PlainTime.cpp 25 KB

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  1. /*
  2. * Copyright (c) 2021, Idan Horowitz <idan.horowitz@serenityos.org>
  3. * Copyright (c) 2021, Linus Groh <linusg@serenityos.org>
  4. *
  5. * SPDX-License-Identifier: BSD-2-Clause
  6. */
  7. #include <LibJS/Runtime/AbstractOperations.h>
  8. #include <LibJS/Runtime/GlobalObject.h>
  9. #include <LibJS/Runtime/Object.h>
  10. #include <LibJS/Runtime/Temporal/AbstractOperations.h>
  11. #include <LibJS/Runtime/Temporal/Calendar.h>
  12. #include <LibJS/Runtime/Temporal/Instant.h>
  13. #include <LibJS/Runtime/Temporal/PlainDateTime.h>
  14. #include <LibJS/Runtime/Temporal/PlainTime.h>
  15. #include <LibJS/Runtime/Temporal/PlainTimeConstructor.h>
  16. #include <LibJS/Runtime/Temporal/TimeZone.h>
  17. #include <LibJS/Runtime/Temporal/ZonedDateTime.h>
  18. namespace JS::Temporal {
  19. // 4 Temporal.PlainTime Objects, https://tc39.es/proposal-temporal/#sec-temporal-plaintime-objects
  20. PlainTime::PlainTime(u8 iso_hour, u8 iso_minute, u8 iso_second, u16 iso_millisecond, u16 iso_microsecond, u16 iso_nanosecond, Calendar& calendar, Object& prototype)
  21. : Object(prototype)
  22. , m_iso_hour(iso_hour)
  23. , m_iso_minute(iso_minute)
  24. , m_iso_second(iso_second)
  25. , m_iso_millisecond(iso_millisecond)
  26. , m_iso_microsecond(iso_microsecond)
  27. , m_iso_nanosecond(iso_nanosecond)
  28. , m_calendar(calendar)
  29. {
  30. }
  31. void PlainTime::visit_edges(Visitor& visitor)
  32. {
  33. Base::visit_edges(visitor);
  34. visitor.visit(&m_calendar);
  35. }
  36. // 4.5.2 ToTemporalTime ( item [ , overflow ] ), https://tc39.es/proposal-temporal/#sec-temporal-totemporaltime
  37. ThrowCompletionOr<PlainTime*> to_temporal_time(GlobalObject& global_object, Value item, Optional<StringView> overflow)
  38. {
  39. auto& vm = global_object.vm();
  40. // 1. If overflow is not present, set it to "constrain".
  41. if (!overflow.has_value())
  42. overflow = "constrain"sv;
  43. // 2. Assert: overflow is either "constrain" or "reject".
  44. VERIFY(overflow == "constrain"sv || overflow == "reject"sv);
  45. Optional<TemporalTime> result;
  46. // 3. If Type(item) is Object, then
  47. if (item.is_object()) {
  48. auto& item_object = item.as_object();
  49. // a. If item has an [[InitializedTemporalTime]] internal slot, then
  50. if (is<PlainTime>(item_object)) {
  51. // i. Return item.
  52. return &static_cast<PlainTime&>(item_object);
  53. }
  54. // b. If item has an [[InitializedTemporalZonedDateTime]] internal slot, then
  55. if (is<ZonedDateTime>(item_object)) {
  56. auto& zoned_date_time = static_cast<ZonedDateTime&>(item_object);
  57. // i. Let instant be ! CreateTemporalInstant(item.[[Nanoseconds]]).
  58. auto* instant = create_temporal_instant(global_object, zoned_date_time.nanoseconds()).release_value();
  59. // ii. Set plainDateTime to ? BuiltinTimeZoneGetPlainDateTimeFor(item.[[TimeZone]], instant, item.[[Calendar]]).
  60. auto* plain_date_time = TRY(builtin_time_zone_get_plain_date_time_for(global_object, &zoned_date_time.time_zone(), *instant, zoned_date_time.calendar()));
  61. // iii. Return ! CreateTemporalTime(plainDateTime.[[ISOHour]], plainDateTime.[[ISOMinute]], plainDateTime.[[ISOSecond]], plainDateTime.[[ISOMillisecond]], plainDateTime.[[ISOMicrosecond]], plainDateTime.[[ISONanosecond]]).
