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			538 lines
		
	
	
	
		
			24 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			538 lines
		
	
	
	
		
			24 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
| /*
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|  * Copyright (c) 2021, Idan Horowitz <idan.horowitz@serenityos.org>
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|  * Copyright (c) 2021-2022, Linus Groh <linusg@serenityos.org>
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|  *
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|  * SPDX-License-Identifier: BSD-2-Clause
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|  */
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| 
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| #include <LibJS/Runtime/AbstractOperations.h>
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| #include <LibJS/Runtime/Completion.h>
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| #include <LibJS/Runtime/Date.h>
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| #include <LibJS/Runtime/GlobalObject.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/Instant.h>
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| #include <LibJS/Runtime/Temporal/PlainDate.h>
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| #include <LibJS/Runtime/Temporal/PlainDateConstructor.h>
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| #include <LibJS/Runtime/Temporal/PlainDateTime.h>
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| #include <LibJS/Runtime/Temporal/PlainYearMonth.h>
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| #include <LibJS/Runtime/Temporal/TimeZone.h>
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| #include <LibJS/Runtime/Temporal/ZonedDateTime.h>
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| 
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| namespace JS::Temporal {
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| 
 | ||
| // 3 Temporal.PlainDate Objects, https://tc39.es/proposal-temporal/#sec-temporal-plaindate-objects
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| PlainDate::PlainDate(i32 year, u8 month, u8 day, Object& calendar, Object& prototype)
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|     : Object(prototype)
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|     , m_iso_year(year)
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|     , m_iso_month(month)
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|     , m_iso_day(day)
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|     , m_calendar(calendar)
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| {
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| }
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| 
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| void PlainDate::visit_edges(Visitor& visitor)
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| {
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|     Base::visit_edges(visitor);
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|     visitor.visit(&m_calendar);
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| }
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| 
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| // 3.5.2 CreateISODateRecord ( year, month, day ), https://tc39.es/proposal-temporal/#sec-temporal-create-iso-date-record
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| ISODateRecord create_iso_date_record(i32 year, u8 month, u8 day)
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| {
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|     // 1. Assert: IsValidISODate(year, month, day) is true.
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|     VERIFY(is_valid_iso_date(year, month, day));
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| 
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|     // 2. Return the Record { [[Year]]: year, [[Month]]: month, [[Day]]: day }.
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|     return { .year = year, .month = month, .day = day };
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| }
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| 
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| // 3.5.1 CreateTemporalDate ( isoYear, isoMonth, isoDay, calendar [ , newTarget ] ), https://tc39.es/proposal-temporal/#sec-temporal-createtemporaldate
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| ThrowCompletionOr<PlainDate*> create_temporal_date(GlobalObject& global_object, i32 iso_year, u8 iso_month, u8 iso_day, Object& calendar, FunctionObject const* new_target)
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| {
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|     auto& vm = global_object.vm();
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| 
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|     // 1. Assert: isoYear is an integer.
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|     // 2. Assert: isoMonth is an integer.
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|     // 3. Assert: isoDay is an integer.
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|     // 4. Assert: Type(calendar) is Object.
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| 
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|     // 5. If IsValidISODate(isoYear, isoMonth, isoDay) is false, throw a RangeError exception.
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|     if (!is_valid_iso_date(iso_year, iso_month, iso_day))
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|         return vm.throw_completion<RangeError>(global_object, ErrorType::TemporalInvalidPlainDate);
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| 
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|     // 6. If ISODateTimeWithinLimits(isoYear, isoMonth, isoDay, 12, 0, 0, 0, 0, 0) is false, throw a RangeError exception.
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|     if (!iso_date_time_within_limits(global_object, iso_year, iso_month, iso_day, 12, 0, 0, 0, 0, 0))
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|         return vm.throw_completion<RangeError>(global_object, ErrorType::TemporalInvalidPlainDate);
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| 
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|     // 7. If newTarget is not present, set newTarget to %Temporal.PlainDate%.
