Udate the avrdude.conf introductory documentation
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@ -35,7 +35,7 @@
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# pgmled = <num> ; # pin number
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# pgmled = <num> ; # pin number
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# vfyled = <num> ; # pin number
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# vfyled = <num> ; # pin number
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# usbvid = <hexnum> ; # USB VID (Vendor ID)
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# usbvid = <hexnum> ; # USB VID (Vendor ID)
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# usbpid = <hexnum> [, <hexnum> ...] # USB PID (Product ID) (1)
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# usbpid = <hexnum> [, <hexnum> ...] ; # USB PID (Product ID) (1)
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# usbdev = <interface> ; # USB interface or other device info
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# usbdev = <interface> ; # USB interface or other device info
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# usbvendor = <vendorname> ; # USB Vendor Name
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# usbvendor = <vendorname> ; # USB Vendor Name
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# usbproduct = <productname> ; # USB Product Name
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# usbproduct = <productname> ; # USB Product Name
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@ -51,23 +51,25 @@
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# ;
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# ;
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#
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#
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# part
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# part
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# id = <id> ; # quoted string
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# desc = <description> ; # quoted string
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# desc = <description> ; # quoted string
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# id = <id> ; # quoted string
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# family_id = <id> ; # quoted string, eg, "megaAVR" or "tinyAVR"
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# hvupdi_variant = <num> ; # numeric -1 (n/a) or 0..2
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# devicecode = <num> ; # deprecated, use stk500_devcode
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# stk500_devcode = <num> ; # numeric
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# avr910_devcode = <num> ; # numeric
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# has_jtag = <yes/no> ; # part has JTAG i/f
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# has_jtag = <yes/no> ; # part has JTAG i/f
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# has_debugwire = <yes/no> ; # part has debugWire i/f
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# has_debugwire = <yes/no> ; # part has debugWire i/f
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# has_pdi = <yes/no> ; # part has PDI i/f
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# has_pdi = <yes/no> ; # part has PDI i/f
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# has_updi = <yes/no> ; # part has UPDI i/f
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# has_updi = <yes/no> ; # part has UPDI i/f
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# has_tpi = <yes/no> ; # part has TPI i/f
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# has_tpi = <yes/no> ; # part has TPI i/f
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# devicecode = <num> ; # deprecated, use stk500_devcode
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# is_at90s1200 = <yes/no> ; # AT90S1200 part
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# stk500_devcode = <num> ; # numeric
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# is_avr32 = <yes/no> ; # AVR32 part
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# avr910_devcode = <num> ; # numeric
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# signature = <num> <num> <num> ; # signature bytes
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# signature = <num> <num> <num> ; # signature bytes
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# usbpid = <num> ; # DFU USB PID
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# usbpid = <num> ; # DFU USB PID
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# chip_erase_delay = <num> ; # micro-seconds
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# chip_erase_delay = <num> ; # micro-seconds
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# reset = dedicated | io ;
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# reset = dedicated | io ;
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# retry_pulse = reset | sck ;
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# retry_pulse = reset | sck ;
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# pgm_enable = <instruction format> ;
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# chip_erase = <instruction format> ;
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# chip_erase_delay = <num> ; # chip erase delay (us)
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# chip_erase_delay = <num> ; # chip erase delay (us)
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# # STK500 parameters (parallel programming IO lines)
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# # STK500 parameters (parallel programming IO lines)
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# pagel = <num> ; # pin name in hex, i.e., 0xD7
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# pagel = <num> ; # pin name in hex, i.e., 0xD7
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@ -85,14 +87,12 @@
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# predelay = <num> ;
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# predelay = <num> ;
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# postdelay = <num> ;
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# postdelay = <num> ;
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# pollmethod = <num> ;
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# pollmethod = <num> ;
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# mode = <num> ;
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# delay = <num> ;
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# blocksize = <num> ;
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# readsize = <num> ;
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# hvspcmdexedelay = <num> ;
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# hvspcmdexedelay = <num> ;
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# # STK500v2 HV programming parameters, from XML
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# # STK500v2 HV programming parameters, from XML
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# pp_controlstack = <num>, <num>, ... ; # PP only
