js/src/devtools/jint/sunspider/crypto-aes.js

Sat, 03 Jan 2015 20:18:00 +0100

author
Michael Schloh von Bennewitz <michael@schloh.com>
date
Sat, 03 Jan 2015 20:18:00 +0100
branch
TOR_BUG_3246
changeset 7
129ffea94266
permissions
-rw-r--r--

Conditionally enable double key logic according to:
private browsing mode or privacy.thirdparty.isolate preference and
implement in GetCookieStringCommon and FindCookie where it counts...
With some reservations of how to convince FindCookie users to test
condition and pass a nullptr when disabling double key logic.

michael@0 1 /* - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - */
michael@0 2
michael@0 3 /*
michael@0 4 * AES Cipher function: encrypt 'input' with Rijndael algorithm
michael@0 5 *
michael@0 6 * takes byte-array 'input' (16 bytes)
michael@0 7 * 2D byte-array key schedule 'w' (Nr+1 x Nb bytes)
michael@0 8 *
michael@0 9 * applies Nr rounds (10/12/14) using key schedule w for 'add round key' stage
michael@0 10 *
michael@0 11 * returns byte-array encrypted value (16 bytes)
michael@0 12 */
michael@0 13 function Cipher(input, w) { // main Cipher function [§5.1]
michael@0 14 var Nb = 4; // block size (in words): no of columns in state (fixed at 4 for AES)
michael@0 15 var Nr = w.length/Nb - 1; // no of rounds: 10/12/14 for 128/192/256-bit keys
michael@0 16
michael@0 17 var state = [[],[],[],[]]; // initialise 4xNb byte-array 'state' with input [§3.4]
michael@0 18 /* BEGIN LOOP */
michael@0 19 for (var i=0; i<4*Nb; i++) state[i%4][Math.floor(i/4)] = input[i];
michael@0 20 /* END LOOP */
michael@0 21
michael@0 22 state = AddRoundKey(state, w, 0, Nb);
michael@0 23
michael@0 24 /* BEGIN LOOP */
michael@0 25 for (var round=1; round<Nr; round++) {
michael@0 26 state = SubBytes(state, Nb);
michael@0 27 state = ShiftRows(state, Nb);
michael@0 28 state = MixColumns(state, Nb);
michael@0 29 state = AddRoundKey(state, w, round, Nb);
michael@0 30 }
michael@0 31 /* END LOOP */
michael@0 32
michael@0 33 state = SubBytes(state, Nb);
michael@0 34 state = ShiftRows(state, Nb);
michael@0 35 state = AddRoundKey(state, w, Nr, Nb);
michael@0 36
michael@0 37 var output = new Array(4*Nb); // convert state to 1-d array before returning [§3.4]
michael@0 38 /* BEGIN LOOP */
michael@0 39 for (var i=0; i<4*Nb; i++) output[i] = state[i%4][Math.floor(i/4)];
michael@0 40 /* END LOOP */
michael@0 41 return output;
michael@0 42 }
michael@0 43
michael@0 44
michael@0 45 function SubBytes(s, Nb) { // apply SBox to state S [§5.1.1]
michael@0 46 /* BEGIN LOOP */
michael@0 47 for (var r=0; r<4; r++) {
michael@0 48 /* BEGIN LOOP */
michael@0 49 for (var c=0; c<Nb; c++) s[r][c] = Sbox[s[r][c]];
michael@0 50 /* END LOOP */
michael@0 51 }
michael@0 52 /* END LOOP */
michael@0 53 return s;
michael@0 54 }
michael@0 55
michael@0 56
michael@0 57 function ShiftRows(s, Nb) { // shift row r of state S left by r bytes [§5.1.2]
michael@0 58 var t = new Array(4);
michael@0 59 /* BEGIN LOOP */
michael@0 60 for (var r=1; r<4; r++) {
