Parser.cpp 316 KB

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  1. /*
  2. * Copyright (c) 2018-2022, Andreas Kling <kling@serenityos.org>
  3. * Copyright (c) 2020-2021, the SerenityOS developers.
  4. * Copyright (c) 2021-2023, Sam Atkins <atkinssj@serenityos.org>
  5. * Copyright (c) 2021, Tobias Christiansen <tobyase@serenityos.org>
  6. * Copyright (c) 2022, MacDue <macdue@dueutil.tech>
  7. *
  8. * SPDX-License-Identifier: BSD-2-Clause
  9. */
  10. #include <AK/CharacterTypes.h>
  11. #include <AK/Debug.h>
  12. #include <AK/GenericLexer.h>
  13. #include <AK/SourceLocation.h>
  14. #include <LibWeb/Bindings/MainThreadVM.h>
  15. #include <LibWeb/CSS/CSSFontFaceRule.h>
  16. #include <LibWeb/CSS/CSSImportRule.h>
  17. #include <LibWeb/CSS/CSSMediaRule.h>
  18. #include <LibWeb/CSS/CSSStyleDeclaration.h>
  19. #include <LibWeb/CSS/CSSStyleRule.h>
  20. #include <LibWeb/CSS/CSSStyleSheet.h>
  21. #include <LibWeb/CSS/CSSSupportsRule.h>
  22. #include <LibWeb/CSS/CalculatedOr.h>
  23. #include <LibWeb/CSS/EdgeRect.h>
  24. #include <LibWeb/CSS/MediaList.h>
  25. #include <LibWeb/CSS/Parser/Block.h>
  26. #include <LibWeb/CSS/Parser/ComponentValue.h>
  27. #include <LibWeb/CSS/Parser/DeclarationOrAtRule.h>
  28. #include <LibWeb/CSS/Parser/Function.h>
  29. #include <LibWeb/CSS/Parser/Parser.h>
  30. #include <LibWeb/CSS/Parser/Rule.h>
  31. #include <LibWeb/CSS/Selector.h>
  32. #include <LibWeb/CSS/StyleValue.h>
  33. #include <LibWeb/CSS/StyleValues/AngleStyleValue.h>
  34. #include <LibWeb/CSS/StyleValues/BackgroundRepeatStyleValue.h>
  35. #include <LibWeb/CSS/StyleValues/BackgroundSizeStyleValue.h>
  36. #include <LibWeb/CSS/StyleValues/BackgroundStyleValue.h>
  37. #include <LibWeb/CSS/StyleValues/BorderRadiusShorthandStyleValue.h>
  38. #include <LibWeb/CSS/StyleValues/BorderRadiusStyleValue.h>
  39. #include <LibWeb/CSS/StyleValues/BorderStyleValue.h>
  40. #include <LibWeb/CSS/StyleValues/ColorStyleValue.h>
  41. #include <LibWeb/CSS/StyleValues/ConicGradientStyleValue.h>
  42. #include <LibWeb/CSS/StyleValues/ContentStyleValue.h>
  43. #include <LibWeb/CSS/StyleValues/DisplayStyleValue.h>
  44. #include <LibWeb/CSS/StyleValues/EdgeStyleValue.h>
  45. #include <LibWeb/CSS/StyleValues/FilterValueListStyleValue.h>
  46. #include <LibWeb/CSS/StyleValues/FlexFlowStyleValue.h>
  47. #include <LibWeb/CSS/StyleValues/FlexStyleValue.h>
  48. #include <LibWeb/CSS/StyleValues/FontStyleValue.h>
  49. #include <LibWeb/CSS/StyleValues/FrequencyStyleValue.h>
  50. #include <LibWeb/CSS/StyleValues/GridAreaShorthandStyleValue.h>
  51. #include <LibWeb/CSS/StyleValues/GridTemplateAreaStyleValue.h>
  52. #include <LibWeb/CSS/StyleValues/GridTrackPlacementShorthandStyleValue.h>
  53. #include <LibWeb/CSS/StyleValues/GridTrackPlacementStyleValue.h>
  54. #include <LibWeb/CSS/StyleValues/GridTrackSizeListShorthandStyleValue.h>
  55. #include <LibWeb/CSS/StyleValues/GridTrackSizeListStyleValue.h>
  56. #include <LibWeb/CSS/StyleValues/IdentifierStyleValue.h>
  57. #include <LibWeb/CSS/StyleValues/ImageStyleValue.h>
  58. #include <LibWeb/CSS/StyleValues/InheritStyleValue.h>
  59. #include <LibWeb/CSS/StyleValues/InitialStyleValue.h>
  60. #include <LibWeb/CSS/StyleValues/LengthStyleValue.h>
  61. #include <LibWeb/CSS/StyleValues/LinearGradientStyleValue.h>
  62. #include <LibWeb/CSS/StyleValues/ListStyleStyleValue.h>
  63. #include <LibWeb/CSS/StyleValues/NumericStyleValue.h>
  64. #include <LibWeb/CSS/StyleValues/OverflowStyleValue.h>
  65. #include <LibWeb/CSS/StyleValues/PercentageStyleValue.h>
  66. #include <LibWeb/CSS/StyleValues/PositionStyleValue.h>
  67. #include <LibWeb/CSS/StyleValues/RadialGradientStyleValue.h>
  68. #include <LibWeb/CSS/StyleValues/RectStyleValue.h>
  69. #include <LibWeb/CSS/StyleValues/ResolutionStyleValue.h>
  70. #include <LibWeb/CSS/StyleValues/ShadowStyleValue.h>
  71. #include <LibWeb/CSS/StyleValues/StringStyleValue.h>
  72. #include <LibWeb/CSS/StyleValues/StyleValueList.h>
  73. #include <LibWeb/CSS/StyleValues/TextDecorationStyleValue.h>
  74. #include <LibWeb/CSS/StyleValues/TimeStyleValue.h>
  75. #include <LibWeb/CSS/StyleValues/TransformationStyleValue.h>
  76. #include <LibWeb/CSS/StyleValues/URLStyleValue.h>
  77. #include <LibWeb/CSS/StyleValues/UnresolvedStyleValue.h>
  78. #include <LibWeb/CSS/StyleValues/UnsetStyleValue.h>
  79. #include <LibWeb/DOM/Document.h>
  80. #include <LibWeb/Dump.h>
  81. #include <LibWeb/Infra/Strings.h>
  82. static void log_parse_error(SourceLocation const& location = SourceLocation::current())
  83. {
  84. dbgln_if(CSS_PARSER_DEBUG, "Parse error (CSS) {}", location);
  85. }
  86. namespace Web::CSS::Parser {
  87. ParsingContext::ParsingContext(JS::Realm& realm)
  88. : m_realm(realm)
  89. {
  90. }
  91. ParsingContext::ParsingContext(DOM::Document const& document, AK::URL url)
  92. : m_realm(const_cast<JS::Realm&>(document.realm()))
  93. , m_document(&document)
  94. , m_url(move(url))
  95. {
  96. }
  97. ParsingContext::ParsingContext(DOM::Document const& document)
  98. : m_realm(const_cast<JS::Realm&>(document.realm()))
  99. , m_document(&document)
  100. , m_url(document.url())
  101. {
  102. }
  103. ParsingContext::ParsingContext(DOM::ParentNode& parent_node)
  104. : m_realm(parent_node.realm())
  105. , m_document(&parent_node.document())
  106. , m_url(parent_node.document().url())
  107. {
  108. }
  109. bool ParsingContext::in_quirks_mode() const
  110. {
  111. return m_document ? m_document->in_quirks_mode() : false;
  112. }
  113. // https://www.w3.org/TR/css-values-4/#relative-urls
  114. AK::URL ParsingContext::complete_url(StringView relative_url) const
  115. {
  116. return m_url.complete_url(relative_url);
  117. }
  118. ErrorOr<Parser> Parser::create(ParsingContext const& context, StringView input, StringView encoding)
  119. {
  120. auto tokens = TRY(Tokenizer::tokenize(input, encoding));
  121. return Parser { context, move(tokens) };
  122. }
  123. Parser::Parser(ParsingContext const& context, Vector<Token> tokens)
  124. : m_context(context)
  125. , m_tokens(move(tokens))
  126. , m_token_stream(m_tokens)
  127. {
  128. }
  129. Parser::Parser(Parser&& other)
  130. : m_context(other.m_context)
  131. , m_tokens(move(other.m_tokens))
  132. , m_token_stream(m_tokens)
  133. {
  134. // Moving the TokenStream directly from `other` would break it, because TokenStream holds
  135. // a reference to the Vector<Token>, so it would be pointing at the old Parser's tokens.
  136. // So instead, we create a new TokenStream from this Parser's tokens, and then tell it to
  137. // copy the other TokenStream's state. This is quite hacky.
  138. m_token_stream.copy_state({}, other.m_token_stream);
  139. }
  140. // 5.3.3. Parse a stylesheet
  141. // https://www.w3.org/TR/css-syntax-3/#parse-stylesheet
  142. template<typename T>
  143. Parser::ParsedStyleSheet Parser::parse_a_stylesheet(TokenStream<T>& tokens, Optional<AK::URL> location)
  144. {
  145. // To parse a stylesheet from an input given an optional url location:
  146. // 1. If input is a byte stream for stylesheet, decode bytes from input, and set input to the result.
  147. // 2. Normalize input, and set input to the result.
  148. // NOTE: These are done automatically when creating the Parser.
  149. // 3. Create a new stylesheet, with its location set to location (or null, if location was not passed).
  150. ParsedStyleSheet style_sheet;
  151. style_sheet.location = move(location);
  152. // 4. Consume a list of rules from input, with the top-level flag set, and set the stylesheet’s value to the result.
  153. style_sheet.rules = consume_a_list_of_rules(tokens, TopLevel::Yes);
  154. // 5. Return the stylesheet.
  155. return style_sheet;
  156. }
  157. // https://www.w3.org/TR/css-syntax-3/#parse-a-css-stylesheet
  158. CSSStyleSheet* Parser::parse_as_css_stylesheet(Optional<AK::URL> location)
  159. {
  160. // To parse a CSS stylesheet, first parse a stylesheet.
  161. auto style_sheet = parse_a_stylesheet(m_token_stream, {});
  162. // Interpret all of the resulting top-level qualified rules as style rules, defined below.
  163. JS::MarkedVector<CSSRule*> rules(m_context.realm().heap());
  164. for (auto& raw_rule : style_sheet.rules) {
  165. auto* rule = convert_to_rule(raw_rule);
  166. // If any style rule is invalid, or any at-rule is not recognized or is invalid according to its grammar or context, it’s a parse error. Discard that rule.
  167. if (rule)
  168. rules.append(rule);
  169. }
  170. auto rule_list = CSSRuleList::create(m_context.realm(), rules).release_value_but_fixme_should_propagate_errors();
  171. auto media_list = MediaList::create(m_context.realm(), {}).release_value_but_fixme_should_propagate_errors();
  172. return CSSStyleSheet::create(m_context.realm(), rule_list, media_list, move(location)).release_value_but_fixme_should_propagate_errors();
  173. }
  174. Optional<SelectorList> Parser::parse_as_selector(SelectorParsingMode parsing_mode)
  175. {
  176. auto selector_list = parse_a_selector_list(m_token_stream, SelectorType::Standalone, parsing_mode);
  177. if (!selector_list.is_error())
  178. return selector_list.release_value();
  179. return {};
  180. }
  181. Optional<SelectorList> Parser::parse_as_relative_selector(SelectorParsingMode parsing_mode)
  182. {
  183. auto selector_list = parse_a_selector_list(m_token_stream, SelectorType::Relative, parsing_mode);
  184. if (!selector_list.is_error())
  185. return selector_list.release_value();
  186. return {};
  187. }
  188. template<typename T>
  189. Parser::ParseErrorOr<SelectorList> Parser::parse_a_selector_list(TokenStream<T>& tokens, SelectorType mode, SelectorParsingMode parsing_mode)
  190. {
  191. auto comma_separated_lists = parse_a_comma_separated_list_of_component_values(tokens);
  192. Vector<NonnullRefPtr<Selector>> selectors;
  193. for (auto& selector_parts : comma_separated_lists) {
  194. auto stream = TokenStream(selector_parts);
  195. auto selector = parse_complex_selector(stream, mode);
  196. if (selector.is_error()) {
  197. if (parsing_mode == SelectorParsingMode::Forgiving)
  198. continue;
  199. return selector.error();
  200. }
  201. selectors.append(selector.release_value());
  202. }
  203. if (selectors.is_empty() && parsing_mode != SelectorParsingMode::Forgiving)
  204. return ParseError::SyntaxError;
  205. return selectors;
  206. }
  207. Parser::ParseErrorOr<NonnullRefPtr<Selector>> Parser::parse_complex_selector(TokenStream<ComponentValue>& tokens, SelectorType mode)
  208. {
  209. Vector<Selector::CompoundSelector> compound_selectors;
  210. auto first_selector = TRY(parse_compound_selector(tokens));
  211. if (!first_selector.has_value())
  212. return ParseError::SyntaxError;
  213. if (mode == SelectorType::Standalone) {
  214. if (first_selector->combinator != Selector::Combinator::Descendant)
  215. return ParseError::SyntaxError;
  216. first_selector->combinator = Selector::Combinator::None;
  217. }
  218. compound_selectors.append(first_selector.release_value());
  219. while (tokens.has_next_token()) {
  220. auto compound_selector = TRY(parse_compound_selector(tokens));
  221. if (!compound_selector.has_value())
  222. break;
  223. compound_selectors.append(compound_selector.release_value());
  224. }
  225. if (compound_selectors.is_empty())
  226. return ParseError::SyntaxError;
  227. return Selector::create(move(compound_selectors));
  228. }
  229. Parser::ParseErrorOr<Optional<Selector::CompoundSelector>> Parser::parse_compound_selector(TokenStream<ComponentValue>& tokens)
  230. {
  231. tokens.skip_whitespace();
  232. auto combinator = parse_selector_combinator(tokens).value_or(Selector::Combinator::Descendant);
  233. tokens.skip_whitespace();
  234. Vector<Selector::SimpleSelector> simple_selectors;
  235. while (tokens.has_next_token()) {
  236. auto component = TRY(parse_simple_selector(tokens));
  237. if (!component.has_value())
  238. break;
  239. simple_selectors.append(component.release_value());
  240. }
  241. if (simple_selectors.is_empty())
  242. return Optional<Selector::CompoundSelector> {};
  243. return Selector::CompoundSelector { combinator, move(simple_selectors) };
  244. }
  245. Optional<Selector::Combinator> Parser::parse_selector_combinator(TokenStream<ComponentValue>& tokens)
  246. {
  247. auto const& current_value = tokens.next_token();
  248. if (current_value.is(Token::Type::Delim)) {
  249. switch (current_value.token().delim()) {
  250. case '>':
  251. return Selector::Combinator::ImmediateChild;
  252. case '+':
  253. return Selector::Combinator::NextSibling;
  254. case '~':
  255. return Selector::Combinator::SubsequentSibling;
  256. case '|': {
  257. auto const& next = tokens.peek_token();
  258. if (next.is(Token::Type::EndOfFile))
  259. return {};
  260. if (next.is(Token::Type::Delim) && next.token().delim() == '|') {
  261. tokens.next_token();
  262. return Selector::Combinator::Column;
  263. }
  264. }
  265. }
  266. }
  267. tokens.reconsume_current_input_token();
  268. return {};
  269. }
  270. Parser::ParseErrorOr<Selector::SimpleSelector> Parser::parse_attribute_simple_selector(ComponentValue const& first_value)
  271. {
  272. auto attribute_tokens = TokenStream { first_value.block().values() };
  273. attribute_tokens.skip_whitespace();
  274. if (!attribute_tokens.has_next_token()) {
  275. dbgln_if(CSS_PARSER_DEBUG, "CSS attribute selector is empty!");
  276. return ParseError::SyntaxError;
  277. }
  278. // FIXME: Handle namespace prefix for attribute name.
  279. auto const& attribute_part = attribute_tokens.next_token();
  280. if (!attribute_part.is(Token::Type::Ident)) {
  281. dbgln_if(CSS_PARSER_DEBUG, "Expected ident for attribute name, got: '{}'", attribute_part.to_debug_string());
  282. return ParseError::SyntaxError;
  283. }
  284. Selector::SimpleSelector simple_selector {
  285. .type = Selector::SimpleSelector::Type::Attribute,
  286. .value = Selector::SimpleSelector::Attribute {
  287. .match_type = Selector::SimpleSelector::Attribute::MatchType::HasAttribute,
  288. // FIXME: Case-sensitivity is defined by the document language.
  289. // HTML is insensitive with attribute names, and our code generally assumes
  290. // they are converted to lowercase, so we do that here too. If we want to be
  291. // correct with XML later, we'll need to keep the original case and then do
  292. // a case-insensitive compare later.
  293. .name = FlyString::from_deprecated_fly_string(attribute_part.token().ident().to_lowercase_string()).release_value_but_fixme_should_propagate_errors(),
  294. .case_type = Selector::SimpleSelector::Attribute::CaseType::DefaultMatch,
  295. }
  296. };
  297. attribute_tokens.skip_whitespace();
  298. if (!attribute_tokens.has_next_token())
  299. return simple_selector;
  300. auto const& delim_part = attribute_tokens.next_token();
  301. if (!delim_part.is(Token::Type::Delim)) {
  302. dbgln_if(CSS_PARSER_DEBUG, "Expected a delim for attribute comparison, got: '{}'", delim_part.to_debug_string());
  303. return ParseError::SyntaxError;
  304. }
  305. if (delim_part.token().delim() == '=') {
  306. simple_selector.attribute().match_type = Selector::SimpleSelector::Attribute::MatchType::ExactValueMatch;
  307. } else {
  308. if (!attribute_tokens.has_next_token()) {
  309. dbgln_if(CSS_PARSER_DEBUG, "Attribute selector ended part way through a match type.");
  310. return ParseError::SyntaxError;
  311. }
  312. auto const& delim_second_part = attribute_tokens.next_token();
  313. if (!(delim_second_part.is(Token::Type::Delim) && delim_second_part.token().delim() == '=')) {
  314. dbgln_if(CSS_PARSER_DEBUG, "Expected a double delim for attribute comparison, got: '{}{}'", delim_part.to_debug_string(), delim_second_part.to_debug_string());
  315. return ParseError::SyntaxError;
  316. }
  317. switch (delim_part.token().delim()) {
  318. case '~':
  319. simple_selector.attribute().match_type = Selector::SimpleSelector::Attribute::MatchType::ContainsWord;
  320. break;
  321. case '*':
  322. simple_selector.attribute().match_type = Selector::SimpleSelector::Attribute::MatchType::ContainsString;
  323. break;
  324. case '|':
  325. simple_selector.attribute().match_type = Selector::SimpleSelector::Attribute::MatchType::StartsWithSegment;
  326. break;
  327. case '^':
  328. simple_selector.attribute().match_type = Selector::SimpleSelector::Attribute::MatchType::StartsWithString;
  329. break;
  330. case '$':
  331. simple_selector.attribute().match_type = Selector::SimpleSelector::Attribute::MatchType::EndsWithString;
  332. break;
  333. default:
  334. attribute_tokens.reconsume_current_input_token();
  335. }
  336. }
  337. attribute_tokens.skip_whitespace();
  338. if (!attribute_tokens.has_next_token()) {
  339. dbgln_if(CSS_PARSER_DEBUG, "Attribute selector ended without a value to match.");
  340. return ParseError::SyntaxError;
  341. }
  342. auto const& value_part = attribute_tokens.next_token();
  343. if (!value_part.is(Token::Type::Ident) && !value_part.is(Token::Type::String)) {
  344. dbgln_if(CSS_PARSER_DEBUG, "Expected a string or ident for the value to match attribute against, got: '{}'", value_part.to_debug_string());
  345. return ParseError::SyntaxError;
  346. }
  347. auto value_string_view = value_part.token().is(Token::Type::Ident) ? value_part.token().ident() : value_part.token().string();
  348. simple_selector.attribute().value = String::from_utf8(value_string_view).release_value_but_fixme_should_propagate_errors();
  349. attribute_tokens.skip_whitespace();
  350. // Handle case-sensitivity suffixes. https://www.w3.org/TR/selectors-4/#attribute-case
  351. if (attribute_tokens.has_next_token()) {
  352. auto const& case_sensitivity_part = attribute_tokens.next_token();
  353. if (case_sensitivity_part.is(Token::Type::Ident)) {
  354. auto case_sensitivity = case_sensitivity_part.token().ident();
  355. if (case_sensitivity.equals_ignoring_ascii_case("i"sv)) {
  356. simple_selector.attribute().case_type = Selector::SimpleSelector::Attribute::CaseType::CaseInsensitiveMatch;
  357. } else if (case_sensitivity.equals_ignoring_ascii_case("s"sv)) {
  358. simple_selector.attribute().case_type = Selector::SimpleSelector::Attribute::CaseType::CaseSensitiveMatch;
  359. } else {
  360. dbgln_if(CSS_PARSER_DEBUG, "Expected a \"i\" or \"s\" attribute selector case sensitivity identifier, got: '{}'", case_sensitivity_part.to_debug_string());
  361. return ParseError::SyntaxError;
  362. }
  363. } else {
  364. dbgln_if(CSS_PARSER_DEBUG, "Expected an attribute selector case sensitivity identifier, got: '{}'", case_sensitivity_part.to_debug_string());
  365. return ParseError::SyntaxError;
  366. }
  367. }
  368. if (attribute_tokens.has_next_token()) {
  369. dbgln_if(CSS_PARSER_DEBUG, "Was not expecting anything else inside attribute selector.");
  370. return ParseError::SyntaxError;
  371. }
  372. return simple_selector;
  373. }
  374. Parser::ParseErrorOr<Selector::SimpleSelector> Parser::parse_pseudo_simple_selector(TokenStream<ComponentValue>& tokens)
  375. {
  376. auto peek_token_ends_selector = [&]() -> bool {
  377. auto const& value = tokens.peek_token();
  378. return (value.is(Token::Type::EndOfFile) || value.is(Token::Type::Whitespace) || value.is(Token::Type::Comma));
  379. };
  380. if (peek_token_ends_selector())
  381. return ParseError::SyntaxError;
  382. bool is_pseudo = false;
  383. if (tokens.peek_token().is(Token::Type::Colon)) {
  384. is_pseudo = true;
  385. tokens.next_token();
  386. if (peek_token_ends_selector())
  387. return ParseError::SyntaxError;
  388. }
  389. if (is_pseudo) {
  390. auto const& name_token = tokens.next_token();
  391. if (!name_token.is(Token::Type::Ident)) {
  392. dbgln_if(CSS_PARSER_DEBUG, "Expected an ident for pseudo-element, got: '{}'", name_token.to_debug_string());
  393. return ParseError::SyntaxError;
  394. }
  395. auto pseudo_name = name_token.token().ident();
  396. auto pseudo_element = pseudo_element_from_string(pseudo_name);
  397. // Note: We allow the "ignored" -webkit prefix here for -webkit-progress-bar/-webkit-progress-bar
  398. if (!pseudo_element.has_value() && has_ignored_vendor_prefix(pseudo_name))
  399. return ParseError::IncludesIgnoredVendorPrefix;
  400. if (!pseudo_element.has_value()) {
  401. dbgln_if(CSS_PARSER_DEBUG, "Unrecognized pseudo-element: '::{}'", pseudo_name);
  402. return ParseError::SyntaxError;
  403. }
  404. return Selector::SimpleSelector {
  405. .type = Selector::SimpleSelector::Type::PseudoElement,
  406. .value = pseudo_element.value()
  407. };
  408. }
  409. if (peek_token_ends_selector())
  410. return ParseError::SyntaxError;
  411. auto const& pseudo_class_token = tokens.next_token();
  412. if (pseudo_class_token.is(Token::Type::Ident)) {
  413. auto pseudo_name = pseudo_class_token.token().ident();
  414. if (has_ignored_vendor_prefix(pseudo_name))
  415. return ParseError::IncludesIgnoredVendorPrefix;
  416. auto make_pseudo_class_selector = [](auto pseudo_class) {
  417. return Selector::SimpleSelector {
  418. .type = Selector::SimpleSelector::Type::PseudoClass,
  419. .value = Selector::SimpleSelector::PseudoClass {
  420. .type = pseudo_class }
  421. };
  422. };
  423. if (pseudo_name.equals_ignoring_ascii_case("active"sv))
  424. return make_pseudo_class_selector(Selector::SimpleSelector::PseudoClass::Type::Active);
  425. if (pseudo_name.equals_ignoring_ascii_case("checked"sv))
  426. return make_pseudo_class_selector(Selector::SimpleSelector::PseudoClass::Type::Checked);
  427. if (pseudo_name.equals_ignoring_ascii_case("indeterminate"sv))
  428. return make_pseudo_class_selector(Selector::SimpleSelector::PseudoClass::Type::Indeterminate);
  429. if (pseudo_name.equals_ignoring_ascii_case("defined"sv))
  430. return make_pseudo_class_selector(Selector::SimpleSelector::PseudoClass::Type::Defined);
  431. if (pseudo_name.equals_ignoring_ascii_case("disabled"sv))
  432. return make_pseudo_class_selector(Selector::SimpleSelector::PseudoClass::Type::Disabled);
  433. if (pseudo_name.equals_ignoring_ascii_case("empty"sv))
  434. return make_pseudo_class_selector(Selector::SimpleSelector::PseudoClass::Type::Empty);
  435. if (pseudo_name.equals_ignoring_ascii_case("enabled"sv))
  436. return make_pseudo_class_selector(Selector::SimpleSelector::PseudoClass::Type::Enabled);
  437. if (pseudo_name.equals_ignoring_ascii_case("first-child"sv))
  438. return make_pseudo_class_selector(Selector::SimpleSelector::PseudoClass::Type::FirstChild);
  439. if (pseudo_name.equals_ignoring_ascii_case("first-of-type"sv))
  440. return make_pseudo_class_selector(Selector::SimpleSelector::PseudoClass::Type::FirstOfType);
  441. if (pseudo_name.equals_ignoring_ascii_case("focus"sv))
  442. return make_pseudo_class_selector(Selector::SimpleSelector::PseudoClass::Type::Focus);
  443. if (pseudo_name.equals_ignoring_ascii_case("focus-within"sv))
  444. return make_pseudo_class_selector(Selector::SimpleSelector::PseudoClass::Type::FocusWithin);
  445. if (pseudo_name.equals_ignoring_ascii_case("hover"sv))
  446. return make_pseudo_class_selector(Selector::SimpleSelector::PseudoClass::Type::Hover);
  447. if (pseudo_name.equals_ignoring_ascii_case("last-child"sv))
  448. return make_pseudo_class_selector(Selector::SimpleSelector::PseudoClass::Type::LastChild);
  449. if (pseudo_name.equals_ignoring_ascii_case("last-of-type"sv))
  450. return make_pseudo_class_selector(Selector::SimpleSelector::PseudoClass::Type::LastOfType);
  451. if (pseudo_name.equals_ignoring_ascii_case("link"sv))
  452. return make_pseudo_class_selector(Selector::SimpleSelector::PseudoClass::Type::Link);
  453. if (pseudo_name.equals_ignoring_ascii_case("only-child"sv))
  454. return make_pseudo_class_selector(Selector::SimpleSelector::PseudoClass::Type::OnlyChild);
  455. if (pseudo_name.equals_ignoring_ascii_case("only-of-type"sv))
  456. return make_pseudo_class_selector(Selector::SimpleSelector::PseudoClass::Type::OnlyOfType);
  457. if (pseudo_name.equals_ignoring_ascii_case("root"sv))
  458. return make_pseudo_class_selector(Selector::SimpleSelector::PseudoClass::Type::Root);
  459. if (pseudo_name.equals_ignoring_ascii_case("visited"sv))
  460. return make_pseudo_class_selector(Selector::SimpleSelector::PseudoClass::Type::Visited);
  461. if (pseudo_name.equals_ignoring_ascii_case("scope"sv))
  462. return make_pseudo_class_selector(Selector::SimpleSelector::PseudoClass::Type::Scope);
  463. // Single-colon syntax allowed for ::after, ::before, ::first-letter and ::first-line for compatibility.
  464. // https://www.w3.org/TR/selectors/#pseudo-element-syntax
  465. if (auto pseudo_element = pseudo_element_from_string(pseudo_name); pseudo_element.has_value()) {
  466. switch (pseudo_element.value()) {
  467. case Selector::PseudoElement::After:
  468. case Selector::PseudoElement::Before:
  469. case Selector::PseudoElement::FirstLetter:
  470. case Selector::PseudoElement::FirstLine:
  471. return Selector::SimpleSelector {
  472. .type = Selector::SimpleSelector::Type::PseudoElement,
  473. .value = pseudo_element.value()
  474. };
  475. default:
  476. break;
  477. }
  478. }
  479. dbgln_if(CSS_PARSER_DEBUG, "Unrecognized pseudo-class: ':{}'", pseudo_name);
  480. return ParseError::SyntaxError;
  481. }
  482. if (pseudo_class_token.is_function()) {
  483. auto parse_nth_child_selector = [this](auto pseudo_class, Vector<ComponentValue> const& function_values, bool allow_of = false) -> ParseErrorOr<Selector::SimpleSelector> {
  484. auto tokens = TokenStream<ComponentValue>(function_values);
  485. auto nth_child_pattern = parse_a_n_plus_b_pattern(tokens);
  486. if (!nth_child_pattern.has_value()) {
  487. dbgln_if(CSS_PARSER_DEBUG, "!!! Invalid An+B format for {}", pseudo_class_name(pseudo_class));
  488. return ParseError::SyntaxError;
  489. }
  490. tokens.skip_whitespace();
  491. if (!tokens.has_next_token()) {
  492. return Selector::SimpleSelector {
  493. .type = Selector::SimpleSelector::Type::PseudoClass,
  494. .value = Selector::SimpleSelector::PseudoClass {
  495. .type = pseudo_class,
  496. .nth_child_pattern = nth_child_pattern.release_value() }
  497. };
  498. }
  499. if (!allow_of)
  500. return ParseError::SyntaxError;
  501. // Parse the `of <selector-list>` syntax
  502. auto const& maybe_of = tokens.next_token();
  503. if (!(maybe_of.is(Token::Type::Ident) && maybe_of.token().ident().equals_ignoring_ascii_case("of"sv)))
  504. return ParseError::SyntaxError;
  505. tokens.skip_whitespace();
  506. auto selector_list = TRY(parse_a_selector_list(tokens, SelectorType::Standalone));
  507. tokens.skip_whitespace();
  508. if (tokens.has_next_token())
  509. return ParseError::SyntaxError;
  510. return Selector::SimpleSelector {
  511. .type = Selector::SimpleSelector::Type::PseudoClass,
  512. .value = Selector::SimpleSelector::PseudoClass {
  513. .type = pseudo_class,
  514. .nth_child_pattern = nth_child_pattern.release_value(),
  515. .argument_selector_list = move(selector_list) }
  516. };
  517. };
  518. auto const& pseudo_function = pseudo_class_token.function();
  519. if (pseudo_function.name().equals_ignoring_ascii_case("is"sv)
  520. || pseudo_function.name().equals_ignoring_ascii_case("where"sv)) {
  521. auto function_token_stream = TokenStream(pseudo_function.values());
  522. // NOTE: Because it's forgiving, even complete garbage will parse OK as an empty selector-list.
  523. auto argument_selector_list = MUST(parse_a_selector_list(function_token_stream, SelectorType::Standalone, SelectorParsingMode::Forgiving));
  524. return Selector::SimpleSelector {
  525. .type = Selector::SimpleSelector::Type::PseudoClass,
  526. .value = Selector::SimpleSelector::PseudoClass {
  527. .type = pseudo_function.name().equals_ignoring_ascii_case("is"sv)
  528. ? Selector::SimpleSelector::PseudoClass::Type::Is
  529. : Selector::SimpleSelector::PseudoClass::Type::Where,
  530. .argument_selector_list = move(argument_selector_list) }
  531. };
  532. }
  533. if (pseudo_function.name().equals_ignoring_ascii_case("not"sv)) {
  534. auto function_token_stream = TokenStream(pseudo_function.values());
  535. auto not_selector = TRY(parse_a_selector_list(function_token_stream, SelectorType::Standalone));
  536. return Selector::SimpleSelector {
  537. .type = Selector::SimpleSelector::Type::PseudoClass,
  538. .value = Selector::SimpleSelector::PseudoClass {
  539. .type = Selector::SimpleSelector::PseudoClass::Type::Not,
  540. .argument_selector_list = move(not_selector) }
  541. };
  542. }
  543. if (pseudo_function.name().equals_ignoring_ascii_case("lang"sv)) {
  544. if (pseudo_function.values().is_empty()) {
  545. dbgln_if(CSS_PARSER_DEBUG, "Empty :lang() selector");
  546. return ParseError::SyntaxError;
  547. }
  548. // FIXME: Support multiple, comma-separated, language ranges.
  549. Vector<FlyString> languages;
  550. languages.append(pseudo_function.values().first().token().to_string().release_value_but_fixme_should_propagate_errors());
  551. return Selector::SimpleSelector {
  552. .type = Selector::SimpleSelector::Type::PseudoClass,
  553. .value = Selector::SimpleSelector::PseudoClass {
  554. .type = Selector::SimpleSelector::PseudoClass::Type::Lang,
  555. .languages = move(languages) }
  556. };
  557. }
  558. if (pseudo_function.name().equals_ignoring_ascii_case("nth-child"sv))
  559. return parse_nth_child_selector(Selector::SimpleSelector::PseudoClass::Type::NthChild, pseudo_function.values(), true);
  560. if (pseudo_function.name().equals_ignoring_ascii_case("nth-last-child"sv))
  561. return parse_nth_child_selector(Selector::SimpleSelector::PseudoClass::Type::NthLastChild, pseudo_function.values(), true);
  562. if (pseudo_function.name().equals_ignoring_ascii_case("nth-of-type"sv))
  563. return parse_nth_child_selector(Selector::SimpleSelector::PseudoClass::Type::NthOfType, pseudo_function.values(), false);
  564. if (pseudo_function.name().equals_ignoring_ascii_case("nth-last-of-type"sv))
  565. return parse_nth_child_selector(Selector::SimpleSelector::PseudoClass::Type::NthLastOfType, pseudo_function.values(), false);
  566. dbgln_if(CSS_PARSER_DEBUG, "Unrecognized pseudo-class function: ':{}'()", pseudo_function.name());
  567. return ParseError::SyntaxError;
  568. }
  569. dbgln_if(CSS_PARSER_DEBUG, "Unexpected Block in pseudo-class name, expected a function or identifier. '{}'", pseudo_class_token.to_debug_string());
  570. return ParseError::SyntaxError;
  571. }
  572. Parser::ParseErrorOr<Optional<Selector::SimpleSelector>> Parser::parse_simple_selector(TokenStream<ComponentValue>& tokens)
  573. {
  574. auto peek_token_ends_selector = [&]() -> bool {
  575. auto const& value = tokens.peek_token();
  576. return (value.is(Token::Type::EndOfFile) || value.is(Token::Type::Whitespace) || value.is(Token::Type::Comma));
  577. };
  578. if (peek_token_ends_selector())
  579. return Optional<Selector::SimpleSelector> {};
  580. auto const& first_value = tokens.next_token();
  581. if (first_value.is(Token::Type::Delim)) {
  582. u32 delim = first_value.token().delim();
  583. switch (delim) {
  584. case '*':
  585. return Selector::SimpleSelector {
  586. .type = Selector::SimpleSelector::Type::Universal
  587. };
  588. case '.': {
  589. if (peek_token_ends_selector())
  590. return ParseError::SyntaxError;
  591. auto const& class_name_value = tokens.next_token();
  592. if (!class_name_value.is(Token::Type::Ident)) {
  593. dbgln_if(CSS_PARSER_DEBUG, "Expected an ident after '.', got: {}", class_name_value.to_debug_string());
  594. return ParseError::SyntaxError;
  595. }
  596. return Selector::SimpleSelector {
  597. .type = Selector::SimpleSelector::Type::Class,
  598. .value = Selector::SimpleSelector::Name { FlyString::from_utf8(class_name_value.token().ident()).release_value_but_fixme_should_propagate_errors() }
  599. };
  600. }
  601. case '>':
  602. case '+':
  603. case '~':
  604. case '|':
  605. // Whitespace is not required between the compound-selector and a combinator.
  606. // So, if we see a combinator, return that this compound-selector is done, instead of a syntax error.
  607. tokens.reconsume_current_input_token();
  608. return Optional<Selector::SimpleSelector> {};
  609. default:
  610. dbgln_if(CSS_PARSER_DEBUG, "!!! Invalid simple selector!");
  611. return ParseError::SyntaxError;
  612. }
  613. }
  614. if (first_value.is(Token::Type::Hash)) {
  615. if (first_value.token().hash_type() != Token::HashType::Id) {
  616. dbgln_if(CSS_PARSER_DEBUG, "Selector contains hash token that is not an id: {}", first_value.to_debug_string());
  617. return ParseError::SyntaxError;
  618. }
  619. return Selector::SimpleSelector {
  620. .type = Selector::SimpleSelector::Type::Id,
  621. .value = Selector::SimpleSelector::Name { FlyString::from_utf8(first_value.token().hash_value()).release_value_but_fixme_should_propagate_errors() }
  622. };
  623. }
  624. if (first_value.is(Token::Type::Ident)) {
  625. return Selector::SimpleSelector {
  626. .type = Selector::SimpleSelector::Type::TagName,
  627. // FIXME: XML requires case-sensitivity for identifiers, while HTML does not. As such, this should be reworked if XML support is added.
  628. .value = Selector::SimpleSelector::Name { FlyString::from_utf8(first_value.token().ident().to_lowercase_string()).release_value_but_fixme_should_propagate_errors() }
  629. };
  630. }
  631. if (first_value.is_block() && first_value.block().is_square())
  632. return TRY(parse_attribute_simple_selector(first_value));
  633. if (first_value.is(Token::Type::Colon))
  634. return TRY(parse_pseudo_simple_selector(tokens));
  635. dbgln_if(CSS_PARSER_DEBUG, "!!! Invalid simple selector!");
  636. return ParseError::SyntaxError;
  637. }
  638. Vector<NonnullRefPtr<MediaQuery>> Parser::parse_as_media_query_list()
  639. {
  640. return parse_a_media_query_list(m_token_stream);
  641. }
  642. template<typename T>
  643. Vector<NonnullRefPtr<MediaQuery>> Parser::parse_a_media_query_list(TokenStream<T>& tokens)
  644. {
  645. // https://www.w3.org/TR/mediaqueries-4/#mq-list
  646. auto comma_separated_lists = parse_a_comma_separated_list_of_component_values(tokens);
  647. AK::Vector<NonnullRefPtr<MediaQuery>> media_queries;
  648. for (auto& media_query_parts : comma_separated_lists) {
  649. auto stream = TokenStream(media_query_parts);
  650. media_queries.append(parse_media_query(stream));
  651. }
  652. return media_queries;
  653. }
  654. RefPtr<MediaQuery> Parser::parse_as_media_query()
  655. {
  656. // https://www.w3.org/TR/cssom-1/#parse-a-media-query
  657. auto media_query_list = parse_as_media_query_list();
  658. if (media_query_list.is_empty())
  659. return MediaQuery::create_not_all();
  660. if (media_query_list.size() == 1)
  661. return media_query_list.first();
  662. return nullptr;
  663. }
  664. // `<media-query>`, https://www.w3.org/TR/mediaqueries-4/#typedef-media-query
  665. NonnullRefPtr<MediaQuery> Parser::parse_media_query(TokenStream<ComponentValue>& tokens)
  666. {
  667. // `<media-query> = <media-condition>
  668. // | [ not | only ]? <media-type> [ and <media-condition-without-or> ]?`
  669. // `[ not | only ]?`, Returns whether to negate the query
  670. auto parse_initial_modifier = [](auto& tokens) -> Optional<bool> {
  671. auto transaction = tokens.begin_transaction();
  672. tokens.skip_whitespace();
  673. auto& token = tokens.next_token();
  674. if (!token.is(Token::Type::Ident))
  675. return {};
  676. auto ident = token.token().ident();
  677. if (ident.equals_ignoring_ascii_case("not"sv)) {
  678. transaction.commit();
  679. return true;
  680. }
  681. if (ident.equals_ignoring_ascii_case("only"sv)) {
  682. transaction.commit();
  683. return false;
  684. }
  685. return {};
  686. };
  687. auto invalid_media_query = [&]() {
  688. // "A media query that does not match the grammar in the previous section must be replaced by `not all`
  689. // during parsing." - https://www.w3.org/TR/mediaqueries-5/#error-handling
  690. if constexpr (CSS_PARSER_DEBUG) {
  691. dbgln("Invalid media query:");
  692. tokens.dump_all_tokens();
  693. }
  694. return MediaQuery::create_not_all();
  695. };
  696. auto media_query = MediaQuery::create();
  697. tokens.skip_whitespace();
  698. // `<media-condition>`
  699. if (auto media_condition = parse_media_condition(tokens, MediaCondition::AllowOr::Yes)) {
  700. tokens.skip_whitespace();
  701. if (tokens.has_next_token())
  702. return invalid_media_query();
  703. media_query->m_media_condition = move(media_condition);
  704. return media_query;
  705. }
  706. // `[ not | only ]?`
  707. if (auto modifier = parse_initial_modifier(tokens); modifier.has_value()) {
  708. media_query->m_negated = modifier.value();
  709. tokens.skip_whitespace();
  710. }
  711. // `<media-type>`
  712. if (auto media_type = parse_media_type(tokens); media_type.has_value()) {
  713. media_query->m_media_type = media_type.value();
  714. tokens.skip_whitespace();
  715. } else {
  716. return invalid_media_query();
  717. }
  718. if (!tokens.has_next_token())
  719. return media_query;
  720. // `[ and <media-condition-without-or> ]?`
  721. if (auto maybe_and = tokens.next_token(); maybe_and.is(Token::Type::Ident) && maybe_and.token().ident().equals_ignoring_ascii_case("and"sv)) {
  722. if (auto media_condition = parse_media_condition(tokens, MediaCondition::AllowOr::No)) {
  723. tokens.skip_whitespace();
  724. if (tokens.has_next_token())
  725. return invalid_media_query();
  726. media_query->m_media_condition = move(media_condition);
  727. return media_query;
  728. }
  729. return invalid_media_query();
  730. }
  731. return invalid_media_query();
  732. }
  733. // `<media-condition>`, https://www.w3.org/TR/mediaqueries-4/#typedef-media-condition
  734. // `<media-condition-widthout-or>`, https://www.w3.org/TR/mediaqueries-4/#typedef-media-condition-without-or
  735. // (We distinguish between these two with the `allow_or` parameter.)
