ZonedDateTime.cpp 41 KB

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  1. /*
  2. * Copyright (c) 2021-2023, Linus Groh <linusg@serenityos.org>
  3. * Copyright (c) 2021-2023, Luke Wilde <lukew@serenityos.org>
  4. *
  5. * SPDX-License-Identifier: BSD-2-Clause
  6. */
  7. #include <AK/TypeCasts.h>
  8. #include <LibJS/Runtime/AbstractOperations.h>
  9. #include <LibJS/Runtime/Date.h>
  10. #include <LibJS/Runtime/GlobalObject.h>
  11. #include <LibJS/Runtime/Temporal/Calendar.h>
  12. #include <LibJS/Runtime/Temporal/Duration.h>
  13. #include <LibJS/Runtime/Temporal/Instant.h>
  14. #include <LibJS/Runtime/Temporal/PlainDate.h>
  15. #include <LibJS/Runtime/Temporal/PlainDateTime.h>
  16. #include <LibJS/Runtime/Temporal/TimeZone.h>
  17. #include <LibJS/Runtime/Temporal/ZonedDateTime.h>
  18. #include <LibJS/Runtime/Temporal/ZonedDateTimeConstructor.h>
  19. namespace JS::Temporal {
  20. // 6 Temporal.ZonedDateTime Objects, https://tc39.es/proposal-temporal/#sec-temporal-zoneddatetime-objects
  21. ZonedDateTime::ZonedDateTime(BigInt const& nanoseconds, Object& time_zone, Object& calendar, Object& prototype)
  22. : Object(ConstructWithPrototypeTag::Tag, prototype)
  23. , m_nanoseconds(nanoseconds)
  24. , m_time_zone(time_zone)
  25. , m_calendar(calendar)
  26. {
  27. }
  28. void ZonedDateTime::visit_edges(Cell::Visitor& visitor)
  29. {
  30. Base::visit_edges(visitor);
  31. visitor.visit(m_nanoseconds);
  32. visitor.visit(m_time_zone);
  33. visitor.visit(m_calendar);
  34. }
  35. // 6.5.1 InterpretISODateTimeOffset ( year, month, day, hour, minute, second, millisecond, microsecond, nanosecond, offsetBehaviour, offsetNanoseconds, timeZone, disambiguation, offsetOption, matchBehaviour ), https://tc39.es/proposal-temporal/#sec-temporal-interpretisodatetimeoffset
  36. ThrowCompletionOr<BigInt const*> interpret_iso_date_time_offset(VM& vm, i32 year, u8 month, u8 day, u8 hour, u8 minute, u8 second, u16 millisecond, u16 microsecond, u16 nanosecond, OffsetBehavior offset_behavior, double offset_nanoseconds, Value time_zone, StringView disambiguation, StringView offset_option, MatchBehavior match_behavior)
  37. {
  38. // 1. Let calendar be ! GetISO8601Calendar().
  39. auto* calendar = get_iso8601_calendar(vm);
  40. // 2. Let dateTime be ? CreateTemporalDateTime(year, month, day, hour, minute, second, millisecond, microsecond, nanosecond, calendar).
  41. auto* date_time = TRY(create_temporal_date_time(vm, year, month, day, hour, minute, second, millisecond, microsecond, nanosecond, *calendar));
  42. // 3. If offsetBehaviour is wall or offsetOption is "ignore", then
  43. if (offset_behavior == OffsetBehavior::Wall || offset_option == "ignore"sv) {
  44. // a. Let instant be ? BuiltinTimeZoneGetInstantFor(timeZone, dateTime, disambiguation).
  45. auto* instant = TRY(builtin_time_zone_get_instant_for(vm, time_zone, *date_time, disambiguation));
  46. // b. Return instant.[[Nanoseconds]].
  47. return &instant->nanoseconds();
  48. }
  49. // 4. If offsetBehaviour is exact or offsetOption is "use", then
  50. if (offset_behavior == OffsetBehavior::Exact || offset_option == "use"sv) {
  51. // a. Let epochNanoseconds be GetUTCEpochNanoseconds(year, month, day, hour, minute, second, millisecond, microsecond, nanosecond).
  52. auto epoch_nanoseconds = get_utc_epoch_nanoseconds(year, month, day, hour, minute, second, millisecond, microsecond, nanosecond);
  53. // b. Set epochNanoseconds to epochNanoseconds - ℤ(offsetNanoseconds).
  54. epoch_nanoseconds = epoch_nanoseconds.minus(Crypto::SignedBigInteger { offset_nanoseconds });
  55. // c. If ! IsValidEpochNanoseconds(epochNanoseconds) is false, throw a RangeError exception.
  56. if (!is_valid_epoch_nanoseconds(epoch_nanoseconds))
  57. return vm.throw_completion<RangeError>(ErrorType::TemporalInvalidEpochNanoseconds);
  58. // d. Return epochNanoseconds.
  59. return BigInt::create(vm, move(epoch_nanoseconds)).ptr();
  60. }
  61. // 5. Assert: offsetBehaviour is option.
  62. VERIFY(offset_behavior == OffsetBehavior::Option);
  63. // 6. Assert: offsetOption is "prefer" or "reject".
  64. VERIFY(offset_option.is_one_of("prefer"sv, "reject"sv));
  65. // 7. Let possibleInstants be ? GetPossibleInstantsFor(timeZone, dateTime).
  66. auto possible_instants = TRY(get_possible_instants_for(vm, time_zone, *date_time));
  67. // 8. For each element candidate of possibleInstants, do
  68. for (auto* candidate : possible_instants) {
  69. // a. Let candidateNanoseconds be ? GetOffsetNanosecondsFor(timeZone, candidate).
  70. auto candidate_nanoseconds = TRY(get_offset_nanoseconds_for(vm, time_zone, *candidate));
  71. // b. If candidateNanoseconds = offsetNanoseconds, then
  72. if (candidate_nanoseconds == offset_nanoseconds) {
  73. // i. Return candidate.[[Nanoseconds]].
  74. return &candidate->nanoseconds();
  75. }
  76. // c. If matchBehaviour is match minutes, then
  77. if (match_behavior == MatchBehavior::MatchMinutes) {
  78. // i. Let roundedCandidateNanoseconds be RoundNumberToIncrement(candidateNanoseconds, 60 × 10^9, "halfExpand").
