TableFormattingContext.cpp 96 KB

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  1. /*
  2. * Copyright (c) 2020, Andreas Kling <kling@serenityos.org>
  3. *
  4. * SPDX-License-Identifier: BSD-2-Clause
  5. */
  6. #include <LibWeb/DOM/Node.h>
  7. #include <LibWeb/HTML/BrowsingContext.h>
  8. #include <LibWeb/HTML/HTMLTableColElement.h>
  9. #include <LibWeb/Layout/BlockFormattingContext.h>
  10. #include <LibWeb/Layout/Box.h>
  11. #include <LibWeb/Layout/InlineFormattingContext.h>
  12. #include <LibWeb/Layout/TableFormattingContext.h>
  13. namespace Web::Layout {
  14. TableFormattingContext::TableFormattingContext(LayoutState& state, Box const& root, FormattingContext* parent)
  15. : FormattingContext(Type::Table, state, root, parent)
  16. {
  17. }
  18. TableFormattingContext::~TableFormattingContext() = default;
  19. static inline bool is_table_column_group(Box const& box)
  20. {
  21. return box.display().is_table_column_group();
  22. }
  23. static inline bool is_table_column(Box const& box)
  24. {
  25. return box.display().is_table_column();
  26. }
  27. CSSPixels TableFormattingContext::run_caption_layout(LayoutMode layout_mode, CSS::CaptionSide phase)
  28. {
  29. CSSPixels caption_height = 0;
  30. for (auto* child = table_box().first_child(); child; child = child->next_sibling()) {
  31. if (!child->display().is_table_caption() || child->computed_values().caption_side() != phase) {
  32. continue;
  33. }
  34. // The caption boxes are principal block-level boxes that retain their own content, padding, margin, and border areas,
  35. // and are rendered as normal block boxes inside the table wrapper box, as described in https://www.w3.org/TR/CSS22/tables.html#model
  36. auto caption_context = make<BlockFormattingContext>(m_state, *verify_cast<BlockContainer>(child), this);
  37. caption_context->run(table_box(), layout_mode, *m_available_space);
  38. VERIFY(child->is_box());
  39. auto const& child_box = static_cast<Box const&>(*child);
  40. // FIXME: Since caption only has inline children, BlockFormattingContext doesn't resolve the vertical metrics.
  41. // We need to do it manually here.
  42. caption_context->resolve_vertical_box_model_metrics(child_box);
  43. auto const& caption_state = m_state.get(child_box);
  44. if (phase == CSS::CaptionSide::Top) {
  45. m_state.get_mutable(table_box()).set_content_y(caption_state.content_height() + caption_state.margin_box_bottom());
  46. } else {
  47. m_state.get_mutable(child_box).set_content_y(
  48. m_state.get(table_box()).margin_box_height() + caption_state.margin_box_top());
  49. }
  50. caption_height += caption_state.margin_box_height();
  51. }
  52. return caption_height;
  53. }
  54. void TableFormattingContext::compute_constrainedness()
  55. {
  56. // Definition of constrainedness: https://www.w3.org/TR/css-tables-3/#constrainedness
  57. size_t column_index = 0;
  58. TableGrid::for_each_child_box_matching(table_box(), is_table_column_group, [&](auto& column_group_box) {
  59. TableGrid::for_each_child_box_matching(column_group_box, is_table_column, [&](auto& column_box) {
  60. auto const& computed_values = column_box.computed_values();
  61. if (!computed_values.width().is_auto() && !computed_values.width().is_percentage()) {
  62. m_columns[column_index].is_constrained = true;
  63. }
  64. auto const& col_node = static_cast<HTML::HTMLTableColElement const&>(*column_box.dom_node());
  65. unsigned span = col_node.attribute(HTML::AttributeNames::span).to_uint().value_or(1);
  66. column_index += span;
  67. });
  68. });
  69. for (auto& row : m_rows) {
  70. auto const& computed_values = row.box->computed_values();
  71. if (!computed_values.height().is_auto() && !computed_values.height().is_percentage()) {
  72. row.is_constrained = true;
  73. }
  74. }
  75. for (auto& cell : m_cells) {
  76. auto const& computed_values = cell.box->computed_values();
  77. if (!computed_values.width().is_auto() && !computed_values.width().is_percentage()) {
  78. m_columns[cell.column_index].is_constrained = true;
  79. }
  80. if (!computed_values.height().is_auto() && !computed_values.height().is_percentage()) {
  81. m_rows[cell.row_index].is_constrained = true;
  82. }
  83. }
  84. }
  85. void TableFormattingContext::compute_cell_measures()
  86. {
  87. // Implements https://www.w3.org/TR/css-tables-3/#computing-cell-measures.
  88. auto const& containing_block = m_state.get(*table_wrapper().containing_block());
  89. compute_constrainedness();
  90. for (auto& cell : m_cells) {
  91. auto const& computed_values = cell.box->computed_values();
  92. CSSPixels padding_top = computed_values.padding().top().to_px(cell.box, containing_block.content_height());
  93. CSSPixels padding_bottom = computed_values.padding().bottom().to_px(cell.box, containing_block.content_height());
  94. CSSPixels padding_left = computed_values.padding().left().to_px(cell.box, containing_block.content_width());
  95. CSSPixels padding_right = computed_values.padding().right().to_px(cell.box, containing_block.content_width());
  96. auto const& cell_state = m_state.get(cell.box);
  97. auto use_collapsing_borders_model = cell_state.override_borders_data().has_value();
  98. // Implement the collapsing border model https://www.w3.org/TR/CSS22/tables.html#collapsing-borders.
  99. CSSPixels border_top = use_collapsing_borders_model ? round(cell_state.border_top / 2) : computed_values.border_top().width;
  100. CSSPixels border_bottom = use_collapsing_borders_model ? round(cell_state.border_bottom / 2) : computed_values.border_bottom().width;
  101. CSSPixels border_left = use_collapsing_borders_model ? round(cell_state.border_left / 2) : computed_values.border_left().width;
  102. CSSPixels border_right = use_collapsing_borders_model ? round(cell_state.border_right / 2) : computed_values.border_right().width;
  103. auto min_content_width = calculate_min_content_width(cell.box);
  104. auto max_content_width = calculate_max_content_width(cell.box);
  105. auto min_content_height = calculate_min_content_height(cell.box, max_content_width);
  106. auto max_content_height = calculate_max_content_height(cell.box, min_content_width);
  107. // The outer min-content height of a table-cell is max(min-height, min-content height) adjusted by the cell intrinsic offsets.
  108. auto min_height = computed_values.min_height().to_px(cell.box, containing_block.content_height());
  109. auto cell_intrinsic_height_offsets = padding_top + padding_bottom + border_top + border_bottom;
  110. cell.outer_min_height = max(min_height, min_content_height) + cell_intrinsic_height_offsets;
  111. // The outer min-content width of a table-cell is max(min-width, min-content width) adjusted by the cell intrinsic offsets.
  112. auto min_width = computed_values.min_width().to_px(cell.box, containing_block.content_width());
  113. auto cell_intrinsic_width_offsets = padding_left + padding_right + border_left + border_right;
  114. // For fixed mode, according to https://www.w3.org/TR/css-tables-3/#computing-column-measures:
  115. // The min-content and max-content width of cells is considered zero unless they are directly specified as a length-percentage,
  116. // in which case they are resolved based on the table width (if it is definite, otherwise use 0).
  117. auto width_is_specified_length_or_percentage = computed_values.width().is_length() || computed_values.width().is_percentage();
  118. if (!use_fixed_mode_layout() || width_is_specified_length_or_percentage) {
  119. cell.outer_min_width = max(min_width, min_content_width) + cell_intrinsic_width_offsets;
  120. }
  121. // The tables specification isn't explicit on how to use the height and max-height CSS properties in the outer max-content formulas.
  122. // However, during this early phase we don't have enough information to resolve percentage sizes yet and the formulas for outer sizes
  123. // in the specification give enough clues to pick defaults in a way that makes sense.
  124. auto height = computed_values.height().is_length() ? computed_values.height().to_px(cell.box, containing_block.content_height()) : 0;
  125. auto max_height = computed_values.max_height().is_length() ? computed_values.max_height().to_px(cell.box, containing_block.content_height()) : CSSPixels::max();
  126. if (m_rows[cell.row_index].is_constrained) {
  127. // The outer max-content height of a table-cell in a constrained row is
  128. // max(min-height, height, min-content height, min(max-height, height)) adjusted by the cell intrinsic offsets.
  129. // NB: min(max-height, height) doesn't have any effect here, we can simplify the expression to max(min-height, height, min-content height).
  130. cell.outer_max_height = max(min_height, max(height, min_content_height)) + cell_intrinsic_height_offsets;
  131. } else {
  132. // The outer max-content height of a table-cell in a non-constrained row is
  133. // max(min-height, height, min-content height, min(max-height, max-content height)) adjusted by the cell intrinsic offsets.
  134. cell.outer_max_height = max(min_height, max(height, max(min_content_height, min(max_height, max_content_height)))) + cell_intrinsic_height_offsets;
  135. }
  136. // See the explanation for height and max_height above.
  137. auto width = computed_values.width().is_length() ? computed_values.width().to_px(cell.box, containing_block.content_width()) : 0;
  138. auto max_width = computed_values.max_width().is_length() ? computed_values.max_width().to_px(cell.box, containing_block.content_width()) : CSSPixels::max();
  139. if (use_fixed_mode_layout() && !width_is_specified_length_or_percentage) {
  140. continue;
  141. }
  142. if (m_columns[cell.column_index].is_constrained) {
  143. // The outer max-content width of a table-cell in a constrained column is
  144. // max(min-width, width, min-content width, min(max-width, width)) adjusted by the cell intrinsic offsets.
  145. // NB: min(max-width, width) doesn't have any effect here, we can simplify the expression to max(min-width, width, min-content width).
  146. cell.outer_max_width = max(min_width, max(width, min_content_width)) + cell_intrinsic_width_offsets;
  147. } else {
  148. // The outer max-content width of a table-cell in a non-constrained column is
  149. // max(min-width, width, min-content width, min(max-width, max-content width)) adjusted by the cell intrinsic offsets.
  150. cell.outer_max_width = max(min_width, max(width, max(min_content_width, min(max_width, max_content_width)))) + cell_intrinsic_width_offsets;
  151. }
  152. }
  153. }
  154. void TableFormattingContext::compute_outer_content_sizes()
  155. {
  156. auto const& containing_block = m_state.get(*table_wrapper().containing_block());
  157. size_t column_index = 0;
  158. TableGrid::for_each_child_box_matching(table_box(), is_table_column_group, [&](auto& column_group_box) {
  159. TableGrid::for_each_child_box_matching(column_group_box, is_table_column, [&](auto& column_box) {
  160. auto const& computed_values = column_box.computed_values();
  161. auto min_width = computed_values.min_width().to_px(column_box, containing_block.content_width());
  162. auto max_width = computed_values.max_width().is_length() ? computed_values.max_width().to_px(column_box, containing_block.content_width()) : CSSPixels::max();
  163. auto width = computed_values.width().to_px(column_box, containing_block.content_width());
  164. // The outer min-content width of a table-column or table-column-group is max(min-width, width).
  165. m_columns[column_index].min_size = max(min_width, width);
  166. // The outer max-content width of a table-column or table-column-group is max(min-width, min(max-width, width)).
  167. m_columns[column_index].max_size = max(min_width, min(max_width, width));
  168. auto const& col_node = static_cast<HTML::HTMLTableColElement const&>(*column_box.dom_node());
  169. unsigned span = col_node.attribute(HTML::AttributeNames::span).to_uint().value_or(1);
  170. column_index += span;
  171. });
  172. });
  173. for (auto& row : m_rows) {
  174. auto const& computed_values = row.box->computed_values();
  175. auto min_height = computed_values.min_height().to_px(row.box, containing_block.content_height());
  176. auto max_height = computed_values.max_height().is_length() ? computed_values.max_height().to_px(row.box, containing_block.content_height()) : CSSPixels::max();
  177. auto height = computed_values.height().to_px(row.box, containing_block.content_height());
  178. // The outer min-content height of a table-row or table-row-group is max(min-height, height).
  179. row.min_size = max(min_height, height);
  180. // The outer max-content height of a table-row or table-row-group is max(min-height, min(max-height, height)).
