blob: e6d3b5c39721546bc787c39daad651607d180072 [file] [log] [blame]
Christopher Collins92ea77f2016-12-12 15:59:26 -08001/*
2 * Licensed to the Apache Software Foundation (ASF) under one
3 * or more contributor license agreements. See the NOTICE file
4 * distributed with this work for additional information
5 * regarding copyright ownership. The ASF licenses this file
6 * to you under the Apache License, Version 2.0 (the
7 * "License"); you may not use this file except in compliance
8 * with the License. You may obtain a copy of the License at
9 *
10 * http://www.apache.org/licenses/LICENSE-2.0
11 *
12 * Unless required by applicable law or agreed to in writing,
13 * software distributed under the License is distributed on an
14 * "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
15 * KIND, either express or implied. See the License for the
16 * specific language governing permissions and limitations
17 * under the License.
18 */
19
20/**
21 * This file provides an interface to the boot loader. Functions defined in
22 * this file should only be called while the boot loader is running.
23 */
24
25#include <assert.h>
26#include <stddef.h>
27#include <inttypes.h>
28#include <stdlib.h>
29#include <string.h>
Christopher Collins92ea77f2016-12-12 15:59:26 -080030#include <hal/hal_flash.h>
31#include <os/os_malloc.h>
32#include "bootutil/bootutil.h"
33#include "bootutil/image.h"
34#include "bootutil_priv.h"
35
Marti Bolivarfd20c762017-02-07 16:52:50 -050036#define BOOT_LOG_LEVEL BOOT_LOG_LEVEL_INFO
37#include "bootutil/bootutil_log.h"
38
Fabio Utzigeed80b62017-06-10 08:03:05 -030039#ifdef APP_mynewt
40#include "mynewt/config.h"
41#endif
42
Marti Bolivar9b1f8bb2017-06-12 15:24:13 -040043static struct boot_loader_state boot_data;
Christopher Collins92ea77f2016-12-12 15:59:26 -080044
45struct boot_status_table {
46 /**
47 * For each field, a value of 0 means "any".
48 */
49 uint8_t bst_magic_slot0;
50 uint8_t bst_magic_scratch;
51 uint8_t bst_copy_done_slot0;
52 uint8_t bst_status_source;
53};
54
55/**
56 * This set of tables maps swap state contents to boot status location.
57 * When searching for a match, these tables must be iterated in order.
58 */
59static const struct boot_status_table boot_status_tables[] = {
60 {
61 /* | slot-0 | scratch |
62 * ----------+------------+------------|
63 * magic | Good | Any |
64 * copy-done | 0x01 | N/A |
65 * ----------+------------+------------'
66 * source: none |
67 * ------------------------------------'
68 */
69 .bst_magic_slot0 = BOOT_MAGIC_GOOD,
70 .bst_magic_scratch = 0,
71 .bst_copy_done_slot0 = 0x01,
72 .bst_status_source = BOOT_STATUS_SOURCE_NONE,
73 },
74
75 {
76 /* | slot-0 | scratch |
77 * ----------+------------+------------|
78 * magic | Good | Any |
79 * copy-done | 0xff | N/A |
80 * ----------+------------+------------'
81 * source: slot 0 |
82 * ------------------------------------'
83 */
84 .bst_magic_slot0 = BOOT_MAGIC_GOOD,
85 .bst_magic_scratch = 0,
86 .bst_copy_done_slot0 = 0xff,
87 .bst_status_source = BOOT_STATUS_SOURCE_SLOT0,
88 },
89
90 {
91 /* | slot-0 | scratch |
92 * ----------+------------+------------|
93 * magic | Any | Good |
94 * copy-done | Any | N/A |
95 * ----------+------------+------------'
96 * source: scratch |
97 * ------------------------------------'
98 */
99 .bst_magic_slot0 = 0,
100 .bst_magic_scratch = BOOT_MAGIC_GOOD,
101 .bst_copy_done_slot0 = 0,
102 .bst_status_source = BOOT_STATUS_SOURCE_SCRATCH,
103 },
104
105 {
106 /* | slot-0 | scratch |
107 * ----------+------------+------------|
108 * magic | Unset | Any |
109 * copy-done | 0xff | N/A |
110 * ----------+------------+------------|
111 * source: varies |
112 * ------------------------------------+------------------------------+
113 * This represents one of two cases: |
114 * o No swaps ever (no status to read, so no harm in checking). |
115 * o Mid-revert; status in slot 0. |
116 * -------------------------------------------------------------------'
117 */
118 .bst_magic_slot0 = BOOT_MAGIC_UNSET,
119 .bst_magic_scratch = 0,
120 .bst_copy_done_slot0 = 0xff,
121 .bst_status_source = BOOT_STATUS_SOURCE_SLOT0,
122 },
123};
124
125#define BOOT_STATUS_TABLES_COUNT \
126 (sizeof boot_status_tables / sizeof boot_status_tables[0])
127
128/**
129 * This table indicates the next swap type that should be performed. The first
130 * column contains the current swap type. The second column contains the swap
131 * type that should be effected after the first completes.
132 */
133static const uint8_t boot_swap_trans_table[][2] = {
134 /* From To */
135 { BOOT_SWAP_TYPE_REVERT, BOOT_SWAP_TYPE_NONE },
Christopher Collinsfd7eb5c2016-12-21 13:46:08 -0800136 { BOOT_SWAP_TYPE_PERM, BOOT_SWAP_TYPE_NONE },
Christopher Collins92ea77f2016-12-12 15:59:26 -0800137 { BOOT_SWAP_TYPE_TEST, BOOT_SWAP_TYPE_REVERT },
138};
139
140#define BOOT_SWAP_TRANS_TABLE_SIZE \
141 (sizeof boot_swap_trans_table / sizeof boot_swap_trans_table[0])
142
Marti Bolivarfd20c762017-02-07 16:52:50 -0500143#define BOOT_LOG_SWAP_STATE(area, state) \
144 BOOT_LOG_INF("%s: magic=%s, copy_done=0x%x, image_ok=0x%x", \
145 (area), \
146 ((state)->magic == BOOT_MAGIC_GOOD ? "good" : \
147 (state)->magic == BOOT_MAGIC_UNSET ? "unset" : \
148 "bad"), \
149 (state)->copy_done, \
150 (state)->image_ok)
151
Christopher Collins92ea77f2016-12-12 15:59:26 -0800152/**
153 * Determines where in flash the most recent boot status is stored. The boot
154 * status is necessary for completing a swap that was interrupted by a boot
155 * loader reset.
156 *
157 * @return A BOOT_STATUS_SOURCE_[...] code indicating where * status should be read from.
