LayoutState.cpp 28 KB

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  1. /*
  2. * Copyright (c) 2022-2024, Andreas Kling <kling@serenityos.org>
  3. * Copyright (c) 2024, Sam Atkins <atkinssj@serenityos.org>
  4. *
  5. * SPDX-License-Identifier: BSD-2-Clause
  6. */
  7. #include <AK/Debug.h>
  8. #include <LibWeb/DOM/ShadowRoot.h>
  9. #include <LibWeb/Layout/AvailableSpace.h>
  10. #include <LibWeb/Layout/BlockContainer.h>
  11. #include <LibWeb/Layout/InlineNode.h>
  12. #include <LibWeb/Layout/LayoutState.h>
  13. #include <LibWeb/Layout/Viewport.h>
  14. #include <LibWeb/Painting/InlinePaintable.h>
  15. #include <LibWeb/Painting/SVGPathPaintable.h>
  16. #include <LibWeb/Painting/SVGSVGPaintable.h>
  17. #include <LibWeb/Painting/TextPaintable.h>
  18. namespace Web::Layout {
  19. LayoutState::LayoutState(LayoutState const* parent)
  20. : m_parent(parent)
  21. , m_root(find_root())
  22. {
  23. }
  24. LayoutState::~LayoutState()
  25. {
  26. }
  27. LayoutState::UsedValues& LayoutState::get_mutable(NodeWithStyle const& node)
  28. {
  29. if (auto* used_values = used_values_per_layout_node.get(&node).value_or(nullptr))
  30. return *used_values;
  31. for (auto const* ancestor = m_parent; ancestor; ancestor = ancestor->m_parent) {
  32. if (auto* ancestor_used_values = ancestor->used_values_per_layout_node.get(&node).value_or(nullptr)) {
  33. auto cow_used_values = adopt_own(*new UsedValues(*ancestor_used_values));
  34. auto* cow_used_values_ptr = cow_used_values.ptr();
  35. used_values_per_layout_node.set(&node, move(cow_used_values));
  36. return *cow_used_values_ptr;
  37. }
  38. }
  39. auto const* containing_block_used_values = node.is_viewport() ? nullptr : &get(*node.containing_block());
  40. auto new_used_values = adopt_own(*new UsedValues);
  41. auto* new_used_values_ptr = new_used_values.ptr();
  42. new_used_values->set_node(const_cast<NodeWithStyle&>(node), containing_block_used_values);
  43. used_values_per_layout_node.set(&node, move(new_used_values));
  44. return *new_used_values_ptr;
  45. }
  46. LayoutState::UsedValues const& LayoutState::get(NodeWithStyle const& node) const
  47. {
  48. if (auto const* used_values = used_values_per_layout_node.get(&node).value_or(nullptr))
  49. return *used_values;
  50. for (auto const* ancestor = m_parent; ancestor; ancestor = ancestor->m_parent) {
  51. if (auto const* ancestor_used_values = ancestor->used_values_per_layout_node.get(&node).value_or(nullptr))
  52. return *ancestor_used_values;
  53. }
  54. auto const* containing_block_used_values = node.is_viewport() ? nullptr : &get(*node.containing_block());
  55. auto new_used_values = adopt_own(*new UsedValues);
  56. auto* new_used_values_ptr = new_used_values.ptr();
  57. new_used_values->set_node(const_cast<NodeWithStyle&>(node), containing_block_used_values);
  58. const_cast<LayoutState*>(this)->used_values_per_layout_node.set(&node, move(new_used_values));
  59. return *new_used_values_ptr;
  60. }
  61. // https://www.w3.org/TR/css-overflow-3/#scrollable-overflow
  62. static CSSPixelRect measure_scrollable_overflow(Box const& box)
  63. {
  64. if (!box.paintable_box())
  65. return {};
  66. auto& paintable_box = const_cast<Painting::PaintableBox&>(*box.paintable_box());
  67. if (paintable_box.scrollable_overflow_rect().has_value())
  68. return paintable_box.scrollable_overflow_rect().value();
  69. // The scrollable overflow area is the union of:
  70. // - The scroll container’s own padding box.
