FlexFormattingContext.cpp 76 KB

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  1. /*
  2. * Copyright (c) 2021-2022, Andreas Kling <kling@serenityos.org>
  3. * Copyright (c) 2021, Tobias Christiansen <tobyase@serenityos.org>
  4. *
  5. * SPDX-License-Identifier: BSD-2-Clause
  6. */
  7. #include "InlineFormattingContext.h"
  8. #include <AK/Function.h>
  9. #include <AK/QuickSort.h>
  10. #include <AK/StdLibExtras.h>
  11. #include <LibWeb/Layout/BlockContainer.h>
  12. #include <LibWeb/Layout/BlockFormattingContext.h>
  13. #include <LibWeb/Layout/Box.h>
  14. #include <LibWeb/Layout/FlexFormattingContext.h>
  15. #include <LibWeb/Layout/InitialContainingBlock.h>
  16. #include <LibWeb/Layout/ReplacedBox.h>
  17. #include <LibWeb/Layout/TextNode.h>
  18. namespace Web::Layout {
  19. // NOTE: We use a custom clamping function here instead of AK::clamp(), since the AK version
  20. // will VERIFY(max >= min) and CSS explicitly allows that (see css-values-4.)
  21. template<typename T>
  22. constexpr T css_clamp(T const& value, T const& min, T const& max)
  23. {
  24. return ::max(min, ::min(value, max));
  25. }
  26. static float get_pixel_size(FormattingState const& state, Box const& box, Optional<CSS::LengthPercentage> const& length_percentage)
  27. {
  28. if (!length_percentage.has_value())
  29. return 0;
  30. auto inner_main_size = CSS::Length::make_px(state.get(*box.containing_block()).content_width);
  31. return length_percentage->resolved(box, inner_main_size).to_px(box);
  32. }
  33. static bool is_undefined_or_auto(Optional<CSS::LengthPercentage> const& length_percentage)
  34. {
  35. if (!length_percentage.has_value())
  36. return true;
  37. return length_percentage->is_length() && length_percentage->length().is_auto();
  38. }
  39. FlexFormattingContext::FlexFormattingContext(FormattingState& state, Box const& flex_container, FormattingContext* parent)
  40. : FormattingContext(Type::Flex, state, flex_container, parent)
  41. , m_flex_container_state(m_state.get_mutable(flex_container))
  42. , m_flex_direction(flex_container.computed_values().flex_direction())
  43. {
  44. }
  45. FlexFormattingContext::~FlexFormattingContext() = default;
  46. void FlexFormattingContext::run(Box const& run_box, LayoutMode layout_mode)
  47. {
  48. VERIFY(&run_box == &flex_container());
  49. // This implements https://www.w3.org/TR/css-flexbox-1/#layout-algorithm
  50. // 1. Generate anonymous flex items
  51. generate_anonymous_flex_items();
  52. // 2. Determine the available main and cross space for the flex items
  53. float main_max_size = NumericLimits<float>::max();
  54. float main_min_size = 0;
  55. float cross_max_size = NumericLimits<float>::max();
  56. float cross_min_size = 0;
  57. bool main_is_constrained = false;
  58. bool cross_is_constrained = false;
  59. determine_available_main_and_cross_space(main_is_constrained, cross_is_constrained, main_min_size, main_max_size, cross_min_size, cross_max_size);
  60. // 3. Determine the flex base size and hypothetical main size of each item
  61. for (auto& flex_item : m_flex_items) {
  62. if (flex_item.box.is_replaced_box()) {
  63. // FIXME: Get rid of prepare_for_replaced_layout() and make replaced elements figure out their intrinsic size lazily.
  64. static_cast<ReplacedBox&>(flex_item.box).prepare_for_replaced_layout();
  65. }
  66. determine_flex_base_size_and_hypothetical_main_size(flex_item);
  67. }
  68. if (m_flex_container_state.width_constraint != SizeConstraint::None || m_flex_container_state.height_constraint != SizeConstraint::None) {
  69. // We're computing intrinsic size for the flex container.
  70. determine_intrinsic_size_of_flex_container(layout_mode);
  71. // Our caller is only interested in the content-width and content-height results,
  72. // which have now been set on m_flex_container_state, so there's no need to continue
  73. // the main layout algorithm after this point.
  74. return;
  75. }
  76. // 4. Determine the main size of the flex container
  77. determine_main_size_of_flex_container(main_is_constrained, main_min_size, main_max_size);
  78. // 5. Collect flex items into flex lines:
  79. // After this step no additional items are to be added to flex_lines or any of its items!
  80. collect_flex_items_into_flex_lines();
  81. // 6. Resolve the flexible lengths
  82. resolve_flexible_lengths();
  83. // Cross Size Determination
  84. // 7. Determine the hypothetical cross size of each item
  85. for (auto& flex_item : m_flex_items) {
  86. determine_hypothetical_cross_size_of_item(flex_item);
  87. }
  88. // 8. Calculate the cross size of each flex line.
  89. calculate_cross_size_of_each_flex_line(cross_min_size, cross_max_size);
  90. // 9. Handle 'align-content: stretch'.
  91. // FIXME: This
  92. // 10. Collapse visibility:collapse items.
  93. // FIXME: This
  94. // 11. Determine the used cross size of each flex item.
  95. determine_used_cross_size_of_each_flex_item();
  96. // 12. Distribute any remaining free space.
  97. distribute_any_remaining_free_space();
  98. // 13. Resolve cross-axis auto margins.
  99. // FIXME: This
  100. // 14. Align all flex items along the cross-axis
  101. align_all_flex_items_along_the_cross_axis();
  102. // 15. Determine the flex container’s used cross size:
  103. determine_flex_container_used_cross_size(cross_min_size, cross_max_size);
  104. // 16. Align all flex lines (per align-content)
  105. align_all_flex_lines();
  106. // AD-HOC: Layout the inside of all flex items.
  107. copy_dimensions_from_flex_items_to_boxes();
  108. for (auto& flex_item : m_flex_items) {
  109. if (auto independent_formatting_context = layout_inside(flex_item.box, LayoutMode::Normal))
  110. independent_formatting_context->parent_context_did_dimension_child_root_box();
  111. }
  112. // FIXME: We run the "copy dimensions" step *again* here, in order to override any sizes
  113. // assigned to the flex item by the "layout inside" step above. This is definitely not
  114. // part of the spec, and simply covering up the fact that our inside layout currently
  115. // mutates the height of BFC roots.
  116. copy_dimensions_from_flex_items_to_boxes();
  117. flex_container().for_each_child_of_type<Box>([&](Layout::Box& box) {
  118. if (box.is_absolutely_positioned())
  119. layout_absolutely_positioned_element(box);
  120. });
  121. }
  122. void FlexFormattingContext::populate_specified_margins(FlexItem& item, CSS::FlexDirection flex_direction) const
  123. {
  124. auto width_of_containing_block = m_state.get(*item.box.containing_block()).content_width;
  125. auto width_of_containing_block_as_length = CSS::Length::make_px(width_of_containing_block);
  126. // FIXME: This should also take reverse-ness into account
  127. if (flex_direction == CSS::FlexDirection::Row || flex_direction == CSS::FlexDirection::RowReverse) {
  128. item.borders.main_before = item.box.computed_values().border_left().width;
  129. item.borders.main_after = item.box.computed_values().border_right().width;
  130. item.borders.cross_before = item.box.computed_values().border_top().width;
  131. item.borders.cross_after = item.box.computed_values().border_bottom().width;
  132. item.padding.main_before = item.box.computed_values().padding().left.resolved(item.box, width_of_containing_block_as_length).to_px(item.box);
  133. item.padding.main_after = item.box.computed_values().padding().right.resolved(item.box, width_of_containing_block_as_length).to_px(item.box);
  134. item.padding.cross_before = item.box.computed_values().padding().top.resolved(item.box, width_of_containing_block_as_length).to_px(item.box);
  135. item.padding.cross_after = item.box.computed_values().padding().bottom.resolved(item.box, width_of_containing_block_as_length).to_px(item.box);
  136. item.margins.main_before = item.box.computed_values().margin().left.resolved(item.box, width_of_containing_block_as_length).to_px(item.box);
  137. item.margins.main_after = item.box.computed_values().margin().right.resolved(item.box, width_of_containing_block_as_length).to_px(item.box);
  138. item.margins.cross_before = item.box.computed_values().margin().top.resolved(item.box, width_of_containing_block_as_length).to_px(item.box);
  139. item.margins.cross_after = item.box.computed_values().margin().bottom.resolved(item.box, width_of_containing_block_as_length).to_px(item.box);
  140. item.margins.main_before_is_auto = item.box.computed_values().margin().left.is_auto();
  141. item.margins.main_after_is_auto = item.box.computed_values().margin().right.is_auto();
  142. item.margins.cross_before_is_auto = item.box.computed_values().margin().top.is_auto();
  143. item.margins.cross_after_is_auto = item.box.computed_values().margin().bottom.is_auto();
  144. } else {
  145. item.borders.main_before = item.box.computed_values().border_top().width;
  146. item.borders.main_after = item.box.computed_values().border_bottom().width;
  147. item.borders.cross_before = item.box.computed_values().border_left().width;
  148. item.borders.cross_after = item.box.computed_values().border_right().width;
  149. item.padding.main_before = item.box.computed_values().padding().top.resolved(item.box, width_of_containing_block_as_length).to_px(item.box);
  150. item.padding.main_after = item.box.computed_values().padding().bottom.resolved(item.box, width_of_containing_block_as_length).to_px(item.box);
  151. item.padding.cross_before = item.box.computed_values().padding().left.resolved(item.box, width_of_containing_block_as_length).to_px(item.box);
  152. item.padding.cross_after = item.box.computed_values().padding().right.resolved(item.box, width_of_containing_block_as_length).to_px(item.box);
  153. item.margins.main_before = item.box.computed_values().margin().top.resolved(item.box, width_of_containing_block_as_length).to_px(item.box);
  154. item.margins.main_after = item.box.computed_values().margin().bottom.resolved(item.box, width_of_containing_block_as_length).to_px(item.box);
  155. item.margins.cross_before = item.box.computed_values().margin().left.resolved(item.box, width_of_containing_block_as_length).to_px(item.box);
  156. item.margins.cross_after = item.box.computed_values().margin().right.resolved(item.box, width_of_containing_block_as_length).to_px(item.box);
  157. item.margins.main_before_is_auto = item.box.computed_values().margin().top.is_auto();
  158. item.margins.main_after_is_auto = item.box.computed_values().margin().bottom.is_auto();
  159. item.margins.cross_before_is_auto = item.box.computed_values().margin().left.is_auto();
  160. item.margins.cross_after_is_auto = item.box.computed_values().margin().right.is_auto();
  161. }
  162. };
  163. // https://www.w3.org/TR/css-flexbox-1/#flex-items
  164. void FlexFormattingContext::generate_anonymous_flex_items()
  165. {
  166. // More like, sift through the already generated items.
