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Neglected to do this after the Temporal rewrite. This lets us eliminate the duplicated GetUTCEpochNanoseconds definition in Temporal.
347 lines
17 KiB
C++
347 lines
17 KiB
C++
/*
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* Copyright (c) 2021-2023, Linus Groh <linusg@serenityos.org>
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* Copyright (c) 2024, Tim Flynn <trflynn89@ladybird.org>
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#include <LibJS/Runtime/AbstractOperations.h>
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#include <LibJS/Runtime/Date.h>
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#include <LibJS/Runtime/Intrinsics.h>
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#include <LibJS/Runtime/Realm.h>
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#include <LibJS/Runtime/Temporal/Calendar.h>
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#include <LibJS/Runtime/Temporal/Duration.h>
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#include <LibJS/Runtime/Temporal/PlainDateTime.h>
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#include <LibJS/Runtime/Temporal/PlainTime.h>
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#include <LibJS/Runtime/Temporal/PlainYearMonth.h>
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#include <LibJS/Runtime/Temporal/PlainYearMonthConstructor.h>
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#include <LibJS/Runtime/VM.h>
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namespace JS::Temporal {
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GC_DEFINE_ALLOCATOR(PlainYearMonth);
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// 9 Temporal.PlainYearMonth Objects, https://tc39.es/proposal-temporal/#sec-temporal-plainyearmonth-objects
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PlainYearMonth::PlainYearMonth(ISODate iso_date, String calendar, Object& prototype)
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: Object(ConstructWithPrototypeTag::Tag, prototype)
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, m_iso_date(iso_date)
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, m_calendar(move(calendar))
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{
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}
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// 9.5.2 ToTemporalYearMonth ( item [ , options ] ), https://tc39.es/proposal-temporal/#sec-temporal-totemporalyearmonth
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ThrowCompletionOr<GC::Ref<PlainYearMonth>> to_temporal_year_month(VM& vm, Value item, Value options)
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{
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// 1. If options is not present, set options to undefined.
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// 2. If item is an Object, then
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if (item.is_object()) {
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auto const& object = item.as_object();
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// a. If item has an [[InitializedTemporalYearMonth]] internal slot, then
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if (is<PlainYearMonth>(object)) {
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auto const& plain_year_month = static_cast<PlainYearMonth const&>(object);
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// i. Let resolvedOptions be ? GetOptionsObject(options).
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auto resolved_options = TRY(get_options_object(vm, options));
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// ii. Perform ? GetTemporalOverflowOption(resolvedOptions).
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TRY(get_temporal_overflow_option(vm, resolved_options));
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// iii. Return ! CreateTemporalYearMonth(item.[[ISODate]], item.[[Calendar]]).
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return MUST(create_temporal_year_month(vm, plain_year_month.iso_date(), plain_year_month.calendar()));
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}
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// b. Let calendar be ? GetTemporalCalendarIdentifierWithISODefault(item).
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auto calendar = TRY(get_temporal_calendar_identifier_with_iso_default(vm, object));
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// c. Let fields be ? PrepareCalendarFields(calendar, item, « YEAR, MONTH, MONTH-CODE », «», «»).
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auto fields = TRY(prepare_calendar_fields(vm, calendar, object, { { CalendarField::Year, CalendarField::Month, CalendarField::MonthCode } }, {}, CalendarFieldList {}));
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// d. Let resolvedOptions be ? GetOptionsObject(options).
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auto resolved_options = TRY(get_options_object(vm, options));
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// e. Let overflow be ? GetTemporalOverflowOption(resolvedOptions).
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auto overflow = TRY(get_temporal_overflow_option(vm, resolved_options));
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// f. Let isoDate be ? CalendarYearMonthFromFields(calendar, fields, overflow).
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auto iso_date = TRY(calendar_year_month_from_fields(vm, calendar, fields, overflow));
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// g. Return ! CreateTemporalYearMonth(isoDate, calendar).
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return MUST(create_temporal_year_month(vm, iso_date, move(calendar)));
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}
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// 3. If item is not a String, throw a TypeError exception.
