_sha256.py 11 KB

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  1. SHA_BLOCKSIZE = 64
  2. SHA_DIGESTSIZE = 32
  3. def new_shaobject():
  4. return {
  5. 'digest': [0]*8,
  6. 'count_lo': 0,
  7. 'count_hi': 0,
  8. 'data': [0]* SHA_BLOCKSIZE,
  9. 'local': 0,
  10. 'digestsize': 0
  11. }
  12. ROR = lambda x, y: (((x & 0xffffffff) >> (y & 31)) | (x << (32 - (y & 31)))) & 0xffffffff
  13. Ch = lambda x, y, z: (z ^ (x & (y ^ z)))
  14. Maj = lambda x, y, z: (((x | y) & z) | (x & y))
  15. S = lambda x, n: ROR(x, n)
  16. R = lambda x, n: (x & 0xffffffff) >> n
  17. Sigma0 = lambda x: (S(x, 2) ^ S(x, 13) ^ S(x, 22))
  18. Sigma1 = lambda x: (S(x, 6) ^ S(x, 11) ^ S(x, 25))
  19. Gamma0 = lambda x: (S(x, 7) ^ S(x, 18) ^ R(x, 3))
  20. Gamma1 = lambda x: (S(x, 17) ^ S(x, 19) ^ R(x, 10))
  21. def sha_transform(sha_info):
  22. W = []
  23. d = sha_info['data']
  24. for i in range(0,16):
  25. W.append( (d[4*i]<<24) + (d[4*i+1]<<16) + (d[4*i+2]<<8) + d[4*i+3])
  26. for i in range(16,64):
  27. W.append( (Gamma1(W[i - 2]) + W[i - 7] + Gamma0(W[i - 15]) + W[i - 16]) & 0xffffffff )
  28. ss = sha_info['digest'][:]
  29. def RND(a,b,c,d,e,f,g,h,i,ki):
  30. t0 = h + Sigma1(e) + Ch(e, f, g) + ki + W[i];
  31. t1 = Sigma0(a) + Maj(a, b, c);
  32. d += t0;
  33. h = t0 + t1;
  34. return d & 0xffffffff, h & 0xffffffff
  35. ss[3], ss[7] = RND(ss[0],ss[1],ss[2],ss[3],ss[4],ss[5],ss[6],ss[7],0,0x428a2f98);
  36. ss[2], ss[6] = RND(ss[7],ss[0],ss[1],ss[2],ss[3],ss[4],ss[5],ss[6],1,0x71374491);
  37. ss[1], ss[5] = RND(ss[6],ss[7],ss[0],ss[1],ss[2],ss[3],ss[4],ss[5],2,0xb5c0fbcf);
  38. ss[0], ss[4] = RND(ss[5],ss[6],ss[7],ss[0],ss[1],ss[2],ss[3],ss[4],3,0xe9b5dba5);
  39. ss[7], ss[3] = RND(ss[4],ss[5],ss[6],ss[7],ss[0],ss[1],ss[2],ss[3],4,0x3956c25b);
  40. ss[6], ss[2] = RND(ss[3],ss[4],ss[5],ss[6],ss[7],ss[0],ss[1],ss[2],5,0x59f111f1);
  41. ss[5], ss[1] = RND(ss[2],ss[3],ss[4],ss[5],ss[6],ss[7],ss[0],ss[1],6,0x923f82a4);
  42. ss[4], ss[0] = RND(ss[1],ss[2],ss[3],ss[4],ss[5],ss[6],ss[7],ss[0],7,0xab1c5ed5);
  43. ss[3], ss[7] = RND(ss[0],ss[1],ss[2],ss[3],ss[4],ss[5],ss[6],ss[7],8,0xd807aa98);
  44. ss[2], ss[6] = RND(ss[7],ss[0],ss[1],ss[2],ss[3],ss[4],ss[5],ss[6],9,0x12835b01);
  45. ss[1], ss[5] = RND(ss[6],ss[7],ss[0],ss[1],ss[2],ss[3],ss[4],ss[5],10,0x243185be);
  46. ss[0], ss[4] = RND(ss[5],ss[6],ss[7],ss[0],ss[1],ss[2],ss[3],ss[4],11,0x550c7dc3);
