463 lines
15 KiB
C
463 lines
15 KiB
C
/* Copyright (c) 2013 Nordic Semiconductor. All Rights Reserved.
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*
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* The information contained herein is property of Nordic Semiconductor ASA.
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* Terms and conditions of usage are described in detail in NORDIC
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* SEMICONDUCTOR STANDARD SOFTWARE LICENSE AGREEMENT.
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*
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* Licensees are granted free, non-transferable use of the information. NO
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* WARRANTY of ANY KIND is provided. This heading must NOT be removed from
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* the file.
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*
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*/
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#include "sdk_common.h"
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#include "bootloader.h"
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#include "bootloader_types.h"
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#include "bootloader_util.h"
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#include "bootloader_settings.h"
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#include "dfu.h"
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#include "dfu_transport.h"
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#include "nrf.h"
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#include "app_error.h"
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#include "nrf_sdm.h"
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#include "nrf_mbr.h"
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#include "nordic_common.h"
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#include "crc16.h"
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#include "pstorage.h"
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#include "app_scheduler.h"
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#include "nrf_delay.h"
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#include "app_timer.h"
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#include "tusb.h"
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#define APP_TIMER_PRESCALER 0
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#define IRQ_ENABLED 0x01 /**< Field identifying if an interrupt is enabled. */
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#if defined(NRF52832_XXAA) || defined(NRF52840_XXAA)
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#define MAX_NUMBER_INTERRUPTS 39
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#else
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#define MAX_NUMBER_INTERRUPTS 32 /**< Maximum number of interrupts available. */
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#endif
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/**@brief Enumeration for specifying current bootloader status.
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*/
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typedef enum
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{
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BOOTLOADER_UPDATING, /**< Bootloader status for indicating that an update is in progress. */
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BOOTLOADER_SETTINGS_SAVING, /**< Bootloader status for indicating that saving of bootloader settings is in progress. */
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BOOTLOADER_COMPLETE, /**< Bootloader status for indicating that all operations for the update procedure has completed and it is safe to reset the system. */
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BOOTLOADER_TIMEOUT, /**< Bootloader status field for indicating that a timeout has occured and current update process should be aborted. */
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BOOTLOADER_RESET, /**< Bootloader status field for indicating that a reset has been requested and current update process should be aborted. */
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} bootloader_status_t;
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static pstorage_handle_t m_bootsettings_handle; /**< Pstorage handle to use for registration and identifying the bootloader module on subsequent calls to the pstorage module for load and store of bootloader setting in flash. */
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static bootloader_status_t m_update_status; /**< Current update status for the bootloader module to ensure correct behaviour when updating settings and when update completes. */
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// Adafruit modification for dual transports and forced startup DFU
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extern bool is_ota(void);
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APP_TIMER_DEF( _forced_startup_dfu_timer );
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volatile bool forced_startup_dfu_packet_received = false;
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volatile static bool _terminate_startup_dfu = false;
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/**@brief Function for handling callbacks from pstorage module.
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*
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* @details Handles pstorage results for clear and storage operation. For detailed description of
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* the parameters provided with the callback, please refer to \ref pstorage_ntf_cb_t.
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*/
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static void pstorage_callback_handler(pstorage_handle_t * p_handle,
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uint8_t op_code,
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uint32_t result,
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uint8_t * p_data,
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uint32_t data_len)
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{
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// If we are in BOOTLOADER_SETTINGS_SAVING state and we receive an PSTORAGE_STORE_OP_CODE
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// response then settings has been saved and update has completed.
