+
+int tryMfk32(uint8_t *data, uint64_t *outputkey ){
+ struct Crypto1State *s,*t;
+ uint64_t key; // recovered key
+ uint32_t uid = le32toh(data);
+ uint32_t nt = le32toh(data+4); // tag challenge
+ uint32_t nr0_enc = le32toh(data+8); // first encrypted reader challenge
+ uint32_t ar0_enc = le32toh(data+12); // first encrypted reader response
+ //+16 uid2
+ //+20 nt2
+ uint32_t nr1_enc = le32toh(data+24); // second encrypted reader challenge
+ uint32_t ar1_enc = le32toh(data+28); // second encrypted reader response
+ bool isSuccess = FALSE;
+ int counter = 0;
+
+ PrintAndLog("Enter mfkey32");
+ clock_t t1 = clock();
+ s = lfsr_recovery32(ar0_enc ^ prng_successor(nt, 64), 0);
+
+ for(t = s; t->odd | t->even; ++t) {
+ lfsr_rollback_word(t, 0, 0);
+ lfsr_rollback_word(t, nr0_enc, 1);
+ lfsr_rollback_word(t, uid ^ nt, 0);
+ crypto1_get_lfsr(t, &key);
+ crypto1_word(t, uid ^ nt, 0);
+ crypto1_word(t, nr1_enc, 1);
+ if (ar1_enc == (crypto1_word(t, 0, 0) ^ prng_successor(nt, 64))) {
+ PrintAndLog("Found Key: [%012"llx"]", key);
+ isSuccess = TRUE;
+ ++counter;
+ if (counter==100)
+ break;
+ }
+ }
+ t1 = clock() - t1;
+ if ( t1 > 0 ) PrintAndLog("Time in mf32key: %.0f ticks \n", (float)t1);
+ *outputkey = ( isSuccess ) ? key : 0;
+ crypto1_destroy(s);
+ return isSuccess;
+}
+
+int tryMfk32_moebius(uint8_t *data, uint64_t *outputkey ){
+ struct Crypto1State *s, *t;
+ uint64_t key = 0; // recovered key
+ uint32_t uid = le32toh(data);
+ uint32_t nt0 = le32toh(data+4); // first tag challenge (nonce)
+ uint32_t nr0_enc = le32toh(data+8); // first encrypted reader challenge
+ uint32_t ar0_enc = le32toh(data+12); // first encrypted reader response
+ //uint32_t uid1 = le32toh(data+16);
+ uint32_t nt1 = le32toh(data+20); // second tag challenge (nonce)
+ uint32_t nr1_enc = le32toh(data+24); // second encrypted reader challenge
+ uint32_t ar1_enc = le32toh(data+28); // second encrypted reader response
+ bool isSuccess = FALSE;
+ int counter = 0;
+
+ PrintAndLog("Enter mfkey32_moebius");
+ clock_t t1 = clock();
+
+ s = lfsr_recovery32(ar0_enc ^ prng_successor(nt0, 64), 0);
+
+ for(t = s; t->odd | t->even; ++t) {
+ lfsr_rollback_word(t, 0, 0);
+ lfsr_rollback_word(t, nr0_enc, 1);
+ lfsr_rollback_word(t, uid ^ nt0, 0);
+ crypto1_get_lfsr(t, &key);
+
+ crypto1_word(t, uid ^ nt1, 0);
+ crypto1_word(t, nr1_enc, 1);
+ if (ar1_enc == (crypto1_word(t, 0, 0) ^ prng_successor(nt1, 64))) {
+ PrintAndLog("Found Key: [%012"llx"]",key);
+ isSuccess = TRUE;
+ ++counter;
+ if (counter==20)
+ break;
+ }
+ }
+ t1 = clock() - t1;
+ if ( t1 > 0 ) PrintAndLog("Time in mfkey32_moebius: %.0f ticks \n", (float)t1);
+ *outputkey = ( isSuccess ) ? key : 0;
+ crypto1_destroy(s);
+ return isSuccess;
+}
+
+int tryMfk64_ex(uint8_t *data, uint64_t *outputkey){
+ uint32_t uid = le32toh(data);
+ uint32_t nt = le32toh(data+4); // tag challenge
+ uint32_t nr_enc = le32toh(data+8); // encrypted reader challenge
+ uint32_t ar_enc = le32toh(data+12); // encrypted reader response
+ uint32_t at_enc = le32toh(data+16); // encrypted tag response
+ return tryMfk64(uid, nt, nr_enc, ar_enc, at_enc, outputkey);
+}
+
+int tryMfk64(uint32_t uid, uint32_t nt, uint32_t nr_enc, uint32_t ar_enc, uint32_t at_enc, uint64_t *outputkey){
+ uint64_t key = 0; // recovered key
+ uint32_t ks2; // keystream used to encrypt reader response
+ uint32_t ks3; // keystream used to encrypt tag response
+ struct Crypto1State *revstate;
+
+ PrintAndLog("Enter mfkey64");
+ clock_t t1 = clock();
+
+ // Extract the keystream from the messages
+ ks2 = ar_enc ^ prng_successor(nt, 64);
+ ks3 = at_enc ^ prng_successor(nt, 96);
+ revstate = lfsr_recovery64(ks2, ks3);
+ lfsr_rollback_word(revstate, 0, 0);
+ lfsr_rollback_word(revstate, 0, 0);
+ lfsr_rollback_word(revstate, nr_enc, 1);
+ lfsr_rollback_word(revstate, uid ^ nt, 0);
+ crypto1_get_lfsr(revstate, &key);
+ PrintAndLog("Found Key: [%012"llx"]", key);
+ crypto1_destroy(revstate);
+ *outputkey = key;
+
+ t1 = clock() - t1;
+ if ( t1 > 0 ) PrintAndLog("Time in mfkey64: %.0f ticks \n", (float)t1);
+ return 0;
+}