Date.cpp 15 KB

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  1. /*
  2. * Copyright (c) 2020-2021, Linus Groh <linusg@serenityos.org>
  3. * Copyright (c) 2022, Tim Flynn <trflynn89@pm.me>
  4. *
  5. * SPDX-License-Identifier: BSD-2-Clause
  6. */
  7. #include <AK/NumericLimits.h>
  8. #include <AK/StringBuilder.h>
  9. #include <AK/Time.h>
  10. #include <LibCore/DateTime.h>
  11. #include <LibJS/Runtime/AbstractOperations.h>
  12. #include <LibJS/Runtime/Date.h>
  13. #include <LibJS/Runtime/GlobalObject.h>
  14. #include <LibTimeZone/TimeZone.h>
  15. #include <time.h>
  16. namespace JS {
  17. Date* Date::create(GlobalObject& global_object, double date_value)
  18. {
  19. return global_object.heap().allocate<Date>(global_object, date_value, *global_object.date_prototype());
  20. }
  21. Date::Date(double date_value, Object& prototype)
  22. : Object(prototype)
  23. , m_date_value(date_value)
  24. {
  25. }
  26. Date::~Date()
  27. {
  28. }
  29. String Date::iso_date_string() const
  30. {
  31. int year = year_from_time(m_date_value);
  32. StringBuilder builder;
  33. if (year < 0)
  34. builder.appendff("-{:06}", -year);
  35. else if (year > 9999)
  36. builder.appendff("+{:06}", year);
  37. else
  38. builder.appendff("{:04}", year);
  39. builder.append('-');
  40. builder.appendff("{:02}", month_from_time(m_date_value) + 1);
  41. builder.append('-');
  42. builder.appendff("{:02}", date_from_time(m_date_value));
  43. builder.append('T');
  44. builder.appendff("{:02}", hour_from_time(m_date_value));
  45. builder.append(':');
  46. builder.appendff("{:02}", min_from_time(m_date_value));
  47. builder.append(':');
  48. builder.appendff("{:02}", sec_from_time(m_date_value));
  49. builder.append('.');
  50. builder.appendff("{:03}", ms_from_time(m_date_value));
  51. builder.append('Z');
  52. return builder.build();
  53. }
  54. // DayWithinYear(t), https://tc39.es/ecma262/#eqn-DayWithinYear
  55. u16 day_within_year(double t)
  56. {
  57. if (!Value(t).is_finite_number())
  58. return 0;
  59. // Day(t) - DayFromYear(YearFromTime(t))
  60. return static_cast<u16>(day(t) - day_from_year(year_from_time(t)));
  61. }
  62. // DateFromTime(t), https://tc39.es/ecma262/#sec-date-number
  63. u8 date_from_time(double t)
  64. {
  65. switch (month_from_time(t)) {
  66. // DayWithinYear(t) + 1𝔽 if MonthFromTime(t) = +0𝔽
  67. case 0:
  68. return day_within_year(t) + 1;
  69. // DayWithinYear(t) - 30𝔽 if MonthFromTime(t) = 1𝔽
  70. case 1:
  71. return day_within_year(t) - 30;
  72. // DayWithinYear(t) - 58𝔽 - InLeapYear(t) if MonthFromTime(t) = 2𝔽
  73. case 2:
  74. return day_within_year(t) - 58 - in_leap_year(t);
  75. // DayWithinYear(t) - 89𝔽 - InLeapYear(t) if MonthFromTime(t) = 3𝔽
  76. case 3:
