mirror of
https://github.com/RfidResearchGroup/proxmark3.git
synced 2024-11-11 10:14:34 +08:00
623 lines
21 KiB
C
623 lines
21 KiB
C
//-----------------------------------------------------------------------------
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// Copyright (C) 2018 iceman <iceman at iuse.se>
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//
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// This code is licensed to you under the terms of the GNU GPL, version 2 or,
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// at your option, any later version. See the LICENSE.txt file for the text of
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// the license.
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//-----------------------------------------------------------------------------
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// Trace commands
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//-----------------------------------------------------------------------------
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#include "cmdtrace.h"
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static int CmdHelp(const char *Cmd);
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// trace pointer
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static uint8_t *trace;
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long traceLen = 0;
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bool preRDV40 = true;
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int usage_trace_list(){
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PrintAndLogEx(NORMAL, "List protocol data in trace buffer.");
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PrintAndLogEx(NORMAL, "Usage: trace list <protocol> [f][c| <0|1>");
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PrintAndLogEx(NORMAL, " f - show frame delay times as well");
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PrintAndLogEx(NORMAL, " c - mark CRC bytes");
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PrintAndLogEx(NORMAL, " <0|1> - use data from Tracebuffer, if not set, try reading data from tag.");
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PrintAndLogEx(NORMAL, "Supported <protocol> values:");
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PrintAndLogEx(NORMAL, " raw - just show raw data without annotations");
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PrintAndLogEx(NORMAL, " 14a - interpret data as iso14443a communications");
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PrintAndLogEx(NORMAL, " mf - interpret data as iso14443a communications and decrypt crypto1 stream");
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PrintAndLogEx(NORMAL, " 14b - interpret data as iso14443b communications");
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PrintAndLogEx(NORMAL, " 15 - interpret data as iso15693 communications");
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PrintAndLogEx(NORMAL, " des - interpret data as DESFire communications");
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#ifdef WITH_EMV
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PrintAndLogEx(NORMAL, " emv - interpret data as EMV / communications");
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#endif
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PrintAndLogEx(NORMAL, " iclass - interpret data as iclass communications");
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PrintAndLogEx(NORMAL, " topaz - interpret data as topaz communications");
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PrintAndLogEx(NORMAL, " 7816 - interpret data as iso7816-4 communications");
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PrintAndLogEx(NORMAL, " legic - interpret data as LEGIC communications");
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PrintAndLogEx(NORMAL, " felica - interpret data as ISO18092 / FeliCa communications");
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PrintAndLogEx(NORMAL, "");
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PrintAndLogEx(NORMAL, "Examples:");
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PrintAndLogEx(NORMAL, " trace list 14a f");
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PrintAndLogEx(NORMAL, " trace list iclass");
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return 0;
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}
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int usage_trace_load(){
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PrintAndLogEx(NORMAL, "Load protocol data from file to trace buffer.");
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PrintAndLogEx(NORMAL, "Usage: trace load <filename>");
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PrintAndLogEx(NORMAL, "Examples:");
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PrintAndLogEx(NORMAL, " trace load mytracefile.bin");
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return 0;
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}
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int usage_trace_save(){
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PrintAndLogEx(NORMAL, "Save protocol data from trace buffer to file.");
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PrintAndLogEx(NORMAL, "Usage: trace save <filename>");
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PrintAndLogEx(NORMAL, "Examples:");
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PrintAndLogEx(NORMAL, " trace save mytracefile.bin");
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return 0;
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}
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bool is_last_record(uint16_t tracepos, uint8_t *trace, uint16_t traceLen) {
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return(tracepos + sizeof(uint32_t) + sizeof(uint16_t) + sizeof(uint16_t) >= traceLen);
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}
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bool next_record_is_response(uint16_t tracepos, uint8_t *trace) {
