AbstractOperations.h 5.2 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. #pragma once
  8. #include <AK/Forward.h>
  9. #include <AK/String.h>
  10. #include <AK/Variant.h>
  11. #include <LibJS/Forward.h>
  12. #include <LibJS/Runtime/GlobalObject.h>
  13. namespace JS::Temporal {
  14. enum class OptionType {
  15. Boolean,
  16. String,
  17. Number
  18. };
  19. struct ISODateTime {
  20. i32 year;
  21. u8 month;
  22. u8 day;
  23. u8 hour;
  24. u8 minute;
  25. u8 second;
  26. u16 millisecond;
  27. u16 microsecond;
  28. u16 nanosecond;
  29. Optional<String> calendar = {};
  30. };
  31. struct TemporalInstant {
  32. i32 year;
  33. u8 month;
  34. u8 day;
  35. u8 hour;
  36. u8 minute;
  37. u8 second;
  38. u16 millisecond;
  39. u16 microsecond;
  40. u16 nanosecond;
  41. Optional<String> time_zone_offset;
  42. };
  43. struct TemporalDate {
  44. i32 year;
  45. u8 month;
  46. u8 day;
  47. Optional<String> calendar;
  48. };
  49. struct TemporalTime {
  50. u8 hour;
  51. u8 minute;
  52. u8 second;
  53. u16 millisecond;
  54. u16 microsecond;
  55. u16 nanosecond;
  56. Optional<String> calendar = {};
  57. };
  58. struct TemporalTimeZone {
  59. bool z;
  60. Optional<String> offset;
  61. Optional<String> name;
  62. };
  63. struct TemporalYearMonth {
  64. i32 year;
  65. u8 month;
  66. u8 day;
  67. Optional<String> calendar = {};
  68. };
  69. struct SecondsStringPrecision {
  70. Variant<StringView, u8> precision;
  71. String unit;
  72. u32 increment;
  73. };
  74. MarkedValueList iterable_to_list_of_type(GlobalObject&, Value items, Vector<OptionType> const& element_types);
  75. Object* get_options_object(GlobalObject&, Value options);
  76. Value get_option(GlobalObject&, Object const& options, PropertyName const& property, Vector<OptionType> const& types, Vector<StringView> const& values, Value fallback);
  77. template<typename NumberType>
  78. Optional<Variant<String, NumberType>> get_string_or_number_option(GlobalObject&, Object& options, PropertyName const& property, Vector<StringView> const& string_values, NumberType minimum, NumberType maximum, Value fallback);
  79. Optional<String> to_temporal_overflow(GlobalObject&, Object& normalized_options);
  80. Optional<String> to_temporal_rounding_mode(GlobalObject&, Object& normalized_options, String const& fallback);
  81. Optional<String> to_show_calendar_option(GlobalObject&, Object& normalized_options);
  82. u64 to_temporal_rounding_increment(GlobalObject&, Object& normalized_options, Optional<double> dividend, bool inclusive);
  83. Optional<SecondsStringPrecision> to_seconds_string_precision(GlobalObject&, Object& normalized_options);
  84. Optional<String> to_largest_temporal_unit(GlobalObject&, Object& normalized_options, Vector<StringView> const& disallowed_units, String const& fallback, Optional<String> auto_value);
  85. Optional<String> to_smallest_temporal_unit(GlobalObject&, Object& normalized_options, Vector<StringView> const& disallowed_units, Optional<String> fallback);
  86. void validate_temporal_unit_range(GlobalObject&, StringView largest_unit, StringView smallest_unit);
  87. String larger_of_two_temporal_units(StringView, StringView);
  88. Optional<u16> maximum_temporal_duration_rounding_increment(StringView unit);
  89. void reject_temporal_calendar_type(GlobalObject&, Object&);
  90. String format_seconds_string_part(u8 second, u16 millisecond, u16 microsecond, u16 nanosecond, Variant<StringView, u8> const& precision);
  91. double constrain_to_range(double x, double minimum, double maximum);
  92. BigInt* round_number_to_increment(GlobalObject&, BigInt const&, u64 increment, StringView rounding_mode);
  93. Optional<ISODateTime> parse_iso_date_time(GlobalObject&, String const& iso_string);
  94. Optional<TemporalInstant> parse_temporal_instant_string(GlobalObject&, String const& iso_string);
  95. Optional<String> parse_temporal_calendar_string(GlobalObject&, String const& iso_string);
  96. Optional<TemporalDate> parse_temporal_date_string(GlobalObject&, String const& iso_string);
  97. Optional<ISODateTime> parse_temporal_date_time_string(GlobalObject&, String const& iso_string);
  98. Optional<TemporalDuration> parse_temporal_duration_string(GlobalObject&, String const& iso_string);
  99. Optional<TemporalTime> parse_temporal_time_string(GlobalObject&, String const& iso_string);
  100. Optional<TemporalTimeZone> parse_temporal_time_zone_string(GlobalObject&, String const& iso_string);
  101. Optional<TemporalYearMonth> parse_temporal_year_month_string(GlobalObject&, String const& iso_string);
  102. double to_positive_integer(GlobalObject&, Value argument);
  103. Object* prepare_temporal_fields(GlobalObject&, Object& fields, Vector<String> const& field_names, Vector<StringView> const& required_fields);
  104. // 13.46 ToIntegerThrowOnInfinity ( argument ), https://tc39.es/proposal-temporal/#sec-temporal-tointegerthrowoninfinity
  105. template<typename... Args>
  106. double to_integer_throw_on_infinity(GlobalObject& global_object, Value argument, ErrorType error_type, Args... args)
  107. {
  108. auto& vm = global_object.vm();
  109. // 1. Let integer be ? ToIntegerOrInfinity(argument).
  110. auto integer = argument.to_integer_or_infinity(global_object);
  111. if (vm.exception())
  112. return {};
  113. // 2. If integer is −∞ or +∞ , then
  114. if (Value(integer).is_infinity()) {
  115. // a. Throw a RangeError exception.
  116. vm.throw_exception<RangeError>(global_object, error_type, args...);
  117. return {};
  118. }
  119. // 3. Return integer.
  120. return integer;
  121. }
  122. }