1 //----------------------------------------------------------------------------- 
   2 // Copyright (C) 2010 iZsh <izsh at fail0verflow.com> 
   4 // This code is licensed to you under the terms of the GNU GPL, version 2 or, 
   5 // at your option, any later version. See the LICENSE.txt file for the text of 
   7 //----------------------------------------------------------------------------- 
   8 // Data and Graph commands 
   9 //----------------------------------------------------------------------------- 
  11 #include <stdio.h>    // also included in util.h 
  12 #include <string.h>   // also included in util.h 
  14 #include <limits.h>   // for CmdNorm INT_MIN && INT_MAX 
  15 #include "data.h"     // also included in util.h 
  19 #include "proxmark3.h" 
  20 #include "ui.h"       // for show graph controls 
  21 #include "graph.h"    // for graph data 
  22 #include "cmdparser.h"// already included in cmdmain.h 
  23 #include "usb_cmd.h"  // already included in cmdmain.h and proxmark3.h 
  24 #include "lfdemod.h"  // for demod code 
  25 #include "crc.h"      // for pyramid checksum maxim 
  26 #include "crc16.h"    // for FDXB demod checksum 
  27 #include "loclass/cipherutils.h" // for decimating samples in getsamples 
  28 #include "cmdlfem4x.h"// for em410x demod 
  30 uint8_t DemodBuffer
[MAX_DEMOD_BUF_LEN
]; 
  31 uint8_t g_debugMode
=0; 
  32 size_t DemodBufferLen
=0; 
  33 //size_t g_demodStartIdx=0; 
  34 //uint8_t g_demodClock=0; 
  36 static int CmdHelp(const char *Cmd
); 
  38 //set the demod buffer with given array of binary (one bit per byte) 
  40 void setDemodBuf(uint8_t *buff
, size_t size
, size_t startIdx
) 
  45         if ( size 
>= MAX_DEMOD_BUF_LEN
) 
  46                 size 
= MAX_DEMOD_BUF_LEN
; 
  49         for (; i 
< size
; i
++){ 
  50                 DemodBuffer
[i
]=buff
[startIdx
++]; 
  56 int CmdSetDebugMode(const char *Cmd
) 
  59         sscanf(Cmd
, "%i", &demod
); 
  60         g_debugMode
=(uint8_t)demod
; 
  64 int usage_data_printdemodbuf(){ 
  65                 PrintAndLog("Usage: data printdemodbuffer x o <offset> l <length>"); 
  66                 PrintAndLog("Options:        "); 
  67                 PrintAndLog("       h          This help"); 
  68                 PrintAndLog("       x          output in hex (omit for binary output)"); 
  69                 PrintAndLog("       o <offset> enter offset in # of bits"); 
  70                 PrintAndLog("       l <length> enter length to print in # of bits or hex characters respectively"); 
  75 void printDemodBuff(void) 
  77         int bitLen 
= DemodBufferLen
; 
  79                 PrintAndLog("no bits found in demod buffer"); 
  82         if (bitLen
>512) bitLen
=512; //max output to 512 bits if we have more - should be plenty 
  84         char *bin 
= sprint_bin_break(DemodBuffer
,bitLen
,16); 
  85         PrintAndLog("%s",bin
); 
  90 int CmdPrintDemodBuff(const char *Cmd
) 
  95         uint32_t offset 
= 0; //could be size_t but no param_get16... 
  96         uint32_t length 
= 512; 
  98         while(param_getchar(Cmd
, cmdp
) != 0x00) 
 100                 switch(param_getchar(Cmd
, cmdp
)) 
 104                         return usage_data_printdemodbuf(); 
 112                         offset 
= param_get32ex(Cmd
, cmdp
+1, 0, 10); 
 113                         if (!offset
) errors 
= true; 
 118                         length 
= param_get32ex(Cmd
, cmdp
+1, 512, 10); 
 119                         if (!length
) errors 
= true; 
 123                         PrintAndLog("Unknown parameter '%c'", param_getchar(Cmd
, cmdp
)); 
 130         if(errors
) return usage_data_printdemodbuf(); 
 131         length 
= (length 
> (DemodBufferLen
-offset
)) ? DemodBufferLen
-offset 
: length
;  
 132         int numBits 
= (length
) & 0x00FFC; //make sure we don't exceed our string 
 135                 char *buf 
= (char *) (DemodBuffer 
+ offset
); 
 136                 numBits 
= (numBits 
> sizeof(hex
)) ? sizeof(hex
) : numBits
; 
 137                 numBits 
= binarraytohex(hex
, buf
, numBits
); 
 138                 if (numBits
==0) return 0; 
 139                 PrintAndLog("DemodBuffer: %s",hex
);              
 141                 PrintAndLog("DemodBuffer:\n%s", sprint_bin_break(DemodBuffer
+offset
,numBits
,16)); 
 147 //this function strictly converts >1 to 1 and <1 to 0 for each sample in the graphbuffer 
 148 int CmdGetBitStream(const char *Cmd
) 
 152         for (i 
= 0; i 
< GraphTraceLen
; i
++) { 
 153                 if (GraphBuffer
[i
] >= 1) { 
 159         RepaintGraphWindow(); 
 164 //Cmd Args: Clock, invert, maxErr, maxLen as integers and amplify as char == 'a' 
 165 //   (amp may not be needed anymore) 
 166 //verbose will print results and demoding messages 
 167 //emSearch will auto search for EM410x format in bitstream 
 168 //askType switches decode: ask/raw = 0, ask/manchester = 1  
 169 int ASKDemod_ext(const char *Cmd
, bool verbose
, bool emSearch
, uint8_t askType
, bool *stCheck
) { 
 175         char amp 
= param_getchar(Cmd
, 0); 
 176         uint8_t BitStream
[MAX_GRAPH_TRACE_LEN
]={0}; 
 177         sscanf(Cmd
, "%i %i %i %i %c", &clk
, &invert
, &maxErr
, &maxLen
, &
); 
 178         if (!maxLen
) maxLen 
= BIGBUF_SIZE
; 
 179         if (invert 
!= 0 && invert 
!= 1) { 
 180                 PrintAndLog("Invalid argument: %s", Cmd
); 
 187         size_t BitLen 
= getFromGraphBuf(BitStream
); 
 188         if (g_debugMode
) PrintAndLog("DEBUG: Bitlen from grphbuff: %d",BitLen
); 
 189         if (BitLen 
< 255) return 0; 
 190         if (maxLen 
< BitLen 
&& maxLen 
!= 0) BitLen 
= maxLen
; 
 192         //amp before ST check 
 193         if (amp 
== 'a' || amp 
== 'A') { 
 194                 askAmp(BitStream
, BitLen
);  
 197         size_t ststart 
= 0, stend 
= 0; 
 198         if (*stCheck
) st 
= DetectST_ext(BitStream
, &BitLen
, &foundclk
, &ststart
, &stend
); 
 201                 clk 
= (clk 
== 0) ? foundclk 
: clk
; 
 202                 CursorCPos 
= ststart
; 
 204                 if (verbose 
|| g_debugMode
) PrintAndLog("\nFound Sequence Terminator - First one is shown by orange and blue graph markers"); 
 206         int errCnt 
= askdemod(BitStream
, &BitLen
, &clk
, &invert
, maxErr
, askamp
, askType
); 
 207         if (errCnt
<0 || BitLen
<16){  //if fatal error (or -1) 
 208                 if (g_debugMode
) PrintAndLog("DEBUG: no data found %d, errors:%d, bitlen:%d, clock:%d",errCnt
,invert
,BitLen
,clk
); 
 211         if (errCnt 
> maxErr
){ 
 212                 if (g_debugMode
) PrintAndLog("DEBUG: Too many errors found, errors:%d, bits:%d, clock:%d",errCnt
, BitLen
, clk
); 
 215         if (verbose 
|| g_debugMode
) PrintAndLog("\nUsing Clock:%d, Invert:%d, Bits Found:%d",clk
,invert
,BitLen
); 
 218         setDemodBuf(BitStream
,BitLen
,0); 
 219         if (verbose 
|| g_debugMode
){ 
 220                 if (errCnt
>0) PrintAndLog("# Errors during Demoding (shown as 7 in bit stream): %d",errCnt
); 
 221                 if (askType
) PrintAndLog("ASK/Manchester - Clock: %d - Decoded bitstream:",clk
); 
 222                 else PrintAndLog("ASK/Raw - Clock: %d - Decoded bitstream:",clk
); 
 223                 // Now output the bitstream to the scrollback by line of 16 bits 
 230                 AskEm410xDecode(true, &hi
, &lo
); 
 234 int ASKDemod(const char *Cmd
, bool verbose
, bool emSearch
, uint8_t askType
) { 
 236         return ASKDemod_ext(Cmd
, verbose
, emSearch
, askType
, &st
); 
 240 //takes 5 arguments - clock, invert, maxErr, maxLen as integers and amplify as char == 'a' 
 241 //attempts to demodulate ask while decoding manchester 
 242 //prints binary found and saves in graphbuffer for further commands 
 243 int Cmdaskmandemod(const char *Cmd
) 
 245         char cmdp 
= param_getchar(Cmd
, 0); 
 246         if (strlen(Cmd
) > 45 || cmdp 
== 'h' || cmdp 
== 'H') { 
 247                 PrintAndLog("Usage:  data rawdemod am <s> [clock] <invert> [maxError] [maxLen] [amplify]"); 
 248                 PrintAndLog("     ['s'] optional, check for Sequence Terminator"); 
 249                 PrintAndLog("     [set clock as integer] optional, if not set, autodetect"); 
 250                 PrintAndLog("     <invert>, 1 to invert output"); 
 251                 PrintAndLog("     [set maximum allowed errors], default = 100"); 
 252                 PrintAndLog("     [set maximum Samples to read], default = 32768 (512 bits at rf/64)"); 
 253                 PrintAndLog("     <amplify>, 'a' to attempt demod with ask amplification, default = no amp"); 
 255                 PrintAndLog("    sample: data rawdemod am        = demod an ask/manchester tag from GraphBuffer"); 
 256                 PrintAndLog("          : data rawdemod am 32     = demod an ask/manchester tag from GraphBuffer using a clock of RF/32"); 
 257                 PrintAndLog("          : data rawdemod am 32 1   = demod an ask/manchester tag from GraphBuffer using a clock of RF/32 and inverting data"); 
 258                 PrintAndLog("          : data rawdemod am 1      = demod an ask/manchester tag from GraphBuffer while inverting data"); 
