GridFormattingContext.cpp 102 KB

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  1. /*
  2. * Copyright (c) 2022-2023, Martin Falisse <mfalisse@outlook.com>
  3. *
  4. * SPDX-License-Identifier: BSD-2-Clause
  5. */
  6. #include <LibWeb/DOM/Node.h>
  7. #include <LibWeb/Layout/Box.h>
  8. #include <LibWeb/Layout/GridFormattingContext.h>
  9. namespace Web::Layout {
  10. GridFormattingContext::GridTrack GridFormattingContext::GridTrack::create_from_definition(CSS::ExplicitGridTrack const& definition)
  11. {
  12. // NOTE: repeat() is expected to be expanded beforehand.
  13. VERIFY(!definition.is_repeat());
  14. if (definition.is_minmax()) {
  15. return GridTrack {
  16. .min_track_sizing_function = definition.minmax().min_grid_size(),
  17. .max_track_sizing_function = definition.minmax().max_grid_size(),
  18. };
  19. }
  20. return GridTrack {
  21. .min_track_sizing_function = definition.grid_size(),
  22. .max_track_sizing_function = definition.grid_size(),
  23. };
  24. }
  25. GridFormattingContext::GridTrack GridFormattingContext::GridTrack::create_auto()
  26. {
  27. return GridTrack {
  28. .min_track_sizing_function = CSS::GridSize::make_auto(),
  29. .max_track_sizing_function = CSS::GridSize::make_auto(),
  30. };
  31. }
  32. GridFormattingContext::GridTrack GridFormattingContext::GridTrack::create_gap(CSSPixels size)
  33. {
  34. return GridTrack {
  35. .min_track_sizing_function = CSS::GridSize(CSS::Length::make_px(size)),
  36. .max_track_sizing_function = CSS::GridSize(CSS::Length::make_px(size)),
  37. .base_size = size,
  38. .is_gap = true,
  39. };
  40. }
  41. GridFormattingContext::GridFormattingContext(LayoutState& state, Box const& grid_container, FormattingContext* parent)
  42. : FormattingContext(Type::Grid, state, grid_container, parent)
  43. {
  44. }
  45. GridFormattingContext::~GridFormattingContext() = default;
  46. CSSPixels GridFormattingContext::resolve_definite_track_size(CSS::GridSize const& grid_size, AvailableSpace const& available_space)
  47. {
  48. VERIFY(grid_size.is_definite());
  49. switch (grid_size.type()) {
  50. case CSS::GridSize::Type::LengthPercentage: {
  51. if (!grid_size.length_percentage().is_auto()) {
  52. return grid_size.css_size().to_px(grid_container(), available_space.width.to_px());
  53. }
  54. break;
  55. }
  56. default:
  57. VERIFY_NOT_REACHED();
  58. }
  59. return 0;
  60. }
  61. int GridFormattingContext::get_count_of_tracks(Vector<CSS::ExplicitGridTrack> const& track_list, AvailableSpace const& available_space)
  62. {
  63. auto track_count = 0;
  64. for (auto const& explicit_grid_track : track_list) {
  65. if (explicit_grid_track.is_repeat() && explicit_grid_track.repeat().is_default())
  66. track_count += explicit_grid_track.repeat().repeat_count() * explicit_grid_track.repeat().grid_track_size_list().track_list().size();
  67. else
  68. track_count += 1;
  69. }
  70. if (track_list.size() == 1
  71. && track_list.first().is_repeat()
  72. && (track_list.first().repeat().is_auto_fill() || track_list.first().repeat().is_auto_fit())) {
  73. track_count = count_of_repeated_auto_fill_or_fit_tracks(track_list, available_space);
  74. }
  75. return track_count;
  76. }
  77. int GridFormattingContext::count_of_repeated_auto_fill_or_fit_tracks(Vector<CSS::ExplicitGridTrack> const& track_list, AvailableSpace const& available_space)
  78. {
  79. // https://www.w3.org/TR/css-grid-2/#auto-repeat
  80. // 7.2.3.2. Repeat-to-fill: auto-fill and auto-fit repetitions
  81. // On a subgridded axis, the auto-fill keyword is only valid once per <line-name-list>, and repeats
  82. // enough times for the name list to match the subgrid’s specified grid span (falling back to 0 if
  83. // the span is already fulfilled).
  84. // Otherwise on a standalone axis, when auto-fill is given as the repetition number
  85. // If the grid container has a definite size or max size in the relevant axis, then the number of
  86. // repetitions is the largest possible positive integer that does not cause the grid to overflow the
  87. // content box of its grid container
  88. CSSPixels sum_of_grid_track_sizes = 0;
  89. // (treating each track as its max track sizing function if that is definite or its minimum track sizing
  90. // function otherwise, flooring the max track sizing function by the min track sizing function if both
  91. // are definite, and taking gap into account)
  92. // FIXME: take gap into account
  93. for (auto& explicit_grid_track : track_list.first().repeat().grid_track_size_list().track_list()) {
  94. auto track_sizing_function = explicit_grid_track;
  95. if (track_sizing_function.is_minmax()) {
  96. if (track_sizing_function.minmax().max_grid_size().is_definite() && !track_sizing_function.minmax().min_grid_size().is_definite())
  97. sum_of_grid_track_sizes += resolve_definite_track_size(track_sizing_function.minmax().max_grid_size(), available_space);
  98. else if (track_sizing_function.minmax().min_grid_size().is_definite() && !track_sizing_function.minmax().max_grid_size().is_definite())
  99. sum_of_grid_track_sizes += resolve_definite_track_size(track_sizing_function.minmax().min_grid_size(), available_space);
  100. else if (track_sizing_function.minmax().min_grid_size().is_definite() && track_sizing_function.minmax().max_grid_size().is_definite())
  101. sum_of_grid_track_sizes += min(resolve_definite_track_size(track_sizing_function.minmax().min_grid_size(), available_space), resolve_definite_track_size(track_sizing_function.minmax().max_grid_size(), available_space));
  102. } else {
  103. sum_of_grid_track_sizes += min(resolve_definite_track_size(track_sizing_function.grid_size(), available_space), resolve_definite_track_size(track_sizing_function.grid_size(), available_space));
  104. }
  105. }
  106. return max(1, static_cast<int>((get_free_space(available_space, GridDimension::Column).to_px() / sum_of_grid_track_sizes).to_double()));
  107. // For the purpose of finding the number of auto-repeated tracks in a standalone axis, the UA must
  108. // floor the track size to a UA-specified value to avoid division by zero. It is suggested that this
  109. // floor be 1px.
  110. }
  111. void GridFormattingContext::place_item_with_row_and_column_position(Box const& child_box)
  112. {
  113. int row_start = child_box.computed_values().grid_row_start().raw_value() - 1;
  114. int row_end = child_box.computed_values().grid_row_end().raw_value() - 1;
  115. int column_start = child_box.computed_values().grid_column_start().raw_value() - 1;
  116. int column_end = child_box.computed_values().grid_column_end().raw_value() - 1;
  117. // https://www.w3.org/TR/css-grid-2/#line-placement
  118. // 8.3. Line-based Placement: the grid-row-start, grid-column-start, grid-row-end, and grid-column-end properties
  119. // https://www.w3.org/TR/css-grid-2/#grid-placement-slot
  120. // First attempt to match the grid area’s edge to a named grid area: if there is a grid line whose
  121. // line name is <custom-ident>-start (for grid-*-start) / <custom-ident>-end (for grid-*-end),
  122. // contributes the first such line to the grid item’s placement.
  123. // Otherwise, treat this as if the integer 1 had been specified along with the <custom-ident>.
  124. // https://www.w3.org/TR/css-grid-2/#grid-placement-int
  125. // Contributes the Nth grid line to the grid item’s placement. If a negative integer is given, it
  126. // instead counts in reverse, starting from the end edge of the explicit grid.
  127. if (row_end < 0)
  128. row_end = m_occupation_grid.row_count() + row_end + 2;
  129. if (column_end < 0)
  130. column_end = m_occupation_grid.column_count() + column_end + 2;
  131. // If a name is given as a <custom-ident>, only lines with that name are counted. If not enough
  132. // lines with that name exist, all implicit grid lines are assumed to have that name for the purpose
  133. // of finding this position.
  134. // https://www.w3.org/TR/css-grid-2/#grid-placement-span-int
  135. // Contributes a grid span to the grid item’s placement such that the corresponding edge of the grid
  136. // item’s grid area is N lines from its opposite edge in the corresponding direction. For example,
  137. // grid-column-end: span 2 indicates the second grid line in the endward direction from the
  138. // grid-column-start line.
  139. size_t row_span = 1;
  140. size_t column_span = 1;
  141. if (child_box.computed_values().grid_row_start().is_position() && child_box.computed_values().grid_row_end().is_span())
  142. row_span = child_box.computed_values().grid_row_end().raw_value();
  143. if (child_box.computed_values().grid_column_start().is_position() && child_box.computed_values().grid_column_end().is_span())
  144. column_span = child_box.computed_values().grid_column_end().raw_value();
  145. if (child_box.computed_values().grid_row_end().is_position() && child_box.computed_values().grid_row_start().is_span()) {
  146. row_span = child_box.computed_values().grid_row_start().raw_value();
  147. row_start = row_end - row_span;
  148. }
  149. if (child_box.computed_values().grid_column_end().is_position() && child_box.computed_values().grid_column_start().is_span()) {
  150. column_span = child_box.computed_values().grid_column_start().raw_value();
  151. column_start = column_end - column_span;
  152. }
  153. // If a name is given as a <custom-ident>, only lines with that name are counted. If not enough
  154. // lines with that name exist, all implicit grid lines on the side of the explicit grid
  155. // corresponding to the search direction are assumed to have that name for the purpose of counting
  156. // this span.
  157. // https://drafts.csswg.org/css-grid/#grid-placement-auto
  158. // auto
  159. // The property contributes nothing to the grid item’s placement, indicating auto-placement or a
  160. // default span of one. (See § 8 Placing Grid Items, above.)
  161. // https://www.w3.org/TR/css-grid-2/#common-uses-named-lines
  162. // 8.1.3. Named Lines and Spans
  163. // Instead of counting lines by number, lines can be referenced by their line name:
  164. if (child_box.computed_values().grid_column_end().has_line_name()) {
  165. if (auto maybe_grid_area = m_grid_areas.get(child_box.computed_values().grid_column_end().line_name()); maybe_grid_area.has_value())
  166. column_end = maybe_grid_area->column_end;
  167. else if (auto line_name_index = get_line_index_by_line_name(child_box.computed_values().grid_column_end().line_name(), grid_container().computed_values().grid_template_columns()); line_name_index > -1)
  168. column_end = line_name_index;
  169. else
  170. column_end = 1;
  171. column_start = column_end - 1;
  172. }
  173. if (child_box.computed_values().grid_column_start().has_line_name()) {
  174. if (auto maybe_grid_area = m_grid_areas.get(child_box.computed_values().grid_column_end().line_name()); maybe_grid_area.has_value())
  175. column_start = maybe_grid_area->column_start;
  176. else if (auto line_name_index = get_line_index_by_line_name(child_box.computed_values().grid_column_start().line_name(), grid_container().computed_values().grid_template_columns()); line_name_index > -1)
  177. column_start = line_name_index;
  178. else
  179. column_start = 0;
  180. }
  181. if (child_box.computed_values().grid_row_end().has_line_name()) {
  182. if (auto maybe_grid_area = m_grid_areas.get(child_box.computed_values().grid_row_end().line_name()); maybe_grid_area.has_value())
  183. row_end = maybe_grid_area->row_end;
  184. else if (auto line_name_index = get_line_index_by_line_name(child_box.computed_values().grid_row_end().line_name(), grid_container().computed_values().grid_template_rows()); line_name_index > -1)
  185. row_end = line_name_index;
  186. else
  187. row_end = 1;
  188. row_start = row_end - 1;
  189. }
  190. if (child_box.computed_values().grid_row_start().has_line_name()) {
  191. if (auto maybe_grid_area = m_grid_areas.get(child_box.computed_values().grid_row_end().line_name()); maybe_grid_area.has_value())
  192. row_start = maybe_grid_area->row_start;
  193. else if (auto line_name_index = get_line_index_by_line_name(child_box.computed_values().grid_row_start().line_name(), grid_container().computed_values().grid_template_rows()); line_name_index > -1)
  194. row_start = line_name_index;
  195. else
  196. row_start = 0;
  197. }
  198. // If there are multiple lines of the same name, they effectively establish a named set of grid
  199. // lines, which can be exclusively indexed by filtering the placement by name:
  200. // https://drafts.csswg.org/css-grid/#grid-placement-errors
  201. // 8.3.1. Grid Placement Conflict Handling
  202. // If the placement for a grid item contains two lines, and the start line is further end-ward than
  203. // the end line, swap the two lines. If the start line is equal to the end line, remove the end
  204. // line.
