL;
David Vincze7384ee72019-07-23 17:00:42 +02002136 } else {
David Vinczecea8b592019-10-29 16:09:51 +01002137 BOOT_SWAP_TYPE(state) = bs->swap_type;
David Vincze7384ee72019-07-23 17:00:42 +02002138 }
2139
2140#if (BOOT_IMAGE_NUMBER > 1)
David Vinczecea8b592019-10-29 16:09:51 +01002141 boot_review_image_swap_types(state, false);
David Vincze7384ee72019-07-23 17:00:42 +02002142#endif
2143 }
2144 } else {
2145 /* In that case if slots are not compatible. */
David Vinczecea8b592019-10-29 16:09:51 +01002146 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_NONE;
David Vincze7384ee72019-07-23 17:00:42 +02002147 }
Tamas Banf70ef8c2017-12-19 15:35:09 +00002148}
2149
2150/**
2151 * Prepares the booting process. This function moves images around in flash as
2152 * appropriate, and tells you what address to boot from.
2153 *
David Vinczecea8b592019-10-29 16:09:51 +01002154 * @param state Boot loader status information.
Tamas Banf70ef8c2017-12-19 15:35:09 +00002155 * @param rsp On success, indicates how booting should occur.
2156 *
2157 * @return 0 on success; nonzero on failure.
2158 */
2159int
David Vinczecea8b592019-10-29 16:09:51 +01002160context_boot_go(struct boot_loader_state *state, struct boot_rsp *rsp)
Tamas Banf70ef8c2017-12-19 15:35:09 +00002161{
Tamas Banf70ef8c2017-12-19 15:35:09 +00002162 size_t slot;
David Vincze7384ee72019-07-23 17:00:42 +02002163 struct boot_status bs;
Tamas Ban4e5ed8d2019-09-17 09:31:11 +01002164 int rc = 0;
Tamas Banf70ef8c2017-12-19 15:35:09 +00002165 int fa_id;
David Vinczecea8b592019-10-29 16:09:51 +01002166 int image_index;
2167 bool has_upgrade;
Tamas Banf70ef8c2017-12-19 15:35:09 +00002168
2169 /* The array of slot sectors are defined here (as opposed to file scope) so
2170 * that they don't get allocated for non-boot-loader apps. This is
2171 * necessary because the gcc option "-fdata-sections" doesn't seem to have
2172 * any effect in older gcc versions (e.g., 4.8.4).
2173 */
David Vincze7384ee72019-07-23 17:00:42 +02002174 static boot_sector_t
2175 primary_slot_sectors[BOOT_IMAGE_NUMBER][BOOT_MAX_IMG_SECTORS];
2176 static boot_sector_t
2177 secondary_slot_sectors[BOOT_IMAGE_NUMBER][BOOT_MAX_IMG_SECTORS];
David Vincze401c7422019-06-21 20:44:05 +02002178 static boot_sector_t scratch_sectors[BOOT_MAX_IMG_SECTORS];
Tamas Banf70ef8c2017-12-19 15:35:09 +00002179
David Vincze7384ee72019-07-23 17:00:42 +02002180 /* Iterate over all the images. By the end of the loop the swap type has
2181 * to be determined for each image and all aborted swaps have to be
2182 * completed.
Tamas Banf70ef8c2017-12-19 15:35:09 +00002183 */
David Vinczecea8b592019-10-29 16:09:51 +01002184 IMAGES_ITER(BOOT_CURR_IMG(state)) {
2185
2186 image_index = BOOT_CURR_IMG(state);
2187
2188 BOOT_IMG(state, BOOT_PRIMARY_SLOT).sectors =
2189 primary_slot_sectors[image_index];
2190 BOOT_IMG(state, BOOT_SECONDARY_SLOT).sectors =
2191 secondary_slot_sectors[image_index];
2192 state->scratch.sectors = scratch_sectors;
Tamas Banf70ef8c2017-12-19 15:35:09 +00002193
David Vincze7384ee72019-07-23 17:00:42 +02002194 /* Open primary and secondary image areas for the duration
2195 * of this call.
Tamas Banf70ef8c2017-12-19 15:35:09 +00002196 */
David Vincze7384ee72019-07-23 17:00:42 +02002197 for (slot = 0; slot < BOOT_NUM_SLOTS; slot++) {
David Vinczecea8b592019-10-29 16:09:51 +01002198 fa_id = flash_area_id_from_multi_image_slot(image_index, slot);
2199 rc = flash_area_open(fa_id, &BOOT_IMG_AREA(state, slot));
David Vincze7384ee72019-07-23 17:00:42 +02002200 assert(rc == 0);
2201 }
2202 rc = flash_area_open(FLASH_AREA_IMAGE_SCRATCH,
David Vinczecea8b592019-10-29 16:09:51 +01002203 &BOOT_SCRATCH_AREA(state));
David Vincze7384ee72019-07-23 17:00:42 +02002204 assert(rc == 0);
2205
2206 /* Determine swap type and complete swap if it has been aborted. */
David Vinczecea8b592019-10-29 16:09:51 +01002207 boot_prepare_image_for_update(state, &bs);
2208
2209 if (BOOT_IS_UPGRADE(BOOT_SWAP_TYPE(state))) {
2210 has_upgrade = true;
2211 }
David Vincze7384ee72019-07-23 17:00:42 +02002212 }
2213
David Vinczebb6e3b62019-07-31 14:24:05 +02002214#if (BOOT_IMAGE_NUMBER > 1)
David Vinczecea8b592019-10-29 16:09:51 +01002215 if (has_upgrade) {
2216 /* Iterate over all the images and verify whether the image dependencies
2217 * are all satisfied and update swap type if necessary.
