md5.nim 11 KB

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  1. #
  2. #
  3. # Nim's Runtime Library
  4. # (c) Copyright 2010 Andreas Rumpf
  5. #
  6. # See the file "copying.txt", included in this
  7. # distribution, for details about the copyright.
  8. #
  9. ## Module for computing [MD5 checksums](https://en.wikipedia.org/wiki/MD5).
  10. ##
  11. ## This module also works at compile time and in JavaScript.
  12. ##
  13. ## See also
  14. ## ========
  15. ## * `base64 module<base64.html>`_ for a Base64 encoder and decoder
  16. ## * `std/sha1 module <sha1.html>`_ for the SHA-1 checksum algorithm
  17. ## * `hashes module<hashes.html>`_ for efficient computations of hash values
  18. ## for diverse Nim types
  19. when defined(nimHasStyleChecks):
  20. {.push styleChecks: off.}
  21. type
  22. MD5State = array[0..3, uint32]
  23. MD5Block = array[0..15, uint32]
  24. MD5CBits = array[0..7, uint8]
  25. MD5Digest* = array[0..15, uint8]
  26. ## MD5 checksum of a string, obtained with the `toMD5 proc <#toMD5,string>`_.
  27. MD5Buffer = array[0..63, uint8]
  28. MD5Context* {.final.} = object
  29. state: MD5State
  30. count: array[0..1, uint32]
  31. buffer: MD5Buffer
  32. const
  33. padding: array[0..63, uint8] = [
  34. 0x80'u8, 0, 0, 0, 0, 0, 0, 0,
  35. 0, 0, 0, 0, 0, 0, 0, 0,
  36. 0, 0, 0, 0, 0, 0, 0, 0,
  37. 0, 0, 0, 0, 0, 0, 0, 0,
  38. 0, 0, 0, 0, 0, 0, 0, 0,
  39. 0, 0, 0, 0, 0, 0, 0, 0,
  40. 0, 0, 0, 0, 0, 0, 0, 0,
  41. 0, 0, 0, 0, 0, 0, 0, 0
  42. ]
  43. proc F(x, y, z: uint32): uint32 {.inline.} =
  44. result = (x and y) or ((not x) and z)
  45. proc G(x, y, z: uint32): uint32 {.inline.} =
  46. result = (x and z) or (y and (not z))
  47. proc H(x, y, z: uint32): uint32 {.inline.} =
  48. result = x xor y xor z
  49. proc I(x, y, z: uint32): uint32 {.inline.} =
  50. result = y xor (x or (not z))
  51. proc rot(x: var uint32, n: uint8) {.inline.} =
  52. x = (x shl n) or (x shr (32'u32 - n))
  53. proc FF(a: var uint32, b, c, d, x: uint32, s: uint8, ac: uint32) =
  54. a = a + F(b, c, d) + x + ac
  55. rot(a, s)
  56. a = a + b
  57. proc GG(a: var uint32, b, c, d, x: uint32, s: uint8, ac: uint32) =
  58. a = a + G(b, c, d) + x + ac
  59. rot(a, s)
  60. a = a + b
  61. proc HH(a: var uint32, b, c, d, x: uint32, s: uint8, ac: uint32) =
  62. a = a + H(b, c, d) + x + ac
  63. rot(a, s)
  64. a = a + b
  65. proc II(a: var uint32, b, c, d, x: uint32, s: uint8, ac: uint32) =
  66. a = a + I(b, c, d) + x + ac
  67. rot(a, s)
  68. a = a + b
  69. proc encode(dest: var MD5Block, src: openArray[uint8]) =
  70. var j = 0
  71. for i in 0..high(dest):
  72. dest[i] = uint32(ord(src[j])) or
  73. uint32(ord(src[j+1])) shl 8 or
  74. uint32(ord(src[j+2])) shl 16 or
  75. uint32(ord(src[j+3])) shl 24
  76. inc(j, 4)
  77. proc decode(dest: var openArray[uint8], src: openArray[uint32]) =
  78. var i = 0
  79. for j in 0..high(src):
  80. dest[i] = uint8(src[j] and 0xff'u32)
  81. dest[i+1] = uint8(src[j] shr 8 and 0xff'u32)
  82. dest[i+2] = uint8(src[j] shr 16 and 0xff'u32)
  83. dest[i+3] = uint8(src[j] shr 24 and 0xff'u32)