  205. if (child_box.computed_values().grid_row_start().is_position() && child_box.computed_values().grid_row_end().is_position()) {
  206. if (row_start > row_end)
  207. swap(row_start, row_end);
  208. if (row_start != row_end)
  209. row_span = row_end - row_start;
  210. }
  211. if (child_box.computed_values().grid_column_start().is_position() && child_box.computed_values().grid_column_end().is_position()) {
  212. if (column_start > column_end)
  213. swap(column_start, column_end);
  214. if (column_start != column_end)
  215. column_span = column_end - column_start;
  216. }
  217. // If the placement contains two spans, remove the one contributed by the end grid-placement
  218. // property.
  219. if (child_box.computed_values().grid_row_start().is_span() && child_box.computed_values().grid_row_end().is_span())
  220. row_span = child_box.computed_values().grid_row_start().raw_value();
  221. if (child_box.computed_values().grid_column_start().is_span() && child_box.computed_values().grid_column_end().is_span())
  222. column_span = child_box.computed_values().grid_column_start().raw_value();
  223. // FIXME: If the placement contains only a span for a named line, replace it with a span of 1.
  224. m_grid_items.append(GridItem {
  225. .box = child_box,
  226. .row = row_start,
  227. .row_span = row_span,
  228. .column = column_start,
  229. .column_span = column_span });
  230. m_occupation_grid.set_occupied(column_start, column_start + column_span, row_start, row_start + row_span);
  231. }
  232. void GridFormattingContext::place_item_with_row_position(Box const& child_box)
  233. {
  234. int row_start = child_box.computed_values().grid_row_start().raw_value() - 1;
  235. int row_end = child_box.computed_values().grid_row_end().raw_value() - 1;
  236. // https://www.w3.org/TR/css-grid-2/#line-placement
  237. // 8.3. Line-based Placement: the grid-row-start, grid-column-start, grid-row-end, and grid-column-end properties
  238. // https://www.w3.org/TR/css-grid-2/#grid-placement-slot
  239. // First attempt to match the grid area’s edge to a named grid area: if there is a grid line whose
  240. // line name is <custom-ident>-start (for grid-*-start) / <custom-ident>-end (for grid-*-end),
  241. // contributes the first such line to the grid item’s placement.
  242. // Otherwise, treat this as if the integer 1 had been specified along with the <custom-ident>.
  243. // https://www.w3.org/TR/css-grid-2/#grid-placement-int
  244. // Contributes the Nth grid line to the grid item’s placement. If a negative integer is given, it
  245. // instead counts in reverse, starting from the end edge of the explicit grid.
  246. if (row_end < 0)
  247. row_end = m_occupation_grid.row_count() + row_end + 2;
  248. // If a name is given as a <custom-ident>, only lines with that name are counted. If not enough
  249. // lines with that name exist, all implicit grid lines are assumed to have that name for the purpose
  250. // of finding this position.
  251. // https://www.w3.org/TR/css-grid-2/#grid-placement-span-int
  252. // Contributes a grid span to the grid item’s placement such that the corresponding edge of the grid
  253. // item’s grid area is N lines from its opposite edge in the corresponding direction. For example,
  254. // grid-column-end: span 2 indicates the second grid line in the endward direction from the
  255. // grid-column-start line.
  256. size_t row_span = 1;
  257. if (child_box.computed_values().grid_row_start().is_position() && child_box.computed_values().grid_row_end().is_span())
  258. row_span = child_box.computed_values().grid_row_end().raw_value();
  259. if (child_box.computed_values().grid_row_end().is_position() && child_box.computed_values().grid_row_start().is_span()) {
  260. row_span = child_box.computed_values().grid_row_start().raw_value();
  261. row_start = row_end - row_span;
  262. // FIXME: Remove me once have implemented spans overflowing into negative indexes, e.g., grid-row: span 2 / 1
  263. if (row_start < 0)
  264. row_start = 0;
  265. }
  266. // If a name is given as a <custom-ident>, only lines with that name are counted. If not enough
  267. // lines with that name exist, all implicit grid lines on the side of the explicit grid
  268. // corresponding to the search direction are assumed to have that name for the purpose of counting
  269. // this span.
  270. // https://drafts.csswg.org/css-grid/#grid-placement-auto
  271. // auto
  272. // The property contributes nothing to the grid item’s placement, indicating auto-placement or a
  273. // default span of one. (See § 8 Placing Grid Items, above.)
  274. // https://www.w3.org/TR/css-grid-2/#common-uses-named-lines
  275. // 8.1.3. Named Lines and Spans
  276. // Instead of counting lines by number, lines can be referenced by their line name:
  277. if (child_box.computed_values().grid_row_end().has_line_name()) {
  278. if (auto maybe_grid_area = m_grid_areas.get(child_box.computed_values().grid_row_end().line_name()); maybe_grid_area.has_value())
  279. row_end = maybe_grid_area->row_end;
  280. else if (auto line_name_index = get_line_index_by_line_name(child_box.computed_values().grid_row_end().line_name(), grid_container().computed_values().grid_template_rows()); line_name_index > -1)
  281. row_end = line_name_index;
  282. else
  283. row_end = 1;
  284. row_start = row_end - 1;
  285. }
  286. if (child_box.computed_values().grid_row_start().has_line_name()) {
  287. if (auto maybe_grid_area = m_grid_areas.get(child_box.computed_values().grid_row_end().line_name()); maybe_grid_area.has_value())
  288. row_start = maybe_grid_area->row_start;
  289. else if (auto line_name_index = get_line_index_by_line_name(child_box.computed_values().grid_row_start().line_name(), grid_container().computed_values().grid_template_rows()); line_name_index > -1)
  290. row_start = line_name_index;
  291. else
  292. row_start = 0;
  293. }
  294. // If there are multiple lines of the same name, they effectively establish a named set of grid
  295. // lines, which can be exclusively indexed by filtering the placement by name:
  296. // https://drafts.csswg.org/css-grid/#grid-placement-errors
  297. // 8.3.1. Grid Placement Conflict Handling
  298. // If the placement for a grid item contains two lines, and the start line is further end-ward than
  299. // the end line, swap the two lines. If the start line is equal to the end line, remove the end
  300. // line.
  301. if (child_box.computed_values().grid_row_start().is_position() && child_box.computed_values().grid_row_end().is_position()) {
  302. if (row_start > row_end)
  303. swap(row_start, row_end);
  304. if (row_start != row_end)
  305. row_span = row_end - row_start;
  306. }
  307. // FIXME: Have yet to find the spec for this.
  308. if (!child_box.computed_values().grid_row_start().is_position() && child_box.computed_values().grid_row_end().is_position() && row_end == 0)
  309. row_start = 0;
  310. // If the placement contains two spans, remove the one contributed by the end grid-placement
  311. // property.
  312. if (child_box.computed_values().grid_row_start().is_span() && child_box.computed_values().grid_row_end().is_span())
  313. row_span = child_box.computed_values().grid_row_start().raw_value();
  314. // FIXME: If the placement contains only a span for a named line, replace it with a span of 1.
  315. int column_start = 0;
  316. size_t column_span = child_box.computed_values().grid_column_start().is_span() ? child_box.computed_values().grid_column_start().raw_value() : 1;
  317. bool found_available_column = false;
  318. for (size_t column_index = column_start; column_index < m_occupation_grid.column_count(); column_index++) {
  319. if (!m_occupation_grid.is_occupied(column_index, row_start)) {
  320. found_available_column = true;
  321. column_start = column_index;
  322. break;
  323. }
  324. }
  325. if (!found_available_column) {
  326. column_start = m_occupation_grid.column_count();
  327. }
  328. m_occupation_grid.set_occupied(column_start, column_start + column_span, row_start, row_start + row_span);
  329. m_grid_items.append(GridItem {
  330. .box = child_box,
  331. .row = row_start,
  332. .row_span = row_span,
  333. .column = column_start,
  334. .column_span = column_span });
  335. }
  336. void GridFormattingContext::place_item_with_column_position(Box const& child_box, int& auto_placement_cursor_x, int& auto_placement_cursor_y)
  337. {
  338. int column_start;
  339. if (child_box.computed_values().grid_column_start().raw_value() > 0) {
  340. column_start = child_box.computed_values().grid_column_start().raw_value() - 1;
  341. } else {
  342. // NOTE: Negative indexes count from the end side of the explicit grid
  343. column_start = m_explicit_columns_line_count + child_box.computed_values().grid_column_start().raw_value();
  344. }
  345. int column_end = child_box.computed_values().grid_column_end().raw_value() - 1;
  346. // https://www.w3.org/TR/css-grid-2/#line-placement
  347. // 8.3. Line-based Placement: the grid-row-start, grid-column-start, grid-row-end, and grid-column-end properties
  348. // https://www.w3.org/TR/css-grid-2/#grid-placement-slot
  349. // First attempt to match the grid area’s edge to a named grid area: if there is a grid line whose
  350. // line name is <custom-ident>-start (for grid-*-start) / <custom-ident>-end (for grid-*-end),
  351. // contributes the first such line to the grid item’s placement.
  352. // Otherwise, treat this as if the integer 1 had been specified along with the <custom-ident>.
  353. // https://www.w3.org/TR/css-grid-2/#grid-placement-int
  354. // Contributes the Nth grid line to the grid item’s placement. If a negative integer is given, it
  355. // instead counts in reverse, starting from the end edge of the explicit grid.
  356. if (column_end < 0)
  357. column_end = m_occupation_grid.column_count() + column_end + 2;
  358. // If a name is given as a <custom-ident>, only lines with that name are counted. If not enough
  359. // lines with that name exist, all implicit grid lines are assumed to have that name for the purpose
  360. // of finding this position.
  361. // https://www.w3.org/TR/css-grid-2/#grid-placement-span-int
  362. // Contributes a grid span to the grid item’s placement such that the corresponding edge of the grid
  363. // item’s grid area is N lines from its opposite edge in the corresponding direction. For example,
  364. // grid-column-end: span 2 indicates the second grid line in the endward direction from the
  365. // grid-column-start line.
  366. size_t column_span = 1;
  367. size_t row_span = child_box.computed_values().grid_row_start().is_span() ? child_box.computed_values().grid_row_start().raw_value() : 1;
  368. if (child_box.computed_values().grid_column_start().is_position() && child_box.computed_values().grid_column_end().is_span())
  369. column_span = child_box.computed_values().grid_column_end().raw_value();
  370. if (child_box.computed_values().grid_column_end().is_position() && child_box.computed_values().grid_column_start().is_span()) {
  371. column_span = child_box.computed_values().grid_column_start().raw_value();
  372. column_start = column_end - column_span;
  373. // FIXME: Remove me once have implemented spans overflowing into negative indexes, e.g., grid-column: span 2 / 1
  374. if (column_start < 0)
  375. column_start = 0;
  376. }
  377. // FIXME: Have yet to find the spec for this.
  378. if (!child_box.computed_values().grid_column_start().is_position() && child_box.computed_values().grid_column_end().is_position() && column_end == 0)
  379. column_start = 0;
  380. // If a name is given as a <custom-ident>, only lines with that name are counted. If not enough
  381. // lines with that name exist, all implicit grid lines on the side of the explicit grid
  382. // corresponding to the search direction are assumed to have that name for the purpose of counting
  383. // this span.
  384. // https://drafts.csswg.org/css-grid/#grid-placement-auto
  385. // auto
  386. // The property contributes nothing to the grid item’s placement, indicating auto-placement or a
  387. // default span of one. (See § 8 Placing Grid Items, above.)
  388. // https://www.w3.org/TR/css-grid-2/#common-uses-named-lines
  389. // 8.1.3. Named Lines and Spans
  390. // Instead of counting lines by number, lines can be referenced by their line name:
  391. if (child_box.computed_values().grid_column_end().has_line_name()) {
  392. if (auto maybe_grid_area = m_grid_areas.get(child_box.computed_values().grid_column_end().line_name()); maybe_grid_area.has_value())
  393. column_end = maybe_grid_area->column_end;
  394. else if (auto line_name_index = get_line_index_by_line_name(child_box.computed_values().grid_column_end().line_name(), grid_container().computed_values().grid_template_columns()); line_name_index > -1)
  395. column_end = line_name_index;
  396. else
  397. column_end = 1;
  398. column_start = column_end - 1;
  399. }
  400. if (child_box.computed_values().grid_column_start().has_line_name()) {
  401. if (auto maybe_grid_area = m_grid_areas.get(child_box.computed_values().grid_column_end().line_name()); maybe_grid_area.has_value())
  402. column_start = maybe_grid_area->column_start;
  403. else if (auto line_name_index = get_line_index_by_line_name(child_box.computed_values().grid_column_start().line_name(), grid_container().computed_values().grid_template_columns()); line_name_index > -1)
  404. column_start = line_name_index;
  405. else
  406. column_start = 0;
  407. }
  408. // If there are multiple lines of the same name, they effectively establish a named set of grid
  409. // lines, which can be exclusively indexed by filtering the placement by name:
  410. // https://drafts.csswg.org/css-grid/#grid-placement-errors
  411. // 8.3.1. Grid Placement Conflict Handling
  412. // If the placement for a grid item contains two lines, and the start line is further end-ward than
  413. // the end line, swap the two lines. If the start line is equal to the end line, remove the end
  414. // line.
