
Intl.NumberFormat is meant to format both Number and BigInt types. To prepare for formatting BigInt types, this generalizes our NumberFormat implementation to operate on Value instances rather than doubles. All arithmetic is moved to static helpers that can now be updated with BigInt semantics.
359 lines
15 KiB
C++
359 lines
15 KiB
C++
/*
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* Copyright (c) 2022, Tim Flynn <trflynn89@pm.me>
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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/AbstractOperations.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/NumberFormat.h>
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#include <LibJS/Runtime/Intl/NumberFormatConstructor.h>
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#include <LibJS/Runtime/Intl/RelativeTimeFormat.h>
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#include <LibUnicode/NumberFormat.h>
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namespace JS::Intl {
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// 17 RelativeTimeFormat Objects, https://tc39.es/ecma402/#relativetimeformat-objects
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RelativeTimeFormat::RelativeTimeFormat(Object& prototype)
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: Object(prototype)
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{
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}
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void RelativeTimeFormat::visit_edges(Cell::Visitor& visitor)
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{
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Base::visit_edges(visitor);
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if (m_number_format)
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visitor.visit(m_number_format);
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}
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void RelativeTimeFormat::set_numeric(StringView numeric)
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{
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if (numeric == "always"sv) {
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m_numeric = Numeric::Always;
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} else if (numeric == "auto"sv) {
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m_numeric = Numeric::Auto;
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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 RelativeTimeFormat::numeric_string() const
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{
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switch (m_numeric) {
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case Numeric::Always:
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return "always"sv;
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case Numeric::Auto:
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return "auto"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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// 17.1.1 InitializeRelativeTimeFormat ( relativeTimeFormat, locales, options ), https://tc39.es/ecma402/#sec-InitializeRelativeTimeFormat
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ThrowCompletionOr<RelativeTimeFormat*> initialize_relative_time_format(GlobalObject& global_object, RelativeTimeFormat& relative_time_format, Value locales_value, Value options_value)
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{
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auto& vm = global_object.vm();
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// 1. Let requestedLocales be ? CanonicalizeLocaleList(locales).
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auto requested_locales = TRY(canonicalize_locale_list(global_object, locales_value));
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// 2. Set options to ? CoerceOptionsToObject(options).
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auto* options = TRY(coerce_options_to_object(global_object, options_value));
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// 3. Let opt be a new Record.
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LocaleOptions opt {};
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// 4. Let matcher be ? GetOption(options, "localeMatcher", "string", « "lookup", "best fit" », "best fit").
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auto matcher = TRY(get_option(global_object, *options, vm.names.localeMatcher, Value::Type::String, AK::Array { "lookup"sv, "best fit"sv }, "best fit"sv));
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// 5. Set opt.[[LocaleMatcher]] to matcher.
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opt.locale_matcher = matcher;
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// 6. Let numberingSystem be ? GetOption(options, "numberingSystem", "string", undefined, undefined).
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auto numbering_system = TRY(get_option(global_object, *options, vm.names.numberingSystem, Value::Type::String, {}, Empty {}));
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// 7. If numberingSystem is not undefined, then
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if (!numbering_system.is_undefined()) {
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// a. If numberingSystem does not match the Unicode Locale Identifier type nonterminal, throw a RangeError exception.
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if (!Unicode::is_type_identifier(numbering_system.as_string().string()))
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return vm.throw_completion<RangeError>(global_object, ErrorType::OptionIsNotValidValue, numbering_system, "numberingSystem"sv);
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// 8. Set opt.[[nu]] to numberingSystem.
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opt.nu = numbering_system.as_string().string();
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}
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// 9. Let localeData be %RelativeTimeFormat%.[[LocaleData]].
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// 10. Let r be ResolveLocale(%RelativeTimeFormat%.[[AvailableLocales]], requestedLocales, opt, %RelativeTimeFormat%.[[RelevantExtensionKeys]], localeData).