 259                 PrintAndLog("          : data rawdemod am 64 1 0 = demod an ask/manchester tag from GraphBuffer using a clock of RF/64, inverting data and allowing 0 demod errors"); 
 264                 return ASKDemod_ext(Cmd
++, true, true, 1, &st
); 
 265         else if (Cmd
[1] == 's') 
 266                 return ASKDemod_ext(Cmd
+=2, true, true, 1, &st
); 
 268                 return ASKDemod(Cmd
, true, true, 1); 
 273 //stricktly take 10 and 01 and convert to 0 and 1 
 274 int Cmdmandecoderaw(const char *Cmd
) 
 281         char cmdp 
= param_getchar(Cmd
, 0); 
 282         if (strlen(Cmd
) > 5 || cmdp 
== 'h' || cmdp 
== 'H') { 
 283                 PrintAndLog("Usage:  data manrawdecode [invert] [maxErr]"); 
 284                 PrintAndLog("     Takes 10 and 01 and converts to 0 and 1 respectively"); 
 285                 PrintAndLog("     --must have binary sequence in demodbuffer (run data askrawdemod first)"); 
 286                 PrintAndLog("  [invert]  invert output");                
 287                 PrintAndLog("  [maxErr]  set number of errors allowed (default = 20)");          
 289                 PrintAndLog("    sample: data manrawdecode   = decode manchester bitstream from the demodbuffer"); 
 292         if (DemodBufferLen
==0) return 0; 
 293         uint8_t BitStream
[MAX_GRAPH_TRACE_LEN
]={0}; 
 295         for (;i
<DemodBufferLen
;++i
){ 
 296                 if (DemodBuffer
[i
]>high
) high
=DemodBuffer
[i
]; 
 297                 else if(DemodBuffer
[i
]<low
) low
=DemodBuffer
[i
]; 
 298                 BitStream
[i
]=DemodBuffer
[i
]; 
 300         if (high
>7 || low 
<0 ){ 
 301                 PrintAndLog("Error: please raw demod the wave first then manchester raw decode"); 
 305         sscanf(Cmd
, "%i %i", &invert
, &maxErr
); 
 307         uint8_t alignPos 
= 0; 
 308         errCnt
=manrawdecode(BitStream
, &size
, invert
, &alignPos
); 
 310                 PrintAndLog("Too many errors: %d",errCnt
); 
 313         PrintAndLog("Manchester Decoded - # errors:%d - data:",errCnt
); 
 314         PrintAndLog("%s", sprint_bin_break(BitStream
, size
, 16)); 
 319                 if (Em410xDecode(BitStream
, &size
, &idx
, &hi
, &id
)){ 
 320                         //need to adjust to set bitstream back to manchester encoded data 
 321                         //setDemodBuf(BitStream, size, idx); 
 331 //take 01 or 10 = 0 and 11 or 00 = 1 
 332 //takes 2 arguments "offset" default = 0 if 1 it will shift the decode by one bit 
 333 // and "invert" default = 0 if 1 it will invert output 
 334 //  the argument offset allows us to manually shift if the output is incorrect - [EDIT: now auto detects] 
 335 int CmdBiphaseDecodeRaw(const char *Cmd
) 
 338         int offset
=0, invert
=0, maxErr
=20, errCnt
=0; 
 339         char cmdp 
= param_getchar(Cmd
, 0); 
 340         if (strlen(Cmd
) > 3 || cmdp 
== 'h' || cmdp 
== 'H') { 
 341                 PrintAndLog("Usage:  data biphaserawdecode [offset] [invert] [maxErr]"); 
 342                 PrintAndLog("     Converts 10 or 01 to 1 and 11 or 00 to 0"); 
 343                 PrintAndLog("     --must have binary sequence in demodbuffer (run data askrawdemod first)"); 
 344                 PrintAndLog("     --invert for Conditional Dephase Encoding (CDP) AKA Differential Manchester"); 
 346                 PrintAndLog("     [offset <0|1>], set to 0 not to adjust start position or to 1 to adjust decode start position"); 
 347                 PrintAndLog("     [invert <0|1>], set to 1 to invert output"); 
 348                 PrintAndLog("     [maxErr int],   set max errors tolerated - default=20"); 
 350                 PrintAndLog("    sample: data biphaserawdecode     = decode biphase bitstream from the demodbuffer"); 
 351                 PrintAndLog("    sample: data biphaserawdecode 1 1 = decode biphase bitstream from the demodbuffer, set offset, and invert output"); 
 354         sscanf(Cmd
, "%i %i %i", &offset
, &invert
, &maxErr
); 
 355         if (DemodBufferLen
==0){ 
 356                 PrintAndLog("DemodBuffer Empty - run 'data rawdemod ar' first"); 
 359         uint8_t BitStream
[MAX_GRAPH_TRACE_LEN
]={0}; 
 360         memcpy(BitStream
, DemodBuffer
, DemodBufferLen
);  
 361         size 
= DemodBufferLen
; 
 362         errCnt
=BiphaseRawDecode(BitStream
, &size
, offset
, invert
); 
 364                 PrintAndLog("Error during decode:%d", errCnt
); 
 368                 PrintAndLog("Too many errors attempting to decode: %d",errCnt
); 
 373                 PrintAndLog("# Errors found during Demod (shown as 7 in bit stream): %d",errCnt
); 
 375         PrintAndLog("Biphase Decoded using offset: %d - # invert:%d - data:",offset
,invert
); 
 376         PrintAndLog("%s", sprint_bin_break(BitStream
, size
, 16)); 
 378         if (offset
) setDemodBuf(DemodBuffer
,DemodBufferLen
-offset
, offset
);  //remove first bit from raw demod 
 383 // - ASK Demod then Biphase decode GraphBuffer samples 
 384 int ASKbiphaseDemod(const char *Cmd
, bool verbose
) 
 386         //ask raw demod GraphBuffer first 
 387         int offset
=0, clk
=0, invert
=0, maxErr
=0; 
 388         sscanf(Cmd
, "%i %i %i %i", &offset
, &clk
, &invert
, &maxErr
); 
 390         uint8_t BitStream
[MAX_DEMOD_BUF_LEN
];      
 391         size_t size 
= getFromGraphBuf(BitStream
);          
 392         //invert here inverts the ask raw demoded bits which has no effect on the demod, but we need the pointer 
 393         int errCnt 
= askdemod(BitStream
, &size
, &clk
, &invert
, maxErr
, 0, 0);   
 394         if ( errCnt 
< 0 || errCnt 
> maxErr 
) {    
 395                 if (g_debugMode
) PrintAndLog("DEBUG: no data or error found %d, clock: %d", errCnt
, clk
);   
 399         //attempt to Biphase decode BitStream 
 400         errCnt 
= BiphaseRawDecode(BitStream
, &size
, offset
, invert
); 
 402                 if (g_debugMode 
|| verbose
) PrintAndLog("Error BiphaseRawDecode: %d", errCnt
); 
 405         if (errCnt 
> maxErr
) { 
 406                 if (g_debugMode 
|| verbose
) PrintAndLog("Error BiphaseRawDecode too many errors: %d", errCnt
); 
 409         //success set DemodBuffer and return 
 410         setDemodBuf(BitStream
, size
, 0); 
 411         if (g_debugMode 
|| verbose
){ 
 412                 PrintAndLog("Biphase Decoded using offset: %d - clock: %d - # errors:%d - data:",offset
,clk
,errCnt
); 
 417 //by marshmellow - see ASKbiphaseDemod 
 418 int Cmdaskbiphdemod(const char *Cmd
) 
 420         char cmdp 
= param_getchar(Cmd
, 0); 
 421         if (strlen(Cmd
) > 25 || cmdp 
== 'h' || cmdp 
== 'H') { 
 422                 PrintAndLog("Usage:  data rawdemod ab [offset] [clock] <invert> [maxError] [maxLen] <amplify>"); 
 423                 PrintAndLog("     [offset], offset to begin biphase, default=0"); 
 424                 PrintAndLog("     [set clock as integer] optional, if not set, autodetect"); 
 425                 PrintAndLog("     <invert>, 1 to invert output"); 
 426                 PrintAndLog("     [set maximum allowed errors], default = 100"); 
 427                 PrintAndLog("     [set maximum Samples to read], default = 32768 (512 bits at rf/64)"); 
 428                 PrintAndLog("     <amplify>, 'a' to attempt demod with ask amplification, default = no amp"); 
 429                 PrintAndLog("     NOTE: <invert>  can be entered as second or third argument"); 
 430                 PrintAndLog("     NOTE: <amplify> can be entered as first, second or last argument"); 
 431                 PrintAndLog("     NOTE: any other arg must have previous args set to work"); 
 433                 PrintAndLog("     NOTE: --invert for Conditional Dephase Encoding (CDP) AKA Differential Manchester"); 
 435                 PrintAndLog("    sample: data rawdemod ab              = demod an ask/biph tag from GraphBuffer"); 
 436                 PrintAndLog("          : data rawdemod ab 0 a          = demod an ask/biph tag from GraphBuffer, amplified"); 
 437                 PrintAndLog("          : data rawdemod ab 1 32         = demod an ask/biph tag from GraphBuffer using an offset of 1 and a clock of RF/32"); 
 438                 PrintAndLog("          : data rawdemod ab 0 32 1       = demod an ask/biph tag from GraphBuffer using a clock of RF/32 and inverting data"); 
 439                 PrintAndLog("          : data rawdemod ab 0 1          = demod an ask/biph tag from GraphBuffer while inverting data"); 
 440                 PrintAndLog("          : data rawdemod ab 0 64 1 0     = demod an ask/biph tag from GraphBuffer using a clock of RF/64, inverting data and allowing 0 demod errors"); 
 441                 PrintAndLog("          : data rawdemod ab 0 64 1 0 0 a = demod an ask/biph tag from GraphBuffer using a clock of RF/64, inverting data and allowing 0 demod errors, and amp"); 
 444         return ASKbiphaseDemod(Cmd
, true); 
 447 //could be split to a gProxII file 
 449 //attempts to demodulate and identify a G_Prox_II verex/chubb card 
 450 //WARNING: if it fails during some points it will destroy the DemodBuffer data 
 451 // but will leave the GraphBuffer intact. 
