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Tamas Banf70ef8c2017-12-19 15:35:09 +00001/*
2 * Copyright (c) 2012-2014 Wind River Systems, Inc.
David Vinczee0a3c2f2019-05-15 16:45:14 +02003 * Copyright (c) 2017-2019 Arm Limited.
Tamas Banf70ef8c2017-12-19 15:35:09 +00004 *
5 * Licensed under the Apache License, Version 2.0 (the "License");
6 * you may not use this file except in compliance with the License.
7 * You may obtain a copy of the License at
8 *
9 * http://www.apache.org/licenses/LICENSE-2.0
10 *
11 * Unless required by applicable law or agreed to in writing, software
12 * distributed under the License is distributed on an "AS IS" BASIS,
13 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
14 * See the License for the specific language governing permissions and
15 * limitations under the License.
16 */
17
18#include <assert.h>
Tamas Ban581034a2017-12-19 19:54:37 +000019#include "bl2_util.h"
Tamas Banf70ef8c2017-12-19 15:35:09 +000020#include "target.h"
Kevin Pengbc5e5aa2019-10-16 10:55:17 +080021#include "tfm_hal_device_header.h"
Tamas Banc3828852018-02-01 12:24:16 +000022#include "Driver_Flash.h"
Tamas Banbd3f7512018-01-26 15:45:03 +000023#include "mbedtls/memory_buffer_alloc.h"
Tamas Banf70ef8c2017-12-19 15:35:09 +000024#include "bootutil/bootutil_log.h"
25#include "bootutil/image.h"
26#include "bootutil/bootutil.h"
27#include "flash_map/flash_map.h"
Tamas Bana9de4a62018-09-18 08:09:45 +010028#include "bl2/include/boot_record.h"
David Vincze060968d2019-05-23 01:13:14 +020029#include "security_cnt.h"
Tamas Band4bf3472019-09-06 12:59:56 +010030#include "bl2/include/boot_hal.h"
David Vincze73dfbc52019-10-11 13:54:58 +020031#if BOOT_LOG_LEVEL > BOOT_LOG_LEVEL_OFF
32#include "uart_stdout.h"
33#endif
Tamas Banf70ef8c2017-12-19 15:35:09 +000034
Tamas Ban581034a2017-12-19 19:54:37 +000035/* Avoids the semihosting issue */
36#if defined (__ARMCC_VERSION) && (__ARMCC_VERSION >= 6010050)
37__asm(" .global __ARM_use_no_argv\n");
38#endif
39
David Hu5cc9a3f2019-06-14 13:10:40 +080040#if defined(__ARM_ARCH_8M_MAIN__) || defined(__ARM_ARCH_8M_BASE__)
David Vinczee0a3c2f2019-05-15 16:45:14 +020041/* Macros to pick linker symbols */
42#define REGION(a, b, c) a##b##c
43#define REGION_NAME(a, b, c) REGION(a, b, c)
44#define REGION_DECLARE(a, b, c) extern uint32_t REGION_NAME(a, b, c)
45
46REGION_DECLARE(Image$$, ARM_LIB_STACK, $$ZI$$Base);
David Hu5cc9a3f2019-06-14 13:10:40 +080047#endif
David Vinczee0a3c2f2019-05-15 16:45:14 +020048
Tamas Banc3828852018-02-01 12:24:16 +000049/* Flash device name must be specified by target */
50extern ARM_DRIVER_FLASH FLASH_DEV_NAME;
Tamas Banf70ef8c2017-12-19 15:35:09 +000051
Tamas Banbd3f7512018-01-26 15:45:03 +000052#define BL2_MBEDTLS_MEM_BUF_LEN 0x2000
53/* Static buffer to be used by mbedtls for memory allocation */
54static uint8_t mbedtls_mem_buf[BL2_MBEDTLS_MEM_BUF_LEN];
Tamas Banf70ef8c2017-12-19 15:35:09 +000055
Tamas Banf70ef8c2017-12-19 15:35:09 +000056struct arm_vector_table {
57 uint32_t msp;
58 uint32_t reset;
59};
60
Tamas Band4bf3472019-09-06 12:59:56 +010061/*!
