MessagePort.cpp 17 KB

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  1. /*
  2. * Copyright (c) 2021, Andreas Kling <andreas@ladybird.org>
  3. * Copyright (c) 2023, Andrew Kaster <akaster@serenityos.org>
  4. *
  5. * SPDX-License-Identifier: BSD-2-Clause
  6. */
  7. #include <AK/ByteReader.h>
  8. #include <AK/MemoryStream.h>
  9. #include <LibCore/Socket.h>
  10. #include <LibCore/System.h>
  11. #include <LibIPC/Decoder.h>
  12. #include <LibIPC/Encoder.h>
  13. #include <LibIPC/File.h>
  14. #include <LibIPC/Transport.h>
  15. #include <LibWeb/Bindings/ExceptionOrUtils.h>
  16. #include <LibWeb/Bindings/Intrinsics.h>
  17. #include <LibWeb/Bindings/MessagePortPrototype.h>
  18. #include <LibWeb/DOM/EventDispatcher.h>
  19. #include <LibWeb/HTML/EventNames.h>
  20. #include <LibWeb/HTML/MessageEvent.h>
  21. #include <LibWeb/HTML/MessagePort.h>
  22. #include <LibWeb/HTML/Scripting/TemporaryExecutionContext.h>
  23. #include <LibWeb/HTML/StructuredSerializeOptions.h>
  24. #include <LibWeb/HTML/WorkerGlobalScope.h>
  25. namespace Web::HTML {
  26. constexpr u8 IPC_FILE_TAG = 0xA5;
  27. JS_DEFINE_ALLOCATOR(MessagePort);
  28. static HashTable<JS::RawGCPtr<MessagePort>>& all_message_ports()
  29. {
  30. static HashTable<JS::RawGCPtr<MessagePort>> ports;
  31. return ports;
  32. }
  33. JS::NonnullGCPtr<MessagePort> MessagePort::create(JS::Realm& realm)
  34. {
  35. return realm.heap().allocate<MessagePort>(realm, realm);
  36. }
  37. MessagePort::MessagePort(JS::Realm& realm)
  38. : DOM::EventTarget(realm)
  39. {
  40. all_message_ports().set(this);
  41. }
  42. MessagePort::~MessagePort()
  43. {
  44. all_message_ports().remove(this);
  45. disentangle();
  46. }
  47. void MessagePort::for_each_message_port(Function<void(MessagePort&)> callback)
  48. {
  49. for (auto port : all_message_ports())
  50. callback(*port);
  51. }
  52. void MessagePort::initialize(JS::Realm& realm)
  53. {
  54. Base::initialize(realm);
  55. WEB_SET_PROTOTYPE_FOR_INTERFACE(MessagePort);
  56. }
  57. void MessagePort::visit_edges(Cell::Visitor& visitor)
  58. {
  59. Base::visit_edges(visitor);
  60. visitor.visit(m_remote_port);
  61. visitor.visit(m_worker_event_target);
  62. }
  63. bool MessagePort::is_entangled() const
  64. {
  65. return m_transport.has_value();
  66. }
  67. void MessagePort::set_worker_event_target(JS::NonnullGCPtr<DOM::EventTarget> target)
  68. {
  69. m_worker_event_target = target;
  70. }
  71. // https://html.spec.whatwg.org/multipage/web-messaging.html#message-ports:transfer-steps
  72. WebIDL::ExceptionOr<void> MessagePort::transfer_steps(HTML::TransferDataHolder& data_holder)
  73. {
  74. // 1. Set value's has been shipped flag to true.
  75. m_has_been_shipped = true;
  76. // FIXME: 2. Set dataHolder.[[PortMessageQueue]] to value's port message queue.
  77. // FIXME: Support delivery of messages that haven't been delivered yet on the other side
  78. // 3. If value is entangled with another port remotePort, then:
  79. if (is_entangled()) {
  80. // 1. Set remotePort's has been shipped flag to true.
  81. m_remote_port->m_has_been_shipped = true;
  82. // 2. Set dataHolder.[[RemotePort]] to remotePort.
