PlainYearMonth.cpp 23 KB

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  1. /*
  2. * Copyright (c) 2021-2022, Linus Groh <linusg@serenityos.org>
  3. *
  4. * SPDX-License-Identifier: BSD-2-Clause
  5. */
  6. #include <LibJS/Runtime/AbstractOperations.h>
  7. #include <LibJS/Runtime/Array.h>
  8. #include <LibJS/Runtime/GlobalObject.h>
  9. #include <LibJS/Runtime/Temporal/AbstractOperations.h>
  10. #include <LibJS/Runtime/Temporal/Calendar.h>
  11. #include <LibJS/Runtime/Temporal/Duration.h>
  12. #include <LibJS/Runtime/Temporal/PlainDate.h>
  13. #include <LibJS/Runtime/Temporal/PlainYearMonth.h>
  14. #include <LibJS/Runtime/Temporal/PlainYearMonthConstructor.h>
  15. namespace JS::Temporal {
  16. // 9 Temporal.PlainYearMonth Objects, https://tc39.es/proposal-temporal/#sec-temporal-plainyearmonth-objects
  17. PlainYearMonth::PlainYearMonth(i32 iso_year, u8 iso_month, u8 iso_day, Object& calendar, Object& prototype)
  18. : Object(prototype)
  19. , m_iso_year(iso_year)
  20. , m_iso_month(iso_month)
  21. , m_iso_day(iso_day)
  22. , m_calendar(calendar)
  23. {
  24. }
  25. void PlainYearMonth::visit_edges(Visitor& visitor)
  26. {
  27. Base::visit_edges(visitor);
  28. visitor.visit(&m_calendar);
  29. }
  30. // 9.5.1 ToTemporalYearMonth ( item [ , options ] ), https://tc39.es/proposal-temporal/#sec-temporal-totemporalyearmonth
  31. ThrowCompletionOr<PlainYearMonth*> to_temporal_year_month(GlobalObject& global_object, Value item, Object const* options)
  32. {
  33. auto& vm = global_object.vm();
  34. // 1. If options is not present, set options to undefined.
  35. // 2. Assert: Type(options) is Object or Undefined.
  36. // 3. If Type(item) is Object, then
  37. if (item.is_object()) {
  38. auto& item_object = item.as_object();
  39. // a. If item has an [[InitializedTemporalYearMonth]] internal slot, then
  40. if (is<PlainYearMonth>(item_object)) {
  41. // i. Return item.
  42. return static_cast<PlainYearMonth*>(&item_object);
  43. }
  44. // b. Let calendar be ? GetTemporalCalendarWithISODefault(item).
  45. auto* calendar = TRY(get_temporal_calendar_with_iso_default(global_object, item_object));
  46. // c. Let fieldNames be ? CalendarFields(calendar, « "month", "monthCode", "year" »).
  47. auto field_names = TRY(calendar_fields(global_object, *calendar, { "month"sv, "monthCode"sv, "year"sv }));
  48. // d. Let fields be ? PrepareTemporalFields(item, fieldNames, «»).
  49. auto* fields = TRY(prepare_temporal_fields(global_object, item_object, field_names, Vector<StringView> {}));
  50. // e. Return ? CalendarYearMonthFromFields(calendar, fields, options).
  51. return calendar_year_month_from_fields(global_object, *calendar, *fields, options);
  52. }
  53. // 4. Perform ? ToTemporalOverflow(options).
  54. (void)TRY(to_temporal_overflow(global_object, options));
  55. // 5. Let string be ? ToString(item).
  56. auto string = TRY(item.to_string(global_object));
  57. // 6. Let result be ? ParseTemporalYearMonthString(string).
  58. auto result = TRY(parse_temporal_year_month_string(global_object, string));
  59. // 7. Let calendar be ? ToTemporalCalendarWithISODefault(result.[[Calendar]]).
