]>
Commit | Line | Data |
---|---|---|
a553f267 | 1 | //----------------------------------------------------------------------------- |
2 | // Copyright (C) 2010 iZsh <izsh at fail0verflow.com> | |
3 | // | |
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 | |
6 | // the license. | |
7 | //----------------------------------------------------------------------------- | |
8 | // Low frequency commands | |
9 | //----------------------------------------------------------------------------- | |
10 | ||
7fe9b0b7 | 11 | #include <stdio.h> |
590f8ff9 | 12 | #include <stdlib.h> |
7fe9b0b7 | 13 | #include <string.h> |
393c3ef9 | 14 | #include <limits.h> |
902cb3c0 | 15 | #include "proxmark3.h" |
7fe9b0b7 | 16 | #include "data.h" |
17 | #include "graph.h" | |
18 | #include "ui.h" | |
19 | #include "cmdparser.h" | |
040a7baa | 20 | #include "cmdmain.h" |
7fe9b0b7 | 21 | #include "cmddata.h" |
31d1caa5 | 22 | #include "util.h" |
7fe9b0b7 | 23 | #include "cmdlf.h" |
24 | #include "cmdlfhid.h" | |
db25599d | 25 | #include "cmdlfawid.h" |
7fe9b0b7 | 26 | #include "cmdlfti.h" |
27 | #include "cmdlfem4x.h" | |
db09cb3a | 28 | #include "cmdlfhitag.h" |
54a942b0 | 29 | #include "cmdlft55xx.h" |
30 | #include "cmdlfpcf7931.h" | |
a1f3bb12 | 31 | #include "cmdlfio.h" |
3bc66a96 | 32 | #include "lfdemod.h" |
0de8e387 | 33 | #include "cmdlfviking.h" |
7fe9b0b7 | 34 | static int CmdHelp(const char *Cmd); |
35 | ||
0de8e387 | 36 | |
37 | int usage_lf_cmdread() | |
38 | { | |
9276e859 | 39 | PrintAndLog("Usage: lf cmdread d <delay period> z <zero period> o <one period> c <cmdbytes> [H]"); |
0de8e387 | 40 | PrintAndLog("Options: "); |
41 | PrintAndLog(" h This help"); | |
9276e859 | 42 | PrintAndLog(" H Freqency High (134 KHz), default is 'Low (125KHz)'"); |
43 | PrintAndLog(" d <delay> delay OFF period, (dec)"); | |
44 | PrintAndLog(" z <zero> time period ZERO, (dec)"); | |
45 | PrintAndLog(" o <one> time period ONE, (dec)"); | |
46 | PrintAndLog(" c <cmd> Command bytes"); | |
47 | PrintAndLog(" ************* All periods in microseconds (ms)"); | |
0de8e387 | 48 | PrintAndLog("Examples:"); |
9276e859 | 49 | PrintAndLog(" lf cmdread d 80 z 100 o 200 c 11000"); |
50 | PrintAndLog(" lf cmdread d 80 z 100 o 100 c 11000 H"); | |
0de8e387 | 51 | return 0; |
52 | } | |
53 | ||
a739812e | 54 | /* send a LF command before reading */ |
7fe9b0b7 | 55 | int CmdLFCommandRead(const char *Cmd) |
56 | { | |
0de8e387 | 57 | static char dummy[3] = {0x20,0x00,0x00}; |
9276e859 | 58 | UsbCommand c = {CMD_MOD_THEN_ACQUIRE_RAW_ADC_SAMPLES_125K}; |
0de8e387 | 59 | bool errors = FALSE; |
9276e859 | 60 | |
61 | uint8_t cmdp = 0; | |
62 | int strLength = 0; | |
63 | ||
64 | while(param_getchar(Cmd, cmdp) != 0x00) { | |
0de8e387 | 65 | switch(param_getchar(Cmd, cmdp)) |
66 | { | |
67 | case 'h': | |
68 | return usage_lf_cmdread(); | |
69 | case 'H': | |
9276e859 | 70 | dummy[1]='h'; |
0de8e387 | 71 | cmdp++; |
72 | break; | |
9276e859 | 73 | case 'L': |
74 | cmdp++; | |
75 | break; | |
76 | case 'c': | |
77 | strLength = param_getstr(Cmd, cmdp+1, (char *)&c.d.asBytes); | |
78 | cmdp+=2; | |
79 | break; | |
80 | case 'd': | |
81 | c.arg[0] = param_get32ex(Cmd, cmdp+1, 0, 10); | |
82 | cmdp+=2; | |
83 | break; | |
84 | case 'z': | |
85 | c.arg[1] = param_get32ex(Cmd, cmdp+1, 0, 10); | |
86 | cmdp+=2; | |
87 | break; | |
88 | case 'o': | |
89 | c.arg[2] = param_get32ex(Cmd, cmdp+1, 0, 10); | |
0de8e387 | 90 | cmdp+=2; |
91 | break; | |
92 | default: | |
93 | PrintAndLog("Unknown parameter '%c'", param_getchar(Cmd, cmdp)); | |
94 | errors = 1; | |
95 | break; | |
96 | } | |
97 | if(errors) break; | |
98 | } | |
99 | // No args | |
9276e859 | 100 | if (cmdp == 0) errors = 1; |
7fe9b0b7 | 101 | |
0de8e387 | 102 | //Validations |
9276e859 | 103 | if (errors) return usage_lf_cmdread(); |
e98572a1 | 104 | |
9276e859 | 105 | // in case they specified 'H' |
106 | // added to the end.. | |
107 | strcpy((char *)&c.d.asBytes + strLength, dummy); | |
7fe9b0b7 | 108 | |
0de8e387 | 109 | clearCommandBuffer(); |
110 | SendCommand(&c); | |
111 | return 0; | |
7fe9b0b7 | 112 | } |
113 | ||
114 | int CmdFlexdemod(const char *Cmd) | |
115 | { | |
116 | int i; | |
117 | for (i = 0; i < GraphTraceLen; ++i) { | |
118 | if (GraphBuffer[i] < 0) { | |
119 | GraphBuffer[i] = -1; | |
120 | } else { | |
121 | GraphBuffer[i] = 1; | |
122 | } | |
123 | } | |
124 | ||
125 | #define LONG_WAIT 100 | |
126 | int start; | |
127 | for (start = 0; start < GraphTraceLen - LONG_WAIT; start++) { | |
128 | int first = GraphBuffer[start]; | |
129 | for (i = start; i < start + LONG_WAIT; i++) { | |
130 | if (GraphBuffer[i] != first) { | |
131 | break; | |
132 | } | |
133 | } | |
134 | if (i == (start + LONG_WAIT)) { | |
135 | break; | |
136 | } | |
137 | } | |
138 | if (start == GraphTraceLen - LONG_WAIT) { | |
139 | PrintAndLog("nothing to wait for"); | |
140 | return 0; | |
141 | } | |
142 | ||
143 | GraphBuffer[start] = 2; | |
144 | GraphBuffer[start+1] = -2; | |
3fe4ff4f | 145 | uint8_t bits[64] = {0x00}; |
7fe9b0b7 | 146 | |
3fe4ff4f | 147 | int bit, sum; |
7fe9b0b7 | 148 | i = start; |
149 | for (bit = 0; bit < 64; bit++) { | |
3fe4ff4f | 150 | sum = 0; |
151 | for (int j = 0; j < 16; j++) { | |
7fe9b0b7 | 152 | sum += GraphBuffer[i++]; |
153 | } | |
3fe4ff4f | 154 | |
155 | bits[bit] = (sum > 0) ? 1 : 0; | |
156 | ||
7fe9b0b7 | 157 | PrintAndLog("bit %d sum %d", bit, sum); |
158 | } | |
159 | ||
160 | for (bit = 0; bit < 64; bit++) { | |
161 | int j; | |
162 | int sum = 0; | |
163 | for (j = 0; j < 16; j++) { | |
164 | sum += GraphBuffer[i++]; | |
165 | } | |
166 | if (sum > 0 && bits[bit] != 1) { | |
167 | PrintAndLog("oops1 at %d", bit); | |
168 | } | |
169 | if (sum < 0 && bits[bit] != 0) { | |
170 | PrintAndLog("oops2 at %d", bit); | |
