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Christopher Collinscf18a032017-02-06 15:10:45 -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
Fabio Utzig1a2e41a2017-11-17 12:13:09 -020020#include "mcuboot_config/mcuboot_config.h"
Fabio Utzig1a2e41a2017-11-17 12:13:09 -020021
Christopher Collinscf18a032017-02-06 15:10:45 -080022#include <assert.h>
23#include <stddef.h>
24#include <inttypes.h>
Fabio Utzig1d46c942018-02-26 10:38:00 -030025#include <stdio.h>
Marko Kiiskilace50ab02018-06-06 11:33:33 +030026
27#include <syscfg/syscfg.h>
Andrzej Puzdrowskib788c712018-04-12 12:42:49 +020028#include <flash_map_backend/flash_map_backend.h>
Christopher Collinscf18a032017-02-06 15:10:45 -080029#include <os/os.h>
30#include <bsp/bsp.h>
31#include <hal/hal_bsp.h>
32#include <hal/hal_system.h>
33#include <hal/hal_flash.h>
Marko Kiiskila149b4572018-06-06 14:18:54 +030034#include <hal/hal_watchdog.h>
Fabio Utzig1d46c942018-02-26 10:38:00 -030035#include <sysinit/sysinit.h>
Fabio Utzig19356bf2017-05-11 16:19:36 -030036#ifdef MCUBOOT_SERIAL
Christopher Collinscf18a032017-02-06 15:10:45 -080037#include <hal/hal_gpio.h>
Marko Kiiskila316d3612018-06-05 12:03:27 +030038#include <hal/hal_nvreg.h>
Christopher Collinscf18a032017-02-06 15:10:45 -080039#include <boot_serial/boot_serial.h>
Christopher Collinscf18a032017-02-06 15:10:45 -080040#endif
Marko Kiiskila149b4572018-06-06 14:18:54 +030041#if defined(MCUBOOT_SERIAL)
Marko Kiiskilace50ab02018-06-06 11:33:33 +030042#include <boot_uart/boot_uart.h>
43#endif
Christopher Collinscf18a032017-02-06 15:10:45 -080044#include <console/console.h>
45#include "bootutil/image.h"
46#include "bootutil/bootutil.h"
Fabio Utzig94912c52018-05-07 08:38:23 -030047#include "bootutil/bootutil_log.h"
Tamas Ban76177e12020-09-30 08:01:05 +010048#include "bootutil/fault_injection_hardening.h"
Christopher Collinscf18a032017-02-06 15:10:45 -080049
Fabio Utzige47ccd62019-10-18 10:55:22 -030050#if MYNEWT_VAL(BOOT_CUSTOM_START)
51void boot_custom_start(uintptr_t flash_base, struct boot_rsp *rsp);
52#endif
53
Marko Kiiskila149b4572018-06-06 14:18:54 +030054#if defined(MCUBOOT_SERIAL)
55#define BOOT_SERIAL_REPORT_DUR \
56 (MYNEWT_VAL(OS_CPUTIME_FREQ) / MYNEWT_VAL(BOOT_SERIAL_REPORT_FREQ))
Marko Kiiskila316d3612018-06-05 12:03:27 +030057#define BOOT_SERIAL_INPUT_MAX (512)
Christopher Collinscf18a032017-02-06 15:10:45 -080058
Marko Kiiskila149b4572018-06-06 14:18:54 +030059static int boot_read(char *str, int cnt, int *newline);
60static const struct boot_uart_funcs boot_uart_funcs = {
61 .read = boot_read,
62 .write = boot_uart_write
63};
64
65static int
66boot_read(char *str, int cnt, int *newline)
Marti Bolivareb940802017-05-01 23:15:29 -040067{
Marko Kiiskila149b4572018-06-06 14:18:54 +030068#if MYNEWT_VAL(BOOT_SERIAL_REPORT_PIN) != -1
69 static uint32_t tick = 0;
70
71 if (tick == 0) {
72 /*
73 * Configure GPIO line as output. This is a pin we toggle at the
74 * given frequency.
75 */
76 hal_gpio_init_out(MYNEWT_VAL(BOOT_SERIAL_REPORT_PIN), 0);
77 tick = os_cputime_get32();
78 } else {
79 if (os_cputime_get32() - tick > BOOT_SERIAL_REPORT_DUR) {
80 hal_gpio_toggle(MYNEWT_VAL(BOOT_SERIAL_REPORT_PIN));
81 tick = os_cputime_get32();
82 }
83 }
84#endif
85 hal_watchdog_tickle();
86
87 return boot_uart_read(str, cnt, newline);
Marti Bolivareb940802017-05-01 23:15:29 -040088}
89
Marko Kiiskilace50ab02018-06-06 11:33:33 +030090#if MYNEWT_VAL(BOOT_SERIAL_DETECT_TIMEOUT) != 0
91
92/** Don't include null-terminator in comparison. */
93#define BOOT_SERIAL_DETECT_STRING_LEN \
94 (sizeof MYNEWT_VAL(BOOT_SERIAL_DETECT_STRING) - 1)
95
96/**
97 * Listens on the UART for the management string. Blocks for up to
98 * BOOT_SERIAL_DETECT_TIMEOUT milliseconds.
