hash.cpp 5.9 KB

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  1. #include <hash.hpp>
  2. #include <cstdint>
  3. #include <string>
  4. #include <cstring>
  5. constexpr std::uint32_t sha256_k[64] = {0x428a2f98, 0x71374491, 0xb5c0fbcf, 0xe9b5dba5,
  6. 0x3956c25b, 0x59f111f1, 0x923f82a4, 0xab1c5ed5,
  7. 0xd807aa98, 0x12835b01, 0x243185be, 0x550c7dc3,
  8. 0x72be5d74, 0x80deb1fe, 0x9bdc06a7, 0xc19bf174,
  9. 0xe49b69c1, 0xefbe4786, 0x0fc19dc6, 0x240ca1cc,
  10. 0x2de92c6f, 0x4a7484aa, 0x5cb0a9dc, 0x76f988da,
  11. 0x983e5152, 0xa831c66d, 0xb00327c8, 0xbf597fc7,
  12. 0xc6e00bf3, 0xd5a79147, 0x06ca6351, 0x14292967,
  13. 0x27b70a85, 0x2e1b2138, 0x4d2c6dfc, 0x53380d13,
  14. 0x650a7354, 0x766a0abb, 0x81c2c92e, 0x92722c85,
  15. 0xa2bfe8a1, 0xa81a664b, 0xc24b8b70, 0xc76c51a3,
  16. 0xd192e819, 0xd6990624, 0xf40e3585, 0x106aa070,
  17. 0x19a4c116, 0x1e376c08, 0x2748774c, 0x34b0bcb5,
  18. 0x391c0cb3, 0x4ed8aa4a, 0x5b9cca4f, 0x682e6ff3,
  19. 0x748f82ee, 0x78a5636f, 0x84c87814, 0x8cc70208,
  20. 0x90befffa, 0xa4506ceb, 0xbef9a3f7, 0xc67178f2};
  21. class SHA256{
  22. protected:
  23. typedef unsigned char uint8;
  24. typedef unsigned int uint32;
  25. typedef unsigned long long uint64;
  26. static const unsigned int SHA224_256_BLOCK_SIZE = (512/8);
  27. public:
  28. void init();
  29. void update(const unsigned char *message, unsigned int len);
  30. void final(unsigned char *digest);
  31. static const unsigned int DIGEST_SIZE = ( 256 / 8);
  32. protected:
  33. void transform(const unsigned char *message, unsigned int block_nb);
  34. unsigned int m_tot_len;
  35. unsigned int m_len;
  36. unsigned char m_block[2*SHA224_256_BLOCK_SIZE];
  37. uint32 m_h[8];
  38. };
  39. #define SHA2_SHFR(x, n) (x >> n)
  40. #define SHA2_ROTR(x, n) ((x >> n) | (x << ((sizeof(x) << 3) - n)))
  41. #define SHA2_ROTL(x, n) ((x << n) | (x >> ((sizeof(x) << 3) - n)))
  42. #define SHA2_CH(x, y, z) ((x & y) ^ (~x & z))
  43. #define SHA2_MAJ(x, y, z) ((x & y) ^ (x & z) ^ (y & z))
  44. #define SHA256_F1(x) (SHA2_ROTR(x, 2) ^ SHA2_ROTR(x, 13) ^ SHA2_ROTR(x, 22))
  45. #define SHA256_F2(x) (SHA2_ROTR(x, 6) ^ SHA2_ROTR(x, 11) ^ SHA2_ROTR(x, 25))
  46. #define SHA256_F3(x) (SHA2_ROTR(x, 7) ^ SHA2_ROTR(x, 18) ^ SHA2_SHFR(x, 3))
  47. #define SHA256_F4(x) (SHA2_ROTR(x, 17) ^ SHA2_ROTR(x, 19) ^ SHA2_SHFR(x, 10))
  48. #define SHA2_UNPACK32(x, str) \
  49. { \
  50. *((str) + 3) = (uint8) ((x) ); \
  51. *((str) + 2) = (uint8) ((x) >> 8); \
  52. *((str) + 1) = (uint8) ((x) >> 16); \
  53. *((str) + 0) = (uint8) ((x) >> 24); \
  54. }
  55. #define SHA2_PACK32(str, x) \
  56. { \
  57. *(x) = ((uint32) *((str) + 3) ) \
  58. | ((uint32) *((str) + 2) << 8) \
  59. | ((uint32) *((str) + 1) << 16) \
  60. | ((uint32) *((str) + 0) << 24); \
  61. }
  62. void sha256(std::uint64_t*, const std::string&);
  63. void SHA256::transform(const unsigned char *message, unsigned int block_nb){
  64. uint32 w[64];
  65. uint32 wv[8];
  66. uint32 t1, t2;
  67. const unsigned char *sub_block;
  68. int i;
  69. int j;