  47. ss[7], ss[3] = RND(ss[4],ss[5],ss[6],ss[7],ss[0],ss[1],ss[2],ss[3],12,0x72be5d74);
  48. ss[6], ss[2] = RND(ss[3],ss[4],ss[5],ss[6],ss[7],ss[0],ss[1],ss[2],13,0x80deb1fe);
  49. ss[5], ss[1] = RND(ss[2],ss[3],ss[4],ss[5],ss[6],ss[7],ss[0],ss[1],14,0x9bdc06a7);
  50. ss[4], ss[0] = RND(ss[1],ss[2],ss[3],ss[4],ss[5],ss[6],ss[7],ss[0],15,0xc19bf174);
  51. ss[3], ss[7] = RND(ss[0],ss[1],ss[2],ss[3],ss[4],ss[5],ss[6],ss[7],16,0xe49b69c1);
  52. ss[2], ss[6] = RND(ss[7],ss[0],ss[1],ss[2],ss[3],ss[4],ss[5],ss[6],17,0xefbe4786);
  53. ss[1], ss[5] = RND(ss[6],ss[7],ss[0],ss[1],ss[2],ss[3],ss[4],ss[5],18,0x0fc19dc6);
  54. ss[0], ss[4] = RND(ss[5],ss[6],ss[7],ss[0],ss[1],ss[2],ss[3],ss[4],19,0x240ca1cc);
  55. ss[7], ss[3] = RND(ss[4],ss[5],ss[6],ss[7],ss[0],ss[1],ss[2],ss[3],20,0x2de92c6f);
  56. ss[6], ss[2] = RND(ss[3],ss[4],ss[5],ss[6],ss[7],ss[0],ss[1],ss[2],21,0x4a7484aa);
  57. ss[5], ss[1] = RND(ss[2],ss[3],ss[4],ss[5],ss[6],ss[7],ss[0],ss[1],22,0x5cb0a9dc);
  58. ss[4], ss[0] = RND(ss[1],ss[2],ss[3],ss[4],ss[5],ss[6],ss[7],ss[0],23,0x76f988da);
  59. ss[3], ss[7] = RND(ss[0],ss[1],ss[2],ss[3],ss[4],ss[5],ss[6],ss[7],24,0x983e5152);
  60. ss[2], ss[6] = RND(ss[7],ss[0],ss[1],ss[2],ss[3],ss[4],ss[5],ss[6],25,0xa831c66d);
  61. ss[1], ss[5] = RND(ss[6],ss[7],ss[0],ss[1],ss[2],ss[3],ss[4],ss[5],26,0xb00327c8);
  62. ss[0], ss[4] = RND(ss[5],ss[6],ss[7],ss[0],ss[1],ss[2],ss[3],ss[4],27,0xbf597fc7);
  63. ss[7], ss[3] = RND(ss[4],ss[5],ss[6],ss[7],ss[0],ss[1],ss[2],ss[3],28,0xc6e00bf3);
  64. ss[6], ss[2] = RND(ss[3],ss[4],ss[5],ss[6],ss[7],ss[0],ss[1],ss[2],29,0xd5a79147);
  65. ss[5], ss[1] = RND(ss[2],ss[3],ss[4],ss[5],ss[6],ss[7],ss[0],ss[1],30,0x06ca6351);
  66. ss[4], ss[0] = RND(ss[1],ss[2],ss[3],ss[4],ss[5],ss[6],ss[7],ss[0],31,0x14292967);
  67. ss[3], ss[7] = RND(ss[0],ss[1],ss[2],ss[3],ss[4],ss[5],ss[6],ss[7],32,0x27b70a85);
  68. ss[2], ss[6] = RND(ss[7],ss[0],ss[1],ss[2],ss[3],ss[4],ss[5],ss[6],33,0x2e1b2138);
  69. ss[1], ss[5] = RND(ss[6],ss[7],ss[0],ss[1],ss[2],ss[3],ss[4],ss[5],34,0x4d2c6dfc);
  70. ss[0], ss[4] = RND(ss[5],ss[6],ss[7],ss[0],ss[1],ss[2],ss[3],ss[4],35,0x53380d13);
  71. ss[7], ss[3] = RND(ss[4],ss[5],ss[6],ss[7],ss[0],ss[1],ss[2],ss[3],36,0x650a7354);
  72. ss[6], ss[2] = RND(ss[3],ss[4],ss[5],ss[6],ss[7],ss[0],ss[1],ss[2],37,0x766a0abb);
