NetworkTask.cpp 26 KB

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  1. /*
  2. * Copyright (c) 2018-2020, Andreas Kling <kling@serenityos.org>
  3. * All rights reserved.
  4. *
  5. * Redistribution and use in source and binary forms, with or without
  6. * modification, are permitted provided that the following conditions are met:
  7. *
  8. * 1. Redistributions of source code must retain the above copyright notice, this
  9. * list of conditions and the following disclaimer.
  10. *
  11. * 2. Redistributions in binary form must reproduce the above copyright notice,
  12. * this list of conditions and the following disclaimer in the documentation
  13. * and/or other materials provided with the distribution.
  14. *
  15. * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
  16. * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
  17. * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
  18. * DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE
  19. * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
  20. * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
  21. * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
  22. * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
  23. * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
  24. * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
  25. */
  26. #include <Kernel/Lock.h>
  27. #include <Kernel/Net/ARP.h>
  28. #include <Kernel/Net/EtherType.h>
  29. #include <Kernel/Net/EthernetFrameHeader.h>
  30. #include <Kernel/Net/ICMP.h>
  31. #include <Kernel/Net/IPv4.h>
  32. #include <Kernel/Net/IPv4Socket.h>
  33. #include <Kernel/Net/LoopbackAdapter.h>
  34. #include <Kernel/Net/NetworkTask.h>
  35. #include <Kernel/Net/Routing.h>
  36. #include <Kernel/Net/TCP.h>
  37. #include <Kernel/Net/TCPSocket.h>
  38. #include <Kernel/Net/UDP.h>
  39. #include <Kernel/Net/UDPSocket.h>
  40. #include <Kernel/Process.h>
  41. //#define NETWORK_TASK_DEBUG
  42. //#define ETHERNET_DEBUG
  43. //#define ETHERNET_VERY_DEBUG
  44. //#define ARP_DEBUG
  45. //#define IPV4_DEBUG
  46. //#define ICMP_DEBUG
  47. //#define UDP_DEBUG
  48. //#define TCP_DEBUG
  49. namespace Kernel {
  50. static void handle_arp(const EthernetFrameHeader&, size_t frame_size);
  51. static void handle_ipv4(const EthernetFrameHeader&, size_t frame_size);
  52. static void handle_icmp(const EthernetFrameHeader&, const IPv4Packet&);
  53. static void handle_udp(const IPv4Packet&);
  54. static void handle_tcp(const IPv4Packet&);
  55. [[noreturn]] static void NetworkTask_main();
  56. void NetworkTask::spawn()
  57. {
  58. Thread* thread = nullptr;
  59. Process::create_kernel_process(thread, "NetworkTask", NetworkTask_main);
  60. }
  61. void NetworkTask_main()
  62. {
  63. WaitQueue packet_wait_queue;
  64. u8 octet = 15;
  65. int pending_packets = 0;
  66. NetworkAdapter::for_each([&](auto& adapter) {
  67. if (String(adapter.class_name()) == "LoopbackAdapter") {
  68. adapter.set_ipv4_address({ 127, 0, 0, 1 });
  69. adapter.set_ipv4_netmask({ 255, 0, 0, 0 });
  70. adapter.set_ipv4_gateway({ 0, 0, 0, 0 });
  71. } else {
  72. adapter.set_ipv4_address({ 10, 0, 2, octet++ });
  73. adapter.set_ipv4_netmask({ 255, 255, 255, 0 });
  74. adapter.set_ipv4_gateway({ 10, 0, 2, 2 });
  75. }
  76. klog() << "NetworkTask: " << adapter.class_name() << " network adapter found: hw=" << adapter.mac_address().to_string().characters() << " address=" << adapter.ipv4_address().to_string().characters() << " netmask=" << adapter.ipv4_netmask().to_string().characters() << " gateway=" << adapter.ipv4_gateway().to_string().characters();
  77. adapter.on_receive = [&]() {
  78. pending_packets++;
  79. packet_wait_queue.wake_all();
  80. };
  81. });
  82. auto dequeue_packet = [&pending_packets](u8* buffer, size_t buffer_size) -> size_t {
  83. if (pending_packets == 0)