  415. if (child_box.computed_values().grid_column_start().is_position() && child_box.computed_values().grid_column_end().is_position()) {
  416. if (column_start > column_end)
  417. swap(column_start, column_end);
  418. if (column_start != column_end)
  419. column_span = column_end - column_start;
  420. }
  421. // If the placement contains two spans, remove the one contributed by the end grid-placement
  422. // property.
  423. if (child_box.computed_values().grid_column_start().is_span() && child_box.computed_values().grid_column_end().is_span())
  424. column_span = child_box.computed_values().grid_column_start().raw_value();
  425. // FIXME: If the placement contains only a span for a named line, replace it with a span of 1.
  426. // 4.1.1.1. Set the column position of the cursor to the grid item's column-start line. If this is
  427. // less than the previous column position of the cursor, increment the row position by 1.
  428. if (column_start < auto_placement_cursor_x)
  429. auto_placement_cursor_y++;
  430. auto_placement_cursor_x = column_start;
  431. // 4.1.1.2. Increment the cursor's row position until a value is found where the grid item does not
  432. // overlap any occupied grid cells (creating new rows in the implicit grid as necessary).
  433. while (true) {
  434. if (!m_occupation_grid.is_occupied(column_start, auto_placement_cursor_y)) {
  435. break;
  436. }
  437. auto_placement_cursor_y++;
  438. }
  439. // 4.1.1.3. Set the item's row-start line to the cursor's row position, and set the item's row-end
  440. // line according to its span from that position.
  441. m_occupation_grid.set_occupied(column_start, column_start + column_span, auto_placement_cursor_y, auto_placement_cursor_y + row_span);
  442. m_grid_items.append(GridItem {
  443. .box = child_box,
  444. .row = auto_placement_cursor_y,
  445. .row_span = row_span,
  446. .column = column_start,
  447. .column_span = column_span });
  448. }
  449. void GridFormattingContext::place_item_with_no_declared_position(Box const& child_box, int& auto_placement_cursor_x, int& auto_placement_cursor_y)
  450. {
  451. // 4.1.2.1. Increment the column position of the auto-placement cursor until either this item's grid
  452. // area does not overlap any occupied grid cells, or the cursor's column position, plus the item's
  453. // column span, overflow the number of columns in the implicit grid, as determined earlier in this
  454. // algorithm.
  455. auto column_start = 0;
  456. size_t column_span = 1;
  457. if (child_box.computed_values().grid_column_start().is_span())
  458. column_span = child_box.computed_values().grid_column_start().raw_value();
  459. else if (child_box.computed_values().grid_column_end().is_span())
  460. column_span = child_box.computed_values().grid_column_end().raw_value();
  461. auto row_start = 0;
  462. size_t row_span = 1;
  463. if (child_box.computed_values().grid_row_start().is_span())
  464. row_span = child_box.computed_values().grid_row_start().raw_value();
  465. else if (child_box.computed_values().grid_row_end().is_span())
  466. row_span = child_box.computed_values().grid_row_end().raw_value();
  467. auto found_unoccupied_area = false;
  468. while (true) {
  469. while (auto_placement_cursor_x <= m_occupation_grid.max_column_index()) {
  470. if (auto_placement_cursor_x + static_cast<int>(column_span) <= m_occupation_grid.max_column_index() + 1) {
  471. auto found_all_available = true;
  472. for (size_t span_index = 0; span_index < column_span; span_index++) {
  473. if (m_occupation_grid.is_occupied(auto_placement_cursor_x + span_index, auto_placement_cursor_y))
  474. found_all_available = false;
  475. }
  476. if (found_all_available) {
  477. found_unoccupied_area = true;
  478. column_start = auto_placement_cursor_x;
  479. row_start = auto_placement_cursor_y;
  480. break;
  481. }
  482. }
  483. auto_placement_cursor_x++;
  484. }
  485. if (found_unoccupied_area) {
  486. break;
  487. }
  488. // 4.1.2.2. If a non-overlapping position was found in the previous step, set the item's row-start
  489. // and column-start lines to the cursor's position. Otherwise, increment the auto-placement cursor's
  490. // row position (creating new rows in the implicit grid as necessary), set its column position to the
  491. // start-most column line in the implicit grid, and return to the previous step.
  492. if (!found_unoccupied_area) {
  493. auto_placement_cursor_x = m_occupation_grid.min_column_index();
  494. auto_placement_cursor_y++;
  495. row_start = auto_placement_cursor_y;
  496. }
  497. }
  498. m_occupation_grid.set_occupied(column_start, column_start + column_span, row_start, row_start + row_span);
  499. m_grid_items.append(GridItem {
  500. .box = child_box,
  501. .row = row_start,
  502. .row_span = row_span,
  503. .column = column_start,
  504. .column_span = column_span });
  505. }
  506. void GridFormattingContext::initialize_grid_tracks_from_definition(AvailableSpace const& available_space, Vector<CSS::ExplicitGridTrack> const& tracks_definition, Vector<GridTrack>& tracks)
  507. {
  508. auto track_count = get_count_of_tracks(tracks_definition, available_space);
  509. for (auto const& track_definition : tracks_definition) {
  510. auto repeat_count = (track_definition.is_repeat() && track_definition.repeat().is_default()) ? track_definition.repeat().repeat_count() : 1;
  511. if (track_definition.is_repeat()) {
  512. if (track_definition.repeat().is_auto_fill() || track_definition.repeat().is_auto_fit())
  513. repeat_count = track_count;
  514. }
  515. for (auto _ = 0; _ < repeat_count; _++) {
  516. switch (track_definition.type()) {
  517. case CSS::ExplicitGridTrack::Type::Default:
  518. case CSS::ExplicitGridTrack::Type::MinMax:
  519. tracks.append(GridTrack::create_from_definition(track_definition));
  520. break;
  521. case CSS::ExplicitGridTrack::Type::Repeat:
  522. for (auto& explicit_grid_track : track_definition.repeat().grid_track_size_list().track_list()) {
  523. tracks.append(GridTrack::create_from_definition(explicit_grid_track));
  524. }
  525. break;
  526. default:
  527. VERIFY_NOT_REACHED();
  528. }
  529. }
  530. }
  531. }
  532. void GridFormattingContext::initialize_grid_tracks_for_columns_and_rows(AvailableSpace const& available_space)
  533. {
  534. auto const& grid_computed_values = grid_container().computed_values();
  535. auto const& grid_auto_columns = grid_computed_values.grid_auto_columns().track_list();
  536. size_t implicit_column_index = 0;
  537. // NOTE: If there are implicit tracks created by items with negative indexes they should prepend explicitly defined tracks
  538. auto negative_index_implied_column_tracks_count = abs(m_occupation_grid.min_column_index());
  539. for (int column_index = 0; column_index < negative_index_implied_column_tracks_count; column_index++) {
  540. if (grid_auto_columns.size() > 0) {
  541. auto definition = grid_auto_columns[implicit_column_index % grid_auto_columns.size()];
  542. m_grid_columns.append(GridTrack::create_from_definition(definition));
  543. } else {
  544. m_grid_columns.append(GridTrack::create_auto());
  545. }
  546. implicit_column_index++;
  547. }
  548. initialize_grid_tracks_from_definition(available_space, grid_computed_values.grid_template_columns().track_list(), m_grid_columns);
  549. for (size_t column_index = m_grid_columns.size(); column_index < m_occupation_grid.column_count(); column_index++) {
  550. if (grid_auto_columns.size() > 0) {
  551. auto definition = grid_auto_columns[implicit_column_index % grid_auto_columns.size()];
  552. m_grid_columns.append(GridTrack::create_from_definition(definition));
  553. } else {
  554. m_grid_columns.append(GridTrack::create_auto());
  555. }
  556. implicit_column_index++;
  557. }
  558. auto const& grid_auto_rows = grid_computed_values.grid_auto_rows().track_list();
  559. size_t implicit_row_index = 0;
  560. // NOTE: If there are implicit tracks created by items with negative indexes they should prepend explicitly defined tracks
  561. auto negative_index_implied_row_tracks_count = abs(m_occupation_grid.min_row_index());
  562. for (int row_index = 0; row_index < negative_index_implied_row_tracks_count; row_index++) {
  563. if (grid_auto_rows.size() > 0) {
  564. auto definition = grid_auto_rows[implicit_row_index % grid_auto_rows.size()];
  565. m_grid_rows.append(GridTrack::create_from_definition(definition));
  566. } else {
  567. m_grid_rows.append(GridTrack::create_auto());
  568. }
  569. implicit_row_index++;
  570. }
  571. initialize_grid_tracks_from_definition(available_space, grid_computed_values.grid_template_rows().track_list(), m_grid_rows);
  572. for (size_t row_index = m_grid_rows.size(); row_index < m_occupation_grid.row_count(); row_index++) {
  573. if (grid_auto_rows.size() > 0) {
  574. auto definition = grid_auto_rows[implicit_row_index % grid_auto_rows.size()];
  575. m_grid_rows.append(GridTrack::create_from_definition(definition));
  576. } else {
  577. m_grid_rows.append(GridTrack::create_auto());
  578. }
  579. implicit_row_index++;
  580. }
  581. }
  582. void GridFormattingContext::initialize_gap_tracks(AvailableSpace const& available_space)
  583. {
  584. // https://www.w3.org/TR/css-grid-2/#gutters
  585. // 11.1. Gutters: the row-gap, column-gap, and gap properties
  586. // For the purpose of track sizing, each gutter is treated as an extra, empty, fixed-size track of
  587. // the specified size, which is spanned by any grid items that span across its corresponding grid
  588. // line.
  589. if (!grid_container().computed_values().column_gap().is_auto() && m_grid_columns.size() > 0) {
  590. auto column_gap_width = grid_container().computed_values().column_gap().to_px(grid_container(), available_space.width.to_px());
  591. m_column_gap_tracks.ensure_capacity(m_grid_columns.size() - 1);
  592. for (size_t column_index = 0; column_index < m_grid_columns.size(); column_index++) {
  593. m_grid_columns_and_gaps.append(m_grid_columns[column_index]);
  594. if (column_index != m_grid_columns.size() - 1) {
  595. m_column_gap_tracks.append(GridTrack::create_gap(column_gap_width));
  596. m_grid_columns_and_gaps.append(m_column_gap_tracks.last());
  597. }
  598. }
  599. } else {
  600. for (auto& track : m_grid_columns) {
  601. m_grid_columns_and_gaps.append(track);
  602. }
  603. }
  604. if (!grid_container().computed_values().row_gap().is_auto() && m_grid_rows.size() > 0) {
  605. auto row_gap_height = grid_container().computed_values().row_gap().to_px(grid_container(), available_space.height.to_px());
  606. m_row_gap_tracks.ensure_capacity(m_grid_rows.size() - 1);
  607. for (size_t row_index = 0; row_index < m_grid_rows.size(); row_index++) {
  608. m_grid_rows_and_gaps.append(m_grid_rows[row_index]);
  609. if (row_index != m_grid_rows.size() - 1) {
  610. m_row_gap_tracks.append(GridTrack::create_gap(row_gap_height));
  611. m_grid_rows_and_gaps.append(m_row_gap_tracks.last());
  612. }
  613. }
  614. } else {
  615. for (auto& track : m_grid_rows) {
  616. m_grid_rows_and_gaps.append(track);
  617. }
  618. }
  619. }
  620. void GridFormattingContext::initialize_track_sizes(AvailableSpace const& available_space, GridDimension const dimension)
  621. {
  622. // https://www.w3.org/TR/css-grid-2/#algo-init
  623. // 12.4. Initialize Track Sizes
  624. // Initialize each track’s base size and growth limit.
  625. auto& tracks_and_gaps = dimension == GridDimension::Column ? m_grid_columns_and_gaps : m_grid_rows_and_gaps;
  626. auto& available_size = dimension == GridDimension::Column ? available_space.width : available_space.height;
  627. for (auto& track : tracks_and_gaps) {
  628. if (track.is_gap)
  629. continue;
  630. if (track.min_track_sizing_function.is_fixed(available_size)) {
  631. track.base_size = track.min_track_sizing_function.css_size().to_px(grid_container(), available_size.to_px());
  632. } else if (track.min_track_sizing_function.is_intrinsic(available_size)) {
  633. track.base_size = 0;
  634. }
  635. if (track.max_track_sizing_function.is_fixed(available_size)) {
  636. track.growth_limit = track.max_track_sizing_function.css_size().to_px(grid_container(), available_size.to_px());
  637. } else if (track.max_track_sizing_function.is_flexible_length()) {
  638. track.growth_limit = INFINITY;
  639. } else if (track.max_track_sizing_function.is_intrinsic(available_size)) {
  640. track.growth_limit = INFINITY;
  641. } else {
  642. VERIFY_NOT_REACHED();
  643. }
  644. // In all cases, if the growth limit is less than the base size, increase the growth limit to match
  645. // the base size.
