9284d14ceb4d076cb1ebeccc12499499ef4ff2fc
1 //-----------------------------------------------------------------------------
2 // Copyright (C) 2011,2012 Merlok
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 // High frequency MIFARE commands
9 //-----------------------------------------------------------------------------
20 #include "cmdhfmfhard.h"
23 #include "util_posix.h"
26 #include "mifare/mifarehost.h"
28 #include "mifare/mfkey.h"
29 #include "hardnested/hardnested_bf_core.h"
30 #include "cliparser/cliparser.h"
32 #include "mifare/mifare4.h"
33 #include "mifare/mad.h"
34 #include "mifare/ndef.h"
37 #define NESTED_SECTOR_RETRY 10 // how often we try mfested() until we give up
39 static int CmdHelp(const char *Cmd
);
41 int CmdHF14AMifare(const char *Cmd
)
45 isOK
= mfDarkside(&key
);
47 case -1 : PrintAndLog("Button pressed. Aborted."); return 1;
48 case -2 : PrintAndLog("Card is not vulnerable to Darkside attack (doesn't send NACK on authentication requests)."); return 1;
49 case -3 : PrintAndLog("Card is not vulnerable to Darkside attack (its random number generator is not predictable)."); return 1;
50 case -4 : PrintAndLog("Card is not vulnerable to Darkside attack (its random number generator seems to be based on the wellknown");
51 PrintAndLog("generating polynomial with 16 effective bits only, but shows unexpected behaviour."); return 1;
52 case -5 : PrintAndLog("Aborted via keyboard."); return 1;
53 default : PrintAndLog("Found valid key:%012" PRIx64
"\n", key
);
61 int CmdHF14AMfWrBl(const char *Cmd
)
65 uint8_t key
[6] = {0, 0, 0, 0, 0, 0};
66 uint8_t bldata
[16] = {0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0};
71 PrintAndLog("Usage: hf mf wrbl <block number> <key A/B> <key (12 hex symbols)> <block data (32 hex symbols)>");
72 PrintAndLog(" sample: hf mf wrbl 0 A FFFFFFFFFFFF 000102030405060708090A0B0C0D0E0F");
76 blockNo
= param_get8(Cmd
, 0);
77 cmdp
= param_getchar(Cmd
, 1);
79 PrintAndLog("Key type must be A or B");
82 if (cmdp
!= 'A' && cmdp
!= 'a') keyType
= 1;
83 if (param_gethex(Cmd
, 2, key
, 12)) {
84 PrintAndLog("Key must include 12 HEX symbols");
87 if (param_gethex(Cmd
, 3, bldata
, 32)) {
88 PrintAndLog("Block data must include 32 HEX symbols");
91 PrintAndLog("--block no:%d, key type:%c, key:%s", blockNo
, keyType
?'B':'A', sprint_hex(key
, 6));
92 PrintAndLog("--data: %s", sprint_hex(bldata
, 16));
94 UsbCommand c
= {CMD_MIFARE_WRITEBL
, {blockNo
, keyType
, 0}};
95 memcpy(c
.d
.asBytes
, key
, 6);
96 memcpy(c
.d
.asBytes
+ 10, bldata
, 16);
100 if (WaitForResponseTimeout(CMD_ACK
,&resp
,1500)) {
101 uint8_t isOK
= resp
.arg
[0] & 0xff;
102 PrintAndLog("isOk:%02x", isOK
);
104 PrintAndLog("Command execute timeout");
110 int CmdHF14AMfRdBl(const char *Cmd
)
114 uint8_t key
[6] = {0, 0, 0, 0, 0, 0};
120 PrintAndLog("Usage: hf mf rdbl <block number> <key A/B> <key (12 hex symbols)>");
121 PrintAndLog(" sample: hf mf rdbl 0 A FFFFFFFFFFFF ");
125 blockNo
= param_get8(Cmd
, 0);
126 cmdp
= param_getchar(Cmd
, 1);
128 PrintAndLog("Key type must be A or B");
131 if (cmdp
!= 'A' && cmdp
!= 'a') keyType
= 1;
132 if (param_gethex(Cmd
, 2, key
, 12)) {
133 PrintAndLog("Key must include 12 HEX symbols");
136 PrintAndLog("--block no:%d, key type:%c, key:%s ", blockNo
, keyType
?'B':'A', sprint_hex(key
, 6));
138 UsbCommand c
= {CMD_MIFARE_READBL
, {blockNo
, keyType
, 0}};
139 memcpy(c
.d
.asBytes
, key
, 6);
143 if (WaitForResponseTimeout(CMD_ACK
,&resp
,1500)) {
144 uint8_t isOK
= resp
.arg
[0] & 0xff;
145 uint8_t *data
= resp
.d
.asBytes
;
148 PrintAndLog("isOk:%02x data:%s", isOK
, sprint_hex(data
, 16));
150 PrintAndLog("isOk:%02x", isOK
);
154 if (mfIsSectorTrailer(blockNo
) && (data
[6] || data
[7] || data
[8])) {
155 PrintAndLogEx(NORMAL
, "Trailer decoded:");
156 int bln
= mfFirstBlockOfSector(mfSectorNum(blockNo
));
157 int blinc
= (mfNumBlocksPerSector(mfSectorNum(blockNo
)) > 4) ? 5 : 1;
158 for (int i
= 0; i
< 4; i
++) {
159 PrintAndLogEx(NORMAL
, "Access block %d%s: %s", bln
, ((blinc
> 1) && (i
< 3) ? "+" : "") , mfGetAccessConditionsDesc(i
, &data
[6]));
162 PrintAndLogEx(NORMAL
, "UserData: %s", sprint_hex_inrow(&data
[9], 1));
165 PrintAndLog("Command execute timeout");
172 int CmdHF14AMfRdSc(const char *Cmd
)
175 uint8_t sectorNo
= 0;
177 uint8_t key
[6] = {0, 0, 0, 0, 0, 0};
179 uint8_t *data
= NULL
;
183 PrintAndLog("Usage: hf mf rdsc <sector number> <key A/B> <key (12 hex symbols)>");
184 PrintAndLog(" sample: hf mf rdsc 0 A FFFFFFFFFFFF ");
188 sectorNo
= param_get8(Cmd
, 0);
190 PrintAndLog("Sector number must be less than 40");
193 cmdp
= param_getchar(Cmd
, 1);
194 if (cmdp
!= 'a' && cmdp
!= 'A' && cmdp
!= 'b' && cmdp
!= 'B') {
195 PrintAndLog("Key type must be A or B");
198 if (cmdp
!= 'A' && cmdp
!= 'a') keyType
= 1;
199 if (param_gethex(Cmd
, 2, key
, 12)) {
200 PrintAndLog("Key must include 12 HEX symbols");
203 PrintAndLog("--sector no:%d key type:%c key:%s ", sectorNo
, keyType
?'B':'A', sprint_hex(key
, 6));
205 UsbCommand c
= {CMD_MIFARE_READSC
, {sectorNo
, keyType
, 0}};
206 memcpy(c
.d
.asBytes
, key
, 6);
211 if (WaitForResponseTimeout(CMD_ACK
,&resp
,1500)) {
212 isOK
= resp
.arg
[0] & 0xff;
213 data
= resp
.d
.asBytes
;
215 PrintAndLog("isOk:%02x", isOK
);
217 for (i
= 0; i
< (sectorNo
<32?3:15); i
++) {
218 PrintAndLog("data : %s", sprint_hex(data
+ i
* 16, 16));
220 PrintAndLog("trailer: %s", sprint_hex(data
+ (sectorNo
<32?3:15) * 16, 16));
222 PrintAndLogEx(NORMAL
, "Trailer decoded:");
223 int bln
= mfFirstBlockOfSector(sectorNo
);
224 int blinc
= (mfNumBlocksPerSector(sectorNo
) > 4) ? 5 : 1;
225 for (i
= 0; i
< 4; i
++) {
226 PrintAndLogEx(NORMAL
, "Access block %d%s: %s", bln
, ((blinc
> 1) && (i
< 3) ? "+" : "") , mfGetAccessConditionsDesc(i
, &(data
+ (sectorNo
<32?3:15) * 16)[6]));
229 PrintAndLogEx(NORMAL
, "UserData: %s", sprint_hex_inrow(&(data
+ (sectorNo
<32?3:15) * 16)[9], 1));
232 PrintAndLog("Command execute timeout");
238 uint8_t FirstBlockOfSector(uint8_t sectorNo
)
243 return 32 * 4 + (sectorNo
- 32) * 16;
247 uint8_t NumBlocksPerSector(uint8_t sectorNo
)
256 static int ParamCardSizeSectors(const char c
) {
259 case '0' : numSectors
= 5; break;
260 case '2' : numSectors
= 32; break;
261 case '4' : numSectors
= 40; break;
262 default: numSectors
= 16;
267 static int ParamCardSizeBlocks(const char c
) {
268 int numBlocks
= 16 * 4;
270 case '0' : numBlocks
= 5 * 4; break;
271 case '2' : numBlocks
= 32 * 4; break;
272 case '4' : numBlocks
= 32 * 4 + 8 * 16; break;
273 default: numBlocks
= 16 * 4;
278 int CmdHF14AMfDump(const char *Cmd
)
280 uint8_t sectorNo
, blockNo
;
282 uint8_t keys
[2][40][6];
283 uint8_t rights
[40][4];
284 uint8_t carddata
[256][16];
285 uint8_t numSectors
= 16;
292 char cmdp
= param_getchar(Cmd
, 0);
293 numSectors
= ParamCardSizeSectors(cmdp
);
295 if (strlen(Cmd
) > 3 || cmdp
== 'h' || cmdp
== 'H') {
296 PrintAndLog("Usage: hf mf dump [card memory] [k|m]");
297 PrintAndLog(" [card memory]: 0 = 320 bytes (Mifare Mini), 1 = 1K (default), 2 = 2K, 4 = 4K");
298 PrintAndLog(" k: Always try using both Key A and Key B for each sector, even if access bits would prohibit it");
299 PrintAndLog(" m: When missing access bits or keys, replace that block with NULL");
301 PrintAndLog("Samples: hf mf dump");
302 PrintAndLog(" hf mf dump 4");
303 PrintAndLog(" hf mf dump 4 m");
307 char opts
= param_getchar(Cmd
, 1);
308 bool useBothKeysAlways
= false;
309 if (opts
== 'k' || opts
== 'K') useBothKeysAlways
= true;
310 bool nullMissingKeys
= false;
311 if (opts
== 'm' || opts
== 'M') nullMissingKeys
= true;
313 if ((fin
= fopen("dumpkeys.bin","rb")) == NULL
) {
314 PrintAndLog("Could not find file dumpkeys.bin");
318 // Read keys from file
319 for (int group
=0; group
<=1; group
++) {
320 for (sectorNo
=0; sectorNo
<numSectors
; sectorNo
++) {
321 size_t bytes_read
= fread(keys
[group
][sectorNo
], 1, 6, fin
);
322 if (bytes_read
!= 6) {
323 PrintAndLog("File reading error.");
332 PrintAndLog("|-----------------------------------------|");
333 PrintAndLog("|------ Reading sector access bits...-----|");
334 PrintAndLog("|-----------------------------------------|");
336 for (sectorNo
= 0; sectorNo
< numSectors
; sectorNo
++) {
337 for (tries
= 0; tries
< 3; tries
++) {
338 UsbCommand c
= {CMD_MIFARE_READBL
, {FirstBlockOfSector(sectorNo
) + NumBlocksPerSector(sectorNo
) - 1, 0, 0}};
339 // At least the Access Conditions can always be read with key A.
340 memcpy(c
.d
.asBytes
, keys
[0][sectorNo
], 6);
343 if (WaitForResponseTimeout(CMD_ACK
,&resp
,1500)) {
344 uint8_t isOK
= resp
.arg
[0] & 0xff;
345 uint8_t *data
= resp
.d
.asBytes
;
347 rights
[sectorNo
][0] = ((data
[7] & 0x10)>>2) | ((data
[8] & 0x1)<<1) | ((data
[8] & 0x10)>>4); // C1C2C3 for data area 0
348 rights
[sectorNo
][1] = ((data
[7] & 0x20)>>3) | ((data
[8] & 0x2)<<0) | ((data
[8] & 0x20)>>5); // C1C2C3 for data area 1
349 rights
[sectorNo
][2] = ((data
[7] & 0x40)>>4) | ((data
[8] & 0x4)>>1) | ((data
[8] & 0x40)>>6); // C1C2C3 for data area 2
350 rights
[sectorNo
][3] = ((data
[7] & 0x80)>>5) | ((data
[8] & 0x8)>>2) | ((data
[8] & 0x80)>>7); // C1C2C3 for sector trailer
352 } else if (tries
== 2) { // on last try set defaults
353 PrintAndLog("Could not get access rights for sector %2d. Trying with defaults...", sectorNo
);
354 rights
[sectorNo
][0] = rights
[sectorNo
][1] = rights
[sectorNo
][2] = 0x00;
355 rights
[sectorNo
][3] = 0x01;
358 PrintAndLog("Command execute timeout when trying to read access rights for sector %2d. Trying with defaults...", sectorNo
);
359 rights
[sectorNo
][0] = rights
[sectorNo
][1] = rights
[sectorNo
][2] = 0x00;
360 rights
[sectorNo
][3] = 0x01;
365 PrintAndLog("|-----------------------------------------|");
366 PrintAndLog("|----- Dumping all blocks to file... -----|");
367 PrintAndLog("|-----------------------------------------|");
370 for (sectorNo
= 0; isOK
&& sectorNo
< numSectors
; sectorNo
++) {
371 for (blockNo
= 0; isOK
&& blockNo
< NumBlocksPerSector(sectorNo
); blockNo
++) {
372 bool received
= false;
373 for (tries
= 0; tries
< 3; tries
++) {
374 if (blockNo
== NumBlocksPerSector(sectorNo
) - 1) { // sector trailer. At least the Access Conditions can always be read with key A.
