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avrdude.conf
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avrdude.conf
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# $Id: avrdude.conf.in 916 2010-01-15 16:36:13Z joerg_wunsch $
#
# AVRDUDE Configuration File
#
# This file contains configuration data used by AVRDUDE which describes
# the programming hardware pinouts and also provides part definitions.
# AVRDUDE's "-C" command line option specifies the location of the
# configuration file. The "-c" option names the programmer configuration
# which must match one of the entry's "id" parameter. The "-p" option
# identifies which part AVRDUDE is going to be programming and must match
# one of the parts' "id" parameter.
#
# Possible entry formats are:
#
# programmer
# id = <id1> [, <id2> [, <id3>] ...] ; # <idN> are quoted strings
# desc = <description> ; # quoted string
# type = par | stk500 | stk500v2 | stk500pp | stk500hvsp | stk500generic |
# stk600 | stk600pp | stk600hvsp |
# avr910 | butterfly | usbasp |
# jtagmki | jtagmkii | jtagmkii_isp | jtagmkii_dw |
# jtagmkII_avr32 | jtagmkii_pdi |
# dragon_dw | dragon_jtag | dragon_isp | dragon_pp |
# dragon_hvsp | dragon_pdi | arduino; # programmer type
# baudrate = <num> ; # baudrate for avr910-programmer
# vcc = <num1> [, <num2> ... ] ; # pin number(s)
# reset = <num> ; # pin number
# sck = <num> ; # pin number
# mosi = <num> ; # pin number
# miso = <num> ; # pin number
# errled = <num> ; # pin number
# rdyled = <num> ; # pin number
# pgmled = <num> ; # pin number
# vfyled = <num> ; # pin number
# ;
#
# part
# id = <id> ; # quoted string
# desc = <description> ; # quoted string
# has_jtag = <yes/no> ; # part has JTAG i/f
# has_debugwire = <yes/no> ; # part has debugWire i/f
# has_pdi = <yes/no> ; # part has PDI i/f
# has_tpi = <yes/no> ; # part has TPI i/f
# devicecode = <num> ; # deprecated, use stk500_devcode
# stk500_devcode = <num> ; # numeric
# avr910_devcode = <num> ; # numeric
# signature = <num> <num> <num> ; # signature bytes
# chip_erase_delay = <num> ; # micro-seconds
# reset = dedicated | io;
# retry_pulse = reset | sck;
# pgm_enable = <instruction format> ;
# chip_erase = <instruction format> ;
# chip_erase_delay = <num> ; # chip erase delay (us)
# # STK500 parameters (parallel programming IO lines)
# pagel = <num> ; # pin name in hex, i.e., 0xD7
# bs2 = <num> ; # pin name in hex, i.e., 0xA0
# serial = <yes/no> ; # can use serial downloading
# parallel = <yes/no/pseudo>; # can use par. programming
# # STK500v2 parameters, to be taken from Atmel's XML files
# timeout = <num> ;
# stabdelay = <num> ;
# cmdexedelay = <num> ;
# synchloops = <num> ;
# bytedelay = <num> ;
# pollvalue = <num> ;
# pollindex = <num> ;
# predelay = <num> ;
# postdelay = <num> ;
# pollmethod = <num> ;
# mode = <num> ;
# delay = <num> ;
# blocksize = <num> ;
# readsize = <num> ;
# hvspcmdexedelay = <num> ;
# # STK500v2 HV programming parameters, from XML
# pp_controlstack = <num>, <num>, ...; # PP only
# hvsp_controlstack = <num>, <num>, ...; # HVSP only
# hventerstabdelay = <num>;
# progmodedelay = <num>; # PP only
# latchcycles = <num>;
# togglevtg = <num>;
# poweroffdelay = <num>;
# resetdelayms = <num>;
# resetdelayus = <num>;
# hvleavestabdelay = <num>;
# resetdelay = <num>;
# synchcycles = <num>; # HVSP only
# chiperasepulsewidth = <num>; # PP only
# chiperasepolltimeout = <num>;
# chiperasetime = <num>; # HVSP only
# programfusepulsewidth = <num>; # PP only
# programfusepolltimeout = <num>;
# programlockpulsewidth = <num>; # PP only
# programlockpolltimeout = <num>;
# # JTAG ICE mkII parameters, also from XML files
# allowfullpagebitstream = <yes/no> ;
# enablepageprogramming = <yes/no> ;
# idr = <num> ; # IO addr of IDR (OCD) reg.
# rampz = <num> ; # IO addr of RAMPZ reg.
# spmcr = <num> ; # mem addr of SPMC[S]R reg.
# eecr = <num> ; # mem addr of EECR reg.
# # (only when != 0x3c)
# is_avr32 = <yes/no> ; # AVR32 part
#
# memory <memtype>
# paged = <yes/no> ; # yes / no
# size = <num> ; # bytes
# page_size = <num> ; # bytes
# num_pages = <num> ; # numeric
# min_write_delay = <num> ; # micro-seconds
# max_write_delay = <num> ; # micro-seconds
# readback_p1 = <num> ; # byte value
# readback_p2 = <num> ; # byte value
# pwroff_after_write = <yes/no> ; # yes / no
# read = <instruction format> ;
# write = <instruction format> ;
# read_lo = <instruction format> ;
# read_hi = <instruction format> ;
# write_lo = <instruction format> ;
# write_hi = <instruction format> ;
# loadpage_lo = <instruction format> ;
# loadpage_hi = <instruction format> ;
# writepage = <instruction format> ;
# ;
# ;
#
# If any of the above parameters are not specified, the default value
# of 0 is used for numerics or the empty string ("") for string
# values. If a required parameter is left empty, AVRDUDE will
# complain.
#
# NOTES:
# * 'devicecode' is the device code used by the STK500 (see codes
# listed below)
# * Not all memory types will implement all instructions.
# * AVR Fuse bits and Lock bits are implemented as a type of memory.
# * Example memory types are:
# "flash", "eeprom", "fuse", "lfuse" (low fuse), "hfuse" (high
# fuse), "signature", "calibration", "lock"
# * The memory type specified on the avrdude command line must match
# one of the memory types defined for the specified chip.
# * The pwroff_after_write flag causes avrdude to attempt to
# power the device off and back on after an unsuccessful write to
# the affected memory area if VCC programmer pins are defined. If
# VCC pins are not defined for the programmer, a message
# indicating that the device needs a power-cycle is printed out.
# This flag was added to work around a problem with the
# at90s4433/2333's; see the at90s4433 errata at:
#
# http://www.atmel.com/atmel/acrobat/doc1280.pdf
#
# INSTRUCTION FORMATS
#
# Instruction formats are specified as a comma seperated list of
# string values containing information (bit specifiers) about each
# of the 32 bits of the instruction. Bit specifiers may be one of
# the following formats:
#
# '1' = the bit is always set on input as well as output
#
# '0' = the bit is always clear on input as well as output
#
# 'x' = the bit is ignored on input and output
#
# 'a' = the bit is an address bit, the bit-number matches this bit
# specifier's position within the current instruction byte
#
# 'aN' = the bit is the Nth address bit, bit-number = N, i.e., a12
# is address bit 12 on input, a0 is address bit 0.
