Node.cpp 34 KB

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  1. /*
  2. * Copyright (c) 2018-2022, Andreas Kling <kling@serenityos.org>
  3. * Copyright (c) 2021, Linus Groh <linusg@serenityos.org>
  4. * Copyright (c) 2021, Luke Wilde <lukew@serenityos.org>
  5. *
  6. * SPDX-License-Identifier: BSD-2-Clause
  7. */
  8. #include <AK/IDAllocator.h>
  9. #include <AK/StringBuilder.h>
  10. #include <LibJS/AST.h>
  11. #include <LibJS/Runtime/FunctionObject.h>
  12. #include <LibWeb/Bindings/EventWrapper.h>
  13. #include <LibWeb/Bindings/NodeWrapper.h>
  14. #include <LibWeb/Bindings/NodeWrapperFactory.h>
  15. #include <LibWeb/DOM/Comment.h>
  16. #include <LibWeb/DOM/DocumentType.h>
  17. #include <LibWeb/DOM/Element.h>
  18. #include <LibWeb/DOM/ElementFactory.h>
  19. #include <LibWeb/DOM/Event.h>
  20. #include <LibWeb/DOM/EventDispatcher.h>
  21. #include <LibWeb/DOM/EventListener.h>
  22. #include <LibWeb/DOM/LiveNodeList.h>
  23. #include <LibWeb/DOM/Node.h>
  24. #include <LibWeb/DOM/ProcessingInstruction.h>
  25. #include <LibWeb/DOM/ShadowRoot.h>
  26. #include <LibWeb/HTML/BrowsingContextContainer.h>
  27. #include <LibWeb/HTML/HTMLAnchorElement.h>
  28. #include <LibWeb/HTML/Parser/HTMLParser.h>
  29. #include <LibWeb/Layout/InitialContainingBlock.h>
  30. #include <LibWeb/Layout/Node.h>
  31. #include <LibWeb/Layout/TextNode.h>
  32. #include <LibWeb/Origin.h>
  33. namespace Web::DOM {
  34. static IDAllocator s_node_id_allocator;
  35. static HashMap<i32, Node*> s_node_directory;
  36. static i32 allocate_node_id(Node* node)
  37. {
  38. i32 id = s_node_id_allocator.allocate();
  39. s_node_directory.set(id, node);
  40. return id;
  41. }
  42. static void deallocate_node_id(i32 node_id)
  43. {
  44. if (!s_node_directory.remove(node_id))
  45. VERIFY_NOT_REACHED();
  46. s_node_id_allocator.deallocate(node_id);
  47. }
  48. Node* Node::from_id(i32 node_id)
  49. {
  50. return s_node_directory.get(node_id).value_or(nullptr);
  51. }
  52. Node::Node(Document& document, NodeType type)
  53. : EventTarget()
  54. , m_document(&document)
  55. , m_type(type)
  56. , m_id(allocate_node_id(this))
  57. {
  58. if (!is_document())
  59. m_document->ref_from_node({});
  60. }
  61. Node::~Node()
  62. {
  63. VERIFY(m_deletion_has_begun);
  64. if (layout_node() && layout_node()->parent())
  65. layout_node()->parent()->remove_child(*layout_node());
  66. if (!is_document())
  67. m_document->unref_from_node({});
  68. deallocate_node_id(m_id);
  69. }
  70. const HTML::HTMLAnchorElement* Node::enclosing_link_element() const
  71. {
  72. for (auto* node = this; node; node = node->parent()) {
  73. if (is<HTML::HTMLAnchorElement>(*node) && verify_cast<HTML::HTMLAnchorElement>(*node).has_attribute(HTML::AttributeNames::href))
  74. return verify_cast<HTML::HTMLAnchorElement>(node);
  75. }
  76. return nullptr;
  77. }
  78. const HTML::HTMLElement* Node::enclosing_html_element() const
  79. {
  80. return first_ancestor_of_type<HTML::HTMLElement>();
  81. }
  82. const HTML::HTMLElement* Node::enclosing_html_element_with_attribute(const FlyString& attribute) const
  83. {
  84. for (auto* node = this; node; node = node->parent()) {
  85. if (is<HTML::HTMLElement>(*node) && verify_cast<HTML::HTMLElement>(*node).has_attribute(attribute))
  86. return verify_cast<HTML::HTMLElement>(node);
  87. }
  88. return nullptr;
  89. }
  90. // https://dom.spec.whatwg.org/#concept-descendant-text-content
  91. String Node::descendant_text_content() const
  92. {
  93. StringBuilder builder;
  94. for_each_in_subtree_of_type<Text>([&](auto& text_node) {
  95. builder.append(text_node.data());
  96. return IterationDecision::Continue;
  97. });
  98. return builder.to_string();
  99. }
  100. // https://dom.spec.whatwg.org/#dom-node-textcontent
  101. String Node::text_content() const
  102. {
  103. if (is<DocumentFragment>(this) || is<Element>(this))
  104. return descendant_text_content();
  105. else if (is<CharacterData>(this))
  106. return verify_cast<CharacterData>(this)->data();
  107. // FIXME: Else if this is an Attr node, return this's value.
