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 //-----------------------------------------------------------------------------
15 #include "proxmark3.h"
19 #include "cmdparser.h"
27 uint8_t DemodBuffer
[MAX_DEMOD_BUF_LEN
];
30 static int CmdHelp(const char *Cmd
);
32 //set the demod buffer with given array of binary (one bit per byte)
34 void setDemodBuf(uint8_t *buff
, size_t size
, size_t startIdx
)
37 for (; i
< size
; i
++){
38 DemodBuffer
[i
]=buff
[startIdx
++];
44 int CmdSetDebugMode(const char *Cmd
)
47 sscanf(Cmd
, "%i", &demod
);
48 g_debugMode
=(uint8_t)demod
;
53 void printDemodBuff(void)
56 int bitLen
= DemodBufferLen
;
58 PrintAndLog("no bits found in demod buffer");
61 if (bitLen
>512) bitLen
=512; //max output to 512 bits if we have more - should be plenty
63 // ensure equally divided by 16
66 for (i
= 0; i
<= (bitLen
-16); i
+=16) {
67 PrintAndLog("%i%i%i%i%i%i%i%i%i%i%i%i%i%i%i%i",
88 int CmdPrintDemodBuff(const char *Cmd
)
91 char printBuff
[512]={0x00};
92 uint8_t numBits
= DemodBufferLen
& 0xFFF0;
93 sscanf(Cmd
, "%c", &hex
);
95 PrintAndLog("Usage: data printdemodbuffer [x]");
96 PrintAndLog("Options: ");
97 PrintAndLog(" h This help");
98 PrintAndLog(" x output in hex (omit for binary output)");
102 numBits
= binarraytohex(printBuff
, (char *)DemodBuffer
, numBits
);
103 if (numBits
==0) return 0;
104 PrintAndLog("DemodBuffer: %s",printBuff
);
110 int CmdAmp(const char *Cmd
)
112 int i
, rising
, falling
;
113 int max
= INT_MIN
, min
= INT_MAX
;
115 for (i
= 10; i
< GraphTraceLen
; ++i
) {
116 if (GraphBuffer
[i
] > max
)
117 max
= GraphBuffer
[i
];
118 if (GraphBuffer
[i
] < min
)
119 min
= GraphBuffer
[i
];
124 for (i
= 0; i
< GraphTraceLen
; ++i
) {
125 if (GraphBuffer
[i
+ 1] < GraphBuffer
[i
]) {
127 GraphBuffer
[i
] = max
;
132 if (GraphBuffer
[i
+ 1] > GraphBuffer
[i
]) {
134 GraphBuffer
[i
] = min
;
141 RepaintGraphWindow();
146 * Generic command to demodulate ASK.
148 * Argument is convention: positive or negative (High mod means zero
149 * or high mod means one)
151 * Updates the Graph trace with 0/1 values
154 * c : 0 or 1 (or invert)
156 //this method ignores the clock
158 //this function strictly converts highs and lows to 1s and 0s for each sample in the graphbuffer
159 int Cmdaskdemod(const char *Cmd
)
162 int c
, high
= 0, low
= 0;
164 sscanf(Cmd
, "%i", &c
);
166 /* Detect high and lows */
167 for (i
= 0; i
< GraphTraceLen
; ++i
)
169 if (GraphBuffer
[i
] > high
)
170 high
= GraphBuffer
[i
];
171 else if (GraphBuffer
[i
] < low
)
172 low
= GraphBuffer
[i
];
176 if (c
!= 0 && c
!= 1) {
177 PrintAndLog("Invalid argument: %s", Cmd
);
181 if (GraphBuffer
[0] > 0) {
182 GraphBuffer
[0] = 1-c
;
186 for (i
= 1; i
< GraphTraceLen
; ++i
) {
187 /* Transitions are detected at each peak
188 * Transitions are either:
189 * - we're low: transition if we hit a high
190 * - we're high: transition if we hit a low
191 * (we need to do it this way because some tags keep high or
192 * low for long periods, others just reach the peak and go
195 //[marhsmellow] change == to >= for high and <= for low for fuzz
196 if ((GraphBuffer
[i
] >= high
) && (GraphBuffer
[i
- 1] == c
)) {
197 GraphBuffer
[i
] = 1 - c
;
198 } else if ((GraphBuffer
[i
] <= low
) && (GraphBuffer
[i
- 1] == (1 - c
))){
202 GraphBuffer
[i
] = GraphBuffer
[i
- 1];
205 RepaintGraphWindow();
209 //this function strictly converts >1 to 1 and <1 to 0 for each sample in the graphbuffer
210 int CmdGetBitStream(const char *Cmd
)
214 for (i
= 0; i
< GraphTraceLen
; i
++) {
215 if (GraphBuffer
[i
] >= 1) {
221 RepaintGraphWindow();
227 void printBitStream(uint8_t BitStream
[], uint32_t bitLen
)
231 PrintAndLog("Too few bits found: %d",bitLen
);
234 if (bitLen
>512) bitLen
=512;
236 // ensure equally divided by 16
240 for (i
= 0; i
<= (bitLen
-16); i
+=16) {
241 PrintAndLog("%i%i%i%i%i%i%i%i%i%i%i%i%i%i%i%i",
262 //print 64 bit EM410x ID in multiple formats
263 void printEM410x(uint64_t id
)
270 for (ii
=5; ii
>0;ii
--){
272 id2lo
=(id2lo
<<1LL) | ((id
& (iii
<< (i
+((ii
-1)*8)))) >> (i
+((ii
-1)*8)));
276 PrintAndLog("EM TAG ID : %010llx", id
);
277 PrintAndLog("Unique TAG ID: %010llx", id2lo
);
278 PrintAndLog("DEZ 8 : %08lld",id
& 0xFFFFFF);
279 PrintAndLog("DEZ 10 : %010lld",id
& 0xFFFFFF);
280 PrintAndLog("DEZ 5.5 : %05lld.%05lld",(id
>>16LL) & 0xFFFF,(id
& 0xFFFF));
281 PrintAndLog("DEZ 3.5A : %03lld.%05lld",(id
>>32ll),(id
& 0xFFFF));
282 PrintAndLog("DEZ 14/IK2 : %014lld",id
);
283 PrintAndLog("DEZ 15/IK3 : %015lld",id2lo
);
284 PrintAndLog("Other : %05lld_%03lld_%08lld",(id
&0xFFFF),((id
>>16LL) & 0xFF),(id
& 0xFFFFFF));
290 //takes 3 arguments - clock, invert and maxErr as integers
291 //attempts to demodulate ask while decoding manchester
292 //prints binary found and saves in graphbuffer for further commands
293 int CmdAskEM410xDemod(const char *Cmd
)
298 char cmdp
= param_getchar(Cmd
, 0);
299 if (strlen(Cmd
) > 10 || cmdp
== 'h' || cmdp
== 'H') {
300 PrintAndLog("Usage: data askem410xdemod [clock] <0|1> [maxError]");
301 PrintAndLog(" [set clock as integer] optional, if not set, autodetect.");
302 PrintAndLog(" <invert>, 1 for invert output");
303 PrintAndLog(" [set maximum allowed errors], default = 100.");
305 PrintAndLog(" sample: data askem410xdemod = demod an EM410x Tag ID from GraphBuffer");
306 PrintAndLog(" : data askem410xdemod 32 = demod an EM410x Tag ID from GraphBuffer using a clock of RF/32");
307 PrintAndLog(" : data askem410xdemod 32 1 = demod an EM410x Tag ID from GraphBuffer using a clock of RF/32 and inverting data");
308 PrintAndLog(" : data askem410xdemod 1 = demod an EM410x Tag ID from GraphBuffer while inverting data");
309 PrintAndLog(" : data askem410xdemod 64 1 0 = demod an EM410x Tag ID from GraphBuffer using a clock of RF/64 and inverting data and allowing 0 demod errors");
315 uint8_t BitStream
[MAX_GRAPH_TRACE_LEN
]={0};
316 sscanf(Cmd
, "%i %i %i", &clk
, &invert
, &maxErr
);
317 if (invert
!= 0 && invert
!= 1) {
318 PrintAndLog("Invalid argument: %s", Cmd
);
321 size_t BitLen
= getFromGraphBuf(BitStream
);
323 if (g_debugMode
==1) PrintAndLog("DEBUG: Bitlen from grphbuff: %d",BitLen
);
324 if (BitLen
==0) return 0;
326 errCnt
= askmandemod(BitStream
, &BitLen
, &clk
, &invert
, maxErr
);
327 if (errCnt
<0||BitLen
<16){ //if fatal error (or -1)
328 if (g_debugMode
==1) PrintAndLog("no data found %d, errors:%d, bitlen:%d, clock:%d",errCnt
,invert
,BitLen
,clk
);
331 PrintAndLog("\nUsing Clock: %d - Invert: %d - Bits Found: %d",clk
,invert
,BitLen
);
335 PrintAndLog("# Errors during Demoding (shown as 77 in bit stream): %d",errCnt
);
337 //PrintAndLog("ASK/Manchester decoded bitstream:");
338 // Now output the bitstream to the scrollback by line of 16 bits
339 setDemodBuf(BitStream
,BitLen
,0);
343 lo
= Em410xDecode(BitStream
, &BitLen
, &idx
);
345 //set GraphBuffer for clone or sim command
346 setDemodBuf(BitStream
, BitLen
, idx
);
348 PrintAndLog("DEBUG: idx: %d, Len: %d, Printing Demod Buffer:", idx
, BitLen
);
351 PrintAndLog("EM410x pattern found: ");
352 if (BitLen
> 64) PrintAndLog("\nWarning! Length not what is expected - Length: %d bits\n",BitLen
);
359 int ASKmanDemod(const char *Cmd
, bool verbose
, bool emSearch
)
365 uint8_t BitStream
[MAX_GRAPH_TRACE_LEN
]={0};
366 sscanf(Cmd
, "%i %i %i", &clk
, &invert
, &maxErr
);
367 if (invert
!= 0 && invert
!= 1) {
368 PrintAndLog("Invalid argument: %s", Cmd
);
375 size_t BitLen
= getFromGraphBuf(BitStream
);
376 if (g_debugMode
==1) PrintAndLog("DEBUG: Bitlen from grphbuff: %d",BitLen
);
377 if (BitLen
==0) return 0;
379 errCnt
= askmandemod(BitStream
, &BitLen
, &clk
, &invert
, maxErr
);
380 if (errCnt
<0||BitLen
<16){ //if fatal error (or -1)
381 if (g_debugMode
==1) PrintAndLog("no data found %d, errors:%d, bitlen:%d, clock:%d",errCnt
,invert
,BitLen
,clk
);
384 if (verbose
) PrintAndLog("\nUsing Clock: %d - Invert: %d - Bits Found: %d",clk
,invert
,BitLen
);
388 if (verbose
) PrintAndLog("# Errors during Demoding (shown as 77 in bit stream): %d",errCnt
);
390 if (verbose
) PrintAndLog("ASK/Manchester decoded bitstream:");
391 // Now output the bitstream to the scrollback by line of 16 bits
392 setDemodBuf(BitStream
,BitLen
,0);
393 if (verbose
) printDemodBuff();
397 lo
= Em410xDecode(BitStream
, &BitLen
, &idx
);
399 //set GraphBuffer for clone or sim command
400 setDemodBuf(BitStream
, BitLen
, idx
);
402 PrintAndLog("DEBUG: idx: %d, Len: %d, Printing Demod Buffer:", idx
, BitLen
);
405 if (verbose
) PrintAndLog("EM410x pattern found: ");
406 if (verbose
) printEM410x(lo
);
414 //takes 3 arguments - clock, invert, maxErr as integers
415 //attempts to demodulate ask while decoding manchester
416 //prints binary found and saves in graphbuffer for further commands
417 int Cmdaskmandemod(const char *Cmd
)
419 char cmdp
= param_getchar(Cmd
, 0);
420 if (strlen(Cmd
) > 10 || cmdp
== 'h' || cmdp
== 'H') {
421 PrintAndLog("Usage: data rawdemod am [clock] <0|1> [maxError]");
422 PrintAndLog(" [set clock as integer] optional, if not set, autodetect.");
423 PrintAndLog(" <invert>, 1 for invert output");
424 PrintAndLog(" [set maximum allowed errors], default = 100.");
426 PrintAndLog(" sample: data rawdemod am = demod an ask/manchester tag from GraphBuffer");
427 PrintAndLog(" : data rawdemod am 32 = demod an ask/manchester tag from GraphBuffer using a clock of RF/32");
428 PrintAndLog(" : data rawdemod am 32 1 = demod an ask/manchester tag from GraphBuffer using a clock of RF/32 and inverting data");
429 PrintAndLog(" : data rawdemod am 1 = demod an ask/manchester tag from GraphBuffer while inverting data");
430 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");
433 return ASKmanDemod(Cmd
, TRUE
, TRUE
);
438 //stricktly take 10 and 01 and convert to 0 and 1