  77. return day_within_year(t) - 89 - in_leap_year(t);
  78. // DayWithinYear(t) - 119𝔽 - InLeapYear(t) if MonthFromTime(t) = 4𝔽
  79. case 4:
  80. return day_within_year(t) - 119 - in_leap_year(t);
  81. // DayWithinYear(t) - 150𝔽 - InLeapYear(t) if MonthFromTime(t) = 5𝔽
  82. case 5:
  83. return day_within_year(t) - 150 - in_leap_year(t);
  84. // DayWithinYear(t) - 180𝔽 - InLeapYear(t) if MonthFromTime(t) = 6𝔽
  85. case 6:
  86. return day_within_year(t) - 180 - in_leap_year(t);
  87. // DayWithinYear(t) - 211𝔽 - InLeapYear(t) if MonthFromTime(t) = 7𝔽
  88. case 7:
  89. return day_within_year(t) - 211 - in_leap_year(t);
  90. // DayWithinYear(t) - 242𝔽 - InLeapYear(t) if MonthFromTime(t) = 8𝔽
  91. case 8:
  92. return day_within_year(t) - 242 - in_leap_year(t);
  93. // DayWithinYear(t) - 272𝔽 - InLeapYear(t) if MonthFromTime(t) = 9𝔽
  94. case 9:
  95. return day_within_year(t) - 272 - in_leap_year(t);
  96. // DayWithinYear(t) - 303𝔽 - InLeapYear(t) if MonthFromTime(t) = 10𝔽
  97. case 10:
  98. return day_within_year(t) - 303 - in_leap_year(t);
  99. // DayWithinYear(t) - 333𝔽 - InLeapYear(t) if MonthFromTime(t) = 11𝔽
  100. case 11:
  101. return day_within_year(t) - 333 - in_leap_year(t);
  102. default:
  103. VERIFY_NOT_REACHED();
  104. }
  105. }
  106. // DaysInYear(y), https://tc39.es/ecma262/#eqn-DaysInYear
  107. u16 days_in_year(i32 y)
  108. {
  109. // 365𝔽 if (ℝ(y) modulo 4) ≠ 0
  110. if (y % 4 != 0)
  111. return 365;
  112. // 366𝔽 if (ℝ(y) modulo 4) = 0 and (ℝ(y) modulo 100) ≠ 0
  113. if (y % 4 == 0 && y % 100 != 0)
  114. return 366;
  115. // 365𝔽 if (ℝ(y) modulo 100) = 0 and (ℝ(y) modulo 400) ≠ 0
  116. if (y % 100 == 0 && y % 400 != 0)
  117. return 365;
  118. // 366𝔽 if (ℝ(y) modulo 400) = 0
  119. if (y % 400 == 0)
  120. return 366;
  121. VERIFY_NOT_REACHED();
  122. }
  123. // DayFromYear(y), https://tc39.es/ecma262/#eqn-DaysFromYear
  124. double day_from_year(i32 y)
  125. {
  126. // 𝔽(365 × (ℝ(y) - 1970) + floor((ℝ(y) - 1969) / 4) - floor((ℝ(y) - 1901) / 100) + floor((ℝ(y) - 1601) / 400))
  127. return 365.0 * (y - 1970) + floor((y - 1969) / 4.0) - floor((y - 1901) / 100.0) + floor((y - 1601) / 400.0);
  128. }
  129. // TimeFromYear(y), https://tc39.es/ecma262/#eqn-TimeFromYear
  130. double time_from_year(i32 y)
  131. {
  132. // msPerDay × DayFromYear(y)
  133. return Date::ms_per_day * day_from_year(y);
  134. }
  135. // YearFromTime(t), https://tc39.es/ecma262/#eqn-YearFromTime
  136. i32 year_from_time(double t)
  137. {
  138. // the largest integral Number y (closest to +∞) such that TimeFromYear(y) ≤ t
  139. if (!Value(t).is_finite_number())
  140. return NumericLimits<i32>::max();
  141. // Approximation using average number of milliseconds per year. We might have to adjust this guess afterwards.
