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<!doctype html>
<meta charset="utf8">
<link rel="stylesheet" href="./spec.css">
<link rel="stylesheet" href="https://cdnjs.cloudflare.com/ajax/libs/highlight.js/8.4/styles/github.min.css">
<script src="./spec.js"></script>
<pre class="metadata">
title: ECMAScript Module Phase Imports
stage: 2
contributors: Luca Casonato, Guy Bedford
</pre>
<emu-clause id="sec-ecmascript-data-types-and-values" aoid="Type">
<h1>ECMAScript Data Types and Values</h1>
<emu-clause id="sec-ecmascript-language-types">
<h1>ECMAScript Language Types</h1>
<emu-clause id="sec-object-type">
<h1>Object Type</h1>
<emu-clause id="sec-well-known-intrinsic-objects">
<h1>Well-Known Intrinsic Objects</h1>
<p>Well-known intrinsics are built-in objects that are explicitly referenced by the algorithms of this specification and which usually have realm-specific identities. Unless otherwise specified each intrinsic object actually corresponds to a set of similar objects, one per realm.</p>
<p>Within this specification a reference such as %name% means the intrinsic object, associated with the current realm, corresponding to the name. A reference such as %name.a.b% means, as if the *"b"* property of the value of the *"a"* property of the intrinsic object %name% was accessed prior to any ECMAScript code being evaluated. Determination of the current realm and its intrinsics is described in <emu-xref href="#sec-execution-contexts"></emu-xref>. The well-known intrinsics are listed in <emu-xref href="#table-well-known-intrinsic-objects"></emu-xref>.</p>
<emu-table id="table-well-known-intrinsic-objects" caption="Well-Known Intrinsic Objects" oldids="table-7">
<table>
<thead>
<tr>
<th>
Intrinsic Name
</th>
<th>
Global Name
</th>
<th>
ECMAScript Language Association
</th>
</tr>
</thead>
<tr>
<td>
%AbstractModuleSource%
</td>
<td>
`AbstractModuleSource`
</td>
<td>
The `AbstractModuleSource` constructor (<emu-xref href="#sec-abstractmodulesource-constructor"></emu-xref>)
</td>
</tr>
<tr>
<td>
%AggregateError%
</td>
<td>
`AggregateError`
</td>
<td>
The `AggregateError` constructor (<emu-xref href="#sec-aggregate-error-constructor"></emu-xref>)
</td>
</tr>
<tr>
<td>
%Array%
</td>
<td>
`Array`
</td>
<td>
The Array constructor (<emu-xref href="#sec-array-constructor"></emu-xref>)
</td>
</tr>
<tr>
<td>
%ArrayBuffer%
</td>
<td>
`ArrayBuffer`
</td>
<td>
The ArrayBuffer constructor (<emu-xref href="#sec-arraybuffer-constructor"></emu-xref>)
</td>
</tr>
<tr>
<td>
%ArrayIteratorPrototype%
</td>
<td>
</td>
<td>
The prototype of Array iterator objects (<emu-xref href="#sec-array-iterator-objects"></emu-xref>)
