CoreIPCClient.h 13 KB

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  1. #pragma once
  2. #include <LibCore/CEvent.h>
  3. #include <LibCore/CEventLoop.h>
  4. #include <LibCore/CLocalSocket.h>
  5. #include <LibCore/CNotifier.h>
  6. #include <LibCore/CSyscallUtils.h>
  7. #include <LibIPC/IMessage.h>
  8. #include <stdio.h>
  9. #include <stdlib.h>
  10. #include <sys/select.h>
  11. #include <sys/socket.h>
  12. #include <sys/types.h>
  13. #include <sys/uio.h>
  14. #include <unistd.h>
  15. //#define CIPC_DEBUG
  16. namespace IPC {
  17. namespace Client {
  18. class Event : public CEvent {
  19. public:
  20. enum Type {
  21. Invalid = 2000,
  22. PostProcess,
  23. };
  24. Event() {}
  25. explicit Event(Type type)
  26. : CEvent(type)
  27. {
  28. }
  29. };
  30. class PostProcessEvent : public Event {
  31. public:
  32. explicit PostProcessEvent(int client_id)
  33. : Event(PostProcess)
  34. , m_client_id(client_id)
  35. {
  36. }
  37. int client_id() const { return m_client_id; }
  38. private:
  39. int m_client_id { 0 };
  40. };
  41. template<typename ServerMessage, typename ClientMessage>
  42. class Connection : public CObject {
  43. public:
  44. Connection(const StringView& address)
  45. : m_connection(CLocalSocket::construct(this))
  46. , m_notifier(CNotifier::construct(m_connection->fd(), CNotifier::Read, this))
  47. {
  48. // We want to rate-limit our clients
  49. m_connection->set_blocking(true);
  50. m_notifier->on_ready_to_read = [this] {
  51. drain_messages_from_server();
  52. CEventLoop::current().post_event(*this, make<PostProcessEvent>(m_connection->fd()));
  53. };
  54. int retries = 1000;
  55. while (retries) {
  56. if (m_connection->connect(CSocketAddress::local(address))) {
  57. break;
  58. }
  59. dbgprintf("Client::Connection: connect failed: %d, %s\n", errno, strerror(errno));
  60. sleep(1);
  61. --retries;
  62. }
  63. ASSERT(m_connection->is_connected());
  64. }
  65. virtual void handshake() = 0;
  66. virtual void event(CEvent& event) override
  67. {
  68. if (event.type() == Event::PostProcess) {
  69. postprocess_bundles(m_unprocessed_bundles);
  70. } else {
  71. CObject::event(event);
  72. }
  73. }
  74. void set_server_pid(pid_t pid) { m_server_pid = pid; }
  75. pid_t server_pid() const { return m_server_pid; }
  76. void set_my_client_id(int id) { m_my_client_id = id; }
  77. int my_client_id() const { return m_my_client_id; }
  78. template<typename MessageType>
  79. bool wait_for_specific_event(MessageType type, ServerMessage& event)
  80. {
  81. // Double check we don't already have the event waiting for us.
  82. // Otherwise we might end up blocked for a while for no reason.
  83. for (ssize_t i = 0; i < m_unprocessed_bundles.size(); ++i) {
  84. if (m_unprocessed_bundles[i].message.type == type) {
  85. event = move(m_unprocessed_bundles[i].message);
  86. m_unprocessed_bundles.remove(i);
  87. CEventLoop::current().post_event(*this, make<PostProcessEvent>(m_connection->fd()));
  88. return true;
  89. }
  90. }
  91. for (;;) {
  92. fd_set rfds;
  93. FD_ZERO(&rfds);
  94. FD_SET(m_connection->fd(), &rfds);
  95. int rc = CSyscallUtils::safe_syscall(select, m_connection->fd() + 1, &rfds, nullptr, nullptr, nullptr);
  96. if (rc < 0) {
  97. perror("select");
  98. }
  99. ASSERT(rc > 0);
  100. ASSERT(FD_ISSET(m_connection->fd(), &rfds));
  101. bool success = drain_messages_from_server();
  102. if (!success)
  103. return false;
  104. for (ssize_t i = 0; i < m_unprocessed_bundles.size(); ++i) {
  105. if (m_unprocessed_bundles[i].message.type == type) {
  106. event = move(m_unprocessed_bundles[i].message);
  107. m_unprocessed_bundles.remove(i);
  108. CEventLoop::current().post_event(*this, make<PostProcessEvent>(m_connection->fd()));
  109. return true;
  110. }
  111. }
  112. }
  113. }
  114. bool post_message_to_server(const ClientMessage& message, const ByteBuffer&& extra_data = {})
  115. {
  116. #if defined(CIPC_DEBUG)
  117. dbg() << "C: -> S " << int(message.type) << " extra " << extra_data.size();
  118. #endif
  119. if (!extra_data.is_empty())
  120. const_cast<ClientMessage&>(message).extra_size = extra_data.size();
  121. struct iovec iov[2];
  122. int iov_count = 1;
  123. iov[0].iov_base = const_cast<ClientMessage*>(&message);
  124. iov[0].iov_len = sizeof(message);
  125. if (!extra_data.is_empty()) {
  126. iov[1].iov_base = const_cast<u8*>(extra_data.data());
