one wire impl

This commit is contained in:
Sergey Yarkov 2023-06-19 15:58:47 +03:00
parent 4f3f21246e
commit 6feba3786f
28 changed files with 2190 additions and 4633 deletions

1
.gitignore vendored
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NOTES.md

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{
"cmake.configureOnOpen": false
}

28
.vscode/tasks.json vendored
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{
"tasks": [
{
"label": "Compile",
"type": "shell",
"group": "build",
"command": "make",
"problemMatcher": []
},
{
"label": "Clean",
"type": "shell",
"group": "build",
"command": "make",
"args": ["clean"],
"problemMatcher": []
},
{
"label": "Flash",
"type": "shell",
"group": "build",
"command": "make",
"args": ["flash"],
"problemMatcher": []
}
],
"version": "2.0.0"
}

121
Makefile
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SRC_FILE = firmware #
MCU = t2313 # There exist several targets which are by default empty and which can be
PROGRAMMER = usbtiny # used for execution of your targets. These targets are usually executed
BUILD_DIR = build # before and after some main targets. They are:
#
# .build-pre: called before 'build' target
# .build-post: called after 'build' target
# .clean-pre: called before 'clean' target
# .clean-post: called after 'clean' target
# .clobber-pre: called before 'clobber' target
# .clobber-post: called after 'clobber' target
# .all-pre: called before 'all' target
# .all-post: called after 'all' target
# .help-pre: called before 'help' target
# .help-post: called after 'help' target
#
# Targets beginning with '.' are not intended to be called on their own.
#
# Main targets can be executed directly, and they are:
#
# build build a specific configuration
# clean remove built files from a configuration
# clobber remove all built files
# all build all configurations
# help print help mesage
#
# Targets .build-impl, .clean-impl, .clobber-impl, .all-impl, and
# .help-impl are implemented in nbproject/makefile-impl.mk.
#
# Available make variables:
#
# CND_BASEDIR base directory for relative paths
# CND_DISTDIR default top distribution directory (build artifacts)
# CND_BUILDDIR default top build directory (object files, ...)
# CONF name of current configuration
# CND_ARTIFACT_DIR_${CONF} directory of build artifact (current configuration)
# CND_ARTIFACT_NAME_${CONF} name of build artifact (current configuration)
# CND_ARTIFACT_PATH_${CONF} path to build artifact (current configuration)
# CND_PACKAGE_DIR_${CONF} directory of package (current configuration)
# CND_PACKAGE_NAME_${CONF} name of package (current configuration)
# CND_PACKAGE_PATH_${CONF} path to package (current configuration)
#
# NOCDDL
all: build_dir
avrasm2 -fI -W+ie $(SRC_FILE).asm -o ./$(BUILD_DIR)/$(SRC_FILE).hex -l ./$(BUILD_DIR)/$(SRC_FILE).lss
flash: # Environment
avrdude -c $(PROGRAMMER) -p $(MCU) -U flash:w:./$(BUILD_DIR)/$(SRC_FILE).hex:i MKDIR=mkdir
CP=cp
CCADMIN=CCadmin
RANLIB=ranlib
clean:
rm -f $(BUILD_DIR)/*
build_dir: # build
mkdir -p ${BUILD_DIR} build: .build-post
.build-pre:
# Add your pre 'build' code here...
.build-post: .build-impl
# Add your post 'build' code here...
# clean
clean: .clean-post
.clean-pre:
# Add your pre 'clean' code here...
# WARNING: the IDE does not call this target since it takes a long time to
# simply run make. Instead, the IDE removes the configuration directories
# under build and dist directly without calling make.
# This target is left here so people can do a clean when running a clean
# outside the IDE.
.clean-post: .clean-impl
# Add your post 'clean' code here...
# clobber
clobber: .clobber-post
.clobber-pre:
# Add your pre 'clobber' code here...
.clobber-post: .clobber-impl
# Add your post 'clobber' code here...
# all
all: .all-post
.all-pre:
# Add your pre 'all' code here...
.all-post: .all-impl
# Add your post 'all' code here...
# help
help: .help-post
.help-pre:
# Add your pre 'help' code here...
.help-post: .help-impl
# Add your post 'help' code here...
# include project implementation makefile
include nbproject/Makefile-impl.mk
# include project make variables
include nbproject/Makefile-variables.mk

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:0200000060C0DE
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:10023A00000000000000D9F70A95C1F71F910F913D
:0E024A000895C0F9A4B0999282F880909C00AB
:00000001FF

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54
definitions.asm Normal file
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.EQU F_CPU = 8 ; 8 Mhz
.DEF TEMP_REG_A = r16
.DEF TEMP_REG_B = r17
.DEF DELAY_16_r = r19
.DEF DELAY_8_r = r20
.DEF DISP_NUM_L = r24 ; LSB числа которое сейчас на индикаторе
.DEF DISP_NUM_H = r25 ; MSB числа которое сейчас на индикаторе
.EQU DIGIT_1_PIN = PD2 ; Пин разряда индикатора 1
.EQU DIGIT_2_PIN = PD3 ; Пин разряда индикатора 2
.EQU DIGIT_3_PIN = PD4 ; Пин разряда индикатора 3
.EQU DIGIT_4_PIN = PD5 ; Пин разряда индикатора 4
.EQU LED_ERR_PIN = PD6 ; Светодиод который говорит о том, что МК в состоянии ошибки
.EQU OW_LINE = PB1 ; Пин шины 1-Wire
.EQU OW_DDR = DDRB
.EQU OW_PIN = PINB
.DEF OW_CMD_r = r8
.DEF OWFR = r23 ; Флаги состояния для 1-Wire интерфейса
.EQU OWPRF = 0 ; 1-Wire Флаг присутствия
.EQU OWSB = 1 ; Флаг передачи одного бита
; **** КОМАНДЫ ДАТЧИКА *****************************************
.EQU DS18B20_CMD_CONVERTTEMP = 0x44
.EQU DS18B20_CMD_RSCRATCHPAD = 0xbe
.EQU DS18B20_CMD_WSCRATCHPAD = 0x4e
.EQU DS18B20_CMD_CPYSCRATCHPAD = 0x48
.EQU DS18B20_CMD_RECEEPROM = 0xb8
.EQU DS18B20_CMD_RPWRSUPPLY = 0xb4
.EQU DS18B20_CMD_SEARCHROM = 0xf0
.EQU DS18B20_CMD_READROM = 0x33
.EQU DS18B20_CMD_MATCHROM = 0x55
.EQU DS18B20_CMD_SKIPROM = 0xcc
.EQU DS18B20_CMD_ALARMSEARCH = 0xec
.EQU USI_LATCH_PIN = PB0 ; ST_CP на 74HC595
.EQU USI_DO_PIN = PB6 ; DS на 74HC595
.EQU USI_CLK_PIN = PB7 ; SH_CP на 74HC595
.EQU SW_PORT = PORTB
.EQU SW_PIN = PINB
.EQU SW_PLUS_PIN = PB2 ; Кнопка "Минус"
.EQU SW_MINUS_PIN = PB3 ; Кнопка "Плюс"
.EQU SW_SET_PIN = PB4 ; Кнопка "Установить"
.EQU UART_RX_PIN = PD0
.EQU UART_TX_PIN = PD1
.EQU MCU_STATE_DEFAULT = 0x00 ; Режим измерения температуры и сравнения с заданными параметрами
.EQU MCU_STATE_PROGRAM = 0x01 ; Режим настройки параметров в EEPROM
.EQU MCU_STATE_ERROR = 0x02 ; Режим ошибки, например когда не подключен датчик

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;***** Code ;***** Code
div16u: div16u:
clr drem16uL ; clear remainder Low byte clr drem16uL ; clear remainder Low byte
sub drem16uH,drem16uH ; clear remainder High byte and carry sub drem16uH,drem16uH ; clear remainder High byte and carry
ldi dcnt16u,17 ; init loop counter ldi dcnt16u,17 ; init loop counter
d16u_1: d16u_1:
rol dd16uL ; shift left dividend rol dd16uL ; shift left dividend
rol dd16uH rol dd16uH
dec dcnt16u ; decrement counter dec dcnt16u ; decrement counter
brne d16u_2 ; if done brne d16u_2 ; if done
ret ; return ret ; return
d16u_2: d16u_2:
rol drem16uL ; shift dividend into remainder rol drem16uL ; shift dividend into remainder
rol drem16uH rol drem16uH
sub drem16uL,dv16uL ; remainder = remainder - divisor sub drem16uL,dv16uL ; remainder = remainder - divisor
sbc drem16uH,dv16uH sbc drem16uH,dv16uH
brcc d16u_3 ; if result negative brcc d16u_3 ; if result negative
add drem16uL,dv16uL ; restore remainder add drem16uL,dv16uL ; restore remainder
adc drem16uH,dv16uH adc drem16uH,dv16uH
clc ; clear carry to be shifted into result clc ; clear carry to be shifted into result
rjmp d16u_1 ; else rjmp d16u_1 ; else
d16u_3: d16u_3:
sec ; set carry to be shifted into result sec ; set carry to be shifted into result
rjmp d16u_1 rjmp d16u_1

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div16u.hex Normal file
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:020000020000FC
:10000000EE24FF1841E1001F111F4A9509F40895DD
:10001000EE1CFF1CE21AF30A20F4E20EF31E889491
:06002000F2CF0894F0CFBE
:00000001FF