  60. auto* calendar = TRY(to_temporal_calendar_with_iso_default(global_object, result.calendar.has_value() ? js_string(vm, *result.calendar) : js_undefined()));
  61. // 8. Set result to ? CreateTemporalYearMonth(result.[[Year]], result.[[Month]], calendar, result.[[Day]]).
  62. auto* creation_result = TRY(create_temporal_year_month(global_object, result.year, result.month, *calendar, result.day));
  63. // 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.
  64. // 10. Return ? CalendarYearMonthFromFields(calendar, result).
  65. return calendar_year_month_from_fields(global_object, *calendar, *creation_result);
  66. }
  67. // 9.5.2 RegulateISOYearMonth ( year, month, overflow ), https://tc39.es/proposal-temporal/#sec-temporal-regulateisoyearmonth
  68. ThrowCompletionOr<ISOYearMonth> regulate_iso_year_month(GlobalObject& global_object, double year, double month, StringView overflow)
  69. {
  70. auto& vm = global_object.vm();
  71. // 1. Assert: year and month are integers.
  72. VERIFY(year == trunc(year) && month == trunc(month));
  73. // 2. Assert: overflow is either "constrain" or "reject".
  74. // NOTE: Asserted by the VERIFY_NOT_REACHED at the end
  75. // 3. If overflow is "constrain", then
  76. if (overflow == "constrain"sv) {
  77. // IMPLEMENTATION DEFINED: This is an optimization that allows us to treat `year` (a double) as normal integer from this point onwards.
  78. // This does not change the exposed behavior as the subsequent call to CreateTemporalYearMonth will check that its value is a valid ISO
  79. // values (for years: -273975 - 273975) which is a subset of this check.
  80. // If RegulateISOYearMonth is ever used outside ISOYearMonthFromFields, this may need to be changed.
  81. if (!AK::is_within_range<i32>(year))
  82. return vm.throw_completion<RangeError>(global_object, ErrorType::TemporalInvalidPlainYearMonth);
  83. // a. Return ! ConstrainISOYearMonth(year, month).
  84. return constrain_iso_year_month(year, month);
  85. }
  86. // 4. Else,
  87. else {
  88. // a. Assert: overflow is "reject".
  89. VERIFY(overflow == "reject"sv);
  90. // IMPLEMENTATION DEFINED: This is an optimization that allows us to treat these doubles as normal integers from this point onwards.
  91. // This does not change the exposed behavior as the call to IsValidISOMonth and subsequent call to CreateTemporalDateTime will check
  92. // that these values are valid ISO values (for years: -273975 - 273975, for months: 1 - 12) all of which are subsets of this check.
  93. if (!AK::is_within_range<i32>(year) || !AK::is_within_range<u8>(month))
  94. return vm.throw_completion<RangeError>(global_object, ErrorType::TemporalInvalidPlainYearMonth);
  95. // b. If ! IsValidISOMonth(month) is false, throw a RangeError exception.
  96. if (!is_valid_iso_month(month))
  97. return vm.throw_completion<RangeError>(global_object, ErrorType::TemporalInvalidPlainYearMonth);
  98. // c. Return the Record { [[Year]]: year, [[Month]]: month }.
  99. return ISOYearMonth { .year = static_cast<i32>(year), .month = static_cast<u8>(month), .reference_iso_day = 0 };
  100. }
  101. }
  102. // 9.5.3 IsValidISOMonth ( month ), https://tc39.es/proposal-temporal/#sec-temporal-isvalidisomonth
  103. bool is_valid_iso_month(u8 month)
  104. {
  105. // 1. Assert: month is an integer.
  106. // 2. If month < 1 or month > 12, then
  107. if (month < 1 || month > 12) {
  108. // a.Return false.
  109. return false;
  110. }
  111. // 3. Return true.
  112. return true;
  113. }
  114. // 9.5.4 ISOYearMonthWithinLimits ( year, month ), https://tc39.es/proposal-temporal/#sec-temporal-isoyearmonthwithinlimits
  115. bool iso_year_month_within_limits(i32 year, u8 month)
  116. {
  117. // 1. Assert: year and month are integers.
