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api.c
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api.c
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/************************************************************************/
/* XBoot Extensible AVR Bootloader API */
/* */
/* api.c */
/* */
/* Alex Forencich <alex@alexforencich.com> */
/* */
/* Copyright (c) 2010 Alex Forencich */
/* */
/* Permission is hereby granted, free of charge, to any person */
/* obtaining a copy of this software and associated documentation */
/* files(the "Software"), to deal in the Software without restriction, */
/* including without limitation the rights to use, copy, modify, merge, */
/* publish, distribute, sublicense, and/or sell copies of the Software, */
/* and to permit persons to whom the Software is furnished to do so, */
/* subject to the following conditions: */
/* */
/* The above copyright notice and this permission notice shall be */
/* included in all copies or substantial portions of the Software. */
/* */
/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND */
/* NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS */
/* BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN */
/* ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN */
/* CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE */
/* SOFTWARE. */
/* */
/************************************************************************/
#include "api.h"
// jump table
#ifdef ENABLE_API
#if USE_API_VERSION == 1
// Version 1
// XBj\x1
struct xboot_jump_table_s api_jump_table __attribute((section(".vectors"))) = {
{'X', 'B', 'j'}, 1,
{
// General Functions
(uint16_t)(xboot_get_version),
// Low level flash access
#ifdef ENABLE_API_LOW_LEVEL_FLASH
#ifdef ENABLE_API_SPM_WRAPPER
(uint16_t)(xboot_spm_wrapper),
#else // ENABLE_API_SPM_WRAPPER
0,
#endif // ENABLE_API_SPM_WRAPPER
(uint16_t)(xboot_erase_application_page),
(uint16_t)(xboot_write_application_page),
#ifdef __AVR_XMEGA__
(uint16_t)(xboot_write_user_signature_row),
#else // __AVR_XMEGA__
0,
#endif // __AVR_XMEGA__
#else // ENABLE_API_LOW_LEVEL_FLASH
0,
0,
0,
0,
#endif // ENABLE_API_LOW_LEVEL_FLASH
// Higher level firmware update functions
#ifdef ENABLE_API_FIRMWARE_UPDATE
(uint16_t)(xboot_app_temp_erase),
(uint16_t)(xboot_app_temp_write_page),
#else // ENABLE_API_FIRMWARE_UPDATE
0,
0,
#endif // ENABLE_API_FIRMWARE_UPDATE
}
};
#endif // USE_API_VERSION
#endif // ENABLE_API
// General Functions
uint8_t xboot_get_version(uint16_t *ver)
{
*ver = (XBOOT_VERSION_MAJOR << 8) | (XBOOT_VERSION_MINOR);
return XB_SUCCESS;
}
// Low level flash access
uint8_t xboot_spm_wrapper(void)
{
return XB_ERR_NOT_FOUND;
}
uint8_t xboot_erase_application_page(uint32_t address)
{
uint8_t saved_status = SREG;
if (address > BOOT_SECTION_START)
return XB_INVALID_ADDRESS;
cli();
Flash_EraseApplicationPage(address);
Flash_WaitForSPM();
#ifndef __AVR_XMEGA__
boot_rww_enable();
#endif // __AVR_XMEGA__
#ifdef __AVR_XMEGA__
NVM_CMD = NVM_CMD_NO_OPERATION_gc;
#endif // __AVR_XMEGA__
SREG = saved_status;
return XB_SUCCESS;
}
uint8_t xboot_write_application_page(uint32_t address, uint8_t *data, uint8_t erase)
{
uint8_t saved_status = SREG;
if (address > BOOT_SECTION_START)
return XB_INVALID_ADDRESS;
cli();
Flash_ProgramPage(address, data, erase);
#ifdef __AVR_XMEGA__
NVM_CMD = NVM_CMD_NO_OPERATION_gc;
#endif // __AVR_XMEGA__
SREG = saved_status;
return XB_SUCCESS;
}
#ifdef __AVR_XMEGA__
uint8_t xboot_write_user_signature_row(uint8_t *data)
{
uint8_t saved_status = SREG;
cli();
Flash_LoadFlashPage(data);
Flash_EraseUserSignatureRow();
Flash_WaitForSPM();
Flash_WriteUserSignatureRow();
Flash_WaitForSPM();
NVM_CMD = NVM_CMD_NO_OPERATION_gc;
SREG = saved_status;
return XB_SUCCESS;
}
#endif // __AVR_XMEGA__
// Higher level firmware update functions
uint8_t xboot_app_temp_erase(void)
{
uint8_t saved_status = SREG;
cli();
for (uint32_t addr = XB_APP_TEMP_START; addr < XB_APP_TEMP_END; addr += SPM_PAGESIZE)
{
Flash_EraseApplicationPage(addr);
Flash_WaitForSPM();
}
#ifndef __AVR_XMEGA__
boot_rww_enable();
#endif // __AVR_XMEGA__
#ifdef __AVR_XMEGA__
NVM_CMD = NVM_CMD_NO_OPERATION_gc;
#endif // __AVR_XMEGA__
SREG = saved_status;
return XB_SUCCESS;
}
uint8_t xboot_app_temp_write_page(uint32_t addr, uint8_t *data, uint8_t erase)
{
return xboot_write_application_page(addr + XB_APP_TEMP_START, data, erase);
}