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;
; Project name: thermostat
; Description: Electronic thermostat on AVR Microcontroller
; Source code: https://github.com/sergeyyarkov/attiny2313a_thermostat
; Device: ATtiny2313A
; Device Datasheet: http://ww1.microchip.com/downloads/en/DeviceDoc/doc8246.pdf
; Package: SOIC-20W_7.5x12.8mm_P1.27mm
; Assembler: AVR macro assembler 2.2.7
; Clock frequency: 8 MHz External Crystal Oscillator
; Fuses: lfuse: 0xCF, hfuse: 0x9F, efuse: 0xFF, lock: 0xFF
;
; Written by Sergey Yarkov 22.01.2023
.INCLUDE "tn2313Adef.inc"
.LIST
.DEF TEMP_REG_A = r16
.DEF TEMP_REG_B = r17
.DEF DISP_NUM_L = r24 ; LSB числа которое сейчас на индикаторе
.DEF DISP_NUM_H = r25 ; MSB числа которое сейчас на индикаторе
.EQU DIGIT_1_PIN = PD2 ; Пин разряда индикатора 1
.EQU DIGIT_2_PIN = PD3 ; Пин разряда индикатора 2
.EQU DIGIT_3_PIN = PD4 ; Пин разряда индикатора 3
.EQU DIGIT_4_PIN = PD5 ; Пин разряда индикатора 4
.EQU LED_POWER_PIN = PD6 ; Светодиод, который говорит о том что питание подано
.EQU ONE_WIRE_LINE = PB1 ; Пин шины 1-Wire
.EQU ONE_WIRE_DDR = DDRB
.EQU ONE_WIRE_PIN = PINB
.DEF ONE_WIRE_FLAGS = r23 ; Флаги состояния для 1-Wire интерфейса
.EQU OWPRF = 0 ; 1-Wire Флаг присутствия
.EQU OWSB = 1 ; Флаг передачи одного бита
; **** КОМАНДЫ ДАТЧИКА *****************************************
.EQU DS18B20_CMD_CONVERTTEMP = 0x44
.EQU DS18B20_CMD_RSCRATCHPAD = 0xbe
.EQU DS18B20_CMD_WSCRATCHPAD = 0x4e
.EQU DS18B20_CMD_CPYSCRATCHPAD = 0x48
.EQU DS18B20_CMD_RECEEPROM = 0xb8
.EQU DS18B20_CMD_RPWRSUPPLY = 0xb4
.EQU DS18B20_CMD_SEARCHROM = 0xf0
.EQU DS18B20_CMD_READROM = 0x33
.EQU DS18B20_CMD_MATCHROM = 0x55
.EQU DS18B20_CMD_SKIPROM = 0xcc
.EQU DS18B20_CMD_ALARMSEARCH = 0xec
.EQU USI_LATCH_PIN = PB0 ; ST_CP на 74HC595
.EQU USI_DO_PIN = PB6 ; DS на 74HC595
.EQU USI_CLK_PIN = PB7 ; SH_CP на 74HC595
.EQU SW_PORT = PORTB
.EQU SW_PIN = PINB
.EQU SW_PLUS_PIN = PB2 ; Кнопка "Минус"
.EQU SW_MINUS_PIN = PB3 ; Кнопка "Плюс"
.EQU SW_SET_PIN = PB4 ; Кнопка "Установить"
.EQU MCU_STATE_DEFAULT = 0x01 ; Режим измерения температуры и сравнения с заданными параметрами
.EQU MCU_STATE_PROGRAM = 0x02 ; Режим настройки параметров в EEPROM
.EQU MCU_STATE_ERROR = 0x03 ; Режим ошибки, например когда не подключен датчик
; **** МАКРОСЫ **************************************************
.MACRO outi
ldi @0, @2
out @1, @0
.ENDMACRO
.MACRO display_load
ldi DISP_NUM_L, LOW(@0)
ldi DISP_NUM_H, HIGH(@0)
.ENDMACRO
.MACRO _1_wire_pull
sbi ONE_WIRE_DDR, ONE_WIRE_LINE
.ENDMACRO
.MACRO _1_wire_release
cbi ONE_WIRE_DDR, ONE_WIRE_LINE
.ENDMACRO
; **** СЕГМЕНТ ДАННЫХ ********************************************
.DSEG
.ORG SRAM_START
MCU_STATE: .BYTE 1 ; Текущее состояние МК
SRAM_TEMP_1: .BYTE 2 ; Хранения временного 16-бит числа в ячейке
DIGITS: .BYTE 4 ; Ячейки, где хранятся символы, для вывода на индикатор
CURRENT_DIGIT: .BYTE 1 ; Номер разряда индикатора, который сейчас горит
PC_HISTORY: .BYTE 1 ; История изменений состояния кнопок (необходимо для прерываня по изменению состояния пина)
; **** СЕГМЕНТ КОДА **********************************************
.CSEG
.ORG 0x00
rjmp RESET_vect
.ORG 0x000B
rjmp PCINT0_vect
.ORG 0x000D
rjmp TIMER0_COMPA_vect
; **** ДИНАМИЧЕСКАЯ ИНДИКАЦИЯ ************************************
TIMER0_COMPA_vect:
push r20
push r21
push r16
in r21, SREG
lds r20, CURRENT_DIGIT
cpi r20, 5
brge _CLR_CURRENT_DIGIT ; сброс активного разряда если >= 5
rjmp _indicate_1
_CLR_CURRENT_DIGIT: ; сброс текущего активного разряда в ноль
clr r20
sts CURRENT_DIGIT, r20
_indicate_1:
cpi r20, 0
brne _indicate_2
cbi PORTD, DIGIT_2_PIN
cbi PORTD, DIGIT_3_PIN
cbi PORTD, DIGIT_4_PIN
sbi PORTD, DIGIT_1_PIN
lds TEMP_REG_A, DIGITS+3
rcall DISPLAY_DECODER
rcall USI_TRANSMIT
_indicate_2:
cpi r20, 1
brne _indicate_3
cbi PORTD, DIGIT_1_PIN
cbi PORTD, DIGIT_3_PIN
cbi PORTD, DIGIT_4_PIN
sbi PORTD, DIGIT_2_PIN
lds TEMP_REG_A, DIGITS+2
rcall DISPLAY_DECODER
rcall USI_TRANSMIT
_indicate_3:
cpi r20, 2
brne _indicate_4
cbi PORTD, DIGIT_1_PIN
cbi PORTD, DIGIT_2_PIN
cbi PORTD, DIGIT_4_PIN
sbi PORTD, DIGIT_3_PIN
lds TEMP_REG_A, DIGITS+1
rcall DISPLAY_DECODER
rcall USI_TRANSMIT
_indicate_4:
cpi r20, 3
brne _indicate_exit
cbi PORTD, DIGIT_1_PIN
cbi PORTD, DIGIT_2_PIN
cbi PORTD, DIGIT_3_PIN
sbi PORTD, DIGIT_4_PIN
lds TEMP_REG_A, DIGITS
rcall DISPLAY_DECODER
rcall USI_TRANSMIT
_indicate_exit:
inc r20
sts CURRENT_DIGIT, r20
out SREG, r21
pop r16
pop r21
pop r20
reti
; **** ОБРАБОТКА КНОПОК ******************************************
PCINT0_vect:
push r16
push r17
push r18
push r19
in r16, SREG
in r17, SW_PIN
lds r18, PC_HISTORY
eor r17, r18
in r19, SW_PIN
sts PC_HISTORY, r19
_SW_PLUS_CHECK:
sbrs r17, SW_PLUS_PIN
rjmp _SW_EXIT
rjmp _SW_PLUS_HANDLER
_SW_PLUS_HANDLER:
; rcall DEBOUNCE_SW
sbis SW_PIN, SW_PLUS_PIN
adiw DISP_NUM_L, 1
;exit
; sbis PINB, SW_PLUS_PIN
; rjmp _sw_plus
; sbis PINB, SW_MINUS_PIN
; rjmp _sw_minus
; sbis PINB, SW_SET_PIN
; rjmp _sw_set
; rjmp _sw_exit
; _sw_plus:
; adiw DISP_NUM_L, 1
; rjmp _sw_exit
; _sw_minus:
; adiw DISP_NUM_L, 10
; rjmp _sw_exit
; _sw_set:
; adiw DISP_NUM_L, 63
; _sw_exit:
_SW_EXIT:
out SREG, r16
pop r19
pop r18
pop r17
pop r16
reti
; **** СТАРТ ПРОГРАММЫ *******************************************
RESET_vect:
ldi TEMP_REG_A, LOW(RAMEND)
out SPL, TEMP_REG_A
; **** ПРОЦЕСС ИНИЦИАЛИЗАЦИИ МК **********************************
MCU_INIT:
; **** ИНИЦИАЛИЗАЦИЯ ПИНОВ *************************************
outi r16, DDRD, (1<<LED_POWER_PIN) | (1<<DIGIT_1_PIN) | (1<<DIGIT_2_PIN) | (1<<DIGIT_3_PIN) | (1<<DIGIT_4_PIN) | (0<<PD0) | (1<<PD1)
outi r16, DDRB, (1<<USI_CLK_PIN) | (1<<USI_DO_PIN) | (1<<USI_LATCH_PIN) | (0<<SW_PLUS_PIN) | (0<<SW_MINUS_PIN) | (0<<SW_SET_PIN)
outi r16, PORTB, (1<<SW_PLUS_PIN) | (1<<SW_MINUS_PIN) | (1<<SW_SET_PIN)
; **** ИНИЦИАЛИЗАЦИЯ ПРЕРЫВАНИЙ ********************************
outi r16, GIMSK, (1<<PCIE0)
outi r16, PCMSK0, (1<<PCINT2) | (1<<PCINT3) | (1<<PCINT4) ; прерывание для кнопок на нажатие
; **** ИНИЦИАЛИЗАЦИЯ ТАЙМЕРА 0 **********************************
outi r16, TCCR0A, (1<<WGM01) ; режим CTC Compare A
outi r16, TCCR0B, (1<<CS02) | (1<<CS00) ; 1024 делитель
outi r16, OCR0A, 25 ; число для сравнения. (60Hz)
outi r16, TIMSK, (1<<OCIE0A) ; включение прерывания по совпадению
; **** ИНИЦИАЛИЗАЦИЯ USART *************************************
; outi r16, UBRRL, LOW(3) ; 9600 БОД
; outi r16, UBRRH, HIGH(3) ; 9600 БОД
; outi r16, UCSRB, (1<<RXEN) | (1<<TXEN) ; Включение приема и передачии
; outi r16, UCSRC, (1<<UCSZ1) | (1<<UCSZ0) ; Асинхронный режим, 8 бит фрейм, 1 стоповый бит
clr r1
sts CURRENT_DIGIT, r1
display_load 0 ; загружаем число, которое нужно показать на индикатор
; rcall _1_WIRE_DETECT_PRESENCE ; проверяем наличие датчика на шине путем выполнения процедуры сброса
sei
; **** ГЛАВНЫЙ ЦИКЛ **********************************************
LOOP:
rcall DISPLAY_UPD_DIGITS ; получаем из этого числа цифры путем деления и распределяем их по ячейкам в SRAM
; usart_t:
; sbis UCSRA, UDRE
; rjmp usart_t
; ldi r16, 'B'
; out UDR, r16
; usart_r:
; sbis UCSRA, RXC
; rjmp usart_r
; in DISP_NUM_L, UDR
; sbrc ONE_WIRE_FLAGS, OWPRF
; sbi PORTD, PD6
; sbrs ONE_WIRE_FLAGS, OWPRF
; cbi PORTD, PD6
sbi PORTD, PD6
rcall DEBOUNCE_SW
cbi PORTD, PD6
rcall DEBOUNCE_SW
rjmp LOOP
; **** ПОДПРОГРАММЫ **********************************************
.INCLUDE "div16u.asm"
.INCLUDE "usi.asm"
; **** ОПРОС ПРИСУТСТВИЯ УСТРОЙСТВА ******************************
_1_WIRE_DETECT_PRESENCE:
cli ; Шаг 1. выключаем глобальные прерывания
; 62 тика
outi r16, TCNT1L, 0
outi r16, OCR1AL, 60 ; 480 мкс
outi r16, OCR1BL, 69 ; 72 мкс
; предделитель 64
outi r16, TCCR1B, (1<<CS11) | (1<<CS10)
_1_wire_pull ; Шаг 2. притягиваем шину
S1:
in r16, TIFR
sbrs r16, OCF1A ; Шаг 3. ждем минимум 480мкс
rjmp S1
_1_wire_release ; Шаг 4. отпускаем шину
S2: in r16, TIFR
sbrs r16, OCF1B ; Шаг 5. ждем +- 70мкс
rjmp S2
rcall _1_WIRE_CHECK_PRESENCE ; Шаг 6. проверяем есть ли устройство на шине, и если есть то устанавливаем флаг
outi r16, TCNT1L, 0
outi r16, OCR1AL, 52 ; 416 мкс
S3:
in r16, TIFR
sbrs r16, OCF1A
rjmp S3
clr r16
out TCCR1B, r16
ser r16
out TIFR, r16
; s3: in r16, TIFR
; sbrs r16, TOV1
; rjmp s3
; rcall TOV1_occured
; ser r16
; out TIFR, r16
sei
ret
; **** ПРОВЕРКА НАЛИЧИЯ УСТРОЙСТВА *******************************
; Если подчиненное устройство притянет шину, то устанавливаем флаг OWPRF в единицу в регистре флагов
;
_1_WIRE_CHECK_PRESENCE:
sbis ONE_WIRE_PIN, ONE_WIRE_LINE
sbr ONE_WIRE_FLAGS, (1<<OWPRF)
ret
_1_WIRE_SEND_BYTE:
push r17
ldi r17, DS18B20_CMD_READROM
ldi r16, 8
_s_l:
; rol r16
; brcc
pop r17
ret
.DEF TRANSMIT_BIT = r9
_1_WIRE_SEND_BIT:
push r16
cli
sbr ONE_WIRE_FLAGS, (1<<OWSB)
outi r16, TCNT1L, 0
outi r16, OCR1AL, 1 ; 8 мкс
outi r16, OCR1BL, 9 ; 64 мкс
_1_wire_pull
SB_1:
in r16, TIFR
sbrs r16, OCF1A
rjmp SB_1
sbrc TRANSMIT_BIT, 0
_1_wire_release
SB_2:
in r16, TIFR
sbrs r16, OCF1B
rjmp SB_2
clr r16
out TCCR1B, r16
cbr ONE_WIRE_FLAGS, (1<<OWSB)
sei
pop r16
ret
; **** ПОЛУЧЕНИЕ ЦИФР ИЗ 16-ТИ БИТНОГО ЧИСЛА *********************
; Описание: Перемещает цифры числа в соответствующие ячейки памяти в SRAM
; путем деления этого числа несколько раз
DISPLAY_UPD_DIGITS:
cli
push r21
ldi r21, 4 ; (4 раза делим) т.к индикатор четырех разрядный
; инициализация указателя (за каждый проход цикла будет инкрементироваться)
ldi XL, LOW(DIGITS)
ldi XH, HIGH(DIGITS)
.equ dividend = SRAM_TEMP_1 ; число которе будем делить
.equ divisor = 10 ; на что делим
; загружаем число которое хотим поделить в адрес SRAM делимого
sts dividend, DISP_NUM_L
sts dividend+1, DISP_NUM_H
; четыре раза производим деление для получения остатков
DIV_LOOP:
; заполняем нужные регистры
lds dd16uL, dividend
lds dd16uH, dividend+1
ldi dv16uL, LOW(divisor)
ldi dv16uH, HIGH(divisor)
rcall div16u ; делим
st X+, drem16uL ; сохраняем остаток в ячейку по указателю и увеличиваем его
; обновляем делимое
sts dividend, dres16uL
sts dividend+1, dres16uH
dec r21 ; декрементируем счетчик цикла
brne DIV_LOOP ; делим еще раз если не 0
pop r21
sei
ret
; **** ЗАГРУЖАЕТ НУЖНЫЙ АДРЕС СИМВОЛА В R0 ***********************
DISPLAY_DECODER:
push r16
push r17
ldi ZL, LOW(2*DISPLAY_SYMBOLS)
ldi ZH, HIGH(2*DISPLAY_SYMBOLS)
clr TEMP_REG_B
add ZL, TEMP_REG_A
adc ZH, TEMP_REG_B
lpm r0, Z
pop r17
pop r16
ret
DEBOUNCE_SW:
push r16
push r17
push r18
ldi r18, 5
_loop_2:
ldi r17, 255
_loop_0:
ldi r16, 255
_dec_0:
dec r16
brne _dec_0
_loop_1:
dec r17
brne _loop_0
_loop_3:
dec r18
brne _loop_2
pop r18
pop r17
pop r16
ret
DELAY:
push r16
push r17
ldi r16, 255
_DELAY_1:
ldi r17, 255
_DELAY_2:
dec r17
nop
nop
nop
brne _DELAY_2
dec r16
brne _DELAY_1
pop r17
pop r16
ret
DISPLAY_SYMBOLS:
; HGFEDCBA HGFEDCBA
.DB 0b11000000, 0b11111001 ; 0, 1
.DB 0b10100100, 0b10110000 ; 2, 3
.DB 0b10011001, 0b10010010 ; 4, 5
.DB 0b10000010, 0b11111000 ; 6, 7
.DB 0b10000000, 0b10010000 ; 8, 9
.DB 0b10011100 ; °
; **** СЕГМЕНТ EEPROM ********************************************
; .ESEG
; INFO: .DB "AVR Thermostat. Written by Sergey Yarkov 22.01.2023"

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@ -1,37 +0,0 @@
:020000020000FC
:020000005AC0E4
:020016003EC0EA
:10001A0000C04F935F930F935FB7409167004530DD
:10002A000CF403C0442740936700403041F493988E
:10003A0094989598929A00916600CED06AD04130F1
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:1000BA000EE701BB01EC07BB0CE108BB00E20BBF7A
:1000CA000CE100BD02E000BF05E003BF09E106BF85
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:10013A000CE30ABD05E408BD03E00EBDB99A08B791
:10014A0006FFFDCFB99808B705FFFDCF0DD000E037
:10015A000CBD04E30ABD08B706FFFDCF00270EBD9C
:10016A000FEF08BF78940895B19B716008951F93AB
:10017A0013E308E01F9108950F93F894726000E06A
:10018A000CBD01E00ABD09E008BDB99A08B706FF2F
:10019A00FDCF90FCB99808B705FFFDCF00270EBD2B
:1001AA007D7F78940F9108955F9354E0A3E6B0E0C1
:1001BA008093610090936200009161001091620047
:1001CA002AE030E093DFED92009361001093620021
:1001DA005A9591F75F9108950F931F93ECE1F2E01E
:1001EA001127E00FF11F04901F910F91089503EB5F
:1001FA000A95F1F708950F931F930FEF1FEF1A95C2
:10020A00000000000000D9F70A95C1F71F910F916D
:0E021A000895C0F9A4B0999282F880909C00DB
:00000001FF