99 *
100 * @return true if the management string was received;
101 * false if the management string was not received
102 * before the UART listen timeout expired.
103 */
104static bool
105serial_detect_uart_string(void)
106{
107 uint32_t start_tick;
108 char buf[BOOT_SERIAL_DETECT_STRING_LEN] = { 0 };
109 char ch;
110 int newline;
111 int rc;
112
113 /* Calculate the timeout duration in OS cputime ticks. */
114 static const uint32_t timeout_dur =
115 MYNEWT_VAL(BOOT_SERIAL_DETECT_TIMEOUT) /
116 (1000.0 / MYNEWT_VAL(OS_CPUTIME_FREQ));
117
Marko Kiiskila149b4572018-06-06 14:18:54 +0300118 rc = boot_uart_open();
Marko Kiiskilace50ab02018-06-06 11:33:33 +0300119 assert(rc == 0);
120
121 start_tick = os_cputime_get32();
122
123 while (1) {
124 /* Read a single character from the UART. */
Marko Kiiskila149b4572018-06-06 14:18:54 +0300125 rc = boot_uart_read(&ch, 1, &newline);
Marko Kiiskilace50ab02018-06-06 11:33:33 +0300126 if (rc > 0) {
127 /* Eliminate the oldest character in the buffer to make room for
128 * the new one.
129 */
130 memmove(buf, buf + 1, BOOT_SERIAL_DETECT_STRING_LEN - 1);
131 buf[BOOT_SERIAL_DETECT_STRING_LEN - 1] = ch;
132
133 /* If the full management string has been received, indicate that
134 * the serial boot loader should start.
135 */
136 rc = memcmp(buf,
137 MYNEWT_VAL(BOOT_SERIAL_DETECT_STRING),
138 BOOT_SERIAL_DETECT_STRING_LEN);
139 if (rc == 0) {
Marko Kiiskila149b4572018-06-06 14:18:54 +0300140 boot_uart_close();
Marko Kiiskilace50ab02018-06-06 11:33:33 +0300141 return true;
142 }
143 }
144
145 /* Abort the listen on timeout. */
146 if (os_cputime_get32() >= start_tick + timeout_dur) {
Marko Kiiskila149b4572018-06-06 14:18:54 +0300147 boot_uart_close();
Marko Kiiskilace50ab02018-06-06 11:33:33 +0300148 return false;
149 }
150 }
151}
152#endif
153
Marko Kiiskila316d3612018-06-05 12:03:27 +0300154static void
155serial_boot_detect(void)
156{
157 /*
158 * Read retained register and compare with expected magic value.
159 * If it matches, await for download commands from serial.
160 */
161#if MYNEWT_VAL(BOOT_SERIAL_NVREG_INDEX) != -1
162 if (hal_nvreg_read(MYNEWT_VAL(BOOT_SERIAL_NVREG_INDEX)) ==
163 MYNEWT_VAL(BOOT_SERIAL_NVREG_MAGIC)) {
164
165 hal_nvreg_write(MYNEWT_VAL(BOOT_SERIAL_NVREG_INDEX), 0);
Marko Kiiskila149b4572018-06-06 14:18:54 +0300166 goto serial_boot;
Marko Kiiskila316d3612018-06-05 12:03:27 +0300167 }
Marko Kiiskila316d3612018-06-05 12:03:27 +0300168#endif
169
170 /*
171 * Configure a GPIO as input, and compare it against expected value.
172 * If it matches, await for download commands from serial.
173 */
174#if MYNEWT_VAL(BOOT_SERIAL_DETECT_PIN) != -1
175 hal_gpio_init_in(MYNEWT_VAL(BOOT_SERIAL_DETECT_PIN),
176 MYNEWT_VAL(BOOT_SERIAL_DETECT_PIN_CFG));
177 if (hal_gpio_read(MYNEWT_VAL(BOOT_SERIAL_DETECT_PIN)) ==
178 MYNEWT_VAL(BOOT_SERIAL_DETECT_PIN_VAL)) {
Marko Kiiskila149b4572018-06-06 14:18:54 +0300179 goto serial_boot;
Marko Kiiskila316d3612018-06-05 12:03:27 +0300180 }
181#endif
182
183 /*
184 * Listen for management pattern in UART input. If detected, await for
185 * download commands from serial.
