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comment fudan check possibilities
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81740aa5 1//-----------------------------------------------------------------------------
2// Ultralight Code (c) 2013,2014 Midnitesnake & Andy Davies of Pentura
3//
4// This code is licensed to you under the terms of the GNU GPL, version 2 or,
5// at your option, any later version. See the LICENSE.txt file for the text of
6// the license.
7//-----------------------------------------------------------------------------
8// High frequency MIFARE ULTRALIGHT (C) commands
9//-----------------------------------------------------------------------------
afceaf40 10#include "loclass/des.h"
81740aa5 11#include "cmdhfmfu.h"
12#include "cmdhfmf.h"
13#include "cmdhf14a.h"
f168b263 14#include "mifare.h"
f9848fd6 15#include "util.h"
75377d29 16#include "protocols.h"
9d87eb66 17#include "data.h"
81740aa5 18
4a74e2be 19#define MAX_UL_BLOCKS 0x0f
20#define MAX_ULC_BLOCKS 0x2b
21#define MAX_ULEV1a_BLOCKS 0x13
22#define MAX_ULEV1b_BLOCKS 0x28
23#define MAX_NTAG_203 0x29
24#define MAX_NTAG_210 0x13
25#define MAX_NTAG_212 0x28
26#define MAX_NTAG_213 0x2c
27#define MAX_NTAG_215 0x86
28#define MAX_NTAG_216 0xe6
29#define MAX_MY_D_NFC 0xff
30#define MAX_MY_D_MOVE 0x25
31#define MAX_MY_D_MOVE_LEAN 0x0f
75377d29 32
345fb24a 33#define KEYS_3DES_COUNT 7
34uint8_t default_3des_keys[KEYS_3DES_COUNT][16] = {
f168b263 35 { 0x42,0x52,0x45,0x41,0x4b,0x4d,0x45,0x49,0x46,0x59,0x4f,0x55,0x43,0x41,0x4e,0x21 },// 3des std key
36 { 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00 },// all zeroes
37 { 0x00,0x01,0x02,0x03,0x04,0x05,0x06,0x07,0x08,0x09,0x0a,0x0b,0x0c,0x0d,0x0e,0x0f },// 0x00-0x0F
38 { 0x49,0x45,0x4D,0x4B,0x41,0x45,0x52,0x42,0x21,0x4E,0x41,0x43,0x55,0x4F,0x59,0x46 },// NFC-key
39 { 0x01,0x01,0x01,0x01,0x01,0x01,0x01,0x01,0x01,0x01,0x01,0x01,0x01,0x01,0x01,0x01 },// all ones
40 { 0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF },// all FF
41 { 0x00,0x11,0x22,0x33,0x44,0x55,0x66,0x77,0x88,0x99,0xAA,0xBB,0xCC,0xDD,0xEE,0xFF } // 11 22 33
75377d29 42};
43
8258f409 44#define KEYS_PWD_COUNT 10
345fb24a 45uint8_t default_pwd_pack[KEYS_PWD_COUNT][4] = {
c585a5cf 46 {0xFF,0xFF,0xFF,0xFF}, // PACK 0x00,0x00 -- factory default
8258f409 47
c585a5cf 48 {0x4A,0xF8,0x4B,0x19}, // PACK 0xE5,0xBE -- italian bus (sniffed)
345fb24a 49 {0x33,0x6B,0xA1,0x19}, // PACK 0x9c,0x2d -- italian bus (sniffed)
50 {0xFF,0x90,0x6C,0xB2}, // PACK 0x12,0x9e -- italian bus (sniffed)
8258f409 51 {0x46,0x1c,0xA3,0x19}, // PACK 0xE9,0x5A -- italian bus (sniffed)
52 {0x35,0x1C,0xD0,0x19}, // PACK 0x9A,0x5a -- italian bus (sniffed)
53
345fb24a 54 {0x05,0x22,0xE6,0xB4}, // PACK 0x80,0x80 -- Amiiboo (sniffed) pikachu-b UID:
55 {0x7E,0x22,0xE6,0xB4}, // PACK 0x80,0x80 -- AMiiboo (sniffed)
56 {0x02,0xE1,0xEE,0x36}, // PACK 0x80,0x80 -- AMiiboo (sniffed) sonic UID: 04d257 7ae33e8027
57 {0x32,0x0C,0x16,0x17}, // PACK 0x80,0x80 -- AMiiboo (sniffed)
c585a5cf 58};
59
f4217d58 60#define MAX_UL_TYPES 18
61uint32_t UL_TYPES_ARRAY[MAX_UL_TYPES] = {UNKNOWN, UL, UL_C, UL_EV1_48, UL_EV1_128, NTAG, NTAG_203,
62 NTAG_210, NTAG_212, NTAG_213, NTAG_215, NTAG_216, MY_D, MY_D_NFC, MY_D_MOVE, MY_D_MOVE_NFC, MY_D_MOVE_LEAN, FUDAN_UL};
a383f4b7 63
64uint8_t UL_MEMORY_ARRAY[MAX_UL_TYPES] = {MAX_UL_BLOCKS, MAX_UL_BLOCKS, MAX_ULC_BLOCKS, MAX_ULEV1a_BLOCKS,
65 MAX_ULEV1b_BLOCKS, MAX_NTAG_203, MAX_NTAG_203, MAX_NTAG_210, MAX_NTAG_212, MAX_NTAG_213,
f4217d58 66 MAX_NTAG_215, MAX_NTAG_216, MAX_UL_BLOCKS, MAX_MY_D_NFC, MAX_MY_D_MOVE, MAX_MY_D_MOVE, MAX_MY_D_MOVE_LEAN, MAX_UL_BLOCKS};
5b99376a 67
68
f168b263 69static int CmdHelp(const char *Cmd);
afceaf40 70
4a74e2be 71// get version nxp product type
8258f409 72char *getProductTypeStr( uint8_t id){
75377d29 73
74 static char buf[20];
75 char *retStr = buf;
76
77 switch(id) {
1c429594 78 case 3: sprintf(retStr, "%02X, Ultralight", id); break;
79 case 4: sprintf(retStr, "%02X, NTAG", id); break;
80 default: sprintf(retStr, "%02X, unknown", id); break;
75377d29 81 }
82 return buf;
83}
84
85/*
86 The 7 MSBits (=n) code the storage size itself based on 2^n,
87 the LSBit is set to '0' if the size is exactly 2^n
88 and set to '1' if the storage size is between 2^n and 2^(n+1).
89*/
8258f409 90char *getUlev1CardSizeStr( uint8_t fsize ){
75377d29 91
345fb24a 92 static char buf[40];
75377d29 93 char *retStr = buf;
2be768af 94 memset(buf, 0, sizeof(buf));
75377d29 95
2be768af 96 uint16_t usize = 1 << ((fsize >>1) + 1);
97 uint16_t lsize = 1 << (fsize >>1);
75377d29 98
99 // is LSB set?
100 if ( fsize & 1 )
06561c34 101 sprintf(retStr, "%02X, (%u <-> %u bytes)",fsize, usize, lsize);
75377d29 102 else
06561c34 103 sprintf(retStr, "%02X, (%u bytes)", fsize, lsize);
75377d29 104 return buf;
105}
81740aa5 106
75377d29 107static void ul_switch_on_field(void) {
108 UsbCommand c = {CMD_READER_ISO_14443a, {ISO14A_CONNECT | ISO14A_NO_DISCONNECT, 0, 0}};
22342f6d 109 clearCommandBuffer();
f168b263 110 SendCommand(&c);
75377d29 111}
81740aa5 112
a2e2bb8a 113void ul_switch_off_field(void) {
75377d29 114 UsbCommand c = {CMD_READER_ISO_14443a, {0, 0, 0}};
22342f6d 115 clearCommandBuffer();
75377d29 116 SendCommand(&c);
117}
118
119static int ul_send_cmd_raw( uint8_t *cmd, uint8_t cmdlen, uint8_t *response, uint16_t responseLength ) {
120 UsbCommand c = {CMD_READER_ISO_14443a, {ISO14A_RAW | ISO14A_NO_DISCONNECT | ISO14A_APPEND_CRC, cmdlen, 0}};
121 memcpy(c.d.asBytes, cmd, cmdlen);
22342f6d 122 clearCommandBuffer();
75377d29 123 SendCommand(&c);
124 UsbCommand resp;
125 if (!WaitForResponseTimeout(CMD_ACK, &resp, 1500)) return -1;
372a8257 126 if (!resp.arg[0] && responseLength) return -1;
75377d29 127
128 uint16_t resplen = (resp.arg[0] < responseLength) ? resp.arg[0] : responseLength;
abab60ae 129 memcpy(response, resp.d.asBytes, resplen);
130 return resplen;
75377d29 131}
132/*
133static int ul_send_cmd_raw_crc( uint8_t *cmd, uint8_t cmdlen, uint8_t *response, uint16_t responseLength, bool append_crc ) {
134 UsbCommand c = {CMD_READER_ISO_14443a, {ISO14A_RAW | ISO14A_NO_DISCONNECT , cmdlen, 0}};
135 if (append_crc)
136 c.arg[0] |= ISO14A_APPEND_CRC;
137
138 memcpy(c.d.asBytes, cmd, cmdlen);
22342f6d 139 clearCommandBuffer();
75377d29 140 SendCommand(&c);
141 UsbCommand resp;
142 if (!WaitForResponseTimeout(CMD_ACK, &resp, 1500)) return -1;
c585a5cf 143 if (!resp.arg[0] && responseLength) return -1;
75377d29 144
145 uint16_t resplen = (resp.arg[0] < responseLength) ? resp.arg[0] : responseLength;
c585a5cf 146 memcpy(response, resp.d.asBytes, resplen);
147 return resplen;
75377d29 148}
149*/
150static int ul_select( iso14a_card_select_t *card ){
151
152 ul_switch_on_field();
153
154 UsbCommand resp;
c7442b76 155 bool ans = false;
156 ans = WaitForResponseTimeout(CMD_ACK, &resp, 1500);
ea118617 157 if (!ans || resp.arg[0] < 1) {
c7442b76 158 PrintAndLog("iso14443a card select failed");
159 ul_switch_off_field();
160 return 0;
161 }
75377d29 162
163 memcpy(card, resp.d.asBytes, sizeof(iso14a_card_select_t));
c7442b76 164 return 1;
75377d29 165}
166
167// This read command will at least return 16bytes.