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uint16_t next_records_datalen = *((uint16_t *)(trace + tracepos + sizeof(uint32_t) + sizeof(uint16_t)));
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return(next_records_datalen & 0x8000);
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}
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bool merge_topaz_reader_frames(uint32_t timestamp, uint32_t *duration, uint16_t *tracepos, uint16_t traceLen,
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uint8_t *trace, uint8_t *frame, uint8_t *topaz_reader_command, uint16_t *data_len) {
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#define MAX_TOPAZ_READER_CMD_LEN 16
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uint32_t last_timestamp = timestamp + *duration;
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if ((*data_len != 1) || (frame[0] == TOPAZ_WUPA) || (frame[0] == TOPAZ_REQA)) return false;
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memcpy(topaz_reader_command, frame, *data_len);
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while (!is_last_record(*tracepos, trace, traceLen) && !next_record_is_response(*tracepos, trace)) {
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uint32_t next_timestamp = *((uint32_t *)(trace + *tracepos));
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*tracepos += sizeof(uint32_t);
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uint16_t next_duration = *((uint16_t *)(trace + *tracepos));
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*tracepos += sizeof(uint16_t);
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uint16_t next_data_len = *((uint16_t *)(trace + *tracepos)) & 0x7FFF;
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*tracepos += sizeof(uint16_t);
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uint8_t *next_frame = (trace + *tracepos);
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*tracepos += next_data_len;
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if ((next_data_len == 1) && (*data_len + next_data_len <= MAX_TOPAZ_READER_CMD_LEN)) {
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memcpy(topaz_reader_command + *data_len, next_frame, next_data_len);
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*data_len += next_data_len;
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last_timestamp = next_timestamp + next_duration;
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} else {
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// rewind and exit
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*tracepos = *tracepos - next_data_len - sizeof(uint16_t) - sizeof(uint16_t) - sizeof(uint32_t);
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break;
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}
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uint16_t next_parity_len = (next_data_len-1)/8 + 1;
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*tracepos += next_parity_len;
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}
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*duration = last_timestamp - timestamp;
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return true;
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}
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uint16_t printTraceLine(uint16_t tracepos, uint16_t traceLen, uint8_t *trace, uint8_t protocol, bool showWaitCycles, bool markCRCBytes) {
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// sanity check
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if (tracepos + sizeof(uint32_t) + sizeof(uint16_t) + sizeof(uint16_t) > traceLen) return traceLen;
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bool isResponse;
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uint16_t data_len, parity_len;
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uint32_t duration, timestamp, first_timestamp, EndOfTransmissionTimestamp;
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uint8_t topaz_reader_command[9];
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char explanation[30] = {0};
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uint8_t mfData[32] = {0};
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size_t mfDataLen = 0;
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first_timestamp = *((uint32_t *)(trace));
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timestamp = *((uint32_t *)(trace + tracepos));
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tracepos += 4;
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duration = *((uint16_t *)(trace + tracepos));
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tracepos += 2;
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data_len = *((uint16_t *)(trace + tracepos));
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tracepos += 2;
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if (data_len & 0x8000) {
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data_len &= 0x7fff;
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isResponse = true;
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} else {
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isResponse = false;
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}
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parity_len = (data_len-1)/8 + 1;
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if (tracepos + data_len + parity_len > traceLen) {
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return traceLen;
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}
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uint8_t *frame = trace + tracepos;
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tracepos += data_len;
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uint8_t *parityBytes = trace + tracepos;
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tracepos += parity_len;
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if (protocol == TOPAZ && !isResponse) {
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// topaz reader commands come in 1 or 9 separate frames with 7 or 8 Bits each.
