
Since theres no way to drop the arguments before the call to the constructor (or to signal to the constructor that it was not called directly), we simply reuse the code for the no arguments provided special case. (And to prevent code duplication, the code was extracted into the separate static function Date::now(GlobalObject&).
291 lines
9.7 KiB
C++
291 lines
9.7 KiB
C++
/*
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* Copyright (c) 2020, Linus Groh <linusg@serenityos.org>
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* Copyright (c) 2020, Nico Weber <thakis@chromium.org>
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* Copyright (c) 2021, Petróczi Zoltán <petroczizoltan@tutanota.com>
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#include <AK/GenericLexer.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/DateConstructor.h>
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#include <LibJS/Runtime/GlobalObject.h>
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#include <LibJS/Runtime/VM.h>
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#include <ctype.h>
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#include <sys/time.h>
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#include <time.h>
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namespace JS {
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static Value parse_simplified_iso8601(const String& iso_8601)
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{
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// Date.parse() is allowed to accept many formats. We strictly only accept things matching
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// http://www.ecma-international.org/ecma-262/#sec-date-time-string-format
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GenericLexer lexer(iso_8601);
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auto lex_n_digits = [&](size_t n, int& out) {
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if (lexer.tell_remaining() < n)
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return false;
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int r = 0;
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for (size_t i = 0; i < n; ++i) {
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char ch = lexer.consume();
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if (!isdigit(ch))
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return false;
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r = 10 * r + ch - '0';
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}
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out = r;
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return true;
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};
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int year = -1, month = -1, day = -1;
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int hours = -1, minutes = -1, seconds = -1, milliseconds = -1;
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char timezone = -1;
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int timezone_hours = -1, timezone_minutes = -1;
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auto lex_year = [&]() {
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if (lexer.consume_specific('+'))
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return lex_n_digits(6, year);
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if (lexer.consume_specific('-')) {
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int absolute_year;
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if (!lex_n_digits(6, absolute_year))
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return false;
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year = -absolute_year;
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return true;
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}
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return lex_n_digits(4, year);
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};
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auto lex_month = [&]() { return lex_n_digits(2, month) && month >= 1 && month <= 12; };
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auto lex_day = [&]() { return lex_n_digits(2, day) && day >= 1 && day <= 31; };
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auto lex_date = [&]() { return lex_year() && (!lexer.consume_specific('-') || (lex_month() && (!lexer.consume_specific('-') || lex_day()))); };
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auto lex_hours_minutes = [&](int& out_h, int& out_m) {
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int h, m;
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if (lex_n_digits(2, h) && h >= 0 && h <= 24 && lexer.consume_specific(':') && lex_n_digits(2, m) && m >= 0 && m <= 59) {
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out_h = h;
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out_m = m;
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return true;
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}
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return false;
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};
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auto lex_seconds = [&]() { return lex_n_digits(2, seconds) && seconds >= 0 && seconds <= 59; };
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auto lex_milliseconds = [&]() { return lex_n_digits(3, milliseconds); };
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auto lex_seconds_milliseconds = [&]() { return lex_seconds() && (!lexer.consume_specific('.') || lex_milliseconds()); };
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auto lex_timezone = [&]() {
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if (lexer.consume_specific('+')) {
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timezone = '+';
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return lex_hours_minutes(timezone_hours, timezone_minutes);
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}
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if (lexer.consume_specific('-')) {
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timezone = '-';
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return lex_hours_minutes(timezone_hours, timezone_minutes);
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}
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if (lexer.consume_specific('Z'))
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timezone = 'Z';
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return true;
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};
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auto lex_time = [&]() { return lex_hours_minutes(hours, minutes) && (!lexer.consume_specific(':') || lex_seconds_milliseconds()) && lex_timezone(); };
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if (!lex_date() || (lexer.consume_specific('T') && !lex_time()) || !lexer.is_eof()) {
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return js_nan();
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}
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// We parsed a valid date simplified ISO 8601 string. Values not present in the string are -1.
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VERIFY(year != -1); // A valid date string always has at least a year.
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struct tm tm = {};
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tm.tm_year = year - 1900;
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tm.tm_mon = month == -1 ? 0 : month - 1;
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tm.tm_mday = day == -1 ? 1 : day;
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tm.tm_hour = hours == -1 ? 0 : hours;
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tm.tm_min = minutes == -1 ? 0 : minutes;
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tm.tm_sec = seconds == -1 ? 0 : seconds;
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// http://www.ecma-international.org/ecma-262/#sec-date.parse:
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// "When the UTC offset representation is absent, date-only forms are interpreted as a UTC time and date-time forms are interpreted as a local time."