  84. return 0;
  85. size_t packet_size = 0;
  86. NetworkAdapter::for_each([&](auto& adapter) {
  87. if (packet_size || !adapter.has_queued_packets())
  88. return;
  89. packet_size = adapter.dequeue_packet(buffer, buffer_size);
  90. pending_packets--;
  91. #ifdef NETWORK_TASK_DEBUG
  92. klog() << "NetworkTask: Dequeued packet from " << adapter.name().characters() << " (" << packet_size << " bytes)";
  93. #endif
  94. });
  95. return packet_size;
  96. };
  97. size_t buffer_size = 64 * KB;
  98. auto buffer_region = MM.allocate_kernel_region(buffer_size, "Kernel Packet Buffer", Region::Access::Read | Region::Access::Write, false, true);
  99. auto buffer = (u8*)buffer_region->vaddr().get();
  100. klog() << "NetworkTask: Enter main loop.";
  101. for (;;) {
  102. size_t packet_size = dequeue_packet(buffer, buffer_size);
  103. if (!packet_size) {
  104. Thread::current()->wait_on(packet_wait_queue, "NetworkTask");
  105. continue;
  106. }
  107. if (packet_size < sizeof(EthernetFrameHeader)) {
  108. klog() << "NetworkTask: Packet is too small to be an Ethernet packet! (" << packet_size << ")";
  109. continue;
  110. }
  111. auto& eth = *(const EthernetFrameHeader*)buffer;
  112. #ifdef ETHERNET_DEBUG
  113. klog() << "NetworkTask: From " << eth.source().to_string().characters() << " to " << eth.destination().to_string().characters() << ", ether_type=" << String::format("%w", eth.ether_type()) << ", packet_length=" << packet_size;
  114. #endif
  115. #ifdef ETHERNET_VERY_DEBUG
  116. for (size_t i = 0; i < packet_size; i++) {
  117. klog() << String::format("%b", buffer[i]);
  118. switch (i % 16) {
  119. case 7:
  120. klog() << " ";
  121. break;
  122. case 15:
  123. klog() << "";
  124. break;
  125. default:
  126. klog() << " ";
  127. break;
  128. }
  129. }
  130. klog() << "";
  131. #endif
  132. switch (eth.ether_type()) {
  133. case EtherType::ARP:
  134. handle_arp(eth, packet_size);
  135. break;
  136. case EtherType::IPv4:
  137. handle_ipv4(eth, packet_size);
  138. break;
  139. case EtherType::IPv6:
  140. // ignore
  141. break;
  142. default:
  143. klog() << "NetworkTask: Unknown ethernet type 0x" << String::format("%x", eth.ether_type());
  144. }
  145. }
  146. }
  147. void handle_arp(const EthernetFrameHeader& eth, size_t frame_size)
  148. {
  149. constexpr size_t minimum_arp_frame_size = sizeof(EthernetFrameHeader) + sizeof(ARPPacket);
  150. if (frame_size < minimum_arp_frame_size) {
  151. klog() << "handle_arp: Frame too small (" << frame_size << ", need " << minimum_arp_frame_size << ")";
  152. return;
  153. }
  154. auto& packet = *static_cast<const ARPPacket*>(eth.payload());
  155. if (packet.hardware_type() != 1 || packet.hardware_address_length() != sizeof(MACAddress)) {
  156. klog() << "handle_arp: Hardware type not ethernet (" << String::format("%w", packet.hardware_type()) << ", len=" << packet.hardware_address_length() << ")";
  157. return;
  158. }
  159. if (packet.protocol_type() != EtherType::IPv4 || packet.protocol_address_length() != sizeof(IPv4Address)) {
  160. klog() << "handle_arp: Protocol type not IPv4 (" << String::format("%w", packet.hardware_type()) << ", len=" << packet.protocol_address_length() << ")";
  161. return;
  162. }
  163. #ifdef ARP_DEBUG
  164. klog() << "handle_arp: operation=" << String::format("%w", packet.operation()) << ", sender=" << packet.sender_hardware_address().to_string().characters() << "/" << packet.sender_protocol_address().to_string().characters() << ", target=" << packet.target_hardware_address().to_string().characters() << "/" << packet.target_protocol_address().to_string().characters();
  165. #endif
  166. if (!packet.sender_hardware_address().is_zero() && !packet.sender_protocol_address().is_zero()) {
  167. // Someone has this IPv4 address. I guess we can try to remember that.
