blob: bac41a3df8a4baf16044bfa2c7244644f6c240aa [file] [log] [blame]
David Brown5153bd62017-01-06 11:16:53 -07001/*
2 * Copyright (c) 2012-2014 Wind River Systems, Inc.
Tamas Banee6615d2020-09-30 07:58:48 +01003 * Copyright (c) 2020 Arm Limited
Dominik Ermel5b7ed6a2021-02-26 14:26:48 +00004 * Copyright (c) 2021 Nordic Semiconductor ASA
David Brown5153bd62017-01-06 11:16:53 -07005 *
6 * Licensed under the Apache License, Version 2.0 (the "License");
7 * you may not use this file except in compliance with the License.
8 * 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, software
13 * distributed under the License is distributed on an "AS IS" BASIS,
14 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
15 * See the License for the specific language governing permissions and
16 * limitations under the License.
17 */
18
Marti Bolivareb940802017-05-01 23:15:29 -040019#include <assert.h>
David Brown5153bd62017-01-06 11:16:53 -070020#include <zephyr.h>
Gerard Marull-Paretasaa041a22022-03-25 12:22:29 +010021#include <devicetree.h>
Peter Bigot54c1e3f2020-01-25 05:50:12 -060022#include <drivers/gpio.h>
Andrzej Puzdrowskif1d189c2019-12-12 09:34:11 +010023#include <sys/__assert.h>
Peter Bigot54c1e3f2020-01-25 05:50:12 -060024#include <drivers/flash.h>
Andrzej Puzdrowskif99a4c72019-06-28 15:16:35 +020025#include <drivers/timer/system_timer.h>
Emanuele Di Santoc4bf7802018-07-20 11:39:57 +020026#include <usb/usb_device.h>
Evan Gates4632d8d2018-06-28 13:27:40 -070027#include <soc.h>
Rafał Kuźnia505c6e62020-07-17 13:18:15 +020028#include <linker/linker-defs.h>
David Brown5153bd62017-01-06 11:16:53 -070029
Marti Bolivar51181cf2017-03-20 11:03:41 -040030#include "target.h"
31
Marti Bolivar4a97b4c2017-01-31 18:20:02 -050032#include "bootutil/bootutil_log.h"
Ricardo Salveti3a2c1242017-01-19 10:22:35 -020033#include "bootutil/image.h"
34#include "bootutil/bootutil.h"
Tamas Banee6615d2020-09-30 07:58:48 +010035#include "bootutil/fault_injection_hardening.h"
Andrzej Puzdrowskib788c712018-04-12 12:42:49 +020036#include "flash_map_backend/flash_map_backend.h"
Ricardo Salveti3a2c1242017-01-19 10:22:35 -020037
Andrzej Puzdrowski8e96b832017-09-08 16:49:14 +020038#ifdef CONFIG_MCUBOOT_SERIAL
Marko Kiiskila149b4572018-06-06 14:18:54 +030039#include "boot_serial/boot_serial.h"
40#include "serial_adapter/serial_adapter.h"
41
42const struct boot_uart_funcs boot_funcs = {
43 .read = console_read,
44 .write = console_write
45};
Andrzej Puzdrowski8e96b832017-09-08 16:49:14 +020046#endif
47
Josh Gao837cf882020-11-13 18:51:27 -080048#if defined(CONFIG_BOOT_USB_DFU_WAIT) || defined(CONFIG_BOOT_USB_DFU_GPIO)
Rajavardhan Gundi51c9d702019-02-20 14:08:52 +053049#include <usb/class/usb_dfu.h>
50#endif
51
Andrzej Puzdrowski9a605b62020-03-16 13:34:30 +010052#if CONFIG_MCUBOOT_CLEANUP_ARM_CORE
53#include <arm_cleanup.h>
54#endif
55
Gerard Marull-Paretasa513b8e2021-01-26 22:50:38 +010056/* CONFIG_LOG_MINIMAL is the legacy Kconfig property,
57 * replaced by CONFIG_LOG_MODE_MINIMAL.
58 */
Dominik Ermel5b7ed6a2021-02-26 14:26:48 +000059#if (defined(CONFIG_LOG_MODE_MINIMAL) || defined(CONFIG_LOG_MINIMAL))
60#define ZEPHYR_LOG_MODE_MINIMAL 1
61#endif
Gerard Marull-Paretasa513b8e2021-01-26 22:50:38 +010062
Marek Pietafb47d2e2022-03-11 14:24:07 +010063/* CONFIG_LOG_IMMEDIATE is the legacy Kconfig property,
64 * replaced by CONFIG_LOG_MODE_IMMEDIATE.