  84. inc(i, 4)
  85. template slice(s: string, a, b): openArray[uint8] =
  86. when nimvm:
  87. # toOpenArray is not implemented in VM
  88. var s2 = newSeq[uint8](s.len)
  89. for i in 0 ..< s2.len:
  90. s2[i] = uint8(s[i])
  91. s2
  92. else:
  93. s.toOpenArrayByte(a, b)
  94. template slice(s: cstring, a, b): openArray[uint8] =
  95. when nimvm:
  96. # toOpenArray is not implemented in VM
  97. slice($s, a, b)
  98. else:
  99. when defined(js):
  100. # toOpenArrayByte for cstring is not implemented in JS
  101. slice($s, a, b)
  102. else:
  103. s.toOpenArrayByte(a, b)
  104. template slice(s: openArray[uint8], a, b): openArray[uint8] =
  105. when nimvm:
  106. s[a .. b]
  107. else:
  108. s.toOpenArray(a, b)
  109. const useMem = declared(copyMem)
  110. template memOrNot(withMem, withoutMem): untyped =
  111. when nimvm:
  112. withoutMem
  113. else:
  114. when useMem:
  115. withMem
  116. else:
  117. withoutMem
  118. proc transform(buffer: openArray[uint8], state: var MD5State) =
  119. var
  120. myBlock: MD5Block
  121. encode(myBlock, buffer)
  122. var a = state[0]
  123. var b = state[1]
  124. var c = state[2]
  125. var d = state[3]
  126. FF(a, b, c, d, myBlock[0], 7'u8, 0xD76AA478'u32)
  127. FF(d, a, b, c, myBlock[1], 12'u8, 0xE8C7B756'u32)
  128. FF(c, d, a, b, myBlock[2], 17'u8, 0x242070DB'u32)
  129. FF(b, c, d, a, myBlock[3], 22'u8, 0xC1BDCEEE'u32)
  130. FF(a, b, c, d, myBlock[4], 7'u8, 0xF57C0FAF'u32)
  131. FF(d, a, b, c, myBlock[5], 12'u8, 0x4787C62A'u32)
  132. FF(c, d, a, b, myBlock[6], 17'u8, 0xA8304613'u32)
  133. FF(b, c, d, a, myBlock[7], 22'u8, 0xFD469501'u32)
  134. FF(a, b, c, d, myBlock[8], 7'u8, 0x698098D8'u32)
  135. FF(d, a, b, c, myBlock[9], 12'u8, 0x8B44F7AF'u32)
  136. FF(c, d, a, b, myBlock[10], 17'u8, 0xFFFF5BB1'u32)
  137. FF(b, c, d, a, myBlock[11], 22'u8, 0x895CD7BE'u32)
  138. FF(a, b, c, d, myBlock[12], 7'u8, 0x6B901122'u32)
  139. FF(d, a, b, c, myBlock[13], 12'u8, 0xFD987193'u32)
  140. FF(c, d, a, b, myBlock[14], 17'u8, 0xA679438E'u32)
  141. FF(b, c, d, a, myBlock[15], 22'u8, 0x49B40821'u32)
  142. GG(a, b, c, d, myBlock[1], 5'u8, 0xF61E2562'u32)
  143. GG(d, a, b, c, myBlock[6], 9'u8, 0xC040B340'u32)
  144. GG(c, d, a, b, myBlock[11], 14'u8, 0x265E5A51'u32)
  145. GG(b, c, d, a, myBlock[0], 20'u8, 0xE9B6C7AA'u32)
  146. GG(a, b, c, d, myBlock[5], 5'u8, 0xD62F105D'u32)
  147. GG(d, a, b, c, myBlock[10], 9'u8, 0x02441453'u32)
  148. GG(c, d, a, b, myBlock[15], 14'u8, 0xD8A1E681'u32)
  149. GG(b, c, d, a, myBlock[4], 20'u8, 0xE7D3FBC8'u32)
  150. GG(a, b, c, d, myBlock[9], 5'u8, 0x21E1CDE6'u32)
  151. GG(d, a, b, c, myBlock[14], 9'u8, 0xC33707D6'u32)
  152. GG(c, d, a, b, myBlock[3], 14'u8, 0xF4D50D87'u32)
  153. GG(b, c, d, a, myBlock[8], 20'u8, 0x455A14ED'u32)
  154. GG(a, b, c, d, myBlock[13], 5'u8, 0xA9E3E905'u32)
  155. GG(d, a, b, c, myBlock[2], 9'u8, 0xFCEFA3F8'u32)
  156. GG(c, d, a, b, myBlock[7], 14'u8, 0x676F02D9'u32)
  157. GG(b, c, d, a, myBlock[12], 20'u8, 0x8D2A4C8A'u32)
  158. HH(a, b, c, d, myBlock[5], 4'u8, 0xFFFA3942'u32)
  159. HH(d, a, b, c, myBlock[8], 11'u8, 0x8771F681'u32)
