1 //-----------------------------------------------------------------------------
2 // Ultralight Code (c) 2013,2014 Midnitesnake & Andy Davies of Pentura
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 ULTRALIGHT (C) commands
9 //-----------------------------------------------------------------------------
10 #include "loclass/des.h"
16 #include "protocols.h"
18 #define MAX_UL_BLOCKS 0x0f
19 #define MAX_ULC_BLOCKS 0x2f
20 #define MAX_ULEV1a_BLOCKS 0x12
21 #define MAX_ULEV1b_BLOCKS 0x20
22 #define MAX_NTAG_213 0x2c
23 #define MAX_NTAG_215 0x86
24 #define MAX_NTAG_216 0xe6
26 #define KEYS_3DES_COUNT 7
27 uint8_t default_3des_keys
[KEYS_3DES_COUNT
][16] = {
28 { 0x42,0x52,0x45,0x41,0x4b,0x4d,0x45,0x49,0x46,0x59,0x4f,0x55,0x43,0x41,0x4e,0x21 },// 3des std key
29 { 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00 },// all zeroes
30 { 0x00,0x01,0x02,0x03,0x04,0x05,0x06,0x07,0x08,0x09,0x0a,0x0b,0x0c,0x0d,0x0e,0x0f },// 0x00-0x0F
31 { 0x49,0x45,0x4D,0x4B,0x41,0x45,0x52,0x42,0x21,0x4E,0x41,0x43,0x55,0x4F,0x59,0x46 },// NFC-key
32 { 0x01,0x01,0x01,0x01,0x01,0x01,0x01,0x01,0x01,0x01,0x01,0x01,0x01,0x01,0x01,0x01 },// all ones
33 { 0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF },// all FF
34 { 0x00,0x11,0x22,0x33,0x44,0x55,0x66,0x77,0x88,0x99,0xAA,0xBB,0xCC,0xDD,0xEE,0xFF } // 11 22 33
37 #define KEYS_PWD_COUNT 10
38 uint8_t default_pwd_pack
[KEYS_PWD_COUNT
][4] = {
39 {0xFF,0xFF,0xFF,0xFF}, // PACK 0x00,0x00 -- factory default
41 {0x4A,0xF8,0x4B,0x19}, // PACK 0xE5,0xBE -- italian bus (sniffed)
42 {0x33,0x6B,0xA1,0x19}, // PACK 0x9c,0x2d -- italian bus (sniffed)
43 {0xFF,0x90,0x6C,0xB2}, // PACK 0x12,0x9e -- italian bus (sniffed)
44 {0x46,0x1c,0xA3,0x19}, // PACK 0xE9,0x5A -- italian bus (sniffed)
45 {0x35,0x1C,0xD0,0x19}, // PACK 0x9A,0x5a -- italian bus (sniffed)
47 {0x05,0x22,0xE6,0xB4}, // PACK 0x80,0x80 -- Amiiboo (sniffed) pikachu-b UID:
48 {0x7E,0x22,0xE6,0xB4}, // PACK 0x80,0x80 -- AMiiboo (sniffed)
49 {0x02,0xE1,0xEE,0x36}, // PACK 0x80,0x80 -- AMiiboo (sniffed) sonic UID: 04d257 7ae33e8027
50 {0x32,0x0C,0x16,0x17}, // PACK 0x80,0x80 -- AMiiboo (sniffed)
53 #define MAX_UL_TYPES 13
54 uint16_t UL_TYPES_ARRAY
[MAX_UL_TYPES
] = {UNKNOWN
, UL
, UL_C
, UL_EV1_48
, UL_EV1_128
,
55 NTAG
, NTAG_213
, NTAG_215
, NTAG_216
, MY_D
, MY_D_NFC
, MY_D_MOVE
, MY_D_MOVE_NFC
};
56 uint8_t UL_MEMORY_ARRAY
[MAX_UL_TYPES
] = {MAX_UL_BLOCKS
, MAX_UL_BLOCKS
, MAX_ULC_BLOCKS
,
57 MAX_ULEV1a_BLOCKS
, MAX_ULEV1b_BLOCKS
, MAX_NTAG_213
, MAX_NTAG_213
, MAX_NTAG_215
,
58 MAX_NTAG_216
, MAX_UL_BLOCKS
, MAX_UL_BLOCKS
, MAX_UL_BLOCKS
, MAX_UL_BLOCKS
};
61 static int CmdHelp(const char *Cmd
);
63 char *getProductTypeStr( uint8_t id
){
70 sprintf(retStr
, "%02X %s", id
, "(Ultralight)");
73 sprintf(retStr
, "%02X %s", id
, "(NTAG)");
76 sprintf(retStr
, "%02X %s", id
, "(unknown)");
83 The 7 MSBits (=n) code the storage size itself based on 2^n,
84 the LSBit is set to '0' if the size is exactly 2^n
85 and set to '1' if the storage size is between 2^n and 2^(n+1).
87 char *getUlev1CardSizeStr( uint8_t fsize
){
91 memset(buf
, 0, sizeof(buf
));
93 uint16_t usize
= 1 << ((fsize
>>1) + 1);
94 uint16_t lsize
= 1 << (fsize
>>1);
98 sprintf(retStr
, "%02X (%u <-> %u bytes)",fsize
, usize
, lsize
);
100 sprintf(retStr
, "%02X (%u bytes)", fsize
, lsize
);
104 static void ul_switch_on_field(void) {
105 UsbCommand c
= {CMD_READER_ISO_14443a
, {ISO14A_CONNECT
| ISO14A_NO_DISCONNECT
, 0, 0}};
109 void ul_switch_off_field(void) {
110 UsbCommand c
= {CMD_READER_ISO_14443a
, {0, 0, 0}};
114 static int ul_send_cmd_raw( uint8_t *cmd
, uint8_t cmdlen
, uint8_t *response
, uint16_t responseLength
) {
115 UsbCommand c
= {CMD_READER_ISO_14443a
, {ISO14A_RAW
| ISO14A_NO_DISCONNECT
| ISO14A_APPEND_CRC
, cmdlen
, 0}};
116 memcpy(c
.d
.asBytes
, cmd
, cmdlen
);
119 if (!WaitForResponseTimeout(CMD_ACK
, &resp
, 1500)) return -1;
120 if (!resp
.arg
[0] && responseLength
) return -1;
122 uint16_t resplen
= (resp
.arg
[0] < responseLength
) ? resp
.arg
[0] : responseLength
;
123 memcpy(response
, resp
.d
.asBytes
, resplen
);
127 static int ul_send_cmd_raw_crc( uint8_t *cmd, uint8_t cmdlen, uint8_t *response, uint16_t responseLength, bool append_crc ) {
128 UsbCommand c = {CMD_READER_ISO_14443a, {ISO14A_RAW | ISO14A_NO_DISCONNECT , cmdlen, 0}};
130 c.arg[0] |= ISO14A_APPEND_CRC;
132 memcpy(c.d.asBytes, cmd, cmdlen);
135 if (!WaitForResponseTimeout(CMD_ACK, &resp, 1500)) return -1;
136 if (!resp.arg[0] && responseLength) return -1;
138 uint16_t resplen = (resp.arg[0] < responseLength) ? resp.arg[0] : responseLength;
139 memcpy(response, resp.d.asBytes, resplen);
143 static int ul_select( iso14a_card_select_t
*card
){
145 ul_switch_on_field();
148 if (!WaitForResponseTimeout(CMD_ACK
, &resp
, 1500)) return -1;
149 if (resp
.arg
[0] < 1) return -1;
151 memcpy(card
, resp
.d
.asBytes
, sizeof(iso14a_card_select_t
));
155 // This read command will at least return 16bytes.
