1 //----------------------------------------------------------------------------- 
   3 // Copyright (C) 2010 iZsh <izsh at fail0verflow.com>, Hagen Fritsch 
   5 // This code is licensed to you under the terms of the GNU GPL, version 2 or, 
   6 // at your option, any later version. See the LICENSE.txt file for the text of 
   8 //----------------------------------------------------------------------------- 
   9 // High frequency ISO14443A commands 
  10 //----------------------------------------------------------------------------- 
  21 #include "util_posix.h" 
  22 #include "iso14443crc.h" 
  25 #include "cmdparser.h" 
  30 #include "mifarehost.h" 
  31 #include "cliparser/cliparser.h" 
  32 #include "emv/apduinfo.h" 
  33 #include "emv/emvcore.h" 
  35 static int CmdHelp(const char *Cmd
); 
  36 static int waitCmd(uint8_t iLen
); 
  38 // structure and database for uid -> tagtype lookups  
  44 static const manufactureName manufactureMapping
[] = { 
  45         // ID,  "Vendor Country" 
  46         { 0x01, "Motorola UK" }, 
  47         { 0x02, "ST Microelectronics SA France" }, 
  48         { 0x03, "Hitachi, Ltd Japan" },  
  49         { 0x04, "NXP Semiconductors Germany" },  
  50         { 0x05, "Infineon Technologies AG Germany" },  
  51         { 0x06, "Cylink USA" },  
  52         { 0x07, "Texas Instrument France" }, 
  53         { 0x08, "Fujitsu Limited Japan" },  
  54         { 0x09, "Matsushita Electronics Corporation, Semiconductor Company Japan" },  
  55         { 0x0A, "NEC Japan" },  
  56         { 0x0B, "Oki Electric Industry Co. Ltd Japan" }, 
  57         { 0x0C, "Toshiba Corp. Japan" }, 
  58         { 0x0D, "Mitsubishi Electric Corp. Japan" }, 
  59         { 0x0E, "Samsung Electronics Co. Ltd Korea" }, 
  60         { 0x0F, "Hynix / Hyundai, Korea" }, 
  61         { 0x10, "LG-Semiconductors Co. Ltd Korea" }, 
  62         { 0x11, "Emosyn-EM Microelectronics USA" }, 
  63         { 0x12, "INSIDE Technology France" }, 
  64         { 0x13, "ORGA Kartensysteme GmbH Germany" }, 
  65         { 0x14, "SHARP Corporation Japan" }, 
  66         { 0x15, "ATMEL France" }, 
  67         { 0x16, "EM Microelectronic-Marin SA Switzerland" }, 
  68         { 0x17, "KSW Microtec GmbH Germany" }, 
  69         { 0x18, "ZMD AG Germany" }, 
  70         { 0x19, "XICOR, Inc. USA" }, 
  71         { 0x1A, "Sony Corporation Japan Identifier Company Country" }, 
  72         { 0x1B, "Malaysia Microelectronic Solutions Sdn. Bhd Malaysia" }, 
  73         { 0x1C, "Emosyn USA" }, 
  74         { 0x1D, "Shanghai Fudan Microelectronics Co. Ltd. P.R. China" }, 
  75         { 0x1E, "Magellan Technology Pty Limited Australia" }, 
  76         { 0x1F, "Melexis NV BO Switzerland" }, 
  77         { 0x20, "Renesas Technology Corp. Japan" }, 
  78         { 0x21, "TAGSYS France" }, 
  79         { 0x22, "Transcore USA" }, 
  80         { 0x23, "Shanghai belling corp., ltd. China" }, 
  81         { 0x24, "Masktech Germany Gmbh Germany" }, 
  82         { 0x25, "Innovision Research and Technology Plc UK" }, 
  83         { 0x26, "Hitachi ULSI Systems Co., Ltd. Japan" }, 
  84         { 0x27, "Cypak AB Sweden" }, 
  85         { 0x28, "Ricoh Japan" }, 
  86         { 0x29, "ASK France" }, 
  87         { 0x2A, "Unicore Microsystems, LLC Russian Federation" }, 
  88         { 0x2B, "Dallas Semiconductor/Maxim USA" }, 
  89         { 0x2C, "Impinj, Inc. USA" }, 
  90         { 0x2D, "RightPlug Alliance USA" }, 
  91         { 0x2E, "Broadcom Corporation USA" }, 
  92         { 0x2F, "MStar Semiconductor, Inc Taiwan, ROC" }, 
  93         { 0x30, "BeeDar Technology Inc. USA" }, 
  94         { 0x31, "RFIDsec Denmark" }, 
  95         { 0x32, "Schweizer Electronic AG Germany" }, 
  96         { 0x33, "AMIC Technology Corp Taiwan" },  
  97         { 0x34, "Mikron JSC Russia" }, 
  98         { 0x35, "Fraunhofer Institute for Photonic Microsystems Germany" }, 
  99         { 0x36, "IDS Microchip AG Switzerland" }, 
 100         { 0x37, "Kovio USA" }, 
 101         { 0x38, "HMT Microelectronic Ltd Switzerland Identifier Company Country" }, 
