Alexander Afanasyev | 181a8b9 | 2013-02-28 13:28:53 -0800 | [diff] [blame] | 1 | /* |
| 2 | * A JavaScript implementation of the RIPEMD-160 Algorithm |
| 3 | * Version 2.2 Copyright Jeremy Lin, Paul Johnston 2000 - 2009. |
| 4 | * Other contributors: Greg Holt, Andrew Kepert, Ydnar, Lostinet |
| 5 | * Distributed under the BSD License |
| 6 | * See http://pajhome.org.uk/crypt/md5 for details. |
| 7 | * Also http://www.ocf.berkeley.edu/~jjlin/jsotp/ |
| 8 | */ |
| 9 | |
| 10 | /* |
| 11 | * Configurable variables. You may need to tweak these to be compatible with |
| 12 | * the server-side, but the defaults work in most cases. |
| 13 | */ |
| 14 | var hexcase = 0; /* hex output format. 0 - lowercase; 1 - uppercase */ |
| 15 | var b64pad = ""; /* base-64 pad character. "=" for strict RFC compliance */ |
| 16 | |
| 17 | /* |
| 18 | * These are the functions you'll usually want to call |
| 19 | * They take string arguments and return either hex or base-64 encoded strings |
| 20 | */ |
| 21 | function hex_rmd160(s) { return rstr2hex(rstr_rmd160(str2rstr_utf8(s))); } |
| 22 | function b64_rmd160(s) { return rstr2b64(rstr_rmd160(str2rstr_utf8(s))); } |
| 23 | function any_rmd160(s, e) { return rstr2any(rstr_rmd160(str2rstr_utf8(s)), e); } |
| 24 | function hex_hmac_rmd160(k, d) |
| 25 | { return rstr2hex(rstr_hmac_rmd160(str2rstr_utf8(k), str2rstr_utf8(d))); } |
| 26 | function b64_hmac_rmd160(k, d) |
| 27 | { return rstr2b64(rstr_hmac_rmd160(str2rstr_utf8(k), str2rstr_utf8(d))); } |
| 28 | function any_hmac_rmd160(k, d, e) |
| 29 | { return rstr2any(rstr_hmac_rmd160(str2rstr_utf8(k), str2rstr_utf8(d)), e); } |
| 30 | |
| 31 | /* |
| 32 | * Perform a simple self-test to see if the VM is working |
| 33 | */ |
| 34 | function rmd160_vm_test() |
| 35 | { |
| 36 | return hex_rmd160("abc").toLowerCase() == "8eb208f7e05d987a9b044a8e98c6b087f15a0bfc"; |
| 37 | } |
| 38 | |
| 39 | /* |
| 40 | * Calculate the rmd160 of a raw string |
| 41 | */ |
| 42 | function rstr_rmd160(s) |
| 43 | { |
| 44 | return binl2rstr(binl_rmd160(rstr2binl(s), s.length * 8)); |
| 45 | } |
| 46 | |
| 47 | /* |
| 48 | * Calculate the HMAC-rmd160 of a key and some data (raw strings) |
| 49 | */ |
| 50 | function rstr_hmac_rmd160(key, data) |
| 51 | { |
| 52 | var bkey = rstr2binl(key); |
| 53 | if(bkey.length > 16) bkey = binl_rmd160(bkey, key.length * 8); |
| 54 | |
| 55 | var ipad = Array(16), opad = Array(16); |
| 56 | for(var i = 0; i < 16; i++) |
| 57 | { |
| 58 | ipad[i] = bkey[i] ^ 0x36363636; |
| 59 | opad[i] = bkey[i] ^ 0x5C5C5C5C; |
| 60 | } |
| 61 | |
| 62 | var hash = binl_rmd160(ipad.concat(rstr2binl(data)), 512 + data.length * 8); |
