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    <title>Code coverage report for es6-shim.js</title>
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  <div class='pad1'>
    <h1>
      <a href="index.html">All files</a> es6-shim.js
    </h1>
    <div class='clearfix'>
      <div class='fl pad1y space-right2'>
        <span class="strong">30.13% </span>
        <span class="quiet">Statements</span>
        <span class='fraction'>674/2237</span>
      </div>
      <div class='fl pad1y space-right2'>
        <span class="strong">24.73% </span>
        <span class="quiet">Branches</span>
        <span class='fraction'>344/1391</span>
      </div>
      <div class='fl pad1y space-right2'>
        <span class="strong">30.77% </span>
        <span class="quiet">Functions</span>
        <span class='fraction'>116/377</span>
      </div>
      <div class='fl pad1y space-right2'>
        <span class="strong">30.39% </span>
        <span class="quiet">Lines</span>
        <span class='fraction'>654/2152</span>
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  <div class='status-line low'></div>
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2990
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2999
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3404
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3406
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3408
3409
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3629
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3633
3634
3635
3636
3637
3638
3639
3640
3641
3642
3643
3644
3645
3646
3647
3648
3649
3650
3651
3652
3653
3654
3655
3656
3657
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3662
3663
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3668
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3676
3677
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3718
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3720
3721
3722
3723
3724
3725
3726
3727
3728
3729
3730
3731
3732
3733
3734
3735
3736
3737
3738
3739
3740
3741
3742
3743
3744
3745
3746
3747
3748
3749
3750
3751
3752
3753
3754
3755
3756
3757
3758
3759
3760
3761
3762
3763
3764
3765
3766
3767
3768
3769
3770
3771
3772
3773
3774
3775
3776
3777
3778
3779
3780
3781
3782
3783
3784
3785
3786
3787
3788
3789
3790
3791
3792
3793
3794
3795
3796
3797
3798
3799
3800
3801
3802
3803
3804
3805
3806
3807
3808
3809
3810
3811
3812
3813
3814
3815
3816
3817
3818
3819
3820
3821
3822
3823
3824
3825
3826
3827
3828
3829
3830
3831
3832
3833
3834
3835
3836
3837
3838
3839
3840
3841
3842
3843
3844
3845
3846
3847
3848
3849
3850
3851
3852
3853
3854
3855
3856
3857
3858
3859
3860
3861
3862
3863
3864
3865
3866
3867
3868
3869
3870
3871
3872
3873
3874
3875
3876
3877
3878
3879
3880
3881
3882
3883
3884
3885
3886
3887
3888
3889
3890
3891
3892
3893
3894
3895
3896</td><td class="line-coverage quiet"><span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-yes">1x</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-yes">1x</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-no">&nbsp;</span>
<span class="cline-any cline-yes">1x</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-yes">1x</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-no">&nbsp;</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-yes">1x</span>
<span class="cline-any cline-yes">1x</span>
<span class="cline-any cline-yes">1x</span>
<span class="cline-any cline-yes">1x</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-yes">1x</span>
<span class="cline-any cline-yes">1x</span>
<span class="cline-any cline-yes">2x</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-yes">1x</span>
<span class="cline-any cline-yes">25x</span>
<span class="cline-any cline-yes">25x</span>
<span class="cline-any cline-yes">18x</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-yes">7x</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-yes">1x</span>
<span class="cline-any cline-yes">38x</span>
<span class="cline-any cline-yes">38x</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-yes">16x</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-yes">1x</span>
<span class="cline-any cline-yes">1x</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-yes">1x</span>
<span class="cline-any cline-yes">1x</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-yes">1x</span>
<span class="cline-any cline-yes">1x</span>
<span class="cline-any cline-neutral">&nbsp;</span>
<span class="cline-any cline-yes">1x</span>
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<span class="cline-any cline-neutral">&nbsp;</span></td><td class="text"><pre class="prettyprint lang-js">/*!
 * https://github.com/paulmillr/es6-shim
 * @license es6-shim Copyright 2013-2016 by Paul Miller (http://paulmillr.com)
 *   and contributors,  MIT License
 * es6-shim: v0.35.4
 * see https://github.com/paulmillr/es6-shim/blob/0.35.3/LICENSE
 * Details and documentation:
 * https://github.com/paulmillr/es6-shim/
 */
&nbsp;
// UMD (Universal Module Definition)
// see https://github.com/umdjs/umd/blob/master/returnExports.js
(function (root, factory) {
  /*global define */
  <span class="missing-if-branch" title="if path not taken" >I</span>if (typeof define === 'function' &amp;&amp; <span class="branch-1 cbranch-no" title="branch not covered" >define.amd)</span> {
    // AMD. Register as an anonymous module.
<span class="cstat-no" title="statement not covered" >    define(factory);</span>
  } else <span class="missing-if-branch" title="else path not taken" >E</span>if (typeof exports === 'object') {
    // Node. Does not work with strict CommonJS, but
    // only CommonJS-like environments that support module.exports,
    // like Node.
    module.exports = factory();
  } else {
    // Browser globals (root is window)
<span class="cstat-no" title="statement not covered" >    root.returnExports = factory();</span>
  }
}(this, function () {
  'use strict';
&nbsp;
  var _apply = Function.call.bind(Function.apply);
  var _call = Function.call.bind(Function.call);
  var isArray = Array.isArray;
  var keys = Object.keys;
&nbsp;
  var not = function notThunker(func) {
    return function notThunk() {
      return !_apply(func, this, arguments);
    };
  };
  var throwsError = function (func) {
    try {
      func();
      return false;
    } catch (e) {
      return true;
    }
  };
  var valueOrFalseIfThrows = function valueOrFalseIfThrows(func) {
    try {
      return func();
    } catch (e) {
      return false;
    }
  };
&nbsp;
  var isCallableWithoutNew = not(throwsError);
  var arePropertyDescriptorsSupported = function () {
    // if Object.defineProperty exists but throws, it's IE 8
    return !throwsError(function () {
      return Object.defineProperty({}, 'x', { get: <span class="fstat-no" title="function not covered" >fu</span>nction () { } }); // eslint-disable-line getter-return
    });
  };
  var supportsDescriptors = !!Object.defineProperty &amp;&amp; arePropertyDescriptorsSupported();
  var functionsHaveNames = (function <span class="fstat-no" title="function not covered" >foo(</span>) {}).name === 'foo';
&nbsp;
  var _forEach = Function.call.bind(Array.prototype.forEach);
  var _reduce = Function.call.bind(Array.prototype.reduce);
  var _filter = Function.call.bind(Array.prototype.filter);
  var _some = Function.call.bind(Array.prototype.some);
&nbsp;
  var defineProperty = function (object, name, value, force) {
    if (!force &amp;&amp; name in object) { return; }
    <span class="missing-if-branch" title="else path not taken" >E</span>if (supportsDescriptors) {
      Object.defineProperty(object, name, {
        configurable: true,
        enumerable: false,
        writable: true,
        value: value
      });
    } else {
<span class="cstat-no" title="statement not covered" >      object[name] = value;</span>
    }
  };
&nbsp;
  // Define configurable, writable and non-enumerable props
  // if they don’t exist.
  var defineProperties = function (object, map, forceOverride) {
    _forEach(keys(map), function (name) {
      var method = map[name];
      defineProperty(object, name, method, !!forceOverride);
    });
  };
&nbsp;
  var _toString = Function.call.bind(Object.prototype.toString);
  var isCallable = typeof /abc/ === 'function' ? <span class="branch-0 cbranch-no" title="branch not covered" >function <span class="fstat-no" title="function not covered" >IsCallableSlow(</span>x) {</span>
    // Some old browsers (IE, FF) say that typeof /abc/ === 'function'
<span class="cstat-no" title="statement not covered" >    return typeof x === 'function' &amp;&amp; _toString(x) === '[object Function]';</span>
  } : function IsCallableFast(x) { return typeof x === 'function'; };
&nbsp;
  var Value = {
    getter: function (object, name, getter) {
      <span class="missing-if-branch" title="if path not taken" >I</span>if (!supportsDescriptors) {
<span class="cstat-no" title="statement not covered" >        throw new TypeError('getters require true ES5 support');</span>
      }
      Object.defineProperty(object, name, {
        configurable: true,
        enumerable: false,
        get: getter
      });
    },
    proxy: <span class="fstat-no" title="function not covered" >fu</span>nction (originalObject, key, targetObject) {
<span class="cstat-no" title="statement not covered" >      if (!supportsDescriptors) {</span>
<span class="cstat-no" title="statement not covered" >        throw new TypeError('getters require true ES5 support');</span>
      }
      var originalDescriptor = <span class="cstat-no" title="statement not covered" >Object.getOwnPropertyDescriptor(originalObject, key);</span>
<span class="cstat-no" title="statement not covered" >      Object.defineProperty(targetObject, key, {</span>
        configurable: originalDescriptor.configurable,
        enumerable: originalDescriptor.enumerable,
        get: function <span class="fstat-no" title="function not covered" >getKey(</span>) { <span class="cstat-no" title="statement not covered" >return originalObject[key]; </span>},
        set: function <span class="fstat-no" title="function not covered" >setKey(</span>value) { <span class="cstat-no" title="statement not covered" >originalObject[key] = value; </span>}
      });
    },
    redefine: <span class="fstat-no" title="function not covered" >fu</span>nction (object, property, newValue) {
<span class="cstat-no" title="statement not covered" >      if (supportsDescriptors) {</span>
        var descriptor = <span class="cstat-no" title="statement not covered" >Object.getOwnPropertyDescriptor(object, property);</span>
<span class="cstat-no" title="statement not covered" >        descriptor.value = newValue;</span>
<span class="cstat-no" title="statement not covered" >        Object.defineProperty(object, property, descriptor);</span>
      } else {
<span class="cstat-no" title="statement not covered" >        object[property] = newValue;</span>
      }
    },
    defineByDescriptor: <span class="fstat-no" title="function not covered" >fu</span>nction (object, property, descriptor) {
<span class="cstat-no" title="statement not covered" >      if (supportsDescriptors) {</span>
<span class="cstat-no" title="statement not covered" >        Object.defineProperty(object, property, descriptor);</span>
      } else <span class="cstat-no" title="statement not covered" >if ('value' in descriptor) {</span>
<span class="cstat-no" title="statement not covered" >        object[property] = descriptor.value;</span>
      }
    },
    preserveToString: function (target, source) {
      <span class="missing-if-branch" title="else path not taken" >E</span>if (source &amp;&amp; isCallable(source.toString)) {
        defineProperty(target, 'toString', source.toString.bind(source), true);
      }
    }
  };
&nbsp;
  // Simple shim for Object.create on ES3 browsers
  // (unlike real shim, no attempt to support `prototype === null`)
  var create = Object.create || <span class="fstat-no" title="function not covered" ><span class="branch-1 cbranch-no" title="branch not covered" >fu</span>nction (prototype, properties) {</span>
    var Prototype = <span class="cstat-no" title="statement not covered" >function <span class="fstat-no" title="function not covered" >Prototype(</span>) {};</span>
<span class="cstat-no" title="statement not covered" >    Prototype.prototype = prototype;</span>
    var object = <span class="cstat-no" title="statement not covered" >new Prototype();</span>
<span class="cstat-no" title="statement not covered" >    if (typeof properties !== 'undefined') {</span>
<span class="cstat-no" title="statement not covered" >      keys(properties).forEach(<span class="fstat-no" title="function not covered" >fu</span>nction (key) {</span>
<span class="cstat-no" title="statement not covered" >        Value.defineByDescriptor(object, key, properties[key]);</span>
      });
    }
<span class="cstat-no" title="statement not covered" >    return object;</span>
  };
&nbsp;
  var supportsSubclassing = function (C, f) {
    <span class="missing-if-branch" title="if path not taken" >I</span>if (!Object.setPrototypeOf) { <span class="cstat-no" title="statement not covered" >return false; </span>/* skip test on IE &lt; 11 */ }
    return valueOrFalseIfThrows(function () {
      var Sub = function Subclass(arg) {
        var o = new C(arg);
        Object.setPrototypeOf(o, Subclass.prototype);
        return o;
      };
      Object.setPrototypeOf(Sub, C);
      Sub.prototype = create(C.prototype, {
        constructor: { value: Sub }
      });
      return f(Sub);
    });
  };
&nbsp;
  var getGlobal = function () {
    /* global self, window */
    // the only reliable means to get the global object is
    // `Function('return this')()`
    // However, this causes CSP violations in Chrome apps.
    <span class="missing-if-branch" title="if path not taken" >I</span>if (typeof self !== 'undefined') { <span class="cstat-no" title="statement not covered" >return self; </span>}
    <span class="missing-if-branch" title="if path not taken" >I</span>if (typeof window !== 'undefined') { <span class="cstat-no" title="statement not covered" >return window; </span>}
    <span class="missing-if-branch" title="else path not taken" >E</span>if (typeof global !== 'undefined') { return global; }
<span class="cstat-no" title="statement not covered" >    throw new Error('unable to locate global object');</span>
  };
&nbsp;
  var globals = getGlobal();
  var globalIsFinite = globals.isFinite;
  var _indexOf = Function.call.bind(String.prototype.indexOf);
  var _arrayIndexOfApply = Function.apply.bind(Array.prototype.indexOf);
  var _concat = Function.call.bind(Array.prototype.concat);
  // var _sort = Function.call.bind(Array.prototype.sort);
  var _strSlice = Function.call.bind(String.prototype.slice);
  var _push = Function.call.bind(Array.prototype.push);
  var _pushApply = Function.apply.bind(Array.prototype.push);
  var _join = Function.call.bind(Array.prototype.join);
  var _shift = Function.call.bind(Array.prototype.shift);
  var _max = Math.max;
  var _min = Math.min;
  var _floor = Math.floor;
  var _abs = Math.abs;
  var _exp = Math.exp;
  var _log = Math.log;
  var _sqrt = Math.sqrt;
  var _hasOwnProperty = Function.call.bind(Object.prototype.hasOwnProperty);
  var ArrayIterator; // make our implementation private
  var noop = function () {};
&nbsp;
  var OrigMap = globals.Map;
  var origMapDelete = OrigMap &amp;&amp; OrigMap.prototype['delete'];
  var origMapGet = OrigMap &amp;&amp; OrigMap.prototype.get;
  var origMapHas = OrigMap &amp;&amp; OrigMap.prototype.has;
  var origMapSet = OrigMap &amp;&amp; OrigMap.prototype.set;
&nbsp;
  var Symbol = globals.Symbol || <span class="branch-1 cbranch-no" title="branch not covered" >{};</span>
  var symbolSpecies = Symbol.species || <span class="branch-1 cbranch-no" title="branch not covered" >'@@species';</span>
&nbsp;
  var numberIsNaN = Number.isNaN || <span class="branch-1 cbranch-no" title="branch not covered" >function <span class="fstat-no" title="function not covered" >isNaN(</span>value) {</span>
    // NaN !== NaN, but they are identical.
    // NaNs are the only non-reflexive value, i.e., if x !== x,
    // then x is NaN.
    // isNaN is broken: it converts its argument to number, so
    // isNaN('foo') =&gt; true
<span class="cstat-no" title="statement not covered" >    return value !== value;</span>
  };
  var numberIsFinite = Number.isFinite || <span class="branch-1 cbranch-no" title="branch not covered" >function <span class="fstat-no" title="function not covered" >isFinite(</span>value) {</span>
<span class="cstat-no" title="statement not covered" >    return typeof value === 'number' &amp;&amp; globalIsFinite(value);</span>
  };
  var _sign = isCallable(Math.sign) ? Math.sign : <span class="branch-1 cbranch-no" title="branch not covered" >function <span class="fstat-no" title="function not covered" >sign(</span>value) {</span>
    var number = <span class="cstat-no" title="statement not covered" >Number(value);</span>
<span class="cstat-no" title="statement not covered" >    if (number === 0) { <span class="cstat-no" title="statement not covered" >return number; </span>}</span>
<span class="cstat-no" title="statement not covered" >    if (numberIsNaN(number)) { <span class="cstat-no" title="statement not covered" >return number; </span>}</span>
<span class="cstat-no" title="statement not covered" >    return number &lt; 0 ? -1 : 1;</span>
  };
  var _log1p = function <span class="fstat-no" title="function not covered" >log1p(</span>value) {
    var x = <span class="cstat-no" title="statement not covered" >Number(value);</span>
<span class="cstat-no" title="statement not covered" >    if (x &lt; -1 || numberIsNaN(x)) { <span class="cstat-no" title="statement not covered" >return NaN; </span>}</span>
<span class="cstat-no" title="statement not covered" >    if (x === 0 || x === Infinity) { <span class="cstat-no" title="statement not covered" >return x; </span>}</span>
<span class="cstat-no" title="statement not covered" >    if (x === -1) { <span class="cstat-no" title="statement not covered" >return -Infinity; </span>}</span>
&nbsp;
<span class="cstat-no" title="statement not covered" >    return (1 + x) - 1 === 0 ? x : x * (_log(1 + x) / ((1 + x) - 1));</span>
  };
&nbsp;
  // taken directly from https://github.com/ljharb/is-arguments/blob/master/index.js
  // can be replaced with require('is-arguments') if we ever use a build process instead
  var isStandardArguments = function isArguments(value) {
    return _toString(value) === '[object Arguments]';
  };
  var isLegacyArguments = function <span class="fstat-no" title="function not covered" >isArguments(</span>value) {
<span class="cstat-no" title="statement not covered" >    return value !== null</span>
      &amp;&amp; typeof value === 'object'
      &amp;&amp; typeof value.length === 'number'
      &amp;&amp; value.length &gt;= 0
      &amp;&amp; _toString(value) !== '[object Array]'
      &amp;&amp; _toString(value.callee) === '[object Function]';
  };
  var isArguments = isStandardArguments(arguments) ? isStandardArguments : <span class="branch-1 cbranch-no" title="branch not covered" >isLegacyArguments;</span>
&nbsp;
  var Type = {
    primitive: <span class="fstat-no" title="function not covered" >fu</span>nction (x) { <span class="cstat-no" title="statement not covered" >return x === null || (typeof x !== 'function' &amp;&amp; typeof x !== 'object'); </span>},
    string: <span class="fstat-no" title="function not covered" >fu</span>nction (x) { <span class="cstat-no" title="statement not covered" >return _toString(x) === '[object String]'; </span>},
    regex: function (x) { return _toString(x) === '[object RegExp]'; },
    symbol: function (x) {
      return typeof globals.Symbol === 'function' &amp;&amp; typeof x === 'symbol';
    }
  };
&nbsp;
  var overrideNative = function overrideNative(object, property, replacement) {
    var original = object[property];
    defineProperty(object, property, replacement, true);
    Value.preserveToString(object[property], original);
  };
&nbsp;
  // eslint-disable-next-line no-restricted-properties
  var hasSymbols = typeof Symbol === 'function' &amp;&amp; typeof Symbol['for'] === 'function' &amp;&amp; Type.symbol(Symbol());
&nbsp;
  // This is a private name in the es6 spec, equal to '[Symbol.iterator]'
  // we're going to use an arbitrary _-prefixed name to make our shims
  // work properly with each other, even though we don't have full Iterator
  // support.  That is, `Array.from(map.keys())` will work, but we don't
  // pretend to export a "real" Iterator interface.
  var $iterator$ = Type.symbol(Symbol.iterator) ? Symbol.iterator : <span class="branch-1 cbranch-no" title="branch not covered" >'_es6-shim iterator_';</span>
  // Firefox ships a partial implementation using the name @@iterator.
  // https://bugzilla.mozilla.org/show_bug.cgi?id=907077#c14
  // So use that name if we detect it.
  <span class="missing-if-branch" title="if path not taken" >I</span>if (globals.Set &amp;&amp; typeof new globals.Set()['@@iterator'] === 'function') {
<span class="cstat-no" title="statement not covered" >    $iterator$ = '@@iterator';</span>
  }
&nbsp;
  // Reflect
  <span class="missing-if-branch" title="if path not taken" >I</span>if (!globals.Reflect) {
<span class="cstat-no" title="statement not covered" >    defineProperty(globals, 'Reflect', {}, true);</span>
  }
  var Reflect = globals.Reflect;
&nbsp;
  var $String = String;
&nbsp;
  /* global document */
  var domAll = (typeof document === 'undefined' || <span class="branch-1 cbranch-no" title="branch not covered" >!document)</span> ? null : <span class="branch-1 cbranch-no" title="branch not covered" >document.all;</span>
  var isNullOrUndefined = domAll == null ? function isNullOrUndefined(x) {
    return x == null;
  } : <span class="branch-1 cbranch-no" title="branch not covered" >function <span class="fstat-no" title="function not covered" >isNullOrUndefinedAndNotDocumentAll(</span>x) {</span>
<span class="cstat-no" title="statement not covered" >    return x == null &amp;&amp; x !== domAll;</span>
  };
&nbsp;
  var ES = {
    // http://www.ecma-international.org/ecma-262/6.0/#sec-call
    Call: function <span class="fstat-no" title="function not covered" >Call(</span>F, V) {
      var args = <span class="cstat-no" title="statement not covered" >arguments.length &gt; 2 ? arguments[2] : [];</span>
<span class="cstat-no" title="statement not covered" >      if (!ES.IsCallable(F)) {</span>
<span class="cstat-no" title="statement not covered" >        throw new TypeError(F + ' is not a function');</span>
      }
<span class="cstat-no" title="statement not covered" >      return _apply(F, V, args);</span>
    },
&nbsp;
    RequireObjectCoercible: function (x, optMessage) {
      if (isNullOrUndefined(x)) {
        throw new TypeError(optMessage || 'Cannot call method on ' + x);
      }
      return x;
    },
&nbsp;
    // This might miss the "(non-standard exotic and does not implement
    // [[Call]])" case from
    // http://www.ecma-international.org/ecma-262/6.0/#sec-typeof-operator-runtime-semantics-evaluation
    // but we can't find any evidence these objects exist in practice.
    // If we find some in the future, you could test `Object(x) === x`,
    // which is reliable according to
    // http://www.ecma-international.org/ecma-262/6.0/#sec-toobject
    // but is not well optimized by runtimes and creates an object
    // whenever it returns false, and thus is very slow.
    TypeIsObject: function (x) {
      if (x === void 0 || x === null || x === true || x === false) {
        return false;
      }
      return typeof x === 'function' || typeof x === 'object' || x === domAll;
    },
&nbsp;
    ToObject: <span class="fstat-no" title="function not covered" >fu</span>nction (o, optMessage) {
<span class="cstat-no" title="statement not covered" >      return Object(ES.RequireObjectCoercible(o, optMessage));</span>
    },
&nbsp;
    IsCallable: isCallable,
&nbsp;
    IsConstructor: function (x) {
      // We can't tell callables from constructors in ES5
      return ES.IsCallable(x);
    },
&nbsp;
    ToInt32: <span class="fstat-no" title="function not covered" >fu</span>nction (x) {
<span class="cstat-no" title="statement not covered" >      return ES.ToNumber(x) &gt;&gt; 0;</span>
    },
&nbsp;
    ToUint32: <span class="fstat-no" title="function not covered" >fu</span>nction (x) {
<span class="cstat-no" title="statement not covered" >      return ES.ToNumber(x) &gt;&gt;&gt; 0;</span>
    },
&nbsp;
    ToNumber: <span class="fstat-no" title="function not covered" >fu</span>nction (value) {
<span class="cstat-no" title="statement not covered" >      if (hasSymbols &amp;&amp; _toString(value) === '[object Symbol]') {</span>
<span class="cstat-no" title="statement not covered" >        throw new TypeError('Cannot convert a Symbol value to a number');</span>
      }
<span class="cstat-no" title="statement not covered" >      return +value;</span>
    },
&nbsp;
    ToInteger: <span class="fstat-no" title="function not covered" >fu</span>nction (value) {
      var number = <span class="cstat-no" title="statement not covered" >ES.ToNumber(value);</span>
<span class="cstat-no" title="statement not covered" >      if (numberIsNaN(number)) { <span class="cstat-no" title="statement not covered" >return 0; </span>}</span>
<span class="cstat-no" title="statement not covered" >      if (number === 0 || !numberIsFinite(number)) { <span class="cstat-no" title="statement not covered" >return number; </span>}</span>
<span class="cstat-no" title="statement not covered" >      return (number &gt; 0 ? 1 : -1) * _floor(_abs(number));</span>
    },
&nbsp;
    ToLength: <span class="fstat-no" title="function not covered" >fu</span>nction (value) {
      var len = <span class="cstat-no" title="statement not covered" >ES.ToInteger(value);</span>
<span class="cstat-no" title="statement not covered" >      if (len &lt;= 0) { <span class="cstat-no" title="statement not covered" >return 0; </span>} </span>// includes converting -0 to +0
<span class="cstat-no" title="statement not covered" >      if (len &gt; Number.MAX_SAFE_INTEGER) { <span class="cstat-no" title="statement not covered" >return Number.MAX_SAFE_INTEGER; </span>}</span>
<span class="cstat-no" title="statement not covered" >      return len;</span>
    },
&nbsp;
    SameValue: <span class="fstat-no" title="function not covered" >fu</span>nction (a, b) {
<span class="cstat-no" title="statement not covered" >      if (a === b) {</span>
        // 0 === -0, but they are not identical.
<span class="cstat-no" title="statement not covered" >        if (a === 0) { <span class="cstat-no" title="statement not covered" >return 1 / a === 1 / b; </span>}</span>
<span class="cstat-no" title="statement not covered" >        return true;</span>
      }
<span class="cstat-no" title="statement not covered" >      return numberIsNaN(a) &amp;&amp; numberIsNaN(b);</span>
    },
&nbsp;
    SameValueZero: <span class="fstat-no" title="function not covered" >fu</span>nction (a, b) {
      // same as SameValue except for SameValueZero(+0, -0) == true
<span class="cstat-no" title="statement not covered" >      return (a === b) || (numberIsNaN(a) &amp;&amp; numberIsNaN(b));</span>
    },
&nbsp;
    GetIterator: <span class="fstat-no" title="function not covered" >fu</span>nction (o) {
<span class="cstat-no" title="statement not covered" >      if (isArguments(o)) {</span>
        // special case support for `arguments`
<span class="cstat-no" title="statement not covered" >        return new ArrayIterator(o, 'value');</span>
      }
      var itFn = <span class="cstat-no" title="statement not covered" >ES.GetMethod(o, $iterator$);</span>
<span class="cstat-no" title="statement not covered" >      if (!ES.IsCallable(itFn)) {</span>
        // Better diagnostics if itFn is null or undefined
<span class="cstat-no" title="statement not covered" >        throw new TypeError('value is not an iterable');</span>
      }
      var it = <span class="cstat-no" title="statement not covered" >ES.Call(itFn, o);</span>
<span class="cstat-no" title="statement not covered" >      if (!ES.TypeIsObject(it)) {</span>
<span class="cstat-no" title="statement not covered" >        throw new TypeError('bad iterator');</span>
      }
<span class="cstat-no" title="statement not covered" >      return it;</span>
    },
&nbsp;
    GetMethod: <span class="fstat-no" title="function not covered" >fu</span>nction (o, p) {
      var func = <span class="cstat-no" title="statement not covered" >ES.ToObject(o)[p];</span>
<span class="cstat-no" title="statement not covered" >      if (isNullOrUndefined(func)) {</span>
<span class="cstat-no" title="statement not covered" >        return void 0;</span>
      }
<span class="cstat-no" title="statement not covered" >      if (!ES.IsCallable(func)) {</span>
<span class="cstat-no" title="statement not covered" >        throw new TypeError('Method not callable: ' + p);</span>
      }
<span class="cstat-no" title="statement not covered" >      return func;</span>
    },
&nbsp;
    IteratorComplete: <span class="fstat-no" title="function not covered" >fu</span>nction (iterResult) {
<span class="cstat-no" title="statement not covered" >      return !!iterResult.done;</span>
    },
&nbsp;
    IteratorClose: <span class="fstat-no" title="function not covered" >fu</span>nction (iterator, completionIsThrow) {
      var returnMethod = <span class="cstat-no" title="statement not covered" >ES.GetMethod(iterator, 'return');</span>
<span class="cstat-no" title="statement not covered" >      if (returnMethod === void 0) {</span>
<span class="cstat-no" title="statement not covered" >        return;</span>
      }
      var innerResult, innerException;
<span class="cstat-no" title="statement not covered" >      try {</span>
<span class="cstat-no" title="statement not covered" >        innerResult = ES.Call(returnMethod, iterator);</span>
      } catch (e) {
<span class="cstat-no" title="statement not covered" >        innerException = e;</span>
      }
<span class="cstat-no" title="statement not covered" >      if (completionIsThrow) {</span>
<span class="cstat-no" title="statement not covered" >        return;</span>
      }
<span class="cstat-no" title="statement not covered" >      if (innerException) {</span>
<span class="cstat-no" title="statement not covered" >        throw innerException;</span>
      }
<span class="cstat-no" title="statement not covered" >      if (!ES.TypeIsObject(innerResult)) {</span>
<span class="cstat-no" title="statement not covered" >        throw new TypeError("Iterator's return method returned a non-object.");</span>
      }
    },
&nbsp;
    IteratorNext: <span class="fstat-no" title="function not covered" >fu</span>nction (it) {
      var result = <span class="cstat-no" title="statement not covered" >arguments.length &gt; 1 ? it.next(arguments[1]) : it.next();</span>
<span class="cstat-no" title="statement not covered" >      if (!ES.TypeIsObject(result)) {</span>
<span class="cstat-no" title="statement not covered" >        throw new TypeError('bad iterator');</span>
      }
<span class="cstat-no" title="statement not covered" >      return result;</span>
    },
&nbsp;
    IteratorStep: <span class="fstat-no" title="function not covered" >fu</span>nction (it) {
      var result = <span class="cstat-no" title="statement not covered" >ES.IteratorNext(it);</span>
      var done = <span class="cstat-no" title="statement not covered" >ES.IteratorComplete(result);</span>
<span class="cstat-no" title="statement not covered" >      return done ? false : result;</span>
    },
&nbsp;
    Construct: <span class="fstat-no" title="function not covered" >fu</span>nction (C, args, newTarget, isES6internal) {
      var target = <span class="cstat-no" title="statement not covered" >typeof newTarget === 'undefined' ? C : newTarget;</span>
&nbsp;
<span class="cstat-no" title="statement not covered" >      if (!isES6internal &amp;&amp; Reflect.construct) {</span>
        // Try to use Reflect.construct if available
<span class="cstat-no" title="statement not covered" >        return Reflect.construct(C, args, target);</span>
      }
      // OK, we have to fake it.  This will only work if the
      // C.[[ConstructorKind]] == "base" -- but that's the only
      // kind we can make in ES5 code anyway.