171 | } | |
172 | } | |
173 | ||
3fe4ff4f | 174 | // HACK writing back to graphbuffer. |
7fe9b0b7 | 175 | GraphTraceLen = 32*64; |
176 | i = 0; | |
177 | int phase = 0; | |
178 | for (bit = 0; bit < 64; bit++) { | |
3fe4ff4f | 179 | |
180 | phase = (bits[bit] == 0) ? 0 : 1; | |
181 | ||
7fe9b0b7 | 182 | int j; |
183 | for (j = 0; j < 32; j++) { | |
184 | GraphBuffer[i++] = phase; | |
185 | phase = !phase; | |
186 | } | |
187 | } | |
188 | ||
189 | RepaintGraphWindow(); | |
190 | return 0; | |
191 | } | |
a1f3bb12 | 192 | |
7fe9b0b7 | 193 | int CmdIndalaDemod(const char *Cmd) |
194 | { | |
195 | // Usage: recover 64bit UID by default, specify "224" as arg to recover a 224bit UID | |
196 | ||
197 | int state = -1; | |
198 | int count = 0; | |
199 | int i, j; | |
3fe4ff4f | 200 | |
7fe9b0b7 | 201 | // worst case with GraphTraceLen=64000 is < 4096 |
202 | // under normal conditions it's < 2048 | |
3fe4ff4f | 203 | |
7fe9b0b7 | 204 | uint8_t rawbits[4096]; |
205 | int rawbit = 0; | |
206 | int worst = 0, worstPos = 0; | |
d5a72d2f | 207 | // PrintAndLog("Expecting a bit less than %d raw bits", GraphTraceLen / 32); |
7fe9b0b7 | 208 | for (i = 0; i < GraphTraceLen-1; i += 2) { |
209 | count += 1; | |
210 | if ((GraphBuffer[i] > GraphBuffer[i + 1]) && (state != 1)) { | |
211 | if (state == 0) { | |
212 | for (j = 0; j < count - 8; j += 16) { | |
213 | rawbits[rawbit++] = 0; | |
214 | } | |
215 | if ((abs(count - j)) > worst) { | |
216 | worst = abs(count - j); | |
217 | worstPos = i; | |
218 | } | |
219 | } | |
220 | state = 1; | |
221 | count = 0; | |
222 | } else if ((GraphBuffer[i] < GraphBuffer[i + 1]) && (state != 0)) { | |
223 | if (state == 1) { | |
224 | for (j = 0; j < count - 8; j += 16) { | |
225 | rawbits[rawbit++] = 1; | |
226 | } | |
227 | if ((abs(count - j)) > worst) { | |
228 | worst = abs(count - j); | |
229 | worstPos = i; | |
230 | } | |
231 | } | |
232 | state = 0; | |
233 | count = 0; | |
234 | } | |
235 | } | |
3fe4ff4f | 236 | |
d5a72d2f | 237 | if (rawbit>0){ |
238 | PrintAndLog("Recovered %d raw bits, expected: %d", rawbit, GraphTraceLen/32); | |
239 | PrintAndLog("worst metric (0=best..7=worst): %d at pos %d", worst, worstPos); | |
3fe4ff4f | 240 | } else { |
241 | return 0; | |
242 | } | |
243 | ||
7fe9b0b7 | 244 | // Finding the start of a UID |
245 | int uidlen, long_wait; | |
246 | if (strcmp(Cmd, "224") == 0) { | |
247 | uidlen = 224; | |
248 | long_wait = 30; | |
249 | } else { | |
250 | uidlen = 64; | |
251 | long_wait = 29; | |
252 | } | |
3fe4ff4f | 253 | |
7fe9b0b7 | 254 | int start; |
255 | int first = 0; | |
256 | for (start = 0; start <= rawbit - uidlen; start++) { | |
257 | first = rawbits[start]; | |
258 | for (i = start; i < start + long_wait; i++) { | |
259 | if (rawbits[i] != first) { | |
260 | break; | |
261 | } | |
262 | } | |
263 | if (i == (start + long_wait)) { | |
264 | break; | |
265 | } | |
266 | } | |
3fe4ff4f | 267 | |
7fe9b0b7 | 268 | if (start == rawbit - uidlen + 1) { |
269 | PrintAndLog("nothing to wait for"); | |
270 | return 0; | |
271 | } | |
272 | ||
273 | // Inverting signal if needed | |
274 | if (first == 1) { | |
275 | for (i = start; i < rawbit; i++) { | |
276 | rawbits[i] = !rawbits[i]; | |
277 | } | |
278 | } | |
279 | ||
280 | // Dumping UID | |
3fe4ff4f | 281 | uint8_t bits[224] = {0x00}; |
282 | char showbits[225] = {0x00}; | |
7fe9b0b7 | 283 | int bit; |
284 | i = start; | |
285 | int times = 0; | |
3fe4ff4f | 286 | |
7fe9b0b7 | 287 | if (uidlen > rawbit) { |
288 | PrintAndLog("Warning: not enough raw bits to get a full UID"); | |
289 | for (bit = 0; bit < rawbit; bit++) { | |
290 | bits[bit] = rawbits[i++]; | |
291 | // As we cannot know the parity, let's use "." and "/" | |
292 | showbits[bit] = '.' + bits[bit]; | |
293 | } | |
294 | showbits[bit+1]='\0'; | |
295 | PrintAndLog("Partial UID=%s", showbits); | |
296 | return 0; | |
297 | } else { | |
298 | for (bit = 0; bit < uidlen; bit++) { | |
299 | bits[bit] = rawbits[i++]; | |
300 | showbits[bit] = '0' + bits[bit]; | |
301 | } | |
302 | times = 1; | |
303 | } | |
2414f978 | 304 | |
305 | //convert UID to HEX | |
306 | uint32_t uid1, uid2, uid3, uid4, uid5, uid6, uid7; | |
307 | int idx; | |
3fe4ff4f | 308 | uid1 = uid2 = 0; |
309 | ||
2414f978 | 310 | if (uidlen==64){ |
311 | for( idx=0; idx<64; idx++) { | |
312 | if (showbits[idx] == '0') { | |
313 | uid1=(uid1<<1)|(uid2>>31); | |
314 | uid2=(uid2<<1)|0; | |
315 | } else { | |
316 | uid1=(uid1<<1)|(uid2>>31); | |
317 | uid2=(uid2<<1)|1; | |
318 | } | |
319 | } | |
320 | PrintAndLog("UID=%s (%x%08x)", showbits, uid1, uid2); | |
321 | } | |
322 | else { | |
3fe4ff4f | 323 | uid3 = uid4 = uid5 = uid6 = uid7 = 0; |
324 | ||
2414f978 | 325 | for( idx=0; idx<224; idx++) { |
326 | uid1=(uid1<<1)|(uid2>>31); | |
327 | uid2=(uid2<<1)|(uid3>>31); | |
328 | uid3=(uid3<<1)|(uid4>>31); | |
329 | uid4=(uid4<<1)|(uid5>>31); | |
330 | uid5=(uid5<<1)|(uid6>>31); | |
331 | uid6=(uid6<<1)|(uid7>>31); | |
3fe4ff4f | 332 | |
333 | if (showbits[idx] == '0') | |
334 | uid7 = (uid7<<1) | 0; | |
335 | else | |
336 | uid7 = (uid7<<1) | 1; | |
2414f978 | 337 | } |
338 | PrintAndLog("UID=%s (%x%08x%08x%08x%08x%08x%08x)", showbits, uid1, uid2, uid3, uid4, uid5, uid6, uid7); | |
339 | } | |
7fe9b0b7 | 340 | |
0ff9a939 | 341 | // Checking UID against next occurrences |
7fe9b0b7 | 342 | int failed = 0; |
3fe4ff4f | 343 | for (; i + uidlen <= rawbit;) { |
344 | failed = 0; | |
7fe9b0b7 | 345 | for (bit = 0; bit < uidlen; bit++) { |
346 | if (bits[bit] != rawbits[i++]) { | |
347 | failed = 1; | |
348 | break; | |
349 | } | |
350 | } | |
351 | if (failed == 1) { | |
352 | break; | |
353 | } | |
354 | times += 1; | |
355 | } | |
3fe4ff4f | 356 | |