  181. row.max_size = max(min_height, min(max_height, height));
  182. }
  183. }
  184. template<>
  185. void TableFormattingContext::initialize_table_measures<TableFormattingContext::Row>()
  186. {
  187. auto const& containing_block = m_state.get(*table_wrapper().containing_block());
  188. for (auto& cell : m_cells) {
  189. auto const& computed_values = cell.box->computed_values();
  190. if (cell.row_span == 1) {
  191. auto specified_height = computed_values.height().to_px(cell.box, containing_block.content_height());
  192. // https://www.w3.org/TR/css-tables-3/#row-layout makes specified cell height part of the initialization formula for row table measures:
  193. // This is done by running the same algorithm as the column measurement, with the span=1 value being initialized (for min-content) with
  194. // the largest of the resulting height of the previous row layout, the height specified on the corresponding table-row (if any), and
  195. // the largest height specified on cells that span this row only (the algorithm starts by considering cells of span 2 on top of that assignment).
  196. m_rows[cell.row_index].min_size = max(m_rows[cell.row_index].min_size, max(cell.outer_min_height, specified_height));
  197. m_rows[cell.row_index].max_size = max(m_rows[cell.row_index].max_size, cell.outer_max_height);
  198. }
  199. }
  200. }
  201. template<>
  202. void TableFormattingContext::initialize_table_measures<TableFormattingContext::Column>()
  203. {
  204. // Implement the following parts of the specification, accounting for fixed layout mode:
  205. // https://www.w3.org/TR/css-tables-3/#min-content-width-of-a-column-based-on-cells-of-span-up-to-1
  206. // https://www.w3.org/TR/css-tables-3/#max-content-width-of-a-column-based-on-cells-of-span-up-to-1
  207. for (auto& cell : m_cells) {
  208. if (cell.column_span == 1 && (cell.row_index == 0 || !use_fixed_mode_layout())) {
  209. m_columns[cell.column_index].min_size = max(m_columns[cell.column_index].min_size, cell.outer_min_width);
  210. m_columns[cell.column_index].max_size = max(m_columns[cell.column_index].max_size, cell.outer_max_width);
  211. }
  212. }
  213. }
  214. template<class RowOrColumn>
  215. void TableFormattingContext::compute_intrinsic_percentage(size_t max_cell_span)
  216. {
  217. auto& rows_or_columns = table_rows_or_columns<RowOrColumn>();
  218. // https://www.w3.org/TR/css-tables-3/#intrinsic-percentage-width-of-a-column-based-on-cells-of-span-up-to-1
  219. initialize_intrinsic_percentages_from_rows_or_columns<RowOrColumn>();
  220. initialize_intrinsic_percentages_from_cells<RowOrColumn>();
  221. // Stores intermediate values for intrinsic percentage based on cells of span up to N for the iterative algorithm, to store them back at the end of the step.
  222. Vector<double> intrinsic_percentage_contribution_by_index;
  223. intrinsic_percentage_contribution_by_index.resize(rows_or_columns.size());
  224. for (size_t rc_index = 0; rc_index < rows_or_columns.size(); ++rc_index) {
  225. intrinsic_percentage_contribution_by_index[rc_index] = rows_or_columns[rc_index].intrinsic_percentage;
  226. }
  227. for (size_t current_span = 2; current_span <= max_cell_span; current_span++) {
  228. // https://www.w3.org/TR/css-tables-3/#intrinsic-percentage-width-of-a-column-based-on-cells-of-span-up-to-n-n--1
  229. for (auto& cell : m_cells) {
  230. auto cell_span_value = cell_span<RowOrColumn>(cell);
  231. if (cell_span_value != current_span) {
  232. continue;
  233. }
  234. auto cell_start_rc_index = cell_index<RowOrColumn>(cell);
  235. auto cell_end_rc_index = cell_start_rc_index + cell_span_value;
  236. // 1. Start with the percentage contribution of the cell.
  237. CSSPixels cell_contribution = cell_percentage_contribution<RowOrColumn>(cell);
  238. // 2. Subtract the intrinsic percentage width of the column based on cells of span up to N-1 of all columns
  239. // that the cell spans. If this gives a negative result, change it to 0%.
  240. for (auto rc_index = cell_start_rc_index; rc_index < cell_end_rc_index; rc_index++) {
  241. cell_contribution -= rows_or_columns[rc_index].intrinsic_percentage;
  242. cell_contribution = max(cell_contribution, 0);
  243. }
  244. // Compute the sum of the non-spanning max-content sizes of all rows / columns spanned by the cell that have an intrinsic percentage
  245. // size of the row / column based on cells of span up to N-1 equal to 0%, to be used in step 3 of the cell contribution algorithm.
  246. CSSPixels width_sum_of_columns_with_zero_intrinsic_percentage = 0;
  247. size_t number_of_columns_with_zero_intrinsic_percentage = 0;
  248. for (auto rc_index = cell_start_rc_index; rc_index < cell_end_rc_index; rc_index++) {
  249. if (rows_or_columns[rc_index].intrinsic_percentage == 0) {
  250. width_sum_of_columns_with_zero_intrinsic_percentage += rows_or_columns[rc_index].max_size;
  251. ++number_of_columns_with_zero_intrinsic_percentage;
  252. }
  253. }
  254. for (size_t rc_index = cell_start_rc_index; rc_index < cell_end_rc_index; rc_index++) {
  255. // If the intrinsic percentage width of a column based on cells of span up to N-1 is greater than 0%, then the intrinsic percentage width of
  256. // the column based on cells of span up to N is the same as the intrinsic percentage width of the column based on cells of span up to N-1.
  257. if (rows_or_columns[rc_index].intrinsic_percentage > 0) {
  258. continue;
  259. }
  260. // Otherwise, it is the largest of the contributions of the cells in the column whose colSpan is N,
  261. // where the contribution of a cell is the result of taking the following steps:
  262. // 1. Start with the percentage contribution of the cell.
  263. // 2. Subtract the intrinsic percentage width of the column based on cells of span up to N-1 of all columns
  264. // that the cell spans. If this gives a negative result, change it to 0%.
  265. // 3. Multiply by the ratio of the column’s non-spanning max-content width to the sum of the non-spanning max-content widths of all
  266. // columns spanned by the cell that have an intrinsic percentage width of the column based on cells of span up to N-1 equal to 0%.
  267. CSSPixels ajusted_cell_contribution;
  268. if (width_sum_of_columns_with_zero_intrinsic_percentage != 0) {
  269. ajusted_cell_contribution = cell_contribution * rows_or_columns[rc_index].max_size / static_cast<double>(width_sum_of_columns_with_zero_intrinsic_percentage);
  270. } else {
  271. // However, if this ratio is undefined because the denominator is zero, instead use the 1 divided by the number of columns
  272. // spanned by the cell that have an intrinsic percentage width of the column based on cells of span up to N-1 equal to zero.
  273. ajusted_cell_contribution = cell_contribution * 1 / number_of_columns_with_zero_intrinsic_percentage;
  274. }
  275. intrinsic_percentage_contribution_by_index[rc_index] = max(static_cast<double>(ajusted_cell_contribution), intrinsic_percentage_contribution_by_index[rc_index]);
  276. }
  277. }
  278. for (size_t rc_index = 0; rc_index < rows_or_columns.size(); ++rc_index) {
  279. rows_or_columns[rc_index].intrinsic_percentage = intrinsic_percentage_contribution_by_index[rc_index];
  280. }
  281. }
  282. // Clamp total intrinsic percentage to 100%: https://www.w3.org/TR/css-tables-3/#intrinsic-percentage-width-of-a-column
  283. double total_intrinsic_percentage = 0;
  284. for (auto& rows_or_column : rows_or_columns) {
  285. rows_or_column.intrinsic_percentage = max(min(100 - total_intrinsic_percentage, rows_or_column.intrinsic_percentage), 0);
  286. total_intrinsic_percentage += rows_or_column.intrinsic_percentage;
  287. }
  288. }
  289. template<class RowOrColumn>
  290. void TableFormattingContext::compute_table_measures()
  291. {
  292. initialize_table_measures<RowOrColumn>();
  293. auto& rows_or_columns = table_rows_or_columns<RowOrColumn>();
  294. size_t max_cell_span = 1;
  295. for (auto& cell : m_cells) {
  296. max_cell_span = max(max_cell_span, cell_span<RowOrColumn>(cell));
  297. }
  298. // Since the intrinsic percentage specification uses non-spanning max-content size for the iterative algorithm,
  299. // run it before we compute the spanning max-content size with its own iterative algorithm for span up to N.
  300. compute_intrinsic_percentage<RowOrColumn>(max_cell_span);
  301. for (size_t current_span = 2; current_span <= max_cell_span; current_span++) {
  302. // https://www.w3.org/TR/css-tables-3/#min-content-width-of-a-column-based-on-cells-of-span-up-to-n-n--1
  303. Vector<Vector<CSSPixels>> cell_min_contributions_by_rc_index;
  304. cell_min_contributions_by_rc_index.resize(rows_or_columns.size());
  305. // https://www.w3.org/TR/css-tables-3/#max-content-width-of-a-column-based-on-cells-of-span-up-to-n-n--1
  306. Vector<Vector<CSSPixels>> cell_max_contributions_by_rc_index;
  307. cell_max_contributions_by_rc_index.resize(rows_or_columns.size());
  308. for (auto& cell : m_cells) {
  309. auto cell_span_value = cell_span<RowOrColumn>(cell);
  310. if (cell_span_value == current_span) {
  311. // Define the baseline max-content size as the sum of the max-content sizes based on cells of span up to N-1 of all columns that the cell spans.
  312. auto cell_start_rc_index = cell_index<RowOrColumn>(cell);
  313. auto cell_end_rc_index = cell_start_rc_index + cell_span_value;
  314. CSSPixels baseline_max_content_size = 0;
  315. for (auto rc_index = cell_start_rc_index; rc_index < cell_end_rc_index; rc_index++) {
  316. baseline_max_content_size += rows_or_columns[rc_index].max_size;
  317. }
  318. CSSPixels baseline_min_content_size = 0;
  319. for (auto rc_index = cell_start_rc_index; rc_index < cell_end_rc_index; rc_index++) {
  320. baseline_min_content_size += rows_or_columns[rc_index].min_size;
  321. }
  322. // Define the baseline border spacing as the sum of the horizontal border-spacing for any columns spanned by the cell, other than the one in which the cell originates.
  323. auto baseline_border_spacing = border_spacing<RowOrColumn>() * (cell_span_value - 1);
  324. // Add contribution from all rows / columns, since we've weighted the gap to the desired spanned size by the the
  325. // ratio of the max-content size based on cells of span up to N-1 of the row / column to the baseline max-content width.
