1 //-----------------------------------------------------------------------------
2 // Copyright (C) 2010 iZsh <izsh at fail0verflow.com>
4 // This code is licensed to you under the terms of the GNU GPL, version 2 or,
5 // at your option, any later version. See the LICENSE.txt file for the text of
7 //-----------------------------------------------------------------------------
8 // High frequency ISO14443B commands
9 //-----------------------------------------------------------------------------
16 #include "iso14443crc.h"
17 #include "proxmark3.h"
21 #include "cmdparser.h"
26 static int CmdHelp(const char *Cmd
);
28 int CmdHF14BList(const char *Cmd
)
30 PrintAndLog("Deprecated command, use 'hf list 14b' instead");
35 int CmdHF14BSim(const char *Cmd
)
37 UsbCommand c
={CMD_SIMULATE_TAG_ISO_14443B
};
43 int CmdHF14BSnoop(const char *Cmd
)
45 UsbCommand c
= {CMD_SNOOP_ISO_14443B
};
51 /* New command to read the contents of a SRI512 tag
52 * SRI512 tags are ISO14443-B modulated memory tags,
53 * this command just dumps the contents of the memory
55 int CmdSri512Read(const char *Cmd
)
57 UsbCommand c
= {CMD_READ_SRI512_TAG
, {strtol(Cmd
, NULL
, 0), 0, 0}};
63 /* New command to read the contents of a SRIX4K tag
64 * SRIX4K tags are ISO14443-B modulated memory tags,
65 * this command just dumps the contents of the memory/
67 int CmdSrix4kRead(const char *Cmd
)
69 UsbCommand c
= {CMD_READ_SRIX4K_TAG
, {strtol(Cmd
, NULL
, 0), 0, 0}};
77 UsbCommand c
= {CMD_ISO_14443B_COMMAND
, {0, 0, 0}};
80 if (!WaitForResponseTimeout(CMD_ACK
,&resp
,1000)) {
86 int HF14BCmdRaw(bool reply
, bool *crc
, bool power
, uint8_t *data
, uint8_t *datalen
, bool verbose
){
88 UsbCommand c
= {CMD_ISO_14443B_COMMAND
, {0, 0, 0}}; // len,recv,power
91 uint8_t first
, second
;
92 ComputeCrc14443(CRC_14443_B
, data
, *datalen
, &first
, &second
);
93 data
[*datalen
] = first
;
94 data
[*datalen
+ 1] = second
;
101 memcpy(c
.d
.asBytes
,data
,*datalen
);
102 clearCommandBuffer();
105 if (!reply
) return 1;
107 if (!WaitForResponseTimeout(CMD_ACK
,&resp
,1000)) {
108 if (verbose
) PrintAndLog("timeout while waiting for reply.");
111 *datalen
= resp
.arg
[0];
112 if (verbose
) PrintAndLog("received %u octets", *datalen
);
113 if(*datalen
<2) return 0;
115 memcpy(data
, resp
.d
.asBytes
, *datalen
);
116 if (verbose
) PrintAndLog("%s", sprint_hex(data
, *datalen
));
118 uint8_t first
, second
;
119 ComputeCrc14443(CRC_14443_B
, data
, *datalen
-2, &first
, &second
);
120 if(data
[*datalen
-2] == first
&& data
[*datalen
-1] == second
) {
121 if (verbose
) PrintAndLog("CRC OK");
124 if (verbose
) PrintAndLog("CRC failed");
130 int CmdHF14BCmdRaw (const char *Cmd
) {
137 uint8_t data
[100] = {0x00};
142 PrintAndLog("Usage: hf 14b raw [-r] [-c] [-p] [-s || -ss] <0A 0B 0C ... hex>");
143 PrintAndLog(" -r do not read response");
144 PrintAndLog(" -c calculate and append CRC");
145 PrintAndLog(" -p leave the field on after receive");
146 PrintAndLog(" -s active signal field ON with select");
147 PrintAndLog(" -ss active signal field ON with select for SRx ST Microelectronics tags");
152 while (*Cmd
==' ' || *Cmd
=='\t') Cmd
++;
154 while (Cmd
[i
]!='\0') {
155 if (Cmd
[i
]==' ' || Cmd
[i
]=='\t') { i
++; continue; }
173 if (Cmd
[i
+2]=='s' || Cmd
[i
+2]=='S') {