| 63 | return binl2rstr(binl_rmd160(opad.concat(hash), 512 + 160)); |
| 64 | } |
| 65 | |
| 66 | /* |
| 67 | * Convert a raw string to a hex string |
| 68 | */ |
| 69 | function rstr2hex(input) |
| 70 | { |
| 71 | try { hexcase } catch(e) { hexcase=0; } |
| 72 | var hex_tab = hexcase ? "0123456789ABCDEF" : "0123456789abcdef"; |
| 73 | var output = ""; |
| 74 | var x; |
| 75 | for(var i = 0; i < input.length; i++) |
| 76 | { |
| 77 | x = input.charCodeAt(i); |
| 78 | output += hex_tab.charAt((x >>> 4) & 0x0F) |
| 79 | + hex_tab.charAt( x & 0x0F); |
| 80 | } |
| 81 | return output; |
| 82 | } |
| 83 | |
| 84 | /* |
| 85 | * Convert a raw string to a base-64 string |
| 86 | */ |
| 87 | function rstr2b64(input) |
| 88 | { |
| 89 | try { b64pad } catch(e) { b64pad=''; } |
| 90 | var tab = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/"; |
| 91 | var output = ""; |
| 92 | var len = input.length; |
| 93 | for(var i = 0; i < len; i += 3) |
| 94 | { |
| 95 | var triplet = (input.charCodeAt(i) << 16) |
| 96 | | (i + 1 < len ? input.charCodeAt(i+1) << 8 : 0) |
| 97 | | (i + 2 < len ? input.charCodeAt(i+2) : 0); |
| 98 | for(var j = 0; j < 4; j++) |
| 99 | { |
| 100 | if(i * 8 + j * 6 > input.length * 8) output += b64pad; |
| 101 | else output += tab.charAt((triplet >>> 6*(3-j)) & 0x3F); |
| 102 | } |
| 103 | } |
| 104 | return output; |
| 105 | } |
| 106 | |
| 107 | /* |
| 108 | * Convert a raw string to an arbitrary string encoding |
| 109 | */ |
| 110 | function rstr2any(input, encoding) |
| 111 | { |
| 112 | var divisor = encoding.length; |
| 113 | var remainders = Array(); |
| 114 | var i, q, x, quotient; |
| 115 | |
| 116 | /* Convert to an array of 16-bit big-endian values, forming the dividend */ |
| 117 | var dividend = Array(Math.ceil(input.length / 2)); |
| 118 | for(i = 0; i < dividend.length; i++) |
| 119 | { |
| 120 | dividend[i] = (input.charCodeAt(i * 2) << 8) | input.charCodeAt(i * 2 + 1); |
| 121 | } |
| 122 | |
| 123 | /* |
| 124 | * Repeatedly perform a long division. The binary array forms the dividend, |
| 125 | * the length of the encoding is the divisor. Once computed, the quotient |
| 126 | * forms the dividend for the next step. We stop when the dividend is zero. |
| 127 | * All remainders are stored for later use. |
| 128 | */ |
| 129 | while(dividend.length > 0) |
| 130 | { |
| 131 | quotient = Array(); |
| 132 | x = 0; |
| 133 | for(i = 0; i < dividend.length; i++) |
| 134 | { |
| 135 | x = (x << 16) + dividend[i]; |
| 136 | q = Math.floor(x / divisor); |
| 137 | x -= q * divisor; |
| 138 | if(quotient.length > 0 || q > 0) |
| 139 | quotient[quotient.length] = q; |
| 140 | } |
| 141 | remainders[remainders.length] = x; |