0ff9a939 | 357 | PrintAndLog("Occurrences: %d (expected %d)", times, (rawbit - start) / uidlen); |
7fe9b0b7 | 358 | |
359 | // Remodulating for tag cloning | |
3fe4ff4f | 360 | // HACK: 2015-01-04 this will have an impact on our new way of seening lf commands (demod) |
361 | // since this changes graphbuffer data. | |
7fe9b0b7 | 362 | GraphTraceLen = 32*uidlen; |
363 | i = 0; | |
364 | int phase = 0; | |
365 | for (bit = 0; bit < uidlen; bit++) { | |
366 | if (bits[bit] == 0) { | |
367 | phase = 0; | |
368 | } else { | |
369 | phase = 1; | |
370 | } | |
371 | int j; | |
372 | for (j = 0; j < 32; j++) { | |
373 | GraphBuffer[i++] = phase; | |
374 | phase = !phase; | |
375 | } | |
376 | } | |
377 | ||
378 | RepaintGraphWindow(); | |
d5a72d2f | 379 | return 1; |
7fe9b0b7 | 380 | } |
381 | ||
2414f978 | 382 | int CmdIndalaClone(const char *Cmd) |
383 | { | |
2414f978 | 384 | UsbCommand c; |
3fe4ff4f | 385 | unsigned int uid1, uid2, uid3, uid4, uid5, uid6, uid7; |
386 | ||
387 | uid1 = uid2 = uid3 = uid4 = uid5 = uid6 = uid7 = 0; | |
2414f978 | 388 | int n = 0, i = 0; |
389 | ||
390 | if (strchr(Cmd,'l') != 0) { | |
391 | while (sscanf(&Cmd[i++], "%1x", &n ) == 1) { | |
392 | uid1 = (uid1 << 4) | (uid2 >> 28); | |
393 | uid2 = (uid2 << 4) | (uid3 >> 28); | |
394 | uid3 = (uid3 << 4) | (uid4 >> 28); | |
395 | uid4 = (uid4 << 4) | (uid5 >> 28); | |
396 | uid5 = (uid5 << 4) | (uid6 >> 28); | |
397 | uid6 = (uid6 << 4) | (uid7 >> 28); | |
398 | uid7 = (uid7 << 4) | (n & 0xf); | |
399 | } | |
400 | PrintAndLog("Cloning 224bit tag with UID %x%08x%08x%08x%08x%08x%08x", uid1, uid2, uid3, uid4, uid5, uid6, uid7); | |
401 | c.cmd = CMD_INDALA_CLONE_TAG_L; | |
402 | c.d.asDwords[0] = uid1; | |
403 | c.d.asDwords[1] = uid2; | |
404 | c.d.asDwords[2] = uid3; | |
405 | c.d.asDwords[3] = uid4; | |
406 | c.d.asDwords[4] = uid5; | |
407 | c.d.asDwords[5] = uid6; | |
408 | c.d.asDwords[6] = uid7; | |
3fe4ff4f | 409 | } else { |
2414f978 | 410 | while (sscanf(&Cmd[i++], "%1x", &n ) == 1) { |
411 | uid1 = (uid1 << 4) | (uid2 >> 28); | |
412 | uid2 = (uid2 << 4) | (n & 0xf); | |
413 | } | |
414 | PrintAndLog("Cloning 64bit tag with UID %x%08x", uid1, uid2); | |
415 | c.cmd = CMD_INDALA_CLONE_TAG; | |
416 | c.arg[0] = uid1; | |
417 | c.arg[1] = uid2; | |
418 | } | |
419 | ||
420 | SendCommand(&c); | |
421 | return 0; | |
422 | } | |
423 | ||
31abe49f | 424 | int usage_lf_read() |
f6d9fb17 | 425 | { |
31abe49f | 426 | PrintAndLog("Usage: lf read"); |
f6d9fb17 MHS |
427 | PrintAndLog("Options: "); |
428 | PrintAndLog(" h This help"); | |
1fbf8956 | 429 | PrintAndLog(" s silent run no printout"); |
31abe49f MHS |
430 | PrintAndLog("This function takes no arguments. "); |
431 | PrintAndLog("Use 'lf config' to set parameters."); | |
432 | return 0; | |
433 | } | |
434 | int usage_lf_snoop() | |
435 | { | |
436 | PrintAndLog("Usage: lf snoop"); | |
437 | PrintAndLog("Options: "); | |
438 | PrintAndLog(" h This help"); | |
439 | PrintAndLog("This function takes no arguments. "); | |
440 | PrintAndLog("Use 'lf config' to set parameters."); | |
441 | return 0; | |
442 | } | |
443 | ||
444 | int usage_lf_config() | |
445 | { | |
446 | PrintAndLog("Usage: lf config [H|<divisor>] [b <bps>] [d <decim>] [a 0|1]"); | |
447 | PrintAndLog("Options: "); | |
448 | PrintAndLog(" h This help"); | |
449 | PrintAndLog(" L Low frequency (125 KHz)"); | |
450 | PrintAndLog(" H High frequency (134 KHz)"); | |
451 | PrintAndLog(" q <divisor> Manually set divisor. 88-> 134KHz, 95-> 125 Hz"); | |
452 | PrintAndLog(" b <bps> Sets resolution of bits per sample. Default (max): 8"); | |
453 | PrintAndLog(" d <decim> Sets decimation. A value of N saves only 1 in N samples. Default: 1"); | |
454 | PrintAndLog(" a [0|1] Averaging - if set, will average the stored sample value when decimating. Default: 1"); | |
6de14cec | 455 | PrintAndLog(" t <threshold> Sets trigger threshold. 0 means no threshold (range: 0-128)"); |
f6d9fb17 | 456 | PrintAndLog("Examples:"); |
31abe49f | 457 | PrintAndLog(" lf config b 8 L"); |
f6d9fb17 | 458 | PrintAndLog(" Samples at 125KHz, 8bps."); |
31abe49f | 459 | PrintAndLog(" lf config H b 4 d 3"); |
f6d9fb17 MHS |
460 | PrintAndLog(" Samples at 134KHz, averages three samples into one, stored with "); |
461 | PrintAndLog(" a resolution of 4 bits per sample."); | |
31abe49f MHS |
462 | PrintAndLog(" lf read"); |
463 | PrintAndLog(" Performs a read (active field)"); | |
464 | PrintAndLog(" lf snoop"); | |
465 | PrintAndLog(" Performs a snoop (no active field)"); | |
f6d9fb17 MHS |
466 | return 0; |
467 | } | |
31abe49f MHS |
468 | |
469 | int CmdLFSetConfig(const char *Cmd) | |
7fe9b0b7 | 470 | { |
31abe49f MHS |
471 | |
472 | uint8_t divisor = 0;//Frequency divisor | |
473 | uint8_t bps = 0; // Bits per sample | |
474 | uint8_t decimation = 0; //How many to keep | |
475 | bool averaging = 1; // Defaults to true | |
f6d9fb17 | 476 | bool errors = FALSE; |
31abe49f MHS |
477 | int trigger_threshold =-1;//Means no change |
478 | uint8_t unsigned_trigg = 0; | |
f6d9fb17 MHS |
479 | |
480 | uint8_t cmdp =0; | |
31abe49f | 481 | while(param_getchar(Cmd, cmdp) != 0x00) |
f6d9fb17 | 482 | { |
31abe49f MHS |
483 | switch(param_getchar(Cmd, cmdp)) |
484 | { | |
485 | case 'h': | |
486 | return usage_lf_config(); | |
487 | case 'H': | |
488 | divisor = 88; | |
489 | cmdp++; | |
490 | break; | |
491 | case 'L': | |
492 | divisor = 95; | |
493 | cmdp++; | |
494 | break; | |
495 | case 'q': | |
496 | errors |= param_getdec(Cmd,cmdp+1,&divisor); | |
497 | cmdp+=2; | |
498 | break; | |
499 | case 't': | |
500 | errors |= param_getdec(Cmd,cmdp+1,&unsigned_trigg); | |
501 | cmdp+=2; | |
502 | if(!errors) trigger_threshold = unsigned_trigg; | |
503 | break; | |
504 | case 'b': | |
505 | errors |= param_getdec(Cmd,cmdp+1,&bps); | |