  118. // 2. If year < -271821 or year > 275760, then
  119. if (year < -271821 || year > 275760) {
  120. // a. Return false.
  121. return false;
  122. }
  123. // 3. If year is -271821 and month < 4, then
  124. if (year == -271821 && month < 4) {
  125. // a. Return false.
  126. return false;
  127. }
  128. // 4. If year is 275760 and month > 9, then
  129. if (year == 275760 && month > 9) {
  130. // a. Return false.
  131. return false;
  132. }
  133. // 5. Return true.
  134. return true;
  135. }
  136. // 9.5.5 BalanceISOYearMonth ( year, month ), https://tc39.es/proposal-temporal/#sec-temporal-balanceisoyearmonth
  137. ISOYearMonth balance_iso_year_month(double year, double month)
  138. {
  139. // 1. Assert: year and month are integers.
  140. VERIFY(year == trunc(year) && month == trunc(month));
  141. // 2. Set year to year + floor((month - 1) / 12).
  142. year += floor((month - 1) / 12);
  143. // 3. Set month to ((month - 1) modulo 12) + 1.
  144. month = modulo(month - 1, 12) + 1;
  145. // 4. Return the Record { [[Year]]: year, [[Month]]: month }.
  146. return ISOYearMonth { .year = static_cast<i32>(year), .month = static_cast<u8>(month), .reference_iso_day = 0 };
  147. }
  148. // 9.5.6 ConstrainISOYearMonth ( year, month ), https://tc39.es/proposal-temporal/#sec-temporal-constrainisoyearmonth
  149. ISOYearMonth constrain_iso_year_month(double year, double month)
  150. {
  151. // 1. Assert: year and month are integers.
  152. VERIFY(year == trunc(year) && month == trunc(month));
  153. // 2. Set month to the result of clamping month between 1 and 12.
  154. month = clamp(month, 1, 12);
  155. // 3. Return the Record { [[Year]]: year, [[Month]]: month }.
  156. // NOTE: `year` is known to be in the i32 range.
  157. return ISOYearMonth { .year = static_cast<i32>(year), .month = static_cast<u8>(month), .reference_iso_day = 0 };
  158. }
  159. // 9.5.7 CreateTemporalYearMonth ( isoYear, isoMonth, calendar, referenceISODay [ , newTarget ] ), https://tc39.es/proposal-temporal/#sec-temporal-createtemporalyearmonth
  160. ThrowCompletionOr<PlainYearMonth*> create_temporal_year_month(GlobalObject& global_object, i32 iso_year, u8 iso_month, Object& calendar, u8 reference_iso_day, FunctionObject const* new_target)
  161. {
  162. auto& vm = global_object.vm();
  163. // 1. Assert: isoYear, isoMonth, and referenceISODay are integers.
  164. // 2. Assert: Type(calendar) is Object.
  165. // 3. If IsValidISODate(isoYear, isoMonth, referenceISODay) is false, throw a RangeError exception.
  166. if (!is_valid_iso_date(iso_year, iso_month, reference_iso_day))
  167. return vm.throw_completion<RangeError>(global_object, ErrorType::TemporalInvalidPlainYearMonth);
  168. // 4. If ! ISOYearMonthWithinLimits(isoYear, isoMonth) is false, throw a RangeError exception.
  169. if (!iso_year_month_within_limits(iso_year, iso_month))
  170. return vm.throw_completion<RangeError>(global_object, ErrorType::TemporalInvalidPlainYearMonth);
  171. // 5. If newTarget is not present, set newTarget to %Temporal.PlainYearMonth%.
