bug #35456 The progress bar for STK500V2 programmer is "wrong".
* avr.c (avr_read, avr_write): Change the progress reporting for paged read/write from per-address to per-considered-page. This ought to give a realistic estimation about the time still to be spent. git-svn-id: svn://svn.savannah.nongnu.org/avrdude/trunk@1220 81a1dc3b-b13d-400b-aceb-764788c761c2
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@ -1,3 +1,11 @@
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2013-09-13 Joerg Wunsch <j.gnu@uriah.heep.sax.de>
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bug #35456 The progress bar for STK500V2 programmer is "wrong".
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* avr.c (avr_read, avr_write): Change the progress reporting for
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paged read/write from per-address to per-considered-page. This
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ought to give a realistic estimation about the time still to be
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spent.
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2013-09-13 Joerg Wunsch <j.gnu@uriah.heep.sax.de>
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bug #34277: avrdude reads wrong byte order if using avr911 (aka butterfly)
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@ -88,14 +88,15 @@ Current:
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- bug #39794: warnings when building avrdude 6.0rc1 under CentOS 6.4
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- bug #35800: Compilation error on certain systems if parport is disabled
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- bug #38307: Can't write usersig of an xmega256a3
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- bug #38580 Current svn head, xmega and fuses, all fuses tied to fuse0
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- bug #39691 Buffer overrun when reading EEPROM byte with JTAGICE3
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- bug #38580: Current svn head, xmega and fuses, all fuses tied to fuse0
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- bug #39691: Buffer overrun when reading EEPROM byte with JTAGICE3
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- bug #38951: AVR109 use byte offset instead of word offset
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- patch #7769: Write flash fails for AVR910 programmers
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- bug #38732: Support for ATtiny1634
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- bug #36901 flashing Atmega32U4 EEPROM produces garbage on chip
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- bug #28344 chip_erase_delay too short for ATmega324P, 644, 644P, and 1284P
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- bug #36901: flashing Atmega32U4 EEPROM produces garbage on chip
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- bug #28344: chip_erase_delay too short for ATmega324P, 644, 644P, and 1284P
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- bug #34277: avrdude reads wrong byte order if using avr911 (aka butterfly)
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- bug #35456: The progress bar for STK500V2 programmer is "wrong".
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* Keep track of input file contents
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@ -373,8 +373,23 @@ int avr_read(PROGRAMMER * pgm, AVRPART * p, char * memtype,
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*/
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int need_read, failure;
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unsigned int pageaddr;
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unsigned int npages, nread;
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for (pageaddr = 0, failure = 0;
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/* quickly scan number of pages to be written to first */
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for (pageaddr = 0, npages = 0;
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pageaddr < mem->size;
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pageaddr += mem->page_size) {
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/* check whether this page must be read */
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for (i = pageaddr;
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i < pageaddr + mem->page_size;
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i++)
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if ((mem->tags[i] & TAG_ALLOCATED) != 0) {
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npages++;
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break;
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}
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}
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for (pageaddr = 0, failure = 0, nread = 0;
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!failure && pageaddr < mem->size;
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pageaddr += mem->page_size) {
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/* check whether this page must be read */
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@ -400,7 +415,8 @@ int avr_read(PROGRAMMER * pgm, AVRPART * p, char * memtype,
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"%s: avr_read(): skipping page %u: no interesting data\n",
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progname, pageaddr / mem->page_size);
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}
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report_progress(pageaddr, mem->size, NULL);
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nread++;
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report_progress(nread, npages, NULL);
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}
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if (!failure) {
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if (strcasecmp(mem->desc, "flash") == 0 ||
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@ -901,8 +917,23 @@ int avr_write(PROGRAMMER * pgm, AVRPART * p, char * memtype, int size,
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*/
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int need_write, failure;
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unsigned int pageaddr;
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unsigned int npages, nwritten;
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for (pageaddr = 0, failure = 0;
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/* quickly scan number of pages to be written to first */
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for (pageaddr = 0, npages = 0;
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pageaddr < wsize;
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pageaddr += m->page_size) {
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/* check whether this page must be written to */
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for (i = pageaddr;
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i < pageaddr + m->page_size;
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i++)
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if ((m->tags[i] & TAG_ALLOCATED) != 0) {
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npages++;
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break;
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}
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}
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for (pageaddr = 0, failure = 0, nwritten = 0;
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!failure && pageaddr < wsize;
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pageaddr += m->page_size) {
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/* check whether this page must be written to */
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@ -927,7 +958,8 @@ int avr_write(PROGRAMMER * pgm, AVRPART * p, char * memtype, int size,
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"%s: avr_write(): skipping page %u: no interesting data\n",
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progname, pageaddr / m->page_size);
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}
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report_progress(pageaddr, m->size, NULL);
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nwritten++;
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report_progress(nwritten, npages, NULL);
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}
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if (!failure)
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return wsize;
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