  73. ss[5], ss[1] = RND(ss[2],ss[3],ss[4],ss[5],ss[6],ss[7],ss[0],ss[1],38,0x81c2c92e);
  74. ss[4], ss[0] = RND(ss[1],ss[2],ss[3],ss[4],ss[5],ss[6],ss[7],ss[0],39,0x92722c85);
  75. ss[3], ss[7] = RND(ss[0],ss[1],ss[2],ss[3],ss[4],ss[5],ss[6],ss[7],40,0xa2bfe8a1);
  76. ss[2], ss[6] = RND(ss[7],ss[0],ss[1],ss[2],ss[3],ss[4],ss[5],ss[6],41,0xa81a664b);
  77. ss[1], ss[5] = RND(ss[6],ss[7],ss[0],ss[1],ss[2],ss[3],ss[4],ss[5],42,0xc24b8b70);
  78. ss[0], ss[4] = RND(ss[5],ss[6],ss[7],ss[0],ss[1],ss[2],ss[3],ss[4],43,0xc76c51a3);
  79. ss[7], ss[3] = RND(ss[4],ss[5],ss[6],ss[7],ss[0],ss[1],ss[2],ss[3],44,0xd192e819);
  80. ss[6], ss[2] = RND(ss[3],ss[4],ss[5],ss[6],ss[7],ss[0],ss[1],ss[2],45,0xd6990624);
  81. ss[5], ss[1] = RND(ss[2],ss[3],ss[4],ss[5],ss[6],ss[7],ss[0],ss[1],46,0xf40e3585);
  82. ss[4], ss[0] = RND(ss[1],ss[2],ss[3],ss[4],ss[5],ss[6],ss[7],ss[0],47,0x106aa070);
  83. ss[3], ss[7] = RND(ss[0],ss[1],ss[2],ss[3],ss[4],ss[5],ss[6],ss[7],48,0x19a4c116);
  84. ss[2], ss[6] = RND(ss[7],ss[0],ss[1],ss[2],ss[3],ss[4],ss[5],ss[6],49,0x1e376c08);
  85. ss[1], ss[5] = RND(ss[6],ss[7],ss[0],ss[1],ss[2],ss[3],ss[4],ss[5],50,0x2748774c);
  86. ss[0], ss[4] = RND(ss[5],ss[6],ss[7],ss[0],ss[1],ss[2],ss[3],ss[4],51,0x34b0bcb5);
  87. ss[7], ss[3] = RND(ss[4],ss[5],ss[6],ss[7],ss[0],ss[1],ss[2],ss[3],52,0x391c0cb3);
  88. ss[6], ss[2] = RND(ss[3],ss[4],ss[5],ss[6],ss[7],ss[0],ss[1],ss[2],53,0x4ed8aa4a);
  89. ss[5], ss[1] = RND(ss[2],ss[3],ss[4],ss[5],ss[6],ss[7],ss[0],ss[1],54,0x5b9cca4f);
  90. ss[4], ss[0] = RND(ss[1],ss[2],ss[3],ss[4],ss[5],ss[6],ss[7],ss[0],55,0x682e6ff3);
  91. ss[3], ss[7] = RND(ss[0],ss[1],ss[2],ss[3],ss[4],ss[5],ss[6],ss[7],56,0x748f82ee);
  92. ss[2], ss[6] = RND(ss[7],ss[0],ss[1],ss[2],ss[3],ss[4],ss[5],ss[6],57,0x78a5636f);
  93. ss[1], ss[5] = RND(ss[6],ss[7],ss[0],ss[1],ss[2],ss[3],ss[4],ss[5],58,0x84c87814);
  94. ss[0], ss[4] = RND(ss[5],ss[6],ss[7],ss[0],ss[1],ss[2],ss[3],ss[4],59,0x8cc70208);
  95. ss[7], ss[3] = RND(ss[4],ss[5],ss[6],ss[7],ss[0],ss[1],ss[2],ss[3],60,0x90befffa);
  96. ss[6], ss[2] = RND(ss[3],ss[4],ss[5],ss[6],ss[7],ss[0],ss[1],ss[2],61,0xa4506ceb);
  97. ss[5], ss[1] = RND(ss[2],ss[3],ss[4],ss[5],ss[6],ss[7],ss[0],ss[1],62,0xbef9a3f7);
  98. ss[4], ss[0] = RND(ss[1],ss[2],ss[3],ss[4],ss[5],ss[6],ss[7],ss[0],63,0xc67178f2);
  99. dig = []
  100. for i, x in enumerate(sha_info['digest']):
