StyleComputer.cpp 121 KB

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  1. /*
  2. * Copyright (c) 2018-2023, Andreas Kling <kling@serenityos.org>
  3. * Copyright (c) 2021, the SerenityOS developers.
  4. * Copyright (c) 2021-2023, Sam Atkins <atkinssj@serenityos.org>
  5. * Copyright (c) 2024, Matthew Olsson <mattco@serenityos.org>
  6. *
  7. * SPDX-License-Identifier: BSD-2-Clause
  8. */
  9. #include <AK/BinarySearch.h>
  10. #include <AK/Debug.h>
  11. #include <AK/Error.h>
  12. #include <AK/Find.h>
  13. #include <AK/Function.h>
  14. #include <AK/HashMap.h>
  15. #include <AK/Math.h>
  16. #include <AK/QuickSort.h>
  17. #include <AK/TemporaryChange.h>
  18. #include <LibGfx/Font/Font.h>
  19. #include <LibGfx/Font/FontDatabase.h>
  20. #include <LibGfx/Font/FontStyleMapping.h>
  21. #include <LibGfx/Font/OpenType/Font.h>
  22. #include <LibGfx/Font/ScaledFont.h>
  23. #include <LibGfx/Font/VectorFont.h>
  24. #include <LibGfx/Font/WOFF/Font.h>
  25. #include <LibGfx/Font/WOFF2/Font.h>
  26. #include <LibWeb/Animations/AnimationEffect.h>
  27. #include <LibWeb/Animations/DocumentTimeline.h>
  28. #include <LibWeb/Animations/TimingFunction.h>
  29. #include <LibWeb/CSS/AnimationEvent.h>
  30. #include <LibWeb/CSS/CSSAnimation.h>
  31. #include <LibWeb/CSS/CSSFontFaceRule.h>
  32. #include <LibWeb/CSS/CSSImportRule.h>
  33. #include <LibWeb/CSS/CSSStyleRule.h>
  34. #include <LibWeb/CSS/Parser/Parser.h>
  35. #include <LibWeb/CSS/SelectorEngine.h>
  36. #include <LibWeb/CSS/StyleComputer.h>
  37. #include <LibWeb/CSS/StyleSheet.h>
  38. #include <LibWeb/CSS/StyleValues/AngleStyleValue.h>
  39. #include <LibWeb/CSS/StyleValues/BorderRadiusStyleValue.h>
  40. #include <LibWeb/CSS/StyleValues/ColorStyleValue.h>
  41. #include <LibWeb/CSS/StyleValues/CustomIdentStyleValue.h>
  42. #include <LibWeb/CSS/StyleValues/DisplayStyleValue.h>
  43. #include <LibWeb/CSS/StyleValues/EasingStyleValue.h>
  44. #include <LibWeb/CSS/StyleValues/FilterValueListStyleValue.h>
  45. #include <LibWeb/CSS/StyleValues/GridTrackPlacementStyleValue.h>
  46. #include <LibWeb/CSS/StyleValues/GridTrackSizeListStyleValue.h>
  47. #include <LibWeb/CSS/StyleValues/IdentifierStyleValue.h>
  48. #include <LibWeb/CSS/StyleValues/IntegerStyleValue.h>
  49. #include <LibWeb/CSS/StyleValues/LengthStyleValue.h>
  50. #include <LibWeb/CSS/StyleValues/MathDepthStyleValue.h>
  51. #include <LibWeb/CSS/StyleValues/NumberStyleValue.h>
  52. #include <LibWeb/CSS/StyleValues/PercentageStyleValue.h>
  53. #include <LibWeb/CSS/StyleValues/PositionStyleValue.h>
  54. #include <LibWeb/CSS/StyleValues/RatioStyleValue.h>
  55. #include <LibWeb/CSS/StyleValues/RectStyleValue.h>
  56. #include <LibWeb/CSS/StyleValues/ShorthandStyleValue.h>
  57. #include <LibWeb/CSS/StyleValues/StringStyleValue.h>
  58. #include <LibWeb/CSS/StyleValues/StyleValueList.h>
  59. #include <LibWeb/CSS/StyleValues/TimeStyleValue.h>
  60. #include <LibWeb/CSS/StyleValues/TransformationStyleValue.h>
  61. #include <LibWeb/CSS/StyleValues/UnresolvedStyleValue.h>
  62. #include <LibWeb/CSS/StyleValues/UnsetStyleValue.h>
  63. #include <LibWeb/DOM/Document.h>
  64. #include <LibWeb/DOM/Element.h>
  65. #include <LibWeb/DOM/ShadowRoot.h>
  66. #include <LibWeb/HTML/HTMLBRElement.h>
  67. #include <LibWeb/HTML/HTMLHtmlElement.h>
  68. #include <LibWeb/HTML/Scripting/TemporaryExecutionContext.h>
  69. #include <LibWeb/HighResolutionTime/TimeOrigin.h>
  70. #include <LibWeb/Layout/Node.h>
  71. #include <LibWeb/Loader/ResourceLoader.h>
  72. #include <LibWeb/Namespace.h>
  73. #include <LibWeb/Painting/PaintableBox.h>
  74. #include <LibWeb/Platform/FontPlugin.h>
  75. #include <LibWeb/ReferrerPolicy/AbstractOperations.h>
  76. #include <math.h>
  77. #include <stdio.h>
  78. namespace AK {
  79. // traits for FontFaceKey
  80. template<>
  81. struct Traits<Web::CSS::FontFaceKey> : public DefaultTraits<Web::CSS::FontFaceKey> {
  82. static unsigned hash(Web::CSS::FontFaceKey const& key) { return pair_int_hash(key.family_name.hash(), pair_int_hash(key.weight, key.slope)); }
  83. };
  84. }
  85. namespace Web::CSS {
  86. static DOM::Element const* element_to_inherit_style_from(DOM::Element const*, Optional<CSS::Selector::PseudoElement::Type>);
  87. StyleComputer::StyleComputer(DOM::Document& document)
  88. : m_document(document)
  89. , m_default_font_metrics(16, Gfx::FontDatabase::default_font().pixel_metrics())
  90. , m_root_element_font_metrics(m_default_font_metrics)
  91. {
  92. }
  93. StyleComputer::~StyleComputer() = default;
  94. class StyleComputer::FontLoader : public ResourceClient {
  95. public:
  96. explicit FontLoader(StyleComputer& style_computer, FlyString family_name, Vector<Gfx::UnicodeRange> unicode_ranges, Vector<URL> urls)
  97. : m_style_computer(style_computer)
  98. , m_family_name(move(family_name))
  99. , m_unicode_ranges(move(unicode_ranges))
  100. , m_urls(move(urls))
  101. {
  102. }
  103. virtual ~FontLoader() override { }
  104. Vector<Gfx::UnicodeRange> const& unicode_ranges() const { return m_unicode_ranges; }
  105. virtual void resource_did_load() override
  106. {
  107. auto result = try_load_font();
  108. if (result.is_error())
  109. return start_loading_next_url();
  110. m_vector_font = result.release_value();
  111. m_style_computer.did_load_font(m_family_name);
  112. }
  113. virtual void resource_did_fail() override
  114. {
  115. }
  116. RefPtr<Gfx::Font> font_with_point_size(float point_size)
  117. {
  118. if (!m_vector_font) {
  119. start_loading_next_url();
  120. return nullptr;
  121. }
  122. return m_vector_font->scaled_font(point_size);
  123. }
  124. private:
  125. void start_loading_next_url()
  126. {
  127. if (resource() && resource()->is_pending())
  128. return;
  129. if (m_urls.is_empty())
  130. return;
  131. LoadRequest request;
  132. request.set_url(m_urls.take_first());
  133. // HACK: We're crudely computing the referer value and shoving it into the
  134. // request until fetch infrastructure is used here.
  135. auto referrer_url = ReferrerPolicy::strip_url_for_use_as_referrer(m_style_computer.document().url());
  136. if (referrer_url.has_value() && !request.headers().contains("Referer"))
  137. request.set_header("Referer", referrer_url->serialize());
  138. set_resource(ResourceLoader::the().load_resource(Resource::Type::Generic, request));
  139. }
  140. ErrorOr<NonnullRefPtr<Gfx::VectorFont>> try_load_font()
  141. {
  142. // FIXME: This could maybe use the format() provided in @font-face as well, since often the mime type is just application/octet-stream and we have to try every format
  143. auto mime_type = resource()->mime_type();
  144. if (mime_type == "font/ttf"sv || mime_type == "application/x-font-ttf"sv)
  145. return TRY(OpenType::Font::try_load_from_externally_owned_memory(resource()->encoded_data()));
  146. if (mime_type == "font/woff"sv || mime_type == "application/font-woff"sv)
  147. return TRY(WOFF::Font::try_load_from_externally_owned_memory(resource()->encoded_data()));
  148. if (mime_type == "font/woff2"sv || mime_type == "application/font-woff2"sv) {
  149. auto woff2 = WOFF2::Font::try_load_from_externally_owned_memory(resource()->encoded_data());
  150. if (woff2.is_error()) {
  151. dbgln("WOFF2 error: {}", woff2.error());
  152. return woff2.release_error();
  153. }
  154. return woff2.release_value();
  155. }
  156. auto ttf = OpenType::Font::try_load_from_externally_owned_memory(resource()->encoded_data());
  157. if (!ttf.is_error())
  158. return ttf.release_value();
  159. auto woff = WOFF::Font::try_load_from_externally_owned_memory(resource()->encoded_data());
  160. if (!woff.is_error())
  161. return woff.release_value();
  162. auto woff2 = WOFF2::Font::try_load_from_externally_owned_memory(resource()->encoded_data());
  163. if (!woff2.is_error())
  164. return woff2.release_value();
  165. return woff2.release_error();
  166. }
  167. StyleComputer& m_style_computer;
  168. FlyString m_family_name;
  169. Vector<Gfx::UnicodeRange> m_unicode_ranges;
  170. RefPtr<Gfx::VectorFont> m_vector_font;
  171. Vector<URL> m_urls;
  172. };
  173. struct StyleComputer::MatchingFontCandidate {
  174. FontFaceKey key;
  175. Variant<FontLoaderList*, Gfx::Typeface const*> loader_or_typeface;
  176. [[nodiscard]] RefPtr<Gfx::FontCascadeList const> font_with_point_size(float point_size) const
  177. {
  178. RefPtr<Gfx::FontCascadeList> font_list = Gfx::FontCascadeList::create();
  179. if (auto* loader_list = loader_or_typeface.get_pointer<FontLoaderList*>(); loader_list) {
  180. for (auto const& loader : **loader_list) {
  181. if (auto font = loader->font_with_point_size(point_size); font)
  182. font_list->add(*font, loader->unicode_ranges());
  183. }
  184. return font_list;
  185. }
  186. if (auto font = loader_or_typeface.get<Gfx::Typeface const*>()->get_font(point_size))
  187. font_list->add(*font);
  188. return font_list;
  189. }
  190. };
  191. static CSSStyleSheet& default_stylesheet(DOM::Document const& document)
  192. {
  193. static JS::Handle<CSSStyleSheet> sheet;
  194. if (!sheet.cell()) {
  195. extern StringView default_stylesheet_source;
  196. sheet = JS::make_handle(parse_css_stylesheet(CSS::Parser::ParsingContext(document), default_stylesheet_source));
  197. }
  198. return *sheet;
  199. }
  200. static CSSStyleSheet& quirks_mode_stylesheet(DOM::Document const& document)
  201. {
  202. static JS::Handle<CSSStyleSheet> sheet;
  203. if (!sheet.cell()) {
  204. extern StringView quirks_mode_stylesheet_source;
  205. sheet = JS::make_handle(parse_css_stylesheet(CSS::Parser::ParsingContext(document), quirks_mode_stylesheet_source));
  206. }
  207. return *sheet;
  208. }
  209. static CSSStyleSheet& mathml_stylesheet(DOM::Document const& document)
  210. {
  211. static JS::Handle<CSSStyleSheet> sheet;
  212. if (!sheet.cell()) {
  213. extern StringView mathml_stylesheet_source;
  214. sheet = JS::make_handle(parse_css_stylesheet(CSS::Parser::ParsingContext(document), mathml_stylesheet_source));
  215. }
  216. return *sheet;
  217. }
  218. static CSSStyleSheet& svg_stylesheet(DOM::Document const& document)
  219. {
  220. static JS::Handle<CSSStyleSheet> sheet;
  221. if (!sheet.cell()) {
  222. extern StringView svg_stylesheet_source;
  223. sheet = JS::make_handle(parse_css_stylesheet(CSS::Parser::ParsingContext(document), svg_stylesheet_source));
  224. }
  225. return *sheet;
  226. }
  227. template<typename Callback>
  228. void StyleComputer::for_each_stylesheet(CascadeOrigin cascade_origin, Callback callback) const
  229. {
  230. if (cascade_origin == CascadeOrigin::UserAgent) {
  231. callback(default_stylesheet(document()), {});
  232. if (document().in_quirks_mode())
  233. callback(quirks_mode_stylesheet(document()), {});
  234. callback(mathml_stylesheet(document()), {});
  235. callback(svg_stylesheet(document()), {});
  236. }
  237. if (cascade_origin == CascadeOrigin::User) {
  238. if (m_user_style_sheet)
  239. callback(*m_user_style_sheet, {});
  240. }
  241. if (cascade_origin == CascadeOrigin::Author) {
  242. document().for_each_css_style_sheet([&](CSSStyleSheet& sheet) {
  243. callback(sheet, {});
  244. });
  245. const_cast<DOM::Document&>(document()).for_each_shadow_root([&](DOM::ShadowRoot& shadow_root) {
  246. shadow_root.for_each_css_style_sheet([&](CSSStyleSheet& sheet) {
  247. callback(sheet, &shadow_root);
  248. });
  249. });
  250. }
  251. }
  252. StyleComputer::RuleCache const& StyleComputer::rule_cache_for_cascade_origin(CascadeOrigin cascade_origin) const
  253. {
  254. switch (cascade_origin) {
  255. case CascadeOrigin::Author:
  256. return *m_author_rule_cache;
  257. case CascadeOrigin::User:
  258. return *m_user_rule_cache;
  259. case CascadeOrigin::UserAgent:
  260. return *m_user_agent_rule_cache;
  261. default:
  262. TODO();
  263. }
  264. }
  265. [[nodiscard]] static bool filter_namespace_rule(DOM::Element const& element, MatchingRule const& rule)
  266. {
  267. // FIXME: Filter out non-default namespace using prefixes
  268. if (auto namespace_rule = rule.sheet->default_namespace_rule()) {
  269. if (namespace_rule->namespace_uri() != element.namespace_uri())
  270. return false;
  271. }
  272. return true;
  273. }
  274. Vector<MatchingRule> StyleComputer::collect_matching_rules(DOM::Element const& element, CascadeOrigin cascade_origin, Optional<CSS::Selector::PseudoElement::Type> pseudo_element) const
  275. {
  276. auto const& root_node = element.root();
  277. auto shadow_root = is<DOM::ShadowRoot>(root_node) ? static_cast<DOM::ShadowRoot const*>(&root_node) : nullptr;
  278. auto const& rule_cache = rule_cache_for_cascade_origin(cascade_origin);
  279. Vector<MatchingRule, 512> rules_to_run;
  280. auto add_rules_to_run = [&](Vector<MatchingRule> const& rules) {
  281. rules_to_run.grow_capacity(rules_to_run.size() + rules.size());
  282. if (pseudo_element.has_value()) {
  283. for (auto const& rule : rules) {
  284. if (rule.contains_pseudo_element && filter_namespace_rule(element, rule))
  285. rules_to_run.unchecked_append(rule);
  286. }
  287. } else {
  288. for (auto const& rule : rules) {
  289. if (filter_namespace_rule(element, rule))
  290. rules_to_run.unchecked_append(rule);
  291. }
  292. }
  293. };
  294. for (auto const& class_name : element.class_names()) {
  295. if (auto it = rule_cache.rules_by_class.find(class_name); it != rule_cache.rules_by_class.end())
  296. add_rules_to_run(it->value);
  297. }
  298. if (auto id = element.id(); id.has_value()) {
  299. if (auto it = rule_cache.rules_by_id.find(id.value()); it != rule_cache.rules_by_id.end())
  300. add_rules_to_run(it->value);
  301. }
  302. if (auto it = rule_cache.rules_by_tag_name.find(element.local_name()); it != rule_cache.rules_by_tag_name.end())
  303. add_rules_to_run(it->value);
  304. if (pseudo_element.has_value())
  305. add_rules_to_run(rule_cache.pseudo_element_rules);
  306. if (element.is_document_element())
  307. add_rules_to_run(rule_cache.root_rules);
  308. add_rules_to_run(rule_cache.other_rules);
  309. Vector<MatchingRule> matching_rules;
  310. matching_rules.ensure_capacity(rules_to_run.size());
  311. for (auto const& rule_to_run : rules_to_run) {
  312. // FIXME: This needs to be revised when adding support for the :host and ::shadow selectors, which transition shadow tree boundaries
  313. auto rule_root = rule_to_run.shadow_root;
  314. auto from_user_agent_or_user_stylesheet = rule_to_run.cascade_origin == CascadeOrigin::UserAgent || rule_to_run.cascade_origin == CascadeOrigin::User;
  315. if (rule_root != shadow_root && !from_user_agent_or_user_stylesheet)
  316. continue;
  317. auto const& selector = rule_to_run.rule->selectors()[rule_to_run.selector_index];
  318. if (SelectorEngine::matches(selector, *rule_to_run.sheet, element, pseudo_element))
  319. matching_rules.append(rule_to_run);
  320. }
  321. return matching_rules;
  322. }
  323. static void sort_matching_rules(Vector<MatchingRule>& matching_rules)
  324. {
  325. quick_sort(matching_rules, [&](MatchingRule& a, MatchingRule& b) {
  326. auto const& a_selector = a.rule->selectors()[a.selector_index];
  327. auto const& b_selector = b.rule->selectors()[b.selector_index];
  328. auto a_specificity = a_selector->specificity();
  329. auto b_specificity = b_selector->specificity();
  330. if (a_selector->specificity() == b_selector->specificity()) {
  331. if (a.style_sheet_index == b.style_sheet_index)
  332. return a.rule_index < b.rule_index;
  333. return a.style_sheet_index < b.style_sheet_index;
  334. }
  335. return a_specificity < b_specificity;
  336. });
  337. }
  338. void StyleComputer::for_each_property_expanding_shorthands(PropertyID property_id, StyleValue const& value, Function<void(PropertyID, StyleValue const&)> const& set_longhand_property)
  339. {
  340. auto map_logical_property_to_real_property = [](PropertyID property_id) -> Optional<PropertyID> {
  341. // FIXME: Honor writing-mode, direction and text-orientation.
