| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139 | ;(function (root, factory, undef) {	if (typeof exports === "object") {		// CommonJS		module.exports = exports = factory(require("./core"), require("./enc-base64"), require("./md5"), require("./evpkdf"), require("./cipher-core"));	}	else if (typeof define === "function" && define.amd) {		// AMD		define(["./core", "./enc-base64", "./md5", "./evpkdf", "./cipher-core"], factory);	}	else {		// Global (browser)		factory(root.CryptoJS);	}}(this, function (CryptoJS) {	(function () {	    // Shortcuts	    var C = CryptoJS;	    var C_lib = C.lib;	    var StreamCipher = C_lib.StreamCipher;	    var C_algo = C.algo;	    /**	     * RC4 stream cipher algorithm.	     */	    var RC4 = C_algo.RC4 = StreamCipher.extend({	        _doReset: function () {	            // Shortcuts	            var key = this._key;	            var keyWords = key.words;	            var keySigBytes = key.sigBytes;	            // Init sbox	            var S = this._S = [];	            for (var i = 0; i < 256; i++) {	                S[i] = i;	            }	            // Key setup	            for (var i = 0, j = 0; i < 256; i++) {	                var keyByteIndex = i % keySigBytes;	                var keyByte = (keyWords[keyByteIndex >>> 2] >>> (24 - (keyByteIndex % 4) * 8)) & 0xff;	                j = (j + S[i] + keyByte) % 256;	                // Swap	                var t = S[i];	                S[i] = S[j];	                S[j] = t;	            }	            // Counters	            this._i = this._j = 0;	        },	        _doProcessBlock: function (M, offset) {	            M[offset] ^= generateKeystreamWord.call(this);	        },	        keySize: 256/32,	        ivSize: 0	    });	    function generateKeystreamWord() {	        // Shortcuts	        var S = this._S;	        var i = this._i;	        var j = this._j;	        // Generate keystream word	        var keystreamWord = 0;	        for (var n = 0; n < 4; n++) {	            i = (i + 1) % 256;	            j = (j + S[i]) % 256;	            // Swap	            var t = S[i];	            S[i] = S[j];	            S[j] = t;	            keystreamWord |= S[(S[i] + S[j]) % 256] << (24 - n * 8);	        }	        // Update counters	        this._i = i;	        this._j = j;	        return keystreamWord;	    }	    /**	     * Shortcut functions to the cipher's object interface.	     *	     * @example	     *	     *     var ciphertext = CryptoJS.RC4.encrypt(message, key, cfg);	     *     var plaintext  = CryptoJS.RC4.decrypt(ciphertext, key, cfg);	     */	    C.RC4 = StreamCipher._createHelper(RC4);	    /**	     * Modified RC4 stream cipher algorithm.	     */	    var RC4Drop = C_algo.RC4Drop = RC4.extend({	        /**	         * Configuration options.	         *	         * @property {number} drop The number of keystream words to drop. Default 192	         */	        cfg: RC4.cfg.extend({	            drop: 192	        }),	        _doReset: function () {	            RC4._doReset.call(this);	            // Drop	            for (var i = this.cfg.drop; i > 0; i--) {	                generateKeystreamWord.call(this);	            }	        }	    });	    /**	     * Shortcut functions to the cipher's object interface.	     *	     * @example	     *	     *     var ciphertext = CryptoJS.RC4Drop.encrypt(message, key, cfg);	     *     var plaintext  = CryptoJS.RC4Drop.decrypt(ciphertext, key, cfg);	     */	    C.RC4Drop = StreamCipher._createHelper(RC4Drop);	}());	return CryptoJS.RC4;}));
 |