  167. // After this step no items are to be added or removed from flex_items!
  168. // It holds every item we need to consider and there should be nothing in the following
  169. // calculations that could change that.
  170. // This is particularly important since we take references to the items stored in flex_items
  171. // later, whose addresses won't be stable if we added or removed any items.
  172. HashMap<int, Vector<FlexItem>> order_item_bucket;
  173. flex_container().for_each_child_of_type<Box>([&](Box& child_box) {
  174. // Skip anonymous text runs that are only whitespace.
  175. if (child_box.is_anonymous() && !child_box.first_child_of_type<BlockContainer>()) {
  176. bool contains_only_white_space = true;
  177. child_box.for_each_in_subtree([&](auto const& node) {
  178. if (!is<TextNode>(node) || !static_cast<TextNode const&>(node).dom_node().data().is_whitespace()) {
  179. contains_only_white_space = false;
  180. return IterationDecision::Break;
  181. }
  182. return IterationDecision::Continue;
  183. });
  184. if (contains_only_white_space)
  185. return IterationDecision::Continue;
  186. }
  187. // Skip any "out-of-flow" children
  188. if (child_box.is_out_of_flow(*this))
  189. return IterationDecision::Continue;
  190. child_box.set_flex_item(true);
  191. FlexItem flex_item = { child_box };
  192. populate_specified_margins(flex_item, m_flex_direction);
  193. auto& order_bucket = order_item_bucket.ensure(child_box.computed_values().order());
  194. order_bucket.append(move(flex_item));
  195. return IterationDecision::Continue;
  196. });
  197. auto keys = order_item_bucket.keys();
  198. if (is_direction_reverse()) {
  199. quick_sort(keys, [](auto& a, auto& b) { return a > b; });
  200. } else {
  201. quick_sort(keys, [](auto& a, auto& b) { return a < b; });
  202. }
  203. for (auto key : keys) {
  204. auto order_bucket = order_item_bucket.get(key);
  205. if (order_bucket.has_value()) {
  206. auto items = order_bucket.value();
  207. if (is_direction_reverse()) {
  208. for (auto flex_item : items.in_reverse()) {
  209. m_flex_items.append(move(flex_item));
  210. }
  211. } else {
  212. for (auto flex_item : items) {
  213. m_flex_items.append(move(flex_item));
  214. }
  215. }
  216. }
  217. }
  218. }
  219. bool FlexFormattingContext::has_definite_main_size(Box const& box) const
  220. {
  221. return is_row_layout() ? box.has_definite_width() : box.has_definite_height();
  222. }
  223. float FlexFormattingContext::specified_main_size(Box const& box) const
  224. {
  225. auto const& box_state = m_state.get(box);
  226. return is_row_layout() ? box_state.content_width : box_state.content_height;
  227. }
  228. float FlexFormattingContext::specified_cross_size(Box const& box) const
  229. {
  230. auto const& box_state = m_state.get(box);
  231. return is_row_layout() ? box_state.content_height : box_state.content_width;
  232. }
  233. float FlexFormattingContext::resolved_definite_cross_size(Box const& box) const
  234. {
  235. if (is_row_layout())
  236. VERIFY(box.has_definite_height());
  237. else
  238. VERIFY(box.has_definite_width());
  239. auto const& cross_value = is_row_layout() ? box.computed_values().height() : box.computed_values().width();
  240. if (cross_value.is_length())
  241. return cross_value.length().to_px(box);
  242. return cross_value.resolved(box, CSS::Length::make_px(specified_cross_size(flex_container()))).to_px(box);
  243. }
  244. float FlexFormattingContext::resolved_definite_main_size(Box const& box) const
  245. {
  246. if (is_row_layout())
  247. VERIFY(box.has_definite_width());
  248. else
  249. VERIFY(box.has_definite_height());
  250. auto const& cross_value = is_row_layout() ? box.computed_values().width() : box.computed_values().height();
  251. if (cross_value.is_length())
  252. return cross_value.length().to_px(box);
  253. return cross_value.resolved(box, CSS::Length::make_px(specified_main_size(flex_container()))).to_px(box);
  254. }
  255. bool FlexFormattingContext::has_main_min_size(Box const& box) const
  256. {
  257. auto value = is_row_layout() ? box.computed_values().min_width() : box.computed_values().min_height();
  258. return !is_undefined_or_auto(value);
  259. }
  260. bool FlexFormattingContext::has_cross_min_size(Box const& box) const
  261. {
  262. auto value = is_row_layout() ? box.computed_values().min_height() : box.computed_values().min_width();
  263. return !is_undefined_or_auto(value);
  264. }
  265. bool FlexFormattingContext::has_definite_cross_size(Box const& box) const
  266. {
  267. return is_row_layout() ? box.has_definite_height() : box.has_definite_width();
  268. }
  269. float FlexFormattingContext::specified_main_size_of_child_box(Box const& child_box) const
  270. {
  271. auto main_size_of_parent = specified_main_size(flex_container());
  272. auto& value = is_row_layout() ? child_box.computed_values().width() : child_box.computed_values().height();
  273. return value.resolved(child_box, CSS::Length::make_px(main_size_of_parent)).to_px(child_box);
  274. }
  275. float FlexFormattingContext::specified_main_min_size(Box const& box) const
  276. {
  277. return is_row_layout()
  278. ? get_pixel_size(m_state, box, box.computed_values().min_width())
  279. : get_pixel_size(m_state, box, box.computed_values().min_height());
  280. }
  281. float FlexFormattingContext::specified_cross_min_size(Box const& box) const
  282. {
  283. return is_row_layout()
  284. ? get_pixel_size(m_state, box, box.computed_values().min_height())
  285. : get_pixel_size(m_state, box, box.computed_values().min_width());
  286. }
  287. bool FlexFormattingContext::has_main_max_size(Box const& box) const
  288. {
  289. return is_row_layout()
  290. ? !is_undefined_or_auto(box.computed_values().max_width())
  291. : !is_undefined_or_auto(box.computed_values().max_height());
  292. }
  293. bool FlexFormattingContext::has_cross_max_size(Box const& box) const
  294. {
  295. return is_row_layout()
  296. ? !is_undefined_or_auto(box.computed_values().max_height())
  297. : !is_undefined_or_auto(box.computed_values().max_width());
  298. }
  299. float FlexFormattingContext::specified_main_max_size(Box const& box) const
  300. {
  301. return is_row_layout()
  302. ? get_pixel_size(m_state, box, box.computed_values().max_width())
  303. : get_pixel_size(m_state, box, box.computed_values().max_height());
  304. }
  305. float FlexFormattingContext::specified_cross_max_size(Box const& box) const
  306. {
  307. return is_row_layout()
  308. ? get_pixel_size(m_state, box, box.computed_values().max_height())
  309. : get_pixel_size(m_state, box, box.computed_values().max_width());
  310. }
  311. float FlexFormattingContext::calculated_main_size(Box const& box) const
  312. {
  313. auto const& box_state = m_state.get(box);
  314. return is_row_layout() ? box_state.content_width : box_state.content_height;
  315. }
  316. bool FlexFormattingContext::is_cross_auto(Box const& box) const
  317. {
  318. auto& cross_length = is_row_layout() ? box.computed_values().height() : box.computed_values().width();
  319. return cross_length.is_auto();
  320. }
  321. bool FlexFormattingContext::is_main_axis_margin_first_auto(Box const& box) const
  322. {
  323. if (is_row_layout())
  324. return box.computed_values().margin().left.is_length() && box.computed_values().margin().left.length().is_auto();
  325. return box.computed_values().margin().top.is_length() && box.computed_values().margin().top.length().is_auto();
  326. }
  327. bool FlexFormattingContext::is_main_axis_margin_second_auto(Box const& box) const
  328. {
  329. if (is_row_layout())
  330. return box.computed_values().margin().right.is_length() && box.computed_values().margin().right.length().is_auto();
  331. return box.computed_values().margin().bottom.is_length() && box.computed_values().margin().bottom.length().is_auto();
  332. }
  333. void FlexFormattingContext::set_main_size(Box const& box, float size)
  334. {
  335. if (is_row_layout())
  336. m_state.get_mutable(box).content_width = size;
  337. else
  338. m_state.get_mutable(box).content_height = size;
  339. }
  340. void FlexFormattingContext::set_cross_size(Box const& box, float size)
  341. {
  342. if (is_row_layout())
  343. m_state.get_mutable(box).content_height = size;
  344. else
  345. m_state.get_mutable(box).content_width = size;
  346. }
  347. void FlexFormattingContext::set_offset(Box const& box, float main_offset, float cross_offset)
  348. {
  349. if (is_row_layout())
  350. m_state.get_mutable(box).offset = Gfx::FloatPoint { main_offset, cross_offset };
  351. else
  352. m_state.get_mutable(box).offset = Gfx::FloatPoint { cross_offset, main_offset };
  353. }
  354. void FlexFormattingContext::set_main_axis_first_margin(FlexItem& item, float margin)
  355. {
  356. item.margins.main_before = margin;
  357. if (is_row_layout())
  358. m_state.get_mutable(item.box).margin_left = margin;
  359. else
  360. m_state.get_mutable(item.box).margin_top = margin;
  361. }
  362. void FlexFormattingContext::set_main_axis_second_margin(FlexItem& item, float margin)
  363. {
  364. item.margins.main_after = margin;
  365. if (is_row_layout())
  366. m_state.get_mutable(item.box).margin_right = margin;
  367. else
  368. m_state.get_mutable(item.box).margin_bottom = margin;
  369. }
  370. float FlexFormattingContext::sum_of_margin_padding_border_in_main_axis(Box const& box) const
  371. {
  372. auto const& box_state = m_state.get(box);
  373. if (is_row_layout()) {
  374. return box_state.margin_left + box_state.margin_right
  375. + box_state.padding_left + box_state.padding_right
  376. + box_state.border_left + box_state.border_right;
  377. } else {
  378. return box_state.margin_top + box_state.margin_bottom
  379. + box_state.padding_top + box_state.padding_bottom
  380. + box_state.border_top + box_state.border_bottom;
  381. }
  382. }
  383. // https://www.w3.org/TR/css-flexbox-1/#algo-available
  384. void FlexFormattingContext::determine_available_main_and_cross_space(bool& main_is_constrained, bool& cross_is_constrained, float& main_min_size, float& main_max_size, float& cross_min_size, float& cross_max_size)
  385. {
  386. auto containing_block_effective_main_size = [&](Box const& box) -> Optional<float> {
  387. auto& containing_block = *box.containing_block();
  388. if (has_definite_main_size(containing_block))
  389. return resolved_definite_main_size(containing_block);
  390. return {};
  391. };
  392. Optional<float> main_available_space;
  393. main_is_constrained = false;
  394. // For each dimension,
  395. // if that dimension of the flex container’s content box is a definite size, use that;
  396. // if that dimension of the flex container is being sized under a min or max-content constraint, the available space in that dimension is that constraint;
  397. // otherwise, subtract the flex container’s margin, border, and padding from the space available to the flex container in that dimension and use that value. (This might result in an infinite value.)