168static int ul_read( uint8_t page, uint8_t *response, uint16_t responseLength ){
169
170 uint8_t cmd[] = {ISO14443A_CMD_READBLOCK, page};
171 int len = ul_send_cmd_raw(cmd, sizeof(cmd), response, responseLength);
75377d29 172 return len;
173}
174
c585a5cf 175static int ul_comp_write( uint8_t page, uint8_t *data, uint8_t datalen ){
176
177 uint8_t cmd[18];
178 memset(cmd, 0x00, sizeof(cmd));
179 datalen = ( datalen > 16) ? 16 : datalen;
180
181 cmd[0] = ISO14443A_CMD_WRITEBLOCK;
182 cmd[1] = page;
183 memcpy(cmd+2, data, datalen);
184
185 uint8_t response[1] = {0xff};
8258f409 186 ul_send_cmd_raw(cmd, 2+datalen, response, sizeof(response));
c585a5cf 187 // ACK
188 if ( response[0] == 0x0a ) return 0;
189 // NACK
190 return -1;
191}
345fb24a 192
a2e2bb8a 193static int ulc_requestAuthentication( uint8_t *nonce, uint16_t nonceLength ){
75377d29 194
a2e2bb8a 195 uint8_t cmd[] = {MIFARE_ULC_AUTH_1, 0x00};
75377d29 196 int len = ul_send_cmd_raw(cmd, sizeof(cmd), nonce, nonceLength);
75377d29 197 return len;
198}
345fb24a 199
8258f409 200static int ulc_authentication( uint8_t *key, bool switch_off_field ){
201
202 UsbCommand c = {CMD_MIFAREUC_AUTH, {switch_off_field}};
203 memcpy(c.d.asBytes, key, 16);
22342f6d 204 clearCommandBuffer();
8258f409 205 SendCommand(&c);
206 UsbCommand resp;
9d87eb66 207 if ( !WaitForResponseTimeout(CMD_ACK, &resp, 1500) ) return 0;
208 if ( resp.arg[0] == 1 ) return 1;
8258f409 209
9d87eb66 210 return 0;
8258f409 211}
212
75377d29 213static int ulev1_requestAuthentication( uint8_t *pwd, uint8_t *pack, uint16_t packLength ){
214
215 uint8_t cmd[] = {MIFARE_ULEV1_AUTH, pwd[0], pwd[1], pwd[2], pwd[3]};
216 int len = ul_send_cmd_raw(cmd, sizeof(cmd), pack, packLength);
75377d29 217 return len;
218}
219
1c429594 220static int ul_auth_select( iso14a_card_select_t *card, TagTypeUL_t tagtype, bool hasAuthKey, uint8_t *authenticationkey, uint8_t *pack, uint8_t packSize){
221 if ( hasAuthKey && (tagtype & UL_C)) {
222 //will select card automatically and close connection on error
223 if (!ulc_authentication(authenticationkey, false)) {
224 PrintAndLog("Error: Authentication Failed UL-C");
225 return 0;
226 }
227 } else {
228 if ( !ul_select(card) ) return 0;
229
230 if (hasAuthKey) {
231 if (ulev1_requestAuthentication(authenticationkey, pack, packSize) < 1) {
232 ul_switch_off_field();
233 PrintAndLog("Error: Authentication Failed UL-EV1/NTAG");
234 return 0;
235 }
236 }
237 }
238 return 1;
239}
240
75377d29 241static int ulev1_getVersion( uint8_t *response, uint16_t responseLength ){
242
243 uint8_t cmd[] = {MIFARE_ULEV1_VERSION};
244 int len = ul_send_cmd_raw(cmd, sizeof(cmd), response, responseLength);
75377d29 245 return len;
246}
247
248// static int ulev1_fastRead( uint8_t startblock, uint8_t endblock, uint8_t *response ){
f168b263 249
75377d29 250 // uint8_t cmd[] = {MIFARE_ULEV1_FASTREAD, startblock, endblock};
f168b263 251
75377d29 252 // if ( !ul_send_cmd_raw(cmd, sizeof(cmd), response)){
75377d29 253 // return -1;
254 // }
255 // return 0;
256// }
257
258static int ulev1_readCounter( uint8_t counter, uint8_t *response, uint16_t responseLength ){
259
260 uint8_t cmd[] = {MIFARE_ULEV1_READ_CNT, counter};
261 int len = ul_send_cmd_raw(cmd, sizeof(cmd), response, responseLength);
75377d29 262 return len;
263}
264
a2e2bb8a 265static int ulev1_readTearing( uint8_t counter, uint8_t *response, uint16_t responseLength ){
266
267 uint8_t cmd[] = {MIFARE_ULEV1_CHECKTEAR, counter};
268 int len = ul_send_cmd_raw(cmd, sizeof(cmd), response, responseLength);
a2e2bb8a 269 return len;
270}
271
c585a5cf 272static int ulev1_readSignature( uint8_t *response, uint16_t responseLength ){
273
274 uint8_t cmd[] = {MIFARE_ULEV1_READSIG, 0x00};
275 int len = ul_send_cmd_raw(cmd, sizeof(cmd), response, responseLength);
c585a5cf 276 return len;
277}
278
7c8b5e68 279
280// Fudan check checks for which error is given for a command with incorrect crc
281// NXP UL chip responds with 01, fudan 00.
282// other possible checks:
283// send a0 + crc
284// UL responds with 00, fudan doesn't respond
285// or
286// send a200 + crc
287// UL doesn't respond, fudan responds with 00
288// or
289// send 300000 + crc (read with extra byte(s))
290// UL responds with read of page 0, fudan doesn't respond.
291//
292// make sure field is off before calling this function
f4217d58 293static int ul_fudan_check( void ){
294 iso14a_card_select_t card;
295 if ( !ul_select(&card) )
296 return UL_ERROR;
297
298 UsbCommand c = {CMD_READER_ISO_14443a, {ISO14A_RAW | ISO14A_NO_DISCONNECT, 4, 0}};
299
300 uint8_t cmd[4] = {0x30,0x00,0x02,0xa7}; //wrong crc on purpose should be 0xa8
301 memcpy(c.d.asBytes, cmd, 4);
302 clearCommandBuffer();
303 SendCommand(&c);
304 UsbCommand resp;
305 if (!WaitForResponseTimeout(CMD_ACK, &resp, 1500)) return UL_ERROR;
306 if (resp.arg[0] != 1) return UL_ERROR;
307
308 return (!resp.d.asBytes[0]) ? FUDAN_UL : UL; //if response == 0x00 then Fudan, else Genuine NXP
309}
310
75377d29 311static int ul_print_default( uint8_t *data){
312
313 uint8_t uid[7];
75377d29 314 uid[0] = data[0];
315 uid[1] = data[1];
316 uid[2] = data[2];
317 uid[3] = data[4];
318 uid[4] = data[5];
319 uid[5] = data[6];
320 uid[6] = data[7];
321
322 PrintAndLog(" UID : %s ", sprint_hex(uid, 7));
79d7bcbb 323 PrintAndLog(" UID[0] : %02X, %s", uid[0], getTagInfo(uid[0]) );
4a74e2be 324 if ( uid[0] == 0x05 && ((uid[1] & 0xf0) >> 4) == 2 ) { // is infineon and 66RxxP
345fb24a 325 uint8_t chip = (data[8] & 0xC7); // 11000111 mask, bit 3,4,5 RFU
326 switch (chip){
4a74e2be 327 case 0xc2: PrintAndLog(" IC type : SLE 66R04P 770 Bytes"); break; //77 pages
328 case 0xc4: PrintAndLog(" IC type : SLE 66R16P 2560 Bytes"); break; //256 pages
329 case 0xc6: PrintAndLog(" IC type : SLE 66R32P 5120 Bytes"); break; //512 pages /2 sectors
345fb24a 330 }
331 }
75377d29 332 // CT (cascade tag byte) 0x88 xor SN0 xor SN1 xor SN2
333 int crc0 = 0x88 ^ data[0] ^ data[1] ^data[2];
334 if ( data[3] == crc0 )
1c429594 335 PrintAndLog(" BCC0 : %02X, Ok", data[3]);
75377d29 336 else
1c429594 337 PrintAndLog(" BCC0 : %02X, crc should be %02X", data[3], crc0);
75377d29 338
339 int crc1 = data[4] ^ data[5] ^ data[6] ^data[7];
340 if ( data[8] == crc1 )
1c429594 341 PrintAndLog(" BCC1 : %02X, Ok", data[8]);
75377d29 342 else
1c429594 343 PrintAndLog(" BCC1 : %02X, crc should be %02X", data[8], crc1 );
75377d29 344
1c429594 345 PrintAndLog(" Internal : %02X, %sdefault", data[9], (data[9]==0x48)?"":"not " );
29250969 346
6fdf42c6 347 PrintAndLog(" Lock : %s - %s",
348 sprint_hex(data+10, 2),
349 printBits(2, data+10)
350 );
29250969 351
6fdf42c6 352 PrintAndLog("OneTimePad : %s - %s\n",
353 sprint_hex(data + 12, 4),
354 printBits(4, data+12)
355 );
29250969 356
75377d29 357 return 0;
358}
359
a383f4b7 360static int ndef_print_CC(uint8_t *data) {
1c429594 361 // no NDEF message
362 if(data[0] != 0xe1)
363 return -1;
75377d29 364
a383f4b7 365 PrintAndLog("--- NDEF Message");
75377d29 366 PrintAndLog("Capability Container: %s", sprint_hex(data,4) );
1c429594 367 PrintAndLog(" %02X : NDEF Magic Number", data[0]);
368 PrintAndLog(" %02X : version %d.%d supported by tag", data[1], (data[1] & 0xF0) >> 4, data[1] & 0x0f);
369 PrintAndLog(" %02X : Physical Memory Size: %d bytes", data[2], (data[2] + 1) * 8);
c585a5cf 370 if ( data[2] == 0x12 )
1c429594 371 PrintAndLog(" %02X : NDEF Memory Size: %d bytes", data[2], 144);
c585a5cf 372 else if ( data[2] == 0x3e )
1c429594 373 PrintAndLog(" %02X : NDEF Memory Size: %d bytes", data[2], 496);
c585a5cf 374 else if ( data[2] == 0x6d )
1c429594 375 PrintAndLog(" %02X : NDEF Memory Size: %d bytes", data[2], 872);
376
377 PrintAndLog(" %02X : %s / %s", data[3],
75377d29 378 (data[3] & 0xF0) ? "(RFU)" : "Read access granted without any security",
379 (data[3] & 0x0F)==0 ? "Write access granted without any security" : (data[3] & 0x0F)==0x0F ? "No write access granted at all" : "(RFU)");
75377d29 380 return 0;
381}
382
c7442b76 383int ul_print_type(uint32_t tagtype, uint8_t spaces){
8ceb6b03 384 char spc[11] = " ";
385 spc[10]=0x00;
386 char *spacer = spc + (10-spaces);
387
75377d29 388 if ( tagtype & UL )
1c429594 389 PrintAndLog("%sTYPE : MIFARE Ultralight (MF0ICU1) %s", spacer, (tagtype & MAGIC) ? "<magic>" : "" );
75377d29 390 else if ( tagtype & UL_C)
1c429594 391 PrintAndLog("%sTYPE : MIFARE Ultralight C (MF0ULC) %s", spacer, (tagtype & MAGIC) ? "<magic>" : "" );
75377d29 392 else if ( tagtype & UL_EV1_48)
8ceb6b03 393 PrintAndLog("%sTYPE : MIFARE Ultralight EV1 48bytes (MF0UL1101)", spacer);
1c429594 394 else if ( tagtype & UL_EV1_128)
8ceb6b03 395 PrintAndLog("%sTYPE : MIFARE Ultralight EV1 128bytes (MF0UL2101)", spacer);
a383f4b7 396 else if ( tagtype & NTAG )
397 PrintAndLog("%sTYPE : NTAG UNKNOWN", spacer);
398 else if ( tagtype & NTAG_203 )
399 PrintAndLog("%sTYPE : NTAG 203 144bytes (NT2H0301F0DT)", spacer);
c7442b76 400 else if ( tagtype & NTAG_210 )
1c429594 401 PrintAndLog("%sTYPE : NTAG 210 48bytes (NT2L1011G0DU)", spacer);
c7442b76 402 else if ( tagtype & NTAG_212 )
a383f4b7 403 PrintAndLog("%sTYPE : NTAG 212 128bytes (NT2L1211G0DU)", spacer);
404 else if ( tagtype & NTAG_213 )
405 PrintAndLog("%sTYPE : NTAG 213 144bytes (NT2H1311G0DU)", spacer);
75377d29 406 else if ( tagtype & NTAG_215 )
a383f4b7 407 PrintAndLog("%sTYPE : NTAG 215 504bytes (NT2H1511G0DU)", spacer);
75377d29 408 else if ( tagtype & NTAG_216 )
a383f4b7 409 PrintAndLog("%sTYPE : NTAG 216 888bytes (NT2H1611G0DU)", spacer);
46fcd738 410 else if ( tagtype & NTAG_I2C_1K )
cd87ee91 411 PrintAndLog("%sTYPE : NTAG I%sC 888bytes (NT3H1101FHK)", spacer, "\xFD");
46fcd738 412 else if ( tagtype & NTAG_I2C_2K )
cd87ee91 413 PrintAndLog("%sTYPE : NTAG I%sC 1904bytes (NT3H1201FHK)", spacer, "\xFD");
345fb24a 414 else if ( tagtype & MY_D )
