NumberFormat.h 11 KB

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  1. /*
  2. * Copyright (c) 2021-2022, Tim Flynn <trflynn89@serenityos.org>
  3. *
  4. * SPDX-License-Identifier: BSD-2-Clause
  5. */
  6. #pragma once
  7. #include <AK/Array.h>
  8. #include <AK/Optional.h>
  9. #include <AK/String.h>
  10. #include <LibJS/Runtime/Intl/AbstractOperations.h>
  11. #include <LibJS/Runtime/Object.h>
  12. #include <LibUnicode/Locale.h>
  13. #include <LibUnicode/NumberFormat.h>
  14. namespace JS::Intl {
  15. class NumberFormatBase : public Object {
  16. JS_OBJECT(NumberFormatBase, Object);
  17. public:
  18. enum class RoundingType {
  19. Invalid,
  20. SignificantDigits,
  21. FractionDigits,
  22. MorePrecision,
  23. LessPrecision,
  24. };
  25. enum class RoundingMode {
  26. Invalid,
  27. Ceil,
  28. Expand,
  29. Floor,
  30. HalfCeil,
  31. HalfEven,
  32. HalfExpand,
  33. HalfFloor,
  34. HalfTrunc,
  35. Trunc,
  36. };
  37. enum class TrailingZeroDisplay {
  38. Invalid,
  39. Auto,
  40. StripIfInteger,
  41. };
  42. NumberFormatBase(Object& prototype);
  43. virtual ~NumberFormatBase() override = default;
  44. String const& locale() const { return m_locale; }
  45. void set_locale(String locale) { m_locale = move(locale); }
  46. String const& data_locale() const { return m_data_locale; }
  47. void set_data_locale(String data_locale) { m_data_locale = move(data_locale); }
  48. int min_integer_digits() const { return m_min_integer_digits; }
  49. void set_min_integer_digits(int min_integer_digits) { m_min_integer_digits = min_integer_digits; }
  50. bool has_min_fraction_digits() const { return m_min_fraction_digits.has_value(); }
  51. int min_fraction_digits() const { return *m_min_fraction_digits; }
  52. void set_min_fraction_digits(int min_fraction_digits) { m_min_fraction_digits = min_fraction_digits; }
  53. bool has_max_fraction_digits() const { return m_max_fraction_digits.has_value(); }
  54. int max_fraction_digits() const { return *m_max_fraction_digits; }
  55. void set_max_fraction_digits(int max_fraction_digits) { m_max_fraction_digits = max_fraction_digits; }
  56. bool has_min_significant_digits() const { return m_min_significant_digits.has_value(); }
  57. int min_significant_digits() const { return *m_min_significant_digits; }
  58. void set_min_significant_digits(int min_significant_digits) { m_min_significant_digits = min_significant_digits; }
  59. bool has_max_significant_digits() const { return m_max_significant_digits.has_value(); }
  60. int max_significant_digits() const { return *m_max_significant_digits; }
  61. void set_max_significant_digits(int max_significant_digits) { m_max_significant_digits = max_significant_digits; }
  62. RoundingType rounding_type() const { return m_rounding_type; }
  63. StringView rounding_type_string() const;
  64. void set_rounding_type(RoundingType rounding_type) { m_rounding_type = rounding_type; }
  65. RoundingMode rounding_mode() const { return m_rounding_mode; }
  66. StringView rounding_mode_string() const;
  67. void set_rounding_mode(StringView rounding_mode);
  68. int rounding_increment() const { return m_rounding_increment; }
  69. void set_rounding_increment(int rounding_increment) { m_rounding_increment = rounding_increment; }
  70. TrailingZeroDisplay trailing_zero_display() const { return m_trailing_zero_display; }
  71. StringView trailing_zero_display_string() const;
  72. void set_trailing_zero_display(StringView trailing_zero_display);
  73. private:
  74. String m_locale; // [[Locale]]
  75. String m_data_locale; // [[DataLocale]]
  76. int m_min_integer_digits { 0 }; // [[MinimumIntegerDigits]]
  77. Optional<int> m_min_fraction_digits {}; // [[MinimumFractionDigits]]
  78. Optional<int> m_max_fraction_digits {}; // [[MaximumFractionDigits]]
