FormattingContext.cpp 56 KB

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  1. /*
  2. * Copyright (c) 2020-2022, Andreas Kling <kling@serenityos.org>
  3. *
  4. * SPDX-License-Identifier: BSD-2-Clause
  5. */
  6. #include <LibWeb/Dump.h>
  7. #include <LibWeb/Layout/BlockFormattingContext.h>
  8. #include <LibWeb/Layout/Box.h>
  9. #include <LibWeb/Layout/FlexFormattingContext.h>
  10. #include <LibWeb/Layout/FormattingContext.h>
  11. #include <LibWeb/Layout/GridFormattingContext.h>
  12. #include <LibWeb/Layout/ReplacedBox.h>
  13. #include <LibWeb/Layout/SVGFormattingContext.h>
  14. #include <LibWeb/Layout/SVGSVGBox.h>
  15. #include <LibWeb/Layout/TableBox.h>
  16. #include <LibWeb/Layout/TableCellBox.h>
  17. #include <LibWeb/Layout/TableFormattingContext.h>
  18. namespace Web::Layout {
  19. FormattingContext::FormattingContext(Type type, LayoutState& state, Box const& context_box, FormattingContext* parent)
  20. : m_type(type)
  21. , m_parent(parent)
  22. , m_context_box(context_box)
  23. , m_state(state)
  24. {
  25. }
  26. FormattingContext::~FormattingContext() = default;
  27. void FormattingContext::run_intrinsic_sizing(Box const& box)
  28. {
  29. auto& box_state = m_state.get_mutable(box);
  30. if (box_state.has_definite_width())
  31. box_state.set_content_width(box.computed_values().width().resolved(box, CSS::Length::make_px(containing_block_width_for(box))).to_px(box));
  32. if (box_state.has_definite_height())
  33. box_state.set_content_height(box.computed_values().height().resolved(box, CSS::Length::make_px(containing_block_height_for(box))).to_px(box));
  34. run(box, LayoutMode::IntrinsicSizing);
  35. }
  36. bool FormattingContext::creates_block_formatting_context(Box const& box)
  37. {
  38. if (box.is_root_element())
  39. return true;
  40. if (box.is_floating())
  41. return true;
  42. if (box.is_absolutely_positioned())
  43. return true;
  44. if (box.is_inline_block())
  45. return true;
  46. if (is<TableCellBox>(box))
  47. return true;
  48. CSS::Overflow overflow_x = box.computed_values().overflow_x();
  49. if ((overflow_x != CSS::Overflow::Visible) && (overflow_x != CSS::Overflow::Clip))
  50. return true;
  51. CSS::Overflow overflow_y = box.computed_values().overflow_y();
  52. if ((overflow_y != CSS::Overflow::Visible) && (overflow_y != CSS::Overflow::Clip))
  53. return true;
  54. auto display = box.computed_values().display();
  55. if (display.is_flow_root_inside())
  56. return true;
  57. if (box.parent()) {
  58. auto parent_display = box.parent()->computed_values().display();
  59. if (parent_display.is_flex_inside()) {
  60. // FIXME: Flex items (direct children of the element with display: flex or inline-flex) if they are neither flex nor grid nor table containers themselves.
  61. if (!display.is_flex_inside())
  62. return true;
  63. }
  64. if (parent_display.is_grid_inside()) {
  65. if (!display.is_grid_inside()) {
  66. return true;
  67. }
  68. }
  69. }
  70. // FIXME: table-caption
  71. // FIXME: anonymous table cells
  72. // FIXME: Elements with contain: layout, content, or paint.
  73. // FIXME: multicol
  74. // FIXME: column-span: all
  75. return false;
  76. }
  77. OwnPtr<FormattingContext> FormattingContext::create_independent_formatting_context_if_needed(LayoutState& state, Box const& child_box)
  78. {
  79. if (child_box.is_replaced_box() && !child_box.can_have_children()) {
  80. // NOTE: This is a bit strange.
  81. // Basically, we create a pretend formatting context for replaced elements that does nothing.
  82. // This allows other formatting contexts to treat them like elements that actually need inside layout
  83. // without having separate code to handle replaced elements.
  84. // FIXME: Find a better abstraction for this.
  85. struct ReplacedFormattingContext : public FormattingContext {
  86. ReplacedFormattingContext(LayoutState& state, Box const& box)
  87. : FormattingContext(Type::Block, state, box)
  88. {
  89. }
  90. virtual void run(Box const&, LayoutMode) override { }
  91. };
  92. return make<ReplacedFormattingContext>(state, child_box);
  93. }
  94. if (!child_box.can_have_children())
  95. return {};
  96. auto child_display = child_box.computed_values().display();
  97. if (is<SVGSVGBox>(child_box))
  98. return make<SVGFormattingContext>(state, child_box, this);
  99. if (child_display.is_flex_inside())
  100. return make<FlexFormattingContext>(state, child_box, this);
  101. if (creates_block_formatting_context(child_box))
  102. return make<BlockFormattingContext>(state, verify_cast<BlockContainer>(child_box), this);
  103. if (child_display.is_table_inside())
  104. return make<TableFormattingContext>(state, verify_cast<TableBox>(child_box), this);
  105. if (child_display.is_grid_inside()) {
  106. return make<GridFormattingContext>(state, verify_cast<BlockContainer>(child_box), this);
  107. }
  108. VERIFY(is_block_formatting_context());
  109. VERIFY(!child_box.children_are_inline());
  110. // The child box is a block container that doesn't create its own BFC.
  111. // It will be formatted by this BFC.
  112. if (!child_display.is_flow_inside()) {
  113. dbgln("FIXME: Child box doesn't create BFC, but inside is also not flow! display={}", child_display.to_string());
  114. // HACK: Instead of crashing, create a dummy formatting context that does nothing.
  115. // FIXME: Remove this once it's no longer needed. It currently swallows problem with standalone
  116. // table-related boxes that don't get fixed up by CSS anonymous table box generation.
  117. struct DummyFormattingContext : public FormattingContext {
  118. DummyFormattingContext(LayoutState& state, Box const& box)
  119. : FormattingContext(Type::Block, state, box)
  120. {
  121. }
  122. virtual void run(Box const&, LayoutMode) override { }
  123. };
  124. return make<DummyFormattingContext>(state, child_box);
  125. }
  126. VERIFY(child_box.is_block_container());
  127. VERIFY(child_display.is_flow_inside());
  128. return {};
  129. }
  130. OwnPtr<FormattingContext> FormattingContext::layout_inside(Box const& child_box, LayoutMode layout_mode)
  131. {
  132. {
  133. // OPTIMIZATION: If we're doing intrinsic sizing and `child_box` has definite size in both axes,
  134. // we don't need to layout its insides. The size is resolvable without learning
  135. // the metrics of whatever's inside the box.