506 | cmdp+=2; | |
507 | break; | |
508 | case 'd': | |
509 | errors |= param_getdec(Cmd,cmdp+1,&decimation); | |
510 | cmdp+=2; | |
511 | break; | |
512 | case 'a': | |
513 | averaging = param_getchar(Cmd,cmdp+1) == '1'; | |
514 | cmdp+=2; | |
515 | break; | |
516 | default: | |
517 | PrintAndLog("Unknown parameter '%c'", param_getchar(Cmd, cmdp)); | |
518 | errors = 1; | |
519 | break; | |
520 | } | |
521 | if(errors) break; | |
f6d9fb17 | 522 | } |
31abe49f | 523 | if(cmdp == 0) |
f6d9fb17 | 524 | { |
31abe49f | 525 | errors = 1;// No args |
f6d9fb17 | 526 | } |
31abe49f | 527 | |
f6d9fb17 MHS |
528 | //Validations |
529 | if(errors) | |
530 | { | |
31abe49f | 531 | return usage_lf_config(); |
f6d9fb17 | 532 | } |
f6d9fb17 | 533 | //Bps is limited to 8, so fits in lower half of arg1 |
31abe49f | 534 | if(bps >> 8) bps = 8; |
f6d9fb17 | 535 | |
31abe49f MHS |
536 | sample_config config = { |
537 | decimation,bps,averaging,divisor,trigger_threshold | |
538 | }; | |
539 | //Averaging is a flag on high-bit of arg[1] | |
540 | UsbCommand c = {CMD_SET_LF_SAMPLING_CONFIG}; | |
541 | memcpy(c.d.asBytes,&config,sizeof(sample_config)); | |
542 | SendCommand(&c); | |
543 | return 0; | |
544 | } | |
f6d9fb17 | 545 | |
7fe9b0b7 | 546 | int CmdLFRead(const char *Cmd) |
547 | { | |
31abe49f | 548 | |
1fbf8956 | 549 | uint8_t cmdp = 0; |
550 | bool arg1 = false; | |
551 | if (param_getchar(Cmd, cmdp) == 'h') | |
31abe49f MHS |
552 | { |
553 | return usage_lf_read(); | |
554 | } | |
1fbf8956 | 555 | if (param_getchar(Cmd, cmdp) == 's') arg1 = true; //suppress print |
f6d9fb17 | 556 | //And ship it to device |
1fbf8956 | 557 | UsbCommand c = {CMD_ACQUIRE_RAW_ADC_SAMPLES_125K, {arg1,0,0}}; |
31abe49f | 558 | SendCommand(&c); |
68008fb5 | 559 | //WaitForResponse(CMD_ACK,NULL); |
560 | if ( !WaitForResponseTimeout(CMD_ACK,NULL,2500) ) { | |
561 | PrintAndLog("command execution time out"); | |
562 | return 1; | |
563 | } | |
564 | ||
31abe49f MHS |
565 | return 0; |
566 | } | |
f6d9fb17 | 567 | |
31abe49f MHS |
568 | int CmdLFSnoop(const char *Cmd) |
569 | { | |
570 | uint8_t cmdp =0; | |
571 | if(param_getchar(Cmd, cmdp) == 'h') | |
572 | { | |
573 | return usage_lf_snoop(); | |
574 | } | |
575 | ||
576 | UsbCommand c = {CMD_LF_SNOOP_RAW_ADC_SAMPLES}; | |
f6d9fb17 MHS |
577 | SendCommand(&c); |
578 | WaitForResponse(CMD_ACK,NULL); | |
579 | return 0; | |
7fe9b0b7 | 580 | } |
581 | ||
582 | static void ChkBitstream(const char *str) | |
583 | { | |
584 | int i; | |
78f5b1a7 | 585 | |
7fe9b0b7 | 586 | /* convert to bitstream if necessary */ |
b915fda3 | 587 | for (i = 0; i < (int)(GraphTraceLen / 2); i++){ |
588 | if (GraphBuffer[i] > 1 || GraphBuffer[i] < 0) { | |
78f5b1a7 | 589 | CmdGetBitStream(""); |
7fe9b0b7 | 590 | break; |
591 | } | |
592 | } | |
593 | } | |
2767fc02 | 594 | //Attempt to simulate any wave in buffer (one bit per output sample) |
595 | // converts GraphBuffer to bitstream (based on zero crossings) if needed. | |
7fe9b0b7 | 596 | int CmdLFSim(const char *Cmd) |
597 | { | |
712ebfa6 | 598 | int i,j; |
7fe9b0b7 | 599 | static int gap; |
600 | ||
601 | sscanf(Cmd, "%i", &gap); | |
602 | ||
2767fc02 | 603 | // convert to bitstream if necessary |
78f5b1a7 | 604 | |
7fe9b0b7 | 605 | ChkBitstream(Cmd); |
606 | ||
2767fc02 | 607 | //can send only 512 bits at a time (1 byte sent per bit...) |
712ebfa6 | 608 | printf("Sending [%d bytes]", GraphTraceLen); |
609 | for (i = 0; i < GraphTraceLen; i += USB_CMD_DATA_SIZE) { | |
7fe9b0b7 | 610 | UsbCommand c={CMD_DOWNLOADED_SIM_SAMPLES_125K, {i, 0, 0}}; |
52ab55ab | 611 | |
712ebfa6 | 612 | for (j = 0; j < USB_CMD_DATA_SIZE; j++) { |
7fe9b0b7 | 613 | c.d.asBytes[j] = GraphBuffer[i+j]; |
614 | } | |
615 | SendCommand(&c); | |
902cb3c0 | 616 | WaitForResponse(CMD_ACK,NULL); |
712ebfa6 | 617 | printf("."); |
7fe9b0b7 | 618 | } |
619 | ||
712ebfa6 | 620 | printf("\n"); |
621 | PrintAndLog("Starting to simulate"); | |
7fe9b0b7 | 622 | UsbCommand c = {CMD_SIMULATE_TAG_125K, {GraphTraceLen, gap, 0}}; |
623 | SendCommand(&c); | |
624 | return 0; | |
625 | } | |
626 | ||
abd6112f | 627 | int usage_lf_simfsk(void) |
628 | { | |
629 | //print help | |
630 | PrintAndLog("Usage: lf simfsk [c <clock>] [i] [H <fcHigh>] [L <fcLow>] [d <hexdata>]"); | |
631 | PrintAndLog("Options: "); | |
632 | PrintAndLog(" h This help"); | |
633 | PrintAndLog(" c <clock> Manually set clock - can autodetect if using DemodBuffer"); | |
634 | PrintAndLog(" i invert data"); | |
635 | PrintAndLog(" H <fcHigh> Manually set the larger Field Clock"); | |
636 | PrintAndLog(" L <fcLow> Manually set the smaller Field Clock"); | |
637 | //PrintAndLog(" s TBD- -to enable a gap between playback repetitions - default: no gap"); | |
638 | PrintAndLog(" d <hexdata> Data to sim as hex - omit to sim from DemodBuffer"); | |
872e3d4d | 639 | PrintAndLog("\n NOTE: if you set one clock manually set them all manually"); |
abd6112f | 640 | return 0; |
641 | } | |
642 | ||
643 | int usage_lf_simask(void) | |
644 | { | |
645 | //print help | |
b41534d1 | 646 | PrintAndLog("Usage: lf simask [c <clock>] [i] [b|m|r] [s] [d <raw hex to sim>]"); |
abd6112f | 647 | PrintAndLog("Options: "); |
648 | PrintAndLog(" h This help"); | |
649 | PrintAndLog(" c <clock> Manually set clock - can autodetect if using DemodBuffer"); | |
650 | PrintAndLog(" i invert data"); | |
b41534d1 | 651 | PrintAndLog(" b sim ask/biphase"); |
652 | PrintAndLog(" m sim ask/manchester - Default"); | |
abd6112f | 653 | PrintAndLog(" r sim ask/raw"); |
654 | PrintAndLog(" s TBD- -to enable a gap between playback repetitions - default: no gap"); | |
655 | PrintAndLog(" d <hexdata> Data to sim as hex - omit to sim from DemodBuffer"); | |
656 | return 0; | |
657 | } | |
658 | ||