</td>
</tr>
<tr>
<td>
%AsyncFromSyncIteratorPrototype%
</td>
<td>
</td>
<td>
The prototype of async-from-sync iterator objects (<emu-xref href="#sec-async-from-sync-iterator-objects"></emu-xref>)
</td>
</tr>
<tr>
<td>
%AsyncFunction%
</td>
<td>
</td>
<td>
The constructor of async function objects (<emu-xref href="#sec-async-function-constructor"></emu-xref>)
</td>
</tr>
<tr>
<td>
%AsyncGeneratorFunction%
</td>
<td>
</td>
<td>
The constructor of async generator function objects (<emu-xref href="#sec-asyncgeneratorfunction-constructor"></emu-xref>)
</td>
</tr>
<tr>
<td>
%AsyncGeneratorPrototype%
</td>
<td>
</td>
<td>
The prototype of async generator objects (<emu-xref href="#sec-asyncgenerator-objects"></emu-xref>)
</td>
</tr>
<tr>
<td>
%AsyncIteratorPrototype%
</td>
<td>
</td>
<td>
An object that all standard built-in async iterator objects indirectly inherit from
</td>
</tr>
<tr>
<td>
%Atomics%
</td>
<td>
`Atomics`
</td>
<td>
The `Atomics` object (<emu-xref href="#sec-atomics-object"></emu-xref>)
</td>
</tr>
<tr>
<td>
%BigInt%
</td>
<td>
`BigInt`
</td>
<td>
The BigInt constructor (<emu-xref href="#sec-bigint-constructor"></emu-xref>)
</td>
</tr>
<tr>
<td>
%BigInt64Array%
</td>
<td>
`BigInt64Array`
</td>
<td>
The BigInt64Array constructor (<emu-xref href="#sec-typedarray-objects"></emu-xref>)
</td>
</tr>
<tr>
<td>
%BigUint64Array%
</td>
<td>
`BigUint64Array`
</td>
<td>
The BigUint64Array constructor (<emu-xref href="#sec-typedarray-objects"></emu-xref>)
</td>
</tr>
<tr>
<td>
%Boolean%
</td>
<td>
`Boolean`
</td>
<td>
The Boolean constructor (<emu-xref href="#sec-boolean-constructor"></emu-xref>)
</td>
</tr>
<tr>
<td>
%DataView%
</td>
<td>
`DataView`
</td>
<td>
The DataView constructor (<emu-xref href="#sec-dataview-constructor"></emu-xref>)
</td>
</tr>
<tr>
<td>
%Date%
</td>
<td>
`Date`
</td>
<td>
The Date constructor (<emu-xref href="#sec-date-constructor"></emu-xref>)
</td>
</tr>
<tr>
<td>
%decodeURI%
</td>
<td>
`decodeURI`
</td>
<td>
The `decodeURI` function (<emu-xref href="#sec-decodeuri-encodeduri"></emu-xref>)
</td>
</tr>
<tr>
<td>
%decodeURIComponent%
</td>
<td>
`decodeURIComponent`
</td>
<td>
The `decodeURIComponent` function (<emu-xref href="#sec-decodeuricomponent-encodeduricomponent"></emu-xref>)
</td>
</tr>
<tr>
<td>
%encodeURI%
</td>
<td>
`encodeURI`
</td>
<td>
The `encodeURI` function (<emu-xref href="#sec-encodeuri-uri"></emu-xref>)
</td>
</tr>
<tr>
<td>
%encodeURIComponent%
</td>
<td>
`encodeURIComponent`
</td>
<td>
The `encodeURIComponent` function (<emu-xref href="#sec-encodeuricomponent-uricomponent"></emu-xref>)
</td>
</tr>
<tr>
<td>
%Error%