  342. switch (property_id) {
  343. case PropertyID::MarginBlockStart:
  344. return PropertyID::MarginTop;
  345. case PropertyID::MarginBlockEnd:
  346. return PropertyID::MarginBottom;
  347. case PropertyID::MarginInlineStart:
  348. return PropertyID::MarginLeft;
  349. case PropertyID::MarginInlineEnd:
  350. return PropertyID::MarginRight;
  351. case PropertyID::PaddingBlockStart:
  352. return PropertyID::PaddingTop;
  353. case PropertyID::PaddingBlockEnd:
  354. return PropertyID::PaddingBottom;
  355. case PropertyID::PaddingInlineStart:
  356. return PropertyID::PaddingLeft;
  357. case PropertyID::PaddingInlineEnd:
  358. return PropertyID::PaddingRight;
  359. case PropertyID::InlineSize:
  360. return PropertyID::Width;
  361. case PropertyID::InsetBlockStart:
  362. return PropertyID::Top;
  363. case PropertyID::InsetBlockEnd:
  364. return PropertyID::Bottom;
  365. case PropertyID::InsetInlineStart:
  366. return PropertyID::Left;
  367. case PropertyID::InsetInlineEnd:
  368. return PropertyID::Right;
  369. case PropertyID::WebkitAppearance:
  370. return PropertyID::Appearance;
  371. default:
  372. return {};
  373. }
  374. };
  375. struct StartAndEndPropertyIDs {
  376. PropertyID start;
  377. PropertyID end;
  378. };
  379. auto map_logical_property_to_real_properties = [](PropertyID property_id) -> Optional<StartAndEndPropertyIDs> {
  380. // FIXME: Honor writing-mode, direction and text-orientation.
  381. switch (property_id) {
  382. case PropertyID::MarginBlock:
  383. return StartAndEndPropertyIDs { PropertyID::MarginTop, PropertyID::MarginBottom };
  384. case PropertyID::MarginInline:
  385. return StartAndEndPropertyIDs { PropertyID::MarginLeft, PropertyID::MarginRight };
  386. case PropertyID::PaddingBlock:
  387. return StartAndEndPropertyIDs { PropertyID::PaddingTop, PropertyID::PaddingBottom };
  388. case PropertyID::PaddingInline:
  389. return StartAndEndPropertyIDs { PropertyID::PaddingLeft, PropertyID::PaddingRight };
  390. case PropertyID::InsetBlock:
  391. return StartAndEndPropertyIDs { PropertyID::Top, PropertyID::Bottom };
  392. case PropertyID::InsetInline:
  393. return StartAndEndPropertyIDs { PropertyID::Left, PropertyID::Right };
  394. default:
  395. return {};
  396. }
  397. };
  398. if (auto real_property_id = map_logical_property_to_real_property(property_id); real_property_id.has_value()) {
  399. for_each_property_expanding_shorthands(real_property_id.value(), value, set_longhand_property);
  400. return;
  401. }
  402. if (auto real_property_ids = map_logical_property_to_real_properties(property_id); real_property_ids.has_value()) {
  403. if (value.is_value_list() && value.as_value_list().size() == 2) {
  404. auto const& start = value.as_value_list().values()[0];
  405. auto const& end = value.as_value_list().values()[1];
  406. for_each_property_expanding_shorthands(real_property_ids->start, start, set_longhand_property);
  407. for_each_property_expanding_shorthands(real_property_ids->end, end, set_longhand_property);
  408. return;
  409. }
  410. for_each_property_expanding_shorthands(real_property_ids->start, value, set_longhand_property);
  411. for_each_property_expanding_shorthands(real_property_ids->end, value, set_longhand_property);
  412. return;
  413. }
  414. if (value.is_shorthand()) {
  415. auto& shorthand_value = value.as_shorthand();
  416. auto& properties = shorthand_value.sub_properties();
  417. auto& values = shorthand_value.values();
  418. for (size_t i = 0; i < properties.size(); ++i)
  419. for_each_property_expanding_shorthands(properties[i], values[i], set_longhand_property);
  420. return;
  421. }
  422. auto assign_edge_values = [&](PropertyID top_property, PropertyID right_property, PropertyID bottom_property, PropertyID left_property, auto const& values) {
  423. if (values.size() == 4) {
  424. set_longhand_property(top_property, values[0]);
  425. set_longhand_property(right_property, values[1]);
  426. set_longhand_property(bottom_property, values[2]);
  427. set_longhand_property(left_property, values[3]);
  428. } else if (values.size() == 3) {
  429. set_longhand_property(top_property, values[0]);
  430. set_longhand_property(right_property, values[1]);
  431. set_longhand_property(bottom_property, values[2]);
  432. set_longhand_property(left_property, values[1]);
  433. } else if (values.size() == 2) {
  434. set_longhand_property(top_property, values[0]);
  435. set_longhand_property(right_property, values[1]);
  436. set_longhand_property(bottom_property, values[0]);
  437. set_longhand_property(left_property, values[1]);
  438. } else if (values.size() == 1) {
  439. set_longhand_property(top_property, values[0]);
  440. set_longhand_property(right_property, values[0]);
  441. set_longhand_property(bottom_property, values[0]);
  442. set_longhand_property(left_property, values[0]);
  443. }
  444. };
  445. if (property_id == CSS::PropertyID::Border) {
  446. for_each_property_expanding_shorthands(CSS::PropertyID::BorderTop, value, set_longhand_property);
  447. for_each_property_expanding_shorthands(CSS::PropertyID::BorderRight, value, set_longhand_property);
  448. for_each_property_expanding_shorthands(CSS::PropertyID::BorderBottom, value, set_longhand_property);
  449. for_each_property_expanding_shorthands(CSS::PropertyID::BorderLeft, value, set_longhand_property);
  450. // FIXME: Also reset border-image, in line with the spec: https://www.w3.org/TR/css-backgrounds-3/#border-shorthands
  451. return;
  452. }
  453. if (property_id == CSS::PropertyID::BorderStyle) {
  454. if (value.is_value_list()) {
  455. auto const& values_list = value.as_value_list();
  456. assign_edge_values(PropertyID::BorderTopStyle, PropertyID::BorderRightStyle, PropertyID::BorderBottomStyle, PropertyID::BorderLeftStyle, values_list.values());
  457. return;
  458. }
  459. set_longhand_property(CSS::PropertyID::BorderTopStyle, value);
  460. set_longhand_property(CSS::PropertyID::BorderRightStyle, value);
  461. set_longhand_property(CSS::PropertyID::BorderBottomStyle, value);
  462. set_longhand_property(CSS::PropertyID::BorderLeftStyle, value);
  463. return;
  464. }
  465. if (property_id == CSS::PropertyID::BorderWidth) {
  466. if (value.is_value_list()) {
  467. auto const& values_list = value.as_value_list();
  468. assign_edge_values(PropertyID::BorderTopWidth, PropertyID::BorderRightWidth, PropertyID::BorderBottomWidth, PropertyID::BorderLeftWidth, values_list.values());
  469. return;
  470. }
  471. set_longhand_property(CSS::PropertyID::BorderTopWidth, value);
  472. set_longhand_property(CSS::PropertyID::BorderRightWidth, value);
  473. set_longhand_property(CSS::PropertyID::BorderBottomWidth, value);
  474. set_longhand_property(CSS::PropertyID::BorderLeftWidth, value);
  475. return;
  476. }
  477. if (property_id == CSS::PropertyID::BorderColor) {
  478. if (value.is_value_list()) {
  479. auto const& values_list = value.as_value_list();
  480. assign_edge_values(PropertyID::BorderTopColor, PropertyID::BorderRightColor, PropertyID::BorderBottomColor, PropertyID::BorderLeftColor, values_list.values());
  481. return;
  482. }
  483. set_longhand_property(CSS::PropertyID::BorderTopColor, value);
  484. set_longhand_property(CSS::PropertyID::BorderRightColor, value);
  485. set_longhand_property(CSS::PropertyID::BorderBottomColor, value);
  486. set_longhand_property(CSS::PropertyID::BorderLeftColor, value);
  487. return;
  488. }
  489. if (property_id == CSS::PropertyID::BackgroundPosition) {
  490. if (value.is_position()) {
  491. auto const& position = value.as_position();
  492. set_longhand_property(CSS::PropertyID::BackgroundPositionX, position.edge_x());
  493. set_longhand_property(CSS::PropertyID::BackgroundPositionY, position.edge_y());
  494. } else if (value.is_value_list()) {
  495. // Expand background-position layer list into separate lists for x and y positions:
  496. auto const& values_list = value.as_value_list();
  497. StyleValueVector x_positions {};
  498. StyleValueVector y_positions {};
  499. x_positions.ensure_capacity(values_list.size());
  500. y_positions.ensure_capacity(values_list.size());
  501. for (auto& layer : values_list.values()) {
  502. if (layer->is_position()) {
  503. auto const& position = layer->as_position();
  504. x_positions.unchecked_append(position.edge_x());
  505. y_positions.unchecked_append(position.edge_y());
  506. } else {
  507. x_positions.unchecked_append(layer);
  508. y_positions.unchecked_append(layer);
  509. }
  510. }
  511. set_longhand_property(CSS::PropertyID::BackgroundPositionX, StyleValueList::create(move(x_positions), values_list.separator()));
  512. set_longhand_property(CSS::PropertyID::BackgroundPositionY, StyleValueList::create(move(y_positions), values_list.separator()));
  513. } else {
  514. set_longhand_property(CSS::PropertyID::BackgroundPositionX, value);
  515. set_longhand_property(CSS::PropertyID::BackgroundPositionY, value);
  516. }
  517. return;
  518. }
  519. if (property_id == CSS::PropertyID::Inset) {
  520. if (value.is_value_list()) {
  521. auto const& values_list = value.as_value_list();
  522. assign_edge_values(PropertyID::Top, PropertyID::Right, PropertyID::Bottom, PropertyID::Left, values_list.values());
  523. return;
  524. }
  525. set_longhand_property(CSS::PropertyID::Top, value);
  526. set_longhand_property(CSS::PropertyID::Right, value);
  527. set_longhand_property(CSS::PropertyID::Bottom, value);
  528. set_longhand_property(CSS::PropertyID::Left, value);
  529. return;
  530. }
  531. if (property_id == CSS::PropertyID::Margin) {
  532. if (value.is_value_list()) {
  533. auto const& values_list = value.as_value_list();
  534. assign_edge_values(PropertyID::MarginTop, PropertyID::MarginRight, PropertyID::MarginBottom, PropertyID::MarginLeft, values_list.values());
  535. return;
  536. }
  537. set_longhand_property(CSS::PropertyID::MarginTop, value);
  538. set_longhand_property(CSS::PropertyID::MarginRight, value);
  539. set_longhand_property(CSS::PropertyID::MarginBottom, value);
  540. set_longhand_property(CSS::PropertyID::MarginLeft, value);
  541. return;
  542. }
  543. if (property_id == CSS::PropertyID::Padding) {
  544. if (value.is_value_list()) {
  545. auto const& values_list = value.as_value_list();
  546. assign_edge_values(PropertyID::PaddingTop, PropertyID::PaddingRight, PropertyID::PaddingBottom, PropertyID::PaddingLeft, values_list.values());
  547. return;
  548. }
  549. set_longhand_property(CSS::PropertyID::PaddingTop, value);
  550. set_longhand_property(CSS::PropertyID::PaddingRight, value);
  551. set_longhand_property(CSS::PropertyID::PaddingBottom, value);
  552. set_longhand_property(CSS::PropertyID::PaddingLeft, value);
  553. return;
  554. }
  555. if (property_id == CSS::PropertyID::Gap || property_id == CSS::PropertyID::GridGap) {
  556. if (value.is_value_list()) {
  557. auto const& values_list = value.as_value_list();
  558. set_longhand_property(CSS::PropertyID::RowGap, values_list.values()[0]);
  559. set_longhand_property(CSS::PropertyID::ColumnGap, values_list.values()[1]);
  560. return;
  561. }
  562. set_longhand_property(CSS::PropertyID::RowGap, value);
  563. set_longhand_property(CSS::PropertyID::ColumnGap, value);
  564. return;
  565. }
  566. if (property_id == CSS::PropertyID::RowGap || property_id == CSS::PropertyID::GridRowGap) {
  567. set_longhand_property(CSS::PropertyID::RowGap, value);
  568. return;
  569. }
  570. if (property_id == CSS::PropertyID::ColumnGap || property_id == CSS::PropertyID::GridColumnGap) {
  571. set_longhand_property(CSS::PropertyID::ColumnGap, value);
  572. return;
  573. }
  574. if (property_id == CSS::PropertyID::MaxInlineSize || property_id == CSS::PropertyID::MinInlineSize) {
  575. // FIXME: Use writing-mode to determine if we should set width or height.
  576. bool is_horizontal = true;
  577. if (is_horizontal) {
  578. if (property_id == CSS::PropertyID::MaxInlineSize) {
  579. set_longhand_property(CSS::PropertyID::MaxWidth, value);
  580. } else {
  581. set_longhand_property(CSS::PropertyID::MinWidth, value);
  582. }
  583. } else {
  584. if (property_id == CSS::PropertyID::MaxInlineSize) {
  585. set_longhand_property(CSS::PropertyID::MaxHeight, value);
  586. } else {
  587. set_longhand_property(CSS::PropertyID::MinHeight, value);
  588. }
  589. }
  590. return;
  591. }
  592. if (property_is_shorthand(property_id)) {
  593. // ShorthandStyleValue was handled already.
  594. // That means if we got here, that `value` must be a CSS-wide keyword, which we should apply to our longhand properties.
  595. // We don't directly call `set_longhand_property()` because the longhands might have longhands of their own.