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|     if (!new_target)
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|         new_target = global_object.temporal_plain_date_constructor();
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| 
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|     // 8. Let object be ? OrdinaryCreateFromConstructor(newTarget, "%Temporal.PlainDate.prototype%", « [[InitializedTemporalDate]], [[ISOYear]], [[ISOMonth]], [[ISODay]], [[Calendar]] »).
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|     // 9. Set object.[[ISOYear]] to isoYear.
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|     // 10. Set object.[[ISOMonth]] to isoMonth.
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|     // 11. Set object.[[ISODay]] to isoDay.
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|     // 12. Set object.[[Calendar]] to calendar.
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|     auto* object = TRY(ordinary_create_from_constructor<PlainDate>(global_object, *new_target, &GlobalObject::temporal_plain_date_prototype, iso_year, iso_month, iso_day, calendar));
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| 
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|     return object;
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| }
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| 
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| // 3.5.2 ToTemporalDate ( item [ , options ] ), https://tc39.es/proposal-temporal/#sec-temporal-totemporaldate
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| ThrowCompletionOr<PlainDate*> to_temporal_date(GlobalObject& global_object, Value item, Object const* options)
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| {
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|     auto& vm = global_object.vm();
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| 
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|     // 1. If options is not present, set options to undefined.
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|     // 2. Assert: Type(options) is Object or Undefined.
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| 
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|     // 3. If Type(item) is Object, then
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|     if (item.is_object()) {
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|         auto& item_object = item.as_object();
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|         // a. If item has an [[InitializedTemporalDate]] internal slot, then
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|         if (is<PlainDate>(item_object)) {
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|             // i. Return item.
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|             return static_cast<PlainDate*>(&item_object);
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|         }
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| 
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|         // b. If item has an [[InitializedTemporalZonedDateTime]] internal slot, then
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|         if (is<ZonedDateTime>(item_object)) {
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|             auto& zoned_date_time = static_cast<ZonedDateTime&>(item_object);
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| 
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|             // i. Perform ? ToTemporalOverflow(options).
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|             (void)TRY(to_temporal_overflow(global_object, options));
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| 
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|             // ii. Let instant be ! CreateTemporalInstant(item.[[Nanoseconds]]).
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|             auto* instant = create_temporal_instant(global_object, zoned_date_time.nanoseconds()).release_value();
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| 
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|             // iii. Let plainDateTime be ? BuiltinTimeZoneGetPlainDateTimeFor(item.[[TimeZone]], instant, item.[[Calendar]]).
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|             auto* plain_date_time = TRY(builtin_time_zone_get_plain_date_time_for(global_object, &zoned_date_time.time_zone(), *instant, zoned_date_time.calendar()));
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| 
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|             // iv. Return ! CreateTemporalDate(plainDateTime.[[ISOYear]], plainDateTime.[[ISOMonth]], plainDateTime.[[ISODay]], plainDateTime.[[Calendar]]).
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|             return create_temporal_date(global_object, plain_date_time->iso_year(), plain_date_time->iso_month(), plain_date_time->iso_day(), plain_date_time->calendar());
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|         }
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| 
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|         // c. If item has an [[InitializedTemporalDateTime]] internal slot, then
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|         if (is<PlainDateTime>(item_object)) {
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|             auto& date_time_item = static_cast<PlainDateTime&>(item_object);
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| 
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|             // i. Perform ? ToTemporalOverflow(options).
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|             (void)TRY(to_temporal_overflow(global_object, options));
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| 
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|             // ii. Return ! CreateTemporalDate(item.[[ISOYear]], item.[[ISOMonth]], item.[[ISODay]], item.[[Calendar]]).
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|             return create_temporal_date(global_object, date_time_item.iso_year(), date_time_item.iso_month(), date_time_item.iso_day(), date_time_item.calendar());
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|         }
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| 
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|         // d. Let calendar be ? GetTemporalCalendarWithISODefault(item).
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|         auto* calendar = TRY(get_temporal_calendar_with_iso_default(global_object, item_object));
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| 
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|         // e. Let fieldNames be ? CalendarFields(calendar, « "day", "month", "monthCode", "year" »).