</td>
<td>
`Error`
</td>
<td>
The Error constructor (<emu-xref href="#sec-error-constructor"></emu-xref>)
</td>
</tr>
<tr>
<td>
%eval%
</td>
<td>
`eval`
</td>
<td>
The `eval` function (<emu-xref href="#sec-eval-x"></emu-xref>)
</td>
</tr>
<tr>
<td>
%EvalError%
</td>
<td>
`EvalError`
</td>
<td>
The EvalError constructor (<emu-xref href="#sec-native-error-types-used-in-this-standard-evalerror"></emu-xref>)
</td>
</tr>
<tr>
<td>
%FinalizationRegistry%
</td>
<td>
`FinalizationRegistry`
</td>
<td>
The FinalizationRegistry constructor (<emu-xref href="#sec-finalization-registry-constructor"></emu-xref>)
</td>
</tr>
<tr>
<td>
%Float32Array%
</td>
<td>
`Float32Array`
</td>
<td>
The Float32Array constructor (<emu-xref href="#sec-typedarray-objects"></emu-xref>)
</td>
</tr>
<tr>
<td>
%Float64Array%
</td>
<td>
`Float64Array`
</td>
<td>
The Float64Array constructor (<emu-xref href="#sec-typedarray-objects"></emu-xref>)
</td>
</tr>
<tr>
<td>
%ForInIteratorPrototype%
</td>
<td>
</td>
<td>
The prototype of For-In iterator objects (<emu-xref href="#sec-for-in-iterator-objects"></emu-xref>)
</td>
</tr>
<tr>
<td>
%Function%
</td>
<td>
`Function`
</td>
<td>
The Function constructor (<emu-xref href="#sec-function-constructor"></emu-xref>)
</td>
</tr>
<tr>
<td>
%GeneratorFunction%
</td>
<td>
</td>
<td>
The constructor of generator function objects (<emu-xref href="#sec-generatorfunction-constructor"></emu-xref>)
</td>
</tr>
<tr>
<td>
%GeneratorPrototype%
</td>
<td>
</td>
<td>
The prototype of generator objects (<emu-xref href="#sec-generator-objects"></emu-xref>)
</td>
</tr>
<tr>
<td>
%Int8Array%
</td>
<td>
`Int8Array`
</td>
<td>
The Int8Array constructor (<emu-xref href="#sec-typedarray-objects"></emu-xref>)
</td>
</tr>
<tr>
<td>
%Int16Array%
</td>
<td>
`Int16Array`
</td>
<td>
The Int16Array constructor (<emu-xref href="#sec-typedarray-objects"></emu-xref>)
</td>
</tr>
<tr>
<td>
%Int32Array%
</td>
<td>
`Int32Array`
</td>
<td>
The Int32Array constructor (<emu-xref href="#sec-typedarray-objects"></emu-xref>)
</td>
</tr>
<tr>
<td>
%isFinite%
</td>
<td>
`isFinite`
</td>
<td>
The `isFinite` function (<emu-xref href="#sec-isfinite-number"></emu-xref>)
</td>
</tr>
<tr>
<td>
%isNaN%
</td>
<td>
`isNaN`
</td>
<td>
The `isNaN` function (<emu-xref href="#sec-isnan-number"></emu-xref>)
</td>
</tr>
<tr>
<td>
%IteratorPrototype%
</td>
<td>
</td>
<td>
An object that all standard built-in iterator objects indirectly inherit from
</td>
</tr>
<tr>
<td>
%JSON%
</td>
<td>
`JSON`
</td>
<td>
The `JSON` object (<emu-xref href="#sec-json-object"></emu-xref>)
</td>
</tr>
<tr>
<td>
%Map%
</td>
<td>
`Map`
</td>
<td>