156 static int ul_read( uint8_t page
, uint8_t *response
, uint16_t responseLength
){
158 uint8_t cmd
[] = {ISO14443A_CMD_READBLOCK
, page
};
159 int len
= ul_send_cmd_raw(cmd
, sizeof(cmd
), response
, responseLength
);
163 static int ul_comp_write( uint8_t page
, uint8_t *data
, uint8_t datalen
){
166 memset(cmd
, 0x00, sizeof(cmd
));
167 datalen
= ( datalen
> 16) ? 16 : datalen
;
169 cmd
[0] = ISO14443A_CMD_WRITEBLOCK
;
171 memcpy(cmd
+2, data
, datalen
);
173 uint8_t response
[1] = {0xff};
174 ul_send_cmd_raw(cmd
, 2+datalen
, response
, sizeof(response
));
176 if ( response
[0] == 0x0a ) return 0;
181 static int ulc_requestAuthentication( uint8_t *nonce
, uint16_t nonceLength
){
183 uint8_t cmd
[] = {MIFARE_ULC_AUTH_1
, 0x00};
184 int len
= ul_send_cmd_raw(cmd
, sizeof(cmd
), nonce
, nonceLength
);
188 static int ulc_authentication( uint8_t *key
, bool switch_off_field
){
190 UsbCommand c
= {CMD_MIFAREUC_AUTH
, {switch_off_field
}};
191 memcpy(c
.d
.asBytes
, key
, 16);
194 if ( !WaitForResponseTimeout(CMD_ACK
, &resp
, 1500) ) return -1;
195 if ( resp
.arg
[0] == 1 ) return 0;
200 static int ulev1_requestAuthentication( uint8_t *pwd
, uint8_t *pack
, uint16_t packLength
){
202 uint8_t cmd
[] = {MIFARE_ULEV1_AUTH
, pwd
[0], pwd
[1], pwd
[2], pwd
[3]};
203 int len
= ul_send_cmd_raw(cmd
, sizeof(cmd
), pack
, packLength
);
207 static int ulev1_getVersion( uint8_t *response
, uint16_t responseLength
){
209 uint8_t cmd
[] = {MIFARE_ULEV1_VERSION
};
210 int len
= ul_send_cmd_raw(cmd
, sizeof(cmd
), response
, responseLength
);
214 // static int ulev1_fastRead( uint8_t startblock, uint8_t endblock, uint8_t *response ){
216 // uint8_t cmd[] = {MIFARE_ULEV1_FASTREAD, startblock, endblock};
218 // if ( !ul_send_cmd_raw(cmd, sizeof(cmd), response)){
224 static int ulev1_readCounter( uint8_t counter
, uint8_t *response
, uint16_t responseLength
){
226 uint8_t cmd
[] = {MIFARE_ULEV1_READ_CNT
, counter
};
227 int len
= ul_send_cmd_raw(cmd
, sizeof(cmd
), response
, responseLength
);
231 static int ulev1_readTearing( uint8_t counter
, uint8_t *response
, uint16_t responseLength
){
233 uint8_t cmd
[] = {MIFARE_ULEV1_CHECKTEAR
, counter
};
234 int len
= ul_send_cmd_raw(cmd
, sizeof(cmd
), response
, responseLength
);
238 static int ulev1_readSignature( uint8_t *response
, uint16_t responseLength
){
240 uint8_t cmd
[] = {MIFARE_ULEV1_READSIG
, 0x00};
241 int len
= ul_send_cmd_raw(cmd
, sizeof(cmd
), response
, responseLength
);
245 static int ul_print_default( uint8_t *data
){
256 PrintAndLog(" UID : %s ", sprint_hex(uid
, 7));
257 PrintAndLog(" UID[0] : %02X, Manufacturer: %s", uid
[0], getTagInfo(uid
[0]) );
258 if ( uid
[0] == 0x05 ) {
259 uint8_t chip
= (data
[8] & 0xC7); // 11000111 mask, bit 3,4,5 RFU
261 case 0xc2: PrintAndLog(" IC type : SLE 66R04P"); break;
262 case 0xc4: PrintAndLog(" IC type : SLE 66R16P"); break;
263 case 0xc6: PrintAndLog(" IC type : SLE 66R32P"); break;
266 // CT (cascade tag byte) 0x88 xor SN0 xor SN1 xor SN2
267 int crc0
= 0x88 ^ data
[0] ^ data
[1] ^data
[2];
268 if ( data
[3] == crc0
)
269 PrintAndLog(" BCC0 : %02X - Ok", data
[3]);
271 PrintAndLog(" BCC0 : %02X - crc should be %02X", data
[3], crc0
);
273 int crc1
= data
[4] ^ data
[5] ^ data
[6] ^data
[7];
274 if ( data
[8] == crc1
)
275 PrintAndLog(" BCC1 : %02X - Ok", data
[8]);
277 PrintAndLog(" BCC1 : %02X - crc should be %02X", data
[8], crc1
);
279 PrintAndLog(" Internal : %02X - %s default", data
[9], (data
[9]==0x48)?"":"not" );
280 PrintAndLog(" Lock : %s - %s",
281 sprint_hex(data
+10, 2),
282 printBits(2, data
+10)
284 PrintAndLog("OneTimePad : %s - %s\n",
285 sprint_hex(data
+ 12, 4),
286 printBits(4, data
+12)
291 static int ntag_print_CC(uint8_t *data
) {
293 PrintAndLog("\n--- NTAG NDEF Message");
295 if(data
[0] != 0xe1) {
296 PrintAndLog("no NDEF message");
297 return -1; // no NDEF message
300 PrintAndLog("Capability Container: %s", sprint_hex(data
,4) );
301 PrintAndLog(" %02X: NDEF Magic Number", data
[0]);
302 PrintAndLog(" %02X: version %d.%d supported by tag", data
[1], (data
[1] & 0xF0) >> 4, data
[1] & 0x0f);
303 PrintAndLog(" %02X: Physical Memory Size: %d bytes", data
[2], (data
[2] + 1) * 8);
304 if ( data
[2] == 0x12 )
305 PrintAndLog(" %02X: NDEF Memory Size: %d bytes", data
[2], 144);
306 else if ( data
[2] == 0x3e )
307 PrintAndLog(" %02X: NDEF Memory Size: %d bytes", data
[2], 496);
308 else if ( data
[2] == 0x6d )
309 PrintAndLog(" %02X: NDEF Memory Size: %d bytes", data
[2], 872);
311 PrintAndLog(" %02X: %s / %s", data
[3],
312 (data
[3] & 0xF0) ? "(RFU)" : "Read access granted without any security",
313 (data
[3] & 0x0F)==0 ? "Write access granted without any security" : (data
[3] & 0x0F)==0x0F ? "No write access granted at all" : "(RFU)");
317 int ul_print_type(uint16_t tagtype
, uint8_t spaces
){
320 char *spacer
= spc
+ (10-spaces
);
323 PrintAndLog("%sTYPE : MIFARE Ultralight (MF0ICU1) %s [%x]", spacer
, (tagtype
& MAGIC
)?"<magic>":"", tagtype
);
324 else if ( tagtype
& UL_C
)
325 PrintAndLog("%sTYPE : MIFARE Ultralight C (MF0ULC) %s [%x]", spacer
, (tagtype
& MAGIC
)?"<magic>":"", tagtype
);
326 else if ( tagtype
& UL_EV1_48
)
327 PrintAndLog("%sTYPE : MIFARE Ultralight EV1 48bytes (MF0UL1101)", spacer
);
328 else if ( tagtype
& UL_EV1_128
)
329 PrintAndLog("%sTYPE : MIFARE Ultralight EV1 128bytes (MF0UL2101)", spacer
);
330 else if ( tagtype
& NTAG_213
)
331 PrintAndLog("%sTYPE : MIFARE NTAG 213 144bytes (NT2H1311G0DU)", spacer
);
332 else if ( tagtype
& NTAG_215
)
333 PrintAndLog("%sTYPE : MIFARE NTAG 215 504bytes (NT2H1511G0DU)", spacer
);
334 else if ( tagtype
& NTAG_216
)
335 PrintAndLog("%sTYPE : MIFARE NTAG 216 888bytes (NT2H1611G0DU)", spacer
);
336 else if ( tagtype
& MY_D
)
337 PrintAndLog("%sTYPE : INFINEON my-d\x99", spacer
);
338 else if ( tagtype
& MY_D_NFC
)
339 PrintAndLog("%sTYPE : INFINEON my-d\x99 NFC", spacer
);
340 else if ( tagtype
& MY_D_MOVE
)
341 PrintAndLog("%sTYPE : INFINEON my-d\x99 move", spacer
);
342 else if ( tagtype
& MY_D_MOVE_NFC
)
343 PrintAndLog("%sTYPE : INFINEON my-d\x99 move NFC", spacer
);
345 PrintAndLog("%sTYPE : Unknown %04x", spacer
, tagtype
);
349 static int ulc_print_3deskey( uint8_t *data
){
350 PrintAndLog(" deskey1 [44/0x2C]: %s [%.4s]", sprint_hex(data
,4),data
);