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// merge them:
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if (merge_topaz_reader_frames(timestamp, &duration, &tracepos, traceLen, trace, frame, topaz_reader_command, &data_len)) {
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frame = topaz_reader_command;
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}
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}
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//Check the CRC status
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uint8_t crcStatus = 2;
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if (data_len > 2) {
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switch (protocol) {
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case ICLASS:
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crcStatus = iclass_CRC_check(isResponse, frame, data_len);
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break;
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case ISO_14443B:
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case TOPAZ:
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case FELICA:
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crcStatus = iso14443B_CRC_check(frame, data_len);
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break;
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case PROTO_MIFARE:
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crcStatus = mifare_CRC_check(isResponse, frame, data_len);
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case ISO_14443A:
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case MFDES:
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crcStatus = iso14443A_CRC_check(isResponse, frame, data_len);
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break;
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case ISO_15693:
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crcStatus = iso15693_CRC_check(frame, data_len);
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break;
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default:
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break;
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}
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}
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//0 CRC-command, CRC not ok
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//1 CRC-command, CRC ok
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//2 Not crc-command
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//--- Draw the data column
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char line[18][110];
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for (int j = 0; j < data_len && j/18 < 18; j++) {
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uint8_t parityBits = parityBytes[j >> 3];
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if (protocol != LEGIC &&
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protocol != ISO_14443B &&
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protocol != ISO_7816_4 &&
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(isResponse || protocol == ISO_14443A) &&
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(oddparity8(frame[j]) != ((parityBits >> (7-(j&0x0007))) & 0x01))) {
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snprintf(line[j/18]+(( j % 18) * 4),110, "%02x! ", frame[j]);
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} else {
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snprintf(line[j/18]+(( j % 18) * 4),110, "%02x ", frame[j]);
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}
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}
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if (markCRCBytes) {
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//CRC-command
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if(crcStatus == 0 || crcStatus == 1) {
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char *pos1 = line[(data_len-2)/18]+(((data_len-2) % 18) * 4);
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(*pos1) = '[';
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char *pos2 = line[(data_len)/18]+(((data_len) % 18) * 4);
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sprintf(pos2, "%c", ']');
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}
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}
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if (data_len == 0 ) {
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sprintf(line[0],"<empty trace - possible error>");
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return tracepos;
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}
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// Draw the CRC column
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char *crc = (crcStatus == 0 ? "!crc" : (crcStatus == 1 ? " ok " : " "));
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EndOfTransmissionTimestamp = timestamp + duration;
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// Always annotate LEGIC read/tag
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if ( protocol == LEGIC )