  398. if (has_definite_main_size(flex_container())) {
  399. main_is_constrained = true;
  400. main_available_space = specified_main_size(flex_container());
  401. } else {
  402. if (has_main_max_size(flex_container())) {
  403. main_max_size = specified_main_max_size(flex_container());
  404. main_available_space = main_max_size;
  405. main_is_constrained = true;
  406. }
  407. if (has_main_min_size(flex_container())) {
  408. main_min_size = specified_main_min_size(flex_container());
  409. main_is_constrained = true;
  410. }
  411. if (!main_is_constrained) {
  412. auto available_main_size = containing_block_effective_main_size(flex_container());
  413. main_available_space = available_main_size.value_or(NumericLimits<float>::max()) - sum_of_margin_padding_border_in_main_axis(flex_container());
  414. if (flex_container().computed_values().flex_wrap() == CSS::FlexWrap::Wrap || flex_container().computed_values().flex_wrap() == CSS::FlexWrap::WrapReverse) {
  415. main_available_space = specified_main_size(*flex_container().containing_block());
  416. main_is_constrained = true;
  417. }
  418. }
  419. }
  420. Optional<float> cross_available_space;
  421. cross_is_constrained = false;
  422. if (has_definite_cross_size(flex_container())) {
  423. cross_available_space = specified_cross_size(flex_container());
  424. } else {
  425. if (has_cross_max_size(flex_container())) {
  426. cross_max_size = specified_cross_max_size(flex_container());
  427. cross_is_constrained = true;
  428. }
  429. if (has_cross_min_size(flex_container())) {
  430. cross_min_size = specified_cross_min_size(flex_container());
  431. cross_is_constrained = true;
  432. }
  433. // FIXME: Is this right? Probably not.
  434. if (!cross_is_constrained)
  435. cross_available_space = cross_max_size;
  436. }
  437. m_available_space = AvailableSpace { .main = main_available_space, .cross = cross_available_space };
  438. }
  439. float FlexFormattingContext::calculate_indefinite_main_size(FlexItem const& item)
  440. {
  441. VERIFY(!has_definite_main_size(item.box));
  442. if (has_definite_cross_size(item.box))
  443. return calculate_max_content_main_size(item);
  444. // Item has indefinite cross size, layout with "fit-content"
  445. // If we're in a row layout and looking for the width, just use the fit-content width.
  446. if (is_row_layout())
  447. return calculate_fit_content_width(item.box, m_available_space->main);
  448. // We're in a column layout, looking for the height. Figure out the fit-content width,
  449. // then layout with that and see what height comes out of it.
  450. float fit_content_cross_size = calculate_fit_content_width(item.box, m_available_space->cross);
  451. FormattingState throwaway_state(&m_state);
  452. auto& box_state = throwaway_state.get_mutable(item.box);
  453. // Item has definite cross size, layout with that as the used cross size.
  454. auto independent_formatting_context = create_independent_formatting_context_if_needed(throwaway_state, item.box);
  455. // NOTE: Flex items should always create an independent formatting context!
  456. VERIFY(independent_formatting_context);
  457. box_state.content_width = fit_content_cross_size;
  458. independent_formatting_context->run(item.box, LayoutMode::Normal);
  459. return BlockFormattingContext::compute_theoretical_height(throwaway_state, item.box);
  460. }
  461. // https://drafts.csswg.org/css-flexbox-1/#propdef-flex-basis
  462. CSS::FlexBasisData FlexFormattingContext::used_flex_basis_for_item(FlexItem const& item) const
  463. {
  464. auto flex_basis = item.box.computed_values().flex_basis();
  465. if (flex_basis.type == CSS::FlexBasis::Auto) {
  466. // https://drafts.csswg.org/css-flexbox-1/#valdef-flex-basis-auto
  467. // When specified on a flex item, the auto keyword retrieves the value of the main size property as the used flex-basis.
  468. // If that value is itself auto, then the used value is content.
  469. auto const& main_size = is_row_layout() ? item.box.computed_values().width() : item.box.computed_values().height();
  470. if (main_size.is_auto()) {
  471. flex_basis.type = CSS::FlexBasis::Content;
  472. } else {
  473. flex_basis.type = CSS::FlexBasis::LengthPercentage;
  474. flex_basis.length_percentage = main_size;
  475. }
  476. }
  477. return flex_basis;
  478. }
  479. // https://www.w3.org/TR/css-flexbox-1/#algo-main-item
  480. void FlexFormattingContext::determine_flex_base_size_and_hypothetical_main_size(FlexItem& flex_item)
  481. {
  482. auto& child_box = flex_item.box;
  483. flex_item.flex_base_size = [&] {
  484. auto used_flex_basis = used_flex_basis_for_item(flex_item);
  485. // A. If the item has a definite used flex basis, that’s the flex base size.
  486. if (used_flex_basis.is_definite()) {
  487. return get_pixel_size(m_state, child_box, used_flex_basis.length_percentage.value());
  488. }
  489. // B. If the flex item has ...
  490. // - an intrinsic aspect ratio,
  491. // - a used flex basis of content, and
  492. // - a definite cross size,
  493. if (flex_item.box.has_intrinsic_aspect_ratio()
  494. && used_flex_basis.type == CSS::FlexBasis::Content
  495. && has_definite_cross_size(flex_item.box)) {
  496. // flex_base_size is calculated from definite cross size and intrinsic aspect ratio
  497. return resolved_definite_cross_size(flex_item.box) * flex_item.box.intrinsic_aspect_ratio().value();
  498. }
  499. // C. If the used flex basis is content or depends on its available space,
  500. // and the flex container is being sized under a min-content or max-content constraint
  501. // (e.g. when performing automatic table layout [CSS21]), size the item under that constraint.
  502. // The flex base size is the item’s resulting main size.
  503. auto flex_container_main_size_constraint = is_row_layout() ? m_flex_container_state.width_constraint : m_flex_container_state.height_constraint;
  504. if (used_flex_basis.type == CSS::FlexBasis::Content && flex_container_main_size_constraint != SizeConstraint::None) {
  505. if (flex_container_main_size_constraint == SizeConstraint::MinContent)
  506. return calculate_min_content_main_size(flex_item);
  507. return calculate_max_content_main_size(flex_item);
  508. }
  509. // D. Otherwise, if the used flex basis is content or depends on its available space,
  510. // the available main size is infinite, and the flex item’s inline axis is parallel to the main axis,
  511. // lay the item out using the rules for a box in an orthogonal flow [CSS3-WRITING-MODES].
  512. // The flex base size is the item’s max-content main size.
  513. if (used_flex_basis.type == CSS::FlexBasis::Content
  514. // FIXME: && main_size is infinite && inline axis is parallel to the main axis
  515. && false && false) {
  516. TODO();
  517. // Use rules for a flex_container in orthogonal flow
  518. }
  519. // E. Otherwise, size the item into the available space using its used flex basis in place of its main size,
  520. // treating a value of content as max-content. If a cross size is needed to determine the main size
  521. // (e.g. when the flex item’s main size is in its block axis) and the flex item’s cross size is auto and not definite,
  522. // in this calculation use fit-content as the flex item’s cross size.
  523. // The flex base size is the item’s resulting main size.
  524. // FIXME: This is probably too naive.
  525. // FIXME: Care about FlexBasis::Auto
  526. if (has_definite_main_size(child_box))
  527. return specified_main_size_of_child_box(child_box);
  528. // NOTE: To avoid repeated layout work, we keep a cache of flex item main sizes on the
  529. // root FormattingState object. It's available through a full layout cycle.
  530. // FIXME: Make sure this cache isn't overly permissive..