  596. // (eg `grid` -> `grid-template` -> `grid-template-areas` & `grid-template-rows` & `grid-template-columns`)
  597. VERIFY(value.is_css_wide_keyword());
  598. for (auto longhand : longhands_for_shorthand(property_id))
  599. for_each_property_expanding_shorthands(longhand, value, set_longhand_property);
  600. return;
  601. }
  602. set_longhand_property(property_id, value);
  603. }
  604. void StyleComputer::set_property_expanding_shorthands(StyleProperties& style, CSS::PropertyID property_id, StyleValue const& value, CSS::CSSStyleDeclaration const* declaration, StyleProperties::PropertyValues const& properties_for_revert, StyleProperties::Important important)
  605. {
  606. for_each_property_expanding_shorthands(property_id, value, [&](PropertyID shorthand_id, StyleValue const& shorthand_value) {
  607. if (shorthand_value.is_revert()) {
  608. auto& property_in_previous_cascade_origin = properties_for_revert[to_underlying(shorthand_id)];
  609. if (property_in_previous_cascade_origin.has_value())
  610. style.set_property(shorthand_id, property_in_previous_cascade_origin->style, property_in_previous_cascade_origin->declaration, StyleProperties::Inherited::No, important);
  611. } else {
  612. style.set_property(shorthand_id, shorthand_value, declaration, StyleProperties::Inherited::No, important);
  613. }
  614. });
  615. }
  616. void StyleComputer::set_all_properties(DOM::Element& element, Optional<CSS::Selector::PseudoElement::Type> pseudo_element, StyleProperties& style, StyleValue const& value, DOM::Document& document, CSS::CSSStyleDeclaration const* declaration, StyleProperties::PropertyValues const& properties_for_revert, StyleProperties::Important important) const
  617. {
  618. for (auto i = to_underlying(CSS::first_longhand_property_id); i <= to_underlying(CSS::last_longhand_property_id); ++i) {
  619. auto property_id = (CSS::PropertyID)i;
  620. if (value.is_revert()) {
  621. style.m_property_values[to_underlying(property_id)] = properties_for_revert[to_underlying(property_id)];
  622. style.m_property_values[to_underlying(property_id)]->important = important;
  623. continue;
  624. }
  625. if (value.is_unset()) {
  626. if (is_inherited_property(property_id))
  627. style.m_property_values[to_underlying(property_id)] = { { get_inherit_value(document.realm(), property_id, &element, pseudo_element), nullptr } };
  628. else
  629. style.m_property_values[to_underlying(property_id)] = { { property_initial_value(document.realm(), property_id), nullptr } };
  630. style.m_property_values[to_underlying(property_id)]->important = important;
  631. continue;
  632. }
  633. NonnullRefPtr<StyleValue> property_value = value;
  634. if (property_value->is_unresolved())
  635. property_value = Parser::Parser::resolve_unresolved_style_value({}, Parser::ParsingContext { document }, element, pseudo_element, property_id, property_value->as_unresolved());
  636. if (!property_value->is_unresolved())
  637. set_property_expanding_shorthands(style, property_id, property_value, declaration, properties_for_revert);
  638. style.m_property_values[to_underlying(property_id)]->important = important;
  639. set_property_expanding_shorthands(style, property_id, value, declaration, properties_for_revert, important);
  640. }
  641. }
  642. void StyleComputer::cascade_declarations(StyleProperties& style, DOM::Element& element, Optional<CSS::Selector::PseudoElement::Type> pseudo_element, Vector<MatchingRule> const& matching_rules, CascadeOrigin cascade_origin, Important important) const
  643. {
  644. auto properties_for_revert = style.properties();
  645. for (auto const& match : matching_rules) {
  646. for (auto const& property : verify_cast<PropertyOwningCSSStyleDeclaration>(match.rule->declaration()).properties()) {
  647. if (important != property.important)
  648. continue;
  649. if (property.property_id == CSS::PropertyID::All) {
  650. set_all_properties(element, pseudo_element, style, property.value, m_document, &match.rule->declaration(), properties_for_revert, important == Important::Yes ? StyleProperties::Important::Yes : StyleProperties::Important::No);
  651. continue;
  652. }
  653. auto property_value = property.value;
  654. if (property.value->is_unresolved())
  655. property_value = Parser::Parser::resolve_unresolved_style_value({}, Parser::ParsingContext { document() }, element, pseudo_element, property.property_id, property.value->as_unresolved());
  656. if (!property_value->is_unresolved())
  657. set_property_expanding_shorthands(style, property.property_id, property_value, &match.rule->declaration(), properties_for_revert, important == Important::Yes ? StyleProperties::Important::Yes : StyleProperties::Important::No);
  658. }
  659. }
  660. if (cascade_origin == CascadeOrigin::Author && !pseudo_element.has_value()) {
  661. if (auto const* inline_style = verify_cast<ElementInlineCSSStyleDeclaration>(element.inline_style())) {
  662. for (auto const& property : inline_style->properties()) {
  663. if (important != property.important)
  664. continue;
  665. if (property.property_id == CSS::PropertyID::All) {
  666. set_all_properties(element, pseudo_element, style, property.value, m_document, inline_style, properties_for_revert, important == Important::Yes ? StyleProperties::Important::Yes : StyleProperties::Important::No);
  667. continue;
  668. }
  669. auto property_value = property.value;
  670. if (property.value->is_unresolved())
  671. property_value = Parser::Parser::resolve_unresolved_style_value({}, Parser::ParsingContext { document() }, element, pseudo_element, property.property_id, property.value->as_unresolved());
  672. if (!property_value->is_unresolved())
  673. set_property_expanding_shorthands(style, property.property_id, property_value, inline_style, properties_for_revert, important == Important::Yes ? StyleProperties::Important::Yes : StyleProperties::Important::No);
  674. }
  675. }
  676. }
  677. }
  678. static void cascade_custom_properties(DOM::Element& element, Optional<CSS::Selector::PseudoElement::Type> pseudo_element, Vector<MatchingRule> const& matching_rules)
  679. {
  680. size_t needed_capacity = 0;
  681. for (auto const& matching_rule : matching_rules)
  682. needed_capacity += verify_cast<PropertyOwningCSSStyleDeclaration>(matching_rule.rule->declaration()).custom_properties().size();
  683. if (!pseudo_element.has_value()) {
  684. if (auto const* inline_style = verify_cast<PropertyOwningCSSStyleDeclaration>(element.inline_style()))
  685. needed_capacity += inline_style->custom_properties().size();
  686. }
  687. HashMap<FlyString, StyleProperty> custom_properties;
  688. custom_properties.ensure_capacity(needed_capacity);
  689. for (auto const& matching_rule : matching_rules) {
  690. for (auto const& it : verify_cast<PropertyOwningCSSStyleDeclaration>(matching_rule.rule->declaration()).custom_properties())
  691. custom_properties.set(it.key, it.value);
  692. }
  693. if (!pseudo_element.has_value()) {
  694. if (auto const* inline_style = verify_cast<PropertyOwningCSSStyleDeclaration>(element.inline_style())) {
  695. for (auto const& it : inline_style->custom_properties())
  696. custom_properties.set(it.key, it.value);
  697. }
  698. }
  699. element.set_custom_properties(pseudo_element, move(custom_properties));
  700. }
  701. static NonnullRefPtr<StyleValue const> interpolate_value(DOM::Element& element, StyleValue const& from, StyleValue const& to, float delta);
  702. template<typename T>
  703. static T interpolate_raw(T from, T to, float delta)
  704. {
  705. if constexpr (IsSame<T, double>) {
  706. return from + (to - from) * static_cast<double>(delta);
  707. } else {
  708. return static_cast<RemoveCVReference<T>>(from + (to - from) * delta);
  709. }
  710. }
  711. // A null return value means the interpolated matrix was not invertible or otherwise invalid
  712. static RefPtr<StyleValue const> interpolate_transform(DOM::Element& element, StyleValue const& from, StyleValue const& to, float delta)
  713. {
  714. // Note that the spec uses column-major notation, so all the matrix indexing is reversed.
  715. static constexpr auto make_transformation = [](TransformationStyleValue const& transformation) -> Optional<Transformation> {
  716. Vector<TransformValue> values;
  717. for (auto const& value : transformation.values()) {
  718. switch (value->type()) {
  719. case StyleValue::Type::Angle:
  720. values.append(AngleOrCalculated { value->as_angle().angle() });
  721. break;
  722. case StyleValue::Type::Calculated:
  723. values.append(AngleOrCalculated { value->as_calculated() });
  724. break;
  725. case StyleValue::Type::Length:
  726. values.append(LengthPercentage { value->as_length().length() });
  727. break;
  728. case StyleValue::Type::Percentage:
  729. values.append(LengthPercentage { value->as_percentage().percentage() });
  730. break;
  731. case StyleValue::Type::Number:
  732. values.append(NumberPercentage { Number(Number::Type::Number, value->as_number().number()) });
  733. break;
  734. default:
  735. return {};
  736. }
  737. }
  738. return Transformation { transformation.transform_function(), move(values) };
  739. };
  740. static constexpr auto transformation_style_value_to_matrix = [](DOM::Element& element, TransformationStyleValue const& value) -> Optional<FloatMatrix4x4> {
  741. auto transformation = make_transformation(value.as_transformation());
  742. if (!transformation.has_value())
  743. return {};
  744. Optional<Painting::PaintableBox const&> paintable_box;
  745. if (auto layout_node = element.layout_node()) {
  746. if (auto paintable = layout_node->paintable(); paintable && is<Painting::PaintableBox>(paintable))
  747. paintable_box = *static_cast<Painting::PaintableBox*>(paintable);
  748. }
  749. if (auto matrix = transformation->to_matrix(paintable_box); !matrix.is_error())
  750. return matrix.value();
  751. return {};
  752. };
  753. static constexpr auto style_value_to_matrix = [](DOM::Element& element, StyleValue const& value) -> FloatMatrix4x4 {
  754. if (value.is_transformation())
  755. return transformation_style_value_to_matrix(element, value.as_transformation()).value_or(FloatMatrix4x4::identity());
  756. // This encompasses both the allowed value "none" and any invalid values
  757. if (!value.is_value_list())
  758. return FloatMatrix4x4::identity();
  759. auto matrix = FloatMatrix4x4::identity();
  760. for (auto const& value_element : value.as_value_list().values()) {
  761. if (value_element->is_transformation()) {
  762. if (auto value_matrix = transformation_style_value_to_matrix(element, value_element->as_transformation()); value_matrix.has_value())
  763. matrix = matrix * value_matrix.value();
  764. }
  765. }
  766. return matrix;
  767. };
  768. struct DecomposedValues {
  769. FloatVector3 translation;
  770. FloatVector3 scale;
  771. FloatVector3 skew;
  772. FloatVector4 rotation;
  773. FloatVector4 perspective;
  774. };
  775. // https://drafts.csswg.org/css-transforms-2/#decomposing-a-3d-matrix
  776. static constexpr auto decompose = [](FloatMatrix4x4 matrix) -> Optional<DecomposedValues> {
  777. // https://drafts.csswg.org/css-transforms-1/#supporting-functions
  778. static constexpr auto combine = [](auto a, auto b, float ascl, float bscl) {
  779. return FloatVector3 {
  780. ascl * a[0] + bscl * b[0],
  781. ascl * a[1] + bscl * b[1],
  782. ascl * a[2] + bscl * b[2],
  783. };
  784. };
  785. // Normalize the matrix.
  786. if (matrix(3, 3) == 0.f)
  787. return {};
  788. for (int i = 0; i < 4; i++)
  789. for (int j = 0; j < 4; j++)
  790. matrix(i, j) /= matrix(3, 3);
  791. // perspectiveMatrix is used to solve for perspective, but it also provides
  792. // an easy way to test for singularity of the upper 3x3 component.
  793. auto perspective_matrix = matrix;
  794. for (int i = 0; i < 3; i++)
  795. perspective_matrix(3, i) = 0.f;
  796. perspective_matrix(3, 3) = 1.f;
  797. if (!perspective_matrix.is_invertible())
  798. return {};
  799. DecomposedValues values;
  800. // First, isolate perspective.
  801. if (matrix(3, 0) != 0.f || matrix(3, 1) != 0.f || matrix(3, 2) != 0.f) {
  802. // rightHandSide is the right hand side of the equation.
  803. // Note: It is the bottom side in a row-major matrix
  804. FloatVector4 bottom_side = {
  805. matrix(3, 0),
  806. matrix(3, 1),
  807. matrix(3, 2),
  808. matrix(3, 3),
  809. };
  810. // Solve the equation by inverting perspectiveMatrix and multiplying
  811. // rightHandSide by the inverse.
  812. auto inverse_perspective_matrix = perspective_matrix.inverse();
  813. auto transposed_inverse_perspective_matrix = inverse_perspective_matrix.transpose();
  814. values.perspective = transposed_inverse_perspective_matrix * bottom_side;
  815. } else {
  816. // No perspective.
  817. values.perspective = { 0.0, 0.0, 0.0, 1.0 };
  818. }
  819. // Next take care of translation
  820. for (int i = 0; i < 3; i++)
  821. values.translation[i] = matrix(i, 3);
  822. // Now get scale and shear. 'row' is a 3 element array of 3 component vectors
  823. FloatVector3 row[3];
  824. for (int i = 0; i < 3; i++)
  825. row[i] = { matrix(0, i), matrix(1, i), matrix(2, i) };
  826. // Compute X scale factor and normalize first row.
  827. values.scale[0] = row[0].length();
  828. row[0].normalize();
  829. // Compute XY shear factor and make 2nd row orthogonal to 1st.
  830. values.skew[0] = row[0].dot(row[1]);
  831. row[1] = combine(row[1], row[0], 1.f, -values.skew[0]);
  832. // Now, compute Y scale and normalize 2nd row.
  833. values.scale[1] = row[1].length();
  834. row[1].normalize();
  835. values.skew[0] /= values.scale[1];
  836. // Compute XZ and YZ shears, orthogonalize 3rd row
  837. values.skew[1] = row[0].dot(row[2]);
  838. row[2] = combine(row[2], row[0], 1.f, -values.skew[1]);
  839. values.skew[2] = row[1].dot(row[2]);
  840. row[2] = combine(row[2], row[1], 1.f, -values.skew[2]);
  841. // Next, get Z scale and normalize 3rd row.
  842. values.scale[2] = row[2].length();
  843. row[2].normalize();
  844. values.skew[1] /= values.scale[2];
  845. values.skew[2] /= values.scale[2];
  846. // At this point, the matrix (in rows) is orthonormal.
  847. // Check for a coordinate system flip. If the determinant
  848. // is -1, then negate the matrix and the scaling factors.
  849. auto pdum3 = row[1].cross(row[2]);
  850. if (row[0].dot(pdum3) < 0.f) {
  851. for (int i = 0; i < 3; i++) {
  852. values.scale[i] *= -1.f;
  853. row[i][0] *= -1.f;
  854. row[i][1] *= -1.f;
  855. row[i][2] *= -1.f;
  856. }
  857. }
  858. // Now, get the rotations out
  859. values.rotation[0] = 0.5f * sqrt(max(1.f + row[0][0] - row[1][1] - row[2][2], 0.f));
  860. values.rotation[1] = 0.5f * sqrt(max(1.f - row[0][0] + row[1][1] - row[2][2], 0.f));
  861. values.rotation[2] = 0.5f * sqrt(max(1.f - row[0][0] - row[1][1] + row[2][2], 0.f));
  862. values.rotation[3] = 0.5f * sqrt(max(1.f + row[0][0] + row[1][1] + row[2][2], 0.f));
  863. if (row[2][1] > row[1][2])
  864. values.rotation[0] = -values.rotation[0];
  865. if (row[0][2] > row[2][0])
  866. values.rotation[1] = -values.rotation[1];
  867. if (row[1][0] > row[0][1])
  868. values.rotation[2] = -values.rotation[2];
  869. // FIXME: This accounts for the fact that the browser coordinate system is left-handed instead of right-handed.
  870. // The reason for this is that the positive Y-axis direction points down instead of up. To fix this, we
  871. // invert the Y axis. However, it feels like the spec pseudo-code above should have taken something like
  872. // this into account, so we're probably doing something else wrong.