65 */
66#if (defined(CONFIG_LOG_MODE_IMMEDIATE) || defined(CONFIG_LOG_IMMEDIATE))
67#define ZEPHYR_LOG_MODE_IMMEDIATE 1
68#endif
69
70#if defined(CONFIG_LOG) && !defined(ZEPHYR_LOG_MODE_IMMEDIATE) && \
Dominik Ermel5b7ed6a2021-02-26 14:26:48 +000071 !defined(ZEPHYR_LOG_MODE_MINIMAL)
Andrzej Puzdrowski3f092bd2020-02-17 13:25:32 +010072#ifdef CONFIG_LOG_PROCESS_THREAD
73#warning "The log internal thread for log processing can't transfer the log"\
74 "well for MCUBoot."
75#else
76#include <logging/log_ctrl.h>
77
Krzysztof Chruscinski821214e2020-03-24 07:50:32 +010078#define BOOT_LOG_PROCESSING_INTERVAL K_MSEC(30) /* [ms] */
Andrzej Puzdrowski3f092bd2020-02-17 13:25:32 +010079
80/* log are processing in custom routine */
Andrzej Puzdrowskiaf148532020-02-25 12:51:26 +010081K_THREAD_STACK_DEFINE(boot_log_stack, CONFIG_MCUBOOT_LOG_THREAD_STACK_SIZE);
Andrzej Puzdrowski3f092bd2020-02-17 13:25:32 +010082struct k_thread boot_log_thread;
Andrzej Puzdrowski84591632020-02-24 11:50:19 +010083volatile bool boot_log_stop = false;
84K_SEM_DEFINE(boot_log_sem, 1, 1);
Andrzej Puzdrowski3f092bd2020-02-17 13:25:32 +010085
86/* log processing need to be initalized by the application */
87#define ZEPHYR_BOOT_LOG_START() zephyr_boot_log_start()
Andrzej Puzdrowski84591632020-02-24 11:50:19 +010088#define ZEPHYR_BOOT_LOG_STOP() zephyr_boot_log_stop()
Andrzej Puzdrowski3f092bd2020-02-17 13:25:32 +010089#endif /* CONFIG_LOG_PROCESS_THREAD */
90#else
91/* synchronous log mode doesn't need to be initalized by the application */
92#define ZEPHYR_BOOT_LOG_START() do { } while (false)
Andrzej Puzdrowski84591632020-02-24 11:50:19 +010093#define ZEPHYR_BOOT_LOG_STOP() do { } while (false)
Marek Pietafb47d2e2022-03-11 14:24:07 +010094#endif /* defined(CONFIG_LOG) && !defined(ZEPHYR_LOG_MODE_IMMEDIATE) && \
95 * !defined(ZEPHYR_LOG_MODE_MINIMAL)
96 */
Andrzej Puzdrowski3f092bd2020-02-17 13:25:32 +010097
Jon Helge Nistade58f9bd2019-11-25 15:59:52 +010098#ifdef CONFIG_SOC_FAMILY_NRF
Radoslaw Koppel72006692021-12-06 16:15:21 +010099#include <helpers/nrfx_reset_reason.h>
Jon Helge Nistade58f9bd2019-11-25 15:59:52 +0100100
101static inline bool boot_skip_serial_recovery()
102{
Radoslaw Koppel72006692021-12-06 16:15:21 +0100103 uint32_t rr = nrfx_reset_reason_get();
Jon Helge Nistade58f9bd2019-11-25 15:59:52 +0100104
Radoslaw Koppel72006692021-12-06 16:15:21 +0100105 return !(rr == 0 || (rr & NRFX_RESET_REASON_RESETPIN_MASK));
Jon Helge Nistade58f9bd2019-11-25 15:59:52 +0100106}
107#else
108static inline bool boot_skip_serial_recovery()
109{
110 return false;
111}
112#endif
113
Carlos Falgueras Garcíaa4b4b0f2021-06-22 10:00:22 +0200114BOOT_LOG_MODULE_REGISTER(mcuboot);
Emanuele Di Santo9f1933d2018-11-20 10:59:59 +0100115
Jared Wolff8e4d7912021-01-21 19:34:05 -0500116#ifdef CONFIG_MCUBOOT_INDICATION_LED
117/*
118 * Devicetree helper macro which gets the 'flags' cell from a 'gpios'
119 * property, or returns 0 if the property has no 'flags' cell.