  108. return {};
  109. }
  110. // https://dom.spec.whatwg.org/#ref-for-dom-node-textcontent%E2%91%A0
  111. void Node::set_text_content(String const& content)
  112. {
  113. if (is<DocumentFragment>(this) || is<Element>(this)) {
  114. string_replace_all(content);
  115. } else if (is<CharacterData>(this)) {
  116. // FIXME: CharacterData::set_data is not spec compliant. Make this match the spec when set_data becomes spec compliant.
  117. // Do note that this will make this function able to throw an exception.
  118. auto* character_data_node = verify_cast<CharacterData>(this);
  119. character_data_node->set_data(content);
  120. } else {
  121. // FIXME: Else if this is an Attr node, set an existing attribute value with this and the given value.
  122. return;
  123. }
  124. set_needs_style_update(true);
  125. }
  126. void Node::invalidate_style()
  127. {
  128. for_each_in_inclusive_subtree_of_type<Element>([&](auto& element) {
  129. element.set_needs_style_update(true);
  130. return IterationDecision::Continue;
  131. });
  132. document().schedule_style_update();
  133. }
  134. bool Node::is_link() const
  135. {
  136. return enclosing_link_element();
  137. }
  138. String Node::child_text_content() const
  139. {
  140. if (!is<ParentNode>(*this))
  141. return String::empty();
  142. StringBuilder builder;
  143. verify_cast<ParentNode>(*this).for_each_child([&](auto& child) {
  144. if (is<Text>(child))
  145. builder.append(verify_cast<Text>(child).text_content());
  146. });
  147. return builder.build();
  148. }
  149. // https://dom.spec.whatwg.org/#concept-tree-root
  150. Node& Node::root()
  151. {
  152. Node* root = this;
  153. while (root->parent())
  154. root = root->parent();
  155. return *root;
  156. }
  157. // https://dom.spec.whatwg.org/#concept-shadow-including-root
  158. Node& Node::shadow_including_root()
  159. {
  160. auto& node_root = root();
  161. if (is<ShadowRoot>(node_root))
  162. return verify_cast<ShadowRoot>(node_root).host()->shadow_including_root();
  163. return node_root;
  164. }
  165. // https://dom.spec.whatwg.org/#connected
  166. bool Node::is_connected() const
  167. {
  168. return shadow_including_root().is_document();
  169. }
  170. Element* Node::parent_element()
  171. {
  172. if (!parent() || !is<Element>(parent()))
  173. return nullptr;
  174. return verify_cast<Element>(parent());
  175. }
  176. const Element* Node::parent_element() const
  177. {
  178. if (!parent() || !is<Element>(parent()))
  179. return nullptr;
  180. return verify_cast<Element>(parent());
  181. }
  182. // https://dom.spec.whatwg.org/#concept-node-ensure-pre-insertion-validity
  183. ExceptionOr<void> Node::ensure_pre_insertion_validity(NonnullRefPtr<Node> node, RefPtr<Node> child) const
  184. {
  185. if (!is<Document>(this) && !is<DocumentFragment>(this) && !is<Element>(this))
  186. return DOM::HierarchyRequestError::create("Can only insert into a document, document fragment or element");
  187. if (node->is_host_including_inclusive_ancestor_of(*this))
  188. return DOM::HierarchyRequestError::create("New node is an ancestor of this node");
  189. if (child && child->parent() != this)
  190. return DOM::NotFoundError::create("This node is not the parent of the given child");
  191. // FIXME: All the following "Invalid node type for insertion" messages could be more descriptive.
