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 // Low frequency commands
9 //-----------------------------------------------------------------------------
15 #include "proxmark3.h"
17 #include "lfdemod.h" // for psk2TOpsk1
18 #include "util.h" // for parsing cli command utils
19 #include "ui.h" // for show graph controls
20 #include "graph.h" // for graph data
21 #include "cmdparser.h" // for getting cli commands included in cmdmain.h
22 #include "cmdmain.h" // for sending cmds to device
23 #include "data.h" // for GetFromBigBuf
24 #include "cmddata.h" // for `lf search`
25 #include "cmdlfawid.h" // for awid menu
26 #include "cmdlfem4x.h" // for em4x menu
27 #include "cmdlfhid.h" // for hid menu
28 #include "cmdlfhitag.h" // for hitag menu
29 #include "cmdlfio.h" // for ioprox menu
30 #include "cmdlft55xx.h" // for t55xx menu
31 #include "cmdlfti.h" // for ti menu
32 #include "cmdlfpresco.h" // for presco menu
33 #include "cmdlfpcf7931.h"// for pcf7931 menu
34 #include "cmdlfpyramid.h"// for pyramid menu
35 #include "cmdlfviking.h" // for viking menu
36 #include "cmdlfcotag.h" // for COTAG menu
37 #include "cmdlfvisa2000.h" // for VISA2000 menu
38 #include "cmdlfindala.h" // for indala menu
40 bool g_lf_threshold_set
= false;
41 static int CmdHelp(const char *Cmd
);
45 int usage_lf_cmdread(void)
47 PrintAndLog("Usage: lf cmdread d <delay period> z <zero period> o <one period> c <cmdbytes> [H] ");
48 PrintAndLog("Options: ");
49 PrintAndLog(" h This help");
50 PrintAndLog(" L Low frequency (125 KHz)");
51 PrintAndLog(" H High frequency (134 KHz)");
52 PrintAndLog(" d <delay> delay OFF period");
53 PrintAndLog(" z <zero> time period ZERO");
54 PrintAndLog(" o <one> time period ONE");
55 PrintAndLog(" c <cmd> Command bytes");
56 PrintAndLog(" ************* All periods in microseconds");
57 PrintAndLog("Examples:");
58 PrintAndLog(" lf cmdread d 80 z 100 o 200 c 11000");
59 PrintAndLog(" lf cmdread d 80 z 100 o 100 c 11000 H");
63 /* send a command before reading */
64 int CmdLFCommandRead(const char *Cmd
)
66 static char dummy
[3] = {0x20,0x00,0x00};
67 UsbCommand c
= {CMD_MOD_THEN_ACQUIRE_RAW_ADC_SAMPLES_125K
};
69 //uint8_t divisor = 95; //125khz
71 while(param_getchar(Cmd
, cmdp
) != 0x00)
73 switch(param_getchar(Cmd
, cmdp
))
76 return usage_lf_cmdread();
86 param_getstr(Cmd
, cmdp
+1, (char *)&c
.d
.asBytes
);
90 c
.arg
[0] = param_get32ex(Cmd
, cmdp
+1, 0, 10);
94 c
.arg
[1] = param_get32ex(Cmd
, cmdp
+1, 0, 10);
98 c
.arg
[2] = param_get32ex(Cmd
, cmdp
+1, 0, 10);
102 PrintAndLog("Unknown parameter '%c'", param_getchar(Cmd
, cmdp
));
109 if(cmdp
== 0) errors
= 1;
112 if(errors
) return usage_lf_cmdread();
114 // in case they specified 'H'
115 strcpy((char *)&c
.d
.asBytes
+ strlen((char *)c
.d
.asBytes
), dummy
);
117 clearCommandBuffer();
122 int CmdFlexdemod(const char *Cmd
)
125 for (i
= 0; i
< GraphTraceLen
; ++i
) {
126 if (GraphBuffer
[i
] < 0) {
133 #define LONG_WAIT 100
135 for (start
= 0; start
< GraphTraceLen
- LONG_WAIT
; start
++) {
136 int first
= GraphBuffer
[start
];
137 for (i
= start
; i
< start
+ LONG_WAIT
; i
++) {
138 if (GraphBuffer
[i
] != first
) {
142 if (i
== (start
+ LONG_WAIT
)) {
146 if (start
== GraphTraceLen
- LONG_WAIT
) {
147 PrintAndLog("nothing to wait for");
151 GraphBuffer
[start
] = 2;
152 GraphBuffer
[start
+1] = -2;
153 uint8_t bits
[64] = {0x00};
157 for (bit
= 0; bit
< 64; bit
++) {
159 for (int j
= 0; j
< 16; j
++) {
160 sum
+= GraphBuffer
[i
++];
163 bits
[bit
] = (sum
> 0) ? 1 : 0;
165 PrintAndLog("bit %d sum %d", bit
, sum
);
168 for (bit
= 0; bit
< 64; bit
++) {
171 for (j
= 0; j
< 16; j
++) {
172 sum
+= GraphBuffer
[i
++];
174 if (sum
> 0 && bits
[bit
] != 1) {
175 PrintAndLog("oops1 at %d", bit
);
177 if (sum
< 0 && bits
[bit
] != 0) {
178 PrintAndLog("oops2 at %d", bit
);
182 // HACK writing back to graphbuffer.
