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498 lines
13 KiB
C
498 lines
13 KiB
C
//-----------------------------------------------------------------------------
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// Copyright (C) 2010 iZsh <izsh at fail0verflow.com>, Hagen Fritsch
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// Copyright (C) 2011 Gerhard de Koning Gans
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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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// High frequency iClass commands
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//-----------------------------------------------------------------------------
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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 <sys/stat.h>
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#include "iso14443crc.h" // Can also be used for iClass, using 0xE012 as CRC-type
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#include "data.h"
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//#include "proxusb.h"
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#include "proxmark3.h"
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#include "ui.h"
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#include "cmdparser.h"
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#include "cmdhficlass.h"
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#include "common.h"
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#include "util.h"
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#include "cmdmain.h"
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static int CmdHelp(const char *Cmd);
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int xorbits_8(uint8_t val)
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{
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uint8_t res = val ^ (val >> 1); //1st pass
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res = res ^ (res >> 1); // 2nd pass
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res = res ^ (res >> 2); // 3rd pass
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res = res ^ (res >> 4); // 4th pass
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return res & 1;
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}
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int CmdHFiClassList(const char *Cmd)
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{
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bool ShowWaitCycles = false;
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char param = param_getchar(Cmd, 0);
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if (param != 0) {
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PrintAndLog("List data in trace buffer.");
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PrintAndLog("Usage: hf iclass list");
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PrintAndLog("h - help");
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PrintAndLog("sample: hf iclass list");
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return 0;
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}
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uint8_t got[1920];
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GetFromBigBuf(got,sizeof(got),0);
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WaitForResponse(CMD_ACK,NULL);
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PrintAndLog("Recorded Activity");
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PrintAndLog("");
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PrintAndLog("Start = Start of Start Bit, End = End of last modulation. Src = Source of Transfer");
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PrintAndLog("All times are in carrier periods (1/13.56Mhz)");
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PrintAndLog("");
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PrintAndLog(" Start | End | Src | Data");
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PrintAndLog("-----------|-----------|-----|--------");
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int i;
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uint32_t first_timestamp = 0;
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uint32_t timestamp;
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bool tagToReader;
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uint32_t parityBits;
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uint8_t len;
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uint8_t *frame;
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uint32_t EndOfTransmissionTimestamp = 0;
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for( i=0; i < 1900;)
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{
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//First 32 bits contain
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// isResponse (1 bit)
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// timestamp (remaining)
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//Then paritybits
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//Then length
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timestamp = *((uint32_t *)(got+i));
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parityBits = *((uint32_t *)(got+i+4));
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len = got[i+8];
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frame = (got+i+9);
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uint32_t next_timestamp = (*((uint32_t *)(got+i+9))) & 0x7fffffff;
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tagToReader = timestamp & 0x80000000;
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timestamp &= 0x7fffffff;
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if(i==0) {
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first_timestamp = timestamp;
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}
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// Break and stick with current result if buffer was not completely full
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if (frame[0] == 0x44 && frame[1] == 0x44 && frame[2] == 0x44 && frame[3] == 0x44) break;
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char line[1000] = "";
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if(len)//We have some data to display
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{
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int j,oddparity;
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for(j = 0; j < len ; j++)
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{
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oddparity = 0x01 ^ xorbits_8(frame[j] & 0xFF);
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if (tagToReader && (oddparity != ((parityBits >> (len - j - 1)) & 0x01))) {
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sprintf(line+(j*4), "%02x! ", frame[j]);
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} else {
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sprintf(line+(j*4), "%02x ", frame[j]);
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}
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}
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}else
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{
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if (ShowWaitCycles) {
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sprintf(line, "fdt (Frame Delay Time): %d", (next_timestamp - timestamp));
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}
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}
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char *crc = "";
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if(len > 2)
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{
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uint8_t b1, b2;
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if(!tagToReader && len == 4) {
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// Rough guess that this is a command from the reader
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// For iClass the command byte is not part of the CRC
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ComputeCrc14443(CRC_ICLASS, &frame[1], len-3, &b1, &b2);
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}
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else {
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// For other data.. CRC might not be applicable (UPDATE commands etc.)