872e3d4d | 659 | int usage_lf_simpsk(void) |
660 | { | |
661 | //print help | |
662 | PrintAndLog("Usage: lf simpsk [1|2|3] [c <clock>] [i] [r <carrier>] [d <raw hex to sim>]"); | |
663 | PrintAndLog("Options: "); | |
664 | PrintAndLog(" h This help"); | |
665 | PrintAndLog(" c <clock> Manually set clock - can autodetect if using DemodBuffer"); | |
666 | PrintAndLog(" i invert data"); | |
667 | PrintAndLog(" 1 set PSK1 (default)"); | |
668 | PrintAndLog(" 2 set PSK2"); | |
669 | PrintAndLog(" 3 set PSK3"); | |
670 | PrintAndLog(" r <carrier> 2|4|8 are valid carriers: default = 2"); | |
671 | PrintAndLog(" d <hexdata> Data to sim as hex - omit to sim from DemodBuffer"); | |
672 | return 0; | |
673 | } | |
712ebfa6 | 674 | |
abd6112f | 675 | // by marshmellow - sim ask data given clock, fcHigh, fcLow, invert |
676 | // - allow pull data from DemodBuffer | |
677 | int CmdLFfskSim(const char *Cmd) | |
678 | { | |
2767fc02 | 679 | //might be able to autodetect FCs and clock from Graphbuffer if using demod buffer |
680 | // otherwise will need FChigh, FClow, Clock, and bitstream | |
abd6112f | 681 | uint8_t fcHigh=0, fcLow=0, clk=0; |
682 | uint8_t invert=0; | |
683 | bool errors = FALSE; | |
684 | char hexData[32] = {0x00}; // store entered hex data | |
685 | uint8_t data[255] = {0x00}; | |
686 | int dataLen = 0; | |
687 | uint8_t cmdp = 0; | |
688 | while(param_getchar(Cmd, cmdp) != 0x00) | |
689 | { | |
690 | switch(param_getchar(Cmd, cmdp)) | |
691 | { | |
692 | case 'h': | |
693 | return usage_lf_simfsk(); | |
694 | case 'i': | |
695 | invert = 1; | |
696 | cmdp++; | |
697 | break; | |
698 | case 'c': | |
699 | errors |= param_getdec(Cmd,cmdp+1,&clk); | |
700 | cmdp+=2; | |
701 | break; | |
702 | case 'H': | |
703 | errors |= param_getdec(Cmd,cmdp+1,&fcHigh); | |
704 | cmdp+=2; | |
705 | break; | |
706 | case 'L': | |
707 | errors |= param_getdec(Cmd,cmdp+1,&fcLow); | |
708 | cmdp+=2; | |
709 | break; | |
710 | //case 's': | |
711 | // separator=1; | |
712 | // cmdp++; | |
713 | // break; | |
714 | case 'd': | |
715 | dataLen = param_getstr(Cmd, cmdp+1, hexData); | |
716 | if (dataLen==0) { | |
717 | errors=TRUE; | |
718 | } else { | |
719 | dataLen = hextobinarray((char *)data, hexData); | |
872e3d4d | 720 | } |
721 | if (dataLen==0) errors=TRUE; | |
abd6112f | 722 | if (errors) PrintAndLog ("Error getting hex data"); |
723 | cmdp+=2; | |
724 | break; | |
725 | default: | |
726 | PrintAndLog("Unknown parameter '%c'", param_getchar(Cmd, cmdp)); | |
727 | errors = TRUE; | |
728 | break; | |
729 | } | |
730 | if(errors) break; | |
731 | } | |
732 | if(cmdp == 0 && DemodBufferLen == 0) | |
733 | { | |
734 | errors = TRUE;// No args | |
735 | } | |
736 | ||
737 | //Validations | |
738 | if(errors) | |
739 | { | |
740 | return usage_lf_simfsk(); | |
741 | } | |
872e3d4d | 742 | |
743 | if (dataLen == 0){ //using DemodBuffer | |
744 | if (clk==0 || fcHigh==0 || fcLow==0){ //manual settings must set them all | |
abd6112f | 745 | uint8_t ans = fskClocks(&fcHigh, &fcLow, &clk, 0); |
746 | if (ans==0){ | |
872e3d4d | 747 | if (!fcHigh) fcHigh=10; |
748 | if (!fcLow) fcLow=8; | |
749 | if (!clk) clk=50; | |
abd6112f | 750 | } |
751 | } | |
752 | } else { | |
753 | setDemodBuf(data, dataLen, 0); | |
754 | } | |
2767fc02 | 755 | |
756 | //default if not found | |
abd6112f | 757 | if (clk == 0) clk = 50; |
758 | if (fcHigh == 0) fcHigh = 10; | |
759 | if (fcLow == 0) fcLow = 8; | |
760 | ||
761 | uint16_t arg1, arg2; | |
762 | arg1 = fcHigh << 8 | fcLow; | |
763 | arg2 = invert << 8 | clk; | |
5658e82e | 764 | size_t size = DemodBufferLen; |
765 | if (size > USB_CMD_DATA_SIZE) { | |
766 | PrintAndLog("DemodBuffer too long for current implementation - length: %d - max: %d", size, USB_CMD_DATA_SIZE); | |
767 | size = USB_CMD_DATA_SIZE; | |
768 | } | |
769 | UsbCommand c = {CMD_FSK_SIM_TAG, {arg1, arg2, size}}; | |
770 | ||
771 | memcpy(c.d.asBytes, DemodBuffer, size); | |
abd6112f | 772 | SendCommand(&c); |
773 | return 0; | |
774 | } | |
775 | ||
776 | // by marshmellow - sim ask data given clock, invert, manchester or raw, separator | |
777 | // - allow pull data from DemodBuffer | |
778 | int CmdLFaskSim(const char *Cmd) | |
779 | { | |
abd6112f | 780 | //autodetect clock from Graphbuffer if using demod buffer |
2767fc02 | 781 | // needs clock, invert, manchester/raw as m or r, separator as s, and bitstream |
b41534d1 | 782 | uint8_t encoding = 1, separator = 0; |
abd6112f | 783 | uint8_t clk=0, invert=0; |
784 | bool errors = FALSE; | |
785 | char hexData[32] = {0x00}; | |
786 | uint8_t data[255]= {0x00}; // store entered hex data | |
787 | int dataLen = 0; | |
788 | uint8_t cmdp = 0; | |
789 | while(param_getchar(Cmd, cmdp) != 0x00) | |
790 | { | |
791 | switch(param_getchar(Cmd, cmdp)) | |
792 | { | |
793 | case 'h': | |
794 | return usage_lf_simask(); | |
795 | case 'i': | |
796 | invert = 1; | |
797 | cmdp++; | |
798 | break; | |
799 | case 'c': | |
800 | errors |= param_getdec(Cmd,cmdp+1,&clk); | |
801 | cmdp+=2; | |
802 | break; | |
b41534d1 | 803 | case 'b': |
804 | encoding=2; //biphase | |
805 | cmdp++; | |
806 | break; | |
abd6112f | 807 | case 'm': |
b41534d1 | 808 | encoding=1; |
abd6112f | 809 | cmdp++; |
810 | break; | |
811 | case 'r': | |
b41534d1 | 812 | encoding=0; |
abd6112f | 813 | cmdp++; |
814 | break; | |
815 | case 's': | |
816 | separator=1; | |
817 | cmdp++; | |
818 | break; | |
819 | case 'd': | |
820 | dataLen = param_getstr(Cmd, cmdp+1, hexData); | |
821 | if (dataLen==0) { | |
822 | errors=TRUE; | |
823 | } else { | |
824 | dataLen = hextobinarray((char *)data, hexData); | |
825 | } | |
826 | if (dataLen==0) errors=TRUE; | |
827 | if (errors) PrintAndLog ("Error getting hex data, datalen: %d",dataLen); | |
828 | cmdp+=2; | |
829 | break; | |