183 GraphTraceLen
= 32*64;
186 for (bit
= 0; bit
< 64; bit
++) {
188 phase
= (bits
[bit
] == 0) ? 0 : 1;
191 for (j
= 0; j
< 32; j
++) {
192 GraphBuffer
[i
++] = phase
;
197 RepaintGraphWindow();
201 int usage_lf_read(void)
203 PrintAndLog("Usage: lf read");
204 PrintAndLog("Options: ");
205 PrintAndLog(" h This help");
206 PrintAndLog(" s silent run no printout");
207 PrintAndLog("This function takes no arguments. ");
208 PrintAndLog("Use 'lf config' to set parameters.");
211 int usage_lf_snoop(void)
213 PrintAndLog("Usage: lf snoop");
214 PrintAndLog("Options: ");
215 PrintAndLog(" h This help");
216 PrintAndLog("This function takes no arguments. ");
217 PrintAndLog("Use 'lf config' to set parameters.");
221 int usage_lf_config(void)
223 PrintAndLog("Usage: lf config [H|<divisor>] [b <bps>] [d <decim>] [a 0|1]");
224 PrintAndLog("Options: ");
225 PrintAndLog(" h This help");
226 PrintAndLog(" L Low frequency (125 KHz)");
227 PrintAndLog(" H High frequency (134 KHz)");
228 PrintAndLog(" q <divisor> Manually set divisor. 88-> 134KHz, 95-> 125 Hz");
229 PrintAndLog(" b <bps> Sets resolution of bits per sample. Default (max): 8");
230 PrintAndLog(" d <decim> Sets decimation. A value of N saves only 1 in N samples. Default: 1");
231 PrintAndLog(" a [0|1] Averaging - if set, will average the stored sample value when decimating. Default: 1");
232 PrintAndLog(" t <threshold> Sets trigger threshold. 0 means no threshold (range: 0-128)");
233 PrintAndLog("Examples:");
234 PrintAndLog(" lf config b 8 L");
235 PrintAndLog(" Samples at 125KHz, 8bps.");
236 PrintAndLog(" lf config H b 4 d 3");
237 PrintAndLog(" Samples at 134KHz, averages three samples into one, stored with ");
238 PrintAndLog(" a resolution of 4 bits per sample.");
239 PrintAndLog(" lf read");
240 PrintAndLog(" Performs a read (active field)");
241 PrintAndLog(" lf snoop");
242 PrintAndLog(" Performs a snoop (no active field)");
246 int CmdLFSetConfig(const char *Cmd
)
249 uint8_t divisor
= 0;//Frequency divisor
250 uint8_t bps
= 0; // Bits per sample
251 uint8_t decimation
= 0; //How many to keep
252 bool averaging
= 1; // Defaults to true
254 int trigger_threshold
=-1;//Means no change
255 uint8_t unsigned_trigg
= 0;
258 while(param_getchar(Cmd
, cmdp
) != 0x00)
260 switch(param_getchar(Cmd
, cmdp
))
263 return usage_lf_config();
273 errors
|= param_getdec(Cmd
,cmdp
+1,&divisor
);
277 errors
|= param_getdec(Cmd
,cmdp
+1,&unsigned_trigg
);
280 trigger_threshold
= unsigned_trigg
;
281 if (trigger_threshold
> 0) g_lf_threshold_set
= true;
285 errors
|= param_getdec(Cmd
,cmdp
+1,&bps
);
289 errors
|= param_getdec(Cmd
,cmdp
+1,&decimation
);
293 averaging
= param_getchar(Cmd
,cmdp
+1) == '1';
297 PrintAndLog("Unknown parameter '%c'", param_getchar(Cmd
, cmdp
));
305 errors
= 1;// No args
311 return usage_lf_config();
313 //Bps is limited to 8, so fits in lower half of arg1
314 if(bps
>> 4) bps
= 8;
316 sample_config config
= {
317 decimation
,bps
,averaging
,divisor
,trigger_threshold
319 //Averaging is a flag on high-bit of arg[1]
320 UsbCommand c
= {CMD_SET_LF_SAMPLING_CONFIG
};
321 memcpy(c
.d
.asBytes
,&config