  172. if (!new_target)
  173. new_target = global_object.temporal_plain_year_month_constructor();
  174. // 6. Let object be ? OrdinaryCreateFromConstructor(newTarget, "%Temporal.PlainYearMonth.prototype%", « [[InitializedTemporalYearMonth]], [[ISOYear]], [[ISOMonth]], [[ISODay]], [[Calendar]] »).
  175. // 7. Set object.[[ISOYear]] to isoYear.
  176. // 8. Set object.[[ISOMonth]] to isoMonth.
  177. // 9. Set object.[[Calendar]] to calendar.
  178. // 10. Set object.[[ISODay]] to referenceISODay.
  179. auto* object = TRY(ordinary_create_from_constructor<PlainYearMonth>(global_object, *new_target, &GlobalObject::temporal_plain_year_month_prototype, iso_year, iso_month, reference_iso_day, calendar));
  180. // 11. Return object.
  181. return object;
  182. }
  183. // 9.5.8 TemporalYearMonthToString ( yearMonth, showCalendar ), https://tc39.es/proposal-temporal/#sec-temporal-temporalyearmonthtostring
  184. ThrowCompletionOr<String> temporal_year_month_to_string(GlobalObject& global_object, PlainYearMonth& year_month, StringView show_calendar)
  185. {
  186. // 1. Assert: Type(yearMonth) is Object.
  187. // 2. Assert: yearMonth has an [[InitializedTemporalYearMonth]] internal slot.
  188. // 3. Let year be ! PadISOYear(yearMonth.[[ISOYear]]).
  189. // 4. Let month be ToZeroPaddedDecimalString(yearMonth.[[ISOMonth]], 2).
  190. // 5. Let result be the string-concatenation of year, the code unit 0x002D (HYPHEN-MINUS), and month.
  191. auto result = String::formatted("{}-{:02}", pad_iso_year(year_month.iso_year()), year_month.iso_month());
  192. // 6. Let calendarID be ? ToString(yearMonth.[[Calendar]]).
  193. auto calendar_id = TRY(Value(&year_month.calendar()).to_string(global_object));
  194. // 7. If showCalendar is "always" or if calendarID is not "iso8601", then
  195. if (show_calendar == "always"sv || calendar_id != "iso8601") {
  196. // a. Let day be ToZeroPaddedDecimalString(yearMonth.[[ISODay]], 2).
  197. // b. Set result to the string-concatenation of result, the code unit 0x002D (HYPHEN-MINUS), and day.
  198. result = String::formatted("{}-{:02}", result, year_month.iso_day());
  199. }
  200. // 8. Let calendarString be ! FormatCalendarAnnotation(calendarID, showCalendar).
  201. auto calendar_string = format_calendar_annotation(calendar_id, show_calendar);
  202. // 9. Set result to the string-concatenation of result and calendarString.
  203. // 10. Return result.
  204. return String::formatted("{}{}", result, calendar_string);
  205. }
  206. // 9.5.9 DifferenceTemporalPlainYearMonth ( operation, yearMonth, other, options ), https://tc39.es/proposal-temporal/#sec-temporal-differencetemporalplainyearmonth
  207. ThrowCompletionOr<Duration*> difference_temporal_plain_year_month(GlobalObject& global_object, DifferenceOperation operation, PlainYearMonth& year_month, Value other_value, Value options_value)
  208. {
  209. auto& vm = global_object.vm();
  210. // 1. If operation is since, let sign be -1. Otherwise, let sign be 1.
  211. i8 sign = operation == DifferenceOperation::Since ? -1 : 1;
  212. // 2. Set other to ? ToTemporalYearMonth(other).
  213. auto* other = TRY(to_temporal_year_month(global_object, other_value));
  214. // 3. Let calendar be yearMonth.[[Calendar]].
  215. auto& calendar = year_month.calendar();
  216. // 4. If ? CalendarEquals(calendar, other.[[Calendar]]) is false, throw a RangeError exception.
  217. if (!TRY(calendar_equals(global_object, calendar, other->calendar())))
  218. return vm.throw_completion<RangeError>(global_object, ErrorType::TemporalDifferentCalendars);
  219. // 5. Set options to ? GetOptionsObject(options).