830 | default: | |
831 | PrintAndLog("Unknown parameter '%c'", param_getchar(Cmd, cmdp)); | |
832 | errors = TRUE; | |
833 | break; | |
834 | } | |
835 | if(errors) break; | |
836 | } | |
837 | if(cmdp == 0 && DemodBufferLen == 0) | |
838 | { | |
839 | errors = TRUE;// No args | |
840 | } | |
841 | ||
842 | //Validations | |
843 | if(errors) | |
844 | { | |
845 | return usage_lf_simask(); | |
846 | } | |
847 | if (dataLen == 0){ //using DemodBuffer | |
848 | if (clk == 0) clk = GetAskClock("0", false, false); | |
849 | } else { | |
850 | setDemodBuf(data, dataLen, 0); | |
851 | } | |
852 | if (clk == 0) clk = 64; | |
b41534d1 | 853 | if (encoding == 0) clk = clk/2; //askraw needs to double the clock speed |
abd6112f | 854 | uint16_t arg1, arg2; |
8d960002 | 855 | size_t size=DemodBufferLen; |
b41534d1 | 856 | arg1 = clk << 8 | encoding; |
abd6112f | 857 | arg2 = invert << 8 | separator; |
8d960002 | 858 | if (size > USB_CMD_DATA_SIZE) { |
859 | PrintAndLog("DemodBuffer too long for current implementation - length: %d - max: %d", size, USB_CMD_DATA_SIZE); | |
860 | size = USB_CMD_DATA_SIZE; | |
abd6112f | 861 | } |
8d960002 | 862 | UsbCommand c = {CMD_ASK_SIM_TAG, {arg1, arg2, size}}; |
8d960002 | 863 | PrintAndLog("preparing to sim ask data: %d bits", size); |
864 | memcpy(c.d.asBytes, DemodBuffer, size); | |
abd6112f | 865 | SendCommand(&c); |
866 | return 0; | |
867 | } | |
868 | ||
872e3d4d | 869 | // by marshmellow - sim psk data given carrier, clock, invert |
870 | // - allow pull data from DemodBuffer or parameters | |
871 | int CmdLFpskSim(const char *Cmd) | |
872 | { | |
873 | //might be able to autodetect FC and clock from Graphbuffer if using demod buffer | |
874 | //will need carrier, Clock, and bitstream | |
875 | uint8_t carrier=0, clk=0; | |
876 | uint8_t invert=0; | |
877 | bool errors = FALSE; | |
878 | char hexData[32] = {0x00}; // store entered hex data | |
879 | uint8_t data[255] = {0x00}; | |
880 | int dataLen = 0; | |
881 | uint8_t cmdp = 0; | |
882 | uint8_t pskType = 1; | |
883 | while(param_getchar(Cmd, cmdp) != 0x00) | |
884 | { | |
885 | switch(param_getchar(Cmd, cmdp)) | |
886 | { | |
887 | case 'h': | |
888 | return usage_lf_simpsk(); | |
889 | case 'i': | |
890 | invert = 1; | |
891 | cmdp++; | |
892 | break; | |
893 | case 'c': | |
894 | errors |= param_getdec(Cmd,cmdp+1,&clk); | |
895 | cmdp+=2; | |
896 | break; | |
897 | case 'r': | |
898 | errors |= param_getdec(Cmd,cmdp+1,&carrier); | |
899 | cmdp+=2; | |
900 | break; | |
901 | case '1': | |
902 | pskType=1; | |
903 | cmdp++; | |
904 | break; | |
905 | case '2': | |
906 | pskType=2; | |
907 | cmdp++; | |
908 | break; | |
909 | case '3': | |
910 | pskType=3; | |
911 | cmdp++; | |
912 | break; | |
913 | case 'd': | |
914 | dataLen = param_getstr(Cmd, cmdp+1, hexData); | |
915 | if (dataLen==0) { | |
916 | errors=TRUE; | |
917 | } else { | |
918 | dataLen = hextobinarray((char *)data, hexData); | |
919 | } | |
920 | if (dataLen==0) errors=TRUE; | |
921 | if (errors) PrintAndLog ("Error getting hex data"); | |
922 | cmdp+=2; | |
923 | break; | |
924 | default: | |
925 | PrintAndLog("Unknown parameter '%c'", param_getchar(Cmd, cmdp)); | |
926 | errors = TRUE; | |
927 | break; | |
928 | } | |
929 | if (errors) break; | |
930 | } | |
931 | if (cmdp == 0 && DemodBufferLen == 0) | |
932 | { | |
933 | errors = TRUE;// No args | |
934 | } | |
935 | ||
936 | //Validations | |
937 | if (errors) | |
938 | { | |
939 | return usage_lf_simpsk(); | |
940 | } | |
941 | if (dataLen == 0){ //using DemodBuffer | |
8d960002 | 942 | PrintAndLog("Getting Clocks"); |
943 | if (clk==0) clk = GetPskClock("", FALSE, FALSE); | |
944 | PrintAndLog("clk: %d",clk); | |
945 | if (!carrier) carrier = GetPskCarrier("", FALSE, FALSE); | |
946 | PrintAndLog("carrier: %d", carrier); | |
872e3d4d | 947 | } else { |
948 | setDemodBuf(data, dataLen, 0); | |
949 | } | |
8d960002 | 950 | |
872e3d4d | 951 | if (clk <= 0) clk = 32; |
952 | if (carrier == 0) carrier = 2; | |
3bc66a96 | 953 | if (pskType != 1){ |
954 | if (pskType == 2){ | |
955 | //need to convert psk2 to psk1 data before sim | |
956 | psk2TOpsk1(DemodBuffer, DemodBufferLen); | |
957 | } else { | |
958 | PrintAndLog("Sorry, PSK3 not yet available"); | |
959 | } | |
960 | } | |
872e3d4d | 961 | uint16_t arg1, arg2; |
962 | arg1 = clk << 8 | carrier; | |
963 | arg2 = invert; | |
5658e82e | 964 | size_t size=DemodBufferLen; |
965 | if (size > USB_CMD_DATA_SIZE) { | |
966 | PrintAndLog("DemodBuffer too long for current implementation - length: %d - max: %d", size, USB_CMD_DATA_SIZE); | |
967 | size=USB_CMD_DATA_SIZE; | |
872e3d4d | 968 | } |
5658e82e | 969 | UsbCommand c = {CMD_PSK_SIM_TAG, {arg1, arg2, size}}; |
970 | PrintAndLog("DEBUG: Sending DemodBuffer Length: %d", size); | |
971 | memcpy(c.d.asBytes, DemodBuffer, size); | |
872e3d4d | 972 | SendCommand(&c); |
78f5b1a7 | 973 | |
872e3d4d | 974 | return 0; |
975 | } | |
abd6112f | 976 | |
7fe9b0b7 | 977 | int CmdLFSimBidir(const char *Cmd) |
978 | { | |
3fe4ff4f | 979 | // Set ADC to twice the carrier for a slight supersampling |
980 | // HACK: not implemented in ARMSRC. | |
981 | PrintAndLog("Not implemented yet."); | |
7fe9b0b7 | 982 | UsbCommand c = {CMD_LF_SIMULATE_BIDIR, {47, 384, 0}}; |
983 | SendCommand(&c); | |
984 | return 0; | |
985 | } | |
986 | ||
7fe9b0b7 | 987 | int CmdVchDemod(const char *Cmd) |
988 | { | |
989 | // Is this the entire sync pattern, or does this also include some | |
990 | // data bits that happen to be the same everywhere? That would be | |
991 | // lovely to know. | |
992 | static const int SyncPattern[] = { | |
993 | 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, | |
994 | 1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, | |