,sizeof(sample_config
));
322 clearCommandBuffer();
327 int CmdLFRead(const char *Cmd
)
329 if (offline
) return 0;
332 if (param_getchar(Cmd
, cmdp
) == 'h')
334 return usage_lf_read();
336 if (param_getchar(Cmd
, cmdp
) == 's') arg1
= true; //suppress print
337 //And ship it to device
338 UsbCommand c
= {CMD_ACQUIRE_RAW_ADC_SAMPLES_125K
, {arg1
,0,0}};
339 clearCommandBuffer();
341 if (g_lf_threshold_set
) {
342 WaitForResponse(CMD_ACK
,NULL
);
344 if ( !WaitForResponseTimeout(CMD_ACK
,NULL
,2500) ) {
345 PrintAndLog("command execution time out");
352 int CmdLFSnoop(const char *Cmd
)
355 if(param_getchar(Cmd
, cmdp
) == 'h')
357 return usage_lf_snoop();
360 UsbCommand c
= {CMD_LF_SNOOP_RAW_ADC_SAMPLES
};
361 clearCommandBuffer();
363 WaitForResponse(CMD_ACK
,NULL
);
367 static void ChkBitstream(const char *str
)
371 /* convert to bitstream if necessary */
372 for (i
= 0; i
< (int)(GraphTraceLen
/ 2); i
++){
373 if (GraphBuffer
[i
] > 1 || GraphBuffer
[i
] < 0) {
379 //Attempt to simulate any wave in buffer (one bit per output sample)
380 // converts GraphBuffer to bitstream (based on zero crossings) if needed.
381 int CmdLFSim(const char *Cmd
)
386 sscanf(Cmd
, "%i", &gap
);
388 // convert to bitstream if necessary
392 //can send only 512 bits at a time (1 byte sent per bit...)
393 printf("Sending [%d bytes]", GraphTraceLen
);
394 for (i
= 0; i
< GraphTraceLen
; i
+= USB_CMD_DATA_SIZE
) {
395 UsbCommand c
={CMD_DOWNLOADED_SIM_SAMPLES_125K
, {i
, 0, 0}};
397 for (j
= 0; j
< USB_CMD_DATA_SIZE
; j
++) {
398 c
.d
.asBytes
[j
] = GraphBuffer
[i
+j
];
401 WaitForResponse(CMD_ACK
,NULL
);
406 PrintAndLog("Starting to simulate");
407 UsbCommand c
= {CMD_SIMULATE_TAG_125K
, {GraphTraceLen
, gap
, 0}};
408 clearCommandBuffer();
413 int usage_lf_simfsk(void)
416 PrintAndLog("Usage: lf simfsk [c <clock>] [i] [H <fcHigh>] [L <fcLow>] [d <hexdata>]");
417 PrintAndLog("Options: ");
418 PrintAndLog(" h This help");
419 PrintAndLog(" c <clock> Manually set clock - can autodetect if using DemodBuffer");
420 PrintAndLog(" i invert data");
421 PrintAndLog(" H <fcHigh> Manually set the larger Field Clock");
422 PrintAndLog(" L <fcLow> Manually set the smaller Field Clock");
423 //PrintAndLog(" s TBD- -to enable a gap between playback repetitions - default: no gap");
424 PrintAndLog(" d <hexdata> Data to sim as hex - omit to sim from DemodBuffer");
425 PrintAndLog("\n NOTE: if you set one clock manually set them all manually");
429 int usage_lf_simask(void)
432 PrintAndLog("Usage: lf simask [c <clock>] [i] [b|m|r] [s] [d <raw hex to sim>]");
433 PrintAndLog("Options: ");
434 PrintAndLog(" h This help");
435 PrintAndLog(" c <clock> Manually set clock - can autodetect if using DemodBuffer");
436 PrintAndLog(" i invert data");
437 PrintAndLog(" b sim ask/biphase");
438 PrintAndLog(" m sim ask/manchester - Default");
439 PrintAndLog(" r sim ask/raw");
440 PrintAndLog(" s add t55xx Sequence Terminator gap - default: no gaps (only manchester)");
441 PrintAndLog(" d <hexdata> Data to sim as hex - omit to sim from DemodBuffer");
445 int usage_lf_simpsk(void)