  736. OwnPtr<MediaCondition> Parser::parse_media_condition(TokenStream<ComponentValue>& tokens, MediaCondition::AllowOr allow_or)
  737. {
  738. // `<media-not> | <media-in-parens> [ <media-and>* | <media-or>* ]`
  739. auto transaction = tokens.begin_transaction();
  740. tokens.skip_whitespace();
  741. // `<media-not> = not <media-in-parens>`
  742. auto parse_media_not = [&](auto& tokens) -> OwnPtr<MediaCondition> {
  743. auto local_transaction = tokens.begin_transaction();
  744. tokens.skip_whitespace();
  745. auto& first_token = tokens.next_token();
  746. if (first_token.is(Token::Type::Ident) && first_token.token().ident().equals_ignoring_ascii_case("not"sv)) {
  747. if (auto child_condition = parse_media_condition(tokens, MediaCondition::AllowOr::Yes)) {
  748. local_transaction.commit();
  749. return MediaCondition::from_not(child_condition.release_nonnull());
  750. }
  751. }
  752. return {};
  753. };
  754. auto parse_media_with_combinator = [&](auto& tokens, StringView combinator) -> OwnPtr<MediaCondition> {
  755. auto local_transaction = tokens.begin_transaction();
  756. tokens.skip_whitespace();
  757. auto& first = tokens.next_token();
  758. if (first.is(Token::Type::Ident) && first.token().ident().equals_ignoring_ascii_case(combinator)) {
  759. tokens.skip_whitespace();
  760. if (auto media_in_parens = parse_media_in_parens(tokens)) {
  761. local_transaction.commit();
  762. return media_in_parens;
  763. }
  764. }
  765. return {};
  766. };
  767. // `<media-and> = and <media-in-parens>`
  768. auto parse_media_and = [&](auto& tokens) { return parse_media_with_combinator(tokens, "and"sv); };
  769. // `<media-or> = or <media-in-parens>`
  770. auto parse_media_or = [&](auto& tokens) { return parse_media_with_combinator(tokens, "or"sv); };
  771. // `<media-not>`
  772. if (auto maybe_media_not = parse_media_not(tokens)) {
  773. transaction.commit();
  774. return maybe_media_not.release_nonnull();
  775. }
  776. // `<media-in-parens> [ <media-and>* | <media-or>* ]`
  777. if (auto maybe_media_in_parens = parse_media_in_parens(tokens)) {
  778. tokens.skip_whitespace();
  779. // Only `<media-in-parens>`
  780. if (!tokens.has_next_token()) {
  781. transaction.commit();
  782. return maybe_media_in_parens.release_nonnull();
  783. }
  784. Vector<NonnullOwnPtr<MediaCondition>> child_conditions;
  785. child_conditions.append(maybe_media_in_parens.release_nonnull());
  786. // `<media-and>*`
  787. if (auto media_and = parse_media_and(tokens)) {
  788. child_conditions.append(media_and.release_nonnull());
  789. tokens.skip_whitespace();
  790. while (tokens.has_next_token()) {
  791. if (auto next_media_and = parse_media_and(tokens)) {
  792. child_conditions.append(next_media_and.release_nonnull());
  793. tokens.skip_whitespace();
  794. continue;
  795. }
  796. // We failed - invalid syntax!
  797. return {};
  798. }
  799. transaction.commit();
  800. return MediaCondition::from_and_list(move(child_conditions));
  801. }
  802. // `<media-or>*`
  803. if (allow_or == MediaCondition::AllowOr::Yes) {
  804. if (auto media_or = parse_media_or(tokens)) {
  805. child_conditions.append(media_or.release_nonnull());
  806. tokens.skip_whitespace();
  807. while (tokens.has_next_token()) {
  808. if (auto next_media_or = parse_media_or(tokens)) {
  809. child_conditions.append(next_media_or.release_nonnull());
  810. tokens.skip_whitespace();
  811. continue;
  812. }
  813. // We failed - invalid syntax!
  814. return {};
  815. }
  816. transaction.commit();
  817. return MediaCondition::from_or_list(move(child_conditions));
  818. }
  819. }
  820. }
  821. return {};
  822. }
  823. // `<media-feature>`, https://www.w3.org/TR/mediaqueries-4/#typedef-media-feature
  824. Optional<MediaFeature> Parser::parse_media_feature(TokenStream<ComponentValue>& tokens)
  825. {
  826. // `[ <mf-plain> | <mf-boolean> | <mf-range> ]`
  827. tokens.skip_whitespace();
  828. // `<mf-name> = <ident>`
  829. struct MediaFeatureName {
  830. enum Type {
  831. Normal,
  832. Min,
  833. Max
  834. } type;
  835. MediaFeatureID id;
  836. };
  837. auto parse_mf_name = [](auto& tokens, bool allow_min_max_prefix) -> Optional<MediaFeatureName> {
  838. auto transaction = tokens.begin_transaction();
  839. auto& token = tokens.next_token();
  840. if (token.is(Token::Type::Ident)) {
  841. auto name = token.token().ident();
  842. if (auto id = media_feature_id_from_string(name); id.has_value()) {
  843. transaction.commit();
  844. return MediaFeatureName { MediaFeatureName::Type::Normal, id.value() };
  845. }
  846. if (allow_min_max_prefix && (name.starts_with("min-"sv, CaseSensitivity::CaseInsensitive) || name.starts_with("max-"sv, CaseSensitivity::CaseInsensitive))) {
  847. auto adjusted_name = name.substring_view(4);
  848. if (auto id = media_feature_id_from_string(adjusted_name); id.has_value() && media_feature_type_is_range(id.value())) {
  849. transaction.commit();
  850. return MediaFeatureName {
  851. name.starts_with("min-"sv, CaseSensitivity::CaseInsensitive) ? MediaFeatureName::Type::Min : MediaFeatureName::Type::Max,
  852. id.value()
  853. };
  854. }
  855. }
  856. }
  857. return {};
  858. };
  859. // `<mf-boolean> = <mf-name>`
  860. auto parse_mf_boolean = [&](auto& tokens) -> Optional<MediaFeature> {
  861. auto transaction = tokens.begin_transaction();
  862. tokens.skip_whitespace();
  863. if (auto maybe_name = parse_mf_name(tokens, false); maybe_name.has_value()) {
  864. tokens.skip_whitespace();
  865. if (!tokens.has_next_token()) {
  866. transaction.commit();
  867. return MediaFeature::boolean(maybe_name->id);
  868. }
  869. }
  870. return {};
  871. };
  872. // `<mf-plain> = <mf-name> : <mf-value>`
  873. auto parse_mf_plain = [&](auto& tokens) -> Optional<MediaFeature> {
  874. auto transaction = tokens.begin_transaction();
  875. tokens.skip_whitespace();
  876. if (auto maybe_name = parse_mf_name(tokens, true); maybe_name.has_value()) {
  877. tokens.skip_whitespace();
  878. if (tokens.next_token().is(Token::Type::Colon)) {
  879. tokens.skip_whitespace();
  880. if (auto maybe_value = parse_media_feature_value(maybe_name->id, tokens); maybe_value.has_value()) {
  881. tokens.skip_whitespace();
  882. if (!tokens.has_next_token()) {
  883. transaction.commit();
  884. switch (maybe_name->type) {
  885. case MediaFeatureName::Type::Normal:
  886. return MediaFeature::plain(maybe_name->id, maybe_value.release_value());
  887. case MediaFeatureName::Type::Min:
  888. return MediaFeature::min(maybe_name->id, maybe_value.release_value());
  889. case MediaFeatureName::Type::Max:
  890. return MediaFeature::max(maybe_name->id, maybe_value.release_value());
  891. }
  892. VERIFY_NOT_REACHED();
  893. }
  894. }
  895. }
  896. }
  897. return {};
  898. };
  899. // `<mf-lt> = '<' '='?
  900. // <mf-gt> = '>' '='?
  901. // <mf-eq> = '='
  902. // <mf-comparison> = <mf-lt> | <mf-gt> | <mf-eq>`
  903. auto parse_comparison = [](auto& tokens) -> Optional<MediaFeature::Comparison> {
  904. auto transaction = tokens.begin_transaction();
  905. tokens.skip_whitespace();
  906. auto& first = tokens.next_token();
  907. if (first.is(Token::Type::Delim)) {
  908. auto first_delim = first.token().delim();
  909. if (first_delim == '=') {
  910. transaction.commit();
  911. return MediaFeature::Comparison::Equal;
  912. }
  913. if (first_delim == '<') {
  914. auto& second = tokens.peek_token();
  915. if (second.is(Token::Type::Delim) && second.token().delim() == '=') {
  916. tokens.next_token();
  917. transaction.commit();
  918. return MediaFeature::Comparison::LessThanOrEqual;
  919. }
  920. transaction.commit();
  921. return MediaFeature::Comparison::LessThan;
  922. }
  923. if (first_delim == '>') {
  924. auto& second = tokens.peek_token();
  925. if (second.is(Token::Type::Delim) && second.token().delim() == '=') {
  926. tokens.next_token();
  927. transaction.commit();
  928. return MediaFeature::Comparison::GreaterThanOrEqual;
  929. }
  930. transaction.commit();
  931. return MediaFeature::Comparison::GreaterThan;
  932. }
  933. }
  934. return {};
  935. };
  936. auto flip = [](MediaFeature::Comparison comparison) {
  937. switch (comparison) {
  938. case MediaFeature::Comparison::Equal:
  939. return MediaFeature::Comparison::Equal;
  940. case MediaFeature::Comparison::LessThan:
  941. return MediaFeature::Comparison::GreaterThan;
  942. case MediaFeature::Comparison::LessThanOrEqual:
  943. return MediaFeature::Comparison::GreaterThanOrEqual;
  944. case MediaFeature::Comparison::GreaterThan:
  945. return MediaFeature::Comparison::LessThan;
  946. case MediaFeature::Comparison::GreaterThanOrEqual:
  947. return MediaFeature::Comparison::LessThanOrEqual;
  948. }
  949. VERIFY_NOT_REACHED();
  950. };
  951. auto comparisons_match = [](MediaFeature::Comparison a, MediaFeature::Comparison b) -> bool {
  952. switch (a) {
  953. case MediaFeature::Comparison::Equal:
  954. return b == MediaFeature::Comparison::Equal;
  955. case MediaFeature::Comparison::LessThan:
  956. case MediaFeature::Comparison::LessThanOrEqual:
  957. return b == MediaFeature::Comparison::LessThan || b == MediaFeature::Comparison::LessThanOrEqual;
  958. case MediaFeature::Comparison::GreaterThan:
  959. case MediaFeature::Comparison::GreaterThanOrEqual:
  960. return b == MediaFeature::Comparison::GreaterThan || b == MediaFeature::Comparison::GreaterThanOrEqual;
  961. }
  962. VERIFY_NOT_REACHED();
  963. };
  964. // `<mf-range> = <mf-name> <mf-comparison> <mf-value>
  965. // | <mf-value> <mf-comparison> <mf-name>
  966. // | <mf-value> <mf-lt> <mf-name> <mf-lt> <mf-value>
  967. // | <mf-value> <mf-gt> <mf-name> <mf-gt> <mf-value>`
  968. auto parse_mf_range = [&](auto& tokens) -> Optional<MediaFeature> {
  969. auto transaction = tokens.begin_transaction();
  970. tokens.skip_whitespace();
  971. // `<mf-name> <mf-comparison> <mf-value>`
  972. // NOTE: We have to check for <mf-name> first, since all <mf-name>s will also parse as <mf-value>.
  973. if (auto maybe_name = parse_mf_name(tokens, false); maybe_name.has_value() && media_feature_type_is_range(maybe_name->id)) {
  974. tokens.skip_whitespace();
  975. if (auto maybe_comparison = parse_comparison(tokens); maybe_comparison.has_value()) {
  976. tokens.skip_whitespace();
  977. if (auto maybe_value = parse_media_feature_value(maybe_name->id, tokens); maybe_value.has_value()) {
  978. tokens.skip_whitespace();
  979. if (!tokens.has_next_token() && !maybe_value->is_ident()) {
  980. transaction.commit();
  981. return MediaFeature::half_range(maybe_value.release_value(), flip(maybe_comparison.release_value()), maybe_name->id);
  982. }
  983. }
  984. }
  985. }
  986. // `<mf-value> <mf-comparison> <mf-name>
  987. // | <mf-value> <mf-lt> <mf-name> <mf-lt> <mf-value>
  988. // | <mf-value> <mf-gt> <mf-name> <mf-gt> <mf-value>`
  989. // NOTE: To parse the first value, we need to first find and parse the <mf-name> so we know what value types to parse.
  990. // To allow for <mf-value> to be any number of tokens long, we scan forward until we find a comparison, and then
  991. // treat the next non-whitespace token as the <mf-name>, which should be correct as long as they don't add a value
  992. // type that can include a comparison in it. :^)
  993. Optional<MediaFeatureName> maybe_name;
  994. {
  995. // This transaction is never committed, we just use it to rewind automatically.
  996. auto temp_transaction = tokens.begin_transaction();
  997. while (tokens.has_next_token() && !maybe_name.has_value()) {
  998. if (auto maybe_comparison = parse_comparison(tokens); maybe_comparison.has_value()) {
  999. // We found a comparison, so the next non-whitespace token should be the <mf-name>
  1000. tokens.skip_whitespace();
  1001. maybe_name = parse_mf_name(tokens, false);
  1002. break;
  1003. }
  1004. tokens.next_token();
  1005. tokens.skip_whitespace();
  1006. }
  1007. }
  1008. // Now, we can parse the range properly.
  1009. if (maybe_name.has_value() && media_feature_type_is_range(maybe_name->id)) {
  1010. if (auto maybe_left_value = parse_media_feature_value(maybe_name->id, tokens); maybe_left_value.has_value()) {
  1011. tokens.skip_whitespace();
  1012. if (auto maybe_left_comparison = parse_comparison(tokens); maybe_left_comparison.has_value()) {
  1013. tokens.skip_whitespace();
  1014. tokens.next_token(); // The <mf-name> which we already parsed above.
  1015. tokens.skip_whitespace();
  1016. if (!tokens.has_next_token()) {
  1017. transaction.commit();
  1018. return MediaFeature::half_range(maybe_left_value.release_value(), maybe_left_comparison.release_value(), maybe_name->id);
  1019. }
  1020. if (auto maybe_right_comparison = parse_comparison(tokens); maybe_right_comparison.has_value()) {
  1021. tokens.skip_whitespace();
  1022. if (auto maybe_right_value = parse_media_feature_value(maybe_name->id, tokens); maybe_right_value.has_value()) {
  1023. tokens.skip_whitespace();
  1024. // For this to be valid, the following must be true:
  1025. // - Comparisons must either both be >/>= or both be </<=.
  1026. // - Neither comparison can be `=`.
  1027. // - Neither value can be an ident.
  1028. auto left_comparison = maybe_left_comparison.release_value();
  1029. auto right_comparison = maybe_right_comparison.release_value();
  1030. if (!tokens.has_next_token()
  1031. && comparisons_match(left_comparison, right_comparison)
  1032. && left_comparison != MediaFeature::Comparison::Equal
  1033. && !maybe_left_value->is_ident() && !maybe_right_value->is_ident()) {
  1034. transaction.commit();
  1035. return MediaFeature::range(maybe_left_value.release_value(), left_comparison, maybe_name->id, right_comparison, maybe_right_value.release_value());
  1036. }
  1037. }
  1038. }
  1039. }
  1040. }
  1041. }
  1042. return {};
  1043. };
  1044. if (auto maybe_mf_boolean = parse_mf_boolean(tokens); maybe_mf_boolean.has_value())
  1045. return maybe_mf_boolean.release_value();
  1046. if (auto maybe_mf_plain = parse_mf_plain(tokens); maybe_mf_plain.has_value())
  1047. return maybe_mf_plain.release_value();
  1048. if (auto maybe_mf_range = parse_mf_range(tokens); maybe_mf_range.has_value())
  1049. return maybe_mf_range.release_value();
  1050. return {};
  1051. }
  1052. Optional<MediaQuery::MediaType> Parser::parse_media_type(TokenStream<ComponentValue>& tokens)
  1053. {
  1054. auto transaction = tokens.begin_transaction();
  1055. tokens.skip_whitespace();
  1056. auto const& token = tokens.next_token();
  1057. if (!token.is(Token::Type::Ident))
  1058. return {};
  1059. transaction.commit();
  1060. auto ident = token.token().ident();
  1061. return media_type_from_string(ident);
  1062. }
  1063. // `<media-in-parens>`, https://www.w3.org/TR/mediaqueries-4/#typedef-media-in-parens
  1064. OwnPtr<MediaCondition> Parser::parse_media_in_parens(TokenStream<ComponentValue>& tokens)
  1065. {
  1066. // `<media-in-parens> = ( <media-condition> ) | ( <media-feature> ) | <general-enclosed>`
  1067. auto transaction = tokens.begin_transaction();
  1068. tokens.skip_whitespace();
  1069. // `( <media-condition> ) | ( <media-feature> )`
  1070. auto const& first_token = tokens.peek_token();
  1071. if (first_token.is_block() && first_token.block().is_paren()) {
  1072. TokenStream inner_token_stream { first_token.block().values() };
  1073. if (auto maybe_media_condition = parse_media_condition(inner_token_stream, MediaCondition::AllowOr::Yes)) {
  1074. tokens.next_token();
  1075. transaction.commit();
  1076. return maybe_media_condition.release_nonnull();
  1077. }
  1078. if (auto maybe_media_feature = parse_media_feature(inner_token_stream); maybe_media_feature.has_value()) {
  1079. tokens.next_token();
  1080. transaction.commit();
  1081. return MediaCondition::from_feature(maybe_media_feature.release_value());
  1082. }
  1083. }
  1084. // `<general-enclosed>`
  1085. // FIXME: We should only be taking this branch if the grammar doesn't match the above options.
  1086. // Currently we take it if the above fail to parse, which is different.
  1087. // eg, `@media (min-width: 76yaks)` is valid grammar, but does not parse because `yaks` isn't a unit.
  1088. if (auto maybe_general_enclosed = parse_general_enclosed(tokens); maybe_general_enclosed.has_value()) {
  1089. transaction.commit();
  1090. return MediaCondition::from_general_enclosed(maybe_general_enclosed.release_value());
  1091. }
  1092. return {};
  1093. }
  1094. // `<mf-value>`, https://www.w3.org/TR/mediaqueries-4/#typedef-mf-value
  1095. Optional<MediaFeatureValue> Parser::parse_media_feature_value(MediaFeatureID media_feature, TokenStream<ComponentValue>& tokens)
  1096. {
  1097. // Identifiers
  1098. if (tokens.peek_token().is(Token::Type::Ident)) {
  1099. auto transaction = tokens.begin_transaction();
  1100. tokens.skip_whitespace();
  1101. auto ident = value_id_from_string(tokens.next_token().token().ident());
  1102. if (ident != ValueID::Invalid && media_feature_accepts_identifier(media_feature, ident)) {
  1103. transaction.commit();
  1104. return MediaFeatureValue(ident);
  1105. }
  1106. }
  1107. // One branch for each member of the MediaFeatureValueType enum:
  1108. // Boolean (<mq-boolean> in the spec: a 1 or 0)
  1109. if (media_feature_accepts_type(media_feature, MediaFeatureValueType::Boolean)) {
  1110. auto transaction = tokens.begin_transaction();
  1111. tokens.skip_whitespace();
  1112. auto const& first = tokens.next_token();
  1113. if (first.is(Token::Type::Number) && first.token().number().is_integer()
  1114. && (first.token().number_value() == 0 || first.token().number_value() == 1)) {
  1115. transaction.commit();
  1116. return MediaFeatureValue(first.token().number_value());
  1117. }
  1118. }
  1119. // Integer
  1120. if (media_feature_accepts_type(media_feature, MediaFeatureValueType::Integer)) {
  1121. auto transaction = tokens.begin_transaction();
  1122. tokens.skip_whitespace();
  1123. auto const& first = tokens.next_token();
  1124. if (first.is(Token::Type::Number) && first.token().number().is_integer()) {
  1125. transaction.commit();
  1126. return MediaFeatureValue(first.token().number_value());
  1127. }
  1128. }
  1129. // Length
  1130. if (media_feature_accepts_type(media_feature, MediaFeatureValueType::Length)) {
  1131. auto transaction = tokens.begin_transaction();
  1132. tokens.skip_whitespace();
  1133. auto const& first = tokens.next_token();
  1134. if (auto length = parse_length(first); length.has_value()) {
  1135. transaction.commit();
  1136. return MediaFeatureValue(length.release_value());
  1137. }
  1138. }
  1139. // Ratio
  1140. if (media_feature_accepts_type(media_feature, MediaFeatureValueType::Ratio)) {
  1141. auto transaction = tokens.begin_transaction();
  1142. tokens.skip_whitespace();
  1143. if (auto ratio = parse_ratio(tokens); ratio.has_value()) {
  1144. transaction.commit();
  1145. return MediaFeatureValue(ratio.release_value());
  1146. }
  1147. }
  1148. // Resolution
  1149. if (media_feature_accepts_type(media_feature, MediaFeatureValueType::Resolution)) {
  1150. auto transaction = tokens.begin_transaction();
  1151. tokens.skip_whitespace();
  1152. auto const& first = tokens.next_token();
  1153. if (auto resolution = parse_dimension(first); resolution.has_value() && resolution->is_resolution()) {
  1154. transaction.commit();
  1155. return MediaFeatureValue(resolution->resolution());
  1156. }
  1157. }
  1158. return {};
  1159. }
  1160. RefPtr<Supports> Parser::parse_as_supports()
  1161. {
  1162. return parse_a_supports(m_token_stream);
  1163. }
  1164. template<typename T>
  1165. RefPtr<Supports> Parser::parse_a_supports(TokenStream<T>& tokens)
  1166. {
  1167. auto component_values = parse_a_list_of_component_values(tokens);
  1168. TokenStream<ComponentValue> token_stream { component_values };
  1169. auto maybe_condition = parse_supports_condition(token_stream);
  1170. token_stream.skip_whitespace();
  1171. if (maybe_condition && !token_stream.has_next_token())
  1172. return Supports::create(maybe_condition.release_nonnull());
  1173. return {};
  1174. }
  1175. OwnPtr<Supports::Condition> Parser::parse_supports_condition(TokenStream<ComponentValue>& tokens)
  1176. {
  1177. auto transaction = tokens.begin_transaction();
  1178. tokens.skip_whitespace();
  1179. auto const& peeked_token = tokens.peek_token();
  1180. // `not <supports-in-parens>`
  1181. if (peeked_token.is(Token::Type::Ident) && peeked_token.token().ident().equals_ignoring_ascii_case("not"sv)) {
  1182. tokens.next_token();
  1183. tokens.skip_whitespace();
  1184. auto child = parse_supports_in_parens(tokens);
  1185. if (!child.has_value())
  1186. return {};
  1187. transaction.commit();
  1188. auto condition = make<Supports::Condition>();
  1189. condition->type = Supports::Condition::Type::Not;
  1190. condition->children.append(child.release_value());
  1191. return condition;
  1192. }
  1193. // ` <supports-in-parens> [ and <supports-in-parens> ]*
  1194. // | <supports-in-parens> [ or <supports-in-parens> ]*`
  1195. Vector<Supports::InParens> children;
  1196. Optional<Supports::Condition::Type> condition_type {};
  1197. auto as_condition_type = [](auto& token) -> Optional<Supports::Condition::Type> {
  1198. if (!token.is(Token::Type::Ident))
  1199. return {};
  1200. auto ident = token.token().ident();
  1201. if (ident.equals_ignoring_ascii_case("and"sv))
  1202. return Supports::Condition::Type::And;
  1203. if (ident.equals_ignoring_ascii_case("or"sv))
  1204. return Supports::Condition::Type::Or;
  1205. return {};
  1206. };
  1207. while (tokens.has_next_token()) {
  1208. if (!children.is_empty()) {
  1209. // Expect `and` or `or` here
  1210. auto maybe_combination = as_condition_type(tokens.next_token());
  1211. if (!maybe_combination.has_value())
  1212. return {};
  1213. if (!condition_type.has_value()) {
  1214. condition_type = maybe_combination.value();
  1215. } else if (maybe_combination != condition_type) {
  1216. return {};
  1217. }
  1218. }
  1219. tokens.skip_whitespace();
  1220. if (auto in_parens = parse_supports_in_parens(tokens); in_parens.has_value()) {
  1221. children.append(in_parens.release_value());
  1222. } else {
  1223. return {};
  1224. }
  1225. tokens.skip_whitespace();
  1226. }
  1227. if (children.is_empty())
  1228. return {};
  1229. transaction.commit();
  1230. auto condition = make<Supports::Condition>();
  1231. condition->type = condition_type.value_or(Supports::Condition::Type::Or);
  1232. condition->children = move(children);
  1233. return condition;
  1234. }
  1235. Optional<Supports::InParens> Parser::parse_supports_in_parens(TokenStream<ComponentValue>& tokens)
  1236. {
  1237. // `( <supports-condition> )`
  1238. auto const& first_token = tokens.peek_token();
  1239. if (first_token.is_block() && first_token.block().is_paren()) {
  1240. auto transaction = tokens.begin_transaction();
  1241. tokens.next_token();
  1242. tokens.skip_whitespace();
  1243. TokenStream child_tokens { first_token.block().values() };
  1244. if (auto condition = parse_supports_condition(child_tokens)) {
  1245. if (child_tokens.has_next_token())
  1246. return {};
  1247. transaction.commit();
  1248. return Supports::InParens {
  1249. .value = { condition.release_nonnull() }
  1250. };
  1251. }
  1252. }
  1253. // `<supports-feature>`
  1254. if (auto feature = parse_supports_feature(tokens); feature.has_value()) {
  1255. return Supports::InParens {
  1256. .value = { feature.release_value() }
  1257. };
  1258. }
  1259. // `<general-enclosed>`
  1260. if (auto general_enclosed = parse_general_enclosed(tokens); general_enclosed.has_value()) {
  1261. return Supports::InParens {
  1262. .value = general_enclosed.release_value()
  1263. };
  1264. }
  1265. return {};
  1266. }
  1267. Optional<Supports::Feature> Parser::parse_supports_feature(TokenStream<ComponentValue>& tokens)
  1268. {
  1269. auto transaction = tokens.begin_transaction();
  1270. tokens.skip_whitespace();
  1271. auto const& first_token = tokens.next_token();
  1272. // `<supports-decl>`
  1273. if (first_token.is_block() && first_token.block().is_paren()) {
  1274. TokenStream block_tokens { first_token.block().values() };
  1275. // FIXME: Parsing and then converting back to a string is weird.
  1276. if (auto declaration = consume_a_declaration(block_tokens); declaration.has_value()) {
  1277. transaction.commit();
  1278. return Supports::Feature {
  1279. Supports::Declaration { declaration->to_string().release_value_but_fixme_should_propagate_errors(), JS::make_handle(m_context.realm()) }
  1280. };
  1281. }
  1282. }
  1283. // `<supports-selector-fn>`
  1284. if (first_token.is_function() && first_token.function().name().equals_ignoring_ascii_case("selector"sv)) {
  1285. // FIXME: Parsing and then converting back to a string is weird.
  1286. StringBuilder builder;
  1287. for (auto const& item : first_token.function().values())
  1288. builder.append(item.to_string().release_value_but_fixme_should_propagate_errors());
  1289. transaction.commit();
  1290. return Supports::Feature {
  1291. Supports::Selector { builder.to_string().release_value_but_fixme_should_propagate_errors(), JS::make_handle(m_context.realm()) }
  1292. };
  1293. }
  1294. return {};
  1295. }
  1296. // https://www.w3.org/TR/mediaqueries-4/#typedef-general-enclosed
  1297. Optional<GeneralEnclosed> Parser::parse_general_enclosed(TokenStream<ComponentValue>& tokens)
  1298. {
  1299. auto transaction = tokens.begin_transaction();
  1300. tokens.skip_whitespace();
  1301. auto const& first_token = tokens.next_token();
  1302. // `[ <function-token> <any-value>? ) ]`
  1303. if (first_token.is_function()) {
  1304. transaction.commit();
  1305. return GeneralEnclosed { first_token.to_string().release_value_but_fixme_should_propagate_errors() };
  1306. }
  1307. // `( <any-value>? )`
  1308. if (first_token.is_block() && first_token.block().is_paren()) {
  1309. transaction.commit();
  1310. return GeneralEnclosed { first_token.to_string().release_value_but_fixme_should_propagate_errors() };
  1311. }
  1312. return {};
  1313. }
  1314. // 5.4.1. Consume a list of rules
  1315. // https://www.w3.org/TR/css-syntax-3/#consume-list-of-rules
  1316. template<typename T>
  1317. Vector<NonnullRefPtr<Rule>> Parser::consume_a_list_of_rules(TokenStream<T>& tokens, TopLevel top_level)
  1318. {
  1319. // To consume a list of rules, given a top-level flag:
  1320. // Create an initially empty list of rules.
  1321. Vector<NonnullRefPtr<Rule>> rules;
  1322. // Repeatedly consume the next input token:
  1323. for (;;) {
  1324. auto& token = tokens.next_token();
  1325. // <whitespace-token>
  1326. if (token.is(Token::Type::Whitespace)) {
  1327. // Do nothing.
  1328. continue;
  1329. }
  1330. // <EOF-token>
  1331. if (token.is(Token::Type::EndOfFile)) {
  1332. // Return the list of rules.
  1333. return rules;
  1334. }
  1335. // <CDO-token>
  1336. // <CDC-token>
  1337. if (token.is(Token::Type::CDO) || token.is(Token::Type::CDC)) {
  1338. // If the top-level flag is set, do nothing.
  1339. if (top_level == TopLevel::Yes)
  1340. continue;
  1341. // Otherwise, reconsume the current input token.
  1342. tokens.reconsume_current_input_token();
  1343. // Consume a qualified rule. If anything is returned, append it to the list of rules.
  1344. if (auto maybe_qualified = consume_a_qualified_rule(tokens))
  1345. rules.append(maybe_qualified.release_nonnull());
  1346. continue;
  1347. }
  1348. // <at-keyword-token>
  1349. if (token.is(Token::Type::AtKeyword)) {
  1350. // Reconsume the current input token.
  1351. tokens.reconsume_current_input_token();
  1352. // Consume an at-rule, and append the returned value to the list of rules.
  1353. rules.append(consume_an_at_rule(tokens));
  1354. continue;
  1355. }
  1356. // anything else
  1357. {
  1358. // Reconsume the current input token.
  1359. tokens.reconsume_current_input_token();
  1360. // Consume a qualified rule. If anything is returned, append it to the list of rules.
  1361. if (auto maybe_qualified = consume_a_qualified_rule(tokens))
  1362. rules.append(maybe_qualified.release_nonnull());
  1363. continue;
  1364. }
  1365. }
  1366. }
  1367. // 5.4.2. Consume an at-rule
  1368. // https://www.w3.org/TR/css-syntax-3/#consume-at-rule
  1369. template<typename T>
  1370. NonnullRefPtr<Rule> Parser::consume_an_at_rule(TokenStream<T>& tokens)
  1371. {
  1372. // To consume an at-rule:
  1373. // Consume the next input token.
  1374. auto& name_ident = tokens.next_token();
  1375. VERIFY(name_ident.is(Token::Type::AtKeyword));
  1376. // Create a new at-rule with its name set to the value of the current input token, its prelude initially set to an empty list, and its value initially set to nothing.
  1377. // NOTE: We create the Rule fully initialized when we return it instead.
  1378. auto at_rule_name = FlyString::from_utf8(((Token)name_ident).at_keyword()).release_value_but_fixme_should_propagate_errors();
  1379. Vector<ComponentValue> prelude;
  1380. RefPtr<Block> block;
  1381. // Repeatedly consume the next input token:
  1382. for (;;) {
  1383. auto& token = tokens.next_token();
  1384. // <semicolon-token>
  1385. if (token.is(Token::Type::Semicolon)) {
  1386. // Return the at-rule.
  1387. return Rule::make_at_rule(move(at_rule_name), move(prelude), move(block));
  1388. }
  1389. // <EOF-token>
  1390. if (token.is(Token::Type::EndOfFile)) {
  1391. // This is a parse error. Return the at-rule.
  1392. log_parse_error();
  1393. return Rule::make_at_rule(move(at_rule_name), move(prelude), move(block));
  1394. }
  1395. // <{-token>
  1396. if (token.is(Token::Type::OpenCurly)) {
  1397. // Consume a simple block and assign it to the at-rule’s block. Return the at-rule.
  1398. block = consume_a_simple_block(tokens);
  1399. return Rule::make_at_rule(move(at_rule_name), move(prelude), move(block));
  1400. }
  1401. // simple block with an associated token of <{-token>
  1402. if constexpr (IsSame<T, ComponentValue>) {
  1403. ComponentValue const& component_value = token;
  1404. if (component_value.is_block() && component_value.block().is_curly()) {
  1405. // Assign the block to the at-rule’s block. Return the at-rule.
  1406. block = component_value.block();
  1407. return Rule::make_at_rule(move(at_rule_name), move(prelude), move(block));
  1408. }
  1409. }
  1410. // anything else
  1411. {
  1412. // Reconsume the current input token.
  1413. tokens.reconsume_current_input_token();
  1414. // Consume a component value. Append the returned value to the at-rule’s prelude.
  1415. prelude.append(consume_a_component_value(tokens));
  1416. }
  1417. }
  1418. }
  1419. // 5.4.3. Consume a qualified rule
  1420. // https://www.w3.org/TR/css-syntax-3/#consume-qualified-rule
  1421. template<typename T>
  1422. RefPtr<Rule> Parser::consume_a_qualified_rule(TokenStream<T>& tokens)
  1423. {
  1424. // To consume a qualified rule:
  1425. // Create a new qualified rule with its prelude initially set to an empty list, and its value initially set to nothing.
  1426. // NOTE: We create the Rule fully initialized when we return it instead.
  1427. Vector<ComponentValue> prelude;
  1428. RefPtr<Block> block;
  1429. // Repeatedly consume the next input token:
  1430. for (;;) {
  1431. auto& token = tokens.next_token();
  1432. // <EOF-token>
  1433. if (token.is(Token::Type::EndOfFile)) {
  1434. // This is a parse error. Return nothing.
  1435. log_parse_error();
  1436. return {};
  1437. }
  1438. // <{-token>
  1439. if (token.is(Token::Type::OpenCurly)) {
  1440. // Consume a simple block and assign it to the qualified rule’s block. Return the qualified rule.
  1441. block = consume_a_simple_block(tokens);
  1442. return Rule::make_qualified_rule(move(prelude), move(block));
  1443. }
  1444. // simple block with an associated token of <{-token>
  1445. if constexpr (IsSame<T, ComponentValue>) {
  1446. ComponentValue const& component_value = token;
  1447. if (component_value.is_block() && component_value.block().is_curly()) {
  1448. // Assign the block to the qualified rule’s block. Return the qualified rule.
  1449. block = component_value.block();
  1450. return Rule::make_qualified_rule(move(prelude), move(block));
  1451. }
  1452. }
  1453. // anything else
  1454. {
  1455. // Reconsume the current input token.
  1456. tokens.reconsume_current_input_token();
  1457. // Consume a component value. Append the returned value to the qualified rule’s prelude.
  1458. prelude.append(consume_a_component_value(tokens));
  1459. }
  1460. }
  1461. }
  1462. // 5.4.4. Consume a style block’s contents
  1463. // https://www.w3.org/TR/css-syntax-3/#consume-a-style-blocks-contents
  1464. template<typename T>
  1465. Vector<DeclarationOrAtRule> Parser::consume_a_style_blocks_contents(TokenStream<T>& tokens)
  1466. {
  1467. // To consume a style block’s contents:
  1468. // Create an initially empty list of declarations decls, and an initially empty list of rules rules.
  1469. Vector<DeclarationOrAtRule> declarations;
  1470. Vector<DeclarationOrAtRule> rules;
  1471. // Repeatedly consume the next input token:
  1472. for (;;) {
  1473. auto& token = tokens.next_token();
  1474. // <whitespace-token>
  1475. // <semicolon-token>
  1476. if (token.is(Token::Type::Whitespace) || token.is(Token::Type::Semicolon)) {
  1477. // Do nothing.
  1478. continue;
  1479. }
  1480. // <EOF-token>
  1481. if (token.is(Token::Type::EndOfFile)) {
  1482. // Extend decls with rules, then return decls.
  1483. declarations.extend(move(rules));
  1484. return declarations;
  1485. }
  1486. // <at-keyword-token>
  1487. if (token.is(Token::Type::AtKeyword)) {
  1488. // Reconsume the current input token.
  1489. tokens.reconsume_current_input_token();
  1490. // Consume an at-rule, and append the result to rules.
  1491. rules.empend(consume_an_at_rule(tokens));
  1492. continue;
  1493. }
  1494. // <ident-token>
  1495. if (token.is(Token::Type::Ident)) {
  1496. // Initialize a temporary list initially filled with the current input token.
  1497. Vector<ComponentValue> temporary_list;
  1498. temporary_list.append(token);
  1499. // As long as the next input token is anything other than a <semicolon-token> or <EOF-token>,
  1500. // consume a component value and append it to the temporary list.
  1501. for (;;) {
  1502. auto& next_input_token = tokens.peek_token();
  1503. if (next_input_token.is(Token::Type::Semicolon) || next_input_token.is(Token::Type::EndOfFile))
  1504. break;
  1505. temporary_list.append(consume_a_component_value(tokens));
  1506. }
  1507. // Consume a declaration from the temporary list. If anything was returned, append it to decls.
  1508. auto token_stream = TokenStream(temporary_list);
  1509. if (auto maybe_declaration = consume_a_declaration(token_stream); maybe_declaration.has_value())
  1510. declarations.empend(maybe_declaration.release_value());
  1511. continue;
  1512. }
  1513. // <delim-token> with a value of "&" (U+0026 AMPERSAND)
  1514. if (token.is(Token::Type::Delim) && token.token().delim() == '&') {
  1515. // Reconsume the current input token.
  1516. tokens.reconsume_current_input_token();
  1517. // Consume a qualified rule. If anything was returned, append it to rules.
  1518. if (auto qualified_rule = consume_a_qualified_rule(tokens))
  1519. rules.empend(qualified_rule);
  1520. continue;
  1521. }
  1522. // anything else
  1523. {
  1524. // This is a parse error.
  1525. log_parse_error();
  1526. // Reconsume the current input token.
  1527. tokens.reconsume_current_input_token();
  1528. // As long as the next input token is anything other than a <semicolon-token> or <EOF-token>,
  1529. // consume a component value and throw away the returned value.
  1530. for (;;) {
  1531. auto& peek = tokens.peek_token();
  1532. if (peek.is(Token::Type::Semicolon) || peek.is(Token::Type::EndOfFile))
  1533. break;
  1534. (void)consume_a_component_value(tokens);
  1535. }
  1536. }
  1537. }
  1538. }
  1539. template<>
  1540. ComponentValue Parser::consume_a_component_value(TokenStream<ComponentValue>& tokens)
  1541. {
  1542. // Note: This overload is called once tokens have already been converted into component values,
  1543. // so we do not need to do the work in the more general overload.
  1544. return tokens.next_token();
  1545. }
  1546. // 5.4.7. Consume a component value
  1547. // https://www.w3.org/TR/css-syntax-3/#consume-component-value
  1548. template<typename T>
  1549. ComponentValue Parser::consume_a_component_value(TokenStream<T>& tokens)
  1550. {
  1551. // To consume a component value:
  1552. // Consume the next input token.
  1553. auto& token = tokens.next_token();
  1554. // If the current input token is a <{-token>, <[-token>, or <(-token>, consume a simple block and return it.
  1555. if (token.is(Token::Type::OpenCurly) || token.is(Token::Type::OpenSquare) || token.is(Token::Type::OpenParen))
  1556. return ComponentValue(consume_a_simple_block(tokens));
  1557. // Otherwise, if the current input token is a <function-token>, consume a function and return it.
  1558. if (token.is(Token::Type::Function))
  1559. return ComponentValue(consume_a_function(tokens));
  1560. // Otherwise, return the current input token.
  1561. return ComponentValue(token);
  1562. }
  1563. // 5.4.8. Consume a simple block
  1564. // https://www.w3.org/TR/css-syntax-3/#consume-simple-block
  1565. template<typename T>
  1566. NonnullRefPtr<Block> Parser::consume_a_simple_block(TokenStream<T>& tokens)
  1567. {
  1568. // Note: This algorithm assumes that the current input token has already been checked
  1569. // to be an <{-token>, <[-token>, or <(-token>.
  1570. // To consume a simple block:
  1571. // The ending token is the mirror variant of the current input token.
  1572. // (E.g. if it was called with <[-token>, the ending token is <]-token>.)
  1573. auto ending_token = ((Token)tokens.current_token()).mirror_variant();
  1574. // Create a simple block with its associated token set to the current input token
  1575. // and with its value initially set to an empty list.
  1576. // NOTE: We create the Block fully initialized when we return it instead.
  1577. Token block_token = tokens.current_token();
  1578. Vector<ComponentValue> block_values;
  1579. // Repeatedly consume the next input token and process it as follows:
  1580. for (;;) {
  1581. auto& token = tokens.next_token();
  1582. // ending token
  1583. if (token.is(ending_token)) {
  1584. // Return the block.
  1585. return Block::create(move(block_token), move(block_values));
  1586. }
  1587. // <EOF-token>
  1588. if (token.is(Token::Type::EndOfFile)) {
  1589. // This is a parse error. Return the block.
  1590. log_parse_error();
  1591. return Block::create(move(block_token), move(block_values));
  1592. }
  1593. // anything else
  1594. {
  1595. // Reconsume the current input token.
  1596. tokens.reconsume_current_input_token();
  1597. // Consume a component value and append it to the value of the block.
  1598. block_values.empend(consume_a_component_value(tokens));
  1599. }
  1600. }
  1601. }
  1602. // 5.4.9. Consume a function
  1603. // https://www.w3.org/TR/css-syntax-3/#consume-function
  1604. template<typename T>
  1605. NonnullRefPtr<Function> Parser::consume_a_function(TokenStream<T>& tokens)
  1606. {
  1607. // Note: This algorithm assumes that the current input token has already been checked to be a <function-token>.