  101. dig.append( (x + ss[i]) & 0xffffffff )
  102. sha_info['digest'] = dig
  103. def sha_init():
  104. sha_info = new_shaobject()
  105. sha_info['digest'] = [0x6A09E667, 0xBB67AE85, 0x3C6EF372, 0xA54FF53A, 0x510E527F, 0x9B05688C, 0x1F83D9AB, 0x5BE0CD19]
  106. sha_info['count_lo'] = 0
  107. sha_info['count_hi'] = 0
  108. sha_info['local'] = 0
  109. sha_info['digestsize'] = 32
  110. return sha_info
  111. def sha224_init():
  112. sha_info = new_shaobject()
  113. sha_info['digest'] = [0xc1059ed8, 0x367cd507, 0x3070dd17, 0xf70e5939, 0xffc00b31, 0x68581511, 0x64f98fa7, 0xbefa4fa4]
  114. sha_info['count_lo'] = 0
  115. sha_info['count_hi'] = 0
  116. sha_info['local'] = 0
  117. sha_info['digestsize'] = 28
  118. return sha_info
  119. def sha_update(sha_info, buffer):
  120. if isinstance(buffer, str):
  121. raise TypeError("Unicode strings must be encoded before hashing")
  122. count = len(buffer)
  123. buffer_idx = 0
  124. clo = (sha_info['count_lo'] + (count << 3)) & 0xffffffff
  125. if clo < sha_info['count_lo']:
  126. sha_info['count_hi'] += 1
  127. sha_info['count_lo'] = clo
  128. sha_info['count_hi'] += (count >> 29)
  129. if sha_info['local']:
  130. i = SHA_BLOCKSIZE - sha_info['local']
  131. if i > count:
  132. i = count
  133. # copy buffer
  134. sha_info['data'][sha_info['local']:sha_info['local']+i] = buffer[buffer_idx:buffer_idx+i]
  135. count -= i
  136. buffer_idx += i
  137. sha_info['local'] += i
  138. if sha_info['local'] == SHA_BLOCKSIZE:
  139. sha_transform(sha_info)
  140. sha_info['local'] = 0
  141. else:
  142. return
  143. while count >= SHA_BLOCKSIZE:
  144. # copy buffer
  145. sha_info['data'] = list(buffer[buffer_idx:buffer_idx + SHA_BLOCKSIZE])
  146. count -= SHA_BLOCKSIZE
  147. buffer_idx += SHA_BLOCKSIZE
  148. sha_transform(sha_info)
  149. # copy buffer
  150. pos = sha_info['local']
  151. sha_info['data'][pos:pos+count] = buffer[buffer_idx:buffer_idx + count]
  152. sha_info['local'] = count
  153. def sha_final(sha_info):
  154. lo_bit_count = sha_info['count_lo']
  155. hi_bit_count = sha_info['count_hi']
  156. count = (lo_bit_count >> 3) & 0x3f
  157. sha_info['data'][count] = 0x80;
  158. count += 1
  159. if count > SHA_BLOCKSIZE - 8:
  160. # zero the bytes in data after the count
  161. sha_info['data'] = sha_info['data'][:count] + ([0] * (SHA_BLOCKSIZE - count))