  531. auto& size_cache = m_state.m_root.flex_item_size_cache;
  532. auto it = size_cache.find(&flex_item.box);
  533. if (it != size_cache.end())
  534. return it->value;
  535. auto main_size = calculate_indefinite_main_size(flex_item);
  536. size_cache.set(&flex_item.box, main_size);
  537. return main_size;
  538. }();
  539. // The hypothetical main size is the item’s flex base size clamped according to its used min and max main sizes (and flooring the content box size at zero).
  540. auto clamp_min = has_main_min_size(child_box) ? specified_main_min_size(child_box) : automatic_minimum_size(flex_item);
  541. auto clamp_max = has_main_max_size(child_box) ? specified_main_max_size(child_box) : NumericLimits<float>::max();
  542. flex_item.hypothetical_main_size = css_clamp(flex_item.flex_base_size, clamp_min, clamp_max);
  543. }
  544. // https://drafts.csswg.org/css-flexbox-1/#min-size-auto
  545. float FlexFormattingContext::automatic_minimum_size(FlexItem const& item) const
  546. {
  547. // FIXME: Deal with scroll containers.
  548. return content_based_minimum_size(item);
  549. }
  550. // https://drafts.csswg.org/css-flexbox-1/#specified-size-suggestion
  551. Optional<float> FlexFormattingContext::specified_size_suggestion(FlexItem const& item) const
  552. {
  553. // If the item’s preferred main size is definite and not automatic,
  554. // then the specified size suggestion is that size. It is otherwise undefined.
  555. if (has_definite_main_size(item.box))
  556. return specified_main_size(item.box);
  557. return {};
  558. }
  559. // https://drafts.csswg.org/css-flexbox-1/#content-size-suggestion
  560. float FlexFormattingContext::content_size_suggestion(FlexItem const& item) const
  561. {
  562. // FIXME: Apply clamps
  563. return calculate_min_content_main_size(item);
  564. }
  565. // https://drafts.csswg.org/css-flexbox-1/#transferred-size-suggestion
  566. Optional<float> FlexFormattingContext::transferred_size_suggestion(FlexItem const& item) const
  567. {
  568. // If the item has a preferred aspect ratio and its preferred cross size is definite,
  569. // then the transferred size suggestion is that size
  570. // (clamped by its minimum and maximum cross sizes if they are definite), converted through the aspect ratio.
  571. if (item.box.has_intrinsic_aspect_ratio() && has_definite_cross_size(item.box)) {
  572. auto aspect_ratio = item.box.intrinsic_aspect_ratio().value();
  573. // FIXME: Clamp cross size to min/max cross size before this conversion.
  574. return resolved_definite_cross_size(item.box) * aspect_ratio;
  575. }
  576. // It is otherwise undefined.
  577. return {};
  578. }
  579. // https://drafts.csswg.org/css-flexbox-1/#content-based-minimum-size
  580. float FlexFormattingContext::content_based_minimum_size(FlexItem const& item) const
  581. {
  582. auto unclamped_size = [&] {
  583. // The content-based minimum size of a flex item is the smaller of its specified size suggestion
  584. // and its content size suggestion if its specified size suggestion exists;
  585. if (auto specified_size_suggestion = this->specified_size_suggestion(item); specified_size_suggestion.has_value()) {
  586. return min(specified_size_suggestion.value(), content_size_suggestion(item));
  587. }
  588. // otherwise, the smaller of its transferred size suggestion and its content size suggestion
  589. // if the element is replaced and its transferred size suggestion exists;
  590. if (item.box.is_replaced_box()) {
  591. if (auto transferred_size_suggestion = this->transferred_size_suggestion(item); transferred_size_suggestion.has_value()) {
  592. return min(transferred_size_suggestion.value(), content_size_suggestion(item));
  593. }
  594. }
  595. // otherwise its content size suggestion.
  596. return content_size_suggestion(item);
  597. }();
  598. // In all cases, the size is clamped by the maximum main size if it’s definite.
  599. if (has_main_max_size(item.box)) {
  600. return min(unclamped_size, specified_main_max_size(item.box));
  601. }
  602. return unclamped_size;
  603. }
  604. // https://www.w3.org/TR/css-flexbox-1/#algo-main-container
  605. void FlexFormattingContext::determine_main_size_of_flex_container(bool const main_is_constrained, float const main_min_size, float const main_max_size)
  606. {
  607. // FIXME: This function should make use of our ability to calculate the flex container's
  608. // intrinsic max-content sizes.
  609. if (!main_is_constrained || !m_available_space->main.has_value()) {
  610. // Uses https://www.w3.org/TR/css-flexbox-1/#intrinsic-main-sizes
  611. // 9.9.1
  612. // 1.
  613. float largest_max_content_flex_fraction = 0;
  614. for (auto& flex_item : m_flex_items) {
  615. // FIXME: This needs some serious work.
  616. float max_content_contribution = calculated_main_size(flex_item.box);
  617. float max_content_flex_fraction = max_content_contribution - (flex_item.flex_base_size + flex_item.margins.main_before + flex_item.margins.main_after + flex_item.borders.main_before + flex_item.borders.main_after + flex_item.padding.main_before + flex_item.padding.main_after);
  618. if (max_content_flex_fraction > 0) {
  619. max_content_flex_fraction /= max(flex_item.box.computed_values().flex_grow(), 1.0f);
  620. } else {
  621. max_content_flex_fraction /= flex_item.scaled_flex_shrink_factor;
  622. }
  623. flex_item.max_content_flex_fraction = max_content_flex_fraction;
  624. if (max_content_flex_fraction > largest_max_content_flex_fraction)
  625. largest_max_content_flex_fraction = max_content_flex_fraction;
  626. }
  627. // 2. Omitted
  628. // 3.
  629. float result = 0;
  630. for (auto& flex_item : m_flex_items) {
  631. auto product = 0;
  632. if (flex_item.max_content_flex_fraction > 0) {
  633. product = largest_max_content_flex_fraction * flex_item.box.computed_values().flex_grow();
  634. } else {
  635. product = largest_max_content_flex_fraction * flex_item.scaled_flex_shrink_factor;
  636. }
  637. result += flex_item.flex_base_size + flex_item.margins.main_before + flex_item.margins.main_after + flex_item.borders.main_before + flex_item.borders.main_after + flex_item.padding.main_before + flex_item.padding.main_after + product;
  638. }
  639. m_available_space->main = css_clamp(result, main_min_size, main_max_size);
  640. }
  641. set_main_size(flex_container(), m_available_space->main.value_or(NumericLimits<float>::max()));
  642. }
  643. // https://www.w3.org/TR/css-flexbox-1/#algo-line-break
  644. void FlexFormattingContext::collect_flex_items_into_flex_lines()
  645. {
  646. // FIXME: Also support wrap-reverse
  647. // If the flex container is single-line, collect all the flex items into a single flex line.
  648. if (is_single_line()) {
  649. FlexLine line;
  650. for (auto& flex_item : m_flex_items) {
  651. line.items.append(&flex_item);
  652. }
  653. m_flex_lines.append(move(line));
  654. return;
  655. }
  656. // Otherwise, starting from the first uncollected item, collect consecutive items one by one
  657. // until the first time that the next collected item would not fit into the flex container’s inner main size
  658. // (or until a forced break is encountered, see §10 Fragmenting Flex Layout).
  659. // If the very first uncollected item wouldn't fit, collect just it into the line.
  660. // For this step, the size of a flex item is its outer hypothetical main size. (Note: This can be negative.)
  661. // Repeat until all flex items have been collected into flex lines.