| 142 | dividend = quotient; |
| 143 | } |
| 144 | |
| 145 | /* Convert the remainders to the output string */ |
| 146 | var output = ""; |
| 147 | for(i = remainders.length - 1; i >= 0; i--) |
| 148 | output += encoding.charAt(remainders[i]); |
| 149 | |
| 150 | /* Append leading zero equivalents */ |
| 151 | var full_length = Math.ceil(input.length * 8 / |
| 152 | (Math.log(encoding.length) / Math.log(2))) |
| 153 | for(i = output.length; i < full_length; i++) |
| 154 | output = encoding[0] + output; |
| 155 | |
| 156 | return output; |
| 157 | } |
| 158 | |
| 159 | /* |
| 160 | * Encode a string as utf-8. |
| 161 | * For efficiency, this assumes the input is valid utf-16. |
| 162 | */ |
| 163 | function str2rstr_utf8(input) |
| 164 | { |
| 165 | var output = ""; |
| 166 | var i = -1; |
| 167 | var x, y; |
| 168 | |
| 169 | while(++i < input.length) |
| 170 | { |
| 171 | /* Decode utf-16 surrogate pairs */ |
| 172 | x = input.charCodeAt(i); |
| 173 | y = i + 1 < input.length ? input.charCodeAt(i + 1) : 0; |
| 174 | if(0xD800 <= x && x <= 0xDBFF && 0xDC00 <= y && y <= 0xDFFF) |
| 175 | { |
| 176 | x = 0x10000 + ((x & 0x03FF) << 10) + (y & 0x03FF); |
| 177 | i++; |
| 178 | } |
| 179 | |
| 180 | /* Encode output as utf-8 */ |
| 181 | if(x <= 0x7F) |
| 182 | output += String.fromCharCode(x); |
| 183 | else if(x <= 0x7FF) |
| 184 | output += String.fromCharCode(0xC0 | ((x >>> 6 ) & 0x1F), |
| 185 | 0x80 | ( x & 0x3F)); |
| 186 | else if(x <= 0xFFFF) |
| 187 | output += String.fromCharCode(0xE0 | ((x >>> 12) & 0x0F), |
| 188 | 0x80 | ((x >>> 6 ) & 0x3F), |
| 189 | 0x80 | ( x & 0x3F)); |
| 190 | else if(x <= 0x1FFFFF) |
| 191 | output += String.fromCharCode(0xF0 | ((x >>> 18) & 0x07), |
| 192 | 0x80 | ((x >>> 12) & 0x3F), |
| 193 | 0x80 | ((x >>> 6 ) & 0x3F), |
| 194 | 0x80 | ( x & 0x3F)); |
| 195 | } |
| 196 | return output; |
| 197 | } |
| 198 | |
| 199 | /* |
| 200 | * Encode a string as utf-16 |
| 201 | */ |
| 202 | function str2rstr_utf16le(input) |
| 203 | { |
| 204 | var output = ""; |
| 205 | for(var i = 0; i < input.length; i++) |
| 206 | output += String.fromCharCode( input.charCodeAt(i) & 0xFF, |
| 207 | (input.charCodeAt(i) >>> 8) & 0xFF); |
| 208 | return output; |
| 209 | } |
| 210 | |
| 211 | function str2rstr_utf16be(input) |
| 212 | { |
| 213 | var output = ""; |
| 214 | for(var i = 0; i < input.length; i++) |
| 215 | output += String.fromCharCode((input.charCodeAt(i) >>> 8) & 0xFF, |
| 216 | input.charCodeAt(i) & 0xFF); |
| 217 | return output; |
| 218 | } |
| 219 | |
| 220 | /* |
| 221 | * Convert a raw string to an array of little-endian words |
| 222 | * Characters >255 have their high-byte silently ignored. |
