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		ee608f58ee
		
	
	
	
	
		
			
			As the specification says "but if this is not possible (because some argument is out of range), return NaN."
		
			
				
	
	
		
			367 lines
		
	
	
	
		
			13 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			367 lines
		
	
	
	
		
			13 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
| /*
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|  * Copyright (c) 2020-2021, Linus Groh <linusg@serenityos.org>
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|  *
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|  * SPDX-License-Identifier: BSD-2-Clause
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|  */
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| 
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| #include <AK/StringBuilder.h>
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| #include <LibCore/DateTime.h>
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| #include <LibJS/Runtime/Date.h>
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| #include <LibJS/Runtime/GlobalObject.h>
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| #include <time.h>
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| 
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| namespace JS {
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| 
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| Date* Date::create(GlobalObject& global_object, Core::DateTime datetime, i16 milliseconds, bool is_invalid)
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| {
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|     return global_object.heap().allocate<Date>(global_object, datetime, milliseconds, is_invalid, *global_object.date_prototype());
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| }
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| 
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| Date::Date(Core::DateTime datetime, i16 milliseconds, bool is_invalid, Object& prototype)
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|     : Object(prototype)
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|     , m_datetime(datetime)
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|     , m_milliseconds(milliseconds)
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|     , m_is_invalid(is_invalid)
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| {
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| }
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| 
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| Date::~Date()
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| {
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| }
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| 
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| tm Date::to_utc_tm() const
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| {
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|     time_t timestamp = m_datetime.timestamp();
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|     struct tm tm;
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|     gmtime_r(×tamp, &tm);
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|     return tm;
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| }
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| 
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| int Date::utc_date() const
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| {
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|     return to_utc_tm().tm_mday;
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| }
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| 
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| int Date::utc_day() const
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| {
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|     return to_utc_tm().tm_wday;
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| }
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| 
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| int Date::utc_full_year() const
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| {
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|     return to_utc_tm().tm_year + 1900;
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| }
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| 
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| int Date::utc_hours() const
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| {
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|     return to_utc_tm().tm_hour;
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| }
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| 
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| int Date::utc_minutes() const
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| {
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|     return to_utc_tm().tm_min;
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| }
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| 
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| int Date::utc_month() const
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| {
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|     return to_utc_tm().tm_mon;
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| }
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| 
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| int Date::utc_seconds() const
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| {
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|     return to_utc_tm().tm_sec;
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| }
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| 
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| String Date::gmt_date_string() const
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| {
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|     // Mon, 18 Dec 1995 17:28:35 GMT
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|     // FIXME: Note that we're totally cheating with the timezone part here..
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|     return datetime().to_string("%a, %e %b %Y %T GMT");
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| }
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| 
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| String Date::iso_date_string() const
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| {
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|     auto tm = to_utc_tm();
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|     int year = tm.tm_year + 1900;
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|     int month = tm.tm_mon + 1;
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| 
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|     StringBuilder builder;
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|     if (year < 0)
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|         builder.appendff("-{:06}", -year);
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|     else if (year > 9999)
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|         builder.appendff("+{:06}", year);
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|     else
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|         builder.appendff("{:04}", year);
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|     builder.append('-');
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|     builder.appendff("{:02}", month);
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|     builder.append('-');
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|     builder.appendff("{:02}", tm.tm_mday);
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|     builder.append('T');
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|     builder.appendff("{:02}", tm.tm_hour);
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|     builder.append(':');
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|     builder.appendff("{:02}", tm.tm_min);
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|     builder.append(':');
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|     builder.appendff("{:02}", tm.tm_sec);