375 UsbCommand c
= {CMD_MIFARE_READBL
, {FirstBlockOfSector(sectorNo
) + blockNo
, 0, 0}};
376 memcpy(c
.d
.asBytes
, keys
[0][sectorNo
], 6);
378 received
= WaitForResponseTimeout(CMD_ACK
,&resp
,1500);
379 } else if (useBothKeysAlways
) {
380 // Always try both keys, even if access conditions wouldn't work.
381 for (int k
=0; k
<=1; k
++) {
382 UsbCommand c
= {CMD_MIFARE_READBL
, {FirstBlockOfSector(sectorNo
) + blockNo
, 1, 0}};
383 memcpy(c
.d
.asBytes
, keys
[k
][sectorNo
], 6);
385 received
= WaitForResponseTimeout(CMD_ACK
,&resp
,1500);
387 // Don't try the other one on success.
388 if (resp
.arg
[0] & 0xff) break;
390 } else { // data block. Check if it can be read with key A or key B
391 uint8_t data_area
= sectorNo
<32?blockNo
:blockNo
/5;
392 if ((rights
[sectorNo
][data_area
] == 0x03) || (rights
[sectorNo
][data_area
] == 0x05)) { // only key B would work
393 UsbCommand c
= {CMD_MIFARE_READBL
, {FirstBlockOfSector(sectorNo
) + blockNo
, 1, 0}};
394 memcpy(c
.d
.asBytes
, keys
[1][sectorNo
], 6);
396 received
= WaitForResponseTimeout(CMD_ACK
,&resp
,1500);
397 } else if (rights
[sectorNo
][data_area
] == 0x07) { // no key would work
398 PrintAndLog("Access rights do not allow reading of sector %2d block %3d", sectorNo
, blockNo
);
399 if (nullMissingKeys
) {
400 memset(resp
.d
.asBytes
, 0, 16);
402 PrintAndLog(" ... filling the block with NULL");
408 } else { // key A would work
409 UsbCommand c
= {CMD_MIFARE_READBL
, {FirstBlockOfSector(sectorNo
) + blockNo
, 0, 0}};
410 memcpy(c
.d
.asBytes
, keys
[0][sectorNo
], 6);
412 received
= WaitForResponseTimeout(CMD_ACK
,&resp
,1500);
416 isOK
= resp
.arg
[0] & 0xff;
422 isOK
= resp
.arg
[0] & 0xff;
423 uint8_t *data
= resp
.d
.asBytes
;
424 if (blockNo
== NumBlocksPerSector(sectorNo
) - 1) { // sector trailer. Fill in the keys.
425 memcpy(data
, keys
[0][sectorNo
], 6);
426 memcpy(data
+ 10, keys
[1][sectorNo
], 6);
429 memcpy(carddata
[FirstBlockOfSector(sectorNo
) + blockNo
], data
, 16);
430 PrintAndLog("Successfully read block %2d of sector %2d.", blockNo
, sectorNo
);
432 PrintAndLog("Could not read block %2d of sector %2d", blockNo
, sectorNo
);
438 PrintAndLog("Command execute timeout when trying to read block %2d of sector %2d.", blockNo
, sectorNo
);
445 if ((fout
= fopen("dumpdata.bin","wb")) == NULL
) {
446 PrintAndLog("Could not create file name dumpdata.bin");
449 uint16_t numblocks
= FirstBlockOfSector(numSectors
- 1) + NumBlocksPerSector(numSectors
- 1);
450 fwrite(carddata
, 1, 16*numblocks
, fout
);
452 PrintAndLog("Dumped %d blocks (%d bytes) to file dumpdata.bin", numblocks
, 16*numblocks
);
458 int CmdHF14AMfRestore(const char *Cmd
)
460 uint8_t sectorNo
,blockNo
;
462 uint8_t key
[6] = {0xFF,0xFF,0xFF,0xFF,0xFF,0xFF};
463 uint8_t bldata
[16] = {0x00};
471 char cmdp
= param_getchar(Cmd
, 0);
473 case '0' : numSectors
= 5; break;
475 case '\0': numSectors
= 16; break;
476 case '2' : numSectors
= 32; break;
477 case '4' : numSectors
= 40; break;
478 default: numSectors
= 16;
481 if (strlen(Cmd
) > 1 || cmdp
== 'h' || cmdp
== 'H') {
482 PrintAndLog("Usage: hf mf restore [card memory]");
483 PrintAndLog(" [card memory]: 0 = 320 bytes (Mifare Mini), 1 = 1K (default), 2 = 2K, 4 = 4K");
485 PrintAndLog("Samples: hf mf restore");
486 PrintAndLog(" hf mf restore 4");
490 if ((fkeys
= fopen("dumpkeys.bin","rb")) == NULL
) {
491 PrintAndLog("Could not find file dumpkeys.bin");
495 for (sectorNo
= 0; sectorNo
< numSectors
; sectorNo
++) {
496 size_t bytes_read
= fread(keyA
[sectorNo
], 1, 6, fkeys
);
497 if (bytes_read
!= 6) {
498 PrintAndLog("File reading error (dumpkeys.bin).");
504 for (sectorNo
= 0; sectorNo
< numSectors
; sectorNo
++) {
505 size_t bytes_read
= fread(keyB
[sectorNo
], 1, 6, fkeys
);
506 if (bytes_read
!= 6) {
507 PrintAndLog("File reading error (dumpkeys.bin).");
515 if ((fdump
= fopen("dumpdata.bin","rb")) == NULL
) {
516 PrintAndLog("Could not find file dumpdata.bin");
519 PrintAndLog("Restoring dumpdata.bin to card");
521 for (sectorNo
= 0; sectorNo
< numSectors
; sectorNo
++) {
522 for(blockNo
= 0; blockNo
< NumBlocksPerSector(sectorNo
); blockNo
++) {
523 UsbCommand c
= {CMD_MIFARE_WRITEBL
, {FirstBlockOfSector(sectorNo
) + blockNo
, keyType
, 0}};
524 memcpy(c
.d
.asBytes
, key
, 6);
526 size_t bytes_read
= fread(bldata
, 1, 16, fdump
);
527 if (bytes_read
!= 16) {
528 PrintAndLog("File reading error (dumpdata.bin).");
533 if (blockNo
== NumBlocksPerSector(sectorNo
) - 1) { // sector trailer
534 bldata
[0] = (keyA
[sectorNo
][0]);
535 bldata
[1] = (keyA
[sectorNo
][1]);
536 bldata
[2] = (keyA
[sectorNo
][2]);
537 bldata
[3] = (keyA
[sectorNo
][3]);
538 bldata
[4] = (keyA
[sectorNo
][4]);
539 bldata
[5] = (keyA
[sectorNo
][5]);
540 bldata
[10] = (keyB
[sectorNo
][0]);
541 bldata
[11] = (keyB
[sectorNo
][1]);
542 bldata
[12] = (keyB
[sectorNo
][2]);
543 bldata
[13] = (keyB
[sectorNo
][3]);
544 bldata
[14] = (keyB
[sectorNo
][4]);
545 bldata
[15] = (keyB
[sectorNo
][5]);
548 PrintAndLog("Writing to block %3d: %s", FirstBlockOfSector(sectorNo
) + blockNo
, sprint_hex(bldata
, 16));
550 memcpy(c
.d
.asBytes
+ 10, bldata
, 16);
554 if (WaitForResponseTimeout(CMD_ACK
,&resp
,1500)) {
555 uint8_t isOK
= resp
.arg
[0] & 0xff;
556 PrintAndLog("isOk:%02x", isOK
);
558 PrintAndLog("Command execute timeout");
567 //----------------------------------------------
569 //----------------------------------------------
571 static void parseParamTDS(const char *Cmd
, const uint8_t indx
, bool *paramT
, bool *paramD
, uint8_t *timeout
) {
573 int len
= param_getlength(Cmd
, indx
);
574 if (len
> 0 && len
< 4){
575 param_getstr(Cmd
, indx
, ctmp3
, sizeof(ctmp3
));
577 *paramT
|= (ctmp3
[0] == 't' || ctmp3
[0] == 'T');
578 *paramD
|= (ctmp3
[0] == 'd' || ctmp3
[0] == 'D');
579 bool paramS1
= *paramT
|| *paramD
;
581 // slow and very slow
582 if (ctmp3
[0] == 's' || ctmp3
[0] == 'S' || ctmp3
[1] == 's' || ctmp3
[1] == 'S') {
583 *timeout
= 11; // slow
585 if (!paramS1
&& (ctmp3
[1] == 's' || ctmp3
[1] == 'S')) {
586 *timeout
= 53; // very slow
588 if (paramS1
&& (ctmp3
[2] == 's' || ctmp3
[2] == 'S')) {
589 *timeout
= 53; // very slow
595 int CmdHF14AMfNested(const char *Cmd
)
597 int i
, j
, res
, iterations
;
598 sector_t
*e_sector
= NULL
;
601 uint8_t trgBlockNo
= 0;
602 uint8_t trgKeyType
= 0;
603 uint8_t SectorsCnt
= 0;
604 uint8_t key
[6] = {0, 0, 0, 0, 0, 0};
605 uint8_t keyBlock
[MifareDefaultKeysSize
* 6];
607 // timeout in units. (ms * 106)/10 or us*0.0106
608 uint8_t btimeout14a
= MF_CHKKEYS_DEFTIMEOUT
; // fast by default
610 bool autosearchKey
= false;
612 bool transferToEml
= false;
613 bool createDumpFile
= false;
615 uint8_t standart
[6] = {0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF};
616 uint8_t tempkey
[6] = {0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF};
621 PrintAndLog("Usage:");
622 PrintAndLog(" all sectors: hf mf nested <card memory> <block number> <key A/B> <key (12 hex symbols)> [t|d|s|ss]");
623 PrintAndLog(" all sectors autosearch key: hf mf nested <card memory> * [t|d|s|ss]");
624 PrintAndLog(" one sector: hf mf nested o <block number> <key A/B> <key (12 hex symbols)>");
625 PrintAndLog(" <target block number> <target key A/B> [t]");
627 PrintAndLog("card memory - 0 - MINI(320 bytes), 1 - 1K, 2 - 2K, 4 - 4K, <other> - 1K");
628 PrintAndLog("t - transfer keys to emulator memory");
629 PrintAndLog("d - write keys to binary file dumpkeys.bin");
630 PrintAndLog("s - Slow (1ms) check keys (required by some non standard cards)");
631 PrintAndLog("ss - Very slow (5ms) check keys");
633 PrintAndLog(" sample1: hf mf nested 1 0 A FFFFFFFFFFFF ");
634 PrintAndLog(" sample2: hf mf nested 1 0 A FFFFFFFFFFFF t ");
635 PrintAndLog(" sample3: hf mf nested 1 0 A FFFFFFFFFFFF d ");
636 PrintAndLog(" sample4: hf mf nested o 0 A FFFFFFFFFFFF 4 A");
637 PrintAndLog(" sample5: hf mf nested 1 * t");
638 PrintAndLog(" sample6: hf mf nested 1 * ss");
643 cmdp
= param_getchar(Cmd
, 0);
644 if (cmdp
== 'o' || cmdp
== 'O') {
648 SectorsCnt
= ParamCardSizeSectors(cmdp
);
651 // <block number>. number or autosearch key (*)
652 if (param_getchar(Cmd
, 1) == '*') {
653 autosearchKey
= true;
655 parseParamTDS(Cmd
, 2, &transferToEml
, &createDumpFile
, &btimeout14a
);
657 PrintAndLog("--nested. sectors:%2d, block no:*, eml:%c, dmp=%c checktimeout=%d us",
658 SectorsCnt
, transferToEml
?'y':'n', createDumpFile
?'y':'n', ((int)btimeout14a
* 10000) / 106);
660 blockNo
= param_get8(Cmd
, 1);
662 ctmp
= param_getchar(Cmd
, 2);
663 if (ctmp
!= 'a' && ctmp
!= 'A' && ctmp
!= 'b' && ctmp
!= 'B') {
664 PrintAndLog("Key type must be A or B");
668 if (ctmp
!= 'A' && ctmp
!= 'a')
671 if (param_gethex(Cmd
, 3, key
, 12)) {
672 PrintAndLog("Key must include 12 HEX symbols");
676 // check if we can authenticate to sector
677 res
= mfCheckKeys(blockNo
, keyType
, true, 1, key
, &key64
);
679 PrintAndLog("Can't authenticate to block:%3d key type:%c key:%s", blockNo
, keyType
?'B':'A', sprint_hex(key
, 6));
685 trgBlockNo
= param_get8(Cmd
, 4);
687 ctmp
= param_getchar(Cmd
, 5);
688 if (ctmp
!= 'a' && ctmp
!= 'A' && ctmp
!= 'b' && ctmp
!= 'B') {
689 PrintAndLog("Target key type must be A or B");
692 if (ctmp
!= 'A' && ctmp
!= 'a')
695 parseParamTDS(Cmd
, 6, &transferToEml
, &createDumpFile
, &btimeout14a
);
697 parseParamTDS(Cmd
, 4, &transferToEml
, &createDumpFile
, &btimeout14a
);
700 PrintAndLog("--nested. sectors:%2d, block no:%3d, key type:%c, eml:%c, dmp=%c checktimeout=%d us",
701 SectorsCnt
, blockNo
, keyType
?'B':'A', transferToEml
?'y':'n', createDumpFile
?'y':'n', ((int)btimeout14a
* 10000) / 106);
705 if (cmdp
== 'o') { // ------------------------------------ one sector working
706 PrintAndLog("--target block no:%3d, target key type:%c ", trgBlockNo
, trgKeyType
?'B':'A');
707 int16_t isOK
= mfnested(blockNo
, keyType
, key
, trgBlockNo
, trgKeyType
, keyBlock
, true);
710 case -1 : PrintAndLog("Error: No response from Proxmark.\n"); break;
711 case -2 : PrintAndLog("Button pressed. Aborted.\n"); break;
712 case -3 : PrintAndLog("Tag isn't vulnerable to Nested Attack (random numbers are not predictable).\n"); break;
713 default : PrintAndLog("Unknown Error.\n");
717 key64
= bytes_to_num(keyBlock
, 6);
719 PrintAndLog("Found valid key:%012" PRIx64
, key64
);
721 // transfer key to the emulator
723 uint8_t sectortrailer
;
724 if (trgBlockNo
< 32*4) { // 4 block sector
725 sectortrailer
= trgBlockNo
| 0x03;
726 } else { // 16 block sector
727 sectortrailer
= trgBlockNo
| 0x0f;
729 mfEmlGetMem(keyBlock
, sectortrailer
, 1);
732 num_to_bytes(key64
, 6, keyBlock
);
734 num_to_bytes(key64
, 6, &keyBlock
[10]);
735 mfEmlSetMem(keyBlock
, sectortrailer
, 1);
736 PrintAndLog("Key transferred to emulator memory.");
739 PrintAndLog("No valid key found");
742 else { // ------------------------------------ multiple sectors working
744 msclock1
= msclock();
746 e_sector
= calloc(SectorsCnt
, sizeof(sector_t
));
747 if (e_sector
== NULL
) return 1;
749 //test current key and additional standard keys first
750 for (int defaultKeyCounter
= 0; defaultKeyCounter
< MifareDefaultKeysSize
; defaultKeyCounter
++){
751 num_to_bytes(MifareDefaultKeys
[defaultKeyCounter
], 6, (uint8_t*)(keyBlock
+ defaultKeyCounter
* 6));
754 PrintAndLog("Testing known keys. Sector count=%d", SectorsCnt
);
755 mfCheckKeysSec(SectorsCnt
, 2, btimeout14a
, true, MifareDefaultKeysSize
, keyBlock
, e_sector
);
757 // get known key from array
758 bool keyFound
= false;
760 for (i
= 0; i
< SectorsCnt
; i
++) {
761 for (j
= 0; j
< 2; j
++) {
762 if (e_sector
[i
].foundKey
[j
]) {
766 num_to_bytes(e_sector
[i
].Key
[j
], 6, key
);
774 // Can't found a key....
