]> cvs.zerfleddert.de Git - proxmark3-svn/blob - client/cmdhfmf.c
Corrected some errors from r487, WHICH I FORGOT TO COMMENT.
[proxmark3-svn] / client / cmdhfmf.c
1 //-----------------------------------------------------------------------------
2 // Copyright (C) 2011 Merlok
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 // High frequency MIFARE commands
9 //-----------------------------------------------------------------------------
10
11 #include "cmdhfmf.h"
12 #include "proxmark3.h"
13
14 static int CmdHelp(const char *Cmd);
15
16 int CmdHF14AMifare(const char *Cmd)
17 {
18 uint32_t uid = 0;
19 uint32_t nt = 0;
20 uint64_t par_list = 0, ks_list = 0, r_key = 0;
21 uint8_t isOK = 0;
22 uint8_t keyBlock[6] = {0,0,0,0,0,0};
23
24 if (param_getchar(Cmd, 0) && param_gethex(Cmd, 0, keyBlock, 8)) {
25 PrintAndLog("Nt must include 8 HEX symbols");
26 return 1;
27 }
28
29 UsbCommand c = {CMD_READER_MIFARE, {(uint32_t)bytes_to_num(keyBlock, 4), 0, 0}};
30 SendCommand(&c);
31
32 //flush queue
33 while (ukbhit()) getchar();
34
35 // message
36 printf("-------------------------------------------------------------------------\n");
37 printf("Executing command. It may take up to 30 min.\n");
38 printf("Press the key on proxmark3 device to abort proxmark3.\n");
39 printf("Press the key on the proxmark3 device to abort both proxmark3 and client.\n");
40 printf("-------------------------------------------------------------------------\n");
41
42 // wait cycle
43 while (true) {
44 printf(".");
45 if (ukbhit()) {
46 getchar();
47 printf("\naborted via keyboard!\n");
48 break;
49 }
50
51 UsbCommand * resp = WaitForResponseTimeout(CMD_ACK, 2000);
52 if (resp != NULL) {
53 isOK = resp->arg[0] & 0xff;
54
55 uid = (uint32_t)bytes_to_num(resp->d.asBytes + 0, 4);
56 nt = (uint32_t)bytes_to_num(resp->d.asBytes + 4, 4);
57 par_list = bytes_to_num(resp->d.asBytes + 8, 8);
58 ks_list = bytes_to_num(resp->d.asBytes + 16, 8);
59
60 printf("\n\n");
61 PrintAndLog("isOk:%02x", isOK);
62 if (!isOK) PrintAndLog("Proxmark can't get statistic info. Execution aborted.\n");
63 break;
64 }
65 }
66 printf("\n");
67
68 // error
69 if (isOK != 1) return 1;
70
71 // execute original function from util nonce2key
72 if (nonce2key(uid, nt, par_list, ks_list, &r_key)) return 2;
73 printf("------------------------------------------------------------------\n");
74 PrintAndLog("Key found:%012llx \n", r_key);
75
76 num_to_bytes(r_key, 6, keyBlock);
77 isOK = mfCheckKeys(0, 0, 1, keyBlock, &r_key);
78 if (!isOK)
79 PrintAndLog("Found valid key:%012llx", r_key);
80 else
81 PrintAndLog("Found invalid key. ( Nt=%08x", nt);
82
83
84 return 0;
85 }
86
87 int CmdHF14AMfWrBl(const char *Cmd)
88 {
89 uint8_t blockNo = 0;
90 uint8_t keyType = 0;
91 uint8_t key[6] = {0, 0, 0, 0, 0, 0};
92 uint8_t bldata[16] = {0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0};
93
94 char cmdp = 0x00;
95
96 if (strlen(Cmd)<3) {
97 PrintAndLog("Usage: hf mf wrbl <block number> <key A/B> <key (12 hex symbols)> <block data (32 hex symbols)>");
98 PrintAndLog(" sample: hf mf wrbl 0 A FFFFFFFFFFFF 000102030405060708090A0B0C0D0E0F");
99 return 0;
100 }
101
102 blockNo = param_get8(Cmd, 0);
103 cmdp = param_getchar(Cmd, 1);
104 if (cmdp == 0x00) {
105 PrintAndLog("Key type must be A or B");
106 return 1;
107 }
108 if (cmdp != 'A' && cmdp != 'a') keyType = 1;
109 if (param_gethex(Cmd, 2, key, 12)) {
110 PrintAndLog("Key must include 12 HEX symbols");
111 return 1;
112 }
113 if (param_gethex(Cmd, 3, bldata, 32)) {
114 PrintAndLog("Block data must include 32 HEX symbols");
115 return 1;
116 }
117 PrintAndLog("--block no:%02x key type:%02x key:%s", blockNo, keyType, sprint_hex(key, 6));