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ComputeCrc14443(CRC_ICLASS, frame, len-2, &b1, &b2);
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}
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if (b1 != frame[len-2] || b2 != frame[len-1]) {
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crc = (tagToReader & (len < 8)) ? "" : " !crc";
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}
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}
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i += (len + 9);
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EndOfTransmissionTimestamp = (*((uint32_t *)(got+i))) & 0x7fffffff;
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// Not implemented for iclass on the ARM-side
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//if (!ShowWaitCycles) i += 9;
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PrintAndLog(" %9d | %9d | %s | %s %s",
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(timestamp - first_timestamp),
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(EndOfTransmissionTimestamp - first_timestamp),
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(len?(tagToReader ? "Tag" : "Rdr"):" "),
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line, crc);
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}
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return 0;
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}
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int CmdHFiClassListOld(const char *Cmd)
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{
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uint8_t got[1920];
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GetFromBigBuf(got,sizeof(got),0);
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PrintAndLog("recorded activity:");
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PrintAndLog(" ETU :rssi: who bytes");
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PrintAndLog("---------+----+----+-----------");
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int i = 0;
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int prev = -1;
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for (;;) {
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if(i >= 1900) {
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break;
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}
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bool isResponse;
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int timestamp = *((uint32_t *)(got+i));
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if (timestamp & 0x80000000) {
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timestamp &= 0x7fffffff;
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isResponse = 1;
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} else {
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isResponse = 0;
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}
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int metric = 0;
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int parityBits = *((uint32_t *)(got+i+4));
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// 4 bytes of additional information...
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// maximum of 32 additional parity bit information
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//
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// TODO:
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// at each quarter bit period we can send power level (16 levels)
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// or each half bit period in 256 levels.
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int len = got[i+8];
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if (len > 100) {
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break;
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}
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if (i + len >= 1900) {
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break;
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}
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uint8_t *frame = (got+i+9);
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// Break and stick with current result if buffer was not completely full
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if (frame[0] == 0x44 && frame[1] == 0x44 && frame[3] == 0x44) { break; }
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char line[1000] = "";
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int j;
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for (j = 0; j < len; j++) {
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int oddparity = 0x01;
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int k;
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for (k=0;k<8;k++) {
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oddparity ^= (((frame[j] & 0xFF) >> k) & 0x01);
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}
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//if((parityBits >> (len - j - 1)) & 0x01) {
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if (isResponse && (oddparity != ((parityBits >> (len - j - 1)) & 0x01))) {
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sprintf(line+(j*4), "%02x! ", frame[j]);
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}
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else {
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sprintf(line+(j*4), "%02x ", frame[j]);
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}
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}
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char *crc;
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crc = "";
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if (len > 2) {
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uint8_t b1, b2;
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for (j = 0; j < (len - 1); j++) {
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// gives problems... search for the reason..
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/*if(frame[j] == 0xAA) {
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switch(frame[j+1]) {
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case 0x01:
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crc = "[1] Two drops close after each other";
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break;
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case 0x02:
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crc = "[2] Potential SOC with a drop in second half of bitperiod";
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break;
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case 0x03:
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crc = "[3] Segment Z after segment X is not possible";
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break;
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case 0x04:
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crc = "[4] Parity bit of a fully received byte was wrong";
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break;
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default:
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crc = "[?] Unknown error";
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break;
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}
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break;
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}*/
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}
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if (strlen(crc)==0) {
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if(!isResponse && len == 4) {
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// Rough guess that this is a command from the reader
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// For iClass the command byte is not part of the CRC
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ComputeCrc14443(CRC_ICLASS, &frame[1], len-3, &b1, &b2);
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}
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else {
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// For other data.. CRC might not be applicable (UPDATE commands etc.)