&nbsp;
      // OrdinaryCreateFromConstructor(target, "%ObjectPrototype%")
      var proto = <span class="cstat-no" title="statement not covered" >target.prototype;</span>
<span class="cstat-no" title="statement not covered" >      if (!ES.TypeIsObject(proto)) {</span>
<span class="cstat-no" title="statement not covered" >        proto = Object.prototype;</span>
      }
      var obj = <span class="cstat-no" title="statement not covered" >create(proto);</span>
      // Call the constructor.
      var result = <span class="cstat-no" title="statement not covered" >ES.Call(C, obj, args);</span>
<span class="cstat-no" title="statement not covered" >      return ES.TypeIsObject(result) ? result : obj;</span>
    },
&nbsp;
    SpeciesConstructor: <span class="fstat-no" title="function not covered" >fu</span>nction (O, defaultConstructor) {
      var C = <span class="cstat-no" title="statement not covered" >O.constructor;</span>
<span class="cstat-no" title="statement not covered" >      if (C === void 0) {</span>
<span class="cstat-no" title="statement not covered" >        return defaultConstructor;</span>
      }
<span class="cstat-no" title="statement not covered" >      if (!ES.TypeIsObject(C)) {</span>
<span class="cstat-no" title="statement not covered" >        throw new TypeError('Bad constructor');</span>
      }
      var S = <span class="cstat-no" title="statement not covered" >C[symbolSpecies];</span>
<span class="cstat-no" title="statement not covered" >      if (isNullOrUndefined(S)) {</span>
<span class="cstat-no" title="statement not covered" >        return defaultConstructor;</span>
      }
<span class="cstat-no" title="statement not covered" >      if (!ES.IsConstructor(S)) {</span>
<span class="cstat-no" title="statement not covered" >        throw new TypeError('Bad @@species');</span>
      }
<span class="cstat-no" title="statement not covered" >      return S;</span>
    },
&nbsp;
    CreateHTML: <span class="fstat-no" title="function not covered" >fu</span>nction (string, tag, attribute, value) {
      var S = <span class="cstat-no" title="statement not covered" >ES.ToString(string);</span>
      var p1 = <span class="cstat-no" title="statement not covered" >'&lt;' + tag;</span>
<span class="cstat-no" title="statement not covered" >      if (attribute !== '') {</span>
        var V = <span class="cstat-no" title="statement not covered" >ES.ToString(value);</span>
        var escapedV = <span class="cstat-no" title="statement not covered" >V.replace(/"/g, '&amp;quot;');</span>
<span class="cstat-no" title="statement not covered" >        p1 += ' ' + attribute + '="' + escapedV + '"';</span>
      }
      var p2 = <span class="cstat-no" title="statement not covered" >p1 + '&gt;';</span>
      var p3 = <span class="cstat-no" title="statement not covered" >p2 + S;</span>
<span class="cstat-no" title="statement not covered" >      return p3 + '&lt;/' + tag + '&gt;';</span>
    },
&nbsp;
    IsRegExp: function <span class="fstat-no" title="function not covered" >IsRegExp(</span>argument) {
<span class="cstat-no" title="statement not covered" >      if (!ES.TypeIsObject(argument)) {</span>
<span class="cstat-no" title="statement not covered" >        return false;</span>
      }
      var isRegExp = <span class="cstat-no" title="statement not covered" >argument[Symbol.match];</span>
<span class="cstat-no" title="statement not covered" >      if (typeof isRegExp !== 'undefined') {</span>
<span class="cstat-no" title="statement not covered" >        return !!isRegExp;</span>
      }
<span class="cstat-no" title="statement not covered" >      return Type.regex(argument);</span>
    },
&nbsp;
    ToString: function <span class="fstat-no" title="function not covered" >ToString(</span>string) {
<span class="cstat-no" title="statement not covered" >      if (hasSymbols &amp;&amp; _toString(string) === '[object Symbol]') {</span>
<span class="cstat-no" title="statement not covered" >        throw new TypeError('Cannot convert a Symbol value to a number');</span>
      }
<span class="cstat-no" title="statement not covered" >      return $String(string);</span>
    }
  };
&nbsp;
  // Well-known Symbol shims
  <span class="missing-if-branch" title="else path not taken" >E</span>if (supportsDescriptors &amp;&amp; hasSymbols) {
    var defineWellKnownSymbol = function <span class="fstat-no" title="function not covered" >defineWellKnownSymbol(</span>name) {
<span class="cstat-no" title="statement not covered" >      if (Type.symbol(Symbol[name])) {</span>
<span class="cstat-no" title="statement not covered" >        return Symbol[name];</span>
      }
      // eslint-disable-next-line no-restricted-properties
      var sym = <span class="cstat-no" title="statement not covered" >Symbol['for']('Symbol.' + name);</span>
<span class="cstat-no" title="statement not covered" >      Object.defineProperty(Symbol, name, {</span>
        configurable: false,
        enumerable: false,
        writable: false,
        value: sym
      });
<span class="cstat-no" title="statement not covered" >      return sym;</span>
    };
    <span class="missing-if-branch" title="if path not taken" >I</span>if (!Type.symbol(Symbol.search)) {
      var symbolSearch = <span class="cstat-no" title="statement not covered" >defineWellKnownSymbol('search');</span>
      var originalSearch = <span class="cstat-no" title="statement not covered" >String.prototype.search;</span>
<span class="cstat-no" title="statement not covered" >      defineProperty(RegExp.prototype, symbolSearch, function <span class="fstat-no" title="function not covered" >search(</span>string) {</span>
<span class="cstat-no" title="statement not covered" >        return ES.Call(originalSearch, string, [this]);</span>
      });
      var searchShim = <span class="cstat-no" title="statement not covered" >function <span class="fstat-no" title="function not covered" >search(</span>regexp) {</span>
        var O = <span class="cstat-no" title="statement not covered" >ES.RequireObjectCoercible(this);</span>
<span class="cstat-no" title="statement not covered" >        if (!isNullOrUndefined(regexp)) {</span>
          var searcher = <span class="cstat-no" title="statement not covered" >ES.GetMethod(regexp, symbolSearch);</span>
<span class="cstat-no" title="statement not covered" >          if (typeof searcher !== 'undefined') {</span>
<span class="cstat-no" title="statement not covered" >            return ES.Call(searcher, regexp, [O]);</span>
          }
        }
<span class="cstat-no" title="statement not covered" >        return ES.Call(originalSearch, O, [ES.ToString(regexp)]);</span>
      };
<span class="cstat-no" title="statement not covered" >      overrideNative(String.prototype, 'search', searchShim);</span>
    }
    <span class="missing-if-branch" title="if path not taken" >I</span>if (!Type.symbol(Symbol.replace)) {
      var symbolReplace = <span class="cstat-no" title="statement not covered" >defineWellKnownSymbol('replace');</span>
      var originalReplace = <span class="cstat-no" title="statement not covered" >String.prototype.replace;</span>
<span class="cstat-no" title="statement not covered" >      defineProperty(RegExp.prototype, symbolReplace, function <span class="fstat-no" title="function not covered" >replace(</span>string, replaceValue) {</span>
<span class="cstat-no" title="statement not covered" >        return ES.Call(originalReplace, string, [this, replaceValue]);</span>
      });
      var replaceShim = <span class="cstat-no" title="statement not covered" >function <span class="fstat-no" title="function not covered" >replace(</span>searchValue, replaceValue) {</span>
        var O = <span class="cstat-no" title="statement not covered" >ES.RequireObjectCoercible(this);</span>
<span class="cstat-no" title="statement not covered" >        if (!isNullOrUndefined(searchValue)) {</span>
          var replacer = <span class="cstat-no" title="statement not covered" >ES.GetMethod(searchValue, symbolReplace);</span>
<span class="cstat-no" title="statement not covered" >          if (typeof replacer !== 'undefined') {</span>
<span class="cstat-no" title="statement not covered" >            return ES.Call(replacer, searchValue, [O, replaceValue]);</span>
          }
        }
<span class="cstat-no" title="statement not covered" >        return ES.Call(originalReplace, O, [ES.ToString(searchValue), replaceValue]);</span>
      };
<span class="cstat-no" title="statement not covered" >      overrideNative(String.prototype, 'replace', replaceShim);</span>
    }
    <span class="missing-if-branch" title="if path not taken" >I</span>if (!Type.symbol(Symbol.split)) {
      var symbolSplit = <span class="cstat-no" title="statement not covered" >defineWellKnownSymbol('split');</span>
      var originalSplit = <span class="cstat-no" title="statement not covered" >String.prototype.split;</span>
<span class="cstat-no" title="statement not covered" >      defineProperty(RegExp.prototype, symbolSplit, function <span class="fstat-no" title="function not covered" >split(</span>string, limit) {</span>
<span class="cstat-no" title="statement not covered" >        return ES.Call(originalSplit, string, [this, limit]);</span>
      });
      var splitShim = <span class="cstat-no" title="statement not covered" >function <span class="fstat-no" title="function not covered" >split(</span>separator, limit) {</span>
        var O = <span class="cstat-no" title="statement not covered" >ES.RequireObjectCoercible(this);</span>
<span class="cstat-no" title="statement not covered" >        if (!isNullOrUndefined(separator)) {</span>
          var splitter = <span class="cstat-no" title="statement not covered" >ES.GetMethod(separator, symbolSplit);</span>
<span class="cstat-no" title="statement not covered" >          if (typeof splitter !== 'undefined') {</span>
<span class="cstat-no" title="statement not covered" >            return ES.Call(splitter, separator, [O, limit]);</span>
          }
        }
<span class="cstat-no" title="statement not covered" >        return ES.Call(originalSplit, O, [ES.ToString(separator), limit]);</span>
      };
<span class="cstat-no" title="statement not covered" >      overrideNative(String.prototype, 'split', splitShim);</span>
    }
    var symbolMatchExists = Type.symbol(Symbol.match);
    var stringMatchIgnoresSymbolMatch = symbolMatchExists &amp;&amp; (function () {
      // Firefox 41, through Nightly 45 has Symbol.match, but String#match ignores it.
      // Firefox 40 and below have Symbol.match but String#match works fine.
      var o = {};
      o[Symbol.match] = function () { return 42; };
      return 'a'.match(o) !== 42;
    }());
    <span class="missing-if-branch" title="if path not taken" >I</span>if (!symbolMatchExists || stringMatchIgnoresSymbolMatch) {
      var symbolMatch = <span class="cstat-no" title="statement not covered" >defineWellKnownSymbol('match');</span>
&nbsp;
      var originalMatch = <span class="cstat-no" title="statement not covered" >String.prototype.match;</span>
<span class="cstat-no" title="statement not covered" >      defineProperty(RegExp.prototype, symbolMatch, function <span class="fstat-no" title="function not covered" >match(</span>string) {</span>
<span class="cstat-no" title="statement not covered" >        return ES.Call(originalMatch, string, [this]);</span>
      });
&nbsp;
      var matchShim = <span class="cstat-no" title="statement not covered" >function <span class="fstat-no" title="function not covered" >match(</span>regexp) {</span>
        var O = <span class="cstat-no" title="statement not covered" >ES.RequireObjectCoercible(this);</span>
<span class="cstat-no" title="statement not covered" >        if (!isNullOrUndefined(regexp)) {</span>
          var matcher = <span class="cstat-no" title="statement not covered" >ES.GetMethod(regexp, symbolMatch);</span>
<span class="cstat-no" title="statement not covered" >          if (typeof matcher !== 'undefined') {</span>
<span class="cstat-no" title="statement not covered" >            return ES.Call(matcher, regexp, [O]);</span>
          }
        }
<span class="cstat-no" title="statement not covered" >        return ES.Call(originalMatch, O, [ES.ToString(regexp)]);</span>
      };
<span class="cstat-no" title="statement not covered" >      overrideNative(String.prototype, 'match', matchShim);</span>
    }
  }
&nbsp;
  var wrapConstructor = function <span class="fstat-no" title="function not covered" >wrapConstructor(</span>original, replacement, keysToSkip) {
<span class="cstat-no" title="statement not covered" >    Value.preserveToString(replacement, original);</span>
<span class="cstat-no" title="statement not covered" >    if (Object.setPrototypeOf) {</span>
      // sets up proper prototype chain where possible
<span class="cstat-no" title="statement not covered" >      Object.setPrototypeOf(original, replacement);</span>
    }
<span class="cstat-no" title="statement not covered" >    if (supportsDescriptors) {</span>
<span class="cstat-no" title="statement not covered" >      _forEach(Object.getOwnPropertyNames(original), <span class="fstat-no" title="function not covered" >fu</span>nction (key) {</span>
<span class="cstat-no" title="statement not covered" >        if (key in noop || keysToSkip[key]) { <span class="cstat-no" title="statement not covered" >return; </span>}</span>
<span class="cstat-no" title="statement not covered" >        Value.proxy(original, key, replacement);</span>
      });
    } else {
<span class="cstat-no" title="statement not covered" >      _forEach(Object.keys(original), <span class="fstat-no" title="function not covered" >fu</span>nction (key) {</span>
<span class="cstat-no" title="statement not covered" >        if (key in noop || keysToSkip[key]) { <span class="cstat-no" title="statement not covered" >return; </span>}</span>
<span class="cstat-no" title="statement not covered" >        replacement[key] = original[key];</span>
      });
    }
<span class="cstat-no" title="statement not covered" >    replacement.prototype = original.prototype;</span>
<span class="cstat-no" title="statement not covered" >    Value.redefine(original.prototype, 'constructor', replacement);</span>
  };
&nbsp;
  var defaultSpeciesGetter = <span class="fstat-no" title="function not covered" >fu</span>nction () { <span class="cstat-no" title="statement not covered" >return this; </span>};
  var addDefaultSpecies = function (C) {
    <span class="missing-if-branch" title="if path not taken" >I</span>if (supportsDescriptors &amp;&amp; !_hasOwnProperty(C, symbolSpecies)) {
<span class="cstat-no" title="statement not covered" >      Value.getter(C, symbolSpecies, defaultSpeciesGetter);</span>
    }
  };
&nbsp;
  var addIterator = function (prototype, impl) {
    var implementation = impl || function <span class="fstat-no" title="function not covered" >iterator(</span>) { <span class="cstat-no" title="statement not covered" >return this; </span>};
    defineProperty(prototype, $iterator$, implementation);
    <span class="missing-if-branch" title="if path not taken" >I</span>if (!prototype[$iterator$] &amp;&amp; <span class="branch-1 cbranch-no" title="branch not covered" >Type.symbol($iterator$))</span> {
      // implementations are buggy when $iterator$ is a Symbol
<span class="cstat-no" title="statement not covered" >      prototype[$iterator$] = implementation;</span>
    }
  };
&nbsp;
  var createDataProperty = function <span class="fstat-no" title="function not covered" >createDataProperty(</span>object, name, value) {
<span class="cstat-no" title="statement not covered" >    if (supportsDescriptors) {</span>
<span class="cstat-no" title="statement not covered" >      Object.defineProperty(object, name, {</span>
        configurable: true,
        enumerable: true,
        writable: true,
        value: value
      });
    } else {
<span class="cstat-no" title="statement not covered" >      object[name] = value;</span>
    }
  };
  var createDataPropertyOrThrow = function <span class="fstat-no" title="function not covered" >createDataPropertyOrThrow(</span>object, name, value) {
<span class="cstat-no" title="statement not covered" >    createDataProperty(object, name, value);</span>
<span class="cstat-no" title="statement not covered" >    if (!ES.SameValue(object[name], value)) {</span>
<span class="cstat-no" title="statement not covered" >      throw new TypeError('property is nonconfigurable');</span>
    }
  };
&nbsp;
  var emulateES6construct = function (o, defaultNewTarget, defaultProto, slots) {
    // This is an es5 approximation to es6 construct semantics.  in es6,
    // 'new Foo' invokes Foo.[[Construct]] which (for almost all objects)
    // just sets the internal variable NewTarget (in es6 syntax `new.target`)
    // to Foo and then returns Foo().
&nbsp;
    // Many ES6 object then have constructors of the form:
    // 1. If NewTarget is undefined, throw a TypeError exception
    // 2. Let xxx by OrdinaryCreateFromConstructor(NewTarget, yyy, zzz)
&nbsp;
    // So we're going to emulate those first two steps.
    <span class="missing-if-branch" title="if path not taken" >I</span>if (!ES.TypeIsObject(o)) {
<span class="cstat-no" title="statement not covered" >      throw new TypeError('Constructor requires `new`: ' + defaultNewTarget.name);</span>
    }
    var proto = defaultNewTarget.prototype;
    <span class="missing-if-branch" title="if path not taken" >I</span>if (!ES.TypeIsObject(proto)) {
<span class="cstat-no" title="statement not covered" >      proto = defaultProto;</span>
    }
    var obj = create(proto);
    for (var name in slots) {
      <span class="missing-if-branch" title="else path not taken" >E</span>if (_hasOwnProperty(slots, name)) {
        var value = slots[name];
        defineProperty(obj, name, value, true);
      }
    }
    return obj;
  };
&nbsp;
  // Firefox 31 reports this function's length as 0
  // https://bugzilla.mozilla.org/show_bug.cgi?id=1062484
  <span class="missing-if-branch" title="if path not taken" >I</span>if (String.fromCodePoint &amp;&amp; String.fromCodePoint.length !== 1) {
    var originalFromCodePoint = <span class="cstat-no" title="statement not covered" >String.fromCodePoint;</span>
<span class="cstat-no" title="statement not covered" >    overrideNative(String, 'fromCodePoint', function <span class="fstat-no" title="function not covered" >fromCodePoint(</span>codePoints) {</span>
<span class="cstat-no" title="statement not covered" >      return ES.Call(originalFromCodePoint, this, arguments);</span>
    });
  }
&nbsp;
  var StringShims = {
    fromCodePoint: function <span class="fstat-no" title="function not covered" >fromCodePoint(</span>codePoints) {
      var result = <span class="cstat-no" title="statement not covered" >[];</span>
      var next;
<span class="cstat-no" title="statement not covered" >      for (var i = 0, length = arguments.length; i &lt; length; i++) {</span>
<span class="cstat-no" title="statement not covered" >        next = Number(arguments[i]);</span>
<span class="cstat-no" title="statement not covered" >        if (!ES.SameValue(next, ES.ToInteger(next)) || next &lt; 0 || next &gt; 0x10FFFF) {</span>
<span class="cstat-no" title="statement not covered" >          throw new RangeError('Invalid code point ' + next);</span>
        }
&nbsp;
<span class="cstat-no" title="statement not covered" >        if (next &lt; 0x10000) {</span>
<span class="cstat-no" title="statement not covered" >          _push(result, String.fromCharCode(next));</span>
        } else {
<span class="cstat-no" title="statement not covered" >          next -= 0x10000;</span>
<span class="cstat-no" title="statement not covered" >          _push(result, String.fromCharCode((next &gt;&gt; 10) + 0xD800));</span>
<span class="cstat-no" title="statement not covered" >          _push(result, String.fromCharCode((next % 0x400) + 0xDC00));</span>
        }
      }
<span class="cstat-no" title="statement not covered" >      return _join(result, '');</span>
    },
&nbsp;
    raw: function <span class="fstat-no" title="function not covered" >raw(</span>template) {
      var numberOfSubstitutions = <span class="cstat-no" title="statement not covered" >arguments.length - 1;</span>
      var cooked = <span class="cstat-no" title="statement not covered" >ES.ToObject(template, 'bad template');</span>
      var raw = <span class="cstat-no" title="statement not covered" >ES.ToObject(cooked.raw, 'bad raw value');</span>
      var len = <span class="cstat-no" title="statement not covered" >raw.length;</span>
      var literalSegments = <span class="cstat-no" title="statement not covered" >ES.ToLength(len);</span>
<span class="cstat-no" title="statement not covered" >      if (literalSegments &lt;= 0) {</span>
<span class="cstat-no" title="statement not covered" >        return '';</span>
      }
&nbsp;
      var stringElements = <span class="cstat-no" title="statement not covered" >[];</span>
      var nextIndex = <span class="cstat-no" title="statement not covered" >0;</span>
      var nextKey, next, nextSeg, nextSub;
<span class="cstat-no" title="statement not covered" >      while (nextIndex &lt; literalSegments) {</span>
<span class="cstat-no" title="statement not covered" >        nextKey = ES.ToString(nextIndex);</span>
<span class="cstat-no" title="statement not covered" >        nextSeg = ES.ToString(raw[nextKey]);</span>
<span class="cstat-no" title="statement not covered" >        _push(stringElements, nextSeg);</span>
<span class="cstat-no" title="statement not covered" >        if (nextIndex + 1 &gt;= literalSegments) {</span>
<span class="cstat-no" title="statement not covered" >          break;</span>
        }
<span class="cstat-no" title="statement not covered" >        next = nextIndex + 1 &lt; arguments.length ? arguments[nextIndex + 1] : '';</span>
<span class="cstat-no" title="statement not covered" >        nextSub = ES.ToString(next);</span>
<span class="cstat-no" title="statement not covered" >        _push(stringElements, nextSub);</span>
<span class="cstat-no" title="statement not covered" >        nextIndex += 1;</span>
      }
<span class="cstat-no" title="statement not covered" >      return _join(stringElements, '');</span>
    }
  };
  <span class="missing-if-branch" title="if path not taken" >I</span>if (String.raw &amp;&amp; String.raw({ raw: { 0: 'x', 1: 'y', length: 2 } }) !== 'xy') {
    // IE 11 TP has a broken String.raw implementation
<span class="cstat-no" title="statement not covered" >    overrideNative(String, 'raw', StringShims.raw);</span>
  }
  defineProperties(String, StringShims);
&nbsp;
  // Fast repeat, uses the `Exponentiation by squaring` algorithm.
  // Perf: http://jsperf.com/string-repeat2/2
  var stringRepeat = function <span class="fstat-no" title="function not covered" >repeat(</span>s, times) {
<span class="cstat-no" title="statement not covered" >    if (times &lt; 1) { <span class="cstat-no" title="statement not covered" >return ''; </span>}</span>
<span class="cstat-no" title="statement not covered" >    if (times % 2) { <span class="cstat-no" title="statement not covered" >return repeat(s, times - 1) + s; </span>}</span>
    var half = <span class="cstat-no" title="statement not covered" >repeat(s, times / 2);</span>
<span class="cstat-no" title="statement not covered" >    return half + half;</span>
  };
  var stringMaxLength = Infinity;
&nbsp;
  var StringPrototypeShims = {
    repeat: function <span class="fstat-no" title="function not covered" >repeat(</span>times) {
      var thisStr = <span class="cstat-no" title="statement not covered" >ES.ToString(ES.RequireObjectCoercible(this));</span>
      var numTimes = <span class="cstat-no" title="statement not covered" >ES.ToInteger(times);</span>
<span class="cstat-no" title="statement not covered" >      if (numTimes &lt; 0 || numTimes &gt;= stringMaxLength) {</span>
<span class="cstat-no" title="statement not covered" >        throw new RangeError('repeat count must be less than infinity and not overflow maximum string size');</span>
      }
<span class="cstat-no" title="statement not covered" >      return stringRepeat(thisStr, numTimes);</span>
    },
&nbsp;
    startsWith: function <span class="fstat-no" title="function not covered" >startsWith(</span>searchString) {
      var S = <span class="cstat-no" title="statement not covered" >ES.ToString(ES.RequireObjectCoercible(this));</span>
<span class="cstat-no" title="statement not covered" >      if (ES.IsRegExp(searchString)) {</span>
<span class="cstat-no" title="statement not covered" >        throw new TypeError('Cannot call method "startsWith" with a regex');</span>
      }
      var searchStr = <span class="cstat-no" title="statement not covered" >ES.ToString(searchString);</span>
      var position;
<span class="cstat-no" title="statement not covered" >      if (arguments.length &gt; 1) {</span>
<span class="cstat-no" title="statement not covered" >        position = arguments[1];</span>
      }
      var start = <span class="cstat-no" title="statement not covered" >_max(ES.ToInteger(position), 0);</span>
<span class="cstat-no" title="statement not covered" >      return _strSlice(S, start, start + searchStr.length) === searchStr;</span>
    },
&nbsp;
    endsWith: function <span class="fstat-no" title="function not covered" >endsWith(</span>searchString) {
      var S = <span class="cstat-no" title="statement not covered" >ES.ToString(ES.RequireObjectCoercible(this));</span>
<span class="cstat-no" title="statement not covered" >      if (ES.IsRegExp(searchString)) {</span>
<span class="cstat-no" title="statement not covered" >        throw new TypeError('Cannot call method "endsWith" with a regex');</span>
      }
      var searchStr = <span class="cstat-no" title="statement not covered" >ES.ToString(searchString);</span>
      var len = <span class="cstat-no" title="statement not covered" >S.length;</span>
      var endPosition;
<span class="cstat-no" title="statement not covered" >      if (arguments.length &gt; 1) {</span>
<span class="cstat-no" title="statement not covered" >        endPosition = arguments[1];</span>
      }
      var pos = <span class="cstat-no" title="statement not covered" >typeof endPosition === 'undefined' ? len : ES.ToInteger(endPosition);</span>
      var end = <span class="cstat-no" title="statement not covered" >_min(_max(pos, 0), len);</span>
<span class="cstat-no" title="statement not covered" >      return _strSlice(S, end - searchStr.length, end) === searchStr;</span>
    },
&nbsp;
    includes: function <span class="fstat-no" title="function not covered" >includes(</span>searchString) {
<span class="cstat-no" title="statement not covered" >      if (ES.IsRegExp(searchString)) {</span>
<span class="cstat-no" title="statement not covered" >        throw new TypeError('"includes" does not accept a RegExp');</span>
      }
      var searchStr = <span class="cstat-no" title="statement not covered" >ES.ToString(searchString);</span>
      var position;
<span class="cstat-no" title="statement not covered" >      if (arguments.length &gt; 1) {</span>
<span class="cstat-no" title="statement not covered" >        position = arguments[1];</span>
      }
      // Somehow this trick makes method 100% compat with the spec.
<span class="cstat-no" title="statement not covered" >      return _indexOf(this, searchStr, position) !== -1;</span>
    },
&nbsp;
    codePointAt: function <span class="fstat-no" title="function not covered" >codePointAt(</span>pos) {
      var thisStr = <span class="cstat-no" title="statement not covered" >ES.ToString(ES.RequireObjectCoercible(this));</span>
      var position = <span class="cstat-no" title="statement not covered" >ES.ToInteger(pos);</span>
      var length = <span class="cstat-no" title="statement not covered" >thisStr.length;</span>
<span class="cstat-no" title="statement not covered" >      if (position &gt;= 0 &amp;&amp; position &lt; length) {</span>
        var first = <span class="cstat-no" title="statement not covered" >thisStr.charCodeAt(position);</span>
        var isEnd = <span class="cstat-no" title="statement not covered" >position + 1 === length;</span>
<span class="cstat-no" title="statement not covered" >        if (first &lt; 0xD800 || first &gt; 0xDBFF || isEnd) { <span class="cstat-no" title="statement not covered" >return first; </span>}</span>
        var second = <span class="cstat-no" title="statement not covered" >thisStr.charCodeAt(position + 1);</span>
<span class="cstat-no" title="statement not covered" >        if (second &lt; 0xDC00 || second &gt; 0xDFFF) { <span class="cstat-no" title="statement not covered" >return first; </span>}</span>
<span class="cstat-no" title="statement not covered" >        return ((first - 0xD800) * 1024) + (second - 0xDC00) + 0x10000;</span>
      }
    }
  };
  <span class="missing-if-branch" title="if path not taken" >I</span>if (String.prototype.includes &amp;&amp; 'a'.includes('a', Infinity) !== false) {
<span class="cstat-no" title="statement not covered" >    overrideNative(String.prototype, 'includes', StringPrototypeShims.includes);</span>
  }
&nbsp;
  <span class="missing-if-branch" title="else path not taken" >E</span>if (String.prototype.startsWith &amp;&amp; String.prototype.endsWith) {
    var startsWithRejectsRegex = throwsError(function () {
      /* throws if spec-compliant */
      return '/a/'.startsWith(/a/);
    });
    var startsWithHandlesInfinity = valueOrFalseIfThrows(function () {
      return 'abc'.startsWith('a', Infinity) === false;
    });
    <span class="missing-if-branch" title="if path not taken" >I</span>if (!startsWithRejectsRegex || !startsWithHandlesInfinity) {
      // Firefox (&lt; 37?) and IE 11 TP have a noncompliant startsWith implementation
<span class="cstat-no" title="statement not covered" >      overrideNative(String.prototype, 'startsWith', StringPrototypeShims.startsWith);</span>
<span class="cstat-no" title="statement not covered" >      overrideNative(String.prototype, 'endsWith', StringPrototypeShims.endsWith);</span>
    }
  }
  <span class="missing-if-branch" title="else path not taken" >E</span>if (hasSymbols) {
    var startsWithSupportsSymbolMatch = valueOrFalseIfThrows(function () {
      var re = /a/;
      re[Symbol.match] = false;
      return '/a/'.startsWith(re);
    });
    <span class="missing-if-branch" title="if path not taken" >I</span>if (!startsWithSupportsSymbolMatch) {
<span class="cstat-no" title="statement not covered" >      overrideNative(String.prototype, 'startsWith', StringPrototypeShims.startsWith);</span>
    }
    var endsWithSupportsSymbolMatch = valueOrFalseIfThrows(function () {
      var re = /a/;
      re[Symbol.match] = false;
      return '/a/'.endsWith(re);
    });
    <span class="missing-if-branch" title="if path not taken" >I</span>if (!endsWithSupportsSymbolMatch) {
<span class="cstat-no" title="statement not covered" >      overrideNative(String.prototype, 'endsWith', StringPrototypeShims.endsWith);</span>
    }
    var includesSupportsSymbolMatch = valueOrFalseIfThrows(function () {
      var re = /a/;
      re[Symbol.match] = false;
      return '/a/'.includes(re);
    });
    <span class="missing-if-branch" title="if path not taken" >I</span>if (!includesSupportsSymbolMatch) {
<span class="cstat-no" title="statement not covered" >      overrideNative(String.prototype, 'includes', StringPrototypeShims.includes);</span>
    }
  }
&nbsp;
  defineProperties(String.prototype, StringPrototypeShims);
&nbsp;
  // whitespace from: http://es5.github.io/#x15.5.4.20
  // implementation from https://github.com/es-shims/es5-shim/blob/v3.4.0/es5-shim.js#L1304-L1324
  var ws = [
    '\x09\x0A\x0B\x0C\x0D\x20\xA0\u1680\u180E\u2000\u2001\u2002\u2003',
    '\u2004\u2005\u2006\u2007\u2008\u2009\u200A\u202F\u205F\u3000\u2028',
    '\u2029\uFEFF'
  ].join('');
  var trimRegexp = new RegExp('(^[' + ws + ']+)|([' + ws + ']+$)', 'g');
  var trimShim = function <span class="fstat-no" title="function not covered" >trim(</span>) {
<span class="cstat-no" title="statement not covered" >    return ES.ToString(ES.RequireObjectCoercible(this)).replace(trimRegexp, '');</span>
  };
  var nonWS = ['\u0085', '\u200b', '\ufffe'].join('');
  var nonWSregex = new RegExp('[' + nonWS + ']', 'g');
  var isBadHexRegex = /^[-+]0x[0-9a-f]+$/i;
  var hasStringTrimBug = nonWS.trim().length !== nonWS.length;
  defineProperty(String.prototype, 'trim', trimShim, hasStringTrimBug);
&nbsp;
  // Given an argument x, it will return an IteratorResult object,
  // with value set to x and done to false.