  662. FlexLine line;
  663. float line_main_size = 0;
  664. for (auto& flex_item : m_flex_items) {
  665. auto outer_hypothetical_main_size = flex_item.hypothetical_main_size + flex_item.margins.main_before + flex_item.margins.main_after + flex_item.borders.main_before + flex_item.borders.main_after + flex_item.padding.main_before + flex_item.padding.main_after;
  666. if ((line_main_size + outer_hypothetical_main_size) > m_available_space->main.value_or(NumericLimits<float>::max())) {
  667. m_flex_lines.append(move(line));
  668. line = {};
  669. line_main_size = 0;
  670. }
  671. line.items.append(&flex_item);
  672. line_main_size += outer_hypothetical_main_size;
  673. }
  674. m_flex_lines.append(move(line));
  675. }
  676. // https://www.w3.org/TR/css-flexbox-1/#resolve-flexible-lengths
  677. void FlexFormattingContext::resolve_flexible_lengths()
  678. {
  679. enum FlexFactor {
  680. FlexGrowFactor,
  681. FlexShrinkFactor
  682. };
  683. FlexFactor used_flex_factor;
  684. // 6.1. Determine used flex factor
  685. for (auto& flex_line : m_flex_lines) {
  686. size_t number_of_unfrozen_items_on_line = flex_line.items.size();
  687. float sum_of_hypothetical_main_sizes = 0;
  688. for (auto& flex_item : flex_line.items) {
  689. sum_of_hypothetical_main_sizes += (flex_item->hypothetical_main_size + flex_item->margins.main_before + flex_item->margins.main_after + flex_item->borders.main_before + flex_item->borders.main_after + flex_item->padding.main_before + flex_item->padding.main_after);
  690. }
  691. if (sum_of_hypothetical_main_sizes < m_available_space->main.value_or(NumericLimits<float>::max()))
  692. used_flex_factor = FlexFactor::FlexGrowFactor;
  693. else
  694. used_flex_factor = FlexFactor::FlexShrinkFactor;
  695. for (auto& flex_item : flex_line.items) {
  696. if (used_flex_factor == FlexFactor::FlexGrowFactor)
  697. flex_item->flex_factor = flex_item->box.computed_values().flex_grow();
  698. else if (used_flex_factor == FlexFactor::FlexShrinkFactor)
  699. flex_item->flex_factor = flex_item->box.computed_values().flex_shrink();
  700. }
  701. // 6.2. Size inflexible items
  702. auto freeze_item_setting_target_main_size_to_hypothetical_main_size = [&number_of_unfrozen_items_on_line](FlexItem& item) {
  703. item.target_main_size = item.hypothetical_main_size;
  704. number_of_unfrozen_items_on_line--;
  705. item.frozen = true;
  706. };
  707. for (auto& flex_item : flex_line.items) {
  708. if (flex_item->flex_factor.has_value() && flex_item->flex_factor.value() == 0) {
  709. freeze_item_setting_target_main_size_to_hypothetical_main_size(*flex_item);
  710. } else if (used_flex_factor == FlexFactor::FlexGrowFactor) {
  711. // FIXME: Spec doesn't include the == case, but we take a too basic approach to calculating the values used so this is appropriate
  712. if (flex_item->flex_base_size > flex_item->hypothetical_main_size) {
  713. freeze_item_setting_target_main_size_to_hypothetical_main_size(*flex_item);
  714. }
  715. } else if (used_flex_factor == FlexFactor::FlexShrinkFactor) {
  716. if (flex_item->flex_base_size < flex_item->hypothetical_main_size) {
  717. freeze_item_setting_target_main_size_to_hypothetical_main_size(*flex_item);
  718. }
  719. }
  720. }
  721. // 6.3. Calculate initial free space
  722. auto calculate_free_space = [&]() {
  723. float sum_of_items_on_line = 0;
  724. for (auto& flex_item : flex_line.items) {
  725. if (flex_item->frozen)
  726. sum_of_items_on_line += flex_item->target_main_size + flex_item->margins.main_before + flex_item->margins.main_after + flex_item->borders.main_before + flex_item->borders.main_after + flex_item->padding.main_before + flex_item->padding.main_after;
  727. else
  728. sum_of_items_on_line += flex_item->flex_base_size + flex_item->margins.main_before + flex_item->margins.main_after + flex_item->borders.main_before + flex_item->borders.main_after + flex_item->padding.main_before + flex_item->padding.main_after;
  729. }
  730. return specified_main_size(flex_container()) - sum_of_items_on_line;
  731. };
  732. float initial_free_space = calculate_free_space();
  733. flex_line.remaining_free_space = initial_free_space;
  734. // 6.4 Loop
  735. auto for_each_unfrozen_item = [&flex_line](auto callback) {
  736. for (auto& flex_item : flex_line.items) {
  737. if (!flex_item->frozen)
  738. callback(flex_item);
  739. }
  740. };
  741. while (number_of_unfrozen_items_on_line > 0) {
  742. // b Calculate the remaining free space
  743. flex_line.remaining_free_space = calculate_free_space();
  744. float sum_of_unfrozen_flex_items_flex_factors = 0;
  745. for_each_unfrozen_item([&](FlexItem* item) {
  746. sum_of_unfrozen_flex_items_flex_factors += item->flex_factor.value_or(1);
  747. });
  748. if (sum_of_unfrozen_flex_items_flex_factors < 1) {
  749. auto intermediate_free_space = initial_free_space * sum_of_unfrozen_flex_items_flex_factors;
  750. if (AK::abs(intermediate_free_space) < AK::abs(flex_line.remaining_free_space))
  751. flex_line.remaining_free_space = intermediate_free_space;
  752. }
  753. // c Distribute free space proportional to the flex factors
  754. if (flex_line.remaining_free_space != 0) {
  755. if (used_flex_factor == FlexFactor::FlexGrowFactor) {
  756. float sum_of_flex_grow_factor_of_unfrozen_items = sum_of_unfrozen_flex_items_flex_factors;
  757. for_each_unfrozen_item([&](FlexItem* flex_item) {
  758. float ratio = flex_item->flex_factor.value_or(1) / sum_of_flex_grow_factor_of_unfrozen_items;
  759. flex_item->target_main_size = flex_item->flex_base_size + (flex_line.remaining_free_space * ratio);
  760. });
  761. } else if (used_flex_factor == FlexFactor::FlexShrinkFactor) {
  762. float sum_of_scaled_flex_shrink_factor_of_unfrozen_items = 0;
  763. for_each_unfrozen_item([&](FlexItem* flex_item) {
  764. flex_item->scaled_flex_shrink_factor = flex_item->flex_factor.value_or(1) * flex_item->flex_base_size;
  765. sum_of_scaled_flex_shrink_factor_of_unfrozen_items += flex_item->scaled_flex_shrink_factor;
  766. });
  767. for_each_unfrozen_item([&](FlexItem* flex_item) {
  768. float ratio = 1.0f;
  769. if (sum_of_scaled_flex_shrink_factor_of_unfrozen_items != 0.0f)
  770. ratio = flex_item->scaled_flex_shrink_factor / sum_of_scaled_flex_shrink_factor_of_unfrozen_items;
  771. flex_item->target_main_size = flex_item->flex_base_size - (AK::abs(flex_line.remaining_free_space) * ratio);
  772. });
  773. }
  774. } else {
  775. // This isn't spec but makes sense.
  776. for_each_unfrozen_item([&](FlexItem* flex_item) {
  777. flex_item->target_main_size = flex_item->flex_base_size;
  778. });
  779. }
  780. // d Fix min/max violations.
  781. float adjustments = 0.0f;
  782. for_each_unfrozen_item([&](FlexItem* item) {
  783. auto min_main = has_main_min_size(item->box)
  784. ? specified_main_min_size(item->box)
  785. : automatic_minimum_size(*item);
  786. auto max_main = has_main_max_size(item->box)
  787. ? specified_main_max_size(item->box)
  788. : NumericLimits<float>::max();
  789. float original_target_size = item->target_main_size;
  790. if (item->target_main_size < min_main) {
  791. item->target_main_size = min_main;
  792. item->is_min_violation = true;
  793. }
  794. if (item->target_main_size > max_main) {
  795. item->target_main_size = max_main;
  796. item->is_max_violation = true;
  797. }
  798. float delta = item->target_main_size - original_target_size;
  799. adjustments += delta;
  800. });
  801. // e Freeze over-flexed items
  802. float total_violation = adjustments;
  803. if (total_violation == 0) {
  804. for_each_unfrozen_item([&](FlexItem* item) {
  805. --number_of_unfrozen_items_on_line;
  806. item->frozen = true;
  807. });
  808. } else if (total_violation > 0) {
  809. for_each_unfrozen_item([&](FlexItem* item) {
  810. if (item->is_min_violation) {
  811. --number_of_unfrozen_items_on_line;
  812. item->frozen = true;
  813. }
  814. });
  815. } else if (total_violation < 0) {
  816. for_each_unfrozen_item([&](FlexItem* item) {
  817. if (item->is_max_violation) {
  818. --number_of_unfrozen_items_on_line;
  819. item->frozen = true;
  820. }
  821. });
  822. }
  823. }
  824. // 6.5.
  825. for (auto& flex_item : flex_line.items) {
  826. flex_item->main_size = flex_item->target_main_size;
  827. }
  828. }
  829. }
  830. // https://drafts.csswg.org/css-flexbox-1/#algo-cross-item
  831. void FlexFormattingContext::determine_hypothetical_cross_size_of_item(FlexItem& item)
  832. {
  833. // Determine the hypothetical cross size of each item by performing layout
  834. // as if it were an in-flow block-level box with the used main size
  835. // and the given available space, treating auto as fit-content.
  836. // If we have a definite cross size, this is easy! No need to perform layout, we can just use it as-is.
  837. if (has_definite_cross_size(item.box)) {
  838. auto clamp_min = has_cross_min_size(item.box) ? specified_cross_min_size(item.box) : 0;
  839. auto clamp_max = has_cross_max_size(item.box) ? specified_cross_max_size(item.box) : NumericLimits<float>::max();
  840. item.hypothetical_cross_size = css_clamp(resolved_definite_cross_size(item.box), clamp_min, clamp_max);
  841. return;
  842. }
  843. if (has_definite_main_size(item.box)) {
  844. // For indefinite cross sizes, we perform a throwaway layout and then measure it.
  845. FormattingState throwaway_state(&m_state);
  846. auto& box_state = throwaway_state.get_mutable(item.box);
  847. // Item has definite main size, layout with that as the used main size.
  848. auto independent_formatting_context = create_independent_formatting_context_if_needed(throwaway_state, item.box);
  849. // NOTE: Flex items should always create an independent formatting context!
  850. VERIFY(independent_formatting_context);
  851. if (is_row_layout()) {
  852. box_state.content_width = resolved_definite_main_size(item.box);
  853. } else {
  854. box_state.content_height = resolved_definite_main_size(item.box);
  855. }
  856. independent_formatting_context->run(item.box, LayoutMode::Normal);
  857. if (is_row_layout())
  858. item.hypothetical_cross_size = BlockFormattingContext::compute_theoretical_height(throwaway_state, item.box);
  859. else
  860. item.hypothetical_cross_size = box_state.content_width;
  861. } else {
  862. // Item has indefinite main size, layout with "fit-content"
  863. // If we're in a column layout and looking for the width, just use the fit-content width.
  864. if (!is_row_layout()) {
  865. item.hypothetical_cross_size = calculate_fit_content_width(item.box, m_available_space->cross);
  866. return;
  867. }
  868. // We're in a row layout, looking for the height. Figure out the fit-content width,
  869. // then layout with that and see what height comes out of it.
  870. float fit_content_main_size = calculate_fit_content_width(item.box, m_available_space->main);
  871. FormattingState throwaway_state(&m_state);
  872. auto& box_state = throwaway_state.get_mutable(item.box);
  873. auto independent_formatting_context = create_independent_formatting_context_if_needed(throwaway_state, item.box);
  874. // NOTE: Flex items should always create an independent formatting context!
  875. VERIFY(independent_formatting_context);
  876. box_state.content_width = fit_content_main_size;
  877. independent_formatting_context->run(item.box, LayoutMode::Normal);
  878. item.hypothetical_cross_size = BlockFormattingContext::compute_theoretical_height(throwaway_state, item.box);
  879. }
  880. }
  881. // https://www.w3.org/TR/css-flexbox-1/#algo-cross-line
  882. void FlexFormattingContext::calculate_cross_size_of_each_flex_line(float const cross_min_size, float const cross_max_size)
  883. {
  884. // If the flex container is single-line and has a definite cross size, the cross size of the flex line is the flex container’s inner cross size.
