hamming distance
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@ -89,3 +89,11 @@ responsible for freeing the returned array
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```c
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const unsigned char *repeating_key_xor_s(const char* s, const char* key);
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```
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### hamming_distance
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Calculates the Hamming Distance (the number of differing bits) between two strings
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```c
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unsigned int hamming_distance(const char *a, const char *b);
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```
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@ -13,4 +13,6 @@ const char *hex_to_str(const unsigned char *hex, size_t sz);
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const unsigned char* repeating_key_xor(const unsigned char* s, size_t s_sz, const unsigned char* key, size_t k_sz);
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const unsigned char *repeating_key_xor_s(const char* s, const char* key);
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unsigned int hamming_distance(const char *a, const char *b);
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#endif // LIBFLINT_CRYPTO_H
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22
src/crypto.c
22
src/crypto.c
@ -271,3 +271,25 @@ const unsigned char* repeating_key_xor(const unsigned char* s, size_t s_sz, cons
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const unsigned char *repeating_key_xor_s(const char* s, const char* key) {
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return repeating_key_xor((unsigned char*)s, strlen(s), (unsigned char*)key, strlen(key));
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}
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unsigned int hamming_distance(const char *a, const char *b) {
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size_t sz = strlen(a);
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if (sz != strlen(b)) {
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return -1;
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}
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unsigned int hamming = 0;
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for (size_t i = 0; i < sz; ++i) {
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if (a[i] == b[i]) {
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continue;
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}
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unsigned char c = a[i] ^ b[i];
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unsigned int count = 0;
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for (; c; count++) {
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c &= c - 1;
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}
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hamming += count;
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}
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return hamming;
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}
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@ -374,6 +374,9 @@ void test_crypto() {
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free(enc);
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free(s);
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unsigned int hamming = hamming_distance("this is a test", "wokka wokka!!!");
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assert(hamming == 37);
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printf("Passes all crypto tests\n");
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}
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