  1608. auto name_ident = tokens.current_token();
  1609. VERIFY(name_ident.is(Token::Type::Function));
  1610. // To consume a function:
  1611. // Create a function with its name equal to the value of the current input token
  1612. // and with its value initially set to an empty list.
  1613. // NOTE: We create the Function fully initialized when we return it instead.
  1614. auto function_name = FlyString::from_utf8(((Token)name_ident).function()).release_value_but_fixme_should_propagate_errors();
  1615. Vector<ComponentValue> function_values;
  1616. // Repeatedly consume the next input token and process it as follows:
  1617. for (;;) {
  1618. auto& token = tokens.next_token();
  1619. // <)-token>
  1620. if (token.is(Token::Type::CloseParen)) {
  1621. // Return the function.
  1622. return Function::create(move(function_name), move(function_values));
  1623. }
  1624. // <EOF-token>
  1625. if (token.is(Token::Type::EndOfFile)) {
  1626. // This is a parse error. Return the function.
  1627. log_parse_error();
  1628. return Function::create(move(function_name), move(function_values));
  1629. }
  1630. // anything else
  1631. {
  1632. // Reconsume the current input token.
  1633. tokens.reconsume_current_input_token();
  1634. // Consume a component value and append the returned value to the function’s value.
  1635. function_values.append(consume_a_component_value(tokens));
  1636. }
  1637. }
  1638. }
  1639. // 5.4.6. Consume a declaration
  1640. // https://www.w3.org/TR/css-syntax-3/#consume-declaration
  1641. template<typename T>
  1642. Optional<Declaration> Parser::consume_a_declaration(TokenStream<T>& tokens)
  1643. {
  1644. // Note: This algorithm assumes that the next input token has already been checked to
  1645. // be an <ident-token>.
  1646. // NOTE: This is not true in our implementation! For convenience, we both skip whitespace
  1647. // and gracefully handle the first token not being an <ident-token>.
  1648. // To consume a declaration:
  1649. // Consume the next input token.
  1650. auto transaction = tokens.begin_transaction();
  1651. tokens.skip_whitespace();
  1652. auto& token = tokens.next_token();
  1653. // NOTE: Not to spec, handle the case where the input token *isn't* an <ident-token>.
  1654. if (!token.is(Token::Type::Ident))
  1655. return {};
  1656. // Create a new declaration with its name set to the value of the current input token
  1657. // and its value initially set to the empty list.
  1658. // NOTE: We create a fully-initialized Declaration just before returning it instead.
  1659. auto declaration_name = FlyString::from_utf8(((Token)token).ident()).release_value_but_fixme_should_propagate_errors();
  1660. Vector<ComponentValue> declaration_values;
  1661. Important declaration_important = Important::No;
  1662. // 1. While the next input token is a <whitespace-token>, consume the next input token.
  1663. tokens.skip_whitespace();
  1664. // 2. If the next input token is anything other than a <colon-token>, this is a parse error.
  1665. // Return nothing.
  1666. auto& maybe_colon = tokens.peek_token();
  1667. if (!maybe_colon.is(Token::Type::Colon)) {
  1668. log_parse_error();
  1669. return {};
  1670. }
  1671. // Otherwise, consume the next input token.
  1672. tokens.next_token();
  1673. // 3. While the next input token is a <whitespace-token>, consume the next input token.
  1674. tokens.skip_whitespace();
  1675. // 4. As long as the next input token is anything other than an <EOF-token>, consume a
  1676. // component value and append it to the declaration’s value.
  1677. for (;;) {
  1678. if (tokens.peek_token().is(Token::Type::EndOfFile)) {
  1679. break;
  1680. }
  1681. declaration_values.append(consume_a_component_value(tokens));
  1682. }
  1683. // 5. If the last two non-<whitespace-token>s in the declaration’s value are a <delim-token>
  1684. // with the value "!" followed by an <ident-token> with a value that is an ASCII case-insensitive
  1685. // match for "important", remove them from the declaration’s value and set the declaration’s
  1686. // important flag to true.
  1687. if (declaration_values.size() >= 2) {
  1688. // Walk backwards from the end until we find "important"
  1689. Optional<size_t> important_index;
  1690. for (size_t i = declaration_values.size() - 1; i > 0; i--) {
  1691. auto value = declaration_values[i];
  1692. if (value.is(Token::Type::Ident) && Infra::is_ascii_case_insensitive_match(value.token().ident(), "important"sv)) {
  1693. important_index = i;
  1694. break;
  1695. }
  1696. if (value.is(Token::Type::Whitespace))
  1697. continue;
  1698. break;
  1699. }
  1700. // Walk backwards from important until we find "!"
  1701. if (important_index.has_value()) {
  1702. Optional<size_t> bang_index;
  1703. for (size_t i = important_index.value() - 1; i > 0; i--) {
  1704. auto value = declaration_values[i];
  1705. if (value.is(Token::Type::Delim) && value.token().delim() == '!') {
  1706. bang_index = i;
  1707. break;
  1708. }
  1709. if (value.is(Token::Type::Whitespace))
  1710. continue;
  1711. break;
  1712. }
  1713. if (bang_index.has_value()) {
  1714. declaration_values.remove(important_index.value());
  1715. declaration_values.remove(bang_index.value());
  1716. declaration_important = Important::Yes;
  1717. }
  1718. }
  1719. }
  1720. // 6. While the last token in the declaration’s value is a <whitespace-token>, remove that token.
  1721. while (!declaration_values.is_empty()) {
  1722. auto maybe_whitespace = declaration_values.last();
  1723. if (!(maybe_whitespace.is(Token::Type::Whitespace))) {
  1724. break;
  1725. }
  1726. declaration_values.take_last();
  1727. }
  1728. // 7. Return the declaration.
  1729. transaction.commit();
  1730. return Declaration { move(declaration_name), move(declaration_values), declaration_important };
  1731. }
  1732. // 5.4.5. Consume a list of declarations
  1733. // https://www.w3.org/TR/css-syntax-3/#consume-list-of-declarations
  1734. template<typename T>
  1735. Vector<DeclarationOrAtRule> Parser::consume_a_list_of_declarations(TokenStream<T>& tokens)
  1736. {
  1737. // To consume a list of declarations:
  1738. // Create an initially empty list of declarations.
  1739. Vector<DeclarationOrAtRule> list_of_declarations;
  1740. // Repeatedly consume the next input token:
  1741. for (;;) {
  1742. auto& token = tokens.next_token();
  1743. // <whitespace-token>
  1744. // <semicolon-token>
  1745. if (token.is(Token::Type::Whitespace) || token.is(Token::Type::Semicolon)) {
  1746. // Do nothing.
  1747. continue;
  1748. }
  1749. // <EOF-token>
  1750. if (token.is(Token::Type::EndOfFile)) {
  1751. // Return the list of declarations.
  1752. return list_of_declarations;
  1753. }
  1754. // <at-keyword-token>
  1755. if (token.is(Token::Type::AtKeyword)) {
  1756. // Reconsume the current input token.
  1757. tokens.reconsume_current_input_token();
  1758. // Consume an at-rule. Append the returned rule to the list of declarations.
  1759. list_of_declarations.empend(consume_an_at_rule(tokens));
  1760. continue;
  1761. }
  1762. // <ident-token>
  1763. if (token.is(Token::Type::Ident)) {
  1764. // Initialize a temporary list initially filled with the current input token.
  1765. Vector<ComponentValue> temporary_list;
  1766. temporary_list.append(token);
  1767. // As long as the next input token is anything other than a <semicolon-token> or <EOF-token>,
  1768. // consume a component value and append it to the temporary list.
  1769. for (;;) {
  1770. auto& peek = tokens.peek_token();
  1771. if (peek.is(Token::Type::Semicolon) || peek.is(Token::Type::EndOfFile))
  1772. break;
  1773. temporary_list.append(consume_a_component_value(tokens));
  1774. }
  1775. // Consume a declaration from the temporary list. If anything was returned, append it to the list of declarations.
  1776. auto token_stream = TokenStream(temporary_list);
  1777. if (auto maybe_declaration = consume_a_declaration(token_stream); maybe_declaration.has_value())
  1778. list_of_declarations.empend(maybe_declaration.value());
  1779. continue;
  1780. }
  1781. // anything else
  1782. {
  1783. // This is a parse error.
  1784. log_parse_error();
  1785. // Reconsume the current input token.
  1786. tokens.reconsume_current_input_token();
  1787. // As long as the next input token is anything other than a <semicolon-token> or <EOF-token>,
  1788. // consume a component value and throw away the returned value.
  1789. for (;;) {
  1790. auto& peek = tokens.peek_token();
  1791. if (peek.is(Token::Type::Semicolon) || peek.is(Token::Type::EndOfFile))
  1792. break;
  1793. dbgln_if(CSS_PARSER_DEBUG, "Discarding token: '{}'", peek.to_debug_string());
  1794. (void)consume_a_component_value(tokens);
  1795. }
  1796. }
  1797. }
  1798. }
  1799. CSSRule* Parser::parse_as_css_rule()
  1800. {
  1801. auto maybe_rule = parse_a_rule(m_token_stream);
  1802. if (maybe_rule)
  1803. return convert_to_rule(maybe_rule.release_nonnull());
  1804. return {};
  1805. }
  1806. // 5.3.5. Parse a rule
  1807. // https://www.w3.org/TR/css-syntax-3/#parse-rule
  1808. template<typename T>
  1809. RefPtr<Rule> Parser::parse_a_rule(TokenStream<T>& tokens)
  1810. {
  1811. // To parse a rule from input:
  1812. RefPtr<Rule> rule;
  1813. // 1. Normalize input, and set input to the result.
  1814. // Note: This is done when initializing the Parser.
  1815. // 2. While the next input token from input is a <whitespace-token>, consume the next input token from input.
  1816. tokens.skip_whitespace();
  1817. // 3. If the next input token from input is an <EOF-token>, return a syntax error.
  1818. auto& token = tokens.peek_token();
  1819. if (token.is(Token::Type::EndOfFile)) {
  1820. return {};
  1821. }
  1822. // Otherwise, if the next input token from input is an <at-keyword-token>, consume an at-rule from input, and let rule be the return value.
  1823. else if (token.is(Token::Type::AtKeyword)) {
  1824. rule = consume_an_at_rule(m_token_stream);
  1825. }
  1826. // Otherwise, consume a qualified rule from input and let rule be the return value. If nothing was returned, return a syntax error.
  1827. else {
  1828. auto qualified_rule = consume_a_qualified_rule(tokens);
  1829. if (!qualified_rule)
  1830. return {};
  1831. rule = qualified_rule;
  1832. }
  1833. // 4. While the next input token from input is a <whitespace-token>, consume the next input token from input.
  1834. tokens.skip_whitespace();
  1835. // 5. If the next input token from input is an <EOF-token>, return rule. Otherwise, return a syntax error.
  1836. if (tokens.peek_token().is(Token::Type::EndOfFile))
  1837. return rule;
  1838. return {};
  1839. }
  1840. // 5.3.4. Parse a list of rules
  1841. // https://www.w3.org/TR/css-syntax-3/#parse-list-of-rules
  1842. template<typename T>
  1843. Vector<NonnullRefPtr<Rule>> Parser::parse_a_list_of_rules(TokenStream<T>& tokens)
  1844. {
  1845. // To parse a list of rules from input:
  1846. // 1. Normalize input, and set input to the result.
  1847. // Note: This is done when initializing the Parser.
  1848. // 2. Consume a list of rules from the input, with the top-level flag unset.
  1849. auto list_of_rules = consume_a_list_of_rules(tokens, TopLevel::No);
  1850. // 3. Return the returned list.
  1851. return list_of_rules;
  1852. }
  1853. Optional<StyleProperty> Parser::parse_as_supports_condition()
  1854. {
  1855. auto maybe_declaration = parse_a_declaration(m_token_stream);
  1856. if (maybe_declaration.has_value())
  1857. return convert_to_style_property(maybe_declaration.release_value());
  1858. return {};
  1859. }
  1860. // 5.3.6. Parse a declaration
  1861. // https://www.w3.org/TR/css-syntax-3/#parse-a-declaration
  1862. template<typename T>
  1863. Optional<Declaration> Parser::parse_a_declaration(TokenStream<T>& tokens)
  1864. {
  1865. // To parse a declaration from input:
  1866. // 1. Normalize input, and set input to the result.
  1867. // Note: This is done when initializing the Parser.
  1868. // 2. While the next input token from input is a <whitespace-token>, consume the next input token.
  1869. tokens.skip_whitespace();
  1870. // 3. If the next input token from input is not an <ident-token>, return a syntax error.
  1871. auto& token = tokens.peek_token();
  1872. if (!token.is(Token::Type::Ident)) {
  1873. return {};
  1874. }
  1875. // 4. Consume a declaration from input. If anything was returned, return it. Otherwise, return a syntax error.
  1876. if (auto declaration = consume_a_declaration(tokens); declaration.has_value())
  1877. return declaration.release_value();
  1878. return {};
  1879. }
  1880. // 5.3.7. Parse a style block’s contents
  1881. // https://www.w3.org/TR/css-syntax-3/#parse-style-blocks-contents
  1882. template<typename T>
  1883. Vector<DeclarationOrAtRule> Parser::parse_a_style_blocks_contents(TokenStream<T>& tokens)
  1884. {
  1885. // To parse a style block’s contents from input:
  1886. // 1. Normalize input, and set input to the result.
  1887. // Note: This is done when initializing the Parser.
  1888. // 2. Consume a style block’s contents from input, and return the result.
  1889. return consume_a_style_blocks_contents(tokens);
  1890. }
  1891. // 5.3.8. Parse a list of declarations
  1892. // https://www.w3.org/TR/css-syntax-3/#parse-list-of-declarations
  1893. template<typename T>
  1894. Vector<DeclarationOrAtRule> Parser::parse_a_list_of_declarations(TokenStream<T>& tokens)
  1895. {
  1896. // To parse a list of declarations from input:
  1897. // 1. Normalize input, and set input to the result.
  1898. // Note: This is done when initializing the Parser.
  1899. // 2. Consume a list of declarations from input, and return the result.
  1900. return consume_a_list_of_declarations(tokens);
  1901. }
  1902. // 5.3.9. Parse a component value
  1903. // https://www.w3.org/TR/css-syntax-3/#parse-component-value
  1904. template<typename T>
  1905. Optional<ComponentValue> Parser::parse_a_component_value(TokenStream<T>& tokens)
  1906. {
  1907. // To parse a component value from input:
  1908. // 1. Normalize input, and set input to the result.
  1909. // Note: This is done when initializing the Parser.
  1910. // 2. While the next input token from input is a <whitespace-token>, consume the next input token from input.
  1911. tokens.skip_whitespace();
  1912. // 3. If the next input token from input is an <EOF-token>, return a syntax error.
  1913. if (tokens.peek_token().is(Token::Type::EndOfFile))
  1914. return {};
  1915. // 4. Consume a component value from input and let value be the return value.
  1916. auto value = consume_a_component_value(tokens);
  1917. // 5. While the next input token from input is a <whitespace-token>, consume the next input token.
  1918. tokens.skip_whitespace();
  1919. // 6. If the next input token from input is an <EOF-token>, return value. Otherwise, return a syntax error.
  1920. if (tokens.peek_token().is(Token::Type::EndOfFile))
  1921. return value;
  1922. return {};
  1923. }
  1924. // 5.3.10. Parse a list of component values
  1925. // https://www.w3.org/TR/css-syntax-3/#parse-list-of-component-values
  1926. template<typename T>
  1927. Vector<ComponentValue> Parser::parse_a_list_of_component_values(TokenStream<T>& tokens)
  1928. {
  1929. // To parse a list of component values from input:
  1930. // 1. Normalize input, and set input to the result.
  1931. // Note: This is done when initializing the Parser.
  1932. // 2. Repeatedly consume a component value from input until an <EOF-token> is returned, appending the returned values (except the final <EOF-token>) into a list. Return the list.
  1933. Vector<ComponentValue> component_values;
  1934. for (;;) {
  1935. if (tokens.peek_token().is(Token::Type::EndOfFile)) {
  1936. break;
  1937. }
  1938. component_values.append(consume_a_component_value(tokens));
  1939. }
  1940. return component_values;
  1941. }
  1942. // 5.3.11. Parse a comma-separated list of component values
  1943. // https://www.w3.org/TR/css-syntax-3/#parse-comma-separated-list-of-component-values
  1944. template<typename T>
  1945. Vector<Vector<ComponentValue>> Parser::parse_a_comma_separated_list_of_component_values(TokenStream<T>& tokens)
  1946. {
  1947. // To parse a comma-separated list of component values from input:
  1948. // 1. Normalize input, and set input to the result.
  1949. // Note: This is done when initializing the Parser.
  1950. // 2. Let list of cvls be an initially empty list of component value lists.
  1951. Vector<Vector<ComponentValue>> list_of_component_value_lists;
  1952. // 3. Repeatedly consume a component value from input until an <EOF-token> or <comma-token> is returned,
  1953. // appending the returned values (except the final <EOF-token> or <comma-token>) into a list.
  1954. // Append the list to list of cvls.
  1955. // If it was a <comma-token> that was returned, repeat this step.
  1956. Vector<ComponentValue> current_list;
  1957. for (;;) {
  1958. auto component_value = consume_a_component_value(tokens);
  1959. if (component_value.is(Token::Type::EndOfFile)) {
  1960. list_of_component_value_lists.append(move(current_list));
  1961. break;
  1962. }
  1963. if (component_value.is(Token::Type::Comma)) {
  1964. list_of_component_value_lists.append(move(current_list));
  1965. current_list = {};
  1966. continue;
  1967. }
  1968. current_list.append(component_value);
  1969. }
  1970. // 4. Return list of cvls.
  1971. return list_of_component_value_lists;
  1972. }
  1973. ElementInlineCSSStyleDeclaration* Parser::parse_as_style_attribute(DOM::Element& element)
  1974. {
  1975. auto declarations_and_at_rules = parse_a_list_of_declarations(m_token_stream);
  1976. auto [properties, custom_properties] = extract_properties(declarations_and_at_rules);
  1977. return ElementInlineCSSStyleDeclaration::create(element, move(properties), move(custom_properties)).release_value_but_fixme_should_propagate_errors();
  1978. }
  1979. Optional<AK::URL> Parser::parse_url_function(ComponentValue const& component_value, AllowedDataUrlType allowed_data_url_type)
  1980. {
  1981. // FIXME: Handle list of media queries. https://www.w3.org/TR/css-cascade-3/#conditional-import
  1982. // FIXME: Handle data: urls (RFC2397)
  1983. auto convert_string_to_url = [&](StringView& url_string) -> Optional<AK::URL> {
  1984. if (url_string.starts_with("data:"sv, CaseSensitivity::CaseInsensitive)) {
  1985. auto data_url = AK::URL(url_string);
  1986. switch (allowed_data_url_type) {
  1987. case AllowedDataUrlType::Image:
  1988. if (data_url.data_mime_type().starts_with("image"sv, CaseSensitivity::CaseInsensitive))
  1989. return data_url;
  1990. break;
  1991. case AllowedDataUrlType::Font:
  1992. if (data_url.data_mime_type().starts_with("font"sv, CaseSensitivity::CaseInsensitive))
  1993. return data_url;
  1994. break;
  1995. default:
  1996. break;
  1997. }
  1998. return {};
  1999. }
  2000. return m_context.complete_url(url_string);
  2001. };
  2002. if (component_value.is(Token::Type::Url)) {
  2003. auto url_string = component_value.token().url();
  2004. return convert_string_to_url(url_string);
  2005. }
  2006. if (component_value.is_function() && component_value.function().name().equals_ignoring_ascii_case("url"sv)) {
  2007. auto const& function_values = component_value.function().values();
  2008. // FIXME: Handle url-modifiers. https://www.w3.org/TR/css-values-4/#url-modifiers
  2009. for (size_t i = 0; i < function_values.size(); ++i) {
  2010. auto const& value = function_values[i];
  2011. if (value.is(Token::Type::Whitespace))
  2012. continue;
  2013. if (value.is(Token::Type::String)) {
  2014. auto url_string = value.token().string();
  2015. return convert_string_to_url(url_string);
  2016. }
  2017. break;
  2018. }
  2019. }
  2020. return {};
  2021. }
  2022. RefPtr<StyleValue> Parser::parse_url_value(ComponentValue const& component_value, AllowedDataUrlType allowed_data_url_type)
  2023. {
  2024. auto url = parse_url_function(component_value, allowed_data_url_type);
  2025. if (!url.has_value())
  2026. return {};
  2027. return URLStyleValue::create(*url);
  2028. }
  2029. template<typename TElement>
  2030. static Optional<Vector<TElement>> parse_color_stop_list(auto& tokens, auto is_position, auto get_position, auto parse_color, auto parse_dimension)
  2031. {
  2032. enum class ElementType {
  2033. Garbage,
  2034. ColorStop,
  2035. ColorHint
  2036. };
  2037. auto parse_color_stop_list_element = [&](TElement& element) -> ElementType {
  2038. tokens.skip_whitespace();
  2039. if (!tokens.has_next_token())
  2040. return ElementType::Garbage;
  2041. auto const& token = tokens.next_token();
  2042. Gfx::Color color;
  2043. Optional<typename TElement::PositionType> position;
  2044. Optional<typename TElement::PositionType> second_position;
  2045. auto dimension = parse_dimension(token);
  2046. if (dimension.has_value() && is_position(*dimension)) {
  2047. // [<T-percentage> <color>] or [<T-percentage>]
  2048. position = get_position(*dimension);
  2049. tokens.skip_whitespace();
  2050. // <T-percentage>
  2051. if (!tokens.has_next_token() || tokens.peek_token().is(Token::Type::Comma)) {
  2052. element.transition_hint = typename TElement::ColorHint { *position };
  2053. return ElementType::ColorHint;
  2054. }
  2055. // <T-percentage> <color>
  2056. auto maybe_color = parse_color(tokens.next_token());
  2057. if (!maybe_color.has_value())
  2058. return ElementType::Garbage;
  2059. color = *maybe_color;
  2060. } else {
  2061. // [<color> <T-percentage>?]
  2062. auto maybe_color = parse_color(token);
  2063. if (!maybe_color.has_value())
  2064. return ElementType::Garbage;
  2065. color = *maybe_color;
  2066. tokens.skip_whitespace();
  2067. // Allow up to [<color> <T-percentage> <T-percentage>] (double-position color stops)
  2068. // Note: Double-position color stops only appear to be valid in this order.
  2069. for (auto stop_position : Array { &position, &second_position }) {
  2070. if (tokens.has_next_token() && !tokens.peek_token().is(Token::Type::Comma)) {
  2071. auto token = tokens.next_token();
  2072. auto dimension = parse_dimension(token);
  2073. if (!dimension.has_value() || !is_position(*dimension))
  2074. return ElementType::Garbage;
  2075. *stop_position = get_position(*dimension);
  2076. tokens.skip_whitespace();
  2077. }
  2078. }
  2079. }
  2080. element.color_stop = typename TElement::ColorStop { color, position, second_position };
  2081. return ElementType::ColorStop;
  2082. };
  2083. TElement first_element {};
  2084. if (parse_color_stop_list_element(first_element) != ElementType::ColorStop)
  2085. return {};
  2086. if (!tokens.has_next_token())
  2087. return {};
  2088. Vector<TElement> color_stops { first_element };
  2089. while (tokens.has_next_token()) {
  2090. TElement list_element {};
  2091. tokens.skip_whitespace();
  2092. if (!tokens.next_token().is(Token::Type::Comma))
  2093. return {};
  2094. auto element_type = parse_color_stop_list_element(list_element);
  2095. if (element_type == ElementType::ColorHint) {
  2096. // <color-hint>, <color-stop>
  2097. tokens.skip_whitespace();
  2098. if (!tokens.next_token().is(Token::Type::Comma))
  2099. return {};
  2100. // Note: This fills in the color stop on the same list_element as the color hint (it does not overwrite it).
  2101. if (parse_color_stop_list_element(list_element) != ElementType::ColorStop)
  2102. return {};
  2103. } else if (element_type == ElementType::ColorStop) {
  2104. // <color-stop>
  2105. } else {
  2106. return {};
  2107. }
  2108. color_stops.append(list_element);
  2109. }
  2110. return color_stops;
  2111. }
  2112. Optional<Vector<LinearColorStopListElement>> Parser::parse_linear_color_stop_list(TokenStream<ComponentValue>& tokens)
  2113. {
  2114. // <color-stop-list> =
  2115. // <linear-color-stop> , [ <linear-color-hint>? , <linear-color-stop> ]#
  2116. return parse_color_stop_list<LinearColorStopListElement>(
  2117. tokens,
  2118. [](Dimension& dimension) { return dimension.is_length_percentage(); },
  2119. [](Dimension& dimension) { return dimension.length_percentage(); },
  2120. [&](auto& token) { return parse_color(token); },
  2121. [&](auto& token) { return parse_dimension(token); });
  2122. }
  2123. Optional<Vector<AngularColorStopListElement>> Parser::parse_angular_color_stop_list(TokenStream<ComponentValue>& tokens)
  2124. {
  2125. // <angular-color-stop-list> =
  2126. // <angular-color-stop> , [ <angular-color-hint>? , <angular-color-stop> ]#
  2127. return parse_color_stop_list<AngularColorStopListElement>(
  2128. tokens,
  2129. [](Dimension& dimension) { return dimension.is_angle_percentage(); },
  2130. [](Dimension& dimension) { return dimension.angle_percentage(); },
  2131. [&](auto& token) { return parse_color(token); },
  2132. [&](auto& token) { return parse_dimension(token); });
  2133. }
  2134. static StringView consume_if_starts_with(StringView str, StringView start, auto found_callback)
  2135. {
  2136. if (str.starts_with(start, CaseSensitivity::CaseInsensitive)) {
  2137. found_callback();
  2138. return str.substring_view(start.length());
  2139. }
  2140. return str;
  2141. };
  2142. RefPtr<StyleValue> Parser::parse_linear_gradient_function(ComponentValue const& component_value)
  2143. {
  2144. using GradientType = LinearGradientStyleValue::GradientType;
  2145. if (!component_value.is_function())
  2146. return {};
  2147. GradientRepeating repeating_gradient = GradientRepeating::No;
  2148. GradientType gradient_type { GradientType::Standard };
  2149. auto function_name = component_value.function().name();
  2150. function_name = consume_if_starts_with(function_name, "-webkit-"sv, [&] {
  2151. gradient_type = GradientType::WebKit;
  2152. });
  2153. function_name = consume_if_starts_with(function_name, "repeating-"sv, [&] {
  2154. repeating_gradient = GradientRepeating::Yes;
  2155. });
  2156. if (!function_name.equals_ignoring_ascii_case("linear-gradient"sv))
  2157. return {};
  2158. // linear-gradient() = linear-gradient([ <angle> | to <side-or-corner> ]?, <color-stop-list>)
  2159. TokenStream tokens { component_value.function().values() };
  2160. tokens.skip_whitespace();
  2161. if (!tokens.has_next_token())
  2162. return {};
  2163. bool has_direction_param = true;
  2164. LinearGradientStyleValue::GradientDirection gradient_direction = gradient_type == GradientType::Standard
  2165. ? SideOrCorner::Bottom
  2166. : SideOrCorner::Top;
  2167. auto to_side = [](StringView value) -> Optional<SideOrCorner> {
  2168. if (value.equals_ignoring_ascii_case("top"sv))
  2169. return SideOrCorner::Top;
  2170. if (value.equals_ignoring_ascii_case("bottom"sv))
  2171. return SideOrCorner::Bottom;
  2172. if (value.equals_ignoring_ascii_case("left"sv))
  2173. return SideOrCorner::Left;
  2174. if (value.equals_ignoring_ascii_case("right"sv))
  2175. return SideOrCorner::Right;
  2176. return {};
  2177. };
  2178. auto is_to_side_or_corner = [&](auto const& token) {
  2179. if (!token.is(Token::Type::Ident))
  2180. return false;
  2181. if (gradient_type == GradientType::WebKit)
  2182. return to_side(token.token().ident()).has_value();
  2183. return token.token().ident().equals_ignoring_ascii_case("to"sv);
  2184. };
  2185. auto const& first_param = tokens.peek_token();
  2186. if (first_param.is(Token::Type::Dimension)) {
  2187. // <angle>
  2188. tokens.next_token();
  2189. float angle_value = first_param.token().dimension_value();
  2190. auto unit_string = first_param.token().dimension_unit();
  2191. auto angle_type = Angle::unit_from_name(unit_string);
  2192. if (!angle_type.has_value())
  2193. return {};
  2194. gradient_direction = Angle { angle_value, angle_type.release_value() };
  2195. } else if (is_to_side_or_corner(first_param)) {
  2196. // <side-or-corner> = [left | right] || [top | bottom]
  2197. // Note: -webkit-linear-gradient does not include to the "to" prefix on the side or corner
  2198. if (gradient_type == GradientType::Standard) {
  2199. tokens.next_token();
  2200. tokens.skip_whitespace();
  2201. if (!tokens.has_next_token())
  2202. return {};
  2203. }
  2204. // [left | right] || [top | bottom]
  2205. auto const& first_side = tokens.next_token();
  2206. if (!first_side.is(Token::Type::Ident))
  2207. return {};
  2208. auto side_a = to_side(first_side.token().ident());
  2209. tokens.skip_whitespace();
  2210. Optional<SideOrCorner> side_b;
  2211. if (tokens.has_next_token() && tokens.peek_token().is(Token::Type::Ident))
  2212. side_b = to_side(tokens.next_token().token().ident());
  2213. if (side_a.has_value() && !side_b.has_value()) {
  2214. gradient_direction = *side_a;
  2215. } else if (side_a.has_value() && side_b.has_value()) {
  2216. // Convert two sides to a corner
  2217. if (to_underlying(*side_b) < to_underlying(*side_a))
  2218. swap(side_a, side_b);
  2219. if (side_a == SideOrCorner::Top && side_b == SideOrCorner::Left)
  2220. gradient_direction = SideOrCorner::TopLeft;
  2221. else if (side_a == SideOrCorner::Top && side_b == SideOrCorner::Right)
  2222. gradient_direction = SideOrCorner::TopRight;
  2223. else if (side_a == SideOrCorner::Bottom && side_b == SideOrCorner::Left)
  2224. gradient_direction = SideOrCorner::BottomLeft;
  2225. else if (side_a == SideOrCorner::Bottom && side_b == SideOrCorner::Right)
  2226. gradient_direction = SideOrCorner::BottomRight;
  2227. else
  2228. return {};
  2229. } else {
  2230. return {};
  2231. }
  2232. } else {
  2233. has_direction_param = false;
  2234. }
  2235. tokens.skip_whitespace();
  2236. if (!tokens.has_next_token())
  2237. return {};
  2238. if (has_direction_param && !tokens.next_token().is(Token::Type::Comma))
  2239. return {};
  2240. auto color_stops = parse_linear_color_stop_list(tokens);
  2241. if (!color_stops.has_value())
  2242. return {};
  2243. return LinearGradientStyleValue::create(gradient_direction, move(*color_stops), gradient_type, repeating_gradient);
  2244. }
  2245. RefPtr<StyleValue> Parser::parse_conic_gradient_function(ComponentValue const& component_value)
  2246. {
  2247. if (!component_value.is_function())
  2248. return {};
  2249. GradientRepeating repeating_gradient = GradientRepeating::No;
  2250. auto function_name = component_value.function().name();
  2251. function_name = consume_if_starts_with(function_name, "repeating-"sv, [&] {
  2252. repeating_gradient = GradientRepeating::Yes;
  2253. });
  2254. if (!function_name.equals_ignoring_ascii_case("conic-gradient"sv))
  2255. return {};
  2256. TokenStream tokens { component_value.function().values() };
  2257. tokens.skip_whitespace();
  2258. if (!tokens.has_next_token())
  2259. return {};
  2260. Angle from_angle(0, Angle::Type::Deg);
  2261. PositionValue at_position = PositionValue::center();
  2262. // conic-gradient( [ [ from <angle> ]? [ at <position> ]? ] ||
  2263. // <color-interpolation-method> , <angular-color-stop-list> )
  2264. auto token = tokens.peek_token();
  2265. bool got_from_angle = false;
  2266. bool got_color_interpolation_method = false;
  2267. bool got_at_position = false;
  2268. while (token.is(Token::Type::Ident)) {
  2269. auto consume_identifier = [&](auto identifier) {
  2270. auto token_string = token.token().ident();
  2271. if (token_string.equals_ignoring_ascii_case(identifier)) {
  2272. (void)tokens.next_token();
  2273. tokens.skip_whitespace();
  2274. return true;
  2275. }
  2276. return false;
  2277. };
  2278. if (consume_identifier("from"sv)) {
  2279. // from <angle>
  2280. if (got_from_angle || got_at_position)
  2281. return {};
  2282. if (!tokens.has_next_token())
  2283. return {};
  2284. auto angle_token = tokens.next_token();
  2285. if (!angle_token.is(Token::Type::Dimension))
  2286. return {};
  2287. float angle = angle_token.token().dimension_value();
  2288. auto angle_unit = angle_token.token().dimension_unit();
  2289. auto angle_type = Angle::unit_from_name(angle_unit);
  2290. if (!angle_type.has_value())
  2291. return {};
  2292. from_angle = Angle(angle, *angle_type);
  2293. got_from_angle = true;
  2294. } else if (consume_identifier("at"sv)) {
  2295. // at <position>
  2296. if (got_at_position)
  2297. return {};
  2298. auto position = parse_position(tokens);
  2299. if (!position.has_value())
  2300. return {};
  2301. at_position = *position;
  2302. got_at_position = true;
  2303. } else if (consume_identifier("in"sv)) {
  2304. // <color-interpolation-method>
  2305. if (got_color_interpolation_method)
  2306. return {};
  2307. dbgln("FIXME: Parse color interpolation method for conic-gradient()");
  2308. got_color_interpolation_method = true;
  2309. } else {
  2310. break;
  2311. }
  2312. tokens.skip_whitespace();
  2313. if (!tokens.has_next_token())
  2314. return {};
  2315. token = tokens.peek_token();
  2316. }
  2317. tokens.skip_whitespace();
  2318. if (!tokens.has_next_token())
  2319. return {};
  2320. if ((got_from_angle || got_at_position || got_color_interpolation_method) && !tokens.next_token().is(Token::Type::Comma))
  2321. return {};
  2322. auto color_stops = parse_angular_color_stop_list(tokens);
  2323. if (!color_stops.has_value())
  2324. return {};
  2325. return ConicGradientStyleValue::create(from_angle, at_position, move(*color_stops), repeating_gradient);
  2326. }
  2327. RefPtr<StyleValue> Parser::parse_radial_gradient_function(ComponentValue const& component_value)
  2328. {
  2329. using EndingShape = RadialGradientStyleValue::EndingShape;
  2330. using Extent = RadialGradientStyleValue::Extent;
  2331. using CircleSize = RadialGradientStyleValue::CircleSize;
  2332. using EllipseSize = RadialGradientStyleValue::EllipseSize;
  2333. using Size = RadialGradientStyleValue::Size;
  2334. if (!component_value.is_function())
  2335. return {};
  2336. auto repeating_gradient = GradientRepeating::No;
  2337. auto function_name = component_value.function().name();
  2338. function_name = consume_if_starts_with(function_name, "repeating-"sv, [&] {
  2339. repeating_gradient = GradientRepeating::Yes;
  2340. });
  2341. if (!function_name.equals_ignoring_ascii_case("radial-gradient"sv))
  2342. return {};
  2343. TokenStream tokens { component_value.function().values() };
  2344. tokens.skip_whitespace();
  2345. if (!tokens.has_next_token())
  2346. return {};
  2347. bool expect_comma = false;
  2348. auto commit_value = [&]<typename... T>(auto value, T&... transactions) {
  2349. (transactions.commit(), ...);
  2350. return value;
  2351. };
  2352. // radial-gradient( [ <ending-shape> || <size> ]? [ at <position> ]? , <color-stop-list> )
  2353. Size size = Extent::FarthestCorner;
  2354. EndingShape ending_shape = EndingShape::Circle;
  2355. PositionValue at_position = PositionValue::center();
  2356. auto parse_ending_shape = [&]() -> Optional<EndingShape> {
  2357. auto transaction = tokens.begin_transaction();
  2358. tokens.skip_whitespace();
  2359. auto& token = tokens.next_token();
  2360. if (!token.is(Token::Type::Ident))
  2361. return {};
  2362. auto ident = token.token().ident();
  2363. if (ident.equals_ignoring_ascii_case("circle"sv))
  2364. return commit_value(EndingShape::Circle, transaction);
  2365. if (ident.equals_ignoring_ascii_case("ellipse"sv))
  2366. return commit_value(EndingShape::Ellipse, transaction);
  2367. return {};
  2368. };
  2369. auto parse_extent_keyword = [](StringView keyword) -> Optional<Extent> {
  2370. if (keyword.equals_ignoring_ascii_case("closest-corner"sv))
  2371. return Extent::ClosestCorner;
  2372. if (keyword.equals_ignoring_ascii_case("closest-side"sv))
  2373. return Extent::ClosestSide;
  2374. if (keyword.equals_ignoring_ascii_case("farthest-corner"sv))
  2375. return Extent::FarthestCorner;
  2376. if (keyword.equals_ignoring_ascii_case("farthest-side"sv))
  2377. return Extent::FarthestSide;
  2378. return {};
  2379. };
  2380. auto parse_size = [&]() -> Optional<Size> {
  2381. // <size> =
  2382. // <extent-keyword> |
  2383. // <length [0,∞]> |
  2384. // <length-percentage [0,∞]>{2}
  2385. auto transaction_size = tokens.begin_transaction();
  2386. tokens.skip_whitespace();
  2387. if (!tokens.has_next_token())
  2388. return {};
  2389. auto& token = tokens.next_token();
  2390. if (token.is(Token::Type::Ident)) {
  2391. auto extent = parse_extent_keyword(token.token().ident());
  2392. if (!extent.has_value())
  2393. return {};
  2394. return commit_value(*extent, transaction_size);
  2395. }
  2396. auto first_dimension = parse_dimension(token);
  2397. if (!first_dimension.has_value())
  2398. return {};
  2399. if (!first_dimension->is_length_percentage())
  2400. return {};
  2401. auto transaction_second_dimension = tokens.begin_transaction();
  2402. tokens.skip_whitespace();
  2403. if (tokens.has_next_token()) {
  2404. auto& second_token = tokens.next_token();
  2405. auto second_dimension = parse_dimension(second_token);
  2406. if (second_dimension.has_value() && second_dimension->is_length_percentage())
  2407. return commit_value(EllipseSize { first_dimension->length_percentage(), second_dimension->length_percentage() },
  2408. transaction_size, transaction_second_dimension);
  2409. }
  2410. if (first_dimension->is_length())
  2411. return commit_value(CircleSize { first_dimension->length() }, transaction_size);
  2412. return {};
  2413. };
  2414. {
  2415. // [ <ending-shape> || <size> ]?
  2416. auto maybe_ending_shape = parse_ending_shape();
  2417. auto maybe_size = parse_size();
  2418. if (!maybe_ending_shape.has_value() && maybe_size.has_value())
  2419. maybe_ending_shape = parse_ending_shape();
  2420. if (maybe_size.has_value()) {
  2421. size = *maybe_size;
  2422. expect_comma = true;
  2423. }
  2424. if (maybe_ending_shape.has_value()) {
  2425. expect_comma = true;
  2426. ending_shape = *maybe_ending_shape;
  2427. if (ending_shape == EndingShape::Circle && size.has<EllipseSize>())
  2428. return {};
  2429. if (ending_shape == EndingShape::Ellipse && size.has<CircleSize>())
  2430. return {};
  2431. } else {
  2432. ending_shape = size.has<CircleSize>() ? EndingShape::Circle : EndingShape::Ellipse;
  2433. }
  2434. }
  2435. tokens.skip_whitespace();
  2436. if (!tokens.has_next_token())
  2437. return {};
  2438. auto& token = tokens.peek_token();
  2439. if (token.is(Token::Type::Ident) && token.token().ident().equals_ignoring_ascii_case("at"sv)) {
  2440. (void)tokens.next_token();
  2441. auto position = parse_position(tokens);
  2442. if (!position.has_value())
  2443. return {};
  2444. at_position = *position;
  2445. expect_comma = true;
  2446. }
  2447. tokens.skip_whitespace();
  2448. if (!tokens.has_next_token())
  2449. return {};
  2450. if (expect_comma && !tokens.next_token().is(Token::Type::Comma))
  2451. return {};
  2452. // <color-stop-list>
  2453. auto color_stops = parse_linear_color_stop_list(tokens);
  2454. if (!color_stops.has_value())
  2455. return {};
  2456. return RadialGradientStyleValue::create(ending_shape, size, at_position, move(*color_stops), repeating_gradient);
  2457. }
  2458. Optional<PositionValue> Parser::parse_position(TokenStream<ComponentValue>& tokens, PositionValue initial_value)
  2459. {
  2460. auto transaction = tokens.begin_transaction();
  2461. tokens.skip_whitespace();
  2462. if (!tokens.has_next_token())
  2463. return {};
  2464. auto parse_horizontal_preset = [&](auto ident) -> Optional<PositionValue::HorizontalPreset> {
  2465. if (ident.equals_ignoring_ascii_case("left"sv))
  2466. return PositionValue::HorizontalPreset::Left;
  2467. if (ident.equals_ignoring_ascii_case("center"sv))
  2468. return PositionValue::HorizontalPreset::Center;
  2469. if (ident.equals_ignoring_ascii_case("right"sv))
  2470. return PositionValue::HorizontalPreset::Right;
  2471. return {};
  2472. };
  2473. auto parse_vertical_preset = [&](auto ident) -> Optional<PositionValue::VerticalPreset> {
  2474. if (ident.equals_ignoring_ascii_case("top"sv))
  2475. return PositionValue::VerticalPreset::Top;
  2476. if (ident.equals_ignoring_ascii_case("center"sv))
  2477. return PositionValue::VerticalPreset::Center;
  2478. if (ident.equals_ignoring_ascii_case("bottom"sv))
  2479. return PositionValue::VerticalPreset::Bottom;
  2480. return {};
  2481. };
  2482. auto parse_horizontal_edge = [&](auto ident) -> Optional<PositionValue::HorizontalEdge> {
  2483. if (ident.equals_ignoring_ascii_case("left"sv))
  2484. return PositionValue::HorizontalEdge::Left;
  2485. if (ident.equals_ignoring_ascii_case("right"sv))
  2486. return PositionValue::HorizontalEdge::Right;
  2487. return {};
  2488. };
  2489. auto parse_vertical_edge = [&](auto ident) -> Optional<PositionValue::VerticalEdge> {
  2490. if (ident.equals_ignoring_ascii_case("top"sv))
  2491. return PositionValue::VerticalEdge::Top;
  2492. if (ident.equals_ignoring_ascii_case("bottom"sv))
  2493. return PositionValue::VerticalEdge::Bottom;
  2494. return {};
  2495. };
  2496. // <position> = [
  2497. // [ left | center | right ] || [ top | center | bottom ]
  2498. // |
  2499. // [ left | center | right | <length-percentage> ]
  2500. // [ top | center | bottom | <length-percentage> ]?