 102         { 0x39, "Silicon Craft Technology Thailand" }, 
 103         { 0x3A, "Advanced Film Device Inc. Japan" }, 
 104         { 0x3B, "Nitecrest Ltd UK" }, 
 105         { 0x3C, "Verayo Inc. USA" }, 
 106         { 0x3D, "HID Global USA" }, 
 107         { 0x3E, "Productivity Engineering Gmbh Germany" }, 
 108         { 0x3F, "Austriamicrosystems AG (reserved) Austria" },  
 109         { 0x40, "Gemalto SA France" }, 
 110         { 0x41, "Renesas Electronics Corporation Japan" }, 
 111         { 0x42, "3Alogics Inc Korea" }, 
 112         { 0x43, "Top TroniQ Asia Limited Hong Kong" }, 
 113         { 0x44, "Gentag Inc (USA) USA" }, 
 114         { 0x00, "no tag-info available" } // must be the last entry 
 117 // get a product description based on the UID 
 119 // returns description of the best match         
 120 char* getTagInfo(uint8_t uid
) { 
 123         int len 
= sizeof(manufactureMapping
) / sizeof(manufactureName
); 
 125         for ( i 
= 0; i 
< len
; ++i 
)  
 126                 if ( uid 
== manufactureMapping
[i
].uid
)  
 127                         return manufactureMapping
[i
].desc
; 
 129         //No match, return default 
 130         return manufactureMapping
[len
-1].desc
;  
 133 int CmdHF14AList(const char *Cmd
) 
 135         PrintAndLog("Deprecated command, use 'hf list 14a' instead"); 
 139 int CmdHF14AReader(const char *Cmd
) { 
 140         uint32_t cm 
= ISO14A_CONNECT
; 
 141         bool leaveSignalON 
= false; 
 143         CLIParserInit("hf 14a reader", "Executes ISO1443A anticollision-select group of commands.", NULL
); 
 146                 arg_lit0("kK",  "keep",    "keep the field active after command executed"), 
 147                 arg_lit0("xX",  "drop",    "just drop the signal field"), 
 148                 arg_lit0("3",   NULL
,      "ISO14443-3 select only (skip RATS)"), 
 151         if (CLIParserParseString(Cmd
, argtable
, arg_getsize(argtable
), true)){ 
 156         leaveSignalON 
= arg_get_lit(1); 
 157         if (arg_get_lit(2)) { 
 158                 cm 
= cm 
- ISO14A_CONNECT
; 
 160         if (arg_get_lit(3)) { 
 161                 cm 
|= ISO14A_NO_RATS
; 
 167                 cm 
|= ISO14A_NO_DISCONNECT
;  
 169         UsbCommand c 
= {CMD_READER_ISO_14443a
, {cm
, 0, 0}}; 
 172         if (ISO14A_CONNECT 
& cm
) { 
 174                 WaitForResponse(CMD_ACK
,&resp
); 
 176                 iso14a_card_select_t card
; 
 177                 memcpy(&card
, (iso14a_card_select_t 
*)resp
.d
.asBytes
, sizeof(iso14a_card_select_t
)); 
 179                 uint64_t select_status 
= resp
.arg
[0];           // 0: couldn't read, 1: OK, with ATS, 2: OK, no ATS, 3: proprietary Anticollision 
 181                 if(select_status 
== 0) { 
 182                         PrintAndLog("iso14443a card select failed"); 
 186                 if(select_status 
== 3) { 
 187                         PrintAndLog("Card doesn't support standard iso14443-3 anticollision"); 
 188                         PrintAndLog("ATQA : %02x %02x", card
.atqa
[1], card
.atqa
[0]); 
 192                 PrintAndLog(" UID : %s", sprint_hex(card
.uid
, card
.uidlen
)); 
 193                 PrintAndLog("ATQA : %02x %02x", card
.atqa
[1], card
.atqa
[0]); 
 194                 PrintAndLog(" SAK : %02x [%" PRIu64 
"]", card
.sak
, resp
.arg
[0]); 
 195                 if(card
.ats_len 
>= 3) {                 // a valid ATS consists of at least the length byte (TL) and 2 CRC bytes 
 196                         PrintAndLog(" ATS : %s", sprint_hex(card
.ats
, card
.ats_len
)); 
 199                         PrintAndLog("Card is selected. You can now start sending commands"); 
 203         if (!leaveSignalON
) { 
 204                 PrintAndLog("Field dropped."); 
 210 int CmdHF14AInfo(const char *Cmd
) 
 212         UsbCommand c 
= {CMD_READER_ISO_14443a
, {ISO14A_CONNECT 
| ISO14A_NO_DISCONNECT
, 0, 0}}; 
 216         WaitForResponse(CMD_ACK
,&resp
); 
 218         iso14a_card_select_t card
; 
 219         memcpy(&card
, (iso14a_card_select_t 
*)resp
.d
.asBytes
, sizeof(iso14a_card_select_t
)); 
 221         uint64_t select_status 
