TCPSocket.cpp 24 KB

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  1. /*
  2. * Copyright (c) 2018-2020, Andreas Kling <kling@serenityos.org>
  3. *
  4. * SPDX-License-Identifier: BSD-2-Clause
  5. */
  6. #include <AK/Singleton.h>
  7. #include <AK/Time.h>
  8. #include <Kernel/Debug.h>
  9. #include <Kernel/Devices/RandomDevice.h>
  10. #include <Kernel/FileSystem/OpenFileDescription.h>
  11. #include <Kernel/Locking/MutexProtected.h>
  12. #include <Kernel/Net/EthernetFrameHeader.h>
  13. #include <Kernel/Net/IPv4.h>
  14. #include <Kernel/Net/NetworkAdapter.h>
  15. #include <Kernel/Net/NetworkingManagement.h>
  16. #include <Kernel/Net/Routing.h>
  17. #include <Kernel/Net/TCP.h>
  18. #include <Kernel/Net/TCPSocket.h>
  19. #include <Kernel/Process.h>
  20. #include <Kernel/Random.h>
  21. namespace Kernel {
  22. void TCPSocket::for_each(Function<void(TCPSocket const&)> callback)
  23. {
  24. sockets_by_tuple().for_each_shared([&](auto const& it) {
  25. callback(*it.value);
  26. });
  27. }
  28. ErrorOr<void> TCPSocket::try_for_each(Function<ErrorOr<void>(TCPSocket const&)> callback)
  29. {
  30. return sockets_by_tuple().with_shared([&](auto const& sockets) -> ErrorOr<void> {
  31. for (auto& it : sockets)
  32. TRY(callback(*it.value));
  33. return {};
  34. });
  35. }
  36. bool TCPSocket::unref() const
  37. {
  38. bool did_hit_zero = sockets_by_tuple().with_exclusive([&](auto& table) {
  39. if (deref_base())
  40. return false;
  41. table.remove(tuple());
  42. const_cast<TCPSocket&>(*this).revoke_weak_ptrs();
  43. return true;
  44. });
  45. if (did_hit_zero) {
  46. const_cast<TCPSocket&>(*this).will_be_destroyed();
  47. delete this;
  48. }
  49. return did_hit_zero;
  50. }
  51. void TCPSocket::set_state(State new_state)
  52. {
  53. dbgln_if(TCP_SOCKET_DEBUG, "TCPSocket({}) state moving from {} to {}", this, to_string(m_state), to_string(new_state));
  54. auto was_disconnected = protocol_is_disconnected();
  55. auto previous_role = m_role;
  56. m_state = new_state;
  57. if (new_state == State::Established && m_direction == Direction::Outgoing) {
  58. set_role(Role::Connected);
  59. clear_so_error();
  60. }
  61. if (new_state == State::TimeWait) {
  62. // Once we hit TimeWait, we are only holding the socket in case there
  63. // are packets on the way which we wouldn't want a new socket to get hit
  64. // with, so there's no point in keeping the receive buffer around.