  71. auto scrollable_overflow_rect = paintable_box.absolute_padding_box_rect();
  72. // - All line boxes directly contained by the scroll container.
  73. if (is<Painting::PaintableWithLines>(box.paintable())) {
  74. for (auto const& fragment : static_cast<Painting::PaintableWithLines const&>(*box.paintable()).fragments()) {
  75. scrollable_overflow_rect = scrollable_overflow_rect.united(fragment.absolute_rect());
  76. }
  77. }
  78. // - The border boxes of all boxes for which it is the containing block
  79. // and whose border boxes are positioned not wholly in the negative scrollable overflow region,
  80. // FIXME: accounting for transforms by projecting each box onto the plane of the element that establishes its 3D rendering context. [CSS3-TRANSFORMS]
  81. if (!box.children_are_inline()) {
  82. box.for_each_child_of_type<Box>([&box, &scrollable_overflow_rect](Box const& child) {
  83. if (!child.paintable_box())
  84. return IterationDecision::Continue;
  85. auto child_border_box = child.paintable_box()->absolute_border_box_rect();
  86. // NOTE: Here we check that the child is not wholly in the negative scrollable overflow region.
  87. if (child_border_box.bottom() > 0 && child_border_box.right() > 0)
  88. scrollable_overflow_rect = scrollable_overflow_rect.united(child_border_box);
  89. // - The scrollable overflow areas of all of the above boxes
  90. // (including zero-area boxes and accounting for transforms as described above),
  91. // provided they themselves have overflow: visible (i.e. do not themselves trap the overflow)
  92. // and that scrollable overflow is not already clipped (e.g. by the clip property or the contain property).
  93. if (is<Viewport>(box) || child.computed_values().overflow_x() == CSS::Overflow::Visible || child.computed_values().overflow_y() == CSS::Overflow::Visible) {
  94. auto child_scrollable_overflow = measure_scrollable_overflow(child);
  95. if (is<Viewport>(box) || child.computed_values().overflow_x() == CSS::Overflow::Visible)
  96. scrollable_overflow_rect.unite_horizontally(child_scrollable_overflow);
  97. if (is<Viewport>(box) || child.computed_values().overflow_y() == CSS::Overflow::Visible)
  98. scrollable_overflow_rect.unite_vertically(child_scrollable_overflow);
  99. }
  100. return IterationDecision::Continue;
  101. });
  102. } else {
  103. box.for_each_child([&scrollable_overflow_rect](Node const& child) {
  104. if (child.paintable() && child.paintable()->is_inline_paintable()) {
  105. for (auto const& fragment : static_cast<Painting::InlinePaintable const&>(*child.paintable()).fragments())
  106. scrollable_overflow_rect = scrollable_overflow_rect.united(fragment.absolute_rect());
  107. }
  108. });
  109. }
  110. // FIXME: - The margin areas of grid item and flex item boxes for which the box establishes a containing block.
  111. // FIXME: - Additional padding added to the end-side of the scrollable overflow rectangle as necessary
  112. // to enable a scroll position that satisfies the requirements of place-content: end alignment.
  113. paintable_box.set_overflow_data(Painting::PaintableBox::OverflowData {
  114. .scrollable_overflow_rect = scrollable_overflow_rect,
  115. .has_scrollable_overflow = !paintable_box.absolute_padding_box_rect().contains(scrollable_overflow_rect),
  116. });
  117. return scrollable_overflow_rect;
  118. }
  119. void LayoutState::resolve_relative_positions()
  120. {
  121. // This function resolves relative position offsets of fragments that belong to inline paintables.
  122. // It runs *after* the paint tree has been constructed, so it modifies paintable node & fragment offsets directly.
  123. for (auto& it : used_values_per_layout_node) {
  124. auto& used_values = *it.value;
  125. auto& node = const_cast<NodeWithStyle&>(used_values.node());
  126. auto* paintable = node.paintable();
  127. if (!paintable)
  128. continue;
  129. if (!is<Painting::InlinePaintable>(*paintable))
  130. continue;
  131. auto const& inline_paintable = static_cast<Painting::InlinePaintable&>(*paintable);
  132. for (auto& fragment : inline_paintable.fragments()) {
  133. auto const& fragment_node = fragment.layout_node();
  134. if (!is<Layout::NodeWithStyleAndBoxModelMetrics>(*fragment_node.parent()))
  135. continue;
  136. // Collect effective relative position offset from inline-flow parent chain.