  2501. // |
  2502. // [ [ left | right ] <length-percentage> ] &&
  2503. // [ [ top | bottom ] <length-percentage> ]
  2504. // ]
  2505. // [ left | center | right ] || [ top | center | bottom ]
  2506. auto alternation_1 = [&]() -> Optional<PositionValue> {
  2507. auto transaction = tokens.begin_transaction();
  2508. PositionValue position = initial_value;
  2509. auto& first_token = tokens.next_token();
  2510. if (!first_token.is(Token::Type::Ident))
  2511. return {};
  2512. auto ident = first_token.token().ident();
  2513. // <horizontal-position> <vertical-position>?
  2514. auto horizontal_position = parse_horizontal_preset(ident);
  2515. if (horizontal_position.has_value()) {
  2516. position.horizontal_position = *horizontal_position;
  2517. auto transaction_optional_parse = tokens.begin_transaction();
  2518. tokens.skip_whitespace();
  2519. if (tokens.has_next_token()) {
  2520. auto& second_token = tokens.next_token();
  2521. if (second_token.is(Token::Type::Ident)) {
  2522. auto vertical_position = parse_vertical_preset(second_token.token().ident());
  2523. if (vertical_position.has_value()) {
  2524. transaction_optional_parse.commit();
  2525. position.vertical_position = *vertical_position;
  2526. }
  2527. }
  2528. }
  2529. } else {
  2530. // <vertical-position> <horizontal-position>?
  2531. auto vertical_position = parse_vertical_preset(ident);
  2532. if (!vertical_position.has_value())
  2533. return {};
  2534. position.vertical_position = *vertical_position;
  2535. auto transaction_optional_parse = tokens.begin_transaction();
  2536. tokens.skip_whitespace();
  2537. if (tokens.has_next_token()) {
  2538. auto& second_token = tokens.next_token();
  2539. if (second_token.is(Token::Type::Ident)) {
  2540. auto horizontal_position = parse_horizontal_preset(second_token.token().ident());
  2541. if (horizontal_position.has_value()) {
  2542. transaction_optional_parse.commit();
  2543. position.horizontal_position = *horizontal_position;
  2544. }
  2545. }
  2546. }
  2547. }
  2548. transaction.commit();
  2549. return position;
  2550. };
  2551. // [ left | center | right | <length-percentage> ]
  2552. // [ top | center | bottom | <length-percentage> ]?
  2553. auto alternation_2 = [&]() -> Optional<PositionValue> {
  2554. auto transaction = tokens.begin_transaction();
  2555. PositionValue position = initial_value;
  2556. auto& first_token = tokens.next_token();
  2557. if (first_token.is(Token::Type::Ident)) {
  2558. auto horizontal_position = parse_horizontal_preset(first_token.token().ident());
  2559. if (!horizontal_position.has_value())
  2560. return {};
  2561. position.horizontal_position = *horizontal_position;
  2562. } else {
  2563. auto dimension = parse_dimension(first_token);
  2564. if (!dimension.has_value() || !dimension->is_length_percentage())
  2565. return {};
  2566. position.horizontal_position = dimension->length_percentage();
  2567. }
  2568. auto transaction_optional_parse = tokens.begin_transaction();
  2569. tokens.skip_whitespace();
  2570. if (tokens.has_next_token()) {
  2571. auto& second_token = tokens.next_token();
  2572. if (second_token.is(Token::Type::Ident)) {
  2573. auto vertical_position = parse_vertical_preset(second_token.token().ident());
  2574. if (vertical_position.has_value()) {
  2575. transaction_optional_parse.commit();
  2576. position.vertical_position = *vertical_position;
  2577. }
  2578. } else {
  2579. auto dimension = parse_dimension(second_token);
  2580. if (dimension.has_value() && dimension->is_length_percentage()) {
  2581. transaction_optional_parse.commit();
  2582. position.vertical_position = dimension->length_percentage();
  2583. }
  2584. }
  2585. }
  2586. transaction.commit();
  2587. return position;
  2588. };
  2589. // [ [ left | right ] <length-percentage> ] &&
  2590. // [ [ top | bottom ] <length-percentage> ]
  2591. auto alternation_3 = [&]() -> Optional<PositionValue> {
  2592. auto transaction = tokens.begin_transaction();
  2593. PositionValue position {};
  2594. auto parse_horizontal = [&] {
  2595. // [ left | right ] <length-percentage> ]
  2596. auto transaction = tokens.begin_transaction();
  2597. tokens.skip_whitespace();
  2598. if (!tokens.has_next_token())
  2599. return false;
  2600. auto& first_token = tokens.next_token();
  2601. if (!first_token.is(Token::Type::Ident))
  2602. return false;
  2603. auto horizontal_egde = parse_horizontal_edge(first_token.token().ident());
  2604. if (!horizontal_egde.has_value())
  2605. return false;
  2606. position.x_relative_to = *horizontal_egde;
  2607. tokens.skip_whitespace();
  2608. if (!tokens.has_next_token())
  2609. return false;
  2610. auto& second_token = tokens.next_token();
  2611. auto dimension = parse_dimension(second_token);
  2612. if (!dimension.has_value() || !dimension->is_length_percentage())
  2613. return false;
  2614. position.horizontal_position = dimension->length_percentage();
  2615. transaction.commit();
  2616. return true;
  2617. };
  2618. auto parse_vertical = [&] {
  2619. // [ top | bottom ] <length-percentage> ]
  2620. auto transaction = tokens.begin_transaction();
  2621. tokens.skip_whitespace();
  2622. if (!tokens.has_next_token())
  2623. return false;
  2624. auto& first_token = tokens.next_token();
  2625. if (!first_token.is(Token::Type::Ident))
  2626. return false;
  2627. auto vertical_edge = parse_vertical_edge(first_token.token().ident());
  2628. if (!vertical_edge.has_value())
  2629. return false;
  2630. position.y_relative_to = *vertical_edge;
  2631. tokens.skip_whitespace();
  2632. if (!tokens.has_next_token())
  2633. return false;
  2634. auto& second_token = tokens.next_token();
  2635. auto dimension = parse_dimension(second_token);
  2636. if (!dimension.has_value() || !dimension->is_length_percentage())
  2637. return false;
  2638. position.vertical_position = dimension->length_percentage();
  2639. transaction.commit();
  2640. return true;
  2641. };
  2642. if ((parse_horizontal() && parse_vertical()) || (parse_vertical() && parse_horizontal())) {
  2643. transaction.commit();
  2644. return position;
  2645. }
  2646. return {};
  2647. };
  2648. // Note: The alternatives must be attempted in this order since `alternation_2' can match a prefix of `alternation_3'
  2649. auto position = alternation_3();
  2650. if (!position.has_value())
  2651. position = alternation_2();
  2652. if (!position.has_value())
  2653. position = alternation_1();
  2654. if (position.has_value())
  2655. transaction.commit();
  2656. return position;
  2657. }
  2658. CSSRule* Parser::convert_to_rule(NonnullRefPtr<Rule> rule)
  2659. {
  2660. if (rule->is_at_rule()) {
  2661. if (has_ignored_vendor_prefix(rule->at_rule_name()))
  2662. return {};
  2663. if (rule->at_rule_name().equals_ignoring_ascii_case("font-face"sv)) {
  2664. if (!rule->block() || !rule->block()->is_curly()) {
  2665. dbgln_if(CSS_PARSER_DEBUG, "@font-face rule is malformed.");
  2666. return {};
  2667. }
  2668. TokenStream tokens { rule->block()->values() };
  2669. return parse_font_face_rule(tokens);
  2670. }
  2671. if (rule->at_rule_name().equals_ignoring_ascii_case("import"sv) && !rule->prelude().is_empty()) {
  2672. Optional<AK::URL> url;
  2673. for (auto const& token : rule->prelude()) {
  2674. if (token.is(Token::Type::Whitespace))
  2675. continue;
  2676. if (token.is(Token::Type::String)) {
  2677. url = m_context.complete_url(token.token().string());
  2678. } else {
  2679. url = parse_url_function(token);
  2680. }
  2681. // FIXME: Handle list of media queries. https://www.w3.org/TR/css-cascade-3/#conditional-import
  2682. if (url.has_value())
  2683. break;
  2684. }
  2685. if (url.has_value())
  2686. return CSSImportRule::create(url.value(), const_cast<DOM::Document&>(*m_context.document())).release_value_but_fixme_should_propagate_errors();
  2687. dbgln_if(CSS_PARSER_DEBUG, "Unable to parse url from @import rule");
  2688. return {};
  2689. }
  2690. if (rule->at_rule_name().equals_ignoring_ascii_case("media"sv)) {
  2691. auto media_query_tokens = TokenStream { rule->prelude() };
  2692. auto media_query_list = parse_a_media_query_list(media_query_tokens);
  2693. if (media_query_list.is_empty() || !rule->block())
  2694. return {};
  2695. auto child_tokens = TokenStream { rule->block()->values() };
  2696. auto parser_rules = parse_a_list_of_rules(child_tokens);
  2697. JS::MarkedVector<CSSRule*> child_rules(m_context.realm().heap());
  2698. for (auto& raw_rule : parser_rules) {
  2699. if (auto* child_rule = convert_to_rule(raw_rule))
  2700. child_rules.append(child_rule);
  2701. }
  2702. auto media_list = MediaList::create(m_context.realm(), move(media_query_list)).release_value_but_fixme_should_propagate_errors();
  2703. auto rule_list = CSSRuleList::create(m_context.realm(), child_rules).release_value_but_fixme_should_propagate_errors();
  2704. return CSSMediaRule::create(m_context.realm(), media_list, rule_list).release_value_but_fixme_should_propagate_errors();
  2705. }
  2706. if (rule->at_rule_name().equals_ignoring_ascii_case("supports"sv)) {
  2707. auto supports_tokens = TokenStream { rule->prelude() };
  2708. auto supports = parse_a_supports(supports_tokens);
  2709. if (!supports) {
  2710. if constexpr (CSS_PARSER_DEBUG) {
  2711. dbgln_if(CSS_PARSER_DEBUG, "CSSParser: @supports rule invalid; discarding.");
  2712. supports_tokens.dump_all_tokens();
  2713. }
  2714. return {};
  2715. }
  2716. if (!rule->block())
  2717. return {};
  2718. auto child_tokens = TokenStream { rule->block()->values() };
  2719. auto parser_rules = parse_a_list_of_rules(child_tokens);
  2720. JS::MarkedVector<CSSRule*> child_rules(m_context.realm().heap());
  2721. for (auto& raw_rule : parser_rules) {
  2722. if (auto* child_rule = convert_to_rule(raw_rule))
  2723. child_rules.append(child_rule);
  2724. }
  2725. auto rule_list = CSSRuleList::create(m_context.realm(), child_rules).release_value_but_fixme_should_propagate_errors();
  2726. return CSSSupportsRule::create(m_context.realm(), supports.release_nonnull(), rule_list).release_value_but_fixme_should_propagate_errors();
  2727. }
  2728. // FIXME: More at rules!
  2729. dbgln_if(CSS_PARSER_DEBUG, "Unrecognized CSS at-rule: @{}", rule->at_rule_name());
  2730. return {};
  2731. }
  2732. auto prelude_stream = TokenStream(rule->prelude());
  2733. auto selectors = parse_a_selector_list(prelude_stream, SelectorType::Standalone);
  2734. if (selectors.is_error()) {
  2735. if (selectors.error() != ParseError::IncludesIgnoredVendorPrefix) {
  2736. dbgln_if(CSS_PARSER_DEBUG, "CSSParser: style rule selectors invalid; discarding.");
  2737. if constexpr (CSS_PARSER_DEBUG) {
  2738. prelude_stream.dump_all_tokens();
  2739. }
  2740. }
  2741. return {};
  2742. }
  2743. if (selectors.value().is_empty()) {
  2744. dbgln_if(CSS_PARSER_DEBUG, "CSSParser: empty selector; discarding.");
  2745. return {};
  2746. }
  2747. if (!rule->block()->is_curly())
  2748. return {};
  2749. auto stream = TokenStream(rule->block()->values());
  2750. auto declarations_and_at_rules = parse_a_style_blocks_contents(stream);
  2751. auto* declaration = convert_to_style_declaration(declarations_and_at_rules);
  2752. if (!declaration) {
  2753. dbgln_if(CSS_PARSER_DEBUG, "CSSParser: style rule declaration invalid; discarding.");
  2754. return {};
  2755. }
  2756. return CSSStyleRule::create(m_context.realm(), move(selectors.value()), *declaration).release_value_but_fixme_should_propagate_errors();
  2757. }
  2758. auto Parser::extract_properties(Vector<DeclarationOrAtRule> const& declarations_and_at_rules) -> PropertiesAndCustomProperties
  2759. {
  2760. PropertiesAndCustomProperties result;
  2761. for (auto const& declaration_or_at_rule : declarations_and_at_rules) {
  2762. if (declaration_or_at_rule.is_at_rule()) {
  2763. dbgln_if(CSS_PARSER_DEBUG, "!!! CSS at-rule is not allowed here!");
  2764. continue;
  2765. }
  2766. auto const& declaration = declaration_or_at_rule.declaration();
  2767. if (auto maybe_property = convert_to_style_property(declaration); maybe_property.has_value()) {
  2768. auto property = maybe_property.release_value();
  2769. if (property.property_id == PropertyID::Custom) {
  2770. result.custom_properties.set(property.custom_name, property);
  2771. } else {
  2772. result.properties.append(move(property));
  2773. }
  2774. }
  2775. }
  2776. return result;
  2777. }
  2778. PropertyOwningCSSStyleDeclaration* Parser::convert_to_style_declaration(Vector<DeclarationOrAtRule> const& declarations_and_at_rules)
  2779. {
  2780. auto [properties, custom_properties] = extract_properties(declarations_and_at_rules);
  2781. return PropertyOwningCSSStyleDeclaration::create(m_context.realm(), move(properties), move(custom_properties)).release_value_but_fixme_should_propagate_errors();
  2782. }
  2783. Optional<StyleProperty> Parser::convert_to_style_property(Declaration const& declaration)
  2784. {
  2785. auto property_name = declaration.name();
  2786. auto property_id = property_id_from_string(property_name);
  2787. if (property_id == PropertyID::Invalid) {
  2788. if (property_name.starts_with("--"sv)) {
  2789. property_id = PropertyID::Custom;
  2790. } else if (has_ignored_vendor_prefix(property_name)) {
  2791. return {};
  2792. } else if (!property_name.starts_with('-')) {
  2793. dbgln_if(CSS_PARSER_DEBUG, "Unrecognized CSS property '{}'", property_name);
  2794. return {};
  2795. }
  2796. }
  2797. auto value_token_stream = TokenStream(declaration.values());
  2798. auto value = parse_css_value(property_id, value_token_stream);
  2799. if (value.is_error()) {
  2800. if (value.error() != ParseError::IncludesIgnoredVendorPrefix) {
  2801. dbgln_if(CSS_PARSER_DEBUG, "Unable to parse value for CSS property '{}'.", property_name);
  2802. if constexpr (CSS_PARSER_DEBUG) {
  2803. value_token_stream.dump_all_tokens();
  2804. }
  2805. }
  2806. return {};
  2807. }
  2808. if (property_id == PropertyID::Custom)
  2809. return StyleProperty { declaration.importance(), property_id, value.release_value(), declaration.name() };
  2810. return StyleProperty { declaration.importance(), property_id, value.release_value(), {} };
  2811. }
  2812. RefPtr<StyleValue> Parser::parse_builtin_value(ComponentValue const& component_value)
  2813. {
  2814. if (component_value.is(Token::Type::Ident)) {
  2815. auto ident = component_value.token().ident();
  2816. if (ident.equals_ignoring_ascii_case("inherit"sv))
  2817. return InheritStyleValue::the();
  2818. if (ident.equals_ignoring_ascii_case("initial"sv))
  2819. return InitialStyleValue::the();
  2820. if (ident.equals_ignoring_ascii_case("unset"sv))
  2821. return UnsetStyleValue::the();
  2822. // FIXME: Implement `revert` and `revert-layer` keywords, from Cascade4 and Cascade5 respectively
  2823. }
  2824. return {};
  2825. }
  2826. RefPtr<CalculatedStyleValue> Parser::parse_calculated_value(Vector<ComponentValue> const& component_values)
  2827. {
  2828. auto calculation_tree = parse_a_calculation(component_values).release_value_but_fixme_should_propagate_errors();
  2829. if (calculation_tree == nullptr) {
  2830. dbgln_if(CSS_PARSER_DEBUG, "Failed to parse calculation tree");
  2831. return nullptr;
  2832. } else {
  2833. if constexpr (CSS_PARSER_DEBUG) {
  2834. dbgln("Parsed calculation tree:");
  2835. StringBuilder builder;
  2836. calculation_tree->dump(builder, 0).release_value_but_fixme_should_propagate_errors();
  2837. dbgln(builder.string_view());
  2838. }
  2839. }
  2840. auto calc_type = calculation_tree->resolved_type();
  2841. if (!calc_type.has_value()) {
  2842. dbgln_if(CSS_PARSER_DEBUG, "calc() resolved as invalid!!!");
  2843. return nullptr;
  2844. }
  2845. [[maybe_unused]] auto to_string = [](CalculatedStyleValue::ResolvedType type) {
  2846. switch (type) {
  2847. case CalculatedStyleValue::ResolvedType::Angle:
  2848. return "Angle"sv;
  2849. case CalculatedStyleValue::ResolvedType::Frequency:
  2850. return "Frequency"sv;
  2851. case CalculatedStyleValue::ResolvedType::Integer:
  2852. return "Integer"sv;
  2853. case CalculatedStyleValue::ResolvedType::Length:
  2854. return "Length"sv;
  2855. case CalculatedStyleValue::ResolvedType::Number:
  2856. return "Number"sv;
  2857. case CalculatedStyleValue::ResolvedType::Percentage:
  2858. return "Percentage"sv;
  2859. case CalculatedStyleValue::ResolvedType::Time:
  2860. return "Time"sv;
  2861. }
  2862. VERIFY_NOT_REACHED();
  2863. };
  2864. dbgln_if(CSS_PARSER_DEBUG, "Deduced calc() resolved type as: {}", to_string(calc_type.value()));
  2865. return CalculatedStyleValue::create(calculation_tree.release_nonnull(), calc_type.release_value());
  2866. }
  2867. RefPtr<StyleValue> Parser::parse_dynamic_value(ComponentValue const& component_value)
  2868. {
  2869. if (component_value.is_function()) {
  2870. auto const& function = component_value.function();
  2871. if (function.name().equals_ignoring_ascii_case("calc"sv))
  2872. return parse_calculated_value(function.values());
  2873. if (function.name().equals_ignoring_ascii_case("var"sv)) {
  2874. // Declarations using `var()` should already be parsed as an UnresolvedStyleValue before this point.
  2875. VERIFY_NOT_REACHED();
  2876. }
  2877. }
  2878. return {};
  2879. }
  2880. Optional<Parser::Dimension> Parser::parse_dimension(ComponentValue const& component_value)
  2881. {
  2882. if (component_value.is(Token::Type::Dimension)) {
  2883. float numeric_value = component_value.token().dimension_value();
  2884. auto unit_string = component_value.token().dimension_unit();
  2885. if (auto length_type = Length::unit_from_name(unit_string); length_type.has_value())
  2886. return Length { numeric_value, length_type.release_value() };
  2887. if (auto angle_type = Angle::unit_from_name(unit_string); angle_type.has_value())
  2888. return Angle { numeric_value, angle_type.release_value() };
  2889. if (auto frequency_type = Frequency::unit_from_name(unit_string); frequency_type.has_value())
  2890. return Frequency { numeric_value, frequency_type.release_value() };
  2891. if (auto resolution_type = Resolution::unit_from_name(unit_string); resolution_type.has_value())
  2892. return Resolution { numeric_value, resolution_type.release_value() };
  2893. if (auto time_type = Time::unit_from_name(unit_string); time_type.has_value())
  2894. return Time { numeric_value, time_type.release_value() };
  2895. }
  2896. if (component_value.is(Token::Type::Percentage))
  2897. return Percentage { static_cast<float>(component_value.token().percentage()) };
  2898. if (component_value.is(Token::Type::Number)) {
  2899. float numeric_value = component_value.token().number_value();
  2900. if (numeric_value == 0)
  2901. return Length::make_px(0);
  2902. if (m_context.in_quirks_mode() && property_has_quirk(m_context.current_property_id(), Quirk::UnitlessLength)) {
  2903. // https://quirks.spec.whatwg.org/#quirky-length-value
  2904. // FIXME: Disallow quirk when inside a CSS sub-expression (like `calc()`)
  2905. // "The <quirky-length> value must not be supported in arguments to CSS expressions other than the rect()
  2906. // expression, and must not be supported in the supports() static method of the CSS interface."
  2907. return Length::make_px(numeric_value);
  2908. }
  2909. }
  2910. return {};
  2911. }
  2912. Optional<Length> Parser::parse_length(ComponentValue const& component_value)
  2913. {
  2914. auto dimension = parse_dimension(component_value);
  2915. if (!dimension.has_value())
  2916. return {};
  2917. if (dimension->is_length())
  2918. return dimension->length();
  2919. return {};
  2920. }
  2921. Optional<Ratio> Parser::parse_ratio(TokenStream<ComponentValue>& tokens)
  2922. {
  2923. auto transaction = tokens.begin_transaction();
  2924. tokens.skip_whitespace();
  2925. // `<ratio> = <number [0,∞]> [ / <number [0,∞]> ]?`
  2926. // FIXME: I think either part is allowed to be calc(), which makes everything complicated.
  2927. auto first_number = tokens.next_token();
  2928. if (!first_number.is(Token::Type::Number) || first_number.token().number_value() < 0)
  2929. return {};
  2930. {
  2931. auto two_value_transaction = tokens.begin_transaction();
  2932. tokens.skip_whitespace();
  2933. auto solidus = tokens.next_token();
  2934. tokens.skip_whitespace();
  2935. auto second_number = tokens.next_token();
  2936. if (solidus.is(Token::Type::Delim) && solidus.token().delim() == '/'
  2937. && second_number.is(Token::Type::Number) && second_number.token().number_value() > 0) {
  2938. // Two-value ratio
  2939. two_value_transaction.commit();
  2940. transaction.commit();
  2941. return Ratio { static_cast<float>(first_number.token().number_value()), static_cast<float>(second_number.token().number_value()) };
  2942. }
  2943. }
  2944. // Single-value ratio
  2945. transaction.commit();
  2946. return Ratio { static_cast<float>(first_number.token().number_value()) };
  2947. }
  2948. // https://www.w3.org/TR/css-syntax-3/#urange-syntax
  2949. Optional<UnicodeRange> Parser::parse_unicode_range(TokenStream<ComponentValue>& tokens)
  2950. {
  2951. auto transaction = tokens.begin_transaction();
  2952. tokens.skip_whitespace();
  2953. // <urange> =
  2954. // u '+' <ident-token> '?'* |
  2955. // u <dimension-token> '?'* |
  2956. // u <number-token> '?'* |
  2957. // u <number-token> <dimension-token> |
  2958. // u <number-token> <number-token> |
  2959. // u '+' '?'+
  2960. // (All with no whitespace in between tokens.)
  2961. // NOTE: Parsing this is different from usual. We take these steps:
  2962. // 1. Match the grammar above against the tokens, concatenating them into a string using their original representation.
  2963. // 2. Then, parse that string according to the spec algorithm.
  2964. // Step 2 is performed by calling the other parse_unicode_range() overload.
  2965. auto is_question_mark = [](ComponentValue const& component_value) {
  2966. return component_value.is(Token::Type::Delim) && component_value.token().delim() == '?';
  2967. };
  2968. auto is_ending_token = [](ComponentValue const& component_value) {
  2969. return component_value.is(Token::Type::EndOfFile)
  2970. || component_value.is(Token::Type::Comma)
  2971. || component_value.is(Token::Type::Semicolon)
  2972. || component_value.is(Token::Type::Whitespace);
  2973. };
  2974. auto create_unicode_range = [&](StringView text, auto& local_transaction) -> Optional<UnicodeRange> {
  2975. auto maybe_unicode_range = parse_unicode_range(text);
  2976. if (maybe_unicode_range.has_value()) {
  2977. local_transaction.commit();
  2978. transaction.commit();
  2979. }
  2980. return maybe_unicode_range;
  2981. };
  2982. // All options start with 'u'/'U'.
  2983. auto const& u = tokens.next_token();
  2984. if (!(u.is(Token::Type::Ident) && u.token().ident().equals_ignoring_ascii_case("u"sv))) {
  2985. dbgln_if(CSS_PARSER_DEBUG, "CSSParser: <urange> does not start with 'u'");
  2986. return {};
  2987. }
  2988. auto const& second_token = tokens.next_token();
  2989. // u '+' <ident-token> '?'* |
  2990. // u '+' '?'+
  2991. if (second_token.is(Token::Type::Delim) && second_token.token().delim() == '+') {
  2992. auto local_transaction = tokens.begin_transaction();
  2993. StringBuilder string_builder;
  2994. string_builder.append(second_token.token().representation());
  2995. auto const& third_token = tokens.next_token();
  2996. if (third_token.is(Token::Type::Ident) || is_question_mark(third_token)) {
  2997. string_builder.append(third_token.token().representation());
  2998. while (is_question_mark(tokens.peek_token()))
  2999. string_builder.append(tokens.next_token().token().representation());
  3000. if (is_ending_token(tokens.peek_token()))
  3001. return create_unicode_range(string_builder.string_view(), local_transaction);
  3002. }
  3003. }
  3004. // u <dimension-token> '?'*
  3005. if (second_token.is(Token::Type::Dimension)) {
  3006. auto local_transaction = tokens.begin_transaction();
  3007. StringBuilder string_builder;
  3008. string_builder.append(second_token.token().representation());
  3009. while (is_question_mark(tokens.peek_token()))
  3010. string_builder.append(tokens.next_token().token().representation());
  3011. if (is_ending_token(tokens.peek_token()))
  3012. return create_unicode_range(string_builder.string_view(), local_transaction);
  3013. }
  3014. // u <number-token> '?'* |
  3015. // u <number-token> <dimension-token> |
  3016. // u <number-token> <number-token>
  3017. if (second_token.is(Token::Type::Number)) {
  3018. auto local_transaction = tokens.begin_transaction();
  3019. StringBuilder string_builder;
  3020. string_builder.append(second_token.token().representation());
  3021. if (is_ending_token(tokens.peek_token()))
  3022. return create_unicode_range(string_builder.string_view(), local_transaction);
  3023. auto const& third_token = tokens.next_token();
  3024. if (is_question_mark(third_token)) {
  3025. string_builder.append(third_token.token().representation());
  3026. while (is_question_mark(tokens.peek_token()))
  3027. string_builder.append(tokens.next_token().token().representation());
  3028. if (is_ending_token(tokens.peek_token()))
  3029. return create_unicode_range(string_builder.string_view(), local_transaction);
  3030. } else if (third_token.is(Token::Type::Dimension)) {
  3031. string_builder.append(third_token.token().representation());
  3032. if (is_ending_token(tokens.peek_token()))
  3033. return create_unicode_range(string_builder.string_view(), local_transaction);
  3034. } else if (third_token.is(Token::Type::Number)) {
  3035. string_builder.append(third_token.token().representation());
  3036. if (is_ending_token(tokens.peek_token()))
  3037. return create_unicode_range(string_builder.string_view(), local_transaction);
  3038. }
  3039. }
  3040. if constexpr (CSS_PARSER_DEBUG) {
  3041. dbgln("CSSParser: Tokens did not match <urange> grammar.");
  3042. tokens.dump_all_tokens();
  3043. }
  3044. return {};
  3045. }
  3046. Optional<UnicodeRange> Parser::parse_unicode_range(StringView text)
  3047. {
  3048. auto make_valid_unicode_range = [&](u32 start_value, u32 end_value) -> Optional<UnicodeRange> {
  3049. // https://www.w3.org/TR/css-syntax-3/#maximum-allowed-code-point
  3050. constexpr u32 maximum_allowed_code_point = 0x10FFFF;
  3051. // To determine what codepoints the <urange> represents:
  3052. // 1. If end value is greater than the maximum allowed code point,
  3053. // the <urange> is invalid and a syntax error.
  3054. if (end_value > maximum_allowed_code_point) {
  3055. dbgln_if(CSS_PARSER_DEBUG, "CSSParser: Invalid <urange>: end_value ({}) > maximum ({})", end_value, maximum_allowed_code_point);
  3056. return {};
  3057. }
  3058. // 2. If start value is greater than end value, the <urange> is invalid and a syntax error.
  3059. if (start_value > end_value) {
  3060. dbgln_if(CSS_PARSER_DEBUG, "CSSParser: Invalid <urange>: start_value ({}) > end_value ({})", start_value, end_value);
  3061. return {};
  3062. }
  3063. // 3. Otherwise, the <urange> represents a contiguous range of codepoints from start value to end value, inclusive.
  3064. return UnicodeRange { start_value, end_value };
  3065. };
  3066. // 1. Skipping the first u token, concatenate the representations of all the tokens in the production together.
  3067. // Let this be text.
  3068. // NOTE: The concatenation is already done by the caller.
  3069. GenericLexer lexer { text };
  3070. // 2. If the first character of text is U+002B PLUS SIGN, consume it.
  3071. // Otherwise, this is an invalid <urange>, and this algorithm must exit.
  3072. if (lexer.next_is('+')) {
  3073. lexer.consume();
  3074. } else {
  3075. dbgln_if(CSS_PARSER_DEBUG, "CSSParser: Second character of <urange> was not '+'; got: '{}'", lexer.consume());
  3076. return {};
  3077. }
  3078. // 3. Consume as many hex digits from text as possible.
  3079. // then consume as many U+003F QUESTION MARK (?) code points as possible.
  3080. auto hex_digits = lexer.consume_while(is_ascii_hex_digit);
  3081. auto question_marks = lexer.consume_while([](auto it) { return it == '?'; });
  3082. // If zero code points were consumed, or more than six code points were consumed,
  3083. // this is an invalid <urange>, and this algorithm must exit.
  3084. size_t consumed_code_points = hex_digits.length() + question_marks.length();
  3085. if (consumed_code_points == 0 || consumed_code_points > 6) {
  3086. dbgln_if(CSS_PARSER_DEBUG, "CSSParser: <urange> start value had {} digits/?s, expected between 1 and 6.", consumed_code_points);
  3087. return {};
  3088. }
  3089. StringView start_value_code_points { hex_digits.characters_without_null_termination(), consumed_code_points };
  3090. // If any U+003F QUESTION MARK (?) code points were consumed, then:
  3091. if (question_marks.length() > 0) {
  3092. // 1. If there are any code points left in text, this is an invalid <urange>,
  3093. // and this algorithm must exit.
  3094. if (lexer.tell_remaining() != 0) {
  3095. dbgln_if(CSS_PARSER_DEBUG, "CSSParser: <urange> invalid; had {} code points left over.", lexer.tell_remaining());
  3096. return {};
  3097. }
  3098. // 2. Interpret the consumed code points as a hexadecimal number,
  3099. // with the U+003F QUESTION MARK (?) code points replaced by U+0030 DIGIT ZERO (0) code points.
  3100. // This is the start value.
  3101. auto start_value_string = start_value_code_points.replace("?"sv, "0"sv, ReplaceMode::All);
  3102. auto maybe_start_value = AK::StringUtils::convert_to_uint_from_hex<u32>(start_value_string);
  3103. if (!maybe_start_value.has_value()) {
  3104. dbgln_if(CSS_PARSER_DEBUG, "CSSParser: <urange> ?-converted start value did not parse as hex number.");
  3105. return {};
  3106. }
  3107. u32 start_value = maybe_start_value.release_value();
  3108. // 3. Interpret the consumed code points as a hexadecimal number again,
  3109. // with the U+003F QUESTION MARK (?) code points replaced by U+0046 LATIN CAPITAL LETTER F (F) code points.
  3110. // This is the end value.
  3111. auto end_value_string = start_value_code_points.replace("?"sv, "F"sv, ReplaceMode::All);
  3112. auto maybe_end_value = AK::StringUtils::convert_to_uint_from_hex<u32>(end_value_string);
  3113. if (!maybe_end_value.has_value()) {
  3114. dbgln_if(CSS_PARSER_DEBUG, "CSSParser: <urange> ?-converted end value did not parse as hex number.");
  3115. return {};
  3116. }
  3117. u32 end_value = maybe_end_value.release_value();
  3118. // 4. Exit this algorithm.
  3119. return make_valid_unicode_range(start_value, end_value);
  3120. }
  3121. // Otherwise, interpret the consumed code points as a hexadecimal number. This is the start value.
  3122. auto maybe_start_value = AK::StringUtils::convert_to_uint_from_hex<u32>(start_value_code_points);
  3123. if (!maybe_start_value.has_value()) {
  3124. dbgln_if(CSS_PARSER_DEBUG, "CSSParser: <urange> start value did not parse as hex number.");
  3125. return {};
  3126. }
  3127. u32 start_value = maybe_start_value.release_value();
  3128. // 4. If there are no code points left in text, The end value is the same as the start value.
  3129. // Exit this algorithm.
  3130. if (lexer.tell_remaining() == 0)
  3131. return make_valid_unicode_range(start_value, start_value);
  3132. // 5. If the next code point in text is U+002D HYPHEN-MINUS (-), consume it.
  3133. if (lexer.next_is('-')) {
  3134. lexer.consume();
  3135. }
  3136. // Otherwise, this is an invalid <urange>, and this algorithm must exit.
  3137. else {
  3138. dbgln_if(CSS_PARSER_DEBUG, "CSSParser: <urange> start and end values not separated by '-'.");
  3139. return {};
  3140. }
  3141. // 6. Consume as many hex digits as possible from text.
  3142. auto end_hex_digits = lexer.consume_while(is_ascii_hex_digit);
  3143. // If zero hex digits were consumed, or more than 6 hex digits were consumed,
  3144. // this is an invalid <urange>, and this algorithm must exit.
  3145. if (end_hex_digits.length() == 0 || end_hex_digits.length() > 6) {
  3146. dbgln_if(CSS_PARSER_DEBUG, "CSSParser: <urange> end value had {} digits, expected between 1 and 6.", end_hex_digits.length());
  3147. return {};
  3148. }
  3149. // If there are any code points left in text, this is an invalid <urange>, and this algorithm must exit.
  3150. if (lexer.tell_remaining() != 0) {
  3151. dbgln_if(CSS_PARSER_DEBUG, "CSSParser: <urange> invalid; had {} code points left over.", lexer.tell_remaining());
  3152. return {};
  3153. }
  3154. // 7. Interpret the consumed code points as a hexadecimal number. This is the end value.
  3155. auto maybe_end_value = AK::StringUtils::convert_to_uint_from_hex<u32>(end_hex_digits);
  3156. if (!maybe_end_value.has_value()) {
  3157. dbgln_if(CSS_PARSER_DEBUG, "CSSParser: <urange> end value did not parse as hex number.");
  3158. return {};
  3159. }
  3160. u32 end_value = maybe_end_value.release_value();
  3161. return make_valid_unicode_range(start_value, end_value);
  3162. }
  3163. RefPtr<StyleValue> Parser::parse_dimension_value(ComponentValue const& component_value)
  3164. {
  3165. // Numbers with no units can be lengths, in two situations:
  3166. // 1) We're in quirks mode, and it's an integer.
  3167. // 2) It's a 0.
  3168. // We handle case 1 here. Case 2 is handled by NumericStyleValue pretending to be a LengthStyleValue if it is 0.
  3169. if (component_value.is(Token::Type::Number) && !(m_context.in_quirks_mode() && property_has_quirk(m_context.current_property_id(), Quirk::UnitlessLength)))
  3170. return {};
  3171. auto dimension = parse_dimension(component_value);
  3172. if (!dimension.has_value())
  3173. return {};
  3174. if (dimension->is_angle())
  3175. return AngleStyleValue::create(dimension->angle());
  3176. if (dimension->is_frequency())
  3177. return FrequencyStyleValue::create(dimension->frequency());
  3178. if (dimension->is_length())
  3179. return LengthStyleValue::create(dimension->length());
  3180. if (dimension->is_percentage())
  3181. return PercentageStyleValue::create(dimension->percentage());
  3182. if (dimension->is_resolution())
  3183. return ResolutionStyleValue::create(dimension->resolution());
  3184. if (dimension->is_time())
  3185. return TimeStyleValue::create(dimension->time());
  3186. VERIFY_NOT_REACHED();
  3187. }
  3188. RefPtr<StyleValue> Parser::parse_numeric_value(ComponentValue const& component_value)
  3189. {
  3190. if (component_value.is(Token::Type::Number)) {
  3191. auto const& number = component_value.token();
  3192. if (number.number().is_integer())
  3193. return NumericStyleValue::create_integer(number.to_integer());
  3194. return NumericStyleValue::create_float(number.number_value());
  3195. }
  3196. return {};
  3197. }
  3198. RefPtr<StyleValue> Parser::parse_identifier_value(ComponentValue const& component_value)
  3199. {
  3200. if (component_value.is(Token::Type::Ident)) {
  3201. auto value_id = value_id_from_string(component_value.token().ident());
  3202. if (value_id != ValueID::Invalid)
  3203. return IdentifierStyleValue::create(value_id);
  3204. }
  3205. return {};
  3206. }
  3207. Optional<Color> Parser::parse_rgb_or_hsl_color(StringView function_name, Vector<ComponentValue> const& component_values)
  3208. {
  3209. Token params[4];
  3210. bool legacy_syntax = false;
  3211. auto tokens = TokenStream { component_values };
  3212. tokens.skip_whitespace();
  3213. auto const& component1 = tokens.next_token();
  3214. if (!component1.is(Token::Type::Number)
  3215. && !component1.is(Token::Type::Percentage)
  3216. && !component1.is(Token::Type::Dimension))
  3217. return {};
  3218. params[0] = component1.token();
  3219. tokens.skip_whitespace();
  3220. if (tokens.peek_token().is(Token::Type::Comma)) {
  3221. legacy_syntax = true;
  3222. tokens.next_token();
  3223. }
  3224. tokens.skip_whitespace();
  3225. auto const& component2 = tokens.next_token();
  3226. if (!component2.is(Token::Type::Number) && !component2.is(Token::Type::Percentage))
  3227. return {};
  3228. params[1] = component2.token();
  3229. tokens.skip_whitespace();
  3230. if (legacy_syntax && !tokens.next_token().is(Token::Type::Comma))
  3231. return {};
  3232. tokens.skip_whitespace();
  3233. auto const& component3 = tokens.next_token();
  3234. if (!component3.is(Token::Type::Number) && !component3.is(Token::Type::Percentage))
  3235. return {};
  3236. params[2] = component3.token();
  3237. tokens.skip_whitespace();
  3238. auto const& alpha_separator = tokens.peek_token();
  3239. bool has_comma = alpha_separator.is(Token::Type::Comma);
  3240. bool has_slash = alpha_separator.is(Token::Type::Delim) && alpha_separator.token().delim() == '/';
  3241. if (legacy_syntax ? has_comma : has_slash) {
  3242. tokens.next_token();
  3243. tokens.skip_whitespace();
  3244. auto const& component4 = tokens.next_token();
  3245. if (!component4.is(Token::Type::Number) && !component4.is(Token::Type::Percentage))
  3246. return {};
  3247. params[3] = component4.token();
  3248. }
  3249. tokens.skip_whitespace();
  3250. if (tokens.has_next_token())
  3251. return {};
  3252. if (function_name.equals_ignoring_ascii_case("rgb"sv)
  3253. || function_name.equals_ignoring_ascii_case("rgba"sv)) {
  3254. // https://www.w3.org/TR/css-color-4/#rgb-functions
  3255. u8 a_val = 255;
  3256. if (params[3].is(Token::Type::Number))
  3257. a_val = clamp(lroundf(params[3].number_value() * 255.0f), 0, 255);
  3258. else if (params[3].is(Token::Type::Percentage))
  3259. a_val = clamp(lroundf(params[3].percentage() * 2.55f), 0, 255);
  3260. if (params[0].is(Token::Type::Number)
  3261. && params[1].is(Token::Type::Number)
  3262. && params[2].is(Token::Type::Number)) {
  3263. u8 r_val = clamp(llroundf(params[0].number_value()), 0, 255);
  3264. u8 g_val = clamp(llroundf(params[1].number_value()), 0, 255);
  3265. u8 b_val = clamp(llroundf(params[2].number_value()), 0, 255);
  3266. return Color(r_val, g_val, b_val, a_val);
  3267. }
  3268. if (params[0].is(Token::Type::Percentage)
  3269. && params[1].is(Token::Type::Percentage)
  3270. && params[2].is(Token::Type::Percentage)) {
  3271. u8 r_val = lroundf(clamp(params[0].percentage() * 2.55f, 0, 255));
  3272. u8 g_val = lroundf(clamp(params[1].percentage() * 2.55f, 0, 255));
  3273. u8 b_val = lroundf(clamp(params[2].percentage() * 2.55f, 0, 255));
  3274. return Color(r_val, g_val, b_val, a_val);
  3275. }
  3276. } else if (function_name.equals_ignoring_ascii_case("hsl"sv)
  3277. || function_name.equals_ignoring_ascii_case("hsla"sv)) {
  3278. // https://www.w3.org/TR/css-color-4/#the-hsl-notation
  3279. float a_val = 1.0f;
  3280. if (params[3].is(Token::Type::Number))
  3281. a_val = params[3].number_value();
  3282. else if (params[3].is(Token::Type::Percentage))
  3283. a_val = params[3].percentage() / 100.0f;
  3284. if (params[0].is(Token::Type::Dimension)
  3285. && params[1].is(Token::Type::Percentage)
  3286. && params[2].is(Token::Type::Percentage)) {
  3287. float numeric_value = params[0].dimension_value();
  3288. auto unit_string = params[0].dimension_unit();
  3289. auto angle_type = Angle::unit_from_name(unit_string);
  3290. if (!angle_type.has_value())
  3291. return {};
  3292. auto angle = Angle { numeric_value, angle_type.release_value() };
  3293. float h_val = fmodf(angle.to_degrees(), 360.0f);
  3294. float s_val = params[1].percentage() / 100.0f;
  3295. float l_val = params[2].percentage() / 100.0f;
  3296. return Color::from_hsla(h_val, s_val, l_val, a_val);
  3297. }
  3298. if (params[0].is(Token::Type::Number)
  3299. && params[1].is(Token::Type::Percentage)
  3300. && params[2].is(Token::Type::Percentage)) {
  3301. float h_val = fmodf(params[0].number_value(), 360.0f);
  3302. float s_val = params[1].percentage() / 100.0f;
  3303. float l_val = params[2].percentage() / 100.0f;
  3304. return Color::from_hsla(h_val, s_val, l_val, a_val);
  3305. }
  3306. }
  3307. return {};
  3308. }
  3309. // https://www.w3.org/TR/CSS2/visufx.html#value-def-shape
  3310. RefPtr<StyleValue> Parser::parse_rect_value(ComponentValue const& component_value)
  3311. {
  3312. if (!component_value.is_function())
  3313. return {};
  3314. auto const& function = component_value.function();
  3315. if (!function.name().equals_ignoring_ascii_case("rect"sv))
  3316. return {};
  3317. Vector<Length, 4> params;
  3318. auto tokens = TokenStream { function.values() };
  3319. enum class CommaRequirement {
  3320. Unknown,
  3321. RequiresCommas,
  3322. RequiresNoCommas
  3323. };
  3324. enum class Side {
  3325. Top = 0,
  3326. Right = 1,
  3327. Bottom = 2,
  3328. Left = 3
  3329. };
  3330. auto comma_requirement = CommaRequirement::Unknown;
  3331. // In CSS 2.1, the only valid <shape> value is: rect(<top>, <right>, <bottom>, <left>) where
  3332. // <top> and <bottom> specify offsets from the top border edge of the box, and <right>, and
  3333. // <left> specify offsets from the left border edge of the box.