  192. if (!is<DocumentFragment>(*node) && !is<DocumentType>(*node) && !is<Element>(*node) && !is<Text>(*node) && !is<Comment>(*node) && !is<ProcessingInstruction>(*node))
  193. return DOM::HierarchyRequestError::create("Invalid node type for insertion");
  194. if ((is<Text>(*node) && is<Document>(this)) || (is<DocumentType>(*node) && !is<Document>(this)))
  195. return DOM::HierarchyRequestError::create("Invalid node type for insertion");
  196. if (is<Document>(this)) {
  197. if (is<DocumentFragment>(*node)) {
  198. auto node_element_child_count = verify_cast<DocumentFragment>(*node).child_element_count();
  199. if ((node_element_child_count > 1 || node->has_child_of_type<Text>())
  200. || (node_element_child_count == 1 && (has_child_of_type<Element>() || is<DocumentType>(child.ptr()) || (child && child->has_following_node_of_type_in_tree_order<DocumentType>())))) {
  201. return DOM::HierarchyRequestError::create("Invalid node type for insertion");
  202. }
  203. } else if (is<Element>(*node)) {
  204. if (has_child_of_type<Element>() || is<DocumentType>(child.ptr()) || (child && child->has_following_node_of_type_in_tree_order<DocumentType>()))
  205. return DOM::HierarchyRequestError::create("Invalid node type for insertion");
  206. } else if (is<DocumentType>(*node)) {
  207. if (has_child_of_type<DocumentType>() || (child && child->has_preceding_node_of_type_in_tree_order<Element>()) || (!child && has_child_of_type<Element>()))
  208. return DOM::HierarchyRequestError::create("Invalid node type for insertion");
  209. }
  210. }
  211. return {};
  212. }
  213. // https://dom.spec.whatwg.org/#concept-node-insert
  214. void Node::insert_before(NonnullRefPtr<Node> node, RefPtr<Node> child, bool suppress_observers)
  215. {
  216. NonnullRefPtrVector<Node> nodes;
  217. if (is<DocumentFragment>(*node))
  218. nodes = verify_cast<DocumentFragment>(*node).children_as_vector();
  219. else
  220. nodes.append(node);
  221. auto count = nodes.size();
  222. if (count == 0)
  223. return;
  224. if (is<DocumentFragment>(*node)) {
  225. node->remove_all_children(true);
  226. // FIXME: Queue a tree mutation record for node with « », nodes, null, and null.
  227. }
  228. if (child) {
  229. // FIXME: For each live range whose start node is parent and start offset is greater than child’s index, increase its start offset by count.
  230. // FIXME: For each live range whose end node is parent and end offset is greater than child’s index, increase its end offset by count.
  231. }
  232. // FIXME: Let previousSibling be child’s previous sibling or parent’s last child if child is null. (Currently unused so not included)
  233. for (auto& node_to_insert : nodes) { // FIXME: In tree order
  234. document().adopt_node(node_to_insert);
  235. if (!child)
  236. TreeNode<Node>::append_child(node_to_insert);
  237. else
  238. TreeNode<Node>::insert_before(node_to_insert, child);
  239. // FIXME: If parent is a shadow host and node is a slottable, then assign a slot for node.
  240. // FIXME: If parent’s root is a shadow root, and parent is a slot whose assigned nodes is the empty list, then run signal a slot change for parent.
  241. // FIXME: Run assign slottables for a tree with node’s root.
  242. // FIXME: This should be shadow-including.
  243. node_to_insert.for_each_in_inclusive_subtree([&](Node& inclusive_descendant) {
  244. inclusive_descendant.inserted();
  245. if (inclusive_descendant.is_connected()) {
  246. // FIXME: If inclusiveDescendant is custom, then enqueue a custom element callback reaction with inclusiveDescendant,
  247. // callback name "connectedCallback", and an empty argument list.
  248. // FIXME: Otherwise, try to upgrade inclusiveDescendant.
  249. }
  250. return IterationDecision::Continue;
  251. });
  252. }
  253. if (!suppress_observers) {
  254. // FIXME: queue a tree mutation record for parent with nodes, « », previousSibling, and child.
  255. }
  256. children_changed();
  257. }
  258. // https://dom.spec.whatwg.org/#concept-node-pre-insert
  259. ExceptionOr<NonnullRefPtr<Node>> Node::pre_insert(NonnullRefPtr<Node> node, RefPtr<Node> child)
  260. {
  261. auto validity_result = ensure_pre_insertion_validity(node, child);
  262. if (validity_result.is_exception())
  263. return validity_result.exception();
  264. auto reference_child = child;
  265. if (reference_child == node)
  266. reference_child = node->next_sibling();
  267. insert_before(node, reference_child);
  268. return node;
  269. }
  270. // https://dom.spec.whatwg.org/#concept-node-pre-remove
  271. ExceptionOr<NonnullRefPtr<Node>> Node::pre_remove(NonnullRefPtr<Node> child)
  272. {
  273. if (child->parent() != this)
  274. return DOM::NotFoundError::create("Child does not belong to this node");
  275. child->remove();
  276. return child;
  277. }
  278. // https://dom.spec.whatwg.org/#concept-node-append
  279. ExceptionOr<NonnullRefPtr<Node>> Node::append_child(NonnullRefPtr<Node> node)
  280. {
  281. return pre_insert(node, nullptr);
  282. }
  283. // https://dom.spec.whatwg.org/#concept-node-remove
  284. void Node::remove(bool suppress_observers)
  285. {
  286. auto* parent = TreeNode<Node>::parent();
  287. VERIFY(parent);
  288. // FIXME: Let index be node’s index. (Currently unused so not included)
  289. // FIXME: For each live range whose start node is an inclusive descendant of node, set its start to (parent, index).
  290. // FIXME: For each live range whose end node is an inclusive descendant of node, set its end to (parent, index).
  291. // FIXME: For each live range whose start node is parent and start offset is greater than index, decrease its start offset by 1.
