2022-05-25 23:51:13 +03:00

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AVRASM ver. 2.2.7 firmware.asm Wed May 25 23:50:52 2022
firmware.asm(13): Including file 'def.inc'
firmware.asm(22): warning: Register r26 already defined by the .DEF directive
firmware.asm(74): Including file 'macros.asm'
firmware.asm(13): Including file 'def.inc'
firmware.asm(74): Including file 'macros.asm'
; Project name: memory-led-game
; Description: Simple memory game using leds
; Source code: https://github.com/sergeyyarkov/attiny24a_memory-led-game
; Device: ATtiny24A
; Package: 14-pin-PDIP_SOIC
; Assembler: AVR macro assembler 2.2.7
; Clock frequency: 8MHz with CKDIV8
; Fuses: lfuse: 0x42, hfuse: 0xDF, efuse: 0xFF, lock:0xFF
;
; Written by Sergey Yarkov 27.09.2021
.include "def.inc" ; Include type definitions of MCU
;***** Created: 2011-02-09 12:04 ******* Source: ATtiny24A.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 : "tn24Adef.inc"
;* Title : Register/Bit Definitions for the ATtiny24A
;* Date : 2011-02-09
;* Version : 2.35
;* Support E-mail : avr@atmel.com
;* Target MCU : ATtiny24A
;*
;* 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 _TN24ADEF_INC_
#define _TN24ADEF_INC_
#pragma partinc 0
; ***** SPECIFY DEVICE ***************************************************
.device ATtiny24A
#pragma AVRPART ADMIN PART_NAME ATtiny24A
.equ SIGNATURE_000 = 0x1e
.equ SIGNATURE_001 = 0x91
.equ SIGNATURE_002 = 0x0b
#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 GIFR = 0x3a
.equ TIMSK0 = 0x39
.equ TIFR0 = 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 DWDR = 0x27
.equ CLKPR = 0x26
.equ ICR1L = 0x24
.equ ICR1H = 0x25
.equ GTCCR = 0x23
.equ TCCR1C = 0x22
.equ WDTCSR = 0x21
.equ PCMSK1 = 0x20
.equ EEARH = 0x1f
.equ EEARL = 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 PCMSK0 = 0x12
.equ USIBR = 0x10
.equ USIDR = 0x0f
.equ USISR = 0x0e
.equ USICR = 0x0d
.equ TIMSK1 = 0x0c
.equ TIFR1 = 0x0b
.equ ACSR = 0x08
.equ ADMUX = 0x07
.equ ADCSRA = 0x06
.equ ADCH = 0x05
.equ ADCL = 0x04
.equ ADCSRB = 0x03
.equ DIDR0 = 0x01
.equ PRR = 0x00
; ***** BIT DEFINITIONS **************************************************
; ***** 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
.equ PORTA3 = 3 ; Port A Data Register bit 3
.equ PA3 = 3 ; For compatibility
.equ PORTA4 = 4 ; Port A Data Register bit 4
.equ PA4 = 4 ; For compatibility
.equ PORTA5 = 5 ; Port A Data Register bit 5
.equ PA5 = 5 ; For compatibility
.equ PORTA6 = 6 ; Port A Data Register bit 6
.equ PA6 = 6 ; For compatibility
.equ PORTA7 = 7 ; Port A Data Register bit 7
.equ PA7 = 7 ; 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
.equ DDA3 = 3 ; Data Direction Register, Port A, bit 3
.equ DDA4 = 4 ; Data Direction Register, Port A, bit 4
.equ DDA5 = 5 ; Data Direction Register, Port A, bit 5
.equ DDA6 = 6 ; Data Direction Register, Port A, bit 6
.equ DDA7 = 7 ; Data Direction Register, Port A, bit 7
; 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
.equ PINA3 = 3 ; Input Pins, Port A bit 3
.equ PINA4 = 4 ; Input Pins, Port A bit 4
.equ PINA5 = 5 ; Input Pins, Port A bit 5
.equ PINA6 = 6 ; Input Pins, Port A bit 6
.equ PINA7 = 7 ; Input Pins, Port A bit 7
; ***** PORTB ************************
; PORTB - Data Register, Port B
.equ PORTB0 = 0 ;
.equ PB0 = 0 ; For compatibility
.equ PORTB1 = 1 ;
.equ PB1 = 1 ; For compatibility
.equ PORTB2 = 2 ;
.equ PB2 = 2 ; For compatibility
.equ PORTB3 = 3 ;
.equ PB3 = 3 ; For compatibility
; DDRB - Data Direction Register, Port B
.equ DDB0 = 0 ;
.equ DDB1 = 1 ;
.equ DDB2 = 2 ;
.equ DDB3 = 3 ;
; PINB - Input Pins, Port B
.equ PINB0 = 0 ;
.equ PINB1 = 1 ;
.equ PINB2 = 2 ;
.equ PINB3 = 3 ;
; ***** ANALOG_COMPARATOR ************
; ADCSRB - ADC Control and Status Register B
.equ ACME = 6 ; Analog Comparator Multiplexer Enable
; 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 ; Analog Comparator Input Capture Enable
.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 AINBG = ACBG ; For compatibility
.equ ACD = 7 ; Analog Comparator Disable
; DIDR0 -
.equ ADC0D = 0 ; ADC 0 Digital input buffer disable
.equ ADC1D = 1 ; ADC 1 Digital input buffer disable
; ***** AD_CONVERTER *****************
; ADMUX - ADC Multiplexer Selection Register
.equ MUX0 = 0 ; Analog Channel and Gain Selection Bit 0