  168. // FIXME: Protect against ARP spamming.
  169. // FIXME: Support static ARP table entries.
  170. LOCKER(arp_table().lock());
  171. arp_table().resource().set(packet.sender_protocol_address(), packet.sender_hardware_address());
  172. klog() << "ARP table (" << arp_table().resource().size() << " entries):";
  173. for (auto& it : arp_table().resource()) {
  174. klog() << it.value.to_string().characters() << " :: " << it.key.to_string().characters();
  175. }
  176. }
  177. if (packet.operation() == ARPOperation::Request) {
  178. // Who has this IP address?
  179. if (auto adapter = NetworkAdapter::from_ipv4_address(packet.target_protocol_address())) {
  180. // We do!
  181. klog() << "handle_arp: Responding to ARP request for my IPv4 address (" << adapter->ipv4_address().to_string().characters() << ")";
  182. ARPPacket response;
  183. response.set_operation(ARPOperation::Response);
  184. response.set_target_hardware_address(packet.sender_hardware_address());
  185. response.set_target_protocol_address(packet.sender_protocol_address());
  186. response.set_sender_hardware_address(adapter->mac_address());
  187. response.set_sender_protocol_address(adapter->ipv4_address());
  188. adapter->send(packet.sender_hardware_address(), response);
  189. }
  190. return;
  191. }
  192. }
  193. void handle_ipv4(const EthernetFrameHeader& eth, size_t frame_size)
  194. {
  195. constexpr size_t minimum_ipv4_frame_size = sizeof(EthernetFrameHeader) + sizeof(IPv4Packet);
  196. if (frame_size < minimum_ipv4_frame_size) {
  197. klog() << "handle_ipv4: Frame too small (" << frame_size << ", need " << minimum_ipv4_frame_size << ")";
  198. return;
  199. }
  200. auto& packet = *static_cast<const IPv4Packet*>(eth.payload());
  201. if (packet.length() < sizeof(IPv4Packet)) {
  202. klog() << "handle_ipv4: IPv4 packet too short (" << packet.length() << ", need " << sizeof(IPv4Packet) << ")";
  203. return;
  204. }
  205. size_t actual_ipv4_packet_length = frame_size - sizeof(EthernetFrameHeader);
  206. if (packet.length() > actual_ipv4_packet_length) {
  207. klog() << "handle_ipv4: IPv4 packet claims to be longer than it is (" << packet.length() << ", actually " << actual_ipv4_packet_length << ")";
  208. return;
  209. }
  210. #ifdef IPV4_DEBUG
  211. klog() << "handle_ipv4: source=" << packet.source().to_string().characters() << ", target=" << packet.destination().to_string().characters();
  212. #endif
  213. switch ((IPv4Protocol)packet.protocol()) {
  214. case IPv4Protocol::ICMP:
  215. return handle_icmp(eth, packet);
  216. case IPv4Protocol::UDP:
  217. return handle_udp(packet);
  218. case IPv4Protocol::TCP:
  219. return handle_tcp(packet);
  220. default:
  221. klog() << "handle_ipv4: Unhandled protocol " << packet.protocol();
  222. break;
  223. }
  224. }
  225. void handle_icmp(const EthernetFrameHeader& eth, const IPv4Packet& ipv4_packet)
  226. {
  227. auto& icmp_header = *static_cast<const ICMPHeader*>(ipv4_packet.payload());
  228. #ifdef ICMP_DEBUG
  229. klog() << "handle_icmp: source=" << ipv4_packet.source().to_string().characters() << ", destination=" << ipv4_packet.destination().to_string().characters() << ", type=" << String::format("%b", icmp_header.type()) << ", code=" << String::format("%b", icmp_header.code());
  230. #endif
  231. {
  232. LOCKER(IPv4Socket::all_sockets().lock());
  233. for (RefPtr<IPv4Socket> socket : IPv4Socket::all_sockets().resource()) {
  234. LOCKER(socket->lock());
  235. if (socket->protocol() != (unsigned)IPv4Protocol::ICMP)
  236. continue;