  326. for (auto rc_index = cell_start_rc_index; rc_index < cell_end_rc_index; rc_index++) {
  327. // The contribution of the cell is the sum of:
  328. // the min-content size of the column based on cells of span up to N-1
  329. auto cell_min_contribution = rows_or_columns[rc_index].min_size;
  330. // the product of:
  331. // - the ratio of:
  332. // - the max-content size of the row / column based on cells of span up to N-1 of the row / column minus the
  333. // min-content size of the row / column based on cells of span up to N-1 of the row / column, to
  334. // - the baseline max-content size minus the baseline min-content size
  335. // or zero if this ratio is undefined, and
  336. // - the outer min-content size of the cell minus the baseline min-content size and the baseline border spacing, clamped
  337. // to be at least 0 and at most the difference between the baseline max-content size and the baseline min-content size
  338. auto normalized_max_min_diff = baseline_max_content_size != baseline_min_content_size
  339. ? (rows_or_columns[rc_index].max_size - rows_or_columns[rc_index].min_size) / static_cast<double>(baseline_max_content_size - baseline_min_content_size)
  340. : 0;
  341. auto clamped_diff_to_baseline_min = min(
  342. max(cell_min_size<RowOrColumn>(cell) - baseline_min_content_size - baseline_border_spacing, 0),
  343. baseline_max_content_size - baseline_min_content_size);
  344. cell_min_contribution += normalized_max_min_diff * clamped_diff_to_baseline_min;
  345. // the product of:
  346. // - the ratio of the max-content size based on cells of span up to N-1 of the column to the baseline max-content size
  347. // - the outer min-content size of the cell minus the baseline max-content size and baseline border spacing, or 0 if this is negative
  348. if (baseline_max_content_size != 0) {
  349. cell_min_contribution += (rows_or_columns[rc_index].max_size / static_cast<double>(baseline_max_content_size))
  350. * max(CSSPixels(0), cell_min_size<RowOrColumn>(cell) - baseline_max_content_size - baseline_border_spacing);
  351. }
  352. // The contribution of the cell is the sum of:
  353. // the max-content size of the column based on cells of span up to N-1
  354. auto cell_max_contribution = rows_or_columns[rc_index].max_size;
  355. // and the product of:
  356. // - the ratio of the max-content size based on cells of span up to N-1 of the column to the baseline max-content size
  357. // - the outer max-content size of the cell minus the baseline max-content size and the baseline border spacing, or 0 if this is negative
  358. if (baseline_max_content_size != 0) {
  359. cell_max_contribution += (rows_or_columns[rc_index].max_size / static_cast<double>(baseline_max_content_size))
  360. * max(CSSPixels(0), cell_max_size<RowOrColumn>(cell) - baseline_max_content_size - baseline_border_spacing);
  361. }
  362. cell_min_contributions_by_rc_index[rc_index].append(cell_min_contribution);
  363. cell_max_contributions_by_rc_index[rc_index].append(cell_max_contribution);
  364. }
  365. }
  366. }
  367. for (size_t rc_index = 0; rc_index < rows_or_columns.size(); rc_index++) {
  368. // min-content size of a row / column based on cells of span up to N (N > 1) is
  369. // the largest of the min-content size of the row / column based on cells of span up to N-1 and
  370. // the contributions of the cells in the row / column whose rowSpan / colSpan is N
  371. for (auto min_contribution : cell_min_contributions_by_rc_index[rc_index])
  372. rows_or_columns[rc_index].min_size = max(rows_or_columns[rc_index].min_size, min_contribution);
  373. // max-content size of a row / column based on cells of span up to N (N > 1) is
  374. // the largest of the max-content size based on cells of span up to N-1 and the contributions of
  375. // the cells in the row / column whose rowSpan / colSpan is N
  376. for (auto max_contribution : cell_max_contributions_by_rc_index[rc_index])
  377. rows_or_columns[rc_index].max_size = max(rows_or_columns[rc_index].max_size, max_contribution);
  378. }
  379. }
  380. }
  381. CSSPixels TableFormattingContext::compute_capmin()
  382. {
  383. // The caption width minimum (CAPMIN) is the largest of the table captions min-content contribution:
  384. // https://drafts.csswg.org/css-tables-3/#computing-the-table-width
  385. CSSPixels capmin = 0;
  386. for (auto* child = table_box().first_child(); child; child = child->next_sibling()) {
  387. if (!child->display().is_table_caption()) {
  388. continue;
  389. }
  390. VERIFY(child->is_box());
  391. capmin = max(calculate_min_content_width(static_cast<Box const&>(*child)), capmin);
  392. }
  393. return capmin;
  394. }
  395. static bool width_is_auto_relative_to_state(CSS::Size const& width, LayoutState::UsedValues const& state)
  396. {
  397. return width.is_auto() || (width.contains_percentage() && !state.has_definite_width());
  398. }
  399. void TableFormattingContext::compute_table_width()
  400. {
  401. // https://drafts.csswg.org/css-tables-3/#computing-the-table-width
  402. auto& table_box_state = m_state.get_mutable(table_box());
  403. auto& computed_values = table_box().computed_values();
  404. auto width_of_table_containing_block = m_available_space->width;
  405. // Percentages on 'width' and 'height' on the table are relative to the table wrapper box's containing block,
  406. // not the table wrapper box itself.
  407. auto const& containing_block_state = m_state.get(*table_wrapper().containing_block());
  408. CSSPixels width_of_table_wrapper_containing_block = containing_block_state.content_width();
  409. // Compute undistributable space due to border spacing: https://www.w3.org/TR/css-tables-3/#computing-undistributable-space.
  410. auto undistributable_space = (m_columns.size() + 1) * border_spacing_horizontal();
  411. // The row/column-grid width minimum (GRIDMIN) width is the sum of the min-content width
  412. // of all the columns plus cell spacing or borders.
  413. CSSPixels grid_min = 0.0f;
  414. for (auto& column : m_columns) {
  415. grid_min += column.min_size;
  416. }
  417. grid_min += undistributable_space;
  418. // The row/column-grid width maximum (GRIDMAX) width is the sum of the max-content width
  419. // of all the columns plus cell spacing or borders.
  420. CSSPixels grid_max = 0.0f;
  421. for (auto& column : m_columns) {
  422. grid_max += column.max_size;
  423. }
  424. grid_max += undistributable_space;
  425. // The used min-width of a table is the greater of the resolved min-width, CAPMIN, and GRIDMIN.
  426. auto used_min_width = max(grid_min, compute_capmin());
  427. if (!computed_values.min_width().is_auto()) {
  428. used_min_width = max(used_min_width, computed_values.min_width().to_px(table_box(), width_of_table_wrapper_containing_block));
  429. }
  430. CSSPixels used_width;
  431. if (width_is_auto_relative_to_state(computed_values.width(), containing_block_state)) {
  432. // If the table-root has 'width: auto', the used width is the greater of
  433. // min(GRIDMAX, the table’s containing block width), the used min-width of the table.
  434. if (width_of_table_containing_block.is_definite())
  435. used_width = max(min(grid_max, width_of_table_containing_block.to_px_or_zero()), used_min_width);
  436. else
  437. used_width = max(grid_max, used_min_width);
  438. // https://www.w3.org/TR/CSS22/tables.html#auto-table-layout
  439. // A percentage value for a column width is relative to the table width. If the table has 'width: auto',
  440. // a percentage represents a constraint on the column's width, which a UA should try to satisfy.
  441. CSSPixels adjusted_used_width = 0;
  442. for (auto& cell : m_cells) {
  443. auto const& cell_width = cell.box->computed_values().width();
  444. if (cell_width.is_percentage()) {
  445. adjusted_used_width = ceil(100 / cell_width.percentage().value() * cell.outer_max_width.to_double());
  446. if (width_of_table_containing_block.is_definite())
  447. used_width = min(max(used_width, adjusted_used_width), width_of_table_containing_block.to_px_or_zero());
  448. else
  449. used_width = max(used_width, adjusted_used_width);
  450. }
  451. }
  452. } else {
  453. // If the table-root’s width property has a computed value (resolving to
  454. // resolved-table-width) other than auto, the used width is the greater
  455. // of resolved-table-width, and the used min-width of the table.
  456. CSSPixels resolved_table_width = computed_values.width().to_px(table_box(), width_of_table_wrapper_containing_block);
  457. // Since used_width is content width, we need to subtract the border spacing from the specified width for a consistent comparison.
  458. used_width = max(resolved_table_width - table_box_state.border_box_left() - table_box_state.border_box_right(), used_min_width);
  459. if (!should_treat_max_width_as_none(table_box(), m_available_space->width))
  460. used_width = min(used_width, computed_values.max_width().to_px(table_box(), width_of_table_wrapper_containing_block));
  461. }
  462. table_box_state.set_content_width(used_width);
  463. auto& table_wrapper_box_state = m_state.get_mutable(table_wrapper());
  464. table_wrapper_box_state.set_content_width(table_box_state.border_box_width());
  465. }
  466. CSSPixels TableFormattingContext::compute_columns_total_used_width() const
  467. {
  468. CSSPixels total_used_width = 0;
  469. for (auto& column : m_columns) {
  470. total_used_width += column.used_width;
  471. }
  472. return total_used_width;
  473. }
  474. static CSSPixels compute_columns_total_candidate_width(Vector<CSSPixels> const& candidate_widths)
  475. {
  476. CSSPixels total_candidate_width = 0;
  477. for (auto width : candidate_widths) {
  478. total_candidate_width += width;
  479. }
  480. return total_candidate_width;
  481. }
  482. void TableFormattingContext::commit_candidate_column_widths(Vector<CSSPixels> const& candidate_widths)
  483. {
  484. VERIFY(candidate_widths.size() == m_columns.size());
  485. for (size_t i = 0; i < m_columns.size(); ++i) {
  486. m_columns[i].used_width = candidate_widths[i];
  487. }
  488. }
  489. void TableFormattingContext::assign_columns_width_linear_combination(Vector<CSSPixels> const& candidate_widths, CSSPixels available_width)
  490. {
  491. auto columns_total_candidate_width = compute_columns_total_candidate_width(candidate_widths);
  492. auto columns_total_used_width = compute_columns_total_used_width();
  493. if (columns_total_candidate_width == columns_total_used_width) {
  494. return;
  495. }
  496. auto candidate_weight = (available_width - columns_total_used_width) / static_cast<double>(columns_total_candidate_width - columns_total_used_width);
  497. for (size_t i = 0; i < m_columns.size(); ++i) {
  498. auto& column = m_columns[i];
  499. column.used_width = candidate_weight * candidate_widths[i] + (1 - candidate_weight) * column.used_width;
  500. }
  501. }
  502. template<class ColumnFilter, class BaseWidthGetter>
  503. bool TableFormattingContext::distribute_excess_width_proportionally_to_base_width(CSSPixels excess_width, ColumnFilter column_filter, BaseWidthGetter base_width_getter)
  504. {
  505. bool found_matching_columns = false;
  506. CSSPixels total_base_width = 0;
  507. for (auto const& column : m_columns) {
  508. if (column_filter(column)) {
  509. total_base_width += base_width_getter(column);
  510. found_matching_columns = true;
  511. }
  512. }
  513. if (!found_matching_columns) {
  514. return false;
  515. }
  516. VERIFY(total_base_width > 0);
  517. for (auto& column : m_columns) {
  518. if (column_filter(column)) {
  519. column.used_width += excess_width * base_width_getter(column) / static_cast<double>(total_base_width);
  520. }
  521. }
  522. return true;
  523. }
  524. template<class ColumnFilter>
  525. bool TableFormattingContext::distribute_excess_width_equally(CSSPixels excess_width, ColumnFilter column_filter)
  526. {
  527. size_t matching_column_count = 0;
  528. for (auto const& column : m_columns) {
  529. if (column_filter(column)) {
  530. ++matching_column_count;
  531. }
  532. }
  533. if (matching_column_count == 0) {
  534. return false;
  535. }
  536. for (auto& column : m_columns) {
  537. if (column_filter(column)) {
  538. column.used_width += excess_width / matching_column_count;
  539. }
  540. }
  541. return matching_column_count;
  542. }
  543. template<class ColumnFilter>
  544. bool TableFormattingContext::distribute_excess_width_by_intrinsic_percentage(CSSPixels excess_width, ColumnFilter column_filter)
  545. {
  546. bool found_matching_columns = false;
  547. double total_percentage_width = 0;
  548. for (auto const& column : m_columns) {
  549. if (column_filter(column)) {
  550. found_matching_columns = true;
  551. total_percentage_width += column.intrinsic_percentage;
  552. }
  553. }
  554. if (!found_matching_columns) {
  555. return false;
  556. }
  557. for (auto& column : m_columns) {
  558. if (column_filter(column)) {
  559. column.used_width += excess_width * column.intrinsic_percentage / total_percentage_width;
  560. }
  561. }
  562. return true;
  563. }
  564. void TableFormattingContext::distribute_width_to_columns()
  565. {
  566. // Implements https://www.w3.org/TR/css-tables-3/#width-distribution-algorithm
  567. // The total horizontal border spacing is defined for each table:
  568. // - For tables laid out in separated-borders mode containing at least one column, the horizontal component of the computed value of the border-spacing property times one plus the number of columns in the table
  569. // - Otherwise, 0
  570. auto total_horizontal_border_spacing = m_columns.is_empty() ? 0 : (m_columns.size() + 1) * border_spacing_horizontal();
  571. // The assignable table width is the used width of the table minus the total horizontal border spacing (if any).
  572. // This is the width that we will be able to allocate to the columns.
  573. const CSSPixels available_width = m_state.get(table_box()).content_width() - total_horizontal_border_spacing;
  574. Vector<CSSPixels> candidate_widths;
  575. candidate_widths.resize(m_columns.size());
  576. // 1. The min-content sizing-guess is the set of column width assignments where each column is assigned its min-content width.