  646. if (track.growth_limit < track.base_size)
  647. track.growth_limit = track.base_size;
  648. }
  649. }
  650. void GridFormattingContext::resolve_intrinsic_track_sizes(AvailableSpace const& available_space, GridDimension const dimension)
  651. {
  652. // https://www.w3.org/TR/css-grid-2/#algo-content
  653. // 12.5. Resolve Intrinsic Track Sizes
  654. // This step resolves intrinsic track sizing functions to absolute lengths. First it resolves those
  655. // sizes based on items that are contained wholly within a single track. Then it gradually adds in
  656. // the space requirements of items that span multiple tracks, evenly distributing the extra space
  657. // across those tracks insofar as possible.
  658. auto& tracks_and_gaps = dimension == GridDimension::Column ? m_grid_columns_and_gaps : m_grid_rows_and_gaps;
  659. // FIXME: 1. Shim baseline-aligned items so their intrinsic size contributions reflect their baseline alignment.
  660. // 2. Size tracks to fit non-spanning items:
  661. increase_sizes_to_accommodate_spanning_items_crossing_content_sized_tracks(available_space, dimension, 1);
  662. // 3. Increase sizes to accommodate spanning items crossing content-sized tracks: Next, consider the
  663. // items with a span of 2 that do not span a track with a flexible sizing function.
  664. // Repeat incrementally for items with greater spans until all items have been considered.
  665. size_t max_item_span = 1;
  666. for (auto& item : m_grid_items)
  667. max_item_span = max(item.span(dimension), max_item_span);
  668. for (size_t span = 2; span <= max_item_span; span++) {
  669. increase_sizes_to_accommodate_spanning_items_crossing_content_sized_tracks(available_space, dimension, 2);
  670. }
  671. // 4. Increase sizes to accommodate spanning items crossing flexible tracks: Next, repeat the previous
  672. // step instead considering (together, rather than grouped by span size) all items that do span a
  673. // track with a flexible sizing function while
  674. increase_sizes_to_accommodate_spanning_items_crossing_flexible_tracks(dimension);
  675. // 5. If any track still has an infinite growth limit (because, for example, it had no items placed in
  676. // it or it is a flexible track), set its growth limit to its base size.
  677. for (auto& track : tracks_and_gaps) {
  678. if (!isfinite(track.growth_limit.to_double())) {
  679. track.growth_limit = track.base_size;
  680. }
  681. }
  682. }
  683. template<typename Match>
  684. void GridFormattingContext::distribute_extra_space_across_spanned_tracks_base_size(GridDimension dimension, CSSPixels item_size_contribution, SpaceDistributionPhase phase, Vector<GridTrack&>& spanned_tracks, Match matcher)
  685. {
  686. auto& available_size = dimension == GridDimension::Column ? m_available_space->width : m_available_space->height;
  687. Vector<GridTrack&> affected_tracks;
  688. for (auto& track : spanned_tracks) {
  689. if (matcher(track))
  690. affected_tracks.append(track);
  691. }
  692. for (auto& track : affected_tracks)
  693. track.item_incurred_increase = 0;
  694. // 1. Find the space to distribute:
  695. CSSPixels spanned_tracks_sizes_sum = 0;
  696. for (auto& track : spanned_tracks)
  697. spanned_tracks_sizes_sum += track.base_size;
  698. // Subtract the corresponding size of every spanned track from the item’s size contribution to find the item’s
  699. // remaining size contribution.
  700. auto extra_space = max(CSSPixels(0), item_size_contribution - spanned_tracks_sizes_sum);
  701. // 2. Distribute space up to limits:
  702. // FIXME: If a fixed-point type were used to represent CSS pixels, it would be possible to compare with 0
  703. // instead of epsilon.
  704. while (extra_space > NumericLimits<double>().epsilon()) {
  705. auto all_frozen = all_of(affected_tracks, [](auto const& track) { return track.base_size_frozen; });
  706. if (all_frozen)
  707. break;
  708. // Find the item-incurred increase for each spanned track with an affected size by: distributing the space
  709. // equally among such tracks, freezing a track’s item-incurred increase as its affected size + item-incurred
  710. // increase reaches its limit
  711. CSSPixels increase_per_track = extra_space / affected_tracks.size();
  712. for (auto& track : affected_tracks) {
  713. if (track.base_size_frozen)
  714. continue;
  715. if (increase_per_track >= track.growth_limit) {
  716. track.base_size_frozen = true;
  717. track.item_incurred_increase = track.growth_limit;
  718. extra_space -= track.growth_limit;
  719. } else {
  720. track.item_incurred_increase += increase_per_track;
  721. extra_space -= increase_per_track;
  722. }
  723. }
  724. }
  725. // 3. Distribute space beyond limits
  726. if (extra_space > 0) {
  727. Vector<GridTrack&> tracks_to_grow_beyond_limits;
  728. // If space remains after all tracks are frozen, unfreeze and continue to
  729. // distribute space to the item-incurred increase of...
  730. if (phase == SpaceDistributionPhase::AccommodateMinimumContribution || phase == SpaceDistributionPhase::AccommodateMinContentContribution) {
  731. // when accommodating minimum contributions or accommodating min-content contributions: any affected track
  732. // that happens to also have an intrinsic max track sizing function
  733. for (auto& track : affected_tracks) {
  734. if (track.max_track_sizing_function.is_intrinsic(available_size))
  735. tracks_to_grow_beyond_limits.append(track);
  736. }
  737. // if there are no such tracks, then all affected tracks.
  738. if (tracks_to_grow_beyond_limits.size() == 0)
  739. tracks_to_grow_beyond_limits = affected_tracks;
  740. }
  741. // FIXME: when accommodating max-content contributions: any affected track that happens to also have a
  742. // max-content max track sizing function; if there are no such tracks, then all affected tracks.
  743. CSSPixels increase_per_track = extra_space / affected_tracks.size();
  744. for (auto& track : affected_tracks)
  745. track.item_incurred_increase += increase_per_track;
  746. }
  747. // 4. For each affected track, if the track’s item-incurred increase is larger than the track’s planned increase
  748. // set the track’s planned increase to that value.
  749. for (auto& track : affected_tracks) {
  750. if (track.item_incurred_increase > track.planned_increase)
  751. track.planned_increase = track.item_incurred_increase;
  752. }
  753. }
  754. template<typename Match>
  755. void GridFormattingContext::distribute_extra_space_across_spanned_tracks_growth_limit(CSSPixels item_size_contribution, Vector<GridTrack&>& spanned_tracks, Match matcher)
  756. {
  757. Vector<GridTrack&> affected_tracks;
  758. for (auto& track : spanned_tracks) {
  759. if (matcher(track))
  760. affected_tracks.append(track);
  761. }
  762. for (auto& track : affected_tracks)
  763. track.item_incurred_increase = 0;
  764. // 1. Find the space to distribute:
  765. CSSPixels spanned_tracks_sizes_sum = 0;
  766. for (auto& track : spanned_tracks) {
  767. if (isfinite(track.growth_limit.to_double())) {
  768. spanned_tracks_sizes_sum += track.growth_limit;
  769. } else {
  770. spanned_tracks_sizes_sum += track.base_size;
  771. }
  772. }
  773. // Subtract the corresponding size of every spanned track from the item’s size contribution to find the item’s
  774. // remaining size contribution.
  775. auto extra_space = max(CSSPixels(0), item_size_contribution - spanned_tracks_sizes_sum);
  776. // 2. Distribute space up to limits:
  777. // FIXME: If a fixed-point type were used to represent CSS pixels, it would be possible to compare with 0
  778. // instead of epsilon.
  779. while (extra_space > NumericLimits<double>().epsilon()) {
  780. auto all_frozen = all_of(affected_tracks, [](auto const& track) { return track.growth_limit_frozen; });
  781. if (all_frozen)
  782. break;
  783. // Find the item-incurred increase for each spanned track with an affected size by: distributing the space
  784. // equally among such tracks, freezing a track’s item-incurred increase as its affected size + item-incurred
  785. // increase reaches its limit
  786. CSSPixels increase_per_track = extra_space / affected_tracks.size();
  787. for (auto& track : affected_tracks) {
  788. if (track.growth_limit_frozen)
  789. continue;
  790. // For growth limits, the limit is infinity if it is marked as infinitely growable, and equal to the
  791. // growth limit otherwise.
  792. auto limit = track.infinitely_growable ? INFINITY : track.growth_limit;
  793. if (increase_per_track >= limit) {
  794. track.growth_limit_frozen = true;
  795. track.item_incurred_increase = limit;
  796. extra_space -= limit;
  797. } else {
  798. track.item_incurred_increase += increase_per_track;
  799. extra_space -= increase_per_track;
  800. }
  801. }
  802. }
  803. // FIXME: 3. Distribute space beyond limits
  804. // 4. For each affected track, if the track’s item-incurred increase is larger than the track’s planned increase
  805. // set the track’s planned increase to that value.
  806. for (auto& track : spanned_tracks) {
  807. if (track.item_incurred_increase > track.planned_increase)
  808. track.planned_increase = track.item_incurred_increase;
  809. }
  810. }
  811. void GridFormattingContext::increase_sizes_to_accommodate_spanning_items_crossing_content_sized_tracks(AvailableSpace const& available_space, GridDimension const dimension, size_t span)
  812. {
  813. auto& available_size = dimension == GridDimension::Column ? available_space.width : available_space.height;
  814. auto& tracks = dimension == GridDimension::Column ? m_grid_columns : m_grid_rows;
  815. for (auto& item : m_grid_items) {
  816. auto const item_span = item.span(dimension);
  817. if (item_span != span)
  818. continue;
  819. Vector<GridTrack&> spanned_tracks;
  820. for_each_spanned_track_by_item(item, dimension, [&](GridTrack& track) {
  821. spanned_tracks.append(track);
  822. });
  823. auto item_spans_tracks_with_flexible_sizing_function = any_of(spanned_tracks, [](auto& track) {
  824. return track.min_track_sizing_function.is_flexible_length() || track.max_track_sizing_function.is_flexible_length();
  825. });
  826. if (item_spans_tracks_with_flexible_sizing_function)
  827. continue;
  828. // 1. For intrinsic minimums: First increase the base size of tracks with an intrinsic min track sizing
  829. // function by distributing extra space as needed to accommodate these items’ minimum contributions.
  830. auto item_size_contribution = [&] {
  831. // If the grid container is being sized under a min- or max-content constraint, use the items’ limited
  832. // min-content contributions in place of their minimum contributions here.
  833. if (available_size.is_intrinsic_sizing_constraint())
  834. return calculate_limited_min_content_contribution(item, dimension);
  835. return calculate_minimum_contribution(item, dimension);
  836. }();
  837. distribute_extra_space_across_spanned_tracks_base_size(dimension, item_size_contribution, SpaceDistributionPhase::AccommodateMinimumContribution, spanned_tracks, [&](GridTrack const& track) {
  838. return track.min_track_sizing_function.is_intrinsic(available_size);
  839. });
  840. for (auto& track : spanned_tracks) {
  841. track.base_size += track.planned_increase;
  842. track.planned_increase = 0;
  843. }
  844. // 2. For content-based minimums: Next continue to increase the base size of tracks with a min track
  845. // sizing function of min-content or max-content by distributing extra space as needed to account for
  846. // these items' min-content contributions.
  847. auto item_min_content_contribution = calculate_min_content_contribution(item, dimension);
  848. distribute_extra_space_across_spanned_tracks_base_size(dimension, item_min_content_contribution, SpaceDistributionPhase::AccommodateMinContentContribution, spanned_tracks, [&](GridTrack const& track) {
  849. return track.min_track_sizing_function.is_min_content() || track.min_track_sizing_function.is_max_content();
  850. });
  851. for (auto& track : spanned_tracks) {
  852. track.base_size += track.planned_increase;
  853. track.planned_increase = 0;
  854. }
  855. // 3. For max-content minimums: Next, if the grid container is being sized under a max-content constraint,
  856. // continue to increase the base size of tracks with a min track sizing function of auto or max-content by
  857. // distributing extra space as needed to account for these items' limited max-content contributions.
  858. if (available_size.is_max_content()) {
  859. auto item_limited_max_content_contribution = calculate_limited_max_content_contribution(item, dimension);
  860. distribute_extra_space_across_spanned_tracks_base_size(dimension, item_limited_max_content_contribution, SpaceDistributionPhase::AccommodateMaxContentContribution, spanned_tracks, [&](GridTrack const& track) {
  861. return track.min_track_sizing_function.is_auto(available_size) || track.min_track_sizing_function.is_max_content();
  862. });
  863. for (auto& track : spanned_tracks) {
  864. track.base_size += track.planned_increase;
  865. track.planned_increase = 0;
  866. }
  867. }
  868. // 4. If at this point any track’s growth limit is now less than its base size, increase its growth limit to
  869. // match its base size.