 452 //if successful it will push askraw data back to demod buffer ready for emulation 
 453 int CmdG_Prox_II_Demod(const char *Cmd
) 
 455         if (!ASKbiphaseDemod(Cmd
, false)){ 
 456                 if (g_debugMode
) PrintAndLog("Error gProxII: ASKbiphaseDemod failed 1st try"); 
 459         size_t size 
= DemodBufferLen
; 
 460         //call lfdemod.c demod for gProxII 
 461         int ans 
= gProxII_Demod(DemodBuffer
, &size
); 
 463                 if (g_debugMode
) PrintAndLog("Error gProxII_Demod"); 
 466         //got a good demod of 96 bits 
 467         uint8_t ByteStream
[8] = {0x00}; 
 469         size_t startIdx 
= ans 
+ 6; //start after 6 bit preamble 
 471         uint8_t bits_no_spacer
[90]; 
 472         //so as to not mess with raw DemodBuffer copy to a new sample array 
 473         memcpy(bits_no_spacer
, DemodBuffer 
+ startIdx
, 90); 
 474         // remove the 18 (90/5=18) parity bits (down to 72 bits (96-6-18=72)) 
 475         size_t bitLen 
= removeParity(bits_no_spacer
, 0, 5, 3, 90); //source, startloc, paritylen, ptype, length_to_run 
 477                 if (g_debugMode
) PrintAndLog("Error gProxII: spacer removal did not produce 72 bits: %u, start: %u", bitLen
, startIdx
); 
 480         // get key and then get all 8 bytes of payload decoded 
 481         xorKey 
= (uint8_t)bytebits_to_byteLSBF(bits_no_spacer
, 8); 
 482         for (size_t idx 
= 0; idx 
< 8; idx
++) { 
 483                 ByteStream
[idx
] = ((uint8_t)bytebits_to_byteLSBF(bits_no_spacer
+8 + (idx
*8),8)) ^ xorKey
; 
 484                 if (g_debugMode
) PrintAndLog("byte %u after xor: %02x", (unsigned int)idx
, ByteStream
[idx
]); 
 486         //now ByteStream contains 8 Bytes (64 bits) of decrypted raw tag data 
 488         uint8_t fmtLen 
= ByteStream
[0]>>2; 
 491         //get raw 96 bits to print 
 492         uint32_t raw1 
= bytebits_to_byte(DemodBuffer
+ans
,32); 
 493         uint32_t raw2 
= bytebits_to_byte(DemodBuffer
+ans
+32, 32); 
 494         uint32_t raw3 
= bytebits_to_byte(DemodBuffer
+ans
+64, 32); 
 497                 FC 
= ((ByteStream
[3] & 0x7F)<<7) | (ByteStream
[4]>>1); 
 498                 Card 
= ((ByteStream
[4]&1)<<19) | (ByteStream
[5]<<11) | (ByteStream
[6]<<3) | (ByteStream
[7]>>5); 
 499                 PrintAndLog("G-Prox-II Found: FmtLen %d, FC %u, Card %u", (int)fmtLen
, FC
, Card
); 
 500         } else if(fmtLen
==26){ 
 501                 FC 
= ((ByteStream
[3] & 0x7F)<<1) | (ByteStream
[4]>>7); 
 502                 Card 
= ((ByteStream
[4]&0x7F)<<9) | (ByteStream
[5]<<1) | (ByteStream
[6]>>7); 
 503                 PrintAndLog("G-Prox-II Found: FmtLen %d, FC %u, Card %u", (int)fmtLen
, FC
, Card
); 
 505                 PrintAndLog("Unknown G-Prox-II Fmt Found: FmtLen %d",(int)fmtLen
); 
 506                 PrintAndLog("Decoded Raw: %s", sprint_hex(ByteStream
, 8));  
 508         PrintAndLog("Raw: %08x%08x%08x", raw1
,raw2
,raw3
); 
 509         setDemodBuf(DemodBuffer
+ans
, 96, 0); 
 513 //by marshmellow - see ASKDemod 
 514 int Cmdaskrawdemod(const char *Cmd
) 
 516         char cmdp 
= param_getchar(Cmd
, 0); 
 517         if (strlen(Cmd
) > 35 || cmdp 
== 'h' || cmdp 
== 'H') { 
 518                 PrintAndLog("Usage:  data rawdemod ar [clock] <invert> [maxError] [maxLen] [amplify]"); 
 519                 PrintAndLog("     [set clock as integer] optional, if not set, autodetect"); 
 520                 PrintAndLog("     <invert>, 1 to invert output"); 
 521                 PrintAndLog("     [set maximum allowed errors], default = 100"); 
 522                 PrintAndLog("     [set maximum Samples to read], default = 32768 (1024 bits at rf/64)"); 
 523                 PrintAndLog("     <amplify>, 'a' to attempt demod with ask amplification, default = no amp"); 
 525                 PrintAndLog("    sample: data rawdemod ar            = demod an ask tag from GraphBuffer"); 
 526                 PrintAndLog("          : data rawdemod ar a          = demod an ask tag from GraphBuffer, amplified"); 
 527                 PrintAndLog("          : data rawdemod ar 32         = demod an ask tag from GraphBuffer using a clock of RF/32"); 
 528                 PrintAndLog("          : data rawdemod ar 32 1       = demod an ask tag from GraphBuffer using a clock of RF/32 and inverting data"); 
 529                 PrintAndLog("          : data rawdemod ar 1          = demod an ask tag from GraphBuffer while inverting data"); 
 530                 PrintAndLog("          : data rawdemod ar 64 1 0     = demod an ask tag from GraphBuffer using a clock of RF/64, inverting data and allowing 0 demod errors"); 
 531                 PrintAndLog("          : data rawdemod ar 64 1 0 0 a = demod an ask tag from GraphBuffer using a clock of RF/64, inverting data and allowing 0 demod errors, and amp"); 
 534         return ASKDemod(Cmd
, true, false, 0); 
 537 int AutoCorrelate(int window
, bool SaveGrph
, bool verbose
) 
 539         static int CorrelBuffer
[MAX_GRAPH_TRACE_LEN
]; 
 540         size_t Correlation 
= 0; 
 543         if (verbose
) PrintAndLog("performing %d correlations", GraphTraceLen 
- window
); 
 544         for (int i 
= 0; i 
< GraphTraceLen 
- window
; ++i
) { 
 546                 for (int j 
= 0; j 
< window
; ++j
) { 
 547                         sum 
+= (GraphBuffer
[j
]*GraphBuffer
[i 
+ j
]) / 256; 
 549                 CorrelBuffer
[i
] = sum
; 
 550                 if (sum 
>= maxSum
-100 && sum 
<= maxSum
+100){ 
 552                         Correlation 
= i
-lastMax
; 
 554                         if (sum 
> maxSum
) maxSum 
= sum
; 
 555                 } else if (sum 
> maxSum
){ 
 561                 //try again with wider margin 
 562                 for (int i 
= 0; i 
< GraphTraceLen 
- window
; i
++){ 
 563                         if (CorrelBuffer
[i
] >= maxSum
-(maxSum
*0.05) && CorrelBuffer
[i
] <= maxSum
+(maxSum
*0.05)){ 
 565                                 Correlation 
= i
-lastMax
; 
 567                                 //if (CorrelBuffer[i] > maxSum) maxSum = sum; 
 571         if (verbose 
&& Correlation 
> 0) PrintAndLog("Possible Correlation: %d samples",Correlation
); 
 574                 GraphTraceLen 
= GraphTraceLen 
- window
; 
 575                 memcpy(GraphBuffer
, CorrelBuffer
, GraphTraceLen 
* sizeof (int)); 
 576                 RepaintGraphWindow();   
 581 int usage_data_autocorr(void) 
 584         PrintAndLog("Usage: data autocorr [window] [g]"); 
 585         PrintAndLog("Options:        "); 
 586         PrintAndLog("       h              This help"); 
 587         PrintAndLog("       [window]       window length for correlation - default = 4000"); 
 588         PrintAndLog("       g              save back to GraphBuffer (overwrite)"); 
 592 int CmdAutoCorr(const char *Cmd
) 
 594         char cmdp 
= param_getchar(Cmd
, 0); 
 595         if (cmdp 
== 'h' || cmdp 
== 'H')  
 596                 return usage_data_autocorr(); 
 597         int window 
= 4000; //set default 
 599         bool updateGrph 
= false; 
 600         sscanf(Cmd
, "%i %c", &window
, &grph
); 
 602         if (window 
>= GraphTraceLen
) { 
 603                 PrintAndLog("window must be smaller than trace (%d samples)", 
 607         if (grph 
== 'g') updateGrph
=true; 
 608         return AutoCorrelate(window
, updateGrph
, true); 
 611 int CmdBitsamples(const char *Cmd
) 
 616         GetFromBigBuf(got
,sizeof(got
),0); 
 617         WaitForResponse(CMD_ACK
,NULL
); 
 619                 for (int j 
= 0; j 
< sizeof(got
); j
++) { 
 620                         for (int k 
= 0; k 
< 8; k
++) { 
 621                                 if(got
[j
] & (1 << (7 - k
))) { 
 622                                         GraphBuffer
[cnt
++] = 1; 
 624                                         GraphBuffer
[cnt
++] = 0; 
 629         RepaintGraphWindow(); 
 633 int CmdBuffClear(const char *Cmd
) 
 635         UsbCommand c 
= {CMD_BUFF_CLEAR
}; 
 641 int CmdDec(const char *Cmd
) 
 643         for (int i 
= 0; i 
< (GraphTraceLen 
/ 2); ++i
) 
 644                 GraphBuffer
[i
] = GraphBuffer
[i 
* 2]; 
 646         PrintAndLog("decimated by 2"); 
 647         RepaintGraphWindow(); 
 651  * Undecimate - I'd call it 'interpolate', but we'll save that 
 652  * name until someone does an actual interpolation command, not just 
 653  * blindly repeating samples 
 657 int CmdUndec(const char *Cmd
) 
 659         if(param_getchar(Cmd
, 0) == 'h') 
 661                 PrintAndLog("Usage: data undec [factor]"); 
 662                 PrintAndLog("This function performs un-decimation, by repeating each sample N times"); 
 663                 PrintAndLog("Options:        "); 
 664                 PrintAndLog("       h            This help"); 
 665                 PrintAndLog("       factor       The number of times to repeat each sample.[default:2]"); 
 666                 PrintAndLog("Example: 'data undec 3'"); 
 670         uint8_t factor 
= param_get8ex(Cmd
, 0,2, 10); 
 671         //We have memory, don't we? 