  62. return TRY(create_temporal_time(global_object, plain_date_time->iso_hour(), plain_date_time->iso_minute(), plain_date_time->iso_second(), plain_date_time->iso_millisecond(), plain_date_time->iso_microsecond(), plain_date_time->iso_nanosecond()));
  63. }
  64. // c. If item has an [[InitializedTemporalDateTime]] internal slot, then
  65. if (is<PlainDateTime>(item_object)) {
  66. auto& plain_date_time = static_cast<PlainDateTime&>(item_object);
  67. // i. Return ! CreateTemporalTime(item.[[ISOHour]], item.[[ISOMinute]], item.[[ISOSecond]], item.[[ISOMillisecond]], item.[[ISOMicrosecond]], item.[[ISONanosecond]]).
  68. return TRY(create_temporal_time(global_object, plain_date_time.iso_hour(), plain_date_time.iso_minute(), plain_date_time.iso_second(), plain_date_time.iso_millisecond(), plain_date_time.iso_microsecond(), plain_date_time.iso_nanosecond()));
  69. }
  70. // d. Let calendar be ? GetTemporalCalendarWithISODefault(item).
  71. auto* calendar = TRY(get_temporal_calendar_with_iso_default(global_object, item_object));
  72. // e. If ? ToString(calendar) is not "iso8601", then
  73. auto calendar_identifier = TRY(Value(calendar).to_string(global_object));
  74. if (calendar_identifier != "iso8601"sv) {
  75. // i. Throw a RangeError exception.
  76. return vm.throw_completion<RangeError>(global_object, ErrorType::TemporalInvalidCalendarIdentifier, calendar_identifier);
  77. }
  78. // f. Let result be ? ToTemporalTimeRecord(item).
  79. auto unregulated_result = TRY(to_temporal_time_record(global_object, item_object));
  80. // g. Set result to ? RegulateTime(result.[[Hour]], result.[[Minute]], result.[[Second]], result.[[Millisecond]], result.[[Microsecond]], result.[[Nanosecond]], overflow).
  81. result = TRY(regulate_time(global_object, unregulated_result.hour, unregulated_result.minute, unregulated_result.second, unregulated_result.millisecond, unregulated_result.microsecond, unregulated_result.nanosecond, *overflow));
  82. }
  83. // 4. Else,
  84. else {
  85. // a. Let string be ? ToString(item).
  86. auto string = TRY(item.to_string(global_object));
  87. // b. Let result be ? ParseTemporalTimeString(string).
  88. result = TRY(parse_temporal_time_string(global_object, string));
  89. // c. Assert: ! IsValidTime(result.[[Hour]], result.[[Minute]], result.[[Second]], result.[[Millisecond]], result.[[Microsecond]], result.[[Nanosecond]]) is true.
  90. VERIFY(is_valid_time(result->hour, result->minute, result->second, result->millisecond, result->microsecond, result->nanosecond));
  91. // d. If result.[[Calendar]] is not one of undefined or "iso8601", then
  92. if (result->calendar.has_value() && *result->calendar != "iso8601"sv) {
  93. // i. Throw a RangeError exception.
  94. return vm.throw_completion<RangeError>(global_object, ErrorType::TemporalInvalidCalendarIdentifier, *result->calendar);
  95. }
  96. }
  97. // 5. Return ? CreateTemporalTime(result.[[Hour]], result.[[Minute]], result.[[Second]], result.[[Millisecond]], result.[[Microsecond]], result.[[Nanosecond]]).
  98. return TRY(create_temporal_time(global_object, result->hour, result->minute, result->second, result->millisecond, result->microsecond, result->nanosecond));
  99. }
  100. // 4.5.3 ToPartialTime ( temporalTimeLike ), https://tc39.es/proposal-temporal/#sec-temporal-topartialtime
  101. ThrowCompletionOr<PartialUnregulatedTemporalTime> to_partial_time(GlobalObject& global_object, Object& temporal_time_like)
  102. {
  103. auto& vm = global_object.vm();
  104. // 1. Assert: Type(temporalTimeLike) is Object.
  105. // 2. Let result be the Record { [[Hour]]: undefined, [[Minute]]: undefined, [[Second]]: undefined, [[Millisecond]]: undefined, [[Microsecond]]: undefined, [[Nanosecond]]: undefined }.
  106. auto result = PartialUnregulatedTemporalTime {};
  107. // 3. Let any be false.