  160. HH(c, d, a, b, myBlock[11], 16'u8, 0x6D9D6122'u32)
  161. HH(b, c, d, a, myBlock[14], 23'u8, 0xFDE5380C'u32)
  162. HH(a, b, c, d, myBlock[1], 4'u8, 0xA4BEEA44'u32)
  163. HH(d, a, b, c, myBlock[4], 11'u8, 0x4BDECFA9'u32)
  164. HH(c, d, a, b, myBlock[7], 16'u8, 0xF6BB4B60'u32)
  165. HH(b, c, d, a, myBlock[10], 23'u8, 0xBEBFBC70'u32)
  166. HH(a, b, c, d, myBlock[13], 4'u8, 0x289B7EC6'u32)
  167. HH(d, a, b, c, myBlock[0], 11'u8, 0xEAA127FA'u32)
  168. HH(c, d, a, b, myBlock[3], 16'u8, 0xD4EF3085'u32)
  169. HH(b, c, d, a, myBlock[6], 23'u8, 0x04881D05'u32)
  170. HH(a, b, c, d, myBlock[9], 4'u8, 0xD9D4D039'u32)
  171. HH(d, a, b, c, myBlock[12], 11'u8, 0xE6DB99E5'u32)
  172. HH(c, d, a, b, myBlock[15], 16'u8, 0x1FA27CF8'u32)
  173. HH(b, c, d, a, myBlock[2], 23'u8, 0xC4AC5665'u32)
  174. II(a, b, c, d, myBlock[0], 6'u8, 0xF4292244'u32)
  175. II(d, a, b, c, myBlock[7], 10'u8, 0x432AFF97'u32)
  176. II(c, d, a, b, myBlock[14], 15'u8, 0xAB9423A7'u32)
  177. II(b, c, d, a, myBlock[5], 21'u8, 0xFC93A039'u32)
  178. II(a, b, c, d, myBlock[12], 6'u8, 0x655B59C3'u32)
  179. II(d, a, b, c, myBlock[3], 10'u8, 0x8F0CCC92'u32)
  180. II(c, d, a, b, myBlock[10], 15'u8, 0xFFEFF47D'u32)
  181. II(b, c, d, a, myBlock[1], 21'u8, 0x85845DD1'u32)
  182. II(a, b, c, d, myBlock[8], 6'u8, 0x6FA87E4F'u32)
  183. II(d, a, b, c, myBlock[15], 10'u8, 0xFE2CE6E0'u32)
  184. II(c, d, a, b, myBlock[6], 15'u8, 0xA3014314'u32)
  185. II(b, c, d, a, myBlock[13], 21'u8, 0x4E0811A1'u32)
  186. II(a, b, c, d, myBlock[4], 6'u8, 0xF7537E82'u32)
  187. II(d, a, b, c, myBlock[11], 10'u8, 0xBD3AF235'u32)
  188. II(c, d, a, b, myBlock[2], 15'u8, 0x2AD7D2BB'u32)
  189. II(b, c, d, a, myBlock[9], 21'u8, 0xEB86D391'u32)
  190. state[0] = state[0] + a
  191. state[1] = state[1] + b
  192. state[2] = state[2] + c
  193. state[3] = state[3] + d
  194. proc md5Init*(c: var MD5Context) {.raises: [], tags: [], gcsafe.}
  195. proc md5Update*(c: var MD5Context, input: openArray[uint8]) {.raises: [],
  196. tags: [], gcsafe.}
  197. proc md5Final*(c: var MD5Context, digest: var MD5Digest) {.raises: [], tags: [], gcsafe.}
  198. proc md5Update*(c: var MD5Context, input: cstring, len: int) {.raises: [],
  199. tags: [], gcsafe.} =
  200. ## Updates the `MD5Context` with the `input` data of length `len`.
  201. ##
  202. ## If you use the `toMD5 proc <#toMD5,string>`_, there's no need to call this
  203. ## function explicitly.
  204. md5Update(c, input.slice(0, len - 1))
  205. proc toMD5*(s: string): MD5Digest =
  206. ## Computes the `MD5Digest` value for a string `s`.
  207. ##
  208. ## **See also:**
  209. ## * `getMD5 proc <#getMD5,string>`_ which returns a string representation
  210. ## of the `MD5Digest`
  211. ## * `$ proc <#$,MD5Digest>`_ for converting MD5Digest to string
  212. runnableExamples:
  213. assert $toMD5("abc") == "900150983cd24fb0d6963f7d28e17f72"
  214. var c: MD5Context
  215. md5Init(c)
  216. md5Update(c, s.slice(0, s.len - 1))
  217. md5Final(c, result)
  218. proc `$`*(d: MD5Digest): string =
  219. ## Converts a `MD5Digest` value into its string representation.