 672         int swap
[MAX_GRAPH_TRACE_LEN
] = { 0 }; 
 673         uint32_t g_index 
= 0, s_index 
= 0; 
 674         while(g_index 
< GraphTraceLen 
&& s_index 
+ factor 
< MAX_GRAPH_TRACE_LEN
) 
 677                 for(count 
= 0; count 
< factor 
&& s_index 
+ count 
< MAX_GRAPH_TRACE_LEN
; count
++) 
 678                         swap
[s_index
+count
] = GraphBuffer
[g_index
]; 
 684         memcpy(GraphBuffer
, swap
, s_index 
* sizeof(int)); 
 685         GraphTraceLen 
= s_index
; 
 686         RepaintGraphWindow(); 
 691 //shift graph zero up or down based on input + or - 
 692 int CmdGraphShiftZero(const char *Cmd
) 
 696         //set options from parameters entered with the command 
 697         sscanf(Cmd
, "%i", &shift
); 
 699         for(int i 
= 0; i
<GraphTraceLen
; i
++){ 
 700                 shiftedVal
=GraphBuffer
[i
]+shift
; 
 703                 else if (shiftedVal
<-127)  
 705                 GraphBuffer
[i
]= shiftedVal
; 
 712 //use large jumps in read samples to identify edges of waves and then amplify that wave to max 
 713 //similar to dirtheshold, threshold commands  
 714 //takes a threshold length which is the measured length between two samples then determines an edge 
 715 int CmdAskEdgeDetect(const char *Cmd
) 
 719         sscanf(Cmd
, "%i", &thresLen
);  
 721         for(int i 
= 1; i
<GraphTraceLen
; i
++){ 
 722                 if (GraphBuffer
[i
]-GraphBuffer
[i
-1]>=thresLen
) //large jump up 
 724                 else if(GraphBuffer
[i
]-GraphBuffer
[i
-1]<=-1*thresLen
) //large jump down 
 726                 GraphBuffer
[i
-1] = Last
; 
 728         RepaintGraphWindow(); 
 732 /* Print our clock rate */ 
 733 // uses data from graphbuffer 
 734 // adjusted to take char parameter for type of modulation to find the clock - by marshmellow. 
 735 int CmdDetectClockRate(const char *Cmd
) 
 737         char cmdp 
= param_getchar(Cmd
, 0); 
 738         if (strlen(Cmd
) > 6 || strlen(Cmd
) == 0 || cmdp 
== 'h' || cmdp 
== 'H') { 
 739                 PrintAndLog("Usage:  data detectclock [modulation] <clock>"); 
 740                 PrintAndLog("     [modulation as char], specify the modulation type you want to detect the clock of"); 
 741                 PrintAndLog("     <clock>             , specify the clock (optional - to get best start position only)"); 
 742                 PrintAndLog("       'a' = ask, 'f' = fsk, 'n' = nrz/direct, 'p' = psk"); 
 744                 PrintAndLog("    sample: data detectclock a    = detect the clock of an ask modulated wave in the GraphBuffer"); 
 745                 PrintAndLog("            data detectclock f    = detect the clock of an fsk modulated wave in the GraphBuffer"); 
 746                 PrintAndLog("            data detectclock p    = detect the clock of an psk modulated wave in the GraphBuffer"); 
 747                 PrintAndLog("            data detectclock n    = detect the clock of an nrz/direct modulated wave in the GraphBuffer"); 
 751                 ans 
= GetAskClock(Cmd
+1, true, false); 
 752         } else if (cmdp 
== 'f'){ 
 753                 ans 
= GetFskClock("", true, false); 
 754         } else if (cmdp 
== 'n'){ 
 755                 ans 
= GetNrzClock("", true, false); 
 756         } else if (cmdp 
== 'p'){ 
 757                 ans 
= GetPskClock("", true, false); 
 759                 PrintAndLog ("Please specify a valid modulation to detect the clock of - see option h for help"); 
 764 char *GetFSKType(uint8_t fchigh
, uint8_t fclow
, uint8_t invert
) 
 766         static char fType
[8]; 
 767         memset(fType
, 0x00, 8); 
 768         char *fskType 
= fType
; 
 769         if (fchigh
==10 && fclow
==8){ 
 771                         memcpy(fskType
, "FSK2a", 5); 
 773                         memcpy(fskType
, "FSK2", 4); 
 774         } else if (fchigh 
== 8 && fclow 
== 5) { 
 776                         memcpy(fskType
, "FSK1", 4); 
 778                         memcpy(fskType
, "FSK1a", 5); 
 780                 memcpy(fskType
, "FSK??", 5); 
 786 //fsk raw demod and print binary 
 787 //takes 4 arguments - Clock, invert, fchigh, fclow 
 788 //defaults: clock = 50, invert=1, fchigh=10, fclow=8 (RF/10 RF/8 (fsk2a)) 
 789 int FSKrawDemod(const char *Cmd
, bool verbose
) 
 791         //raw fsk demod  no manchester decoding no start bit finding just get binary from wave 
 792         uint8_t rfLen
, invert
, fchigh
, fclow
; 
 794         //set options from parameters entered with the command 
 795         rfLen 
= param_get8(Cmd
, 0); 
 796         invert 
= param_get8(Cmd
, 1); 
 797         fchigh 
= param_get8(Cmd
, 2); 
 798         fclow 
= param_get8(Cmd
, 3); 
 800         if (strlen(Cmd
)>0 && strlen(Cmd
)<=2) { 
 802                         invert 
= 1;   //if invert option only is used 
 806         uint8_t BitStream
[MAX_GRAPH_TRACE_LEN
]={0}; 
 807         size_t BitLen 
= getFromGraphBuf(BitStream
); 
 808         if (BitLen
==0) return 0; 
 809         //get field clock lengths 
 811         if (!fchigh 
|| !fclow
) { 
 812                 fcs 
= countFC(BitStream
, BitLen
, 1); 
 817                         fchigh 
= (fcs 
>> 8) & 0x00FF; 
 818                         fclow 
= fcs 
& 0x00FF; 
 821         //get bit clock length 
 823                 rfLen 
= detectFSKClk(BitStream
, BitLen
, fchigh
, fclow
); 
 824                 if (!rfLen
) rfLen 
= 50; 
 826         int size 
= fskdemod(BitStream
, BitLen
, rfLen
, invert
, fchigh
, fclow
); 
 828                 setDemodBuf(BitStream
,size
,0); 
 830                 // Now output the bitstream to the scrollback by line of 16 bits 
 831                 if (verbose 
|| g_debugMode
) { 
 832                         PrintAndLog("\nUsing Clock:%u, invert:%u, fchigh:%u, fclow:%u", (unsigned int)rfLen
, (unsigned int)invert
, (unsigned int)fchigh
, (unsigned int)fclow
); 
 833                         PrintAndLog("%s decoded bitstream:",GetFSKType(fchigh
,fclow
,invert
)); 
 839                 if (g_debugMode
) PrintAndLog("no FSK data found"); 
 845 //fsk raw demod and print binary 
 846 //takes 4 arguments - Clock, invert, fchigh, fclow 
 847 //defaults: clock = 50, invert=1, fchigh=10, fclow=8 (RF/10 RF/8 (fsk2a)) 
 848 int CmdFSKrawdemod(const char *Cmd
) 
 850         char cmdp 
= param_getchar(Cmd
, 0); 
 851         if (strlen(Cmd
) > 20 || cmdp 
== 'h' || cmdp 
== 'H') { 
 852                 PrintAndLog("Usage:  data rawdemod fs [clock] <invert> [fchigh] [fclow]"); 
 853                 PrintAndLog("     [set clock as integer] optional, omit for autodetect."); 
 854                 PrintAndLog("     <invert>, 1 for invert output, can be used even if the clock is omitted"); 
 855                 PrintAndLog("     [fchigh], larger field clock length, omit for autodetect"); 
 856                 PrintAndLog("     [fclow], small field clock length, omit for autodetect"); 
 858                 PrintAndLog("    sample: data rawdemod fs           = demod an fsk tag from GraphBuffer using autodetect"); 
 859                 PrintAndLog("          : data rawdemod fs 32        = demod an fsk tag from GraphBuffer using a clock of RF/32, autodetect fc"); 
 860                 PrintAndLog("          : data rawdemod fs 1         = demod an fsk tag from GraphBuffer using autodetect, invert output");    
 861                 PrintAndLog("          : data rawdemod fs 32 1      = demod an fsk tag from GraphBuffer using a clock of RF/32, invert output, autodetect fc"); 
 862                 PrintAndLog("          : data rawdemod fs 64 0 8 5  = demod an fsk1 RF/64 tag from GraphBuffer"); 
 863                 PrintAndLog("          : data rawdemod fs 50 0 10 8 = demod an fsk2 RF/50 tag from GraphBuffer"); 
 864                 PrintAndLog("          : data rawdemod fs 50 1 10 8 = demod an fsk2a RF/50 tag from GraphBuffer"); 
 867         return FSKrawDemod(Cmd
, true); 
 871 //Paradox Prox demod - FSK RF/50 with preamble of 00001111 (then manchester encoded) 
 872 //print full Paradox Prox ID and some bit format details if found 
 873 int CmdFSKdemodParadox(const char *Cmd
) 
 875         //raw fsk demod no manchester decoding no start bit finding just get binary from wave 
 876         uint32_t hi2
=0, hi
=0, lo
=0; 
 878         uint8_t BitStream
[MAX_GRAPH_TRACE_LEN
]={0}; 
 879         size_t BitLen 
= getFromGraphBuf(BitStream
); 
 880         if (BitLen
==0) return 0; 
 881         //get binary from fsk wave 
 882         int idx 
= ParadoxdemodFSK(BitStream
,&BitLen
,&hi2
,&hi
,&lo
); 
 886                                 PrintAndLog("DEBUG: Just Noise Detected");      
 887                         } else if (idx 
== -2) { 
 888                                 PrintAndLog("DEBUG: Error demoding fsk"); 
 889                         } else if (idx 
== -3) { 
 890                                 PrintAndLog("DEBUG: Preamble not found"); 
 891                         } else if (idx 
== -4) { 
 892                                 PrintAndLog("DEBUG: Error in Manchester data"); 
 894                                 PrintAndLog("DEBUG: Error demoding fsk %d", idx
); 
 899         if (hi2
==0 && hi
==0 && lo
==0){ 
 900                 if (g_debugMode
) PrintAndLog("DEBUG: Error - no value found"); 
 903         uint32_t fc 
= ((hi 
& 0x3)<<6) | (lo
>>26); 
 904         uint32_t cardnum 
= (lo
>>10)&0xFFFF; 
 905         uint32_t rawLo 
= bytebits_to_byte(BitStream
+idx
+64,32); 
 906         uint32_t rawHi 
= bytebits_to_byte(BitStream
+idx
+32,32); 
 907         uint32_t rawHi2 
= bytebits_to_byte(BitStream
+idx
,32); 
 909         PrintAndLog("Paradox TAG ID: %x%08x - FC: %d - Card: %d - Checksum: %02x - RAW: %08x%08x%08x", 
 910                 hi
>>10, (hi 
& 0x3)<<26 | (lo
>>10), fc
, cardnum
, (lo
>>2) & 0xFF, rawHi2
, rawHi
, rawLo
); 
 911         setDemodBuf(BitStream
,BitLen
,idx
); 
 913                 PrintAndLog("DEBUG: idx: %d, len: %d, Printing Demod Buffer:", idx
, BitLen
); 
 919 // FDX-B ISO11784/85 demod  (aka animal tag)  BIPHASE, inverted, rf/32,  with preamble of 00000000001 (128bits) 
 920 // 8 databits + 1 parity (1) 
 922 // NATIONAL CODE, ICAR database 
 923 // COUNTRY CODE (ISO3166) or http://cms.abvma.ca/uploads/ManufacturersISOsandCountryCodes.pdf 
 924 // FLAG (animal/non-animal) 
 931 16 ccitt CRC chksum over 64bit ID CODE. 