  108. bool any = false;
  109. // 4. For each row of Table 3, except the header row, in table order, do
  110. for (auto& [internal_slot, property] : temporal_time_like_properties<PartialUnregulatedTemporalTime, Optional<double>>(vm)) {
  111. // a. Let property be the Property value of the current row.
  112. // b. Let value be ? Get(temporalTimeLike, property).
  113. auto value = TRY(temporal_time_like.get(property));
  114. // c. If value is not undefined, then
  115. if (!value.is_undefined()) {
  116. // i. Set any to true.
  117. any = true;
  118. // ii. Set value to ? ToIntegerThrowOnInfinity(value).
  119. auto value_number = TRY(to_integer_throw_on_infinity(global_object, value, ErrorType::TemporalPropertyMustBeFinite));
  120. // iii. Set result's internal slot whose name is the Internal Slot value of the current row to value.
  121. result.*internal_slot = value_number;
  122. }
  123. }
  124. // 5. If any is false, then
  125. if (!any) {
  126. // a. Throw a TypeError exception.
  127. return vm.throw_completion<TypeError>(global_object, ErrorType::TemporalInvalidPlainTimeLikeObject);
  128. }
  129. // 6. Return result.
  130. return result;
  131. }
  132. // 4.5.4 RegulateTime ( hour, minute, second, millisecond, microsecond, nanosecond, overflow ), https://tc39.es/proposal-temporal/#sec-temporal-regulatetime
  133. ThrowCompletionOr<TemporalTime> regulate_time(GlobalObject& global_object, double hour, double minute, double second, double millisecond, double microsecond, double nanosecond, StringView overflow)
  134. {
  135. auto& vm = global_object.vm();
  136. // 1. Assert: hour, minute, second, millisecond, microsecond and nanosecond are integers.
  137. // NOTE: As the spec is currently written this assertion can fail, these are either integers _or_ infinity.
  138. // See https://github.com/tc39/proposal-temporal/issues/1672.
  139. // 2. Assert: overflow is either "constrain" or "reject".
  140. // NOTE: Asserted by the VERIFY_NOT_REACHED at the end
  141. // 3. If overflow is "constrain", then
  142. if (overflow == "constrain"sv) {
  143. // a. Return ! ConstrainTime(hour, minute, second, millisecond, microsecond, nanosecond).
  144. return constrain_time(hour, minute, second, millisecond, microsecond, nanosecond);
  145. }
  146. // 4. If overflow is "reject", then
  147. if (overflow == "reject"sv) {
  148. // a. If ! IsValidTime(hour, minute, second, millisecond, microsecond, nanosecond) is false, throw a RangeError exception.
  149. if (!is_valid_time(hour, minute, second, millisecond, microsecond, nanosecond))
  150. return vm.throw_completion<RangeError>(global_object, ErrorType::TemporalInvalidPlainTime);
  151. // b. Return the Record { [[Hour]]: hour, [[Minute]]: minute, [[Second]]: second, [[Millisecond]]: millisecond, [[Microsecond]]: microsecond, [[Nanosecond]]: nanosecond }.
  152. return TemporalTime { .hour = static_cast<u8>(hour), .minute = static_cast<u8>(minute), .second = static_cast<u8>(second), .millisecond = static_cast<u16>(millisecond), .microsecond = static_cast<u16>(microsecond), .nanosecond = static_cast<u16>(nanosecond) };
  153. }
  154. VERIFY_NOT_REACHED();
  155. }
  156. // 4.5.5 IsValidTime ( hour, minute, second, millisecond, microsecond, nanosecond ), https://tc39.es/proposal-temporal/#sec-temporal-isvalidtime
  157. bool is_valid_time(double hour, double minute, double second, double millisecond, double microsecond, double nanosecond)
  158. {
  159. // 1. Assert: hour, minute, second, millisecond, microsecond, and nanosecond are integers.
  160. // 2. If hour < 0 or hour > 23, then
  161. if (hour > 23) {
  162. // a. Return false.
  163. return false;
  164. }
  165. // 3. If minute < 0 or minute > 59, then
  166. if (minute > 59) {
  167. // a. Return false.
  168. return false;
  169. }
  170. // 4. If second < 0 or second > 59, then
  171. if (second > 59) {
  172. // a. Return false.