michael@0 61 /* BEGIN LOOP */
michael@0 62 for (var c=0; c<4; c++) t[c] = s[r][(c+r)%Nb]; // shift into temp copy
michael@0 63 /* END LOOP */
michael@0 64 /* BEGIN LOOP */
michael@0 65 for (var c=0; c<4; c++) s[r][c] = t[c]; // and copy back
michael@0 66 /* END LOOP */
michael@0 67 } // note that this will work for Nb=4,5,6, but not 7,8 (always 4 for AES):
michael@0 68 /* END LOOP */
michael@0 69 return s; // see fp.gladman.plus.com/cryptography_technology/rijndael/aes.spec.311.pdf
michael@0 70 }
michael@0 71
michael@0 72
michael@0 73 function MixColumns(s, Nb) { // combine bytes of each col of state S [§5.1.3]
michael@0 74 /* BEGIN LOOP */
michael@0 75 for (var c=0; c<4; c++) {
michael@0 76 var a = new Array(4); // 'a' is a copy of the current column from 's'
michael@0 77 var b = new Array(4); // 'b' is a•{02} in GF(2^8)
michael@0 78 /* BEGIN LOOP */
michael@0 79 for (var i=0; i<4; i++) {
michael@0 80 a[i] = s[i][c];
michael@0 81 b[i] = s[i][c]&0x80 ? s[i][c]<<1 ^ 0x011b : s[i][c]<<1;
michael@0 82 }
michael@0 83 /* END LOOP */
michael@0 84 // a[n] ^ b[n] is a•{03} in GF(2^8)
michael@0 85 s[0][c] = b[0] ^ a[1] ^ b[1] ^ a[2] ^ a[3]; // 2*a0 + 3*a1 + a2 + a3
michael@0 86 s[1][c] = a[0] ^ b[1] ^ a[2] ^ b[2] ^ a[3]; // a0 * 2*a1 + 3*a2 + a3
michael@0 87 s[2][c] = a[0] ^ a[1] ^ b[2] ^ a[3] ^ b[3]; // a0 + a1 + 2*a2 + 3*a3
michael@0 88 s[3][c] = a[0] ^ b[0] ^ a[1] ^ a[2] ^ b[3]; // 3*a0 + a1 + a2 + 2*a3
michael@0 89 }
michael@0 90 /* END LOOP */
michael@0 91 return s;
michael@0 92 }
michael@0 93
michael@0 94
michael@0 95 function AddRoundKey(state, w, rnd, Nb) { // xor Round Key into state S [§5.1.4]
michael@0 96 /* BEGIN LOOP */
michael@0 97 for (var r=0; r<4; r++) {
michael@0 98 /* BEGIN LOOP */
michael@0 99 for (var c=0; c<Nb; c++) state[r][c] ^= w[rnd*4+c][r];
michael@0 100 /* END LOOP */
michael@0 101 }
michael@0 102 /* END LOOP */
michael@0 103 return state;
michael@0 104 }
michael@0 105
michael@0 106
michael@0 107 function KeyExpansion(key) { // generate Key Schedule (byte-array Nr+1 x Nb) from Key [§5.2]
michael@0 108 var Nb = 4; // block size (in words): no of columns in state (fixed at 4 for AES)
michael@0 109 var Nk = key.length/4 // key length (in words): 4/6/8 for 128/192/256-bit keys
michael@0 110 var Nr = Nk + 6; // no of rounds: 10/12/14 for 128/192/256-bit keys
michael@0 111
michael@0 112 var w = new Array(Nb*(Nr+1));
michael@0 113 var temp = new Array(4);
michael@0 114
michael@0 115 /* BEGIN LOOP */
michael@0 116 for (var i=0; i<Nk; i++) {
michael@0 117 var r = [key[4*i], key[4*i+1], key[4*i+2], key[4*i+3]];
michael@0 118 w[i] = r;
michael@0 119 }
michael@0 120 /* END LOOP */
michael@0 121
michael@0 122 /* BEGIN LOOP */
michael@0 123 for (var i=Nk; i<(Nb*(Nr+1)); i++) {
michael@0 124 w[i] = new Array(4);
michael@0 125 /* BEGIN LOOP */
michael@0 126 for (var t=0; t<4; t++) temp[t] = w[i-1][t];
michael@0 127 /* END LOOP */
michael@0 128 if (i % Nk == 0) {
michael@0 129 temp = SubWord(RotWord(temp));
michael@0 130 /* BEGIN LOOP */