118 PrintAndLog("--data: %s", sprint_hex(bldata, 16));
119
120 UsbCommand c = {CMD_MIFARE_WRITEBL, {blockNo, keyType, 0}};
121 memcpy(c.d.asBytes, key, 6);
122 memcpy(c.d.asBytes + 10, bldata, 16);
123 SendCommand(&c);
124 UsbCommand * resp = WaitForResponseTimeout(CMD_ACK, 1500);
125
126 if (resp != NULL) {
127 uint8_t isOK = resp->arg[0] & 0xff;
128
129 PrintAndLog("isOk:%02x", isOK);
130 } else {
131 PrintAndLog("Command execute timeout");
132 }
133
134 return 0;
135 }
136
137 int CmdHF14AMfRdBl(const char *Cmd)
138 {
139 uint8_t blockNo = 0;
140 uint8_t keyType = 0;
141 uint8_t key[6] = {0, 0, 0, 0, 0, 0};
142
143 char cmdp = 0x00;
144
145
146 if (strlen(Cmd)<3) {
147 PrintAndLog("Usage: hf mf rdbl <block number> <key A/B> <key (12 hex symbols)>");
148 PrintAndLog(" sample: hf mf rdbl 0 A FFFFFFFFFFFF ");
149 return 0;
150 }
151
152 blockNo = param_get8(Cmd, 0);
153 cmdp = param_getchar(Cmd, 1);
154 if (cmdp == 0x00) {
155 PrintAndLog("Key type must be A or B");
156 return 1;
157 }
158 if (cmdp != 'A' && cmdp != 'a') keyType = 1;
159 if (param_gethex(Cmd, 2, key, 12)) {
160 PrintAndLog("Key must include 12 HEX symbols");
161 return 1;
162 }
163 PrintAndLog("--block no:%02x key type:%02x key:%s ", blockNo, keyType, sprint_hex(key, 6));
164
165 UsbCommand c = {CMD_MIFARE_READBL, {blockNo, keyType, 0}};
166 memcpy(c.d.asBytes, key, 6);
167 SendCommand(&c);
168 UsbCommand * resp = WaitForResponseTimeout(CMD_ACK, 1500);
169
170 if (resp != NULL) {
171 uint8_t isOK = resp->arg[0] & 0xff;
172 uint8_t * data = resp->d.asBytes;
173
174 if (isOK)
175 PrintAndLog("isOk:%02x data:%s", isOK, sprint_hex(data, 16));
176 else
177 PrintAndLog("isOk:%02x", isOK);
178 } else {
179 PrintAndLog("Command execute timeout");
180 }
181
182 return 0;
183 }
184
185 int CmdHF14AMfRdSc(const char *Cmd)
186 {
187 int i;
188 uint8_t sectorNo = 0;
189 uint8_t keyType = 0;
190 uint8_t key[6] = {0, 0, 0, 0, 0, 0};
191
192 uint8_t isOK = 0;
193 uint8_t * data = NULL;
194
195 char cmdp = 0x00;
196
197 if (strlen(Cmd)<3) {
198 PrintAndLog("Usage: hf mf rdsc <sector number> <key A/B> <key (12 hex symbols)>");
199 PrintAndLog(" sample: hf mf rdsc 0 A FFFFFFFFFFFF ");
200 return 0;
201 }
202
203 sectorNo = param_get8(Cmd, 0);
204 if (sectorNo > 63) {
205 PrintAndLog("Sector number must be less than 64");
206 return 1;
207 }
208 cmdp = param_getchar(Cmd, 1);
209 if (cmdp == 0x00) {
210 PrintAndLog("Key type must be A or B");
211 return 1;
212 }
213 if (cmdp != 'A' && cmdp != 'a') keyType = 1;
214 if (param_gethex(Cmd, 2, key, 12)) {
215 PrintAndLog("Key must include 12 HEX symbols");
216 return 1;
217 }
218 PrintAndLog("--sector no:%02x key type:%02x key:%s ", sectorNo, keyType, sprint_hex(key, 6));
219
220 UsbCommand c = {CMD_MIFARE_READSC, {sectorNo, keyType, 0}};
221 memcpy(c.d.asBytes, key, 6);
222 SendCommand(&c);
223 UsbCommand * resp = WaitForResponseTimeout(CMD_ACK, 1500);
224 PrintAndLog(" ");
225
226 if (resp != NULL) {
227 isOK = resp->arg[0] & 0xff;
228 data = resp->d.asBytes;
229
230 PrintAndLog("isOk:%02x", isOK);
231 if (isOK)
232 for (i = 0; i < 2; i++) {
233 PrintAndLog("data:%s", sprint_hex(data + i * 16, 16));
234 }
235 } else {
236 PrintAndLog("Command1 execute timeout");
237 }
238
239 // response2
240 resp = WaitForResponseTimeout(CMD_ACK, 500);
241 PrintAndLog(" ");
242
243 if (resp != NULL) {
244 isOK = resp->arg[0] & 0xff;
245 data = resp->d.asBytes;
246
247 if (isOK)
248 for (i = 0; i < 2; i++) {
249 PrintAndLog("data:%s", sprint_hex(data + i * 16, 16));
250 }
251 } else {
252 PrintAndLog("Command2 execute timeout");
253 }
254
255 return 0;
256 }
257
258 int CmdHF14AMfDump1k(const char *Cmd)
259 {
260 int i, j;
261