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|         auto field_names = TRY(calendar_fields(global_object, *calendar, { "day"sv, "month"sv, "monthCode"sv, "year"sv }));
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| 
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|         // f. Let fields be ? PrepareTemporalFields(item, fieldNames, «»).
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|         auto* fields = TRY(prepare_temporal_fields(global_object, item_object, field_names, Vector<StringView> {}));
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| 
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|         // g. Return ? CalendarDateFromFields(calendar, fields, options).
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|         return calendar_date_from_fields(global_object, *calendar, *fields, options);
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|     }
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| 
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|     // 4. Perform ? ToTemporalOverflow(options).
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|     (void)TRY(to_temporal_overflow(global_object, options));
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| 
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|     // 5. Let string be ? ToString(item).
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|     auto string = TRY(item.to_string(global_object));
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| 
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|     // 6. Let result be ? ParseTemporalDateString(string).
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|     auto result = TRY(parse_temporal_date_string(global_object, string));
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| 
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|     // 7. Assert: IsValidISODate(result.[[Year]], result.[[Month]], result.[[Day]]) is true.
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|     VERIFY(is_valid_iso_date(result.year, result.month, result.day));
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| 
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|     // 8. Let calendar be ? ToTemporalCalendarWithISODefault(result.[[Calendar]]).
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|     auto* calendar = TRY(to_temporal_calendar_with_iso_default(global_object, result.calendar.has_value() ? js_string(vm, *result.calendar) : js_undefined()));
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| 
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|     // 9. Return ? CreateTemporalDate(result.[[Year]], result.[[Month]], result.[[Day]], calendar).
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|     return create_temporal_date(global_object, result.year, result.month, result.day, *calendar);
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| }
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| 
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| // 3.5.3 DifferenceISODate ( y1, m1, d1, y2, m2, d2, largestUnit ), https://tc39.es/proposal-temporal/#sec-temporal-differenceisodate
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| DateDurationRecord difference_iso_date(GlobalObject& global_object, i32 year1, u8 month1, u8 day1, i32 year2, u8 month2, u8 day2, StringView largest_unit)
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| {
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|     VERIFY(largest_unit.is_one_of("year"sv, "month"sv, "week"sv, "day"sv));
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| 
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|     // 1. If largestUnit is "year" or "month", then
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|     if (largest_unit.is_one_of("year"sv, "month"sv)) {
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|         // a. Let sign be -(! CompareISODate(y1, m1, d1, y2, m2, d2)).
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|         auto sign = -compare_iso_date(year1, month1, day1, year2, month2, day2);
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| 
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|         // b. If sign is 0, return ! CreateDateDurationRecord(0, 0, 0, 0).
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|         if (sign == 0)
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|             return create_date_duration_record(0, 0, 0, 0);
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| 
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|         // c. Let start be the Record { [[Year]]: y1, [[Month]]: m1, [[Day]]: d1 }.
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|         auto start = ISODateRecord { .year = year1, .month = month1, .day = day1 };
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| 
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|         // d. Let end be the Record { [[Year]]: y2, [[Month]]: m2, [[Day]]: d2 }.
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|         auto end = ISODateRecord { .year = year2, .month = month2, .day = day2 };
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| 
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|         // e. Let years be end.[[Year]] - start.[[Year]].
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|         double years = end.year - start.year;
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| 
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|         // f. Let mid be ! AddISODate(y1, m1, d1, years, 0, 0, 0, "constrain").
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|         auto mid = MUST(add_iso_date(global_object, year1, month1, day1, years, 0, 0, 0, "constrain"sv));
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| 
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|         // g. Let midSign be -(! CompareISODate(mid.[[Year]], mid.[[Month]], mid.[[Day]], y2, m2, d2)).
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|         auto mid_sign = -compare_iso_date(mid.year, mid.month, mid.day, year2, month2, day2);
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| 
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|         // h. If midSign is 0, then
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|         if (mid_sign == 0) {
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|             // i. If largestUnit is "year", return ! CreateDateDurationRecord(years, 0, 0, 0).
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|             if (largest_unit == "year"sv)
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|                 return create_date_duration_record(years, 0, 0, 0);
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| 
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|             // ii. Return ! CreateDateDurationRecord(0, years × 12, 0, 0).
