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Вот. Есть в AVRstudio.
(«Телесистемы»: Конференция «Микроконтроллеры и их применение»)

миниатюрный аудио-видеорекордер mAVR

Отправлено Sl_ 06 октября 2006 г. 14:15
В ответ на: А где бы взять .INC файлы для IAR ассемблера A90. Нужно для Меги8515. Google-м быстро не находится... отправлено <font color=gray>v05</font> 06 октября 2006 г. 13:18

;***************************************************************************
;* 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 :"m8515def.inc"
;* Title :Register/Bit Definitions for the ATmega8515
;* Date :April 16th, 2002
;* Version :1.00
;* Support E-mail :support@atmel.no
;* Target MCU :ATmega8515
;*
;* 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<;* 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
;***************************************************************************

;***** Specify Device
.device ATmega8515

;***** I/O Register Definitions
.equ SREG =$3f
.equ SPH =$3e
.equ SPL =$3d
.equ GIMSK =$3b
.equ GICR =$3b
.equ GIFR =$3a
.equ TIMSK =$39
.equ TIFR =$38
.equ SPMCR =$37
.equ EMCUCR =$36
.equ MCUCR =$35
.equ MCUSR =$34 ; For compatibility,
.equ MCUCSR =$34 ; keep both names until further
.equ TCCR0 =$33
.equ TCNT0 =$32
.equ OCR0 =$31
.equ SFIOR =$30
.equ TCCR1A =$2f
.equ TCCR1B =$2e
.equ TCNT1H =$2d
.equ TCNT1L =$2c
.equ OCR1AH =$2b
.equ OCR1AL =$2a
.equ OCR1BH =$29
.equ OCR1BL =$28
.equ ICR1H =$25
.equ ICR1L =$24
.equ WDTCR =$21
.equ UCSRC =$20 ; Note! UCSRC equals UBRRH
.equ UBRRH =$20 ; Note! UCSRC equals UBRRH
.equ EEARH =$1f
.equ EEARL =$1e
.equ EEDR =$1d
.equ EECR =$1c
.equ PORTA =$1b
.equ DDRA =$1a
.equ PINA =$19
.equ PORTB =$18
.equ DDRB =$17
.equ PINB =$16
.equ PORTC =$15
.equ DDRC =$14
.equ PINC =$13
.equ PORTD =$12
.equ DDRD =$11
.equ PIND =$10
.equ SPDR =$0f
.equ SPSR =$0e
.equ SPCR =$0d
.equ UDR =$0c
.equ UCSRA =$0b
.equ UCSRB =$0a
.equ UBRR =$09 ; for AT90S8515
.equ UBRRL =$09
.equ ACSR =$08
.equ PORTE =$07
.equ DDRE =$06
.equ PINE =$05
.equ OSCCAL =$04 ; New

;***** Bit Definitions
;GIMSK
.equ INT1 =7
.equ INT0 =6
.equ INT2 =5
.equ IVSEL =1 ; interrupt vector select
.equ IVCE =0 ; interrupt vector change enable

;GIFR
.equ INTF1 =7
.equ INTF0 =6
.equ INTF2 =5

;TIMSK
.equ TOIE1 =7
.equ OCIE1A =6
.equ OCIE1B =5
.equ TICIE1 =3
.equ TOIE0 =1
.equ OCIE0 =0

;TIFR
.equ TOV1 =7
.equ OCF1A =6
.equ OCF1B =5
.equ ICF1 =3
.equ TOV0 =1
.equ OCF0 =0

;SPMCR
.equ SPMIE =7
.equ RWWSB =6
.equ ASB =6 ; old
.equ RWWSRE =4
.equ ASRE =4 ; old
.equ BLBSET =3
.equ PGWRT =2
.equ PGERS =1
.equ SPMEN =0

;EMCUCR
.equ SM0 =7
.equ SRL2 =6
.equ SRL1 =5
.equ SRL0 =4
.equ SRW01 =3
.equ SRW00 =2
.equ SRW11 =1
.equ ISC2 =0

;MCUCR
.equ SRE =7
.equ SRW =6
.equ SRW10 =6
.equ SE =5
.equ SM =4
.equ SM1 =4
.equ ISC11 =3
.equ ISC10 =2
.equ ISC01 =1
.equ ISC00 =0