  79. auto rounded_candidate_nanoseconds = round_number_to_increment(candidate_nanoseconds, 60000000000, "halfExpand"sv);
  80. // ii. If roundedCandidateNanoseconds = offsetNanoseconds, then
  81. if (rounded_candidate_nanoseconds == offset_nanoseconds) {
  82. // 1. Return candidate.[[Nanoseconds]].
  83. return &candidate->nanoseconds();
  84. }
  85. }
  86. }
  87. // 9. If offsetOption is "reject", throw a RangeError exception.
  88. if (offset_option == "reject"sv)
  89. return vm.throw_completion<RangeError>(ErrorType::TemporalInvalidZonedDateTimeOffset);
  90. // 10. Let instant be ? DisambiguatePossibleInstants(possibleInstants, timeZone, dateTime, disambiguation).
  91. auto* instant = TRY(disambiguate_possible_instants(vm, possible_instants, time_zone, *date_time, disambiguation));
  92. // 11. Return instant.[[Nanoseconds]].
  93. return &instant->nanoseconds();
  94. }
  95. // 6.5.2 ToTemporalZonedDateTime ( item [ , options ] ), https://tc39.es/proposal-temporal/#sec-temporal-totemporalzoneddatetime
  96. ThrowCompletionOr<ZonedDateTime*> to_temporal_zoned_date_time(VM& vm, Value item, Object const* options)
  97. {
  98. // 1. If options is not present, set options to undefined.
  99. // 2. Assert: Type(options) is Object or Undefined.
  100. // 3. Let offsetBehaviour be option.
  101. auto offset_behavior = OffsetBehavior::Option;
  102. // 4. Let matchBehaviour be match exactly.
  103. auto match_behavior = MatchBehavior::MatchExactly;
  104. Object* calendar = nullptr;
  105. Object* time_zone = nullptr;
  106. Optional<String> offset_string;
  107. ISODateTime result;
  108. // 5. If Type(item) is Object, then
  109. if (item.is_object()) {
  110. auto& item_object = item.as_object();
  111. // a. If item has an [[InitializedTemporalZonedDateTime]] internal slot, then
  112. if (is<ZonedDateTime>(item_object)) {
  113. // i. Return item.
  114. return &static_cast<ZonedDateTime&>(item_object);
  115. }
  116. // b. Let calendar be ? GetTemporalCalendarWithISODefault(item).
  117. calendar = TRY(get_temporal_calendar_with_iso_default(vm, item_object));
  118. // c. Let fieldNames be ? CalendarFields(calendar, « "day", "hour", "microsecond", "millisecond", "minute", "month", "monthCode", "nanosecond", "second", "year" »).
  119. auto field_names = TRY(calendar_fields(vm, *calendar, { "day"sv, "hour"sv, "microsecond"sv, "millisecond"sv, "minute"sv, "month"sv, "monthCode"sv, "nanosecond"sv, "second"sv, "year"sv }));
  120. // d. Append "timeZone" to fieldNames.
  121. field_names.append("timeZone"_string);
  122. // e. Append "offset" to fieldNames.
  123. field_names.append("offset"_string);
  124. // f. Let fields be ? PrepareTemporalFields(item, fieldNames, « "timeZone" »).
  125. auto* fields = TRY(prepare_temporal_fields(vm, item_object, field_names, Vector<StringView> { "timeZone"sv }));
  126. // g. Let timeZone be ! Get(fields, "timeZone").
  127. auto time_zone_value = MUST(fields->get(vm.names.timeZone));
  128. // h. Set timeZone to ? ToTemporalTimeZone(timeZone).
  129. time_zone = TRY(to_temporal_time_zone(vm, time_zone_value));
  130. // i. Let offsetString be ! Get(fields, "offset").
  131. auto offset_string_value = MUST(fields->get(vm.names.offset));
  132. // j. Assert: offsetString is a String or undefined.
  133. VERIFY(offset_string_value.is_string() || offset_string_value.is_undefined());
  134. // k. If offsetString is undefined, then
  135. if (offset_string_value.is_undefined()) {
  136. // i. Set offsetBehaviour to wall.
  137. offset_behavior = OffsetBehavior::Wall;
  138. } else {
  139. // NOTE: Not in the spec, since it directly assigns to offsetString in step i, but we can't do it there as it's a type mismatch.
  140. offset_string = offset_string_value.as_string().utf8_string();
  141. }
  142. // l. Let result be ? InterpretTemporalDateTimeFields(calendar, fields, options).
  143. result = TRY(interpret_temporal_date_time_fields(vm, *calendar, *fields, options));
  144. }
  145. // 6. Else,
  146. else {
  147. // a. Perform ? ToTemporalOverflow(options).
  148. (void)TRY(to_temporal_overflow(vm, options));
  149. // b. Let string be ? ToString(item).
  150. auto string = TRY(item.to_string(vm));
  151. // c. Let result be ? ParseTemporalZonedDateTimeString(string).
  152. result = TRY(parse_temporal_zoned_date_time_string(vm, string));
  153. // d. Let timeZoneName be result.[[TimeZone]].[[Name]].
  154. auto time_zone_name = result.time_zone.name;
  155. // e. Assert: timeZoneName is not undefined.
  156. VERIFY(time_zone_name.has_value());
  157. // f. If IsTimeZoneOffsetString(timeZoneName) is false, then
  158. if (!is_time_zone_offset_string(*time_zone_name)) {
  159. // i. If IsAvailableTimeZoneName(timeZoneName) is false, throw a RangeError exception.
  160. if (!is_available_time_zone_name(*time_zone_name))
  161. return vm.throw_completion<RangeError>(ErrorType::TemporalInvalidTimeZoneName, *time_zone_name);
  162. // ii. Set timeZoneName to ! CanonicalizeTimeZoneName(timeZoneName).
  163. time_zone_name = MUST_OR_THROW_OOM(canonicalize_time_zone_name(vm, *time_zone_name));
  164. }
  165. // g. Let offsetString be result.[[TimeZone]].[[OffsetString]].
  166. offset_string = move(result.time_zone.offset_string);
  167. // h. If result.[[TimeZone]].[[Z]] is true, then
  168. if (result.time_zone.z) {
  169. // i. Set offsetBehaviour to exact.
  170. offset_behavior = OffsetBehavior::Exact;
  171. }
  172. // i. Else if offsetString is undefined, then
  173. else if (!offset_string.has_value()) {
  174. // i. Set offsetBehaviour to wall.
  175. offset_behavior = OffsetBehavior::Wall;
  176. }
  177. // j. Let timeZone be ! CreateTemporalTimeZone(timeZoneName).
