/* * Copyright (c) 2021, Tim Flynn * * SPDX-License-Identifier: BSD-2-Clause */ #include "GeneratorUtil.h" #include #include #include #include #include #include #include #include #include #include #include #include #include #include using StringIndexType = u16; constexpr auto s_string_index_type = "u16"sv; // Some code points are excluded from UnicodeData.txt, and instead are part of a "range" of code // points, as indicated by the "name" field. For example: // 3400;;Lo;0;L;;;;;N;;;;; // 4DBF;;Lo;0;L;;;;;N;;;;; struct CodePointRange { u32 first; u32 last; }; // SpecialCasing source: https://www.unicode.org/Public/13.0.0/ucd/SpecialCasing.txt // Field descriptions: https://www.unicode.org/reports/tr44/tr44-13.html#SpecialCasing.txt struct SpecialCasing { u32 index { 0 }; u32 code_point { 0 }; Vector lowercase_mapping; Vector uppercase_mapping; Vector titlecase_mapping; String locale; String condition; }; // Field descriptions: https://www.unicode.org/reports/tr44/#Character_Decomposition_Mappings struct CodePointDecomposition { // `tag` is a string since it's used for codegen as an enum value. String tag { "Canonical"sv }; size_t decomposition_index { 0 }; size_t decomposition_size { 0 }; }; // PropList source: https://www.unicode.org/Public/13.0.0/ucd/PropList.txt // Property descriptions: https://www.unicode.org/reports/tr44/tr44-13.html#PropList.txt using PropList = HashMap>; // Normalization source: https://www.unicode.org/Public/13.0.0/ucd/DerivedNormalizationProps.txt // Normalization descriptions: https://www.unicode.org/reports/tr44/#DerivedNormalizationProps.txt enum class QuickCheck { Yes, No, Maybe, }; struct Normalization { CodePointRange code_point_range; Vector value; QuickCheck quick_check { QuickCheck::Yes }; }; using NormalizationProps = HashMap>; struct CodePointName { CodePointRange code_point_range; StringIndexType name { 0 }; }; // UnicodeData source: https://www.unicode.org/Public/13.0.0/ucd/UnicodeData.txt // Field descriptions: https://www.unicode.org/reports/tr44/tr44-13.html#UnicodeData.txt // https://www.unicode.org/reports/tr44/#General_Category_Values struct CodePointData { u32 code_point { 0 }; String name; Optional abbreviation; u8 canonical_combining_class { 0 }; String bidi_class; Optional decomposition_mapping; Optional numeric_value_decimal; Optional numeric_value_digit; Optional numeric_value_numeric; bool bidi_mirrored { false }; String unicode_1_name; String iso_comment; Optional simple_uppercase_mapping; Optional simple_lowercase_mapping; Optional simple_titlecase_mapping; Vector special_casing_indices; }; struct BlockName { CodePointRange code_point_range; StringIndexType name { 0 }; }; struct UnicodeData { UniqueStringStorage unique_strings; u32 code_points_with_non_zero_combining_class { 0 }; u32 code_points_with_decomposition_mapping { 0 }; Vector decomposition_mappings; Vector compatibility_tags; u32 simple_uppercase_mapping_size { 0 }; u32 simple_lowercase_mapping_size { 0 }; Vector special_casing; u32 code_points_with_special_casing { 0 }; u32 largest_casing_transform_size { 0 }; u32 largest_special_casing_size { 0 }; Vector conditions; Vector locales; Vector code_point_data; HashMap code_point_abbreviations; HashMap code_point_display_name_aliases; Vector code_point_display_names; PropList general_categories; Vector general_category_aliases; // The Unicode standard defines additional properties (Any, Assigned, ASCII) which are not in // any UCD file. Assigned code point ranges are derived as this generator is executed. // https://unicode.org/reports/tr18/#General_Category_Property PropList prop_list { { "Any"sv, { { 0, 0x10ffff } } }, { "Assigned"sv, {} }, { "ASCII"sv, { { 0, 0x7f } } }, }; Vector prop_aliases; PropList script_list { { "Unknown"sv, {} }, }; Vector script_aliases; PropList script_extensions; PropList block_list { { "No_Block"sv, {} }, }; Vector block_aliases; Vector block_display_names; // FIXME: We are not yet doing anything with this data. It will be needed for String.prototype.normalize. NormalizationProps normalization_props; PropList grapheme_break_props; PropList word_break_props; PropList sentence_break_props; }; static String sanitize_entry(String const& entry) { auto sanitized = entry.replace("-"sv, "_"sv, ReplaceMode::All); sanitized = sanitized.replace(" "sv, "_"sv, ReplaceMode::All); StringBuilder builder; bool next_is_upper = true; for (auto ch : sanitized) { if (next_is_upper) builder.append_code_point(to_ascii_uppercase(ch)); else builder.append_code_point(ch); next_is_upper = ch == '_'; } return builder.to_string(); } static Vector parse_code_point_list(StringView list) { Vector code_points; auto segments = list.split_view(' '); for (auto const& code_point : segments) code_points.append(AK::StringUtils::convert_to_uint_from_hex(code_point).value()); return code_points; } static CodePointRange parse_code_point_range(StringView list) { CodePointRange code_point_range {}; if (list.contains(".."sv)) { auto segments = list.split_view(".."sv); VERIFY(segments.size() == 2); auto begin = AK::StringUtils::convert_to_uint_from_hex(segments[0]).value(); auto end = AK::StringUtils::convert_to_uint_from_hex(segments[1]).value(); code_point_range = { begin, end }; } else { auto code_point = AK::StringUtils::convert_to_uint_from_hex(list).value(); code_point_range = { code_point, code_point }; } return code_point_range; } static ErrorOr parse_special_casing(Core::Stream::BufferedFile& file, UnicodeData& unicode_data) { Array buffer; while (TRY(file.can_read_line())) { auto line = TRY(file.read_line(buffer)); if (line.is_empty() || line.starts_with('#')) continue; if (auto index = line.find('#'); index.has_value()) line = line.substring_view(0, *index); auto segments = line.split_view(';', SplitBehavior::KeepEmpty); VERIFY(segments.size() == 5 || segments.size() == 6); SpecialCasing casing {}; casing.code_point = AK::StringUtils::convert_to_uint_from_hex(segments[0]).value(); casing.lowercase_mapping = parse_code_point_list(segments[1]); casing.titlecase_mapping = parse_code_point_list(segments[2]); casing.uppercase_mapping = parse_code_point_list(segments[3]); if (auto condition = segments[4].trim_whitespace(); !condition.is_empty()) { auto conditions = condition.split_view(' ', SplitBehavior::KeepEmpty); VERIFY(conditions.size() == 