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md5.js 12KB

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  1. /*
  2. * A JavaScript implementation of the RSA Data Security, Inc. MD5 Message
  3. * Digest Algorithm, as defined in RFC 1321.
  4. * Version 2.2 Copyright (C) Paul Johnston 1999 - 2009
  5. * Other contributors: Greg Holt, Andrew Kepert, Ydnar, Lostinet
  6. * Distributed under the BSD License
  7. * See http://pajhome.org.uk/crypt/md5 for more info.
  8. */
  9. /*
  10. * Configurable variables. You may need to tweak these to be compatible with
  11. * the server-side, but the defaults work in most cases.
  12. */
  13. var hexcase = 0; /* hex output format. 0 - lowercase; 1 - uppercase */
  14. var b64pad = ""; /* base-64 pad character. "=" for strict RFC compliance */
  15. /*
  16. * These are the functions you'll usually want to call
  17. * They take string arguments and return either hex or base-64 encoded strings
  18. */
  19. function hex_md5(s) { return rstr2hex(rstr_md5(str2rstr_utf8(s))); }
  20. function b64_md5(s) { return rstr2b64(rstr_md5(str2rstr_utf8(s))); }
  21. function any_md5(s, e) { return rstr2any(rstr_md5(str2rstr_utf8(s)), e); }
  22. function hex_hmac_md5(k, d)
  23. { return rstr2hex(rstr_hmac_md5(str2rstr_utf8(k), str2rstr_utf8(d))); }
  24. function b64_hmac_md5(k, d)
  25. { return rstr2b64(rstr_hmac_md5(str2rstr_utf8(k), str2rstr_utf8(d))); }
  26. function any_hmac_md5(k, d, e)
  27. { return rstr2any(rstr_hmac_md5(str2rstr_utf8(k), str2rstr_utf8(d)), e); }
  28. /*
  29. * Perform a simple self-test to see if the VM is working
  30. */
  31. function md5_vm_test()
  32. {
  33. return hex_md5("abc").toLowerCase() == "900150983cd24fb0d6963f7d28e17f72";
  34. }
  35. /*
  36. * Calculate the MD5 of a raw string
  37. */
  38. function rstr_md5(s)
  39. {
  40. return binl2rstr(binl_md5(rstr2binl(s), s.length * 8));
  41. }
  42. /*
  43. * Calculate the HMAC-MD5, of a key and some data (raw strings)
  44. */
  45. function rstr_hmac_md5(key, data)
  46. {
  47. var bkey = rstr2binl(key);
  48. if(bkey.length > 16) bkey = binl_md5(bkey, key.length * 8);
  49. var ipad = Array(16), opad = Array(16);
  50. for(var i = 0; i < 16; i++)
  51. {
  52. ipad[i] = bkey[i] ^ 0x36363636;
  53. opad[i] = bkey[i] ^ 0x5C5C5C5C;
  54. }
  55. var hash = binl_md5(ipad.concat(rstr2binl(data)), 512 + data.length * 8);
  56. return binl2rstr(binl_md5(opad.concat(hash), 512 + 128));
  57. }
  58. /*
  59. * Convert a raw string to a hex string
  60. */
  61. function rstr2hex(input)
  62. {
  63. try { hexcase } catch(e) {
  64. console.log('输出内容',e)
  65. hexcase=0;
  66. }
  67. var hex_tab = hexcase ? "0123456789ABCDEF" : "0123456789abcdef";
  68. var output = "";
  69. var x;
  70. for(var i = 0; i < input.length; i++)
  71. {
  72. x = input.charCodeAt(i);
  73. output += hex_tab.charAt((x >>> 4) & 0x0F)
  74. + hex_tab.charAt( x & 0x0F);
  75. }
  76. return output;
  77. }
  78. /*
  79. * Convert a raw string to a base-64 string
  80. */
  81. function rstr2b64(input)
  82. {
  83. try { b64pad } catch(e) { console.log('输出内容',e);b64pad=''; }
  84. var tab = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/";
  85. var output = "";
  86. var len = input.length;
  87. for(var i = 0; i < len; i += 3)
  88. {
  89. var triplet = (input.charCodeAt(i) << 16)
  90. | (i + 1 < len ? input.charCodeAt(i+1) << 8 : 0)
  91. | (i + 2 < len ? input.charCodeAt(i+2) : 0);
  92. for(var j = 0; j < 4; j++)
  93. {
  94. if(i * 8 + j * 6 > input.length * 8) output += b64pad;
  95. else output += tab.charAt((triplet >>> 6*(3-j)) & 0x3F);
  96. }
  97. }
  98. return output;
  99. }
  100. /*
  101. * Convert a raw string to an arbitrary string encoding
  102. */
  103. function rstr2any(input, encoding)
  104. {
  105. var divisor = encoding.length;
  106. var i, j, q, x, quotient;
  107. /* Convert to an array of 16-bit big-endian values, forming the dividend */
  108. var dividend = Array(Math.ceil(input.length / 2));
  109. for(i = 0; i < dividend.length; i++)
  110. {
  111. dividend[i] = (input.charCodeAt(i * 2) << 8) | input.charCodeAt(i * 2 + 1);
  112. }
  113. /*
  114. * Repeatedly perform a long division. The binary array forms the dividend,
  115. * the length of the encoding is the divisor. Once computed, the quotient
  116. * forms the dividend for the next step. All remainders are stored for later
  117. * use.