  873. values.rotation[2] *= -1;
  874. return values;
  875. };
  876. // https://drafts.csswg.org/css-transforms-2/#recomposing-to-a-3d-matrix
  877. static constexpr auto recompose = [](DecomposedValues const& values) -> FloatMatrix4x4 {
  878. auto matrix = FloatMatrix4x4::identity();
  879. // apply perspective
  880. for (int i = 0; i < 4; i++)
  881. matrix(3, i) = values.perspective[i];
  882. // apply translation
  883. for (int i = 0; i < 4; i++) {
  884. for (int j = 0; j < 3; j++)
  885. matrix(i, 3) += values.translation[j] * matrix(i, j);
  886. }
  887. // apply rotation
  888. auto x = values.rotation[0];
  889. auto y = values.rotation[1];
  890. auto z = values.rotation[2];
  891. auto w = values.rotation[3];
  892. // Construct a composite rotation matrix from the quaternion values
  893. // rotationMatrix is a identity 4x4 matrix initially
  894. auto rotation_matrix = FloatMatrix4x4::identity();
  895. rotation_matrix(0, 0) = 1.f - 2.f * (y * y + z * z);
  896. rotation_matrix(1, 0) = 2.f * (x * y - z * w);
  897. rotation_matrix(2, 0) = 2.f * (x * z + y * w);
  898. rotation_matrix(0, 1) = 2.f * (x * y + z * w);
  899. rotation_matrix(1, 1) = 1.f - 2.f * (x * x + z * z);
  900. rotation_matrix(2, 1) = 2.f * (y * z - x * w);
  901. rotation_matrix(0, 2) = 2.f * (x * z - y * w);
  902. rotation_matrix(1, 2) = 2.f * (y * z + x * w);
  903. rotation_matrix(2, 2) = 1.f - 2.f * (x * x + y * y);
  904. matrix = matrix * rotation_matrix;
  905. // apply skew
  906. // temp is a identity 4x4 matrix initially
  907. auto temp = FloatMatrix4x4::identity();
  908. if (values.skew[2] != 0.f) {
  909. temp(1, 2) = values.skew[2];
  910. matrix = matrix * temp;
  911. }
  912. if (values.skew[1] != 0.f) {
  913. temp(1, 2) = 0.f;
  914. temp(0, 2) = values.skew[1];
  915. matrix = matrix * temp;
  916. }
  917. if (values.skew[0] != 0.f) {
  918. temp(0, 2) = 0.f;
  919. temp(0, 1) = values.skew[0];
  920. matrix = matrix * temp;
  921. }
  922. // apply scale
  923. for (int i = 0; i < 3; i++) {
  924. for (int j = 0; j < 4; j++)
  925. matrix(j, i) *= values.scale[i];
  926. }
  927. return matrix;
  928. };
  929. // https://drafts.csswg.org/css-transforms-2/#interpolation-of-decomposed-3d-matrix-values
  930. static constexpr auto interpolate = [](DecomposedValues& from, DecomposedValues& to, float delta) -> DecomposedValues {
  931. auto product = clamp(from.rotation.dot(to.rotation), -1.0f, 1.0f);
  932. FloatVector4 interpolated_rotation;
  933. if (fabsf(product) == 1.0f) {
  934. interpolated_rotation = from.rotation;
  935. } else {
  936. auto theta = acos(product);
  937. auto w = sin(delta * theta) / sqrtf(1.0f - product * product);
  938. for (int i = 0; i < 4; i++) {
  939. from.rotation[i] *= cos(delta * theta) - product * w;
  940. to.rotation[i] *= w;
  941. interpolated_rotation[i] = from.rotation[i] + to.rotation[i];
  942. }
  943. }
  944. return {
  945. interpolate_raw(from.translation, to.translation, delta),
  946. interpolate_raw(from.scale, to.scale, delta),
  947. interpolate_raw(from.skew, to.skew, delta),
  948. interpolated_rotation,
  949. interpolate_raw(from.perspective, to.perspective, delta),
  950. };
  951. };
  952. auto from_matrix = style_value_to_matrix(element, from);
  953. auto to_matrix = style_value_to_matrix(element, to);
  954. auto from_decomposed = decompose(from_matrix);
  955. auto to_decomposed = decompose(to_matrix);
  956. if (!from_decomposed.has_value() || !to_decomposed.has_value())
  957. return {};
  958. auto interpolated_decomposed = interpolate(from_decomposed.value(), to_decomposed.value(), delta);
  959. auto interpolated = recompose(interpolated_decomposed);
  960. StyleValueVector values;
  961. values.ensure_capacity(16);
  962. for (int i = 0; i < 16; i++)
  963. values.append(NumberStyleValue::create(static_cast<double>(interpolated(i % 4, i / 4))));
  964. return StyleValueList::create({ TransformationStyleValue::create(TransformFunction::Matrix3d, move(values)) }, StyleValueList::Separator::Comma);
  965. }
  966. static Color interpolate_color(Color from, Color to, float delta)
  967. {
  968. // https://drafts.csswg.org/css-color/#interpolation-space
  969. // If the host syntax does not define what color space interpolation should take place in, it defaults to Oklab.
  970. auto from_oklab = from.to_oklab();
  971. auto to_oklab = to.to_oklab();
  972. auto color = Color::from_oklab(
  973. interpolate_raw(from_oklab.L, to_oklab.L, delta),
  974. interpolate_raw(from_oklab.a, to_oklab.a, delta),
  975. interpolate_raw(from_oklab.b, to_oklab.b, delta));
  976. color.set_alpha(interpolate_raw(from.alpha(), to.alpha(), delta));
  977. return color;
  978. }
  979. static NonnullRefPtr<StyleValue const> interpolate_box_shadow(DOM::Element& element, StyleValue const& from, StyleValue const& to, float delta)
  980. {
  981. // https://drafts.csswg.org/css-backgrounds/#box-shadow
  982. // Animation type: by computed value, treating none as a zero-item list and appending blank shadows
  983. // (transparent 0 0 0 0) with a corresponding inset keyword as needed to match the longer list if
  984. // the shorter list is otherwise compatible with the longer one
  985. static constexpr auto process_list = [](StyleValue const& value) {
  986. StyleValueVector shadows;
  987. if (value.is_value_list()) {
  988. for (auto const& element : value.as_value_list().values()) {
  989. if (element->is_shadow())
  990. shadows.append(element);
  991. }
  992. } else if (value.is_shadow()) {
  993. shadows.append(value);
  994. } else if (!value.is_identifier() || value.as_identifier().id() != ValueID::None) {
  995. VERIFY_NOT_REACHED();
  996. }
  997. return shadows;
  998. };
  999. static constexpr auto extend_list_if_necessary = [](StyleValueVector& values, StyleValueVector const& other) {
  1000. values.ensure_capacity(other.size());
  1001. for (size_t i = values.size(); i < other.size(); i++) {
  1002. values.unchecked_append(ShadowStyleValue::create(
  1003. Color::Transparent,
  1004. LengthStyleValue::create(Length::make_px(0)),
  1005. LengthStyleValue::create(Length::make_px(0)),
  1006. LengthStyleValue::create(Length::make_px(0)),
  1007. LengthStyleValue::create(Length::make_px(0)),
  1008. other[i]->as_shadow().placement()));
  1009. }
  1010. };
  1011. StyleValueVector from_shadows = process_list(from);
  1012. StyleValueVector to_shadows = process_list(to);
  1013. extend_list_if_necessary(from_shadows, to_shadows);
  1014. extend_list_if_necessary(to_shadows, from_shadows);
  1015. VERIFY(from_shadows.size() == to_shadows.size());
  1016. StyleValueVector result_shadows;
  1017. result_shadows.ensure_capacity(from_shadows.size());
  1018. for (size_t i = 0; i < from_shadows.size(); i++) {
  1019. auto const& from_shadow = from_shadows[i]->as_shadow();
  1020. auto const& to_shadow = to_shadows[i]->as_shadow();
  1021. auto result_shadow = ShadowStyleValue::create(
  1022. interpolate_color(from_shadow.color(), to_shadow.color(), delta),
  1023. interpolate_value(element, from_shadow.offset_x(), to_shadow.offset_x(), delta),
  1024. interpolate_value(element, from_shadow.offset_y(), to_shadow.offset_y(), delta),
  1025. interpolate_value(element, from_shadow.blur_radius(), to_shadow.blur_radius(), delta),
  1026. interpolate_value(element, from_shadow.spread_distance(), to_shadow.spread_distance(), delta),
  1027. delta >= 0.5f ? to_shadow.placement() : from_shadow.placement());
  1028. result_shadows.unchecked_append(result_shadow);
  1029. }
  1030. return StyleValueList::create(move(result_shadows), StyleValueList::Separator::Comma);
  1031. }
  1032. static NonnullRefPtr<StyleValue const> interpolate_value(DOM::Element& element, StyleValue const& from, StyleValue const& to, float delta)
  1033. {
  1034. if (from.type() != to.type())
  1035. return delta >= 0.5f ? to : from;
  1036. switch (from.type()) {
  1037. case StyleValue::Type::Angle:
  1038. return AngleStyleValue::create(Angle::make_degrees(interpolate_raw(from.as_angle().angle().to_degrees(), to.as_angle().angle().to_degrees(), delta)));
  1039. case StyleValue::Type::Color:
  1040. return ColorStyleValue::create(interpolate_color(from.as_color().color(), to.as_color().color(), delta));
  1041. case StyleValue::Type::Integer:
  1042. return IntegerStyleValue::create(interpolate_raw(from.as_integer().integer(), to.as_integer().integer(), delta));
  1043. case StyleValue::Type::Length: {
  1044. auto& from_length = from.as_length().length();
  1045. auto& to_length = to.as_length().length();
  1046. return LengthStyleValue::create(Length(interpolate_raw(from_length.raw_value(), to_length.raw_value(), delta), from_length.type()));
  1047. }
  1048. case StyleValue::Type::Number:
  1049. return NumberStyleValue::create(interpolate_raw(from.as_number().number(), to.as_number().number(), delta));
  1050. case StyleValue::Type::Percentage:
  1051. return PercentageStyleValue::create(Percentage(interpolate_raw(from.as_percentage().percentage().value(), to.as_percentage().percentage().value(), delta)));
  1052. case StyleValue::Type::Position: {
  1053. // https://www.w3.org/TR/css-values-4/#combine-positions
  1054. // FIXME: Interpolation of <position> is defined as the independent interpolation of each component (x, y) normalized as an offset from the top left corner as a <length-percentage>.
  1055. auto& from_position = from.as_position();
  1056. auto& to_position = to.as_position();
  1057. return PositionStyleValue::create(
  1058. interpolate_value(element, from_position.edge_x(), to_position.edge_x(), delta)->as_edge(),
  1059. interpolate_value(element, from_position.edge_y(), to_position.edge_y(), delta)->as_edge());
  1060. }
  1061. case StyleValue::Type::Ratio: {
  1062. auto from_ratio = from.as_ratio().ratio();
  1063. auto to_ratio = to.as_ratio().ratio();
  1064. // The interpolation of a <ratio> is defined by converting each <ratio> to a number by dividing the first value
  1065. // by the second (so a ratio of 3 / 2 would become 1.5), taking the logarithm of that result (so the 1.5 would
  1066. // become approximately 0.176), then interpolating those values. The result during the interpolation is
  1067. // converted back to a <ratio> by inverting the logarithm, then interpreting the result as a <ratio> with the
  1068. // result as the first value and 1 as the second value.
  1069. auto from_number = log(from_ratio.value());
  1070. auto to_number = log(to_ratio.value());
  1071. auto interp_number = interpolate_raw(from_number, to_number, delta);
  1072. return RatioStyleValue::create(Ratio(pow(M_E, interp_number)));
  1073. }
  1074. case StyleValue::Type::Rect: {
  1075. auto from_rect = from.as_rect().rect();
  1076. auto to_rect = to.as_rect().rect();
  1077. return RectStyleValue::create({
  1078. Length(interpolate_raw(from_rect.top_edge.raw_value(), to_rect.top_edge.raw_value(), delta), from_rect.top_edge.type()),
  1079. Length(interpolate_raw(from_rect.right_edge.raw_value(), to_rect.right_edge.raw_value(), delta), from_rect.right_edge.type()),
  1080. Length(interpolate_raw(from_rect.bottom_edge.raw_value(), to_rect.bottom_edge.raw_value(), delta), from_rect.bottom_edge.type()),
  1081. Length(interpolate_raw(from_rect.left_edge.raw_value(), to_rect.left_edge.raw_value(), delta), from_rect.left_edge.type()),
  1082. });
  1083. }
  1084. case StyleValue::Type::Transformation:
  1085. VERIFY_NOT_REACHED();
  1086. case StyleValue::Type::ValueList: {
  1087. auto& from_list = from.as_value_list();
  1088. auto& to_list = to.as_value_list();
  1089. if (from_list.size() != to_list.size())
  1090. return from;
  1091. StyleValueVector interpolated_values;
  1092. interpolated_values.ensure_capacity(from_list.size());
  1093. for (size_t i = 0; i < from_list.size(); ++i)
  1094. interpolated_values.append(interpolate_value(element, from_list.values()[i], to_list.values()[i], delta));
  1095. return StyleValueList::create(move(interpolated_values), from_list.separator());
  1096. }
  1097. default:
  1098. return from;
  1099. }
  1100. }
  1101. static ValueComparingRefPtr<StyleValue const> interpolate_property(DOM::Element& element, PropertyID property_id, StyleValue const& from, StyleValue const& to, float delta)
  1102. {
  1103. auto animation_type = animation_type_from_longhand_property(property_id);
  1104. switch (animation_type) {
  1105. case AnimationType::ByComputedValue:
  1106. return interpolate_value(element, from, to, delta);
  1107. case AnimationType::None:
  1108. return to;
  1109. case AnimationType::Custom: {
  1110. if (property_id == PropertyID::Transform) {
  1111. if (auto interpolated_transform = interpolate_transform(element, from, to, delta))
  1112. return *interpolated_transform;
  1113. // https://drafts.csswg.org/css-transforms-1/#interpolation-of-transforms
  1114. // In some cases, an animation might cause a transformation matrix to be singular or non-invertible.
  1115. // For example, an animation in which scale moves from 1 to -1. At the time when the matrix is in
  1116. // such a state, the transformed element is not rendered.