120 */
121#define FLAGS_OR_ZERO(node) \
122 COND_CODE_1(DT_PHA_HAS_CELL(node, gpios, flags), \
123 (DT_GPIO_FLAGS(node, gpios)), \
124 (0))
125
126/*
127 * The led0 devicetree alias is optional. If present, we'll use it
128 * to turn on the LED whenever the button is pressed.
129 */
130
131#define LED0_NODE DT_ALIAS(bootloader_led0)
132
133#if DT_NODE_HAS_STATUS(LED0_NODE, okay) && DT_NODE_HAS_PROP(LED0_NODE, gpios)
134#define LED0_GPIO_LABEL DT_GPIO_LABEL(LED0_NODE, gpios)
135#define LED0_GPIO_PIN DT_GPIO_PIN(LED0_NODE, gpios)
136#define LED0_GPIO_FLAGS (GPIO_OUTPUT | FLAGS_OR_ZERO(LED0_NODE))
Josh Gao837cf882020-11-13 18:51:27 -0800137#else
Jared Wolff8e4d7912021-01-21 19:34:05 -0500138/* A build error here means your board isn't set up to drive an LED. */
139#error "Unsupported board: led0 devicetree alias is not defined"
140#endif
141
142const static struct device *led;
143
144void led_init(void)
145{
Josh Gao837cf882020-11-13 18:51:27 -0800146
Jared Wolff8e4d7912021-01-21 19:34:05 -0500147 led = device_get_binding(LED0_GPIO_LABEL);
Jared Wolffdf8e9742021-02-04 11:17:00 -0500148 if (led == NULL) {
Jared Wolff8e4d7912021-01-21 19:34:05 -0500149 BOOT_LOG_ERR("Didn't find LED device %s\n", LED0_GPIO_LABEL);
150 return;
151 }
152
153 gpio_pin_configure(led, LED0_GPIO_PIN, LED0_GPIO_FLAGS);
Jared Wolffdf8e9742021-02-04 11:17:00 -0500154 gpio_pin_set(led, LED0_GPIO_PIN, 0);
Jared Wolff8e4d7912021-01-21 19:34:05 -0500155
156}
157#endif
158
Andrew Boie7238f512017-03-02 13:39:06 -0800159void os_heap_init(void);
160
161#if defined(CONFIG_ARM)
Rafał Kuźniad854bb62020-06-17 15:06:47 +0200162
Rafał Kuźniad854bb62020-06-17 15:06:47 +0200163#ifdef CONFIG_SW_VECTOR_RELAY
164extern void *_vector_table_pointer;
Rafał Kuźniad854bb62020-06-17 15:06:47 +0200165#endif
166
Andrew Boie7238f512017-03-02 13:39:06 -0800167struct arm_vector_table {
David Brown0d0652a2017-04-11 17:33:30 -0600168 uint32_t msp;
169 uint32_t reset;
David Brown5153bd62017-01-06 11:16:53 -0700170};
171
Andrew Boie7238f512017-03-02 13:39:06 -0800172static void do_boot(struct boot_rsp *rsp)
173{
David Brown0d0652a2017-04-11 17:33:30 -0600174 struct arm_vector_table *vt;
Marti Bolivareb940802017-05-01 23:15:29 -0400175 uintptr_t flash_base;
176 int rc;
Andrew Boie7238f512017-03-02 13:39:06 -0800177
David Brown0d0652a2017-04-11 17:33:30 -0600178 /* The beginning of the image is the ARM vector table, containing
179 * the initial stack pointer address and the reset vector
180 * consecutively. Manually set the stack pointer and jump into the
181 * reset vector
182 */
Marti Bolivareb940802017-05-01 23:15:29 -0400183 rc = flash_device_base(rsp->br_flash_dev_id, &flash_base);
184 assert(rc == 0);
185
186 vt = (struct arm_vector_table *)(flash_base +
187 rsp->br_image_off +
David Brown0d0652a2017-04-11 17:33:30 -0600188 rsp->br_hdr->ih_hdr_size);
Arvid Rosén9ed399c2020-08-19 08:57:11 +0200189
David Brown0d0652a2017-04-11 17:33:30 -0600190 sys_clock_disable();
Andrzej Puzdrowskie9c6b4d2021-12-14 14:09:02 +0100191
Johann Fischerd2e87aa2021-08-27 13:30:07 +0200192#ifdef CONFIG_USB_DEVICE_STACK
Emanuele Di Santoc4bf7802018-07-20 11:39:57 +0200193 /* Disable the USB to prevent it from firing interrupts */
194 usb_disable();
195#endif
Andrzej Puzdrowski9a605b62020-03-16 13:34:30 +0100196#if CONFIG_MCUBOOT_CLEANUP_ARM_CORE
197 cleanup_arm_nvic(); /* cleanup NVIC registers */
Ioannis Glaropoulos70af7082020-10-22 15:14:48 +0200198
