libnfc/examples/nfc-list.c

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/*-
* Public platform independent Near Field Communication (NFC) library
*
* Copyright (C) 2009, 2O1O, Roel Verdult, Romuald Conty
*
* This program is free software: you can redistribute it and/or modify it
* under the terms of the GNU Lesser General Public License as published by the
* Free Software Foundation, either version 3 of the License, or (at your
* option) any later version.
*
* This program is distributed in the hope that it will be useful, but WITHOUT
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
* more details.
*
* You should have received a copy of the GNU Lesser General Public License
* along with this program. If not, see <http://www.gnu.org/licenses/>
*/
/**
* @file nfc-list.c
* @brief List the first target present of each founded device
*/
#ifdef HAVE_CONFIG_H
# include "config.h"
#endif // HAVE_CONFIG_H
#ifdef HAVE_LIBUSB
# ifdef DEBUG
# include <sys/param.h>
# include <usb.h>
# endif
#endif
#include <err.h>
#include <stdio.h>
#include <stddef.h>
#include <stdlib.h>
#include <string.h>
#include <nfc/nfc.h>
#include <nfc/nfc-messages.h>
#include "nfc-utils.h"
#define MAX_DEVICE_COUNT 16
#define MAX_TARGET_COUNT 16
static nfc_device_t *pnd;
int
main (int argc, const char *argv[])
{
const char *acLibnfcVersion;
size_t szDeviceFound;
size_t szTargetFound;
size_t i;
nfc_device_desc_t *pnddDevices;
// Display libnfc version
acLibnfcVersion = nfc_version ();
printf ("%s use libnfc %s\n", argv[0], acLibnfcVersion);
pnddDevices = parse_device_desc (argc, argv, &szDeviceFound);
if (argc > 1 && szDeviceFound == 0) {
errx (1, "usage: %s [--device driver:port:speed]", argv[0]);
}
#ifdef HAVE_LIBUSB
# ifdef DEBUG
usb_set_debug (4);
# endif
#endif
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/* Lazy way to open an NFC device */
#if 0
pnd = nfc_connect (NULL);
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#endif
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/* If specific device is wanted, i.e. an ARYGON device on /dev/ttyUSB0 */
#if 0
nfc_device_desc_t ndd;
ndd.pcDriver = "ARYGON";
ndd.pcPort = "/dev/ttyUSB0";
ndd.uiSpeed = 115200;
pnd = nfc_connect (&ndd);
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#endif
if (szDeviceFound == 0) {
if (!(pnddDevices = malloc (MAX_DEVICE_COUNT * sizeof (*pnddDevices)))) {
fprintf (stderr, "malloc() failed\n");
return EXIT_FAILURE;
}
nfc_list_devices (pnddDevices, MAX_DEVICE_COUNT, &szDeviceFound);
}
if (szDeviceFound == 0) {
INFO ("%s", "No device found.");
}
for (i = 0; i < szDeviceFound; i++) {
nfc_target_info_t anti[MAX_TARGET_COUNT];
pnd = nfc_connect (&(pnddDevices[i]));
if (pnd == NULL) {
ERR ("%s", "Unable to connect to NFC device.");
return 1;
}
nfc_initiator_init (pnd);
// Drop the field for a while
if (!nfc_configure (pnd, NDO_ACTIVATE_FIELD, false)) {
nfc_perror (pnd, "nfc_configure");
exit (EXIT_FAILURE);
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}
// Let the reader only try once to find a tag
if (!nfc_configure (pnd, NDO_INFINITE_SELECT, false)) {
nfc_perror (pnd, "nfc_configure");
exit (EXIT_FAILURE);
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}
// Configure the CRC and Parity settings
if (!nfc_configure (pnd, NDO_HANDLE_CRC, true)) {
nfc_perror (pnd, "nfc_configure");
exit (EXIT_FAILURE);
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}
if (!nfc_configure (pnd, NDO_HANDLE_PARITY, true)) {
nfc_perror (pnd, "nfc_configure");
exit (EXIT_FAILURE);
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}
// Enable field so more power consuming cards can power themselves up
if (!nfc_configure (pnd, NDO_ACTIVATE_FIELD, true)) {
nfc_perror (pnd, "nfc_configure");
exit (EXIT_FAILURE);
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}
if (!nfc_configure (pnd, NDO_AUTO_ISO14443_4, true)) {
nfc_perror (pnd, "nfc_configure");
exit (EXIT_FAILURE);
}
printf ("Connected to NFC reader: %s\n", pnd->acName);
// List ISO14443A targets
if (nfc_initiator_list_passive_targets (pnd, NM_ISO14443A_106, anti, MAX_TARGET_COUNT, &szTargetFound)) {
size_t n;
printf ("%d ISO14443A passive target(s) was found%s\n", (int) szTargetFound, (szTargetFound == 0) ? ".\n" : ":");
for (n = 0; n < szTargetFound; n++) {
print_nfc_iso14443a_info (anti[n].nai);
printf ("\n");
}
}
// List Felica tags
if (nfc_initiator_list_passive_targets (pnd, NM_FELICA_212, anti, MAX_TARGET_COUNT, &szTargetFound)) {
size_t n;
printf ("%d Felica (212 kbps) passive target(s) was found%s\n", (int) szTargetFound,
(szTargetFound == 0) ? ".\n" : ":");
for (n = 0; n < szTargetFound; n++) {
print_nfc_felica_info (anti[n].nfi);
printf ("\n");
}
}
if (nfc_initiator_list_passive_targets (pnd, NM_FELICA_424, anti, MAX_TARGET_COUNT, &szTargetFound)) {
size_t n;
printf ("%d Felica (424 kbps) passive target(s) was found%s\n", (int) szTargetFound,
(szTargetFound == 0) ? ".\n" : ":");
for (n = 0; n < szTargetFound; n++) {
print_nfc_felica_info (anti[n].nfi);
printf ("\n");
}
}
// List ISO14443B targets
if (nfc_initiator_list_passive_targets (pnd, NM_ISO14443B_106, anti, MAX_TARGET_COUNT, &szTargetFound)) {
size_t n;
printf ("%d ISO14443B passive target(s) was found%s\n", (int) szTargetFound, (szTargetFound == 0) ? ".\n" : ":");
for (n = 0; n < szTargetFound; n++) {
print_nfc_iso14443b_info (anti[n].nbi);
printf ("\n");
}
}
// List Jewel targets
if (nfc_initiator_list_passive_targets(pnd, NM_JEWEL_106, anti, MAX_TARGET_COUNT, &szTargetFound )) {
size_t n;
printf("%d Jewel passive target(s) was found%s\n", (int)szTargetFound, (szTargetFound==0)?".\n":":");
for(n=0; n<szTargetFound; n++) {
print_nfc_jewel_info (anti[n].nji);
printf("\n");
}
}
nfc_disconnect (pnd);
}
free (pnddDevices);
return 0;
}