astyle --formatted --mode=c --indent=spaces=2 --indent-switches --indent-preprocessor --keep-one-line-blocks --max-instatement-indent=60 --brackets=linux --pad-oper --unpad-paren --pad-header
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562205cc14
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59 changed files with 3178 additions and 3178 deletions
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@ -75,21 +75,21 @@ uint8_t abtHalt[4] = { 0x50, 0x00, 0x00, 0x00 };
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#define CASCADE_BIT 0x04
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static bool
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transmit_bits (const uint8_t *pbtTx, const size_t szTxBits)
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transmit_bits(const uint8_t *pbtTx, const size_t szTxBits)
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{
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// Show transmitted command
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if (!quiet_output) {
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printf ("Sent bits: ");
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print_hex_bits (pbtTx, szTxBits);
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printf("Sent bits: ");
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print_hex_bits(pbtTx, szTxBits);
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}
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// Transmit the bit frame command, we don't use the arbitrary parity feature
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if ((szRxBits = nfc_initiator_transceive_bits (pnd, pbtTx, szTxBits, NULL, abtRx, NULL)) < 0)
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if ((szRxBits = nfc_initiator_transceive_bits(pnd, pbtTx, szTxBits, NULL, abtRx, NULL)) < 0)
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return false;
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// Show received answer
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if (!quiet_output) {
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printf ("Received bits: ");
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print_hex_bits (abtRx, szRxBits);
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printf("Received bits: ");
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print_hex_bits(abtRx, szRxBits);
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}
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// Succesful transfer
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return true;
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@ -97,103 +97,103 @@ transmit_bits (const uint8_t *pbtTx, const size_t szTxBits)
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static bool
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transmit_bytes (const uint8_t *pbtTx, const size_t szTx)
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transmit_bytes(const uint8_t *pbtTx, const size_t szTx)
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{
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// Show transmitted command
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if (!quiet_output) {
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printf ("Sent bits: ");
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print_hex (pbtTx, szTx);
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printf("Sent bits: ");
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print_hex(pbtTx, szTx);
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}
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int res;
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// Transmit the command bytes
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if ((res = nfc_initiator_transceive_bytes (pnd, pbtTx, szTx, abtRx, sizeof(abtRx), 0)) < 0)
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if ((res = nfc_initiator_transceive_bytes(pnd, pbtTx, szTx, abtRx, sizeof(abtRx), 0)) < 0)
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return false;
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// Show received answer
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if (!quiet_output) {
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printf ("Received bits: ");
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print_hex (abtRx, res);
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printf("Received bits: ");
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print_hex(abtRx, res);
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}
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// Succesful transfer
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return true;
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}
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static void
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print_usage (char *argv[])
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print_usage(char *argv[])
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{
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printf ("Usage: %s [OPTIONS]\n", argv[0]);
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printf ("Options:\n");
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printf ("\t-h\tHelp. Print this message.\n");
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printf ("\t-q\tQuiet mode. Suppress output of READER and EMULATOR data (improves timing).\n");
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printf ("\t-f\tForce RATS.\n");
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printf("Usage: %s [OPTIONS]\n", argv[0]);
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printf("Options:\n");
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printf("\t-h\tHelp. Print this message.\n");
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printf("\t-q\tQuiet mode. Suppress output of READER and EMULATOR data (improves timing).\n");
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printf("\t-f\tForce RATS.\n");
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}
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int
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main (int argc, char *argv[])
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main(int argc, char *argv[])
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{
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int arg;
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// Get commandline options
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for (arg = 1; arg < argc; arg++) {
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if (0 == strcmp (argv[arg], "-h")) {
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print_usage (argv);
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if (0 == strcmp(argv[arg], "-h")) {
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print_usage(argv);
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exit(EXIT_SUCCESS);
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} else if (0 == strcmp (argv[arg], "-q")) {
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} else if (0 == strcmp(argv[arg], "-q")) {
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quiet_output = true;
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} else if (0 == strcmp (argv[arg], "-f")) {
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} else if (0 == strcmp(argv[arg], "-f")) {
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force_rats = true;
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} else {
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ERR ("%s is not supported option.", argv[arg]);
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print_usage (argv);
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ERR("%s is not supported option.", argv[arg]);