  178. time_zone = MUST_OR_THROW_OOM(create_temporal_time_zone(vm, *time_zone_name));
  179. // k. Let calendar be ? ToTemporalCalendarWithISODefault(result.[[Calendar]]).
  180. auto temporal_calendar_like = result.calendar.has_value()
  181. ? PrimitiveString::create(vm, result.calendar.value())
  182. : js_undefined();
  183. calendar = TRY(to_temporal_calendar_with_iso_default(vm, temporal_calendar_like));
  184. // l. Set matchBehaviour to match minutes.
  185. match_behavior = MatchBehavior::MatchMinutes;
  186. }
  187. // 7. Let offsetNanoseconds be 0.
  188. double offset_nanoseconds = 0;
  189. // 8. If offsetBehaviour is option, then
  190. if (offset_behavior == OffsetBehavior::Option) {
  191. // a. If IsTimeZoneOffsetString(offsetString) is false, throw a RangeError exception.
  192. if (!is_time_zone_offset_string(*offset_string))
  193. return vm.throw_completion<RangeError>(ErrorType::TemporalInvalidTimeZoneName, *offset_string);
  194. // a. Set offsetNanoseconds to ? ParseTimeZoneOffsetString(offsetString).
  195. offset_nanoseconds = parse_time_zone_offset_string(*offset_string);
  196. }
  197. // 9. Let disambiguation be ? ToTemporalDisambiguation(options).
  198. auto disambiguation = TRY(to_temporal_disambiguation(vm, options));
  199. // 10. Let offsetOption be ? ToTemporalOffset(options, "reject").
  200. auto offset_option = TRY(to_temporal_offset(vm, options, "reject"sv));
  201. // 11. Let epochNanoseconds be ? InterpretISODateTimeOffset(result.[[Year]], result.[[Month]], result.[[Day]], result.[[Hour]], result.[[Minute]], result.[[Second]], result.[[Millisecond]], result.[[Microsecond]], result.[[Nanosecond]], offsetBehaviour, offsetNanoseconds, timeZone, disambiguation, offsetOption, matchBehaviour).
  202. auto* epoch_nanoseconds = TRY(interpret_iso_date_time_offset(vm, result.year, result.month, result.day, result.hour, result.minute, result.second, result.millisecond, result.microsecond, result.nanosecond, offset_behavior, offset_nanoseconds, time_zone, disambiguation, offset_option, match_behavior));
  203. // 12. Return ! CreateTemporalZonedDateTime(epochNanoseconds, timeZone, calendar).
  204. return MUST(create_temporal_zoned_date_time(vm, *epoch_nanoseconds, *time_zone, *calendar));
  205. }
  206. // 6.5.3 CreateTemporalZonedDateTime ( epochNanoseconds, timeZone, calendar [ , newTarget ] ), https://tc39.es/proposal-temporal/#sec-temporal-createtemporalzoneddatetime
  207. ThrowCompletionOr<ZonedDateTime*> create_temporal_zoned_date_time(VM& vm, BigInt const& epoch_nanoseconds, Object& time_zone, Object& calendar, FunctionObject const* new_target)
  208. {
  209. auto& realm = *vm.current_realm();
  210. // 1. Assert: ! IsValidEpochNanoseconds(epochNanoseconds) is true.
  211. VERIFY(is_valid_epoch_nanoseconds(epoch_nanoseconds));
  212. // 2. If newTarget is not present, set newTarget to %Temporal.ZonedDateTime%.
  213. if (!new_target)
  214. new_target = realm.intrinsics().temporal_zoned_date_time_constructor();
  215. // 3. Let object be ? OrdinaryCreateFromConstructor(newTarget, "%Temporal.ZonedDateTime.prototype%", « [[InitializedTemporalZonedDateTime]], [[Nanoseconds]], [[TimeZone]], [[Calendar]] »).
  216. // 4. Set object.[[Nanoseconds]] to epochNanoseconds.
  217. // 5. Set object.[[TimeZone]] to timeZone.
  218. // 6. Set object.[[Calendar]] to calendar.
  219. auto object = TRY(ordinary_create_from_constructor<ZonedDateTime>(vm, *new_target, &Intrinsics::temporal_time_zone_prototype, epoch_nanoseconds, time_zone, calendar));
  220. // 7. Return object.
  221. return object.ptr();
  222. }
  223. // 6.5.4 TemporalZonedDateTimeToString ( zonedDateTime, precision, showCalendar, showTimeZone, showOffset [ , increment, unit, roundingMode ] ), https://tc39.es/proposal-temporal/#sec-temporal-temporalzoneddatetimetostring
  224. ThrowCompletionOr<String> temporal_zoned_date_time_to_string(VM& vm, ZonedDateTime& zoned_date_time, Variant<StringView, u8> const& precision, StringView show_calendar, StringView show_time_zone, StringView show_offset, Optional<u64> increment, Optional<StringView> unit, Optional<StringView> rounding_mode)
  225. {
  226. // 1. If increment is not present, set increment to 1.
  227. if (!increment.has_value())
  228. increment = 1;
  229. // 2. If unit is not present, set unit to "nanosecond".
  230. if (!unit.has_value())
  231. unit = "nanosecond"sv;
  232. // 3. If roundingMode is not present, set roundingMode to "trunc".
  233. if (!rounding_mode.has_value())
  234. rounding_mode = "trunc"sv;
  235. // 4. Let ns be ! RoundTemporalInstant(zonedDateTime.[[Nanoseconds]], increment, unit, roundingMode).
  236. auto* ns = round_temporal_instant(vm, zoned_date_time.nanoseconds(), *increment, *unit, *rounding_mode);
  237. // 5. Let timeZone be zonedDateTime.[[TimeZone]].
  238. auto& time_zone = zoned_date_time.time_zone();
  239. // 6. Let instant be ! CreateTemporalInstant(ns).
  240. auto* instant = MUST(create_temporal_instant(vm, *ns));
  241. // 7. Let isoCalendar be ! GetISO8601Calendar().
  242. auto* iso_calendar = get_iso8601_calendar(vm);
  243. // 8. Let temporalDateTime be ? BuiltinTimeZoneGetPlainDateTimeFor(timeZone, instant, isoCalendar).