  1117. return {};
  1118. }
  1119. if (property_id == PropertyID::BoxShadow)
  1120. return interpolate_box_shadow(element, from, to, delta);
  1121. // FIXME: Handle all custom animatable properties
  1122. [[fallthrough]];
  1123. }
  1124. // FIXME: Handle repeatable-list animatable properties
  1125. case AnimationType::RepeatableList:
  1126. case AnimationType::Discrete:
  1127. default:
  1128. return delta >= 0.5f ? to : from;
  1129. }
  1130. }
  1131. void StyleComputer::collect_animation_into(JS::NonnullGCPtr<Animations::KeyframeEffect> effect, StyleProperties& style_properties, AnimationRefresh refresh) const
  1132. {
  1133. auto animation = effect->associated_animation();
  1134. if (!animation)
  1135. return;
  1136. auto output_progress = effect->transformed_progress();
  1137. if (!output_progress.has_value())
  1138. return;
  1139. if (!effect->key_frame_set())
  1140. return;
  1141. auto& keyframes = effect->key_frame_set()->keyframes_by_key;
  1142. auto key = static_cast<u64>(output_progress.value() * 100.0 * Animations::KeyframeEffect::AnimationKeyFrameKeyScaleFactor);
  1143. auto matching_keyframe_it = keyframes.find_largest_not_above_iterator(key);
  1144. if (matching_keyframe_it.is_end()) {
  1145. if constexpr (LIBWEB_CSS_ANIMATION_DEBUG) {
  1146. dbgln(" Did not find any start keyframe for the current state ({}) :(", key);
  1147. dbgln(" (have {} keyframes)", keyframes.size());
  1148. for (auto it = keyframes.begin(); it != keyframes.end(); ++it)
  1149. dbgln(" - {}", it.key());
  1150. }
  1151. return;
  1152. }
  1153. auto keyframe_start = matching_keyframe_it.key();
  1154. auto keyframe_values = *matching_keyframe_it;
  1155. auto initial_keyframe_it = matching_keyframe_it;
  1156. auto keyframe_end_it = ++matching_keyframe_it;
  1157. if (keyframe_end_it.is_end())
  1158. keyframe_end_it = initial_keyframe_it;
  1159. auto keyframe_end = keyframe_end_it.key();
  1160. auto keyframe_end_values = *keyframe_end_it;
  1161. auto progress_in_keyframe = [&] {
  1162. if (keyframe_start == keyframe_end)
  1163. return 0.f;
  1164. return static_cast<float>(key - keyframe_start) / static_cast<float>(keyframe_end - keyframe_start);
  1165. }();
  1166. if constexpr (LIBWEB_CSS_ANIMATION_DEBUG) {
  1167. auto valid_properties = keyframe_values.resolved_properties.size();
  1168. dbgln("Animation {} contains {} properties to interpolate, progress = {}%", animation->id(), valid_properties, progress_in_keyframe * 100);
  1169. }
  1170. for (auto const& it : keyframe_values.resolved_properties) {
  1171. auto resolve_property = [&](auto& property) {
  1172. return property.visit(
  1173. [&](Animations::KeyframeEffect::KeyFrameSet::UseInitial) -> RefPtr<StyleValue const> {
  1174. if (refresh == AnimationRefresh::Yes)
  1175. return {};
  1176. return style_properties.maybe_null_property(it.key);
  1177. },
  1178. [&](RefPtr<StyleValue const> value) { return value; });
  1179. };
  1180. auto resolved_start_property = resolve_property(it.value);
  1181. auto const& end_property = keyframe_end_values.resolved_properties.get(it.key);
  1182. if (!end_property.has_value()) {
  1183. if (resolved_start_property) {
  1184. style_properties.set_animated_property(it.key, *resolved_start_property);
  1185. dbgln_if(LIBWEB_CSS_ANIMATION_DEBUG, "No end property for property {}, using {}", string_from_property_id(it.key), resolved_start_property->to_string());
  1186. }
  1187. continue;
  1188. }
  1189. auto resolved_end_property = resolve_property(end_property.value());
  1190. if (resolved_end_property && !resolved_start_property)
  1191. resolved_start_property = CSS::property_initial_value(document().realm(), it.key);
  1192. if (!resolved_start_property || !resolved_end_property)
  1193. continue;
  1194. auto start = resolved_start_property.release_nonnull();
  1195. auto end = resolved_end_property.release_nonnull();
  1196. if (style_properties.is_property_important(it.key)) {
  1197. continue;
  1198. }
  1199. if (auto next_value = interpolate_property(*effect->target(), it.key, *start, *end, progress_in_keyframe)) {
  1200. dbgln_if(LIBWEB_CSS_ANIMATION_DEBUG, "Interpolated value for property {} at {}: {} -> {} = {}", string_from_property_id(it.key), progress_in_keyframe, start->to_string(), end->to_string(), next_value->to_string());
  1201. style_properties.set_animated_property(it.key, *next_value);
  1202. } else {
  1203. // If interpolate_property() fails, the element should not be rendered
  1204. dbgln_if(LIBWEB_CSS_ANIMATION_DEBUG, "Interpolated value for property {} at {}: {} -> {} is invalid", string_from_property_id(it.key), progress_in_keyframe, start->to_string(), end->to_string());
  1205. style_properties.set_animated_property(PropertyID::Visibility, IdentifierStyleValue::create(ValueID::Hidden));
  1206. }
  1207. }
  1208. }
  1209. static void apply_animation_properties(DOM::Document& document, StyleProperties& style, Animations::Animation& animation)
  1210. {
  1211. auto& effect = verify_cast<Animations::KeyframeEffect>(*animation.effect());
  1212. Optional<CSS::Time> duration;
  1213. if (auto duration_value = style.maybe_null_property(PropertyID::AnimationDuration); duration_value) {
  1214. if (duration_value->is_time()) {
  1215. duration = duration_value->as_time().time();
  1216. } else if (duration_value->is_identifier() && duration_value->as_identifier().id() == ValueID::Auto) {
  1217. // We use empty optional to represent "auto".
  1218. duration = {};
  1219. }
  1220. }
  1221. CSS::Time delay { 0, CSS::Time::Type::S };
  1222. if (auto delay_value = style.maybe_null_property(PropertyID::AnimationDelay); delay_value && delay_value->is_time())
  1223. delay = delay_value->as_time().time();
  1224. double iteration_count = 1.0;
  1225. if (auto iteration_count_value = style.maybe_null_property(PropertyID::AnimationIterationCount); iteration_count_value) {
  1226. if (iteration_count_value->is_identifier() && iteration_count_value->to_identifier() == ValueID::Infinite)
  1227. iteration_count = HUGE_VAL;
  1228. else if (iteration_count_value->is_number())
  1229. iteration_count = iteration_count_value->as_number().number();
  1230. }
  1231. CSS::AnimationFillMode fill_mode { CSS::AnimationFillMode::None };
  1232. if (auto fill_mode_property = style.maybe_null_property(PropertyID::AnimationFillMode); fill_mode_property && fill_mode_property->is_identifier()) {
  1233. if (auto fill_mode_value = value_id_to_animation_fill_mode(fill_mode_property->to_identifier()); fill_mode_value.has_value())
  1234. fill_mode = *fill_mode_value;
  1235. }
  1236. CSS::AnimationDirection direction { CSS::AnimationDirection::Normal };
  1237. if (auto direction_property = style.maybe_null_property(PropertyID::AnimationDirection); direction_property && direction_property->is_identifier()) {
  1238. if (auto direction_value = value_id_to_animation_direction(direction_property->to_identifier()); direction_value.has_value())
  1239. direction = *direction_value;
  1240. }
  1241. CSS::AnimationPlayState play_state { CSS::AnimationPlayState::Running };
  1242. if (auto play_state_property = style.maybe_null_property(PropertyID::AnimationPlayState); play_state_property && play_state_property->is_identifier()) {
  1243. if (auto play_state_value = value_id_to_animation_play_state(play_state_property->to_identifier()); play_state_value.has_value())
  1244. play_state = *play_state_value;
  1245. }
  1246. Animations::TimingFunction timing_function = Animations::ease_timing_function;
  1247. if (auto timing_property = style.maybe_null_property(PropertyID::AnimationTimingFunction); timing_property && timing_property->is_easing())
  1248. timing_function = Animations::TimingFunction::from_easing_style_value(timing_property->as_easing());
  1249. auto iteration_duration = duration.has_value()
  1250. ? Variant<double, String> { duration.release_value().to_milliseconds() }
  1251. : "auto"_string;
  1252. effect.set_iteration_duration(iteration_duration);
  1253. effect.set_start_delay(delay.to_milliseconds());
  1254. effect.set_iteration_count(iteration_count);
  1255. effect.set_timing_function(move(timing_function));
  1256. effect.set_fill_mode(Animations::css_fill_mode_to_bindings_fill_mode(fill_mode));
  1257. effect.set_playback_direction(Animations::css_animation_direction_to_bindings_playback_direction(direction));
  1258. HTML::TemporaryExecutionContext context(document.relevant_settings_object());
  1259. if (play_state == CSS::AnimationPlayState::Running && !animation.is_relevant()) {
  1260. animation.play().release_value_but_fixme_should_propagate_errors();
  1261. } else if (play_state == CSS::AnimationPlayState::Paused && animation.play_state() != Bindings::AnimationPlayState::Paused) {
  1262. animation.pause().release_value_but_fixme_should_propagate_errors();
  1263. }
  1264. }
  1265. // https://www.w3.org/TR/css-cascade/#cascading
  1266. void StyleComputer::compute_cascaded_values(StyleProperties& style, DOM::Element& element, Optional<CSS::Selector::PseudoElement::Type> pseudo_element, bool& did_match_any_pseudo_element_rules, ComputeStyleMode mode) const
  1267. {
  1268. // First, we collect all the CSS rules whose selectors match `element`:
  1269. MatchingRuleSet matching_rule_set;
  1270. matching_rule_set.user_agent_rules = collect_matching_rules(element, CascadeOrigin::UserAgent, pseudo_element);
  1271. sort_matching_rules(matching_rule_set.user_agent_rules);
  1272. matching_rule_set.user_rules = collect_matching_rules(element, CascadeOrigin::User, pseudo_element);
  1273. sort_matching_rules(matching_rule_set.user_rules);
  1274. matching_rule_set.author_rules = collect_matching_rules(element, CascadeOrigin::Author, pseudo_element);
  1275. sort_matching_rules(matching_rule_set.author_rules);
  1276. if (mode == ComputeStyleMode::CreatePseudoElementStyleIfNeeded) {
  1277. VERIFY(pseudo_element.has_value());
  1278. if (matching_rule_set.author_rules.is_empty() && matching_rule_set.user_rules.is_empty() && matching_rule_set.user_agent_rules.is_empty()) {
  1279. did_match_any_pseudo_element_rules = false;
  1280. return;
  1281. }
  1282. did_match_any_pseudo_element_rules = true;
  1283. }
  1284. // Then we resolve all the CSS custom properties ("variables") for this element:
  1285. cascade_custom_properties(element, pseudo_element, matching_rule_set.author_rules);
  1286. // Then we apply the declarations from the matched rules in cascade order:
  1287. // Normal user agent declarations
  1288. cascade_declarations(style, element, pseudo_element, matching_rule_set.user_agent_rules, CascadeOrigin::UserAgent, Important::No);
  1289. // Normal user declarations
  1290. cascade_declarations(style, element, pseudo_element, matching_rule_set.user_rules, CascadeOrigin::User, Important::No);
  1291. // Author presentational hints (NOTE: The spec doesn't say exactly how to prioritize these.)
  1292. if (!pseudo_element.has_value()) {
  1293. element.apply_presentational_hints(style);
  1294. // SVG presentation attributes are parsed as CSS values, so we need to handle potential custom properties here.
  1295. if (element.is_svg_element()) {
  1296. // FIXME: This is not very efficient, we should only resolve the custom properties that are actually used.
  1297. for (auto i = to_underlying(CSS::first_property_id); i <= to_underlying(CSS::last_property_id); ++i) {
  1298. auto property_id = (CSS::PropertyID)i;
  1299. auto& property = style.m_property_values[i];
  1300. if (property.has_value() && property->style->is_unresolved())
  1301. property->style = Parser::Parser::resolve_unresolved_style_value({}, Parser::ParsingContext { document() }, element, pseudo_element, property_id, property->style->as_unresolved());
  1302. }
  1303. }
  1304. }
  1305. // Normal author declarations
  1306. cascade_declarations(style, element, pseudo_element, matching_rule_set.author_rules, CascadeOrigin::Author, Important::No);
  1307. // Animation declarations [css-animations-2]
  1308. auto animation_name = [&]() -> Optional<String> {
  1309. auto animation_name = style.maybe_null_property(PropertyID::AnimationName);
  1310. if (animation_name.is_null())
  1311. return OptionalNone {};
  1312. if (animation_name->is_string())
  1313. return animation_name->as_string().string_value();
  1314. return animation_name->to_string();
  1315. }();
  1316. if (animation_name.has_value()) {
  1317. if (auto source_declaration = style.property_source_declaration(PropertyID::AnimationName); source_declaration) {
  1318. auto& realm = element.realm();
  1319. if (source_declaration != element.cached_animation_name_source()) {
  1320. // This animation name is new, so we need to create a new animation for it.
  1321. if (auto existing_animation = element.cached_animation_name_animation())
  1322. existing_animation->cancel(Animations::Animation::ShouldInvalidate::No);
  1323. element.set_cached_animation_name_source(source_declaration);
  1324. auto effect = Animations::KeyframeEffect::create(realm);
  1325. auto animation = CSSAnimation::create(realm);
  1326. animation->set_id(animation_name.release_value());
  1327. animation->set_timeline(m_document->timeline());
  1328. animation->set_owning_element(element);
  1329. animation->set_effect(effect);
  1330. apply_animation_properties(m_document, style, animation);
  1331. if (pseudo_element.has_value())
  1332. effect->set_pseudo_element(Selector::PseudoElement { pseudo_element.value() });
  1333. auto const& rule_cache = rule_cache_for_cascade_origin(CascadeOrigin::Author);
  1334. if (auto keyframe_set = rule_cache.rules_by_animation_keyframes.get(animation->id()); keyframe_set.has_value())
  1335. effect->set_key_frame_set(keyframe_set.value());
  1336. effect->set_target(&element);
  1337. element.set_cached_animation_name_animation(animation);
  1338. } else {
  1339. // The animation hasn't changed, but some properties of the animation may have
  1340. apply_animation_properties(m_document, style, *element.cached_animation_name_animation());
  1341. }
  1342. }
  1343. } else {
  1344. // If the element had an existing animation, cancel it
  1345. if (auto existing_animation = element.cached_animation_name_animation()) {
  1346. existing_animation->cancel(Animations::Animation::ShouldInvalidate::No);
  1347. element.set_cached_animation_name_animation({});
  1348. element.set_cached_animation_name_source({});
  1349. }
  1350. }
  1351. auto animations = element.get_animations({ .subtree = false });
  1352. for (auto& animation : animations) {
  1353. if (!animation->is_relevant())
  1354. continue;
  1355. if (auto effect = animation->effect(); effect && effect->is_keyframe_effect()) {
  1356. auto& keyframe_effect = *static_cast<Animations::KeyframeEffect*>(effect.ptr());
  1357. if (keyframe_effect.pseudo_element_type() == pseudo_element)
  1358. collect_animation_into(keyframe_effect, style);
  1359. }
  1360. }
  1361. // Important author declarations
  1362. cascade_declarations(style, element, pseudo_element, matching_rule_set.author_rules, CascadeOrigin::Author, Important::Yes);
  1363. // Important user declarations
  1364. cascade_declarations(style, element, pseudo_element, matching_rule_set.user_rules, CascadeOrigin::User, Important::Yes);
  1365. // Important user agent declarations
  1366. cascade_declarations(style, element, pseudo_element, matching_rule_set.user_agent_rules, CascadeOrigin::UserAgent, Important::Yes);
  1367. // FIXME: Transition declarations [css-transitions-1]
  1368. }
  1369. DOM::Element const* element_to_inherit_style_from(DOM::Element const* element, Optional<CSS::Selector::PseudoElement::Type> pseudo_element)
  1370. {
  1371. // Pseudo-elements treat their originating element as their parent.
  1372. DOM::Element const* parent_element = nullptr;
  1373. if (pseudo_element.has_value()) {
  1374. parent_element = element;
  1375. } else if (element) {
  1376. parent_element = element->parent_or_shadow_host_element();
  1377. }
  1378. return parent_element;
  1379. }
  1380. NonnullRefPtr<StyleValue const> StyleComputer::get_inherit_value(JS::Realm& initial_value_context_realm, CSS::PropertyID property_id, DOM::Element const* element, Optional<CSS::Selector::PseudoElement::Type> pseudo_element)
  1381. {
  1382. auto* parent_element = element_to_inherit_style_from(element, pseudo_element);
  1383. if (!parent_element || !parent_element->computed_css_values())
  1384. return property_initial_value(initial_value_context_realm, property_id);
  1385. return parent_element->computed_css_values()->property(property_id);
  1386. }
  1387. void StyleComputer::compute_defaulted_property_value(StyleProperties& style, DOM::Element const* element, CSS::PropertyID property_id, Optional<CSS::Selector::PseudoElement::Type> pseudo_element) const
  1388. {
  1389. // FIXME: If we don't know the correct initial value for a property, we fall back to InitialStyleValue.
  1390. auto& value_slot = style.m_property_values[to_underlying(property_id)];
  1391. if (!value_slot.has_value()) {
  1392. if (is_inherited_property(property_id))
  1393. style.m_property_values[to_underlying(property_id)] = { { get_inherit_value(document().realm(), property_id, element, pseudo_element), nullptr, StyleProperties::Important::No, StyleProperties::Inherited::Yes } };
  1394. else
  1395. style.m_property_values[to_underlying(property_id)] = { { property_initial_value(document().realm(), property_id), nullptr } };
  1396. return;
  1397. }
  1398. if (value_slot->style->is_initial()) {
  1399. value_slot->style = property_initial_value(document().realm(), property_id);
  1400. return;
  1401. }
  1402. if (value_slot->style->is_inherit()) {
  1403. value_slot->style = get_inherit_value(document().realm(), property_id, element, pseudo_element);
  1404. value_slot->inherited = StyleProperties::Inherited::Yes;
  1405. return;
  1406. }
  1407. // https://www.w3.org/TR/css-cascade-4/#inherit-initial
  1408. // If the cascaded value of a property is the unset keyword,
  1409. if (value_slot->style->is_unset()) {
  1410. if (is_inherited_property(property_id)) {
  1411. // then if it is an inherited property, this is treated as inherit,
  1412. value_slot->style = get_inherit_value(document().realm(), property_id, element, pseudo_element);
  1413. value_slot->inherited = StyleProperties::Inherited::Yes;
  1414. } else {
  1415. // and if it is not, this is treated as initial.