4a74e2be 415 PrintAndLog("%sTYPE : INFINEON my-d\x99 (SLE 66RxxS)", spacer);
345fb24a 416 else if ( tagtype & MY_D_NFC )
4a74e2be 417 PrintAndLog("%sTYPE : INFINEON my-d\x99 NFC (SLE 66RxxP)", spacer);
345fb24a 418 else if ( tagtype & MY_D_MOVE )
4a74e2be 419 PrintAndLog("%sTYPE : INFINEON my-d\x99 move (SLE 66R01P)", spacer);
345fb24a 420 else if ( tagtype & MY_D_MOVE_NFC )
4a74e2be 421 PrintAndLog("%sTYPE : INFINEON my-d\x99 move NFC (SLE 66R01P)", spacer);
422 else if ( tagtype & MY_D_MOVE_LEAN )
423 PrintAndLog("%sTYPE : INFINEON my-d\x99 move lean (SLE 66R01L)", spacer);
f4217d58 424 else if ( tagtype & FUDAN_UL )
425 PrintAndLog("%sTYPE : FUDAN Ultralight Compatible (or other compatible) %s", spacer, (tagtype & MAGIC) ? "<magic>" : "" );
75377d29 426 else
c7442b76 427 PrintAndLog("%sTYPE : Unknown %06x", spacer, tagtype);
75377d29 428 return 0;
429}
430
431static int ulc_print_3deskey( uint8_t *data){
1c429594 432 PrintAndLog(" deskey1 [44/0x2C] : %s [%.4s]", sprint_hex(data ,4),data);
433 PrintAndLog(" deskey1 [45/0x2D] : %s [%.4s]", sprint_hex(data+4 ,4),data+4);
434 PrintAndLog(" deskey2 [46/0x2E] : %s [%.4s]", sprint_hex(data+8 ,4),data+8);
435 PrintAndLog(" deskey2 [47/0x2F] : %s [%.4s]", sprint_hex(data+12,4),data+12);
2b3af97d 436 PrintAndLog("\n 3des key : %s", sprint_hex(SwapEndian64(data, 16, 8), 16));
75377d29 437 return 0;
438}
439
440static int ulc_print_configuration( uint8_t *data){
441
442 PrintAndLog("--- UL-C Configuration");
1c429594 443 PrintAndLog(" Higher Lockbits [40/0x28] : %s - %s", sprint_hex(data, 4), printBits(2, data));
444 PrintAndLog(" Counter [41/0x29] : %s - %s", sprint_hex(data+4, 4), printBits(2, data+4));
75377d29 445
446 bool validAuth = (data[8] >= 0x03 && data[8] <= 0x30);
447 if ( validAuth )
1c429594 448 PrintAndLog(" Auth0 [42/0x2A] : %s page %d/0x%02X and above need authentication", sprint_hex(data+8, 4), data[8],data[8] );
75377d29 449 else{
450 if ( data[8] == 0){
1c429594 451 PrintAndLog(" Auth0 [42/0x2A] : %s default", sprint_hex(data+8, 4) );
75377d29 452 } else {
1c429594 453 PrintAndLog(" Auth0 [42/0x2A] : %s auth byte is out-of-range", sprint_hex(data+8, 4) );
f168b263 454 }
75377d29 455 }
1c429594 456 PrintAndLog(" Auth1 [43/0x2B] : %s %s",
75377d29 457 sprint_hex(data+12, 4),
458 (data[12] & 1) ? "write access restricted": "read and write access restricted"
459 );
f168b263 460 return 0;
461}
81740aa5 462
012c0761 463static int ulev1_print_configuration( uint8_t *data, uint8_t startPage){
f168b263 464
a383f4b7 465 PrintAndLog("\n--- Tag Configuration");
75377d29 466
467 bool strg_mod_en = (data[0] & 2);
468 uint8_t authlim = (data[4] & 0x07);
469 bool cfglck = (data[4] & 0x40);
470 bool prot = (data[4] & 0x80);
471 uint8_t vctid = data[5];
472
012c0761 473 PrintAndLog(" cfg0 [%u/0x%02X] : %s", startPage, startPage, sprint_hex(data, 4));
345fb24a 474 if ( data[3] < 0xff )
a2e2bb8a 475 PrintAndLog(" - page %d and above need authentication",data[3]);
345fb24a 476 else
477 PrintAndLog(" - pages don't need authentication");
75377d29 478 PrintAndLog(" - strong modulation mode %s", (strg_mod_en) ? "enabled":"disabled");
012c0761 479 PrintAndLog(" cfg1 [%u/0x%02X] : %s", startPage + 1, startPage + 1, sprint_hex(data+4, 4) );
75377d29 480 if ( authlim == 0)
345fb24a 481 PrintAndLog(" - Unlimited password attempts");
75377d29 482 else
483 PrintAndLog(" - Max number of password attempts is %d", authlim);
484 PrintAndLog(" - user configuration %s", cfglck ? "permanently locked":"writeable");
485 PrintAndLog(" - %s access is protected with password", prot ? "read and write":"write");
1c429594 486 PrintAndLog(" - %02X, Virtual Card Type Identifier is %s default", vctid, (vctid==0x05)? "":"not");
012c0761 487 PrintAndLog(" PWD [%u/0x%02X] : %s- (cannot be read)", startPage + 2, startPage + 2, sprint_hex(data+8, 4));
488 PrintAndLog(" PACK [%u/0x%02X] : %s - (cannot be read)", startPage + 3, startPage + 3, sprint_hex(data+12, 2));
489 PrintAndLog(" RFU [%u/0x%02X] : %s- (cannot be read)", startPage + 3, startPage + 3, sprint_hex(data+12, 2));
75377d29 490 return 0;
491}
492
493static int ulev1_print_counters(){
a383f4b7 494 PrintAndLog("--- Tag Counters");
a2e2bb8a 495 uint8_t tear[1] = {0};
75377d29 496 uint8_t counter[3] = {0,0,0};
c7442b76 497 uint16_t len = 0;
75377d29 498 for ( uint8_t i = 0; i<3; ++i) {
a2e2bb8a 499 ulev1_readTearing(i,tear,sizeof(tear));
c7442b76 500 len = ulev1_readCounter(i,counter, sizeof(counter) );
501 if (len == 3) {
502 PrintAndLog(" [%0d] : %s", i, sprint_hex(counter,3));
503 PrintAndLog(" - %02X tearing %s", tear[0], ( tear[0]==0xBD)?"Ok":"failure");
504 }
75377d29 505 }
c7442b76 506 return len;
75377d29 507}
508
c585a5cf 509static int ulev1_print_signature( uint8_t *data, uint8_t len){
a383f4b7 510 PrintAndLog("\n--- Tag Signature");
06561c34 511 //PrintAndLog("IC signature public key name : NXP NTAG21x 2013"); // don't know if there is other NXP public keys.. :(
c585a5cf 512 PrintAndLog("IC signature public key value : 04494e1a386d3d3cfe3dc10e5de68a499b1c202db5b132393e89ed19fe5be8bc61");
513 PrintAndLog(" Elliptic curve parameters : secp128r1");
514 PrintAndLog(" Tag ECC Signature : %s", sprint_hex(data, len));
515 //to do: verify if signature is valid
516 //PrintAndLog("IC signature status: %s valid", (iseccvalid() )?"":"not");
517 return 0;
518}
345fb24a 519
520static int ulev1_print_version(uint8_t *data){
a383f4b7 521 PrintAndLog("\n--- Tag Version");
1c429594 522 PrintAndLog(" Raw bytes : %s",sprint_hex(data, 8) );
523 PrintAndLog(" Vendor ID : %02X, %s", data[1], getTagInfo(data[1]));
345fb24a 524 PrintAndLog(" Product type : %s", getProductTypeStr(data[2]));
1c429594 525 PrintAndLog(" Product subtype : %02X, %s", data[3], (data[3]==1) ?"17 pF":"50pF");
345fb24a 526 PrintAndLog(" Major version : %02X", data[4]);
527 PrintAndLog(" Minor version : %02X", data[5]);
528 PrintAndLog(" Size : %s", getUlev1CardSizeStr(data[6]));
529 PrintAndLog(" Protocol type : %02X", data[7]);
530 return 0;
531}
532
f04ef473 533/*
c585a5cf 534static int ulc_magic_test(){
535 // Magic Ultralight test
536 // Magic UL-C, by observation,
537 // 1) it seems to have a static nonce response to 0x1A command.
538 // 2) the deskey bytes is not-zero:d out on as datasheet states.
539 // 3) UID - changeable, not only, but pages 0-1-2-3.
540 // 4) use the ul_magic_test ! magic tags answers specially!
541 int returnValue = UL_ERROR;
542 iso14a_card_select_t card;
543 uint8_t nonce1[11] = {0x00};
544 uint8_t nonce2[11] = {0x00};
545 int status = ul_select(&card);
c7442b76 546 if ( !status ){
c585a5cf 547 return UL_ERROR;
548 }
a2e2bb8a 549 status = ulc_requestAuthentication(nonce1, sizeof(nonce1));
c585a5cf 550 if ( status > 0 ) {
a2e2bb8a 551 status = ulc_requestAuthentication(nonce2, sizeof(nonce2));
c585a5cf 552 returnValue = ( !memcmp(nonce1, nonce2, 11) ) ? UL_C_MAGIC : UL_C;
553 } else {
554 returnValue = UL;
555 }
556 ul_switch_off_field();
557 return returnValue;
558}
f04ef473 559*/
c585a5cf 560static int ul_magic_test(){
561
562 // Magic Ultralight tests
563 // 1) take present UID, and try to write it back. OBSOLETE
564 // 2) make a wrong length write to page0, and see if tag answers with ACK/NACK:
565 iso14a_card_select_t card;
c7442b76 566 if ( !ul_select(&card) )
c585a5cf 567 return UL_ERROR;
46fcd738 568 int status = ul_comp_write(0, NULL, 0);
c585a5cf 569 ul_switch_off_field();
a2e2bb8a 570 if ( status == 0 )
46fcd738 571 return MAGIC;
572 return 0;
c585a5cf 573}
f04ef473 574
c7442b76 575uint32_t GetHF14AMfU_Type(void){
81740aa5 576
92690507 577 TagTypeUL_t tagtype = UNKNOWN;
578 iso14a_card_select_t card;
75377d29 579 uint8_t version[10] = {0x00};
75377d29 580 int status = 0;
581 int len;
582
c7442b76 583 if (!ul_select(&card)) return UL_ERROR;
584
92690507 585 // Ultralight - ATQA / SAK
abab60ae 586 if ( card.atqa[1] != 0x00 || card.atqa[0] != 0x44 || card.sak != 0x00 ) {
4693c188 587 PrintAndLog("Tag is not Ultralight | NTAG | MY-D [ATQA: %02X %02X SAK: %02X]\n", card.atqa[1], card.atqa[0], card.sak);
75377d29 588 ul_switch_off_field();
589 return UL_ERROR;
590 }
92690507 591
345fb24a 592 if ( card.uid[0] != 0x05) {
75377d29 593
345fb24a 594 len = ulev1_getVersion(version, sizeof(version));
8258f409 595 ul_switch_off_field();
345fb24a 596
597 switch (len) {
598 case 0x0A: {
599
600 if ( version[2] == 0x03 && version[6] == 0x0B )
601 tagtype = UL_EV1_48;
602 else if ( version[2] == 0x03 && version[6] != 0x0B )
603 tagtype = UL_EV1_128;
a383f4b7 604 else if ( version[2] == 0x04 && version[3] == 0x01 && version[6] == 0x0B )
605 tagtype = NTAG_210;
606 else if ( version[2] == 0x04 && version[3] == 0x01 && version[6] == 0x0E )
607 tagtype = NTAG_212;
608 else if ( version[2] == 0x04 && version[3] == 0x02 && version[6] == 0x0F )
345fb24a 609 tagtype = NTAG_213;
a383f4b7 610 else if ( version[2] == 0x04 && version[3] == 0x02 && version[6] == 0x11 )
345fb24a 611 tagtype = NTAG_215;
a383f4b7 612 else if ( version[2] == 0x04 && version[3] == 0x02 && version[6] == 0x13 )
345fb24a 613 tagtype = NTAG_216;
c7442b76 614 else if ( version[2] == 0x04 && version[3] == 0x05 && version[6] == 0x13 )
615 tagtype = NTAG_I2C_1K;
616 else if ( version[2] == 0x04 && version[3] == 0x05 && version[6] == 0x15 )
617 tagtype = NTAG_I2C_2K;
345fb24a 618 else if ( version[2] == 0x04 )
619 tagtype = NTAG;
620
621 break;
622 }
623 case 0x01: tagtype = UL_C; break;
624 case 0x00: tagtype = UL; break;
46fcd738 625 case -1 : tagtype = (UL | UL_C | NTAG_203); break; // could be UL | UL_C magic tags
345fb24a 626 default : tagtype = UNKNOWN; break;
627 }
a383f4b7 628 // UL vs UL-C vs ntag203 test
629 if (tagtype & (UL | UL_C | NTAG_203)) {
c7442b76 630 if ( !ul_select(&card) ) return UL_ERROR;
a383f4b7 631
632 // do UL_C check first...