michael@0 131 for (var t=0; t<4; t++) temp[t] ^= Rcon[i/Nk][t];
michael@0 132 /* END LOOP */
michael@0 133 } else if (Nk > 6 && i%Nk == 4) {
michael@0 134 temp = SubWord(temp);
michael@0 135 }
michael@0 136 /* BEGIN LOOP */
michael@0 137 for (var t=0; t<4; t++) w[i][t] = w[i-Nk][t] ^ temp[t];
michael@0 138 /* END LOOP */
michael@0 139 }
michael@0 140 /* END LOOP */
michael@0 141
michael@0 142 return w;
michael@0 143 }
michael@0 144
michael@0 145 function SubWord(w) { // apply SBox to 4-byte word w
michael@0 146 /* BEGIN LOOP */
michael@0 147 for (var i=0; i<4; i++) w[i] = Sbox[w[i]];
michael@0 148 /* END LOOP */
michael@0 149 return w;
michael@0 150 }
michael@0 151
michael@0 152 function RotWord(w) { // rotate 4-byte word w left by one byte
michael@0 153 w[4] = w[0];
michael@0 154 /* BEGIN LOOP */
michael@0 155 for (var i=0; i<4; i++) w[i] = w[i+1];
michael@0 156 /* END LOOP */
michael@0 157 return w;
michael@0 158 }
michael@0 159
michael@0 160
michael@0 161 // Sbox is pre-computed multiplicative inverse in GF(2^8) used in SubBytes and KeyExpansion [§5.1.1]
michael@0 162 var Sbox = [0x63,0x7c,0x77,0x7b,0xf2,0x6b,0x6f,0xc5,0x30,0x01,0x67,0x2b,0xfe,0xd7,0xab,0x76,
michael@0 163 0xca,0x82,0xc9,0x7d,0xfa,0x59,0x47,0xf0,0xad,0xd4,0xa2,0xaf,0x9c,0xa4,0x72,0xc0,
michael@0 164 0xb7,0xfd,0x93,0x26,0x36,0x3f,0xf7,0xcc,0x34,0xa5,0xe5,0xf1,0x71,0xd8,0x31,0x15,
michael@0 165 0x04,0xc7,0x23,0xc3,0x18,0x96,0x05,0x9a,0x07,0x12,0x80,0xe2,0xeb,0x27,0xb2,0x75,
michael@0 166 0x09,0x83,0x2c,0x1a,0x1b,0x6e,0x5a,0xa0,0x52,0x3b,0xd6,0xb3,0x29,0xe3,0x2f,0x84,
michael@0 167 0x53,0xd1,0x00,0xed,0x20,0xfc,0xb1,0x5b,0x6a,0xcb,0xbe,0x39,0x4a,0x4c,0x58,0xcf,
michael@0 168 0xd0,0xef,0xaa,0xfb,0x43,0x4d,0x33,0x85,0x45,0xf9,0x02,0x7f,0x50,0x3c,0x9f,0xa8,
michael@0 169 0x51,0xa3,0x40,0x8f,0x92,0x9d,0x38,0xf5,0xbc,0xb6,0xda,0x21,0x10,0xff,0xf3,0xd2,
michael@0 170 0xcd,0x0c,0x13,0xec,0x5f,0x97,0x44,0x17,0xc4,0xa7,0x7e,0x3d,0x64,0x5d,0x19,0x73,
michael@0 171 0x60,0x81,0x4f,0xdc,0x22,0x2a,0x90,0x88,0x46,0xee,0xb8,0x14,0xde,0x5e,0x0b,0xdb,
michael@0 172 0xe0,0x32,0x3a,0x0a,0x49,0x06,0x24,0x5c,0xc2,0xd3,0xac,0x62,0x91,0x95,0xe4,0x79,
michael@0 173 0xe7,0xc8,0x37,0x6d,0x8d,0xd5,0x4e,0xa9,0x6c,0x56,0xf4,0xea,0x65,0x7a,0xae,0x08,
michael@0 174 0xba,0x78,0x25,0x2e,0x1c,0xa6,0xb4,0xc6,0xe8,0xdd,0x74,0x1f,0x4b,0xbd,0x8b,0x8a,
michael@0 175 0x70,0x3e,0xb5,0x66,0x48,0x03,0xf6,0x0e,0x61,0x35,0x57,0xb9,0x86,0xc1,0x1d,0x9e,
michael@0 176 0xe1,0xf8,0x98,0x11,0x69,0xd9,0x8e,0x94,0x9b,0x1e,0x87,0xe9,0xce,0x55,0x28,0xdf,
michael@0 177 0x8c,0xa1,0x89,0x0d,0xbf,0xe6,0x42,0x68,0x41,0x99,0x2d,0x0f,0xb0,0x54,0xbb,0x16];
michael@0 178
michael@0 179 // Rcon is Round Constant used for the Key Expansion [1st col is 2^(r-1) in GF(2^8)] [§5.2]
michael@0 180 var Rcon = [ [0x00, 0x00, 0x00, 0x00],
michael@0 181 [0x01, 0x00, 0x00, 0x00],
michael@0 182 [0x02, 0x00, 0x00, 0x00],
michael@0 183 [0x04, 0x00, 0x00, 0x00],
michael@0 184 [0x08, 0x00, 0x00, 0x00],
michael@0 185 [0x10, 0x00, 0x00, 0x00],
michael@0 186 [0x20, 0x00, 0x00, 0x00],