62 * \brief Chain-loading the next image in the boot sequence.
63 *
64 * This function calls the Reset_Handler of the next image in the boot sequence,
65 * usually it is the secure firmware. Before passing the execution to next image
66 * there is conditional rule to remove the secrets from the memory. This must be
67 * done if the following conditions are satisfied:
68 * - Memory is shared between SW components at different stages of the trusted
69 * boot process.
70 * - There are secrets in the memory: KDF parameter, symmetric key,
71 * manufacturer sensitive code/data, etc.
72 */
73__attribute__((naked)) void boot_jump_to_next_image(uint32_t reset_handler_addr)
74{
75 __ASM volatile(
76 ".syntax unified \n"
77 "mov r7, r0 \n"
78 "bl boot_clear_bl2_ram_area \n" /* Clear RAM before jump */
79 "movs r0, #0 \n" /* Clear registers: R0-R12, */
80 "mov r1, r0 \n" /* except R7 */
81 "mov r2, r0 \n"
82 "mov r3, r0 \n"
83 "mov r4, r0 \n"
84 "mov r5, r0 \n"
85 "mov r6, r0 \n"
86 "mov r8, r0 \n"
87 "mov r9, r0 \n"
88 "mov r10, r0 \n"
89 "mov r11, r0 \n"
90 "mov r12, r0 \n"
91 "mov lr, r0 \n"
92 "bx r7 \n" /* Jump to Reset_handler */
93 );
94}
95
Tamas Banf70ef8c2017-12-19 15:35:09 +000096static void do_boot(struct boot_rsp *rsp)
97{
Tamas Ban581034a2017-12-19 19:54:37 +000098 /* Clang at O0, stores variables on the stack with SP relative addressing.
99 * When manually set the SP then the place of reset vector is lost.
100 * Static variables are stored in 'data' or 'bss' section, change of SP has
101 * no effect on them.
102 */
103 static struct arm_vector_table *vt;
Tamas Banf70ef8c2017-12-19 15:35:09 +0000104 uintptr_t flash_base;
105 int rc;
106
107 /* The beginning of the image is the ARM vector table, containing
108 * the initial stack pointer address and the reset vector
109 * consecutively. Manually set the stack pointer and jump into the
110 * reset vector
111 */
112 rc = flash_device_base(rsp->br_flash_dev_id, &flash_base);
113 assert(rc == 0);
114
Oliver Swedef9982442018-08-24 18:37:44 +0100115 if (rsp->br_hdr->ih_flags & IMAGE_F_RAM_LOAD) {
116 /* The image has been copied to SRAM, find the vector table
117 * at the load address instead of image's address in flash
118 */
119 vt = (struct arm_vector_table *)(rsp->br_hdr->ih_load_addr +
120 rsp->br_hdr->ih_hdr_size);
121 } else {
122 /* Using the flash address as not executing in SRAM */
123 vt = (struct arm_vector_table *)(flash_base +
124 rsp->br_image_off +
125 rsp->br_hdr->ih_hdr_size);
126 }
127
David Vinczeb57989f2018-09-24 10:59:04 +0200128 rc = FLASH_DEV_NAME.Uninitialize();
129 if(rc != ARM_DRIVER_OK) {
130 BOOT_LOG_ERR("Error while uninitializing Flash Interface");
131 }
132
David Vincze73dfbc52019-10-11 13:54:58 +0200133#if BOOT_LOG_LEVEL > BOOT_LOG_LEVEL_OFF
David Vincze8da7f102018-09-24 10:53:46 +0200134 stdio_uninit();
David Vincze73dfbc52019-10-11 13:54:58 +0200135#endif
David Vincze8da7f102018-09-24 10:53:46 +0200136
David Hu5cc9a3f2019-06-14 13:10:40 +0800137#if defined(__ARM_ARCH_8M_MAIN__) || defined(__ARM_ARCH_8M_BASE__)
David Vinczee0a3c2f2019-05-15 16:45:14 +0200138 /* Restore the Main Stack Pointer Limit register's reset value
139 * before passing execution to runtime firmware to make the
140 * bootloader transparent to it.