995 | 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, | |
996 | 1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, | |
997 | 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, | |
998 | 1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, | |
999 | 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, | |
1000 | 1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, | |
1001 | 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, | |
1002 | 1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, | |
1003 | }; | |
1004 | ||
1005 | // So first, we correlate for the sync pattern, and mark that. | |
1006 | int bestCorrel = 0, bestPos = 0; | |
1007 | int i; | |
1008 | // It does us no good to find the sync pattern, with fewer than | |
1009 | // 2048 samples after it... | |
1010 | for (i = 0; i < (GraphTraceLen-2048); i++) { | |
1011 | int sum = 0; | |
1012 | int j; | |
1013 | for (j = 0; j < arraylen(SyncPattern); j++) { | |
1014 | sum += GraphBuffer[i+j]*SyncPattern[j]; | |
1015 | } | |
1016 | if (sum > bestCorrel) { | |
1017 | bestCorrel = sum; | |
1018 | bestPos = i; | |
1019 | } | |
1020 | } | |
1021 | PrintAndLog("best sync at %d [metric %d]", bestPos, bestCorrel); | |
1022 | ||
1023 | char bits[257]; | |
1024 | bits[256] = '\0'; | |
1025 | ||
1026 | int worst = INT_MAX; | |
fddf220a | 1027 | int worstPos = 0; |
7fe9b0b7 | 1028 | |
1029 | for (i = 0; i < 2048; i += 8) { | |
1030 | int sum = 0; | |
1031 | int j; | |
1032 | for (j = 0; j < 8; j++) { | |
1033 | sum += GraphBuffer[bestPos+i+j]; | |
1034 | } | |
1035 | if (sum < 0) { | |
1036 | bits[i/8] = '.'; | |
1037 | } else { | |
1038 | bits[i/8] = '1'; | |
1039 | } | |
1040 | if(abs(sum) < worst) { | |
1041 | worst = abs(sum); | |
1042 | worstPos = i; | |
1043 | } | |
1044 | } | |
1045 | PrintAndLog("bits:"); | |
1046 | PrintAndLog("%s", bits); | |
1047 | PrintAndLog("worst metric: %d at pos %d", worst, worstPos); | |
1048 | ||
1049 | if (strcmp(Cmd, "clone")==0) { | |
1050 | GraphTraceLen = 0; | |
1051 | char *s; | |
1052 | for(s = bits; *s; s++) { | |
1053 | int j; | |
1054 | for(j = 0; j < 16; j++) { | |
1055 | GraphBuffer[GraphTraceLen++] = (*s == '1') ? 1 : 0; | |
1056 | } | |
1057 | } | |
1058 | RepaintGraphWindow(); | |
1059 | } | |
1060 | return 0; | |
1061 | } | |
1062 | ||
d5a72d2f | 1063 | //by marshmellow |
1064 | int CmdLFfind(const char *Cmd) | |
1065 | { | |
1066 | int ans=0; | |
b4fb11ba | 1067 | char cmdp = param_getchar(Cmd, 0); |
1068 | char testRaw = param_getchar(Cmd, 1); | |
251d07db | 1069 | if (strlen(Cmd) > 3 || cmdp == 'h' || cmdp == 'H') { |
b4fb11ba | 1070 | PrintAndLog("Usage: lf search <0|1> [u]"); |
1071 | PrintAndLog(" <use data from Graphbuffer> , if not set, try reading data from tag."); | |
e770c648 | 1072 | PrintAndLog(" [Search for Unknown tags] , if not set, reads only known tags."); |
b4fb11ba | 1073 | PrintAndLog(""); |
1074 | PrintAndLog(" sample: lf search = try reading data from tag & search for known tags"); | |
1075 | PrintAndLog(" : lf search 1 = use data from GraphBuffer & search for known tags"); | |
e770c648 | 1076 | PrintAndLog(" : lf search u = try reading data from tag & search for known and unknown tags"); |
1077 | PrintAndLog(" : lf search 1 u = use data from GraphBuffer & search for known and unknown tags"); | |
6de14cec | 1078 | |
b4fb11ba | 1079 | return 0; |
1080 | } | |
b915fda3 | 1081 | |
b4fb11ba | 1082 | if (!offline && (cmdp != '1')){ |
2767fc02 | 1083 | CmdLFRead("s"); |
1084 | getSamples("30000",false); | |
b4fb11ba | 1085 | } else if (GraphTraceLen < 1000) { |
1086 | PrintAndLog("Data in Graphbuffer was too small."); | |
1087 | return 0; | |
d5a72d2f | 1088 | } |
e770c648 | 1089 | if (cmdp == 'u' || cmdp == 'U') testRaw = 'u'; |
13d77ef9 | 1090 | |
84871873 | 1091 | PrintAndLog("NOTE: some demods output possible binary\n if it finds something that looks like a tag"); |
e770c648 | 1092 | PrintAndLog("False Positives ARE possible\n"); |
ec75f5c1 | 1093 | PrintAndLog("\nChecking for known tags:\n"); |
13d77ef9 | 1094 | |
d5a72d2f | 1095 | ans=CmdFSKdemodIO(""); |
84871873 | 1096 | if (ans>0) { |
ec75f5c1 | 1097 | PrintAndLog("\nValid IO Prox ID Found!"); |
84871873 | 1098 | return 1; |
1099 | } | |
13d77ef9 | 1100 | |
ec75f5c1 | 1101 | ans=CmdFSKdemodPyramid(""); |
1e090a61 | 1102 | if (ans>0) { |
ec75f5c1 | 1103 | PrintAndLog("\nValid Pyramid ID Found!"); |
1e090a61 | 1104 | return 1; |
1105 | } | |
13d77ef9 | 1106 | |
ec75f5c1 | 1107 | ans=CmdFSKdemodParadox(""); |
1e090a61 | 1108 | if (ans>0) { |
ec75f5c1 | 1109 | PrintAndLog("\nValid Paradox ID Found!"); |
1110 | return 1; | |
1111 | } | |
13d77ef9 | 1112 | |
ec75f5c1 | 1113 | ans=CmdFSKdemodAWID(""); |
1114 | if (ans>0) { | |
1115 | PrintAndLog("\nValid AWID ID Found!"); | |
1e090a61 | 1116 | return 1; |
1117 | } | |
13d77ef9 | 1118 | |
84871873 | 1119 | ans=CmdFSKdemodHID(""); |
1120 | if (ans>0) { | |
ec75f5c1 | 1121 | PrintAndLog("\nValid HID Prox ID Found!"); |
84871873 | 1122 | return 1; |
1123 | } | |
13d77ef9 | 1124 | |
d5a72d2f | 1125 | //add psk and indala |
ec75f5c1 | 1126 | ans=CmdIndalaDecode(""); |
84871873 | 1127 | if (ans>0) { |
ec75f5c1 | 1128 | PrintAndLog("\nValid Indala ID Found!"); |
84871873 | 1129 | return 1; |
1130 | } | |
13d77ef9 | 1131 | |
e770c648 | 1132 | ans=CmdAskEM410xDemod(""); |
84871873 | 1133 | if (ans>0) { |
ec75f5c1 | 1134 | PrintAndLog("\nValid EM410x ID Found!"); |
84871873 | 1135 | return 1; |
1136 | } | |
13d77ef9 | 1137 | |
8d960002 | 1138 | ans=CmdG_Prox_II_Demod(""); |
1139 | if (ans>0) { | |
0de8e387 | 1140 | PrintAndLog("\nValid Guardall G-Prox II ID Found!"); |
8d960002 | 1141 | return 1; |
1142 | } | |
13d77ef9 | 1143 | |
ad6219fc | 1144 | ans=CmdFDXBdemodBI(""); |
1145 | if (ans>0) { | |