;MCUSR
.equ SM2 =5
.equ WDRF =3
.equ BORF =2
.equ EXTRF =1
.equ PORF =0

;TCCR0
.equ FOC0 =7
.equ WGM00 =6
.equ COM01 =5
.equ COM00 =4
.equ WGM01 =3
.equ CS02 =2
.equ CS01 =1
.equ CS00 =0

;TCCR1A
.equ COM1A1 = 7
.equ COM1A0 = 6
.equ COM1B1 = 5
.equ COM1B0 = 4
.equ FOC1A = 3
.equ FOC1B = 2
.equ PWM11 = 1 ; OBSOLETE! Use WGM11
.equ PWM10 = 0 ; OBSOLETE! Use WGM10
.equ WGM11 = 1
.equ WGM10 = 0

;TCCR1B
.equ ICNC1 = 7
.equ ICES1 = 6
.equ CTC11 = 4 ; OBSOLETE! Use WGM13
.equ CTC10 = 3 ; OBSOLETE! Use WGM12
.equ WGM13 = 4
.equ WGM12 = 3
.equ CS12 = 2
.equ CS11 = 1
.equ CS10 = 0


;SFIOR
.equ TSM =7
.equ XMBK =6
.equ XMM2 =5
.equ XMM1 =4
.equ XMM0 =3
.equ PUD =2
.equ PSR10 =0

;WDTCR
.equ WDTOE =4
.equ WDCE =4
.equ WDE =3
.equ WDP2 =2
.equ WDP1 =1
.equ WDP0 =0

;EECR
.equ EERIE =3
.equ EEWEE =2
.equ EEMWE =2
.equ EEWE =1
.equ EERE =0

;PORTA
.equ PA7 =7
.equ PA6 =6
.equ PA5 =5
.equ PA4 =4
.equ PA3 =3
.equ PA2 =2
.equ PA1 =1
.equ PA0 =0

;DDRA
.equ DDA7 =7
.equ DDA6 =6
.equ DDA5 =5
.equ DDA4 =4
.equ DDA3 =3
.equ DDA2 =2
.equ DDA1 =1
.equ DDA0 =0

;PINA
.equ PINA7 =7
.equ PINA6 =6
.equ PINA5 =5
.equ PINA4 =4
.equ PINA3 =3
.equ PINA2 =2
.equ PINA1 =1
.equ PINA0 =0

;PORTB
.equ PB7 =7
.equ PB6 =6
.equ PB5 =5
.equ PB4 =4
.equ PB3 =3
.equ PB2 =2
.equ PB1 =1
.equ PB0 =0

;DDRB
.equ DDB7 =7
.equ DDB6 =6
.equ DDB5 =5
.equ DDB4 =4
.equ DDB3 =3
.equ DDB2 =2
.equ DDB1 =1
.equ DDB0 =0

;PINB
.equ PINB7 =7
.equ PINB6 =6
.equ PINB5 =5
.equ PINB4 =4
.equ PINB3 =3
.equ PINB2 =2
.equ PINB1 =1
.equ PINB0 =0

;PORTC
.equ PC7 =7
.equ PC6 =6
.equ PC5 =5
.equ PC4 =4
.equ PC3 =3
.equ PC2 =2
.equ PC1 =1
.equ PC0 =0

;DDRC
.equ DDC7 =7
.equ DDC6 =6
.equ DDC5 =5
.equ DDC4 =4
.equ DDC3 =3
.equ DDC2 =2
.equ DDC1 =1
.equ DDC0 =0

;PINC
.equ PINC7 =7
.equ PINC6 =6
.equ PINC5 =5
.equ PINC4 =4
.equ PINC3 =3
.equ PINC2 =2
.equ PINC1 =1
.equ PINC0 =0

;PORTD
.equ PD7 =7
.equ PD6 =6
.equ PD5 =5
.equ PD4 =4
.equ PD3 =3
.equ PD2 =2
.equ PD1 =1
.equ PD0 =0

;DDRD
.equ DDD7 =7
.equ DDD6 =6
.equ DDD5 =5
.equ DDD4 =4
.equ DDD3 =3
.equ DDD2 =2
.equ DDD1 =1
.equ DDD0 =0