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time_t timestamp;
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if (timezone != -1 || hours == -1)
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timestamp = timegm(&tm);
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else
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timestamp = mktime(&tm);
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if (timezone == '-')
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timestamp += (timezone_hours * 60 + timezone_minutes) * 60;
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else if (timezone == '+')
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timestamp -= (timezone_hours * 60 + timezone_minutes) * 60;
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// FIXME: reject timestamp if resulting value wouldn't fit in a double
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if (milliseconds == -1)
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milliseconds = 0;
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return Value(1000.0 * timestamp + milliseconds);
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}
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DateConstructor::DateConstructor(GlobalObject& global_object)
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: NativeFunction(vm().names.Date, *global_object.function_prototype())
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{
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}
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void DateConstructor::initialize(GlobalObject& global_object)
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{
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auto& vm = this->vm();
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NativeFunction::initialize(global_object);
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define_property(vm.names.prototype, global_object.date_prototype(), 0);
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define_property(vm.names.length, Value(7), Attribute::Configurable);
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define_native_function(vm.names.now, now, 0, Attribute::Writable | Attribute::Configurable);
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define_native_function(vm.names.parse, parse, 1, Attribute::Writable | Attribute::Configurable);
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define_native_function(vm.names.UTC, utc, 1, Attribute::Writable | Attribute::Configurable);
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}
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DateConstructor::~DateConstructor()
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{
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}
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Value DateConstructor::call()
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{
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return js_string(heap(), Date::now(global_object())->string());
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}
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Value DateConstructor::construct(Function&)
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{
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auto& vm = this->vm();
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if (vm.argument_count() == 0)
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return Date::now(global_object());
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auto create_invalid_date = [this]() {
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auto datetime = Core::DateTime::create(1970, 1, 1, 0, 0, 0);
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auto milliseconds = static_cast<u16>(0);
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return Date::create(global_object(), datetime, milliseconds, true);
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};
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if (vm.argument_count() == 1) {
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auto value = vm.argument(0);
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if (value.is_string())
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value = parse_simplified_iso8601(value.as_string().string());
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else
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value = value.to_number(global_object());
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if (vm.exception())
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return {};
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if (!value.is_finite_number()) {
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return create_invalid_date();
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}
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// A timestamp since the epoch, in UTC.
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double value_as_double = value.as_double();
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auto datetime = Core::DateTime::from_timestamp(static_cast<time_t>(value_as_double / 1000));
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auto milliseconds = static_cast<u16>(fmod(value_as_double, 1000));
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return Date::create(global_object(), datetime, milliseconds);
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}
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// A date/time in components, in local time.
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auto arg_or = [&vm, this](size_t i, i32 fallback) { return vm.argument_count() > i ? vm.argument(i).to_number(global_object()) : Value(fallback); };
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auto year_value = vm.argument(0).to_number(global_object());
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if (vm.exception())
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return {};
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if (!year_value.is_finite_number()) {
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return create_invalid_date();
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}
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auto year = year_value.as_i32();
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auto month_index_value = vm.argument(1).to_number(global_object());
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if (vm.exception())
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return {};
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if (!month_index_value.is_finite_number()) {
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return create_invalid_date();
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}
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auto month_index = month_index_value.as_i32();
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auto day_value = arg_or(2, 1);
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if (vm.exception())
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return {};
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if (!day_value.is_finite_number()) {
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return create_invalid_date();
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}
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auto day = day_value.as_i32();
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auto hours_value = arg_or(3, 0);
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if (vm.exception())
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return {};
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if (!hours_value.is_finite_number()) {
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return create_invalid_date();
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}
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auto hours = hours_value.as_i32();
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auto minutes_value = arg_or(4, 0);
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if (vm.exception())
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return {};
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if (!minutes_value.is_finite_number()) {
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return create_invalid_date();
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}
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auto minutes = minutes_value.as_i32();
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auto seconds_value = arg_or(5, 0);
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if (vm.exception())
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return {};
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if (!seconds_value.is_finite_number()) {
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return create_invalid_date();
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}
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auto seconds = seconds_value.as_i32();
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auto milliseconds_value = arg_or(6, 0);
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if (vm.exception())
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return {};
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if (!milliseconds_value.is_finite_number()) {
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return create_invalid_date();
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}
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auto milliseconds = milliseconds_value.as_i32();
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seconds += milliseconds / 1000;
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milliseconds %= 1000;
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if (milliseconds < 0) {
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seconds -= 1;
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milliseconds += 1000;
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}
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if (year >= 0 && year <= 99)
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year += 1900;
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int month = month_index + 1;
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auto datetime = Core::DateTime::create(year, month, day, hours, minutes, seconds);
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return Date::create(global_object(), datetime, milliseconds);
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}
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JS_DEFINE_NATIVE_FUNCTION(DateConstructor::now)
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{
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struct timeval tv;
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gettimeofday(&tv, nullptr);
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return Value(tv.tv_sec * 1000.0 + tv.tv_usec / 1000.0);
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}
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JS_DEFINE_NATIVE_FUNCTION(DateConstructor::parse)
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{
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if (!vm.argument_count())
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return js_nan();
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auto iso_8601 = vm.argument(0).to_string(global_object);
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if (vm.exception())
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return {};
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return parse_simplified_iso8601(iso_8601);
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}
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JS_DEFINE_NATIVE_FUNCTION(DateConstructor::utc)
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{
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auto arg_or = [&vm, &global_object](size_t i, i32 fallback) { return vm.argument_count() > i ? vm.argument(i).to_i32(global_object) : fallback; };
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int year = vm.argument(0).to_i32(global_object);
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if (year >= 0 && year <= 99)
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year += 1900;
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struct tm tm = {};
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tm.tm_year = year - 1900;
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tm.tm_mon = arg_or(1, 0); // 0-based in both tm and JavaScript
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tm.tm_mday = arg_or(2, 1);
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tm.tm_hour = arg_or(3, 0);
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tm.tm_min = arg_or(4, 0);
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tm.tm_sec = arg_or(5, 0);
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// timegm() doesn't read tm.tm_wday and tm.tm_yday, no need to fill them in.
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int milliseconds = arg_or(6, 0);
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return Value(1000.0 * timegm(&tm) + milliseconds);
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}
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}
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