= resp
.arg
[0];           // 0: couldn't read, 1: OK, with ATS, 2: OK, no ATS, 3: proprietary Anticollision 
 223         if(select_status 
== 0) { 
 224                 if (Cmd
[0] != 's') PrintAndLog("iso14443a card select failed"); 
 233         if(select_status 
== 3) { 
 234                 PrintAndLog("Card doesn't support standard iso14443-3 anticollision"); 
 235                 PrintAndLog("ATQA : %02x %02x", card
.atqa
[1], card
.atqa
[0]); 
 244         PrintAndLog(" UID : %s", sprint_hex(card
.uid
, card
.uidlen
)); 
 245         PrintAndLog("ATQA : %02x %02x", card
.atqa
[1], card
.atqa
[0]); 
 246         PrintAndLog(" SAK : %02x [%" PRIu64 
"]", card
.sak
, resp
.arg
[0]); 
 248         bool isMifareClassic 
= true; 
 251                         isMifareClassic 
= false; 
 253                         //***************************************test**************** 
 260                         uint32_t tagT 
= GetHF14AMfU_Type(); 
 261                         ul_print_type(tagT
, 0); 
 263                         //reconnect for further tests 
 264                         c
.arg
[0] = ISO14A_CONNECT 
| ISO14A_NO_DISCONNECT
; 
 271                         WaitForResponse(CMD_ACK
,&resp
); 
 273                         memcpy(&card
, (iso14a_card_select_t 
*)resp
.d
.asBytes
, sizeof(iso14a_card_select_t
)); 
 275                         select_status 
= resp
.arg
[0];            // 0: couldn't read, 1: OK, with ATS, 2: OK, no ATS 
 277                         if(select_status 
== 0) { 
 278                                 //PrintAndLog("iso14443a card select failed"); 
 288                         // check if the tag answers to GETVERSION (0x60) 
 289                         c.arg[0] = ISO14A_RAW | ISO14A_APPEND_CRC | ISO14A_NO_DISCONNECT; 
 292                         c.d.asBytes[0] = 0x60; 
 294                         WaitForResponse(CMD_ACK,&resp); 
 296                         uint8_t version[10] = {0}; 
 297                         memcpy(version, resp.d.asBytes, resp.arg[0] < sizeof(version) ? resp.arg[0] : sizeof(version)); 
 298                         uint8_t len = resp.arg[0] & 0xff; 
 300                                 // todo, identify "Magic UL-C tags". // they usually have a static nonce response to 0x1A command. 
 301                                 // UL-EV1, size, check version[6] == 0x0b (smaller)  0x0b * 4 == 48 
 302                                 case 0x0A:PrintAndLog("TYPE : NXP MIFARE Ultralight EV1 %d bytes", (version[6] == 0xB) ? 48 : 128);break; 
 303                                 case 0x01:PrintAndLog("TYPE : NXP MIFARE Ultralight C");break; 
 304                                 case 0x00:PrintAndLog("TYPE : NXP MIFARE Ultralight");break;     
 308                 case 0x01: PrintAndLog("TYPE : NXP TNP3xxx Activision Game Appliance"); break; 
 309                 case 0x04: PrintAndLog("TYPE : NXP MIFARE (various !DESFire !DESFire EV1)"); break; 
 310                 case 0x08: PrintAndLog("TYPE : NXP MIFARE CLASSIC 1k | Plus 2k SL1"); break; 
 311                 case 0x09: PrintAndLog("TYPE : NXP MIFARE Mini 0.3k"); break; 
 312                 case 0x10: PrintAndLog("TYPE : NXP MIFARE Plus 2k SL2"); break; 
 313                 case 0x11: PrintAndLog("TYPE : NXP MIFARE Plus 4k SL2"); break; 
 314                 case 0x18: PrintAndLog("TYPE : NXP MIFARE Classic 4k | Plus 4k SL1"); break; 
 315                 case 0x20: PrintAndLog("TYPE : NXP MIFARE DESFire 4k | DESFire EV1 2k/4k/8k | Plus 2k/4k SL3 | JCOP 31/41"); break; 
 316                 case 0x24: PrintAndLog("TYPE : NXP MIFARE DESFire | DESFire EV1"); break; 
 317                 case 0x28: PrintAndLog("TYPE : JCOP31 or JCOP41 v2.3.1"); break; 
 318                 case 0x38: PrintAndLog("TYPE : Nokia 6212 or 6131 MIFARE CLASSIC 4K"); break; 
 319                 case 0x88: PrintAndLog("TYPE : Infineon MIFARE CLASSIC 1K"); break; 
 320                 case 0x98: PrintAndLog("TYPE : Gemplus MPCOS"); break; 
 324         // Double & triple sized UID, can be mapped to a manufacturer. 
 325         // HACK: does this apply for Ultralight cards? 