2218 */
2219 rc = boot_verify_dependencies(state);
2220 if (rc == BOOT_EBADVERSION) {
2221 /*
2222 * It was impossible to upgrade because the expected dependency
2223 * version was not available. Here we already changed the swap_type
2224 * so that instead of asserting the bootloader, we continue and no
2225 * upgrade is performed.
2226 */
2227 rc = 0;
2228 }
2229 }
David Vinczebb6e3b62019-07-31 14:24:05 +02002230#endif
2231
David Vincze7384ee72019-07-23 17:00:42 +02002232 /* Iterate over all the images. At this point there are no aborted swaps
2233 * and the swap types are determined for each image. By the end of the loop
2234 * all required update operations will have been finished.
2235 */
David Vinczecea8b592019-10-29 16:09:51 +01002236 IMAGES_ITER(BOOT_CURR_IMG(state)) {
David Vincze7384ee72019-07-23 17:00:42 +02002237
2238#if (BOOT_IMAGE_NUMBER > 1)
2239 /* Indicate that swap is not aborted */
2240 memset(&bs, 0, sizeof bs);
2241 bs.idx = BOOT_STATUS_IDX_0;
2242 bs.state = BOOT_STATUS_STATE_0;
2243#endif /* (BOOT_IMAGE_NUMBER > 1) */
2244
2245 /* Set the previously determined swap type */
David Vinczecea8b592019-10-29 16:09:51 +01002246 bs.swap_type = BOOT_SWAP_TYPE(state);
David Vincze7384ee72019-07-23 17:00:42 +02002247
David Vinczecea8b592019-10-29 16:09:51 +01002248 switch (BOOT_SWAP_TYPE(state)) {
David Vincze7384ee72019-07-23 17:00:42 +02002249 case BOOT_SWAP_TYPE_NONE:
2250 break;
2251
2252 case BOOT_SWAP_TYPE_TEST: /* fallthrough */
2253 case BOOT_SWAP_TYPE_PERM: /* fallthrough */
2254 case BOOT_SWAP_TYPE_REVERT:
David Vinczecea8b592019-10-29 16:09:51 +01002255 rc = boot_perform_update(state, &bs);
David Vincze7384ee72019-07-23 17:00:42 +02002256 assert(rc == 0);
2257 break;
2258
2259 case BOOT_SWAP_TYPE_FAIL:
2260 /* The image in secondary slot was invalid and is now erased. Ensure
2261 * we don't try to boot into it again on the next reboot. Do this by
2262 * pretending we just reverted back to primary slot.
2263 */
Tamas Banf70ef8c2017-12-19 15:35:09 +00002264#ifndef MCUBOOT_OVERWRITE_ONLY
David Vincze7384ee72019-07-23 17:00:42 +02002265 /* image_ok needs to be explicitly set to avoid a new revert. */
David Vinczecea8b592019-10-29 16:09:51 +01002266 rc = boot_set_image_ok(BOOT_CURR_IMG(state));
Tamas Banf70ef8c2017-12-19 15:35:09 +00002267 if (rc != 0) {
David Vinczecea8b592019-10-29 16:09:51 +01002268 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_PANIC;
Tamas Banf70ef8c2017-12-19 15:35:09 +00002269 }
2270#endif /* !MCUBOOT_OVERWRITE_ONLY */
David Vincze7384ee72019-07-23 17:00:42 +02002271 break;
2272
2273 default:
David Vinczecea8b592019-10-29 16:09:51 +01002274 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_PANIC;
Tamas Banf70ef8c2017-12-19 15:35:09 +00002275 }
David Vincze7384ee72019-07-23 17:00:42 +02002276
David Vinczecea8b592019-10-29 16:09:51 +01002277 if (BOOT_SWAP_TYPE(state) == BOOT_SWAP_TYPE_PANIC) {
David Vincze7384ee72019-07-23 17:00:42 +02002278 BOOT_LOG_ERR("panic!");
2279 assert(0);
2280
2281 /* Loop forever... */
2282 while (1) {}
2283 }
Tamas Banf70ef8c2017-12-19 15:35:09 +00002284 }
2285
David Vincze7384ee72019-07-23 17:00:42 +02002286 /* Iterate over all the images. At this point all required update operations
2287 * have finished. By the end of the loop each image in the primary slot will
2288 * have been re-validated.
2289 */
David Vinczecea8b592019-10-29 16:09:51 +01002290 IMAGES_ITER(BOOT_CURR_IMG(state)) {
2291 if (BOOT_SWAP_TYPE(state) != BOOT_SWAP_TYPE_NONE) {
David Vincze7384ee72019-07-23 17:00:42 +02002292 /* Attempt to read an image header from each slot. Ensure that image
2293 * headers in slots are aligned with headers in boot_data.