michael@0 187 [0x40, 0x00, 0x00, 0x00],
michael@0 188 [0x80, 0x00, 0x00, 0x00],
michael@0 189 [0x1b, 0x00, 0x00, 0x00],
michael@0 190 [0x36, 0x00, 0x00, 0x00] ];
michael@0 191
michael@0 192
michael@0 193 /* - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - */
michael@0 194
michael@0 195 /*
michael@0 196 * Use AES to encrypt 'plaintext' with 'password' using 'nBits' key, in 'Counter' mode of operation
michael@0 197 * - see http://csrc.nist.gov/publications/nistpubs/800-38a/sp800-38a.pdf
michael@0 198 * for each block
michael@0 199 * - outputblock = cipher(counter, key)
michael@0 200 * - cipherblock = plaintext xor outputblock
michael@0 201 */
michael@0 202 function AESEncryptCtr(plaintext, password, nBits) {
michael@0 203 if (!(nBits==128 || nBits==192 || nBits==256)) return ''; // standard allows 128/192/256 bit keys
michael@0 204
michael@0 205 // for this example script, generate the key by applying Cipher to 1st 16/24/32 chars of password;
michael@0 206 // for real-world applications, a more secure approach would be to hash the password e.g. with SHA-1
michael@0 207 var nBytes = nBits/8; // no bytes in key
michael@0 208 var pwBytes = new Array(nBytes);
michael@0 209 /* BEGIN LOOP */
michael@0 210 for (var i=0; i<nBytes; i++) pwBytes[i] = password.charCodeAt(i) & 0xff;
michael@0 211 /* END LOOP */
michael@0 212 var key = Cipher(pwBytes, KeyExpansion(pwBytes));
michael@0 213 key = key.concat(key.slice(0, nBytes-16)); // key is now 16/24/32 bytes long
michael@0 214
michael@0 215 // initialise counter block (NIST SP800-38A §B.2): millisecond time-stamp for nonce in 1st 8 bytes,
michael@0 216 // block counter in 2nd 8 bytes
michael@0 217 var blockSize = 16; // block size fixed at 16 bytes / 128 bits (Nb=4) for AES
michael@0 218 var counterBlock = new Array(blockSize); // block size fixed at 16 bytes / 128 bits (Nb=4) for AES
michael@0 219 var nonce = (new Date()).getTime(); // milliseconds since 1-Jan-1970
michael@0 220
michael@0 221 // encode nonce in two stages to cater for JavaScript 32-bit limit on bitwise ops
michael@0 222 /* BEGIN LOOP */
michael@0 223 for (var i=0; i<4; i++) counterBlock[i] = (nonce >>> i*8) & 0xff;
michael@0 224 /* END LOOP */
michael@0 225 /* BEGIN LOOP */
michael@0 226 for (var i=0; i<4; i++) counterBlock[i+4] = (nonce/0x100000000 >>> i*8) & 0xff;
michael@0 227 /* END LOOP */
michael@0 228
michael@0 229 // generate key schedule - an expansion of the key into distinct Key Rounds for each round
michael@0 230 var keySchedule = KeyExpansion(key);
michael@0 231
michael@0 232 var blockCount = Math.ceil(plaintext.length/blockSize);
michael@0 233 var ciphertext = new Array(blockCount); // ciphertext as array of strings
michael@0 234
michael@0 235 /* BEGIN LOOP */
michael@0 236 for (var b=0; b<blockCount; b++) {
michael@0 237 // set counter (block #) in last 8 bytes of counter block (leaving nonce in 1st 8 bytes)
michael@0 238 // again done in two stages for 32-bit ops
michael@0 239 /* BEGIN LOOP */