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auto result = resolve_locale(requested_locales, opt, RelativeTimeFormat::relevant_extension_keys());
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// 11. Let locale be r.[[locale]].
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auto locale = move(result.locale);
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// 12. Set relativeTimeFormat.[[Locale]] to locale.
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relative_time_format.set_locale(locale);
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// 13. Set relativeTimeFormat.[[DataLocale]] to r.[[dataLocale]].
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relative_time_format.set_data_locale(move(result.data_locale));
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// 14. Set relativeTimeFormat.[[NumberingSystem]] to r.[[nu]].
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if (result.nu.has_value())
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relative_time_format.set_numbering_system(result.nu.release_value());
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// 15. Let style be ? GetOption(options, "style", "string", « "long", "short", "narrow" », "long").
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auto style = TRY(get_option(global_object, *options, vm.names.style, Value::Type::String, { "long"sv, "short"sv, "narrow"sv }, "long"sv));
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// 16. Set relativeTimeFormat.[[Style]] to style.
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relative_time_format.set_style(style.as_string().string());
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// 17. Let numeric be ? GetOption(options, "numeric", "string", « "always", "auto" », "always").
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auto numeric = TRY(get_option(global_object, *options, vm.names.numeric, Value::Type::String, { "always"sv, "auto"sv }, "always"sv));
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// 18. Set relativeTimeFormat.[[Numeric]] to numeric.
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relative_time_format.set_numeric(numeric.as_string().string());
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// 19. Let relativeTimeFormat.[[NumberFormat]] be ! Construct(%NumberFormat%, « locale »).
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auto* number_format = MUST(construct(global_object, *global_object.intl_number_format_constructor(), js_string(vm, locale)));
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relative_time_format.set_number_format(static_cast<NumberFormat*>(number_format));
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// 20. Let relativeTimeFormat.[[PluralRules]] be ! Construct(%PluralRules%, « locale »).
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// FIXME: We do not yet support Intl.PluralRules.
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// 21. Return relativeTimeFormat.
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return &relative_time_format;
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}
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// 17.1.2 SingularRelativeTimeUnit ( unit ), https://tc39.es/ecma402/#sec-singularrelativetimeunit
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ThrowCompletionOr<Unicode::TimeUnit> singular_relative_time_unit(GlobalObject& global_object, StringView unit)
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{
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auto& vm = global_object.vm();
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// 1. Assert: Type(unit) is String.
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// 2. If unit is "seconds", return "second".
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if (unit == "seconds"sv)
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return Unicode::TimeUnit::Second;
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// 3. If unit is "minutes", return "minute".
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if (unit == "minutes"sv)
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return Unicode::TimeUnit::Minute;
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// 4. If unit is "hours", return "hour".
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if (unit == "hours"sv)
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return Unicode::TimeUnit::Hour;
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// 5. If unit is "days", return "day".
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if (unit == "days"sv)
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return Unicode::TimeUnit::Day;
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// 6. If unit is "weeks", return "week".
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if (unit == "weeks"sv)
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return Unicode::TimeUnit::Week;
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// 7. If unit is "months", return "month".
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if (unit == "months"sv)
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return Unicode::TimeUnit::Month;
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// 8. If unit is "quarters", return "quarter".
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if (unit == "quarters"sv)
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return Unicode::TimeUnit::Quarter;
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// 9. If unit is "years", return "year".
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if (unit == "years"sv)
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return Unicode::TimeUnit::Year;
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// 10. If unit is not one of "second", "minute", "hour", "day", "week", "month", "quarter", or "year", throw a RangeError exception.
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// 11. Return unit.