  137. CSSPixelPoint offset;
  138. for (auto* ancestor = fragment_node.parent(); ancestor; ancestor = ancestor->parent()) {
  139. if (!is<Layout::NodeWithStyleAndBoxModelMetrics>(*ancestor))
  140. break;
  141. if (!ancestor->display().is_inline_outside() || !ancestor->display().is_flow_inside())
  142. break;
  143. if (ancestor->computed_values().position() == CSS::Positioning::Relative) {
  144. auto const& ancestor_node = static_cast<Layout::NodeWithStyleAndBoxModelMetrics const&>(*ancestor);
  145. auto const& inset = ancestor_node.box_model().inset;
  146. offset.translate_by(inset.left, inset.top);
  147. }
  148. }
  149. const_cast<Painting::PaintableFragment&>(fragment).set_offset(fragment.offset().translated(offset));
  150. }
  151. }
  152. }
  153. static void build_paint_tree(Node& node, Painting::Paintable* parent_paintable = nullptr)
  154. {
  155. Painting::Paintable* paintable = nullptr;
  156. if (node.paintable()) {
  157. paintable = const_cast<Painting::Paintable*>(node.paintable());
  158. if (parent_paintable && !paintable->forms_unconnected_subtree()) {
  159. VERIFY(!paintable->parent());
  160. parent_paintable->append_child(*paintable);
  161. }
  162. paintable->set_dom_node(node.dom_node());
  163. if (node.dom_node())
  164. node.dom_node()->set_paintable(paintable);
  165. }
  166. for (auto* child = node.first_child(); child; child = child->next_sibling()) {
  167. build_paint_tree(*child, paintable);
  168. }
  169. }
  170. void LayoutState::commit(Box& root)
  171. {
  172. // Only the top-level LayoutState should ever be committed.
  173. VERIFY(!m_parent);
  174. // NOTE: In case this is a relayout of an existing tree, we start by detaching the old paint tree
  175. // from the layout tree. This is done to ensure that we don't end up with any old-tree pointers
  176. // when text paintables shift around in the tree.
  177. root.for_each_in_inclusive_subtree([&](Layout::Node& node) {
  178. node.set_paintable(nullptr);
  179. return IterationDecision::Continue;
  180. });
  181. root.document().for_each_shadow_including_inclusive_descendant([&](DOM::Node& node) {
  182. node.set_paintable(nullptr);
  183. return IterationDecision::Continue;
  184. });
  185. HashTable<Layout::TextNode*> text_nodes;
  186. Vector<Painting::PaintableWithLines&> paintables_with_lines;
  187. for (auto& it : used_values_per_layout_node) {
  188. auto& used_values = *it.value;
  189. auto& node = const_cast<NodeWithStyle&>(used_values.node());
  190. if (is<NodeWithStyleAndBoxModelMetrics>(node)) {
  191. // Transfer box model metrics.
  192. auto& box_model = static_cast<NodeWithStyleAndBoxModelMetrics&>(node).box_model();
  193. box_model.inset = { used_values.inset_top, used_values.inset_right, used_values.inset_bottom, used_values.inset_left };
  194. box_model.padding = { used_values.padding_top, used_values.padding_right, used_values.padding_bottom, used_values.padding_left };
  195. box_model.border = { used_values.border_top, used_values.border_right, used_values.border_bottom, used_values.border_left };
  196. box_model.margin = { used_values.margin_top, used_values.margin_right, used_values.margin_bottom, used_values.margin_left };
  197. }
  198. auto paintable = node.create_paintable();
  199. node.set_paintable(paintable);
  200. // For boxes, transfer all the state needed for painting.