David Vincze060968d2019-05-23 01:13:14 +02002294 */
David Vinczecea8b592019-10-29 16:09:51 +01002295 rc = boot_read_image_headers(state, false);
David Vincze060968d2019-05-23 01:13:14 +02002296 if (rc != 0) {
David Vincze7384ee72019-07-23 17:00:42 +02002297 goto out;
2298 }
2299 /* Since headers were reloaded, it can be assumed we just performed
2300 * a swap or overwrite. Now the header info that should be used to
2301 * provide the data for the bootstrap, which previously was at
2302 * secondary slot, was updated to primary slot.
2303 */
2304 }
2305
2306#ifdef MCUBOOT_VALIDATE_PRIMARY_SLOT
David Vinczecea8b592019-10-29 16:09:51 +01002307 rc = boot_validate_slot(state, BOOT_PRIMARY_SLOT, NULL);
David Vincze7384ee72019-07-23 17:00:42 +02002308 if (rc != 0) {
2309 rc = BOOT_EBADIMAGE;
2310 goto out;
2311 }
2312#else
2313 /* Even if we're not re-validating the primary slot, we could be booting
2314 * onto an empty flash chip. At least do a basic sanity check that
2315 * the magic number on the image is OK.
2316 */
David Vinczecea8b592019-10-29 16:09:51 +01002317 if (!BOOT_IMG_HDR_IS_VALID(state, BOOT_PRIMARY_SLOT)) {
2318 BOOT_LOG_ERR("bad image magic 0x%lx; Image=%u", (unsigned long)
2319 &boot_img_hdr(state, BOOT_PRIMARY_SLOT)->ih_magic,
2320 BOOT_CURR_IMG(state));
David Vincze7384ee72019-07-23 17:00:42 +02002321 rc = BOOT_EBADIMAGE;
2322 goto out;
2323 }
2324#endif /* MCUBOOT_VALIDATE_PRIMARY_SLOT */
2325
2326 /* Update the stored security counter with the active image's security
2327 * counter value. It will be updated only if the new security counter is
2328 * greater than the stored value.
2329 *
2330 * In case of a successful image swapping when the swap type is TEST the
2331 * security counter can be increased only after a reset, when the swap
2332 * type is NONE and the image has marked itself "OK" (the image_ok flag
2333 * has been set). This way a "revert" swap can be performed if it's
2334 * necessary.
2335 */
David Vinczecea8b592019-10-29 16:09:51 +01002336 if (BOOT_SWAP_TYPE(state) == BOOT_SWAP_TYPE_NONE) {
2337 rc = boot_update_security_counter(
2338 BOOT_CURR_IMG(state),
2339 BOOT_PRIMARY_SLOT,
2340 boot_img_hdr(state, BOOT_PRIMARY_SLOT));
David Vincze7384ee72019-07-23 17:00:42 +02002341 if (rc != 0) {
2342 BOOT_LOG_ERR("Security counter update failed after image "
2343 "validation.");
David Vincze060968d2019-05-23 01:13:14 +02002344 goto out;
2345 }
2346 }
2347
David Vincze7384ee72019-07-23 17:00:42 +02002348 /* Save boot status to shared memory area */
2349#if (BOOT_IMAGE_NUMBER > 1)
David Vinczecea8b592019-10-29 16:09:51 +01002350 rc = boot_save_boot_status((BOOT_CURR_IMG(state) == 0) ?
2351 SW_SPE : SW_NSPE,
2352 boot_img_hdr(state, BOOT_PRIMARY_SLOT),
2353 BOOT_IMG_AREA(state, BOOT_PRIMARY_SLOT)
David Vincze7384ee72019-07-23 17:00:42 +02002354 );
David Vincze8bdfc2d2019-03-18 15:49:23 +01002355#else
David Vincze7384ee72019-07-23 17:00:42 +02002356 rc = boot_save_boot_status(SW_S_NS,
David Vinczecea8b592019-10-29 16:09:51 +01002357 boot_img_hdr(state, BOOT_PRIMARY_SLOT),
2358 BOOT_IMG_AREA(state, BOOT_PRIMARY_SLOT)
David Vincze7384ee72019-07-23 17:00:42 +02002359 );
2360#endif
2361 if (rc) {
2362 BOOT_LOG_ERR("Failed to add Image %u data to shared area",
David Vinczecea8b592019-10-29 16:09:51 +01002363 BOOT_CURR_IMG(state));
David Vincze060968d2019-05-23 01:13:14 +02002364 }
2365 }
2366
David Vinczecea8b592019-10-29 16:09:51 +01002367#if (BOOT_IMAGE_NUMBER > 1)
David Vincze7384ee72019-07-23 17:00:42 +02002368 /* Always boot from the primary slot of Image 0. */
David Vinczecea8b592019-10-29 16:09:51 +01002369 BOOT_CURR_IMG(state) = 0;
2370#endif
Tamas Ban0e8ab302019-01-17 11:45:31 +00002371
David Vinczecea8b592019-10-29 16:09:51 +01002372 rsp->br_flash_dev_id =