  3334. for (size_t side = 0; side < 4; side++) {
  3335. tokens.skip_whitespace();
  3336. // <top>, <right>, <bottom>, and <left> may either have a <length> value or 'auto'.
  3337. // Negative lengths are permitted.
  3338. auto current_token = tokens.next_token().token();
  3339. if (current_token.is(Token::Type::Ident) && current_token.ident().equals_ignoring_ascii_case("auto"sv)) {
  3340. params.append(Length::make_auto());
  3341. } else {
  3342. auto maybe_length = parse_length(current_token);
  3343. if (!maybe_length.has_value())
  3344. return {};
  3345. params.append(maybe_length.value());
  3346. }
  3347. tokens.skip_whitespace();
  3348. // The last side, should be no more tokens following it.
  3349. if (static_cast<Side>(side) == Side::Left) {
  3350. if (tokens.has_next_token())
  3351. return {};
  3352. break;
  3353. }
  3354. bool next_is_comma = tokens.peek_token().is(Token::Type::Comma);
  3355. // Authors should separate offset values with commas. User agents must support separation
  3356. // with commas, but may also support separation without commas (but not a combination),
  3357. // because a previous revision of this specification was ambiguous in this respect.
  3358. if (comma_requirement == CommaRequirement::Unknown)
  3359. comma_requirement = next_is_comma ? CommaRequirement::RequiresCommas : CommaRequirement::RequiresNoCommas;
  3360. if (comma_requirement == CommaRequirement::RequiresCommas) {
  3361. if (next_is_comma)
  3362. tokens.next_token();
  3363. else
  3364. return {};
  3365. } else if (comma_requirement == CommaRequirement::RequiresNoCommas) {
  3366. if (next_is_comma)
  3367. return {};
  3368. } else {
  3369. VERIFY_NOT_REACHED();
  3370. }
  3371. }
  3372. return RectStyleValue::create(EdgeRect { params[0], params[1], params[2], params[3] });
  3373. }
  3374. Optional<Color> Parser::parse_color(ComponentValue const& component_value)
  3375. {
  3376. // https://www.w3.org/TR/css-color-4/
  3377. if (component_value.is(Token::Type::Ident)) {
  3378. auto ident = component_value.token().ident();
  3379. auto color = Color::from_string(ident);
  3380. if (color.has_value())
  3381. return color;
  3382. } else if (component_value.is(Token::Type::Hash)) {
  3383. auto color = Color::from_string(DeprecatedString::formatted("#{}", component_value.token().hash_value()));
  3384. if (color.has_value())
  3385. return color;
  3386. return {};
  3387. } else if (component_value.is_function()) {
  3388. auto const& function = component_value.function();
  3389. auto const& values = function.values();
  3390. return parse_rgb_or_hsl_color(function.name(), values);
  3391. }
  3392. // https://quirks.spec.whatwg.org/#the-hashless-hex-color-quirk
  3393. if (m_context.in_quirks_mode() && property_has_quirk(m_context.current_property_id(), Quirk::HashlessHexColor)) {
  3394. // The value of a quirky color is obtained from the possible component values using the following algorithm,
  3395. // aborting on the first step that returns a value:
  3396. // 1. Let cv be the component value.
  3397. auto const& cv = component_value;
  3398. DeprecatedString serialization;
  3399. // 2. If cv is a <number-token> or a <dimension-token>, follow these substeps:
  3400. if (cv.is(Token::Type::Number) || cv.is(Token::Type::Dimension)) {
  3401. // 1. If cv’s type flag is not "integer", return an error.
  3402. // This means that values that happen to use scientific notation, e.g., 5e5e5e, will fail to parse.
  3403. if (!cv.token().number().is_integer())
  3404. return {};
  3405. // 2. If cv’s value is less than zero, return an error.
  3406. auto value = cv.is(Token::Type::Number) ? cv.token().to_integer() : cv.token().dimension_value_int();
  3407. if (value < 0)
  3408. return {};
  3409. // 3. Let serialization be the serialization of cv’s value, as a base-ten integer using digits 0-9 (U+0030 to U+0039) in the shortest form possible.
  3410. StringBuilder serialization_builder;
  3411. serialization_builder.appendff("{}", value);
  3412. // 4. If cv is a <dimension-token>, append the unit to serialization.
  3413. if (cv.is(Token::Type::Dimension))
  3414. serialization_builder.append(cv.token().dimension_unit());
  3415. // 5. If serialization consists of fewer than six characters, prepend zeros (U+0030) so that it becomes six characters.
  3416. serialization = serialization_builder.to_deprecated_string();
  3417. if (serialization_builder.length() < 6) {
  3418. StringBuilder builder;
  3419. for (size_t i = 0; i < (6 - serialization_builder.length()); i++)
  3420. builder.append('0');
  3421. builder.append(serialization_builder.string_view());
  3422. serialization = builder.to_deprecated_string();
  3423. }
  3424. }
  3425. // 3. Otherwise, cv is an <ident-token>; let serialization be cv’s value.
  3426. else {
  3427. if (!cv.is(Token::Type::Ident))
  3428. return {};
  3429. serialization = cv.token().ident();
  3430. }
  3431. // 4. If serialization does not consist of three or six characters, return an error.
  3432. if (serialization.length() != 3 && serialization.length() != 6)
  3433. return {};
  3434. // 5. If serialization contains any characters not in the range [0-9A-Fa-f] (U+0030 to U+0039, U+0041 to U+0046, U+0061 to U+0066), return an error.
  3435. for (auto c : serialization) {
  3436. if (!((c >= '0' && c <= '9') || (c >= 'A' && c <= 'F') || (c >= 'a' && c <= 'f')))
  3437. return {};
  3438. }
  3439. // 6. Return the concatenation of "#" (U+0023) and serialization.
  3440. DeprecatedString concatenation = DeprecatedString::formatted("#{}", serialization);
  3441. return Color::from_string(concatenation);
  3442. }
  3443. return {};
  3444. }
  3445. RefPtr<StyleValue> Parser::parse_color_value(ComponentValue const& component_value)
  3446. {
  3447. auto color = parse_color(component_value);
  3448. if (color.has_value())
  3449. return ColorStyleValue::create(color.value());
  3450. return {};
  3451. }
  3452. RefPtr<StyleValue> Parser::parse_string_value(ComponentValue const& component_value)
  3453. {
  3454. if (component_value.is(Token::Type::String))
  3455. return StringStyleValue::create(String::from_utf8(component_value.token().string()).release_value_but_fixme_should_propagate_errors());
  3456. return {};
  3457. }
  3458. RefPtr<StyleValue> Parser::parse_image_value(ComponentValue const& component_value)
  3459. {
  3460. auto url = parse_url_function(component_value, AllowedDataUrlType::Image);
  3461. if (url.has_value())
  3462. return ImageStyleValue::create(url.value());
  3463. auto linear_gradient = parse_linear_gradient_function(component_value);
  3464. if (linear_gradient)
  3465. return linear_gradient;
  3466. auto conic_gradient = parse_conic_gradient_function(component_value);
  3467. if (conic_gradient)
  3468. return conic_gradient;
  3469. return parse_radial_gradient_function(component_value);
  3470. }
  3471. template<typename ParseFunction>
  3472. RefPtr<StyleValue> Parser::parse_comma_separated_value_list(Vector<ComponentValue> const& component_values, ParseFunction parse_one_value)
  3473. {
  3474. auto tokens = TokenStream { component_values };
  3475. auto first = parse_one_value(tokens);
  3476. if (!first || !tokens.has_next_token())
  3477. return first;
  3478. StyleValueVector values;
  3479. values.append(first.release_nonnull());
  3480. while (tokens.has_next_token()) {
  3481. if (!tokens.next_token().is(Token::Type::Comma))
  3482. return {};
  3483. if (auto maybe_value = parse_one_value(tokens)) {
  3484. values.append(maybe_value.release_nonnull());
  3485. continue;
  3486. }
  3487. return {};
  3488. }
  3489. return StyleValueList::create(move(values), StyleValueList::Separator::Comma);
  3490. }
  3491. RefPtr<StyleValue> Parser::parse_simple_comma_separated_value_list(Vector<ComponentValue> const& component_values)
  3492. {
  3493. return parse_comma_separated_value_list(component_values, [=, this](auto& tokens) -> RefPtr<StyleValue> {
  3494. auto& token = tokens.next_token();
  3495. if (auto value = parse_css_value(token); value && property_accepts_value(m_context.current_property_id(), *value))
  3496. return value;
  3497. tokens.reconsume_current_input_token();
  3498. return nullptr;
  3499. });
  3500. }
  3501. RefPtr<StyleValue> Parser::parse_background_value(Vector<ComponentValue> const& component_values)
  3502. {
  3503. StyleValueVector background_images;
  3504. StyleValueVector background_positions;
  3505. StyleValueVector background_sizes;
  3506. StyleValueVector background_repeats;
  3507. StyleValueVector background_attachments;
  3508. StyleValueVector background_clips;
  3509. StyleValueVector background_origins;
  3510. RefPtr<StyleValue> background_color;
  3511. // Per-layer values
  3512. RefPtr<StyleValue> background_image;
  3513. RefPtr<StyleValue> background_position;
  3514. RefPtr<StyleValue> background_size;
  3515. RefPtr<StyleValue> background_repeat;
  3516. RefPtr<StyleValue> background_attachment;
  3517. RefPtr<StyleValue> background_clip;
  3518. RefPtr<StyleValue> background_origin;
  3519. bool has_multiple_layers = false;
  3520. auto background_layer_is_valid = [&](bool allow_background_color) -> bool {
  3521. if (allow_background_color) {
  3522. if (background_color)
  3523. return true;
  3524. } else {
  3525. if (background_color)
  3526. return false;
  3527. }
  3528. return background_image || background_position || background_size || background_repeat || background_attachment || background_clip || background_origin;
  3529. };
  3530. auto complete_background_layer = [&]() {
  3531. background_images.append(background_image ? background_image.release_nonnull() : property_initial_value(m_context.realm(), PropertyID::BackgroundImage));
  3532. background_positions.append(background_position ? background_position.release_nonnull() : property_initial_value(m_context.realm(), PropertyID::BackgroundPosition));
  3533. background_sizes.append(background_size ? background_size.release_nonnull() : property_initial_value(m_context.realm(), PropertyID::BackgroundSize));
  3534. background_repeats.append(background_repeat ? background_repeat.release_nonnull() : property_initial_value(m_context.realm(), PropertyID::BackgroundRepeat));
  3535. background_attachments.append(background_attachment ? background_attachment.release_nonnull() : property_initial_value(m_context.realm(), PropertyID::BackgroundAttachment));
  3536. if (!background_origin && !background_clip) {
  3537. background_origin = property_initial_value(m_context.realm(), PropertyID::BackgroundOrigin);
  3538. background_clip = property_initial_value(m_context.realm(), PropertyID::BackgroundClip);
  3539. } else if (!background_clip) {
  3540. background_clip = background_origin;
  3541. }
  3542. background_origins.append(background_origin.release_nonnull());
  3543. background_clips.append(background_clip.release_nonnull());
  3544. background_image = nullptr;
  3545. background_position = nullptr;
  3546. background_size = nullptr;
  3547. background_repeat = nullptr;
  3548. background_attachment = nullptr;
  3549. background_clip = nullptr;
  3550. background_origin = nullptr;
  3551. };
  3552. auto tokens = TokenStream { component_values };
  3553. while (tokens.has_next_token()) {
  3554. auto const& part = tokens.next_token();
  3555. if (part.is(Token::Type::Comma)) {
  3556. has_multiple_layers = true;
  3557. if (!background_layer_is_valid(false))
  3558. return nullptr;
  3559. complete_background_layer();
  3560. continue;
  3561. }
  3562. auto value = parse_css_value(part);
  3563. if (!value)
  3564. return nullptr;
  3565. if (property_accepts_value(PropertyID::BackgroundAttachment, *value)) {
  3566. if (background_attachment)
  3567. return nullptr;
  3568. background_attachment = value.release_nonnull();
  3569. continue;
  3570. }
  3571. if (property_accepts_value(PropertyID::BackgroundColor, *value)) {
  3572. if (background_color)
  3573. return nullptr;
  3574. background_color = value.release_nonnull();
  3575. continue;
  3576. }
  3577. if (property_accepts_value(PropertyID::BackgroundImage, *value)) {
  3578. if (background_image)
  3579. return nullptr;
  3580. background_image = value.release_nonnull();
  3581. continue;
  3582. }
  3583. if (property_accepts_value(PropertyID::BackgroundOrigin, *value)) {
  3584. // background-origin and background-clip accept the same values. From the spec:
  3585. // "If one <box> value is present then it sets both background-origin and background-clip to that value.
  3586. // If two values are present, then the first sets background-origin and the second background-clip."
  3587. // - https://www.w3.org/TR/css-backgrounds-3/#background
  3588. // So, we put the first one in background-origin, then if we get a second, we put it in background-clip.
  3589. // If we only get one, we copy the value before creating the BackgroundStyleValue.
  3590. if (!background_origin) {
  3591. background_origin = value.release_nonnull();
  3592. continue;
  3593. }
  3594. if (!background_clip) {
  3595. background_clip = value.release_nonnull();
  3596. continue;
  3597. }
  3598. return nullptr;
  3599. }
  3600. if (property_accepts_value(PropertyID::BackgroundPosition, *value)) {
  3601. if (background_position)
  3602. return nullptr;
  3603. tokens.reconsume_current_input_token();
  3604. if (auto maybe_background_position = parse_single_background_position_value(tokens)) {
  3605. background_position = maybe_background_position.release_nonnull();
  3606. // Attempt to parse `/ <background-size>`
  3607. auto transaction = tokens.begin_transaction();
  3608. auto& maybe_slash = tokens.next_token();
  3609. if (maybe_slash.is(Token::Type::Delim) && maybe_slash.token().delim() == '/') {
  3610. if (auto maybe_background_size = parse_single_background_size_value(tokens)) {
  3611. transaction.commit();
  3612. background_size = maybe_background_size.release_nonnull();
  3613. continue;
  3614. }
  3615. return nullptr;
  3616. }
  3617. continue;
  3618. }
  3619. return nullptr;
  3620. }
  3621. if (property_accepts_value(PropertyID::BackgroundRepeat, *value)) {
  3622. if (background_repeat)
  3623. return nullptr;
  3624. tokens.reconsume_current_input_token();
  3625. if (auto maybe_repeat = parse_single_background_repeat_value(tokens)) {
  3626. background_repeat = maybe_repeat.release_nonnull();
  3627. continue;
  3628. }
  3629. return nullptr;
  3630. }
  3631. return nullptr;
  3632. }
  3633. if (!background_layer_is_valid(true))
  3634. return nullptr;
  3635. // We only need to create StyleValueLists if there are multiple layers.
  3636. // Otherwise, we can pass the single StyleValues directly.
  3637. if (has_multiple_layers) {
  3638. complete_background_layer();
  3639. if (!background_color)
  3640. background_color = property_initial_value(m_context.realm(), PropertyID::BackgroundColor);
  3641. return BackgroundStyleValue::create(
  3642. background_color.release_nonnull(),
  3643. StyleValueList::create(move(background_images), StyleValueList::Separator::Comma),
  3644. StyleValueList::create(move(background_positions), StyleValueList::Separator::Comma),
  3645. StyleValueList::create(move(background_sizes), StyleValueList::Separator::Comma),
  3646. StyleValueList::create(move(background_repeats), StyleValueList::Separator::Comma),
  3647. StyleValueList::create(move(background_attachments), StyleValueList::Separator::Comma),
  3648. StyleValueList::create(move(background_origins), StyleValueList::Separator::Comma),
  3649. StyleValueList::create(move(background_clips), StyleValueList::Separator::Comma));
  3650. }
  3651. if (!background_color)
  3652. background_color = property_initial_value(m_context.realm(), PropertyID::BackgroundColor);
  3653. if (!background_image)
  3654. background_image = property_initial_value(m_context.realm(), PropertyID::BackgroundImage);
  3655. if (!background_position)
  3656. background_position = property_initial_value(m_context.realm(), PropertyID::BackgroundPosition);
  3657. if (!background_size)
  3658. background_size = property_initial_value(m_context.realm(), PropertyID::BackgroundSize);
  3659. if (!background_repeat)
  3660. background_repeat = property_initial_value(m_context.realm(), PropertyID::BackgroundRepeat);
  3661. if (!background_attachment)
  3662. background_attachment = property_initial_value(m_context.realm(), PropertyID::BackgroundAttachment);
  3663. if (!background_origin && !background_clip) {
  3664. background_origin = property_initial_value(m_context.realm(), PropertyID::BackgroundOrigin);
  3665. background_clip = property_initial_value(m_context.realm(), PropertyID::BackgroundClip);
  3666. } else if (!background_clip) {
  3667. background_clip = background_origin;
  3668. }
  3669. return BackgroundStyleValue::create(
  3670. background_color.release_nonnull(),
  3671. background_image.release_nonnull(),
  3672. background_position.release_nonnull(),
  3673. background_size.release_nonnull(),
  3674. background_repeat.release_nonnull(),
  3675. background_attachment.release_nonnull(),
  3676. background_origin.release_nonnull(),
  3677. background_clip.release_nonnull());
  3678. }
  3679. static Optional<PositionEdge> identifier_to_edge(ValueID identifier)
  3680. {
  3681. switch (identifier) {
  3682. case ValueID::Top:
  3683. return PositionEdge::Top;
  3684. case ValueID::Bottom:
  3685. return PositionEdge::Bottom;
  3686. case ValueID::Left:
  3687. return PositionEdge::Left;
  3688. case ValueID::Right:
  3689. return PositionEdge::Right;
  3690. default:
  3691. return {};
  3692. }
  3693. };
  3694. static Optional<LengthPercentage> style_value_to_length_percentage(auto value)
  3695. {
  3696. if (value->is_percentage())
  3697. return LengthPercentage { value->as_percentage().percentage() };
  3698. if (value->has_length())
  3699. return LengthPercentage { value->to_length() };
  3700. if (value->is_calculated())
  3701. return LengthPercentage { value->as_calculated() };
  3702. return {};
  3703. };
  3704. RefPtr<StyleValue> Parser::parse_single_background_position_value(TokenStream<ComponentValue>& tokens)
  3705. {
  3706. // NOTE: This *looks* like it parses a <position>, but it doesn't. From the spec:
  3707. // "Note: The background-position property also accepts a three-value syntax.
  3708. // This has been disallowed generically because it creates parsing ambiguities
  3709. // when combined with other length or percentage components in a property value."
  3710. // - https://www.w3.org/TR/css-values-4/#typedef-position
  3711. // So, we'll need a separate function to parse <position> later.
  3712. auto transaction = tokens.begin_transaction();
  3713. auto is_horizontal = [](ValueID identifier) -> bool {
  3714. switch (identifier) {
  3715. case ValueID::Left:
  3716. case ValueID::Right:
  3717. return true;
  3718. default:
  3719. return false;
  3720. }
  3721. };
  3722. auto is_vertical = [](ValueID identifier) -> bool {
  3723. switch (identifier) {
  3724. case ValueID::Top:
  3725. case ValueID::Bottom:
  3726. return true;
  3727. default:
  3728. return false;
  3729. }
  3730. };
  3731. struct EdgeOffset {
  3732. PositionEdge edge;
  3733. LengthPercentage offset;
  3734. bool edge_provided;
  3735. bool offset_provided;
  3736. };
  3737. Optional<EdgeOffset> horizontal;
  3738. Optional<EdgeOffset> vertical;
  3739. bool found_center = false;
  3740. auto const center_offset = Percentage { 50 };
  3741. auto const zero_offset = Length::make_px(0);
  3742. while (tokens.has_next_token()) {
  3743. // Check if we're done
  3744. auto seen_items = (horizontal.has_value() ? 1 : 0) + (vertical.has_value() ? 1 : 0) + (found_center ? 1 : 0);
  3745. if (seen_items == 2)
  3746. break;
  3747. auto const& token = tokens.peek_token();
  3748. auto maybe_value = parse_css_value(token);
  3749. if (!maybe_value || !property_accepts_value(PropertyID::BackgroundPosition, *maybe_value))
  3750. break;
  3751. tokens.next_token();
  3752. auto value = maybe_value.release_nonnull();
  3753. auto offset = style_value_to_length_percentage(value);
  3754. if (offset.has_value()) {
  3755. if (!horizontal.has_value()) {
  3756. horizontal = EdgeOffset { PositionEdge::Left, *offset, false, true };
  3757. } else if (!vertical.has_value()) {
  3758. vertical = EdgeOffset { PositionEdge::Top, *offset, false, true };
  3759. } else {
  3760. return nullptr;
  3761. }
  3762. continue;
  3763. }
  3764. auto try_parse_offset = [&](bool& offset_provided) -> LengthPercentage {
  3765. if (tokens.has_next_token()) {
  3766. auto& token = tokens.peek_token();
  3767. auto maybe_value = parse_css_value(token);
  3768. if (!maybe_value)
  3769. return zero_offset;
  3770. auto offset = style_value_to_length_percentage(maybe_value.release_nonnull());
  3771. if (offset.has_value()) {
  3772. offset_provided = true;
  3773. tokens.next_token();
  3774. return *offset;
  3775. }
  3776. }
  3777. return zero_offset;
  3778. };
  3779. if (value->is_identifier()) {
  3780. auto identifier = value->to_identifier();
  3781. if (is_horizontal(identifier)) {
  3782. bool offset_provided = false;
  3783. auto offset = try_parse_offset(offset_provided);
  3784. horizontal = EdgeOffset { *identifier_to_edge(identifier), offset, true, offset_provided };
  3785. } else if (is_vertical(identifier)) {
  3786. bool offset_provided = false;
  3787. auto offset = try_parse_offset(offset_provided);
  3788. vertical = EdgeOffset { *identifier_to_edge(identifier), offset, true, offset_provided };
  3789. } else if (identifier == ValueID::Center) {
  3790. found_center = true;
  3791. } else {
  3792. return nullptr;
  3793. }
  3794. continue;
  3795. }
  3796. tokens.reconsume_current_input_token();
  3797. break;
  3798. }
  3799. if (found_center) {
  3800. if (horizontal.has_value() && vertical.has_value())
  3801. return nullptr;
  3802. if (!horizontal.has_value())
  3803. horizontal = EdgeOffset { PositionEdge::Left, center_offset, true, false };
  3804. if (!vertical.has_value())
  3805. vertical = EdgeOffset { PositionEdge::Top, center_offset, true, false };
  3806. }
  3807. if (!horizontal.has_value() && !vertical.has_value())
  3808. return nullptr;
  3809. // Unpack `<edge> <length>`:
  3810. // The loop above reads this pattern as a single EdgeOffset, when actually, it should be treated
  3811. // as `x y` if the edge is horizontal, and `y` (with the second token reconsumed) otherwise.
  3812. if (!vertical.has_value() && horizontal->edge_provided && horizontal->offset_provided) {
  3813. // Split into `x y`
  3814. vertical = EdgeOffset { PositionEdge::Top, horizontal->offset, false, true };
  3815. horizontal->offset = zero_offset;
  3816. horizontal->offset_provided = false;
  3817. } else if (!horizontal.has_value() && vertical->edge_provided && vertical->offset_provided) {
  3818. // `y`, reconsume
  3819. vertical->offset = zero_offset;
  3820. vertical->offset_provided = false;
  3821. tokens.reconsume_current_input_token();
  3822. }
  3823. // If only one value is specified, the second value is assumed to be center.
  3824. if (!horizontal.has_value())
  3825. horizontal = EdgeOffset { PositionEdge::Left, center_offset, false, false };
  3826. if (!vertical.has_value())
  3827. vertical = EdgeOffset { PositionEdge::Top, center_offset, false, false };
  3828. transaction.commit();
  3829. return PositionStyleValue::create(
  3830. EdgeStyleValue::create(horizontal->edge, horizontal->offset),
  3831. EdgeStyleValue::create(vertical->edge, vertical->offset));
  3832. }
  3833. RefPtr<StyleValue> Parser::parse_single_background_position_x_or_y_value(TokenStream<ComponentValue>& tokens, PropertyID property)
  3834. {
  3835. PositionEdge relative_edge {};
  3836. if (property == PropertyID::BackgroundPositionX) {
  3837. // [ center | [ [ left | right | x-start | x-end ]? <length-percentage>? ]! ]#
  3838. relative_edge = PositionEdge::Left;
  3839. } else if (property == PropertyID::BackgroundPositionY) {
  3840. // [ center | [ [ top | bottom | y-start | y-end ]? <length-percentage>? ]! ]#
  3841. relative_edge = PositionEdge::Top;
  3842. } else {
  3843. VERIFY_NOT_REACHED();
  3844. }
  3845. auto transaction = tokens.begin_transaction();
  3846. if (!tokens.has_next_token())
  3847. return {};
  3848. auto parse_value = [&](auto& token) -> RefPtr<StyleValue> {
  3849. auto maybe_value = parse_css_value(token);
  3850. if (!maybe_value || !property_accepts_value(property, *maybe_value))
  3851. return {};
  3852. return maybe_value.release_nonnull();
  3853. };
  3854. auto value = parse_value(tokens.next_token());
  3855. if (value->is_identifier()) {
  3856. auto identifier = value->to_identifier();
  3857. if (identifier == ValueID::Center) {
  3858. transaction.commit();
  3859. return EdgeStyleValue::create(relative_edge, Percentage { 50 });
  3860. }
  3861. if (auto edge = identifier_to_edge(identifier); edge.has_value()) {
  3862. relative_edge = *edge;
  3863. } else {
  3864. return {};
  3865. }
  3866. if (tokens.has_next_token()) {
  3867. value = parse_value(tokens.peek_token());
  3868. if (!value) {
  3869. transaction.commit();
  3870. return EdgeStyleValue::create(relative_edge, Length::make_px(0));
  3871. }
  3872. tokens.next_token();
  3873. }
  3874. }
  3875. auto offset = style_value_to_length_percentage(value);
  3876. if (offset.has_value()) {
  3877. transaction.commit();
  3878. return EdgeStyleValue::create(relative_edge, *offset);
  3879. }
  3880. return {};
  3881. }
  3882. RefPtr<StyleValue> Parser::parse_single_background_repeat_value(TokenStream<ComponentValue>& tokens)
  3883. {
  3884. auto transaction = tokens.begin_transaction();
  3885. auto is_directional_repeat = [](StyleValue const& value) -> bool {
  3886. auto value_id = value.to_identifier();
  3887. return value_id == ValueID::RepeatX || value_id == ValueID::RepeatY;
  3888. };
  3889. auto as_repeat = [](ValueID identifier) -> Optional<Repeat> {
  3890. switch (identifier) {
  3891. case ValueID::NoRepeat:
  3892. return Repeat::NoRepeat;
  3893. case ValueID::Repeat:
  3894. return Repeat::Repeat;
  3895. case ValueID::Round:
  3896. return Repeat::Round;
  3897. case ValueID::Space:
  3898. return Repeat::Space;
  3899. default:
  3900. return {};
  3901. }
  3902. };
  3903. auto const& token = tokens.next_token();
  3904. auto maybe_x_value = parse_css_value(token);
  3905. if (!maybe_x_value || !property_accepts_value(PropertyID::BackgroundRepeat, *maybe_x_value))
  3906. return nullptr;
  3907. auto x_value = maybe_x_value.release_nonnull();
  3908. if (is_directional_repeat(*x_value)) {
  3909. auto value_id = x_value->to_identifier();
  3910. transaction.commit();
  3911. return BackgroundRepeatStyleValue::create(
  3912. value_id == ValueID::RepeatX ? Repeat::Repeat : Repeat::NoRepeat,
  3913. value_id == ValueID::RepeatX ? Repeat::NoRepeat : Repeat::Repeat);
  3914. }
  3915. auto x_repeat = as_repeat(x_value->to_identifier());
  3916. if (!x_repeat.has_value())
  3917. return nullptr;
  3918. // See if we have a second value for Y
  3919. auto const& second_token = tokens.peek_token();
  3920. auto maybe_y_value = parse_css_value(second_token);
  3921. if (!maybe_y_value || !property_accepts_value(PropertyID::BackgroundRepeat, *maybe_y_value)) {
  3922. // We don't have a second value, so use x for both
  3923. transaction.commit();
  3924. return BackgroundRepeatStyleValue::create(x_repeat.value(), x_repeat.value());
  3925. }
  3926. tokens.next_token();
  3927. auto y_value = maybe_y_value.release_nonnull();
  3928. if (is_directional_repeat(*y_value))
  3929. return nullptr;
  3930. auto y_repeat = as_repeat(y_value->to_identifier());
  3931. if (!y_repeat.has_value())
  3932. return nullptr;
  3933. transaction.commit();
  3934. return BackgroundRepeatStyleValue::create(x_repeat.value(), y_repeat.value());
  3935. }
  3936. RefPtr<StyleValue> Parser::parse_single_background_size_value(TokenStream<ComponentValue>& tokens)
  3937. {
  3938. auto transaction = tokens.begin_transaction();
  3939. auto get_length_percentage = [](StyleValue& style_value) -> Optional<LengthPercentage> {
  3940. if (style_value.has_auto())
  3941. return LengthPercentage { Length::make_auto() };
  3942. if (style_value.is_percentage())
  3943. return LengthPercentage { style_value.as_percentage().percentage() };
  3944. if (style_value.has_length())
  3945. return LengthPercentage { style_value.to_length() };
  3946. return {};
  3947. };
  3948. auto maybe_x_value = parse_css_value(tokens.next_token());
  3949. if (!maybe_x_value || !property_accepts_value(PropertyID::BackgroundSize, *maybe_x_value))
  3950. return nullptr;
  3951. auto x_value = maybe_x_value.release_nonnull();
  3952. if (x_value->to_identifier() == ValueID::Cover || x_value->to_identifier() == ValueID::Contain) {
  3953. transaction.commit();
  3954. return x_value;
  3955. }
  3956. auto maybe_y_value = parse_css_value(tokens.peek_token());
  3957. if (!maybe_y_value || !property_accepts_value(PropertyID::BackgroundSize, *maybe_y_value)) {
  3958. auto x_size = get_length_percentage(*x_value);
  3959. if (!x_size.has_value())
  3960. return nullptr;
  3961. transaction.commit();
  3962. return BackgroundSizeStyleValue::create(x_size.value(), x_size.value());
  3963. }
  3964. tokens.next_token();
  3965. auto y_value = maybe_y_value.release_nonnull();
  3966. auto x_size = get_length_percentage(*x_value);
  3967. auto y_size = get_length_percentage(*y_value);
  3968. if (!x_size.has_value() || !y_size.has_value())
  3969. return nullptr;
  3970. transaction.commit();
  3971. return BackgroundSizeStyleValue::create(x_size.release_value(), y_size.release_value());
  3972. }
  3973. RefPtr<StyleValue> Parser::parse_border_value(Vector<ComponentValue> const& component_values)
  3974. {
  3975. if (component_values.size() > 3)
  3976. return nullptr;
  3977. RefPtr<StyleValue> border_width;
  3978. RefPtr<StyleValue> border_color;
  3979. RefPtr<StyleValue> border_style;
  3980. for (auto const& part : component_values) {
  3981. auto value = parse_css_value(part);
  3982. if (!value)
  3983. return nullptr;
  3984. if (property_accepts_value(PropertyID::BorderWidth, *value)) {
  3985. if (border_width)
  3986. return nullptr;
  3987. border_width = value.release_nonnull();
  3988. continue;
  3989. }
  3990. if (property_accepts_value(PropertyID::BorderColor, *value)) {
  3991. if (border_color)
  3992. return nullptr;
  3993. border_color = value.release_nonnull();
  3994. continue;
  3995. }
  3996. if (property_accepts_value(PropertyID::BorderStyle, *value)) {
  3997. if (border_style)
  3998. return nullptr;
  3999. border_style = value.release_nonnull();
  4000. continue;
  4001. }
  4002. return nullptr;
  4003. }
  4004. if (!border_width)
  4005. border_width = property_initial_value(m_context.realm(), PropertyID::BorderWidth);
  4006. if (!border_style)
  4007. border_style = property_initial_value(m_context.realm(), PropertyID::BorderStyle);
  4008. if (!border_color)
  4009. border_color = property_initial_value(m_context.realm(), PropertyID::BorderColor);
  4010. return BorderStyleValue::create(border_width.release_nonnull(), border_style.release_nonnull(), border_color.release_nonnull());
  4011. }
  4012. RefPtr<StyleValue> Parser::parse_border_radius_value(Vector<ComponentValue> const& component_values)
  4013. {
  4014. if (component_values.size() == 2) {
  4015. auto horizontal = parse_dimension(component_values[0]);
  4016. auto vertical = parse_dimension(component_values[1]);
  4017. if (horizontal.has_value() && horizontal->is_length_percentage() && vertical.has_value() && vertical->is_length_percentage())
  4018. return BorderRadiusStyleValue::create(horizontal->length_percentage(), vertical->length_percentage());
  4019. return nullptr;
  4020. }
  4021. if (component_values.size() == 1) {
  4022. auto radius = parse_dimension(component_values[0]);
  4023. if (radius.has_value() && radius->is_length_percentage())
  4024. return BorderRadiusStyleValue::create(radius->length_percentage(), radius->length_percentage());
  4025. return nullptr;
  4026. }
  4027. return nullptr;
  4028. }
  4029. RefPtr<StyleValue> Parser::parse_border_radius_shorthand_value(Vector<ComponentValue> const& component_values)
  4030. {
  4031. auto top_left = [&](Vector<LengthPercentage>& radii) { return radii[0]; };
  4032. auto top_right = [&](Vector<LengthPercentage>& radii) {
  4033. switch (radii.size()) {
  4034. case 4:
  4035. case 3:
  4036. case 2:
  4037. return radii[1];
  4038. case 1:
  4039. return radii[0];
  4040. default:
  4041. VERIFY_NOT_REACHED();
  4042. }
  4043. };
  4044. auto bottom_right = [&](Vector<LengthPercentage>& radii) {
  4045. switch (radii.size()) {
  4046. case 4:
  4047. case 3:
  4048. return radii[2];
  4049. case 2:
  4050. case 1:
  4051. return radii[0];
  4052. default:
  4053. VERIFY_NOT_REACHED();
  4054. }
  4055. };
  4056. auto bottom_left = [&](Vector<LengthPercentage>& radii) {
  4057. switch (radii.size()) {
  4058. case 4:
  4059. return radii[3];
  4060. case 3:
  4061. case 2:
  4062. return radii[1];
  4063. case 1:
  4064. return radii[0];
  4065. default:
  4066. VERIFY_NOT_REACHED();
  4067. }
  4068. };
  4069. Vector<LengthPercentage> horizontal_radii;
  4070. Vector<LengthPercentage> vertical_radii;
  4071. bool reading_vertical = false;
  4072. for (auto const& value : component_values) {
  4073. if (value.is(Token::Type::Delim) && value.token().delim() == '/') {
  4074. if (reading_vertical || horizontal_radii.is_empty())
  4075. return nullptr;
  4076. reading_vertical = true;
  4077. continue;
  4078. }
  4079. auto maybe_dimension = parse_dimension(value);
  4080. if (!maybe_dimension.has_value() || !maybe_dimension->is_length_percentage())
  4081. return nullptr;
  4082. if (reading_vertical) {
  4083. vertical_radii.append(maybe_dimension->length_percentage());
  4084. } else {
  4085. horizontal_radii.append(maybe_dimension->length_percentage());
  4086. }
  4087. }
  4088. if (horizontal_radii.size() > 4 || vertical_radii.size() > 4
  4089. || horizontal_radii.is_empty()
  4090. || (reading_vertical && vertical_radii.is_empty()))
  4091. return nullptr;
  4092. auto top_left_radius = BorderRadiusStyleValue::create(top_left(horizontal_radii),
  4093. vertical_radii.is_empty() ? top_left(horizontal_radii) : top_left(vertical_radii));
  4094. auto top_right_radius = BorderRadiusStyleValue::create(top_right(horizontal_radii),
  4095. vertical_radii.is_empty() ? top_right(horizontal_radii) : top_right(vertical_radii));
  4096. auto bottom_right_radius = BorderRadiusStyleValue::create(bottom_right(horizontal_radii),
  4097. vertical_radii.is_empty() ? bottom_right(horizontal_radii) : bottom_right(vertical_radii));
  4098. auto bottom_left_radius = BorderRadiusStyleValue::create(bottom_left(horizontal_radii),
  4099. vertical_radii.is_empty() ? bottom_left(horizontal_radii) : bottom_left(vertical_radii));
  4100. return BorderRadiusShorthandStyleValue::create(move(top_left_radius), move(top_right_radius), move(bottom_right_radius), move(bottom_left_radius));
  4101. }
  4102. RefPtr<StyleValue> Parser::parse_shadow_value(Vector<ComponentValue> const& component_values, AllowInsetKeyword allow_inset_keyword)
  4103. {
  4104. // "none"
  4105. if (component_values.size() == 1 && component_values.first().is(Token::Type::Ident)) {
  4106. auto ident = parse_identifier_value(component_values.first());
  4107. if (ident && ident->to_identifier() == ValueID::None)
  4108. return ident;
  4109. }
  4110. return parse_comma_separated_value_list(component_values, [this, allow_inset_keyword](auto& tokens) {
  4111. return parse_single_shadow_value(tokens, allow_inset_keyword);
  4112. });
  4113. }
  4114. RefPtr<StyleValue> Parser::parse_single_shadow_value(TokenStream<ComponentValue>& tokens, AllowInsetKeyword allow_inset_keyword)
  4115. {
  4116. auto transaction = tokens.begin_transaction();
  4117. Optional<Color> color;
  4118. Optional<Length> offset_x;
  4119. Optional<Length> offset_y;
  4120. Optional<Length> blur_radius;
  4121. Optional<Length> spread_distance;
  4122. Optional<ShadowPlacement> placement;
  4123. while (tokens.has_next_token()) {
  4124. auto const& token = tokens.peek_token();
  4125. if (auto maybe_color = parse_color(token); maybe_color.has_value()) {
  4126. if (color.has_value())
  4127. return nullptr;
  4128. color = maybe_color.release_value();
  4129. tokens.next_token();
  4130. continue;
  4131. }
  4132. if (auto maybe_offset_x = parse_length(token); maybe_offset_x.has_value()) {
  4133. // horizontal offset
  4134. if (offset_x.has_value())
  4135. return nullptr;
  4136. offset_x = maybe_offset_x.release_value();
  4137. tokens.next_token();
  4138. // vertical offset
  4139. if (!tokens.has_next_token())
  4140. return nullptr;
  4141. auto maybe_offset_y = parse_length(tokens.peek_token());
  4142. if (!maybe_offset_y.has_value())
  4143. return nullptr;
  4144. offset_y = maybe_offset_y.release_value();
  4145. tokens.next_token();
  4146. // blur radius (optional)
  4147. if (!tokens.has_next_token())
  4148. break;
  4149. auto maybe_blur_radius = parse_length(tokens.peek_token());
  4150. if (!maybe_blur_radius.has_value())
  4151. continue;
  4152. blur_radius = maybe_blur_radius.release_value();
  4153. tokens.next_token();
  4154. // spread distance (optional)
  4155. if (!tokens.has_next_token())
  4156. break;
  4157. auto maybe_spread_distance = parse_length(tokens.peek_token());
  4158. if (!maybe_spread_distance.has_value())
  4159. continue;
  4160. spread_distance = maybe_spread_distance.release_value();
  4161. tokens.next_token();
  4162. continue;
  4163. }
  4164. if (allow_inset_keyword == AllowInsetKeyword::Yes
  4165. && token.is(Token::Type::Ident) && token.token().ident().equals_ignoring_ascii_case("inset"sv)) {
  4166. if (placement.has_value())
  4167. return nullptr;
  4168. placement = ShadowPlacement::Inner;
  4169. tokens.next_token();
  4170. continue;
  4171. }
  4172. if (token.is(Token::Type::Comma))
  4173. break;
  4174. return nullptr;
  4175. }
  4176. // FIXME: If color is absent, default to `currentColor`
  4177. if (!color.has_value())
  4178. color = Color::NamedColor::Black;
  4179. // x/y offsets are required
  4180. if (!offset_x.has_value() || !offset_y.has_value())
  4181. return nullptr;
  4182. // Other lengths default to 0
  4183. if (!blur_radius.has_value())
  4184. blur_radius = Length::make_px(0);
  4185. if (!spread_distance.has_value())
  4186. spread_distance = Length::make_px(0);
  4187. // Placement is outer by default
  4188. if (!placement.has_value())
  4189. placement = ShadowPlacement::Outer;
  4190. transaction.commit();
  4191. return ShadowStyleValue::create(color.release_value(), offset_x.release_value(), offset_y.release_value(), blur_radius.release_value(), spread_distance.release_value(), placement.release_value());
  4192. }
  4193. RefPtr<StyleValue> Parser::parse_content_value(Vector<ComponentValue> const& component_values)
  4194. {
  4195. // FIXME: `content` accepts several kinds of function() type, which we don't handle in property_accepts_value() yet.