.equ MUX1 = 1 ; Analog Channel and Gain Selection Bit 1
.equ MUX2 = 2 ; Analog Channel and Gain Selection Bit 2
.equ MUX3 = 3 ; Analog Channel and Gain Selection Bit 3
.equ MUX4 = 4 ; Analog Channel and Gain Selection Bit 4
.equ MUX5 = 5 ; Analog Channel and Gain Selection Bit 5
.equ REFS0 = 6 ; Reference Selection Bit 0
.equ REFS1 = 7 ; Reference Selection Bit 1
; ADCSRA - ADC Control and Status Register A
.equ ADPS0 = 0 ; ADC Prescaler Select Bit 0
.equ ADPS1 = 1 ; ADC Prescaler Select Bit 1
.equ ADPS2 = 2 ; ADC Prescaler Select Bit 2
.equ ADIE = 3 ; ADC Interrupt Enable
.equ ADIF = 4 ; ADC Interrupt Flag
.equ ADATE = 5 ; ADC Auto Trigger Enable
.equ ADSC = 6 ; ADC Start Conversion
.equ ADEN = 7 ; ADC Enable
; ADCH - ADC Data Register High Byte
.equ ADCH0 = 0 ; ADC Data Register High Byte Bit 0
.equ ADCH1 = 1 ; ADC Data Register High Byte Bit 1
.equ ADCH2 = 2 ; ADC Data Register High Byte Bit 2
.equ ADCH3 = 3 ; ADC Data Register High Byte Bit 3
.equ ADCH4 = 4 ; ADC Data Register High Byte Bit 4
.equ ADCH5 = 5 ; ADC Data Register High Byte Bit 5
.equ ADCH6 = 6 ; ADC Data Register High Byte Bit 6
.equ ADCH7 = 7 ; ADC Data Register High Byte Bit 7
; ADCL - ADC Data Register Low Byte
.equ ADCL0 = 0 ; ADC Data Register Low Byte Bit 0
.equ ADCL1 = 1 ; ADC Data Register Low Byte Bit 1
.equ ADCL2 = 2 ; ADC Data Register Low Byte Bit 2
.equ ADCL3 = 3 ; ADC Data Register Low Byte Bit 3
.equ ADCL4 = 4 ; ADC Data Register Low Byte Bit 4
.equ ADCL5 = 5 ; ADC Data Register Low Byte Bit 5
.equ ADCL6 = 6 ; ADC Data Register Low Byte Bit 6
.equ ADCL7 = 7 ; ADC Data Register Low Byte Bit 7
; ADCSRB - ADC Control and Status Register B
.equ ADTS0 = 0 ; ADC Auto Trigger Source bit 0
.equ ADTS1 = 1 ; ADC Auto Trigger Source bit 1
.equ ADTS2 = 2 ; ADC Auto Trigger Source bit 2
.equ ADLAR = 4 ; ADC Left Adjust Result
.equ BIN = 7 ; Bipolar Input Mode
; DIDR0 - Digital Input Disable Register 0
;.equ ADC0D = 0 ; ADC0 Digital Input Disable
;.equ ADC1D = 1 ; ADC1 Digital Input Disable
.equ ADC2D = 2 ; ADC2 Digital Input Disable
.equ ADC3D = 3 ; ADC3 Digital Input Disable
.equ ADC4D = 4 ; ADC4 Digital Input Disable
.equ ADC5D = 5 ; ADC5 Digital Input Disable
.equ ADC6D = 6 ; ADC6 Digital Input Disable
.equ ADC7D = 7 ; ADC7 Digital Input Disable
; ***** USI **************************
; USIBR - USI Buffer Register
.equ USIBR0 = 0 ; USI Buffer Register bit 0
.equ USIBR1 = 1 ; USI Buffer Register bit 1
.equ USIBR2 = 2 ; USI Buffer Register bit 2
.equ USIBR3 = 3 ; USI Buffer Register bit 3
.equ USIBR4 = 4 ; USI Buffer Register bit 4
.equ USIBR5 = 5 ; USI Buffer Register bit 5
.equ USIBR6 = 6 ; USI Buffer Register bit 6
.equ USIBR7 = 7 ; USI Buffer Register bit 7
; 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 ***********
; MCUCR - MCU Control Register
.equ ISC00 = 0 ; Interrupt Sense Control 0 Bit 0
.equ ISC01 = 1 ; Interrupt Sense Control 0 Bit 1
; GIMSK - General Interrupt Mask Register
.equ GICR = GIMSK ; For compatibility
.equ PCIE0 = 4 ; Pin Change Interrupt Enable 0
.equ PCIE1 = 5 ; Pin Change Interrupt Enable 1
.equ INT0 = 6 ; External Interrupt Request 0 Enable
; GIFR - General Interrupt Flag register
.equ PCIF0 = 4 ; Pin Change Interrupt Flag 0
.equ PCIF1 = 5 ; Pin Change Interrupt Flag 1
.equ INTF0 = 6 ; External Interrupt Flag 0
; PCMSK1 - Pin Change Enable Mask 1
.equ PCINT8 = 0 ; Pin Change Enable Mask Bit 8
.equ PCINT9 = 1 ; Pin Change Enable Mask Bit 9
.equ PCINT10 = 2 ; Pin Change Enable Mask Bit 10
.equ PCINT11 = 3 ; Pin Change Enable Mask Bit 11
; PCMSK0 - Pin Change Enable Mask 0
.equ PCINT0 = 0 ; Pin Change Enable Mask Bit 0
.equ PCINT1 = 1 ; Pin Change Enable Mask Bit 1
.equ PCINT2 = 2 ; Pin Change Enable Mask Bit 2
.equ PCINT3 = 3 ; Pin Change Enable Mask Bit 3
.equ PCINT4 = 4 ; Pin Change Enable Mask Bit 4
.equ PCINT5 = 5 ; Pin Change Enable Mask Bit 5
.equ PCINT6 = 6 ; Pin Change Enable Mask Bit 6
.equ PCINT7 = 7 ; Pin Change Enable Mask Bit 7
; ***** EEPROM ***********************
; EEARL - EEPROM Address Register Low Byte
.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
.equ EEAR7 = 7 ; EEPROM Read/Write Access Bit 7
; EEARH - EEPROM Address Register High Byte
.equ EEAR8 = 0 ; EEPROM Read/Write Access Bit 0
; 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 EEMPE = 2 ; EEPROM Master Write Enable