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|             return create_date_duration_record(0, years * 12, 0, 0);
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|         }
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| 
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|         // i. Let months be end.[[Month]] - start.[[Month]].
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|         double months = end.month - start.month;
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| 
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|         // j. If midSign is not equal to sign, then
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|         if (mid_sign != sign) {
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|             // i. Set years to years - sign.
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|             years -= sign;
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| 
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|             // ii. Set months to months + sign × 12.
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|             months += sign * 12;
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|         }
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| 
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|         // k. Set mid to ! AddISODate(y1, m1, d1, years, months, 0, 0, "constrain").
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|         mid = MUST(add_iso_date(global_object, year1, month1, day1, years, months, 0, 0, "constrain"sv));
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| 
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|         // l. Set midSign to -(! CompareISODate(mid.[[Year]], mid.[[Month]], mid.[[Day]], y2, m2, d2)).
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|         mid_sign = -compare_iso_date(mid.year, mid.month, mid.day, year2, month2, day2);
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| 
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|         // m. If midSign is 0, then
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|         if (mid_sign == 0) {
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|             // i. If largestUnit is "year", return ! CreateDateDurationRecord(years, months, 0, 0).
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|             if (largest_unit == "year"sv)
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|                 return create_date_duration_record(years, months, 0, 0);
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| 
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|             // ii. Return ! CreateDateDurationRecord(0, months + years × 12, 0, 0).
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|             return create_date_duration_record(0, months + years * 12, 0, 0);
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|         }
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| 
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|         // n. If midSign is not equal to sign, then
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|         if (mid_sign != sign) {
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|             // i. Set months to months - sign.
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|             months -= sign;
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| 
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|             // ii. If months is equal to -sign, then
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|             if (months == -sign) {
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|                 // 1. Set years to years - sign.
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|                 years -= sign;
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| 
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|                 // 2. Set months to 11 × sign.
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|                 months = 11 * sign;
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|             }
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| 
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|             // iii. Set mid to ! AddISODate(y1, m1, d1, years, months, 0, 0, "constrain").
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|             mid = MUST(add_iso_date(global_object, year1, month1, day1, years, months, 0, 0, "constrain"sv));
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|         }
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| 
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|         double days;
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| 
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|         // o. If mid.[[Month]] = end.[[Month]], then
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|         if (mid.month == end.month) {
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|             // i. Assert: mid.[[Year]] = end.[[Year]].
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|             VERIFY(mid.year == end.year);
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| 
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|             // ii. Let days be end.[[Day]] - mid.[[Day]].
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|             days = end.day - mid.day;
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|         }
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|         // p. Else if sign < 0, let days be -mid.[[Day]] - (! ISODaysInMonth(end.[[Year]], end.[[Month]]) - end.[[Day]]).
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|         else if (sign < 0) {
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|             days = -mid.day - (iso_days_in_month(end.year, end.month) - end.day);
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|         }
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|         // q. Else, let days be end.[[Day]] + (! ISODaysInMonth(mid.[[Year]], mid.[[Month]]) - mid.[[Day]]).
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|         else {
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|             days = end.day + (iso_days_in_month(mid.year, mid.month) - mid.day);
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|         }
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| 
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|         // r. If largestUnit is "month", then
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|         if (largest_unit == "month"sv) {
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|             // i. Set months to months + years × 12.
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|             months += years * 12;
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| 
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|             // ii. Set years to 0.
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|             years = 0;
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|         }
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| 
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|         // s. Return ! CreateDateDurationRecord(years, months, 0, days).
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|         return create_date_duration_record(years, months, 0, days);
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|     }
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|     // 2. Else,
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|     else {
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|         // a. Assert: largestUnit is "day" or "week".
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|         VERIFY(largest_unit.is_one_of("day"sv, "week"sv));
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| 
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|         // b. Let epochDays1 be MakeDay(𝔽(y1), 𝔽(m1 - 1), 𝔽(d1)).
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|         auto epoch_days_1 = make_day(year1, month1 - 1, day1);
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| 
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|         // c. Assert: epochDays1 is finite.
