blob: a08ed7eaa43600c83bcdc63fc79b702ac4b6f7b4 [file] [log] [blame]
Christopher Collins92ea77f2016-12-12 15:59:26 -08001/*
David Brownaac71112020-02-03 16:13:42 -07002 * SPDX-License-Identifier: Apache-2.0
3 *
4 * Copyright (c) 2016-2020 Linaro LTD
5 * Copyright (c) 2016-2019 JUUL Labs
6 * Copyright (c) 2019-2020 Arm Limited
7 *
8 * Original license:
9 *
Christopher Collins92ea77f2016-12-12 15:59:26 -080010 * Licensed to the Apache Software Foundation (ASF) under one
11 * or more contributor license agreements. See the NOTICE file
12 * distributed with this work for additional information
13 * regarding copyright ownership. The ASF licenses this file
14 * to you under the Apache License, Version 2.0 (the
15 * "License"); you may not use this file except in compliance
16 * with the License. You may obtain a copy of the License at
17 *
18 * http://www.apache.org/licenses/LICENSE-2.0
19 *
20 * Unless required by applicable law or agreed to in writing,
21 * software distributed under the License is distributed on an
22 * "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
23 * KIND, either express or implied. See the License for the
24 * specific language governing permissions and limitations
25 * under the License.
26 */
27
28/**
29 * This file provides an interface to the boot loader. Functions defined in
30 * this file should only be called while the boot loader is running.
31 */
32
Christopher Collins92ea77f2016-12-12 15:59:26 -080033#include <stddef.h>
David Brown52eee562017-07-05 11:25:09 -060034#include <stdbool.h>
Christopher Collins92ea77f2016-12-12 15:59:26 -080035#include <inttypes.h>
36#include <stdlib.h>
37#include <string.h>
Christopher Collins92ea77f2016-12-12 15:59:26 -080038#include <os/os_malloc.h>
39#include "bootutil/bootutil.h"
40#include "bootutil/image.h"
41#include "bootutil_priv.h"
Fabio Utzig12d59162019-11-28 10:01:59 -030042#include "swap_priv.h"
Marti Bolivarfd20c762017-02-07 16:52:50 -050043#include "bootutil/bootutil_log.h"
David Vinczec3084132020-02-18 14:50:47 +010044#include "bootutil/security_cnt.h"
David Vincze1cf11b52020-03-24 07:51:09 +010045#include "bootutil/boot_record.h"
Raef Colese8fe6cf2020-05-26 13:07:40 +010046#include "bootutil/fault_injection_hardening.h"
Marti Bolivarfd20c762017-02-07 16:52:50 -050047
Fabio Utzigba829042018-09-18 08:29:34 -030048#ifdef MCUBOOT_ENC_IMAGES
49#include "bootutil/enc_key.h"
50#endif
51
Fabio Utzigba1fbe62017-07-21 14:01:20 -030052#include "mcuboot_config/mcuboot_config.h"
Fabio Utzigeed80b62017-06-10 08:03:05 -030053
Emanuele Di Santo9f1933d2018-11-20 10:59:59 +010054MCUBOOT_LOG_MODULE_DECLARE(mcuboot);
55
Marti Bolivar9b1f8bb2017-06-12 15:24:13 -040056static struct boot_loader_state boot_data;
Christopher Collins92ea77f2016-12-12 15:59:26 -080057
Fabio Utzigabec0732019-07-31 08:40:22 -030058#if (BOOT_IMAGE_NUMBER > 1)
59#define IMAGES_ITER(x) for ((x) = 0; (x) < BOOT_IMAGE_NUMBER; ++(x))
60#else
61#define IMAGES_ITER(x)
62#endif
63
Fabio Utzig10ee6482019-08-01 12:04:52 -030064/*
65 * This macro allows some control on the allocation of local variables.
66 * When running natively on a target, we don't want to allocated huge
67 * variables on the stack, so make them global instead. For the simulator
68 * we want to run as many threads as there are tests, and it's safer
69 * to just make those variables stack allocated.
70 */
71#if !defined(__BOOTSIM__)
72#define TARGET_STATIC static
73#else
74#define TARGET_STATIC
75#endif
76
David Vinczee574f2d2020-07-10 11:42:03 +020077static int
78boot_read_image_headers(struct boot_loader_state *state, bool require_all,
79 struct boot_status *bs)
80{
81 int rc;
82 int i;
83
84 for (i = 0; i < BOOT_NUM_SLOTS; i++) {
85 rc = boot_read_image_header(state, i, boot_img_hdr(state, i), bs);
86 if (rc != 0) {
87 /* If `require_all` is set, fail on any single fail, otherwise
88 * if at least the first slot's header was read successfully,
89 * then the boot loader can attempt a boot.
90 *
91 * Failure to read any headers is a fatal error.
92 */
93 if (i > 0 && !require_all) {
94 return 0;
95 } else {
96 return rc;
97 }
98 }
99 }
100
101 return 0;
102}
103
Tamas Banfe031092020-09-10 17:32:39 +0200104#if !defined(MCUBOOT_DIRECT_XIP)
David Brownf5b33d82017-09-01 10:58:27 -0600105/*
106 * Compute the total size of the given image. Includes the size of
107 * the TLVs.
108 */
Tamas Banfe031092020-09-10 17:32:39 +0200109#if !defined(MCUBOOT_OVERWRITE_ONLY) || defined(MCUBOOT_OVERWRITE_ONLY_FAST)
David Brownf5b33d82017-09-01 10:58:27 -0600110static int
Fabio Utzigd638b172019-08-09 10:38:05 -0300111boot_read_image_size(struct boot_loader_state *state, int slot, uint32_t *size)
David Brownf5b33d82017-09-01 10:58:27 -0600112{
113 const struct flash_area *fap;
Fabio Utzig61fd8882019-09-14 20:00:20 -0300114 struct image_tlv_info info;
Fabio Utzig233af7d2019-08-26 12:06:16 -0300115 uint32_t off;
Fabio Utzige52c08e2019-09-11 19:32:00 -0300116 uint32_t protect_tlv_size;
David Brownf5b33d82017-09-01 10:58:27 -0600117 int area_id;
118 int rc;
119
Fabio Utzig10ee6482019-08-01 12:04:52 -0300120#if (BOOT_IMAGE_NUMBER == 1)
121 (void)state;
122#endif
123
124 area_id = flash_area_id_from_multi_image_slot(BOOT_CURR_IMG(state), slot);
David Brownf5b33d82017-09-01 10:58:27 -0600125 rc = flash_area_open(area_id, &fap);
126 if (rc != 0) {
127 rc = BOOT_EFLASH;
128 goto done;
129 }
130
Fabio Utzig61fd8882019-09-14 20:00:20 -0300131 off = BOOT_TLV_OFF(boot_img_hdr(state, slot));
132
133 if (flash_area_read(fap, off, &info, sizeof(info))) {
134 rc = BOOT_EFLASH;
David Brownf5b33d82017-09-01 10:58:27 -0600135 goto done;
136 }
Fabio Utzig61fd8882019-09-14 20:00:20 -0300137
Fabio Utzige52c08e2019-09-11 19:32:00 -0300138 protect_tlv_size = boot_img_hdr(state, slot)->ih_protect_tlv_size;
139 if (info.it_magic == IMAGE_TLV_PROT_INFO_MAGIC) {
140 if (protect_tlv_size != info.it_tlv_tot) {
141 rc = BOOT_EBADIMAGE;
142 goto done;
143 }
144
145 if (flash_area_read(fap, off + info.it_tlv_tot, &info, sizeof(info))) {
146 rc = BOOT_EFLASH;
147 goto done;
148 }
149 } else if (protect_tlv_size != 0) {
150 rc = BOOT_EBADIMAGE;
151 goto done;
152 }
153
Fabio Utzig61fd8882019-09-14 20:00:20 -0300154 if (info.it_magic != IMAGE_TLV_INFO_MAGIC) {
155 rc = BOOT_EBADIMAGE;
156 goto done;
157 }
158
Fabio Utzige52c08e2019-09-11 19:32:00 -0300159 *size = off + protect_tlv_size + info.it_tlv_tot;
David Brownf5b33d82017-09-01 10:58:27 -0600160 rc = 0;
161
162done:
163 flash_area_close(fap);
Fabio Utzig2eebf112017-09-04 15:25:08 -0300164 return rc;
David Brownf5b33d82017-09-01 10:58:27 -0600165}
Fabio Utzig36ec0e72017-09-05 08:10:33 -0300166#endif /* !MCUBOOT_OVERWRITE_ONLY */
David Brownf5b33d82017-09-01 10:58:27 -0600167
Tamas Banfe031092020-09-10 17:32:39 +0200168#if !defined(MCUBOOT_RAM_LOAD)
David Brownab449182019-11-15 09:32:52 -0700169static uint32_t
Fabio Utzig10ee6482019-08-01 12:04:52 -0300170boot_write_sz(struct boot_loader_state *state)
Christopher Collins92ea77f2016-12-12 15:59:26 -0800171{
David Brownab449182019-11-15 09:32:52 -0700172 uint32_t elem_sz;
Fabio Utzig12d59162019-11-28 10:01:59 -0300173#if MCUBOOT_SWAP_USING_SCRATCH
David Brownab449182019-11-15 09:32:52 -0700174 uint32_t align;
Fabio Utzig12d59162019-11-28 10:01:59 -0300175#endif
Christopher Collins92ea77f2016-12-12 15:59:26 -0800176
177 /* Figure out what size to write update status update as. The size depends
178 * on what the minimum write size is for scratch area, active image slot.
179 * We need to use the bigger of those 2 values.
180 */
Fabio Utzig10ee6482019-08-01 12:04:52 -0300181 elem_sz = flash_area_align(BOOT_IMG_AREA(state, BOOT_PRIMARY_SLOT));
Fabio Utzig12d59162019-11-28 10:01:59 -0300182#if MCUBOOT_SWAP_USING_SCRATCH
Fabio Utzig10ee6482019-08-01 12:04:52 -0300183 align = flash_area_align(BOOT_SCRATCH_AREA(state));
Christopher Collins92ea77f2016-12-12 15:59:26 -0800184 if (align > elem_sz) {
185 elem_sz = align;
186 }
Fabio Utzig12d59162019-11-28 10:01:59 -0300187#endif
Christopher Collins92ea77f2016-12-12 15:59:26 -0800188
189 return elem_sz;
190}
191
Fabio Utzig10ee6482019-08-01 12:04:52 -0300192#ifndef MCUBOOT_USE_FLASH_AREA_GET_SECTORS
193static int
194boot_initialize_area(struct boot_loader_state *state, int flash_area)
195{
196 int num_sectors = BOOT_MAX_IMG_SECTORS;
197 int rc;
198
199 if (flash_area == FLASH_AREA_IMAGE_PRIMARY(BOOT_CURR_IMG(state))) {
200 rc = flash_area_to_sectors(flash_area, &num_sectors,
201 BOOT_IMG(state, BOOT_PRIMARY_SLOT).sectors);
202 BOOT_IMG(state, BOOT_PRIMARY_SLOT).num_sectors = (size_t)num_sectors;
203
204 } else if (flash_area == FLASH_AREA_IMAGE_SECONDARY(BOOT_CURR_IMG(state))) {
205 rc = flash_area_to_sectors(flash_area, &num_sectors,
206 BOOT_IMG(state, BOOT_SECONDARY_SLOT).sectors);
207 BOOT_IMG(state, BOOT_SECONDARY_SLOT).num_sectors = (size_t)num_sectors;
208
Fabio Utzig12d59162019-11-28 10:01:59 -0300209#if MCUBOOT_SWAP_USING_SCRATCH
Fabio Utzig10ee6482019-08-01 12:04:52 -0300210 } else if (flash_area == FLASH_AREA_IMAGE_SCRATCH) {
211 rc = flash_area_to_sectors(flash_area, &num_sectors,
212 state->scratch.sectors);
213 state->scratch.num_sectors = (size_t)num_sectors;
Fabio Utzig12d59162019-11-28 10:01:59 -0300214#endif
215
Fabio Utzig10ee6482019-08-01 12:04:52 -0300216 } else {
217 return BOOT_EFLASH;
218 }
219
220 return rc;
221}
222#else /* defined(MCUBOOT_USE_FLASH_AREA_GET_SECTORS) */
223static int
224boot_initialize_area(struct boot_loader_state *state, int flash_area)
225{
226 uint32_t num_sectors;
227 struct flash_sector *out_sectors;
228 size_t *out_num_sectors;
229 int rc;
230
231 num_sectors = BOOT_MAX_IMG_SECTORS;
232
233 if (flash_area == FLASH_AREA_IMAGE_PRIMARY(BOOT_CURR_IMG(state))) {
234 out_sectors = BOOT_IMG(state, BOOT_PRIMARY_SLOT).sectors;
235 out_num_sectors = &BOOT_IMG(state, BOOT_PRIMARY_SLOT).num_sectors;
236 } else if (flash_area == FLASH_AREA_IMAGE_SECONDARY(BOOT_CURR_IMG(state))) {
237 out_sectors = BOOT_IMG(state, BOOT_SECONDARY_SLOT).sectors;
238 out_num_sectors = &BOOT_IMG(state, BOOT_SECONDARY_SLOT).num_sectors;
Fabio Utzig12d59162019-11-28 10:01:59 -0300239#if MCUBOOT_SWAP_USING_SCRATCH
Fabio Utzig10ee6482019-08-01 12:04:52 -0300240 } else if (flash_area == FLASH_AREA_IMAGE_SCRATCH) {
241 out_sectors = state->scratch.sectors;
242 out_num_sectors = &state->scratch.num_sectors;
Fabio Utzig12d59162019-11-28 10:01:59 -0300243#endif
Fabio Utzig10ee6482019-08-01 12:04:52 -0300244 } else {
245 return BOOT_EFLASH;
246 }
247
248 rc = flash_area_get_sectors(flash_area, &num_sectors, out_sectors);
249 if (rc != 0) {
250 return rc;
251 }
252 *out_num_sectors = num_sectors;
253 return 0;
254}
255#endif /* !defined(MCUBOOT_USE_FLASH_AREA_GET_SECTORS) */
256
Christopher Collins92ea77f2016-12-12 15:59:26 -0800257/**
258 * Determines the sector layout of both image slots and the scratch area.
259 * This information is necessary for calculating the number of bytes to erase
260 * and copy during an image swap. The information collected during this
Fabio Utzig10ee6482019-08-01 12:04:52 -0300261 * function is used to populate the state.
Christopher Collins92ea77f2016-12-12 15:59:26 -0800262 */
263static int
Fabio Utzig10ee6482019-08-01 12:04:52 -0300264boot_read_sectors(struct boot_loader_state *state)
Christopher Collins92ea77f2016-12-12 15:59:26 -0800265{
Fabio Utzigb0f04732019-07-31 09:49:19 -0300266 uint8_t image_index;
Christopher Collins92ea77f2016-12-12 15:59:26 -0800267 int rc;
Christopher Collins92ea77f2016-12-12 15:59:26 -0800268
Fabio Utzig10ee6482019-08-01 12:04:52 -0300269 image_index = BOOT_CURR_IMG(state);
Fabio Utzigb0f04732019-07-31 09:49:19 -0300270
271 rc = boot_initialize_area(state, FLASH_AREA_IMAGE_PRIMARY(image_index));
Christopher Collins92ea77f2016-12-12 15:59:26 -0800272 if (rc != 0) {
273 return BOOT_EFLASH;
274 }
275
Fabio Utzig10ee6482019-08-01 12:04:52 -0300276 rc = boot_initialize_area(state, FLASH_AREA_IMAGE_SECONDARY(image_index));
Christopher Collins92ea77f2016-12-12 15:59:26 -0800277 if (rc != 0) {
278 return BOOT_EFLASH;
279 }
280
Fabio Utzig12d59162019-11-28 10:01:59 -0300281#if MCUBOOT_SWAP_USING_SCRATCH
Fabio Utzig10ee6482019-08-01 12:04:52 -0300282 rc = boot_initialize_area(state, FLASH_AREA_IMAGE_SCRATCH);
Fabio Utzig2bd980a2018-11-26 10:38:17 -0200283 if (rc != 0) {
284 return BOOT_EFLASH;
285 }
Fabio Utzig12d59162019-11-28 10:01:59 -0300286#endif
Fabio Utzig2bd980a2018-11-26 10:38:17 -0200287
Fabio Utzig10ee6482019-08-01 12:04:52 -0300288 BOOT_WRITE_SZ(state) = boot_write_sz(state);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800289
290 return 0;
291}
292
Fabio Utzig12d59162019-11-28 10:01:59 -0300293void
294boot_status_reset(struct boot_status *bs)
Christopher Collins92ea77f2016-12-12 15:59:26 -0800295{
Fabio Utzig4741c452019-12-19 15:32:41 -0300296#ifdef MCUBOOT_ENC_IMAGES
297 memset(&bs->enckey, 0xff, BOOT_NUM_SLOTS * BOOT_ENC_KEY_SIZE);
298#if MCUBOOT_SWAP_SAVE_ENCTLV
299 memset(&bs->enctlv, 0xff, BOOT_NUM_SLOTS * BOOT_ENC_TLV_ALIGN_SIZE);
300#endif
301#endif /* MCUBOOT_ENC_IMAGES */
302
303 bs->use_scratch = 0;
304 bs->swap_size = 0;
305 bs->source = 0;
306
Fabio Utzig74aef312019-11-28 11:05:34 -0300307 bs->op = BOOT_STATUS_OP_MOVE;
Fabio Utzig39000012018-07-30 12:40:20 -0300308 bs->idx = BOOT_STATUS_IDX_0;
309 bs->state = BOOT_STATUS_STATE_0;
Christopher Collinsa1c12042019-05-23 14:00:28 -0700310 bs->swap_type = BOOT_SWAP_TYPE_NONE;
Fabio Utzig12d59162019-11-28 10:01:59 -0300311}
Christopher Collins92ea77f2016-12-12 15:59:26 -0800312
Fabio Utzig12d59162019-11-28 10:01:59 -0300313bool
314boot_status_is_reset(const struct boot_status *bs)
315{
Fabio Utzig74aef312019-11-28 11:05:34 -0300316 return (bs->op == BOOT_STATUS_OP_MOVE &&
317 bs->idx == BOOT_STATUS_IDX_0 &&
318 bs->state == BOOT_STATUS_STATE_0);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800319}
320
321/**
322 * Writes the supplied boot status to the flash file system. The boot status
323 * contains the current state of an in-progress image copy operation.
