var m = { // table of character substitutions '\b': '\\b', '\t': '\\t', '\n': '\\n', '\f': '\\f', '\r': '\\r', '"' : '\\"', '\\': '\\\\'
};
function stringify(value, whitelist) { var a, // The array holding the partial texts.
i, // The loop counter.
k, // The member key.
l, // Length.
r = /["\\\x00-\x1f\x7f-\x9f]/g,
v; // The member value.
switch (typeof value) { case'string':
// If the string contains no control characters, no quote characters, and no // backslash characters, then we can safely slap some quotes around it. // Otherwise we must also replace the offending characters with safe sequences.
return r.test(value) ? '"' + value.replace(r, function (a) { var c = m[a]; if (c) { return c;
}
c = a.charCodeAt(); return'\\u00' + Math.floor(c / 16).toString(16) +
(c % 16).toString(16);
}) + '"' : '"' + value + '"';
case'number':
// JSON numbers must be finite. Encode non-finite numbers as null.
return isFinite(value) ? String(value) : 'null';
case'boolean': case'null': return String(value);
case'object':
// Due to a specification blunder in ECMAScript, // typeof null is 'object', so watch out for that case.
if (!value) { return'null';
}
// If the object has a toJSON method, call it, and stringify the result.
if (typeof value.toJSON === 'function') { return stringify(value.toJSON());
}
a = []; if (typeof value.length === 'number' &&
!(value.propertyIsEnumerable('length'))) {
// The object is an array. Stringify every element. Use null as a placeholder // for non-JSON values.
l = value.length; for (i = 0; i < l; i += 1) {
a.push(stringify(value[i], whitelist) || 'null');
}
// Join all of the elements together and wrap them in brackets.
return'[' + a.join(',') + ']';
} if (whitelist) {
// If a whitelist (array of keys) is provided, use it to select the components // of the object.
l = whitelist.length; for (i = 0; i < l; i += 1) {
k = whitelist[i]; if (typeof k === 'string') {
v = stringify(value[k], whitelist); if (v) {
a.push(stringify(k) + ':' + v);
}
}
}
} else {
// Otherwise, iterate through all of the keys in the object.
for (k in value) { if (typeof k === 'string') {
v = stringify(value[k], whitelist); if (v) {
a.push(stringify(k) + ':' + v);
}
}
}
}
// Join all of the member texts together and wrap them in braces.
return'{' + a.join(',') + '}';
}
}
return {
stringify: stringify,
parse: function (text, filter) { var j;
function walk(k, v) { var i, n; if (v && typeof v === 'object') { for (i in v) { if (Object.prototype.hasOwnProperty.apply(v, [i])) {
n = walk(i, v[i]); if (n !== undefined) {
v[i] = n;
} else { delete v[i];
}
}
}
} return filter(k, v);
}
// Parsing happens in three stages. In the first stage, we run the text against // regular expressions that look for non-JSON patterns. We are especially // concerned with '()' and 'new' because they can cause invocation, and '=' // because it can cause mutation. But just to be safe, we want to reject all // unexpected forms.
// We split the first stage into 4 regexp operations in order to work around // crippling inefficiencies in IE's and Safari's regexp engines. First we // replace all backslash pairs with '@' (a non-JSON character). Second, we // replace all simple value tokens with ']' characters. Third, we delete all // open brackets that follow a colon or comma or that begin the text. Finally, // we look to see that the remaining characters are only whitespace or ']' or // ',' or ':' or '{' or '}'. If that is so, then the text is safe for eval.
if (/^[\],:{}\s]*$/.test(text.replace(/\\./g, '@').
replace(/"[^"\\\n\r]*"|true|false|null|-?\d+(?:\.\d*)?(?:[eE][+\-]?\d+)?/g, ']').
replace(/(?:^|:|,)(?:\s*\[)+/g, ''))) {
// In the second stage we use the eval function to compile the text into a // JavaScript structure. The '{' operator is subject to a syntactic ambiguity // in JavaScript: it can begin a block or an object literal. We wrap the text // in parens to eliminate the ambiguity.
j = eval('(' + text + ')');
// In the optional third stage, we recursively walk the new structure, passing // each name/value pair to a filter function for possible transformation.
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