2373 BOOT_IMG_AREA(state, BOOT_PRIMARY_SLOT)->fa_device_id;
2374 rsp->br_image_off =
2375 boot_img_slot_off(state, BOOT_PRIMARY_SLOT);
2376 rsp->br_hdr =
2377 boot_img_hdr(state, BOOT_PRIMARY_SLOT);
2378
2379out:
2380 IMAGES_ITER(BOOT_CURR_IMG(state)) {
2381 flash_area_close(BOOT_SCRATCH_AREA(state));
David Vincze7384ee72019-07-23 17:00:42 +02002382 for (slot = 0; slot < BOOT_NUM_SLOTS; slot++) {
David Vinczecea8b592019-10-29 16:09:51 +01002383 flash_area_close(BOOT_IMG_AREA(state,
David Vincze7384ee72019-07-23 17:00:42 +02002384 BOOT_NUM_SLOTS - 1 - slot));
2385 }
Tamas Banf70ef8c2017-12-19 15:35:09 +00002386 }
2387 return rc;
2388}
Tamas Ban4fb8e9d2018-02-23 14:22:03 +00002389
Oliver Swedef9982442018-08-24 18:37:44 +01002390#else /* MCUBOOT_NO_SWAP || MCUBOOT_RAM_LOADING */
Tamas Ban4fb8e9d2018-02-23 14:22:03 +00002391
David Vinczedcba70b2019-05-28 12:02:52 +02002392#define BOOT_LOG_IMAGE_INFO(area, hdr, state) \
2393 BOOT_LOG_INF("Image %u: version=%u.%u.%u+%u, magic=%5s, image_ok=0x%x", \
2394 (area), \
2395 (hdr)->ih_ver.iv_major, \
2396 (hdr)->ih_ver.iv_minor, \
2397 (hdr)->ih_ver.iv_revision, \
2398 (hdr)->ih_ver.iv_build_num, \
2399 ((state)->magic == BOOT_MAGIC_GOOD ? "good" : \
2400 (state)->magic == BOOT_MAGIC_UNSET ? "unset" : \
2401 "bad"), \
Tamas Ban4fb8e9d2018-02-23 14:22:03 +00002402 (state)->image_ok)
2403
2404struct image_slot_version {
2405 uint64_t version;
2406 uint32_t slot_number;
2407};
2408
2409/**
2410 * Extract the version number from the image header. This function must be
2411 * ported if version number format has changed in the image header.
2412 *
2413 * @param hdr Pointer to an image header structure
2414 *
Oliver Swedef9982442018-08-24 18:37:44 +01002415 * @return Version number casted to uint64_t
Tamas Ban4fb8e9d2018-02-23 14:22:03 +00002416 */
2417static uint64_t
2418boot_get_version_number(struct image_header *hdr)
2419{
Oliver Swedef9982442018-08-24 18:37:44 +01002420 uint64_t version = 0;
2421 version |= (uint64_t)hdr->ih_ver.iv_major << (IMAGE_VER_MINOR_LENGTH
2422 + IMAGE_VER_REVISION_LENGTH
2423 + IMAGE_VER_BUILD_NUM_LENGTH);
2424 version |= (uint64_t)hdr->ih_ver.iv_minor << (IMAGE_VER_REVISION_LENGTH
2425 + IMAGE_VER_BUILD_NUM_LENGTH);
2426 version |= (uint64_t)hdr->ih_ver.iv_revision << IMAGE_VER_BUILD_NUM_LENGTH;
2427 version |= hdr->ih_ver.iv_build_num;
2428 return version;
Tamas Ban4fb8e9d2018-02-23 14:22:03 +00002429}
2430
2431/**
2432 * Comparator function for `qsort` to compare version numbers. This function
2433 * must be ported if version number format has changed in the image header.
2434 *
2435 * @param ver1 Pointer to an array element which holds the version number
2436 * @param ver2 Pointer to another array element which holds the version
2437 * number
2438 *
2439 * @return if version1 > version2 -1
2440 * if version1 == version2 0
2441 * if version1 < version2 1
2442 */
2443static int
2444boot_compare_version_numbers(const void *ver1, const void *ver2)
2445{
2446 if (((struct image_slot_version *)ver1)->version <
2447 ((struct image_slot_version *)ver2)->version) {
2448 return 1;
2449 }
2450
2451 if (((struct image_slot_version *)ver1)->version ==
2452 ((struct image_slot_version *)ver2)->version) {
2453 return 0;
2454 }
2455
2456 return -1;
2457}
2458
2459/**
2460 * Sort the available images based on the version number and puts them in
2461 * a list.
2462 *
David Vinczecea8b592019-10-29 16:09:51 +01002463 * @param state Boot loader status information.
Tamas Ban4fb8e9d2018-02-23 14:22:03 +00002464 * @param boot_sequence A pointer to an array, whose aim is to carry
2465 * the boot order of candidate images.
2466 * @param slot_cnt The number of flash areas, which can contains firmware
2467 * images.
2468 *
2469 * @return The number of valid images.