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annotateLegic(explanation, sizeof(explanation), frame, data_len);
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if ( protocol == PROTO_MIFARE )
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annotateMifare(explanation, sizeof(explanation), frame, data_len, parityBytes, parity_len, isResponse);
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if (!isResponse) {
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switch(protocol) {
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case ICLASS: annotateIclass(explanation,sizeof(explanation),frame,data_len); break;
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case ISO_14443A: annotateIso14443a(explanation,sizeof(explanation),frame,data_len); break;
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case MFDES: annotateMfDesfire(explanation,sizeof(explanation),frame,data_len); break;
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case ISO_14443B: annotateIso14443b(explanation,sizeof(explanation),frame,data_len); break;
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case TOPAZ: annotateTopaz(explanation,sizeof(explanation),frame,data_len); break;
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case ISO_7816_4: annotateIso7816(explanation,sizeof(explanation),frame,data_len); break;
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case ISO_15693: annotateIso15693(explanation,sizeof(explanation),frame,data_len); break;
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case FELICA: annotateFelica(explanation,sizeof(explanation),frame,data_len); break;
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default: break;
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}
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}
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int num_lines = MIN((data_len - 1)/18 + 1, 18);
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for (int j = 0; j < num_lines ; j++) {
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if (j == 0) {
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PrintAndLogEx(NORMAL, " %10u | %10u | %s |%-72s | %s| %s",
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(timestamp - first_timestamp),
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(EndOfTransmissionTimestamp - first_timestamp),
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(isResponse ? "Tag" : "Rdr"),
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line[j],
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(j == num_lines-1) ? crc : " ",
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(j == num_lines-1) ? explanation : "");
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} else {
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PrintAndLogEx(NORMAL, " | | |%-72s | %s| %s",
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line[j],
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(j == num_lines-1) ? crc : " ",
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(j == num_lines-1) ? explanation : "");
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}
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}
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if (DecodeMifareData(frame, data_len, parityBytes, isResponse, mfData, &mfDataLen)) {
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memset(explanation, 0x00, sizeof(explanation));
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if (!isResponse) {
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annotateIso14443a(explanation, sizeof(explanation), mfData, mfDataLen);
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}
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uint8_t crcc = iso14443A_CRC_check(isResponse, mfData, mfDataLen);
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PrintAndLogEx(NORMAL, " | | * |%-72s | %-4s| %s",
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sprint_hex_inrow_spaces(mfData, mfDataLen, 2),
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(crcc == 0 ? "!crc" : (crcc == 1 ? " ok " : " ")),
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explanation);
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};
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if (is_last_record(tracepos, trace, traceLen)) return traceLen;
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if (showWaitCycles && !isResponse && next_record_is_response(tracepos, trace)) {
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uint32_t next_timestamp = *((uint32_t *)(trace + tracepos));
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PrintAndLogEx(NORMAL, " %10u | %10u | %s |fdt (Frame Delay Time): %d",
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(EndOfTransmissionTimestamp - first_timestamp),
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(next_timestamp - first_timestamp),
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" ",
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(next_timestamp - EndOfTransmissionTimestamp));
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}
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return tracepos;
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}
