* stk500v2.c: For the "flash" pseudo-memory of Xmega devices,
distinguish addresses between "application" and "boot" area.
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supported error
* stk500v2.c: Handle all Xmega memory sections (except
"prodsig" which is not documented in AVR079)
* fileio.c: Treat the "boot", "application", and "apptable"
regions (which are actually subregions of "flash") all as
being flash, i.e. suppress trailing 0xFF bytes when reading
them
* avr.c: (Dito.)
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will update only the table in pgm_type.c.
* config_gram.y, lexer.l: removed programmer type keywords,
use now locate_programmer_type() function
* pgm_type.[ch]: added new files for table of programmer types
* main.c: allow list of programmer types by -c ?type
* avrdude.conf.in: changed all type keywords to quoted strings
* doc/avrdude.texi: changed description of type definition, list
of valid types is now included from generated file
* doc/Makefile.am: generate list of programmer types for doc
* all programmers [hc]: add xxx_desc string for description of programmer
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* avr910.c:625 (error) Possible null pointer dereference: cmd - otherwise it is redundant to check if cmd is null at line 624
* avr910.c:626 (error) Possible null pointer dereference: cmd - otherwise it is redundant to check if cmd is null at line 624
* avr910.c:168 (information) The scope of the variable 'devtype_1st' can be reduced
* avr910.c:169 (information) The scope of the variable 'dev_supported' can be reduced
* avrftdi.c:647 (error) Using sizeof for array given as function argument returns the size of pointer.
* stk500v2.c:3347 (error) Memory leak: b
* stk500v2.c:3452 (error) Memory leak: b
* usbasp.c:554 (error) Using sizeof for array given as function argument returns the size of pointer.
* usbasp.c:485 (information) The scope of the variable 'dly' can be reduced
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Fix regression in the AVRISPmkII/STK600 TPI handling introduced
by the USBasp's TPI implementation which added a pagesize even for
the minor memory regions of TPI devices. Also fix wrong offset
introduced by the memory tagging patch.
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Each memory image byte is now tagged as it's being read from a file.
Only bytes read from a file will be written or verified (modulo page
granularity requirements).
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* stk500v2.c (stk500v2_initialize): For the AT90S1200, release
/RESET for a moment before reinitializing, as this is required by
its programming protocol.
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* jtagII.c (jtagmkII_getsync): Instead of exit()ing from
deep within the tree when detecting the "need debugWIRE"
situation, properly pass this up as a return code.
* jtagII_private.h (JTAGII_GETSYNC_FAIL_GRACEFUL): New constant.
* stk500v2.c (stk500v2_jtagmkII_open): Don't tell anything
anymore when receiving a JTAGII_GETSYNC_FAIL_GRACEFUL from
jtagmkII_getsync(); silently give up (all necessary has been
said already).
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on the AVRISP-MKII
* stk500v2.c (stk500v2_program_enable): Rewrite the logic to
explain ISP activation failures.
* stk500v2_private.h: Fix the various STATUS_* constants;
AVR069 and AVR079 disagreed in their values, even though they
are apparently implementing the same logic behind.
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* stk500v2.c (stk500v2_open): use same condition to refer to the AVR
Doper support as used in the definition in ser_avrdoper.c.
(Thanks to Christian Starkjohann for the analysis of the problem.)
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Add ATtiny4/5/9/10 to avrdude.conf.in.
Document TPI and new device support.
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unallocated memory (in the atexit handler) in case of bailing out.
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* avrdude.conf.in: Correctly declare EEPROM page sizes for
all Xmega devices (0x20 instead of 0x100).
* avr.c: If a memory region has a page size declared, try
using the paged IO routines regardless of the target memory
name. Xmega EEPROM requires to be written in paged mode.
Correctly use a long (rather than unsigned long) variable to
evaluate the success status of the paged mode write attempt.