.equ EERIE = 3 ; EEPROM Ready Interrupt Enable
.equ EEPM0 = 4 ; EEPROM Programming Mode Bit 0
.equ EEPM1 = 5 ; EEPROM Programming Mode Bit 1
; ***** WATCHDOG *********************
; WDTCSR - Watchdog Timer Control Register
.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 WDP3 = 5 ; Watchdog Timer Prescaler Bit 3
.equ WDIE = 6 ; Watchdog Timeout Interrupt Enable
.equ WDIF = 7 ; Watchdog Timeout Interrupt Flag
; ***** TIMER_COUNTER_0 **************
; TIMSK0 - Timer/Counter Interrupt Mask Register
.equ TOIE0 = 0 ; Timer/Counter0 Overflow Interrupt Enable
.equ OCIE0A = 1 ; Timer/Counter0 Output Compare Match A Interrupt Enable
.equ OCIE0B = 2 ; Timer/Counter0 Output Compare Match B Interrupt Enable
; TIFR0 - Timer/Counter0 Interrupt Flag Register
.equ TOV0 = 0 ; Timer/Counter0 Overflow Flag
.equ OCF0A = 1 ; Timer/Counter0 Output Compare Flag A
.equ OCF0B = 2 ; Timer/Counter0 Output Compare Flag B
; TCCR0A - Timer/Counter Control Register A
.equ WGM00 = 0 ; Waveform Generation Mode bit 0
.equ WGM01 = 1 ; Waveform Generation Mode bit 1
.equ COM0B0 = 4 ; Compare Match Output B Mode bit 0
.equ COM0B1 = 5 ; Compare Match Output B Mode bit 1
.equ COM0A0 = 6 ; Compare Match Output A Mode bit 0
.equ COM0A1 = 7 ; Compare Match Output A Mode bit 1
; TCCR0B - Timer/Counter Control Register B
.equ CS00 = 0 ; Clock Select bit 0
.equ CS01 = 1 ; Clock Select bit 1
.equ CS02 = 2 ; Clock Select bit 2
.equ WGM02 = 3 ; Waveform Generation Mode bit 2
.equ FOC0B = 6 ; Force Output Compare B
.equ FOC0A = 7 ; Force Output Compare A
; 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 ;
; OCR0A - Timer/Counter0 Output Compare Register A
.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 ;
; OCR0B - Timer/Counter0 Output Compare Register B
.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 ;
; GTCCR - General Timer/Counter Control Register
.equ PSR10 = 0 ; Prescaler Reset Timer/CounterN
.equ TSM = 7 ; Timer/Counter Synchronization Mode
; ***** TIMER_COUNTER_1 **************
; TIMSK1 - Timer/Counter1 Interrupt Mask Register
.equ TOIE1 = 0 ; Timer/Counter1 Overflow Interrupt Enable
.equ OCIE1A = 1 ; Timer/Counter1 Output Compare A Match Interrupt Enable
.equ OCIE1B = 2 ; Timer/Counter1 Output Compare B Match Interrupt Enable
.equ ICIE1 = 5 ; Timer/Counter1 Input Capture Interrupt Enable
; TIFR1 - Timer/Counter Interrupt Flag register
.equ TOV1 = 0 ; Timer/Counter1 Overflow Flag
.equ OCF1A = 1 ; Timer/Counter1 Output Compare A Match Flag
.equ OCF1B = 2 ; Timer/Counter1 Output Compare B Match Flag
.equ ICF1 = 5 ; Timer/Counter1 Input Capture 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
; ***** 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
; SPL - Stack Pointer Low
.equ SP0 = 0 ; Stack pointer bit 0
.equ SP1 = 1 ; Stack pointer bit 1
.equ SP2 = 2 ; Stack pointer bit 2
.equ SP3 = 3 ; Stack pointer bit 3
.equ SP4 = 4 ; Stack pointer bit 4
.equ SP5 = 5 ; Stack pointer bit 5
.equ SP6 = 6 ; Stack pointer bit 6
.equ SP7 = 7 ; Stack pointer bit 7
; MCUCR - MCU Control Register
.equ BODSE = 2 ; BOD Sleep Enable
.equ SM0 = 3 ; Sleep Mode Select Bit 0
.equ SM1 = 4 ; Sleep Mode Select Bit 1
.equ SE = 5 ; Sleep Enable
.equ PUD = 6 ;
.equ BODS = 7 ; BOD Sleep
; 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 Value
.equ CAL0 = 0 ; Oscillator Calibration Value Bit0
.equ CAL1 = 1 ; Oscillator Calibration Value Bit1
.equ CAL2 = 2 ; Oscillator Calibration Value Bit2
.equ CAL3 = 3 ; Oscillator Calibration Value Bit3
.equ CAL4 = 4 ; Oscillator Calibration Value Bit4
.equ CAL5 = 5 ; Oscillator Calibration Value Bit5
.equ CAL6 = 6 ; Oscillator Calibration Value Bit6
.equ CAL7 = 7 ; Oscillator Calibration Value Bit7
; GPIOR2 - General Purpose I/O Register 2
.equ GPIOR20 = 0 ;
.equ GPIOR21 = 1 ;
.equ GPIOR22 = 2 ;
.equ GPIOR23 = 3 ;
.equ GPIOR24 = 4 ;
.equ GPIOR25 = 5 ;
.equ GPIOR26 = 6 ;
.equ GPIOR27 = 7 ;
; GPIOR1 - General Purpose I/O Register 1
.equ GPIOR10 = 0 ;
.equ GPIOR11 = 1 ;
.equ GPIOR12 = 2 ;
.equ GPIOR13 = 3 ;
.equ GPIOR14 = 4 ;
.equ GPIOR15 = 5 ;
.equ GPIOR16 = 6 ;
.equ GPIOR17 = 7 ;
; GPIOR0 - General Purpose I/O Register 0
.equ GPIOR00 = 0 ;
.equ GPIOR01 = 1 ;
.equ GPIOR02 = 2 ;
.equ GPIOR03 = 3 ;
.equ GPIOR04 = 4 ;
.equ GPIOR05 = 5 ;
.equ GPIOR06 = 6 ;
.equ GPIOR07 = 7 ;
; PRR - Power Reduction Register
.equ PRADC = 0 ; Power Reduction ADC