  142. auto year = static_cast<i32>(t / (365.2425 * Date::ms_per_day) + 1970);
  143. auto year_t = time_from_year(year);
  144. if (year_t > t)
  145. year--;
  146. else if (year_t + days_in_year(year) * Date::ms_per_day <= t)
  147. year++;
  148. return year;
  149. }
  150. // InLeapYear(t), https://tc39.es/ecma262/#eqn-InLeapYear
  151. bool in_leap_year(double t)
  152. {
  153. // +0𝔽 if DaysInYear(YearFromTime(t)) = 365𝔽
  154. // 1𝔽 if DaysInYear(YearFromTime(t)) = 366𝔽
  155. return days_in_year(year_from_time(t)) == 366;
  156. }
  157. // MonthFromTime(t), https://tc39.es/ecma262/#eqn-MonthFromTime
  158. u8 month_from_time(double t)
  159. {
  160. auto in_leap_year = JS::in_leap_year(t);
  161. auto day_within_year = JS::day_within_year(t);
  162. // +0𝔽 if +0𝔽 ≤ DayWithinYear(t) < 31𝔽
  163. if (day_within_year < 31)
  164. return 0;
  165. // 1𝔽 if 31𝔽 ≤ DayWithinYear(t) < 59𝔽 + InLeapYear(t)
  166. if (31 <= day_within_year && day_within_year < 59 + in_leap_year)
  167. return 1;
  168. // 2𝔽 if 59𝔽 + InLeapYear(t) ≤ DayWithinYear(t) < 90𝔽 + InLeapYear(t)
  169. if (59 + in_leap_year <= day_within_year && day_within_year < 90 + in_leap_year)
  170. return 2;
  171. // 3𝔽 if 90𝔽 + InLeapYear(t) ≤ DayWithinYear(t) < 120𝔽 + InLeapYear(t)
  172. if (90 + in_leap_year <= day_within_year && day_within_year < 120 + in_leap_year)
  173. return 3;
  174. // 4𝔽 if 120𝔽 + InLeapYear(t) ≤ DayWithinYear(t) < 151𝔽 + InLeapYear(t)
  175. if (120 + in_leap_year <= day_within_year && day_within_year < 151 + in_leap_year)
  176. return 4;
  177. // 5𝔽 if 151𝔽 + InLeapYear(t) ≤ DayWithinYear(t) < 181𝔽 + InLeapYear(t)
  178. if (151 + in_leap_year <= day_within_year && day_within_year < 181 + in_leap_year)
  179. return 5;
  180. // 6𝔽 if 181𝔽 + InLeapYear(t) ≤ DayWithinYear(t) < 212𝔽 + InLeapYear(t)
  181. if (181 + in_leap_year <= day_within_year && day_within_year < 212 + in_leap_year)
  182. return 6;
  183. // 7𝔽 if 212𝔽 + InLeapYear(t) ≤ DayWithinYear(t) < 243𝔽 + InLeapYear(t)
  184. if (212 + in_leap_year <= day_within_year && day_within_year < 243 + in_leap_year)
  185. return 7;
  186. // 8𝔽 if 243𝔽 + InLeapYear(t) ≤ DayWithinYear(t) < 273𝔽 + InLeapYear(t)
  187. if (243 + in_leap_year <= day_within_year && day_within_year < 273 + in_leap_year)
  188. return 8;
  189. // 9𝔽 if 273𝔽 + InLeapYear(t) ≤ DayWithinYear(t) < 304𝔽 + InLeapYear(t)
  190. if (273 + in_leap_year <= day_within_year && day_within_year < 304 + in_leap_year)
  191. return 9;
  192. // 10𝔽 if 304𝔽 + InLeapYear(t) ≤ DayWithinYear(t) < 334𝔽 + InLeapYear(t)
  193. if (304 + in_leap_year <= day_within_year && day_within_year < 334 + in_leap_year)
  194. return 10;
  195. // 11𝔽 if 334𝔽 + InLeapYear(t) ≤ DayWithinYear(t) < 365𝔽 + InLeapYear(t)
  196. if (334 + in_leap_year <= day_within_year && day_within_year < 365 + in_leap_year)
  197. return 11;
  198. VERIFY_NOT_REACHED();
  199. }
  200. // HourFromTime(t), https://tc39.es/ecma262/#eqn-HourFromTime
  201. u8 hour_from_time(double t)
  202. {
  203. // 𝔽(floor(ℝ(t / msPerHour)) modulo HoursPerDay)
  204. return static_cast<u8>(modulo(floor(t / Date::ms_per_hour), Date::hours_per_day));
  205. }
  206. // MinFromTime(t), https://tc39.es/ecma262/#eqn-MinFromTime
  207. u8 min_from_time(double t)
  208. {
  209. // 𝔽(floor(ℝ(t / msPerMinute)) modulo MinutesPerHour)
  210. return static_cast<u8>(modulo(floor(t / Date::ms_per_minute), Date::minutes_per_hour));
  211. }
  212. // SecFromTime(t), https://tc39.es/ecma262/#eqn-SecFromTime