8258f409 633 uint8_t nonce[11] = {0x00};
634 status = ulc_requestAuthentication(nonce, sizeof(nonce));
8258f409 635 ul_switch_off_field();
a383f4b7 636 if (status > 1) {
637 tagtype = UL_C;
638 } else {
639 // need to re-select after authentication error
c7442b76 640 if ( !ul_select(&card) ) return UL_ERROR;
641
a383f4b7 642 uint8_t data[16] = {0x00};
643 // read page 0x26-0x29 (last valid ntag203 page)
644 status = ul_read(0x26, data, sizeof(data));
645 if ( status <= 1 ) {
646 tagtype = UL;
647 } else {
648 // read page 0x30 (should error if it is a ntag203)
efd19351 649 status = ul_read(0x30, data, sizeof(data));
a383f4b7 650 if ( status <= 1 ){
651 tagtype = NTAG_203;
652 } else {
653 tagtype = UNKNOWN;
654 }
655 }
656 ul_switch_off_field();
657 }
345fb24a 658 }
f4217d58 659 if (tagtype & UL) {
660 tagtype = ul_fudan_check();
661 ul_switch_off_field();
662 }
345fb24a 663 } else {
be290d68 664 ul_switch_off_field();
345fb24a 665 // Infinition MY-D tests Exam high nibble
666 uint8_t nib = (card.uid[1] & 0xf0) >> 4;
667 switch ( nib ){
4a74e2be 668 // case 0: tagtype = SLE66R35E7; break; //or SLE 66R35E7 - mifare compat... should have different sak/atqa for mf 1k
669 case 1: tagtype = MY_D; break; //or SLE 66RxxS ... up to 512 pages of 8 user bytes...
670 case 2: tagtype = (MY_D_NFC); break; //or SLE 66RxxP ... up to 512 pages of 8 user bytes... (or in nfc mode FF pages of 4 bytes)
671 case 3: tagtype = (MY_D_MOVE | MY_D_MOVE_NFC); break; //or SLE 66R01P // 38 pages of 4 bytes //notice: we can not currently distinguish between these two
672 case 7: tagtype = MY_D_MOVE_LEAN; break; //or SLE 66R01L // 16 pages of 4 bytes
75377d29 673 }
f168b263 674 }
75377d29 675
46fcd738 676 tagtype |= ul_magic_test();
677 if (tagtype == (UNKNOWN | MAGIC)) tagtype = (UL_MAGIC);
f168b263 678 return tagtype;
679}
680
681int CmdHF14AMfUInfo(const char *Cmd){
682
c585a5cf 683 uint8_t authlim = 0xff;
f168b263 684 uint8_t data[16] = {0x00};
75377d29 685 iso14a_card_select_t card;
75377d29 686 int status;
a2e2bb8a 687 bool errors = false;
688 bool hasAuthKey = false;
a383f4b7 689 bool locked = false;
06561c34 690 bool swapEndian = false;
a2e2bb8a 691 uint8_t cmdp = 0;
06561c34 692 uint8_t dataLen = 0;
a2e2bb8a 693 uint8_t authenticationkey[16] = {0x00};
06561c34 694 uint8_t *authkeyptr = authenticationkey;
695 uint8_t *key;
a2e2bb8a 696 uint8_t pack[4] = {0,0,0,0};
06561c34 697 int len = 0;
698 char tempStr[50];
f168b263 699
a2e2bb8a 700 while(param_getchar(Cmd, cmdp) != 0x00)
701 {
702 switch(param_getchar(Cmd, cmdp))
703 {
704 case 'h':
705 case 'H':
706 return usage_hf_mfu_info();
707 case 'k':
708 case 'K':
06561c34 709 dataLen = param_getstr(Cmd, cmdp+1, tempStr);
710 if (dataLen == 32 || dataLen == 8) { //ul-c or ev1/ntag key length
711 errors = param_gethex(tempStr, 0, authenticationkey, dataLen);
712 dataLen /= 2; // handled as bytes from now on
713 } else {
714 PrintAndLog("\nERROR: Key is incorrect length\n");
715 errors = true;
a2e2bb8a 716 }
06561c34 717 cmdp += 2;
718 hasAuthKey = true;
719 break;
720 case 'l':
721 case 'L':
722 swapEndian = true;
723 cmdp++;
a2e2bb8a 724 break;
725 default:
726 PrintAndLog("Unknown parameter '%c'", param_getchar(Cmd, cmdp));
727 errors = true;
728 break;
729 }
730 if(errors) break;
731 }
732
733 //Validations
734 if(errors) return usage_hf_mfu_info();
efd19351 735
75377d29 736 TagTypeUL_t tagtype = GetHF14AMfU_Type();
737 if (tagtype == UL_ERROR) return -1;
92690507 738
abab60ae 739 PrintAndLog("\n--- Tag Information ---------");
740 PrintAndLog("-------------------------------------------------------------");
8ceb6b03 741 ul_print_type(tagtype, 6);
92690507 742
06561c34 743 // Swap endianness
744 if (swapEndian && hasAuthKey) authkeyptr = SwapEndian64(authenticationkey, dataLen, (dataLen == 16) ? 8 : 4 );
745
746 if (!ul_auth_select( &card, tagtype, hasAuthKey, authkeyptr, pack, sizeof(pack))) return -1;
a2e2bb8a 747
a383f4b7 748 // read pages 0,1,2,3 (should read 4pages)
75377d29 749 status = ul_read(0, data, sizeof(data));
a383f4b7 750 if ( status == -1 ) {
8258f409 751 ul_switch_off_field();
f805ac7a 752 PrintAndLog("Error: tag didn't answer to READ");
75377d29 753 return status;
1c429594 754 } else if (status == 16) {
a383f4b7 755 ul_print_default(data);
756 ndef_print_CC(data+12);
efd19351 757 } else {
1c429594 758 locked = true;
759 }
75377d29 760
a383f4b7 761 // UL_C Specific
762 if ((tagtype & UL_C)) {
75377d29 763
764 // read pages 0x28, 0x29, 0x2A, 0x2B
765 uint8_t ulc_conf[16] = {0x00};
766 status = ul_read(0x28, ulc_conf, sizeof(ulc_conf));
767 if ( status == -1 ){
a2e2bb8a 768 PrintAndLog("Error: tag didn't answer to READ UL-C");
9d87eb66 769 ul_switch_off_field();
abab60ae 770 return status;
771 }
a383f4b7 772 if (status == 16) ulc_print_configuration(ulc_conf);
773 else locked = true;
75377d29 774
a383f4b7 775 if ((tagtype & MAGIC)) {
776 //just read key
75377d29 777 uint8_t ulc_deskey[16] = {0x00};
778 status = ul_read(0x2C, ulc_deskey, sizeof(ulc_deskey));
a383f4b7 779 if ( status == -1 ) {
8258f409 780 ul_switch_off_field();
f805ac7a 781 PrintAndLog("Error: tag didn't answer to READ magic");
75377d29 782 return status;
783 }
a383f4b7 784 if (status == 16) ulc_print_3deskey(ulc_deskey);
75377d29 785
c585a5cf 786 } else {
9d87eb66 787 ul_switch_off_field();
a2e2bb8a 788 // if we called info with key, just return
789 if ( hasAuthKey ) return 1;
790
06561c34 791 // also try to diversify default keys.. look into CmdHF14AMfuGenDiverseKeys
75377d29 792 PrintAndLog("Trying some default 3des keys");
a383f4b7 793 for (uint8_t i = 0; i < KEYS_3DES_COUNT; ++i ) {
75377d29 794 key = default_3des_keys[i];
a383f4b7 795 if (ulc_authentication(key, true)) {
29250969 796 PrintAndLog("Found default 3des key: ");
2b3af97d 797 uint8_t keySwap[16];
798 memcpy(keySwap, SwapEndian64(key,16,8), 16);
799 ulc_print_3deskey(keySwap);
efd19351 800 return 1;
cceabb79 801 }
f168b263 802 }
efd19351 803 return 1;
75377d29 804 }
805 }
806
a383f4b7 807 // do counters and signature first (don't neet auth)
808
809 // ul counters are different than ntag counters
c7442b76 810 if ((tagtype & (UL_EV1_48 | UL_EV1_128))) {
811 if (ulev1_print_counters() != 3) {
812 // failed - re-select
8f2e50b4 813 if (!ul_auth_select( &card, tagtype, hasAuthKey, authkeyptr, pack, sizeof(pack))) return -1;
c7442b76 814 }
815 }
345fb24a 816
46fcd738 817 if ((tagtype & (UL_EV1_48 | UL_EV1_128 | NTAG_213 | NTAG_215 | NTAG_216 | NTAG_I2C_1K | NTAG_I2C_2K ))) {
345fb24a 818 uint8_t ulev1_signature[32] = {0x00};
819 status = ulev1_readSignature( ulev1_signature, sizeof(ulev1_signature));
a383f4b7 820 if ( status == -1 ) {
345fb24a 821 PrintAndLog("Error: tag didn't answer to READ SIGNATURE");
8258f409 822 ul_switch_off_field();
345fb24a 823 return status;
75377d29 824 }
a383f4b7 825 if (status == 32) ulev1_print_signature( ulev1_signature, sizeof(ulev1_signature));
c7442b76 826 else {
827 // re-select
8f2e50b4 828 if (!ul_auth_select( &card, tagtype, hasAuthKey, authkeyptr, pack, sizeof(pack))) return -1;
c7442b76 829 }
f168b263 830 }
75377d29 831
46fcd738 832 if ((tagtype & (UL_EV1_48 | UL_EV1_128 | NTAG_210 | NTAG_212 | NTAG_213 | NTAG_215 | NTAG_216 | NTAG_I2C_1K | NTAG_I2C_2K))) {
75377d29 833 uint8_t version[10] = {0x00};
834 status = ulev1_getVersion(version, sizeof(version));
a383f4b7 835 if ( status == -1 ) {
75377d29 836 PrintAndLog("Error: tag didn't answer to GETVERSION");
8258f409 837 ul_switch_off_field();
75377d29 838 return status;
1c429594 839 } else if (status == 10) {
840 ulev1_print_version(version);
841 } else {
842 locked = true;
8f2e50b4 843 if (!ul_auth_select( &card, tagtype, hasAuthKey, authkeyptr, pack, sizeof(pack))) return -1;
75377d29 844 }
a383f4b7 845
846 uint8_t startconfigblock = 0;
847 uint8_t ulev1_conf[16] = {0x00};
848 // config blocks always are last 4 pages
849 for (uint8_t idx = 0; idx < MAX_UL_TYPES; idx++)
850 if (tagtype & UL_TYPES_ARRAY[idx])
851 startconfigblock = UL_MEMORY_ARRAY[idx]-3;
c585a5cf 852
46fcd738 853 if (startconfigblock){ // if we know where the config block is...