448 PrintAndLog("Usage: lf simpsk [1|2|3] [c <clock>] [i] [r <carrier>] [d <raw hex to sim>]");
449 PrintAndLog("Options: ");
450 PrintAndLog(" h This help");
451 PrintAndLog(" c <clock> Manually set clock - can autodetect if using DemodBuffer");
452 PrintAndLog(" i invert data");
453 PrintAndLog(" 1 set PSK1 (default)");
454 PrintAndLog(" 2 set PSK2");
455 PrintAndLog(" 3 set PSK3");
456 PrintAndLog(" r <carrier> 2|4|8 are valid carriers: default = 2");
457 PrintAndLog(" d <hexdata> Data to sim as hex - omit to sim from DemodBuffer");
461 // by marshmellow - sim fsk data given clock, fcHigh, fcLow, invert
462 // - allow pull data from DemodBuffer
463 int CmdLFfskSim(const char *Cmd
)
465 //might be able to autodetect FCs and clock from Graphbuffer if using demod buffer
466 // otherwise will need FChigh, FClow, Clock, and bitstream
467 uint8_t fcHigh
=0, fcLow
=0, clk
=0;
470 char hexData
[32] = {0x00}; // store entered hex data
471 uint8_t data
[255] = {0x00};
474 while(param_getchar(Cmd
, cmdp
) != 0x00)
476 switch(param_getchar(Cmd
, cmdp
))
479 return usage_lf_simfsk();
485 errors
|= param_getdec(Cmd
,cmdp
+1,&clk
);
489 errors
|= param_getdec(Cmd
,cmdp
+1,&fcHigh
);
493 errors
|= param_getdec(Cmd
,cmdp
+1,&fcLow
);
501 dataLen
= param_getstr(Cmd
, cmdp
+1, hexData
);
505 dataLen
= hextobinarray((char *)data
, hexData
);
507 if (dataLen
==0) errors
=true;
508 if (errors
) PrintAndLog ("Error getting hex data");
512 PrintAndLog("Unknown parameter '%c'", param_getchar(Cmd
, cmdp
));
518 if(cmdp
== 0 && DemodBufferLen
== 0)
520 errors
= true;// No args
526 return usage_lf_simfsk();
529 if (dataLen
== 0){ //using DemodBuffer
530 if (clk
==0 || fcHigh
==0 || fcLow
==0){ //manual settings must set them all
531 uint8_t ans
= fskClocks(&fcHigh
, &fcLow
, &clk
, 0);
533 if (!fcHigh
) fcHigh
=10;
539 setDemodBuf(data
, dataLen
, 0);
542 //default if not found
543 if (clk
== 0) clk
= 50;
544 if (fcHigh
== 0) fcHigh
= 10;
545 if (fcLow
== 0) fcLow
= 8;
548 arg1
= fcHigh
<< 8 | fcLow
;
549 arg2
= invert
<< 8 | clk
;
550 size_t size
= DemodBufferLen
;
551 if (size
> USB_CMD_DATA_SIZE
) {
552 PrintAndLog("DemodBuffer too long for current implementation - length: %d - max: %d", size
, USB_CMD_DATA_SIZE
);
553 size
= USB_CMD_DATA_SIZE
;
555 UsbCommand c
= {CMD_FSK_SIM_TAG
, {arg1
, arg2
, size
}};
557 memcpy(c
.d
.asBytes
, DemodBuffer
, size
);
558 clearCommandBuffer();
563 // by marshmellow - sim ask data given clock, invert, manchester or raw, separator
564 // - allow pull data from DemodBuffer
565 int CmdLFaskSim(const char *Cmd
)
567 //autodetect clock from Graphbuffer if using demod buffer
568 // needs clock, invert, manchester/raw as m or r, separator as s, and bitstream
569 uint8_t encoding
= 1, separator
= 0;
570 uint8_t clk
=0, invert
=0;
572 char hexData
[32] = {0x00};
573 uint8_t data
[255]= {0x00}; // store entered hex data
576 while(param_getchar(Cmd
, cmdp
) != 0x00)
578 switch(param_getchar(Cmd
, cmdp
))
581 return usage_lf_simask();
587 errors
|= param_getdec(Cmd
,cmdp
+1,&clk
);
591 encoding
=2; //biphase
607 dataLen
= param_getstr(Cmd
, cmdp
+1, hexData
);
611 dataLen
= hextobinarray((char *)data
, hexData
);