439 int Cmdmandecoderaw(const char *Cmd
)
445 char cmdp
= param_getchar(Cmd
, 0);
446 if (strlen(Cmd
) > 1 || cmdp
== 'h' || cmdp
== 'H') {
447 PrintAndLog("Usage: data manrawdecode");
448 PrintAndLog(" Takes 10 and 01 and converts to 0 and 1 respectively");
449 PrintAndLog(" --must have binary sequence in demodbuffer (run data askrawdemod first)");
451 PrintAndLog(" sample: data manrawdecode = decode manchester bitstream from the demodbuffer");
454 if (DemodBufferLen
==0) return 0;
455 uint8_t BitStream
[MAX_GRAPH_TRACE_LEN
]={0};
457 for (;i
<DemodBufferLen
;++i
){
458 if (DemodBuffer
[i
]>high
) high
=DemodBuffer
[i
];
459 else if(DemodBuffer
[i
]<low
) low
=DemodBuffer
[i
];
460 BitStream
[i
]=DemodBuffer
[i
];
462 if (high
>1 || low
<0 ){
463 PrintAndLog("Error: please raw demod the wave first then mancheseter raw decode");
467 errCnt
=manrawdecode(BitStream
, &size
);
469 PrintAndLog("Too many errors: %d",errCnt
);
472 PrintAndLog("Manchester Decoded - # errors:%d - data:",errCnt
);
473 printBitStream(BitStream
, size
);
477 id
= Em410xDecode(BitStream
, &size
, &idx
);
479 //need to adjust to set bitstream back to manchester encoded data
480 //setDemodBuf(BitStream, size, idx);
490 //take 01 or 10 = 0 and 11 or 00 = 1
491 //takes 2 arguments "offset" default = 0 if 1 it will shift the decode by one bit
492 // and "invert" default = 0 if 1 it will invert output
493 // since it is not like manchester and doesn't have an incorrect bit pattern we
494 // cannot determine if our decode is correct or if it should be shifted by one bit
495 // the argument offset allows us to manually shift if the output is incorrect
496 // (better would be to demod and decode at the same time so we can distinguish large
497 // width waves vs small width waves to help the decode positioning) or askbiphdemod
498 int CmdBiphaseDecodeRaw(const char *Cmd
)
506 char cmdp
= param_getchar(Cmd
, 0);
507 if (strlen(Cmd
) > 3 || cmdp
== 'h' || cmdp
== 'H') {
508 PrintAndLog("Usage: data biphaserawdecode [offset] <invert>");
509 PrintAndLog(" Converts 10 or 01 to 0 and 11 or 00 to 1");
510 PrintAndLog(" --must have binary sequence in demodbuffer (run data askrawdemod first)");
512 PrintAndLog(" [offset <0|1>], set to 0 not to adjust start position or to 1 to adjust decode start position");
513 PrintAndLog(" [invert <0|1>], set to 1 to invert output");
515 PrintAndLog(" sample: data biphaserawdecode = decode biphase bitstream from the demodbuffer");
516 PrintAndLog(" sample: data biphaserawdecode 1 1 = decode biphase bitstream from the demodbuffer, set offset, and invert output");
519 sscanf(Cmd
, "%i %i", &offset
, &invert
);
520 if (DemodBufferLen
==0) return 0;
521 uint8_t BitStream
[MAX_GRAPH_TRACE_LEN
]={0};
522 //get graphbuffer & high and low
523 for (;i
<DemodBufferLen
;++i
){
524 if(DemodBuffer
[i
]>high
)high
=DemodBuffer
[i
];
525 else if(DemodBuffer
[i
]<low
)low
=DemodBuffer
[i
];
526 BitStream
[i
]=DemodBuffer
[i
];
528 if (high
>1 || low
<0){
529 PrintAndLog("Error: please raw demod the wave first then decode");
533 errCnt
=BiphaseRawDecode(BitStream
, &size
, offset
, invert
);
535 PrintAndLog("Too many errors attempting to decode: %d",errCnt
);
538 PrintAndLog("Biphase Decoded using offset: %d - # errors:%d - data:",offset
,errCnt
);
539 printBitStream(BitStream
, size
);
540 PrintAndLog("\nif bitstream does not look right try offset=1");
541 if (offset
== 1) setDemodBuf(DemodBuffer
,DemodBufferLen
-1,1); //remove first bit from raw demod
545 // set demod buffer back to raw after biphase demod
546 void setBiphaseDemodBuf(uint8_t *BitStream
, size_t size
)
548 uint8_t rawStream
[512]={0x00};
552 PrintAndLog("ERROR - Biphase Demod Buffer overrun");
555 for (size_t idx
=0; idx
<size
; idx
++){
557 rawStream
[i
++] = curPhase
;
558 rawStream
[i
++] = curPhase
;
561 rawStream
[i
++] = curPhase
;
562 rawStream
[i
++] = curPhase
^ 1;
565 setDemodBuf(rawStream
,i
,0);
569 //takes 4 arguments - clock, invert, maxErr as integers and amplify as char
570 //attempts to demodulate ask only
571 //prints binary found and saves in graphbuffer for further commands
572 int ASKrawDemod(const char *Cmd
, bool verbose
)
578 char amp
= param_getchar(Cmd
, 0);
579 uint8_t BitStream
[MAX_GRAPH_TRACE_LEN
]={0};
580 sscanf(Cmd
, "%i %i %i %c", &clk
, &invert
, &maxErr
, &
);
581 if (invert
!= 0 && invert
!= 1) {
582 if (verbose
) PrintAndLog("Invalid argument: %s", Cmd
);
589 if (amp
== 'a' || amp
== 'A') askAmp
=1;
590 size_t BitLen
= getFromGraphBuf(BitStream
);
591 if (BitLen
==0) return 0;
593 errCnt
= askrawdemod(BitStream
, &BitLen
, &clk
, &invert
, maxErr
, askAmp
);
594 if (errCnt
==-1||BitLen
<16){ //throw away static - allow 1 and -1 (in case of threshold command first)
595 if (verbose
) PrintAndLog("no data found");
596 if (g_debugMode
==1 && verbose
) PrintAndLog("errCnt: %d, BitLen: %d, clk: %d, invert: %d", errCnt
, BitLen
, clk
, invert
);
599 if (verbose
) PrintAndLog("Using Clock: %d - invert: %d - Bits Found: %d", clk
, invert
, BitLen
);
601 //move BitStream back to DemodBuffer
602 setDemodBuf(BitStream
,BitLen
,0);
605 if (errCnt
>0 && verbose
){
606 PrintAndLog("# Errors during Demoding (shown as 77 in bit stream): %d", errCnt
);
609 PrintAndLog("ASK demoded bitstream:");
610 // Now output the bitstream to the scrollback by line of 16 bits
611 printBitStream(BitStream
,BitLen
);
617 //attempts to demodulate and identify a G_Prox_II verex/chubb card
618 //WARNING: if it fails during some points it will destroy the DemodBuffer data
619 // but will leave the GraphBuffer intact.
620 //if successful it will push askraw data back to demod buffer ready for emulation
621 int CmdG_Prox_II_Demod(const char *Cmd
)
623 int ans
= ASKrawDemod(Cmd
, FALSE
);
625 if (g_debugMode
) PrintAndLog("Error AskrawDemod: %d",ans
);
628 size_t size
= DemodBufferLen
;
629 ans
= BiphaseRawDecode(DemodBuffer
, &size
, 0, 0);
631 if (g_debugMode
) PrintAndLog("Error BiphaseRawDecode: %d",ans
);
634 //call lfdemod.c demod for gProxII
635 ans
= gProxII_Demod(DemodBuffer
, &size
);
637 if (g_debugMode
) PrintAndLog("Error gProxII_Demod 1st Try: %d",ans
);
639 ans
= BiphaseRawDecode(DemodBuffer
, &size
, 1, 0);
641 if (g_debugMode
) PrintAndLog("Error BiphaseRawDecode: %d",ans
);
644 ans
= gProxII_Demod(DemodBuffer
, &size
);
646 if (g_debugMode
) PrintAndLog("Error gProxII_Demod 1st Try: %d",ans
);
651 uint32_t ByteStream
[65] = {0x00};
656 size_t startIdx
= ans
+ 6; //start after preamble
657 for (size_t idx
= 0; idx
<size
-6; idx
++){
658 if ((idx
+1) % 5 == 0){
659 //spacer bit - should be 0
660 if (DemodBuffer
[startIdx
+idx
] != 0) {
661 if (g_debugMode
) PrintAndLog("Error spacer not 0: %d, pos: %d",DemodBuffer
[startIdx
+idx
],startIdx
+idx
);
666 if (keyCnt
<8){ //lsb first
667 xorKey
= xorKey
| (DemodBuffer
[startIdx
+idx
]<<keyCnt
);
669 if (keyCnt
==8 && g_debugMode
) PrintAndLog("xorKey Found: %02x", xorKey
);
673 ByteStream
[ByteCnt
] = ByteStream
[ByteCnt
] | (DemodBuffer
[startIdx
+idx
]<<bitCnt
);
675 if (bitCnt
% 8 == 0){
676 if (g_debugMode
) PrintAndLog("byte %d: %02x",ByteCnt
,ByteStream
[ByteCnt
]);
681 for (uint8_t i
= 0; i
< ByteCnt
; i
++){
682 ByteStream
[i
] ^= xorKey
; //xor
683 if (g_debugMode
) PrintAndLog("byte %d after xor: %02x", i
, ByteStream
[i
]);
685 //now ByteStream contains 64 bytes of decrypted raw tag data
687 uint8_t fmtLen
= ByteStream
[0]>>2;
690 uint32_t raw1
= bytebits_to_byte(DemodBuffer
+ans
,32);
691 uint32_t raw2
= bytebits_to_byte(DemodBuffer
+ans
+32, 32);
692 uint32_t raw3
= bytebits_to_byte(DemodBuffer
+ans
+64, 32);
695 FC
= ((ByteStream
[3] & 0x7F)<<7) | (ByteStream
[4]>>1);
696 Card
= ((ByteStream
[4]&1)<<19) | (ByteStream
[5]<<11) | (ByteStream
[6]<<3) | (ByteStream
[7]>>5);
697 PrintAndLog("G-Prox-II Found: FmtLen %d, FC %d, Card %d",fmtLen
,FC
,Card
);
698 } else if(fmtLen
==26){
699 FC
= ((ByteStream
[3] & 0x7F)<<1) | (ByteStream
[4]>>7);
700 Card
= ((ByteStream
[4]&0x7F)<<9) | (ByteStream
[5]<<1) | (ByteStream
[6]>>7);
701 PrintAndLog("G-Prox-II Found: FmtLen %d, FC %d, Card %d",fmtLen
,FC
,Card
);
703 PrintAndLog("Unknown G-Prox-II Fmt Found: FmtLen %d",fmtLen
);
705 PrintAndLog("Raw: %08x%08x%08x", raw1
,raw2
,raw3
);
706 setBiphaseDemodBuf(DemodBuffer
+ans
, 96);
710 //by marshmellow - see ASKrawDemod
711 int Cmdaskrawdemod(const char *Cmd
)
713 char cmdp
= param_getchar(Cmd
, 0);
714 if (strlen(Cmd
) > 12 || cmdp
== 'h' || cmdp
== 'H') {
715 PrintAndLog("Usage: data rawdemod ar [clock] <invert> [maxError] [amplify]");
716 PrintAndLog(" [set clock as integer] optional, if not set, autodetect");
717 PrintAndLog(" <invert>, 1 to invert output");
718 PrintAndLog(" [set maximum allowed errors], default = 100");
719 PrintAndLog(" <amplify>, 'a' to attempt demod with ask amplification, default = no amp");
721 PrintAndLog(" sample: data rawdemod ar = demod an ask tag from GraphBuffer");
722 PrintAndLog(" : data rawdemod ar a = demod an ask tag from GraphBuffer, amplified");
723 PrintAndLog(" : data rawdemod ar 32 = demod an ask tag from GraphBuffer using a clock of RF/32");
724 PrintAndLog(" : data rawdemod ar 32 1 = demod an ask tag from GraphBuffer using a clock of RF/32 and inverting data");
725 PrintAndLog(" : data rawdemod ar 1 = demod an ask tag from GraphBuffer while inverting data");
726 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");
727 PrintAndLog(" : data rawdemod ar 64 1 0 a = demod an ask tag from GraphBuffer using a clock of RF/64, inverting data and allowing 0 demod errors, and amp");
730 return ASKrawDemod(Cmd
, TRUE
);
733 int AutoCorrelate(int window
, bool SaveGrph
, bool verbose
)
735 static int CorrelBuffer
[MAX_GRAPH_TRACE_LEN
];
736 size_t Correlation
= 0;
739 if (verbose