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@ -1,743 +0,0 @@
gavrasm Gerd's AVR assembler version 5.4 (C)2022 by DG4FAC
----------------------------------------------------------
Path: /home/sergeyyarkov/Documents/Projects/Firmwares/AVR/attiny2313a_thermostat/
Source file: firmware.asm
Hex file: firmware.hex
Eeprom file: firmware.eep
Compiled: 14.06.2023, 22:56:32
Pass: 2
1: ;
2: ; Project name: thermostat
3: ; Description: Electronic thermostat on AVR Microcontroller
4: ; Source code: https://github.com/sergeyyarkov/attiny2313a_thermostat
5: ; Device: ATtiny2313A
6: ; Device Datasheet: http://ww1.microchip.com/downloads/en/DeviceDoc/doc8246.pdf
7: ; Package: SOIC-20W_7.5x12.8mm_P1.27mm
8: ; Assembler: AVR macro assembler 2.2.7
9: ; Clock frequency: 8 MHz External Crystal Oscillator
10: ; Fuses: lfuse: 0xCF, hfuse: 0x9F, efuse: 0xFF, lock: 0xFF
11: ;
12: ; Written by Sergey Yarkov 22.01.2023
13:
14: .INCLUDE "tn2313Adef.inc"
-> Warning 009: Include defs not necessary, using internal values!
File: /home/sergeyyarkov/Documents/Projects/Firmwares/AVR/attiny2313a_thermostat/firmware.asm, Line: 14
Source line: .INCLUDE "tn2313Adef.inc"
15: .LIST
16:
17: .DEF TEMP_REG_A = r16
18: .DEF TEMP_REG_B = r17
19: .DEF DISP_NUM_L = r24 ; LSB числа которое сейчас на индикаторе
20: .DEF DISP_NUM_H = r25 ; MSB числа которое сейчас на индикаторе
21:
22: .EQU DIGIT_1_PIN = PD2 ; Пин разряда индикатора 1
23: .EQU DIGIT_2_PIN = PD3 ; Пин разряда индикатора 2
24: .EQU DIGIT_3_PIN = PD4 ; Пин разряда индикатора 3
25: .EQU DIGIT_4_PIN = PD5 ; Пин разряда индикатора 4
26:
27: .EQU LED_POWER_PIN = PD6 ; Светодиод, который говорит о том что питание подано
28:
29: .EQU ONE_WIRE_LINE = PB1 ; Пин шины 1-Wire
30: .EQU ONE_WIRE_DDR = DDRB
31: .EQU ONE_WIRE_PIN = PINB
32: .DEF ONE_WIRE_FLAGS = r23 ; Флаги состояния для 1-Wire интерфейса
33: .EQU OWPRF = 0 ; 1-Wire Флаг присутствия
34: .EQU OWSB = 1 ; Флаг передачи одного бита
35:
36: ; **** КОМАНДЫ ДАТЧИКА *****************************************
37: .EQU DS18B20_CMD_CONVERTTEMP = 0x44
38: .EQU DS18B20_CMD_RSCRATCHPAD = 0xbe
39: .EQU DS18B20_CMD_WSCRATCHPAD = 0x4e
40: .EQU DS18B20_CMD_CPYSCRATCHPAD = 0x48
41: .EQU DS18B20_CMD_RECEEPROM = 0xb8
42: .EQU DS18B20_CMD_RPWRSUPPLY = 0xb4
43: .EQU DS18B20_CMD_SEARCHROM = 0xf0
44: .EQU DS18B20_CMD_READROM = 0x33
45: .EQU DS18B20_CMD_MATCHROM = 0x55
46: .EQU DS18B20_CMD_SKIPROM = 0xcc
47: .EQU DS18B20_CMD_ALARMSEARCH = 0xec
48:
49: .EQU USI_LATCH_PIN = PB0 ; ST_CP на 74HC595
50: .EQU USI_DO_PIN = PB6 ; DS на 74HC595
51: .EQU USI_CLK_PIN = PB7 ; SH_CP на 74HC595
52:
53: .EQU SW_PORT = PORTB
54: .EQU SW_PIN = PINB
55: .EQU SW_PLUS_PIN = PB2 ; Кнопка "Минус"
56: .EQU SW_MINUS_PIN = PB3 ; Кнопка "Плюс"
57: .EQU SW_SET_PIN = PB4 ; Кнопка "Установить"
58:
59: .EQU MCU_STATE_DEFAULT = 0x01 ; Режим измерения температуры и сравнения с заданными параметрами
60: .EQU MCU_STATE_PROGRAM = 0x02 ; Режим настройки параметров в EEPROM
61: .EQU MCU_STATE_ERROR = 0x03 ; Режим ошибки, например когда не подключен датчик
62:
63: ; **** МАКРОСЫ **************************************************
64: .MACRO outi
65: ldi @0, @2
66: out @1, @0
67: .ENDMACRO
68:
69: .MACRO display_load
70: ldi DISP_NUM_L, LOW(@0)
71: ldi DISP_NUM_H, HIGH(@0)
72: .ENDMACRO
73:
74: .MACRO _1_wire_pull
75: sbi ONE_WIRE_DDR, ONE_WIRE_LINE
76: .ENDMACRO
77:
78: .MACRO _1_wire_release
79: cbi ONE_WIRE_DDR, ONE_WIRE_LINE
80: .ENDMACRO
81:
82: ; **** СЕГМЕНТ ДАННЫХ ********************************************
83: .DSEG
84: .ORG SRAM_START
85:
86: MCU_STATE: .BYTE 1 ; Текущее состояние МК
87: SRAM_TEMP_1: .BYTE 2 ; Хранения временного 16-бит числа в ячейке
88: DIGITS: .BYTE 4 ; Ячейки, где хранятся символы, для вывода на индикатор
89: CURRENT_DIGIT: .BYTE 1 ; Номер разряда индикатора, который сейчас горит
90: PC_HISTORY: .BYTE 1 ; История изменений состояния кнопок (необходимо для прерываня по изменению состояния пина)
91:
92: ; **** СЕГМЕНТ КОДА **********************************************
93: .CSEG
94:
95: .ORG 0x00
96: 000000 C05A rjmp RESET_vect
97:
98: .ORG 0x000B
99: 00000B C03E rjmp PCINT0_vect
100:
101: .ORG 0x000D
102: 00000D C000 rjmp TIMER0_COMPA_vect
103:
104:
105: ; **** ДИНАМИЧЕСКАЯ ИНДИКАЦИЯ ************************************
106: TIMER0_COMPA_vect:
107: 00000E 934F push r20
108: 00000F 935F push r21
109: 000010 930F push r16
110: 000011 B75F in r21, SREG
111:
112: 000012 9140 lds r20, CURRENT_DIGIT
000013 0067
113: 000014 3045 cpi r20, 5
114: 000015 F40C brge reset_digit_idx
115: 000016 C003 rjmp _indicate_1
116:
117: reset_digit_idx:
118: 000017 2744 clr r20
119: 000018 9340 sts CURRENT_DIGIT, r20
000019 0067
120:
121: _indicate_1:
122: 00001A 3040 cpi r20, 0
123: 00001B F441 brne _indicate_2
124:
125: 00001C 9893 cbi PORTD, DIGIT_2_PIN
126: 00001D 9894 cbi PORTD, DIGIT_3_PIN
127: 00001E 9895 cbi PORTD, DIGIT_4_PIN
128: 00001F 9A92 sbi PORTD, DIGIT_1_PIN
129: 000020 9100 lds TEMP_REG_A, DIGITS+3
000021 0066
130: 000022 D0CE rcall DISPLAY_DECODER
131: 000023 D06A rcall USI_TRANSMIT
132:
133: _indicate_2:
134: 000024 3041 cpi r20, 1
135: 000025 F441 brne _indicate_3
136:
137: 000026 9892 cbi PORTD, DIGIT_1_PIN
138: 000027 9894 cbi PORTD, DIGIT_3_PIN
139: 000028 9895 cbi PORTD, DIGIT_4_PIN
140: 000029 9A93 sbi PORTD, DIGIT_2_PIN
141: 00002A 9100 lds TEMP_REG_A, DIGITS+2
00002B 0065
142: 00002C D0C4 rcall DISPLAY_DECODER
143: 00002D D060 rcall USI_TRANSMIT
144:
145: _indicate_3:
146: 00002E 3042 cpi r20, 2
147: 00002F F441 brne _indicate_4
148:
149: 000030 9892 cbi PORTD, DIGIT_1_PIN
150: 000031 9893 cbi PORTD, DIGIT_2_PIN
151: 000032 9895 cbi PORTD, DIGIT_4_PIN
152: 000033 9A94 sbi PORTD, DIGIT_3_PIN
153: 000034 9100 lds TEMP_REG_A, DIGITS+1
000035 0064
154: 000036 D0BA rcall DISPLAY_DECODER
155: 000037 D056 rcall USI_TRANSMIT
156:
157: _indicate_4:
158: 000038 3043 cpi r20, 3
159: 000039 F441 brne _indicate_exit
160:
161: 00003A 9892 cbi PORTD, DIGIT_1_PIN
162: 00003B 9893 cbi PORTD, DIGIT_2_PIN
163: 00003C 9894 cbi PORTD, DIGIT_3_PIN
164: 00003D 9A95 sbi PORTD, DIGIT_4_PIN
165: 00003E 9100 lds TEMP_REG_A, DIGITS
00003F 0063
166: 000040 D0B0 rcall DISPLAY_DECODER
167: 000041 D04C rcall USI_TRANSMIT
168:
169: _indicate_exit:
170: 000042 9543 inc r20
171: 000043 9340 sts CURRENT_DIGIT, r20
000044 0067
172: 000045 BF5F out SREG, r21
173:
174: 000046 910F pop r16
175: 000047 915F pop r21
176: 000048 914F pop r20
177: 000049 9518 reti
178:
179: ; **** ОБРАБОТКА КНОПОК ******************************************
180: PCINT0_vect:
181: 00004A 930F push r16
182: 00004B B70F in r16, SREG
183:
184: 00004C 9BB2 sbis PINB, SW_PLUS_PIN
185: 00004D C005 rjmp _sw_plus
186:
187: 00004E 9BB3 sbis PINB, SW_MINUS_PIN
188: 00004F C005 rjmp _sw_minus
189:
190: 000050 9BB4 sbis PINB, SW_SET_PIN
191: 000051 C005 rjmp _sw_set
192:
193: 000052 C005 rjmp _sw_exit
194: _sw_plus:
195: 000053 9601 adiw DISP_NUM_L, 1
196: 000054 C003 rjmp _sw_exit
197: _sw_minus:
198: 000055 960A adiw DISP_NUM_L, 10
199: 000056 C001 rjmp _sw_exit
200: _sw_set:
201: 000057 96CF adiw DISP_NUM_L, 63
202: _sw_exit:
203:
204: 000058 BF0F out SREG, r16
205: 000059 910F pop r16
206: 00005A 9518 reti
207:
208: ; **** СТАРТ ПРОГРАММЫ *******************************************
209: RESET_vect:
210: 00005B ED0F ldi TEMP_REG_A, LOW(RAMEND)
211: 00005C BF0D out SPL, TEMP_REG_A
212:
213: ; **** ПРОЦЕСС ИНИЦИАЛИЗАЦИИ МК **********************************
214: MCU_INIT:
215: ; **** ИНИЦИАЛИЗАЦИЯ ПИНОВ *************************************
216: outi r16, DDRD, (1<<LED_POWER_PIN) | (1<<DIGIT_1_PIN) | (1<<DIGIT_2_PIN) | (1<<DIGIT_3_PIN) | (1<<DIGIT_4_PIN) | (0<<PD0) | (1<<PD1)
216: 00005D E70E ldi R16, (1<<LED_POWER_PIN)|(1<<DIGIT_1_PIN)|(1<<DIGIT_2_PIN)|(1<<DIGIT_3_PIN)|(1<<DIGIT_4_PIN)|(0<<PD0)|(1<<PD1)
216: 00005E BB01 out DDRD, R16
217: outi r16, DDRB, (1<<USI_CLK_PIN) | (1<<USI_DO_PIN) | (1<<USI_LATCH_PIN) | (0<<SW_PLUS_PIN) | (0<<SW_MINUS_PIN) | (0<<SW_SET_PIN)
217: 00005F EC01 ldi R16, (1<<USI_CLK_PIN)|(1<<USI_DO_PIN)|(1<<USI_LATCH_PIN)|(0<<SW_PLUS_PIN)|(0<<SW_MINUS_PIN)|(0<<SW_SET_PIN)
217: 000060 BB07 out DDRB, R16
218: outi r16, PORTB, (1<<SW_PLUS_PIN) | (1<<SW_MINUS_PIN) | (1<<SW_SET_PIN)
218: 000061 E10C ldi R16, (1<<SW_PLUS_PIN)|(1<<SW_MINUS_PIN)|(1<<SW_SET_PIN)
218: 000062 BB08 out PORTB, R16
219:
220: ; **** ИНИЦИАЛИЗАЦИЯ ПРЕРЫВАНИЙ ********************************
221: outi r16, GIMSK, (1<<PCIE0)
221: 000063 E200 ldi R16, (1<<PCIE0)
221: 000064 BF0B out GIMSK, R16
222: outi r16, PCMSK0, (1<<PCINT2) | (1<<PCINT3) | (1<<PCINT4) ; прерывание для кнопок на нажатие
222: 000065 E10C ldi R16, (1<<PCINT2)|(1<<PCINT3)|(1<<PCINT4)
222: 000066 BD00 out PCMSK0, R16
223:
224: ; **** ИНИЦИАЛИЗАЦИЯ ТАЙМЕРА 0 **********************************
225: outi r16, TCCR0A, (1<<WGM01) ; режим CTC Compare A
225: 000067 E002 ldi R16, (1<<WGM01)
225: 000068 BF00 out TCCR0A, R16
226: outi r16, TCCR0B, (1<<CS02) | (1<<CS00) ; 1024 делитель
226: 000069 E005 ldi R16, (1<<CS02)|(1<<CS00)
226: 00006A BF03 out TCCR0B, R16
227: outi r16, OCR0A, 25 ; число для сравнения. (60Hz)
227: 00006B E109 ldi R16, 25
227: 00006C BF06 out OCR0A, R16
228: outi r16, TIMSK, (1<<OCIE0A) ; включение прерывания по совпадению
228: 00006D E001 ldi R16, (1<<OCIE0A)
228: 00006E BF09 out TIMSK, R16
229:
230: ; **** ИНИЦИАЛИЗАЦИЯ USART *************************************
231: ; outi r16, UBRRL, LOW(3) ; 9600 БОД
232: ; outi r16, UBRRH, HIGH(3) ; 9600 БОД
233: ; outi r16, UCSRB, (1<<RXEN) | (1<<TXEN) ; Включение приема и передачии
234: ; outi r16, UCSRC, (1<<UCSZ1) | (1<<UCSZ0) ; Асинхронный режим, 8 бит фрейм, 1 стоповый бит
235:
236: 00006F 2411 clr r1
237: 000070 9210 sts CURRENT_DIGIT, r1
000071 0067
238:
239: display_load 0 ; загружаем число, которое нужно показать на индикатор
239: 000072 E080 ldi DISP_NUM_L, LOW(0)
239: 000073 E090 ldi DISP_NUM_H, HIGH(0)
240: ; rcall _1_WIRE_DETECT_PRESENCE ; проверяем наличие датчика на шине путем выполнения процедуры сброса
241: 000074 9478 sei
242:
243: ; **** ГЛАВНЫЙ ЦИКЛ **********************************************
244: LOOP:
245: 000075 D063 rcall DISPLAY_UPD_DIGITS ; получаем из этого числа цифры путем деления и распределяем их по ячейкам в SRAM
246:
247: ; usart_t:
248: ; sbis UCSRA, UDRE
249: ; rjmp usart_t
250: ; ldi r16, 'B'
251: ; out UDR, r16
252:
253: ; usart_r:
254: ; sbis UCSRA, RXC
255: ; rjmp usart_r
256: ; in DISP_NUM_L, UDR
257:
258: 000076 FD70 sbrc ONE_WIRE_FLAGS, OWPRF
259: 000077 9A96 sbi PORTD, PD6
260:
261: 000078 FF70 sbrs ONE_WIRE_FLAGS, OWPRF
262: 000079 9896 cbi PORTD, PD6
263:
264: ; rcall DELAY
265: ; rcall DELAY
266: ; rcall DELAY
267: ; rcall DELAY
268: ; rcall DELAY
269: ; rcall DELAY
270:
271: 00007A CFFA rjmp LOOP
272:
273: ; **** ПОДПРОГРАММЫ **********************************************
274: .INCLUDE "div16u.asm"
Including file div16u.asm
1: ;***************************************************************************
2: ;*
3: ;* "div16u" - 16/16 Bit Unsigned Division
4: ;*
5: ;* This subroutine divides the two 16-bit numbers
6: ;* "dd8uH:dd8uL" (dividend) and "dv16uH:dv16uL" (divisor).
7: ;* The result is placed in "dres16uH:dres16uL" and the remainder in
8: ;* "drem16uH:drem16uL".
9: ;*
10: ;* Number of words :19
11: ;* Number of cycles :235/251 (Min/Max)
12: ;* Low registers used :2 (drem16uL,drem16uH)
13: ;* High registers used :5 (dres16uL/dd16uL,dres16uH/dd16uH,dv16uL,dv16uH,
14: ;* dcnt16u)
15: ;*
16: ;***************************************************************************
17:
18: ;***** Subroutine Register Variables
19:
20: .def drem16uL=r14
21: .def drem16uH=r15
22: .def dres16uL=r16
23: .def dres16uH=r17
24: .def dd16uL =r16
25: .def dd16uH =r17
26: .def dv16uL =r18
27: .def dv16uH =r19
28: .def dcnt16u =r20
29:
30: ;***** Code
31:
32: div16u:
33: 00007B 24EE clr drem16uL ; clear remainder Low byte
34: 00007C 18FF sub drem16uH,drem16uH ; clear remainder High byte and carry
35: 00007D E141 ldi dcnt16u,17 ; init loop counter
36: d16u_1:
37: 00007E 1F00 rol dd16uL ; shift left dividend
38: 00007F 1F11 rol dd16uH
39: 000080 954A dec dcnt16u ; decrement counter
40: 000081 F409 brne d16u_2 ; if done
41: 000082 9508 ret ; return
42: d16u_2:
43: 000083 1CEE rol drem16uL ; shift dividend into remainder
44: 000084 1CFF rol drem16uH
45: 000085 1AE2 sub drem16uL,dv16uL ; remainder = remainder - divisor
46: 000086 0AF3 sbc drem16uH,dv16uH
47: 000087 F420 brcc d16u_3 ; if result negative
48: 000088 0EE2 add drem16uL,dv16uL ; restore remainder
49: 000089 1EF3 adc drem16uH,dv16uH
50: 00008A 9488 clc ; clear carry to be shifted into result
51: 00008B CFF2 rjmp d16u_1 ; else
52: d16u_3:
53: 00008C 9408 sec ; set carry to be shifted into result
54: 00008D CFF0 rjmp d16u_1
Continuing file firmware.asm
275: .INCLUDE "usi.asm"
Including file usi.asm
1: ; **** ОТПРАВКА БАЙТА В СДВИГОВЫЙ РЕГИСТР *************************
2: USI_TRANSMIT:
3: 00008E 930F push r16
4: 00008F B80F out USIDR, r0 ; Байт для отправки всегда находится в регистре r0. Помещаем данные в регистр USIDR.
5:
6: ; Enable USI Overflow Interrupt Flag (will be 0 if transfer is not compeleted)
7: 000090 E400 ldi TEMP_REG_A, (1<<USIOIF)
8: 000091 B90E out USISR, TEMP_REG_A
9:
10: ; Load settings of USI into temp register
11: ; This will setup USI to Three-wire mode, Software clock strobe (USITC)
12: ; with External, positive edge and toggle USCK
13: ;
14: ; USIWM0 <--------------> USI Wire Mode
15: ; USICS1 <--------------> USI Clock Source Select
16: ; USICLK <--------------> USI Clock Strobe
17: ; USITC <--------------> USI Toggle Clock (Enable clock generation)
18: 000092 E10B ldi TEMP_REG_A, (1<<USIWM0) | (1<<USICS1) | (1<<USICLK) | (1<<USITC)
19:
20: _USI_TRANSMIT_LOOP: ; Execute loop when USIOIF is 0
21: 000093 B90D out USICR, TEMP_REG_A ; Load settings from temp register into USI Control Register
22: 000094 9B76 sbis USISR, USIOIF ; If transfer is comleted then move out of loop
23: 000095 CFFD rjmp _USI_TRANSMIT_LOOP
24:
25: ; Send pulse into LATCH pin.
26: ; This will copy byte from 74hc595 shift register into 74hc595 storage register
27: 000096 9AC0 sbi PORTB, USI_LATCH_PIN
28: 000097 98C0 cbi PORTB, USI_LATCH_PIN
29: 000098 910F pop r16
30: 000099 9508 ret
Continuing file firmware.asm
276:
277: ; **** ОПРОС ПРИСУТСТВИЯ УСТРОЙСТВА ******************************
278: _1_WIRE_DETECT_PRESENCE:
279: 00009A 94F8 cli ; Шаг 1. выключаем глобальные прерывания
280:
281: ; 62 тика
282: outi r16, TCNT1L, 0
282: 00009B E000 ldi R16, 0
282: 00009C BD0C out TCNT1L, R16
283: outi r16, OCR1AL, 60 ; 480 мкс
283: 00009D E30C ldi R16, 60
283: 00009E BD0A out OCR1AL, R16
284: outi r16, OCR1BL, 69 ; 72 мкс
284: 00009F E405 ldi R16, 69
284: 0000A0 BD08 out OCR1BL, R16
285:
286: ; предделитель 64
287: outi r16, TCCR1B, (1<<CS11) | (1<<CS10)
287: 0000A1 E003 ldi R16, (1<<CS11)|(1<<CS10)
287: 0000A2 BD0E out TCCR1B, R16
288:
289: _1_wire_pull ; Шаг 2. притягиваем шину
289: 0000A3 9AB9 sbi ONE_WIRE_DDR, ONE_WIRE_LINE
290:
291: S1:
292: 0000A4 B708 in r16, TIFR
293: 0000A5 FF06 sbrs r16, OCF1A ; Шаг 3. ждем минимум 480мкс
294: 0000A6 CFFD rjmp S1
295: _1_wire_release ; Шаг 4. отпускаем шину
295: 0000A7 98B9 cbi ONE_WIRE_DDR, ONE_WIRE_LINE
296: 0000A8 B708 in r16, TIFR
297: 0000A9 FF05 sbrs r16, OCF1B ; Шаг 5. ждем +- 70мкс
298: 0000AA CFFD rjmp S2
299: 0000AB D00D rcall _1_WIRE_CHECK_PRESENCE ; Шаг 6. проверяем есть ли устройство на шине, и если есть то устанавливаем флаг
300:
301: outi r16, TCNT1L, 0
301: 0000AC E000 ldi R16, 0
301: 0000AD BD0C out TCNT1L, R16
302: outi r16, OCR1AL, 52 ; 416 мкс
302: 0000AE E304 ldi R16, 52
302: 0000AF BD0A out OCR1AL, R16
303: S3:
304: 0000B0 B708 in r16, TIFR
305: 0000B1 FF06 sbrs r16, OCF1A
306: 0000B2 CFFD rjmp S3
307: 0000B3 2700 clr r16
308: 0000B4 BD0E out TCCR1B, r16
309: 0000B5 EF0F ser r16
310: 0000B6 BF08 out TIFR, r16
311: ; s3: in r16, TIFR
312: ; sbrs r16, TOV1
313: ; rjmp s3
314: ; rcall TOV1_occured
315: ; ser r16
316: ; out TIFR, r16
317: 0000B7 9478 sei
318: 0000B8 9508 ret
319:
320: ; **** ПРОВЕРКА НАЛИЧИЯ УСТРОЙСТВА *******************************
321: ; Если подчиненное устройство притянет шину, то устанавливаем флаг OWPRF в единицу в регистре флагов
322: ;
323: _1_WIRE_CHECK_PRESENCE:
324: 0000B9 9BB1 sbis ONE_WIRE_PIN, ONE_WIRE_LINE
325: 0000BA 6071 sbr ONE_WIRE_FLAGS, (1<<OWPRF)
326: 0000BB 9508 ret
327:
328: _1_WIRE_SEND_BYTE:
329: 0000BC 931F push r17
330: 0000BD E313 ldi r17, DS18B20_CMD_READROM
331: 0000BE E008 ldi r16, 8
332: _s_l:
333: ; rol r16
334: ; brcc
335: 0000BF 911F pop r17
336: 0000C0 9508 ret
337:
338: .DEF TRANSMIT_BIT = r9
339: _1_WIRE_SEND_BIT:
340: 0000C1 930F push r16
341: 0000C2 94F8 cli
342: 0000C3 6072 sbr ONE_WIRE_FLAGS, (1<<OWSB)
343: outi r16, TCNT1L, 0
343: 0000C4 E000 ldi R16, 0
343: 0000C5 BD0C out TCNT1L, R16
344: outi r16, OCR1AL, 1 ; 8 мкс
344: 0000C6 E001 ldi R16, 1
344: 0000C7 BD0A out OCR1AL, R16
345: outi r16, OCR1BL, 9 ; 64 мкс
345: 0000C8 E009 ldi R16, 9
345: 0000C9 BD08 out OCR1BL, R16
346:
347: _1_wire_pull
347: 0000CA 9AB9 sbi ONE_WIRE_DDR, ONE_WIRE_LINE
348: SB_1:
349: 0000CB B708 in r16, TIFR
350: 0000CC FF06 sbrs r16, OCF1A
351: 0000CD CFFD rjmp SB_1
352: 0000CE FC90 sbrc TRANSMIT_BIT, 0
353: _1_wire_release
353: 0000CF 98B9 cbi ONE_WIRE_DDR, ONE_WIRE_LINE
354: SB_2:
355: 0000D0 B708 in r16, TIFR
356: 0000D1 FF05 sbrs r16, OCF1B
357: 0000D2 CFFD rjmp SB_2
358:
359: 0000D3 2700 clr r16
360: 0000D4 BD0E out TCCR1B, r16
361: 0000D5 7F7D cbr ONE_WIRE_FLAGS, (1<<OWSB)
362: 0000D6 9478 sei
363: 0000D7 910F pop r16
364: 0000D8 9508 ret
365:
366: ; **** ПОЛУЧЕНИЕ ЦИФР ИЗ 16-ТИ БИТНОГО ЧИСЛА *********************
367: ; Описание: Перемещает цифры числа в соответствующие ячейки памяти в SRAM
368: ; путем деления этого числа несколько раз
369: DISPLAY_UPD_DIGITS:
370: 0000D9 935F push r21
371: 0000DA E054 ldi r21, 4 ; максимум 4 цифры, т.к индикатор четырех разрядный
372: 0000DB E6A3 ldi XL, LOW(DIGITS)
373: 0000DC E0B0 ldi XH, HIGH(DIGITS)
374:
375: .equ dividend = SRAM_TEMP_1
376: .equ divisor = 10
377:
378: ; загружаем число которое хотим поделить в адрес SRAM делимого
379: 0000DD 9380 sts dividend, DISP_NUM_L
0000DE 0061
380: 0000DF 9390 sts dividend+1, DISP_NUM_H
0000E0 0062
381:
382: ; четыре раза производим деление для получения остатков
383: DIV_LOOP:
384: ; заполняем нужные регистры
385: 0000E1 9100 lds dd16uL, dividend
0000E2 0061
386: 0000E3 9110 lds dd16uH, dividend+1
0000E4 0062
387: 0000E5 E02A ldi dv16uL, LOW(divisor)
388: 0000E6 E030 ldi dv16uH, HIGH(divisor)
389:
390: 0000E7 DF93 rcall div16u ; делим
391:
392: 0000E8 92ED st X+, drem16uL ; сохраняем остаток в ячейку по указателю
393:
394: ; обновляем делимое
395: 0000E9 9300 sts dividend, dres16uL
0000EA 0061
396: 0000EB 9310 sts dividend+1, dres16uH
0000EC 0062
397:
398: 0000ED 955A dec r21 ; декрементируем счетчик цикла
399: 0000EE F791 brne DIV_LOOP ; делим еще раз если не 0
400: 0000EF 915F pop r21
401: 0000F0 9508 ret
402:
403: ; **** ЗАГРУЖАЕТ НУЖНЫЙ АДРЕС СИМВОЛА В R0 ***********************
404: DISPLAY_DECODER:
405: 0000F1 930F push r16
406: 0000F2 931F push r17
407: 0000F3 E1EC ldi ZL, LOW(2*DISPLAY_SYMBOLS)
408: 0000F4 E0F2 ldi ZH, HIGH(2*DISPLAY_SYMBOLS)
409:
410: 0000F5 2711 clr TEMP_REG_B
411: 0000F6 0FE0 add ZL, TEMP_REG_A
412: 0000F7 1FF1 adc ZH, TEMP_REG_B
413:
414: 0000F8 9004 lpm r0, Z
415: 0000F9 911F pop r17
416: 0000FA 910F pop r16
417: 0000FB 9508 ret
418:
419: DELAY_68us:
420: 0000FC EB03 ldi r16, 179 ; 1
421: _d1_loop:
422: 0000FD 950A dec r16 ; 1
423: 0000FE F7F1 brne _d1_loop ; 2/1
424: 0000FF 9508 ret ; 4
425:
426: DELAY:
427: 000100 930F push r16
428: 000101 931F push r17
429:
430: 000102 EF0F ldi r16, 255
431: _DELAY_1:
432: 000103 EF1F ldi r17, 255
433: _DELAY_2:
434: 000104 951A dec r17
435: 000105 0000 nop
436: 000106 0000 nop
437: 000107 0000 nop
438: 000108 F7D9 brne _DELAY_2
439:
440: 000109 950A dec r16
441: 00010A F7C1 brne _DELAY_1
442:
443: 00010B 911F pop r17
444: 00010C 910F pop r16
445: 00010D 9508 ret
446:
447: DISPLAY_SYMBOLS:
448: ; HGFEDCBA HGFEDCBA
449: .DB 0b11000000, 0b11111001 ; 0, 1
00010E F9C0
450: .DB 0b10100100, 0b10110000 ; 2, 3
00010F B0A4
451: .DB 0b10011001, 0b10010010 ; 4, 5
000110 9299
452: .DB 0b10000010, 0b11111000 ; 6, 7
000111 F882
453: .DB 0b10000000, 0b10010000 ; 8, 9
000112 9080
454: .DB 0b10011100 ; °
-> Warning 004: Number of bytes on line is odd, added 00 to fit program memory!
File: /home/sergeyyarkov/Documents/Projects/Firmwares/AVR/attiny2313a_thermostat/firmware.asm, Line: 454
Source line: .DB 0b10011100 ; °
000113 009C
455:
456: ; **** СЕГМЕНТ EEPROM ********************************************
457: ; .ESEG
458: ; INFO: .DB "AVR Thermostat. Written by Sergey Yarkov 22.01.2023"
List of symbols:
Type nDef nUsed Decimalval Hexval Name
T 1 1 89 59 ATTINY2313A
L 1 0 96 60 MCU_STATE
L 1 1 97 61 SRAM_TEMP_1
L 1 6 99 63 DIGITS
L 1 4 103 67 CURRENT_DIGIT
L 1 0 104 68 PC_HISTORY
L 1 2 14 0E TIMER0_COMPA_VECT
L 1 2 23 17 RESET_DIGIT_IDX
L 1 2 26 1A _INDICATE_1
L 1 2 36 24 _INDICATE_2
L 1 2 46 2E _INDICATE_3
L 1 2 56 38 _INDICATE_4
L 1 2 66 42 _INDICATE_EXIT
L 1 2 74 4A PCINT0_VECT
L 1 2 83 53 _SW_PLUS
L 1 2 85 55 _SW_MINUS
L 1 2 87 57 _SW_SET
L 1 6 88 58 _SW_EXIT
L 1 2 91 5B RESET_VECT
L 1 0 93 5D MCU_INIT
L 1 2 117 75 LOOP
L 1 2 123 7B DIV16U
L 1 4 126 7E D16U_1
L 1 2 131 83 D16U_2
L 1 2 140 8C D16U_3
L 1 8 142 8E USI_TRANSMIT
L 1 2 147 93 _USI_TRANSMIT_LOOP
L 1 0 154 9A _1_WIRE_DETECT_PRESENCE
L 1 2 164 A4 S1
L 1 2 168 A8 S2
L 1 2 176 B0 S3
L 1 2 185 B9 _1_WIRE_CHECK_PRESENCE
L 1 0 188 BC _1_WIRE_SEND_BYTE
L 1 0 191 BF _S_L
L 1 0 193 C1 _1_WIRE_SEND_BIT
L 1 2 203 CB SB_1
L 1 2 208 D0 SB_2
L 1 2 217 D9 DISPLAY_UPD_DIGITS
L 1 2 225 E1 DIV_LOOP
L 1 8 241 F1 DISPLAY_DECODER
L 1 0 252 FC DELAY_68US
L 1 2 253 FD _D1_LOOP
L 1 0 256 0100 DELAY
L 1 2 259 0103 _DELAY_1
L 1 2 260 0104 _DELAY_2
L 1 2 270 010E DISPLAY_SYMBOLS
R 1 11 16 10 TEMP_REG_A
R 1 2 17 11 TEMP_REG_B
R 1 5 24 18 DISP_NUM_L
R 1 2 25 19 DISP_NUM_H
R 1 5 23 17 ONE_WIRE_FLAGS
R 1 5 14 0E DREM16UL
R 1 5 15 0F DREM16UH
R 1 1 16 10 DRES16UL
R 1 1 17 11 DRES16UH
R 1 2 16 10 DD16UL
R 1 2 17 11 DD16UH
R 1 3 18 12 DV16UL
R 1 3 19 13 DV16UH
R 1 2 20 14 DCNT16U
R 1 1 9 09 TRANSMIT_BIT
C 1 0 23 17 NOW_Y
C 1 0 6 06 NOW_M
C 1 0 14 0E NOW_D
C 1 0 45091 B023 NOW_I
C 1 5 2 02 DIGIT_1_PIN
C 1 5 3 03 DIGIT_2_PIN
C 1 5 4 04 DIGIT_3_PIN
C 1 5 5 05 DIGIT_4_PIN
C 1 1 6 06 LED_POWER_PIN
C 1 5 1 01 ONE_WIRE_LINE
C 1 4 23 17 ONE_WIRE_DDR
C 1 1 22 16 ONE_WIRE_PIN
C 1 3 0 00 OWPRF
C 1 2 1 01 OWSB
C 1 0 68 44 DS18B20_CMD_CONVERTTEMP
C 1 0 190 BE DS18B20_CMD_RSCRATCHPAD
C 1 0 78 4E DS18B20_CMD_WSCRATCHPAD
C 1 0 72 48 DS18B20_CMD_CPYSCRATCHPAD
C 1 0 184 B8 DS18B20_CMD_RECEEPROM
C 1 0 180 B4 DS18B20_CMD_RPWRSUPPLY
C 1 0 240 F0 DS18B20_CMD_SEARCHROM
C 1 1 51 33 DS18B20_CMD_READROM
C 1 0 85 55 DS18B20_CMD_MATCHROM
C 1 0 204 CC DS18B20_CMD_SKIPROM
C 1 0 236 EC DS18B20_CMD_ALARMSEARCH
C 1 3 0 00 USI_LATCH_PIN
C 1 1 6 06 USI_DO_PIN
C 1 1 7 07 USI_CLK_PIN
C 1 0 24 18 SW_PORT
C 1 0 22 16 SW_PIN
C 1 3 2 02 SW_PLUS_PIN
C 1 3 3 03 SW_MINUS_PIN
C 1 3 4 04 SW_SET_PIN
C 1 0 1 01 MCU_STATE_DEFAULT
C 1 0 2 02 MCU_STATE_PROGRAM
C 1 0 3 03 MCU_STATE_ERROR
C 1 6 97 61 DIVIDEND
C 1 2 10 0A DIVISOR
List of macros:
nLines nUsed nParams Name
2 18 3 OUTI
2 1 1 DISPLAY_LOAD
1 2 0 _1_WIRE_PULL
1 2 0 _1_WIRE_RELEASE
Program : 259 words.
Constants : 6 words.
Total program memory: 265 words.
Eeprom space : 0 bytes.
Data segment : 9 bytes.
Compilation completed, no errors.
Compilation ended 14.06.2023, 22:56:32