158 */
159static int
160boot_status_source(void)
161{
162 const struct boot_status_table *table;
163 struct boot_swap_state state_scratch;
164 struct boot_swap_state state_slot0;
Christopher Collins92ea77f2016-12-12 15:59:26 -0800165 int rc;
166 int i;
Marti Bolivarfd20c762017-02-07 16:52:50 -0500167 uint8_t source;
Christopher Collins92ea77f2016-12-12 15:59:26 -0800168
Fabio Utzig2473ac02017-05-02 12:45:02 -0300169 rc = boot_read_swap_state_by_id(FLASH_AREA_IMAGE_0, &state_slot0);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800170 assert(rc == 0);
171
Fabio Utzig2473ac02017-05-02 12:45:02 -0300172 rc = boot_read_swap_state_by_id(FLASH_AREA_IMAGE_SCRATCH, &state_scratch);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800173 assert(rc == 0);
174
Marti Bolivarfd20c762017-02-07 16:52:50 -0500175 BOOT_LOG_SWAP_STATE("Image 0", &state_slot0);
Marti Bolivarfd20c762017-02-07 16:52:50 -0500176 BOOT_LOG_SWAP_STATE("Scratch", &state_scratch);
177
Christopher Collins92ea77f2016-12-12 15:59:26 -0800178 for (i = 0; i < BOOT_STATUS_TABLES_COUNT; i++) {
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300179 table = &boot_status_tables[i];
Christopher Collins92ea77f2016-12-12 15:59:26 -0800180
181 if ((table->bst_magic_slot0 == 0 ||
182 table->bst_magic_slot0 == state_slot0.magic) &&
183 (table->bst_magic_scratch == 0 ||
184 table->bst_magic_scratch == state_scratch.magic) &&
185 (table->bst_copy_done_slot0 == 0 ||
186 table->bst_copy_done_slot0 == state_slot0.copy_done)) {
Marti Bolivarfd20c762017-02-07 16:52:50 -0500187 source = table->bst_status_source;
188 BOOT_LOG_INF("Boot source: %s",
189 source == BOOT_STATUS_SOURCE_NONE ? "none" :
190 source == BOOT_STATUS_SOURCE_SCRATCH ? "scratch" :
191 source == BOOT_STATUS_SOURCE_SLOT0 ? "slot 0" :
192 "BUG; can't happen");
193 return source;
Christopher Collins92ea77f2016-12-12 15:59:26 -0800194 }
195 }
196
Marti Bolivarfd20c762017-02-07 16:52:50 -0500197 BOOT_LOG_INF("Boot source: none");
Christopher Collins92ea77f2016-12-12 15:59:26 -0800198 return BOOT_STATUS_SOURCE_NONE;
199}
200
201/**
202 * Calculates the type of swap that just completed.
203 */
204static int
205boot_previous_swap_type(void)
206{
207 int post_swap_type;
208 int i;
209
210 post_swap_type = boot_swap_type();
211
212 for (i = 0; i < BOOT_SWAP_TRANS_TABLE_SIZE; i++){
213 if (boot_swap_trans_table[i][1] == post_swap_type) {
214 return boot_swap_trans_table[i][0];
215 }
216 }
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300217
Christopher Collins92ea77f2016-12-12 15:59:26 -0800218 /* XXX: Temporary assert. */
219 assert(0);
220
221 return BOOT_SWAP_TYPE_REVERT;
222}
223
224static int
225boot_read_image_header(int slot, struct image_header *out_hdr)
226{
227 const struct flash_area *fap;
228 int area_id;
229 int rc;
230
231 area_id = flash_area_id_from_image_slot(slot);
232 rc = flash_area_open(area_id, &fap);
233 if (rc != 0) {
234 rc = BOOT_EFLASH;
235 goto done;
236 }
237
238 rc = flash_area_read(fap, 0, out_hdr, sizeof *out_hdr);
239 if (rc != 0) {
240 rc = BOOT_EFLASH;
241 goto done;
242 }
243
244 rc = 0;
245
246done:
247 flash_area_close(fap);
248 return rc;
249}
250
251static int
252boot_read_image_headers(void)
253{
254 int rc;
255 int i;
256
257 for (i = 0; i < BOOT_NUM_SLOTS; i++) {
Marti Bolivarf804f622017-06-12 15:41:48 -0400258 rc = boot_read_image_header(i, boot_img_hdr(&boot_data, i));
Christopher Collins92ea77f2016-12-12 15:59:26 -0800259 if (rc != 0) {
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300260 /* If at least the first slot's header was read successfully, then
261 * the boot loader can attempt a boot. Failure to read any headers
262 * is a fatal error.
Christopher Collins0ff3c6c2016-12-21 12:04:17 -0800263 */
264 if (i > 0) {
265 return 0;
266 } else {
267 return rc;
268 }
Christopher Collins92ea77f2016-12-12 15:59:26 -0800269 }
270 }
271
272 return 0;
273}
274
275static uint8_t
276boot_write_sz(void)
277{
278 uint8_t elem_sz;
279 uint8_t align;
280
281 /* Figure out what size to write update status update as. The size depends
282 * on what the minimum write size is for scratch area, active image slot.
283 * We need to use the bigger of those 2 values.
284 */
Marti Bolivare2587152017-06-12 15:52:05 -0400285 elem_sz = hal_flash_align(boot_img_fa_device_id(&boot_data, 0));
286 align = hal_flash_align(boot_scratch_fa_device_id(&boot_data));
Christopher Collins92ea77f2016-12-12 15:59:26 -0800287 if (align > elem_sz) {
288 elem_sz = align;
289 }
290
291 return elem_sz;
292}
293
Christopher Collins0ff3c6c2016-12-21 12:04:17 -0800294static int
295boot_slots_compatible(void)
296{
Marti Bolivard3269fd2017-06-12 16:31:12 -0400297 size_t num_sectors_0 = boot_img_num_sectors(&boot_data, 0);
298 size_t num_sectors_1 = boot_img_num_sectors(&boot_data, 1);
299 size_t size_0, size_1;
300 size_t i;
Christopher Collins0ff3c6c2016-12-21 12:04:17 -0800301
302 /* Ensure both image slots have identical sector layouts. */
Marti Bolivard3269fd2017-06-12 16:31:12 -0400303 if (num_sectors_0 != num_sectors_1) {
Christopher Collins0ff3c6c2016-12-21 12:04:17 -0800304 return 0;
305 }
Marti Bolivard3269fd2017-06-12 16:31:12 -0400306 for (i = 0; i < num_sectors_0; i++) {
307 size_0 = boot_img_sector_size(&boot_data, 0, i);
308 size_1 = boot_img_sector_size(&boot_data, 1, i);
309 if (size_0 != size_1) {
Christopher Collins0ff3c6c2016-12-21 12:04:17 -0800310 return 0;
311 }
312 }
313
314 return 1;
315}
316
Christopher Collins92ea77f2016-12-12 15:59:26 -0800317/**
318 * Determines the sector layout of both image slots and the scratch area.
319 * This information is necessary for calculating the number of bytes to erase
320 * and copy during an image swap. The information collected during this
321 * function is used to populate the boot_data global.
