/*! https://mths.be/wtf8 v1.0.0 by @mathias */
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;(function(root) {
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// Detect free variables `exports`
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var freeExports = typeof exports == 'object' && exports;
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// Detect free variable `module`
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var freeModule = typeof module == 'object' && module &&
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module.exports == freeExports && module;
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// Detect free variable `global`, from Node.js or Browserified code,
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// and use it as `root`
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var freeGlobal = typeof global == 'object' && global;
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if (freeGlobal.global === freeGlobal || freeGlobal.window === freeGlobal) {
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root = freeGlobal;
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}
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/*--------------------------------------------------------------------------*/
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var stringFromCharCode = String.fromCharCode;
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// Taken from https://mths.be/punycode
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function ucs2decode(string) {
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var output = [];
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var counter = 0;
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var length = string.length;
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var value;
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var extra;
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while (counter < length) {
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value = string.charCodeAt(counter++);
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if (value >= 0xD800 && value <= 0xDBFF && counter < length) {
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// high surrogate, and there is a next character
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extra = string.charCodeAt(counter++);
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if ((extra & 0xFC00) == 0xDC00) { // low surrogate
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output.push(((value & 0x3FF) << 10) + (extra & 0x3FF) + 0x10000);
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} else {
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// unmatched surrogate; only append this code unit, in case the next
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// code unit is the high surrogate of a surrogate pair
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output.push(value);
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counter--;
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}
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} else {
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output.push(value);
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}
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}
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return output;
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}
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// Taken from https://mths.be/punycode
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function ucs2encode(array) {
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var length = array.length;
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var index = -1;
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var value;
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var output = '';
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while (++index < length) {
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value = array[index];
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if (value > 0xFFFF) {
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value -= 0x10000;
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output += stringFromCharCode(value >>> 10 & 0x3FF | 0xD800);
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value = 0xDC00 | value & 0x3FF;
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}
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output += stringFromCharCode(value);
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}
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return output;
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}
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/*--------------------------------------------------------------------------*/
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function createByte(codePoint, shift) {
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return stringFromCharCode(((codePoint >> shift) & 0x3F) | 0x80);
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}
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function encodeCodePoint(codePoint) {
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if ((codePoint & 0xFFFFFF80) == 0) { // 1-byte sequence
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return stringFromCharCode(codePoint);
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}
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var symbol = '';
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if ((codePoint & 0xFFFFF800) == 0) { // 2-byte sequence
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symbol = stringFromCharCode(((codePoint >> 6) & 0x1F) | 0xC0);
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}
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else if ((codePoint & 0xFFFF0000) == 0) { // 3-byte sequence
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symbol = stringFromCharCode(((codePoint >> 12) & 0x0F) | 0xE0);
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symbol += createByte(codePoint, 6);
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}
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else if ((codePoint & 0xFFE00000) == 0) { // 4-byte sequence
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symbol = stringFromCharCode(((codePoint >> 18) & 0x07) | 0xF0);
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symbol += createByte(codePoint, 12);
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symbol += createByte(codePoint, 6);
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}
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symbol += stringFromCharCode((codePoint & 0x3F) | 0x80);
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return symbol;
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}
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function wtf8encode(string) {
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var codePoints = ucs2decode(string);
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var length = codePoints.length;
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var index = -1;
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var codePoint;
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var byteString = '';
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while (++index < length) {
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codePoint = codePoints[index];
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byteString += encodeCodePoint(codePoint);
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}
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return byteString;
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}
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/*--------------------------------------------------------------------------*/
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function readContinuationByte() {
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if (byteIndex >= byteCount) {
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throw Error('Invalid byte index');
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}
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var continuationByte = byteArray[byteIndex] & 0xFF;
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byteIndex++;
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if ((continuationByte & 0xC0) == 0x80) {
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return continuationByte & 0x3F;
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}
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// If we end up here, it’s not a continuation byte.
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throw Error('Invalid continuation byte');
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}
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function decodeSymbol() {
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var byte1;
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var byte2;
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var byte3;
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var byte4;
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var codePoint;
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if (byteIndex > byteCount) {
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throw Error('Invalid byte index');
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}
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if (byteIndex == byteCount) {
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return false;
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}
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// Read the first byte.
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byte1 = byteArray[byteIndex] & 0xFF;
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byteIndex++;
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// 1-byte sequence (no continuation bytes)
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if ((byte1 & 0x80) == 0) {
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return byte1;
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}
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// 2-byte sequence
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if ((byte1 & 0xE0) == 0xC0) {
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var byte2 = readContinuationByte();
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codePoint = ((byte1 & 0x1F) << 6) | byte2;
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if (codePoint >= 0x80) {
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return codePoint;
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} else {
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throw Error('Invalid continuation byte');
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}
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}
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// 3-byte sequence (may include unpaired surrogates)
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if ((byte1 & 0xF0) == 0xE0) {
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byte2 = readContinuationByte();
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byte3 = readContinuationByte();
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codePoint = ((byte1 & 0x0F) << 12) | (byte2 << 6) | byte3;
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if (codePoint >= 0x0800) {
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return codePoint;
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} else {
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throw Error('Invalid continuation byte');
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}
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}
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// 4-byte sequence
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if ((byte1 & 0xF8) == 0xF0) {
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byte2 = readContinuationByte();
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byte3 = readContinuationByte();
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byte4 = readContinuationByte();
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codePoint = ((byte1 & 0x0F) << 0x12) | (byte2 << 0x0C) |
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(byte3 << 0x06) | byte4;
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if (codePoint >= 0x010000 && codePoint <= 0x10FFFF) {
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return codePoint;
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}
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}
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throw Error('Invalid WTF-8 detected');
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}
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var byteArray;
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var byteCount;
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var byteIndex;
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function wtf8decode(byteString) {
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byteArray = ucs2decode(byteString);
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byteCount = byteArray.length;
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byteIndex = 0;
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var codePoints = [];
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var tmp;
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while ((tmp = decodeSymbol()) !== false) {
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codePoints.push(tmp);
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}
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return ucs2encode(codePoints);
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}
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/*--------------------------------------------------------------------------*/
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var wtf8 = {
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'version': '1.0.0',
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'encode': wtf8encode,
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'decode': wtf8decode
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};
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// Some AMD build optimizers, like r.js, check for specific condition patterns
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// like the following:
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if (
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typeof define == 'function' &&
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typeof define.amd == 'object' &&
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define.amd
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) {
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define(function() {
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return wtf8;
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});
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} else if (freeExports && !freeExports.nodeType) {
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if (freeModule) { // in Node.js or RingoJS v0.8.0+
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freeModule.exports = wtf8;
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} else { // in Narwhal or RingoJS v0.7.0-
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var object = {};
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var hasOwnProperty = object.hasOwnProperty;
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for (var key in wtf8) {
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hasOwnProperty.call(wtf8, key) && (freeExports[key] = wtf8[key]);
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}
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}
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} else { // in Rhino or a web browser
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root.wtf8 = wtf8;
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}
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}(this));
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