;PIND
.equ PIND7 =7
.equ PIND6 =6
.equ PIND5 =5
.equ PIND4 =4
.equ PIND3 =3
.equ PIND2 =2
.equ PIND1 =1
.equ PIND0 =0

;PORTE
.equ PE2 =2
.equ PE1 =1
.equ PE0 =0

;DDRE
.equ DDE2 =2
.equ DDE1 =1
.equ DDE0 =0

;PINE
.equ PINE2 =2
.equ PINE1 =1
.equ PINE0 =0

;UCSRA
.equ RXC =7
.equ TXC =6
.equ UDRE =5
.equ FE =4
.equ OR =3 ; old name kept for compatibilty
.equ DOR =3
.equ PE =2
.equ UPE =2
.equ U2X =1
.equ MPCM =0

;UCSRB
.equ RXCIE =7
.equ TXCIE =6
.equ UDRIE =5
.equ RXEN =4
.equ TXEN =3
.equ CHR9 =2 ; old name kept for compatibilty
.equ UCSZ2 =2
.equ RXB8 =1
.equ TXB8 =0

;UCSRC
.equ URSEL =7
.equ UMSEL =6
.equ UPM1 =5
.equ UPM0 =4
.equ USBS =3
.equ UCSZ1 =2
.equ UCSZ0 =1
.equ UCPOL =0

;SPCR
.equ SPIE =7
.equ SPE =6
.equ DORD =5
.equ MSTR =4
.equ CPOL =3
.equ CPHA =2
.equ SPR1 =1
.equ SPR0 =0

;SPSR
.equ SPIF =7
.equ WCOL =6
.equ SPI2X =0

;ACSR
.equ ACD =7
.equ AINBG =6
.equ ACBG =6
.equ ACO =5
.equ ACI =4
.equ ACIE =3
.equ ACIC =2
.equ ACIS1 =1
.equ ACIS0 =0

.def XL =r26
.def XH =r27
.def YL =r28
.def YH =r29
.def ZL =r30
.def ZH =r31

.equ RAMEND =$25F
.equ EEPROMEND = $1FF
.equ FLASHEND = $FFF

; byte groups
; /\/--\/--\/--\
.equ SMALLBOOTSTART =0b00111110000000 ;($0F80) smallest boot block is 128W
.equ SECONDBOOTSTART =0b00111100000000 ;($0F00) 2'nd boot block size is 256W
.equ THIRDBOOTSTART =0b00111000000000 ;($0E00) third boot block size is 512W
.equ LARGEBOOTSTART =0b00110000000000 ;($0C00) largest boot block is 1KW
.equ BOOTSTART =THIRDBOOTSTART ;OBSOLETE!!! kept for compatibility
.equ PAGESIZE =32 ;number of WORDS in a page


.equ INT0addr=$001 ;External Interrupt0 Vector Address
.equ INT1addr=$002 ;External Interrupt1 Vector Address
.equ ICP1addr=$003 ;Input Capture1 Interrupt Vector Address
.equ OC1Aaddr=$004 ;Output Compare1A Interrupt Vector Address
.equ OC1Baddr=$005 ;Output Compare1B Interrupt Vector Address
.equ OVF1addr=$006 ;Overflow1 Interrupt Vector Address
.equ OVF0addr=$007 ;Overflow0 Interrupt Vector Address
.equ SPIaddr =$008 ;SPI Interrupt Vector Address
.equ URXCaddr=$009 ;UART Receive Complete Interrupt Vector Address
.equ UDREaddr=$00a ;UART Data Register Empty Interrupt Vector Address
.equ UTXCaddr=$00b ;UART Transmit Complete Interrupt Vector Address
.equ ACIaddr =$00c ;Analog Comparator Interrupt Vector Address

.equ INT2addr=$00d ;External Interrupt2 Vector Address
.equ OC0addr= $00e ;Output Compare0 Interrupt Vector Address
.equ ERDYaddr=$00f ; EEPROM Interrupt Vector Address
.equ SPMaddr =$010 ; SPM complete Interrupt Vector Address
.equ SPMRaddr =$010 ; SPM complete Interrupt Vector Address

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