  136. auto const& used_values = m_state.get(child_box);
  137. if (layout_mode == LayoutMode::IntrinsicSizing
  138. && used_values.width_constraint == SizeConstraint::None
  139. && used_values.height_constraint == SizeConstraint::None
  140. && used_values.has_definite_width()
  141. && used_values.has_definite_height()) {
  142. return nullptr;
  143. }
  144. }
  145. if (!child_box.can_have_children())
  146. return {};
  147. auto independent_formatting_context = create_independent_formatting_context_if_needed(m_state, child_box);
  148. if (independent_formatting_context)
  149. independent_formatting_context->run(child_box, layout_mode);
  150. else
  151. run(child_box, layout_mode);
  152. return independent_formatting_context;
  153. }
  154. float FormattingContext::greatest_child_width(Box const& box)
  155. {
  156. float max_width = 0;
  157. if (box.children_are_inline()) {
  158. for (auto& line_box : m_state.get(verify_cast<BlockContainer>(box)).line_boxes) {
  159. max_width = max(max_width, line_box.width());
  160. }
  161. } else {
  162. box.for_each_child_of_type<Box>([&](auto& child) {
  163. max_width = max(max_width, m_state.get(child).border_box_width());
  164. });
  165. }
  166. return max_width;
  167. }
  168. FormattingContext::ShrinkToFitResult FormattingContext::calculate_shrink_to_fit_widths(Box const& box)
  169. {
  170. return {
  171. .preferred_width = calculate_max_content_width(box),
  172. .preferred_minimum_width = calculate_min_content_width(box),
  173. };
  174. }
  175. static Gfx::FloatSize solve_replaced_size_constraint(LayoutState const& state, float w, float h, ReplacedBox const& box)
  176. {
  177. // 10.4 Minimum and maximum widths: 'min-width' and 'max-width'
  178. auto const& containing_block = *box.containing_block();
  179. auto const& containing_block_state = state.get(containing_block);
  180. auto width_of_containing_block = CSS::Length::make_px(containing_block_state.content_width());
  181. auto height_of_containing_block = CSS::Length::make_px(containing_block_state.content_height());
  182. auto specified_min_width = box.computed_values().min_width().is_auto() ? 0 : box.computed_values().min_width().resolved(box, width_of_containing_block).to_px(box);
  183. auto specified_max_width = box.computed_values().max_width().is_auto() ? w : box.computed_values().max_width().resolved(box, width_of_containing_block).to_px(box);
  184. auto specified_min_height = box.computed_values().min_height().is_auto() ? 0 : box.computed_values().min_height().resolved(box, height_of_containing_block).to_px(box);
  185. auto specified_max_height = box.computed_values().max_height().is_auto() ? h : box.computed_values().max_height().resolved(box, height_of_containing_block).to_px(box);
  186. auto min_width = min(specified_min_width, specified_max_width);
  187. auto max_width = max(specified_min_width, specified_max_width);
  188. auto min_height = min(specified_min_height, specified_max_height);
  189. auto max_height = max(specified_min_height, specified_max_height);
  190. if (w > max_width)
  191. return { w, max(max_width * h / w, min_height) };
  192. if (w < min_width)
  193. return { max_width, min(min_width * h / w, max_height) };
  194. if (h > max_height)
  195. return { max(max_height * w / h, min_width), max_height };
  196. if (h < min_height)
  197. return { min(min_height * w / h, max_width), min_height };
  198. if ((w > max_width && h > max_height) && (max_width / w < max_height / h))
  199. return { max_width, max(min_height, max_width * h / w) };
  200. if ((w > max_width && h > max_height) && (max_width / w > max_height / h))
  201. return { max(min_width, max_height * w / h), max_height };
  202. if ((w < min_width && h < min_height) && (min_width / w < min_height / h))
  203. return { min(max_width, min_height * w / h), min_height };
  204. if ((w < min_width && h < min_height) && (min_width / w > min_height / h))
  205. return { min_width, min(max_height, min_width * h / w) };
  206. if (w < min_width && h > max_height)
  207. return { min_width, max_height };
  208. if (w > max_width && h < min_height)
  209. return { max_width, min_height };
  210. return { w, h };
  211. }
  212. float FormattingContext::compute_auto_height_for_block_level_element(LayoutState const& state, Box const& box)
  213. {
  214. if (creates_block_formatting_context(box))
  215. return compute_auto_height_for_block_formatting_context_root(state, verify_cast<BlockContainer>(box));
  216. auto const& box_state = state.get(box);
  217. auto display = box.computed_values().display();
  218. if (display.is_flex_inside())
  219. return box_state.content_height();
  220. // https://www.w3.org/TR/CSS22/visudet.html#normal-block
  221. // 10.6.3 Block-level non-replaced elements in normal flow when 'overflow' computes to 'visible'
  222. // The element's height is the distance from its top content edge to the first applicable of the following:
  223. // 1. the bottom edge of the last line box, if the box establishes a inline formatting context with one or more lines
  224. if (box.children_are_inline() && !box_state.line_boxes.is_empty())
  225. return box_state.line_boxes.last().bottom();
  226. // 2. the bottom edge of the bottom (possibly collapsed) margin of its last in-flow child, if the child's bottom margin does not collapse with the element's bottom margin
  227. // FIXME: 3. the bottom border edge of the last in-flow child whose top margin doesn't collapse with the element's bottom margin
  228. if (!box.children_are_inline()) {
  229. for (auto* child_box = box.last_child_of_type<Box>(); child_box; child_box = child_box->previous_sibling_of_type<Box>()) {
  230. if (child_box->is_absolutely_positioned() || child_box->is_floating())
  231. continue;
  232. // FIXME: This is hack. If the last child is a list-item marker box, we ignore it for purposes of height calculation.
  233. // Perhaps markers should not be considered in-flow(?) Perhaps they should always be the first child of the list-item
  234. // box instead of the last child.
  235. if (child_box->is_list_item_marker_box())
  236. continue;
  237. auto const& child_box_state = state.get(*child_box);
  238. // Ignore anonymous block containers with no lines. These don't count as in-flow block boxes.
  239. if (child_box->is_anonymous() && child_box->is_block_container() && child_box_state.line_boxes.is_empty())
  240. continue;
  241. // FIXME: Handle margin collapsing.
  242. return max(0.0f, child_box_state.offset.y() + child_box_state.content_height() + child_box_state.margin_box_bottom());
  243. }
  244. }
  245. // 4. zero, otherwise
  246. return 0;
  247. }
  248. // https://www.w3.org/TR/CSS22/visudet.html#root-height
  249. float FormattingContext::compute_auto_height_for_block_formatting_context_root(LayoutState const& state, BlockContainer const& root)
  250. {
  251. // 10.6.7 'Auto' heights for block formatting context roots
  252. Optional<float> top;
  253. Optional<float> bottom;
  254. if (root.children_are_inline()) {
  255. // If it only has inline-level children, the height is the distance between
  256. // the top content edge and the bottom of the bottommost line box.
  257. auto const& line_boxes = state.get(root).line_boxes;
  258. top = 0;
  259. if (!line_boxes.is_empty())
  260. bottom = line_boxes.last().bottom();
  261. } else {
  262. // If it has block-level children, the height is the distance between
  263. // the top margin-edge of the topmost block-level child box
  264. // and the bottom margin-edge of the bottommost block-level child box.
  265. root.for_each_child_of_type<Box>([&](Layout::Box& child_box) {
  266. // Absolutely positioned children are ignored,
  267. // and relatively positioned boxes are considered without their offset.
  268. // Note that the child box may be an anonymous block box.
