
- Prefer VM::current_realm() over GlobalObject::associated_realm() - Prefer VM::heap() over GlobalObject::heap() - Prefer Cell::vm() over Cell::global_object() - Prefer Wrapper::vm() over Wrapper::global_object() - Inline Realm::global_object() calls used to access intrinsics as they will later perform a direct lookup without going through the global object
285 lines
9.5 KiB
C++
285 lines
9.5 KiB
C++
/*
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* Copyright (c) 2021-2022, Tim Flynn <trflynn89@serenityos.org>
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#include <AK/StringBuilder.h>
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#include <LibJS/Runtime/Array.h>
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#include <LibJS/Runtime/GlobalObject.h>
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#include <LibJS/Runtime/Intl/ListFormat.h>
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#include <LibJS/Runtime/IteratorOperations.h>
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namespace JS::Intl {
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// 13 ListFormat Objects, https://tc39.es/ecma402/#listformat-objects
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ListFormat::ListFormat(Object& prototype)
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: Object(prototype)
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{
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}
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void ListFormat::set_type(StringView type)
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{
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if (type == "conjunction"sv) {
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m_type = Type::Conjunction;
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} else if (type == "disjunction"sv) {
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m_type = Type::Disjunction;
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} else if (type == "unit"sv) {
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m_type = Type::Unit;
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} else {
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VERIFY_NOT_REACHED();
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}
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}
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StringView ListFormat::type_string() const
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{
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switch (m_type) {
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case Type::Conjunction:
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return "conjunction"sv;
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case Type::Disjunction:
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return "disjunction"sv;
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case Type::Unit:
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return "unit"sv;
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default:
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VERIFY_NOT_REACHED();
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}
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}
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// 13.5.1 DeconstructPattern ( pattern, placeables ), https://tc39.es/ecma402/#sec-deconstructpattern
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Vector<PatternPartition> deconstruct_pattern(StringView pattern, Placeables placeables)
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{
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// 1. Let patternParts be ! PartitionPattern(pattern).
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auto pattern_parts = partition_pattern(pattern);
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// 2. Let result be a new empty List.
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Vector<PatternPartition> result {};
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// 3. For each Record { [[Type]], [[Value]] } patternPart of patternParts, do
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for (auto& pattern_part : pattern_parts) {
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// a. Let part be patternPart.[[Type]].
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auto part = pattern_part.type;
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// b. If part is "literal", then
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if (part == "literal"sv) {
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// i. Append Record { [[Type]]: "literal", [[Value]]: patternPart.[[Value]] } to result.
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result.append({ part, move(pattern_part.value) });
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}
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// c. Else,
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else {
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// i. Assert: placeables has a field [[<part>]].
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// ii. Let subst be placeables.[[<part>]].
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auto subst = placeables.get(part);
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VERIFY(subst.has_value());
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subst.release_value().visit(
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// iii. If Type(subst) is List, then
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[&](Vector<PatternPartition>& partition) {
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// 1. For each element s of subst, do
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for (auto& element : partition) {
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// a. Append s to result.
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result.append(move(element));
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}
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},
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// iv. Else,
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[&](PatternPartition& partition) {
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// 1. Append subst to result.
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result.append(move(partition));
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});
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}
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}
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// 4. Return result.
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return result;
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}
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// 13.5.2 CreatePartsFromList ( listFormat, list ), https://tc39.es/ecma402/#sec-createpartsfromlist
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Vector<PatternPartition> create_parts_from_list(ListFormat const& list_format, Vector<String> const& list)
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{
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auto list_patterns = Unicode::get_locale_list_patterns(list_format.locale(), list_format.type_string(), list_format.style());
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if (!list_patterns.has_value())
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return {};
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// 1. Let size be the number of elements of list.
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auto size = list.size();
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// 2. If size is 0, then
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if (size == 0) {
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// a. Return a new empty List.
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return {};
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}
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// 3. If size is 2, then
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if (size == 2) {
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// a. Let n be an index into listFormat.[[Templates]] based on listFormat.[[Locale]], list[0], and list[1].
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// b. Let pattern be listFormat.[[Templates]][n].[[Pair]].
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auto pattern = list_patterns->pair;
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// c. Let first be a new Record { [[Type]]: "element", [[Value]]: list[0] }.
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PatternPartition first { "element"sv, list[0] };
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// d. Let second be a new Record { [[Type]]: "element", [[Value]]: list[1] }.
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PatternPartition second { "element"sv, list[1] };
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// e. Let placeables be a new Record { [[0]]: first, [[1]]: second }.
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Placeables placeables;
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placeables.set("0"sv, move(first));
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placeables.set("1"sv, move(second));
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// f. Return ! DeconstructPattern(pattern, placeables).
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return deconstruct_pattern(pattern, move(placeables));
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}
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// 4. Let last be a new Record { [[Type]]: "element", [[Value]]: list[size - 1] }.
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PatternPartition last { "element"sv, list[size - 1] };
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// 5. Let parts be « last ».
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Vector<PatternPartition> parts { move(last) };
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// The spec does not say to do this, but because size_t is unsigned, we need to take care not to wrap around 0.