322 */
323static int
324boot_read_sectors(void)
325{
Christopher Collins92ea77f2016-12-12 15:59:26 -0800326 int rc;
Christopher Collins92ea77f2016-12-12 15:59:26 -0800327
Marti Bolivarcca28a92017-06-12 16:52:22 -0400328 rc = boot_initialize_area(&boot_data, FLASH_AREA_IMAGE_0);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800329 if (rc != 0) {
330 return BOOT_EFLASH;
331 }
332
Marti Bolivarcca28a92017-06-12 16:52:22 -0400333 rc = boot_initialize_area(&boot_data, FLASH_AREA_IMAGE_1);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800334 if (rc != 0) {
335 return BOOT_EFLASH;
336 }
337
Marti Bolivarcca28a92017-06-12 16:52:22 -0400338 rc = boot_initialize_area(&boot_data, FLASH_AREA_IMAGE_SCRATCH);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800339 if (rc != 0) {
340 return BOOT_EFLASH;
341 }
Christopher Collins92ea77f2016-12-12 15:59:26 -0800342
343 boot_data.write_sz = boot_write_sz();
344
345 return 0;
346}
347
348static uint32_t
349boot_status_internal_off(int idx, int state, int elem_sz)
350{
351 int idx_sz;
352
353 idx_sz = elem_sz * BOOT_STATUS_STATE_COUNT;
354
355 return idx * idx_sz + state * elem_sz;
356}
357
358/**
359 * Reads the status of a partially-completed swap, if any. This is necessary
360 * to recover in case the boot lodaer was reset in the middle of a swap
361 * operation.
362 */
363static int
364boot_read_status_bytes(const struct flash_area *fap, struct boot_status *bs)
365{
366 uint32_t off;
367 uint8_t status;
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300368 int max_entries;
Christopher Collins92ea77f2016-12-12 15:59:26 -0800369 int found;
370 int rc;
371 int i;
372
373 off = boot_status_off(fap);
Fabio Utzig4cee4f72017-05-22 10:59:57 -0400374 max_entries = boot_status_entries(fap);
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300375
Christopher Collins92ea77f2016-12-12 15:59:26 -0800376 found = 0;
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300377 for (i = 0; i < max_entries; i++) {
Christopher Collins92ea77f2016-12-12 15:59:26 -0800378 rc = flash_area_read(fap, off + i * boot_data.write_sz, &status, 1);
379 if (rc != 0) {
380 return BOOT_EFLASH;
381 }
382
383 if (status == 0xff) {
384 if (found) {
385 break;
386 }
387 } else if (!found) {
388 found = 1;
389 }
390 }
391
392 if (found) {
393 i--;
Fabio Utzig94d998c2017-05-22 11:02:41 -0400394 bs->idx = i / BOOT_STATUS_STATE_COUNT;
395 bs->state = i % BOOT_STATUS_STATE_COUNT;
Christopher Collins92ea77f2016-12-12 15:59:26 -0800396 }
397
398 return 0;
399}
400
401/**
402 * Reads the boot status from the flash. The boot status contains
403 * the current state of an interrupted image copy operation. If the boot
404 * status is not present, or it indicates that previous copy finished,
405 * there is no operation in progress.
406 */
407static int
408boot_read_status(struct boot_status *bs)
409{
410 const struct flash_area *fap;
411 int status_loc;
412 int area_id;
413 int rc;
414
415 memset(bs, 0, sizeof *bs);
416
417 status_loc = boot_status_source();
418 switch (status_loc) {
419 case BOOT_STATUS_SOURCE_NONE:
420 return 0;
421
422 case BOOT_STATUS_SOURCE_SCRATCH:
423 area_id = FLASH_AREA_IMAGE_SCRATCH;
424 break;
425
426 case BOOT_STATUS_SOURCE_SLOT0:
427 area_id = FLASH_AREA_IMAGE_0;
428 break;
429
430 default:
431 assert(0);
432 return BOOT_EBADARGS;
433 }
434
435 rc = flash_area_open(area_id, &fap);
436 if (rc != 0) {
437 return BOOT_EFLASH;
438 }
439
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300440 return boot_read_status_bytes(fap, bs);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800441}
442
443/**
444 * Writes the supplied boot status to the flash file system. The boot status
445 * contains the current state of an in-progress image copy operation.
446 *
447 * @param bs The boot status to write.
448 *
449 * @return 0 on success; nonzero on failure.
450 */
451int
452boot_write_status(struct boot_status *bs)
453{
454 const struct flash_area *fap;
455 uint32_t off;
456 int area_id;
457 int rc;
David Brown9d725462017-01-23 15:50:58 -0700458 uint8_t buf[8];
459 uint8_t align;
Christopher Collins92ea77f2016-12-12 15:59:26 -0800460
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300461 /* NOTE: The first sector copied (that is the last sector on slot) contains
462 * the trailer. Since in the last step SLOT 0 is erased, the first
463 * two status writes go to the scratch which will be copied to SLOT 0!
464 */
465
Fabio Utzig2473ac02017-05-02 12:45:02 -0300466 if (bs->use_scratch) {
Christopher Collins92ea77f2016-12-12 15:59:26 -0800467 /* Write to scratch. */
468 area_id = FLASH_AREA_IMAGE_SCRATCH;
469 } else {
470 /* Write to slot 0. */
471 area_id = FLASH_AREA_IMAGE_0;
472 }
473
474 rc = flash_area_open(area_id, &fap);
475 if (rc != 0) {
476 rc = BOOT_EFLASH;
477 goto done;
478 }
479
480 off = boot_status_off(fap) +
481 boot_status_internal_off(bs->idx, bs->state, boot_data.write_sz);
482
David Brown9d725462017-01-23 15:50:58 -0700483 align = hal_flash_align(fap->fa_device_id);
David Brown9d725462017-01-23 15:50:58 -0700484 memset(buf, 0xFF, 8);
485 buf[0] = bs->state;
486
487 rc = flash_area_write(fap, off, buf, align);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800488 if (rc != 0) {
489 rc = BOOT_EFLASH;
490 goto done;
491 }
492
493 rc = 0;
494
495done:
496 flash_area_close(fap);
497 return rc;
498}
499
500/*
501 * Validate image hash/signature in a slot.
502 */
503static int
504boot_image_check(struct image_header *hdr, const struct flash_area *fap)
505{
David Browndb1d9d32017-01-06 11:07:54 -0700506 static uint8_t tmpbuf[BOOT_TMPBUF_SZ];
Christopher Collins92ea77f2016-12-12 15:59:26 -0800507
Christopher Collins92ea77f2016-12-12 15:59:26 -0800508 if (bootutil_img_validate(hdr, fap, tmpbuf, BOOT_TMPBUF_SZ,
509 NULL, 0, NULL)) {
510 return BOOT_EBADIMAGE;
511 }
512 return 0;
513}
514
515static int
516split_image_check(struct image_header *app_hdr,
517 const struct flash_area *app_fap,
518 struct image_header *loader_hdr,
519 const struct flash_area *loader_fap)
520{
521 static void *tmpbuf;
522 uint8_t loader_hash[32];
523
524 if (!tmpbuf) {
525 tmpbuf = malloc(BOOT_TMPBUF_SZ);
526 if (!tmpbuf) {
527 return BOOT_ENOMEM;
528 }
529 }
530
531 if (bootutil_img_validate(loader_hdr, loader_fap, tmpbuf, BOOT_TMPBUF_SZ,
532 NULL, 0, loader_hash)) {
533 return BOOT_EBADIMAGE;
534 }
535
536 if (bootutil_img_validate(app_hdr, app_fap, tmpbuf, BOOT_TMPBUF_SZ,
537 loader_hash, 32, NULL)) {
538 return BOOT_EBADIMAGE;
539 }
540
541 return 0;
542}
543
544static int
David Brownd930ec62016-12-14 07:59:48 -0700545boot_validate_slot(int slot)
Christopher Collins92ea77f2016-12-12 15:59:26 -0800546{
547 const struct flash_area *fap;
Marti Bolivarf804f622017-06-12 15:41:48 -0400548 struct image_header *hdr;
Christopher Collins92ea77f2016-12-12 15:59:26 -0800549 int rc;
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300550
Marti Bolivarf804f622017-06-12 15:41:48 -0400551 hdr = boot_img_hdr(&boot_data, slot);
552 if (hdr->ih_magic == 0xffffffff || hdr->ih_flags & IMAGE_F_NON_BOOTABLE) {
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300553 /* No bootable image in slot; continue booting from slot 0. */
Christopher Collins92ea77f2016-12-12 15:59:26 -0800554 return -1;
555 }
556
David Brownd930ec62016-12-14 07:59:48 -0700557 rc = flash_area_open(flash_area_id_from_image_slot(slot), &fap);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800558 if (rc != 0) {
559 return BOOT_EFLASH;
560 }
561
Marti Bolivarf804f622017-06-12 15:41:48 -0400562 if ((hdr->ih_magic != IMAGE_MAGIC || boot_image_check(hdr, fap) != 0)) {
David Brownb38e0442017-02-24 13:57:12 -0700563 if (slot != 0) {
564 flash_area_erase(fap, 0, fap->fa_size);
565 /* Image in slot 1 is invalid. Erase the image and
566 * continue booting from slot 0.