  244. auto* temporal_date_time = TRY(builtin_time_zone_get_plain_date_time_for(vm, &time_zone, *instant, *iso_calendar));
  245. // 9. Let dateTimeString be ! TemporalDateTimeToString(temporalDateTime.[[ISOYear]], temporalDateTime.[[ISOMonth]], temporalDateTime.[[ISODay]], temporalDateTime.[[ISOHour]], temporalDateTime.[[ISOMinute]], temporalDateTime.[[ISOSecond]], temporalDateTime.[[ISOMillisecond]], temporalDateTime.[[ISOMicrosecond]], temporalDateTime.[[ISONanosecond]], isoCalendar, precision, "never").
  246. auto date_time_string = MUST_OR_THROW_OOM(temporal_date_time_to_string(vm, temporal_date_time->iso_year(), temporal_date_time->iso_month(), temporal_date_time->iso_day(), temporal_date_time->iso_hour(), temporal_date_time->iso_minute(), temporal_date_time->iso_second(), temporal_date_time->iso_millisecond(), temporal_date_time->iso_microsecond(), temporal_date_time->iso_nanosecond(), iso_calendar, precision, "never"sv));
  247. String offset_string;
  248. // 10. If showOffset is "never", then
  249. if (show_offset == "never"sv) {
  250. // a. Let offsetString be the empty String.
  251. offset_string = {};
  252. }
  253. // 11. Else,
  254. else {
  255. // a. Let offsetNs be ? GetOffsetNanosecondsFor(timeZone, instant).
  256. auto offset_ns = TRY(get_offset_nanoseconds_for(vm, &time_zone, *instant));
  257. // b. Let offsetString be ! FormatISOTimeZoneOffsetString(offsetNs).
  258. offset_string = MUST_OR_THROW_OOM(format_iso_time_zone_offset_string(vm, offset_ns));
  259. }
  260. String time_zone_string;
  261. // 12. If showTimeZone is "never", then
  262. if (show_time_zone == "never"sv) {
  263. // a. Let timeZoneString be the empty String.
  264. time_zone_string = {};
  265. }
  266. // 13. Else,
  267. else {
  268. // a. Let timeZoneID be ? ToString(timeZone).
  269. auto time_zone_id = TRY(Value(&time_zone).to_string(vm));
  270. // b. If showTimeZone is "critical", let flag be "!"; else let flag be the empty String.
  271. auto flag = show_time_zone == "critical"sv ? "!"sv : ""sv;
  272. // c. Let timeZoneString be the string-concatenation of the code unit 0x005B (LEFT SQUARE BRACKET), flag, timeZoneID, and the code unit 0x005D (RIGHT SQUARE BRACKET).
  273. time_zone_string = TRY_OR_THROW_OOM(vm, String::formatted("[{}{}]", flag, time_zone_id));
  274. }
  275. // 14. Let calendarString be ? MaybeFormatCalendarAnnotation(zonedDateTime.[[Calendar]], showCalendar).
  276. auto calendar_string = TRY(maybe_format_calendar_annotation(vm, &zoned_date_time.calendar(), show_calendar));
  277. // 15. Return the string-concatenation of dateTimeString, offsetString, timeZoneString, and calendarString.
  278. return TRY_OR_THROW_OOM(vm, String::formatted("{}{}{}{}", date_time_string, offset_string, time_zone_string, calendar_string));
  279. }
  280. // 6.5.5 AddZonedDateTime ( epochNanoseconds, timeZone, calendar, years, months, weeks, days, hours, minutes, seconds, milliseconds, microseconds, nanoseconds [ , options ] ), https://tc39.es/proposal-temporal/#sec-temporal-addzoneddatetime
  281. ThrowCompletionOr<BigInt*> add_zoned_date_time(VM& vm, BigInt const& epoch_nanoseconds, Value time_zone, Object& calendar, double years, double months, double weeks, double days, double hours, double minutes, double seconds, double milliseconds, double microseconds, double nanoseconds, Object* options)
  282. {
  283. // 1. If options is not present, set options to undefined.
  284. // 2. Assert: Type(options) is Object or Undefined.
  285. // 3. If all of years, months, weeks, and days are 0, then
  286. if (years == 0 && months == 0 && weeks == 0 && days == 0) {
  287. // a. Return ? AddInstant(epochNanoseconds, hours, minutes, seconds, milliseconds, microseconds, nanoseconds).
  288. return add_instant(vm, epoch_nanoseconds, hours, minutes, seconds, milliseconds, microseconds, nanoseconds);
  289. }
  290. // 4. Let instant be ! CreateTemporalInstant(epochNanoseconds).
  291. auto* instant = MUST(create_temporal_instant(vm, epoch_nanoseconds));
  292. // 5. Let temporalDateTime be ? BuiltinTimeZoneGetPlainDateTimeFor(timeZone, instant, calendar).
  293. auto* temporal_date_time = TRY(builtin_time_zone_get_plain_date_time_for(vm, time_zone, *instant, calendar));
  294. // 6. Let datePart be ! CreateTemporalDate(temporalDateTime.[[ISOYear]], temporalDateTime.[[ISOMonth]], temporalDateTime.[[ISODay]], calendar).
  295. auto* date_part = MUST(create_temporal_date(vm, temporal_date_time->iso_year(), temporal_date_time->iso_month(), temporal_date_time->iso_day(), calendar));
  296. // 7. Let dateDuration be ! CreateTemporalDuration(years, months, weeks, days, 0, 0, 0, 0, 0, 0).
  297. auto* date_duration = MUST(create_temporal_duration(vm, years, months, weeks, days, 0, 0, 0, 0, 0, 0));
  298. // 8. Let addedDate be ? CalendarDateAdd(calendar, datePart, dateDuration, options).
  299. auto* added_date = TRY(calendar_date_add(vm, calendar, date_part, *date_duration, options));
  300. // 9. Let intermediateDateTime be ? CreateTemporalDateTime(addedDate.[[ISOYear]], addedDate.[[ISOMonth]], addedDate.[[ISODay]], temporalDateTime.[[ISOHour]], temporalDateTime.[[ISOMinute]], temporalDateTime.[[ISOSecond]], temporalDateTime.[[ISOMillisecond]], temporalDateTime.[[ISOMicrosecond]], temporalDateTime.[[ISONanosecond]], calendar).
  301. auto* intermediate_date_time = TRY(create_temporal_date_time(vm, added_date->iso_year(), added_date->iso_month(), added_date->iso_day(), temporal_date_time->iso_hour(), temporal_date_time->iso_minute(), temporal_date_time->iso_second(), temporal_date_time->iso_millisecond(), temporal_date_time->iso_microsecond(), temporal_date_time->iso_nanosecond(), calendar));
  302. // 10. Let intermediateInstant be ? BuiltinTimeZoneGetInstantFor(timeZone, intermediateDateTime, "compatible").