#
# 'i' = the bit is an input data bit
#
# 'o' = the bit is an output data bit
#
# Each instruction must be composed of 32 bit specifiers. The
# instruction specification closely follows the instruction data
# provided in Atmel's data sheets for their parts.
#
# See below for some examples.
#
#
# The following are STK500 part device codes to use for the
# "devicecode" field of the part. These came from Atmel's software
# section avr061.zip which accompanies the application note
# AVR061 available from:
#
# http://www.atmel.com/atmel/acrobat/doc2525.pdf
#
#define ATTINY10 0x10 /* the _old_ one that never existed! */
#define ATTINY11 0x11
#define ATTINY12 0x12
#define ATTINY15 0x13
#define ATTINY13 0x14
#define ATTINY22 0x20
#define ATTINY26 0x21
#define ATTINY28 0x22
#define ATTINY2313 0x23
#define AT90S1200 0x33
#define AT90S2313 0x40
#define AT90S2323 0x41
#define AT90S2333 0x42
#define AT90S2343 0x43
#define AT90S4414 0x50
#define AT90S4433 0x51
#define AT90S4434 0x52
#define ATMEGA48 0x59
#define AT90S8515 0x60
#define AT90S8535 0x61
#define AT90C8534 0x62
#define ATMEGA8515 0x63
#define ATMEGA8535 0x64
#define ATMEGA8 0x70
#define ATMEGA88 0x73
#define ATMEGA168 0x86
#define ATMEGA161 0x80
#define ATMEGA163 0x81
#define ATMEGA16 0x82
#define ATMEGA162 0x83
#define ATMEGA169 0x84
#define ATMEGA323 0x90
#define ATMEGA32 0x91
#define ATMEGA64 0xA0
#define ATMEGA103 0xB1
#define ATMEGA128 0xB2
#define AT90CAN128 0xB3
#define AT90CAN64 0xB3
#define AT90CAN32 0xB3
#define AT86RF401 0xD0
#define AT89START 0xE0
#define AT89S51 0xE0
#define AT89S52 0xE1
# The following table lists the devices in the original AVR910
# appnote:
# |Device |Signature | Code |
# +-------+----------+------+
# |tiny12 | 1E 90 05 | 0x55 |
# |tiny15 | 1E 90 06 | 0x56 |
# | | | |
# | S1200 | 1E 90 01 | 0x13 |
# | | | |
# | S2313 | 1E 91 01 | 0x20 |
# | S2323 | 1E 91 02 | 0x48 |
# | S2333 | 1E 91 05 | 0x34 |
# | S2343 | 1E 91 03 | 0x4C |
# | | | |
# | S4414 | 1E 92 01 | 0x28 |
# | S4433 | 1E 92 03 | 0x30 |
# | S4434 | 1E 92 02 | 0x6C |
# | | | |
# | S8515 | 1E 93 01 | 0x38 |
# | S8535 | 1E 93 03 | 0x68 |
# | | | |
# |mega32 | 1E 95 01 | 0x72 |
# |mega83 | 1E 93 05 | 0x65 |
# |mega103| 1E 97 01 | 0x41 |
# |mega161| 1E 94 01 | 0x60 |
# |mega163| 1E 94 02 | 0x64 |
# Appnote AVR109 also has a table of AVR910 device codes, which
# lists:
# dev avr910 signature
# ATmega8 0x77 0x1E 0x93 0x07
# ATmega8515 0x3B 0x1E 0x93 0x06
# ATmega8535 0x6A 0x1E 0x93 0x08
# ATmega16 0x75 0x1E 0x94 0x03
# ATmega162 0x63 0x1E 0x94 0x04
# ATmega163 0x66 0x1E 0x94 0x02
# ATmega169 0x79 0x1E 0x94 0x05
# ATmega32 0x7F 0x1E 0x95 0x02
# ATmega323 0x73 0x1E 0x95 0x01
# ATmega64 0x46 0x1E 0x96 0x02
# ATmega128 0x44 0x1E 0x97 0x02
#
# These codes refer to "BOOT" device codes which are apparently
# different than standard device codes, for whatever reasons
# (often one above the standard code).
# There are several extended versions of AVR910 implementations around
# in the Internet. These add the following codes (only devices that
# actually exist are listed):
# ATmega8515 0x3A
# ATmega128 0x43
# ATmega64 0x45
# ATtiny26 0x5E
# ATmega8535 0x69
# ATmega32 0x72
# ATmega16 0x74
# ATmega8 0x76
# ATmega169 0x78
#
# Overall avrdude defaults
#
default_parallel = "lpt1";