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if ((m_update_status == BOOTLOADER_SETTINGS_SAVING) && (op_code == PSTORAGE_STORE_OP_CODE))
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{
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m_update_status = BOOTLOADER_COMPLETE;
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}
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APP_ERROR_CHECK(result);
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}
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// Adafruit modifcation
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static void terminate_startup_dfu(void * p_event_data, uint16_t event_size)
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{
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(void) p_event_data;
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(void) event_size;
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_terminate_startup_dfu = true;
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}
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/* Terminate the forced DFU mode on startup if no packets is received
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* by put an terminal handler to scheduler
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*/
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static void forced_startup_dfu_timer_handler(void * p_context)
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{
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// No packets are received within timeout, terminal and DFU mode
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// forced_startup_dfu_packet_received is set by process_dfu_packet() in dfu_transport_serial.c
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if (!forced_startup_dfu_packet_received)
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{
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app_sched_event_put(NULL, 0, terminate_startup_dfu);
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}
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}
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/**@brief Function for waiting for events.
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*
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* @details This function will place the chip in low power mode while waiting for events from
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* the SoftDevice or other peripherals. When interrupted by an event, it will call the
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* @ref app_sched_execute function to process the received event. This function will return
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* when the final state of the firmware update is reached OR when a tear down is in
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* progress.
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*/
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static void wait_for_events(void)
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{
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for (;;)
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{
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// Wait in low power state for any events.
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uint32_t err_code = sd_app_evt_wait();
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APP_ERROR_CHECK(err_code);
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// Event received. Process it from the scheduler.
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app_sched_execute();
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// USB stack
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tusb_task();
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if ((m_update_status == BOOTLOADER_COMPLETE) ||
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(m_update_status == BOOTLOADER_TIMEOUT) ||
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(m_update_status == BOOTLOADER_RESET))
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{
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// When update has completed or a timeout/reset occured we will return.
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return;
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}
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// Forced startup dfu mode timeout without any received packet
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if (_terminate_startup_dfu)
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{
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return;
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}
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}
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}
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bool bootloader_app_is_valid(uint32_t app_addr)
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{
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const bootloader_settings_t * p_bootloader_settings;
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// There exists an application in CODE region 1.
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if (*((uint32_t *)app_addr) == EMPTY_FLASH_MASK)
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{
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return false;
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}
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bool success = false;
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bootloader_util_settings_get(&p_bootloader_settings);
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// The application in CODE region 1 is flagged as valid during update.
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if (p_bootloader_settings->bank_0 == BANK_VALID_APP)
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{
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uint16_t image_crc = 0;
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// A stored crc value of 0 indicates that CRC checking is not used.
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if (p_bootloader_settings->bank_0_crc != 0)
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{
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image_crc = crc16_compute((uint8_t *)DFU_BANK_0_REGION_START,
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p_bootloader_settings->bank_0_size,
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NULL);
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}
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success = (image_crc == p_bootloader_settings->bank_0_crc);
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}
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return success;
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}
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static void bootloader_settings_save(bootloader_settings_t * p_settings)
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{
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uint32_t err_code = pstorage_clear(&m_bootsettings_handle, sizeof(bootloader_settings_t));
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APP_ERROR_CHECK(err_code);
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err_code = pstorage_store(&m_bootsettings_handle,
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(uint8_t *)p_settings,
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sizeof(bootloader_settings_t),
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0);
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APP_ERROR_CHECK(err_code);
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}
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void bootloader_dfu_update_process(dfu_update_status_t update_status)
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{
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static bootloader_settings_t settings;
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const bootloader_settings_t * p_bootloader_settings;
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bootloader_util_settings_get(&p_bootloader_settings);
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if (update_status.status_code == DFU_UPDATE_APP_COMPLETE)
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{
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settings.bank_0_crc = update_status.app_crc;
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settings.bank_0_size = update_status.app_size;
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settings.bank_0 = BANK_VALID_APP;
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settings.bank_1 = BANK_INVALID_APP;
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m_update_status = BOOTLOADER_SETTINGS_SAVING;
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bootloader_settings_save(&settings);
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}
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else if (update_status.status_code == DFU_UPDATE_SD_COMPLETE)
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{
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settings.bank_0_crc = update_status.app_crc;
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settings.bank_0_size = update_status.sd_size +