  303. auto* intermediate_instant = TRY(builtin_time_zone_get_instant_for(vm, time_zone, *intermediate_date_time, "compatible"sv));
  304. // 11. Return ? AddInstant(intermediateInstant.[[Nanoseconds]], hours, minutes, seconds, milliseconds, microseconds, nanoseconds).
  305. return add_instant(vm, intermediate_instant->nanoseconds(), hours, minutes, seconds, milliseconds, microseconds, nanoseconds);
  306. }
  307. // 6.5.6 DifferenceZonedDateTime ( ns1, ns2, timeZone, calendar, largestUnit, options ), https://tc39.es/proposal-temporal/#sec-temporal-differencezoneddatetime
  308. ThrowCompletionOr<DurationRecord> difference_zoned_date_time(VM& vm, BigInt const& nanoseconds1, BigInt const& nanoseconds2, Object& time_zone, Object& calendar, StringView largest_unit, Object const& options)
  309. {
  310. // 1. If ns1 is ns2, then
  311. if (nanoseconds1.big_integer() == nanoseconds2.big_integer()) {
  312. // a. Return ! CreateDurationRecord(0, 0, 0, 0, 0, 0, 0, 0, 0, 0).
  313. return create_duration_record(0, 0, 0, 0, 0, 0, 0, 0, 0, 0);
  314. }
  315. // 2. Let startInstant be ! CreateTemporalInstant(ns1).
  316. auto* start_instant = MUST(create_temporal_instant(vm, nanoseconds1));
  317. // 3. Let startDateTime be ? BuiltinTimeZoneGetPlainDateTimeFor(timeZone, startInstant, calendar).
  318. auto* start_date_time = TRY(builtin_time_zone_get_plain_date_time_for(vm, &time_zone, *start_instant, calendar));
  319. // 4. Let endInstant be ! CreateTemporalInstant(ns2).
  320. auto* end_instant = MUST(create_temporal_instant(vm, nanoseconds2));
  321. // 5. Let endDateTime be ? BuiltinTimeZoneGetPlainDateTimeFor(timeZone, endInstant, calendar).
  322. auto* end_date_time = TRY(builtin_time_zone_get_plain_date_time_for(vm, &time_zone, *end_instant, calendar));
  323. // 6. Let dateDifference be ? DifferenceISODateTime(startDateTime.[[ISOYear]], startDateTime.[[ISOMonth]], startDateTime.[[ISODay]], startDateTime.[[ISOHour]], startDateTime.[[ISOMinute]], startDateTime.[[ISOSecond]], startDateTime.[[ISOMillisecond]], startDateTime.[[ISOMicrosecond]], startDateTime.[[ISONanosecond]], endDateTime.[[ISOYear]], endDateTime.[[ISOMonth]], endDateTime.[[ISODay]], endDateTime.[[ISOHour]], endDateTime.[[ISOMinute]], endDateTime.[[ISOSecond]], endDateTime.[[ISOMillisecond]], endDateTime.[[ISOMicrosecond]], endDateTime.[[ISONanosecond]], calendar, largestUnit, options).
  324. auto date_difference = TRY(difference_iso_date_time(vm, start_date_time->iso_year(), start_date_time->iso_month(), start_date_time->iso_day(), start_date_time->iso_hour(), start_date_time->iso_minute(), start_date_time->iso_second(), start_date_time->iso_millisecond(), start_date_time->iso_microsecond(), start_date_time->iso_nanosecond(), end_date_time->iso_year(), end_date_time->iso_month(), end_date_time->iso_day(), end_date_time->iso_hour(), end_date_time->iso_minute(), end_date_time->iso_second(), end_date_time->iso_millisecond(), end_date_time->iso_microsecond(), end_date_time->iso_nanosecond(), calendar, largest_unit, options));
  325. // 7. Let intermediateNs be ? AddZonedDateTime(ns1, timeZone, calendar, dateDifference.[[Years]], dateDifference.[[Months]], dateDifference.[[Weeks]], 0, 0, 0, 0, 0, 0, 0).
  326. auto* intermediate_ns = TRY(add_zoned_date_time(vm, nanoseconds1, &time_zone, calendar, date_difference.years, date_difference.months, date_difference.weeks, 0, 0, 0, 0, 0, 0, 0));
  327. // 8. Let timeRemainderNs be ns2 - intermediateNs.
  328. auto time_remainder_ns = nanoseconds2.big_integer().minus(intermediate_ns->big_integer());
  329. // 9. Let intermediate be ! CreateTemporalZonedDateTime(intermediateNs, timeZone, calendar).
  330. auto* intermediate = MUST(create_temporal_zoned_date_time(vm, *intermediate_ns, time_zone, calendar));
  331. // 10. Let result be ? NanosecondsToDays(timeRemainderNs, intermediate).
  332. auto result = TRY(nanoseconds_to_days(vm, time_remainder_ns, intermediate));
  333. // 11. Let timeDifference be ! BalanceDuration(0, 0, 0, 0, 0, 0, result.[[Nanoseconds]], "hour").
  334. auto time_difference = MUST(balance_duration(vm, 0, 0, 0, 0, 0, 0, result.nanoseconds, "hour"sv));
  335. // 12. Return ! CreateDurationRecord(dateDifference.[[Years]], dateDifference.[[Months]], dateDifference.[[Weeks]], result.[[Days]], timeDifference.[[Hours]], timeDifference.[[Minutes]], timeDifference.[[Seconds]], timeDifference.[[Milliseconds]], timeDifference.[[Microseconds]], timeDifference.[[Nanoseconds]]).
  336. return create_duration_record(date_difference.years, date_difference.months, date_difference.weeks, result.days, time_difference.hours, time_difference.minutes, time_difference.seconds, time_difference.milliseconds, time_difference.microseconds, time_difference.nanoseconds);
  337. }
  338. // 6.5.7 NanosecondsToDays ( nanoseconds, relativeTo ), https://tc39.es/proposal-temporal/#sec-temporal-nanosecondstodays
  339. ThrowCompletionOr<NanosecondsToDaysResult> nanoseconds_to_days(VM& vm, Crypto::SignedBigInteger nanoseconds, Value relative_to_value)
  340. {
  341. auto& realm = *vm.current_realm();
  342. // 1. Let dayLengthNs be nsPerDay.