262 uint8_t keyType = 0;
263 uint8_t c[3][4];
264 uint8_t keyA[16][6];
265 uint8_t keyB[16][6];
266 uint8_t rights[16][4];
267
268 uint8_t isOK = 0;
269 uint8_t *data = NULL;
270
271 FILE *fin;
272 FILE *fout;
273
274 UsbCommand *resp;
275
276 if ((fin = fopen("dumpkeys.bin","rb")) == NULL) {
277 PrintAndLog("Could not find file keys.bin");
278 return 1;
279 }
280
281 if ((fout = fopen("dumpdata.bin","wb")) == NULL) {
282 PrintAndLog("Could not create file name dump.bin");
283 return 1;
284 }
285
286 // Read key file
287
288 for (i=0 ; i<16 ; i++) {
289 fread ( keyA[i], 1, 6, fin );
290 }
291 for (i=0 ; i<16 ; i++) {
292 fread ( keyB[i], 1, 6, fin );
293 }
294
295 // Read access rights to sectors
296
297 PrintAndLog("|-----------------------------------------|");
298 PrintAndLog("|------ Reading sector access bits...-----|");
299 PrintAndLog("|-----------------------------------------|");
300
301 for (i = 0 ; i < 16 ; i++) {
302 UsbCommand c = {CMD_MIFARE_READBL, {4*i + 3, 0, 0}};
303 memcpy(c.d.asBytes, keyA[i], 6);
304 SendCommand(&c);
305 resp = WaitForResponseTimeout(CMD_ACK, 1500);
306
307 if (resp != NULL) {
308 uint8_t isOK = resp->arg[0] & 0xff;
309 uint8_t *data = resp->d.asBytes;
310 if (isOK){
311 rights[i][0] = ((data[7] & 0x10)>>4) | ((data[8] & 0x1)<<1) | ((data[8] & 0x10)>>2);
312 rights[i][1] = ((data[7] & 0x20)>>5) | ((data[8] & 0x2)<<0) | ((data[8] & 0x20)>>3);
313 rights[i][2] = ((data[7] & 0x40)>>6) | ((data[8] & 0x4)>>1) | ((data[8] & 0x40)>>4);
314 rights[i][3] = ((data[7] & 0x80)>>7) | ((data[8] & 0x8)>>2) | ((data[8] & 0x80)>>5);
315 }
316 else{
317 PrintAndLog("Could not get access rights for block %d", i);
318 }
319 }
320 else {
321 PrintAndLog("Command execute timeout");
322 }
323 }
324
325 // Read blocks and print to file
326
327 PrintAndLog("|-----------------------------------------|");
328 PrintAndLog("|----- Dumping all blocks to file... -----|");
329 PrintAndLog("|-----------------------------------------|");
330
331 for (i=0 ; i<16 ; i++) {
332 for (j=0 ; j<4 ; j++) {
333
334 if (j == 3){
335 UsbCommand c = {CMD_MIFARE_READBL, {i*4 + j, 0, 0}};
336 memcpy(c.d.asBytes, keyA[i], 6);
337 SendCommand(&c);
338 resp = WaitForResponseTimeout(CMD_ACK, 1500);
339 }
340 else{
341 if ((rights[i][j] == 6) | (rights[i][j] == 5)) {
342 UsbCommand c = {CMD_MIFARE_READBL, {i*4+j, 1, 0}};
343 memcpy(c.d.asBytes, keyB[i], 6);
344 SendCommand(&c);
345 resp = WaitForResponseTimeout(CMD_ACK, 1500);
346 }
347 else if (rights[i][j] == 7) {
348 PrintAndLog("Access rights do not allow reading of sector %d block %d",i,j);
349 }
350 else {
351 UsbCommand c = {CMD_MIFARE_READBL, {i*4+j, 0, 0}};
352 memcpy(c.d.asBytes, keyA[i], 6);
353 SendCommand(&c);
354 resp = WaitForResponseTimeout(CMD_ACK, 1500);
355 }
356 }
357
358 if (resp != NULL) {
359 uint8_t isOK = resp->arg[0] & 0xff;
360 uint8_t *data = resp->d.asBytes;
361 if (isOK) {
362 fwrite ( data, 1, 16, fout );
363 }
364 else {
365 PrintAndLog("Could not get access rights for block %d", i);
366 }
367 }
368 else {
369 PrintAndLog("Command execute timeout");
370 }
371 }
372 }
373
374 fclose(fin);
375 fclose(fout);
376
377 return 0;
378 }
379
380 int CmdHF14AMfRestore1k(const char *Cmd)
381 {
382
383 int i,j;
384 uint8_t keyType = 0;
385 uint8_t key[6] = {0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF};
386 uint8_t bldata[16] = {0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0};
387 uint8_t keyA[16][6];
388 uint8_t keyB[16][6];
389
390 FILE *fdump;
391 FILE *fkeys;
392
393 if ((fdump = fopen("dumpdata.bin","rb")) == NULL) {
394 PrintAndLog("Could not find file dump.bin");
395 return 1;
396 }
397 if ((fkeys = fopen("dumpkeys.bin","rb")) == NULL) {
