* avr910.c:
* fileio.c: * main.c: * stk500.c: More code cleanup to remove warnings. git-svn-id: svn://svn.savannah.nongnu.org/avrdude/trunk@352 81a1dc3b-b13d-400b-aceb-764788c761c2
This commit is contained in:
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@ -1,3 +1,11 @@
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2003-08-28 Eric B. Weddington <eric@ecentral.com>
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* avr910.c:
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* fileio.c:
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* main.c:
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* stk500.c:
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More code cleanup to remove warnings.
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2003-08-27 Theodore A. Roth <troth@openavr.org>
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2003-08-27 Theodore A. Roth <troth@openavr.org>
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* main.c (update_progress_no_tty): Properly terminate progress. Also
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* main.c (update_progress_no_tty): Properly terminate progress. Also
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@ -503,7 +503,7 @@ static int avr910_paged_write_flash(PROGRAMMER * pgm, AVRPART * p, AVRMEM * m,
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unsigned int max_addr = n_bytes;
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unsigned int max_addr = n_bytes;
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unsigned int page_addr;
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unsigned int page_addr;
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int page_bytes = page_size;
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int page_bytes = page_size;
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int page_wr_cmd_pending;
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int page_wr_cmd_pending = 0;
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avr910_write_setup(pgm, p, m);
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avr910_write_setup(pgm, p, m);
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@ -691,7 +691,7 @@ int fileio_rbin(struct fioparms * fio,
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int fileio_imm(struct fioparms * fio,
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int fileio_imm(struct fioparms * fio,
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char * filename, FILE * f, unsigned char * buf, int size)
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char * filename, FILE * f, unsigned char * buf, int size)
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{
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{
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int rc;
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int rc = 0;
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char * e, * p;
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char * e, * p;
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unsigned long b;
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unsigned long b;
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int loc;
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int loc;
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@ -611,7 +611,7 @@ int do_op(PROGRAMMER * pgm, struct avrpart * p, UPDATE * upd, int nowrite,
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/*
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/*
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* write the buffer contents to the selected memory type
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* write the buffer contents to the selected memory type
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*/
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*/
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fprintf(stderr, "%s: writing %s (%d bytes):\n",
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fprintf(stderr, "%s: writing %s (%ld bytes):\n",
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progname, upd->memtype, size);
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progname, upd->memtype, size);
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if (!nowrite) {
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if (!nowrite) {
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@ -635,7 +635,7 @@ int do_op(PROGRAMMER * pgm, struct avrpart * p, UPDATE * upd, int nowrite,
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vsize = rc;
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vsize = rc;
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fprintf(stderr, "%s: %d bytes of %s written\n", progname,
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fprintf(stderr, "%s: %ld bytes of %s written\n", progname,
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vsize, upd->memtype);
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vsize, upd->memtype);
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}
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}
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@ -713,13 +713,11 @@ int main(int argc, char * argv [])
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int exitrc; /* exit code for main() */
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int exitrc; /* exit code for main() */
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int i; /* general loop counter */
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int i; /* general loop counter */
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int ch; /* options flag */
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int ch; /* options flag */
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int size; /* size of memory region */
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int len; /* length for various strings */
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int len; /* length for various strings */
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struct avrpart * p; /* which avr part we are programming */
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struct avrpart * p; /* which avr part we are programming */
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struct avrpart * v; /* used for verify */
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struct avrpart * v; /* used for verify */
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int readorwrite; /* true if a chip read/write op was selected */
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int readorwrite; /* true if a chip read/write op was selected */
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int ppidata; /* cached value of the ppi data register */
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int ppidata; /* cached value of the ppi data register */
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int vsize=-1; /* number of bytes to verify */
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AVRMEM * sig; /* signature data */
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AVRMEM * sig; /* signature data */
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struct stat sb;
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struct stat sb;
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UPDATE * upd;
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UPDATE * upd;
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@ -934,41 +934,40 @@ static int stk500_set_fosc(PROGRAMMER * pgm, double v)
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};
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};
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int idx, rc;
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int idx, rc;
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if (v <= 0.0) {
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prescale = cmatch = 0;
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prescale = cmatch = 0;
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if (v > 0.0) {
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goto setclock;
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if (v > fbase / 2) {
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}
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const char *unit;
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if (v > fbase / 2) {
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if (v > 1e6) {
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const char *unit;
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v /= 1e6;
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if (v > 1e6) {
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unit = "MHz";
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v /= 1e6;
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} else if (v > 1e3) {
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unit = "MHz";
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v /= 1e3;
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} else if (v > 1e3) {
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unit = "kHz";
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v /= 1e3;
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} else
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unit = "kHz";
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unit = "Hz";
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fprintf(stderr,
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"%s: stk500_set_fosc(): f = %.3f %s too high, using %.3f MHz\n",
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progname, v, unit, fbase / 2e6);
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fosc = fbase / 2;
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} else
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} else
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unit = "Hz";
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fosc = (unsigned)v;
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fprintf(stderr,
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"%s: stk500_set_fosc(): f = %.3f %s too high, using %.3f MHz\n",
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progname, v, unit, fbase / 2e6);
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fosc = fbase / 2;
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} else
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fosc = (unsigned)v;
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for (idx = 0; idx < sizeof(ps) / sizeof(ps[0]); idx++) {
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for (idx = 0; idx < sizeof(ps) / sizeof(ps[0]); idx++) {
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if (fosc >= fbase / (256 * ps[idx] * 2)) {
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if (fosc >= fbase / (256 * ps[idx] * 2)) {
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/* this prescaler value can handle our frequency */
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/* this prescaler value can handle our frequency */
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prescale = idx + 1;
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prescale = idx + 1;
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cmatch = (unsigned)(fbase / (2 * v * ps[idx]));
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cmatch = (unsigned)(fbase / (2 * v * ps[idx]));
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break;
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break;
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}
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}
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if (idx == sizeof(ps) / sizeof(ps[0])) {
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fprintf(stderr, "%s: stk500_set_fosc(): f = %u Hz too low, %u Hz min\n",
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progname, fosc, fbase / (256 * 1024 * 2));
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return -1;
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}
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}
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}
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}
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if (idx == sizeof(ps) / sizeof(ps[0])) {
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fprintf(stderr, "%s: stk500_set_fosc(): f = %u Hz too low, %u Hz min\n",
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progname, fosc, fbase / (256 * 1024 * 2));
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return -1;
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}
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setclock:
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if ((rc = stk500_setparm(pgm, Parm_STK_OSC_PSCALE, prescale)) != 0
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if ((rc = stk500_setparm(pgm, Parm_STK_OSC_PSCALE, prescale)) != 0
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|| (rc = stk500_setparm(pgm, Parm_STK_OSC_CMATCH, cmatch)) != 0)
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|| (rc = stk500_setparm(pgm, Parm_STK_OSC_CMATCH, cmatch)) != 0)
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return rc;
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return rc;
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