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|     builder.append('.');
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|     builder.appendff("{:03}", m_milliseconds);
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|     builder.append('Z');
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| 
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|     return builder.build();
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| }
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| 
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| // https://tc39.es/ecma262/#eqn-HoursPerDay
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| static constexpr double HOURS_PER_DAY = 24;
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| // https://tc39.es/ecma262/#eqn-MinutesPerHour
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| static constexpr double MINUTES_PER_HOUR = 60;
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| // https://tc39.es/ecma262/#eqn-SecondsPerMinute
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| static constexpr double SECONDS_PER_MINUTE = 60;
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| // https://tc39.es/ecma262/#eqn-msPerSecond
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| static constexpr double MS_PER_SECOND = 1000;
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| // https://tc39.es/ecma262/#eqn-msPerMinute
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| static constexpr double MS_PER_MINUTE = 60000;
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| // https://tc39.es/ecma262/#eqn-msPerHour
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| static constexpr double MS_PER_HOUR = 3600000;
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| // https://tc39.es/ecma262/#eqn-msPerDay
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| static constexpr double MS_PER_DAY = 86400000;
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| 
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| // DayWithinYear(t), https://tc39.es/ecma262/#eqn-DayWithinYear
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| u16 day_within_year(double t)
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| {
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|     // Day(t) - DayFromYear(YearFromTime(t))
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|     return static_cast<u16>(day(t) - day_from_year(year_from_time(t)));
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| }
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| 
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| // DateFromTime(t), https://tc39.es/ecma262/#sec-date-number
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| u8 date_from_time(double t)
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| {
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|     switch (month_from_time(t)) {
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|     // DayWithinYear(t) + 1𝔽 if MonthFromTime(t) = +0𝔽
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|     case 0:
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|         return day_within_year(t) + 1;
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|     // DayWithinYear(t) - 30𝔽 if MonthFromTime(t) = 1𝔽
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|     case 1:
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|         return day_within_year(t) - 30;
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|     // DayWithinYear(t) - 58𝔽 - InLeapYear(t) if MonthFromTime(t) = 2𝔽
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|     case 2:
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|         return day_within_year(t) - 58 - in_leap_year(t);
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|     // DayWithinYear(t) - 89𝔽 - InLeapYear(t) if MonthFromTime(t) = 3𝔽
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|     case 3:
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|         return day_within_year(t) - 89 - in_leap_year(t);
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|     // DayWithinYear(t) - 119𝔽 - InLeapYear(t) if MonthFromTime(t) = 4𝔽
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|     case 4:
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|         return day_within_year(t) - 119 - in_leap_year(t);
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|     // DayWithinYear(t) - 150𝔽 - InLeapYear(t) if MonthFromTime(t) = 5𝔽
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|     case 5:
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|         return day_within_year(t) - 150 - in_leap_year(t);
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|     // DayWithinYear(t) - 180𝔽 - InLeapYear(t) if MonthFromTime(t) = 6𝔽
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|     case 6:
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|         return day_within_year(t) - 180 - in_leap_year(t);
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|     // DayWithinYear(t) - 211𝔽 - InLeapYear(t) if MonthFromTime(t) = 7𝔽
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|     case 7:
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|         return day_within_year(t) - 211 - in_leap_year(t);
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|     // DayWithinYear(t) - 242𝔽 - InLeapYear(t) if MonthFromTime(t) = 8𝔽
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|     case 8:
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|         return day_within_year(t) - 242 - in_leap_year(t);
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|     // DayWithinYear(t) - 272𝔽 - InLeapYear(t) if MonthFromTime(t) = 9𝔽
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|     case 9:
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|         return day_within_year(t) - 272 - in_leap_year(t);
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|     // DayWithinYear(t) - 303𝔽 - InLeapYear(t) if MonthFromTime(t) = 10𝔽
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|     case 10:
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|         return day_within_year(t) - 303 - in_leap_year(t);
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|     // DayWithinYear(t) - 333𝔽 - InLeapYear(t) if MonthFromTime(t) = 11𝔽
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|     case 11:
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|         return day_within_year(t) - 333 - in_leap_year(t);
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|     default:
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|         VERIFY_NOT_REACHED();
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|     }
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| }
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| 
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| // DaysInYear(y), https://tc39.es/ecma262/#eqn-DaysInYear
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| u16 days_in_year(i32 y)
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| {
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|     // 365𝔽 if (ℝ(y) modulo 4) ≠ 0
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|     if (y % 4 != 0)
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|         return 365;
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|     // 366𝔽 if (ℝ(y) modulo 4) = 0 and (ℝ(y) modulo 100) ≠ 0
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|     if (y % 4 == 0 && y % 100 != 0)
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|         return 366;
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|     // 365𝔽 if (ℝ(y) modulo 100) = 0 and (ℝ(y) modulo 400) ≠ 0
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|     if (y % 100 == 0 && y % 400 != 0)
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|         return 365;
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|     // 366𝔽 if (ℝ(y) modulo 400) = 0
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|     if (y % 400 == 0)
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|         return 366;
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|     VERIFY_NOT_REACHED();