  79. Optional<int> m_min_significant_digits {}; // [[MinimumSignificantDigits]]
  80. Optional<int> m_max_significant_digits {}; // [[MaximumSignificantDigits]]
  81. RoundingType m_rounding_type { RoundingType::Invalid }; // [[RoundingType]]
  82. RoundingMode m_rounding_mode { RoundingMode::Invalid }; // [[RoundingMode]]
  83. int m_rounding_increment { 1 }; // [[RoundingIncrement]]
  84. TrailingZeroDisplay m_trailing_zero_display { TrailingZeroDisplay::Invalid }; // [[TrailingZeroDisplay]]
  85. };
  86. class NumberFormat final : public NumberFormatBase {
  87. JS_OBJECT(NumberFormat, NumberFormatBase);
  88. public:
  89. enum class Style {
  90. Invalid,
  91. Decimal,
  92. Percent,
  93. Currency,
  94. Unit,
  95. };
  96. enum class CurrencyDisplay {
  97. Code,
  98. Symbol,
  99. NarrowSymbol,
  100. Name,
  101. };
  102. enum class CurrencySign {
  103. Standard,
  104. Accounting,
  105. };
  106. enum class Notation {
  107. Invalid,
  108. Standard,
  109. Scientific,
  110. Engineering,
  111. Compact,
  112. };
  113. enum class CompactDisplay {
  114. Short,
  115. Long,
  116. };
  117. enum class SignDisplay {
  118. Invalid,
  119. Auto,
  120. Never,
  121. Always,
  122. ExceptZero,
  123. Negative,
  124. };
  125. enum class UseGrouping {
  126. Invalid,
  127. Always,
  128. Auto,
  129. Min2,
  130. False,
  131. };
  132. static constexpr auto relevant_extension_keys()
  133. {
  134. // 15.2.3 Internal slots, https://tc39.es/ecma402/#sec-intl.numberformat-internal-slots
  135. // The value of the [[RelevantExtensionKeys]] internal slot is « "nu" ».
  136. return AK::Array { "nu"sv };
  137. }
  138. NumberFormat(Object& prototype);
  139. virtual ~NumberFormat() override = default;
  140. String const& numbering_system() const { return m_numbering_system; }
  141. void set_numbering_system(String numbering_system) { m_numbering_system = move(numbering_system); }
  142. Style style() const { return m_style; }
  143. StringView style_string() const;
  144. void set_style(StringView style);
  145. bool has_currency() const { return m_currency.has_value(); }
  146. String const& currency() const { return m_currency.value(); }
  147. void set_currency(String currency) { m_currency = move(currency); }
  148. bool has_currency_display() const { return m_currency_display.has_value(); }
  149. CurrencyDisplay currency_display() const { return *m_currency_display; }
  150. StringView currency_display_string() const;
  151. void set_currency_display(StringView currency_display);
  152. StringView resolve_currency_display();
  153. bool has_currency_sign() const { return m_currency_sign.has_value(); }
  154. CurrencySign currency_sign() const { return *m_currency_sign; }
  155. StringView currency_sign_string() const;
  156. void set_currency_sign(StringView set_currency_sign);
  157. bool has_unit() const { return m_unit.has_value(); }
  158. String const& unit() const { return m_unit.value(); }
  159. void set_unit(String unit) { m_unit = move(unit); }
  160. bool has_unit_display() const { return m_unit_display.has_value(); }
  161. Unicode::Style unit_display() const { return *m_unit_display; }
  162. StringView unit_display_string() const { return Unicode::style_to_string(*m_unit_display); }
  163. void set_unit_display(StringView unit_display) { m_unit_display = Unicode::style_from_string(unit_display); }
  164. UseGrouping use_grouping() const { return m_use_grouping; }
  165. Value use_grouping_to_value(GlobalObject&) const;
  166. void set_use_grouping(StringOrBoolean const& use_grouping);
  167. Notation notation() const { return m_notation; }
  168. StringView notation_string() const;
  169. void set_notation(StringView notation);
  170. bool has_compact_display() const { return m_compact_display.has_value(); }