2470 */
2471uint32_t
David Vinczecea8b592019-10-29 16:09:51 +01002472boot_get_boot_sequence(struct boot_loader_state *state,
2473 uint32_t *boot_sequence, uint32_t slot_cnt)
Tamas Ban4fb8e9d2018-02-23 14:22:03 +00002474{
2475 struct boot_swap_state slot_state;
2476 struct image_header *hdr;
2477 struct image_slot_version image_versions[BOOT_NUM_SLOTS] = {{0}};
2478 uint32_t image_cnt = 0;
2479 uint32_t slot;
2480 int32_t rc;
2481 int32_t fa_id;
2482
2483 for (slot = 0; slot < slot_cnt; slot++) {
David Vinczecea8b592019-10-29 16:09:51 +01002484 hdr = boot_img_hdr(state, slot);
Tamas Ban4fb8e9d2018-02-23 14:22:03 +00002485 fa_id = flash_area_id_from_image_slot(slot);
2486 rc = boot_read_swap_state_by_id(fa_id, &slot_state);
2487 if (rc != 0) {
David Vinczedcba70b2019-05-28 12:02:52 +02002488 BOOT_LOG_ERR("Error during reading image trailer from slot: %u",
2489 slot);
Tamas Ban4fb8e9d2018-02-23 14:22:03 +00002490 continue;
2491 }
2492
David Vinczecea8b592019-10-29 16:09:51 +01002493 if (BOOT_IMG_HDR_IS_VALID(state, slot)) {
Tamas Ban4fb8e9d2018-02-23 14:22:03 +00002494 if (slot_state.magic == BOOT_MAGIC_GOOD ||
David Vincze39e78552018-10-10 17:10:01 +02002495 slot_state.image_ok == BOOT_FLAG_SET) {
Tamas Ban4fb8e9d2018-02-23 14:22:03 +00002496 /* Valid cases:
2497 * - Test mode: magic is OK in image trailer
2498 * - Permanent mode: image_ok flag has previously set
2499 */
2500 image_versions[slot].slot_number = slot;
2501 image_versions[slot].version = boot_get_version_number(hdr);
2502 image_cnt++;
2503 }
2504
Tamas Ban4fb8e9d2018-02-23 14:22:03 +00002505 BOOT_LOG_IMAGE_INFO(slot, hdr, &slot_state);
2506 } else {
David Vinczedcba70b2019-05-28 12:02:52 +02002507 BOOT_LOG_INF("Image %u: No valid image", slot);
Tamas Ban4fb8e9d2018-02-23 14:22:03 +00002508 }
2509 }
2510
2511 /* Sort the images based on version number */
2512 qsort(&image_versions[0],
2513 slot_cnt,
2514 sizeof(struct image_slot_version),
2515 boot_compare_version_numbers);
2516
2517 /* Copy the calculated boot sequence to boot_sequence array */
2518 for (slot = 0; slot < slot_cnt; slot++) {
2519 boot_sequence[slot] = image_versions[slot].slot_number;
2520 }
2521
2522 return image_cnt;
2523}
2524
Oliver Swedef9982442018-08-24 18:37:44 +01002525#ifdef MCUBOOT_RAM_LOADING
Raef Colesaf082382019-10-01 11:10:33 +01002526
2527/**
2528 * Verifies that the image in a slot lies within the predefined bounds that are
2529 * allowed to be used by executable images.
2530 *
2531 * @param img_dst The address to which the image is going to be copied.
2532 *
2533 * @param img_sz The size of the image.
2534 *
2535 * @return 0 on success; nonzero on failure.
2536 */
2537static int
2538boot_verify_ram_loading_address(uint32_t img_dst, uint32_t img_sz)
2539{
David Vincze0dc41d22019-10-28 14:56:29 +01002540 uint32_t img_end_addr;
2541
Raef Colesaf082382019-10-01 11:10:33 +01002542 if (img_dst < IMAGE_EXECUTABLE_RAM_START) {
2543 return BOOT_EBADIMAGE;
2544 }
2545
David Vincze0dc41d22019-10-28 14:56:29 +01002546 if (!boot_u32_safe_add(&img_end_addr, img_dst, img_sz)) {
Raef Colesaf082382019-10-01 11:10:33 +01002547 return BOOT_EBADIMAGE;
2548 }
2549
David Vincze0dc41d22019-10-28 14:56:29 +01002550 if (img_end_addr > (IMAGE_EXECUTABLE_RAM_START +
2551 IMAGE_EXECUTABLE_RAM_SIZE)) {
Raef Colesaf082382019-10-01 11:10:33 +01002552 return BOOT_EBADIMAGE;
2553 }
2554
2555 return 0;
2556}
2557
Oliver Swedef9982442018-08-24 18:37:44 +01002558/**
2559 * Copies an image from a slot in the flash to an SRAM address, where the load
2560 * address has already been inserted into the image header by this point and is
2561 * extracted from it within this method. The copying is done sector-by-sector.
2562 *
David Vinczecea8b592019-10-29 16:09:51 +01002563 * @param state Boot loader status information.
Oliver Swedef9982442018-08-24 18:37:44 +01002564 * @param slot The flash slot of the image to be copied to SRAM.
2565 *
2566 * @param hdr Pointer to the image header structure of the image
Raef Colesaf082382019-10-01 11:10:33 +01002567 *
2568 * @param img_dst The address at which the image needs to be copied to
2569 * SRAM.
2570 *
2571 * @param img_sz The size of the image that needs to be copied to SRAM.
Oliver Swedef9982442018-08-24 18:37:44 +01002572 *
2573 * @return 0 on success; nonzero on failure.