854 status = ul_read(startconfigblock, ulev1_conf, sizeof(ulev1_conf));
855 if ( status == -1 ) {
856 PrintAndLog("Error: tag didn't answer to READ EV1");
857 ul_switch_off_field();
858 return status;
859 } else if (status == 16) {
860 // save AUTHENTICATION LIMITS for later:
861 authlim = (ulev1_conf[4] & 0x07);
012c0761 862 ulev1_print_configuration(ulev1_conf, startconfigblock);
46fcd738 863 }
8258f409 864 }
a2e2bb8a 865
c585a5cf 866 // AUTHLIMIT, (number of failed authentications)
867 // 0 = limitless.
a383f4b7 868 // 1-7 = limit. No automatic tries then.
869 // hasAuthKey, if we was called with key, skip test.
870 if ( !authlim && !hasAuthKey ) {
c585a5cf 871 PrintAndLog("\n--- Known EV1/NTAG passwords.");
9d87eb66 872 len = 0;
a383f4b7 873 for (uint8_t i = 0; i < KEYS_PWD_COUNT; ++i ) {
c585a5cf 874 key = default_pwd_pack[i];
9d87eb66 875 len = ulev1_requestAuthentication(key, pack, sizeof(pack));
876 if (len >= 1) {
877 PrintAndLog("Found a default password: %s || Pack: %02X %02X",sprint_hex(key, 4), pack[0], pack[1]);
878 break;
879 } else {
8f2e50b4 880 if (!ul_auth_select( &card, tagtype, hasAuthKey, authkeyptr, pack, sizeof(pack))) return -1;
c585a5cf 881 }
882 }
a383f4b7 883 if (len < 1) PrintAndLog("password not known");
75377d29 884 }
f168b263 885 }
c585a5cf 886
75377d29 887 ul_switch_off_field();
a383f4b7 888 if (locked) PrintAndLog("\nTag appears to be locked, try using the key to get more info");
345fb24a 889 PrintAndLog("");
a2e2bb8a 890 return 1;
81740aa5 891}
892
893//
79d7bcbb 894// Write Single Block
81740aa5 895//
896int CmdHF14AMfUWrBl(const char *Cmd){
81740aa5 897
79d7bcbb 898 int blockNo = -1;
899 bool errors = false;
900 bool hasAuthKey = false;
901 bool hasPwdKey = false;
902 bool swapEndian = false;
81740aa5 903
79d7bcbb 904 uint8_t cmdp = 0;
905 uint8_t keylen = 0;
906 uint8_t blockdata[20] = {0x00};
907 uint8_t data[16] = {0x00};
908 uint8_t authenticationkey[16] = {0x00};
909 uint8_t *authKeyPtr = authenticationkey;
910
911 // starting with getting tagtype
912 TagTypeUL_t tagtype = GetHF14AMfU_Type();
913 if (tagtype == UL_ERROR) return -1;
914
915 while(param_getchar(Cmd, cmdp) != 0x00)
916 {
917 switch(param_getchar(Cmd, cmdp))
918 {
919 case 'h':
920 case 'H':
921 return usage_hf_mfu_wrbl();
922 case 'k':
923 case 'K':
924 // EV1/NTAG size key
925 keylen = param_gethex(Cmd, cmdp+1, data, 8);
926 if ( !keylen ) {
927 memcpy(authenticationkey, data, 4);
928 cmdp += 2;
929 hasPwdKey = true;
930 break;
931 }
932 // UL-C size key
933 keylen = param_gethex(Cmd, cmdp+1, data, 32);
934 if (!keylen){
935 memcpy(authenticationkey, data, 16);
936 cmdp += 2;
937 hasAuthKey = true;
938 break;
939 }
940 PrintAndLog("\nERROR: Key is incorrect length\n");
941 errors = true;
942 break;
943 case 'b':
944 case 'B':
945 blockNo = param_get8(Cmd, cmdp+1);
946
947 uint8_t maxblockno = 0;
948 for (uint8_t idx = 0; idx < MAX_UL_TYPES; idx++){
949 if (tagtype & UL_TYPES_ARRAY[idx])
950 maxblockno = UL_MEMORY_ARRAY[idx];
951 }
952
953 if (blockNo < 0) {
954 PrintAndLog("Wrong block number");
955 errors = true;
956 }
957 if (blockNo > maxblockno){
958 PrintAndLog("block number too large. Max block is %u/0x%02X \n", maxblockno,maxblockno);
959 errors = true;
960 }
961 cmdp += 2;
962 break;
963 case 'l':
964 case 'L':
965 swapEndian = true;
966 cmdp++;
967 break;
968 case 'd':
969 case 'D':
970 if ( param_gethex(Cmd, cmdp+1, blockdata, 8) ) {
971 PrintAndLog("Block data must include 8 HEX symbols");
972 errors = true;
973 break;
974 }
975 cmdp += 2;
976 break;
977 default:
978 PrintAndLog("Unknown parameter '%c'", param_getchar(Cmd, cmdp));
979 errors = true;
980 break;
981 }
982 //Validations
983 if(errors) return usage_hf_mfu_wrbl();
afceaf40 984 }
79d7bcbb 985
986 if ( blockNo == -1 ) return usage_hf_mfu_wrbl();
987
988 // Swap endianness
989 if (swapEndian && hasAuthKey) authKeyPtr = SwapEndian64(authenticationkey, 16, 8);
990 if (swapEndian && hasPwdKey) authKeyPtr = SwapEndian64(authenticationkey, 4, 4);
991
992 if ( blockNo <= 3)
993 PrintAndLog("Special Block: %0d (0x%02X) [ %s]", blockNo, blockNo, sprint_hex(blockdata, 4));
994 else
995 PrintAndLog("Block: %0d (0x%02X) [ %s]", blockNo, blockNo, sprint_hex(blockdata, 4));
996
997 //Send write Block
998 UsbCommand c = {CMD_MIFAREU_WRITEBL, {blockNo}};
999 memcpy(c.d.asBytes,blockdata,4);
1000
1001 if ( hasAuthKey ) {
1002 c.arg[1] = 1;
1003 memcpy(c.d.asBytes+4,authKeyPtr,16);
afceaf40 1004 }
79d7bcbb 1005 else if ( hasPwdKey ) {
1006 c.arg[1] = 2;
1007 memcpy(c.d.asBytes+4,authKeyPtr,4);
afceaf40 1008 }
79d7bcbb 1009
22342f6d 1010 clearCommandBuffer();
79d7bcbb 1011 SendCommand(&c);
1012 UsbCommand resp;
1013 if (WaitForResponseTimeout(CMD_ACK,&resp,1500)) {
1014 uint8_t isOK = resp.arg[0] & 0xff;
1015 PrintAndLog("isOk:%02x", isOK);
81740aa5 1016 } else {
79d7bcbb 1017 PrintAndLog("Command execute timeout");
afceaf40 1018 }
79d7bcbb 1019
afceaf40 1020 return 0;
81740aa5 1021}
81740aa5 1022//
79d7bcbb 1023// Read Single Block
81740aa5 1024//
1025int CmdHF14AMfURdBl(const char *Cmd){
81740aa5 1026
79d7bcbb 1027 int blockNo = -1;
1028 bool errors = false;
1029 bool hasAuthKey = false;
1030 bool hasPwdKey = false;
1031 bool swapEndian = false;
1032 uint8_t cmdp = 0;
1033 uint8_t keylen = 0;
1034 uint8_t data[16] = {0x00};
1035 uint8_t authenticationkey[16] = {0x00};
1036 uint8_t *authKeyPtr = authenticationkey;
f168b263 1037
79d7bcbb 1038 // starting with getting tagtype
1039 TagTypeUL_t tagtype = GetHF14AMfU_Type();
1040 if (tagtype == UL_ERROR) return -1;
afceaf40 1041
79d7bcbb 1042 while(param_getchar(Cmd, cmdp) != 0x00)
1043 {
1044 switch(param_getchar(Cmd, cmdp))
1045 {
1046 case 'h':
1047 case 'H':
1048 return usage_hf_mfu_rdbl();
1049 case 'k':
1050 case 'K':
1051 // EV1/NTAG size key
1052 keylen = param_gethex(Cmd, cmdp+1, data, 8);
1053 if ( !keylen ) {
1054 memcpy(authenticationkey, data, 4);
1055 cmdp += 2;
1056 hasPwdKey = true;
1057 break;
1058 }
1059 // UL-C size key
1060 keylen = param_gethex(Cmd, cmdp+1, data, 32);
1061 if (!keylen){
1062 memcpy(authenticationkey, data, 16);
1063 cmdp += 2;
1064 hasAuthKey = true;
1065 break;
1066 }
1067 PrintAndLog("\nERROR: Key is incorrect length\n");
1068 errors = true;
1069 break;
1070 case 'b':
1071 case 'B':
1072 blockNo = param_get8(Cmd, cmdp+1);
1073
1074 uint8_t maxblockno = 0;
1075 for (uint8_t idx = 0; idx < MAX_UL_TYPES; idx++){
1076 if (tagtype & UL_TYPES_ARRAY[idx])
1077 maxblockno = UL_MEMORY_ARRAY[idx];
1078 }
1079
1080 if (blockNo < 0) {
1081 PrintAndLog("Wrong block number");
1082 errors = true;
1083 }
1084 if (blockNo > maxblockno){
1085 PrintAndLog("block number to large. Max block is %u/0x%02X \n", maxblockno,maxblockno);
1086 errors = true;
1087 }
1088 cmdp += 2;
1089 break;
1090 case 'l':
1091 case 'L':
1092 swapEndian = true;
1093 cmdp++;
1094 break;
1095 default:
1096 PrintAndLog("Unknown parameter '%c'", param_getchar(Cmd, cmdp));
1097 errors = true;
1098 break;
1099 }
1100 //Validations
1101 if(errors) return usage_hf_mfu_rdbl();
afceaf40 1102 }
f168b263 1103
79d7bcbb 1104 if ( blockNo == -1 ) return usage_hf_mfu_rdbl();
afceaf40 1105
79d7bcbb 1106 // Swap endianness
1107 if (swapEndian && hasAuthKey) authKeyPtr = SwapEndian64(authenticationkey, 16, 8);
1108 if (swapEndian && hasPwdKey) authKeyPtr = SwapEndian64(authenticationkey, 4, 4);
f168b263 1109
79d7bcbb 1110 //Read Block
1111 UsbCommand c = {CMD_MIFAREU_READBL, {blockNo}};
1112 if ( hasAuthKey ){
1113 c.arg[1] = 1;
1114 memcpy(c.d.asBytes,authKeyPtr,16);
1115 }
1116 else if ( hasPwdKey ) {
1117 c.arg[1] = 2;
1118 memcpy(c.d.asBytes,authKeyPtr,4);
1119 }
1120
22342f6d 1121 clearCommandBuffer();
79d7bcbb 1122 SendCommand(&c);
1123 UsbCommand resp;
afceaf40 1124 if (WaitForResponseTimeout(CMD_ACK,&resp,1500)) {
f168b263 1125 uint8_t isOK = resp.arg[0] & 0xff;
1126 if (isOK) {
1127 uint8_t *data = resp.d.asBytes;
22342f6d 1128 PrintAndLog("\nBlock# | Data | Ascii");
1129 PrintAndLog("-----------------------------");
1130 PrintAndLog("%02d/0x%02X | %s| %.4s\n", blockNo, blockNo, sprint_hex(data, 4), data);