  83. if constexpr (IsSame<IPC::Transport, IPC::TransportSocket>) {
  84. auto fd = MUST(m_transport->release_underlying_transport_for_transfer());
  85. m_transport = {};
  86. data_holder.fds.append(IPC::File::adopt_fd(fd));
  87. data_holder.data.append(IPC_FILE_TAG);
  88. } else {
  89. VERIFY(false && "Don't know how to transfer IPC::Transport type");
  90. }
  91. }
  92. // 4. Otherwise, set dataHolder.[[RemotePort]] to null.
  93. else {
  94. data_holder.data.append(0);
  95. }
  96. return {};
  97. }
  98. WebIDL::ExceptionOr<void> MessagePort::transfer_receiving_steps(HTML::TransferDataHolder& data_holder)
  99. {
  100. // 1. Set value's has been shipped flag to true.
  101. m_has_been_shipped = true;
  102. // FIXME 2. Move all the tasks that are to fire message events in dataHolder.[[PortMessageQueue]] to the port message queue of value,
  103. // if any, leaving value's port message queue in its initial disabled state, and, if value's relevant global object is a Window,
  104. // associating the moved tasks with value's relevant global object's associated Document.
  105. // 3. If dataHolder.[[RemotePort]] is not null, then entangle dataHolder.[[RemotePort]] and value.
  106. // (This will disentangle dataHolder.[[RemotePort]] from the original port that was transferred.)
  107. auto fd_tag = data_holder.data.take_first();
  108. if (fd_tag == IPC_FILE_TAG) {
  109. if constexpr (IsSame<IPC::Transport, IPC::TransportSocket>) {
  110. auto fd = data_holder.fds.take_first();
  111. m_transport = IPC::Transport(MUST(Core::LocalSocket::adopt_fd(fd.take_fd())));
  112. m_transport->set_up_read_hook([strong_this = JS::make_handle(this)]() {
  113. strong_this->read_from_transport();
  114. });
  115. } else {
  116. VERIFY(false && "Don't know how to receive IPC::Transport type");
  117. }
  118. } else if (fd_tag != 0) {
  119. dbgln("Unexpected byte {:x} in MessagePort transfer data", fd_tag);
  120. VERIFY_NOT_REACHED();
  121. }
  122. return {};
  123. }
  124. void MessagePort::disentangle()
  125. {
  126. if (m_remote_port)
  127. m_remote_port->m_remote_port = nullptr;
  128. m_remote_port = nullptr;
  129. m_transport = {};
  130. m_worker_event_target = nullptr;
  131. }
  132. // https://html.spec.whatwg.org/multipage/web-messaging.html#entangle
  133. void MessagePort::entangle_with(MessagePort& remote_port)
  134. {
  135. if (m_remote_port.ptr() == &remote_port)
  136. return;
  137. // 1. If one of the ports is already entangled, then disentangle it and the port that it was entangled with.
  138. if (is_entangled())
  139. disentangle();
  140. if (remote_port.is_entangled())
  141. remote_port.disentangle();
  142. // 2. Associate the two ports to be entangled, so that they form the two parts of a new channel.
  143. // (There is no MessageChannel object that represents this channel.)
