From b89ee8da481d7b9c360b689f367b7a234ec7cb11 Mon Sep 17 00:00:00 2001 From: "David A. Mellis" Date: Tue, 24 Mar 2009 10:41:46 +0000 Subject: Renaming atmega168 bootloader directory to atmega since it's no longer atmega168 specific. Updating boards.txt accordingly. --- boards.txt | 12 +- bootloaders/atmega/ATmegaBOOT_168.c | 992 +++++++++++++++++++++ bootloaders/atmega/ATmegaBOOT_168_atmega328.hex | 125 +++ bootloaders/atmega/ATmegaBOOT_168_diecimila.hex | 126 +++ bootloaders/atmega/ATmegaBOOT_168_ng.hex | 110 +++ bootloaders/atmega/ATmegaBOOT_168_pro_8MHz.hex | 126 +++ bootloaders/atmega/Makefile | 194 ++++ bootloaders/atmega168/ATmegaBOOT_168.c | 992 --------------------- bootloaders/atmega168/ATmegaBOOT_168_atmega328.hex | 125 --- bootloaders/atmega168/ATmegaBOOT_168_diecimila.hex | 126 --- bootloaders/atmega168/ATmegaBOOT_168_ng.hex | 110 --- bootloaders/atmega168/ATmegaBOOT_168_pro_8MHz.hex | 126 --- bootloaders/atmega168/Makefile | 194 ---- 13 files changed, 1679 insertions(+), 1679 deletions(-) create mode 100755 bootloaders/atmega/ATmegaBOOT_168.c create mode 100644 bootloaders/atmega/ATmegaBOOT_168_atmega328.hex create mode 100644 bootloaders/atmega/ATmegaBOOT_168_diecimila.hex create mode 100644 bootloaders/atmega/ATmegaBOOT_168_ng.hex create mode 100644 bootloaders/atmega/ATmegaBOOT_168_pro_8MHz.hex create mode 100755 bootloaders/atmega/Makefile delete mode 100755 bootloaders/atmega168/ATmegaBOOT_168.c delete mode 100644 bootloaders/atmega168/ATmegaBOOT_168_atmega328.hex delete mode 100644 bootloaders/atmega168/ATmegaBOOT_168_diecimila.hex delete mode 100644 bootloaders/atmega168/ATmegaBOOT_168_ng.hex delete mode 100644 bootloaders/atmega168/ATmegaBOOT_168_pro_8MHz.hex delete mode 100755 bootloaders/atmega168/Makefile diff --git a/boards.txt b/boards.txt index a9bba14..d4bff7b 100644 --- a/boards.txt +++ b/boards.txt @@ -28,7 +28,7 @@ atmega168.upload.speed=19200 atmega168.bootloader.low_fuses=0xff atmega168.bootloader.high_fuses=0xdd atmega168.bootloader.extended_fuses=0x00 -atmega168.bootloader.path=atmega168 +atmega168.bootloader.path=atmega atmega168.bootloader.file=ATmegaBOOT_168_ng.hex atmega168.bootloader.unlock_bits=0x3F atmega168.bootloader.lock_bits=0x0F @@ -48,7 +48,7 @@ mini.upload.speed=19200 mini.bootloader.low_fuses=0xff mini.bootloader.high_fuses=0xdd mini.bootloader.extended_fuses=0x00 -mini.bootloader.path=atmega168 +mini.bootloader.path=atmega mini.bootloader.file=ATmegaBOOT_168_ng.hex mini.bootloader.unlock_bits=0x3F mini.bootloader.lock_bits=0x0F @@ -89,7 +89,7 @@ diecimila.upload.speed=19200 diecimila.bootloader.low_fuses=0xff diecimila.bootloader.high_fuses=0xdd diecimila.bootloader.extended_fuses=0x00 -diecimila.bootloader.path=atmega168 +diecimila.bootloader.path=atmega diecimila.bootloader.file=ATmegaBOOT_168_diecimila.hex diecimila.bootloader.unlock_bits=0x3F diecimila.bootloader.lock_bits=0x0F @@ -109,7 +109,7 @@ nano.upload.speed=19200 nano.bootloader.low_fuses=0xff nano.bootloader.high_fuses=0xdd nano.bootloader.extended_fuses=0x00 -nano.bootloader.path=atmega168 +nano.bootloader.path=atmega nano.bootloader.file=ATmegaBOOT_168_diecimila.hex nano.bootloader.unlock_bits=0x3F nano.bootloader.lock_bits=0x0F @@ -149,7 +149,7 @@ pro.upload.speed=19200 pro.bootloader.low_fuses=0xc6 pro.bootloader.high_fuses=0xdd pro.bootloader.extended_fuses=0x00 -pro.bootloader.path=atmega168 +pro.bootloader.path=atmega pro.bootloader.file=ATmegaBOOT_168_pro_8MHz.hex pro.bootloader.unlock_bits=0x3F pro.bootloader.lock_bits=0x0F @@ -169,7 +169,7 @@ atmega328.upload.speed=57600 atmega328.bootloader.low_fuses=0xFF atmega328.bootloader.high_fuses=0xDA atmega328.bootloader.extended_fuses=0x05 -atmega328.bootloader.path=atmega168 +atmega328.bootloader.path=atmega atmega328.bootloader.file=ATmegaBOOT_168_atmega328.hex atmega328.bootloader.unlock_bits=0x3F atmega328.bootloader.lock_bits=0x0F diff --git a/bootloaders/atmega/ATmegaBOOT_168.c b/bootloaders/atmega/ATmegaBOOT_168.c new file mode 100755 index 0000000..9413f86 --- /dev/null +++ b/bootloaders/atmega/ATmegaBOOT_168.c @@ -0,0 +1,992 @@ +/**********************************************************/ +/* Serial Bootloader for Atmel megaAVR Controllers */ +/* */ +/* tested with ATmega8, ATmega128 and ATmega168 */ +/* should work with other mega's, see code for details */ +/* */ +/* ATmegaBOOT.c */ +/* */ +/* 20070626: hacked for Arduino Diecimila (which auto- */ +/* resets when a USB connection is made to it) */ +/* by D. Mellis */ +/* 20060802: hacked for Arduino by D. Cuartielles */ +/* based on a previous hack by D. Mellis */ +/* and D. Cuartielles */ +/* */ +/* Monitor and debug functions were added to the original */ +/* code by Dr. Erik Lins, chip45.com. (See below) */ +/* */ +/* Thanks to Karl Pitrich for fixing a bootloader pin */ +/* problem and more informative LED blinking! */ +/* */ +/* For the latest version see: */ +/* http://www.chip45.com/ */ +/* */ +/* ------------------------------------------------------ */ +/* */ +/* based on stk500boot.c */ +/* Copyright (c) 2003, Jason P. Kyle */ +/* All rights reserved. */ +/* see avr1.org for original file and information */ +/* */ +/* 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 */ +/* */ +/* Licence can be viewed at */ +/* http://www.fsf.org/licenses/gpl.txt */ +/* */ +/* Target = Atmel AVR m128,m64,m32,m16,m8,m162,m163,m169, */ +/* m8515,m8535. ATmega161 has a very small boot block so */ +/* isn't supported. */ +/* */ +/* Tested with m168 */ +/**********************************************************/ + +/* $Id$ */ + + +/* some includes */ +#include +#include +#include +#include +#include +#include + +/* the current avr-libc eeprom functions do not support the ATmega168 */ +/* own eeprom write/read functions are used instead */ +#if !defined(__AVR_ATmega168__) || !defined(__AVR_ATmega328P__) +#include +#endif + +/* Use the F_CPU defined in Makefile */ + +/* 20060803: hacked by DojoCorp */ +/* 20070626: hacked by David A. Mellis to decrease waiting time for auto-reset */ +/* set the waiting time for the bootloader */ +/* get this from the Makefile instead */ +/* #define MAX_TIME_COUNT (F_CPU>>4) */ + +/* 20070707: hacked by David A. Mellis - after this many errors give up and launch application */ +#define MAX_ERROR_COUNT 5 + +/* set the UART baud rate */ +/* 20060803: hacked by DojoCorp */ +//#define BAUD_RATE 115200 +#ifndef BAUD_RATE +#define BAUD_RATE 19200 +#endif + + +/* SW_MAJOR and MINOR needs to be updated from time to time to avoid warning message from AVR Studio */ +/* never allow AVR Studio to do an update !!!! */ +#define HW_VER 0x02 +#define SW_MAJOR 0x01 +#define SW_MINOR 0x10 + + +/* Adjust to suit whatever pin your hardware uses to enter the bootloader */ +/* ATmega128 has two UARTS so two pins are used to enter bootloader and select UART */ +/* BL0... means UART0, BL1... means UART1 */ +#ifdef __AVR_ATmega128__ +#define BL_DDR DDRF +#define BL_PORT PORTF +#define BL_PIN PINF +#define BL0 PINF7 +#define BL1 PINF6 +#else +/* other ATmegas have only one UART, so only one pin is defined to enter bootloader */ +#define BL_DDR DDRD +#define BL_PORT PORTD +#define BL_PIN PIND +#define BL PIND6 +#endif + + +/* onboard LED is used to indicate, that the bootloader was entered (3x flashing) */ +/* if monitor functions are included, LED goes on after monitor was entered */ +#ifdef __AVR_ATmega128__ +/* Onboard LED is connected to pin PB7 (e.g. Crumb128, PROBOmega128, Savvy128) */ +#define LED_DDR DDRB +#define LED_PORT PORTB +#define LED_PIN PINB +#define LED PINB7 +#else +/* Onboard LED is connected to pin PB2 (e.g. Crumb8, Crumb168) */ +#define LED_DDR DDRB +#define LED_PORT PORTB +#define LED_PIN PINB +/* 20060803: hacked by DojoCorp, LED pin is B5 in Arduino */ +/* #define LED PINB2 */ +#define LED PINB5 +#endif + + +/* monitor functions will only be compiled when using ATmega128, due to bootblock size constraints */ +#ifdef __AVR_ATmega128__ +#define MONITOR +#endif + + +/* define various device id's */ +/* manufacturer byte is always the same */ +#define SIG1 0x1E // Yep, Atmel is the only manufacturer of AVR micros. Single source :( + +#if defined __AVR_ATmega128__ +#define SIG2 0x97 +#define SIG3 0x02 +#define PAGE_SIZE 0x80U //128 words + +#elif defined __AVR_ATmega64__ +#define SIG2 0x96 +#define SIG3 0x02 +#define PAGE_SIZE 0x80U //128 words + +#elif defined __AVR_ATmega32__ +#define SIG2 0x95 +#define SIG3 0x02 +#define PAGE_SIZE 0x40U //64 words + +#elif defined __AVR_ATmega16__ +#define SIG2 0x94 +#define SIG3 0x03 +#define PAGE_SIZE 0x40U //64 words + +#elif defined __AVR_ATmega8__ +#define SIG2 0x93 +#define SIG3 0x07 +#define PAGE_SIZE 0x20U //32 words + +#elif defined __AVR_ATmega88__ +#define SIG2 0x93 +#define SIG3 0x0a +#define PAGE_SIZE 0x20U //32 words + +#elif defined __AVR_ATmega168__ +#define SIG2 0x94 +#define SIG3 0x06 +#define PAGE_SIZE 0x40U //64 words + +#elif defined __AVR_ATmega328P__ +#define SIG2 0x95 +#define SIG3 0x0F +#define PAGE_SIZE 0x40U //64 words + +#elif defined __AVR_ATmega162__ +#define SIG2 0x94 +#define SIG3 0x04 +#define PAGE_SIZE 0x40U //64 words + +#elif defined __AVR_ATmega163__ +#define SIG2 0x94 +#define SIG3 0x02 +#define PAGE_SIZE 0x40U //64 words + +#elif defined __AVR_ATmega169__ +#define SIG2 0x94 +#define SIG3 0x05 +#define PAGE_SIZE 0x40U //64 words + +#elif defined __AVR_ATmega8515__ +#define SIG2 0x93 +#define SIG3 0x06 +#define PAGE_SIZE 0x20U //32 words + +#elif defined __AVR_ATmega8535__ +#define SIG2 0x93 +#define SIG3 0x08 +#define PAGE_SIZE 0x20U //32 words +#endif + + +/* function prototypes */ +void putch(char); +char getch(void); +void getNch(uint8_t); +void byte_response(uint8_t); +void nothing_response(void); +char gethex(void); +void puthex(char); +void flash_led(uint8_t); + +/* some variables */ +union address_union { + uint16_t word; + uint8_t byte[2]; +} address; + +union length_union { + uint16_t word; + uint8_t byte[2]; +} length; + +struct flags_struct { + unsigned eeprom : 1; + unsigned rampz : 1; +} flags; + +uint8_t buff[256]; +uint8_t address_high; + +uint8_t pagesz=0x80; + +uint8_t i; +uint8_t bootuart = 0; + +uint8_t error_count = 0; + +void (*app_start)(void) = 0x0000; + + +/* main program starts here */ +int main(void) +{ + uint8_t ch,ch2; + uint16_t w; + +#ifdef WATCHDOG_MODS + ch = MCUSR; + MCUSR = 0; + + WDTCSR |= _BV(WDCE) | _BV(WDE); + WDTCSR = 0; + + // Check if the WDT was used to reset, in which case we dont bootload and skip straight to the code. woot. + if (! (ch & _BV(EXTRF))) // if its a not an external reset... + app_start(); // skip bootloader +#else + asm volatile("nop\n\t"); +#endif + + /* set pin direction for bootloader pin and enable pullup */ + /* for ATmega128, two pins need to be initialized */ +#ifdef __AVR_ATmega128__ + BL_DDR &= ~_BV(BL0); + BL_DDR &= ~_BV(BL1); + BL_PORT |= _BV(BL0); + BL_PORT |= _BV(BL1); +#else + /* We run the bootloader regardless of the state of this pin. Thus, don't + put it in a different state than the other pins. --DAM, 070709 + BL_DDR &= ~_BV(BL); + BL_PORT |= _BV(BL); + */ +#endif + + +#ifdef __AVR_ATmega128__ + /* check which UART should be used for booting */ + if(bit_is_clear(BL_PIN, BL0)) { + bootuart = 1; + } + else if(bit_is_clear(BL_PIN, BL1)) { + bootuart = 2; + } +#endif + + /* check if flash is programmed already, if not start bootloader anyway */ + if(pgm_read_byte_near(0x0000) != 0xFF) { + +#ifdef __AVR_ATmega128__ + /* no UART was selected, start application */ + if(!bootuart) { + app_start(); + } +#else + /* check if bootloader pin is set low */ + /* we don't start this part neither for the m8, nor m168 */ + //if(bit_is_set(BL_PIN, BL)) { + // app_start(); + //} +#endif + } + +#ifdef __AVR_ATmega128__ + /* no bootuart was selected, default to uart 0 */ + if(!bootuart) { + bootuart = 1; + } +#endif + + + /* initialize UART(s) depending on CPU defined */ +#ifdef __AVR_ATmega128__ + if(bootuart == 1) { + UBRR0L = (uint8_t)(F_CPU/(BAUD_RATE*16L)-1); + UBRR0H = (F_CPU/(BAUD_RATE*16L)-1) >> 8; + UCSR0A = 0x00; + UCSR0C = 0x06; + UCSR0B = _BV(TXEN0)|_BV(RXEN0); + } + if(bootuart == 2) { + UBRR1L = (uint8_t)(F_CPU/(BAUD_RATE*16L)-1); + UBRR1H = (F_CPU/(BAUD_RATE*16L)-1) >> 8; + UCSR1A = 0x00; + UCSR1C = 0x06; + UCSR1B = _BV(TXEN1)|_BV(RXEN1); + } +#elif defined __AVR_ATmega163__ + UBRR = (uint8_t)(F_CPU/(BAUD_RATE*16L)-1); + UBRRHI = (F_CPU/(BAUD_RATE*16L)-1) >> 8; + UCSRA = 0x00; + UCSRB = _BV(TXEN)|_BV(RXEN); +#elif defined(__AVR_ATmega168__) || defined(__AVR_ATmega328P__) + UBRR0L = (uint8_t)(F_CPU/(BAUD_RATE*16L)-1); + UBRR0H = (F_CPU/(BAUD_RATE*16L)-1) >> 8; + UCSR0B = (1<>8; // set baud rate + UBRRL = (((F_CPU/BAUD_RATE)/16)-1); + UCSRB = (1<> 8; + UCSRA = 0x00; + UCSRC = 0x06; + UCSRB = _BV(TXEN)|_BV(RXEN); +#endif + + /* set LED pin as output */ + LED_DDR |= _BV(LED); + + + /* flash onboard LED to signal entering of bootloader */ +#ifdef __AVR_ATmega128__ + // 4x for UART0, 5x for UART1 + flash_led(NUM_LED_FLASHES + bootuart); +#else + flash_led(NUM_LED_FLASHES); +#endif + + /* 20050803: by DojoCorp, this is one of the parts provoking the + system to stop listening, cancelled from the original */ + //putch('\0'); + + + /* forever loop */ + for (;;) { + + /* get character from UART */ + ch = getch(); + + /* A bunch of if...else if... gives smaller code than switch...case ! */ + + /* Hello is anyone home ? */ + if(ch=='0') { + nothing_response(); + } + + + /* Request programmer ID */ + /* Not using PROGMEM string due to boot block in m128 being beyond 64kB boundry */ + /* Would need to selectively manipulate RAMPZ, and it's only 9 characters anyway so who cares. */ + else if(ch=='1') { + if (getch() == ' ') { + putch(0x14); + putch('A'); + putch('V'); + putch('R'); + putch(' '); + putch('I'); + putch('S'); + putch('P'); + putch(0x10); + } else { + if (++error_count == MAX_ERROR_COUNT) + app_start(); + } + } + + + /* AVR ISP/STK500 board commands DON'T CARE so default nothing_response */ + else if(ch=='@') { + ch2 = getch(); + if (ch2>0x85) getch(); + nothing_response(); + } + + + /* AVR ISP/STK500 board requests */ + else if(ch=='A') { + ch2 = getch(); + if(ch2==0x80) byte_response(HW_VER); // Hardware version + else if(ch2==0x81) byte_response(SW_MAJOR); // Software major version + else if(ch2==0x82) byte_response(SW_MINOR); // Software minor version + else if(ch2==0x98) byte_response(0x03); // Unknown but seems to be required by avr studio 3.56 + else byte_response(0x00); // Covers various unnecessary responses we don't care about + } + + + /* Device Parameters DON'T CARE, DEVICE IS FIXED */ + else if(ch=='B') { + getNch(20); + nothing_response(); + } + + + /* Parallel programming stuff DON'T CARE */ + else if(ch=='E') { + getNch(5); + nothing_response(); + } + + + /* P: Enter programming mode */ + /* R: Erase device, don't care as we will erase one page at a time anyway. */ + else if(ch=='P' || ch=='R') { + nothing_response(); + } + + + /* Leave programming mode */ + else if(ch=='Q') { + nothing_response(); +#ifdef WATCHDOG_MODS + // autoreset via watchdog (sneaky!) + WDTCSR = _BV(WDE); + while (1); // 16 ms +#endif + } + + + /* Set address, little endian. EEPROM in bytes, FLASH in words */ + /* Perhaps extra address bytes may be added in future to support > 128kB FLASH. */ + /* This might explain why little endian was used here, big endian used everywhere else. */ + else if(ch=='U') { + address.byte[0] = getch(); + address.byte[1] = getch(); + nothing_response(); + } + + + /* Universal SPI programming command, disabled. Would be used for fuses and lock bits. */ + else if(ch=='V') { + if (getch() == 0x30) { + getch(); + ch = getch(); + getch(); + if (ch == 0) { + byte_response(SIG1); + } else if (ch == 1) { + byte_response(SIG2); + } else { + byte_response(SIG3); + } + } else { + getNch(3); + byte_response(0x00); + } + } + + + /* Write memory, length is big endian and is in bytes */ + else if(ch=='d') { + length.byte[1] = getch(); + length.byte[0] = getch(); + flags.eeprom = 0; + if (getch() == 'E') flags.eeprom = 1; + for (w=0;w127) address_high = 0x01; //Only possible with m128, m256 will need 3rd address byte. FIXME + else address_high = 0x00; +#ifdef __AVR_ATmega128__ + RAMPZ = address_high; +#endif + address.word = address.word << 1; //address * 2 -> byte location + /* if ((length.byte[0] & 0x01) == 0x01) length.word++; //Even up an odd number of bytes */ + if ((length.byte[0] & 0x01)) length.word++; //Even up an odd number of bytes + cli(); //Disable interrupts, just to be sure + // HACKME: EEPE used to be EEWE + while(bit_is_set(EECR,EEPE)); //Wait for previous EEPROM writes to complete + asm volatile( + "clr r17 \n\t" //page_word_count + "lds r30,address \n\t" //Address of FLASH location (in bytes) + "lds r31,address+1 \n\t" + "ldi r28,lo8(buff) \n\t" //Start of buffer array in RAM + "ldi r29,hi8(buff) \n\t" + "lds r24,length \n\t" //Length of data to be written (in bytes) + "lds r25,length+1 \n\t" + "length_loop: \n\t" //Main loop, repeat for number of words in block + "cpi r17,0x00 \n\t" //If page_word_count=0 then erase page + "brne no_page_erase \n\t" + "wait_spm1: \n\t" + "lds r16,%0 \n\t" //Wait for previous spm to complete + "andi r16,1 \n\t" + "cpi r16,1 \n\t" + "breq wait_spm1 \n\t" + "ldi r16,0x03 \n\t" //Erase page pointed to by Z + "sts %0,r16 \n\t" + "spm \n\t" +#ifdef __AVR_ATmega163__ + ".word 0xFFFF \n\t" + "nop \n\t" +#endif + "wait_spm2: \n\t" + "lds r16,%0 \n\t" //Wait for previous spm to complete + "andi r16,1 \n\t" + "cpi r16,1 \n\t" + "breq wait_spm2 \n\t" + + "ldi r16,0x11 \n\t" //Re-enable RWW section + "sts %0,r16 \n\t" + "spm \n\t" +#ifdef __AVR_ATmega163__ + ".word 0xFFFF \n\t" + "nop \n\t" +#endif + "no_page_erase: \n\t" + "ld r0,Y+ \n\t" //Write 2 bytes into page buffer + "ld r1,Y+ \n\t" + + "wait_spm3: \n\t" + "lds r16,%0 \n\t" //Wait for previous spm to complete + "andi r16,1 \n\t" + "cpi r16,1 \n\t" + "breq wait_spm3 \n\t" + "ldi r16,0x01 \n\t" //Load r0,r1 into FLASH page buffer + "sts %0,r16 \n\t" + "spm \n\t" + + "inc r17 \n\t" //page_word_count++ + "cpi r17,%1 \n\t" + "brlo same_page \n\t" //Still same page in FLASH + "write_page: \n\t" + "clr r17 \n\t" //New page, write current one first + "wait_spm4: \n\t" + "lds r16,%0 \n\t" //Wait for previous spm to complete + "andi r16,1 \n\t" + "cpi r16,1 \n\t" + "breq wait_spm4 \n\t" +#ifdef __AVR_ATmega163__ + "andi r30,0x80 \n\t" // m163 requires Z6:Z1 to be zero during page write +#endif + "ldi r16,0x05 \n\t" //Write page pointed to by Z + "sts %0,r16 \n\t" + "spm \n\t" +#ifdef __AVR_ATmega163__ + ".word 0xFFFF \n\t" + "nop \n\t" + "ori r30,0x7E \n\t" // recover Z6:Z1 state after page write (had to be zero during write) +#endif + "wait_spm5: \n\t" + "lds r16,%0 \n\t" //Wait for previous spm to complete + "andi r16,1 \n\t" + "cpi r16,1 \n\t" + "breq wait_spm5 \n\t" + "ldi r16,0x11 \n\t" //Re-enable RWW section + "sts %0,r16 \n\t" + "spm \n\t" +#ifdef __AVR_ATmega163__ + ".word 0xFFFF \n\t" + "nop \n\t" +#endif + "same_page: \n\t" + "adiw r30,2 \n\t" //Next word in FLASH + "sbiw r24,2 \n\t" //length-2 + "breq final_write \n\t" //Finished + "rjmp length_loop \n\t" + "final_write: \n\t" + "cpi r17,0 \n\t" + "breq block_done \n\t" + "adiw r24,2 \n\t" //length+2, fool above check on length after short page write + "rjmp write_page \n\t" + "block_done: \n\t" + "clr __zero_reg__ \n\t" //restore zero register +#if defined(__AVR_ATmega168__) || defined(__AVR_ATmega328P__) + : "=m" (SPMCSR) : "M" (PAGE_SIZE) : "r0","r16","r17","r24","r25","r28","r29","r30","r31" +#else + : "=m" (SPMCR) : "M" (PAGE_SIZE) : "r0","r16","r17","r24","r25","r28","r29","r30","r31" +#endif + ); + /* Should really add a wait for RWW section to be enabled, don't actually need it since we never */ + /* exit the bootloader without a power cycle anyhow */ + } + putch(0x14); + putch(0x10); + } else { + if (++error_count == MAX_ERROR_COUNT) + app_start(); + } + } + + + /* Read memory block mode, length is big endian. */ + else if(ch=='t') { + length.byte[1] = getch(); + length.byte[0] = getch(); +#if defined __AVR_ATmega128__ + if (address.word>0x7FFF) flags.rampz = 1; // No go with m256, FIXME + else flags.rampz = 0; +#endif + address.word = address.word << 1; // address * 2 -> byte location + if (getch() == 'E') flags.eeprom = 1; + else flags.eeprom = 0; + if (getch() == ' ') { // Command terminator + putch(0x14); + for (w=0;w < length.word;w++) { // Can handle odd and even lengths okay + if (flags.eeprom) { // Byte access EEPROM read +#if defined(__AVR_ATmega168__) || defined(__AVR_ATmega328P__) + while(EECR & (1<= 'a') { + return (a - 'a' + 0x0a); + } else if(a >= '0') { + return(a - '0'); + } + return a; +} + + +char gethex(void) { + return (gethexnib() << 4) + gethexnib(); +} + + +void puthex(char ch) { + char ah; + + ah = ch >> 4; + if(ah >= 0x0a) { + ah = ah - 0x0a + 'a'; + } else { + ah += '0'; + } + + ch &= 0x0f; + if(ch >= 0x0a) { + ch = ch - 0x0a + 'a'; + } else { + ch += '0'; + } + + putch(ah); + putch(ch); +} + + +void putch(char ch) +{ +#ifdef __AVR_ATmega128__ + if(bootuart == 1) { + while (!