398 PrintAndLog("Could not find file keys.bin");
399 return 1;
400 }
401
402 for (i=0 ; i<16 ; i++) {
403 fread(keyA[i], 1, 6, fkeys);
404 }
405 for (i=0 ; i<16 ; i++) {
406 fread(keyB[i], 1, 6, fkeys);
407 }
408
409 PrintAndLog("going...");
410
411 for (i=0 ; i<16 ; i++) {
412 for( j=0 ; j<4 ; j++) {
413 UsbCommand c = {CMD_MIFARE_WRITEBL, {i*4 + j, keyType, 0}};
414 memcpy(c.d.asBytes, key, 6);
415
416 fread(bldata, 1, 16, fdump);
417
418 if (j == 3) {
419 bldata[0] = (keyA[i][0]);
420 bldata[1] = (keyA[i][1]);
421 bldata[2] = (keyA[i][2]);
422 bldata[3] = (keyA[i][3]);
423 bldata[4] = (keyA[i][4]);
424 bldata[5] = (keyA[i][5]);
425 bldata[10] = (keyB[i][0]);
426 bldata[11] = (keyB[i][1]);
427 bldata[12] = (keyB[i][2]);
428 bldata[13] = (keyB[i][3]);
429 bldata[14] = (keyB[i][4]);
430 bldata[15] = (keyB[i][5]);
431 }
432
433 PrintAndLog("writing to block %2d: %s confirm?", i*4+j, sprint_hex(bldata, 16));
434
435 memcpy(c.d.asBytes + 10, bldata, 16);
436 SendCommand(&c);
437 UsbCommand *resp = WaitForResponseTimeout(CMD_ACK, 1500);
438
439 if (resp != NULL) {
440 uint8_t isOK = resp->arg[0] & 0xff;
441 PrintAndLog("isOk:%02x", isOK);
442 } else {
443 PrintAndLog("Command execute timeout");
444 }
445 }
446 }
447
448 fclose(fdump);
449 fclose(fkeys);
450 return 0;
451 }
452
453 int CmdHF14AMfNested(const char *Cmd)
454 {
455 int i, j, res, iterations;
456 sector * e_sector = NULL;
457 uint8_t blockNo = 0;
458 uint8_t keyType = 0;
459 uint8_t trgBlockNo = 0;
460 uint8_t trgKeyType = 0;
461 uint8_t blDiff = 0;
462 int SectorsCnt = 0;
463 uint8_t key[6] = {0, 0, 0, 0, 0, 0};
464 uint8_t keyBlock[16 * 6];
465 uint64_t key64 = 0;
466 int transferToEml = 0;
467
468 int createDumpFile = 0;
469 FILE *fkeys;
470
471 char cmdp, ctmp;
472
473 if (strlen(Cmd)<3) {
474 PrintAndLog("Usage:");
475 PrintAndLog(" all sectors: hf mf nested <card memory> <block number> <key A/B> <key (12 hex symbols)> [t,d]");
476 PrintAndLog(" one sector: hf mf nested o <block number> <key A/B> <key (12 hex symbols)>");
477 PrintAndLog(" <target block number> <target key A/B> [t]");
478 PrintAndLog("card memory - 0 - MINI(320 bytes), 1 - 1K, 2 - 2K, 4 - 4K, <other> - 1K");
479 PrintAndLog("t - transfer keys into emulator memory");
480 PrintAndLog("d - write keys to binary file");
481 PrintAndLog(" ");
482 PrintAndLog(" sample1: hf mf nested 1 0 A FFFFFFFFFFFF ");
483 PrintAndLog(" sample1: hf mf nested 1 0 A FFFFFFFFFFFF t ");
484 PrintAndLog(" sample1: hf mf nested 1 0 A FFFFFFFFFFFF d ");
485 PrintAndLog(" sample2: hf mf nested o 0 A FFFFFFFFFFFF 4 A");
486 return 0;
487 }
488
489 cmdp = param_getchar(Cmd, 0);
490 blockNo = param_get8(Cmd, 1);
491 ctmp = param_getchar(Cmd, 2);
492 if (ctmp == 0x00) {
493 PrintAndLog("Key type must be A or B");
494 return 1;
495 }
496 if (ctmp != 'A' && ctmp != 'a') keyType = 1;
497 if (param_gethex(Cmd, 3, key, 12)) {
498 PrintAndLog("Key must include 12 HEX symbols");
499 return 1;
500 }
501
502 if (cmdp == 'o' || cmdp == 'O') {
503 cmdp = 'o';
504 trgBlockNo = param_get8(Cmd, 4);
505 ctmp = param_getchar(Cmd, 5);
506 if (ctmp == 0x00) {
507 PrintAndLog("Target key type must be A or B");
508 return 1;
509 }
510 if (ctmp != 'A' && ctmp != 'a') trgKeyType = 1;
511 } else {
512 switch (cmdp) {
513 case '0': SectorsCnt = 05; break;
514 case '1': SectorsCnt = 16; break;
515 case '2': SectorsCnt = 32; break;
516 case '4': SectorsCnt = 64; break;
517 default: SectorsCnt = 16;
518 }
519 }
520
521 ctmp = param_getchar(Cmd, 4);
522 if (ctmp == 't' || ctmp == 'T') transferToEml = 1;
523 ctmp = param_getchar(Cmd, 6);
524 transferToEml |= (ctmp == 't' || ctmp == 'T');
525 createDumpFile |= (ctmp == 'd' || ctmp == 'D');