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if (!item.is_string())
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return vm.throw_completion<TypeError>(ErrorType::TemporalInvalidPlainYearMonth);
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// 4. Let result be ? ParseISODateTime(item, « TemporalYearMonthString »).
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auto parse_result = TRY(parse_iso_date_time(vm, item.as_string().utf8_string_view(), { { Production::TemporalYearMonthString } }));
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// 5. Let calendar be result.[[Calendar]].
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// 6. If calendar is empty, set calendar to "iso8601".
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auto calendar = parse_result.calendar.value_or("iso8601"_string);
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// 7. Set calendar to ? CanonicalizeCalendar(calendar).
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calendar = TRY(canonicalize_calendar(vm, calendar));
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// 8. Let resolvedOptions be ? GetOptionsObject(options).
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auto resolved_options = TRY(get_options_object(vm, options));
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// 9. Perform ? GetTemporalOverflowOption(resolvedOptions).
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TRY(get_temporal_overflow_option(vm, resolved_options));
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// 10. Let isoDate be CreateISODateRecord(result.[[Year]], result.[[Month]], result.[[Day]]).
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auto iso_date = create_iso_date_record(*parse_result.year, parse_result.month, parse_result.day);
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// 11. If ISOYearMonthWithinLimits(isoDate) is false, throw a RangeError exception.
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if (!iso_year_month_within_limits(iso_date))
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return vm.throw_completion<RangeError>(ErrorType::TemporalInvalidPlainYearMonth);
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// 12. Set result to ISODateToFields(calendar, isoDate, YEAR-MONTH).
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auto result = iso_date_to_fields(calendar, iso_date, DateType::YearMonth);
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// 13. NOTE: The following operation is called with CONSTRAIN regardless of the value of overflow, in order for the
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// calendar to store a canonical value in the [[Day]] field of the [[ISODate]] internal slot of the result.
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// 14. Set isoDate to ? CalendarYearMonthFromFields(calendar, result, CONSTRAIN).
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iso_date = TRY(calendar_year_month_from_fields(vm, calendar, result, Overflow::Constrain));
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// 15. Return ! CreateTemporalYearMonth(isoDate, calendar).
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return MUST(create_temporal_year_month(vm, iso_date, move(calendar)));
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}
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// 9.5.3 ISOYearMonthWithinLimits ( isoDate ), https://tc39.es/proposal-temporal/#sec-temporal-isoyearmonthwithinlimits
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bool iso_year_month_within_limits(ISODate iso_date)
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{
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// 1. If isoDate.[[Year]] < -271821 or isoDate.[[Year]] > 275760, then
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if (iso_date.year < -271821 || iso_date.year > 275760) {
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// a. Return false.
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return false;
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}
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// 2. If isoDate.[[Year]] = -271821 and isoDate.[[Month]] < 4, then
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if (iso_date.year == -271821 && iso_date.month < 4) {
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// a. Return false.
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return false;
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}
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// 3. If isoDate.[[Year]] = 275760 and isoDate.[[Month]] > 9, then
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if (iso_date.year == 275760 && iso_date.month > 9) {
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// a. Return false.
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return false;
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}
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// 4. Return true.
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return true;
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}
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// 9.5.4 BalanceISOYearMonth ( year, month ), https://tc39.es/proposal-temporal/#sec-temporal-balanceisoyearmonth
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ISOYearMonth balance_iso_year_month(double year, double month)
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{
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// 1. Set year to year + floor((month - 1) / 12).
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year += floor((month - 1.0) / 12.0);
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// 2. Set month to ((month - 1) modulo 12) + 1.
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month = modulo(month - 1, 12.0) + 1.0;
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// 3. Return ISO Year-Month Record { [[Year]]: year, [[Month]]: month }.