  885. if (is_single_line() && has_definite_cross_size(flex_container())) {
  886. m_flex_lines[0].cross_size = specified_cross_size(flex_container());
  887. return;
  888. }
  889. // Otherwise, for each flex line:
  890. for (auto& flex_line : m_flex_lines) {
  891. // FIXME: 1. Collect all the flex items whose inline-axis is parallel to the main-axis, whose align-self is baseline,
  892. // and whose cross-axis margins are both non-auto. Find the largest of the distances between each item’s baseline
  893. // and its hypothetical outer cross-start edge, and the largest of the distances between each item’s baseline
  894. // and its hypothetical outer cross-end edge, and sum these two values.
  895. // FIXME: This isn't spec but makes sense here
  896. if (has_definite_cross_size(flex_container()) && flex_container().computed_values().align_items() == CSS::AlignItems::Stretch) {
  897. flex_line.cross_size = specified_cross_size(flex_container()) / m_flex_lines.size();
  898. continue;
  899. }
  900. // 2. Among all the items not collected by the previous step, find the largest outer hypothetical cross size.
  901. float largest_hypothetical_cross_size = 0;
  902. for (auto& flex_item : flex_line.items) {
  903. if (largest_hypothetical_cross_size < flex_item->hypothetical_cross_size_with_margins())
  904. largest_hypothetical_cross_size = flex_item->hypothetical_cross_size_with_margins();
  905. }
  906. // 3. The used cross-size of the flex line is the largest of the numbers found in the previous two steps and zero.
  907. flex_line.cross_size = max(0.0f, largest_hypothetical_cross_size);
  908. }
  909. // If the flex container is single-line, then clamp the line’s cross-size to be within the container’s computed min and max cross sizes.
  910. // Note that if CSS 2.1’s definition of min/max-width/height applied more generally, this behavior would fall out automatically.
  911. if (is_single_line())
  912. css_clamp(m_flex_lines[0].cross_size, cross_min_size, cross_max_size);
  913. }
  914. // https://www.w3.org/TR/css-flexbox-1/#algo-stretch
  915. void FlexFormattingContext::determine_used_cross_size_of_each_flex_item()
  916. {
  917. for (auto& flex_line : m_flex_lines) {
  918. for (auto& flex_item : flex_line.items) {
  919. // If a flex item has align-self: stretch, its computed cross size property is auto,
  920. // and neither of its cross-axis margins are auto, the used outer cross size is the used cross size of its flex line,
  921. // clamped according to the item’s used min and max cross sizes.
  922. if (alignment_for_item(*flex_item) == CSS::AlignItems::Stretch
  923. && is_cross_auto(flex_item->box)
  924. && !flex_item->margins.cross_before_is_auto
  925. && !flex_item->margins.cross_after_is_auto) {
  926. // FIXME: Clamp to the item's used min and max cross sizes.
  927. flex_item->cross_size = flex_line.cross_size - flex_item->margins.cross_before - flex_item->margins.cross_after;
  928. } else {
  929. // Otherwise, the used cross size is the item’s hypothetical cross size.
  930. flex_item->cross_size = flex_item->hypothetical_cross_size;
  931. }
  932. }
  933. }
  934. }
  935. // https://www.w3.org/TR/css-flexbox-1/#algo-main-align
  936. void FlexFormattingContext::distribute_any_remaining_free_space()
  937. {
  938. for (auto& flex_line : m_flex_lines) {
  939. // 12.1.
  940. float used_main_space = 0;
  941. size_t auto_margins = 0;
  942. for (auto& flex_item : flex_line.items) {
  943. used_main_space += flex_item->main_size;
  944. if (is_main_axis_margin_first_auto(flex_item->box))
  945. ++auto_margins;
  946. if (is_main_axis_margin_second_auto(flex_item->box))
  947. ++auto_margins;
  948. used_main_space += flex_item->margins.main_before + flex_item->margins.main_after
  949. + flex_item->borders.main_before + flex_item->borders.main_after
  950. + flex_item->padding.main_before + flex_item->padding.main_after;
  951. }
  952. if (flex_line.remaining_free_space > 0) {
  953. float size_per_auto_margin = flex_line.remaining_free_space / (float)auto_margins;
  954. for (auto& flex_item : flex_line.items) {
  955. if (is_main_axis_margin_first_auto(flex_item->box))
  956. set_main_axis_first_margin(*flex_item, size_per_auto_margin);
  957. if (is_main_axis_margin_second_auto(flex_item->box))
  958. set_main_axis_second_margin(*flex_item, size_per_auto_margin);
  959. }
  960. } else {
  961. for (auto& flex_item : flex_line.items) {
  962. if (is_main_axis_margin_first_auto(flex_item->box))
  963. set_main_axis_first_margin(*flex_item, 0);
  964. if (is_main_axis_margin_second_auto(flex_item->box))
  965. set_main_axis_second_margin(*flex_item, 0);
  966. }
  967. }
  968. // 12.2.
  969. float space_between_items = 0;
  970. float space_before_first_item = 0;
  971. auto number_of_items = flex_line.items.size();
  972. switch (flex_container().computed_values().justify_content()) {
  973. case CSS::JustifyContent::FlexStart:
  974. if (is_direction_reverse())
  975. space_before_first_item = m_available_space->main.value_or(NumericLimits<float>::max());
  976. else
  977. space_before_first_item = 0;
  978. break;
  979. case CSS::JustifyContent::FlexEnd:
  980. if (is_direction_reverse())
  981. space_before_first_item = 0;
  982. else
  983. space_before_first_item = m_available_space->main.value_or(NumericLimits<float>::max());
  984. break;
  985. case CSS::JustifyContent::Center:
  986. space_before_first_item = (m_available_space->main.value_or(NumericLimits<float>::max()) - used_main_space) / 2.0f;
  987. break;
  988. case CSS::JustifyContent::SpaceBetween:
  989. space_between_items = flex_line.remaining_free_space / (number_of_items - 1);
  990. break;
  991. case CSS::JustifyContent::SpaceAround:
  992. space_between_items = flex_line.remaining_free_space / number_of_items;
  993. space_before_first_item = space_between_items / 2.0f;
  994. break;
  995. }
  996. // FIXME: Support reverse
  997. float main_offset = space_before_first_item;
  998. auto place_item = [&](FlexItem& item) {
  999. auto amount_of_main_size_used = item.main_size
  1000. + item.margins.main_before
  1001. + item.borders.main_before
  1002. + item.padding.main_before
  1003. + item.margins.main_after
  1004. + item.borders.main_after
  1005. + item.padding.main_after
  1006. + space_between_items;
  1007. if (is_direction_reverse()) {
  1008. item.main_offset = main_offset - item.main_size - item.margins.main_after - item.borders.main_after - item.padding.main_after;
  1009. main_offset -= amount_of_main_size_used;
  1010. } else {
  1011. item.main_offset = main_offset + item.margins.main_before + item.borders.main_before + item.padding.main_before;
  1012. main_offset += amount_of_main_size_used;
  1013. }
  1014. };
  1015. if (is_direction_reverse()) {
  1016. for (auto& item : flex_line.items.in_reverse()) {
  1017. place_item(*item);
  1018. }
  1019. } else {
  1020. for (auto& item : flex_line.items) {
  1021. place_item(*item);
  1022. }
  1023. }
  1024. }
  1025. }
  1026. void FlexFormattingContext::dump_items() const
  1027. {
  1028. dbgln("\033[34;1mflex-container\033[0m {}, direction: {}, current-size: {}x{}", flex_container().debug_description(), is_row_layout() ? "row" : "column", m_flex_container_state.content_width, m_flex_container_state.content_height);
  1029. for (size_t i = 0; i < m_flex_lines.size(); ++i) {
  1030. dbgln("{} flex-line #{}:", flex_container().debug_description(), i);
  1031. for (size_t j = 0; j < m_flex_lines[i].items.size(); ++j) {
  1032. auto& item = *m_flex_lines[i].items[j];
  1033. dbgln("{} flex-item #{}: {} (main:{}, cross:{})", flex_container().debug_description(), j, item.box.debug_description(), item.main_size, item.cross_size);
  1034. }
  1035. }
  1036. }
  1037. CSS::AlignItems FlexFormattingContext::alignment_for_item(FlexItem const& item) const
  1038. {
  1039. switch (item.box.computed_values().align_self()) {
  1040. case CSS::AlignSelf::Auto:
  1041. return flex_container().computed_values().align_items();
  1042. case CSS::AlignSelf::Normal:
  1043. return CSS::AlignItems::Normal;
  1044. case CSS::AlignSelf::SelfStart:
  1045. return CSS::AlignItems::SelfStart;
  1046. case CSS::AlignSelf::SelfEnd:
  1047. return CSS::AlignItems::SelfEnd;
  1048. case CSS::AlignSelf::FlexStart:
  1049. return CSS::AlignItems::FlexStart;
  1050. case CSS::AlignSelf::FlexEnd:
  1051. return CSS::AlignItems::FlexEnd;
  1052. case CSS::AlignSelf::Center:
  1053. return CSS::AlignItems::Center;
  1054. case CSS::AlignSelf::Baseline:
  1055. return CSS::AlignItems::Baseline;
  1056. case CSS::AlignSelf::Stretch:
  1057. return CSS::AlignItems::Stretch;
  1058. case CSS::AlignSelf::Safe:
  1059. return CSS::AlignItems::Safe;
  1060. case CSS::AlignSelf::Unsafe:
  1061. return CSS::AlignItems::Unsafe;
  1062. default:
  1063. VERIFY_NOT_REACHED();
  1064. }
  1065. }
  1066. void FlexFormattingContext::align_all_flex_items_along_the_cross_axis()
  1067. {
  1068. // FIXME: Take better care of margins
  1069. float line_cross_offset = 0;
  1070. for (auto& flex_line : m_flex_lines) {
  1071. for (auto* flex_item : flex_line.items) {
  1072. switch (alignment_for_item(*flex_item)) {
  1073. case CSS::AlignItems::Baseline:
  1074. // FIXME: Implement this
  1075. // Fallthrough
  1076. case CSS::AlignItems::FlexStart:
  1077. case CSS::AlignItems::Stretch:
  1078. flex_item->cross_offset = line_cross_offset + flex_item->margins.cross_before + flex_item->borders.cross_before + flex_item->padding.cross_before;
  1079. break;
  1080. case CSS::AlignItems::FlexEnd:
  1081. flex_item->cross_offset = line_cross_offset + flex_line.cross_size - flex_item->cross_size;
  1082. break;
  1083. case CSS::AlignItems::Center:
  1084. flex_item->cross_offset = line_cross_offset + (flex_line.cross_size / 2.0f) - (flex_item->cross_size / 2.0f);
  1085. break;
  1086. default:
  1087. break;
  1088. }
  1089. }
  1090. line_cross_offset += flex_line.cross_size;
  1091. }
  1092. }
  1093. // https://www.w3.org/TR/css-flexbox-1/#algo-cross-container
  1094. void FlexFormattingContext::determine_flex_container_used_cross_size(float const cross_min_size, float const cross_max_size)
  1095. {
  1096. float cross_size = 0;
  1097. if (has_definite_cross_size(flex_container())) {
  1098. // Flex container has definite cross size: easy-peasy.