567 */
568 }
Christopher Collins92ea77f2016-12-12 15:59:26 -0800569 return -1;
570 }
571
572 flash_area_close(fap);
573
574 /* Image in slot 1 is valid. */
575 return 0;
576}
577
578/**
579 * Determines which swap operation to perform, if any. If it is determined
580 * that a swap operation is required, the image in the second slot is checked
581 * for validity. If the image in the second slot is invalid, it is erased, and
582 * a swap type of "none" is indicated.
583 *
584 * @return The type of swap to perform (BOOT_SWAP_TYPE...)
585 */
586static int
587boot_validated_swap_type(void)
588{
589 int swap_type;
590 int rc;
591
592 swap_type = boot_swap_type();
593 if (swap_type == BOOT_SWAP_TYPE_NONE) {
594 /* Continue using slot 0. */
595 return BOOT_SWAP_TYPE_NONE;
596 }
597
598 /* Boot loader wants to switch to slot 1. Ensure image is valid. */
David Brownd930ec62016-12-14 07:59:48 -0700599 rc = boot_validate_slot(1);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800600 if (rc != 0) {
601 return BOOT_SWAP_TYPE_FAIL;
602 }
603
604 return swap_type;
605}
606
607/**
608 * Calculates the number of sectors the scratch area can contain. A "last"
609 * source sector is specified because images are copied backwards in flash
610 * (final index to index number 0).
611 *
612 * @param last_sector_idx The index of the last source sector
613 * (inclusive).
614 * @param out_first_sector_idx The index of the first source sector
615 * (inclusive) gets written here.
616 *
617 * @return The number of bytes comprised by the
618 * [first-sector, last-sector] range.
619 */
Fabio Utzig3488eef2017-06-12 10:25:43 -0300620#ifndef MCUBOOT_OVERWRITE_ONLY
Christopher Collins92ea77f2016-12-12 15:59:26 -0800621static uint32_t
622boot_copy_sz(int last_sector_idx, int *out_first_sector_idx)
623{
Marti Bolivard3269fd2017-06-12 16:31:12 -0400624 size_t scratch_sz;
Christopher Collins92ea77f2016-12-12 15:59:26 -0800625 uint32_t new_sz;
626 uint32_t sz;
627 int i;
628
629 sz = 0;
630
Marti Bolivard3269fd2017-06-12 16:31:12 -0400631 scratch_sz = boot_scratch_area_size(&boot_data);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800632 for (i = last_sector_idx; i >= 0; i--) {
Marti Bolivard3269fd2017-06-12 16:31:12 -0400633 new_sz = sz + boot_img_sector_size(&boot_data, 0, i);
634 if (new_sz > scratch_sz) {
Christopher Collins92ea77f2016-12-12 15:59:26 -0800635 break;
636 }
637 sz = new_sz;
638 }
639
640 /* i currently refers to a sector that doesn't fit or it is -1 because all
641 * sectors have been processed. In both cases, exclude sector i.
642 */
643 *out_first_sector_idx = i + 1;
644 return sz;
645}
Fabio Utzig3488eef2017-06-12 10:25:43 -0300646#endif /* !MCUBOOT_OVERWRITE_ONLY */
Christopher Collins92ea77f2016-12-12 15:59:26 -0800647
648/**
649 * Erases a region of flash.
650 *
651 * @param flash_area_idx The ID of the flash area containing the region
652 * to erase.
653 * @param off The offset within the flash area to start the
654 * erase.
655 * @param sz The number of bytes to erase.
656 *
657 * @return 0 on success; nonzero on failure.
658 */
659static int
660boot_erase_sector(int flash_area_id, uint32_t off, uint32_t sz)
661{
662 const struct flash_area *fap;
663 int rc;
664
665 rc = flash_area_open(flash_area_id, &fap);
666 if (rc != 0) {
667 rc = BOOT_EFLASH;
668 goto done;
669 }
670
671 rc = flash_area_erase(fap, off, sz);
672 if (rc != 0) {
673 rc = BOOT_EFLASH;
674 goto done;
675 }
676
677 rc = 0;
678
679done:
680 flash_area_close(fap);
681 return rc;
682}
683
684/**
685 * Copies the contents of one flash region to another. You must erase the
686 * destination region prior to calling this function.
687 *
688 * @param flash_area_id_src The ID of the source flash area.
689 * @param flash_area_id_dst The ID of the destination flash area.
690 * @param off_src The offset within the source flash area to
691 * copy from.
692 * @param off_dst The offset within the destination flash area to
693 * copy to.
694 * @param sz The number of bytes to copy.
695 *
696 * @return 0 on success; nonzero on failure.