 326         if ( card
.uidlen 
> 4 ) { 
 327                 PrintAndLog("MANUFACTURER : %s", getTagInfo(card
.uid
[0])); 
 330         // try to request ATS even if tag claims not to support it 
 331         if (select_status 
== 2) { 
 332                 uint8_t rats
[] = { 0xE0, 0x80 }; // FSDI=8 (FSD=256), CID=0 
 333                 c
.arg
[0] = ISO14A_RAW 
| ISO14A_APPEND_CRC 
| ISO14A_NO_DISCONNECT
; 
 336                 memcpy(c
.d
.asBytes
, rats
, 2); 
 338                 WaitForResponse(CMD_ACK
,&resp
); 
 340             memcpy(card
.ats
, resp
.d
.asBytes
, resp
.arg
[0]); 
 341                 card
.ats_len 
= resp
.arg
[0];                             // note: ats_len includes CRC Bytes 
 344         if(card
.ats_len 
>= 3) {                 // a valid ATS consists of at least the length byte (TL) and 2 CRC bytes 
 345                 bool ta1 
= 0, tb1 
= 0, tc1 
= 0; 
 348                 if (select_status 
== 2) { 
 349                         PrintAndLog("SAK incorrectly claims that card doesn't support RATS"); 
 351                 PrintAndLog(" ATS : %s", sprint_hex(card
.ats
, card
.ats_len
)); 
 352                 PrintAndLog("       -  TL : length is %d bytes", card
.ats
[0]); 
 353                 if (card
.ats
[0] != card
.ats_len 
- 2) { 
 354                         PrintAndLog("ATS may be corrupted. Length of ATS (%d bytes incl. 2 Bytes CRC) doesn't match TL", card
.ats_len
); 
 357                 if (card
.ats
[0] > 1) {          // there is a format byte (T0) 
 358                         ta1 
= (card
.ats
[1] & 0x10) == 0x10; 
 359                         tb1 
= (card
.ats
[1] & 0x20) == 0x20; 
 360                         tc1 
= (card
.ats
[1] & 0x40) == 0x40; 
 361                         int16_t fsci 
= card
.ats
[1] & 0x0f; 
 362                         PrintAndLog("       -  T0 : TA1 is%s present, TB1 is%s present, " 
 363                                         "TC1 is%s present, FSCI is %d (FSC = %ld)", 
 364                                 (ta1 
? "" : " NOT"), (tb1 
? "" : " NOT"), (tc1 
? "" : " NOT"), 
 366                                 fsci 
< 5 ? (fsci 
- 2) * 8 :  
 367                                         fsci 
< 8 ? (fsci 
- 3) * 32 : 
 375                         dr
[0] = ds
[0] = '\0'; 
 376                         if (card
.ats
[pos
] & 0x10) strcat(ds
, "2, "); 
 377                         if (card
.ats
[pos
] & 0x20) strcat(ds
, "4, "); 
 378                         if (card
.ats
[pos
] & 0x40) strcat(ds
, "8, "); 
 379                         if (card
.ats
[pos
] & 0x01) strcat(dr
, "2, "); 
 380                         if (card
.ats
[pos
] & 0x02) strcat(dr
, "4, "); 
 381                         if (card
.ats
[pos
] & 0x04) strcat(dr
, "8, "); 
 382                         if (strlen(ds
) != 0) ds
[strlen(ds
) - 2] = '\0'; 
 383                         if (strlen(dr
) != 0) dr
[strlen(dr
) - 2] = '\0'; 
 384                         PrintAndLog("       - TA1 : different divisors are%s supported, " 
 385                                         "DR: [%s], DS: [%s]", 
 386                                         (card
.ats
[pos
] & 0x80 ? " NOT" : ""), dr
, ds
); 
 390                         uint32_t sfgi 
= card
.ats
[pos
] & 0x0F; 
 391                         uint32_t fwi 
= card
.ats
[pos
] >> 4; 
 392                         PrintAndLog("       - TB1 : SFGI = %d (SFGT = %s%ld/fc), FWI = %d (FWT = %ld/fc)", 
 394                                         sfgi 
? "" : "(not needed) ", 
 395                                         sfgi 
? (1 << 12) << sfgi 
: 0, 
 402                         PrintAndLog("       - TC1 : NAD is%s supported, CID is%s supported", 
 403                                         (card
.ats
[pos
] & 0x01) ? "" : " NOT", 
 404                                         (card
.ats
[pos
] & 0x02) ? "" : " NOT"); 
 407                 if (card
.ats
[0] > pos
) { 
 409                         if (card
.ats
[0] - pos 
>= 7) { 
 410                                 if (memcmp(card
.ats 
+ pos
, "\xC1\x05\x2F\x2F\x01\xBC\xD6", 7) == 0) { 
 411                                         tip 
= "-> MIFARE Plus X 2K or 4K"; 
 412                                 } else if (memcmp(card
.ats 
+ pos
, "\xC1\x05\x2F\x2F\x00\x35\xC7", 7) == 0) { 
 413                                         tip 
= "-> MIFARE Plus S 2K or 4K"; 
 416                         PrintAndLog("       -  HB : %s%s", sprint_hex(card
.ats 
+ pos
, card
.ats
[0] - pos
), tip
); 
 417                         if (card
.ats
[pos
] == 0xC1) { 
 418                                 PrintAndLog("               c1 -> Mifare or (multiple) virtual cards of various type"); 
 419                                 PrintAndLog("                  %02x -> Length is %d bytes", 
 420                                                 card
.ats
[pos 
+ 1], card
.ats
[pos 
+ 1]); 