  118. */
  119. var full_length = Math.ceil(input.length * 8 /
  120. (Math.log(encoding.length) / Math.log(2)));
  121. var remainders = Array(full_length);
  122. for(j = 0; j < full_length; j++)
  123. {
  124. quotient = Array();
  125. x = 0;
  126. for(i = 0; i < dividend.length; i++)
  127. {
  128. x = (x << 16) + dividend[i];
  129. q = Math.floor(x / divisor);
  130. x -= q * divisor;
  131. if(quotient.length > 0 || q > 0)
  132. quotient[quotient.length] = q;
  133. }
  134. remainders[j] = x;
  135. dividend = quotient;
  136. }
  137. /* Convert the remainders to the output string */
  138. var output = "";
  139. for(i = remainders.length - 1; i >= 0; i--)
  140. output += encoding.charAt(remainders[i]);
  141. return output;
  142. }
  143. /*
  144. * Encode a string as utf-8.
  145. * For efficiency, this assumes the input is valid utf-16.
  146. */
  147. function str2rstr_utf8(input)
  148. {
  149. var output = "";
  150. var i = -1;
  151. var x, y;
  152. while(++i < input.length)
  153. {
  154. /* Decode utf-16 surrogate pairs */
  155. x = input.charCodeAt(i);
  156. y = i + 1 < input.length ? input.charCodeAt(i + 1) : 0;
  157. if(0xD800 <= x && x <= 0xDBFF && 0xDC00 <= y && y <= 0xDFFF)
  158. {
  159. x = 0x10000 + ((x & 0x03FF) << 10) + (y & 0x03FF);
  160. i++;
  161. }
  162. /* Encode output as utf-8 */
  163. if(x <= 0x7F)
  164. output += String.fromCharCode(x);
  165. else if(x <= 0x7FF)
  166. output += String.fromCharCode(0xC0 | ((x >>> 6 ) & 0x1F),
  167. 0x80 | ( x & 0x3F));
  168. else if(x <= 0xFFFF)
  169. output += String.fromCharCode(0xE0 | ((x >>> 12) & 0x0F),
  170. 0x80 | ((x >>> 6 ) & 0x3F),
  171. 0x80 | ( x & 0x3F));
  172. else if(x <= 0x1FFFFF)
  173. output += String.fromCharCode(0xF0 | ((x >>> 18) & 0x07),
  174. 0x80 | ((x >>> 12) & 0x3F),
  175. 0x80 | ((x >>> 6 ) & 0x3F),
  176. 0x80 | ( x & 0x3F));
  177. }
  178. return output;
  179. }
  180. /*
  181. * Encode a string as utf-16
  182. */
  183. function str2rstr_utf16le(input)
  184. {
  185. var output = "";
  186. for(var i = 0; i < input.length; i++)
  187. output += String.fromCharCode( input.charCodeAt(i) & 0xFF,
  188. (input.charCodeAt(i) >>> 8) & 0xFF);
  189. return output;
  190. }
  191. function str2rstr_utf16be(input)
  192. {
  193. var output = "";
  194. for(var i = 0; i < input.length; i++)
  195. output += String.fromCharCode((input.charCodeAt(i) >>> 8) & 0xFF,
  196. input.charCodeAt(i) & 0xFF);
  197. return output;
  198. }
  199. /*
  200. * Convert a raw string to an array of little-endian words
  201. * Characters >255 have their high-byte silently ignored.