  870. for (auto& track : tracks) {
  871. if (track.growth_limit < track.base_size)
  872. track.growth_limit = track.base_size;
  873. }
  874. // 5. For intrinsic maximums: Next increase the growth limit of tracks with an intrinsic max track sizing
  875. distribute_extra_space_across_spanned_tracks_growth_limit(item_min_content_contribution, spanned_tracks, [&](GridTrack const& track) {
  876. return track.max_track_sizing_function.is_intrinsic(available_size);
  877. });
  878. for (auto& track : spanned_tracks) {
  879. if (!isfinite(track.growth_limit.to_double())) {
  880. // If the affected size is an infinite growth limit, set it to the track’s base size plus the planned increase.
  881. track.growth_limit = track.base_size + track.planned_increase;
  882. // Mark any tracks whose growth limit changed from infinite to finite in this step as infinitely growable
  883. // for the next step.
  884. track.infinitely_growable = true;
  885. } else {
  886. track.growth_limit += track.planned_increase;
  887. }
  888. track.planned_increase = 0;
  889. }
  890. // 6. For max-content maximums: Lastly continue to increase the growth limit of tracks with a max track
  891. // sizing function of max-content by distributing extra space as needed to account for these items' max-
  892. // content contributions.
  893. auto item_max_content_contribution = calculate_max_content_contribution(item, dimension);
  894. distribute_extra_space_across_spanned_tracks_growth_limit(item_max_content_contribution, spanned_tracks, [&](GridTrack const& track) {
  895. return track.max_track_sizing_function.is_max_content() || track.max_track_sizing_function.is_auto(available_size);
  896. });
  897. for (auto& track : spanned_tracks) {
  898. if (!isfinite(track.growth_limit.to_double())) {
  899. // If the affected size is an infinite growth limit, set it to the track’s base size plus the planned increase.
  900. track.growth_limit = track.base_size + track.planned_increase;
  901. } else {
  902. track.growth_limit += track.planned_increase;
  903. }
  904. track.planned_increase = 0;
  905. }
  906. }
  907. }
  908. void GridFormattingContext::increase_sizes_to_accommodate_spanning_items_crossing_flexible_tracks(GridDimension const dimension)
  909. {
  910. auto& tracks = dimension == GridDimension::Column ? m_grid_columns : m_grid_rows;
  911. for (auto& item : m_grid_items) {
  912. Vector<GridTrack&> spanned_tracks;
  913. for_each_spanned_track_by_item(item, dimension, [&](GridTrack& track) {
  914. spanned_tracks.append(track);
  915. });
  916. auto item_spans_tracks_with_flexible_sizing_function = any_of(spanned_tracks, [](auto& track) {
  917. return track.min_track_sizing_function.is_flexible_length() || track.max_track_sizing_function.is_flexible_length();
  918. });
  919. if (!item_spans_tracks_with_flexible_sizing_function)
  920. continue;
  921. // 1. For intrinsic minimums: First increase the base size of tracks with an intrinsic min track sizing
  922. // function by distributing extra space as needed to accommodate these items’ minimum contributions.
  923. auto item_minimum_contribution = automatic_minimum_size(item, dimension);
  924. distribute_extra_space_across_spanned_tracks_base_size(dimension,
  925. item_minimum_contribution, SpaceDistributionPhase::AccommodateMinimumContribution, spanned_tracks, [&](GridTrack const& track) {
  926. return track.min_track_sizing_function.is_flexible_length();
  927. });
  928. for (auto& track : spanned_tracks) {
  929. track.base_size += track.planned_increase;
  930. }
  931. // 4. If at this point any track’s growth limit is now less than its base size, increase its growth limit to
  932. // match its base size.
  933. for (auto& track : tracks) {
  934. if (track.growth_limit < track.base_size)
  935. track.growth_limit = track.base_size;
  936. }
  937. }
  938. }
  939. void GridFormattingContext::maximize_tracks(AvailableSpace const& available_space, GridDimension const dimension)
  940. {
  941. // https://www.w3.org/TR/css-grid-2/#algo-grow-tracks
  942. // 12.6. Maximize Tracks
  943. auto& tracks = dimension == GridDimension::Column ? m_grid_columns : m_grid_rows;
  944. auto get_free_space_px = [&]() -> CSSPixels {
  945. // For the purpose of this step: if sizing the grid container under a max-content constraint, the
  946. // free space is infinite; if sizing under a min-content constraint, the free space is zero.
  947. auto free_space = get_free_space(available_space, dimension);
  948. if (free_space.is_max_content()) {
  949. return INFINITY;
  950. } else if (free_space.is_min_content()) {
  951. return 0;
  952. } else {
  953. return free_space.to_px();
  954. }
  955. };
  956. auto free_space_px = get_free_space_px();
  957. // If the free space is positive, distribute it equally to the base sizes of all tracks, freezing
  958. // tracks as they reach their growth limits (and continuing to grow the unfrozen tracks as needed).
  959. while (free_space_px > 0) {
  960. auto free_space_to_distribute_per_track = free_space_px / tracks.size();
  961. for (auto& track : tracks) {
  962. if (track.base_size_frozen)
  963. continue;
  964. VERIFY(isfinite(track.growth_limit.to_double()));
  965. track.base_size = min(track.growth_limit, track.base_size + free_space_to_distribute_per_track);
  966. }
  967. if (get_free_space_px() == free_space_px)
  968. break;
  969. free_space_px = get_free_space_px();
  970. }
  971. // FIXME: If this would cause the grid to be larger than the grid container’s inner size as limited by its
  972. // max-width/height, then redo this step, treating the available grid space as equal to the grid
  973. // container’s inner size when it’s sized to its max-width/height.
  974. }
  975. void GridFormattingContext::expand_flexible_tracks(AvailableSpace const& available_space, GridDimension const dimension)
  976. {
  977. // https://drafts.csswg.org/css-grid/#algo-flex-tracks
  978. // 12.7. Expand Flexible Tracks
  979. // This step sizes flexible tracks using the largest value it can assign to an fr without exceeding
  980. // the available space.
  981. auto& tracks_and_gaps = dimension == GridDimension::Column ? m_grid_columns_and_gaps : m_grid_rows_and_gaps;
  982. auto& tracks = dimension == GridDimension::Column ? m_grid_columns : m_grid_rows;
  983. auto& available_size = dimension == GridDimension::Column ? available_space.width : available_space.height;
  984. auto find_the_size_of_an_fr = [&](Vector<GridTrack&> tracks, CSSPixels space_to_fill) -> CSSPixels {
  985. // https://www.w3.org/TR/css-grid-2/#algo-find-fr-size
  986. // 1. Let leftover space be the space to fill minus the base sizes of the non-flexible grid tracks.
  987. auto leftover_space = space_to_fill;
  988. for (auto& track : tracks) {
  989. if (!track.max_track_sizing_function.is_flexible_length()) {
  990. leftover_space -= track.base_size;
  991. }
  992. }
  993. // 2. Let flex factor sum be the sum of the flex factors of the flexible tracks.
  994. // If this value is less than 1, set it to 1 instead.
  995. auto flex_factor_sum = 0;
  996. for (auto& track : tracks) {
  997. if (track.max_track_sizing_function.is_flexible_length())
  998. flex_factor_sum += track.max_track_sizing_function.flex_factor();
  999. }
  1000. if (flex_factor_sum < 1)
  1001. flex_factor_sum = 1;
  1002. // 3. Let the hypothetical fr size be the leftover space divided by the flex factor sum.
  1003. auto hypothetical_fr_size = leftover_space / flex_factor_sum;
  1004. // FIXME: 4. If the product of the hypothetical fr size and a flexible track’s flex factor is less than the track’s
  1005. // base size, restart this algorithm treating all such tracks as inflexible.
  1006. // 5. Return the hypothetical fr size.
  1007. return hypothetical_fr_size;
  1008. };
  1009. // First, find the grid’s used flex fraction:
  1010. auto flex_fraction = [&]() {
  1011. auto free_space = get_free_space(available_space, dimension);
  1012. // If the free space is zero or if sizing the grid container under a min-content constraint:
  1013. if (free_space.to_px() == 0 || available_size.is_min_content()) {
  1014. // The used flex fraction is zero.
  1015. return CSSPixels(0);
  1016. // Otherwise, if the free space is a definite length:
  1017. } else if (free_space.is_definite()) {
  1018. // The used flex fraction is the result of finding the size of an fr using all of the grid tracks and a space
  1019. // to fill of the available grid space.
  1020. return find_the_size_of_an_fr(tracks_and_gaps, available_size.to_px());
  1021. } else {
  1022. // Otherwise, if the free space is an indefinite length:
  1023. // The used flex fraction is the maximum of:
  1024. CSSPixels result = 0;
  1025. // For each flexible track, if the flexible track’s flex factor is greater than one, the result of dividing
  1026. // the track’s base size by its flex factor; otherwise, the track’s base size.
  1027. for (auto& track : tracks) {
  1028. if (track.max_track_sizing_function.is_flexible_length()) {
  1029. if (track.max_track_sizing_function.flex_factor() > 1) {
  1030. result = max(result, track.base_size / track.max_track_sizing_function.flex_factor());
  1031. } else {
  1032. result = max(result, track.base_size);
  1033. }
  1034. }
  1035. }
  1036. // For each grid item that crosses a flexible track, the result of finding the size of an fr using all the
  1037. // grid tracks that the item crosses and a space to fill of the item’s max-content contribution.
  1038. for (auto& item : m_grid_items) {
  1039. Vector<GridTrack&> spanned_tracks;
  1040. bool crosses_flexible_track = false;
  1041. for_each_spanned_track_by_item(item, dimension, [&](GridTrack& track) {
  1042. spanned_tracks.append(track);
  1043. if (track.max_track_sizing_function.is_flexible_length())
  1044. crosses_flexible_track = true;
  1045. });
  1046. if (crosses_flexible_track)
  1047. result = max(result, find_the_size_of_an_fr(spanned_tracks, calculate_max_content_size(item, dimension)));
  1048. }
  1049. return result;
  1050. }
  1051. }();
  1052. // For each flexible track, if the product of the used flex fraction and the track’s flex factor is greater than
  1053. // the track’s base size, set its base size to that product.
  1054. for (auto& track : tracks_and_gaps) {
  1055. if (track.max_track_sizing_function.flex_factor() * flex_fraction > track.base_size) {
  1056. track.base_size = track.max_track_sizing_function.flex_factor() * flex_fraction;
  1057. }
  1058. }
  1059. }
  1060. void GridFormattingContext::stretch_auto_tracks(AvailableSpace const& available_space, GridDimension const dimension)
  1061. {
  1062. // https://drafts.csswg.org/css-grid/#algo-stretch
  1063. // 12.8. Stretch auto Tracks
  1064. auto& tracks_and_gaps = dimension == GridDimension::Column ? m_grid_columns_and_gaps : m_grid_rows_and_gaps;
  1065. auto& available_size = dimension == GridDimension::Column ? available_space.width : available_space.height;
  1066. // When the content-distribution property of the grid container is normal or stretch in this axis,
  1067. // this step expands tracks that have an auto max track sizing function by dividing any remaining
  1068. // positive, definite free space equally amongst them. If the free space is indefinite, but the grid
  1069. // container has a definite min-width/height, use that size to calculate the free space for this
  1070. // step instead.
  1071. CSSPixels used_space = 0;
  1072. for (auto& track : tracks_and_gaps) {
  1073. if (!track.max_track_sizing_function.is_auto(available_size))
  1074. used_space += track.base_size;
  1075. }
  1076. CSSPixels remaining_space = available_size.is_definite() ? available_size.to_px() - used_space : 0;
  1077. auto count_of_auto_max_sizing_tracks = 0;
  1078. for (auto& track : tracks_and_gaps) {
  1079. if (track.max_track_sizing_function.is_auto(available_size))
  1080. count_of_auto_max_sizing_tracks++;
  1081. }
  1082. for (auto& track : tracks_and_gaps) {
  1083. if (track.max_track_sizing_function.is_auto(available_size))
  1084. track.base_size = max(track.base_size, remaining_space / count_of_auto_max_sizing_tracks);
  1085. }
  1086. }
  1087. void GridFormattingContext::run_track_sizing(AvailableSpace const& available_space, GridDimension const dimension)
  1088. {
  1089. // https://www.w3.org/TR/css-grid-2/#algo-track-sizing
  1090. // 12.3. Track Sizing Algorithm
  1091. // 1. Initialize Track Sizes
  1092. initialize_track_sizes(available_space, dimension);
  1093. // 2. Resolve Intrinsic Track Sizes
  1094. resolve_intrinsic_track_sizes(available_space, dimension);
  1095. // 3. Maximize Tracks
  1096. maximize_tracks(available_space, dimension);
  1097. // 4. Expand Flexible Tracks
  1098. expand_flexible_tracks(available_space, dimension);
  1099. // 5. Expand Stretched auto Tracks
  1100. stretch_auto_tracks(available_space, dimension);
  1101. // If calculating the layout of a grid item in this step depends on the available space in the block
  1102. // axis, assume the available space that it would have if any row with a definite max track sizing
  1103. // function had that size and all other rows were infinite. If both the grid container and all
  1104. // tracks have definite sizes, also apply align-content to find the final effective size of any gaps
  1105. // spanned by such items; otherwise ignore the effects of track alignment in this estimation.