  4196. auto is_single_value_identifier = [](ValueID identifier) -> bool {
  4197. switch (identifier) {
  4198. case ValueID::None:
  4199. case ValueID::Normal:
  4200. return true;
  4201. default:
  4202. return false;
  4203. }
  4204. };
  4205. if (component_values.size() == 1) {
  4206. if (auto identifier = parse_identifier_value(component_values.first())) {
  4207. if (is_single_value_identifier(identifier->to_identifier()))
  4208. return identifier;
  4209. }
  4210. }
  4211. StyleValueVector content_values;
  4212. StyleValueVector alt_text_values;
  4213. bool in_alt_text = false;
  4214. for (auto const& value : component_values) {
  4215. if (value.is(Token::Type::Delim) && value.token().delim() == '/') {
  4216. if (in_alt_text || content_values.is_empty())
  4217. return {};
  4218. in_alt_text = true;
  4219. continue;
  4220. }
  4221. auto style_value = parse_css_value(value);
  4222. if (style_value && property_accepts_value(PropertyID::Content, *style_value)) {
  4223. if (is_single_value_identifier(style_value->to_identifier()))
  4224. return {};
  4225. if (in_alt_text) {
  4226. alt_text_values.append(style_value.release_nonnull());
  4227. } else {
  4228. content_values.append(style_value.release_nonnull());
  4229. }
  4230. continue;
  4231. }
  4232. return {};
  4233. }
  4234. if (content_values.is_empty())
  4235. return {};
  4236. if (in_alt_text && alt_text_values.is_empty())
  4237. return {};
  4238. RefPtr<StyleValueList> alt_text;
  4239. if (!alt_text_values.is_empty())
  4240. alt_text = StyleValueList::create(move(alt_text_values), StyleValueList::Separator::Space);
  4241. return ContentStyleValue::create(StyleValueList::create(move(content_values), StyleValueList::Separator::Space), move(alt_text));
  4242. }
  4243. // https://www.w3.org/TR/css-display-3/#the-display-properties
  4244. RefPtr<StyleValue> Parser::parse_display_value(Vector<ComponentValue> const& component_values)
  4245. {
  4246. auto parse_inside = [](ValueID identifier) -> Optional<Display::Inside> {
  4247. switch (identifier) {
  4248. case ValueID::Flow:
  4249. return Display::Inside::Flow;
  4250. case ValueID::FlowRoot:
  4251. return Display::Inside::FlowRoot;
  4252. case ValueID::Table:
  4253. return Display::Inside::Table;
  4254. case ValueID::Flex:
  4255. return Display::Inside::Flex;
  4256. case ValueID::Grid:
  4257. return Display::Inside::Grid;
  4258. case ValueID::Ruby:
  4259. return Display::Inside::Ruby;
  4260. default:
  4261. return {};
  4262. }
  4263. };
  4264. auto parse_outside = [](ValueID identifier) -> Optional<Display::Outside> {
  4265. switch (identifier) {
  4266. case ValueID::Block:
  4267. return Display::Outside::Block;
  4268. case ValueID::Inline:
  4269. return Display::Outside::Inline;
  4270. case ValueID::RunIn:
  4271. return Display::Outside::RunIn;
  4272. default:
  4273. return {};
  4274. }
  4275. };
  4276. auto parse_single_component_display = [&](Vector<ComponentValue> const& component_values) -> Optional<Display> {
  4277. if (auto identifier = parse_identifier_value(component_values.first())) {
  4278. switch (identifier->to_identifier()) {
  4279. // display-outside
  4280. case ValueID::Block:
  4281. return Display::from_short(Display::Short::Block);
  4282. case ValueID::Inline:
  4283. return Display::from_short(Display::Short::Inline);
  4284. case ValueID::RunIn:
  4285. return Display::from_short(Display::Short::RunIn);
  4286. // display-inside
  4287. case ValueID::Flow:
  4288. return Display::from_short(Display::Short::Flow);
  4289. case ValueID::FlowRoot:
  4290. return Display::from_short(Display::Short::FlowRoot);
  4291. case ValueID::Table:
  4292. return Display::from_short(Display::Short::Table);
  4293. case ValueID::Flex:
  4294. return Display::from_short(Display::Short::Flex);
  4295. case ValueID::Grid:
  4296. return Display::from_short(Display::Short::Grid);
  4297. case ValueID::Ruby:
  4298. return Display::from_short(Display::Short::Ruby);
  4299. // display-listitem
  4300. case ValueID::ListItem:
  4301. return Display::from_short(Display::Short::ListItem);
  4302. // display-internal
  4303. case ValueID::TableRowGroup:
  4304. return Display { Display::Internal::TableRowGroup };
  4305. case ValueID::TableHeaderGroup:
  4306. return Display { Display::Internal::TableHeaderGroup };
  4307. case ValueID::TableFooterGroup:
  4308. return Display { Display::Internal::TableFooterGroup };
  4309. case ValueID::TableRow:
  4310. return Display { Display::Internal::TableRow };
  4311. case ValueID::TableCell:
  4312. return Display { Display::Internal::TableCell };
  4313. case ValueID::TableColumnGroup:
  4314. return Display { Display::Internal::TableColumnGroup };
  4315. case ValueID::TableColumn:
  4316. return Display { Display::Internal::TableColumn };
  4317. case ValueID::TableCaption:
  4318. return Display { Display::Internal::TableCaption };
  4319. case ValueID::RubyBase:
  4320. return Display { Display::Internal::RubyBase };
  4321. case ValueID::RubyText:
  4322. return Display { Display::Internal::RubyText };
  4323. case ValueID::RubyBaseContainer:
  4324. return Display { Display::Internal::RubyBaseContainer };
  4325. case ValueID::RubyTextContainer:
  4326. return Display { Display::Internal::RubyTextContainer };
  4327. // display-box
  4328. case ValueID::Contents:
  4329. // FIXME this should be Display::Short::Contents but contents is currently not implemented
  4330. return Display::from_short(Display::Short::Flow);
  4331. case ValueID::None:
  4332. return Display::from_short(Display::Short::None);
  4333. // display-legacy
  4334. case ValueID::InlineBlock:
  4335. return Display::from_short(Display::Short::InlineBlock);
  4336. case ValueID::InlineTable:
  4337. return Display::from_short(Display::Short::InlineTable);
  4338. case ValueID::InlineFlex:
  4339. return Display::from_short(Display::Short::InlineFlex);
  4340. case ValueID::InlineGrid:
  4341. return Display::from_short(Display::Short::InlineGrid);
  4342. default:
  4343. return {};
  4344. }
  4345. }
  4346. return {};
  4347. };
  4348. auto parse_multi_component_display = [&](Vector<ComponentValue> const& component_values) -> Optional<Display> {
  4349. auto list_item = Display::ListItem::No;
  4350. Display::Inside inside = Display::Inside::Flow;
  4351. Display::Outside outside = Display::Outside::Block;
  4352. for (size_t i = 0; i < component_values.size(); ++i) {
  4353. if (auto value = parse_identifier_value(component_values[i])) {
  4354. auto identifier = value->to_identifier();
  4355. if (ValueID::ListItem == identifier) {
  4356. list_item = Display::ListItem::Yes;
  4357. continue;
  4358. }
  4359. auto inside_value = parse_inside(identifier);
  4360. if (inside_value.has_value()) {
  4361. inside = inside_value.value();
  4362. continue;
  4363. }
  4364. auto outside_value = parse_outside(identifier);
  4365. if (outside_value.has_value()) {
  4366. outside = outside_value.value();
  4367. }
  4368. }
  4369. }
  4370. // The spec does not allow any other inside values to be combined with list-item
  4371. // <display-outside>? && [ flow | flow-root ]? && list-item
  4372. if (list_item == Display::ListItem::Yes && inside != Display::Inside::Flow && inside != Display::Inside::FlowRoot)
  4373. return {};
  4374. return Display { outside, inside, list_item };
  4375. };
  4376. Optional<Display> display;
  4377. if (component_values.size() == 1)
  4378. display = parse_single_component_display(component_values);
  4379. else
  4380. display = parse_multi_component_display(component_values);
  4381. if (display.has_value())
  4382. return DisplayStyleValue::create(display.value());
  4383. return {};
  4384. }
  4385. RefPtr<StyleValue> Parser::parse_filter_value_list_value(Vector<ComponentValue> const& component_values)
  4386. {
  4387. if (component_values.size() == 1 && component_values.first().is(Token::Type::Ident)) {
  4388. auto ident = parse_identifier_value(component_values.first());
  4389. if (ident && ident->to_identifier() == ValueID::None)
  4390. return ident;
  4391. }
  4392. TokenStream tokens { component_values };
  4393. // FIXME: <url>s are ignored for now
  4394. // <filter-value-list> = [ <filter-function> | <url> ]+
  4395. enum class FilterToken {
  4396. // Color filters:
  4397. Brightness,
  4398. Contrast,
  4399. Grayscale,
  4400. Invert,
  4401. Opacity,
  4402. Saturate,
  4403. Sepia,
  4404. // Special filters:
  4405. Blur,
  4406. DropShadow,
  4407. HueRotate
  4408. };
  4409. auto filter_token_to_operation = [&](auto filter) {
  4410. VERIFY(to_underlying(filter) < to_underlying(FilterToken::Blur));
  4411. return static_cast<Filter::Color::Operation>(filter);
  4412. };
  4413. auto parse_number_percentage = [&](auto& token) -> Optional<NumberPercentage> {
  4414. if (token.is(Token::Type::Percentage))
  4415. return NumberPercentage(Percentage(token.token().percentage()));
  4416. if (token.is(Token::Type::Number))
  4417. return NumberPercentage(Number(Number::Type::Number, token.token().number_value()));
  4418. return {};
  4419. };
  4420. auto parse_filter_function_name = [&](auto name) -> Optional<FilterToken> {
  4421. if (name.equals_ignoring_ascii_case("blur"sv))
  4422. return FilterToken::Blur;
  4423. if (name.equals_ignoring_ascii_case("brightness"sv))
  4424. return FilterToken::Brightness;
  4425. if (name.equals_ignoring_ascii_case("contrast"sv))
  4426. return FilterToken::Contrast;
  4427. if (name.equals_ignoring_ascii_case("drop-shadow"sv))
  4428. return FilterToken::DropShadow;
  4429. if (name.equals_ignoring_ascii_case("grayscale"sv))
  4430. return FilterToken::Grayscale;
  4431. if (name.equals_ignoring_ascii_case("hue-rotate"sv))
  4432. return FilterToken::HueRotate;
  4433. if (name.equals_ignoring_ascii_case("invert"sv))
  4434. return FilterToken::Invert;
  4435. if (name.equals_ignoring_ascii_case("opacity"sv))
  4436. return FilterToken::Opacity;
  4437. if (name.equals_ignoring_ascii_case("saturate"sv))
  4438. return FilterToken::Saturate;
  4439. if (name.equals_ignoring_ascii_case("sepia"sv))
  4440. return FilterToken::Sepia;
  4441. return {};
  4442. };
  4443. auto parse_filter_function = [&](auto filter_token, auto function_values) -> Optional<FilterFunction> {
  4444. TokenStream tokens { function_values };
  4445. tokens.skip_whitespace();
  4446. auto if_no_more_tokens_return = [&](auto filter) -> Optional<FilterFunction> {
  4447. tokens.skip_whitespace();
  4448. if (tokens.has_next_token())
  4449. return {};
  4450. return filter;
  4451. };
  4452. if (filter_token == FilterToken::Blur) {
  4453. // blur( <length>? )
  4454. if (!tokens.has_next_token())
  4455. return Filter::Blur {};
  4456. auto blur_radius = parse_length(tokens.next_token());
  4457. if (!blur_radius.has_value())
  4458. return {};
  4459. return if_no_more_tokens_return(Filter::Blur { *blur_radius });
  4460. } else if (filter_token == FilterToken::DropShadow) {
  4461. if (!tokens.has_next_token())
  4462. return {};
  4463. auto next_token = [&]() -> auto&
  4464. {
  4465. auto& token = tokens.next_token();
  4466. tokens.skip_whitespace();
  4467. return token;
  4468. };
  4469. // drop-shadow( [ <color>? && <length>{2,3} ] )
  4470. // Note: The following code is a little awkward to allow the color to be before or after the lengths.
  4471. auto& first_param = next_token();
  4472. Optional<Length> maybe_radius = {};
  4473. auto maybe_color = parse_color(first_param);
  4474. auto x_offset = parse_length(maybe_color.has_value() ? next_token() : first_param);
  4475. if (!x_offset.has_value() || !tokens.has_next_token()) {
  4476. return {};
  4477. }
  4478. auto y_offset = parse_length(next_token());
  4479. if (!y_offset.has_value()) {
  4480. return {};
  4481. }
  4482. if (tokens.has_next_token()) {
  4483. auto& token = next_token();
  4484. maybe_radius = parse_length(token);
  4485. if (!maybe_color.has_value() && (!maybe_radius.has_value() || tokens.has_next_token())) {
  4486. maybe_color = parse_color(!maybe_radius.has_value() ? token : next_token());
  4487. if (!maybe_color.has_value()) {
  4488. return {};
  4489. }
  4490. } else if (!maybe_radius.has_value()) {
  4491. return {};
  4492. }
  4493. }
  4494. return if_no_more_tokens_return(Filter::DropShadow { *x_offset, *y_offset, maybe_radius, maybe_color });
  4495. } else if (filter_token == FilterToken::HueRotate) {
  4496. // hue-rotate( [ <angle> | <zero> ]? )
  4497. if (!tokens.has_next_token())
  4498. return Filter::HueRotate {};
  4499. auto& token = tokens.next_token();
  4500. if (token.is(Token::Type::Number)) {
  4501. // hue-rotate(0)
  4502. auto number = token.token().number();
  4503. if (number.is_integer() && number.integer_value() == 0)
  4504. return if_no_more_tokens_return(Filter::HueRotate { Filter::HueRotate::Zero {} });
  4505. return {};
  4506. }
  4507. if (!token.is(Token::Type::Dimension))
  4508. return {};
  4509. float angle_value = token.token().dimension_value();
  4510. auto angle_unit_name = token.token().dimension_unit();
  4511. auto angle_unit = Angle::unit_from_name(angle_unit_name);
  4512. if (!angle_unit.has_value())
  4513. return {};
  4514. Angle angle { angle_value, angle_unit.release_value() };
  4515. return if_no_more_tokens_return(Filter::HueRotate { angle });
  4516. } else {
  4517. // Simple filters:
  4518. // brightness( <number-percentage>? )
  4519. // contrast( <number-percentage>? )
  4520. // grayscale( <number-percentage>? )
  4521. // invert( <number-percentage>? )
  4522. // opacity( <number-percentage>? )
  4523. // sepia( <number-percentage>? )
  4524. // saturate( <number-percentage>? )
  4525. if (!tokens.has_next_token())
  4526. return Filter::Color { filter_token_to_operation(filter_token) };
  4527. auto amount = parse_number_percentage(tokens.next_token());
  4528. if (!amount.has_value())
  4529. return {};
  4530. return if_no_more_tokens_return(Filter::Color { filter_token_to_operation(filter_token), *amount });
  4531. }
  4532. };
  4533. Vector<FilterFunction> filter_value_list {};
  4534. while (tokens.has_next_token()) {
  4535. tokens.skip_whitespace();
  4536. if (!tokens.has_next_token())
  4537. break;
  4538. auto& token = tokens.next_token();
  4539. if (!token.is_function())
  4540. return {};
  4541. auto filter_token = parse_filter_function_name(token.function().name());
  4542. if (!filter_token.has_value())
  4543. return {};
  4544. auto filter_function = parse_filter_function(*filter_token, token.function().values());
  4545. if (!filter_function.has_value())
  4546. return {};
  4547. filter_value_list.append(*filter_function);
  4548. }
  4549. if (filter_value_list.is_empty())
  4550. return {};
  4551. return FilterValueListStyleValue::create(move(filter_value_list));
  4552. }
  4553. RefPtr<StyleValue> Parser::parse_flex_value(Vector<ComponentValue> const& component_values)
  4554. {
  4555. if (component_values.size() == 1) {
  4556. // One-value syntax: <flex-grow> | <flex-basis> | none
  4557. auto value = parse_css_value(component_values[0]);
  4558. if (!value)
  4559. return nullptr;
  4560. if (property_accepts_value(PropertyID::FlexGrow, *value)) {
  4561. // NOTE: The spec says that flex-basis should be 0 here, but other engines currently use 0%.
  4562. // https://github.com/w3c/csswg-drafts/issues/5742
  4563. auto zero_percent = NumericStyleValue::create_integer(0);
  4564. auto one = NumericStyleValue::create_integer(1);
  4565. return FlexStyleValue::create(*value, one, zero_percent);
  4566. }
  4567. if (property_accepts_value(PropertyID::FlexBasis, *value)) {
  4568. auto one = NumericStyleValue::create_integer(1);
  4569. return FlexStyleValue::create(one, one, *value);
  4570. }
  4571. if (value->is_identifier() && property_accepts_value(PropertyID::Flex, *value)) {
  4572. switch (value->to_identifier()) {
  4573. case ValueID::None: {
  4574. auto zero = NumericStyleValue::create_integer(0);
  4575. return FlexStyleValue::create(zero, zero, IdentifierStyleValue::create(ValueID::Auto));
  4576. }
  4577. default:
  4578. return value;
  4579. }
  4580. }
  4581. return nullptr;
  4582. }
  4583. RefPtr<StyleValue> flex_grow;
  4584. RefPtr<StyleValue> flex_shrink;
  4585. RefPtr<StyleValue> flex_basis;
  4586. for (size_t i = 0; i < component_values.size(); ++i) {
  4587. auto value = parse_css_value(component_values[i]);
  4588. if (!value)
  4589. return nullptr;
  4590. // Zero is a valid value for basis, but only if grow and shrink are already specified.
  4591. if (value->has_number() && value->to_number() == 0) {
  4592. if (flex_grow && flex_shrink && !flex_basis) {
  4593. flex_basis = LengthStyleValue::create(Length::make_px(0));
  4594. continue;
  4595. }
  4596. }
  4597. if (property_accepts_value(PropertyID::FlexGrow, *value)) {
  4598. if (flex_grow)
  4599. return nullptr;
  4600. flex_grow = value.release_nonnull();
  4601. // Flex-shrink may optionally follow directly after.
  4602. if (i + 1 < component_values.size()) {
  4603. auto second_value = parse_css_value(component_values[i + 1]);
  4604. if (second_value && property_accepts_value(PropertyID::FlexShrink, *second_value)) {
  4605. flex_shrink = second_value.release_nonnull();
  4606. i++;
  4607. }
  4608. }
  4609. continue;
  4610. }
  4611. if (property_accepts_value(PropertyID::FlexBasis, *value)) {
  4612. if (flex_basis)
  4613. return nullptr;
  4614. flex_basis = value.release_nonnull();
  4615. continue;
  4616. }
  4617. return nullptr;
  4618. }
  4619. if (!flex_grow)
  4620. flex_grow = property_initial_value(m_context.realm(), PropertyID::FlexGrow);
  4621. if (!flex_shrink)
  4622. flex_shrink = property_initial_value(m_context.realm(), PropertyID::FlexShrink);
  4623. if (!flex_basis)
  4624. flex_basis = property_initial_value(m_context.realm(), PropertyID::FlexBasis);
  4625. return FlexStyleValue::create(flex_grow.release_nonnull(), flex_shrink.release_nonnull(), flex_basis.release_nonnull());
  4626. }
  4627. RefPtr<StyleValue> Parser::parse_flex_flow_value(Vector<ComponentValue> const& component_values)
  4628. {
  4629. if (component_values.size() > 2)
  4630. return nullptr;
  4631. RefPtr<StyleValue> flex_direction;
  4632. RefPtr<StyleValue> flex_wrap;
  4633. for (auto const& part : component_values) {
  4634. auto value = parse_css_value(part);
  4635. if (!value)
  4636. return nullptr;
  4637. if (property_accepts_value(PropertyID::FlexDirection, *value)) {
  4638. if (flex_direction)
  4639. return nullptr;
  4640. flex_direction = value.release_nonnull();
  4641. continue;
  4642. }
  4643. if (property_accepts_value(PropertyID::FlexWrap, *value)) {
  4644. if (flex_wrap)
  4645. return nullptr;
  4646. flex_wrap = value.release_nonnull();
  4647. continue;
  4648. }
  4649. }
  4650. if (!flex_direction)
  4651. flex_direction = property_initial_value(m_context.realm(), PropertyID::FlexDirection);
  4652. if (!flex_wrap)
  4653. flex_wrap = property_initial_value(m_context.realm(), PropertyID::FlexWrap);
  4654. return FlexFlowStyleValue::create(flex_direction.release_nonnull(), flex_wrap.release_nonnull());
  4655. }
  4656. static bool is_generic_font_family(ValueID identifier)
  4657. {
  4658. switch (identifier) {
  4659. case ValueID::Cursive:
  4660. case ValueID::Fantasy:
  4661. case ValueID::Monospace:
  4662. case ValueID::Serif:
  4663. case ValueID::SansSerif:
  4664. case ValueID::UiMonospace:
  4665. case ValueID::UiRounded:
  4666. case ValueID::UiSerif:
  4667. case ValueID::UiSansSerif:
  4668. return true;
  4669. default:
  4670. return false;
  4671. }
  4672. }
  4673. RefPtr<StyleValue> Parser::parse_font_value(Vector<ComponentValue> const& component_values)
  4674. {
  4675. RefPtr<StyleValue> font_stretch;
  4676. RefPtr<StyleValue> font_style;
  4677. RefPtr<StyleValue> font_weight;
  4678. RefPtr<StyleValue> font_size;
  4679. RefPtr<StyleValue> line_height;
  4680. RefPtr<StyleValue> font_families;
  4681. RefPtr<StyleValue> font_variant;
  4682. // FIXME: Handle system fonts. (caption, icon, menu, message-box, small-caption, status-bar)
  4683. // Several sub-properties can be "normal", and appear in any order: style, variant, weight, stretch
  4684. // So, we have to handle that separately.
  4685. int normal_count = 0;
  4686. for (size_t i = 0; i < component_values.size(); ++i) {
  4687. auto value = parse_css_value(component_values[i]);
  4688. if (!value)
  4689. return nullptr;
  4690. if (value->to_identifier() == ValueID::Normal) {
  4691. normal_count++;
  4692. continue;
  4693. }
  4694. // FIXME: Handle angle parameter to `oblique`: https://www.w3.org/TR/css-fonts-4/#font-style-prop
  4695. if (property_accepts_value(PropertyID::FontStyle, *value)) {
  4696. if (font_style)
  4697. return nullptr;
  4698. font_style = value.release_nonnull();
  4699. continue;
  4700. }
  4701. if (property_accepts_value(PropertyID::FontWeight, *value)) {
  4702. if (font_weight)
  4703. return nullptr;
  4704. font_weight = value.release_nonnull();
  4705. continue;
  4706. }
  4707. if (property_accepts_value(PropertyID::FontVariant, *value)) {
  4708. if (font_variant)
  4709. return nullptr;
  4710. font_variant = value.release_nonnull();
  4711. continue;
  4712. }
  4713. if (property_accepts_value(PropertyID::FontSize, *value)) {
  4714. if (font_size)
  4715. return nullptr;
  4716. font_size = value.release_nonnull();
  4717. // Consume `/ line-height` if present
  4718. if (i + 2 < component_values.size()) {
  4719. auto const& maybe_solidus = component_values[i + 1];
  4720. if (maybe_solidus.is(Token::Type::Delim) && maybe_solidus.token().delim() == '/') {
  4721. auto maybe_line_height = parse_css_value(component_values[i + 2]);
  4722. if (!(maybe_line_height && property_accepts_value(PropertyID::LineHeight, *maybe_line_height)))
  4723. return nullptr;
  4724. line_height = maybe_line_height.release_nonnull();
  4725. i += 2;
  4726. }
  4727. }
  4728. // Consume font-families
  4729. auto maybe_font_families = parse_font_family_value(component_values, i + 1);
  4730. if (!maybe_font_families)
  4731. return nullptr;
  4732. font_families = maybe_font_families.release_nonnull();
  4733. break;
  4734. }
  4735. if (property_accepts_value(PropertyID::FontStretch, *value)) {
  4736. if (font_stretch)
  4737. return nullptr;
  4738. font_stretch = value.release_nonnull();
  4739. continue;
  4740. }
  4741. return nullptr;
  4742. }
  4743. // Since normal is the default value for all the properties that can have it, we don't have to actually
  4744. // set anything to normal here. It'll be set when we create the FontStyleValue below.
  4745. // We just need to make sure we were not given more normals than will fit.
  4746. int unset_value_count = (font_style ? 0 : 1) + (font_weight ? 0 : 1);
  4747. if (unset_value_count < normal_count)
  4748. return nullptr;
  4749. if (!font_size || !font_families)
  4750. return nullptr;
  4751. if (!font_stretch)
  4752. font_stretch = property_initial_value(m_context.realm(), PropertyID::FontStretch);
  4753. if (!font_style)
  4754. font_style = property_initial_value(m_context.realm(), PropertyID::FontStyle);
  4755. if (!font_weight)
  4756. font_weight = property_initial_value(m_context.realm(), PropertyID::FontWeight);
  4757. if (!line_height)
  4758. line_height = property_initial_value(m_context.realm(), PropertyID::LineHeight);
  4759. return FontStyleValue::create(font_stretch.release_nonnull(), font_style.release_nonnull(), font_weight.release_nonnull(), font_size.release_nonnull(), line_height.release_nonnull(), font_families.release_nonnull());
  4760. }
  4761. RefPtr<StyleValue> Parser::parse_font_family_value(Vector<ComponentValue> const& component_values, size_t start_index)
  4762. {
  4763. auto is_comma_or_eof = [&](size_t i) -> bool {
  4764. if (i < component_values.size()) {
  4765. auto const& maybe_comma = component_values[i];
  4766. if (!maybe_comma.is(Token::Type::Comma))
  4767. return false;
  4768. }
  4769. return true;
  4770. };
  4771. // Note: Font-family names can either be a quoted string, or a keyword, or a series of custom-idents.
  4772. // eg, these are equivalent:
  4773. // font-family: my cool font\!, serif;
  4774. // font-family: "my cool font!", serif;
  4775. StyleValueVector font_families;
  4776. Vector<DeprecatedString> current_name_parts;
  4777. for (size_t i = start_index; i < component_values.size(); ++i) {
  4778. auto const& part = component_values[i];
  4779. if (part.is(Token::Type::String)) {
  4780. // `font-family: my cool "font";` is invalid.
  4781. if (!current_name_parts.is_empty())
  4782. return nullptr;
  4783. if (!is_comma_or_eof(i + 1))
  4784. return nullptr;
  4785. font_families.append(StringStyleValue::create(String::from_utf8(part.token().string()).release_value_but_fixme_should_propagate_errors()));
  4786. i++;
  4787. continue;
  4788. }
  4789. if (part.is(Token::Type::Ident)) {
  4790. // If this is a valid identifier, it's NOT a custom-ident and can't be part of a larger name.
  4791. auto maybe_ident = parse_css_value(part);
  4792. if (maybe_ident) {
  4793. // CSS-wide keywords are not allowed
  4794. if (maybe_ident->is_builtin())
  4795. return nullptr;
  4796. if (is_generic_font_family(maybe_ident->to_identifier())) {
  4797. // Can't have a generic-font-name as a token in an unquoted font name.
  4798. if (!current_name_parts.is_empty())
  4799. return nullptr;
  4800. if (!is_comma_or_eof(i + 1))
  4801. return nullptr;
  4802. font_families.append(maybe_ident.release_nonnull());
  4803. i++;
  4804. continue;
  4805. }
  4806. }
  4807. current_name_parts.append(part.token().ident());
  4808. continue;
  4809. }
  4810. if (part.is(Token::Type::Comma)) {
  4811. if (current_name_parts.is_empty())
  4812. return nullptr;
  4813. font_families.append(StringStyleValue::create(String::from_utf8(DeprecatedString::join(' ', current_name_parts)).release_value_but_fixme_should_propagate_errors()));
  4814. current_name_parts.clear();
  4815. // Can't have a trailing comma
  4816. if (i + 1 == component_values.size())
  4817. return nullptr;
  4818. continue;
  4819. }
  4820. }
  4821. if (!current_name_parts.is_empty()) {
  4822. font_families.append(StringStyleValue::create(String::from_utf8(DeprecatedString::join(' ', current_name_parts)).release_value_but_fixme_should_propagate_errors()));
  4823. current_name_parts.clear();
  4824. }
  4825. if (font_families.is_empty())
  4826. return nullptr;
  4827. return StyleValueList::create(move(font_families), StyleValueList::Separator::Comma);
  4828. }
  4829. CSSRule* Parser::parse_font_face_rule(TokenStream<ComponentValue>& tokens)
  4830. {
  4831. auto declarations_and_at_rules = parse_a_list_of_declarations(tokens);
  4832. Optional<FlyString> font_family;
  4833. Vector<FontFace::Source> src;
  4834. Vector<UnicodeRange> unicode_range;
  4835. for (auto& declaration_or_at_rule : declarations_and_at_rules) {
  4836. if (declaration_or_at_rule.is_at_rule()) {
  4837. dbgln_if(CSS_PARSER_DEBUG, "CSSParser: CSS at-rules are not allowed in @font-family; discarding.");
  4838. continue;
  4839. }
  4840. auto const& declaration = declaration_or_at_rule.declaration();
  4841. if (declaration.name().equals_ignoring_ascii_case("font-family"sv)) {
  4842. // FIXME: This is very similar to, but different from, the logic in parse_font_family_value().
  4843. // Ideally they could share code.
  4844. Vector<DeprecatedString> font_family_parts;
  4845. bool had_syntax_error = false;
  4846. for (size_t i = 0; i < declaration.values().size(); ++i) {
  4847. auto const& part = declaration.values()[i];
  4848. if (part.is(Token::Type::Whitespace))
  4849. continue;
  4850. if (part.is(Token::Type::String)) {
  4851. if (!font_family_parts.is_empty()) {
  4852. dbgln_if(CSS_PARSER_DEBUG, "CSSParser: @font-face font-family format invalid; discarding.");
  4853. had_syntax_error = true;
  4854. break;
  4855. }
  4856. font_family_parts.append(part.token().string());
  4857. continue;
  4858. }
  4859. if (part.is(Token::Type::Ident)) {
  4860. if (is_builtin(part.token().ident())) {
  4861. dbgln_if(CSS_PARSER_DEBUG, "CSSParser: @font-face font-family format invalid; discarding.");
  4862. had_syntax_error = true;
  4863. break;
  4864. }
  4865. auto value_id = value_id_from_string(part.token().ident());
  4866. if (is_generic_font_family(value_id)) {
  4867. dbgln_if(CSS_PARSER_DEBUG, "CSSParser: @font-face font-family format invalid; discarding.");
  4868. had_syntax_error = true;
  4869. break;
  4870. }
  4871. font_family_parts.append(part.token().ident());
  4872. continue;
  4873. }
  4874. dbgln_if(CSS_PARSER_DEBUG, "CSSParser: @font-face font-family format invalid; discarding.");
  4875. had_syntax_error = true;
  4876. break;
  4877. }
  4878. if (had_syntax_error || font_family_parts.is_empty())
  4879. continue;
  4880. font_family = String::join(' ', font_family_parts).release_value_but_fixme_should_propagate_errors();
  4881. continue;
  4882. }
  4883. if (declaration.name().equals_ignoring_ascii_case("src"sv)) {
  4884. TokenStream token_stream { declaration.values() };
  4885. Vector<FontFace::Source> supported_sources = parse_font_face_src(token_stream);
  4886. if (!supported_sources.is_empty())
  4887. src = move(supported_sources);
  4888. continue;
  4889. }
  4890. if (declaration.name().equals_ignoring_ascii_case("unicode-range"sv)) {
  4891. Vector<UnicodeRange> unicode_ranges;
  4892. bool unicode_range_invalid = false;
  4893. TokenStream all_tokens { declaration.values() };
  4894. auto range_token_lists = parse_a_comma_separated_list_of_component_values(all_tokens);
  4895. for (auto& range_tokens : range_token_lists) {
  4896. TokenStream range_token_stream { range_tokens };
  4897. auto maybe_unicode_range = parse_unicode_range(range_token_stream);
  4898. if (!maybe_unicode_range.has_value()) {
  4899. dbgln_if(CSS_PARSER_DEBUG, "CSSParser: @font-face unicode-range format invalid; discarding.");
  4900. unicode_range_invalid = true;
  4901. break;
  4902. }
  4903. unicode_ranges.append(maybe_unicode_range.release_value());
  4904. }
  4905. if (unicode_range_invalid || unicode_ranges.is_empty())
  4906. continue;
  4907. unicode_range = move(unicode_ranges);
  4908. continue;
  4909. }
  4910. dbgln_if(CSS_PARSER_DEBUG, "CSSParser: Unrecognized descriptor '{}' in @font-family; discarding.", declaration.name());
  4911. }
  4912. if (!font_family.has_value()) {
  4913. dbgln_if(CSS_PARSER_DEBUG, "CSSParser: Failed to parse @font-face: no font-family!");
  4914. return {};
  4915. }
  4916. if (unicode_range.is_empty()) {
  4917. unicode_range.empend(0x0u, 0x10FFFFu);
  4918. }
  4919. return CSSFontFaceRule::create(m_context.realm(), FontFace { font_family.release_value(), move(src), move(unicode_range) }).release_value_but_fixme_should_propagate_errors();
  4920. }
  4921. Vector<FontFace::Source> Parser::parse_font_face_src(TokenStream<ComponentValue>& component_values)
  4922. {
  4923. // FIXME: Get this information from the system somehow?
  4924. // Format-name table: https://www.w3.org/TR/css-fonts-4/#font-format-definitions
  4925. auto font_format_is_supported = [](StringView name) {
  4926. // The spec requires us to treat opentype and truetype as synonymous.
  4927. if (name.is_one_of_ignoring_ascii_case("opentype"sv, "truetype"sv, "woff"sv))
  4928. return true;
  4929. return false;
  4930. };
  4931. Vector<FontFace::Source> supported_sources;
  4932. auto list_of_source_token_lists = parse_a_comma_separated_list_of_component_values(component_values);
  4933. for (auto const& source_token_list : list_of_source_token_lists) {
  4934. TokenStream source_tokens { source_token_list };
  4935. source_tokens.skip_whitespace();
  4936. auto const& first = source_tokens.next_token();
  4937. // <url> [ format(<font-format>)]?
  4938. // FIXME: Implement optional tech() function from CSS-Fonts-4.
  4939. if (auto maybe_url = parse_url_function(first, AllowedDataUrlType::Font); maybe_url.has_value()) {
  4940. auto url = maybe_url.release_value();
  4941. if (!url.is_valid()) {
  4942. continue;
  4943. }
  4944. Optional<FlyString> format;
  4945. source_tokens.skip_whitespace();
  4946. if (!source_tokens.has_next_token()) {
  4947. supported_sources.empend(move(url), format);
  4948. continue;
  4949. }
  4950. auto maybe_function = source_tokens.next_token();
  4951. if (!maybe_function.is_function()) {
  4952. dbgln_if(CSS_PARSER_DEBUG, "CSSParser: @font-face src invalid (token after `url()` that isn't a function: {}); discarding.", maybe_function.to_debug_string());
  4953. return {};
  4954. }
  4955. auto const& function = maybe_function.function();
  4956. if (function.name().equals_ignoring_ascii_case("format"sv)) {
  4957. TokenStream format_tokens { function.values() };
  4958. format_tokens.skip_whitespace();
  4959. auto const& format_name_token = format_tokens.next_token();
  4960. StringView format_name;
  4961. if (format_name_token.is(Token::Type::Ident)) {
  4962. format_name = format_name_token.token().ident();
  4963. } else if (format_name_token.is(Token::Type::String)) {
  4964. format_name = format_name_token.token().string();
  4965. } else {
  4966. dbgln_if(CSS_PARSER_DEBUG, "CSSParser: @font-face src invalid (`format()` parameter not an ident or string; is: {}); discarding.", format_name_token.to_debug_string());
  4967. return {};
  4968. }
  4969. if (!font_format_is_supported(format_name)) {
  4970. dbgln_if(CSS_PARSER_DEBUG, "CSSParser: @font-face src format({}) not supported; skipping.", format_name);
  4971. continue;
  4972. }
  4973. format = FlyString::from_utf8(format_name).release_value_but_fixme_should_propagate_errors();
  4974. } else {
  4975. dbgln_if(CSS_PARSER_DEBUG, "CSSParser: @font-face src invalid (unrecognized function token `{}`); discarding.", function.name());
  4976. return {};
  4977. }
  4978. source_tokens.skip_whitespace();
  4979. if (source_tokens.has_next_token()) {
  4980. dbgln_if(CSS_PARSER_DEBUG, "CSSParser: @font-face src invalid (extra token `{}`); discarding.", source_tokens.peek_token().to_debug_string());
  4981. return {};
  4982. }
  4983. supported_sources.empend(move(url), format);
  4984. continue;
  4985. }
  4986. // FIXME: Implement `local()`.