* stk500v2.c: Don't apply TIF space offsets twice (bug #27995:
AVRDUDE 5.8svn fails to program and read XMEGA); use
stk500v2_loadaddr() prior to paged mode (EEPROM and flash) writes,
otherwise programming of flash areas will fail; while being there,
check the return value of stk500v2_loadaddr() everywhere; use the
correct write/erase mode bits (same as AVR Studio does).
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* stk500v2.c: Fix the "bad response to GO command:
RSP_ILLEGAL_EMULATOR_MODE" message. jtagmkII_close()
has been called with the wrong pgm->cookie. Wrap it
inside stk500v2_jtagmkII_close(), adjusting the cookie
data appropriately.
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* stk500v2.c (stk500v2_dragon_isp_initpgm): Use
stk500v2_jtagmkII_setup/stk500v2_jtagmkII_rather than their
jtagII counterparts, to get the private data properly
initialized.
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out of the chaining of both, the stk500v2 and the jtagmkII
programmers for some programming hardware (JTAG ICE mkII and AVR
Dragon running in ISP, HVSP or PP mode), where both programmers
have to maintain their private programmer data.
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* avrdude.conf.in (ATxmega256A3): new device.
* stk500v2 (stk500v2_initialize): Enable the AVRISPmkII as a
PDI-capable device for ATxmega parts.
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* avr.h: Remove stray semicolon.
* configure.ac: Add check for predefined types uint_t and ulong_t.
* confwin.c: Include "avrdude.h" on top to avoid empty translation
unit warning.
* ppwin.c: (Ditto.)
* ser_win32.c: (Ditto.)
* serbb_win32.c: (Ditto.)
* jtagmkII.c (jtagmkII_recv): remove unreachable "return".
* stk500.c (stk500_initialize): (Ditto.)
* par.c: Test for both, __sun__ and __sun to see whether we are
being compiled on Solaris.
* ppi.c: (Ditto.)
* stk500v2.c: Implement the DEBUG and DEBUGRECV macros in a way
that is compatible with the ISO C99 standard.
* usbtiny.c: Only typedef uint_t and ulong_t if they have not
been found already by the autoconf checks.
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* stk500v2.c (stk500v2_chip_erase,stk500hv_chip_erase): Return
the expected 0 for success rather than a protocol-dependant
number.
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mkII (or AVR Dragon) in ISP mode. The wrong set of per-programmer
private data had been allocated (stk500v2 vs. jtagmkII) which was too
small to hold the actual data.
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of the number of bytes to be written which caused a malloc chunk
corruption.
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PDI mode of the STK600 is supported. Single-byte EEPROM
(and flash) updates do not work yet.
* avr.c: "boot" memory is a candidate memory region for paged
operations, besides "flash" and "eeprom".
* avrdude.conf.in: add ATxmega128A1 and ATxmega128A1revD
* avrpart.h: add the AVRPART_HAS_PDI flag (used to distinguish
ATxmega parts from classic AVRs), the nvm_base part field, and
the offset field for a memory region.
* config_gram.y: add "has_pdi", "nvm_base", and "offset"
* lexer.l: (Ditto.)
* main.c: disable auto_erase for ATxmega parts
* stk500v2.c: implement the XPROG functionality, and divert to
this for ATxmega parts
* avrdude.1: Document the changes.
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"classic" AVRs (AT90, ATtiny, ATmega) in both,
ISP and high-voltage programming modes.
* Makefile.am: Add -lm.
* avrdude.conf.in: Add stk600, stk600pp, and stk600hvsp.
* config_gram.y: Add support for the stk600* keywords.
* lexer.l: (Ditto.)
* pgm.h: Add the "chan" parameter to set_varef().
* stk500.c: (Ditto.)
* serial.h: Add USB endpoint support to struct filedescriptor.
* stk500v2.c: Implement the meat of the STK600 support.
* stk500v2.h: Add new prototypes for stk600*() programmers.
* stk500v2_private.h: Add new constants used in the STK600.