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if (size == 1)
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return parts;
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// 6. Let i be size - 2.
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size_t i = size - 2;
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// 7. Repeat, while i ≥ 0,
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do {
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// a. Let head be a new Record { [[Type]]: "element", [[Value]]: list[i] }.
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PatternPartition head { "element"sv, list[i] };
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// b. Let n be an implementation-defined index into listFormat.[[Templates]] based on listFormat.[[Locale]], head, and parts.
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StringView pattern;
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// c. If i is 0, then
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if (i == 0) {
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// i. Let pattern be listFormat.[[Templates]][n].[[Start]].
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pattern = list_patterns->start;
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}
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// d. Else if i is less than size - 2, then
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else if (i < (size - 2)) {
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// i. Let pattern be listFormat.[[Templates]][n].[[Middle]].
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pattern = list_patterns->middle;
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}
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// e. Else,
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else {
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// i. Let pattern be listFormat.[[Templates]][n].[[End]].
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pattern = list_patterns->end;
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}
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// f. Let placeables be a new Record { [[0]]: head, [[1]]: parts }.
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Placeables placeables;
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placeables.set("0"sv, move(head));
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placeables.set("1"sv, move(parts));
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// g. Set parts to ! DeconstructPattern(pattern, placeables).
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parts = deconstruct_pattern(pattern, move(placeables));
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// h. Decrement i by 1.
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} while (i-- != 0);
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// 8. Return parts.
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return parts;
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}
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// 13.5.3 FormatList ( listFormat, list ), https://tc39.es/ecma402/#sec-formatlist
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String format_list(ListFormat const& list_format, Vector<String> const& list)
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{
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// 1. Let parts be ! CreatePartsFromList(listFormat, list).
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auto parts = create_parts_from_list(list_format, list);
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// 2. Let result be an empty String.
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StringBuilder result;
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// 3. For each Record { [[Type]], [[Value]] } part in parts, do
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for (auto& part : parts) {
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// a. Set result to the string-concatenation of result and part.[[Value]].
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result.append(move(part.value));
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}
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// 4. Return result.
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return result.build();
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}
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// 13.5.4 FormatListToParts ( listFormat, list ), https://tc39.es/ecma402/#sec-formatlisttoparts
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Array* format_list_to_parts(VM& vm, ListFormat const& list_format, Vector<String> const& list)
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{
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auto& realm = *vm.current_realm();
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// 1. Let parts be ! CreatePartsFromList(listFormat, list).
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auto parts = create_parts_from_list(list_format, list);
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// 2. Let result be ! ArrayCreate(0).
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auto* result = MUST(Array::create(realm, 0));
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// 3. Let n be 0.
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size_t n = 0;
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// 4. For each Record { [[Type]], [[Value]] } part in parts, do
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for (auto& part : parts) {
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// a. Let O be OrdinaryObjectCreate(%Object.prototype%).
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auto* object = Object::create(realm, realm.global_object().object_prototype());
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// b. Perform ! CreateDataPropertyOrThrow(O, "type", part.[[Type]]).
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MUST(object->create_data_property_or_throw(vm.names.type, js_string(vm, part.type)));
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// c. Perform ! CreateDataPropertyOrThrow(O, "value", part.[[Value]]).
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MUST(object->create_data_property_or_throw(vm.names.value, js_string(vm, move(part.value))));
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// d. Perform ! CreateDataPropertyOrThrow(result, ! ToString(n), O).
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MUST(result->create_data_property_or_throw(n, object));
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// e. Increment n by 1.
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++n;
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}
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// 5. Return result.
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return result;
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}
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// 13.5.5 StringListFromIterable ( iterable ), https://tc39.es/ecma402/#sec-createstringlistfromiterable
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ThrowCompletionOr<Vector<String>> string_list_from_iterable(VM& vm, Value iterable)
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{
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// 1. If iterable is undefined, then
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if (iterable.is_undefined()) {
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// a. Return a new empty List.
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return Vector<String> {};
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}
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// 2. Let iteratorRecord be ? GetIterator(iterable).
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auto iterator_record = TRY(get_iterator(vm, iterable));
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// 3. Let list be a new empty List.
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Vector<String> list;
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// 4. Let next be true.
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Object* next = nullptr;
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// 5. Repeat, while next is not false,
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do {
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// a. Set next to ? IteratorStep(iteratorRecord).
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next = TRY(iterator_step(vm, iterator_record));
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// b. If next is not false, then
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if (next != nullptr) {
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// i. Let nextValue be ? IteratorValue(next).
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auto next_value = TRY(iterator_value(vm, *next));
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// ii. If Type(nextValue) is not String, then
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if (!next_value.is_string()) {
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// 1. Let error be ThrowCompletion(a newly created TypeError object).
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auto error = vm.throw_completion<TypeError>(ErrorType::NotAString, next_value);
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// 2. Return ? IteratorClose(iteratorRecord, error).
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return iterator_close(vm, iterator_record, move(error));
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}
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// iii. Append nextValue to the end of the List list.
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list.append(next_value.as_string().string());
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}
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} while (next != nullptr);
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// 6. Return list.
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return list;
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}
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}
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