IPv4Socket.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/StringBuilder.h>
  8. #include <Kernel/Debug.h>
  9. #include <Kernel/FileSystem/FileDescription.h>
  10. #include <Kernel/Net/ARP.h>
  11. #include <Kernel/Net/ICMP.h>
  12. #include <Kernel/Net/IPv4.h>
  13. #include <Kernel/Net/IPv4Socket.h>
  14. #include <Kernel/Net/NetworkAdapter.h>
  15. #include <Kernel/Net/Routing.h>
  16. #include <Kernel/Net/TCP.h>
  17. #include <Kernel/Net/TCPSocket.h>
  18. #include <Kernel/Net/UDP.h>
  19. #include <Kernel/Net/UDPSocket.h>
  20. #include <Kernel/Process.h>
  21. #include <Kernel/UnixTypes.h>
  22. #include <LibC/errno_numbers.h>
  23. #include <LibC/sys/ioctl_numbers.h>
  24. namespace Kernel {
  25. static AK::Singleton<Lockable<HashTable<IPv4Socket*>>> s_table;
  26. using BlockFlags = Thread::FileDescriptionBlocker::BlockFlags;
  27. Lockable<HashTable<IPv4Socket*>>& IPv4Socket::all_sockets()
  28. {
  29. return *s_table;
  30. }
  31. KResultOr<NonnullRefPtr<Socket>> IPv4Socket::create(int type, int protocol)
  32. {
  33. if (type == SOCK_STREAM)
  34. return TCPSocket::create(protocol);
  35. if (type == SOCK_DGRAM)
  36. return UDPSocket::create(protocol);
  37. if (type == SOCK_RAW)
  38. return adopt_ref(*new IPv4Socket(type, protocol));
  39. return EINVAL;
  40. }
  41. IPv4Socket::IPv4Socket(int type, int protocol)
  42. : Socket(AF_INET, type, protocol)
  43. {
  44. dbgln_if(IPV4_SOCKET_DEBUG, "IPv4Socket({}) created with type={}, protocol={}", this, type, protocol);
  45. m_buffer_mode = type == SOCK_STREAM ? BufferMode::Bytes : BufferMode::Packets;
  46. if (m_buffer_mode == BufferMode::Bytes) {
  47. m_scratch_buffer = KBuffer::create_with_size(65536);
  48. }
  49. Locker locker(all_sockets().lock());
  50. all_sockets().resource().set(this);
  51. }
  52. IPv4Socket::~IPv4Socket()
  53. {
  54. Locker locker(all_sockets().lock());
  55. all_sockets().resource().remove(this);
  56. }
  57. void IPv4Socket::get_local_address(sockaddr* address, socklen_t* address_size)
  58. {
  59. sockaddr_in local_address = { AF_INET, htons(m_local_port), { m_local_address.to_in_addr_t() }, { 0 } };
  60. memcpy(address, &local_address, min(static_cast<size_t>(*address_size), sizeof(sockaddr_in)));
  61. *address_size = sizeof(sockaddr_in);
  62. }
  63. void IPv4Socket::get_peer_address(sockaddr* address, socklen_t* address_size)
  64. {
  65. sockaddr_in peer_address = { AF_INET, htons(m_peer_port), { m_peer_address.to_in_addr_t() }, { 0 } };
  66. memcpy(address, &peer_address, min(static_cast<size_t>(*address_size), sizeof(sockaddr_in)));
  67. *address_size = sizeof(sockaddr_in);
  68. }
  69. KResult IPv4Socket::bind(Userspace<const sockaddr*> user_address, socklen_t address_size)
  70. {
  71. VERIFY(setup_state() == SetupState::Unstarted);
  72. if (address_size != sizeof(sockaddr_in))
  73. return EINVAL;
  74. sockaddr_in address;
  75. if (!copy_from_user(&address, user_address, sizeof(sockaddr_in)))
  76. return EFAULT;
  77. if (address.sin_family != AF_INET)
  78. return EINVAL;
  79. auto requested_local_port = ntohs(address.sin_port);
  80. if (!Process::current()->is_superuser()) {
  81. if (requested_local_port > 0 && requested_local_port < 1024) {
  82. dbgln("UID {} attempted to bind {} to port {}", Process::current()->uid(), class_name(), requested_local_port);
  83. return EACCES;
  84. }
  85. }
  86. m_local_address = IPv4Address((const u8*)&address.sin_addr.s_addr);