324 *
325 * @param bs The boot status to write.
326 *
327 * @return 0 on success; nonzero on failure.
328 */
329int
Fabio Utzig12d59162019-11-28 10:01:59 -0300330boot_write_status(const struct boot_loader_state *state, struct boot_status *bs)
Christopher Collins92ea77f2016-12-12 15:59:26 -0800331{
332 const struct flash_area *fap;
333 uint32_t off;
334 int area_id;
335 int rc;
Fabio Utziga0bc9b52017-06-28 09:19:55 -0300336 uint8_t buf[BOOT_MAX_ALIGN];
David Brown9d725462017-01-23 15:50:58 -0700337 uint8_t align;
Fabio Utzig39000012018-07-30 12:40:20 -0300338 uint8_t erased_val;
Christopher Collins92ea77f2016-12-12 15:59:26 -0800339
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300340 /* NOTE: The first sector copied (that is the last sector on slot) contains
David Vincze2d736ad2019-02-18 11:50:22 +0100341 * the trailer. Since in the last step the primary slot is erased, the
342 * first two status writes go to the scratch which will be copied to
343 * the primary slot!
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300344 */
345
Fabio Utzig12d59162019-11-28 10:01:59 -0300346#if MCUBOOT_SWAP_USING_SCRATCH
Fabio Utzig2473ac02017-05-02 12:45:02 -0300347 if (bs->use_scratch) {
Christopher Collins92ea77f2016-12-12 15:59:26 -0800348 /* Write to scratch. */
349 area_id = FLASH_AREA_IMAGE_SCRATCH;
350 } else {
Fabio Utzig12d59162019-11-28 10:01:59 -0300351#endif
David Vincze2d736ad2019-02-18 11:50:22 +0100352 /* Write to the primary slot. */
Fabio Utzig10ee6482019-08-01 12:04:52 -0300353 area_id = FLASH_AREA_IMAGE_PRIMARY(BOOT_CURR_IMG(state));
Fabio Utzig12d59162019-11-28 10:01:59 -0300354#if MCUBOOT_SWAP_USING_SCRATCH
Christopher Collins92ea77f2016-12-12 15:59:26 -0800355 }
Fabio Utzig12d59162019-11-28 10:01:59 -0300356#endif
Christopher Collins92ea77f2016-12-12 15:59:26 -0800357
358 rc = flash_area_open(area_id, &fap);
359 if (rc != 0) {
360 rc = BOOT_EFLASH;
361 goto done;
362 }
363
364 off = boot_status_off(fap) +
Fabio Utzig12d59162019-11-28 10:01:59 -0300365 boot_status_internal_off(bs, BOOT_WRITE_SZ(state));
Andrzej Puzdrowskib788c712018-04-12 12:42:49 +0200366 align = flash_area_align(fap);
Fabio Utzig39000012018-07-30 12:40:20 -0300367 erased_val = flash_area_erased_val(fap);
368 memset(buf, erased_val, BOOT_MAX_ALIGN);
David Brown9d725462017-01-23 15:50:58 -0700369 buf[0] = bs->state;
370
371 rc = flash_area_write(fap, off, buf, align);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800372 if (rc != 0) {
373 rc = BOOT_EFLASH;
374 goto done;
375 }
376
377 rc = 0;
378
379done:
380 flash_area_close(fap);
381 return rc;
382}
Tamas Banfe031092020-09-10 17:32:39 +0200383#endif /* !MCUBOOT_RAM_LOAD */
David Vinczee574f2d2020-07-10 11:42:03 +0200384#endif /* !MCUBOOT_DIRECT_XIP */
Christopher Collins92ea77f2016-12-12 15:59:26 -0800385
386/*
David Vinczec3084132020-02-18 14:50:47 +0100387 * Validate image hash/signature and optionally the security counter in a slot.
Christopher Collins92ea77f2016-12-12 15:59:26 -0800388 */
Raef Colese8fe6cf2020-05-26 13:07:40 +0100389static fih_int
Fabio Utzig10ee6482019-08-01 12:04:52 -0300390boot_image_check(struct boot_loader_state *state, struct image_header *hdr,
391 const struct flash_area *fap, struct boot_status *bs)
Christopher Collins92ea77f2016-12-12 15:59:26 -0800392{
Fabio Utzig10ee6482019-08-01 12:04:52 -0300393 TARGET_STATIC uint8_t tmpbuf[BOOT_TMPBUF_SZ];
Fabio Utzigb0f04732019-07-31 09:49:19 -0300394 uint8_t image_index;
Fabio Utzigba829042018-09-18 08:29:34 -0300395 int rc;
Raef Colese8fe6cf2020-05-26 13:07:40 +0100396 fih_int fih_rc = FIH_FAILURE;
Fabio Utzigba829042018-09-18 08:29:34 -0300397
Fabio Utzig10ee6482019-08-01 12:04:52 -0300398#if (BOOT_IMAGE_NUMBER == 1)
399 (void)state;
400#endif
401
Fabio Utzigba829042018-09-18 08:29:34 -0300402 (void)bs;
403 (void)rc;
Fabio Utzigbc077932019-08-26 11:16:34 -0300404
405 image_index = BOOT_CURR_IMG(state);
406
407#ifdef MCUBOOT_ENC_IMAGES
408 if (MUST_DECRYPT(fap, image_index, hdr)) {
Fabio Utzig4741c452019-12-19 15:32:41 -0300409 rc = boot_enc_load(BOOT_CURR_ENC(state), image_index, hdr, fap, bs);
Fabio Utzigba829042018-09-18 08:29:34 -0300410 if (rc < 0) {
Raef Colese8fe6cf2020-05-26 13:07:40 +0100411 FIH_RET(fih_rc);
Fabio Utzigba829042018-09-18 08:29:34 -0300412 }
Fabio Utzig4741c452019-12-19 15:32:41 -0300413 if (rc == 0 && boot_enc_set_key(BOOT_CURR_ENC(state), 1, bs)) {
Raef Colese8fe6cf2020-05-26 13:07:40 +0100414 FIH_RET(fih_rc);
Fabio Utzigba829042018-09-18 08:29:34 -0300415 }
416 }
Fabio Utzigbc077932019-08-26 11:16:34 -0300417#endif
418
Raef Colese8fe6cf2020-05-26 13:07:40 +0100419 FIH_CALL(bootutil_img_validate, fih_rc, BOOT_CURR_ENC(state), image_index,
420 hdr, fap, tmpbuf, BOOT_TMPBUF_SZ, NULL, 0, NULL);
Fabio Utzig10ee6482019-08-01 12:04:52 -0300421
Raef Colese8fe6cf2020-05-26 13:07:40 +0100422 FIH_RET(fih_rc);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800423}
424
Tamas Banfe031092020-09-10 17:32:39 +0200425#if !defined(MCUBOOT_DIRECT_XIP) && !defined(MCUBOOT_RAM_LOAD)
Raef Colese8fe6cf2020-05-26 13:07:40 +0100426static fih_int
Christopher Collins92ea77f2016-12-12 15:59:26 -0800427split_image_check(struct image_header *app_hdr,
428 const struct flash_area *app_fap,
429 struct image_header *loader_hdr,
430 const struct flash_area *loader_fap)
431{
432 static void *tmpbuf;
433 uint8_t loader_hash[32];
Raef Colese8fe6cf2020-05-26 13:07:40 +0100434 fih_int fih_rc = FIH_FAILURE;
Christopher Collins92ea77f2016-12-12 15:59:26 -0800435
436 if (!tmpbuf) {
437 tmpbuf = malloc(BOOT_TMPBUF_SZ);
438 if (!tmpbuf) {
Raef Colese8fe6cf2020-05-26 13:07:40 +0100439 goto out;
Christopher Collins92ea77f2016-12-12 15:59:26 -0800440 }
441 }
442
Raef Colese8fe6cf2020-05-26 13:07:40 +0100443 FIH_CALL(bootutil_img_validate, fih_rc, NULL, 0, loader_hdr, loader_fap,
444 tmpbuf, BOOT_TMPBUF_SZ, NULL, 0, loader_hash);
445 if (fih_not_eq(fih_rc, FIH_SUCCESS)) {
446 FIH_RET(fih_rc);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800447 }
448
Raef Colese8fe6cf2020-05-26 13:07:40 +0100449 FIH_CALL(bootutil_img_validate, fih_rc, NULL, 0, app_hdr, app_fap,
450 tmpbuf, BOOT_TMPBUF_SZ, loader_hash, 32, NULL);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800451
Raef Colese8fe6cf2020-05-26 13:07:40 +0100452out:
453 FIH_RET(fih_rc);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800454}
Tamas Banfe031092020-09-10 17:32:39 +0200455#endif /* !MCUBOOT_DIRECT_XIP && !MCUBOOT_RAM_LOAD */
Christopher Collins92ea77f2016-12-12 15:59:26 -0800456
Fabio Utzig338a19f2018-12-03 08:37:08 -0200457/*
David Brown9bf95af2019-10-10 15:36:36 -0600458 * Check that this is a valid header. Valid means that the magic is
459 * correct, and that the sizes/offsets are "sane". Sane means that
460 * there is no overflow on the arithmetic, and that the result fits
461 * within the flash area we are in.
462 */
463static bool
464boot_is_header_valid(const struct image_header *hdr, const struct flash_area *fap)
465{
466 uint32_t size;
467
468 if (hdr->ih_magic != IMAGE_MAGIC) {
469 return false;
470 }
471
472 if (!boot_u32_safe_add(&size, hdr->ih_img_size, hdr->ih_hdr_size)) {
473 return false;
474 }
475
476 if (size >= fap->fa_size) {
477 return false;
478 }
479
480 return true;
481}
482
483/*
Fabio Utzig338a19f2018-12-03 08:37:08 -0200484 * Check that a memory area consists of a given value.
485 */
486static inline bool
487boot_data_is_set_to(uint8_t val, void *data, size_t len)
Fabio Utzig39000012018-07-30 12:40:20 -0300488{
489 uint8_t i;
Fabio Utzig338a19f2018-12-03 08:37:08 -0200490 uint8_t *p = (uint8_t *)data;
491 for (i = 0; i < len; i++) {
492 if (val != p[i]) {
493 return false;
Fabio Utzig39000012018-07-30 12:40:20 -0300494 }
495 }
Fabio Utzig338a19f2018-12-03 08:37:08 -0200496 return true;
497}
498
499static int
Fabio Utzig10ee6482019-08-01 12:04:52 -0300500boot_check_header_erased(struct boot_loader_state *state, int slot)
Fabio Utzig338a19f2018-12-03 08:37:08 -0200501{
502 const struct flash_area *fap;
503 struct image_header *hdr;
504 uint8_t erased_val;
Fabio Utzigb0f04732019-07-31 09:49:19 -0300505 int area_id;
Fabio Utzig338a19f2018-12-03 08:37:08 -0200506 int rc;
507
Fabio Utzig10ee6482019-08-01 12:04:52 -0300508 area_id = flash_area_id_from_multi_image_slot(BOOT_CURR_IMG(state), slot);
Fabio Utzigb0f04732019-07-31 09:49:19 -0300509 rc = flash_area_open(area_id, &fap);
Fabio Utzig338a19f2018-12-03 08:37:08 -0200510 if (rc != 0) {
511 return -1;
512 }
513
514 erased_val = flash_area_erased_val(fap);
515 flash_area_close(fap);
516
Fabio Utzig10ee6482019-08-01 12:04:52 -0300517 hdr = boot_img_hdr(state, slot);
Fabio Utzig338a19f2018-12-03 08:37:08 -0200518 if (!boot_data_is_set_to(erased_val, &hdr->ih_magic, sizeof(hdr->ih_magic))) {
519 return -1;
520 }
521
522 return 0;
Fabio Utzig39000012018-07-30 12:40:20 -0300523}
524
Håkon Øye Amundsen2d1bac12020-01-03 13:08:09 +0000525#if (BOOT_IMAGE_NUMBER > 1) || \
David Vinczee574f2d2020-07-10 11:42:03 +0200526 defined(MCUBOOT_DIRECT_XIP) || \
Tamas Banfe031092020-09-10 17:32:39 +0200527 defined(MCUBOOT_RAM_LOAD) || \
Håkon Øye Amundsen2d1bac12020-01-03 13:08:09 +0000528 (defined(MCUBOOT_OVERWRITE_ONLY) && defined(MCUBOOT_DOWNGRADE_PREVENTION))
529/**
David Vincze8b0b6372020-05-20 19:54:44 +0200530 * Compare image version numbers not including the build number
Håkon Øye Amundsen2d1bac12020-01-03 13:08:09 +0000531 *
David Vincze8b0b6372020-05-20 19:54:44 +0200532 * @param ver1 Pointer to the first image version to compare.
533 * @param ver2 Pointer to the second image version to compare.
Håkon Øye Amundsen2d1bac12020-01-03 13:08:09 +0000534 *
David Vincze8b0b6372020-05-20 19:54:44 +0200535 * @retval -1 If ver1 is strictly less than ver2.
536 * @retval 0 If the image version numbers are equal,
537 * (not including the build number).
538 * @retval 1 If ver1 is strictly greater than ver2.
Håkon Øye Amundsen2d1bac12020-01-03 13:08:09 +0000539 */
540static int
David Vincze8b0b6372020-05-20 19:54:44 +0200541boot_version_cmp(const struct image_version *ver1,
542 const struct image_version *ver2)
Håkon Øye Amundsen2d1bac12020-01-03 13:08:09 +0000543{
David Vincze8b0b6372020-05-20 19:54:44 +0200544 if (ver1->iv_major > ver2->iv_major) {
545 return 1;
Håkon Øye Amundsen2d1bac12020-01-03 13:08:09 +0000546 }
David Vincze8b0b6372020-05-20 19:54:44 +0200547 if (ver1->iv_major < ver2->iv_major) {
548 return -1;
Håkon Øye Amundsen2d1bac12020-01-03 13:08:09 +0000549 }
David Vincze8b0b6372020-05-20 19:54:44 +0200550 /* The major version numbers are equal, continue comparison. */
551 if (ver1->iv_minor > ver2->iv_minor) {
552 return 1;
Håkon Øye Amundsen2d1bac12020-01-03 13:08:09 +0000553 }
David Vincze8b0b6372020-05-20 19:54:44 +0200554 if (ver1->iv_minor < ver2->iv_minor) {
555 return -1;
Håkon Øye Amundsen2d1bac12020-01-03 13:08:09 +0000556 }
David Vincze8b0b6372020-05-20 19:54:44 +0200557 /* The minor version numbers are equal, continue comparison. */
558 if (ver1->iv_revision > ver2->iv_revision) {
559 return 1;
560 }
561 if (ver1->iv_revision < ver2->iv_revision) {
562 return -1;
Håkon Øye Amundsen2d1bac12020-01-03 13:08:09 +0000563 }
564
565 return 0;
566}
567#endif
568
Fabio Utzigb1adb1e2019-09-11 11:42:53 -0300569/*
570 * Check that there is a valid image in a slot
571 *
572 * @returns
Raef Colese8fe6cf2020-05-26 13:07:40 +0100573 * FIH_SUCCESS if image was successfully validated
574 * 1 (or its fih_int encoded form) if no bootloable image was found
575 * FIH_FAILURE on any errors
Fabio Utzigb1adb1e2019-09-11 11:42:53 -0300576 */
Raef Colese8fe6cf2020-05-26 13:07:40 +0100577static fih_int
Fabio Utzig10ee6482019-08-01 12:04:52 -0300578boot_validate_slot(struct boot_loader_state *state, int slot,
579 struct boot_status *bs)
Christopher Collins92ea77f2016-12-12 15:59:26 -0800580{
581 const struct flash_area *fap;
Marti Bolivarf804f622017-06-12 15:41:48 -0400582 struct image_header *hdr;
Fabio Utzigb0f04732019-07-31 09:49:19 -0300583 int area_id;
Raef Colese8fe6cf2020-05-26 13:07:40 +0100584 fih_int fih_rc = FIH_FAILURE;
Christopher Collins92ea77f2016-12-12 15:59:26 -0800585 int rc;
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300586
Fabio Utzig10ee6482019-08-01 12:04:52 -0300587 area_id = flash_area_id_from_multi_image_slot(BOOT_CURR_IMG(state), slot);
Fabio Utzigb0f04732019-07-31 09:49:19 -0300588 rc = flash_area_open(area_id, &fap);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800589 if (rc != 0) {
Raef Colese8fe6cf2020-05-26 13:07:40 +0100590 FIH_RET(fih_rc);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800591 }
592
Fabio Utzig10ee6482019-08-01 12:04:52 -0300593 hdr = boot_img_hdr(state, slot);
594 if (boot_check_header_erased(state, slot) == 0 ||
595 (hdr->ih_flags & IMAGE_F_NON_BOOTABLE)) {
Fabio Utzig260ec452020-07-09 18:40:07 -0300596
597#if defined(MCUBOOT_SWAP_USING_SCRATCH) || defined(MCUBOOT_SWAP_USING_MOVE)
598 /*
599 * This fixes an issue where an image might be erased, but a trailer
600 * be left behind. It can happen if the image is in the secondary slot
601 * and did not pass validation, in which case the whole slot is erased.