  201. if (paintable && is<Painting::PaintableBox>(*paintable)) {
  202. auto& paintable_box = static_cast<Painting::PaintableBox&>(*paintable);
  203. paintable_box.set_offset(used_values.offset);
  204. paintable_box.set_content_size(used_values.content_width(), used_values.content_height());
  205. if (used_values.override_borders_data().has_value()) {
  206. paintable_box.set_override_borders_data(used_values.override_borders_data().value());
  207. }
  208. if (used_values.table_cell_coordinates().has_value()) {
  209. paintable_box.set_table_cell_coordinates(used_values.table_cell_coordinates().value());
  210. }
  211. if (is<Painting::PaintableWithLines>(paintable_box)) {
  212. auto& paintable_with_lines = static_cast<Painting::PaintableWithLines&>(paintable_box);
  213. for (auto& line_box : used_values.line_boxes) {
  214. for (auto& fragment : line_box.fragments())
  215. paintable_with_lines.add_fragment(fragment);
  216. }
  217. paintables_with_lines.append(paintable_with_lines);
  218. }
  219. if (used_values.computed_svg_transforms().has_value() && is<Painting::SVGGraphicsPaintable>(paintable_box)) {
  220. auto& svg_graphics_paintable = static_cast<Painting::SVGGraphicsPaintable&>(paintable_box);
  221. svg_graphics_paintable.set_computed_transforms(*used_values.computed_svg_transforms());
  222. }
  223. if (used_values.computed_svg_path().has_value() && is<Painting::SVGPathPaintable>(paintable_box)) {
  224. auto& svg_geometry_paintable = static_cast<Painting::SVGPathPaintable&>(paintable_box);
  225. svg_geometry_paintable.set_computed_path(move(*used_values.computed_svg_path()));
  226. }
  227. }
  228. }
  229. // Resolve relative positions for regular boxes (not line box fragments):
  230. // NOTE: This needs to occur before fragments are transferred into the corresponding inline paintables, because
  231. // after this transfer, the containing_line_box_fragment will no longer be valid.
  232. for (auto& it : used_values_per_layout_node) {
  233. auto& used_values = *it.value;
  234. auto& node = const_cast<NodeWithStyle&>(used_values.node());
  235. if (!node.is_box())
  236. continue;
  237. auto& paintable = static_cast<Painting::PaintableBox&>(*node.paintable());
  238. CSSPixelPoint offset;
  239. if (used_values.containing_line_box_fragment.has_value()) {
  240. // Atomic inline case:
  241. // We know that `node` is an atomic inline because `containing_line_box_fragments` refers to the
  242. // line box fragment in the parent block container that contains it.
  243. auto const& containing_line_box_fragment = used_values.containing_line_box_fragment.value();
  244. auto const& containing_block = *node.containing_block();
  245. auto const& containing_block_used_values = get(containing_block);
  246. auto const& fragment = containing_block_used_values.line_boxes[containing_line_box_fragment.line_box_index].fragments()[containing_line_box_fragment.fragment_index];
  247. // The fragment has the final offset for the atomic inline, so we just need to copy it from there.
  248. offset = fragment.offset();
  249. } else {
  250. // Not an atomic inline, much simpler case.
  251. offset = used_values.offset;
  252. }
  253. // Apply relative position inset if appropriate.
  254. if (node.computed_values().position() == CSS::Positioning::Relative && is<NodeWithStyleAndBoxModelMetrics>(node)) {
  255. auto const& inset = static_cast<NodeWithStyleAndBoxModelMetrics const&>(node).box_model().inset;
  256. offset.translate_by(inset.left, inset.top);
  257. }
  258. paintable.set_offset(offset);
  259. }
  260. // Make a pass over all the line boxes to:
  261. // - Collect all text nodes, so we can create paintables for them later.