2574 */
2575static int
David Vinczecea8b592019-10-29 16:09:51 +01002576boot_copy_image_to_sram(struct boot_loader_state *state, int slot,
2577 struct image_header *hdr,
Raef Colesaf082382019-10-01 11:10:33 +01002578 uint32_t img_dst, uint32_t img_sz)
Oliver Swedef9982442018-08-24 18:37:44 +01002579{
2580 int rc;
2581 uint32_t sect_sz;
2582 uint32_t sect = 0;
2583 uint32_t bytes_copied = 0;
2584 const struct flash_area *fap_src = NULL;
Oliver Swedef9982442018-08-24 18:37:44 +01002585
Raef Colesaf082382019-10-01 11:10:33 +01002586 if (img_dst % 4 != 0) {
Tamas Banc27b5c32019-05-28 16:30:19 +01002587 BOOT_LOG_INF("Cannot copy the image to the SRAM address 0x%x "
Oliver Swedef9982442018-08-24 18:37:44 +01002588 "- the load address must be aligned with 4 bytes due to SRAM "
Raef Colesaf082382019-10-01 11:10:33 +01002589 "restrictions", img_dst);
Oliver Swedef9982442018-08-24 18:37:44 +01002590 return BOOT_EBADARGS;
2591 }
2592
2593 rc = flash_area_open(flash_area_id_from_image_slot(slot), &fap_src);
2594 if (rc != 0) {
2595 return BOOT_EFLASH;
2596 }
2597
Oliver Swedef9982442018-08-24 18:37:44 +01002598 while (bytes_copied < img_sz) {
David Vinczecea8b592019-10-29 16:09:51 +01002599 sect_sz = boot_img_sector_size(state, slot, sect);
Oliver Swedef9982442018-08-24 18:37:44 +01002600 /*
2601 * Direct copy from where the image sector resides in flash to its new
2602 * location in SRAM
2603 */
2604 rc = flash_area_read(fap_src,
2605 bytes_copied,
Raef Colesaf082382019-10-01 11:10:33 +01002606 (void *)(img_dst + bytes_copied),
Oliver Swedef9982442018-08-24 18:37:44 +01002607 sect_sz);
2608 if (rc != 0) {
2609 BOOT_LOG_INF("Error whilst copying image from Flash to SRAM");
2610 break;
2611 } else {
2612 bytes_copied += sect_sz;
2613 }
2614 sect++;
2615 }
2616
2617 if (fap_src) {
2618 flash_area_close(fap_src);
2619 }
2620 return rc;
2621}
Raef Coles27a61452019-09-25 15:32:25 +01002622
2623/**
2624 * Removes an image from SRAM, by overwriting it with zeros.
2625 *
Raef Colesaf082382019-10-01 11:10:33 +01002626 * @param img_dst The address of the image that needs to be removed from
2627 * SRAM.
Raef Coles27a61452019-09-25 15:32:25 +01002628 *
Raef Colesaf082382019-10-01 11:10:33 +01002629 * @param img_sz The size of the image that needs to be removed from
2630 * SRAM.
Raef Coles27a61452019-09-25 15:32:25 +01002631 *
2632 * @return 0 on success; nonzero on failure.
2633 */
2634static int
Raef Colesaf082382019-10-01 11:10:33 +01002635boot_remove_image_from_sram(uint32_t img_dst, uint32_t img_sz)
Raef Coles27a61452019-09-25 15:32:25 +01002636{
Raef Colesaf082382019-10-01 11:10:33 +01002637 BOOT_LOG_INF("Removing image from SRAM at address 0x%x", img_dst);
2638 memset((void*)img_dst, 0, img_sz);
Raef Coles27a61452019-09-25 15:32:25 +01002639
2640 return 0;
2641}
Oliver Swedef9982442018-08-24 18:37:44 +01002642#endif /* MCUBOOT_RAM_LOADING */
2643
Tamas Ban4fb8e9d2018-02-23 14:22:03 +00002644/**
2645 * Prepares the booting process. This function choose the newer image in flash
David Vinczecea8b592019-10-29 16:09:51 +01002646 * as appropriate, and tells you what address to boot from.
Tamas Ban4fb8e9d2018-02-23 14:22:03 +00002647 *
David Vinczecea8b592019-10-29 16:09:51 +01002648 * @param state Boot loader status information.
Tamas Ban4fb8e9d2018-02-23 14:22:03 +00002649 * @param rsp On success, indicates how booting should occur.
2650 *
2651 * @return 0 on success; nonzero on failure.