  173. return false;
  174. }
  175. // 5. If millisecond < 0 or millisecond > 999, then
  176. if (millisecond > 999) {
  177. // a. Return false.
  178. return false;
  179. }
  180. // 6. If microsecond < 0 or microsecond > 999, then
  181. if (microsecond > 999) {
  182. // a. Return false.
  183. return false;
  184. }
  185. // 7. If nanosecond < 0 or nanosecond > 999, then
  186. if (nanosecond > 999) {
  187. // a. Return false.
  188. return false;
  189. }
  190. // 8. Return true.
  191. return true;
  192. }
  193. // 4.5.6 BalanceTime ( hour, minute, second, millisecond, microsecond, nanosecond ), https://tc39.es/proposal-temporal/#sec-temporal-balancetime
  194. DaysAndTime balance_time(i64 hour, i64 minute, i64 second, i64 millisecond, i64 microsecond, i64 nanosecond)
  195. {
  196. // 1. Assert: hour, minute, second, millisecond, microsecond, and nanosecond are integers.
  197. // 2. Set microsecond to microsecond + floor(nanosecond / 1000).
  198. microsecond += nanosecond / 1000;
  199. // 3. Set nanosecond to nanosecond modulo 1000.
  200. nanosecond %= 1000;
  201. // 4. Set millisecond to millisecond + floor(microsecond / 1000).
  202. millisecond += microsecond / 1000;
  203. // 5. Set microsecond to microsecond modulo 1000.
  204. microsecond %= 1000;
  205. // 6. Set second to second + floor(millisecond / 1000).
  206. second += millisecond / 1000;
  207. // 7. Set millisecond to millisecond modulo 1000.
  208. millisecond %= 1000;
  209. // 8. Set minute to minute + floor(second / 60).
  210. minute += second / 60;
  211. // 9. Set second to second modulo 60.
  212. second %= 60;
  213. // 10. Set hour to hour + floor(minute / 60).
  214. hour += minute / 60;
  215. // 11. Set minute to minute modulo 60.
  216. minute %= 60;
  217. // 12. Let days be floor(hour / 24).
  218. u8 days = hour / 24;
  219. // 13. Set hour to hour modulo 24.
  220. hour %= 24;
  221. // 14. Return the Record { [[Days]]: days, [[Hour]]: hour, [[Minute]]: minute, [[Second]]: second, [[Millisecond]]: millisecond, [[Microsecond]]: microsecond, [[Nanosecond]]: nanosecond }.
  222. return DaysAndTime {
  223. .days = static_cast<i32>(days),
  224. .hour = static_cast<u8>(hour),
  225. .minute = static_cast<u8>(minute),
  226. .second = static_cast<u8>(second),
  227. .millisecond = static_cast<u16>(millisecond),
  228. .microsecond = static_cast<u16>(microsecond),
  229. .nanosecond = static_cast<u16>(nanosecond),
  230. };
  231. }
  232. // 4.5.7 ConstrainTime ( hour, minute, second, millisecond, microsecond, nanosecond ), https://tc39.es/proposal-temporal/#sec-temporal-constraintime
  233. TemporalTime constrain_time(double hour, double minute, double second, double millisecond, double microsecond, double nanosecond)
  234. {
  235. // 1. Assert: hour, minute, second, millisecond, microsecond, and nanosecond are integers.
  236. // 2. Set hour to ! ConstrainToRange(hour, 0, 23).
  237. hour = constrain_to_range(hour, 0, 23);
  238. // 3. Set minute to ! ConstrainToRange(minute, 0, 59).
  239. minute = constrain_to_range(minute, 0, 59);
  240. // 4. Set second to ! ConstrainToRange(second, 0, 59).
  241. second = constrain_to_range(second, 0, 59);
  242. // 5. Set millisecond to ! ConstrainToRange(millisecond, 0, 999).
  243. millisecond = constrain_to_range(millisecond, 0, 999);
  244. // 6. Set microsecond to ! ConstrainToRange(microsecond, 0, 999).
  245. microsecond = constrain_to_range(microsecond, 0, 999);
  246. // 7. Set nanosecond to ! ConstrainToRange(nanosecond, 0, 999).
  247. nanosecond = constrain_to_range(nanosecond, 0, 999);
  248. // 8. Return the Record { [[Hour]]: hour, [[Minute]]: minute, [[Second]]: second, [[Millisecond]]: millisecond, [[Microsecond]]: microsecond, [[Nanosecond]]: nanosecond }.