  292. // FIXME: For each live range whose end node is parent and end offset is greater than index, decrease its end offset by 1.
  293. // FIXME: For each NodeIterator object iterator whose root’s node document is node’s node document, run the NodeIterator pre-removing steps given node and iterator.
  294. // FIXME: Let oldPreviousSibling be node’s previous sibling. (Currently unused so not included)
  295. // FIXME: Let oldNextSibling be node’s next sibling. (Currently unused so not included)
  296. parent->remove_child(*this);
  297. // FIXME: If node is assigned, then run assign slottables for node’s assigned slot.
  298. // FIXME: If parent’s root is a shadow root, and parent is a slot whose assigned nodes is the empty list, then run signal a slot change for parent.
  299. // FIXME: If node has an inclusive descendant that is a slot, then:
  300. // Run assign slottables for a tree with parent’s root.
  301. // Run assign slottables for a tree with node.
  302. removed_from(parent);
  303. // FIXME: Let isParentConnected be parent’s connected. (Currently unused so not included)
  304. // FIXME: If node is custom and isParentConnected is true, then enqueue a custom element callback reaction with node,
  305. // callback name "disconnectedCallback", and an empty argument list.
  306. // FIXME: This should be shadow-including.
  307. for_each_in_subtree([&](Node& descendant) {
  308. descendant.removed_from(nullptr);
  309. // FIXME: If descendant is custom and isParentConnected is true, then enqueue a custom element callback reaction with descendant,
  310. // callback name "disconnectedCallback", and an empty argument list.
  311. return IterationDecision::Continue;
  312. });
  313. if (!suppress_observers) {
  314. // FIXME: queue a tree mutation record for parent with « », « node », oldPreviousSibling, and oldNextSibling.
  315. }
  316. parent->children_changed();
  317. }
  318. // https://dom.spec.whatwg.org/#concept-node-replace
  319. ExceptionOr<NonnullRefPtr<Node>> Node::replace_child(NonnullRefPtr<Node> node, NonnullRefPtr<Node> child)
  320. {
  321. // NOTE: This differs slightly from ensure_pre_insertion_validity.
  322. if (!is<Document>(this) && !is<DocumentFragment>(this) && !is<Element>(this))
  323. return DOM::HierarchyRequestError::create("Can only insert into a document, document fragment or element");
  324. if (node->is_host_including_inclusive_ancestor_of(*this))
  325. return DOM::HierarchyRequestError::create("New node is an ancestor of this node");
  326. if (child->parent() != this)
  327. return DOM::NotFoundError::create("This node is not the parent of the given child");
  328. // FIXME: All the following "Invalid node type for insertion" messages could be more descriptive.
  329. if (!is<DocumentFragment>(*node) && !is<DocumentType>(*node) && !is<Element>(*node) && !is<Text>(*node) && !is<Comment>(*node) && !is<ProcessingInstruction>(*node))
  330. return DOM::HierarchyRequestError::create("Invalid node type for insertion");
  331. if ((is<Text>(*node) && is<Document>(this)) || (is<DocumentType>(*node) && !is<Document>(this)))
  332. return DOM::HierarchyRequestError::create("Invalid node type for insertion");
  333. if (is<Document>(this)) {
  334. if (is<DocumentFragment>(*node)) {
  335. auto node_element_child_count = verify_cast<DocumentFragment>(*node).child_element_count();
  336. if ((node_element_child_count > 1 || node->has_child_of_type<Text>())
  337. || (node_element_child_count == 1 && (first_child_of_type<Element>() != child || child->has_following_node_of_type_in_tree_order<DocumentType>()))) {
  338. return DOM::HierarchyRequestError::create("Invalid node type for insertion");
  339. }
  340. } else if (is<Element>(*node)) {
  341. if (first_child_of_type<Element>() != child || child->has_following_node_of_type_in_tree_order<DocumentType>())
  342. return DOM::HierarchyRequestError::create("Invalid node type for insertion");
  343. } else if (is<DocumentType>(*node)) {
  344. if (first_child_of_type<DocumentType>() != node || child->has_preceding_node_of_type_in_tree_order<Element>())
  345. return DOM::HierarchyRequestError::create("Invalid node type for insertion");
  346. }
  347. }
  348. auto reference_child = child->next_sibling();
  349. if (reference_child == node)
  350. reference_child = node->next_sibling();
  351. // FIXME: Let previousSibling be child’s previous sibling. (Currently unused so not included)
  352. // FIXME: Let removedNodes be the empty set. (Currently unused so not included)
  353. if (child->parent()) {
  354. // FIXME: Set removedNodes to « child ».
  355. child->remove(true);
  356. }
  357. // FIXME: Let nodes be node’s children if node is a DocumentFragment node; otherwise « node ». (Currently unused so not included)
  358. insert_before(node, reference_child, true);
  359. // FIXME: Queue a tree mutation record for parent with nodes, removedNodes, previousSibling, and referenceChild.