613 if (dataLen
==0) errors
=true;
614 if (errors
) PrintAndLog ("Error getting hex data, datalen: %d",dataLen
);
618 PrintAndLog("Unknown parameter '%c'", param_getchar(Cmd
, cmdp
));
624 if(cmdp
== 0 && DemodBufferLen
== 0)
626 errors
= true;// No args
632 return usage_lf_simask();
634 if (dataLen
== 0){ //using DemodBuffer
635 if (clk
== 0) clk
= GetAskClock("0", false, false);
637 setDemodBuf(data
, dataLen
, 0);
639 if (clk
== 0) clk
= 64;
640 if (encoding
== 0) clk
= clk
/2; //askraw needs to double the clock speed
642 size_t size
=DemodBufferLen
;
643 arg1
= clk
<< 8 | encoding
;
644 arg2
= invert
<< 8 | separator
;
645 if (size
> USB_CMD_DATA_SIZE
) {
646 PrintAndLog("DemodBuffer too long for current implementation - length: %d - max: %d", size
, USB_CMD_DATA_SIZE
);
647 size
= USB_CMD_DATA_SIZE
;
649 UsbCommand c
= {CMD_ASK_SIM_TAG
, {arg1
, arg2
, size
}};
650 PrintAndLog("preparing to sim ask data: %d bits", size
);
651 memcpy(c
.d
.asBytes
, DemodBuffer
, size
);
652 clearCommandBuffer();
657 // by marshmellow - sim psk data given carrier, clock, invert
658 // - allow pull data from DemodBuffer or parameters
659 int CmdLFpskSim(const char *Cmd
)
661 //might be able to autodetect FC and clock from Graphbuffer if using demod buffer
662 //will need carrier, Clock, and bitstream
663 uint8_t carrier
=0, clk
=0;
666 char hexData
[32] = {0x00}; // store entered hex data
667 uint8_t data
[255] = {0x00};
671 while(param_getchar(Cmd
, cmdp
) != 0x00)
673 switch(param_getchar(Cmd
, cmdp
))
676 return usage_lf_simpsk();
682 errors
|= param_getdec(Cmd
,cmdp
+1,&clk
);
686 errors
|= param_getdec(Cmd
,cmdp
+1,&carrier
);
702 dataLen
= param_getstr(Cmd
, cmdp
+1, hexData
);
706 dataLen
= hextobinarray((char *)data
, hexData
);
708 if (dataLen
==0) errors
=true;
709 if (errors
) PrintAndLog ("Error getting hex data");
713 PrintAndLog("Unknown parameter '%c'", param_getchar(Cmd
, cmdp
));
719 if (cmdp
== 0 && DemodBufferLen
== 0)
721 errors
= true;// No args
727 return usage_lf_simpsk();
729 if (dataLen
== 0){ //using DemodBuffer
730 PrintAndLog("Getting Clocks");
731 if (clk
==0) clk
= GetPskClock("", false, false);
732 PrintAndLog("clk: %d",clk
);
733 if (!carrier
) carrier
= GetPskCarrier("", false, false);
734 PrintAndLog("carrier: %d", carrier
);
736 setDemodBuf(data
, dataLen
, 0);
739 if (clk
<= 0) clk
= 32;
740 if (carrier
== 0) carrier
= 2;
743 //need to convert psk2 to psk1 data before sim
744 psk2TOpsk1(DemodBuffer
, DemodBufferLen
);
746 PrintAndLog("Sorry, PSK3 not yet available");
750 arg1
= clk
<< 8 | carrier
;
752 size_t size
=DemodBufferLen
;
753 if (size
> USB_CMD_DATA_SIZE
) {
754 PrintAndLog("DemodBuffer too long for current implementation - length: %d - max: %d", size
, USB_CMD_DATA_SIZE
);
755 size
=USB_CMD_DATA_SIZE
;
757 UsbCommand c
= {CMD_PSK_SIM_TAG
, {arg1
, arg2
, size
}};
758 PrintAndLog("DEBUG: Sending DemodBuffer Length: %d", size
);
759 memcpy(c
.d
.asBytes
, DemodBuffer
, size
);
760 clearCommandBuffer();
766 int CmdLFSimBidir(const char *Cmd
)
768 // Set ADC to twice the carrier for a slight supersampling
769 // HACK: not implemented in ARMSRC.