michael@0 240 for (var c=0; c<4; c++) counterBlock[15-c] = (b >>> c*8) & 0xff;
michael@0 241 /* END LOOP */
michael@0 242 /* BEGIN LOOP */
michael@0 243 for (var c=0; c<4; c++) counterBlock[15-c-4] = (b/0x100000000 >>> c*8)
michael@0 244 /* END LOOP */
michael@0 245
michael@0 246 var cipherCntr = Cipher(counterBlock, keySchedule); // -- encrypt counter block --
michael@0 247
michael@0 248 // calculate length of final block:
michael@0 249 var blockLength = b<blockCount-1 ? blockSize : (plaintext.length-1)%blockSize+1;
michael@0 250
michael@0 251 var ct = '';
michael@0 252 /* BEGIN LOOP */
michael@0 253 for (var i=0; i<blockLength; i++) { // -- xor plaintext with ciphered counter byte-by-byte --
michael@0 254 var plaintextByte = plaintext.charCodeAt(b*blockSize+i);
michael@0 255 var cipherByte = plaintextByte ^ cipherCntr[i];
michael@0 256 ct += String.fromCharCode(cipherByte);
michael@0 257 }
michael@0 258 /* END LOOP */
michael@0 259 // ct is now ciphertext for this block
michael@0 260
michael@0 261 ciphertext[b] = escCtrlChars(ct); // escape troublesome characters in ciphertext
michael@0 262 }
michael@0 263 /* END LOOP */
michael@0 264
michael@0 265 // convert the nonce to a string to go on the front of the ciphertext
michael@0 266 var ctrTxt = '';
michael@0 267 /* BEGIN LOOP */
michael@0 268 for (var i=0; i<8; i++) ctrTxt += String.fromCharCode(counterBlock[i]);
michael@0 269 /* END LOOP */
michael@0 270 ctrTxt = escCtrlChars(ctrTxt);
michael@0 271
michael@0 272 // use '-' to separate blocks, use Array.join to concatenate arrays of strings for efficiency
michael@0 273 return ctrTxt + '-' + ciphertext.join('-');
michael@0 274 }
michael@0 275
michael@0 276
michael@0 277 /*
michael@0 278 * Use AES to decrypt 'ciphertext' with 'password' using 'nBits' key, in Counter mode of operation
michael@0 279 *
michael@0 280 * for each block
michael@0 281 * - outputblock = cipher(counter, key)
michael@0 282 * - cipherblock = plaintext xor outputblock
michael@0 283 */
michael@0 284 function AESDecryptCtr(ciphertext, password, nBits) {
michael@0 285 if (!(nBits==128 || nBits==192 || nBits==256)) return ''; // standard allows 128/192/256 bit keys
michael@0 286
michael@0 287 var nBytes = nBits/8; // no bytes in key
michael@0 288 var pwBytes = new Array(nBytes);
michael@0 289 /* BEGIN LOOP */
michael@0 290 for (var i=0; i<nBytes; i++) pwBytes[i] = password.charCodeAt(i) & 0xff;
michael@0 291 /* END LOOP */
michael@0 292 var pwKeySchedule = KeyExpansion(pwBytes);
michael@0 293 var key = Cipher(pwBytes, pwKeySchedule);
michael@0 294 key = key.concat(key.slice(0, nBytes-16)); // key is now 16/24/32 bytes long
michael@0 295
michael@0 296 var keySchedule = KeyExpansion(key);
michael@0 297
michael@0 298 ciphertext = ciphertext.split('-'); // split ciphertext into array of block-length strings
michael@0 299
michael@0 300 // recover nonce from 1st element of ciphertext
michael@0 301 var blockSize = 16; // block size fixed at 16 bytes / 128 bits (Nb=4) for AES
