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that indicates whether the underlying communication can dynamically change its speed or not. This flag is set for true serial communication but clear for USB communication. Don't try to adjust the speed when talking over a communication channel that doesn't support it. (The Dragon does not even support the respective parameter.) git-svn-id: svn://svn.savannah.nongnu.org/avrdude/trunk/avrdude@676 81a1dc3b-b13d-400b-aceb-764788c761c2
450 lines
10 KiB
C
450 lines
10 KiB
C
/*
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* avrdude - A Downloader/Uploader for AVR device programmers
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* Copyright (C) 2005,2006 Joerg Wunsch
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* Copyright (C) 2006 David Moore
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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*/
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/* $Id$ */
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/*
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* USB interface via libusb for avrdude.
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*/
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#include "ac_cfg.h"
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#if defined(HAVE_LIBUSB)
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#include <ctype.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <errno.h>
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#include <sys/types.h>
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#include <sys/time.h>
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#include <usb.h>
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#include "serial.h"
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#include "usbdevs.h"
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extern char *progname;
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extern int verbose;
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static char usbbuf[USBDEV_MAX_XFER];
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static int buflen = -1, bufptr;
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static int usb_interface;
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/*
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* The "baud" parameter is meaningless for USB devices, so we reuse it
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* to pass the desired USB device ID.
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*/
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static int usbdev_open(char * port, long baud)
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{
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char string[256];
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char product[256];
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struct usb_bus *bus;
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struct usb_device *dev;
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usb_dev_handle *udev;
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char *serno, *cp2;
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size_t x;
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/*
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* The syntax for usb devices is defined as:
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*
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* -P usb[:serialnumber]
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*
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* See if we've got a serial number passed here. The serial number
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* might contain colons which we remove below, and we compare it
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* right-to-left, so only the least significant nibbles need to be
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* specified.
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*/
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if ((serno = strchr(port, ':')) != NULL)
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{
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/* first, drop all colons there if any */
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cp2 = ++serno;
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while ((cp2 = strchr(cp2, ':')) != NULL)
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{
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x = strlen(cp2) - 1;
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memmove(cp2, cp2 + 1, x);
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cp2[x] = '\0';
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}
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if (strlen(serno) > 12)
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{
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fprintf(stderr,
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"%s: usbdev_open(): invalid serial number \"%s\"\n",
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progname, serno);
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exit(1);
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}
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}
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usb_init();
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usb_find_busses();
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usb_find_devices();
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for (bus = usb_get_busses(); bus; bus = bus->next)
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{
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for (dev = bus->devices; dev; dev = dev->next)
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{
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udev = usb_open(dev);
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if (udev)
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{
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if (dev->descriptor.idVendor == USB_VENDOR_ATMEL &&
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dev->descriptor.idProduct == (unsigned short)baud)
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{
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/* yeah, we found something */
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if (usb_get_string_simple(udev,
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dev->descriptor.iSerialNumber,
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string, sizeof(string)) < 0)
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{
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fprintf(stderr,
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"%s: usb_open(): cannot read serial number \"%s\"\n",
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progname, usb_strerror());
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/*
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* On some systems, libusb appears to have
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* problems sending control messages. Catch the
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* benign case where the user did not request a
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* particular serial number, so we could
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* continue anyway.
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*/
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if (serno != NULL)
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exit(1); /* no chance */
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else
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strcpy(string, "[unknown]");
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}
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if (usb_get_string_simple(udev,
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dev->descriptor.iProduct,
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product, sizeof(product)) < 0)
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{
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fprintf(stderr,
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"%s: usb_open(): cannot read product name \"%s\"\n",
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progname, usb_strerror());
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strcpy(product, "[unnamed product]");
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}
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if (verbose)
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fprintf(stderr,
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"%s: usbdev_open(): Found %s, serno: %s\n",
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progname, product, string);
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if (serno != NULL)
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{
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/*
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* See if the serial number requested by the
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* user matches what we found, matching
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* right-to-left.