  269. if (child_box.is_absolutely_positioned())
  270. return IterationDecision::Continue;
  271. // FIXME: This doesn't look right.
  272. if ((root.computed_values().overflow_y() == CSS::Overflow::Visible) && child_box.is_floating())
  273. return IterationDecision::Continue;
  274. auto const& child_box_state = state.get(child_box);
  275. float child_box_top = child_box_state.offset.y() - child_box_state.margin_box_top();
  276. float child_box_bottom = child_box_state.offset.y() + child_box_state.content_height() + child_box_state.margin_box_bottom();
  277. if (!top.has_value() || child_box_top < top.value())
  278. top = child_box_top;
  279. if (!bottom.has_value() || child_box_bottom > bottom.value())
  280. bottom = child_box_bottom;
  281. return IterationDecision::Continue;
  282. });
  283. }
  284. // In addition, if the element has any floating descendants
  285. // whose bottom margin edge is below the element's bottom content edge,
  286. // then the height is increased to include those edges.
  287. root.for_each_child_of_type<Box>([&](Layout::Box& child_box) {
  288. if (!child_box.is_floating())
  289. return IterationDecision::Continue;
  290. auto const& child_box_state = state.get(child_box);
  291. float child_box_bottom = child_box_state.offset.y() + child_box_state.content_height() + child_box_state.margin_box_bottom();
  292. if (!bottom.has_value() || child_box_bottom > bottom.value())
  293. bottom = child_box_bottom;
  294. return IterationDecision::Continue;
  295. });
  296. return max(0.0f, bottom.value_or(0) - top.value_or(0));
  297. }
  298. // 10.3.2 Inline, replaced elements, https://www.w3.org/TR/CSS22/visudet.html#inline-replaced-width
  299. float FormattingContext::tentative_width_for_replaced_element(LayoutState const& state, ReplacedBox const& box, CSS::LengthPercentage const& computed_width)
  300. {
  301. auto const& containing_block = *box.containing_block();
  302. auto height_of_containing_block = CSS::Length::make_px(state.get(containing_block).content_height());
  303. auto computed_height = box.computed_values().height().resolved(box, height_of_containing_block).resolved(box);
  304. float used_width = computed_width.resolved(box, CSS::Length::make_px(containing_block_width_for(box, state))).to_px(box);
  305. // If 'height' and 'width' both have computed values of 'auto' and the element also has an intrinsic width,
  306. // then that intrinsic width is the used value of 'width'.
  307. if (computed_height.is_auto() && computed_width.is_auto() && box.has_intrinsic_width())
  308. return box.intrinsic_width().value();
  309. // If 'height' and 'width' both have computed values of 'auto' and the element has no intrinsic width,
  310. // but does have an intrinsic height and intrinsic ratio;
  311. // or if 'width' has a computed value of 'auto',
  312. // 'height' has some other computed value, and the element does have an intrinsic ratio; then the used value of 'width' is:
  313. //
  314. // (used height) * (intrinsic ratio)
  315. if ((computed_height.is_auto() && computed_width.is_auto() && !box.has_intrinsic_width() && box.has_intrinsic_height() && box.has_intrinsic_aspect_ratio())
  316. || (computed_width.is_auto() && !computed_height.is_auto() && box.has_intrinsic_aspect_ratio())) {
  317. return compute_height_for_replaced_element(state, box) * box.intrinsic_aspect_ratio().value();
  318. }
  319. // If 'height' and 'width' both have computed values of 'auto' and the element has an intrinsic ratio but no intrinsic height or width,
  320. // then the used value of 'width' is undefined in CSS 2.2. However, it is suggested that, if the containing block's width does not itself
  321. // depend on the replaced element's width, then the used value of 'width' is calculated from the constraint equation used for block-level,
  322. // non-replaced elements in normal flow.
  323. // Otherwise, if 'width' has a computed value of 'auto', and the element has an intrinsic width, then that intrinsic width is the used value of 'width'.
  324. if (computed_width.is_auto() && box.has_intrinsic_width())
  325. return box.intrinsic_width().value();
  326. // Otherwise, if 'width' has a computed value of 'auto', but none of the conditions above are met, then the used value of 'width' becomes 300px.
  327. // If 300px is too wide to fit the device, UAs should use the width of the largest rectangle that has a 2:1 ratio and fits the device instead.
  328. if (computed_width.is_auto())
  329. return 300;
  330. return used_width;
  331. }
  332. void FormattingContext::compute_width_for_absolutely_positioned_element(Box const& box)
  333. {
  334. if (is<ReplacedBox>(box))
  335. compute_width_for_absolutely_positioned_replaced_element(verify_cast<ReplacedBox>(box));
  336. else
  337. compute_width_for_absolutely_positioned_non_replaced_element(box);
  338. }
  339. void FormattingContext::compute_height_for_absolutely_positioned_element(Box const& box)
  340. {
  341. if (is<ReplacedBox>(box))
  342. compute_height_for_absolutely_positioned_replaced_element(verify_cast<ReplacedBox>(box));
  343. else
  344. compute_height_for_absolutely_positioned_non_replaced_element(box);
  345. }
  346. float FormattingContext::compute_width_for_replaced_element(LayoutState const& state, ReplacedBox const& box)
  347. {
  348. // 10.3.4 Block-level, replaced elements in normal flow...
  349. // 10.3.2 Inline, replaced elements
  350. auto zero_value = CSS::Length::make_px(0);
  351. auto width_of_containing_block_as_length = CSS::Length::make_px(containing_block_width_for(box, state));
  352. auto margin_left = box.computed_values().margin().left.resolved(box, width_of_containing_block_as_length).resolved(box);
  353. auto margin_right = box.computed_values().margin().right.resolved(box, width_of_containing_block_as_length).resolved(box);
  354. // A computed value of 'auto' for 'margin-left' or 'margin-right' becomes a used value of '0'.
  355. if (margin_left.is_auto())
  356. margin_left = zero_value;
  357. if (margin_right.is_auto())
  358. margin_right = zero_value;
  359. auto computed_width = box.computed_values().width();
  360. // 1. The tentative used width is calculated (without 'min-width' and 'max-width')
  361. auto used_width = tentative_width_for_replaced_element(state, box, computed_width);
  362. // 2. The tentative used width is greater than 'max-width', the rules above are applied again,
  363. // but this time using the computed value of 'max-width' as the computed value for 'width'.
  364. auto computed_max_width = box.computed_values().max_width();
  365. if (!computed_max_width.is_auto()) {
  366. if (used_width > computed_max_width.resolved(box, width_of_containing_block_as_length).to_px(box)) {
  367. used_width = tentative_width_for_replaced_element(state, box, computed_max_width);
  368. }
  369. }
  370. // 3. If the resulting width is smaller than 'min-width', the rules above are applied again,
  371. // but this time using the value of 'min-width' as the computed value for 'width'.