michael@0 302 var counterBlock = new Array(blockSize);
michael@0 303 var ctrTxt = unescCtrlChars(ciphertext[0]);
michael@0 304 /* BEGIN LOOP */
michael@0 305 for (var i=0; i<8; i++) counterBlock[i] = ctrTxt.charCodeAt(i);
michael@0 306 /* END LOOP */
michael@0 307
michael@0 308 var plaintext = new Array(ciphertext.length-1);
michael@0 309
michael@0 310 /* BEGIN LOOP */
michael@0 311 for (var b=1; b<ciphertext.length; b++) {
michael@0 312 // set counter (block #) in last 8 bytes of counter block (leaving nonce in 1st 8 bytes)
michael@0 313 /* BEGIN LOOP */
michael@0 314 for (var c=0; c<4; c++) counterBlock[15-c] = ((b-1) >>> c*8) & 0xff;
michael@0 315 /* END LOOP */
michael@0 316 /* BEGIN LOOP */
michael@0 317 for (var c=0; c<4; c++) counterBlock[15-c-4] = ((b/0x100000000-1) >>> c*8) & 0xff;
michael@0 318 /* END LOOP */
michael@0 319
michael@0 320 var cipherCntr = Cipher(counterBlock, keySchedule); // encrypt counter block
michael@0 321
michael@0 322 ciphertext[b] = unescCtrlChars(ciphertext[b]);
michael@0 323
michael@0 324 var pt = '';
michael@0 325 /* BEGIN LOOP */
michael@0 326 for (var i=0; i<ciphertext[b].length; i++) {
michael@0 327 // -- xor plaintext with ciphered counter byte-by-byte --
michael@0 328 var ciphertextByte = ciphertext[b].charCodeAt(i);
michael@0 329 var plaintextByte = ciphertextByte ^ cipherCntr[i];
michael@0 330 pt += String.fromCharCode(plaintextByte);
michael@0 331 }
michael@0 332 /* END LOOP */
michael@0 333 // pt is now plaintext for this block
michael@0 334
michael@0 335 plaintext[b-1] = pt; // b-1 'cos no initial nonce block in plaintext
michael@0 336 }
michael@0 337 /* END LOOP */
michael@0 338
michael@0 339 return plaintext.join('');
michael@0 340 }
michael@0 341
michael@0 342 /* - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - */
michael@0 343
michael@0 344 function escCtrlChars(str) { // escape control chars which might cause problems handling ciphertext
michael@0 345 return str.replace(/[\0\t\n\v\f\r\xa0'"!-]/g, function(c) { return '!' + c.charCodeAt(0) + '!'; });
michael@0 346 } // \xa0 to cater for bug in Firefox; include '-' to leave it free for use as a block marker
michael@0 347
michael@0 348 function unescCtrlChars(str) { // unescape potentially problematic control characters
michael@0 349 return str.replace(/!\d\d?\d?!/g, function(c) { return String.fromCharCode(c.slice(1,-1)); });
michael@0 350 }
michael@0 351 /* - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - */
michael@0 352
michael@0 353 /*
michael@0 354 * if escCtrlChars()/unescCtrlChars() still gives problems, use encodeBase64()/decodeBase64() instead
michael@0 355 */
michael@0 356 var b64 = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/=";
michael@0 357
michael@0 358 function encodeBase64(str) { // http://tools.ietf.org/html/rfc4648
michael@0 359 var o1, o2, o3, h1, h2, h3, h4, bits, i=0, enc='';
michael@0 360
michael@0 361 str = encodeUTF8(str); // encode multi-byte chars into UTF-8 for byte-array
michael@0 362