  144. remote_port.m_remote_port = this;
  145. m_remote_port = &remote_port;
  146. // FIXME: Abstract such that we can entangle different transport types
  147. auto create_paired_sockets = []() -> Array<NonnullOwnPtr<Core::LocalSocket>, 2> {
  148. int fds[2] = {};
  149. MUST(Core::System::socketpair(AF_LOCAL, SOCK_STREAM, 0, fds));
  150. auto socket0 = MUST(Core::LocalSocket::adopt_fd(fds[0]));
  151. MUST(socket0->set_blocking(false));
  152. MUST(socket0->set_close_on_exec(true));
  153. auto socket1 = MUST(Core::LocalSocket::adopt_fd(fds[1]));
  154. MUST(socket1->set_blocking(false));
  155. MUST(socket1->set_close_on_exec(true));
  156. return Array { move(socket0), move(socket1) };
  157. };
  158. auto sockets = create_paired_sockets();
  159. m_transport = IPC::Transport(move(sockets[0]));
  160. m_remote_port->m_transport = IPC::Transport(move(sockets[1]));
  161. m_transport->set_up_read_hook([strong_this = JS::make_handle(this)]() {
  162. strong_this->read_from_transport();
  163. });
  164. m_remote_port->m_transport->set_up_read_hook([remote_port = JS::make_handle(m_remote_port)]() {
  165. remote_port->read_from_transport();
  166. });
  167. }
  168. // https://html.spec.whatwg.org/multipage/web-messaging.html#dom-messageport-postmessage-options
  169. WebIDL::ExceptionOr<void> MessagePort::post_message(JS::Value message, Vector<JS::Handle<JS::Object>> const& transfer)
  170. {
  171. // 1. Let targetPort be the port with which this MessagePort is entangled, if any; otherwise let it be null.
  172. JS::GCPtr<MessagePort> target_port = m_remote_port;
  173. // 2. Let options be «[ "transfer" → transfer ]».
  174. auto options = StructuredSerializeOptions { transfer };
  175. // 3. Run the message port post message steps providing this, targetPort, message and options.
  176. return message_port_post_message_steps(target_port, message, options);
  177. }
  178. // https://html.spec.whatwg.org/multipage/web-messaging.html#dom-messageport-postmessage
  179. WebIDL::ExceptionOr<void> MessagePort::post_message(JS::Value message, StructuredSerializeOptions const& options)
  180. {
  181. // 1. Let targetPort be the port with which this MessagePort is entangled, if any; otherwise let it be null.
  182. JS::GCPtr<MessagePort> target_port = m_remote_port;
  183. // 2. Run the message port post message steps providing targetPort, message and options.
  184. return message_port_post_message_steps(target_port, message, options);
  185. }
  186. // https://html.spec.whatwg.org/multipage/web-messaging.html#message-port-post-message-steps
  187. WebIDL::ExceptionOr<void> MessagePort::message_port_post_message_steps(JS::GCPtr<MessagePort> target_port, JS::Value message, StructuredSerializeOptions const& options)
  188. {
  189. auto& realm = this->realm();
  190. auto& vm = this->vm();
  191. // 1. Let transfer be options["transfer"].
  192. auto const& transfer = options.transfer;
  193. // 2. If transfer contains this MessagePort, then throw a "DataCloneError" DOMException.
  194. for (auto const& handle : transfer) {
  195. if (handle == this)
  196. return WebIDL::DataCloneError::create(realm, "Cannot transfer a MessagePort to itself"_string);
  197. }
  198. // 3. Let doomed be false.
  199. bool doomed = false;
  200. // 4. If targetPort is not null and transfer contains targetPort, then set doomed to true and optionally report to a developer console that the target port was posted to itself, causing the communication channel to be lost.
  201. if (target_port) {
  202. for (auto const& handle : transfer) {
  203. if (handle == target_port.ptr()) {
  204. doomed = true;
  205. dbgln("FIXME: Report to a developer console that the target port was posted to itself, causing the communication channel to be lost");
  206. }
  207. }
  208. }
  209. // 5. Let serializeWithTransferResult be StructuredSerializeWithTransfer(message, transfer). Rethrow any exceptions.
  210. auto serialize_with_transfer_result = TRY(structured_serialize_with_transfer(vm, message, transfer));
  211. // 6. If targetPort is null, or if doomed is true, then return.
  212. // IMPLEMENTATION DEFINED: Actually check the socket here, not the target port.
  213. // If there's no target message port in the same realm, we still want to send the message over IPC
  214. if (!m_transport.has_value() || doomed) {
  215. return {};
  216. }
  217. // 7. Add a task that runs the following steps to the port message queue of targetPort:
  218. post_port_message(move(serialize_with_transfer_result));
  219. return {};
  220. }
  221. ErrorOr<void> MessagePort::send_message_on_transport(SerializedTransferRecord const& serialize_with_transfer_result)
  222. {
  223. IPC::MessageBuffer buffer;
  224. IPC::Encoder encoder(buffer);
  225. MUST(encoder.encode(serialize_with_transfer_result));
  226. TRY(buffer.transfer_message(*m_transport));
  227. return {};
  228. }
  229. void MessagePort::post_port_message(SerializedTransferRecord serialize_with_transfer_result)
  230. {
  231. // FIXME: Use the correct task source?