  65. drop_receive_buffer();
  66. }
  67. if (new_state == State::Closed) {
  68. closing_sockets().with_exclusive([&](auto& table) {
  69. table.remove(tuple());
  70. });
  71. if (m_originator)
  72. release_to_originator();
  73. }
  74. if (previous_role != m_role || was_disconnected != protocol_is_disconnected())
  75. evaluate_block_conditions();
  76. }
  77. static Singleton<MutexProtected<HashMap<IPv4SocketTuple, LockRefPtr<TCPSocket>>>> s_socket_closing;
  78. MutexProtected<HashMap<IPv4SocketTuple, LockRefPtr<TCPSocket>>>& TCPSocket::closing_sockets()
  79. {
  80. return *s_socket_closing;
  81. }
  82. static Singleton<MutexProtected<HashMap<IPv4SocketTuple, TCPSocket*>>> s_socket_tuples;
  83. MutexProtected<HashMap<IPv4SocketTuple, TCPSocket*>>& TCPSocket::sockets_by_tuple()
  84. {
  85. return *s_socket_tuples;
  86. }
  87. LockRefPtr<TCPSocket> TCPSocket::from_tuple(IPv4SocketTuple const& tuple)
  88. {
  89. return sockets_by_tuple().with_shared([&](auto const& table) -> LockRefPtr<TCPSocket> {
  90. auto exact_match = table.get(tuple);
  91. if (exact_match.has_value())
  92. return { *exact_match.value() };
  93. auto address_tuple = IPv4SocketTuple(tuple.local_address(), tuple.local_port(), IPv4Address(), 0);
  94. auto address_match = table.get(address_tuple);
  95. if (address_match.has_value())
  96. return { *address_match.value() };
  97. auto wildcard_tuple = IPv4SocketTuple(IPv4Address(), tuple.local_port(), IPv4Address(), 0);
  98. auto wildcard_match = table.get(wildcard_tuple);
  99. if (wildcard_match.has_value())
  100. return { *wildcard_match.value() };
  101. return {};
  102. });
  103. }
  104. ErrorOr<NonnullLockRefPtr<TCPSocket>> TCPSocket::try_create_client(IPv4Address const& new_local_address, u16 new_local_port, IPv4Address const& new_peer_address, u16 new_peer_port)
  105. {
  106. auto tuple = IPv4SocketTuple(new_local_address, new_local_port, new_peer_address, new_peer_port);
  107. return sockets_by_tuple().with_exclusive([&](auto& table) -> ErrorOr<NonnullLockRefPtr<TCPSocket>> {
  108. if (table.contains(tuple))
  109. return EEXIST;
  110. auto receive_buffer = TRY(try_create_receive_buffer());
  111. auto client = TRY(TCPSocket::try_create(protocol(), move(receive_buffer)));
  112. client->set_setup_state(SetupState::InProgress);
  113. client->set_local_address(new_local_address);
  114. client->set_local_port(new_local_port);
  115. client->set_peer_address(new_peer_address);
  116. client->set_peer_port(new_peer_port);
  117. client->set_direction(Direction::Incoming);
  118. client->set_originator(*this);
  119. m_pending_release_for_accept.set(tuple, client);
  120. table.set(tuple, client);
  121. return { move(client) };
  122. });
  123. }
  124. void TCPSocket::release_to_originator()
  125. {
  126. VERIFY(!!m_originator);
  127. m_originator.strong_ref()->release_for_accept(*this);
  128. m_originator.clear();
  129. }
  130. void TCPSocket::release_for_accept(NonnullLockRefPtr<TCPSocket> socket)
  131. {
  132. VERIFY(m_pending_release_for_accept.contains(socket->tuple()));
  133. m_pending_release_for_accept.remove(socket->tuple());
  134. // FIXME: Should we observe this error somehow?
  135. [[maybe_unused]] auto rc = queue_connection_from(move(socket));
  136. }
  137. TCPSocket::TCPSocket(int protocol, NonnullOwnPtr<DoubleBuffer> receive_buffer, NonnullOwnPtr<KBuffer> scratch_buffer)
  138. : IPv4Socket(SOCK_STREAM, protocol, move(receive_buffer), move(scratch_buffer))
  139. {
  140. m_last_retransmit_time = kgettimeofday();
  141. }
  142. TCPSocket::~TCPSocket()
  143. {
  144. dequeue_for_retransmit();
  145. dbgln_if(TCP_SOCKET_DEBUG, "~TCPSocket in state {}", to_string(state()));
  146. }
  147. ErrorOr<NonnullLockRefPtr<TCPSocket>> TCPSocket::try_create(int protocol, NonnullOwnPtr<DoubleBuffer> receive_buffer)
  148. {
  149. // Note: Scratch buffer is only used for SOCK_STREAM sockets.