  577. for (size_t i = 0; i < m_columns.size(); ++i) {
  578. auto& column = m_columns[i];
  579. // In fixed mode, the min-content width of percent-columns and auto-columns is considered to be zero:
  580. // https://www.w3.org/TR/css-tables-3/#width-distribution-in-fixed-mode
  581. if (use_fixed_mode_layout() && !column.is_constrained) {
  582. continue;
  583. }
  584. column.used_width = column.min_size;
  585. candidate_widths[i] = column.min_size;
  586. }
  587. // 2. The min-content-percentage sizing-guess is the set of column width assignments where:
  588. // - each percent-column is assigned the larger of:
  589. // - its intrinsic percentage width times the assignable width and
  590. // - its min-content width.
  591. // - all other columns are assigned their min-content width.
  592. for (size_t i = 0; i < m_columns.size(); ++i) {
  593. auto& column = m_columns[i];
  594. if (column.has_intrinsic_percentage) {
  595. candidate_widths[i] = max(column.min_size, column.intrinsic_percentage / 100 * available_width);
  596. }
  597. }
  598. // If the assignable table width is less than or equal to the max-content sizing-guess, the used widths of the columns must be the
  599. // linear combination (with weights adding to 1) of the two consecutive sizing-guesses whose width sums bound the available width.
  600. if (available_width < compute_columns_total_candidate_width(candidate_widths)) {
  601. assign_columns_width_linear_combination(candidate_widths, available_width);
  602. return;
  603. } else {
  604. commit_candidate_column_widths(candidate_widths);
  605. }
  606. // 3. The min-content-specified sizing-guess is the set of column width assignments where:
  607. // - each percent-column is assigned the larger of:
  608. // - its intrinsic percentage width times the assignable width and
  609. // - its min-content width
  610. // - any other column that is constrained is assigned its max-content width
  611. // - all other columns are assigned their min-content width.
  612. for (size_t i = 0; i < m_columns.size(); ++i) {
  613. auto& column = m_columns[i];
  614. if (column.is_constrained) {
  615. candidate_widths[i] = column.max_size;
  616. }
  617. }
  618. if (available_width < compute_columns_total_candidate_width(candidate_widths)) {
  619. assign_columns_width_linear_combination(candidate_widths, available_width);
  620. return;
  621. } else {
  622. commit_candidate_column_widths(candidate_widths);
  623. }
  624. // 4. The max-content sizing-guess is the set of column width assignments where:
  625. // - each percent-column is assigned the larger of:
  626. // - its intrinsic percentage width times the assignable width and
  627. // - its min-content width
  628. // - all other columns are assigned their max-content width.
  629. for (size_t i = 0; i < m_columns.size(); ++i) {
  630. auto& column = m_columns[i];
  631. if (!column.has_intrinsic_percentage) {
  632. candidate_widths[i] = column.max_size;
  633. }
  634. }
  635. if (available_width < compute_columns_total_candidate_width(candidate_widths)) {
  636. assign_columns_width_linear_combination(candidate_widths, available_width);
  637. return;
  638. } else {
  639. commit_candidate_column_widths(candidate_widths);
  640. }
  641. // Otherwise, the used widths of the columns are the result of starting from the max-content sizing-guess and distributing
  642. // the excess width to the columns of the table according to the rules for distributing excess width to columns (for used width).
  643. distribute_excess_width_to_columns(available_width);
  644. }
  645. void TableFormattingContext::distribute_excess_width_to_columns(CSSPixels available_width)
  646. {
  647. // Implements https://www.w3.org/TR/css-tables-3/#distributing-width-to-columns
  648. auto columns_total_used_width = compute_columns_total_used_width();
  649. if (columns_total_used_width >= available_width) {
  650. return;
  651. }
  652. auto excess_width = available_width - columns_total_used_width;
  653. if (excess_width == 0) {
  654. return;
  655. }
  656. if (use_fixed_mode_layout()) {
  657. distribute_excess_width_to_columns_fixed_mode(excess_width);
  658. return;
  659. }
  660. // 1. If there are non-constrained columns that have originating cells with intrinsic percentage width of 0% and with nonzero
  661. // max-content width (aka the columns allowed to grow by this rule), the distributed widths of the columns allowed to grow
  662. // by this rule are increased in proportion to max-content width so the total increase adds to the excess width.
  663. if (distribute_excess_width_proportionally_to_base_width(
  664. excess_width,
  665. [](auto const& column) {
  666. return !column.is_constrained && column.has_originating_cells && column.intrinsic_percentage == 0 && column.max_size > 0;
  667. },
  668. [](auto const& column) { return column.max_size; })) {
  669. excess_width = available_width - compute_columns_total_used_width();
  670. }
  671. if (excess_width == 0) {
  672. return;
  673. }
  674. // 2. Otherwise, if there are non-constrained columns that have originating cells with intrinsic percentage width of 0% (aka the columns
  675. // allowed to grow by this rule, which thanks to the previous rule must have zero max-content width), the distributed widths of the
  676. // columns allowed to grow by this rule are increased by equal amounts so the total increase adds to the excess width.
  677. if (distribute_excess_width_equally(excess_width,
  678. [](auto const& column) {
  679. return !column.is_constrained && column.has_originating_cells && column.intrinsic_percentage == 0;
  680. })) {
  681. excess_width = available_width - compute_columns_total_used_width();
  682. }
  683. if (excess_width == 0) {
  684. return;
  685. }
  686. // 3. Otherwise, if there are constrained columns with intrinsic percentage width of 0% and with nonzero max-content width
  687. // (aka the columns allowed to grow by this rule, which, due to other rules, must have originating cells), the distributed widths of the
  688. // columns allowed to grow by this rule are increased in proportion to max-content width so the total increase adds to the excess width.
  689. if (distribute_excess_width_proportionally_to_base_width(
  690. excess_width,
  691. [](auto const& column) {
  692. return column.is_constrained && column.intrinsic_percentage == 0 && column.max_size > 0;
  693. },
  694. [](auto const& column) { return column.max_size; })) {
  695. excess_width = available_width - compute_columns_total_used_width();
  696. }
  697. if (excess_width == 0) {
  698. return;
  699. }
  700. // 4. Otherwise, if there are columns with intrinsic percentage width greater than 0% (aka the columns allowed to grow by this rule,
  701. // which, due to other rules, must have originating cells), the distributed widths of the columns allowed to grow by this rule are
  702. // increased in proportion to intrinsic percentage width so the total increase adds to the excess width.
  703. if (distribute_excess_width_by_intrinsic_percentage(excess_width, [](auto const& column) {
  704. return column.intrinsic_percentage > 0;
  705. })) {
  706. excess_width = available_width - compute_columns_total_used_width();
  707. }
  708. if (excess_width == 0) {
  709. return;
  710. }
  711. // 5. Otherwise, if there is any such column, the distributed widths of all columns that have originating cells are increased by equal amounts
  712. // so the total increase adds to the excess width.
  713. if (distribute_excess_width_equally(
  714. excess_width,
  715. [](auto const& column) { return column.has_originating_cells; })) {
  716. excess_width = available_width - compute_columns_total_used_width();
  717. }
  718. if (excess_width == 0) {
  719. return;
  720. }
  721. // 6. Otherwise, the distributed widths of all columns are increased by equal amounts so the total increase adds to the excess width.
  722. distribute_excess_width_equally(excess_width, [](auto const&) { return true; });
  723. }
  724. void TableFormattingContext::distribute_excess_width_to_columns_fixed_mode(CSSPixels excess_width)
  725. {
  726. // Implements the fixed mode for https://www.w3.org/TR/css-tables-3/#distributing-width-to-columns.
  727. // If there are any columns with no width specified, the excess width is distributed in equally to such columns
  728. if (distribute_excess_width_equally(excess_width, [](auto const& column) { return !column.is_constrained && !column.has_intrinsic_percentage; })) {
  729. return;
  730. }
  731. // otherwise, if there are columns with non-zero length widths from the base assignment, the excess width is distributed proportionally to width among those columns
  732. if (distribute_excess_width_proportionally_to_base_width(
  733. excess_width, [](auto const& column) { return column.used_width > 0; }, [](auto const& column) { return column.used_width; })) {
  734. return;
  735. }
  736. // otherwise, if there are columns with non-zero percentage widths from the base assignment, the excess width is distributed proportionally to percentage width among those columns
  737. if (distribute_excess_width_by_intrinsic_percentage(excess_width, [](auto const& column) { return column.intrinsic_percentage > 0; })) {
  738. return;
  739. }
  740. // otherwise, the excess width is distributed equally to the zero-sized columns
  741. distribute_excess_width_equally(excess_width, [](auto const& column) { return column.used_width == 0; });
  742. }
  743. void TableFormattingContext::compute_table_height(LayoutMode layout_mode)
  744. {
  745. // First pass of row height calculation:
  746. for (auto& row : m_rows) {
  747. auto row_computed_height = row.box->computed_values().height();
  748. if (row_computed_height.is_length()) {
  749. auto height_of_containing_block = m_state.get(*row.box->containing_block()).content_height();
  750. auto row_used_height = row_computed_height.to_px(row.box, height_of_containing_block);
  751. row.base_height = max(row.base_height, row_used_height);
  752. }
  753. }
  754. // First pass of cells layout:
  755. for (auto& cell : m_cells) {
  756. auto& row = m_rows[cell.row_index];
  757. auto& cell_state = m_state.get_mutable(cell.box);
  758. CSSPixels span_width = 0;
  759. for (size_t i = 0; i < cell.column_span; ++i)
  760. span_width += m_columns[cell.column_index + i].used_width;
  761. auto width_of_containing_block = m_state.get(*cell.box->containing_block()).content_width();
  762. auto width_of_containing_block_as_length = CSS::Length::make_px(width_of_containing_block);
  763. auto height_of_containing_block = m_state.get(*cell.box->containing_block()).content_height();
  764. auto height_of_containing_block_as_length = CSS::Length::make_px(height_of_containing_block);
  765. cell_state.padding_top = cell.box->computed_values().padding().top().to_px(cell.box, width_of_containing_block);
  766. cell_state.padding_bottom = cell.box->computed_values().padding().bottom().to_px(cell.box, width_of_containing_block);
  767. cell_state.padding_left = cell.box->computed_values().padding().left().to_px(cell.box, width_of_containing_block);
  768. cell_state.padding_right = cell.box->computed_values().padding().right().to_px(cell.box, width_of_containing_block);
  769. if (cell.box->computed_values().border_collapse() == CSS::BorderCollapse::Separate) {
  770. cell_state.border_top = cell.box->computed_values().border_top().width;
  771. cell_state.border_bottom = cell.box->computed_values().border_bottom().width;
  772. cell_state.border_left = cell.box->computed_values().border_left().width;
  773. cell_state.border_right = cell.box->computed_values().border_right().width;
  774. }
  775. auto cell_computed_height = cell.box->computed_values().height();
  776. if (cell_computed_height.is_length()) {
  777. auto cell_used_height = cell_computed_height.to_px(cell.box, height_of_containing_block);
  778. cell_state.set_content_height(cell_used_height - cell_state.border_box_top() - cell_state.border_box_bottom());
  779. row.base_height = max(row.base_height, cell_used_height);
  780. }
  781. // Compute cell width as specified by https://www.w3.org/TR/css-tables-3/#bounding-box-assignment:
  782. // The position of any table-cell, table-track, or table-track-group box within the table is defined as the rectangle whose width/height is the sum of:
  783. // - the widths/heights of all spanned visible columns/rows
  784. // - the horizontal/vertical border-spacing times the amount of spanned visible columns/rows minus one
  785. // FIXME: Account for visibility.
  786. cell_state.set_content_width(span_width - cell_state.border_box_left() - cell_state.border_box_right() + (cell.column_span - 1) * border_spacing_horizontal());
  787. if (auto independent_formatting_context = layout_inside(cell.box, layout_mode, cell_state.available_inner_space_or_constraints_from(*m_available_space))) {
  788. cell_state.set_content_height(independent_formatting_context->automatic_content_height());
  789. independent_formatting_context->parent_context_did_dimension_child_root_box();
  790. }
  791. cell.baseline = box_baseline(cell.box);
  792. // Implements https://www.w3.org/TR/css-tables-3/#computing-the-table-height
  793. // The minimum height of a row is the maximum of:
  794. // - the computed height (if definite, percentages being considered 0px) of its corresponding table-row (if nay)
  795. // - the computed height of each cell spanning the current row exclusively (if definite, percentages being treated as 0px), and
  796. // - the minimum height (ROWMIN) required by the cells spanning the row.
  797. // Note that we've already applied the first rule at the top of the method.