1 || conditions.size() == 2); if (conditions.size() == 2) { casing.locale = conditions[0]; casing.condition = conditions[1]; } else if (all_of(conditions[0], is_ascii_lower_alpha)) { casing.locale = conditions[0]; } else { casing.condition = conditions[0]; } if (!casing.locale.is_empty()) { casing.locale = String::formatted("{:c}{}", to_ascii_uppercase(casing.locale[0]), casing.locale.substring_view(1)); if (!unicode_data.locales.contains_slow(casing.locale)) unicode_data.locales.append(casing.locale); } casing.condition = casing.condition.replace("_"sv, ""sv, ReplaceMode::All); if (!casing.condition.is_empty() && !unicode_data.conditions.contains_slow(casing.condition)) unicode_data.conditions.append(casing.condition); } unicode_data.largest_casing_transform_size = max(unicode_data.largest_casing_transform_size, casing.lowercase_mapping.size()); unicode_data.largest_casing_transform_size = max(unicode_data.largest_casing_transform_size, casing.titlecase_mapping.size()); unicode_data.largest_casing_transform_size = max(unicode_data.largest_casing_transform_size, casing.uppercase_mapping.size()); unicode_data.special_casing.append(move(casing)); } quick_sort(unicode_data.special_casing, [](auto const& lhs, auto const& rhs) { if (lhs.code_point != rhs.code_point) return lhs.code_point < rhs.code_point; if (lhs.locale.is_empty() && !rhs.locale.is_empty()) return false; if (!lhs.locale.is_empty() && rhs.locale.is_empty()) return true; return lhs.locale < rhs.locale; }); for (u32 i = 0; i < unicode_data.special_casing.size(); ++i) unicode_data.special_casing[i].index = i; return {}; } static ErrorOr parse_prop_list(Core::Stream::BufferedFile& file, PropList& prop_list, bool multi_value_property = false, bool sanitize_property = false) { Array buffer; while (TRY(file.can_read_line())) { auto line = TRY(file.read_line(buffer)); if (line.is_empty() || line.starts_with('#')) continue; if (auto index = line.find('#'); index.has_value()) line = line.substring_view(0, *index); auto segments = line.split_view(';', SplitBehavior::KeepEmpty); VERIFY(segments.size() == 2); auto code_point_range = parse_code_point_range(segments[0].trim_whitespace()); Vector properties; if (multi_value_property) properties = segments[1].trim_whitespace().split_view(' '); else properties = { segments[1].trim_whitespace() }; for (auto& property : properties) { auto& code_points = prop_list.ensure(sanitize_property ? sanitize_entry(property).trim_whitespace().view() : property.trim_whitespace()); code_points.append(code_point_range); } } return {}; } static ErrorOr parse_alias_list(Core::Stream::BufferedFile& file, PropList const& prop_list, Vector& prop_aliases) { String current_property; Array buffer; auto append_alias = [&](auto alias, auto property) { // Note: The alias files contain lines such as "Hyphen = Hyphen", which we should just skip. if (alias == property) return; // FIXME: We will, eventually, need to find where missing properties are located and parse them. if (!prop_list.contains(property)) return; prop_aliases.append({ property, alias }); }; while (TRY(file.can_read_line())) { auto line = TRY(file.read_line(buffer)); if (line.is_empty() || line.starts_with('#')) { if (line.ends_with("Properties"sv)) current_property = line.substring_view(2); continue; } // Note: For now, we only care about Binary Property aliases for Unicode property escapes. if (current_property != "Binary Properties"sv) continue; auto segments = line.split_view(';', SplitBehavior::KeepEmpty); VERIFY((segments.size() == 2) || (segments.size() == 3)); auto alias = segments[0].trim_whitespace(); auto property = segments[1].trim_whitespace(); append_alias(alias, property); if (segments.size() == 3) { alias = segments[2].trim_whitespace(); append_alias(alias, property); } } return {}; } static ErrorOr parse_name_aliases(Core::Stream::BufferedFile& file, UnicodeData& unicode_data) { Array buffer; while (TRY(file.can_read_line())) { auto line = TRY(file.read_line(buffer)); if (line.is_empty() || line.starts_with('#')) continue; auto segments = line.split_view(';', SplitBehavior::KeepEmpty); VERIFY(segments.size() == 3); auto code_point = AK::StringUtils::convert_to_uint_from_hex(segments[0].trim_whitespace()); auto alias = segments[1].trim_whitespace(); auto reason = segments[2].trim_whitespace(); if (reason == "abbreviation"sv) { auto index = unicode_data.unique_strings.ensure(alias); unicode_data.code_point_abbreviations.set(*code_point, index); } else if (reason.is_one_of("correction"sv, "control"sv)) { if (!unicode_data.code_point_display_name_aliases.contains(*code_point)) { auto index = unicode_data.unique_strings.ensure(alias); unicode_data.code_point_display_name_aliases.set(*code_point, index); } } } return {}; } static ErrorOr parse_value_alias_list(Core::Stream::BufferedFile& file, StringView desired_category, Vector const& value_list, Vector& prop_aliases, bool primary_value_is_first = true, bool sanitize_alias = false) { TRY(file.seek(0, Core::Stream::SeekMode::SetPosition)); Array buffer; auto append_alias = [&](auto alias, auto value) { // Note: The value alias file contains lines such as "Ahom = Ahom", which we should just skip. if (alias == value) return; // FIXME: We will, eventually, need to find where missing properties are located and parse them. if (!value_list.contains_slow(value)) return; prop_aliases.append({ value, alias }); }; while (TRY(file.can_read_line())) { auto line = TRY(file.read_line(buffer)); if (line.is_empty() || line.starts_with('#')) continue; if (auto index = line.find('#'); index.has_value()) line = line.substring_view(0, *index); auto segments = line.split_view(';', SplitBehavior::KeepEmpty); auto category = segments[0].trim_whitespace(); if (category != desired_category) continue; VERIFY((segments.size() == 3) || (segments.size() == 4)); auto value = primary_value_is_first ? segments[1].trim_whitespace() : segments[2].trim_whitespace(); auto alias = primary_value_is_first ? segments[2].trim_whitespace() : segments[1].trim_whitespace(); append_alias(sanitize_alias ? sanitize_entry(alias).view() : alias, value); if (segments.size() == 4) { alias = segments[3].trim_whitespace(); append_alias(sanitize_alias ? sanitize_entry(alias).view() : alias, value); } } return {}; } static ErrorOr