  372. auto computed_min_width = box.computed_values().min_width();
  373. if (!computed_min_width.is_auto()) {
  374. if (used_width < computed_min_width.resolved(box, width_of_containing_block_as_length).to_px(box)) {
  375. used_width = tentative_width_for_replaced_element(state, box, computed_min_width);
  376. }
  377. }
  378. return used_width;
  379. }
  380. // 10.6.2 Inline replaced elements, block-level replaced elements in normal flow, 'inline-block' replaced elements in normal flow and floating replaced elements
  381. // https://www.w3.org/TR/CSS22/visudet.html#inline-replaced-height
  382. float FormattingContext::tentative_height_for_replaced_element(LayoutState const& state, ReplacedBox const& box, CSS::LengthPercentage const& computed_height)
  383. {
  384. auto computed_width = box.computed_values().width();
  385. // If 'height' and 'width' both have computed values of 'auto' and the element also has
  386. // an intrinsic height, then that intrinsic height is the used value of 'height'.
  387. if (computed_width.is_auto() && computed_height.is_auto() && box.has_intrinsic_height())
  388. return box.intrinsic_height().value();
  389. // Otherwise, if 'height' has a computed value of 'auto', and the element has an intrinsic ratio then the used value of 'height' is:
  390. //
  391. // (used width) / (intrinsic ratio)
  392. if (computed_height.is_auto() && box.has_intrinsic_aspect_ratio())
  393. return compute_width_for_replaced_element(state, box) / box.intrinsic_aspect_ratio().value();
  394. // Otherwise, if 'height' has a computed value of 'auto', and the element has an intrinsic height, then that intrinsic height is the used value of 'height'.
  395. if (computed_height.is_auto() && box.has_intrinsic_height())
  396. return box.intrinsic_height().value();
  397. // Otherwise, if 'height' has a computed value of 'auto', but none of the conditions above are met,
  398. // then the used value of 'height' must be set to the height of the largest rectangle that has a 2:1 ratio, has a height not greater than 150px,
  399. // and has a width not greater than the device width.
  400. if (computed_height.is_auto())
  401. return 150;
  402. return computed_height.resolved(box, CSS::Length::make_px(containing_block_height_for(box, state))).to_px(box);
  403. }
  404. float FormattingContext::compute_height_for_replaced_element(LayoutState const& state, ReplacedBox const& box)
  405. {
  406. // 10.6.2 Inline replaced elements, block-level replaced elements in normal flow,
  407. // 'inline-block' replaced elements in normal flow and floating replaced elements
  408. auto width_of_containing_block_as_length = CSS::Length::make_px(containing_block_width_for(box, state));
  409. auto height_of_containing_block_as_length = CSS::Length::make_px(containing_block_height_for(box, state));
  410. auto computed_width = box.computed_values().width();
  411. auto computed_height = box.computed_values().height();
  412. float used_height = tentative_height_for_replaced_element(state, box, computed_height);
  413. if (computed_width.is_auto() && computed_height.is_auto() && box.has_intrinsic_aspect_ratio()) {
  414. float w = tentative_width_for_replaced_element(state, box, computed_width);
  415. float h = used_height;
  416. used_height = solve_replaced_size_constraint(state, w, h, box).height();
  417. }
  418. return used_height;
  419. }
  420. void FormattingContext::compute_width_for_absolutely_positioned_non_replaced_element(Box const& box)
  421. {
  422. auto width_of_containing_block = containing_block_width_for(box);
  423. auto width_of_containing_block_as_length = CSS::Length::make_px(width_of_containing_block);
  424. auto& computed_values = box.computed_values();
  425. auto zero_value = CSS::Length::make_px(0);
  426. auto margin_left = CSS::Length::make_auto();
  427. auto margin_right = CSS::Length::make_auto();
  428. auto const border_left = computed_values.border_left().width;
  429. auto const border_right = computed_values.border_right().width;
  430. auto const padding_left = computed_values.padding().left.resolved(box, width_of_containing_block_as_length).to_px(box);
  431. auto const padding_right = computed_values.padding().right.resolved(box, width_of_containing_block_as_length).to_px(box);
  432. auto try_compute_width = [&](auto const& a_width) {
  433. margin_left = computed_values.margin().left.resolved(box, width_of_containing_block_as_length).resolved(box);
  434. margin_right = computed_values.margin().right.resolved(box, width_of_containing_block_as_length).resolved(box);
  435. auto left = computed_values.inset().left.resolved(box, width_of_containing_block_as_length).resolved(box);
  436. auto right = computed_values.inset().right.resolved(box, width_of_containing_block_as_length).resolved(box);
  437. auto width = a_width;
  438. auto solve_for_left = [&] {
  439. return CSS::Length(width_of_containing_block - margin_left.to_px(box) - border_left - padding_left - width.to_px(box) - padding_right - border_right - margin_right.to_px(box) - right.to_px(box), CSS::Length::Type::Px);
  440. };
  441. auto solve_for_width = [&] {
  442. return CSS::Length(width_of_containing_block - left.to_px(box) - margin_left.to_px(box) - border_left - padding_left - padding_right - border_right - margin_right.to_px(box) - right.to_px(box), CSS::Length::Type::Px);
  443. };
  444. auto solve_for_right = [&] {
  445. return CSS::Length(width_of_containing_block - left.to_px(box) - margin_left.to_px(box) - border_left - padding_left - width.to_px(box) - padding_right - border_right - margin_right.to_px(box), CSS::Length::Type::Px);
  446. };
  447. // If all three of 'left', 'width', and 'right' are 'auto':
  448. if (left.is_auto() && width.is_auto() && right.is_auto()) {
  449. // First set any 'auto' values for 'margin-left' and 'margin-right' to 0.
  450. if (margin_left.is_auto())
  451. margin_left = CSS::Length::make_px(0);
  452. if (margin_right.is_auto())
  453. margin_right = CSS::Length::make_px(0);
  454. // Then, if the 'direction' property of the element establishing the static-position containing block
  455. // is 'ltr' set 'left' to the static position and apply rule number three below;
  456. // otherwise, set 'right' to the static position and apply rule number one below.
  457. // FIXME: This is very hackish.
  458. left = CSS::Length::make_px(0);
  459. goto Rule3;
  460. }
  461. if (!left.is_auto() && !width.is_auto() && !right.is_auto()) {
  462. // FIXME: This should be solved in a more complicated way.
  463. return width;
  464. }
  465. if (margin_left.is_auto())
  466. margin_left = CSS::Length::make_px(0);
  467. if (margin_right.is_auto())
  468. margin_right = CSS::Length::make_px(0);
  469. // 1. 'left' and 'width' are 'auto' and 'right' is not 'auto',
  470. // then the width is shrink-to-fit. Then solve for 'left'
  471. if (left.is_auto() && width.is_auto() && !right.is_auto()) {
  472. auto result = calculate_shrink_to_fit_widths(box);
  473. solve_for_left();
  474. auto available_width = solve_for_width();
  475. width = CSS::Length(min(max(result.preferred_minimum_width, available_width.to_px(box)), result.preferred_width), CSS::Length::Type::Px);
  476. }
  477. // 2. 'left' and 'right' are 'auto' and 'width' is not 'auto',
  478. // then if the 'direction' property of the element establishing
  479. // the static-position containing block is 'ltr' set 'left'
  480. // to the static position, otherwise set 'right' to the static position.
  481. // Then solve for 'left' (if 'direction is 'rtl') or 'right' (if 'direction' is 'ltr').
