Submitted by John Voltz: add AVR053 oscillator calibration.
* main.c: Add the -O option. * pgm.c: Add the hook for the perform_osccal() method. * pgm.h: (Ditto.) * stk500v2.c: Implement perform_osccal(). * avrdude.1: Document the -O option. * doc/avrdude.texi: (Ditto.) Partially closes bug #17487: AVR RC oscillator calibration routine not supported (feature request) git-svn-id: svn://svn.savannah.nongnu.org/avrdude/trunk/avrdude@671 81a1dc3b-b13d-400b-aceb-764788c761c2
This commit is contained in:
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57028107ff
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12
ChangeLog
12
ChangeLog
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@ -1,3 +1,15 @@
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2006-10-09 Joerg Wunsch <j@uriah.heep.sax.de>
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Submitted by John Voltz: add AVR053 oscillator calibration.
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* main.c: Add the -O option.
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* pgm.c: Add the hook for the perform_osccal() method.
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* pgm.h: (Ditto.)
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* stk500v2.c: Implement perform_osccal().
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* avrdude.1: Document the -O option.
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* doc/avrdude.texi: (Ditto.)
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Partially closes bug #17487: AVR RC oscillator calibration
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routine not supported (feature request)
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2006-10-09 Joerg Wunsch <j@uriah.heep.sax.de>
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Submitted by freckle@sf.net:
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@ -19,7 +19,7 @@
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.\"
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.\" $Id$
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.\"
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.Dd DATE September 10, 2006
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.Dd DATE October 9, 2006
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.Os
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.Dt AVRDUDE 1
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.Sh NAME
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@ -40,6 +40,7 @@
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.Op Fl F
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.Op Fl i Ar delay
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.Op Fl n
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.Op Fl O
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.Op Fl P Ar port
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.Op Fl q
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.Op Fl s
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@ -360,6 +361,12 @@ slow machines.
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No-write - disables actually writing data to the MCU (useful for debugging
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.Nm avrdude
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).
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.It Fl O
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Perform a RC oscillator run-time calibration according to Atmel
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application note AVR053.
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This is only supported on the STK500v2, AVRISP mkII, and JTAG ICE mkII
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hardware.
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Note that the result will be stored in the EEPROM cell at address 0.
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.It Fl P Ar port
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Use
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.Ar port
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@ -505,6 +505,13 @@ slow machines.
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No-write - disables actually writing data to the MCU (useful for
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debugging AVRDUDE).
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@item -O
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Perform a RC oscillator run-time calibration according to Atmel
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application note AVR053.
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This is only supported on the STK500v2, AVRISP mkII, and JTAG ICE mkII
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hardware.
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Note that the result will be stored in the EEPROM cell at address 0.
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@item -P @var{port}
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Use port to identify the device to which the programmer is attached.
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Normally, the default parallel port is used, but if the programmer type
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24
main.c
24
main.c
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@ -110,6 +110,7 @@ void usage(void)
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" -P <port> Specify connection port.\n"
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" -F Override invalid signature check.\n"
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" -e Perform a chip erase.\n"
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" -O Perform RC oscillator calibration (see AVR053). \n"
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" -U <memtype>:r|w|v:<filename>[:format]\n"
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" Memory operation specification.\n"
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" Multiple -U options are allowed, each request\n"
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@ -682,6 +683,7 @@ int main(int argc, char * argv [])
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/* options / operating mode variables */
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int erase; /* 1=erase chip, 0=don't */
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int calibrate; /* 1=calibrate RC oscillator, 0=don't */
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int auto_erase; /* 0=never erase unless explicity told to do
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so, 1=erase if we are going to program flash */
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char * port; /* device port (/dev/xxx) */
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@ -739,6 +741,7 @@ int main(int argc, char * argv [])
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partdesc = NULL;
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port = default_parallel;
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erase = 0;
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calibrate = 0;
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auto_erase = 1;
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p = NULL;
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ovsigck = 0;
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@ -805,7 +808,7 @@ int main(int argc, char * argv [])
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/*
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* process command line arguments
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*/
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while ((ch = getopt(argc,argv,"?b:B:c:C:DeE:Fi:np:P:qstU:uvVyY:")) != -1) {
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while ((ch = getopt(argc,argv,"?b:B:c:C:DeE:Fi:np:OP:qstU:uvVyY:")) != -1) {
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switch (ch) {
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case 'b': /* override default programmer baud rate */
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@ -864,6 +867,10 @@ int main(int argc, char * argv [])
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nowrite = 1;
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break;
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case 'O': /* perform RC oscillator calibration */
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calibrate = 1;
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break;
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case 'p' : /* specify AVR part */
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partdesc = optarg;
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break;
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@ -1151,6 +1158,21 @@ int main(int argc, char * argv [])
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goto main_exit;
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}
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if (calibrate) {
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/*
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* perform an RC oscillator calibration
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* as outlined in appnote AVR053
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*/
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fprintf(stderr, "%s: performing RC oscillator calibration\n", progname);