697 */
698static int
699boot_copy_sector(int flash_area_id_src, int flash_area_id_dst,
700 uint32_t off_src, uint32_t off_dst, uint32_t sz)
701{
702 const struct flash_area *fap_src;
703 const struct flash_area *fap_dst;
704 uint32_t bytes_copied;
705 int chunk_sz;
706 int rc;
707
708 static uint8_t buf[1024];
709
710 fap_src = NULL;
711 fap_dst = NULL;
712
713 rc = flash_area_open(flash_area_id_src, &fap_src);
714 if (rc != 0) {
715 rc = BOOT_EFLASH;
716 goto done;
717 }
718
719 rc = flash_area_open(flash_area_id_dst, &fap_dst);
720 if (rc != 0) {
721 rc = BOOT_EFLASH;
722 goto done;
723 }
724
725 bytes_copied = 0;
726 while (bytes_copied < sz) {
727 if (sz - bytes_copied > sizeof buf) {
728 chunk_sz = sizeof buf;
729 } else {
730 chunk_sz = sz - bytes_copied;
731 }
732
733 rc = flash_area_read(fap_src, off_src + bytes_copied, buf, chunk_sz);
734 if (rc != 0) {
735 rc = BOOT_EFLASH;
736 goto done;
737 }
738
739 rc = flash_area_write(fap_dst, off_dst + bytes_copied, buf, chunk_sz);
740 if (rc != 0) {
741 rc = BOOT_EFLASH;
742 goto done;
743 }
744
745 bytes_copied += chunk_sz;
746 }
747
748 rc = 0;
749
750done:
751 flash_area_close(fap_src);
752 flash_area_close(fap_dst);
753 return rc;
754}
755
Fabio Utzig2473ac02017-05-02 12:45:02 -0300756static inline int
757boot_status_init_by_id(int flash_area_id)
758{
759 const struct flash_area *fap;
760 struct boot_swap_state swap_state;
761 int rc;
762
763 rc = flash_area_open(flash_area_id, &fap);
764 assert(rc == 0);
765
766 rc = boot_read_swap_state_by_id(FLASH_AREA_IMAGE_1, &swap_state);
767 assert(rc == 0);
768
Fabio Utzigde8a38a2017-05-23 11:15:01 -0400769 if (swap_state.image_ok == BOOT_FLAG_SET) {
Fabio Utzig2473ac02017-05-02 12:45:02 -0300770 rc = boot_write_image_ok(fap);
771 assert(rc == 0);
772 }
773
774 rc = boot_write_magic(fap);
775 assert(rc == 0);
776
777 flash_area_close(fap);
778
779 return 0;
780}
781
782static int
783boot_erase_last_sector_by_id(int flash_area_id)
784{
785 uint8_t slot;
786 uint32_t last_sector;
787 struct flash_area *sectors;
788 int rc;
789
790 switch (flash_area_id) {
791 case FLASH_AREA_IMAGE_0:
792 slot = 0;
793 break;
794 case FLASH_AREA_IMAGE_1:
795 slot = 1;
796 break;
797 default:
798 return BOOT_EFLASH;
799 }
800
Marti Bolivard3269fd2017-06-12 16:31:12 -0400801 last_sector = boot_img_num_sectors(&boot_data, slot) - 1;
Fabio Utzig2473ac02017-05-02 12:45:02 -0300802 sectors = boot_data.imgs[slot].sectors;
803 rc = boot_erase_sector(flash_area_id,
804 sectors[last_sector].fa_off - sectors[0].fa_off,
Marti Bolivard3269fd2017-06-12 16:31:12 -0400805 boot_img_sector_size(&boot_data, slot, last_sector));
Fabio Utzig2473ac02017-05-02 12:45:02 -0300806 assert(rc == 0);
807
808 return rc;
809}
810
Christopher Collins92ea77f2016-12-12 15:59:26 -0800811/**
812 * Swaps the contents of two flash regions within the two image slots.
813 *
814 * @param idx The index of the first sector in the range of
815 * sectors being swapped.
816 * @param sz The number of bytes to swap.
817 * @param bs The current boot status. This struct gets
818 * updated according to the outcome.
819 *
820 * @return 0 on success; nonzero on failure.
821 */
Fabio Utzig3488eef2017-06-12 10:25:43 -0300822#ifndef MCUBOOT_OVERWRITE_ONLY
Christopher Collins4772ac42017-02-27 20:08:01 -0800823static void
Christopher Collins92ea77f2016-12-12 15:59:26 -0800824boot_swap_sectors(int idx, uint32_t sz, struct boot_status *bs)
825{
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300826 const struct flash_area *fap;
Christopher Collins92ea77f2016-12-12 15:59:26 -0800827 uint32_t copy_sz;
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300828 uint32_t trailer_sz;
Christopher Collins92ea77f2016-12-12 15:59:26 -0800829 uint32_t img_off;
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300830 uint32_t scratch_trailer_off;
831 struct boot_swap_state swap_state;
Marti Bolivard3269fd2017-06-12 16:31:12 -0400832 size_t last_sector;
Christopher Collins92ea77f2016-12-12 15:59:26 -0800833 int rc;
834
835 /* Calculate offset from start of image area. */
836 img_off = boot_data.imgs[0].sectors[idx].fa_off -
837 boot_data.imgs[0].sectors[0].fa_off;
838
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300839 copy_sz = sz;
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300840 trailer_sz = boot_slots_trailer_sz(boot_data.write_sz);
Fabio Utzig9678c972017-05-23 11:28:56 -0400841
842 /* sz in this function is always is always sized on a multiple of the
843 * sector size. The check against the first address of the last sector
844 * is to determine if we're swapping the last sector. The last sector
845 * needs special handling because it's where the trailer lives. If we're
846 * copying it, we need to use scratch to write the trailer temporarily.
847 *
848 * NOTE: `use_scratch` is a temporary flag (never written to flash) which
849 * controls if special handling is needed (swapping last sector).
850 */
Marti Bolivard3269fd2017-06-12 16:31:12 -0400851 last_sector = boot_img_num_sectors(&boot_data, 0) - 1;
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300852 if (boot_data.imgs[0].sectors[idx].fa_off + sz >
Marti Bolivard3269fd2017-06-12 16:31:12 -0400853 boot_data.imgs[0].sectors[last_sector].fa_off) {
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300854 copy_sz -= trailer_sz;
855 }
856
Fabio Utzig2473ac02017-05-02 12:45:02 -0300857 bs->use_scratch = (bs->idx == 0 && copy_sz != sz);
858
Christopher Collins92ea77f2016-12-12 15:59:26 -0800859 if (bs->state == 0) {
860 rc = boot_erase_sector(FLASH_AREA_IMAGE_SCRATCH, 0, sz);
Christopher Collins4772ac42017-02-27 20:08:01 -0800861 assert(rc == 0);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800862
863 rc = boot_copy_sector(FLASH_AREA_IMAGE_1, FLASH_AREA_IMAGE_SCRATCH,
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300864 img_off, 0, copy_sz);
Christopher Collins4772ac42017-02-27 20:08:01 -0800865 assert(rc == 0);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800866
Fabio Utzig2473ac02017-05-02 12:45:02 -0300867 if (bs->idx == 0) {
868 if (bs->use_scratch) {
869 boot_status_init_by_id(FLASH_AREA_IMAGE_SCRATCH);
870 } else {
871 /* Prepare the status area... here it is known that the
872 * last sector is not being used by the image data so it's
873 * safe to erase.
874 */
875 rc = boot_erase_last_sector_by_id(FLASH_AREA_IMAGE_0);
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300876 assert(rc == 0);
Fabio Utzig2473ac02017-05-02 12:45:02 -0300877
878 boot_status_init_by_id(FLASH_AREA_IMAGE_0);
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300879 }
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300880 }
881
Christopher Collins92ea77f2016-12-12 15:59:26 -0800882 bs->state = 1;
Christopher Collins4772ac42017-02-27 20:08:01 -0800883 rc = boot_write_status(bs);
884 assert(rc == 0);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800885 }
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300886
Christopher Collins92ea77f2016-12-12 15:59:26 -0800887 if (bs->state == 1) {
888 rc = boot_erase_sector(FLASH_AREA_IMAGE_1, img_off, sz);
Christopher Collins4772ac42017-02-27 20:08:01 -0800889 assert(rc == 0);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800890
Christopher Collins92ea77f2016-12-12 15:59:26 -0800891 rc = boot_copy_sector(FLASH_AREA_IMAGE_0, FLASH_AREA_IMAGE_1,
892 img_off, img_off, copy_sz);
Christopher Collins4772ac42017-02-27 20:08:01 -0800893 assert(rc == 0);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800894
Fabio Utzig2473ac02017-05-02 12:45:02 -0300895 if (bs->idx == 0 && !bs->use_scratch) {
896 /* If not all sectors of the slot are being swapped,
897 * guarantee here that only slot0 will have the state.