f168b263 1131 }
1132 else {
1133 PrintAndLog("Failed reading block: (%02x)", isOK);
1134 }
81740aa5 1135 } else {
f168b263 1136 PrintAndLog("Command execute time-out");
afceaf40
MHS
1137 }
1138 return 0;
81740aa5 1139}
1140
06561c34 1141int usage_hf_mfu_info(void) {
a2e2bb8a 1142 PrintAndLog("It gathers information about the tag and tries to detect what kind it is.");
1143 PrintAndLog("Sometimes the tags are locked down, and you may need a key to be able to read the information");
1144 PrintAndLog("The following tags can be identified:\n");
efd19351 1145 PrintAndLog("Ultralight, Ultralight-C, Ultralight EV1, NTAG 203, NTAG 210,");
1146 PrintAndLog("NTAG 212, NTAG 213, NTAG 215, NTAG 216, NTAG I2C 1K & 2K");
a2e2bb8a 1147 PrintAndLog("my-d, my-d NFC, my-d move, my-d move NFC\n");
06561c34 1148 PrintAndLog("Usage: hf mfu info k <key> l");
a2e2bb8a 1149 PrintAndLog(" Options : ");
06561c34 1150 PrintAndLog(" k <key> : (optional) key for authentication [UL-C 16bytes, EV1/NTAG 4bytes]");
1151 PrintAndLog(" l : (optional) swap entered key's endianness");
a2e2bb8a 1152 PrintAndLog("");
1153 PrintAndLog(" sample : hf mfu info");
06561c34 1154 PrintAndLog(" : hf mfu info k 00112233445566778899AABBCCDDEEFF");
1155 PrintAndLog(" : hf mfu info k AABBCCDDD");
a2e2bb8a 1156 return 0;
1157}
1158
06561c34 1159int usage_hf_mfu_dump(void) {
92690507 1160 PrintAndLog("Reads all pages from Ultralight, Ultralight-C, Ultralight EV1");
efd19351 1161 PrintAndLog("NTAG 203, NTAG 210, NTAG 212, NTAG 213, NTAG 215, NTAG 216");
92690507 1162 PrintAndLog("and saves binary dump into the file `filename.bin` or `cardUID.bin`");
1163 PrintAndLog("It autodetects card type.\n");
06561c34 1164 PrintAndLog("Usage: hf mfu dump k <key> l n <filename w/o .bin>");
75377d29 1165 PrintAndLog(" Options : ");
06561c34 1166 PrintAndLog(" k <key> : (optional) key for authentication [UL-C 16bytes, EV1/NTAG 4bytes]");
1167 PrintAndLog(" l : (optional) swap entered key's endianness");
cceabb79 1168 PrintAndLog(" n <FN > : filename w/o .bin to save the dump as");
1169 PrintAndLog(" p <Pg > : starting Page number to manually set a page to start the dump at");
1170 PrintAndLog(" q <qty> : number of Pages to manually set how many pages to dump");
1171
75377d29 1172 PrintAndLog("");
92690507 1173 PrintAndLog(" sample : hf mfu dump");
f9848fd6 1174 PrintAndLog(" : hf mfu dump n myfile");
a2e2bb8a 1175 PrintAndLog(" : hf mfu dump k 00112233445566778899AABBCCDDEEFF");
06561c34 1176 PrintAndLog(" : hf mfu dump k AABBCCDDD\n");
92690507 1177 return 0;
1178}
a2e2bb8a 1179
79d7bcbb 1180int usage_hf_mfu_rdbl(void) {
1181 PrintAndLog("Read a block and print. It autodetects card type.\n");
1182 PrintAndLog("Usage: hf mfu rdbl b <block number> k <key> l\n");
1183 PrintAndLog(" Options:");
1184 PrintAndLog(" b <no> : block to read");
1185 PrintAndLog(" k <key> : (optional) key for authentication [UL-C 16bytes, EV1/NTAG 4bytes]");
1186 PrintAndLog(" l : (optional) swap entered key's endianness");
1187 PrintAndLog("");
1188 PrintAndLog(" sample : hf mfu rdbl b 0");
1189 PrintAndLog(" : hf mfu rdbl b 0 k 00112233445566778899AABBCCDDEEFF");
1190 PrintAndLog(" : hf mfu rdbl b 0 k AABBCCDDD\n");
1191 return 0;
1192}
1193
1194int usage_hf_mfu_wrbl(void) {
1195 PrintAndLog("Write a block. It autodetects card type.\n");
1196 PrintAndLog("Usage: hf mfu wrbl b <block number> d <data> k <key> l\n");
1197 PrintAndLog(" Options:");
1198 PrintAndLog(" b <no> : block to write");
1199 PrintAndLog(" d <data> : block data - (8 hex symbols)");
1200 PrintAndLog(" k <key> : (optional) key for authentication [UL-C 16bytes, EV1/NTAG 4bytes]");
1201 PrintAndLog(" l : (optional) swap entered key's endianness");
1202 PrintAndLog("");
1203 PrintAndLog(" sample : hf mfu wrbl b 0 d 01234567");
1204 PrintAndLog(" : hf mfu wrbl b 0 d 01234567 k AABBCCDDD\n");
1205 return 0;
1206}
1207
81740aa5 1208//
92690507 1209// Mifare Ultralight / Ultralight-C / Ultralight-EV1
1210// Read and Dump Card Contents, using auto detection of tag size.
81740aa5 1211int CmdHF14AMfUDump(const char *Cmd){
1212
afceaf40 1213 FILE *fout;
81740aa5 1214 char filename[FILE_PATH_SIZE] = {0x00};
92690507 1215 char *fnameptr = filename;
afceaf40
MHS
1216 uint8_t *lockbytes_t = NULL;
1217 uint8_t lockbytes[2] = {0x00};
afceaf40
MHS
1218 uint8_t *lockbytes_t2 = NULL;
1219 uint8_t lockbytes2[2] = {0x00};
afceaf40 1220 bool bit[16] = {0x00};
81740aa5 1221 bool bit2[16] = {0x00};
f9848fd6 1222 uint8_t data[1024] = {0x00};
06561c34 1223 bool hasAuthKey = false;
92690507 1224 int i = 0;
1225 int Pages = 16;
1226 bool tmplockbit = false;
06561c34 1227 uint8_t dataLen = 0;
1228 uint8_t cmdp = 0;
1229 uint8_t authenticationkey[16] = {0x00};
1230 uint8_t *authKeyPtr = authenticationkey;
f9848fd6 1231 size_t fileNlen = 0;
75377d29 1232 bool errors = false;
1233 bool swapEndian = false;
ae8303c1 1234 bool manualPages = false;
1235 uint8_t startPage = 0;
cceabb79 1236 char tempStr[50];
1237
f9848fd6 1238 while(param_getchar(Cmd, cmdp) != 0x00)
1239 {
1240 switch(param_getchar(Cmd, cmdp))
1241 {
1242 case 'h':
1243 case 'H':
1244 return usage_hf_mfu_dump();
1245 case 'k':
1246 case 'K':
cceabb79 1247 dataLen = param_getstr(Cmd, cmdp+1, tempStr);
06561c34 1248 if (dataLen == 32 || dataLen == 8) { //ul-c or ev1/ntag key length
1249 errors = param_gethex(tempStr, 0, authenticationkey, dataLen);
1250 dataLen /= 2;
1251 } else {
9d87eb66 1252 PrintAndLog("\nERROR: Key is incorrect length\n");
cceabb79 1253 errors = true;
9d87eb66 1254 }
f9848fd6 1255 cmdp += 2;
06561c34 1256 hasAuthKey = true;
f9848fd6 1257 break;
cceabb79 1258 case 'l':
1259 case 'L':
1260 swapEndian = true;
1261 cmdp++;
1262 break;
f9848fd6 1263 case 'n':
1264 case 'N':
1265 fileNlen = param_getstr(Cmd, cmdp+1, filename);
1266 if (!fileNlen) errors = true;
1267 if (fileNlen > FILE_PATH_SIZE-5) fileNlen = FILE_PATH_SIZE-5;
1268 cmdp += 2;
1269 break;
ae8303c1 1270 case 'p':
1271 case 'P':
1272 startPage = param_get8(Cmd, cmdp+1);
1273 manualPages = true;
1274 cmdp += 2;
1275 break;
1276 case 'q':
1277 case 'Q':
1278 Pages = param_get8(Cmd, cmdp+1);
1279 cmdp += 2;
1280 manualPages = true;
1281 break;
f9848fd6 1282 default:
1283 PrintAndLog("Unknown parameter '%c'", param_getchar(Cmd, cmdp));
1284 errors = true;
1285 break;
1286 }
1287 if(errors) break;
1288 }
1289
1290 //Validations
75377d29 1291 if(errors) return usage_hf_mfu_dump();
1292
06561c34 1293 if (swapEndian && hasAuthKey)
1294 authKeyPtr = SwapEndian64(authenticationkey, dataLen, (dataLen == 16) ? 8 : 4);
81740aa5 1295
92690507 1296 TagTypeUL_t tagtype = GetHF14AMfU_Type();
1297 if (tagtype == UL_ERROR) return -1;
81740aa5 1298
79d7bcbb 1299 if (!manualPages) //get number of pages to read
ae8303c1 1300 for (uint8_t idx = 0; idx < MAX_UL_TYPES; idx++)
1301 if (tagtype & UL_TYPES_ARRAY[idx])
79d7bcbb 1302 Pages = UL_MEMORY_ARRAY[idx]+1; //add one as maxblks starts at 0
ae8303c1 1303
5b99376a 1304 ul_print_type(tagtype, 0);
ae8303c1 1305 PrintAndLog("Reading tag memory...");
9d87eb66 1306 UsbCommand c = {CMD_MIFAREU_READCARD, {startPage,Pages}};
06561c34 1307 if ( hasAuthKey ) {
cceabb79 1308 if (tagtype & UL_C)
1309 c.arg[2] = 1; //UL_C auth
1310 else
1311 c.arg[2] = 2; //UL_EV1/NTAG auth
1312
06561c34 1313 memcpy(c.d.asBytes, authKeyPtr, dataLen);
f168b263 1314 }
22342f6d 1315
1316 clearCommandBuffer();
cceabb79 1317 SendCommand(&c);
1318 UsbCommand resp;
1319 if (!WaitForResponseTimeout(CMD_ACK, &resp,1500)) {
1320 PrintAndLog("Command execute time-out");
1321 return 1;
92690507 1322 }
9d87eb66 1323 if (resp.arg[0] != 1) {
cceabb79 1324 PrintAndLog("Failed reading block: (%02x)", i);
1325 return 1;
92690507 1326 }
92690507 1327
0ce03d9a 1328 uint32_t startindex = resp.arg[2];
9d87eb66 1329 uint32_t bufferSize = resp.arg[1];
1330 if (bufferSize > sizeof(data)) {
1331 PrintAndLog("Data exceeded Buffer size!");
1332 bufferSize = sizeof(data);
1333 }
0ce03d9a 1334 GetFromBigBuf(data, bufferSize, startindex);
9d87eb66 1335 WaitForResponse(CMD_ACK,NULL);
1336
1337 Pages = bufferSize/4;
81740aa5 1338 // Load lock bytes.
