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https://github.com/RfidResearchGroup/proxmark3.git
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CHG: 'hf 14a sim e' - it now has a parameter for setfoundkeys to emulator memory.
CHG: textual changes.
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parent
7e735c1398
commit
2ce218042d
2 changed files with 31 additions and 24 deletions
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@ -130,9 +130,9 @@ char* getTagInfo(uint8_t uid) {
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int usage_hf_14a_sim(void) {
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// PrintAndLog("\n Emulating ISO/IEC 14443 type A tag with 4,7 or 10 byte UID\n");
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PrintAndLog("\n Emulating ISO/IEC 14443 type A tag with 4,7 byte UID\n");
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PrintAndLog("Usage: hf 14a sim t <type> u <uid> x");
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PrintAndLog(" Options : ");
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PrintAndLog(" h : this help");
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PrintAndLog("usage: hf 14a sim [h] t <type> u <uid> [x] [e] [v]");
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PrintAndLog("options: ");
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PrintAndLog(" h : This help");
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PrintAndLog(" t : 1 = MIFARE Classic");
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PrintAndLog(" 2 = MIFARE Ultralight");
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PrintAndLog(" 3 = MIFARE Desfire");
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@ -142,12 +142,14 @@ int usage_hf_14a_sim(void) {
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PrintAndLog(" 7 = AMIIBO (NTAG 215), pack 0x8080");
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// PrintAndLog(" u : 4, 7 or 10 byte UID");
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PrintAndLog(" u : 4, 7 byte UID");
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PrintAndLog(" x : (Optional) performs the 'reader attack', nr/ar attack against a legitimate reader");
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PrintAndLog(" v : (Optional) show maths used for cracking reader. Useful for debugging.");
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PrintAndLog("\n sample : hf 14a sim t 1 u 11223344 x");
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PrintAndLog(" : hf 14a sim t 1 u 11223344");
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PrintAndLog(" : hf 14a sim t 1 u 11223344556677");
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// PrintAndLog(" : hf 14a sim t 1 u 11223445566778899AA\n");
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PrintAndLog(" x : (Optional) Performs the 'reader attack', nr/ar attack against a reader");
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PrintAndLog(" e : (Optional) Fill simulator keys from found keys");
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PrintAndLog(" v : (Optional) Verbose");
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PrintAndLog("samples:");
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PrintAndLog(" hf 14a sim t 1 u 11223344 x");
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PrintAndLog(" hf 14a sim t 1 u 11223344");
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PrintAndLog(" hf 14a sim t 1 u 11223344556677");
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// PrintAndLog(" hf 14a sim t 1 u 11223445566778899AA\n");
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return 0;
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}
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int usage_hf_14a_sniff(void){
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@ -447,7 +449,8 @@ int CmdHF14ASim(const char *Cmd) {
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uint8_t uid[10] = {0,0,0,0,0,0,0,0,0,0};
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int uidlen = 0;
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bool useUIDfromEML = TRUE;
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bool verbose = false;
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bool setEmulatorMem = FALSE;
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bool verbose = FALSE;
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while(param_getchar(Cmd, cmdp) != 0x00) {
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switch(param_getchar(Cmd, cmdp)) {
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@ -459,7 +462,7 @@ int CmdHF14ASim(const char *Cmd) {
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// Retrieve the tag type
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tagtype = param_get8ex(Cmd, cmdp+1, 0, 10);
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if (tagtype == 0)
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errors = true;
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errors = TRUE;
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cmdp += 2;
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break;
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case 'u':
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@ -488,6 +491,11 @@ int CmdHF14ASim(const char *Cmd) {
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flags |= FLAG_NR_AR_ATTACK;
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cmdp++;
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break;
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case 'e':
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case 'E':
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setEmulatorMem = TRUE;
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cmdp++;
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break;
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default:
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PrintAndLog("Unknown parameter '%c'", param_getchar(Cmd, cmdp));
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errors = true;
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@ -502,8 +510,6 @@ int CmdHF14ASim(const char *Cmd) {
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if ( useUIDfromEML )
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flags |= FLAG_UID_IN_EMUL;
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PrintAndLog("Press pm3-button to abort simulation");
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UsbCommand c = {CMD_SIMULATE_TAG_ISO_14443a,{ tagtype, flags, 0 }};
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memcpy(c.d.asBytes, uid, uidlen>>1);