  220. auto const* options = TRY(get_options_object(global_object, options_value));
  221. // 6. Let smallestUnit be ? GetTemporalUnit(options, "smallestUnit", date, "month").
  222. auto smallest_unit = TRY(get_temporal_unit(global_object, *options, vm.names.smallestUnit, UnitGroup::Date, { "month"sv }));
  223. // 7. If smallestUnit is "week" or "day", throw a RangeError exception.
  224. if (smallest_unit == "week"sv || smallest_unit == "day"sv)
  225. return vm.throw_completion<RangeError>(global_object, ErrorType::OptionIsNotValidValue, *smallest_unit, "smallestUnit"sv);
  226. // 8. Let largestUnit be ? GetTemporalUnit(options, "largestUnit", date, "auto").
  227. auto largest_unit = TRY(get_temporal_unit(global_object, *options, vm.names.largestUnit, UnitGroup::Date, { "auto"sv }));
  228. // 9. If largestUnit is "week" or "day", throw a RangeError exception.
  229. if (largest_unit == "week"sv || largest_unit == "day"sv)
  230. return vm.throw_completion<RangeError>(global_object, ErrorType::OptionIsNotValidValue, *largest_unit, "largestUnit"sv);
  231. // 10. If largestUnit is "auto", set largestUnit to "year".
  232. if (largest_unit == "auto"sv)
  233. largest_unit = "year"sv;
  234. // 11. If LargerOfTwoTemporalUnits(largestUnit, smallestUnit) is not largestUnit, throw a RangeError exception.
  235. if (larger_of_two_temporal_units(*largest_unit, *smallest_unit) != largest_unit)
  236. return vm.throw_completion<RangeError>(global_object, ErrorType::TemporalInvalidUnitRange, *smallest_unit, *largest_unit);
  237. // 12. Let roundingMode be ? ToTemporalRoundingMode(options, "trunc").
  238. auto rounding_mode = TRY(to_temporal_rounding_mode(global_object, *options, "trunc"sv));
  239. // 13. If operation is since, then
  240. if (operation == DifferenceOperation::Since) {
  241. // a. Set roundingMode to ! NegateTemporalRoundingMode(roundingMode).
  242. rounding_mode = negate_temporal_rounding_mode(rounding_mode);
  243. }
  244. // 14. Let roundingIncrement be ? ToTemporalRoundingIncrement(options, undefined, false).
  245. auto rounding_increment = TRY(to_temporal_rounding_increment(global_object, *options, {}, false));
  246. // 15. Let fieldNames be ? CalendarFields(calendar, « "monthCode", "year" »).
  247. auto field_names = TRY(calendar_fields(global_object, calendar, { "monthCode"sv, "year"sv }));
  248. // 16. Let otherFields be ? PrepareTemporalFields(other, fieldNames, «»).
  249. auto* other_fields = TRY(prepare_temporal_fields(global_object, *other, field_names, Vector<StringView> {}));
  250. // 17. Perform ! CreateDataPropertyOrThrow(otherFields, "day", 1𝔽).
  251. MUST(other_fields->create_data_property_or_throw(vm.names.day, Value(1)));
  252. // 18. Let otherDate be ? CalendarDateFromFields(calendar, otherFields).
  253. auto* other_date = TRY(calendar_date_from_fields(global_object, calendar, *other_fields));
  254. // 19. Let thisFields be ? PrepareTemporalFields(yearMonth, fieldNames, «»).
  255. auto* this_fields = TRY(prepare_temporal_fields(global_object, year_month, field_names, Vector<StringView> {}));
  256. // 20. Perform ! CreateDataPropertyOrThrow(thisFields, "day", 1𝔽).
  257. MUST(this_fields->create_data_property_or_throw(vm.names.day, Value(1)));
  258. // 21. Let thisDate be ? CalendarDateFromFields(calendar, thisFields).