.equ PRUSI = 1 ; Power Reduction USI
.equ PRTIM0 = 2 ; Power Reduction Timer/Counter0
.equ PRTIM1 = 3 ; Power Reduction Timer/Counter1
; 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
; ***** BOOT_LOAD ********************
; SPMCSR - Store Program Memory Control 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
; ***** 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 Enable
.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 the Chip Erase
.equ WDTON = 4 ; Watchdog Timer always on
.equ SPIEN = 5 ; Enable Serial Program 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 EXT_INT0addr = 0x0001 ; External Interrupt Request 0
.equ PCI0addr = 0x0002 ; Pin Change Interrupt Request 0
.equ PCI1addr = 0x0003 ; Pin Change Interrupt Request 1
.equ WATCHDOGaddr = 0x0004 ; Watchdog Time-out
.equ ICP1addr = 0x0005 ; Timer/Counter1 Capture Event
.equ OC1Aaddr = 0x0006 ; Timer/Counter1 Compare Match A
.equ OC1Baddr = 0x0007 ; Timer/Counter1 Compare Match B
.equ OVF1addr = 0x0008 ; Timer/Counter1 Overflow
.equ OC0Aaddr = 0x0009 ; Timer/Counter0 Compare Match A
.equ OC0Baddr = 0x000a ; Timer/Counter0 Compare Match B
.equ OVF0addr = 0x000b ; Timer/Counter0 Overflow
.equ ACIaddr = 0x000c ; Analog Comparator
.equ ADCCaddr = 0x000d ; ADC Conversion Complete
.equ ERDYaddr = 0x000e ; EEPROM Ready
.equ USI_STRaddr = 0x000f ; USI START
.equ USI_OVFaddr = 0x0010 ; USI Overflow
.equ INT_VECTORS_SIZE = 17 ; size in words
#endif /* _TN24ADEF_INC_ */
; ***** END OF FILE ******************************************************
.list ; Enable listing
;
; Registers
.def seq_length_r = r10 ; Current length of sequence
.def wdt_counter = r11 ; Counter for wathdog timer
.def temp_r = r16 ; Temp general register A
.def temp_r_b = r23 ; Temp general register B
.def temp_r_c = r26 ; Temp general register C
.def mcu_state_r = r17 ; Current state of MCU. This register will be compared in an main loop
.def delay_counter_r = r19 ; Register for storing delay counter
.def poll_step_r = r20 ; Current poll step for checking the input with answer
;
; LEDS constants
.equ LED_DIR = DDRA
.equ LED_PORT = PORTA
.equ LED_PIN = PINA
.equ LED_PIN_0 = PINA0
.equ LED_PIN_1 = PINA1
.equ LED_PIN_2 = PINA2
.equ LED_PIN_3 = PINA3
;
; Buttons constants
.equ SW_DIR = DDRA
.equ SW_PORT = PORTA
.equ SW_PIN = PINA
.equ SW_PIN_4 = PINA4
.equ SW_PIN_5 = PINA5
.equ SW_PIN_6 = PINA6
.equ SW_PIN_7 = PINA7
;
; Buzzer constants
.equ BUZZ_DIR = DDRB
.equ BUZZ_PORT = PORTB
.equ BUZZ_PIN = PINB2
;
; States constants
.equ INIT_STATE = 0x01
.equ SHOWING_STATE = 0x02
.equ POLLING_STATE = 0x03
;
; SW Flags states constants
.equ SW_FLAG_1 = 0xe0
.equ SW_FLAG_2 = 0xd0
.equ SW_FLAG_3 = 0xb0
.equ SW_FLAG_4 = 0x70
.equ SEQ_LENGTH = 2
; Value that stored in OCR0A for each tone
; 880Hz = 71
; 785Hz = 80
; 590Hz = 105
; 440Hz = 142
.include "macros.asm" ; Include macros
; Initialize stack pointer
; @0 - Temp register
.macro init_stack_p
ldi @0, low(@1)
out SPL, @0
clr @0
.ifdef SPH
ldi @0, high(RAMEND)
out SPH, @0
clr @0
.endif
.endm
;
; out immediate
; @0 - I/O Register
; @1 - Data to write
.macro outi
push temp_r
ldi temp_r, @1
out @0, temp_r
pop temp_r
.endm
;
; sts immediate
; @0 - SRAM Address
; @1 - Data to write
.macro stsi
push temp_r
ldi temp_r, @1
sts @0, temp_r
pop temp_r
.endm
;
; Set MCU global state
; @0 - New state
.macro set_state
sts PREVIOUS_STATE_ADDRESS, mcu_state_r ; Write previous state to SRAM
stsi CURRENT_STATE_ADDRESS, @0
.endm
.macro buzzer_on
sbi BUZZ_DIR, BUZZ_PIN
.endm
.macro buzzer_off
cbi BUZZ_DIR, BUZZ_PIN
.endm
.macro beep_led_1
outi OCR0A, 142
sbi LED_PORT, 0
sbi BUZZ_DIR, BUZZ_PIN
rcall delay
cbi LED_PORT, 0
cbi BUZZ_DIR, BUZZ_PIN
.endm
.macro beep_led_2
outi OCR0A, 71
sbi LED_PORT, 1
sbi BUZZ_DIR, BUZZ_PIN
rcall delay
cbi LED_PORT, 1
cbi BUZZ_DIR, BUZZ_PIN
.endm
.macro beep_led_3
outi OCR0A, 105
sbi LED_PORT, 2
sbi BUZZ_DIR, BUZZ_PIN
rcall delay
cbi LED_PORT, 2
cbi BUZZ_DIR, BUZZ_PIN
.endm
.macro beep_led_4
outi OCR0A, 80
sbi LED_PORT, 3
sbi BUZZ_DIR, BUZZ_PIN
rcall delay
cbi LED_PORT, 3
cbi BUZZ_DIR, BUZZ_PIN
.endm
.dseg ; Data segment
.org SRAM_START
; MCU Global states addresses
000060 CURRENT_STATE_ADDRESS: .byte 0x01
000061 PREVIOUS_STATE_ADDRESS: .byte 0x01
; Button flags
000062 SW_FLAGS_ADDRESS: .byte 0x01
.cseg ; Code segment