) PrintAndLog("performing %d correlations", GraphTraceLen
- window
);
740 for (int i
= 0; i
< GraphTraceLen
- window
; ++i
) {
742 for (int j
= 0; j
< window
; ++j
) {
743 sum
+= (GraphBuffer
[j
]*GraphBuffer
[i
+ j
]) / 256;
745 CorrelBuffer
[i
] = sum
;
746 if (sum
>= maxSum
-100 && sum
<= maxSum
+100){
748 Correlation
= i
-lastMax
;
750 if (sum
> maxSum
) maxSum
= sum
;
751 } else if (sum
> maxSum
){
757 //try again with wider margin
758 for (int i
= 0; i
< GraphTraceLen
- window
; i
++){
759 if (CorrelBuffer
[i
] >= maxSum
-(maxSum
*0.05) && CorrelBuffer
[i
] <= maxSum
+(maxSum
*0.05)){
761 Correlation
= i
-lastMax
;
763 //if (CorrelBuffer[i] > maxSum) maxSum = sum;
767 if (verbose
&& Correlation
> 0) PrintAndLog("Possible Correlation: %d samples",Correlation
);
770 GraphTraceLen
= GraphTraceLen
- window
;
771 memcpy(GraphBuffer
, CorrelBuffer
, GraphTraceLen
* sizeof (int));
772 RepaintGraphWindow();
777 int usage_data_autocorr(void)
780 PrintAndLog("Usage: data autocorr [window] [g]");
781 PrintAndLog("Options: ");
782 PrintAndLog(" h This help");
783 PrintAndLog(" [window] window length for correlation - default = 4000");
784 PrintAndLog(" g save back to GraphBuffer (overwrite)");
788 int CmdAutoCorr(const char *Cmd
)
790 char cmdp
= param_getchar(Cmd
, 0);
791 if (cmdp
== 'h' || cmdp
== 'H')
792 return usage_data_autocorr();
793 int window
= 4000; //set default
795 bool updateGrph
= FALSE
;
796 sscanf(Cmd
, "%i %c", &window
, &grph
);
798 if (window
>= GraphTraceLen
) {
799 PrintAndLog("window must be smaller than trace (%d samples)",
803 if (grph
== 'g') updateGrph
=TRUE
;
804 return AutoCorrelate(window
, updateGrph
, TRUE
);
807 int CmdBitsamples(const char *Cmd
)
812 GetFromBigBuf(got
,sizeof(got
),0);
813 WaitForResponse(CMD_ACK
,NULL
);
815 for (int j
= 0; j
< sizeof(got
); j
++) {
816 for (int k
= 0; k
< 8; k
++) {
817 if(got
[j
] & (1 << (7 - k
))) {
818 GraphBuffer
[cnt
++] = 1;
820 GraphBuffer
[cnt
++] = 0;
825 RepaintGraphWindow();
830 * Convert to a bitstream
832 int CmdBitstream(const char *Cmd
)
840 int hithigh
, hitlow
, first
;
842 /* Detect high and lows and clock */
843 for (i
= 0; i
< GraphTraceLen
; ++i
)
845 if (GraphBuffer
[i
] > high
)
846 high
= GraphBuffer
[i
];
847 else if (GraphBuffer
[i
] < low
)
848 low
= GraphBuffer
[i
];
852 clock
= GetAskClock(Cmd
, high
, 1);
856 for (i
= 0; i
< (int)(gtl
/ clock
); ++i
)
861 /* Find out if we hit both high and low peaks */
862 for (j
= 0; j
< clock
; ++j
)
864 if (GraphBuffer
[(i
* clock
) + j
] == high
)
866 else if (GraphBuffer
[(i
* clock
) + j
] == low
)
868 /* it doesn't count if it's the first part of our read
869 because it's really just trailing from the last sequence */
870 if (first
&& (hithigh
|| hitlow
))
871 hithigh
= hitlow
= 0;
875 if (hithigh
&& hitlow
)
879 /* If we didn't hit both high and low peaks, we had a bit transition */
880 if (!hithigh
|| !hitlow
)
883 AppendGraph(0, clock
, bit
);
886 RepaintGraphWindow();
890 int CmdBuffClear(const char *Cmd
)
892 UsbCommand c
= {CMD_BUFF_CLEAR
};
898 int CmdDec(const char *Cmd
)
900 for (int i
= 0; i
< (GraphTraceLen
/ 2); ++i
)
901 GraphBuffer
[i
] = GraphBuffer
[i
* 2];
903 PrintAndLog("decimated by 2");
904 RepaintGraphWindow();
908 * Undecimate - I'd call it 'interpolate', but we'll save that
909 * name until someone does an actual interpolation command, not just
910 * blindly repeating samples
914 int CmdUndec(const char *Cmd
)
916 if(param_getchar(Cmd
, 0) == 'h')
918 PrintAndLog("Usage: data undec [factor]");
919 PrintAndLog("This function performs un-decimation, by repeating each sample N times");
920 PrintAndLog("Options: ");
921 PrintAndLog(" h This help");
922 PrintAndLog(" factor The number of times to repeat each sample.[default:2]");
923 PrintAndLog("Example: 'data undec 3'");
927 uint8_t factor
= param_get8ex(Cmd
, 0,2, 10);
928 //We have memory, don't we?
929 int swap
[MAX_GRAPH_TRACE_LEN
] = { 0 };
930 uint32_t g_index
= 0 ,s_index
= 0;
931 while(g_index
< GraphTraceLen
&& s_index
< MAX_GRAPH_TRACE_LEN
)
934 for(count
= 0; count
< factor
&& s_index
+count
< MAX_GRAPH_TRACE_LEN
; count
++)
935 swap
[s_index
+count
] = GraphBuffer
[g_index
];
939 memcpy(GraphBuffer
,swap
, s_index
* sizeof(int));
940 GraphTraceLen
= s_index
;
941 RepaintGraphWindow();
946 //shift graph zero up or down based on input + or -
947 int CmdGraphShiftZero(const char *Cmd
)
951 //set options from parameters entered with the command
952 sscanf(Cmd
, "%i", &shift
);
954 for(int i
= 0; i
<GraphTraceLen
; i
++){
955 shiftedVal
=GraphBuffer
[i
]+shift
;
958 else if (shiftedVal
<-127)
960 GraphBuffer
[i
]= shiftedVal
;
967 //use large jumps in read samples to identify edges of waves and then amplify that wave to max
968 //similar to dirtheshold, threshold, and askdemod commands
969 //takes a threshold length which is the measured length between two samples then determines an edge
970 int CmdAskEdgeDetect(const char *Cmd
)
973 sscanf(Cmd
, "%i", &thresLen
);
976 for(int i
= 1; i
<GraphTraceLen
; i
++){
977 if (GraphBuffer
[i
]-GraphBuffer
[i
-1]>=thresLen
) //large jump up
979 else if(GraphBuffer
[i
]-GraphBuffer
[i
-1]<=-1*thresLen
) //large jump down
982 shiftedVal
=GraphBuffer
[i
]+shift
;
986 else if (shiftedVal
<-127)
988 GraphBuffer
[i
-1] = shiftedVal
;
990 RepaintGraphWindow();
995 /* Print our clock rate */
996 // uses data from graphbuffer
997 // adjusted to take char parameter for type of modulation to find the clock - by marshmellow.
998 int CmdDetectClockRate(const char *Cmd
)
1000 char cmdp
= param_getchar(Cmd
, 0);
1001 if (strlen(Cmd
) > 3 || strlen(Cmd
) == 0 || cmdp
== 'h' || cmdp
== 'H') {
1002 PrintAndLog("Usage: data detectclock [modulation]");
1003 PrintAndLog(" [modulation as char], specify the modulation type you want to detect the clock of");
1004 PrintAndLog(" 'a' = ask, 'f' = fsk, 'n' = nrz/direct, 'p' = psk");
1006 PrintAndLog(" sample: data detectclock a = detect the clock of an ask modulated wave in the GraphBuffer");
1007 PrintAndLog(" data detectclock f = detect the clock of an fsk modulated wave in the GraphBuffer");
1008 PrintAndLog(" data detectclock p = detect the clock of an psk modulated wave in the GraphBuffer");
1009 PrintAndLog(" data detectclock n = detect the clock of an nrz/direct modulated wave in the GraphBuffer");
1013 ans
= GetAskClock("", true, false);
1014 } else if (cmdp
== 'f'){
1015 ans
= GetFskClock("", true, false);
1016 } else if (cmdp
== 'n'){
1017 ans
= GetNrzClock("", true, false);
1018 } else if (cmdp
== 'p'){
1019 ans
= GetPskClock("", true, false);
1021 PrintAndLog ("Please specify a valid modulation to detect the clock of - see option h for help");
1027 //fsk raw demod and print binary
1028 //takes 4 arguments - Clock, invert, fchigh, fclow
1029 //defaults: clock = 50, invert=1, fchigh=10, fclow=8 (RF/10 RF/8 (fsk2a))
1030 int FSKrawDemod(const char *Cmd
, bool verbose
)
1032 //raw fsk demod no manchester decoding no start bit finding just get binary from wave
1039 //set options from parameters entered with the command
1040 sscanf(Cmd
, "%i %i %i %i", &rfLen
, &invert
, &fchigh
, &fclow
);
1042 if (strlen(Cmd
)>0 && strlen(Cmd
)<=2) {
1044 invert
=1; //if invert option only is used
1049 uint8_t BitStream
[MAX_GRAPH_TRACE_LEN
]={0};
1050 size_t BitLen
= getFromGraphBuf(BitStream
);
1051 if (BitLen
==0) return 0;
1052 //get field clock lengths
1055 if (fchigh
==0 || fclow
== 0){
1056 fcs
= countFC(BitStream
, BitLen
, &dummy
);
1061 fchigh
= (fcs
>> 8) & 0xFF;
1065 //get bit clock length
1067 rfLen
= detectFSKClk(BitStream
, BitLen
, fchigh
, fclow
);
1068 if (rfLen
== 0) rfLen
= 50;
1070 if (verbose
) PrintAndLog("Args invert: %d - Clock:%d - fchigh:%d - fclow: %d",invert
,rfLen
,fchigh
, fclow
);
1071 int size
= fskdemod(BitStream
,BitLen
,(uint8_t)rfLen
,(uint8_t)invert
,(uint8_t)fchigh
,(uint8_t)fclow
);
1073 setDemodBuf(BitStream
,size
,0);
1075 // Now output the bitstream to the scrollback by line of 16 bits
1076 if(size
> (8*32)+2) size
= (8*32)+2; //only output a max of 8 blocks of 32 bits most tags will have full bit stream inside that sample size
1078 PrintAndLog("FSK decoded bitstream:");
1079 printBitStream(BitStream
,size
);
1084 if (verbose
) PrintAndLog("no FSK data found");
1090 //fsk raw demod and print binary
1091 //takes 4 arguments - Clock, invert, fchigh, fclow
1092 //defaults: clock = 50, invert=1, fchigh=10, fclow=8 (RF/10 RF/8 (fsk2a))
1093 int CmdFSKrawdemod(const char *Cmd
)
1095 char cmdp
= param_getchar(Cmd
, 0);
1096 if (strlen(Cmd
) > 10 || cmdp
== 'h' || cmdp
== 'H') {
1097 PrintAndLog("Usage: data rawdemod fs [clock] <invert> [fchigh] [fclow]");
1098 PrintAndLog(" [set clock as integer] optional, omit for autodetect.");
1099 PrintAndLog(" <invert>, 1 for invert output, can be used even if the clock is omitted");
1100 PrintAndLog(" [fchigh], larger field clock length, omit for autodetect");
1101 PrintAndLog(" [fclow], small field clock length, omit for autodetect");
1103 PrintAndLog(" sample: data rawdemod fs = demod an fsk tag from GraphBuffer using autodetect");
1104 PrintAndLog(" : data rawdemod fs 32 = demod an fsk tag from GraphBuffer using a clock of RF/32, autodetect fc");
1105 PrintAndLog(" : data rawdemod fs 1 = demod an fsk tag from GraphBuffer using autodetect, invert output");
1106 PrintAndLog(" : data rawdemod fs 32 1 = demod an fsk tag from GraphBuffer using a clock of RF/32, invert output, autodetect fc");
1107 PrintAndLog(" : data rawdemod fs 64 0 8 5 = demod an fsk1 RF/64 tag from GraphBuffer");
1108 PrintAndLog(" : data rawdemod fs 50 0 10 8 = demod an fsk2 RF/50 tag from GraphBuffer");
1109 PrintAndLog(" : data rawdemod fs 50 1 10 8 = demod an fsk2a RF/50 tag from GraphBuffer");
1112 return FSKrawDemod(Cmd