The Map constructor (<emu-xref href="#sec-map-constructor"></emu-xref>)
</td>
</tr>
<tr>
<td>
%MapIteratorPrototype%
</td>
<td>
</td>
<td>
The prototype of Map iterator objects (<emu-xref href="#sec-map-iterator-objects"></emu-xref>)
</td>
</tr>
<tr>
<td>
%Math%
</td>
<td>
`Math`
</td>
<td>
The `Math` object (<emu-xref href="#sec-math-object"></emu-xref>)
</td>
</tr>
<tr>
<td>
<ins>%ModuleSource%</ins>
</td>
<td>
<ins>`ModuleSource`</ins>
</td>
<td>
<ins>A `ModuleSource` object (<emu-xref href="#sec-module-source-object"></emu-xref>)</ins>
</td>
</tr>
<tr>
<td>
%Number%
</td>
<td>
`Number`
</td>
<td>
The Number constructor (<emu-xref href="#sec-number-constructor"></emu-xref>)
</td>
</tr>
<tr>
<td>
%Object%
</td>
<td>
`Object`
</td>
<td>
The Object constructor (<emu-xref href="#sec-object-constructor"></emu-xref>)
</td>
</tr>
<tr>
<td>
%parseFloat%
</td>
<td>
`parseFloat`
</td>
<td>
The `parseFloat` function (<emu-xref href="#sec-parsefloat-string"></emu-xref>)
</td>
</tr>
<tr>
<td>
%parseInt%
</td>
<td>
`parseInt`
</td>
<td>
The `parseInt` function (<emu-xref href="#sec-parseint-string-radix"></emu-xref>)
</td>
</tr>
<tr>
<td>
%Promise%
</td>
<td>
`Promise`
</td>
<td>
The Promise constructor (<emu-xref href="#sec-promise-constructor"></emu-xref>)
</td>
</tr>
<tr>
<td>
%Proxy%
</td>
<td>
`Proxy`
</td>
<td>
The Proxy constructor (<emu-xref href="#sec-proxy-constructor"></emu-xref>)
</td>
</tr>
<tr>
<td>
%RangeError%
</td>
<td>
`RangeError`
</td>
<td>
The RangeError constructor (<emu-xref href="#sec-native-error-types-used-in-this-standard-rangeerror"></emu-xref>)
</td>
</tr>
<tr>
<td>
%ReferenceError%
</td>
<td>
`ReferenceError`
</td>
<td>
The ReferenceError constructor (<emu-xref href="#sec-native-error-types-used-in-this-standard-referenceerror"></emu-xref>)
</td>
</tr>
<tr>
<td>
%Reflect%
</td>
<td>
`Reflect`
</td>
<td>
The `Reflect` object (<emu-xref href="#sec-reflect-object"></emu-xref>)
</td>
</tr>
<tr>
<td>
%RegExp%
</td>
<td>
`RegExp`
</td>
<td>
The RegExp constructor (<emu-xref href="#sec-regexp-constructor"></emu-xref>)
</td>
</tr>
<tr>
<td>
%RegExpStringIteratorPrototype%
</td>
<td>
</td>
<td>
The prototype of RegExp String Iterator objects (<emu-xref href="#sec-regexp-string-iterator-objects"></emu-xref>)
</td>
</tr>
<tr>
<td>
%Set%
</td>
<td>
`Set`
</td>
<td>
The Set constructor (<emu-xref href="#sec-set-constructor"></emu-xref>)
</td>
</tr>
<tr>
<td>
%SetIteratorPrototype%
</td>
<td>
</td>
<td>
The prototype of Set iterator objects (<emu-xref href="#sec-set-iterator-objects"></emu-xref>)
</td>
</tr>
<tr>
<td>
%SharedArrayBuffer%
</td>
<td>
`SharedArrayBuffer`
</td>
<td>