michael@0 363 /* BEGIN LOOP */
michael@0 364 do { // pack three octets into four hexets
michael@0 365 o1 = str.charCodeAt(i++);
michael@0 366 o2 = str.charCodeAt(i++);
michael@0 367 o3 = str.charCodeAt(i++);
michael@0 368
michael@0 369 bits = o1<<16 | o2<<8 | o3;
michael@0 370
michael@0 371 h1 = bits>>18 & 0x3f;
michael@0 372 h2 = bits>>12 & 0x3f;
michael@0 373 h3 = bits>>6 & 0x3f;
michael@0 374 h4 = bits & 0x3f;
michael@0 375
michael@0 376 // end of string? index to '=' in b64
michael@0 377 if (isNaN(o3)) h4 = 64;
michael@0 378 if (isNaN(o2)) h3 = 64;
michael@0 379
michael@0 380 // use hexets to index into b64, and append result to encoded string
michael@0 381 enc += b64.charAt(h1) + b64.charAt(h2) + b64.charAt(h3) + b64.charAt(h4);
michael@0 382 } while (i < str.length);
michael@0 383 /* END LOOP */
michael@0 384
michael@0 385 return enc;
michael@0 386 }
michael@0 387
michael@0 388 function decodeBase64(str) {
michael@0 389 var o1, o2, o3, h1, h2, h3, h4, bits, i=0, enc='';
michael@0 390
michael@0 391 /* BEGIN LOOP */
michael@0 392 do { // unpack four hexets into three octets using index points in b64
michael@0 393 h1 = b64.indexOf(str.charAt(i++));
michael@0 394 h2 = b64.indexOf(str.charAt(i++));
michael@0 395 h3 = b64.indexOf(str.charAt(i++));
michael@0 396 h4 = b64.indexOf(str.charAt(i++));
michael@0 397
michael@0 398 bits = h1<<18 | h2<<12 | h3<<6 | h4;
michael@0 399
michael@0 400 o1 = bits>>16 & 0xff;
michael@0 401 o2 = bits>>8 & 0xff;
michael@0 402 o3 = bits & 0xff;
michael@0 403
michael@0 404 if (h3 == 64) enc += String.fromCharCode(o1);
michael@0 405 else if (h4 == 64) enc += String.fromCharCode(o1, o2);
michael@0 406 else enc += String.fromCharCode(o1, o2, o3);
michael@0 407 } while (i < str.length);
michael@0 408 /* END LOOP */
michael@0 409
michael@0 410 return decodeUTF8(enc); // decode UTF-8 byte-array back to Unicode
michael@0 411 }
michael@0 412
michael@0 413 function encodeUTF8(str) { // encode multi-byte string into utf-8 multiple single-byte characters
michael@0 414 str = str.replace(
michael@0 415 /[\u0080-\u07ff]/g, // U+0080 - U+07FF = 2-byte chars
michael@0 416 function(c) {
michael@0 417 var cc = c.charCodeAt(0);
michael@0 418 return String.fromCharCode(0xc0 | cc>>6, 0x80 | cc&0x3f); }
michael@0 419 );
michael@0 420 str = str.replace(
michael@0 421 /[\u0800-\uffff]/g, // U+0800 - U+FFFF = 3-byte chars
michael@0 422 function(c) {
michael@0 423 var cc = c.charCodeAt(0);
michael@0 424 return String.fromCharCode(0xe0 | cc>>12, 0x80 | cc>>6&0x3F, 0x80 | cc&0x3f); }
michael@0 425 );
michael@0 426 return str;
michael@0 427 }
michael@0 428
michael@0 429 function decodeUTF8(str) { // decode utf-8 encoded string back into multi-byte characters
michael@0 430 str = str.replace(
michael@0 431 /[\u00c0-\u00df][\u0080-\u00bf]/g, // 2-byte chars
michael@0 432 function(c) {
michael@0 433 var cc = (c.charCodeAt(0)&0x1f)<<6 | c.charCodeAt(1)&0x3f;
michael@0 434 return String.fromCharCode(cc); }
michael@0 435 );
michael@0 436 str = str.replace(