  237. socket->did_receive(ipv4_packet.source(), 0, KBuffer::copy(&ipv4_packet, sizeof(IPv4Packet) + ipv4_packet.payload_size()));
  238. }
  239. }
  240. auto adapter = NetworkAdapter::from_ipv4_address(ipv4_packet.destination());
  241. if (!adapter)
  242. return;
  243. if (icmp_header.type() == ICMPType::EchoRequest) {
  244. auto& request = reinterpret_cast<const ICMPEchoPacket&>(icmp_header);
  245. klog() << "handle_icmp: EchoRequest from " << ipv4_packet.source().to_string().characters() << ": id=" << (u16)request.identifier << ", seq=" << (u16)request.sequence_number;
  246. size_t icmp_packet_size = ipv4_packet.payload_size();
  247. auto buffer = ByteBuffer::create_zeroed(icmp_packet_size);
  248. auto& response = *(ICMPEchoPacket*)buffer.data();
  249. response.header.set_type(ICMPType::EchoReply);
  250. response.header.set_code(0);
  251. response.identifier = request.identifier;
  252. response.sequence_number = request.sequence_number;
  253. if (size_t icmp_payload_size = icmp_packet_size - sizeof(ICMPEchoPacket))
  254. memcpy(response.payload(), request.payload(), icmp_payload_size);
  255. response.header.set_checksum(internet_checksum(&response, icmp_packet_size));
  256. // FIXME: What is the right TTL value here? Is 64 ok? Should we use the same TTL as the echo request?
  257. adapter->send_ipv4(eth.source(), ipv4_packet.source(), IPv4Protocol::ICMP, buffer, 64);
  258. }
  259. }
  260. void handle_udp(const IPv4Packet& ipv4_packet)
  261. {
  262. if (ipv4_packet.payload_size() < sizeof(UDPPacket)) {
  263. klog() << "handle_udp: Packet too small (" << ipv4_packet.payload_size() << ", need " << sizeof(UDPPacket) << ")";
  264. return;
  265. }
  266. auto adapter = NetworkAdapter::from_ipv4_address(ipv4_packet.destination());
  267. if (!adapter && ipv4_packet.destination() != IPv4Address(255, 255, 255, 255)) {
  268. klog() << "handle_udp: this packet is not for me, it's for " << ipv4_packet.destination().to_string().characters();
  269. return;
  270. }
  271. auto& udp_packet = *static_cast<const UDPPacket*>(ipv4_packet.payload());
  272. #ifdef UDP_DEBUG
  273. klog() << "handle_udp: source=" << ipv4_packet.source().to_string().characters() << ":" << udp_packet.source_port() << ", destination=" << ipv4_packet.destination().to_string().characters() << ":" << udp_packet.destination_port() << " length=" << udp_packet.length();
  274. #endif
  275. auto socket = UDPSocket::from_port(udp_packet.destination_port());
  276. if (!socket) {
  277. klog() << "handle_udp: No UDP socket for port " << udp_packet.destination_port();
  278. return;
  279. }
  280. ASSERT(socket->type() == SOCK_DGRAM);
  281. ASSERT(socket->local_port() == udp_packet.destination_port());
  282. socket->did_receive(ipv4_packet.source(), udp_packet.source_port(), KBuffer::copy(&ipv4_packet, sizeof(IPv4Packet) + ipv4_packet.payload_size()));
  283. }
  284. void handle_tcp(const IPv4Packet& ipv4_packet)
  285. {
  286. if (ipv4_packet.payload_size() < sizeof(TCPPacket)) {
  287. klog() << "handle_tcp: IPv4 payload is too small to be a TCP packet (" << ipv4_packet.payload_size() << ", need " << sizeof(TCPPacket) << ")";
  288. return;
  289. }
  290. auto& tcp_packet = *static_cast<const TCPPacket*>(ipv4_packet.payload());
  291. size_t minimum_tcp_header_size = 5 * sizeof(u32);
  292. size_t maximum_tcp_header_size = 15 * sizeof(u32);
  293. if (tcp_packet.header_size() < minimum_tcp_header_size || tcp_packet.header_size() > maximum_tcp_header_size) {
  294. klog() << "handle_tcp: TCP packet header has invalid size " << tcp_packet.header_size();
  295. }
  296. if (ipv4_packet.payload_size() < tcp_packet.header_size()) {