  202. */
  203. function rstr2binl(input)
  204. {
  205. var output = Array(input.length >> 2);
  206. for(var i = 0; i < output.length; i++)
  207. output[i] = 0;
  208. for(var i = 0; i < input.length * 8; i += 8)
  209. output[i>>5] |= (input.charCodeAt(i / 8) & 0xFF) << (i%32);
  210. return output;
  211. }
  212. /*
  213. * Convert an array of little-endian words to a string
  214. */
  215. function binl2rstr(input)
  216. {
  217. var output = "";
  218. for(var i = 0; i < input.length * 32; i += 8)
  219. output += String.fromCharCode((input[i>>5] >>> (i % 32)) & 0xFF);
  220. return output;
  221. }
  222. /*
  223. * Calculate the MD5 of an array of little-endian words, and a bit length.
  224. */
  225. function binl_md5(x, len)
  226. {
  227. /* append padding */
  228. x[len >> 5] |= 0x80 << ((len) % 32);
  229. x[(((len + 64) >>> 9) << 4) + 14] = len;
  230. var a = 1732584193;
  231. var b = -271733879;
  232. var c = -1732584194;
  233. var d = 271733878;
  234. for(var i = 0; i < x.length; i += 16)
  235. {
  236. var olda = a;
  237. var oldb = b;
  238. var oldc = c;
  239. var oldd = d;
  240. a = md5_ff(a, b, c, d, x[i+ 0], 7 , -680876936);
  241. d = md5_ff(d, a, b, c, x[i+ 1], 12, -389564586);
  242. c = md5_ff(c, d, a, b, x[i+ 2], 17, 606105819);
  243. b = md5_ff(b, c, d, a, x[i+ 3], 22, -1044525330);
  244. a = md5_ff(a, b, c, d, x[i+ 4], 7 , -176418897);
  245. d = md5_ff(d, a, b, c, x[i+ 5], 12, 1200080426);
  246. c = md5_ff(c, d, a, b, x[i+ 6], 17, -1473231341);
  247. b = md5_ff(b, c, d, a, x[i+ 7], 22, -45705983);
  248. a = md5_ff(a, b, c, d, x[i+ 8], 7 , 1770035416);
  249. d = md5_ff(d, a, b, c, x[i+ 9], 12, -1958414417);
  250. c = md5_ff(c, d, a, b, x[i+10], 17, -42063);
  251. b = md5_ff(b, c, d, a, x[i+11], 22, -1990404162);
  252. a = md5_ff(a, b, c, d, x[i+12], 7 , 1804603682);
  253. d = md5_ff(d, a, b, c, x[i+13], 12, -40341101);
  254. c = md5_ff(c, d, a, b, x[i+14], 17, -1502002290);
  255. b = md5_ff(b, c, d, a, x[i+15], 22, 1236535329);
  256. a = md5_gg(a, b, c, d, x[i+ 1], 5 , -165796510);
  257. d = md5_gg(d, a, b, c, x[i+ 6], 9 , -1069501632);
  258. c = md5_gg(c, d, a, b, x[i+11], 14, 643717713);
  259. b = md5_gg(b, c, d, a, x[i+ 0], 20, -373897302);
  260. a = md5_gg(a, b, c, d, x[i+ 5], 5 , -701558691);
  261. d = md5_gg(d, a, b, c, x[i+10], 9 , 38016083);
  262. c = md5_gg(c, d, a, b, x[i+15], 14, -660478335);
  263. b = md5_gg(b, c, d, a, x[i+ 4], 20, -405537848);
  264. a = md5_gg(a, b, c, d, x[i+ 9], 5 , 568446438);
  265. d = md5_gg(d, a, b, c, x[i+14], 9 , -1019803690);
  266. c = md5_gg(c, d, a, b, x[i+ 3], 14, -187363961);
  267. b = md5_gg(b, c, d, a, x[i+ 8], 20, 1163531501);
  268. a = md5_gg(a, b, c, d, x[i+13], 5 , -1444681467);
  269. d = md5_gg(d, a, b, c, x[i+ 2], 9 , -51403784);
  270. c = md5_gg(c, d, a, b, x[i+ 7], 14, 1735328473);
  271. b = md5_gg(b, c, d, a, x[i+12], 20, -1926607734);
  272. a = md5_hh(a, b, c, d, x[i+ 5], 4 , -378558);
  273. d = md5_hh(d, a, b, c, x[i+ 8], 11, -2022574463);
  274. c = md5_hh(c, d, a, b, x[i+11], 16, 1839030562);