michael@0 437 /[\u00e0-\u00ef][\u0080-\u00bf][\u0080-\u00bf]/g, // 3-byte chars
michael@0 438 function(c) {
michael@0 439 var cc = (c.charCodeAt(0)&0x0f)<<12 | (c.charCodeAt(1)&0x3f<<6) | c.charCodeAt(2)&0x3f;
michael@0 440 return String.fromCharCode(cc); }
michael@0 441 );
michael@0 442 return str;
michael@0 443 }
michael@0 444
michael@0 445
michael@0 446 function byteArrayToHexStr(b) { // convert byte array to hex string for displaying test vectors
michael@0 447 var s = '';
michael@0 448 /* BEGIN LOOP */
michael@0 449 for (var i=0; i<b.length; i++) s += b[i].toString(16) + ' ';
michael@0 450 /* END LOOP */
michael@0 451 return s;
michael@0 452 }
michael@0 453
michael@0 454 /* - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - */
michael@0 455
michael@0 456
michael@0 457 var plainText = "ROMEO: But, soft! what light through yonder window breaks?\n\
michael@0 458 It is the east, and Juliet is the sun.\n\
michael@0 459 Arise, fair sun, and kill the envious moon,\n\
michael@0 460 Who is already sick and pale with grief,\n\
michael@0 461 That thou her maid art far more fair than she:\n\
michael@0 462 Be not her maid, since she is envious;\n\
michael@0 463 Her vestal livery is but sick and green\n\
michael@0 464 And none but fools do wear it; cast it off.\n\
michael@0 465 It is my lady, O, it is my love!\n\
michael@0 466 O, that she knew she were!\n\
michael@0 467 She speaks yet she says nothing: what of that?\n\
michael@0 468 Her eye discourses; I will answer it.\n\
michael@0 469 I am too bold, 'tis not to me she speaks:\n\
michael@0 470 Two of the fairest stars in all the heaven,\n\
michael@0 471 Having some business, do entreat her eyes\n\
michael@0 472 To twinkle in their spheres till they return.\n\
michael@0 473 What if her eyes were there, they in her head?\n\
michael@0 474 The brightness of her cheek would shame those stars,\n\
michael@0 475 As daylight doth a lamp; her eyes in heaven\n\
michael@0 476 Would through the airy region stream so bright\n\
michael@0 477 That birds would sing and think it were not night.\n\
michael@0 478 See, how she leans her cheek upon her hand!\n\
michael@0 479 O, that I were a glove upon that hand,\n\
michael@0 480 That I might touch that cheek!\n\
michael@0 481 JULIET: Ay me!\n\
michael@0 482 ROMEO: She speaks:\n\
michael@0 483 O, speak again, bright angel! for thou art\n\
michael@0 484 As glorious to this night, being o'er my head\n\
michael@0 485 As is a winged messenger of heaven\n\
michael@0 486 Unto the white-upturned wondering eyes\n\
michael@0 487 Of mortals that fall back to gaze on him\n\
michael@0 488 When he bestrides the lazy-pacing clouds\n\
michael@0 489 And sails upon the bosom of the air.";
michael@0 490
michael@0 491 var password = "O Romeo, Romeo! wherefore art thou Romeo?";
michael@0 492
michael@0 493 var cipherText = AESEncryptCtr(plainText, password, 256);
michael@0 494 var decryptedText = AESDecryptCtr(cipherText, password, 256);

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