  798. if (cell.row_span == 1) {
  799. row.base_height = max(row.base_height, cell_state.border_box_height());
  800. }
  801. row.base_height = max(row.base_height, m_rows[cell.row_index].min_size);
  802. row.baseline = max(row.baseline, cell.baseline);
  803. }
  804. CSSPixels sum_rows_height = 0;
  805. for (auto& row : m_rows) {
  806. sum_rows_height += row.base_height;
  807. }
  808. m_table_height = sum_rows_height;
  809. if (!table_box().computed_values().height().is_auto()) {
  810. // If the table has a height property with a value other than auto, it is treated as a minimum height for the
  811. // table grid, and will eventually be distributed to the height of the rows if their collective minimum height
  812. // ends up smaller than this number.
  813. CSSPixels height_of_table_containing_block = m_state.get(*table_wrapper().containing_block()).content_height();
  814. auto specified_table_height = table_box().computed_values().height().to_px(table_box(), height_of_table_containing_block);
  815. auto const& table_state = m_state.get(table_box());
  816. m_table_height = max(m_table_height, specified_table_height - table_state.border_box_top() - table_state.border_box_bottom());
  817. }
  818. for (auto& row : m_rows) {
  819. // Reference size is the largest of
  820. // - its initial base height and
  821. // - its new base height (the one evaluated during the second layout pass, where percentages used in
  822. // rowgroups/rows/cells' specified heights were resolved according to the table height, instead of
  823. // being ignored as 0px).
  824. // Assign reference size to base size. Later, the reference size might change to a larger value during
  825. // the second pass of rows layout.
  826. row.reference_height = row.base_height;
  827. }
  828. // Second pass of rows height calculation:
  829. // At this point, percentage row height can be resolved because the final table height is calculated.
  830. for (auto& row : m_rows) {
  831. auto row_computed_height = row.box->computed_values().height();
  832. if (row_computed_height.is_percentage()) {
  833. auto row_used_height = row_computed_height.to_px(row.box, m_table_height);
  834. row.reference_height = max(row.reference_height, row_used_height);
  835. } else {
  836. continue;
  837. }
  838. }
  839. // Second pass cells layout:
  840. // At this point, percentage cell height can be resolved because the final table height is calculated.
  841. for (auto& cell : m_cells) {
  842. auto& row = m_rows[cell.row_index];
  843. auto& cell_state = m_state.get_mutable(cell.box);
  844. CSSPixels span_width = 0;
  845. for (size_t i = 0; i < cell.column_span; ++i)
  846. span_width += m_columns[cell.column_index + i].used_width;
  847. auto cell_computed_height = cell.box->computed_values().height();
  848. if (cell_computed_height.is_percentage()) {
  849. auto cell_used_height = cell_computed_height.to_px(cell.box, m_table_height);
  850. cell_state.set_content_height(cell_used_height - cell_state.border_box_top() - cell_state.border_box_bottom());
  851. row.reference_height = max(row.reference_height, cell_used_height);
  852. } else {
  853. continue;
  854. }
  855. cell_state.set_content_width(span_width - cell_state.border_box_left() - cell_state.border_box_right() + (cell.column_span - 1) * border_spacing_horizontal());
  856. if (auto independent_formatting_context = layout_inside(cell.box, layout_mode, cell_state.available_inner_space_or_constraints_from(*m_available_space))) {
  857. independent_formatting_context->parent_context_did_dimension_child_root_box();
  858. }
  859. cell.baseline = box_baseline(cell.box);
  860. row.reference_height = max(row.reference_height, cell_state.border_box_height());
  861. row.baseline = max(row.baseline, cell.baseline);
  862. }
  863. }
  864. void TableFormattingContext::distribute_height_to_rows()
  865. {
  866. CSSPixels sum_reference_height = 0;
  867. for (auto& row : m_rows) {
  868. sum_reference_height += row.reference_height;
  869. }
  870. if (sum_reference_height == 0)
  871. return;
  872. Vector<Row&> rows_with_auto_height;
  873. for (auto& row : m_rows) {
  874. if (row.box->computed_values().height().is_auto()) {
  875. rows_with_auto_height.append(row);
  876. }
  877. }
  878. if (m_table_height <= sum_reference_height) {
  879. // If the table height is equal or smaller than sum of reference sizes, the final height assigned to each row
  880. // will be the weighted mean of the base and the reference size that yields the correct total height.
  881. for (auto& row : m_rows) {
  882. auto weight = row.reference_height / static_cast<double>(sum_reference_height);
  883. auto final_height = m_table_height * weight;
  884. row.final_height = final_height;
  885. }
  886. } else if (rows_with_auto_height.size() > 0) {
  887. // Else, if the table owns any “auto-height” row (a row whose size is only determined by its content size and
  888. // none of the specified heights), each non-auto-height row receives its reference height and auto-height rows
  889. // receive their reference size plus some increment which is equal to the height missing to amount to the
  890. // specified table height divided by the amount of such rows.
  891. for (auto& row : m_rows) {
  892. row.final_height = row.reference_height;
  893. }
  894. auto auto_height_rows_increment = (m_table_height - sum_reference_height) / rows_with_auto_height.size();
  895. for (auto& row : rows_with_auto_height) {
  896. row.final_height += auto_height_rows_increment;
  897. }
  898. } else {
  899. // Else, all rows receive their reference size plus some increment which is equal to the height missing to
  900. // amount to the specified table height divided by the amount of rows.
  901. auto increment = (m_table_height - sum_reference_height) / m_rows.size();
  902. for (auto& row : m_rows) {
  903. row.final_height = row.reference_height + increment;
  904. }
  905. }
  906. // Add undistributable space due to border spacing: https://www.w3.org/TR/css-tables-3/#computing-undistributable-space.
  907. m_table_height += (m_rows.size() + 1) * border_spacing_vertical();
  908. }
  909. void TableFormattingContext::position_row_boxes()
  910. {
  911. auto const& table_state = m_state.get(table_box());
  912. CSSPixels row_top_offset = table_state.offset.y() + table_state.padding_top + border_spacing_vertical();
  913. CSSPixels row_left_offset = table_state.border_left + table_state.padding_left + border_spacing_horizontal();
  914. for (size_t y = 0; y < m_rows.size(); y++) {
  915. auto& row = m_rows[y];
  916. auto& row_state = m_state.get_mutable(row.box);
  917. CSSPixels row_width = 0.0f;
  918. for (auto& column : m_columns) {
  919. row_width += column.used_width;
  920. }
  921. row_state.set_content_height(row.final_height);
  922. row_state.set_content_width(row_width);
  923. row_state.set_content_x(row_left_offset);
  924. row_state.set_content_y(row_top_offset);
  925. row_top_offset += row_state.content_height() + border_spacing_vertical();
  926. }
  927. CSSPixels row_group_top_offset = table_state.border_top + table_state.padding_top;
  928. CSSPixels row_group_left_offset = table_state.border_left + table_state.padding_left;
  929. TableGrid::for_each_child_box_matching(table_box(), TableGrid::is_table_row_group, [&](auto& row_group_box) {
  930. CSSPixels row_group_height = 0.0f;
  931. CSSPixels row_group_width = 0.0f;
  932. auto& row_group_box_state = m_state.get_mutable(row_group_box);
  933. row_group_box_state.set_content_x(row_group_left_offset);
  934. row_group_box_state.set_content_y(row_group_top_offset);
  935. TableGrid::for_each_child_box_matching(row_group_box, TableGrid::is_table_row, [&](auto& row) {
  936. auto const& row_state = m_state.get(row);
  937. row_group_height += row_state.border_box_height();
  938. row_group_width = max(row_group_width, row_state.border_box_width());
  939. });
  940. row_group_box_state.set_content_height(row_group_height);
  941. row_group_box_state.set_content_width(row_group_width);
  942. row_group_top_offset += row_group_height;
  943. });
  944. auto total_content_height = max(row_top_offset, row_group_top_offset) - table_state.offset.y() - table_state.padding_top;
  945. m_table_height = max(total_content_height, m_table_height);
  946. }
  947. void TableFormattingContext::position_cell_boxes()
  948. {
  949. CSSPixels left_column_offset = 0;
  950. for (auto& column : m_columns) {
  951. column.left_offset = left_column_offset;
  952. left_column_offset += column.used_width;
  953. }
  954. for (auto& cell : m_cells) {
  955. auto& cell_state = m_state.get_mutable(cell.box);
  956. auto& row_state = m_state.get(m_rows[cell.row_index].box);
  957. CSSPixels const cell_border_box_height = cell_state.content_height() + cell_state.border_box_top() + cell_state.border_box_bottom();
  958. CSSPixels const row_content_height = compute_row_content_height(cell);
  959. auto const& vertical_align = cell.box->computed_values().vertical_align();
  960. // The following image shows various alignment lines of a row:
  961. // https://www.w3.org/TR/css-tables-3/images/cell-align-explainer.png
  962. if (vertical_align.has<CSS::VerticalAlign>()) {
  963. auto height_diff = row_content_height - cell_border_box_height;
  964. switch (vertical_align.get<CSS::VerticalAlign>()) {
  965. case CSS::VerticalAlign::Middle: {
  966. cell_state.padding_top += height_diff / 2;
  967. cell_state.padding_bottom += height_diff / 2;
  968. break;
  969. }
  970. case CSS::VerticalAlign::Top: {
  971. cell_state.padding_bottom += height_diff;
  972. break;
  973. }
  974. case CSS::VerticalAlign::Bottom: {
  975. cell_state.padding_top += height_diff;
  976. break;
  977. }
  978. case CSS::VerticalAlign::Baseline: {
  979. cell_state.padding_top += m_rows[cell.row_index].baseline - cell.baseline;
  980. cell_state.padding_bottom += height_diff;
  981. break;
  982. }
  983. default:
  984. VERIFY_NOT_REACHED();
  985. }
  986. }
  987. // Compute cell position as specified by https://www.w3.org/TR/css-tables-3/#bounding-box-assignment:
  988. // left/top location is the sum of:
  989. // - for top: the height reserved for top captions (including margins), if any
  990. // - the padding-left/padding-top and border-left-width/border-top-width of the table
  991. // FIXME: Account for visibility.
  992. cell_state.offset = row_state.offset.translated(
  993. cell_state.border_box_left() + m_columns[cell.column_index].left_offset + cell.column_index * border_spacing_horizontal(),
  994. cell_state.border_box_top());
  995. }
  996. }
  997. bool TableFormattingContext::use_fixed_mode_layout() const
  998. {
  999. // Implements https://www.w3.org/TR/css-tables-3/#in-fixed-mode.
  1000. // A table-root is said to be laid out in fixed mode whenever the computed value of the table-layout property is equal to fixed, and the
  1001. // specified width of the table root is either a <length-percentage>, min-content or fit-content. When the specified width is not one of
  1002. // those values, or if the computed value of the table-layout property is auto, then the table-root is said to be laid out in auto mode.
  1003. auto const& width = table_box().computed_values().width();
  1004. return table_box().computed_values().table_layout() == CSS::TableLayout::Fixed && (width.is_length() || width.is_percentage() || width.is_min_content() || width.is_fit_content());
  1005. }
  1006. bool TableFormattingContext::border_is_less_specific(const CSS::BorderData& a, const CSS::BorderData& b)
  1007. {
  1008. // Implements criteria for steps 1, 2 and 3 of border conflict resolution algorithm, as described in
  1009. // https://www.w3.org/TR/CSS22/tables.html#border-conflict-resolution.
  1010. static HashMap<CSS::LineStyle, unsigned> const line_style_score = {
  1011. { CSS::LineStyle::Inset, 0 },
  1012. { CSS::LineStyle::Groove, 1 },
  1013. { CSS::LineStyle::Outset, 2 },
  1014. { CSS::LineStyle::Ridge, 3 },
  1015. { CSS::LineStyle::Dotted, 4 },
  1016. { CSS::LineStyle::Dashed, 5 },
  1017. { CSS::LineStyle::Solid, 6 },
  1018. { CSS::LineStyle::Double, 7 },
  1019. };
  1020. // 1. Borders with the 'border-style' of 'hidden' take precedence over all other conflicting borders. Any border with this
  1021. // value suppresses all borders at this location.