  259. auto* this_date = TRY(calendar_date_from_fields(global_object, calendar, *this_fields));
  260. // 22. Let untilOptions be ? MergeLargestUnitOption(options, largestUnit).
  261. auto* until_options = TRY(merge_largest_unit_option(global_object, options, *largest_unit));
  262. // 23. Let result be ? CalendarDateUntil(calendar, thisDate, otherDate, untilOptions).
  263. auto* duration = TRY(calendar_date_until(global_object, calendar, this_date, other_date, *until_options));
  264. auto result = DurationRecord { duration->years(), duration->months(), 0, 0, 0, 0, 0, 0, 0, 0 };
  265. // 24. If smallestUnit is not "month" or roundingIncrement ≠ 1, then
  266. if (smallest_unit != "month"sv || rounding_increment != 1) {
  267. // a. Set result to (? RoundDuration(result.[[Years]], result.[[Months]], 0, 0, 0, 0, 0, 0, 0, 0, roundingIncrement, smallestUnit, roundingMode, thisDate)).[[DurationRecord]].
  268. result = TRY(round_duration(global_object, result.years, result.months, 0, 0, 0, 0, 0, 0, 0, 0, rounding_increment, *smallest_unit, rounding_mode, this_date)).duration_record;
  269. }
  270. // 25. Return ! CreateTemporalDuration(sign × result.[[Years]], sign × result.[[Months]], 0, 0, 0, 0, 0, 0, 0, 0).
  271. return MUST(create_temporal_duration(global_object, sign * result.years, sign * result.months, 0, 0, 0, 0, 0, 0, 0, 0));
  272. }
  273. // 9.5.10 AddDurationToOrSubtractDurationFromPlainYearMonth ( operation, yearMonth, temporalDurationLike, options ), https://tc39.es/proposal-temporal/#sec-temporal-addtemporalplainyearmonth
  274. ThrowCompletionOr<PlainYearMonth*> add_duration_to_or_subtract_duration_from_plain_year_month(GlobalObject& global_object, ArithmeticOperation operation, PlainYearMonth& year_month, Value temporal_duration_like, Value options_value)
  275. {
  276. auto& vm = global_object.vm();
  277. // 1. Let duration be ? ToTemporalDurationRecord(temporalDurationLike).
  278. auto duration = TRY(to_temporal_duration_record(global_object, temporal_duration_like));
  279. // 2. If operation is subtract, then
  280. if (operation == ArithmeticOperation::Subtract) {
  281. // a. Set duration to ! CreateNegatedTemporalDuration(duration).
  282. // FIXME: According to the spec CreateNegatedTemporalDuration takes a Temporal.Duration object,
  283. // not a record, so we have to do some trickery. If they want to accept anything that has
  284. // the required internal slots, this should be updated in the AO's description.
  285. // We also have to convert back to a Duration Record afterwards to match the initial type.
  286. auto* actual_duration = MUST(create_temporal_duration(global_object, duration.years, duration.months, duration.weeks, duration.days, duration.hours, duration.minutes, duration.seconds, duration.milliseconds, duration.microseconds, duration.nanoseconds));
  287. auto* negated_duration = create_negated_temporal_duration(global_object, *actual_duration);
  288. duration = MUST(to_temporal_duration_record(global_object, negated_duration));
  289. }
  290. // 3. Let balanceResult be ? BalanceDuration(duration.[[Days]], duration.[[Hours]], duration.[[Minutes]], duration.[[Seconds]], duration.[[Milliseconds]], duration.[[Microseconds]], duration.[[Nanoseconds]], "day").
  291. auto balance_result = TRY(balance_duration(global_object, duration.days, duration.hours, duration.minutes, duration.seconds, duration.milliseconds, duration.microseconds, Crypto::SignedBigInteger::create_from((i64)duration.nanoseconds), "day"sv));
  292. // 4. Set options to ? GetOptionsObject(options).