.org 0x00
; MCU vectors
000000 c047 rjmp RESET_vect ; Program start at RESET vector
000001 9518 reti ; External Interrupt Request 0 / inactive
000002 c013 rjmp PCINT0_vect ; Pin Change Interrupt Request 0 / active
000003 9518 reti ; Pin Change Interrupt Request 1 / inactive
000004 c00c rjmp WDT_vect ; Watchdog Time-out / active
000005 9518 reti ; Timer/Counter1 Capture Event / inactive
000006 9518 reti ; Timer/Counter1 Compare Match A / inactive
000007 9518 reti ; Timer/Counter1 Compare Match B / inactive
000008 9518 reti ; Timer/Counter1 Overflow / inactive
000009 9518 reti ; Timer/Counter0 Compare Match A / inactive
00000a 9518 reti ; Timer/Counter0 Compare Match B / inactive
00000b c01d rjmp TIM0_OVF_vect ; Timer/Counter0 Overflow / active
00000c 9518 reti ; Analog Comparator / inactive
00000d 9518 reti ; ADC Conversion Complete / inactive
00000e 9518 reti ; EEPROM Ready / inactive
00000f 9518 reti ; USI START / inactive
000010 9518 reti ; USI Overflow / inactive
; watchdog time-out interrupt handler
WDT_vect:
000011 b5a1 in temp_r_c, WDTCSR
000012 e4a0 ldi temp_r_c, (1<<WDIE)
000013 bda1 out WDTCSR, temp_r_c
000014 94b3 inc wdt_counter
000015 9518 reti
; pin change on button interrupt handler
PCINT0_vect:
000016 931f push r17
000017 932f push r18
000018 b725 in r18, MCUCR
000019 7d2f cbr r18, (1<<SE)
; turn off the sleep mode
00001a bf25 out MCUCR, r18
; save status register
00001b b72f in r18, SREG
00001c 9110 0060 lds mcu_state_r, CURRENT_STATE_ADDRESS
00001e 3013 cpi mcu_state_r, POLLING_STATE
; do not change button flags unless in POLLING state of mcu
00001f f431 brne quit
000020 b319 in r17, PINA
; get pins status of only buttons
000021 7f10 andi r17, 0xf0
; button debounce
000022 d1a1 rcall delay_20ms
; update flag status in SRAM
000023 9310 0062 sts SW_FLAGS_ADDRESS, r17
000025 bf2f out SREG, r18
quit:
000026 912f pop r18
000027 911f pop r17
000028 9518 reti
; random byte generator
TIM0_OVF_vect:
000029 937f push temp_r_b
00002a b77f in temp_r_b, SREG
00002b c002 rjmp gen_start
00002c ea08 ldi temp_r, 168
00002d b752 in r21, TCNT0
gen_start:
00002e 2705 eor temp_r, r21
00002f 9502 swap temp_r
000030 0f50 add r21, temp_r
000031 bf7f out SREG, temp_r_b
000032 917f pop temp_r_b
000033 9518 reti
; initialize MCU
MCU_Init:
000034 d16d rcall init_ports
000035 d15c rcall init_interrupts
000036 d161 rcall init_buzzer
000037 d171 rcall init_sm
; rcall init_wdt
; init important registers for game
000038 ef3f ldi delay_counter_r, 0xff
000039 e041 ldi poll_step_r, 1
00003a e0a2 ldi temp_r_c, SEQ_LENGTH
00003b 2eaa mov seq_length_r, temp_r_c
00003c 27ff clr ZH
00003d e8e0 ldi ZL, $80
; delay before start main loop
00003e d002 rcall MCU_Delay
00003f 9478 sei
000040 9508 ret
MCU_Delay:
000041 e073 ldi temp_r_b, 3
_init_loop_loading:
000042 d0fd rcall effect_1
000043 957a dec temp_r_b
000044 f7e9 brne _init_loop_loading
000045 d195 rcall delay_1s
000046 2777 clr temp_r_b
000047 9508 ret
; program start at reset vector
RESET_vect:
000048 ed0f
000049 bf0d
00004a 2700 init_stack_p temp_r, RAMEND
00004b 9310 0061
00004d 930f
00004e e001
00004f 9300 0060
000051 910f set_state INIT_STATE
; main program loop
loop:
000052 9110 0060 lds mcu_state_r, CURRENT_STATE_ADDRESS
; init state
init:
000054 3011 cpi mcu_state_r, INIT_STATE
000055 f441 brne showing
000056 dfdd rcall MCU_Init
000057 9310 0061
000059 930f
00005a e002
00005b 9300 0060
00005d 910f set_state SHOWING_STATE
; showing state
showing:
00005e 3012 cpi mcu_state_r, SHOWING_STATE
00005f f441 brne polling
; generate sequence and save answer to SRAM
000060 d093 rcall show_sequence
000061 9310 0061
000063 930f
000064 e003
000065 9300 0060
000067 910f set_state POLLING_STATE
; polling state
polling:
000068 3013 cpi mcu_state_r, POLLING_STATE
000069 f5c1 brne default
btn_1:
00006a 9120 0062 lds r18, SW_FLAGS_ADDRESS
00006c 3e20 cpi r18, SW_FLAG_1
00006d f451 brne btn_2
led_on_1:
00006e 930f
00006f e80e
000070 bf06
000071 910f outi OCR0A, 142
000072 9ad8 sbi LED_PORT, 0
000073 9aba sbi BUZZ_DIR, BUZZ_PIN
000074 d02f rcall btn_handler
000075 98d8 cbi LED_PORT, 0
000076 98ba cbi BUZZ_DIR, BUZZ_PIN
000077 cff2 rjmp btn_1
btn_2:
000078 9120 0062 lds r18, SW_FLAGS_ADDRESS
00007a 3d20 cpi r18, SW_FLAG_2
00007b f451 brne btn_3
led_on_2:
00007c 930f
00007d e407
00007e bf06