  249. return TemporalTime { .hour = static_cast<u8>(hour), .minute = static_cast<u8>(minute), .second = static_cast<u8>(second), .millisecond = static_cast<u16>(millisecond), .microsecond = static_cast<u16>(microsecond), .nanosecond = static_cast<u16>(nanosecond) };
  250. }
  251. // 4.5.8 CreateTemporalTime ( hour, minute, second, millisecond, microsecond, nanosecond [ , newTarget ] ), https://tc39.es/proposal-temporal/#sec-temporal-createtemporaltime
  252. ThrowCompletionOr<PlainTime*> create_temporal_time(GlobalObject& global_object, u8 hour, u8 minute, u8 second, u16 millisecond, u16 microsecond, u16 nanosecond, FunctionObject const* new_target)
  253. {
  254. auto& vm = global_object.vm();
  255. // 1. Assert: hour, minute, second, millisecond, microsecond and nanosecond are integers.
  256. // 2. If ! IsValidTime(hour, minute, second, millisecond, microsecond, nanosecond) is false, throw a RangeError exception.
  257. if (!is_valid_time(hour, minute, second, millisecond, microsecond, nanosecond))
  258. return vm.throw_completion<RangeError>(global_object, ErrorType::TemporalInvalidPlainTime);
  259. // 3. If newTarget is not present, set it to %Temporal.PlainTime%.
  260. if (!new_target)
  261. new_target = global_object.temporal_plain_time_constructor();
  262. // 4. Let object be ? OrdinaryCreateFromConstructor(newTarget, "%Temporal.PlainTime.prototype%", « [[InitializedTemporalTime]], [[ISOHour]], [[ISOMinute]], [[ISOSecond]], [[ISOMillisecond]], [[ISOMicrosecond]], [[ISONanosecond]], [[Calendar]] »).
  263. // 5. Set object.[[ISOHour]] to hour.
  264. // 6. Set object.[[ISOMinute]] to minute.
  265. // 7. Set object.[[ISOSecond]] to second.
  266. // 8. Set object.[[ISOMillisecond]] to millisecond.
  267. // 9. Set object.[[ISOMicrosecond]] to microsecond.
  268. // 10. Set object.[[ISONanosecond]] to nanosecond.
  269. // 11. Set object.[[Calendar]] to ! GetISO8601Calendar().
  270. auto* object = TRY(ordinary_create_from_constructor<PlainTime>(global_object, *new_target, &GlobalObject::temporal_plain_time_prototype, hour, minute, second, millisecond, microsecond, nanosecond, *get_iso8601_calendar(global_object)));
  271. // 12. Return object.
  272. return object;
  273. }
  274. // 4.5.9 ToTemporalTimeRecord ( temporalTimeLike ), https://tc39.es/proposal-temporal/#sec-temporal-totemporaltimerecord
  275. ThrowCompletionOr<UnregulatedTemporalTime> to_temporal_time_record(GlobalObject& global_object, Object const& temporal_time_like)
  276. {
  277. auto& vm = global_object.vm();
  278. // 1. Assert: Type(temporalTimeLike) is Object.
  279. // 2. Let result be the Record { [[Hour]]: undefined, [[Minute]]: undefined, [[Second]]: undefined, [[Millisecond]]: undefined, [[Microsecond]]: undefined, [[Nanosecond]]: undefined }.
  280. auto result = UnregulatedTemporalTime {};
  281. // 3. For each row of Table 3, except the header row, in table order, do
  282. for (auto& [internal_slot, property] : temporal_time_like_properties<UnregulatedTemporalTime, double>(vm)) {
  283. // a. Let property be the Property value of the current row.
  284. // b. Let value be ? Get(temporalTimeLike, property).
  285. auto value = TRY(temporal_time_like.get(property));
  286. // c. If value is undefined, then
  287. if (value.is_undefined()) {
  288. // i. Throw a TypeError exception.
  289. return vm.throw_completion<TypeError>(global_object, ErrorType::MissingRequiredProperty, property);
  290. }
  291. // d. Set value to ? ToIntegerThrowOnInfinity(value).
  292. auto value_number = TRY(to_integer_throw_on_infinity(global_object, value, ErrorType::TemporalPropertyMustBeFinite));
  293. // e. Set result's internal slot whose name is the Internal Slot value of the current row to value.
