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This patch adds two macros to declare per-type allocators: - JS_DECLARE_ALLOCATOR(TypeName) - JS_DEFINE_ALLOCATOR(TypeName) When used, they add a type-specific CellAllocator that the Heap will delegate allocation requests to. The result of this is that GC objects of the same type always end up within the same HeapBlock, drastically reducing the ability to perform type confusion attacks. It also improves HeapBlock utilization, since each block now has cells sized exactly to the type used within that block. (Previously we only had a handful of block sizes available, and most GC allocations ended up with a large amount of slack in their tails.) There is a small performance hit from this, but I'm sure we can make up for it elsewhere. Note that the old size-based allocators still exist, and we fall back to them for any type that doesn't have its own CellAllocator.
371 lines
19 KiB
C++
371 lines
19 KiB
C++
/*
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* Copyright (c) 2021-2023, 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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#include <AK/TypeCasts.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/Temporal/AbstractOperations.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/PlainDate.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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namespace JS::Temporal {
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JS_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(i32 iso_year, u8 iso_month, u8 iso_day, Object& calendar, Object& prototype)
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: Object(ConstructWithPrototypeTag::Tag, prototype)
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, m_iso_year(iso_year)
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, m_iso_month(iso_month)
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, m_iso_day(iso_day)
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, m_calendar(calendar)
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{
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}
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void PlainYearMonth::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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// 9.5.1 ToTemporalYearMonth ( item [ , options ] ), https://tc39.es/proposal-temporal/#sec-temporal-totemporalyearmonth
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ThrowCompletionOr<PlainYearMonth*> to_temporal_year_month(VM& vm, Value item, Object const* options)
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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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// 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 [[InitializedTemporalYearMonth]] internal slot, then
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if (is<PlainYearMonth>(item_object)) {
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// i. Return item.
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return static_cast<PlainYearMonth*>(&item_object);
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}
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// b. Let calendar be ? GetTemporalCalendarWithISODefault(item).
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auto* calendar = TRY(get_temporal_calendar_with_iso_default(vm, item_object));
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// c. Let fieldNames be ? CalendarFields(calendar, « "month", "monthCode", "year" »).
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auto field_names = TRY(calendar_fields(vm, *calendar, { "month"sv, "monthCode"sv, "year"sv }));
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// d. Let fields be ? PrepareTemporalFields(item, fieldNames, «»).
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auto* fields = TRY(prepare_temporal_fields(vm, item_object, field_names, Vector<StringView> {}));
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// e. Return ? CalendarYearMonthFromFields(calendar, fields, options).
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return calendar_year_month_from_fields(vm, *calendar, *fields, options);
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}
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// 4. Perform ? ToTemporalOverflow(options).
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(void)TRY(to_temporal_overflow(vm, options));
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// 5. Let string be ? ToString(item).
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auto string = TRY(item.to_string(vm));
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// 6. Let result be ? ParseTemporalYearMonthString(string).
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auto result = TRY(parse_temporal_year_month_string(vm, string));
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// 7. Let calendar be ? ToTemporalCalendarWithISODefault(result.[[Calendar]]).
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auto* calendar = TRY(to_temporal_calendar_with_iso_default(vm, result.calendar.has_value() ? PrimitiveString::create(vm, *result.calendar) : js_undefined()));
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// 8. Set result to ? CreateTemporalYearMonth(result.[[Year]], result.[[Month]], calendar, result.[[Day]]).
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auto* creation_result = TRY(create_temporal_year_month(vm, result.year, result.month, *calendar, result.day));
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// 9. NOTE: The following operation is called without options, in order for the calendar to store a canonical value in the [[ISODay]] internal slot of the result.
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// 10. Return ? CalendarYearMonthFromFields(calendar, result).
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return calendar_year_month_from_fields(vm, *calendar, *creation_result);
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}
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// 9.5.2 RegulateISOYearMonth ( year, month, overflow ), https://tc39.es/proposal-temporal/#sec-temporal-regulateisoyearmonth
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ThrowCompletionOr<ISOYearMonth> regulate_iso_year_month(VM& vm, double year, double month, StringView overflow)
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{
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// 1. Assert: year and month are integers.