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void printFelica(uint16_t traceLen, uint8_t *trace) {
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PrintAndLogEx(NORMAL, " Gap | Src | Data | CRC | Annotation |");
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PrintAndLogEx(NORMAL, "--------|-----|---------------------------------|----------|-------------------|");
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uint16_t tracepos = 0;
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while( tracepos < traceLen) {
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if (tracepos + 3 >= traceLen) break;
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uint16_t gap = (uint16_t)trace[tracepos+1] + ((uint16_t)trace[tracepos] >> 8);
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uint16_t crc_ok = trace[tracepos+2];
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tracepos += 3;
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if (tracepos + 3 >= traceLen) break;
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uint16_t len = trace[tracepos+2];
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//I am stripping SYNC
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tracepos += 3; //skip SYNC
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if( tracepos + len + 1 >= traceLen) break;
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uint8_t cmd = trace[tracepos];
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uint8_t isResponse = cmd&1;
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char line[32][110];
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for (int j = 0; j < len+1 && j/8 < 32; j++) {
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snprintf(line[j/8]+(( j % 8) * 4), 110, " %02x ", trace[tracepos+j]);
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}
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char expbuf[50];
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switch(cmd) {
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case FELICA_POLL_REQ: snprintf(expbuf,49,"Poll Req");break;
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case FELICA_POLL_ACK: snprintf(expbuf,49,"Poll Resp");break;
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case FELICA_REQSRV_REQ: snprintf(expbuf,49,"Request Srvc Req");break;
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case FELICA_REQSRV_ACK: snprintf(expbuf,49,"Request Srv Resp");break;
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case FELICA_RDBLK_REQ: snprintf(expbuf,49,"Read block(s) Req");break;
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case FELICA_RDBLK_ACK: snprintf(expbuf,49,"Read block(s) Resp");break;
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case FELICA_WRTBLK_REQ: snprintf(expbuf,49,"Write block(s) Req");break;
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case FELICA_WRTBLK_ACK: snprintf(expbuf,49,"Write block(s) Resp");break;
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case FELICA_SRCHSYSCODE_REQ: snprintf(expbuf,49,"Search syscode Req");break;
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case FELICA_SRCHSYSCODE_ACK: snprintf(expbuf,49,"Search syscode Resp");break;
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case FELICA_REQSYSCODE_REQ: snprintf(expbuf,49,"Request syscode Req");break;
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case FELICA_REQSYSCODE_ACK: snprintf(expbuf,49,"Request syscode Resp");break;
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case FELICA_AUTH1_REQ: snprintf(expbuf,49,"Auth1 Req");break;
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case FELICA_AUTH1_ACK: snprintf(expbuf,49,"Auth1 Resp");break;
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case FELICA_AUTH2_REQ: snprintf(expbuf,49,"Auth2 Req");break;
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case FELICA_AUTH2_ACK: snprintf(expbuf,49,"Auth2 Resp");break;
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case FELICA_RDSEC_REQ: snprintf(expbuf,49,"Secure read Req");break;
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case FELICA_RDSEC_ACK: snprintf(expbuf,49,"Secure read Resp");break;
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case FELICA_WRTSEC_REQ: snprintf(expbuf,49,"Secure write Req");break;
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case FELICA_WRTSEC_ACK: snprintf(expbuf,49,"Secure write Resp");break;
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case FELICA_REQSRV2_REQ: snprintf(expbuf,49,"Request Srvc v2 Req");break;
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case FELICA_REQSRV2_ACK: snprintf(expbuf,49,"Request Srvc v2 Resp");break;
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case FELICA_GETSTATUS_REQ: snprintf(expbuf,49,"Get status Req");break;
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case FELICA_GETSTATUS_ACK: snprintf(expbuf,49,"Get status Resp");break;
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case FELICA_OSVER_REQ: snprintf(expbuf,49,"Get OS Version Req");break;
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case FELICA_OSVER_ACK: snprintf(expbuf,49,"Get OS Version Resp");break;
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case FELICA_RESET_MODE_REQ: snprintf(expbuf,49,"Reset mode Req");break;