Ryan McClelland179d8fa2022-05-20 23:53:35 -0700199#ifdef CONFIG_CPU_CORTEX_M_HAS_CACHE
Ioannis Glaropoulos70af7082020-10-22 15:14:48 +0200200 /* Disable instruction cache and data cache before chain-load the application */
201 SCB_DisableDCache();
202 SCB_DisableICache();
203#endif
204
Henrik Brix Andersen008f4a72020-12-08 14:40:19 +0100205#if CONFIG_CPU_HAS_ARM_MPU || CONFIG_CPU_HAS_NXP_MPU
Ioannis Glaropoulos70af7082020-10-22 15:14:48 +0200206 z_arm_clear_arm_mpu_config();
Andrzej Puzdrowski9a605b62020-03-16 13:34:30 +0100207#endif
Rafał Kuźniad854bb62020-06-17 15:06:47 +0200208
Håkon Øye Amundsen6a8dbba2020-10-01 12:52:38 +0000209#if defined(CONFIG_BUILTIN_STACK_GUARD) && \
210 defined(CONFIG_CPU_CORTEX_M_HAS_SPLIM)
211 /* Reset limit registers to avoid inflicting stack overflow on image
212 * being booted.
213 */
214 __set_PSPLIM(0);
215 __set_MSPLIM(0);
216#endif
217
Sigvart Hovland9647c462021-08-20 16:33:55 +0200218#else
219 irq_lock();
Ioannis Glaropoulos70af7082020-10-22 15:14:48 +0200220#endif /* CONFIG_MCUBOOT_CLEANUP_ARM_CORE */
221
Rafał Kuźniad854bb62020-06-17 15:06:47 +0200222#ifdef CONFIG_BOOT_INTR_VEC_RELOC
Rafał Kuźnia505c6e62020-07-17 13:18:15 +0200223#if defined(CONFIG_SW_VECTOR_RELAY)
224 _vector_table_pointer = vt;
225#ifdef CONFIG_CPU_CORTEX_M_HAS_VTOR
226 SCB->VTOR = (uint32_t)__vector_relay_table;
Rafał Kuźniad854bb62020-06-17 15:06:47 +0200227#endif
Rafał Kuźnia505c6e62020-07-17 13:18:15 +0200228#elif defined(CONFIG_CPU_CORTEX_M_HAS_VTOR)
229 SCB->VTOR = (uint32_t)vt;
230#endif /* CONFIG_SW_VECTOR_RELAY */
231#else /* CONFIG_BOOT_INTR_VEC_RELOC */
232#if defined(CONFIG_CPU_CORTEX_M_HAS_VTOR) && defined(CONFIG_SW_VECTOR_RELAY)
233 _vector_table_pointer = _vector_start;
234 SCB->VTOR = (uint32_t)__vector_relay_table;
235#endif
236#endif /* CONFIG_BOOT_INTR_VEC_RELOC */
Rafał Kuźniad854bb62020-06-17 15:06:47 +0200237
David Brown57837b92018-03-13 15:56:38 -0600238 __set_MSP(vt->msp);
Andrzej Puzdrowski9a605b62020-03-16 13:34:30 +0100239#if CONFIG_MCUBOOT_CLEANUP_ARM_CORE
240 __set_CONTROL(0x00); /* application will configures core on its own */
Andrzej Puzdrowski56c15e72020-10-29 09:16:50 +0100241 __ISB();
Andrzej Puzdrowski9a605b62020-03-16 13:34:30 +0100242#endif
David Brown0d0652a2017-04-11 17:33:30 -0600243 ((void (*)(void))vt->reset)();
Andrew Boie7238f512017-03-02 13:39:06 -0800244}
Rajavardhan Gundi40c28e32018-12-09 13:32:01 +0530245
246#elif defined(CONFIG_XTENSA)
247#define SRAM_BASE_ADDRESS 0xBE030000
248
249static void copy_img_to_SRAM(int slot, unsigned int hdr_offset)
250{
251 const struct flash_area *fap;
252 int area_id;
253 int rc;
254 unsigned char *dst = (unsigned char *)(SRAM_BASE_ADDRESS + hdr_offset);
255
256 BOOT_LOG_INF("Copying image to SRAM");
257
258 area_id = flash_area_id_from_image_slot(slot);
259 rc = flash_area_open(area_id, &fap);
260 if (rc != 0) {
Fabio Utzigcac58f62019-09-06 08:52:35 -0300261 BOOT_LOG_ERR("flash_area_open failed with %d\n", rc);
Rajavardhan Gundi40c28e32018-12-09 13:32:01 +0530262 goto done;
263 }
264
265 rc = flash_area_read(fap, hdr_offset, dst, fap->fa_size - hdr_offset);
266 if (rc != 0) {
Fabio Utzigcac58f62019-09-06 08:52:35 -0300267 BOOT_LOG_ERR("flash_area_read failed with %d\n", rc);
Rajavardhan Gundi40c28e32018-12-09 13:32:01 +0530268 goto done;
269 }
270
271done:
272 flash_area_close(fap);
273}
274
275/* Entry point (.ResetVector) is at the very beginning of the image.