  232. queue_global_task(Task::Source::PostedMessage, relevant_global_object(*this), JS::create_heap_function(heap(), [this, serialize_with_transfer_result = move(serialize_with_transfer_result)]() mutable {
  233. if (!m_transport.has_value() || !m_transport->is_open())
  234. return;
  235. if (auto result = send_message_on_transport(serialize_with_transfer_result); result.is_error()) {
  236. dbgln("Failed to post message: {}", result.error());
  237. disentangle();
  238. }
  239. }));
  240. }
  241. ErrorOr<MessagePort::ParseDecision> MessagePort::parse_message()
  242. {
  243. static constexpr size_t HEADER_SIZE = sizeof(u32);
  244. auto num_bytes_ready = m_buffered_data.size();
  245. switch (m_socket_state) {
  246. case SocketState::Header: {
  247. if (num_bytes_ready < HEADER_SIZE)
  248. return ParseDecision::NotEnoughData;
  249. m_socket_incoming_message_size = ByteReader::load32(m_buffered_data.data());
  250. // NOTE: We don't decrement the number of ready bytes because we want to remove the entire
  251. // message + header from the buffer in one go on success
  252. m_socket_state = SocketState::Data;
  253. [[fallthrough]];
  254. }
  255. case SocketState::Data: {
  256. if (num_bytes_ready < HEADER_SIZE + m_socket_incoming_message_size)
  257. return ParseDecision::NotEnoughData;
  258. auto payload = m_buffered_data.span().slice(HEADER_SIZE, m_socket_incoming_message_size);
  259. FixedMemoryStream stream { payload, FixedMemoryStream::Mode::ReadOnly };
  260. IPC::Decoder decoder { stream, m_unprocessed_fds };
  261. auto serialized_transfer_record = TRY(decoder.decode<SerializedTransferRecord>());
  262. // Make sure to advance our state machine before dispatching the MessageEvent,
  263. // as dispatching events can run arbitrary JS (and cause us to receive another message!)
  264. m_socket_state = SocketState::Header;
  265. m_buffered_data.remove(0, HEADER_SIZE + m_socket_incoming_message_size);
  266. post_message_task_steps(serialized_transfer_record);
  267. break;
  268. }
  269. case SocketState::Error:
  270. return Error::from_errno(ENOMSG);
  271. }
  272. return ParseDecision::ParseNextMessage;
  273. }
  274. void MessagePort::read_from_transport()
  275. {
  276. auto&& [bytes, fds] = m_transport->read_as_much_as_possible_without_blocking([this] {
  277. queue_global_task(Task::Source::PostedMessage, relevant_global_object(*this), JS::create_heap_function(heap(), [this] {
  278. this->close();
  279. }));
  280. });
  281. m_buffered_data.append(bytes.data(), bytes.size());
  282. for (auto fd : fds)
  283. m_unprocessed_fds.enqueue(IPC::File::adopt_fd(fd));
  284. while (true) {
  285. auto parse_decision_or_error = parse_message();
  286. if (parse_decision_or_error.is_error()) {
  287. dbgln("MessagePort::read_from_socket(): Failed to parse message: {}", parse_decision_or_error.error());
  288. return;
  289. }
  290. if (parse_decision_or_error.value() == ParseDecision::NotEnoughData)
  291. break;
  292. }
  293. }
  294. void MessagePort::post_message_task_steps(SerializedTransferRecord& serialize_with_transfer_result)
  295. {
  296. // 1. Let finalTargetPort be the MessagePort in whose port message queue the task now finds itself.
  297. // NOTE: This can be different from targetPort, if targetPort itself was transferred and thus all its tasks moved along with it.