1146 | PrintAndLog("\nValid FDX-B ID Found!"); | |
1147 | return 1; | |
1148 | } | |
1149 | ||
23f0a7d8 | 1150 | ans=EM4x50Read("", false); |
1151 | if (ans>0) { | |
1152 | PrintAndLog("\nValid EM4x50 ID Found!"); | |
1153 | return 1; | |
1154 | } | |
411105e0 | 1155 | |
1156 | ans=CmdPSKNexWatch(""); | |
1157 | if (ans>0) { | |
1158 | PrintAndLog("\nValid NexWatch ID Found!"); | |
1159 | return 1; | |
1160 | } | |
1161 | ||
e770c648 | 1162 | PrintAndLog("\nNo Known Tags Found!\n"); |
1163 | if (testRaw=='u' || testRaw=='U'){ | |
1164 | //test unknown tag formats (raw mode) | |
1165 | PrintAndLog("\nChecking for Unknown tags:\n"); | |
73d04bb4 | 1166 | ans=AutoCorrelate(4000, FALSE, FALSE); |
251d07db | 1167 | |
1168 | if (ans > 0) { | |
1169 | ||
1170 | PrintAndLog("Possible Auto Correlation of %d repeating samples",ans); | |
1171 | ||
1172 | if ( ans % 8 == 0) { | |
1173 | int bytes = (ans / 8); | |
1174 | PrintAndLog("Possible %d bytes", bytes); | |
1175 | int blocks = 0; | |
1176 | if ( bytes % 2 == 0) { | |
1177 | blocks = (bytes / 2); | |
1178 | PrintAndLog("Possible 2 blocks, width %d", blocks); | |
1179 | } | |
1180 | if ( bytes % 4 == 0) { | |
1181 | blocks = (bytes / 4); | |
1182 | PrintAndLog("Possible 4 blocks, width %d", blocks); | |
1183 | } | |
1184 | if ( bytes % 8 == 0) { | |
1185 | blocks = (bytes / 8); | |
1186 | PrintAndLog("Possible 8 blocks, width %d", blocks); | |
1187 | } | |
1188 | if ( bytes % 16 == 0) { | |
1189 | blocks = (bytes / 16); | |
1190 | PrintAndLog("Possible 16 blocks, width %d", blocks); | |
1191 | } | |
1192 | } | |
1193 | } | |
fb2d2488 | 1194 | ans=GetFskClock("",FALSE,FALSE); |
f3bf15e4 | 1195 | if (ans != 0){ //fsk |
fb2d2488 | 1196 | ans=FSKrawDemod("",TRUE); |
e770c648 | 1197 | if (ans>0) { |
1198 | PrintAndLog("\nUnknown FSK Modulated Tag Found!"); | |
1199 | return 1; | |
b4fb11ba | 1200 | } |
e770c648 | 1201 | } |
fb2d2488 | 1202 | ans=ASKDemod("0 0 0",TRUE,FALSE,1); |
e770c648 | 1203 | if (ans>0) { |
1204 | PrintAndLog("\nUnknown ASK Modulated and Manchester encoded Tag Found!"); | |
b41534d1 | 1205 | PrintAndLog("\nif it does not look right it could instead be ASK/Biphase - try 'data rawdemod ab'"); |
e770c648 | 1206 | return 1; |
b4fb11ba | 1207 | } |
e770c648 | 1208 | ans=CmdPSK1rawDemod(""); |
1209 | if (ans>0) { | |
b41534d1 | 1210 | PrintAndLog("Possible unknown PSK1 Modulated Tag Found above!\n\nCould also be PSK2 - try 'data rawdemod p2'"); |
e770c648 | 1211 | PrintAndLog("\nCould also be PSK3 - [currently not supported]"); |
1212 | PrintAndLog("\nCould also be NRZ - try 'data nrzrawdemod"); | |
1213 | return 1; | |
b4fb11ba | 1214 | } |
e770c648 | 1215 | PrintAndLog("\nNo Data Found!\n"); |
1216 | } | |
d5a72d2f | 1217 | return 0; |
1218 | } | |
1219 | ||
7fe9b0b7 | 1220 | static command_t CommandTable[] = |
1221 | { | |
1222 | {"help", CmdHelp, 1, "This help"}, | |
9276e859 | 1223 | {"awid", CmdLFAWID, 1, "{ AWID RFIDs... }"}, |
37239a7c | 1224 | {"em4x", CmdLFEM4X, 1, "{ EM4X RFIDs... }"}, |
31b3689f | 1225 | {"hid", CmdLFHID, 1, "{ HID RFIDs... }"}, |
1226 | {"hitag", CmdLFHitag, 1, "{ HITAG RFIDs... }"}, | |
1227 | {"io", CmdLFIO, 1, "{ IOPROX RFIDs... }"}, | |
1228 | {"pcf7931", CmdLFPCF7931, 1, "{ PCF7931 RFIDs... }"}, | |
1229 | {"ti", CmdLFTI, 1, "{ TI RFIDs... }"}, | |
1230 | {"t55xx", CmdLFT55XX, 1, "{ T55X7 RFIDs... }"}, | |
e98572a1 | 1231 | {"viking", CmdLFViking, 1, "{ Viking RFIDs... }"}, |
31abe49f | 1232 | {"config", CmdLFSetConfig, 0, "Set config for LF sampling, bit/sample, decimation, frequency"}, |
31b3689f | 1233 | |
c309eca9 | 1234 | {"cmdread", CmdLFCommandRead, 0, "<off period> <'0' period> <'1' period> <command> ['h' 134] \n\t\t-- Modulate LF reader field to send command before read (all periods in microseconds)"}, |
7fe9b0b7 | 1235 | {"flexdemod", CmdFlexdemod, 1, "Demodulate samples for FlexPass"}, |
7fe9b0b7 | 1236 | {"indalademod", CmdIndalaDemod, 1, "['224'] -- Demodulate samples for Indala 64 bit UID (option '224' for 224 bit)"}, |
083ca3de | 1237 | {"indalaclone", CmdIndalaClone, 0, "<UID> ['l']-- Clone Indala to T55x7 (tag must be in antenna)(UID in HEX)(option 'l' for 224 UID"}, |
1fbf8956 | 1238 | {"read", CmdLFRead, 0, "['s' silent] Read 125/134 kHz LF ID-only tag. Do 'lf read h' for help"}, |
e98572a1 | 1239 | {"search", CmdLFfind, 1, "[offline] ['u'] Read and Search for valid known tag (in offline mode it you can load first then search) \n\t\t-- 'u' to search for unknown tags"}, |
7fe9b0b7 | 1240 | {"sim", CmdLFSim, 0, "[GAP] -- Simulate LF tag from buffer with optional GAP (in microseconds)"}, |
e98572a1 | 1241 | {"simask", CmdLFaskSim, 0, "[clock] [invert <1|0>] [biphase/manchester/raw <'b'|'m'|'r'>] [msg separator 's'] [d <hexdata>] \n\t\t-- Simulate LF ASK tag from demodbuffer or input"}, |
c309eca9 | 1242 | {"simfsk", CmdLFfskSim, 0, "[c <clock>] [i] [H <fcHigh>] [L <fcLow>] [d <hexdata>] \n\t\t-- Simulate LF FSK tag from demodbuffer or input"}, |
1243 | {"simpsk", CmdLFpskSim, 0, "[1|2|3] [c <clock>] [i] [r <carrier>] [d <raw hex to sim>] \n\t\t-- Simulate LF PSK tag from demodbuffer or input"}, | |
7fe9b0b7 | 1244 | {"simbidir", CmdLFSimBidir, 0, "Simulate LF tag (with bidirectional data transmission between reader and tag)"}, |
c309eca9 | 1245 | {"snoop", CmdLFSnoop, 0, "['l'|'h'|<divisor>] [trigger threshold] -- Snoop LF (l:125khz, h:134khz)"}, |
7fe9b0b7 | 1246 | {"vchdemod", CmdVchDemod, 1, "['clone'] -- Demodulate samples for VeriChip"}, |
1247 | {NULL, NULL, 0, NULL} | |
1248 | }; | |
1249 | ||
1250 | int CmdLF(const char *Cmd) | |
1251 | { | |
1252 | CmdsParse(CommandTable, Cmd); | |
1253 | return 0; | |
1254 | } | |
1255 | ||
1256 | int CmdHelp(const char *Cmd) | |
1257 | { | |
1258 | CmdsHelp(CommandTable); | |
1259 | return 0; | |
1260 | } |