  360. return child;
  361. }
  362. // https://dom.spec.whatwg.org/#concept-node-clone
  363. NonnullRefPtr<Node> Node::clone_node(Document* document, bool clone_children)
  364. {
  365. if (!document)
  366. document = m_document;
  367. RefPtr<Node> copy;
  368. if (is<Element>(this)) {
  369. auto& element = *verify_cast<Element>(this);
  370. auto element_copy = DOM::create_element(*document, element.local_name(), element.namespace_() /* FIXME: node’s namespace prefix, and node’s is value, with the synchronous custom elements flag unset */);
  371. element.for_each_attribute([&](auto& name, auto& value) {
  372. element_copy->set_attribute(name, value);
  373. });
  374. copy = move(element_copy);
  375. } else if (is<Document>(this)) {
  376. auto document_ = verify_cast<Document>(this);
  377. auto document_copy = Document::create(document_->url());
  378. document_copy->set_encoding(document_->encoding());
  379. document_copy->set_content_type(document_->content_type());
  380. document_copy->set_origin(document_->origin());
  381. document_copy->set_quirks_mode(document_->mode());
  382. // FIXME: Set type ("xml" or "html")
  383. copy = move(document_copy);
  384. } else if (is<DocumentType>(this)) {
  385. auto document_type = verify_cast<DocumentType>(this);
  386. auto document_type_copy = adopt_ref(*new DocumentType(*document));
  387. document_type_copy->set_name(document_type->name());
  388. document_type_copy->set_public_id(document_type->public_id());
  389. document_type_copy->set_system_id(document_type->system_id());
  390. copy = move(document_type_copy);
  391. } else if (is<Text>(this)) {
  392. auto text = verify_cast<Text>(this);
  393. auto text_copy = adopt_ref(*new Text(*document, text->data()));
  394. copy = move(text_copy);
  395. } else if (is<Comment>(this)) {
  396. auto comment = verify_cast<Comment>(this);
  397. auto comment_copy = adopt_ref(*new Comment(*document, comment->data()));
  398. copy = move(comment_copy);
  399. } else if (is<ProcessingInstruction>(this)) {
  400. auto processing_instruction = verify_cast<ProcessingInstruction>(this);
  401. auto processing_instruction_copy = adopt_ref(*new ProcessingInstruction(*document, processing_instruction->data(), processing_instruction->target()));
  402. copy = move(processing_instruction_copy);
  403. } else if (is<DocumentFragment>(this)) {
  404. auto document_fragment_copy = adopt_ref(*new DocumentFragment(*document));
  405. copy = move(document_fragment_copy);
  406. } else {
  407. dbgln("clone_node() not implemented for NodeType {}", (u16)m_type);
  408. TODO();
  409. }
  410. // FIXME: 4. Set copy’s node document and document to copy, if copy is a document, and set copy’s node document to document otherwise.
  411. cloned(*copy, clone_children);
  412. if (clone_children) {
  413. for_each_child([&](auto& child) {
  414. copy->append_child(child.clone_node(document, true));
  415. });
  416. }
  417. return copy.release_nonnull();
  418. }
  419. // https://dom.spec.whatwg.org/#dom-node-clonenode
  420. ExceptionOr<NonnullRefPtr<Node>> Node::clone_node_binding(bool deep)
  421. {
  422. if (is<ShadowRoot>(*this))
  423. return NotSupportedError::create("Cannot clone shadow root");
  424. return clone_node(nullptr, deep);
  425. }
  426. void Node::set_document(Badge<Document>, Document& document)
  427. {
  428. if (m_document == &document)
  429. return;
  430. document.ref_from_node({});
  431. m_document->unref_from_node({});
  432. m_document = &document;
  433. if (needs_style_update() || child_needs_style_update()) {
  434. // NOTE: We unset and reset the "needs style update" flag here.
  435. // This ensures that there's a pending style update in the new document
  436. // that will eventually assign some style to this node if needed.
  437. set_needs_style_update(false);
  438. set_needs_style_update(true);
  439. }
  440. }
  441. bool Node::is_editable() const
  442. {
  443. return parent() && parent()->is_editable();
  444. }
  445. JS::Object* Node::create_wrapper(JS::GlobalObject& global_object)
  446. {
  447. return wrap(global_object, *this);
  448. }
  449. void Node::removed_last_ref()
  450. {
  451. if (is<Document>(*this)) {
  452. verify_cast<Document>(*this).removed_last_ref();
  453. return;
  454. }
  455. m_deletion_has_begun = true;
  456. delete this;
  457. }
  458. void Node::set_layout_node(Badge<Layout::Node>, Layout::Node* layout_node) const
  459. {
  460. if (layout_node)
  461. m_layout_node = layout_node->make_weak_ptr();
  462. else
  463. m_layout_node = nullptr;
  464. }
  465. EventTarget* Node::get_parent(const Event&)
  466. {
  467. // FIXME: returns the node’s assigned slot, if node is assigned, and node’s parent otherwise.