| 223 | */ |
| 224 | function rstr2binl(input) |
| 225 | { |
| 226 | var output = Array(input.length >> 2); |
| 227 | for(var i = 0; i < output.length; i++) |
| 228 | output[i] = 0; |
| 229 | for(var i = 0; i < input.length * 8; i += 8) |
| 230 | output[i>>5] |= (input.charCodeAt(i / 8) & 0xFF) << (i%32); |
| 231 | return output; |
| 232 | } |
| 233 | |
| 234 | /* |
| 235 | * Convert an array of little-endian words to a string |
| 236 | */ |
| 237 | function binl2rstr(input) |
| 238 | { |
| 239 | var output = ""; |
| 240 | for(var i = 0; i < input.length * 32; i += 8) |
| 241 | output += String.fromCharCode((input[i>>5] >>> (i % 32)) & 0xFF); |
| 242 | return output; |
| 243 | } |
| 244 | |
| 245 | /* |
| 246 | * Calculate the RIPE-MD160 of an array of little-endian words, and a bit length. |
| 247 | */ |
| 248 | function binl_rmd160(x, len) |
| 249 | { |
| 250 | /* append padding */ |
| 251 | x[len >> 5] |= 0x80 << (len % 32); |
| 252 | x[(((len + 64) >>> 9) << 4) + 14] = len; |
| 253 | |
| 254 | var h0 = 0x67452301; |
| 255 | var h1 = 0xefcdab89; |
| 256 | var h2 = 0x98badcfe; |
| 257 | var h3 = 0x10325476; |
| 258 | var h4 = 0xc3d2e1f0; |
| 259 | |
| 260 | for (var i = 0; i < x.length; i += 16) { |
| 261 | var T; |
| 262 | var A1 = h0, B1 = h1, C1 = h2, D1 = h3, E1 = h4; |
| 263 | var A2 = h0, B2 = h1, C2 = h2, D2 = h3, E2 = h4; |
| 264 | for (var j = 0; j <= 79; ++j) { |
| 265 | T = safe_add(A1, rmd160_f(j, B1, C1, D1)); |
| 266 | T = safe_add(T, x[i + rmd160_r1[j]]); |
| 267 | T = safe_add(T, rmd160_K1(j)); |
| 268 | T = safe_add(bit_rol(T, rmd160_s1[j]), E1); |
| 269 | A1 = E1; E1 = D1; D1 = bit_rol(C1, 10); C1 = B1; B1 = T; |
| 270 | T = safe_add(A2, rmd160_f(79-j, B2, C2, D2)); |
| 271 | T = safe_add(T, x[i + rmd160_r2[j]]); |
| 272 | T = safe_add(T, rmd160_K2(j)); |
| 273 | T = safe_add(bit_rol(T, rmd160_s2[j]), E2); |
| 274 | A2 = E2; E2 = D2; D2 = bit_rol(C2, 10); C2 = B2; B2 = T; |
| 275 | } |
| 276 | T = safe_add(h1, safe_add(C1, D2)); |
| 277 | h1 = safe_add(h2, safe_add(D1, E2)); |
| 278 | h2 = safe_add(h3, safe_add(E1, A2)); |
| 279 | h3 = safe_add(h4, safe_add(A1, B2)); |
| 280 | h4 = safe_add(h0, safe_add(B1, C2)); |
| 281 | h0 = T; |
| 282 | } |
| 283 | return [h0, h1, h2, h3, h4]; |
| 284 | } |
| 285 | |
| 286 | function rmd160_f(j, x, y, z) |
| 287 | { |
| 288 | return ( 0 <= j && j <= 15) ? (x ^ y ^ z) : |
| 289 | (16 <= j && j <= 31) ? (x & y) | (~x & z) : |
| 290 | (32 <= j && j <= 47) ? (x | ~y) ^ z : |
| 291 | (48 <= j && j <= 63) ? (x & z) | (y & ~z) : |
| 292 | (64 <= j && j <= 79) ? x ^ (y | ~z) : |
| 293 | "rmd160_f: j out of range"; |
| 294 | } |
| 295 | function rmd160_K1(j) |
| 296 | { |