default_serial = "com1";
#
# PROGRAMMER DEFINITIONS
#
programmer
id = "arduino";
desc = "Arduino";
type = arduino;
;
programmer
id = "avrisp";
desc = "Atmel AVR ISP";
type = stk500;
;
programmer
id = "avrispv2";
desc = "Atmel AVR ISP V2";
type = stk500v2;
;
programmer
id = "avrispmkII";
desc = "Atmel AVR ISP mkII";
type = stk500v2;
;
programmer
id = "avrisp2";
desc = "Atmel AVR ISP mkII";
type = stk500v2;
;
programmer
id = "buspirate";
desc = "The Bus Pirate";
type = buspirate;
;
# This is supposed to be the "default" STK500 entry.
# Attempts to select the correct firmware version
# by probing for it. Better use one of the entries
# below instead.
programmer
id = "stk500";
desc = "Atmel STK500";
type = stk500generic;
;
programmer
id = "stk500v1";
desc = "Atmel STK500 Version 1.x firmware";
type = stk500;
;
programmer
id = "mib510";
desc = "Crossbow MIB510 programming board";
type = stk500;
;
programmer
id = "stk500v2";
desc = "Atmel STK500 Version 2.x firmware";
type = stk500v2;
;
programmer
id = "stk500pp";
desc = "Atmel STK500 V2 in parallel programming mode";
type = stk500pp;
;
programmer
id = "stk500hvsp";
desc = "Atmel STK500 V2 in high-voltage serial programming mode";
type = stk500hvsp;
;
programmer
id = "stk600";
desc = "Atmel STK600";
type = stk600;
;
programmer
id = "stk600pp";
desc = "Atmel STK600 in parallel programming mode";
type = stk600pp;
;
programmer
id = "stk600hvsp";
desc = "Atmel STK600 in high-voltage serial programming mode";
type = stk600hvsp;
;
programmer
id = "avr910";
desc = "Atmel Low Cost Serial Programmer";
type = avr910;
;
programmer
id = "usbasp";
desc = "USBasp, http://www.fischl.de/usbasp/";
type = usbasp;
;
programmer
id = "usbtiny";
desc = "USBtiny simple USB programmer, http://www.ladyada.net/make/usbtinyisp/";
type = usbtiny;
;
programmer
id = "butterfly";
desc = "Atmel Butterfly Development Board";
type = butterfly;
;
programmer
id = "avr109";
desc = "Atmel AppNote AVR109 Boot Loader";
type = butterfly;
;
programmer
id = "avr911";
desc = "Atmel AppNote AVR911 AVROSP";
type = butterfly;
;
programmer
id = "jtagmkI";
desc = "Atmel JTAG ICE (mkI)";
baudrate = 115200; # default is 115200
type = jtagmki;
;
# easier to type
programmer
id = "jtag1";
desc = "Atmel JTAG ICE (mkI)";
baudrate = 115200; # default is 115200
type = jtagmki;
;
# easier to type
programmer
id = "jtag1slow";
desc = "Atmel JTAG ICE (mkI)";
baudrate = 19200;
type = jtagmki;
;
programmer
id = "jtagmkII";
desc = "Atmel JTAG ICE mkII";
baudrate = 19200; # default is 19200
type = jtagmkii;
;
# easier to type
programmer
id = "jtag2slow";
desc = "Atmel JTAG ICE mkII";
baudrate = 19200; # default is 19200
type = jtagmkii;
;
# JTAG ICE mkII @ 115200 Bd
programmer
id = "jtag2fast";
desc = "Atmel JTAG ICE mkII";
baudrate = 115200;
type = jtagmkii;
;
# make the fast one the default, people will love that
programmer
id = "jtag2";
desc = "Atmel JTAG ICE mkII";
baudrate = 115200;
type = jtagmkii;
;
# JTAG ICE mkII in ISP mode
programmer
id = "jtag2isp";