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if (auto time_unit = Unicode::time_unit_from_string(unit); time_unit.has_value())
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return *time_unit;
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return vm.throw_completion<RangeError>(global_object, ErrorType::IntlInvalidUnit, unit);
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}
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// 17.1.3 PartitionRelativeTimePattern ( relativeTimeFormat, value, unit ), https://tc39.es/ecma402/#sec-PartitionRelativeTimePattern
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ThrowCompletionOr<Vector<PatternPartitionWithUnit>> partition_relative_time_pattern(GlobalObject& global_object, RelativeTimeFormat& relative_time_format, double value, StringView unit)
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{
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auto& vm = global_object.vm();
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// 1. Assert: relativeTimeFormat has an [[InitializedRelativeTimeFormat]] internal slot.
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// 2. Assert: Type(value) is Number.
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// 3. Assert: Type(unit) is String.
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// 4. If value is NaN, +∞𝔽, or -∞𝔽, throw a RangeError exception.
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if (!Value(value).is_finite_number())
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return vm.throw_completion<RangeError>(global_object, ErrorType::IntlNumberIsNaNOrInfinity);
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// 5. Let unit be ? SingularRelativeTimeUnit(unit).
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auto time_unit = TRY(singular_relative_time_unit(global_object, unit));
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// 6. Let localeData be %RelativeTimeFormat%.[[LocaleData]].
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// 7. Let dataLocale be relativeTimeFormat.[[DataLocale]].
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auto const& data_locale = relative_time_format.data_locale();
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// 8. Let fields be localeData.[[<dataLocale>]].
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// 9. Let style be relativeTimeFormat.[[Style]].
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auto style = relative_time_format.style();
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// NOTE: The next steps form a "key" based on combining various formatting options into a string,
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// then filtering the large set of locale data down to the pattern we are looking for. Instead,
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// LibUnicode expects the individual options as enumeration values, and returns the couple of
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// patterns that match those options.
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auto find_patterns_for_tense_or_number = [&](StringView tense_or_number) {
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// 10. If style is equal to "short", then
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// a. Let entry be the string-concatenation of unit and "-short".
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// 11. Else if style is equal to "narrow", then
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// a. Let entry be the string-concatenation of unit and "-narrow".
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// 12. Else,
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// a. Let entry be unit.
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auto patterns = Unicode::get_relative_time_format_patterns(data_locale, time_unit, tense_or_number, style);
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// 13. If fields doesn't have a field [[<entry>]], then
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if (patterns.is_empty()) {
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// a. Let entry be unit.
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// NOTE: In the CLDR, the lack of "short" or "narrow" in the key implies "long".
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patterns = Unicode::get_relative_time_format_patterns(data_locale, time_unit, tense_or_number, Unicode::Style::Long);
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}
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// 14. Let patterns be fields.[[<entry>]].
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return patterns;
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};
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// 15. Let numeric be relativeTimeFormat.[[Numeric]].
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// 16. If numeric is equal to "auto", then
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if (relative_time_format.numeric() == RelativeTimeFormat::Numeric::Auto) {
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// a. Let valueString be ToString(value).
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auto value_string = MUST(Value(value).to_string(global_object));
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// b. If patterns has a field [[<valueString>]], then
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if (auto patterns = find_patterns_for_tense_or_number(value_string); !patterns.is_empty()) {
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VERIFY(patterns.size() == 1);
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// i. Let result be patterns.[[<valueString>]].
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auto result = patterns[0].pattern.to_string();
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// ii. Return a List containing the Record { [[Type]]: "literal", [[Value]]: result }.
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return Vector<PatternPartitionWithUnit> { { "literal"sv, move(result) } };
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}
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}
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// 17. If value is -0𝔽 or if value is less than 0, then
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StringView tense;
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if (Value(value).is_negative_zero() || (value < 0)) {
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// a. Let tl be "past".
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tense = "past"sv;
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// FIXME: The spec does not say to do this, but nothing makes sense after this with a negative value.
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value = fabs(value);
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}
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// 18. Else,
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else {
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// a. Let tl be "future".
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tense = "future"sv;
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}
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// 19. Let po be patterns.[[<tl>]].