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return { .year = static_cast<i32>(year), .month = static_cast<u8>(month) };
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}
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// 9.5.5 CreateTemporalYearMonth ( isoDate, calendar [ , newTarget ] ), https://tc39.es/proposal-temporal/#sec-temporal-createtemporalyearmonth
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ThrowCompletionOr<GC::Ref<PlainYearMonth>> create_temporal_year_month(VM& vm, ISODate iso_date, String calendar, GC::Ptr<FunctionObject> new_target)
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{
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auto& realm = *vm.current_realm();
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// 1. If ISOYearMonthWithinLimits(isoDate) is false, throw a RangeError exception.
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if (!iso_year_month_within_limits(iso_date))
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return vm.throw_completion<RangeError>(ErrorType::TemporalInvalidPlainYearMonth);
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// 2. If newTarget is not present, set newTarget to %Temporal.PlainYearMonth%.
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if (!new_target)
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new_target = realm.intrinsics().temporal_plain_year_month_constructor();
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// 3. Let object be ? OrdinaryCreateFromConstructor(newTarget, "%Temporal.PlainYearMonth.prototype%", « [[InitializedTemporalYearMonth]], [[ISODate]], [[Calendar]] »).
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// 4. Set object.[[ISODate]] to isoDate.
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// 5. Set object.[[Calendar]] to calendar.
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auto object = TRY(ordinary_create_from_constructor<PlainYearMonth>(vm, *new_target, &Intrinsics::temporal_plain_year_month_prototype, iso_date, move(calendar)));
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// 6. Return object.
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return object;
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}
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// 9.5.6 TemporalYearMonthToString ( yearMonth, showCalendar ), https://tc39.es/proposal-temporal/#sec-temporal-temporalyearmonthtostring
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String temporal_year_month_to_string(PlainYearMonth const& year_month, ShowCalendar show_calendar)
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{
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// 1. Let year be PadISOYear(yearMonth.[[ISODate]].[[Year]]).
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auto year = pad_iso_year(year_month.iso_date().year);
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// 2. Let month be ToZeroPaddedDecimalString(yearMonth.[[ISODate]].[[Month]], 2).
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// 3. Let result be the string-concatenation of year, the code unit 0x002D (HYPHEN-MINUS), and month.
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auto result = MUST(String::formatted("{}-{:02}", year, year_month.iso_date().month));
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// 4. If showCalendar is one of always or critical, or if yearMonth.[[Calendar]] is not "iso8601", then
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if (show_calendar == ShowCalendar::Always || show_calendar == ShowCalendar::Critical || year_month.calendar() != "iso8601"sv) {
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// a. Let day be ToZeroPaddedDecimalString(yearMonth.[[ISODate]].[[Day]], 2).
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// b. Set result to the string-concatenation of result, the code unit 0x002D (HYPHEN-MINUS), and day.
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result = MUST(String::formatted("{}-{:02}", result, year_month.iso_date().day));
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}
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// 5. Let calendarString be FormatCalendarAnnotation(yearMonth.[[Calendar]], showCalendar).
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auto calendar_string = format_calendar_annotation(year_month.calendar(), show_calendar);
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// 6. Set result to the string-concatenation of result and calendarString.
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result = MUST(String::formatted("{}{}", result, calendar_string));
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// 7. Return result.
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return result;
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}
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// 9.5.7 DifferenceTemporalPlainYearMonth ( operation, yearMonth, other, options ), https://tc39.es/proposal-temporal/#sec-temporal-differencetemporalplainyearmonth
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ThrowCompletionOr<GC::Ref<Duration>> difference_temporal_plain_year_month(VM& vm, DurationOperation operation, PlainYearMonth const& year_month, Value other_value, Value options)
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{
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// 1. Set other to ? ToTemporalYearMonth(other).
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auto other = TRY(to_temporal_year_month(vm, other_value));
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// 2. Let calendar be yearMonth.[[Calendar]].
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auto const& calendar = year_month.calendar();
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// 3. If CalendarEquals(calendar, other.[[Calendar]]) is false, throw a RangeError exception.
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if (!calendar_equals(calendar, other->calendar()))
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return vm.throw_completion<RangeError>(ErrorType::TemporalDifferentCalendars);
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// 4. Let resolvedOptions be ? GetOptionsObject(options).