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| }
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| 
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| // DayFromYear(y), https://tc39.es/ecma262/#eqn-DaysFromYear
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| double day_from_year(i32 y)
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| {
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|     // 𝔽(365 × (ℝ(y) - 1970) + floor((ℝ(y) - 1969) / 4) - floor((ℝ(y) - 1901) / 100) + floor((ℝ(y) - 1601) / 400))
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|     return 365 * (y - 1970) + floor((y - 1969) / 4.0) - floor((y - 1901) / 100.0) + floor((y - 1601) / 400.0);
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| }
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| 
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| // YearFromTime(t), https://tc39.es/ecma262/#eqn-YearFromTime
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| i32 year_from_time(double t)
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| {
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|     // the largest integral Number y (closest to +∞) such that TimeFromYear(y) ≤ t
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|     return static_cast<i32>(t / (365.0 * MS_PER_DAY) + 1970);
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| }
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| 
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| // InLeapYear(t), https://tc39.es/ecma262/#eqn-InLeapYear
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| bool in_leap_year(double t)
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| {
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|     // +0𝔽 if DaysInYear(YearFromTime(t)) = 365𝔽
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|     // 1𝔽 if DaysInYear(YearFromTime(t)) = 366𝔽
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|     return days_in_year(year_from_time(t)) == 366;
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| }
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| 
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| // MonthFromTime(t), https://tc39.es/ecma262/#eqn-MonthFromTime
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| u8 month_from_time(double t)
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| {
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|     auto in_leap_year = JS::in_leap_year(t);
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|     auto day_within_year = JS::day_within_year(t);
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| 
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|     // +0𝔽 if +0𝔽 ≤ DayWithinYear(t) < 31𝔽
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|     if (day_within_year < 31)
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|         return 0;
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|     // 1𝔽 if 31𝔽 ≤ DayWithinYear(t) < 59𝔽 + InLeapYear(t)
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|     if (31 <= day_within_year && day_within_year < 59 + in_leap_year)
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|         return 1;
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|     // 2𝔽 if 59𝔽 + InLeapYear(t) ≤ DayWithinYear(t) < 90𝔽 + InLeapYear(t)
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|     if (59 + in_leap_year <= day_within_year && day_within_year < 90 + in_leap_year)
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|         return 2;
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|     // 3𝔽 if 90𝔽 + InLeapYear(t) ≤ DayWithinYear(t) < 120𝔽 + InLeapYear(t)
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|     if (90 + in_leap_year <= day_within_year && day_within_year < 120 + in_leap_year)
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|         return 3;
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|     // 4𝔽 if 120𝔽 + InLeapYear(t) ≤ DayWithinYear(t) < 151𝔽 + InLeapYear(t)
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|     if (120 + in_leap_year <= day_within_year && day_within_year < 151 + in_leap_year)
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|         return 4;
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|     // 5𝔽 if 151𝔽 + InLeapYear(t) ≤ DayWithinYear(t) < 181𝔽 + InLeapYear(t)
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|     if (151 + in_leap_year <= day_within_year && day_within_year < 181 + in_leap_year)
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|         return 5;
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|     // 6𝔽 if 181𝔽 + InLeapYear(t) ≤ DayWithinYear(t) < 212𝔽 + InLeapYear(t)
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|     if (181 + in_leap_year <= day_within_year && day_within_year < 212 + in_leap_year)
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|         return 6;
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|     // 7𝔽 if 212𝔽 + InLeapYear(t) ≤ DayWithinYear(t) < 243𝔽 + InLeapYear(t)
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|     if (212 + in_leap_year <= day_within_year && day_within_year < 243 + in_leap_year)
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|         return 7;
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|     // 8𝔽 if 243𝔽 + InLeapYear(t) ≤ DayWithinYear(t) < 273𝔽 + InLeapYear(t)
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|     if (243 + in_leap_year <= day_within_year && day_within_year < 273 + in_leap_year)
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|         return 8;
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|     // 9𝔽 if 273𝔽 + InLeapYear(t) ≤ DayWithinYear(t) < 304𝔽 + InLeapYear(t)
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|     if (273 + in_leap_year <= day_within_year && day_within_year < 304 + in_leap_year)
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|         return 9;
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|     // 10𝔽 if 304𝔽 + InLeapYear(t) ≤ DayWithinYear(t) < 334𝔽 + InLeapYear(t)
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|     if (304 + in_leap_year <= day_within_year && day_within_year < 334 + in_leap_year)
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|         return 10;
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|     // 11𝔽 if 334𝔽 + InLeapYear(t) ≤ DayWithinYear(t) < 365𝔽 + InLeapYear(t)
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|     if (334 + in_leap_year <= day_within_year && day_within_year < 365 + in_leap_year)
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|         return 11;
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|     VERIFY_NOT_REACHED();
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| }
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| 
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| // HourFromTime(t), https://tc39.es/ecma262/#eqn-HourFromTime
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| u8 hour_from_time(double t)
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| {
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|     // 𝔽(floor(ℝ(t / msPerHour)) modulo HoursPerDay)
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|     return static_cast<u8>(fmod(floor(t / MS_PER_HOUR), HOURS_PER_DAY));
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| }
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| 
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| // MinFromTime(t), https://tc39.es/ecma262/#eqn-MinFromTime
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| u8 min_from_time(double t)
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| {
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|     // 𝔽(floor(ℝ(t / msPerMinute)) modulo MinutesPerHour)
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|     return static_cast<u8>(fmod(floor(t / MS_PER_MINUTE), MINUTES_PER_HOUR));
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| }
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| 
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| // SecFromTime(t), https://tc39.es/ecma262/#eqn-SecFromTime
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| u8 sec_from_time(double t)
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| {