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ComputeCrc14443(CRC_ICLASS, frame, len-2, &b1, &b2);
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}
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//printf("%1x %1x",(unsigned)b1,(unsigned)b2);
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if (b1 != frame[len-2] || b2 != frame[len-1]) {
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crc = (isResponse & (len < 8)) ? "" : " !crc";
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} else {
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crc = "";
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}
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}
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} else {
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crc = ""; // SHORT
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}
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char metricString[100];
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if (isResponse) {
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sprintf(metricString, "%3d", metric);
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} else {
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strcpy(metricString, " ");
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}
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PrintAndLog(" +%7d: %s: %s %s %s",
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(prev < 0 ? 0 : (timestamp - prev)),
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metricString,
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(isResponse ? "TAG" : " "), line, crc);
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prev = timestamp;
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i += (len + 9);
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}
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return 0;
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}
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/*void iso14a_set_timeout(uint32_t timeout) {
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UsbCommand c = {CMD_READER_ISO_14443a, {ISO14A_SET_TIMEOUT, 0, timeout}};
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SendCommand(&c);
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}*/
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int CmdHFiClassSnoop(const char *Cmd)
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{
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UsbCommand c = {CMD_SNOOP_ICLASS};
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SendCommand(&c);
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return 0;
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}
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int CmdHFiClassSim(const char *Cmd)
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{
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uint8_t simType = 0;
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uint8_t CSN[8] = {0, 0, 0, 0, 0, 0, 0, 0};
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if (strlen(Cmd)<1) {
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PrintAndLog("Usage: hf iclass sim [0 <CSN>] | x");
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PrintAndLog(" options");
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PrintAndLog(" 0 <CSN> simulate the given CSN");
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PrintAndLog(" 1 simulate default CSN");
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PrintAndLog(" 2 iterate CSNs, gather MACs");
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PrintAndLog(" sample: hf iclass sim 0 031FEC8AF7FF12E0");
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PrintAndLog(" sample: hf iclass sim 2");
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return 0;
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}
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simType = param_get8(Cmd, 0);
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if(simType == 0)
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{
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if (param_gethex(Cmd, 1, CSN, 16)) {
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PrintAndLog("A CSN should consist of 16 HEX symbols");
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return 1;
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}
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PrintAndLog("--simtype:%02x csn:%s", simType, sprint_hex(CSN, 8));
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}
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if(simType > 2)
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{
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PrintAndLog("Undefined simptype %d", simType);
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return 1;
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}
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uint8_t numberOfCSNs=0;
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if(simType == 2)
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{
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UsbCommand c = {CMD_SIMULATE_TAG_ICLASS, {simType,63}};
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UsbCommand resp = {0};
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uint8_t csns[64] = {
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0x00,0x0B,0x0F,0xFF,0xF7,0xFF,0x12,0xE0 ,
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0x00,0x13,0x94,0x7e,0x76,0xff,0x12,0xe0 ,
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0x2a,0x99,0xac,0x79,0xec,0xff,0x12,0xe0 ,
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0x17,0x12,0x01,0xfd,0xf7,0xff,0x12,0xe0 ,
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0xcd,0x56,0x01,0x7c,0x6f,0xff,0x12,0xe0 ,
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0x4b,0x5e,0x0b,0x72,0xef,0xff,0x12,0xe0 ,
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0x00,0x73,0xd8,0x75,0x58,0xff,0x12,0xe0 ,
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0x0c,0x90,0x32,0xf3,0x5d,0xff,0x12,0xe0 };
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memcpy(c.d.asBytes, csns, 64);
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SendCommand(&c);
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if (!WaitForResponseTimeout(CMD_ACK, &resp, -1)) {
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PrintAndLog("Command timed out");
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return 0;
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}
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uint8_t num_mac_responses = resp.arg[1];
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PrintAndLog("Mac responses: %d MACs obtained (should be 8)", num_mac_responses);
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size_t datalen = 8*24;
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/*
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* Now, time to dump to file. We'll use this format:
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* <8-byte CSN><8-byte CC><4 byte NR><4 byte MAC>....
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* So, it should wind up as
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* 8 * 24 bytes.