526
527 PrintAndLog("--block no:%02x key type:%02x key:%s etrans:%d", blockNo, keyType, sprint_hex(key, 6), transferToEml);
528 if (cmdp == 'o')
529 PrintAndLog("--target block no:%02x target key type:%02x ", trgBlockNo, trgKeyType);
530
531 if (cmdp == 'o') {
532 if (mfnested(blockNo, keyType, key, trgBlockNo, trgKeyType, keyBlock)) {
533 PrintAndLog("Nested error.");
534 return 2;
535 }
536
537 for (i = 0; i < 16; i++) {
538 PrintAndLog("cnt=%d key= %s", i, sprint_hex(keyBlock + i * 6, 6));
539 }
540
541 // test keys
542 res = mfCheckKeys(trgBlockNo, trgKeyType, 8, keyBlock, &key64);
543 if (res)
544 res = mfCheckKeys(trgBlockNo, trgKeyType, 8, &keyBlock[6 * 8], &key64);
545 if (!res) {
546 PrintAndLog("Found valid key:%012llx", key64);
547
548 // transfer key to the emulator
549 if (transferToEml) {
550 mfEmlGetMem(keyBlock, (trgBlockNo / 4) * 4 + 3, 1);
551
552 if (!trgKeyType)
553 num_to_bytes(key64, 6, keyBlock);
554 else
555 num_to_bytes(key64, 6, &keyBlock[10]);
556 mfEmlSetMem(keyBlock, (trgBlockNo / 4) * 4 + 3, 1);
557 }
558 } else {
559 PrintAndLog("No valid key found");
560 }
561 } else // ------------------------------------ multiple sectors working
562 {
563 blDiff = blockNo % 4;
564 PrintAndLog("Block shift=%d", blDiff);
565 e_sector = calloc(SectorsCnt, sizeof(sector));
566 if (e_sector == NULL) return 1;
567
568 //test current key 4 sectors
569 memcpy(keyBlock, key, 6);
570 num_to_bytes(0xa0a1a2a3a4a5, 6, (uint8_t*)(keyBlock + 1 * 6));
571 num_to_bytes(0xb0b1b2b3b4b5, 6, (uint8_t*)(keyBlock + 2 * 6));
572 num_to_bytes(0xffffffffffff, 6, (uint8_t*)(keyBlock + 3 * 6));
573 num_to_bytes(0x000000000000, 6, (uint8_t*)(keyBlock + 4 * 6));
574 num_to_bytes(0xaabbccddeeff, 6, (uint8_t*)(keyBlock + 5 * 6));
575
576 PrintAndLog("Testing known keys. Sector count=%d", SectorsCnt);
577 for (i = 0; i < SectorsCnt; i++) {
578 for (j = 0; j < 2; j++) {
579 if (e_sector[i].foundKey[j]) continue;
580
581 res = mfCheckKeys(i * 4 + blDiff, j, 6, keyBlock, &key64);
582
583 if (!res) {
584 e_sector[i].Key[j] = key64;
585 e_sector[i].foundKey[j] = 1;
586 }
587 }
588 }
589
590
591 // nested sectors
592 iterations = 0;
593 PrintAndLog("nested...");
594 for (i = 0; i < NESTED_SECTOR_RETRY; i++) {
595 for (trgBlockNo = blDiff; trgBlockNo < SectorsCnt * 4; trgBlockNo = trgBlockNo + 4)
596 for (trgKeyType = 0; trgKeyType < 2; trgKeyType++) {
597 if (e_sector[trgBlockNo / 4].foundKey[trgKeyType]) continue;
598 if (mfnested(blockNo, keyType, key, trgBlockNo, trgKeyType, keyBlock)) continue;
599
600 iterations++;
601
602 //try keys from nested
603 res = mfCheckKeys(trgBlockNo, trgKeyType, 8, keyBlock, &key64);
604 if (res)
605 res = mfCheckKeys(trgBlockNo, trgKeyType, 8, &keyBlock[6 * 8], &key64);
606 if (!res) {
607 PrintAndLog("Found valid key:%012llx", key64);
608 e_sector[trgBlockNo / 4].foundKey[trgKeyType] = 1;
609 e_sector[trgBlockNo / 4].Key[trgKeyType] = key64;
610 }
611 }
612 }
613
614 PrintAndLog("Iterations count: %d", iterations);
615 //print them
616 PrintAndLog("|---|----------------|---|----------------|---|");
617 PrintAndLog("|sec|key A |res|key B |res|");
618 PrintAndLog("|---|----------------|---|----------------|---|");
619 for (i = 0; i < SectorsCnt; i++) {
620 PrintAndLog("|%03d| %012llx | %d | %012llx | %d |", i,
621 e_sector[i].Key[0], e_sector[i].foundKey[0], e_sector[i].Key[1], e_sector[i].foundKey[1]);
622 }
623 PrintAndLog("|---|----------------|---|----------------|---|");
624
625 // transfer them to the emulator
626 if (transferToEml) {
627 for (i = 0; i < SectorsCnt; i++) {
628 mfEmlGetMem(keyBlock, i * 4 + 3, 1);
629 if (e_sector[i].foundKey[0])
630 num_to_bytes(e_sector[i].Key[0], 6, keyBlock);