(UCSR0A & _BV(UDRE0))); + UDR0 = ch; + } + else if (bootuart == 2) { + while (!(UCSR1A & _BV(UDRE1))); + UDR1 = ch; + } +#elif defined(__AVR_ATmega168__) || defined(__AVR_ATmega328P__) + while (!(UCSR0A & _BV(UDRE0))); + UDR0 = ch; +#else + /* m8,16,32,169,8515,8535,163 */ + while (!(UCSRA & _BV(UDRE))); + UDR = ch; +#endif +} + + +char getch(void) +{ +#ifdef __AVR_ATmega128__ + if(bootuart == 1) { + while(!(UCSR0A & _BV(RXC0))); + return UDR0; + } + else if(bootuart == 2) { + while(!(UCSR1A & _BV(RXC1))); + return UDR1; + } + return 0; +#elif defined(__AVR_ATmega168__) || defined(__AVR_ATmega328P__) + uint32_t count = 0; + while(!(UCSR0A & _BV(RXC0))){ + /* 20060803 DojoCorp:: Addon coming from the previous Bootloader*/ + /* HACKME:: here is a good place to count times*/ + count++; + if (count > MAX_TIME_COUNT) + app_start(); + } + return UDR0; +#else + /* m8,16,32,169,8515,8535,163 */ + uint32_t count = 0; + while(!(UCSRA & _BV(RXC))){ + /* 20060803 DojoCorp:: Addon coming from the previous Bootloader*/ + /* HACKME:: here is a good place to count times*/ + count++; + if (count > MAX_TIME_COUNT) + app_start(); + } + return UDR; +#endif +} + + +void getNch(uint8_t count) +{ + while(count--) { +#ifdef __AVR_ATmega128__ + if(bootuart == 1) { + while(!(UCSR0A & _BV(RXC0))); + UDR0; + } + else if(bootuart == 2) { + while(!(UCSR1A & _BV(RXC1))); + UDR1; + } +#elif defined(__AVR_ATmega168__) || defined(__AVR_ATmega328P__) + getch(); +#else + /* m8,16,32,169,8515,8535,163 */ + /* 20060803 DojoCorp:: Addon coming from the previous Bootloader*/ + //while(!(UCSRA & _BV(RXC))); + //UDR; + getch(); // need to handle time out +#endif + } +} + + +void byte_response(uint8_t val) +{ + if (getch() == ' ') { + putch(0x14); + putch(val); + putch(0x10); + } else { + if (++error_count == MAX_ERROR_COUNT) + app_start(); + } +} + + +void nothing_response(void) +{ + if (getch() == ' ') { + putch(0x14); + putch(0x10); + } else { + if (++error_count == MAX_ERROR_COUNT) + app_start(); + } +} + +void flash_led(uint8_t count) +{ + while (count--) { + LED_PORT |= _BV(LED); + _delay_ms(100); + LED_PORT &= ~_BV(LED); + _delay_ms(100); + } +} + + +/* end of file ATmegaBOOT.c */ diff --git a/bootloaders/atmega/ATmegaBOOT_168_atmega328.hex b/bootloaders/atmega/ATmegaBOOT_168_atmega328.hex new file mode 100644 index 0000000..43a8b30 --- /dev/null +++ b/bootloaders/atmega/ATmegaBOOT_168_atmega328.hex @@ -0,0 +1,125 @@ +:107800000C94343C0C94513C0C94513C0C94513CE1 +:107810000C94513C0C94513C0C94513C0C94513CB4 +:107820000C94513C0C94513C0C94513C0C94513CA4 +:107830000C94513C0C94513C0C94513C0C94513C94 +:107840000C94513C0C94513C0C94513C0C94513C84 +:107850000C94513C0C94513C0C94513C0C94513C74 +:107860000C94513C0C94513C11241FBECFEFD8E036 +:10787000DEBFCDBF11E0A0E0B1E0ECE9FFE702C060 +:1078800005900D92A230B107D9F712E0A2E0B1E065 +:1078900001C01D92AD30B107E1F70E942D3D0C945F +:1078A000CC3F0C94003C982F959595959595959582 +:1078B000905D8F708A307CF0282F295A8091C0000B +:1078C00085FFFCCF9093C6008091C00085FFFCCF60 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b/bootloaders/atmega/Makefile @@ -0,0 +1,194 @@ +# Makefile for ATmegaBOOT +# E.Lins, 18.7.2005 +# $Id$ +# +# Instructions +# +# To make bootloader .hex file: +# make diecimila +# make lilypad +# make ng +# etc... +# +# To burn bootloader .hex file: +# make diecimila_isp +# make lilypad_isp +# make ng_isp +# etc... + +# program name should not be changed... +PROGRAM = ATmegaBOOT_168 + +# enter the parameters for the avrdude isp tool +ISPTOOL = stk500v2 +ISPPORT = usb +ISPSPEED = -b 115200 + +MCU_TARGET = atmega168 +LDSECTION = --section-start=.text=0x3800 + +# the efuse should really be 0xf8; since, however, only the lower +# three bits of that byte are used on the atmega168, avrdude gets +# confused if you specify 1's for the higher bits, see: +# http://tinker.it/now/2007/02/24/the-tale-of-avrdude-atmega168-and-extended-bits-fuses/ +# +# similarly, the lock bits should be 0xff instead of 0x3f (to +# unlock the bootloader section) and 0xcf instead of 0x0f (to +# lock it), but since the high two bits of the lock byte are +# unused, avrdude would get confused. + +ISPFUSES = avrdude -c $(ISPTOOL) -p $(MCU_TARGET) -P $(ISPPORT) $(ISPSPEED) \ +-e -u -U lock:w:0x3f:m -U efuse:w:0x$(EFUSE):m -U hfuse:w:0x$(HFUSE):m -U lfuse:w:0x$(LFUSE):m +ISPFLASH = avrdude -c $(ISPTOOL) -p $(MCU_TARGET) -P $(ISPPORT) $(ISPSPEED) \ +-U flash:w:$(PROGRAM)_$(TARGET).hex -U lock:w:0x0f:m + +STK500 = "C:\Program Files\Atmel\AVR Tools\STK500\Stk500.exe" +STK500-1 = $(STK500) -e -d$(MCU_TARGET) -pf -vf -if$(PROGRAM)_$(TARGET).hex \ +-lFF -LFF -f$(HFUSE)$(LFUSE) -EF8 -ms -q -cUSB -I200kHz -s -wt +STK500-2 = $(STK500) -d$(MCU_TARGET) -ms -q -lCF -LCF -cUSB -I200kHz -s -wt + + +OBJ = $(PROGRAM).o +OPTIMIZE = -O2 + +DEFS = +LIBS = + +CC = avr-gcc + +# Override is only needed by avr-lib build system. + +override CFLAGS = -g -Wall $(OPTIMIZE) -mmcu=$(MCU_TARGET) -DF_CPU=$(AVR_FREQ) $(DEFS) +override LDFLAGS = -Wl,$(LDSECTION) +#override LDFLAGS = -Wl,-Map,$(PROGRAM).map,$(LDSECTION) + +OBJCOPY = avr-objcopy +OBJDUMP = avr-objdump + +all: + +lilypad: TARGET = lilypad +lilypad: CFLAGS += '-DMAX_TIME_COUNT=F_CPU>>1' '-DNUM_LED_FLASHES=3' +lilypad: AVR_FREQ = 8000000L +lilypad: $(PROGRAM)_lilypad.hex + +lilypad_isp: lilypad +lilypad_isp: TARGET = lilypad +lilypad_isp: HFUSE = DD +lilypad_isp: LFUSE = E2 +lilypad_isp: EFUSE = 00 +lilypad_isp: isp + +lilypad_resonator: TARGET = lilypad_resonator +lilypad_resonator: CFLAGS += '-DMAX_TIME_COUNT=F_CPU>>4' '-DNUM_LED_FLASHES=3' +lilypad_resonator: AVR_FREQ = 8000000L +lilypad_resonator: $(PROGRAM)_lilypad_resonator.hex + +lilypad_resonator_isp: lilypad_resonator +lilypad_resonator_isp: TARGET = lilypad_resonator +lilypad_resonator_isp: HFUSE = DD +lilypad_resonator_isp: LFUSE = C6 +lilypad_resonator_isp: EFUSE = 00 +lilypad_resonator_isp: isp + +pro8: TARGET = pro_8MHz +pro8: CFLAGS += '-DMAX_TIME_COUNT=F_CPU>>4' '-DNUM_LED_FLASHES=1' '-DWATCHDOG_MODS' +pro8: AVR_FREQ = 8000000L +pro8: $(PROGRAM)_pro_8MHz.hex + +pro8_isp: pro8 +pro8_isp: TARGET = pro_8MHz +pro8_isp: HFUSE = DD +pro8_isp: LFUSE = C6 +pro8_isp: EFUSE = 00 +pro8_isp: isp + +pro16: TARGET = pro_16MHz +pro16: CFLAGS += '-DMAX_TIME_COUNT=F_CPU>>4' '-DNUM_LED_FLASHES=1' '-DWATCHDOG_MODS' +pro16: AVR_FREQ = 16000000L +pro16: $(PROGRAM)_pro_16MHz.hex + +pro16_isp: pro16 +pro16_isp: TARGET = pro_16MHz +pro16_isp: HFUSE = DD +pro16_isp: LFUSE = C6 +pro16_isp: EFUSE = 00 +pro16_isp: isp + +pro20: TARGET = pro_20mhz +pro20: CFLAGS += '-DMAX_TIME_COUNT=F_CPU>>4' '-DNUM_LED_FLASHES=1' '-DWATCHDOG_MODS' +pro20: AVR_FREQ = 20000000L +pro20: $(PROGRAM)_pro_20mhz.hex + +pro20_isp: pro20 +pro20_isp: TARGET = pro_20mhz +pro20_isp: HFUSE = DD +pro20_isp: LFUSE = C6 +pro20_isp: EFUSE = 00 +pro20_isp: isp + +diecimila: TARGET = diecimila +diecimila: CFLAGS += '-DMAX_TIME_COUNT=F_CPU>>4' '-DNUM_LED_FLASHES=1' +diecimila: AVR_FREQ = 16000000L +diecimila: $(PROGRAM)_diecimila.hex + +diecimila_isp: diecimila +diecimila_isp: TARGET = diecimila +diecimila_isp: HFUSE = DD +diecimila_isp: LFUSE = FF +diecimila_isp: EFUSE = 00 +diecimila_isp: isp + +ng: TARGET = ng +ng: CFLAGS += '-DMAX_TIME_COUNT=F_CPU>>1' '-DNUM_LED_FLASHES=3' +ng: AVR_FREQ = 16000000L +ng: $(PROGRAM)_ng.hex + +ng_isp: ng +ng_isp: TARGET = ng +ng_isp: HFUSE = DD +ng_isp: LFUSE = FF +ng_isp: EFUSE = 00 +ng_isp: isp + +atmega328: TARGET = atmega328 +atmega328: MCU_TARGET = atmega328p +atmega328: CFLAGS += '-DMAX_TIME_COUNT=F_CPU>>4' '-DNUM_LED_FLASHES=1' -DBAUD_RATE=57600 +atmega328: AVR_FREQ = 16000000L +atmega328: LDSECTION = --section-start=.text=0x7800 +atmega328: $(PROGRAM)_atmega328.hex + +atmega328_isp: atmega328 +atmega328_isp: TARGET = atmega328 +atmega328_isp: MCU_TARGET = atmega328p +atmega328_isp: HFUSE = DA +atmega328_isp: LFUSE = FF +atmega328_isp: EFUSE = 05 +atmega328_isp: isp + +isp: $(TARGET) + $(ISPFUSES) + $(ISPFLASH) + +isp-stk500: $(PROGRAM)_$(TARGET).hex + $(STK500-1) + $(STK500-2) + +%.elf: $(OBJ) + $(CC) $(CFLAGS) $(LDFLAGS) -o $@ $^ $(LIBS) + +clean: + rm -rf *.o *.elf *.lst *.map *.sym *.lss *.eep *.srec *.bin *.hex + +%.lst: %.elf + $(OBJDUMP) -h -S $< > $@ + +%.hex: %.elf + $(OBJCOPY) -j .text -j .data -O ihex $< $@ + +%.srec: %.elf + $(OBJCOPY) -j .text -j .data -O srec $< $@ + +%.bin: %.elf + $(OBJCOPY) -j .text -j .data -O binary $< $@ + diff --git a/bootloaders/atmega168/ATmegaBOOT_168.c b/bootloaders/atmega168/ATmegaBOOT_168.c deleted file mode 100755 index 9413f86..0000000 --- a/bootloaders/atmega168/ATmegaBOOT_168.c +++ /dev/null @@ -1,992 +0,0 @@ -/**********************************************************/ -/* Serial Bootloader for Atmel megaAVR Controllers */ -/* */ -/* tested with ATmega8, ATmega128 and ATmega168 */ -/* should work with other mega's, see code for details */ -/* */ -/* ATmegaBOOT.c */ -/* */ -/* 20070626: hacked for Arduino Diecimila (which auto- */ -/* resets when a USB connection is made to it) */ -/* by D. Mellis */ -/* 20060802: hacked for Arduino by D. Cuartielles */ -/* based on a previous hack by D. Mellis */ -/* and D. Cuartielles */ -/* */ -/* Monitor and debug functions were added to the original */ -/* code by Dr. Erik Lins, chip45.com. (See below) */ -/* */ -/* Thanks to Karl Pitrich for fixing a bootloader pin */ -/* problem and more informative LED blinking! */ -/* */ -/* For the latest version see: */ -/* http://www.chip45.com/ */ -/* */ -/* ------------------------------------------------------ */ -/* */ -/* based on stk500boot.c */ -/* Copyright (c) 2003, Jason P. Kyle */ -/* All rights reserved. */ -/* see avr1.org for original file and information */ -/* */ -/* 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 */ -/* */ -/* Licence can be viewed at */ -/* http://www.fsf.org/licenses/gpl.txt */ -/* */ -/* Target = Atmel AVR m128,m64,m32,m16,m8,m162,m163,m169, */ -/* m8515,m8535. ATmega161 has a very small boot block so */ -/* isn't supported. */ -/* */ -/* Tested with m168 */ -/**********************************************************/ - -/* $Id$ */ - - -/* some includes */ -#include -#include -#include -#include -#include -#include - -/* the current avr-libc eeprom functions do not support the ATmega168 */ -/* own eeprom write/read functions are used instead */ -#if !defined(__AVR_ATmega168__) || !defined(__AVR_ATmega328P__) -#include -#endif - -/* Use the F_CPU defined in Makefile */ - -/* 20060803: hacked by DojoCorp */ -/* 20070626: hacked by David A. Mellis to decrease waiting time for auto-reset */ -/* set the waiting time for the bootloader */ -/* get this from the Makefile instead */ -/* #define MAX_TIME_COUNT (F_CPU>>4) */ - -/* 20070707: hacked by David A. Mellis - after this many errors give up and launch application */ -#define MAX_ERROR_COUNT 5 - -/* set the UART baud rate */ -/* 20060803: hacked by DojoCorp */ -//#define BAUD_RATE 115200 -#ifndef BAUD_RATE -#define BAUD_RATE 19200 -#endif - - -/* SW_MAJOR and MINOR needs to be updated from time to time to avoid warning message from AVR Studio */ -/* never allow AVR Studio to do an update !!!! */ -#define HW_VER 0x02 -#define SW_MAJOR 0x01 -#define SW_MINOR 0x10 - - -/* Adjust to suit whatever pin your hardware uses to enter the bootloader */ -/* ATmega128 has two UARTS so two pins are used to enter bootloader and select UART */ -/* BL0... means UART0, BL1... means UART1 */ -#ifdef __AVR_ATmega128__ -#define BL_DDR DDRF -#define BL_PORT PORTF -#define BL_PIN PINF -#define BL0 PINF7 -#define BL1 PINF6 -#else -/* other ATmegas have only one UART, so only one pin is defined to enter bootloader */ -#define BL_DDR DDRD -#define BL_PORT PORTD -#define BL_PIN PIND -#define BL PIND6 -#endif - - -/* onboard LED is used to indicate, that the bootloader was entered (3x flashing) */ -/* if monitor functions are included, LED goes on after monitor was entered */ -#ifdef __AVR_ATmega128__ -/* Onboard LED is connected to pin PB7 (e.g. Crumb128, PROBOmega128, Savvy128) */ -#define LED_DDR DDRB -#define LED_PORT PORTB -#define LED_PIN PINB -#define LED PINB7 -#else -/* Onboard LED is connected to pin PB2 (e.g. Crumb8, Crumb168) */ -#define LED_DDR DDRB -#define LED_PORT PORTB -#define LED_PIN PINB -/* 20060803: hacked by DojoCorp, LED pin is B5 in Arduino */ -/* #define LED PINB2 */ -#define LED PINB5 -#endif - - -/* monitor functions will only be compiled when using ATmega128, due to bootblock size constraints */ -#ifdef __AVR_ATmega128__ -#define MONITOR -#endif - - -/* define various device id's */ -/* manufacturer byte is always the same */ -#define SIG1 0x1E // Yep, Atmel is the only manufacturer of AVR micros. Single source :( - -#if defined __AVR_ATmega128__ -#define SIG2 0x97 -#define SIG3 0x02 -#define PAGE_SIZE 0x80U //128 words - -#elif defined __AVR_ATmega64__ -#define SIG2 0x96 -#define SIG3 0x02 -#define PAGE_SIZE 0x80U //128 words - -#elif defined __AVR_ATmega32__ -#define SIG2 0x95 -#define SIG3 0x02 -#define PAGE_SIZE 0x40U //64 words - -#elif defined __AVR_ATmega16__ -#define SIG2 0x94 -#define SIG3 0x03 -#define PAGE_SIZE 0x40U //64 words - -#elif defined __AVR_ATmega8__ -#define SIG2 0x93 -#define SIG3 0x07 -#define PAGE_SIZE 0x20U //32 words - -#elif defined __AVR_ATmega88__ -#define SIG2 0x93 -#define SIG3 0x0a -#define PAGE_SIZE 0x20U //32 words - -#elif defined __AVR_ATmega168__ -#define SIG2 0x94 -#define SIG3 0x06 -#define PAGE_SIZE 0x40U //64 