351 PrintAndLog(" deskey1 [45/0x2D]: %s [%.4s]", sprint_hex(data
+4 ,4),data
+4);
352 PrintAndLog(" deskey2 [46/0x2E]: %s [%.4s]", sprint_hex(data
+8 ,4),data
+8);
353 PrintAndLog(" deskey2 [47/0x2F]: %s [%.4s]", sprint_hex(data
+12,4),data
+12);
354 PrintAndLog("\n 3des key : %s", sprint_hex(SwapEndian64(data
, 16, 8), 16));
358 static int ulc_print_configuration( uint8_t *data
){
360 PrintAndLog("--- UL-C Configuration");
361 PrintAndLog(" Higher Lockbits [40/0x28]: %s - %s", sprint_hex(data
, 4), printBits(2, data
));
362 PrintAndLog(" Counter [41/0x29]: %s - %s", sprint_hex(data
+4, 4), printBits(2, data
+4));
364 bool validAuth
= (data
[8] >= 0x03 && data
[8] <= 0x30);
366 PrintAndLog(" Auth0 [42/0x2A]: %s Page %d and above need authentication", sprint_hex(data
+8, 4), data
[8] );
369 PrintAndLog(" Auth0 [42/0x2A]: %s default", sprint_hex(data
+8, 4) );
371 PrintAndLog(" Auth0 [42/0x2A]: %s auth byte is out-of-range", sprint_hex(data
+8, 4) );
374 PrintAndLog(" Auth1 [43/0x2B]: %s %s",
375 sprint_hex(data
+12, 4),
376 (data
[12] & 1) ? "write access restricted": "read and write access restricted"
381 static int ulev1_print_configuration( uint8_t *data
){
383 PrintAndLog("\n--- UL-EV1 Configuration");
385 bool strg_mod_en
= (data
[0] & 2);
386 uint8_t authlim
= (data
[4] & 0x07);
387 bool cfglck
= (data
[4] & 0x40);
388 bool prot
= (data
[4] & 0x80);
389 uint8_t vctid
= data
[5];
391 PrintAndLog(" cfg0 [16/0x10]: %s", sprint_hex(data
, 4));
392 if ( data
[3] < 0xff )
393 PrintAndLog(" - page %d and above need authentication",data
[3]);
395 PrintAndLog(" - pages don't need authentication");
396 PrintAndLog(" - strong modulation mode %s", (strg_mod_en
) ? "enabled":"disabled");
397 PrintAndLog(" cfg1 [17/0x11]: %s", sprint_hex(data
+4, 4) );
399 PrintAndLog(" - Unlimited password attempts");
401 PrintAndLog(" - Max number of password attempts is %d", authlim
);
402 PrintAndLog(" - user configuration %s", cfglck
? "permanently locked":"writeable");
403 PrintAndLog(" - %s access is protected with password", prot
? "read and write":"write");
404 PrintAndLog(" %02X - Virtual Card Type Identifier is %s default", vctid
, (vctid
==0x05)? "":"not");
405 PrintAndLog(" PWD [18/0x12]: %s", sprint_hex(data
+8, 4));
406 PrintAndLog(" PACK [19/0x13]: %s", sprint_hex(data
+12, 4));
410 static int ulev1_print_counters(){
411 PrintAndLog("--- UL-EV1 Counters");
412 uint8_t tear
[1] = {0};
413 uint8_t counter
[3] = {0,0,0};
414 for ( uint8_t i
= 0; i
<3; ++i
) {
415 ulev1_readTearing(i
,tear
,sizeof(tear
));
416 ulev1_readCounter(i
,counter
, sizeof(counter
) );
417 PrintAndLog(" [%0d] : %s", i
, sprint_hex(counter
,3));
418 PrintAndLog(" - %02X tearing %s", tear
[0], ( tear
[0]==0xBD)?"Ok":"failure");
423 static int ulev1_print_signature( uint8_t *data
, uint8_t len
){
424 PrintAndLog("\n--- UL-EV1 Signature");
425 PrintAndLog("IC signature public key name : NXP NTAG21x 2013");
426 PrintAndLog("IC signature public key value : 04494e1a386d3d3cfe3dc10e5de68a499b1c202db5b132393e89ed19fe5be8bc61");
427 PrintAndLog(" Elliptic curve parameters : secp128r1");
428 PrintAndLog(" Tag ECC Signature : %s", sprint_hex(data
, len
));
429 //to do: verify if signature is valid
430 //PrintAndLog("IC signature status: %s valid", (iseccvalid() )?"":"not");
434 static int ulev1_print_version(uint8_t *data
){
435 PrintAndLog("\n--- UL-EV1 / NTAG Version");
436 PrintAndLog(" Raw bytes : %s", sprint_hex(data
, 8) );
437 PrintAndLog(" Vendor ID : %02X, Manufacturer: %s", data
[1], getTagInfo(data
[1]));
438 PrintAndLog(" Product type : %s", getProductTypeStr(data
[2]));
439 PrintAndLog(" Product subtype : %02X %s", data
[3], (data
[3]==1) ?"17 pF":"50pF");
440 PrintAndLog(" Major version : %02X", data
[4]);
441 PrintAndLog(" Minor version : %02X", data
[5]);
442 PrintAndLog(" Size : %s", getUlev1CardSizeStr(data
[6]));
443 PrintAndLog(" Protocol type : %02X", data
[7]);
448 static int ulc_magic_test(){
449 // Magic Ultralight test
450 // Magic UL-C, by observation,
451 // 1) it seems to have a static nonce response to 0x1A command.
452 // 2) the deskey bytes is not-zero:d out on as datasheet states.
453 // 3) UID - changeable, not only, but pages 0-1-2-3.
454 // 4) use the ul_magic_test ! magic tags answers specially!
455 int returnValue = UL_ERROR;
456 iso14a_card_select_t card;
457 uint8_t nonce1[11] = {0x00};
458 uint8_t nonce2[11] = {0x00};
459 int status = ul_select(&card);
461 PrintAndLog("Error: couldn't select ulc_magic_test");
462 ul_switch_off_field();
465 status = ulc_requestAuthentication(nonce1, sizeof(nonce1));
467 status = ulc_requestAuthentication(nonce2, sizeof(nonce2));
468 returnValue = ( !memcmp(nonce1, nonce2, 11) ) ? UL_C_MAGIC : UL_C;
472 ul_switch_off_field();
476 static int ul_magic_test(){
478 // Magic Ultralight tests
479 // 1) take present UID, and try to write it back. OBSOLETE
480 // 2) make a wrong length write to page0, and see if tag answers with ACK/NACK:
481 iso14a_card_select_t card
;
482 int status
= ul_select(&card
);
484 PrintAndLog("iso14443a card select failed");
485 ul_switch_off_field();
488 status
= ul_comp_write(0, NULL
, 0);
489 ul_switch_off_field();
495 uint16_t GetHF14AMfU_Type(void){
497 TagTypeUL_t tagtype
= UNKNOWN
;
498 iso14a_card_select_t card
;
499 uint8_t version
[10] = {0x00};
503 status
= ul_select(&card
);
505 PrintAndLog("iso14443a card select failed");
506 ul_switch_off_field();
509 // Ultralight - ATQA / SAK
510 if ( card
.atqa
[1] != 0x00 || card
.atqa
[0] != 0x44 || card
.sak
!= 0x00 ) {
511 PrintAndLog("Tag is not Ultralight | NTAG | MY-D [ATQA: %02X %02X SAK: %02X]\n", card
.atqa
[1], card
.atqa
[0], card
.sak
);
512 ul_switch_off_field();
516 if ( card
.uid
[0] != 0x05) {
518 len
= ulev1_getVersion(version
, sizeof(version
));
519 ul_switch_off_field();
524 if ( version
[2] == 0x03 && version
[6] == 0x0B )
526 else if ( version
[2] == 0x03 && version
[6] != 0x0B )
527 tagtype
= UL_EV1_128
;
528 else if ( version
[2] == 0x04 && version
[6] == 0x0F )
530 else if ( version
[2] == 0x04 && version
[6] == 0x11 )
532 else if ( version
[2] == 0x04 && version
[6] == 0x13 )
534 else if ( version
[2] == 0x04 )
539 case 0x01: tagtype
= UL_C
; break;
540 case 0x00: tagtype
= UL
; break;
541 case -1 : tagtype
= (UL
| UL_C
); break; //when does this happen?