  262. // - Relocate fragments into matching inline paintables
  263. for (auto& paintable_with_lines : paintables_with_lines) {
  264. Vector<Painting::PaintableFragment> fragments_with_inline_paintables_removed;
  265. for (auto& fragment : paintable_with_lines.fragments()) {
  266. if (fragment.layout_node().is_text_node())
  267. text_nodes.set(static_cast<Layout::TextNode*>(const_cast<Layout::Node*>(&fragment.layout_node())));
  268. auto find_closest_inline_paintable = [&](auto& fragment) -> Painting::InlinePaintable const* {
  269. for (auto const* parent = fragment.layout_node().parent(); parent; parent = parent->parent()) {
  270. if (is<InlineNode>(*parent))
  271. return static_cast<Painting::InlinePaintable const*>(parent->paintable());
  272. }
  273. return nullptr;
  274. };
  275. if (auto const* inline_paintable = find_closest_inline_paintable(fragment)) {
  276. const_cast<Painting::InlinePaintable*>(inline_paintable)->fragments().append(fragment);
  277. } else {
  278. fragments_with_inline_paintables_removed.append(fragment);
  279. }
  280. }
  281. paintable_with_lines.set_fragments(move(fragments_with_inline_paintables_removed));
  282. }
  283. for (auto* text_node : text_nodes) {
  284. text_node->set_paintable(text_node->create_paintable());
  285. auto* paintable = text_node->paintable();
  286. auto const& font = text_node->first_available_font();
  287. auto const glyph_height = CSSPixels::nearest_value_for(font.pixel_size());
  288. auto const css_line_thickness = [&] {
  289. auto computed_thickness = text_node->computed_values().text_decoration_thickness().resolved(*text_node, CSS::Length(1, CSS::Length::Type::Em).to_px(*text_node));
  290. if (computed_thickness.is_auto())
  291. return max(glyph_height.scaled(0.1), 1);
  292. return computed_thickness.to_px(*text_node);
  293. }();
  294. auto& text_paintable = static_cast<Painting::TextPaintable&>(*paintable);
  295. text_paintable.set_text_decoration_thickness(css_line_thickness);
  296. }
  297. build_paint_tree(root);
  298. resolve_relative_positions();
  299. // Measure overflow in scroll containers.
  300. for (auto& it : used_values_per_layout_node) {
  301. auto& used_values = *it.value;
  302. if (!used_values.node().is_box())
  303. continue;
  304. auto const& box = static_cast<Layout::Box const&>(used_values.node());
  305. measure_scrollable_overflow(box);
  306. // The scroll offset can become invalid if the scrollable overflow rectangle has changed after layout.
  307. // For example, if the scroll container has been scrolled to the very end and is then resized to become larger
  308. // (scrollable overflow rect become smaller), the scroll offset would be out of bounds.
  309. auto& paintable_box = const_cast<Painting::PaintableBox&>(*box.paintable_box());
  310. if (!paintable_box.scroll_offset().is_zero())
  311. paintable_box.set_scroll_offset(paintable_box.scroll_offset());
  312. }
  313. }
  314. void LayoutState::UsedValues::set_node(NodeWithStyle& node, UsedValues const* containing_block_used_values)
  315. {
  316. m_node = &node;
  317. m_containing_block_used_values = containing_block_used_values;
  318. // NOTE: In the code below, we decide if `node` has definite width and/or height.
  319. // This attempts to cover all the *general* cases where CSS considers sizes to be definite.
  320. // If `node` has definite values for min/max-width or min/max-height and a definite
  321. // preferred size in the same axis, we clamp the preferred size here as well.
  322. //
  323. // There are additional cases where CSS considers values to be definite. We model all of
  324. // those by having our engine consider sizes to be definite *once they are assigned to
  325. // the UsedValues by calling set_content_width() or set_content_height().
  326. auto const& computed_values = node.computed_values();
  327. auto adjust_for_box_sizing = [&](CSSPixels unadjusted_pixels, CSS::Size const& computed_size, bool width) -> CSSPixels {
  328. // box-sizing: content-box and/or automatic size don't require any adjustment.
  329. if (computed_values.box_sizing() == CSS::BoxSizing::ContentBox || computed_size.is_auto())
  330. return unadjusted_pixels;
  331. // box-sizing: border-box requires us to subtract the relevant border and padding from the size.