  1022. if (a.line_style == CSS::LineStyle::Hidden) {
  1023. return false;
  1024. }
  1025. if (b.line_style == CSS::LineStyle::Hidden) {
  1026. return true;
  1027. }
  1028. // 2. Borders with a style of 'none' have the lowest priority. Only if the border properties of all the elements meeting
  1029. // at this edge are 'none' will the border be omitted (but note that 'none' is the default value for the border style.)
  1030. if (a.line_style == CSS::LineStyle::None) {
  1031. return true;
  1032. }
  1033. if (b.line_style == CSS::LineStyle::None) {
  1034. return false;
  1035. }
  1036. // 3. If none of the styles are 'hidden' and at least one of them is not 'none', then narrow borders are discarded in favor
  1037. // of wider ones. If several have the same 'border-width' then styles are preferred in this order: 'double', 'solid',
  1038. // 'dashed', 'dotted', 'ridge', 'outset', 'groove', and the lowest: 'inset'.
  1039. if (a.width > b.width) {
  1040. return false;
  1041. } else if (a.width < b.width) {
  1042. return true;
  1043. }
  1044. if (*line_style_score.get(a.line_style) > *line_style_score.get(b.line_style)) {
  1045. return false;
  1046. } else if (*line_style_score.get(a.line_style) < *line_style_score.get(b.line_style)) {
  1047. return true;
  1048. }
  1049. return false;
  1050. }
  1051. const CSS::BorderData& TableFormattingContext::border_data_conflicting_edge(TableFormattingContext::ConflictingEdge const& conflicting_edge)
  1052. {
  1053. auto const& style = conflicting_edge.element->computed_values();
  1054. switch (conflicting_edge.side) {
  1055. case ConflictingSide::Top: {
  1056. return style.border_top();
  1057. }
  1058. case ConflictingSide::Bottom: {
  1059. return style.border_bottom();
  1060. }
  1061. case ConflictingSide::Left: {
  1062. return style.border_left();
  1063. }
  1064. case ConflictingSide::Right: {
  1065. return style.border_right();
  1066. }
  1067. default: {
  1068. VERIFY_NOT_REACHED();
  1069. }
  1070. }
  1071. }
  1072. const Painting::PaintableBox::BorderDataWithElementKind TableFormattingContext::border_data_with_element_kind_from_conflicting_edge(ConflictingEdge const& conflicting_edge)
  1073. {
  1074. auto const& border_data = border_data_conflicting_edge(conflicting_edge);
  1075. return { .border_data = border_data, .element_kind = conflicting_edge.element_kind };
  1076. }
  1077. TableFormattingContext::ConflictingEdge const& TableFormattingContext::winning_conflicting_edge(TableFormattingContext::ConflictingEdge const& a, TableFormattingContext::ConflictingEdge const& b)
  1078. {
  1079. auto a_border_data = border_data_conflicting_edge(a);
  1080. auto b_border_data = border_data_conflicting_edge(b);
  1081. // First check if step 4 of border conflict resolution applies, as described in https://www.w3.org/TR/CSS22/tables.html#border-conflict-resolution.
  1082. if (a_border_data.line_style == b_border_data.line_style && a_border_data.width == b_border_data.width) {
  1083. // 4. If border styles differ only in color, then a style set on a cell wins over one on a row, which wins over a
  1084. // row group, column, column group and, lastly, table. When two elements of the same type conflict, then the one
  1085. // further to the left (if the table's 'direction' is 'ltr'; right, if it is 'rtl') and further to the top wins.
  1086. if (static_cast<unsigned>(a.element_kind) < static_cast<unsigned>(b.element_kind)) {
  1087. return a;
  1088. } else if (static_cast<unsigned>(a.element_kind) > static_cast<unsigned>(b.element_kind)) {
  1089. return b;
  1090. }
  1091. // Here the element kind is the same, thus the coordinates are either both set or not set.
  1092. VERIFY(a.column.has_value() == b.column.has_value());
  1093. VERIFY(a.row.has_value() == b.row.has_value());
  1094. if (a.column.has_value()) {
  1095. if (a.column.value() < b.column.value()) {
  1096. return a;
  1097. } else if (a.column.value() > b.column.value()) {
  1098. return b;
  1099. }
  1100. }
  1101. if (a.row.has_value()) {
  1102. if (a.row.value() < b.row.value()) {
  1103. return a;
  1104. } else if (a.row.value() > b.row.value()) {
  1105. return b;
  1106. }
  1107. }
  1108. return a;
  1109. }
  1110. // Apply steps 1, 2 and 3 of the border conflict resolution algorithm.
  1111. return border_is_less_specific(a_border_data, b_border_data) ? b : a;
  1112. }
  1113. void TableFormattingContext::border_conflict_resolution()
  1114. {
  1115. // Implements border conflict resolution, as described in https://www.w3.org/TR/CSS22/tables.html#border-conflict-resolution.
  1116. BorderConflictFinder finder(this);
  1117. for (auto& cell : m_cells) {
  1118. auto& cell_state = m_state.get_mutable(cell.box);
  1119. cell_state.set_table_cell_coordinates(
  1120. Painting::PaintableBox::TableCellCoordinates {
  1121. .row_index = cell.row_index,
  1122. .column_index = cell.column_index,
  1123. .row_span = cell.row_span,
  1124. .column_span = cell.column_span });
  1125. if (cell.box->computed_values().border_collapse() == CSS::BorderCollapse::Separate) {
  1126. continue;
  1127. }
  1128. Painting::PaintableBox::BordersDataWithElementKind override_borders_data;
  1129. ConflictingEdge winning_edge_left {
  1130. .element = cell.box,
  1131. .element_kind = Painting::PaintableBox::ConflictingElementKind::Cell,
  1132. .side = ConflictingSide::Left,
  1133. .row = cell.row_index,
  1134. .column = cell.column_index,
  1135. };
  1136. for (auto const& conflicting_edge : finder.conflicting_edges(cell, ConflictingSide::Left)) {
  1137. winning_edge_left = winning_conflicting_edge(winning_edge_left, conflicting_edge);
  1138. }
  1139. override_borders_data.left = border_data_with_element_kind_from_conflicting_edge(winning_edge_left);
  1140. cell_state.border_left = override_borders_data.left.border_data.width;
  1141. ConflictingEdge winning_edge_right {
  1142. .element = cell.box,
  1143. .element_kind = Painting::PaintableBox::ConflictingElementKind::Cell,
  1144. .side = ConflictingSide::Right,
  1145. .row = cell.row_index,
  1146. .column = cell.column_index,
  1147. };
  1148. for (auto const& conflicting_edge : finder.conflicting_edges(cell, ConflictingSide::Right)) {
  1149. winning_edge_right = winning_conflicting_edge(winning_edge_right, conflicting_edge);
  1150. }
  1151. override_borders_data.right = border_data_with_element_kind_from_conflicting_edge(winning_edge_right);
  1152. cell_state.border_right = override_borders_data.right.border_data.width;
  1153. ConflictingEdge winning_edge_top {
  1154. .element = cell.box,
  1155. .element_kind = Painting::PaintableBox::ConflictingElementKind::Cell,
  1156. .side = ConflictingSide::Top,
  1157. .row = cell.row_index,
  1158. .column = cell.column_index,
  1159. };
  1160. for (auto const& conflicting_edge : finder.conflicting_edges(cell, ConflictingSide::Top)) {
  1161. winning_edge_top = winning_conflicting_edge(winning_edge_top, conflicting_edge);
  1162. }
  1163. override_borders_data.top = border_data_with_element_kind_from_conflicting_edge(winning_edge_top);
  1164. cell_state.border_top = override_borders_data.top.border_data.width;
  1165. ConflictingEdge winning_edge_bottom {
  1166. .element = cell.box,
  1167. .element_kind = Painting::PaintableBox::ConflictingElementKind::Cell,
  1168. .side = ConflictingSide::Bottom,
  1169. .row = cell.row_index,
  1170. .column = cell.column_index,
  1171. };
  1172. for (auto const& conflicting_edge : finder.conflicting_edges(cell, ConflictingSide::Bottom)) {
  1173. winning_edge_bottom = winning_conflicting_edge(winning_edge_bottom, conflicting_edge);
  1174. }
  1175. override_borders_data.bottom = border_data_with_element_kind_from_conflicting_edge(winning_edge_bottom);
  1176. cell_state.border_bottom = override_borders_data.bottom.border_data.width;
  1177. cell_state.set_override_borders_data(override_borders_data);
  1178. }
  1179. }
  1180. CSSPixels TableFormattingContext::compute_row_content_height(Cell const& cell) const
  1181. {
  1182. auto& row_state = m_state.get(m_rows[cell.row_index].box);
  1183. if (cell.row_span == 1) {
  1184. return row_state.content_height();
  1185. }
  1186. // The height of a cell is the sum of all spanned rows, as described in
  1187. // https://www.w3.org/TR/css-tables-3/#bounding-box-assignment
  1188. // When the row span is greater than 1, the borders of inner rows within the span have to be
  1189. // included in the content height of the spanning cell. First top and final bottom borders are
  1190. // excluded to be consistent with the handling of row span 1 case above, which uses the content
  1191. // height (no top and bottom borders) of the row.
  1192. CSSPixels span_height = 0;
  1193. for (size_t i = 0; i < cell.row_span; ++i) {
  1194. auto const& row_state = m_state.get(m_rows[cell.row_index + i].box);
  1195. if (i == 0) {
  1196. span_height += row_state.content_height() + row_state.border_box_bottom();
  1197. } else if (i == cell.row_span - 1) {
  1198. span_height += row_state.border_box_top() + row_state.content_height();
  1199. } else {
  1200. span_height += row_state.border_box_height();
  1201. }
  1202. }
  1203. // Compute cell height as specified by https://www.w3.org/TR/css-tables-3/#bounding-box-assignment:
  1204. // width/height is the sum of:
  1205. // - the widths/heights of all spanned visible columns/rows
  1206. // - the horizontal/vertical border-spacing times the amount of spanned visible columns/rows minus one
  1207. // FIXME: Account for visibility.
  1208. span_height += (cell.row_span - 1) * border_spacing_vertical();
  1209. return span_height;
  1210. }
  1211. TableFormattingContext::BorderConflictFinder::BorderConflictFinder(TableFormattingContext const* context)
  1212. : m_context(context)
  1213. {
  1214. collect_conflicting_col_elements();
  1215. collect_conflicting_row_group_elements();
  1216. }
  1217. void TableFormattingContext::BorderConflictFinder::collect_conflicting_col_elements()
  1218. {
  1219. m_col_elements_by_index.resize(m_context->m_columns.size());
  1220. for (auto* child = m_context->table_box().first_child(); child; child = child->next_sibling()) {
  1221. if (!child->display().is_table_column_group()) {
  1222. continue;
  1223. }
  1224. size_t column_index = 0;
  1225. for (auto* child_of_column_group = child->first_child(); child_of_column_group; child_of_column_group = child_of_column_group->next_sibling()) {
  1226. VERIFY(child_of_column_group->display().is_table_column());
  1227. auto const& col_node = static_cast<HTML::HTMLTableColElement const&>(*child_of_column_group->dom_node());
  1228. unsigned span = col_node.attribute(HTML::AttributeNames::span).to_uint().value_or(1);
  1229. for (size_t i = column_index; i < column_index + span; ++i) {
  1230. m_col_elements_by_index[i] = child_of_column_group;
  1231. }
  1232. column_index += span;
  1233. }
  1234. }
  1235. }
  1236. void TableFormattingContext::BorderConflictFinder::collect_conflicting_row_group_elements()
  1237. {
  1238. m_row_group_elements_by_index.resize(m_context->m_rows.size());
  1239. size_t current_row_index = 0;
  1240. TableGrid::for_each_child_box_matching(m_context->table_box(), TableGrid::is_table_row_group, [&](auto& row_group_box) {
  1241. auto start_row_index = current_row_index;
  1242. size_t row_count = 0;
  1243. TableGrid::for_each_child_box_matching(row_group_box, TableGrid::is_table_row, [&](auto&) {
  1244. ++row_count;
  1245. });
  1246. TableGrid::for_each_child_box_matching(row_group_box, TableGrid::is_table_row, [&](auto&) {
  1247. m_row_group_elements_by_index[current_row_index] = RowGroupInfo {
  1248. .row_group = &row_group_box, .start_index = start_row_index, .row_count = row_count
  1249. };
  1250. ++current_row_index;
  1251. return IterationDecision::Continue;
  1252. });
  1253. });
  1254. }
  1255. void TableFormattingContext::BorderConflictFinder::collect_cell_conflicting_edges(Vector<ConflictingEdge>& result, Cell const& cell, TableFormattingContext::ConflictingSide edge) const
  1256. {
  1257. // Right edge of the cell to the left.