  // Given no arguments, it will return an iterator completion object.
  var iteratorResult = <span class="fstat-no" title="function not covered" >fu</span>nction (x) {
<span class="cstat-no" title="statement not covered" >    return { value: x, done: arguments.length === 0 };</span>
  };
&nbsp;
  // see http://www.ecma-international.org/ecma-262/6.0/#sec-string.prototype-@@iterator
  var StringIterator = <span class="fstat-no" title="function not covered" >fu</span>nction (s) {
<span class="cstat-no" title="statement not covered" >    ES.RequireObjectCoercible(s);</span>
<span class="cstat-no" title="statement not covered" >    defineProperty(this, '_s', ES.ToString(s));</span>
<span class="cstat-no" title="statement not covered" >    defineProperty(this, '_i', 0);</span>
  };
  StringIterator.prototype.next = <span class="fstat-no" title="function not covered" >fu</span>nction () {
    var s = <span class="cstat-no" title="statement not covered" >this._s;</span>
    var i = <span class="cstat-no" title="statement not covered" >this._i;</span>
<span class="cstat-no" title="statement not covered" >    if (typeof s === 'undefined' || i &gt;= s.length) {</span>
<span class="cstat-no" title="statement not covered" >      this._s = void 0;</span>
<span class="cstat-no" title="statement not covered" >      return iteratorResult();</span>
    }
    var first = <span class="cstat-no" title="statement not covered" >s.charCodeAt(i);</span>
    var second, len;
<span class="cstat-no" title="statement not covered" >    if (first &lt; 0xD800 || first &gt; 0xDBFF || (i + 1) === s.length) {</span>
<span class="cstat-no" title="statement not covered" >      len = 1;</span>
    } else {
<span class="cstat-no" title="statement not covered" >      second = s.charCodeAt(i + 1);</span>
<span class="cstat-no" title="statement not covered" >      len = (second &lt; 0xDC00 || second &gt; 0xDFFF) ? 1 : 2;</span>
    }
<span class="cstat-no" title="statement not covered" >    this._i = i + len;</span>
<span class="cstat-no" title="statement not covered" >    return iteratorResult(s.substr(i, len));</span>
  };
  addIterator(StringIterator.prototype);
  addIterator(String.prototype, <span class="fstat-no" title="function not covered" >fu</span>nction () {
<span class="cstat-no" title="statement not covered" >    return new StringIterator(this);</span>
  });
&nbsp;
  var ArrayShims = {
    from: function <span class="fstat-no" title="function not covered" >from(</span>items) {
      var C = <span class="cstat-no" title="statement not covered" >this;</span>
      var mapFn;
<span class="cstat-no" title="statement not covered" >      if (arguments.length &gt; 1) {</span>
<span class="cstat-no" title="statement not covered" >        mapFn = arguments[1];</span>
      }
      var mapping, T;
<span class="cstat-no" title="statement not covered" >      if (typeof mapFn === 'undefined') {</span>
<span class="cstat-no" title="statement not covered" >        mapping = false;</span>
      } else {
<span class="cstat-no" title="statement not covered" >        if (!ES.IsCallable(mapFn)) {</span>
<span class="cstat-no" title="statement not covered" >          throw new TypeError('Array.from: when provided, the second argument must be a function');</span>
        }
<span class="cstat-no" title="statement not covered" >        if (arguments.length &gt; 2) {</span>
<span class="cstat-no" title="statement not covered" >          T = arguments[2];</span>
        }
<span class="cstat-no" title="statement not covered" >        mapping = true;</span>
      }
&nbsp;
      // Note that that Arrays will use ArrayIterator:
      // https://bugs.ecmascript.org/show_bug.cgi?id=2416
      var usingIterator = <span class="cstat-no" title="statement not covered" >typeof (isArguments(items) || ES.GetMethod(items, $iterator$)) !== 'undefined';</span>
&nbsp;
      var length, result, i;
<span class="cstat-no" title="statement not covered" >      if (usingIterator) {</span>
<span class="cstat-no" title="statement not covered" >        result = ES.IsConstructor(C) ? Object(new C()) : [];</span>
        var iterator = <span class="cstat-no" title="statement not covered" >ES.GetIterator(items);</span>
        var next, nextValue;
&nbsp;
<span class="cstat-no" title="statement not covered" >        i = 0;</span>
<span class="cstat-no" title="statement not covered" >        while (true) {</span>
<span class="cstat-no" title="statement not covered" >          next = ES.IteratorStep(iterator);</span>
<span class="cstat-no" title="statement not covered" >          if (next === false) {</span>
<span class="cstat-no" title="statement not covered" >            break;</span>
          }
<span class="cstat-no" title="statement not covered" >          nextValue = next.value;</span>
<span class="cstat-no" title="statement not covered" >          try {</span>
<span class="cstat-no" title="statement not covered" >            if (mapping) {</span>
<span class="cstat-no" title="statement not covered" >              nextValue = typeof T === 'undefined' ? mapFn(nextValue, i) : _call(mapFn, T, nextValue, i);</span>
            }
<span class="cstat-no" title="statement not covered" >            result[i] = nextValue;</span>
          } catch (e) {
<span class="cstat-no" title="statement not covered" >            ES.IteratorClose(iterator, true);</span>
<span class="cstat-no" title="statement not covered" >            throw e;</span>
          }
<span class="cstat-no" title="statement not covered" >          i += 1;</span>
        }
<span class="cstat-no" title="statement not covered" >        length = i;</span>
      } else {
        var arrayLike = <span class="cstat-no" title="statement not covered" >ES.ToObject(items);</span>
<span class="cstat-no" title="statement not covered" >        length = ES.ToLength(arrayLike.length);</span>
<span class="cstat-no" title="statement not covered" >        result = ES.IsConstructor(C) ? Object(new C(length)) : new Array(length);</span>
        var value;
<span class="cstat-no" title="statement not covered" >        for (i = 0; i &lt; length; ++i) {</span>
<span class="cstat-no" title="statement not covered" >          value = arrayLike[i];</span>
<span class="cstat-no" title="statement not covered" >          if (mapping) {</span>
<span class="cstat-no" title="statement not covered" >            value = typeof T === 'undefined' ? mapFn(value, i) : _call(mapFn, T, value, i);</span>
          }
<span class="cstat-no" title="statement not covered" >          createDataPropertyOrThrow(result, i, value);</span>
        }
      }
&nbsp;
<span class="cstat-no" title="statement not covered" >      result.length = length;</span>
<span class="cstat-no" title="statement not covered" >      return result;</span>
    },
&nbsp;
    of: function <span class="fstat-no" title="function not covered" >of(</span>) {
      var len = <span class="cstat-no" title="statement not covered" >arguments.length;</span>
      var C = <span class="cstat-no" title="statement not covered" >this;</span>
      var A = <span class="cstat-no" title="statement not covered" >isArray(C) || !ES.IsCallable(C) ? new Array(len) : ES.Construct(C, [len]);</span>
<span class="cstat-no" title="statement not covered" >      for (var k = 0; k &lt; len; ++k) {</span>
<span class="cstat-no" title="statement not covered" >        createDataPropertyOrThrow(A, k, arguments[k]);</span>
      }
<span class="cstat-no" title="statement not covered" >      A.length = len;</span>
<span class="cstat-no" title="statement not covered" >      return A;</span>
    }
  };
  defineProperties(Array, ArrayShims);
  addDefaultSpecies(Array);
&nbsp;
  // Our ArrayIterator is private; see
  // https://github.com/paulmillr/es6-shim/issues/252
  ArrayIterator = <span class="fstat-no" title="function not covered" >fu</span>nction (array, kind) {
<span class="cstat-no" title="statement not covered" >    defineProperty(this, 'i', 0);</span>
<span class="cstat-no" title="statement not covered" >    defineProperty(this, 'array', array);</span>
<span class="cstat-no" title="statement not covered" >    defineProperty(this, 'kind', kind);</span>
  };
&nbsp;
  defineProperties(ArrayIterator.prototype, {
    next: <span class="fstat-no" title="function not covered" >fu</span>nction () {
      var i = <span class="cstat-no" title="statement not covered" >this.i;</span>
      var array = <span class="cstat-no" title="statement not covered" >this.array;</span>
<span class="cstat-no" title="statement not covered" >      if (!(this instanceof ArrayIterator)) {</span>
<span class="cstat-no" title="statement not covered" >        throw new TypeError('Not an ArrayIterator');</span>
      }
<span class="cstat-no" title="statement not covered" >      if (typeof array !== 'undefined') {</span>
        var len = <span class="cstat-no" title="statement not covered" >ES.ToLength(array.length);</span>
<span class="cstat-no" title="statement not covered" >        if (i &lt; len) {</span>
        //for (; i &lt; len; i++) {
          var kind = <span class="cstat-no" title="statement not covered" >this.kind;</span>
          var retval;
<span class="cstat-no" title="statement not covered" >          if (kind === 'key') {</span>
<span class="cstat-no" title="statement not covered" >            retval = i;</span>
          } else <span class="cstat-no" title="statement not covered" >if (kind === 'value') {</span>
<span class="cstat-no" title="statement not covered" >            retval = array[i];</span>
          } else <span class="cstat-no" title="statement not covered" >if (kind === 'entry') {</span>
<span class="cstat-no" title="statement not covered" >            retval = [i, array[i]];</span>
          }
<span class="cstat-no" title="statement not covered" >          this.i = i + 1;</span>
<span class="cstat-no" title="statement not covered" >          return iteratorResult(retval);</span>
        }
      }
<span class="cstat-no" title="statement not covered" >      this.array = void 0;</span>
<span class="cstat-no" title="statement not covered" >      return iteratorResult();</span>
    }
  });
  addIterator(ArrayIterator.prototype);
&nbsp;
  /*
  var orderKeys = function orderKeys(a, b) {
    var aNumeric = String(ES.ToInteger(a)) === a;
    var bNumeric = String(ES.ToInteger(b)) === b;
    if (aNumeric &amp;&amp; bNumeric) {
      return b - a;
    } else if (aNumeric &amp;&amp; !bNumeric) {
      return -1;
    } else if (!aNumeric &amp;&amp; bNumeric) {
      return 1;
    } else {
      return a.localeCompare(b);
    }
  };
&nbsp;
  var getAllKeys = function getAllKeys(object) {
    var ownKeys = [];
    var keys = [];
&nbsp;
    for (var key in object) {
      _push(_hasOwnProperty(object, key) ? ownKeys : keys, key);
    }
    _sort(ownKeys, orderKeys);
    _sort(keys, orderKeys);
&nbsp;
    return _concat(ownKeys, keys);
  };
  */
&nbsp;
  // note: this is positioned here because it depends on ArrayIterator
  var arrayOfSupportsSubclassing = Array.of === ArrayShims.of || (function () {
    // Detects a bug in Webkit nightly r181886
    var Foo = function Foo(len) { this.length = len; };
    Foo.prototype = [];
    var fooArr = Array.of.apply(Foo, [1, 2]);
    return fooArr instanceof Foo &amp;&amp; fooArr.length === 2;
  }());
  <span class="missing-if-branch" title="if path not taken" >I</span>if (!arrayOfSupportsSubclassing) {
<span class="cstat-no" title="statement not covered" >    overrideNative(Array, 'of', ArrayShims.of);</span>
  }
&nbsp;
  var ArrayPrototypeShims = {
    copyWithin: function <span class="fstat-no" title="function not covered" >copyWithin(</span>target, start) {
      var o = <span class="cstat-no" title="statement not covered" >ES.ToObject(this);</span>
      var len = <span class="cstat-no" title="statement not covered" >ES.ToLength(o.length);</span>
      var relativeTarget = <span class="cstat-no" title="statement not covered" >ES.ToInteger(target);</span>
      var relativeStart = <span class="cstat-no" title="statement not covered" >ES.ToInteger(start);</span>
      var to = <span class="cstat-no" title="statement not covered" >relativeTarget &lt; 0 ? _max(len + relativeTarget, 0) : _min(relativeTarget, len);</span>
      var from = <span class="cstat-no" title="statement not covered" >relativeStart &lt; 0 ? _max(len + relativeStart, 0) : _min(relativeStart, len);</span>
      var end;
<span class="cstat-no" title="statement not covered" >      if (arguments.length &gt; 2) {</span>
<span class="cstat-no" title="statement not covered" >        end = arguments[2];</span>
      }
      var relativeEnd = <span class="cstat-no" title="statement not covered" >typeof end === 'undefined' ? len : ES.ToInteger(end);</span>
      var finalItem = <span class="cstat-no" title="statement not covered" >relativeEnd &lt; 0 ? _max(len + relativeEnd, 0) : _min(relativeEnd, len);</span>
      var count = <span class="cstat-no" title="statement not covered" >_min(finalItem - from, len - to);</span>
      var direction = <span class="cstat-no" title="statement not covered" >1;</span>
<span class="cstat-no" title="statement not covered" >      if (from &lt; to &amp;&amp; to &lt; (from + count)) {</span>
<span class="cstat-no" title="statement not covered" >        direction = -1;</span>
<span class="cstat-no" title="statement not covered" >        from += count - 1;</span>
<span class="cstat-no" title="statement not covered" >        to += count - 1;</span>
      }
<span class="cstat-no" title="statement not covered" >      while (count &gt; 0) {</span>
<span class="cstat-no" title="statement not covered" >        if (from in o) {</span>
<span class="cstat-no" title="statement not covered" >          o[to] = o[from];</span>
        } else {
<span class="cstat-no" title="statement not covered" >          delete o[to];</span>
        }
<span class="cstat-no" title="statement not covered" >        from += direction;</span>
<span class="cstat-no" title="statement not covered" >        to += direction;</span>
<span class="cstat-no" title="statement not covered" >        count -= 1;</span>
      }
<span class="cstat-no" title="statement not covered" >      return o;</span>
    },
&nbsp;
    fill: function <span class="fstat-no" title="function not covered" >fill(</span>value) {
      var start;
<span class="cstat-no" title="statement not covered" >      if (arguments.length &gt; 1) {</span>
<span class="cstat-no" title="statement not covered" >        start = arguments[1];</span>
      }
      var end;
<span class="cstat-no" title="statement not covered" >      if (arguments.length &gt; 2) {</span>
<span class="cstat-no" title="statement not covered" >        end = arguments[2];</span>
      }
      var O = <span class="cstat-no" title="statement not covered" >ES.ToObject(this);</span>
      var len = <span class="cstat-no" title="statement not covered" >ES.ToLength(O.length);</span>
<span class="cstat-no" title="statement not covered" >      start = ES.ToInteger(typeof start === 'undefined' ? 0 : start);</span>
<span class="cstat-no" title="statement not covered" >      end = ES.ToInteger(typeof end === 'undefined' ? len : end);</span>
&nbsp;
      var relativeStart = <span class="cstat-no" title="statement not covered" >start &lt; 0 ? _max(len + start, 0) : _min(start, len);</span>
      var relativeEnd = <span class="cstat-no" title="statement not covered" >end &lt; 0 ? len + end : end;</span>
&nbsp;
<span class="cstat-no" title="statement not covered" >      for (var i = relativeStart; i &lt; len &amp;&amp; i &lt; relativeEnd; ++i) {</span>
<span class="cstat-no" title="statement not covered" >        O[i] = value;</span>
      }
<span class="cstat-no" title="statement not covered" >      return O;</span>
    },
&nbsp;
    find: function <span class="fstat-no" title="function not covered" >find(</span>predicate) {
      var list = <span class="cstat-no" title="statement not covered" >ES.ToObject(this);</span>
      var length = <span class="cstat-no" title="statement not covered" >ES.ToLength(list.length);</span>
<span class="cstat-no" title="statement not covered" >      if (!ES.IsCallable(predicate)) {</span>
<span class="cstat-no" title="statement not covered" >        throw new TypeError('Array#find: predicate must be a function');</span>
      }
      var thisArg = <span class="cstat-no" title="statement not covered" >arguments.length &gt; 1 ? arguments[1] : null;</span>
<span class="cstat-no" title="statement not covered" >      for (var i = 0, value; i &lt; length; i++) {</span>
<span class="cstat-no" title="statement not covered" >        value = list[i];</span>
<span class="cstat-no" title="statement not covered" >        if (thisArg) {</span>
<span class="cstat-no" title="statement not covered" >          if (_call(predicate, thisArg, value, i, list)) {</span>
<span class="cstat-no" title="statement not covered" >            return value;</span>
          }
        } else <span class="cstat-no" title="statement not covered" >if (predicate(value, i, list)) {</span>
<span class="cstat-no" title="statement not covered" >          return value;</span>
        }
      }
    },
&nbsp;
    findIndex: function <span class="fstat-no" title="function not covered" >findIndex(</span>predicate) {
      var list = <span class="cstat-no" title="statement not covered" >ES.ToObject(this);</span>
      var length = <span class="cstat-no" title="statement not covered" >ES.ToLength(list.length);</span>
<span class="cstat-no" title="statement not covered" >      if (!ES.IsCallable(predicate)) {</span>
<span class="cstat-no" title="statement not covered" >        throw new TypeError('Array#findIndex: predicate must be a function');</span>
      }
      var thisArg = <span class="cstat-no" title="statement not covered" >arguments.length &gt; 1 ? arguments[1] : null;</span>
<span class="cstat-no" title="statement not covered" >      for (var i = 0; i &lt; length; i++) {</span>
<span class="cstat-no" title="statement not covered" >        if (thisArg) {</span>
<span class="cstat-no" title="statement not covered" >          if (_call(predicate, thisArg, list[i], i, list)) {</span>
<span class="cstat-no" title="statement not covered" >            return i;</span>
          }
        } else <span class="cstat-no" title="statement not covered" >if (predicate(list[i], i, list)) {</span>
<span class="cstat-no" title="statement not covered" >          return i;</span>
        }
      }
<span class="cstat-no" title="statement not covered" >      return -1;</span>
    },
&nbsp;
    keys: function <span class="fstat-no" title="function not covered" >keys(</span>) {
<span class="cstat-no" title="statement not covered" >      return new ArrayIterator(this, 'key');</span>
    },
&nbsp;
    values: function <span class="fstat-no" title="function not covered" >values(</span>) {
<span class="cstat-no" title="statement not covered" >      return new ArrayIterator(this, 'value');</span>
    },
&nbsp;
    entries: function <span class="fstat-no" title="function not covered" >entries(</span>) {
<span class="cstat-no" title="statement not covered" >      return new ArrayIterator(this, 'entry');</span>
    }
  };
  // Safari 7.1 defines Array#keys and Array#entries natively,
  // but the resulting ArrayIterator objects don't have a "next" method.
  <span class="missing-if-branch" title="if path not taken" >I</span>if (Array.prototype.keys &amp;&amp; !ES.IsCallable([1].keys().next)) {
<span class="cstat-no" title="statement not covered" >    delete Array.prototype.keys;</span>
  }
  <span class="missing-if-branch" title="if path not taken" >I</span>if (Array.prototype.entries &amp;&amp; !ES.IsCallable([1].entries().next)) {
<span class="cstat-no" title="statement not covered" >    delete Array.prototype.entries;</span>
  }
&nbsp;
  // Chrome 38 defines Array#keys and Array#entries, and Array#@@iterator, but not Array#values
  <span class="missing-if-branch" title="if path not taken" >I</span>if (Array.prototype.keys &amp;&amp; Array.prototype.entries &amp;&amp; !Array.prototype.values &amp;&amp; <span class="branch-3 cbranch-no" title="branch not covered" >Array.prototype[$iterator$])</span> {
<span class="cstat-no" title="statement not covered" >    defineProperties(Array.prototype, {</span>
      values: Array.prototype[$iterator$]
    });
<span class="cstat-no" title="statement not covered" >    if (Type.symbol(Symbol.unscopables)) {</span>
<span class="cstat-no" title="statement not covered" >      Array.prototype[Symbol.unscopables].values = true;</span>
    }
  }
  // Chrome 40 defines Array#values with the incorrect name, although Array#{keys,entries} have the correct name
  <span class="missing-if-branch" title="if path not taken" >I</span>if (functionsHaveNames &amp;&amp; Array.prototype.values &amp;&amp; Array.prototype.values.name !== 'values') {
    var originalArrayPrototypeValues = <span class="cstat-no" title="statement not covered" >Array.prototype.values;</span>
<span class="cstat-no" title="statement not covered" >    overrideNative(Array.prototype, 'values', function <span class="fstat-no" title="function not covered" >values(</span>) { <span class="cstat-no" title="statement not covered" >return ES.Call(originalArrayPrototypeValues, this, arguments); </span>});</span>
<span class="cstat-no" title="statement not covered" >    defineProperty(Array.prototype, $iterator$, Array.prototype.values, true);</span>
  }
  defineProperties(Array.prototype, ArrayPrototypeShims);
&nbsp;
  <span class="missing-if-branch" title="if path not taken" >I</span>if (1 / [true].indexOf(true, -0) &lt; 0) {
    // indexOf when given a position arg of -0 should return +0.
    // https://github.com/tc39/ecma262/pull/316
<span class="cstat-no" title="statement not covered" >    defineProperty(Array.prototype, 'indexOf', function <span class="fstat-no" title="function not covered" >indexOf(</span>searchElement) {</span>
      var value = <span class="cstat-no" title="statement not covered" >_arrayIndexOfApply(this, arguments);</span>
<span class="cstat-no" title="statement not covered" >      if (value === 0 &amp;&amp; (1 / value) &lt; 0) {</span>
<span class="cstat-no" title="statement not covered" >        return 0;</span>
      }
<span class="cstat-no" title="statement not covered" >      return value;</span>
    }, true);
  }
&nbsp;
  addIterator(Array.prototype, <span class="fstat-no" title="function not covered" >fu</span>nction () { <span class="cstat-no" title="statement not covered" >return this.values(); </span>});
  // Chrome defines keys/values/entries on Array, but doesn't give us
  // any way to identify its iterator.  So add our own shimmed field.
  <span class="missing-if-branch" title="else path not taken" >E</span>if (Object.getPrototypeOf) {
    var ChromeArrayIterator = Object.getPrototypeOf([].values());
    <span class="missing-if-branch" title="else path not taken" >E</span>if (ChromeArrayIterator) { // in WSH, this is `undefined`
      addIterator(ChromeArrayIterator);
    }
  }
&nbsp;
  // note: this is positioned here because it relies on Array#entries
  var arrayFromSwallowsNegativeLengths = (function () {
    // Detects a Firefox bug in v32
    // https://bugzilla.mozilla.org/show_bug.cgi?id=1063993
    return valueOrFalseIfThrows(function () {
      return Array.from({ length: -1 }).length === 0;
    });
  }());
  var arrayFromHandlesIterables = (function () {
    // Detects a bug in Webkit nightly r181886
    var arr = Array.from([0].entries());
    return arr.length === 1 &amp;&amp; isArray(arr[0]) &amp;&amp; arr[0][0] === 0 &amp;&amp; arr[0][1] === 0;
  }());
  <span class="missing-if-branch" title="if path not taken" >I</span>if (!arrayFromSwallowsNegativeLengths || !arrayFromHandlesIterables) {
<span class="cstat-no" title="statement not covered" >    overrideNative(Array, 'from', ArrayShims.from);</span>
  }
  var arrayFromHandlesUndefinedMapFunction = (function () {
    // Microsoft Edge v0.11 throws if the mapFn argument is *provided* but undefined,
    // but the spec doesn't care if it's provided or not - undefined doesn't throw.
    return valueOrFalseIfThrows(function () {
      return Array.from([0], void 0);
    });
  }());
  <span class="missing-if-branch" title="if path not taken" >I</span>if (!arrayFromHandlesUndefinedMapFunction) {
    var origArrayFrom = <span class="cstat-no" title="statement not covered" >Array.from;</span>
<span class="cstat-no" title="statement not covered" >    overrideNative(Array, 'from', function <span class="fstat-no" title="function not covered" >from(</span>items) {</span>
<span class="cstat-no" title="statement not covered" >      if (arguments.length &gt; 1 &amp;&amp; typeof arguments[1] !== 'undefined') {</span>
<span class="cstat-no" title="statement not covered" >        return ES.Call(origArrayFrom, this, arguments);</span>
      }
<span class="cstat-no" title="statement not covered" >      return _call(origArrayFrom, this, items);</span>
&nbsp;
    });
  }
&nbsp;
  var int32sAsOne = -(Math.pow(2, 32) - 1);
  var toLengthsCorrectly = function (method, reversed) {
    var obj = { length: int32sAsOne };
    obj[reversed ? (obj.length &gt;&gt;&gt; 0) - 1 : 0] = true;
    return valueOrFalseIfThrows(function () {
      _call(method, obj, <span class="fstat-no" title="function not covered" >fu</span>nction () {
        // note: in nonconforming browsers, this will be called
        // -1 &gt;&gt;&gt; 0 times, which is 4294967295, so the throw matters.
<span class="cstat-no" title="statement not covered" >        throw new RangeError('should not reach here');</span>
      }, []);
      return true;
    });
  };
  <span class="missing-if-branch" title="if path not taken" >I</span>if (!toLengthsCorrectly(Array.prototype.forEach)) {
    var originalForEach = <span class="cstat-no" title="statement not covered" >Array.prototype.forEach;</span>
<span class="cstat-no" title="statement not covered" >    overrideNative(Array.prototype, 'forEach', function <span class="fstat-no" title="function not covered" >forEach(</span>callbackFn) {</span>
<span class="cstat-no" title="statement not covered" >      return ES.Call(originalForEach, this.length &gt;= 0 ? this : [], arguments);</span>
    });
  }
  <span class="missing-if-branch" title="if path not taken" >I</span>if (!toLengthsCorrectly(Array.prototype.map)) {
    var originalMap = <span class="cstat-no" title="statement not covered" >Array.prototype.map;</span>
<span class="cstat-no" title="statement not covered" >    overrideNative(Array.prototype, 'map', function <span class="fstat-no" title="function not covered" >map(</span>callbackFn) {</span>
<span class="cstat-no" title="statement not covered" >      return ES.Call(originalMap, this.length &gt;= 0 ? this : [], arguments);</span>
    });
  }
  <span class="missing-if-branch" title="if path not taken" >I</span>if (!toLengthsCorrectly(Array.prototype.filter)) {
    var originalFilter = <span class="cstat-no" title="statement not covered" >Array.prototype.filter;</span>
<span class="cstat-no" title="statement not covered" >    overrideNative(Array.prototype, 'filter', function <span class="fstat-no" title="function not covered" >filter(</span>callbackFn) {</span>
<span class="cstat-no" title="statement not covered" >      return ES.Call(originalFilter, this.length &gt;= 0 ? this : [], arguments);</span>
    });
  }
  <span class="missing-if-branch" title="if path not taken" >I</span>if (!toLengthsCorrectly(Array.prototype.some)) {
    var originalSome = <span class="cstat-no" title="statement not covered" >Array.prototype.some;</span>
<span class="cstat-no" title="statement not covered" >    overrideNative(Array.prototype, 'some', function <span class="fstat-no" title="function not covered" >some(</span>callbackFn) {</span>
<span class="cstat-no" title="statement not covered" >      return ES.Call(originalSome, this.length &gt;= 0 ? this : [], arguments);</span>
    });
  }
  <span class="missing-if-branch" title="if path not taken" >I</span>if (!toLengthsCorrectly(Array.prototype.every)) {
    var originalEvery = <span class="cstat-no" title="statement not covered" >Array.prototype.every;</span>
<span class="cstat-no" title="statement not covered" >    overrideNative(Array.prototype, 'every', function <span class="fstat-no" title="function not covered" >every(</span>callbackFn) {</span>
<span class="cstat-no" title="statement not covered" >      return ES.Call(originalEvery, this.length &gt;= 0 ? this : [], arguments);</span>
    });
  }
  <span class="missing-if-branch" title="if path not taken" >I</span>if (!toLengthsCorrectly(Array.prototype.reduce)) {
    var originalReduce = <span class="cstat-no" title="statement not covered" >Array.prototype.reduce;</span>
<span class="cstat-no" title="statement not covered" >    overrideNative(Array.prototype, 'reduce', function <span class="fstat-no" title="function not covered" >reduce(</span>callbackFn) {</span>
<span class="cstat-no" title="statement not covered" >      return ES.Call(originalReduce, this.length &gt;= 0 ? this : [], arguments);</span>
    });
  }
  <span class="missing-if-branch" title="if path not taken" >I</span>if (!toLengthsCorrectly(Array.prototype.reduceRight, true)) {
    var originalReduceRight = <span class="cstat-no" title="statement not covered" >Array.prototype.reduceRight;</span>
<span class="cstat-no" title="statement not covered" >    overrideNative(Array.prototype, 'reduceRight', function <span class="fstat-no" title="function not covered" >reduceRight(</span>callbackFn) {</span>
<span class="cstat-no" title="statement not covered" >      return ES.Call(originalReduceRight, this.length &gt;= 0 ? this : [], arguments);</span>
    });
  }
&nbsp;
  var lacksOctalSupport = Number('0o10') !== 8;
  var lacksBinarySupport = Number('0b10') !== 2;
  var trimsNonWhitespace = _some(nonWS, function (c) {
    return Number(c + 0 + c) === 0;
  });
  <span class="missing-if-branch" title="if path not taken" >I</span>if (lacksOctalSupport || lacksBinarySupport || trimsNonWhitespace) {
    var OrigNumber = <span class="cstat-no" title="statement not covered" >Number;</span>
    var binaryRegex = <span class="cstat-no" title="statement not covered" >/^0b[01]+$/i;</span>
    var octalRegex = <span class="cstat-no" title="statement not covered" >/^0o[0-7]+$/i;</span>
    // Note that in IE 8, RegExp.prototype.test doesn't seem to exist: ie, "test" is an own property of regexes. wtf.
    var isBinary = <span class="cstat-no" title="statement not covered" >binaryRegex.test.bind(binaryRegex);</span>
    var isOctal = <span class="cstat-no" title="statement not covered" >octalRegex.test.bind(octalRegex);</span>
    var toPrimitive = <span class="cstat-no" title="statement not covered" ><span class="fstat-no" title="function not covered" >fu</span>nction (O, hint) { // need to replace this with `es-to-primitive/es6`</span>
      var result;
<span class="cstat-no" title="statement not covered" >      if (typeof O.valueOf === 'function') {</span>
<span class="cstat-no" title="statement not covered" >        result = O.valueOf();</span>
<span class="cstat-no" title="statement not covered" >        if (Type.primitive(result)) {</span>
<span class="cstat-no" title="statement not covered" >          return result;</span>
        }
      }
<span class="cstat-no" title="statement not covered" >      if (typeof O.toString === 'function') {</span>
<span class="cstat-no" title="statement not covered" >        result = O.toString();</span>
<span class="cstat-no" title="statement not covered" >        if (Type.primitive(result)) {</span>
<span class="cstat-no" title="statement not covered" >          return result;</span>
        }
      }
<span class="cstat-no" title="statement not covered" >      throw new TypeError('No default value');</span>
    };
    var hasNonWS = <span class="cstat-no" title="statement not covered" >nonWSregex.test.bind(nonWSregex);</span>
    var isBadHex = <span class="cstat-no" title="statement not covered" >isBadHexRegex.test.bind(isBadHexRegex);</span>
    var NumberShim = (<span class="cstat-no" title="statement not covered" ><span class="fstat-no" title="function not covered" >fu</span>nction () {</span>
      // this is wrapped in an IIFE because of IE 6-8's wacky scoping issues with named function expressions.
      var NumberShim = <span class="cstat-no" title="statement not covered" >function <span class="fstat-no" title="function not covered" >Number(</span>value) {</span>
        var primValue;
<span class="cstat-no" title="statement not covered" >        if (arguments.length &gt; 0) {</span>
<span class="cstat-no" title="statement not covered" >          primValue = Type.primitive(value) ? value : toPrimitive(value, 'number');</span>
        } else {
<span class="cstat-no" title="statement not covered" >          primValue = 0;</span>
        }
<span class="cstat-no" title="statement not covered" >        if (typeof primValue === 'string') {</span>
<span class="cstat-no" title="statement not covered" >          primValue = ES.Call(trimShim, primValue);</span>
<span class="cstat-no" title="statement not covered" >          if (isBinary(primValue)) {</span>
<span class="cstat-no" title="statement not covered" >            primValue = parseInt(_strSlice(primValue, 2), 2);</span>
          } else <span class="cstat-no" title="statement not covered" >if (isOctal(primValue)) {</span>
<span class="cstat-no" title="statement not covered" >            primValue = parseInt(_strSlice(primValue, 2), 8);</span>
          } else <span class="cstat-no" title="statement not covered" >if (hasNonWS(primValue) || isBadHex(primValue)) {</span>
<span class="cstat-no" title="statement not covered" >            primValue = NaN;</span>
          }
        }
        var receiver = <span class="cstat-no" title="statement not covered" >this;</span>
        var valueOfSucceeds = <span class="cstat-no" title="statement not covered" >valueOrFalseIfThrows(<span class="fstat-no" title="function not covered" >fu</span>nction () {</span>
<span class="cstat-no" title="statement not covered" >          OrigNumber.prototype.valueOf.call(receiver);</span>
<span class="cstat-no" title="statement not covered" >          return true;</span>
        });
<span class="cstat-no" title="statement not covered" >        if (receiver instanceof NumberShim &amp;&amp; !valueOfSucceeds) {</span>
<span class="cstat-no" title="statement not covered" >          return new OrigNumber(primValue);</span>
        }
<span class="cstat-no" title="statement not covered" >        return OrigNumber(primValue);</span>
      };
<span class="cstat-no" title="statement not covered" >      return NumberShim;</span>
    }());
<span class="cstat-no" title="statement not covered" >    wrapConstructor(OrigNumber, NumberShim, {});</span>
    // this is necessary for ES3 browsers, where these properties are non-enumerable.