542 default : tagtype
= UNKNOWN
; break;
545 if (tagtype
== (UL
| UL_C
)) {
546 status
= ul_select(&card
);
548 PrintAndLog("iso14443a card select failed (UL-C)");
549 ul_switch_off_field();
552 uint8_t nonce
[11] = {0x00};
553 status
= ulc_requestAuthentication(nonce
, sizeof(nonce
));
554 tagtype
= ( status
> 0 ) ? UL_C
: UL
;
556 ul_switch_off_field();
559 // Infinition MY-D tests Exam high nibble
560 uint8_t nib
= (card
.uid
[1] & 0xf0) >> 4;
562 case 1: tagtype
= MY_D
; break;
563 case 2: tagtype
= (MY_D
| MY_D_NFC
); break;
564 case 3: tagtype
= (MY_D_MOVE
| MY_D_MOVE_NFC
); break;
568 tagtype
= (ul_magic_test() == UL_MAGIC
) ? (tagtype
| MAGIC
) : tagtype
;
569 //if ((tagtype & UL)) tagtype = ul_magic_test();
574 int CmdHF14AMfUInfo(const char *Cmd
){
576 uint8_t authlim
= 0xff;
577 uint8_t data
[16] = {0x00};
578 iso14a_card_select_t card
;
582 bool hasAuthKey
= false;
585 uint8_t authenticationkey
[16] = {0x00};
586 uint8_t pack
[4] = {0,0,0,0};
589 while(param_getchar(Cmd
, cmdp
) != 0x00)
591 switch(param_getchar(Cmd
, cmdp
))
595 return usage_hf_mfu_info();
599 datalen
= param_gethex(Cmd
, cmdp
+1, data
, 8);
601 memcpy(authenticationkey
, data
, 4);
607 datalen
= param_gethex(Cmd
, cmdp
+1, data
, 32);
609 memcpy(authenticationkey
, data
, 16);
617 PrintAndLog("Unknown parameter '%c'", param_getchar(Cmd
, cmdp
));
625 if(errors
) return usage_hf_mfu_info();
627 TagTypeUL_t tagtype
= GetHF14AMfU_Type();
628 if (tagtype
== UL_ERROR
) return -1;
630 PrintAndLog("\n--- Tag Information ---------");
631 PrintAndLog("-------------------------------------------------------------");
632 ul_print_type(tagtype
, 6);
634 status
= ul_select(&card
);
636 PrintAndLog("iso14443a card select failed");
637 ul_switch_off_field();
642 if ((tagtype
& UL_C
)) {
643 //will select card automatically
644 if (ulc_authentication(authenticationkey
, false) != 0) {
645 ul_switch_off_field();
646 PrintAndLog("Error: Authentication Failed UL-C");
650 len
= ulev1_requestAuthentication(authenticationkey
, pack
, sizeof(pack
));
652 ul_switch_off_field();
653 PrintAndLog("Error: Authentication Failed UL-EV1/NTAG");
660 // read pages 0,1,2,4 (should read 4pages)
661 status
= ul_read(0, data
, sizeof(data
));
663 ul_switch_off_field();
664 PrintAndLog("Error: tag didn't answer to READ");
668 ul_print_default(data
);
670 if ((tagtype
& UL_C
)){
672 // read pages 0x28, 0x29, 0x2A, 0x2B
673 uint8_t ulc_conf
[16] = {0x00};
674 status
= ul_read(0x28, ulc_conf
, sizeof(ulc_conf
));
676 PrintAndLog("Error: tag didn't answer to READ UL-C");
679 ulc_print_configuration(ulc_conf
);
681 if ((tagtype
& MAGIC
)){
683 uint8_t ulc_deskey
[16] = {0x00};
684 status
= ul_read(0x2C, ulc_deskey
, sizeof(ulc_deskey
));
686 ul_switch_off_field();
687 PrintAndLog("Error: tag didn't answer to READ magic");
690 ulc_print_3deskey(ulc_deskey
);
693 // if we called info with key, just return
694 if ( hasAuthKey
) return 1;
696 PrintAndLog("Trying some default 3des keys");
697 for (uint8_t i
= 0; i
< KEYS_3DES_COUNT
; ++i
){
698 key
= default_3des_keys
[i
];
699 if (ulc_authentication(key
, true) == 0){
700 PrintAndLog("Found default 3des key: "); //%s", sprint_hex(key,16));
702 memcpy(keySwap
, SwapEndian64(key
,16,8), 16);
703 ulc_print_3deskey(keySwap
);
704 ul_switch_off_field();
708 ul_switch_off_field();
709 return 1; //return even if key not found (UL_C is done)
713 if ((tagtype
& (UL_EV1_48
| UL_EV1_128
))) {
714 //do counters and signature first (don't neet auth)
715 ulev1_print_counters();
717 uint8_t ulev1_signature
[32] = {0x00};
718 status
= ulev1_readSignature( ulev1_signature
, sizeof(ulev1_signature
));
720 PrintAndLog("Error: tag didn't answer to READ SIGNATURE");
721 ul_switch_off_field();
724 ulev1_print_signature( ulev1_signature
, sizeof(ulev1_signature
));
726 uint8_t startconfigblock
= (tagtype
& UL_EV1_48
) ? 0x10 : 0x25;
727 uint8_t ulev1_conf
[16] = {0x00};
728 status
= ul_read(startconfigblock
, ulev1_conf
, sizeof(ulev1_conf
));
730 PrintAndLog("Error: tag didn't answer to READ EV1");
731 ul_switch_off_field();
734 // save AUTHENTICATION LIMITS for later:
735 authlim
= (ulev1_conf
[4] & 0x07);
736 bool allZeros
= true;
737 for (uint8_t idx
=0; idx
<8; idx
++)
738 if (ulev1_conf
[idx
]) allZeros
= false;
740 if (allZeros
) authlim
=7;
741 ulev1_print_configuration(ulev1_conf
);
744 if ((tagtype
& (UL_EV1_48
| UL_EV1_128
| NTAG_213
| NTAG_215
| NTAG_216
))) {
746 uint8_t version
[10] = {0x00};
747 status
= ulev1_getVersion(version
, sizeof(version
));
749 PrintAndLog("Error: tag didn't answer to GETVERSION");
750 ul_switch_off_field();
753 ulev1_print_version(version
);
755 // if we called info with key, just return
757 ul_switch_off_field();
761 // AUTHLIMIT, (number of failed authentications)
763 // 1-7 = ... should we even try then?