 934 -- sample: 985121004515220  [ 37FF65B88EF94 ] 
 936 int CmdFDXBdemodBI(const char *Cmd
){ 
 942         uint8_t BitStream
[MAX_DEMOD_BUF_LEN
];    
 943         size_t size 
= getFromGraphBuf(BitStream
);        
 945         errCnt 
= askdemod(BitStream
, &size
, &clk
, &invert
, maxErr
, 0, 0); 
 946         if ( errCnt 
< 0 || errCnt 
> maxErr 
) {  
 947                 if (g_debugMode
) PrintAndLog("DEBUG: no data or error found %d, clock: %d", errCnt
, clk
); 
 951         errCnt 
= BiphaseRawDecode(BitStream
, &size
, maxErr
, 1); 
 952         if (errCnt 
< 0 || errCnt 
> maxErr 
) { 
 953                 if (g_debugMode
) PrintAndLog("Error BiphaseRawDecode: %d", errCnt
); 
 957         int preambleIndex 
= FDXBdemodBI(BitStream
, &size
); 
 958         if (preambleIndex 
< 0){ 
 959                 if (g_debugMode
) PrintAndLog("Error FDXBDemod , no startmarker found :: %d",preambleIndex
); 
 963                 if (g_debugMode
) PrintAndLog("Error incorrect data length found"); 
 967         setDemodBuf(BitStream
, 128, preambleIndex
); 
 969         // remove marker bits (1's every 9th digit after preamble) (pType = 2) 
 970         size 
= removeParity(BitStream
, preambleIndex 
+ 11, 9, 2, 117); 
 972                 if (g_debugMode
) PrintAndLog("Error removeParity:: %d", size
); 
 976                 char *bin 
= sprint_bin_break(BitStream
,size
,16); 
 977                 PrintAndLog("DEBUG BinStream:\n%s",bin
); 
 979         PrintAndLog("\nFDX-B / ISO 11784/5 Animal Tag ID Found:"); 
 980         if (g_debugMode
) PrintAndLog("Start marker %d;   Size %d", preambleIndex
, size
); 
 983         uint64_t NationalCode 
= ((uint64_t)(bytebits_to_byteLSBF(BitStream
+32,6)) << 32) | bytebits_to_byteLSBF(BitStream
,32); 
 984         uint32_t countryCode 
= bytebits_to_byteLSBF(BitStream
+38,10); 
 985         uint8_t dataBlockBit 
= BitStream
[48]; 
 986         uint32_t reservedCode 
= bytebits_to_byteLSBF(BitStream
+49,14); 
 987         uint8_t animalBit 
= BitStream
[63]; 
 988         uint32_t crc16 
= bytebits_to_byteLSBF(BitStream
+64,16); 
 989         uint32_t extended 
= bytebits_to_byteLSBF(BitStream
+80,24); 
 991         uint64_t rawid 
= ((uint64_t)bytebits_to_byte(BitStream
,32)<<32) | bytebits_to_byte(BitStream
+32,32); 
 993         num_to_bytes(rawid
, 8, raw
); 
 995         if (g_debugMode
) PrintAndLog("Raw ID Hex: %s", sprint_hex(raw
,8)); 
 997         uint16_t calcCrc 
= crc16_ccitt_kermit(raw
, 8); 
 998         PrintAndLog("Animal ID:     %04u-%012" PRIu64
, countryCode
, NationalCode
); 
 999         PrintAndLog("National Code: %012" PRIu64
, NationalCode
); 
1000         PrintAndLog("CountryCode:   %04u", countryCode
); 
1001         PrintAndLog("Extended Data: %s", dataBlockBit 
? "True" : "False"); 
1002         PrintAndLog("reserved Code: %u", reservedCode
); 
1003         PrintAndLog("Animal Tag:    %s", animalBit 
? "True" : "False"); 
1004         PrintAndLog("CRC:           0x%04X - [%04X] - %s", crc16
, calcCrc
, (calcCrc 
== crc16
) ? "Passed" : "Failed"); 
1005         PrintAndLog("Extended:      0x%X\n", extended
); 
1012 //attempt to psk1 demod graph buffer 
1013 int PSKDemod(const char *Cmd
, bool verbose
) 
1018         sscanf(Cmd
, "%i %i %i", &clk
, &invert
, &maxErr
); 
1023         if (invert 
!= 0 && invert 
!= 1) { 
1024                 if (g_debugMode 
|| verbose
) PrintAndLog("Invalid argument: %s", Cmd
); 
1027         uint8_t BitStream
[MAX_GRAPH_TRACE_LEN
]={0}; 
1028         size_t BitLen 
= getFromGraphBuf(BitStream
); 
1029         if (BitLen
==0) return 0; 
1030         uint8_t carrier
=countFC(BitStream
, BitLen
, 0); 
1031         if (carrier
!=2 && carrier
!=4 && carrier
!=8){ 
1036                 PrintAndLog("Carrier: rf/%d",carrier
); 
1039         errCnt 
= pskRawDemod(BitStream
, &BitLen
, &clk
, &invert
); 
1040         if (errCnt 
> maxErr
){ 
1041                 if (g_debugMode 
|| verbose
) PrintAndLog("Too many errors found, clk: %d, invert: %d, numbits: %d, errCnt: %d",clk
,invert
,BitLen
,errCnt
); 
1044         if (errCnt
<0|| BitLen
<16){  //throw away static - allow 1 and -1 (in case of threshold command first) 
1045                 if (g_debugMode 
|| verbose
) PrintAndLog("no data found, clk: %d, invert: %d, numbits: %d, errCnt: %d",clk
,invert
,BitLen
,errCnt
); 
1048         if (verbose 
|| g_debugMode
){ 
1049                 PrintAndLog("\nUsing Clock:%d, invert:%d, Bits Found:%d",clk
,invert
,BitLen
); 
1051                         PrintAndLog("# Errors during Demoding (shown as 7 in bit stream): %d",errCnt
); 
1054         //prime demod buffer for output 
1055         setDemodBuf(BitStream
,BitLen
,0); 
1059 int CmdPSKNexWatch(const char *Cmd
) 
1061         if (!PSKDemod("", false)) return 0; 
1062         uint8_t preamble
[28] = {0,0,0,0,0,1,0,1,0,1,1,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0}; 
1063         size_t startIdx 
= 0, size 
= DemodBufferLen
;  
1064         bool invert 
= false; 
1065         if (!preambleSearch(DemodBuffer
, preamble
, sizeof(preamble
), &size
, &startIdx
)){ 
1066                 // if didn't find preamble try again inverting 
1067                 if (!PSKDemod("1", false)) return 0;  
1068                 size 
= DemodBufferLen
; 
1069                 if (!preambleSearch(DemodBuffer
, preamble
, sizeof(preamble
), &size
, &startIdx
)) return 0; 
1072         if (size 
!= 128) return 0; 
1073         setDemodBuf(DemodBuffer
, size
, startIdx
+4); 
1074         startIdx 
= 8+32; //4 = extra i added, 8 = preamble, 32 = reserved bits (always 0) 
1077         for (uint8_t wordIdx
=0; wordIdx
<4; wordIdx
++){ 
1078                 for (uint8_t idx
=0; idx
<8; idx
++){ 
1079                         ID 
= (ID 
<< 1) | DemodBuffer
[startIdx
+wordIdx
+(idx
*4)]; 
1082         //parity check (TBD) 
1084         //checksum check (TBD) 
1087         PrintAndLog("NexWatch ID: %d", ID
); 
1089                 PrintAndLog("Had to Invert - probably NexKey"); 
1090                 for (uint8_t idx
=0; idx
<size
; idx
++) 
1091                         DemodBuffer
[idx
] ^= 1; 
1094         CmdPrintDemodBuff("x"); 
1099 // takes 3 arguments - clock, invert, maxErr as integers 
1100 // attempts to demodulate nrz only 
1101 // prints binary found and saves in demodbuffer for further commands 
1102 int NRZrawDemod(const char *Cmd
, bool verbose
) 
1107         sscanf(Cmd
, "%i %i %i", &clk
, &invert
, &maxErr
); 
1112         if (invert 
!= 0 && invert 
!= 1) { 
1113                 PrintAndLog("Invalid argument: %s", Cmd
); 
1116         uint8_t BitStream
[MAX_GRAPH_TRACE_LEN
]={0}; 
1117         size_t BitLen 
= getFromGraphBuf(BitStream
); 
1118         if (BitLen
==0) return 0; 
1120         int clkStartIdx 
= 0; 
1121         errCnt 
= nrzRawDemod(BitStream
, &BitLen
, &clk
, &invert
, &clkStartIdx
); 
1122         if (errCnt 
> maxErr
){ 
1123                 if (g_debugMode
) PrintAndLog("Too many errors found, clk: %d, invert: %d, numbits: %d, errCnt: %d",clk
,invert
,BitLen
,errCnt
); 
1126         if (errCnt
<0 || BitLen
<16){  //throw away static - allow 1 and -1 (in case of threshold command first) 
1127                 if (g_debugMode
) PrintAndLog("no data found, clk: %d, invert: %d, numbits: %d, errCnt: %d",clk
,invert
,BitLen
,errCnt
); 
1130         if (verbose 
|| g_debugMode
) PrintAndLog("Tried NRZ Demod using Clock: %d - invert: %d - Bits Found: %d",clk
,invert
,BitLen
); 
1131         //prime demod buffer for output 
1132         setDemodBuf(BitStream
,BitLen
,0); 
1134         if (errCnt
>0 && (verbose 
|| g_debugMode
)) PrintAndLog("# Errors during Demoding (shown as 7 in bit stream): %d",errCnt
); 
1135         if (verbose 
|| g_debugMode
) { 
1136                 PrintAndLog("NRZ demoded bitstream:"); 
1137                 // Now output the bitstream to the scrollback by line of 16 bits 
1143 int CmdNRZrawDemod(const char *Cmd
) 
1145         char cmdp 
= param_getchar(Cmd
, 0); 
1146         if (strlen(Cmd
) > 16 || cmdp 
== 'h' || cmdp 
== 'H') { 
1147                 PrintAndLog("Usage:  data rawdemod nr [clock] <0|1> [maxError]"); 
1148                 PrintAndLog("     [set clock as integer] optional, if not set, autodetect."); 
1149                 PrintAndLog("     <invert>, 1 for invert output"); 
1150                 PrintAndLog("     [set maximum allowed errors], default = 100."); 