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# pp_controlstack = <num>, <num>, ... ; # PP only
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# hvsp_controlstack = <num>, <num>, ... ; # HVSP only
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# hvsp_controlstack = <num>, <num>, ... ; # HVSP only
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# flash_instr = <num>, <num>, <num> ;
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# eeprom_instr = <num>, <num>, ... ;
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# hventerstabdelay = <num> ;
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# hventerstabdelay = <num> ;
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# progmodedelay = <num> ; # PP only
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# progmodedelay = <num> ; # PP only
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# latchcycles = <num> ;
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# latchcycles = <num> ;
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@ -113,24 +113,33 @@
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# # JTAG ICE mkII parameters, also from XML files
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# # JTAG ICE mkII parameters, also from XML files
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# allowfullpagebitstream = <yes/no> ;
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# allowfullpagebitstream = <yes/no> ;
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# enablepageprogramming = <yes/no> ;
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# enablepageprogramming = <yes/no> ;
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# idr = <num> ; # IO addr of IDR (OCD) reg.
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# idr = <num> ; # IO addr of IDR (OCD) reg
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# rampz = <num> ; # IO addr of RAMPZ reg.
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# rampz = <num> ; # IO addr of RAMPZ reg
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# spmcr = <num> ; # mem addr of SPMC[S]R reg.
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# spmcr = <num> ; # mem addr of SPMC[S]R reg
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# eecr = <num> ; # mem addr of EECR reg.
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# eecr = <num> ; # mem addr of EECR reg only when != 0x3c
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# # (only when != 0x3c)
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# mcu_base = <num> ;
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# is_at90s1200 = <yes/no> ; # AT90S1200 part
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# nvm_base = <num> ;
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# is_avr32 = <yes/no> ; # AVR32 part
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# ocd_base = <num> ;
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# ocdrev = <num> ;
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# pgm_enable = <instruction format> ;
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# chip_erase = <instruction format> ;
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#
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#
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# memory <memtype>
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# memory <memtype>
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# paged = <yes/no> ; # yes / no
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# paged = <yes/no> ; # yes/no (flash only, do not use for EEPROM)
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# offset = <num> ; # memory offset
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# size = <num> ; # bytes
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# size = <num> ; # bytes
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# page_size = <num> ; # bytes
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# page_size = <num> ; # bytes
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# num_pages = <num> ; # numeric
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# num_pages = <num> ; # numeric
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# min_write_delay = <num> ; # micro-seconds
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# min_write_delay = <num> ; # micro-seconds
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# max_write_delay = <num> ; # micro-seconds
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# max_write_delay = <num> ; # micro-seconds
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# readback_p1 = <num> ; # byte value
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# readback = <num> <num> ; # pair of byte values
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# readback_p2 = <num> ; # byte value
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# readback_p1 = <num> ; # byte value (first component)
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# readback_p2 = <num> ; # byte value (second component)
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# pwroff_after_write = <yes/no> ; # yes/no
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# pwroff_after_write = <yes/no> ; # yes/no
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# mode = <num> ; # STK500 v2 file parameter, to be taken from Atmel's XML files
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# delay = <num> ; # "
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# blocksize = <num> ; # "
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# readsize = <num> ; # "
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# read = <instruction format> ;
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# read = <instruction format> ;
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# write = <instruction format> ;
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# write = <instruction format> ;
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# read_lo = <instruction format> ;
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# read_lo = <instruction format> ;
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@ -144,7 +153,8 @@
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# ;
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# ;
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#
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#
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# If any of the above parameters are not specified, the default value
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# If any of the above parameters are not specified, the default value
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# of 0 is used for numerics or the empty string ("") for string
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# of 0 is used for numerics (except for hvupdi_variant and ocdrev,
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# where the default value is -1) or the empty string ("") for string
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# values. If a required parameter is left empty, AVRDUDE will
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# values. If a required parameter is left empty, AVRDUDE will
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# complain.