desc = "Atmel JTAG ICE mkII in ISP mode";
baudrate = 115200;
type = jtagmkii_isp;
;
# JTAG ICE mkII in debugWire mode
programmer
id = "jtag2dw";
desc = "Atmel JTAG ICE mkII in debugWire mode";
baudrate = 115200;
type = jtagmkii_dw;
;
# JTAG ICE mkII in AVR32 mode
programmer
id = "jtagmkII_avr32";
desc = "Atmel JTAG ICE mkII im AVR32 mode";
baudrate = 115200;
type = jtagmkii_avr32;
;
# JTAG ICE mkII in AVR32 mode
programmer
id = "jtag2avr32";
desc = "Atmel JTAG ICE mkII im AVR32 mode";
baudrate = 115200;
type = jtagmkii_avr32;
;
# JTAG ICE mkII in PDI mode
programmer
id = "jtag2pdi";
desc = "Atmel JTAG ICE mkII PDI mode";
baudrate = 115200;
type = jtagmkii_pdi;
;
# AVR Dragon in JTAG mode
programmer
id = "dragon_jtag";
desc = "Atmel AVR Dragon in JTAG mode";
baudrate = 115200;
type = dragon_jtag;
;
# AVR Dragon in ISP mode
programmer
id = "dragon_isp";
desc = "Atmel AVR Dragon in ISP mode";
baudrate = 115200;
type = dragon_isp;
;
# AVR Dragon in PP mode
programmer
id = "dragon_pp";
desc = "Atmel AVR Dragon in PP mode";
baudrate = 115200;
type = dragon_pp;
;
# AVR Dragon in HVSP mode
programmer
id = "dragon_hvsp";
desc = "Atmel AVR Dragon in HVSP mode";
baudrate = 115200;
type = dragon_hvsp;
;
# AVR Dragon in debugWire mode
programmer
id = "dragon_dw";
desc = "Atmel AVR Dragon in debugWire mode";
baudrate = 115200;
type = dragon_dw;
;
# AVR Dragon in PDI mode
programmer
id = "dragon_pdi";
desc = "Atmel AVR Dragon in PDI mode";
baudrate = 115200;
type = dragon_pdi;
;
programmer
id = "pavr";
desc = "Jason Kyle's pAVR Serial Programmer";
type = avr910;
;
# Parallel port programmers.
programmer
id = "bsd";
desc = "Brian Dean's Programmer, http://www.bsdhome.com/avrdude/";
type = par;
vcc = 2, 3, 4, 5;
reset = 7;
sck = 8;
mosi = 9;
miso = 10;
;
programmer
id = "stk200";
desc = "STK200";
type = par;
buff = 4, 5;
sck = 6;
mosi = 7;
reset = 9;
miso = 10;
;
# The programming dongle used by the popular Ponyprog
# utility. It is almost similar to the STK200 one,
# except that there is a LED indicating that the
# programming is currently in progress.
programmer
id = "pony-stk200";
desc = "Pony Prog STK200";
type = par;
buff = 4, 5;
sck = 6;
mosi = 7;
reset = 9;
miso = 10;
pgmled = 8;
;
programmer
id = "dt006";
desc = "Dontronics DT006";
type = par;
reset = 4;
sck = 5;
mosi = 2;
miso = 11;
;
programmer
id = "bascom";
desc = "Bascom SAMPLE programming cable";
type = par;
reset = 4;
sck = 5;
mosi = 2;
miso = 11;
;
programmer
id = "alf";
desc = "Nightshade ALF-PgmAVR, http://nightshade.homeip.net/";
type = par;
vcc = 2, 3, 4, 5;
buff = 6;
reset = 7;
sck = 8;
mosi = 9;
miso = 10;
errled = 1;
rdyled = 14;
pgmled = 16;
vfyled = 17;
;
programmer
id = "sp12";
desc = "Steve Bolt's Programmer";
type = par;
vcc = 4,5,6,7,8;
reset = 3;
sck = 2;
mosi = 9;
miso = 11;
;
programmer
id = "picoweb";
desc = "Picoweb Programming Cable, http://www.picoweb.net/";
type = par;
reset = 2;
sck = 3;
mosi = 4;
miso = 13;
;
programmer
id = "abcmini";
desc = "ABCmini Board, aka Dick Smith HOTCHIP";
type = par;
reset = 4;
sck = 3;
mosi = 2;
miso = 10;
;
programmer
id = "futurlec";
desc = "Futurlec.com programming cable.";
type = par;
reset = 3;
sck = 2;
mosi = 1;
miso = 10;
;