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VERIFY(year == trunc(year) && month == trunc(month));
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// 2. Assert: overflow is either "constrain" or "reject".
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// NOTE: Asserted by the VERIFY_NOT_REACHED at the end
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// 3. 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 `year` (a double) as normal integer from this point onwards.
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// This does not change the exposed behavior as the subsequent call to CreateTemporalYearMonth will check that its value is a valid ISO
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// values (for years: -273975 - 273975) which is a subset of this check.
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// If RegulateISOYearMonth is ever used outside ISOYearMonthFromFields, this may need to be changed.
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if (!AK::is_within_range<i32>(year))
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return vm.throw_completion<RangeError>(ErrorType::TemporalInvalidPlainYearMonth);
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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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// b. Return the Record { [[Year]]: year, [[Month]]: month }.
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return ISOYearMonth { .year = static_cast<i32>(year), .month = static_cast<u8>(month), .reference_iso_day = 0 };
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}
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// 4. 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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// 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 IsValidISOMonth and subsequent call to CreateTemporalDateTime will check
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// that these values are valid ISO values (for years: -273975 - 273975, for months: 1 - 12) 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))
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return vm.throw_completion<RangeError>(ErrorType::TemporalInvalidPlainYearMonth);
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// b. If month < 1 or month > 12, throw a RangeError exception.
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if (month < 1 || month > 12)
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return vm.throw_completion<RangeError>(ErrorType::TemporalInvalidPlainYearMonth);
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// c. Return the Record { [[Year]]: year, [[Month]]: month }.
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return ISOYearMonth { .year = static_cast<i32>(year), .month = static_cast<u8>(month), .reference_iso_day = 0 };
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}
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}
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// 9.5.3 ISOYearMonthWithinLimits ( year, month ), https://tc39.es/proposal-temporal/#sec-temporal-isoyearmonthwithinlimits
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bool iso_year_month_within_limits(i32 year, u8 month)
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{
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// 1. Assert: year and month are integers.
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// 2. If year < -271821 or year > 275760, then
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if (year < -271821 || year > 275760) {
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// a. Return false.
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return false;
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}
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// 3. If year is -271821 and month < 4, then
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if (year == -271821 && month < 4) {
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// a. Return false.
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return false;
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}
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// 4. If year is 275760 and month > 9, then
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if (year == 275760 && month > 9) {
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// a. Return false.
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return false;
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}
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// 5. 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. Assert: year and month are integers.
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VERIFY(year == trunc(year) && month == trunc(month));
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// 2. Set year to year + floor((month - 1) / 12).
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year += floor((month - 1) / 12);
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// 3. Set month to ((month - 1) modulo 12) + 1.
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month = modulo(month - 1, 12) + 1;
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// 4. Return the Record { [[Year]]: year, [[Month]]: month }.
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return ISOYearMonth { .year = static_cast<i32>(year), .month = static_cast<u8>(month), .reference_iso_day = 0 };
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}
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// 9.5.5 CreateTemporalYearMonth ( isoYear, isoMonth, calendar, referenceISODay [ , newTarget ] ), https://tc39.es/proposal-temporal/#sec-temporal-createtemporalyearmonth
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ThrowCompletionOr<PlainYearMonth*> create_temporal_year_month(VM& vm, i32 iso_year, u8 iso_month, Object& calendar, u8 reference_iso_day, FunctionObject const* new_target)
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{
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auto& realm = *vm.current_realm();
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// 1. Assert: isoYear, isoMonth, and referenceISODay are integers.
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// 2. Assert: Type(calendar) is Object.
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// 3. If IsValidISODate(isoYear, isoMonth, referenceISODay) is false, throw a RangeError exception.
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if (!is_valid_iso_date(iso_year, iso_month, reference_iso_day))
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return vm.throw_completion<RangeError>(ErrorType::TemporalInvalidPlainYearMonth);
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// 4. If ! ISOYearMonthWithinLimits(isoYear, isoMonth) is false, throw a RangeError exception.