1152                 PrintAndLog("    sample: data rawdemod nr        = demod a nrz/direct tag from GraphBuffer"); 
1153                 PrintAndLog("          : data rawdemod nr 32     = demod a nrz/direct tag from GraphBuffer using a clock of RF/32"); 
1154                 PrintAndLog("          : data rawdemod nr 32 1   = demod a nrz/direct tag from GraphBuffer using a clock of RF/32 and inverting data"); 
1155                 PrintAndLog("          : data rawdemod nr 1      = demod a nrz/direct tag from GraphBuffer while inverting data"); 
1156                 PrintAndLog("          : data rawdemod nr 64 1 0 = demod a nrz/direct tag from GraphBuffer using a clock of RF/64, inverting data and allowing 0 demod errors"); 
1159         return NRZrawDemod(Cmd
, true); 
1163 // takes 3 arguments - clock, invert, maxErr as integers 
1164 // attempts to demodulate psk only 
1165 // prints binary found and saves in demodbuffer for further commands 
1166 int CmdPSK1rawDemod(const char *Cmd
) 
1169         char cmdp 
= param_getchar(Cmd
, 0); 
1170         if (strlen(Cmd
) > 16 || cmdp 
== 'h' || cmdp 
== 'H') { 
1171                 PrintAndLog("Usage:  data rawdemod p1 [clock] <0|1> [maxError]"); 
1172                 PrintAndLog("     [set clock as integer] optional, if not set, autodetect."); 
1173                 PrintAndLog("     <invert>, 1 for invert output"); 
1174                 PrintAndLog("     [set maximum allowed errors], default = 100."); 
1176                 PrintAndLog("    sample: data rawdemod p1        = demod a psk1 tag from GraphBuffer"); 
1177                 PrintAndLog("          : data rawdemod p1 32     = demod a psk1 tag from GraphBuffer using a clock of RF/32"); 
1178                 PrintAndLog("          : data rawdemod p1 32 1   = demod a psk1 tag from GraphBuffer using a clock of RF/32 and inverting data"); 
1179                 PrintAndLog("          : data rawdemod p1 1      = demod a psk1 tag from GraphBuffer while inverting data"); 
1180                 PrintAndLog("          : data rawdemod p1 64 1 0 = demod a psk1 tag from GraphBuffer using a clock of RF/64, inverting data and allowing 0 demod errors"); 
1183         ans 
= PSKDemod(Cmd
, true); 
1186                 if (g_debugMode
) PrintAndLog("Error demoding: %d",ans
);  
1190         PrintAndLog("PSK1 demoded bitstream:"); 
1191         // Now output the bitstream to the scrollback by line of 16 bits 
1197 // takes same args as cmdpsk1rawdemod 
1198 int CmdPSK2rawDemod(const char *Cmd
) 
1201         char cmdp 
= param_getchar(Cmd
, 0); 
1202         if (strlen(Cmd
) > 16 || cmdp 
== 'h' || cmdp 
== 'H') { 
1203                 PrintAndLog("Usage:  data rawdemod p2 [clock] <0|1> [maxError]"); 
1204                 PrintAndLog("     [set clock as integer] optional, if not set, autodetect."); 
1205                 PrintAndLog("     <invert>, 1 for invert output"); 
1206                 PrintAndLog("     [set maximum allowed errors], default = 100."); 
1208                 PrintAndLog("    sample: data rawdemod p2         = demod a psk2 tag from GraphBuffer, autodetect clock"); 
1209                 PrintAndLog("          : data rawdemod p2 32      = demod a psk2 tag from GraphBuffer using a clock of RF/32"); 
1210                 PrintAndLog("          : data rawdemod p2 32 1    = demod a psk2 tag from GraphBuffer using a clock of RF/32 and inverting output"); 
1211                 PrintAndLog("          : data rawdemod p2 1       = demod a psk2 tag from GraphBuffer, autodetect clock and invert output"); 
1212                 PrintAndLog("          : data rawdemod p2 64 1 0  = demod a psk2 tag from GraphBuffer using a clock of RF/64, inverting output and allowing 0 demod errors"); 
1215         ans
=PSKDemod(Cmd
, true); 
1217                 if (g_debugMode
) PrintAndLog("Error demoding: %d",ans
);   
1220         psk1TOpsk2(DemodBuffer
, DemodBufferLen
); 
1221         PrintAndLog("PSK2 demoded bitstream:"); 
1222         // Now output the bitstream to the scrollback by line of 16 bits 
1227 // by marshmellow - combines all raw demod functions into one menu command 
1228 int CmdRawDemod(const char *Cmd
) 
1230         char cmdp 
= Cmd
[0]; //param_getchar(Cmd, 0); 
1232         if (strlen(Cmd
) > 35 || cmdp 
== 'h' || cmdp 
== 'H' || strlen(Cmd
)<2) { 
1233                 PrintAndLog("Usage:  data rawdemod [modulation] <help>|<options>"); 
1234                 PrintAndLog("   [modulation] as 2 char, 'ab' for ask/biphase, 'am' for ask/manchester, 'ar' for ask/raw, 'fs' for fsk, ...");            
1235                 PrintAndLog("         'nr' for nrz/direct, 'p1' for psk1, 'p2' for psk2"); 
1236                 PrintAndLog("   <help> as 'h', prints the help for the specific modulation");    
1237                 PrintAndLog("   <options> see specific modulation help for optional parameters");                                
1239                 PrintAndLog("    sample: data rawdemod fs h         = print help specific to fsk demod"); 
1240                 PrintAndLog("          : data rawdemod fs           = demod GraphBuffer using: fsk - autodetect"); 
1241                 PrintAndLog("          : data rawdemod ab           = demod GraphBuffer using: ask/biphase - autodetect"); 
1242                 PrintAndLog("          : data rawdemod am           = demod GraphBuffer using: ask/manchester - autodetect"); 
1243                 PrintAndLog("          : data rawdemod ar           = demod GraphBuffer using: ask/raw - autodetect"); 
1244                 PrintAndLog("          : data rawdemod nr           = demod GraphBuffer using: nrz/direct - autodetect"); 
1245                 PrintAndLog("          : data rawdemod p1           = demod GraphBuffer using: psk1 - autodetect"); 
1246                 PrintAndLog("          : data rawdemod p2           = demod GraphBuffer using: psk2 - autodetect"); 
1249         char cmdp2 
= Cmd
[1]; 
1251         if (cmdp 
== 'f' && cmdp2 
== 's'){ 
1252                 ans 
= CmdFSKrawdemod(Cmd
+2); 
1253         } else if(cmdp 
== 'a' && cmdp2 
== 'b'){ 
1254                 ans 
= Cmdaskbiphdemod(Cmd
+2); 
1255         } else if(cmdp 
== 'a' && cmdp2 
== 'm'){ 
1256                 ans 
= Cmdaskmandemod(Cmd
+2); 
1257         } else if(cmdp 
== 'a' && cmdp2 
== 'r'){ 
1258                 ans 
= Cmdaskrawdemod(Cmd
+2); 
1259         } else if(cmdp 
== 'n' && cmdp2 
== 'r'){ 
1260                 ans 
= CmdNRZrawDemod(Cmd
+2); 
1261         } else if(cmdp 
== 'p' && cmdp2 
== '1'){ 
1262                 ans 
= CmdPSK1rawDemod(Cmd
+2); 
1263         } else if(cmdp 
== 'p' && cmdp2 
== '2'){ 
1264                 ans 
= CmdPSK2rawDemod(Cmd
+2); 
1266                 PrintAndLog("unknown modulation entered - see help ('h') for parameter structure"); 
1271 int CmdGrid(const char *Cmd
) 
1273         sscanf(Cmd
, "%i %i", &PlotGridX
, &PlotGridY
); 
1274         PlotGridXdefault
= PlotGridX
; 
1275         PlotGridYdefault
= PlotGridY
; 
1276         RepaintGraphWindow(); 
1280 int CmdSetGraphMarkers(const char *Cmd
) { 
1281         sscanf(Cmd
, "%i %i", &CursorCPos
, &CursorDPos
); 
1282         RepaintGraphWindow(); 
1286 int CmdHexsamples(const char *Cmd
) 
1291         char string_buf
[25]; 
1292         char* string_ptr 
= string_buf
; 
1293         uint8_t got
[BIGBUF_SIZE
]; 
1295         sscanf(Cmd
, "%i %i", &requested
, &offset
); 
1297         /* if no args send something */ 
1298         if (requested 
== 0) { 
1301         if (offset 
+ requested 
> sizeof(got
)) { 
1302                 PrintAndLog("Tried to read past end of buffer, <bytes> + <offset> > %d", BIGBUF_SIZE
); 
1306         GetFromBigBuf(got
,requested
,offset
); 
1307         WaitForResponse(CMD_ACK
,NULL
); 
1310         for (j 
= 0; j 
< requested
; j
++) { 
1312                 string_ptr 
+= sprintf(string_ptr
, "%02x ", got
[j
]); 
1314                         *(string_ptr 
- 1) = '\0';    // remove the trailing space 
1315                         PrintAndLog("%s", string_buf
); 
1316                         string_buf
[0] = '\0'; 
1317                         string_ptr 
= string_buf
; 
1320                 if (j 
== requested 
- 1 && string_buf
[0] != '\0') { // print any remaining bytes 
1321                         *(string_ptr 
- 1) = '\0'; 
1322                         PrintAndLog("%s", string_buf
); 