words - -#elif defined __AVR_ATmega328P__ -#define SIG2 0x95 -#define SIG3 0x0F -#define PAGE_SIZE 0x40U //64 words - -#elif defined __AVR_ATmega162__ -#define SIG2 0x94 -#define SIG3 0x04 -#define PAGE_SIZE 0x40U //64 words - -#elif defined __AVR_ATmega163__ -#define SIG2 0x94 -#define SIG3 0x02 -#define PAGE_SIZE 0x40U //64 words - -#elif defined __AVR_ATmega169__ -#define SIG2 0x94 -#define SIG3 0x05 -#define PAGE_SIZE 0x40U //64 words - -#elif defined __AVR_ATmega8515__ -#define SIG2 0x93 -#define SIG3 0x06 -#define PAGE_SIZE 0x20U //32 words - -#elif defined __AVR_ATmega8535__ -#define SIG2 0x93 -#define SIG3 0x08 -#define PAGE_SIZE 0x20U //32 words -#endif - - -/* function prototypes */ -void putch(char); -char getch(void); -void getNch(uint8_t); -void byte_response(uint8_t); -void nothing_response(void); -char gethex(void); -void puthex(char); -void flash_led(uint8_t); - -/* some variables */ -union address_union { - uint16_t word; - uint8_t byte[2]; -} address; - -union length_union { - uint16_t word; - uint8_t byte[2]; -} length; - -struct flags_struct { - unsigned eeprom : 1; - unsigned rampz : 1; -} flags; - -uint8_t buff[256]; -uint8_t address_high; - -uint8_t pagesz=0x80; - -uint8_t i; -uint8_t bootuart = 0; - -uint8_t error_count = 0; - -void (*app_start)(void) = 0x0000; - - -/* main program starts here */ -int main(void) -{ - uint8_t ch,ch2; - uint16_t w; - -#ifdef WATCHDOG_MODS - ch = MCUSR; - MCUSR = 0; - - WDTCSR |= _BV(WDCE) | _BV(WDE); - WDTCSR = 0; - - // Check if the WDT was used to reset, in which case we dont bootload and skip straight to the code. woot. - if (! (ch & _BV(EXTRF))) // if its a not an external reset... - app_start(); // skip bootloader -#else - asm volatile("nop\n\t"); -#endif - - /* set pin direction for bootloader pin and enable pullup */ - /* for ATmega128, two pins need to be initialized */ -#ifdef __AVR_ATmega128__ - BL_DDR &= ~_BV(BL0); - BL_DDR &= ~_BV(BL1); - BL_PORT |= _BV(BL0); - BL_PORT |= _BV(BL1); -#else - /* We run the bootloader regardless of the state of this pin. Thus, don't - put it in a different state than the other pins. --DAM, 070709 - BL_DDR &= ~_BV(BL); - BL_PORT |= _BV(BL); - */ -#endif - - -#ifdef __AVR_ATmega128__ - /* check which UART should be used for booting */ - if(bit_is_clear(BL_PIN, BL0)) { - bootuart = 1; - } - else if(bit_is_clear(BL_PIN, BL1)) { - bootuart = 2; - } -#endif - - /* check if flash is programmed already, if not start bootloader anyway */ - if(pgm_read_byte_near(0x0000) != 0xFF) { - -#ifdef __AVR_ATmega128__ - /* no UART was selected, start application */ - if(!bootuart) { - app_start(); - } -#else - /* check if bootloader pin is set low */ - /* we don't start this part neither for the m8, nor m168 */ - //if(bit_is_set(BL_PIN, BL)) { - // app_start(); - //} -#endif - } - -#ifdef __AVR_ATmega128__ - /* no bootuart was selected, default to uart 0 */ - if(!bootuart) { - bootuart = 1; - } -#endif - - - /* initialize UART(s) depending on CPU defined */ -#ifdef __AVR_ATmega128__ - if(bootuart == 1) { - UBRR0L = (uint8_t)(F_CPU/(BAUD_RATE*16L)-1); - UBRR0H = (F_CPU/(BAUD_RATE*16L)-1) >> 8; - UCSR0A = 0x00; - UCSR0C = 0x06; - UCSR0B = _BV(TXEN0)|_BV(RXEN0); - } - if(bootuart == 2) { - UBRR1L = (uint8_t)(F_CPU/(BAUD_RATE*16L)-1); - UBRR1H = (F_CPU/(BAUD_RATE*16L)-1) >> 8; - UCSR1A = 0x00; - UCSR1C = 0x06; - UCSR1B = _BV(TXEN1)|_BV(RXEN1); - } -#elif defined __AVR_ATmega163__ - UBRR = (uint8_t)(F_CPU/(BAUD_RATE*16L)-1); - UBRRHI = (F_CPU/(BAUD_RATE*16L)-1) >> 8; - UCSRA = 0x00; - UCSRB = _BV(TXEN)|_BV(RXEN); -#elif defined(__AVR_ATmega168__) || defined(__AVR_ATmega328P__) - UBRR0L = (uint8_t)(F_CPU/(BAUD_RATE*16L)-1); - UBRR0H = (F_CPU/(BAUD_RATE*16L)-1) >> 8; - UCSR0B = (1<>8; // set baud rate - UBRRL = (((F_CPU/BAUD_RATE)/16)-1); - UCSRB = (1<> 8; - UCSRA = 0x00; - UCSRC = 0x06; - UCSRB = _BV(TXEN)|_BV(RXEN); -#endif - - /* set LED pin as output */ - LED_DDR |= _BV(LED); - - - /* flash onboard LED to signal entering of bootloader */ -#ifdef __AVR_ATmega128__ - // 4x for UART0, 5x for UART1 - flash_led(NUM_LED_FLASHES + bootuart); -#else - flash_led(NUM_LED_FLASHES); -#endif - - /* 20050803: by DojoCorp, this is one of the parts provoking the - system to stop listening, cancelled from the original */ - //putch('\0'); - - - /* forever loop */ - for (;;) { - - /* get character from UART */ - ch = getch(); - - /* A bunch of if...else if... gives smaller code than switch...case ! */ - - /* Hello is anyone home ? */ - if(ch=='0') { - nothing_response(); - } - - - /* Request programmer ID */ - /* Not using PROGMEM string due to boot block in m128 being beyond 64kB boundry */ - /* Would need to selectively manipulate RAMPZ, and it's only 9 characters anyway so who cares. */ - else if(ch=='1') { - if (getch() == ' ') { - putch(0x14); - putch('A'); - putch('V'); - putch('R'); - putch(' '); - putch('I'); - putch('S'); - putch('P'); - putch(0x10); - } else { - if (++error_count == MAX_ERROR_COUNT) - app_start(); - } - } - - - /* AVR ISP/STK500 board commands DON'T CARE so default nothing_response */ - else if(ch=='@') { - ch2 = getch(); - if (ch2>0x85) getch(); - nothing_response(); - } - - - /* AVR ISP/STK500 board requests */ - else if(ch=='A') { - ch2 = getch(); - if(ch2==0x80) byte_response(HW_VER); // Hardware version - else if(ch2==0x81) byte_response(SW_MAJOR); // Software major version - else if(ch2==0x82) byte_response(SW_MINOR); // Software minor version - else if(ch2==0x98) byte_response(0x03); // Unknown but seems to be required by avr studio 3.56 - else byte_response(0x00); // Covers various unnecessary responses we don't care about - } - - - /* Device Parameters DON'T CARE, DEVICE IS FIXED */ - else if(ch=='B') { - getNch(20); - nothing_response(); - } - - - /* Parallel programming stuff DON'T CARE */ - else if(ch=='E') { - getNch(5); - nothing_response(); - } - - - /* P: Enter programming mode */ - /* R: Erase device, don't care as we will erase one page at a time anyway. */ - else if(ch=='P' || ch=='R') { - nothing_response(); - } - - - /* Leave programming mode */ - else if(ch=='Q') { - nothing_response(); -#ifdef WATCHDOG_MODS - // autoreset via watchdog (sneaky!) - WDTCSR = _BV(WDE); - while (1); // 16 ms -#endif - } - - - /* Set address, little endian. EEPROM in bytes, FLASH in words */ - /* Perhaps extra address bytes may be added in future to support > 128kB FLASH. */ - /* This might explain why little endian was used here, big endian used everywhere else. */ - else if(ch=='U') { - address.byte[0] = getch(); - address.byte[1] = getch(); - nothing_response(); - } - - - /* Universal SPI programming command, disabled. Would be used for fuses and lock bits. */ - else if(ch=='V') { - if (getch() == 0x30) { - getch(); - ch = getch(); - getch(); - if (ch == 0) { - byte_response(SIG1); - } else if (ch == 1) { - byte_response(SIG2); - } else { - byte_response(SIG3); - } - } else { - getNch(3); - byte_response(0x00); - } - } - - - /* Write memory, length is big endian and is in bytes */ - else if(ch=='d') { - length.byte[1] = getch(); - length.byte[0] = getch(); - flags.eeprom = 0; - if (getch() == 'E') flags.eeprom = 1; - for (w=0;w127) address_high = 0x01; //Only possible with m128, m256 will need 3rd address byte. FIXME - else address_high = 0x00; -#ifdef __AVR_ATmega128__ - RAMPZ = address_high; -#endif - address.word = address.word << 1; //address * 2 -> byte location - /* if ((length.byte[0] & 0x01) == 0x01) length.word++; //Even up an odd number of bytes */ - if ((length.byte[0] & 0x01)) length.word++; //Even up an odd number of bytes - cli(); //Disable interrupts, just to be sure - // HACKME: EEPE used to be EEWE - while(bit_is_set(EECR,EEPE)); //Wait for previous EEPROM writes to complete - asm volatile( - "clr r17 \n\t" //page_word_count - "lds r30,address \n\t" //Address of FLASH location (in bytes) - "lds r31,address+1 \n\t" - "ldi r28,lo8(buff) \n\t" //Start of buffer array in RAM - "ldi r29,hi8(buff) \n\t" - "lds r24,length \n\t" //Length of data to be written (in bytes) - "lds r25,length+1 \n\t" - "length_loop: \n\t" //Main loop, repeat for number of words in block - "cpi r17,0x00 \n\t" //If page_word_count=0 then erase page - "brne no_page_erase \n\t" - "wait_spm1: \n\t" - "lds r16,%0 \n\t" //Wait for previous spm to complete - "andi r16,1 \n\t" - "cpi r16,1 \n\t" - "breq wait_spm1 \n\t" - "ldi r16,0x03 \n\t" //Erase page pointed to by Z - "sts %0,r16 \n\t" - "spm \n\t" -#ifdef __AVR_ATmega163__ - ".word 0xFFFF \n\t" - "nop \n\t" -#endif - "wait_spm2: \n\t" - "lds r16,%0 \n\t" //Wait for previous spm to complete - "andi r16,1 \n\t" - "cpi r16,1 \n\t" - "breq wait_spm2 \n\t" - - "ldi r16,0x11 \n\t" //Re-enable RWW section - "sts %0,r16 \n\t" - "spm \n\t" -#ifdef __AVR_ATmega163__ - ".word 0xFFFF \n\t" - "nop \n\t" -#endif - "no_page_erase: \n\t" - "ld r0,Y+ \n\t" //Write 2 bytes into page buffer - "ld r1,Y+ \n\t" - - "wait_spm3: \n\t" - "lds r16,%0 \n\t" //Wait for previous spm to complete - "andi r16,1 \n\t" - "cpi r16,1 \n\t" - "breq wait_spm3 \n\t" - "ldi r16,0x01 \n\t" //Load r0,r1 into FLASH page buffer - "sts %0,r16 \n\t" - "spm \n\t" - - "inc r17 \n\t" //page_word_count++ - "cpi r17,%1 \n\t" - "brlo same_page \n\t" //Still same page in FLASH - "write_page: \n\t" - "clr r17 \n\t" //New page, write current one first - "wait_spm4: \n\t" - "lds r16,%0 \n\t" //Wait for previous spm to complete - "andi r16,1 \n\t" - "cpi r16,1 \n\t" - "breq wait_spm4 \n\t" -#ifdef __AVR_ATmega163__ - "andi r30,0x80 \n\t" // m163 requires Z6:Z1 to be zero during page write -#endif - "ldi r16,0x05 \n\t" //Write page pointed to by Z - "sts %0,r16 \n\t" - "spm \n\t" -#ifdef __AVR_ATmega163__ - ".word 0xFFFF \n\t" - "nop \n\t" - "ori r30,0x7E \n\t" // recover Z6:Z1 state after page write (had to be zero during write) -#endif - "wait_spm5: \n\t" - "lds r16,%0 \n\t" //Wait for previous spm to complete - "andi r16,1 \n\t" - "cpi r16,1 \n\t" - "breq wait_spm5 \n\t" - "ldi r16,0x11 \n\t" //Re-enable RWW section - "sts %0,r16 \n\t" - "spm \n\t" -#ifdef __AVR_ATmega163__ - ".word 0xFFFF \n\t" - "nop \n\t" -#endif - "same_page: \n\t" - "adiw r30,2 \n\t" //Next word in FLASH - "sbiw r24,2 \n\t" //length-2 - "breq final_write \n\t" //Finished - "rjmp length_loop \n\t" - "final_write: \n\t" - "cpi r17,0 \n\t" - "breq block_done \n\t" - "adiw r24,2 \n\t" //length+2, fool above check on length after short page write - "rjmp write_page \n\t" - "block_done: \n\t" - "clr __zero_reg__ \n\t" //restore zero register -#if defined(__AVR_ATmega168__) || defined(__AVR_ATmega328P__) - : "=m" (SPMCSR) : "M" (PAGE_SIZE) : "r0","r16","r17","r24","r25","r28","r29","r30","r31" -#else - : "=m" (SPMCR) : "M" (PAGE_SIZE) : "r0","r16","r17","r24","r25","r28","r29","r30","r31" -#endif - ); - /* Should really add a wait for RWW section to be enabled, don't actually need it since we never */ - /* exit the bootloader without a power cycle anyhow */ - } - putch(0x14); - putch(0x10); - } else { - if (++error_count == MAX_ERROR_COUNT) - app_start(); - } - } - - - /* Read memory block mode, length is big endian. */ - else if(ch=='t') { - length.byte[1] = getch(); - length.byte[0] = getch(); -#if defined __AVR_ATmega128__ - if (address.word>0x7FFF) flags.rampz = 1; // No go with m256, FIXME - else flags.rampz = 0; -#endif - address.word = address.word << 1; // address * 2 -> byte location - if (getch() == 'E') flags.eeprom = 1; - else flags.eeprom = 0; - if (getch() == ' ') { // Command terminator - putch(0x14); - for (w=0;w < length.word;w++) { // Can handle odd and even lengths okay - if (flags.eeprom) { // Byte access EEPROM read -#if defined(__AVR_ATmega168__) || defined(__AVR_ATmega328P__) - while(EECR & (1<= 'a') { - return (a - 'a' + 0x0a); - } else if(a >= '0') { - return(a - '0'); - } - return a; -} - - -char gethex(void) { - return (gethexnib() << 4) + gethexnib(); -} - - -void puthex(char ch) { - char ah; - - ah = ch >> 4; - if(ah >= 0x0a) { - ah = ah - 0x0a + 'a'; - } else { - ah += '0'; - } - - ch &= 0x0f; - if(ch >= 0x0a) { - ch = ch - 0x0a + 'a'; - } else { - ch += '0'; - } - - putch(ah); - putch(ch); -} - - -void putch(char ch) -{ -#ifdef __AVR_ATmega128__ - if(bootuart == 1) { - while (!(UCSR0A & _BV(UDRE0))); - UDR0 = ch; - } - else if (bootuart == 2) { - while (!(UCSR1A & _BV(UDRE1))); - UDR1 = ch; - } -#elif defined(__AVR_ATmega168__) || defined(__AVR_ATmega328P__) - while (!(UCSR0A & _BV(UDRE0))); - UDR0 = ch; -#else - /* m8,16,32,169,8515,8535,163 */ - while (!(UCSRA & _BV(UDRE))); - UDR = ch; -#endif -} - - -char getch(void) -{ -#ifdef __AVR_ATmega128__ - if(bootuart == 1) { - while(!(UCSR0A & _BV(RXC0))); - return UDR0; - } - else if(bootuart == 2) { - while(!(UCSR1A & _BV(RXC1))); - return UDR1; - } - return 0; -#elif defined(__AVR_ATmega168__) || defined(__AVR_ATmega328P__) - uint32_t count = 0; - while(!(UCSR0A & _BV(RXC0))){ - /* 20060803 DojoCorp:: Addon coming from the previous Bootloader*/ - /* HACKME:: here is a good place to count times*/ - count++; - if (count > MAX_TIME_COUNT) - app_start(); - } - return UDR0; -#else - /* m8,16,32,169,8515,8535,163 */ - uint32_t count = 0; - while(!(UCSRA & _BV(RXC))){ - /* 20060803 DojoCorp:: Addon coming from the previous Bootloader*/ - /* HACKME:: here is a good place to count times*/ - count++; - if (count > MAX_TIME_COUNT) - app_start(); - } - return UDR; -#endif -} - - -void getNch(uint8_t count) -{ - while(count--) { -#ifdef __AVR_ATmega128__ - if(bootuart == 1) { - while(!(UCSR0A & _BV(RXC0))); - UDR0; - } - else if(bootuart == 2) { - while(!(UCSR1A & _BV(RXC1))); - UDR1; - } -#elif defined(__AVR_ATmega168__) || defined(__AVR_ATmega328P__) - getch(); -#else - /* m8,16,32,169,8515,8535,163 */ - /* 20060803 DojoCorp:: Addon coming from the previous Bootloader*/ - //while(!