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@ -1,12 +0,0 @@
/avr_sim_project_file
/home/sergeyyarkov/Documents/Projects/Firmwares/AVR/attiny2313a_thermostat/firmware.asm
mainasm=firmware.asm
file=firmware.lst,345,35,266
file=firmware.asm,1,1,1
file=div16u.asm,1,1,1
file=usi.asm,1,1,1
clock=8000000
device-type=ATtiny2313A
device-package=20-pin-PDIP_SOIC
windows=acepSTwz
alert1=0,0,-1,-1,,0,0

24
macros.asm Normal file
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@ -0,0 +1,24 @@
.MACRO outi
ldi @0, @2
out @1, @0
.ENDMACRO
.MACRO display_load
ldi DISP_NUM_L, LOW(@0)
ldi DISP_NUM_H, HIGH(@0)
.ENDMACRO
.MACRO ow_pull
sbi OW_DDR, OW_LINE
.ENDMACRO
.MACRO ow_release
cbi OW_DDR, OW_LINE
.ENDMACRO
.MACRO DELAY16
ldi DELAY_16_r, HIGH(@0*F_CPU/4-2)
ldi DELAY_8_r, LOW(@0*F_CPU/4-2)
rcall DELAY_LOOP_16
.ENDMACRO

546
main.asm Normal file
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;
; Project name: thermostat
; Description: Electronic thermostat on AVR Microcontroller
; Source code: https://github.com/sergeyyarkov/attiny2313a_thermostat
; Device: ATtiny2313A
; Device Datasheet: http://ww1.microchip.com/downloads/en/DeviceDoc/doc8246.pdf
; Assembler: AVR macro assembler 2.2.7
; Clock frequency: 8 MHz External Crystal Oscillator
; Fuses: lfuse: 0xCF, hfuse: 0x9F, efuse: 0xFF, lock: 0xFF
;
; Written by Sergey Yarkov 22.01.2023
.LIST
.INCLUDE "definitions.asm"
.INCLUDE "macros.asm"
//<editor-fold defaultstate="collapsed" desc="Сегмент данных">
; **** СЕГМЕНТ ДАННЫХ ********************************************
.DSEG
.ORG SRAM_START
MCU_STATE: .BYTE 1 ; Текущее состояние МК
SRAM_TEMP_1: .BYTE 2 ; Хранения временного 16-бит числа в ячейке
DIGITS: .BYTE 4 ; Ячейки, где хранятся символы, для вывода на индикатор
CURRENT_DIGIT: .BYTE 1 ; Номер разряда индикатора, который сейчас горит
SW_FLAGS: .BYTE 1 ; Состояние кнопок
HYSTERESIS: .BYTE 1 ; Отклонение температуры от уставки
OW_RECEIVE: .BYTE 1
;//</editor-fold>
//<editor-fold defaultstate="collapsed" desc="Сегмент кода">
; **** СЕГМЕНТ КОДА **********************************************
.CSEG
//<editor-fold defaultstate="collapsed" desc="Вектора">
.ORG 0x00
rjmp RESET_vect
.ORG 0x000D
rjmp TIMER0_COMPA_vect
//</editor-fold>
//<editor-fold defaultstate="collapsed" desc="Прерывание: Динамическая индикация">
; **** ДИНАМИЧЕСКАЯ ИНДИКАЦИЯ ************************************
TIMER0_COMPA_vect:
push r20
push r21
push r16
in r21, SREG
lds r20, CURRENT_DIGIT
cpi r20, 5
brge _CLR_CURRENT_DIGIT ; сброс активного разряда если >= 5
rjmp _indicate_1
_CLR_CURRENT_DIGIT: ; сброс текущего активного разряда в ноль
clr r20
sts CURRENT_DIGIT, r20
_indicate_1:
cpi r20, 0
brne _indicate_2
cbi PORTD, DIGIT_2_PIN
cbi PORTD, DIGIT_3_PIN
cbi PORTD, DIGIT_4_PIN
sbi PORTD, DIGIT_1_PIN
lds TEMP_REG_A, DIGITS+3
rcall DISPLAY_DECODER
rcall USI_TRANSMIT
_indicate_2:
cpi r20, 1
brne _indicate_3
cbi PORTD, DIGIT_1_PIN
cbi PORTD, DIGIT_3_PIN
cbi PORTD, DIGIT_4_PIN
sbi PORTD, DIGIT_2_PIN
lds TEMP_REG_A, DIGITS+2
rcall DISPLAY_DECODER
rcall USI_TRANSMIT
_indicate_3:
cpi r20, 2
brne _indicate_4
cbi PORTD, DIGIT_1_PIN
cbi PORTD, DIGIT_2_PIN
cbi PORTD, DIGIT_4_PIN
sbi PORTD, DIGIT_3_PIN
lds TEMP_REG_A, DIGITS+1
rcall DISPLAY_DECODER
rcall USI_TRANSMIT
_indicate_4:
cpi r20, 3
brne _indicate_exit
cbi PORTD, DIGIT_1_PIN
cbi PORTD, DIGIT_2_PIN
cbi PORTD, DIGIT_3_PIN
sbi PORTD, DIGIT_4_PIN
lds TEMP_REG_A, DIGITS
rcall DISPLAY_DECODER
rcall USI_TRANSMIT
_indicate_exit:
inc r20
sts CURRENT_DIGIT, r20
out SREG, r21
pop r16
pop r21
pop r20
reti
;//</editor-fold>
; **** СТАРТ ПРОГРАММЫ *******************************************
RESET_vect:
ldi TEMP_REG_A, LOW(RAMEND)
out SPL, TEMP_REG_A
//<editor-fold defaultstate="collapsed" desc="Инициализация МК (настрока портов и переферии)">
; **** ПРОЦЕСС ИНИЦИАЛИЗАЦИИ МК **********************************
MCU_INIT:
; **** ИНИЦИАЛИЗАЦИЯ ПИНОВ *************************************
outi r16, DDRD, (1<<LED_ERR_PIN) | (1<<DIGIT_1_PIN) | (1<<DIGIT_2_PIN) | (1<<DIGIT_3_PIN) | (1<<DIGIT_4_PIN) | (0<<UART_RX_PIN) | (1<<UART_TX_PIN)
outi r16, DDRB, (1<<USI_CLK_PIN) | (1<<USI_DO_PIN) | (1<<USI_LATCH_PIN) | (0<<SW_PLUS_PIN) | (0<<SW_MINUS_PIN) | (0<<SW_SET_PIN)
outi r16, PORTB, (1<<SW_PLUS_PIN) | (1<<SW_MINUS_PIN) | (1<<SW_SET_PIN)
; **** ИНИЦИАЛИЗАЦИЯ ТАЙМЕРА 0 **********************************
outi r16, TCCR0A, (1<<WGM01) ; режим CTC Compare A
outi r16, TCCR0B, (1<<CS02) | (1<<CS00) ; 1024 делитель
outi r16, OCR0A, 25 ; число для сравнения. (60Hz)
outi r16, TIMSK, (1<<OCIE0A) ; включение прерывания по совпадению
; **** ИНИЦИАЛИЗАЦИЯ USART *************************************
; outi r16, UBRRL, LOW(3) ; 9600 БОД
; outi r16, UBRRH, HIGH(3) ; 9600 БОД
; outi r16, UCSRB, (1<<RXEN) | (1<<TXEN) ; Включение приема и передачии
; outi r16, UCSRC, (1<<UCSZ1) | (1<<UCSZ0) ; Асинхронный режим, 8 бит фрейм, 1 стоповый бит
clr r1
sts CURRENT_DIGIT, r1
ldi r16, 0x00
sts MCU_STATE, r16 ; переводим МК сразу в режим измерения температуры
clr r16
sts OW_RECEIVE, r16
display_load 0 ; загружаем число, которое нужно показать на индикатор
; ldi r16, 0b10000000
; lsr r16
; sbr r16, (1<<7)
; sbrc OWFR, OWPRF
; ldi r16, DS18B20_CMD_SKIPROM
; mov r8, r16
; rcall OW_PRESENCE
; rcall OW_SEND_BYTE
;
; ldi r16, DS18B20_CMD_RSCRATCHPAD
; mov r8, r16
;;; rcall OW_PRESENCE
; rcall OW_SEND_BYTE
;
; rcall OW_RD_BYTE
;; rcall OW_RD_BYTE
; rcall TEMP_CONV
; rcall OW_PRESENCE
rcall TEMP_CONV
rcall DEBOUNCE_SW
rcall DEBOUNCE_SW
rcall DEBOUNCE_SW
rcall DEBOUNCE_SW
rcall TEMP_RD
lds r16, OW_RECEIVE
mov DISP_NUM_L, r16
ldi DISP_NUM_H, 0
; sei
//</editor-fold>
//<editor-fold defaultstate="collapsed" desc="Главный цикл">
; **** ГЛАВНЫЙ ЦИКЛ **********************************************
LOOP:
; rcall DISPLAY_UPD_DIGITS
lds r16, MCU_STATE ; получаем текущее состояние МК
_STATE_DEFAULT:
cpi r16, MCU_STATE_DEFAULT
brne _STATE_PROGRAM
rcall DISPLAY_UPD_DIGITS
; rcall TEMP_RD
sbrc OWFR, OWPRF
sbi PORTD, PD6
sbrs OWFR, OWPRF
cbi PORTD, PD6
rcall TEMP_CONV
rcall DEBOUNCE_SW
rcall DEBOUNCE_SW
rcall DEBOUNCE_SW
rcall DEBOUNCE_SW
rcall TEMP_RD
lds r17, OW_RECEIVE
mov DISP_NUM_L, r17
ldi DISP_NUM_H, 0
_STATE_PROGRAM:
cpi r16, MCU_STATE_PROGRAM
brne _STATE_ERROR
rcall DISPLAY_UPD_DIGITS
rcall SW_CHECK_PROCESS
_STATE_ERROR:
cpi r16, MCU_STATE_ERROR
brne LOOP
ldi r17, 11
sts DIGITS, r17
sts DIGITS+1, r17
sts DIGITS+2, r17
sts DIGITS+3, r17
nop
rjmp LOOP
//</editor-fold>
; **** ПОДПРОГРАММЫ **********************************************
.INCLUDE "div16u.asm"
DELAY_LOOP_16:
subi DELAY_8_r, 1
sbci DELAY_16_r, 0
brcc DELAY_LOOP_16
ret
//<editor-fold defaultstate="collapsed" desc="Подпрограмма: чтение и опрос температуры">
TEMP_RD:
push r16
cli
rcall OW_PRESENCE
ldi r16, DS18B20_CMD_SKIPROM
mov OW_CMD_r, r16
rcall OW_SEND_BYTE
ldi r16, DS18B20_CMD_RSCRATCHPAD
mov OW_CMD_r, r16
rcall OW_SEND_BYTE
rcall OW_RD_BYTE
sei
pop r16
ret
;
TEMP_CONV:
push r16
cli
rcall OW_PRESENCE
ldi r16, DS18B20_CMD_SKIPROM
mov OW_CMD_r, r16
rcall OW_SEND_BYTE
ldi r16, DS18B20_CMD_CONVERTTEMP
mov OW_CMD_r, r16
rcall OW_SEND_BYTE
sei
pop r16
ret
//</editor-fold>
//<editor-fold defaultstate="collapsed" desc="Подпрограмма: отправка байта в сдвиговый регистр">
; **** ОТПРАВКА БАЙТА В СДВИГОВЫЙ РЕГИСТР *************************
USI_TRANSMIT:
push r16
out USIDR, r0 ; Байт для отправки всегда находится в регистре r0. Помещаем данные в регистр USIDR.
; Enable USI Overflow Interrupt Flag (will be 0 if transfer is not compeleted)
ldi TEMP_REG_A, (1<<USIOIF)
out USISR, TEMP_REG_A
; Load settings of USI into temp register
; This will setup USI to Three-wire mode, Software clock strobe (USITC)
; with External, positive edge and toggle USCK
;
; USIWM0 <--------------> USI Wire Mode
; USICS1 <--------------> USI Clock Source Select
; USICLK <--------------> USI Clock Strobe
; USITC <--------------> USI Toggle Clock (Enable clock generation)
ldi TEMP_REG_A, (1<<USIWM0) | (1<<USICS1) | (1<<USICLK) | (1<<USITC)
_USI_TRANSMIT_LOOP: ; Execute loop when USIOIF is 0
out USICR, TEMP_REG_A ; Load settings from temp register into USI Control Register
sbis USISR, USIOIF ; If transfer is comleted then move out of loop
rjmp _USI_TRANSMIT_LOOP
; Send pulse into LATCH pin.
; This will copy byte from 74hc595 shift register into 74hc595 storage register
sbi PORTB, USI_LATCH_PIN
cbi PORTB, USI_LATCH_PIN
pop r16
ret//</editor-fold>
//<editor-fold defaultstate="collapsed" desc="Подпрограмма: опрос кнопок">
SW_CHECK_PROCESS:
rcall DEBOUNCE_SW
sbis SW_PIN, SW_PLUS_PIN
adiw DISP_NUM_L, 1
sbis SW_PIN, SW_MINUS_PIN
sbiw DISP_NUM_L, 1
ret//</editor-fold>
//<editor-fold defaultstate="collapsed" desc="Реализация интерфеса 1-Wire">
//<editor-fold defaultstate="collapsed" desc="1-Wire: оспрос присутствия">
; **** ОПРОС ПРИСУТСТВИЯ УСТРОЙСТВА ******************************
OW_PRESENCE:
ow_pull
DELAY16 480
ow_release
DELAY16 70
rcall OW_CHECK_PRESENCE
DELAY16 410
ret
//</editor-fold>
//<editor-fold defaultstate="collapsed" desc="1-Wire: проверка наличия устройства">
; **** ПРОВЕРКА НАЛИЧИЯ УСТРОЙСТВА *******************************
; Если подчиненное устройство притянет шину, то устанавливаем флаг OWPRF в единицу в регистре флагов
;
OW_CHECK_PRESENCE:
sbis OW_PIN, OW_LINE
sbr OWFR, (1<<OWPRF)
rjmp _EXIT
sbic OW_PIN, OW_LINE
cbr OWFR, (1<<OWPRF)
_EXIT:
ret
//</editor-fold>
//<editor-fold defaultstate="collapsed" desc="1-Wire: отправка байта">
OW_SEND_BYTE:
push r16
push r17
mov r16, OW_CMD_r
ldi r17, 8
_OW_SEND_BYTE_LOOP:
lsr r16
brcc _OW_SEND_0
brcs _OW_SEND_1
_OW_SEND_0:
ow_pull
DELAY16 60
ow_release
DELAY16 10
rjmp _OW_SEND_BYTE_END
_OW_SEND_1:
ow_pull
DELAY16 6
ow_release
DELAY16 64
_OW_SEND_BYTE_END:
dec r17
brne _OW_SEND_BYTE_LOOP
pop r17
pop r16
ret
//</editor-fold>
//<editor-fold defaultstate="collapsed" desc="1-Wire: чтение байта">
OW_RD_BYTE:
push r16
push r17
ldi r16, 8
_OW_RD_BYTE_LP:
ow_pull
DELAY16 6
ow_release
DELAY16 9
lds r17, OW_RECEIVE
lsr r17
sbic OW_PIN, OW_LINE
sbr r17, (1<<7)
sts OW_RECEIVE, r17
DELAY16 55
dec r16
brne _OW_RD_BYTE_LP
pop r17
pop r16
ret
//</editor-fold>
//</editor-fold>
//<editor-fold defaultstate="collapsed" desc="Подпрограмма: обновление ячеек в SRAM для индикатора">
; **** ПОЛУЧЕНИЕ ЦИФР ИЗ 16-ТИ БИТНОГО ЧИСЛА *********************
; Описание: Перемещает цифры числа в соответствующие ячейки памяти в SRAM
; путем деления этого числа несколько раз
DISPLAY_UPD_DIGITS:
cli
push r21
ldi r21, 4 ; (4 раза делим) т.к индикатор четырех разрядный
; инициализация указателя (за каждый проход цикла будет инкрементироваться)
ldi XL, LOW(DIGITS)
ldi XH, HIGH(DIGITS)
.equ dividend = SRAM_TEMP_1 ; число которе будем делить
.equ divisor = 10 ; на что делим
; загружаем число которое хотим поделить в адрес SRAM делимого
sts dividend, DISP_NUM_L
sts dividend+1, DISP_NUM_H
; четыре раза производим деление для получения остатков
DIV_LOOP:
; заполняем нужные регистры
lds dd16uL, dividend
lds dd16uH, dividend+1
ldi dv16uL, LOW(divisor)
ldi dv16uH, HIGH(divisor)
rcall div16u ; делим
st X+, drem16uL ; сохраняем остаток в ячейку по указателю и увеличиваем его
; обновляем делимое
sts dividend, dres16uL
sts dividend+1, dres16uH
dec r21 ; декрементируем счетчик цикла
brne DIV_LOOP ; делим еще раз если не 0
pop r21
sei
ret
//</editor-fold>
//<editor-fold defaultstate="collapsed" desc="Подпрограмма: получение символа для индикатора">
; **** ЗАГРУЖАЕТ НУЖНЫЙ АДРЕС СИМВОЛА В R0 ***********************
DISPLAY_DECODER:
push r16
push r17
ldi ZL, LOW(2*DISPLAY_SYMBOLS)
ldi ZH, HIGH(2*DISPLAY_SYMBOLS)
clr TEMP_REG_B
add ZL, TEMP_REG_A
adc ZH, TEMP_REG_B
lpm r0, Z
pop r17
pop r16
ret//</editor-fold>
//<editor-fold defaultstate="collapsed" desc="Подпрограмма: устранение дребезга кнопки">
DEBOUNCE_SW:
push r16
push r17
push r18
ldi r18, 10
_loop_2:
ldi r17, 255
_loop_0:
ldi r16, 255
_dec_0:
dec r16
brne _dec_0
_loop_1:
dec r17
brne _loop_0
_loop_3:
dec r18
brne _loop_2
pop r18
pop r17
pop r16
ret//</editor-fold>
//<editor-fold defaultstate="collapsed" desc="Подпрограмма: задержка">
DELAY:
push r16
push r17
ldi r16, 255
_DELAY_1:
ldi r17, 255
_DELAY_2:
dec r17
nop
nop
nop
brne _DELAY_2
dec r16
brne _DELAY_1
pop r17
pop r16
ret //</editor-fold>
//<editor-fold defaultstate="collapsed" desc="Символы для индикатора">
DISPLAY_SYMBOLS:
; HGFEDCBA HGFEDCBA
.DB 0b11000000, 0b11111001 ; 0, 1
.DB 0b10100100, 0b10110000 ; 2, 3
.DB 0b10011001, 0b10010010 ; 4, 5
.DB 0b10000010, 0b11111000 ; 6, 7
.DB 0b10000000, 0b10010000 ; 8, 9
.DB 0b10011100, 0b10111111 ; °, -//</editor-fold>
//</editor-fold>
//<editor-fold defaultstate="collapsed" desc="Сегмент EEPROM">
; **** СЕГМЕНТ EEPROM ********************************************
; .ESEG
; INFO: .DB "AVR Thermostat. Written by Sergey Yarkov 22.01.2023"
;</editor-fold>