2652 */
2653int
David Vinczecea8b592019-10-29 16:09:51 +01002654context_boot_go(struct boot_loader_state *state, struct boot_rsp *rsp)
Tamas Ban4fb8e9d2018-02-23 14:22:03 +00002655{
2656 size_t slot = 0;
2657 int32_t i;
2658 int rc;
2659 int fa_id;
2660 uint32_t boot_sequence[BOOT_NUM_SLOTS];
2661 uint32_t img_cnt;
Raef Coles27a61452019-09-25 15:32:25 +01002662 struct image_header *selected_image_header;
2663#ifdef MCUBOOT_RAM_LOADING
2664 int image_copied = 0;
Raef Colesaf082382019-10-01 11:10:33 +01002665 uint32_t img_dst = 0;
2666 uint32_t img_sz = 0;
Raef Coles27a61452019-09-25 15:32:25 +01002667#endif /* MCUBOOT_RAM_LOADING */
Tamas Ban4fb8e9d2018-02-23 14:22:03 +00002668
David Vincze8bdfc2d2019-03-18 15:49:23 +01002669 static boot_sector_t primary_slot_sectors[BOOT_MAX_IMG_SECTORS];
2670 static boot_sector_t secondary_slot_sectors[BOOT_MAX_IMG_SECTORS];
Tamas Ban4fb8e9d2018-02-23 14:22:03 +00002671
David Vinczecea8b592019-10-29 16:09:51 +01002672 BOOT_IMG(state, BOOT_PRIMARY_SLOT).sectors = &primary_slot_sectors[0];
2673 BOOT_IMG(state, BOOT_SECONDARY_SLOT).sectors = &secondary_slot_sectors[0];
Tamas Ban4fb8e9d2018-02-23 14:22:03 +00002674
2675 /* Open boot_data image areas for the duration of this call. */
2676 for (i = 0; i < BOOT_NUM_SLOTS; i++) {
2677 fa_id = flash_area_id_from_image_slot(i);
David Vinczecea8b592019-10-29 16:09:51 +01002678 rc = flash_area_open(fa_id, &BOOT_IMG_AREA(state, i));
Tamas Ban4fb8e9d2018-02-23 14:22:03 +00002679 assert(rc == 0);
2680 }
2681
2682 /* Determine the sector layout of the image slots. */
David Vinczecea8b592019-10-29 16:09:51 +01002683 rc = boot_read_sectors(state);
Tamas Ban4fb8e9d2018-02-23 14:22:03 +00002684 if (rc != 0) {
David Vinczecea8b592019-10-29 16:09:51 +01002685 BOOT_LOG_WRN("Failed reading sectors; BOOT_MAX_IMG_SECTORS=%d - "
2686 "too small?", BOOT_MAX_IMG_SECTORS);
Tamas Ban4fb8e9d2018-02-23 14:22:03 +00002687 goto out;
2688 }
2689
2690 /* Attempt to read an image header from each slot. */
David Vinczecea8b592019-10-29 16:09:51 +01002691 rc = boot_read_image_headers(state, false);
Tamas Ban4fb8e9d2018-02-23 14:22:03 +00002692 if (rc != 0) {
2693 goto out;
2694 }
2695
David Vinczecea8b592019-10-29 16:09:51 +01002696 img_cnt = boot_get_boot_sequence(state, boot_sequence, BOOT_NUM_SLOTS);
Tamas Ban4fb8e9d2018-02-23 14:22:03 +00002697 if (img_cnt) {
2698 /* Authenticate images */
2699 for (i = 0; i < img_cnt; i++) {
Raef Coles27a61452019-09-25 15:32:25 +01002700
2701 slot = boot_sequence[i];
David Vinczecea8b592019-10-29 16:09:51 +01002702 selected_image_header = boot_img_hdr(state, slot);
Raef Coles27a61452019-09-25 15:32:25 +01002703
2704#ifdef MCUBOOT_RAM_LOADING
2705 if (selected_image_header->ih_flags & IMAGE_F_RAM_LOAD) {
Raef Colesaf082382019-10-01 11:10:33 +01002706
2707 img_dst = selected_image_header->ih_load_addr;
2708
David Vinczecea8b592019-10-29 16:09:51 +01002709 rc = boot_read_image_size(state, slot, &img_sz);
Raef Colesaf082382019-10-01 11:10:33 +01002710 if (rc != 0) {
2711 rc = BOOT_EFLASH;
2712 BOOT_LOG_INF("Could not load image headers from the image"
2713 "in the %s slot.",
2714 (slot == BOOT_PRIMARY_SLOT) ?
2715 "primary" : "secondary");
2716 continue;
2717 }
2718
2719 rc = boot_verify_ram_loading_address(img_dst, img_sz);
2720 if (rc != 0) {
2721 BOOT_LOG_INF("Could not copy image from the %s slot in "
2722 "the Flash to load address 0x%x in SRAM as"
2723 " the image would overlap memory outside"
2724 " the defined executable region.",
2725 (slot == BOOT_PRIMARY_SLOT) ?
2726 "primary" : "secondary",
2727 selected_image_header->ih_load_addr);
2728 continue;
2729 }
2730
Raef Coles27a61452019-09-25 15:32:25 +01002731 /* Copy image to the load address from where it
2732 * currently resides in flash
2733 */
David Vinczecea8b592019-10-29 16:09:51 +01002734 rc = boot_copy_image_to_sram(state, slot, selected_image_header,
Raef Colesaf082382019-10-01 11:10:33 +01002735 img_dst, img_sz);
Raef Coles27a61452019-09-25 15:32:25 +01002736 if (rc != 0) {
2737 rc = BOOT_EBADIMAGE;
2738 BOOT_LOG_INF("Could not copy image from the %s slot in "
2739 "the Flash to load address 0x%x in SRAM, "
2740 "aborting..", (slot == BOOT_PRIMARY_SLOT) ?