  150. auto scratch_buffer = TRY(KBuffer::try_create_with_size("TCPSocket: Scratch buffer"sv, 65536));
  151. return adopt_nonnull_lock_ref_or_enomem(new (nothrow) TCPSocket(protocol, move(receive_buffer), move(scratch_buffer)));
  152. }
  153. ErrorOr<size_t> TCPSocket::protocol_size(ReadonlyBytes raw_ipv4_packet)
  154. {
  155. auto& ipv4_packet = *reinterpret_cast<IPv4Packet const*>(raw_ipv4_packet.data());
  156. auto& tcp_packet = *static_cast<TCPPacket const*>(ipv4_packet.payload());
  157. return raw_ipv4_packet.size() - sizeof(IPv4Packet) - tcp_packet.header_size();
  158. }
  159. ErrorOr<size_t> TCPSocket::protocol_receive(ReadonlyBytes raw_ipv4_packet, UserOrKernelBuffer& buffer, size_t buffer_size, [[maybe_unused]] int flags)
  160. {
  161. auto& ipv4_packet = *reinterpret_cast<IPv4Packet const*>(raw_ipv4_packet.data());
  162. auto& tcp_packet = *static_cast<TCPPacket const*>(ipv4_packet.payload());
  163. size_t payload_size = raw_ipv4_packet.size() - sizeof(IPv4Packet) - tcp_packet.header_size();
  164. dbgln_if(TCP_SOCKET_DEBUG, "payload_size {}, will it fit in {}?", payload_size, buffer_size);
  165. VERIFY(buffer_size >= payload_size);
  166. SOCKET_TRY(buffer.write(tcp_packet.payload(), payload_size));
  167. return payload_size;
  168. }
  169. ErrorOr<size_t> TCPSocket::protocol_send(UserOrKernelBuffer const& data, size_t data_length)
  170. {
  171. RoutingDecision routing_decision = route_to(peer_address(), local_address(), bound_interface());
  172. if (routing_decision.is_zero())
  173. return set_so_error(EHOSTUNREACH);
  174. size_t mss = routing_decision.adapter->mtu() - sizeof(IPv4Packet) - sizeof(TCPPacket);
  175. data_length = min(data_length, mss);
  176. TRY(send_tcp_packet(TCPFlags::PSH | TCPFlags::ACK, &data, data_length, &routing_decision));
  177. return data_length;
  178. }
  179. ErrorOr<void> TCPSocket::send_ack(bool allow_duplicate)
  180. {
  181. if (!allow_duplicate && m_last_ack_number_sent == m_ack_number)
  182. return {};
  183. return send_tcp_packet(TCPFlags::ACK);
  184. }
  185. ErrorOr<void> TCPSocket::send_tcp_packet(u16 flags, UserOrKernelBuffer const* payload, size_t payload_size, RoutingDecision* user_routing_decision)
  186. {
  187. RoutingDecision routing_decision = user_routing_decision ? *user_routing_decision : route_to(peer_address(), local_address(), bound_interface());
  188. if (routing_decision.is_zero())
  189. return set_so_error(EHOSTUNREACH);
  190. auto ipv4_payload_offset = routing_decision.adapter->ipv4_payload_offset();
  191. bool const has_mss_option = flags == TCPFlags::SYN;
  192. const size_t options_size = has_mss_option ? sizeof(TCPOptionMSS) : 0;
  193. const size_t tcp_header_size = sizeof(TCPPacket) + options_size;
  194. const size_t buffer_size = ipv4_payload_offset + tcp_header_size + payload_size;
  195. auto packet = routing_decision.adapter->acquire_packet_buffer(buffer_size);
  196. if (!packet)
  197. return set_so_error(ENOMEM);
  198. routing_decision.adapter->fill_in_ipv4_header(*packet, local_address(),
  199. routing_decision.next_hop, peer_address(), IPv4Protocol::TCP,
  200. buffer_size - ipv4_payload_offset, type_of_service(), ttl());
  201. memset(packet->buffer->data() + ipv4_payload_offset, 0, sizeof(TCPPacket));
  202. auto& tcp_packet = *(TCPPacket*)(packet->buffer->data() + ipv4_payload_offset);
  203. VERIFY(local_port());
  204. tcp_packet.set_source_port(local_port());
  205. tcp_packet.set_destination_port(peer_port());
  206. tcp_packet.set_window_size(NumericLimits<u16>::max());
  207. tcp_packet.set_sequence_number(m_sequence_number);
  208. tcp_packet.set_data_offset(tcp_header_size / sizeof(u32));