44
main.hex Normal file
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@ -0,0 +1,44 @@
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:0200000049C0F5
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@ -0,0 +1,171 @@
#
# Generated Makefile - do not edit!
#
# Edit the Makefile in the project folder instead (../Makefile). Each target
# has a -pre and a -post target defined where you can add customized code.
#
# This makefile implements configuration specific macros and targets.
# Include project Makefile
ifeq "${IGNORE_LOCAL}" "TRUE"
# do not include local makefile. User is passing all local related variables already
else
include Makefile
# Include makefile containing local settings
ifeq "$(wildcard nbproject/Makefile-local-default.mk)" "nbproject/Makefile-local-default.mk"
include nbproject/Makefile-local-default.mk
endif
endif
# Environment
MKDIR=mkdir -p
RM=rm -f
MV=mv
CP=cp
# Macros
CND_CONF=default
ifeq ($(TYPE_IMAGE), DEBUG_RUN)
IMAGE_TYPE=debug
OUTPUT_SUFFIX=obj
DEBUGGABLE_SUFFIX=obj
FINAL_IMAGE=${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.${OUTPUT_SUFFIX}
else
IMAGE_TYPE=production
OUTPUT_SUFFIX=obj
DEBUGGABLE_SUFFIX=obj
FINAL_IMAGE=${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.${OUTPUT_SUFFIX}
endif
ifeq ($(COMPARE_BUILD), true)
COMPARISON_BUILD=
else
COMPARISON_BUILD=
endif
ifdef SUB_IMAGE_ADDRESS
else
SUB_IMAGE_ADDRESS_COMMAND=
endif
# Object Directory
OBJECTDIR=build/${CND_CONF}/${IMAGE_TYPE}
# Distribution Directory
DISTDIR=dist/${CND_CONF}/${IMAGE_TYPE}
# Source Files Quoted if spaced
SOURCEFILES_QUOTED_IF_SPACED=main.asm div16u.asm definitions.asm macros.asm
# Object Files Quoted if spaced
OBJECTFILES_QUOTED_IF_SPACED=${OBJECTDIR}/main.obj ${OBJECTDIR}/div16u.obj ${OBJECTDIR}/definitions.obj ${OBJECTDIR}/macros.obj
POSSIBLE_DEPFILES=${OBJECTDIR}/main.obj.d ${OBJECTDIR}/div16u.obj.d ${OBJECTDIR}/definitions.obj.d ${OBJECTDIR}/macros.obj.d
# Object Files
OBJECTFILES=${OBJECTDIR}/main.obj ${OBJECTDIR}/div16u.obj ${OBJECTDIR}/definitions.obj ${OBJECTDIR}/macros.obj
# Source Files
SOURCEFILES=main.asm div16u.asm definitions.asm macros.asm
# Pack Options
PACK_ASSEMBLER_OPTIONS=-I "${DFP_DIR}/avrasm/inc" -i tn2313Adef.inc
CFLAGS=
ASFLAGS=
LDLIBSOPTIONS=
############# Tool locations ##########################################
# If you copy a project from one host to another, the path where the #
# compiler is installed may be different. #
# If you open this project with MPLAB X in the new host, this #
# makefile will be regenerated and the paths will be corrected. #
#######################################################################
# fixDeps replaces a bunch of sed/cat/printf statements that slow down the build
FIXDEPS=fixDeps
.build-conf: ${BUILD_SUBPROJECTS}
ifneq ($(INFORMATION_MESSAGE), )
@echo $(INFORMATION_MESSAGE)
endif
${MAKE} -f nbproject/Makefile-default.mk ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.${OUTPUT_SUFFIX}
# ------------------------------------------------------------------------------------
# Rules for buildStep: assemble
ifeq ($(TYPE_IMAGE), DEBUG_RUN)
${OBJECTDIR}/main.obj: main.asm nbproject/Makefile-${CND_CONF}.mk
@${MKDIR} ${DISTDIR}
@${MKDIR} "${OBJECTDIR}"
@${RM} ${OBJECTDIR}/main.obj
${MP_AS} -fI -W+ie ${PACK_ASSEMBLER_OPTIONS} -d ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.${DEBUGGABLE_SUFFIX} -m ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.map -S ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.tmp main.asm
${OBJECTDIR}/div16u.obj: div16u.asm nbproject/Makefile-${CND_CONF}.mk
@${MKDIR} ${DISTDIR}
@${MKDIR} "${OBJECTDIR}"
@${RM} ${OBJECTDIR}/div16u.obj
${MP_AS} -fI -W+ie ${PACK_ASSEMBLER_OPTIONS} -d ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.${DEBUGGABLE_SUFFIX} -m ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.map -S ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.tmp div16u.asm
${OBJECTDIR}/definitions.obj: definitions.asm nbproject/Makefile-${CND_CONF}.mk
@${MKDIR} ${DISTDIR}
@${MKDIR} "${OBJECTDIR}"
@${RM} ${OBJECTDIR}/definitions.obj
${MP_AS} -fI -W+ie ${PACK_ASSEMBLER_OPTIONS} -d ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.${DEBUGGABLE_SUFFIX} -m ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.map -S ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.tmp definitions.asm
${OBJECTDIR}/macros.obj: macros.asm nbproject/Makefile-${CND_CONF}.mk
@${MKDIR} ${DISTDIR}
@${MKDIR} "${OBJECTDIR}"
@${RM} ${OBJECTDIR}/macros.obj
${MP_AS} -fI -W+ie ${PACK_ASSEMBLER_OPTIONS} -d ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.${DEBUGGABLE_SUFFIX} -m ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.map -S ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.tmp macros.asm
else
${OBJECTDIR}/main.obj: main.asm nbproject/Makefile-${CND_CONF}.mk
@${MKDIR} ${DISTDIR}
@${MKDIR} "${OBJECTDIR}"
@${RM} ${OBJECTDIR}/main.obj
${MP_AS} -fI -W+ie ${PACK_ASSEMBLER_OPTIONS} -d ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.${DEBUGGABLE_SUFFIX} -S ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.tmp -o ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.hex -m ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.map -l ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.lss main.asm
${OBJECTDIR}/div16u.obj: div16u.asm nbproject/Makefile-${CND_CONF}.mk
@${MKDIR} ${DISTDIR}
@${MKDIR} "${OBJECTDIR}"
@${RM} ${OBJECTDIR}/div16u.obj
${MP_AS} -fI -W+ie ${PACK_ASSEMBLER_OPTIONS} -d ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.${DEBUGGABLE_SUFFIX} -S ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.tmp -o ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.hex -m ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.map -l ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.lss div16u.asm
${OBJECTDIR}/definitions.obj: definitions.asm nbproject/Makefile-${CND_CONF}.mk
@${MKDIR} ${DISTDIR}
@${MKDIR} "${OBJECTDIR}"
@${RM} ${OBJECTDIR}/definitions.obj
${MP_AS} -fI -W+ie ${PACK_ASSEMBLER_OPTIONS} -d ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.${DEBUGGABLE_SUFFIX} -S ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.tmp -o ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.hex -m ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.map -l ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.lss definitions.asm
${OBJECTDIR}/macros.obj: macros.asm nbproject/Makefile-${CND_CONF}.mk
@${MKDIR} ${DISTDIR}
@${MKDIR} "${OBJECTDIR}"
@${RM} ${OBJECTDIR}/macros.obj
${MP_AS} -fI -W+ie ${PACK_ASSEMBLER_OPTIONS} -d ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.${DEBUGGABLE_SUFFIX} -S ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.tmp -o ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.hex -m ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.map -l ${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.lss macros.asm
endif
# ------------------------------------------------------------------------------------
# Rules for buildStep: link
ifeq ($(TYPE_IMAGE), DEBUG_RUN)
${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.${OUTPUT_SUFFIX}: ${OBJECTFILES} nbproject/Makefile-${CND_CONF}.mk
else
${DISTDIR}/attiny2313a_thermostat.X.${IMAGE_TYPE}.${OUTPUT_SUFFIX}: ${OBJECTFILES} nbproject/Makefile-${CND_CONF}.mk
endif
# Subprojects
.build-subprojects:
# Subprojects
.clean-subprojects:
# Clean Targets
.clean-conf: ${CLEAN_SUBPROJECTS}
${RM} -r ${OBJECTDIR}
${RM} -r ${DISTDIR}
# Enable dependency checking
.dep.inc: .depcheck-impl
DEPFILES=$(shell "${PATH_TO_IDE_BIN}"mplabwildcard ${POSSIBLE_DEPFILES})
ifneq (${DEPFILES},)
include ${DEPFILES}
endif

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@ -0,0 +1,14 @@
#
#Mon Jun 19 12:50:04 MSK 2023
default.languagetoolchain.version=2.2.7
default.Pack.dfplocation=/home/sergeyyarkov/.mchp_packs/Microchip/ATtiny_DFP/3.0.151
default.com-microchip-mplab-mdbcore-simulator-Simulator.md5=19e4dc0f223322f74cda227c3c12c71c
conf.ids=default
default.languagetoolchain.dir=/usr/bin
host.id=1707-dsfu-bg
configurations-xml=d50925b65bb9625a2bd338eb6fa64d60
default.com-microchip-mplab-nbide-toolchain-avrasm-AVRASMLanguageToolchain.md5=0e94da8ed93e9650ffef50929833a79f
com-microchip-mplab-nbide-embedded-makeproject-MakeProject.md5=6e02ca5e9f5042ffd365b42ab82d3a9b
user-defined-mime-resolver-xml=none
proj.dir=/home/sergeyyarkov/Documents/Projects/Firmwares/AVR/attiny2313a_thermostat.X
host.platform=linux

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@ -0,0 +1,69 @@
#
# Generated Makefile - do not edit!
#
# Edit the Makefile in the project folder instead (../Makefile). Each target
# has a pre- and a post- target defined where you can add customization code.
#
# This makefile implements macros and targets common to all configurations.
#
# NOCDDL
# Building and Cleaning subprojects are done by default, but can be controlled with the SUB
# macro. If SUB=no, subprojects will not be built or cleaned. The following macro
# statements set BUILD_SUB-CONF and CLEAN_SUB-CONF to .build-reqprojects-conf
# and .clean-reqprojects-conf unless SUB has the value 'no'
SUB_no=NO
SUBPROJECTS=${SUB_${SUB}}
BUILD_SUBPROJECTS_=.build-subprojects
BUILD_SUBPROJECTS_NO=
BUILD_SUBPROJECTS=${BUILD_SUBPROJECTS_${SUBPROJECTS}}
CLEAN_SUBPROJECTS_=.clean-subprojects
CLEAN_SUBPROJECTS_NO=
CLEAN_SUBPROJECTS=${CLEAN_SUBPROJECTS_${SUBPROJECTS}}
# Project Name
PROJECTNAME=attiny2313a_thermostat.X
# Active Configuration
DEFAULTCONF=default
CONF=${DEFAULTCONF}
# All Configurations
ALLCONFS=default
# build
.build-impl: .build-pre
${MAKE} -f nbproject/Makefile-${CONF}.mk SUBPROJECTS=${SUBPROJECTS} .build-conf
# clean
.clean-impl: .clean-pre
${MAKE} -f nbproject/Makefile-${CONF}.mk SUBPROJECTS=${SUBPROJECTS} .clean-conf
# clobber
.clobber-impl: .clobber-pre .depcheck-impl
${MAKE} SUBPROJECTS=${SUBPROJECTS} CONF=default clean
# all
.all-impl: .all-pre .depcheck-impl
${MAKE} SUBPROJECTS=${SUBPROJECTS} CONF=default build
# dependency checking support
.depcheck-impl:
# @echo "# This code depends on make tool being used" >.dep.inc
# @if [ -n "${MAKE_VERSION}" ]; then \
# echo "DEPFILES=\$$(wildcard \$$(addsuffix .d, \$${OBJECTFILES}))" >>.dep.inc; \
# echo "ifneq (\$${DEPFILES},)" >>.dep.inc; \
# echo "include \$${DEPFILES}" >>.dep.inc; \
# echo "endif" >>.dep.inc; \
# else \
# echo ".KEEP_STATE:" >>.dep.inc; \
# echo ".KEEP_STATE_FILE:.make.state.\$${CONF}" >>.dep.inc; \
# fi

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@ -0,0 +1,37 @@
#
# Generated Makefile - do not edit!
#
#
# This file contains information about the location of compilers and other tools.
# If you commmit this file into your revision control server, you will be able to
# to checkout the project and build it from the command line with make. However,
# if more than one person works on the same project, then this file might show
# conflicts since different users are bound to have compilers in different places.
# In that case you might choose to not commit this file and let MPLAB X recreate this file
# for each user. The disadvantage of not commiting this file is that you must run MPLAB X at
# least once so the file gets created and the project can be built. Finally, you can also
# avoid using this file at all if you are only building from the command line with make.
# You can invoke make with the values of the macros:
# $ makeMP_CC="/opt/microchip/mplabc30/v3.30c/bin/pic30-gcc" ...
#
PATH_TO_IDE_BIN=/opt/microchip/mplabx/v6.00/mplab_platform/platform/../mplab_ide/modules/../../bin/
# Adding MPLAB X bin directory to path.
PATH:=/opt/microchip/mplabx/v6.00/mplab_platform/platform/../mplab_ide/modules/../../bin/:$(PATH)
# Path to java used to run MPLAB X when this makefile was created
MP_JAVA_PATH="/opt/microchip/mplabx/v6.00/sys/java/zulu8.54.0.21-ca-fx-jre8.0.292-linux_x64/bin/"
OS_CURRENT="$(shell uname -s)"
# MP_CC is not defined
# MP_CPPC is not defined
# MP_BC is not defined
MP_AS="/usr/bin/avrasm2"
# MP_LD is not defined
# MP_AR is not defined
DEP_GEN=${MP_JAVA_PATH}java -jar "/opt/microchip/mplabx/v6.00/mplab_platform/platform/../mplab_ide/modules/../../bin/extractobjectdependencies.jar"
# MP_CC_DIR is not defined
# MP_CPPC_DIR is not defined
# MP_BC_DIR is not defined
MP_AS_DIR="/usr/bin"
# MP_LD_DIR is not defined
# MP_AR_DIR is not defined
# MP_BC_DIR is not defined
DFP_DIR=/home/sergeyyarkov/.mchp_packs/Microchip/ATtiny_DFP/3.0.151

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@ -0,0 +1,10 @@
#
# Generated - do not edit!
#
# NOCDDL
#
CND_BASEDIR=`pwd`
# default configuration
CND_ARTIFACT_DIR_default=dist/default/production
CND_ARTIFACT_NAME_default=attiny2313a_thermostat.X.production.obj
CND_ARTIFACT_PATH_default=dist/default/production/attiny2313a_thermostat.X.production.obj

1026
nbproject/configurations.xml Normal file

File diff suppressed because it is too large Load Diff

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@ -0,0 +1,25 @@
<?xml version="1.0" encoding="UTF-8"?>
<configurationDescriptor version="65">
<projectmakefile>Makefile</projectmakefile>
<defaultConf>0</defaultConf>
<confs>
<conf name="default" type="2">
<platformToolSN></platformToolSN>
<languageToolchainDir>/usr/bin</languageToolchainDir>
<mdbdebugger version="1">
<placeholder1>place holder 1</placeholder1>
<placeholder2>place holder 2</placeholder2>
</mdbdebugger>
<runprofile version="6">
<args></args>
<rundir></rundir>
<buildfirst>true</buildfirst>
<console-type>0</console-type>
<terminal-type>0</terminal-type>
<remove-instrumentation>0</remove-instrumentation>
<environment>
</environment>
</runprofile>
</conf>
</confs>
</configurationDescriptor>

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@ -0,0 +1,11 @@
<?xml version="1.0" encoding="UTF-8"?>
<project-private xmlns="http://www.netbeans.org/ns/project-private/1">
<editor-bookmarks xmlns="http://www.netbeans.org/ns/editor-bookmarks/2" lastBookmarkId="1"/>
<open-files xmlns="http://www.netbeans.org/ns/projectui-open-files/2">
<group>
<file>file:/home/sergeyyarkov/Documents/Projects/Firmwares/AVR/attiny2313a_thermostat.X/main.asm</file>
<file>file:/home/sergeyyarkov/Documents/Projects/Firmwares/AVR/attiny2313a_thermostat.X/macros.asm</file>
<file>file:/home/sergeyyarkov/Documents/Projects/Firmwares/AVR/attiny2313a_thermostat.X/definitions.asm</file>
</group>
</open-files>
</project-private>

27
nbproject/project.xml Normal file
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@ -0,0 +1,27 @@
<?xml version="1.0" encoding="UTF-8"?>
<project xmlns="http://www.netbeans.org/ns/project/1">
<type>com.microchip.mplab.nbide.embedded.makeproject</type>
<configuration>
<data xmlns="http://www.netbeans.org/ns/make-project/1">
<name>attiny2313a_thermostat</name>
<creation-uuid>f831f251-bb28-4667-8cff-9eb37aa84fa6</creation-uuid>
<make-project-type>0</make-project-type>
<c-extensions/>
<cpp-extensions/>
<header-extensions/>
<asminc-extensions/>
<sourceEncoding>UTF-8</sourceEncoding>
<make-dep-projects/>
<sourceRootList/>
<confList>
<confElem>
<name>default</name>
<type>2</type>
</confElem>
</confList>
<formatting>
<project-formatting-style>false</project-formatting-style>
</formatting>
</data>
</configuration>
</project>