The SharedArrayBuffer constructor (<emu-xref href="#sec-sharedarraybuffer-constructor"></emu-xref>)
</td>
</tr>
<tr>
<td>
%String%
</td>
<td>
`String`
</td>
<td>
The String constructor (<emu-xref href="#sec-string-constructor"></emu-xref>)
</td>
</tr>
<tr>
<td>
%StringIteratorPrototype%
</td>
<td>
</td>
<td>
The prototype of String iterator objects (<emu-xref href="#sec-string-iterator-objects"></emu-xref>)
</td>
</tr>
<tr>
<td>
%Symbol%
</td>
<td>
`Symbol`
</td>
<td>
The Symbol constructor (<emu-xref href="#sec-symbol-constructor"></emu-xref>)
</td>
</tr>
<tr>
<td>
%SyntaxError%
</td>
<td>
`SyntaxError`
</td>
<td>
The SyntaxError constructor (<emu-xref href="#sec-native-error-types-used-in-this-standard-syntaxerror"></emu-xref>)
</td>
</tr>
<tr>
<td>
%ThrowTypeError%
</td>
<td>
</td>
<td>
A function object that unconditionally throws a new instance of %TypeError%
</td>
</tr>
<tr>
<td>
%TypedArray%
</td>
<td>
</td>
<td>
The super class of all typed Array constructors (<emu-xref href="#sec-%typedarray%-intrinsic-object"></emu-xref>)
</td>
</tr>
<tr>
<td>
%TypeError%
</td>
<td>
`TypeError`
</td>
<td>
The TypeError constructor (<emu-xref href="#sec-native-error-types-used-in-this-standard-typeerror"></emu-xref>)
</td>
</tr>
<tr>
<td>
%Uint8Array%
</td>
<td>
`Uint8Array`
</td>
<td>
The Uint8Array constructor (<emu-xref href="#sec-typedarray-objects"></emu-xref>)
</td>
</tr>
<tr>
<td>
%Uint8ClampedArray%
</td>
<td>
`Uint8ClampedArray`
</td>
<td>
The Uint8ClampedArray constructor (<emu-xref href="#sec-typedarray-objects"></emu-xref>)
</td>
</tr>
<tr>
<td>
%Uint16Array%
</td>
<td>
`Uint16Array`
</td>
<td>
The Uint16Array constructor (<emu-xref href="#sec-typedarray-objects"></emu-xref>)
</td>
</tr>
<tr>
<td>
%Uint32Array%
</td>
<td>
`Uint32Array`
</td>
<td>
The Uint32Array constructor (<emu-xref href="#sec-typedarray-objects"></emu-xref>)
</td>
</tr>
<tr>
<td>
%URIError%
</td>
<td>
`URIError`
</td>
<td>
The URIError constructor (<emu-xref href="#sec-native-error-types-used-in-this-standard-urierror"></emu-xref>)
</td>
</tr>
<tr>
<td>
%WeakMap%
</td>
<td>
`WeakMap`
</td>
<td>
The WeakMap constructor (<emu-xref href="#sec-weakmap-constructor"></emu-xref>)
</td>
</tr>
<tr>
<td>
%WeakRef%
</td>
<td>
`WeakRef`
</td>
<td>
The WeakRef constructor (<emu-xref href="#sec-weak-ref-constructor"></emu-xref>)
</td>
</tr>
<tr>
<td>
%WeakSet%
</td>
<td>
`WeakSet`
</td>
<td>
The WeakSet constructor (<emu-xref href="#sec-weakset-constructor"></emu-xref>)
</td>
</tr>
</table>
</emu-table>
<emu-note>
<p>Additional entries in <emu-xref href="#table-additional-well-known-intrinsic-objects"></emu-xref>.</p>