<span class="cstat-no" title="statement not covered" >    defineProperties(NumberShim, {</span>
      NaN: OrigNumber.NaN,
      MAX_VALUE: OrigNumber.MAX_VALUE,
      MIN_VALUE: OrigNumber.MIN_VALUE,
      NEGATIVE_INFINITY: OrigNumber.NEGATIVE_INFINITY,
      POSITIVE_INFINITY: OrigNumber.POSITIVE_INFINITY
    });
<span class="cstat-no" title="statement not covered" >    Number = NumberShim; </span>// eslint-disable-line no-global-assign
<span class="cstat-no" title="statement not covered" >    Value.redefine(globals, 'Number', NumberShim);</span>
  }
&nbsp;
  var maxSafeInteger = Math.pow(2, 53) - 1;
  defineProperties(Number, {
    MAX_SAFE_INTEGER: maxSafeInteger,
    MIN_SAFE_INTEGER: -maxSafeInteger,
    EPSILON: 2.220446049250313e-16,
&nbsp;
    parseInt: globals.parseInt,
    parseFloat: globals.parseFloat,
&nbsp;
    isFinite: numberIsFinite,
&nbsp;
    isInteger: function <span class="fstat-no" title="function not covered" >isInteger(</span>value) {
<span class="cstat-no" title="statement not covered" >      return numberIsFinite(value) &amp;&amp; ES.ToInteger(value) === value;</span>
    },
&nbsp;
    isSafeInteger: function <span class="fstat-no" title="function not covered" >isSafeInteger(</span>value) {
<span class="cstat-no" title="statement not covered" >      return Number.isInteger(value) &amp;&amp; _abs(value) &lt;= Number.MAX_SAFE_INTEGER;</span>
    },
&nbsp;
    isNaN: numberIsNaN
  });
  // Firefox 37 has a conforming Number.parseInt, but it's not === to the global parseInt (fixed in v40)
  defineProperty(Number, 'parseInt', globals.parseInt, Number.parseInt !== globals.parseInt);
&nbsp;
  // Work around bugs in Array#find and Array#findIndex -- early
  // implementations skipped holes in sparse arrays. (Note that the
  // implementations of find/findIndex indirectly use shimmed
  // methods of Number, so this test has to happen down here.)
  /* eslint-disable no-sparse-arrays */
  <span class="missing-if-branch" title="if path not taken" >I</span>if ([, 1].find(function () { return true; }) === 1) {
<span class="cstat-no" title="statement not covered" >    overrideNative(Array.prototype, 'find', ArrayPrototypeShims.find);</span>
  }
  <span class="missing-if-branch" title="if path not taken" >I</span>if ([, 1].findIndex(function () { return true; }) !== 0) {
<span class="cstat-no" title="statement not covered" >    overrideNative(Array.prototype, 'findIndex', ArrayPrototypeShims.findIndex);</span>
  }
  /* eslint-enable no-sparse-arrays */
&nbsp;
  var isEnumerableOn = Function.bind.call(Function.bind, Object.prototype.propertyIsEnumerable);
  var ensureEnumerable = function ensureEnumerable(obj, prop) {
    <span class="missing-if-branch" title="else path not taken" >E</span>if (supportsDescriptors &amp;&amp; isEnumerableOn(obj, prop)) {
      Object.defineProperty(obj, prop, { enumerable: false });
    }
  };
  var sliceArgs = function <span class="fstat-no" title="function not covered" >sliceArgs(</span>) {
    // per https://github.com/petkaantonov/bluebird/wiki/Optimization-killers#32-leaking-arguments
    // and https://gist.github.com/WebReflection/4327762cb87a8c634a29
    var initial = <span class="cstat-no" title="statement not covered" >Number(this);</span>
    var len = <span class="cstat-no" title="statement not covered" >arguments.length;</span>
    var desiredArgCount = <span class="cstat-no" title="statement not covered" >len - initial;</span>
    var args = <span class="cstat-no" title="statement not covered" >new Array(desiredArgCount &lt; 0 ? 0 : desiredArgCount);</span>
<span class="cstat-no" title="statement not covered" >    for (var i = initial; i &lt; len; ++i) {</span>
<span class="cstat-no" title="statement not covered" >      args[i - initial] = arguments[i];</span>
    }
<span class="cstat-no" title="statement not covered" >    return args;</span>
  };
  var assignTo = function <span class="fstat-no" title="function not covered" >assignTo(</span>source) {
<span class="cstat-no" title="statement not covered" >    return function <span class="fstat-no" title="function not covered" >assignToSource(</span>target, key) {</span>
<span class="cstat-no" title="statement not covered" >      target[key] = source[key];</span>
<span class="cstat-no" title="statement not covered" >      return target;</span>
    };
  };
  var assignReducer = <span class="fstat-no" title="function not covered" >fu</span>nction (target, source) {
    var sourceKeys = <span class="cstat-no" title="statement not covered" >keys(Object(source));</span>
    var symbols;
<span class="cstat-no" title="statement not covered" >    if (ES.IsCallable(Object.getOwnPropertySymbols)) {</span>
<span class="cstat-no" title="statement not covered" >      symbols = _filter(Object.getOwnPropertySymbols(Object(source)), isEnumerableOn(source));</span>
    }
<span class="cstat-no" title="statement not covered" >    return _reduce(_concat(sourceKeys, symbols || []), assignTo(source), target);</span>
  };
&nbsp;
  var ObjectShims = {
    // 19.1.3.1
    assign: <span class="fstat-no" title="function not covered" >fu</span>nction (target, source) {
      var to = <span class="cstat-no" title="statement not covered" >ES.ToObject(target, 'Cannot convert undefined or null to object');</span>
<span class="cstat-no" title="statement not covered" >      return _reduce(ES.Call(sliceArgs, 1, arguments), assignReducer, to);</span>
    },
&nbsp;
    // Added in WebKit in https://bugs.webkit.org/show_bug.cgi?id=143865
    is: function <span class="fstat-no" title="function not covered" >is(</span>a, b) {
<span class="cstat-no" title="statement not covered" >      return ES.SameValue(a, b);</span>
    }
  };
  var assignHasPendingExceptions = Object.assign &amp;&amp; Object.preventExtensions &amp;&amp; (function () {
    // Firefox 37 still has "pending exception" logic in its Object.assign implementation,
    // which is 72% slower than our shim, and Firefox 40's native implementation.
    var thrower = Object.preventExtensions({ 1: 2 });
    try {
      Object.assign(thrower, 'xy');
    } catch (e) {
      return thrower[1] === 'y';
    }
  }());
  <span class="missing-if-branch" title="if path not taken" >I</span>if (assignHasPendingExceptions) {
<span class="cstat-no" title="statement not covered" >    overrideNative(Object, 'assign', ObjectShims.assign);</span>
  }
  defineProperties(Object, ObjectShims);
&nbsp;
  <span class="missing-if-branch" title="else path not taken" >E</span>if (supportsDescriptors) {
    var ES5ObjectShims = {
      // 19.1.3.9
      // shim from https://gist.github.com/WebReflection/5593554
      setPrototypeOf: (function (Object, magic) {
        var set;
&nbsp;
        var checkArgs = <span class="fstat-no" title="function not covered" >fu</span>nction (O, proto) {
<span class="cstat-no" title="statement not covered" >          if (!ES.TypeIsObject(O)) {</span>
<span class="cstat-no" title="statement not covered" >            throw new TypeError('cannot set prototype on a non-object');</span>
          }
<span class="cstat-no" title="statement not covered" >          if (!(proto === null || ES.TypeIsObject(proto))) {</span>
<span class="cstat-no" title="statement not covered" >            throw new TypeError('can only set prototype to an object or null' + proto);</span>
          }
        };
&nbsp;
        var setPrototypeOf = <span class="fstat-no" title="function not covered" >fu</span>nction (O, proto) {
<span class="cstat-no" title="statement not covered" >          checkArgs(O, proto);</span>
<span class="cstat-no" title="statement not covered" >          _call(set, O, proto);</span>
<span class="cstat-no" title="statement not covered" >          return O;</span>
        };
&nbsp;
        try {
          // this works already in Firefox and Safari
          set = Object.getOwnPropertyDescriptor(Object.prototype, magic).set;
          _call(set, {}, null);
        } catch (e) {
<span class="cstat-no" title="statement not covered" >          if (Object.prototype !== {}[magic]) {</span>
            // IE &lt; 11 cannot be shimmed
<span class="cstat-no" title="statement not covered" >            return;</span>
          }
          // probably Chrome or some old Mobile stock browser
<span class="cstat-no" title="statement not covered" >          set = <span class="fstat-no" title="function not covered" >fu</span>nction (proto) {</span>
<span class="cstat-no" title="statement not covered" >            this[magic] = proto;</span>
          };
          // please note that this will **not** work
          // in those browsers that do not inherit
          // __proto__ by mistake from Object.prototype
          // in these cases we should probably throw an error
          // or at least be informed about the issue
<span class="cstat-no" title="statement not covered" >          setPrototypeOf.polyfill = setPrototypeOf(</span>
            setPrototypeOf({}, null),
            Object.prototype
          ) instanceof Object;
          // setPrototypeOf.polyfill === true means it works as meant
          // setPrototypeOf.polyfill === false means it's not 100% reliable
          // setPrototypeOf.polyfill === undefined
          // or
          // setPrototypeOf.polyfill ==  null means it's not a polyfill
          // which means it works as expected
          // we can even delete Object.prototype.__proto__;
        }
        return setPrototypeOf;
      }(Object, '__proto__'))
    };
&nbsp;
    defineProperties(Object, ES5ObjectShims);
  }
&nbsp;
  // Workaround bug in Opera 12 where setPrototypeOf(x, null) doesn't work,
  // but Object.create(null) does.
  <span class="missing-if-branch" title="if path not taken" >I</span>if (
    Object.setPrototypeOf
    &amp;&amp; Object.getPrototypeOf
    &amp;&amp; Object.getPrototypeOf(Object.setPrototypeOf({}, null)) !== null
    &amp;&amp; <span class="branch-3 cbranch-no" title="branch not covered" >Object.getPrototypeOf(Object.create(null)) === null</span>
  ) {
<span class="cstat-no" title="statement not covered" >    (<span class="fstat-no" title="function not covered" >fu</span>nction () {</span>
      var FAKENULL = <span class="cstat-no" title="statement not covered" >Object.create(null);</span>
      var gpo = <span class="cstat-no" title="statement not covered" >Object.getPrototypeOf;</span>
      var spo = <span class="cstat-no" title="statement not covered" >Object.setPrototypeOf;</span>
<span class="cstat-no" title="statement not covered" >      Object.getPrototypeOf = <span class="fstat-no" title="function not covered" >fu</span>nction (o) {</span>
        var result = <span class="cstat-no" title="statement not covered" >gpo(o);</span>
<span class="cstat-no" title="statement not covered" >        return result === FAKENULL ? null : result;</span>
      };
<span class="cstat-no" title="statement not covered" >      Object.setPrototypeOf = <span class="fstat-no" title="function not covered" >fu</span>nction (o, p) {</span>
        var proto = <span class="cstat-no" title="statement not covered" >p === null ? FAKENULL : p;</span>
<span class="cstat-no" title="statement not covered" >        return spo(o, proto);</span>
      };
<span class="cstat-no" title="statement not covered" >      Object.setPrototypeOf.polyfill = false;</span>
    }());
  }
&nbsp;
  var objectKeysAcceptsPrimitives = !throwsError(function () { return Object.keys('foo'); });
  <span class="missing-if-branch" title="if path not taken" >I</span>if (!objectKeysAcceptsPrimitives) {
    var originalObjectKeys = <span class="cstat-no" title="statement not covered" >Object.keys;</span>
<span class="cstat-no" title="statement not covered" >    overrideNative(Object, 'keys', function <span class="fstat-no" title="function not covered" >keys(</span>value) {</span>
<span class="cstat-no" title="statement not covered" >      return originalObjectKeys(ES.ToObject(value));</span>
    });
<span class="cstat-no" title="statement not covered" >    keys = Object.keys;</span>
  }
  var objectKeysRejectsRegex = throwsError(function () { return Object.keys(/a/g); });
  <span class="missing-if-branch" title="if path not taken" >I</span>if (objectKeysRejectsRegex) {
    var regexRejectingObjectKeys = <span class="cstat-no" title="statement not covered" >Object.keys;</span>
<span class="cstat-no" title="statement not covered" >    overrideNative(Object, 'keys', function <span class="fstat-no" title="function not covered" >keys(</span>value) {</span>
<span class="cstat-no" title="statement not covered" >      if (Type.regex(value)) {</span>
        var regexKeys = <span class="cstat-no" title="statement not covered" >[];</span>
<span class="cstat-no" title="statement not covered" >        for (var k in value) {</span>
<span class="cstat-no" title="statement not covered" >          if (_hasOwnProperty(value, k)) {</span>
<span class="cstat-no" title="statement not covered" >            _push(regexKeys, k);</span>
          }
        }
<span class="cstat-no" title="statement not covered" >        return regexKeys;</span>
      }
<span class="cstat-no" title="statement not covered" >      return regexRejectingObjectKeys(value);</span>
    });
<span class="cstat-no" title="statement not covered" >    keys = Object.keys;</span>
  }
&nbsp;
  <span class="missing-if-branch" title="else path not taken" >E</span>if (Object.getOwnPropertyNames) {
    var objectGOPNAcceptsPrimitives = !throwsError(function () { return Object.getOwnPropertyNames('foo'); });
    <span class="missing-if-branch" title="if path not taken" >I</span>if (!objectGOPNAcceptsPrimitives) {
      var cachedWindowNames = <span class="cstat-no" title="statement not covered" >typeof window === 'object' ? Object.getOwnPropertyNames(window) : [];</span>
      var originalObjectGetOwnPropertyNames = <span class="cstat-no" title="statement not covered" >Object.getOwnPropertyNames;</span>
<span class="cstat-no" title="statement not covered" >      overrideNative(Object, 'getOwnPropertyNames', function <span class="fstat-no" title="function not covered" >getOwnPropertyNames(</span>value) {</span>
        var val = <span class="cstat-no" title="statement not covered" >ES.ToObject(value);</span>
<span class="cstat-no" title="statement not covered" >        if (_toString(val) === '[object Window]') {</span>
<span class="cstat-no" title="statement not covered" >          try {</span>
<span class="cstat-no" title="statement not covered" >            return originalObjectGetOwnPropertyNames(val);</span>
          } catch (e) {
            // IE bug where layout engine calls userland gOPN for cross-domain `window` objects
<span class="cstat-no" title="statement not covered" >            return _concat([], cachedWindowNames);</span>
          }
        }
<span class="cstat-no" title="statement not covered" >        return originalObjectGetOwnPropertyNames(val);</span>
      });
    }
  }
  <span class="missing-if-branch" title="else path not taken" >E</span>if (Object.getOwnPropertyDescriptor) {
    var objectGOPDAcceptsPrimitives = !throwsError(function () { return Object.getOwnPropertyDescriptor('foo', 'bar'); });
    <span class="missing-if-branch" title="if path not taken" >I</span>if (!objectGOPDAcceptsPrimitives) {
      var originalObjectGetOwnPropertyDescriptor = <span class="cstat-no" title="statement not covered" >Object.getOwnPropertyDescriptor;</span>
<span class="cstat-no" title="statement not covered" >      overrideNative(Object, 'getOwnPropertyDescriptor', function <span class="fstat-no" title="function not covered" >getOwnPropertyDescriptor(</span>value, property) {</span>
<span class="cstat-no" title="statement not covered" >        return originalObjectGetOwnPropertyDescriptor(ES.ToObject(value), property);</span>
      });
    }
  }
  <span class="missing-if-branch" title="else path not taken" >E</span>if (Object.seal) {
    var objectSealAcceptsPrimitives = !throwsError(function () { return Object.seal('foo'); });
    <span class="missing-if-branch" title="if path not taken" >I</span>if (!objectSealAcceptsPrimitives) {
      var originalObjectSeal = <span class="cstat-no" title="statement not covered" >Object.seal;</span>
<span class="cstat-no" title="statement not covered" >      overrideNative(Object, 'seal', function <span class="fstat-no" title="function not covered" >seal(</span>value) {</span>
<span class="cstat-no" title="statement not covered" >        if (!ES.TypeIsObject(value)) { <span class="cstat-no" title="statement not covered" >return value; </span>}</span>
<span class="cstat-no" title="statement not covered" >        return originalObjectSeal(value);</span>
      });
    }
  }
  <span class="missing-if-branch" title="else path not taken" >E</span>if (Object.isSealed) {
    var objectIsSealedAcceptsPrimitives = !throwsError(function () { return Object.isSealed('foo'); });
    <span class="missing-if-branch" title="if path not taken" >I</span>if (!objectIsSealedAcceptsPrimitives) {
      var originalObjectIsSealed = <span class="cstat-no" title="statement not covered" >Object.isSealed;</span>
<span class="cstat-no" title="statement not covered" >      overrideNative(Object, 'isSealed', function <span class="fstat-no" title="function not covered" >isSealed(</span>value) {</span>
<span class="cstat-no" title="statement not covered" >        if (!ES.TypeIsObject(value)) { <span class="cstat-no" title="statement not covered" >return true; </span>}</span>
<span class="cstat-no" title="statement not covered" >        return originalObjectIsSealed(value);</span>
      });
    }
  }
  <span class="missing-if-branch" title="else path not taken" >E</span>if (Object.freeze) {
    var objectFreezeAcceptsPrimitives = !throwsError(function () { return Object.freeze('foo'); });
    <span class="missing-if-branch" title="if path not taken" >I</span>if (!objectFreezeAcceptsPrimitives) {
      var originalObjectFreeze = <span class="cstat-no" title="statement not covered" >Object.freeze;</span>
<span class="cstat-no" title="statement not covered" >      overrideNative(Object, 'freeze', function <span class="fstat-no" title="function not covered" >freeze(</span>value) {</span>
<span class="cstat-no" title="statement not covered" >        if (!ES.TypeIsObject(value)) { <span class="cstat-no" title="statement not covered" >return value; </span>}</span>
<span class="cstat-no" title="statement not covered" >        return originalObjectFreeze(value);</span>
      });
    }
  }
  <span class="missing-if-branch" title="else path not taken" >E</span>if (Object.isFrozen) {
    var objectIsFrozenAcceptsPrimitives = !throwsError(function () { return Object.isFrozen('foo'); });
    <span class="missing-if-branch" title="if path not taken" >I</span>if (!objectIsFrozenAcceptsPrimitives) {
      var originalObjectIsFrozen = <span class="cstat-no" title="statement not covered" >Object.isFrozen;</span>
<span class="cstat-no" title="statement not covered" >      overrideNative(Object, 'isFrozen', function <span class="fstat-no" title="function not covered" >isFrozen(</span>value) {</span>
<span class="cstat-no" title="statement not covered" >        if (!ES.TypeIsObject(value)) { <span class="cstat-no" title="statement not covered" >return true; </span>}</span>
<span class="cstat-no" title="statement not covered" >        return originalObjectIsFrozen(value);</span>
      });
    }
  }
  <span class="missing-if-branch" title="else path not taken" >E</span>if (Object.preventExtensions) {
    var objectPreventExtensionsAcceptsPrimitives = !throwsError(function () { return Object.preventExtensions('foo'); });
    <span class="missing-if-branch" title="if path not taken" >I</span>if (!objectPreventExtensionsAcceptsPrimitives) {
      var originalObjectPreventExtensions = <span class="cstat-no" title="statement not covered" >Object.preventExtensions;</span>
<span class="cstat-no" title="statement not covered" >      overrideNative(Object, 'preventExtensions', function <span class="fstat-no" title="function not covered" >preventExtensions(</span>value) {</span>
<span class="cstat-no" title="statement not covered" >        if (!ES.TypeIsObject(value)) { <span class="cstat-no" title="statement not covered" >return value; </span>}</span>
<span class="cstat-no" title="statement not covered" >        return originalObjectPreventExtensions(value);</span>
      });
    }
  }
  <span class="missing-if-branch" title="else path not taken" >E</span>if (Object.isExtensible) {
    var objectIsExtensibleAcceptsPrimitives = !throwsError(function () { return Object.isExtensible('foo'); });
    <span class="missing-if-branch" title="if path not taken" >I</span>if (!objectIsExtensibleAcceptsPrimitives) {
      var originalObjectIsExtensible = <span class="cstat-no" title="statement not covered" >Object.isExtensible;</span>
<span class="cstat-no" title="statement not covered" >      overrideNative(Object, 'isExtensible', function <span class="fstat-no" title="function not covered" >isExtensible(</span>value) {</span>
<span class="cstat-no" title="statement not covered" >        if (!ES.TypeIsObject(value)) { <span class="cstat-no" title="statement not covered" >return false; </span>}</span>
<span class="cstat-no" title="statement not covered" >        return originalObjectIsExtensible(value);</span>
      });
    }
  }
  <span class="missing-if-branch" title="else path not taken" >E</span>if (Object.getPrototypeOf) {
    var objectGetProtoAcceptsPrimitives = !throwsError(function () { return Object.getPrototypeOf('foo'); });
    <span class="missing-if-branch" title="if path not taken" >I</span>if (!objectGetProtoAcceptsPrimitives) {
      var originalGetProto = <span class="cstat-no" title="statement not covered" >Object.getPrototypeOf;</span>
<span class="cstat-no" title="statement not covered" >      overrideNative(Object, 'getPrototypeOf', function <span class="fstat-no" title="function not covered" >getPrototypeOf(</span>value) {</span>
<span class="cstat-no" title="statement not covered" >        return originalGetProto(ES.ToObject(value));</span>
      });
    }
  }
&nbsp;
  var hasFlags = supportsDescriptors &amp;&amp; (function () {
    var desc = Object.getOwnPropertyDescriptor(RegExp.prototype, 'flags');
    return desc &amp;&amp; ES.IsCallable(desc.get);
  }());
  <span class="missing-if-branch" title="if path not taken" >I</span>if (supportsDescriptors &amp;&amp; !hasFlags) {
    var regExpFlagsGetter = <span class="cstat-no" title="statement not covered" >function <span class="fstat-no" title="function not covered" >flags(</span>) {</span>
<span class="cstat-no" title="statement not covered" >      if (!ES.TypeIsObject(this)) {</span>
<span class="cstat-no" title="statement not covered" >        throw new TypeError('Method called on incompatible type: must be an object.');</span>
      }
      var result = <span class="cstat-no" title="statement not covered" >'';</span>
<span class="cstat-no" title="statement not covered" >      if (this.global) {</span>
<span class="cstat-no" title="statement not covered" >        result += 'g';</span>
      }
<span class="cstat-no" title="statement not covered" >      if (this.ignoreCase) {</span>
<span class="cstat-no" title="statement not covered" >        result += 'i';</span>
      }
<span class="cstat-no" title="statement not covered" >      if (this.multiline) {</span>
<span class="cstat-no" title="statement not covered" >        result += 'm';</span>
      }
<span class="cstat-no" title="statement not covered" >      if (this.unicode) {</span>
<span class="cstat-no" title="statement not covered" >        result += 'u';</span>
      }
<span class="cstat-no" title="statement not covered" >      if (this.sticky) {</span>
<span class="cstat-no" title="statement not covered" >        result += 'y';</span>
      }
<span class="cstat-no" title="statement not covered" >      return result;</span>
    };
&nbsp;
<span class="cstat-no" title="statement not covered" >    Value.getter(RegExp.prototype, 'flags', regExpFlagsGetter);</span>
  }
&nbsp;
  var regExpSupportsFlagsWithRegex = supportsDescriptors &amp;&amp; valueOrFalseIfThrows(function () {
    return String(new RegExp(/a/g, 'i')) === '/a/i';
  });
  var regExpNeedsToSupportSymbolMatch = hasSymbols &amp;&amp; supportsDescriptors &amp;&amp; (function () {
    // Edge 0.12 supports flags fully, but does not support Symbol.match
    var regex = /./;
    regex[Symbol.match] = false;
    return RegExp(regex) === regex;
  }());
&nbsp;
  var regexToStringIsGeneric = valueOrFalseIfThrows(function () {
    return RegExp.prototype.toString.call({ source: 'abc' }) === '/abc/';
  });
  var regexToStringSupportsGenericFlags = regexToStringIsGeneric &amp;&amp; <span class="branch-1 cbranch-no" title="branch not covered" >valueOrFalseIfThrows(<span class="fstat-no" title="function not covered" >fu</span>nction () {</span>
<span class="cstat-no" title="statement not covered" >    return RegExp.prototype.toString.call({ source: 'a', flags: 'b' }) === '/a/b';</span>
  });
  <span class="missing-if-branch" title="else path not taken" >E</span>if (!regexToStringIsGeneric || <span class="branch-1 cbranch-no" title="branch not covered" >!regexToStringSupportsGenericFlags)</span> {
    var origRegExpToString = RegExp.prototype.toString;
    defineProperty(RegExp.prototype, 'toString', function toString() {
      var R = ES.RequireObjectCoercible(this);
      if (Type.regex(R)) {
        return _call(origRegExpToString, R);
      }
      var pattern = $String(R.source);
      var flags = $String(R.flags);
      return '/' + pattern + '/' + flags;
    }, true);
    Value.preserveToString(RegExp.prototype.toString, origRegExpToString);
    RegExp.prototype.toString.prototype = void 0;
  }
&nbsp;
  <span class="missing-if-branch" title="if path not taken" >I</span>if (supportsDescriptors &amp;&amp; (!regExpSupportsFlagsWithRegex || regExpNeedsToSupportSymbolMatch)) {
    var flagsGetter = <span class="cstat-no" title="statement not covered" >Object.getOwnPropertyDescriptor(RegExp.prototype, 'flags').get;</span>
    var sourceDesc = <span class="cstat-no" title="statement not covered" >Object.getOwnPropertyDescriptor(RegExp.prototype, 'source') || {};</span>
    var legacySourceGetter = <span class="cstat-no" title="statement not covered" ><span class="fstat-no" title="function not covered" >fu</span>nction () {</span>
      // prior to it being a getter, it's own + nonconfigurable
<span class="cstat-no" title="statement not covered" >      return this.source;</span>
    };
    var sourceGetter = <span class="cstat-no" title="statement not covered" >ES.IsCallable(sourceDesc.get) ? sourceDesc.get : legacySourceGetter;</span>
&nbsp;
    var OrigRegExp = <span class="cstat-no" title="statement not covered" >RegExp;</span>
    var RegExpShim = (<span class="cstat-no" title="statement not covered" ><span class="fstat-no" title="function not covered" >fu</span>nction () {</span>
<span class="cstat-no" title="statement not covered" >      return function <span class="fstat-no" title="function not covered" >RegExp(</span>pattern, flags) {</span>
        var patternIsRegExp = <span class="cstat-no" title="statement not covered" >ES.IsRegExp(pattern);</span>
        var calledWithNew = <span class="cstat-no" title="statement not covered" >this instanceof RegExp;</span>
<span class="cstat-no" title="statement not covered" >        if (!calledWithNew &amp;&amp; patternIsRegExp &amp;&amp; typeof flags === 'undefined' &amp;&amp; pattern.constructor === RegExp) {</span>
<span class="cstat-no" title="statement not covered" >          return pattern;</span>
        }
&nbsp;
        var P = <span class="cstat-no" title="statement not covered" >pattern;</span>
        var F = <span class="cstat-no" title="statement not covered" >flags;</span>
<span class="cstat-no" title="statement not covered" >        if (Type.regex(pattern)) {</span>
<span class="cstat-no" title="statement not covered" >          P = ES.Call(sourceGetter, pattern);</span>
<span class="cstat-no" title="statement not covered" >          F = typeof flags === 'undefined' ? ES.Call(flagsGetter, pattern) : flags;</span>
<span class="cstat-no" title="statement not covered" >          return new RegExp(P, F);</span>
        } else <span class="cstat-no" title="statement not covered" >if (patternIsRegExp) {</span>
<span class="cstat-no" title="statement not covered" >          P = pattern.source;</span>
<span class="cstat-no" title="statement not covered" >          F = typeof flags === 'undefined' ? pattern.flags : flags;</span>
        }
<span class="cstat-no" title="statement not covered" >        return new OrigRegExp(pattern, flags);</span>
      };
    }());
<span class="cstat-no" title="statement not covered" >    wrapConstructor(OrigRegExp, RegExpShim, {</span>
      $input: true // Chrome &lt; v39 &amp; Opera &lt; 26 have a nonstandard "$input" property
    });
<span class="cstat-no" title="statement not covered" >    RegExp = RegExpShim; </span>// eslint-disable-line no-global-assign
<span class="cstat-no" title="statement not covered" >    Value.redefine(globals, 'RegExp', RegExpShim);</span>
  }
&nbsp;
  <span class="missing-if-branch" title="else path not taken" >E</span>if (supportsDescriptors) {
    var regexGlobals = {
      input: '$_',
      lastMatch: '$&amp;',
      lastParen: '$+',
      leftContext: '$`',
      rightContext: '$\''
    };
    _forEach(keys(regexGlobals), function (prop) {
      <span class="missing-if-branch" title="if path not taken" >I</span>if (prop in RegExp &amp;&amp; !(regexGlobals[prop] in RegExp)) {
<span class="cstat-no" title="statement not covered" >        Value.getter(RegExp, regexGlobals[prop], function <span class="fstat-no" title="function not covered" >get(</span>) {</span>
<span class="cstat-no" title="statement not covered" >          return RegExp[prop];</span>
        });
      }
    });
  }
  addDefaultSpecies(RegExp);
&nbsp;
  var inverseEpsilon = 1 / Number.EPSILON;
  var roundTiesToEven = function <span class="fstat-no" title="function not covered" >roundTiesToEven(</span>n) {
    // Even though this reduces down to `return n`, it takes advantage of built-in rounding.