1323                         string_buf
[0] = '\0'; 
1329 int CmdHide(const char *Cmd
) 
1335 //zero mean GraphBuffer 
1336 int CmdHpf(const char *Cmd
) 
1341         for (i 
= 10; i 
< GraphTraceLen
; ++i
) 
1342                 accum 
+= GraphBuffer
[i
]; 
1343         accum 
/= (GraphTraceLen 
- 10); 
1344         for (i 
= 0; i 
< GraphTraceLen
; ++i
) 
1345                 GraphBuffer
[i
] -= accum
; 
1347         RepaintGraphWindow(); 
1351 uint8_t getByte(uint8_t bits_per_sample
, BitstreamIn
* b
) 
1355         for(i 
=0 ; i 
< bits_per_sample
; i
++) 
1357                 val 
|= (headBit(b
) << (7-i
)); 
1362 int getSamples(const char *Cmd
, bool silent
) 
1364         //If we get all but the last byte in bigbuf, 
1365         // we don't have to worry about remaining trash 
1366         // in the last byte in case the bits-per-sample 
1367         // does not line up on byte boundaries 
1369         uint8_t got
[BIGBUF_SIZE
-1] = { 0 }; 
1371         int n 
= strtol(Cmd
, NULL
, 0); 
1373         if (n 
== 0 || n 
> sizeof(got
)) 
1376         PrintAndLog("Reading %d bytes from device memory\n", n
); 
1377         GetFromBigBuf(got
,n
,0); 
1378         PrintAndLog("Data fetched"); 
1379         UsbCommand response
; 
1380         WaitForResponse(CMD_ACK
, &response
); 
1381         uint8_t bits_per_sample 
= 8; 
1383         //Old devices without this feature would send 0 at arg[0] 
1384         if(response
.arg
[0] > 0) 
1386                 sample_config 
*sc 
= (sample_config 
*) response
.d
.asBytes
; 
1387                 PrintAndLog("Samples @ %d bits/smpl, decimation 1:%d ", sc
->bits_per_sample
 
1389                 bits_per_sample 
= sc
->bits_per_sample
; 
1391         if(bits_per_sample 
< 8) 
1393                 PrintAndLog("Unpacking..."); 
1394                 BitstreamIn bout 
= { got
, bits_per_sample 
* n
,  0}; 
1396                 for (j 
= 0; j 
* bits_per_sample 
< n 
* 8 && j 
< n
; j
++) { 
1397                         uint8_t sample 
= getByte(bits_per_sample
, &bout
); 
1398                         GraphBuffer
[j
] = ((int) sample 
)- 128; 
1401                 PrintAndLog("Unpacked %d samples" , j 
); 
1404                 for (int j 
= 0; j 
< n
; j
++) { 
1405                         GraphBuffer
[j
] = ((int)got
[j
]) - 128; 
1410         RepaintGraphWindow(); 
1414 int CmdSamples(const char *Cmd
) 
1416         return getSamples(Cmd
, false); 
1419 int CmdTuneSamples(const char *Cmd
) 
1421         int timeout 
= 0, arg 
= FLAG_TUNE_ALL
; 
1425         } else if (*Cmd 
== 'h') { 
1427         } else if (*Cmd 
!= '\0') { 
1428           PrintAndLog("use 'tune' or 'tune l' or 'tune h'"); 
1432         printf("\nMeasuring antenna characteristics, please wait..."); 
1434         UsbCommand c 
= {CMD_MEASURE_ANTENNA_TUNING
, {arg
, 0, 0}}; 
1438         while(!WaitForResponseTimeout(CMD_MEASURED_ANTENNA_TUNING
,&resp
,1000)) { 
1442                         PrintAndLog("\nNo response from Proxmark. Aborting..."); 
1448         int vLf125
, vLf134
, vHf
; 
1449         vLf125 
= resp
.arg
[0] & 0xffff; 
1450         vLf134 
= resp
.arg
[0] >> 16; 
1451         vHf 
= resp
.arg
[1] & 0xffff;; 
1452         peakf 
= resp
.arg
[2] & 0xffff; 
1453         peakv 
= resp
.arg
[2] >> 16; 
1455         PrintAndLog("# LF antenna: %5.2f V @   125.00 kHz", vLf125
/1000.0); 
1456         PrintAndLog("# LF antenna: %5.2f V @   134.00 kHz", vLf134
/1000.0); 
1457         PrintAndLog("# LF optimal: %5.2f V @%9.2f kHz", peakv
/1000.0, 12000.0/(peakf
+1)); 
1458         PrintAndLog("# HF antenna: %5.2f V @    13.56 MHz", vHf
/1000.0); 
1460  #define LF_UNUSABLE_V          2948            // was 2000. Changed due to bugfix in voltage measurements. LF results are now 47% higher. 
1461  #define LF_MARGINAL_V          14739           // was 10000. Changed due to bugfix bug in voltage measurements. LF results are now 47% higher. 
1462  #define HF_UNUSABLE_V          3167            // was 2000. Changed due to bugfix in voltage measurements. HF results are now 58% higher. 
1463  #define HF_MARGINAL_V          7917            // was 5000. Changed due to bugfix in voltage measurements. HF results are now 58% higher. 
1465         if (peakv 
< LF_UNUSABLE_V
) 
1466                 PrintAndLog("# Your LF antenna is unusable."); 
1467         else if (peakv 
< LF_MARGINAL_V
) 
1468                 PrintAndLog("# Your LF antenna is marginal."); 
1469         if (vHf 
< HF_UNUSABLE_V
) 
1470                 PrintAndLog("# Your HF antenna is unusable."); 
1471         else if (vHf 
< HF_MARGINAL_V
) 
1472                 PrintAndLog("# Your HF antenna is marginal."); 
1474         if (peakv 
>= LF_UNUSABLE_V
)     { 
1475                 for (int i 
= 0; i 
< 256; i
++) { 
1476                         GraphBuffer
[i
] = resp
.d
.asBytes
[i
] - 128; 
1478                 PrintAndLog("Displaying LF tuning graph. Divisor 89 is 134khz, 95 is 125khz.\n"); 
1480                 GraphTraceLen 
= 256; 
1482                 RepaintGraphWindow(); 
1489 int CmdLoad(const char *Cmd
) 
1491         char filename
[FILE_PATH_SIZE
] = {0x00}; 
1495         if (len 
> FILE_PATH_SIZE
) len 
= FILE_PATH_SIZE
; 
1496         memcpy(filename
, Cmd
, len
); 
1498         FILE *f 
= fopen(filename
, "r"); 
1500                  PrintAndLog("couldn't open '%s'", filename
); 
1506         while (fgets(line
, sizeof (line
), f
)) { 
1507                 GraphBuffer
[GraphTraceLen
] = atoi(line
); 
1511         PrintAndLog("loaded %d samples", GraphTraceLen
); 
1512         RepaintGraphWindow(); 
1516 int CmdLtrim(const char *Cmd
) 
1519         if (GraphTraceLen
<=0) return 0; 
1520         for (int i 
= ds
; i 
< GraphTraceLen
; ++i
) 
1521                 GraphBuffer
[i
-ds
] = GraphBuffer
[i
]; 
1522         GraphTraceLen 
-= ds
; 
1524         RepaintGraphWindow(); 
1528 // trim graph to input argument length 
1529 int CmdRtrim(const char *Cmd
) 
1535         RepaintGraphWindow(); 
1539 // trim graph (middle) piece 
1540 int CmdMtrim(const char *Cmd
) { 
1541         int start 
= 0, stop 
= 0; 
1542         sscanf(Cmd
, "%i %i", &start
, &stop
); 
1544         if (start 
> GraphTraceLen       
|| stop 
> GraphTraceLen 
|| start 
> stop
) return 0; 
1545         start
++; //leave start position sample 
1547         GraphTraceLen 
-= stop 
- start
; 
1548         for (int i 
= 0; i 
< GraphTraceLen
; i
++) { 
1549                 GraphBuffer
[start
+i
] = GraphBuffer
[stop
+i
]; 
1555 int CmdNorm(const char *Cmd
) 
1558         int max 
= INT_MIN
, min 
= INT_MAX
; 
1560         for (i 
= 10; i 
< GraphTraceLen
; ++i
) { 
1561                 if (GraphBuffer
[i
] > max
) 
1562                         max 
= GraphBuffer
[i
]; 
1563                 if (GraphBuffer
[i
] < min
) 
1564                         min 
= GraphBuffer
[i
]; 
1568                 for (i 
= 0; i 
< GraphTraceLen
; ++i
) { 
1569                         GraphBuffer
[i
] = (GraphBuffer
[i
] - ((max 
+ min
) / 2)) * 256 / 
1571                                 //marshmelow: adjusted *1000 to *256 to make +/- 128 so demod commands still work 
1574         RepaintGraphWindow(); 
1578 int CmdPlot(const char *Cmd
) 
1584 int CmdSave(const char *Cmd
) 
1586         char filename
[FILE_PATH_SIZE
] = {0x00}; 
1590         if (len 
> FILE_PATH_SIZE
) len 
= FILE_PATH_SIZE
; 
1591         memcpy(filename
, Cmd
, len
); 
1594         FILE *f 
= fopen(filename
, "w"); 
1596                 PrintAndLog("couldn't open '%s'", filename
); 
1600         for (i 
= 0; i 
< GraphTraceLen
; i
++) { 
1601                 fprintf(f
, "%d\n", GraphBuffer
[i
]); 
1604         PrintAndLog("saved to '%s'", Cmd
); 
1608 int CmdScale(const char *Cmd
) 
1610         CursorScaleFactor 
= atoi(Cmd
); 
1611         if (CursorScaleFactor 
== 0) { 
1612                 PrintAndLog("bad, can't have zero scale"); 
1613                 CursorScaleFactor 
= 1; 
1615         RepaintGraphWindow(); 
1619 int CmdDirectionalThreshold(const char *Cmd
) 
1621         int8_t upThres 
= param_get8(Cmd
, 0); 
1622         int8_t downThres 
= param_get8(Cmd
, 1); 
1624         printf("Applying Up Threshold: %d, Down Threshold: %d\n", upThres
, downThres
); 
1626         int lastValue 
= GraphBuffer
[0]; 
1627         GraphBuffer
[0] = 0; // Will be changed at the end, but init 0 as we adjust to last samples value if no threshold kicks in. 