</emu-note>
</emu-clause>
</emu-clause>
</emu-clause>
</emu-clause>
<emu-clause id="sec-ecmascript-language-expressions" number="13">
<h1>ECMAScript Language: Expressions</h1>
<emu-clause id="sec-left-hand-side-expressions" number="3">
<h1>Left-Hand-Side Expressions</h1>
<h2>Syntax</h2>
<emu-clause id="sec-import-calls" number="10">
<h1>Import Calls</h1>
<emu-clause id="sec-evaluate-import-call" type="abstract operation">
<h1>
EvaluateImportCall (
_specifierExpression_: a Parse Node,
_phase_: ~source~ or ~evaluation~,
optional _optionsExpression_: a Parse Node,
): either a normal completion containing a Promise or a throw completion
</h1>
<dl class="header">
</dl>
<emu-alg>
1. Let _referrer_ be GetActiveScriptOrModule().
1. If _referrer_ is *null*, set _referrer_ to the current Realm Record.
1. Let _specifierRef_ be ? Evaluation of _specifierExpression_.
1. Let _specifier_ be ? GetValue(_specifierRef_).
1. If _optionsExpression_ is present, then
1. Let _optionsRef_ be ? Evaluation of _optionsExpression_.
1. Let _options_ be ? GetValue(_optionsRef_).
1. Else,
1. Let _options_ be *undefined*.
1. Let _promiseCapability_ be ! NewPromiseCapability(%Promise%).
1. <ins>Let _moduleRequest_ be *undefined*.</ins>
1. <ins>Let _attributesObj_ be *undefined*.</ins>
1. <ins>If _specifier_ is an Object, then</ins>
1. <ins>Let _module_ be GetModuleSourceModuleRecord(_specifier_).</ins>
1. <ins>If _module_ is not ~not-a-source~, then</ins>
1. <ins>If _options_ is not *undefined*, then</ins>
1. <ins>If _options_ is not an Object, then</ins>
1. <ins>Perform ! Call(_promiseCapability_.[[Reject]], *undefined*, « a newly created *TypeError* object »).</ins>
1. <ins>Return _promiseCapability_.[[Promise]].</ins>
1. <ins>Set _attributesObj_ to Completion(Get(_options_, *"with"*)).</ins>
1. <ins>IfAbruptRejectPromise(_attributesObj_, _promiseCapability_).</ins>
1. <ins>If _attributesObj_ is not *undefined*, then</ins>
1. <ins>Perform ! Call(_promiseCapability_.[[Reject]], *undefined*, « a newly created *TypeError* object »).</ins>
1. <ins>Return _promiseCapability_.[[Promise]].</ins>
1. <ins>If _module_.[[Realm]] is not the current Realm Record, then</ins>
1. <ins>Perform ! Call(_promiseCapability_.[[Reject]], *undefined*, « a newly created *TypeError* object »).</ins>
1. <ins>Return _promiseCapability_.[[Promise]].</ins>
1. <ins>Set _moduleRequest_ to _module_.</ins>
1. <ins>If _moduleRequest_ is *undefined*, then</ins>
1. Let _specifierString_ be Completion(ToString(_specifier_)).
1. IfAbruptRejectPromise(_specifierString_, _promiseCapability_).
1. Let _attributes_ be a new empty List.
1. If _options_ is not *undefined*, then
1. If _options_ is not an Object, then
1. Perform ! Call(_promiseCapability_.[[Reject]], *undefined*, « a newly created *TypeError* object »).
1. Return _promiseCapability_.[[Promise]].
1. Set _attributesObj_ to Completion(Get(_options_, *"with"*)).
1. IfAbruptRejectPromise(_attributesObj_, _promiseCapability_).
1. If _attributesObj_ is not *undefined*, then
1. If _attributesObj_ is not an Object, then
1. Perform ! Call(_promiseCapability_.[[Reject]], *undefined*, « a newly created *TypeError* object »).
1. Return _promiseCapability_.[[Promise]].
1. Let _entries_ be Completion(EnumerableOwnProperties(_attributesObj_, ~key+value~)).
1. IfAbruptRejectPromise(_entries_, _promiseCapability_).
1. For each element _entry_ of _entries_, do
1. Let _key_ be ! Get(_entry_, *"0"*).
1. Let _value_ be ! Get(_entry_, *"1"*).
1. If _key_ is a String, then
1. If _value_ is not a String, then
1. Perform ! Call(_promiseCapability_.[[Reject]], *undefined*, « a newly created *TypeError* object »).
1. Return _promiseCapability_.[[Promise]].
1. Append the ImportAttribute Record { [[Key]]: _key_, [[Value]]: _value_ } to _attributes_.
1. If AllImportAttributesSupported(_attributes_) is *false*, then
1. Perform ! Call(_promiseCapability_.[[Reject]], *undefined*, « a newly created *TypeError* object »).
1. Return _promiseCapability_.[[Promise]].
1. Sort _attributes_ according to the lexicographic order of their [[Key]] fields, treating the value of each such field as a sequence of UTF-16 code unit values. NOTE: This sorting is observable only in that hosts are prohibited from changing behaviour based on the order in which attributes are enumerated.
1. <del>Let _moduleRequest_ be</del><ins>Set _moduleRequest_ to</ins> a new ModuleRequest Record { [[Specifier]]: _specifierString_, [[Phase]]: _phase_, [[Attributes]]: _attributes_ }.