  1258. if (cell.column_index >= cell.column_span && edge == ConflictingSide::Left) {
  1259. auto left_cell_column_index = cell.column_index - cell.column_span;
  1260. auto maybe_cell_to_left = m_context->m_cells_by_coordinate[cell.row_index][left_cell_column_index];
  1261. if (maybe_cell_to_left.has_value()) {
  1262. result.append({ maybe_cell_to_left->box, Painting::PaintableBox::ConflictingElementKind::Cell, ConflictingSide::Right, cell.row_index, left_cell_column_index });
  1263. }
  1264. }
  1265. // Left edge of the cell to the right.
  1266. if (cell.column_index + cell.column_span < m_context->m_cells_by_coordinate[cell.row_index].size() && edge == ConflictingSide::Right) {
  1267. auto right_cell_column_index = cell.column_index + cell.column_span;
  1268. auto maybe_cell_to_right = m_context->m_cells_by_coordinate[cell.row_index][right_cell_column_index];
  1269. if (maybe_cell_to_right.has_value()) {
  1270. result.append({ maybe_cell_to_right->box, Painting::PaintableBox::ConflictingElementKind::Cell, ConflictingSide::Left, cell.row_index, right_cell_column_index });
  1271. }
  1272. }
  1273. // Bottom edge of the cell above.
  1274. if (cell.row_index >= cell.row_span && edge == ConflictingSide::Top) {
  1275. auto above_cell_row_index = cell.row_index - cell.row_span;
  1276. auto maybe_cell_above = m_context->m_cells_by_coordinate[above_cell_row_index][cell.column_index];
  1277. if (maybe_cell_above.has_value()) {
  1278. result.append({ maybe_cell_above->box, Painting::PaintableBox::ConflictingElementKind::Cell, ConflictingSide::Bottom, above_cell_row_index, cell.column_index });
  1279. }
  1280. }
  1281. // Top edge of the cell below.
  1282. if (cell.row_index + cell.row_span < m_context->m_cells_by_coordinate.size() && edge == ConflictingSide::Bottom) {
  1283. auto below_cell_row_index = cell.row_index + cell.row_span;
  1284. auto maybe_cell_below = m_context->m_cells_by_coordinate[below_cell_row_index][cell.column_index];
  1285. if (maybe_cell_below.has_value()) {
  1286. result.append({ maybe_cell_below->box, Painting::PaintableBox::ConflictingElementKind::Cell, ConflictingSide::Top, below_cell_row_index, cell.column_index });
  1287. }
  1288. }
  1289. }
  1290. void TableFormattingContext::BorderConflictFinder::collect_row_conflicting_edges(Vector<ConflictingEdge>& result, Cell const& cell, TableFormattingContext::ConflictingSide edge) const
  1291. {
  1292. // Top edge of the row.
  1293. if (edge == ConflictingSide::Top) {
  1294. result.append({ m_context->m_rows[cell.row_index].box, Painting::PaintableBox::ConflictingElementKind::Row, ConflictingSide::Top, cell.row_index, {} });
  1295. }
  1296. // Bottom edge of the row.
  1297. if (edge == ConflictingSide::Bottom) {
  1298. result.append({ m_context->m_rows[cell.row_index].box, Painting::PaintableBox::ConflictingElementKind::Row, ConflictingSide::Bottom, cell.row_index, {} });
  1299. }
  1300. // Bottom edge of the row above.
  1301. if (cell.row_index >= cell.row_span && edge == ConflictingSide::Top) {
  1302. auto above_row_index = cell.row_index - cell.row_span;
  1303. result.append({ m_context->m_rows[above_row_index].box, Painting::PaintableBox::ConflictingElementKind::Row, ConflictingSide::Bottom, above_row_index, {} });
  1304. }
  1305. // Top edge of the row below.
  1306. if (cell.row_index + cell.row_span < m_context->m_rows.size() && edge == ConflictingSide::Bottom) {
  1307. auto below_row_index = cell.row_index + cell.row_span;
  1308. result.append({ m_context->m_rows[below_row_index].box, Painting::PaintableBox::ConflictingElementKind::Row, ConflictingSide::Top, below_row_index, {} });
  1309. }
  1310. }
  1311. void TableFormattingContext::BorderConflictFinder::collect_row_group_conflicting_edges(Vector<ConflictingEdge>& result, Cell const& cell, TableFormattingContext::ConflictingSide edge) const
  1312. {
  1313. auto const& maybe_row_group = m_row_group_elements_by_index[cell.row_index];
  1314. // Top edge of the row group.
  1315. if (maybe_row_group.has_value() && cell.row_index == maybe_row_group->start_index && edge == ConflictingSide::Top) {
  1316. result.append({ maybe_row_group->row_group, Painting::PaintableBox::ConflictingElementKind::RowGroup, ConflictingSide::Top, maybe_row_group->start_index, {} });
  1317. }
  1318. // Bottom edge of the row group above.
  1319. if (cell.row_index >= cell.row_span) {
  1320. auto const& maybe_row_group_above = m_row_group_elements_by_index[cell.row_index - cell.row_span];
  1321. if (maybe_row_group_above.has_value() && cell.row_index == maybe_row_group_above->start_index + maybe_row_group_above->row_count && edge == ConflictingSide::Top) {
  1322. result.append({ maybe_row_group_above->row_group, Painting::PaintableBox::ConflictingElementKind::RowGroup, ConflictingSide::Bottom, maybe_row_group_above->start_index, {} });
  1323. }
  1324. }
  1325. // Bottom edge of the row group.
  1326. if (maybe_row_group.has_value() && cell.row_index == maybe_row_group->start_index + maybe_row_group->row_count - 1 && edge == ConflictingSide::Bottom) {
  1327. result.append({ maybe_row_group->row_group, Painting::PaintableBox::ConflictingElementKind::RowGroup, ConflictingSide::Bottom, maybe_row_group->start_index, {} });
  1328. }
  1329. // Top edge of the row group below.
  1330. if (cell.row_index + cell.row_span < m_row_group_elements_by_index.size()) {
  1331. auto const& maybe_row_group_below = m_row_group_elements_by_index[cell.row_index + cell.row_span];
  1332. if (maybe_row_group_below.has_value() && cell.row_index + cell.row_span == maybe_row_group_below->start_index && edge == ConflictingSide::Bottom) {
  1333. result.append({ maybe_row_group_below->row_group, Painting::PaintableBox::ConflictingElementKind::RowGroup, ConflictingSide::Top, maybe_row_group_below->start_index, {} });
  1334. }
  1335. }
  1336. }
  1337. void TableFormattingContext::BorderConflictFinder::collect_column_group_conflicting_edges(Vector<ConflictingEdge>& result, Cell const& cell, TableFormattingContext::ConflictingSide edge) const
  1338. {
  1339. // Left edge of the column group.
  1340. if (m_col_elements_by_index[cell.column_index] && edge == ConflictingSide::Left) {
  1341. result.append({ m_col_elements_by_index[cell.column_index], Painting::PaintableBox::ConflictingElementKind::ColumnGroup, ConflictingSide::Left, {}, cell.column_index });
  1342. }
  1343. // Right edge of the column group to the left.
  1344. if (cell.column_index >= cell.column_span && m_col_elements_by_index[cell.column_index - cell.column_span] && edge == ConflictingSide::Left) {
  1345. auto left_column_index = cell.column_index - cell.column_span;
  1346. result.append({ m_col_elements_by_index[left_column_index], Painting::PaintableBox::ConflictingElementKind::ColumnGroup, ConflictingSide::Right, {}, left_column_index });
  1347. }
  1348. // Right edge of the column group.
  1349. if (m_col_elements_by_index[cell.column_index] && edge == ConflictingSide::Right) {
  1350. result.append({ m_col_elements_by_index[cell.column_index], Painting::PaintableBox::ConflictingElementKind::ColumnGroup, ConflictingSide::Right, {}, cell.column_index });
  1351. }
  1352. // Left edge of the column group to the right.
  1353. if (cell.column_index + cell.column_span < m_col_elements_by_index.size() && m_col_elements_by_index[cell.column_index + cell.column_span] && edge == ConflictingSide::Right) {
  1354. auto right_column_index = cell.column_index + cell.column_span;
  1355. result.append({ m_col_elements_by_index[right_column_index], Painting::PaintableBox::ConflictingElementKind::ColumnGroup, ConflictingSide::Left, {}, right_column_index });
  1356. }
  1357. }
  1358. void TableFormattingContext::BorderConflictFinder::collect_table_box_conflicting_edges(Vector<ConflictingEdge>& result, Cell const& cell, TableFormattingContext::ConflictingSide edge) const
  1359. {
  1360. // Top edge from column group or table. Left and right edges of the column group are handled in collect_column_group_conflicting_edges.
  1361. if (cell.row_index == 0 && edge == ConflictingSide::Top) {
  1362. if (m_col_elements_by_index[cell.column_index]) {
  1363. result.append({ m_col_elements_by_index[cell.column_index], Painting::PaintableBox::ConflictingElementKind::ColumnGroup, ConflictingSide::Top, {}, cell.column_index });
  1364. }
  1365. result.append({ &m_context->table_box(), Painting::PaintableBox::ConflictingElementKind::Table, ConflictingSide::Top, {}, {} });
  1366. }
  1367. // Bottom edge from column group or table. Left and right edges of the column group are handled in collect_column_group_conflicting_edges.
  1368. if (cell.row_index + cell.row_span == m_context->m_rows.size() && edge == ConflictingSide::Bottom) {
  1369. if (m_col_elements_by_index[cell.column_index]) {
  1370. result.append({ m_col_elements_by_index[cell.column_index], Painting::PaintableBox::ConflictingElementKind::ColumnGroup, ConflictingSide::Bottom, {}, cell.column_index });
  1371. }
  1372. result.append({ &m_context->table_box(), Painting::PaintableBox::ConflictingElementKind::Table, ConflictingSide::Bottom, {}, {} });
  1373. }
  1374. // Left edge from row group or table. Top and bottom edges of the row group are handled in collect_row_group_conflicting_edges.
  1375. if (cell.column_index == 0 && edge == ConflictingSide::Left) {
  1376. result.append({ m_context->m_rows[cell.row_index].box, Painting::PaintableBox::ConflictingElementKind::Row, ConflictingSide::Left, cell.row_index, {} });
  1377. if (m_row_group_elements_by_index[cell.row_index].has_value()) {
  1378. result.append({ m_row_group_elements_by_index[cell.row_index]->row_group, Painting::PaintableBox::ConflictingElementKind::RowGroup, ConflictingSide::Left, cell.row_index, {} });
  1379. }
  1380. result.append({ &m_context->table_box(), Painting::PaintableBox::ConflictingElementKind::Table, ConflictingSide::Left, {}, {} });
  1381. }
  1382. // Right edge from row group or table. Top and bottom edges of the row group are handled in collect_row_group_conflicting_edges.
  1383. if (cell.column_index + cell.column_span == m_context->m_columns.size() && edge == ConflictingSide::Right) {
  1384. result.append({ m_context->m_rows[cell.row_index].box, Painting::PaintableBox::ConflictingElementKind::Row, ConflictingSide::Right, cell.row_index, {} });
  1385. if (m_row_group_elements_by_index[cell.row_index].has_value()) {
  1386. result.append({ m_row_group_elements_by_index[cell.row_index]->row_group, Painting::PaintableBox::ConflictingElementKind::RowGroup, ConflictingSide::Right, cell.row_index, {} });
  1387. }
  1388. result.append({ &m_context->table_box(), Painting::PaintableBox::ConflictingElementKind::Table, ConflictingSide::Right, {}, {} });
  1389. }
  1390. }
  1391. Vector<TableFormattingContext::ConflictingEdge> TableFormattingContext::BorderConflictFinder::conflicting_edges(
  1392. Cell const& cell, TableFormattingContext::ConflictingSide edge) const
  1393. {
  1394. Vector<ConflictingEdge> result = {};
  1395. collect_cell_conflicting_edges(result, cell, edge);
  1396. collect_row_conflicting_edges(result, cell, edge);
  1397. collect_row_group_conflicting_edges(result, cell, edge);
  1398. collect_column_group_conflicting_edges(result, cell, edge);
  1399. collect_table_box_conflicting_edges(result, cell, edge);
  1400. return result;
  1401. }
  1402. void TableFormattingContext::finish_grid_initialization(TableGrid const& table_grid)
  1403. {
  1404. m_columns.resize(table_grid.column_count());
  1405. m_cells_by_coordinate.resize(m_rows.size());
  1406. for (auto& position_to_cell_row : m_cells_by_coordinate) {
  1407. position_to_cell_row.resize(table_grid.column_count());
  1408. }
  1409. for (auto const& cell : m_cells) {
  1410. m_cells_by_coordinate[cell.row_index][cell.column_index] = cell;
  1411. m_columns[cell.column_index].has_originating_cells = true;
  1412. }
  1413. }
  1414. void TableFormattingContext::run(Box const& box, LayoutMode layout_mode, AvailableSpace const& available_space)
  1415. {
  1416. m_available_space = available_space;
  1417. auto total_captions_height = run_caption_layout(layout_mode, CSS::CaptionSide::Top);
  1418. // Determine the number of rows/columns the table requires.