179 PrintAndLog("Invalid option");
185 if ((Cmd
[i
]>='0' && Cmd
[i
]<='9') ||
186 (Cmd
[i
]>='a' && Cmd
[i
]<='f') ||
187 (Cmd
[i
]>='A' && Cmd
[i
]<='F') ) {
188 buf
[strlen(buf
)+1]=0;
189 buf
[strlen(buf
)]=Cmd
[i
];
192 if (strlen(buf
)>=2) {
193 sscanf(buf
,"%x",&temp
);
194 data
[datalen
++]=(uint8_t)(temp
& 0xff);
199 PrintAndLog("Invalid char on input");
204 PrintAndLog("Missing data input");
208 if (select
){ //auto select 14b tag
226 if (HF14BCmdRaw(true, &crc2
, true, cmd2
, &cmdLen
, false)==0) return rawClose();
228 if ( SRx
&& (cmdLen
!= 3 || !crc2
) ) return rawClose();
229 else if (cmd2
[0] != 0x50 || cmdLen
!= 14 || !crc2
) return rawClose();
241 // UID from cmd2[1 - 4]
249 if (HF14BCmdRaw(true, &crc2
, true, cmd2
, &cmdLen
, false)==0) return rawClose();
251 if (cmdLen
!= 3 || !crc2
) return rawClose();
252 if (SRx
&& cmd2
[0] != chipID
) return rawClose();
254 return HF14BCmdRaw(reply
, &crc
, power
, data
, &datalen
, true);
257 // print full atqb info
258 static void print_atqb_resp(uint8_t *data
){
259 //PrintAndLog (" UID: %s", sprint_hex(data+1,4));
260 PrintAndLog (" App Data: %s", sprint_hex(data
+5,4));
261 PrintAndLog (" Protocol: %s", sprint_hex(data
+9,3));
262 uint8_t BitRate
= data
[9];
264 PrintAndLog (" Bit Rate: 106 kbit/s only PICC <-> PCD");
266 PrintAndLog (" Bit Rate: 212 kbit/s PICC -> PCD supported");
268 PrintAndLog (" Bit Rate: 424 kbit/s PICC -> PCD supported");
270 PrintAndLog (" Bit Rate: 847 kbit/s PICC -> PCD supported");
272 PrintAndLog (" Bit Rate: 212 kbit/s PICC <- PCD supported");
274 PrintAndLog (" Bit Rate: 424 kbit/s PICC <- PCD supported");
276 PrintAndLog (" Bit Rate: 847 kbit/s PICC <- PCD supported");
278 PrintAndLog (" Same bit rate <-> required");
280 uint16_t maxFrame
= data
[10]>>4;
282 maxFrame
= 8*maxFrame
+ 16;
283 else if (maxFrame
== 5)
285 else if (maxFrame
== 6)
287 else if (maxFrame
== 7)
289 else if (maxFrame
== 8)
294 PrintAndLog ("Max Frame Size: %u%s",maxFrame
, (maxFrame
== 257) ? "+ RFU" : "");
296 uint8_t protocolT
= data
[10] & 0xF;
297 PrintAndLog (" Protocol Type: Protocol is %scompliant with ISO/IEC 14443-4",(protocolT
) ? "" : "not " );
298 PrintAndLog ("Frame Wait Int: %u", data
[11]>>4);
299 PrintAndLog (" App Data Code: Application is %s",(data
[11]&4) ? "Standard" : "Proprietary");
300 PrintAndLog (" Frame Options: NAD is %ssupported",(data
[11]&2) ? "" : "not ");
301 PrintAndLog (" Frame Options: CID is %ssupported",(data
[11]&1) ? "" : "not ");
302 PrintAndLog ("Max Buf Length: %u (MBLI) %s",data
[14]>>4, (data
[14] & 0xF0) ? "" : "not supported");
307 // get SRx chip model (from UID) // from ST Microelectronics
308 char *get_ST_Chip_Model(uint8_t data
){
309 static char model
[20];
310 char *retStr
= model
;
311 memset(model
,0, sizeof(model
));
314 case 0x0: sprintf(retStr
, "SRIX4K (Special)"); break;
315 case 0x2: sprintf(retStr
, "SR176"); break;
316 case 0x3: sprintf(retStr
, "SRIX4K"); break;
317 case 0x4: sprintf(retStr
, "SRIX512"); break;
318 case 0x6: sprintf(retStr
, "SRI512"); break;
319 case 0x7: sprintf(retStr
, "SRI4K"); break;
320 case 0xC: sprintf(retStr
, "SRT512"); break;
321 default : sprintf(retStr
, "Unknown"); break;
326 int print_ST_Lock_info(uint8_t model
){
327 //assume connection open and tag selected...