276 * Simply copy the image to a suitable location and jump there.
277 */
278static void do_boot(struct boot_rsp *rsp)
279{
280 void *start;
281
282 BOOT_LOG_INF("br_image_off = 0x%x\n", rsp->br_image_off);
283 BOOT_LOG_INF("ih_hdr_size = 0x%x\n", rsp->br_hdr->ih_hdr_size);
284
285 /* Copy from the flash to HP SRAM */
286 copy_img_to_SRAM(0, rsp->br_hdr->ih_hdr_size);
287
288 /* Jump to entry point */
289 start = (void *)(SRAM_BASE_ADDRESS + rsp->br_hdr->ih_hdr_size);
290 ((void (*)(void))start)();
291}
292
Andrew Boie7238f512017-03-02 13:39:06 -0800293#else
294/* Default: Assume entry point is at the very beginning of the image. Simply
295 * lock interrupts and jump there. This is the right thing to do for X86 and
296 * possibly other platforms.
297 */
298static void do_boot(struct boot_rsp *rsp)
299{
David Brown0d0652a2017-04-11 17:33:30 -0600300 void *start;
Jim Tanee1b7b92022-04-07 11:26:28 +0800301
302#if defined(MCUBOOT_RAM_LOAD)
303 start = (void *)(rsp->br_hdr->ih_load_addr + rsp->br_hdr->ih_hdr_size);
304#else
305 uintptr_t flash_base;
Marti Bolivareb940802017-05-01 23:15:29 -0400306 int rc;
Andrew Boie7238f512017-03-02 13:39:06 -0800307
Marti Bolivareb940802017-05-01 23:15:29 -0400308 rc = flash_device_base(rsp->br_flash_dev_id, &flash_base);
309 assert(rc == 0);
310
311 start = (void *)(flash_base + rsp->br_image_off +
312 rsp->br_hdr->ih_hdr_size);
Jim Tanee1b7b92022-04-07 11:26:28 +0800313#endif
Andrew Boie7238f512017-03-02 13:39:06 -0800314
David Brown0d0652a2017-04-11 17:33:30 -0600315 /* Lock interrupts and dive into the entry point */
316 irq_lock();
317 ((void (*)(void))start)();
Andrew Boie7238f512017-03-02 13:39:06 -0800318}
319#endif
David Brown5153bd62017-01-06 11:16:53 -0700320
Marek Pietafb47d2e2022-03-11 14:24:07 +0100321#if defined(CONFIG_LOG) && !defined(ZEPHYR_LOG_MODE_IMMEDIATE) && \
Dominik Ermel5b7ed6a2021-02-26 14:26:48 +0000322 !defined(CONFIG_LOG_PROCESS_THREAD) && !defined(ZEPHYR_LOG_MODE_MINIMAL)
Andrzej Puzdrowski3f092bd2020-02-17 13:25:32 +0100323/* The log internal thread for log processing can't transfer log well as has too
324 * low priority.
325 * Dedicated thread for log processing below uses highest application
326 * priority. This allows to transmit all logs without adding k_sleep/k_yield
327 * anywhere else int the code.