776 PrintAndLog("Can't found any of the known keys.");
780 PrintAndLog("--auto key. block no:%3d, key type:%c key:%s", blockNo
, keyType
?'B':'A', sprint_hex(key
, 6));
785 PrintAndLog("nested...");
786 bool calibrate
= true;
787 for (i
= 0; i
< NESTED_SECTOR_RETRY
; i
++) {
788 for (uint8_t sectorNo
= 0; sectorNo
< SectorsCnt
; sectorNo
++) {
789 for (trgKeyType
= 0; trgKeyType
< 2; trgKeyType
++) {
790 if (e_sector
[sectorNo
].foundKey
[trgKeyType
]) continue;
791 PrintAndLog("-----------------------------------------------");
792 int16_t isOK
= mfnested(blockNo
, keyType
, key
, FirstBlockOfSector(sectorNo
), trgKeyType
, keyBlock
, calibrate
);
795 case -1 : PrintAndLog("Error: No response from Proxmark.\n"); break;
796 case -2 : PrintAndLog("Button pressed. Aborted.\n"); break;
797 case -3 : PrintAndLog("Tag isn't vulnerable to Nested Attack (random numbers are not predictable).\n"); break;
798 default : PrintAndLog("Unknown Error.\n");
808 key64
= bytes_to_num(keyBlock
, 6);
810 PrintAndLog("Found valid key:%012" PRIx64
, key64
);
811 e_sector
[sectorNo
].foundKey
[trgKeyType
] = 1;
812 e_sector
[sectorNo
].Key
[trgKeyType
] = key64
;
814 // try to check this key as a key to the other sectors
815 mfCheckKeysSec(SectorsCnt
, 2, btimeout14a
, true, 1, keyBlock
, e_sector
);
821 // print nested statistic
822 PrintAndLog("\n\n-----------------------------------------------\nNested statistic:\nIterations count: %d", iterations
);
823 PrintAndLog("Time in nested: %1.3f (%1.3f sec per key)", ((float)(msclock() - msclock1
))/1000.0, ((float)(msclock() - msclock1
))/iterations
/1000.0);
826 PrintAndLog("|---|----------------|---|----------------|---|");
827 PrintAndLog("|sec|key A |res|key B |res|");
828 PrintAndLog("|---|----------------|---|----------------|---|");
829 for (i
= 0; i
< SectorsCnt
; i
++) {
830 PrintAndLog("|%03d| %012" PRIx64
" | %d | %012" PRIx64
" | %d |", i
,
831 e_sector
[i
].Key
[0], e_sector
[i
].foundKey
[0], e_sector
[i
].Key
[1], e_sector
[i
].foundKey
[1]);
833 PrintAndLog("|---|----------------|---|----------------|---|");
835 // transfer keys to the emulator memory
837 for (i
= 0; i
< SectorsCnt
; i
++) {
838 mfEmlGetMem(keyBlock
, FirstBlockOfSector(i
) + NumBlocksPerSector(i
) - 1, 1);
839 if (e_sector
[i
].foundKey
[0])
840 num_to_bytes(e_sector
[i
].Key
[0], 6, keyBlock
);
841 if (e_sector
[i
].foundKey
[1])
842 num_to_bytes(e_sector
[i
].Key
[1], 6, &keyBlock
[10]);
843 mfEmlSetMem(keyBlock
, FirstBlockOfSector(i
) + NumBlocksPerSector(i
) - 1, 1);
845 PrintAndLog("Keys transferred to emulator memory.");
849 if (createDumpFile
) {
850 if ((fkeys
= fopen("dumpkeys.bin","wb")) == NULL
) {
851 PrintAndLog("Could not create file dumpkeys.bin");
855 PrintAndLog("Printing keys to binary file dumpkeys.bin...");
856 for(i
=0; i
<SectorsCnt
; i
++) {
857 if (e_sector
[i
].foundKey
[0]){
858 num_to_bytes(e_sector
[i
].Key
[0], 6, tempkey
);
859 fwrite ( tempkey
, 1, 6, fkeys
);
862 fwrite ( &standart
, 1, 6, fkeys
);
865 for(i
=0; i
<SectorsCnt
; i
++) {
866 if (e_sector
[i
].foundKey
[1]){
867 num_to_bytes(e_sector
[i
].Key
[1], 6, tempkey
);
868 fwrite ( tempkey
, 1, 6, fkeys
);
871 fwrite ( &standart
, 1, 6, fkeys
);
883 int CmdHF14AMfNestedHard(const char *Cmd
)
887 uint8_t trgBlockNo
= 0;
888 uint8_t trgKeyType
= 0;
889 uint8_t key
[6] = {0, 0, 0, 0, 0, 0};
890 uint8_t trgkey
[6] = {0, 0, 0, 0, 0, 0};
893 ctmp
= param_getchar(Cmd
, 0);
895 if (ctmp
!= 'R' && ctmp
!= 'r' && ctmp
!= 'T' && ctmp
!= 't' && strlen(Cmd
) < 20) {
896 PrintAndLog("Usage:");
897 PrintAndLog(" hf mf hardnested <block number> <key A|B> <key (12 hex symbols)>");
898 PrintAndLog(" <target block number> <target key A|B> [known target key (12 hex symbols)] [w] [s]");
899 PrintAndLog(" or hf mf hardnested r [known target key]");
901 PrintAndLog("Options: ");
902 PrintAndLog(" w: Acquire nonces and write them to binary file nonces.bin");
903 PrintAndLog(" s: Slower acquisition (required by some non standard cards)");
904 PrintAndLog(" r: Read nonces.bin and start attack");
905 PrintAndLog(" iX: set type of SIMD instructions. Without this flag programs autodetect it.");
906 PrintAndLog(" i5: AVX512");
907 PrintAndLog(" i2: AVX2");
908 PrintAndLog(" ia: AVX");
909 PrintAndLog(" is: SSE2");
910 PrintAndLog(" im: MMX");
911 PrintAndLog(" in: none (use CPU regular instruction set)");
913 PrintAndLog(" sample1: hf mf hardnested 0 A FFFFFFFFFFFF 4 A");
914 PrintAndLog(" sample2: hf mf hardnested 0 A FFFFFFFFFFFF 4 A w");
915 PrintAndLog(" sample3: hf mf hardnested 0 A FFFFFFFFFFFF 4 A w s");
916 PrintAndLog(" sample4: hf mf hardnested r");
918 PrintAndLog("Add the known target key to check if it is present in the remaining key space:");
919 PrintAndLog(" sample5: hf mf hardnested 0 A A0A1A2A3A4A5 4 A FFFFFFFFFFFF");
923 bool know_target_key
= false;
924 bool nonce_file_read
= false;
925 bool nonce_file_write
= false;
931 if (ctmp
== 'R' || ctmp
== 'r') {
932 nonce_file_read
= true;
934 if (!param_gethex(Cmd
, 1, trgkey
, 12)) {
935 know_target_key
= true;
938 } else if (ctmp
== 'T' || ctmp
== 't') {
939 tests
= param_get32ex(Cmd
, 1, 100, 10);
941 if (!param_gethex(Cmd
, 2, trgkey
, 12)) {
942 know_target_key
= true;
946 blockNo
= param_get8(Cmd
, 0);
947 ctmp
= param_getchar(Cmd
, 1);
948 if (ctmp
!= 'a' && ctmp
!= 'A' && ctmp
!= 'b' && ctmp
!= 'B') {
949 PrintAndLog("Key type must be A or B");
952 if (ctmp
!= 'A' && ctmp
!= 'a') {
956 if (param_gethex(Cmd
, 2, key
, 12)) {
957 PrintAndLog("Key must include 12 HEX symbols");
961 trgBlockNo
= param_get8(Cmd
, 3);
962 ctmp
= param_getchar(Cmd
, 4);
963 if (ctmp
!= 'a' && ctmp
!= 'A' && ctmp
!= 'b' && ctmp
!= 'B') {
964 PrintAndLog("Target key type must be A or B");
967 if (ctmp
!= 'A' && ctmp
!= 'a') {
973 if (!param_gethex(Cmd
, 5, trgkey
, 12)) {
974 know_target_key
= true;
979 while ((ctmp
= param_getchar(Cmd
, i
))) {
980 if (ctmp
== 's' || ctmp
== 'S') {
982 } else if (ctmp
== 'w' || ctmp
== 'W') {
983 nonce_file_write
= true;
984 } else if (param_getlength(Cmd
, i
) == 2 && ctmp
== 'i') {
987 PrintAndLog("Possible options are w , s and/or iX");
994 SetSIMDInstr(SIMD_AUTO
);
996 while ((ctmp
= param_getchar(Cmd
, iindx
))) {
997 if (param_getlength(Cmd
, iindx
) == 2 && ctmp
== 'i') {
998 switch(param_getchar_indx(Cmd
, 1, iindx
)) {
1000 SetSIMDInstr(SIMD_AVX512
);
1003 SetSIMDInstr(SIMD_AVX2
);
1006 SetSIMDInstr(SIMD_AVX
);
1009 SetSIMDInstr(SIMD_SSE2
);
1012 SetSIMDInstr(SIMD_MMX
);
1015 SetSIMDInstr(SIMD_NONE
);
1018 PrintAndLog("Unknown SIMD type. %c", param_getchar_indx(Cmd
, 1, iindx
));
1026 PrintAndLog("--target block no:%3d, target key type:%c, known target key: 0x%02x%02x%02x%02x%02x%02x%s, file action: %s, Slow: %s, Tests: %d ",
1029 trgkey
[0], trgkey
[1], trgkey
[2], trgkey
[3], trgkey
[4], trgkey
[5],
1030 know_target_key
?"":" (not set)",
1031 nonce_file_write
?"write":nonce_file_read
?"read":"none",
1035 int16_t isOK
= mfnestedhard(blockNo
, keyType
, key
, trgBlockNo
, trgKeyType
, know_target_key
?trgkey
:NULL
, nonce_file_read
, nonce_file_write
, slow
, tests
);
1039 case 1 : PrintAndLog("Error: No response from Proxmark.\n"); break;
1040 case 2 : PrintAndLog("Button pressed. Aborted.\n"); break;
1050 int CmdHF14AMfChk(const char *Cmd
)
1052 if (strlen(Cmd
)<3) {
1053 PrintAndLog("Usage: hf mf chk <block number>|<*card memory> <key type (A/B/?)> [t|d|s|ss] [<key (12 hex symbols)>] [<dic (*.dic)>]");
1054 PrintAndLog(" * - all sectors");
1055 PrintAndLog("card memory - 0 - MINI(320 bytes), 1 - 1K, 2 - 2K, 4 - 4K, <other> - 1K");
1056 PrintAndLog("d - write keys to binary file\n");
1057 PrintAndLog("t - write keys to emulator memory");
1058 PrintAndLog("s - slow execute. timeout 1ms");
1059 PrintAndLog("ss - very slow execute. timeout 5ms");
1060 PrintAndLog(" sample: hf mf chk 0 A 1234567890ab keys.dic");
1061 PrintAndLog(" hf mf chk *1 ? t");
1062 PrintAndLog(" hf mf chk *1 ? d");
1063 PrintAndLog(" hf mf chk *1 ? s");
1064 PrintAndLog(" hf mf chk *1 ? dss");
1069 char filename
[FILE_PATH_SIZE
]={0};
1071 uint8_t *keyBlock
= NULL
, *p
;
1072 uint16_t stKeyBlock
= 20;
1078 uint8_t blockNo
= 0;
1079 uint8_t SectorsCnt
= 0;
1080 uint8_t keyType
= 0;
1082 // timeout in units. (ms * 106)/10 or us*0.0106
1083 uint8_t btimeout14a
= MF_CHKKEYS_DEFTIMEOUT
; // fast by default
1084 bool param3InUse
= false;
1086 bool transferToEml
= 0;
1087 bool createDumpFile
= 0;
1089 sector_t
*e_sector
= NULL
;
1091 keyBlock
= calloc(stKeyBlock
, 6);
1092 if (keyBlock
== NULL
) return 1;
1094 int defaultKeysSize
= MifareDefaultKeysSize
;
1095 for (int defaultKeyCounter
= 0; defaultKeyCounter
< defaultKeysSize
; defaultKeyCounter
++){
1096 num_to_bytes(MifareDefaultKeys
[defaultKeyCounter
], 6, (uint8_t*)(keyBlock
+ defaultKeyCounter
* 6));
1099 if (param_getchar(Cmd
, 0)=='*') {
1100 SectorsCnt
= ParamCardSizeSectors(param_getchar(Cmd
+ 1, 0));
1103 blockNo
= param_get8(Cmd
, 0);
1105 ctmp
= param_getchar(Cmd
, 1);
1106 clen
= param_getlength(Cmd
, 1);
1119 PrintAndLog("Key type must be A , B or ?");
1125 parseParamTDS(Cmd
, 2, &transferToEml
, &createDumpFile
, &btimeout14a
);
1127 param3InUse
= transferToEml
| createDumpFile
| (btimeout14a
!= MF_CHKKEYS_DEFTIMEOUT
);
1129 PrintAndLog("--chk keys. sectors:%2d, block no:%3d, key type:%c, eml:%c, dmp=%c checktimeout=%d us",