898 */
899 rc = boot_erase_last_sector_by_id(FLASH_AREA_IMAGE_1);
900 assert(rc == 0);
901 }
902
Christopher Collins92ea77f2016-12-12 15:59:26 -0800903 bs->state = 2;
Christopher Collins4772ac42017-02-27 20:08:01 -0800904 rc = boot_write_status(bs);
905 assert(rc == 0);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800906 }
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300907
Christopher Collins92ea77f2016-12-12 15:59:26 -0800908 if (bs->state == 2) {
909 rc = boot_erase_sector(FLASH_AREA_IMAGE_0, img_off, sz);
Christopher Collins4772ac42017-02-27 20:08:01 -0800910 assert(rc == 0);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800911
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300912 /* NOTE: also copy trailer from scratch (has status info) */
Christopher Collins92ea77f2016-12-12 15:59:26 -0800913 rc = boot_copy_sector(FLASH_AREA_IMAGE_SCRATCH, FLASH_AREA_IMAGE_0,
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300914 0, img_off, copy_sz);
Christopher Collins4772ac42017-02-27 20:08:01 -0800915 assert(rc == 0);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800916
Fabio Utzig94d998c2017-05-22 11:02:41 -0400917 if (bs->use_scratch) {
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300918 rc = flash_area_open(FLASH_AREA_IMAGE_SCRATCH, &fap);
919 assert(rc == 0);
920
921 scratch_trailer_off = boot_status_off(fap);
922
923 flash_area_close(fap);
924
925 rc = flash_area_open(FLASH_AREA_IMAGE_0, &fap);
926 assert(rc == 0);
927
928 /* copy current status that is being maintained in scratch */
929 rc = boot_copy_sector(FLASH_AREA_IMAGE_SCRATCH, FLASH_AREA_IMAGE_0,
930 scratch_trailer_off,
931 img_off + copy_sz + BOOT_MAGIC_SZ,
932 BOOT_STATUS_STATE_COUNT * boot_data.write_sz);
933 assert(rc == 0);
934
Fabio Utzig2473ac02017-05-02 12:45:02 -0300935 rc = boot_read_swap_state_by_id(FLASH_AREA_IMAGE_SCRATCH,
936 &swap_state);
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300937 assert(rc == 0);
938
Fabio Utzigde8a38a2017-05-23 11:15:01 -0400939 if (swap_state.image_ok == BOOT_FLAG_SET) {
Fabio Utzig7ebb7c22017-04-26 10:59:31 -0300940 rc = boot_write_image_ok(fap);
941 assert(rc == 0);
942 }
943
944 rc = boot_write_magic(fap);
945 assert(rc == 0);
946
947 flash_area_close(fap);
948 }
949
Christopher Collins92ea77f2016-12-12 15:59:26 -0800950 bs->idx++;
951 bs->state = 0;
Fabio Utzig2473ac02017-05-02 12:45:02 -0300952 bs->use_scratch = 0;
Christopher Collins4772ac42017-02-27 20:08:01 -0800953 rc = boot_write_status(bs);
954 assert(rc == 0);
Christopher Collins92ea77f2016-12-12 15:59:26 -0800955 }
Christopher Collins92ea77f2016-12-12 15:59:26 -0800956}
Fabio Utzig3488eef2017-06-12 10:25:43 -0300957#endif /* !MCUBOOT_OVERWRITE_ONLY */
Christopher Collins92ea77f2016-12-12 15:59:26 -0800958
959/**
960 * Swaps the two images in flash. If a prior copy operation was interrupted
961 * by a system reset, this function completes that operation.
962 *
963 * @param bs The current boot status. This function reads
964 * this struct to determine if it is resuming
965 * an interrupted swap operation. This
966 * function writes the updated status to this
967 * function on return.
968 *
969 * @return 0 on success; nonzero on failure.
970 */
Fabio Utzig3488eef2017-06-12 10:25:43 -0300971#ifdef MCUBOOT_OVERWRITE_ONLY
David Brown17609d82017-05-05 09:41:34 -0600972static int
973boot_copy_image(struct boot_status *bs)
974{
Marti Bolivard3269fd2017-06-12 16:31:12 -0400975 size_t sect_count;
976 size_t sect;
David Brown17609d82017-05-05 09:41:34 -0600977 int rc;
Marti Bolivard3269fd2017-06-12 16:31:12 -0400978 size_t size = 0;
979 size_t this_size;
David Brown17609d82017-05-05 09:41:34 -0600980
981 BOOT_LOG_INF("Image upgrade slot1 -> slot0");
982 BOOT_LOG_INF("Erasing slot0");
983
Marti Bolivard3269fd2017-06-12 16:31:12 -0400984 sect_count = boot_img_num_sectors(&boot_data, 0);
David Brown17609d82017-05-05 09:41:34 -0600985 for (sect = 0; sect < sect_count; sect++) {
Marti Bolivard3269fd2017-06-12 16:31:12 -0400986 this_size = boot_img_sector_size(&boot_data, 0, sect);
David Brown17609d82017-05-05 09:41:34 -0600987 rc = boot_erase_sector(FLASH_AREA_IMAGE_0,
988 size,
989 this_size);
990 assert(rc == 0);
991
992 size += this_size;
993 }
994
995 BOOT_LOG_INF("Copying slot 1 to slot 0: 0x%x bytes",
996 size);
997 rc = boot_copy_sector(FLASH_AREA_IMAGE_1, FLASH_AREA_IMAGE_0,
998 0, 0, size);
999
1000 /* Erase slot 1 so that we don't do the upgrade on every boot.
