switch. The specified baud rate will override the default serial port
baud rate for a particular programmer.
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return an error code when building on MacOS X. This commit makes
AVRDUDE compile and run fine on my PowerMac G5 running MacOS X. In
theory it would be possible to support parallel ports on the Mac using
a PCI multi-port card and/or USB<->Parallel converters. If/when such
support is added we can flesh out these functions as needed, but for
now, only serial port programmers are currently supported.
Note that I tested avrdude on the G5/MacOS X with an STK500 programmer
and used a Keyspan model USA-19HS USB<->RS232 adapter device which
simply shows up in /dev as a POSIX serial port. None of the serial
port handling needed any changes.
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* The second poll value for flash is corrected for all devices
* Delays are corrected for all devices, I have a datasheet for on my
harddisk
* mega161 is added
* avr910_devcode added for all devices except mega64, mega162,
mega169 and mega8535. Numbers are taken from uisp-source.
Contributed by Jan-Hinnerk Reichert <jan-hinnerk_reichert@hamburg.de>
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Contributed by Erik Christiansen <erik@dd.nec.com.au>
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eeprom, efuse, hfuse, and lfuse on a single command line. Much of the
output had to be ommitted from the example since the texi commands for
formatting the example don't allow page breaks within the example. If
someone knows a better way to format it, please feel free to do so.
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stk500 initialization routine. However, allow one to use the -F
option to ignore a bad return code from that function. I think this
still allows what Joerg intended, i.e., providing a way to still get
into terminal mode so that one can recover from setting bad STK500
values which may keep the chip from entering programming mode.
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anywhere specified to be written by any of the -U requests.
To remain backward compatible with previous versions, disable this
feature if any of the old-style memory specification operations are
specified (-i, -o).
Implement the -D option to explicitly disable the auto erase default.
Deprecate the old-style memory specification options (-f, -i, -I, -m,
and -o) in favor of the new -U option which allows one to operate on
multiple memories on a single command line.
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memory read or written (or up to where continuous 0xff begins in the
case of flash memory). An 'int' should be plenty big enough for that.
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Add the supported programmer list to the manual.
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argument is a 4 field string (fields seperated by colons) which
indicate what memory type to operate on, what operation to perform is
(read, write, or verify), the filename to read from, write to, or
verify against, and an optional file format field. Multple -U options
can be specified to operate on more than one memory at a time with a
single invocation. For example, to update both the flash and the
eeprom at the same time one can now specify the following:
avrdude -p -e -U flash:w:main.hex:i -U eeprom:w:eeprom.hex:i
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reported that this patch fixes verify errors on the Windows platform
that are apparently timing related. Submitted by: Alex Shepherd
<ashepherd@wave.co.nz>, who indicates that this patch was based on
code from the UISP project.
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Submitted by Larry Barello <larryba@barello.net>.
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Extend ATmega8 calibration memory to support all 4 calibration bytes.
Savannah bug #3835. Submitted by Francisco T. A. Silva
<ftas@geodigitus.com.br>.
Add a few AVR910 programmer device codes. Savannah bug #3569 - sorry
I can't tell who submitted this to give proper credit.
Add support for the ATtiny12. Submitted by Pontifex <pontifex@isys.ca>
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resides above the last non-0xff data value in the address space. Only
do this for flash memory since writing a 0xff to flash is a no-op.
This has the affect of creating smaller output files when dumping
memory contents from flash if the program in flash does not consume
the whole memory space. It also results in shorter programming times
when avrdude is asked to load a file into flash that has lots of 0xff
filled data past the last non-0xff data value.
I think this is basically where Alexey was going with his s-record
routine, but this should have a similar affect for all the I/O
routines. The main difference is that Alexey's also optimized 0xff
from the beginning of the address space and was not limited to flash.
I think that these optimizations should be limited to the flash since
it is currently the only memory that treats 0xff as special.
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output routines (don't optimize away 0xff data before and after non
0xff data). Also, fix a bug where the data contents sometimes weren't
written out completely.
Initial bug reported by Tom Harris <TomH@optiscan.com>. Fixes
provided by Alexey V.Levdikov <tsar@kemford.com>.
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main.c : print out '<stdin>' and '<stdout>' instead of '-' when using
stdio for I/O.
Thanks to Francisco T. A. Silva <ftas@geodigitus.com.br> for catching
this, and the error fixed by the previous commit as well.
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file format type to 'immediate mode' where the filename is assumed to
be the memory data itself.
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specify byte values on the command line instead of via a file. This
can be good for specifying fuse bytes and eliminates the need to
create single-byte files or using interactive terminal mode for these
single-byte memories. Requested by several folks on the mailing list.
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Daniel Williamson <dannyw@maconmgt.co.uk>
and
Ruwan Jayanetti <rjayanetti@sri.crossvue.com>
The resulting part definition used was actually somewhat of a merge of
the two submitted definitions.