  468. return parent();
  469. }
  470. void Node::set_needs_style_update(bool value)
  471. {
  472. if (m_needs_style_update == value)
  473. return;
  474. m_needs_style_update = value;
  475. if (m_needs_style_update) {
  476. for (auto* ancestor = parent(); ancestor; ancestor = ancestor->parent()) {
  477. ancestor->m_child_needs_style_update = true;
  478. }
  479. document().schedule_style_update();
  480. }
  481. }
  482. void Node::inserted()
  483. {
  484. set_needs_style_update(true);
  485. }
  486. ParentNode* Node::parent_or_shadow_host()
  487. {
  488. if (is<ShadowRoot>(*this))
  489. return verify_cast<ShadowRoot>(*this).host();
  490. return verify_cast<ParentNode>(parent());
  491. }
  492. NonnullRefPtr<NodeList> Node::child_nodes()
  493. {
  494. // FIXME: This should return the same LiveNodeList object every time,
  495. // but that would cause a reference cycle since NodeList refs the root.
  496. return LiveNodeList::create(*this, [this](auto& node) {
  497. return is_parent_of(node);
  498. });
  499. }
  500. NonnullRefPtrVector<Node> Node::children_as_vector() const
  501. {
  502. NonnullRefPtrVector<Node> nodes;
  503. for_each_child([&](auto& child) {
  504. nodes.append(child);
  505. });
  506. return nodes;
  507. }
  508. void Node::remove_all_children(bool suppress_observers)
  509. {
  510. while (RefPtr<Node> child = first_child())
  511. child->remove(suppress_observers);
  512. }
  513. // https://dom.spec.whatwg.org/#dom-node-comparedocumentposition
  514. u16 Node::compare_document_position(RefPtr<Node> other)
  515. {
  516. enum Position : u16 {
  517. DOCUMENT_POSITION_EQUAL = 0,
  518. DOCUMENT_POSITION_DISCONNECTED = 1,
  519. DOCUMENT_POSITION_PRECEDING = 2,
  520. DOCUMENT_POSITION_FOLLOWING = 4,
  521. DOCUMENT_POSITION_CONTAINS = 8,
  522. DOCUMENT_POSITION_CONTAINED_BY = 16,
  523. DOCUMENT_POSITION_IMPLEMENTATION_SPECIFIC = 32,
  524. };
  525. if (this == other)
  526. return DOCUMENT_POSITION_EQUAL;
  527. Node* node1 = other.ptr();
  528. Node* node2 = this;
  529. // FIXME: Once LibWeb supports attribute nodes fix to follow the specification.
  530. VERIFY(node1->type() != NodeType::ATTRIBUTE_NODE && node2->type() != NodeType::ATTRIBUTE_NODE);
  531. if ((node1 == nullptr || node2 == nullptr) || (&node1->root() != &node2->root()))
  532. return DOCUMENT_POSITION_DISCONNECTED | DOCUMENT_POSITION_IMPLEMENTATION_SPECIFIC | (node1 > node2 ? DOCUMENT_POSITION_PRECEDING : DOCUMENT_POSITION_FOLLOWING);
  533. if (node1->is_ancestor_of(*node2))
  534. return DOCUMENT_POSITION_CONTAINS | DOCUMENT_POSITION_PRECEDING;
  535. if (node2->is_ancestor_of(*node1))
  536. return DOCUMENT_POSITION_CONTAINED_BY | DOCUMENT_POSITION_FOLLOWING;
  537. if (node1->is_before(*node2))
  538. return DOCUMENT_POSITION_PRECEDING;
  539. else
  540. return DOCUMENT_POSITION_FOLLOWING;
  541. }
  542. // https://dom.spec.whatwg.org/#concept-tree-host-including-inclusive-ancestor
  543. bool Node::is_host_including_inclusive_ancestor_of(const Node& other) const
  544. {
  545. return is_inclusive_ancestor_of(other) || (is<DocumentFragment>(other.root()) && verify_cast<DocumentFragment>(other.root()).host() && is_inclusive_ancestor_of(*verify_cast<DocumentFragment>(other.root()).host().ptr()));
  546. }
  547. // https://dom.spec.whatwg.org/#dom-node-ownerdocument
  548. RefPtr<Document> Node::owner_document() const
  549. {
  550. if (is_document())
  551. return nullptr;
  552. return m_document;
  553. }
  554. // This function tells us whether a node is interesting enough to show up
  555. // in the DOM inspector. This hides two things:
  556. // - Non-rendered whitespace
  557. // - Rendered whitespace between block-level elements
  558. bool Node::is_uninteresting_whitespace_node() const
  559. {
  560. if (!is<Text>(*this))
  561. return false;
  562. if (!static_cast<Text const&>(*this).data().is_whitespace())
  563. return false;
  564. if (!layout_node())
  565. return true;
  566. if (layout_node()->parent()->is_anonymous())
  567. return true;
  568. return false;
  569. }
  570. void Node::serialize_tree_as_json(JsonObjectSerializer<StringBuilder>& object) const