* term.c: Add AREF channel support.
* usb_libusb.c: Automatically determine the correct write
endpoint ID, the STK600 uses 0x83 while all other tools use
0x82. Propagate the EP to use through struct filedescriptor.
* usbdevs.h: Add the STK600 USB product ID.
* tools/get-stk600-cards.xsl: XSL transformation for
targetboards.xml to obtain the list of socket and routing
card IDs, to be used in stk500v2.c (for displaying the
names).
* tools/get-stk600-devices.xsl: XSL transformation for
targetboards.xml to obtain the table of socket/routing cards
and their respective AVR device support for doc/avrdude.texi.
* avrdude.1: Document all the STK600 stuff.
* doc/avrdude.texi: Ditto. Added a new chapter for
Programmer Specific Information.
Thanks to Eirik Rasmussen from Atmel Norway for his support in
getting this code running within that short amount of time!
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definition. If present, call the setup hook immediately after finding
the respective programmer object, and schedule the teardown hook to be
called upon exit. This allows the programmer implementation to
dynamically allocate private programmer data.
avr910.c, butterfly.c, jtagmkI.c, jtagmkII.c, stk500v2.c, usbasp.c,
usbtiny.c: Convert static programmer data into dynamically allocated
data.
git-svn-id: svn://svn.savannah.nongnu.org/avrdude/trunk/avrdude@764 81a1dc3b-b13d-400b-aceb-764788c761c2
own (duplicate) copy of it.
other files: Constify char pointers.
git-svn-id: svn://svn.savannah.nongnu.org/avrdude/trunk/avrdude@725 81a1dc3b-b13d-400b-aceb-764788c761c2
- Make all internal functions "static".
- Make sure each module's header and implementation file match.
- Remove all library-like functionality from main.c, so only
the actual frontend remains in main.c.
- Add C++ brackets to all header files.
That effectively leaves the various module C files as something like
an "avrdude library", with main.c being the currently only frontend
program for that library. In theory, it should be possible to write
different frontends using the same library backend functions though.
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declarations in each file by a central header file "avrdude.h".
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patch #5507: Support for AVR-Doper USB programmer in HID mode
* configure.ac: Add hooks to detect the Win32 HID library,
as well as the existence of <ddk/hidsdi.h>.
* Makefile.am: Add new files.
* my_ddk_hidsdi.h: (New file.)
* ser_avrdoper.c: (New file.)
* serial.h: Add declaration for avrdoper_serdev.
* stk500v2.c: Add hook to divert to the AVR Doper code.
* avrdude.1: Document the AVR Doper support.
* doc/avrdude.texi: (Ditto.)
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- declare a dummy "struct timezone" for some Win32 systems (MinGW)
- fix a few printf() argument types
- get rid off the prevailing "all filedescriptors are of type int"
attitude
The last item required a large sweep across the code, in order to
replace all "int fd"s by "struct filedescriptor *fd"s, and pass
pointers (as we cannot pass a union directly). In return, the
code is now supposed to be fully 64-bit safe, rather than relying
on a 64-bit pointer being converted to a (32-bit) int and back
to a pointer as we did previously.
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avr_read_byte_default() and avr_write_byte_default (resp.) by directly
calling the latter functions from within all programmers that don't
implement their own read_byte()/write_byte() methods. In turn, make the
read_byte() and write_byte() methods mandatory, and the cmd() method
(direct ISP command) optional instead (it's effectively mandatory for
any programmer using avr_read_byte_default()/avr_write_byte_default()
though). Remove all the pointless cmd() method stubs from those programmers
that don't need it.
Eliminate avr_read_byte() as it was now completely identical to
pgm->read_byte().
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still call the close method so we sign off correctly from the ICE:
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always display the minor number as two digits. Examine the response
to the sign-on command to see which programmer hardware we are talking
to, and then restrict the STK500 topcard display to devices detected
as STK500.
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