, TRUE
);
1115 //by marshmellow (based on existing demod + holiman's refactor)
1116 //HID Prox demod - FSK RF/50 with preamble of 00011101 (then manchester encoded)
1117 //print full HID Prox ID and some bit format details if found
1118 int CmdFSKdemodHID(const char *Cmd
)
1120 //raw fsk demod no manchester decoding no start bit finding just get binary from wave
1121 uint32_t hi2
=0, hi
=0, lo
=0;
1123 uint8_t BitStream
[MAX_GRAPH_TRACE_LEN
]={0};
1124 size_t BitLen
= getFromGraphBuf(BitStream
);
1125 if (BitLen
==0) return 0;
1126 //get binary from fsk wave
1127 int idx
= HIDdemodFSK(BitStream
,&BitLen
,&hi2
,&hi
,&lo
);
1131 PrintAndLog("DEBUG: Just Noise Detected");
1132 } else if (idx
== -2) {
1133 PrintAndLog("DEBUG: Error demoding fsk");
1134 } else if (idx
== -3) {
1135 PrintAndLog("DEBUG: Preamble not found");
1136 } else if (idx
== -4) {
1137 PrintAndLog("DEBUG: Error in Manchester data, SIZE: %d", BitLen
);
1139 PrintAndLog("DEBUG: Error demoding fsk %d", idx
);
1144 if (hi2
==0 && hi
==0 && lo
==0) {
1145 if (g_debugMode
) PrintAndLog("DEBUG: Error - no values found");
1148 if (hi2
!= 0){ //extra large HID tags
1149 PrintAndLog("HID Prox TAG ID: %x%08x%08x (%d)",
1150 (unsigned int) hi2
, (unsigned int) hi
, (unsigned int) lo
, (unsigned int) (lo
>>1) & 0xFFFF);
1152 else { //standard HID tags <38 bits
1155 uint32_t cardnum
= 0;
1156 if (((hi
>>5)&1)==1){//if bit 38 is set then < 37 bit format is used
1158 lo2
=(((hi
& 31) << 12) | (lo
>>20)); //get bits 21-37 to check for format len bit
1160 while(lo2
>1){ //find last bit set to 1 (format len bit)
1168 cardnum
= (lo
>>1)&0xFFFF;
1172 cardnum
= (lo
>>1)&0xFFFF;
1173 fc
= ((hi
&1)<<15)|(lo
>>17);
1176 cardnum
= (lo
>>1)&0xFFFFF;
1177 fc
= ((hi
&1)<<11)|(lo
>>21);
1180 else { //if bit 38 is not set then 37 bit format is used
1185 cardnum
= (lo
>>1)&0x7FFFF;
1186 fc
= ((hi
&0xF)<<12)|(lo
>>20);
1189 PrintAndLog("HID Prox TAG ID: %x%08x (%d) - Format Len: %dbit - FC: %d - Card: %d",
1190 (unsigned int) hi
, (unsigned int) lo
, (unsigned int) (lo
>>1) & 0xFFFF,
1191 (unsigned int) fmtLen
, (unsigned int) fc
, (unsigned int) cardnum
);
1193 setDemodBuf(BitStream
,BitLen
,idx
);
1195 PrintAndLog("DEBUG: idx: %d, Len: %d, Printing Demod Buffer:", idx
, BitLen
);
1202 //Paradox Prox demod - FSK RF/50 with preamble of 00001111 (then manchester encoded)
1203 //print full Paradox Prox ID and some bit format details if found
1204 int CmdFSKdemodParadox(const char *Cmd
)
1206 //raw fsk demod no manchester decoding no start bit finding just get binary from wave
1207 uint32_t hi2
=0, hi
=0, lo
=0;
1209 uint8_t BitStream
[MAX_GRAPH_TRACE_LEN
]={0};
1210 size_t BitLen
= getFromGraphBuf(BitStream
);
1211 if (BitLen
==0) return 0;
1212 //get binary from fsk wave
1213 int idx
= ParadoxdemodFSK(BitStream
,&BitLen
,&hi2
,&hi
,&lo
);
1217 PrintAndLog("DEBUG: Just Noise Detected");
1218 } else if (idx
== -2) {
1219 PrintAndLog("DEBUG: Error demoding fsk");
1220 } else if (idx
== -3) {
1221 PrintAndLog("DEBUG: Preamble not found");
1222 } else if (idx
== -4) {
1223 PrintAndLog("DEBUG: Error in Manchester data");
1225 PrintAndLog("DEBUG: Error demoding fsk %d", idx
);
1230 if (hi2
==0 && hi
==0 && lo
==0){
1231 if (g_debugMode
) PrintAndLog("DEBUG: Error - no value found");
1234 uint32_t fc
= ((hi
& 0x3)<<6) | (lo
>>26);
1235 uint32_t cardnum
= (lo
>>10)&0xFFFF;
1236 uint32_t rawLo
= bytebits_to_byte(BitStream
+idx
+64,32);
1237 uint32_t rawHi
= bytebits_to_byte(BitStream
+idx
+32,32);
1238 uint32_t rawHi2
= bytebits_to_byte(BitStream
+idx
,32);
1240 PrintAndLog("Paradox TAG ID: %x%08x - FC: %d - Card: %d - Checksum: %02x - RAW: %08x%08x%08x",
1241 hi
>>10, (hi
& 0x3)<<26 | (lo
>>10), fc
, cardnum
, (lo
>>2) & 0xFF, rawHi2
, rawHi
, rawLo
);
1242 setDemodBuf(BitStream
,BitLen
,idx
);
1244 PrintAndLog("DEBUG: idx: %d, len: %d, Printing Demod Buffer:", idx
, BitLen
);
1251 //IO-Prox demod - FSK RF/64 with preamble of 000000001
1252 //print ioprox ID and some format details
1253 int CmdFSKdemodIO(const char *Cmd
)
1255 //raw fsk demod no manchester decoding no start bit finding just get binary from wave
1258 //something in graphbuffer?
1259 if (GraphTraceLen
< 65) {
1260 if (g_debugMode
)PrintAndLog("DEBUG: not enough samples in GraphBuffer");
1263 uint8_t BitStream
[MAX_GRAPH_TRACE_LEN
]={0};
1264 size_t BitLen
= getFromGraphBuf(BitStream
);
1265 if (BitLen
==0) return 0;
1267 //get binary from fsk wave
1268 idx
= IOdemodFSK(BitStream
,BitLen
);
1272 PrintAndLog("DEBUG: Just Noise Detected");
1273 } else if (idx
== -2) {
1274 PrintAndLog("DEBUG: not enough samples");
1275 } else if (idx
== -3) {
1276 PrintAndLog("DEBUG: error during fskdemod");
1277 } else if (idx
== -4) {
1278 PrintAndLog("DEBUG: Preamble not found");
1279 } else if (idx
== -5) {
1280 PrintAndLog("DEBUG: Separator bits not found");
1282 PrintAndLog("DEBUG: Error demoding fsk %d", idx
);
1288 if (g_debugMode
==1){
1289 PrintAndLog("DEBUG: IO Prox Data not found - FSK Bits: %d",BitLen
);
1290 if (BitLen
> 92) printBitStream(BitStream
,92);
1295 //0 10 20 30 40 50 60
1297 //01234567 8 90123456 7 89012345 6 78901234 5 67890123 4 56789012 3 45678901 23
1298 //-----------------------------------------------------------------------------
1299 //00000000 0 11110000 1 facility 1 version* 1 code*one 1 code*two 1 ???????? 11
1301 //XSF(version)facility:codeone+codetwo (raw)
1303 if (idx
+64>BitLen
) {
1304 if (g_debugMode
==1) PrintAndLog("not enough bits found - bitlen: %d",BitLen
);
1307 PrintAndLog("%d%d%d%d%d%d%d%d %d",BitStream
[idx
], BitStream
[idx
+1], BitStream
[idx
+2], BitStream
[idx
+3], BitStream
[idx
+4], BitStream
[idx
+5], BitStream
[idx
+6], BitStream
[idx
+7], BitStream
[idx
+8]);
1308 PrintAndLog("%d%d%d%d%d%d%d%d %d",BitStream
[idx
+9], BitStream
[idx
+10], BitStream
[idx
+11],BitStream
[idx
+12],BitStream
[idx
+13],BitStream
[idx
+14],BitStream
[idx
+15],BitStream
[idx
+16],BitStream
[idx
+17]);
1309 PrintAndLog("%d%d%d%d%d%d%d%d %d facility",BitStream
[idx
+18], BitStream
[idx
+19], BitStream
[idx
+20],BitStream
[idx
+21],BitStream
[idx
+22],BitStream
[idx
+23],BitStream
[idx
+24],BitStream
[idx
+25],BitStream
[idx
+26]);
1310 PrintAndLog("%d%d%d%d%d%d%d%d %d version",BitStream
[idx
+27], BitStream
[idx
+28], BitStream
[idx
+29],BitStream
[idx
+30],BitStream
[idx
+31],BitStream
[idx
+32],BitStream
[idx
+33],BitStream
[idx
+34],BitStream
[idx
+35]);
1311 PrintAndLog("%d%d%d%d%d%d%d%d %d code1",BitStream
[idx
+36], BitStream
[idx
+37], BitStream
[idx
+38],BitStream
[idx
+39],BitStream
[idx
+40],BitStream
[idx
+41],BitStream
[idx
+42],BitStream
[idx
+43],BitStream
[idx
+44]);
1312 PrintAndLog("%d%d%d%d%d%d%d%d %d code2",BitStream
[idx
+45], BitStream
[idx
+46], BitStream
[idx
+47],BitStream
[idx
+48],BitStream
[idx
+49],BitStream
[idx
+50],BitStream
[idx
+51],BitStream
[idx
+52],BitStream
[idx
+53]);
1313 PrintAndLog("%d%d%d%d%d%d%d%d %d%d checksum",BitStream
[idx
+54],BitStream
[idx
+55],BitStream
[idx
+56],BitStream
[idx
+57],BitStream
[idx
+58],BitStream
[idx
+59],BitStream
[idx
+60],BitStream
[idx
+61],BitStream
[idx
+62],BitStream
[idx
+63]);
1315 uint32_t code
= bytebits_to_byte(BitStream
+idx
,32);
1316 uint32_t code2
= bytebits_to_byte(BitStream
+idx
+32,32);
1317 uint8_t version
= bytebits_to_byte(BitStream
+idx
+27,8); //14,4
1318 uint8_t facilitycode
= bytebits_to_byte(BitStream
+idx
+18,8) ;
1319 uint16_t number
= (bytebits_to_byte(BitStream
+idx
+36,8)<<8)|(bytebits_to_byte(BitStream
+idx
+45,8)); //36,9
1320 PrintAndLog("IO Prox XSF(%02d)%02x:%05d (%08x%08x)",version
,facilitycode
,number
,code
,code2
);
1321 setDemodBuf(BitStream
,64,idx
);
1323 PrintAndLog("DEBUG: idx: %d, Len: %d, Printing demod buffer:",idx
,64);
1330 //AWID Prox demod - FSK RF/50 with preamble of 00000001 (always a 96 bit data stream)
1331 //print full AWID Prox ID and some bit format details if found
1332 int CmdFSKdemodAWID(const char *Cmd
)
1336 //sscanf(Cmd, "%i", &verbose);
1338 //raw fsk demod no manchester decoding no start bit finding just get binary from wave
1339 uint8_t BitStream
[MAX_GRAPH_TRACE_LEN
]={0};
1340 size_t size
= getFromGraphBuf(BitStream
);
1341 if (size
==0) return 0;
1343 //get binary from fsk wave
1344 int idx
= AWIDdemodFSK(BitStream
, &size
);
1346 if (g_debugMode
==1){
1348 PrintAndLog("DEBUG: Error - not enough samples");
1350 PrintAndLog("DEBUG: Error - only noise found");
1352 PrintAndLog("DEBUG: Error - problem during FSK demod");
1354 PrintAndLog("DEBUG: Error - AWID preamble not found");
1356 PrintAndLog("DEBUG: Error - Size not correct: %d", size
);
1358 PrintAndLog("DEBUG: Error %d",idx
);
1364 // 0 10 20 30 40 50 60
1366 // 01234567 890 1 234 5 678 9 012 3 456 7 890 1 234 5 678 9 012 3 456 7 890 1 234 5 678 9 012 3 - to 96
1367 // -----------------------------------------------------------------------------
1368 // 00000001 000 1 110 1 101 1 011 1 101 1 010 0 000 1 000 1 010 0 001 0 110 1 100 0 000 1 000 1
1369 // premable bbb o bbb o bbw o fff o fff o ffc o ccc o ccc o ccc o ccc o ccc o wxx o xxx o xxx o - to 96
1370 // |---26 bit---| |-----117----||-------------142-------------|
1371 // b = format bit len, o = odd parity of last 3 bits
1372 // f = facility code, c = card number
1373 // w = wiegand parity
1374 // (26 bit format shown)
1376 //get raw ID before removing parities
1377 uint32_t rawLo
= bytebits_to_byte(BitStream
+idx
+64,32);
1378 uint32_t rawHi
= bytebits_to_byte(BitStream
+idx
+32,32);
1379 uint32_t rawHi2
= bytebits_to_byte(BitStream
+idx
,32);
1380 setDemodBuf(BitStream
,96,idx
);
1382 size
= removeParity(BitStream
, idx
+8, 4, 1, 88);
1384 if (g_debugMode
==1) PrintAndLog("DEBUG: Error - at parity check-tag size does not match AWID format");
1387 // ok valid card found!