765 PrintAndLog("\n--- Known EV1/NTAG passwords.");
767 for (uint8_t i
= 0; i
< 3; ++i
){
768 key
= default_pwd_pack
[i
];
770 len
= ulev1_requestAuthentication(key
, pack
, sizeof(pack
));
772 PrintAndLog("Found a default password: %s || Pack: %02X %02X",sprint_hex(key
, 4), pack
[0], pack
[1]);
780 if ((tagtype
& (NTAG_213
| NTAG_215
| NTAG_216
))){
782 uint8_t cc
[16] = {0x00};
783 status
= ul_read(3, cc
, sizeof(cc
));
785 PrintAndLog("Error: tag didn't answer to READ ntag");
791 ul_switch_off_field();
797 // Mifare Ultralight Write Single Block
799 int CmdHF14AMfUWrBl(const char *Cmd
){
800 uint8_t blockNo
= -1;
801 bool chinese_card
= FALSE
;
802 uint8_t bldata
[16] = {0x00};
805 char cmdp
= param_getchar(Cmd
, 0);
806 if (strlen(Cmd
) < 3 || cmdp
== 'h' || cmdp
== 'H') {
807 PrintAndLog("Usage: hf mfu wrbl <block number> <block data (8 hex symbols)> [w]");
808 PrintAndLog(" [block number]");
809 PrintAndLog(" [block data] - (8 hex symbols)");
810 PrintAndLog(" [w] - Chinese magic ultralight tag");
812 PrintAndLog(" sample: hf mfu wrbl 0 01020304");
817 blockNo
= param_get8(Cmd
, 0);
819 if (blockNo
> MAX_UL_BLOCKS
){
820 PrintAndLog("Error: Maximum number of blocks is 15 for Ultralight Cards!");
824 if (param_gethex(Cmd
, 1, bldata
, 8)) {
825 PrintAndLog("Block data must include 8 HEX symbols");
829 if (strchr(Cmd
,'w') != 0 || strchr(Cmd
,'W') != 0 ) {
835 PrintAndLog("Access Denied");
837 PrintAndLog("--specialblock no:%02x", blockNo
);
838 PrintAndLog("--data: %s", sprint_hex(bldata
, 4));
839 UsbCommand d
= {CMD_MIFAREU_WRITEBL
, {blockNo
}};
840 memcpy(d
.d
.asBytes
,bldata
, 4);
842 if (WaitForResponseTimeout(CMD_ACK
,&resp
,1500)) {
843 uint8_t isOK
= resp
.arg
[0] & 0xff;
844 PrintAndLog("isOk:%02x", isOK
);
846 PrintAndLog("Command execute timeout");
850 PrintAndLog("--block no:%02x", blockNo
);
851 PrintAndLog("--data: %s", sprint_hex(bldata
, 4));
852 UsbCommand e
= {CMD_MIFAREU_WRITEBL
, {blockNo
}};
853 memcpy(e
.d
.asBytes
,bldata
, 4);
855 if (WaitForResponseTimeout(CMD_ACK
,&resp
,1500)) {
856 uint8_t isOK
= resp
.arg
[0] & 0xff;
857 PrintAndLog("isOk:%02x", isOK
);
859 PrintAndLog("Command execute timeout");
866 // Mifare Ultralight Read Single Block
868 int CmdHF14AMfURdBl(const char *Cmd
){
871 uint8_t blockNo
= -1;
872 char cmdp
= param_getchar(Cmd
, 0);
874 if (strlen(Cmd
) < 1 || cmdp
== 'h' || cmdp
== 'H') {
875 PrintAndLog("Usage: hf mfu rdbl <block number>");
876 PrintAndLog(" sample: hfu mfu rdbl 0");
880 blockNo
= param_get8(Cmd
, 0);
882 if (blockNo
> MAX_UL_BLOCKS
){
883 PrintAndLog("Error: Maximum number of blocks is 15 for Ultralight");
887 UsbCommand c
= {CMD_MIFAREU_READBL
, {blockNo
}};
891 if (WaitForResponseTimeout(CMD_ACK
,&resp
,1500)) {
892 uint8_t isOK
= resp
.arg
[0] & 0xff;
894 uint8_t *data
= resp
.d
.asBytes
;
895 PrintAndLog("Block: %0d (0x%02X) [ %s]", (int)blockNo
, blockNo
, sprint_hex(data
, 4));
898 PrintAndLog("Failed reading block: (%02x)", isOK
);
901 PrintAndLog("Command execute time-out");
907 int usage_hf_mfu_info(void)
909 PrintAndLog("It gathers information about the tag and tries to detect what kind it is.");
910 PrintAndLog("Sometimes the tags are locked down, and you may need a key to be able to read the information");
911 PrintAndLog("The following tags can be identified:\n");
912 PrintAndLog("Ultralight, Ultralight-C, Ultralight EV1");
913 PrintAndLog("NTAG 213, NTAG 215, NTAG 216");
914 PrintAndLog("my-d, my-d NFC, my-d move, my-d move NFC\n");
915 PrintAndLog("Usage: hf mfu info k <key>");
916 PrintAndLog(" Options : ");
917 PrintAndLog(" k <key> : key for authentication [UL-C 16bytes, EV1/NTAG 4bytes]");
919 PrintAndLog(" sample : hf mfu info");
920 PrintAndLog(" : hf mfu info k 11223344");
924 int usage_hf_mfu_dump(void)
926 PrintAndLog("Reads all pages from Ultralight, Ultralight-C, Ultralight EV1");
927 PrintAndLog("and saves binary dump into the file `filename.bin` or `cardUID.bin`");
928 PrintAndLog("It autodetects card type.\n");
929 PrintAndLog("Usage: hf mfu dump s k <key> n <filename w/o .bin>");
930 PrintAndLog(" Options : ");
931 PrintAndLog(" k <key> : key for authentication [UL-C 16bytes, EV1/NTAG 4bytes]");
932 PrintAndLog(" l : swap entered key's endianness for auth");
933 PrintAndLog(" n <FN > : filename w/o .bin to save the dump as");
934 PrintAndLog(" p <Pg > : starting Page number to manually set a page to start the dump at");
935 PrintAndLog(" q <qty> : number of Pages to manually set how many pages to dump");
938 PrintAndLog(" sample : hf mfu dump");
939 PrintAndLog(" : hf mfu dump n myfile");
940 PrintAndLog(" : hf mfu dump k 00112233445566778899AABBCCDDEEFF");
945 // Mifare Ultralight / Ultralight-C / Ultralight-EV1
946 // Read and Dump Card Contents, using auto detection of tag size.
948 // TODO: take a password to read UL-C / UL-EV1 tags.
949 int CmdHF14AMfUDump(const char *Cmd
){
952 char filename
[FILE_PATH_SIZE
] = {0x00};
953 char *fnameptr
= filename
;
954 //char *str = "Dumping Ultralight%s%s Card Data...";
955 uint8_t *lockbytes_t
= NULL
;
956 uint8_t lockbytes
[2] = {0x00};
957 uint8_t *lockbytes_t2
= NULL
;
958 uint8_t lockbytes2
[2] = {0x00};
959 bool bit
[16] = {0x00};
960 bool bit2
[16] = {0x00};
961 uint8_t data
[1024] = {0x00};
965 bool tmplockbit
= false;
968 uint8_t key
[16] = {0x00};
969 uint8_t *keyPtr
= key
;
972 bool swapEndian
= false;
973 bool manualPages
= false;
974 uint8_t startPage
= 0;
977 while(param_getchar(Cmd
, cmdp
) != 0x00)
979 switch(param_getchar(Cmd
, cmdp
))
983 return usage_hf_mfu_dump();
986 dataLen
= param_getstr(Cmd
, cmdp
+1, tempStr
);
987 if (dataLen
== 32) //ul-c
988 errors
= param_gethex(tempStr
, 0, key
, dataLen
);
989 else if (dataLen
== 8) //ev1/ntag
990 errors
= param_gethex(tempStr
, 0, key
, dataLen
);
1004 fileNlen
= param_getstr(Cmd
, cmdp
+1, filename
);
1005 if (!fileNlen
) errors
= true;
1006 if (fileNlen
> FILE_PATH_SIZE
-5) fileNlen
= FILE_PATH_SIZE
-5;
1011 startPage
= param_get8(Cmd
, cmdp
+1);
1017 Pages
= param_get8(Cmd
, cmdp
+1);
1022 PrintAndLog("Unknown parameter '%c'", param_getchar(Cmd
, cmdp
));
1030 if(errors
) return usage_hf_mfu_dump();
1032 if (swapEndian
&& dataLen
== 32)
1033 keyPtr
= SwapEndian64(data
, 16, 8);
1035 TagTypeUL_t tagtype
= GetHF14AMfU_Type();
1036 if (tagtype
== UL_ERROR
) return -1;
1039 for (uint8_t idx
= 0; idx
< MAX_UL_TYPES
; idx
++)
1040 if (tagtype
& UL_TYPES_ARRAY
[idx
])
1041 Pages
= UL_MEMORY_ARRAY
[idx
]+1;
1043 ul_print_type(tagtype
, 0);
1044 PrintAndLog("Reading tag memory...");
1046 UsbCommand c
= {CMD_MIFAREUC_READCARD
, {startPage
,Pages
}};
1049 c
.arg
[2] = 1; //UL_C auth
1051 c
.arg
[2] = 2; //UL_EV1/NTAG auth
1053 memcpy(c
.d
.asBytes
, key
, dataLen
/2);
1057 if (!WaitForResponseTimeout(CMD_ACK
, &resp
,1500)) {
1058 PrintAndLog("Command execute time-out");
1061 PrintAndLog ("%u,%u",resp
.arg
[0],resp
.arg
[1]);
1062 uint8_t isOK
= resp
.arg
[0] & 0xff;
1064 memcpy(data
, resp
.d
.asBytes
, resp
.arg
[1]);
1066 PrintAndLog("Failed reading block: (%02x)", i
);
1073 lockbytes_t
= data
+ 8;
1074 lockbytes
[0] = lockbytes_t
[2];
1075 lockbytes
[1] = lockbytes_t
[3];
1076 for(j
= 0; j
< 16; j
++){
1077 bit
[j
] = lockbytes
[j
/8] & ( 1 <<(7-j
%8));
1080 // Load bottom lockbytes if available
1081 // HOW DOES THIS APPLY TO EV1 and/or NTAG???