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update_status.bl_size +
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update_status.app_size;
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settings.bank_0 = BANK_VALID_SD;
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settings.bank_1 = BANK_INVALID_APP;
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settings.sd_image_size = update_status.sd_size;
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settings.bl_image_size = update_status.bl_size;
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settings.app_image_size = update_status.app_size;
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settings.sd_image_start = update_status.sd_image_start;
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m_update_status = BOOTLOADER_SETTINGS_SAVING;
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bootloader_settings_save(&settings);
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}
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else if (update_status.status_code == DFU_UPDATE_BOOT_COMPLETE)
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{
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settings.bank_0 = p_bootloader_settings->bank_0;
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settings.bank_0_crc = p_bootloader_settings->bank_0_crc;
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settings.bank_0_size = p_bootloader_settings->bank_0_size;
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settings.bank_1 = BANK_VALID_BOOT;
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settings.sd_image_size = update_status.sd_size;
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settings.bl_image_size = update_status.bl_size;
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settings.app_image_size = update_status.app_size;
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m_update_status = BOOTLOADER_SETTINGS_SAVING;
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bootloader_settings_save(&settings);
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}
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else if (update_status.status_code == DFU_UPDATE_SD_SWAPPED)
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{
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if (p_bootloader_settings->bank_0 == BANK_VALID_SD)
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{
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settings.bank_0_crc = 0;
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settings.bank_0_size = 0;
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settings.bank_0 = BANK_INVALID_APP;
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}
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// This handles cases where SoftDevice was not updated, hence bank0 keeps its settings.
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else
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{
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settings.bank_0 = p_bootloader_settings->bank_0;
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settings.bank_0_crc = p_bootloader_settings->bank_0_crc;
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settings.bank_0_size = p_bootloader_settings->bank_0_size;
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}
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settings.bank_1 = BANK_INVALID_APP;
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settings.sd_image_size = 0;
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settings.bl_image_size = 0;
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settings.app_image_size = 0;
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m_update_status = BOOTLOADER_SETTINGS_SAVING;
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bootloader_settings_save(&settings);
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}
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else if (update_status.status_code == DFU_TIMEOUT)
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{
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// Timeout has occurred. Close the connection with the DFU Controller.
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uint32_t err_code;
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if ( is_ota() )
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{
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err_code = dfu_transport_ble_close();
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}else
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{
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err_code = dfu_transport_serial_close();
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}
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APP_ERROR_CHECK(err_code);
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m_update_status = BOOTLOADER_TIMEOUT;
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}
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else if (update_status.status_code == DFU_BANK_0_ERASED)
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{
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settings.bank_0_crc = 0;
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settings.bank_0_size = 0;
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settings.bank_0 = BANK_INVALID_APP;
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settings.bank_1 = p_bootloader_settings->bank_1;
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bootloader_settings_save(&settings);
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}
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else if (update_status.status_code == DFU_RESET)
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{
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m_update_status = BOOTLOADER_RESET;
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}
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else
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{
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// No implementation needed.
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}
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}
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uint32_t bootloader_init(void)
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{
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uint32_t err_code;
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pstorage_module_param_t storage_params = {.cb = pstorage_callback_handler};
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err_code = pstorage_init();
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VERIFY_SUCCESS(err_code);
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m_bootsettings_handle.block_id = BOOTLOADER_SETTINGS_ADDRESS;
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err_code = pstorage_register(&storage_params, &m_bootsettings_handle);
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return err_code;
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}
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uint32_t bootloader_dfu_start(bool ota, uint32_t timeout_ms)
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{
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uint32_t err_code;
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// Clear swap if banked update is used.
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err_code = dfu_init();
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VERIFY_SUCCESS(err_code);
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if ( ota )
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{
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err_code = dfu_transport_ble_update_start();
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}else
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{
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// timeout_ms > 0 is forced startup DFU
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if ( timeout_ms )
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{
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forced_startup_dfu_packet_received = false;
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_terminate_startup_dfu = false;
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(void) app_timer_create(&_forced_startup_dfu_timer, APP_TIMER_MODE_SINGLE_SHOT, forced_startup_dfu_timer_handler);
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app_timer_start(_forced_startup_dfu_timer, APP_TIMER_TICKS(timeout_ms), NULL);
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}
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err_code = dfu_transport_serial_update_start();
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}
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wait_for_events();
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// Close Serial transport after done
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if ( !ota ) dfu_transport_serial_close();
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return err_code;
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}
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/**@brief Function for disabling all interrupts before jumping from bootloader to application.