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case FELICA_RESET_MODE_ACK: snprintf(expbuf,49,"Reset mode Resp");break;
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case FELICA_AUTH1V2_REQ: snprintf(expbuf,49,"Auth1 v2 Req");break;
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case FELICA_AUTH1V2_ACK: snprintf(expbuf,49,"Auth1 v2 Resp");break;
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case FELICA_AUTH2V2_REQ: snprintf(expbuf,49,"Auth2 v2 Req");break;
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case FELICA_AUTH2V2_ACK: snprintf(expbuf,49,"Auth2 v2 Resp");break;
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case FELICA_RDSECV2_REQ: snprintf(expbuf,49,"Secure read v2 Req");break;
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case FELICA_RDSECV2_ACK: snprintf(expbuf,49,"Secure read v2 Resp");break;
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case FELICA_WRTSECV2_REQ: snprintf(expbuf,49,"Secure write v2 Req");break;
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case FELICA_WRTSECV2_ACK: snprintf(expbuf,49,"Secure write v2 Resp");break;
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case FELICA_UPDATE_RNDID_REQ: snprintf(expbuf,49,"Update IDr Req");break;
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case FELICA_UPDATE_RNDID_ACK: snprintf(expbuf,49,"Update IDr Resp");break;
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default: snprintf(expbuf,49,"Unknown");break;
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}
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int num_lines = MIN((len )/16 + 1, 16);
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for (int j = 0; j < num_lines ; j++) {
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if (j == 0) {
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PrintAndLogEx(NORMAL, "%7d | %s |%-32s |%02x %02x %s| %s",
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gap,
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(isResponse ? "Tag" : "Rdr"),
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line[j],
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trace[tracepos+len],
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trace[tracepos+len+1],
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(crc_ok) ? "OK" : "NG",
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expbuf);
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} else {
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PrintAndLogEx(NORMAL, " | |%-32s | | ", line[j]);
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}
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}
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tracepos += len + 1;
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}
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PrintAndLogEx(NORMAL, "");
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}
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// sanity check. Don't use proxmark if it is offline and you didn't specify useTraceBuffer
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/*
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static int SanityOfflineCheck( bool useTraceBuffer ){
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if ( !useTraceBuffer && offline) {
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PrintAndLogEx(NORMAL, "Your proxmark3 device is offline. Specify [1] to use TraceBuffer data instead");
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return 0;
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}
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return 1;
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}
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*/
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int CmdTraceList(const char *Cmd) {
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clearCommandBuffer();
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bool showWaitCycles = false;
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bool markCRCBytes = false;
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bool isOnline = true;
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bool errors = false;
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uint8_t protocol = 0;
|
|
char type[10] = {0};
|
|
|
|
//int tlen = param_getstr(Cmd,0,type);
|
|
//char param1 = param_getchar(Cmd, 1);
|
|
//char param2 = param_getchar(Cmd, 2);
|
|
|
|
char cmdp = 0;
|
|
while (param_getchar(Cmd, cmdp) != 0x00 && !errors) {
|
|
|
|
int slen = param_getstr(Cmd, cmdp, type, sizeof(type) );
|
|
if ( slen == 1) {
|
|
|
|
switch ( tolower(param_getchar(Cmd, cmdp))) {
|
|
case 'h':
|
|
return usage_trace_list();
|
|
case 'f':
|
|
showWaitCycles = true;
|
|
cmdp++;
|
|
break;
|
|
case 'c':
|
|
markCRCBytes = true;
|
|
cmdp++;
|
|
break;
|
|
case '0':
|
|
isOnline = true;
|
|
cmdp++;
|
|
break;
|
|
case '1':
|
|
isOnline = false;
|
|
cmdp++;
|
|
break;
|
|
default:
|
|
PrintAndLogEx(WARNING, "Unknown parameter '%c'", param_getchar(Cmd, cmdp));
|
|
errors = true;
|
|
break;
|
|
}
|
|
|
|
} else {
|
|
|
|
str_lower(type);
|
|
|
|
// validate type of output
|
|
if (strcmp(type, "iclass") == 0) protocol = ICLASS;