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exitrc = pgm->perform_osccal(pgm);
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if (exitrc == 0 && quell_progress < 2) {
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fprintf(stderr,
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"%s: calibration value is now stored in EEPROM at address 0\n",
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progname);
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}
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goto main_exit;
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}
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if (verbose) {
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avr_display(stderr, p, progbuf, verbose);
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fprintf(stderr, "\n");
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1
pgm.c
1
pgm.c
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@ -123,6 +123,7 @@ PROGRAMMER * pgm_new(void)
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pgm->set_vtarget = NULL;
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pgm->set_varef = NULL;
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pgm->set_fosc = NULL;
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pgm->perform_osccal = NULL;
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return pgm;
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}
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1
pgm.h
1
pgm.h
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@ -100,6 +100,7 @@ typedef struct programmer_t {
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int (*getpin) (struct programmer_t * pgm, int pin);
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int (*highpulsepin) (struct programmer_t * pgm, int pin);
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int (*parseexitspecs) (struct programmer_t * pgm, char *s);
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int (*perform_osccal) (struct programmer_t * pgm);
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char config_file[PATH_MAX]; /* config file where defined */
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int lineno; /* config file line number */
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char flag; /* for private use of the programmer */
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109
stk500v2.c
109
stk500v2.c
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@ -329,7 +329,7 @@ static int stk500v2_jtagmkII_recv(PROGRAMMER * pgm, unsigned char msg[],
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return -1;
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}
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memcpy(msg, jtagmsg + 1, rv - 1);
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return 0;
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return rv;
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}
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static int stk500v2_recv(PROGRAMMER * pgm, unsigned char msg[], size_t maxsize) {
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@ -524,8 +524,8 @@ retry:
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return 0;
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}
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static int stk500v2_command
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(PROGRAMMER * pgm, unsigned char * buf, size_t len, size_t maxlen) {
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static int stk500v2_command(PROGRAMMER * pgm, unsigned char * buf,
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size_t len, size_t maxlen) {
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int i;
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int tries = 0;
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int status;
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// send the command to the programmer
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stk500v2_send(pgm,buf,len);
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// attempt to read the status back
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status = stk500v2_recv(pgm,buf,maxlen);
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// if we got a successful readback, return
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if (status > 0) {
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DEBUG(" = %d\n",status);
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if (status < 2) {
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fprintf(stderr, "%s: stk500v2_command(): short reply\n", progname);
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return -1;
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}
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if (buf[1] == STATUS_CMD_OK)
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return status;
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if (buf[1] == STATUS_CMD_FAILED)
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fprintf(stderr, "%s: stk500v2_command(): command failed\n", progname);
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else
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fprintf(stderr, "%s: stk500v2_command(): unknown status 0x%02x\n",
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progname, buf[1]);
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return -1;
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}
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// otherwise try to sync up again
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buf[7] = cmd[3];
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result = stk500v2_command(pgm, buf, 8, sizeof(buf));
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if (buf[1] != STATUS_CMD_OK) {
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if (result < 0) {
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fprintf(stderr, "%s: stk500v2_cmd(): failed to send command\n",
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progname);
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return -1;
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} else if (result < 6) {
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fprintf(stderr, "%s: stk500v2_cmd(): short reply, len = %d\n",
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progname, result);
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return -1;
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}
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res[0] = buf[2];
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result = stk500v2_command(pgm, buf, CTL_STACK_SIZE + 1, sizeof(buf));
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if (result < 0 || buf[1] != STATUS_CMD_OK) {
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if (result < 0) {
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fprintf(stderr,
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"%s: stk500pp_initalize(): "
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"failed to set control stack, got 0x%02x\n",
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progname, buf[1]);
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"failed to set control stack\n",
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progname);
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return -1;
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}
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result = stk500v2_command(pgm, buf, 3, sizeof(buf));
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if (buf[1] != STATUS_CMD_OK) {
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fprintf(stderr, "%s: stk500v2_disable(): failed to leave programming mode, got 0x%02x\n",
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progname,buf[1]);
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if (result < 0) {
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fprintf(stderr,
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"%s: stk500v2_disable(): failed to leave programming mode\n",
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progname);
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}
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return;
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result = stk500v2_command(pgm, buf, 3, sizeof(buf));
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if (result < 0 || buf[1] != STATUS_CMD_OK) {
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if (result < 0) {
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fprintf(stderr,
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"%s: stk500hv_disable(): "
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"failed to leave programming mode, got 0x%02x\n",
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progname,buf[1]);
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"failed to leave programming mode\n",
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progname);
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exit(1);
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}
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result = stk500v2_command(pgm, buf, 5, sizeof(buf));