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*/
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static void interrupts_disable(void)
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{
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uint32_t interrupt_setting_mask;
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uint32_t irq = 0; // We start from first interrupt, i.e. interrupt 0.
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// Fetch the current interrupt settings.
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interrupt_setting_mask = NVIC->ISER[0];
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for (; irq < MAX_NUMBER_INTERRUPTS; irq++)
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{
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if (interrupt_setting_mask & (IRQ_ENABLED << irq))
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{
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// The interrupt was enabled, and hence disable it.
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NVIC_DisableIRQ((IRQn_Type)irq);
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}
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}
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}
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void bootloader_app_start(uint32_t app_addr)
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{
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// If the applications CRC has been checked and passed, the magic number will be written and we
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// can start the application safely.
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uint32_t err_code = sd_softdevice_disable();
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APP_ERROR_CHECK(err_code);
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interrupts_disable();
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// Disable RTC1
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NRF_RTC1->EVTENCLR = RTC_EVTEN_COMPARE0_Msk;
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NRF_RTC1->INTENCLR = RTC_INTENSET_COMPARE0_Msk;
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NRF_RTC1->TASKS_STOP = 1;
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NRF_RTC1->TASKS_CLEAR = 1;
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err_code = sd_softdevice_vector_table_base_set(CODE_REGION_1_START);
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APP_ERROR_CHECK(err_code);
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bootloader_util_app_start(CODE_REGION_1_START);
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}
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bool bootloader_dfu_sd_in_progress(void)
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{
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const bootloader_settings_t * p_bootloader_settings;
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bootloader_util_settings_get(&p_bootloader_settings);
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if (p_bootloader_settings->bank_0 == BANK_VALID_SD ||
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p_bootloader_settings->bank_1 == BANK_VALID_BOOT)
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{
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return true;
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}
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return false;
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}
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uint32_t bootloader_dfu_sd_update_continue(void)
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{
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uint32_t err_code;
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if ((dfu_sd_image_validate() == NRF_SUCCESS) &&
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(dfu_bl_image_validate() == NRF_SUCCESS))
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{
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return NRF_SUCCESS;
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}
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// Ensure that flash operations are not executed within the first 100 ms seconds to allow
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// a debugger to be attached.
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nrf_delay_ms(100);
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err_code = dfu_sd_image_swap();
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APP_ERROR_CHECK(err_code);
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err_code = dfu_sd_image_validate();
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APP_ERROR_CHECK(err_code);
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err_code = dfu_bl_image_swap();
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APP_ERROR_CHECK(err_code);
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return err_code;
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}
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uint32_t bootloader_dfu_sd_update_finalize(void)
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{
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dfu_update_status_t update_status = {DFU_UPDATE_SD_SWAPPED, };
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bootloader_dfu_update_process(update_status);
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wait_for_events();
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return NRF_SUCCESS;
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}
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void bootloader_settings_get(bootloader_settings_t * const p_settings)
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{
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const bootloader_settings_t * p_bootloader_settings;
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bootloader_util_settings_get(&p_bootloader_settings);
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p_settings->bank_0 = p_bootloader_settings->bank_0;
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p_settings->bank_0_crc = p_bootloader_settings->bank_0_crc;
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p_settings->bank_0_size = p_bootloader_settings->bank_0_size;
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p_settings->bank_1 = p_bootloader_settings->bank_1;
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p_settings->sd_image_size = p_bootloader_settings->sd_image_size;
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p_settings->bl_image_size = p_bootloader_settings->bl_image_size;
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p_settings->app_image_size = p_bootloader_settings->app_image_size;
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p_settings->sd_image_start = p_bootloader_settings->sd_image_start;
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}
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