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https://github.com/RfidResearchGroup/proxmark3.git
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chg: send ref instead
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parent
51022d4329
commit
5c0dfdbf6b
3 changed files with 26 additions and 26 deletions
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@ -2920,7 +2920,7 @@ void readerAttack(nonces_t data, bool setEmulatorMem, bool verbose) {
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if (k_sector == NULL)
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if (k_sector == NULL)
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emptySectorTable();
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emptySectorTable();
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success = mfkey32_moebius(data, &key);
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success = mfkey32_moebius(&data, &key);
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if (success) {
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if (success) {
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uint8_t sector = data.sector;
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uint8_t sector = data.sector;
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uint8_t keytype = data.keytype;
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uint8_t keytype = data.keytype;
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@ -89,25 +89,25 @@ uint32_t nonce2key(uint32_t uid, uint32_t nt, uint32_t nr, uint32_t ar, uint64_t
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}
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}
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// recover key from 2 different reader responses on same tag challenge
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// recover key from 2 different reader responses on same tag challenge
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bool mfkey32(nonces_t data, uint64_t *outputkey) {
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bool mfkey32(nonces_t *data, uint64_t *outputkey) {
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struct Crypto1State *s, *t;
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struct Crypto1State *s, *t;
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uint64_t outkey = 0;
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uint64_t outkey = 0;
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uint64_t key = 0; // recovered key
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uint64_t key = 0; // recovered key
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bool isSuccess = false;
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bool isSuccess = false;
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uint8_t counter = 0;
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uint8_t counter = 0;
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uint32_t p640 = prng_successor(data.nonce, 64);
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uint32_t p640 = prng_successor(data->nonce, 64);
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s = lfsr_recovery32(data.ar ^ p640, 0);
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s = lfsr_recovery32(data->ar ^ p640, 0);
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for (t = s; t->odd | t->even; ++t) {
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for (t = s; t->odd | t->even; ++t) {
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lfsr_rollback_word(t, 0, 0);
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lfsr_rollback_word(t, 0, 0);
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lfsr_rollback_word(t, data.nr, 1);
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lfsr_rollback_word(t, data->nr, 1);
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lfsr_rollback_word(t, data.cuid ^ data.nonce, 0);
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lfsr_rollback_word(t, data->cuid ^ data->nonce, 0);
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crypto1_get_lfsr(t, &key);
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crypto1_get_lfsr(t, &key);
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crypto1_word(t, data.cuid ^ data.nonce, 0);
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crypto1_word(t, data->cuid ^ data->nonce, 0);
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crypto1_word(t, data.nr2, 1);
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crypto1_word(t, data->nr2, 1);
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if (data.ar2 == (crypto1_word(t, 0, 0) ^ p640)) {
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if (data->ar2 == (crypto1_word(t, 0, 0) ^ p640)) {
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outkey = key;
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outkey = key;
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counter++;
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counter++;
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if (counter == 20) break;
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if (counter == 20) break;
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@ -121,26 +121,26 @@ bool mfkey32(nonces_t data, uint64_t *outputkey) {
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// recover key from 2 reader responses on 2 different tag challenges
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// recover key from 2 reader responses on 2 different tag challenges
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// skip "several found keys". Only return true if ONE key is found
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// skip "several found keys". Only return true if ONE key is found
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bool mfkey32_moebius(nonces_t data, uint64_t *outputkey) {
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bool mfkey32_moebius(nonces_t *data, uint64_t *outputkey) {
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struct Crypto1State *s, *t;
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struct Crypto1State *s, *t;
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uint64_t outkey = 0;
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uint64_t outkey = 0;
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uint64_t key = 0; // recovered key
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uint64_t key = 0; // recovered key
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bool isSuccess = false;
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bool isSuccess = false;
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int counter = 0;
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int counter = 0;
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uint32_t p640 = prng_successor(data.nonce, 64);
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uint32_t p640 = prng_successor(data->nonce, 64);
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uint32_t p641 = prng_successor(data.nonce2, 64);
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uint32_t p641 = prng_successor(data->nonce2, 64);