|
|
else if(strcmp(type, "14a") == 0) protocol = ISO_14443A;
|
|
else if(strcmp(type, "14b") == 0) protocol = ISO_14443B;
|
|
else if(strcmp(type, "topaz") == 0) protocol = TOPAZ;
|
|
else if(strcmp(type, "7816") == 0) protocol = ISO_7816_4;
|
|
else if(strcmp(type, "des") == 0) protocol = MFDES;
|
|
else if(strcmp(type, "legic") == 0) protocol = LEGIC;
|
|
else if(strcmp(type, "15") == 0) protocol = ISO_15693;
|
|
else if(strcmp(type, "felica") == 0) protocol = FELICA;
|
|
else if(strcmp(type, "mf") == 0) protocol = PROTO_MIFARE;
|
|
else if(strcmp(type, "raw") == 0) protocol = -1;//No crc, no annotations
|
|
else errors = true;
|
|
|
|
cmdp++;
|
|
}
|
|
}
|
|
|
|
//if (!SanityOfflineCheck(isOnline)) return 1;
|
|
|
|
//Validations
|
|
if (errors) return usage_trace_list();
|
|
|
|
uint16_t tracepos = 0;
|
|
|
|
// reserv some space.
|
|
if (!trace)
|
|
trace = calloc(USB_CMD_DATA_SIZE, sizeof(uint8_t));
|
|
|
|
if ( isOnline ) {
|
|
// Query for the size of the trace, downloading USB_CMD_DATA_SIZE
|
|
UsbCommand response;
|
|
if ( !GetFromDevice(BIG_BUF, trace, USB_CMD_DATA_SIZE, 0, &response, 4000, true)) {
|
|
PrintAndLogEx(WARNING, "timeout while waiting for reply.");
|
|
return 1;
|
|
}
|
|
|
|
traceLen = response.arg[2];
|
|
if (traceLen > USB_CMD_DATA_SIZE) {
|
|
uint8_t *p = realloc(trace, traceLen);
|
|
if (p == NULL) {
|
|
PrintAndLogEx(FAILED, "Cannot allocate memory for trace");
|
|
free(trace);
|
|
return 2;
|
|
}
|
|
trace = p;
|
|
if ( !GetFromDevice(BIG_BUF, trace, traceLen, 0, NULL, 2500, false)) {
|
|
PrintAndLogEx(WARNING, "command execution time out");
|
|
free(trace);
|
|
return 3;
|
|
}
|
|
}
|
|
}
|
|
|
|
PrintAndLogEx(NORMAL, "Recorded Activity (TraceLen = %d bytes)", traceLen);
|
|
PrintAndLogEx(NORMAL, "");
|
|
if (protocol == FELICA) {
|
|
printFelica(traceLen, trace);
|
|
} else {
|
|
PrintAndLogEx(NORMAL, "Start = Start of Start Bit, End = End of last modulation. Src = Source of Transfer");
|
|
if ( protocol == ISO_14443A || protocol == PROTO_MIFARE)
|
|
PrintAndLogEx(NORMAL, "iso14443a - All times are in carrier periods (1/13.56Mhz)");
|
|
if ( protocol == ICLASS )
|
|
PrintAndLogEx(NORMAL, "iClass - Timings are not as accurate");
|
|
if ( protocol == LEGIC )
|
|
PrintAndLogEx(NORMAL, "LEGIC - Reader Mode: Timings are in ticks (1us == 1.5ticks)\n"
|
|
" Tag Mode: Timings are in sub carrier periods (1/212 kHz == 4.7us)");
|
|
if ( protocol == ISO_15693 )
|
|
PrintAndLogEx(NORMAL, "ISO15693 - Timings are not as accurate");
|
|
if ( protocol == FELICA )
|
|
PrintAndLogEx(NORMAL, "ISO18092 / FeliCa - Timings are not as accurate");
|
|
|
|
PrintAndLogEx(NORMAL, "");
|
|
PrintAndLogEx(NORMAL, " Start | End | Src | Data (! denotes parity error) | CRC | Annotation");
|
|
PrintAndLogEx(NORMAL, "------------+------------+-----+-------------------------------------------------------------------------+-----+--------------------");
|
|
|
|
ClearAuthData();
|
|
while (tracepos < traceLen) {
|
|
tracepos = printTraceLine(tracepos, traceLen, trace, protocol, showWaitCycles, markCRCBytes);
|
|
}
|
|
}
|
|
return 0;
|
|
}
|
|
|
|
int CmdTraceLoad(const char *Cmd) {
|
|
|
|
FILE *f = NULL;
|
|
char filename[FILE_PATH_SIZE];
|
|
char cmdp = param_getchar(Cmd, 0);
|
|
if (strlen(Cmd) < 1 || cmdp == 'h' || cmdp == 'H') return usage_trace_load();
|
|
|
|
param_getstr(Cmd, 0, filename, sizeof(filename));
|
|
|
|
if ((f = fopen(filename, "rb")) == NULL) {
|
|
PrintAndLogEx(FAILED, "Could not open file %s", filename);
|
|
return 0;
|
|
}
|
|
|
|
// get filesize in order to malloc memory
|
|
fseek(f, 0, SEEK_END);
|
|
long fsize = ftell(f);
|
|
fseek(f, 0, SEEK_SET);
|
|
|
|
if (fsize < 0) {
|
|
PrintAndLogEx(FAILED, "error, when getting filesize");
|
|
fclose(f);
|
|
return 3;
|
|
}
|
|
if (fsize < 4 ) {
|
|
PrintAndLogEx(FAILED, "error, file is too small");
|
|
fclose(f);
|
|
return 4;
|
|
}
|
|
|
|
if ( trace )
|
|
free(trace);
|
|
|
|
trace = calloc(fsize, sizeof(uint8_t));
|
|
if (!trace) {
|
|
PrintAndLogEx(FAILED, "Cannot allocate memory for trace");
|
|
fclose(f);
|
|
return 2;
|
|
}
|
|
|
|
size_t bytes_read = fread(trace, 1, fsize, f);
|
|
traceLen = bytes_read;
|
|
fclose(f);
|
|
PrintAndLogEx(SUCCESS, "Recorded Activity (TraceLen = %d bytes) loaded from file %s", traceLen, filename);
|
|
return 0;
|
|
}
|
|
|
|
int CmdTraceSave(const char *Cmd) {
|
|
|
|
if (traceLen == 0 ) {
|
|
PrintAndLogEx(WARNING, "trace is empty, exiting...");
|
|
return 0;
|
|
}
|
|
|
|
char filename[FILE_PATH_SIZE];
|
|
char cmdp = param_getchar(Cmd, 0);
|
|
if (strlen(Cmd) < 1 || cmdp == 'h' || cmdp == 'H') return usage_trace_save();
|
|
|
|
param_getstr(Cmd, 0, filename, sizeof(filename));
|
|
saveFile(filename, "bin", trace, traceLen);
|
|
return 0;
|
|
}
|
|
|
|
static command_t CommandTable[] = {
|
|
{"help", CmdHelp, 1, "This help"},
|
|
{"list", CmdTraceList, 1, "List protocol data in trace buffer"},
|
|
{"load", CmdTraceLoad, 1, "Load trace from file"},
|
|
{"save", CmdTraceSave, 1, "Save trace buffer to file"},
|
|
{NULL, NULL, 0, NULL}
|
|
};
|
|
|
|
int CmdTrace(const char *Cmd) {
|
|
clearCommandBuffer();
|
|
CmdsParse(CommandTable, Cmd);
|
|
return 0;
|
|
}
|
|
|
|
int CmdHelp(const char *Cmd) {
|
|
CmdsHelp(CommandTable);
|
|
return 0;
|
|
}
|