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auto resolved_options = TRY(get_options_object(vm, options));
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// 5. Let settings be ? GetDifferenceSettings(operation, resolvedOptions, DATE, « WEEK, DAY », MONTH, YEAR).
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auto settings = TRY(get_difference_settings(vm, operation, resolved_options, UnitGroup::Date, { { Unit::Week, Unit::Day } }, Unit::Month, Unit::Year));
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// 6. If CompareISODate(yearMonth.[[ISODate]], other.[[ISODate]]) = 0, then
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if (compare_iso_date(year_month.iso_date(), other->iso_date()) == 0) {
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// a. Return ! CreateTemporalDuration(0, 0, 0, 0, 0, 0, 0, 0, 0, 0).
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return MUST(create_temporal_duration(vm, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0));
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}
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// 7. Let thisFields be ISODateToFields(calendar, yearMonth.[[ISODate]], YEAR-MONTH).
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auto this_fields = iso_date_to_fields(calendar, year_month.iso_date(), DateType::YearMonth);
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// 8. Set thisFields.[[Day]] to 1.
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this_fields.day = 1;
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// 9. Let thisDate be ? CalendarDateFromFields(calendar, thisFields, CONSTRAIN).
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auto this_date = TRY(calendar_date_from_fields(vm, calendar, this_fields, Overflow::Constrain));
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// 10. Let otherFields be ISODateToFields(calendar, other.[[ISODate]], YEAR-MONTH).
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auto other_fields = iso_date_to_fields(calendar, other->iso_date(), DateType::YearMonth);
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// 11. Set otherFields.[[Day]] to 1.
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other_fields.day = 1;
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// 12. Let otherDate be ? CalendarDateFromFields(calendar, otherFields, CONSTRAIN).
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auto other_date = TRY(calendar_date_from_fields(vm, calendar, other_fields, Overflow::Constrain));
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// 13. Let dateDifference be CalendarDateUntil(calendar, thisDate, otherDate, settings.[[LargestUnit]]).
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auto date_difference = calendar_date_until(vm, calendar, this_date, other_date, settings.largest_unit);
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// 14. Let yearsMonthsDifference be ! AdjustDateDurationRecord(dateDifference, 0, 0).
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auto years_months_difference = MUST(adjust_date_duration_record(vm, date_difference, 0, 0));
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// 15. Let duration be CombineDateAndTimeDuration(yearsMonthsDifference, 0).
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auto duration = combine_date_and_time_duration(years_months_difference, TimeDuration { 0 });
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// 16. If settings.[[SmallestUnit]] is not MONTH or settings.[[RoundingIncrement]] ≠ 1, then
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if (settings.smallest_unit != Unit::Month || settings.rounding_increment != 1) {
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// a. Let isoDateTime be CombineISODateAndTimeRecord(thisDate, MidnightTimeRecord()).
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auto iso_date_time = combine_iso_date_and_time_record(this_date, midnight_time_record());
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// b. Let isoDateTimeOther be CombineISODateAndTimeRecord(otherDate, MidnightTimeRecord()).
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auto iso_date_time_other = combine_iso_date_and_time_record(other_date, midnight_time_record());
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// c. Let destEpochNs be GetUTCEpochNanoseconds(isoDateTimeOther).
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auto dest_epoch_ns = get_utc_epoch_nanoseconds(iso_date_time_other);
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// d. Set duration to ? RoundRelativeDuration(duration, destEpochNs, isoDateTime, UNSET, calendar, settings.[[LargestUnit]], settings.[[RoundingIncrement]], settings.[[SmallestUnit]], settings.[[RoundingMode]]).
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duration = TRY(round_relative_duration(vm, move(duration), dest_epoch_ns, iso_date_time, {}, calendar, settings.largest_unit, settings.rounding_increment, settings.smallest_unit, settings.rounding_mode));
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}
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// 17. Let result be ! TemporalDurationFromInternal(duration, DAY).