  482. else if (left.is_auto() && right.is_auto() && !width.is_auto()) {
  483. // FIXME: Check direction
  484. // FIXME: Use the static-position containing block
  485. left = zero_value;
  486. right = solve_for_right();
  487. }
  488. // 3. 'width' and 'right' are 'auto' and 'left' is not 'auto',
  489. // then the width is shrink-to-fit. Then solve for 'right'
  490. else if (width.is_auto() && right.is_auto() && !left.is_auto()) {
  491. Rule3:
  492. auto result = calculate_shrink_to_fit_widths(box);
  493. auto available_width = solve_for_width();
  494. width = CSS::Length(min(max(result.preferred_minimum_width, available_width.to_px(box)), result.preferred_width), CSS::Length::Type::Px);
  495. right = solve_for_right();
  496. }
  497. // 4. 'left' is 'auto', 'width' and 'right' are not 'auto', then solve for 'left'
  498. else if (left.is_auto() && !width.is_auto() && !right.is_auto()) {
  499. left = solve_for_left();
  500. }
  501. // 5. 'width' is 'auto', 'left' and 'right' are not 'auto', then solve for 'width'
  502. else if (width.is_auto() && !left.is_auto() && !right.is_auto()) {
  503. width = solve_for_width();
  504. }
  505. // 6. 'right' is 'auto', 'left' and 'width' are not 'auto', then solve for 'right'
  506. else if (right.is_auto() && !left.is_auto() && !width.is_auto()) {
  507. right = solve_for_right();
  508. }
  509. return width;
  510. };
  511. auto specified_width = computed_values.width().resolved(box, width_of_containing_block_as_length).resolved(box);
  512. // 1. The tentative used width is calculated (without 'min-width' and 'max-width')
  513. auto used_width = try_compute_width(specified_width);
  514. // 2. The tentative used width is greater than 'max-width', the rules above are applied again,
  515. // but this time using the computed value of 'max-width' as the computed value for 'width'.
  516. auto specified_max_width = computed_values.max_width().resolved(box, width_of_containing_block_as_length).resolved(box);
  517. if (!specified_max_width.is_auto()) {
  518. if (used_width.to_px(box) > specified_max_width.to_px(box)) {
  519. used_width = try_compute_width(specified_max_width);
  520. }
  521. }
  522. // 3. If the resulting width is smaller than 'min-width', the rules above are applied again,
  523. // but this time using the value of 'min-width' as the computed value for 'width'.
  524. auto specified_min_width = computed_values.min_width().resolved(box, width_of_containing_block_as_length).resolved(box);
  525. if (!specified_min_width.is_auto()) {
  526. if (used_width.to_px(box) < specified_min_width.to_px(box)) {
  527. used_width = try_compute_width(specified_min_width);
  528. }
  529. }
  530. auto& box_state = m_state.get_mutable(box);
  531. box_state.set_content_width(used_width.to_px(box));
  532. box_state.margin_left = margin_left.to_px(box);
  533. box_state.margin_right = margin_right.to_px(box);
  534. box_state.border_left = border_left;
  535. box_state.border_right = border_right;
  536. box_state.padding_left = padding_left;
  537. box_state.padding_right = padding_right;
  538. }
  539. void FormattingContext::compute_width_for_absolutely_positioned_replaced_element(ReplacedBox const& box)
  540. {
  541. // 10.3.8 Absolutely positioned, replaced elements
  542. // The used value of 'width' is determined as for inline replaced elements.
  543. // FIXME: This const_cast is gross.
  544. const_cast<ReplacedBox&>(box).prepare_for_replaced_layout();
  545. m_state.get_mutable(box).set_content_width(compute_width_for_replaced_element(m_state, box));
  546. }
  547. // https://www.w3.org/TR/CSS22/visudet.html#abs-non-replaced-height
  548. void FormattingContext::compute_height_for_absolutely_positioned_non_replaced_element(Box const& box)
  549. {
  550. // 10.6.4 Absolutely positioned, non-replaced elements
  551. // FIXME: The section below is partly on-spec, partly ad-hoc.
  552. auto& computed_values = box.computed_values();
  553. auto width_of_containing_block = containing_block_width_for(box);
  554. auto height_of_containing_block = containing_block_height_for(box);
  555. auto width_of_containing_block_as_length = CSS::Length::make_px(width_of_containing_block);
  556. auto height_of_containing_block_as_length = CSS::Length::make_px(height_of_containing_block);
  557. auto const& computed_top = computed_values.inset().top;
  558. auto const& computed_bottom = computed_values.inset().bottom;
  559. auto const& computed_height = computed_values.height();
  560. auto const& computed_min_height = computed_values.min_height();
  561. auto const& computed_max_height = computed_values.max_height();
  562. auto used_top = computed_top.resolved(box, height_of_containing_block_as_length).resolved(box).to_px(box);
  563. auto used_bottom = computed_bottom.resolved(box, height_of_containing_block_as_length).resolved(box).to_px(box);
  564. auto tentative_height = CSS::Length::make_auto();
  565. if (!computed_height.is_auto())
  566. tentative_height = computed_values.height().resolved(box, height_of_containing_block_as_length).resolved(box);
  567. auto& box_state = m_state.get_mutable(box);
  568. box_state.margin_top = computed_values.margin().top.resolved(box, width_of_containing_block_as_length).to_px(box);
  569. box_state.margin_bottom = computed_values.margin().bottom.resolved(box, width_of_containing_block_as_length).to_px(box);
  570. box_state.border_top = computed_values.border_top().width;
  571. box_state.border_bottom = computed_values.border_bottom().width;
  572. box_state.padding_top = computed_values.padding().top.resolved(box, width_of_containing_block_as_length).to_px(box);
  573. box_state.padding_bottom = computed_values.padding().bottom.resolved(box, width_of_containing_block_as_length).to_px(box);
  574. if (computed_height.is_auto() && computed_top.is_auto() && computed_bottom.is_auto()) {
  575. tentative_height = CSS::Length(compute_auto_height_for_block_level_element(m_state, box), CSS::Length::Type::Px);
  576. }
  577. else if (computed_height.is_auto() && !computed_top.is_auto() && computed_bottom.is_auto()) {
  578. tentative_height = CSS::Length(compute_auto_height_for_block_level_element(m_state, box), CSS::Length::Type::Px);
  579. box_state.inset_bottom = height_of_containing_block - tentative_height.to_px(box) - used_top - box_state.margin_top - box_state.padding_top - box_state.border_top - box_state.margin_bottom - box_state.padding_bottom - box_state.border_bottom;
  580. }
  581. else if (computed_height.is_auto() && !computed_top.is_auto() && !computed_bottom.is_auto()) {
  582. tentative_height = CSS::Length(height_of_containing_block - used_top - box_state.margin_top - box_state.padding_top - box_state.border_top - used_bottom - box_state.margin_bottom - box_state.padding_bottom - box_state.border_bottom, CSS::Length::Type::Px);
  583. }
  584. float used_height = tentative_height.to_px(box);
  585. if (!computed_max_height.is_auto())
  586. used_height = min(used_height, computed_max_height.resolved(box, height_of_containing_block_as_length).resolved(box).to_px(box));
  587. if (!computed_min_height.is_auto())
  588. used_height = max(used_height, computed_min_height.resolved(box, height_of_containing_block_as_length).resolved(box).to_px(box));
  589. box_state.set_content_height(used_height);
  590. }
  591. void FormattingContext::layout_absolutely_positioned_element(Box const& box)
  592. {
  593. // https://drafts.csswg.org/css-sizing-3/#definite
  594. // Additionally, the size of the containing block of an absolutely positioned element is always definite with respect to that element.