Thanks for the contributions!
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name when checking to see if we should default to the default_serial
port instead of the default_parallel port. This has us do the right
thing for the new 'avrisp' programmer.
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command be 128 bytes. This cuts 6 seconds off the programming time
for uploading a 6K file into an AT90S8515 vs the time loading the same
file using a 16 byte buffer, and the response feedback is still good.
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all on non-paged-memory parts. The problem was that the page size was
defaulting to 256 (maximum for the stk500), but the timeout for a
response from the stk500 before declaring it dead was only 0.5
seconds. But it takes much longer than 0.5 seconds to program 256
bytes, so we just weren't waiting long enough.
Fix this in two ways - increase the timeout to 5 seconds, and decrease
the page size to 16 bytes for non-paged parts. The programming time
for 16 bytes is short enough to provide the user with some feedback
that something is happening.
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itself is paged as it doesn't appear to work otherwise.
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causes some shift-reduce conflicts, but I think they are OK.
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haven't been specified in the config file for the part.
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Jason Kyle for the needed protocol information.
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$HOME/.avrduderc. Entries from .avrduderc take precedence over those
from the system wide config file in ${PREFIX}/etc/avrdude.conf.
Track and display the config file name and line number when we print
out the available parts and programmers. This is useful in case
someone has overridden a definition in their .avrduderc file and is
wondering why the definition in the system wide config file is not
being used.
Remove the default programmer 'stk500' from the distributed config
file.
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one of the programmers to be tagged "default" within its definition.
Also, axe the notion of a compiled-in default programmer. It is
kind've pointless now that nearly all configuration comes from the
config file, thus, avrdude is not very useful without the config file,
and thus, having a programmer compiled-in offers little or no benefit.
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This adds 'default_parallel' and 'default_serial' keywords to the
grammar, which take quoted string arguments.
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programming mode. Use 'retry_pulse' in the per-part specification
that can currently take values of 'reset' or 'sck', the default being
'sck' which preserves the previous behaviour. Some newer parts
indicate that /RESET should be pulsed, while older parts say to pulse
SCK.
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the last commit. Those were just there for testing.
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say whether parts support these programming modes or not. Possible
values for 'serial' are 'yes' or 'no'. Possible values for 'parallel'
are 'yes', 'no', or 'pseudo'. Add a bit mask of flags to the AVRPART
structure to capture these settings. Use these within
stk500_initialize() to set the device parameters correctly.
Defaults for 'serial' and 'parallel' are 'yes' unless specified
otherwise.
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PAGEL and BS2 signals and the disposition of the reset pin
('dedicated' or 'io').
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its own file par.c, leaving low level parallel port accessor routines
in ppi.c to help with portability. Change the programmer type to
'PAR' now instead of 'PPI' - 'PAR' represents the parallel port
programmer type.
Be more liberal with 'static' function declarations within the
programmer implimentation files - these functions should never be
called directly - always use the programmer function references.
There are still a few places in 'main.c' that directly reference the
parallel programmer explicitly (par_getpinmask). These should be
fixed somehow.
Axe a few unused functions.
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existed on a private system. Commits made by 'bsd' on the old system
were made by Brian Dean (bdean on the current system).
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from stk500.h - don't know how those got in there (pointed out by Ted
Roth).
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This was intended to be used for identifying code in the field for
incoming bug reports, but I've never really found it all that useful.
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This change represents a name change only. There is currently an
effort to port AVRPROG to other platforms including Linux and Windows.
Since Atmel's programmer binary that's included within their AVR
Studio software is named AVRPROG.EXE on the Windows OS, there is the
chance for confusion if we keep calling this program AVRPROG as well.
Up until now the name hasn't really been a problem since there was no
chance to confuse 'avrprog' on Unix with Atmel's AVRPROG because
Atmel's tools only run on Windows. But with the Unix 'avrprog'
possibly being ported to Windows, I felt a name change was the best
way to avoid problems.
So - from this point forward, my FreeBSD Unix program formerly known
as AVRPROG will subsequently be known as AVRDUDE (AVR Downloader/UploaDEr).
This change also represents a time when the AVRDUDE sources move from
my own private repository to a public repository. This will give
other developers a chance to port AVRDUDE to other platforms and
extend its functionality to support additional programming hardware,
etc.
So goodbye AVRPROG, welcome AVRDUDE!
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"non-paged" parts. Take advantage of that and use the faster internal
routines of the STK500 for those parts as well.
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supports paged reads and writes. This greatly decreases the
program/verify time from about 4.5 minutes down to about 10 seconds in
a 12K program size test case.
Print out the hardware and firmware version for the STK500 if verbose
is enabled.
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that programmers other than the direct parallel port connection can be
supported.
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