  87. m_local_port = requested_local_port;
  88. dbgln_if(IPV4_SOCKET_DEBUG, "IPv4Socket::bind {}({}) to {}:{}", class_name(), this, m_local_address, m_local_port);
  89. return protocol_bind();
  90. }
  91. KResult IPv4Socket::listen(size_t backlog)
  92. {
  93. Locker locker(lock());
  94. if (auto result = allocate_local_port_if_needed(); result.is_error() && result.error() != -ENOPROTOOPT)
  95. return result.error();
  96. set_backlog(backlog);
  97. m_role = Role::Listener;
  98. evaluate_block_conditions();
  99. dbgln_if(IPV4_SOCKET_DEBUG, "IPv4Socket({}) listening with backlog={}", this, backlog);
  100. return protocol_listen();
  101. }
  102. KResult IPv4Socket::connect(FileDescription& description, Userspace<const sockaddr*> address, socklen_t address_size, ShouldBlock should_block)
  103. {
  104. if (address_size != sizeof(sockaddr_in))
  105. return EINVAL;
  106. u16 sa_family_copy;
  107. auto* user_address = reinterpret_cast<const sockaddr*>(address.unsafe_userspace_ptr());
  108. if (!copy_from_user(&sa_family_copy, &user_address->sa_family, sizeof(u16)))
  109. return EFAULT;
  110. if (sa_family_copy != AF_INET)
  111. return EINVAL;
  112. if (m_role == Role::Connected)
  113. return EISCONN;
  114. sockaddr_in safe_address;
  115. if (!copy_from_user(&safe_address, (const sockaddr_in*)user_address, sizeof(sockaddr_in)))
  116. return EFAULT;
  117. m_peer_address = IPv4Address((const u8*)&safe_address.sin_addr.s_addr);
  118. m_peer_port = ntohs(safe_address.sin_port);
  119. return protocol_connect(description, should_block);
  120. }
  121. bool IPv4Socket::can_read(const FileDescription&, size_t) const
  122. {
  123. if (m_role == Role::Listener)
  124. return can_accept();
  125. if (protocol_is_disconnected())
  126. return true;
  127. return m_can_read;
  128. }
  129. bool IPv4Socket::can_write(const FileDescription&, size_t) const
  130. {
  131. return is_connected();
  132. }
  133. KResultOr<u16> IPv4Socket::allocate_local_port_if_needed()
  134. {
  135. Locker locker(lock());
  136. if (m_local_port)
  137. return m_local_port;
  138. auto port_or_error = protocol_allocate_local_port();
  139. if (port_or_error.is_error())
  140. return port_or_error.error();
  141. m_local_port = port_or_error.value();
  142. return port_or_error.value();
  143. }
  144. KResultOr<size_t> IPv4Socket::sendto(FileDescription&, const UserOrKernelBuffer& data, size_t data_length, [[maybe_unused]] int flags, Userspace<const sockaddr*> addr, socklen_t addr_length)
  145. {
  146. Locker locker(lock());
  147. if (addr && addr_length != sizeof(sockaddr_in))
  148. return EINVAL;
  149. if (addr) {
  150. sockaddr_in ia;
  151. if (!copy_from_user(&ia, Userspace<const sockaddr_in*>(addr.ptr())))
  152. return EFAULT;
  153. if (ia.sin_family != AF_INET) {
  154. dmesgln("sendto: Bad address family: {} is not AF_INET", ia.sin_family);
  155. return EAFNOSUPPORT;
  156. }
  157. m_peer_address = IPv4Address((const u8*)&ia.sin_addr.s_addr);
  158. m_peer_port = ntohs(ia.sin_port);
  159. }
  160. auto routing_decision = route_to(m_peer_address, m_local_address, bound_interface());
  161. if (routing_decision.is_zero())
  162. return EHOSTUNREACH;
  163. if (m_local_address.to_u32() == 0)
  164. m_local_address = routing_decision.adapter->ipv4_address();
  165. if (auto result = allocate_local_port_if_needed(); result.is_error() && result.error() != -ENOPROTOOPT)
