Files
avrdude/src/updi_nvm.c
2024-01-20 12:10:23 +01:00

234 lines
7.7 KiB
C

/*
* avrdude - A Downloader/Uploader for AVR device programmers
* Copyright (C) 2021 Dawid Buchwald
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation; either version 2 of the License, or
* (at your option) any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program; if not, write to the Free Software
* Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
*/
/* $Id$ */
/*
* Based on pymcuprog
* See https://github.com/microchip-pic-avr-tools/pymcuprog
*/
#include "ac_cfg.h"
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <errno.h>
#include <sys/time.h>
#include <unistd.h>
#include "avrdude.h"
#include "libavrdude.h"
#include "updi_nvm.h"
#include "updi_nvm_v0.h"
#include "updi_nvm_v2.h"
#include "updi_nvm_v3.h"
#include "updi_nvm_v4.h"
#include "updi_nvm_v5.h"
#include "updi_state.h"
int updi_nvm_chip_erase(const PROGRAMMER *pgm, const AVRPART *p) {
switch(updi_get_nvm_mode(pgm))
{
case UPDI_NVM_MODE_V0:
return updi_nvm_chip_erase_V0(pgm, p);
case UPDI_NVM_MODE_V2:
return updi_nvm_chip_erase_V2(pgm, p);
case UPDI_NVM_MODE_V3:
return updi_nvm_chip_erase_V3(pgm, p);
case UPDI_NVM_MODE_V4:
return updi_nvm_chip_erase_V4(pgm, p);
case UPDI_NVM_MODE_V5:
return updi_nvm_chip_erase_V5(pgm, p);
default:
pmsg_error("invalid NVM Mode %d\n", updi_get_nvm_mode(pgm));
return -1;
}
}
int updi_nvm_erase_flash_page(const PROGRAMMER *pgm, const AVRPART *p, uint32_t address) {
switch(updi_get_nvm_mode(pgm))
{
case UPDI_NVM_MODE_V0:
return updi_nvm_erase_flash_page_V0(pgm, p, address);
case UPDI_NVM_MODE_V2:
return updi_nvm_erase_flash_page_V2(pgm, p, address);
case UPDI_NVM_MODE_V3:
return updi_nvm_erase_flash_page_V3(pgm, p, address);
case UPDI_NVM_MODE_V4:
return updi_nvm_erase_flash_page_V4(pgm, p, address);
case UPDI_NVM_MODE_V5:
return updi_nvm_erase_flash_page_V5(pgm, p, address);
default:
pmsg_error("invalid NVM Mode %d\n", updi_get_nvm_mode(pgm));
return -1;
}
}
int updi_nvm_erase_eeprom(const PROGRAMMER *pgm, const AVRPART *p) {
switch(updi_get_nvm_mode(pgm))
{
case UPDI_NVM_MODE_V0:
return updi_nvm_erase_eeprom_V0(pgm, p);
case UPDI_NVM_MODE_V2:
return updi_nvm_erase_eeprom_V2(pgm, p);
case UPDI_NVM_MODE_V3:
return updi_nvm_erase_eeprom_V3(pgm, p);
case UPDI_NVM_MODE_V4:
return updi_nvm_erase_eeprom_V4(pgm, p);
case UPDI_NVM_MODE_V5:
return updi_nvm_erase_eeprom_V5(pgm, p);
default:
pmsg_error("invalid NVM Mode %d\n", updi_get_nvm_mode(pgm));
return -1;
}
}
int updi_nvm_erase_user_row(const PROGRAMMER *pgm, const AVRPART *p, uint32_t address, uint16_t size) {
switch(updi_get_nvm_mode(pgm))
{
case UPDI_NVM_MODE_V0:
return updi_nvm_erase_user_row_V0(pgm, p, address, size);
case UPDI_NVM_MODE_V2:
return updi_nvm_erase_user_row_V2(pgm, p, address, size);
case UPDI_NVM_MODE_V3:
return updi_nvm_erase_user_row_V3(pgm, p, address, size);
case UPDI_NVM_MODE_V4:
return updi_nvm_erase_user_row_V4(pgm, p, address, size);
case UPDI_NVM_MODE_V5:
return updi_nvm_erase_user_row_V5(pgm, p, address, size);
default:
pmsg_error("invalid NVM Mode %d\n", updi_get_nvm_mode(pgm));
return -1;
}
}
int updi_nvm_write_flash(const PROGRAMMER *pgm, const AVRPART *p, uint32_t address, unsigned char *buffer, uint16_t size) {
switch(updi_get_nvm_mode(pgm))
{
case UPDI_NVM_MODE_V0:
return updi_nvm_write_flash_V0(pgm, p, address, buffer, size);
case UPDI_NVM_MODE_V2:
return updi_nvm_write_flash_V2(pgm, p, address, buffer, size);
case UPDI_NVM_MODE_V3:
return updi_nvm_write_flash_V3(pgm, p, address, buffer, size);
case UPDI_NVM_MODE_V4:
return updi_nvm_write_flash_V4(pgm, p, address, buffer, size);
case UPDI_NVM_MODE_V5:
return updi_nvm_write_flash_V5(pgm, p, address, buffer, size);
default:
pmsg_error("invalid NVM Mode %d\n", updi_get_nvm_mode(pgm));
return -1;
}
}
int updi_nvm_write_user_row(const PROGRAMMER *pgm, const AVRPART *p, uint32_t address, unsigned char *buffer, uint16_t size) {
switch(updi_get_nvm_mode(pgm))
{
case UPDI_NVM_MODE_V0:
return updi_nvm_write_user_row_V0(pgm, p, address, buffer, size);
case UPDI_NVM_MODE_V2:
return updi_nvm_write_user_row_V2(pgm, p, address, buffer, size);
case UPDI_NVM_MODE_V3:
return updi_nvm_write_user_row_V3(pgm, p, address, buffer, size);
case UPDI_NVM_MODE_V4:
return updi_nvm_write_user_row_V4(pgm, p, address, buffer, size);
case UPDI_NVM_MODE_V5:
return updi_nvm_write_user_row_V5(pgm, p, address, buffer, size);
default:
pmsg_error("invalid NVM Mode %d\n", updi_get_nvm_mode(pgm));
return -1;
}
}
int updi_nvm_write_eeprom(const PROGRAMMER *pgm, const AVRPART *p, uint32_t address, unsigned char *buffer, uint16_t size) {
switch(updi_get_nvm_mode(pgm))
{
case UPDI_NVM_MODE_V0:
return updi_nvm_write_eeprom_V0(pgm, p, address, buffer, size);
case UPDI_NVM_MODE_V2:
return updi_nvm_write_eeprom_V2(pgm, p, address, buffer, size);
case UPDI_NVM_MODE_V3:
return updi_nvm_write_eeprom_V3(pgm, p, address, buffer, size);
case UPDI_NVM_MODE_V4:
return updi_nvm_write_eeprom_V4(pgm, p, address, buffer, size);
case UPDI_NVM_MODE_V5:
return updi_nvm_write_eeprom_V5(pgm, p, address, buffer, size);
default:
pmsg_error("invalid NVM Mode %d\n", updi_get_nvm_mode(pgm));
return -1;
}
}
int updi_nvm_write_fuse(const PROGRAMMER *pgm, const AVRPART *p, uint32_t address, uint8_t value) {
switch(updi_get_nvm_mode(pgm))
{
case UPDI_NVM_MODE_V0:
return updi_nvm_write_fuse_V0(pgm, p, address, value);
case UPDI_NVM_MODE_V2:
return updi_nvm_write_fuse_V2(pgm, p, address, value);
case UPDI_NVM_MODE_V3:
return updi_nvm_write_fuse_V3(pgm, p, address, value);
case UPDI_NVM_MODE_V4:
return updi_nvm_write_fuse_V4(pgm, p, address, value);
case UPDI_NVM_MODE_V5:
return updi_nvm_write_fuse_V5(pgm, p, address, value);
default:
pmsg_error("invalid NVM Mode %d\n", updi_get_nvm_mode(pgm));
return -1;
}
}
int updi_nvm_wait_ready(const PROGRAMMER *pgm, const AVRPART *p) {
switch(updi_get_nvm_mode(pgm))
{
case UPDI_NVM_MODE_V0:
return updi_nvm_wait_ready_V0(pgm, p);
case UPDI_NVM_MODE_V2:
return updi_nvm_wait_ready_V2(pgm, p);
case UPDI_NVM_MODE_V3:
return updi_nvm_wait_ready_V3(pgm, p);
case UPDI_NVM_MODE_V4:
return updi_nvm_wait_ready_V4(pgm, p);
case UPDI_NVM_MODE_V5:
return updi_nvm_wait_ready_V5(pgm, p);
default:
pmsg_error("invalid NVM Mode %d\n", updi_get_nvm_mode(pgm));
return -1;
}
}
int updi_nvm_command(const PROGRAMMER *pgm, const AVRPART *p, uint8_t command) {
switch(updi_get_nvm_mode(pgm))
{
case UPDI_NVM_MODE_V0:
return updi_nvm_command_V0(pgm, p, command);
case UPDI_NVM_MODE_V2:
return updi_nvm_command_V2(pgm, p, command);
case UPDI_NVM_MODE_V3:
return updi_nvm_command_V3(pgm, p, command);
case UPDI_NVM_MODE_V4:
return updi_nvm_command_V4(pgm, p, command);
case UPDI_NVM_MODE_V5:
return updi_nvm_command_V5(pgm, p, command);
default:
pmsg_error("invalid NVM Mode %d\n", updi_get_nvm_mode(pgm));
return -1;
}
}