parse_normalization_props(Core::Stream::BufferedFile& file, UnicodeData& unicode_data) { Array buffer; while (TRY(file.can_read_line())) { auto line = TRY(file.read_line(buffer)); if (line.is_empty() || line.starts_with('#')) continue; if (auto index = line.find('#'); index.has_value()) line = line.substring_view(0, *index); auto segments = line.split_view(';', SplitBehavior::KeepEmpty); VERIFY((segments.size() == 2) || (segments.size() == 3)); auto code_point_range = parse_code_point_range(segments[0].trim_whitespace()); auto property = segments[1].trim_whitespace().to_string(); Vector value; QuickCheck quick_check = QuickCheck::Yes; if (segments.size() == 3) { auto value_or_quick_check = segments[2].trim_whitespace(); if ((value_or_quick_check == "N"sv)) quick_check = QuickCheck::No; else if ((value_or_quick_check == "M"sv)) quick_check = QuickCheck::Maybe; else value = parse_code_point_list(value_or_quick_check); } auto& normalizations = unicode_data.normalization_props.ensure(property); normalizations.append({ code_point_range, move(value), quick_check }); auto& prop_list = unicode_data.prop_list.ensure(property); prop_list.append(move(code_point_range)); } return {}; } static void add_canonical_code_point_name(CodePointRange range, StringView name, UnicodeData& unicode_data) { // https://www.unicode.org/versions/Unicode15.0.0/ch04.pdf#G142981 // FIXME: Implement the NR1 rules for Hangul syllables. struct CodePointNameFormat { CodePointRange code_point_range; StringView name; }; // These code point ranges are the NR2 set of name replacements defined by Table 4-8. constexpr Array s_ideographic_replacements { { { { 0x3400, 0x4DBF }, "CJK UNIFIED IDEOGRAPH-{:X}"sv }, { { 0x4E00, 0x9FFF }, "CJK UNIFIED IDEOGRAPH-{:X}"sv }, { { 0xF900, 0xFA6D }, "CJK COMPATIBILITY IDEOGRAPH-{:X}"sv }, { { 0xFA70, 0xFAD9 }, "CJK COMPATIBILITY IDEOGRAPH-{:X}"sv }, { { 0x17000, 0x187F7 }, "TANGUT IDEOGRAPH-{:X}"sv }, { { 0x18B00, 0x18CD5 }, "KHITAN SMALL SCRIPT CHARACTER-{:X}"sv }, { { 0x18D00, 0x18D08 }, "TANGUT IDEOGRAPH-{:X}"sv }, { { 0x1B170, 0x1B2FB }, "NUSHU CHARACTER-{:X}"sv }, { { 0x20000, 0x2A6DF }, "CJK UNIFIED IDEOGRAPH-{:X}"sv }, { { 0x2A700, 0x2B739 }, "CJK UNIFIED IDEOGRAPH-{:X}"sv }, { { 0x2B740, 0x2B81D }, "CJK UNIFIED IDEOGRAPH-{:X}"sv }, { { 0x2B820, 0x2CEA1 }, "CJK UNIFIED IDEOGRAPH-{:X}"sv }, { { 0x2CEB0, 0x2EBE0 }, "CJK UNIFIED IDEOGRAPH-{:X}"sv }, { { 0x2F800, 0x2FA1D }, "CJK COMPATIBILITY IDEOGRAPH-{:X}"sv }, { { 0x30000, 0x3134A }, "CJK UNIFIED IDEOGRAPH-{:X}"sv }, { { 0x31350, 0x323AF }, "CJK UNIFIED IDEOGRAPH-{:X}"sv }, } }; auto it = find_if(s_ideographic_replacements.begin(), s_ideographic_replacements.end(), [&](auto const& replacement) { return replacement.code_point_range.first == range.first; }); if (it != s_ideographic_replacements.end()) { auto index = unicode_data.unique_strings.ensure(it->name); unicode_data.code_point_display_names.append({ it->code_point_range, index }); return; } it = find_if(s_ideographic_replacements.begin(), s_ideographic_replacements.end(), [&](auto const& replacement) { return (replacement.code_point_range.first <= range.first) && (range.first <= replacement.code_point_range.last); }); if (it != s_ideographic_replacements.end()) { // Drop code points that will have been captured by a range defined by the ideographic replacements. return; } if (auto alias = unicode_data.code_point_display_name_aliases.get(range.first); alias.has_value()) { // NR4 states that control code points have a null string as their name. Our implementation // uses the control code's alias as its display name. unicode_data.code_point_display_names.append({ range, *alias }); return; } auto index = unicode_data.unique_strings.ensure(name); unicode_data.code_point_display_names.append({ range, index }); } static Optional parse_decomposition_mapping(StringView string, UnicodeData& unicode_data) { if (string.is_empty()) return {}; CodePointDecomposition mapping; auto parts = string.split_view(' '); VERIFY(parts.size() > 0); if (parts.first().starts_with('<')) { auto const tag = parts.take_first().trim("<>"sv); mapping.tag = String::formatted("{:c}{}", to_ascii_uppercase(tag[0]), tag.substring_view(1)); if (!unicode_data.compatibility_tags.contains_slow(mapping.tag)) unicode_data.compatibility_tags.append(mapping.tag); } mapping.decomposition_index = unicode_data.decomposition_mappings.size(); mapping.decomposition_size = parts.size(); for (auto part : parts) { unicode_data.decomposition_mappings.append(AK::StringUtils::convert_to_uint_from_hex(part).value()); } return mapping; } static ErrorOr parse_block_display_names(Core::Stream::BufferedFile& file, UnicodeData& unicode_data) { Array buffer; while (TRY(file.can_read_line())) { auto line = TRY(file.read_line(buffer)); if (line.is_empty() || line.starts_with('#')) continue; auto segments = line.split_view(';', SplitBehavior::KeepEmpty); VERIFY(segments.size() == 2); auto code_point_range = parse_code_point_range(segments[0].trim_whitespace()); auto display_name = segments[1].trim_whitespace(); auto index = unicode_data.unique_strings.ensure(display_name); unicode_data.block_display_names.append({ code_point_range, index }); } TRY(file.seek(0, Core::Stream::SeekMode::SetPosition)); return {}; } static ErrorOr parse_unicode_data(Core::Stream::BufferedFile& file, UnicodeData& unicode_data) { Optional code_point_range_start; auto& assigned_code_points = unicode_data.prop_list.find("Assigned"sv)->value; Optional assigned_code_point_range_start = 0; u32 previous_code_point = 0; Array buffer; while (TRY(file.can_read_line())) { auto line = TRY(file.read_line(buffer)); if (line.is_empty()) continue; auto segments = line.split_view(';', SplitBehavior::KeepEmpty); VERIFY(segments.size() == 15); CodePointData data {}; data.code_point = AK::StringUtils::convert_to_uint_from_hex(segments[0]).value(); data.name = segments[1]; data.canonical_combining_class = AK::StringUtils::convert_to_uint(segments[3]).value(); data.bidi_class = segments[4]; data.decomposition_mapping = parse_decomposition_mapping(segments[5], unicode_data); data.numeric_value_decimal = AK::StringUtils::convert_to_int(segments[6]); data.numeric_value_digit = AK::StringUtils::convert_to_int(segments[7]); data.numeric_value_numeric = AK::StringUtils::convert_to_int(segments[8]); data.bidi_mirrored = segments[9] == "Y"sv; data.unicode_1_name = segments[10]; data.iso_comment = segments[11]; data.simple_uppercase_mapping = AK::StringUtils::convert_to_uint_from_hex(segments[12]); data.simple_lowercase_mapping = AK::StringUtils::convert_to_uint_from_hex(segments[13]); data.simple_titlecase_mapping = AK::StringUtils::convert_to_uint_from_hex(segments[14]); if (auto abbreviation = unicode_data.code_point_abbreviations.get(data.code_point); abbreviation.has_value()) data.abbreviation = *abbreviation; if (!assigned_code_point_range_start.has_value()) assigned_code_point_range_start = data.code_point; if (data.name.starts_with("<"sv) && data.name.ends_with(", First>"sv)) { VERIFY(!code_point_range_start.has_value() && assigned_code_point_range_start.has_value()); code_point_range_start = data.code_point; data.name = data.name.substring(1, data.name.length() - 9); assigned_code_points.append({ *assigned_code_point_range_start, previous_code_point }); assigned_code_point_range_start.clear(); } else if (data.name.starts_with("<"sv) && data.name.ends_with(", Last>"sv)) { VERIFY(code_point_range_start.has_value()); CodePointRange code_point_range { *code_point_range_start, data.code_point }; assigned_code_points.append(code_point_range); data.name = data.name.substring(1, data.name.length() - 8); code_point_range_start.clear(); add_canonical_code_point_name(code_point_range, data.name, unicode_data); } else { add_canonical_code_point_name({ data.code_point, data.code_point }, data.name, unicode_data); if ((data.code_point > 0) && (data.code_point - previous_code_point) != 1) { VERIFY(assigned_code_point_range_start.has_value()); assigned_code_points.append({ *assigned_code_point_range_start, previous_code_point }); assigned_code_point_range_start = data.code_point; } } bool has_special_casing { false }; for (auto const& casing : unicode_data.special_casing) { if (casing.code_point == data.code_point) { data.special_casing_indices.append(casing.index); has_special_casing = true; } } unicode_data.code_points_with_non_zero_combining_class += data.canonical_combining_class != 0; unicode_data.simple_uppercase_mapping_size += data.simple_uppercase_mapping.has_value(); unicode_data.simple_lowercase_mapping_size += data.simple_lowercase_mapping.has_value(); unicode_data.code_points_with_decomposition_mapping += data.decomposition_mapping.has_value(); unicode_data.code_points_with_special_casing += has_special_casing; unicode_data.largest_special_casing_size = max(unicode_data.largest_special_casing_size, data.special_casing_indices.size()); previous_code_point = data.code_point; unicode_data.code_point_data.append(move(data)); } return {}; } static ErrorOr generate_unicode_data_header(Core::Stream::BufferedFile& file, UnicodeData& unicode_data) { StringBuilder builder; SourceGenerator generator { builder }; generator.set("casing_transform_size", String::number(unicode_data.largest_casing_transform_size)); auto generate_enum = [&](StringView name, StringView default_, Vector values, Vector aliases = {}) { quick_sort(values); quick_sort(aliases, [](auto& alias1, auto& alias2) { return alias1.alias < alias2.alias; }); generator.set("name", name); generator.set("underlying", String::formatted("{}UnderlyingType", name)); generator.set("type", ((values.size() + !default_.is_empty()) < 256) ? "u8"sv : "u16"sv); generator.append(R"~~~( using @underlying@ = @type@; enum class @name@ : @underlying@ {)~~~"); if (!default_.is_empty()) { generator.set("default", default_); generator.append(R"~~~( @default@,)~~~"); } for (auto const& value : values) { generator.set("value", value); generator.append(R"~~~( @value@,)~~~"); } for (auto const& alias : aliases) { generator.set("alias", alias.alias); generator.set("value", alias.name); generator.append(R"~~~( @alias@ = @value@,)~~~"); } generator.append(R"~~~( }; )~~~"); }; generator.append(R"~~~( #pragma once #include #include namespace Unicode { )~~~"); generate_enum("Locale"sv, "None"sv, unicode_data.locales); generate_enum("Condition"sv, "None"sv, move(unicode_data.conditions)); generate_enum("GeneralCategory"sv, {}, unicode_data.general_categories.keys(), unicode_data.general_category_aliases); generate_enum("Property"sv, {}, unicode_data.prop_list.keys(), unicode_data.prop_aliases); generate_enum("Script"sv, {}, unicode_data.script_list.keys(), unicode_data.script_aliases); generate_enum("Block"sv, {}, unicode_data.block_list.keys(), unicode_data.block_aliases); generate_enum("GraphemeBreakProperty"sv, {}, unicode_data.grapheme_break_props.keys()); generate_enum("WordBreakProperty"sv, {}, unicode_data.word_break_props.keys()); generate_enum("SentenceBreakProperty"sv, {}, unicode_data.sentence_break_props.keys()); generate_enum("CompatibilityFormattingTag"sv, "Canonical"sv, unicode_data.compatibility_tags); generator.append(R"~~~( struct SpecialCasing { u32 code_point { 0 }; u32 lowercase_mapping[@casing_transform_size@]; u32 lowercase_mapping_size { 0 }; u32 uppercase_mapping[@casing_transform_size@]; u32 uppercase_mapping_size { 0 }; u32 titlecase_mapping[@casing_transform_size@]; u32 titlecase_mapping_size { 0 }; Locale locale { Locale::None }; Condition condition { Condition::None }; }; struct CodePointDecomposition { u32 code_point { 0 }; CompatibilityFormattingTag tag { CompatibilityFormattingTag::Canonical }; Span decomposition; }; Optional locale_from_string(StringView locale); } )~~~"); TRY(file.write(generator.as_string_view().bytes())); return {}; } static ErrorOr generate_unicode_data_implementation(Core::Stream::BufferedFile& file, UnicodeData const& unicode_data) { StringBuilder builder; SourceGenerator generator { builder }; generator.set("string_index_type"sv, s_string_index_type); generator.set("largest_special_casing_size", String::number(unicode_data.largest_special_casing_size)); generator.set("special_casing_size", String::number(unicode_data.special_casing.size())); generator.append(R"~~~( #include #include #include #include #include #include #include #include #include #include namespace Unicode { )~~~"); unicode_data.unique_strings.generate(generator); auto append_list_and_size = [&](auto const& list, StringView format) { if (list.is_empty()) { generator.append(", {}, 0"); return; } bool first = true; generator.append(", {"); for (auto const& item : list) { generator.append(first ? " "sv : ", "sv); generator.append(String::formatted(format, item)); first = false; } generator.append(String::formatted(" }}, {}", list.size())); }; generator.append(R"~~~( static constexpr Array s_special_casing { {)~~~"); for (auto const& casing : unicode_data.special_casing) { generator.set("code_point", String::formatted("{:#x}", casing.code_point)); generator.append(R"~~~( { @code_point@)~~~"); constexpr auto format = "0x{:x}"sv; append_list_and_size(casing.lowercase_mapping, format); append_list_and_size(casing.uppercase_mapping, format); append_list_and_size(casing.titlecase_mapping, format); generator.set("locale", casing.locale.is_empty() ? "None" : casing.locale); generator.append(", Locale::@locale@"); generator.set("condition", casing.condition.is_empty() ? "None" : casing.condition); generator.append(", Condition::@condition@"); generator.append(" },"); } generator.append(R"~~~( } }; struct CodePointMapping { u32 code_point { 0 }; u32 mapping { 0 }; }; struct SpecialCaseMapping { u32 code_point { 0 }; Array special_casing {}; u32 special_casing_size { 0 }; }; struct CodePointAbbreviation { u32 code_point { 0 }; @string_index_type@ abbreviation { 0 }; }; template struct CodePointComparator { constexpr int operator()(u32 code_point, MappingType const& mapping) { return code_point - mapping.code_point; } }; struct CodePointRangeComparator { constexpr int operator()(u32 code_point, CodePointRange const& range) { return (code_point > range.last) - (code_point < range.first); } }; struct BlockNameData { CodePointRange code_point_range {}; @string_index_type@ display_name { 0 }; }; struct BlockNameComparator : public CodePointRangeComparator { constexpr int operator()(u32 code_point, BlockNameData const& name) { return CodePointRangeComparator::operator()(code_point, name.code_point_range); } }; struct CodePointName { CodePointRange code_point_range {}; @string_index_type@ display_name { 0 }; }; struct CodePointNameComparator : public CodePointRangeComparator { constexpr int operator()(u32 code_point, CodePointName const& name) { return CodePointRangeComparator::operator()(code_point, name.code_point_range); } }; )~~~"); generator.set("decomposition_mappings_size", String::number(unicode_data.decomposition_mappings.size())); generator.append("\nstatic constexpr Array s_decomposition_mappings_data { "); generator.append(String::join(", "sv, unicode_data.decomposition_mappings, "{:#x}"sv)); generator.append(" };\n"); auto append_code_point_mappings = [&](StringView name, StringView mapping_type, u32 size, auto mapping_getter) { generator.set("name", name); generator.set("mapping_type", mapping_type); generator.set("size", String::number(size)); generator.append(R"~~~( static constexpr Array<@mapping_type@, @size@> s_@name@_mappings { { )~~~"); constexpr size_t max_mappings_per_row = 20; size_t mappings_in_current_row = 0; for (auto const& data : unicode_data.code_point_data) { auto mapping = mapping_getter(data); if constexpr (requires { mapping.has_value(); }) { if (!mapping.has_value()) continue; } else { if (mapping.is_empty()) continue; } if (mappings_in_current_row++ > 0) generator.append(" "); generator.set("code_point", String::formatted("{:#x}", data.code_point)); generator.append("{ @code_point@"); if constexpr (IsSame> || IsSame>) { generator.set("mapping", String::formatted("{:#x}", *mapping)); generator.append(", @mapping@ },"); } else if constexpr (IsSame>) { generator.set("tag", mapping->tag); generator.set("start", String::number(mapping->decomposition_index)); generator.set("size", String::number(mapping->decomposition_size)); generator.append(", CompatibilityFormattingTag::@tag@, Span { s_decomposition_mappings_data.data() + @start@, @size@ } },"); } else { append_list_and_size(data.special_casing_indices, "&s_special_casing[{}]"sv); generator.append(" },"); } if (mappings_in_current_row == max_mappings_per_row) { mappings_in_current_row = 0; generator.append("\n "); } } generator.append(R"~~~( } }; )~~~"); }; append_code_point_mappings("combining_class"sv, "CodePointMapping"sv, unicode_data.code_points_with_non_zero_combining_class, [](auto const& data) -> Optional { if (data.canonical_combining_class == 0) return {}; return data.canonical_combining_class; }); append_code_point_mappings("uppercase"sv, "CodePointMapping"sv, unicode_data.simple_uppercase_mapping_size, [](auto const& data) { return data.simple_uppercase_mapping; }); append_code_point_mappings("lowercase"sv, "CodePointMapping"sv, unicode_data.simple_lowercase_mapping_size, [](auto const& data) { return data.simple_lowercase_mapping; }); append_code_point_mappings("special_case"sv, "SpecialCaseMapping"sv, unicode_data.code_points_with_special_casing, [](auto const& data) { return data.special_casing_indices; }); append_code_point_mappings("abbreviation"sv, "CodePointAbbreviation"sv, unicode_data.code_point_abbreviations.size(), [](auto const& data) { return data.abbreviation; }); append_code_point_mappings("decomposition"sv, "CodePointDecomposition"sv, unicode_data.code_points_with_decomposition_mapping, [](auto const& data) { return data.decomposition_mapping; }); auto append_code_point_range_list = [&](String name, Vector const& ranges) { generator.set("name", name); generator.set("size", String::number(ranges.size())); generator.append(R"~~~( static constexpr Array @name@ { { )~~~"); constexpr size_t max_ranges_per_row = 20; size_t ranges_in_current_row = 0; for (auto const& range : ranges) { if (ranges_in_current_row++ > 0) generator.append(" "); generator.set("first", String::formatted("{:#x}", range.first)); generator.set("last", String::formatted("{:#x}", range.last)); generator.append("{ @first@, @last@ },"); if (ranges_in_current_row == max_ranges_per_row) { ranges_in_current_row = 0; generator.append("\n "); } } generator.append(R"~~~( } }; )~~~"); }; auto append_prop_list = [&](StringView collection_name, StringView property_format, PropList const& property_list) { for (auto const& property : property_list) { auto name = String::formatted(property_format, property.key); append_code_point_range_list(move(name), property.value); } auto property_names = property_list.keys(); quick_sort(property_names); generator.set("name", collection_name); generator.set("size", String::number(property_names.size())); generator.append(R"~~~( static