  127. iov[1].iov_len = extra_data.size();
  128. ++iov_count;
  129. }
  130. int nwritten = writev(m_connection->fd(), iov, iov_count);
  131. if (nwritten < 0) {
  132. perror("writev");
  133. ASSERT_NOT_REACHED();
  134. }
  135. ASSERT((size_t)nwritten == sizeof(message) + extra_data.size());
  136. return true;
  137. }
  138. template<typename MessageType>
  139. ServerMessage sync_request(const ClientMessage& request, MessageType response_type)
  140. {
  141. bool success = post_message_to_server(request);
  142. ASSERT(success);
  143. ServerMessage response;
  144. success = wait_for_specific_event(response_type, response);
  145. ASSERT(success);
  146. return response;
  147. }
  148. template<typename RequestType, typename... Args>
  149. typename RequestType::ResponseType send_sync(Args&&... args)
  150. {
  151. bool success = post_message_to_server(RequestType(forward<Args>(args)...));
  152. ASSERT(success);
  153. ServerMessage response;
  154. success = wait_for_specific_event(RequestType::ResponseType::message_type(), response);
  155. ASSERT(success);
  156. return response;
  157. }
  158. protected:
  159. struct IncomingMessageBundle {
  160. ServerMessage message;
  161. ByteBuffer extra_data;
  162. };
  163. virtual void postprocess_bundles(Vector<IncomingMessageBundle>& new_bundles)
  164. {
  165. dbg() << "Client::Connection: "
  166. << " warning: discarding " << new_bundles.size() << " unprocessed bundles; this may not be what you want";
  167. new_bundles.clear();
  168. }
  169. private:
  170. bool drain_messages_from_server()
  171. {
  172. for (;;) {
  173. ServerMessage message;
  174. ssize_t nread = recv(m_connection->fd(), &message, sizeof(ServerMessage), MSG_DONTWAIT);
  175. if (nread < 0) {
  176. if (errno == EAGAIN) {
  177. return true;
  178. }
  179. perror("read");
  180. exit(1);
  181. return false;
  182. }
  183. if (nread == 0) {
  184. dbgprintf("EOF on IPC fd\n");
  185. exit(1);
  186. return false;
  187. }
  188. ASSERT(nread == sizeof(message));
  189. ByteBuffer extra_data;
  190. if (message.extra_size) {
  191. extra_data = ByteBuffer::create_uninitialized(message.extra_size);
  192. int extra_nread = read(m_connection->fd(), extra_data.data(), extra_data.size());
  193. if (extra_nread < 0) {
  194. perror("read");
  195. ASSERT_NOT_REACHED();
  196. }
  197. ASSERT((size_t)extra_nread == message.extra_size);
  198. }
  199. #if defined(CIPC_DEBUG)
  200. dbg() << "C: <- S " << int(message.type) << " extra " << extra_data.size();
  201. #endif
  202. m_unprocessed_bundles.append({ move(message), move(extra_data) });
  203. }
  204. }
  205. ObjectPtr<CLocalSocket> m_connection;
  206. ObjectPtr<CNotifier> m_notifier;
  207. Vector<IncomingMessageBundle> m_unprocessed_bundles;
  208. int m_server_pid { -1 };
  209. int m_my_client_id { -1 };
  210. };
  211. template<typename Endpoint>
  212. class ConnectionNG : public CObject {
  213. public:
  214. ConnectionNG(const StringView& address)
  215. : m_connection(CLocalSocket::construct(this))
  216. , m_notifier(CNotifier::construct(m_connection->fd(), CNotifier::Read, this))
  217. {
  218. // We want to rate-limit our clients
  219. m_connection->set_blocking(true);
  220. m_notifier->on_ready_to_read = [this] {
  221. drain_messages_from_server();
  222. CEventLoop::current().post_event(*this, make<PostProcessEvent>(m_connection->fd()));
  223. };
  224. int retries = 1000;
  225. while (retries) {
  226. if (m_connection->connect(CSocketAddress::local(address))) {
  227. break;
  228. }
  229. dbgprintf("Client::Connection: connect failed: %d, %s\n", errno, strerror(errno));
  230. sleep(1);
  231. --retries;
  232. }
  233. ASSERT(m_connection->is_connected());
  234. }
  235. virtual void handshake() = 0;
  236. virtual void event(CEvent& event) override
  237. {
  238. if (event.type() == Event::PostProcess) {
  239. postprocess_messages(m_unprocessed_messages);
  240. } else {
  241. CObject::event(event);
  242. }
  243. }
  244. void set_server_pid(pid_t pid) { m_server_pid = pid; }
  245. pid_t server_pid() const { return m_server_pid; }
  246. void set_my_client_id(int id) { m_my_client_id = id; }
  247. int my_client_id() const { return m_my_client_id; }
  248. template<typename MessageType>
  249. OwnPtr<MessageType> wait_for_specific_message()
  250. {
  251. // Double check we don't already have the event waiting for us.