328 */
329
330/* most simple log processing theread */
331void boot_log_thread_func(void *dummy1, void *dummy2, void *dummy3)
332{
333 (void)dummy1;
334 (void)dummy2;
335 (void)dummy3;
336
337 log_init();
338
339 while (1) {
340 if (log_process(false) == false) {
Andrzej Puzdrowski84591632020-02-24 11:50:19 +0100341 if (boot_log_stop) {
342 break;
343 }
Andrzej Puzdrowski3f092bd2020-02-17 13:25:32 +0100344 k_sleep(BOOT_LOG_PROCESSING_INTERVAL);
345 }
346 }
Andrzej Puzdrowski84591632020-02-24 11:50:19 +0100347
348 k_sem_give(&boot_log_sem);
Andrzej Puzdrowski3f092bd2020-02-17 13:25:32 +0100349}
350
351void zephyr_boot_log_start(void)
352{
353 /* start logging thread */
354 k_thread_create(&boot_log_thread, boot_log_stack,
355 K_THREAD_STACK_SIZEOF(boot_log_stack),
356 boot_log_thread_func, NULL, NULL, NULL,
357 K_HIGHEST_APPLICATION_THREAD_PRIO, 0,
358 BOOT_LOG_PROCESSING_INTERVAL);
359
360 k_thread_name_set(&boot_log_thread, "logging");
361}
Andrzej Puzdrowski84591632020-02-24 11:50:19 +0100362
363void zephyr_boot_log_stop(void)
364{
365 boot_log_stop = true;
366
367 /* wait until log procesing thread expired
368 * This can be reworked using a thread_join() API once a such will be
369 * available in zephyr.
370 * see https://github.com/zephyrproject-rtos/zephyr/issues/21500
371 */
372 (void)k_sem_take(&boot_log_sem, K_FOREVER);
373}
Marek Pietafb47d2e2022-03-11 14:24:07 +0100374#endif /* defined(CONFIG_LOG) && !defined(ZEPHYR_LOG_MODE_IMMEDIATE) && \
375 * !defined(CONFIG_LOG_PROCESS_THREAD) && !defined(ZEPHYR_LOG_MODE_MINIMAL)
376 */
Andrzej Puzdrowski3f092bd2020-02-17 13:25:32 +0100377
Josh Gao837cf882020-11-13 18:51:27 -0800378#if defined(CONFIG_MCUBOOT_SERIAL) || defined(CONFIG_BOOT_USB_DFU_GPIO)
379static bool detect_pin(const char* port, int pin, uint32_t expected, int delay)
380{
381 int rc;
382 int detect_value;
383 struct device const *detect_port;
384
385 detect_port = device_get_binding(port);
386 __ASSERT(detect_port, "Error: Bad port for boot detection.\n");
387
388 /* The default presence value is 0 which would normally be
389 * active-low, but historically the raw value was checked so we'll
390 * use the raw interface.
391 */
392 rc = gpio_pin_configure(detect_port, pin,
Andrzej Puzdrowski8bd30812021-03-22 08:19:41 +0100393 GPIO_INPUT | GPIO_PULL_UP);
Josh Gao837cf882020-11-13 18:51:27 -0800394 __ASSERT(rc == 0, "Failed to initialize boot detect pin.\n");
395
Josh Gao837cf882020-11-13 18:51:27 -0800396 rc = gpio_pin_get_raw(detect_port, pin);
397 detect_value = rc;
Andrzej Puzdrowski8bd30812021-03-22 08:19:41 +0100398
Josh Gao837cf882020-11-13 18:51:27 -0800399 __ASSERT(rc >= 0, "Failed to read boot detect pin.\n");
400
401 if (detect_value == expected) {
402 if (delay > 0) {
Andrzej Puzdrowski9b974562021-05-17 11:37:00 +0200403#ifdef CONFIG_MULTITHREADING
Josh Gao837cf882020-11-13 18:51:27 -0800404 k_sleep(K_MSEC(50));
Andrzej Puzdrowski9b974562021-05-17 11:37:00 +0200405#else
406 k_busy_wait(50000);
407#endif
Josh Gao837cf882020-11-13 18:51:27 -0800408
409 /* Get the uptime for debounce purposes. */
410 int64_t timestamp = k_uptime_get();
411
412 for(;;) {
Josh Gao837cf882020-11-13 18:51:27 -0800413 rc = gpio_pin_get_raw(detect_port, pin);
414 detect_value = rc;
Josh Gao837cf882020-11-13 18:51:27 -0800415 __ASSERT(rc >= 0, "Failed to read boot detect pin.\n");