  294. result.*internal_slot = value_number;
  295. }
  296. // 4. Return result.
  297. return result;
  298. }
  299. // 4.5.10 TemporalTimeToString ( hour, minute, second, millisecond, microsecond, nanosecond, precision ), https://tc39.es/proposal-temporal/#sec-temporal-temporaltimetostring
  300. String temporal_time_to_string(u8 hour, u8 minute, u8 second, u16 millisecond, u16 microsecond, u16 nanosecond, Variant<StringView, u8> const& precision)
  301. {
  302. // 1. Assert: hour, minute, second, millisecond, microsecond and nanosecond are integers.
  303. // 2. Let hour be hour formatted as a two-digit decimal number, padded to the left with a zero if necessary.
  304. // 3. Let minute be minute formatted as a two-digit decimal number, padded to the left with a zero if necessary.
  305. // 4. Let seconds be ! FormatSecondsStringPart(second, millisecond, microsecond, nanosecond, precision).
  306. auto seconds = format_seconds_string_part(second, millisecond, microsecond, nanosecond, precision);
  307. // 5. Return the string-concatenation of hour, the code unit 0x003A (COLON), minute, and seconds.
  308. return String::formatted("{:02}:{:02}{}", hour, minute, seconds);
  309. }
  310. // 4.5.11 CompareTemporalTime ( h1, min1, s1, ms1, mus1, ns1, h2, min2, s2, ms2, mus2, ns2 ), https://tc39.es/proposal-temporal/#sec-temporal-comparetemporaltime
  311. i8 compare_temporal_time(u8 hour1, u8 minute1, u8 second1, u16 millisecond1, u16 microsecond1, u16 nanosecond1, u8 hour2, u8 minute2, u8 second2, u16 millisecond2, u16 microsecond2, u16 nanosecond2)
  312. {
  313. // 1. Assert: h1, min1, s1, ms1, mus1, ns1, h2, min2, s2, ms2, mus2, and ns2 are integers.
  314. // 2. If h1 > h2, return 1.
  315. if (hour1 > hour2)
  316. return 1;
  317. // 3. If h1 < h2, return -1.
  318. if (hour1 < hour2)
  319. return -1;
  320. // 4. If min1 > min2, return 1.
  321. if (minute1 > minute2)
  322. return 1;
  323. // 5. If min1 < min2, return -1.
  324. if (minute1 < minute2)
  325. return -1;
  326. // 6. If s1 > s2, return 1.
  327. if (second1 > second2)
  328. return 1;
  329. // 7. If s1 < s2, return -1.
  330. if (second1 < second2)
  331. return -1;
  332. // 8. If ms1 > ms2, return 1.
  333. if (millisecond1 > millisecond2)
  334. return 1;
  335. // 9. If ms1 < ms2, return -1.
  336. if (millisecond1 < millisecond2)
  337. return -1;
  338. // 10. If mus1 > mus2, return 1.
  339. if (microsecond1 > microsecond2)
  340. return 1;
  341. // 11. If mus1 < mus2, return -1.
  342. if (microsecond1 < microsecond2)
  343. return -1;
  344. // 12. If ns1 > ns2, return 1.
  345. if (nanosecond1 > nanosecond2)
  346. return 1;
  347. // 13. If ns1 < ns2, return -1.
  348. if (nanosecond1 < nanosecond2)
  349. return -1;
  350. // 14. Return 0.
  351. return 0;
  352. }
  353. // 4.5.13 RoundTime ( hour, minute, second, millisecond, microsecond, nanosecond, increment, unit, roundingMode [ , dayLengthNs ] ), https://tc39.es/proposal-temporal/#sec-temporal-roundtime
  354. DaysAndTime round_time(u8 hour, u8 minute, u8 second, u16 millisecond, u16 microsecond, u16 nanosecond, u64 increment, StringView unit, StringView rounding_mode, Optional<double> day_length_ns)
  355. {
  356. // 1. Assert: hour, minute, second, millisecond, microsecond, nanosecond, and increment are integers.
  357. // 2. Let fractionalSecond be nanosecond × 10−9 + microsecond × 10−6 + millisecond × 10−3 + second.
  358. double fractional_second = nanosecond * 0.000000001 + microsecond * 0.000001 + millisecond * 0.001 + second;
  359. double quantity;
  360. // 3. If unit is "day", then
  361. if (unit == "day"sv) {
  362. // a. If dayLengthNs is not present, set it to 8.64 × 10^13.