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|         VERIFY(isfinite(epoch_days_1));
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| 
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|         // d. Let epochDays2 be MakeDay(𝔽(y2), 𝔽(m2 - 1), 𝔽(d2)).
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|         auto epoch_days_2 = make_day(year2, month2 - 1, day2);
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| 
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|         // e. Assert: epochDays2 is finite.
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|         VERIFY(isfinite(epoch_days_2));
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| 
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|         // f. Let days be ℝ(epochDays2) - ℝ(epochDays1).
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|         auto days = epoch_days_2 - epoch_days_1;
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| 
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|         // g. Let weeks be 0.
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|         double weeks = 0;
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| 
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|         // h. If largestUnit is "week", then
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|         if (largest_unit == "week"sv) {
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|             // i. Set weeks to RoundTowardsZero(days / 7).
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|             weeks = trunc(days / 7);
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| 
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|             // ii. Set days to remainder(days, 7).
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|             days = fmod(days, 7);
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|         }
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| 
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|         // i. Return ! CreateDateDurationRecord(0, 0, weeks, days).
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|         return create_date_duration_record(0, 0, weeks, days);
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|     }
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| }
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| 
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| // 3.5.4 RegulateISODate ( year, month, day, overflow ), https://tc39.es/proposal-temporal/#sec-temporal-regulateisodate
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| ThrowCompletionOr<ISODateRecord> regulate_iso_date(GlobalObject& global_object, double year, double month, double day, StringView overflow)
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| {
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|     auto& vm = global_object.vm();
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| 
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|     VERIFY(year == trunc(year) && month == trunc(month) && day == trunc(day));
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| 
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|     // 1. If overflow is "constrain", then
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|     if (overflow == "constrain"sv) {
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|         // IMPLEMENTATION DEFINED: This is an optimization that allows us to treat this double as normal integer from this point onwards. This
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|         // does not change the exposed behavior as the parent's call to CreateTemporalDate will immediately check that this value is a valid
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|         // ISO value for years: -273975 - 273975, which is a subset of this check.
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|         if (!AK::is_within_range<i32>(year))
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|             return vm.throw_completion<RangeError>(global_object, ErrorType::TemporalInvalidPlainDate);
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| 
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|         // a. Set month to the result of clamping month between 1 and 12.
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|         month = clamp(month, 1, 12);
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| 
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|         // b. Let daysInMonth be ! ISODaysInMonth(year, month).
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|         auto days_in_month = iso_days_in_month(static_cast<i32>(year), static_cast<u8>(month));
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| 
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|         // c. Set day to the result of clamping day between 1 and daysInMonth.
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|         day = clamp(day, 1, days_in_month);
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| 
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|         // d. Return CreateISODateRecord(year, month, day).
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|         return create_iso_date_record(static_cast<i32>(year), static_cast<u8>(month), static_cast<u8>(day));
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|     }
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|     // 2. Else,
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|     else {
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|         // a. Assert: overflow is "reject".
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|         VERIFY(overflow == "reject"sv);
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| 
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|         // IMPLEMENTATION DEFINED: This is an optimization that allows us to treat these doubles as normal integers from this point onwards.
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|         // This does not change the exposed behavior as the call to IsValidISODate will immediately check that these values are valid ISO
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|         // values (for years: -273975 - 273975, for months: 1 - 12, for days: 1 - 31) all of which are subsets of this check.
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|         if (!AK::is_within_range<i32>(year) || !AK::is_within_range<u8>(month) || !AK::is_within_range<u8>(day))
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|             return vm.throw_completion<RangeError>(global_object, ErrorType::TemporalInvalidPlainDate);
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| 
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|         auto y = static_cast<i32>(year);
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|         auto m = static_cast<u8>(month);
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|         auto d = static_cast<u8>(day);
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|         // b. If IsValidISODate(year, month, day) is false, throw a RangeError exception.
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|         if (!is_valid_iso_date(y, m, d))
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|             return vm.throw_completion<RangeError>(global_object, ErrorType::TemporalInvalidPlainDate);
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| 
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|         // c. Return the Record { [[Year]]: year, [[Month]]: month, [[Day]]: day }.