416
417 /* Get delta from when this started */
418 uint32_t delta = k_uptime_get() - timestamp;
419
420 /* If not pressed OR if pressed > debounce period, stop. */
421 if (delta >= delay || detect_value != expected) {
422 break;
423 }
424
425 /* Delay 1 ms */
Andrzej Puzdrowski9b974562021-05-17 11:37:00 +0200426#ifdef CONFIG_MULTITHREADING
Josh Gao837cf882020-11-13 18:51:27 -0800427 k_sleep(K_MSEC(1));
Andrzej Puzdrowski9b974562021-05-17 11:37:00 +0200428#else
429 k_busy_wait(1000);
430#endif
Josh Gao837cf882020-11-13 18:51:27 -0800431 }
432 }
433 }
434
435 return detect_value == expected;
436}
437#endif
438
David Brown5153bd62017-01-06 11:16:53 -0700439void main(void)
440{
David Brown0d0652a2017-04-11 17:33:30 -0600441 struct boot_rsp rsp;
442 int rc;
Tamas Banee6615d2020-09-30 07:58:48 +0100443 fih_int fih_rc = FIH_FAILURE;
David Brown5153bd62017-01-06 11:16:53 -0700444
Andrzej Puzdrowski210b3182020-10-13 13:52:15 +0200445 MCUBOOT_WATCHDOG_FEED();
446
Dominik Ermelcd07ed32021-02-17 15:18:01 +0000447#if !defined(MCUBOOT_DIRECT_XIP)
David Brown0d0652a2017-04-11 17:33:30 -0600448 BOOT_LOG_INF("Starting bootloader");
Dominik Ermelcd07ed32021-02-17 15:18:01 +0000449#else
450 BOOT_LOG_INF("Starting Direct-XIP bootloader");
451#endif
Ricardo Salveti7cf3d9e2017-01-18 16:38:22 -0200452
Jared Wolff8e4d7912021-01-21 19:34:05 -0500453#ifdef CONFIG_MCUBOOT_INDICATION_LED
454 /* LED init */
455 led_init();
456#endif
457
David Brown0d0652a2017-04-11 17:33:30 -0600458 os_heap_init();
David Brown5153bd62017-01-06 11:16:53 -0700459
Andrzej Puzdrowski3f092bd2020-02-17 13:25:32 +0100460 ZEPHYR_BOOT_LOG_START();
461
Tamas Banee6615d2020-09-30 07:58:48 +0100462 (void)rc;
463
Gerard Marull-Paretasaa041a22022-03-25 12:22:29 +0100464#if (!defined(CONFIG_XTENSA) && DT_HAS_CHOSEN(zephyr_flash_controller))
465 if (!flash_device_get_binding(DT_LABEL(DT_CHOSEN(zephyr_flash_controller)))) {
Kumar Gala32b61f32020-04-08 12:02:03 -0500466 BOOT_LOG_ERR("Flash device %s not found",
Gerard Marull-Paretasaa041a22022-03-25 12:22:29 +0100467 DT_LABEL(DT_CHOSEN(zephyr_flash_controller)));
David Brown0d0652a2017-04-11 17:33:30 -0600468 while (1)
469 ;
470 }
Kumar Gala9a5b9512020-04-08 12:06:21 -0500471#elif (defined(CONFIG_XTENSA) && defined(JEDEC_SPI_NOR_0_LABEL))
472 if (!flash_device_get_binding(JEDEC_SPI_NOR_0_LABEL)) {
473 BOOT_LOG_ERR("Flash device %s not found", JEDEC_SPI_NOR_0_LABEL);
Rajavardhan Gundi40c28e32018-12-09 13:32:01 +0530474 while (1)
475 ;
476 }
Rajavardhan Gundic3353b22018-12-06 17:24:10 +0530477#endif
David Brown5153bd62017-01-06 11:16:53 -0700478
Andrzej Puzdrowski8e96b832017-09-08 16:49:14 +0200479#ifdef CONFIG_MCUBOOT_SERIAL
Josh Gao837cf882020-11-13 18:51:27 -0800480 if (detect_pin(CONFIG_BOOT_SERIAL_DETECT_PORT,
481 CONFIG_BOOT_SERIAL_DETECT_PIN,
482 CONFIG_BOOT_SERIAL_DETECT_PIN_VAL,
483 CONFIG_BOOT_SERIAL_DETECT_DELAY) &&
484 !boot_skip_serial_recovery()) {
Jared Wolff8e4d7912021-01-21 19:34:05 -0500485#ifdef CONFIG_MCUBOOT_INDICATION_LED
Josh Gao837cf882020-11-13 18:51:27 -0800486 gpio_pin_set(led, LED0_GPIO_PIN, 1);
Andrzej Puzdrowski8e96b832017-09-08 16:49:14 +0200487#endif
488
Josh Gao837cf882020-11-13 18:51:27 -0800489 BOOT_LOG_INF("Enter the serial recovery mode");
490 rc = boot_console_init();