  70. for (i = 0; i < (int) block_nb; i++) {
  71. sub_block = message + (i << 6);
  72. for (j = 0; j < 16; j++) {
  73. SHA2_PACK32(&sub_block[j << 2], &w[j]);
  74. }
  75. for (j = 16; j < 64; j++) {
  76. w[j] = SHA256_F4(w[j - 2]) + w[j - 7] + SHA256_F3(w[j - 15]) + w[j - 16];
  77. }
  78. for (j = 0; j < 8; j++) {
  79. wv[j] = m_h[j];
  80. }
  81. for (j = 0; j < 64; j++) {
  82. t1 = wv[7] + SHA256_F2(wv[4]) + SHA2_CH(wv[4], wv[5], wv[6])
  83. + sha256_k[j] + w[j];
  84. t2 = SHA256_F1(wv[0]) + SHA2_MAJ(wv[0], wv[1], wv[2]);
  85. wv[7] = wv[6];
  86. wv[6] = wv[5];
  87. wv[5] = wv[4];
  88. wv[4] = wv[3] + t1;
  89. wv[3] = wv[2];
  90. wv[2] = wv[1];
  91. wv[1] = wv[0];
  92. wv[0] = t1 + t2;
  93. }
  94. for (j = 0; j < 8; j++) {
  95. m_h[j] += wv[j];
  96. }
  97. }
  98. }
  99. void SHA256::init(){
  100. m_h[0] = 0x6a09e667;
  101. m_h[1] = 0xbb67ae85;
  102. m_h[2] = 0x3c6ef372;
  103. m_h[3] = 0xa54ff53a;
  104. m_h[4] = 0x510e527f;
  105. m_h[5] = 0x9b05688c;
  106. m_h[6] = 0x1f83d9ab;
  107. m_h[7] = 0x5be0cd19;
  108. m_len = 0;
  109. m_tot_len = 0;
  110. }
  111. void SHA256::update(const unsigned char *message, unsigned int len){
  112. unsigned int block_nb;
  113. unsigned int new_len, rem_len, tmp_len;
  114. const unsigned char *shifted_message;
  115. tmp_len = SHA224_256_BLOCK_SIZE - m_len;
  116. rem_len = len < tmp_len ? len : tmp_len;
  117. memcpy(&m_block[m_len], message, rem_len);
  118. if (m_len + len < SHA224_256_BLOCK_SIZE) {
  119. m_len += len;
  120. return;
  121. }
  122. new_len = len - rem_len;
  123. block_nb = new_len / SHA224_256_BLOCK_SIZE;
  124. shifted_message = message + rem_len;
  125. transform(m_block, 1);
  126. transform(shifted_message, block_nb);
  127. rem_len = new_len % SHA224_256_BLOCK_SIZE;
  128. memcpy(m_block, &shifted_message[block_nb << 6], rem_len);
  129. m_len = rem_len;
  130. m_tot_len += (block_nb + 1) << 6;
  131. }
  132. void SHA256::final(unsigned char *digest){
  133. unsigned int block_nb;
  134. unsigned int pm_len;
  135. unsigned int len_b;
  136. int i;
  137. block_nb = (1 + ((SHA224_256_BLOCK_SIZE - 9)
  138. < (m_len % SHA224_256_BLOCK_SIZE)));
  139. len_b = (m_tot_len + m_len) << 3;
  140. pm_len = block_nb << 6;
  141. memset(m_block + m_len, 0, pm_len - m_len);
  142. m_block[m_len] = 0x80;
  143. SHA2_UNPACK32(len_b, m_block + pm_len - 4);
  144. transform(m_block, block_nb);
  145. for (i = 0 ; i < 8; i++) {
  146. SHA2_UNPACK32(m_h[i], &digest[i << 2]);
  147. }
  148. }
  149. void sha256(std::uint64_t* dest, const std::vector<char>& input){
  150. unsigned char digest[SHA256::DIGEST_SIZE];
  151. memset(digest, 0, SHA256::DIGEST_SIZE);
  152. SHA256 ctx = SHA256();
  153. ctx.init();
  154. ctx.update((const unsigned char*)input.data(), input.size());
  155. ctx.final(digest);
  156. unsigned char* cdest = (unsigned char*) dest;
  157. memcpy(dest, digest, SHA256::DIGEST_SIZE);
  158. }
  159. void hash(uint64_t* dest, const std::vector<char>& input){
  160. sha256(dest, input);
  161. }