  213. u8 sec_from_time(double t)
  214. {
  215. // 𝔽(floor(ℝ(t / msPerSecond)) modulo SecondsPerMinute)
  216. return static_cast<u8>(modulo(floor(t / Date::ms_per_second), Date::seconds_per_minute));
  217. }
  218. // msFromTime(t), https://tc39.es/ecma262/#eqn-msFromTime
  219. u16 ms_from_time(double t)
  220. {
  221. // 𝔽(ℝ(t) modulo msPerSecond)
  222. return static_cast<u16>(modulo(t, Date::ms_per_second));
  223. }
  224. // 21.4.1.6 Week Day, https://tc39.es/ecma262/#sec-week-day
  225. u8 week_day(double t)
  226. {
  227. // 𝔽(ℝ(Day(t) + 4𝔽) modulo 7)
  228. return static_cast<u8>(modulo(day(t) + 4, 7));
  229. }
  230. // 21.4.1.7 LocalTZA ( t, isUTC ), https://tc39.es/ecma262/#sec-local-time-zone-adjustment
  231. double local_tza(double time, [[maybe_unused]] bool is_utc, Optional<StringView> time_zone_override)
  232. {
  233. // The time_zone_override parameter is non-standard, but allows callers to override the system
  234. // time zone with a specific value without setting environment variables.
  235. auto time_zone = time_zone_override.value_or(TimeZone::current_time_zone());
  236. // When isUTC is true, LocalTZA( tUTC, true ) should return the offset of the local time zone from
  237. // UTC measured in milliseconds at time represented by time value tUTC. When the result is added to
  238. // tUTC, it should yield the corresponding Number tlocal.
  239. // When isUTC is false, LocalTZA( tlocal, false ) should return the offset of the local time zone from
  240. // UTC measured in milliseconds at local time represented by Number tlocal. When the result is subtracted
  241. // from tlocal, it should yield the corresponding time value tUTC.
  242. auto time_since_epoch = Value(time).is_finite_number() ? AK::Time::from_milliseconds(time) : AK::Time::max();
  243. auto maybe_offset = TimeZone::get_time_zone_offset(time_zone, time_since_epoch);
  244. return maybe_offset.value_or(0) * 1000;
  245. }
  246. // 21.4.1.8 LocalTime ( t ), https://tc39.es/ecma262/#sec-localtime
  247. double local_time(double time)
  248. {
  249. // 1. Return t + LocalTZA(t, true).
  250. return time + local_tza(time, true);
  251. }
  252. // 21.4.1.9 UTC ( t ), https://tc39.es/ecma262/#sec-utc-t
  253. double utc_time(double time)
  254. {
  255. // 1. Return t - LocalTZA(t, false).
  256. return time - local_tza(time, false);
  257. }
  258. // 21.4.1.11 MakeTime ( hour, min, sec, ms ), https://tc39.es/ecma262/#sec-maketime
  259. Value make_time(GlobalObject& global_object, Value hour, Value min, Value sec, Value ms)
  260. {
  261. // 1. If hour is not finite or min is not finite or sec is not finite or ms is not finite, return NaN.
  262. if (!hour.is_finite_number() || !min.is_finite_number() || !sec.is_finite_number() || !ms.is_finite_number())
  263. return js_nan();
  264. // 2. Let h be 𝔽(! ToIntegerOrInfinity(hour)).
  265. auto h = MUST(hour.to_integer_or_infinity(global_object));
  266. // 3. Let m be 𝔽(! ToIntegerOrInfinity(min)).
  267. auto m = MUST(min.to_integer_or_infinity(global_object));
  268. // 4. Let s be 𝔽(! ToIntegerOrInfinity(sec)).
  269. auto s = MUST(sec.to_integer_or_infinity(global_object));
  270. // 5. Let milli be 𝔽(! ToIntegerOrInfinity(ms)).
  271. auto milli = MUST(ms.to_integer_or_infinity(global_object));
  272. // 6. Let t be ((h * msPerHour + m * msPerMinute) + s * msPerSecond) + milli, performing the arithmetic according to IEEE 754-2019 rules (that is, as if using the ECMAScript operators * and +).