770 PrintAndLog("Not implemented yet.");
771 UsbCommand c
= {CMD_LF_SIMULATE_BIDIR
, {47, 384, 0}};
776 int CmdVchDemod(const char *Cmd
)
778 // Is this the entire sync pattern, or does this also include some
779 // data bits that happen to be the same everywhere? That would be
781 static const int SyncPattern
[] = {
782 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
783 1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1,
784 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
785 1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1,
786 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
787 1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1,
788 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
789 1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1,
790 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
791 1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1,
794 // So first, we correlate for the sync pattern, and mark that.
795 int bestCorrel
= 0, bestPos
= 0;
797 // It does us no good to find the sync pattern, with fewer than
798 // 2048 samples after it...
799 for (i
= 0; i
< (GraphTraceLen
-2048); i
++) {
802 for (j
= 0; j
< arraylen(SyncPattern
); j
++) {
803 sum
+= GraphBuffer
[i
+j
]*SyncPattern
[j
];
805 if (sum
> bestCorrel
) {
810 PrintAndLog("best sync at %d [metric %d]", bestPos
, bestCorrel
);
818 for (i
= 0; i
< 2048; i
+= 8) {
821 for (j
= 0; j
< 8; j
++) {
822 sum
+= GraphBuffer
[bestPos
+i
+j
];
829 if(abs(sum
) < worst
) {
834 PrintAndLog("bits:");
835 PrintAndLog("%s", bits
);
836 PrintAndLog("worst metric: %d at pos %d", worst
, worstPos
);
838 if (strcmp(Cmd
, "clone")==0) {
841 for(s
= bits
; *s
; s
++) {
843 for(j
= 0; j
< 16; j
++) {
844 GraphBuffer
[GraphTraceLen
++] = (*s
== '1') ? 1 : 0;
847 RepaintGraphWindow();
854 int CheckChipType(char cmdp
) {
855 uint32_t wordData
= 0;
857 //check for em4x05/em4x69 chips first
859 if ((!offline
&& (cmdp
!= '1')) && EM4x05Block0Test(&wordData
)) {
860 PrintAndLog("\nValid EM4x05/EM4x69 Chip Found\nTry lf em 4x05... commands\n");
865 //TODO check for t55xx chip...