1339 int j = 0;
92690507 1340
81740aa5 1341 lockbytes_t = data + 8;
1342 lockbytes[0] = lockbytes_t[2];
1343 lockbytes[1] = lockbytes_t[3];
1344 for(j = 0; j < 16; j++){
1345 bit[j] = lockbytes[j/8] & ( 1 <<(7-j%8));
92690507 1346 }
1347
81740aa5 1348 // Load bottom lockbytes if available
29250969 1349 // TODO -- FIGURE OUT LOCK BYTES FOR TO EV1 and/or NTAG
81740aa5 1350 if ( Pages == 44 ) {
81740aa5 1351 lockbytes_t2 = data + (40*4);
1352 lockbytes2[0] = lockbytes_t2[2];
1353 lockbytes2[1] = lockbytes_t2[3];
1354 for (j = 0; j < 16; j++) {
1355 bit2[j] = lockbytes2[j/8] & ( 1 <<(7-j%8));
1356 }
1357 }
1358
9d87eb66 1359 // add keys to block dump
06561c34 1360 if (hasAuthKey) {
012c0761 1361 if (!swapEndian){
06561c34 1362 authKeyPtr = SwapEndian64(authenticationkey, dataLen, (dataLen == 16) ? 8 : 4);
06561c34 1363 } else {
012c0761 1364 authKeyPtr = authenticationkey;
1365 }
1366
1367 if (tagtype & UL_C){ //add 4 pages
1368 memcpy(data + Pages*4, authKeyPtr, dataLen);
1369 Pages += dataLen/4;
1370 } else { // 2nd page from end
1371 memcpy(data + (Pages*4) - 8, authenticationkey, dataLen);
06561c34 1372 }
9d87eb66 1373 }
cceabb79 1374
22342f6d 1375 PrintAndLog("\nBlock# | Data |lck| Ascii");
79d7bcbb 1376 PrintAndLog("---------------------------------");
81740aa5 1377 for (i = 0; i < Pages; ++i) {
81740aa5 1378 if ( i < 3 ) {
22342f6d 1379 PrintAndLog("%02d/0x%02X | %s| | ", i+startPage, i+startPage, sprint_hex(data + i * 4, 4));
81740aa5 1380 continue;
1381 }
81740aa5 1382 switch(i){
1383 case 3: tmplockbit = bit[4]; break;
06561c34 1384 case 4: tmplockbit = bit[3]; break;
1385 case 5: tmplockbit = bit[2]; break;
1386 case 6: tmplockbit = bit[1]; break;
1387 case 7: tmplockbit = bit[0]; break;
1388 case 8: tmplockbit = bit[15]; break;
81740aa5 1389 case 9: tmplockbit = bit[14]; break;
1390 case 10: tmplockbit = bit[13]; break;
1391 case 11: tmplockbit = bit[12]; break;
1392 case 12: tmplockbit = bit[11]; break;
1393 case 13: tmplockbit = bit[10]; break;
1394 case 14: tmplockbit = bit[9]; break;
1395 case 15: tmplockbit = bit[8]; break;
1396 case 16:
1397 case 17:
1398 case 18:
1399 case 19: tmplockbit = bit2[6]; break;
1400 case 20:
1401 case 21:
1402 case 22:
1403 case 23: tmplockbit = bit2[5]; break;
1404 case 24:
1405 case 25:
1406 case 26:
06561c34 1407 case 27: tmplockbit = bit2[4]; break;
81740aa5 1408 case 28:
1409 case 29:
1410 case 30:
1411 case 31: tmplockbit = bit2[2]; break;
1412 case 32:
1413 case 33:
1414 case 34:
1415 case 35: tmplockbit = bit2[1]; break;
1416 case 36:
1417 case 37:
1418 case 38:
1419 case 39: tmplockbit = bit2[0]; break;
1420 case 40: tmplockbit = bit2[12]; break;
1421 case 41: tmplockbit = bit2[11]; break;
1422 case 42: tmplockbit = bit2[10]; break; //auth0
1423 case 43: tmplockbit = bit2[9]; break; //auth1
1424 default: break;
1425 }
22342f6d 1426 PrintAndLog("%02d/0x%02X | %s| %d | %.4s", i+startPage, i+startPage, sprint_hex(data + i * 4, 4), tmplockbit, data+i*4);
06561c34 1427 }
79d7bcbb 1428 PrintAndLog("---------------------------------");
22342f6d 1429
81740aa5 1430 // user supplied filename?
f9848fd6 1431 if (fileNlen < 1) {
81740aa5 1432 // UID = data 0-1-2 4-5-6-7 (skips a beat)
afceaf40
MHS
1433 sprintf(fnameptr,"%02X%02X%02X%02X%02X%02X%02X.bin",
1434 data[0],data[1], data[2], data[4],data[5],data[6], data[7]);
81740aa5 1435 } else {
e6432f05 1436 sprintf(fnameptr + fileNlen,".bin");
81740aa5 1437 }
1438
81740aa5 1439 if ((fout = fopen(filename,"wb")) == NULL) {
1440 PrintAndLog("Could not create file name %s", filename);
06561c34 1441 return 1;
81740aa5 1442 }
1443 fwrite( data, 1, Pages*4, fout );
1444 fclose(fout);
1445
1446 PrintAndLog("Dumped %d pages, wrote %d bytes to %s", Pages, Pages*4, filename);
afceaf40 1447 return 0;
81740aa5 1448}
1449
81740aa5 1450//-------------------------------------------------------------------------------
1451// Ultralight C Methods
1452//-------------------------------------------------------------------------------
1453
1454//
1455// Ultralight C Authentication Demo {currently uses hard-coded key}
1456//
1457int CmdHF14AMfucAuth(const char *Cmd){
afceaf40 1458
9d87eb66 1459 uint8_t keyNo = 3;
afceaf40 1460 bool errors = false;
f168b263 1461
1462 char cmdp = param_getchar(Cmd, 0);
1463
afceaf40
MHS
1464 //Change key to user defined one
1465 if (cmdp == 'k' || cmdp == 'K'){
1466 keyNo = param_get8(Cmd, 1);
8258f409 1467 if(keyNo > KEYS_3DES_COUNT)
f168b263 1468 errors = true;
afceaf40
MHS
1469 }
1470
f168b263 1471 if (cmdp == 'h' || cmdp == 'H')
afceaf40 1472 errors = true;
f168b263 1473
afceaf40
MHS
1474 if (errors) {
1475 PrintAndLog("Usage: hf mfu cauth k <key number>");
1476 PrintAndLog(" 0 (default): 3DES standard key");
f168b263 1477 PrintAndLog(" 1 : all 0x00 key");
afceaf40
MHS
1478 PrintAndLog(" 2 : 0x00-0x0F key");
1479 PrintAndLog(" 3 : nfc key");
f168b263 1480 PrintAndLog(" 4 : all 0x01 key");
1481 PrintAndLog(" 5 : all 0xff key");
1482 PrintAndLog(" 6 : 0x00-0xFF key");
1483 PrintAndLog("\n sample : hf mfu cauth k");
81740aa5 1484 PrintAndLog(" : hf mfu cauth k 3");
afceaf40
MHS
1485 return 0;
1486 }
1487
f168b263 1488 uint8_t *key = default_3des_keys[keyNo];
9d87eb66 1489 if (ulc_authentication(key, true))
7eec1204 1490 PrintAndLog("Authentication successful. 3des key: %s",sprint_hex(key, 16));
f168b263 1491 else
1492 PrintAndLog("Authentication failed");
9d87eb66 1493
f168b263 1494 return 0;
1495}
1496
afceaf40
MHS
1497/**
1498A test function to validate that the polarssl-function works the same
1499was as the openssl-implementation.
1500Commented out, since it requires openssl
1501
1502int CmdTestDES(const char * cmd)
1503{
1504 uint8_t key[16] = {0x00};
1505
1506 memcpy(key,key3_3des_data,16);
1507 DES_cblock RndA, RndB;
1508
1509 PrintAndLog("----------OpenSSL DES implementation----------");
1510 {
1511 uint8_t e_RndB[8] = {0x00};
1512 unsigned char RndARndB[16] = {0x00};
1513
1514 DES_cblock iv = { 0 };
1515 DES_key_schedule ks1,ks2;
1516 DES_cblock key1,key2;
1517
1518 memcpy(key,key3_3des_data,16);
1519 memcpy(key1,key,8);
1520 memcpy(key2,key+8,8);
1521
1522
1523 DES_set_key((DES_cblock *)key1,&ks1);
1524 DES_set_key((DES_cblock *)key2,&ks2);
1525
1526 DES_random_key(&RndA);
1527 PrintAndLog(" RndA:%s",sprint_hex(RndA, 8));
1528 PrintAndLog(" e_RndB:%s",sprint_hex(e_RndB, 8));
1529 //void DES_ede2_cbc_encrypt(const unsigned char *input,
1530 // unsigned char *output, long length, DES_key_schedule *ks1,
1531 // DES_key_schedule *ks2, DES_cblock *ivec, int enc);
1532 DES_ede2_cbc_encrypt(e_RndB,RndB,sizeof(e_RndB),&ks1,&ks2,&iv,0);
1533
1534 PrintAndLog(" RndB:%s",sprint_hex(RndB, 8));
1535 rol(RndB,8);
1536 memcpy(RndARndB,RndA,8);
1537 memcpy(RndARndB+8,RndB,8);
1538 PrintAndLog(" RA+B:%s",sprint_hex(RndARndB, 16));
1539 DES_ede2_cbc_encrypt(RndARndB,RndARndB,sizeof(RndARndB),&ks1,&ks2,&e_RndB,1);
1540 PrintAndLog("enc(RA+B):%s",sprint_hex(RndARndB, 16));
1541
1542 }
1543 PrintAndLog("----------PolarSSL implementation----------");
1544 {
1545 uint8_t random_a[8] = { 0 };
1546 uint8_t enc_random_a[8] = { 0 };
1547 uint8_t random_b[8] = { 0 };
1548 uint8_t enc_random_b[8] = { 0 };
1549 uint8_t random_a_and_b[16] = { 0 };
1550 des3_context ctx = { 0 };
1551
1552 memcpy(random_a, RndA,8);
1553
1554 uint8_t output[8] = { 0 };
1555 uint8_t iv[8] = { 0 };
1556
1557 PrintAndLog(" RndA :%s",sprint_hex(random_a, 8));
1558 PrintAndLog(" e_RndB:%s",sprint_hex(enc_random_b, 8));
1559
1560 des3_set2key_dec(&ctx, key);
1561
1562 des3_crypt_cbc(&ctx // des3_context *ctx
1563 , DES_DECRYPT // int mode
1564 , sizeof(random_b) // size_t length
1565 , iv // unsigned char iv[8]
1566 , enc_random_b // const unsigned char *input
1567 , random_b // unsigned char *output
1568 );
1569
1570 PrintAndLog(" RndB:%s",sprint_hex(random_b, 8));
1571
1572 rol(random_b,8);
1573 memcpy(random_a_and_b ,random_a,8);
1574 memcpy(random_a_and_b+8,random_b,8);
1575
1576 PrintAndLog(" RA+B:%s",sprint_hex(random_a_and_b, 16));
1577
1578 des3_set2key_enc(&ctx, key);
81740aa5 1579
afceaf40
MHS
1580 des3_crypt_cbc(&ctx // des3_context *ctx
1581 , DES_ENCRYPT // int mode
1582 , sizeof(random_a_and_b) // size_t length
1583 , enc_random_b // unsigned char iv[8]
1584 , random_a_and_b // const unsigned char *input
1585 , random_a_and_b // unsigned char *output
1586 );
1587
1588 PrintAndLog("enc(RA+B):%s",sprint_hex(random_a_and_b, 16));
1589 }
1590 return 0;
1591}
1592**/
f9848fd6 1593
f168b263 1594//
1595// Mifare Ultralight C - Set password
1596//
1597int CmdHF14AMfucSetPwd(const char *Cmd){
1598
1599 uint8_t pwd[16] = {0x00};
1600
1601 char cmdp = param_getchar(Cmd, 0);
1602
1603 if (strlen(Cmd) == 0 || cmdp == 'h' || cmdp == 'H') {
1604 PrintAndLog("Usage: hf mfu setpwd <password (32 hex symbols)>");
1605 PrintAndLog(" [password] - (32 hex symbols)");
1606 PrintAndLog("");
1607 PrintAndLog("sample: hf mfu setpwd 000102030405060708090a0b0c0d0e0f");
1608 PrintAndLog("");
1609 return 0;
1610 }
1611
1612 if (param_gethex(Cmd, 0, pwd, 32)) {
1613 PrintAndLog("Password must include 32 HEX symbols");
1614 return 1;
1615 }
1616
1617 UsbCommand c = {CMD_MIFAREUC_SETPWD};
1618 memcpy( c.d.asBytes, pwd, 16);
22342f6d 1619 clearCommandBuffer();
f168b263 1620 SendCommand(&c);
1621
1622 UsbCommand resp;
1623
1624 if (WaitForResponseTimeout(CMD_ACK,&resp,1500) ) {
1625 if ( (resp.arg[0] & 0xff) == 1)
1626 PrintAndLog("Ultralight-C new password: %s", sprint_hex(pwd,16));
1627 else{
1628 PrintAndLog("Failed writing at block %d", resp.arg[1] & 0xff);
1629 return 1;
1630 }
1631 }
1632 else {
1633 PrintAndLog("command execution time out");
1634 return 1;
1635 }
1636
1637 return 0;
1638}
1639
1640//
92690507 1641// Magic UL / UL-C tags - Set UID
f168b263 1642//
1643int CmdHF14AMfucSetUid(const char *Cmd){
1644
1645 UsbCommand c;
1646 UsbCommand resp;
1647 uint8_t uid[7] = {0x00};
1648 char cmdp = param_getchar(Cmd, 0);
1649
1650 if (strlen(Cmd) == 0 || cmdp == 'h' || cmdp == 'H') {
1651 PrintAndLog("Usage: hf mfu setuid <uid (14 hex symbols)>");
1652 PrintAndLog(" [uid] - (14 hex symbols)");
1653 PrintAndLog("\nThis only works for Magic Ultralight tags.");
1654 PrintAndLog("");
1655 PrintAndLog("sample: hf mfu setuid 11223344556677");
1656 PrintAndLog("");
1657 return 0;
1658 }
1659
1660 if (param_gethex(Cmd, 0, uid, 14)) {
1661 PrintAndLog("UID must include 14 HEX symbols");
1662 return 1;
1663 }
1664
1665 // read block2.