1130 SectorsCnt
, blockNo
, keyType
?'B':'A', transferToEml
?'y':'n', createDumpFile
?'y':'n', ((int)btimeout14a
* 10000) / 106);
1132 for (i
= param3InUse
; param_getchar(Cmd
, 2 + i
); i
++) {
1133 if (!param_gethex(Cmd
, 2 + i
, keyBlock
+ 6 * keycnt
, 12)) {
1134 if ( stKeyBlock
- keycnt
< 2) {
1135 p
= realloc(keyBlock
, 6*(stKeyBlock
+=10));
1137 PrintAndLog("Cannot allocate memory for Keys");
1143 PrintAndLog("chk key[%2d] %02x%02x%02x%02x%02x%02x", keycnt
,
1144 (keyBlock
+ 6*keycnt
)[0],(keyBlock
+ 6*keycnt
)[1], (keyBlock
+ 6*keycnt
)[2],
1145 (keyBlock
+ 6*keycnt
)[3], (keyBlock
+ 6*keycnt
)[4], (keyBlock
+ 6*keycnt
)[5], 6);
1148 // May be a dic file
1149 if ( param_getstr(Cmd
, 2 + i
, filename
, sizeof(filename
)) >= FILE_PATH_SIZE
) {
1150 PrintAndLog("File name too long");
1155 if ( (f
= fopen( filename
, "r")) ) {
1156 while( fgets(buf
, sizeof(buf
), f
) ){
1157 if (strlen(buf
) < 12 || buf
[11] == '\n')
1160 while (fgetc(f
) != '\n' && !feof(f
)) ; //goto next line
1162 if( buf
[0]=='#' ) continue; //The line start with # is comment, skip
1164 if (!isxdigit((unsigned char)buf
[0])){
1165 PrintAndLog("File content error. '%s' must include 12 HEX symbols",buf
);
1171 if ( stKeyBlock
- keycnt
< 2) {
1172 p
= realloc(keyBlock
, 6*(stKeyBlock
+=10));
1174 PrintAndLog("Cannot allocate memory for defKeys");
1181 memset(keyBlock
+ 6 * keycnt
, 0, 6);
1182 num_to_bytes(strtoll(buf
, NULL
, 16), 6, keyBlock
+ 6*keycnt
);
1183 PrintAndLog("chk custom key[%2d] %012" PRIx64
, keycnt
, bytes_to_num(keyBlock
+ 6*keycnt
, 6));
1185 memset(buf
, 0, sizeof(buf
));
1189 PrintAndLog("File: %s: not found or locked.", filename
);
1197 // fill with default keys
1199 PrintAndLog("No key specified, trying default keys");
1200 for (;keycnt
< defaultKeysSize
; keycnt
++)
1201 PrintAndLog("chk default key[%2d] %02x%02x%02x%02x%02x%02x", keycnt
,
1202 (keyBlock
+ 6*keycnt
)[0],(keyBlock
+ 6*keycnt
)[1], (keyBlock
+ 6*keycnt
)[2],
1203 (keyBlock
+ 6*keycnt
)[3], (keyBlock
+ 6*keycnt
)[4], (keyBlock
+ 6*keycnt
)[5], 6);
1206 // initialize storage for found keys
1207 e_sector
= calloc(SectorsCnt
, sizeof(sector_t
));
1208 if (e_sector
== NULL
) {
1212 for (uint8_t keyAB
= 0; keyAB
< 2; keyAB
++) {
1213 for (uint16_t sectorNo
= 0; sectorNo
< SectorsCnt
; sectorNo
++) {
1214 e_sector
[sectorNo
].Key
[keyAB
] = 0xffffffffffff;
1215 e_sector
[sectorNo
].foundKey
[keyAB
] = 0;
1220 bool foundAKey
= false;
1221 uint32_t max_keys
= keycnt
> USB_CMD_DATA_SIZE
/ 6 ? USB_CMD_DATA_SIZE
/ 6 : keycnt
;
1223 PrintAndLog("To cancel this operation press the button on the proxmark...");
1225 for (uint32_t c
= 0; c
< keycnt
; c
+= max_keys
) {
1227 uint32_t size
= keycnt
-c
> max_keys
? max_keys
: keycnt
-c
;
1228 res
= mfCheckKeysSec(SectorsCnt
, keyType
, btimeout14a
, true, size
, &keyBlock
[6 * c
], e_sector
); // timeout is (ms * 106)/10 or us*0.0106
1239 PrintAndLog("Command execute timeout");
1243 int keyAB
= keyType
;
1245 for (uint32_t c
= 0; c
< keycnt
; c
+=max_keys
) {
1247 uint32_t size
= keycnt
-c
> max_keys
? max_keys
: keycnt
-c
;
1248 res
= mfCheckKeys(blockNo
, keyAB
& 0x01, true, size
, &keyBlock
[6 * c
], &key64
);
1252 PrintAndLog("Found valid key:[%d:%c]%012" PRIx64
, blockNo
, (keyAB
& 0x01)?'B':'A', key64
);
1256 PrintAndLog("Command execute timeout");
1259 } while(--keyAB
> 0);
1266 PrintAndLog("|---|----------------|---|----------------|---|");
1267 PrintAndLog("|sec|key A |res|key B |res|");
1268 PrintAndLog("|---|----------------|---|----------------|---|");
1269 for (i
= 0; i
< SectorsCnt
; i
++) {
1270 PrintAndLog("|%03d| %012" PRIx64
" | %d | %012" PRIx64
" | %d |", i
,
1271 e_sector
[i
].Key
[0], e_sector
[i
].foundKey
[0], e_sector
[i
].Key
[1], e_sector
[i
].foundKey
[1]);
1273 PrintAndLog("|---|----------------|---|----------------|---|");
1277 PrintAndLog("No valid keys found.");
1280 if (transferToEml
) {
1282 for (uint16_t sectorNo
= 0; sectorNo
< SectorsCnt
; sectorNo
++) {
1283 if (e_sector
[sectorNo
].foundKey
[0] || e_sector
[sectorNo
].foundKey
[1]) {
1284 mfEmlGetMem(block
, FirstBlockOfSector(sectorNo
) + NumBlocksPerSector(sectorNo
) - 1, 1);
1285 for (uint16_t t
= 0; t
< 2; t
++) {
1286 if (e_sector
[sectorNo
].foundKey
[t
]) {
1287 num_to_bytes(e_sector
[sectorNo
].Key
[t
], 6, block
+ t
* 10);
1290 mfEmlSetMem(block
, FirstBlockOfSector(sectorNo
) + NumBlocksPerSector(sectorNo
) - 1, 1);
1293 PrintAndLog("Found keys have been transferred to the emulator memory");
1296 if (createDumpFile
) {
1297 FILE *fkeys
= fopen("dumpkeys.bin","wb");
1298 if (fkeys
== NULL
) {
1299 PrintAndLog("Could not create file dumpkeys.bin");
1305 for (uint8_t t
= 0; t
< 2; t
++) {
1306 for (uint8_t sectorNo
= 0; sectorNo
< SectorsCnt
; sectorNo
++) {
1307 num_to_bytes(e_sector
[sectorNo
].Key
[t
], 6, mkey
);
1308 fwrite(mkey
, 1, 6, fkeys
);
1312 PrintAndLog("Found keys have been dumped to file dumpkeys.bin. 0xffffffffffff has been inserted for unknown keys.");
1321 void readerAttack(nonces_t ar_resp
[], bool setEmulatorMem
, bool doStandardAttack
) {
1322 #define ATTACK_KEY_COUNT 7 // keep same as define in iso14443a.c -> Mifare1ksim()
1323 // cannot be more than 7 or it will overrun c.d.asBytes(512)
1329 st_t sector_trailer
[ATTACK_KEY_COUNT
];
1330 memset(sector_trailer
, 0x00, sizeof(sector_trailer
));
1332 uint8_t stSector
[ATTACK_KEY_COUNT
];
1333 memset(stSector
, 0x00, sizeof(stSector
));
1334 uint8_t key_cnt
[ATTACK_KEY_COUNT
];
1335 memset(key_cnt
, 0x00, sizeof(key_cnt
));
1337 for (uint8_t i
= 0; i
<ATTACK_KEY_COUNT
; i
++) {
1338 if (ar_resp
[i
].ar2
> 0) {
1339 //PrintAndLog("DEBUG: Trying sector %d, cuid %08x, nt %08x, ar %08x, nr %08x, ar2 %08x, nr2 %08x",ar_resp[i].sector, ar_resp[i].cuid,ar_resp[i].nonce,ar_resp[i].ar,ar_resp[i].nr,ar_resp[i].ar2,ar_resp[i].nr2);
1340 if (doStandardAttack
&& mfkey32(ar_resp
[i
], &key
)) {
1341 PrintAndLog(" Found Key%s for sector %02d: [%04x%08x]", (ar_resp
[i
].keytype
) ? "B" : "A", ar_resp
[i
].sector
, (uint32_t) (key
>>32), (uint32_t) (key
&0xFFFFFFFF));
1343 for (uint8_t ii
= 0; ii
<ATTACK_KEY_COUNT
; ii
++) {
1344 if (key_cnt
[ii
]==0 || stSector
[ii
]==ar_resp
[i
].sector
) {
1345 if (ar_resp
[i
].keytype
==0) {
1347 sector_trailer
[ii
].keyA
= key
;
1348 stSector
[ii
] = ar_resp
[i
].sector
;
1353 sector_trailer
[ii
].keyB
= key
;
1354 stSector
[ii
] = ar_resp
[i
].sector
;
1360 } else if (mfkey32_moebius(ar_resp
[i
+ATTACK_KEY_COUNT
], &key
)) {
1361 uint8_t sectorNum
= ar_resp
[i
+ATTACK_KEY_COUNT
].sector
;
1362 uint8_t keyType
= ar_resp
[i
+ATTACK_KEY_COUNT
].keytype
;
1364 PrintAndLog("M-Found Key%s for sector %02d: [%012" PRIx64
"]"
1365 , keyType
? "B" : "A"
1370 for (uint8_t ii
= 0; ii
<ATTACK_KEY_COUNT
; ii
++) {
1371 if (key_cnt
[ii
]==0 || stSector
[ii
]==sectorNum
) {
1374 sector_trailer
[ii
].keyA
= key
;
1375 stSector
[ii
] = sectorNum
;
1380 sector_trailer
[ii
].keyB
= key
;
1381 stSector
[ii
] = sectorNum
;
1391 //set emulator memory for keys
1392 if (setEmulatorMem
) {
1393 for (uint8_t i
= 0; i
<ATTACK_KEY_COUNT
; i
++) {
1395 uint8_t memBlock
[16];
1396 memset(memBlock
, 0x00, sizeof(memBlock
));
1398 memset(cmd1
,0x00,sizeof(cmd1
));
1399 snprintf(cmd1
,sizeof(cmd1
),"%04x%08xFF078069%04x%08x",(uint32_t) (sector_trailer
[i
].keyA
>>32), (uint32_t) (sector_trailer
[i
].keyA
&0xFFFFFFFF),(uint32_t) (sector_trailer
[i
].keyB
>>32), (uint32_t) (sector_trailer
[i
].keyB
&0xFFFFFFFF));
1400 PrintAndLog("Setting Emulator Memory Block %02d: [%s]",stSector
[i
]*4+3, cmd1
);
1401 if (param_gethex(cmd1
, 0, memBlock
, 32)) {
1402 PrintAndLog("block data must include 32 HEX symbols");
1406 UsbCommand c
= {CMD_MIFARE_EML_MEMSET
, {(stSector
[i
]*4+3), 1, 0}};
1407 memcpy(c
.d
.asBytes
, memBlock
, 16);
1408 clearCommandBuffer();
1414 //un-comment to use as well moebius attack
1415 for (uint8_t i = ATTACK_KEY_COUNT; i<ATTACK_KEY_COUNT*2; i++) {
1416 if (ar_resp[i].ar2 > 0) {
1417 if (tryMfk32_moebius(ar_resp[i], &key)) {
1418 PrintAndLog("M-Found Key%s for sector %02d: [%04x%08x]", (ar_resp[i].keytype) ? "B" : "A", ar_resp[i].sector, (uint32_t) (key>>32), (uint32_t) (key &0xFFFFFFFF));
1424 int usage_hf14_mfsim(void) {
1425 PrintAndLog("Usage: hf mf sim [h] [*<card memory>] [u <uid (8, 14, or 20 hex symbols)>] [n <numreads>] [i] [x]");
1426 PrintAndLog("options:");
1427 PrintAndLog(" h (Optional) this help");
1428 PrintAndLog(" card memory: 0 - MINI(320 bytes), 1 - 1K, 2 - 2K, 4 - 4K, <other, default> - 1K");
1429 PrintAndLog(" u (Optional) UID 4 or 7 bytes. If not specified, the UID 4B from emulator memory will be used");
1430 PrintAndLog(" n (Optional) Automatically exit simulation after <numreads> blocks have been read by reader. 0 = infinite");
1431 PrintAndLog(" i (Optional) Interactive, means that console will not be returned until simulation finishes or is aborted");
1432 PrintAndLog(" x (Optional) Crack, performs the 'reader attack', nr/ar attack against a legitimate reader, fishes out the key(s)");
1433 PrintAndLog(" e (Optional) set keys found from 'reader attack' to emulator memory (implies x and i)");
1434 PrintAndLog(" f (Optional) get UIDs to use for 'reader attack' from file 'f <filename.txt>' (implies x and i)");
1435 PrintAndLog(" r (Optional) Generate random nonces instead of sequential nonces. Standard reader attack won't work with this option, only moebius attack works.");