 421                                 switch (card
.ats
[pos 
+ 2] & 0xf0) { 
 423                                                 PrintAndLog("                     1x -> MIFARE DESFire"); 
 426                                                 PrintAndLog("                     2x -> MIFARE Plus"); 
 429                                 switch (card
.ats
[pos 
+ 2] & 0x0f) { 
 431                                                 PrintAndLog("                     x0 -> <1 kByte"); 
 434                                                 PrintAndLog("                     x1 -> 1 kByte"); 
 437                                                 PrintAndLog("                     x2 -> 2 kByte"); 
 440                                                 PrintAndLog("                     x3 -> 4 kByte"); 
 443                                                 PrintAndLog("                     x4 -> 8 kByte"); 
 446                                 switch (card
.ats
[pos 
+ 3] & 0xf0) { 
 448                                                 PrintAndLog("                        0x -> Engineering sample"); 
 451                                                 PrintAndLog("                        2x -> Released"); 
 454                                 switch (card
.ats
[pos 
+ 3] & 0x0f) { 
 456                                                 PrintAndLog("                        x0 -> Generation 1"); 
 459                                                 PrintAndLog("                        x1 -> Generation 2"); 
 462                                                 PrintAndLog("                        x2 -> Generation 3"); 
 465                                 switch (card
.ats
[pos 
+ 4] & 0x0f) { 
 467                                                 PrintAndLog("                           x0 -> Only VCSL supported"); 
 470                                                 PrintAndLog("                           x1 -> VCS, VCSL, and SVC supported"); 
 473                                                 PrintAndLog("                           xE -> no VCS command supported"); 
 479                 PrintAndLog("proprietary non iso14443-4 card found, RATS not supported"); 
 483         // try to see if card responses to "chinese magic backdoor" commands. 
 486         if (isMifareClassic
) {           
 487                 switch(DetectClassicPrng()) { 
 489                         PrintAndLog("Prng detection: HARDENED (hardnested)");            
 492                         PrintAndLog("Prng detection: WEAK"); 
 495                         PrintAndLog("Prng detection error.");            
 499         return select_status
; 
 502 // Collect ISO14443 Type A UIDs 
 503 int CmdHF14ACUIDs(const char *Cmd
) 
 505         // requested number of UIDs 
 507         // collect at least 1 (e.g. if no parameter was given) 
 510         PrintAndLog("Collecting %d UIDs", n
); 
 511         PrintAndLog("Start: %" PRIu64
, msclock()/1000); 
 513         for (int i 
= 0; i 
< n
; i
++) { 
 514                 // execute anticollision procedure 
 515                 UsbCommand c 
= {CMD_READER_ISO_14443a
, {ISO14A_CONNECT 
| ISO14A_NO_RATS
, 0, 0}}; 
 519                 WaitForResponse(CMD_ACK
,&resp
); 
 521                 iso14a_card_select_t 
*card 
= (iso14a_card_select_t 
*) resp
.d
.asBytes
; 
 523                 // check if command failed 
 524                 if (resp
.arg
[0] == 0) { 
 525                         PrintAndLog("Card select failed."); 
 528                         for (uint16_t i 
= 0; i 
< card
->uidlen
; i
++) { 
 529                                 sprintf(&uid_string
[2*i
], "%02X", card
->uid
[i
]); 
 531                         PrintAndLog("%s", uid_string
); 
 534         PrintAndLog("End: %" PRIu64
, msclock()/1000); 
 539 // ## simulate iso14443a tag 
 540 // ## greg - added ability to specify tag UID 
 541 int CmdHF14ASim(const char *Cmd
) 
 543         UsbCommand c 
= {CMD_SIMULATE_TAG_ISO_14443a
,{0,0,0}}; 
 545         // Retrieve the tag type 
 546         uint8_t tagtype 
= param_get8ex(Cmd
,0,0,10); 
 548         // When no argument was given, just print help message 
 551                 PrintAndLog(" Emulating ISO/IEC 14443 type A tag with 4 or 7 byte UID"); 
 553                 PrintAndLog("   syntax: hf 14a sim <type> <uid>"); 
 554                 PrintAndLog("    types: 1 = MIFARE Classic"); 
 555                 PrintAndLog("           2 = MIFARE Ultralight"); 
 556                 PrintAndLog("           3 = MIFARE Desfire"); 
 557                 PrintAndLog("           4 = ISO/IEC 14443-4"); 
 558                 PrintAndLog("           5 = MIFARE Tnp3xxx");            
 563         // Store the tag type 
 566         // Retrieve the full 4 or 7 byte long uid  
 567         uint64_t long_uid 
= param_get64ex(Cmd
,1,0,16); 
 569         // Are we handling the (optional) second part uid? 
