280 lines
9.0 KiB
JavaScript
280 lines
9.0 KiB
JavaScript
/** @fileOverview Convenince functions centered around JSON encapsulation.
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*
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* @author Emily Stark
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* @author Mike Hamburg
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* @author Dan Boneh
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*/
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/** @namespace JSON encapsulation */
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sjcl.json = {
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/** Default values for encryption */
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defaults: { v:1, iter:1000, ks:128, ts:64, mode:"ccm", adata:"", cipher:"aes" },
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/** Simple encryption function.
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* @param {String|bitArray} password The password or key.
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* @param {String} plaintext The data to encrypt.
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* @param {Object} [params] The parameters including tag, iv and salt.
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* @param {Object} [rp] A returned version with filled-in parameters.
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* @return {String} The ciphertext.
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* @throws {sjcl.exception.invalid} if a parameter is invalid.
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*/
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encrypt: function (password, plaintext, params, rp) {
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params = params || {};
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rp = rp || {};
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var j = sjcl.json, p = j._add({ iv: sjcl.random.randomWords(4,0) },
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j.defaults), tmp, prp, adata;
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j._add(p, params);
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adata = p.adata;
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if (typeof p.salt === "string") {
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p.salt = sjcl.codec.base64.toBits(p.salt);
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}
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if (typeof p.iv === "string") {
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p.iv = sjcl.codec.base64.toBits(p.iv);
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}
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if (!sjcl.mode[p.mode] ||
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!sjcl.cipher[p.cipher] ||
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(typeof password === "string" && p.iter <= 100) ||
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(p.ts !== 64 && p.ts !== 96 && p.ts !== 128) ||
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(p.ks !== 128 && p.ks !== 192 && p.ks !== 256) ||
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(p.iv.length < 2 || p.iv.length > 4)) {
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throw new sjcl.exception.invalid("json encrypt: invalid parameters");
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}
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if (typeof password === "string") {
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tmp = sjcl.misc.cachedPbkdf2(password, p);
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password = tmp.key.slice(0,p.ks/32);
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p.salt = tmp.salt;
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}
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if (typeof plaintext === "string") {
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plaintext = sjcl.codec.utf8String.toBits(plaintext);
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}
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if (typeof adata === "string") {
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adata = sjcl.codec.utf8String.toBits(adata);
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}
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prp = new sjcl.cipher[p.cipher](password);
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/* return the json data */
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j._add(rp, p);
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rp.key = password;
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/* do the encryption */
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p.ct = sjcl.mode[p.mode].encrypt(prp, plaintext, p.iv, adata, p.ts);
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//return j.encode(j._subtract(p, j.defaults));
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return j.encode(p);
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},
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/** Simple decryption function.
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* @param {String|bitArray} password The password or key.
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* @param {String} ciphertext The ciphertext to decrypt.
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* @param {Object} [params] Additional non-default parameters.
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* @param {Object} [rp] A returned object with filled parameters.
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* @return {String} The plaintext.
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* @throws {sjcl.exception.invalid} if a parameter is invalid.
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* @throws {sjcl.exception.corrupt} if the ciphertext is corrupt.
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*/
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decrypt: function (password, ciphertext, params, rp) {
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params = params || {};
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rp = rp || {};
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var j = sjcl.json, p = j._add(j._add(j._add({},j.defaults),j.decode(ciphertext)), params, true), ct, tmp, prp, adata=p.adata;
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if (typeof p.salt === "string") {
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p.salt = sjcl.codec.base64.toBits(p.salt);
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}
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if (typeof p.iv === "string") {
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p.iv = sjcl.codec.base64.toBits(p.iv);
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}
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if (!sjcl.mode[p.mode] ||
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!sjcl.cipher[p.cipher] ||
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(typeof password === "string" && p.iter <= 100) ||
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(p.ts !== 64 && p.ts !== 96 && p.ts !== 128) ||
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(p.ks !== 128 && p.ks !== 192 && p.ks !== 256) ||
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(!p.iv) ||
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(p.iv.length < 2 || p.iv.length > 4)) {
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throw new sjcl.exception.invalid("json decrypt: invalid parameters");
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}
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if (typeof password === "string") {
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tmp = sjcl.misc.cachedPbkdf2(password, p);
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password = tmp.key.slice(0,p.ks/32);
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p.salt = tmp.salt;
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}
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if (typeof adata === "string") {
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adata = sjcl.codec.utf8String.toBits(adata);
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}
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prp = new sjcl.cipher[p.cipher](password);
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/* do the decryption */
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ct = sjcl.mode[p.mode].decrypt(prp, p.ct, p.iv, adata, p.ts);
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/* return the json data */
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j._add(rp, p);
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rp.key = password;
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return sjcl.codec.utf8String.fromBits(ct);
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},
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/** Encode a flat structure into a JSON string.
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* @param {Object} obj The structure to encode.
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* @return {String} A JSON string.
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* @throws {sjcl.exception.invalid} if obj has a non-alphanumeric property.
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* @throws {sjcl.exception.bug} if a parameter has an unsupported type.