  166. return result.error();
  167. dbgln_if(IPV4_SOCKET_DEBUG, "sendto: destination={}:{}", m_peer_address, m_peer_port);
  168. if (type() == SOCK_RAW) {
  169. auto result = routing_decision.adapter->send_ipv4(routing_decision.next_hop, m_peer_address, (IPv4Protocol)protocol(), data, data_length, m_ttl);
  170. if (result.is_error())
  171. return result;
  172. return data_length;
  173. }
  174. auto nsent_or_error = protocol_send(data, data_length);
  175. if (!nsent_or_error.is_error())
  176. Thread::current()->did_ipv4_socket_write(nsent_or_error.value());
  177. return nsent_or_error;
  178. }
  179. KResultOr<size_t> IPv4Socket::receive_byte_buffered(FileDescription& description, UserOrKernelBuffer& buffer, size_t buffer_length, int flags, Userspace<sockaddr*>, Userspace<socklen_t*>)
  180. {
  181. Locker locker(lock());
  182. if (m_receive_buffer.is_empty()) {
  183. if (protocol_is_disconnected())
  184. return 0;
  185. if (!description.is_blocking())
  186. return EAGAIN;
  187. locker.unlock();
  188. auto unblocked_flags = BlockFlags::None;
  189. auto res = Thread::current()->block<Thread::ReadBlocker>({}, description, unblocked_flags);
  190. locker.lock();
  191. if (!has_flag(unblocked_flags, BlockFlags::Read)) {
  192. if (res.was_interrupted())
  193. return EINTR;
  194. // Unblocked due to timeout.
  195. return EAGAIN;
  196. }
  197. }
  198. VERIFY(!m_receive_buffer.is_empty());
  199. int nreceived;
  200. if (flags & MSG_PEEK)
  201. nreceived = m_receive_buffer.peek(buffer, buffer_length);
  202. else
  203. nreceived = m_receive_buffer.read(buffer, buffer_length);
  204. if (nreceived > 0 && !(flags & MSG_PEEK))
  205. Thread::current()->did_ipv4_socket_read((size_t)nreceived);
  206. set_can_read(!m_receive_buffer.is_empty());
  207. return nreceived;
  208. }
  209. KResultOr<size_t> IPv4Socket::receive_packet_buffered(FileDescription& description, UserOrKernelBuffer& buffer, size_t buffer_length, int flags, Userspace<sockaddr*> addr, Userspace<socklen_t*> addr_length, Time& packet_timestamp)
  210. {
  211. Locker locker(lock());
  212. ReceivedPacket packet;
  213. {
  214. if (m_receive_queue.is_empty()) {
  215. // FIXME: Shouldn't this return -ENOTCONN instead of EOF?
  216. // But if so, we still need to deliver at least one EOF read to userspace.. right?
  217. if (protocol_is_disconnected())
  218. return 0;
  219. if (!description.is_blocking())
  220. return EAGAIN;
  221. }
  222. if (!m_receive_queue.is_empty()) {
  223. if (flags & MSG_PEEK)
  224. packet = m_receive_queue.first();
  225. else
  226. packet = m_receive_queue.take_first();
  227. set_can_read(!m_receive_queue.is_empty());
  228. dbgln_if(IPV4_SOCKET_DEBUG, "IPv4Socket({}): recvfrom without blocking {} bytes, packets in queue: {}",
  229. this,
  230. packet.data.value().size(),
  231. m_receive_queue.size());
  232. }
  233. }
  234. if (!packet.data.has_value()) {
  235. if (protocol_is_disconnected()) {
  236. dbgln("IPv4Socket({}) is protocol-disconnected, returning 0 in recvfrom!", this);
  237. return 0;
  238. }
  239. locker.unlock();
  240. auto unblocked_flags = BlockFlags::None;
  241. auto res = Thread::current()->block<Thread::ReadBlocker>({}, description, unblocked_flags);
  242. locker.lock();
  243. if (!has_flag(unblocked_flags, BlockFlags::Read)) {
  244. if (res.was_interrupted())
  245. return EINTR;
  246. // Unblocked due to timeout.