 570         if (long_uid 
> 0xffffffff) { 
 571                 PrintAndLog("Emulating ISO/IEC 14443 type A tag with 7 byte UID (%014" PRIx64 
")",long_uid
); 
 572                 // Store the second part 
 573                 c
.arg
[2] = (long_uid 
& 0xffffffff); 
 575                 // Store the first part, ignore the first byte, it is replaced by cascade byte (0x88) 
 576                 c
.arg
[1] = (long_uid 
& 0xffffff); 
 578                 PrintAndLog("Emulating ISO/IEC 14443 type A tag with 4 byte UID (%08x)",long_uid
); 
 579                 // Only store the first part 
 580                 c
.arg
[1] = long_uid 
& 0xffffffff; 
 583                 // At lease save the mandatory first part of the UID 
 584                 c.arg[0] = long_uid & 0xffffffff; 
 587                 PrintAndLog("Emulating ISO/IEC 14443 type A tag with UID %01d %08x %08x",c.arg[0],c.arg[1],c.arg[2]); 
 592                         PrintAndLog("Emulating ISO/IEC 14443-3 type A tag with 4 byte UID"); 
 593                         UsbCommand c = {CMD_SIMULATE_TAG_ISO_14443a,param_get32ex(Cmd,0,0,10),param_get32ex(Cmd,1,0,16),param_get32ex(Cmd,2,0,16)}; 
 596                         PrintAndLog("Emulating ISO/IEC 14443-4 type A tag with 7 byte UID"); 
 599                         PrintAndLog("Error: unkown tag type (%d)",c.arg[0]); 
 600                         PrintAndLog("syntax: hf 14a sim <uid>",c.arg[0]); 
 601                         PrintAndLog(" type1: 4 ",c.arg[0]); 
 608   unsigned int hi = 0, lo = 0; 
 610   while (sscanf(&Cmd[i++], "%1x", &n ) == 1) { 
 611     hi= (hi << 4) | (lo >> 28); 
 612     lo= (lo << 4) | (n & 0xf); 
 615 //      UsbCommand c = {CMD_SIMULATE_TAG_ISO_14443a,param_get32ex(Cmd,0,0,10),param_get32ex(Cmd,1,0,16),param_get32ex(Cmd,2,0,16)}; 
 616 //  PrintAndLog("Emulating ISO/IEC 14443 type A tag with UID %01d %08x %08x",c.arg[0],c.arg[1],c.arg[2]); 
 621 int CmdHF14ASnoop(const char *Cmd
) { 
 624         uint8_t ctmp 
= param_getchar(Cmd
, 0) ; 
 625         if (ctmp 
== 'h' || ctmp 
== 'H') { 
 626                 PrintAndLog("It get data from the field and saves it into command buffer."); 
 627                 PrintAndLog("Buffer accessible from command hf list 14a."); 
 628                 PrintAndLog("Usage:  hf 14a snoop [c][r]"); 
 629                 PrintAndLog("c - triggered by first data from card"); 
 630                 PrintAndLog("r - triggered by first 7-bit request from reader (REQ,WUP,...)"); 
 631                 PrintAndLog("sample: hf 14a snoop c r"); 
 635         for (int i 
= 0; i 
< 2; i
++) { 
 636                 ctmp 
= param_getchar(Cmd
, i
); 
 637                 if (ctmp 
== 'c' || ctmp 
== 'C') param 
|= 0x01; 
 638                 if (ctmp 
== 'r' || ctmp 
== 'R') param 
|= 0x02; 
 641         UsbCommand c 
= {CMD_SNOOP_ISO_14443a
, {param
, 0, 0}}; 
 647         UsbCommand c 
= {CMD_READER_ISO_14443a
, {0, 0, 0}};  
 651 int ExchangeAPDU14a(uint8_t *datain
, int datainlen
, bool activateField
, bool leaveSignalON
, uint8_t *dataout
, int maxdataoutlen
, int *dataoutlen
) { 
 655                 cmdc 
|= ISO14A_CONNECT 
| ISO14A_CLEAR_TRACE
; 
 658                 cmdc 
|= ISO14A_NO_DISCONNECT
; 
 660         // "Command APDU" length should be 5+255+1, but javacard's APDU buffer might be smaller - 133 bytes 
 661         // https://stackoverflow.com/questions/32994936/safe-max-java-card-apdu-data-command-and-respond-size 
 662         // here length USB_CMD_DATA_SIZE=512 
 663         // timeout must be authomatically set by "get ATS" 
 664         UsbCommand c 
= {CMD_READER_ISO_14443a
, {ISO14A_APDU 
| cmdc
, (datainlen 
& 0xFFFF), 0}};  
 665         memcpy(c
.d
.asBytes
, datain
, datainlen
); 
 672                 if (!WaitForResponseTimeout(CMD_ACK
, &resp
, 1500)) { 
 673                         PrintAndLog("APDU ERROR: Proxmark connection timeout."); 
 676                 if (resp
.arg
[0] != 1) { 
 677                         PrintAndLog("APDU ERROR: Proxmark error %d.", resp
.arg
[0]); 
 682     if (WaitForResponseTimeout(CMD_ACK
, &resp
, 1500)) { 
 683         recv 
= resp
.d
.asBytes
; 
 684         int iLen 
= resp