  1106. }
  1107. void GridFormattingContext::build_grid_areas()
  1108. {
  1109. // https://www.w3.org/TR/css-grid-2/#grid-template-areas-property
  1110. // If a named grid area spans multiple grid cells, but those cells do not form a single
  1111. // filled-in rectangle, the declaration is invalid.
  1112. for (size_t y = 0; y < grid_container().computed_values().grid_template_areas().size(); y++) {
  1113. for (size_t x = 0; x < grid_container().computed_values().grid_template_areas()[y].size(); x++) {
  1114. auto grid_area_name = grid_container().computed_values().grid_template_areas()[y][x];
  1115. auto maybe_grid_area = m_grid_areas.get(grid_area_name);
  1116. if (!maybe_grid_area.has_value()) {
  1117. m_grid_areas.set(grid_area_name, { grid_area_name, y, y + 1, x, x + 1 });
  1118. } else {
  1119. auto& grid_area = maybe_grid_area.value();
  1120. if (grid_area.row_start == y) {
  1121. if (grid_area.column_end == x)
  1122. grid_area.column_end = grid_area.column_end + 1;
  1123. else
  1124. return;
  1125. } else {
  1126. if (grid_area.row_end == y) {
  1127. if (grid_area.column_start != x)
  1128. return;
  1129. grid_area.row_end = grid_area.row_end + 1;
  1130. } else if (grid_area.row_end == y + 1) {
  1131. if (grid_area.column_end < x || grid_area.column_end > x + 1)
  1132. return;
  1133. } else {
  1134. return;
  1135. }
  1136. }
  1137. }
  1138. }
  1139. }
  1140. }
  1141. void GridFormattingContext::place_grid_items(AvailableSpace const& available_space)
  1142. {
  1143. auto grid_template_columns = grid_container().computed_values().grid_template_columns();
  1144. auto grid_template_rows = grid_container().computed_values().grid_template_rows();
  1145. auto column_count = get_count_of_tracks(grid_template_columns.track_list(), available_space);
  1146. auto row_count = get_count_of_tracks(grid_template_rows.track_list(), available_space);
  1147. // https://drafts.csswg.org/css-grid/#overview-placement
  1148. // 2.2. Placing Items
  1149. // The contents of the grid container are organized into individual grid items (analogous to
  1150. // flex items), which are then assigned to predefined areas in the grid. They can be explicitly
  1151. // placed using coordinates through the grid-placement properties or implicitly placed into
  1152. // empty areas using auto-placement.
  1153. grid_container().for_each_child_of_type<Box>([&](Box& child_box) {
  1154. if (can_skip_is_anonymous_text_run(child_box))
  1155. return IterationDecision::Continue;
  1156. m_boxes_to_place.append(child_box);
  1157. return IterationDecision::Continue;
  1158. });
  1159. m_occupation_grid = OccupationGrid(column_count, row_count);
  1160. build_grid_areas();
  1161. // https://drafts.csswg.org/css-grid/#auto-placement-algo
  1162. // 8.5. Grid Item Placement Algorithm
  1163. // FIXME: 0. Generate anonymous grid items
  1164. // 1. Position anything that's not auto-positioned.
  1165. for (size_t i = 0; i < m_boxes_to_place.size(); i++) {
  1166. auto const& child_box = m_boxes_to_place[i];
  1167. if (is_auto_positioned_row(child_box->computed_values().grid_row_start(), child_box->computed_values().grid_row_end())
  1168. || is_auto_positioned_column(child_box->computed_values().grid_column_start(), child_box->computed_values().grid_column_end()))
  1169. continue;
  1170. place_item_with_row_and_column_position(child_box);
  1171. m_boxes_to_place.remove(i);
  1172. i--;
  1173. }
  1174. // 2. Process the items locked to a given row.
  1175. // FIXME: Do "dense" packing
  1176. for (size_t i = 0; i < m_boxes_to_place.size(); i++) {
  1177. auto const& child_box = m_boxes_to_place[i];
  1178. if (is_auto_positioned_row(child_box->computed_values().grid_row_start(), child_box->computed_values().grid_row_end()))
  1179. continue;
  1180. place_item_with_row_position(child_box);
  1181. m_boxes_to_place.remove(i);
  1182. i--;
  1183. }
  1184. // 3. Determine the columns in the implicit grid.
  1185. // NOTE: "implicit grid" here is the same as the m_occupation_grid
  1186. // 3.1. Start with the columns from the explicit grid.
  1187. // NOTE: Done in step 1.
  1188. // 3.2. Among all the items with a definite column position (explicitly positioned items, items
  1189. // positioned in the previous step, and items not yet positioned but with a definite column) add
  1190. // columns to the beginning and end of the implicit grid as necessary to accommodate those items.
  1191. // NOTE: "Explicitly positioned items" and "items positioned in the previous step" done in step 1
  1192. // and 2, respectively. Adding columns for "items not yet positioned but with a definite column"
  1193. // will be done in step 4.
  1194. // 3.3. If the largest column span among all the items without a definite column position is larger
  1195. // than the width of the implicit grid, add columns to the end of the implicit grid to accommodate
  1196. // that column span.
  1197. for (auto const& child_box : m_boxes_to_place) {
  1198. int column_span = 1;
  1199. if (child_box->computed_values().grid_column_start().is_span())
  1200. column_span = child_box->computed_values().grid_column_start().raw_value();
  1201. else if (child_box->computed_values().grid_column_end().is_span())
  1202. column_span = child_box->computed_values().grid_column_end().raw_value();
  1203. if (column_span - 1 > m_occupation_grid.max_column_index())
  1204. m_occupation_grid.set_max_column_index(column_span - 1);
  1205. }
  1206. // 4. Position the remaining grid items.
  1207. // For each grid item that hasn't been positioned by the previous steps, in order-modified document
  1208. // order:
  1209. auto auto_placement_cursor_x = 0;
  1210. auto auto_placement_cursor_y = 0;
  1211. for (size_t i = 0; i < m_boxes_to_place.size(); i++) {
  1212. auto const& child_box = m_boxes_to_place[i];
  1213. // 4.1. For sparse packing:
  1214. // FIXME: no distinction made. See #4.2
  1215. // 4.1.1. If the item has a definite column position:
  1216. if (!is_auto_positioned_column(child_box->computed_values().grid_column_start(), child_box->computed_values().grid_column_end()))
  1217. place_item_with_column_position(child_box, auto_placement_cursor_x, auto_placement_cursor_y);
  1218. // 4.1.2. If the item has an automatic grid position in both axes:
  1219. else
  1220. place_item_with_no_declared_position(child_box, auto_placement_cursor_x, auto_placement_cursor_y);
  1221. m_boxes_to_place.remove(i);
  1222. i--;
  1223. // FIXME: 4.2. For dense packing:
  1224. }
  1225. // NOTE: When final implicit grid sizes are known, we can offset their positions so leftmost grid track has 0 index.
  1226. for (auto& item : m_grid_items) {
  1227. item.row = item.row - m_occupation_grid.min_row_index();
  1228. item.column = item.column - m_occupation_grid.min_column_index();
  1229. }
  1230. }
  1231. void GridFormattingContext::determine_grid_container_height()
  1232. {
  1233. CSSPixels total_y = 0;
  1234. for (auto& grid_row : m_grid_rows_and_gaps)
  1235. total_y += grid_row.base_size;
  1236. m_automatic_content_height = total_y;
  1237. }
  1238. CSS::JustifyItems GridFormattingContext::justification_for_item(Box const& box) const
  1239. {
  1240. switch (box.computed_values().justify_self()) {
  1241. case CSS::JustifySelf::Auto:
  1242. return grid_container().computed_values().justify_items();
  1243. case CSS::JustifySelf::End:
  1244. return CSS::JustifyItems::End;
  1245. case CSS::JustifySelf::Normal:
  1246. return CSS::JustifyItems::Normal;
  1247. case CSS::JustifySelf::SelfStart:
  1248. return CSS::JustifyItems::SelfStart;
  1249. case CSS::JustifySelf::SelfEnd:
  1250. return CSS::JustifyItems::SelfEnd;
  1251. case CSS::JustifySelf::FlexStart:
  1252. return CSS::JustifyItems::FlexStart;
  1253. case CSS::JustifySelf::FlexEnd:
  1254. return CSS::JustifyItems::FlexEnd;
  1255. case CSS::JustifySelf::Center:
  1256. return CSS::JustifyItems::Center;
  1257. case CSS::JustifySelf::Baseline:
  1258. return CSS::JustifyItems::Baseline;
  1259. case CSS::JustifySelf::Start:
  1260. return CSS::JustifyItems::Start;
  1261. case CSS::JustifySelf::Stretch:
  1262. return CSS::JustifyItems::Stretch;
  1263. case CSS::JustifySelf::Safe:
  1264. return CSS::JustifyItems::Safe;
  1265. case CSS::JustifySelf::Unsafe:
  1266. return CSS::JustifyItems::Unsafe;
  1267. default:
  1268. VERIFY_NOT_REACHED();
  1269. }
  1270. }
  1271. void GridFormattingContext::resolve_grid_item_widths()
  1272. {
  1273. for (auto& item : m_grid_items) {
  1274. CSSPixels containing_block_width = containing_block_size_for_item(item, GridDimension::Column);
  1275. auto& box_state = m_state.get_mutable(item.box);
  1276. auto const& computed_values = item.box->computed_values();
  1277. auto const& computed_width = computed_values.width();
  1278. auto try_compute_width = [&](CSSPixels a_width) {
  1279. CSSPixels width = a_width;
  1280. // Auto margins absorb positive free space prior to alignment via the box alignment properties.
  1281. auto free_space_left_for_margins = containing_block_width - width - box_state.border_left - box_state.border_right - box_state.padding_left - box_state.padding_right - box_state.margin_left - box_state.margin_right;
  1282. if (computed_values.margin().left().is_auto() && computed_values.margin().right().is_auto()) {
  1283. box_state.margin_left = free_space_left_for_margins / 2;
  1284. box_state.margin_right = free_space_left_for_margins / 2;
  1285. } else if (computed_values.margin().left().is_auto()) {
  1286. box_state.margin_left = free_space_left_for_margins;
  1287. } else if (computed_values.margin().right().is_auto()) {
  1288. box_state.margin_right = free_space_left_for_margins;
  1289. } else if (computed_values.width().is_auto()) {
  1290. width += free_space_left_for_margins;
  1291. }
  1292. auto free_space_left_for_alignment = containing_block_width - a_width - box_state.border_left - box_state.border_right - box_state.padding_left - box_state.padding_right - box_state.margin_left - box_state.margin_right;
  1293. switch (justification_for_item(item.box)) {
  1294. case CSS::JustifyItems::Normal:
  1295. case CSS::JustifyItems::Stretch:
  1296. return width;
  1297. case CSS::JustifyItems::Center:
  1298. box_state.margin_left += free_space_left_for_alignment / 2;
  1299. box_state.margin_right += free_space_left_for_alignment / 2;
  1300. return a_width;
  1301. case CSS::JustifyItems::Start:
  1302. case CSS::JustifyItems::FlexStart:
  1303. box_state.margin_right += free_space_left_for_alignment;
  1304. return a_width;
  1305. case CSS::JustifyItems::End:
  1306. case CSS::JustifyItems::FlexEnd:
  1307. box_state.margin_left += free_space_left_for_alignment;
  1308. return a_width;
  1309. default:
  1310. break;
  1311. }
  1312. return width;
  1313. };
  1314. CSSPixels used_width;
  1315. if (computed_width.is_auto()) {
  1316. used_width = try_compute_width(calculate_fit_content_width(item.box, get_available_space_for_item(item)));
  1317. } else if (computed_width.is_fit_content()) {
  1318. used_width = try_compute_width(calculate_fit_content_width(item.box, get_available_space_for_item(item)));
  1319. } else {
  1320. used_width = try_compute_width(computed_width.to_px(grid_container(), containing_block_width));
  1321. }
  1322. box_state.set_content_width(used_width);
  1323. }
  1324. }
  1325. void GridFormattingContext::resolve_grid_item_heights()
  1326. {
  1327. for (auto& item : m_grid_items) {
  1328. CSSPixels containing_block_height = containing_block_size_for_item(item, GridDimension::Row);
  1329. auto border_top = item.box->computed_values().border_top().width;
  1330. auto border_bottom = item.box->computed_values().border_bottom().width;
  1331. auto& box_state = m_state.get_mutable(item.box);
  1332. box_state.border_top = border_top;
  1333. box_state.border_bottom = border_bottom;
  1334. auto const& computed_height = item.box->computed_values().height();
  1335. auto used_height = computed_height.is_auto()
  1336. ? (containing_block_height - box_state.margin_box_top() - box_state.margin_box_bottom())
  1337. : computed_height.to_px(grid_container(), containing_block_height);
  1338. box_state.set_content_height(used_height);
  1339. }
  1340. }
  1341. void GridFormattingContext::resolve_items_box_metrics(GridDimension const dimension)
  1342. {
  1343. for (auto& item : m_grid_items) {
  1344. auto& box_state = m_state.get_mutable(item.box);
  1345. auto& computed_values = item.box->computed_values();
  1346. if (dimension == GridDimension::Column) {
  1347. CSSPixels containing_block_width = containing_block_size_for_item(item, GridDimension::Column);
  1348. box_state.padding_right = computed_values.padding().right().to_px(grid_container(), containing_block_width);
  1349. box_state.padding_left = computed_values.padding().left().to_px(grid_container(), containing_block_width);
  1350. box_state.margin_right = computed_values.margin().right().to_px(grid_container(), containing_block_width);
  1351. box_state.margin_left = computed_values.margin().left().to_px(grid_container(), containing_block_width);
  1352. box_state.border_right = computed_values.border_right().width;
  1353. box_state.border_left = computed_values.border_left().width;
  1354. } else {
  1355. CSSPixels containing_block_height = containing_block_size_for_item(item, GridDimension::Row);
  1356. box_state.padding_top = computed_values.padding().top().to_px(grid_container(), containing_block_height);
  1357. box_state.padding_bottom = computed_values.padding().bottom().to_px(grid_container(), containing_block_height);
  1358. box_state.margin_top = computed_values.margin().top().to_px(grid_container(), containing_block_height);
  1359. box_state.margin_bottom = computed_values.margin().bottom().to_px(grid_container(), containing_block_height);
  1360. box_state.border_top = computed_values.border_top().width;
  1361. box_state.border_bottom = computed_values.border_bottom().width;
  1362. }
  1363. }
  1364. }
  1365. void GridFormattingContext::collapse_auto_fit_tracks_if_needed(GridDimension const dimension)
  1366. {
  1367. // https://www.w3.org/TR/css-grid-2/#auto-repeat
  1368. // The auto-fit keyword behaves the same as auto-fill, except that after grid item placement any
  1369. // empty repeated tracks are collapsed. An empty track is one with no in-flow grid items placed into
  1370. // or spanning across it. (This can result in all tracks being collapsed, if they’re all empty.)