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@ -1,698 +0,0 @@
;***** THIS IS A MACHINE GENERATED FILE - DO NOT EDIT ********************
;***** Created: 2011-02-09 12:04 ******* Source: ATtiny2313A.xml *********
;*************************************************************************
;* A P P L I C A T I O N N O T E F O R T H E A V R F A M I L Y
;*
;* Number : AVR000
;* File Name : "tn2313Adef.inc"
;* Title : Register/Bit Definitions for the ATtiny2313A
;* Date : 2011-02-09
;* Version : 2.35
;* Support E-mail : avr@atmel.com
;* Target MCU : ATtiny2313A
;*
;* DESCRIPTION
;* When including this file in the assembly program file, all I/O register
;* names and I/O register bit names appearing in the data book can be used.
;* In addition, the six registers forming the three data pointers X, Y and
;* Z have been assigned names XL - ZH. Highest RAM address for Internal
;* SRAM is also defined
;*
;* The Register names are represented by their hexadecimal address.
;*
;* The Register Bit names are represented by their bit number (0-7).
;*
;* Please observe the difference in using the bit names with instructions
;* such as "sbr"/"cbr" (set/clear bit in register) and "sbrs"/"sbrc"
;* (skip if bit in register set/cleared). The following example illustrates
;* this:
;*
;* in r16,PORTB ;read PORTB latch
;* sbr r16,(1<<PB6)+(1<<PB5) ;set PB6 and PB5 (use masks, not bit#)
;* out PORTB,r16 ;output to PORTB
;*
;* in r16,TIFR ;read the Timer Interrupt Flag Register
;* sbrc r16,TOV0 ;test the overflow flag (use bit#)
;* rjmp TOV0_is_set ;jump if set
;* ... ;otherwise do something else
;*************************************************************************
#ifndef _TN2313ADEF_INC_
#define _TN2313ADEF_INC_
#pragma partinc 0
; ***** SPECIFY DEVICE ***************************************************
.device ATtiny2313A
#pragma AVRPART ADMIN PART_NAME ATtiny2313A
.equ SIGNATURE_000 = 0x1e
.equ SIGNATURE_001 = 0x91
.equ SIGNATURE_002 = 0x0a
#pragma AVRPART CORE CORE_VERSION V2
#pragma AVRPART CORE NEW_INSTRUCTIONS lpm rd,z+
; ***** I/O REGISTER DEFINITIONS *****************************************
; NOTE:
; Definitions marked "MEMORY MAPPED"are extended I/O ports
; and cannot be used with IN/OUT instructions
.equ SREG = 0x3f
.equ SPL = 0x3d
.equ OCR0B = 0x3c
.equ GIMSK = 0x3b
.equ EIFR = 0x3a
.equ TIMSK = 0x39
.equ TIFR = 0x38
.equ SPMCSR = 0x37
.equ OCR0A = 0x36
.equ MCUCR = 0x35
.equ MCUSR = 0x34
.equ TCCR0B = 0x33
.equ TCNT0 = 0x32
.equ OSCCAL = 0x31
.equ TCCR0A = 0x30
.equ TCCR1A = 0x2f
.equ TCCR1B = 0x2e
.equ TCNT1L = 0x2c
.equ TCNT1H = 0x2d
.equ OCR1AL = 0x2a
.equ OCR1AH = 0x2b
.equ OCR1BL = 0x28
.equ OCR1BH = 0x29
.equ CLKPR = 0x26
.equ ICR1L = 0x24
.equ ICR1H = 0x25
.equ GTCCR = 0x23
.equ TCCR1C = 0x22
.equ WDTCR = 0x21
.equ PCMSK0 = 0x20
.equ EEAR = 0x1e
.equ EEDR = 0x1d
.equ EECR = 0x1c
.equ PORTA = 0x1b
.equ DDRA = 0x1a
.equ PINA = 0x19
.equ PORTB = 0x18
.equ DDRB = 0x17
.equ PINB = 0x16
.equ GPIOR2 = 0x15
.equ GPIOR1 = 0x14
.equ GPIOR0 = 0x13
.equ PORTD = 0x12
.equ DDRD = 0x11
.equ PIND = 0x10
.equ USIDR = 0x0f
.equ USISR = 0x0e
.equ USICR = 0x0d
.equ UDR = 0x0c
.equ UCSRA = 0x0b
.equ UCSRB = 0x0a
.equ UBRRL = 0x09
.equ ACSR = 0x08
.equ BODCR = 0x07
.equ PRR = 0x06
.equ PCMSK2 = 0x05
.equ PCMSK1 = 0x04
.equ UCSRC = 0x03
.equ UBRRH = 0x02
.equ DIDR = 0x01
; ***** BIT DEFINITIONS **************************************************
; ***** PORTB ************************
; PORTB - Port B Data Register
.equ PORTB0 = 0 ; Port B Data Register bit 0
.equ PB0 = 0 ; For compatibility
.equ PORTB1 = 1 ; Port B Data Register bit 1
.equ PB1 = 1 ; For compatibility
.equ PORTB2 = 2 ; Port B Data Register bit 2
.equ PB2 = 2 ; For compatibility
.equ PORTB3 = 3 ; Port B Data Register bit 3
.equ PB3 = 3 ; For compatibility
.equ PORTB4 = 4 ; Port B Data Register bit 4
.equ PB4 = 4 ; For compatibility
.equ PORTB5 = 5 ; Port B Data Register bit 5
.equ PB5 = 5 ; For compatibility
.equ PORTB6 = 6 ; Port B Data Register bit 6
.equ PB6 = 6 ; For compatibility
.equ PORTB7 = 7 ; Port B Data Register bit 7
.equ PB7 = 7 ; For compatibility
; DDRB - Port B Data Direction Register
.equ DDB0 = 0 ; Port B Data Direction Register bit 0
.equ DDB1 = 1 ; Port B Data Direction Register bit 1
.equ DDB2 = 2 ; Port B Data Direction Register bit 2
.equ DDB3 = 3 ; Port B Data Direction Register bit 3
.equ DDB4 = 4 ; Port B Data Direction Register bit 4
.equ DDB5 = 5 ; Port B Data Direction Register bit 5
.equ DDB6 = 6 ; Port B Data Direction Register bit 6
.equ DDB7 = 7 ; Port B Data Direction Register bit 7
; PINB - Port B Input Pins
.equ PINB0 = 0 ; Port B Input Pins bit 0
.equ PINB1 = 1 ; Port B Input Pins bit 1
.equ PINB2 = 2 ; Port B Input Pins bit 2
.equ PINB3 = 3 ; Port B Input Pins bit 3
.equ PINB4 = 4 ; Port B Input Pins bit 4
.equ PINB5 = 5 ; Port B Input Pins bit 5
.equ PINB6 = 6 ; Port B Input Pins bit 6
.equ PINB7 = 7 ; Port B Input Pins bit 7
; ***** TIMER_COUNTER_0 **************
; TIMSK - Timer/Counter Interrupt Mask Register
.equ OCIE0A = 0 ; Timer/Counter0 Output Compare Match A Interrupt Enable
.equ TOIE0 = 1 ; Timer/Counter0 Overflow Interrupt Enable
.equ OCIE0B = 2 ; Timer/Counter0 Output Compare Match B Interrupt Enable
; TIFR - Timer/Counter Interrupt Flag register
.equ OCF0A = 0 ; Timer/Counter0 Output Compare Flag 0A
.equ TOV0 = 1 ; Timer/Counter0 Overflow Flag
.equ OCF0B = 2 ; Timer/Counter0 Output Compare Flag 0B
; OCR0B - Timer/Counter0 Output Compare Register
.equ OCR0_0 = 0 ;
.equ OCR0_1 = 1 ;
.equ OCR0_2 = 2 ;
.equ OCR0_3 = 3 ;
.equ OCR0_4 = 4 ;
.equ OCR0_5 = 5 ;
.equ OCR0_6 = 6 ;
.equ OCR0_7 = 7 ;
; OCR0A - Timer/Counter0 Output Compare Register
.equ OCR0A_0 = 0 ;
.equ OCR0A_1 = 1 ;
.equ OCR0A_2 = 2 ;
.equ OCR0A_3 = 3 ;
.equ OCR0A_4 = 4 ;
.equ OCR0A_5 = 5 ;
.equ OCR0A_6 = 6 ;
.equ OCR0A_7 = 7 ;
; TCCR0A - Timer/Counter Control Register A
.equ WGM00 = 0 ; Waveform Generation Mode
.equ WGM01 = 1 ; Waveform Generation Mode
.equ COM0B0 = 4 ; Compare Match Output B Mode
.equ COM0B1 = 5 ; Compare Match Output B Mode
.equ COM0A0 = 6 ; Compare Match Output A Mode
.equ COM0A1 = 7 ; Compare Match Output A Mode
; TCNT0 - Timer/Counter0
.equ TCNT0_0 = 0 ;
.equ TCNT0_1 = 1 ;
.equ TCNT0_2 = 2 ;
.equ TCNT0_3 = 3 ;
.equ TCNT0_4 = 4 ;
.equ TCNT0_5 = 5 ;
.equ TCNT0_6 = 6 ;
.equ TCNT0_7 = 7 ;
; TCCR0B - Timer/Counter Control Register B
.equ TCCR0 = TCCR0B ; For compatibility
.equ CS00 = 0 ; Clock Select
.equ CS01 = 1 ; Clock Select
.equ CS02 = 2 ; Clock Select
.equ WGM02 = 3 ;
.equ FOC0B = 6 ; Force Output Compare B
.equ FOC0A = 7 ; Force Output Compare B
; ***** TIMER_COUNTER_1 **************
; TIMSK - Timer/Counter Interrupt Mask Register
.equ ICIE1 = 3 ; Timer/Counter1 Input Capture Interrupt Enable
.equ TICIE = ICIE1 ; For compatibility
.equ OCIE1B = 5 ; Timer/Counter1 Output CompareB Match Interrupt Enable
.equ OCIE1A = 6 ; Timer/Counter1 Output CompareA Match Interrupt Enable
.equ TOIE1 = 7 ; Timer/Counter1 Overflow Interrupt Enable
; TIFR - Timer/Counter Interrupt Flag register
.equ ICF1 = 3 ; Input Capture Flag 1
.equ OCF1B = 5 ; Output Compare Flag 1B
.equ OCF1A = 6 ; Output Compare Flag 1A
.equ TOV1 = 7 ; Timer/Counter1 Overflow Flag
; TCCR1A - Timer/Counter1 Control Register A
.equ WGM10 = 0 ; Pulse Width Modulator Select Bit 0
.equ PWM10 = WGM10 ; For compatibility
.equ WGM11 = 1 ; Pulse Width Modulator Select Bit 1
.equ PWM11 = WGM11 ; For compatibility
.equ COM1B0 = 4 ; Comparet Ouput Mode 1B, bit 0
.equ COM1B1 = 5 ; Compare Output Mode 1B, bit 1
.equ COM1A0 = 6 ; Comparet Ouput Mode 1A, bit 0
.equ COM1A1 = 7 ; Compare Output Mode 1A, bit 1
; TCCR1B - Timer/Counter1 Control Register B
.equ CS10 = 0 ; Clock Select bit 0
.equ CS11 = 1 ; Clock Select 1 bit 1
.equ CS12 = 2 ; Clock Select1 bit 2
.equ WGM12 = 3 ; Waveform Generation Mode Bit 2
.equ CTC1 = WGM12 ; For compatibility
.equ WGM13 = 4 ; Waveform Generation Mode Bit 3
.equ ICES1 = 6 ; Input Capture 1 Edge Select
.equ ICNC1 = 7 ; Input Capture 1 Noise Canceler
; TCCR1C - Timer/Counter1 Control Register C
.equ FOC1B = 6 ; Force Output Compare for Channel B
.equ FOC1A = 7 ; Force Output Compare for Channel A
; ***** WATCHDOG *********************
; WDTCR - Watchdog Timer Control Register
.equ WDTCSR = WDTCR ; For compatibility
.equ WDP0 = 0 ; Watch Dog Timer Prescaler bit 0
.equ WDP1 = 1 ; Watch Dog Timer Prescaler bit 1
.equ WDP2 = 2 ; Watch Dog Timer Prescaler bit 2
.equ WDE = 3 ; Watch Dog Enable
.equ WDCE = 4 ; Watchdog Change Enable
.equ WDTOE = WDCE ; For compatibility
.equ WDP3 = 5 ; Watchdog Timer Prescaler Bit 3
.equ WDIE = 6 ; Watchdog Timeout Interrupt Enable
.equ WDIF = 7 ; Watchdog Timeout Interrupt Flag
; ***** USART ************************
; UDR - USART I/O Data Register
.equ UDR0 = 0 ; USART I/O Data Register bit 0
.equ UDR1 = 1 ; USART I/O Data Register bit 1
.equ UDR2 = 2 ; USART I/O Data Register bit 2
.equ UDR3 = 3 ; USART I/O Data Register bit 3
.equ UDR4 = 4 ; USART I/O Data Register bit 4
.equ UDR5 = 5 ; USART I/O Data Register bit 5
.equ UDR6 = 6 ; USART I/O Data Register bit 6
.equ UDR7 = 7 ; USART I/O Data Register bit 7
; UCSRA - USART Control and Status Register A
.equ USR = UCSRA ; For compatibility
.equ MPCM = 0 ; Multi-processor Communication Mode
.equ U2X = 1 ; Double the USART Transmission Speed
.equ UPE = 2 ; USART Parity Error
.equ PE = UPE ; For compatibility
.equ DOR = 3 ; Data overRun
.equ FE = 4 ; Framing Error
.equ UDRE = 5 ; USART Data Register Empty
.equ TXC = 6 ; USART Transmitt Complete
.equ RXC = 7 ; USART Receive Complete
; UCSRB - USART Control and Status Register B
.equ UCR = UCSRB ; For compatibility
.equ TXB8 = 0 ; Transmit Data Bit 8
.equ RXB8 = 1 ; Receive Data Bit 8
.equ UCSZ2 = 2 ; Character Size
.equ CHR9 = UCSZ2 ; For compatibility
.equ TXEN = 3 ; Transmitter Enable
.equ RXEN = 4 ; Receiver Enable
.equ UDRIE = 5 ; USART Data register Empty Interrupt Enable
.equ TXCIE = 6 ; TX Complete Interrupt Enable
.equ RXCIE = 7 ; RX Complete Interrupt Enable
; UCSRC - USART Control and Status Register C
.equ UCPOL = 0 ; Clock Polarity
.equ UCSZ0 = 1 ; Character Size Bit 0
.equ UCSZ1 = 2 ; Character Size Bit 1
.equ USBS = 3 ; Stop Bit Select
.equ UPM0 = 4 ; Parity Mode Bit 0
.equ UPM1 = 5 ; Parity Mode Bit 1
.equ UMSEL0 = 6 ; USART Mode Select 0
.equ UMSEL1 = 7 ; USART Mode Select 1
.equ UCPHA = 1 ; USART MSPIM Clock Phase
.equ UDORD = 2 ; USART MSPIM Data Order
.equ UBRR = UBRRL ; For compatibility
; ***** ANALOG_COMPARATOR ************
; ACSR - Analog Comparator Control And Status Register
.equ ACIS0 = 0 ; Analog Comparator Interrupt Mode Select bit 0
.equ ACIS1 = 1 ; Analog Comparator Interrupt Mode Select bit 1
.equ ACIC = 2 ;
.equ ACIE = 3 ; Analog Comparator Interrupt Enable
.equ ACI = 4 ; Analog Comparator Interrupt Flag
.equ ACO = 5 ; Analog Compare Output
.equ ACBG = 6 ; Analog Comparator Bandgap Select
.equ ACD = 7 ; Analog Comparator Disable
; DIDR - Digital Input Disable Register 1
.equ AIN0D = 0 ; AIN0 Digital Input Disable
.equ AIN1D = 1 ; AIN1 Digital Input Disable
; ***** PORTD ************************
; PORTD - Data Register, Port D
.equ PORTD0 = 0 ;
.equ PD0 = 0 ; For compatibility
.equ PORTD1 = 1 ;
.equ PD1 = 1 ; For compatibility
.equ PORTD2 = 2 ;
.equ PD2 = 2 ; For compatibility
.equ PORTD3 = 3 ;
.equ PD3 = 3 ; For compatibility
.equ PORTD4 = 4 ;
.equ PD4 = 4 ; For compatibility
.equ PORTD5 = 5 ;
.equ PD5 = 5 ; For compatibility
.equ PORTD6 = 6 ;
.equ PD6 = 6 ; For compatibility
; DDRD - Data Direction Register, Port D
.equ DDD0 = 0 ;
.equ DDD1 = 1 ;
.equ DDD2 = 2 ;
.equ DDD3 = 3 ;
.equ DDD4 = 4 ;
.equ DDD5 = 5 ;
.equ DDD6 = 6 ;
; PIND - Input Pins, Port D
.equ PIND0 = 0 ;
.equ PIND1 = 1 ;
.equ PIND2 = 2 ;
.equ PIND3 = 3 ;
.equ PIND4 = 4 ;
.equ PIND5 = 5 ;
.equ PIND6 = 6 ;
; ***** EEPROM ***********************
; EEAR - EEPROM Read/Write Access
.equ EEARL = EEAR ; For compatibility
.equ EEAR0 = 0 ; EEPROM Read/Write Access bit 0
.equ EEAR1 = 1 ; EEPROM Read/Write Access bit 1
.equ EEAR2 = 2 ; EEPROM Read/Write Access bit 2
.equ EEAR3 = 3 ; EEPROM Read/Write Access bit 3
.equ EEAR4 = 4 ; EEPROM Read/Write Access bit 4
.equ EEAR5 = 5 ; EEPROM Read/Write Access bit 5
.equ EEAR6 = 6 ; EEPROM Read/Write Access bit 6
; EEDR - EEPROM Data Register
.equ EEDR0 = 0 ; EEPROM Data Register bit 0
.equ EEDR1 = 1 ; EEPROM Data Register bit 1
.equ EEDR2 = 2 ; EEPROM Data Register bit 2
.equ EEDR3 = 3 ; EEPROM Data Register bit 3
.equ EEDR4 = 4 ; EEPROM Data Register bit 4
.equ EEDR5 = 5 ; EEPROM Data Register bit 5
.equ EEDR6 = 6 ; EEPROM Data Register bit 6
.equ EEDR7 = 7 ; EEPROM Data Register bit 7
; EECR - EEPROM Control Register
.equ EERE = 0 ; EEPROM Read Enable
.equ EEPE = 1 ; EEPROM Write Enable
.equ EEWE = EEPE ; For compatibility
.equ EEMPE = 2 ; EEPROM Master Write Enable
.equ EEMWE = EEMPE ; For compatibility
.equ EERIE = 3 ; EEProm Ready Interrupt Enable
.equ EEPM0 = 4 ;
.equ EEPM1 = 5 ;
; ***** PORTA ************************
; PORTA - Port A Data Register
.equ PORTA0 = 0 ; Port A Data Register bit 0
.equ PA0 = 0 ; For compatibility
.equ PORTA1 = 1 ; Port A Data Register bit 1
.equ PA1 = 1 ; For compatibility
.equ PORTA2 = 2 ; Port A Data Register bit 2
.equ PA2 = 2 ; For compatibility
; DDRA - Port A Data Direction Register
.equ DDA0 = 0 ; Data Direction Register, Port A, bit 0
.equ DDA1 = 1 ; Data Direction Register, Port A, bit 1
.equ DDA2 = 2 ; Data Direction Register, Port A, bit 2
; PINA - Port A Input Pins
.equ PINA0 = 0 ; Input Pins, Port A bit 0
.equ PINA1 = 1 ; Input Pins, Port A bit 1
.equ PINA2 = 2 ; Input Pins, Port A bit 2
; ***** USI **************************
; USIDR - USI Data Register
.equ USIDR0 = 0 ; USI Data Register bit 0
.equ USIDR1 = 1 ; USI Data Register bit 1
.equ USIDR2 = 2 ; USI Data Register bit 2
.equ USIDR3 = 3 ; USI Data Register bit 3
.equ USIDR4 = 4 ; USI Data Register bit 4
.equ USIDR5 = 5 ; USI Data Register bit 5
.equ USIDR6 = 6 ; USI Data Register bit 6
.equ USIDR7 = 7 ; USI Data Register bit 7
; USISR - USI Status Register
.equ USICNT0 = 0 ; USI Counter Value Bit 0
.equ USICNT1 = 1 ; USI Counter Value Bit 1
.equ USICNT2 = 2 ; USI Counter Value Bit 2
.equ USICNT3 = 3 ; USI Counter Value Bit 3
.equ USIDC = 4 ; Data Output Collision
.equ USIPF = 5 ; Stop Condition Flag
.equ USIOIF = 6 ; Counter Overflow Interrupt Flag
.equ USISIF = 7 ; Start Condition Interrupt Flag
; USICR - USI Control Register
.equ USITC = 0 ; Toggle Clock Port Pin
.equ USICLK = 1 ; Clock Strobe
.equ USICS0 = 2 ; USI Clock Source Select Bit 0
.equ USICS1 = 3 ; USI Clock Source Select Bit 1
.equ USIWM0 = 4 ; USI Wire Mode Bit 0
.equ USIWM1 = 5 ; USI Wire Mode Bit 1
.equ USIOIE = 6 ; Counter Overflow Interrupt Enable
.equ USISIE = 7 ; Start Condition Interrupt Enable
; ***** EXTERNAL_INTERRUPT ***********
; GIMSK - General Interrupt Mask Register
.equ PCIE1 = 3 ;
.equ PCIE2 = 4 ;
.equ PCIE0 = 5 ;
.equ INT0 = 6 ; External Interrupt Request 0 Enable
.equ INT1 = 7 ; External Interrupt Request 1 Enable
; EIFR - Extended Interrupt Flag Register
.equ GIFR = EIFR ; For compatibility
.equ PCIF0 = 5 ;
.equ PCIF2 = 4 ;
.equ PCIF1 = 3 ;
.equ INTF0 = 6 ; External Interrupt Flag 0
.equ INTF1 = 7 ; External Interrupt Flag 1
; PCMSK2 - Pin Change Interrupt Mask Register 2
.equ PCINT11 = 0 ; Pin Change Interrupt Mask 11
.equ PCINT12 = 1 ; Pin Change Interrupt Mask 12
.equ PCINT13 = 2 ; Pin Change Interrupt Mask 13
.equ PCINT14 = 3 ; Pin Change Interrupt Mask 14
.equ PCINT15 = 4 ; Pin Change Interrupt Mask 15
.equ PCINT16 = 5 ; Pin Change Interrupt Mask 16
.equ PCINT17 = 6 ; Pin Change Interrupt Mask 17
; PCMSK1 - Pin Change Interrupt Mask Register 1
.equ PCINT8 = 0 ; Pin Change Interrupt Mask 8
.equ PCINT9 = 1 ; Pin Change Interrupt Mask 9
.equ PCINT10 = 2 ; Pin Change Interrupt Mask 10
; ***** CPU **************************
; SREG - Status Register
.equ SREG_C = 0 ; Carry Flag
.equ SREG_Z = 1 ; Zero Flag
.equ SREG_N = 2 ; Negative Flag
.equ SREG_V = 3 ; Two's Complement Overflow Flag
.equ SREG_S = 4 ; Sign Bit
.equ SREG_H = 5 ; Half Carry Flag
.equ SREG_T = 6 ; Bit Copy Storage
.equ SREG_I = 7 ; Global Interrupt Enable
; SPMCSR - Store Program Memory Control and Status register
.equ SPMEN = 0 ; Store Program Memory Enable
.equ PGERS = 1 ; Page Erase
.equ PGWRT = 2 ; Page Write
.equ RFLB = 3 ; Read Fuse and Lock Bits
.equ CTPB = 4 ; Clear Temporary Page Buffer
; MCUCR - MCU Control Register
.equ ISC00 = 0 ; Interrupt Sense Control 0 bit 0
.equ ISC01 = 1 ; Interrupt Sense Control 0 bit 1
.equ ISC10 = 2 ; Interrupt Sense Control 1 bit 0
.equ ISC11 = 3 ; Interrupt Sense Control 1 bit 1
.equ SM0 = 4 ; Sleep Mode Select Bit 0
.equ SM = SM0 ; For compatibility
.equ SE = 5 ; Sleep Enable
.equ SM1 = 6 ; Sleep Mode Select Bit 1
.equ PUD = 7 ; Pull-up Disable
; CLKPR - Clock Prescale Register
.equ CLKPS0 = 0 ; Clock Prescaler Select Bit 0
.equ CLKPS1 = 1 ; Clock Prescaler Select Bit 1
.equ CLKPS2 = 2 ; Clock Prescaler Select Bit 2
.equ CLKPS3 = 3 ; Clock Prescaler Select Bit 3
.equ CLKPCE = 7 ; Clock Prescaler Change Enable
; MCUSR - MCU Status register
.equ PORF = 0 ; Power-On Reset Flag
.equ EXTRF = 1 ; External Reset Flag
.equ BORF = 2 ; Brown-out Reset Flag
.equ WDRF = 3 ; Watchdog Reset Flag
; OSCCAL - Oscillator Calibration Register
.equ CAL0 = 0 ; Oscillatro Calibration Value Bit 0
.equ CAL1 = 1 ; Oscillatro Calibration Value Bit 1
.equ CAL2 = 2 ; Oscillatro Calibration Value Bit 2
.equ CAL3 = 3 ; Oscillatro Calibration Value Bit 3
.equ CAL4 = 4 ; Oscillatro Calibration Value Bit 4
.equ CAL5 = 5 ; Oscillatro Calibration Value Bit 5
.equ CAL6 = 6 ; Oscillatro Calibration Value Bit 6
; GTCCR - General Timer Counter Control Register
.equ SFIOR = GTCCR ; For compatibility
.equ PSR10 = 0 ;
; PCMSK - Pin-Change Mask register
.equ PCINT0 = 0 ; Pin-Change Interrupt 0
.equ PCINT1 = 1 ; Pin-Change Interrupt 1
.equ PCINT2 = 2 ; Pin-Change Interrupt 2
.equ PCINT3 = 3 ; Pin-Change Interrupt 3
.equ PCINT4 = 4 ; Pin-Change Interrupt 4
.equ PCINT5 = 5 ; Pin-Change Interrupt 5
.equ PCINT6 = 6 ; Pin-Change Interrupt 6
.equ PCINT7 = 7 ; Pin-Change Interrupt 7
; GPIOR2 - General Purpose I/O Register 2
.equ GPIOR20 = 0 ; General Purpose I/O Register 2 bit 0
.equ GPIOR21 = 1 ; General Purpose I/O Register 2 bit 1
.equ GPIOR22 = 2 ; General Purpose I/O Register 2 bit 2
.equ GPIOR23 = 3 ; General Purpose I/O Register 2 bit 3
.equ GPIOR24 = 4 ; General Purpose I/O Register 2 bit 4
.equ GPIOR25 = 5 ; General Purpose I/O Register 2 bit 5
.equ GPIOR26 = 6 ; General Purpose I/O Register 2 bit 6
.equ GPIOR27 = 7 ; General Purpose I/O Register 2 bit 7
; GPIOR1 - General Purpose I/O Register 1
.equ GPIOR10 = 0 ; General Purpose I/O Register 1 bit 0
.equ GPIOR11 = 1 ; General Purpose I/O Register 1 bit 1
.equ GPIOR12 = 2 ; General Purpose I/O Register 1 bit 2
.equ GPIOR13 = 3 ; General Purpose I/O Register 1 bit 3
.equ GPIOR14 = 4 ; General Purpose I/O Register 1 bit 4
.equ GPIOR15 = 5 ; General Purpose I/O Register 1 bit 5
.equ GPIOR16 = 6 ; General Purpose I/O Register 1 bit 6
.equ GPIOR17 = 7 ; General Purpose I/O Register 1 bit 7
; GPIOR0 - General Purpose I/O Register 0
.equ GPIOR00 = 0 ; General Purpose I/O Register 0 bit 0
.equ GPIOR01 = 1 ; General Purpose I/O Register 0 bit 1
.equ GPIOR02 = 2 ; General Purpose I/O Register 0 bit 2
.equ GPIOR03 = 3 ; General Purpose I/O Register 0 bit 3
.equ GPIOR04 = 4 ; General Purpose I/O Register 0 bit 4
.equ GPIOR05 = 5 ; General Purpose I/O Register 0 bit 5
.equ GPIOR06 = 6 ; General Purpose I/O Register 0 bit 6
.equ GPIOR07 = 7 ; General Purpose I/O Register 0 bit 7
; PRR - Power reduction register
.equ PRUSART = 0 ;
.equ PRUSI = 1 ;
.equ PRTIM0 = 2 ;
.equ PRTIM1 = 3 ;
; BODCR - BOD control register
.equ BPDSE = 0 ;
.equ BPDS = 1 ;
; ***** LOCKSBITS ********************************************************
.equ LB1 = 0 ; Lockbit
.equ LB2 = 1 ; Lockbit
; ***** FUSES ************************************************************
; LOW fuse bits
.equ CKSEL0 = 0 ; Select Clock Source
.equ CKSEL1 = 1 ; Select Clock Source
.equ CKSEL2 = 2 ; Select Clock Source
.equ CKSEL3 = 3 ; Select Clock Source
.equ SUT0 = 4 ; Select start-up time
.equ SUT1 = 5 ; Select start-up time
.equ CKOUT = 6 ; Clock output
.equ CKDIV8 = 7 ; Divide clock by 8
; HIGH fuse bits
.equ BODLEVEL0 = 0 ; Brown-out Detector trigger level
.equ BODLEVEL1 = 1 ; Brown-out Detector trigger level
.equ BODLEVEL2 = 2 ; Brown-out Detector trigger level
.equ EESAVE = 3 ; EEPROM memory is preserved through chip erase
.equ WDTON = 4 ; Watchdog Timer Always On
.equ SPIEN = 5 ; Enable Serial programming and Data Downloading
.equ DWEN = 6 ; debugWIRE Enable
.equ RSTDISBL = 7 ; External reset disable
; EXTENDED fuse bits
.equ SELFPRGEN = 0 ; Self Programming Enable
; ***** CPU REGISTER DEFINITIONS *****************************************
.def XH = r27
.def XL = r26
.def YH = r29
.def YL = r28
.def ZH = r31
.def ZL = r30
; ***** DATA MEMORY DECLARATIONS *****************************************
.equ FLASHEND = 0x03ff ; Note: Word address
.equ IOEND = 0x003f
.equ SRAM_START = 0x0060
.equ SRAM_SIZE = 128
.equ RAMEND = 0x00df
.equ XRAMEND = 0x0000
.equ E2END = 0x007f
.equ EEPROMEND = 0x007f
.equ EEADRBITS = 7
#pragma AVRPART MEMORY PROG_FLASH 2048
#pragma AVRPART MEMORY EEPROM 128
#pragma AVRPART MEMORY INT_SRAM SIZE 128
#pragma AVRPART MEMORY INT_SRAM START_ADDR 0x60
; ***** BOOTLOADER DECLARATIONS ******************************************
.equ NRWW_START_ADDR = 0x0
.equ NRWW_STOP_ADDR = 0x3ff
.equ RWW_START_ADDR = 0x0
.equ RWW_STOP_ADDR = 0x0
.equ PAGESIZE = 16
; ***** INTERRUPT VECTORS ************************************************
.equ INT0addr = 0x0001 ; External Interrupt Request 0
.equ INT1addr = 0x0002 ; External Interrupt Request 1
.equ ICP1addr = 0x0003 ; Timer/Counter1 Capture Event
.equ OC1Aaddr = 0x0004 ; Timer/Counter1 Compare Match A
.equ OC1addr = 0x0004 ; For compatibility
.equ OVF1addr = 0x0005 ; Timer/Counter1 Overflow
.equ OVF0addr = 0x0006 ; Timer/Counter0 Overflow
.equ URXCaddr = 0x0007 ; USART, Rx Complete
.equ URXC0addr = 0x0007 ; For compatibility
.equ UDREaddr = 0x0008 ; USART Data Register Empty
.equ UDRE0addr = 0x0008 ; For compatibility
.equ UTXCaddr = 0x0009 ; USART, Tx Complete
.equ UTXC0addr = 0x0009 ; For compatibility
.equ ACIaddr = 0x000a ; Analog Comparator
.equ PCIBaddr = 0x000b ; Pin Change Interrupt Request B
.equ PCIaddr = 0x000b ; For compatibility
.equ OC1Baddr = 0x000c ;
.equ OC0Aaddr = 0x000d ;
.equ OC0Baddr = 0x000e ;
.equ USI_STARTaddr = 0x000f ; USI Start Condition
.equ USI_OVFaddr = 0x0010 ; USI Overflow
.equ ERDYaddr = 0x0011 ;
.equ WDTaddr = 0x0012 ; Watchdog Timer Overflow
.equ PCIAaddr = 0x0013 ; Pin Change Interrupt Request A
.equ PCIDaddr = 0x0014 ; Pin Change Interrupt Request D
.equ INT_VECTORS_SIZE = 21 ; size in words
#endif /* _TN2313ADEF_INC_ */
; ***** END OF FILE ******************************************************