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|         return ISODateRecord { .year = y, .month = m, .day = d };
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|     }
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| }
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| 
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| // 3.5.5 IsValidISODate ( year, month, day ), https://tc39.es/proposal-temporal/#sec-temporal-isvalidisodate
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| bool is_valid_iso_date(i32 year, u8 month, u8 day)
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| {
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|     // 1. If month < 1 or month > 12, then
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|     if (month < 1 || month > 12) {
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|         // a. Return false.
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|         return false;
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|     }
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| 
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|     // 2. Let daysInMonth be ! ISODaysInMonth(year, month).
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|     auto days_in_month = iso_days_in_month(year, month);
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| 
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|     // 3. If day < 1 or day > daysInMonth, then
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|     if (day < 1 || day > days_in_month) {
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|         // a. Return false.
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|         return false;
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|     }
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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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| 
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| // 3.5.6 BalanceISODate ( year, month, day ), https://tc39.es/proposal-temporal/#sec-temporal-balanceisodate
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| ISODateRecord balance_iso_date(double year, double month, double day)
 | ||
| {
 | ||
|     // 1. Let epochDays be MakeDay(𝔽(year), 𝔽(month - 1), 𝔽(day)).
 | ||
|     auto epoch_days = make_day(year, month - 1, day);
 | ||
| 
 | ||
|     // 2. Assert: epochDays is finite.
 | ||
|     VERIFY(isfinite(epoch_days));
 | ||
| 
 | ||
|     // 3. Let ms be MakeDate(epochDays, +0𝔽).
 | ||
|     auto ms = make_date(epoch_days, 0);
 | ||
| 
 | ||
|     // 4. Return CreateISODateRecord(ℝ(YearFromTime(ms)), ℝ(MonthFromTime(ms)) + 1, ℝ(DateFromTime(ms))).
 | ||
|     return create_iso_date_record(year_from_time(ms), static_cast<u8>(month_from_time(ms) + 1), date_from_time(ms));
 | ||
| }
 | ||
| 
 | ||
| // 3.5.7 PadISOYear ( y ), https://tc39.es/proposal-temporal/#sec-temporal-padisoyear
 | ||
| String pad_iso_year(i32 y)
 | ||
| {
 | ||
|     // 1. Assert: y is an integer.
 | ||
| 
 | ||
|     // 2. If y ≥ 0 and y ≤ 9999, then
 | ||
|     if (y >= 0 && y <= 9999) {
 | ||
|         // a. Return ToZeroPaddedDecimalString(y, 4).
 | ||
|         return String::formatted("{:04}", y);
 | ||
|     }
 | ||
| 
 | ||
|     // 3. If y > 0, let yearSign be "+"; otherwise, let yearSign be "-".
 | ||
|     auto year_sign = y > 0 ? '+' : '-';
 | ||
| 
 | ||
|     // 4. Let year be ToZeroPaddedDecimalString(abs(y), 6).
 | ||
|     // 5. Return the string-concatenation of yearSign and year.
 | ||
|     return String::formatted("{}{:06}", year_sign, abs(y));
 | ||
| }
 | ||
| 
 | ||
| // 3.5.8 TemporalDateToString ( temporalDate, showCalendar ), https://tc39.es/proposal-temporal/#sec-temporal-temporaldatetostring
 | ||
| ThrowCompletionOr<String> temporal_date_to_string(GlobalObject& global_object, PlainDate& temporal_date, StringView show_calendar)
 | ||
| {
 | ||
|     // 1. Assert: Type(temporalDate) is Object.
 | ||
|     // 2. Assert: temporalDate has an [[InitializedTemporalDate]] internal slot.
 | ||
| 
 | ||
|     // 3. Let year be ! PadISOYear(temporalDate.[[ISOYear]]).
 | ||
|     auto year = pad_iso_year(temporal_date.iso_year());
 | ||
| 
 | ||
|     // 4. Let month be ToZeroPaddedDecimalString(monthDay.[[ISOMonth]], 2).