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auto result = MUST(temporal_duration_from_internal(vm, duration, Unit::Day));
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// 18. If operation is SINCE, set result to CreateNegatedTemporalDuration(result).
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if (operation == DurationOperation::Since)
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result = create_negated_temporal_duration(vm, result);
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// 19. Return result.
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return result;
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}
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// 9.5.8 AddDurationToYearMonth ( operation, yearMonth, temporalDurationLike, options )
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ThrowCompletionOr<GC::Ref<PlainYearMonth>> add_duration_to_year_month(VM& vm, ArithmeticOperation operation, PlainYearMonth const& year_month, Value temporal_duration_like, Value options)
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{
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// 1. Let duration be ? ToTemporalDuration(temporalDurationLike).
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auto duration = TRY(to_temporal_duration(vm, temporal_duration_like));
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// 2. If operation is SUBTRACT, set duration to CreateNegatedTemporalDuration(duration).
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if (operation == ArithmeticOperation::Subtract)
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duration = create_negated_temporal_duration(vm, duration);
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// 3. Let resolvedOptions be ? GetOptionsObject(options).
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auto resolved_options = TRY(get_options_object(vm, options));
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// 4. Let overflow be ? GetTemporalOverflowOption(resolvedOptions).
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auto overflow = TRY(get_temporal_overflow_option(vm, resolved_options));
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// 5. Let sign be DurationSign(duration).
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auto sign = duration_sign(duration);
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// 6. Let calendar be yearMonth.[[Calendar]].
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auto const& calendar = year_month.calendar();
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// 7. Let fields be ISODateToFields(calendar, yearMonth.[[ISODate]], YEAR-MONTH).
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auto fields = iso_date_to_fields(calendar, year_month.iso_date(), DateType::YearMonth);
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// 8. Set fields.[[Day]] to 1.
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fields.day = 1;
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// 9. Let intermediateDate be ? CalendarDateFromFields(calendar, fields, CONSTRAIN).
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auto intermediate_date = TRY(calendar_date_from_fields(vm, calendar, fields, Overflow::Constrain));
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ISODate date;
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// 10. If sign < 0, then
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if (sign < 0) {
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// a. Let oneMonthDuration be ! CreateDateDurationRecord(0, 1, 0, 0).
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auto one_month_duration = MUST(create_date_duration_record(vm, 0, 1, 0, 0));
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// b. Let nextMonth be ? CalendarDateAdd(calendar, intermediateDate, oneMonthDuration, CONSTRAIN).
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auto next_month = TRY(calendar_date_add(vm, calendar, intermediate_date, one_month_duration, Overflow::Constrain));
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// c. Let date be BalanceISODate(nextMonth.[[Year]], nextMonth.[[Month]], nextMonth.[[Day]] - 1).
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date = balance_iso_date(next_month.year, next_month.month, next_month.day - 1);
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// d. Assert: ISODateWithinLimits(date) is true.
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VERIFY(iso_date_within_limits(date));
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}
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// 11. Else,
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else {
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// a. Let date be intermediateDate.
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date = intermediate_date;
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}
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// 12. Let durationToAdd be ToDateDurationRecordWithoutTime(duration).
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auto duration_to_add = to_date_duration_record_without_time(vm, duration);
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// 13. Let addedDate be ? CalendarDateAdd(calendar, date, durationToAdd, overflow).
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auto added_date = TRY(calendar_date_add(vm, calendar, date, duration_to_add, overflow));
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// 14. Let addedDateFields be ISODateToFields(calendar, addedDate, YEAR-MONTH).
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auto added_date_fields = iso_date_to_fields(calendar, added_date, DateType::YearMonth);
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// 15. Let isoDate be ? CalendarYearMonthFromFields(calendar, addedDateFields, overflow).
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auto iso_date = TRY(calendar_year_month_from_fields(vm, calendar, added_date_fields, overflow));
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// 16. Return ! CreateTemporalYearMonth(isoDate, calendar).
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return MUST(create_temporal_year_month(vm, iso_date, calendar));
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}
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}
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