  343. auto day_length_ns = ns_per_day_bigint;
  344. // 2. If nanoseconds = 0, then
  345. if (nanoseconds.is_zero()) {
  346. // a. Return the Record { [[Days]]: 0, [[Nanoseconds]]: 0, [[DayLength]]: dayLengthNs }.
  347. return NanosecondsToDaysResult { .days = 0, .nanoseconds = "0"_sbigint, .day_length = day_length_ns.to_double() };
  348. }
  349. // 3. If nanoseconds < 0, let sign be -1; else, let sign be 1.
  350. auto sign = nanoseconds.is_negative() ? -1 : 1;
  351. // 4. If Type(relativeTo) is not Object or relativeTo does not have an [[InitializedTemporalZonedDateTime]] internal slot, then
  352. if (!relative_to_value.is_object() || !is<ZonedDateTime>(relative_to_value.as_object())) {
  353. // a. Return the Record { [[Days]]: truncate(nanoseconds / dayLengthNs), [[Nanoseconds]]: (abs(nanoseconds) modulo dayLengthNs) × sign, [[DayLength]]: dayLengthNs }.
  354. return NanosecondsToDaysResult {
  355. .days = nanoseconds.divided_by(day_length_ns).quotient.to_double(),
  356. .nanoseconds = Crypto::SignedBigInteger { nanoseconds.unsigned_value() }.divided_by(day_length_ns).remainder.multiplied_by(Crypto::SignedBigInteger { sign }),
  357. .day_length = day_length_ns.to_double()
  358. };
  359. }
  360. auto& relative_to = static_cast<ZonedDateTime&>(relative_to_value.as_object());
  361. // 5. Let startNs be ℝ(relativeTo.[[Nanoseconds]]).
  362. auto& start_ns = relative_to.nanoseconds().big_integer();
  363. // 6. Let startInstant be ! CreateTemporalInstant(ℤ(startNs)).
  364. auto* start_instant = MUST(create_temporal_instant(vm, BigInt::create(vm, start_ns)));
  365. // 7. Let startDateTime be ? BuiltinTimeZoneGetPlainDateTimeFor(relativeTo.[[TimeZone]], startInstant, relativeTo.[[Calendar]]).
  366. auto* start_date_time = TRY(builtin_time_zone_get_plain_date_time_for(vm, &relative_to.time_zone(), *start_instant, relative_to.calendar()));
  367. // 8. Let endNs be startNs + nanoseconds.
  368. auto end_ns = start_ns.plus(nanoseconds);
  369. auto end_ns_bigint = BigInt::create(vm, end_ns);
  370. // 9. If ! IsValidEpochNanoseconds(ℤ(endNs)) is false, throw a RangeError exception.
  371. if (!is_valid_epoch_nanoseconds(end_ns_bigint))
  372. return vm.throw_completion<RangeError>(ErrorType::TemporalInvalidEpochNanoseconds);
  373. // 10. Let endInstant be ! CreateTemporalInstant(ℤ(endNs)).
  374. auto* end_instant = MUST(create_temporal_instant(vm, end_ns_bigint));
  375. // 11. Let endDateTime be ? BuiltinTimeZoneGetPlainDateTimeFor(relativeTo.[[TimeZone]], endInstant, relativeTo.[[Calendar]]).
  376. auto* end_date_time = TRY(builtin_time_zone_get_plain_date_time_for(vm, &relative_to.time_zone(), *end_instant, relative_to.calendar()));
  377. // 12. Let dateDifference be ? DifferenceISODateTime(startDateTime.[[ISOYear]], startDateTime.[[ISOMonth]], startDateTime.[[ISODay]], startDateTime.[[ISOHour]], startDateTime.[[ISOMinute]], startDateTime.[[ISOSecond]], startDateTime.[[ISOMillisecond]], startDateTime.[[ISOMicrosecond]], startDateTime.[[ISONanosecond]], endDateTime.[[ISOYear]], endDateTime.[[ISOMonth]], endDateTime.[[ISODay]], endDateTime.[[ISOHour]], endDateTime.[[ISOMinute]], endDateTime.[[ISOSecond]], endDateTime.[[ISOMillisecond]], endDateTime.[[ISOMicrosecond]], endDateTime.[[ISONanosecond]], relativeTo.[[Calendar]], "day", OrdinaryObjectCreate(null)).
  378. auto date_difference = TRY(difference_iso_date_time(vm, start_date_time->iso_year(), start_date_time->iso_month(), start_date_time->iso_day(), start_date_time->iso_hour(), start_date_time->iso_minute(), start_date_time->iso_second(), start_date_time->iso_millisecond(), start_date_time->iso_microsecond(), start_date_time->iso_nanosecond(), end_date_time->iso_year(), end_date_time->iso_month(), end_date_time->iso_day(), end_date_time->iso_hour(), end_date_time->iso_minute(), end_date_time->iso_second(), end_date_time->iso_millisecond(), end_date_time->iso_microsecond(), end_date_time->iso_nanosecond(), relative_to.calendar(), "day"sv, *Object::create(realm, nullptr)));
  379. // 13. Let days be dateDifference.[[Days]].
  380. auto days = date_difference.days;
  381. // 14. Let intermediateNs be ℝ(? AddZonedDateTime(ℤ(startNs), relativeTo.[[TimeZone]], relativeTo.[[Calendar]], 0, 0, 0, days, 0, 0, 0, 0, 0, 0)).
  382. auto intermediate_ns = TRY(add_zoned_date_time(vm, BigInt::create(vm, start_ns), &relative_to.time_zone(), relative_to.calendar(), 0, 0, 0, days, 0, 0, 0, 0, 0, 0))->big_integer();
  383. // 15. If sign is 1, then
  384. if (sign == 1) {
  385. // a. Repeat, while days > 0 and intermediateNs > endNs,
  386. while (days > 0 && intermediate_ns > end_ns) {
  387. // i. Set days to days - 1.
  388. days--;
  389. // ii. Set intermediateNs to ℝ(? AddZonedDateTime(ℤ(startNs), relativeTo.[[TimeZone]], relativeTo.[[Calendar]], 0, 0, 0, days, 0, 0, 0, 0, 0, 0)).
  390. intermediate_ns = TRY(add_zoned_date_time(vm, BigInt::create(vm, start_ns), &relative_to.time_zone(), relative_to.calendar(), 0, 0, 0, days, 0, 0, 0, 0, 0, 0))->big_integer();
  391. }
  392. }
  393. // 16. Set nanoseconds to endNs - intermediateNs.