  293. auto* options = TRY(get_options_object(global_object, options_value));
  294. // 5. Let calendar be yearMonth.[[Calendar]].
  295. auto& calendar = year_month.calendar();
  296. // 6. Let fieldNames be ? CalendarFields(calendar, « "monthCode", "year" »).
  297. auto field_names = TRY(calendar_fields(global_object, calendar, { "monthCode"sv, "year"sv }));
  298. // 7. Let fields be ? PrepareTemporalFields(yearMonth, fieldNames, «»).
  299. auto* fields = TRY(prepare_temporal_fields(global_object, year_month, field_names, Vector<StringView> {}));
  300. // 8. Set sign to ! DurationSign(duration.[[Years]], duration.[[Months]], duration.[[Weeks]], balanceResult.[[Days]], 0, 0, 0, 0, 0, 0).
  301. auto sign = duration_sign(duration.years, duration.months, duration.weeks, balance_result.days, 0, 0, 0, 0, 0, 0);
  302. double day;
  303. // 9. If sign < 0, then
  304. if (sign < 0) {
  305. // a. Let dayFromCalendar be ? CalendarDaysInMonth(calendar, yearMonth).
  306. auto day_from_calendar = TRY(calendar_days_in_month(global_object, calendar, year_month));
  307. // b. Let day be ? ToPositiveInteger(dayFromCalendar).
  308. day = TRY(to_positive_integer(global_object, day_from_calendar));
  309. }
  310. // 10. Else,
  311. else {
  312. // a. Let day be 1.
  313. day = 1;
  314. }
  315. // 11. Perform ! CreateDataPropertyOrThrow(fields, "day", day).
  316. MUST(fields->create_data_property_or_throw(vm.names.day, Value(day)));
  317. // 12. Let date be ? CalendarDateFromFields(calendar, fields).
  318. auto* date = TRY(calendar_date_from_fields(global_object, calendar, *fields));
  319. // 13. Let durationToAdd be ! CreateTemporalDuration(duration.[[Years]], duration.[[Months]], duration.[[Weeks]], balanceResult.[[Days]], 0, 0, 0, 0, 0, 0).
  320. auto* duration_to_add = MUST(create_temporal_duration(global_object, duration.years, duration.months, duration.weeks, balance_result.days, 0, 0, 0, 0, 0, 0));
  321. // 14. Let optionsCopy be OrdinaryObjectCreate(%Object.prototype%).
  322. auto* options_copy = Object::create(global_object, global_object.object_prototype());
  323. // 15. Let entries be ? EnumerableOwnPropertyNames(options, key+value).
  324. auto entries = TRY(options->enumerable_own_property_names(Object::PropertyKind::KeyAndValue));
  325. // 16. For each element nextEntry of entries, do
  326. for (auto& next_entry : entries) {
  327. auto key = MUST(next_entry.as_array().get_without_side_effects(0).to_property_key(global_object));
  328. auto value = next_entry.as_array().get_without_side_effects(1);
  329. // a. Perform ! CreateDataPropertyOrThrow(optionsCopy, nextEntry[0], nextEntry[1]).
  330. MUST(options_copy->create_data_property_or_throw(key, value));
  331. }
  332. // 17. Let addedDate be ? CalendarDateAdd(calendar, date, durationToAdd, options).
  333. auto* added_date = TRY(calendar_date_add(global_object, calendar, date, *duration_to_add, options));
  334. // 18. Let addedDateFields be ? PrepareTemporalFields(addedDate, fieldNames, «»).
  335. auto* added_date_fields = TRY(prepare_temporal_fields(global_object, *added_date, field_names, Vector<StringView> {}));
  336. // 19. Return ? CalendarYearMonthFromFields(calendar, addedDateFields, optionsCopy).
  337. return calendar_year_month_from_fields(global_object, calendar, *added_date_fields, options_copy);
  338. }
  339. }