872 int CmdLFfind(const char *Cmd
)
874 uint32_t wordData
= 0;
876 size_t minLength
= 1000;
877 char cmdp
= param_getchar(Cmd
, 0);
878 char testRaw
= param_getchar(Cmd
, 1);
879 if (strlen(Cmd
) > 3 || cmdp
== 'h' || cmdp
== 'H') {
880 PrintAndLog("Usage: lf search <0|1> [u]");
881 PrintAndLog(" <use data from Graphbuffer> , if not set, try reading data from tag.");
882 PrintAndLog(" [Search for Unknown tags] , if not set, reads only known tags.");
884 PrintAndLog(" sample: lf search = try reading data from tag & search for known tags");
885 PrintAndLog(" : lf search 1 = use data from GraphBuffer & search for known tags");
886 PrintAndLog(" : lf search u = try reading data from tag & search for known and unknown tags");
887 PrintAndLog(" : lf search 1 u = use data from GraphBuffer & search for known and unknown tags");
892 if (!offline
&& (cmdp
!= '1')){
894 getSamples("30000",false);
895 } else if (GraphTraceLen
< minLength
) {
896 PrintAndLog("Data in Graphbuffer was too small.");
899 if (cmdp
== 'u' || cmdp
== 'U') testRaw
= 'u';
901 PrintAndLog("NOTE: some demods output possible binary\n if it finds something that looks like a tag");
902 PrintAndLog("False Positives ARE possible\n");
903 PrintAndLog("\nChecking for known tags:\n");
905 size_t testLen
= minLength
;
906 // only run if graphbuffer is just noise as it should be for hitag/cotag
907 if (graphJustNoise(GraphBuffer
, testLen
)) {
908 // only run these tests if we are in online mode
909 if (!offline
&& (cmdp
!= '1')) {
910 // test for em4x05 in reader talk first mode.
911 if (EM4x05Block0Test(&wordData
)) {
912 PrintAndLog("\nValid EM4x05/EM4x69 Chip Found\nUse lf em 4x05readword/dump commands to read\n");
915 ans
=CmdLFHitagReader("26");
919 ans
=CmdCOTAGRead("");
921 PrintAndLog("\nValid COTAG ID Found!");
928 ans
=CmdFSKdemodIO("");
930 PrintAndLog("\nValid IO Prox ID Found!");
931 return CheckChipType(cmdp
);
934 ans
=CmdFSKdemodPyramid("");
936 PrintAndLog("\nValid Pyramid ID Found!");
937 return CheckChipType(cmdp
);
940 ans
=CmdFSKdemodParadox("");
942 PrintAndLog("\nValid Paradox ID Found!");
943 return CheckChipType(cmdp
);
946 ans
=CmdFSKdemodAWID("");
948 PrintAndLog("\nValid AWID ID Found!");
949 return CheckChipType(cmdp
);
952 ans
=CmdFSKdemodHID("");
954 PrintAndLog("\nValid HID Prox ID Found!");
955 return CheckChipType(cmdp
);
958 ans
=CmdAskEM410xDemod("");
960 PrintAndLog("\nValid EM410x ID Found!");
961 return CheckChipType(cmdp
);
964 ans
=CmdVisa2kDemod("");
966 PrintAndLog("\nValid Visa2000 ID Found!");
967 return CheckChipType(cmdp
);
970 ans
=CmdG_Prox_II_Demod("");
972 PrintAndLog("\nValid G Prox II ID Found!");
973 return CheckChipType(cmdp
);
976 ans
=CmdFDXBdemodBI("");
978 PrintAndLog("\nValid FDX-B ID Found!");
979 return CheckChipType(cmdp
);
982 ans
=EM4x50Read("", false);
984 PrintAndLog("\nValid EM4x50 ID Found!");
988 ans
=CmdVikingDemod("");
990 PrintAndLog("\nValid Viking ID Found!");
991 return CheckChipType(cmdp
);
994 ans
=CmdIndalaDecode("");
996 PrintAndLog("\nValid Indala ID Found!");
997 return CheckChipType(cmdp
);
1000 ans
=CmdPSKNexWatch("");
1002 PrintAndLog("\nValid NexWatch ID Found!");
1003 return CheckChipType(cmdp
);
1006 PrintAndLog("\nNo Known Tags Found!\n");
1007 if (testRaw
=='u' || testRaw
=='U'){
1008 ans
=CheckChipType(cmdp
);
1009 //test unknown tag formats (raw mode)0
1010 PrintAndLog("\nChecking for Unknown tags:\n");