  595. auto& containing_block_state = m_state.get_mutable(*box.containing_block());
  596. auto containing_block_had_definite_width = containing_block_state.has_definite_width();
  597. containing_block_state.set_has_definite_width(true);
  598. auto containing_block_definite_width_guard = ScopeGuard([&] {
  599. containing_block_state.set_has_definite_width(containing_block_had_definite_width);
  600. });
  601. auto width_of_containing_block = containing_block_width_for(box);
  602. auto height_of_containing_block = containing_block_height_for(box);
  603. auto width_of_containing_block_as_length = CSS::Length::make_px(width_of_containing_block);
  604. auto height_of_containing_block_as_length = CSS::Length::make_px(height_of_containing_block);
  605. auto specified_width = box.computed_values().width().resolved(box, width_of_containing_block_as_length).resolved(box);
  606. compute_width_for_absolutely_positioned_element(box);
  607. auto independent_formatting_context = layout_inside(box, LayoutMode::Normal);
  608. compute_height_for_absolutely_positioned_element(box);
  609. auto& box_state = m_state.get_mutable(box);
  610. box_state.margin_left = box.computed_values().margin().left.resolved(box, width_of_containing_block_as_length).to_px(box);
  611. box_state.margin_top = box.computed_values().margin().top.resolved(box, height_of_containing_block_as_length).to_px(box);
  612. box_state.margin_right = box.computed_values().margin().right.resolved(box, width_of_containing_block_as_length).to_px(box);
  613. box_state.margin_bottom = box.computed_values().margin().bottom.resolved(box, height_of_containing_block_as_length).to_px(box);
  614. box_state.border_left = box.computed_values().border_left().width;
  615. box_state.border_right = box.computed_values().border_right().width;
  616. box_state.border_top = box.computed_values().border_top().width;
  617. box_state.border_bottom = box.computed_values().border_bottom().width;
  618. box_state.inset_left = box.computed_values().inset().left.resolved(box, width_of_containing_block_as_length).to_px(box);
  619. box_state.inset_top = box.computed_values().inset().top.resolved(box, height_of_containing_block_as_length).to_px(box);
  620. box_state.inset_right = box.computed_values().inset().right.resolved(box, width_of_containing_block_as_length).to_px(box);
  621. box_state.inset_bottom = box.computed_values().inset().bottom.resolved(box, height_of_containing_block_as_length).to_px(box);
  622. if (box.computed_values().inset().left.is_auto() && specified_width.is_auto() && box.computed_values().inset().right.is_auto()) {
  623. if (box.computed_values().margin().left.is_auto())
  624. box_state.margin_left = 0;
  625. if (box.computed_values().margin().right.is_auto())
  626. box_state.margin_right = 0;
  627. }
  628. Gfx::FloatPoint used_offset;
  629. auto* relevant_parent = box.first_ancestor_of_type<Layout::BlockContainer>();
  630. while (relevant_parent != nullptr) {
  631. if (!relevant_parent->is_absolutely_positioned() && !relevant_parent->is_floating()) {
  632. break;
  633. } else {
  634. relevant_parent = relevant_parent->first_ancestor_of_type<Layout::BlockContainer>();
  635. }
  636. }
  637. auto parent_location = absolute_content_rect(static_cast<Box const&>(*relevant_parent), m_state);
  638. if (!box.computed_values().inset().left.is_auto()) {
  639. float x_offset = box_state.inset_left
  640. + box_state.border_box_left();
  641. used_offset.set_x(x_offset + box_state.margin_left);
  642. } else if (!box.computed_values().inset().right.is_auto()) {
  643. float x_offset = 0
  644. - box_state.inset_right
  645. - box_state.border_box_right();
  646. used_offset.set_x(width_of_containing_block + x_offset - box_state.content_width() - box_state.margin_right);
  647. } else {
  648. float x_offset = box_state.margin_box_left()
  649. + (relevant_parent->computed_values().position() == CSS::Position::Relative ? 0 : parent_location.x());
  650. used_offset.set_x(x_offset);
  651. }
  652. if (!box.computed_values().inset().top.is_auto()) {
  653. float y_offset = box_state.inset_top
  654. + box_state.border_box_top();
  655. used_offset.set_y(y_offset + box_state.margin_top);
  656. } else if (!box.computed_values().inset().bottom.is_auto()) {
  657. float y_offset = 0
  658. - box_state.inset_bottom
  659. - box_state.border_box_bottom();
  660. used_offset.set_y(height_of_containing_block + y_offset - box_state.content_height() - box_state.margin_bottom);
  661. } else {
  662. float y_offset = box_state.margin_box_top()
  663. + compute_box_y_position_with_respect_to_siblings(box, box_state)
  664. + (relevant_parent->computed_values().position() == CSS::Position::Relative ? 0 : parent_location.y());
  665. used_offset.set_y(y_offset);
  666. }
  667. box_state.offset = used_offset;
  668. if (independent_formatting_context)
  669. independent_formatting_context->parent_context_did_dimension_child_root_box();
  670. }
  671. void FormattingContext::compute_height_for_absolutely_positioned_replaced_element(ReplacedBox const& box)
  672. {
  673. // 10.6.5 Absolutely positioned, replaced elements
  674. // The used value of 'height' is determined as for inline replaced elements.
  675. m_state.get_mutable(box).set_content_height(compute_height_for_replaced_element(m_state, box));
  676. }
  677. // https://www.w3.org/TR/css-position-3/#relpos-insets
  678. void FormattingContext::compute_inset(Box const& box)
  679. {
  680. if (box.computed_values().position() != CSS::Position::Relative)
  681. return;
  682. auto resolve_two_opposing_insets = [&](CSS::LengthPercentage const& computed_start, CSS::LengthPercentage const& computed_end, float& used_start, float& used_end, float reference_for_percentage) {
  683. auto resolved_first = computed_start.resolved(box, CSS::Length::make_px(reference_for_percentage)).resolved(box);
  684. auto resolved_second = computed_end.resolved(box, CSS::Length::make_px(reference_for_percentage)).resolved(box);
  685. if (resolved_first.is_auto() && resolved_second.is_auto()) {
  686. // If opposing inset properties in an axis both compute to auto (their initial values),
  687. // their used values are zero (i.e., the boxes stay in their original position in that axis).
  688. used_start = 0;
  689. used_end = 0;
  690. } else if (resolved_first.is_auto() || resolved_second.is_auto()) {
  691. // If only one is auto, its used value becomes the negation of the other, and the box is shifted by the specified amount.
  692. if (resolved_first.is_auto()) {
  693. used_end = resolved_second.to_px(box);
  694. used_start = 0 - used_end;
  695. } else {
  696. used_start = resolved_first.to_px(box);
  697. used_end = 0 - used_start;
  698. }
  699. } else {
  700. // If neither is auto, the position is over-constrained; (with respect to the writing mode of its containing block)
  701. // the computed end side value is ignored, and its used value becomes the negation of the start side.