  571. {
  572. object.add("name", node_name().view());
  573. object.add("id", id());
  574. if (is_document()) {
  575. object.add("type", "document");
  576. } else if (is_element()) {
  577. object.add("type", "element");
  578. auto const* element = static_cast<DOM::Element const*>(this);
  579. if (element->has_attributes()) {
  580. auto attributes = object.add_object("attributes");
  581. element->for_each_attribute([&attributes](auto& name, auto& value) {
  582. attributes.add(name, value);
  583. });
  584. }
  585. if (element->is_browsing_context_container()) {
  586. auto const* container = static_cast<HTML::BrowsingContextContainer const*>(element);
  587. if (auto const* content_document = container->content_document()) {
  588. auto children = object.add_array("children");
  589. JsonObjectSerializer<StringBuilder> content_document_object = children.add_object();
  590. content_document->serialize_tree_as_json(content_document_object);
  591. }
  592. }
  593. } else if (is_text()) {
  594. object.add("type", "text");
  595. auto text_node = static_cast<DOM::Text const*>(this);
  596. object.add("text", text_node->data());
  597. } else if (is_comment()) {
  598. object.add("type"sv, "comment"sv);
  599. object.add("data"sv, static_cast<DOM::Comment const&>(*this).data());
  600. }
  601. if (has_child_nodes()) {
  602. auto children = object.add_array("children");
  603. for_each_child([&children](DOM::Node& child) {
  604. if (child.is_uninteresting_whitespace_node())
  605. return;
  606. JsonObjectSerializer<StringBuilder> child_object = children.add_object();
  607. child.serialize_tree_as_json(child_object);
  608. });
  609. }
  610. }
  611. // https://html.spec.whatwg.org/multipage/webappapis.html#concept-n-noscript
  612. bool Node::is_scripting_disabled() const
  613. {
  614. // FIXME: or when scripting is disabled for its relevant settings object.
  615. return !document().browsing_context();
  616. }
  617. // https://dom.spec.whatwg.org/#dom-node-contains
  618. bool Node::contains(RefPtr<Node> other) const
  619. {
  620. return other && other->is_inclusive_descendant_of(*this);
  621. }
  622. // https://dom.spec.whatwg.org/#concept-shadow-including-descendant
  623. bool Node::is_shadow_including_descendant_of(Node const& other) const
  624. {
  625. if (is_descendant_of(other))
  626. return true;
  627. if (!is<ShadowRoot>(root()))
  628. return false;
  629. auto& shadow_root = verify_cast<ShadowRoot>(root());
  630. // NOTE: While host is nullable because of inheriting from DocumentFragment, shadow roots always have a host.
  631. return shadow_root.host()->is_shadow_including_inclusive_descendant_of(other);
  632. }
  633. // https://dom.spec.whatwg.org/#concept-shadow-including-inclusive-descendant
  634. bool Node::is_shadow_including_inclusive_descendant_of(Node const& other) const
  635. {
  636. return &other == this || is_shadow_including_descendant_of(other);
  637. }
  638. // https://dom.spec.whatwg.org/#concept-shadow-including-ancestor
  639. bool Node::is_shadow_including_ancestor_of(Node const& other) const
  640. {
  641. return other.is_shadow_including_descendant_of(*this);
  642. }
  643. // https://dom.spec.whatwg.org/#concept-shadow-including-inclusive-ancestor
  644. bool Node::is_shadow_including_inclusive_ancestor_of(Node const& other) const
  645. {
  646. return other.is_shadow_including_inclusive_descendant_of(*this);
  647. }
  648. // https://dom.spec.whatwg.org/#concept-node-replace-all
  649. void Node::replace_all(RefPtr<Node> node)
  650. {
  651. // FIXME: Let removedNodes be parent’s children. (Current unused so not included)
  652. // FIXME: Let addedNodes be the empty set. (Currently unused so not included)
  653. // FIXME: If node is a DocumentFragment node, then set addedNodes to node’s children.
  654. // FIXME: Otherwise, if node is non-null, set addedNodes to « node ».
  655. remove_all_children(true);
  656. if (node)
  657. insert_before(*node, nullptr, true);
  658. // FIXME: If either addedNodes or removedNodes is not empty, then queue a tree mutation record for parent with addedNodes, removedNodes, null, and null.