  209. tcp_packet.set_flags(flags);
  210. if (payload) {
  211. if (auto result = payload->read(tcp_packet.payload(), payload_size); result.is_error()) {
  212. routing_decision.adapter->release_packet_buffer(*packet);
  213. return set_so_error(result.release_error());
  214. }
  215. }
  216. if (flags & TCPFlags::ACK) {
  217. m_last_ack_number_sent = m_ack_number;
  218. m_last_ack_sent_time = kgettimeofday();
  219. tcp_packet.set_ack_number(m_ack_number);
  220. }
  221. if (flags & TCPFlags::SYN) {
  222. ++m_sequence_number;
  223. } else {
  224. m_sequence_number += payload_size;
  225. }
  226. if (has_mss_option) {
  227. u16 mss = routing_decision.adapter->mtu() - sizeof(IPv4Packet) - sizeof(TCPPacket);
  228. TCPOptionMSS mss_option { mss };
  229. VERIFY(packet->buffer->size() >= ipv4_payload_offset + sizeof(TCPPacket) + sizeof(mss_option));
  230. memcpy(packet->buffer->data() + ipv4_payload_offset + sizeof(TCPPacket), &mss_option, sizeof(mss_option));
  231. }
  232. tcp_packet.set_checksum(compute_tcp_checksum(local_address(), peer_address(), tcp_packet, payload_size));
  233. bool expect_ack { tcp_packet.has_syn() || payload_size > 0 };
  234. if (expect_ack) {
  235. bool append_failed { false };
  236. m_unacked_packets.with_exclusive([&](auto& unacked_packets) {
  237. auto result = unacked_packets.packets.try_append({ m_sequence_number, packet, ipv4_payload_offset, *routing_decision.adapter });
  238. if (result.is_error()) {
  239. dbgln("TCPSocket: Dropped outbound packet because try_append() failed");
  240. append_failed = true;
  241. return;
  242. }
  243. unacked_packets.size += payload_size;
  244. enqueue_for_retransmit();
  245. });
  246. if (append_failed)
  247. return set_so_error(ENOMEM);
  248. }
  249. m_packets_out++;
  250. m_bytes_out += buffer_size;
  251. routing_decision.adapter->send_packet(packet->bytes());
  252. if (!expect_ack)
  253. routing_decision.adapter->release_packet_buffer(*packet);
  254. return {};
  255. }
  256. void TCPSocket::receive_tcp_packet(TCPPacket const& packet, u16 size)
  257. {
  258. if (packet.has_ack()) {
  259. u32 ack_number = packet.ack_number();
  260. dbgln_if(TCP_SOCKET_DEBUG, "TCPSocket: receive_tcp_packet: {}", ack_number);
  261. int removed = 0;
  262. m_unacked_packets.with_exclusive([&](auto& unacked_packets) {
  263. while (!unacked_packets.packets.is_empty()) {
  264. auto& packet = unacked_packets.packets.first();
  265. dbgln_if(TCP_SOCKET_DEBUG, "TCPSocket: iterate: {}", packet.ack_number);
  266. if (packet.ack_number <= ack_number) {
  267. auto old_adapter = packet.adapter.strong_ref();
  268. if (old_adapter)
  269. old_adapter->release_packet_buffer(*packet.buffer);
  270. TCPPacket& tcp_packet = *(TCPPacket*)(packet.buffer->buffer->data() + packet.ipv4_payload_offset);
  271. auto payload_size = packet.buffer->buffer->data() + packet.buffer->buffer->size() - (u8*)tcp_packet.payload();
  272. unacked_packets.size -= payload_size;
  273. evaluate_block_conditions();
  274. unacked_packets.packets.take_first();
  275. removed++;
  276. } else {
  277. break;
  278. }
  279. }
  280. if (unacked_packets.packets.is_empty()) {
  281. m_retransmit_attempts = 0;
  282. dequeue_for_retransmit();
  283. }
  284. dbgln_if(TCP_SOCKET_DEBUG, "TCPSocket: receive_tcp_packet acknowledged {} packets", removed);
  285. });
  286. }
  287. m_packets_in++;
  288. m_bytes_in += packet.header_size() + size;
  289. }
  290. bool TCPSocket::should_delay_next_ack() const
  291. {
  292. // FIXME: We don't know the MSS here so make a reasonable guess.
  293. const size_t mss = 1500;
  294. // RFC 1122 says we should send an ACK for every two full-sized segments.