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# complain.
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#
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#
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@ -152,7 +162,12 @@
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# using the following syntax. In this case specified integer and
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# using the following syntax. In this case specified integer and
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# string values override parameter values from the parent part. New
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# string values override parameter values from the parent part. New
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# memory definitions are added to the definitions inherited from the
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# memory definitions are added to the definitions inherited from the
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# parent.
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# parent. If, however, a new memory definition refers to an existing
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# one of the same name for that part then, from v7.1, the existing
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# memory definition is extended, and components overwritten with new
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# values. Assigning NULL removes an inherited SPI instruction format,
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# memory definition, control stack, eeprom or flash instruction, eg,
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# as in memory "efuse" = NULL;
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#
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#
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# part parent <id> # quoted string
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# part parent <id> # quoted string
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# id = <id> ; # quoted string
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# id = <id> ; # quoted string
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@ -181,7 +196,7 @@
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#
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#
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# INSTRUCTION FORMATS
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# INSTRUCTION FORMATS
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#
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#
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# Instruction formats are specified as a comma seperated list of
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# Instruction formats are specified as a comma separated list of
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# string values containing information (bit specifiers) about each
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# string values containing information (bit specifiers) about each
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# of the 32 bits of the instruction. Bit specifiers may be one of
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# of the 32 bits of the instruction. Bit specifiers may be one of
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# the following formats:
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# the following formats:
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@ -190,10 +205,11 @@
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#
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#
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# '0' = the bit is always clear on input as well as output
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# '0' = the bit is always clear on input as well as output
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#
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#
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# 'x' = the bit is ignored on input and output
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# 'x' = the bit is ignored on input and output and set as 0
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#
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#
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# 'a' = the bit is an address bit, the bit-number matches this bit
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# 'a' = the bit is an address bit; from v 7.1 the bit-number
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# specifier's position within the current instruction byte
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# is set to match the right bit position for the
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# instruction to "just work"
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#
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#
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# 'aN' = the bit is the Nth address bit, bit-number = N, i.e., a12
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# 'aN' = the bit is the Nth address bit, bit-number = N, i.e., a12
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# is address bit 12 on input, a0 is address bit 0.
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# is address bit 12 on input, a0 is address bit 0.
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#
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#
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# Each instruction must be composed of 32 bit specifiers. The
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# Each instruction must be composed of 32 bit specifiers. The
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# instruction specification closely follows the instruction data
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# instruction specification closely follows the instruction data
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# provided in Atmel's data sheets for their parts.
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# provided in Atmel's data sheets for their parts. Note that flash
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# addresses always refer to *word* addresses whilst all other
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# memory types specify *byte* addresses.
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#
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#
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# See below for some examples.
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# Example for signature read on the ATmega328P:
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# read = "0 0 1 1 0 0 0 0", "0 0 0 x x x x x",
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# "x x x x x x a1 a0", "o o o o o o o o";
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#
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# As the address bit numbers in the SPI opcodes are highly
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# systematic, they don't really need to be specified. A compact
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# version of the format specification neither uses bit-numbers for
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# address lines nor spaces. If such a string is longer than 7
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# characters, then the characters 0, 1, x, a, i and o will be
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# recognised as the corresponding bit, whilst any of the characters
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# ., -, _ or / can act as arbitrary visual separators, which are
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# ignored. Examples:
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#
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# loadpage_lo = "0100.0000--000x.xxxx--xxaa.aaaa--iiii.iiii";
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#
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# loadpage_lo = "0100.0000", "000x.xxxx", "xxaa.aaaa", "iiii.iiii";
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#
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#
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#
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#
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# The following are STK500 part device codes to use for the
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# The following are STK500 part device codes to use for the
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