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print_usage(argv);
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exit(EXIT_FAILURE);
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}
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}
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nfc_init (NULL);
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nfc_init(NULL);
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// Try to open the NFC reader
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pnd = nfc_open (NULL, NULL);
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pnd = nfc_open(NULL, NULL);
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if (!pnd) {
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printf ("Error opening NFC reader\n");
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printf("Error opening NFC reader\n");
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exit(EXIT_FAILURE);
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}
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// Initialise NFC device as "initiator"
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if (nfc_initiator_init (pnd) < 0) {
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nfc_perror (pnd, "nfc_initiator_init");
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exit (EXIT_FAILURE);
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if (nfc_initiator_init(pnd) < 0) {
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nfc_perror(pnd, "nfc_initiator_init");
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exit(EXIT_FAILURE);
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}
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// Configure the CRC
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if (nfc_device_set_property_bool (pnd, NP_HANDLE_CRC, false) < 0) {
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nfc_perror (pnd, "nfc_device_set_property_bool");
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exit (EXIT_FAILURE);
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if (nfc_device_set_property_bool(pnd, NP_HANDLE_CRC, false) < 0) {
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nfc_perror(pnd, "nfc_device_set_property_bool");
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exit(EXIT_FAILURE);
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}
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// Use raw send/receive methods
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if (nfc_device_set_property_bool (pnd, NP_EASY_FRAMING, false) < 0) {
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nfc_perror (pnd, "nfc_device_set_property_bool");
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exit (EXIT_FAILURE);
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if (nfc_device_set_property_bool(pnd, NP_EASY_FRAMING, false) < 0) {
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nfc_perror(pnd, "nfc_device_set_property_bool");
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exit(EXIT_FAILURE);
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}
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// Disable 14443-4 autoswitching
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if (nfc_device_set_property_bool (pnd, NP_AUTO_ISO14443_4, false) < 0) {
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nfc_perror (pnd, "nfc_device_set_property_bool");
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exit (EXIT_FAILURE);
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if (nfc_device_set_property_bool(pnd, NP_AUTO_ISO14443_4, false) < 0) {
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nfc_perror(pnd, "nfc_device_set_property_bool");
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exit(EXIT_FAILURE);
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}
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printf ("NFC reader: %s opened\n\n", nfc_device_get_name (pnd));
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printf("NFC reader: %s opened\n\n", nfc_device_get_name(pnd));
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// Send the 7 bits request command specified in ISO 14443A (0x26)
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if (!transmit_bits (abtReqa, 7)) {
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printf ("Error: No tag available\n");
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nfc_close (pnd);
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nfc_exit (NULL);
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if (!transmit_bits(abtReqa, 7)) {
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printf("Error: No tag available\n");
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nfc_close(pnd);
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nfc_exit(NULL);
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return 1;
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}
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memcpy (abtAtqa, abtRx, 2);
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memcpy(abtAtqa, abtRx, 2);
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// Anti-collision
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transmit_bytes (abtSelectAll, 2);
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transmit_bytes(abtSelectAll, 2);
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// Check answer
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if ((abtRx[0] ^ abtRx[1] ^ abtRx[2] ^ abtRx[3] ^ abtRx[4]) != 0) {
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@ -201,12 +201,12 @@ main (int argc, char *argv[])
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}
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// Save the UID CL1
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memcpy (abtRawUid, abtRx, 4);
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memcpy(abtRawUid, abtRx, 4);
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//Prepare and send CL1 Select-Command
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memcpy (abtSelectTag + 2, abtRx, 5);
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iso14443a_crc_append (abtSelectTag, 7);
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transmit_bytes (abtSelectTag, 9);
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memcpy(abtSelectTag + 2, abtRx, 5);
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iso14443a_crc_append(abtSelectTag, 7);
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transmit_bytes(abtSelectTag, 9);
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abtSak = abtRx[0];
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// Test if we are dealing with a CL2
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@ -218,14 +218,14 @@ main (int argc, char *argv[])
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}
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}
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if(szCL == 2) {
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if (szCL == 2) {
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// We have to do the anti-collision for cascade level 2
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// Prepare CL2 commands
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abtSelectAll[0] = 0x95;
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// Anti-collision
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transmit_bytes (abtSelectAll, 2);
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transmit_bytes(abtSelectAll, 2);
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// Check answer
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if ((abtRx[0] ^ abtRx[1] ^ abtRx[2] ^ abtRx[3] ^ abtRx[4]) != 0) {
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@ -233,13 +233,13 @@ main (int argc, char *argv[])