1390 // 0 10 20 30 40 50 60
1392 // 01234567 8 90123456 7890123456789012 3 456789012345678901234567890123456
1393 // -----------------------------------------------------------------------------
1394 // 00011010 1 01110101 0000000010001110 1 000000000000000000000000000000000
1395 // bbbbbbbb w ffffffff cccccccccccccccc w xxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx
1396 // |26 bit| |-117--| |-----142------|
1397 // b = format bit len, o = odd parity of last 3 bits
1398 // f = facility code, c = card number
1399 // w = wiegand parity
1400 // (26 bit format shown)
1403 uint32_t cardnum
= 0;
1406 uint8_t fmtLen
= bytebits_to_byte(BitStream
,8);
1408 fc
= bytebits_to_byte(BitStream
+9, 8);
1409 cardnum
= bytebits_to_byte(BitStream
+17, 16);
1410 code1
= bytebits_to_byte(BitStream
+8,fmtLen
);
1411 PrintAndLog("AWID Found - BitLength: %d, FC: %d, Card: %d - Wiegand: %x, Raw: %08x%08x%08x", fmtLen
, fc
, cardnum
, code1
, rawHi2
, rawHi
, rawLo
);
1413 cardnum
= bytebits_to_byte(BitStream
+8+(fmtLen
-17), 16);
1415 code1
= bytebits_to_byte(BitStream
+8,fmtLen
-32);
1416 code2
= bytebits_to_byte(BitStream
+8+(fmtLen
-32),32);
1417 PrintAndLog("AWID Found - BitLength: %d -unknown BitLength- (%d) - Wiegand: %x%08x, Raw: %08x%08x%08x", fmtLen
, cardnum
, code1
, code2
, rawHi2
, rawHi
, rawLo
);
1419 code1
= bytebits_to_byte(BitStream
+8,fmtLen
);
1420 PrintAndLog("AWID Found - BitLength: %d -unknown BitLength- (%d) - Wiegand: %x, Raw: %08x%08x%08x", fmtLen
, cardnum
, code1
, rawHi2
, rawHi
, rawLo
);
1424 PrintAndLog("DEBUG: idx: %d, Len: %d Printing Demod Buffer:", idx
, 96);
1427 //todo - convert hi2, hi, lo to demodbuffer for future sim/clone commands
1432 //Pyramid Prox demod - FSK RF/50 with preamble of 0000000000000001 (always a 128 bit data stream)
1433 //print full Farpointe Data/Pyramid Prox ID and some bit format details if found
1434 int CmdFSKdemodPyramid(const char *Cmd
)
1436 //raw fsk demod no manchester decoding no start bit finding just get binary from wave
1437 uint8_t BitStream
[MAX_GRAPH_TRACE_LEN
]={0};
1438 size_t size
= getFromGraphBuf(BitStream
);
1439 if (size
==0) return 0;
1441 //get binary from fsk wave
1442 int idx
= PyramiddemodFSK(BitStream
, &size
);
1444 if (g_debugMode
==1){
1446 PrintAndLog("DEBUG: Error - not enough samples");
1448 PrintAndLog("DEBUG: Error - only noise found");
1450 PrintAndLog("DEBUG: Error - problem during FSK demod");
1452 PrintAndLog("DEBUG: Error - Size not correct: %d", size
);
1454 PrintAndLog("DEBUG: Error - Pyramid preamble not found");
1456 PrintAndLog("DEBUG: Error - idx: %d",idx
);
1461 // 0 10 20 30 40 50 60
1463 // 0123456 7 8901234 5 6789012 3 4567890 1 2345678 9 0123456 7 8901234 5 6789012 3
1464 // -----------------------------------------------------------------------------
1465 // 0000000 0 0000000 1 0000000 1 0000000 1 0000000 1 0000000 1 0000000 1 0000000 1
1466 // premable xxxxxxx o xxxxxxx o xxxxxxx o xxxxxxx o xxxxxxx o xxxxxxx o xxxxxxx o
1468 // 64 70 80 90 100 110 120
1470 // 4567890 1 2345678 9 0123456 7 8901234 5 6789012 3 4567890 1 2345678 9 0123456 7
1471 // -----------------------------------------------------------------------------
1472 // 0000000 1 0000000 1 0000000 1 0110111 0 0011000 1 0000001 0 0001100 1 1001010 0
1473 // xxxxxxx o xxxxxxx o xxxxxxx o xswffff o ffffccc o ccccccc o ccccccw o ppppppp o
1474 // |---115---||---------71---------|
1475 // s = format start bit, o = odd parity of last 7 bits
1476 // f = facility code, c = card number
1477 // w = wiegand parity, x = extra space for other formats
1478 // p = unknown checksum
1479 // (26 bit format shown)
1481 //get bytes for checksum calc
1482 uint8_t checksum
= bytebits_to_byte(BitStream
+ idx
+ 120, 8);
1483 uint8_t csBuff
[14] = {0x00};
1484 for (uint8_t i
= 0; i
< 13; i
++){
1485 csBuff
[i
] = bytebits_to_byte(BitStream
+ idx
+ 16 + (i
*8), 8);
1487 //check checksum calc
1488 //checksum calc thanks to ICEMAN!!
1489 uint32_t checkCS
= CRC8Maxim(csBuff
,13);
1491 //get raw ID before removing parities
1492 uint32_t rawLo
= bytebits_to_byte(BitStream
+idx
+96,32);
1493 uint32_t rawHi
= bytebits_to_byte(BitStream
+idx
+64,32);
1494 uint32_t rawHi2
= bytebits_to_byte(BitStream
+idx
+32,32);
1495 uint32_t rawHi3
= bytebits_to_byte(BitStream
+idx
,32);
1496 setDemodBuf(BitStream
,128,idx
);
1498 size
= removeParity(BitStream
, idx
+8, 8, 1, 120);
1501 PrintAndLog("DEBUG: Error at parity check - tag size does not match Pyramid format, SIZE: %d, IDX: %d, hi3: %x",size
, idx
, rawHi3
);
1505 // ok valid card found!
1508 // 0 10 20 30 40 50 60 70
1510 // 01234567890123456789012345678901234567890123456789012345678901234567890
1511 // -----------------------------------------------------------------------
1512 // 00000000000000000000000000000000000000000000000000000000000000000000000
1513 // xxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx
1517 // 1 2 34567890 1234567890123456 7 8901234
1518 // ---------------------------------------
1519 // 1 1 01110011 0000000001000110 0 1001010
1520 // s w ffffffff cccccccccccccccc w ppppppp
1521 // |--115-| |------71------|
1522 // s = format start bit, o = odd parity of last 7 bits
1523 // f = facility code, c = card number
1524 // w = wiegand parity, x = extra space for other formats
1525 // p = unknown checksum
1526 // (26 bit format shown)
1528 //find start bit to get fmtLen
1530 for (j
=0; j
<size
; j
++){
1531 if(BitStream
[j
]) break;
1533 uint8_t fmtLen
= size
-j
-8;
1535 uint32_t cardnum
= 0;
1537 //uint32_t code2 = 0;
1539 fc
= bytebits_to_byte(BitStream
+73, 8);
1540 cardnum
= bytebits_to_byte(BitStream
+81, 16);
1541 code1
= bytebits_to_byte(BitStream
+72,fmtLen
);
1542 PrintAndLog("Pyramid ID Found - BitLength: %d, FC: %d, Card: %d - Wiegand: %x, Raw: %08x%08x%08x%08x", fmtLen
, fc
, cardnum
, code1
, rawHi3
, rawHi2
, rawHi
, rawLo
);
1543 } else if (fmtLen
==45){
1544 fmtLen
=42; //end = 10 bits not 7 like 26 bit fmt
1545 fc
= bytebits_to_byte(BitStream
+53, 10);
1546 cardnum
= bytebits_to_byte(BitStream
+63, 32);
1547 PrintAndLog("Pyramid ID Found - BitLength: %d, FC: %d, Card: %d - Raw: %08x%08x%08x%08x", fmtLen
, fc
, cardnum
, rawHi3
, rawHi2
, rawHi
, rawLo
);
1549 cardnum
= bytebits_to_byte(BitStream
+81, 16);
1551 //code1 = bytebits_to_byte(BitStream+(size-fmtLen),fmtLen-32);
1552 //code2 = bytebits_to_byte(BitStream+(size-32),32);
1553 PrintAndLog("Pyramid ID Found - BitLength: %d -unknown BitLength- (%d), Raw: %08x%08x%08x%08x", fmtLen
, cardnum
, rawHi3
, rawHi2
, rawHi
, rawLo
);
1555 //code1 = bytebits_to_byte(BitStream+(size-fmtLen),fmtLen);
1556 PrintAndLog("Pyramid ID Found - BitLength: %d -unknown BitLength- (%d), Raw: %08x%08x%08x%08x", fmtLen
, cardnum
, rawHi3
, rawHi2
, rawHi
, rawLo
);
1559 if (checksum
== checkCS
)
1560 PrintAndLog("Checksum %02x passed", checksum
);
1562 PrintAndLog("Checksum %02x failed - should have been %02x", checksum
, checkCS
);
1565 PrintAndLog("DEBUG: idx: %d, Len: %d, Printing Demod Buffer:", idx
, 128);
1571 int CmdFSKdemod(const char *Cmd
) //old CmdFSKdemod needs updating
1573 static const int LowTone
[] = {
1574 1, 1, 1, 1, 1, -1, -1, -1, -1, -1,
1575 1, 1, 1, 1, 1, -1, -1, -1, -1, -1,
1576 1, 1, 1, 1, 1, -1, -1, -1, -1, -1,
1577 1, 1, 1, 1, 1, -1, -1, -1, -1, -1,
1578 1, 1, 1, 1, 1, -1, -1, -1, -1, -1
1580 static const int HighTone
[] = {
1581 1, 1, 1, 1, 1, -1, -1, -1, -1,
1582 1, 1, 1, 1, -1, -1, -1, -1,
1583 1, 1, 1, 1, -1, -1, -1, -1,
1584 1, 1, 1, 1, -1, -1, -1, -1,
1585 1, 1, 1, 1, -1, -1, -1, -1,
1586 1, 1, 1, 1, -1, -1, -1, -1, -1,
1589 int lowLen
= sizeof (LowTone
) / sizeof (int);
1590 int highLen
= sizeof (HighTone
) / sizeof (int);
1591 int convLen
= (highLen
> lowLen
) ? highLen
: lowLen
;
1592 uint32_t hi
= 0, lo
= 0;
1595 int minMark
= 0, maxMark
= 0;
1597 for (i
= 0; i
< GraphTraceLen
- convLen
; ++i
) {
1598 int lowSum
= 0, highSum
= 0;
1600 for (j
= 0; j
< lowLen
; ++j
) {
1601 lowSum
+= LowTone
[j
]*GraphBuffer
[i
+j
];
1603 for (j
= 0; j
< highLen
; ++j
) {
1604 highSum
+= HighTone
[j
] * GraphBuffer
[i
+ j
];
1606 lowSum
= abs(100 * lowSum
/ lowLen
);
1607 highSum
= abs(100 * highSum
/ highLen
);
1608 GraphBuffer
[i
] = (highSum
<< 16) | lowSum
;
1611 for(i
= 0; i
< GraphTraceLen
- convLen
- 16; ++i
) {
1612 int lowTot
= 0, highTot
= 0;
1613 // 10 and 8 are f_s divided by f_l and f_h, rounded
1614 for (j
= 0; j
< 10; ++j
) {
1615 lowTot
+= (GraphBuffer
[i
+j
] & 0xffff);
1617 for (j
= 0; j
< 8; j
++) {
1618 highTot
+= (GraphBuffer
[i
+ j
] >> 16);
1620 GraphBuffer
[i
] = lowTot
- highTot
;
1621 if (GraphBuffer
[i
] > maxMark
) maxMark
= GraphBuffer
[i
];
1622 if (GraphBuffer
[i
] < minMark
) minMark
= GraphBuffer
[i
];
1625 GraphTraceLen
-= (convLen
+ 16);
1626 RepaintGraphWindow();
1628 // Find bit-sync (3 lo followed by 3 high) (HID ONLY)
1629 int max
= 0, maxPos
= 0;
1630 for (i
= 0; i
< 6000; ++i
) {
1632 for (j
= 0; j
< 3 * lowLen
; ++j
) {
1633 dec
-= GraphBuffer
[i
+ j
];
1635 for (; j
< 3 * (lowLen
+ highLen
); ++j
) {
1636 dec