<span class="cstat-no" title="statement not covered" >    return (n + inverseEpsilon) - inverseEpsilon;</span>
  };
  var BINARY_32_EPSILON = Math.pow(2, -23);
  var BINARY_32_MAX_VALUE = Math.pow(2, 127) * (2 - BINARY_32_EPSILON);
  var BINARY_32_MIN_VALUE = Math.pow(2, -126);
  var E = Math.E;
  var LOG2E = Math.LOG2E;
  var LOG10E = Math.LOG10E;
  var numberCLZ = Number.prototype.clz;
  delete Number.prototype.clz; // Safari 8 has Number#clz
&nbsp;
  var MathShims = {
    acosh: function <span class="fstat-no" title="function not covered" >acosh(</span>value) {
      var x = <span class="cstat-no" title="statement not covered" >Number(value);</span>
<span class="cstat-no" title="statement not covered" >      if (numberIsNaN(x) || value &lt; 1) { <span class="cstat-no" title="statement not covered" >return NaN; </span>}</span>
<span class="cstat-no" title="statement not covered" >      if (x === 1) { <span class="cstat-no" title="statement not covered" >return 0; </span>}</span>
<span class="cstat-no" title="statement not covered" >      if (x === Infinity) { <span class="cstat-no" title="statement not covered" >return x; </span>}</span>
&nbsp;
      var xInvSquared = <span class="cstat-no" title="statement not covered" >1 / (x * x);</span>
<span class="cstat-no" title="statement not covered" >      if (x &lt; 2) {</span>
<span class="cstat-no" title="statement not covered" >        return _log1p(x - 1 + (_sqrt(1 - xInvSquared) * x));</span>
      }
      var halfX = <span class="cstat-no" title="statement not covered" >x / 2;</span>
<span class="cstat-no" title="statement not covered" >      return _log1p(halfX + (_sqrt(1 - xInvSquared) * halfX) - 1) + (1 / LOG2E);</span>
    },
&nbsp;
    asinh: function <span class="fstat-no" title="function not covered" >asinh(</span>value) {
      var x = <span class="cstat-no" title="statement not covered" >Number(value);</span>
<span class="cstat-no" title="statement not covered" >      if (x === 0 || !globalIsFinite(x)) {</span>
<span class="cstat-no" title="statement not covered" >        return x;</span>
      }
&nbsp;
      var a = <span class="cstat-no" title="statement not covered" >_abs(x);</span>
      var aSquared = <span class="cstat-no" title="statement not covered" >a * a;</span>
      var s = <span class="cstat-no" title="statement not covered" >_sign(x);</span>
<span class="cstat-no" title="statement not covered" >      if (a &lt; 1) {</span>
<span class="cstat-no" title="statement not covered" >        return s * _log1p(a + (aSquared / (_sqrt(aSquared + 1) + 1)));</span>
      }
<span class="cstat-no" title="statement not covered" >      return s * (_log1p((a / 2) + (_sqrt(1 + (1 / aSquared)) * a / 2) - 1) + (1 / LOG2E));</span>
    },
&nbsp;
    atanh: function <span class="fstat-no" title="function not covered" >atanh(</span>value) {
      var x = <span class="cstat-no" title="statement not covered" >Number(value);</span>
&nbsp;
<span class="cstat-no" title="statement not covered" >      if (x === 0) { <span class="cstat-no" title="statement not covered" >return x; </span>}</span>
<span class="cstat-no" title="statement not covered" >      if (x === -1) { <span class="cstat-no" title="statement not covered" >return -Infinity; </span>}</span>
<span class="cstat-no" title="statement not covered" >      if (x === 1) { <span class="cstat-no" title="statement not covered" >return Infinity; </span>}</span>
<span class="cstat-no" title="statement not covered" >      if (numberIsNaN(x) || x &lt; -1 || x &gt; 1) {</span>
<span class="cstat-no" title="statement not covered" >        return NaN;</span>
      }
&nbsp;
      var a = <span class="cstat-no" title="statement not covered" >_abs(x);</span>
<span class="cstat-no" title="statement not covered" >      return _sign(x) * _log1p(2 * a / (1 - a)) / 2;</span>
    },
&nbsp;
    cbrt: function <span class="fstat-no" title="function not covered" >cbrt(</span>value) {
      var x = <span class="cstat-no" title="statement not covered" >Number(value);</span>
<span class="cstat-no" title="statement not covered" >      if (x === 0) { <span class="cstat-no" title="statement not covered" >return x; </span>}</span>
      var negate = <span class="cstat-no" title="statement not covered" >x &lt; 0;</span>
      var result;
<span class="cstat-no" title="statement not covered" >      if (negate) { <span class="cstat-no" title="statement not covered" >x = -x; </span>}</span>
<span class="cstat-no" title="statement not covered" >      if (x === Infinity) {</span>
<span class="cstat-no" title="statement not covered" >        result = Infinity;</span>
      } else {
<span class="cstat-no" title="statement not covered" >        result = _exp(_log(x) / 3);</span>
        // from http://en.wikipedia.org/wiki/Cube_root#Numerical_methods
<span class="cstat-no" title="statement not covered" >        result = ((x / (result * result)) + (2 * result)) / 3;</span>
      }
<span class="cstat-no" title="statement not covered" >      return negate ? -result : result;</span>
    },
&nbsp;
    clz32: function <span class="fstat-no" title="function not covered" >clz32(</span>value) {
      // See https://bugs.ecmascript.org/show_bug.cgi?id=2465
      var x = <span class="cstat-no" title="statement not covered" >Number(value);</span>
      var number = <span class="cstat-no" title="statement not covered" >ES.ToUint32(x);</span>
<span class="cstat-no" title="statement not covered" >      if (number === 0) {</span>
<span class="cstat-no" title="statement not covered" >        return 32;</span>
      }
<span class="cstat-no" title="statement not covered" >      return numberCLZ ? ES.Call(numberCLZ, number) : 31 - _floor(_log(number + 0.5) * LOG2E);</span>
    },
&nbsp;
    cosh: function <span class="fstat-no" title="function not covered" >cosh(</span>value) {
      var x = <span class="cstat-no" title="statement not covered" >Number(value);</span>
<span class="cstat-no" title="statement not covered" >      if (x === 0) { <span class="cstat-no" title="statement not covered" >return 1; </span>} </span>// +0 or -0
<span class="cstat-no" title="statement not covered" >      if (numberIsNaN(x)) { <span class="cstat-no" title="statement not covered" >return NaN; </span>}</span>
<span class="cstat-no" title="statement not covered" >      if (!globalIsFinite(x)) { <span class="cstat-no" title="statement not covered" >return Infinity; </span>}</span>
&nbsp;
      var t = <span class="cstat-no" title="statement not covered" >_exp(_abs(x) - 1);</span>
<span class="cstat-no" title="statement not covered" >      return (t + (1 / (t * E * E))) * (E / 2);</span>
    },
&nbsp;
    expm1: function <span class="fstat-no" title="function not covered" >expm1(</span>value) {
      var x = <span class="cstat-no" title="statement not covered" >Number(value);</span>
<span class="cstat-no" title="statement not covered" >      if (x === -Infinity) { <span class="cstat-no" title="statement not covered" >return -1; </span>}</span>
<span class="cstat-no" title="statement not covered" >      if (!globalIsFinite(x) || x === 0) { <span class="cstat-no" title="statement not covered" >return x; </span>}</span>
<span class="cstat-no" title="statement not covered" >      if (_abs(x) &gt; 0.5) {</span>
<span class="cstat-no" title="statement not covered" >        return _exp(x) - 1;</span>
      }
      // A more precise approximation using Taylor series expansion
      // from https://github.com/paulmillr/es6-shim/issues/314#issuecomment-70293986
      var t = <span class="cstat-no" title="statement not covered" >x;</span>
      var sum = <span class="cstat-no" title="statement not covered" >0;</span>
      var n = <span class="cstat-no" title="statement not covered" >1;</span>
<span class="cstat-no" title="statement not covered" >      while (sum + t !== sum) {</span>
<span class="cstat-no" title="statement not covered" >        sum += t;</span>
<span class="cstat-no" title="statement not covered" >        n += 1;</span>
<span class="cstat-no" title="statement not covered" >        t *= x / n;</span>
      }
<span class="cstat-no" title="statement not covered" >      return sum;</span>
    },
&nbsp;
    hypot: function <span class="fstat-no" title="function not covered" >hypot(</span>x, y) {
      var result = <span class="cstat-no" title="statement not covered" >0;</span>
      var largest = <span class="cstat-no" title="statement not covered" >0;</span>
<span class="cstat-no" title="statement not covered" >      for (var i = 0; i &lt; arguments.length; ++i) {</span>
        var value = <span class="cstat-no" title="statement not covered" >_abs(Number(arguments[i]));</span>
<span class="cstat-no" title="statement not covered" >        if (largest &lt; value) {</span>
<span class="cstat-no" title="statement not covered" >          result *= (largest / value) * (largest / value);</span>
<span class="cstat-no" title="statement not covered" >          result += 1;</span>
<span class="cstat-no" title="statement not covered" >          largest = value;</span>
        } else {
<span class="cstat-no" title="statement not covered" >          result += value &gt; 0 ? (value / largest) * (value / largest) : value;</span>
        }
      }
<span class="cstat-no" title="statement not covered" >      return largest === Infinity ? Infinity : largest * _sqrt(result);</span>
    },
&nbsp;
    log2: function <span class="fstat-no" title="function not covered" >log2(</span>value) {
<span class="cstat-no" title="statement not covered" >      return _log(value) * LOG2E;</span>
    },
&nbsp;
    log10: function <span class="fstat-no" title="function not covered" >log10(</span>value) {
<span class="cstat-no" title="statement not covered" >      return _log(value) * LOG10E;</span>
    },
&nbsp;
    log1p: _log1p,
&nbsp;
    sign: _sign,
&nbsp;
    sinh: function <span class="fstat-no" title="function not covered" >sinh(</span>value) {
      var x = <span class="cstat-no" title="statement not covered" >Number(value);</span>
<span class="cstat-no" title="statement not covered" >      if (!globalIsFinite(x) || x === 0) { <span class="cstat-no" title="statement not covered" >return x; </span>}</span>
&nbsp;
      var a = <span class="cstat-no" title="statement not covered" >_abs(x);</span>
<span class="cstat-no" title="statement not covered" >      if (a &lt; 1) {</span>
        var u = <span class="cstat-no" title="statement not covered" >Math.expm1(a);</span>
<span class="cstat-no" title="statement not covered" >        return _sign(x) * u * (1 + (1 / (u + 1))) / 2;</span>
      }
      var t = <span class="cstat-no" title="statement not covered" >_exp(a - 1);</span>
<span class="cstat-no" title="statement not covered" >      return _sign(x) * (t - (1 / (t * E * E))) * (E / 2);</span>
    },
&nbsp;
    tanh: function <span class="fstat-no" title="function not covered" >tanh(</span>value) {
      var x = <span class="cstat-no" title="statement not covered" >Number(value);</span>
<span class="cstat-no" title="statement not covered" >      if (numberIsNaN(x) || x === 0) { <span class="cstat-no" title="statement not covered" >return x; </span>}</span>
      // can exit early at +-20 as JS loses precision for true value at this integer
<span class="cstat-no" title="statement not covered" >      if (x &gt;= 20) { <span class="cstat-no" title="statement not covered" >return 1; </span>}</span>
<span class="cstat-no" title="statement not covered" >      if (x &lt;= -20) { <span class="cstat-no" title="statement not covered" >return -1; </span>}</span>
&nbsp;
<span class="cstat-no" title="statement not covered" >      return (Math.expm1(x) - Math.expm1(-x)) / (_exp(x) + _exp(-x));</span>
    },
&nbsp;
    trunc: function <span class="fstat-no" title="function not covered" >trunc(</span>value) {
      var x = <span class="cstat-no" title="statement not covered" >Number(value);</span>
<span class="cstat-no" title="statement not covered" >      return x &lt; 0 ? -_floor(-x) : _floor(x);</span>
    },
&nbsp;
    imul: function <span class="fstat-no" title="function not covered" >imul(</span>x, y) {
      // taken from https://developer.mozilla.org/en-US/docs/Web/JavaScript/Reference/Global_Objects/Math/imul
      var a = <span class="cstat-no" title="statement not covered" >ES.ToUint32(x);</span>
      var b = <span class="cstat-no" title="statement not covered" >ES.ToUint32(y);</span>
      var ah = <span class="cstat-no" title="statement not covered" >(a &gt;&gt;&gt; 16) &amp; 0xffff;</span>
      var al = <span class="cstat-no" title="statement not covered" >a &amp; 0xffff;</span>
      var bh = <span class="cstat-no" title="statement not covered" >(b &gt;&gt;&gt; 16) &amp; 0xffff;</span>
      var bl = <span class="cstat-no" title="statement not covered" >b &amp; 0xffff;</span>
      // the shift by 0 fixes the sign on the high part
      // the final |0 converts the unsigned value into a signed value
<span class="cstat-no" title="statement not covered" >      return (al * bl) + ((((ah * bl) + (al * bh)) &lt;&lt; 16) &gt;&gt;&gt; 0) | 0;</span>
    },
&nbsp;
    fround: function <span class="fstat-no" title="function not covered" >fround(</span>x) {
      var v = <span class="cstat-no" title="statement not covered" >Number(x);</span>
<span class="cstat-no" title="statement not covered" >      if (v === 0 || v === Infinity || v === -Infinity || numberIsNaN(v)) {</span>
<span class="cstat-no" title="statement not covered" >        return v;</span>
      }
      var sign = <span class="cstat-no" title="statement not covered" >_sign(v);</span>
      var abs = <span class="cstat-no" title="statement not covered" >_abs(v);</span>
<span class="cstat-no" title="statement not covered" >      if (abs &lt; BINARY_32_MIN_VALUE) {</span>
<span class="cstat-no" title="statement not covered" >        return sign * roundTiesToEven(abs / BINARY_32_MIN_VALUE / BINARY_32_EPSILON) * BINARY_32_MIN_VALUE * BINARY_32_EPSILON;</span>
      }
      // Veltkamp's splitting (?)
      var a = <span class="cstat-no" title="statement not covered" >(1 + (BINARY_32_EPSILON / Number.EPSILON)) * abs;</span>
      var result = <span class="cstat-no" title="statement not covered" >a - (a - abs);</span>
<span class="cstat-no" title="statement not covered" >      if (result &gt; BINARY_32_MAX_VALUE || numberIsNaN(result)) {</span>
<span class="cstat-no" title="statement not covered" >        return sign * Infinity;</span>
      }
<span class="cstat-no" title="statement not covered" >      return sign * result;</span>
    }
  };
&nbsp;
  var withinULPDistance = function withinULPDistance(result, expected, distance) {
    return _abs(1 - (result / expected)) / Number.EPSILON &lt; (distance || 8);
  };
&nbsp;
  defineProperties(Math, MathShims);
  // Chrome &lt; 40 sinh returns ∞ for large numbers
  defineProperty(Math, 'sinh', MathShims.sinh, Math.sinh(710) === Infinity);
  // Chrome &lt; 40 cosh returns ∞ for large numbers
  defineProperty(Math, 'cosh', MathShims.cosh, Math.cosh(710) === Infinity);
  // IE 11 TP has an imprecise log1p: reports Math.log1p(-1e-17) as 0
  defineProperty(Math, 'log1p', MathShims.log1p, Math.log1p(-1e-17) !== -1e-17);
  // IE 11 TP has an imprecise asinh: reports Math.asinh(-1e7) as not exactly equal to -Math.asinh(1e7)
  defineProperty(Math, 'asinh', MathShims.asinh, Math.asinh(-1e7) !== -Math.asinh(1e7));
  // Chrome &lt; 54 asinh returns ∞ for large numbers and should not
  defineProperty(Math, 'asinh', MathShims.asinh, Math.asinh(1e+300) === Infinity);
  // Chrome &lt; 54 atanh incorrectly returns 0 for large numbers
  defineProperty(Math, 'atanh', MathShims.atanh, Math.atanh(1e-300) === 0);
  // Chrome 40 has an imprecise Math.tanh with very small numbers
  defineProperty(Math, 'tanh', MathShims.tanh, Math.tanh(-2e-17) !== -2e-17);
  // Chrome 40 loses Math.acosh precision with high numbers
  defineProperty(Math, 'acosh', MathShims.acosh, Math.acosh(Number.MAX_VALUE) === Infinity);
  // Chrome &lt; 54 has an inaccurate acosh for EPSILON deltas
  defineProperty(Math, 'acosh', MathShims.acosh, !withinULPDistance(Math.acosh(1 + Number.EPSILON), Math.sqrt(2 * Number.EPSILON)));
  // Firefox 38 on Windows
  defineProperty(Math, 'cbrt', MathShims.cbrt, !withinULPDistance(Math.cbrt(1e-300), 1e-100));
  // node 0.11 has an imprecise Math.sinh with very small numbers
  defineProperty(Math, 'sinh', MathShims.sinh, Math.sinh(-2e-17) !== -2e-17);
  // FF 35 on Linux reports 22025.465794806725 for Math.expm1(10)
  var expm1OfTen = Math.expm1(10);
  defineProperty(Math, 'expm1', MathShims.expm1, expm1OfTen &gt; 22025.465794806719 || expm1OfTen &lt; 22025.4657948067165168);
  // node v12.11 - v12.15 report NaN
  defineProperty(Math, 'hypot', MathShims.hypot, Math.hypot(Infinity, NaN) !== Infinity);
&nbsp;
  var origMathRound = Math.round;
  // breaks in e.g. Safari 8, Internet Explorer 11, Opera 12
  var roundHandlesBoundaryConditions = Math.round(0.5 - (Number.EPSILON / 4)) === 0
    &amp;&amp; Math.round(-0.5 + (Number.EPSILON / 3.99)) === 1;
&nbsp;
  // When engines use Math.floor(x + 0.5) internally, Math.round can be buggy for large integers.
  // This behavior should be governed by "round to nearest, ties to even mode"
  // see http://www.ecma-international.org/ecma-262/6.0/#sec-terms-and-definitions-number-type
  // These are the boundary cases where it breaks.
  var smallestPositiveNumberWhereRoundBreaks = inverseEpsilon + 1;
  var largestPositiveNumberWhereRoundBreaks = (2 * inverseEpsilon) - 1;
  var roundDoesNotIncreaseIntegers = [
    smallestPositiveNumberWhereRoundBreaks,
    largestPositiveNumberWhereRoundBreaks
  ].every(function (num) {
    return Math.round(num) === num;
  });
  defineProperty(Math, 'round', function round(x) {
    var floor = _floor(x);
    var ceil = floor === -1 ? -0 : floor + 1;
    return x - floor &lt; 0.5 ? floor : ceil;
  }, !roundHandlesBoundaryConditions || <span class="branch-1 cbranch-no" title="branch not covered" >!roundDoesNotIncreaseIntegers)</span>;
  Value.preserveToString(Math.round, origMathRound);
&nbsp;
  var origImul = Math.imul;
  <span class="missing-if-branch" title="if path not taken" >I</span>if (Math.imul(0xffffffff, 5) !== -5) {
    // Safari 6.1, at least, reports "0" for this value
<span class="cstat-no" title="statement not covered" >    Math.imul = MathShims.imul;</span>
<span class="cstat-no" title="statement not covered" >    Value.preserveToString(Math.imul, origImul);</span>
  }
  <span class="missing-if-branch" title="if path not taken" >I</span>if (Math.imul.length !== 2) {
    // Safari 8.0.4 has a length of 1
    // fixed in https://bugs.webkit.org/show_bug.cgi?id=143658
<span class="cstat-no" title="statement not covered" >    overrideNative(Math, 'imul', function <span class="fstat-no" title="function not covered" >imul(</span>x, y) {</span>
<span class="cstat-no" title="statement not covered" >      return ES.Call(origImul, Math, arguments);</span>
    });
  }
&nbsp;
  // Promises
  // Simplest possible implementation; use a 3rd-party library if you
  // want the best possible speed and/or long stack traces.
  var PromiseShim = (function () {
    var setTimeout = globals.setTimeout;
    // some environments don't have setTimeout - no way to shim here.
    <span class="missing-if-branch" title="if path not taken" >I</span>if (typeof setTimeout !== 'function' &amp;&amp; <span class="branch-1 cbranch-no" title="branch not covered" >typeof setTimeout !== 'object')</span> { <span class="cstat-no" title="statement not covered" >return; </span>}
&nbsp;
    ES.IsPromise = <span class="fstat-no" title="function not covered" >fu</span>nction (promise) {
<span class="cstat-no" title="statement not covered" >      if (!ES.TypeIsObject(promise)) {</span>
<span class="cstat-no" title="statement not covered" >        return false;</span>
      }
<span class="cstat-no" title="statement not covered" >      if (typeof promise._promise === 'undefined') {</span>
<span class="cstat-no" title="statement not covered" >        return false; </span>// uninitialized, or missing our hidden field.
      }
<span class="cstat-no" title="statement not covered" >      return true;</span>
    };
&nbsp;
    // "PromiseCapability" in the spec is what most promise implementations
    // call a "deferred".
    var PromiseCapability = function (C) {
      <span class="missing-if-branch" title="if path not taken" >I</span>if (!ES.IsConstructor(C)) {
<span class="cstat-no" title="statement not covered" >        throw new TypeError('Bad promise constructor');</span>
      }
      var capability = this;
      var resolver = function (resolve, reject) {
        <span class="missing-if-branch" title="if path not taken" >I</span>if (capability.resolve !== void 0 || capability.reject !== void 0) {
<span class="cstat-no" title="statement not covered" >          throw new TypeError('Bad Promise implementation!');</span>
        }
        capability.resolve = resolve;
        capability.reject = reject;
      };
      // Initialize fields to inform optimizers about the object shape.
      capability.resolve = void 0;
      capability.reject = void 0;
      capability.promise = new C(resolver);
      <span class="missing-if-branch" title="if path not taken" >I</span>if (!(ES.IsCallable(capability.resolve) &amp;&amp; ES.IsCallable(capability.reject))) {
<span class="cstat-no" title="statement not covered" >        throw new TypeError('Bad promise constructor');</span>
      }
    };
&nbsp;
    // find an appropriate setImmediate-alike
    var makeZeroTimeout;
    <span class="missing-if-branch" title="if path not taken" >I</span>if (typeof window !== 'undefined' &amp;&amp; <span class="branch-1 cbranch-no" title="branch not covered" >ES.IsCallable(window.postMessage))</span> {
<span class="cstat-no" title="statement not covered" >      makeZeroTimeout = <span class="fstat-no" title="function not covered" >fu</span>nction () {</span>
        // from http://dbaron.org/log/20100309-faster-timeouts
        var timeouts = <span class="cstat-no" title="statement not covered" >[];</span>
        var messageName = <span class="cstat-no" title="statement not covered" >'zero-timeout-message';</span>
        var setZeroTimeout = <span class="cstat-no" title="statement not covered" ><span class="fstat-no" title="function not covered" >fu</span>nction (fn) {</span>
<span class="cstat-no" title="statement not covered" >          _push(timeouts, fn);</span>
<span class="cstat-no" title="statement not covered" >          window.postMessage(messageName, '*');</span>
        };
        var handleMessage = <span class="cstat-no" title="statement not covered" ><span class="fstat-no" title="function not covered" >fu</span>nction (event) {</span>
<span class="cstat-no" title="statement not covered" >          if (event.source === window &amp;&amp; event.data === messageName) {</span>
<span class="cstat-no" title="statement not covered" >            event.stopPropagation();</span>
<span class="cstat-no" title="statement not covered" >            if (timeouts.length === 0) { <span class="cstat-no" title="statement not covered" >return; </span>}</span>
            var fn = <span class="cstat-no" title="statement not covered" >_shift(timeouts);</span>
<span class="cstat-no" title="statement not covered" >            fn();</span>
          }
        };
<span class="cstat-no" title="statement not covered" >        window.addEventListener('message', handleMessage, true);</span>
<span class="cstat-no" title="statement not covered" >        return setZeroTimeout;</span>
      };
    }
    var makePromiseAsap = <span class="fstat-no" title="function not covered" >fu</span>nction () {
      // An efficient task-scheduler based on a pre-existing Promise
      // implementation, which we can use even if we override the
      // global Promise below (in order to workaround bugs)
      // https://github.com/Raynos/observ-hash/issues/2#issuecomment-35857671
      var P = <span class="cstat-no" title="statement not covered" >globals.Promise;</span>
      var pr = <span class="cstat-no" title="statement not covered" >P &amp;&amp; P.resolve &amp;&amp; P.resolve();</span>
<span class="cstat-no" title="statement not covered" >      return pr &amp;&amp; <span class="fstat-no" title="function not covered" >fu</span>nction (task) {</span>
<span class="cstat-no" title="statement not covered" >        return pr.then(task);</span>
      };
    };
    var enqueue = ES.IsCallable(globals.setImmediate)
      ? globals.setImmediate
      : (
<span class="branch-1 cbranch-no" title="branch not covered" >        typeof process === 'object' &amp;&amp; process.nextTick</span>
          ? process.nextTick
          : makePromiseAsap() || (ES.IsCallable(makeZeroTimeout) ? makeZeroTimeout() : <span class="fstat-no" title="function not covered" >fu</span>nction (task) { <span class="cstat-no" title="statement not covered" >setTimeout(task, 0); </span>})
      ); // fallback
&nbsp;
    // Constants for Promise implementation
    var PROMISE_IDENTITY = <span class="fstat-no" title="function not covered" >fu</span>nction (x) { <span class="cstat-no" title="statement not covered" >return x; </span>};
    var PROMISE_THROWER = <span class="fstat-no" title="function not covered" >fu</span>nction (e) { <span class="cstat-no" title="statement not covered" >throw e; </span>};
    var PROMISE_PENDING = 0;
    var PROMISE_FULFILLED = 1;
    var PROMISE_REJECTED = 2;
    // We store fulfill/reject handlers and capabilities in a single array.
    var PROMISE_FULFILL_OFFSET = 0;
    var PROMISE_REJECT_OFFSET = 1;
    var PROMISE_CAPABILITY_OFFSET = 2;
    // This is used in an optimization for chaining promises via then.
    var PROMISE_FAKE_CAPABILITY = {};
&nbsp;
    var enqueuePromiseReactionJob = <span class="fstat-no" title="function not covered" >fu</span>nction (handler, capability, argument) {
<span class="cstat-no" title="statement not covered" >      enqueue(<span class="fstat-no" title="function not covered" >fu</span>nction () {</span>
<span class="cstat-no" title="statement not covered" >        promiseReactionJob(handler, capability, argument);</span>
      });
    };
&nbsp;
    var promiseReactionJob = <span class="fstat-no" title="function not covered" >fu</span>nction (handler, promiseCapability, argument) {
      var handlerResult, f;
<span class="cstat-no" title="statement not covered" >      if (promiseCapability === PROMISE_FAKE_CAPABILITY) {</span>
        // Fast case, when we don't actually need to chain through to a
        // (real) promiseCapability.
<span class="cstat-no" title="statement not covered" >        return handler(argument);</span>
      }
<span class="cstat-no" title="statement not covered" >      try {</span>
<span class="cstat-no" title="statement not covered" >        handlerResult = handler(argument);</span>
<span class="cstat-no" title="statement not covered" >        f = promiseCapability.resolve;</span>
      } catch (e) {
<span class="cstat-no" title="statement not covered" >        handlerResult = e;</span>
<span class="cstat-no" title="statement not covered" >        f = promiseCapability.reject;</span>
      }
<span class="cstat-no" title="statement not covered" >      f(handlerResult);</span>
    };
&nbsp;
    var fulfillPromise = <span class="fstat-no" title="function not covered" >fu</span>nction (promise, value) {
      var _promise = <span class="cstat-no" title="statement not covered" >promise._promise;</span>
      var length = <span class="cstat-no" title="statement not covered" >_promise.reactionLength;</span>
<span class="cstat-no" title="statement not covered" >      if (length &gt; 0) {</span>
<span class="cstat-no" title="statement not covered" >        enqueuePromiseReactionJob(</span>
          _promise.fulfillReactionHandler0,
          _promise.reactionCapability0,
          value
        );
<span class="cstat-no" title="statement not covered" >        _promise.fulfillReactionHandler0 = void 0;</span>
<span class="cstat-no" title="statement not covered" >        _promise.rejectReactions0 = void 0;</span>
<span class="cstat-no" title="statement not covered" >        _promise.reactionCapability0 = void 0;</span>
<span class="cstat-no" title="statement not covered" >        if (length &gt; 1) {</span>
<span class="cstat-no" title="statement not covered" >          for (var i = 1, idx = 0; i &lt; length; i++, idx += 3) {</span>
<span class="cstat-no" title="statement not covered" >            enqueuePromiseReactionJob(</span>
              _promise[idx + PROMISE_FULFILL_OFFSET],
              _promise[idx + PROMISE_CAPABILITY_OFFSET],
              value
            );
<span class="cstat-no" title="statement not covered" >            promise[idx + PROMISE_FULFILL_OFFSET] = void 0;</span>
<span class="cstat-no" title="statement not covered" >            promise[idx + PROMISE_REJECT_OFFSET] = void 0;</span>
<span class="cstat-no" title="statement not covered" >            promise[idx + PROMISE_CAPABILITY_OFFSET] = void 0;</span>
          }
        }
      }
<span class="cstat-no" title="statement not covered" >      _promise.result = value;</span>
<span class="cstat-no" title="statement not covered" >      _promise.state = PROMISE_FULFILLED;</span>
<span class="cstat-no" title="statement not covered" >      _promise.reactionLength = 0;</span>
    };
&nbsp;
    var rejectPromise = <span class="fstat-no" title="function not covered" >fu</span>nction (promise, reason) {
      var _promise = <span class="cstat-no" title="statement not covered" >promise._promise;</span>
      var length = <span class="cstat-no" title="statement not covered" >_promise.reactionLength;</span>
<span class="cstat-no" title="statement not covered" >      if (length &gt; 0) {</span>
<span class="cstat-no" title="statement not covered" >        enqueuePromiseReactionJob(</span>
          _promise.rejectReactionHandler0,
          _promise.reactionCapability0,
          reason
        );
<span class="cstat-no" title="statement not covered" >        _promise.fulfillReactionHandler0 = void 0;</span>
<span class="cstat-no" title="statement not covered" >        _promise.rejectReactions0 = void 0;</span>
<span class="cstat-no" title="statement not covered" >        _promise.reactionCapability0 = void 0;</span>
<span class="cstat-no" title="statement not covered" >        if (length &gt; 1) {</span>
<span class="cstat-no" title="statement not covered" >          for (var i = 1, idx = 0; i &lt; length; i++, idx += 3) {</span>
<span class="cstat-no" title="statement not covered" >            enqueuePromiseReactionJob(</span>
              _promise[idx + PROMISE_REJECT_OFFSET],
              _promise[idx + PROMISE_CAPABILITY_OFFSET],
              reason
            );
<span class="cstat-no" title="statement not covered" >            promise[idx + PROMISE_FULFILL_OFFSET] = void 0;</span>
<span class="cstat-no" title="statement not covered" >            promise[idx + PROMISE_REJECT_OFFSET] = void 0;</span>
<span class="cstat-no" title="statement not covered" >            promise[idx + PROMISE_CAPABILITY_OFFSET] = void 0;</span>
          }
        }
      }
<span class="cstat-no" title="statement not covered" >      _promise.result = reason;</span>
<span class="cstat-no" title="statement not covered" >      _promise.state = PROMISE_REJECTED;</span>
<span class="cstat-no" title="statement not covered" >      _promise.reactionLength = 0;</span>
    };
&nbsp;
    var createResolvingFunctions = function (promise) {
      var alreadyResolved = false;
      var resolve = <span class="fstat-no" title="function not covered" >fu</span>nction (resolution) {
        var then;
<span class="cstat-no" title="statement not covered" >        if (alreadyResolved) { <span class="cstat-no" title="statement not covered" >return; </span>}</span>
<span class="cstat-no" title="statement not covered" >        alreadyResolved = true;</span>
<span class="cstat-no" title="statement not covered" >        if (resolution === promise) {</span>
<span class="cstat-no" title="statement not covered" >          return rejectPromise(promise, new TypeError('Self resolution'));</span>
        }
<span class="cstat-no" title="statement not covered" >        if (!ES.TypeIsObject(resolution)) {</span>
<span class="cstat-no" title="statement not covered" >          return fulfillPromise(promise, resolution);</span>
        }
<span class="cstat-no" title="statement not covered" >        try {</span>
<span class="cstat-no" title="statement not covered" >          then = resolution.then;</span>
        } catch (e) {
<span class="cstat-no" title="statement not covered" >          return rejectPromise(promise, e);</span>
        }
<span class="cstat-no" title="statement not covered" >        if (!ES.IsCallable(then)) {</span>
<span class="cstat-no" title="statement not covered" >          return fulfillPromise(promise, resolution);</span>
        }
<span class="cstat-no" title="statement not covered" >        enqueue(<span class="fstat-no" title="function not covered" >fu</span>nction () {</span>
<span class="cstat-no" title="statement not covered" >          promiseResolveThenableJob(promise, resolution, then);</span>
        });
      };
      var reject = <span class="fstat-no" title="function not covered" >fu</span>nction (reason) {
<span class="cstat-no" title="statement not covered" >        if (alreadyResolved) { <span class="cstat-no" title="statement not covered" >return; </span>}</span>
<span class="cstat-no" title="statement not covered" >        alreadyResolved = true;</span>
<span class="cstat-no" title="statement not covered" >        return rejectPromise(promise, reason);</span>
      };
      return { resolve: resolve, reject: reject };
    };
&nbsp;
    var optimizedThen = <span class="fstat-no" title="function not covered" >fu</span>nction (then, thenable, resolve, reject) {
      // Optimization: since we discard the result, we can pass our
      // own then implementation a special hint to let it know it
      // doesn't have to create it.  (The PROMISE_FAKE_CAPABILITY
      // object is local to this implementation and unforgeable outside.)