  394. nanoseconds = end_ns.minus(intermediate_ns);
  395. // 17. Let done be false.
  396. // 18. Repeat, while done is false,
  397. while (true) {
  398. // a. Let oneDayFartherNs be ℝ(? AddZonedDateTime(ℤ(intermediateNs), relativeTo.[[TimeZone]], relativeTo.[[Calendar]], 0, 0, 0, sign, 0, 0, 0, 0, 0, 0)).
  399. auto one_day_farther_ns = TRY(add_zoned_date_time(vm, BigInt::create(vm, intermediate_ns), &relative_to.time_zone(), relative_to.calendar(), 0, 0, 0, sign, 0, 0, 0, 0, 0, 0))->big_integer();
  400. // b. Set dayLengthNs to oneDayFartherNs - intermediateNs.
  401. day_length_ns = one_day_farther_ns.minus(intermediate_ns);
  402. // c. If (nanoseconds - dayLengthNs) × sign ≥ 0, then
  403. if (nanoseconds.minus(day_length_ns).multiplied_by(Crypto::SignedBigInteger { sign }) >= "0"_sbigint) {
  404. // i. Set nanoseconds to nanoseconds - dayLengthNs.
  405. nanoseconds = nanoseconds.minus(day_length_ns);
  406. // ii. Set intermediateNs to oneDayFartherNs.
  407. intermediate_ns = move(one_day_farther_ns);
  408. // iii. Set days to days + sign.
  409. days += sign;
  410. }
  411. // d. Else,
  412. else {
  413. // i. Set done to true.
  414. break;
  415. }
  416. }
  417. // 19. If days < 0 and sign = 1, throw a RangeError exception.
  418. if (days < 0 && sign == 1)
  419. return vm.throw_completion<RangeError>(ErrorType::TemporalNanosecondsConvertedToDaysWithOppositeSign);
  420. // 20. If days > 0 and sign = -1, throw a RangeError exception.
  421. if (days > 0 && sign == -1)
  422. return vm.throw_completion<RangeError>(ErrorType::TemporalNanosecondsConvertedToDaysWithOppositeSign);
  423. // 21. If nanoseconds < 0 and sign = 1, throw a RangeError exception.
  424. if (nanoseconds.is_negative() && sign == 1)
  425. return vm.throw_completion<RangeError>(ErrorType::TemporalNanosecondsConvertedToRemainderOfNanosecondsWithOppositeSign);
  426. // 22. If nanoseconds > 0 and sign = -1, throw a RangeError exception.
  427. if (nanoseconds.is_positive() && sign == -1)
  428. return vm.throw_completion<RangeError>(ErrorType::TemporalNanosecondsConvertedToRemainderOfNanosecondsWithOppositeSign);
  429. // 23. If abs(nanoseconds) ≥ abs(dayLengthNs), throw a RangeError exception.
  430. auto compare_result = nanoseconds.unsigned_value().compare_to_double(fabs(day_length_ns.to_double()));
  431. if (compare_result == Crypto::UnsignedBigInteger::CompareResult::DoubleLessThanBigInt || compare_result == Crypto::UnsignedBigInteger::CompareResult::DoubleEqualsBigInt)
  432. return vm.throw_completion<RangeError>(ErrorType::TemporalNanosecondsConvertedToRemainderOfNanosecondsLongerThanDayLength);
  433. // 24. Return the Record { [[Days]]: days, [[Nanoseconds]]: nanoseconds, [[DayLength]]: abs(dayLengthNs) }.
  434. return NanosecondsToDaysResult { .days = days, .nanoseconds = move(nanoseconds), .day_length = fabs(day_length_ns.to_double()) };
  435. }
  436. // 6.5.8 DifferenceTemporalZonedDateTime ( operation, zonedDateTime, other, options ), https://tc39.es/proposal-temporal/#sec-temporal-differencetemporalzoneddatetime
  437. ThrowCompletionOr<Duration*> difference_temporal_zoned_date_time(VM& vm, DifferenceOperation operation, ZonedDateTime& zoned_date_time, Value other_value, Value options_value)
  438. {
  439. // 1. If operation is since, let sign be -1. Otherwise, let sign be 1.
  440. i8 sign = operation == DifferenceOperation::Since ? -1 : 1;
  441. // 2. Set other to ? ToTemporalZonedDateTime(other).
  442. auto* other = TRY(to_temporal_zoned_date_time(vm, other_value));
  443. // 3. If ? CalendarEquals(zonedDateTime.[[Calendar]], other.[[Calendar]]) is false, then
  444. if (!TRY(calendar_equals(vm, zoned_date_time.calendar(), other->calendar()))) {
  445. // a. Throw a RangeError exception.
  446. return vm.throw_completion<RangeError>(ErrorType::TemporalDifferentCalendars);
  447. }
  448. // 4. Let settings be ? GetDifferenceSettings(operation, options, datetime, « », "nanosecond", "hour").
  449. auto settings = TRY(get_difference_settings(vm, operation, options_value, UnitGroup::DateTime, {}, { "nanosecond"sv }, "hour"sv));
  450. // 5. If settings.[[LargestUnit]] is not one of "year", "month", "week", or "day", then
  451. if (!settings.largest_unit.is_one_of("year"sv, "month"sv, "week"sv, "day"sv)) {
  452. // a. Let differenceNs be ! DifferenceInstant(zonedDateTime.[[Nanoseconds]], other.[[Nanoseconds]], settings.[[RoundingIncrement]], settings.[[SmallestUnit]], settings.[[RoundingMode]]).
  453. auto* difference_ns = difference_instant(vm, zoned_date_time.nanoseconds(), other->nanoseconds(), settings.rounding_increment, settings.smallest_unit, settings.rounding_mode);
  454. // b. Assert: The following steps cannot fail due to overflow in the Number domain because abs(differenceNs) ≤ 2 × nsMaxInstant.
  455. // c. Let balanceResult be ! BalanceDuration(0, 0, 0, 0, 0, 0, differenceNs, settings.[[LargestUnit]]).
  456. auto balance_result = MUST(balance_duration(vm, 0, 0, 0, 0, 0, 0, difference_ns->big_integer(), settings.largest_unit));
  457. // d. Return ! CreateTemporalDuration(0, 0, 0, 0, sign × balanceResult.[[Hours]], sign × balanceResult.[[Minutes]], sign × balanceResult.[[Seconds]], sign × balanceResult.[[Milliseconds]], sign × balanceResult.[[Microseconds]], sign × balanceResult.[[Nanoseconds]]).