141 */
142 __set_MSPLIM(0);
David Hu5cc9a3f2019-06-14 13:10:40 +0800143#endif
David Vinczee0a3c2f2019-05-15 16:45:14 +0200144
Tamas Ban581034a2017-12-19 19:54:37 +0000145 __set_MSP(vt->msp);
146 __DSB();
147 __ISB();
148
Tamas Band4bf3472019-09-06 12:59:56 +0100149 boot_jump_to_next_image(vt->reset);
Tamas Banf70ef8c2017-12-19 15:35:09 +0000150}
Tamas Banf70ef8c2017-12-19 15:35:09 +0000151
Tamas Ban581034a2017-12-19 19:54:37 +0000152int main(void)
Tamas Banf70ef8c2017-12-19 15:35:09 +0000153{
David Hu5cc9a3f2019-06-14 13:10:40 +0800154#if defined(__ARM_ARCH_8M_MAIN__) || defined(__ARM_ARCH_8M_BASE__)
David Vinczee0a3c2f2019-05-15 16:45:14 +0200155 uint32_t msp_stack_bottom =
156 (uint32_t)&REGION_NAME(Image$$, ARM_LIB_STACK, $$ZI$$Base);
David Hu5cc9a3f2019-06-14 13:10:40 +0800157#endif
Tamas Banf70ef8c2017-12-19 15:35:09 +0000158 struct boot_rsp rsp;
159 int rc;
160
David Hu5cc9a3f2019-06-14 13:10:40 +0800161#if defined(__ARM_ARCH_8M_MAIN__) || defined(__ARM_ARCH_8M_BASE__)
David Vinczee0a3c2f2019-05-15 16:45:14 +0200162 __set_MSPLIM(msp_stack_bottom);
David Hu5cc9a3f2019-06-14 13:10:40 +0800163#endif
David Vinczee0a3c2f2019-05-15 16:45:14 +0200164
David Vincze73dfbc52019-10-11 13:54:58 +0200165#if BOOT_LOG_LEVEL > BOOT_LOG_LEVEL_OFF
Gabor Kerteszeb953f52018-07-17 13:36:28 +0200166 stdio_init();
David Vincze73dfbc52019-10-11 13:54:58 +0200167#endif
Tamas Ban581034a2017-12-19 19:54:37 +0000168
Tamas Banf70ef8c2017-12-19 15:35:09 +0000169 BOOT_LOG_INF("Starting bootloader");
170
Tamas Banbd3f7512018-01-26 15:45:03 +0000171 /* Initialise the mbedtls static memory allocator so that mbedtls allocates
172 * memory from the provided static buffer instead of from the heap.
173 */
174 mbedtls_memory_buffer_alloc_init(mbedtls_mem_buf, BL2_MBEDTLS_MEM_BUF_LEN);
Tamas Banf70ef8c2017-12-19 15:35:09 +0000175
David Vinczeb57989f2018-09-24 10:59:04 +0200176 rc = FLASH_DEV_NAME.Initialize(NULL);
177 if(rc != ARM_DRIVER_OK) {
178 BOOT_LOG_ERR("Error while initializing Flash Interface");
179 while (1)
180 ;
181 }
David Vincze26e8c8a2018-08-28 16:59:41 +0200182
David Vincze060968d2019-05-23 01:13:14 +0200183 rc = boot_nv_security_counter_init();
184 if (rc != 0) {
185 BOOT_LOG_ERR("Error while initializing the security counter");
186 while (1)
187 ;
188 }
189
Tamas Banf70ef8c2017-12-19 15:35:09 +0000190 rc = boot_go(&rsp);
191 if (rc != 0) {
192 BOOT_LOG_ERR("Unable to find bootable image");
193 while (1)
194 ;
195 }
196
197 BOOT_LOG_INF("Bootloader chainload address offset: 0x%x",
198 rsp.br_image_off);
Tamas Ban581034a2017-12-19 19:54:37 +0000199 flash_area_warn_on_open();
Tamas Banf70ef8c2017-12-19 15:35:09 +0000200 BOOT_LOG_INF("Jumping to the first image slot");
201 do_boot(&rsp);
202
203 BOOT_LOG_ERR("Never should get here");
204 while (1)
205 ;
206}