  659. }
  660. // https://dom.spec.whatwg.org/#string-replace-all
  661. void Node::string_replace_all(String const& string)
  662. {
  663. RefPtr<Node> node;
  664. if (!string.is_empty())
  665. node = make_ref_counted<Text>(document(), string);
  666. replace_all(node);
  667. }
  668. // https://w3c.github.io/DOM-Parsing/#dfn-fragment-serializing-algorithm
  669. String Node::serialize_fragment(/* FIXME: Requires well-formed flag */) const
  670. {
  671. // FIXME: Let context document be the value of node's node document.
  672. // FIXME: If context document is an HTML document, return an HTML serialization of node.
  673. // (We currently always do this)
  674. return HTML::HTMLParser::serialize_html_fragment(*this);
  675. // FIXME: Otherwise, context document is an XML document; return an XML serialization of node passing the flag require well-formed.
  676. }
  677. // https://dom.spec.whatwg.org/#dom-node-issamenode
  678. bool Node::is_same_node(Node const* other_node) const
  679. {
  680. return this == other_node;
  681. }
  682. // https://dom.spec.whatwg.org/#dom-node-isequalnode
  683. bool Node::is_equal_node(Node const* other_node) const
  684. {
  685. // The isEqualNode(otherNode) method steps are to return true if otherNode is non-null and this equals otherNode; otherwise false.
  686. if (!other_node)
  687. return false;
  688. // Fast path for testing a node against itself.
  689. if (this == other_node)
  690. return true;
  691. // A node A equals a node B if all of the following conditions are true:
  692. // A and B implement the same interfaces.
  693. if (node_name() != other_node->node_name())
  694. return false;
  695. // The following are equal, switching on the interface A implements:
  696. switch (node_type()) {
  697. case (u16)NodeType::DOCUMENT_TYPE_NODE: {
  698. // Its name, public ID, and system ID.
  699. auto& this_doctype = verify_cast<DocumentType>(*this);
  700. auto& other_doctype = verify_cast<DocumentType>(*other_node);
  701. if (this_doctype.name() != other_doctype.name()
  702. || this_doctype.public_id() != other_doctype.public_id()
  703. || this_doctype.system_id() != other_doctype.system_id())
  704. return false;
  705. break;
  706. }
  707. case (u16)NodeType::ELEMENT_NODE: {
  708. // Its namespace, namespace prefix, local name, and its attribute list’s size.
  709. auto& this_element = verify_cast<Element>(*this);
  710. auto& other_element = verify_cast<Element>(*other_node);
  711. if (this_element.namespace_() != other_element.namespace_()
  712. || this_element.prefix() != other_element.prefix()
  713. || this_element.local_name() != other_element.local_name()
  714. || this_element.attribute_list_size() != other_element.attribute_list_size())
  715. return false;
  716. // If A is an element, each attribute in its attribute list has an attribute that equals an attribute in B’s attribute list.
  717. bool has_same_attributes = true;
  718. this_element.for_each_attribute([&](auto& name, auto& value) {
  719. if (other_element.get_attribute(name) != value)
  720. has_same_attributes = false;
  721. });
  722. if (!has_same_attributes)
  723. return false;
  724. break;
  725. }
  726. case (u16)NodeType::COMMENT_NODE:
  727. case (u16)NodeType::TEXT_NODE: {
  728. // Its data.
  729. auto& this_cdata = verify_cast<CharacterData>(*this);
  730. auto& other_cdata = verify_cast<CharacterData>(*other_node);
  731. if (this_cdata.data() != other_cdata.data())
  732. return false;
  733. break;
  734. }
  735. case (u16)NodeType::PROCESSING_INSTRUCTION_NODE:
  736. case (u16)NodeType::ATTRIBUTE_NODE:
  737. TODO();
  738. default:
  739. break;
  740. }
  741. // A and B have the same number of children.
  742. size_t this_child_count = child_count();
  743. size_t other_child_count = other_node->child_count();
  744. if (this_child_count != other_child_count)
  745. return false;
  746. // Each child of A equals the child of B at the identical index.
  747. // FIXME: This can be made nicer. child_at_index() is O(n).
  748. for (size_t i = 0; i < this_child_count; ++i) {
  749. auto* this_child = child_at_index(i);
  750. auto* other_child = other_node->child_at_index(i);
  751. VERIFY(this_child);
  752. VERIFY(other_child);
  753. if (!this_child->is_equal_node(other_child))
  754. return false;
  755. }
  756. return true;
  757. }
  758. // https://dom.spec.whatwg.org/#in-a-document-tree
  759. bool Node::in_a_document_tree() const
  760. {
  761. // An element is in a document tree if its root is a document.
  762. return root().is_document();
  763. }
  764. // https://dom.spec.whatwg.org/#dom-node-getrootnode
  765. NonnullRefPtr<Node> Node::get_root_node(GetRootNodeOptions const& options)
  766. {
  767. // The getRootNode(options) method steps are to return this’s shadow-including root if options["composed"] is true; otherwise this’s root.
  768. if (options.composed)
  769. return shadow_including_root();
  770. return root();
  771. }
  772. }