602 * If during the erase operation, a reset occurs, parts of the slot
603 * might have been erased while some did not. The concerning part is
604 * the trailer because it might disable a new image from being loaded
605 * through mcumgr; so we just get rid of the trailer here, if the header
606 * is erased.
607 */
608 if (slot != BOOT_PRIMARY_SLOT) {
609 swap_erase_trailer_sectors(state, fap);
610 }
611#endif
612
David Vincze2d736ad2019-02-18 11:50:22 +0100613 /* No bootable image in slot; continue booting from the primary slot. */
Raef Colese8fe6cf2020-05-26 13:07:40 +0100614 fih_rc = fih_int_encode(1);
Fabio Utzig338a19f2018-12-03 08:37:08 -0200615 goto out;
Fabio Utzig39000012018-07-30 12:40:20 -0300616 }
617
Håkon Øye Amundsen2d1bac12020-01-03 13:08:09 +0000618#if defined(MCUBOOT_OVERWRITE_ONLY) && defined(MCUBOOT_DOWNGRADE_PREVENTION)
619 if (slot != BOOT_PRIMARY_SLOT) {
620 /* Check if version of secondary slot is sufficient */
David Vincze8b0b6372020-05-20 19:54:44 +0200621 rc = boot_version_cmp(
622 &boot_img_hdr(state, BOOT_SECONDARY_SLOT)->ih_ver,
623 &boot_img_hdr(state, BOOT_PRIMARY_SLOT)->ih_ver);
624 if (rc < 0 && boot_check_header_erased(state, BOOT_PRIMARY_SLOT)) {
Håkon Øye Amundsen2d1bac12020-01-03 13:08:09 +0000625 BOOT_LOG_ERR("insufficient version in secondary slot");
626 flash_area_erase(fap, 0, fap->fa_size);
627 /* Image in the secondary slot does not satisfy version requirement.
628 * Erase the image and continue booting from the primary slot.
629 */
Raef Colese8fe6cf2020-05-26 13:07:40 +0100630 fih_rc = fih_int_encode(1);
Håkon Øye Amundsen2d1bac12020-01-03 13:08:09 +0000631 goto out;
632 }
633 }
634#endif
635
Raef Colese8fe6cf2020-05-26 13:07:40 +0100636 FIH_CALL(boot_image_check, fih_rc, state, hdr, fap, bs);
637 if (!boot_is_header_valid(hdr, fap) || fih_not_eq(fih_rc, FIH_SUCCESS)) {
Tamas Banfe031092020-09-10 17:32:39 +0200638 if ((slot != BOOT_PRIMARY_SLOT) || ARE_SLOTS_EQUIVALENT()) {
David Brownb38e0442017-02-24 13:57:12 -0700639 flash_area_erase(fap, 0, fap->fa_size);
David Vinczee574f2d2020-07-10 11:42:03 +0200640 /* Image is invalid, erase it to prevent further unnecessary
641 * attempts to validate and boot it.
David Brownb38e0442017-02-24 13:57:12 -0700642 */
643 }
David Brown098de832019-12-10 11:58:01 -0700644#if !defined(__BOOTSIM__)
David Vincze2d736ad2019-02-18 11:50:22 +0100645 BOOT_LOG_ERR("Image in the %s slot is not valid!",
646 (slot == BOOT_PRIMARY_SLOT) ? "primary" : "secondary");
David Brown098de832019-12-10 11:58:01 -0700647#endif
Raef Colese8fe6cf2020-05-26 13:07:40 +0100648 fih_rc = fih_int_encode(1);
Fabio Utzig338a19f2018-12-03 08:37:08 -0200649 goto out;
Christopher Collins92ea77f2016-12-12 15:59:26 -0800650 }
651
Fabio Utzig338a19f2018-12-03 08:37:08 -0200652out:
653 flash_area_close(fap);
Raef Colese8fe6cf2020-05-26 13:07:40 +0100654
655 FIH_RET(fih_rc);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800656}
657
David Vinczec3084132020-02-18 14:50:47 +0100658#ifdef MCUBOOT_HW_ROLLBACK_PROT
659/**
660 * Updates the stored security counter value with the image's security counter
661 * value which resides in the given slot, only if it's greater than the stored
662 * value.
663 *
664 * @param image_index Index of the image to determine which security
665 * counter to update.
666 * @param slot Slot number of the image.
667 * @param hdr Pointer to the image header structure of the image
668 * that is currently stored in the given slot.
669 *
670 * @return 0 on success; nonzero on failure.
671 */
672static int
673boot_update_security_counter(uint8_t image_index, int slot,
674 struct image_header *hdr)
675{
676 const struct flash_area *fap = NULL;
677 uint32_t img_security_cnt;
678 int rc;
679
680 rc = flash_area_open(flash_area_id_from_multi_image_slot(image_index, slot),
681 &fap);
682 if (rc != 0) {
683 rc = BOOT_EFLASH;
684 goto done;
685 }
686
687 rc = bootutil_get_img_security_cnt(hdr, fap, &img_security_cnt);
688 if (rc != 0) {
689 goto done;
690 }
691
692 rc = boot_nv_security_counter_update(image_index, img_security_cnt);
693 if (rc != 0) {
694 goto done;
695 }
696
697done:
698 flash_area_close(fap);
699 return rc;
700}
701#endif /* MCUBOOT_HW_ROLLBACK_PROT */
702
Tamas Banfe031092020-09-10 17:32:39 +0200703#if !defined(MCUBOOT_DIRECT_XIP) && !defined(MCUBOOT_RAM_LOAD)
David Vinczee574f2d2020-07-10 11:42:03 +0200704/**
705 * Determines which swap operation to perform, if any. If it is determined
706 * that a swap operation is required, the image in the secondary slot is checked
707 * for validity. If the image in the secondary slot is invalid, it is erased,
708 * and a swap type of "none" is indicated.
709 *
710 * @return The type of swap to perform (BOOT_SWAP_TYPE...)
711 */
712static int
713boot_validated_swap_type(struct boot_loader_state *state,
714 struct boot_status *bs)
715{
716 int swap_type;
Raef Colese8fe6cf2020-05-26 13:07:40 +0100717 fih_int fih_rc = FIH_FAILURE;
David Vinczee574f2d2020-07-10 11:42:03 +0200718
719 swap_type = boot_swap_type_multi(BOOT_CURR_IMG(state));
720 if (BOOT_IS_UPGRADE(swap_type)) {
721 /* Boot loader wants to switch to the secondary slot.
722 * Ensure image is valid.
723 */
Raef Colese8fe6cf2020-05-26 13:07:40 +0100724 FIH_CALL(boot_validate_slot, fih_rc, state, BOOT_SECONDARY_SLOT, bs);
725 if (fih_not_eq(fih_rc, FIH_SUCCESS)) {
726 if (fih_eq(fih_rc, fih_int_encode(1))) {
727 swap_type = BOOT_SWAP_TYPE_NONE;
728 } else {
729 swap_type = BOOT_SWAP_TYPE_FAIL;
730 }
David Vinczee574f2d2020-07-10 11:42:03 +0200731 }
732 }
733
734 return swap_type;
735}
736
Christopher Collins92ea77f2016-12-12 15:59:26 -0800737/**
Christopher Collins92ea77f2016-12-12 15:59:26 -0800738 * Erases a region of flash.
739 *
Fabio Utzigba829042018-09-18 08:29:34 -0300740 * @param flash_area The flash_area containing the region to erase.
Christopher Collins92ea77f2016-12-12 15:59:26 -0800741 * @param off The offset within the flash area to start the
742 * erase.
743 * @param sz The number of bytes to erase.
744 *
745 * @return 0 on success; nonzero on failure.
746 */
Fabio Utzig12d59162019-11-28 10:01:59 -0300747int
Fabio Utzigc28005b2019-09-10 12:18:29 -0300748boot_erase_region(const struct flash_area *fap, uint32_t off, uint32_t sz)
Christopher Collins92ea77f2016-12-12 15:59:26 -0800749{
Fabio Utzigba829042018-09-18 08:29:34 -0300750 return flash_area_erase(fap, off, sz);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800751}
752
753/**
754 * Copies the contents of one flash region to another. You must erase the
755 * destination region prior to calling this function.
756 *
757 * @param flash_area_id_src The ID of the source flash area.
758 * @param flash_area_id_dst The ID of the destination flash area.
759 * @param off_src The offset within the source flash area to
760 * copy from.
761 * @param off_dst The offset within the destination flash area to
762 * copy to.
763 * @param sz The number of bytes to copy.
764 *
765 * @return 0 on success; nonzero on failure.
766 */
Fabio Utzig12d59162019-11-28 10:01:59 -0300767int
Fabio Utzigc28005b2019-09-10 12:18:29 -0300768boot_copy_region(struct boot_loader_state *state,
Fabio Utzig10ee6482019-08-01 12:04:52 -0300769 const struct flash_area *fap_src,
Fabio Utzigba829042018-09-18 08:29:34 -0300770 const struct flash_area *fap_dst,
Christopher Collins92ea77f2016-12-12 15:59:26 -0800771 uint32_t off_src, uint32_t off_dst, uint32_t sz)
772{
Christopher Collins92ea77f2016-12-12 15:59:26 -0800773 uint32_t bytes_copied;
774 int chunk_sz;
775 int rc;
Fabio Utzigba829042018-09-18 08:29:34 -0300776#ifdef MCUBOOT_ENC_IMAGES
777 uint32_t off;
Fabio Utziga87cc7d2019-08-26 11:21:45 -0300778 uint32_t tlv_off;
Fabio Utzigba829042018-09-18 08:29:34 -0300779 size_t blk_off;
780 struct image_header *hdr;
781 uint16_t idx;
782 uint32_t blk_sz;
Fabio Utzigb0f04732019-07-31 09:49:19 -0300783 uint8_t image_index;
Fabio Utzigba829042018-09-18 08:29:34 -0300784#endif
Christopher Collins92ea77f2016-12-12 15:59:26 -0800785
Fabio Utzig10ee6482019-08-01 12:04:52 -0300786 TARGET_STATIC uint8_t buf[1024];
787
788#if !defined(MCUBOOT_ENC_IMAGES)
789 (void)state;
790#endif
Christopher Collins92ea77f2016-12-12 15:59:26 -0800791
Christopher Collins92ea77f2016-12-12 15:59:26 -0800792 bytes_copied = 0;
793 while (bytes_copied < sz) {
794 if (sz - bytes_copied > sizeof buf) {
795 chunk_sz = sizeof buf;
796 } else {
797 chunk_sz = sz - bytes_copied;
798 }
799
800 rc = flash_area_read(fap_src, off_src + bytes_copied, buf, chunk_sz);
801 if (rc != 0) {
Fabio Utzigba829042018-09-18 08:29:34 -0300802 return BOOT_EFLASH;
Christopher Collins92ea77f2016-12-12 15:59:26 -0800803 }
804
Fabio Utzigba829042018-09-18 08:29:34 -0300805#ifdef MCUBOOT_ENC_IMAGES
Fabio Utzig10ee6482019-08-01 12:04:52 -0300806 image_index = BOOT_CURR_IMG(state);
Fabio Utzig74aef312019-11-28 11:05:34 -0300807 if ((fap_src->fa_id == FLASH_AREA_IMAGE_SECONDARY(image_index) ||
808 fap_dst->fa_id == FLASH_AREA_IMAGE_SECONDARY(image_index)) &&
809 !(fap_src->fa_id == FLASH_AREA_IMAGE_SECONDARY(image_index) &&
810 fap_dst->fa_id == FLASH_AREA_IMAGE_SECONDARY(image_index))) {
David Vincze2d736ad2019-02-18 11:50:22 +0100811 /* assume the secondary slot as src, needs decryption */
Fabio Utzig10ee6482019-08-01 12:04:52 -0300812 hdr = boot_img_hdr(state, BOOT_SECONDARY_SLOT);
Fabio Utzig74aef312019-11-28 11:05:34 -0300813#if !defined(MCUBOOT_SWAP_USING_MOVE)
Fabio Utzigba829042018-09-18 08:29:34 -0300814 off = off_src;
Fabio Utzigb0f04732019-07-31 09:49:19 -0300815 if (fap_dst->fa_id == FLASH_AREA_IMAGE_SECONDARY(image_index)) {
David Vincze2d736ad2019-02-18 11:50:22 +0100816 /* might need encryption (metadata from the primary slot) */
Fabio Utzig10ee6482019-08-01 12:04:52 -0300817 hdr = boot_img_hdr(state, BOOT_PRIMARY_SLOT);
Fabio Utzigba829042018-09-18 08:29:34 -0300818 off = off_dst;
819 }
Fabio Utzig74aef312019-11-28 11:05:34 -0300820#else
821 off = off_dst;
822 if (fap_dst->fa_id == FLASH_AREA_IMAGE_SECONDARY(image_index)) {
823 hdr = boot_img_hdr(state, BOOT_PRIMARY_SLOT);
824 }
825#endif
Fabio Utzig2fc80df2018-12-14 06:47:38 -0200826 if (IS_ENCRYPTED(hdr)) {
Fabio Utzigba829042018-09-18 08:29:34 -0300827 blk_sz = chunk_sz;
828 idx = 0;
829 if (off + bytes_copied < hdr->ih_hdr_size) {
830 /* do not decrypt header */
831 blk_off = 0;
832 blk_sz = chunk_sz - hdr->ih_hdr_size;
833 idx = hdr->ih_hdr_size;
834 } else {
835 blk_off = ((off + bytes_copied) - hdr->ih_hdr_size) & 0xf;
836 }
Fabio Utziga87cc7d2019-08-26 11:21:45 -0300837 tlv_off = BOOT_TLV_OFF(hdr);
838 if (off + bytes_copied + chunk_sz > tlv_off) {
Fabio Utzigba829042018-09-18 08:29:34 -0300839 /* do not decrypt TLVs */
Fabio Utziga87cc7d2019-08-26 11:21:45 -0300840 if (off + bytes_copied >= tlv_off) {
Fabio Utzigba829042018-09-18 08:29:34 -0300841 blk_sz = 0;
842 } else {
Fabio Utziga87cc7d2019-08-26 11:21:45 -0300843 blk_sz = tlv_off - (off + bytes_copied);
Fabio Utzigba829042018-09-18 08:29:34 -0300844 }
845 }
Fabio Utzig1e4284b2019-08-23 11:55:27 -0300846 boot_encrypt(BOOT_CURR_ENC(state), image_index, fap_src,
Fabio Utzigb0f04732019-07-31 09:49:19 -0300847 (off + bytes_copied + idx) - hdr->ih_hdr_size, blk_sz,
848 blk_off, &buf[idx]);
Fabio Utzigba829042018-09-18 08:29:34 -0300849 }
850 }
851#endif
852
Christopher Collins92ea77f2016-12-12 15:59:26 -0800853 rc = flash_area_write(fap_dst, off_dst + bytes_copied, buf, chunk_sz);
854 if (rc != 0) {
Fabio Utzigba829042018-09-18 08:29:34 -0300855 return BOOT_EFLASH;
Christopher Collins92ea77f2016-12-12 15:59:26 -0800856 }
857
858 bytes_copied += chunk_sz;
Fabio Utzig853657c2019-05-07 08:06:07 -0300859
860 MCUBOOT_WATCHDOG_FEED();
Christopher Collins92ea77f2016-12-12 15:59:26 -0800861 }
862
Fabio Utzigba829042018-09-18 08:29:34 -0300863 return 0;
Christopher Collins92ea77f2016-12-12 15:59:26 -0800864}
865
Christopher Collins92ea77f2016-12-12 15:59:26 -0800866/**
David Vincze2d736ad2019-02-18 11:50:22 +0100867 * Overwrite primary slot with the image contained in the secondary slot.
868 * If a prior copy operation was interrupted by a system reset, this function
869 * redos the copy.