1436 PrintAndLog("samples:");
1437 PrintAndLog(" hf mf sim u 0a0a0a0a");
1438 PrintAndLog(" hf mf sim *4");
1439 PrintAndLog(" hf mf sim u 11223344556677");
1440 PrintAndLog(" hf mf sim f uids.txt");
1441 PrintAndLog(" hf mf sim u 0a0a0a0a e");
1446 int CmdHF14AMfSim(const char *Cmd
) {
1448 uint8_t uid
[7] = {0};
1449 uint8_t exitAfterNReads
= 0;
1452 bool setEmulatorMem
= false;
1453 bool attackFromFile
= false;
1455 char filename
[FILE_PATH_SIZE
];
1456 memset(filename
, 0x00, sizeof(filename
));
1461 bool errors
= false;
1462 uint8_t cardsize
= '1';
1464 while(param_getchar(Cmd
, cmdp
) != 0x00) {
1465 switch(param_getchar(Cmd
, cmdp
)) {
1467 cardsize
= param_getchar(Cmd
+ 1, cmdp
);
1473 default: cardsize
= '1';
1479 setEmulatorMem
= true;
1481 flags
|= FLAG_INTERACTIVE
;
1482 flags
|= FLAG_NR_AR_ATTACK
;
1487 len
= param_getstr(Cmd
, cmdp
+1, filename
, sizeof(filename
));
1489 PrintAndLog("error no filename found");
1492 attackFromFile
= true;
1494 flags
|= FLAG_INTERACTIVE
;
1495 flags
|= FLAG_NR_AR_ATTACK
;
1500 return usage_hf14_mfsim();
1503 flags
|= FLAG_INTERACTIVE
;
1508 exitAfterNReads
= param_get8(Cmd
, cmdp
+1);
1513 flags
|= FLAG_RANDOM_NONCE
;
1518 param_gethex_ex(Cmd
, cmdp
+1, uid
, &uidlen
);
1520 case 14: flags
= FLAG_7B_UID_IN_DATA
; break;
1521 case 8: flags
= FLAG_4B_UID_IN_DATA
; break;
1522 default: return usage_hf14_mfsim();
1528 flags
|= FLAG_NR_AR_ATTACK
;
1532 PrintAndLog("Unknown parameter '%c'", param_getchar(Cmd
, cmdp
));
1539 if(errors
) return usage_hf14_mfsim();
1542 if (attackFromFile
) {
1545 f
= fopen(filename
, "r");
1547 PrintAndLog("File %s not found or locked", filename
);
1550 PrintAndLog("Loading file and simulating. Press keyboard to abort");
1551 while(!feof(f
) && !ukbhit()){
1552 memset(buf
, 0, sizeof(buf
));
1553 memset(uid
, 0, sizeof(uid
));
1555 if (fgets(buf
, sizeof(buf
), f
) == NULL
) {
1556 if (count
> 0) break;
1558 PrintAndLog("File reading error.");
1562 if(!strlen(buf
) && feof(f
)) break;
1564 uidlen
= strlen(buf
)-1;
1566 case 14: flags
|= FLAG_7B_UID_IN_DATA
; break;
1567 case 8: flags
|= FLAG_4B_UID_IN_DATA
; break;
1569 PrintAndLog("uid in file wrong length at %d (length: %d) [%s]",count
, uidlen
, buf
);
1574 for (uint8_t i
= 0; i
< uidlen
; i
+= 2) {
1575 sscanf(&buf
[i
], "%02x", (unsigned int *)&uid
[i
/ 2]);
1578 PrintAndLog("mf sim cardsize: %s, uid: %s, numreads:%d, flags:%d (0x%02x) - press button to abort",
1579 cardsize
== '0' ? "Mini" :
1580 cardsize
== '2' ? "2K" :
1581 cardsize
== '4' ? "4K" : "1K",
1582 flags
& FLAG_4B_UID_IN_DATA
? sprint_hex(uid
,4):
1583 flags
& FLAG_7B_UID_IN_DATA
? sprint_hex(uid
,7): "N/A",
1588 UsbCommand c
= {CMD_SIMULATE_MIFARE_CARD
, {flags
, exitAfterNReads
, cardsize
}};
1589 memcpy(c
.d
.asBytes
, uid
, sizeof(uid
));
1590 clearCommandBuffer();
1593 while (! WaitForResponseTimeout(CMD_ACK
,&resp
,1500)) {
1594 //We're waiting only 1.5 s at a time, otherwise we get the
1595 // annoying message about "Waiting for a response... "
1598 nonces_t ar_resp
[ATTACK_KEY_COUNT
*2];
1599 memcpy(ar_resp
, resp
.d
.asBytes
, sizeof(ar_resp
));
1600 // We can skip the standard attack if we have RANDOM_NONCE set.
1601 readerAttack(ar_resp
, setEmulatorMem
, !(flags
& FLAG_RANDOM_NONCE
));
1602 if ((bool)resp
.arg
[1]) {
1603 PrintAndLog("Device button pressed - quitting");
1611 } else { //not from file
1613 PrintAndLog("mf sim cardsize: %s, uid: %s, numreads:%d, flags:%d (0x%02x) ",
1614 cardsize
== '0' ? "Mini" :
1615 cardsize
== '2' ? "2K" :
1616 cardsize
== '4' ? "4K" : "1K",
1617 flags
& FLAG_4B_UID_IN_DATA
? sprint_hex(uid
,4):
1618 flags
& FLAG_7B_UID_IN_DATA
? sprint_hex(uid
,7): "N/A",
1623 UsbCommand c
= {CMD_SIMULATE_MIFARE_CARD
, {flags
, exitAfterNReads
, cardsize
}};
1624 memcpy(c
.d
.asBytes
, uid
, sizeof(uid
));
1625 clearCommandBuffer();
1628 if(flags
& FLAG_INTERACTIVE
) {
1629 PrintAndLog("Press pm3-button to abort simulation");
1630 while(! WaitForResponseTimeout(CMD_ACK
, &resp
, 1500)) {
1631 //We're waiting only 1.5 s at a time, otherwise we get the
1632 // annoying message about "Waiting for a response... "
1635 if (flags
& FLAG_NR_AR_ATTACK
) {
1636 nonces_t ar_resp
[ATTACK_KEY_COUNT
*2];
1637 memcpy(ar_resp
, resp
.d
.asBytes
, sizeof(ar_resp
));
1638 // We can skip the standard attack if we have RANDOM_NONCE set.
1639 readerAttack(ar_resp
, setEmulatorMem
, !(flags
& FLAG_RANDOM_NONCE
));
1647 int CmdHF14AMfDbg(const char *Cmd
)
1649 int dbgMode
= param_get32ex(Cmd
, 0, 0, 10);
1651 PrintAndLog("Max debug mode parameter is 4 \n");
1654 if (strlen(Cmd
) < 1 || !param_getchar(Cmd
, 0) || dbgMode
> 4) {
1655 PrintAndLog("Usage: hf mf dbg <debug level>");
1656 PrintAndLog(" 0 - no debug messages");
1657 PrintAndLog(" 1 - error messages");
1658 PrintAndLog(" 2 - plus information messages");
1659 PrintAndLog(" 3 - plus debug messages");
1660 PrintAndLog(" 4 - print even debug messages in timing critical functions");
1661 PrintAndLog(" Note: this option therefore may cause malfunction itself");
1665 UsbCommand c
= {CMD_MIFARE_SET_DBGMODE
, {dbgMode
, 0, 0}};
1671 int CmdHF14AMfEGet(const char *Cmd
)
1673 uint8_t blockNo
= 0;
1674 uint8_t data
[16] = {0x00};
1676 if (strlen(Cmd
) < 1 || param_getchar(Cmd
, 0) == 'h') {
1677 PrintAndLog("Usage: hf mf eget <block number>");
1678 PrintAndLog(" sample: hf mf eget 0 ");
1682 blockNo
= param_get8(Cmd
, 0);
1685 if (!mfEmlGetMem(data
, blockNo
, 1)) {
1686 PrintAndLog("data[%3d]:%s", blockNo
, sprint_hex(data
, 16));
1688 PrintAndLog("Command execute timeout");
1694 int CmdHF14AMfEClear(const char *Cmd
)
1696 if (param_getchar(Cmd
, 0) == 'h') {
1697 PrintAndLog("Usage: hf mf eclr");
1698 PrintAndLog("It set card emulator memory to empty data blocks and key A/B FFFFFFFFFFFF \n");
1702 UsbCommand c
= {CMD_MIFARE_EML_MEMCLR
, {0, 0, 0}};
1708 int CmdHF14AMfESet(const char *Cmd
)
1710 uint8_t memBlock
[16];
1711 uint8_t blockNo
= 0;
1713 memset(memBlock
, 0x00, sizeof(memBlock
));
1715 if (strlen(Cmd
) < 3 || param_getchar(Cmd
, 0) == 'h') {
1716 PrintAndLog("Usage: hf mf eset <block number> <block data (32 hex symbols)>");
1717 PrintAndLog(" sample: hf mf eset 1 000102030405060708090a0b0c0d0e0f ");
1721 blockNo
= param_get8(Cmd
, 0);
1723 if (param_gethex(Cmd
, 1, memBlock
, 32)) {
1724 PrintAndLog("block data must include 32 HEX symbols");
1729 return mfEmlSetMem(memBlock
, blockNo
, 1);
1733 int CmdHF14AMfELoad(const char *Cmd
)
1736 char filename
[FILE_PATH_SIZE
];
1737 char *fnameptr
= filename
;
1738 char buf
[64] = {0x00};
1739 uint8_t buf8
[64] = {0x00};
1740 int i
, len
, blockNum
, numBlocks
;
1741 int nameParamNo
= 1;
1743 char ctmp
= param_getchar(Cmd
, 0);
1745 if ( ctmp
== 'h' || ctmp
== 0x00) {
1746 PrintAndLog("It loads emul dump from the file `filename.eml`");
1747 PrintAndLog("Usage: hf mf eload [card memory] <file name w/o `.eml`>");
1748 PrintAndLog(" [card memory]: 0 = 320 bytes (Mifare Mini), 1 = 1K (default), 2 = 2K, 4 = 4K");
1750 PrintAndLog(" sample: hf mf eload filename");
1751 PrintAndLog(" hf mf eload 4 filename");
1756 case '0' : numBlocks
= 5*4; break;
1758 case '\0': numBlocks
= 16*4; break;
1759 case '2' : numBlocks
= 32*4; break;
1760 case '4' : numBlocks
= 256; break;
1767 len
= param_getstr(Cmd
, nameParamNo
, filename
, sizeof(filename
));
1769 if (len
> FILE_PATH_SIZE
- 5) len
= FILE_PATH_SIZE
- 5;
1773 sprintf(fnameptr
, ".eml");
1776 f
= fopen(filename
, "r");
1778 PrintAndLog("File %s not found or locked", filename
);
1784 memset(buf
, 0, sizeof(buf
));
1786 if (fgets(buf
, sizeof(buf
), f
) == NULL
) {
1788 if (blockNum
>= numBlocks
) break;
1790 PrintAndLog("File reading error.");
1795 if (strlen(buf
) < 32){
1796 if(strlen(buf
) && feof(f
))
1798 PrintAndLog("File content error. Block data must include 32 HEX symbols");
1803 for (i
= 0; i
< 32; i
+= 2) {
1804 sscanf(&buf
[i
], "%02x", (unsigned int *)&buf8
[i
/ 2]);
1807 if (mfEmlSetMem(buf8
, blockNum
, 1)) {
1808 PrintAndLog("Cant set emul block: %3d", blockNum
);
1815 if (blockNum
>= numBlocks
) break;
1820 if ((blockNum
!= numBlocks
)) {
1821 PrintAndLog("File content error. Got %d must be %d blocks.",blockNum
, numBlocks
);
1824 PrintAndLog("Loaded %d blocks from file: %s", blockNum
, filename
);
1829 int CmdHF14AMfESave(const char *Cmd
)
1832 char filename
[FILE_PATH_SIZE
];
1833 char * fnameptr
= filename
;
1835 int i
, j
, len
, numBlocks
;
1836 int nameParamNo
= 1;
1838 memset(filename
, 0, sizeof(filename
));
1839 memset(buf
, 0, sizeof(buf
));
1841 char ctmp
= param_getchar(Cmd
, 0);
1843 if ( ctmp
== 'h' || ctmp
== 'H') {
1844 PrintAndLog("It saves emul dump into the file `filename.eml` or `cardID.eml`");
1845 PrintAndLog(" Usage: hf mf esave [card memory] [file name w/o `.eml`]");
1846 PrintAndLog(" [card memory]: 0 = 320 bytes (Mifare Mini), 1 = 1K (default), 2 = 2K, 4 = 4K");
1848 PrintAndLog(" sample: hf mf esave ");
1849 PrintAndLog(" hf mf esave 4");
1850 PrintAndLog(" hf mf esave 4 filename");
1855 case '0' : numBlocks
= 5*4; break;
1857 case '\0': numBlocks
= 16*4; break;
1858 case '2' : numBlocks
= 32*4; break;
1859 case '4' : numBlocks
= 256; break;
1866 len
= param_getstr(Cmd
,nameParamNo
,filename
,sizeof(filename
));
1868 if (len
> FILE_PATH_SIZE
- 5) len
= FILE_PATH_SIZE
- 5;
1870 // user supplied filename?