(UCSRA & _BV(RXC))); - //UDR; - getch(); // need to handle time out -#endif - } -} - - -void byte_response(uint8_t val) -{ - if (getch() == ' ') { - putch(0x14); - putch(val); - putch(0x10); - } else { - if (++error_count == MAX_ERROR_COUNT) - app_start(); - } -} - - -void nothing_response(void) -{ - if (getch() == ' ') { - putch(0x14); - putch(0x10); - } else { - if (++error_count == MAX_ERROR_COUNT) - app_start(); - } -} - -void flash_led(uint8_t count) -{ - while (count--) { - LED_PORT |= _BV(LED); - _delay_ms(100); - LED_PORT &= ~_BV(LED); - _delay_ms(100); - } -} - - -/* end of file ATmegaBOOT.c */ diff --git a/bootloaders/atmega168/ATmegaBOOT_168_atmega328.hex b/bootloaders/atmega168/ATmegaBOOT_168_atmega328.hex deleted file mode 100644 index 43a8b30..0000000 --- a/bootloaders/atmega168/ATmegaBOOT_168_atmega328.hex +++ /dev/null @@ -1,125 +0,0 @@ -:107800000C94343C0C94513C0C94513C0C94513CE1 -:107810000C94513C0C94513C0C94513C0C94513CB4 -:107820000C94513C0C94513C0C94513C0C94513CA4 -:107830000C94513C0C94513C0C94513C0C94513C94 -:107840000C94513C0C94513C0C94513C0C94513C84 -:107850000C94513C0C94513C0C94513C0C94513C74 -:107860000C94513C0C94513C11241FBECFEFD8E036 -:10787000DEBFCDBF11E0A0E0B1E0ECE9FFE702C060 -:1078800005900D92A230B107D9F712E0A2E0B1E065 -:1078900001C01D92AD30B107E1F70E942D3D0C945F -:1078A000CC3F0C94003C982F959595959595959582 -:1078B000905D8F708A307CF0282F295A8091C0000B -:1078C00085FFFCCF9093C6008091C00085FFFCCF60 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b/bootloaders/atmega168/Makefile deleted file mode 100755 index 861cedd..0000000 --- a/bootloaders/atmega168/Makefile +++ /dev/null @@ -1,194 +0,0 @@ -# Makefile for ATmegaBOOT -# E.Lins, 18.7.2005 -# $Id$ -# -# Instructions -# -# To make bootloader .hex file: -# make diecimila -# make lilypad -# make ng -# etc... -# -# To burn bootloader .hex file: -# make diecimila_isp -# make lilypad_isp -# make ng_isp -# etc... - -# program name should not be changed... -PROGRAM = ATmegaBOOT_168 - -# enter the parameters for the avrdude isp tool -ISPTOOL = stk500v2 -ISPPORT = usb -ISPSPEED = -b 115200 - -MCU_TARGET = atmega168 -LDSECTION = --section-start=.text=0x3800 - -# the efuse should really be 0xf8; since, however, only the lower -# three bits of that byte are used on the atmega168, avrdude gets -# confused if you specify 1's for the higher bits, see: -# http://tinker.it/now/2007/02/24/the-tale-of-avrdude-atmega168-and-extended-bits-fuses/ -# -# similarly, the lock bits should be 0xff instead of 0x3f (to -# unlock the bootloader section) and 0xcf instead of 0x0f (to -# lock it), but since the high two bits of the lock byte are -# unused, avrdude would get confused. - -ISPFUSES = avrdude -c $(ISPTOOL) -p $(MCU_TARGET) -P $(ISPPORT) $(ISPSPEED) \ --e -u -U lock:w:0x3f:m -U efuse:w:0x$(EFUSE):m -U hfuse:w:0x$(HFUSE):m -U lfuse:w:0x$(LFUSE):m -ISPFLASH = avrdude -c $(ISPTOOL) -p $(MCU_TARGET) -P $(ISPPORT) $(ISPSPEED) \ --U flash:w:$(PROGRAM)_$(TARGET).hex -U lock:w:0x0f:m - -STK500 = "C:\Program Files\Atmel\AVR Tools\STK500\Stk500.exe" -STK500-1 = $(STK500) -e -d$(MCU_TARGET) -pf -vf -if$(PROGRAM)_$(TARGET).hex \ --lFF -LFF -f$(HFUSE)$(LFUSE) -EF8 -ms -q -cUSB -I200kHz -s -wt -STK500-2 = $(STK500) -d$(MCU_TARGET) -ms -q -lCF -LCF -cUSB -I200kHz -s -wt - - -OBJ = $(PROGRAM).o -OPTIMIZE = -O2 - -DEFS = -LIBS = - -CC = avr-gcc - -# Override is only needed by avr-lib build system. - -override CFLAGS = -g -Wall $(OPTIMIZE) -mmcu=$(MCU_TARGET) -DF_CPU=$(AVR_FREQ) $(DEFS) -override LDFLAGS = -Wl,$(LDSECTION) -#override LDFLAGS = -Wl,-Map,$(PROGRAM).map,$(LDSECTION) - -OBJCOPY = avr-objcopy -OBJDUMP = avr-objdump - -all: - -lilypad: TARGET = lilypad -lilypad: CFLAGS += '-DMAX_TIME_COUNT=F_CPU>>1' '-DNUM_LED_FLASHES=3' -lilypad: AVR_FREQ = 8000000L -lilypad: $(PROGRAM)_lilypad.hex - -lilypad_isp: lilypad -lilypad_isp: TARGET = lilypad -lilypad_isp: HFUSE = DD -lilypad_isp: LFUSE = E2 -lilypad_isp: EFUSE = 00 -lilypad_isp: isp - -lilypad_resonator: TARGET = lilypad_resonator -lilypad_resonator: CFLAGS += '-DMAX_TIME_COUNT=F_CPU>>4' '-DNUM_LED_FLASHES=3' -lilypad_resonator: AVR_FREQ = 8000000L -lilypad_resonator: $(PROGRAM)_lilypad_resonator.hex - -lilypad_resonator_isp: lilypad_resonator -lilypad_resonator_isp: TARGET = lilypad_resonator -lilypad_resonator_isp: HFUSE = DD -lilypad_resonator_isp: LFUSE = C6 -lilypad_resonator_isp: EFUSE = 00 -lilypad_resonator_isp: isp - -pro8: TARGET = pro_8MHz -pro8: CFLAGS += '-DMAX_TIME_COUNT=F_CPU>>4' '-DNUM_LED_FLASHES=1' '-DWATCHDOG_MODS' -pro8: AVR_FREQ = 8000000L -pro8: $(PROGRAM)_pro_8MHz.hex - -pro8_isp: pro8 -pro8_isp: TARGET = pro_8MHz -pro8_isp: HFUSE = DD -pro8_isp: LFUSE = C6 -pro8_isp: EFUSE = 00 -pro8_isp: isp - -pro16: TARGET = pro_16MHz -pro16: CFLAGS += '-DMAX_TIME_COUNT=F_CPU>>4' '-DNUM_LED_FLASHES=1' '-DWATCHDOG_MODS' -pro16: AVR_FREQ = 16000000L -pro16: $(PROGRAM)_pro_16MHz.hex - -pro16_isp: pro16 -pro16_isp: TARGET = pro_16MHz -pro16_isp: HFUSE = DD -pro16_isp: LFUSE = C6 -pro16_isp: EFUSE = 00 -pro16_isp: isp - -pro20: TARGET = pro_20mhz -pro20: CFLAGS += '-DMAX_TIME_COUNT=F_CPU>>4' '-DNUM_LED_FLASHES=1' '-DWATCHDOG_MODS' -pro20: AVR_FREQ = 20000000L -pro20: $(PROGRAM)_pro_20mhz.hex - -pro20_isp: pro20 -pro20_isp: TARGET = pro_20mhz -pro20_isp: HFUSE = DD -pro20_isp: LFUSE = C6 -pro20_isp: EFUSE = 00 -pro20_isp: isp - -diecimila: TARGET = diecimila -diecimila: CFLAGS += '-DMAX_TIME_COUNT=F_CPU>>4' '-DNUM_LED_FLASHES=1' -diecimila: AVR_FREQ = 16000000L -diecimila: $(PROGRAM)_diecimila.hex - -diecimila_isp: diecimila -diecimila_isp: TARGET = diecimila -diecimila_isp: HFUSE = DD -diecimila_isp: LFUSE = FF -diecimila_isp: EFUSE = 00 -diecimila_isp: isp - -ng: TARGET = ng -ng: CFLAGS += '-DMAX_TIME_COUNT=F_CPU>>1' '-DNUM_LED_FLASHES=3' -ng: AVR_FREQ = 16000000L -ng: $(PROGRAM)_ng.hex - -ng_isp: ng -ng_isp: TARGET = ng -ng_isp: HFUSE = DD -ng_isp: LFUSE = FF -ng_isp: EFUSE = 00 -ng_isp: isp - -atmega328: TARGET = atmega328 -atmega328: MCU_TARGET = atmega328p -atmega328: CFLAGS += '-DMAX_TIME_COUNT=F_CPU>>4' '-DNUM_LED_FLASHES=1' -DBAUD_RATE=57600 -atmega328: AVR_FREQ = 16000000L -atmega328: LDSECTION = --section-start=.text=0x7800 -atmega328: $(PROGRAM)_atmega328.hex - -atmega328_isp: atmega328 -atmega328_isp: TARGET = atmega328 -atmega328_isp: MCU_TARGET = atmega328p -atmega328_isp: HFUSE = DA -atmega328_isp: LFUSE = FF -atmega328_isp: EFUSE = 05 -atmega328_isp: isp - -isp: $(TARGET) - $(ISPFUSES) - $(ISPFLASH) - -isp-stk500: $(PROGRAM)_$(TARGET).hex - $(STK500-1) - $(STK500-2) - -%.elf: $(OBJ) - $(CC) $(CFLAGS) $(LDFLAGS) -o $@ $^ $(LIBS) - -clean: - rm -rf *.o *.elf *.lst *.map *.sym *.lss *.eep *.srec *.bin *.hex - -%.lst: %.elf - $(OBJDUMP) -h -S $< > $@ - -%.hex: %.elf - $(OBJCOPY) -j .text -j .data -O ihex $< $@ - -%.srec: %.elf - $(OBJCOPY) -j .text -j .data -O srec $< $@ - -%.bin: %.elf - $(OBJCOPY) -j .text -j .data -O binary $< $@ - -- cgit v1.2.3-18-g5258