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*/
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encode: function (obj) {
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var i, out='{', comma='';
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for (i in obj) {
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if (obj.hasOwnProperty(i)) {
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if (!i.match(/^[a-z0-9]+$/i)) {
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throw new sjcl.exception.invalid("json encode: invalid property name");
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}
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out += comma + '"' + i + '"' + ':';
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comma = ',';
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switch (typeof obj[i]) {
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case 'number':
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case 'boolean':
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out += obj[i];
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break;
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case 'string':
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out += '"' + escape(obj[i]) + '"';
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break;
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case 'object':
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out += '"' + sjcl.codec.base64.fromBits(obj[i],1) + '"';
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break;
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default:
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throw new sjcl.exception.bug("json encode: unsupported type");
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}
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}
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}
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return out+'}';
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},
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/** Decode a simple (flat) JSON string into a structure. The ciphertext,
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* adata, salt and iv will be base64-decoded.
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* @param {String} str The string.
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* @return {Object} The decoded structure.
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* @throws {sjcl.exception.invalid} if str isn't (simple) JSON.
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*/
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decode: function (str) {
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str = str.replace(/\s/g,'');
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if (!str.match(/^\{.*\}$/)) {
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throw new sjcl.exception.invalid("json decode: this isn't json!");
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}
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var a = str.replace(/^\{|\}$/g, '').split(/,/), out={}, i, m;
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for (i=0; i<a.length; i++) {
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if (!(m=a[i].match(/^(?:(["']?)([a-z][a-z0-9]*)\1):(?:(\d+)|"([a-z0-9+\/%*_.@=\-]*)")$/i))) {
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throw new sjcl.exception.invalid("json decode: this isn't json!");
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}
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if (m[3]) {
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out[m[2]] = parseInt(m[3],10);
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} else {
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out[m[2]] = m[2].match(/^(ct|salt|iv)$/) ? sjcl.codec.base64.toBits(m[4]) : unescape(m[4]);
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}
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}
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return out;
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},
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/** Insert all elements of src into target, modifying and returning target.
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* @param {Object} target The object to be modified.
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* @param {Object} src The object to pull data from.
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* @param {boolean} [requireSame=false] If true, throw an exception if any field of target differs from corresponding field of src.
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* @return {Object} target.
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* @private
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*/
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_add: function (target, src, requireSame) {
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if (target === undefined) { target = {}; }
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if (src === undefined) { return target; }
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var i;
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for (i in src) {
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if (src.hasOwnProperty(i)) {
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if (requireSame && target[i] !== undefined && target[i] !== src[i]) {
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throw new sjcl.exception.invalid("required parameter overridden");
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}
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target[i] = src[i];
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}
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}
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return target;
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},
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/** Remove all elements of minus from plus. Does not modify plus.
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* @private
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*/
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_subtract: function (plus, minus) {
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var out = {}, i;
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for (i in plus) {
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if (plus.hasOwnProperty(i) && plus[i] !== minus[i]) {
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out[i] = plus[i];
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}
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}
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return out;
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},
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/** Return only the specified elements of src.
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* @private
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*/
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_filter: function (src, filter) {
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var out = {}, i;
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for (i=0; i<filter.length; i++) {
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if (src[filter[i]] !== undefined) {
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out[filter[i]] = src[filter[i]];
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}
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}
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return out;
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}
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};
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/** Simple encryption function; convenient shorthand for sjcl.json.encrypt.
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* @param {String|bitArray} password The password or key.
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* @param {String} plaintext The data to encrypt.
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* @param {Object} [params] The parameters including tag, iv and salt.
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* @param {Object} [rp] A returned version with filled-in parameters.
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* @return {String} The ciphertext.
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*/
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sjcl.encrypt = sjcl.json.encrypt;
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/** Simple decryption function; convenient shorthand for sjcl.json.decrypt.
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* @param {String|bitArray} password The password or key.
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* @param {String} ciphertext The ciphertext to decrypt.
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* @param {Object} [params] Additional non-default parameters.
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* @param {Object} [rp] A returned object with filled parameters.
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* @return {String} The plaintext.
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*/
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sjcl.decrypt = sjcl.json.decrypt;
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/** The cache for cachedPbkdf2.
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* @private
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*/
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sjcl.misc._pbkdf2Cache = {};
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/** Cached PBKDF2 key derivation.
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* @param {String} password The password.
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* @param {Object} [params] The derivation params (iteration count and optional salt).
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* @return {Object} The derived data in key, the salt in salt.
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*/
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sjcl.misc.cachedPbkdf2 = function (password, obj) {
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var cache = sjcl.misc._pbkdf2Cache, c, cp, str, salt, iter;
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obj = obj || {};
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iter = obj.iter || 1000;
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/* open the cache for this password and iteration count */
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cp = cache[password] = cache[password] || {};
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c = cp[iter] = cp[iter] || { firstSalt: (obj.salt && obj.salt.length) ?
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obj.salt.slice(0) : sjcl.random.randomWords(2,0) };
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salt = (obj.salt === undefined) ? c.firstSalt : obj.salt;
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c[salt] = c[salt] || sjcl.misc.pbkdf2(password, salt, obj.iter);
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return { key: c[salt].slice(0), salt:salt.slice(0) };
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};
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