  220. const digits = "0123456789abcdef"
  221. result = ""
  222. for i in 0..15:
  223. add(result, digits[(d[i].int shr 4) and 0xF])
  224. add(result, digits[d[i].int and 0xF])
  225. proc getMD5*(s: string): string =
  226. ## Computes an MD5 value of `s` and returns its string representation.
  227. ##
  228. ## **See also:**
  229. ## * `toMD5 proc <#toMD5,string>`_ which returns the `MD5Digest` of a string
  230. runnableExamples:
  231. assert getMD5("abc") == "900150983cd24fb0d6963f7d28e17f72"
  232. var
  233. c: MD5Context
  234. d: MD5Digest
  235. md5Init(c)
  236. md5Update(c, s.slice(0, s.len - 1))
  237. md5Final(c, d)
  238. result = $d
  239. proc `==`*(D1, D2: MD5Digest): bool =
  240. ## Checks if two `MD5Digest` values are identical.
  241. for i in 0..15:
  242. if D1[i] != D2[i]: return false
  243. return true
  244. proc clearBuffer(c: var MD5Context) {.inline.} =
  245. memOrNot:
  246. zeroMem(addr(c.buffer), sizeof(MD5Buffer))
  247. do:
  248. reset(c.buffer)
  249. proc md5Init*(c: var MD5Context) =
  250. ## Initializes an `MD5Context`.
  251. ##
  252. ## If you use the `toMD5 proc <#toMD5,string>`_, there's no need to call this
  253. ## function explicitly.
  254. c.state[0] = 0x67452301'u32
  255. c.state[1] = 0xEFCDAB89'u32
  256. c.state[2] = 0x98BADCFE'u32
  257. c.state[3] = 0x10325476'u32
  258. c.count[0] = 0'u32
  259. c.count[1] = 0'u32
  260. clearBuffer(c)
  261. proc writeBuffer(c: var MD5Context, index: int,
  262. input: openArray[uint8], inputIndex, len: int) {.inline.} =
  263. memOrNot:
  264. copyMem(addr(c.buffer[index]), unsafeAddr(input[inputIndex]), len)
  265. do:
  266. # cannot use system.`[]=` for arrays and openarrays as
  267. # it can raise RangeDefect which gets tracked
  268. for i in 0..<len:
  269. c.buffer[index + i] = input[inputIndex + i]
  270. proc md5Update*(c: var MD5Context, input: openArray[uint8]) =
  271. ## Updates the `MD5Context` with the `input` data.
  272. ##
  273. ## If you use the `toMD5 proc <#toMD5,string>`_, there's no need to call this
  274. ## function explicitly.
  275. var Index = int((c.count[0] shr 3) and 0x3F)
  276. c.count[0] = c.count[0] + (uint32(input.len) shl 3)
  277. if c.count[0] < (uint32(input.len) shl 3): c.count[1] = c.count[1] + 1'u32
  278. c.count[1] = c.count[1] + (uint32(input.len) shr 29)
  279. var PartLen = 64 - Index
  280. if input.len >= PartLen:
  281. writeBuffer(c, Index, input, 0, PartLen)
  282. transform(c.buffer, c.state)
  283. var i = PartLen
  284. while i + 63 < input.len:
  285. transform(input.slice(i, i + 63), c.state)
  286. inc(i, 64)
  287. if i < input.len:
  288. writeBuffer(c, 0, input, i, input.len - i)
  289. elif input.len > 0:
  290. writeBuffer(c, Index, input, 0, input.len)
  291. proc md5Final*(c: var MD5Context, digest: var MD5Digest) =
  292. ## Finishes the `MD5Context` and stores the result in `digest`.
  293. ##
  294. ## If you use the `toMD5 proc <#toMD5,string>`_, there's no need to call this
  295. ## function explicitly.
  296. var
  297. Bits: MD5CBits
  298. PadLen: int
  299. decode(Bits, c.count)
  300. var Index = int((c.count[0] shr 3) and 0x3F)
  301. if Index < 56: PadLen = 56 - Index
  302. else: PadLen = 120 - Index
  303. md5Update(c, padding.slice(0, PadLen - 1))
  304. md5Update(c, Bits)
  305. decode(digest, c.state)
  306. clearBuffer(c)
  307. when defined(nimHasStyleChecks):
  308. {.pop.} #{.push styleChecks: off.}