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*/
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x = strlen(string) - strlen(serno);
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if (strcasecmp(string + x, serno) != 0)
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{
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if (verbose > 2)
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fprintf(stderr,
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"%s: usbdev_open(): serial number doesn't match\n",
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progname);
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usb_close(udev);
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continue;
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}
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}
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if (dev->config == NULL)
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{
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fprintf(stderr,
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"%s: usbdev_open(): USB device has no configuration\n",
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progname);
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goto trynext;
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}
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if (usb_set_configuration(udev, dev->config[0].bConfigurationValue))
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{
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fprintf(stderr,
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"%s: usbdev_open(): error setting configuration %d: %s\n",
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progname, dev->config[0].bConfigurationValue,
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usb_strerror());
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goto trynext;
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}
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usb_interface = dev->config[0].interface[0].altsetting[0].bInterfaceNumber;
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if (usb_claim_interface(udev, usb_interface))
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{
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fprintf(stderr,
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"%s: usbdev_open(): error claiming interface %d: %s\n",
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progname, usb_interface, usb_strerror());
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goto trynext;
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}
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return (int)udev;
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}
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trynext:
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usb_close(udev);
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}
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}
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}
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fprintf(stderr, "%s: usbdev_open(): did not find any%s USB device \"%s\"\n",
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progname, serno? " (matching)": "", port);
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exit(1);
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}
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static void usbdev_close(int fd)
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{
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usb_dev_handle *udev = (usb_dev_handle *)fd;
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(void)usb_release_interface(udev, usb_interface);
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/*
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* Without this reset, the AVRISP mkII seems to stall the second
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* time we try to connect to it.
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*/
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usb_reset(udev);
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usb_close(udev);
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}
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static int usbdev_send(int fd, unsigned char *bp, size_t mlen)
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{
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usb_dev_handle *udev = (usb_dev_handle *)fd;
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size_t rv;
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int i = mlen;
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unsigned char * p = bp;
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int tx_size;
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/*
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* Split the frame into multiple packets. It's important to make
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* sure we finish with a short packet, or else the device won't know
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* the frame is finished. For example, if we need to send 64 bytes,
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* we must send a packet of length 64 followed by a packet of length
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* 0.
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*/
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do {
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tx_size = (mlen < USBDEV_MAX_XFER)? mlen: USBDEV_MAX_XFER;
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rv = usb_bulk_write(udev, USBDEV_BULK_EP_WRITE, (char *)bp, tx_size, 5000);
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if (rv != tx_size)
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{
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fprintf(stderr, "%s: usbdev_send(): wrote %d out of %d bytes, err = %s\n",
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progname, rv, tx_size, usb_strerror());
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return -1;
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}
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bp += tx_size;
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mlen -= tx_size;
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} while (tx_size == USBDEV_MAX_XFER);
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if (verbose > 3)
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{
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fprintf(stderr, "%s: Sent: ", progname);
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while (i) {
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unsigned char c = *p;
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if (isprint(c)) {
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fprintf(stderr, "%c ", c);
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}
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else {
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fprintf(stderr, ". ");
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}
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fprintf(stderr, "[%02x] ", c);
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p++;
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i--;
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}
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fprintf(stderr, "\n");
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}
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return 0;
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}
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/*
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* As calls to usb_bulk_read() result in exactly one USB request, we
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* have to buffer the read results ourselves, so the single-char read
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* requests performed by the upper layers will be handled. In order
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* to do this, we maintain a private buffer of what we've got so far,
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* and transparently issue another USB read request if the buffer is
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* empty and more data are requested.