1872 // get filename (UID from memory)
1873 if (mfEmlGetMem(buf
, 0, 1)) {
1874 PrintAndLog("Can\'t get UID from block: %d", 0);
1875 len
= sprintf(fnameptr
, "dump");
1879 for (j
= 0; j
< 7; j
++, fnameptr
+= 2)
1880 sprintf(fnameptr
, "%02X", buf
[j
]);
1886 // add file extension
1887 sprintf(fnameptr
, ".eml");
1890 f
= fopen(filename
, "w+");
1893 PrintAndLog("Can't open file %s ", filename
);
1898 for (i
= 0; i
< numBlocks
; i
++) {
1899 if (mfEmlGetMem(buf
, i
, 1)) {
1900 PrintAndLog("Cant get block: %d", i
);
1903 for (j
= 0; j
< 16; j
++)
1904 fprintf(f
, "%02X", buf
[j
]);
1909 PrintAndLog("Saved %d blocks to file: %s", numBlocks
, filename
);
1915 int CmdHF14AMfECFill(const char *Cmd
)
1917 uint8_t keyType
= 0;
1918 uint8_t numSectors
= 16;
1920 if (strlen(Cmd
) < 1 || param_getchar(Cmd
, 0) == 'h') {
1921 PrintAndLog("Usage: hf mf ecfill <key A/B> [card memory]");
1922 PrintAndLog(" [card memory]: 0 = 320 bytes (Mifare Mini), 1 = 1K (default), 2 = 2K, 4 = 4K");
1924 PrintAndLog("samples: hf mf ecfill A");
1925 PrintAndLog(" hf mf ecfill A 4");
1926 PrintAndLog("Read card and transfer its data to emulator memory.");
1927 PrintAndLog("Keys must be laid in the emulator memory. \n");
1931 char ctmp
= param_getchar(Cmd
, 0);
1932 if (ctmp
!= 'a' && ctmp
!= 'A' && ctmp
!= 'b' && ctmp
!= 'B') {
1933 PrintAndLog("Key type must be A or B");
1936 if (ctmp
!= 'A' && ctmp
!= 'a') keyType
= 1;
1938 ctmp
= param_getchar(Cmd
, 1);
1940 case '0' : numSectors
= 5; break;
1942 case '\0': numSectors
= 16; break;
1943 case '2' : numSectors
= 32; break;
1944 case '4' : numSectors
= 40; break;
1945 default: numSectors
= 16;
1948 printf("--params: numSectors: %d, keyType:%d\n", numSectors
, keyType
);
1949 UsbCommand c
= {CMD_MIFARE_EML_CARDLOAD
, {numSectors
, keyType
, 0}};
1955 int CmdHF14AMfEKeyPrn(const char *Cmd
)
1958 uint8_t numSectors
= 16;
1960 uint64_t keyA
, keyB
;
1961 bool createDumpFile
= false;
1963 if (param_getchar(Cmd
, 0) == 'h') {
1964 PrintAndLog("It prints the keys loaded in the emulator memory");
1965 PrintAndLog("Usage: hf mf ekeyprn [card memory] [d]");
1966 PrintAndLog(" [card memory]: 0 = 320 bytes (Mifare Mini), 1 = 1K (default), 2 = 2K, 4 = 4K");
1967 PrintAndLog(" [d] : write keys to binary file dumpkeys.bin");
1969 PrintAndLog(" sample: hf mf ekeyprn 1");
1974 while (param_getchar(Cmd
, cmdp
) != 0x00) {
1975 switch (param_getchar(Cmd
, cmdp
)) {
1976 case '0' : numSectors
= 5; break;
1978 case '\0': numSectors
= 16; break;
1979 case '2' : numSectors
= 32; break;
1980 case '4' : numSectors
= 40; break;
1982 case 'D' : createDumpFile
= true; break;
1987 PrintAndLog("|---|----------------|----------------|");
1988 PrintAndLog("|sec|key A |key B |");
1989 PrintAndLog("|---|----------------|----------------|");
1990 for (i
= 0; i
< numSectors
; i
++) {
1991 if (mfEmlGetMem(data
, FirstBlockOfSector(i
) + NumBlocksPerSector(i
) - 1, 1)) {
1992 PrintAndLog("error get block %d", FirstBlockOfSector(i
) + NumBlocksPerSector(i
) - 1);
1995 keyA
= bytes_to_num(data
, 6);
1996 keyB
= bytes_to_num(data
+ 10, 6);
1997 PrintAndLog("|%03d| %012" PRIx64
" | %012" PRIx64
" |", i
, keyA
, keyB
);
1999 PrintAndLog("|---|----------------|----------------|");
2002 if (createDumpFile
) {
2004 if ((fkeys
= fopen("dumpkeys.bin","wb")) == NULL
) {
2005 PrintAndLog("Could not create file dumpkeys.bin");
2008 PrintAndLog("Printing keys to binary file dumpkeys.bin...");
2009 for(i
= 0; i
< numSectors
; i
++) {
2010 if (mfEmlGetMem(data
, FirstBlockOfSector(i
) + NumBlocksPerSector(i
) - 1, 1)) {
2011 PrintAndLog("error get block %d", FirstBlockOfSector(i
) + NumBlocksPerSector(i
) - 1);
2014 fwrite(data
+6, 1, 6, fkeys
);
2016 for(i
= 0; i
< numSectors
; i
++) {
2017 if (mfEmlGetMem(data
, FirstBlockOfSector(i
) + NumBlocksPerSector(i
) - 1, 1)) {
2018 PrintAndLog("error get block %d", FirstBlockOfSector(i
) + NumBlocksPerSector(i
) - 1);
2021 fwrite(data
+10, 1, 6, fkeys
);
2030 int CmdHF14AMfCSetUID(const char *Cmd
)
2032 uint8_t uid
[8] = {0x00};
2033 uint8_t oldUid
[8] = {0x00};
2034 uint8_t atqa
[2] = {0x00};
2035 uint8_t sak
[1] = {0x00};
2036 uint8_t atqaPresent
= 0;
2039 uint8_t needHelp
= 0;
2042 if (param_getchar(Cmd
, 0) && param_gethex(Cmd
, 0, uid
, 8)) {
2043 PrintAndLog("UID must include 8 HEX symbols");
2047 if (param_getlength(Cmd
, 1) > 1 && param_getlength(Cmd
, 2) > 1) {
2051 if (param_gethex(Cmd
, 1, atqa
, 4)) {
2052 PrintAndLog("ATQA must include 4 HEX symbols");
2056 if (param_gethex(Cmd
, 2, sak
, 2)) {
2057 PrintAndLog("SAK must include 2 HEX symbols");
2062 while(param_getchar(Cmd
, cmdp
) != 0x00)
2064 switch(param_getchar(Cmd
, cmdp
))
2071 PrintAndLog("ERROR: Unknown parameter '%c'", param_getchar(Cmd
, cmdp
));
2078 if (strlen(Cmd
) < 1 || needHelp
) {
2080 PrintAndLog("Usage: hf mf csetuid <UID 8 hex symbols> [ATQA 4 hex symbols SAK 2 hex symbols]");
2081 PrintAndLog("sample: hf mf csetuid 01020304");
2082 PrintAndLog("sample: hf mf csetuid 01020304 0004 08");
2083 PrintAndLog("Set UID, ATQA, and SAK for magic Chinese card (only works with such cards)");
2087 PrintAndLog("uid:%s", sprint_hex(uid
, 4));
2089 PrintAndLog("--atqa:%s sak:%02x", sprint_hex(atqa
, 2), sak
[0]);
2092 res
= mfCSetUID(uid
, (atqaPresent
)?atqa
:NULL
, (atqaPresent
)?sak
:NULL
, oldUid
);
2094 PrintAndLog("Can't set UID. Error=%d", res
);
2098 PrintAndLog("old UID:%s", sprint_hex(oldUid
, 4));
2099 PrintAndLog("new UID:%s", sprint_hex(uid
, 4));
2103 int CmdHF14AMfCWipe(const char *Cmd
)
2106 int numBlocks
= 16 * 4;
2107 bool wipeCard
= false;
2108 bool fillCard
= false;
2110 if (strlen(Cmd
) < 1 || param_getchar(Cmd
, 0) == 'h') {
2111 PrintAndLog("Usage: hf mf cwipe [card size] [w] [f]");
2112 PrintAndLog("sample: hf mf cwipe 1 w f");
2113 PrintAndLog("[card size]: 0 = 320 bytes (Mifare Mini), 1 = 1K (default), 2 = 2K, 4 = 4K");
2114 PrintAndLog("w - Wipe magic Chinese card (only works with gen:1a cards)");
2115 PrintAndLog("f - Fill the card with default data and keys (works with gen:1a and gen:1b cards only)");
2119 gen
= mfCIdentify();
2120 if ((gen
!= 1) && (gen
!= 2))
2123 numBlocks
= ParamCardSizeBlocks(param_getchar(Cmd
, 0));
2126 while(param_getchar(Cmd
, cmdp
) != 0x00){
2127 switch(param_getchar(Cmd
, cmdp
)) {
2142 if (!wipeCard
&& !fillCard
)
2145 PrintAndLog("--blocks count:%2d wipe:%c fill:%c", numBlocks
, (wipeCard
)?'y':'n', (fillCard
)?'y':'n');
2148 /* generation 1b magic card */
2150 PrintAndLog("WARNING: can't wipe magic card 1b generation");
2152 res
= mfCWipe(numBlocks
, true, false, fillCard
);
2154 /* generation 1a magic card by default */
2155 res
= mfCWipe(numBlocks
, false, wipeCard
, fillCard
);
2159 PrintAndLog("Can't wipe. error=%d", res
);
2166 int CmdHF14AMfCSetBlk(const char *Cmd
)
2168 uint8_t memBlock
[16] = {0x00};
2169 uint8_t blockNo
= 0;
2170 bool wipeCard
= false;
2173 if (strlen(Cmd
) < 1 || param_getchar(Cmd
, 0) == 'h') {
2174 PrintAndLog("Usage: hf mf csetblk <block number> <block data (32 hex symbols)> [w]");
2175 PrintAndLog("sample: hf mf csetblk 1 01020304050607080910111213141516");
2176 PrintAndLog("Set block data for magic Chinese card (only works with such cards)");
2177 PrintAndLog("If you also want wipe the card then add 'w' at the end of the command line");
2181 gen
= mfCIdentify();
2182 if ((gen
!= 1) && (gen
!= 2))
2185 blockNo
= param_get8(Cmd
, 0);
2187 if (param_gethex(Cmd
, 1, memBlock
, 32)) {
2188 PrintAndLog("block data must include 32 HEX symbols");
2192 char ctmp
= param_getchar(Cmd
, 2);
2193 wipeCard
= (ctmp
== 'w' || ctmp
== 'W');
2194 PrintAndLog("--block number:%2d data:%s", blockNo
, sprint_hex(memBlock
, 16));
2197 /* generation 1b magic card */
2198 res
= mfCSetBlock(blockNo
, memBlock
, NULL
, wipeCard
, CSETBLOCK_SINGLE_OPER
| CSETBLOCK_MAGIC_1B
);
2200 /* generation 1a magic card by default */
2201 res
= mfCSetBlock(blockNo
, memBlock
, NULL
, wipeCard
, CSETBLOCK_SINGLE_OPER
);
2205 PrintAndLog("Can't write block. error=%d", res
);
2212 int CmdHF14AMfCLoad(const char *Cmd
)
2215 char filename
[FILE_PATH_SIZE
] = {0x00};
2216 char * fnameptr
= filename
;
2217 char buf
[256] = {0x00};
2218 uint8_t buf8
[256] = {0x00};
2219 uint8_t fillFromEmulator
= 0;
2220 int i
, len
, blockNum
, flags
= 0, gen
= 0, numblock
= 64;
2222 if (param_getchar(Cmd
, 0) == 'h' || param_getchar(Cmd
, 0)== 0x00) {
2223 PrintAndLog("It loads magic Chinese card from the file `filename.eml`");
2224 PrintAndLog("or from emulator memory (option `e`). 4K card: (option `4`)");
2225 PrintAndLog("Usage: hf mf cload [file name w/o `.eml`][e][4]");
2226 PrintAndLog(" or: hf mf cload e [4]");
2227 PrintAndLog("Sample: hf mf cload filename");
2228 PrintAndLog(" hf mf cload filname 4");
2229 PrintAndLog(" hf mf cload e");
2230 PrintAndLog(" hf mf cload e 4");
2234 char ctmp
= param_getchar(Cmd
, 0);
2235 if (ctmp
== 'e' || ctmp
== 'E') fillFromEmulator
= 1;
2236 ctmp
= param_getchar(Cmd
, 1);
2237 if (ctmp
== '4') numblock
= 256;
2239 gen
= mfCIdentify();
2240 PrintAndLog("Loading magic mifare %dK", numblock
== 256 ? 4:1);
2242 if (fillFromEmulator
) {
2243 for (blockNum
= 0; blockNum
< numblock
; blockNum
+= 1) {
2244 if (mfEmlGetMem(buf8
, blockNum
, 1)) {
2245 PrintAndLog("Cant get block: %d", blockNum
);
2248 if (blockNum
== 0) flags
= CSETBLOCK_INIT_FIELD
+ CSETBLOCK_WUPC
; // switch on field and send magic sequence
2249 if (blockNum
== 1) flags
= 0; // just write
2250 if (blockNum
== numblock
- 1) flags
= CSETBLOCK_HALT
+ CSETBLOCK_RESET_FIELD
; // Done. Magic Halt and switch off field.
2253 /* generation 1b magic card */
2254 flags
|= CSETBLOCK_MAGIC_1B
;
2255 if (mfCSetBlock(blockNum
, buf8
, NULL
, 0, flags
)) {
2256 PrintAndLog("Cant set magic card block: %d", blockNum
);
2262 param_getstr(Cmd
, 0, filename
, sizeof(filename
));
2264 len
= strlen(filename
);
2265 if (len
> FILE_PATH_SIZE
- 5) len
= FILE_PATH_SIZE
- 5;
2267 //memcpy(filename, Cmd, len);
2270 sprintf(fnameptr
, ".eml");
2273 f
= fopen(filename
, "r");
2275 PrintAndLog("File not found or locked.");
2282 memset(buf
, 0, sizeof(buf
));
2284 if (fgets(buf
, sizeof(buf
), f
) == NULL
) {
2286 PrintAndLog("File reading error.");
2290 if (strlen(buf
) < 32) {
2291 if(strlen(buf
) && feof(f
))
2293 PrintAndLog("File content error. Block data must include 32 HEX symbols");
2297 for (i
= 0; i
< 32; i
+= 2)
2298 sscanf(&buf
[i
], "%02x", (unsigned int *)&buf8
[i
/ 2]);
2300 if (blockNum
== 0) flags
= CSETBLOCK_INIT_FIELD
+ CSETBLOCK_WUPC
; // switch on field and send magic sequence
2301 if (blockNum
== 1) flags
= 0; // just write
2302 if (blockNum
== numblock
- 1) flags
= CSETBLOCK_HALT
+ CSETBLOCK_RESET_FIELD
; // Done. Switch off field.