00007f 910f outi OCR0A, 71
000080 9ad9 sbi LED_PORT, 1
000081 9aba sbi BUZZ_DIR, BUZZ_PIN
000082 d021 rcall btn_handler
000083 98d9 cbi LED_PORT, 1
000084 98ba cbi BUZZ_DIR, BUZZ_PIN
000085 cff2 rjmp btn_2
btn_3:
000086 9120 0062 lds r18, SW_FLAGS_ADDRESS
000088 3b20 cpi r18, SW_FLAG_3
000089 f451 brne btn_4
led_on_3:
00008a 930f
00008b e609
00008c bf06
00008d 910f outi OCR0A, 105
00008e 9ada sbi LED_PORT, 2
00008f 9aba sbi BUZZ_DIR, BUZZ_PIN
000090 d013 rcall btn_handler
000091 98da cbi LED_PORT, 2
000092 98ba cbi BUZZ_DIR, BUZZ_PIN
000093 cff2 rjmp btn_3
btn_4:
000094 9120 0062 lds r18, SW_FLAGS_ADDRESS
000096 3720 cpi r18, SW_FLAG_4
000097 f451 brne default
led_on_4:
000098 930f
000099 e500
00009a bf06
00009b 910f outi OCR0A, 80
00009c 9adb sbi LED_PORT, 3
00009d 9aba sbi BUZZ_DIR, BUZZ_PIN
00009e d005 rcall btn_handler
00009f 98db cbi LED_PORT, 3
0000a0 98ba cbi BUZZ_DIR, BUZZ_PIN
0000a1 cff2 rjmp btn_4
default:
0000a2 d092 rcall OCR0A_reset
0000a3 cfae rjmp loop
; check the input value with answer in SRAM
btn_handler:
0000a4 932f push r18
0000a5 d129 rcall delay_50ms
0000a6 d128 rcall delay_50ms
0000a7 d127 rcall delay_50ms
0000a8 b3a9 in temp_r_c, PINA
0000a9 2f9a mov r25, temp_r_c
0000aa 7fa0 andi temp_r_c, 0xf0
0000ab 709f andi r25, 0x0f
0000ac 27aa clr temp_r_c
0000ad 93a0 0062 sts SW_FLAGS_ADDRESS, temp_r_c
0000af 9181 ld r24, Z+
; check answer
0000b0 1798 cp r25, r24
; game over
0000b1 f429 brne _game_over
0000b2 2d2a mov r18, seq_length_r
0000b3 1724 cp r18, poll_step_r
0000b4 f051 breq _btn_handler_exit_state
0000b5 9543 inc poll_step_r
0000b6 c010 rjmp _btn_handler_exit
_game_over:
0000b7 912f pop r18
0000b8 d087 rcall effect_1
0000b9 ef3f ldi delay_counter_r, 0xff
0000ba e0a2 ldi temp_r_c, SEQ_LENGTH
0000bb 95aa dec temp_r_c
0000bc 2eaa mov seq_length_r, temp_r_c
0000bd d00c rcall reset_game
0000be 9508 ret
_btn_handler_exit_state:
0000bf 912f pop r18
0000c0 ef00 ldi temp_r, 0xf0
0000c1 bb0b out LED_PORT, temp_r
0000c2 98ba cbi BUZZ_DIR, BUZZ_PIN
0000c3 d10b rcall delay_50ms
0000c4 d0a4 rcall effect_2
0000c5 d004 rcall reset_game
0000c6 9508 ret
_btn_handler_exit:
0000c7 912f pop r18
0000c8 9508 ret
0000c9 9508 ret
reset_game:
0000ca 27ff clr ZH
0000cb e8e0 ldi ZL, $80
0000cc 98ba cbi BUZZ_DIR, BUZZ_PIN
0000cd ef00 ldi temp_r, 0xf0
0000ce bb0b out LED_PORT, temp_r
0000cf d10b rcall delay_1s
0000d0 9310 0061
0000d2 930f
0000d3 e002
0000d4 9300 0060
0000d6 910f set_state SHOWING_STATE
0000d7 e041 ldi poll_step_r, 1
0000d8 94a3 inc seq_length_r
0000d9 9508 ret
; generate random sequence of bytes for leds and save answer to SRAM
gen_ran_seq:
0000da 2d7a mov temp_r_b, seq_length_r
0000db 27dd clr YH
0000dc e8c0 ldi YL, $80
_gen_ran_loop:
; delay is required
0000dd d0f1 rcall delay_50ms
0000de 2f65 mov r22, r21
0000df 3466 cpi r22, 70
0000e0 f030 brlo _gen_answ_1
0000e1 386c cpi r22, 140
0000e2 f030 brlo _gen_answ_2
0000e3 3c68 cpi r22, 200
0000e4 f030 brlo _gen_answ_3
0000e5 3f6f cpi r22, 255
0000e6 f030 brlo _gen_answ_4
_gen_answ_1:
0000e7 e0a1 ldi temp_r_c, 0x01
0000e8 c005 rjmp _gen_ran_write
_gen_answ_2:
0000e9 e0a2 ldi temp_r_c, 0x02
0000ea c003 rjmp _gen_ran_write
_gen_answ_3:
0000eb e0a4 ldi temp_r_c, 0x04
0000ec c001 rjmp _gen_ran_write
_gen_answ_4:
0000ed e0a8 ldi temp_r_c, 0x08
_gen_ran_write:
0000ee 93a9 st Y+, temp_r_c
0000ef 957a dec temp_r_b
0000f0 3070 cpi temp_r_b, 0
0000f1 f759 brne _gen_ran_loop
0000f2 0000 nop
0000f3 9508 ret
show_sequence:
; answer stored in SRAM in addr $80:{SEQ_LENGTH}
0000f4 dfe5 rcall gen_ran_seq
show_start:
0000f5 2d7a mov temp_r_b, seq_length_r
0000f6 27dd clr YH
0000f7 e8c0 ldi YL, $80
_sequence_loop:
0000f8 3070 cpi temp_r_b, 0
0000f9 f1c1 breq _seq_quit
0000fa 91a9 ld temp_r_c, Y+
0000fb 30a1 cpi temp_r_c, 0x01
0000fc f031 breq beep_1
0000fd 30a2 cpi temp_r_c, 0x02
0000fe f079 breq beep_2
0000ff 30a4 cpi temp_r_c, 0x04
000100 f0c1 breq beep_3
000101 30a8 cpi temp_r_c, 0x08
000102 f109 breq beep_4
beep_1:
000103 930f
000104 e80e
000105 bf06
000106 910f
000107 9ad8
000108 9aba
000109 d0ac
00010a 98d8
00010b 98ba beep_led_1
00010c d028 rcall OCR0A_reset
00010d c020 rjmp beep_quit
beep_2:
00010e 930f
00010f e407
000110 bf06
000111 910f
000112 9ad9
000113 9aba
000114 d0a1
000115 98d9
000116 98ba beep_led_2
000117 d01d rcall OCR0A_reset
000118 c015 rjmp beep_quit