  171. CompactDisplay compact_display() const { return *m_compact_display; }
  172. StringView compact_display_string() const;
  173. void set_compact_display(StringView compact_display);
  174. SignDisplay sign_display() const { return m_sign_display; }
  175. StringView sign_display_string() const;
  176. void set_sign_display(StringView sign_display);
  177. NativeFunction* bound_format() const { return m_bound_format; }
  178. void set_bound_format(NativeFunction* bound_format) { m_bound_format = bound_format; }
  179. bool has_compact_format() const { return m_compact_format.has_value(); }
  180. void set_compact_format(Unicode::NumberFormat compact_format) { m_compact_format = compact_format; }
  181. Unicode::NumberFormat compact_format() const { return *m_compact_format; }
  182. private:
  183. virtual void visit_edges(Visitor&) override;
  184. String m_locale; // [[Locale]]
  185. String m_data_locale; // [[DataLocale]]
  186. String m_numbering_system; // [[NumberingSystem]]
  187. Style m_style { Style::Invalid }; // [[Style]]
  188. Optional<String> m_currency {}; // [[Currency]]
  189. Optional<CurrencyDisplay> m_currency_display {}; // [[CurrencyDisplay]]
  190. Optional<CurrencySign> m_currency_sign {}; // [[CurrencySign]]
  191. Optional<String> m_unit {}; // [[Unit]]
  192. Optional<Unicode::Style> m_unit_display {}; // [[UnitDisplay]]
  193. UseGrouping m_use_grouping { false }; // [[UseGrouping]]
  194. Notation m_notation { Notation::Invalid }; // [[Notation]]
  195. Optional<CompactDisplay> m_compact_display {}; // [[CompactDisplay]]
  196. SignDisplay m_sign_display { SignDisplay::Invalid }; // [[SignDisplay]]
  197. NativeFunction* m_bound_format { nullptr }; // [[BoundFormat]]
  198. // Non-standard. Stores the resolved currency display string based on [[Locale]], [[Currency]], and [[CurrencyDisplay]].
  199. Optional<StringView> m_resolved_currency_display;
  200. // Non-standard. Stores the resolved compact number format based on [[Locale]], [[Notation], [[Style]], and [[CompactDisplay]].
  201. Optional<Unicode::NumberFormat> m_compact_format;
  202. };
  203. struct FormatResult {
  204. String formatted_string; // [[FormattedString]]
  205. Value rounded_number { 0.0 }; // [[RoundedNumber]]
  206. };
  207. struct RawFormatResult : public FormatResult {
  208. int digits { 0 }; // [[IntegerDigitsCount]]
  209. int rounding_magnitude { 0 }; // [[RoundingMagnitude]]
  210. };
  211. int currency_digits(StringView currency);
  212. FormatResult format_numeric_to_string(GlobalObject& global_object, NumberFormatBase const& intl_object, Value number);
  213. Vector<PatternPartition> partition_number_pattern(GlobalObject& global_object, NumberFormat& number_format, Value number);
  214. Vector<PatternPartition> partition_notation_sub_pattern(GlobalObject& global_object, NumberFormat& number_format, Value number, String formatted_string, int exponent);
  215. String format_numeric(GlobalObject& global_object, NumberFormat& number_format, Value number);
  216. Array* format_numeric_to_parts(GlobalObject& global_object, NumberFormat& number_format, Value number);
  217. RawFormatResult to_raw_precision(GlobalObject& global_object, Value number, int min_precision, int max_precision);
  218. RawFormatResult to_raw_fixed(GlobalObject& global_object, Value number, int min_fraction, int max_fraction);
  219. Optional<Variant<StringView, String>> get_number_format_pattern(GlobalObject& global_object, NumberFormat& number_format, Value number, Unicode::NumberFormat& found_pattern);
  220. Optional<StringView> get_notation_sub_pattern(NumberFormat& number_format, int exponent);
  221. int compute_exponent(GlobalObject& global_object, NumberFormat& number_format, Value number);
  222. int compute_exponent_for_magnitude(NumberFormat& number_format, int magnitude);
  223. }