186 */
187#if MYNEWT_VAL(BOOT_SERIAL_DETECT_TIMEOUT) != 0
Marko Kiiskilace50ab02018-06-06 11:33:33 +0300188 if (serial_detect_uart_string()) {
Marko Kiiskila149b4572018-06-06 14:18:54 +0300189 goto serial_boot;
Marko Kiiskila316d3612018-06-05 12:03:27 +0300190 }
191#endif
Marko Kiiskila149b4572018-06-06 14:18:54 +0300192 return;
193serial_boot:
194 boot_uart_open();
195 boot_serial_start(&boot_uart_funcs);
196 assert(0);
Marko Kiiskila316d3612018-06-05 12:03:27 +0300197}
198#endif
199
Marko Kiiskila149b4572018-06-06 14:18:54 +0300200/*
201 * Temporary flash_device_base() implementation.
202 *
203 * TODO: remove this when mynewt needs to support flash_device_base()
204 * for devices with nonzero base addresses.
205 */
206int flash_device_base(uint8_t fd_id, uintptr_t *ret)
207{
208 *ret = 0;
209 return 0;
210}
211
Christopher Collinscf18a032017-02-06 15:10:45 -0800212int
213main(void)
214{
215 struct boot_rsp rsp;
Marti Bolivareb940802017-05-01 23:15:29 -0400216 uintptr_t flash_base;
Christopher Collinscf18a032017-02-06 15:10:45 -0800217 int rc;
Tamas Ban76177e12020-09-30 08:01:05 +0100218 fih_int fih_rc = FIH_FAILURE;
Christopher Collinscf18a032017-02-06 15:10:45 -0800219
Andrzej Kaczmarekc49099c2018-02-16 17:10:51 +0100220 hal_bsp_init();
Fabio Utzig1d46c942018-02-26 10:38:00 -0300221
Fabio Utzig0f29c482018-07-26 14:53:36 -0300222#if !MYNEWT_VAL(OS_SCHEDULING) && MYNEWT_VAL(WATCHDOG_INTERVAL)
223 rc = hal_watchdog_init(MYNEWT_VAL(WATCHDOG_INTERVAL));
224 assert(rc == 0);
225#endif
226
Fabio Utzigaf1e02e2019-06-14 08:56:41 -0300227#if defined(MCUBOOT_SERIAL) || defined(MCUBOOT_HAVE_LOGGING) || \
228 MYNEWT_VAL(CRYPTO) || MYNEWT_VAL(HASH)
Fabio Utzigad0e9b82019-02-18 16:13:01 -0300229 /* initialize uart/crypto without os */
Fabio Utzig9f7c3d22018-02-16 14:55:28 -0200230 os_dev_initialize_all(OS_DEV_INIT_PRIMARY);
Marko Kiiskila316d3612018-06-05 12:03:27 +0300231 os_dev_initialize_all(OS_DEV_INIT_SECONDARY);
Christopher Collinscf18a032017-02-06 15:10:45 -0800232 sysinit();
Fabio Utzig1d46c942018-02-26 10:38:00 -0300233 console_blocking_mode();
Marko Kiiskila316d3612018-06-05 12:03:27 +0300234#if defined(MCUBOOT_SERIAL)
235 serial_boot_detect();
Fabio Utzig3b69d6f2018-06-25 13:59:36 -0300236 hal_timer_deinit(MYNEWT_VAL(OS_CPUTIME_TIMER_NUM));
Marko Kiiskila316d3612018-06-05 12:03:27 +0300237#endif
Fabio Utzig94912c52018-05-07 08:38:23 -0300238#else
239 flash_map_init();
240#endif
Christopher Collinscf18a032017-02-06 15:10:45 -0800241
Tamas Ban76177e12020-09-30 08:01:05 +0100242 FIH_CALL(boot_go, fih_rc, &rsp);
243 if (fih_not_eq(fih_rc, FIH_SUCCESS)) {
244 assert(fih_int_decode(fih_rc) == FIH_POSITIVE_VALUE);
245 FIH_PANIC;
246 }
Christopher Collinscf18a032017-02-06 15:10:45 -0800247
Fabio Utzigb00d6482017-06-20 19:28:22 -0300248 rc = flash_device_base(rsp.br_flash_dev_id, &flash_base);
Marti Bolivareb940802017-05-01 23:15:29 -0400249 assert(rc == 0);
250
Fabio Utzige47ccd62019-10-18 10:55:22 -0300251#if MYNEWT_VAL(BOOT_CUSTOM_START)
252 boot_custom_start(flash_base, &rsp);
253#else
Jerzy Kasenberg1d0467e2020-11-21 23:45:34 +0100254 hal_bsp_deinit();
Marti Bolivareb940802017-05-01 23:15:29 -0400255 hal_system_start((void *)(flash_base + rsp.br_image_off +
256 rsp.br_hdr->ih_hdr_size));
Fabio Utzige47ccd62019-10-18 10:55:22 -0300257#endif
Christopher Collinscf18a032017-02-06 15:10:45 -0800258
259 return 0;
260}