beep_3:
000119 930f
00011a e609
00011b bf06
00011c 910f
00011d 9ada
00011e 9aba
00011f d096
000120 98da
000121 98ba beep_led_3
000122 d012 rcall OCR0A_reset
000123 c00a rjmp beep_quit
beep_4:
000124 930f
000125 e500
000126 bf06
000127 910f
000128 9adb
000129 9aba
00012a d08b
00012b 98db
00012c 98ba beep_led_4
00012d d007 rcall OCR0A_reset
beep_quit:
00012e d087 rcall delay
00012f 957a dec temp_r_b
000130 3070 cpi temp_r_b, 0
000131 f631 brne _sequence_loop
_seq_quit:
000132 d007 rcall dec_delay_counter
000133 d09b rcall delay_50ms
; in temp_r_c, MCUCR
; sbr temp_r_c, (1<<SE)
; out MCUCR, temp_r_c
; sleep
000134 9508 ret
; this function need to set the OCR0A register to 0xff for overflow interrupt
OCR0A_reset:
000135 937f push temp_r_b
000136 ef7f ldi temp_r_b, 0xff
000137 bf76 out OCR0A, temp_r_b
000138 917f pop temp_r_b
000139 9508 ret
dec_delay_counter:
00013a 503a subi delay_counter_r, 10
00013b 3238 cpi delay_counter_r, 40
00013c f008 brlo _reset_counter
00013d 9508 ret
_reset_counter:
00013e ef3f ldi delay_counter_r, 0xff
00013f 9508 ret
effect_1: ; Shift bits of an leds in port every 50ms
000140 931f push r17
000141 932f push r18
000142 933f push r19
000143 934f push r20
000144 94f8 cli
000145 b34b in r20, LED_PORT
000146 930f
000147 ef01
000148 bb0b
000149 910f outi LED_PORT, 0xf1
00014a d084 rcall delay_50ms
00014b e011 ldi r17, 0x01
00014c e033 ldi r19, 3
; shift bits to left loop
_eff_1_shift_l:
00014d ef20 ldi r18, 0xf0
00014e 0f11 lsl r17
00014f 0f21 add r18, r17
000150 bb2b out LED_PORT, r18
000151 d07d rcall delay_50ms
000152 953a dec r19
000153 f7c9 brne _eff_1_shift_l
000154 930f
000155 ef08
000156 bb0b
000157 910f outi LED_PORT, 0xf8
000158 d076 rcall delay_50ms
000159 e018 ldi r17, 0x08
00015a e033 ldi r19, 3
; shift bits to right loop
_eff_1_shift_r:
00015b ef20 ldi r18, 0xf0
00015c 9516 lsr r17
00015d 0f21 add r18, r17
00015e bb2b out LED_PORT, r18
00015f d06f rcall delay_50ms
000160 953a dec r19
000161 f7c9 brne _eff_1_shift_r
000162 9478 sei
; out saved PORT values
000163 bb4b out LED_PORT, r20
000164 914f pop r20
000165 913f pop r19
000166 912f pop r18
000167 911f pop r17
000168 9508 ret
effect_2:
000169 930f
00016a e80e
00016b bf06
00016c 910f outi OCR0A, 142
00016d 9ad8 sbi LED_PORT, 0
00016e 9aba sbi BUZZ_DIR, BUZZ_PIN
00016f d05f rcall delay_50ms
000170 d05e rcall delay_50ms
000171 98d8 cbi LED_PORT, 0
000172 98ba cbi BUZZ_DIR, BUZZ_PIN
000173 930f
000174 e609
000175 bf06
000176 910f outi OCR0A, 105
000177 9ad9 sbi LED_PORT, 1
000178 9aba sbi BUZZ_DIR, BUZZ_PIN
000179 d055 rcall delay_50ms
00017a d054 rcall delay_50ms
00017b 98d9 cbi LED_PORT, 1
00017c 98ba cbi BUZZ_DIR, BUZZ_PIN
00017d 930f
00017e e500
00017f bf06
000180 910f outi OCR0A, 80
000181 9ada sbi LED_PORT, 2
000182 9aba sbi BUZZ_DIR, BUZZ_PIN
000183 d04b rcall delay_50ms
000184 d04a rcall delay_50ms
000185 98da cbi LED_PORT, 2
000186 98ba cbi BUZZ_DIR, BUZZ_PIN
000187 930f
000188 e407
000189 bf06
00018a 910f outi OCR0A, 71
00018b 9adb sbi LED_PORT, 3
00018c 9aba sbi BUZZ_DIR, BUZZ_PIN
00018d d041 rcall delay_50ms
00018e d040 rcall delay_50ms
00018f 98db cbi LED_PORT, 3
000190 98ba cbi BUZZ_DIR, BUZZ_PIN
000191 9508 ret
init_interrupts:
; enable Port Change Interrupt
000192 e100 ldi temp_r, (1<<PCIE0)
000193 bf0b out GIMSK, temp_r
; set Pin Change Mask Register
000194 ef00 ldi temp_r, (1<<PCINT4) | (1<<PCINT5)| (1<<PCINT6) | (1<<PCINT7)
000195 bb02 out PCMSK0, temp_r
000196 2700 clr temp_r
000197 9508 ret
init_buzzer:
000198 98ba cbi BUZZ_DIR, BUZZ_PIN
; setup timer
000199 e402 ldi temp_r, (1<<COM0A0) | (1<<WGM01)
; set CTC timer mode and toggle OC0A pin on Compare Match
00019a bf00 out TCCR0A, temp_r
00019b ef0f ldi temp_r, 255
00019c bf06 out OCR0A, temp_r
00019d e002 ldi temp_r, (1<<CS01)
; prescale on 8
00019e bf03 out TCCR0B, temp_r
00019f e001 ldi temp_r, (1<<TOIE0)
; enable Timer/Counter0 Overflow Interrupt
0001a0 bf09 out TIMSK0, temp_r
0001a1 9508 ret
init_ports: ; Init MCU ports
; setup PORTA
0001a2 e00f ldi temp_r, 0x0f
; set directions of leds and buttons
0001a3 bb0a out DDRA, temp_r
0001a4 9502 swap temp_r
; set low signal on leds and pull-up on buttons
0001a5 bb0b out PORTA, temp_r
; setup PORTB
0001a6 9aba sbi DDRB, BUZZ_PIN ; Set direction of buzzer pin to output
0001a7 98c2 cbi PORTB, BUZZ_PIN ; Set low signal on buzzer