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s = lfsr_recovery32(data.ar ^ p640, 0);
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s = lfsr_recovery32(data->ar ^ p640, 0);
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for (t = s; t->odd | t->even; ++t) {
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for (t = s; t->odd | t->even; ++t) {
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lfsr_rollback_word(t, 0, 0);
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lfsr_rollback_word(t, 0, 0);
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lfsr_rollback_word(t, data.nr, 1);
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lfsr_rollback_word(t, data->nr, 1);
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lfsr_rollback_word(t, data.cuid ^ data.nonce, 0);
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lfsr_rollback_word(t, data->cuid ^ data->nonce, 0);
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crypto1_get_lfsr(t, &key);
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crypto1_get_lfsr(t, &key);
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crypto1_word(t, data.cuid ^ data.nonce2, 0);
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crypto1_word(t, data->cuid ^ data->nonce2, 0);
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crypto1_word(t, data.nr2, 1);
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crypto1_word(t, data->nr2, 1);
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if (data.ar2 == (crypto1_word(t, 0, 0) ^ p641)) {
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if (data->ar2 == (crypto1_word(t, 0, 0) ^ p641)) {
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outkey = key;
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outkey = key;
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++counter;
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++counter;
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if (counter == 20) break;
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if (counter == 20) break;
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@ -153,20 +153,20 @@ bool mfkey32_moebius(nonces_t data, uint64_t *outputkey) {
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}
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}
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// recover key from reader response and tag response of one authentication sequence
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// recover key from reader response and tag response of one authentication sequence
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int mfkey64(nonces_t data, uint64_t *outputkey) {
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int mfkey64(nonces_t *data, uint64_t *outputkey) {
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uint64_t key = 0; // recovered key
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uint64_t key = 0; // recovered key
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uint32_t ks2; // keystream used to encrypt reader response
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uint32_t ks2; // keystream used to encrypt reader response
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uint32_t ks3; // keystream used to encrypt tag response
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uint32_t ks3; // keystream used to encrypt tag response
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struct Crypto1State *revstate;
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struct Crypto1State *revstate;
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// Extract the keystream from the messages
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// Extract the keystream from the messages
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ks2 = data.ar ^ prng_successor(data.nonce, 64);
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ks2 = data->ar ^ prng_successor(data->nonce, 64);
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ks3 = data.at ^ prng_successor(data.nonce, 96);
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ks3 = data->at ^ prng_successor(data->nonce, 96);
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revstate = lfsr_recovery64(ks2, ks3);
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revstate = lfsr_recovery64(ks2, ks3);
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lfsr_rollback_word(revstate, 0, 0);
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lfsr_rollback_word(revstate, 0, 0);
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lfsr_rollback_word(revstate, 0, 0);
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lfsr_rollback_word(revstate, 0, 0);
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lfsr_rollback_word(revstate, data.nr, 1);
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lfsr_rollback_word(revstate, data->nr, 1);
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lfsr_rollback_word(revstate, data.cuid ^ data.nonce, 0);
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lfsr_rollback_word(revstate, data->cuid ^ data->nonce, 0);
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crypto1_get_lfsr(revstate, &key);
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crypto1_get_lfsr(revstate, &key);
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crypto1_destroy(revstate);
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crypto1_destroy(revstate);
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*outputkey = key;
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*outputkey = key;
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@ -17,9 +17,9 @@
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#include "mifare.h"
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#include "mifare.h"
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uint32_t nonce2key(uint32_t uid, uint32_t nt, uint32_t nr, uint32_t ar, uint64_t par_info, uint64_t ks_info, uint64_t **keys);
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uint32_t nonce2key(uint32_t uid, uint32_t nt, uint32_t nr, uint32_t ar, uint64_t par_info, uint64_t ks_info, uint64_t **keys);
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bool mfkey32(nonces_t data, uint64_t *outputkey);
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bool mfkey32(nonces_t *data, uint64_t *outputkey);
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bool mfkey32_moebius(nonces_t data, uint64_t *outputkey);
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bool mfkey32_moebius(nonces_t *data, uint64_t *outputkey);
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int mfkey64(nonces_t data, uint64_t *outputkey);
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int mfkey64(nonces_t *data, uint64_t *outputkey);
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int compare_uint64(const void *a, const void *b);
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int compare_uint64(const void *a, const void *b);
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uint32_t intersection(uint64_t *listA, uint64_t *listB);
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uint32_t intersection(uint64_t *listA, uint64_t *listB);
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