2305 /* generation 1b magic card */
2306 flags
|= CSETBLOCK_MAGIC_1B
;
2307 if (mfCSetBlock(blockNum
, buf8
, NULL
, 0, flags
)) {
2308 PrintAndLog("Can't set magic card block: %d", blockNum
);
2314 if (blockNum
>= numblock
) break; // magic card type - mifare 1K 64 blocks, mifare 4k 256 blocks
2318 //if (blockNum != 16 * 4 && blockNum != 32 * 4 + 8 * 16){
2319 if (blockNum
!= numblock
){
2320 PrintAndLog("File content error. There must be %d blocks", numblock
);
2323 PrintAndLog("Loaded from file: %s", filename
);
2329 int CmdHF14AMfCGetBlk(const char *Cmd
) {
2330 uint8_t memBlock
[16];
2331 uint8_t blockNo
= 0;
2333 memset(memBlock
, 0x00, sizeof(memBlock
));
2335 if (strlen(Cmd
) < 1 || param_getchar(Cmd
, 0) == 'h') {
2336 PrintAndLog("Usage: hf mf cgetblk <block number>");
2337 PrintAndLog("sample: hf mf cgetblk 1");
2338 PrintAndLog("Get block data from magic Chinese card (only works with such cards)\n");
2342 gen
= mfCIdentify();
2344 blockNo
= param_get8(Cmd
, 0);
2346 PrintAndLog("--block number:%2d ", blockNo
);
2349 /* generation 1b magic card */
2350 res
= mfCGetBlock(blockNo
, memBlock
, CSETBLOCK_SINGLE_OPER
| CSETBLOCK_MAGIC_1B
);
2352 /* generation 1a magic card by default */
2353 res
= mfCGetBlock(blockNo
, memBlock
, CSETBLOCK_SINGLE_OPER
);
2356 PrintAndLog("Can't read block. error=%d", res
);
2360 PrintAndLog("block data:%s", sprint_hex(memBlock
, 16));
2362 if (mfIsSectorTrailer(blockNo
)) {
2363 PrintAndLogEx(NORMAL
, "Trailer decoded:");
2364 PrintAndLogEx(NORMAL
, "Key A: %s", sprint_hex_inrow(memBlock
, 6));
2365 PrintAndLogEx(NORMAL
, "Key B: %s", sprint_hex_inrow(&memBlock
[10], 6));
2366 int bln
= mfFirstBlockOfSector(mfSectorNum(blockNo
));
2367 int blinc
= (mfNumBlocksPerSector(mfSectorNum(blockNo
)) > 4) ? 5 : 1;
2368 for (int i
= 0; i
< 4; i
++) {
2369 PrintAndLogEx(NORMAL
, "Access block %d%s: %s", bln
, ((blinc
> 1) && (i
< 3) ? "+" : "") , mfGetAccessConditionsDesc(i
, &memBlock
[6]));
2372 PrintAndLogEx(NORMAL
, "UserData: %s", sprint_hex_inrow(&memBlock
[9], 1));
2378 int CmdHF14AMfCGetSc(const char *Cmd
) {
2379 uint8_t memBlock
[16] = {0x00};
2380 uint8_t sectorNo
= 0;
2381 int i
, res
, flags
, gen
= 0, baseblock
= 0, sect_size
= 4;
2383 if (strlen(Cmd
) < 1 || param_getchar(Cmd
, 0) == 'h') {
2384 PrintAndLog("Usage: hf mf cgetsc <sector number>");
2385 PrintAndLog("sample: hf mf cgetsc 0");
2386 PrintAndLog("Get sector data from magic Chinese card (only works with such cards)\n");
2390 sectorNo
= param_get8(Cmd
, 0);
2392 if (sectorNo
> 39) {
2393 PrintAndLog("Sector number must be in [0..15] in MIFARE classic 1k and [0..39] in MIFARE classic 4k.");
2397 PrintAndLog("--sector number:%d ", sectorNo
);
2399 gen
= mfCIdentify();
2401 flags
= CSETBLOCK_INIT_FIELD
+ CSETBLOCK_WUPC
;
2402 if (sectorNo
< 32 ) {
2403 baseblock
= sectorNo
* 4;
2405 baseblock
= 128 + 16 * (sectorNo
- 32);
2408 if (sectorNo
> 31) sect_size
= 16;
2410 for (i
= 0; i
< sect_size
; i
++) {
2411 if (i
== 1) flags
= 0;
2412 if (i
== sect_size
- 1) flags
= CSETBLOCK_HALT
+ CSETBLOCK_RESET_FIELD
;
2415 /* generation 1b magic card */
2416 flags
|= CSETBLOCK_MAGIC_1B
;
2418 res
= mfCGetBlock(baseblock
+ i
, memBlock
, flags
);
2420 PrintAndLog("Can't read block. %d error=%d", baseblock
+ i
, res
);
2424 PrintAndLog("block %3d data:%s", baseblock
+ i
, sprint_hex(memBlock
, 16));
2426 if (mfIsSectorTrailer(baseblock
+ i
)) {
2427 PrintAndLogEx(NORMAL
, "Trailer decoded:");
2428 PrintAndLogEx(NORMAL
, "Key A: %s", sprint_hex_inrow(memBlock
, 6));
2429 PrintAndLogEx(NORMAL
, "Key B: %s", sprint_hex_inrow(&memBlock
[10], 6));
2430 int bln
= baseblock
;
2431 int blinc
= (mfNumBlocksPerSector(sectorNo
) > 4) ? 5 : 1;
2432 for (int i
= 0; i
< 4; i
++) {
2433 PrintAndLogEx(NORMAL
, "Access block %d%s: %s", bln
, ((blinc
> 1) && (i
< 3) ? "+" : "") , mfGetAccessConditionsDesc(i
, &memBlock
[6]));
2436 PrintAndLogEx(NORMAL
, "UserData: %s", sprint_hex_inrow(&memBlock
[9], 1));
2443 int CmdHF14AMfCSave(const char *Cmd
) {
2446 char filename
[FILE_PATH_SIZE
] = {0x00};
2447 char * fnameptr
= filename
;
2448 uint8_t fillFromEmulator
= 0;
2449 uint8_t buf
[256] = {0x00};
2450 int i
, j
, len
, flags
, gen
= 0, numblock
= 64;
2452 // memset(filename, 0, sizeof(filename));
2453 // memset(buf, 0, sizeof(buf));
2455 if (param_getchar(Cmd
, 0) == 'h') {
2456 PrintAndLog("It saves `magic Chinese` card dump into the file `filename.eml` or `cardID.eml`");
2457 PrintAndLog("or into emulator memory (option `e`). 4K card: (option `4`)");
2458 PrintAndLog("Usage: hf mf csave [file name w/o `.eml`][e][4]");
2459 PrintAndLog("Sample: hf mf csave ");
2460 PrintAndLog(" hf mf csave filename");
2461 PrintAndLog(" hf mf csave e");
2462 PrintAndLog(" hf mf csave 4");
2463 PrintAndLog(" hf mf csave filename 4");
2464 PrintAndLog(" hf mf csave e 4");
2468 char ctmp
= param_getchar(Cmd
, 0);
2469 if (ctmp
== 'e' || ctmp
== 'E') fillFromEmulator
= 1;
2470 if (ctmp
== '4') numblock
= 256;
2471 ctmp
= param_getchar(Cmd
, 1);
2472 if (ctmp
== '4') numblock
= 256;
2474 gen
= mfCIdentify();
2475 PrintAndLog("Saving magic mifare %dK", numblock
== 256 ? 4:1);
2477 if (fillFromEmulator
) {
2478 // put into emulator
2479 flags
= CSETBLOCK_INIT_FIELD
+ CSETBLOCK_WUPC
;
2480 for (i
= 0; i
< numblock
; i
++) {
2481 if (i
== 1) flags
= 0;
2482 if (i
== numblock
- 1) flags
= CSETBLOCK_HALT
+ CSETBLOCK_RESET_FIELD
;
2485 /* generation 1b magic card */
2486 flags
|= CSETBLOCK_MAGIC_1B
;
2488 if (mfCGetBlock(i
, buf
, flags
)) {
2489 PrintAndLog("Cant get block: %d", i
);
2493 if (mfEmlSetMem(buf
, i
, 1)) {
2494 PrintAndLog("Cant set emul block: %d", i
);
2500 param_getstr(Cmd
, 0, filename
, sizeof(filename
));
2502 len
= strlen(filename
);
2503 if (len
> FILE_PATH_SIZE
- 5) len
= FILE_PATH_SIZE
- 5;
2505 ctmp
= param_getchar(Cmd
, 0);
2506 if (len
< 1 || (ctmp
== '4')) {
2509 flags
= CSETBLOCK_SINGLE_OPER
;
2511 /* generation 1b magic card */
2512 flags
|= CSETBLOCK_MAGIC_1B
;
2513 if (mfCGetBlock(0, buf
, flags
)) {
2514 PrintAndLog("Cant get block: %d", 0);
2515 len
= sprintf(fnameptr
, "dump");
2519 for (j
= 0; j
< 7; j
++, fnameptr
+= 2)
2520 sprintf(fnameptr
, "%02x", buf
[j
]);
2523 //memcpy(filename, Cmd, len);
2527 sprintf(fnameptr
, ".eml");
2530 f
= fopen(filename
, "w+");
2533 PrintAndLog("File not found or locked.");
2538 flags
= CSETBLOCK_INIT_FIELD
+ CSETBLOCK_WUPC
;
2539 for (i
= 0; i
< numblock
; i
++) {
2540 if (i
== 1) flags
= 0;
2541 if (i
== numblock
- 1) flags
= CSETBLOCK_HALT
+ CSETBLOCK_RESET_FIELD
;
2544 /* generation 1b magic card */
2545 flags
|= CSETBLOCK_MAGIC_1B
;
2546 if (mfCGetBlock(i
, buf
, flags
)) {
2547 PrintAndLog("Cant get block: %d", i
);
2550 for (j
= 0; j
< 16; j
++)
2551 fprintf(f
, "%02x", buf
[j
]);
2556 PrintAndLog("Saved to file: %s", filename
);
2563 int CmdHF14AMfSniff(const char *Cmd
){
2565 bool wantLogToFile
= 0;
2566 bool wantDecrypt
= 0;
2567 //bool wantSaveToEml = 0; TODO
2568 bool wantSaveToEmlFile
= 0;
2579 uint8_t atqa
[2] = {0x00};
2582 uint8_t *buf
= NULL
;
2583 uint16_t bufsize
= 0;
2584 uint8_t *bufPtr
= NULL
;
2587 char ctmp
= param_getchar(Cmd
, 0);
2588 if ( ctmp
== 'h' || ctmp
== 'H' ) {
2589 PrintAndLog("It continuously gets data from the field and saves it to: log, emulator, emulator file.");
2590 PrintAndLog("You can specify:");
2591 PrintAndLog(" l - save encrypted sequence to logfile `uid.log`");
2592 PrintAndLog(" d - decrypt sequence and put it to log file `uid.log`");
2593 PrintAndLog(" n/a e - decrypt sequence, collect read and write commands and save the result of the sequence to emulator memory");
2594 PrintAndLog(" f - decrypt sequence, collect read and write commands and save the result of the sequence to emulator dump file `uid.eml`");
2595 PrintAndLog("Usage: hf mf sniff [l][d][e][f]");
2596 PrintAndLog(" sample: hf mf sniff l d e");
2600 for (int i
= 0; i
< 4; i
++) {
2601 ctmp
= param_getchar(Cmd
, i
);
2602 if (ctmp
== 'l' || ctmp
== 'L') wantLogToFile
= true;
2603 if (ctmp
== 'd' || ctmp
== 'D') wantDecrypt
= true;
2604 //if (ctmp == 'e' || ctmp == 'E') wantSaveToEml = true; TODO
2605 if (ctmp
== 'f' || ctmp
== 'F') wantSaveToEmlFile
= true;
2608 printf("-------------------------------------------------------------------------\n");
2609 printf("Executing command. \n");
2610 printf("Press the key on the proxmark3 device to abort both proxmark3 and client.\n");
2611 printf("Press the key on pc keyboard to abort the client.\n");
2612 printf("-------------------------------------------------------------------------\n");
2614 UsbCommand c
= {CMD_MIFARE_SNIFFER
, {0, 0, 0}};
2615 clearCommandBuffer();
2624 printf("\naborted via keyboard!\n");
2629 if (WaitForResponseTimeoutW(CMD_ACK
, &resp
, 2000, false)) {
2630 res
= resp
.arg
[0] & 0xff;
2631 uint16_t traceLen
= resp
.arg
[1];
2634 if (res
== 0) { // we are done
2638 if (res
== 1) { // there is (more) data to be transferred
2639 if (pckNum
== 0) { // first packet, (re)allocate necessary buffer
2640 if (traceLen
> bufsize
|| buf
== NULL
) {
2642 if (buf
== NULL
) { // not yet allocated
2643 p
= malloc(traceLen
);
2644 } else { // need more memory
2645 p
= realloc(buf
, traceLen
);
2648 PrintAndLog("Cannot allocate memory for trace");
2656 memset(buf
, 0x00, traceLen
);
2658 memcpy(bufPtr
, resp
.d
.asBytes
, len
);
2663 if (res
== 2) { // received all data, start displaying
2664 blockLen
= bufPtr
- buf
;
2667 PrintAndLog("received trace len: %d packages: %d", blockLen
, pckNum
);
2668 while (bufPtr
- buf
< blockLen
) {
2669 bufPtr
+= 6; // skip (void) timing information
2670 len
= *((uint16_t *)bufPtr
);
2677 parlen
= (len
- 1) / 8 + 1;
2679 if ((len
== 14) && (bufPtr
[0] == 0xff) && (bufPtr
[1] == 0xff) && (bufPtr
[12] == 0xff) && (bufPtr
[13] == 0xff)) {
2680 memcpy(uid
, bufPtr
+ 2, 7);
2681 memcpy(atqa
, bufPtr
+ 2 + 7, 2);
2682 uid_len
= (atqa
[0] & 0xC0) == 0x40 ? 7 : 4;
2684 PrintAndLog("tag select uid:%s atqa:0x%02x%02x sak:0x%02x",
2685 sprint_hex(uid
+ (7 - uid_len
), uid_len
),
2689 if (wantLogToFile
|| wantDecrypt
) {
2690 FillFileNameByUID(logHexFileName
, uid
+ (7 - uid_len
), ".log", uid_len
);
2691 AddLogCurrentDT(logHexFileName
);
2694 mfTraceInit(uid
, atqa
, sak
, wantSaveToEmlFile
);
2696 oddparitybuf(bufPtr
, len
, parity
);
2697 PrintAndLog("%s(%d):%s [%s] c[%s]%c",
2698 isTag
? "TAG":"RDR",
2700 sprint_hex(bufPtr
, len
),
2701 printBitsPar(bufPtr
+ len
, len
),
2702 printBitsPar(parity
, len
),
2703 memcmp(bufPtr
+ len
, parity
, len
/ 8 + 1) ? '!' : ' ');
2705 AddLogHex(logHexFileName
, isTag
? "TAG: ":"RDR: ", bufPtr
, len
);
2707 mfTraceDecode(bufPtr
, len
, bufPtr
[len
], wantSaveToEmlFile
);
2711 bufPtr
+= parlen
; // ignore parity
2720 msleep(300); // wait for exiting arm side.