  1419. finish_grid_initialization(TableGrid::calculate_row_column_grid(box, m_cells, m_rows));
  1420. border_conflict_resolution();
  1421. // Compute the minimum width of each column.
  1422. compute_cell_measures();
  1423. compute_outer_content_sizes();
  1424. compute_table_measures<Column>();
  1425. // https://www.w3.org/TR/css-tables-3/#row-layout
  1426. // Since during row layout the specified heights of cells in the row were ignored and cells that were spanning more than one rows
  1427. // have not been sized correctly, their height will need to be eventually distributed to the set of rows they spanned. This is done
  1428. // by running the same algorithm as the column measurement, with the span=1 value being initialized (for min-content) with the largest
  1429. // of the resulting height of the previous row layout, the height specified on the corresponding table-row (if any), and the largest
  1430. // height specified on cells that span this row only (the algorithm starts by considering cells of span 2 on top of that assignment).
  1431. compute_table_measures<Row>();
  1432. // Compute the width of the table.
  1433. compute_table_width();
  1434. if (available_space.width.is_intrinsic_sizing_constraint() && !available_space.height.is_intrinsic_sizing_constraint()) {
  1435. return;
  1436. }
  1437. // Distribute the width of the table among columns.
  1438. distribute_width_to_columns();
  1439. compute_table_height(layout_mode);
  1440. distribute_height_to_rows();
  1441. position_row_boxes();
  1442. position_cell_boxes();
  1443. m_state.get_mutable(table_box()).set_content_height(m_table_height);
  1444. total_captions_height += run_caption_layout(layout_mode, CSS::CaptionSide::Bottom);
  1445. // Table captions are positioned between the table margins and its borders (outside the grid box borders) as described in
  1446. // https://www.w3.org/TR/css-tables-3/#bounding-box-assignment
  1447. // A visual representation of this model can be found at https://www.w3.org/TR/css-tables-3/images/table_container.png
  1448. m_state.get_mutable(table_box()).margin_bottom += total_captions_height;
  1449. m_automatic_content_height = m_table_height;
  1450. }
  1451. CSSPixels TableFormattingContext::automatic_content_width() const
  1452. {
  1453. return greatest_child_width(context_box());
  1454. }
  1455. CSSPixels TableFormattingContext::automatic_content_height() const
  1456. {
  1457. return m_automatic_content_height;
  1458. }
  1459. template<>
  1460. size_t TableFormattingContext::cell_span<TableFormattingContext::Row>(TableFormattingContext::Cell const& cell)
  1461. {
  1462. return cell.row_span;
  1463. }
  1464. template<>
  1465. size_t TableFormattingContext::cell_span<TableFormattingContext::Column>(TableFormattingContext::Cell const& cell)
  1466. {
  1467. return cell.column_span;
  1468. }
  1469. template<>
  1470. size_t TableFormattingContext::cell_index<TableFormattingContext::Row>(TableFormattingContext::Cell const& cell)
  1471. {
  1472. return cell.row_index;
  1473. }
  1474. template<>
  1475. size_t TableFormattingContext::cell_index<TableFormattingContext::Column>(TableFormattingContext::Cell const& cell)
  1476. {
  1477. return cell.column_index;
  1478. }
  1479. template<>
  1480. CSSPixels TableFormattingContext::cell_min_size<TableFormattingContext::Row>(TableFormattingContext::Cell const& cell)
  1481. {
  1482. return cell.outer_min_height;
  1483. }
  1484. template<>
  1485. CSSPixels TableFormattingContext::cell_min_size<TableFormattingContext::Column>(TableFormattingContext::Cell const& cell)
  1486. {
  1487. return cell.outer_min_width;
  1488. }
  1489. template<>
  1490. CSSPixels TableFormattingContext::cell_max_size<TableFormattingContext::Row>(TableFormattingContext::Cell const& cell)
  1491. {
  1492. return cell.outer_max_height;
  1493. }
  1494. template<>
  1495. CSSPixels TableFormattingContext::cell_max_size<TableFormattingContext::Column>(TableFormattingContext::Cell const& cell)
  1496. {
  1497. return cell.outer_max_width;
  1498. }
  1499. template<>
  1500. double TableFormattingContext::cell_percentage_contribution<TableFormattingContext::Row>(TableFormattingContext::Cell const& cell)
  1501. {
  1502. // Definition of percentage contribution: https://www.w3.org/TR/css-tables-3/#percentage-contribution
  1503. auto const& computed_values = cell.box->computed_values();
  1504. auto max_height_percentage = computed_values.max_height().is_percentage() ? computed_values.max_height().percentage().value() : static_cast<double>(INFINITY);
  1505. auto height_percentage = computed_values.height().is_percentage() ? computed_values.height().percentage().value() : 0;
  1506. return min(height_percentage, max_height_percentage);
  1507. }
  1508. template<>
  1509. double TableFormattingContext::cell_percentage_contribution<TableFormattingContext::Column>(TableFormattingContext::Cell const& cell)
  1510. {
  1511. // Definition of percentage contribution: https://www.w3.org/TR/css-tables-3/#percentage-contribution
  1512. auto const& computed_values = cell.box->computed_values();
  1513. auto max_width_percentage = computed_values.max_width().is_percentage() ? computed_values.max_width().percentage().value() : static_cast<double>(INFINITY);
  1514. auto width_percentage = computed_values.width().is_percentage() ? computed_values.width().percentage().value() : 0;
  1515. return min(width_percentage, max_width_percentage);
  1516. }
  1517. template<>
  1518. bool TableFormattingContext::cell_has_intrinsic_percentage<TableFormattingContext::Row>(TableFormattingContext::Cell const& cell)
  1519. {
  1520. return cell.box->computed_values().height().is_percentage();
  1521. }
  1522. template<>
  1523. bool TableFormattingContext::cell_has_intrinsic_percentage<TableFormattingContext::Column>(TableFormattingContext::Cell const& cell)
  1524. {
  1525. return cell.box->computed_values().width().is_percentage();
  1526. }
  1527. template<>
  1528. void TableFormattingContext::initialize_intrinsic_percentages_from_rows_or_columns<TableFormattingContext::Row>()
  1529. {
  1530. for (auto& row : m_rows) {
  1531. auto const& computed_values = row.box->computed_values();
  1532. // Definition of percentage contribution: https://www.w3.org/TR/css-tables-3/#percentage-contribution
  1533. auto max_height_percentage = computed_values.max_height().is_percentage() ? computed_values.max_height().percentage().value() : static_cast<double>(INFINITY);
  1534. auto height_percentage = computed_values.height().is_percentage() ? computed_values.height().percentage().value() : 0;
  1535. row.has_intrinsic_percentage = computed_values.max_height().is_percentage() || computed_values.height().is_percentage();
  1536. row.intrinsic_percentage = min(height_percentage, max_height_percentage);
  1537. }
  1538. }
  1539. template<>
  1540. void TableFormattingContext::initialize_intrinsic_percentages_from_rows_or_columns<TableFormattingContext::Column>()
  1541. {
  1542. size_t column_index = 0;
  1543. TableGrid::for_each_child_box_matching(table_box(), is_table_column_group, [&](auto& column_group_box) {
  1544. TableGrid::for_each_child_box_matching(column_group_box, is_table_column, [&](auto& column_box) {
  1545. auto const& computed_values = column_box.computed_values();
  1546. // Definition of percentage contribution: https://www.w3.org/TR/css-tables-3/#percentage-contribution
  1547. auto max_width_percentage = computed_values.max_width().is_percentage() ? computed_values.max_width().percentage().value() : static_cast<double>(INFINITY);
  1548. auto width_percentage = computed_values.width().is_percentage() ? computed_values.width().percentage().value() : 0;
  1549. m_columns[column_index].has_intrinsic_percentage = computed_values.max_width().is_percentage() || computed_values.width().is_percentage();
  1550. m_columns[column_index].intrinsic_percentage = min(width_percentage, max_width_percentage);
  1551. auto const& col_node = static_cast<HTML::HTMLTableColElement const&>(*column_box.dom_node());
  1552. unsigned span = col_node.attribute(HTML::AttributeNames::span).to_uint().value_or(1);
  1553. column_index += span;
  1554. });
  1555. });
  1556. }
  1557. template<class RowOrColumn>
  1558. void TableFormattingContext::initialize_intrinsic_percentages_from_cells()
  1559. {
  1560. auto& rows_or_columns = table_rows_or_columns<RowOrColumn>();
  1561. for (auto& cell : m_cells) {
  1562. auto cell_span_value = cell_span<RowOrColumn>(cell);
  1563. auto cell_start_rc_index = cell_index<RowOrColumn>(cell);
  1564. auto cell_end_rc_index = cell_start_rc_index + cell_span_value;
  1565. if (cell_has_intrinsic_percentage<RowOrColumn>(cell)) {
  1566. for (auto rc_index = cell_start_rc_index; rc_index < cell_end_rc_index; rc_index++) {
  1567. rows_or_columns[rc_index].has_intrinsic_percentage = true;
  1568. }
  1569. if (cell_span_value != 1) {
  1570. continue;
  1571. }
  1572. } else {
  1573. continue;
  1574. }
  1575. size_t rc_index = cell_index<RowOrColumn>(cell);
  1576. rows_or_columns[rc_index].has_intrinsic_percentage = true;
  1577. rows_or_columns[rc_index].intrinsic_percentage = max(cell_percentage_contribution<RowOrColumn>(cell), rows_or_columns[rc_index].intrinsic_percentage);
  1578. }
  1579. }
  1580. template<>
  1581. CSSPixels TableFormattingContext::border_spacing<TableFormattingContext::Row>()
  1582. {
  1583. return border_spacing_vertical();
  1584. }
  1585. template<>
  1586. CSSPixels TableFormattingContext::border_spacing<TableFormattingContext::Column>()
  1587. {
  1588. return border_spacing_horizontal();
  1589. }
  1590. CSSPixels TableFormattingContext::border_spacing_horizontal() const
  1591. {
  1592. auto const& computed_values = table_box().computed_values();
  1593. // When a table is laid out in collapsed-borders mode, the border-spacing of the table-root is ignored (as if it was set to 0px):
  1594. // https://www.w3.org/TR/css-tables-3/#collapsed-style-overrides
  1595. if (computed_values.border_collapse() == CSS::BorderCollapse::Collapse)
  1596. return 0;
  1597. return computed_values.border_spacing_horizontal().to_px(table_box());
  1598. }
  1599. CSSPixels TableFormattingContext::border_spacing_vertical() const
  1600. {
  1601. auto const& computed_values = table_box().computed_values();
  1602. // When a table is laid out in collapsed-borders mode, the border-spacing of the table-root is ignored (as if it was set to 0px):
  1603. // https://www.w3.org/TR/css-tables-3/#collapsed-style-overrides
  1604. if (computed_values.border_collapse() == CSS::BorderCollapse::Collapse)
  1605. return 0;
  1606. return computed_values.border_spacing_vertical().to_px(table_box());
  1607. }
  1608. template<>
  1609. Vector<TableFormattingContext::Row>& TableFormattingContext::table_rows_or_columns()
  1610. {
  1611. return m_rows;
  1612. }
  1613. template<>
  1614. Vector<TableFormattingContext::Column>& TableFormattingContext::table_rows_or_columns()
  1615. {
  1616. return m_columns;
  1617. }
  1618. }