  702. used_start = resolved_first.to_px(box);
  703. used_end = 0 - used_start;
  704. }
  705. };
  706. auto& box_state = m_state.get_mutable(box);
  707. auto const& computed_values = box.computed_values();
  708. // FIXME: Respect the containing block's writing-mode.
  709. resolve_two_opposing_insets(computed_values.inset().left, computed_values.inset().right, box_state.inset_left, box_state.inset_right, containing_block_width_for(box));
  710. resolve_two_opposing_insets(computed_values.inset().top, computed_values.inset().bottom, box_state.inset_top, box_state.inset_bottom, containing_block_height_for(box));
  711. }
  712. float FormattingContext::calculate_fit_content_size(float min_content_size, float max_content_size, SizeConstraint constraint, Optional<float> available_space) const
  713. {
  714. // If the available space in a given axis is definite, equal to clamp(min-content size, stretch-fit size, max-content size)
  715. // (i.e. max(min-content size, min(max-content size, stretch-fit size))).
  716. if (available_space.has_value()) {
  717. // FIXME: Compute the real stretch-fit size.
  718. auto stretch_fit_size = *available_space;
  719. auto s = max(min_content_size, min(max_content_size, stretch_fit_size));
  720. return s;
  721. }
  722. // When sizing under a min-content constraint, equal to the min-content size.
  723. if (constraint == SizeConstraint::MinContent)
  724. return min_content_size;
  725. // Otherwise, equal to the max-content size in that axis.
  726. return max_content_size;
  727. }
  728. float FormattingContext::calculate_fit_content_width(Layout::Box const& box, SizeConstraint constraint, Optional<float> available_space) const
  729. {
  730. // When sizing under a min-content constraint, equal to the min-content size.
  731. // NOTE: We check this first, to avoid needlessly calculating the max-content size.
  732. if (constraint == SizeConstraint::MinContent)
  733. return calculate_min_content_width(box);
  734. if (constraint == SizeConstraint::MaxContent)
  735. return calculate_max_content_width(box);
  736. return calculate_fit_content_size(calculate_min_content_width(box), calculate_max_content_width(box), constraint, available_space);
  737. }
  738. float FormattingContext::calculate_fit_content_height(Layout::Box const& box, SizeConstraint constraint, Optional<float> available_space) const
  739. {
  740. // When sizing under a min-content constraint, equal to the min-content size.
  741. // NOTE: We check this first, to avoid needlessly calculating the max-content size.
  742. if (constraint == SizeConstraint::MinContent)
  743. return calculate_min_content_height(box);
  744. if (constraint == SizeConstraint::MaxContent)
  745. return calculate_max_content_height(box);
  746. return calculate_fit_content_size(calculate_min_content_height(box), calculate_max_content_height(box), constraint, available_space);
  747. }
  748. float FormattingContext::calculate_auto_height(LayoutState const& state, Box const& box)
  749. {
  750. if (is<ReplacedBox>(box)) {
  751. return compute_height_for_replaced_element(state, verify_cast<ReplacedBox>(box));
  752. }
  753. return compute_auto_height_for_block_level_element(state, box);
  754. }
  755. float FormattingContext::calculate_min_content_width(Layout::Box const& box) const
  756. {
  757. if (box.has_intrinsic_width())
  758. return *box.intrinsic_width();
  759. auto& root_state = m_state.m_root;
  760. auto& cache = *root_state.intrinsic_sizes.ensure(&box, [] { return adopt_own(*new LayoutState::IntrinsicSizes); });
  761. if (cache.min_content_width.has_value())
  762. return *cache.min_content_width;
  763. LayoutState throwaway_state(&m_state);
  764. auto const& containing_block = *box.containing_block();
  765. auto& containing_block_state = throwaway_state.get_mutable(containing_block);
  766. containing_block_state.set_content_width(0);
  767. if (!containing_block_state.has_definite_height())
  768. containing_block_state.set_content_height(INFINITY);
  769. else if (containing_block.computed_values().height().is_auto())
  770. containing_block_state.set_content_height(containing_block_height_for(containing_block));
  771. auto& box_state = throwaway_state.get_mutable(box);
  772. box_state.width_constraint = SizeConstraint::MinContent;
  773. auto context = const_cast<FormattingContext*>(this)->create_independent_formatting_context_if_needed(throwaway_state, box);
  774. VERIFY(context);
  775. context->run_intrinsic_sizing(box);
  776. if (context->type() == FormattingContext::Type::Flex) {
  777. cache.min_content_width = box_state.content_width();
  778. } else {
  779. cache.min_content_width = context->greatest_child_width(box);
  780. }
  781. if (!isfinite(*cache.min_content_width)) {
  782. // HACK: If layout calculates a non-finite result, something went wrong. Force it to zero and log a little whine.
  783. dbgln("FIXME: Calculated non-finite min-content width for {}", box.debug_description());
  784. cache.min_content_width = 0;
  785. }
  786. return *cache.min_content_width;
  787. }
  788. float FormattingContext::calculate_max_content_width(Layout::Box const& box) const
  789. {
  790. if (box.has_intrinsic_width())
  791. return *box.intrinsic_width();
  792. auto& root_state = m_state.m_root;
  793. auto& cache = *root_state.intrinsic_sizes.ensure(&box, [] { return adopt_own(*new LayoutState::IntrinsicSizes); });
  794. if (cache.max_content_width.has_value())
  795. return *cache.max_content_width;
  796. LayoutState throwaway_state(&m_state);
  797. auto const& containing_block = *box.containing_block();
  798. auto& containing_block_state = throwaway_state.get_mutable(containing_block);
  799. containing_block_state.set_content_width(INFINITY);
  800. if (!containing_block_state.has_definite_height())
  801. containing_block_state.set_content_height(INFINITY);
  802. else if (containing_block.computed_values().height().is_auto())
  803. containing_block_state.set_content_height(containing_block_height_for(containing_block));
  804. auto& box_state = throwaway_state.get_mutable(box);
  805. box_state.width_constraint = SizeConstraint::MaxContent;
  806. auto context = const_cast<FormattingContext*>(this)->create_independent_formatting_context_if_needed(throwaway_state, box);
  807. VERIFY(context);
  808. context->run_intrinsic_sizing(box);
  809. if (context->type() == FormattingContext::Type::Flex) {
  810. cache.max_content_width = box_state.content_width();
  811. } else {
  812. cache.max_content_width = context->greatest_child_width(box);
  813. }
  814. if (!isfinite(*cache.max_content_width)) {
  815. // HACK: If layout calculates a non-finite result, something went wrong. Force it to zero and log a little whine.