  1371. auto const& grid_computed_values = grid_container().computed_values();
  1372. auto const& tracks_definition = dimension == GridDimension::Column ? grid_computed_values.grid_template_columns().track_list() : grid_computed_values.grid_template_rows().track_list();
  1373. auto& tracks = dimension == GridDimension::Column ? m_grid_columns : m_grid_rows;
  1374. if (tracks_definition.size() == 1 && tracks_definition.first().is_repeat() && tracks_definition.first().repeat().is_auto_fit()) {
  1375. for (size_t track_index = 0; track_index < tracks.size(); track_index++) {
  1376. if (m_occupation_grid.is_occupied(dimension == GridDimension::Column ? track_index : 0, dimension == GridDimension::Row ? track_index : 0))
  1377. continue;
  1378. // NOTE: A collapsed track is treated as having a fixed track sizing function of 0px
  1379. tracks[track_index].min_track_sizing_function = CSS::GridSize(CSS::Length::make_px(0));
  1380. tracks[track_index].max_track_sizing_function = CSS::GridSize(CSS::Length::make_px(0));
  1381. }
  1382. }
  1383. }
  1384. void GridFormattingContext::run(Box const& box, LayoutMode, AvailableSpace const& available_space)
  1385. {
  1386. m_available_space = available_space;
  1387. auto const& grid_computed_values = grid_container().computed_values();
  1388. // NOTE: We store explicit grid sizes to later use in determining the position of items with negative index.
  1389. m_explicit_columns_line_count = get_count_of_tracks(grid_computed_values.grid_template_columns().track_list(), available_space) + 1;
  1390. m_explicit_rows_line_count = get_count_of_tracks(grid_computed_values.grid_template_rows().track_list(), available_space) + 1;
  1391. place_grid_items(available_space);
  1392. initialize_grid_tracks_for_columns_and_rows(available_space);
  1393. initialize_gap_tracks(available_space);
  1394. collapse_auto_fit_tracks_if_needed(GridDimension::Column);
  1395. collapse_auto_fit_tracks_if_needed(GridDimension::Row);
  1396. for (auto& item : m_grid_items) {
  1397. auto& box_state = m_state.get_mutable(item.box);
  1398. auto& computed_values = item.box->computed_values();
  1399. // NOTE: As the containing blocks of grid items are created by implicit grid areas that are not present in the
  1400. // layout tree, the initial value of has_definite_width/height computed by LayoutState::UsedValues::set_node
  1401. // will be incorrect for anything other (auto, percentage, calculated) than fixed lengths.
  1402. // Therefor, it becomes necessary to reset this value to indefinite.
  1403. // TODO: Handle this in LayoutState::UsedValues::set_node
  1404. if (!computed_values.width().is_length())
  1405. box_state.set_indefinite_content_width();
  1406. if (!computed_values.height().is_length())
  1407. box_state.set_indefinite_content_height();
  1408. }
  1409. // Do the first pass of resolving grid items box metrics to compute values that are independent of a track width
  1410. resolve_items_box_metrics(GridDimension::Column);
  1411. run_track_sizing(available_space, GridDimension::Column);
  1412. // Do the second pass of resolving box metrics to compute values that depend on a track width
  1413. resolve_items_box_metrics(GridDimension::Column);
  1414. // Once the sizes of column tracks, which determine the widths of the grid areas forming the containing blocks
  1415. // for grid items, ara calculated, it becomes possible to determine the final widths of the grid items.
  1416. resolve_grid_item_widths();
  1417. // Do the first pass of resolving grid items box metrics to compute values that are independent of a track height
  1418. resolve_items_box_metrics(GridDimension::Row);
  1419. run_track_sizing(available_space, GridDimension::Row);
  1420. // Do the second pass of resolving box metrics to compute values that depend on a track height
  1421. resolve_items_box_metrics(GridDimension::Row);
  1422. resolve_grid_item_heights();
  1423. determine_grid_container_height();
  1424. if (available_space.height.is_intrinsic_sizing_constraint() || available_space.width.is_intrinsic_sizing_constraint()) {
  1425. determine_intrinsic_size_of_grid_container(available_space);
  1426. return;
  1427. }
  1428. auto layout_box = [&](int row_start, int row_end, int column_start, int column_end, Box const& child_box) -> void {
  1429. if (column_start < 0 || row_start < 0)
  1430. return;
  1431. auto& child_box_state = m_state.get_mutable(child_box);
  1432. CSSPixels x_start = 0;
  1433. CSSPixels x_end = 0;
  1434. CSSPixels y_start = 0;
  1435. CSSPixels y_end = 0;
  1436. for (int i = 0; i < column_start; i++)
  1437. x_start += m_grid_columns_and_gaps[i].base_size;
  1438. for (int i = 0; i < column_end; i++)
  1439. x_end += m_grid_columns_and_gaps[i].base_size;
  1440. for (int i = 0; i < row_start; i++)
  1441. y_start += m_grid_rows_and_gaps[i].base_size;
  1442. for (int i = 0; i < row_end; i++) {
  1443. y_end += m_grid_rows_and_gaps[i].base_size;
  1444. }
  1445. child_box_state.offset = {
  1446. x_start + child_box_state.border_left + child_box_state.padding_left + child_box_state.margin_left,
  1447. y_start + child_box_state.border_top + child_box_state.padding_top + child_box_state.margin_top
  1448. };
  1449. compute_inset(child_box);
  1450. auto available_space_for_children = AvailableSpace(AvailableSize::make_definite(child_box_state.content_width()), AvailableSize::make_definite(child_box_state.content_height()));
  1451. if (auto independent_formatting_context = layout_inside(child_box, LayoutMode::Normal, available_space_for_children))
  1452. independent_formatting_context->parent_context_did_dimension_child_root_box();
  1453. };
  1454. for (auto& grid_item : m_grid_items) {
  1455. auto resolved_row_span = box.computed_values().row_gap().is_auto() ? grid_item.row_span : grid_item.row_span * 2;
  1456. if (!box.computed_values().row_gap().is_auto() && grid_item.gap_adjusted_row(box) == 0)
  1457. resolved_row_span -= 1;
  1458. if (grid_item.gap_adjusted_row(box) + resolved_row_span > m_grid_rows.size())
  1459. resolved_row_span = m_grid_rows_and_gaps.size() - grid_item.gap_adjusted_row(box);
  1460. auto resolved_column_span = box.computed_values().column_gap().is_auto() ? grid_item.column_span : grid_item.column_span * 2;
  1461. if (!box.computed_values().column_gap().is_auto() && grid_item.gap_adjusted_column(box) == 0)
  1462. resolved_column_span -= 1;
  1463. if (grid_item.gap_adjusted_column(box) + resolved_column_span > m_grid_columns_and_gaps.size())
  1464. resolved_column_span = m_grid_columns_and_gaps.size() - grid_item.gap_adjusted_column(box);
  1465. layout_box(
  1466. grid_item.gap_adjusted_row(box),
  1467. grid_item.gap_adjusted_row(box) + resolved_row_span,
  1468. grid_item.gap_adjusted_column(box),
  1469. grid_item.gap_adjusted_column(box) + resolved_column_span,
  1470. grid_item.box);
  1471. }
  1472. }
  1473. void GridFormattingContext::determine_intrinsic_size_of_grid_container(AvailableSpace const& available_space)
  1474. {
  1475. // https://www.w3.org/TR/css-grid-1/#intrinsic-sizes
  1476. // The max-content size (min-content size) of a grid container is the sum of the grid container’s track sizes
  1477. // (including gutters) in the appropriate axis, when the grid is sized under a max-content constraint (min-content constraint).
  1478. if (available_space.height.is_intrinsic_sizing_constraint()) {
  1479. CSSPixels grid_container_height = 0;
  1480. for (auto& track : m_grid_rows) {
  1481. grid_container_height += track.base_size;
  1482. }
  1483. m_state.get_mutable(grid_container()).set_content_height(grid_container_height);
  1484. }
  1485. if (available_space.width.is_intrinsic_sizing_constraint()) {
  1486. CSSPixels grid_container_width = 0;
  1487. for (auto& track : m_grid_columns) {
  1488. grid_container_width += track.base_size;
  1489. }
  1490. m_state.get_mutable(grid_container()).set_content_width(grid_container_width);
  1491. }
  1492. }
  1493. CSSPixels GridFormattingContext::automatic_content_width() const
  1494. {
  1495. return m_state.get(grid_container()).content_width();
  1496. }
  1497. CSSPixels GridFormattingContext::automatic_content_height() const
  1498. {
  1499. return m_automatic_content_height;
  1500. }
  1501. bool GridFormattingContext::is_auto_positioned_row(CSS::GridTrackPlacement const& grid_row_start, CSS::GridTrackPlacement const& grid_row_end) const
  1502. {
  1503. return is_auto_positioned_track(grid_row_start, grid_row_end);
  1504. }
  1505. bool GridFormattingContext::is_auto_positioned_column(CSS::GridTrackPlacement const& grid_column_start, CSS::GridTrackPlacement const& grid_column_end) const
  1506. {
  1507. return is_auto_positioned_track(grid_column_start, grid_column_end);
  1508. }
  1509. bool GridFormattingContext::is_auto_positioned_track(CSS::GridTrackPlacement const& grid_track_start, CSS::GridTrackPlacement const& grid_track_end) const
  1510. {
  1511. return grid_track_start.is_auto_positioned() && grid_track_end.is_auto_positioned();
  1512. }
  1513. AvailableSize GridFormattingContext::get_free_space(AvailableSpace const& available_space, GridDimension const dimension) const
  1514. {
  1515. // https://www.w3.org/TR/css-grid-2/#algo-terms
  1516. // free space: Equal to the available grid space minus the sum of the base sizes of all the grid
  1517. // tracks (including gutters), floored at zero. If available grid space is indefinite, the free
  1518. // space is indefinite as well.