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auto patterns = find_patterns_for_tense_or_number(tense);
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// 20. Let fv be ! PartitionNumberPattern(relativeTimeFormat.[[NumberFormat]], value).
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auto value_partitions = partition_number_pattern(global_object, relative_time_format.number_format(), Value(value));
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// 21. Let pr be ! ResolvePlural(relativeTimeFormat.[[PluralRules]], value).
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// 22. Let pattern be po.[[<pr>]].
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// FIXME: Use ResolvePlural when Intl.PluralRules is implemented.
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auto pattern = Unicode::select_pattern_with_plurality(patterns, value);
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if (!pattern.has_value())
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return Vector<PatternPartitionWithUnit> {};
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// 23. Return ! MakePartsList(pattern, unit, fv).
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return make_parts_list(pattern->pattern, Unicode::time_unit_to_string(time_unit), move(value_partitions));
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}
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// 17.1.4 MakePartsList ( pattern, unit, parts ), https://tc39.es/ecma402/#sec-makepartslist
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Vector<PatternPartitionWithUnit> make_parts_list(StringView pattern, StringView unit, Vector<PatternPartition> parts)
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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<PatternPartitionWithUnit> result;
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// 3. For each Record { [[Type]], [[Value]] } patternPart in patternParts, do
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for (auto& pattern_part : pattern_parts) {
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// a. If patternPart.[[Type]] is "literal", then
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if (pattern_part.type == "literal"sv) {
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// i. Append Record { [[Type]]: "literal", [[Value]]: patternPart.[[Value]], [[Unit]]: empty } to result.
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result.empend("literal"sv, move(pattern_part.value));
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}
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// b. Else,
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else {
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// i. Assert: patternPart.[[Type]] is "0".
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VERIFY(pattern_part.type == "0"sv);
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// ii. For each Record { [[Type]], [[Value]] } part in parts, do
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for (auto& part : parts) {
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// 1. Append Record { [[Type]]: part.[[Type]], [[Value]]: part.[[Value]], [[Unit]]: unit } to result.
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result.empend(part.type, move(part.value), unit);
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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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// 17.1.5 FormatRelativeTime ( relativeTimeFormat, value, unit ), https://tc39.es/ecma402/#sec-FormatRelativeTime
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ThrowCompletionOr<String> format_relative_time(GlobalObject& global_object, RelativeTimeFormat& relative_time_format, double value, StringView unit)
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{
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// 1. Let parts be ? PartitionRelativeTimePattern(relativeTimeFormat, value, unit).
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auto parts = TRY(partition_relative_time_pattern(global_object, relative_time_format, value, unit));
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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]], [[Unit]] } 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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// 17.1.6 FormatRelativeTimeToParts ( relativeTimeFormat, value, unit ), https://tc39.es/ecma402/#sec-FormatRelativeTimeToParts
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ThrowCompletionOr<Array*> format_relative_time_to_parts(GlobalObject& global_object, RelativeTimeFormat& relative_time_format, double value, StringView unit)
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{
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auto& vm = global_object.vm();
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// 1. Let parts be ? PartitionRelativeTimePattern(relativeTimeFormat, value, unit).
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auto parts = TRY(partition_relative_time_pattern(global_object, relative_time_format, value, unit));
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// 2. Let result be ArrayCreate(0).
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auto* result = MUST(Array::create(global_object, 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]], [[Unit]] } 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(global_object, 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. If part.[[Unit]] is not empty, then
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if (!part.unit.is_empty()) {
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// i. Perform ! CreateDataPropertyOrThrow(O, "unit", part.[[Unit]]).
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MUST(object->create_data_property_or_throw(vm.names.unit, js_string(vm, part.unit)));
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}
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// e. Perform ! CreateDataPropertyOrThrow(result, ! ToString(n), O).
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MUST(result->create_data_property_or_throw(n, object));
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// f. 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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}
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