491 __ASSERT(rc == 0, "Error initializing boot console.\n");
492 boot_serial_start(&boot_funcs);
493 __ASSERT(0, "Bootloader serial process was terminated unexpectedly.\n");
494 }
495#endif
496
497#if defined(CONFIG_BOOT_USB_DFU_GPIO)
498 if (detect_pin(CONFIG_BOOT_USB_DFU_DETECT_PORT,
499 CONFIG_BOOT_USB_DFU_DETECT_PIN,
500 CONFIG_BOOT_USB_DFU_DETECT_PIN_VAL,
501 CONFIG_BOOT_USB_DFU_DETECT_DELAY)) {
502#ifdef CONFIG_MCUBOOT_INDICATION_LED
503 gpio_pin_set(led, LED0_GPIO_PIN, 1);
504#endif
505 rc = usb_enable(NULL);
506 if (rc) {
507 BOOT_LOG_ERR("Cannot enable USB");
508 } else {
509 BOOT_LOG_INF("Waiting for USB DFU");
510 wait_for_usb_dfu(K_FOREVER);
511 BOOT_LOG_INF("USB DFU wait time elapsed");
512 }
513 }
514#elif defined(CONFIG_BOOT_USB_DFU_WAIT)
Andrzej Puzdrowskiac1f1ff2020-02-05 08:40:12 +0100515 rc = usb_enable(NULL);
516 if (rc) {
517 BOOT_LOG_ERR("Cannot enable USB");
518 } else {
519 BOOT_LOG_INF("Waiting for USB DFU");
Josh Gao837cf882020-11-13 18:51:27 -0800520 wait_for_usb_dfu(K_MSEC(CONFIG_BOOT_USB_DFU_WAIT_DELAY_MS));
Andrzej Puzdrowskiac1f1ff2020-02-05 08:40:12 +0100521 BOOT_LOG_INF("USB DFU wait time elapsed");
522 }
Rajavardhan Gundi51c9d702019-02-20 14:08:52 +0530523#endif
524
Wouter Cappellee3822f82022-01-19 15:39:43 +0100525#ifdef CONFIG_BOOT_SERIAL_WAIT_FOR_DFU
526 /* Initialize the boot console, so we can already fill up our buffers while
527 * waiting for the boot image check to finish. This image check, can take
528 * some time, so it's better to reuse thistime to already receive the
529 * initial mcumgr command(s) into our buffers
530 */
531 rc = boot_console_init();
532 int timeout_in_ms = CONFIG_BOOT_SERIAL_WAIT_FOR_DFU_TIMEOUT;
533 uint32_t start = k_uptime_get_32();
534#endif
535
Tamas Banee6615d2020-09-30 07:58:48 +0100536 FIH_CALL(boot_go, fih_rc, &rsp);
Wouter Cappellee3822f82022-01-19 15:39:43 +0100537
538#ifdef CONFIG_BOOT_SERIAL_WAIT_FOR_DFU
539 timeout_in_ms -= (k_uptime_get_32() - start);
540 if( timeout_in_ms <= 0 ) {
541 /* at least one check if time was expired */
542 timeout_in_ms = 1;
543 }
544 boot_serial_check_start(&boot_funcs,timeout_in_ms);
545#endif
546
Tamas Banee6615d2020-09-30 07:58:48 +0100547 if (fih_not_eq(fih_rc, FIH_SUCCESS)) {
David Brown0d0652a2017-04-11 17:33:30 -0600548 BOOT_LOG_ERR("Unable to find bootable image");
Tamas Banee6615d2020-09-30 07:58:48 +0100549 FIH_PANIC;
David Brown0d0652a2017-04-11 17:33:30 -0600550 }
David Brown5153bd62017-01-06 11:16:53 -0700551
Marti Bolivar88f48d92017-05-01 22:30:02 -0400552 BOOT_LOG_INF("Bootloader chainload address offset: 0x%x",
553 rsp.br_image_off);
Andrzej Puzdrowskib788c712018-04-12 12:42:49 +0200554
Dominik Ermelcd07ed32021-02-17 15:18:01 +0000555#if defined(MCUBOOT_DIRECT_XIP)
556 BOOT_LOG_INF("Jumping to the image slot");
557#else
David Brown0d0652a2017-04-11 17:33:30 -0600558 BOOT_LOG_INF("Jumping to the first image slot");
Dominik Ermelcd07ed32021-02-17 15:18:01 +0000559#endif
Andrzej Puzdrowski84591632020-02-24 11:50:19 +0100560 ZEPHYR_BOOT_LOG_STOP();
David Brown0d0652a2017-04-11 17:33:30 -0600561 do_boot(&rsp);
David Brown5153bd62017-01-06 11:16:53 -0700562
David Brown0d0652a2017-04-11 17:33:30 -0600563 BOOT_LOG_ERR("Never should get here");
564 while (1)
565 ;
David Brown5153bd62017-01-06 11:16:53 -0700566}