1. Perform HostLoadImportedModule(_referrer_, _moduleRequest_, ~empty~, _promiseCapability_).
1. Return _promiseCapability_.[[Promise]].
</emu-alg>
</emu-clause>
</emu-clause>
</emu-clause>
</emu-clause>
<emu-clause id="sec-ecmascript-language-scripts-and-modules" number="16">
<h1>ECMAScript Language: Scripts and Modules</h1>
<emu-clause id="sec-modules">
<h1>Modules</h1>
<emu-clause id="sec-module-semantics">
<h1>Module Semantics</h1>
<emu-clause id="sec-abstract-module-records">
<h1>Abstract Module Records</h1>
<emu-table id="table-abstract-methods-of-module-records" caption="Abstract Methods of Module Records" oldids="table-37">
<table>
<thead>
<tr>
<th>
Method
</th>
<th>
Purpose
</th>
</tr>
</thead>
<tr>
<td>
LoadRequestedModules( [ _hostDefined_ ] )
</td>
<td>
<p>Prepares the module for linking by recursively loading all its dependencies, and returns a promise.</p>
</td>
</tr>
<tr>
<td>
GetExportedNames([_exportStarSet_])
</td>
<td>
<p>Return a list of all names that are either directly or indirectly exported from this module.</p>
<p>LoadRequestedModules must have completed successfully prior to invoking this method.</p>
</td>
</tr>
<tr>
<td>
ResolveExport(_exportName_ [, _resolveSet_])
</td>
<td>
<p>Return the binding of a name exported by this module. Bindings are represented by a <dfn id="resolvedbinding-record" variants="ResolvedBinding Records">ResolvedBinding Record</dfn>, of the form { [[Module]]: Module Record, [[BindingName]]: String | ~namespace~ }. If the export is a Module Namespace Object without a direct binding in any module, [[BindingName]] will be set to ~namespace~. Return *null* if the name cannot be resolved, or ~ambiguous~ if multiple bindings were found.</p>
<p>Each time this operation is called with a specific _exportName_, _resolveSet_ pair as arguments it must return the same result.</p>
<p>LoadRequestedModules must have completed successfully prior to invoking this method.</p>
</td>
</tr>
<tr>
<td>
Link()
</td>
<td>
<p>Prepare the module for evaluation by transitively resolving all module dependencies and creating a Module Environment Record.</p>
<p>LoadRequestedModules must have completed successfully prior to invoking this method.</p>
</td>
</tr>
<tr>
<td>
Evaluate()
</td>
<td>
<p>Returns a promise for the evaluation of this module and its dependencies, resolving on successful evaluation or if it has already been evaluated successfully, and rejecting for an evaluation error or if it has already been evaluated unsuccessfully. If the promise is rejected, hosts are expected to handle the promise rejection and rethrow the evaluation error.</p>
<p>Link must have completed successfully prior to invoking this method.</p>
</td>
</tr>
<tr>
<td>
GetModuleSource()
</td>
<td>
<p>It returns either a normal completion containing the Module Source Object corresponding to this source Module Record's source phase (<emu-xref href="#sec-module-source-objects"></emu-xref>), or a throw completion.</p>
<p>When called multiple times on the same Module Record, if GetModuleSource() returns a normal completion it must always return a normal completion containing the same object.</p>
<p>The returned object should have a [[Prototype]] internal slot whose value is %AbstractModuleSource.prototype%.</p>
<p>For Module Records that do not have a source representation, GetModuleSource() must always return a throw completion whose [[Value]] is a *SyntaxError*.</p>
</td>
</tr>
<tr>
<td>
<ins>ModuleSourcesEqual(_otherModuleRecord_)</ins>
</td>
<td>
<p><ins>For Module Records that return a normal completion for GetModuleSource(), allows defining a source equality operation for host registry checks.</ins></p>
<p><ins>For Module Records that do not have a source representation, ModuleSourcesEqual() is never called.</ins></p>
<p><ins>This concrete method is not currently called from within ECMA-262 but it is defined for hosts in order to ensure well-defined module source equality.</ins></p>
</td>
</tr>
<tr>
<td>
<ins>GetModuleSourceKind()</ins>
</td>
<td>
<p><ins>For Module Records that return a normal completion for GetModuleSource(), returns a constant String for each concrete module record that exposes a source representation through `GetModuleSource()`, to be used as the return value of the %Symbol.toStringTag% getter on %AbstractModuleSource%.</ins></p>
<p><ins>For Module Records that do not have a source representation, GetModuleSourceKind() is never called.</ins></p>
</td>
</tr>
</table>
</emu-table>
</emu-clause>
<emu-clause id="sec-source-text-module-records">