  273. // NOTE: C++ arithmetic abides by IEEE 754 rules
  274. auto t = ((h * Date::ms_per_hour + m * Date::ms_per_minute) + s * Date::ms_per_second) + milli;
  275. // 7. Return t.
  276. return Value(t);
  277. }
  278. // Day(t), https://tc39.es/ecma262/#eqn-Day
  279. double day(double time_value)
  280. {
  281. return floor(time_value / Date::ms_per_day);
  282. }
  283. // TimeWithinDay(t), https://tc39.es/ecma262/#eqn-TimeWithinDay
  284. double time_within_day(double time)
  285. {
  286. // 𝔽(ℝ(t) modulo ℝ(msPerDay))
  287. return modulo(time, Date::ms_per_day);
  288. }
  289. // 21.4.1.12 MakeDay ( year, month, date ), https://tc39.es/ecma262/#sec-makeday
  290. Value make_day(GlobalObject& global_object, Value year, Value month, Value date)
  291. {
  292. // 1. If year is not finite or month is not finite or date is not finite, return NaN.
  293. if (!year.is_finite_number() || !month.is_finite_number() || !date.is_finite_number())
  294. return js_nan();
  295. // 2. Let y be 𝔽(! ToIntegerOrInfinity(year)).
  296. auto y = MUST(year.to_integer_or_infinity(global_object));
  297. // 3. Let m be 𝔽(! ToIntegerOrInfinity(month)).
  298. auto m = MUST(month.to_integer_or_infinity(global_object));
  299. // 4. Let dt be 𝔽(! ToIntegerOrInfinity(date)).
  300. auto dt = MUST(date.to_integer_or_infinity(global_object));
  301. // 5. Let ym be y + 𝔽(floor(ℝ(m) / 12)).
  302. auto ym = y + floor(m / 12);
  303. // 6. If ym is not finite, return NaN.
  304. if (!Value(ym).is_finite_number())
  305. return js_nan();
  306. // 7. Let mn be 𝔽(ℝ(m) modulo 12).
  307. auto mn = modulo(m, 12);
  308. // 8. Find a finite time value t such that YearFromTime(t) is ym and MonthFromTime(t) is mn and DateFromTime(t) is 1𝔽; but if this is not possible (because some argument is out of range), return NaN.
  309. if (!AK::is_within_range<int>(ym) || !AK::is_within_range<int>(mn + 1))
  310. return js_nan();
  311. // FIXME: We are avoiding AK::years_to_days_since_epoch here because it is implemented by looping over
  312. // the range [1970, ym), which will spin for any time value with an extremely large year.
  313. auto t = time_from_year(ym) + (day_of_year(static_cast<int>(ym), static_cast<int>(mn) + 1, 1) * Date::ms_per_day);
  314. // 9. Return Day(t) + dt - 1𝔽.
  315. return Value(day(static_cast<double>(t)) + dt - 1);
  316. }
  317. // 21.4.1.13 MakeDate ( day, time ), https://tc39.es/ecma262/#sec-makedate
  318. Value make_date(Value day, Value time)
  319. {
  320. // 1. If day is not finite or time is not finite, return NaN.
  321. if (!day.is_finite_number() || !time.is_finite_number())
  322. return js_nan();
  323. // 2. Let tv be day × msPerDay + time.
  324. auto tv = Value(day.as_double() * Date::ms_per_day + time.as_double());
  325. // 3. If tv is not finite, return NaN.
  326. if (!tv.is_finite_number())
  327. return js_nan();
  328. // 4. Return tv.
  329. return tv;
  330. }
  331. // 21.4.1.14 TimeClip ( time ), https://tc39.es/ecma262/#sec-timeclip
  332. Value time_clip(GlobalObject& global_object, Value time)
  333. {
  334. // 1. If time is not finite, return NaN.
  335. if (!time.is_finite_number())
  336. return js_nan();
  337. // 2. If abs(ℝ(time)) > 8.64 × 10^15, return NaN.
  338. if (fabs(time.as_double()) > 8.64E15)
  339. return js_nan();
  340. // 3. Return 𝔽(! ToIntegerOrInfinity(time)).
  341. return Value(MUST(time.to_integer_or_infinity(global_object)));
  342. }
  343. }