  363. if (!day_length_ns.has_value())
  364. day_length_ns = 86400000000000;
  365. // b. Let quantity be (((((hour × 60 + minute) × 60 + second) × 1000 + millisecond) × 1000 + microsecond) × 1000 + nanosecond) / dayLengthNs.
  366. quantity = (((((hour * 60 + minute) * 60 + second) * 1000 + millisecond) * 1000 + microsecond) * 1000 + nanosecond) / *day_length_ns;
  367. }
  368. // 4. Else if unit is "hour", then
  369. else if (unit == "hour"sv) {
  370. // a. Let quantity be (fractionalSecond / 60 + minute) / 60 + hour.
  371. quantity = (fractional_second / 60 + minute) / 60 + hour;
  372. }
  373. // 5. Else if unit is "minute", then
  374. else if (unit == "minute"sv) {
  375. // a. Let quantity be fractionalSecond / 60 + minute.
  376. quantity = fractional_second / 60 + minute;
  377. }
  378. // 6. Else if unit is "second", then
  379. else if (unit == "second"sv) {
  380. // a. Let quantity be fractionalSecond.
  381. quantity = fractional_second;
  382. }
  383. // 7. Else if unit is "millisecond", then
  384. else if (unit == "millisecond"sv) {
  385. // a. Let quantity be nanosecond × 10−6 + microsecond × 10−3 + millisecond.
  386. quantity = nanosecond * 0.000001 + 0.001 * microsecond + millisecond;
  387. }
  388. // 8. Else if unit is "microsecond", then
  389. else if (unit == "microsecond"sv) {
  390. // a. Let quantity be nanosecond × 10−3 + microsecond.
  391. quantity = nanosecond * 0.001 + microsecond;
  392. }
  393. // 9. Else,
  394. else {
  395. // a. Assert: unit is "nanosecond".
  396. VERIFY(unit == "nanosecond"sv);
  397. // b. Let quantity be nanosecond.
  398. quantity = nanosecond;
  399. }
  400. // 10. Let result be ! RoundNumberToIncrement(quantity, increment, roundingMode).
  401. auto result = round_number_to_increment(quantity, increment, rounding_mode);
  402. // If unit is "day", then
  403. if (unit == "day"sv) {
  404. // a. Return the Record { [[Days]]: result, [[Hour]]: 0, [[Minute]]: 0, [[Second]]: 0, [[Millisecond]]: 0, [[Microsecond]]: 0, [[Nanosecond]]: 0 }.
  405. return DaysAndTime { .days = (i32)result, .hour = 0, .minute = 0, .second = 0, .millisecond = 0, .microsecond = 0, .nanosecond = 0 };
  406. }
  407. // 12. If unit is "hour", then
  408. if (unit == "hour"sv) {
  409. // a. Return ! BalanceTime(result, 0, 0, 0, 0, 0).
  410. return balance_time(result, 0, 0, 0, 0, 0);
  411. }
  412. // 13. If unit is "minute", then
  413. if (unit == "minute"sv) {
  414. // a. Return ! BalanceTime(hour, result, 0, 0, 0, 0).
  415. return balance_time(hour, result, 0, 0, 0, 0);
  416. }
  417. // 14. If unit is "second", then
  418. if (unit == "second"sv) {
  419. // a. Return ! BalanceTime(hour, minute, result, 0, 0, 0).
  420. return balance_time(hour, minute, result, 0, 0, 0);
  421. }
  422. // 15. If unit is "millisecond", then
  423. if (unit == "millisecond"sv) {
  424. // a. Return ! BalanceTime(hour, minute, second, result, 0, 0).
  425. return balance_time(hour, minute, second, result, 0, 0);
  426. }
  427. // 16. If unit is "microsecond", then
  428. if (unit == "microsecond"sv) {
  429. // a. Return ! BalanceTime(hour, minute, second, millisecond, result, 0).
  430. return balance_time(hour, minute, second, millisecond, result, 0);
  431. }
  432. // 17. Assert: unit is "nanosecond".
  433. VERIFY(unit == "nanosecond"sv);
  434. // 18. Return ! BalanceTime(hour, minute, second, millisecond, microsecond, result).
  435. return balance_time(hour, minute, second, millisecond, microsecond, result);
  436. }
  437. }