  332. CSSPixels border_and_padding;
  333. if (width) {
  334. border_and_padding = computed_values.border_left().width
  335. + computed_values.padding().left().to_px(*m_node, containing_block_used_values->content_width())
  336. + computed_values.border_right().width
  337. + computed_values.padding().right().to_px(*m_node, containing_block_used_values->content_width());
  338. } else {
  339. border_and_padding = computed_values.border_top().width
  340. + computed_values.padding().top().to_px(*m_node, containing_block_used_values->content_width())
  341. + computed_values.border_bottom().width
  342. + computed_values.padding().bottom().to_px(*m_node, containing_block_used_values->content_width());
  343. }
  344. return unadjusted_pixels - border_and_padding;
  345. };
  346. auto is_definite_size = [&](CSS::Size const& size, CSSPixels& resolved_definite_size, bool width) {
  347. // A size that can be determined without performing layout; that is,
  348. // a <length>,
  349. // a measure of text (without consideration of line-wrapping),
  350. // a size of the initial containing block,
  351. // or a <percentage> or other formula (such as the “stretch-fit” sizing of non-replaced blocks [CSS2]) that is resolved solely against definite sizes.
  352. auto containing_block_has_definite_size = containing_block_used_values ? (width ? containing_block_used_values->has_definite_width() : containing_block_used_values->has_definite_height()) : false;
  353. if (size.is_auto()) {
  354. // NOTE: The width of a non-flex-item block is considered definite if it's auto and the containing block has definite width.
  355. if (width
  356. && !node.is_floating()
  357. && !node.is_absolutely_positioned()
  358. && node.display().is_block_outside()
  359. && node.parent()
  360. && !node.parent()->is_floating()
  361. && (node.parent()->display().is_flow_root_inside()
  362. || node.parent()->display().is_flow_inside())) {
  363. if (containing_block_has_definite_size) {
  364. CSSPixels available_width = containing_block_used_values->content_width();
  365. resolved_definite_size = available_width
  366. - margin_left
  367. - margin_right
  368. - padding_left
  369. - padding_right
  370. - border_left
  371. - border_right;
  372. return true;
  373. }
  374. return false;
  375. }
  376. return false;
  377. }
  378. if (size.is_calculated()) {
  379. if (size.calculated().contains_percentage()) {
  380. if (!containing_block_has_definite_size)
  381. return false;
  382. auto containing_block_size_as_length = width ? containing_block_used_values->content_width() : containing_block_used_values->content_height();
  383. resolved_definite_size = adjust_for_box_sizing(size.calculated().resolve_length_percentage(node, containing_block_size_as_length).value_or(CSS::Length::make_auto()).to_px(node), size, width);
  384. return true;
  385. }
  386. resolved_definite_size = adjust_for_box_sizing(size.calculated().resolve_length(node)->to_px(node), size, width);
  387. return true;
  388. }
  389. if (size.is_length()) {
  390. VERIFY(!size.is_auto()); // This should have been covered by the Size::is_auto() branch above.
  391. resolved_definite_size = adjust_for_box_sizing(size.length().to_px(node), size, width);
  392. return true;
  393. }
  394. if (size.is_percentage()) {
  395. if (containing_block_has_definite_size) {
  396. auto containing_block_size = width ? containing_block_used_values->content_width() : containing_block_used_values->content_height();
  397. resolved_definite_size = adjust_for_box_sizing(containing_block_size.scaled(size.percentage().as_fraction()), size, width);
  398. return true;
  399. }
  400. return false;
  401. }
  402. // FIXME: Determine if calc() value is definite.
  403. return false;
  404. };
  405. CSSPixels min_width = 0;
  406. bool has_definite_min_width = is_definite_size(computed_values.min_width(), min_width, true);
  407. CSSPixels max_width = 0;
  408. bool has_definite_max_width = is_definite_size(computed_values.max_width(), max_width, true);
  409. CSSPixels min_height = 0;
  410. bool has_definite_min_height = is_definite_size(computed_values.min_height(), min_height, false);
  411. CSSPixels max_height = 0;
  412. bool has_definite_max_height = is_definite_size(computed_values.max_height(), max_height, false);
  413. m_has_definite_width = is_definite_size(computed_values.width(), m_content_width, true);
  414. m_has_definite_height = is_definite_size(computed_values.height(), m_content_height, false);
  415. if (m_has_definite_width) {
  416. if (has_definite_min_width)
  417. m_content_width = max(min_width, m_content_width);
  418. if (has_definite_max_width)
  419. m_content_width = min(max_width, m_content_width);
  420. }
  421. if (m_has_definite_height) {
  422. if (has_definite_min_height)
  423. m_content_height = max(min_height, m_content_height);
  424. if (has_definite_max_height)
  425. m_content_height = min(max_height, m_content_height);
  426. }
  427. }
  428. void LayoutState::UsedValues::set_content_width(CSSPixels width)
  429. {
  430. VERIFY(!width.might_be_saturated());
  431. if (width < 0) {
  432. // Negative widths are not allowed in CSS. We have a bug somewhere! Clamp to 0 to avoid doing too much damage.