  4987. dbgln_if(CSS_PARSER_DEBUG, "CSSParser: @font-face src invalid (failed to parse url from: {}); discarding.", first.to_debug_string());
  4988. return {};
  4989. }
  4990. return supported_sources;
  4991. }
  4992. RefPtr<StyleValue> Parser::parse_list_style_value(Vector<ComponentValue> const& component_values)
  4993. {
  4994. if (component_values.size() > 3)
  4995. return nullptr;
  4996. RefPtr<StyleValue> list_position;
  4997. RefPtr<StyleValue> list_image;
  4998. RefPtr<StyleValue> list_type;
  4999. int found_nones = 0;
  5000. for (auto const& part : component_values) {
  5001. auto value = parse_css_value(part);
  5002. if (!value)
  5003. return nullptr;
  5004. if (value->to_identifier() == ValueID::None) {
  5005. found_nones++;
  5006. continue;
  5007. }
  5008. if (property_accepts_value(PropertyID::ListStylePosition, *value)) {
  5009. if (list_position)
  5010. return nullptr;
  5011. list_position = value.release_nonnull();
  5012. continue;
  5013. }
  5014. if (property_accepts_value(PropertyID::ListStyleImage, *value)) {
  5015. if (list_image)
  5016. return nullptr;
  5017. list_image = value.release_nonnull();
  5018. continue;
  5019. }
  5020. if (property_accepts_value(PropertyID::ListStyleType, *value)) {
  5021. if (list_type)
  5022. return nullptr;
  5023. list_type = value.release_nonnull();
  5024. continue;
  5025. }
  5026. }
  5027. if (found_nones > 2)
  5028. return nullptr;
  5029. if (found_nones == 2) {
  5030. if (list_image || list_type)
  5031. return nullptr;
  5032. auto none = IdentifierStyleValue::create(ValueID::None);
  5033. list_image = none;
  5034. list_type = none;
  5035. } else if (found_nones == 1) {
  5036. if (list_image && list_type)
  5037. return nullptr;
  5038. auto none = IdentifierStyleValue::create(ValueID::None);
  5039. if (!list_image)
  5040. list_image = none;
  5041. if (!list_type)
  5042. list_type = none;
  5043. }
  5044. if (!list_position)
  5045. list_position = property_initial_value(m_context.realm(), PropertyID::ListStylePosition);
  5046. if (!list_image)
  5047. list_image = property_initial_value(m_context.realm(), PropertyID::ListStyleImage);
  5048. if (!list_type)
  5049. list_type = property_initial_value(m_context.realm(), PropertyID::ListStyleType);
  5050. return ListStyleStyleValue::create(list_position.release_nonnull(), list_image.release_nonnull(), list_type.release_nonnull());
  5051. }
  5052. RefPtr<StyleValue> Parser::parse_overflow_value(Vector<ComponentValue> const& component_values)
  5053. {
  5054. if (component_values.size() == 1) {
  5055. auto maybe_value = parse_css_value(component_values.first());
  5056. if (!maybe_value)
  5057. return nullptr;
  5058. auto value = maybe_value.release_nonnull();
  5059. if (property_accepts_value(PropertyID::Overflow, *value))
  5060. return OverflowStyleValue::create(value, value);
  5061. return nullptr;
  5062. }
  5063. if (component_values.size() == 2) {
  5064. auto maybe_x_value = parse_css_value(component_values[0]);
  5065. auto maybe_y_value = parse_css_value(component_values[1]);
  5066. if (!maybe_x_value || !maybe_y_value)
  5067. return nullptr;
  5068. auto x_value = maybe_x_value.release_nonnull();
  5069. auto y_value = maybe_y_value.release_nonnull();
  5070. if (!property_accepts_value(PropertyID::OverflowX, x_value) || !property_accepts_value(PropertyID::OverflowY, y_value)) {
  5071. return nullptr;
  5072. }
  5073. return OverflowStyleValue::create(x_value, y_value);
  5074. }
  5075. return nullptr;
  5076. }
  5077. RefPtr<StyleValue> Parser::parse_text_decoration_value(Vector<ComponentValue> const& component_values)
  5078. {
  5079. RefPtr<StyleValue> decoration_line;
  5080. RefPtr<StyleValue> decoration_thickness;
  5081. RefPtr<StyleValue> decoration_style;
  5082. RefPtr<StyleValue> decoration_color;
  5083. auto tokens = TokenStream { component_values };
  5084. while (tokens.has_next_token()) {
  5085. auto const& part = tokens.next_token();
  5086. auto value = parse_css_value(part);
  5087. if (!value)
  5088. return nullptr;
  5089. if (property_accepts_value(PropertyID::TextDecorationColor, *value)) {
  5090. if (decoration_color)
  5091. return nullptr;
  5092. decoration_color = value.release_nonnull();
  5093. continue;
  5094. }
  5095. if (property_accepts_value(PropertyID::TextDecorationLine, *value)) {
  5096. if (decoration_line)
  5097. return nullptr;
  5098. tokens.reconsume_current_input_token();
  5099. auto parsed_decoration_line = parse_text_decoration_line_value(tokens);
  5100. if (!parsed_decoration_line)
  5101. return nullptr;
  5102. decoration_line = parsed_decoration_line.release_nonnull();
  5103. continue;
  5104. }
  5105. if (property_accepts_value(PropertyID::TextDecorationThickness, *value)) {
  5106. if (decoration_thickness)
  5107. return nullptr;
  5108. decoration_thickness = value.release_nonnull();
  5109. continue;
  5110. }
  5111. if (property_accepts_value(PropertyID::TextDecorationStyle, *value)) {
  5112. if (decoration_style)
  5113. return nullptr;
  5114. decoration_style = value.release_nonnull();
  5115. continue;
  5116. }
  5117. return nullptr;
  5118. }
  5119. if (!decoration_line)
  5120. decoration_line = property_initial_value(m_context.realm(), PropertyID::TextDecorationLine);
  5121. if (!decoration_thickness)
  5122. decoration_thickness = property_initial_value(m_context.realm(), PropertyID::TextDecorationThickness);
  5123. if (!decoration_style)
  5124. decoration_style = property_initial_value(m_context.realm(), PropertyID::TextDecorationStyle);
  5125. if (!decoration_color)
  5126. decoration_color = property_initial_value(m_context.realm(), PropertyID::TextDecorationColor);
  5127. return TextDecorationStyleValue::create(decoration_line.release_nonnull(), decoration_thickness.release_nonnull(), decoration_style.release_nonnull(), decoration_color.release_nonnull());
  5128. }
  5129. RefPtr<StyleValue> Parser::parse_text_decoration_line_value(TokenStream<ComponentValue>& tokens)
  5130. {
  5131. StyleValueVector style_values;
  5132. while (tokens.has_next_token()) {
  5133. auto const& token = tokens.next_token();
  5134. auto maybe_value = parse_css_value(token);
  5135. if (!maybe_value || !property_accepts_value(PropertyID::TextDecorationLine, *maybe_value)) {
  5136. tokens.reconsume_current_input_token();
  5137. break;
  5138. }
  5139. auto value = maybe_value.release_nonnull();
  5140. if (auto maybe_line = value_id_to_text_decoration_line(value->to_identifier()); maybe_line.has_value()) {
  5141. auto line = maybe_line.release_value();
  5142. if (line == TextDecorationLine::None) {
  5143. if (!style_values.is_empty()) {
  5144. tokens.reconsume_current_input_token();
  5145. break;
  5146. }
  5147. return value;
  5148. }
  5149. if (style_values.contains_slow(value)) {
  5150. tokens.reconsume_current_input_token();
  5151. break;
  5152. }
  5153. style_values.append(move(value));
  5154. continue;
  5155. }
  5156. tokens.reconsume_current_input_token();
  5157. break;
  5158. }
  5159. if (style_values.is_empty())
  5160. return nullptr;
  5161. return StyleValueList::create(move(style_values), StyleValueList::Separator::Space);
  5162. }
  5163. RefPtr<StyleValue> Parser::parse_transform_value(Vector<ComponentValue> const& component_values)
  5164. {
  5165. StyleValueVector transformations;
  5166. auto tokens = TokenStream { component_values };
  5167. tokens.skip_whitespace();
  5168. while (tokens.has_next_token()) {
  5169. tokens.skip_whitespace();
  5170. auto const& part = tokens.next_token();
  5171. if (part.is(Token::Type::Ident) && part.token().ident().equals_ignoring_ascii_case("none"sv)) {
  5172. if (!transformations.is_empty())
  5173. return nullptr;
  5174. tokens.skip_whitespace();
  5175. if (tokens.has_next_token())
  5176. return nullptr;
  5177. return IdentifierStyleValue::create(ValueID::None);
  5178. }
  5179. if (!part.is_function())
  5180. return nullptr;
  5181. auto maybe_function = transform_function_from_string(part.function().name());
  5182. if (!maybe_function.has_value())
  5183. return nullptr;
  5184. auto function = maybe_function.release_value();
  5185. auto function_metadata = transform_function_metadata(function);
  5186. StyleValueVector values;
  5187. auto argument_tokens = TokenStream { part.function().values() };
  5188. argument_tokens.skip_whitespace();
  5189. size_t argument_index = 0;
  5190. while (argument_tokens.has_next_token()) {
  5191. if (argument_index == function_metadata.parameters.size()) {
  5192. dbgln_if(CSS_PARSER_DEBUG, "Too many arguments to {}. max: {}", part.function().name(), function_metadata.parameters.size());
  5193. return nullptr;
  5194. }
  5195. auto const& value = argument_tokens.next_token();
  5196. RefPtr<CalculatedStyleValue> maybe_calc_value;
  5197. if (auto maybe_dynamic_value = parse_dynamic_value(value)) {
  5198. // TODO: calc() is the only dynamic value we support for now, but more will come later.
  5199. // FIXME: Actually, calc() should probably be parsed inside parse_dimension_value() etc,
  5200. // so that it affects every use instead of us having to manually implement it.
  5201. VERIFY(maybe_dynamic_value->is_calculated());
  5202. maybe_calc_value = maybe_dynamic_value->as_calculated();
  5203. }
  5204. switch (function_metadata.parameters[argument_index].type) {
  5205. case TransformFunctionParameterType::Angle: {
  5206. // These are `<angle> | <zero>` in the spec, so we have to check for both kinds.
  5207. if (maybe_calc_value && maybe_calc_value->resolves_to_angle()) {
  5208. values.append(maybe_calc_value.release_nonnull());
  5209. } else if (value.is(Token::Type::Number) && value.token().number_value() == 0) {
  5210. values.append(AngleStyleValue::create(Angle::make_degrees(0)));
  5211. } else {
  5212. auto dimension_value = parse_dimension_value(value);
  5213. if (!dimension_value || !dimension_value->is_angle())
  5214. return nullptr;
  5215. values.append(dimension_value.release_nonnull());
  5216. }
  5217. break;
  5218. }
  5219. case TransformFunctionParameterType::Length: {
  5220. if (maybe_calc_value && maybe_calc_value->resolves_to_length()) {
  5221. values.append(maybe_calc_value.release_nonnull());
  5222. } else {
  5223. auto dimension_value = parse_dimension_value(value);
  5224. if (!dimension_value)
  5225. return nullptr;
  5226. if (dimension_value->is_length())
  5227. values.append(dimension_value.release_nonnull());
  5228. else
  5229. return nullptr;
  5230. }
  5231. break;
  5232. }
  5233. case TransformFunctionParameterType::LengthPercentage: {
  5234. if (maybe_calc_value && maybe_calc_value->resolves_to_length()) {
  5235. values.append(maybe_calc_value.release_nonnull());
  5236. } else {
  5237. auto dimension_value = parse_dimension_value(value);
  5238. if (!dimension_value)
  5239. return nullptr;
  5240. if (dimension_value->is_percentage() || dimension_value->is_length())
  5241. values.append(dimension_value.release_nonnull());
  5242. else
  5243. return nullptr;
  5244. }
  5245. break;
  5246. }
  5247. case TransformFunctionParameterType::Number: {
  5248. if (maybe_calc_value && maybe_calc_value->resolves_to_number()) {
  5249. values.append(maybe_calc_value.release_nonnull());
  5250. } else {
  5251. auto number = parse_numeric_value(value);
  5252. if (!number)
  5253. return nullptr;
  5254. values.append(number.release_nonnull());
  5255. }
  5256. break;
  5257. }
  5258. }
  5259. argument_tokens.skip_whitespace();
  5260. if (argument_tokens.has_next_token()) {
  5261. // Arguments must be separated by commas.
  5262. if (!argument_tokens.next_token().is(Token::Type::Comma))
  5263. return nullptr;
  5264. argument_tokens.skip_whitespace();
  5265. // If there are no more parameters after the comma, this is invalid.
  5266. if (!argument_tokens.has_next_token())
  5267. return nullptr;
  5268. }
  5269. argument_index++;
  5270. }
  5271. if (argument_index < function_metadata.parameters.size() && function_metadata.parameters[argument_index].required) {
  5272. dbgln_if(CSS_PARSER_DEBUG, "Required parameter at position {} is missing", argument_index);
  5273. return nullptr;
  5274. }
  5275. transformations.append(TransformationStyleValue::create(function, move(values)));
  5276. }
  5277. return StyleValueList::create(move(transformations), StyleValueList::Separator::Space);
  5278. }
  5279. // https://www.w3.org/TR/css-transforms-1/#propdef-transform-origin
  5280. // FIXME: This only supports a 2D position
  5281. RefPtr<StyleValue> Parser::parse_transform_origin_value(Vector<ComponentValue> const& component_values)
  5282. {
  5283. enum class Axis {
  5284. None,
  5285. X,
  5286. Y,
  5287. };
  5288. struct AxisOffset {
  5289. Axis axis;
  5290. NonnullRefPtr<StyleValue> offset;
  5291. };
  5292. auto to_axis_offset = [](RefPtr<StyleValue> value) -> Optional<AxisOffset> {
  5293. if (value->is_percentage())
  5294. return AxisOffset { Axis::None, value->as_percentage() };
  5295. if (value->is_length())
  5296. return AxisOffset { Axis::None, value->as_length() };
  5297. if (value->has_length())
  5298. return AxisOffset { Axis::None, LengthStyleValue::create(value->to_length()) };
  5299. if (value->is_identifier()) {
  5300. switch (value->to_identifier()) {
  5301. case ValueID::Top:
  5302. return AxisOffset { Axis::Y, PercentageStyleValue::create(Percentage(0)) };
  5303. case ValueID::Left:
  5304. return AxisOffset { Axis::X, PercentageStyleValue::create(Percentage(0)) };
  5305. case ValueID::Center:
  5306. return AxisOffset { Axis::None, PercentageStyleValue::create(Percentage(50)) };
  5307. case ValueID::Bottom:
  5308. return AxisOffset { Axis::Y, PercentageStyleValue::create(Percentage(100)) };
  5309. case ValueID::Right:
  5310. return AxisOffset { Axis::X, PercentageStyleValue::create(Percentage(100)) };
  5311. default:
  5312. return {};
  5313. }
  5314. }
  5315. return {};
  5316. };
  5317. auto make_list = [](NonnullRefPtr<StyleValue> const& x_value, NonnullRefPtr<StyleValue> const& y_value) -> NonnullRefPtr<StyleValueList> {
  5318. StyleValueVector values;
  5319. values.append(x_value);
  5320. values.append(y_value);
  5321. return StyleValueList::create(move(values), StyleValueList::Separator::Space);
  5322. };
  5323. switch (component_values.size()) {
  5324. case 1: {
  5325. auto single_value = to_axis_offset(parse_css_value(component_values[0]));
  5326. if (!single_value.has_value())
  5327. return nullptr;
  5328. // If only one value is specified, the second value is assumed to be center.
  5329. // FIXME: If one or two values are specified, the third value is assumed to be 0px.
  5330. switch (single_value->axis) {
  5331. case Axis::None:
  5332. case Axis::X:
  5333. return make_list(single_value->offset, PercentageStyleValue::create(Percentage(50)));
  5334. case Axis::Y:
  5335. return make_list(PercentageStyleValue::create(Percentage(50)), single_value->offset);
  5336. }
  5337. VERIFY_NOT_REACHED();
  5338. }
  5339. case 2: {
  5340. auto first_value = to_axis_offset(parse_css_value(component_values[0]));
  5341. auto second_value = to_axis_offset(parse_css_value(component_values[1]));
  5342. if (!first_value.has_value() || !second_value.has_value())
  5343. return nullptr;
  5344. RefPtr<StyleValue> x_value;
  5345. RefPtr<StyleValue> y_value;
  5346. if (first_value->axis == Axis::X) {
  5347. x_value = first_value->offset;
  5348. } else if (first_value->axis == Axis::Y) {
  5349. y_value = first_value->offset;
  5350. }
  5351. if (second_value->axis == Axis::X) {
  5352. if (x_value)
  5353. return nullptr;
  5354. x_value = second_value->offset;
  5355. // Put the other in Y since its axis can't have been X
  5356. y_value = first_value->offset;
  5357. } else if (second_value->axis == Axis::Y) {
  5358. if (y_value)
  5359. return nullptr;
  5360. y_value = second_value->offset;
  5361. // Put the other in X since its axis can't have been Y
  5362. x_value = first_value->offset;
  5363. } else {
  5364. if (x_value) {
  5365. VERIFY(!y_value);
  5366. y_value = second_value->offset;
  5367. } else {
  5368. VERIFY(!x_value);
  5369. x_value = second_value->offset;
  5370. }
  5371. }
  5372. // If two or more values are defined and either no value is a keyword, or the only used keyword is center,
  5373. // then the first value represents the horizontal position (or offset) and the second represents the vertical position (or offset).
  5374. // FIXME: A third value always represents the Z position (or offset) and must be of type <length>.
  5375. if (first_value->axis == Axis::None && second_value->axis == Axis::None) {
  5376. x_value = first_value->offset;
  5377. y_value = second_value->offset;
  5378. }
  5379. return make_list(x_value.release_nonnull(), y_value.release_nonnull());
  5380. }
  5381. }
  5382. return nullptr;
  5383. }
  5384. RefPtr<StyleValue> Parser::parse_as_css_value(PropertyID property_id)
  5385. {
  5386. auto component_values = parse_a_list_of_component_values(m_token_stream);
  5387. auto tokens = TokenStream(component_values);
  5388. auto parsed_value = parse_css_value(property_id, tokens);
  5389. if (parsed_value.is_error())
  5390. return {};
  5391. return parsed_value.release_value();
  5392. }
  5393. Optional<CSS::GridSize> Parser::parse_grid_size(ComponentValue const& component_value)
  5394. {
  5395. // FIXME: Parse calc here if necessary
  5396. if (component_value.is_function())
  5397. return {};
  5398. auto token = component_value.token();
  5399. if (token.is(Token::Type::Dimension) && token.dimension_unit().equals_ignoring_ascii_case("fr"sv)) {
  5400. float numeric_value = token.dimension_value();
  5401. if (numeric_value)
  5402. return GridSize(numeric_value);
  5403. }
  5404. if (token.is(Token::Type::Ident) && token.ident().equals_ignoring_ascii_case("auto"sv))
  5405. return GridSize::make_auto();
  5406. if (token.is(Token::Type::Ident) && token.ident().equals_ignoring_ascii_case("max-content"sv))
  5407. return GridSize(GridSize::Type::MaxContent);
  5408. if (token.is(Token::Type::Ident) && token.ident().equals_ignoring_ascii_case("min-content"sv))
  5409. return GridSize(GridSize::Type::MinContent);
  5410. auto dimension = parse_dimension(token);
  5411. if (!dimension.has_value())
  5412. return {};
  5413. if (dimension->is_length())
  5414. return GridSize(dimension->length());
  5415. else if (dimension->is_percentage())
  5416. return GridSize(dimension->percentage());
  5417. return {};
  5418. }
  5419. Optional<CSS::GridMinMax> Parser::parse_min_max(Vector<ComponentValue> const& component_values)
  5420. {
  5421. // https://www.w3.org/TR/css-grid-2/#valdef-grid-template-columns-minmax
  5422. // 'minmax(min, max)'
  5423. // Defines a size range greater than or equal to min and less than or equal to max. If the max is
  5424. // less than the min, then the max will be floored by the min (essentially yielding minmax(min,
  5425. // min)). As a maximum, a <flex> value sets the track’s flex factor; it is invalid as a minimum.
  5426. auto function_tokens = TokenStream(component_values);
  5427. auto comma_separated_list = parse_a_comma_separated_list_of_component_values(function_tokens);
  5428. if (comma_separated_list.size() != 2)
  5429. return {};
  5430. TokenStream part_one_tokens { comma_separated_list[0] };
  5431. part_one_tokens.skip_whitespace();
  5432. if (!part_one_tokens.has_next_token())
  5433. return {};
  5434. auto current_token = part_one_tokens.next_token();
  5435. auto min_grid_size = parse_grid_size(current_token);
  5436. TokenStream part_two_tokens { comma_separated_list[1] };
  5437. part_two_tokens.skip_whitespace();
  5438. if (!part_two_tokens.has_next_token())
  5439. return {};
  5440. current_token = part_two_tokens.next_token();
  5441. auto max_grid_size = parse_grid_size(current_token);
  5442. if (min_grid_size.has_value() && max_grid_size.has_value()) {
  5443. // https://www.w3.org/TR/css-grid-2/#valdef-grid-template-columns-minmax
  5444. // As a maximum, a <flex> value sets the track’s flex factor; it is invalid as a minimum.
  5445. if (min_grid_size.value().is_flexible_length())
  5446. return {};
  5447. return CSS::GridMinMax(min_grid_size.value(), max_grid_size.value());
  5448. }
  5449. return {};
  5450. }
  5451. Optional<CSS::GridRepeat> Parser::parse_repeat(Vector<ComponentValue> const& component_values)
  5452. {
  5453. // https://www.w3.org/TR/css-grid-2/#repeat-syntax
  5454. // 7.2.3.1. Syntax of repeat()
  5455. // The generic form of the repeat() syntax is, approximately,
  5456. // repeat( [ <integer [1,∞]> | auto-fill | auto-fit ] , <track-list> )
  5457. auto is_auto_fill = false;
  5458. auto is_auto_fit = false;
  5459. auto function_tokens = TokenStream(component_values);
  5460. auto comma_separated_list = parse_a_comma_separated_list_of_component_values(function_tokens);
  5461. if (comma_separated_list.size() != 2)
  5462. return {};
  5463. // The first argument specifies the number of repetitions.
  5464. TokenStream part_one_tokens { comma_separated_list[0] };
  5465. part_one_tokens.skip_whitespace();
  5466. if (!part_one_tokens.has_next_token())
  5467. return {};
  5468. auto current_token = part_one_tokens.next_token().token();
  5469. auto repeat_count = 0;
  5470. if (current_token.is(Token::Type::Number) && current_token.number().is_integer() && current_token.number_value() > 0)
  5471. repeat_count = current_token.number_value();
  5472. else if (current_token.is(Token::Type::Ident) && current_token.ident().equals_ignoring_ascii_case("auto-fill"sv))
  5473. is_auto_fill = true;
  5474. else if (current_token.is(Token::Type::Ident) && current_token.ident().equals_ignoring_ascii_case("auto-fit"sv))
  5475. is_auto_fit = true;
  5476. // The second argument is a track list, which is repeated that number of times.
  5477. TokenStream part_two_tokens { comma_separated_list[1] };
  5478. part_two_tokens.skip_whitespace();
  5479. if (!part_two_tokens.has_next_token())
  5480. return {};
  5481. Vector<CSS::ExplicitGridTrack> repeat_params;
  5482. Vector<Vector<String>> line_names_list;
  5483. auto last_object_was_line_names = false;
  5484. while (part_two_tokens.has_next_token()) {
  5485. auto token = part_two_tokens.next_token();
  5486. Vector<String> line_names;
  5487. if (token.is_block()) {
  5488. if (last_object_was_line_names)
  5489. return {};
  5490. last_object_was_line_names = true;
  5491. if (!token.block().is_square())
  5492. return {};
  5493. TokenStream block_tokens { token.block().values() };
  5494. while (block_tokens.has_next_token()) {
  5495. auto current_block_token = block_tokens.next_token();
  5496. auto maybe_string = String::from_utf8(current_block_token.token().ident());
  5497. if (maybe_string.is_error())
  5498. return {};
  5499. line_names.append(maybe_string.value());
  5500. block_tokens.skip_whitespace();
  5501. }
  5502. line_names_list.append(line_names);
  5503. part_two_tokens.skip_whitespace();
  5504. } else {
  5505. last_object_was_line_names = false;
  5506. auto track_sizing_function = parse_track_sizing_function(token);
  5507. if (!track_sizing_function.has_value())
  5508. return {};
  5509. // However, there are some restrictions:
  5510. // The repeat() notation can’t be nested.
  5511. if (track_sizing_function.value().is_repeat())
  5512. return {};
  5513. // Automatic repetitions (auto-fill or auto-fit) cannot be combined with intrinsic or flexible sizes.
  5514. if (track_sizing_function.value().is_default() && track_sizing_function.value().grid_size().is_flexible_length() && (is_auto_fill || is_auto_fit))
  5515. return {};
  5516. repeat_params.append(track_sizing_function.value());
  5517. part_two_tokens.skip_whitespace();
  5518. }
  5519. }
  5520. while (line_names_list.size() <= repeat_params.size())
  5521. line_names_list.append({});
  5522. // Thus the precise syntax of the repeat() notation has several forms:
  5523. // <track-repeat> = repeat( [ <integer [1,∞]> ] , [ <line-names>? <track-size> ]+ <line-names>? )
  5524. // <auto-repeat> = repeat( [ auto-fill | auto-fit ] , [ <line-names>? <fixed-size> ]+ <line-names>? )
  5525. // <fixed-repeat> = repeat( [ <integer [1,∞]> ] , [ <line-names>? <fixed-size> ]+ <line-names>? )
  5526. // <name-repeat> = repeat( [ <integer [1,∞]> | auto-fill ], <line-names>+)
  5527. // The <track-repeat> variant can represent the repetition of any <track-size>, but is limited to a
  5528. // fixed number of repetitions.
  5529. // The <auto-repeat> variant can repeat automatically to fill a space, but requires definite track
  5530. // sizes so that the number of repetitions can be calculated. It can only appear once in the track
  5531. // list, but the same track list can also contain <fixed-repeat>s.
  5532. // The <name-repeat> variant is for adding line names to subgrids. It can only be used with the
  5533. // subgrid keyword and cannot specify track sizes, only line names.
  5534. // If a repeat() function that is not a <name-repeat> ends up placing two <line-names> adjacent to
  5535. // each other, the name lists are merged. For example, repeat(2, [a] 1fr [b]) is equivalent to [a]
  5536. // 1fr [b a] 1fr [b].
  5537. if (is_auto_fill)
  5538. return CSS::GridRepeat(CSS::GridTrackSizeList(repeat_params, line_names_list), CSS::GridRepeat::Type::AutoFill);
  5539. else if (is_auto_fit)
  5540. return CSS::GridRepeat(CSS::GridTrackSizeList(repeat_params, line_names_list), CSS::GridRepeat::Type::AutoFit);
  5541. else
  5542. return CSS::GridRepeat(CSS::GridTrackSizeList(repeat_params, line_names_list), repeat_count);
  5543. }
  5544. Optional<CSS::ExplicitGridTrack> Parser::parse_track_sizing_function(ComponentValue const& token)
  5545. {
  5546. if (token.is_function()) {
  5547. auto const& function_token = token.function();
  5548. if (function_token.name().equals_ignoring_ascii_case("repeat"sv)) {
  5549. auto maybe_repeat = parse_repeat(function_token.values());
  5550. if (maybe_repeat.has_value())
  5551. return CSS::ExplicitGridTrack(maybe_repeat.value());
  5552. else
  5553. return {};
  5554. } else if (function_token.name().equals_ignoring_ascii_case("minmax"sv)) {
  5555. auto maybe_min_max_value = parse_min_max(function_token.values());
  5556. if (maybe_min_max_value.has_value())
  5557. return CSS::ExplicitGridTrack(maybe_min_max_value.value());
  5558. else
  5559. return {};
  5560. }
  5561. return {};
  5562. } else if (token.is(Token::Type::Ident) && token.token().ident().equals_ignoring_ascii_case("auto"sv)) {
  5563. return CSS::ExplicitGridTrack(GridSize(Length::make_auto()));
  5564. } else if (token.is_block()) {
  5565. return {};
  5566. } else {
  5567. auto grid_size = parse_grid_size(token);
  5568. if (!grid_size.has_value())
  5569. return {};
  5570. return CSS::ExplicitGridTrack(grid_size.value());
  5571. }
  5572. }
  5573. RefPtr<StyleValue> Parser::parse_grid_track_size_list(Vector<ComponentValue> const& component_values, bool allow_separate_line_name_blocks)
  5574. {
  5575. Vector<CSS::ExplicitGridTrack> track_list;
  5576. Vector<Vector<String>> line_names_list;
  5577. auto last_object_was_line_names = false;
  5578. TokenStream tokens { component_values };
  5579. while (tokens.has_next_token()) {
  5580. auto token = tokens.next_token();
  5581. if (token.is_block()) {
  5582. if (last_object_was_line_names && !allow_separate_line_name_blocks)
  5583. return GridTrackSizeListStyleValue::make_auto();
  5584. last_object_was_line_names = true;
  5585. Vector<String> line_names;
  5586. if (!token.block().is_square())
  5587. return GridTrackSizeListStyleValue::make_auto();
  5588. TokenStream block_tokens { token.block().values() };
  5589. while (block_tokens.has_next_token()) {
  5590. auto current_block_token = block_tokens.next_token();
  5591. auto maybe_string = String::from_utf8(current_block_token.token().ident());
  5592. if (maybe_string.is_error())
  5593. return {};
  5594. line_names.append(maybe_string.value());
  5595. block_tokens.skip_whitespace();
  5596. }
  5597. line_names_list.append(line_names);
  5598. } else {
  5599. last_object_was_line_names = false;
  5600. auto track_sizing_function = parse_track_sizing_function(token);
  5601. if (!track_sizing_function.has_value())
  5602. return GridTrackSizeListStyleValue::make_auto();
  5603. // FIXME: Handle multiple repeat values (should combine them here, or remove
  5604. // any other ones if the first one is auto-fill, etc.)
  5605. track_list.append(track_sizing_function.value());
  5606. }
  5607. }
  5608. while (line_names_list.size() <= track_list.size())
  5609. line_names_list.append({});
  5610. return GridTrackSizeListStyleValue::create(CSS::GridTrackSizeList(track_list, line_names_list));
  5611. }
  5612. RefPtr<StyleValue> Parser::parse_grid_track_placement(Vector<ComponentValue> const& component_values)
  5613. {
  5614. // https://www.w3.org/TR/css-grid-2/#line-placement
  5615. // Line-based Placement: the grid-row-start, grid-column-start, grid-row-end, and grid-column-end properties
  5616. // <grid-line> =
  5617. // auto |
  5618. // <custom-ident> |
  5619. // [ <integer> && <custom-ident>? ] |
  5620. // [ span && [ <integer> || <custom-ident> ] ]
  5621. auto is_auto = [](Token token) -> bool {
  5622. if (token.is(Token::Type::Ident) && token.ident().equals_ignoring_ascii_case("auto"sv))
  5623. return true;
  5624. return false;
  5625. };
  5626. auto is_span = [](Token token) -> bool {
  5627. if (token.is(Token::Type::Ident) && token.ident().equals_ignoring_ascii_case("span"sv))
  5628. return true;
  5629. return false;
  5630. };
  5631. auto is_valid_integer = [](Token token) -> bool {
  5632. // An <integer> value of zero makes the declaration invalid.
  5633. if (token.is(Token::Type::Number) && token.number().is_integer() && token.number_value() != 0)
  5634. return true;
  5635. return false;
  5636. };
  5637. auto is_line_name = [](Token token) -> bool {
  5638. // The <custom-ident> additionally excludes the keywords span and auto.
  5639. if (token.is(Token::Type::Ident) && !token.ident().equals_ignoring_ascii_case("span"sv) && !token.ident().equals_ignoring_ascii_case("auto"sv))
  5640. return true;
  5641. return false;
  5642. };
  5643. auto tokens = TokenStream { component_values };
  5644. tokens.skip_whitespace();
  5645. auto current_token = tokens.next_token().token();
  5646. if (!tokens.has_next_token()) {
  5647. if (is_auto(current_token))
  5648. return GridTrackPlacementStyleValue::create(CSS::GridTrackPlacement());
  5649. if (is_span(current_token))
  5650. return GridTrackPlacementStyleValue::create(CSS::GridTrackPlacement(1, true));
  5651. if (is_valid_integer(current_token))
  5652. return GridTrackPlacementStyleValue::create(CSS::GridTrackPlacement(static_cast<int>(current_token.number_value())));
  5653. if (is_line_name(current_token)) {
  5654. auto maybe_string = String::from_utf8(current_token.ident());
  5655. if (!maybe_string.is_error())
  5656. return GridTrackPlacementStyleValue::create(CSS::GridTrackPlacement(maybe_string.value()));
  5657. }
  5658. return {};
  5659. }
  5660. auto span_value = false;
  5661. auto span_or_position_value = 0;
  5662. String line_name_value;
  5663. while (true) {
  5664. if (is_auto(current_token))
  5665. return {};
  5666. if (is_span(current_token)) {
  5667. if (span_value == false)
  5668. span_value = true;
  5669. else
  5670. return {};
  5671. }
  5672. if (is_valid_integer(current_token)) {
  5673. if (span_or_position_value == 0)
  5674. span_or_position_value = static_cast<int>(current_token.number_value());
  5675. else
  5676. return {};
  5677. }
  5678. if (is_line_name(current_token)) {
  5679. if (line_name_value.is_empty()) {
  5680. auto maybe_string = String::from_utf8(current_token.ident());
  5681. if (maybe_string.is_error())
  5682. return {};
  5683. line_name_value = maybe_string.release_value();
  5684. } else {
  5685. return {};
  5686. }
  5687. }
  5688. tokens.skip_whitespace();
  5689. if (tokens.has_next_token())
  5690. current_token = tokens.next_token().token();
  5691. else
  5692. break;
  5693. }
  5694. // Negative integers or zero are invalid.
  5695. if (span_value && span_or_position_value < 1)
  5696. return {};
  5697. // If the <integer> is omitted, it defaults to 1.
  5698. if (span_or_position_value == 0)
  5699. span_or_position_value = 1;
  5700. if (!line_name_value.is_empty())
  5701. return GridTrackPlacementStyleValue::create(CSS::GridTrackPlacement(line_name_value, span_or_position_value, span_value));
  5702. return GridTrackPlacementStyleValue::create(CSS::GridTrackPlacement(span_or_position_value, span_value));
  5703. }
  5704. RefPtr<StyleValue> Parser::parse_grid_track_placement_shorthand_value(Vector<ComponentValue> const& component_values)
  5705. {
  5706. auto tokens = TokenStream { component_values };
  5707. auto current_token = tokens.next_token().token();
  5708. Vector<ComponentValue> track_start_placement_tokens;
  5709. while (true) {
  5710. if (current_token.is(Token::Type::Delim) && current_token.delim() == "/"sv)
  5711. break;
  5712. track_start_placement_tokens.append(current_token);
  5713. if (!tokens.has_next_token())
  5714. break;
  5715. current_token = tokens.next_token().token();
  5716. }
  5717. Vector<ComponentValue> track_end_placement_tokens;
  5718. if (tokens.has_next_token()) {
  5719. current_token = tokens.next_token().token();
  5720. while (true) {
  5721. track_end_placement_tokens.append(current_token);
  5722. if (!tokens.has_next_token())
  5723. break;
  5724. current_token = tokens.next_token().token();
  5725. }
  5726. }
  5727. auto parsed_start_value = parse_grid_track_placement(track_start_placement_tokens);
  5728. if (parsed_start_value && track_end_placement_tokens.is_empty())
  5729. return GridTrackPlacementShorthandStyleValue::create(parsed_start_value.release_nonnull()->as_grid_track_placement().grid_track_placement());
  5730. auto parsed_end_value = parse_grid_track_placement(track_end_placement_tokens);
  5731. if (parsed_start_value && parsed_end_value)
  5732. return GridTrackPlacementShorthandStyleValue::create(parsed_start_value.release_nonnull()->as_grid_track_placement(), parsed_end_value.release_nonnull()->as_grid_track_placement());
  5733. return {};
  5734. }
  5735. // https://www.w3.org/TR/css-grid-2/#explicit-grid-shorthand
  5736. // 7.4. Explicit Grid Shorthand: the grid-template property
  5737. RefPtr<StyleValue> Parser::parse_grid_track_size_list_shorthand_value(Vector<ComponentValue> const& component_values)
  5738. {
  5739. // The grid-template property is a shorthand for setting grid-template-columns, grid-template-rows,
  5740. // and grid-template-areas in a single declaration. It has several distinct syntax forms:
  5741. // none
  5742. // - Sets all three properties to their initial values (none).
  5743. // <'grid-template-rows'> / <'grid-template-columns'>
  5744. // - Sets grid-template-rows and grid-template-columns to the specified values, respectively, and sets grid-template-areas to none.
  5745. // [ <line-names>? <string> <track-size>? <line-names>? ]+ [ / <explicit-track-list> ]?
  5746. // - Sets grid-template-areas to the strings listed.
  5747. // - Sets grid-template-rows to the <track-size>s following each string (filling in auto for any missing sizes),
  5748. // and splicing in the named lines defined before/after each size.
  5749. // - Sets grid-template-columns to the track listing specified after the slash (or none, if not specified).
  5750. Vector<ComponentValue> template_rows_tokens;
  5751. Vector<ComponentValue> template_columns_tokens;
  5752. Vector<ComponentValue> template_area_tokens;
  5753. int forward_slash_index = -1;
  5754. for (size_t x = 0; x < component_values.size(); x++) {
  5755. if (component_values[x].is_token() && component_values[x].token().is(Token::Type::Delim) && component_values[x].token().delim() == "/"sv) {
  5756. forward_slash_index = x;
  5757. break;
  5758. }
  5759. }
  5760. for (size_t x = 0; x < (forward_slash_index > -1 ? forward_slash_index : component_values.size()); x++) {
  5761. if (component_values[x].is_token() && component_values[x].token().is(Token::Type::String))
  5762. template_area_tokens.append(component_values[x]);
  5763. else
  5764. template_rows_tokens.append(component_values[x]);
  5765. }
  5766. if (forward_slash_index > -1) {
  5767. for (size_t x = forward_slash_index + 1; x < component_values.size(); x++)
  5768. template_columns_tokens.append(component_values[x]);
  5769. }
  5770. auto parsed_template_areas_values = parse_grid_template_areas_value(template_area_tokens);
  5771. auto parsed_template_rows_values = parse_grid_track_size_list(template_rows_tokens, true);
  5772. auto parsed_template_columns_values = parse_grid_track_size_list(template_columns_tokens);
  5773. return GridTrackSizeListShorthandStyleValue::create(
  5774. parsed_template_areas_values.release_nonnull()->as_grid_template_area(),
  5775. parsed_template_rows_values.release_nonnull()->as_grid_track_size_list(),
  5776. parsed_template_columns_values.release_nonnull()->as_grid_track_size_list());
  5777. }
  5778. RefPtr<StyleValue> Parser::parse_grid_area_shorthand_value(Vector<ComponentValue> const& component_values)
  5779. {
  5780. auto tokens = TokenStream { component_values };
  5781. Token current_token;
  5782. auto parse_placement_tokens = [&](Vector<ComponentValue>& placement_tokens, bool check_for_delimiter = true) -> void {
  5783. current_token = tokens.next_token().token();
  5784. while (true) {
  5785. if (check_for_delimiter && current_token.is(Token::Type::Delim) && current_token.delim() == "/"sv)
  5786. break;
  5787. placement_tokens.append(current_token);
  5788. tokens.skip_whitespace();
  5789. if (!tokens.has_next_token())
  5790. break;
  5791. current_token = tokens.next_token().token();
  5792. }
  5793. };
  5794. Vector<ComponentValue> row_start_placement_tokens;
  5795. parse_placement_tokens(row_start_placement_tokens);
  5796. Vector<ComponentValue> column_start_placement_tokens;
  5797. if (tokens.has_next_token())
  5798. parse_placement_tokens(column_start_placement_tokens);
  5799. Vector<ComponentValue> row_end_placement_tokens;
  5800. if (tokens.has_next_token())
  5801. parse_placement_tokens(row_end_placement_tokens);
  5802. Vector<ComponentValue> column_end_placement_tokens;
  5803. if (tokens.has_next_token())
  5804. parse_placement_tokens(column_end_placement_tokens, false);
  5805. // https://www.w3.org/TR/css-grid-2/#placement-shorthands
  5806. // The grid-area property is a shorthand for grid-row-start, grid-column-start, grid-row-end and
  5807. // grid-column-end.
  5808. auto row_start_style_value = parse_grid_track_placement(row_start_placement_tokens);
  5809. auto column_start_style_value = parse_grid_track_placement(column_start_placement_tokens);
  5810. auto row_end_style_value = parse_grid_track_placement(row_end_placement_tokens);
  5811. auto column_end_style_value = parse_grid_track_placement(column_end_placement_tokens);
  5812. // If four <grid-line> values are specified, grid-row-start is set to the first value, grid-column-start
  5813. // is set to the second value, grid-row-end is set to the third value, and grid-column-end is set to the
  5814. // fourth value.
  5815. auto row_start = GridTrackPlacement::make_auto();
  5816. auto column_start = GridTrackPlacement::make_auto();
  5817. auto row_end = GridTrackPlacement::make_auto();
  5818. auto column_end = GridTrackPlacement::make_auto();
  5819. if (row_start_style_value)
  5820. row_start = row_start_style_value.release_nonnull()->as_grid_track_placement().grid_track_placement();
  5821. // When grid-column-start is omitted, if grid-row-start is a <custom-ident>, all four longhands are set to
  5822. // that value. Otherwise, it is set to auto.
  5823. if (column_start_style_value)
  5824. column_start = column_start_style_value.release_nonnull()->as_grid_track_placement().grid_track_placement();
  5825. else
  5826. column_start = row_start;
  5827. // When grid-row-end is omitted, if grid-row-start is a <custom-ident>, grid-row-end is set to that
  5828. // <custom-ident>; otherwise, it is set to auto.
  5829. if (row_end_style_value)
  5830. row_end = row_end_style_value.release_nonnull()->as_grid_track_placement().grid_track_placement();
  5831. else
  5832. row_end = column_start;
  5833. // When grid-column-end is omitted, if grid-column-start is a <custom-ident>, grid-column-end is set to
  5834. // that <custom-ident>; otherwise, it is set to auto.