1082 if ( Pages
== 44 ) {
1083 lockbytes_t2
= data
+ (40*4);
1084 lockbytes2
[0] = lockbytes_t2
[2];
1085 lockbytes2
[1] = lockbytes_t2
[3];
1086 for (j
= 0; j
< 16; j
++) {
1087 bit2
[j
] = lockbytes2
[j
/8] & ( 1 <<(7-j
%8));
1093 memcpy(data
+ Pages
*4, key
, dataLen
/2);
1097 for (i
= 0; i
< Pages
; ++i
) {
1099 PrintAndLog("Block %02x:%s ", i
,sprint_hex(data
+ i
* 4, 4));
1103 case 3: tmplockbit
= bit
[4]; break;
1104 case 4: tmplockbit
= bit
[3]; break;
1105 case 5: tmplockbit
= bit
[2]; break;
1106 case 6: tmplockbit
= bit
[1]; break;
1107 case 7: tmplockbit
= bit
[0]; break;
1108 case 8: tmplockbit
= bit
[15]; break;
1109 case 9: tmplockbit
= bit
[14]; break;
1110 case 10: tmplockbit
= bit
[13]; break;
1111 case 11: tmplockbit
= bit
[12]; break;
1112 case 12: tmplockbit
= bit
[11]; break;
1113 case 13: tmplockbit
= bit
[10]; break;
1114 case 14: tmplockbit
= bit
[9]; break;
1115 case 15: tmplockbit
= bit
[8]; break;
1119 case 19: tmplockbit
= bit2
[6]; break;
1123 case 23: tmplockbit
= bit2
[5]; break;
1127 case 27: tmplockbit
= bit2
[4]; break;
1131 case 31: tmplockbit
= bit2
[2]; break;
1135 case 35: tmplockbit
= bit2
[1]; break;
1139 case 39: tmplockbit
= bit2
[0]; break;
1140 case 40: tmplockbit
= bit2
[12]; break;
1141 case 41: tmplockbit
= bit2
[11]; break;
1142 case 42: tmplockbit
= bit2
[10]; break; //auth0
1143 case 43: tmplockbit
= bit2
[9]; break; //auth1
1146 PrintAndLog("Block %02x:%s [%d]", i
,sprint_hex(data
+ i
* 4, 4),tmplockbit
);
1149 // user supplied filename?
1151 // UID = data 0-1-2 4-5-6-7 (skips a beat)
1152 sprintf(fnameptr
,"%02X%02X%02X%02X%02X%02X%02X.bin",
1153 data
[0],data
[1], data
[2], data
[4],data
[5],data
[6], data
[7]);
1155 sprintf(fnameptr
+ fileNlen
,".bin");
1158 if ((fout
= fopen(filename
,"wb")) == NULL
) {
1159 PrintAndLog("Could not create file name %s", filename
);
1162 fwrite( data
, 1, Pages
*4, fout
);
1165 PrintAndLog("Dumped %d pages, wrote %d bytes to %s", Pages
, Pages
*4, filename
);
1170 // Needed to Authenticate to Ultralight C tags
1171 void rol (uint8_t *data, const size_t len){
1172 uint8_t first = data[0];
1173 for (size_t i = 0; i < len-1; i++) {
1174 data[i] = data[i+1];
1176 data[len-1] = first;
1180 //-------------------------------------------------------------------------------
1181 // Ultralight C Methods
1182 //-------------------------------------------------------------------------------
1185 // Ultralight C Authentication Demo {currently uses hard-coded key}
1187 int CmdHF14AMfucAuth(const char *Cmd
){
1190 bool errors
= false;
1192 char cmdp
= param_getchar(Cmd
, 0);
1194 //Change key to user defined one
1195 if (cmdp
== 'k' || cmdp
== 'K'){
1196 keyNo
= param_get8(Cmd
, 1);
1197 if(keyNo
> KEYS_3DES_COUNT
)
1201 if (cmdp
== 'h' || cmdp
== 'H')
1205 PrintAndLog("Usage: hf mfu cauth k <key number>");
1206 PrintAndLog(" 0 (default): 3DES standard key");
1207 PrintAndLog(" 1 : all 0x00 key");
1208 PrintAndLog(" 2 : 0x00-0x0F key");
1209 PrintAndLog(" 3 : nfc key");
1210 PrintAndLog(" 4 : all 0x01 key");
1211 PrintAndLog(" 5 : all 0xff key");
1212 PrintAndLog(" 6 : 0x00-0xFF key");
1213 PrintAndLog("\n sample : hf mfu cauth k");
1214 PrintAndLog(" : hf mfu cauth k 3");
1218 uint8_t *key
= default_3des_keys
[keyNo
];
1219 if (ulc_authentication(key
, true) == 0)
1220 PrintAndLog("Authentication successful. 3des key: %s",sprint_hex(key
, 16));
1222 PrintAndLog("Authentication failed");
1228 A test function to validate that the polarssl-function works the same
1229 was as the openssl-implementation.