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if (!iso_year_month_within_limits(iso_year, iso_month))
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return vm.throw_completion<RangeError>(ErrorType::TemporalInvalidPlainYearMonth);
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// 5. 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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// 6. Let object be ? OrdinaryCreateFromConstructor(newTarget, "%Temporal.PlainYearMonth.prototype%", « [[InitializedTemporalYearMonth]], [[ISOYear]], [[ISOMonth]], [[ISODay]], [[Calendar]] »).
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// 7. Set object.[[ISOYear]] to isoYear.
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// 8. Set object.[[ISOMonth]] to isoMonth.
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// 9. Set object.[[Calendar]] to calendar.
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// 10. Set object.[[ISODay]] to referenceISODay.
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auto object = TRY(ordinary_create_from_constructor<PlainYearMonth>(vm, *new_target, &Intrinsics::temporal_plain_year_month_prototype, iso_year, iso_month, reference_iso_day, calendar));
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// 11. Return object.
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return object.ptr();
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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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ThrowCompletionOr<String> temporal_year_month_to_string(VM& vm, PlainYearMonth& year_month, StringView show_calendar)
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{
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// 1. Assert: Type(yearMonth) is Object.
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// 2. Assert: yearMonth has an [[InitializedTemporalYearMonth]] internal slot.
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// 3. Let year be ! PadISOYear(yearMonth.[[ISOYear]]).
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// 4. Let month be ToZeroPaddedDecimalString(yearMonth.[[ISOMonth]], 2).
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// 5. Let result be the string-concatenation of year, the code unit 0x002D (HYPHEN-MINUS), and month.
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auto result = TRY_OR_THROW_OOM(vm, String::formatted("{}-{:02}", MUST_OR_THROW_OOM(pad_iso_year(vm, year_month.iso_year())), year_month.iso_month()));
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// 6. Let calendarID be ? ToString(yearMonth.[[Calendar]]).
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auto calendar_id = TRY(Value(&year_month.calendar()).to_string(vm));
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// 7. If showCalendar is one of "always" or "critical", or if calendarID is not "iso8601", then
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if (show_calendar.is_one_of("always"sv, "critical"sv) || calendar_id != "iso8601") {
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// a. Let day be ToZeroPaddedDecimalString(yearMonth.[[ISODay]], 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 = TRY_OR_THROW_OOM(vm, String::formatted("{}-{:02}", result, year_month.iso_day()));
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}
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// 8. Let calendarString be ! FormatCalendarAnnotation(calendarID, showCalendar).
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auto calendar_string = MUST_OR_THROW_OOM(format_calendar_annotation(vm, calendar_id, show_calendar));
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// 9. Set result to the string-concatenation of result and calendarString.
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// 10. Return result.
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return TRY_OR_THROW_OOM(vm, String::formatted("{}{}", result, calendar_string));
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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<Duration*> difference_temporal_plain_year_month(VM& vm, DifferenceOperation operation, PlainYearMonth& year_month, Value other_value, Value options_value)
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{
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// 1. If operation is since, let sign be -1. Otherwise, let sign be 1.
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i8 sign = operation == DifferenceOperation::Since ? -1 : 1;
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// 2. Set other to ? ToTemporalYearMonth(other).
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auto* other = TRY(to_temporal_year_month(vm, other_value));
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// 3. Let calendar be yearMonth.[[Calendar]].
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auto& calendar = year_month.calendar();
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// 4. If ? CalendarEquals(calendar, other.[[Calendar]]) is false, throw a RangeError exception.
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if (!TRY(calendar_equals(vm, calendar, other->calendar())))
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return vm.throw_completion<RangeError>(ErrorType::TemporalDifferentCalendars);
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// 5. Let settings be ? GetDifferenceSettings(operation, options, date, « "week", "day" », "month", "year").