  1416. value_slot->style = property_initial_value(document().realm(), property_id);
  1417. }
  1418. }
  1419. }
  1420. // https://www.w3.org/TR/css-cascade/#defaulting
  1421. void StyleComputer::compute_defaulted_values(StyleProperties& style, DOM::Element const* element, Optional<CSS::Selector::PseudoElement::Type> pseudo_element) const
  1422. {
  1423. // Walk the list of all known CSS properties and:
  1424. // - Add them to `style` if they are missing.
  1425. // - Resolve `inherit` and `initial` as needed.
  1426. for (auto i = to_underlying(CSS::first_longhand_property_id); i <= to_underlying(CSS::last_longhand_property_id); ++i) {
  1427. auto property_id = (CSS::PropertyID)i;
  1428. compute_defaulted_property_value(style, element, property_id, pseudo_element);
  1429. }
  1430. // https://www.w3.org/TR/css-color-4/#resolving-other-colors
  1431. // In the color property, the used value of currentcolor is the inherited value.
  1432. auto color = style.property(CSS::PropertyID::Color);
  1433. if (color->to_identifier() == CSS::ValueID::Currentcolor) {
  1434. color = get_inherit_value(document().realm(), CSS::PropertyID::Color, element, pseudo_element);
  1435. style.set_property(CSS::PropertyID::Color, color);
  1436. }
  1437. }
  1438. Length::FontMetrics StyleComputer::calculate_root_element_font_metrics(StyleProperties const& style) const
  1439. {
  1440. auto root_value = style.property(CSS::PropertyID::FontSize);
  1441. auto font_pixel_metrics = style.first_available_computed_font().pixel_metrics();
  1442. Length::FontMetrics font_metrics { m_default_font_metrics.font_size, font_pixel_metrics };
  1443. font_metrics.font_size = root_value->as_length().length().to_px(viewport_rect(), font_metrics, font_metrics);
  1444. font_metrics.line_height = style.compute_line_height(viewport_rect(), font_metrics, font_metrics);
  1445. return font_metrics;
  1446. }
  1447. RefPtr<Gfx::FontCascadeList const> StyleComputer::find_matching_font_weight_ascending(Vector<MatchingFontCandidate> const& candidates, int target_weight, float font_size_in_pt, bool inclusive)
  1448. {
  1449. using Fn = AK::Function<bool(MatchingFontCandidate const&)>;
  1450. auto pred = inclusive ? Fn([&](auto const& matching_font_candidate) { return matching_font_candidate.key.weight >= target_weight; })
  1451. : Fn([&](auto const& matching_font_candidate) { return matching_font_candidate.key.weight > target_weight; });
  1452. auto it = find_if(candidates.begin(), candidates.end(), pred);
  1453. for (; it != candidates.end(); ++it) {
  1454. if (auto found_font = it->font_with_point_size(font_size_in_pt))
  1455. return found_font;
  1456. }
  1457. return {};
  1458. }
  1459. RefPtr<Gfx::FontCascadeList const> StyleComputer::find_matching_font_weight_descending(Vector<MatchingFontCandidate> const& candidates, int target_weight, float font_size_in_pt, bool inclusive)
  1460. {
  1461. using Fn = AK::Function<bool(MatchingFontCandidate const&)>;
  1462. auto pred = inclusive ? Fn([&](auto const& matching_font_candidate) { return matching_font_candidate.key.weight <= target_weight; })
  1463. : Fn([&](auto const& matching_font_candidate) { return matching_font_candidate.key.weight < target_weight; });
  1464. auto it = find_if(candidates.rbegin(), candidates.rend(), pred);
  1465. for (; it != candidates.rend(); ++it) {
  1466. if (auto found_font = it->font_with_point_size(font_size_in_pt))
  1467. return found_font;
  1468. }
  1469. return {};
  1470. }
  1471. // Partial implementation of the font-matching algorithm: https://www.w3.org/TR/css-fonts-4/#font-matching-algorithm
  1472. // FIXME: This should be replaced by the full CSS font selection algorithm.
  1473. RefPtr<Gfx::FontCascadeList const> StyleComputer::font_matching_algorithm(FontFaceKey const& key, float font_size_in_pt) const
  1474. {
  1475. // If a font family match occurs, the user agent assembles the set of font faces in that family and then
  1476. // narrows the set to a single face using other font properties in the order given below.
  1477. Vector<MatchingFontCandidate> matching_family_fonts;
  1478. for (auto const& font_key_and_loader : m_loaded_fonts) {
  1479. if (font_key_and_loader.key.family_name.equals_ignoring_ascii_case(key.family_name))
  1480. matching_family_fonts.empend(font_key_and_loader.key, const_cast<FontLoaderList*>(&font_key_and_loader.value));
  1481. }
  1482. Gfx::FontDatabase::the().for_each_typeface_with_family_name(key.family_name, [&](Gfx::Typeface const& typeface) {
  1483. matching_family_fonts.empend(
  1484. FontFaceKey {
  1485. .family_name = typeface.family(),
  1486. .weight = static_cast<int>(typeface.weight()),
  1487. .slope = typeface.slope(),
  1488. },
  1489. &typeface);
  1490. });
  1491. quick_sort(matching_family_fonts, [](auto const& a, auto const& b) {
  1492. return a.key.weight < b.key.weight;
  1493. });
  1494. // FIXME: 1. font-stretch is tried first.
  1495. // FIXME: 2. font-style is tried next.
  1496. // We don't have complete support of italic and oblique fonts, so matching on font-style can be simplified to:
  1497. // If a matching slope is found, all faces which don't have that matching slope are excluded from the matching set.
  1498. auto style_it = find_if(matching_family_fonts.begin(), matching_family_fonts.end(),
  1499. [&](auto const& matching_font_candidate) { return matching_font_candidate.key.slope == key.slope; });
  1500. if (style_it != matching_family_fonts.end()) {
  1501. matching_family_fonts.remove_all_matching([&](auto const& matching_font_candidate) {
  1502. return matching_font_candidate.key.slope != key.slope;
  1503. });
  1504. }
  1505. // 3. font-weight is matched next.
  1506. // If the desired weight is inclusively between 400 and 500, weights greater than or equal to the target weight
  1507. // are checked in ascending order until 500 is hit and checked, followed by weights less than the target weight
  1508. // in descending order, followed by weights greater than 500, until a match is found.
  1509. if (key.weight >= 400 && key.weight <= 500) {
  1510. auto it = find_if(matching_family_fonts.begin(), matching_family_fonts.end(),
  1511. [&](auto const& matching_font_candidate) { return matching_font_candidate.key.weight >= key.weight; });
  1512. for (; it != matching_family_fonts.end() && it->key.weight <= 500; ++it) {
  1513. if (auto found_font = it->font_with_point_size(font_size_in_pt))
  1514. return found_font;
  1515. }
  1516. if (auto found_font = find_matching_font_weight_descending(matching_family_fonts, key.weight, font_size_in_pt, false))
  1517. return found_font;
  1518. for (; it != matching_family_fonts.end(); ++it) {
  1519. if (auto found_font = it->font_with_point_size(font_size_in_pt))
  1520. return found_font;
  1521. }
  1522. }
  1523. // If the desired weight is less than 400, weights less than or equal to the desired weight are checked in descending order
  1524. // followed by weights above the desired weight in ascending order until a match is found.
  1525. if (key.weight < 400) {
  1526. if (auto found_font = find_matching_font_weight_descending(matching_family_fonts, key.weight, font_size_in_pt, true))
  1527. return found_font;
  1528. if (auto found_font = find_matching_font_weight_ascending(matching_family_fonts, key.weight, font_size_in_pt, false))
  1529. return found_font;
  1530. }
  1531. // If the desired weight is greater than 500, weights greater than or equal to the desired weight are checked in ascending order
  1532. // followed by weights below the desired weight in descending order until a match is found.
  1533. if (key.weight > 500) {
  1534. if (auto found_font = find_matching_font_weight_ascending(matching_family_fonts, key.weight, font_size_in_pt, true))
  1535. return found_font;
  1536. if (auto found_font = find_matching_font_weight_descending(matching_family_fonts, key.weight, font_size_in_pt, false))
  1537. return found_font;
  1538. }
  1539. return {};
  1540. }
  1541. RefPtr<Gfx::FontCascadeList const> StyleComputer::compute_font_for_style_values(DOM::Element const* element, Optional<CSS::Selector::PseudoElement::Type> pseudo_element, StyleValue const& font_family, StyleValue const& font_size, StyleValue const& font_style, StyleValue const& font_weight, StyleValue const& font_stretch, int math_depth) const
  1542. {
  1543. auto* parent_element = element_to_inherit_style_from(element, pseudo_element);
  1544. auto width = font_stretch.to_font_stretch_width();
  1545. auto weight = font_weight.to_font_weight();
  1546. bool bold = weight > Gfx::FontWeight::Regular;
  1547. // FIXME: Should be based on "user's default font size"
  1548. CSSPixels font_size_in_px = 16;
  1549. Gfx::FontPixelMetrics font_pixel_metrics;
  1550. if (parent_element && parent_element->computed_css_values())
  1551. font_pixel_metrics = parent_element->computed_css_values()->first_available_computed_font().pixel_metrics();
  1552. else
  1553. font_pixel_metrics = Platform::FontPlugin::the().default_font().pixel_metrics();
  1554. auto parent_font_size = [&]() -> CSSPixels {
  1555. if (!parent_element || !parent_element->computed_css_values())
  1556. return font_size_in_px;
  1557. auto value = parent_element->computed_css_values()->property(CSS::PropertyID::FontSize);
  1558. if (value->is_length()) {
  1559. auto length = value->as_length().length();
  1560. if (length.is_absolute() || length.is_relative()) {
  1561. Length::FontMetrics font_metrics { font_size_in_px, font_pixel_metrics };
  1562. return length.to_px(viewport_rect(), font_metrics, m_root_element_font_metrics);
  1563. }
  1564. }
  1565. return font_size_in_px;
  1566. };
  1567. Length::FontMetrics font_metrics { parent_font_size(), font_pixel_metrics };
  1568. if (font_size.is_identifier()) {
  1569. // https://w3c.github.io/csswg-drafts/css-fonts/#absolute-size-mapping
  1570. auto get_absolute_size_mapping = [](Web::CSS::ValueID identifier) -> CSSPixelFraction {
  1571. switch (identifier) {
  1572. case CSS::ValueID::XxSmall:
  1573. return CSSPixels(3) / 5;
  1574. case CSS::ValueID::XSmall:
  1575. return CSSPixels(3) / 4;
  1576. case CSS::ValueID::Small:
  1577. return CSSPixels(8) / 9;
  1578. case CSS::ValueID::Medium:
  1579. return 1;
  1580. case CSS::ValueID::Large:
  1581. return CSSPixels(6) / 5;
  1582. case CSS::ValueID::XLarge:
  1583. return CSSPixels(3) / 2;
  1584. case CSS::ValueID::XxLarge:
  1585. return 2;
  1586. case CSS::ValueID::XxxLarge:
  1587. return 3;
  1588. case CSS::ValueID::Smaller:
  1589. return CSSPixels(4) / 5;
  1590. case CSS::ValueID::Larger:
  1591. return CSSPixels(5) / 4;
  1592. default:
  1593. return 1;
  1594. }
  1595. };
  1596. auto const identifier = static_cast<IdentifierStyleValue const&>(font_size).id();
  1597. if (identifier == ValueID::Math) {
  1598. auto math_scaling_factor = [&]() {
  1599. // https://w3c.github.io/mathml-core/#the-math-script-level-property
  1600. // If the specified value font-size is math then the computed value of font-size is obtained by multiplying
  1601. // the inherited value of font-size by a nonzero scale factor calculated by the following procedure:
  1602. // 1. Let A be the inherited math-depth value, B the computed math-depth value, C be 0.71 and S be 1.0
  1603. int inherited_math_depth = parent_element && parent_element->computed_css_values()
  1604. ? parent_element->computed_css_values()->math_depth()
  1605. : InitialValues::math_depth();
  1606. int computed_math_depth = math_depth;
  1607. auto size_ratio = 0.71;
  1608. auto scale = 1.0;
  1609. // 2. If A = B then return S.
  1610. bool invert_scale_factor = false;
  1611. if (inherited_math_depth == computed_math_depth) {
  1612. return scale;
  1613. }
  1614. // If B < A, swap A and B and set InvertScaleFactor to true.
  1615. else if (computed_math_depth < inherited_math_depth) {
  1616. AK::swap(inherited_math_depth, computed_math_depth);
  1617. invert_scale_factor = true;
  1618. }
  1619. // Otherwise B > A and set InvertScaleFactor to false.
  1620. else {
  1621. invert_scale_factor = false;
  1622. }
  1623. // 3. Let E be B - A > 0.
  1624. double e = (computed_math_depth - inherited_math_depth) > 0;
  1625. // FIXME: 4. If the inherited first available font has an OpenType MATH table:
  1626. // - If A ≤ 0 and B ≥ 2 then multiply S by scriptScriptPercentScaleDown and decrement E by 2.
  1627. // - Otherwise if A = 1 then multiply S by scriptScriptPercentScaleDown / scriptPercentScaleDown and decrement E by 1.
  1628. // - Otherwise if B = 1 then multiply S by scriptPercentScaleDown and decrement E by 1.
  1629. // 5. Multiply S by C^E.
  1630. scale *= AK::pow(size_ratio, e);
  1631. // 6. Return S if InvertScaleFactor is false and 1/S otherwise.
  1632. if (!invert_scale_factor)
  1633. return scale;
  1634. return 1.0 / scale;
  1635. };
  1636. font_size_in_px = parent_font_size().scale_by(math_scaling_factor());
  1637. } else {
  1638. // https://w3c.github.io/csswg-drafts/css-fonts/#valdef-font-size-relative-size
  1639. // TODO: If the parent element has a keyword font size in the absolute size keyword mapping table,
  1640. // larger may compute the font size to the next entry in the table,
  1641. // and smaller may compute the font size to the previous entry in the table.