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if (buf[1] != STATUS_CMD_OK) {
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fprintf(stderr, "%s: stk500v2_loadaddr(): failed to set load address, got 0x%02x\n",
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progname,buf[1]);
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if (result < 0) {
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fprintf(stderr,
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"%s: stk500v2_loadaddr(): failed to set load address\n",
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progname);
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return -1;
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}
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@ -1090,11 +1106,11 @@ static int stk500hv_read_byte(PROGRAMMER * pgm, AVRPART * p, AVRMEM * mem,
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result = stk500v2_command(pgm, buf, cmdlen, sizeof(buf));
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if (result < 0 || buf[1] != STATUS_CMD_OK) {
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if (result < 0) {
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fprintf(stderr,
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"%s: stk500hv_read_byte(): "
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"timeout/error communicating with programmer (status %d)\n",
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progname, result);
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"timeout/error communicating with programmer\n",
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progname);
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return -1;
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}
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@ -1254,11 +1270,11 @@ static int stk500hv_write_byte(PROGRAMMER * pgm, AVRPART * p, AVRMEM * mem,
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result = stk500v2_command(pgm, buf, cmdlen, sizeof(buf));
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if (result < 0 || buf[1] != STATUS_CMD_OK) {
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if (result < 0) {
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fprintf(stderr,
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"%s: stk500hv_write_byte(): "
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"timeout/error communicating with programmer (status %d)\n",
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progname, result);
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"timeout/error communicating with programmer\n",
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progname);
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return -1;
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}
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@ -1411,9 +1427,10 @@ static int stk500v2_paged_write(PROGRAMMER * pgm, AVRPART * p, AVRMEM * m,
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memcpy(buf+10,m->buf+addr, block_size);
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result = stk500v2_command(pgm,buf,block_size+10, sizeof(buf));
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if (buf[1] != STATUS_CMD_OK) {
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fprintf(stderr,"%s: stk500v2_paged_write: write command failed with %d\n",
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progname,buf[1]);
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if (result < 0) {
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fprintf(stderr,
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"%s: stk500v2_paged_write: write command failed\n",
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progname);
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return -1;
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}
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}
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@ -1508,9 +1525,10 @@ static int stk500hv_paged_write(PROGRAMMER * pgm, AVRPART * p, AVRMEM * m,
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memset(buf + 5 + block_size, 0xff, page_size - block_size);
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result = stk500v2_command(pgm, buf, page_size + 5, sizeof(buf));
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if (buf[1] != STATUS_CMD_OK) {
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fprintf(stderr, "%s: stk500hv_paged_write: write command failed with %d\n",
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progname, buf[1]);
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if (result < 0) {
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fprintf(stderr,
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"%s: stk500hv_paged_write: write command failed\n",
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progname);
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return -1;
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}
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}
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}
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result = stk500v2_command(pgm,buf,4,sizeof(buf));
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if (buf[1] != STATUS_CMD_OK) {
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fprintf(stderr,"%s: stk500v2_paged_load: read command failed with %d\n",
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progname,buf[1]);
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if (result < 0) {
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fprintf(stderr,
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"%s: stk500v2_paged_load: read command failed\n",
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progname);
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return -1;
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}
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#if 0
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@ -1699,9 +1718,10 @@ static int stk500hv_paged_load(PROGRAMMER * pgm, AVRPART * p, AVRMEM * m,
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}
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result = stk500v2_command(pgm, buf, 3, sizeof(buf));
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if (buf[1] != STATUS_CMD_OK) {
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fprintf(stderr, "%s: stk500hv_paged_load: read command failed with %d\n",
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progname, buf[1]);
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if (result < 0) {
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fprintf(stderr,
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"%s: stk500hv_paged_load: read command failed\n",
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progname);
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return -1;
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}
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#if 0
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stk500v2_print_parms1(pgm, "");
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}
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static int stk500v2_perform_osccal(PROGRAMMER * pgm)
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{
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unsigned char buf[32];
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int rv;
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buf[0] = CMD_OSCCAL;
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rv = stk500v2_command(pgm, buf, 1, sizeof(buf));
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if (rv < 0) {
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fprintf(stderr, "%s: stk500v2_perform_osccal(): failed\n",
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progname);
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return -1;
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}
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return 0;
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}
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/*
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* Wrapper functions for the JTAG ICE mkII in ISP mode. This mode
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pgm->set_varef = stk500v2_set_varef;
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pgm->set_fosc = stk500v2_set_fosc;
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pgm->set_sck_period = stk500v2_set_sck_period;
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pgm->perform_osccal = stk500v2_perform_osccal;
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pgm->page_size = 256;
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}
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pgm->paged_load = stk500v2_paged_load;
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pgm->print_parms = stk500v2_print_parms;
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pgm->set_sck_period = stk500v2_set_sck_period_mk2;
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pgm->perform_osccal = stk500v2_perform_osccal;
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pgm->page_size = 256;
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}
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