# From the contributor of the "xil" jtag cable:
# The "vcc" definition isn't really vcc (the cable gets its power from
# the programming circuit) but is necessary to switch one of the
# buffer lines (trying to add it to the "buff" lines doesn't work).
# With this, TMS connects to RESET, TDI to MOSI, TDO to MISO and TCK
# to SCK (plus vcc/gnd of course)
programmer
id = "xil";
desc = "Xilinx JTAG cable";
type = par;
mosi = 2;
sck = 3;
reset = 4;
buff = 5;
miso = 13;
vcc = 6;
;
programmer
id = "dapa";
desc = "Direct AVR Parallel Access cable";
type = par;
vcc = 3;
reset = 16;
sck = 1;
mosi = 2;
miso = 11;
;
programmer
id = "atisp";
desc = "AT-ISP V1.1 programming cable for AVR-SDK1 from <http://micro-research.co.th/> micro-research.co.th";
type = par;
reset = ~6;
sck = ~8;
mosi = ~7;
miso = ~10;
;
programmer
id = "ere-isp-avr";
desc = "ERE ISP-AVR <http://www.ere.co.th/download/sch050713.pdf>";
type = par;
reset = ~4;
sck = 3;
mosi = 2;
miso = 10;
;
programmer
id = "blaster";
desc = "Altera ByteBlaster";
type = par;
sck = 2;
miso = 11;
reset = 3;
mosi = 8;
buff = 14;
;
# It is almost same as pony-stk200, except vcc on pin 5 to auto
# disconnect port (download on http://electropol.free.fr)
programmer
id = "frank-stk200";
desc = "Frank STK200";
type = par;
vcc = 5;
sck = 6;
mosi = 7;
reset = 9;
miso = 10;
pgmled = 8;
;
# The AT98ISP Cable is a simple parallel dongle for AT89 family.
# http://www.atmel.com/dyn/products/tools_card.asp?tool_id=2877
programmer
id = "89isp";
desc = "Atmel at89isp cable";
type = par;
reset = 17;
sck = 1;
mosi = 2;
miso = 10;
;
#
# some ultra cheap programmers use bitbanging on the
# serialport.
#
# PC - DB9 - Pins for RS232:
#
# GND 5 -- |O
# | O| <- 9 RI
# DTR 4 <- |O |
# | O| <- 8 CTS
# TXD 3 <- |O |
# | O| -> 7 RTS
# RXD 2 -> |O |
# | O| <- 6 DSR
# DCD 1 -> |O
#
# Using RXD is currently not supported.
# Using RI is not supported under Win32 but is supported under Posix.
# serial ponyprog design (dasa2 in uisp)
# reset=!txd sck=rts mosi=dtr miso=cts
programmer
id = "ponyser";
desc = "design ponyprog serial, reset=!txd sck=rts mosi=dtr miso=cts";
type = serbb;
reset = ~3;
sck = 7;
mosi = 4;
miso = 8;
;
# Same as above, different name
# reset=!txd sck=rts mosi=dtr miso=cts
programmer
id = "siprog";
desc = "Lancos SI-Prog <http://www.lancos.com/siprogsch.html>";
type = serbb;
reset = ~3;
sck = 7;
mosi = 4;
miso = 8;
;
# unknown (dasa in uisp)
# reset=rts sck=dtr mosi=txd miso=cts
programmer
id = "dasa";
desc = "serial port banging, reset=rts sck=dtr mosi=txd miso=cts";
type = serbb;
reset = 7;
sck = 4;
mosi = 3;
miso = 8;
;
# unknown (dasa3 in uisp)
# reset=!dtr sck=rts mosi=txd miso=cts
programmer
id = "dasa3";
desc = "serial port banging, reset=!dtr sck=rts mosi=txd miso=cts";
type = serbb;
reset = ~4;
sck = 7;
mosi = 3;
miso = 8;
;
# C2N232i (jumper configuration "auto")
# reset=dtr sck=!rts mosi=!txd miso=!cts
programmer
id = "c2n232i";
desc = "serial port banging, reset=dtr sck=!rts mosi=!txd miso=!cts";
type = serbb;
reset = 4;
sck = ~7;
mosi = ~3;
miso = ~8;
;