.arg
[0]; 
 686                 *dataoutlen 
= iLen 
- 2; 
 690                 if (maxdataoutlen 
&& *dataoutlen 
> maxdataoutlen
) { 
 691                         PrintAndLog("APDU ERROR: Buffer too small(%d). Needs %d bytes", *dataoutlen
, maxdataoutlen
); 
 695                 memcpy(dataout
, recv
, *dataoutlen
); 
 698                         PrintAndLog("APDU ERROR: No APDU response."); 
 704                         PrintAndLog("APDU ERROR: Block type mismatch."); 
 710                         PrintAndLog("APDU ERROR: ISO 14443A CRC error."); 
 716                         PrintAndLog("APDU ERROR: Small APDU response. Len=%d", iLen
); 
 721         PrintAndLog("APDU ERROR: Reply timeout."); 
 728 // ISO14443-4. 7. Half-duplex block transmission protocol 
 729 int CmdHF14AAPDU(const char *cmd
) { 
 730         uint8_t data
[USB_CMD_DATA_SIZE
]; 
 732         bool activateField 
= false; 
 733         bool leaveSignalON 
= false; 
 734         bool decodeTLV 
= false; 
 736         CLIParserInit("hf 14a apdu",  
 737                 "Sends an ISO 7816-4 APDU via ISO 14443-4 block transmission protocol (T=CL)",  
 738                 "Sample:\n\thf 14a apdu -st 00A404000E325041592E5359532E444446303100\n"); 
 742                 arg_lit0("sS",  "select",  "activate field and select card"), 
 743                 arg_lit0("kK",  "keep",    "leave the signal field ON after receive response"), 
 744                 arg_lit0("tT",  "tlv",     "executes TLV decoder if it possible"), 
 745                 arg_strx1(NULL
, NULL
,      "<APDU (hex)>", NULL
), 
 748         CLIExecWithReturn(cmd
, argtable
, false); 
 750         activateField 
= arg_get_lit(1); 
 751         leaveSignalON 
= arg_get_lit(2); 
 752         decodeTLV 
= arg_get_lit(3); 
 753         // len = data + PCB(1b) + CRC(2b) 
 754         CLIGetStrBLessWithReturn(4, data
, &datalen
, 1 + 2); 
 758 //      PrintAndLog("---str [%d] %s", arg_get_str(4)->count, arg_get_str(4)->sval[0]); 
 759         PrintAndLog(">>>>[%s%s%s] %s", activateField 
? "sel ": "", leaveSignalON 
? "keep ": "", decodeTLV 
? "TLV": "", sprint_hex(data
, datalen
)); 
 761         int res 
= ExchangeAPDU14a(data
, datalen
, activateField
, leaveSignalON
, data
, USB_CMD_DATA_SIZE
, &datalen
); 
 766         PrintAndLog("<<<< %s", sprint_hex(data
, datalen
)); 
 768         PrintAndLog("APDU response: %02x %02x - %s", data
[datalen 
- 2], data
[datalen 
- 1], GetAPDUCodeDescription(data
[datalen 
- 2], data
[datalen 
- 1]));  
 771         if (decodeTLV 
&& datalen 
> 4) { 
 772                 TLVPrintFromBuffer(data
, datalen 
- 2); 
 778 int CmdHF14ACmdRaw(const char *cmd
) { 
 779         UsbCommand c 
= {CMD_READER_ISO_14443a
, {0, 0, 0}}; 
 784         bool active_select 
= false; 
 785         bool no_rats 
= false; 
 786         uint16_t numbits 
= 0; 
 787         bool bTimeout 
= false; 
 788         uint32_t timeout 
= 0; 
 789         bool topazmode 
= false; 
 790         uint8_t data
[USB_CMD_DATA_SIZE
]; 
 793         // extract parameters 
 794         CLIParserInit("hf 14a raw", "Send raw hex data to tag",  
 796                 "\thf 14a raw -pa -b7 -t1000 52  -- execute WUPA\n"\
 
 797                 "\thf 14a raw -p 9320            -- anticollision\n"\
 
 798                 "\thf 14a raw -psc 60 00         -- select and mifare AUTH\n"); 
 801                 arg_lit0("rR",  "nreply",  "do not read response"), 
 802                 arg_lit0("cC",  "crc",     "calculate and append CRC"), 
 803                 arg_lit0("pP",  "power",   "leave the signal field ON after receive"), 
 804                 arg_lit0("aA",  "active",  "active signal field ON without select"), 
 805                 arg_lit0("sS",  "actives", "active signal field ON with select"), 
 806                 arg_int0("bB",  "bits",    NULL
, "number of bits to send. Useful for send partial byte"), 
 807                 arg_int0("t",   "timeout", NULL
, "timeout in ms"), 
 808                 arg_lit0("T",   "topaz",   "use Topaz protocol to send command"), 
 809                 arg_lit0("3",   NULL
,      "ISO14443-3 select only (skip RATS)"), 
 810                 arg_strx1(NULL