631 if (e_sector[i].foundKey[1])
632 num_to_bytes(e_sector[i].Key[1], 6, &keyBlock[10]);
633 mfEmlSetMem(keyBlock, i * 4 + 3, 1);
634 }
635 }
636
637 if (createDumpFile) {
638 if ((fkeys = fopen("dumpkeys.bin","wb")) == NULL) {
639 PrintAndLog("Could not create file keys.bin");
640 free(e_sector);
641 return 1;
642 }
643 for(i=0; i<16; i++) {
644 fwrite ( e_sector[i].Key, sizeof(e_sector[i].Key[0]), 1, fkeys );
645 }
646 for(i=0; i<16; i++) {
647 fwrite ( e_sector[i].Key, sizeof(e_sector[i].Key[1]), 1, fkeys );
648 }
649 fclose(fkeys);
650 }
651
652 free(e_sector);
653 }
654
655 return 0;
656 }
657
658 int CmdHF14AMfChk(const char *Cmd)
659 {
660 int i, res;
661 int keycnt = 0;
662 char ctmp = 0x00;
663 uint8_t blockNo = 0;
664 uint8_t keyType = 0;
665 uint8_t keyBlock[8 * 6];
666 uint64_t key64 = 0;
667
668 memset(keyBlock, 0x00, sizeof(keyBlock));
669
670 if (strlen(Cmd)<3) {
671 PrintAndLog("Usage: hf mf chk <block number> <key A/B> [<key (12 hex symbols)>]");
672 PrintAndLog(" sample: hf mf chk 0 A FFFFFFFFFFFF a0a1a2a3a4a5 b0b1b2b3b4b5 ");
673 return 0;
674 }
675
676 blockNo = param_get8(Cmd, 0);
677 ctmp = param_getchar(Cmd, 1);
678 if (ctmp == 0x00) {
679 PrintAndLog("Key type must be A or B");
680 return 1;
681 }
682 if (ctmp != 'A' && ctmp != 'a') keyType = 1;
683
684 for (i = 0; i < 6; i++) {
685 if (!isxdigit(param_getchar(Cmd, 2 + i))) break;
686
687 if (param_gethex(Cmd, 2 + i, keyBlock + 6 * i, 12)) {
688 PrintAndLog("Key[%d] must include 12 HEX symbols", i);
689 return 1;
690 }
691 keycnt = i + 1;
692 }
693
694 if (keycnt == 0) {
695 PrintAndLog("There is must be at least one key");
696 return 1;
697 }
698
699 PrintAndLog("--block no:%02x key type:%02x key count:%d ", blockNo, keyType, keycnt);
700
701 res = mfCheckKeys(blockNo, keyType, keycnt, keyBlock, &key64);
702 if (res !=1) {
703 if (!res)
704 PrintAndLog("isOk:%02x valid key:%012llx", 1, key64);
705 else
706 PrintAndLog("isOk:%02x", 0);
707 } else {
708 PrintAndLog("Command execute timeout");
709 }
710
711 return 0;
712 }
713
714 int CmdHF14AMf1kSim(const char *Cmd)
715 {
716 uint8_t uid[4] = {0, 0, 0, 0};
717
718 if (param_getchar(Cmd, 0) == 'h') {
719 PrintAndLog("Usage: hf mf sim <uid (8 hex symbols)>");
720 PrintAndLog(" sample: hf mf sim 0a0a0a0a ");
721 return 0;
722 }
723
724 if (param_getchar(Cmd, 0) && param_gethex(Cmd, 0, uid, 8)) {
725 PrintAndLog("UID must include 8 HEX symbols");
726 return 1;
727 }
728 PrintAndLog(" uid:%s ", sprint_hex(uid, 4));
729
730 UsbCommand c = {CMD_SIMULATE_MIFARE_CARD, {0, 0, 0}};
731 memcpy(c.d.asBytes, uid, 4);
732 SendCommand(&c);
733
734 return 0;
735 }
736
737 int CmdHF14AMfDbg(const char *Cmd)
738 {
739 int dbgMode = param_get32ex(Cmd, 0, 0, 10);
740 if (dbgMode > 4) {
741 PrintAndLog("Max debud mode parameter is 4 \n");
742 }
743
744 if (strlen(Cmd) < 1 || !param_getchar(Cmd, 0) || dbgMode > 4) {
745 PrintAndLog("Usage: hf mf dbg <debug level>");
746 PrintAndLog(" 0 - no debug messages");
747 PrintAndLog(" 1 - error messages");
748 PrintAndLog(" 2 - all messages");
749 PrintAndLog(" 4 - extended debug mode");
750 return 0;
751 }
752
753 UsbCommand c = {CMD_MIFARE_SET_DBGMODE, {dbgMode, 0, 0}};
754 SendCommand(&c);
755
756 return 0;
757 }
758
759 int CmdHF14AMfEGet(const char *Cmd)
760 {
761 uint8_t blockNo = 0;
762 uint8_t data[3 * 16];
763 int i;
764
765 if (strlen(Cmd) < 1 || param_getchar(Cmd, 0) == 'h') {
766 PrintAndLog("Usage: hf mf eget <block number>");
767 PrintAndLog(" sample: hf mf eget 0 ");
768 return 0;
769 }
770
771 blockNo = param_get8(Cmd, 0);
772 if (blockNo >= 16 * 4) {
773 PrintAndLog("Block number must be in [0..63] as in MIFARE classic.");
774 return 1;