<span class="cstat-no" title="statement not covered" >      if (then === Promise$prototype$then) {</span>
<span class="cstat-no" title="statement not covered" >        _call(then, thenable, resolve, reject, PROMISE_FAKE_CAPABILITY);</span>
      } else {
<span class="cstat-no" title="statement not covered" >        _call(then, thenable, resolve, reject);</span>
      }
    };
    var promiseResolveThenableJob = <span class="fstat-no" title="function not covered" >fu</span>nction (promise, thenable, then) {
      var resolvingFunctions = <span class="cstat-no" title="statement not covered" >createResolvingFunctions(promise);</span>
      var resolve = <span class="cstat-no" title="statement not covered" >resolvingFunctions.resolve;</span>
      var reject = <span class="cstat-no" title="statement not covered" >resolvingFunctions.reject;</span>
<span class="cstat-no" title="statement not covered" >      try {</span>
<span class="cstat-no" title="statement not covered" >        optimizedThen(then, thenable, resolve, reject);</span>
      } catch (e) {
<span class="cstat-no" title="statement not covered" >        reject(e);</span>
      }
    };
&nbsp;
    var Promise$prototype, Promise$prototype$then;
    var Promise = (function () {
      var PromiseShim = function Promise(resolver) {
        <span class="missing-if-branch" title="if path not taken" >I</span>if (!(this instanceof PromiseShim)) {
<span class="cstat-no" title="statement not covered" >          throw new TypeError('Constructor Promise requires "new"');</span>
        }
        <span class="missing-if-branch" title="if path not taken" >I</span>if (this &amp;&amp; this._promise) {
<span class="cstat-no" title="statement not covered" >          throw new TypeError('Bad construction');</span>
        }
        // see https://bugs.ecmascript.org/show_bug.cgi?id=2482
        <span class="missing-if-branch" title="if path not taken" >I</span>if (!ES.IsCallable(resolver)) {
<span class="cstat-no" title="statement not covered" >          throw new TypeError('not a valid resolver');</span>
        }
        var promise = emulateES6construct(this, PromiseShim, Promise$prototype, {
          _promise: {
            result: void 0,
            state: PROMISE_PENDING,
            // The first member of the "reactions" array is inlined here,
            // since most promises only have one reaction.
            // We've also exploded the 'reaction' object to inline the
            // "handler" and "capability" fields, since both fulfill and
            // reject reactions share the same capability.
            reactionLength: 0,
            fulfillReactionHandler0: void 0,
            rejectReactionHandler0: void 0,
            reactionCapability0: void 0
          }
        });
        var resolvingFunctions = createResolvingFunctions(promise);
        var reject = resolvingFunctions.reject;
        try {
          resolver(resolvingFunctions.resolve, reject);
        } catch (e) {
<span class="cstat-no" title="statement not covered" >          reject(e);</span>
        }
        return promise;
      };
      return PromiseShim;
    }());
    Promise$prototype = Promise.prototype;
&nbsp;
    var _promiseAllResolver = <span class="fstat-no" title="function not covered" >fu</span>nction (index, values, capability, remaining) {
      var alreadyCalled = <span class="cstat-no" title="statement not covered" >false;</span>
<span class="cstat-no" title="statement not covered" >      return <span class="fstat-no" title="function not covered" >fu</span>nction (x) {</span>
<span class="cstat-no" title="statement not covered" >        if (alreadyCalled) { <span class="cstat-no" title="statement not covered" >return; </span>}</span>
<span class="cstat-no" title="statement not covered" >        alreadyCalled = true;</span>
<span class="cstat-no" title="statement not covered" >        values[index] = x;</span>
<span class="cstat-no" title="statement not covered" >        if ((--remaining.count) === 0) {</span>
          var resolve = <span class="cstat-no" title="statement not covered" >capability.resolve;</span>
<span class="cstat-no" title="statement not covered" >          resolve(values); </span>// call w/ this===undefined
        }
      };
    };
&nbsp;
    var performPromiseAll = <span class="fstat-no" title="function not covered" >fu</span>nction (iteratorRecord, C, resultCapability) {
      var it = <span class="cstat-no" title="statement not covered" >iteratorRecord.iterator;</span>
      var values = <span class="cstat-no" title="statement not covered" >[];</span>
      var remaining = <span class="cstat-no" title="statement not covered" >{ count: 1 };</span>
      var next, nextValue;
      var index = <span class="cstat-no" title="statement not covered" >0;</span>
<span class="cstat-no" title="statement not covered" >      while (true) {</span>
<span class="cstat-no" title="statement not covered" >        try {</span>
<span class="cstat-no" title="statement not covered" >          next = ES.IteratorStep(it);</span>
<span class="cstat-no" title="statement not covered" >          if (next === false) {</span>
<span class="cstat-no" title="statement not covered" >            iteratorRecord.done = true;</span>
<span class="cstat-no" title="statement not covered" >            break;</span>
          }
<span class="cstat-no" title="statement not covered" >          nextValue = next.value;</span>
        } catch (e) {
<span class="cstat-no" title="statement not covered" >          iteratorRecord.done = true;</span>
<span class="cstat-no" title="statement not covered" >          throw e;</span>
        }
<span class="cstat-no" title="statement not covered" >        values[index] = void 0;</span>
        var nextPromise = <span class="cstat-no" title="statement not covered" >C.resolve(nextValue);</span>
        var resolveElement = <span class="cstat-no" title="statement not covered" >_promiseAllResolver(</span>
          index,
          values,
          resultCapability,
          remaining
        );
<span class="cstat-no" title="statement not covered" >        remaining.count += 1;</span>
<span class="cstat-no" title="statement not covered" >        optimizedThen(nextPromise.then, nextPromise, resolveElement, resultCapability.reject);</span>
<span class="cstat-no" title="statement not covered" >        index += 1;</span>
      }
<span class="cstat-no" title="statement not covered" >      if ((--remaining.count) === 0) {</span>
        var resolve = <span class="cstat-no" title="statement not covered" >resultCapability.resolve;</span>
<span class="cstat-no" title="statement not covered" >        resolve(values); </span>// call w/ this===undefined
      }
<span class="cstat-no" title="statement not covered" >      return resultCapability.promise;</span>
    };
&nbsp;
    var performPromiseRace = <span class="fstat-no" title="function not covered" >fu</span>nction (iteratorRecord, C, resultCapability) {
      var it = <span class="cstat-no" title="statement not covered" >iteratorRecord.iterator;</span>
      var next, nextValue, nextPromise;
<span class="cstat-no" title="statement not covered" >      while (true) {</span>
<span class="cstat-no" title="statement not covered" >        try {</span>
<span class="cstat-no" title="statement not covered" >          next = ES.IteratorStep(it);</span>
<span class="cstat-no" title="statement not covered" >          if (next === false) {</span>
            // NOTE: If iterable has no items, resulting promise will never
            // resolve; see:
            // https://github.com/domenic/promises-unwrapping/issues/75
            // https://bugs.ecmascript.org/show_bug.cgi?id=2515
<span class="cstat-no" title="statement not covered" >            iteratorRecord.done = true;</span>
<span class="cstat-no" title="statement not covered" >            break;</span>
          }
<span class="cstat-no" title="statement not covered" >          nextValue = next.value;</span>
        } catch (e) {
<span class="cstat-no" title="statement not covered" >          iteratorRecord.done = true;</span>
<span class="cstat-no" title="statement not covered" >          throw e;</span>
        }
<span class="cstat-no" title="statement not covered" >        nextPromise = C.resolve(nextValue);</span>
<span class="cstat-no" title="statement not covered" >        optimizedThen(nextPromise.then, nextPromise, resultCapability.resolve, resultCapability.reject);</span>
      }
<span class="cstat-no" title="statement not covered" >      return resultCapability.promise;</span>
    };
&nbsp;
    defineProperties(Promise, {
      all: function <span class="fstat-no" title="function not covered" >all(</span>iterable) {
        var C = <span class="cstat-no" title="statement not covered" >this;</span>
<span class="cstat-no" title="statement not covered" >        if (!ES.TypeIsObject(C)) {</span>
<span class="cstat-no" title="statement not covered" >          throw new TypeError('Promise is not object');</span>
        }
        var capability = <span class="cstat-no" title="statement not covered" >new PromiseCapability(C);</span>
        var iterator, iteratorRecord;
<span class="cstat-no" title="statement not covered" >        try {</span>
<span class="cstat-no" title="statement not covered" >          iterator = ES.GetIterator(iterable);</span>
<span class="cstat-no" title="statement not covered" >          iteratorRecord = { iterator: iterator, done: false };</span>
<span class="cstat-no" title="statement not covered" >          return performPromiseAll(iteratorRecord, C, capability);</span>
        } catch (e) {
          var exception = <span class="cstat-no" title="statement not covered" >e;</span>
<span class="cstat-no" title="statement not covered" >          if (iteratorRecord &amp;&amp; !iteratorRecord.done) {</span>
<span class="cstat-no" title="statement not covered" >            try {</span>
<span class="cstat-no" title="statement not covered" >              ES.IteratorClose(iterator, true);</span>
            } catch (ee) {
<span class="cstat-no" title="statement not covered" >              exception = ee;</span>
            }
          }
          var reject = <span class="cstat-no" title="statement not covered" >capability.reject;</span>
<span class="cstat-no" title="statement not covered" >          reject(exception);</span>
<span class="cstat-no" title="statement not covered" >          return capability.promise;</span>
        }
      },
&nbsp;
      race: function <span class="fstat-no" title="function not covered" >race(</span>iterable) {
        var C = <span class="cstat-no" title="statement not covered" >this;</span>
<span class="cstat-no" title="statement not covered" >        if (!ES.TypeIsObject(C)) {</span>
<span class="cstat-no" title="statement not covered" >          throw new TypeError('Promise is not object');</span>
        }
        var capability = <span class="cstat-no" title="statement not covered" >new PromiseCapability(C);</span>
        var iterator, iteratorRecord;
<span class="cstat-no" title="statement not covered" >        try {</span>
<span class="cstat-no" title="statement not covered" >          iterator = ES.GetIterator(iterable);</span>
<span class="cstat-no" title="statement not covered" >          iteratorRecord = { iterator: iterator, done: false };</span>
<span class="cstat-no" title="statement not covered" >          return performPromiseRace(iteratorRecord, C, capability);</span>
        } catch (e) {
          var exception = <span class="cstat-no" title="statement not covered" >e;</span>
<span class="cstat-no" title="statement not covered" >          if (iteratorRecord &amp;&amp; !iteratorRecord.done) {</span>
<span class="cstat-no" title="statement not covered" >            try {</span>
<span class="cstat-no" title="statement not covered" >              ES.IteratorClose(iterator, true);</span>
            } catch (ee) {
<span class="cstat-no" title="statement not covered" >              exception = ee;</span>
            }
          }
          var reject = <span class="cstat-no" title="statement not covered" >capability.reject;</span>
<span class="cstat-no" title="statement not covered" >          reject(exception);</span>
<span class="cstat-no" title="statement not covered" >          return capability.promise;</span>
        }
      },
&nbsp;
      reject: function <span class="fstat-no" title="function not covered" >reject(</span>reason) {
        var C = <span class="cstat-no" title="statement not covered" >this;</span>
<span class="cstat-no" title="statement not covered" >        if (!ES.TypeIsObject(C)) {</span>
<span class="cstat-no" title="statement not covered" >          throw new TypeError('Bad promise constructor');</span>
        }
        var capability = <span class="cstat-no" title="statement not covered" >new PromiseCapability(C);</span>
        var rejectFunc = <span class="cstat-no" title="statement not covered" >capability.reject;</span>
<span class="cstat-no" title="statement not covered" >        rejectFunc(reason); </span>// call with this===undefined
<span class="cstat-no" title="statement not covered" >        return capability.promise;</span>
      },
&nbsp;
      resolve: function <span class="fstat-no" title="function not covered" >resolve(</span>v) {
        // See https://esdiscuss.org/topic/fixing-promise-resolve for spec
        var C = <span class="cstat-no" title="statement not covered" >this;</span>
<span class="cstat-no" title="statement not covered" >        if (!ES.TypeIsObject(C)) {</span>
<span class="cstat-no" title="statement not covered" >          throw new TypeError('Bad promise constructor');</span>
        }
<span class="cstat-no" title="statement not covered" >        if (ES.IsPromise(v)) {</span>
          var constructor = <span class="cstat-no" title="statement not covered" >v.constructor;</span>
<span class="cstat-no" title="statement not covered" >          if (constructor === C) {</span>
<span class="cstat-no" title="statement not covered" >            return v;</span>
          }
        }
        var capability = <span class="cstat-no" title="statement not covered" >new PromiseCapability(C);</span>
        var resolveFunc = <span class="cstat-no" title="statement not covered" >capability.resolve;</span>
<span class="cstat-no" title="statement not covered" >        resolveFunc(v); </span>// call with this===undefined
<span class="cstat-no" title="statement not covered" >        return capability.promise;</span>
      }
    });
&nbsp;
    defineProperties(Promise$prototype, {
      'catch': <span class="fstat-no" title="function not covered" >fu</span>nction (onRejected) {
<span class="cstat-no" title="statement not covered" >        return this.then(null, onRejected);</span>
      },
&nbsp;
      then: function <span class="fstat-no" title="function not covered" >then(</span>onFulfilled, onRejected) {
        var promise = <span class="cstat-no" title="statement not covered" >this;</span>
<span class="cstat-no" title="statement not covered" >        if (!ES.IsPromise(promise)) { <span class="cstat-no" title="statement not covered" >throw new TypeError('not a promise'); </span>}</span>
        var C = <span class="cstat-no" title="statement not covered" >ES.SpeciesConstructor(promise, Promise);</span>
        var resultCapability;
        var returnValueIsIgnored = <span class="cstat-no" title="statement not covered" >arguments.length &gt; 2 &amp;&amp; arguments[2] === PROMISE_FAKE_CAPABILITY;</span>
<span class="cstat-no" title="statement not covered" >        if (returnValueIsIgnored &amp;&amp; C === Promise) {</span>
<span class="cstat-no" title="statement not covered" >          resultCapability = PROMISE_FAKE_CAPABILITY;</span>
        } else {
<span class="cstat-no" title="statement not covered" >          resultCapability = new PromiseCapability(C);</span>
        }
        // PerformPromiseThen(promise, onFulfilled, onRejected, resultCapability)
        // Note that we've split the 'reaction' object into its two
        // components, "capabilities" and "handler"
        // "capabilities" is always equal to `resultCapability`
        var fulfillReactionHandler = <span class="cstat-no" title="statement not covered" >ES.IsCallable(onFulfilled) ? onFulfilled : PROMISE_IDENTITY;</span>
        var rejectReactionHandler = <span class="cstat-no" title="statement not covered" >ES.IsCallable(onRejected) ? onRejected : PROMISE_THROWER;</span>
        var _promise = <span class="cstat-no" title="statement not covered" >promise._promise;</span>
        var value;
<span class="cstat-no" title="statement not covered" >        if (_promise.state === PROMISE_PENDING) {</span>
<span class="cstat-no" title="statement not covered" >          if (_promise.reactionLength === 0) {</span>
<span class="cstat-no" title="statement not covered" >            _promise.fulfillReactionHandler0 = fulfillReactionHandler;</span>
<span class="cstat-no" title="statement not covered" >            _promise.rejectReactionHandler0 = rejectReactionHandler;</span>
<span class="cstat-no" title="statement not covered" >            _promise.reactionCapability0 = resultCapability;</span>
          } else {
            var idx = <span class="cstat-no" title="statement not covered" >3 * (_promise.reactionLength - 1);</span>
<span class="cstat-no" title="statement not covered" >            _promise[idx + PROMISE_FULFILL_OFFSET] = fulfillReactionHandler;</span>
<span class="cstat-no" title="statement not covered" >            _promise[idx + PROMISE_REJECT_OFFSET] = rejectReactionHandler;</span>
<span class="cstat-no" title="statement not covered" >            _promise[idx + PROMISE_CAPABILITY_OFFSET] = resultCapability;</span>
          }
<span class="cstat-no" title="statement not covered" >          _promise.reactionLength += 1;</span>
        } else <span class="cstat-no" title="statement not covered" >if (_promise.state === PROMISE_FULFILLED) {</span>
<span class="cstat-no" title="statement not covered" >          value = _promise.result;</span>
<span class="cstat-no" title="statement not covered" >          enqueuePromiseReactionJob(</span>
            fulfillReactionHandler,
            resultCapability,
            value
          );
        } else <span class="cstat-no" title="statement not covered" >if (_promise.state === PROMISE_REJECTED) {</span>
<span class="cstat-no" title="statement not covered" >          value = _promise.result;</span>
<span class="cstat-no" title="statement not covered" >          enqueuePromiseReactionJob(</span>
            rejectReactionHandler,
            resultCapability,
            value
          );
        } else {
<span class="cstat-no" title="statement not covered" >          throw new TypeError('unexpected Promise state');</span>
        }
<span class="cstat-no" title="statement not covered" >        return resultCapability.promise;</span>
      }
    });
    // This helps the optimizer by ensuring that methods which take
    // capabilities aren't polymorphic.
    PROMISE_FAKE_CAPABILITY = new PromiseCapability(Promise);
    Promise$prototype$then = Promise$prototype.then;
&nbsp;
    return Promise;
  }());
&nbsp;
  // Chrome's native Promise has extra methods that it shouldn't have. Let's remove them.
  <span class="missing-if-branch" title="else path not taken" >E</span>if (globals.Promise) {
    delete globals.Promise.accept;
    delete globals.Promise.defer;
    delete globals.Promise.prototype.chain;
  }
&nbsp;
  <span class="missing-if-branch" title="else path not taken" >E</span>if (typeof PromiseShim === 'function') {
    // export the Promise constructor.
    defineProperties(globals, { Promise: PromiseShim });
    // In Chrome 33 (and thereabouts) Promise is defined, but the
    // implementation is buggy in a number of ways.  Let's check subclassing
    // support to see if we have a buggy implementation.
    var promiseSupportsSubclassing = supportsSubclassing(globals.Promise, function (S) {
      return S.resolve(42).then(function () {}) instanceof S;
    });
    var promiseIgnoresNonFunctionThenCallbacks = !throwsError(function () {
      return globals.Promise.reject(42).then(null, 5).then(null, noop);
    });
    var promiseRequiresObjectContext = throwsError(function () { return globals.Promise.call(3, noop); });
    // Promise.resolve() was errata'ed late in the ES6 process.
    // See: https://bugzilla.mozilla.org/show_bug.cgi?id=1170742
    //      https://code.google.com/p/v8/issues/detail?id=4161
    // It serves as a proxy for a number of other bugs in early Promise
    // implementations.
    var promiseResolveBroken = (function (Promise) {
      var p = Promise.resolve(5);
      p.constructor = {};
      var p2 = Promise.resolve(p);
      try {
        p2.then(null, noop).then(null, noop); // avoid "uncaught rejection" warnings in console
      } catch (e) {
<span class="cstat-no" title="statement not covered" >        return true; </span>// v8 native Promises break here https://code.google.com/p/chromium/issues/detail?id=575314
      }
      return p === p2; // This *should* be false!
    }(globals.Promise));
&nbsp;
    // Chrome 46 (probably older too) does not retrieve a thenable's .then synchronously
    var getsThenSynchronously = supportsDescriptors &amp;&amp; (function () {
      var count = 0;
      // eslint-disable-next-line getter-return
      var thenable = Object.defineProperty({}, 'then', { get: function () { count += 1; } });
      Promise.resolve(thenable);
      return count === 1;
    }());
&nbsp;
    var BadResolverPromise = function BadResolverPromise(executor) {
      var p = new Promise(executor);
      executor(3, <span class="fstat-no" title="function not covered" >fu</span>nction () {});
<span class="cstat-no" title="statement not covered" >      this.then = p.then;</span>
<span class="cstat-no" title="statement not covered" >      this.constructor = BadResolverPromise;</span>
    };
    BadResolverPromise.prototype = Promise.prototype;
    BadResolverPromise.all = Promise.all;
    // Chrome Canary 49 (probably older too) has some implementation bugs
    var hasBadResolverPromise = valueOrFalseIfThrows(function () {
      return !!BadResolverPromise.all([1, 2]);
    });
&nbsp;
    <span class="missing-if-branch" title="if path not taken" >I</span>if (
      !promiseSupportsSubclassing
      || !promiseIgnoresNonFunctionThenCallbacks
      || !promiseRequiresObjectContext
      || promiseResolveBroken
      || !getsThenSynchronously
      || hasBadResolverPromise
    ) {
<span class="cstat-no" title="statement not covered" >      Promise = PromiseShim; </span>// eslint-disable-line no-global-assign
<span class="cstat-no" title="statement not covered" >      overrideNative(globals, 'Promise', PromiseShim);</span>
    }
    <span class="missing-if-branch" title="if path not taken" >I</span>if (Promise.all.length !== 1) {
      var origAll = <span class="cstat-no" title="statement not covered" >Promise.all;</span>
<span class="cstat-no" title="statement not covered" >      overrideNative(Promise, 'all', function <span class="fstat-no" title="function not covered" >all(</span>iterable) {</span>
<span class="cstat-no" title="statement not covered" >        return ES.Call(origAll, this, arguments);</span>
      });
    }
    <span class="missing-if-branch" title="if path not taken" >I</span>if (Promise.race.length !== 1) {
      var origRace = <span class="cstat-no" title="statement not covered" >Promise.race;</span>
<span class="cstat-no" title="statement not covered" >      overrideNative(Promise, 'race', function <span class="fstat-no" title="function not covered" >race(</span>iterable) {</span>
<span class="cstat-no" title="statement not covered" >        return ES.Call(origRace, this, arguments);</span>
      });
    }
    <span class="missing-if-branch" title="if path not taken" >I</span>if (Promise.resolve.length !== 1) {
      var origResolve = <span class="cstat-no" title="statement not covered" >Promise.resolve;</span>
<span class="cstat-no" title="statement not covered" >      overrideNative(Promise, 'resolve', function <span class="fstat-no" title="function not covered" >resolve(</span>x) {</span>
<span class="cstat-no" title="statement not covered" >        return ES.Call(origResolve, this, arguments);</span>
      });
    }
    <span class="missing-if-branch" title="if path not taken" >I</span>if (Promise.reject.length !== 1) {
      var origReject = <span class="cstat-no" title="statement not covered" >Promise.reject;</span>
<span class="cstat-no" title="statement not covered" >      overrideNative(Promise, 'reject', function <span class="fstat-no" title="function not covered" >reject(</span>r) {</span>
<span class="cstat-no" title="statement not covered" >        return ES.Call(origReject, this, arguments);</span>
      });
    }
    ensureEnumerable(Promise, 'all');
    ensureEnumerable(Promise, 'race');
    ensureEnumerable(Promise, 'resolve');
    ensureEnumerable(Promise, 'reject');
    addDefaultSpecies(Promise);
  }
&nbsp;
  // Map and Set require a true ES5 environment
  // Their fast path also requires that the environment preserve
  // property insertion order, which is not guaranteed by the spec.
  var testOrder = function (a) {
    var b = keys(_reduce(a, function (o, k) {
      o[k] = true;
      return o;
    }, {}));
    return a.join(':') === b.join(':');
  };
  var preservesInsertionOrder = testOrder(['z', 'a', 'bb']);
  // some engines (eg, Chrome) only preserve insertion order for string keys
  var preservesNumericInsertionOrder = testOrder(['z', 1, 'a', '3', 2]);
&nbsp;
  <span class="missing-if-branch" title="else path not taken" >E</span>if (supportsDescriptors) {
&nbsp;
    var fastkey = function <span class="fstat-no" title="function not covered" >fastkey(</span>key, skipInsertionOrderCheck) {
<span class="cstat-no" title="statement not covered" >      if (!skipInsertionOrderCheck &amp;&amp; !preservesInsertionOrder) {</span>
<span class="cstat-no" title="statement not covered" >        return null;</span>
      }
<span class="cstat-no" title="statement not covered" >      if (isNullOrUndefined(key)) {</span>
<span class="cstat-no" title="statement not covered" >        return '^' + ES.ToString(key);</span>
      } else <span class="cstat-no" title="statement not covered" >if (typeof key === 'string') {</span>
<span class="cstat-no" title="statement not covered" >        return '$' + key;</span>
      } else <span class="cstat-no" title="statement not covered" >if (typeof key === 'number') {</span>
        // note that -0 will get coerced to "0" when used as a property key
<span class="cstat-no" title="statement not covered" >        if (!preservesNumericInsertionOrder) {</span>
<span class="cstat-no" title="statement not covered" >          return 'n' + key;</span>
        }
<span class="cstat-no" title="statement not covered" >        return key;</span>
      } else <span class="cstat-no" title="statement not covered" >if (typeof key === 'boolean') {</span>
<span class="cstat-no" title="statement not covered" >        return 'b' + key;</span>
      }
<span class="cstat-no" title="statement not covered" >      return null;</span>
    };
&nbsp;
    var emptyObject = function <span class="fstat-no" title="function not covered" >emptyObject(</span>) {
      // accomodate some older not-quite-ES5 browsers
<span class="cstat-no" title="statement not covered" >      return Object.create ? Object.create(null) : {};</span>
    };
&nbsp;
    var addIterableToMap = function <span class="fstat-no" title="function not covered" >addIterableToMap(</span>MapConstructor, map, iterable) {
<span class="cstat-no" title="statement not covered" >      if (isArray(iterable) || Type.string(iterable)) {</span>
<span class="cstat-no" title="statement not covered" >        _forEach(iterable, <span class="fstat-no" title="function not covered" >fu</span>nction (entry) {</span>
<span class="cstat-no" title="statement not covered" >          if (!ES.TypeIsObject(entry)) {</span>
<span class="cstat-no" title="statement not covered" >            throw new TypeError('Iterator value ' + entry + ' is not an entry object');</span>
          }
<span class="cstat-no" title="statement not covered" >          map.set(entry[0], entry[1]);</span>
        });
      } else <span class="cstat-no" title="statement not covered" >if (iterable instanceof MapConstructor) {</span>
<span class="cstat-no" title="statement not covered" >        _call(MapConstructor.prototype.forEach, iterable, <span class="fstat-no" title="function not covered" >fu</span>nction (value, key) {</span>
<span class="cstat-no" title="statement not covered" >          map.set(key, value);</span>
        });
      } else {
        var iter, adder;
<span class="cstat-no" title="statement not covered" >        if (!isNullOrUndefined(iterable)) {</span>
<span class="cstat-no" title="statement not covered" >          adder = map.set;</span>
<span class="cstat-no" title="statement not covered" >          if (!ES.IsCallable(adder)) { <span class="cstat-no" title="statement not covered" >throw new TypeError('bad map'); </span>}</span>
<span class="cstat-no" title="statement not covered" >          iter = ES.GetIterator(iterable);</span>
        }
<span class="cstat-no" title="statement not covered" >        if (typeof iter !== 'undefined') {</span>
<span class="cstat-no" title="statement not covered" >          while (true) {</span>
            var next = <span class="cstat-no" title="statement not covered" >ES.IteratorStep(iter);</span>
<span class="cstat-no" title="statement not covered" >            if (next === false) { <span class="cstat-no" title="statement not covered" >break; </span>}</span>
            var nextItem = <span class="cstat-no" title="statement not covered" >next.value;</span>
<span class="cstat-no" title="statement not covered" >            try {</span>
<span class="cstat-no" title="statement not covered" >              if (!ES.TypeIsObject(nextItem)) {</span>
<span class="cstat-no" title="statement not covered" >                throw new TypeError('Iterator value ' + nextItem + ' is not an entry object');</span>
              }
<span class="cstat-no" title="statement not covered" >              _call(adder, map, nextItem[0], nextItem[1]);</span>
            } catch (e) {
<span class="cstat-no" title="statement not covered" >              ES.IteratorClose(iter, true);</span>
<span class="cstat-no" title="statement not covered" >              throw e;</span>
            }
          }
        }
      }
    };
    var addIterableToSet = function <span class="fstat-no" title="function not covered" >addIterableToSet(</span>SetConstructor, set, iterable) {
<span class="cstat-no" title="statement not covered" >      if (isArray(iterable) || Type.string(iterable)) {</span>
<span class="cstat-no" title="statement not covered" >        _forEach(iterable, <span class="fstat-no" title="function not covered" >fu</span>nction (value) {</span>
<span class="cstat-no" title="statement not covered" >          set.add(value);</span>
        });
      } else <span class="cstat-no" title="statement not covered" >if (iterable instanceof SetConstructor) {</span>
<span class="cstat-no" title="statement not covered" >        _call(SetConstructor.prototype.forEach, iterable, <span class="fstat-no" title="function not covered" >fu</span>nction (value) {</span>
<span class="cstat-no" title="statement not covered" >          set.add(value);</span>
        });
      } else {
        var iter, adder;
<span class="cstat-no" title="statement not covered" >        if (!isNullOrUndefined(iterable)) {</span>
<span class="cstat-no" title="statement not covered" >          adder = set.add;</span>
<span class="cstat-no" title="statement not covered" >          if (!ES.IsCallable(adder)) { <span class="cstat-no" title="statement not covered" >throw new TypeError('bad set'); </span>}</span>
<span class="cstat-no" title="statement not covered" >          iter = ES.GetIterator(iterable);</span>
        }
<span class="cstat-no" title="statement not covered" >        if (typeof iter !== 'undefined') {</span>
<span class="cstat-no" title="statement not covered" >          while (true) {</span>
            var next = <span class="cstat-no" title="statement not covered" >ES.IteratorStep(iter);</span>
<span class="cstat-no" title="statement not covered" >            if (next === false) { <span class="cstat-no" title="statement not covered" >break; </span>}</span>
            var nextValue = <span class="cstat-no" title="statement not covered" >next.value;</span>
<span class="cstat-no" title="statement not covered" >            try {</span>
<span class="cstat-no" title="statement not covered" >              _call(adder, set, nextValue);</span>
            } catch (e) {
<span class="cstat-no" title="statement not covered" >              ES.IteratorClose(iter, true);</span>
<span class="cstat-no" title="statement not covered" >              throw e;</span>
            }
          }
        }
      }
    };
&nbsp;
    var collectionShims = {
      Map: (function () {
&nbsp;
        var empty = {};
&nbsp;
        var MapEntry = function <span class="fstat-no" title="function not covered" >MapEntry(</span>key, value) {
<span class="cstat-no" title="statement not covered" >          this.key = key;</span>
<span class="cstat-no" title="statement not covered" >          this.value = value;</span>
<span class="cstat-no" title="statement not covered" >          this.next = null;</span>
<span class="cstat-no" title="statement not covered" >          this.prev = null;</span>
        };
&nbsp;
        MapEntry.prototype.isRemoved = function <span class="fstat-no" title="function not covered" >isRemoved(</span>) {
<span class="cstat-no" title="statement not covered" >          return this.key === empty;</span>
        };
&nbsp;
        var isMap = function <span class="fstat-no" title="function not covered" >isMap(</span>map) {
<span class="cstat-no" title="statement not covered" >          return !!map._es6map;</span>
        };
&nbsp;
        var requireMapSlot = function <span class="fstat-no" title="function not covered" >requireMapSlot(</span>map, method) {
<span class="cstat-no" title="statement not covered" >          if (!ES.TypeIsObject(map) || !isMap(map)) {</span>
<span class="cstat-no" title="statement not covered" >            throw new TypeError('Method Map.prototype.' + method + ' called on incompatible receiver ' + ES.ToString(map));</span>
          }
        };
&nbsp;
        var MapIterator = function <span class="fstat-no" title="function not covered" >MapIterator(</span>map, kind) {
<span class="cstat-no" title="statement not covered" >          requireMapSlot(map, '[[MapIterator]]');</span>
<span class="cstat-no" title="statement not covered" >          defineProperty(this, 'head', map._head);</span>
<span class="cstat-no" title="statement not covered" >          defineProperty(this, 'i', this.head);</span>
<span class="cstat-no" title="statement not covered" >          defineProperty(this, 'kind', kind);</span>
        };
&nbsp;
        MapIterator.prototype = {
          isMapIterator: true,
          next: function <span class="fstat-no" title="function not covered" >next(</span>) {
<span class="cstat-no" title="statement not covered" >            if (!this.isMapIterator) {</span>
<span class="cstat-no" title="statement not covered" >              throw new TypeError('Not a MapIterator');</span>
            }
            var i = <span class="cstat-no" title="statement not covered" >this.i;</span>
            var kind = <span class="cstat-no" title="statement not covered" >this.kind;</span>
            var head = <span class="cstat-no" title="statement not covered" >this.head;</span>
<span class="cstat-no" title="statement not covered" >            if (typeof this.i === 'undefined') {</span>
<span class="cstat-no" title="statement not covered" >              return iteratorResult();</span>
            }
<span class="cstat-no" title="statement not covered" >            while (i.isRemoved() &amp;&amp; i !== head) {</span>
              // back up off of removed entries
<span class="cstat-no" title="statement not covered" >              i = i.prev;</span>
            }
            // advance to next unreturned element.
            var result;
<span class="cstat-no" title="statement not covered" >            while (i.next !== head) {</span>
<span class="cstat-no" title="statement not covered" >              i = i.next;</span>
<span class="cstat-no" title="statement not covered" >              if (!i.isRemoved()) {</span>
<span class="cstat-no" title="statement not covered" >                if (kind === 'key') {</span>
<span class="cstat-no" title="statement not covered" >                  result = i.key;</span>
                } else <span class="cstat-no" title="statement not covered" >if (kind === 'value') {</span>
<span class="cstat-no" title="statement not covered" >                  result = i.value;</span>
                } else {
<span class="cstat-no" title="statement not covered" >                  result = [i.key, i.value];</span>
                }
<span class="cstat-no" title="statement not covered" >                this.i = i;</span>
<span class="cstat-no" title="statement not covered" >                return iteratorResult(result);</span>
              }
            }
            // once the iterator is done, it is done forever.