  247. return EAGAIN;
  248. }
  249. VERIFY(m_can_read);
  250. VERIFY(!m_receive_queue.is_empty());
  251. if (flags & MSG_PEEK)
  252. packet = m_receive_queue.first();
  253. else
  254. packet = m_receive_queue.take_first();
  255. set_can_read(!m_receive_queue.is_empty());
  256. dbgln_if(IPV4_SOCKET_DEBUG, "IPv4Socket({}): recvfrom with blocking {} bytes, packets in queue: {}",
  257. this,
  258. packet.data.value().size(),
  259. m_receive_queue.size());
  260. }
  261. VERIFY(packet.data.has_value());
  262. packet_timestamp = packet.timestamp;
  263. if (addr) {
  264. dbgln_if(IPV4_SOCKET_DEBUG, "Incoming packet is from: {}:{}", packet.peer_address, packet.peer_port);
  265. sockaddr_in out_addr {};
  266. memcpy(&out_addr.sin_addr, &packet.peer_address, sizeof(IPv4Address));
  267. out_addr.sin_port = htons(packet.peer_port);
  268. out_addr.sin_family = AF_INET;
  269. Userspace<sockaddr_in*> dest_addr = addr.ptr();
  270. if (!copy_to_user(dest_addr, &out_addr))
  271. return EFAULT;
  272. socklen_t out_length = sizeof(sockaddr_in);
  273. VERIFY(addr_length);
  274. if (!copy_to_user(addr_length, &out_length))
  275. return EFAULT;
  276. }
  277. if (type() == SOCK_RAW) {
  278. size_t bytes_written = min(packet.data.value().size(), buffer_length);
  279. if (!buffer.write(packet.data.value().data(), bytes_written))
  280. return EFAULT;
  281. return bytes_written;
  282. }
  283. return protocol_receive(ReadonlyBytes { packet.data.value().data(), packet.data.value().size() }, buffer, buffer_length, flags);
  284. }
  285. KResultOr<size_t> IPv4Socket::recvfrom(FileDescription& description, UserOrKernelBuffer& buffer, size_t buffer_length, int flags, Userspace<sockaddr*> user_addr, Userspace<socklen_t*> user_addr_length, Time& packet_timestamp)
  286. {
  287. if (user_addr_length) {
  288. socklen_t addr_length;
  289. if (!copy_from_user(&addr_length, user_addr_length.unsafe_userspace_ptr()))
  290. return EFAULT;
  291. if (addr_length < sizeof(sockaddr_in))
  292. return EINVAL;
  293. }
  294. dbgln_if(IPV4_SOCKET_DEBUG, "recvfrom: type={}, local_port={}", type(), local_port());
  295. KResultOr<size_t> nreceived = 0;
  296. if (buffer_mode() == BufferMode::Bytes)
  297. nreceived = receive_byte_buffered(description, buffer, buffer_length, flags, user_addr, user_addr_length);
  298. else
  299. nreceived = receive_packet_buffered(description, buffer, buffer_length, flags, user_addr, user_addr_length, packet_timestamp);
  300. if (!nreceived.is_error())
  301. Thread::current()->did_ipv4_socket_read(nreceived.value());
  302. return nreceived;
  303. }
  304. bool IPv4Socket::did_receive(const IPv4Address& source_address, u16 source_port, KBuffer&& packet, const Time& packet_timestamp)
  305. {
  306. Locker locker(lock());
  307. if (is_shut_down_for_reading())
  308. return false;
  309. auto packet_size = packet.size();
  310. if (buffer_mode() == BufferMode::Bytes) {
  311. size_t space_in_receive_buffer = m_receive_buffer.space_for_writing();
  312. if (packet_size > space_in_receive_buffer) {
  313. dbgln("IPv4Socket({}): did_receive refusing packet since buffer is full.", this);
  314. VERIFY(m_can_read);
  315. return false;
  316. }
  317. auto scratch_buffer = UserOrKernelBuffer::for_kernel_buffer(m_scratch_buffer.value().data());