  295. if (m_ack_number >= m_last_ack_number_sent + 2 * mss)
  296. return false;
  297. // RFC 1122 says we should not delay ACKs for more than 500 milliseconds.
  298. if (kgettimeofday() >= m_last_ack_sent_time + Time::from_milliseconds(500))
  299. return false;
  300. return true;
  301. }
  302. NetworkOrdered<u16> TCPSocket::compute_tcp_checksum(IPv4Address const& source, IPv4Address const& destination, TCPPacket const& packet, u16 payload_size)
  303. {
  304. union PseudoHeader {
  305. struct [[gnu::packed]] {
  306. IPv4Address source;
  307. IPv4Address destination;
  308. u8 zero;
  309. u8 protocol;
  310. NetworkOrdered<u16> payload_size;
  311. } header;
  312. u16 raw[6];
  313. };
  314. static_assert(sizeof(PseudoHeader) == 12);
  315. Checked<u16> packet_size = packet.header_size();
  316. packet_size += payload_size;
  317. VERIFY(!packet_size.has_overflow());
  318. PseudoHeader pseudo_header { .header = { source, destination, 0, (u8)IPv4Protocol::TCP, packet_size.value() } };
  319. u32 checksum = 0;
  320. auto* raw_pseudo_header = pseudo_header.raw;
  321. for (size_t i = 0; i < sizeof(pseudo_header) / sizeof(u16); ++i) {
  322. checksum += AK::convert_between_host_and_network_endian(raw_pseudo_header[i]);
  323. if (checksum > 0xffff)
  324. checksum = (checksum >> 16) + (checksum & 0xffff);
  325. }
  326. auto* raw_packet = bit_cast<u16*>(&packet);
  327. for (size_t i = 0; i < packet.header_size() / sizeof(u16); ++i) {
  328. checksum += AK::convert_between_host_and_network_endian(raw_packet[i]);
  329. if (checksum > 0xffff)
  330. checksum = (checksum >> 16) + (checksum & 0xffff);
  331. }
  332. VERIFY(packet.data_offset() * 4 == packet.header_size());
  333. auto* raw_payload = bit_cast<u16*>(packet.payload());
  334. for (size_t i = 0; i < payload_size / sizeof(u16); ++i) {
  335. checksum += AK::convert_between_host_and_network_endian(raw_payload[i]);
  336. if (checksum > 0xffff)
  337. checksum = (checksum >> 16) + (checksum & 0xffff);
  338. }
  339. if (payload_size & 1) {
  340. u16 expanded_byte = ((u8 const*)packet.payload())[payload_size - 1] << 8;
  341. checksum += expanded_byte;
  342. if (checksum > 0xffff)
  343. checksum = (checksum >> 16) + (checksum & 0xffff);
  344. }
  345. return ~(checksum & 0xffff);
  346. }
  347. ErrorOr<void> TCPSocket::protocol_bind()
  348. {
  349. if (has_specific_local_address() && !m_adapter) {
  350. m_adapter = NetworkingManagement::the().from_ipv4_address(local_address());
  351. if (!m_adapter)
  352. return set_so_error(EADDRNOTAVAIL);
  353. }
  354. return {};
  355. }
  356. ErrorOr<void> TCPSocket::protocol_listen(bool did_allocate_port)
  357. {
  358. if (!did_allocate_port) {
  359. bool ok = sockets_by_tuple().with_exclusive([&](auto& table) -> bool {
  360. if (table.contains(tuple()))
  361. return false;
  362. table.set(tuple(), this);
  363. return true;
  364. });
  365. if (!ok)
  366. return set_so_error(EADDRINUSE);
  367. }
  368. set_direction(Direction::Passive);
  369. set_state(State::Listen);
  370. set_setup_state(SetupState::Completed);
  371. return {};
  372. }
  373. ErrorOr<void> TCPSocket::protocol_connect(OpenFileDescription& description)
  374. {
  375. MutexLocker locker(mutex());
  376. auto routing_decision = route_to(peer_address(), local_address());
  377. if (routing_decision.is_zero())
  378. return set_so_error(EHOSTUNREACH);
  379. if (!has_specific_local_address())
  380. set_local_address(routing_decision.adapter->ipv4_address());
  381. if (auto result = allocate_local_port_if_needed(); result.error_or_port.is_error())
  382. return result.error_or_port.release_error();
  383. m_sequence_number = get_good_random<u32>();
  384. m_ack_number = 0;
  385. set_setup_state(SetupState::InProgress);
  386. TRY(send_tcp_packet(TCPFlags::SYN));
  387. m_state = State::SynSent;
  388. set_role(Role::Connecting);