  1099. cross_size = specified_cross_size(flex_container());
  1100. } else {
  1101. // Flex container has indefinite cross size.
  1102. auto cross_size_value = is_row_layout() ? flex_container().computed_values().height() : flex_container().computed_values().width();
  1103. if (cross_size_value.is_auto() || cross_size_value.is_percentage()) {
  1104. // If a content-based cross size is needed, use the sum of the flex lines' cross sizes.
  1105. float sum_of_flex_lines_cross_sizes = 0;
  1106. for (auto& flex_line : m_flex_lines) {
  1107. sum_of_flex_lines_cross_sizes += flex_line.cross_size;
  1108. }
  1109. cross_size = sum_of_flex_lines_cross_sizes;
  1110. if (cross_size_value.is_percentage()) {
  1111. // FIXME: Handle percentage values here! Right now we're just treating them as "auto"
  1112. }
  1113. } else {
  1114. // Otherwise, resolve the indefinite size at this point.
  1115. cross_size = cross_size_value.resolved(flex_container(), CSS::Length::make_px(specified_cross_size(*flex_container().containing_block()))).to_px(flex_container());
  1116. }
  1117. }
  1118. set_cross_size(flex_container(), css_clamp(cross_size, cross_min_size, cross_max_size));
  1119. }
  1120. // https://www.w3.org/TR/css-flexbox-1/#algo-line-align
  1121. void FlexFormattingContext::align_all_flex_lines()
  1122. {
  1123. // FIXME: Support reverse
  1124. if (is_single_line()) {
  1125. // For single-line flex containers, we only need to center the line along the cross axis.
  1126. auto& flex_line = m_flex_lines[0];
  1127. float cross_size_of_flex_container = specified_cross_size(flex_container());
  1128. for (auto* flex_item : flex_line.items)
  1129. flex_item->cross_offset += (cross_size_of_flex_container / 2.0f) - (flex_line.cross_size / 2.0f);
  1130. } else {
  1131. // FIXME: Support align-content
  1132. }
  1133. }
  1134. void FlexFormattingContext::copy_dimensions_from_flex_items_to_boxes()
  1135. {
  1136. for (auto& flex_item : m_flex_items) {
  1137. auto const& box = flex_item.box;
  1138. auto& box_state = m_state.get_mutable(box);
  1139. box_state.padding_left = box.computed_values().padding().left.resolved(box, CSS::Length::make_px(m_flex_container_state.content_width)).to_px(box);
  1140. box_state.padding_right = box.computed_values().padding().right.resolved(box, CSS::Length::make_px(m_flex_container_state.content_width)).to_px(box);
  1141. box_state.padding_top = box.computed_values().padding().top.resolved(box, CSS::Length::make_px(m_flex_container_state.content_width)).to_px(box);
  1142. box_state.padding_bottom = box.computed_values().padding().bottom.resolved(box, CSS::Length::make_px(m_flex_container_state.content_width)).to_px(box);
  1143. box_state.margin_left = box.computed_values().margin().left.resolved(box, CSS::Length::make_px(m_flex_container_state.content_width)).to_px(box);
  1144. box_state.margin_right = box.computed_values().margin().right.resolved(box, CSS::Length::make_px(m_flex_container_state.content_width)).to_px(box);
  1145. box_state.margin_top = box.computed_values().margin().top.resolved(box, CSS::Length::make_px(m_flex_container_state.content_width)).to_px(box);
  1146. box_state.margin_bottom = box.computed_values().margin().bottom.resolved(box, CSS::Length::make_px(m_flex_container_state.content_width)).to_px(box);
  1147. box_state.border_left = box.computed_values().border_left().width;
  1148. box_state.border_right = box.computed_values().border_right().width;
  1149. box_state.border_top = box.computed_values().border_top().width;
  1150. box_state.border_bottom = box.computed_values().border_bottom().width;
  1151. set_main_size(box, flex_item.main_size);
  1152. set_cross_size(box, flex_item.cross_size);
  1153. set_offset(box, flex_item.main_offset, flex_item.cross_offset);
  1154. }
  1155. }
  1156. // https://drafts.csswg.org/css-flexbox-1/#intrinsic-sizes
  1157. void FlexFormattingContext::determine_intrinsic_size_of_flex_container(LayoutMode layout_mode)
  1158. {
  1159. VERIFY(layout_mode != LayoutMode::Normal);
  1160. float main_size = calculate_intrinsic_main_size_of_flex_container(layout_mode);
  1161. float cross_size = calculate_intrinsic_cross_size_of_flex_container(layout_mode);
  1162. if (is_row_layout()) {
  1163. m_flex_container_state.content_width = main_size;
  1164. m_flex_container_state.content_height = cross_size;
  1165. } else {
  1166. m_flex_container_state.content_height = main_size;
  1167. m_flex_container_state.content_width = cross_size;
  1168. }
  1169. }
  1170. // https://drafts.csswg.org/css-flexbox-1/#intrinsic-main-sizes
  1171. float FlexFormattingContext::calculate_intrinsic_main_size_of_flex_container(LayoutMode layout_mode)
  1172. {
  1173. VERIFY(layout_mode != LayoutMode::Normal);
  1174. // The min-content main size of a single-line flex container is calculated identically to the max-content main size,
  1175. // except that the flex items’ min-content contributions are used instead of their max-content contributions.
  1176. // However, for a multi-line container, it is simply the largest min-content contribution of all the non-collapsed flex items in the flex container.
  1177. if (!is_single_line() && (m_flex_container_state.width_constraint == SizeConstraint::MinContent || m_flex_container_state.height_constraint == SizeConstraint::MinContent)) {
  1178. float largest_contribution = 0;
  1179. for (auto const& flex_item : m_flex_items) {
  1180. // FIXME: Skip collapsed flex items.
  1181. largest_contribution = max(largest_contribution, calculate_main_min_content_contribution(flex_item));
  1182. }
  1183. return largest_contribution;
  1184. }
  1185. // The max-content main size of a flex container is, fundamentally, the smallest size the flex container
  1186. // can take such that when flex layout is run with that container size, each flex item ends up at least
  1187. // as large as its max-content contribution, to the extent allowed by the items’ flexibility.
  1188. // It is calculated, considering only non-collapsed flex items, by:
  1189. // 1. For each flex item, subtract its outer flex base size from its max-content contribution size.
  1190. // If that result is positive, divide by its flex grow factor floored at 1;
  1191. // if negative, divide by its scaled flex shrink factor having floored the flex shrink factor at 1.
  1192. // This is the item’s max-content flex fraction.
  1193. for (auto& flex_item : m_flex_items) {
  1194. float contribution;
  1195. if (m_flex_container_state.width_constraint == SizeConstraint::MinContent || m_flex_container_state.height_constraint == SizeConstraint::MinContent)
  1196. contribution = calculate_main_min_content_contribution(flex_item);
  1197. else
  1198. contribution = calculate_main_max_content_contribution(flex_item);
  1199. float flex_fraction = contribution - (flex_item.flex_base_size + flex_item.margins.main_before + flex_item.margins.main_after + flex_item.borders.main_before + flex_item.borders.main_after + flex_item.padding.main_before + flex_item.padding.main_after);
  1200. if (flex_fraction >= 0)
  1201. flex_fraction /= max(flex_item.box.computed_values().flex_grow(), 1.0f);
  1202. else
  1203. flex_fraction /= max(flex_item.scaled_flex_shrink_factor, 1.0f);
  1204. // FIXME: The name max_content_flex_fraction here is misleading, since we also use this code path for min-content sizing.
  1205. flex_item.max_content_flex_fraction = flex_fraction;
  1206. }
  1207. // 2. Place all flex items into lines of infinite length.
  1208. m_flex_lines.clear();
  1209. if (!m_flex_items.is_empty())
  1210. m_flex_lines.append(FlexLine {});
  1211. for (auto& flex_item : m_flex_items) {
  1212. // FIXME: Honor breaking requests.
  1213. m_flex_lines.last().items.append(&flex_item);
  1214. }
  1215. // 3. Within each line, find the largest max-content flex fraction among all the flex items.
  1216. // Add each item’s flex base size to the product of its flex grow factor
  1217. // (or scaled flex shrink factor, if the chosen max-content flex fraction was negative)
  1218. // and the chosen max-content flex fraction, then clamp that result by the max main size floored by the min main size.
  1219. float largest_sum = 0;
  1220. for (auto& flex_line : m_flex_lines) {
  1221. float largest_flex_fraction = 0;
  1222. for (auto& flex_item : flex_line.items) {
  1223. // FIXME: The name max_content_flex_fraction here is misleading, since we also use this code path for min-content sizing.