  252. // Otherwise we might end up blocked for a while for no reason.
  253. for (ssize_t i = 0; i < m_unprocessed_messages.size(); ++i) {
  254. if (m_unprocessed_messages[i]->id() == MessageType::static_message_id()) {
  255. auto message = move(m_unprocessed_messages[i]);
  256. m_unprocessed_messages.remove(i);
  257. CEventLoop::current().post_event(*this, make<PostProcessEvent>(m_connection->fd()));
  258. return message;
  259. }
  260. }
  261. for (;;) {
  262. fd_set rfds;
  263. FD_ZERO(&rfds);
  264. FD_SET(m_connection->fd(), &rfds);
  265. int rc = CSyscallUtils::safe_syscall(select, m_connection->fd() + 1, &rfds, nullptr, nullptr, nullptr);
  266. if (rc < 0) {
  267. perror("select");
  268. }
  269. ASSERT(rc > 0);
  270. ASSERT(FD_ISSET(m_connection->fd(), &rfds));
  271. bool success = drain_messages_from_server();
  272. if (!success)
  273. return nullptr;
  274. for (ssize_t i = 0; i < m_unprocessed_messages.size(); ++i) {
  275. if (m_unprocessed_messages[i]->id() == MessageType::static_message_id()) {
  276. auto message = move(m_unprocessed_messages[i]);
  277. m_unprocessed_messages.remove(i);
  278. CEventLoop::current().post_event(*this, make<PostProcessEvent>(m_connection->fd()));
  279. return message;
  280. }
  281. }
  282. }
  283. }
  284. bool post_message_to_server(const IMessage& message)
  285. {
  286. auto buffer = message.encode();
  287. int nwritten = write(m_connection->fd(), buffer.data(), (size_t)buffer.size());
  288. if (nwritten < 0) {
  289. perror("write");
  290. ASSERT_NOT_REACHED();
  291. return false;
  292. }
  293. ASSERT(nwritten == buffer.size());
  294. return true;
  295. }
  296. template<typename RequestType, typename... Args>
  297. OwnPtr<typename RequestType::ResponseType> send_sync(Args&&... args)
  298. {
  299. bool success = post_message_to_server(RequestType(forward<Args>(args)...));
  300. ASSERT(success);
  301. auto response = wait_for_specific_message<typename RequestType::ResponseType>();
  302. ASSERT(response);
  303. return response;
  304. }
  305. protected:
  306. virtual void postprocess_messages(Vector<OwnPtr<IMessage>>& new_bundles)
  307. {
  308. new_bundles.clear();
  309. }
  310. private:
  311. bool drain_messages_from_server()
  312. {
  313. for (;;) {
  314. u8 buffer[4096];
  315. ssize_t nread = recv(m_connection->fd(), buffer, sizeof(buffer), MSG_DONTWAIT);
  316. if (nread < 0) {
  317. if (errno == EAGAIN) {
  318. return true;
  319. }
  320. perror("read");
  321. exit(1);
  322. return false;
  323. }
  324. if (nread == 0) {
  325. dbg() << "EOF on IPC fd";
  326. exit(1);
  327. return false;
  328. }
  329. auto message = Endpoint::decode_message(ByteBuffer::wrap(buffer, sizeof(buffer)));
  330. ASSERT(message);
  331. m_unprocessed_messages.append(move(message));
  332. }
  333. }
  334. ObjectPtr<CLocalSocket> m_connection;
  335. ObjectPtr<CNotifier> m_notifier;
  336. Vector<OwnPtr<IMessage>> m_unprocessed_messages;
  337. int m_server_pid { -1 };
  338. int m_my_client_id { -1 };
  339. };
  340. } // Client
  341. } // IPC