<span class="cstat-no" title="statement not covered" >            this.i = void 0;</span>
<span class="cstat-no" title="statement not covered" >            return iteratorResult();</span>
          }
        };
        addIterator(MapIterator.prototype);
&nbsp;
        var Map$prototype;
        var MapShim = function <span class="fstat-no" title="function not covered" >Map(</span>) {
<span class="cstat-no" title="statement not covered" >          if (!(this instanceof Map)) {</span>
<span class="cstat-no" title="statement not covered" >            throw new TypeError('Constructor Map requires "new"');</span>
          }
<span class="cstat-no" title="statement not covered" >          if (this &amp;&amp; this._es6map) {</span>
<span class="cstat-no" title="statement not covered" >            throw new TypeError('Bad construction');</span>
          }
          var map = <span class="cstat-no" title="statement not covered" >emulateES6construct(this, Map, Map$prototype, {</span>
            _es6map: true,
            _head: null,
            _map: OrigMap ? new OrigMap() : null,
            _size: 0,
            _storage: emptyObject()
          });
&nbsp;
          var head = <span class="cstat-no" title="statement not covered" >new MapEntry(null, null);</span>
          // circular doubly-linked list.
          /* eslint no-multi-assign: 1 */
<span class="cstat-no" title="statement not covered" >          head.next = head.prev = head;</span>
<span class="cstat-no" title="statement not covered" >          map._head = head;</span>
&nbsp;
          // Optionally initialize map from iterable
<span class="cstat-no" title="statement not covered" >          if (arguments.length &gt; 0) {</span>
<span class="cstat-no" title="statement not covered" >            addIterableToMap(Map, map, arguments[0]);</span>
          }
<span class="cstat-no" title="statement not covered" >          return map;</span>
        };
        Map$prototype = MapShim.prototype;
&nbsp;
        Value.getter(Map$prototype, 'size', <span class="fstat-no" title="function not covered" >fu</span>nction () {
<span class="cstat-no" title="statement not covered" >          if (typeof this._size === 'undefined') {</span>
<span class="cstat-no" title="statement not covered" >            throw new TypeError('size method called on incompatible Map');</span>
          }
<span class="cstat-no" title="statement not covered" >          return this._size;</span>
        });
&nbsp;
        defineProperties(Map$prototype, {
          get: function <span class="fstat-no" title="function not covered" >get(</span>key) {
<span class="cstat-no" title="statement not covered" >            requireMapSlot(this, 'get');</span>
            var entry;
            var fkey = <span class="cstat-no" title="statement not covered" >fastkey(key, true);</span>
<span class="cstat-no" title="statement not covered" >            if (fkey !== null) {</span>
              // fast O(1) path
<span class="cstat-no" title="statement not covered" >              entry = this._storage[fkey];</span>
<span class="cstat-no" title="statement not covered" >              if (entry) {</span>
<span class="cstat-no" title="statement not covered" >                return entry.value;</span>
              }
<span class="cstat-no" title="statement not covered" >              return;</span>
&nbsp;
            }
<span class="cstat-no" title="statement not covered" >            if (this._map) {</span>
              // fast object key path
<span class="cstat-no" title="statement not covered" >              entry = origMapGet.call(this._map, key);</span>
<span class="cstat-no" title="statement not covered" >              if (entry) {</span>
<span class="cstat-no" title="statement not covered" >                return entry.value;</span>
              }
<span class="cstat-no" title="statement not covered" >              return;</span>
&nbsp;
            }
            var head = <span class="cstat-no" title="statement not covered" >this._head;</span>
            var i = <span class="cstat-no" title="statement not covered" >head;</span>
<span class="cstat-no" title="statement not covered" >            while ((i = i.next) !== head) {</span>
<span class="cstat-no" title="statement not covered" >              if (ES.SameValueZero(i.key, key)) {</span>
<span class="cstat-no" title="statement not covered" >                return i.value;</span>
              }
            }
          },
&nbsp;
          has: function <span class="fstat-no" title="function not covered" >has(</span>key) {
<span class="cstat-no" title="statement not covered" >            requireMapSlot(this, 'has');</span>
            var fkey = <span class="cstat-no" title="statement not covered" >fastkey(key, true);</span>
<span class="cstat-no" title="statement not covered" >            if (fkey !== null) {</span>
              // fast O(1) path
<span class="cstat-no" title="statement not covered" >              return typeof this._storage[fkey] !== 'undefined';</span>
            }
<span class="cstat-no" title="statement not covered" >            if (this._map) {</span>
              // fast object key path
<span class="cstat-no" title="statement not covered" >              return origMapHas.call(this._map, key);</span>
            }
            var head = <span class="cstat-no" title="statement not covered" >this._head;</span>
            var i = <span class="cstat-no" title="statement not covered" >head;</span>
<span class="cstat-no" title="statement not covered" >            while ((i = i.next) !== head) {</span>
<span class="cstat-no" title="statement not covered" >              if (ES.SameValueZero(i.key, key)) {</span>
<span class="cstat-no" title="statement not covered" >                return true;</span>
              }
            }
<span class="cstat-no" title="statement not covered" >            return false;</span>
          },
&nbsp;
          set: function <span class="fstat-no" title="function not covered" >set(</span>key, value) {
<span class="cstat-no" title="statement not covered" >            requireMapSlot(this, 'set');</span>
            var head = <span class="cstat-no" title="statement not covered" >this._head;</span>
            var i = <span class="cstat-no" title="statement not covered" >head;</span>
            var entry;
            var fkey = <span class="cstat-no" title="statement not covered" >fastkey(key, true);</span>
<span class="cstat-no" title="statement not covered" >            if (fkey !== null) {</span>
              // fast O(1) path
<span class="cstat-no" title="statement not covered" >              if (typeof this._storage[fkey] !== 'undefined') {</span>
<span class="cstat-no" title="statement not covered" >                this._storage[fkey].value = value;</span>
<span class="cstat-no" title="statement not covered" >                return this;</span>
              }
<span class="cstat-no" title="statement not covered" >              entry = this._storage[fkey] = new MapEntry(key, value); </span>/* eslint no-multi-assign: 1 */
<span class="cstat-no" title="statement not covered" >              i = head.prev;</span>
              // fall through
&nbsp;
            } else <span class="cstat-no" title="statement not covered" >if (this._map) {</span>
              // fast object key path
<span class="cstat-no" title="statement not covered" >              if (origMapHas.call(this._map, key)) {</span>
<span class="cstat-no" title="statement not covered" >                origMapGet.call(this._map, key).value = value;</span>
              } else {
<span class="cstat-no" title="statement not covered" >                entry = new MapEntry(key, value);</span>
<span class="cstat-no" title="statement not covered" >                origMapSet.call(this._map, key, entry);</span>
<span class="cstat-no" title="statement not covered" >                i = head.prev;</span>
                // fall through
              }
            }
<span class="cstat-no" title="statement not covered" >            while ((i = i.next) !== head) {</span>
<span class="cstat-no" title="statement not covered" >              if (ES.SameValueZero(i.key, key)) {</span>
<span class="cstat-no" title="statement not covered" >                i.value = value;</span>
<span class="cstat-no" title="statement not covered" >                return this;</span>
              }
            }
<span class="cstat-no" title="statement not covered" >            entry = entry || new MapEntry(key, value);</span>
<span class="cstat-no" title="statement not covered" >            if (ES.SameValue(-0, key)) {</span>
<span class="cstat-no" title="statement not covered" >              entry.key = +0; </span>// coerce -0 to +0 in entry
            }
<span class="cstat-no" title="statement not covered" >            entry.next = this._head;</span>
<span class="cstat-no" title="statement not covered" >            entry.prev = this._head.prev;</span>
<span class="cstat-no" title="statement not covered" >            entry.prev.next = entry;</span>
<span class="cstat-no" title="statement not covered" >            entry.next.prev = entry;</span>
<span class="cstat-no" title="statement not covered" >            this._size += 1;</span>
<span class="cstat-no" title="statement not covered" >            return this;</span>
          },
&nbsp;
          'delete': <span class="fstat-no" title="function not covered" >fu</span>nction (key) {
<span class="cstat-no" title="statement not covered" >            requireMapSlot(this, 'delete');</span>
            var head = <span class="cstat-no" title="statement not covered" >this._head;</span>
            var i = <span class="cstat-no" title="statement not covered" >head;</span>
            var fkey = <span class="cstat-no" title="statement not covered" >fastkey(key, true);</span>
<span class="cstat-no" title="statement not covered" >            if (fkey !== null) {</span>
              // fast O(1) path
<span class="cstat-no" title="statement not covered" >              if (typeof this._storage[fkey] === 'undefined') {</span>
<span class="cstat-no" title="statement not covered" >                return false;</span>
              }
<span class="cstat-no" title="statement not covered" >              i = this._storage[fkey].prev;</span>
<span class="cstat-no" title="statement not covered" >              delete this._storage[fkey];</span>
              // fall through
            } else <span class="cstat-no" title="statement not covered" >if (this._map) {</span>
              // fast object key path
<span class="cstat-no" title="statement not covered" >              if (!origMapHas.call(this._map, key)) {</span>
<span class="cstat-no" title="statement not covered" >                return false;</span>
              }
<span class="cstat-no" title="statement not covered" >              i = origMapGet.call(this._map, key).prev;</span>
<span class="cstat-no" title="statement not covered" >              origMapDelete.call(this._map, key);</span>
              // fall through
            }
<span class="cstat-no" title="statement not covered" >            while ((i = i.next) !== head) {</span>
<span class="cstat-no" title="statement not covered" >              if (ES.SameValueZero(i.key, key)) {</span>
<span class="cstat-no" title="statement not covered" >                i.key = empty;</span>
<span class="cstat-no" title="statement not covered" >                i.value = empty;</span>
<span class="cstat-no" title="statement not covered" >                i.prev.next = i.next;</span>
<span class="cstat-no" title="statement not covered" >                i.next.prev = i.prev;</span>
<span class="cstat-no" title="statement not covered" >                this._size -= 1;</span>
<span class="cstat-no" title="statement not covered" >                return true;</span>
              }
            }
<span class="cstat-no" title="statement not covered" >            return false;</span>
          },
&nbsp;
          clear: function <span class="fstat-no" title="function not covered" >clear(</span>) {
            /* eslint no-multi-assign: 1 */
<span class="cstat-no" title="statement not covered" >            requireMapSlot(this, 'clear');</span>
<span class="cstat-no" title="statement not covered" >            this._map = OrigMap ? new OrigMap() : null;</span>
<span class="cstat-no" title="statement not covered" >            this._size = 0;</span>
<span class="cstat-no" title="statement not covered" >            this._storage = emptyObject();</span>
            var head = <span class="cstat-no" title="statement not covered" >this._head;</span>
            var i = <span class="cstat-no" title="statement not covered" >head;</span>
            var p = <span class="cstat-no" title="statement not covered" >i.next;</span>
<span class="cstat-no" title="statement not covered" >            while ((i = p) !== head) {</span>
<span class="cstat-no" title="statement not covered" >              i.key = empty;</span>
<span class="cstat-no" title="statement not covered" >              i.value = empty;</span>
<span class="cstat-no" title="statement not covered" >              p = i.next;</span>
<span class="cstat-no" title="statement not covered" >              i.next = i.prev = head;</span>
            }
<span class="cstat-no" title="statement not covered" >            head.next = head.prev = head;</span>
          },
&nbsp;
          keys: function <span class="fstat-no" title="function not covered" >keys(</span>) {
<span class="cstat-no" title="statement not covered" >            requireMapSlot(this, 'keys');</span>
<span class="cstat-no" title="statement not covered" >            return new MapIterator(this, 'key');</span>
          },
&nbsp;
          values: function <span class="fstat-no" title="function not covered" >values(</span>) {
<span class="cstat-no" title="statement not covered" >            requireMapSlot(this, 'values');</span>
<span class="cstat-no" title="statement not covered" >            return new MapIterator(this, 'value');</span>
          },
&nbsp;
          entries: function <span class="fstat-no" title="function not covered" >entries(</span>) {
<span class="cstat-no" title="statement not covered" >            requireMapSlot(this, 'entries');</span>
<span class="cstat-no" title="statement not covered" >            return new MapIterator(this, 'key+value');</span>
          },
&nbsp;
          forEach: function <span class="fstat-no" title="function not covered" >forEach(</span>callback) {
<span class="cstat-no" title="statement not covered" >            requireMapSlot(this, 'forEach');</span>
            var context = <span class="cstat-no" title="statement not covered" >arguments.length &gt; 1 ? arguments[1] : null;</span>
            var it = <span class="cstat-no" title="statement not covered" >this.entries();</span>
<span class="cstat-no" title="statement not covered" >            for (var entry = it.next(); !entry.done; entry = it.next()) {</span>
<span class="cstat-no" title="statement not covered" >              if (context) {</span>
<span class="cstat-no" title="statement not covered" >                _call(callback, context, entry.value[1], entry.value[0], this);</span>
              } else {
<span class="cstat-no" title="statement not covered" >                callback(entry.value[1], entry.value[0], this);</span>
              }
            }
          }
        });
        addIterator(Map$prototype, Map$prototype.entries);
&nbsp;
        return MapShim;
      }()),
&nbsp;
      Set: (function () {
        var isSet = function <span class="fstat-no" title="function not covered" >isSet(</span>set) {
<span class="cstat-no" title="statement not covered" >          return set._es6set &amp;&amp; typeof set._storage !== 'undefined';</span>
        };
        var requireSetSlot = function <span class="fstat-no" title="function not covered" >requireSetSlot(</span>set, method) {
<span class="cstat-no" title="statement not covered" >          if (!ES.TypeIsObject(set) || !isSet(set)) {</span>
            // https://github.com/paulmillr/es6-shim/issues/176
<span class="cstat-no" title="statement not covered" >            throw new TypeError('Set.prototype.' + method + ' called on incompatible receiver ' + ES.ToString(set));</span>
          }
        };
&nbsp;
        // Creating a Map is expensive.  To speed up the common case of
        // Sets containing only string or numeric keys, we use an object
        // as backing storage and lazily create a full Map only when
        // required.
        var Set$prototype;
        var SetShim = function <span class="fstat-no" title="function not covered" >Set(</span>) {
<span class="cstat-no" title="statement not covered" >          if (!(this instanceof Set)) {</span>
<span class="cstat-no" title="statement not covered" >            throw new TypeError('Constructor Set requires "new"');</span>
          }
<span class="cstat-no" title="statement not covered" >          if (this &amp;&amp; this._es6set) {</span>
<span class="cstat-no" title="statement not covered" >            throw new TypeError('Bad construction');</span>
          }
          var set = <span class="cstat-no" title="statement not covered" >emulateES6construct(this, Set, Set$prototype, {</span>
            _es6set: true,
            '[[SetData]]': null,
            _storage: emptyObject()
          });
<span class="cstat-no" title="statement not covered" >          if (!set._es6set) {</span>
<span class="cstat-no" title="statement not covered" >            throw new TypeError('bad set');</span>
          }
&nbsp;
          // Optionally initialize Set from iterable
<span class="cstat-no" title="statement not covered" >          if (arguments.length &gt; 0) {</span>
<span class="cstat-no" title="statement not covered" >            addIterableToSet(Set, set, arguments[0]);</span>
          }
<span class="cstat-no" title="statement not covered" >          return set;</span>
        };
        Set$prototype = SetShim.prototype;
&nbsp;
        var decodeKey = <span class="fstat-no" title="function not covered" >fu</span>nction (key) {
          var k = <span class="cstat-no" title="statement not covered" >key;</span>
<span class="cstat-no" title="statement not covered" >          if (k === '^null') {</span>
<span class="cstat-no" title="statement not covered" >            return null;</span>
          } else <span class="cstat-no" title="statement not covered" >if (k === '^undefined') {</span>
<span class="cstat-no" title="statement not covered" >            return void 0;</span>
          }
          var first = <span class="cstat-no" title="statement not covered" >k.charAt(0);</span>
<span class="cstat-no" title="statement not covered" >          if (first === '$') {</span>
<span class="cstat-no" title="statement not covered" >            return _strSlice(k, 1);</span>
          } else <span class="cstat-no" title="statement not covered" >if (first === 'n') {</span>
<span class="cstat-no" title="statement not covered" >            return +_strSlice(k, 1);</span>
          } else <span class="cstat-no" title="statement not covered" >if (first === 'b') {</span>
<span class="cstat-no" title="statement not covered" >            return k === 'btrue';</span>
          }
&nbsp;
<span class="cstat-no" title="statement not covered" >          return +k;</span>
        };
        // Switch from the object backing storage to a full Map.
        var ensureMap = function <span class="fstat-no" title="function not covered" >ensureMap(</span>set) {
<span class="cstat-no" title="statement not covered" >          if (!set['[[SetData]]']) {</span>
            var m = <span class="cstat-no" title="statement not covered" >new collectionShims.Map();</span>
<span class="cstat-no" title="statement not covered" >            set['[[SetData]]'] = m;</span>
<span class="cstat-no" title="statement not covered" >            _forEach(keys(set._storage), <span class="fstat-no" title="function not covered" >fu</span>nction (key) {</span>
              var k = <span class="cstat-no" title="statement not covered" >decodeKey(key);</span>
<span class="cstat-no" title="statement not covered" >              m.set(k, k);</span>
            });
<span class="cstat-no" title="statement not covered" >            set['[[SetData]]'] = m;</span>
          }
<span class="cstat-no" title="statement not covered" >          set._storage = null; </span>// free old backing storage
        };
&nbsp;
        Value.getter(SetShim.prototype, 'size', <span class="fstat-no" title="function not covered" >fu</span>nction () {
<span class="cstat-no" title="statement not covered" >          requireSetSlot(this, 'size');</span>
<span class="cstat-no" title="statement not covered" >          if (this._storage) {</span>
<span class="cstat-no" title="statement not covered" >            return keys(this._storage).length;</span>
          }
<span class="cstat-no" title="statement not covered" >          ensureMap(this);</span>
<span class="cstat-no" title="statement not covered" >          return this['[[SetData]]'].size;</span>
        });
&nbsp;
        defineProperties(SetShim.prototype, {
          has: function <span class="fstat-no" title="function not covered" >has(</span>key) {
<span class="cstat-no" title="statement not covered" >            requireSetSlot(this, 'has');</span>
            var fkey;
<span class="cstat-no" title="statement not covered" >            if (this._storage &amp;&amp; (fkey = fastkey(key)) !== null) {</span>
<span class="cstat-no" title="statement not covered" >              return !!this._storage[fkey];</span>
            }
<span class="cstat-no" title="statement not covered" >            ensureMap(this);</span>
<span class="cstat-no" title="statement not covered" >            return this['[[SetData]]'].has(key);</span>
          },
&nbsp;
          add: function <span class="fstat-no" title="function not covered" >add(</span>key) {
<span class="cstat-no" title="statement not covered" >            requireSetSlot(this, 'add');</span>
            var fkey;
<span class="cstat-no" title="statement not covered" >            if (this._storage &amp;&amp; (fkey = fastkey(key)) !== null) {</span>
<span class="cstat-no" title="statement not covered" >              this._storage[fkey] = true;</span>
<span class="cstat-no" title="statement not covered" >              return this;</span>
            }
<span class="cstat-no" title="statement not covered" >            ensureMap(this);</span>
<span class="cstat-no" title="statement not covered" >            this['[[SetData]]'].set(key, key);</span>
<span class="cstat-no" title="statement not covered" >            return this;</span>
          },
&nbsp;
          'delete': <span class="fstat-no" title="function not covered" >fu</span>nction (key) {
<span class="cstat-no" title="statement not covered" >            requireSetSlot(this, 'delete');</span>
            var fkey;
<span class="cstat-no" title="statement not covered" >            if (this._storage &amp;&amp; (fkey = fastkey(key)) !== null) {</span>
              var hasFKey = <span class="cstat-no" title="statement not covered" >_hasOwnProperty(this._storage, fkey);</span>
<span class="cstat-no" title="statement not covered" >              return (delete this._storage[fkey]) &amp;&amp; hasFKey;</span>
            }
<span class="cstat-no" title="statement not covered" >            ensureMap(this);</span>
<span class="cstat-no" title="statement not covered" >            return this['[[SetData]]']['delete'](key);</span>
          },
&nbsp;
          clear: function <span class="fstat-no" title="function not covered" >clear(</span>) {
<span class="cstat-no" title="statement not covered" >            requireSetSlot(this, 'clear');</span>
<span class="cstat-no" title="statement not covered" >            if (this._storage) {</span>
<span class="cstat-no" title="statement not covered" >              this._storage = emptyObject();</span>
            }
<span class="cstat-no" title="statement not covered" >            if (this['[[SetData]]']) {</span>
<span class="cstat-no" title="statement not covered" >              this['[[SetData]]'].clear();</span>
            }
          },
&nbsp;
          values: function <span class="fstat-no" title="function not covered" >values(</span>) {
<span class="cstat-no" title="statement not covered" >            requireSetSlot(this, 'values');</span>
<span class="cstat-no" title="statement not covered" >            ensureMap(this);</span>
<span class="cstat-no" title="statement not covered" >            return new SetIterator(this['[[SetData]]'].values());</span>
          },
&nbsp;
          entries: function <span class="fstat-no" title="function not covered" >entries(</span>) {
<span class="cstat-no" title="statement not covered" >            requireSetSlot(this, 'entries');</span>
<span class="cstat-no" title="statement not covered" >            ensureMap(this);</span>
<span class="cstat-no" title="statement not covered" >            return new SetIterator(this['[[SetData]]'].entries());</span>
          },
&nbsp;
          forEach: function <span class="fstat-no" title="function not covered" >forEach(</span>callback) {
<span class="cstat-no" title="statement not covered" >            requireSetSlot(this, 'forEach');</span>
            var context = <span class="cstat-no" title="statement not covered" >arguments.length &gt; 1 ? arguments[1] : null;</span>
            var entireSet = <span class="cstat-no" title="statement not covered" >this;</span>
<span class="cstat-no" title="statement not covered" >            ensureMap(entireSet);</span>
<span class="cstat-no" title="statement not covered" >            this['[[SetData]]'].forEach(<span class="fstat-no" title="function not covered" >fu</span>nction (value, key) {</span>
<span class="cstat-no" title="statement not covered" >              if (context) {</span>
<span class="cstat-no" title="statement not covered" >                _call(callback, context, key, key, entireSet);</span>
              } else {
<span class="cstat-no" title="statement not covered" >                callback(key, key, entireSet);</span>
              }
            });
          }
        });
        defineProperty(SetShim.prototype, 'keys', SetShim.prototype.values, true);
        addIterator(SetShim.prototype, SetShim.prototype.values);
&nbsp;
        var SetIterator = function <span class="fstat-no" title="function not covered" >SetIterator(</span>it) {
<span class="cstat-no" title="statement not covered" >          defineProperty(this, 'it', it);</span>
        };
        SetIterator.prototype = {
          isSetIterator: true,
          next: function <span class="fstat-no" title="function not covered" >next(</span>) {
<span class="cstat-no" title="statement not covered" >            if (!this.isSetIterator) {</span>
<span class="cstat-no" title="statement not covered" >              throw new TypeError('Not a SetIterator');</span>
            }
<span class="cstat-no" title="statement not covered" >            return this.it.next();</span>
          }
        };
        addIterator(SetIterator.prototype);
&nbsp;
        return SetShim;
      }())
    };
&nbsp;
    var isGoogleTranslate = globals.Set &amp;&amp; !Set.prototype['delete'] &amp;&amp; <span class="branch-2 cbranch-no" title="branch not covered" >Set.prototype.remove </span>&amp;&amp; <span class="branch-3 cbranch-no" title="branch not covered" >Set.prototype.items </span>&amp;&amp; <span class="branch-4 cbranch-no" title="branch not covered" >Set.prototype.map </span>&amp;&amp; <span class="branch-5 cbranch-no" title="branch not covered" >Array.isArray(new Set().keys);</span>
    <span class="missing-if-branch" title="if path not taken" >I</span>if (isGoogleTranslate) {
      // special-case force removal of wildly invalid Set implementation in Google Translate iframes
      // see https://github.com/paulmillr/es6-shim/issues/438 / https://twitter.com/ljharb/status/849335573114363904
<span class="cstat-no" title="statement not covered" >      globals.Set = collectionShims.Set;</span>
    }
    <span class="missing-if-branch" title="else path not taken" >E</span>if (globals.Map || <span class="branch-1 cbranch-no" title="branch not covered" >globals.Set)</span> {
      // Safari 8, for example, doesn't accept an iterable.
      var mapAcceptsArguments = valueOrFalseIfThrows(function () { return new Map([[1, 2]]).get(1) === 2; });
      <span class="missing-if-branch" title="if path not taken" >I</span>if (!mapAcceptsArguments) {
<span class="cstat-no" title="statement not covered" >        globals.Map = function <span class="fstat-no" title="function not covered" >Map(</span>) {</span>
<span class="cstat-no" title="statement not covered" >          if (!(this instanceof Map)) {</span>
<span class="cstat-no" title="statement not covered" >            throw new TypeError('Constructor Map requires "new"');</span>
          }
          var m = <span class="cstat-no" title="statement not covered" >new OrigMap();</span>
<span class="cstat-no" title="statement not covered" >          if (arguments.length &gt; 0) {</span>
<span class="cstat-no" title="statement not covered" >            addIterableToMap(Map, m, arguments[0]);</span>
          }
<span class="cstat-no" title="statement not covered" >          delete m.constructor;</span>
<span class="cstat-no" title="statement not covered" >          Object.setPrototypeOf(m, globals.Map.prototype);</span>
<span class="cstat-no" title="statement not covered" >          return m;</span>
        };
<span class="cstat-no" title="statement not covered" >        globals.Map.prototype = create(OrigMap.prototype);</span>
<span class="cstat-no" title="statement not covered" >        defineProperty(globals.Map.prototype, 'constructor', globals.Map, true);</span>
<span class="cstat-no" title="statement not covered" >        Value.preserveToString(globals.Map, OrigMap);</span>
      }
      var testMap = new Map();
      var mapUsesSameValueZero = (function () {
        // Chrome 38-42, node 0.11/0.12, iojs 1/2 also have a bug when the Map has a size &gt; 4
        var m = new Map([[1, 0], [2, 0], [3, 0], [4, 0]]);
        m.set(-0, m);
        return m.get(0) === m &amp;&amp; m.get(-0) === m &amp;&amp; m.has(0) &amp;&amp; m.has(-0);
      }());
      var mapSupportsChaining = testMap.set(1, 2) === testMap;
      <span class="missing-if-branch" title="if path not taken" >I</span>if (!mapUsesSameValueZero || !mapSupportsChaining) {
<span class="cstat-no" title="statement not covered" >        overrideNative(Map.prototype, 'set', function <span class="fstat-no" title="function not covered" >set(</span>k, v) {</span>
<span class="cstat-no" title="statement not covered" >          _call(origMapSet, this, k === 0 ? 0 : k, v);</span>
<span class="cstat-no" title="statement not covered" >          return this;</span>
        });
      }
      <span class="missing-if-branch" title="if path not taken" >I</span>if (!mapUsesSameValueZero) {
<span class="cstat-no" title="statement not covered" >        defineProperties(Map.prototype, {</span>
          get: function <span class="fstat-no" title="function not covered" >get(</span>k) {
<span class="cstat-no" title="statement not covered" >            return _call(origMapGet, this, k === 0 ? 0 : k);</span>
          },
          has: function <span class="fstat-no" title="function not covered" >has(</span>k) {
<span class="cstat-no" title="statement not covered" >            return _call(origMapHas, this, k === 0 ? 0 : k);</span>
          }
        }, true);
<span class="cstat-no" title="statement not covered" >        Value.preserveToString(Map.prototype.get, origMapGet);</span>
<span class="cstat-no" title="statement not covered" >        Value.preserveToString(Map.prototype.has, origMapHas);</span>
      }
      var testSet = new Set();
      var setUsesSameValueZero = Set.prototype['delete'] &amp;&amp; Set.prototype.add &amp;&amp; Set.prototype.has &amp;&amp; (function (s) {
        s['delete'](0);
        s.add(-0);
        return !s.has(0);
      }(testSet));
      var setSupportsChaining = testSet.add(1) === testSet;
      <span class="missing-if-branch" title="else path not taken" >E</span>if (!setUsesSameValueZero || <span class="branch-1 cbranch-no" title="branch not covered" >!setSupportsChaining)</span> {
        var origSetAdd = Set.prototype.add;
        Set.prototype.add = function add(v) {
          _call(origSetAdd, this, v === 0 ? 0 : v);
          return this;
        };
        Value.preserveToString(Set.prototype.add, origSetAdd);
      }
      <span class="missing-if-branch" title="else path not taken" >E</span>if (!setUsesSameValueZero) {
        var origSetHas = Set.prototype.has;
        Set.prototype.has = function has(v) {
          return _call(origSetHas, this, v === 0 ? 0 : v);
        };
        Value.preserveToString(Set.prototype.has, origSetHas);
        var origSetDel = Set.prototype['delete'];
        Set.prototype['delete'] = function SetDelete(v) {
          return _call(origSetDel, this, v === 0 ? 0 : v);
        };
        Value.preserveToString(Set.prototype['delete'], origSetDel);
      }
      var mapSupportsSubclassing = supportsSubclassing(globals.Map, function (M) {
        var m = new M([]);
        // Firefox 32 is ok with the instantiating the subclass but will
        // throw when the map is used.
        m.set(42, 42);
        return m instanceof M;
      });
      // without Object.setPrototypeOf, subclassing is not possible
      var mapFailsToSupportSubclassing = Object.setPrototypeOf &amp;&amp; !mapSupportsSubclassing;
      var mapRequiresNew = (function () {
        try {
          return !(globals.Map() instanceof globals.Map);
        } catch (e) {
          return e instanceof TypeError;
        }
      }());
      <span class="missing-if-branch" title="if path not taken" >I</span>if (globals.Map.length !== 0 || mapFailsToSupportSubclassing || !mapRequiresNew) {
<span class="cstat-no" title="statement not covered" >        globals.Map = function <span class="fstat-no" title="function not covered" >Map(</span>) {</span>
<span class="cstat-no" title="statement not covered" >          if (!(this instanceof Map)) {</span>
<span class="cstat-no" title="statement not covered" >            throw new TypeError('Constructor Map requires "new"');</span>
          }
          var m = <span class="cstat-no" title="statement not covered" >new OrigMap();</span>
<span class="cstat-no" title="statement not covered" >          if (arguments.length &gt; 0) {</span>
<span class="cstat-no" title="statement not covered" >            addIterableToMap(Map, m, arguments[0]);</span>
          }
<span class="cstat-no" title="statement not covered" >          delete m.constructor;</span>
<span class="cstat-no" title="statement not covered" >          Object.setPrototypeOf(m, Map.prototype);</span>
<span class="cstat-no" title="statement not covered" >          return m;</span>
        };
<span class="cstat-no" title="statement not covered" >        globals.Map.prototype = OrigMap.prototype;</span>
<span class="cstat-no" title="statement not covered" >        defineProperty(globals.Map.prototype, 'constructor', globals.Map, true);</span>
<span class="cstat-no" title="statement not covered" >        Value.preserveToString(globals.Map, OrigMap);</span>
      }
      var setSupportsSubclassing = supportsSubclassing(globals.Set, function (S) {
        var s = new S([]);
        s.add(42, 42);
        return s instanceof S;
      });
      // without Object.setPrototypeOf, subclassing is not possible
      var setFailsToSupportSubclassing = Object.setPrototypeOf &amp;&amp; !setSupportsSubclassing;
      var setRequiresNew = (function () {
        try {
          return !(globals.Set() instanceof globals.Set);
        } catch (e) {
          return e instanceof TypeError;
        }
      }());
      <span class="missing-if-branch" title="if path not taken" >I</span>if (globals.Set.length !== 0 || setFailsToSupportSubclassing || !setRequiresNew) {
        var OrigSet = <span class="cstat-no" title="statement not covered" >globals.Set;</span>
<span class="cstat-no" title="statement not covered" >        globals.Set = function <span class="fstat-no" title="function not covered" >Set(</span>) {</span>
<span class="cstat-no" title="statement not covered" >          if (!(this instanceof Set)) {</span>
<span class="cstat-no" title="statement not covered" >            throw new TypeError('Constructor Set requires "new"');</span>
          }
          var s = <span class="cstat-no" title="statement not covered" >new OrigSet();</span>
<span class="cstat-no" title="statement not covered" >          if (arguments.length &gt; 0) {</span>
<span class="cstat-no" title="statement not covered" >            addIterableToSet(Set, s, arguments[0]);</span>
          }
<span class="cstat-no" title="statement not covered" >          delete s.constructor;</span>
<span class="cstat-no" title="statement not covered" >          Object.setPrototypeOf(s, Set.prototype);</span>
<span class="cstat-no" title="statement not covered" >          return s;</span>
        };
<span class="cstat-no" title="statement not covered" >        globals.Set.prototype = OrigSet.prototype;</span>
<span class="cstat-no" title="statement not covered" >        defineProperty(globals.Set.prototype, 'constructor', globals.Set, true);</span>
<span class="cstat-no" title="statement not covered" >        Value.preserveToString(globals.Set, OrigSet);</span>
      }
      var newMap = new globals.Map();
      var mapIterationThrowsStopIterator = !valueOrFalseIfThrows(function () {
        return newMap.keys().next().done;
      });
      /*
        - In Firefox &lt; 23, Map#size is a function.