+= GraphBuffer
[i
+ j
];
1644 // place start of bit sync marker in graph
1645 GraphBuffer
[maxPos
] = maxMark
;
1646 GraphBuffer
[maxPos
+ 1] = minMark
;
1650 // place end of bit sync marker in graph
1651 GraphBuffer
[maxPos
] = maxMark
;
1652 GraphBuffer
[maxPos
+1] = minMark
;
1654 PrintAndLog("actual data bits start at sample %d", maxPos
);
1655 PrintAndLog("length %d/%d", highLen
, lowLen
);
1657 uint8_t bits
[46] = {0x00};
1659 // find bit pairs and manchester decode them
1660 for (i
= 0; i
< arraylen(bits
) - 1; ++i
) {
1662 for (j
= 0; j
< lowLen
; ++j
) {
1663 dec
-= GraphBuffer
[maxPos
+ j
];
1665 for (; j
< lowLen
+ highLen
; ++j
) {
1666 dec
+= GraphBuffer
[maxPos
+ j
];
1669 // place inter bit marker in graph
1670 GraphBuffer
[maxPos
] = maxMark
;
1671 GraphBuffer
[maxPos
+ 1] = minMark
;
1673 // hi and lo form a 64 bit pair
1674 hi
= (hi
<< 1) | (lo
>> 31);
1676 // store decoded bit as binary (in hi/lo) and text (in bits[])
1684 PrintAndLog("bits: '%s'", bits
);
1685 PrintAndLog("hex: %08x %08x", hi
, lo
);
1690 //attempt to psk1 demod graph buffer
1691 int PSKDemod(const char *Cmd
, bool verbose
)
1696 sscanf(Cmd
, "%i %i %i", &clk
, &invert
, &maxErr
);
1701 if (invert
!= 0 && invert
!= 1) {
1702 if (verbose
) PrintAndLog("Invalid argument: %s", Cmd
);
1705 uint8_t BitStream
[MAX_GRAPH_TRACE_LEN
]={0};
1706 size_t BitLen
= getFromGraphBuf(BitStream
);
1707 if (BitLen
==0) return -1;
1708 uint8_t carrier
=countPSK_FC(BitStream
, BitLen
);
1709 if (carrier
!=2 && carrier
!=4 && carrier
!=8){
1714 errCnt
= pskRawDemod(BitStream
, &BitLen
, &clk
, &invert
);
1715 if (errCnt
> maxErr
){
1716 if (g_debugMode
==1 && verbose
) PrintAndLog("Too many errors found, clk: %d, invert: %d, numbits: %d, errCnt: %d",clk
,invert
,BitLen
,errCnt
);
1719 if (errCnt
<0|| BitLen
<16){ //throw away static - allow 1 and -1 (in case of threshold command first)
1720 if (g_debugMode
==1 && verbose
) PrintAndLog("no data found, clk: %d, invert: %d, numbits: %d, errCnt: %d",clk
,invert
,BitLen
,errCnt
);
1724 PrintAndLog("Tried PSK Demod using Clock: %d - invert: %d - Bits Found: %d",clk
,invert
,BitLen
);
1726 PrintAndLog("# Errors during Demoding (shown as 77 in bit stream): %d",errCnt
);
1729 //prime demod buffer for output
1730 setDemodBuf(BitStream
,BitLen
,0);
1734 // Indala 26 bit decode
1736 // optional arguments - same as CmdpskNRZrawDemod (clock & invert)
1737 int CmdIndalaDecode(const char *Cmd
)
1741 ans
= PSKDemod(Cmd
, 0);
1742 } else{ //default to RF/32
1743 ans
= PSKDemod("32", 0);
1748 PrintAndLog("Error1: %d",ans
);
1752 ans
= indala26decode(DemodBuffer
,(size_t *) &DemodBufferLen
, &invert
);
1755 PrintAndLog("Error2: %d",ans
);
1758 char showbits
[251]={0x00};
1761 PrintAndLog("Had to invert bits");
1763 //convert UID to HEX
1764 uint32_t uid1
, uid2
, uid3
, uid4
, uid5
, uid6
, uid7
;
1768 PrintAndLog("BitLen: %d",DemodBufferLen
);
1769 if (DemodBufferLen
==64){
1770 for( idx
=0; idx
<64; idx
++) {
1771 uid1
=(uid1
<<1)|(uid2
>>31);
1772 if (DemodBuffer
[idx
] == 0) {
1781 PrintAndLog("Indala UID=%s (%x%08x)", showbits
, uid1
, uid2
);
1789 for( idx
=0; idx
<DemodBufferLen
; idx
++) {
1790 uid1
=(uid1
<<1)|(uid2
>>31);
1791 uid2
=(uid2
<<1)|(uid3
>>31);
1792 uid3
=(uid3
<<1)|(uid4
>>31);
1793 uid4
=(uid4
<<1)|(uid5
>>31);
1794 uid5
=(uid5
<<1)|(uid6
>>31);
1795 uid6
=(uid6
<<1)|(uid7
>>31);
1796 if (DemodBuffer
[idx
] == 0) {
1806 PrintAndLog("Indala UID=%s (%x%08x%08x%08x%08x%08x%08x)", showbits
, uid1
, uid2
, uid3
, uid4
, uid5
, uid6
, uid7
);
1809 PrintAndLog("DEBUG: printing demodbuffer:");
1816 // takes 3 arguments - clock, invert, maxErr as integers
1817 // attempts to demodulate nrz only
1818 // prints binary found and saves in demodbuffer for further commands
1820 int NRZrawDemod(const char *Cmd
, bool verbose
)
1825 sscanf(Cmd
, "%i %i %i", &clk
, &invert
, &maxErr
);
1830 if (invert
!= 0 && invert
!= 1) {
1831 PrintAndLog("Invalid argument: %s", Cmd
);
1834 uint8_t BitStream
[MAX_GRAPH_TRACE_LEN
]={0};
1835 size_t BitLen
= getFromGraphBuf(BitStream
);
1836 if (BitLen
==0) return 0;
1838 errCnt
= nrzRawDemod(BitStream
, &BitLen
, &clk
, &invert
, maxErr
);
1839 if (errCnt
> maxErr
){
1840 if (g_debugMode
==1 && verbose
) PrintAndLog("Too many errors found, clk: %d, invert: %d, numbits: %d, errCnt: %d",clk
,invert
,BitLen
,errCnt
);
1843 if (errCnt
<0|| BitLen
<16){ //throw away static - allow 1 and -1 (in case of threshold command first)
1844 if (g_debugMode
==1 && verbose
) PrintAndLog("no data found, clk: %d, invert: %d, numbits: %d, errCnt: %d",clk
,invert
,BitLen
,errCnt
);
1847 PrintAndLog("Tried NRZ Demod using Clock: %d - invert: %d - Bits Found: %d",clk
,invert
,BitLen
);
1848 //prime demod buffer for output
1849 setDemodBuf(BitStream
,BitLen
,0);
1851 if (errCnt
>0 && verbose
){
1852 PrintAndLog("# Errors during Demoding (shown as 77 in bit stream): %d",errCnt
);
1855 PrintAndLog("NRZ demoded bitstream:");
1856 // Now output the bitstream to the scrollback by line of 16 bits
1862 int CmdNRZrawDemod(const char *Cmd
)
1864 char cmdp
= param_getchar(Cmd
, 0);
1865 if (strlen(Cmd
) > 10 || cmdp
== 'h' || cmdp
== 'H') {
1866 PrintAndLog("Usage: data rawdemod nr [clock] <0|1> [maxError]");
1867 PrintAndLog(" [set clock as integer] optional, if not set, autodetect.");
1868 PrintAndLog(" <invert>, 1 for invert output");
1869 PrintAndLog(" [set maximum allowed errors], default = 100.");
1871 PrintAndLog(" sample: data rawdemod nr = demod a nrz/direct tag from GraphBuffer");
1872 PrintAndLog(" : data rawdemod nr 32 = demod a nrz/direct tag from GraphBuffer using a clock of RF/32");
1873 PrintAndLog(" : data rawdemod nr 32 1 = demod a nrz/direct tag from GraphBuffer using a clock of RF/32 and inverting data");
1874 PrintAndLog(" : data rawdemod nr 1 = demod a nrz/direct tag from GraphBuffer while inverting data");
1875 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");
1878 return NRZrawDemod(Cmd
, TRUE
);
1882 // takes 3 arguments - clock, invert, maxErr as integers
1883 // attempts to demodulate psk only
1884 // prints binary found and saves in demodbuffer for further commands
1885 int CmdPSK1rawDemod(const char *Cmd
)
1888 char cmdp
= param_getchar(Cmd
, 0);
1889 if (strlen(Cmd
) > 10 || cmdp
== 'h' || cmdp
== 'H') {
1890 PrintAndLog("Usage: data rawdemod p1 [clock] <0|1> [maxError]");
1891 PrintAndLog(" [set clock as integer] optional, if not set, autodetect.");
1892 PrintAndLog(" <invert>, 1 for invert output");
1893 PrintAndLog(" [set maximum allowed errors], default = 100.");
1895 PrintAndLog(" sample: data rawdemod p1 = demod a psk1 tag from GraphBuffer");
1896 PrintAndLog(" : data rawdemod p1 32 = demod a psk1 tag from GraphBuffer using a clock of RF/32");
1897 PrintAndLog(" : data rawdemod p1 32 1 = demod a psk1 tag from GraphBuffer using a clock of RF/32 and inverting data");
1898 PrintAndLog(" : data rawdemod p1 1 = demod a psk1 tag from GraphBuffer while inverting data");
1899 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");
1902 ans
= PSKDemod(Cmd
, TRUE
);
1905 if (g_debugMode
) PrintAndLog("Error demoding: %d",ans
);
1909 PrintAndLog("PSK demoded bitstream:");
1910 // Now output the bitstream to the scrollback by line of 16 bits
1916 // takes same args as cmdpsk1rawdemod
1917 int CmdPSK2rawDemod(const char *Cmd
)
1920 char cmdp
= param_getchar(Cmd
, 0);
1921 if (strlen(Cmd
) > 10 || cmdp
== 'h' || cmdp
== 'H') {
1922 PrintAndLog("Usage: data rawdemod p2 [clock] <0|1> [maxError]");
1923 PrintAndLog(" [set clock as integer] optional, if not set, autodetect.");
1924 PrintAndLog(" <invert>, 1 for invert output");
1925 PrintAndLog(" [set maximum allowed errors], default = 100.");
1927 PrintAndLog(" sample: data rawdemod p2 = demod a psk2 tag from GraphBuffer, autodetect clock");
1928 PrintAndLog(" : data rawdemod p2 32 = demod a psk2 tag from GraphBuffer using a clock of RF/32");
1929 PrintAndLog(" : data rawdemod p2 32 1 = demod a psk2 tag from GraphBuffer using a clock of RF/32 and inverting output");
1930 PrintAndLog(" : data rawdemod p2 1 = demod a psk2 tag from GraphBuffer, autodetect clock and invert output");
1931 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");
1934 ans
=PSKDemod(Cmd
, TRUE
);
1936 if (g_debugMode
) PrintAndLog("Error demoding: %d",ans
);
1939 psk1TOpsk2(DemodBuffer
, DemodBufferLen
);
1940 PrintAndLog("PSK2 demoded bitstream:");
1941 // Now output the bitstream to the scrollback by line of 16 bits
1946 // by marshmellow - combines all raw demod functions into one menu command
1947 int CmdRawDemod(const char *Cmd
)
1949 char cmdp
= Cmd
[0]; //param_getchar(Cmd, 0);
1951 if (strlen(Cmd
) > 14 || cmdp
== 'h' || cmdp
== 'H' || strlen(Cmd
)<2) {
1952 PrintAndLog("Usage: data rawdemod [modulation] <help>|<options>");
1953 PrintAndLog(" [modulation] as 2 char, 'am' for ask/manchester, 'ar' for ask/raw, 'fs' for fsk, 'nr' for nrz/direct, 'p1' for psk1, 'p2' for psk2");
1954 PrintAndLog(" <help> as 'h', prints the help for the specific modulation");