1629         for (int i 
= 1; i 
< GraphTraceLen
; ++i
) { 
1630                 // Apply first threshold to samples heading up 
1631                 if (GraphBuffer
[i
] >= upThres 
&& GraphBuffer
[i
] > lastValue
) 
1633                         lastValue 
= GraphBuffer
[i
]; // Buffer last value as we overwrite it. 
1634                         GraphBuffer
[i
] = 127; 
1636                 // Apply second threshold to samples heading down 
1637                 else if (GraphBuffer
[i
] <= downThres 
&& GraphBuffer
[i
] < lastValue
) 
1639                         lastValue 
= GraphBuffer
[i
]; // Buffer last value as we overwrite it. 
1640                         GraphBuffer
[i
] = -127; 
1644                         lastValue 
= GraphBuffer
[i
]; // Buffer last value as we overwrite it. 
1645                         GraphBuffer
[i
] = GraphBuffer
[i
-1]; 
1649         GraphBuffer
[0] = GraphBuffer
[1]; // Aline with first edited sample. 
1650         RepaintGraphWindow(); 
1654 int CmdZerocrossings(const char *Cmd
) 
1656         // Zero-crossings aren't meaningful unless the signal is zero-mean. 
1663         for (int i 
= 0; i 
< GraphTraceLen
; ++i
) { 
1664                 if (GraphBuffer
[i
] * sign 
>= 0) { 
1665                         // No change in sign, reproduce the previous sample count. 
1667                         GraphBuffer
[i
] = lastZc
; 
1669                         // Change in sign, reset the sample count. 
1671                         GraphBuffer
[i
] = lastZc
; 
1679         RepaintGraphWindow(); 
1683 int usage_data_bin2hex(){ 
1684                 PrintAndLog("Usage: data bin2hex <binary_digits>"); 
1685                 PrintAndLog("       This function will ignore all characters not 1 or 0 (but stop reading on whitespace)"); 
1690  * @brief Utility for conversion via cmdline. 
1694 int Cmdbin2hex(const char *Cmd
) 
1697         if(param_getptr(Cmd
, &bg
, &en
, 0)) 
1699                 return usage_data_bin2hex(); 
1701         //Number of digits supplied as argument 
1702         size_t length 
= en  
- bg 
+1; 
1703         size_t bytelen 
= (length
+7) / 8; 
1704         uint8_t* arr 
= (uint8_t *) malloc(bytelen
); 
1705         memset(arr
, 0, bytelen
); 
1706         BitstreamOut bout 
= { arr
, 0, 0 }; 
1708         for(; bg 
<= en 
;bg
++) 
1711                 if( c 
== '1')   pushBit(&bout
, 1); 
1712                 else if( c 
== '0')      pushBit(&bout
, 0); 
1713                 else PrintAndLog("Ignoring '%c'", c
); 
1716         if(bout
.numbits 
% 8 != 0) 
1718                 printf("[padded with %d zeroes]\n", 8-(bout
.numbits 
% 8)); 
1721         //Uses printf instead of PrintAndLog since the latter 
1722         // adds linebreaks to each printout - this way was more convenient since we don't have to 
1723         // allocate a string and write to that first... 
1724         for(size_t x 
= 0; x  
< bytelen 
; x
++) 
1726                 printf("%02X", arr
[x
]); 
1733 int usage_data_hex2bin() { 
1734         PrintAndLog("Usage: data hex2bin <hex_digits>"); 
1735         PrintAndLog("       This function will ignore all non-hexadecimal characters (but stop reading on whitespace)"); 
1740 int Cmdhex2bin(const char *Cmd
) 
1743         if(param_getptr(Cmd
, &bg
, &en
, 0)) 
1745                 return usage_data_hex2bin(); 
1753                 if (x 
>= 'a' && x 
<= 'f') 
1755                 // convert to numeric value 
1756                 if (x 
>= '0' && x 
<= '9') 
1758                 else if (x 
>= 'A' && x 
<= 'F') 
1763                 //Uses printf instead of PrintAndLog since the latter 
1764                 // adds linebreaks to each printout - this way was more convenient since we don't have to 
1765                 // allocate a string and write to that first... 
1767                 for(int i
= 0 ; i 
< 4 ; ++i
) 
1768                         printf("%d",(x 
>> (3 - i
)) & 1); 
1775 static command_t CommandTable
[] = 
1777         {"help",            CmdHelp
,            1, "This help"}, 
1778         {"askedgedetect",   CmdAskEdgeDetect
,   1, "[threshold] Adjust Graph for manual ask demod using the length of sample differences to detect the edge of a wave (use 20-45, def:25)"}, 
1779         {"askgproxiidemod", CmdG_Prox_II_Demod
, 1, "Demodulate a G Prox II tag from GraphBuffer"}, 
1780         {"autocorr",        CmdAutoCorr
,        1, "[window length] [g] -- Autocorrelation over window - g to save back to GraphBuffer (overwrite)"}, 
1781         {"biphaserawdecode",CmdBiphaseDecodeRaw
,1, "[offset] [invert<0|1>] [maxErr] -- Biphase decode bin stream in DemodBuffer (offset = 0|1 bits to shift the decode start)"}, 
1782         {"bin2hex",         Cmdbin2hex
,         1, "bin2hex <digits>     -- Converts binary to hexadecimal"}, 
1783         {"bitsamples",      CmdBitsamples
,      0, "Get raw samples as bitstring"}, 
1784         {"buffclear",       CmdBuffClear
,       1, "Clear sample buffer and graph window"}, 
1785         {"dec",             CmdDec
,             1, "Decimate samples"}, 
1786         {"detectclock",     CmdDetectClockRate
, 1, "[modulation] Detect clock rate of wave in GraphBuffer (options: 'a','f','n','p' for ask, fsk, nrz, psk respectively)"}, 
1787         {"fdxbdemod",       CmdFDXBdemodBI    
, 1, "Demodulate a FDX-B ISO11784/85 Biphase tag from GraphBuffer"}, 
1788         //{"fskfcdetect",   CmdFSKfcDetect,     1, "Try to detect the Field Clock of an FSK wave"}, 
1789         {"fskparadoxdemod", CmdFSKdemodParadox
, 1, "Demodulate a Paradox FSK tag from GraphBuffer"}, 
1790         {"getbitstream",    CmdGetBitStream
,    1, "Convert GraphBuffer's >=1 values to 1 and <1 to 0"}, 
1791         {"grid",            CmdGrid
,            1, "<x> <y> -- overlay grid on graph window, use zero value to turn off either"}, 
1792         {"hexsamples",      CmdHexsamples
,      0, "<bytes> [<offset>] -- Dump big buffer as hex bytes"}, 
1793         {"hex2bin",         Cmdhex2bin
,         1, "hex2bin <hexadecimal> -- Converts hexadecimal to binary"}, 
1794         {"hide",            CmdHide
,            1, "Hide graph window"}, 
1795         {"hpf",             CmdHpf
,             1, "Remove DC offset from trace"}, 
1796         {"load",            CmdLoad
,            1, "<filename> -- Load trace (to graph window"}, 
1797         {"ltrim",           CmdLtrim
,           1, "<samples> -- Trim samples from left of trace"}, 
1798         {"rtrim",           CmdRtrim
,           1, "<location to end trace> -- Trim samples from right of trace"}, 
1799         {"mtrim",           CmdMtrim
,           1, "<start> <stop> -- Trim out samples from the specified start to the specified stop"}, 
1800         {"manrawdecode",    Cmdmandecoderaw
,    1, "[invert] [maxErr] -- Manchester decode binary stream in DemodBuffer"}, 
1801         {"norm",            CmdNorm
,            1, "Normalize max/min to +/-128"}, 
1802         {"plot",            CmdPlot
,            1, "Show graph window (hit 'h' in window for keystroke help)"}, 
1803         {"printdemodbuffer",CmdPrintDemodBuff
,  1, "[x] [o] <offset> [l] <length> -- print the data in the DemodBuffer - 'x' for hex output"}, 
1804         {"psknexwatchdemod",CmdPSKNexWatch
,     1, "Demodulate a NexWatch tag (nexkey, quadrakey) (PSK1) from GraphBuffer"}, 
1805         {"rawdemod",        CmdRawDemod
,        1, "[modulation] ... <options> -see help (h option) -- Demodulate the data in the GraphBuffer and output binary"},   
1806         {"samples",         CmdSamples
,         0, "[512 - 40000] -- Get raw samples for graph window (GraphBuffer)"}, 
1807         {"save",            CmdSave
,            1, "<filename> -- Save trace (from graph window)"}, 
1808         {"setgraphmarkers", CmdSetGraphMarkers
, 1, "[orange_marker] [blue_marker] (in graph window)"}, 
1809         {"scale",           CmdScale
,           1, "<int> -- Set cursor display scale"}, 
1810         {"setdebugmode",    CmdSetDebugMode
,    1, "<0|1|2> -- Turn on or off Debugging Level for lf demods"}, 
1811         {"shiftgraphzero",  CmdGraphShiftZero
,  1, "<shift> -- Shift 0 for Graphed wave + or - shift value"}, 
1812         {"dirthreshold",    CmdDirectionalThreshold
,   1, "<thres up> <thres down> -- Max rising higher up-thres/ Min falling lower down-thres, keep rest as prev."}, 
1813         {"tune",            CmdTuneSamples
,     0, "Get hw tune samples for graph window"}, 
1814         {"undec",           CmdUndec
,           1, "Un-decimate samples by 2"}, 
1815         {"zerocrossings",   CmdZerocrossings
,   1, "Count time between zero-crossings"}, 
1816         {NULL
, NULL
, 0, NULL
} 
1819 int CmdData(const char *Cmd
) 
1821         CmdsParse(CommandTable
, Cmd
); 
1825 int CmdHelp(const char *Cmd
) 
1827         CmdsHelp(CommandTable
);