Revamped the stepping algorithm.
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@ -24,6 +24,9 @@
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# define UNUSED
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#endif
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/* Utilities */
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#define LOGICAL_XOR(X,Y) ((Y) ? (!(X)) : (X))
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/* Version info */
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const uint16_t SLUNKCRYPT_VERSION_MAJOR = MY_VERSION_MAJOR;
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const uint16_t SLUNKCRYPT_VERSION_MINOR = MY_VERSION_MINOR;
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@ -54,8 +57,8 @@ typedef struct
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{
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uint8_t wheel_fwd[256U][256U];
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uint8_t wheel_bwd[256U][256U];
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uint8_t step_fwd[247U];
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uint8_t step_bwd[247U];
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uint8_t step_fwd[241U];
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uint8_t step_bwd[241U];
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uint8_t rotation_fwd[256U];
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uint8_t rotation_bwd[256U];
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uint8_t counter;
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@ -249,7 +252,7 @@ static int initialize_state(crypt_state_t* const crypt_state, const uint64_t non
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/* set up stepping */
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random_seed(&rand_state, nonce, 256U, passwd, passwd_len);
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for (i = 0U; i < 247U; ++i)
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for (i = 0U; i < 241U; ++i)
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{
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const size_t j = random_next(&rand_state) % (i + 1U);
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if (j != i)
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@ -269,23 +272,24 @@ static int initialize_state(crypt_state_t* const crypt_state, const uint64_t non
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// Encrypt / Decrypt
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// ==========================================================================
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static FORCE_INLINE void odometer_step(uint8_t *const arr, const int bwd)
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static FORCE_INLINE void increment(uint8_t *const arr, const size_t offset, const size_t limit, const int bwd)
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{
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size_t i;
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for (i = 0U; i < 6U; ++i)
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for (i = offset; i < limit; ++i)
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{
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if (++arr[bwd ? (255U - i) : i] != 0U)
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{
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break;
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break; /*no carry*/
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}
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}
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for (i = 0U; i < 3U; ++i)
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}
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static FORCE_INLINE void odometer_step(uint8_t *const arr, const int bwd)
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{
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if (++arr[bwd ? i : (255U - i)] != 0U)
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{
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break;
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}
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}
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increment(arr, 0U, 6U, LOGICAL_XOR(bwd, 0));
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increment(arr, 0U, 3U, LOGICAL_XOR(bwd, 1));
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increment(arr, 3U, 6U, LOGICAL_XOR(bwd, 1));
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increment(arr, 6U, 9U, LOGICAL_XOR(bwd, 1));
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}
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static FORCE_INLINE uint8_t process_encrypt(crypt_state_t* const crypt_state, uint8_t value)
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@ -297,7 +301,7 @@ static FORCE_INLINE uint8_t process_encrypt(crypt_state_t* const crypt_state, ui
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}
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++crypt_state->rotation_fwd[crypt_state->step_fwd[crypt_state->counter]];
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odometer_step(crypt_state->rotation_fwd, 0);
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crypt_state->counter = (crypt_state->counter + 1U) % 247U;
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crypt_state->counter = (crypt_state->counter + 1U) % 241U;
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return value;
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}
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@ -310,7 +314,7 @@ static FORCE_INLINE uint8_t process_decrypt(crypt_state_t* const crypt_state, ui
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}
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++crypt_state->rotation_bwd[crypt_state->step_bwd[crypt_state->counter]];
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odometer_step(crypt_state->rotation_bwd, 1);
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crypt_state->counter = (crypt_state->counter + 1U) % 247U;
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crypt_state->counter = (crypt_state->counter + 1U) % 241U;
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return value;
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}
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