  318. auto nreceived_or_error = protocol_receive(ReadonlyBytes { packet.data(), packet.size() }, scratch_buffer, m_scratch_buffer.value().size(), 0);
  319. if (nreceived_or_error.is_error())
  320. return false;
  321. ssize_t nwritten = m_receive_buffer.write(scratch_buffer, nreceived_or_error.value());
  322. if (nwritten < 0)
  323. return false;
  324. set_can_read(!m_receive_buffer.is_empty());
  325. } else {
  326. if (m_receive_queue.size() > 2000) {
  327. dbgln("IPv4Socket({}): did_receive refusing packet since queue is full.", this);
  328. return false;
  329. }
  330. m_receive_queue.append({ source_address, source_port, packet_timestamp, move(packet) });
  331. set_can_read(true);
  332. }
  333. m_bytes_received += packet_size;
  334. if constexpr (IPV4_SOCKET_DEBUG) {
  335. if (buffer_mode() == BufferMode::Bytes)
  336. dbgln("IPv4Socket({}): did_receive {} bytes, total_received={}", this, packet_size, m_bytes_received);
  337. else
  338. dbgln("IPv4Socket({}): did_receive {} bytes, total_received={}, packets in queue: {}",
  339. this,
  340. packet_size,
  341. m_bytes_received,
  342. m_receive_queue.size());
  343. }
  344. return true;
  345. }
  346. String IPv4Socket::absolute_path(const FileDescription&) const
  347. {
  348. if (m_role == Role::None)
  349. return "socket";
  350. StringBuilder builder;
  351. builder.append("socket:");
  352. builder.appendff("{}:{}", m_local_address.to_string(), m_local_port);
  353. if (m_role == Role::Accepted || m_role == Role::Connected)
  354. builder.appendff(" / {}:{}", m_peer_address.to_string(), m_peer_port);
  355. switch (m_role) {
  356. case Role::Listener:
  357. builder.append(" (listening)");
  358. break;
  359. case Role::Accepted:
  360. builder.append(" (accepted)");
  361. break;
  362. case Role::Connected:
  363. builder.append(" (connected)");
  364. break;
  365. case Role::Connecting:
  366. builder.append(" (connecting)");
  367. break;
  368. default:
  369. VERIFY_NOT_REACHED();
  370. }
  371. return builder.to_string();
  372. }
  373. KResult IPv4Socket::setsockopt(int level, int option, Userspace<const void*> user_value, socklen_t user_value_size)
  374. {
  375. if (level != IPPROTO_IP)
  376. return Socket::setsockopt(level, option, user_value, user_value_size);
  377. switch (option) {
  378. case IP_TTL: {
  379. if (user_value_size < sizeof(int))
  380. return EINVAL;
  381. int value;
  382. if (!copy_from_user(&value, static_ptr_cast<const int*>(user_value)))
  383. return EFAULT;
  384. if (value < 0 || value > 255)
  385. return EINVAL;
  386. m_ttl = value;
  387. return KSuccess;
  388. }
  389. case IP_MULTICAST_LOOP: {
  390. if (user_value_size != 1)
  391. return EINVAL;
  392. u8 value;
  393. if (!copy_from_user(&value, static_ptr_cast<const u8*>(user_value)))
  394. return EFAULT;
  395. if (value != 0 && value != 1)
  396. return EINVAL;
  397. m_multicast_loop = value;
  398. return KSuccess;
  399. }
  400. case IP_ADD_MEMBERSHIP: {
  401. if (user_value_size != sizeof(ip_mreq))
  402. return EINVAL;
  403. ip_mreq mreq;
  404. if (!copy_from_user(&mreq, static_ptr_cast<const ip_mreq*>(user_value)))
  405. return EFAULT;
  406. if (mreq.imr_interface.s_addr != INADDR_ANY)
  407. return ENOTSUP;
  408. IPv4Address address { (const u8*)&mreq.imr_multiaddr.s_addr };
  409. if (!m_multicast_memberships.contains_slow(address))
  410. m_multicast_memberships.append(address);
  411. return KSuccess;