| 297 | return ( 0 <= j && j <= 15) ? 0x00000000 : |
| 298 | (16 <= j && j <= 31) ? 0x5a827999 : |
| 299 | (32 <= j && j <= 47) ? 0x6ed9eba1 : |
| 300 | (48 <= j && j <= 63) ? 0x8f1bbcdc : |
| 301 | (64 <= j && j <= 79) ? 0xa953fd4e : |
| 302 | "rmd160_K1: j out of range"; |
| 303 | } |
| 304 | function rmd160_K2(j) |
| 305 | { |
| 306 | return ( 0 <= j && j <= 15) ? 0x50a28be6 : |
| 307 | (16 <= j && j <= 31) ? 0x5c4dd124 : |
| 308 | (32 <= j && j <= 47) ? 0x6d703ef3 : |
| 309 | (48 <= j && j <= 63) ? 0x7a6d76e9 : |
| 310 | (64 <= j && j <= 79) ? 0x00000000 : |
| 311 | "rmd160_K2: j out of range"; |
| 312 | } |
| 313 | var rmd160_r1 = [ |
| 314 | 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, |
| 315 | 7, 4, 13, 1, 10, 6, 15, 3, 12, 0, 9, 5, 2, 14, 11, 8, |
| 316 | 3, 10, 14, 4, 9, 15, 8, 1, 2, 7, 0, 6, 13, 11, 5, 12, |
| 317 | 1, 9, 11, 10, 0, 8, 12, 4, 13, 3, 7, 15, 14, 5, 6, 2, |
| 318 | 4, 0, 5, 9, 7, 12, 2, 10, 14, 1, 3, 8, 11, 6, 15, 13 |
| 319 | ]; |
| 320 | var rmd160_r2 = [ |
| 321 | 5, 14, 7, 0, 9, 2, 11, 4, 13, 6, 15, 8, 1, 10, 3, 12, |
| 322 | 6, 11, 3, 7, 0, 13, 5, 10, 14, 15, 8, 12, 4, 9, 1, 2, |
| 323 | 15, 5, 1, 3, 7, 14, 6, 9, 11, 8, 12, 2, 10, 0, 4, 13, |
| 324 | 8, 6, 4, 1, 3, 11, 15, 0, 5, 12, 2, 13, 9, 7, 10, 14, |
| 325 | 12, 15, 10, 4, 1, 5, 8, 7, 6, 2, 13, 14, 0, 3, 9, 11 |
| 326 | ]; |
| 327 | var rmd160_s1 = [ |
| 328 | 11, 14, 15, 12, 5, 8, 7, 9, 11, 13, 14, 15, 6, 7, 9, 8, |
| 329 | 7, 6, 8, 13, 11, 9, 7, 15, 7, 12, 15, 9, 11, 7, 13, 12, |
| 330 | 11, 13, 6, 7, 14, 9, 13, 15, 14, 8, 13, 6, 5, 12, 7, 5, |
| 331 | 11, 12, 14, 15, 14, 15, 9, 8, 9, 14, 5, 6, 8, 6, 5, 12, |
| 332 | 9, 15, 5, 11, 6, 8, 13, 12, 5, 12, 13, 14, 11, 8, 5, 6 |
| 333 | ]; |
| 334 | var rmd160_s2 = [ |
| 335 | 8, 9, 9, 11, 13, 15, 15, 5, 7, 7, 8, 11, 14, 14, 12, 6, |
| 336 | 9, 13, 15, 7, 12, 8, 9, 11, 7, 7, 12, 7, 6, 15, 13, 11, |
| 337 | 9, 7, 15, 11, 8, 6, 6, 14, 12, 13, 5, 14, 13, 13, 7, 5, |
| 338 | 15, 5, 8, 11, 14, 14, 6, 14, 6, 9, 12, 9, 12, 5, 15, 8, |
| 339 | 8, 5, 12, 9, 12, 5, 14, 6, 8, 13, 6, 5, 15, 13, 11, 11 |
| 340 | ]; |
| 341 | |
| 342 | /* |
| 343 | * Add integers, wrapping at 2^32. This uses 16-bit operations internally |
| 344 | * to work around bugs in some JS interpreters. |
| 345 | */ |
| 346 | function safe_add(x, y) |
| 347 | { |
| 348 | var lsw = (x & 0xFFFF) + (y & 0xFFFF); |
| 349 | var msw = (x >> 16) + (y >> 16) + (lsw >> 16); |
| 350 | return (msw << 16) | (lsw & 0xFFFF); |
| 351 | } |
| 352 | |
| 353 | /* |
| 354 | * Bitwise rotate a 32-bit number to the left. |
| 355 | */ |
| 356 | function bit_rol(num, cnt) |
| 357 | { |
| 358 | return (num << cnt) | (num >>> (32 - cnt)); |
| 359 | } |