775 }
776
777 PrintAndLog(" ");
778 if (!mfEmlGetMem(data, blockNo, 3)) {
779 for (i = 0; i < 3; i++) {
780 PrintAndLog("data[%d]:%s", blockNo + i, sprint_hex(data + i * 16, 16));
781 }
782 } else {
783 PrintAndLog("Command execute timeout");
784 }
785
786 return 0;
787 }
788
789 int CmdHF14AMfEClear(const char *Cmd)
790 {
791 if (param_getchar(Cmd, 0) == 'h') {
792 PrintAndLog("Usage: hf mf eclr");
793 PrintAndLog("It set card emulator memory to empty data blocks and key A/B FFFFFFFFFFFF \n");
794 return 0;
795 }
796
797 UsbCommand c = {CMD_MIFARE_EML_MEMCLR, {0, 0, 0}};
798 SendCommand(&c);
799 return 0;
800 }
801
802 int CmdHF14AMfESet(const char *Cmd)
803 {
804 uint8_t memBlock[16];
805 uint8_t blockNo = 0;
806
807 memset(memBlock, 0x00, sizeof(memBlock));
808
809 if (strlen(Cmd) < 3 || param_getchar(Cmd, 0) == 'h') {
810 PrintAndLog("Usage: hf mf eset <block number> <block data (32 hex symbols)>");
811 PrintAndLog(" sample: hf mf eset 1 000102030405060708090a0b0c0d0e0f ");
812 return 0;
813 }
814
815 blockNo = param_get8(Cmd, 0);
816 if (blockNo >= 16 * 4) {
817 PrintAndLog("Block number must be in [0..63] as in MIFARE classic.");
818 return 1;
819 }
820
821 if (param_gethex(Cmd, 1, memBlock, 32)) {
822 PrintAndLog("block data must include 32 HEX symbols");
823 return 1;
824 }
825
826 // 1 - blocks count
827 UsbCommand c = {CMD_MIFARE_EML_MEMSET, {blockNo, 1, 0}};
828 memcpy(c.d.asBytes, memBlock, 16);
829 SendCommand(&c);
830 return 0;
831 }
832
833 int CmdHF14AMfELoad(const char *Cmd)
834 {
835 FILE * f;
836 char filename[20];
837 char * fnameptr = filename;
838 char buf[64];
839 uint8_t buf8[64];
840 int i, len, blockNum;
841
842 memset(filename, 0, sizeof(filename));
843 memset(buf, 0, sizeof(buf));
844
845 if (param_getchar(Cmd, 0) == 'h') {
846 PrintAndLog("It loads emul dump from the file `filename.eml`");
847 PrintAndLog("Usage: hf mf eload <file name w/o `.eml`>");
848 PrintAndLog(" sample: hf mf eload filename");
849 return 0;
850 }
851
852 len = strlen(Cmd);
853 if (len > 14) len = 14;
854
855 if (len < 1) {
856 }
857
858 memcpy(filename, Cmd, len);
859 fnameptr += len;
860
861 sprintf(fnameptr, ".eml");
862
863 // open file
864 f = fopen(filename, "r");
865 if (f == NULL) {
866 PrintAndLog("File not found or locked.");
867 return 1;
868 }
869
870 blockNum = 0;
871 while(!feof(f)){
872 memset(buf, 0, sizeof(buf));
873 fgets(buf, sizeof(buf), f);
874 if (strlen(buf) < 32){
875 PrintAndLog("File content error. Block data must include 32 HEX symbols");
876 return 2;
877 }
878 for (i = 0; i < 32; i += 2)
879 sscanf(&buf[i], "%02x", (unsigned int *)&buf8[i / 2]);
880 // PrintAndLog("data[%02d]:%s", blockNum, sprint_hex(buf8, 16));
881
882 if (mfEmlSetMem(buf8, blockNum, 1)) {
883 PrintAndLog("Cant set emul block: %d", blockNum);
884 return 3;
885 }
886 blockNum++;
887
888 if (blockNum >= 16 * 4) break;
889 }
890 fclose(f);
891
892 if (blockNum != 16 * 4){
893 PrintAndLog("File content error. There must be 64 blocks");
894 return 4;
895 }
896 PrintAndLog("Loaded from file: %s", filename);
897 return 0;
898 }
899
900 int CmdHF14AMfESave(const char *Cmd)
901 {
902 FILE * f;
903 char filename[20];
904 char * fnameptr = filename;
905 uint8_t buf[64];
906 int i, j, len;
907
908 memset(filename, 0, sizeof(filename));
909 memset(buf, 0, sizeof(buf));
910
911 if (param_getchar(Cmd, 0) == 'h') {
912 PrintAndLog("It saves emul dump into the file `filename.eml` or `cardID.eml`");
913 PrintAndLog("Usage: hf mf esave [file name w/o `.eml`]");
914 PrintAndLog(" sample: hf mf esave ");
915 PrintAndLog(" hf mf esave filename");
916 return 0;
917 }
918
919 len = strlen(Cmd);
920 if (len > 14) len = 14;
921