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|     // 𝔽(floor(ℝ(t / msPerSecond)) modulo SecondsPerMinute)
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|     return static_cast<u8>(fmod(t / MS_PER_SECOND, SECONDS_PER_MINUTE));
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| }
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| 
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| // msFromTime(t), https://tc39.es/ecma262/#eqn-msFromTime
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| u16 ms_from_time(double t)
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| {
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|     // 𝔽(ℝ(t) modulo msPerSecond)
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|     return static_cast<u16>(fmod(t, MS_PER_SECOND));
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| }
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| 
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| // 21.4.1.11 MakeTime ( hour, min, sec, ms ), https://tc39.es/ecma262/#sec-maketime
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| Value make_time(GlobalObject& global_object, Value hour, Value min, Value sec, Value ms)
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| {
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|     // 1. If hour is not finite or min is not finite or sec is not finite or ms is not finite, return NaN.
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|     if (!hour.is_finite_number() || !min.is_finite_number() || !sec.is_finite_number() || !ms.is_finite_number())
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|         return js_nan();
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| 
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|     // 2. Let h be 𝔽(! ToIntegerOrInfinity(hour)).
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|     auto h = hour.to_integer_or_infinity(global_object);
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|     // 3. Let m be 𝔽(! ToIntegerOrInfinity(min)).
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|     auto m = min.to_integer_or_infinity(global_object);
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|     // 4. Let s be 𝔽(! ToIntegerOrInfinity(sec)).
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|     auto s = sec.to_integer_or_infinity(global_object);
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|     // 5. Let milli be 𝔽(! ToIntegerOrInfinity(ms)).
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|     auto milli = ms.to_integer_or_infinity(global_object);
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|     // 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 +).
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|     // NOTE: C++ arithmetic abides by IEEE 754 rules
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|     auto t = ((h * MS_PER_HOUR + m * MS_PER_MINUTE) + s * MS_PER_SECOND) + milli;
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|     // 7. Return t.
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|     return Value(t);
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| }
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| 
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| // Day(t), https://tc39.es/ecma262/#eqn-Day
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| double day(double time_value)
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| {
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|     return floor(time_value / MS_PER_DAY);
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| }
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| 
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| // 21.4.1.12 MakeDay ( year, month, date ), https://tc39.es/ecma262/#sec-makeday
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| Value make_day(GlobalObject& global_object, Value year, Value month, Value date)
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| {
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|     // 1. If year is not finite or month is not finite or date is not finite, return NaN.
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|     if (!year.is_finite_number() || !month.is_finite_number() || !date.is_finite_number())
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|         return js_nan();
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| 
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|     // 2. Let y be 𝔽(! ToIntegerOrInfinity(year)).
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|     auto y = year.to_integer_or_infinity(global_object);
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|     // 3. Let m be 𝔽(! ToIntegerOrInfinity(month)).
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|     auto m = month.to_integer_or_infinity(global_object);
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|     // 4. Let dt be 𝔽(! ToIntegerOrInfinity(date)).
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|     auto dt = date.to_integer_or_infinity(global_object);
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|     // 5. Let ym be y + 𝔽(floor(ℝ(m) / 12)).
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|     auto ym = Value(y + floor(m / 12));
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|     // 6. If ym is not finite, return NaN.
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|     if (!ym.is_finite_number())
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|         return js_nan();
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|     // 7. Let mn be 𝔽(ℝ(m) modulo 12).
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|     // NOTE: This calculation has no side-effects and is unused, so we omit it
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| 
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|     // 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.
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|     if (!AK::is_within_range<int>(y) || !AK::is_within_range<int>(m + 1))
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|         return js_nan();
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|     auto t = Core::DateTime::create(static_cast<int>(y), static_cast<int>(m + 1), 0).timestamp() * 1000;
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|     // 9. Return Day(t) + dt - 1𝔽.
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|     return Value(day(static_cast<double>(t)) + dt - 1);
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| }
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| 
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| // 21.4.1.13 MakeDate ( day, time ), https://tc39.es/ecma262/#sec-makedate
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| Value make_date(Value day, Value time)
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| {
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|     // 1. If day is not finite or time is not finite, return NaN.
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|     if (!day.is_finite_number() || !time.is_finite_number())
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|         return js_nan();
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| 
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|     // 2. Let tv be day × msPerDay + time.
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|     auto tv = Value(day.as_double() * MS_PER_DAY + time.as_double());
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| 
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|     // 3. If tv is not finite, return NaN.
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|     if (!tv.is_finite_number())
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|         return js_nan();
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| 
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|     // 4. Return tv.
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|     return tv;
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| }
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| 
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| }
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