1001 * TODO: Perhaps verify slot 0's signature again? */
1002 rc = boot_erase_sector(FLASH_AREA_IMAGE_1,
Marti Bolivard3269fd2017-06-12 16:31:12 -04001003 0, boot_img_sector_size(&boot_data, 1, 0));
David Brown17609d82017-05-05 09:41:34 -06001004 assert(rc == 0);
1005
1006 return 0;
1007}
1008#else
Christopher Collins92ea77f2016-12-12 15:59:26 -08001009static int
1010boot_copy_image(struct boot_status *bs)
1011{
1012 uint32_t sz;
1013 int first_sector_idx;
1014 int last_sector_idx;
1015 int swap_idx;
Fabio Utzig2473ac02017-05-02 12:45:02 -03001016 struct image_header *hdr;
1017 uint32_t size;
1018 uint32_t copy_size;
1019 struct image_header tmp_hdr;
1020 int rc;
1021
1022 /* FIXME: just do this if asked by user? */
1023
1024 size = copy_size = 0;
1025
Marti Bolivarf804f622017-06-12 15:41:48 -04001026 hdr = boot_img_hdr(&boot_data, 0);
Fabio Utzig2473ac02017-05-02 12:45:02 -03001027 if (hdr->ih_magic == IMAGE_MAGIC) {
1028 copy_size = hdr->ih_hdr_size + hdr->ih_img_size + hdr->ih_tlv_size;
1029 }
1030
Marti Bolivarf804f622017-06-12 15:41:48 -04001031 hdr = boot_img_hdr(&boot_data, 1);
Fabio Utzig2473ac02017-05-02 12:45:02 -03001032 if (hdr->ih_magic == IMAGE_MAGIC) {
1033 size = hdr->ih_hdr_size + hdr->ih_img_size + hdr->ih_tlv_size;
1034 }
1035
1036 if (!size || !copy_size || size == copy_size) {
1037 rc = boot_read_image_header(2, &tmp_hdr);
1038 assert(rc == 0);
1039
1040 hdr = &tmp_hdr;
1041 if (hdr->ih_magic == IMAGE_MAGIC) {
1042 if (!size) {
1043 size = hdr->ih_hdr_size + hdr->ih_img_size + hdr->ih_tlv_size;
1044 } else {
1045 copy_size = hdr->ih_hdr_size + hdr->ih_img_size + hdr->ih_tlv_size;
1046 }
1047 }
1048 }
1049
1050 if (size > copy_size) {
1051 copy_size = size;
1052 }
1053
1054 size = 0;
1055 last_sector_idx = 0;
1056 while (1) {
Marti Bolivard3269fd2017-06-12 16:31:12 -04001057 size += boot_img_sector_size(&boot_data, 0, last_sector_idx);
Fabio Utzig2473ac02017-05-02 12:45:02 -03001058 if (size >= copy_size) {
1059 break;
1060 }
1061 last_sector_idx++;
1062 }
Christopher Collins92ea77f2016-12-12 15:59:26 -08001063
1064 swap_idx = 0;
Christopher Collins92ea77f2016-12-12 15:59:26 -08001065 while (last_sector_idx >= 0) {
1066 sz = boot_copy_sz(last_sector_idx, &first_sector_idx);
1067 if (swap_idx >= bs->idx) {
1068 boot_swap_sectors(first_sector_idx, sz, bs);
1069 }
1070
1071 last_sector_idx = first_sector_idx - 1;
1072 swap_idx++;
1073 }
1074
1075 return 0;
1076}
David Brown17609d82017-05-05 09:41:34 -06001077#endif
Christopher Collins92ea77f2016-12-12 15:59:26 -08001078
1079/**
1080 * Marks a test image in slot 0 as fully copied.
1081 */
1082static int
1083boot_finalize_test_swap(void)
1084{
1085 const struct flash_area *fap;
1086 int rc;
1087
1088 rc = flash_area_open(FLASH_AREA_IMAGE_0, &fap);
1089 if (rc != 0) {
1090 return BOOT_EFLASH;
1091 }
1092
1093 rc = boot_write_copy_done(fap);
1094 if (rc != 0) {
1095 return rc;
1096 }
1097
1098 return 0;
1099}
1100
1101/**
1102 * Marks a reverted image in slot 0 as confirmed. This is necessary to ensure
1103 * the status bytes from the image revert operation don't get processed on a
1104 * subsequent boot.
1105 */
1106static int
1107boot_finalize_revert_swap(void)
1108{
1109 const struct flash_area *fap;
1110 struct boot_swap_state state_slot0;
1111 int rc;
1112
1113 rc = flash_area_open(FLASH_AREA_IMAGE_0, &fap);
1114 if (rc != 0) {
1115 return BOOT_EFLASH;
1116 }
1117
1118 rc = boot_read_swap_state(fap, &state_slot0);
1119 if (rc != 0) {
1120 return BOOT_EFLASH;
1121 }
1122
1123 if (state_slot0.magic == BOOT_MAGIC_UNSET) {
1124 rc = boot_write_magic(fap);
1125 if (rc != 0) {
1126 return rc;
1127 }
1128 }
1129
Fabio Utzigde8a38a2017-05-23 11:15:01 -04001130 if (state_slot0.copy_done == BOOT_FLAG_UNSET) {
Christopher Collins92ea77f2016-12-12 15:59:26 -08001131 rc = boot_write_copy_done(fap);
1132 if (rc != 0) {
1133 return rc;
1134 }
1135 }
1136
Fabio Utzigde8a38a2017-05-23 11:15:01 -04001137 if (state_slot0.image_ok == BOOT_FLAG_UNSET) {
Christopher Collins92ea77f2016-12-12 15:59:26 -08001138 rc = boot_write_image_ok(fap);
1139 if (rc != 0) {
1140 return rc;
1141 }
1142 }
1143
1144 return 0;
1145}
1146
1147/**
Christopher Collins0ff3c6c2016-12-21 12:04:17 -08001148 * Performs an image swap if one is required.
1149 *
1150 * @param out_swap_type On success, the type of swap performed gets
1151 * written here.
1152 *
1153 * @return 0 on success; nonzero on failure.
1154 */
1155static int
1156boot_swap_if_needed(int *out_swap_type)
1157{
1158 struct boot_status bs;
1159 int swap_type;
1160 int rc;
1161
1162 /* Determine if we rebooted in the middle of an image swap
1163 * operation.
1164 */
1165 rc = boot_read_status(&bs);
Fabio Utzig7ebb7c22017-04-26 10:59:31 -03001166 assert(rc == 0);
Christopher Collins0ff3c6c2016-12-21 12:04:17 -08001167 if (rc != 0) {
1168 return rc;
1169 }
1170
1171 /* If a partial swap was detected, complete it. */
1172 if (bs.idx != 0 || bs.state != 0) {
1173 rc = boot_copy_image(&bs);
1174 assert(rc == 0);
1175
1176 /* Extrapolate the type of the partial swap. We need this
1177 * information to know how to mark the swap complete in flash.
1178 */
1179 swap_type = boot_previous_swap_type();
1180 } else {
1181 swap_type = boot_validated_swap_type();
1182 switch (swap_type) {
1183 case BOOT_SWAP_TYPE_TEST:
Christopher Collinsfd7eb5c2016-12-21 13:46:08 -08001184 case BOOT_SWAP_TYPE_PERM:
Christopher Collins0ff3c6c2016-12-21 12:04:17 -08001185 case BOOT_SWAP_TYPE_REVERT:
1186 rc = boot_copy_image(&bs);
1187 assert(rc == 0);
1188 break;
1189 }
1190 }
1191
1192 *out_swap_type = swap_type;
1193 return 0;
1194}
1195
1196/**
Christopher Collins92ea77f2016-12-12 15:59:26 -08001197 * Prepares the booting process. This function moves images around in flash as
1198 * appropriate, and tells you what address to boot from.
1199 *
1200 * @param rsp On success, indicates how booting should occur.
1201 *
1202 * @return 0 on success; nonzero on failure.
1203 */
1204int
1205boot_go(struct boot_rsp *rsp)
1206{
Christopher Collins92ea77f2016-12-12 15:59:26 -08001207 int swap_type;
1208 int slot;
1209 int rc;
1210
1211 /* The array of slot sectors are defined here (as opposed to file scope) so
1212 * that they don't get allocated for non-boot-loader apps. This is
1213 * necessary because the gcc option "-fdata-sections" doesn't seem to have
Christopher Collins0ff3c6c2016-12-21 12:04:17 -08001214 * any effect in older gcc versions (e.g., 4.8.4).