  162. sha_transform(sha_info)
  163. # zero bytes in data
  164. sha_info['data'] = [0] * SHA_BLOCKSIZE
  165. else:
  166. sha_info['data'] = sha_info['data'][:count] + ([0] * (SHA_BLOCKSIZE - count))
  167. sha_info['data'][56] = (hi_bit_count >> 24) & 0xff
  168. sha_info['data'][57] = (hi_bit_count >> 16) & 0xff
  169. sha_info['data'][58] = (hi_bit_count >> 8) & 0xff
  170. sha_info['data'][59] = (hi_bit_count >> 0) & 0xff
  171. sha_info['data'][60] = (lo_bit_count >> 24) & 0xff
  172. sha_info['data'][61] = (lo_bit_count >> 16) & 0xff
  173. sha_info['data'][62] = (lo_bit_count >> 8) & 0xff
  174. sha_info['data'][63] = (lo_bit_count >> 0) & 0xff
  175. sha_transform(sha_info)
  176. dig = []
  177. for i in sha_info['digest']:
  178. dig.extend([ ((i>>24) & 0xff), ((i>>16) & 0xff), ((i>>8) & 0xff), (i & 0xff) ])
  179. return bytes(dig)
  180. class sha256(object):
  181. digest_size = digestsize = SHA_DIGESTSIZE
  182. block_size = SHA_BLOCKSIZE
  183. def __init__(self, s=None):
  184. self.name = 'sha256'
  185. self._sha = sha_init()
  186. if s:
  187. sha_update(self._sha, s)
  188. def update(self, s):
  189. sha_update(self._sha, s)
  190. def digest(self):
  191. return sha_final(self._sha.copy())[:self._sha['digestsize']]
  192. def hexdigest(self):
  193. return ''.join(['%.2x' % i for i in self.digest()])
  194. def copy(self):
  195. new = sha256.__new__(sha256)
  196. new._sha = self._sha.copy()
  197. return new
  198. class sha224(sha256):
  199. digest_size = digestsize = 28
  200. def __init__(self, s=None):
  201. self.name = 'sha224'
  202. self._sha = sha224_init()
  203. if s:
  204. sha_update(self._sha, s)
  205. def copy(self):
  206. new = sha224.__new__(sha224)
  207. new._sha = self._sha.copy()
  208. return new
  209. def test():
  210. a_str = b"just a test string"
  211. assert 'e3b0c44298fc1c149afbf4c8996fb92427ae41e4649b934ca495991b7852b855' == sha256().hexdigest()
  212. assert 'd7b553c6f09ac85d142415f857c5310f3bbbe7cdd787cce4b985acedd585266f' == sha256(a_str).hexdigest()
  213. assert '8113ebf33c97daa9998762aacafe750c7cefc2b2f173c90c59663a57fe626f21' == sha256(a_str*7).hexdigest()
  214. s = sha256(a_str)
  215. s.update(a_str)
  216. assert '03d9963e05a094593190b6fc794cb1a3e1ac7d7883f0b5855268afeccc70d461' == s.hexdigest()
  217. if __name__ == "__main__":
  218. test()