, NULL
,      "<data (hex)>", NULL
), 
 817         if (CLIParserParseString(cmd
, argtable
, arg_getsize(argtable
), false)){ 
 822         reply 
= !arg_get_lit(1); 
 823         crc 
= arg_get_lit(2); 
 824         power 
= arg_get_lit(3); 
 825         active 
= arg_get_lit(4); 
 826         active_select 
= arg_get_lit(5); 
 827         numbits 
= arg_get_int(6) & 0xFFFF; 
 828         timeout 
= arg_get_int(7); 
 829         bTimeout 
= (timeout 
> 0);        
 830         topazmode 
= arg_get_lit(8); 
 831         no_rats 
= arg_get_lit(9); 
 832         // len = data + CRC(2b) 
 833         if (CLIParamHexToBuf(arg_get_str(10), data
, sizeof(data
) -2, &datalen
)) { 
 841         if(crc 
&& datalen
>0 && datalen
<sizeof(data
)-2) 
 843                 uint8_t first
, second
; 
 845                         ComputeCrc14443(CRC_14443_B
, data
, datalen
, &first
, &second
); 
 847                         ComputeCrc14443(CRC_14443_A
, data
, datalen
, &first
, &second
); 
 849                 data
[datalen
++] = first
; 
 850                 data
[datalen
++] = second
; 
 853         if(active 
|| active_select
) 
 855                 c
.arg
[0] |= ISO14A_CONNECT 
| ISO14A_CLEAR_TRACE
; 
 857                         c
.arg
[0] |= ISO14A_NO_SELECT
; 
 861                 #define MAX_TIMEOUT 40542464    // = (2^32-1) * (8*16) / 13560000Hz * 1000ms/s 
 862                 c
.arg
[0] |= ISO14A_SET_TIMEOUT
; 
 863                 if(timeout 
> MAX_TIMEOUT
) { 
 864                         timeout 
= MAX_TIMEOUT
; 
 865                         PrintAndLog("Set timeout to 40542 seconds (11.26 hours). The max we can wait for response"); 
 867                 c
.arg
[2] = 13560000 / 1000 / (8*16) * timeout
; // timeout in ETUs (time to transfer 1 bit, approx. 9.4 us) 
 871                 c
.arg
[0] |= ISO14A_NO_DISCONNECT
; 
 875                 c
.arg
[0] |= ISO14A_RAW
; 
 879                 c
.arg
[0] |= ISO14A_TOPAZMODE
; 
 883                 c
.arg
[0] |= ISO14A_NO_RATS
; 
 886         // Max buffer is USB_CMD_DATA_SIZE (512) 
 887         c
.arg
[1] = (datalen 
& 0xFFFF) | ((uint32_t)numbits 
<< 16); 
 888         memcpy(c
.d
.asBytes
,data
,datalen
); 
 896                 if (!res 
&& datalen 
> 0) 
 903 static int waitCmd(uint8_t iSelect
) { 
 908     if (WaitForResponseTimeout(CMD_ACK
,&resp
,1500)) { 
 909         recv 
= resp
.d
.asBytes
; 
 910         uint8_t iLen 
= resp
.arg
[0]; 
 914                                 PrintAndLog("Card selected. UID[%i]:", iLen
); 
 916                                 PrintAndLog("Can't select card."); 
 919                         PrintAndLog("received %i bytes:", iLen
); 
 923         hexout 
= (char *)malloc(iLen 
* 3 + 1); 
 924         if (hexout 
!= NULL
) { 
 925             for (int i 
= 0; i 
< iLen
; i
++) { // data in hex 
 926                 sprintf(&hexout
[i 
* 3], "%02X ", recv
[i
]); 
 928             PrintAndLog("%s", hexout
); 
 931             PrintAndLog("malloc failed your client has low memory?"); 
 935         PrintAndLog("timeout while waiting for reply."); 
 941 static command_t CommandTable
[] =  
 943   {"help",   CmdHelp
,              1, "This help"}, 
 944   {"list",   CmdHF14AList
,         0, "[Deprecated] List ISO 14443a history"}, 
 945   {"reader", CmdHF14AReader
,       0, "Start acting like an ISO14443 Type A reader"}, 
 946   {"info",   CmdHF14AInfo
,         0, "Reads card and shows information about it"}, 
 947   {"cuids",  CmdHF14ACUIDs
,        0, "<n> Collect n>0 ISO14443 Type A UIDs in one go"}, 
 948   {"sim",    CmdHF14ASim
,          0, "<UID> -- Simulate ISO 14443a tag"}, 
 949   {"snoop",  CmdHF14ASnoop
,        0, "Eavesdrop ISO 14443 Type A"}, 
 950   {"apdu",   CmdHF14AAPDU
,         0, "Send an ISO 7816-4 APDU via ISO 14443-4 block transmission protocol"}, 
 951   {"raw",    CmdHF14ACmdRaw
,       0, "Send raw hex data to tag"}, 
 952   {NULL
, NULL
, 0, NULL
} 
 955 int CmdHF14A(const char *Cmd
) { 
 956         (void)WaitForResponseTimeout(CMD_ACK
,NULL
,100); 
 957         CmdsParse(CommandTable
, Cmd
); 
 961 int CmdHelp(const char *Cmd
) 
 963   CmdsHelp(CommandTable
);