 | ||
|     auto month = String::formatted("{:02}", temporal_date.iso_month());
 | ||
| 
 | ||
|     // 5. Let day be ToZeroPaddedDecimalString(monthDay.[[ISODay]], 2).
 | ||
|     auto day = String::formatted("{:02}", temporal_date.iso_day());
 | ||
| 
 | ||
|     // 6. Let calendarID be ? ToString(temporalDate.[[Calendar]]).
 | ||
|     auto calendar_id = TRY(Value(&temporal_date.calendar()).to_string(global_object));
 | ||
| 
 | ||
|     // 7. Let calendar be ! FormatCalendarAnnotation(calendarID, showCalendar).
 | ||
|     auto calendar = format_calendar_annotation(calendar_id, show_calendar);
 | ||
| 
 | ||
|     // 8. Return the string-concatenation of year, the code unit 0x002D (HYPHEN-MINUS), month, the code unit 0x002D (HYPHEN-MINUS), day, and calendar.
 | ||
|     return String::formatted("{}-{}-{}{}", year, month, day, calendar);
 | ||
| }
 | ||
| 
 | ||
| // 3.5.9 AddISODate ( year, month, day, years, months, weeks, days, overflow ), https://tc39.es/proposal-temporal/#sec-temporal-addisodate
 | ||
| ThrowCompletionOr<ISODateRecord> add_iso_date(GlobalObject& global_object, i32 year, u8 month, u8 day, double years, double months, double weeks, double days, StringView overflow)
 | ||
| {
 | ||
|     // 1. Assert: year, month, day, years, months, weeks, and days are integers.
 | ||
|     VERIFY(years == trunc(years) && months == trunc(months) && weeks == trunc(weeks) && days == trunc(days));
 | ||
| 
 | ||
|     // 2. Assert: overflow is either "constrain" or "reject".
 | ||
|     VERIFY(overflow == "constrain"sv || overflow == "reject"sv);
 | ||
| 
 | ||
|     // 3. Let intermediate be ! BalanceISOYearMonth(year + years, month + months).
 | ||
|     auto intermediate_year_month = balance_iso_year_month(year + years, month + months);
 | ||
| 
 | ||
|     // 4. Let intermediate be ? RegulateISODate(intermediate.[[Year]], intermediate.[[Month]], day, overflow).
 | ||
|     auto intermediate = TRY(regulate_iso_date(global_object, intermediate_year_month.year, intermediate_year_month.month, day, overflow));
 | ||
| 
 | ||
|     // 5. Set days to days + 7 × weeks.
 | ||
|     days += 7 * weeks;
 | ||
| 
 | ||
|     // 6. Let d be intermediate.[[Day]] + days.
 | ||
|     auto d = intermediate.day + days;
 | ||
| 
 | ||
|     // 7. Return BalanceISODate(intermediate.[[Year]], intermediate.[[Month]], d).
 | ||
|     return balance_iso_date(intermediate.year, intermediate.month, d);
 | ||
| }
 | ||
| 
 | ||
| // 3.5.10 CompareISODate ( y1, m1, d1, y2, m2, d2 ), https://tc39.es/proposal-temporal/#sec-temporal-compareisodate
 | ||
| i8 compare_iso_date(i32 year1, u8 month1, u8 day1, i32 year2, u8 month2, u8 day2)
 | ||
| {
 | ||
|     // 1. Assert: y1, m1, d1, y2, m2, and d2 are integers.
 | ||
| 
 | ||
|     // 2. If y1 > y2, return 1.
 | ||
|     if (year1 > year2)
 | ||
|         return 1;
 | ||
| 
 | ||
|     // 3. If y1 < y2, return -1.
 | ||
|     if (year1 < year2)
 | ||
|         return -1;
 | ||
| 
 | ||
|     // 4. If m1 > m2, return 1.
 | ||
|     if (month1 > month2)
 | ||
|         return 1;
 | ||
| 
 | ||
|     // 5. If m1 < m2, return -1.
 | ||
|     if (month1 < month2)
 | ||
|         return -1;
 | ||
| 
 | ||
|     // 6. If d1 > d2, return 1.