Christopher Collins92ea77f2016-12-12 15:59:26 -0800870 *
871 * @param bs The current boot status. This function reads
872 * this struct to determine if it is resuming
873 * an interrupted swap operation. This
874 * function writes the updated status to this
875 * function on return.
876 *
877 * @return 0 on success; nonzero on failure.
878 */
Fabio Utzig338a19f2018-12-03 08:37:08 -0200879#if defined(MCUBOOT_OVERWRITE_ONLY) || defined(MCUBOOT_BOOTSTRAP)
David Brown17609d82017-05-05 09:41:34 -0600880static int
Fabio Utzig10ee6482019-08-01 12:04:52 -0300881boot_copy_image(struct boot_loader_state *state, struct boot_status *bs)
David Brown17609d82017-05-05 09:41:34 -0600882{
Marti Bolivard3269fd2017-06-12 16:31:12 -0400883 size_t sect_count;
884 size_t sect;
David Brown17609d82017-05-05 09:41:34 -0600885 int rc;
Fabio Utzig13d9e352017-10-05 20:32:31 -0300886 size_t size;
Marti Bolivard3269fd2017-06-12 16:31:12 -0400887 size_t this_size;
Fabio Utzig13d9e352017-10-05 20:32:31 -0300888 size_t last_sector;
David Vincze2d736ad2019-02-18 11:50:22 +0100889 const struct flash_area *fap_primary_slot;
890 const struct flash_area *fap_secondary_slot;
Fabio Utzigb0f04732019-07-31 09:49:19 -0300891 uint8_t image_index;
David Vincze2d736ad2019-02-18 11:50:22 +0100892
Fabio Utzigaaf767c2017-12-05 10:22:46 -0200893 (void)bs;
894
Fabio Utzig13d9e352017-10-05 20:32:31 -0300895#if defined(MCUBOOT_OVERWRITE_ONLY_FAST)
896 uint32_t src_size = 0;
Fabio Utzigd638b172019-08-09 10:38:05 -0300897 rc = boot_read_image_size(state, BOOT_SECONDARY_SLOT, &src_size);
Fabio Utzig13d9e352017-10-05 20:32:31 -0300898 assert(rc == 0);
899#endif
David Brown17609d82017-05-05 09:41:34 -0600900
David Vincze2d736ad2019-02-18 11:50:22 +0100901 BOOT_LOG_INF("Image upgrade secondary slot -> primary slot");
902 BOOT_LOG_INF("Erasing the primary slot");
David Brown17609d82017-05-05 09:41:34 -0600903
Fabio Utzigb0f04732019-07-31 09:49:19 -0300904 image_index = BOOT_CURR_IMG(state);
905
906 rc = flash_area_open(FLASH_AREA_IMAGE_PRIMARY(image_index),
907 &fap_primary_slot);
Fabio Utzigba829042018-09-18 08:29:34 -0300908 assert (rc == 0);
909
Fabio Utzigb0f04732019-07-31 09:49:19 -0300910 rc = flash_area_open(FLASH_AREA_IMAGE_SECONDARY(image_index),
911 &fap_secondary_slot);
Fabio Utzigba829042018-09-18 08:29:34 -0300912 assert (rc == 0);
913
Fabio Utzig10ee6482019-08-01 12:04:52 -0300914 sect_count = boot_img_num_sectors(state, BOOT_PRIMARY_SLOT);
Fabio Utzig13d9e352017-10-05 20:32:31 -0300915 for (sect = 0, size = 0; sect < sect_count; sect++) {
Fabio Utzig10ee6482019-08-01 12:04:52 -0300916 this_size = boot_img_sector_size(state, BOOT_PRIMARY_SLOT, sect);
Fabio Utzigc28005b2019-09-10 12:18:29 -0300917 rc = boot_erase_region(fap_primary_slot, size, this_size);
David Brown17609d82017-05-05 09:41:34 -0600918 assert(rc == 0);
919
920 size += this_size;
Fabio Utzig13d9e352017-10-05 20:32:31 -0300921
922#if defined(MCUBOOT_OVERWRITE_ONLY_FAST)
923 if (size >= src_size) {
924 break;
925 }
926#endif
David Brown17609d82017-05-05 09:41:34 -0600927 }
928
Fabio Utzigba829042018-09-18 08:29:34 -0300929#ifdef MCUBOOT_ENC_IMAGES
Fabio Utzig10ee6482019-08-01 12:04:52 -0300930 if (IS_ENCRYPTED(boot_img_hdr(state, BOOT_SECONDARY_SLOT))) {
Fabio Utzig1e4284b2019-08-23 11:55:27 -0300931 rc = boot_enc_load(BOOT_CURR_ENC(state), image_index,
Fabio Utzig10ee6482019-08-01 12:04:52 -0300932 boot_img_hdr(state, BOOT_SECONDARY_SLOT),
Fabio Utzig4741c452019-12-19 15:32:41 -0300933 fap_secondary_slot, bs);
David Vincze2d736ad2019-02-18 11:50:22 +0100934
Fabio Utzigba829042018-09-18 08:29:34 -0300935 if (rc < 0) {
936 return BOOT_EBADIMAGE;
937 }
Fabio Utzig4741c452019-12-19 15:32:41 -0300938 if (rc == 0 && boot_enc_set_key(BOOT_CURR_ENC(state), 1, bs)) {
Fabio Utzigba829042018-09-18 08:29:34 -0300939 return BOOT_EBADIMAGE;
940 }
941 }
942#endif
943
David Vincze2d736ad2019-02-18 11:50:22 +0100944 BOOT_LOG_INF("Copying the secondary slot to the primary slot: 0x%zx bytes",
945 size);
Fabio Utzigc28005b2019-09-10 12:18:29 -0300946 rc = boot_copy_region(state, fap_secondary_slot, fap_primary_slot, 0, 0, size);
David Brown17609d82017-05-05 09:41:34 -0600947
David Vinczec3084132020-02-18 14:50:47 +0100948#ifdef MCUBOOT_HW_ROLLBACK_PROT
949 /* Update the stored security counter with the new image's security counter
950 * value. Both slots hold the new image at this point, but the secondary
951 * slot's image header must be passed since the image headers in the
952 * boot_data structure have not been updated yet.
953 */
954 rc = boot_update_security_counter(BOOT_CURR_IMG(state), BOOT_PRIMARY_SLOT,
955 boot_img_hdr(state, BOOT_SECONDARY_SLOT));
956 if (rc != 0) {
957 BOOT_LOG_ERR("Security counter update failed after image upgrade.");
958 return rc;
959 }
960#endif /* MCUBOOT_HW_ROLLBACK_PROT */
961
Fabio Utzig13d9e352017-10-05 20:32:31 -0300962 /*
963 * Erases header and trailer. The trailer is erased because when a new
964 * image is written without a trailer as is the case when using newt, the
965 * trailer that was left might trigger a new upgrade.
966 */
Christopher Collins2c88e692019-05-22 15:10:14 -0700967 BOOT_LOG_DBG("erasing secondary header");
Fabio Utzigc28005b2019-09-10 12:18:29 -0300968 rc = boot_erase_region(fap_secondary_slot,
Fabio Utzig10ee6482019-08-01 12:04:52 -0300969 boot_img_sector_off(state, BOOT_SECONDARY_SLOT, 0),
970 boot_img_sector_size(state, BOOT_SECONDARY_SLOT, 0));
David Brown17609d82017-05-05 09:41:34 -0600971 assert(rc == 0);
Fabio Utzig10ee6482019-08-01 12:04:52 -0300972 last_sector = boot_img_num_sectors(state, BOOT_SECONDARY_SLOT) - 1;
Christopher Collins2c88e692019-05-22 15:10:14 -0700973 BOOT_LOG_DBG("erasing secondary trailer");
Fabio Utzigc28005b2019-09-10 12:18:29 -0300974 rc = boot_erase_region(fap_secondary_slot,
Fabio Utzig10ee6482019-08-01 12:04:52 -0300975 boot_img_sector_off(state, BOOT_SECONDARY_SLOT,
976 last_sector),
977 boot_img_sector_size(state, BOOT_SECONDARY_SLOT,
978 last_sector));
Fabio Utzig13d9e352017-10-05 20:32:31 -0300979 assert(rc == 0);
980
David Vincze2d736ad2019-02-18 11:50:22 +0100981 flash_area_close(fap_primary_slot);
982 flash_area_close(fap_secondary_slot);
Fabio Utzigba829042018-09-18 08:29:34 -0300983
David Vincze2d736ad2019-02-18 11:50:22 +0100984 /* TODO: Perhaps verify the primary slot's signature again? */
David Brown17609d82017-05-05 09:41:34 -0600985
986 return 0;
987}
Fabio Utzig338a19f2018-12-03 08:37:08 -0200988#endif
Fabio Utzigba829042018-09-18 08:29:34 -0300989
Christopher Collinsa1c12042019-05-23 14:00:28 -0700990#if !defined(MCUBOOT_OVERWRITE_ONLY)
Fabio Utzigba829042018-09-18 08:29:34 -0300991/**
992 * Swaps the two images in flash. If a prior copy operation was interrupted
993 * by a system reset, this function completes that operation.
994 *
995 * @param bs The current boot status. This function reads
996 * this struct to determine if it is resuming
997 * an interrupted swap operation. This
998 * function writes the updated status to this
999 * function on return.
1000 *
1001 * @return 0 on success; nonzero on failure.
1002 */
Christopher Collins92ea77f2016-12-12 15:59:26 -08001003static int
Fabio Utzig10ee6482019-08-01 12:04:52 -03001004boot_swap_image(struct boot_loader_state *state, struct boot_status *bs)
Christopher Collins92ea77f2016-12-12 15:59:26 -08001005{
Fabio Utzig2473ac02017-05-02 12:45:02 -03001006 struct image_header *hdr;
Fabio Utzigba829042018-09-18 08:29:34 -03001007#ifdef MCUBOOT_ENC_IMAGES
1008 const struct flash_area *fap;
1009 uint8_t slot;
1010 uint8_t i;
Fabio Utzigba829042018-09-18 08:29:34 -03001011#endif
Fabio Utzig2473ac02017-05-02 12:45:02 -03001012 uint32_t size;
1013 uint32_t copy_size;
Fabio Utzigb0f04732019-07-31 09:49:19 -03001014 uint8_t image_index;
Fabio Utzig2473ac02017-05-02 12:45:02 -03001015 int rc;
1016
1017 /* FIXME: just do this if asked by user? */
1018
1019 size = copy_size = 0;
Fabio Utzig10ee6482019-08-01 12:04:52 -03001020 image_index = BOOT_CURR_IMG(state);
Fabio Utzig2473ac02017-05-02 12:45:02 -03001021
Fabio Utzig12d59162019-11-28 10:01:59 -03001022 if (boot_status_is_reset(bs)) {
Fabio Utzig46490722017-09-04 15:34:32 -03001023 /*
1024 * No swap ever happened, so need to find the largest image which
1025 * will be used to determine the amount of sectors to swap.
1026 */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001027 hdr = boot_img_hdr(state, BOOT_PRIMARY_SLOT);
Fabio Utzig2473ac02017-05-02 12:45:02 -03001028 if (hdr->ih_magic == IMAGE_MAGIC) {
Fabio Utzigd638b172019-08-09 10:38:05 -03001029 rc = boot_read_image_size(state, BOOT_PRIMARY_SLOT, &copy_size);
David Brownf5b33d82017-09-01 10:58:27 -06001030 assert(rc == 0);
Fabio Utzig2473ac02017-05-02 12:45:02 -03001031 }
Fabio Utzig2473ac02017-05-02 12:45:02 -03001032
Fabio Utzigba829042018-09-18 08:29:34 -03001033#ifdef MCUBOOT_ENC_IMAGES
Fabio Utzig2fc80df2018-12-14 06:47:38 -02001034 if (IS_ENCRYPTED(hdr)) {
Fabio Utzig10ee6482019-08-01 12:04:52 -03001035 fap = BOOT_IMG_AREA(state, BOOT_PRIMARY_SLOT);
Fabio Utzig4741c452019-12-19 15:32:41 -03001036 rc = boot_enc_load(BOOT_CURR_ENC(state), image_index, hdr, fap, bs);
Fabio Utzigba829042018-09-18 08:29:34 -03001037 assert(rc >= 0);
1038
1039 if (rc == 0) {
Fabio Utzig4741c452019-12-19 15:32:41 -03001040 rc = boot_enc_set_key(BOOT_CURR_ENC(state), 0, bs);
Fabio Utzigba829042018-09-18 08:29:34 -03001041 assert(rc == 0);
1042 } else {
1043 rc = 0;
1044 }
1045 } else {
1046 memset(bs->enckey[0], 0xff, BOOT_ENC_KEY_SIZE);
1047 }
1048#endif
1049
Fabio Utzig10ee6482019-08-01 12:04:52 -03001050 hdr = boot_img_hdr(state, BOOT_SECONDARY_SLOT);
Fabio Utzig46490722017-09-04 15:34:32 -03001051 if (hdr->ih_magic == IMAGE_MAGIC) {
Fabio Utzigd638b172019-08-09 10:38:05 -03001052 rc = boot_read_image_size(state, BOOT_SECONDARY_SLOT, &size);
Fabio Utzig46490722017-09-04 15:34:32 -03001053 assert(rc == 0);
1054 }
1055
Fabio Utzigba829042018-09-18 08:29:34 -03001056#ifdef MCUBOOT_ENC_IMAGES
Fabio Utzig10ee6482019-08-01 12:04:52 -03001057 hdr = boot_img_hdr(state, BOOT_SECONDARY_SLOT);
Fabio Utzig2fc80df2018-12-14 06:47:38 -02001058 if (IS_ENCRYPTED(hdr)) {
Fabio Utzig10ee6482019-08-01 12:04:52 -03001059 fap = BOOT_IMG_AREA(state, BOOT_SECONDARY_SLOT);
Fabio Utzig4741c452019-12-19 15:32:41 -03001060 rc = boot_enc_load(BOOT_CURR_ENC(state), image_index, hdr, fap, bs);
Fabio Utzigba829042018-09-18 08:29:34 -03001061 assert(rc >= 0);
1062
1063 if (rc == 0) {
Fabio Utzig4741c452019-12-19 15:32:41 -03001064 rc = boot_enc_set_key(BOOT_CURR_ENC(state), 1, bs);
Fabio Utzigba829042018-09-18 08:29:34 -03001065 assert(rc == 0);
1066 } else {
1067 rc = 0;
1068 }
1069 } else {
1070 memset(bs->enckey[1], 0xff, BOOT_ENC_KEY_SIZE);
1071 }
1072#endif
1073
Fabio Utzig46490722017-09-04 15:34:32 -03001074 if (size > copy_size) {
1075 copy_size = size;
1076 }
1077
1078 bs->swap_size = copy_size;
1079 } else {
1080 /*
1081 * If a swap was under way, the swap_size should already be present
1082 * in the trailer...
1083 */
Fabio Utzigb0f04732019-07-31 09:49:19 -03001084 rc = boot_read_swap_size(image_index, &bs->swap_size);
Fabio Utzig46490722017-09-04 15:34:32 -03001085 assert(rc == 0);
1086
1087 copy_size = bs->swap_size;
Fabio Utzigba829042018-09-18 08:29:34 -03001088
1089#ifdef MCUBOOT_ENC_IMAGES
Fabio Utzig4741c452019-12-19 15:32:41 -03001090 for (slot = 0; slot < BOOT_NUM_SLOTS; slot++) {
1091 rc = boot_read_enc_key(image_index, slot, bs);
Fabio Utzigba829042018-09-18 08:29:34 -03001092 assert(rc == 0);
1093
1094 for (i = 0; i < BOOT_ENC_KEY_SIZE; i++) {
Fabio Utzig1c7d9592018-12-03 10:35:56 -02001095 if (bs->enckey[slot][i] != 0xff) {
Fabio Utzigba829042018-09-18 08:29:34 -03001096 break;
1097 }
1098 }
1099
1100 if (i != BOOT_ENC_KEY_SIZE) {
Fabio Utzig4741c452019-12-19 15:32:41 -03001101 boot_enc_set_key(BOOT_CURR_ENC(state), slot, bs);
Fabio Utzigba829042018-09-18 08:29:34 -03001102 }
1103 }
1104#endif
Fabio Utzig2473ac02017-05-02 12:45:02 -03001105 }
1106
Fabio Utzig12d59162019-11-28 10:01:59 -03001107 swap_run(state, bs, copy_size);
Christopher Collins92ea77f2016-12-12 15:59:26 -08001108
David Vincze2d736ad2019-02-18 11:50:22 +01001109#ifdef MCUBOOT_VALIDATE_PRIMARY_SLOT
Fabio Utzig12d59162019-11-28 10:01:59 -03001110 extern int boot_status_fails;
Fabio Utziga0e1cce2017-11-23 20:04:01 -02001111 if (boot_status_fails > 0) {
Christopher Collins2c88e692019-05-22 15:10:14 -07001112 BOOT_LOG_WRN("%d status write fails performing the swap",
1113 boot_status_fails);
Fabio Utziga0e1cce2017-11-23 20:04:01 -02001114 }
1115#endif
1116
Christopher Collins92ea77f2016-12-12 15:59:26 -08001117 return 0;
1118}
David Brown17609d82017-05-05 09:41:34 -06001119#endif
Christopher Collins92ea77f2016-12-12 15:59:26 -08001120
David Vinczee32483f2019-06-13 10:46:24 +02001121#if (BOOT_IMAGE_NUMBER > 1)
1122/**
1123 * Check the image dependency whether it is satisfied and modify
1124 * the swap type if necessary.