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*
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* The returndata from the pm3 is on the following format
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* <4 byte NR><4 byte MAC>
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* CC are all zeroes, CSN is the same as was sent in
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**/
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void* dump = malloc(datalen);
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memset(dump,0,datalen);//<-- Need zeroes for the CC-field
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uint8_t i = 0;
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for(i = 0 ; i < 8 ; i++)
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{
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memcpy(dump+i*24, csns+i*8,8); //CSN
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//8 zero bytes here...
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//Then comes NR_MAC (eight bytes from the response)
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memcpy(dump+i*24+16,resp.d.asBytes+i*8,8);
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}
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/** Now, save to dumpfile **/
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saveFile("iclass_mac_attack", "bin", dump,datalen);
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free(dump);
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}else
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{
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UsbCommand c = {CMD_SIMULATE_TAG_ICLASS, {simType,numberOfCSNs}};
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memcpy(c.d.asBytes, CSN, 8);
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SendCommand(&c);
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}
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return 0;
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}
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int CmdHFiClassReader(const char *Cmd)
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{
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uint8_t readerType = 0;
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if (strlen(Cmd)<1) {
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PrintAndLog("Usage: hf iclass reader <reader type>");
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PrintAndLog(" sample: hf iclass reader 0");
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return 0;
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}
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readerType = param_get8(Cmd, 0);
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PrintAndLog("--readertype:%02x", readerType);
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UsbCommand c = {CMD_READER_ICLASS, {readerType}};
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//memcpy(c.d.asBytes, CSN, 8);
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SendCommand(&c);
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/*UsbCommand * resp = WaitForResponseTimeout(CMD_ACK, 1500);
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if (resp != NULL) {
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uint8_t isOK = resp->arg[0] & 0xff;
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PrintAndLog("isOk:%02x", isOK);
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} else {
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PrintAndLog("Command execute timeout");
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}*/
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return 0;
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}
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static command_t CommandTable[] =
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{
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{"help", CmdHelp, 1, "This help"},
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{"list", CmdHFiClassList, 0, "List iClass history"},
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{"snoop", CmdHFiClassSnoop, 0, "Eavesdrop iClass communication"},
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{"sim", CmdHFiClassSim, 0, "Simulate iClass tag"},
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{"reader", CmdHFiClassReader, 0, "Read an iClass tag"},
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{NULL, NULL, 0, NULL}
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};
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int CmdHFiClass(const char *Cmd)
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{
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CmdsParse(CommandTable, Cmd);
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return 0;
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}
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int CmdHelp(const char *Cmd)
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{
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CmdsHelp(CommandTable);
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return 0;
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}
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/**
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* @brief checks if a file exists
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* @param filename
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* @return
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*/
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int fileExists(const char *filename) {
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struct stat st;
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int result = stat(filename, &st);
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return result == 0;
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}
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/**
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* @brief Utility function to save data to a file. This method takes a preferred name, but if that
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* file already exists, it tries with another name until it finds something suitable.
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* E.g. dumpdata-15.txt
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* @param preferredName
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* @param suffix the file suffix. Leave out the ".".
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* @param data The binary data to write to the file
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* @param datalen the length of the data
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* @return 0 for ok, 1 for failz
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*/
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int saveFile(const char *preferredName, const char *suffix, const void* data, size_t datalen)
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{
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FILE *f = fopen(preferredName, "wb");
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int size = sizeof(char) * (strlen(preferredName)+strlen(suffix)+5);
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char * fileName = malloc(size);
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memset(fileName,0,size);
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int num = 1;
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sprintf(fileName,"%s.%s", preferredName, suffix);
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while(fileExists(fileName))
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{
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sprintf(fileName,"%s-%d.%s", preferredName, num, suffix);
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num++;
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}
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/* We should have a valid filename now, e.g. dumpdata-3.bin */
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/*Opening file for writing in binary mode*/
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FILE *fileHandle=fopen(fileName,"wb");
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if(!f) {
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PrintAndLog("Failed to write to file '%s'", fileName);
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return 0;
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}
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fwrite(data, 1, datalen, fileHandle);
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fclose(fileHandle);
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PrintAndLog("Saved data to '%s'", fileName);
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free(fileName);
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return 0;
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}
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