922 if (len < 1) {
923 // get filename
924 if (mfEmlGetMem(buf, 0, 1)) {
925 PrintAndLog("Cant get block: %d", 0);
926 return 1;
927 }
928 for (j = 0; j < 7; j++, fnameptr += 2)
929 sprintf(fnameptr, "%02x", buf[j]);
930 } else {
931 memcpy(filename, Cmd, len);
932 fnameptr += len;
933 }
934
935 sprintf(fnameptr, ".eml");
936
937 // open file
938 f = fopen(filename, "w+");
939
940 // put hex
941 for (i = 0; i < 16 * 4; i++) {
942 if (mfEmlGetMem(buf, i, 1)) {
943 PrintAndLog("Cant get block: %d", i);
944 break;
945 }
946 for (j = 0; j < 16; j++)
947 fprintf(f, "%02x", buf[j]);
948 fprintf(f,"\n");
949 }
950 fclose(f);
951
952 PrintAndLog("Saved to file: %s", filename);
953
954 return 0;
955 }
956
957 int CmdHF14AMfECFill(const char *Cmd)
958 {
959 uint8_t keyType = 0;
960
961 if (strlen(Cmd) < 1 || param_getchar(Cmd, 0) == 'h') {
962 PrintAndLog("Usage: hf mf efill <key A/B>");
963 PrintAndLog("sample: hf mf efill A");
964 PrintAndLog("Card data blocks transfers to card emulator memory.");
965 PrintAndLog("Keys must be laid in the simulator memory. \n");
966 return 0;
967 }
968
969 char ctmp = param_getchar(Cmd, 0);
970 if (ctmp == 0x00) {
971 PrintAndLog("Key type must be A or B");
972 return 1;
973 }
974 if (ctmp != 'A' && ctmp != 'a') keyType = 1;
975
976 UsbCommand c = {CMD_MIFARE_EML_CARDLOAD, {0, keyType, 0}};
977 SendCommand(&c);
978 return 0;
979 }
980
981 int CmdHF14AMfEKeyPrn(const char *Cmd)
982 {
983 int i;
984 uint8_t data[16];
985 uint64_t keyA, keyB;
986
987 PrintAndLog("|---|----------------|----------------|");
988 PrintAndLog("|sec|key A |key B |");
989 PrintAndLog("|---|----------------|----------------|");
990 for (i = 0; i < 16; i++) {
991 if (mfEmlGetMem(data, i * 4 + 3, 1)) {
992 PrintAndLog("error get block %d", i * 4 + 3);
993 break;
994 }
995 keyA = bytes_to_num(data, 6);
996 keyB = bytes_to_num(data + 10, 6);
997 PrintAndLog("|%03d| %012llx | %012llx |", i, keyA, keyB);
998 }
999 PrintAndLog("|---|----------------|----------------|");
1000
1001 return 0;
1002 }
1003
1004 static command_t CommandTable[] =
1005 {
1006 {"help", CmdHelp, 1, "This help"},
1007 {"dbg", CmdHF14AMfDbg, 0, "Set default debug mode"},
1008 {"rdbl", CmdHF14AMfRdBl, 0, "Read MIFARE classic block"},
1009 {"rdsc", CmdHF14AMfRdSc, 0, "Read MIFARE classic sector"},
1010 {"dump1k", CmdHF14AMfDump1k, 0, "Dump MIFARE classic tag to binary file"},
1011 {"restore1k", CmdHF14AMfRestore1k, 0, "Restore MIFARE classic binary file to BLANK tag"},
1012 {"wrbl", CmdHF14AMfWrBl, 0, "Write MIFARE classic block"},
1013 {"chk", CmdHF14AMfChk, 0, "Test block up to 8 keys"},
1014 {"mifare", CmdHF14AMifare, 0, "Read parity error messages. param - <used card nonce>"},
1015 {"nested", CmdHF14AMfNested, 0, "Test nested authentication"},
1016 {"sim", CmdHF14AMf1kSim, 0, "Simulate MIFARE 1k card"},
1017 {"eclr", CmdHF14AMfEClear, 0, "Clear simulator memory block"},
1018 {"eget", CmdHF14AMfEGet, 0, "Get simulator memory block"},
1019 {"eset", CmdHF14AMfESet, 0, "Set simulator memory block"},
1020 {"eload", CmdHF14AMfELoad, 0, "Load from file emul dump"},
1021 {"esave", CmdHF14AMfESave, 0, "Save to file emul dump"},
1022 {"ecfill", CmdHF14AMfECFill, 0, "Fill simulator memory with help of keys from simulator"},
1023 {"ekeyprn", CmdHF14AMfEKeyPrn, 0, "Print keys from simulator memory"},
1024 {NULL, NULL, 0, NULL}
1025 };
1026
1027 int CmdHFMF(const char *Cmd)
1028 {
1029 // flush
1030 while (WaitForResponseTimeout(CMD_ACK, 500) != NULL) ;
1031
1032 CmdsParse(CommandTable, Cmd);
1033 return 0;
1034 }
1035
1036 int CmdHelp(const char *Cmd)
1037 {
1038 CmdsHelp(CommandTable);
1039 return 0;
1040 }
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