1125 *
1126 * @param dep Image dependency which has to be verified.
1127 *
1128 * @return 0 on success; nonzero on failure.
1129 */
1130static int
Fabio Utzig298913b2019-08-28 11:22:45 -03001131boot_verify_slot_dependency(struct boot_loader_state *state,
1132 struct image_dependency *dep)
David Vinczee32483f2019-06-13 10:46:24 +02001133{
1134 struct image_version *dep_version;
1135 size_t dep_slot;
1136 int rc;
David Browne6ab34c2019-09-03 12:24:21 -06001137 uint8_t swap_type;
David Vinczee32483f2019-06-13 10:46:24 +02001138
1139 /* Determine the source of the image which is the subject of
1140 * the dependency and get it's version. */
David Browne6ab34c2019-09-03 12:24:21 -06001141 swap_type = state->swap_type[dep->image_id];
Barry Solomon04075532020-03-18 09:33:32 -04001142 dep_slot = BOOT_IS_UPGRADE(swap_type) ? BOOT_SECONDARY_SLOT
1143 : BOOT_PRIMARY_SLOT;
Fabio Utzig10ee6482019-08-01 12:04:52 -03001144 dep_version = &state->imgs[dep->image_id][dep_slot].hdr.ih_ver;
David Vinczee32483f2019-06-13 10:46:24 +02001145
David Vincze8b0b6372020-05-20 19:54:44 +02001146 rc = boot_version_cmp(dep_version, &dep->image_min_version);
1147 if (rc < 0) {
David Vinczee32483f2019-06-13 10:46:24 +02001148 /* Dependency not satisfied.
1149 * Modify the swap type to decrease the version number of the image
1150 * (which will be located in the primary slot after the boot process),
1151 * consequently the number of unsatisfied dependencies will be
1152 * decreased or remain the same.
1153 */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001154 switch (BOOT_SWAP_TYPE(state)) {
David Vinczee32483f2019-06-13 10:46:24 +02001155 case BOOT_SWAP_TYPE_TEST:
1156 case BOOT_SWAP_TYPE_PERM:
Fabio Utzig10ee6482019-08-01 12:04:52 -03001157 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_NONE;
David Vinczee32483f2019-06-13 10:46:24 +02001158 break;
1159 case BOOT_SWAP_TYPE_NONE:
Fabio Utzig10ee6482019-08-01 12:04:52 -03001160 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_REVERT;
David Vinczee32483f2019-06-13 10:46:24 +02001161 break;
1162 default:
1163 break;
1164 }
David Vincze8b0b6372020-05-20 19:54:44 +02001165 } else {
1166 /* Dependency satisfied. */
1167 rc = 0;
David Vinczee32483f2019-06-13 10:46:24 +02001168 }
1169
1170 return rc;
1171}
1172
1173/**
1174 * Read all dependency TLVs of an image from the flash and verify
1175 * one after another to see if they are all satisfied.
1176 *
1177 * @param slot Image slot number.
1178 *
1179 * @return 0 on success; nonzero on failure.
1180 */
1181static int
Fabio Utzig298913b2019-08-28 11:22:45 -03001182boot_verify_slot_dependencies(struct boot_loader_state *state, uint32_t slot)
David Vinczee32483f2019-06-13 10:46:24 +02001183{
1184 const struct flash_area *fap;
Fabio Utzig61fd8882019-09-14 20:00:20 -03001185 struct image_tlv_iter it;
David Vinczee32483f2019-06-13 10:46:24 +02001186 struct image_dependency dep;
1187 uint32_t off;
Fabio Utzig61fd8882019-09-14 20:00:20 -03001188 uint16_t len;
Fabio Utzigb0f04732019-07-31 09:49:19 -03001189 int area_id;
David Vinczee32483f2019-06-13 10:46:24 +02001190 int rc;
1191
Fabio Utzig10ee6482019-08-01 12:04:52 -03001192 area_id = flash_area_id_from_multi_image_slot(BOOT_CURR_IMG(state), slot);
Fabio Utzigb0f04732019-07-31 09:49:19 -03001193 rc = flash_area_open(area_id, &fap);
David Vinczee32483f2019-06-13 10:46:24 +02001194 if (rc != 0) {
1195 rc = BOOT_EFLASH;
1196 goto done;
1197 }
1198
Fabio Utzig61fd8882019-09-14 20:00:20 -03001199 rc = bootutil_tlv_iter_begin(&it, boot_img_hdr(state, slot), fap,
1200 IMAGE_TLV_DEPENDENCY, true);
David Vinczee32483f2019-06-13 10:46:24 +02001201 if (rc != 0) {
David Vinczee32483f2019-06-13 10:46:24 +02001202 goto done;
1203 }
1204
Fabio Utzig61fd8882019-09-14 20:00:20 -03001205 while (true) {
1206 rc = bootutil_tlv_iter_next(&it, &off, &len, NULL);
1207 if (rc < 0) {
1208 return -1;
1209 } else if (rc > 0) {
1210 rc = 0;
David Vinczee32483f2019-06-13 10:46:24 +02001211 break;
1212 }
Fabio Utzig61fd8882019-09-14 20:00:20 -03001213
1214 if (len != sizeof(dep)) {
1215 rc = BOOT_EBADIMAGE;
1216 goto done;
1217 }
1218
1219 rc = flash_area_read(fap, off, &dep, len);
1220 if (rc != 0) {
1221 rc = BOOT_EFLASH;
1222 goto done;
1223 }
1224
1225 if (dep.image_id >= BOOT_IMAGE_NUMBER) {
1226 rc = BOOT_EBADARGS;
1227 goto done;
1228 }
1229
1230 /* Verify dependency and modify the swap type if not satisfied. */
1231 rc = boot_verify_slot_dependency(state, &dep);
1232 if (rc != 0) {
1233 /* Dependency not satisfied. */
1234 goto done;
1235 }
David Vinczee32483f2019-06-13 10:46:24 +02001236 }
1237
1238done:
1239 flash_area_close(fap);
1240 return rc;
1241}
1242
1243/**
David Vinczee32483f2019-06-13 10:46:24 +02001244 * Iterate over all the images and verify whether the image dependencies in the
1245 * TLV area are all satisfied and update the related swap type if necessary.
1246 */
Fabio Utzig298913b2019-08-28 11:22:45 -03001247static int
1248boot_verify_dependencies(struct boot_loader_state *state)
David Vinczee32483f2019-06-13 10:46:24 +02001249{
Erik Johnson49063752020-02-06 09:59:31 -06001250 int rc = -1;
Fabio Utzig298913b2019-08-28 11:22:45 -03001251 uint8_t slot;
David Vinczee32483f2019-06-13 10:46:24 +02001252
Fabio Utzig10ee6482019-08-01 12:04:52 -03001253 BOOT_CURR_IMG(state) = 0;
1254 while (BOOT_CURR_IMG(state) < BOOT_IMAGE_NUMBER) {
Fabio Utzig298913b2019-08-28 11:22:45 -03001255 if (BOOT_SWAP_TYPE(state) != BOOT_SWAP_TYPE_NONE &&
1256 BOOT_SWAP_TYPE(state) != BOOT_SWAP_TYPE_FAIL) {
1257 slot = BOOT_SECONDARY_SLOT;
1258 } else {
1259 slot = BOOT_PRIMARY_SLOT;
1260 }
1261
1262 rc = boot_verify_slot_dependencies(state, slot);
Fabio Utzigabec0732019-07-31 08:40:22 -03001263 if (rc == 0) {
David Vinczee32483f2019-06-13 10:46:24 +02001264 /* All dependencies've been satisfied, continue with next image. */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001265 BOOT_CURR_IMG(state)++;
David Vincze8b0b6372020-05-20 19:54:44 +02001266 } else {
Fabio Utzig298913b2019-08-28 11:22:45 -03001267 /* Cannot upgrade due to non-met dependencies, so disable all
1268 * image upgrades.
1269 */
1270 for (int idx = 0; idx < BOOT_IMAGE_NUMBER; idx++) {
1271 BOOT_CURR_IMG(state) = idx;
1272 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_NONE;
1273 }
1274 break;
David Vinczee32483f2019-06-13 10:46:24 +02001275 }
1276 }
Fabio Utzig298913b2019-08-28 11:22:45 -03001277 return rc;
David Vinczee32483f2019-06-13 10:46:24 +02001278}
1279#endif /* (BOOT_IMAGE_NUMBER > 1) */
1280
Christopher Collins92ea77f2016-12-12 15:59:26 -08001281/**
David Vinczeba3bd602019-06-17 16:01:43 +02001282 * Performs a clean (not aborted) image update.
Christopher Collins0ff3c6c2016-12-21 12:04:17 -08001283 *
David Vinczeba3bd602019-06-17 16:01:43 +02001284 * @param bs The current boot status.
Christopher Collins0ff3c6c2016-12-21 12:04:17 -08001285 *
1286 * @return 0 on success; nonzero on failure.
1287 */
1288static int
Fabio Utzig10ee6482019-08-01 12:04:52 -03001289boot_perform_update(struct boot_loader_state *state, struct boot_status *bs)
Christopher Collins0ff3c6c2016-12-21 12:04:17 -08001290{
Christopher Collins0ff3c6c2016-12-21 12:04:17 -08001291 int rc;
Fabio Utzig10ee6482019-08-01 12:04:52 -03001292#ifndef MCUBOOT_OVERWRITE_ONLY
1293 uint8_t swap_type;
1294#endif
Christopher Collins0ff3c6c2016-12-21 12:04:17 -08001295
David Vinczeba3bd602019-06-17 16:01:43 +02001296 /* At this point there are no aborted swaps. */
1297#if defined(MCUBOOT_OVERWRITE_ONLY)
Fabio Utzig10ee6482019-08-01 12:04:52 -03001298 rc = boot_copy_image(state, bs);
David Vinczeba3bd602019-06-17 16:01:43 +02001299#elif defined(MCUBOOT_BOOTSTRAP)
1300 /* Check if the image update was triggered by a bad image in the
1301 * primary slot (the validity of the image in the secondary slot had
1302 * already been checked).
1303 */
Raef Colese8fe6cf2020-05-26 13:07:40 +01001304 fih_int fih_rc = FIH_FAILURE;
1305 rc = boot_check_header_erased(state, BOOT_PRIMARY_SLOT);
1306 FIH_CALL(boot_validate_slot, fih_rc, state, BOOT_PRIMARY_SLOT, bs);
1307 if (rc == 0 || fih_not_eq(fih_rc, FIH_SUCCESS)) {
Fabio Utzig10ee6482019-08-01 12:04:52 -03001308 rc = boot_copy_image(state, bs);
David Vinczeba3bd602019-06-17 16:01:43 +02001309 } else {
Fabio Utzig10ee6482019-08-01 12:04:52 -03001310 rc = boot_swap_image(state, bs);
David Vinczeba3bd602019-06-17 16:01:43 +02001311 }
1312#else
Fabio Utzig10ee6482019-08-01 12:04:52 -03001313 rc = boot_swap_image(state, bs);
David Vinczeba3bd602019-06-17 16:01:43 +02001314#endif
Fabio Utzig7ebb7c22017-04-26 10:59:31 -03001315 assert(rc == 0);
David Vinczeba3bd602019-06-17 16:01:43 +02001316
1317#ifndef MCUBOOT_OVERWRITE_ONLY
1318 /* The following state needs image_ok be explicitly set after the
1319 * swap was finished to avoid a new revert.
1320 */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001321 swap_type = BOOT_SWAP_TYPE(state);
1322 if (swap_type == BOOT_SWAP_TYPE_REVERT ||
1323 swap_type == BOOT_SWAP_TYPE_PERM) {
Fabio Utzig12d59162019-11-28 10:01:59 -03001324 rc = swap_set_image_ok(BOOT_CURR_IMG(state));
David Vinczeba3bd602019-06-17 16:01:43 +02001325 if (rc != 0) {
Fabio Utzig10ee6482019-08-01 12:04:52 -03001326 BOOT_SWAP_TYPE(state) = swap_type = BOOT_SWAP_TYPE_PANIC;
David Vinczeba3bd602019-06-17 16:01:43 +02001327 }
Christopher Collins0ff3c6c2016-12-21 12:04:17 -08001328 }
1329
David Vinczec3084132020-02-18 14:50:47 +01001330#ifdef MCUBOOT_HW_ROLLBACK_PROT
1331 if (swap_type == BOOT_SWAP_TYPE_PERM) {
1332 /* Update the stored security counter with the new image's security
1333 * counter value. The primary slot holds the new image at this point,
1334 * but the secondary slot's image header must be passed since image
1335 * headers in the boot_data structure have not been updated yet.
1336 *
1337 * In case of a permanent image swap mcuboot will never attempt to
1338 * revert the images on the next reboot. Therefore, the security
1339 * counter must be increased right after the image upgrade.
1340 */
1341 rc = boot_update_security_counter(
1342 BOOT_CURR_IMG(state),
1343 BOOT_PRIMARY_SLOT,
1344 boot_img_hdr(state, BOOT_SECONDARY_SLOT));
1345 if (rc != 0) {
1346 BOOT_LOG_ERR("Security counter update failed after "
1347 "image upgrade.");
1348 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_PANIC;
1349 }
1350 }
1351#endif /* MCUBOOT_HW_ROLLBACK_PROT */
1352
Fabio Utzige575b0b2019-09-11 12:34:23 -03001353 if (BOOT_IS_UPGRADE(swap_type)) {
Fabio Utzig12d59162019-11-28 10:01:59 -03001354 rc = swap_set_copy_done(BOOT_CURR_IMG(state));
David Vinczeba3bd602019-06-17 16:01:43 +02001355 if (rc != 0) {
Fabio Utzig10ee6482019-08-01 12:04:52 -03001356 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_PANIC;
Christopher Collinsa1c12042019-05-23 14:00:28 -07001357 }
David Vinczeba3bd602019-06-17 16:01:43 +02001358 }
1359#endif /* !MCUBOOT_OVERWRITE_ONLY */
Fabio Utzig338a19f2018-12-03 08:37:08 -02001360
David Vinczeba3bd602019-06-17 16:01:43 +02001361 return rc;
1362}
1363
1364/**
1365 * Completes a previously aborted image swap.
1366 *
1367 * @param bs The current boot status.
1368 *
1369 * @return 0 on success; nonzero on failure.
1370 */
1371#if !defined(MCUBOOT_OVERWRITE_ONLY)
1372static int
Fabio Utzig10ee6482019-08-01 12:04:52 -03001373boot_complete_partial_swap(struct boot_loader_state *state,
1374 struct boot_status *bs)
David Vinczeba3bd602019-06-17 16:01:43 +02001375{
1376 int rc;
1377
1378 /* Determine the type of swap operation being resumed from the
1379 * `swap-type` trailer field.
1380 */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001381 rc = boot_swap_image(state, bs);
David Vinczeba3bd602019-06-17 16:01:43 +02001382 assert(rc == 0);
1383
Fabio Utzig10ee6482019-08-01 12:04:52 -03001384 BOOT_SWAP_TYPE(state) = bs->swap_type;
David Vinczeba3bd602019-06-17 16:01:43 +02001385
1386 /* The following states need image_ok be explicitly set after the
1387 * swap was finished to avoid a new revert.
1388 */
1389 if (bs->swap_type == BOOT_SWAP_TYPE_REVERT ||
1390 bs->swap_type == BOOT_SWAP_TYPE_PERM) {
Fabio Utzig12d59162019-11-28 10:01:59 -03001391 rc = swap_set_image_ok(BOOT_CURR_IMG(state));
David Vinczeba3bd602019-06-17 16:01:43 +02001392 if (rc != 0) {
Fabio Utzig10ee6482019-08-01 12:04:52 -03001393 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_PANIC;
David Vinczeba3bd602019-06-17 16:01:43 +02001394 }
1395 }
1396
Fabio Utzige575b0b2019-09-11 12:34:23 -03001397 if (BOOT_IS_UPGRADE(bs->swap_type)) {
Fabio Utzig12d59162019-11-28 10:01:59 -03001398 rc = swap_set_copy_done(BOOT_CURR_IMG(state));
David Vinczeba3bd602019-06-17 16:01:43 +02001399 if (rc != 0) {
Fabio Utzig10ee6482019-08-01 12:04:52 -03001400 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_PANIC;
David Vinczeba3bd602019-06-17 16:01:43 +02001401 }
1402 }
1403
Fabio Utzig10ee6482019-08-01 12:04:52 -03001404 if (BOOT_SWAP_TYPE(state) == BOOT_SWAP_TYPE_PANIC) {
David Vinczeba3bd602019-06-17 16:01:43 +02001405 BOOT_LOG_ERR("panic!");
1406 assert(0);
1407
1408 /* Loop forever... */
1409 while (1) {}
1410 }
1411
1412 return rc;
1413}
1414#endif /* !MCUBOOT_OVERWRITE_ONLY */
1415
1416#if (BOOT_IMAGE_NUMBER > 1)
1417/**
1418 * Review the validity of previously determined swap types of other images.