328 uint8_t data
[16] = {0x00};
335 if (model
== 0x2) { //SR176 has special command:
344 if (HF14BCmdRaw(true, &crc
, true, data
, &datalen
, false)==0) return rawClose();
346 if (datalen
!= resplen
|| !crc
) return rawClose();
348 PrintAndLog("Chip Write Protection Bits:");
349 // now interpret the data
351 case 0x0: //fall through (SRIX4K special)
352 case 0x3: //fall through (SRIx4K)
356 PrintAndLog(" raw: %s",printBits(1,data
+3));
357 PrintAndLog(" 07/08:%slocked", (data
[3] & 1) ? " not " : " " );
358 for (uint8_t i
= 1; i
<8; i
++){
359 PrintAndLog(" %02u:%slocked", blk1
, (data
[3] & (1 << i
)) ? " not " : " " );
363 case 0x4: //fall through (SRIX512)
364 case 0x6: //fall through (SRI512)
365 case 0xC: // (SRT512)
366 //need data[2] and data[3]
368 PrintAndLog(" raw: %s",printBits(2,data
+2));
369 for (uint8_t b
=2; b
<4; b
++){
370 for (uint8_t i
=0; i
<8; i
++){
371 PrintAndLog(" %02u:%slocked", blk1
, (data
[b
] & (1 << i
)) ? " not " : " " );
379 PrintAndLog(" raw: %s",printBits(1,data
+2));
380 for (uint8_t i
= 0; i
<8; i
++){
381 PrintAndLog(" %02u/%02u:%slocked", blk1
, blk1
+1, (data
[2] & (1 << i
)) ? " " : " not " );
391 // print UID info from SRx chips (ST Microelectronics)
392 static void print_st_general_info(uint8_t *data
){
393 //uid = first 8 bytes in data
394 PrintAndLog(" UID: %s", sprint_hex(SwapEndian64(data
,8,8),8));
395 PrintAndLog(" MFG: %02X, %s", data
[6], getTagInfo(data
[6]));
396 PrintAndLog(" Chip: %02X, %s", data
[5]>>2, get_ST_Chip_Model(data
[5]>>2));
400 // 14b get and print UID only (general info)
401 int HF14BStdReader(uint8_t *data
, uint8_t *datalen
){
402 //05 00 00 = find one tag in field
403 //1d xx xx xx xx 00 08 01 00 = attrib xx=UID (resp 10 [f9 e0])
404 //a3 = ? (resp 03 [e2 c2])
405 //02 = ? (resp 02 [6a d3])
406 // 022b (resp 02 67 00 [29 5b])
407 // 0200a40400 (resp 02 67 00 [29 5b])
408 // 0200a4040c07a0000002480300 (resp 02 67 00 [29 5b])
409 // 0200a4040c07a0000002480200 (resp 02 67 00 [29 5b])
410 // 0200a4040006a0000000010100 (resp 02 6a 82 [4b 4c])
411 // 0200a4040c09d27600002545500200 (resp 02 67 00 [29 5b])
412 // 0200a404000cd2760001354b414e4d30310000 (resp 02 6a 82 [4b 4c])
413 // 0200a404000ca000000063504b43532d313500 (resp 02 6a 82 [4b 4c])
414 // 0200a4040010a000000018300301000000000000000000 (resp 02 6a 82 [4b 4c])
415 //03 = ? (resp 03 [e3 c2])
416 //c2 = ? (resp c2 [66 15])
417 //b2 = ? (resp a3 [e9 67])
418 //a2 = ? (resp 02 [6a d3])
426 if (HF14BCmdRaw(true, &crc
, true, data
, datalen
, false)==0) return rawClose();
428 if (data
[0] != 0x50 || *datalen
!= 14 || !crc
) return rawClose();
430 PrintAndLog ("\n14443-3b tag found:");
431 PrintAndLog (" UID: %s", sprint_hex(data
+1,4));
438 // UID from data[1 - 4]
450 if (HF14BCmdRaw(true, &crc2
, true, cmd2
, &cmdLen
, false)==0) return rawClose();
452 if (cmdLen
!= 3 || !crc2
) return rawClose();
453 // add attrib responce to data
459 // 14b get and print Full Info (as much as we know)
460 int HF14BStdInfo(uint8_t *data