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auto settings = TRY(get_difference_settings(vm, operation, options_value, UnitGroup::Date, { "week"sv, "day"sv }, { "month"sv }, "year"sv));
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// 6. Let fieldNames be ? CalendarFields(calendar, « "monthCode", "year" »).
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auto field_names = TRY(calendar_fields(vm, calendar, { "monthCode"sv, "year"sv }));
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// 7. Let otherFields be ? PrepareTemporalFields(other, fieldNames, «»).
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auto* other_fields = TRY(prepare_temporal_fields(vm, *other, field_names, Vector<StringView> {}));
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// 8. Perform ! CreateDataPropertyOrThrow(otherFields, "day", 1𝔽).
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MUST(other_fields->create_data_property_or_throw(vm.names.day, Value(1)));
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// 9. Let otherDate be ? CalendarDateFromFields(calendar, otherFields).
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auto* other_date = TRY(calendar_date_from_fields(vm, calendar, *other_fields));
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// 10. Let thisFields be ? PrepareTemporalFields(yearMonth, fieldNames, «»).
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auto* this_fields = TRY(prepare_temporal_fields(vm, year_month, field_names, Vector<StringView> {}));
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// 11. Perform ! CreateDataPropertyOrThrow(thisFields, "day", 1𝔽).
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MUST(this_fields->create_data_property_or_throw(vm.names.day, Value(1)));
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// 12. Let thisDate be ? CalendarDateFromFields(calendar, thisFields).
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auto* this_date = TRY(calendar_date_from_fields(vm, calendar, *this_fields));
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// 13. Let untilOptions be ? MergeLargestUnitOption(settings.[[Options]], settings.[[LargestUnit]]).
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auto* until_options = TRY(merge_largest_unit_option(vm, settings.options, move(settings.largest_unit)));
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// 14. Let result be ? CalendarDateUntil(calendar, thisDate, otherDate, untilOptions).
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auto* duration = TRY(calendar_date_until(vm, calendar, this_date, other_date, *until_options));
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auto result = DurationRecord { duration->years(), duration->months(), 0, 0, 0, 0, 0, 0, 0, 0 };
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// 15. If settings.[[SmallestUnit]] is not "month" or settings.[[RoundingIncrement]] ≠ 1, then
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if (settings.smallest_unit != "month"sv || settings.rounding_increment != 1) {
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// a. Set result to (? RoundDuration(result.[[Years]], result.[[Months]], 0, 0, 0, 0, 0, 0, 0, 0, settings.[[RoundingIncrement]], settings.[[SmallestUnit]], settings.[[RoundingMode]], thisDate)).[[DurationRecord]].
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result = TRY(round_duration(vm, result.years, result.months, 0, 0, 0, 0, 0, 0, 0, 0, settings.rounding_increment, settings.smallest_unit, settings.rounding_mode, this_date)).duration_record;
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}
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// 16. Return ! CreateTemporalDuration(sign × result.[[Years]], sign × result.[[Months]], 0, 0, 0, 0, 0, 0, 0, 0).
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return MUST(create_temporal_duration(vm, sign * result.years, sign * result.months, 0, 0, 0, 0, 0, 0, 0, 0));
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}
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// 9.5.8 AddDurationToOrSubtractDurationFromPlainYearMonth ( operation, yearMonth, temporalDurationLike, options ), https://tc39.es/proposal-temporal/#sec-temporal-adddurationtoorsubtractdurationfromplainyearmonth
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ThrowCompletionOr<PlainYearMonth*> add_duration_to_or_subtract_duration_from_plain_year_month(VM& vm, ArithmeticOperation operation, PlainYearMonth& year_month, Value temporal_duration_like, Value options_value)
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{
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auto& realm = *vm.current_realm();
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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, then
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if (operation == ArithmeticOperation::Subtract) {
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// a. Set duration to ! CreateNegatedTemporalDuration(duration).
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duration = create_negated_temporal_duration(vm, *duration);
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}
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// 3. Let balanceResult be ? BalanceDuration(duration.[[Days]], duration.[[Hours]], duration.[[Minutes]], duration.[[Seconds]], duration.[[Milliseconds]], duration.[[Microseconds]], duration.[[Nanoseconds]], "day").