1419 *
1420 * @param aborted_swap The current image upgrade is a
1421 * partial/aborted swap.
1422 */
1423static void
Fabio Utzig10ee6482019-08-01 12:04:52 -03001424boot_review_image_swap_types(struct boot_loader_state *state,
1425 bool aborted_swap)
David Vinczeba3bd602019-06-17 16:01:43 +02001426{
1427 /* In that case if we rebooted in the middle of an image upgrade process, we
1428 * must review the validity of swap types, that were previously determined
1429 * for other images. The image_ok flag had not been set before the reboot
1430 * for any of the updated images (only the copy_done flag) and thus falsely
1431 * the REVERT swap type has been determined for the previous images that had
1432 * been updated before the reboot.
1433 *
1434 * There are two separate scenarios that we have to deal with:
1435 *
1436 * 1. The reboot has happened during swapping an image:
1437 * The current image upgrade has been determined as a
1438 * partial/aborted swap.
1439 * 2. The reboot has happened between two separate image upgrades:
1440 * In this scenario we must check the swap type of the current image.
1441 * In those cases if it is NONE or REVERT we cannot certainly determine
1442 * the fact of a reboot. In a consistent state images must move in the
1443 * same direction or stay in place, e.g. in practice REVERT and TEST
1444 * swap types cannot be present at the same time. If the swap type of
1445 * the current image is either TEST, PERM or FAIL we must review the
1446 * already determined swap types of other images and set each false
1447 * REVERT swap types to NONE (these images had been successfully
1448 * updated before the system rebooted between two separate image
1449 * upgrades).
1450 */
1451
Fabio Utzig10ee6482019-08-01 12:04:52 -03001452 if (BOOT_CURR_IMG(state) == 0) {
David Vinczeba3bd602019-06-17 16:01:43 +02001453 /* Nothing to do */
1454 return;
1455 }
1456
1457 if (!aborted_swap) {
Fabio Utzig10ee6482019-08-01 12:04:52 -03001458 if ((BOOT_SWAP_TYPE(state) == BOOT_SWAP_TYPE_NONE) ||
1459 (BOOT_SWAP_TYPE(state) == BOOT_SWAP_TYPE_REVERT)) {
David Vinczeba3bd602019-06-17 16:01:43 +02001460 /* Nothing to do */
1461 return;
1462 }
1463 }
1464
Fabio Utzig10ee6482019-08-01 12:04:52 -03001465 for (uint8_t i = 0; i < BOOT_CURR_IMG(state); i++) {
1466 if (state->swap_type[i] == BOOT_SWAP_TYPE_REVERT) {
1467 state->swap_type[i] = BOOT_SWAP_TYPE_NONE;
David Vinczeba3bd602019-06-17 16:01:43 +02001468 }
1469 }
1470}
1471#endif
1472
1473/**
1474 * Prepare image to be updated if required.
1475 *
1476 * Prepare image to be updated if required with completing an image swap
1477 * operation if one was aborted and/or determining the type of the
1478 * swap operation. In case of any error set the swap type to NONE.
1479 *
Fabio Utzig10ee6482019-08-01 12:04:52 -03001480 * @param state TODO
David Vinczeba3bd602019-06-17 16:01:43 +02001481 * @param bs Pointer where the read and possibly updated
1482 * boot status can be written to.
1483 */
1484static void
Fabio Utzig10ee6482019-08-01 12:04:52 -03001485boot_prepare_image_for_update(struct boot_loader_state *state,
1486 struct boot_status *bs)
David Vinczeba3bd602019-06-17 16:01:43 +02001487{
1488 int rc;
Raef Colese8fe6cf2020-05-26 13:07:40 +01001489 fih_int fih_rc = FIH_FAILURE;
David Vinczeba3bd602019-06-17 16:01:43 +02001490
1491 /* Determine the sector layout of the image slots and scratch area. */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001492 rc = boot_read_sectors(state);
David Vinczeba3bd602019-06-17 16:01:43 +02001493 if (rc != 0) {
1494 BOOT_LOG_WRN("Failed reading sectors; BOOT_MAX_IMG_SECTORS=%d"
1495 " - too small?", BOOT_MAX_IMG_SECTORS);
1496 /* Unable to determine sector layout, continue with next image
1497 * if there is one.
1498 */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001499 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_NONE;
David Vinczeba3bd602019-06-17 16:01:43 +02001500 return;
1501 }
1502
1503 /* Attempt to read an image header from each slot. */
Fabio Utzig12d59162019-11-28 10:01:59 -03001504 rc = boot_read_image_headers(state, false, NULL);
David Vinczeba3bd602019-06-17 16:01:43 +02001505 if (rc != 0) {
1506 /* Continue with next image if there is one. */
Fabio Utzigb0f04732019-07-31 09:49:19 -03001507 BOOT_LOG_WRN("Failed reading image headers; Image=%u",
Fabio Utzig10ee6482019-08-01 12:04:52 -03001508 BOOT_CURR_IMG(state));
1509 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_NONE;
David Vinczeba3bd602019-06-17 16:01:43 +02001510 return;
1511 }
1512
1513 /* If the current image's slots aren't compatible, no swap is possible.
1514 * Just boot into primary slot.
1515 */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001516 if (boot_slots_compatible(state)) {
Fabio Utzig12d59162019-11-28 10:01:59 -03001517 boot_status_reset(bs);
1518
1519#ifndef MCUBOOT_OVERWRITE_ONLY
1520 rc = swap_read_status(state, bs);
David Vinczeba3bd602019-06-17 16:01:43 +02001521 if (rc != 0) {
1522 BOOT_LOG_WRN("Failed reading boot status; Image=%u",
Fabio Utzig10ee6482019-08-01 12:04:52 -03001523 BOOT_CURR_IMG(state));
David Vinczeba3bd602019-06-17 16:01:43 +02001524 /* Continue with next image if there is one. */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001525 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_NONE;
David Vinczeba3bd602019-06-17 16:01:43 +02001526 return;
1527 }
Fabio Utzig12d59162019-11-28 10:01:59 -03001528#endif
David Vinczeba3bd602019-06-17 16:01:43 +02001529
Fabio Utzig74aef312019-11-28 11:05:34 -03001530#ifdef MCUBOOT_SWAP_USING_MOVE
1531 /*
1532 * Must re-read image headers because the boot status might
1533 * have been updated in the previous function call.
1534 */
1535 rc = boot_read_image_headers(state, !boot_status_is_reset(bs), bs);
1536 if (rc != 0) {
1537 /* Continue with next image if there is one. */
1538 BOOT_LOG_WRN("Failed reading image headers; Image=%u",
1539 BOOT_CURR_IMG(state));
1540 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_NONE;
1541 return;
1542 }
1543#endif
1544
David Vinczeba3bd602019-06-17 16:01:43 +02001545 /* Determine if we rebooted in the middle of an image swap
1546 * operation. If a partial swap was detected, complete it.
1547 */
Fabio Utzig12d59162019-11-28 10:01:59 -03001548 if (!boot_status_is_reset(bs)) {
David Vinczeba3bd602019-06-17 16:01:43 +02001549
1550#if (BOOT_IMAGE_NUMBER > 1)
Fabio Utzig10ee6482019-08-01 12:04:52 -03001551 boot_review_image_swap_types(state, true);
David Vinczeba3bd602019-06-17 16:01:43 +02001552#endif
1553
1554#ifdef MCUBOOT_OVERWRITE_ONLY
1555 /* Should never arrive here, overwrite-only mode has
1556 * no swap state.
1557 */
1558 assert(0);
1559#else
1560 /* Determine the type of swap operation being resumed from the
1561 * `swap-type` trailer field.
1562 */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001563 rc = boot_complete_partial_swap(state, bs);
David Vinczeba3bd602019-06-17 16:01:43 +02001564 assert(rc == 0);
1565#endif
1566 /* Attempt to read an image header from each slot. Ensure that
1567 * image headers in slots are aligned with headers in boot_data.
1568 */
Fabio Utzig12d59162019-11-28 10:01:59 -03001569 rc = boot_read_image_headers(state, false, bs);
David Vinczeba3bd602019-06-17 16:01:43 +02001570 assert(rc == 0);
1571
1572 /* Swap has finished set to NONE */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001573 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_NONE;
David Vinczeba3bd602019-06-17 16:01:43 +02001574 } else {
1575 /* There was no partial swap, determine swap type. */
1576 if (bs->swap_type == BOOT_SWAP_TYPE_NONE) {
Fabio Utzig10ee6482019-08-01 12:04:52 -03001577 BOOT_SWAP_TYPE(state) = boot_validated_swap_type(state, bs);
David Vinczeba3bd602019-06-17 16:01:43 +02001578 } else {
Raef Colese8fe6cf2020-05-26 13:07:40 +01001579 FIH_CALL(boot_validate_slot, fih_rc,
1580 state, BOOT_SECONDARY_SLOT, bs);
1581 if (fih_not_eq(fih_rc, FIH_SUCCESS)) {
1582 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_FAIL;
1583 } else {
1584 BOOT_SWAP_TYPE(state) = bs->swap_type;
1585 }
David Vinczeba3bd602019-06-17 16:01:43 +02001586 }
1587
1588#if (BOOT_IMAGE_NUMBER > 1)
Fabio Utzig10ee6482019-08-01 12:04:52 -03001589 boot_review_image_swap_types(state, false);
David Vinczeba3bd602019-06-17 16:01:43 +02001590#endif
1591
1592#ifdef MCUBOOT_BOOTSTRAP
Fabio Utzig10ee6482019-08-01 12:04:52 -03001593 if (BOOT_SWAP_TYPE(state) == BOOT_SWAP_TYPE_NONE) {
David Vinczeba3bd602019-06-17 16:01:43 +02001594 /* Header checks are done first because they are
1595 * inexpensive. Since overwrite-only copies starting from
1596 * offset 0, if interrupted, it might leave a valid header
1597 * magic, so also run validation on the primary slot to be
1598 * sure it's not OK.
1599 */
Raef Colese8fe6cf2020-05-26 13:07:40 +01001600 rc = boot_check_header_erased(state, BOOT_PRIMARY_SLOT);
1601 FIH_CALL(boot_validate_slot, fih_rc,
1602 state, BOOT_PRIMARY_SLOT, bs);
1603
1604 if (rc == 0 || fih_not_eq(fih_rc, FIH_SUCCESS)) {
1605
1606 rc = boot_img_hdr(state, BOOT_SECONDARY_SLOT)->ih_magic == IMAGE_MAGIC;
1607 FIH_CALL(boot_validate_slot, fih_rc,
1608 state, BOOT_SECONDARY_SLOT, bs);
1609
1610 if (rc == 0 && fih_eq(fih_rc, FIH_SUCCESS)) {
David Vinczeba3bd602019-06-17 16:01:43 +02001611 /* Set swap type to REVERT to overwrite the primary
1612 * slot with the image contained in secondary slot
1613 * and to trigger the explicit setting of the
1614 * image_ok flag.
1615 */
Fabio Utzig59b63e52019-09-10 12:22:35 -03001616 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_REVERT;
David Vinczeba3bd602019-06-17 16:01:43 +02001617 }
Fabio Utzig338a19f2018-12-03 08:37:08 -02001618 }
1619 }
Fabio Utzig338a19f2018-12-03 08:37:08 -02001620#endif
Christopher Collins0ff3c6c2016-12-21 12:04:17 -08001621 }
David Vinczeba3bd602019-06-17 16:01:43 +02001622 } else {
1623 /* In that case if slots are not compatible. */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001624 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_NONE;
Christopher Collins0ff3c6c2016-12-21 12:04:17 -08001625 }
Christopher Collins0ff3c6c2016-12-21 12:04:17 -08001626}
1627
Raef Colese8fe6cf2020-05-26 13:07:40 +01001628fih_int
Fabio Utzig10ee6482019-08-01 12:04:52 -03001629context_boot_go(struct boot_loader_state *state, struct boot_rsp *rsp)
Christopher Collins92ea77f2016-12-12 15:59:26 -08001630{
Marti Bolivar84898652017-06-13 17:20:22 -04001631 size_t slot;
David Vinczeba3bd602019-06-17 16:01:43 +02001632 struct boot_status bs;
David Vincze9015a5d2020-05-18 14:43:11 +02001633 int rc = -1;
Raef Colese8fe6cf2020-05-26 13:07:40 +01001634 fih_int fih_rc = FIH_FAILURE;
Marti Bolivarc0b47912017-06-13 17:18:09 -04001635 int fa_id;
Fabio Utzigb0f04732019-07-31 09:49:19 -03001636 int image_index;
Fabio Utzig298913b2019-08-28 11:22:45 -03001637 bool has_upgrade;
Christopher Collins92ea77f2016-12-12 15:59:26 -08001638
1639 /* The array of slot sectors are defined here (as opposed to file scope) so
1640 * that they don't get allocated for non-boot-loader apps. This is
1641 * necessary because the gcc option "-fdata-sections" doesn't seem to have
Christopher Collins0ff3c6c2016-12-21 12:04:17 -08001642 * any effect in older gcc versions (e.g., 4.8.4).
Christopher Collins92ea77f2016-12-12 15:59:26 -08001643 */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001644 TARGET_STATIC boot_sector_t primary_slot_sectors[BOOT_IMAGE_NUMBER][BOOT_MAX_IMG_SECTORS];
1645 TARGET_STATIC boot_sector_t secondary_slot_sectors[BOOT_IMAGE_NUMBER][BOOT_MAX_IMG_SECTORS];
Fabio Utzig12d59162019-11-28 10:01:59 -03001646#if MCUBOOT_SWAP_USING_SCRATCH
Fabio Utzig10ee6482019-08-01 12:04:52 -03001647 TARGET_STATIC boot_sector_t scratch_sectors[BOOT_MAX_IMG_SECTORS];
Fabio Utzig12d59162019-11-28 10:01:59 -03001648#endif
Christopher Collins92ea77f2016-12-12 15:59:26 -08001649
Fabio Utzig10ee6482019-08-01 12:04:52 -03001650 memset(state, 0, sizeof(struct boot_loader_state));
Fabio Utzig298913b2019-08-28 11:22:45 -03001651 has_upgrade = false;
1652
1653#if (BOOT_IMAGE_NUMBER == 1)
1654 (void)has_upgrade;
1655#endif
Fabio Utzigba829042018-09-18 08:29:34 -03001656
David Vinczeba3bd602019-06-17 16:01:43 +02001657 /* Iterate over all the images. By the end of the loop the swap type has
1658 * to be determined for each image and all aborted swaps have to be
1659 * completed.
Christopher Collins0ff3c6c2016-12-21 12:04:17 -08001660 */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001661 IMAGES_ITER(BOOT_CURR_IMG(state)) {
Fabio Utzigdb5bd3c2017-07-13 22:20:22 -03001662
David Vinczeba3bd602019-06-17 16:01:43 +02001663#if defined(MCUBOOT_ENC_IMAGES) && (BOOT_IMAGE_NUMBER > 1)
1664 /* The keys used for encryption may no longer be valid (could belong to
1665 * another images). Therefore, mark them as invalid to force their reload
1666 * by boot_enc_load().
Fabio Utzigdb5bd3c2017-07-13 22:20:22 -03001667 */
Fabio Utzig1e4284b2019-08-23 11:55:27 -03001668 boot_enc_zeroize(BOOT_CURR_ENC(state));
David Brown554c52e2017-06-30 16:01:07 -06001669#endif
1670
Fabio Utzig10ee6482019-08-01 12:04:52 -03001671 image_index = BOOT_CURR_IMG(state);
Fabio Utzigb0f04732019-07-31 09:49:19 -03001672
Fabio Utzig10ee6482019-08-01 12:04:52 -03001673 BOOT_IMG(state, BOOT_PRIMARY_SLOT).sectors =
Fabio Utzigb0f04732019-07-31 09:49:19 -03001674 primary_slot_sectors[image_index];
Fabio Utzig10ee6482019-08-01 12:04:52 -03001675 BOOT_IMG(state, BOOT_SECONDARY_SLOT).sectors =
Fabio Utzigb0f04732019-07-31 09:49:19 -03001676 secondary_slot_sectors[image_index];
Fabio Utzig12d59162019-11-28 10:01:59 -03001677#if MCUBOOT_SWAP_USING_SCRATCH
Fabio Utzig10ee6482019-08-01 12:04:52 -03001678 state->scratch.sectors = scratch_sectors;
Fabio Utzig12d59162019-11-28 10:01:59 -03001679#endif
David Vinczeba3bd602019-06-17 16:01:43 +02001680
1681 /* Open primary and secondary image areas for the duration
1682 * of this call.