1666 c.cmd = CMD_MIFAREU_READBL;
1667 c.arg[0] = 2;
22342f6d 1668 clearCommandBuffer();
f168b263 1669 SendCommand(&c);
1670 if (!WaitForResponseTimeout(CMD_ACK,&resp,1500)) {
1671 PrintAndLog("Command execute timeout");
1672 return 2;
1673 }
1674
1675 // save old block2.
1676 uint8_t oldblock2[4] = {0x00};
1677 memcpy(resp.d.asBytes, oldblock2, 4);
1678
1679 // block 0.
1680 c.cmd = CMD_MIFAREU_WRITEBL;
1681 c.arg[0] = 0;
1682 c.d.asBytes[0] = uid[0];
1683 c.d.asBytes[1] = uid[1];
1684 c.d.asBytes[2] = uid[2];
1685 c.d.asBytes[3] = 0x88 ^ uid[0] ^ uid[1] ^ uid[2];
22342f6d 1686 clearCommandBuffer();
f168b263 1687 SendCommand(&c);
1688 if (!WaitForResponseTimeout(CMD_ACK,&resp,1500)) {
1689 PrintAndLog("Command execute timeout");
1690 return 3;
1691 }
1692
1693 // block 1.
1694 c.arg[0] = 1;
1695 c.d.asBytes[0] = uid[3];
1696 c.d.asBytes[1] = uid[4];
1697 c.d.asBytes[2] = uid[5];
1698 c.d.asBytes[3] = uid[6];
22342f6d 1699 clearCommandBuffer();
f168b263 1700 SendCommand(&c);
1701 if (!WaitForResponseTimeout(CMD_ACK,&resp,1500) ) {
1702 PrintAndLog("Command execute timeout");
1703 return 4;
1704 }
1705
1706 // block 2.
1707 c.arg[0] = 2;
1708 c.d.asBytes[0] = uid[3] ^ uid[4] ^ uid[5] ^ uid[6];
1709 c.d.asBytes[1] = oldblock2[1];
1710 c.d.asBytes[2] = oldblock2[2];
1711 c.d.asBytes[3] = oldblock2[3];
22342f6d 1712 clearCommandBuffer();
f168b263 1713 SendCommand(&c);
1714 if (!WaitForResponseTimeout(CMD_ACK,&resp,1500) ) {
1715 PrintAndLog("Command execute timeout");
1716 return 5;
1717 }
1718
1719 return 0;
1720}
1721
1722int CmdHF14AMfuGenDiverseKeys(const char *Cmd){
79d7bcbb 1723
f168b263 1724 uint8_t iv[8] = { 0x00 };
1725 uint8_t block = 0x07;
79d7bcbb 1726
f168b263 1727 // UL-EV1
1728 //04 57 b6 e2 05 3f 80 UID
1729 //4a f8 4b 19 PWD
1730 uint8_t uid[] = { 0xF4,0xEA, 0x54, 0x8E };
1731 uint8_t mifarekeyA[] = { 0xA0,0xA1,0xA2,0xA3,0xA4,0xA5 };
1732 uint8_t mifarekeyB[] = { 0xB0,0xB1,0xB2,0xB3,0xB4,0xB5 };
1733 uint8_t dkeyA[8] = { 0x00 };
1734 uint8_t dkeyB[8] = { 0x00 };
1735
1736 uint8_t masterkey[] = { 0x00,0x11,0x22,0x33,0x44,0x55,0x66,0x77,0x88,0x99,0xaa,0xbb,0xcc,0xdd,0xee,0xff };
1737
1738 uint8_t mix[8] = { 0x00 };
1739 uint8_t divkey[8] = { 0x00 };
79d7bcbb 1740
f168b263 1741 memcpy(mix, mifarekeyA, 4);
79d7bcbb 1742
f168b263 1743 mix[4] = mifarekeyA[4] ^ uid[0];
1744 mix[5] = mifarekeyA[5] ^ uid[1];
1745 mix[6] = block ^ uid[2];
1746 mix[7] = uid[3];
79d7bcbb 1747
f168b263 1748 des3_context ctx = { 0x00 };
1749 des3_set2key_enc(&ctx, masterkey);
1750
1751 des3_crypt_cbc(&ctx // des3_context
1752 , DES_ENCRYPT // int mode
1753 , sizeof(mix) // length
1754 , iv // iv[8]
1755 , mix // input
1756 , divkey // output
1757 );
1758
1759 PrintAndLog("3DES version");
1760 PrintAndLog("Masterkey :\t %s", sprint_hex(masterkey,sizeof(masterkey)));
1761 PrintAndLog("UID :\t %s", sprint_hex(uid, sizeof(uid)));
1762 PrintAndLog("Sector :\t %0d", block);
1763 PrintAndLog("Mifare key :\t %s", sprint_hex(mifarekeyA, sizeof(mifarekeyA)));
1764 PrintAndLog("Message :\t %s", sprint_hex(mix, sizeof(mix)));
1765 PrintAndLog("Diversified key: %s", sprint_hex(divkey+1, 6));
79d7bcbb 1766
f168b263 1767 PrintAndLog("\n DES version");
79d7bcbb 1768
f168b263 1769 for (int i=0; i < sizeof(mifarekeyA); ++i){
1770 dkeyA[i] = (mifarekeyA[i] << 1) & 0xff;
1771 dkeyA[6] |= ((mifarekeyA[i] >> 7) & 1) << (i+1);
1772 }
1773
1774 for (int i=0; i < sizeof(mifarekeyB); ++i){
1775 dkeyB[1] |= ((mifarekeyB[i] >> 7) & 1) << (i+1);
1776 dkeyB[2+i] = (mifarekeyB[i] << 1) & 0xff;
1777 }
1778
1779 uint8_t zeros[8] = {0x00};
1780 uint8_t newpwd[8] = {0x00};
1781 uint8_t dmkey[24] = {0x00};
1782 memcpy(dmkey, dkeyA, 8);
1783 memcpy(dmkey+8, dkeyB, 8);
1784 memcpy(dmkey+16, dkeyA, 8);
1785 memset(iv, 0x00, 8);
79d7bcbb 1786
f168b263 1787 des3_set3key_enc(&ctx, dmkey);
1788
1789 des3_crypt_cbc(&ctx // des3_context
1790 , DES_ENCRYPT // int mode
1791 , sizeof(newpwd) // length
1792 , iv // iv[8]
1793 , zeros // input
1794 , newpwd // output
1795 );
1796
1797 PrintAndLog("Mifare dkeyA :\t %s", sprint_hex(dkeyA, sizeof(dkeyA)));
1798 PrintAndLog("Mifare dkeyB :\t %s", sprint_hex(dkeyB, sizeof(dkeyB)));
1799 PrintAndLog("Mifare ABA :\t %s", sprint_hex(dmkey, sizeof(dmkey)));
1800 PrintAndLog("Mifare Pwd :\t %s", sprint_hex(newpwd, sizeof(newpwd)));
1801
1802 return 0;
1803}
1804
1805// static uint8_t * diversify_key(uint8_t * key){
1806
1807 // for(int i=0; i<16; i++){
1808 // if(i<=6) key[i]^=cuid[i];
1809 // if(i>6) key[i]^=cuid[i%7];
1810 // }
1811 // return key;
1812// }
1813
1814// static void GenerateUIDe( uint8_t *uid, uint8_t len){
1815 // for (int i=0; i<len; ++i){
1816
1817 // }
1818 // return;
1819// }
1820
81740aa5 1821//------------------------------------
1822// Menu Stuff
1823//------------------------------------
1824static command_t CommandTable[] =
1825{
92690507 1826 {"help", CmdHelp, 1, "This help"},
1827 {"dbg", CmdHF14AMfDbg, 0, "Set default debug mode"},
1828 {"info", CmdHF14AMfUInfo, 0, "Tag information"},
79d7bcbb 1829 {"dump", CmdHF14AMfUDump, 0, "Dump Ultralight / Ultralight-C / NTAG tag to binary file"},
1830 {"rdbl", CmdHF14AMfURdBl, 0, "Read block"},
1831 {"wrbl", CmdHF14AMfUWrBl, 0, "Write block"},
92690507 1832 {"cauth", CmdHF14AMfucAuth, 0, "Authentication - Ultralight C"},
1833 {"setpwd", CmdHF14AMfucSetPwd, 1, "Set 3des password - Ultralight-C"},
1834 {"setuid", CmdHF14AMfucSetUid, 1, "Set UID - MAGIC tags only"},
f168b263 1835 {"gen", CmdHF14AMfuGenDiverseKeys , 1, "Generate 3des mifare diversified keys"},
afceaf40 1836 {NULL, NULL, 0, NULL}
81740aa5 1837};
1838
1839int CmdHFMFUltra(const char *Cmd){
afceaf40
MHS
1840 WaitForResponseTimeout(CMD_ACK,NULL,100);
1841 CmdsParse(CommandTable, Cmd);
1842 return 0;
81740aa5 1843}
1844
1845int CmdHelp(const char *Cmd){
afceaf40
MHS
1846 CmdsHelp(CommandTable);
1847 return 0;
f168b263 1848}
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