, uint8_t *datalen
){
461 if (!HF14BStdReader(data
,datalen
)) return 0;
464 print_atqb_resp(data
);
470 // SRx get and print general info about SRx chip from UID
471 int HF14B_ST_Reader(uint8_t *data
, uint8_t *datalen
, bool closeCon
){
479 // verbose on for now for testing - turn off when functional
480 if (HF14BCmdRaw(true, &crc
, true, data
, datalen
, false)==0) return rawClose();
482 if (*datalen
!= 3 || !crc
) return rawClose();
484 uint8_t chipID
= data
[0];
491 if (HF14BCmdRaw(true, &crc
, true, data
, datalen
, false)==0) return rawClose();
493 if (*datalen
!= 3 || !crc
|| data
[0] != chipID
) return rawClose();
500 if (HF14BCmdRaw(true, &crc
, true, data
, datalen
, false)==0) return rawClose();
502 if (*datalen
!= 10 || !crc
) return rawClose();
505 if (closeCon
) rawClose();
507 PrintAndLog("\n14443-3b ST tag found:");
508 print_st_general_info(data
);
512 // SRx get and print full info (needs more info...)
513 int HF14B_ST_Info(uint8_t *data
, uint8_t *datalen
){
514 if (!HF14B_ST_Reader(data
, datalen
, false)) return 0;
516 //add locking bit information here.
517 if (print_ST_Lock_info(data
[5]>>2))
523 // test for other 14b type tags (mimic another reader - don't have tags to identify)
524 int HF14B_Other_Reader(uint8_t *data
, uint8_t *datalen
){
533 if (HF14BCmdRaw(true, &crc
, true, data
, datalen
, false)!=0) {
534 if (*datalen
> 2 || !crc
) {
535 PrintAndLog ("\n14443-3b tag found:");
536 PrintAndLog ("Unknown tag type answered to a 0x000b3f80 command ans:");
537 PrintAndLog ("%s",sprint_hex(data
,*datalen
));
547 if (HF14BCmdRaw(true, &crc
, true, data
, datalen
, false)!=0) {
549 PrintAndLog ("\n14443-3b tag found:");
550 PrintAndLog ("Unknown tag type answered to a 0x0A command ans:");
551 PrintAndLog ("%s",sprint_hex(data
,*datalen
));
561 if (HF14BCmdRaw(true, &crc
, true, data
, datalen
, false)!=0) {
563 PrintAndLog ("\n14443-3b tag found:");
564 PrintAndLog ("Unknown tag type answered to a 0x0C command ans:");
565 PrintAndLog ("%s",sprint_hex(data
,*datalen
));
574 // get and print all info known about any known 14b tag
575 int HF14BInfo(bool verbose
){
579 // try std 14b (atqb)
580 if (HF14BStdInfo(data
, &datalen
)) return 1;
583 if (HF14B_ST_Info(data
, &datalen
)) return 1;
585 // try unknown 14b read commands (to be identified later)
586 // could be read of calypso, CEPAS, moneo, or pico pass.
587 if (HF14B_Other_Reader(data
, &datalen
)) return 1;
589 if (verbose
) PrintAndLog("no 14443B tag found");
593 // menu command to get and print all info known about any known 14b tag
594 int CmdHF14Binfo(const char *Cmd
){
595 return HF14BInfo(true);
598 // get and print general info about all known 14b chips
599 int HF14BReader(bool verbose
){
603 // try std 14b (atqb)
604 if (HF14BStdReader(data
, &datalen
)) return 1;
607 if (HF14B_ST_Reader(data
, &datalen
, true)) return 1;
609 // try unknown 14b read commands (to be identified later)
610 // could be read of calypso, CEPAS, moneo, or pico pass.