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}
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// Save UID CL2
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memcpy (abtRawUid + 4, abtRx, 4);
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memcpy(abtRawUid + 4, abtRx, 4);
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// Selection
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abtSelectTag[0] = 0x95;
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memcpy (abtSelectTag + 2, abtRx, 5);
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iso14443a_crc_append (abtSelectTag, 7);
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transmit_bytes (abtSelectTag, 9);
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memcpy(abtSelectTag + 2, abtRx, 5);
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iso14443a_crc_append(abtSelectTag, 7);
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transmit_bytes(abtSelectTag, 9);
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abtSak = abtRx[0];
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// Test if we are dealing with a CL3
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@ -251,12 +251,12 @@ main (int argc, char *argv[])
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}
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}
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if ( szCL == 3) {
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if (szCL == 3) {
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// We have to do the anti-collision for cascade level 3
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// Prepare and send CL3 AC-Command
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abtSelectAll[0] = 0x97;
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transmit_bytes (abtSelectAll, 2);
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transmit_bytes(abtSelectAll, 2);
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// Check answer
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if ((abtRx[0] ^ abtRx[1] ^ abtRx[2] ^ abtRx[3] ^ abtRx[4]) != 0) {
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@ -264,13 +264,13 @@ main (int argc, char *argv[])
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}
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// Save UID CL3
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memcpy (abtRawUid + 8, abtRx, 4);
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memcpy(abtRawUid + 8, abtRx, 4);
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// Prepare and send final Select-Command
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abtSelectTag[0] = 0x97;
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memcpy (abtSelectTag + 2, abtRx, 5);
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iso14443a_crc_append (abtSelectTag, 7);
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transmit_bytes (abtSelectTag, 9);
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memcpy(abtSelectTag + 2, abtRx, 5);
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iso14443a_crc_append(abtSelectTag, 7);
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transmit_bytes(abtSelectTag, 9);
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abtSak = abtRx[0];
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}
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}
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@ -281,29 +281,29 @@ main (int argc, char *argv[])
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}
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if ((abtRx[0] & SAK_FLAG_ATS_SUPPORTED) || force_rats) {
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iso14443a_crc_append(abtRats, 2);
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if (transmit_bytes (abtRats, 4)) {
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memcpy (abtAts, abtRx, szRx);
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if (transmit_bytes(abtRats, 4)) {
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memcpy(abtAts, abtRx, szRx);
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szAts = szRx;
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}
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}
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// Done, halt the tag now
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iso14443a_crc_append(abtHalt, 2);
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transmit_bytes (abtHalt, 4);
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transmit_bytes(abtHalt, 4);
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printf ("\nFound tag with\n UID: ");
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printf("\nFound tag with\n UID: ");
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switch (szCL) {
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case 1:
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printf ("%02x%02x%02x%02x", abtRawUid[0], abtRawUid[1], abtRawUid[2], abtRawUid[3]);
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printf("%02x%02x%02x%02x", abtRawUid[0], abtRawUid[1], abtRawUid[2], abtRawUid[3]);
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break;
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case 2:
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printf ("%02x%02x%02x", abtRawUid[1], abtRawUid[2], abtRawUid[3]);
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printf ("%02x%02x%02x%02x", abtRawUid[4], abtRawUid[5], abtRawUid[6], abtRawUid[7]);
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printf("%02x%02x%02x", abtRawUid[1], abtRawUid[2], abtRawUid[3]);
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printf("%02x%02x%02x%02x", abtRawUid[4], abtRawUid[5], abtRawUid[6], abtRawUid[7]);
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break;
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case 3:
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printf ("%02x%02x%02x", abtRawUid[1], abtRawUid[2], abtRawUid[3]);
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printf ("%02x%02x%02x", abtRawUid[5], abtRawUid[6], abtRawUid[7]);
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printf ("%02x%02x%02x%02x", abtRawUid[8], abtRawUid[9], abtRawUid[10], abtRawUid[11]);
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printf("%02x%02x%02x", abtRawUid[1], abtRawUid[2], abtRawUid[3]);
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printf("%02x%02x%02x", abtRawUid[5], abtRawUid[6], abtRawUid[7]);
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printf("%02x%02x%02x%02x", abtRawUid[8], abtRawUid[9], abtRawUid[10], abtRawUid[11]);
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break;
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}
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printf("\n");
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@ -313,10 +313,10 @@ main (int argc, char *argv[])
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printf(" RATS forced\n");
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}
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printf(" ATS: ");
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print_hex (abtAts, szAts);
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print_hex(abtAts, szAts);
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}
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nfc_close (pnd);
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nfc_exit (NULL);
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nfc_close(pnd);
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nfc_exit(NULL);
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return 0;
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}
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