1230 Commented out, since it requires openssl
1232 int CmdTestDES(const char * cmd)
1234 uint8_t key[16] = {0x00};
1236 memcpy(key,key3_3des_data,16);
1237 DES_cblock RndA, RndB;
1239 PrintAndLog("----------OpenSSL DES implementation----------");
1241 uint8_t e_RndB[8] = {0x00};
1242 unsigned char RndARndB[16] = {0x00};
1244 DES_cblock iv = { 0 };
1245 DES_key_schedule ks1,ks2;
1246 DES_cblock key1,key2;
1248 memcpy(key,key3_3des_data,16);
1250 memcpy(key2,key+8,8);
1253 DES_set_key((DES_cblock *)key1,&ks1);
1254 DES_set_key((DES_cblock *)key2,&ks2);
1256 DES_random_key(&RndA);
1257 PrintAndLog(" RndA:%s",sprint_hex(RndA, 8));
1258 PrintAndLog(" e_RndB:%s",sprint_hex(e_RndB, 8));
1259 //void DES_ede2_cbc_encrypt(const unsigned char *input,
1260 // unsigned char *output, long length, DES_key_schedule *ks1,
1261 // DES_key_schedule *ks2, DES_cblock *ivec, int enc);
1262 DES_ede2_cbc_encrypt(e_RndB,RndB,sizeof(e_RndB),&ks1,&ks2,&iv,0);
1264 PrintAndLog(" RndB:%s",sprint_hex(RndB, 8));
1266 memcpy(RndARndB,RndA,8);
1267 memcpy(RndARndB+8,RndB,8);
1268 PrintAndLog(" RA+B:%s",sprint_hex(RndARndB, 16));
1269 DES_ede2_cbc_encrypt(RndARndB,RndARndB,sizeof(RndARndB),&ks1,&ks2,&e_RndB,1);
1270 PrintAndLog("enc(RA+B):%s",sprint_hex(RndARndB, 16));
1273 PrintAndLog("----------PolarSSL implementation----------");
1275 uint8_t random_a[8] = { 0 };
1276 uint8_t enc_random_a[8] = { 0 };
1277 uint8_t random_b[8] = { 0 };
1278 uint8_t enc_random_b[8] = { 0 };
1279 uint8_t random_a_and_b[16] = { 0 };
1280 des3_context ctx = { 0 };
1282 memcpy(random_a, RndA,8);
1284 uint8_t output[8] = { 0 };
1285 uint8_t iv[8] = { 0 };
1287 PrintAndLog(" RndA :%s",sprint_hex(random_a, 8));
1288 PrintAndLog(" e_RndB:%s",sprint_hex(enc_random_b, 8));
1290 des3_set2key_dec(&ctx, key);
1292 des3_crypt_cbc(&ctx // des3_context *ctx
1293 , DES_DECRYPT // int mode
1294 , sizeof(random_b) // size_t length
1295 , iv // unsigned char iv[8]
1296 , enc_random_b // const unsigned char *input
1297 , random_b // unsigned char *output
1300 PrintAndLog(" RndB:%s",sprint_hex(random_b, 8));
1303 memcpy(random_a_and_b ,random_a,8);
1304 memcpy(random_a_and_b+8,random_b,8);
1306 PrintAndLog(" RA+B:%s",sprint_hex(random_a_and_b, 16));
1308 des3_set2key_enc(&ctx, key);
1310 des3_crypt_cbc(&ctx // des3_context *ctx
1311 , DES_ENCRYPT // int mode
1312 , sizeof(random_a_and_b) // size_t length
1313 , enc_random_b // unsigned char iv[8]
1314 , random_a_and_b // const unsigned char *input
1315 , random_a_and_b // unsigned char *output
1318 PrintAndLog("enc(RA+B):%s",sprint_hex(random_a_and_b, 16));
1325 // Ultralight C Read Single Block
1327 int CmdHF14AMfUCRdBl(const char *Cmd
)
1330 bool hasPwd
= FALSE
;
1331 uint8_t blockNo
= -1;
1333 char cmdp
= param_getchar(Cmd
, 0);
1335 if (strlen(Cmd
) < 1 || cmdp
== 'h' || cmdp
== 'H') {
1336 PrintAndLog("Usage: hf mfu crdbl <block number> <key>");
1338 PrintAndLog("sample: hf mfu crdbl 0");
1339 PrintAndLog(" hf mfu crdbl 0 00112233445566778899AABBCCDDEEFF");
1343 blockNo
= param_get8(Cmd
, 0);
1345 PrintAndLog("Wrong block number");
1349 if (blockNo
> MAX_ULC_BLOCKS
){
1350 PrintAndLog("Error: Maximum number of blocks is 47 for Ultralight-C");
1355 if ( strlen(Cmd
) > 3){
1356 if (param_gethex(Cmd
, 1, key
, 32)) {
1357 PrintAndLog("Key must include %d HEX symbols", 32);
1365 UsbCommand c
= {CMD_MIFAREU_READBL
, {blockNo
}};
1368 memcpy(c
.d
.asBytes
,key
,16);
1372 if (WaitForResponseTimeout(CMD_ACK
,&resp
,1500)) {
1373 uint8_t isOK
= resp
.arg
[0] & 0xff;
1375 uint8_t *data
= resp
.d
.asBytes
;
1376 PrintAndLog("Block: %0d (0x%02X) [ %s]", (int)blockNo
, blockNo
, sprint_hex(data
, 4));
1379 PrintAndLog("Failed reading block: (%02x)", isOK
);
1382 PrintAndLog("Command execute time-out");
1388 // Mifare Ultralight C Write Single Block
1390 int CmdHF14AMfUCWrBl(const char *Cmd
){
1392 uint8_t blockNo
= -1;
1393 bool chinese_card
= FALSE
;
1394 uint8_t bldata
[16] = {0x00};
1397 char cmdp
= param_getchar(Cmd
, 0);
1399 if (strlen(Cmd
) < 3 || cmdp
== 'h' || cmdp
== 'H') {
1400 PrintAndLog("Usage: hf mfu cwrbl <block number> <block data (8 hex symbols)> [w]");
1401 PrintAndLog(" [block number]");
1402 PrintAndLog(" [block data] - (8 hex symbols)");
1403 PrintAndLog(" [w] - Chinese magic ultralight tag");
1405 PrintAndLog(" sample: hf mfu cwrbl 0 01020304");
1410 blockNo
= param_get8(Cmd
, 0);
1411 if (blockNo
> MAX_ULC_BLOCKS
){
1412 PrintAndLog("Error: Maximum number of blocks is 47 for Ultralight-C Cards!");
1416 if (param_gethex(Cmd
, 1, bldata
, 8)) {
1417 PrintAndLog("Block data must include 8 HEX symbols");
1421 if (strchr(Cmd
,'w') != 0 || strchr(Cmd
,'W') != 0 ) {
1422 chinese_card
= TRUE
;
1425 if ( blockNo
<= 3 ) {
1427 PrintAndLog("Access Denied");
1430 PrintAndLog("--Special block no: 0x%02x", blockNo
);
1431 PrintAndLog("--Data: %s", sprint_hex(bldata
, 4));
1432 UsbCommand d
= {CMD_MIFAREU_WRITEBL
, {blockNo
}};
1433 memcpy(d
.d
.asBytes
,bldata
, 4);
1435 if (WaitForResponseTimeout(CMD_ACK
,&resp
,1500)) {
1436 uint8_t isOK
= resp
.arg
[0] & 0xff;
1437 PrintAndLog("isOk:%02x", isOK
);
1439 PrintAndLog("Command execute timeout");
1444 PrintAndLog("--Block no : 0x%02x", blockNo
);
1445 PrintAndLog("--Data: %s", sprint_hex(bldata
, 4));
1446 UsbCommand e
= {CMD_MIFAREU_WRITEBL
, {blockNo
}};
1447 memcpy(e
.d
.asBytes
,bldata
, 4);
1449 if (WaitForResponseTimeout(CMD_ACK
,&resp
,1500)) {
1450 uint8_t isOK
= resp
.arg
[0] & 0xff;
1451 PrintAndLog("isOk : %02x", isOK
);
1453 PrintAndLog("Command execute timeout");
1461 // Mifare Ultralight C - Set password
1463 int CmdHF14AMfucSetPwd(const char *Cmd
){
1465 uint8_t pwd
[16] = {0x00};
1467 char cmdp
= param_getchar(Cmd
, 0);
1469 if (strlen(Cmd
) == 0 || cmdp
== 'h' || cmdp
== 'H') {
1470 PrintAndLog("Usage: hf mfu setpwd <password (32 hex symbols)>");
1471 PrintAndLog(" [password] - (32 hex symbols)");
1473 PrintAndLog("sample: hf mfu setpwd 000102030405060708090a0b0c0d0e0f");