  389. m_direction = Direction::Outgoing;
  390. evaluate_block_conditions();
  391. if (description.is_blocking()) {
  392. locker.unlock();
  393. auto unblock_flags = Thread::FileBlocker::BlockFlags::None;
  394. if (Thread::current()->block<Thread::ConnectBlocker>({}, description, unblock_flags).was_interrupted())
  395. return set_so_error(EINTR);
  396. locker.lock();
  397. VERIFY(setup_state() == SetupState::Completed);
  398. if (has_error()) { // TODO: check unblock_flags
  399. set_role(Role::None);
  400. if (error() == TCPSocket::Error::RetransmitTimeout)
  401. return set_so_error(ETIMEDOUT);
  402. else
  403. return set_so_error(ECONNREFUSED);
  404. }
  405. return {};
  406. }
  407. return set_so_error(EINPROGRESS);
  408. }
  409. ErrorOr<u16> TCPSocket::protocol_allocate_local_port()
  410. {
  411. constexpr u16 first_ephemeral_port = 32768;
  412. constexpr u16 last_ephemeral_port = 60999;
  413. constexpr u16 ephemeral_port_range_size = last_ephemeral_port - first_ephemeral_port;
  414. u16 first_scan_port = first_ephemeral_port + get_good_random<u16>() % ephemeral_port_range_size;
  415. return sockets_by_tuple().with_exclusive([&](auto& table) -> ErrorOr<u16> {
  416. for (u16 port = first_scan_port;;) {
  417. IPv4SocketTuple proposed_tuple(local_address(), port, peer_address(), peer_port());
  418. auto it = table.find(proposed_tuple);
  419. if (it == table.end()) {
  420. set_local_port(port);
  421. table.set(proposed_tuple, this);
  422. return port;
  423. }
  424. ++port;
  425. if (port > last_ephemeral_port)
  426. port = first_ephemeral_port;
  427. if (port == first_scan_port)
  428. break;
  429. }
  430. return set_so_error(EADDRINUSE);
  431. });
  432. }
  433. bool TCPSocket::protocol_is_disconnected() const
  434. {
  435. switch (m_state) {
  436. case State::Closed:
  437. case State::CloseWait:
  438. case State::LastAck:
  439. case State::FinWait1:
  440. case State::FinWait2:
  441. case State::Closing:
  442. case State::TimeWait:
  443. return true;
  444. default:
  445. return false;
  446. }
  447. }
  448. void TCPSocket::shut_down_for_writing()
  449. {
  450. if (state() == State::Established) {
  451. dbgln_if(TCP_SOCKET_DEBUG, " Sending FIN from Established and moving into FinWait1");
  452. (void)send_tcp_packet(TCPFlags::FIN);
  453. set_state(State::FinWait1);
  454. } else {
  455. dbgln(" Shutting down TCPSocket for writing but not moving to FinWait1 since state is {}", to_string(state()));
  456. }
  457. }
  458. ErrorOr<void> TCPSocket::close()
  459. {
  460. MutexLocker locker(mutex());
  461. auto result = IPv4Socket::close();
  462. if (state() == State::CloseWait) {
  463. dbgln_if(TCP_SOCKET_DEBUG, " Sending FIN from CloseWait and moving into LastAck");
  464. [[maybe_unused]] auto rc = send_tcp_packet(TCPFlags::FIN | TCPFlags::ACK);
  465. set_state(State::LastAck);
  466. }
  467. if (state() != State::Closed && state() != State::Listen)
  468. closing_sockets().with_exclusive([&](auto& table) {
  469. table.set(tuple(), *this);
  470. });
  471. return result;
  472. }
  473. static Singleton<MutexProtected<TCPSocket::RetransmitList>> s_sockets_for_retransmit;
  474. MutexProtected<TCPSocket::RetransmitList>& TCPSocket::sockets_for_retransmit()
  475. {
  476. return *s_sockets_for_retransmit;
  477. }
  478. void TCPSocket::enqueue_for_retransmit()
  479. {
  480. sockets_for_retransmit().with_exclusive([&](auto& list) {
  481. list.append(*this);
  482. });
  483. }
  484. void TCPSocket::dequeue_for_retransmit()
  485. {
  486. sockets_for_retransmit().with_exclusive([&](auto& list) {
  487. list.remove(*this);
  488. });
  489. }
  490. void TCPSocket::retransmit_packets()
  491. {
  492. auto now = kgettimeofday();
  493. // RFC6298 says we should have at least one second between retransmits. According to
  494. // RFC1122 we must do exponential backoff - even for SYN packets.