1011 ans
=AutoCorrelate(4000, false, false);
1012 if (ans
> 0) PrintAndLog("Possible Auto Correlation of %d repeating samples",ans
);
1013 ans
=GetFskClock("",false,false);
1014 if (ans
!= 0){ //fsk
1015 ans
=FSKrawDemod("",true);
1017 PrintAndLog("\nUnknown FSK Modulated Tag Found!");
1022 ans
=ASKDemod_ext("0 0 0",true,false,1,&st
);
1024 PrintAndLog("\nUnknown ASK Modulated and Manchester encoded Tag Found!");
1025 PrintAndLog("\nif it does not look right it could instead be ASK/Biphase - try 'data rawdemod ab'");
1028 ans
=CmdPSK1rawDemod("");
1030 PrintAndLog("Possible unknown PSK1 Modulated Tag Found above!\n\nCould also be PSK2 - try 'data rawdemod p2'");
1031 PrintAndLog("\nCould also be PSK3 - [currently not supported]");
1032 PrintAndLog("\nCould also be NRZ - try 'data nrzrawdemod");
1035 PrintAndLog("\nNo Data Found!\n");
1040 static command_t CommandTable
[] =
1042 {"help", CmdHelp
, 1, "This help"},
1043 {"awid", CmdLFAWID
, 1, "{ AWID RFIDs... }"},
1044 {"cotag", CmdLFCOTAG
, 1, "{ COTAG RFIDs... }"},
1045 {"em", CmdLFEM4X
, 1, "{ EM4X RFIDs... }"},
1046 {"hid", CmdLFHID
, 1, "{ HID RFIDs... }"},
1047 {"hitag", CmdLFHitag
, 1, "{ Hitag tags and transponders... }"},
1048 {"io", CmdLFIO
, 1, "{ ioProx tags... }"},
1049 {"indala", CmdLFINDALA
, 1, "{ Indala tags... }"},
1050 {"presco", CmdLFPresco
, 1, "{ Presco RFIDs... }"},
1051 {"pcf7931", CmdLFPCF7931
, 1, "{ PCF7931 RFIDs... }"},
1052 {"pyramid", CmdLFPyramid
, 1, "{ Farpointe/Pyramid RFIDs... }"},
1053 {"t55xx", CmdLFT55XX
, 1, "{ T55xx RFIDs... }"},
1054 {"ti", CmdLFTI
, 1, "{ TI RFIDs... }"},
1055 {"viking", CmdLFViking
, 1, "{ Viking tags... }"},
1056 {"visa2000", CmdLFVisa2k
, 1, "{ Visa2000 RFIDs...}"},
1057 {"cmdread", CmdLFCommandRead
, 0, "<d period> <z period> <o period> <c command> ['H'] -- Modulate LF reader field to send command before read (all periods in microseconds) (option 'H' for 134)"},
1058 {"config", CmdLFSetConfig
, 0, "Set config for LF sampling, bit/sample, decimation, frequency"},
1059 {"flexdemod", CmdFlexdemod
, 1, "Demodulate samples for FlexPass"},
1060 {"read", CmdLFRead
, 0, "['s' silent] Read 125/134 kHz LF ID-only tag. Do 'lf read h' for help"},
1061 {"search", CmdLFfind
, 1, "[offline] ['u'] Read and Search for valid known tag (in offline mode it you can load first then search) - 'u' to search for unknown tags"},
1062 {"sim", CmdLFSim
, 0, "[GAP] -- Simulate LF tag from buffer with optional GAP (in microseconds)"},
1063 {"simask", CmdLFaskSim
, 0, "[clock] [invert <1|0>] [biphase/manchester/raw <'b'|'m'|'r'>] [msg separator 's'] [d <hexdata>] -- Simulate LF ASK tag from demodbuffer or input"},
1064 {"simfsk", CmdLFfskSim
, 0, "[c <clock>] [i] [H <fcHigh>] [L <fcLow>] [d <hexdata>] -- Simulate LF FSK tag from demodbuffer or input"},
1065 {"simpsk", CmdLFpskSim
, 0, "[1|2|3] [c <clock>] [i] [r <carrier>] [d <raw hex to sim>] -- Simulate LF PSK tag from demodbuffer or input"},
1066 {"simbidir", CmdLFSimBidir
, 0, "Simulate LF tag (with bidirectional data transmission between reader and tag)"},
1067 {"snoop", CmdLFSnoop
, 0, "['l'|'h'|<divisor>] [trigger threshold]-- Snoop LF (l:125khz, h:134khz)"},
1068 {"vchdemod", CmdVchDemod
, 1, "['clone'] -- Demodulate samples for VeriChip"},
1069 {NULL
, NULL
, 0, NULL
}
1072 int CmdLF(const char *Cmd
)
1074 CmdsParse(CommandTable
, Cmd
);
1078 int CmdHelp(const char *Cmd
)
1080 CmdsHelp(CommandTable
);