  1642. if (identifier == CSS::ValueID::Smaller || identifier == CSS::ValueID::Larger) {
  1643. if (parent_element && parent_element->computed_css_values()) {
  1644. font_size_in_px = CSSPixels::nearest_value_for(parent_element->computed_css_values()->first_available_computed_font().pixel_metrics().size);
  1645. }
  1646. }
  1647. font_size_in_px *= get_absolute_size_mapping(identifier);
  1648. }
  1649. } else {
  1650. Length::ResolutionContext const length_resolution_context {
  1651. .viewport_rect = viewport_rect(),
  1652. .font_metrics = font_metrics,
  1653. .root_font_metrics = m_root_element_font_metrics,
  1654. };
  1655. Optional<Length> maybe_length;
  1656. if (font_size.is_percentage()) {
  1657. // Percentages refer to parent element's font size
  1658. maybe_length = Length::make_px(CSSPixels::nearest_value_for(font_size.as_percentage().percentage().as_fraction() * parent_font_size().to_double()));
  1659. } else if (font_size.is_length()) {
  1660. maybe_length = font_size.as_length().length();
  1661. } else if (font_size.is_calculated()) {
  1662. if (font_size.as_calculated().contains_percentage()) {
  1663. maybe_length = font_size.as_calculated().resolve_length_percentage(length_resolution_context, Length::make_px(parent_font_size()));
  1664. } else {
  1665. maybe_length = font_size.as_calculated().resolve_length(length_resolution_context);
  1666. }
  1667. }
  1668. if (maybe_length.has_value()) {
  1669. font_size_in_px = maybe_length.value().to_px(length_resolution_context);
  1670. }
  1671. }
  1672. auto slope = font_style.to_font_slope();
  1673. // FIXME: Implement the full font-matching algorithm: https://www.w3.org/TR/css-fonts-4/#font-matching-algorithm
  1674. // Note: This is modified by the find_font() lambda
  1675. bool monospace = false;
  1676. float const font_size_in_pt = font_size_in_px * 0.75f;
  1677. auto find_font = [&](FlyString const& family) -> RefPtr<Gfx::FontCascadeList const> {
  1678. FontFaceKey key {
  1679. .family_name = family,
  1680. .weight = weight,
  1681. .slope = slope,
  1682. };
  1683. auto result = Gfx::FontCascadeList::create();
  1684. if (auto it = m_loaded_fonts.find(key); it != m_loaded_fonts.end()) {
  1685. auto const& loaders = it->value;
  1686. for (auto const& loader : loaders) {
  1687. if (auto found_font = loader->font_with_point_size(font_size_in_pt))
  1688. result->add(*found_font, loader->unicode_ranges());
  1689. }
  1690. return result;
  1691. }
  1692. if (auto found_font = font_matching_algorithm(key, font_size_in_pt); found_font && !found_font->is_empty()) {
  1693. return found_font;
  1694. }
  1695. if (auto found_font = Gfx::FontDatabase::the().get(family, font_size_in_pt, weight, width, slope, Gfx::Font::AllowInexactSizeMatch::Yes)) {
  1696. result->add(*found_font);
  1697. return result;
  1698. }
  1699. return {};
  1700. };
  1701. auto find_generic_font = [&](ValueID font_id) -> RefPtr<Gfx::FontCascadeList const> {
  1702. Platform::GenericFont generic_font {};
  1703. switch (font_id) {
  1704. case ValueID::Monospace:
  1705. case ValueID::UiMonospace:
  1706. generic_font = Platform::GenericFont::Monospace;
  1707. monospace = true;
  1708. break;
  1709. case ValueID::Serif:
  1710. generic_font = Platform::GenericFont::Serif;
  1711. break;
  1712. case ValueID::Fantasy:
  1713. generic_font = Platform::GenericFont::Fantasy;
  1714. break;
  1715. case ValueID::SansSerif:
  1716. generic_font = Platform::GenericFont::SansSerif;
  1717. break;
  1718. case ValueID::Cursive:
  1719. generic_font = Platform::GenericFont::Cursive;
  1720. break;
  1721. case ValueID::UiSerif:
  1722. generic_font = Platform::GenericFont::UiSerif;
  1723. break;
  1724. case ValueID::UiSansSerif:
  1725. generic_font = Platform::GenericFont::UiSansSerif;
  1726. break;
  1727. case ValueID::UiRounded:
  1728. generic_font = Platform::GenericFont::UiRounded;
  1729. break;
  1730. default:
  1731. return {};
  1732. }
  1733. return find_font(Platform::FontPlugin::the().generic_font_name(generic_font));
  1734. };
  1735. auto font_list = Gfx::FontCascadeList::create();
  1736. if (font_family.is_value_list()) {
  1737. auto const& family_list = static_cast<StyleValueList const&>(font_family).values();
  1738. for (auto const& family : family_list) {
  1739. RefPtr<Gfx::FontCascadeList const> other_font_list;
  1740. if (family->is_identifier()) {
  1741. other_font_list = find_generic_font(family->to_identifier());
  1742. } else if (family->is_string()) {
  1743. other_font_list = find_font(family->as_string().string_value());
  1744. } else if (family->is_custom_ident()) {
  1745. other_font_list = find_font(family->as_custom_ident().custom_ident());
  1746. }
  1747. if (other_font_list)
  1748. font_list->extend(*other_font_list);
  1749. }
  1750. } else if (font_family.is_identifier()) {
  1751. if (auto other_font_list = find_generic_font(font_family.to_identifier()))
  1752. font_list->extend(*other_font_list);
  1753. } else if (font_family.is_string()) {
  1754. if (auto other_font_list = find_font(font_family.as_string().string_value()))
  1755. font_list->extend(*other_font_list);
  1756. } else if (font_family.is_custom_ident()) {
  1757. if (auto other_font_list = find_font(font_family.as_custom_ident().custom_ident()))
  1758. font_list->extend(*other_font_list);
  1759. }
  1760. auto found_font = StyleProperties::font_fallback(monospace, bold);
  1761. if (auto scaled_fallback_font = found_font->with_size(font_size_in_pt)) {
  1762. font_list->add(*scaled_fallback_font);
  1763. } else {
  1764. font_list->add(*found_font);
  1765. }
  1766. return font_list;
  1767. }
  1768. void StyleComputer::compute_font(StyleProperties& style, DOM::Element const* element, Optional<CSS::Selector::PseudoElement::Type> pseudo_element) const
  1769. {
  1770. // To compute the font, first ensure that we've defaulted the relevant CSS font properties.
  1771. // FIXME: This should be more sophisticated.
  1772. compute_defaulted_property_value(style, element, CSS::PropertyID::FontFamily, pseudo_element);
  1773. compute_defaulted_property_value(style, element, CSS::PropertyID::FontSize, pseudo_element);
  1774. compute_defaulted_property_value(style, element, CSS::PropertyID::FontStretch, pseudo_element);
  1775. compute_defaulted_property_value(style, element, CSS::PropertyID::FontStyle, pseudo_element);
  1776. compute_defaulted_property_value(style, element, CSS::PropertyID::FontWeight, pseudo_element);
  1777. compute_defaulted_property_value(style, element, CSS::PropertyID::LineHeight, pseudo_element);
  1778. auto font_family = style.property(CSS::PropertyID::FontFamily);
  1779. auto font_size = style.property(CSS::PropertyID::FontSize);
  1780. auto font_style = style.property(CSS::PropertyID::FontStyle);
  1781. auto font_weight = style.property(CSS::PropertyID::FontWeight);
  1782. auto font_stretch = style.property(CSS::PropertyID::FontStretch);
  1783. auto font_list = compute_font_for_style_values(element, pseudo_element, font_family, font_size, font_style, font_weight, font_stretch, style.math_depth());
  1784. VERIFY(font_list);
  1785. VERIFY(!font_list->is_empty());
  1786. RefPtr<Gfx::Font const> const found_font = font_list->first();
  1787. style.set_property(CSS::PropertyID::FontSize, LengthStyleValue::create(CSS::Length::make_px(CSSPixels::nearest_value_for(found_font->pixel_size()))), nullptr);
  1788. style.set_property(CSS::PropertyID::FontWeight, NumberStyleValue::create(font_weight->to_font_weight()));
  1789. style.set_computed_font_list(*font_list);
  1790. if (element && is<HTML::HTMLHtmlElement>(*element)) {
  1791. const_cast<StyleComputer&>(*this).m_root_element_font_metrics = calculate_root_element_font_metrics(style);
  1792. }
  1793. }
  1794. Gfx::Font const& StyleComputer::initial_font() const
  1795. {
  1796. // FIXME: This is not correct.
  1797. return StyleProperties::font_fallback(false, false);
  1798. }
  1799. void StyleComputer::absolutize_values(StyleProperties& style) const
  1800. {
  1801. Length::FontMetrics font_metrics {
  1802. m_root_element_font_metrics.font_size,
  1803. style.first_available_computed_font().pixel_metrics()
  1804. };
  1805. auto font_size = style.property(CSS::PropertyID::FontSize)->as_length().length().to_px(viewport_rect(), font_metrics, m_root_element_font_metrics);
  1806. font_metrics.font_size = font_size;
  1807. // NOTE: Percentage line-height values are relative to the font-size of the element.
  1808. // We have to resolve them right away, so that the *computed* line-height is ready for inheritance.
  1809. // We can't simply absolutize *all* percentage values against the font size,
  1810. // because most percentages are relative to containing block metrics.
  1811. auto line_height_value_slot = style.m_property_values[to_underlying(CSS::PropertyID::LineHeight)].map([](auto& x) -> auto& { return x.style; });
  1812. if (line_height_value_slot.has_value() && (*line_height_value_slot)->is_percentage()) {
  1813. *line_height_value_slot = LengthStyleValue::create(
  1814. Length::make_px(CSSPixels::nearest_value_for(font_size * static_cast<double>((*line_height_value_slot)->as_percentage().percentage().as_fraction()))));
  1815. }
  1816. auto line_height = style.compute_line_height(viewport_rect(), font_metrics, m_root_element_font_metrics);
  1817. font_metrics.line_height = line_height;
  1818. // NOTE: line-height might be using lh which should be resolved against the parent line height (like we did here already)
  1819. if (line_height_value_slot.has_value() && (*line_height_value_slot)->is_length())
  1820. (*line_height_value_slot) = LengthStyleValue::create(Length::make_px(line_height));
  1821. for (size_t i = 0; i < style.m_property_values.size(); ++i) {
  1822. auto& value_slot = style.m_property_values[i];
  1823. if (!value_slot.has_value())
  1824. continue;
  1825. value_slot->style = value_slot->style->absolutized(viewport_rect(), font_metrics, m_root_element_font_metrics);
  1826. }
  1827. style.set_line_height({}, line_height);
  1828. }
  1829. void StyleComputer::resolve_effective_overflow_values(StyleProperties& style) const
  1830. {
  1831. // https://www.w3.org/TR/css-overflow-3/#overflow-control
  1832. // The visible/clip values of overflow compute to auto/hidden (respectively) if one of overflow-x or
  1833. // overflow-y is neither visible nor clip.
  1834. auto overflow_x = value_id_to_overflow(style.property(PropertyID::OverflowX)->to_identifier());
  1835. auto overflow_y = value_id_to_overflow(style.property(PropertyID::OverflowY)->to_identifier());
  1836. auto overflow_x_is_visible_or_clip = overflow_x == Overflow::Visible || overflow_x == Overflow::Clip;
  1837. auto overflow_y_is_visible_or_clip = overflow_y == Overflow::Visible || overflow_y == Overflow::Clip;
  1838. if (!overflow_x_is_visible_or_clip || !overflow_y_is_visible_or_clip) {
  1839. if (overflow_x == CSS::Overflow::Visible)
  1840. style.set_property(CSS::PropertyID::OverflowX, IdentifierStyleValue::create(CSS::ValueID::Auto), nullptr);
  1841. if (overflow_x == CSS::Overflow::Clip)
  1842. style.set_property(CSS::PropertyID::OverflowX, IdentifierStyleValue::create(CSS::ValueID::Hidden), nullptr);
  1843. if (overflow_y == CSS::Overflow::Visible)
  1844. style.set_property(CSS::PropertyID::OverflowY, IdentifierStyleValue::create(CSS::ValueID::Auto), nullptr);
  1845. if (overflow_y == CSS::Overflow::Clip)
  1846. style.set_property(CSS::PropertyID::OverflowY, IdentifierStyleValue::create(CSS::ValueID::Hidden), nullptr);
  1847. }
  1848. }
  1849. enum class BoxTypeTransformation {
  1850. None,
  1851. Blockify,
  1852. Inlinify,
  1853. };
  1854. static BoxTypeTransformation required_box_type_transformation(StyleProperties const& style, DOM::Element const& element, Optional<CSS::Selector::PseudoElement::Type> const& pseudo_element)
  1855. {
  1856. // NOTE: We never blockify <br> elements. They are always inline.
  1857. // There is currently no way to express in CSS how a <br> element really behaves.
  1858. // Spec issue: https://github.com/whatwg/html/issues/2291
  1859. if (is<HTML::HTMLBRElement>(element))
  1860. return BoxTypeTransformation::None;
  1861. // Absolute positioning or floating an element blockifies the box’s display type. [CSS2]
  1862. if (style.position() == CSS::Positioning::Absolute || style.position() == CSS::Positioning::Fixed || style.float_() != CSS::Float::None)
  1863. return BoxTypeTransformation::Blockify;
  1864. // FIXME: Containment in a ruby container inlinifies the box’s display type, as described in [CSS-RUBY-1].
  1865. // NOTE: If we're computing style for a pseudo-element, the effective parent will be the originating element itself, not its parent.
  1866. auto const* parent = pseudo_element.has_value() ? &element : element.parent_element();
  1867. // A parent with a grid or flex display value blockifies the box’s display type. [CSS-GRID-1] [CSS-FLEXBOX-1]
  1868. if (parent && parent->computed_css_values()) {
  1869. auto const& parent_display = parent->computed_css_values()->display();
  1870. if (parent_display.is_grid_inside() || parent_display.is_flex_inside())
  1871. return BoxTypeTransformation::Blockify;
  1872. }
  1873. return BoxTypeTransformation::None;
  1874. }
  1875. // https://drafts.csswg.org/css-display/#transformations
  1876. void StyleComputer::transform_box_type_if_needed(StyleProperties& style, DOM::Element const& element, Optional<CSS::Selector::PseudoElement::Type> pseudo_element) const
  1877. {
  1878. // 2.7. Automatic Box Type Transformations
  1879. // Some layout effects require blockification or inlinification of the box type,
  1880. // which sets the box’s computed outer display type to block or inline (respectively).
  1881. // (This has no effect on display types that generate no box at all, such as none or contents.)
  1882. auto display = style.display();
  1883. if (display.is_none() || display.is_contents())
  1884. return;
  1885. auto new_display = display;
  1886. if (display.is_math_inside()) {
  1887. // https://w3c.github.io/mathml-core/#new-display-math-value
  1888. // For elements that are not MathML elements, if the specified value of display is inline math or block math
  1889. // then the computed value is block flow and inline flow respectively.
  1890. if (element.namespace_uri() != Namespace::MathML)
  1891. new_display = CSS::Display { display.outside(), CSS::DisplayInside::Flow };
  1892. // For the mtable element the computed value is block table and inline table respectively.
  1893. else if (element.tag_name().equals_ignoring_ascii_case("mtable"sv))
  1894. new_display = CSS::Display { display.outside(), CSS::DisplayInside::Table };
  1895. // For the mtr element, the computed value is table-row.
  1896. else if (element.tag_name().equals_ignoring_ascii_case("mtr"sv))
  1897. new_display = CSS::Display { CSS::DisplayInternal::TableRow };
  1898. // For the mtd element, the computed value is table-cell.
  1899. else if (element.tag_name().equals_ignoring_ascii_case("mtd"sv))
  1900. new_display = CSS::Display { CSS::DisplayInternal::TableCell };
  1901. }
  1902. switch (required_box_type_transformation(style, element, pseudo_element)) {
  1903. case BoxTypeTransformation::None:
  1904. break;
  1905. case BoxTypeTransformation::Blockify:
  1906. if (display.is_block_outside())
  1907. return;
  1908. // If a layout-internal box is blockified, its inner display type converts to flow so that it becomes a block container.
  1909. if (display.is_internal()) {
  1910. new_display = CSS::Display::from_short(CSS::Display::Short::Block);
  1911. } else {
  1912. VERIFY(display.is_outside_and_inside());
  1913. // For legacy reasons, if an inline block box (inline flow-root) is blockified, it becomes a block box (losing its flow-root nature).
  1914. // For consistency, a run-in flow-root box also blockifies to a block box.
  1915. if (display.is_inline_block()) {
  1916. new_display = CSS::Display { CSS::DisplayOutside::Block, CSS::DisplayInside::Flow, display.list_item() };
  1917. } else {
  1918. new_display = CSS::Display { CSS::DisplayOutside::Block, display.inside(), display.list_item() };
  1919. }
  1920. }
  1921. break;
  1922. case BoxTypeTransformation::Inlinify:
  1923. if (display.is_inline_outside()) {
  1924. // FIXME: If an inline box (inline flow) is inlinified, it recursively inlinifies all of its in-flow children,
  1925. // so that no block-level descendants break up the inline formatting context in which it participates.
  1926. if (display.is_flow_inside()) {
  1927. dbgln("FIXME: Inlinify inline box children recursively");
  1928. }
  1929. break;
  1930. }
  1931. if (display.is_internal()) {
  1932. // Inlinification has no effect on layout-internal boxes. (However, placement in such an inline context will typically cause them
  1933. // to be wrapped in an appropriately-typed anonymous inline-level box.)
  1934. } else {
  1935. VERIFY(display.is_outside_and_inside());
  1936. // If a block box (block flow) is inlinified, its inner display type is set to flow-root so that it remains a block container.