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auto balance_result = TRY(balance_duration(vm, duration->days(), duration->hours(), duration->minutes(), duration->seconds(), duration->milliseconds(), duration->microseconds(), Crypto::SignedBigInteger { duration->nanoseconds() }, "day"sv));
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// 4. Set options to ? GetOptionsObject(options).
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auto* options = TRY(get_options_object(vm, options_value));
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// 5. Let calendar be yearMonth.[[Calendar]].
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auto& calendar = year_month.calendar();
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// 6. Let fieldNames be ? CalendarFields(calendar, « "monthCode", "year" »).
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auto field_names = TRY(calendar_fields(vm, calendar, { "monthCode"sv, "year"sv }));
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// 7. Let fields be ? PrepareTemporalFields(yearMonth, fieldNames, «»).
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auto* fields = TRY(prepare_temporal_fields(vm, year_month, field_names, Vector<StringView> {}));
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// 8. Set sign to ! DurationSign(duration.[[Years]], duration.[[Months]], duration.[[Weeks]], balanceResult.[[Days]], 0, 0, 0, 0, 0, 0).
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auto sign = duration_sign(duration->years(), duration->months(), duration->weeks(), balance_result.days, 0, 0, 0, 0, 0, 0);
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double day;
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// 9. If sign < 0, then
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if (sign < 0) {
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// a. Let day be ? CalendarDaysInMonth(calendar, yearMonth).
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day = TRY(calendar_days_in_month(vm, calendar, year_month));
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}
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// 10. Else,
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else {
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// a. Let day be 1.
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day = 1;
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}
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// 11. Perform ! CreateDataPropertyOrThrow(fields, "day", 𝔽(day)).
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MUST(fields->create_data_property_or_throw(vm.names.day, Value(day)));
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// 12. Let date be ? CalendarDateFromFields(calendar, fields).
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auto* date = TRY(calendar_date_from_fields(vm, calendar, *fields));
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// 13. Let durationToAdd be ! CreateTemporalDuration(duration.[[Years]], duration.[[Months]], duration.[[Weeks]], balanceResult.[[Days]], 0, 0, 0, 0, 0, 0).
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auto* duration_to_add = MUST(create_temporal_duration(vm, duration->years(), duration->months(), duration->weeks(), balance_result.days, 0, 0, 0, 0, 0, 0));
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// 14. Let optionsCopy be OrdinaryObjectCreate(null).
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auto options_copy = Object::create(realm, nullptr);
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// 15. Let entries be ? EnumerableOwnPropertyNames(options, key+value).
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auto entries = TRY(options->enumerable_own_property_names(Object::PropertyKind::KeyAndValue));
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// 16. For each element entry of entries, do
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for (auto& entry : entries) {
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auto key = MUST(entry.as_array().get_without_side_effects(0).to_property_key(vm));
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auto value = entry.as_array().get_without_side_effects(1);
|
||
|
||
// a. Perform ! CreateDataPropertyOrThrow(optionsCopy, entry[0], entry[1]).
|
||
MUST(options_copy->create_data_property_or_throw(key, value));
|
||
}
|
||
|
||
// 17. Let addedDate be ? CalendarDateAdd(calendar, date, durationToAdd, options).
|
||
auto* added_date = TRY(calendar_date_add(vm, calendar, date, *duration_to_add, options));
|
||
|
||
// 18. Let addedDateFields be ? PrepareTemporalFields(addedDate, fieldNames, «»).
|
||
auto* added_date_fields = TRY(prepare_temporal_fields(vm, *added_date, field_names, Vector<StringView> {}));
|
||
|
||
// 19. Return ? CalendarYearMonthFromFields(calendar, addedDateFields, optionsCopy).
|
||
return calendar_year_month_from_fields(vm, calendar, *added_date_fields, options_copy);
|
||
}
|
||
|
||
}
|