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*/
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static int
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usb_fill_buf(usb_dev_handle *udev)
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{
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int rv;
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rv = usb_bulk_read(udev, USBDEV_BULK_EP_READ, usbbuf, USBDEV_MAX_XFER, 5000);
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if (rv < 0)
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{
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if (verbose > 1)
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fprintf(stderr, "%s: usb_fill_buf(): usb_bulk_read() error %s\n",
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progname, usb_strerror());
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return -1;
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}
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buflen = rv;
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bufptr = 0;
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return 0;
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}
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static int usbdev_recv(int fd, unsigned char *buf, size_t nbytes)
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{
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usb_dev_handle *udev = (usb_dev_handle *)fd;
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int i, amnt;
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unsigned char * p = buf;
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for (i = 0; nbytes > 0;)
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{
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if (buflen <= bufptr)
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{
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if (usb_fill_buf(udev) < 0)
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return -1;
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}
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amnt = buflen - bufptr > nbytes? nbytes: buflen - bufptr;
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memcpy(buf + i, usbbuf + bufptr, amnt);
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bufptr += amnt;
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nbytes -= amnt;
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i += amnt;
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}
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if (verbose > 3)
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{
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fprintf(stderr, "%s: Recv: ", progname);
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while (i) {
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unsigned char c = *p;
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if (isprint(c)) {
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fprintf(stderr, "%c ", c);
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}
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else {
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fprintf(stderr, ". ");
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}
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fprintf(stderr, "[%02x] ", c);
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p++;
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i--;
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}
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fprintf(stderr, "\n");
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}
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return 0;
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}
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/*
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* This version of recv keeps reading packets until we receive a short
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* packet. Then, the entire frame is assembled and returned to the
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* user. The length will be unknown in advance, so we return the
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* length as the return value of this function, or -1 in case of an
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* error.
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*
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* This is used for the AVRISP mkII device.
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*/
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static int usbdev_recv_frame(int fd, unsigned char *buf, size_t nbytes)
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{
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usb_dev_handle *udev = (usb_dev_handle *)fd;
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int rv, n;
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int i;
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unsigned char * p = buf;
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n = 0;
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do
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{
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rv = usb_bulk_read(udev, USBDEV_BULK_EP_READ, usbbuf,
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USBDEV_MAX_XFER, 10000);
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if (rv < 0)
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{
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if (verbose > 1)
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fprintf(stderr, "%s: usbdev_recv_frame(): usb_bulk_read(): %s\n",
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progname, usb_strerror());
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return -1;
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}
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if (rv <= nbytes)
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{
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memcpy (buf, usbbuf, rv);
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buf += rv;
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}
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n += rv;
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nbytes -= rv;
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}
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while (rv == USBDEV_MAX_XFER);
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if (nbytes < 0)
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return -1;
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if (verbose > 3)
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{
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i = n;
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fprintf(stderr, "%s: Recv: ", progname);
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while (i) {
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unsigned char c = *p;
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if (isprint(c)) {
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fprintf(stderr, "%c ", c);
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}
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else {
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fprintf(stderr, ". ");
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}
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fprintf(stderr, "[%02x] ", c);
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p++;
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i--;
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}
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fprintf(stderr, "\n");
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}
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return n;
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}
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static int usbdev_drain(int fd, int display)
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{
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usb_dev_handle *udev = (usb_dev_handle *)fd;
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int rv;
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do {
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rv = usb_bulk_read(udev, USBDEV_BULK_EP_READ, usbbuf, USBDEV_MAX_XFER, 100);
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if (rv > 0 && verbose >= 4)
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fprintf(stderr, "%s: usbdev_drain(): flushed %d characters\n",
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progname, rv);
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} while (rv > 0);
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return 0;
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}
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/*
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* Device descriptor for the JTAG ICE mkII.
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*/
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struct serial_device usb_serdev =
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{
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.open = usbdev_open,
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.close = usbdev_close,
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.send = usbdev_send,
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.recv = usbdev_recv,
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.drain = usbdev_drain,
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.flags = SERDEV_FL_NONE,
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};
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/*
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* Device descriptor for the AVRISP mkII.
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*/
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struct serial_device usb_serdev_frame =
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{
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.open = usbdev_open,
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.close = usbdev_close,
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.send = usbdev_send,
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.recv = usbdev_recv_frame,
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.drain = usbdev_drain,
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.flags = SERDEV_FL_NONE,
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};
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#endif /* HAVE_LIBUSB */
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