  433. dbgln_if(LIBWEB_CSS_DEBUG, "FIXME: Layout calculated a negative width for {}: {}", m_node->debug_description(), width);
  434. width = 0;
  435. }
  436. m_content_width = width;
  437. // FIXME: We should not do this! Definiteness of widths should be determined early,
  438. // and not changed later (except for some special cases in flex layout..)
  439. m_has_definite_width = true;
  440. }
  441. void LayoutState::UsedValues::set_content_height(CSSPixels height)
  442. {
  443. VERIFY(!height.might_be_saturated());
  444. if (height < 0) {
  445. // Negative heights are not allowed in CSS. We have a bug somewhere! Clamp to 0 to avoid doing too much damage.
  446. dbgln_if(LIBWEB_CSS_DEBUG, "FIXME: Layout calculated a negative height for {}: {}", m_node->debug_description(), height);
  447. height = 0;
  448. }
  449. m_content_height = height;
  450. }
  451. void LayoutState::UsedValues::set_temporary_content_width(CSSPixels width)
  452. {
  453. m_content_width = width;
  454. }
  455. void LayoutState::UsedValues::set_temporary_content_height(CSSPixels height)
  456. {
  457. m_content_height = height;
  458. }
  459. AvailableSize LayoutState::UsedValues::available_width_inside() const
  460. {
  461. if (width_constraint == SizeConstraint::MinContent)
  462. return AvailableSize::make_min_content();
  463. if (width_constraint == SizeConstraint::MaxContent)
  464. return AvailableSize::make_max_content();
  465. if (has_definite_width())
  466. return AvailableSize::make_definite(m_content_width);
  467. return AvailableSize::make_indefinite();
  468. }
  469. AvailableSize LayoutState::UsedValues::available_height_inside() const
  470. {
  471. if (height_constraint == SizeConstraint::MinContent)
  472. return AvailableSize::make_min_content();
  473. if (height_constraint == SizeConstraint::MaxContent)
  474. return AvailableSize::make_max_content();
  475. if (has_definite_height())
  476. return AvailableSize::make_definite(m_content_height);
  477. return AvailableSize::make_indefinite();
  478. }
  479. AvailableSpace LayoutState::UsedValues::available_inner_space_or_constraints_from(AvailableSpace const& outer_space) const
  480. {
  481. auto inner_width = available_width_inside();
  482. auto inner_height = available_height_inside();
  483. if (inner_width.is_indefinite() && outer_space.width.is_intrinsic_sizing_constraint())
  484. inner_width = outer_space.width;
  485. if (inner_height.is_indefinite() && outer_space.height.is_intrinsic_sizing_constraint())
  486. inner_height = outer_space.height;
  487. return AvailableSpace(inner_width, inner_height);
  488. }
  489. void LayoutState::UsedValues::set_content_offset(CSSPixelPoint new_offset)
  490. {
  491. set_content_x(new_offset.x());
  492. set_content_y(new_offset.y());
  493. }
  494. void LayoutState::UsedValues::set_content_x(CSSPixels x)
  495. {
  496. offset.set_x(x);
  497. }
  498. void LayoutState::UsedValues::set_content_y(CSSPixels y)
  499. {
  500. offset.set_y(y);
  501. }
  502. void LayoutState::UsedValues::set_indefinite_content_width()
  503. {
  504. m_has_definite_width = false;
  505. }
  506. void LayoutState::UsedValues::set_indefinite_content_height()
  507. {
  508. m_has_definite_height = false;
  509. }
  510. }