  816. dbgln("FIXME: Calculated non-finite max-content width for {}", box.debug_description());
  817. cache.max_content_width = 0;
  818. }
  819. return *cache.max_content_width;
  820. }
  821. float FormattingContext::calculate_min_content_height(Layout::Box const& box) const
  822. {
  823. if (box.has_intrinsic_height())
  824. return *box.intrinsic_height();
  825. auto& root_state = m_state.m_root;
  826. auto& cache = *root_state.intrinsic_sizes.ensure(&box, [] { return adopt_own(*new LayoutState::IntrinsicSizes); });
  827. if (cache.min_content_height.has_value())
  828. return *cache.min_content_height;
  829. LayoutState throwaway_state(&m_state);
  830. auto const& containing_block = *box.containing_block();
  831. auto& containing_block_state = throwaway_state.get_mutable(containing_block);
  832. containing_block_state.set_content_height(0);
  833. if (!containing_block_state.has_definite_width())
  834. containing_block_state.set_content_width(INFINITY);
  835. else if (containing_block.computed_values().width().is_auto())
  836. containing_block_state.set_content_width(containing_block_width_for(containing_block));
  837. auto& box_state = throwaway_state.get_mutable(box);
  838. box_state.height_constraint = SizeConstraint::MinContent;
  839. auto context = const_cast<FormattingContext*>(this)->create_independent_formatting_context_if_needed(throwaway_state, box);
  840. VERIFY(context);
  841. context->run_intrinsic_sizing(box);
  842. if (context->type() == FormattingContext::Type::Flex) {
  843. cache.min_content_height = box_state.content_height();
  844. } else {
  845. cache.min_content_height = calculate_auto_height(throwaway_state, box);
  846. }
  847. if (!isfinite(*cache.min_content_height)) {
  848. // HACK: If layout calculates a non-finite result, something went wrong. Force it to zero and log a little whine.
  849. dbgln("FIXME: Calculated non-finite min-content height for {}", box.debug_description());
  850. cache.min_content_height = 0;
  851. }
  852. return *cache.min_content_height;
  853. }
  854. float FormattingContext::calculate_max_content_height(Layout::Box const& box) const
  855. {
  856. if (box.has_intrinsic_height())
  857. return *box.intrinsic_height();
  858. auto& root_state = m_state.m_root;
  859. auto& cache = *root_state.intrinsic_sizes.ensure(&box, [] { return adopt_own(*new LayoutState::IntrinsicSizes); });
  860. if (cache.max_content_height.has_value())
  861. return *cache.max_content_height;
  862. LayoutState throwaway_state(&m_state);
  863. auto const& containing_block = *box.containing_block();
  864. auto& containing_block_state = throwaway_state.get_mutable(containing_block);
  865. containing_block_state.set_content_height(INFINITY);
  866. if (!containing_block_state.has_definite_width())
  867. containing_block_state.set_content_width(INFINITY);
  868. else if (containing_block.computed_values().width().is_auto())
  869. containing_block_state.set_content_width(containing_block_width_for(containing_block));
  870. auto& box_state = throwaway_state.get_mutable(box);
  871. box_state.height_constraint = SizeConstraint::MaxContent;
  872. auto context = const_cast<FormattingContext*>(this)->create_independent_formatting_context_if_needed(throwaway_state, box);
  873. VERIFY(context);
  874. context->run_intrinsic_sizing(box);
  875. if (context->type() == FormattingContext::Type::Flex) {
  876. cache.max_content_height = box_state.content_height();
  877. } else {
  878. cache.max_content_height = calculate_auto_height(throwaway_state, box);
  879. }
  880. if (!isfinite(*cache.max_content_height)) {
  881. // HACK: If layout calculates a non-finite result, something went wrong. Force it to zero and log a little whine.
  882. dbgln("FIXME: Calculated non-finite max-content height for {}", box.debug_description());
  883. cache.max_content_height = 0;
  884. }
  885. return *cache.max_content_height;
  886. }
  887. float FormattingContext::containing_block_width_for(Box const& box, LayoutState const& state)
  888. {
  889. auto& containing_block_state = state.get(*box.containing_block());
  890. auto& box_state = state.get(box);
  891. switch (box_state.width_constraint) {
  892. case SizeConstraint::MinContent:
  893. return 0;
  894. case SizeConstraint::MaxContent:
  895. return INFINITY;
  896. case SizeConstraint::None:
  897. return containing_block_state.content_width();
  898. }
  899. VERIFY_NOT_REACHED();
  900. }
  901. float FormattingContext::containing_block_height_for(Box const& box, LayoutState const& state)
  902. {
  903. auto& containing_block_state = state.get(*box.containing_block());
  904. auto& box_state = state.get(box);
  905. switch (box_state.height_constraint) {
  906. case SizeConstraint::MinContent:
  907. return 0;
  908. case SizeConstraint::MaxContent:
  909. return INFINITY;
  910. case SizeConstraint::None:
  911. return containing_block_state.content_height();
  912. }
  913. VERIFY_NOT_REACHED();
  914. }
  915. float FormattingContext::compute_box_y_position_with_respect_to_siblings(Box const& child_box, LayoutState::UsedValues const& box_state)
  916. {
  917. float y = box_state.border_box_top();
  918. Vector<float> collapsible_margins;
  919. auto* relevant_sibling = child_box.previous_sibling_of_type<Layout::BlockContainer>();
  920. while (relevant_sibling != nullptr) {
  921. if (!relevant_sibling->is_absolutely_positioned() && !relevant_sibling->is_floating()) {
  922. auto const& relevant_sibling_state = m_state.get(*relevant_sibling);
  923. collapsible_margins.append(relevant_sibling_state.margin_bottom);
  924. // NOTE: Empty (0-height) preceding siblings have their margins collapsed with *their* preceding sibling, etc.
  925. if (relevant_sibling_state.border_box_height() > 0)
  926. break;
  927. collapsible_margins.append(relevant_sibling_state.margin_top);
  928. }
  929. relevant_sibling = relevant_sibling->previous_sibling_of_type<Layout::BlockContainer>();
  930. }
  931. if (relevant_sibling) {
  932. // Collapse top margin with the collapsed margin(s) of preceding siblings.
  933. collapsible_margins.append(box_state.margin_top);
  934. float smallest_margin = 0;
  935. float largest_margin = 0;
  936. size_t negative_margin_count = 0;
  937. for (auto margin : collapsible_margins) {
  938. if (margin < 0)
  939. ++negative_margin_count;
  940. largest_margin = max(largest_margin, margin);
  941. smallest_margin = min(smallest_margin, margin);
  942. }
  943. float collapsed_margin = 0;
  944. if (negative_margin_count == collapsible_margins.size()) {
  945. // When all margins are negative, the size of the collapsed margin is the smallest (most negative) margin.
  946. collapsed_margin = smallest_margin;
  947. } else if (negative_margin_count > 0) {
  948. // When negative margins are involved, the size of the collapsed margin is the sum of the largest positive margin and the smallest (most negative) negative margin.
  949. collapsed_margin = largest_margin + smallest_margin;
  950. } else {
  951. // Otherwise, collapse all the adjacent margins by using only the largest one.
  952. collapsed_margin = largest_margin;
  953. }
  954. auto const& relevant_sibling_state = m_state.get(*relevant_sibling);
  955. return y + relevant_sibling_state.offset.y()
  956. + relevant_sibling_state.content_height()
  957. + relevant_sibling_state.border_box_bottom()
  958. + collapsed_margin;
  959. } else {
  960. return y + box_state.margin_top;
  961. }
  962. }
  963. }