1683 */
1684 for (slot = 0; slot < BOOT_NUM_SLOTS; slot++) {
Fabio Utzigb0f04732019-07-31 09:49:19 -03001685 fa_id = flash_area_id_from_multi_image_slot(image_index, slot);
Fabio Utzig10ee6482019-08-01 12:04:52 -03001686 rc = flash_area_open(fa_id, &BOOT_IMG_AREA(state, slot));
David Vinczeba3bd602019-06-17 16:01:43 +02001687 assert(rc == 0);
1688 }
Fabio Utzig12d59162019-11-28 10:01:59 -03001689#if MCUBOOT_SWAP_USING_SCRATCH
David Vinczeba3bd602019-06-17 16:01:43 +02001690 rc = flash_area_open(FLASH_AREA_IMAGE_SCRATCH,
Fabio Utzig10ee6482019-08-01 12:04:52 -03001691 &BOOT_SCRATCH_AREA(state));
David Vinczeba3bd602019-06-17 16:01:43 +02001692 assert(rc == 0);
Fabio Utzig12d59162019-11-28 10:01:59 -03001693#endif
David Vinczeba3bd602019-06-17 16:01:43 +02001694
1695 /* Determine swap type and complete swap if it has been aborted. */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001696 boot_prepare_image_for_update(state, &bs);
Fabio Utzig298913b2019-08-28 11:22:45 -03001697
Fabio Utzige575b0b2019-09-11 12:34:23 -03001698 if (BOOT_IS_UPGRADE(BOOT_SWAP_TYPE(state))) {
Fabio Utzig298913b2019-08-28 11:22:45 -03001699 has_upgrade = true;
1700 }
David Vinczeba3bd602019-06-17 16:01:43 +02001701 }
1702
David Vinczee32483f2019-06-13 10:46:24 +02001703#if (BOOT_IMAGE_NUMBER > 1)
Fabio Utzig298913b2019-08-28 11:22:45 -03001704 if (has_upgrade) {
1705 /* Iterate over all the images and verify whether the image dependencies
1706 * are all satisfied and update swap type if necessary.
1707 */
1708 rc = boot_verify_dependencies(state);
David Vincze8b0b6372020-05-20 19:54:44 +02001709 if (rc != 0) {
Fabio Utzig298913b2019-08-28 11:22:45 -03001710 /*
1711 * It was impossible to upgrade because the expected dependency version
1712 * was not available. Here we already changed the swap_type so that
1713 * instead of asserting the bootloader, we continue and no upgrade is
1714 * performed.
1715 */
1716 rc = 0;
1717 }
1718 }
David Vinczee32483f2019-06-13 10:46:24 +02001719#endif
1720
David Vinczeba3bd602019-06-17 16:01:43 +02001721 /* Iterate over all the images. At this point there are no aborted swaps
1722 * and the swap types are determined for each image. By the end of the loop
1723 * all required update operations will have been finished.
1724 */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001725 IMAGES_ITER(BOOT_CURR_IMG(state)) {
David Vinczeba3bd602019-06-17 16:01:43 +02001726
1727#if (BOOT_IMAGE_NUMBER > 1)
1728#ifdef MCUBOOT_ENC_IMAGES
1729 /* The keys used for encryption may no longer be valid (could belong to
1730 * another images). Therefore, mark them as invalid to force their reload
1731 * by boot_enc_load().
1732 */
Fabio Utzig1e4284b2019-08-23 11:55:27 -03001733 boot_enc_zeroize(BOOT_CURR_ENC(state));
David Vinczeba3bd602019-06-17 16:01:43 +02001734#endif /* MCUBOOT_ENC_IMAGES */
1735
1736 /* Indicate that swap is not aborted */
Fabio Utzig12d59162019-11-28 10:01:59 -03001737 boot_status_reset(&bs);
David Vinczeba3bd602019-06-17 16:01:43 +02001738#endif /* (BOOT_IMAGE_NUMBER > 1) */
1739
1740 /* Set the previously determined swap type */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001741 bs.swap_type = BOOT_SWAP_TYPE(state);
David Vinczeba3bd602019-06-17 16:01:43 +02001742
Fabio Utzig10ee6482019-08-01 12:04:52 -03001743 switch (BOOT_SWAP_TYPE(state)) {
David Vinczeba3bd602019-06-17 16:01:43 +02001744 case BOOT_SWAP_TYPE_NONE:
1745 break;
1746
1747 case BOOT_SWAP_TYPE_TEST: /* fallthrough */
1748 case BOOT_SWAP_TYPE_PERM: /* fallthrough */
1749 case BOOT_SWAP_TYPE_REVERT:
Fabio Utzig10ee6482019-08-01 12:04:52 -03001750 rc = boot_perform_update(state, &bs);
David Vinczeba3bd602019-06-17 16:01:43 +02001751 assert(rc == 0);
1752 break;
1753
1754 case BOOT_SWAP_TYPE_FAIL:
1755 /* The image in secondary slot was invalid and is now erased. Ensure
1756 * we don't try to boot into it again on the next reboot. Do this by
1757 * pretending we just reverted back to primary slot.
1758 */
1759#ifndef MCUBOOT_OVERWRITE_ONLY
1760 /* image_ok needs to be explicitly set to avoid a new revert. */
Fabio Utzig12d59162019-11-28 10:01:59 -03001761 rc = swap_set_image_ok(BOOT_CURR_IMG(state));
David Vinczeba3bd602019-06-17 16:01:43 +02001762 if (rc != 0) {
Fabio Utzig10ee6482019-08-01 12:04:52 -03001763 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_PANIC;
David Vinczeba3bd602019-06-17 16:01:43 +02001764 }
1765#endif /* !MCUBOOT_OVERWRITE_ONLY */
1766 break;
1767
1768 default:
Fabio Utzig10ee6482019-08-01 12:04:52 -03001769 BOOT_SWAP_TYPE(state) = BOOT_SWAP_TYPE_PANIC;
David Vinczeba3bd602019-06-17 16:01:43 +02001770 }
1771
Fabio Utzig10ee6482019-08-01 12:04:52 -03001772 if (BOOT_SWAP_TYPE(state) == BOOT_SWAP_TYPE_PANIC) {
David Vinczeba3bd602019-06-17 16:01:43 +02001773 BOOT_LOG_ERR("panic!");
1774 assert(0);
1775
1776 /* Loop forever... */
Raef Colese8fe6cf2020-05-26 13:07:40 +01001777 FIH_PANIC;
David Vinczeba3bd602019-06-17 16:01:43 +02001778 }
1779 }
1780
1781 /* Iterate over all the images. At this point all required update operations
1782 * have finished. By the end of the loop each image in the primary slot will
1783 * have been re-validated.
1784 */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001785 IMAGES_ITER(BOOT_CURR_IMG(state)) {
1786 if (BOOT_SWAP_TYPE(state) != BOOT_SWAP_TYPE_NONE) {
David Vinczeba3bd602019-06-17 16:01:43 +02001787 /* Attempt to read an image header from each slot. Ensure that image
1788 * headers in slots are aligned with headers in boot_data.
1789 */
Fabio Utzig12d59162019-11-28 10:01:59 -03001790 rc = boot_read_image_headers(state, false, &bs);
David Vinczeba3bd602019-06-17 16:01:43 +02001791 if (rc != 0) {
1792 goto out;
1793 }
1794 /* Since headers were reloaded, it can be assumed we just performed
1795 * a swap or overwrite. Now the header info that should be used to
1796 * provide the data for the bootstrap, which previously was at
1797 * secondary slot, was updated to primary slot.
1798 */
1799 }
1800
1801#ifdef MCUBOOT_VALIDATE_PRIMARY_SLOT
Raef Colese8fe6cf2020-05-26 13:07:40 +01001802 FIH_CALL(boot_validate_slot, fih_rc, state, BOOT_PRIMARY_SLOT, NULL);
1803 if (fih_not_eq(fih_rc, FIH_SUCCESS)) {
David Vinczeba3bd602019-06-17 16:01:43 +02001804 goto out;
1805 }
1806#else
1807 /* Even if we're not re-validating the primary slot, we could be booting
1808 * onto an empty flash chip. At least do a basic sanity check that
1809 * the magic number on the image is OK.
1810 */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001811 if (BOOT_IMG(state, BOOT_PRIMARY_SLOT).hdr.ih_magic != IMAGE_MAGIC) {
David Vinczeba3bd602019-06-17 16:01:43 +02001812 BOOT_LOG_ERR("bad image magic 0x%lx; Image=%u", (unsigned long)
Fabio Utzig10ee6482019-08-01 12:04:52 -03001813 &boot_img_hdr(state,BOOT_PRIMARY_SLOT)->ih_magic,
1814 BOOT_CURR_IMG(state));
David Vinczeba3bd602019-06-17 16:01:43 +02001815 rc = BOOT_EBADIMAGE;
1816 goto out;
1817 }
David Vinczec3084132020-02-18 14:50:47 +01001818#endif /* MCUBOOT_VALIDATE_PRIMARY_SLOT */
1819
1820#ifdef MCUBOOT_HW_ROLLBACK_PROT
1821 /* Update the stored security counter with the active image's security
1822 * counter value. It will only be updated if the new security counter is
1823 * greater than the stored value.
1824 *
1825 * In case of a successful image swapping when the swap type is TEST the
1826 * security counter can be increased only after a reset, when the swap
1827 * type is NONE and the image has marked itself "OK" (the image_ok flag
1828 * has been set). This way a "revert" can be performed when it's
1829 * necessary.
1830 */
1831 if (BOOT_SWAP_TYPE(state) == BOOT_SWAP_TYPE_NONE) {
1832 rc = boot_update_security_counter(
1833 BOOT_CURR_IMG(state),
1834 BOOT_PRIMARY_SLOT,
1835 boot_img_hdr(state, BOOT_PRIMARY_SLOT));
1836 if (rc != 0) {
1837 BOOT_LOG_ERR("Security counter update failed after image "
1838 "validation.");
1839 goto out;
1840 }
1841 }
1842#endif /* MCUBOOT_HW_ROLLBACK_PROT */
David Vincze1cf11b52020-03-24 07:51:09 +01001843
1844#ifdef MCUBOOT_MEASURED_BOOT
1845 rc = boot_save_boot_status(BOOT_CURR_IMG(state),
1846 boot_img_hdr(state, BOOT_PRIMARY_SLOT),
1847 BOOT_IMG_AREA(state, BOOT_PRIMARY_SLOT));
1848 if (rc != 0) {
1849 BOOT_LOG_ERR("Failed to add Image %u data to shared memory area",
1850 BOOT_CURR_IMG(state));
Raef Colese8fe6cf2020-05-26 13:07:40 +01001851 goto out;
David Vincze1cf11b52020-03-24 07:51:09 +01001852 }
1853#endif /* MCUBOOT_MEASURED_BOOT */
1854
1855#ifdef MCUBOOT_DATA_SHARING
1856 rc = boot_save_shared_data(boot_img_hdr(state, BOOT_PRIMARY_SLOT),
1857 BOOT_IMG_AREA(state, BOOT_PRIMARY_SLOT));
1858 if (rc != 0) {
1859 BOOT_LOG_ERR("Failed to add data to shared memory area.");
Raef Colese8fe6cf2020-05-26 13:07:40 +01001860 goto out;
David Vincze1cf11b52020-03-24 07:51:09 +01001861 }
1862#endif /* MCUBOOT_DATA_SHARING */
David Vinczeba3bd602019-06-17 16:01:43 +02001863 }
1864
Fabio Utzigb0f04732019-07-31 09:49:19 -03001865#if (BOOT_IMAGE_NUMBER > 1)
David Vinczeba3bd602019-06-17 16:01:43 +02001866 /* Always boot from the primary slot of Image 0. */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001867 BOOT_CURR_IMG(state) = 0;
Fabio Utzigb0f04732019-07-31 09:49:19 -03001868#endif
Fabio Utzig298913b2019-08-28 11:22:45 -03001869
Fabio Utzigf616c542019-12-19 15:23:32 -03001870 /*
1871 * Since the boot_status struct stores plaintext encryption keys, reset
1872 * them here to avoid the possibility of jumping into an image that could
1873 * easily recover them.
1874 */
1875 memset(&bs, 0, sizeof(struct boot_status));
1876
Fabio Utzig10ee6482019-08-01 12:04:52 -03001877 rsp->br_flash_dev_id = BOOT_IMG_AREA(state, BOOT_PRIMARY_SLOT)->fa_device_id;
1878 rsp->br_image_off = boot_img_slot_off(state, BOOT_PRIMARY_SLOT);
1879 rsp->br_hdr = boot_img_hdr(state, BOOT_PRIMARY_SLOT);
Christopher Collins92ea77f2016-12-12 15:59:26 -08001880
Raef Colese8fe6cf2020-05-26 13:07:40 +01001881 fih_rc = FIH_SUCCESS;
Fabio Utzig298913b2019-08-28 11:22:45 -03001882out:
Fabio Utzig10ee6482019-08-01 12:04:52 -03001883 IMAGES_ITER(BOOT_CURR_IMG(state)) {
Fabio Utzig12d59162019-11-28 10:01:59 -03001884#if MCUBOOT_SWAP_USING_SCRATCH
Fabio Utzig10ee6482019-08-01 12:04:52 -03001885 flash_area_close(BOOT_SCRATCH_AREA(state));
Fabio Utzig12d59162019-11-28 10:01:59 -03001886#endif
David Vinczeba3bd602019-06-17 16:01:43 +02001887 for (slot = 0; slot < BOOT_NUM_SLOTS; slot++) {
Fabio Utzig10ee6482019-08-01 12:04:52 -03001888 flash_area_close(BOOT_IMG_AREA(state, BOOT_NUM_SLOTS - 1 - slot));
David Vinczeba3bd602019-06-17 16:01:43 +02001889 }
Marti Bolivarc0b47912017-06-13 17:18:09 -04001890 }
Raef Colese8fe6cf2020-05-26 13:07:40 +01001891
1892 if (rc) {
1893 fih_rc = fih_int_encode(rc);
1894 }
1895
1896 FIH_RET(fih_rc);
Christopher Collins92ea77f2016-12-12 15:59:26 -08001897}
1898
Raef Colese8fe6cf2020-05-26 13:07:40 +01001899fih_int
Christopher Collins92ea77f2016-12-12 15:59:26 -08001900split_go(int loader_slot, int split_slot, void **entry)
1901{
Marti Bolivarc50926f2017-06-14 09:35:40 -04001902 boot_sector_t *sectors;
Christopher Collins034a6202017-01-11 12:19:37 -08001903 uintptr_t entry_val;
Christopher Collins92ea77f2016-12-12 15:59:26 -08001904 int loader_flash_id;
Marti Bolivarc0b47912017-06-13 17:18:09 -04001905 int split_flash_id;
Christopher Collins92ea77f2016-12-12 15:59:26 -08001906 int rc;
Raef Colese8fe6cf2020-05-26 13:07:40 +01001907 fih_int fih_rc = FIH_FAILURE;
Christopher Collins92ea77f2016-12-12 15:59:26 -08001908
Christopher Collins92ea77f2016-12-12 15:59:26 -08001909 sectors = malloc(BOOT_MAX_IMG_SECTORS * 2 * sizeof *sectors);
1910 if (sectors == NULL) {
Raef Colese8fe6cf2020-05-26 13:07:40 +01001911 FIH_RET(FIH_FAILURE);
Christopher Collins92ea77f2016-12-12 15:59:26 -08001912 }
David Vinczeba3bd602019-06-17 16:01:43 +02001913 BOOT_IMG(&boot_data, loader_slot).sectors = sectors + 0;
1914 BOOT_IMG(&boot_data, split_slot).sectors = sectors + BOOT_MAX_IMG_SECTORS;
Marti Bolivarc0b47912017-06-13 17:18:09 -04001915
1916 loader_flash_id = flash_area_id_from_image_slot(loader_slot);
1917 rc = flash_area_open(loader_flash_id,
Alvaro Prieto63a2bdb2019-07-04 12:18:49 -07001918 &BOOT_IMG_AREA(&boot_data, loader_slot));
Marti Bolivarc0b47912017-06-13 17:18:09 -04001919 assert(rc == 0);
1920 split_flash_id = flash_area_id_from_image_slot(split_slot);
1921 rc = flash_area_open(split_flash_id,
1922 &BOOT_IMG_AREA(&boot_data, split_slot));
1923 assert(rc == 0);
Christopher Collins92ea77f2016-12-12 15:59:26 -08001924
1925 /* Determine the sector layout of the image slots and scratch area. */
Fabio Utzig10ee6482019-08-01 12:04:52 -03001926 rc = boot_read_sectors(&boot_data);
Christopher Collins92ea77f2016-12-12 15:59:26 -08001927 if (rc != 0) {
1928 rc = SPLIT_GO_ERR;
1929 goto done;
1930 }
1931
Fabio Utzig12d59162019-11-28 10:01:59 -03001932 rc = boot_read_image_headers(&boot_data, true, NULL);
Christopher Collins92ea77f2016-12-12 15:59:26 -08001933 if (rc != 0) {
1934 goto done;
1935 }
1936
Christopher Collins92ea77f2016-12-12 15:59:26 -08001937 /* Don't check the bootable image flag because we could really call a
1938 * bootable or non-bootable image. Just validate that the image check
1939 * passes which is distinct from the normal check.