0001a8 9508 ret
init_sm:
0001a9 b705 in temp_r, MCUCR
0001aa 6100 ori temp_r, (1<<SM1)
; config sleep mode to power-down
0001ab bf05 out MCUCR, temp_r
0001ac 9508 ret
init_wdt:
0001ad 94f8 cli
0001ae 95a8 wdr
0001af b501 in temp_r, WDTCSR
0001b0 6108 ori temp_r, (1<<WDCE) | (1<<WDE)
; allow changing the watchdog bits and enable watchdog
0001b1 bd01 out WDTCSR, temp_r
0001b2 e40d ldi temp_r, (1<<WDE) | (1<<WDIE) | (1<<WDP2) | (1<<WDP0)
; config watchdog to interrupt mode and setup prescaler (0.5 sec)
0001b3 bd01 out WDTCSR, temp_r
0001b4 9478 sei
0001b5 9508 ret
delay: ; For 1MHz frequency
0001b6 932f push r18
0001b7 934f push r20
0001b8 ef2f ldi r18, 255
0001b9 2f43 mov r20, delay_counter_r
_delay_loop:
0001ba 0000 nop
0001bb 952a dec r18
0001bc f7e9 brne _delay_loop
0001bd 0000 nop
0001be 954a dec r20
0001bf f7d1 brne _delay_loop
0001c0 0000 nop
0001c1 914f pop r20
0001c2 912f pop r18
0001c3 9508 ret
delay_20ms:
0001c4 932f push r18
0001c5 933f push r19
0001c6 e12a ldi r18, 26
0001c7 ef39 ldi r19, 249
_loop_d_20ms:
0001c8 953a dec r19
0001c9 f7f1 brne _loop_d_20ms
0001ca 952a dec r18
0001cb f7e1 brne _loop_d_20ms
0001cc 913f pop r19
0001cd 912f pop r18
0001ce 9508 ret
delay_50ms: ; For 1MHz frequency
0001cf 932f push r18
0001d0 933f push r19
0001d1 e421 ldi r18, 65
0001d2 ee3f ldi r19, 239
_loop_d_50ms:
0001d3 953a dec r19
0001d4 f7f1 brne _loop_d_50ms
0001d5 952a dec r18
0001d6 f7e1 brne _loop_d_50ms
0001d7 0000 nop
0001d8 913f pop r19
0001d9 912f pop r18
0001da 9508 ret
delay_1s: ; For 1MHz frequency
0001db 938f push r24
0001dc 939f push r25
.equ outer_count = 100
.equ inner_count = 2499
0001dd e624 ldi r18, outer_count
_reset:
0001de ec83 ldi r24, low(inner_count)
0001df e099 ldi r25, high(inner_count)
_loop:
0001e0 9701 sbiw r24, 1
0001e1 f7f1 brne _loop
0001e2 952a dec r18
0001e3 f7d1 brne _reset
0001e4 e624 ldi r18, outer_count
0001e5 919f pop r25
0001e6 918f pop r24
0001e7 9508 ret
0001e8 654d
0001e9 6f6d
0001ea 7972
0001eb 6c20
0001ec 6465
0001ed 6720
0001ee 6d61
0001ef 2e65
0001f0 5720
0001f1 6972
0001f2 7474
0001f3 6e65
0001f4 6220
0001f5 2079
0001f6 6553
0001f7 6772
0001f8 7965
0001f9 5920
0001fa 7261
0001fb 6f6b
0001fc 2076
0001fd 3732
0001fe 302e
0001ff 2e39
000200 3032
RESOURCE USE INFORMATION
------------------------
Notice:
The register and instruction counts are symbol table hit counts,
and hence implicitly used resources are not counted, eg, the
'lpm' instruction without operands implicitly uses r0 and z,
none of which are counted.
x,y,z are separate entities in the symbol table and are
counted separately from r26..r31 here.
.dseg memory usage only counts static data declared with .byte
"ATtiny24A" register use summary:
x : 0 y : 2 z : 1 r0 : 0 r1 : 0 r2 : 0 r3 : 0 r4 : 0
r5 : 0 r6 : 0 r7 : 0 r8 : 0 r9 : 0 r10: 6 r11: 1 r12: 0
r13: 0 r14: 0 r15: 0 r16: 108 r17: 23 r18: 44 r19: 20 r20: 12
r21: 4 r22: 5 r23: 18 r24: 6 r25: 6 r26: 23 r27: 0 r28: 2
r29: 2 r30: 2 r31: 2
Registers used: 19 out of 35 (54.3%)
"ATtiny24A" instruction use summary:
.lds : 0 .sts : 0 adc : 0 add : 3 adiw : 0 and : 0
andi : 3 asr : 0 bclr : 0 bld : 0 brbc : 0 brbs : 0
brcc : 0 brcs : 0 break : 0 breq : 6 brge : 0 brhc : 0
brhs : 0 brid : 0 brie : 0 brlo : 5 brlt : 0 brmi : 0
brne : 22 brpl : 0 brsh : 0 brtc : 0 brts : 0 brvc : 0
brvs : 0 bset : 0 bst : 0 cbi : 28 cbr : 1 clc : 0
clh : 0 cli : 2 cln : 0 clr : 8 cls : 0 clt : 0
clv : 0 clz : 0 com : 0 cp : 2 cpc : 0 cpi : 20
cpse : 0 dec : 13 eor : 1 icall : 0 ijmp : 0 in : 10
inc : 3 ld : 2 ldd : 0 ldi : 63 lds : 6 lpm : 0
lsl : 1 lsr : 1 mov : 8 movw : 0 neg : 0 nop : 5
or : 0 ori : 2 out : 36 pop : 37 push : 35 rcall : 49
ret : 23 reti : 16 rjmp : 17 rol : 0 ror : 0 sbc : 0
sbci : 0 sbi : 25 sbic : 0 sbis : 0 sbiw : 1 sbr : 0
sbrc : 0 sbrs : 0 sec : 0 seh : 0 sei : 3 sen : 0
ser : 0 ses : 0 set : 0 sev : 0 sez : 0 sleep : 0
spm : 0 st : 1 std : 0 sts : 10 sub : 0 subi : 1
swap : 2 tst : 0 wdr : 1
Instructions used: 38 out of 105 (36.2%)
"ATtiny24A" memory use summary [bytes]:
Segment Begin End Code Data Used Size Use%
---------------------------------------------------------------
[.cseg] 0x000000 0x000404 976 52 1028 2048 50.2%
[.dseg] 0x000060 0x000063 0 3 3 128 2.3%
[.eseg] 0x000000 0x000000 0 0 0 128 0.0%
Assembly complete, 0 errors, 1 warnings