  1937. if (display.is_block_outside() && display.is_flow_inside()) {
  1938. new_display = CSS::Display { CSS::DisplayOutside::Inline, CSS::DisplayInside::FlowRoot, display.list_item() };
  1939. }
  1940. new_display = CSS::Display { CSS::DisplayOutside::Inline, display.inside(), display.list_item() };
  1941. }
  1942. break;
  1943. }
  1944. if (new_display != display)
  1945. style.set_property(CSS::PropertyID::Display, DisplayStyleValue::create(new_display), style.property_source_declaration(CSS::PropertyID::Display));
  1946. }
  1947. NonnullRefPtr<StyleProperties> StyleComputer::create_document_style() const
  1948. {
  1949. auto style = StyleProperties::create();
  1950. compute_math_depth(style, nullptr, {});
  1951. compute_font(style, nullptr, {});
  1952. compute_defaulted_values(style, nullptr, {});
  1953. absolutize_values(style);
  1954. style->set_property(CSS::PropertyID::Width, CSS::LengthStyleValue::create(CSS::Length::make_px(viewport_rect().width())), nullptr);
  1955. style->set_property(CSS::PropertyID::Height, CSS::LengthStyleValue::create(CSS::Length::make_px(viewport_rect().height())), nullptr);
  1956. style->set_property(CSS::PropertyID::Display, CSS::DisplayStyleValue::create(CSS::Display::from_short(CSS::Display::Short::Block)), nullptr);
  1957. return style;
  1958. }
  1959. NonnullRefPtr<StyleProperties> StyleComputer::compute_style(DOM::Element& element, Optional<CSS::Selector::PseudoElement::Type> pseudo_element) const
  1960. {
  1961. return compute_style_impl(element, move(pseudo_element), ComputeStyleMode::Normal).release_nonnull();
  1962. }
  1963. RefPtr<StyleProperties> StyleComputer::compute_pseudo_element_style_if_needed(DOM::Element& element, Optional<CSS::Selector::PseudoElement::Type> pseudo_element) const
  1964. {
  1965. return compute_style_impl(element, move(pseudo_element), ComputeStyleMode::CreatePseudoElementStyleIfNeeded);
  1966. }
  1967. RefPtr<StyleProperties> StyleComputer::compute_style_impl(DOM::Element& element, Optional<CSS::Selector::PseudoElement::Type> pseudo_element, ComputeStyleMode mode) const
  1968. {
  1969. build_rule_cache_if_needed();
  1970. // Special path for elements that use pseudo element as style selector
  1971. if (element.use_pseudo_element().has_value()) {
  1972. auto& parent_element = verify_cast<HTML::HTMLElement>(*element.root().parent_or_shadow_host());
  1973. auto style = compute_style(parent_element, *element.use_pseudo_element());
  1974. // Merge back inline styles
  1975. if (element.has_attribute(HTML::AttributeNames::style)) {
  1976. auto* inline_style = parse_css_style_attribute(CSS::Parser::ParsingContext(document()), *element.get_attribute(HTML::AttributeNames::style), element);
  1977. for (auto const& property : inline_style->properties())
  1978. style->set_property(property.property_id, property.value);
  1979. }
  1980. return style;
  1981. }
  1982. auto style = StyleProperties::create();
  1983. // 1. Perform the cascade. This produces the "specified style"
  1984. bool did_match_any_pseudo_element_rules = false;
  1985. compute_cascaded_values(style, element, pseudo_element, did_match_any_pseudo_element_rules, mode);
  1986. if (mode == ComputeStyleMode::CreatePseudoElementStyleIfNeeded && !did_match_any_pseudo_element_rules)
  1987. return nullptr;
  1988. // 2. Compute the math-depth property, since that might affect the font-size
  1989. compute_math_depth(style, &element, pseudo_element);
  1990. // 3. Compute the font, since that may be needed for font-relative CSS units
  1991. compute_font(style, &element, pseudo_element);
  1992. // 4. Absolutize values, turning font/viewport relative lengths into absolute lengths
  1993. absolutize_values(style);
  1994. // 5. Default the values, applying inheritance and 'initial' as needed
  1995. compute_defaulted_values(style, &element, pseudo_element);
  1996. // 6. Run automatic box type transformations
  1997. transform_box_type_if_needed(style, element, pseudo_element);
  1998. // 7. Resolve effective overflow values
  1999. resolve_effective_overflow_values(style);
  2000. // 8. Let the element adjust computed style
  2001. element.adjust_computed_style(style);
  2002. return style;
  2003. }
  2004. void StyleComputer::build_rule_cache_if_needed() const
  2005. {
  2006. if (m_author_rule_cache && m_user_rule_cache && m_user_agent_rule_cache)
  2007. return;
  2008. const_cast<StyleComputer&>(*this).build_rule_cache();
  2009. }
  2010. NonnullOwnPtr<StyleComputer::RuleCache> StyleComputer::make_rule_cache_for_cascade_origin(CascadeOrigin cascade_origin)
  2011. {
  2012. auto rule_cache = make<RuleCache>();
  2013. size_t num_class_rules = 0;
  2014. size_t num_id_rules = 0;
  2015. size_t num_tag_name_rules = 0;
  2016. size_t num_pseudo_element_rules = 0;
  2017. size_t num_root_rules = 0;
  2018. Vector<MatchingRule> matching_rules;
  2019. size_t style_sheet_index = 0;
  2020. for_each_stylesheet(cascade_origin, [&](auto& sheet, JS::GCPtr<DOM::ShadowRoot> shadow_root) {
  2021. size_t rule_index = 0;
  2022. sheet.for_each_effective_style_rule([&](auto const& rule) {
  2023. size_t selector_index = 0;
  2024. for (CSS::Selector const& selector : rule.selectors()) {
  2025. MatchingRule matching_rule {
  2026. cascade_origin,
  2027. shadow_root,
  2028. &rule,
  2029. sheet,
  2030. style_sheet_index,
  2031. rule_index,
  2032. selector_index,
  2033. selector.specificity()
  2034. };
  2035. for (auto const& simple_selector : selector.compound_selectors().last().simple_selectors) {
  2036. if (!matching_rule.contains_pseudo_element) {
  2037. if (simple_selector.type == CSS::Selector::SimpleSelector::Type::PseudoElement) {
  2038. matching_rule.contains_pseudo_element = true;
  2039. ++num_pseudo_element_rules;
  2040. }
  2041. }
  2042. if (!matching_rule.contains_root_pseudo_class) {
  2043. if (simple_selector.type == CSS::Selector::SimpleSelector::Type::PseudoClass
  2044. && simple_selector.pseudo_class().type == CSS::PseudoClass::Root) {
  2045. matching_rule.contains_root_pseudo_class = true;
  2046. ++num_root_rules;
  2047. }
  2048. }
  2049. }
  2050. bool added_to_bucket = false;
  2051. for (auto const& simple_selector : selector.compound_selectors().last().simple_selectors) {
  2052. if (simple_selector.type == CSS::Selector::SimpleSelector::Type::Id) {
  2053. rule_cache->rules_by_id.ensure(simple_selector.name()).append(move(matching_rule));
  2054. ++num_id_rules;
  2055. added_to_bucket = true;
  2056. break;
  2057. }
  2058. if (simple_selector.type == CSS::Selector::SimpleSelector::Type::Class) {
  2059. rule_cache->rules_by_class.ensure(simple_selector.name()).append(move(matching_rule));
  2060. ++num_class_rules;
  2061. added_to_bucket = true;
  2062. break;
  2063. }
  2064. if (simple_selector.type == CSS::Selector::SimpleSelector::Type::TagName) {
  2065. rule_cache->rules_by_tag_name.ensure(simple_selector.qualified_name().name.lowercase_name).append(move(matching_rule));
  2066. ++num_tag_name_rules;
  2067. added_to_bucket = true;
  2068. break;
  2069. }
  2070. }
  2071. if (!added_to_bucket) {
  2072. if (matching_rule.contains_pseudo_element)
  2073. rule_cache->pseudo_element_rules.append(move(matching_rule));
  2074. else if (matching_rule.contains_root_pseudo_class)
  2075. rule_cache->root_rules.append(move(matching_rule));
  2076. else
  2077. rule_cache->other_rules.append(move(matching_rule));
  2078. }
  2079. ++selector_index;
  2080. }
  2081. ++rule_index;
  2082. });
  2083. // Loosely based on https://drafts.csswg.org/css-animations-2/#keyframe-processing
  2084. sheet.for_each_effective_keyframes_at_rule([&](CSSKeyframesRule const& rule) {
  2085. auto keyframe_set = adopt_ref(*new Animations::KeyframeEffect::KeyFrameSet);
  2086. HashTable<PropertyID> animated_properties;
  2087. // Forwards pass, resolve all the user-specified keyframe properties.
  2088. for (auto const& keyframe : rule.keyframes()) {
  2089. Animations::KeyframeEffect::KeyFrameSet::ResolvedKeyFrame resolved_keyframe;
  2090. auto key = static_cast<u64>(keyframe->key().value() * Animations::KeyframeEffect::AnimationKeyFrameKeyScaleFactor);
  2091. auto keyframe_rule = keyframe->style();
  2092. if (!is<PropertyOwningCSSStyleDeclaration>(*keyframe_rule))
  2093. continue;
  2094. auto const& keyframe_style = static_cast<PropertyOwningCSSStyleDeclaration const&>(*keyframe_rule);
  2095. for (auto const& it : keyframe_style.properties()) {
  2096. for_each_property_expanding_shorthands(it.property_id, it.value, [&](PropertyID shorthand_id, StyleValue const& shorthand_value) {
  2097. animated_properties.set(shorthand_id);
  2098. resolved_keyframe.resolved_properties.set(shorthand_id, NonnullRefPtr<StyleValue const> { shorthand_value });
  2099. });
  2100. }
  2101. keyframe_set->keyframes_by_key.insert(key, resolved_keyframe);
  2102. }
  2103. Animations::KeyframeEffect::generate_initial_and_final_frames(keyframe_set, animated_properties);
  2104. if constexpr (LIBWEB_CSS_DEBUG) {
  2105. dbgln("Resolved keyframe set '{}' into {} keyframes:", rule.name(), keyframe_set->keyframes_by_key.size());
  2106. for (auto it = keyframe_set->keyframes_by_key.begin(); it != keyframe_set->keyframes_by_key.end(); ++it)
  2107. dbgln(" - keyframe {}: {} properties", it.key(), it->resolved_properties.size());
  2108. }
  2109. rule_cache->rules_by_animation_keyframes.set(rule.name(), move(keyframe_set));
  2110. });
  2111. ++style_sheet_index;
  2112. });
  2113. if constexpr (LIBWEB_CSS_DEBUG) {
  2114. dbgln("Built rule cache!");
  2115. dbgln(" ID: {}", num_id_rules);
  2116. dbgln(" Class: {}", num_class_rules);
  2117. dbgln(" TagName: {}", num_tag_name_rules);
  2118. dbgln("PseudoElement: {}", num_pseudo_element_rules);
  2119. dbgln(" Root: {}", num_root_rules);
  2120. dbgln(" Other: {}", rule_cache->other_rules.size());
  2121. dbgln(" Total: {}", num_class_rules + num_id_rules + num_tag_name_rules + rule_cache->other_rules.size());
  2122. }
  2123. return rule_cache;
  2124. }
  2125. void StyleComputer::build_rule_cache()
  2126. {
  2127. if (auto user_style_source = document().page().user_style(); user_style_source.has_value()) {
  2128. m_user_style_sheet = JS::make_handle(parse_css_stylesheet(CSS::Parser::ParsingContext(document()), user_style_source.value()));
  2129. }
  2130. m_author_rule_cache = make_rule_cache_for_cascade_origin(CascadeOrigin::Author);
  2131. m_user_rule_cache = make_rule_cache_for_cascade_origin(CascadeOrigin::User);
  2132. m_user_agent_rule_cache = make_rule_cache_for_cascade_origin(CascadeOrigin::UserAgent);
  2133. }
  2134. void StyleComputer::invalidate_rule_cache()
  2135. {
  2136. m_author_rule_cache = nullptr;
  2137. // NOTE: We could be smarter about keeping the user rule cache, and style sheet.
  2138. // Currently we are re-parsing the user style sheet every time we build the caches,
  2139. // as it may have changed.
  2140. m_user_rule_cache = nullptr;
  2141. m_user_style_sheet = nullptr;
  2142. // NOTE: It might not be necessary to throw away the UA rule cache.
  2143. // If we are sure that it's safe, we could keep it as an optimization.
  2144. m_user_agent_rule_cache = nullptr;
  2145. }
  2146. void StyleComputer::did_load_font(FlyString const&)
  2147. {
  2148. document().invalidate_style();
  2149. }
  2150. void StyleComputer::load_fonts_from_sheet(CSSStyleSheet const& sheet)
  2151. {
  2152. for (auto const& rule : static_cast<CSSStyleSheet const&>(sheet).rules()) {
  2153. if (!is<CSSFontFaceRule>(*rule))
  2154. continue;
  2155. auto const& font_face = static_cast<CSSFontFaceRule const&>(*rule).font_face();
  2156. if (font_face.sources().is_empty())
  2157. continue;
  2158. FontFaceKey key {
  2159. .family_name = font_face.font_family(),
  2160. .weight = font_face.weight().value_or(0),
  2161. .slope = font_face.slope().value_or(0),
  2162. };
  2163. Vector<URL> urls;
  2164. for (auto& source : font_face.sources()) {
  2165. // FIXME: These should be loaded relative to the stylesheet URL instead of the document URL.
  2166. if (source.local_or_url.has<URL>())
  2167. urls.append(m_document->parse_url(MUST(source.local_or_url.get<URL>().to_string())));
  2168. // FIXME: Handle local()
  2169. }
  2170. if (urls.is_empty())
  2171. continue;
  2172. auto loader = make<FontLoader>(const_cast<StyleComputer&>(*this), font_face.font_family(), font_face.unicode_ranges(), move(urls));
  2173. auto maybe_font_loaders_list = const_cast<StyleComputer&>(*this).m_loaded_fonts.get(key);
  2174. if (maybe_font_loaders_list.has_value()) {
  2175. maybe_font_loaders_list->append(move(loader));
  2176. } else {
  2177. FontLoaderList loaders;
  2178. loaders.append(move(loader));
  2179. const_cast<StyleComputer&>(*this).m_loaded_fonts.set(key, move(loaders));
  2180. }
  2181. }
  2182. }
  2183. void StyleComputer::compute_math_depth(StyleProperties& style, DOM::Element const* element, Optional<CSS::Selector::PseudoElement::Type> pseudo_element) const
  2184. {
  2185. // https://w3c.github.io/mathml-core/#propdef-math-depth
  2186. // First, ensure that the relevant CSS properties have been defaulted.
  2187. // FIXME: This should be more sophisticated.
  2188. compute_defaulted_property_value(style, element, CSS::PropertyID::MathDepth, pseudo_element);
  2189. compute_defaulted_property_value(style, element, CSS::PropertyID::MathStyle, pseudo_element);
  2190. auto inherited_math_depth = [&]() {
  2191. if (!element || !element->parent_element())
  2192. return InitialValues::math_depth();
  2193. return element->parent_element()->computed_css_values()->math_depth();
  2194. };
  2195. auto value = style.property(CSS::PropertyID::MathDepth);
  2196. if (!value->is_math_depth()) {
  2197. style.set_math_depth(inherited_math_depth());
  2198. return;
  2199. }
  2200. auto& math_depth = value->as_math_depth();
  2201. auto resolve_integer = [&](StyleValue const& integer_value) {
  2202. if (integer_value.is_integer())
  2203. return integer_value.as_integer().integer();
  2204. if (integer_value.is_calculated())
  2205. return integer_value.as_calculated().resolve_integer().value();
  2206. VERIFY_NOT_REACHED();
  2207. };
  2208. // The computed value of the math-depth value is determined as follows:
  2209. // - If the specified value of math-depth is auto-add and the inherited value of math-style is compact
  2210. // then the computed value of math-depth of the element is its inherited value plus one.
  2211. if (math_depth.is_auto_add() && style.property(CSS::PropertyID::MathStyle)->to_identifier() == CSS::ValueID::Compact) {
  2212. style.set_math_depth(inherited_math_depth() + 1);
  2213. return;
  2214. }
  2215. // - If the specified value of math-depth is of the form add(<integer>) then the computed value of
  2216. // math-depth of the element is its inherited value plus the specified integer.
  2217. if (math_depth.is_add()) {
  2218. style.set_math_depth(inherited_math_depth() + resolve_integer(*math_depth.integer_value()));
  2219. return;
  2220. }
  2221. // - If the specified value of math-depth is of the form <integer> then the computed value of math-depth
  2222. // of the element is the specified integer.
  2223. if (math_depth.is_integer()) {
  2224. style.set_math_depth(resolve_integer(*math_depth.integer_value()));
  2225. return;
  2226. }
  2227. // - Otherwise, the computed value of math-depth of the element is the inherited one.
  2228. style.set_math_depth(inherited_math_depth());
  2229. }
  2230. }