  458. return MUST(create_temporal_duration(vm, 0, 0, 0, 0, sign * balance_result.hours, sign * balance_result.minutes, sign * balance_result.seconds, sign * balance_result.milliseconds, sign * balance_result.microseconds, sign * balance_result.nanoseconds));
  459. }
  460. // 6. If ? TimeZoneEquals(zonedDateTime.[[TimeZone]], other.[[TimeZone]]) is false, then
  461. if (!TRY(time_zone_equals(vm, zoned_date_time.time_zone(), other->time_zone()))) {
  462. // a. Throw a RangeError exception.
  463. return vm.throw_completion<RangeError>(ErrorType::TemporalDifferentTimeZones);
  464. }
  465. // 7. Let untilOptions be ? MergeLargestUnitOption(settings.[[Options]], settings.[[LargestUnit]]).
  466. auto* until_options = TRY(merge_largest_unit_option(vm, settings.options, settings.largest_unit));
  467. // 8. Let difference be ? DifferenceZonedDateTime(zonedDateTime.[[Nanoseconds]], other.[[Nanoseconds]], zonedDateTime.[[TimeZone]], zonedDateTime.[[Calendar]], settings.[[LargestUnit]], untilOptions).
  468. auto difference = TRY(difference_zoned_date_time(vm, zoned_date_time.nanoseconds(), other->nanoseconds(), zoned_date_time.time_zone(), zoned_date_time.calendar(), settings.largest_unit, *until_options));
  469. // 9. Let roundResult be (? RoundDuration(difference.[[Years]], difference.[[Months]], difference.[[Weeks]], difference.[[Days]], difference.[[Hours]], difference.[[Minutes]], difference.[[Seconds]], difference.[[Milliseconds]], difference.[[Microseconds]], difference.[[Nanoseconds]], settings.[[RoundingIncrement]], settings.[[SmallestUnit]], settings.[[RoundingMode]], zonedDateTime)).[[DurationRecord]].
  470. auto round_result = TRY(round_duration(vm, difference.years, difference.months, difference.weeks, difference.days, difference.hours, difference.minutes, difference.seconds, difference.milliseconds, difference.microseconds, difference.nanoseconds, settings.rounding_increment, settings.smallest_unit, settings.rounding_mode, &zoned_date_time)).duration_record;
  471. // 10. Let result be ? AdjustRoundedDurationDays(roundResult.[[Years]], roundResult.[[Months]], roundResult.[[Weeks]], roundResult.[[Days]], roundResult.[[Hours]], roundResult.[[Minutes]], roundResult.[[Seconds]], roundResult.[[Milliseconds]], roundResult.[[Microseconds]], roundResult.[[Nanoseconds]], settings.[[RoundingIncrement]], settings.[[SmallestUnit]], settings.[[RoundingMode]], zonedDateTime).
  472. auto result = TRY(adjust_rounded_duration_days(vm, round_result.years, round_result.months, round_result.weeks, round_result.days, round_result.hours, round_result.minutes, round_result.seconds, round_result.milliseconds, round_result.microseconds, round_result.nanoseconds, settings.rounding_increment, settings.smallest_unit, settings.rounding_mode, &zoned_date_time));
  473. // 11. Return ! CreateTemporalDuration(sign × result.[[Years]], sign × result.[[Months]], sign × result.[[Weeks]], sign × result.[[Days]], sign × result.[[Hours]], sign × result.[[Minutes]], sign × result.[[Seconds]], sign × result.[[Milliseconds]], sign × result.[[Microseconds]], sign × result.[[Nanoseconds]]).
  474. return MUST(create_temporal_duration(vm, sign * result.years, sign * result.months, sign * result.weeks, sign * result.days, sign * result.hours, sign * result.minutes, sign * result.seconds, sign * result.milliseconds, sign * result.microseconds, sign * result.nanoseconds));
  475. }
  476. // 6.5.9 AddDurationToOrSubtractDurationFromZonedDateTime ( operation, zonedDateTime, temporalDurationLike, options ), https://tc39.es/proposal-temporal/#sec-temporal-adddurationtoOrsubtractdurationfromzoneddatetime
  477. ThrowCompletionOr<ZonedDateTime*> add_duration_to_or_subtract_duration_from_zoned_date_time(VM& vm, ArithmeticOperation operation, ZonedDateTime& zoned_date_time, Value temporal_duration_like, Value options_value)
  478. {
  479. // 1. If operation is subtract, let sign be -1. Otherwise, let sign be 1.
  480. i8 sign = operation == ArithmeticOperation::Subtract ? -1 : 1;
  481. // 2. Let duration be ? ToTemporalDurationRecord(temporalDurationLike).
  482. auto duration = TRY(to_temporal_duration_record(vm, temporal_duration_like));
  483. // 3. Set options to ? GetOptionsObject(options).
  484. auto* options = TRY(get_options_object(vm, options_value));
  485. // 4. Let timeZone be zonedDateTime.[[TimeZone]].
  486. auto& time_zone = zoned_date_time.time_zone();
  487. // 5. Let calendar be zonedDateTime.[[Calendar]].
  488. auto& calendar = zoned_date_time.calendar();
  489. // 6. Let epochNanoseconds be ? AddZonedDateTime(zonedDateTime.[[Nanoseconds]], timeZone, calendar, sign × duration.[[Years]], sign × duration.[[Months]], sign × duration.[[Weeks]], sign × duration.[[Days]], sign × duration.[[Hours]], sign × duration.[[Minutes]], sign × duration.[[Seconds]], sign × duration.[[Milliseconds]], sign × duration.[[Microseconds]], sign × duration.[[Nanoseconds]], options).
  490. auto* epoch_nanoseconds = TRY(add_zoned_date_time(vm, zoned_date_time.nanoseconds(), &time_zone, calendar, sign * duration.years, sign * duration.months, sign * duration.weeks, sign * duration.days, sign * duration.hours, sign * duration.minutes, sign * duration.seconds, sign * duration.milliseconds, sign * duration.microseconds, sign * duration.nanoseconds, options));
  491. // 7. Return ! CreateTemporalZonedDateTime(epochNanoseconds, timeZone, calendar).
  492. return MUST(create_temporal_zoned_date_time(vm, *epoch_nanoseconds, time_zone, calendar));
  493. }
  494. }