  297. klog() << "handle_tcp: IPv4 payload is smaller than TCP header claims (" << ipv4_packet.payload_size() << ", supposedly " << tcp_packet.header_size() << ")";
  298. return;
  299. }
  300. size_t payload_size = ipv4_packet.payload_size() - tcp_packet.header_size();
  301. #ifdef TCP_DEBUG
  302. klog() << "handle_tcp: source=" << ipv4_packet.source().to_string().characters() << ":" << tcp_packet.source_port() << ", destination=" << ipv4_packet.destination().to_string().characters() << ":" << tcp_packet.destination_port() << " seq_no=" << tcp_packet.sequence_number() << ", ack_no=" << tcp_packet.ack_number() << ", flags=" << String::format("%w", tcp_packet.flags()) << " (" << (tcp_packet.has_syn() ? "SYN " : "") << (tcp_packet.has_ack() ? "ACK " : "") << (tcp_packet.has_fin() ? "FIN " : "") << (tcp_packet.has_rst() ? "RST " : "") << "), window_size=" << tcp_packet.window_size() << ", payload_size=" << payload_size;
  303. #endif
  304. auto adapter = NetworkAdapter::from_ipv4_address(ipv4_packet.destination());
  305. if (!adapter) {
  306. klog() << "handle_tcp: this packet is not for me, it's for " << ipv4_packet.destination().to_string().characters();
  307. return;
  308. }
  309. IPv4SocketTuple tuple(ipv4_packet.destination(), tcp_packet.destination_port(), ipv4_packet.source(), tcp_packet.source_port());
  310. #ifdef TCP_DEBUG
  311. klog() << "handle_tcp: looking for socket; tuple=" << tuple.to_string().characters();
  312. #endif
  313. auto socket = TCPSocket::from_tuple(tuple);
  314. if (!socket) {
  315. klog() << "handle_tcp: No TCP socket for tuple " << tuple.to_string().characters();
  316. klog() << "handle_tcp: source=" << ipv4_packet.source().to_string().characters() << ":" << tcp_packet.source_port() << ", destination=" << ipv4_packet.destination().to_string().characters() << ":" << tcp_packet.destination_port() << " seq_no=" << tcp_packet.sequence_number() << ", ack_no=" << tcp_packet.ack_number() << ", flags=" << String::format("%w", tcp_packet.flags()) << " (" << (tcp_packet.has_syn() ? "SYN " : "") << (tcp_packet.has_ack() ? "ACK " : "") << (tcp_packet.has_fin() ? "FIN " : "") << (tcp_packet.has_rst() ? "RST " : "") << "), window_size=" << tcp_packet.window_size() << ", payload_size=" << payload_size;
  317. return;
  318. }
  319. ASSERT(socket->type() == SOCK_STREAM);
  320. ASSERT(socket->local_port() == tcp_packet.destination_port());
  321. #ifdef TCP_DEBUG
  322. klog() << "handle_tcp: got socket; state=" << socket->tuple().to_string().characters() << " " << TCPSocket::to_string(socket->state());
  323. #endif
  324. socket->receive_tcp_packet(tcp_packet, ipv4_packet.payload_size());
  325. switch (socket->state()) {
  326. case TCPSocket::State::Closed:
  327. klog() << "handle_tcp: unexpected flags in Closed state";
  328. // TODO: we may want to send an RST here, maybe as a configurable option
  329. return;
  330. case TCPSocket::State::TimeWait:
  331. klog() << "handle_tcp: unexpected flags in TimeWait state";
  332. socket->send_tcp_packet(TCPFlags::RST);
  333. socket->set_state(TCPSocket::State::Closed);
  334. return;
  335. case TCPSocket::State::Listen:
  336. switch (tcp_packet.flags()) {
  337. case TCPFlags::SYN: {
  338. #ifdef TCP_DEBUG
  339. klog() << "handle_tcp: incoming connection";
  340. #endif
  341. auto& local_address = ipv4_packet.destination();
  342. auto& peer_address = ipv4_packet.source();
  343. auto client = socket->create_client(local_address, tcp_packet.destination_port(), peer_address, tcp_packet.source_port());
  344. if (!client) {
  345. klog() << "handle_tcp: couldn't create client socket";