611 if (HF14B_Other_Reader(data
, &datalen
)) return 1;
613 if (verbose
) PrintAndLog("no 14443B tag found");
617 // menu command to get and print general info about all known 14b chips
618 int CmdHF14BReader(const char *Cmd
){
619 return HF14BReader(true);
622 int CmdSriWrite( const char *Cmd
){
624 * For SRIX4K blocks 00 - 7F
625 * hf 14b raw -c -p 09 $srix4kwblock $srix4kwdata
627 * For SR512 blocks 00 - 0F
628 * hf 14b raw -c -p 09 $sr512wblock $sr512wdata
630 * Special block FF = otp_lock_reg block.
633 char cmdp
= param_getchar(Cmd
, 0);
634 uint8_t blockno
= -1;
635 uint8_t data
[4] = {0x00};
636 bool isSrix4k
= true;
639 if (strlen(Cmd
) < 1 || cmdp
== 'h' || cmdp
== 'H') {
640 PrintAndLog("Usage: hf 14b write <1|2> <BLOCK> <DATA>");
641 PrintAndLog(" [1 = SRIX4K]");
642 PrintAndLog(" [2 = SRI512]");
643 PrintAndLog(" [BLOCK number depends on tag, special block == FF]");
644 PrintAndLog(" sample: hf 14b write 1 7F 11223344");
645 PrintAndLog(" : hf 14b write 1 FF 11223344");
646 PrintAndLog(" : hf 14b write 2 15 11223344");
647 PrintAndLog(" : hf 14b write 2 FF 11223344");
654 //blockno = param_get8(Cmd, 1);
656 if ( param_gethex(Cmd
,1, &blockno
, 2) ) {
657 PrintAndLog("Block number must include 2 HEX symbols");
662 if ( blockno
> 0x7f && blockno
!= 0xff ){
663 PrintAndLog("Block number out of range");
667 if ( blockno
> 0x0f && blockno
!= 0xff ){
668 PrintAndLog("Block number out of range");
673 if (param_gethex(Cmd
, 2, data
, 8)) {
674 PrintAndLog("Data must include 8 HEX symbols");
678 if ( blockno
== 0xff)
679 PrintAndLog("[%s] Write special block %02X [ %s ]", (isSrix4k
)?"SRIX4K":"SRI512" , blockno
, sprint_hex(data
,4) );
681 PrintAndLog("[%s] Write block %02X [ %s ]", (isSrix4k
)?"SRIX4K":"SRI512", blockno
, sprint_hex(data
,4) );
683 sprintf(str
, "-c 09 %02x %02x%02x%02x%02x", blockno
, data
[0], data
[1], data
[2], data
[3]);
689 static command_t CommandTable
[] =
691 {"help", CmdHelp
, 1, "This help"},
692 {"info", CmdHF14Binfo
, 0, "Find and print details about a 14443B tag"},
693 {"list", CmdHF14BList
, 0, "[Deprecated] List ISO 14443B history"},
694 {"reader", CmdHF14BReader
, 0, "Act as a 14443B reader to identify a tag"},
695 {"sim", CmdHF14BSim
, 0, "Fake ISO 14443B tag"},
696 {"snoop", CmdHF14BSnoop
, 0, "Eavesdrop ISO 14443B"},
697 {"sri512read", CmdSri512Read
, 0, "Read contents of a SRI512 tag"},
698 {"srix4kread", CmdSrix4kRead
, 0, "Read contents of a SRIX4K tag"},
699 {"sriwrite", CmdSriWrite
, 0, "Write data to a SRI512 | SRIX4K tag"},
700 {"raw", CmdHF14BCmdRaw
, 0, "Send raw hex data to tag"},
701 {NULL
, NULL
, 0, NULL
}
704 int CmdHF14B(const char *Cmd
)
706 CmdsParse(CommandTable
, Cmd
);
710 int CmdHelp(const char *Cmd
)
712 CmdsHelp(CommandTable
);