1955 PrintAndLog(" <options> see specific modulation help for optional parameters");
1957 PrintAndLog(" sample: data rawdemod fs h = print help for ask/raw demod");
1958 PrintAndLog(" : data rawdemod fs = demod GraphBuffer using: fsk - autodetect");
1959 PrintAndLog(" : data rawdemod am = demod GraphBuffer using: ask/manchester - autodetect");
1960 PrintAndLog(" : data rawdemod ar = demod GraphBuffer using: ask/raw - autodetect");
1961 PrintAndLog(" : data rawdemod nr = demod GraphBuffer using: nrz/direct - autodetect");
1962 PrintAndLog(" : data rawdemod p1 = demod GraphBuffer using: psk1 - autodetect");
1963 PrintAndLog(" : data rawdemod p2 = demod GraphBuffer using: psk2 - autodetect");
1966 char cmdp2
= Cmd
[1];
1968 if (cmdp
== 'f' && cmdp2
== 's'){
1969 ans
= CmdFSKrawdemod(Cmd
+3);
1970 } else if(cmdp
== 'a' && cmdp2
== 'm'){
1971 ans
= Cmdaskmandemod(Cmd
+3);
1972 } else if(cmdp
== 'a' && cmdp2
== 'r'){
1973 ans
= Cmdaskrawdemod(Cmd
+3);
1974 } else if(cmdp
== 'n' && cmdp2
== 'r'){
1975 ans
= CmdNRZrawDemod(Cmd
+3);
1976 } else if(cmdp
== 'p' && cmdp2
== '1'){
1977 ans
= CmdPSK1rawDemod(Cmd
+3);
1978 } else if(cmdp
== 'p' && cmdp2
== '2'){
1979 ans
= CmdPSK2rawDemod(Cmd
+3);
1981 PrintAndLog("unknown modulation entered - see help ('h') for parameter structure");
1986 int CmdGrid(const char *Cmd
)
1988 sscanf(Cmd
, "%i %i", &PlotGridX
, &PlotGridY
);
1989 PlotGridXdefault
= PlotGridX
;
1990 PlotGridYdefault
= PlotGridY
;
1991 RepaintGraphWindow();
1995 int CmdHexsamples(const char *Cmd
)
2000 char string_buf
[25];
2001 char* string_ptr
= string_buf
;
2002 uint8_t got
[BIGBUF_SIZE
];
2004 sscanf(Cmd
, "%i %i", &requested
, &offset
);
2006 /* if no args send something */
2007 if (requested
== 0) {
2010 if (offset
+ requested
> sizeof(got
)) {
2011 PrintAndLog("Tried to read past end of buffer, <bytes> + <offset> > %d", BIGBUF_SIZE
);
2015 GetFromBigBuf(got
,requested
,offset
);
2016 WaitForResponse(CMD_ACK
,NULL
);
2019 for (j
= 0; j
< requested
; j
++) {
2021 string_ptr
+= sprintf(string_ptr
, "%02x ", got
[j
]);
2023 *(string_ptr
- 1) = '\0'; // remove the trailing space
2024 PrintAndLog("%s", string_buf
);
2025 string_buf
[0] = '\0';
2026 string_ptr
= string_buf
;
2029 if (j
== requested
- 1 && string_buf
[0] != '\0') { // print any remaining bytes
2030 *(string_ptr
- 1) = '\0';
2031 PrintAndLog("%s", string_buf
);
2032 string_buf
[0] = '\0';
2038 int CmdHide(const char *Cmd
)
2044 //zero mean GraphBuffer
2045 int CmdHpf(const char *Cmd
)
2050 for (i
= 10; i
< GraphTraceLen
; ++i
)
2051 accum
+= GraphBuffer
[i
];
2052 accum
/= (GraphTraceLen
- 10);
2053 for (i
= 0; i
< GraphTraceLen
; ++i
)
2054 GraphBuffer
[i
] -= accum
;
2056 RepaintGraphWindow();
2065 bool _headBit( BitstreamOut
*stream
)
2067 int bytepos
= stream
->position
>> 3; // divide by 8
2068 int bitpos
= (stream
->position
++) & 7; // mask out 00000111
2069 return (*(stream
->buffer
+ bytepos
) >> (7-bitpos
)) & 1;
2072 uint8_t getByte(uint8_t bits_per_sample
, BitstreamOut
* b
)
2076 for(i
=0 ; i
< bits_per_sample
; i
++)
2078 val
|= (_headBit(b
) << (7-i
));
2083 int CmdSamples(const char *Cmd
)
2085 //If we get all but the last byte in bigbuf,
2086 // we don't have to worry about remaining trash
2087 // in the last byte in case the bits-per-sample
2088 // does not line up on byte boundaries
2089 uint8_t got
[BIGBUF_SIZE
-1] = { 0 };
2091 int n
= strtol(Cmd
, NULL
, 0);
2095 if (n
> sizeof(got
))
2098 PrintAndLog("Reading %d bytes from device memory\n", n
);
2099 GetFromBigBuf(got
,n
,0);
2100 PrintAndLog("Data fetched");
2101 UsbCommand response
;
2102 WaitForResponse(CMD_ACK
, &response
);
2103 uint8_t bits_per_sample
= 8;
2105 //Old devices without this feature would send 0 at arg[0]
2106 if(response
.arg
[0] > 0)
2108 sample_config
*sc
= (sample_config
*) response
.d
.asBytes
;
2109 PrintAndLog("Samples @ %d bits/smpl, decimation 1:%d ", sc
->bits_per_sample
2111 bits_per_sample
= sc
->bits_per_sample
;
2113 if(bits_per_sample
< 8)
2115 PrintAndLog("Unpacking...");
2116 BitstreamOut bout
= { got
, bits_per_sample
* n
, 0};
2118 for (j
= 0; j
* bits_per_sample
< n
* 8 && j
< sizeof(GraphBuffer
); j
++) {
2119 uint8_t sample
= getByte(bits_per_sample
, &bout
);
2120 GraphBuffer
[j
] = ((int) sample
)- 128;
2123 PrintAndLog("Unpacked %d samples" , j
);
2126 for (int j
= 0; j
< n
; j
++) {
2127 GraphBuffer
[j
] = ((int)got
[j
]) - 128;
2132 RepaintGraphWindow();
2136 int CmdTuneSamples(const char *Cmd
)
2139 printf("\nMeasuring antenna characteristics, please wait...");
2141 UsbCommand c
= {CMD_MEASURE_ANTENNA_TUNING
};
2145 while(!WaitForResponseTimeout(CMD_MEASURED_ANTENNA_TUNING
,&resp
,1000)) {
2149 PrintAndLog("\nNo response from Proxmark. Aborting...");
2155 int vLf125
, vLf134
, vHf
;
2156 vLf125
= resp
.arg
[0] & 0xffff;
2157 vLf134
= resp
.arg
[0] >> 16;
2158 vHf
= resp
.arg
[1] & 0xffff;;
2159 peakf
= resp
.arg
[2] & 0xffff;
2160 peakv
= resp
.arg
[2] >> 16;
2162 PrintAndLog("# LF antenna: %5.2f V @ 125.00 kHz", vLf125
/1000.0);
2163 PrintAndLog("# LF antenna: %5.2f V @ 134.00 kHz", vLf134
/1000.0);
2164 PrintAndLog("# LF optimal: %5.2f V @%9.2f kHz", peakv
/1000.0, 12000.0/(peakf
+1));
2165 PrintAndLog("# HF antenna: %5.2f V @ 13.56 MHz", vHf
/1000.0);
2167 #define LF_UNUSABLE_V 2948 // was 2000. Changed due to bugfix in voltage measurements. LF results are now 47% higher.
2168 #define LF_MARGINAL_V 14739 // was 10000. Changed due to bugfix bug in voltage measurements. LF results are now 47% higher.
2169 #define HF_UNUSABLE_V 3167 // was 2000. Changed due to bugfix in voltage measurements. HF results are now 58% higher.
2170 #define HF_MARGINAL_V 7917 // was 5000. Changed due to bugfix in voltage measurements. HF results are now 58% higher.
2172 if (peakv
< LF_UNUSABLE_V
)
2173 PrintAndLog("# Your LF antenna is unusable.");
2174 else if (peakv
< LF_MARGINAL_V
)
2175 PrintAndLog("# Your LF antenna is marginal.");
2176 if (vHf
< HF_UNUSABLE_V
)
2177 PrintAndLog("# Your HF antenna is unusable.");
2178 else if (vHf
< HF_MARGINAL_V
)
2179 PrintAndLog("# Your HF antenna is marginal.");
2181 if (peakv
>= LF_UNUSABLE_V
) {
2182 for (int i
= 0; i
< 256; i
++) {
2183 GraphBuffer
[i
] = resp
.d
.asBytes
[i
] - 128;
2185 PrintAndLog("Displaying LF tuning graph. Divisor 89 is 134khz, 95 is 125khz.\n");
2187 GraphTraceLen
= 256;
2189 RepaintGraphWindow();
2196 int CmdLoad(const char *Cmd
)
2198 char filename
[FILE_PATH_SIZE
] = {0x00};
2202 if (len
> FILE_PATH_SIZE
) len
= FILE_PATH_SIZE
;
2203 memcpy(filename
, Cmd
, len
);
2205 FILE *f
= fopen(filename
, "r");
2207 PrintAndLog("couldn't open '%s'", filename
);
2213 while (fgets(line
, sizeof (line
), f
)) {
2214 GraphBuffer
[GraphTraceLen
] = atoi(line
);
2218 PrintAndLog("loaded %d samples", GraphTraceLen
);
2219 RepaintGraphWindow();
2223 int CmdLtrim(const char *Cmd
)
2227 for (int i
= ds
; i
< GraphTraceLen
; ++i
)
2228 GraphBuffer
[i
-ds
] = GraphBuffer
[i
];
2229 GraphTraceLen
-= ds
;
2231 RepaintGraphWindow();
2235 // trim graph to input argument length
2236 int CmdRtrim(const char *Cmd
)
2242 RepaintGraphWindow();
2247 * Manchester demodulate a bitstream. The bitstream needs to be already in
2248 * the GraphBuffer as 0 and 1 values
2250 * Give the clock rate as argument in order to help the sync - the algorithm
2251 * resyncs at each pulse anyway.
2253 * Not optimized by any means, this is the 1st time I'm writing this type of
2254 * routine, feel free to improve...
2256 * 1st argument: clock rate (as number of samples per clock rate)
2257 * Typical values can be 64, 32, 128...
2259 int CmdManchesterDemod(const char *Cmd
)
2261 int i
, j
, invert
= 0;
2267 int hithigh
, hitlow
, first
;
2273 /* check if we're inverting output */
2276 PrintAndLog("Inverting output");
2281 while(*Cmd
== ' '); // in case a 2nd argument was given
2284 /* Holds the decoded bitstream: each clock period contains 2 bits */
2285 /* later simplified to 1 bit after manchester decoding. */
2286 /* Add 10 bits to allow for noisy / uncertain traces without aborting */
2287 /* int BitStream[GraphTraceLen*2/clock+10]; */
2289 /* But it does not work if compiling on WIndows: therefore we just allocate a */
2291 uint8_t BitStream
[MAX_GRAPH_TRACE_LEN
] = {0};
2293 /* Detect high and lows */
2294 for (i
= 0; i
< GraphTraceLen
; i
++)
2296 if (GraphBuffer
[i
] > high
)
2297 high
= GraphBuffer
[i
];
2298 else if (GraphBuffer
[i
] < low
)
2299 low
= GraphBuffer
[i
];
2303 clock
= GetAskClock(Cmd
, high
, 1);
2305 int tolerance
= clock
/4;
2307 /* Detect first transition */
2308 /* Lo-Hi (arbitrary) */
2309 /* skip to the first high */
2310 for (i
= 0; i
< GraphTraceLen
; i
++)
2311 if (GraphBuffer
[i
] == high
)
2313 /* now look for the first low */
2314 for (; i
< GraphTraceLen
; i
++)
2316 if (GraphBuffer
[i
] == low
)
2323 /* If we're not working with 1/0s, demod based off clock */
2326 bit
= 0; /* We assume the 1st bit is zero, it may not be
2327 * the case: this routine (I think) has an init problem.