  346. return;
  347. }
  348. #ifdef TCP_DEBUG
  349. klog() << "handle_tcp: created new client socket with tuple " << client->tuple().to_string().characters();
  350. #endif
  351. client->set_sequence_number(1000);
  352. client->set_ack_number(tcp_packet.sequence_number() + payload_size + 1);
  353. client->send_tcp_packet(TCPFlags::SYN | TCPFlags::ACK);
  354. client->set_state(TCPSocket::State::SynReceived);
  355. return;
  356. }
  357. default:
  358. klog() << "handle_tcp: unexpected flags in Listen state";
  359. // socket->send_tcp_packet(TCPFlags::RST);
  360. return;
  361. }
  362. case TCPSocket::State::SynSent:
  363. switch (tcp_packet.flags()) {
  364. case TCPFlags::SYN:
  365. socket->set_ack_number(tcp_packet.sequence_number() + payload_size + 1);
  366. socket->send_tcp_packet(TCPFlags::ACK);
  367. socket->set_state(TCPSocket::State::SynReceived);
  368. return;
  369. case TCPFlags::ACK | TCPFlags::SYN:
  370. socket->set_ack_number(tcp_packet.sequence_number() + payload_size + 1);
  371. socket->send_tcp_packet(TCPFlags::ACK);
  372. socket->set_state(TCPSocket::State::Established);
  373. socket->set_setup_state(Socket::SetupState::Completed);
  374. socket->set_connected(true);
  375. return;
  376. case TCPFlags::ACK | TCPFlags::FIN:
  377. socket->set_ack_number(tcp_packet.sequence_number() + payload_size + 1);
  378. socket->send_tcp_packet(TCPFlags::ACK);
  379. socket->set_state(TCPSocket::State::Closed);
  380. socket->set_error(TCPSocket::Error::FINDuringConnect);
  381. socket->set_setup_state(Socket::SetupState::Completed);
  382. return;
  383. case TCPFlags::ACK | TCPFlags::RST:
  384. socket->set_ack_number(tcp_packet.sequence_number() + payload_size);
  385. socket->send_tcp_packet(TCPFlags::ACK);
  386. socket->set_state(TCPSocket::State::Closed);
  387. socket->set_error(TCPSocket::Error::RSTDuringConnect);
  388. socket->set_setup_state(Socket::SetupState::Completed);
  389. return;
  390. default:
  391. klog() << "handle_tcp: unexpected flags in SynSent state";
  392. socket->send_tcp_packet(TCPFlags::RST);
  393. socket->set_state(TCPSocket::State::Closed);
  394. socket->set_error(TCPSocket::Error::UnexpectedFlagsDuringConnect);
  395. socket->set_setup_state(Socket::SetupState::Completed);
  396. return;
  397. }
  398. case TCPSocket::State::SynReceived:
  399. switch (tcp_packet.flags()) {
  400. case TCPFlags::ACK:
  401. socket->set_ack_number(tcp_packet.sequence_number() + payload_size);
  402. switch (socket->direction()) {
  403. case TCPSocket::Direction::Incoming:
  404. if (!socket->has_originator()) {
  405. klog() << "handle_tcp: connection doesn't have an originating socket; maybe it went away?";
  406. socket->send_tcp_packet(TCPFlags::RST);
  407. socket->set_state(TCPSocket::State::Closed);
  408. return;
  409. }
  410. socket->set_state(TCPSocket::State::Established);
  411. socket->set_setup_state(Socket::SetupState::Completed);
  412. socket->release_to_originator();
  413. return;
  414. case TCPSocket::Direction::Outgoing:
  415. socket->set_state(TCPSocket::State::Established);
  416. socket->set_setup_state(Socket::SetupState::Completed);
  417. socket->set_connected(true);
  418. return;
  419. default:
  420. klog() << "handle_tcp: got ACK in SynReceived state but direction is invalid (" << TCPSocket::to_string(socket->direction()) << ")";
  421. socket->send_tcp_packet(TCPFlags::RST);
  422. socket->set_state(TCPSocket::State::Closed);
  423. return;
  424. }
  425. return;
  426. default:
  427. klog() << "handle_tcp: unexpected flags in SynReceived state";
  428. socket->send_tcp_packet(TCPFlags::RST);