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clearCommandBuffer();
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@ -511,15 +517,15 @@ int CmdHF14ASim(const char *Cmd) {
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nonces_t data[ATTACK_KEY_COUNT*2];
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UsbCommand resp;
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PrintAndLog("Press pm3-button to abort simulation");
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while( !ukbhit() ){
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if (!WaitForResponseTimeout(CMD_ACK, &resp, 1500) ) continue;
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if ( !(flags & FLAG_NR_AR_ATTACK) ) break;
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if ( (resp.arg[0] & 0xffff) != CMD_SIMULATE_MIFARE_CARD ) break;
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memcpy( data, resp.d.asBytes, sizeof(data) );
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readerAttack(data, TRUE, verbose);
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readerAttack(data, setEmulatorMem, verbose);
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}
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return 0;
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}
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@ -24,19 +24,20 @@ int usage_hf14_mifare(void){
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return 0;
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}
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int usage_hf14_mf1ksim(void){
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PrintAndLog("Usage: hf mf sim [h] u <uid (8,14,20 hex symbols)> n <numreads> i x");
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PrintAndLog("Usage: hf mf sim [h] u <uid> n <numreads> [i] [x] [e] [v]");
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PrintAndLog("options:");
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PrintAndLog(" h this help");
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PrintAndLog(" u (Optional) UID 4,7 or 10bytes. If not specified, the UID 4b from emulator memory will be used");
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PrintAndLog(" n (Optional) Automatically exit simulation after <numreads> blocks have been read by reader. 0 = infinite");
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PrintAndLog(" i (Optional) Interactive, means that console will not be returned until simulation finishes or is aborted");
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PrintAndLog(" x (Optional) Crack, performs the 'reader attack', nr/ar attack against a legitimate reader, fishes out the key(s)");
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PrintAndLog(" e (Optional) Fill simulator keys from what we crack");
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PrintAndLog(" v (Optional) Show maths used for cracking reader. Useful for debugging.");
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PrintAndLog(" x (Optional) Crack, performs the 'reader attack', nr/ar attack against a reader");
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PrintAndLog(" e (Optional) Fill simulator keys from found keys");
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PrintAndLog(" v (Optional) Verbose");
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PrintAndLog("samples:");
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PrintAndLog(" hf mf sim u 0a0a0a0a");
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PrintAndLog(" hf mf sim u 11223344556677");
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PrintAndLog(" hf mf sim u 112233445566778899AA");
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PrintAndLog(" hf mf sim u 11223344 i x");
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return 0;
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}
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int usage_hf14_dbg(void){
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@ -1381,7 +1382,8 @@ void readerAttack(nonces_t data[], bool setEmulatorMem, bool verbose) {
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k_sector[i].foundKey[1] = FALSE;
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}
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printf("enter reader attack\n");
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if (verbose) printf("enter Moebius attack (mfkey32v2) \n");
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for (uint8_t i = 0; i < ATTACK_KEY_COUNT; ++i) {
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// if no-collected data
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@ -1419,7 +1421,7 @@ void readerAttack(nonces_t data[], bool setEmulatorMem, bool verbose) {
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uint8_t sectorNum = data[i+ATTACK_KEY_COUNT].sector;
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uint8_t keyType = data[i+ATTACK_KEY_COUNT].keytype;
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PrintAndLog("Found Key%s for sector %02d: [%012"llx"]"
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PrintAndLog("Reader is trying authenticate with: Key %s, sector %02d: [%012"llx"]"
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, keyType ? "B" : "A"
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, sectorNum
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, key
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@ -1528,7 +1530,6 @@ int CmdHF14AMf1kSim(const char *Cmd) {
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while( !ukbhit() ){
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if (!WaitForResponseTimeout(CMD_ACK, &resp, 1500) ) continue;
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if ( !(flags & FLAG_NR_AR_ATTACK) ) break;
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if ( (resp.arg[0] & 0xffff) != CMD_SIMULATE_MIFARE_CARD ) break;
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@ -1537,7 +1538,7 @@ int CmdHF14AMf1kSim(const char *Cmd) {
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}
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if (k_sector != NULL) {
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printKeyTable(k_sectorsCount, k_sector );
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printKeyTable(k_sectorsCount, k_sector);
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free(k_sector);
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k_sector = NULL;
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}
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