void annotateLegic(char *exp, size_t size, uint8_t* cmd, uint8_t cmdsize){
if ( cmdsize > 1) {
- switch(cmd[0]) {
- case LEGIC_READ :snprintf(exp, size, "READ Byte(%d)", cmd[1]);break;
- case LEGIC_WRITE :snprintf(exp, size, "WRITE Byte(%d)", cmd[1]);break;
- default :snprintf(exp, size, "?"); break;
- }
+
+ uint8_t cmdBit = (cmd[0] & 1);
+ uint8_t address = (cmd[1] << 7) | cmd[0] >> 1;
+
+ if (cmdBit == LEGIC_READ)
+ snprintf(exp, size, "READ Byte(%d)", address);
+ else if (cmdBit == LEGIC_WRITE )
+ snprintf(exp, size, "WRITE Byte(%d)", address);
+ else
+ snprintf(exp, size, "?");
+
} else {
- switch(cmd[0]) {
- case LEGIC_HSK :snprintf(exp, size, "END Handshake");break;
- default :snprintf(exp, size, "?"); break;
- }
+ if ( cmd[0] == LEGIC_HSK_22 ) snprintf(exp, size, "MIM22");
+ if ( cmd[0] == LEGIC_HSK_256 ) snprintf(exp, size, "MIN256/1024");
}
}
uint8_t parityBits = parityBytes[j>>3];
if (protocol != ISO_14443B && protocol != ISO_7816_4 && (isResponse || protocol == ISO_14443A) && (oddparity != ((parityBits >> (7-(j&0x0007))) & 0x01))) {
snprintf(line[j/16]+(( j % 16) * 4),110, "%02x! ", frame[j]);
-
} else {
snprintf(line[j/16]+(( j % 16) * 4),110, "%02x ", frame[j]);
}
int num_lines = MIN((data_len - 1)/16 + 1, 16);
for (int j = 0; j < num_lines ; j++) {
if (j == 0) {
- PrintAndLog(" %10d | %10d | %s |%-64s | %s| %s",
+ PrintAndLog(" %10u | %10u | %s |%-64s | %s| %s",
(timestamp - first_timestamp),
(EndOfTransmissionTimestamp - first_timestamp),
(isResponse ? "Tag" : "Rdr"),
if (showWaitCycles && !isResponse && next_record_is_response(tracepos, trace)) {
uint32_t next_timestamp = *((uint32_t *)(trace + tracepos));
- PrintAndLog(" %10d | %10d | %s |fdt (Frame Delay Time): %d",
+ PrintAndLog(" %10u | %10u | %s |fdt (Frame Delay Time): %d",
(EndOfTransmissionTimestamp - first_timestamp),
(next_timestamp - first_timestamp),
" ",