30
usi.asm
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@ -1,30 +0,0 @@
; **** ОТПРАВКА БАЙТА В СДВИГОВЫЙ РЕГИСТР *************************
USI_TRANSMIT:
push r16
out USIDR, r0 ; Байт для отправки всегда находится в регистре r0. Помещаем данные в регистр USIDR.
; Enable USI Overflow Interrupt Flag (will be 0 if transfer is not compeleted)
ldi TEMP_REG_A, (1<<USIOIF)
out USISR, TEMP_REG_A
; Load settings of USI into temp register
; This will setup USI to Three-wire mode, Software clock strobe (USITC)
; with External, positive edge and toggle USCK
;
; USIWM0 <--------------> USI Wire Mode
; USICS1 <--------------> USI Clock Source Select
; USICLK <--------------> USI Clock Strobe
; USITC <--------------> USI Toggle Clock (Enable clock generation)
ldi TEMP_REG_A, (1<<USIWM0) | (1<<USICS1) | (1<<USICLK) | (1<<USITC)
_USI_TRANSMIT_LOOP: ; Execute loop when USIOIF is 0
out USICR, TEMP_REG_A ; Load settings from temp register into USI Control Register
sbis USISR, USIOIF ; If transfer is comleted then move out of loop
rjmp _USI_TRANSMIT_LOOP
; Send pulse into LATCH pin.
; This will copy byte from 74hc595 shift register into 74hc595 storage register
sbi PORTB, USI_LATCH_PIN
cbi PORTB, USI_LATCH_PIN
pop r16
ret