  298. auto* final_target_port = this;
  299. // IMPLEMENTATION DEFINED:
  300. // https://html.spec.whatwg.org/multipage/workers.html#dedicated-workers-and-the-worker-interface
  301. // Worker objects act as if they had an implicit MessagePort associated with them.
  302. // All messages received by that port must immediately be retargeted at the Worker object.
  303. // We therefore set a special event target for those implicit ports on the Worker and the WorkerGlobalScope objects
  304. EventTarget* message_event_target = final_target_port;
  305. if (m_worker_event_target != nullptr) {
  306. message_event_target = m_worker_event_target;
  307. }
  308. // 2. Let targetRealm be finalTargetPort's relevant realm.
  309. auto& target_realm = relevant_realm(*final_target_port);
  310. auto& target_vm = target_realm.vm();
  311. // 3. Let deserializeRecord be StructuredDeserializeWithTransfer(serializeWithTransferResult, targetRealm).
  312. TemporaryExecutionContext context { relevant_realm(*final_target_port) };
  313. auto deserialize_record_or_error = structured_deserialize_with_transfer(target_vm, serialize_with_transfer_result);
  314. if (deserialize_record_or_error.is_error()) {
  315. // If this throws an exception, catch it, fire an event named messageerror at finalTargetPort, using MessageEvent, and then return.
  316. auto exception = deserialize_record_or_error.release_error();
  317. MessageEventInit event_init {};
  318. message_event_target->dispatch_event(MessageEvent::create(target_realm, HTML::EventNames::messageerror, event_init));
  319. return;
  320. }
  321. auto deserialize_record = deserialize_record_or_error.release_value();
  322. // 4. Let messageClone be deserializeRecord.[[Deserialized]].
  323. auto message_clone = deserialize_record.deserialized;
  324. // 5. Let newPorts be a new frozen array consisting of all MessagePort objects in deserializeRecord.[[TransferredValues]], if any, maintaining their relative order.
  325. // FIXME: Use a FrozenArray
  326. Vector<JS::Handle<MessagePort>> new_ports;
  327. for (auto const& object : deserialize_record.transferred_values) {
  328. if (is<HTML::MessagePort>(*object)) {
  329. new_ports.append(verify_cast<MessagePort>(*object));
  330. }
  331. }
  332. // 6. Fire an event named message at finalTargetPort, using MessageEvent, with the data attribute initialized to messageClone and the ports attribute initialized to newPorts.
  333. MessageEventInit event_init {};
  334. event_init.data = message_clone;
  335. event_init.ports = move(new_ports);
  336. message_event_target->dispatch_event(MessageEvent::create(target_realm, HTML::EventNames::message, event_init));
  337. }
  338. // https://html.spec.whatwg.org/multipage/web-messaging.html#dom-messageport-start
  339. void MessagePort::start()
  340. {
  341. if (!is_entangled())
  342. return;
  343. VERIFY(m_transport.has_value());
  344. // TODO: The start() method steps are to enable this's port message queue, if it is not already enabled.
  345. }
  346. // https://html.spec.whatwg.org/multipage/web-messaging.html#dom-messageport-close
  347. void MessagePort::close()
  348. {
  349. // 1. Set this MessagePort object's [[Detached]] internal slot value to true.
  350. set_detached(true);
  351. // 2. If this MessagePort object is entangled, disentangle it.
  352. if (is_entangled())
  353. disentangle();
  354. }
  355. #undef __ENUMERATE
  356. #define __ENUMERATE(attribute_name, event_name) \
  357. void MessagePort::set_##attribute_name(WebIDL::CallbackType* value) \
  358. { \
  359. set_event_handler_attribute(event_name, value); \
  360. } \
  361. WebIDL::CallbackType* MessagePort::attribute_name() \
  362. { \
  363. return event_handler_attribute(event_name); \
  364. }
  365. ENUMERATE_MESSAGE_PORT_EVENT_HANDLERS(__ENUMERATE)
  366. #undef __ENUMERATE
  367. }