 | ||
|     if (day1 > day2)
 | ||
|         return 1;
 | ||
| 
 | ||
|     // 7. If d1 < d2, return -1.
 | ||
|     if (day1 < day2)
 | ||
|         return -1;
 | ||
| 
 | ||
|     // 8. Return 0.
 | ||
|     return 0;
 | ||
| }
 | ||
| 
 | ||
| // 3.5.11 DifferenceTemporalPlainDate ( operation, temporalDate, other, options ), https://tc39.es/proposal-temporal/#sec-temporal-differencetemporalplaindate
 | ||
| ThrowCompletionOr<Duration*> difference_temporal_plain_date(GlobalObject& global_object, DifferenceOperation operation, PlainDate& temporal_date, Value other_value, Value options_value)
 | ||
| {
 | ||
|     auto& vm = global_object.vm();
 | ||
| 
 | ||
|     // 1. If operation is since, let sign be -1. Otherwise, let sign be 1.
 | ||
|     i8 sign = operation == DifferenceOperation::Since ? -1 : 1;
 | ||
| 
 | ||
|     // 2. Set other to ? ToTemporalDate(other).
 | ||
|     auto* other = TRY(to_temporal_date(global_object, other_value));
 | ||
| 
 | ||
|     // 3. If ? CalendarEquals(temporalDate.[[Calendar]], other.[[Calendar]]) is false, throw a RangeError exception.
 | ||
|     if (!TRY(calendar_equals(global_object, temporal_date.calendar(), other->calendar())))
 | ||
|         return vm.throw_completion<RangeError>(global_object, ErrorType::TemporalDifferentCalendars);
 | ||
| 
 | ||
|     // 4. Let settings be ? GetDifferenceSettings(operation, options, date, « », "day", "day").
 | ||
|     auto settings = TRY(get_difference_settings(global_object, operation, options_value, UnitGroup::Date, {}, { "day"sv }, "day"sv));
 | ||
| 
 | ||
|     // 5. Let untilOptions be ? MergeLargestUnitOption(settings.[[Options]], settings.[[LargestUnit]]).
 | ||
|     auto* until_options = TRY(merge_largest_unit_option(global_object, settings.options, settings.largest_unit));
 | ||
| 
 | ||
|     // 6. Let result be ? CalendarDateUntil(temporalDate.[[Calendar]], temporalDate, other, untilOptions).
 | ||
|     auto* duration = TRY(calendar_date_until(global_object, temporal_date.calendar(), &temporal_date, other, *until_options));
 | ||
| 
 | ||
|     auto result = DurationRecord { duration->years(), duration->months(), duration->weeks(), duration->days(), 0, 0, 0, 0, 0, 0 };
 | ||
| 
 | ||
|     // 7. If settings.[[SmallestUnit]] is not "day" or settings.[[RoundingIncrement]] ≠ 1, then
 | ||
|     if (settings.smallest_unit != "day"sv || settings.rounding_increment != 1) {
 | ||
|         // a. Set result to (? RoundDuration(result.[[Years]], result.[[Months]], result.[[Weeks]], result.[[Days]], 0, 0, 0, 0, 0, 0, settings.[[RoundingIncrement]], settings.[[SmallestUnit]], settings.[[RoundingMode]], temporalDate)).[[DurationRecord]].
 | ||
|         result = TRY(round_duration(global_object, result.years, result.months, result.weeks, result.days, 0, 0, 0, 0, 0, 0, settings.rounding_increment, settings.smallest_unit, settings.rounding_mode, &temporal_date)).duration_record;
 | ||
|     }
 | ||
| 
 | ||
|     // 16. Return ! CreateTemporalDuration(sign × result.[[Years]], sign × result.[[Months]], sign × result.[[Weeks]], sign × result.[[Days]], 0, 0, 0, 0, 0, 0).
 | ||
|     return TRY(create_temporal_duration(global_object, sign * result.years, sign * result.months, sign * result.weeks, sign * result.days, 0, 0, 0, 0, 0, 0));
 | ||
| }
 | ||
| 
 | ||
| }
 | 