1478 if (param_gethex(Cmd
, 0, pwd
, 32)) {
1479 PrintAndLog("Password must include 32 HEX symbols");
1483 UsbCommand c
= {CMD_MIFAREUC_SETPWD
};
1484 memcpy( c
.d
.asBytes
, pwd
, 16);
1489 if (WaitForResponseTimeout(CMD_ACK
,&resp
,1500) ) {
1490 if ( (resp
.arg
[0] & 0xff) == 1)
1491 PrintAndLog("Ultralight-C new password: %s", sprint_hex(pwd
,16));
1493 PrintAndLog("Failed writing at block %d", resp
.arg
[1] & 0xff);
1498 PrintAndLog("command execution time out");
1506 // Magic UL / UL-C tags - Set UID
1508 int CmdHF14AMfucSetUid(const char *Cmd
){
1512 uint8_t uid
[7] = {0x00};
1513 char cmdp
= param_getchar(Cmd
, 0);
1515 if (strlen(Cmd
) == 0 || cmdp
== 'h' || cmdp
== 'H') {
1516 PrintAndLog("Usage: hf mfu setuid <uid (14 hex symbols)>");
1517 PrintAndLog(" [uid] - (14 hex symbols)");
1518 PrintAndLog("\nThis only works for Magic Ultralight tags.");
1520 PrintAndLog("sample: hf mfu setuid 11223344556677");
1525 if (param_gethex(Cmd
, 0, uid
, 14)) {
1526 PrintAndLog("UID must include 14 HEX symbols");
1531 c
.cmd
= CMD_MIFAREU_READBL
;
1534 if (!WaitForResponseTimeout(CMD_ACK
,&resp
,1500)) {
1535 PrintAndLog("Command execute timeout");
1540 uint8_t oldblock2
[4] = {0x00};
1541 memcpy(resp
.d
.asBytes
, oldblock2
, 4);
1544 c
.cmd
= CMD_MIFAREU_WRITEBL
;
1546 c
.d
.asBytes
[0] = uid
[0];
1547 c
.d
.asBytes
[1] = uid
[1];
1548 c
.d
.asBytes
[2] = uid
[2];
1549 c
.d
.asBytes
[3] = 0x88 ^ uid
[0] ^ uid
[1] ^ uid
[2];
1551 if (!WaitForResponseTimeout(CMD_ACK
,&resp
,1500)) {
1552 PrintAndLog("Command execute timeout");
1558 c
.d
.asBytes
[0] = uid
[3];
1559 c
.d
.asBytes
[1] = uid
[4];
1560 c
.d
.asBytes
[2] = uid
[5];
1561 c
.d
.asBytes
[3] = uid
[6];
1563 if (!WaitForResponseTimeout(CMD_ACK
,&resp
,1500) ) {
1564 PrintAndLog("Command execute timeout");
1570 c
.d
.asBytes
[0] = uid
[3] ^ uid
[4] ^ uid
[5] ^ uid
[6];
1571 c
.d
.asBytes
[1] = oldblock2
[1];
1572 c
.d
.asBytes
[2] = oldblock2
[2];
1573 c
.d
.asBytes
[3] = oldblock2
[3];
1575 if (!WaitForResponseTimeout(CMD_ACK
,&resp
,1500) ) {
1576 PrintAndLog("Command execute timeout");
1583 int CmdHF14AMfuGenDiverseKeys(const char *Cmd
){
1585 uint8_t iv
[8] = { 0x00 };
1586 uint8_t block
= 0x07;
1589 //04 57 b6 e2 05 3f 80 UID
1591 uint8_t uid
[] = { 0xF4,0xEA, 0x54, 0x8E };
1592 uint8_t mifarekeyA
[] = { 0xA0,0xA1,0xA2,0xA3,0xA4,0xA5 };
1593 uint8_t mifarekeyB
[] = { 0xB0,0xB1,0xB2,0xB3,0xB4,0xB5 };
1594 uint8_t dkeyA
[8] = { 0x00 };
1595 uint8_t dkeyB
[8] = { 0x00 };
1597 uint8_t masterkey
[] = { 0x00,0x11,0x22,0x33,0x44,0x55,0x66,0x77,0x88,0x99,0xaa,0xbb,0xcc,0xdd,0xee,0xff };
1599 uint8_t mix
[8] = { 0x00 };
1600 uint8_t divkey
[8] = { 0x00 };
1602 memcpy(mix
, mifarekeyA
, 4);
1604 mix
[4] = mifarekeyA
[4] ^ uid
[0];
1605 mix
[5] = mifarekeyA
[5] ^ uid
[1];
1606 mix
[6] = block
^ uid
[2];
1609 des3_context ctx
= { 0x00 };
1610 des3_set2key_enc(&ctx
, masterkey
);
1612 des3_crypt_cbc(&ctx
// des3_context
1613 , DES_ENCRYPT
// int mode
1614 , sizeof(mix
) // length
1620 PrintAndLog("3DES version");
1621 PrintAndLog("Masterkey :\t %s", sprint_hex(masterkey
,sizeof(masterkey
)));
1622 PrintAndLog("UID :\t %s", sprint_hex(uid
, sizeof(uid
)));
1623 PrintAndLog("Sector :\t %0d", block
);
1624 PrintAndLog("Mifare key :\t %s", sprint_hex(mifarekeyA
, sizeof(mifarekeyA
)));
1625 PrintAndLog("Message :\t %s", sprint_hex(mix
, sizeof(mix
)));
1626 PrintAndLog("Diversified key: %s", sprint_hex(divkey
+1, 6));
1628 PrintAndLog("\n DES version");
1630 for (int i
=0; i
< sizeof(mifarekeyA
); ++i
){
1631 dkeyA
[i
] = (mifarekeyA
[i
] << 1) & 0xff;
1632 dkeyA
[6] |= ((mifarekeyA
[i
] >> 7) & 1) << (i
+1);
1635 for (int i
=0; i
< sizeof(mifarekeyB
); ++i
){
1636 dkeyB
[1] |= ((mifarekeyB
[i
] >> 7) & 1) << (i
+1);
1637 dkeyB
[2+i
] = (mifarekeyB
[i
] << 1) & 0xff;
1640 uint8_t zeros
[8] = {0x00};
1641 uint8_t newpwd
[8] = {0x00};
1642 uint8_t dmkey
[24] = {0x00};
1643 memcpy(dmkey
, dkeyA
, 8);
1644 memcpy(dmkey
+8, dkeyB
, 8);
1645 memcpy(dmkey
+16, dkeyA
, 8);
1646 memset(iv
, 0x00, 8);
1648 des3_set3key_enc(&ctx
, dmkey
);
1650 des3_crypt_cbc(&ctx
// des3_context
1651 , DES_ENCRYPT
// int mode
1652 , sizeof(newpwd
) // length
1658 PrintAndLog("Mifare dkeyA :\t %s", sprint_hex(dkeyA
, sizeof(dkeyA
)));
1659 PrintAndLog("Mifare dkeyB :\t %s", sprint_hex(dkeyB
, sizeof(dkeyB
)));
1660 PrintAndLog("Mifare ABA :\t %s", sprint_hex(dmkey
, sizeof(dmkey
)));
1661 PrintAndLog("Mifare Pwd :\t %s", sprint_hex(newpwd
, sizeof(newpwd
)));
1666 // static uint8_t * diversify_key(uint8_t * key){
1668 // for(int i=0; i<16; i++){
1669 // if(i<=6) key[i]^=cuid[i];
1670 // if(i>6) key[i]^=cuid[i%7];
1675 // static void GenerateUIDe( uint8_t *uid, uint8_t len){
1676 // for (int i=0; i<len; ++i){
1682 //------------------------------------
1684 //------------------------------------
1685 static command_t CommandTable
[] =
1687 {"help", CmdHelp
, 1, "This help"},
1688 {"dbg", CmdHF14AMfDbg
, 0, "Set default debug mode"},
1689 {"info", CmdHF14AMfUInfo
, 0, "Tag information"},
1690 {"dump", CmdHF14AMfUDump
, 0, "Dump Ultralight / Ultralight-C tag to binary file"},
1691 {"rdbl", CmdHF14AMfURdBl
, 0, "Read block - Ultralight"},
1692 {"wrbl", CmdHF14AMfUWrBl
, 0, "Write block - Ultralight"},
1693 {"crdbl", CmdHF14AMfUCRdBl
, 0, "Read block - Ultralight C"},
1694 {"cwrbl", CmdHF14AMfUCWrBl
, 0, "Write block - Ultralight C"},
1695 {"cauth", CmdHF14AMfucAuth
, 0, "Authentication - Ultralight C"},
1696 {"setpwd", CmdHF14AMfucSetPwd
, 1, "Set 3des password - Ultralight-C"},
1697 {"setuid", CmdHF14AMfucSetUid
, 1, "Set UID - MAGIC tags only"},
1698 {"gen", CmdHF14AMfuGenDiverseKeys
, 1, "Generate 3des mifare diversified keys"},
1699 {NULL
, NULL
, 0, NULL
}
1702 int CmdHFMFUltra(const char *Cmd
){
1703 WaitForResponseTimeout(CMD_ACK
,NULL
,100);
1704 CmdsParse(CommandTable
, Cmd
);
1708 int CmdHelp(const char *Cmd
){
1709 CmdsHelp(CommandTable
);