  495. i64 retransmit_interval = 1;
  496. for (decltype(m_retransmit_attempts) i = 0; i < m_retransmit_attempts; i++)
  497. retransmit_interval *= 2;
  498. if (m_last_retransmit_time > now - Time::from_seconds(retransmit_interval))
  499. return;
  500. dbgln_if(TCP_SOCKET_DEBUG, "TCPSocket({}) handling retransmit", this);
  501. m_last_retransmit_time = now;
  502. ++m_retransmit_attempts;
  503. if (m_retransmit_attempts > maximum_retransmits) {
  504. set_state(TCPSocket::State::Closed);
  505. set_error(TCPSocket::Error::RetransmitTimeout);
  506. set_setup_state(Socket::SetupState::Completed);
  507. return;
  508. }
  509. auto routing_decision = route_to(peer_address(), local_address(), bound_interface());
  510. if (routing_decision.is_zero())
  511. return;
  512. m_unacked_packets.with_exclusive([&](auto& unacked_packets) {
  513. for (auto& packet : unacked_packets.packets) {
  514. packet.tx_counter++;
  515. if constexpr (TCP_SOCKET_DEBUG) {
  516. auto& tcp_packet = *(const TCPPacket*)(packet.buffer->buffer->data() + packet.ipv4_payload_offset);
  517. dbgln("Sending TCP packet from {}:{} to {}:{} with ({}{}{}{}) seq_no={}, ack_no={}, tx_counter={}",
  518. local_address(), local_port(),
  519. peer_address(), peer_port(),
  520. (tcp_packet.has_syn() ? "SYN " : ""),
  521. (tcp_packet.has_ack() ? "ACK " : ""),
  522. (tcp_packet.has_fin() ? "FIN " : ""),
  523. (tcp_packet.has_rst() ? "RST " : ""),
  524. tcp_packet.sequence_number(),
  525. tcp_packet.ack_number(),
  526. packet.tx_counter);
  527. }
  528. size_t ipv4_payload_offset = routing_decision.adapter->ipv4_payload_offset();
  529. if (ipv4_payload_offset != packet.ipv4_payload_offset) {
  530. // FIXME: Add support for this. This can happen if after a route change
  531. // we ended up on another adapter which doesn't have the same layer 2 type
  532. // like the previous adapter.
  533. VERIFY_NOT_REACHED();
  534. }
  535. auto packet_buffer = packet.buffer->bytes();
  536. routing_decision.adapter->fill_in_ipv4_header(*packet.buffer,
  537. local_address(), routing_decision.next_hop, peer_address(),
  538. IPv4Protocol::TCP, packet_buffer.size() - ipv4_payload_offset, type_of_service(), ttl());
  539. routing_decision.adapter->send_packet(packet_buffer);
  540. m_packets_out++;
  541. m_bytes_out += packet_buffer.size();
  542. }
  543. });
  544. }
  545. bool TCPSocket::can_write(OpenFileDescription const& file_description, u64 size) const
  546. {
  547. if (!IPv4Socket::can_write(file_description, size))
  548. return false;
  549. if (m_state == State::SynSent || m_state == State::SynReceived)
  550. return false;
  551. if (!file_description.is_blocking())
  552. return true;
  553. return m_unacked_packets.with_shared([&](auto& unacked_packets) {
  554. return unacked_packets.size + size <= m_send_window_size;
  555. });
  556. }
  557. }