2330 for (; i
< (int)(GraphTraceLen
/ clock
); i
++)
2336 /* Find out if we hit both high and low peaks */
2337 for (j
= 0; j
< clock
; j
++)
2339 if (GraphBuffer
[(i
* clock
) + j
] == high
)
2341 else if (GraphBuffer
[(i
* clock
) + j
] == low
)
2344 /* it doesn't count if it's the first part of our read
2345 because it's really just trailing from the last sequence */
2346 if (first
&& (hithigh
|| hitlow
))
2347 hithigh
= hitlow
= 0;
2351 if (hithigh
&& hitlow
)
2355 /* If we didn't hit both high and low peaks, we had a bit transition */
2356 if (!hithigh
|| !hitlow
)
2359 BitStream
[bit2idx
++] = bit
^ invert
;
2363 /* standard 1/0 bitstream */
2367 /* Then detect duration between 2 successive transitions */
2368 for (bitidx
= 1; i
< GraphTraceLen
; i
++)
2370 if (GraphBuffer
[i
-1] != GraphBuffer
[i
])
2375 // Error check: if bitidx becomes too large, we do not
2376 // have a Manchester encoded bitstream or the clock is really
2378 if (bitidx
> (GraphTraceLen
*2/clock
+8) ) {
2379 PrintAndLog("Error: the clock you gave is probably wrong, aborting.");
2382 // Then switch depending on lc length:
2383 // Tolerance is 1/4 of clock rate (arbitrary)
2384 if (abs(lc
-clock
/2) < tolerance
) {
2385 // Short pulse : either "1" or "0"
2386 BitStream
[bitidx
++]=GraphBuffer
[i
-1];
2387 } else if (abs(lc
-clock
) < tolerance
) {
2388 // Long pulse: either "11" or "00"
2389 BitStream
[bitidx
++]=GraphBuffer
[i
-1];
2390 BitStream
[bitidx
++]=GraphBuffer
[i
-1];
2394 PrintAndLog("Warning: Manchester decode error for pulse width detection.");
2395 PrintAndLog("(too many of those messages mean either the stream is not Manchester encoded, or clock is wrong)");
2399 PrintAndLog("Error: too many detection errors, aborting.");
2406 // At this stage, we now have a bitstream of "01" ("1") or "10" ("0"), parse it into final decoded bitstream
2407 // Actually, we overwrite BitStream with the new decoded bitstream, we just need to be careful
2408 // to stop output at the final bitidx2 value, not bitidx
2409 for (i
= 0; i
< bitidx
; i
+= 2) {
2410 if ((BitStream
[i
] == 0) && (BitStream
[i
+1] == 1)) {
2411 BitStream
[bit2idx
++] = 1 ^ invert
;
2412 } else if ((BitStream
[i
] == 1) && (BitStream
[i
+1] == 0)) {
2413 BitStream
[bit2idx
++] = 0 ^ invert
;
2415 // We cannot end up in this state, this means we are unsynchronized,
2419 PrintAndLog("Unsynchronized, resync...");
2420 PrintAndLog("(too many of those messages mean the stream is not Manchester encoded)");
2424 PrintAndLog("Error: too many decode errors, aborting.");
2431 PrintAndLog("Manchester decoded bitstream");
2432 // Now output the bitstream to the scrollback by line of 16 bits
2433 for (i
= 0; i
< (bit2idx
-16); i
+=16) {
2434 PrintAndLog("%i %i %i %i %i %i %i %i %i %i %i %i %i %i %i %i",
2455 /* Modulate our data into manchester */
2456 int CmdManchesterMod(const char *Cmd
)
2460 int bit
, lastbit
, wave
;
2463 clock
= GetAskClock(Cmd
, 0, 1);
2467 for (i
= 0; i
< (int)(GraphTraceLen
/ clock
); i
++)
2469 bit
= GraphBuffer
[i
* clock
] ^ 1;
2471 for (j
= 0; j
< (int)(clock
/2); j
++)
2472 GraphBuffer
[(i
* clock
) + j
] = bit
^ lastbit
^ wave
;
2473 for (j
= (int)(clock
/2); j
< clock
; j
++)
2474 GraphBuffer
[(i
* clock
) + j
] = bit
^ lastbit
^ wave
^ 1;
2476 /* Keep track of how we start our wave and if we changed or not this time */
2477 wave
^= bit
^ lastbit
;
2481 RepaintGraphWindow();
2485 int CmdNorm(const char *Cmd
)
2488 int max
= INT_MIN
, min
= INT_MAX
;
2490 for (i
= 10; i
< GraphTraceLen
; ++i
) {
2491 if (GraphBuffer
[i
] > max
)
2492 max
= GraphBuffer
[i
];
2493 if (GraphBuffer
[i
] < min
)
2494 min
= GraphBuffer
[i
];
2498 for (i
= 0; i
< GraphTraceLen
; ++i
) {
2499 GraphBuffer
[i
] = (GraphBuffer
[i
] - ((max
+ min
) / 2)) * 256 /
2501 //marshmelow: adjusted *1000 to *256 to make +/- 128 so demod commands still work
2504 RepaintGraphWindow();
2508 int CmdPlot(const char *Cmd
)
2514 int CmdSave(const char *Cmd
)
2516 char filename
[FILE_PATH_SIZE
] = {0x00};
2520 if (len
> FILE_PATH_SIZE
) len
= FILE_PATH_SIZE
;
2521 memcpy(filename
, Cmd
, len
);
2524 FILE *f
= fopen(filename
, "w");
2526 PrintAndLog("couldn't open '%s'", filename
);
2530 for (i
= 0; i
< GraphTraceLen
; i
++) {
2531 fprintf(f
, "%d\n", GraphBuffer
[i
]);
2534 PrintAndLog("saved to '%s'", Cmd
);
2538 int CmdScale(const char *Cmd
)
2540 CursorScaleFactor
= atoi(Cmd
);
2541 if (CursorScaleFactor
== 0) {
2542 PrintAndLog("bad, can't have zero scale");
2543 CursorScaleFactor
= 1;
2545 RepaintGraphWindow();
2549 int CmdThreshold(const char *Cmd
)
2551 int threshold
= atoi(Cmd
);
2553 for (int i
= 0; i
< GraphTraceLen
; ++i
) {
2554 if (GraphBuffer
[i
] >= threshold
)
2557 GraphBuffer
[i
] = -1;
2559 RepaintGraphWindow();
2563 int CmdDirectionalThreshold(const char *Cmd
)
2565 int8_t upThres
= param_get8(Cmd
, 0);
2566 int8_t downThres
= param_get8(Cmd
, 1);
2568 printf("Applying Up Threshold: %d, Down Threshold: %d\n", upThres
, downThres
);
2570 int lastValue
= GraphBuffer
[0];
2571 GraphBuffer
[0] = 0; // Will be changed at the end, but init 0 as we adjust to last samples value if no threshold kicks in.
2573 for (int i
= 1; i
< GraphTraceLen
; ++i
) {
2574 // Apply first threshold to samples heading up
2575 if (GraphBuffer
[i
] >= upThres
&& GraphBuffer
[i
] > lastValue
)
2577 lastValue
= GraphBuffer
[i
]; // Buffer last value as we overwrite it.
2580 // Apply second threshold to samples heading down
2581 else if (GraphBuffer
[i
] <= downThres
&& GraphBuffer
[i
] < lastValue
)
2583 lastValue
= GraphBuffer
[i
]; // Buffer last value as we overwrite it.
2584 GraphBuffer
[i
] = -1;
2588 lastValue
= GraphBuffer
[i
]; // Buffer last value as we overwrite it.
2589 GraphBuffer
[i
] = GraphBuffer
[i
-1];
2593 GraphBuffer
[0] = GraphBuffer
[1]; // Aline with first edited sample.
2594 RepaintGraphWindow();
2598 int CmdZerocrossings(const char *Cmd
)
2600 // Zero-crossings aren't meaningful unless the signal is zero-mean.
2607 for (int i
= 0; i
< GraphTraceLen
; ++i
) {
2608 if (GraphBuffer
[i
] * sign
>= 0) {
2609 // No change in sign, reproduce the previous sample count.
2611 GraphBuffer
[i
] = lastZc
;
2613 // Change in sign, reset the sample count.
2615 GraphBuffer
[i
] = lastZc
;
2623 RepaintGraphWindow();
2627 static command_t CommandTable
[] =
2629 {"help", CmdHelp
, 1, "This help"},
2630 {"amp", CmdAmp
, 1, "Amplify peaks"},
2631 //{"askdemod", Cmdaskdemod, 1, "<0 or 1> -- Attempt to demodulate simple ASK tags"},
2632 {"askedgedetect", CmdAskEdgeDetect
, 1, "[threshold] Adjust Graph for manual ask demod using length of sample differences to detect the edge of a wave (default = 25)"},
2633 {"askem410xdemod",CmdAskEM410xDemod
, 1, "[clock] [invert<0|1>] [maxErr] -- Demodulate an EM410x tag from GraphBuffer (args optional)"},
2634 {"askgproxiidemod",CmdG_Prox_II_Demod
,1, "Demodulate a G Prox II tag from GraphBuffer"},
2635 //{"askmandemod", Cmdaskmandemod, 1, "[clock] [invert<0|1>] [maxErr] -- Attempt to demodulate ASK/Manchester tags and output binary (args optional)"},
2636 //{"askrawdemod", Cmdaskrawdemod, 1, "[clock] [invert<0|1>] -- Attempt to demodulate ASK tags and output bin (args optional)"},
2637 {"autocorr", CmdAutoCorr
, 1, "[window length] [g] -- Autocorrelation over window - g to save back to GraphBuffer (overwrite)"},
2638 {"biphaserawdecode",CmdBiphaseDecodeRaw
,1,"[offset] [invert<0|1>] Biphase decode bin stream in DemodBuffer (offset = 0|1 bits to shift the decode start)"},
2639 {"bitsamples", CmdBitsamples
, 0, "Get raw samples as bitstring"},
2640 //{"bitstream", CmdBitstream, 1, "[clock rate] -- Convert waveform into a bitstream"},
2641 {"buffclear", CmdBuffClear
, 1, "Clear sample buffer and graph window"},
2642 {"dec", CmdDec
, 1, "Decimate samples"},
2643 {"detectclock", CmdDetectClockRate
, 1, "[modulation] Detect clock rate of wave in GraphBuffer (options: 'a','f','n','p' for ask, fsk, nrz, psk respectively)"},
2644 //{"fskdemod", CmdFSKdemod, 1, "Demodulate graph window as a HID FSK"},
2645 {"fskawiddemod", CmdFSKdemodAWID
, 1, "Demodulate an AWID FSK tag from GraphBuffer"},
2646 //{"fskfcdetect", CmdFSKfcDetect, 1, "Try to detect the Field Clock of an FSK wave"},
2647 {"fskhiddemod", CmdFSKdemodHID
, 1, "Demodulate a HID FSK tag from GraphBuffer"},
2648 {"fskiodemod", CmdFSKdemodIO
, 1, "Demodulate an IO Prox FSK tag from GraphBuffer"},
2649 {"fskpyramiddemod",CmdFSKdemodPyramid
,1, "Demodulate a Pyramid FSK tag from GraphBuffer"},
2650 {"fskparadoxdemod",CmdFSKdemodParadox
,1, "Demodulate a Paradox FSK tag from GraphBuffer"},
2651 //{"fskrawdemod", CmdFSKrawdemod, 1, "[clock rate] [invert] [rchigh] [rclow] Demodulate graph window from FSK to bin (clock = 50)(invert = 1|0)(rchigh = 10)(rclow=8)"},
2652 {"getbitstream", CmdGetBitStream
, 1, "Convert GraphBuffer's >=1 values to 1 and <1 to 0"},
2653 {"grid", CmdGrid
, 1, "<x> <y> -- overlay grid on graph window, use zero value to turn off either"},
2654 {"hexsamples", CmdHexsamples
, 0, "<bytes> [<offset>] -- Dump big buffer as hex bytes"},
2655 {"hide", CmdHide
, 1, "Hide graph window"},
2656 {"hpf", CmdHpf
, 1, "Remove DC offset from trace"},
2657 {"load", CmdLoad
, 1, "<filename> -- Load trace (to graph window"},
2658 {"ltrim", CmdLtrim
, 1, "<samples> -- Trim samples from left of trace"},
2659 {"rtrim", CmdRtrim
, 1, "<location to end trace> -- Trim samples from right of trace"},
2660 //{"mandemod", CmdManchesterDemod, 1, "[i] [clock rate] -- Manchester demodulate binary stream (option 'i' to invert output)"},
2661 {"manrawdecode", Cmdmandecoderaw
, 1, "Manchester decode binary stream in DemodBuffer"},
2662 {"manmod", CmdManchesterMod
, 1, "[clock rate] -- Manchester modulate a binary stream"},
2663 {"norm", CmdNorm
, 1, "Normalize max/min to +/-128"},
2664 //{"nrzdetectclock",CmdDetectNRZClockRate, 1, "Detect ASK, PSK, or NRZ clock rate"},
2665 //{"nrzrawdemod", CmdNRZrawDemod, 1, "[clock] [invert<0|1>] [maxErr] -- Attempt to demodulate nrz tags and output binary (args optional)"},
2666 {"plot", CmdPlot
, 1, "Show graph window (hit 'h' in window for keystroke help)"},
2667 //{"pskdetectclock",CmdDetectPSKClockRate, 1, "Detect ASK, PSK, or NRZ clock rate"},
2668 {"printdemodbuffer",CmdPrintDemodBuff
,1, "[x] -- print the data in the DemodBuffer - 'x' for hex output"},
2669 {"pskindalademod",CmdIndalaDecode
, 1, "[clock] [invert<0|1>] -- Demodulate an indala tag (PSK1) from GraphBuffer (args optional)"},
2670 //{"psk1rawdemod", CmdPSK1rawDemod, 1, "[clock] [invert<0|1>] [maxErr] -- Attempt to demodulate psk1 tags and output binary (args optional)"},
2671 //{"psk2rawdemod", CmdPSK2rawDemod, 1, "[clock] [invert<0|1>] [maxErr] -- Attempt to demodulate psk2 tags and output binary (args optional)"},
2672 {"rawdemod", CmdRawDemod
, 1, "[modulation] ... <options> -see help (h option) -- Demodulate the data in the GraphBuffer and output binary"},
2673 {"samples", CmdSamples
, 0, "[512 - 40000] -- Get raw samples for graph window (GraphBuffer)"},
2674 {"save", CmdSave
, 1, "<filename> -- Save trace (from graph window)"},
2675 {"scale", CmdScale
, 1, "<int> -- Set cursor display scale"},
2676 {"setdebugmode", CmdSetDebugMode
, 1, "<0|1> -- Turn on or off Debugging Mode for demods"},
2677 {"shiftgraphzero",CmdGraphShiftZero
, 1, "<shift> -- Shift 0 for Graphed wave + or - shift value"},
2678 //{"threshold", CmdThreshold, 1, "<threshold> -- Maximize/minimize every value in the graph window depending on threshold"},
2679 {"dirthreshold", CmdDirectionalThreshold
, 1, "<thres up> <thres down> -- Max rising higher up-thres/ Min falling lower down-thres, keep rest as prev."},
2680 {"tune", CmdTuneSamples
, 0, "Get hw tune samples for graph window"},
2681 {"undec", CmdUndec
, 1, "Un-decimate samples by 2"},
2682 {"zerocrossings", CmdZerocrossings
, 1, "Count time between zero-crossings"},
2683 {NULL
, NULL
, 0, NULL
}
2686 int CmdData(const char *Cmd
)
2688 CmdsParse(CommandTable
, Cmd
);
2692 int CmdHelp(const char *Cmd
)
2694 CmdsHelp(CommandTable
);