1940 */
Raef Colese8fe6cf2020-05-26 13:07:40 +01001941 FIH_CALL(split_image_check, fih_rc,
1942 boot_img_hdr(&boot_data, split_slot),
1943 BOOT_IMG_AREA(&boot_data, split_slot),
1944 boot_img_hdr(&boot_data, loader_slot),
1945 BOOT_IMG_AREA(&boot_data, loader_slot));
1946 if (fih_not_eq(fih_rc, FIH_SUCCESS)) {
Christopher Collins92ea77f2016-12-12 15:59:26 -08001947 goto done;
1948 }
1949
Marti Bolivarea088872017-06-12 17:10:49 -04001950 entry_val = boot_img_slot_off(&boot_data, split_slot) +
Marti Bolivarf804f622017-06-12 15:41:48 -04001951 boot_img_hdr(&boot_data, split_slot)->ih_hdr_size;
Christopher Collins034a6202017-01-11 12:19:37 -08001952 *entry = (void *) entry_val;
Christopher Collins92ea77f2016-12-12 15:59:26 -08001953 rc = SPLIT_GO_OK;
1954
1955done:
Marti Bolivarc0b47912017-06-13 17:18:09 -04001956 flash_area_close(BOOT_IMG_AREA(&boot_data, split_slot));
1957 flash_area_close(BOOT_IMG_AREA(&boot_data, loader_slot));
Christopher Collins92ea77f2016-12-12 15:59:26 -08001958 free(sectors);
Raef Colese8fe6cf2020-05-26 13:07:40 +01001959
1960 if (rc) {
1961 fih_rc = fih_int_encode(rc);
1962 }
1963
1964 FIH_RET(fih_rc);
Christopher Collins92ea77f2016-12-12 15:59:26 -08001965}
David Vinczee574f2d2020-07-10 11:42:03 +02001966
Tamas Banfe031092020-09-10 17:32:39 +02001967#else /* MCUBOOT_DIRECT_XIP || MCUBOOT_RAM_LOAD */
David Vinczee574f2d2020-07-10 11:42:03 +02001968
1969/**
1970 * Iterates over all slots and determines which contain a firmware image.
1971 *
1972 * @param state Boot loader status information.
1973 * @param slot_usage Pointer to an array, which aim is to carry information
1974 * about slots that contain an image. After return the
1975 * corresponding array elements are set to a non-zero
1976 * value if the given slots are in use (contain a firmware
1977 * image), otherwise they are set to zero.
1978 * @param slot_cnt The number of slots, which can contain firmware images.
1979 * (Equal to or smaller than the size of the
1980 * slot_usage array.)
1981 *
1982 * @return The number of found images.
1983 */
1984static uint32_t
1985boot_get_slot_usage(struct boot_loader_state *state, uint8_t slot_usage[],
1986 uint32_t slot_cnt)
1987{
1988 struct image_header *hdr = NULL;
1989 uint32_t image_cnt = 0;
1990 uint32_t slot;
1991
1992 memset(slot_usage, 0, slot_cnt);
1993
1994 for (slot = 0; slot < slot_cnt; slot++) {
1995 hdr = boot_img_hdr(state, slot);
1996
1997 if (boot_is_header_valid(hdr, BOOT_IMG_AREA(state, slot))) {
1998 slot_usage[slot] = 1;
1999 image_cnt++;
2000 BOOT_LOG_IMAGE_INFO(slot, hdr);
2001 } else {
2002 BOOT_LOG_INF("%s slot: Image not found", (slot == BOOT_PRIMARY_SLOT)
2003 ? "Primary" : "Secondary");
2004 }
2005 }
2006
2007 return image_cnt;
2008}
2009
Tamas Banfe031092020-09-10 17:32:39 +02002010#ifdef MCUBOOT_RAM_LOAD
2011
2012#if !defined(IMAGE_EXECUTABLE_RAM_START) || !defined(IMAGE_EXECUTABLE_RAM_SIZE)
2013#error "Platform MUST define executable RAM bounds in case of RAM_LOAD"
2014#endif
2015
2016/**
2017 * Verifies that the image in a slot will be loaded within the predefined bounds
2018 * that are allowed to be used by executable images.
2019 *
2020 * @param img_dst The address to which the image is going to be copied.
2021 * @param img_sz The size of the image.
2022 *
2023 * @return 0 on success; nonzero on failure.
2024 */
2025static int
2026boot_verify_ram_load_address(uint32_t img_dst, uint32_t img_sz)
2027{
2028 uint32_t img_end_addr;
2029
2030 if (img_dst < IMAGE_EXECUTABLE_RAM_START) {
2031 return BOOT_EBADIMAGE;
2032 }
2033
2034 if (!boot_u32_safe_add(&img_end_addr, img_dst, img_sz)) {
2035 return BOOT_EBADIMAGE;
2036 }
2037
2038 if (img_end_addr > (IMAGE_EXECUTABLE_RAM_START +
2039 IMAGE_EXECUTABLE_RAM_SIZE)) {
2040 return BOOT_EBADIMAGE;
2041 }
2042
2043 return 0;
2044}
2045
2046/**
2047 * Copies an image from a slot in the flash to an SRAM address.
2048 *
2049 * @param slot The flash slot of the image to be copied to SRAM.
2050 * @param img_dst The address at which the image needs to be copied to
2051 * SRAM.
2052 * @param img_sz The size of the image that needs to be copied to SRAM.
2053 *
2054 * @return 0 on success; nonzero on failure.
2055 */
2056static int
2057boot_copy_image_to_sram(int slot, uint32_t img_dst, uint32_t img_sz)
2058{
2059 int rc;
2060 const struct flash_area *fap_src = NULL;
2061
2062 rc = flash_area_open(flash_area_id_from_image_slot(slot), &fap_src);
2063 if (rc != 0) {
2064 return BOOT_EFLASH;
2065 }
2066
2067 /* Direct copy from flash to its new location in SRAM. */
2068 rc = flash_area_read(fap_src, 0, (void *)img_dst, img_sz);
2069 if (rc != 0) {
2070 BOOT_LOG_INF("Error whilst copying image from Flash to SRAM: %d", rc);
2071 }
2072
2073 flash_area_close(fap_src);
2074
2075 return rc;
2076}
2077
2078/**
2079 * Copies an image from a slot in the flash to an SRAM address. The load
2080 * address and image size is extracted from the image header.
2081 *
2082 * @param state Boot loader status information.
2083 * @param slot The flash slot of the image to be copied to SRAM.
2084 * @param hdr Pointer to the image header structure of the image
2085 * @param img_dst Pointer to the address at which the image needs to be
2086 * copied to SRAM.
2087 * @param img_sz Pointer to the size of the image that needs to be
2088 * copied to SRAM.
2089 *
2090 * @return 0 on success; nonzero on failure.
2091 */
2092static int
2093boot_load_image_to_sram(struct boot_loader_state *state, uint32_t slot,
2094 struct image_header *hdr, uint32_t *img_dst,
2095 uint32_t *img_sz)
2096{
2097 int rc;
2098
2099 if (hdr->ih_flags & IMAGE_F_RAM_LOAD) {
2100
2101 *img_dst = hdr->ih_load_addr;
2102
2103 rc = boot_read_image_size(state, slot, img_sz);
2104 if (rc != 0) {
2105 return rc;
2106 }
2107
2108 rc = boot_verify_ram_load_address(*img_dst, *img_sz);
2109 if (rc != 0) {
2110 BOOT_LOG_INF("Image RAM load address 0x%x is invalid.", *img_dst);
2111 return rc;
2112 }
2113
2114 /* Copy image to the load address from where it currently resides in
2115 * flash.
2116 */
2117 rc = boot_copy_image_to_sram(slot, *img_dst, *img_sz);
2118 if (rc != 0) {
2119 BOOT_LOG_INF("RAM loading to 0x%x is failed.", *img_dst);
2120 } else {
2121 BOOT_LOG_INF("RAM loading to 0x%x is succeeded.", *img_dst);
2122 }
2123 } else {
2124 /* Only images that support IMAGE_F_RAM_LOAD are allowed if
2125 * MCUBOOT_RAM_LOAD is set.
2126 */
2127 rc = BOOT_EBADIMAGE;
2128 }
2129
2130 return rc;
2131}
2132
2133/**
2134 * Removes an image from SRAM, by overwriting it with zeros.
2135 *
2136 * @param img_dst The address of the image that needs to be removed from
2137 * SRAM.
2138 * @param img_sz The size of the image that needs to be removed from
2139 * SRAM.
2140 *
2141 * @return 0 on success; nonzero on failure.
2142 */
2143static inline int
2144boot_remove_image_from_sram(uint32_t img_dst, uint32_t img_sz)
2145{
2146 BOOT_LOG_INF("Removing image from SRAM at address 0x%x", img_dst);
2147 memset((void*)img_dst, 0, img_sz);
2148
2149 return 0;
2150}
2151#endif /* MCUBOOT_RAM_LOAD */
2152
Raef Colese8fe6cf2020-05-26 13:07:40 +01002153fih_int
David Vinczee574f2d2020-07-10 11:42:03 +02002154context_boot_go(struct boot_loader_state *state, struct boot_rsp *rsp)
2155{
2156 struct image_header *hdr = NULL;
2157 struct image_header *selected_image_header = NULL;
2158 uint8_t slot_usage[BOOT_NUM_SLOTS];
2159 uint32_t selected_slot;
2160 uint32_t slot;
2161 uint32_t img_cnt;
2162 uint32_t i;
2163 int fa_id;
2164 int rc;
Tamas Banfe031092020-09-10 17:32:39 +02002165#ifdef MCUBOOT_RAM_LOAD
2166 uint32_t img_dst;
2167 uint32_t img_sz;
2168 uint32_t img_loaded = 0;
2169#endif /* MCUBOOT_RAM_LOAD */
Raef Colese8fe6cf2020-05-26 13:07:40 +01002170 fih_int fih_rc;
David Vinczee574f2d2020-07-10 11:42:03 +02002171
2172 memset(state, 0, sizeof(struct boot_loader_state));
2173
2174 /* Open primary and secondary image areas for the duration
2175 * of this call.
2176 */
2177 for (slot = 0; slot < BOOT_NUM_SLOTS; slot++) {
2178 fa_id = flash_area_id_from_image_slot(slot);
2179 rc = flash_area_open(fa_id, &BOOT_IMG_AREA(state, slot));
2180 assert(rc == 0);
2181 }
2182
2183 /* Attempt to read an image header from each slot. */
2184 rc = boot_read_image_headers(state, false, NULL);
2185 if (rc != 0) {
2186 BOOT_LOG_WRN("Failed reading image headers.");
2187 goto out;
2188 }
2189
2190 img_cnt = boot_get_slot_usage(state, slot_usage,
2191 sizeof(slot_usage)/sizeof(slot_usage[0]));
2192
2193 if (img_cnt) {
2194 /* Select the newest and valid image. */
2195 for (i = 0; i < img_cnt; i++) {
2196 selected_slot = 0;
2197 selected_image_header = NULL;
2198
2199 /* Iterate over all the slots that are in use (contain an image)
2200 * and select the one that holds the newest image.
2201 */
2202 for (slot = 0; slot < BOOT_NUM_SLOTS; slot++) {
2203 if (slot_usage[slot]) {
2204 hdr = boot_img_hdr(state, slot);
2205 if (selected_image_header != NULL) {
2206 rc = boot_version_cmp(&hdr->ih_ver,
2207 &selected_image_header->ih_ver);
2208 if (rc < 1) {
2209 /* The version of the image being examined wasn't
2210 * greater than the currently selected image's
2211 * version.
2212 */
2213 continue;
2214 }
2215 }
2216 selected_slot = slot;
2217 selected_image_header = hdr;
2218 }
2219 }
Tamas Banfe031092020-09-10 17:32:39 +02002220#ifdef MCUBOOT_RAM_LOAD
2221 /* Image is first loaded to RAM and authenticated there in order to
2222 * prevent TOCTOU attack during image copy. This could be applied
2223 * when loading images from external (untrusted) flash to internal
2224 * (trusted) RAM and image is authenticated before copying.
2225 */
2226 rc = boot_load_image_to_sram(state, selected_slot,
2227 selected_image_header, &img_dst,
2228 &img_sz);
2229 if (rc != 0 ) {
2230 /* Image loading failed try the next one. */
2231 continue;
2232 } else {
2233 img_loaded = 1;
2234 }
2235#endif /* MCUBOOT_RAM_LOAD */
Raef Colese8fe6cf2020-05-26 13:07:40 +01002236 FIH_CALL(boot_validate_slot, fih_rc, state, selected_slot, NULL);
2237 if (fih_eq(fih_rc, FIH_SUCCESS)) {
David Vinczee574f2d2020-07-10 11:42:03 +02002238 /* If a valid image is found then there is no reason to check
2239 * the rest of the images, as each of them has a smaller version
2240 * number.
2241 */
2242 break;
2243 }
Tamas Banfe031092020-09-10 17:32:39 +02002244#ifdef MCUBOOT_RAM_LOAD
2245 else if (img_loaded) {
2246 /* If an image is found to be invalid then it is removed from
2247 * RAM to prevent it being a shellcode vector.
2248 */
2249 boot_remove_image_from_sram(img_dst, img_sz);
2250 img_loaded = 0;
2251 }
2252#endif /* MCUBOOT_RAM_LOAD */
David Vinczee574f2d2020-07-10 11:42:03 +02002253 /* The selected image is invalid, mark its slot as "unused"
2254 * and start over.
2255 */
2256 slot_usage[selected_slot] = 0;
2257 }
2258
Raef Colese8fe6cf2020-05-26 13:07:40 +01002259 if (fih_not_eq(fih_rc, FIH_SUCCESS) || (selected_image_header == NULL)) {
David Vinczee574f2d2020-07-10 11:42:03 +02002260 /* If there was no valid image at all */
David Vinczee574f2d2020-07-10 11:42:03 +02002261 goto out;
2262 }
2263
2264#ifdef MCUBOOT_HW_ROLLBACK_PROT
2265 /* Update the stored security counter with the newer (active) image's
2266 * security counter value.
2267 */
2268 rc = boot_update_security_counter(0, selected_slot,
2269 selected_image_header);
2270 if (rc != 0) {
2271 BOOT_LOG_ERR("Security counter update failed after image "
2272 "validation.");
2273 goto out;
2274 }
2275#endif /* MCUBOOT_HW_ROLLBACK_PROT */
2276
2277#ifdef MCUBOOT_MEASURED_BOOT
2278 rc = boot_save_boot_status(0, selected_image_header,
2279 BOOT_IMG_AREA(state, selected_slot));
2280 if (rc != 0) {
2281 BOOT_LOG_ERR("Failed to add image data to shared area");
2282 }
2283#endif /* MCUBOOT_MEASURED_BOOT */
2284
2285#ifdef MCUBOOT_DATA_SHARING
2286 rc = boot_save_shared_data(selected_image_header,
2287 BOOT_IMG_AREA(state, selected_slot));
2288 if (rc != 0) {
2289 BOOT_LOG_ERR("Failed to add data to shared memory area.");
2290 }
2291#endif /* MCUBOOT_DATA_SHARING */
2292
2293 BOOT_LOG_INF("Booting image from the %s slot",
2294 (selected_slot == BOOT_PRIMARY_SLOT) ?
2295 "primary" : "secondary");
2296
2297 rsp->br_flash_dev_id =
2298 BOOT_IMG_AREA(state, selected_slot)->fa_device_id;
2299 rsp->br_image_off = boot_img_slot_off(state, selected_slot);
2300 rsp->br_hdr = selected_image_header;
2301 } else {
2302 /* No candidate image available */
2303 rc = BOOT_EBADIMAGE;
2304 goto out;
2305 }
2306
2307out:
2308 for (slot = 0; slot < BOOT_NUM_SLOTS; slot++) {
2309 flash_area_close(BOOT_IMG_AREA(state, BOOT_NUM_SLOTS - 1 - slot));
2310 }
Raef Colese8fe6cf2020-05-26 13:07:40 +01002311
2312 if (rc) {
2313 fih_rc = fih_int_encode(rc);
2314 }
2315
2316 FIH_RET(fih_rc);
David Vinczee574f2d2020-07-10 11:42:03 +02002317}
Tamas Banfe031092020-09-10 17:32:39 +02002318#endif /* MCUBOOT_DIRECT_XIP || MCUBOOT_RAM_LOAD */
David Vinczee574f2d2020-07-10 11:42:03 +02002319
2320/**
Raef Colese8fe6cf2020-05-26 13:07:40 +01002321 * Prepares the booting process. This function moves images around in flash as
David Vinczee574f2d2020-07-10 11:42:03 +02002322 * appropriate, and tells you what address to boot from.
2323 *
2324 * @param rsp On success, indicates how booting should occur.
2325 *
Raef Colese8fe6cf2020-05-26 13:07:40 +01002326 * @return FIH_SUCCESS on success; nonzero on failure.
David Vinczee574f2d2020-07-10 11:42:03 +02002327 */
Raef Colese8fe6cf2020-05-26 13:07:40 +01002328fih_int
David Vinczee574f2d2020-07-10 11:42:03 +02002329boot_go(struct boot_rsp *rsp)
2330{
Raef Colese8fe6cf2020-05-26 13:07:40 +01002331 fih_int fih_rc = FIH_FAILURE;
2332 FIH_CALL(context_boot_go, fih_rc, &boot_data, rsp);
2333 FIH_RET(fih_rc);
David Vinczee574f2d2020-07-10 11:42:03 +02002334}