  275. b = md5_hh(b, c, d, a, x[i+14], 23, -35309556);
  276. a = md5_hh(a, b, c, d, x[i+ 1], 4 , -1530992060);
  277. d = md5_hh(d, a, b, c, x[i+ 4], 11, 1272893353);
  278. c = md5_hh(c, d, a, b, x[i+ 7], 16, -155497632);
  279. b = md5_hh(b, c, d, a, x[i+10], 23, -1094730640);
  280. a = md5_hh(a, b, c, d, x[i+13], 4 , 681279174);
  281. d = md5_hh(d, a, b, c, x[i+ 0], 11, -358537222);
  282. c = md5_hh(c, d, a, b, x[i+ 3], 16, -722521979);
  283. b = md5_hh(b, c, d, a, x[i+ 6], 23, 76029189);
  284. a = md5_hh(a, b, c, d, x[i+ 9], 4 , -640364487);
  285. d = md5_hh(d, a, b, c, x[i+12], 11, -421815835);
  286. c = md5_hh(c, d, a, b, x[i+15], 16, 530742520);
  287. b = md5_hh(b, c, d, a, x[i+ 2], 23, -995338651);
  288. a = md5_ii(a, b, c, d, x[i+ 0], 6 , -198630844);
  289. d = md5_ii(d, a, b, c, x[i+ 7], 10, 1126891415);
  290. c = md5_ii(c, d, a, b, x[i+14], 15, -1416354905);
  291. b = md5_ii(b, c, d, a, x[i+ 5], 21, -57434055);
  292. a = md5_ii(a, b, c, d, x[i+12], 6 , 1700485571);
  293. d = md5_ii(d, a, b, c, x[i+ 3], 10, -1894986606);
  294. c = md5_ii(c, d, a, b, x[i+10], 15, -1051523);
  295. b = md5_ii(b, c, d, a, x[i+ 1], 21, -2054922799);
  296. a = md5_ii(a, b, c, d, x[i+ 8], 6 , 1873313359);
  297. d = md5_ii(d, a, b, c, x[i+15], 10, -30611744);
  298. c = md5_ii(c, d, a, b, x[i+ 6], 15, -1560198380);
  299. b = md5_ii(b, c, d, a, x[i+13], 21, 1309151649);
  300. a = md5_ii(a, b, c, d, x[i+ 4], 6 , -145523070);
  301. d = md5_ii(d, a, b, c, x[i+11], 10, -1120210379);
  302. c = md5_ii(c, d, a, b, x[i+ 2], 15, 718787259);
  303. b = md5_ii(b, c, d, a, x[i+ 9], 21, -343485551);
  304. a = safe_add(a, olda);
  305. b = safe_add(b, oldb);
  306. c = safe_add(c, oldc);
  307. d = safe_add(d, oldd);
  308. }
  309. return Array(a, b, c, d);
  310. }
  311. /*
  312. * These functions implement the four basic operations the algorithm uses.
  313. */
  314. function md5_cmn(q, a, b, x, s, t)
  315. {
  316. return safe_add(bit_rol(safe_add(safe_add(a, q), safe_add(x, t)), s),b);
  317. }
  318. function md5_ff(a, b, c, d, x, s, t)
  319. {
  320. return md5_cmn((b & c) | ((~b) & d), a, b, x, s, t);
  321. }
  322. function md5_gg(a, b, c, d, x, s, t)
  323. {
  324. return md5_cmn((b & d) | (c & (~d)), a, b, x, s, t);
  325. }
  326. function md5_hh(a, b, c, d, x, s, t)
  327. {
  328. return md5_cmn(b ^ c ^ d, a, b, x, s, t);
  329. }
  330. function md5_ii(a, b, c, d, x, s, t)
  331. {
  332. return md5_cmn(c ^ (b | (~d)), a, b, x, s, t);
  333. }
  334. /*
  335. * Add integers, wrapping at 2^32. This uses 16-bit operations internally
  336. * to work around bugs in some JS interpreters.
  337. */
  338. function safe_add(x, y)
  339. {
  340. var lsw = (x & 0xFFFF) + (y & 0xFFFF);
  341. var msw = (x >> 16) + (y >> 16) + (lsw >> 16);
  342. return (msw << 16) | (lsw & 0xFFFF);
  343. }
  344. /*
  345. * Bitwise rotate a 32-bit number to the left.
  346. */
  347. function bit_rol(num, cnt)
  348. {
  349. return (num << cnt) | (num >>> (32 - cnt));
  350. }
  351. export default {
  352. md5 : function(str){
  353. return hex_md5(str);
  354. }
  355. }