  1519. auto& available_size = dimension == GridDimension::Column ? available_space.width : available_space.height;
  1520. auto& tracks = dimension == GridDimension::Column ? m_grid_columns_and_gaps : m_grid_rows_and_gaps;
  1521. if (available_size.is_definite()) {
  1522. CSSPixels sum_base_sizes = 0;
  1523. for (auto& track : tracks)
  1524. sum_base_sizes += track.base_size;
  1525. return AvailableSize::make_definite(max(CSSPixels(0), available_size.to_px() - sum_base_sizes));
  1526. }
  1527. return available_size;
  1528. }
  1529. int GridFormattingContext::get_line_index_by_line_name(String const& needle, CSS::GridTrackSizeList grid_track_size_list)
  1530. {
  1531. if (grid_track_size_list.track_list().size() == 0)
  1532. return -1;
  1533. auto repeated_tracks_count = 0;
  1534. for (size_t x = 0; x < grid_track_size_list.track_list().size(); x++) {
  1535. if (grid_track_size_list.track_list()[x].is_repeat()) {
  1536. // FIXME: Calculate amount of columns/rows if auto-fill/fit
  1537. if (!grid_track_size_list.track_list()[x].repeat().is_default())
  1538. return -1;
  1539. auto repeat = grid_track_size_list.track_list()[x].repeat().grid_track_size_list();
  1540. for (size_t y = 0; y < repeat.track_list().size(); y++) {
  1541. for (size_t z = 0; z < repeat.line_names()[y].size(); z++) {
  1542. if (repeat.line_names()[y][z] == needle)
  1543. return x + repeated_tracks_count;
  1544. repeated_tracks_count++;
  1545. }
  1546. }
  1547. } else {
  1548. for (size_t y = 0; y < grid_track_size_list.line_names()[x].size(); y++) {
  1549. if (grid_track_size_list.line_names()[x][y] == needle)
  1550. return x + repeated_tracks_count;
  1551. }
  1552. }
  1553. }
  1554. for (size_t y = 0; y < grid_track_size_list.line_names()[grid_track_size_list.track_list().size()].size(); y++) {
  1555. if (grid_track_size_list.line_names()[grid_track_size_list.track_list().size()][y] == needle)
  1556. return grid_track_size_list.track_list().size() + repeated_tracks_count;
  1557. }
  1558. return -1;
  1559. }
  1560. void OccupationGrid::set_occupied(int column_start, int column_end, int row_start, int row_end)
  1561. {
  1562. for (int row_index = row_start; row_index < row_end; row_index++) {
  1563. for (int column_index = column_start; column_index < column_end; column_index++) {
  1564. m_min_column_index = min(m_min_column_index, column_index);
  1565. m_max_column_index = max(m_max_column_index, column_index);
  1566. m_min_row_index = min(m_min_row_index, row_index);
  1567. m_max_row_index = max(m_max_row_index, row_index);
  1568. m_occupation_grid.set(GridPosition { .row = row_index, .column = column_index });
  1569. }
  1570. }
  1571. }
  1572. bool OccupationGrid::is_occupied(int column_index, int row_index) const
  1573. {
  1574. return m_occupation_grid.contains(GridPosition { row_index, column_index });
  1575. }
  1576. int GridItem::gap_adjusted_row(Box const& grid_box) const
  1577. {
  1578. return grid_box.computed_values().row_gap().is_auto() ? row : row * 2;
  1579. }
  1580. int GridItem::gap_adjusted_column(Box const& grid_box) const
  1581. {
  1582. return grid_box.computed_values().column_gap().is_auto() ? column : column * 2;
  1583. }
  1584. CSS::Size const& GridFormattingContext::get_item_preferred_size(GridItem const& item, GridDimension const dimension) const
  1585. {
  1586. if (dimension == GridDimension::Column)
  1587. return item.box->computed_values().width();
  1588. return item.box->computed_values().height();
  1589. }
  1590. CSSPixels GridFormattingContext::calculate_min_content_size(GridItem const& item, GridDimension const dimension) const
  1591. {
  1592. if (dimension == GridDimension::Column) {
  1593. return calculate_min_content_width(item.box);
  1594. } else {
  1595. return calculate_min_content_height(item.box, get_available_space_for_item(item).width);
  1596. }
  1597. }
  1598. CSSPixels GridFormattingContext::calculate_max_content_size(GridItem const& item, GridDimension const dimension) const
  1599. {
  1600. if (dimension == GridDimension::Column) {
  1601. return calculate_max_content_width(item.box);
  1602. } else {
  1603. return calculate_max_content_height(item.box, get_available_space_for_item(item).width);
  1604. }
  1605. }
  1606. CSSPixels GridFormattingContext::containing_block_size_for_item(GridItem const& item, GridDimension const dimension) const
  1607. {
  1608. CSSPixels containing_block_size = 0;
  1609. for_each_spanned_track_by_item(item, dimension, [&](GridTrack const& track) {
  1610. containing_block_size += track.base_size;
  1611. });
  1612. return containing_block_size;
  1613. }
  1614. AvailableSpace GridFormattingContext::get_available_space_for_item(GridItem const& item) const
  1615. {
  1616. auto& item_box_state = m_state.get(item.box);
  1617. AvailableSize available_width = item_box_state.has_definite_width() ? AvailableSize::make_definite(item_box_state.content_width()) : AvailableSize::make_indefinite();
  1618. AvailableSize available_height = item_box_state.has_definite_height() ? AvailableSize::make_definite(item_box_state.content_height()) : AvailableSize::make_indefinite();
  1619. return AvailableSpace(available_width, available_height);
  1620. }
  1621. CSSPixels GridFormattingContext::calculate_min_content_contribution(GridItem const& item, GridDimension const dimension) const
  1622. {
  1623. auto available_space_for_item = get_available_space_for_item(item);
  1624. auto should_treat_preferred_size_as_auto = [&] {
  1625. if (dimension == GridDimension::Column)
  1626. return should_treat_width_as_auto(item.box, available_space_for_item);
  1627. return should_treat_height_as_auto(item.box, available_space_for_item);
  1628. }();
  1629. if (should_treat_preferred_size_as_auto) {
  1630. return item.add_margin_box_sizes(calculate_min_content_size(item, dimension), dimension, m_state);
  1631. }
  1632. auto preferred_size = get_item_preferred_size(item, dimension);
  1633. auto containing_block_size = containing_block_size_for_item(item, dimension);
  1634. return item.add_margin_box_sizes(preferred_size.to_px(grid_container(), containing_block_size), dimension, m_state);
  1635. }
  1636. CSSPixels GridFormattingContext::calculate_max_content_contribution(GridItem const& item, GridDimension const dimension) const
  1637. {
  1638. auto available_space_for_item = get_available_space_for_item(item);
  1639. auto should_treat_preferred_size_as_auto = [&] {
  1640. if (dimension == GridDimension::Column)
  1641. return should_treat_width_as_auto(item.box, available_space_for_item);
  1642. return should_treat_height_as_auto(item.box, available_space_for_item);
  1643. }();
  1644. if (should_treat_preferred_size_as_auto) {
  1645. return item.add_margin_box_sizes(calculate_max_content_size(item, dimension), dimension, m_state);
  1646. }
  1647. auto preferred_size = get_item_preferred_size(item, dimension);
  1648. auto containing_block_size = containing_block_size_for_item(item, dimension);
  1649. return item.add_margin_box_sizes(preferred_size.to_px(grid_container(), containing_block_size), dimension, m_state);
  1650. }
  1651. CSSPixels GridFormattingContext::calculate_limited_min_content_contribution(GridItem const& item, GridDimension const dimension) const
  1652. {
  1653. // The limited min-content contribution of an item is its min-content contribution,
  1654. // limited by the max track sizing function (which could be the argument to a fit-content() track
  1655. // sizing function) if that is fixed and ultimately floored by its minimum contribution.
  1656. // FIXME: limit by max track sizing function
  1657. auto min_content_contribution = calculate_min_content_contribution(item, dimension);
  1658. auto minimum_contribution = calculate_minimum_contribution(item, dimension);
  1659. if (min_content_contribution < minimum_contribution)
  1660. return minimum_contribution;
  1661. return min_content_contribution;
  1662. }
  1663. CSSPixels GridFormattingContext::calculate_limited_max_content_contribution(GridItem const& item, GridDimension const dimension) const
  1664. {
  1665. // The limited max-content contribution of an item is its max-content contribution,
  1666. // limited by the max track sizing function (which could be the argument to a fit-content() track
  1667. // sizing function) if that is fixed and ultimately floored by its minimum contribution.
  1668. // FIXME: limit by max track sizing function
  1669. auto max_content_contribution = calculate_max_content_contribution(item, dimension);
  1670. auto minimum_contribution = calculate_minimum_contribution(item, dimension);
  1671. if (max_content_contribution < minimum_contribution)
  1672. return minimum_contribution;
  1673. return max_content_contribution;
  1674. }
  1675. CSS::Size const& GridFormattingContext::get_item_minimum_size(GridItem const& item, GridDimension const dimension) const
  1676. {
  1677. if (dimension == GridDimension::Column)
  1678. return item.box->computed_values().min_width();
  1679. return item.box->computed_values().min_height();
  1680. }
  1681. CSSPixels GridFormattingContext::content_size_suggestion(GridItem const& item, GridDimension const dimension) const
  1682. {
  1683. // The content size suggestion is the min-content size in the relevant axis
  1684. // FIXME: clamped, if it has a preferred aspect ratio, by any definite opposite-axis minimum and maximum sizes
  1685. // converted through the aspect ratio.
  1686. return calculate_min_content_size(item, dimension);
  1687. }
  1688. Optional<CSSPixels> GridFormattingContext::specified_size_suggestion(GridItem const& item, GridDimension const dimension) const
  1689. {
  1690. // https://www.w3.org/TR/css-grid-1/#specified-size-suggestion
  1691. // If the item’s preferred size in the relevant axis is definite, then the specified size suggestion is that size.
  1692. // It is otherwise undefined.
  1693. auto const& used_values = m_state.get(item.box);
  1694. auto has_definite_preferred_size = dimension == GridDimension::Column ? used_values.has_definite_width() : used_values.has_definite_height();
  1695. if (has_definite_preferred_size) {
  1696. // FIXME: consider margins, padding and borders because it is outer size.
  1697. auto containing_block_size = containing_block_size_for_item(item, dimension);
  1698. return get_item_preferred_size(item, dimension).to_px(item.box, containing_block_size);
  1699. }
  1700. return {};
  1701. }
  1702. CSSPixels GridFormattingContext::content_based_minimum_size(GridItem const& item, GridDimension const dimension) const
  1703. {
  1704. // https://www.w3.org/TR/css-grid-1/#content-based-minimum-size
  1705. // The content-based minimum size for a grid item in a given dimension is its specified size suggestion if it exists
  1706. if (auto specified_size_suggestion = this->specified_size_suggestion(item, dimension); specified_size_suggestion.has_value()) {
  1707. return specified_size_suggestion.value();
  1708. }
  1709. // FIXME: otherwise its transferred size suggestion if that exists
  1710. // else its content size suggestion
  1711. return content_size_suggestion(item, dimension);
  1712. }
  1713. CSSPixels GridFormattingContext::automatic_minimum_size(GridItem const& item, GridDimension const dimension) const
  1714. {
  1715. // To provide a more reasonable default minimum size for grid items, the used value of its automatic minimum size
  1716. // in a given axis is the content-based minimum size if all of the following are true:
  1717. // - it is not a scroll container
  1718. // - it spans at least one track in that axis whose min track sizing function is auto
  1719. // FIXME: - if it spans more than one track in that axis, none of those tracks are flexible
  1720. auto const& tracks = dimension == GridDimension::Column ? m_grid_columns : m_grid_rows;
  1721. auto item_track_index = item.raw_position(dimension);
  1722. // FIXME: Check all tracks spanned by an item
  1723. AvailableSize const& available_size = dimension == GridDimension::Column ? m_available_space->width : m_available_space->height;
  1724. auto item_spans_auto_tracks = tracks[item_track_index].min_track_sizing_function.is_auto(available_size);
  1725. if (item_spans_auto_tracks && !item.box->is_scroll_container()) {
  1726. return content_based_minimum_size(item, dimension);
  1727. }
  1728. // Otherwise, the automatic minimum size is zero, as usual.
  1729. return 0;
  1730. }
  1731. CSSPixels GridFormattingContext::calculate_minimum_contribution(GridItem const& item, GridDimension const dimension) const
  1732. {
  1733. // The minimum contribution of an item is the smallest outer size it can have.
  1734. // Specifically, if the item’s computed preferred size behaves as auto or depends on the size of its
  1735. // containing block in the relevant axis, its minimum contribution is the outer size that would
  1736. // result from assuming the item’s used minimum size as its preferred size; else the item’s minimum
  1737. // contribution is its min-content contribution. Because the minimum contribution often depends on
  1738. // the size of the item’s content, it is considered a type of intrinsic size contribution.
  1739. auto preferred_size = get_item_preferred_size(item, dimension);
  1740. auto should_treat_preferred_size_as_auto = [&] {
  1741. if (dimension == GridDimension::Column)
  1742. return should_treat_width_as_auto(item.box, get_available_space_for_item(item));
  1743. return should_treat_height_as_auto(item.box, get_available_space_for_item(item));
  1744. }();
  1745. if (should_treat_preferred_size_as_auto) {
  1746. auto minimum_size = get_item_minimum_size(item, dimension);
  1747. if (minimum_size.is_auto())
  1748. return item.add_margin_box_sizes(automatic_minimum_size(item, dimension), dimension, m_state);
  1749. auto containing_block_size = containing_block_size_for_item(item, dimension);
  1750. return item.add_margin_box_sizes(minimum_size.to_px(grid_container(), containing_block_size), dimension, m_state);
  1751. }
  1752. return calculate_min_content_contribution(item, dimension);
  1753. }
  1754. }
  1755. namespace AK {
  1756. template<>
  1757. struct Traits<Web::Layout::GridPosition> : public GenericTraits<Web::Layout::GridPosition> {
  1758. static unsigned hash(Web::Layout::GridPosition const& key) { return pair_int_hash(key.row, key.column); }
  1759. };
  1760. }