constexpr Array, @size@> @name@ { {)~~~"); for (auto const& property_name : property_names) { generator.set("name", String::formatted(property_format, property_name)); generator.append(R"~~~( @name@.span(),)~~~"); } generator.append(R"~~~( } }; )~~~"); }; append_prop_list("s_general_categories"sv, "s_general_category_{}"sv, unicode_data.general_categories); append_prop_list("s_properties"sv, "s_property_{}"sv, unicode_data.prop_list); append_prop_list("s_scripts"sv, "s_script_{}"sv, unicode_data.script_list); append_prop_list("s_script_extensions"sv, "s_script_extension_{}"sv, unicode_data.script_extensions); append_prop_list("s_blocks"sv, "s_block_{}"sv, unicode_data.block_list); append_prop_list("s_grapheme_break_properties"sv, "s_grapheme_break_property_{}"sv, unicode_data.grapheme_break_props); append_prop_list("s_word_break_properties"sv, "s_word_break_property_{}"sv, unicode_data.word_break_props); append_prop_list("s_sentence_break_properties"sv, "s_sentence_break_property_{}"sv, unicode_data.sentence_break_props); auto append_code_point_display_names = [&](StringView type, StringView name, auto const& display_names) { constexpr size_t max_values_per_row = 30; size_t values_in_current_row = 0; generator.set("type", type); generator.set("name", name); generator.set("size", String::number(display_names.size())); generator.append(R"~~~( static constexpr Array<@type@, @size@> @name@ { { )~~~"); for (auto const& display_name : display_names) { if (values_in_current_row++ > 0) generator.append(", "); generator.set("first", String::formatted("{:#x}", display_name.code_point_range.first)); generator.set("last", String::formatted("{:#x}", display_name.code_point_range.last)); generator.set("name", String::number(display_name.name)); generator.append("{ { @first@, @last@ }, @name@ }"); if (values_in_current_row == max_values_per_row) { values_in_current_row = 0; generator.append(",\n "); } } generator.append(R"~~~( } }; )~~~"); }; append_code_point_display_names("BlockNameData"sv, "s_block_display_names"sv, unicode_data.block_display_names); append_code_point_display_names("CodePointName"sv, "s_code_point_display_names"sv, unicode_data.code_point_display_names); generator.append(R"~~~( Optional code_point_block_display_name(u32 code_point) { if (auto const* entry = binary_search(s_block_display_names, code_point, nullptr, BlockNameComparator {})) return decode_string(entry->display_name); return {}; } Span block_display_names() { static auto display_names = []() { Array display_names; for (size_t i = 0; i < s_block_display_names.size(); ++i) { auto const& display_name = s_block_display_names[i]; display_names[i] = { display_name.code_point_range, decode_string(display_name.display_name) }; } return display_names; }(); return display_names.span(); } Optional code_point_display_name(u32 code_point) { if (auto const* entry = binary_search(s_code_point_display_names, code_point, nullptr, CodePointNameComparator {})) { auto display_name = decode_string(entry->display_name); if (display_name.ends_with("{:X}"sv)) return String::formatted(display_name, code_point); return display_name; } return {}; } )~~~"); auto append_code_point_mapping_search = [&](StringView method, StringView mappings, StringView fallback) { generator.set("method", method); generator.set("mappings", mappings); generator.set("fallback", fallback); generator.append(R"~~~( u32 @method@(u32 code_point) { auto const* mapping = binary_search(@mappings@, code_point, nullptr, CodePointComparator {}); return mapping ? mapping->mapping : @fallback@; } )~~~"); }; append_code_point_mapping_search("canonical_combining_class"sv, "s_combining_class_mappings"sv, "0"sv); append_code_point_mapping_search("to_unicode_uppercase"sv, "s_uppercase_mappings"sv, "code_point"sv); append_code_point_mapping_search("to_unicode_lowercase"sv, "s_lowercase_mappings"sv, "code_point"sv); generator.append(R"~~~( Span special_case_mapping(u32 code_point) { auto const* mapping = binary_search(s_special_case_mappings, code_point, nullptr, CodePointComparator {}); if (mapping == nullptr) return {}; return mapping->special_casing.span().slice(0, mapping->special_casing_size); } Optional code_point_abbreviation(u32 code_point) { auto const* mapping = binary_search(s_abbreviation_mappings, code_point, nullptr, CodePointComparator {}); if (mapping == nullptr) return {}; if (mapping->abbreviation == 0) return {}; return decode_string(mapping->abbreviation); } Optional code_point_decomposition(u32 code_point) { auto const* mapping = binary_search(s_decomposition_mappings, code_point, nullptr, CodePointComparator {}); if (mapping == nullptr) return {}; return *mapping; } Span code_point_decompositions() { return s_decomposition_mappings; } )~~~"); auto append_prop_search = [&](StringView enum_title, StringView enum_snake, StringView collection_name) { generator.set("enum_title", enum_title); generator.set("enum_snake", enum_snake); generator.set("collection_name", collection_name); generator.append(R"~~~( bool code_point_has_@enum_snake@(u32 code_point, @enum_title@ @enum_snake@) { auto index = static_cast<@enum_title@UnderlyingType>(@enum_snake@); auto const& ranges = @collection_name@.at(index); auto const* range = binary_search(ranges, code_point, nullptr, CodePointRangeComparator {}); return range != nullptr; } )~~~"); }; auto append_from_string = [&](StringView enum_title, StringView enum_snake, auto const& prop_list, Vector const& aliases) { HashValueMap hashes; hashes.ensure_capacity(prop_list.size() + aliases.size()); ValueFromStringOptions options {}; for (auto const& prop : prop_list) { if constexpr (IsSame, String>) { hashes.set(CaseInsensitiveStringViewTraits::hash(prop), prop); options.sensitivity = CaseSensitivity::CaseInsensitive; } else { hashes.set(prop.key.hash(), prop.key); } } for (auto const& alias : aliases) hashes.set(alias.alias.hash(), alias.alias); generate_value_from_string(generator, "{}_from_string"sv, enum_title, enum_snake, move(hashes), options); }; append_from_string("Locale"sv, "locale"sv, unicode_data.locales, {}); append_prop_search("GeneralCategory"sv, "general_category"sv, "s_general_categories"sv); append_from_string("GeneralCategory"sv, "general_category"sv, unicode_data.general_categories, unicode_data.general_category_aliases); append_prop_search("Property"sv, "property"sv, "s_properties"sv); append_from_string("Property"sv, "property"sv, unicode_data.prop_list, unicode_data.prop_aliases); append_prop_search("Script"sv, "script"sv, "s_scripts"sv); append_prop_search("Script"sv, "script_extension"sv, "s_script_extensions"sv); append_from_string("Script"sv, "script"sv, unicode_data.script_list, unicode_data.script_aliases); append_prop_search("Block"sv, "block"sv, "s_blocks"sv); append_from_string("Block"sv, "block"sv, unicode_data.block_list, unicode_data.block_aliases); append_prop_search("GraphemeBreakProperty"sv, "grapheme_break_property"sv, "s_grapheme_break_properties"sv); append_prop_search("WordBreakProperty"sv, "word_break_property"sv, "s_word_break_properties"sv); append_prop_search("SentenceBreakProperty"sv, "sentence_break_property"sv, "s_sentence_break_properties"sv); generator.append(R"~~~( } )~~~"); TRY(file.write(generator.as_string_view().bytes())); return {}; } static Vector flatten_code_point_ranges(Vector const& code_points) { Vector flattened; for (auto const& range : code_points) { flattened.grow_capacity(range.last - range.first); for (u32 code_point = range.first; code_point <= range.last; ++code_point) flattened.append(code_point); } return flattened; } static Vector form_code_point_ranges(Vector code_points) { Vector ranges; u32 range_start = code_points[0]; u32 range_end = range_start; for (size_t i = 1; i < code_points.size(); ++i) { u32 code_point = code_points[i]; if ((code_point - range_end) == 1) { range_end = code_point; } else { ranges.append({ range_start, range_end }); range_start = code_point; range_end = code_point; } } ranges.append({ range_start, range_end }); return ranges; } static void sort_and_merge_code_point_ranges(Vector& code_points) { quick_sort(code_points, [](auto const& range1, auto const& range2) { return range1.first < range2.first; }); for (size_t i = 0; i < code_points.size() - 1;) { if (code_points[i].last >= code_points[i + 1].first) { code_points[i].last = max(code_points[i].last, code_points[i + 1].last); code_points.remove(i + 1); } else { ++i; } } auto all_code_points = flatten_code_point_ranges(code_points); code_points = form_code_point_ranges(all_code_points); } static void populate_general_category_unions(PropList& general_categories) { // The Unicode standard defines General Category values which are not in any UCD file. These // values are simply unions of other values. // https://www.unicode.org/reports/tr44/#GC_Values_Table auto populate_union = [&](auto alias, auto categories) { auto& code_points = general_categories.ensure(alias); for (auto const& category : categories) code_points.extend(general_categories.find(category)->value); sort_and_merge_code_point_ranges(code_points); }; populate_union("LC"sv, Array { "Ll"sv, "Lu"sv, "Lt"sv }); populate_union("L"sv, Array { "Lu"sv, "Ll"sv, "Lt"sv, "Lm"sv, "Lo"sv }); populate_union("M"sv, Array { "Mn"sv, "Mc"sv, "Me"sv }); populate_union("N"sv, Array { "Nd"sv, "Nl"sv, "No"sv }); populate_union("P"sv, Array { "Pc"sv, "Pd"sv, "Ps"sv, "Pe"sv, "Pi"sv, "Pf"sv, "Po"sv }); populate_union("S"sv, Array { "Sm"sv, "Sc"sv, "Sk"sv, "So"sv }); populate_union("Z"sv, Array { "Zs"sv, "Zl"sv, "Zp"sv }); populate_union("C"sv, Array { "Cc"sv, "Cf"sv, "Cs"sv, "Co"sv, "Cn"sv }); } static void normalize_script_extensions(PropList& script_extensions, PropList const& script_list, Vector const& script_aliases) { // The ScriptExtensions UCD file lays out its code point ranges rather uniquely compared to // other files. The Script listed on each line may either be a full Script string or an aliased // abbreviation. Further, the extensions may or may not include the base Script list. Normalize // the extensions here to be keyed by the full Script name and always include the base list. auto extensions = move(script_extensions); script_extensions = script_list; for (auto const& extension : extensions) { auto it = find_if(script_aliases.begin(), script_aliases.end(), [&](auto const& alias) { return extension.key == alias.alias; }); auto const& key = (it == script_aliases.end()) ? extension.key : it->name; auto& code_points = script_extensions.find(key)->value; code_points.extend(extension.value); sort_and_merge_code_point_ranges(code_points); } // Lastly, the Common and Inherited script extensions are special. They must not contain any // code points which appear in other script extensions. The ScriptExtensions UCD file does not // list these extensions, therefore this peculiarity must be handled programmatically. // https://www.unicode.org/reports/tr24/#Assignment_ScriptX_Values auto code_point_has_other_extension = [&](StringView key, u32 code_point) { for (auto const& extension : extensions) { if (extension.key == key) continue; if (any_of(extension.value, [&](auto const& r) { return (r.first <= code_point) && (code_point <= r.last); })) return true; } return false; }; auto get_code_points_without_other_extensions = [&](StringView key) { auto code_points = flatten_code_point_ranges(script_list.find(key)->value); code_points.remove_all_matching([&](u32 c) { return code_point_has_other_extension(key, c); }); return code_points; }; auto common_code_points = get_code_points_without_other_extensions("Common"sv); script_extensions.set("Common"sv, form_code_point_ranges(common_code_points)); auto inherited_code_points = get_code_points_without_other_extensions("Inherited"sv); script_extensions.set("Inherited"sv, form_code_point_ranges(inherited_code_points)); } ErrorOr serenity_main(Main::Arguments arguments) { StringView generated_header_path; StringView generated_implementation_path; StringView unicode_data_path; StringView special_casing_path; StringView derived_general_category_path; StringView prop_list_path; StringView derived_core_prop_path; StringView derived_binary_prop_path; StringView prop_alias_path; StringView prop_value_alias_path; StringView name_alias_path; StringView scripts_path; StringView script_extensions_path; StringView blocks_path; StringView emoji_data_path; StringView normalization_path; StringView grapheme_break_path; StringView word_break_path; StringView sentence_break_path; Core::ArgsParser args_parser; args_parser.add_option(generated_header_path, "Path