  429. socket->set_state(TCPSocket::State::Closed);
  430. return;
  431. }
  432. case TCPSocket::State::CloseWait:
  433. switch (tcp_packet.flags()) {
  434. default:
  435. klog() << "handle_tcp: unexpected flags in CloseWait state";
  436. socket->send_tcp_packet(TCPFlags::RST);
  437. socket->set_state(TCPSocket::State::Closed);
  438. return;
  439. }
  440. case TCPSocket::State::LastAck:
  441. switch (tcp_packet.flags()) {
  442. case TCPFlags::ACK:
  443. socket->set_ack_number(tcp_packet.sequence_number() + payload_size);
  444. socket->set_state(TCPSocket::State::Closed);
  445. return;
  446. default:
  447. klog() << "handle_tcp: unexpected flags in LastAck state";
  448. socket->send_tcp_packet(TCPFlags::RST);
  449. socket->set_state(TCPSocket::State::Closed);
  450. return;
  451. }
  452. case TCPSocket::State::FinWait1:
  453. switch (tcp_packet.flags()) {
  454. case TCPFlags::ACK:
  455. socket->set_ack_number(tcp_packet.sequence_number() + payload_size);
  456. socket->set_state(TCPSocket::State::FinWait2);
  457. return;
  458. case TCPFlags::FIN:
  459. socket->set_ack_number(tcp_packet.sequence_number() + payload_size + 1);
  460. socket->set_state(TCPSocket::State::Closing);
  461. return;
  462. default:
  463. klog() << "handle_tcp: unexpected flags in FinWait1 state";
  464. socket->send_tcp_packet(TCPFlags::RST);
  465. socket->set_state(TCPSocket::State::Closed);
  466. return;
  467. }
  468. case TCPSocket::State::FinWait2:
  469. switch (tcp_packet.flags()) {
  470. case TCPFlags::FIN:
  471. socket->set_ack_number(tcp_packet.sequence_number() + payload_size + 1);
  472. socket->set_state(TCPSocket::State::TimeWait);
  473. return;
  474. case TCPFlags::ACK | TCPFlags::RST:
  475. socket->set_state(TCPSocket::State::Closed);
  476. return;
  477. default:
  478. klog() << "handle_tcp: unexpected flags in FinWait2 state";
  479. socket->send_tcp_packet(TCPFlags::RST);
  480. socket->set_state(TCPSocket::State::Closed);
  481. return;
  482. }
  483. case TCPSocket::State::Closing:
  484. switch (tcp_packet.flags()) {
  485. case TCPFlags::ACK:
  486. socket->set_ack_number(tcp_packet.sequence_number() + payload_size);
  487. socket->set_state(TCPSocket::State::TimeWait);
  488. return;
  489. default:
  490. klog() << "handle_tcp: unexpected flags in Closing state";
  491. socket->send_tcp_packet(TCPFlags::RST);
  492. socket->set_state(TCPSocket::State::Closed);
  493. return;
  494. }
  495. case TCPSocket::State::Established:
  496. if (tcp_packet.has_fin()) {
  497. if (payload_size != 0)
  498. socket->did_receive(ipv4_packet.source(), tcp_packet.source_port(), KBuffer::copy(&ipv4_packet, sizeof(IPv4Packet) + ipv4_packet.payload_size()));
  499. socket->set_ack_number(tcp_packet.sequence_number() + payload_size + 1);
  500. socket->send_tcp_packet(TCPFlags::ACK);
  501. socket->set_state(TCPSocket::State::CloseWait);
  502. socket->set_connected(false);
  503. return;
  504. }
  505. socket->set_ack_number(tcp_packet.sequence_number() + payload_size);
  506. #ifdef TCP_DEBUG
  507. klog() << "Got packet with ack_no=" << tcp_packet.ack_number() << ", seq_no=" << tcp_packet.sequence_number() << ", payload_size=" << payload_size << ", acking it with new ack_no=" << socket->ack_number() << ", seq_no=" << socket->sequence_number();
  508. #endif
  509. if (payload_size) {
  510. if (socket->did_receive(ipv4_packet.source(), tcp_packet.source_port(), KBuffer::copy(&ipv4_packet, sizeof(IPv4Packet) + ipv4_packet.payload_size())))
  511. socket->send_tcp_packet(TCPFlags::ACK);
  512. }
  513. }
  514. }
  515. }