2741 "primary" : "secondary",
2742 selected_image_header->ih_load_addr);
2743 continue;
2744 } else {
2745 BOOT_LOG_INF("Image has been copied from the %s slot in "
2746 "the flash to SRAM address 0x%x",
2747 (slot == BOOT_PRIMARY_SLOT) ?
2748 "primary" : "secondary",
2749 selected_image_header->ih_load_addr);
2750 image_copied = 1;
2751 }
2752 } else {
2753 /* Only images that support IMAGE_F_RAM_LOAD are allowed if
2754 * MCUBOOT_RAM_LOADING is set.
2755 */
2756 rc = BOOT_EBADIMAGE;
2757 continue;
2758 }
2759#endif /* MCUBOOT_RAM_LOADING */
David Vinczecea8b592019-10-29 16:09:51 +01002760 rc = boot_validate_slot(state, slot, NULL);
Tamas Ban4fb8e9d2018-02-23 14:22:03 +00002761 if (rc == 0) {
Raef Coles27a61452019-09-25 15:32:25 +01002762 /* If a valid image is found then there is no reason to check
2763 * the rest of the images, as they were already ordered by
2764 * preference.
2765 */
Tamas Ban4fb8e9d2018-02-23 14:22:03 +00002766 break;
2767 }
Raef Coles27a61452019-09-25 15:32:25 +01002768#ifdef MCUBOOT_RAM_LOADING
2769 else if (image_copied) {
2770 /* If an image is found to be invalid then it is removed from
2771 * RAM to prevent it being a shellcode vector.
2772 */
Raef Colesaf082382019-10-01 11:10:33 +01002773 boot_remove_image_from_sram(img_dst, img_sz);
Raef Coles27a61452019-09-25 15:32:25 +01002774 image_copied = 0;
2775 }
2776#endif /* MCUBOOT_RAM_LOADING */
Tamas Ban4fb8e9d2018-02-23 14:22:03 +00002777 }
2778 if (rc) {
2779 /* If there was no valid image at all */
2780 rc = BOOT_EBADIMAGE;
2781 goto out;
2782 }
2783
David Vincze060968d2019-05-23 01:13:14 +02002784 /* Update the security counter with the newest image's security
2785 * counter value.
2786 */
David Vinczecea8b592019-10-29 16:09:51 +01002787 rc = boot_update_security_counter(BOOT_CURR_IMG(state), slot,
2788 selected_image_header);
David Vincze060968d2019-05-23 01:13:14 +02002789 if (rc != 0) {
2790 BOOT_LOG_ERR("Security counter update failed after image "
2791 "validation.");
2792 goto out;
2793 }
2794
Oliver Swedef9982442018-08-24 18:37:44 +01002795
David Vincze8a2a4e22019-05-24 10:14:23 +02002796#ifdef MCUBOOT_RAM_LOADING
Raef Coles27a61452019-09-25 15:32:25 +01002797 BOOT_LOG_INF("Booting image from SRAM at address 0x%x",
2798 selected_image_header->ih_load_addr);
2799#else
2800 BOOT_LOG_INF("Booting image from the %s slot",
2801 (slot == BOOT_PRIMARY_SLOT) ? "primary" : "secondary");
2802#endif /* MCUBOOT_RAM_LOADING */
Oliver Swedef9982442018-08-24 18:37:44 +01002803
Raef Coles27a61452019-09-25 15:32:25 +01002804 rsp->br_hdr = selected_image_header;
David Vinczecea8b592019-10-29 16:09:51 +01002805 rsp->br_image_off = boot_img_slot_off(state, slot);
2806 rsp->br_flash_dev_id = BOOT_IMG_AREA(state, slot)->fa_device_id;
Tamas Ban4fb8e9d2018-02-23 14:22:03 +00002807 } else {
2808 /* No candidate image available */
2809 rc = BOOT_EBADIMAGE;
David Vincze060968d2019-05-23 01:13:14 +02002810 goto out;
Tamas Ban4fb8e9d2018-02-23 14:22:03 +00002811 }
2812
Tamas Ban0e8ab302019-01-17 11:45:31 +00002813 /* Save boot status to shared memory area */
2814 rc = boot_save_boot_status(SW_S_NS,
2815 rsp->br_hdr,
David Vinczecea8b592019-10-29 16:09:51 +01002816 BOOT_IMG_AREA(state, slot));
Tamas Ban0e8ab302019-01-17 11:45:31 +00002817 if (rc) {
2818 BOOT_LOG_ERR("Failed to add data to shared area");
2819 }
2820
Tamas Ban4fb8e9d2018-02-23 14:22:03 +00002821out:
2822 for (slot = 0; slot < BOOT_NUM_SLOTS; slot++) {
David Vinczecea8b592019-10-29 16:09:51 +01002823 flash_area_close(BOOT_IMG_AREA(state, BOOT_NUM_SLOTS - 1 - slot));
Tamas Ban4fb8e9d2018-02-23 14:22:03 +00002824 }
2825 return rc;
2826}
Oliver Swedef9982442018-08-24 18:37:44 +01002827#endif /* MCUBOOT_NO_SWAP || MCUBOOT_RAM_LOADING */
David Vinczecea8b592019-10-29 16:09:51 +01002828
2829int
2830boot_go(struct boot_rsp *rsp)
2831{
2832 return context_boot_go(&boot_data, rsp);
2833}