to the Unicode Data header file to generate", "generated-header-path", 'h', "generated-header-path"); args_parser.add_option(generated_implementation_path, "Path to the Unicode Data implementation file to generate", "generated-implementation-path", 'c', "generated-implementation-path"); args_parser.add_option(unicode_data_path, "Path to UnicodeData.txt file", "unicode-data-path", 'u', "unicode-data-path"); args_parser.add_option(special_casing_path, "Path to SpecialCasing.txt file", "special-casing-path", 's', "special-casing-path"); args_parser.add_option(derived_general_category_path, "Path to DerivedGeneralCategory.txt file", "derived-general-category-path", 'g', "derived-general-category-path"); args_parser.add_option(prop_list_path, "Path to PropList.txt file", "prop-list-path", 'p', "prop-list-path"); args_parser.add_option(derived_core_prop_path, "Path to DerivedCoreProperties.txt file", "derived-core-prop-path", 'd', "derived-core-prop-path"); args_parser.add_option(derived_binary_prop_path, "Path to DerivedBinaryProperties.txt file", "derived-binary-prop-path", 'b', "derived-binary-prop-path"); args_parser.add_option(prop_alias_path, "Path to PropertyAliases.txt file", "prop-alias-path", 'a', "prop-alias-path"); args_parser.add_option(prop_value_alias_path, "Path to PropertyValueAliases.txt file", "prop-value-alias-path", 'v', "prop-value-alias-path"); args_parser.add_option(name_alias_path, "Path to NameAliases.txt file", "name-alias-path", 'm', "name-alias-path"); args_parser.add_option(scripts_path, "Path to Scripts.txt file", "scripts-path", 'r', "scripts-path"); args_parser.add_option(script_extensions_path, "Path to ScriptExtensions.txt file", "script-extensions-path", 'x', "script-extensions-path"); args_parser.add_option(blocks_path, "Path to Blocks.txt file", "blocks-path", 'k', "blocks-path"); args_parser.add_option(emoji_data_path, "Path to emoji-data.txt file", "emoji-data-path", 'e', "emoji-data-path"); args_parser.add_option(normalization_path, "Path to DerivedNormalizationProps.txt file", "normalization-path", 'n', "normalization-path"); args_parser.add_option(grapheme_break_path, "Path to GraphemeBreakProperty.txt file", "grapheme-break-path", 'f', "grapheme-break-path"); args_parser.add_option(word_break_path, "Path to WordBreakProperty.txt file", "word-break-path", 'w', "word-break-path"); args_parser.add_option(sentence_break_path, "Path to SentenceBreakProperty.txt file", "sentence-break-path", 'i', "sentence-break-path"); args_parser.parse(arguments); auto generated_header_file = TRY(open_file(generated_header_path, Core::Stream::OpenMode::Write)); auto generated_implementation_file = TRY(open_file(generated_implementation_path, Core::Stream::OpenMode::Write)); auto unicode_data_file = TRY(open_file(unicode_data_path, Core::Stream::OpenMode::Read)); auto derived_general_category_file = TRY(open_file(derived_general_category_path, Core::Stream::OpenMode::Read)); auto special_casing_file = TRY(open_file(special_casing_path, Core::Stream::OpenMode::Read)); auto prop_list_file = TRY(open_file(prop_list_path, Core::Stream::OpenMode::Read)); auto derived_core_prop_file = TRY(open_file(derived_core_prop_path, Core::Stream::OpenMode::Read)); auto derived_binary_prop_file = TRY(open_file(derived_binary_prop_path, Core::Stream::OpenMode::Read)); auto prop_alias_file = TRY(open_file(prop_alias_path, Core::Stream::OpenMode::Read)); auto prop_value_alias_file = TRY(open_file(prop_value_alias_path, Core::Stream::OpenMode::Read)); auto name_alias_file = TRY(open_file(name_alias_path, Core::Stream::OpenMode::Read)); auto scripts_file = TRY(open_file(scripts_path, Core::Stream::OpenMode::Read)); auto script_extensions_file = TRY(open_file(script_extensions_path, Core::Stream::OpenMode::Read)); auto blocks_file = TRY(open_file(blocks_path, Core::Stream::OpenMode::Read)); auto emoji_data_file = TRY(open_file(emoji_data_path, Core::Stream::OpenMode::Read)); auto normalization_file = TRY(open_file(normalization_path, Core::Stream::OpenMode::Read)); auto grapheme_break_file = TRY(open_file(grapheme_break_path, Core::Stream::OpenMode::Read)); auto word_break_file = TRY(open_file(word_break_path, Core::Stream::OpenMode::Read)); auto sentence_break_file = TRY(open_file(sentence_break_path, Core::Stream::OpenMode::Read)); UnicodeData unicode_data {}; TRY(parse_special_casing(*special_casing_file, unicode_data)); TRY(parse_prop_list(*derived_general_category_file, unicode_data.general_categories)); TRY(parse_prop_list(*prop_list_file, unicode_data.prop_list)); TRY(parse_prop_list(*derived_core_prop_file, unicode_data.prop_list)); TRY(parse_prop_list(*derived_binary_prop_file, unicode_data.prop_list)); TRY(parse_prop_list(*emoji_data_file, unicode_data.prop_list)); TRY(parse_normalization_props(*normalization_file, unicode_data)); TRY(parse_alias_list(*prop_alias_file, unicode_data.prop_list, unicode_data.prop_aliases)); TRY(parse_prop_list(*scripts_file, unicode_data.script_list)); TRY(parse_prop_list(*script_extensions_file, unicode_data.script_extensions, true)); TRY(parse_block_display_names(*blocks_file, unicode_data)); TRY(parse_prop_list(*blocks_file, unicode_data.block_list, false, true)); TRY(parse_name_aliases(*name_alias_file, unicode_data)); TRY(parse_prop_list(*grapheme_break_file, unicode_data.grapheme_break_props)); TRY(parse_prop_list(*word_break_file, unicode_data.word_break_props)); TRY(parse_prop_list(*sentence_break_file, unicode_data.sentence_break_props)); populate_general_category_unions(unicode_data.general_categories); TRY(parse_unicode_data(*unicode_data_file, unicode_data)); TRY(parse_value_alias_list(*prop_value_alias_file, "gc"sv, unicode_data.general_categories.keys(), unicode_data.general_category_aliases)); TRY(parse_value_alias_list(*prop_value_alias_file, "sc"sv, unicode_data.script_list.keys(), unicode_data.script_aliases, false)); TRY(parse_value_alias_list(*prop_value_alias_file, "blk"sv, unicode_data.block_list.keys(), unicode_data.block_aliases, false, true)); normalize_script_extensions(unicode_data.script_extensions, unicode_data.script_list, unicode_data.script_aliases); TRY(generate_unicode_data_header(*generated_header_file, unicode_data)); TRY(generate_unicode_data_implementation(*generated_implementation_file, unicode_data)); return 0; }