#
# PART DEFINITIONS
#
#------------------------------------------------------------
# ATtiny11
#------------------------------------------------------------
# This is an HVSP-only device.
part
id = "t11";
desc = "ATtiny11";
stk500_devcode = 0x11;
signature = 0x1e 0x90 0x04;
chip_erase_delay = 20000;
timeout = 200;
hvsp_controlstack =
0x4C, 0x0C, 0x1C, 0x2C, 0x3C, 0x64, 0x74, 0x00,
0x68, 0x78, 0x68, 0x68, 0x00, 0x00, 0x68, 0x78,
0x78, 0x00, 0x6D, 0x0C, 0x80, 0x40, 0x20, 0x10,
0x11, 0x08, 0x04, 0x02, 0x03, 0x08, 0x04, 0x00;
hventerstabdelay = 100;
progmodedelay = 0;
hvspcmdexedelay = 0;
synchcycles = 6;
latchcycles = 1;
togglevtg = 1;
poweroffdelay = 25;
resetdelayms = 0;
resetdelayus = 50;
hvleavestabdelay = 100;
resetdelay = 25;
chiperasepolltimeout = 40;
chiperasetime = 0;
programfusepolltimeout = 25;
programlockpolltimeout = 25;
memory "eeprom"
size = 64;
blocksize = 64;
readsize = 256;
delay = 5;
;
memory "flash"
size = 1024;
blocksize = 128;
readsize = 256;
delay = 3;
;
memory "signature"
size = 3;
;
memory "lock"
size = 1;
;
memory "calibration"
size = 1;
;
memory "fuse"
size = 1;
;
;
#------------------------------------------------------------
# ATtiny12
#------------------------------------------------------------
part
id = "t12";
desc = "ATtiny12";
stk500_devcode = 0x12;
avr910_devcode = 0x55;
signature = 0x1e 0x90 0x05;
chip_erase_delay = 20000;
pgm_enable = "1 0 1 0 1 1 0 0 0 1 0 1 0 0 1 1",
"x x x x x x x x x x x x x x x x";
chip_erase = "1 0 1 0 1 1 0 0 1 0 0 x x x x x",
"x x x x x x x x x x x x x x x x";
timeout = 200;
stabdelay = 100;
cmdexedelay = 25;
synchloops = 32;
bytedelay = 0;
pollindex = 3;
pollvalue = 0x53;
predelay = 1;
postdelay = 1;
pollmethod = 0;
hvsp_controlstack =
0x4C, 0x0C, 0x1C, 0x2C, 0x3C, 0x64, 0x74, 0x00,
0x68, 0x78, 0x68, 0x68, 0x00, 0x00, 0x68, 0x78,
0x78, 0x00, 0x6D, 0x0C, 0x80, 0x40, 0x20, 0x10,
0x11, 0x08, 0x04, 0x02, 0x03, 0x08, 0x04, 0x00;
hventerstabdelay = 100;
hvspcmdexedelay = 0;
synchcycles = 6;
latchcycles = 1;
togglevtg = 1;
poweroffdelay = 25;
resetdelayms = 0;
resetdelayus = 50;
hvleavestabdelay = 100;
resetdelay = 25;
chiperasepolltimeout = 40;
chiperasetime = 0;