  5835. if (column_end_style_value)
  5836. column_end = column_end_style_value.release_nonnull()->as_grid_track_placement().grid_track_placement();
  5837. else
  5838. column_end = row_end;
  5839. return GridAreaShorthandStyleValue::create(row_start, column_start, row_end, column_end);
  5840. }
  5841. RefPtr<StyleValue> Parser::parse_grid_template_areas_value(Vector<ComponentValue> const& component_values)
  5842. {
  5843. Vector<Vector<String>> grid_area_rows;
  5844. for (auto& component_value : component_values) {
  5845. Vector<String> grid_area_columns;
  5846. if (component_value.is(Token::Type::String)) {
  5847. auto const parts = String::from_utf8(component_value.token().string()).release_value_but_fixme_should_propagate_errors().split(' ').release_value_but_fixme_should_propagate_errors();
  5848. for (auto& part : parts) {
  5849. grid_area_columns.append(part);
  5850. }
  5851. }
  5852. grid_area_rows.append(move(grid_area_columns));
  5853. }
  5854. return GridTemplateAreaStyleValue::create(grid_area_rows);
  5855. }
  5856. Parser::ParseErrorOr<NonnullRefPtr<StyleValue>> Parser::parse_css_value(PropertyID property_id, TokenStream<ComponentValue>& tokens)
  5857. {
  5858. auto function_contains_var_or_attr = [](Function const& function, auto&& recurse) -> bool {
  5859. if (function.name().equals_ignoring_ascii_case("var"sv) || function.name().equals_ignoring_ascii_case("attr"sv))
  5860. return true;
  5861. for (auto const& token : function.values()) {
  5862. if (token.is_function() && recurse(token.function(), recurse))
  5863. return true;
  5864. }
  5865. return false;
  5866. };
  5867. auto block_contains_var_or_attr = [function_contains_var_or_attr](Block const& block, auto&& recurse) -> bool {
  5868. for (auto const& token : block.values()) {
  5869. if (token.is_function() && function_contains_var_or_attr(token.function(), function_contains_var_or_attr))
  5870. return true;
  5871. if (token.is_block() && recurse(token.block(), recurse))
  5872. return true;
  5873. }
  5874. return false;
  5875. };
  5876. m_context.set_current_property_id(property_id);
  5877. Vector<ComponentValue> component_values;
  5878. bool contains_var_or_attr = false;
  5879. while (tokens.has_next_token()) {
  5880. auto const& token = tokens.next_token();
  5881. if (token.is(Token::Type::Semicolon)) {
  5882. tokens.reconsume_current_input_token();
  5883. break;
  5884. }
  5885. if (property_id != PropertyID::Custom) {
  5886. if (token.is(Token::Type::Whitespace))
  5887. continue;
  5888. if (token.is(Token::Type::Ident) && has_ignored_vendor_prefix(token.token().ident()))
  5889. return ParseError::IncludesIgnoredVendorPrefix;
  5890. }
  5891. if (!contains_var_or_attr) {
  5892. if (token.is_function() && function_contains_var_or_attr(token.function(), function_contains_var_or_attr))
  5893. contains_var_or_attr = true;
  5894. else if (token.is_block() && block_contains_var_or_attr(token.block(), block_contains_var_or_attr))
  5895. contains_var_or_attr = true;
  5896. }
  5897. component_values.append(token);
  5898. }
  5899. if (property_id == PropertyID::Custom || contains_var_or_attr)
  5900. return { UnresolvedStyleValue::create(move(component_values), contains_var_or_attr) };
  5901. if (component_values.is_empty())
  5902. return ParseError::SyntaxError;
  5903. if (component_values.size() == 1) {
  5904. if (auto parsed_value = parse_builtin_value(component_values.first()))
  5905. return parsed_value.release_nonnull();
  5906. }
  5907. // Special-case property handling
  5908. switch (property_id) {
  5909. case PropertyID::BackdropFilter:
  5910. if (auto parsed_value = parse_filter_value_list_value(component_values))
  5911. return parsed_value.release_nonnull();
  5912. return ParseError::SyntaxError;
  5913. case PropertyID::Background:
  5914. if (auto parsed_value = parse_background_value(component_values))
  5915. return parsed_value.release_nonnull();
  5916. return ParseError::SyntaxError;
  5917. case PropertyID::BackgroundAttachment:
  5918. case PropertyID::BackgroundClip:
  5919. case PropertyID::BackgroundImage:
  5920. case PropertyID::BackgroundOrigin:
  5921. if (auto parsed_value = parse_simple_comma_separated_value_list(component_values))
  5922. return parsed_value.release_nonnull();
  5923. return ParseError::SyntaxError;
  5924. case PropertyID::BackgroundPosition:
  5925. if (auto parsed_value = parse_comma_separated_value_list(component_values, [this](auto& tokens) { return parse_single_background_position_value(tokens); }))
  5926. return parsed_value.release_nonnull();
  5927. return ParseError::SyntaxError;
  5928. case PropertyID::BackgroundPositionX:
  5929. case PropertyID::BackgroundPositionY:
  5930. if (auto parsed_value = parse_comma_separated_value_list(component_values, [this, property_id](auto& tokens) { return parse_single_background_position_x_or_y_value(tokens, property_id); }))
  5931. return parsed_value.release_nonnull();
  5932. return ParseError::SyntaxError;
  5933. case PropertyID::BackgroundRepeat:
  5934. if (auto parsed_value = parse_comma_separated_value_list(component_values, [this](auto& tokens) { return parse_single_background_repeat_value(tokens); }))
  5935. return parsed_value.release_nonnull();
  5936. return ParseError::SyntaxError;
  5937. case PropertyID::BackgroundSize:
  5938. if (auto parsed_value = parse_comma_separated_value_list(component_values, [this](auto& tokens) { return parse_single_background_size_value(tokens); }))
  5939. return parsed_value.release_nonnull();
  5940. return ParseError::SyntaxError;
  5941. case PropertyID::Border:
  5942. case PropertyID::BorderBottom:
  5943. case PropertyID::BorderLeft:
  5944. case PropertyID::BorderRight:
  5945. case PropertyID::BorderTop:
  5946. if (auto parsed_value = parse_border_value(component_values))
  5947. return parsed_value.release_nonnull();
  5948. return ParseError::SyntaxError;
  5949. case PropertyID::BorderTopLeftRadius:
  5950. case PropertyID::BorderTopRightRadius:
  5951. case PropertyID::BorderBottomRightRadius:
  5952. case PropertyID::BorderBottomLeftRadius:
  5953. if (auto parsed_value = parse_border_radius_value(component_values))
  5954. return parsed_value.release_nonnull();
  5955. return ParseError::SyntaxError;
  5956. case PropertyID::BorderRadius:
  5957. if (auto parsed_value = parse_border_radius_shorthand_value(component_values))
  5958. return parsed_value.release_nonnull();
  5959. return ParseError::SyntaxError;
  5960. case PropertyID::BoxShadow:
  5961. if (auto parsed_value = parse_shadow_value(component_values, AllowInsetKeyword::Yes))
  5962. return parsed_value.release_nonnull();
  5963. return ParseError::SyntaxError;
  5964. case PropertyID::Content:
  5965. if (auto parsed_value = parse_content_value(component_values))
  5966. return parsed_value.release_nonnull();
  5967. return ParseError::SyntaxError;
  5968. case PropertyID::Display:
  5969. if (auto parsed_value = parse_display_value(component_values))
  5970. return parsed_value.release_nonnull();
  5971. return ParseError::SyntaxError;
  5972. case PropertyID::Flex:
  5973. if (auto parsed_value = parse_flex_value(component_values))
  5974. return parsed_value.release_nonnull();
  5975. return ParseError::SyntaxError;
  5976. case PropertyID::FlexFlow:
  5977. if (auto parsed_value = parse_flex_flow_value(component_values))
  5978. return parsed_value.release_nonnull();
  5979. return ParseError::SyntaxError;
  5980. case PropertyID::Font:
  5981. if (auto parsed_value = parse_font_value(component_values))
  5982. return parsed_value.release_nonnull();
  5983. return ParseError::SyntaxError;
  5984. case PropertyID::FontFamily:
  5985. if (auto parsed_value = parse_font_family_value(component_values))
  5986. return parsed_value.release_nonnull();
  5987. return ParseError::SyntaxError;
  5988. case PropertyID::GridColumn:
  5989. if (auto parsed_value = parse_grid_track_placement_shorthand_value(component_values))
  5990. return parsed_value.release_nonnull();
  5991. return ParseError::SyntaxError;
  5992. case PropertyID::GridArea:
  5993. if (auto parsed_value = parse_grid_area_shorthand_value(component_values))
  5994. return parsed_value.release_nonnull();
  5995. return ParseError::SyntaxError;
  5996. case PropertyID::GridTemplateAreas:
  5997. if (auto parsed_value = parse_grid_template_areas_value(component_values))
  5998. return parsed_value.release_nonnull();
  5999. return ParseError::SyntaxError;
  6000. case PropertyID::GridColumnEnd:
  6001. if (auto parsed_value = parse_grid_track_placement(component_values))
  6002. return parsed_value.release_nonnull();
  6003. return ParseError::SyntaxError;
  6004. case PropertyID::GridColumnStart:
  6005. if (auto parsed_value = parse_grid_track_placement(component_values))
  6006. return parsed_value.release_nonnull();
  6007. return ParseError::SyntaxError;
  6008. case PropertyID::GridRow:
  6009. if (auto parsed_value = parse_grid_track_placement_shorthand_value(component_values))
  6010. return parsed_value.release_nonnull();
  6011. return ParseError::SyntaxError;
  6012. case PropertyID::GridRowEnd:
  6013. if (auto parsed_value = parse_grid_track_placement(component_values))
  6014. return parsed_value.release_nonnull();
  6015. return ParseError::SyntaxError;
  6016. case PropertyID::GridRowStart:
  6017. if (auto parsed_value = parse_grid_track_placement(component_values))
  6018. return parsed_value.release_nonnull();
  6019. return ParseError::SyntaxError;
  6020. case PropertyID::GridTemplate:
  6021. if (auto parsed_value = parse_grid_track_size_list_shorthand_value(component_values))
  6022. return parsed_value.release_nonnull();
  6023. return ParseError::SyntaxError;
  6024. case PropertyID::GridTemplateColumns:
  6025. if (auto parsed_value = parse_grid_track_size_list(component_values))
  6026. return parsed_value.release_nonnull();
  6027. return ParseError::SyntaxError;
  6028. case PropertyID::GridTemplateRows:
  6029. if (auto parsed_value = parse_grid_track_size_list(component_values))
  6030. return parsed_value.release_nonnull();
  6031. return ParseError::SyntaxError;
  6032. case PropertyID::ListStyle:
  6033. if (auto parsed_value = parse_list_style_value(component_values))
  6034. return parsed_value.release_nonnull();
  6035. return ParseError::SyntaxError;
  6036. case PropertyID::Overflow:
  6037. if (auto parsed_value = parse_overflow_value(component_values))
  6038. return parsed_value.release_nonnull();
  6039. return ParseError::SyntaxError;
  6040. case PropertyID::TextDecoration:
  6041. if (auto parsed_value = parse_text_decoration_value(component_values))
  6042. return parsed_value.release_nonnull();
  6043. return ParseError::SyntaxError;
  6044. case PropertyID::TextDecorationLine: {
  6045. TokenStream value_tokens { component_values };
  6046. auto parsed_value = parse_text_decoration_line_value(value_tokens);
  6047. if (parsed_value && !value_tokens.has_next_token())
  6048. return parsed_value.release_nonnull();
  6049. return ParseError::SyntaxError;
  6050. }
  6051. case PropertyID::TextShadow:
  6052. if (auto parsed_value = parse_shadow_value(component_values, AllowInsetKeyword::No))
  6053. return parsed_value.release_nonnull();
  6054. return ParseError::SyntaxError;
  6055. case PropertyID::Transform:
  6056. if (auto parsed_value = parse_transform_value(component_values))
  6057. return parsed_value.release_nonnull();
  6058. return ParseError::SyntaxError;
  6059. case PropertyID::TransformOrigin:
  6060. if (auto parse_value = parse_transform_origin_value(component_values))
  6061. return parse_value.release_nonnull();
  6062. return ParseError ::SyntaxError;
  6063. case PropertyID::Fill:
  6064. if (component_values.size() == 1) {
  6065. if (auto parsed_url = parse_url_value(component_values.first()))
  6066. return parsed_url.release_nonnull();
  6067. }
  6068. // Allow normal value parsing to continue.
  6069. // URL is done here to avoid ambiguity with images.
  6070. break;
  6071. default:
  6072. break;
  6073. }
  6074. if (component_values.size() == 1) {
  6075. if (auto parsed_value = parse_css_value(component_values.first())) {
  6076. if (property_accepts_value(property_id, *parsed_value))
  6077. return parsed_value.release_nonnull();
  6078. }
  6079. return ParseError::SyntaxError;
  6080. }
  6081. // We have multiple values, so treat them as a StyleValueList.
  6082. if (property_maximum_value_count(property_id) > 1) {
  6083. StyleValueVector parsed_values;
  6084. for (auto& component_value : component_values) {
  6085. auto parsed_value = parse_css_value(component_value);
  6086. if (!parsed_value || !property_accepts_value(property_id, *parsed_value))
  6087. return ParseError::SyntaxError;
  6088. parsed_values.append(parsed_value.release_nonnull());
  6089. }
  6090. if (!parsed_values.is_empty() && parsed_values.size() <= property_maximum_value_count(property_id))
  6091. return { StyleValueList::create(move(parsed_values), StyleValueList::Separator::Space) };
  6092. }
  6093. return ParseError::SyntaxError;
  6094. }
  6095. RefPtr<StyleValue> Parser::parse_css_value(ComponentValue const& component_value)
  6096. {
  6097. if (auto builtin = parse_builtin_value(component_value))
  6098. return builtin;
  6099. if (auto dynamic = parse_dynamic_value(component_value))
  6100. return dynamic;
  6101. // We parse colors before numbers, to catch hashless hex colors.
  6102. if (auto color = parse_color_value(component_value))
  6103. return color;
  6104. if (auto dimension = parse_dimension_value(component_value))
  6105. return dimension;
  6106. if (auto numeric = parse_numeric_value(component_value))
  6107. return numeric;
  6108. if (auto identifier = parse_identifier_value(component_value))
  6109. return identifier;
  6110. if (auto string = parse_string_value(component_value))
  6111. return string;
  6112. if (auto image = parse_image_value(component_value))
  6113. return image;
  6114. if (auto rect = parse_rect_value(component_value))
  6115. return rect;
  6116. return {};
  6117. }
  6118. Optional<Selector::SimpleSelector::ANPlusBPattern> Parser::parse_a_n_plus_b_pattern(TokenStream<ComponentValue>& values)
  6119. {
  6120. auto transaction = values.begin_transaction();
  6121. auto syntax_error = [&]() -> Optional<Selector::SimpleSelector::ANPlusBPattern> {
  6122. if constexpr (CSS_PARSER_DEBUG) {
  6123. dbgln_if(CSS_PARSER_DEBUG, "Invalid An+B value:");
  6124. values.dump_all_tokens();
  6125. }
  6126. return {};
  6127. };
  6128. auto is_n = [](ComponentValue const& value) -> bool {
  6129. return value.is(Token::Type::Ident) && value.token().ident().equals_ignoring_ascii_case("n"sv);
  6130. };
  6131. auto is_ndash = [](ComponentValue const& value) -> bool {
  6132. return value.is(Token::Type::Ident) && value.token().ident().equals_ignoring_ascii_case("n-"sv);
  6133. };
  6134. auto is_dashn = [](ComponentValue const& value) -> bool {
  6135. return value.is(Token::Type::Ident) && value.token().ident().equals_ignoring_ascii_case("-n"sv);
  6136. };
  6137. auto is_dashndash = [](ComponentValue const& value) -> bool {
  6138. return value.is(Token::Type::Ident) && value.token().ident().equals_ignoring_ascii_case("-n-"sv);
  6139. };
  6140. auto is_delim = [](ComponentValue const& value, u32 delim) -> bool {
  6141. return value.is(Token::Type::Delim) && value.token().delim() == delim;
  6142. };
  6143. auto is_sign = [](ComponentValue const& value) -> bool {
  6144. return value.is(Token::Type::Delim) && (value.token().delim() == '+' || value.token().delim() == '-');
  6145. };
  6146. auto is_n_dimension = [](ComponentValue const& value) -> bool {
  6147. if (!value.is(Token::Type::Dimension))
  6148. return false;
  6149. if (!value.token().number().is_integer())
  6150. return false;
  6151. if (!value.token().dimension_unit().equals_ignoring_ascii_case("n"sv))
  6152. return false;
  6153. return true;
  6154. };
  6155. auto is_ndash_dimension = [](ComponentValue const& value) -> bool {
  6156. if (!value.is(Token::Type::Dimension))
  6157. return false;
  6158. if (!value.token().number().is_integer())
  6159. return false;
  6160. if (!value.token().dimension_unit().equals_ignoring_ascii_case("n-"sv))
  6161. return false;
  6162. return true;
  6163. };
  6164. auto is_ndashdigit_dimension = [](ComponentValue const& value) -> bool {
  6165. if (!value.is(Token::Type::Dimension))
  6166. return false;
  6167. if (!value.token().number().is_integer())
  6168. return false;
  6169. auto dimension_unit = value.token().dimension_unit();
  6170. if (!dimension_unit.starts_with("n-"sv, CaseSensitivity::CaseInsensitive))
  6171. return false;
  6172. for (size_t i = 2; i < dimension_unit.length(); ++i) {
  6173. if (!is_ascii_digit(dimension_unit[i]))
  6174. return false;
  6175. }
  6176. return true;
  6177. };
  6178. auto is_ndashdigit_ident = [](ComponentValue const& value) -> bool {
  6179. if (!value.is(Token::Type::Ident))
  6180. return false;
  6181. auto ident = value.token().ident();
  6182. if (!ident.starts_with("n-"sv, CaseSensitivity::CaseInsensitive))
  6183. return false;
  6184. for (size_t i = 2; i < ident.length(); ++i) {
  6185. if (!is_ascii_digit(ident[i]))
  6186. return false;
  6187. }
  6188. return true;
  6189. };
  6190. auto is_dashndashdigit_ident = [](ComponentValue const& value) -> bool {
  6191. if (!value.is(Token::Type::Ident))
  6192. return false;
  6193. auto ident = value.token().ident();
  6194. if (!ident.starts_with("-n-"sv, CaseSensitivity::CaseInsensitive))
  6195. return false;
  6196. if (ident.length() == 3)
  6197. return false;
  6198. for (size_t i = 3; i < ident.length(); ++i) {
  6199. if (!is_ascii_digit(ident[i]))
  6200. return false;
  6201. }
  6202. return true;
  6203. };
  6204. auto is_integer = [](ComponentValue const& value) -> bool {
  6205. return value.is(Token::Type::Number) && value.token().number().is_integer();
  6206. };
  6207. auto is_signed_integer = [](ComponentValue const& value) -> bool {
  6208. return value.is(Token::Type::Number) && value.token().number().is_integer_with_explicit_sign();
  6209. };
  6210. auto is_signless_integer = [](ComponentValue const& value) -> bool {
  6211. return value.is(Token::Type::Number) && !value.token().number().is_integer_with_explicit_sign();
  6212. };
  6213. // https://www.w3.org/TR/css-syntax-3/#the-anb-type
  6214. // Unfortunately these can't be in the same order as in the spec.
  6215. values.skip_whitespace();
  6216. auto const& first_value = values.next_token();
  6217. // odd | even
  6218. if (first_value.is(Token::Type::Ident)) {
  6219. auto ident = first_value.token().ident();
  6220. if (ident.equals_ignoring_ascii_case("odd"sv)) {
  6221. transaction.commit();
  6222. return Selector::SimpleSelector::ANPlusBPattern { 2, 1 };
  6223. }
  6224. if (ident.equals_ignoring_ascii_case("even"sv)) {
  6225. transaction.commit();
  6226. return Selector::SimpleSelector::ANPlusBPattern { 2, 0 };
  6227. }
  6228. }
  6229. // <integer>
  6230. if (is_integer(first_value)) {
  6231. int b = first_value.token().to_integer();
  6232. transaction.commit();
  6233. return Selector::SimpleSelector::ANPlusBPattern { 0, b };
  6234. }
  6235. // <n-dimension>
  6236. // <n-dimension> <signed-integer>
  6237. // <n-dimension> ['+' | '-'] <signless-integer>
  6238. if (is_n_dimension(first_value)) {
  6239. int a = first_value.token().dimension_value_int();
  6240. values.skip_whitespace();
  6241. // <n-dimension> <signed-integer>
  6242. if (is_signed_integer(values.peek_token())) {
  6243. int b = values.next_token().token().to_integer();
  6244. transaction.commit();
  6245. return Selector::SimpleSelector::ANPlusBPattern { a, b };
  6246. }
  6247. // <n-dimension> ['+' | '-'] <signless-integer>
  6248. {
  6249. auto child_transaction = transaction.create_child();
  6250. auto const& second_value = values.next_token();
  6251. values.skip_whitespace();
  6252. auto const& third_value = values.next_token();
  6253. if (is_sign(second_value) && is_signless_integer(third_value)) {
  6254. int b = third_value.token().to_integer() * (is_delim(second_value, '+') ? 1 : -1);
  6255. child_transaction.commit();
  6256. return Selector::SimpleSelector::ANPlusBPattern { a, b };
  6257. }
  6258. }
  6259. // <n-dimension>
  6260. transaction.commit();
  6261. return Selector::SimpleSelector::ANPlusBPattern { a, 0 };
  6262. }
  6263. // <ndash-dimension> <signless-integer>
  6264. if (is_ndash_dimension(first_value)) {
  6265. values.skip_whitespace();
  6266. auto const& second_value = values.next_token();
  6267. if (is_signless_integer(second_value)) {
  6268. int a = first_value.token().dimension_value_int();
  6269. int b = -second_value.token().to_integer();
  6270. transaction.commit();
  6271. return Selector::SimpleSelector::ANPlusBPattern { a, b };
  6272. }
  6273. return syntax_error();
  6274. }
  6275. // <ndashdigit-dimension>
  6276. if (is_ndashdigit_dimension(first_value)) {
  6277. auto const& dimension = first_value.token();
  6278. int a = dimension.dimension_value_int();
  6279. auto maybe_b = dimension.dimension_unit().substring_view(1).to_int();
  6280. if (maybe_b.has_value()) {
  6281. transaction.commit();
  6282. return Selector::SimpleSelector::ANPlusBPattern { a, maybe_b.value() };
  6283. }
  6284. return syntax_error();
  6285. }
  6286. // <dashndashdigit-ident>
  6287. if (is_dashndashdigit_ident(first_value)) {
  6288. auto maybe_b = first_value.token().ident().substring_view(2).to_int();
  6289. if (maybe_b.has_value()) {
  6290. transaction.commit();
  6291. return Selector::SimpleSelector::ANPlusBPattern { -1, maybe_b.value() };
  6292. }
  6293. return syntax_error();
  6294. }
  6295. // -n
  6296. // -n <signed-integer>
  6297. // -n ['+' | '-'] <signless-integer>
  6298. if (is_dashn(first_value)) {
  6299. values.skip_whitespace();
  6300. // -n <signed-integer>
  6301. if (is_signed_integer(values.peek_token())) {
  6302. int b = values.next_token().token().to_integer();
  6303. transaction.commit();
  6304. return Selector::SimpleSelector::ANPlusBPattern { -1, b };
  6305. }
  6306. // -n ['+' | '-'] <signless-integer>
  6307. {
  6308. auto child_transaction = transaction.create_child();
  6309. auto const& second_value = values.next_token();
  6310. values.skip_whitespace();
  6311. auto const& third_value = values.next_token();
  6312. if (is_sign(second_value) && is_signless_integer(third_value)) {
  6313. int b = third_value.token().to_integer() * (is_delim(second_value, '+') ? 1 : -1);
  6314. child_transaction.commit();
  6315. return Selector::SimpleSelector::ANPlusBPattern { -1, b };
  6316. }
  6317. }
  6318. // -n
  6319. transaction.commit();
  6320. return Selector::SimpleSelector::ANPlusBPattern { -1, 0 };
  6321. }
  6322. // -n- <signless-integer>
  6323. if (is_dashndash(first_value)) {
  6324. values.skip_whitespace();
  6325. auto const& second_value = values.next_token();
  6326. if (is_signless_integer(second_value)) {
  6327. int b = -second_value.token().to_integer();
  6328. transaction.commit();
  6329. return Selector::SimpleSelector::ANPlusBPattern { -1, b };
  6330. }
  6331. return syntax_error();
  6332. }
  6333. // All that's left now are these:
  6334. // '+'?† n
  6335. // '+'?† n <signed-integer>
  6336. // '+'?† n ['+' | '-'] <signless-integer>
  6337. // '+'?† n- <signless-integer>
  6338. // '+'?† <ndashdigit-ident>
  6339. // In all of these cases, the + is optional, and has no effect.
  6340. // So, we just skip the +, and carry on.
  6341. if (!is_delim(first_value, '+')) {
  6342. values.reconsume_current_input_token();
  6343. // We do *not* skip whitespace here.
  6344. }
  6345. auto const& first_after_plus = values.next_token();
  6346. // '+'?† n
  6347. // '+'?† n <signed-integer>
  6348. // '+'?† n ['+' | '-'] <signless-integer>
  6349. if (is_n(first_after_plus)) {
  6350. values.skip_whitespace();
  6351. // '+'?† n <signed-integer>
  6352. if (is_signed_integer(values.peek_token())) {
  6353. int b = values.next_token().token().to_integer();
  6354. transaction.commit();
  6355. return Selector::SimpleSelector::ANPlusBPattern { 1, b };
  6356. }
  6357. // '+'?† n ['+' | '-'] <signless-integer>
  6358. {
  6359. auto child_transaction = transaction.create_child();
  6360. auto const& second_value = values.next_token();
  6361. values.skip_whitespace();
  6362. auto const& third_value = values.next_token();
  6363. if (is_sign(second_value) && is_signless_integer(third_value)) {
  6364. int b = third_value.token().to_integer() * (is_delim(second_value, '+') ? 1 : -1);
  6365. child_transaction.commit();
  6366. return Selector::SimpleSelector::ANPlusBPattern { 1, b };
  6367. }
  6368. }
  6369. // '+'?† n
  6370. transaction.commit();
  6371. return Selector::SimpleSelector::ANPlusBPattern { 1, 0 };
  6372. }
  6373. // '+'?† n- <signless-integer>
  6374. if (is_ndash(first_after_plus)) {
  6375. values.skip_whitespace();
  6376. auto const& second_value = values.next_token();
  6377. if (is_signless_integer(second_value)) {
  6378. int b = -second_value.token().to_integer();
  6379. transaction.commit();
  6380. return Selector::SimpleSelector::ANPlusBPattern { 1, b };
  6381. }
  6382. return syntax_error();
  6383. }
  6384. // '+'?† <ndashdigit-ident>
  6385. if (is_ndashdigit_ident(first_after_plus)) {
  6386. auto maybe_b = first_after_plus.token().ident().substring_view(1).to_int();
  6387. if (maybe_b.has_value()) {
  6388. transaction.commit();
  6389. return Selector::SimpleSelector::ANPlusBPattern { 1, maybe_b.value() };
  6390. }
  6391. return syntax_error();
  6392. }
  6393. return syntax_error();
  6394. }
  6395. class UnparsedCalculationNode final : public CalculationNode {
  6396. public:
  6397. static ErrorOr<NonnullOwnPtr<UnparsedCalculationNode>> create(ComponentValue component_value)
  6398. {
  6399. return adopt_nonnull_own_or_enomem(new (nothrow) UnparsedCalculationNode(move(component_value)));
  6400. }
  6401. virtual ~UnparsedCalculationNode() = default;
  6402. ComponentValue& component_value() { return m_component_value; }
  6403. virtual ErrorOr<String> to_string() const override { VERIFY_NOT_REACHED(); }
  6404. virtual Optional<CalculatedStyleValue::ResolvedType> resolved_type() const override { VERIFY_NOT_REACHED(); }
  6405. virtual bool contains_percentage() const override { VERIFY_NOT_REACHED(); }
  6406. virtual CalculatedStyleValue::CalculationResult resolve(Layout::Node const*, CalculatedStyleValue::PercentageBasis const&) const override { VERIFY_NOT_REACHED(); }
  6407. virtual ErrorOr<void> dump(StringBuilder& builder, int indent) const override
  6408. {
  6409. return builder.try_appendff("{: >{}}UNPARSED({})\n", "", indent, TRY(m_component_value.to_debug_string()));
  6410. }
  6411. private:
  6412. UnparsedCalculationNode(ComponentValue component_value)
  6413. : CalculationNode(Type::Unparsed)
  6414. , m_component_value(move(component_value))
  6415. {
  6416. }
  6417. ComponentValue m_component_value;
  6418. };
  6419. // https://www.w3.org/TR/css-values-4/#parse-a-calculation
  6420. ErrorOr<OwnPtr<CalculationNode>> Parser::parse_a_calculation(Vector<ComponentValue> const& original_values)
  6421. {
  6422. // 1. Discard any <whitespace-token>s from values.
  6423. // 2. An item in values is an “operator” if it’s a <delim-token> with the value "+", "-", "*", or "/". Otherwise, it’s a “value”.
  6424. struct Operator {
  6425. char delim;
  6426. };
  6427. using Value = Variant<NonnullOwnPtr<CalculationNode>, Operator>;
  6428. Vector<Value> values;
  6429. for (auto& value : original_values) {
  6430. if (value.is(Token::Type::Whitespace))
  6431. continue;
  6432. if (value.is(Token::Type::Delim)) {
  6433. if (first_is_one_of(value.token().delim(), static_cast<u32>('+'), static_cast<u32>('-'), static_cast<u32>('*'), static_cast<u32>('/'))) {
  6434. // NOTE: Sequential operators are invalid syntax.
  6435. if (!values.is_empty() && values.last().has<Operator>())
  6436. return nullptr;
  6437. TRY(values.try_append(Operator { static_cast<char>(value.token().delim()) }));
  6438. continue;
  6439. }
  6440. }
  6441. if (value.is(Token::Type::Number)) {
  6442. TRY(values.try_append({ TRY(NumericCalculationNode::create(value.token().number())) }));
  6443. continue;
  6444. }
  6445. if (auto dimension = parse_dimension(value); dimension.has_value()) {
  6446. if (dimension->is_angle())
  6447. TRY(values.try_append({ TRY(NumericCalculationNode::create(dimension->angle())) }));
  6448. else if (dimension->is_frequency())
  6449. TRY(values.try_append({ TRY(NumericCalculationNode::create(dimension->frequency())) }));
  6450. else if (dimension->is_length())
  6451. TRY(values.try_append({ TRY(NumericCalculationNode::create(dimension->length())) }));
  6452. else if (dimension->is_percentage())
  6453. TRY(values.try_append({ TRY(NumericCalculationNode::create(dimension->percentage())) }));
  6454. // FIXME: Resolutions, once calc() supports them.
  6455. else if (dimension->is_time())
  6456. TRY(values.try_append({ TRY(NumericCalculationNode::create(dimension->time())) }));
  6457. else
  6458. VERIFY_NOT_REACHED();
  6459. continue;
  6460. }
  6461. TRY(values.try_append({ TRY(UnparsedCalculationNode::create(value)) }));
  6462. }
  6463. // If we have no values, the syntax is invalid.
  6464. if (values.is_empty())
  6465. return nullptr;
  6466. // NOTE: If the first or last value is an operator, the syntax is invalid.
  6467. if (values.first().has<Operator>() || values.last().has<Operator>())
  6468. return nullptr;
  6469. // 3. Collect children into Product and Invert nodes.
  6470. // For every consecutive run of value items in values separated by "*" or "/" operators:
  6471. while (true) {
  6472. Optional<size_t> first_product_operator = values.find_first_index_if([](auto const& item) {
  6473. return item.template has<Operator>()
  6474. && first_is_one_of(item.template get<Operator>().delim, '*', '/');
  6475. });
  6476. if (!first_product_operator.has_value())
  6477. break;
  6478. auto start_of_run = first_product_operator.value() - 1;
  6479. auto end_of_run = first_product_operator.value() + 1;
  6480. for (auto i = start_of_run + 1; i < values.size(); i += 2) {
  6481. auto& item = values[i];
  6482. if (!item.has<Operator>()) {
  6483. end_of_run = i - 1;
  6484. break;
  6485. }
  6486. auto delim = item.get<Operator>().delim;
  6487. if (!first_is_one_of(delim, '*', '/')) {
  6488. end_of_run = i - 1;
  6489. break;
  6490. }
  6491. }
  6492. // 1. For each "/" operator in the run, replace its right-hand value item rhs with an Invert node containing rhs as its child.
  6493. Vector<NonnullOwnPtr<CalculationNode>> run_values;
  6494. TRY(run_values.try_append(move(values[start_of_run].get<NonnullOwnPtr<CalculationNode>>())));
  6495. for (auto i = start_of_run + 1; i <= end_of_run; i += 2) {
  6496. auto& operator_ = values[i].get<Operator>().delim;
  6497. auto& rhs = values[i + 1];
  6498. if (operator_ == '/') {
  6499. TRY(run_values.try_append(TRY(InvertCalculationNode::create(move(rhs.get<NonnullOwnPtr<CalculationNode>>())))));
  6500. continue;
  6501. }
  6502. VERIFY(operator_ == '*');
  6503. TRY(run_values.try_append(move(rhs.get<NonnullOwnPtr<CalculationNode>>())));
  6504. }
  6505. // 2. Replace the entire run with a Product node containing the value items of the run as its children.
  6506. auto product_node = TRY(ProductCalculationNode::create(move(run_values)));
  6507. values.remove(start_of_run, end_of_run - start_of_run + 1);
  6508. TRY(values.try_insert(start_of_run, { move(product_node) }));
  6509. }
  6510. // 4. Collect children into Sum and Negate nodes.
  6511. Optional<NonnullOwnPtr<CalculationNode>> single_value;
  6512. {
  6513. // 1. For each "-" operator item in values, replace its right-hand value item rhs with a Negate node containing rhs as its child.
  6514. for (auto i = 0u; i < values.size(); ++i) {
  6515. auto& maybe_minus_operator = values[i];
  6516. if (!maybe_minus_operator.has<Operator>() || maybe_minus_operator.get<Operator>().delim != '-')
  6517. continue;
  6518. auto rhs_index = ++i;
  6519. auto& rhs = values[rhs_index];
  6520. NonnullOwnPtr<CalculationNode> negate_node = TRY(NegateCalculationNode::create(move(rhs.get<NonnullOwnPtr<CalculationNode>>())));
  6521. values.remove(rhs_index);
  6522. values.insert(rhs_index, move(negate_node));
  6523. }
  6524. // 2. If values has only one item, and it is a Product node or a parenthesized simple block, replace values with that item.
  6525. if (values.size() == 1) {
  6526. TRY(values.first().visit(
  6527. [&](ComponentValue& component_value) -> ErrorOr<void> {
  6528. if (component_value.is_block() && component_value.block().is_paren())
  6529. single_value = TRY(UnparsedCalculationNode::create(component_value));
  6530. return {};
  6531. },
  6532. [&](NonnullOwnPtr<CalculationNode>& node) -> ErrorOr<void> {
  6533. if (node->type() == CalculationNode::Type::Product)
  6534. single_value = move(node);
  6535. return {};
  6536. },
  6537. [](auto&) -> ErrorOr<void> { return {}; }));
  6538. }
  6539. // Otherwise, replace values with a Sum node containing the value items of values as its children.
  6540. if (!single_value.has_value()) {
  6541. values.remove_all_matching([](Value& value) { return value.has<Operator>(); });
  6542. Vector<NonnullOwnPtr<CalculationNode>> value_items;
  6543. TRY(value_items.try_ensure_capacity(values.size()));
  6544. for (auto& value : values) {
  6545. if (value.has<Operator>())
  6546. continue;
  6547. value_items.unchecked_append(move(value.get<NonnullOwnPtr<CalculationNode>>()));
  6548. }
  6549. single_value = TRY(SumCalculationNode::create(move(value_items)));
  6550. }
  6551. }
  6552. // 5. At this point values is a tree of Sum, Product, Negate, and Invert nodes, with other types of values at the leaf nodes. Process the leaf nodes.
  6553. // For every leaf node leaf in values:
  6554. bool parsing_failed_for_child_node = false;
  6555. TRY(single_value.value()->for_each_child_node([&](NonnullOwnPtr<CalculationNode>& node) -> ErrorOr<void> {
  6556. if (node->type() != CalculationNode::Type::Unparsed)
  6557. return {};
  6558. auto& unparsed_node = static_cast<UnparsedCalculationNode&>(*node);
  6559. auto& component_value = unparsed_node.component_value();
  6560. // 1. If leaf is a parenthesized simple block, replace leaf with the result of parsing a calculation from leaf’s contents.
  6561. if (component_value.is_block() && component_value.block().is_paren()) {
  6562. auto leaf_calculation = TRY(parse_a_calculation(component_value.block().values()));
  6563. if (!leaf_calculation) {
  6564. parsing_failed_for_child_node = true;
  6565. return {};
  6566. }
  6567. node = leaf_calculation.release_nonnull();
  6568. }
  6569. // 2. If leaf is a math function, replace leaf with the internal representation of that math function.
  6570. // NOTE: All function tokens at this point should be math functions.
  6571. else if (component_value.is_function()) {
  6572. auto& function = component_value.function();
  6573. if (function.name().equals_ignoring_ascii_case("calc"sv)) {
  6574. auto leaf_calculation = TRY(parse_a_calculation(function.values()));
  6575. if (!leaf_calculation) {
  6576. parsing_failed_for_child_node = true;
  6577. return {};
  6578. }
  6579. node = leaf_calculation.release_nonnull();
  6580. } else {
  6581. // FIXME: Parse more math functions once we have them.
  6582. parsing_failed_for_child_node = true;
  6583. return {};
  6584. }
  6585. }
  6586. return {};
  6587. }));
  6588. if (parsing_failed_for_child_node)
  6589. return nullptr;
  6590. // FIXME: 6. Return the result of simplifying a calculation tree from values.
  6591. return single_value.release_value();
  6592. }
  6593. bool Parser::has_ignored_vendor_prefix(StringView string)
  6594. {
  6595. if (!string.starts_with('-'))
  6596. return false;
  6597. if (string.starts_with("--"sv))
  6598. return false;
  6599. if (string.starts_with("-libweb-"sv))
  6600. return false;
  6601. return true;
  6602. }
  6603. bool Parser::is_builtin(StringView name)
  6604. {
  6605. return name.equals_ignoring_ascii_case("inherit"sv)
  6606. || name.equals_ignoring_ascii_case("initial"sv)
  6607. || name.equals_ignoring_ascii_case("unset"sv);
  6608. }
  6609. RefPtr<CalculatedStyleValue> Parser::parse_calculated_value(Badge<StyleComputer>, ParsingContext const& context, Vector<ComponentValue> const& tokens)
  6610. {
  6611. if (tokens.is_empty())
  6612. return {};
  6613. auto parser = Parser::create(context, ""sv).release_value_but_fixme_should_propagate_errors();
  6614. return parser.parse_calculated_value(tokens);
  6615. }
  6616. RefPtr<StyleValue> Parser::parse_css_value(Badge<StyleComputer>, ParsingContext const& context, PropertyID property_id, Vector<ComponentValue> const& tokens)
  6617. {
  6618. if (tokens.is_empty() || property_id == CSS::PropertyID::Invalid || property_id == CSS::PropertyID::Custom)
  6619. return {};
  6620. auto parser = Parser::create(context, ""sv).release_value_but_fixme_should_propagate_errors();
  6621. TokenStream<ComponentValue> token_stream { tokens };
  6622. auto result = parser.parse_css_value(property_id, token_stream);
  6623. if (result.is_error())
  6624. return {};
  6625. return result.release_value();
  6626. }
  6627. bool Parser::Dimension::is_angle() const
  6628. {
  6629. return m_value.has<Angle>();
  6630. }
  6631. Angle Parser::Dimension::angle() const
  6632. {
  6633. return m_value.get<Angle>();
  6634. }
  6635. bool Parser::Dimension::is_angle_percentage() const
  6636. {
  6637. return is_angle() || is_percentage();
  6638. }
  6639. AnglePercentage Parser::Dimension::angle_percentage() const
  6640. {
  6641. if (is_angle())
  6642. return angle();
  6643. if (is_percentage())
  6644. return percentage();
  6645. VERIFY_NOT_REACHED();
  6646. }
  6647. bool Parser::Dimension::is_frequency() const
  6648. {
  6649. return m_value.has<Frequency>();
  6650. }
  6651. Frequency Parser::Dimension::frequency() const
  6652. {
  6653. return m_value.get<Frequency>();
  6654. }
  6655. bool Parser::Dimension::is_frequency_percentage() const
  6656. {
  6657. return is_frequency() || is_percentage();
  6658. }
  6659. FrequencyPercentage Parser::Dimension::frequency_percentage() const
  6660. {
  6661. if (is_frequency())
  6662. return frequency();
  6663. if (is_percentage())
  6664. return percentage();
  6665. VERIFY_NOT_REACHED();
  6666. }
  6667. bool Parser::Dimension::is_length() const
  6668. {
  6669. return m_value.has<Length>();
  6670. }
  6671. Length Parser::Dimension::length() const
  6672. {
  6673. return m_value.get<Length>();
  6674. }
  6675. bool Parser::Dimension::is_length_percentage() const
  6676. {
  6677. return is_length() || is_percentage();
  6678. }
  6679. LengthPercentage Parser::Dimension::length_percentage() const
  6680. {
  6681. if (is_length())
  6682. return length();
  6683. if (is_percentage())
  6684. return percentage();
  6685. VERIFY_NOT_REACHED();
  6686. }
  6687. bool Parser::Dimension::is_percentage() const
  6688. {
  6689. return m_value.has<Percentage>();
  6690. }
  6691. Percentage Parser::Dimension::percentage() const
  6692. {
  6693. return m_value.get<Percentage>();
  6694. }
  6695. bool Parser::Dimension::is_resolution() const
  6696. {
  6697. return m_value.has<Resolution>();
  6698. }
  6699. Resolution Parser::Dimension::resolution() const
  6700. {
  6701. return m_value.get<Resolution>();
  6702. }
  6703. bool Parser::Dimension::is_time() const
  6704. {
  6705. return m_value.has<Time>();
  6706. }
  6707. Time Parser::Dimension::time() const
  6708. {
  6709. return m_value.get<Time>();
  6710. }
  6711. bool Parser::Dimension::is_time_percentage() const
  6712. {
  6713. return is_time() || is_percentage();
  6714. }
  6715. TimePercentage Parser::Dimension::time_percentage() const
  6716. {
  6717. if (is_time())
  6718. return time();
  6719. if (is_percentage())
  6720. return percentage();
  6721. VERIFY_NOT_REACHED();
  6722. }
  6723. }
  6724. namespace Web {
  6725. CSS::CSSStyleSheet* parse_css_stylesheet(CSS::Parser::ParsingContext const& context, StringView css, Optional<AK::URL> location)
  6726. {
  6727. if (css.is_empty()) {
  6728. auto rule_list = CSS::CSSRuleList::create_empty(context.realm()).release_value_but_fixme_should_propagate_errors();
  6729. auto media_list = CSS::MediaList::create(context.realm(), {}).release_value_but_fixme_should_propagate_errors();
  6730. return CSS::CSSStyleSheet::create(context.realm(), rule_list, media_list, location).release_value_but_fixme_should_propagate_errors();
  6731. }
  6732. auto parser = CSS::Parser::Parser::create(context, css).release_value_but_fixme_should_propagate_errors();
  6733. return parser.parse_as_css_stylesheet(location);
  6734. }
  6735. CSS::ElementInlineCSSStyleDeclaration* parse_css_style_attribute(CSS::Parser::ParsingContext const& context, StringView css, DOM::Element& element)
  6736. {
  6737. if (css.is_empty())
  6738. return CSS::ElementInlineCSSStyleDeclaration::create(element, {}, {}).release_value_but_fixme_should_propagate_errors();
  6739. auto parser = CSS::Parser::Parser::create(context, css).release_value_but_fixme_should_propagate_errors();
  6740. return parser.parse_as_style_attribute(element);
  6741. }
  6742. RefPtr<CSS::StyleValue> parse_css_value(CSS::Parser::ParsingContext const& context, StringView string, CSS::PropertyID property_id)
  6743. {
  6744. if (string.is_empty())
  6745. return {};
  6746. auto parser = CSS::Parser::Parser::create(context, string).release_value_but_fixme_should_propagate_errors();
  6747. return parser.parse_as_css_value(property_id);
  6748. }
  6749. CSS::CSSRule* parse_css_rule(CSS::Parser::ParsingContext const& context, StringView css_text)
  6750. {
  6751. auto parser = CSS::Parser::Parser::create(context, css_text).release_value_but_fixme_should_propagate_errors();
  6752. return parser.parse_as_css_rule();
  6753. }
  6754. Optional<CSS::SelectorList> parse_selector(CSS::Parser::ParsingContext const& context, StringView selector_text)
  6755. {
  6756. auto parser = CSS::Parser::Parser::create(context, selector_text).release_value_but_fixme_should_propagate_errors();
  6757. return parser.parse_as_selector();
  6758. }
  6759. RefPtr<CSS::MediaQuery> parse_media_query(CSS::Parser::ParsingContext const& context, StringView string)
  6760. {
  6761. auto parser = CSS::Parser::Parser::create(context, string).release_value_but_fixme_should_propagate_errors();
  6762. return parser.parse_as_media_query();
  6763. }
  6764. Vector<NonnullRefPtr<CSS::MediaQuery>> parse_media_query_list(CSS::Parser::ParsingContext const& context, StringView string)
  6765. {
  6766. auto parser = CSS::Parser::Parser::create(context, string).release_value_but_fixme_should_propagate_errors();
  6767. return parser.parse_as_media_query_list();
  6768. }
  6769. RefPtr<CSS::Supports> parse_css_supports(CSS::Parser::ParsingContext const& context, StringView string)
  6770. {
  6771. if (string.is_empty())
  6772. return {};
  6773. auto parser = CSS::Parser::Parser::create(context, string).release_value_but_fixme_should_propagate_errors();
  6774. return parser.parse_as_supports();
  6775. }
  6776. Optional<CSS::StyleProperty> parse_css_supports_condition(CSS::Parser::ParsingContext const& context, StringView string)
  6777. {
  6778. if (string.is_empty())
  6779. return {};
  6780. auto parser = CSS::Parser::Parser::create(context, string).release_value_but_fixme_should_propagate_errors();
  6781. return parser.parse_as_supports_condition();
  6782. }
  6783. }