2721 PrintAndLog("Done.");
2725 //needs nt, ar, at, Data to decrypt
2726 int CmdDecryptTraceCmds(const char *Cmd
){
2729 param_gethex_ex(Cmd
,3,data
,&len
);
2730 return tryDecryptWord(param_get32ex(Cmd
,0,0,16),param_get32ex(Cmd
,1,0,16),param_get32ex(Cmd
,2,0,16),data
,len
/2);
2733 int CmdHF14AMfAuth4(const char *cmd
) {
2734 uint8_t keyn
[20] = {0};
2736 uint8_t key
[16] = {0};
2739 CLIParserInit("hf mf auth4",
2740 "Executes AES authentication command in ISO14443-4",
2741 "Usage:\n\thf mf auth4 4000 000102030405060708090a0b0c0d0e0f -> executes authentication\n"
2742 "\thf mf auth4 9003 FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF -> executes authentication\n");
2744 void* argtable
[] = {
2746 arg_str1(NULL
, NULL
, "<Key Num (HEX 2 bytes)>", NULL
),
2747 arg_str1(NULL
, NULL
, "<Key Value (HEX 16 bytes)>", NULL
),
2750 CLIExecWithReturn(cmd
, argtable
, true);
2752 CLIGetHexWithReturn(1, keyn
, &keynlen
);
2753 CLIGetHexWithReturn(2, key
, &keylen
);
2757 PrintAndLog("ERROR: <Key Num> must be 2 bytes long instead of: %d", keynlen
);
2762 PrintAndLog("ERROR: <Key Value> must be 16 bytes long instead of: %d", keylen
);
2766 return MifareAuth4(NULL
, keyn
, key
, true, false, true);
2769 // https://www.nxp.com/docs/en/application-note/AN10787.pdf
2770 int CmdHF14AMfMAD(const char *cmd
) {
2772 CLIParserInit("hf mf mad",
2773 "Checks and prints Mifare Application Directory (MAD)",
2774 "Usage:\n\thf mf mad -> shows MAD if exists\n"
2775 "\thf mf mad -a 03e1 -k ffffffffffff -b -> shows NDEF data if exists. read card with custom key and key B\n");
2777 void *argtable
[] = {
2779 arg_lit0("vV", "verbose", "show technical data"),
2780 arg_str0("aA", "aid", "print all sectors with aid", NULL
),
2781 arg_str0("kK", "key", "key for printing sectors", NULL
),
2782 arg_lit0("bB", "keyb", "use key B for access printing sectors (by default: key A)"),
2785 CLIExecWithReturn(cmd
, argtable
, true);
2786 bool verbose
= arg_get_lit(1);
2787 uint8_t aid
[2] = {0};
2789 CLIGetHexWithReturn(2, aid
, &aidlen
);
2790 uint8_t key
[6] = {0};
2792 CLIGetHexWithReturn(3, key
, &keylen
);
2793 bool keyB
= arg_get_lit(4);
2797 if (aidlen
!= 2 && keylen
> 0) {
2798 PrintAndLogEx(WARNING
, "do not need a key without aid.");
2801 uint8_t sector0
[16 * 4] = {0};
2802 uint8_t sector10
[16 * 4] = {0};
2803 if (mfReadSector(MF_MAD1_SECTOR
, MF_KEY_A
, (uint8_t *)g_mifare_mad_key
, sector0
)) {
2804 PrintAndLogEx(ERR
, "read sector 0 error. card don't have MAD or don't have MAD on default keys.");
2809 for (int i
= 0; i
< 4; i
++)
2810 PrintAndLogEx(NORMAL
, "[%d] %s", i
, sprint_hex(§or0
[i
* 16], 16));
2813 bool haveMAD2
= false;
2814 MAD1DecodeAndPrint(sector0
, verbose
, &haveMAD2
);
2817 if (mfReadSector(MF_MAD2_SECTOR
, MF_KEY_A
, (uint8_t *)g_mifare_mad_key
, sector10
)) {
2818 PrintAndLogEx(ERR
, "read sector 0x10 error. card don't have MAD or don't have MAD on default keys.");
2822 MAD2DecodeAndPrint(sector10
, verbose
);
2826 uint16_t aaid
= (aid
[0] << 8) + aid
[1];
2827 PrintAndLogEx(NORMAL
, "\n-------------- AID 0x%04x ---------------", aaid
);
2829 uint16_t mad
[7 + 8 + 8 + 8 + 8] = {0};
2831 if (MADDecode(sector0
, sector10
, mad
, &madlen
)) {
2832 PrintAndLogEx(ERR
, "can't decode mad.");
2836 uint8_t akey
[6] = {0};
2837 memcpy(akey
, g_mifare_ndef_key
, 6);
2839 memcpy(akey
, key
, 6);
2842 for (int i
= 0; i
< madlen
; i
++) {
2843 if (aaid
== mad
[i
]) {
2844 uint8_t vsector
[16 * 4] = {0};
2845 if (mfReadSector(i
+ 1, keyB
? MF_KEY_B
: MF_KEY_A
, akey
, vsector
)) {
2846 PrintAndLogEx(NORMAL
, "");
2847 PrintAndLogEx(ERR
, "read sector %d error.", i
+ 1);
2851 for (int j
= 0; j
< (verbose
? 4 : 3); j
++)
2852 PrintAndLogEx(NORMAL
, " [%03d] %s", (i
+ 1) * 4 + j
, sprint_hex(&vsector
[j
* 16], 16));
2860 int CmdHFMFNDEF(const char *cmd
) {
2862 CLIParserInit("hf mf ndef",
2863 "Prints NFC Data Exchange Format (NDEF)",
2864 "Usage:\n\thf mf ndef -> shows NDEF data\n"
2865 "\thf mf ndef -a 03e1 -k ffffffffffff -b -> shows NDEF data with custom AID, key and with key B\n");
2867 void *argtable
[] = {
2869 arg_litn("vV", "verbose", 0, 2, "show technical data"),
2870 arg_str0("aA", "aid", "replace default aid for NDEF", NULL
),
2871 arg_str0("kK", "key", "replace default key for NDEF", NULL
),
2872 arg_lit0("bB", "keyb", "use key B for access sectors (by default: key A)"),
2875 CLIExecWithReturn(cmd
, argtable
, true);
2877 bool verbose
= arg_get_lit(1);
2878 bool verbose2
= arg_get_lit(1) > 1;
2879 uint8_t aid
[2] = {0};
2881 CLIGetHexWithReturn(2, aid
, &aidlen
);
2882 uint8_t key
[6] = {0};
2884 CLIGetHexWithReturn(3, key
, &keylen
);
2885 bool keyB
= arg_get_lit(4);
2889 uint16_t ndefAID
= 0x03e1;
2891 ndefAID
= (aid
[0] << 8) + aid
[1];
2893 uint8_t ndefkey
[6] = {0};
2894 memcpy(ndefkey
, g_mifare_ndef_key
, 6);
2896 memcpy(ndefkey
, key
, 6);
2899 uint8_t sector0
[16 * 4] = {0};
2900 uint8_t sector10
[16 * 4] = {0};
2901 uint8_t data
[4096] = {0};
2904 PrintAndLogEx(NORMAL
, "");
2906 if (mfReadSector(MF_MAD1_SECTOR
, MF_KEY_A
, (uint8_t *)g_mifare_mad_key
, sector0
)) {
2907 PrintAndLogEx(ERR
, "read sector 0 error. card don't have MAD or don't have MAD on default keys.");
2911 bool haveMAD2
= false;
2912 int res
= MADCheck(sector0
, NULL
, verbose
, &haveMAD2
);
2914 PrintAndLogEx(ERR
, "MAD error %d.", res
);
2919 if (mfReadSector(MF_MAD2_SECTOR
, MF_KEY_A
, (uint8_t *)g_mifare_mad_key
, sector10
)) {
2920 PrintAndLogEx(ERR
, "read sector 0x10 error. card don't have MAD or don't have MAD on default keys.");
2925 uint16_t mad
[7 + 8 + 8 + 8 + 8] = {0};
2927 if (MADDecode(sector0
, (haveMAD2
? sector10
: NULL
), mad
, &madlen
)) {
2928 PrintAndLogEx(ERR
, "can't decode mad.");
2932 printf("data reading:");
2933 for (int i
= 0; i
< madlen
; i
++) {
2934 if (ndefAID
== mad
[i
]) {
2935 uint8_t vsector
[16 * 4] = {0};
2936 if (mfReadSector(i
+ 1, keyB
? MF_KEY_B
: MF_KEY_A
, ndefkey
, vsector
)) {
2937 PrintAndLogEx(ERR
, "read sector %d error.", i
+ 1);
2941 memcpy(&data
[datalen
], vsector
, 16 * 3);
2950 PrintAndLogEx(ERR
, "no NDEF data.");
2955 PrintAndLogEx(NORMAL
, "NDEF data:");
2956 dump_buffer(data
, datalen
, stdout
, 1);
2959 NDEFDecodeAndPrint(data
, datalen
, verbose
);
2964 static command_t CommandTable
[] =
2966 {"help", CmdHelp
, 1, "This help"},
2967 {"dbg", CmdHF14AMfDbg
, 0, "Set default debug mode"},
2968 {"rdbl", CmdHF14AMfRdBl
, 0, "Read MIFARE classic block"},
2969 {"rdsc", CmdHF14AMfRdSc
, 0, "Read MIFARE classic sector"},
2970 {"dump", CmdHF14AMfDump
, 0, "Dump MIFARE classic tag to binary file"},
2971 {"restore", CmdHF14AMfRestore
, 0, "Restore MIFARE classic binary file to BLANK tag"},
2972 {"wrbl", CmdHF14AMfWrBl
, 0, "Write MIFARE classic block"},
2973 {"auth4", CmdHF14AMfAuth4
, 0, "ISO14443-4 AES authentication"},
2974 {"chk", CmdHF14AMfChk
, 0, "Test block keys"},
2975 {"mifare", CmdHF14AMifare
, 0, "Read parity error messages."},
2976 {"hardnested", CmdHF14AMfNestedHard
, 0, "Nested attack for hardened Mifare cards"},
2977 {"nested", CmdHF14AMfNested
, 0, "Test nested authentication"},
2978 {"sniff", CmdHF14AMfSniff
, 0, "Sniff card-reader communication"},
2979 {"sim", CmdHF14AMfSim
, 0, "Simulate MIFARE card"},
2980 {"eclr", CmdHF14AMfEClear
, 0, "Clear simulator memory"},
2981 {"eget", CmdHF14AMfEGet
, 0, "Get simulator memory block"},
2982 {"eset", CmdHF14AMfESet
, 0, "Set simulator memory block"},
2983 {"eload", CmdHF14AMfELoad
, 0, "Load from file emul dump"},
2984 {"esave", CmdHF14AMfESave
, 0, "Save to file emul dump"},
2985 {"ecfill", CmdHF14AMfECFill
, 0, "Fill simulator memory with help of keys from simulator"},
2986 {"ekeyprn", CmdHF14AMfEKeyPrn
, 0, "Print keys from simulator memory"},
2987 {"cwipe", CmdHF14AMfCWipe
, 0, "Wipe magic Chinese card"},
2988 {"csetuid", CmdHF14AMfCSetUID
, 0, "Set UID for magic Chinese card"},
2989 {"csetblk", CmdHF14AMfCSetBlk
, 0, "Write block - Magic Chinese card"},
2990 {"cgetblk", CmdHF14AMfCGetBlk
, 0, "Read block - Magic Chinese card"},
2991 {"cgetsc", CmdHF14AMfCGetSc
, 0, "Read sector - Magic Chinese card"},
2992 {"cload", CmdHF14AMfCLoad
, 0, "Load dump into magic Chinese card"},
2993 {"csave", CmdHF14AMfCSave
, 0, "Save dump from magic Chinese card into file or emulator"},
2994 {"decrypt", CmdDecryptTraceCmds
, 1, "[nt] [ar_enc] [at_enc] [data] - to decrypt snoop or trace"},
2995 {"mad", CmdHF14AMfMAD
, 0, "Checks and prints MAD"},
2996 {"ndef", CmdHFMFNDEF
, 0, "Prints NDEF records from card"},
2997 {NULL
, NULL
, 0, NULL
}
3000 int CmdHFMF(const char *Cmd
)
3002 (void)WaitForResponseTimeout(CMD_ACK
,NULL
,100);
3003 CmdsParse(CommandTable
, Cmd
);
3007 int CmdHelp(const char *Cmd
)
3009 CmdsHelp(CommandTable
);