  1224. largest_flex_fraction = max(largest_flex_fraction, flex_item->max_content_flex_fraction);
  1225. }
  1226. float sum = 0;
  1227. for (auto& flex_item : flex_line.items) {
  1228. auto product = 0;
  1229. if (flex_item->max_content_flex_fraction >= 0) {
  1230. product = largest_flex_fraction * flex_item->box.computed_values().flex_grow();
  1231. } else {
  1232. product = largest_flex_fraction * flex_item->scaled_flex_shrink_factor;
  1233. }
  1234. sum += flex_item->flex_base_size + flex_item->margins.main_before + flex_item->margins.main_after + flex_item->borders.main_before + flex_item->borders.main_after + flex_item->padding.main_before + flex_item->padding.main_after + product;
  1235. }
  1236. largest_sum = max(largest_sum, sum);
  1237. }
  1238. // 4. The flex container’s max-content size is the largest sum of the afore-calculated sizes of all items within a single line.
  1239. return largest_sum;
  1240. }
  1241. // https://drafts.csswg.org/css-flexbox-1/#intrinsic-cross-sizes
  1242. float FlexFormattingContext::calculate_intrinsic_cross_size_of_flex_container(LayoutMode layout_mode)
  1243. {
  1244. VERIFY(layout_mode != LayoutMode::Normal);
  1245. // The min-content/max-content cross size of a single-line flex container
  1246. // is the largest min-content contribution/max-content contribution (respectively) of its flex items.
  1247. if (is_single_line()) {
  1248. float largest_contribution = 0;
  1249. for (auto& flex_item : m_flex_items) {
  1250. float contribution;
  1251. if (m_flex_container_state.width_constraint == SizeConstraint::MinContent || m_flex_container_state.height_constraint == SizeConstraint::MinContent)
  1252. contribution = calculate_cross_min_content_contribution(flex_item);
  1253. else if (m_flex_container_state.width_constraint == SizeConstraint::MaxContent || m_flex_container_state.height_constraint == SizeConstraint::MaxContent)
  1254. contribution = calculate_cross_max_content_contribution(flex_item);
  1255. largest_contribution = max(largest_contribution, contribution);
  1256. }
  1257. return largest_contribution;
  1258. }
  1259. // For a multi-line flex container, the min-content/max-content cross size is the sum of the flex line cross sizes
  1260. // resulting from sizing the flex container under a cross-axis min-content constraint/max-content constraint (respectively).
  1261. // FIXME: However, if the flex container is flex-flow: column wrap;, then it’s sized by first finding the largest
  1262. // min-content/max-content cross-size contribution among the flex items (respectively), then using that size
  1263. // as the available space in the cross axis for each of the flex items during layout.
  1264. float sum_of_flex_line_cross_sizes = 0;
  1265. for (auto& flex_line : m_flex_lines) {
  1266. sum_of_flex_line_cross_sizes += flex_line.cross_size;
  1267. }
  1268. return sum_of_flex_line_cross_sizes;
  1269. }
  1270. // https://drafts.csswg.org/css-flexbox-1/#intrinsic-item-contributions
  1271. float FlexFormattingContext::calculate_main_min_content_contribution(FlexItem const& item) const
  1272. {
  1273. // The main-size min-content contribution of a flex item is
  1274. // the larger of its outer min-content size and outer preferred size if that is not auto,
  1275. // clamped by its min/max main size.
  1276. auto outer_min_content_size = [&]() -> float {
  1277. auto inner_main_size = calculate_min_content_main_size(item);
  1278. auto outer_main_size = inner_main_size
  1279. + item.margins.main_before + item.margins.main_after
  1280. + item.borders.main_before + item.borders.main_after
  1281. + item.padding.main_before + item.padding.main_after;
  1282. return outer_main_size;
  1283. }();
  1284. if (!has_definite_main_size(item.box)) {
  1285. return outer_min_content_size;
  1286. }
  1287. auto clamp_min = has_main_min_size(item.box) ? specified_main_min_size(item.box) : 0;
  1288. auto clamp_max = has_main_max_size(item.box) ? specified_main_max_size(item.box) : NumericLimits<float>::max();
  1289. auto unclamped_preferred_size = resolved_definite_main_size(item.box);
  1290. auto clamped_preferred_size = css_clamp(unclamped_preferred_size, clamp_min, clamp_max);
  1291. return max(outer_min_content_size, clamped_preferred_size);
  1292. }
  1293. // https://drafts.csswg.org/css-flexbox-1/#intrinsic-item-contributions
  1294. float FlexFormattingContext::calculate_main_max_content_contribution(FlexItem const& item) const
  1295. {
  1296. // The main-size max-content contribution of a flex item is the larger of its outer max-content size and outer preferred size if that is not auto, clamped by its min/max main size.
  1297. auto outer_max_content_size = [&]() -> float {
  1298. auto inner_main_size = calculate_max_content_main_size(item);
  1299. auto outer_main_size = inner_main_size
  1300. + item.margins.main_before + item.margins.main_after
  1301. + item.borders.main_before + item.borders.main_after
  1302. + item.padding.main_before + item.padding.main_after;
  1303. return outer_main_size;
  1304. }();
  1305. if (!has_definite_main_size(item.box)) {
  1306. return outer_max_content_size;
  1307. }
  1308. auto clamp_min = has_main_min_size(item.box) ? specified_main_min_size(item.box) : 0;
  1309. auto clamp_max = has_main_max_size(item.box) ? specified_main_max_size(item.box) : NumericLimits<float>::max();
  1310. auto unclamped_preferred_size = resolved_definite_main_size(item.box);
  1311. auto clamped_preferred_size = css_clamp(unclamped_preferred_size, clamp_min, clamp_max);
  1312. return max(outer_max_content_size, clamped_preferred_size);
  1313. }
  1314. float FlexFormattingContext::calculate_cross_min_content_contribution(FlexItem const& flex_item) const
  1315. {
  1316. auto outer_min_cross_size = [&] {
  1317. auto inner_cross_size = calculate_min_content_cross_size(flex_item);
  1318. auto outer_cross_size = inner_cross_size
  1319. + flex_item.margins.cross_before + flex_item.margins.cross_after
  1320. + flex_item.borders.cross_before + flex_item.borders.cross_after
  1321. + flex_item.padding.cross_before + flex_item.padding.cross_after;
  1322. return outer_cross_size;
  1323. }();
  1324. if (!has_definite_cross_size(flex_item.box)) {
  1325. return outer_min_cross_size;
  1326. }
  1327. auto clamp_min = has_cross_min_size(flex_item.box) ? specified_cross_min_size(flex_item.box) : 0;
  1328. auto clamp_max = has_cross_max_size(flex_item.box) ? specified_cross_max_size(flex_item.box) : NumericLimits<float>::max();
  1329. auto unclamped_preferred_size = resolved_definite_cross_size(flex_item.box);
  1330. auto clamped_preferred_size = css_clamp(unclamped_preferred_size, clamp_min, clamp_max);
  1331. return max(outer_min_cross_size, clamped_preferred_size);
  1332. }
  1333. float FlexFormattingContext::calculate_cross_max_content_contribution(FlexItem const& flex_item) const
  1334. {
  1335. auto outer_max_content_size = [&] {
  1336. auto inner_cross_size = calculate_max_content_cross_size(flex_item);
  1337. auto outer_cross_size = inner_cross_size
  1338. + flex_item.margins.cross_before + flex_item.margins.cross_after
  1339. + flex_item.borders.cross_before + flex_item.borders.cross_after
  1340. + flex_item.padding.cross_before + flex_item.padding.cross_after;
  1341. return outer_cross_size;
  1342. }();
  1343. if (!has_definite_cross_size(flex_item.box)) {
  1344. return outer_max_content_size;
  1345. }
  1346. auto clamp_min = has_cross_min_size(flex_item.box) ? specified_cross_min_size(flex_item.box) : 0;
  1347. auto clamp_max = has_cross_max_size(flex_item.box) ? specified_cross_max_size(flex_item.box) : NumericLimits<float>::max();
  1348. auto unclamped_preferred_size = resolved_definite_cross_size(flex_item.box);
  1349. auto clamped_preferred_size = css_clamp(unclamped_preferred_size, clamp_min, clamp_max);
  1350. return max(outer_max_content_size, clamped_preferred_size);
  1351. }
  1352. float FlexFormattingContext::calculate_min_content_main_size(FlexItem const& item) const
  1353. {
  1354. return is_row_layout() ? calculate_min_content_width(item.box) : calculate_min_content_height(item.box);
  1355. }
  1356. float FlexFormattingContext::calculate_fit_content_main_size(FlexItem const& item) const
  1357. {
  1358. return is_row_layout() ? calculate_fit_content_width(item.box, m_available_space->main) : calculate_fit_content_height(item.box, m_available_space->main);
  1359. }
  1360. float FlexFormattingContext::calculate_fit_content_cross_size(FlexItem const& item) const
  1361. {
  1362. return is_row_layout() ? calculate_fit_content_height(item.box, m_available_space->cross) : calculate_fit_content_width(item.box, m_available_space->cross);
  1363. }
  1364. float FlexFormattingContext::calculate_max_content_main_size(FlexItem const& item) const
  1365. {
  1366. return is_row_layout() ? calculate_max_content_width(item.box) : calculate_max_content_height(item.box);
  1367. }
  1368. float FlexFormattingContext::calculate_min_content_cross_size(FlexItem const& item) const
  1369. {
  1370. return is_row_layout() ? calculate_min_content_height(item.box) : calculate_min_content_width(item.box);
  1371. }
  1372. float FlexFormattingContext::calculate_max_content_cross_size(FlexItem const& item) const
  1373. {
  1374. return is_row_layout() ? calculate_max_content_height(item.box) : calculate_max_content_width(item.box);
  1375. }
  1376. }