        - In all current Firefox, Set#entries/keys/values &amp; Map#clear do not exist
        - https://bugzilla.mozilla.org/show_bug.cgi?id=869996
        - In Firefox 24, Map and Set do not implement forEach
        - In Firefox 25 at least, Map and Set are callable without "new"
      */
      <span class="missing-if-branch" title="if path not taken" >I</span>if (
        typeof globals.Map.prototype.clear !== 'function'
        || new globals.Set().size !== 0
        || newMap.size !== 0
        || typeof globals.Map.prototype.keys !== 'function'
        || typeof globals.Set.prototype.keys !== 'function'
        || typeof globals.Map.prototype.forEach !== 'function'
        || typeof globals.Set.prototype.forEach !== 'function'
        || isCallableWithoutNew(globals.Map)
        || isCallableWithoutNew(globals.Set)
        || typeof newMap.keys().next !== 'function' // Safari 8
        || mapIterationThrowsStopIterator // Firefox 25
        || !mapSupportsSubclassing
      ) {
<span class="cstat-no" title="statement not covered" >        defineProperties(globals, {</span>
          Map: collectionShims.Map,
          Set: collectionShims.Set
        }, true);
      }
&nbsp;
      <span class="missing-if-branch" title="if path not taken" >I</span>if (globals.Set.prototype.keys !== globals.Set.prototype.values) {
        // Fixed in WebKit with https://bugs.webkit.org/show_bug.cgi?id=144190
<span class="cstat-no" title="statement not covered" >        defineProperty(globals.Set.prototype, 'keys', globals.Set.prototype.values, true);</span>
      }
&nbsp;
      // Shim incomplete iterator implementations.
      addIterator(Object.getPrototypeOf((new globals.Map()).keys()));
      addIterator(Object.getPrototypeOf((new globals.Set()).keys()));
&nbsp;
      <span class="missing-if-branch" title="if path not taken" >I</span>if (functionsHaveNames &amp;&amp; globals.Set.prototype.has.name !== 'has') {
        // Microsoft Edge v0.11.10074.0 is missing a name on Set#has
        var anonymousSetHas = <span class="cstat-no" title="statement not covered" >globals.Set.prototype.has;</span>
<span class="cstat-no" title="statement not covered" >        overrideNative(globals.Set.prototype, 'has', function <span class="fstat-no" title="function not covered" >has(</span>key) {</span>
<span class="cstat-no" title="statement not covered" >          return _call(anonymousSetHas, this, key);</span>
        });
      }
    }
    defineProperties(globals, collectionShims);
    addDefaultSpecies(globals.Map);
    addDefaultSpecies(globals.Set);
  }
&nbsp;
  var throwUnlessTargetIsObject = function throwUnlessTargetIsObject(target) {
    if (!ES.TypeIsObject(target)) {
      throw new TypeError('target must be an object');
    }
  };
&nbsp;
  // Some Reflect methods are basically the same as
  // those on the Object global, except that a TypeError is thrown if
  // target isn't an object. As well as returning a boolean indicating
  // the success of the operation.
  var ReflectShims = {
    // Apply method in a functional form.
    apply: function <span class="fstat-no" title="function not covered" >apply(</span>) {
<span class="cstat-no" title="statement not covered" >      return ES.Call(ES.Call, null, arguments);</span>
    },
&nbsp;
    // New operator in a functional form.
    construct: function <span class="fstat-no" title="function not covered" >construct(</span>constructor, args) {
<span class="cstat-no" title="statement not covered" >      if (!ES.IsConstructor(constructor)) {</span>
<span class="cstat-no" title="statement not covered" >        throw new TypeError('First argument must be a constructor.');</span>
      }
      var newTarget = <span class="cstat-no" title="statement not covered" >arguments.length &gt; 2 ? arguments[2] : constructor;</span>
<span class="cstat-no" title="statement not covered" >      if (!ES.IsConstructor(newTarget)) {</span>
<span class="cstat-no" title="statement not covered" >        throw new TypeError('new.target must be a constructor.');</span>
      }
<span class="cstat-no" title="statement not covered" >      return ES.Construct(constructor, args, newTarget, 'internal');</span>
    },
&nbsp;
    // When deleting a non-existent or configurable property,
    // true is returned.
    // When attempting to delete a non-configurable property,
    // it will return false.
    deleteProperty: function <span class="fstat-no" title="function not covered" >deleteProperty(</span>target, key) {
<span class="cstat-no" title="statement not covered" >      throwUnlessTargetIsObject(target);</span>
<span class="cstat-no" title="statement not covered" >      if (supportsDescriptors) {</span>
        var desc = <span class="cstat-no" title="statement not covered" >Object.getOwnPropertyDescriptor(target, key);</span>
&nbsp;
<span class="cstat-no" title="statement not covered" >        if (desc &amp;&amp; !desc.configurable) {</span>
<span class="cstat-no" title="statement not covered" >          return false;</span>
        }
      }
&nbsp;
      // Will return true.
<span class="cstat-no" title="statement not covered" >      return delete target[key];</span>
    },
&nbsp;
    has: function <span class="fstat-no" title="function not covered" >has(</span>target, key) {
<span class="cstat-no" title="statement not covered" >      throwUnlessTargetIsObject(target);</span>
<span class="cstat-no" title="statement not covered" >      return key in target;</span>
    }
  };
&nbsp;
  <span class="missing-if-branch" title="else path not taken" >E</span>if (Object.getOwnPropertyNames) {
    Object.assign(ReflectShims, {
      // Basically the result of calling the internal [[OwnPropertyKeys]].
      // Concatenating propertyNames and propertySymbols should do the trick.
      // This should continue to work together with a Symbol shim
      // which overrides Object.getOwnPropertyNames and implements
      // Object.getOwnPropertySymbols.
      ownKeys: function <span class="fstat-no" title="function not covered" >ownKeys(</span>target) {
<span class="cstat-no" title="statement not covered" >        throwUnlessTargetIsObject(target);</span>
        var keys = <span class="cstat-no" title="statement not covered" >Object.getOwnPropertyNames(target);</span>
&nbsp;
<span class="cstat-no" title="statement not covered" >        if (ES.IsCallable(Object.getOwnPropertySymbols)) {</span>
<span class="cstat-no" title="statement not covered" >          _pushApply(keys, Object.getOwnPropertySymbols(target));</span>
        }
&nbsp;
<span class="cstat-no" title="statement not covered" >        return keys;</span>
      }
    });
  }
&nbsp;
  var callAndCatchException = function ConvertExceptionToBoolean(func) {
    return !throwsError(func);
  };
&nbsp;
  <span class="missing-if-branch" title="else path not taken" >E</span>if (Object.preventExtensions) {
    Object.assign(ReflectShims, {
      isExtensible: function <span class="fstat-no" title="function not covered" >isExtensible(</span>target) {
<span class="cstat-no" title="statement not covered" >        throwUnlessTargetIsObject(target);</span>
<span class="cstat-no" title="statement not covered" >        return Object.isExtensible(target);</span>
      },
      preventExtensions: function <span class="fstat-no" title="function not covered" >preventExtensions(</span>target) {
<span class="cstat-no" title="statement not covered" >        throwUnlessTargetIsObject(target);</span>
<span class="cstat-no" title="statement not covered" >        return callAndCatchException(<span class="fstat-no" title="function not covered" >fu</span>nction () {</span>
<span class="cstat-no" title="statement not covered" >          return Object.preventExtensions(target);</span>
        });
      }
    });
  }
&nbsp;
  <span class="missing-if-branch" title="else path not taken" >E</span>if (supportsDescriptors) {
    var internalGet = function <span class="fstat-no" title="function not covered" >get(</span>target, key, receiver) {
      var desc = <span class="cstat-no" title="statement not covered" >Object.getOwnPropertyDescriptor(target, key);</span>
&nbsp;
<span class="cstat-no" title="statement not covered" >      if (!desc) {</span>
        var parent = <span class="cstat-no" title="statement not covered" >Object.getPrototypeOf(target);</span>
&nbsp;
<span class="cstat-no" title="statement not covered" >        if (parent === null) {</span>
<span class="cstat-no" title="statement not covered" >          return void 0;</span>
        }
&nbsp;
<span class="cstat-no" title="statement not covered" >        return internalGet(parent, key, receiver);</span>
      }
&nbsp;
<span class="cstat-no" title="statement not covered" >      if ('value' in desc) {</span>
<span class="cstat-no" title="statement not covered" >        return desc.value;</span>
      }
&nbsp;
<span class="cstat-no" title="statement not covered" >      if (desc.get) {</span>
<span class="cstat-no" title="statement not covered" >        return ES.Call(desc.get, receiver);</span>
      }
&nbsp;
<span class="cstat-no" title="statement not covered" >      return void 0;</span>
    };
&nbsp;
    var internalSet = function <span class="fstat-no" title="function not covered" >set(</span>target, key, value, receiver) {
      var desc = <span class="cstat-no" title="statement not covered" >Object.getOwnPropertyDescriptor(target, key);</span>
&nbsp;
<span class="cstat-no" title="statement not covered" >      if (!desc) {</span>
        var parent = <span class="cstat-no" title="statement not covered" >Object.getPrototypeOf(target);</span>
&nbsp;
<span class="cstat-no" title="statement not covered" >        if (parent !== null) {</span>
<span class="cstat-no" title="statement not covered" >          return internalSet(parent, key, value, receiver);</span>
        }
&nbsp;
<span class="cstat-no" title="statement not covered" >        desc = {</span>
          value: void 0,
          writable: true,
          enumerable: true,
          configurable: true
        };
      }
&nbsp;
<span class="cstat-no" title="statement not covered" >      if ('value' in desc) {</span>
<span class="cstat-no" title="statement not covered" >        if (!desc.writable) {</span>
<span class="cstat-no" title="statement not covered" >          return false;</span>
        }
&nbsp;
<span class="cstat-no" title="statement not covered" >        if (!ES.TypeIsObject(receiver)) {</span>
<span class="cstat-no" title="statement not covered" >          return false;</span>
        }
&nbsp;
        var existingDesc = <span class="cstat-no" title="statement not covered" >Object.getOwnPropertyDescriptor(receiver, key);</span>
&nbsp;
<span class="cstat-no" title="statement not covered" >        if (existingDesc) {</span>
<span class="cstat-no" title="statement not covered" >          return Reflect.defineProperty(receiver, key, {</span>
            value: value
          });
        }
<span class="cstat-no" title="statement not covered" >        return Reflect.defineProperty(receiver, key, {</span>
          value: value,
          writable: true,
          enumerable: true,
          configurable: true
        });
&nbsp;
      }
&nbsp;
<span class="cstat-no" title="statement not covered" >      if (desc.set) {</span>
<span class="cstat-no" title="statement not covered" >        _call(desc.set, receiver, value);</span>
<span class="cstat-no" title="statement not covered" >        return true;</span>
      }
&nbsp;
<span class="cstat-no" title="statement not covered" >      return false;</span>
    };
&nbsp;
    Object.assign(ReflectShims, {
      defineProperty: function defineProperty(target, propertyKey, attributes) {
        throwUnlessTargetIsObject(target);
        return callAndCatchException(function () {
          return Object.defineProperty(target, propertyKey, attributes);
        });
      },
&nbsp;
      getOwnPropertyDescriptor: function <span class="fstat-no" title="function not covered" >getOwnPropertyDescriptor(</span>target, propertyKey) {
<span class="cstat-no" title="statement not covered" >        throwUnlessTargetIsObject(target);</span>
<span class="cstat-no" title="statement not covered" >        return Object.getOwnPropertyDescriptor(target, propertyKey);</span>
      },
&nbsp;
      // Syntax in a functional form.
      get: function <span class="fstat-no" title="function not covered" >get(</span>target, key) {
<span class="cstat-no" title="statement not covered" >        throwUnlessTargetIsObject(target);</span>
        var receiver = <span class="cstat-no" title="statement not covered" >arguments.length &gt; 2 ? arguments[2] : target;</span>
&nbsp;
<span class="cstat-no" title="statement not covered" >        return internalGet(target, key, receiver);</span>
      },
&nbsp;
      set: function <span class="fstat-no" title="function not covered" >set(</span>target, key, value) {
<span class="cstat-no" title="statement not covered" >        throwUnlessTargetIsObject(target);</span>
        var receiver = <span class="cstat-no" title="statement not covered" >arguments.length &gt; 3 ? arguments[3] : target;</span>
&nbsp;
<span class="cstat-no" title="statement not covered" >        return internalSet(target, key, value, receiver);</span>
      }
    });
  }
&nbsp;
  <span class="missing-if-branch" title="else path not taken" >E</span>if (Object.getPrototypeOf) {
    var objectDotGetPrototypeOf = Object.getPrototypeOf;
    ReflectShims.getPrototypeOf = function <span class="fstat-no" title="function not covered" >getPrototypeOf(</span>target) {
<span class="cstat-no" title="statement not covered" >      throwUnlessTargetIsObject(target);</span>
<span class="cstat-no" title="statement not covered" >      return objectDotGetPrototypeOf(target);</span>
    };
  }
&nbsp;
  <span class="missing-if-branch" title="else path not taken" >E</span>if (Object.setPrototypeOf &amp;&amp; ReflectShims.getPrototypeOf) {
    var willCreateCircularPrototype = <span class="fstat-no" title="function not covered" >fu</span>nction (object, lastProto) {
      var proto = <span class="cstat-no" title="statement not covered" >lastProto;</span>
<span class="cstat-no" title="statement not covered" >      while (proto) {</span>
<span class="cstat-no" title="statement not covered" >        if (object === proto) {</span>
<span class="cstat-no" title="statement not covered" >          return true;</span>
        }
<span class="cstat-no" title="statement not covered" >        proto = ReflectShims.getPrototypeOf(proto);</span>
      }
<span class="cstat-no" title="statement not covered" >      return false;</span>
    };
&nbsp;
    Object.assign(ReflectShims, {
      // Sets the prototype of the given object.
      // Returns true on success, otherwise false.
      setPrototypeOf: function <span class="fstat-no" title="function not covered" >setPrototypeOf(</span>object, proto) {
<span class="cstat-no" title="statement not covered" >        throwUnlessTargetIsObject(object);</span>
<span class="cstat-no" title="statement not covered" >        if (proto !== null &amp;&amp; !ES.TypeIsObject(proto)) {</span>
<span class="cstat-no" title="statement not covered" >          throw new TypeError('proto must be an object or null');</span>
        }
&nbsp;
        // If they already are the same, we're done.
<span class="cstat-no" title="statement not covered" >        if (proto === Reflect.getPrototypeOf(object)) {</span>
<span class="cstat-no" title="statement not covered" >          return true;</span>
        }
&nbsp;
        // Cannot alter prototype if object not extensible.
<span class="cstat-no" title="statement not covered" >        if (Reflect.isExtensible &amp;&amp; !Reflect.isExtensible(object)) {</span>
<span class="cstat-no" title="statement not covered" >          return false;</span>
        }
&nbsp;
        // Ensure that we do not create a circular prototype chain.
<span class="cstat-no" title="statement not covered" >        if (willCreateCircularPrototype(object, proto)) {</span>
<span class="cstat-no" title="statement not covered" >          return false;</span>
        }
&nbsp;
<span class="cstat-no" title="statement not covered" >        Object.setPrototypeOf(object, proto);</span>
&nbsp;
<span class="cstat-no" title="statement not covered" >        return true;</span>
      }
    });
  }
  var defineOrOverrideReflectProperty = function (key, shim) {
    <span class="missing-if-branch" title="if path not taken" >I</span>if (!ES.IsCallable(globals.Reflect[key])) {
<span class="cstat-no" title="statement not covered" >      defineProperty(globals.Reflect, key, shim);</span>
    } else {
      var acceptsPrimitives = valueOrFalseIfThrows(function () {
        globals.Reflect[key](1);
<span class="cstat-no" title="statement not covered" >        globals.Reflect[key](NaN);</span>
<span class="cstat-no" title="statement not covered" >        globals.Reflect[key](true);</span>
<span class="cstat-no" title="statement not covered" >        return true;</span>
      });
      <span class="missing-if-branch" title="if path not taken" >I</span>if (acceptsPrimitives) {
<span class="cstat-no" title="statement not covered" >        overrideNative(globals.Reflect, key, shim);</span>
      }
    }
  };
  Object.keys(ReflectShims).forEach(function (key) {
    defineOrOverrideReflectProperty(key, ReflectShims[key]);
  });
  var originalReflectGetProto = globals.Reflect.getPrototypeOf;
  <span class="missing-if-branch" title="if path not taken" >I</span>if (functionsHaveNames &amp;&amp; originalReflectGetProto &amp;&amp; originalReflectGetProto.name !== 'getPrototypeOf') {
<span class="cstat-no" title="statement not covered" >    overrideNative(globals.Reflect, 'getPrototypeOf', function <span class="fstat-no" title="function not covered" >getPrototypeOf(</span>target) {</span>
<span class="cstat-no" title="statement not covered" >      return _call(originalReflectGetProto, globals.Reflect, target);</span>
    });
  }
  <span class="missing-if-branch" title="else path not taken" >E</span>if (globals.Reflect.setPrototypeOf) {
    <span class="missing-if-branch" title="if path not taken" >I</span>if (valueOrFalseIfThrows(function () {
      globals.Reflect.setPrototypeOf(1, {});
<span class="cstat-no" title="statement not covered" >      return true;</span>
    })) {
<span class="cstat-no" title="statement not covered" >      overrideNative(globals.Reflect, 'setPrototypeOf', ReflectShims.setPrototypeOf);</span>
    }
  }
  <span class="missing-if-branch" title="else path not taken" >E</span>if (globals.Reflect.defineProperty) {
    <span class="missing-if-branch" title="else path not taken" >E</span>if (!valueOrFalseIfThrows(function () {
      var basic = !globals.Reflect.defineProperty(1, 'test', { value: 1 });
      // "extensible" fails on Edge 0.12
      var extensible = <span class="cstat-no" title="statement not covered" >typeof Object.preventExtensions !== 'function' || !globals.Reflect.defineProperty(Object.preventExtensions({}), 'test', {});</span>
<span class="cstat-no" title="statement not covered" >      return basic &amp;&amp; extensible;</span>
    })) {
      overrideNative(globals.Reflect, 'defineProperty', ReflectShims.defineProperty);
    }
  }
  <span class="missing-if-branch" title="else path not taken" >E</span>if (globals.Reflect.construct) {
    <span class="missing-if-branch" title="if path not taken" >I</span>if (!valueOrFalseIfThrows(function () {
      var F = function <span class="fstat-no" title="function not covered" >F(</span>) {};
      return globals.Reflect.construct(function () {}, [], F) instanceof F;
    })) {
<span class="cstat-no" title="statement not covered" >      overrideNative(globals.Reflect, 'construct', ReflectShims.construct);</span>
    }
  }
&nbsp;
  <span class="missing-if-branch" title="if path not taken" >I</span>if (String(new Date(NaN)) !== 'Invalid Date') {
    var dateToString = <span class="cstat-no" title="statement not covered" >Date.prototype.toString;</span>
    var shimmedDateToString = <span class="cstat-no" title="statement not covered" >function <span class="fstat-no" title="function not covered" >toString(</span>) {</span>
      var valueOf = <span class="cstat-no" title="statement not covered" >+this;</span>
<span class="cstat-no" title="statement not covered" >      if (valueOf !== valueOf) {</span>
<span class="cstat-no" title="statement not covered" >        return 'Invalid Date';</span>
      }
<span class="cstat-no" title="statement not covered" >      return ES.Call(dateToString, this);</span>
    };
<span class="cstat-no" title="statement not covered" >    overrideNative(Date.prototype, 'toString', shimmedDateToString);</span>
  }
&nbsp;
  // Annex B HTML methods
  // http://www.ecma-international.org/ecma-262/6.0/#sec-additional-properties-of-the-string.prototype-object
  var stringHTMLshims = {
    anchor: function <span class="fstat-no" title="function not covered" >anchor(</span>name) { <span class="cstat-no" title="statement not covered" >return ES.CreateHTML(this, 'a', 'name', name); </span>},
    big: function <span class="fstat-no" title="function not covered" >big(</span>) { <span class="cstat-no" title="statement not covered" >return ES.CreateHTML(this, 'big', '', ''); </span>},
    blink: function <span class="fstat-no" title="function not covered" >blink(</span>) { <span class="cstat-no" title="statement not covered" >return ES.CreateHTML(this, 'blink', '', ''); </span>},
    bold: function <span class="fstat-no" title="function not covered" >bold(</span>) { <span class="cstat-no" title="statement not covered" >return ES.CreateHTML(this, 'b', '', ''); </span>},
    fixed: function <span class="fstat-no" title="function not covered" >fixed(</span>) { <span class="cstat-no" title="statement not covered" >return ES.CreateHTML(this, 'tt', '', ''); </span>},
    fontcolor: function <span class="fstat-no" title="function not covered" >fontcolor(</span>color) { <span class="cstat-no" title="statement not covered" >return ES.CreateHTML(this, 'font', 'color', color); </span>},
    fontsize: function <span class="fstat-no" title="function not covered" >fontsize(</span>size) { <span class="cstat-no" title="statement not covered" >return ES.CreateHTML(this, 'font', 'size', size); </span>},
    italics: function <span class="fstat-no" title="function not covered" >italics(</span>) { <span class="cstat-no" title="statement not covered" >return ES.CreateHTML(this, 'i', '', ''); </span>},
    link: function <span class="fstat-no" title="function not covered" >link(</span>url) { <span class="cstat-no" title="statement not covered" >return ES.CreateHTML(this, 'a', 'href', url); </span>},
    small: function <span class="fstat-no" title="function not covered" >small(</span>) { <span class="cstat-no" title="statement not covered" >return ES.CreateHTML(this, 'small', '', ''); </span>},
    strike: function <span class="fstat-no" title="function not covered" >strike(</span>) { <span class="cstat-no" title="statement not covered" >return ES.CreateHTML(this, 'strike', '', ''); </span>},
    sub: function <span class="fstat-no" title="function not covered" >sub(</span>) { <span class="cstat-no" title="statement not covered" >return ES.CreateHTML(this, 'sub', '', ''); </span>},
    sup: function <span class="fstat-no" title="function not covered" >sub(</span>) { <span class="cstat-no" title="statement not covered" >return ES.CreateHTML(this, 'sup', '', ''); </span>}
  };
  _forEach(Object.keys(stringHTMLshims), function (key) {
    var method = String.prototype[key];
    var shouldOverwrite = false;
    <span class="missing-if-branch" title="else path not taken" >E</span>if (ES.IsCallable(method)) {
      var output = _call(method, '', ' " ');
      var quotesCount = _concat([], output.match(/"/g)).length;
      shouldOverwrite = output !== output.toLowerCase() || quotesCount &gt; 2;
    } else {
<span class="cstat-no" title="statement not covered" >      shouldOverwrite = true;</span>
    }
    <span class="missing-if-branch" title="if path not taken" >I</span>if (shouldOverwrite) {
<span class="cstat-no" title="statement not covered" >      overrideNative(String.prototype, key, stringHTMLshims[key]);</span>
    }
  });
&nbsp;
  var JSONstringifiesSymbols = (function () {
    // Microsoft Edge v0.12 stringifies Symbols incorrectly
    <span class="missing-if-branch" title="if path not taken" >I</span>if (!hasSymbols) { <span class="cstat-no" title="statement not covered" >return false; </span>} // Symbols are not supported
    var stringify = typeof JSON === 'object' &amp;&amp; typeof JSON.stringify === 'function' ? JSON.stringify : <span class="branch-1 cbranch-no" title="branch not covered" >null;</span>
    <span class="missing-if-branch" title="if path not taken" >I</span>if (!stringify) { <span class="cstat-no" title="statement not covered" >return false; </span>} // JSON.stringify is not supported
    <span class="missing-if-branch" title="if path not taken" >I</span>if (typeof stringify(Symbol()) !== 'undefined') { <span class="cstat-no" title="statement not covered" >return true; </span>} // Symbols should become `undefined`
    <span class="missing-if-branch" title="if path not taken" >I</span>if (stringify([Symbol()]) !== '[null]') { <span class="cstat-no" title="statement not covered" >return true; </span>} // Symbols in arrays should become `null`
    var obj = { a: Symbol() };
    obj[Symbol()] = true;
    <span class="missing-if-branch" title="if path not taken" >I</span>if (stringify(obj) !== '{}') { <span class="cstat-no" title="statement not covered" >return true; </span>} // Symbol-valued keys *and* Symbol-valued properties should be omitted
    return false;
  }());
  var JSONstringifyAcceptsObjectSymbol = valueOrFalseIfThrows(function () {
    // Chrome 45 throws on stringifying object symbols
    <span class="missing-if-branch" title="if path not taken" >I</span>if (!hasSymbols) { <span class="cstat-no" title="statement not covered" >return true; </span>} // Symbols are not supported
    return JSON.stringify(Object(Symbol())) === '{}' &amp;&amp; JSON.stringify([Object(Symbol())]) === '[{}]';
  });
  <span class="missing-if-branch" title="if path not taken" >I</span>if (JSONstringifiesSymbols || !JSONstringifyAcceptsObjectSymbol) {
    var origStringify = <span class="cstat-no" title="statement not covered" >JSON.stringify;</span>
<span class="cstat-no" title="statement not covered" >    overrideNative(JSON, 'stringify', function <span class="fstat-no" title="function not covered" >stringify(</span>value) {</span>
<span class="cstat-no" title="statement not covered" >      if (typeof value === 'symbol') { <span class="cstat-no" title="statement not covered" >return; </span>}</span>
      var replacer;
<span class="cstat-no" title="statement not covered" >      if (arguments.length &gt; 1) {</span>
<span class="cstat-no" title="statement not covered" >        replacer = arguments[1];</span>
      }
      var args = <span class="cstat-no" title="statement not covered" >[value];</span>
<span class="cstat-no" title="statement not covered" >      if (!isArray(replacer)) {</span>
        var replaceFn = <span class="cstat-no" title="statement not covered" >ES.IsCallable(replacer) ? replacer : null;</span>
        var wrappedReplacer = <span class="cstat-no" title="statement not covered" ><span class="fstat-no" title="function not covered" >fu</span>nction (key, val) {</span>
          var parsedValue = <span class="cstat-no" title="statement not covered" >replaceFn ? _call(replaceFn, this, key, val) : val;</span>
<span class="cstat-no" title="statement not covered" >          if (typeof parsedValue !== 'symbol') {</span>
<span class="cstat-no" title="statement not covered" >            if (Type.symbol(parsedValue)) {</span>
<span class="cstat-no" title="statement not covered" >              return assignTo({})(parsedValue);</span>
            }
<span class="cstat-no" title="statement not covered" >            return parsedValue;</span>
&nbsp;
          }
        };
<span class="cstat-no" title="statement not covered" >        args.push(wrappedReplacer);</span>
      } else {
        // create wrapped replacer that handles an array replacer?
<span class="cstat-no" title="statement not covered" >        args.push(replacer);</span>
      }
<span class="cstat-no" title="statement not covered" >      if (arguments.length &gt; 2) {</span>
<span class="cstat-no" title="statement not covered" >        args.push(arguments[2]);</span>
      }
<span class="cstat-no" title="statement not covered" >      return origStringify.apply(this, args);</span>
    });
  }
&nbsp;
  return globals;
}));
&nbsp;</pre></td></tr>
</table></pre>
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