Christopher Collins92ea77f2016-12-12 15:59:26 -08001215 */
1216 static struct flash_area slot0_sectors[BOOT_MAX_IMG_SECTORS];
1217 static struct flash_area slot1_sectors[BOOT_MAX_IMG_SECTORS];
1218 boot_data.imgs[0].sectors = slot0_sectors;
1219 boot_data.imgs[1].sectors = slot1_sectors;
1220
1221 /* Determine the sector layout of the image slots and scratch area. */
1222 rc = boot_read_sectors();
1223 if (rc != 0) {
1224 return rc;
1225 }
1226
1227 /* Attempt to read an image header from each slot. */
1228 rc = boot_read_image_headers();
1229 if (rc != 0) {
1230 return rc;
1231 }
1232
Christopher Collins0ff3c6c2016-12-21 12:04:17 -08001233 /* If the image slots aren't compatible, no swap is possible. Just boot
1234 * into slot 0.
1235 */
1236 if (boot_slots_compatible()) {
1237 rc = boot_swap_if_needed(&swap_type);
Fabio Utzig7ebb7c22017-04-26 10:59:31 -03001238 assert(rc == 0);
Christopher Collins0ff3c6c2016-12-21 12:04:17 -08001239 if (rc != 0) {
1240 return rc;
Christopher Collins92ea77f2016-12-12 15:59:26 -08001241 }
Christopher Collins0ff3c6c2016-12-21 12:04:17 -08001242 } else {
1243 swap_type = BOOT_SWAP_TYPE_NONE;
Christopher Collins92ea77f2016-12-12 15:59:26 -08001244 }
1245
1246 switch (swap_type) {
1247 case BOOT_SWAP_TYPE_NONE:
Fabio Utzig19356bf2017-05-11 16:19:36 -03001248#ifdef MCUBOOT_VALIDATE_SLOT0
David Brownd930ec62016-12-14 07:59:48 -07001249 rc = boot_validate_slot(0);
Fabio Utzig7ebb7c22017-04-26 10:59:31 -03001250 assert(rc == 0);
David Brownd930ec62016-12-14 07:59:48 -07001251 if (rc != 0) {
1252 return BOOT_EBADIMAGE;
1253 }
1254#endif
Christopher Collins92ea77f2016-12-12 15:59:26 -08001255 slot = 0;
1256 break;
1257
1258 case BOOT_SWAP_TYPE_TEST:
Christopher Collinsfd7eb5c2016-12-21 13:46:08 -08001259 case BOOT_SWAP_TYPE_PERM:
Christopher Collins92ea77f2016-12-12 15:59:26 -08001260 slot = 1;
1261 boot_finalize_test_swap();
1262 break;
1263
1264 case BOOT_SWAP_TYPE_REVERT:
1265 slot = 1;
1266 boot_finalize_revert_swap();
1267 break;
1268
1269 case BOOT_SWAP_TYPE_FAIL:
1270 /* The image in slot 1 was invalid and is now erased. Ensure we don't
1271 * try to boot into it again on the next reboot. Do this by pretending
1272 * we just reverted back to slot 0.
1273 */
1274 slot = 0;
1275 boot_finalize_revert_swap();
1276 break;
1277
1278 default:
1279 assert(0);
1280 slot = 0;
1281 break;
1282 }
1283
1284 /* Always boot from the primary slot. */
Marti Bolivare2587152017-06-12 15:52:05 -04001285 rsp->br_flash_id = boot_img_fa_device_id(&boot_data, 0);
Christopher Collins92ea77f2016-12-12 15:59:26 -08001286 rsp->br_image_addr = boot_data.imgs[0].sectors[0].fa_off;
Marti Bolivarf804f622017-06-12 15:41:48 -04001287 rsp->br_hdr = boot_img_hdr(&boot_data, slot);
Christopher Collins92ea77f2016-12-12 15:59:26 -08001288
1289 return 0;
1290}
1291
1292int
1293split_go(int loader_slot, int split_slot, void **entry)
1294{
1295 const struct flash_area *loader_fap;
1296 const struct flash_area *app_fap;
1297 struct flash_area *sectors;
Christopher Collins034a6202017-01-11 12:19:37 -08001298 uintptr_t entry_val;
Christopher Collins92ea77f2016-12-12 15:59:26 -08001299 int loader_flash_id;
1300 int app_flash_id;
1301 int rc;
1302
1303 app_fap = NULL;
1304 loader_fap = NULL;
1305
1306 sectors = malloc(BOOT_MAX_IMG_SECTORS * 2 * sizeof *sectors);
1307 if (sectors == NULL) {
1308 rc = SPLIT_GO_ERR;
1309 goto done;
1310 }
1311 boot_data.imgs[0].sectors = sectors + 0;
1312 boot_data.imgs[1].sectors = sectors + BOOT_MAX_IMG_SECTORS;
1313
1314 /* Determine the sector layout of the image slots and scratch area. */
1315 rc = boot_read_sectors();
1316 if (rc != 0) {
1317 rc = SPLIT_GO_ERR;
1318 goto done;
1319 }
1320
1321 rc = boot_read_image_headers();
1322 if (rc != 0) {
1323 goto done;
1324 }
1325
1326 app_flash_id = flash_area_id_from_image_slot(split_slot);
1327 rc = flash_area_open(app_flash_id, &app_fap);
1328 if (rc != 0) {
1329 rc = BOOT_EFLASH;
1330 goto done;
1331 }
1332
1333 loader_flash_id = flash_area_id_from_image_slot(loader_slot);
1334 rc = flash_area_open(loader_flash_id, &loader_fap);
1335 if (rc != 0) {
1336 rc = BOOT_EFLASH;
1337 goto done;
1338 }
1339
1340 /* Don't check the bootable image flag because we could really call a
1341 * bootable or non-bootable image. Just validate that the image check
1342 * passes which is distinct from the normal check.
1343 */
Marti Bolivarf804f622017-06-12 15:41:48 -04001344 rc = split_image_check(boot_img_hdr(&boot_data, split_slot),
Christopher Collins92ea77f2016-12-12 15:59:26 -08001345 app_fap,
Marti Bolivarf804f622017-06-12 15:41:48 -04001346 boot_img_hdr(&boot_data, loader_slot),
Christopher Collins92ea77f2016-12-12 15:59:26 -08001347 loader_fap);
1348 if (rc != 0) {
1349 rc = SPLIT_GO_NON_MATCHING;
1350 goto done;
1351 }
1352
1353 entry_val = boot_data.imgs[split_slot].sectors[0].fa_off +
Marti Bolivarf804f622017-06-12 15:41:48 -04001354 boot_img_hdr(&boot_data, split_slot)->ih_hdr_size;
Christopher Collins034a6202017-01-11 12:19:37 -08001355 *entry = (void *) entry_val;
Christopher Collins92ea77f2016-12-12 15:59:26 -08001356 rc = SPLIT_GO_OK;
1357
1358done:
1359 free(sectors);
1360 flash_area_close(app_fap);
1361 flash_area_close(loader_fap);
1362 return rc;
1363}