  412. }
  413. case IP_DROP_MEMBERSHIP: {
  414. if (user_value_size != sizeof(ip_mreq))
  415. return EINVAL;
  416. ip_mreq mreq;
  417. if (!copy_from_user(&mreq, static_ptr_cast<const ip_mreq*>(user_value)))
  418. return EFAULT;
  419. if (mreq.imr_interface.s_addr != INADDR_ANY)
  420. return ENOTSUP;
  421. IPv4Address address { (const u8*)&mreq.imr_multiaddr.s_addr };
  422. m_multicast_memberships.remove_first_matching([&address](auto& a) { return a == address; });
  423. return KSuccess;
  424. }
  425. default:
  426. return ENOPROTOOPT;
  427. }
  428. }
  429. KResult IPv4Socket::getsockopt(FileDescription& description, int level, int option, Userspace<void*> value, Userspace<socklen_t*> value_size)
  430. {
  431. if (level != IPPROTO_IP)
  432. return Socket::getsockopt(description, level, option, value, value_size);
  433. socklen_t size;
  434. if (!copy_from_user(&size, value_size.unsafe_userspace_ptr()))
  435. return EFAULT;
  436. switch (option) {
  437. case IP_TTL:
  438. if (size < sizeof(int))
  439. return EINVAL;
  440. if (!copy_to_user(static_ptr_cast<int*>(value), (int*)&m_ttl))
  441. return EFAULT;
  442. size = sizeof(int);
  443. if (!copy_to_user(value_size, &size))
  444. return EFAULT;
  445. return KSuccess;
  446. case IP_MULTICAST_LOOP: {
  447. if (size < 1)
  448. return EINVAL;
  449. if (!copy_to_user(static_ptr_cast<u8*>(value), (const u8*)&m_multicast_loop))
  450. return EFAULT;
  451. size = 1;
  452. if (!copy_to_user(value_size, &size))
  453. return EFAULT;
  454. return KSuccess;
  455. }
  456. default:
  457. return ENOPROTOOPT;
  458. }
  459. }
  460. int IPv4Socket::ioctl(FileDescription&, unsigned request, FlatPtr arg)
  461. {
  462. REQUIRE_PROMISE(inet);
  463. auto ioctl_route = [request, arg]() {
  464. rtentry route;
  465. if (!copy_from_user(&route, (rtentry*)arg))
  466. return -EFAULT;
  467. auto copied_ifname = copy_string_from_user(route.rt_dev, IFNAMSIZ);
  468. if (copied_ifname.is_null())
  469. return -EFAULT;
  470. auto adapter = NetworkAdapter::lookup_by_name(copied_ifname);
  471. if (!adapter)
  472. return -ENODEV;
  473. switch (request) {
  474. case SIOCADDRT:
  475. if (!Process::current()->is_superuser())
  476. return -EPERM;
  477. if (route.rt_gateway.sa_family != AF_INET)
  478. return -EAFNOSUPPORT;
  479. if ((route.rt_flags & (RTF_UP | RTF_GATEWAY)) != (RTF_UP | RTF_GATEWAY))
  480. return -EINVAL; // FIXME: Find the correct value to return
  481. adapter->set_ipv4_gateway(IPv4Address(((sockaddr_in&)route.rt_gateway).sin_addr.s_addr));
  482. return 0;
  483. case SIOCDELRT:
  484. // FIXME: Support gateway deletion
  485. return 0;
  486. }
  487. return -EINVAL;
  488. };
  489. auto ioctl_interface = [request, arg]() {
  490. ifreq* user_ifr = (ifreq*)arg;
  491. ifreq ifr;
  492. if (!copy_from_user(&ifr, user_ifr))
  493. return -EFAULT;
  494. char namebuf[IFNAMSIZ + 1];
  495. memcpy(namebuf, ifr.ifr_name, IFNAMSIZ);
  496. namebuf[sizeof(namebuf) - 1] = '\0';
  497. auto adapter = NetworkAdapter::lookup_by_name(namebuf);
  498. if (!adapter)
  499. return -ENODEV;
  500. switch (request) {
  501. case SIOCSIFADDR:
  502. if (!Process::current()->is_superuser())
  503. return -EPERM;
  504. if (ifr.ifr_addr.sa_family != AF_INET)
  505. return -EAFNOSUPPORT;
  506. adapter->set_ipv4_address(IPv4Address(((sockaddr_in&)ifr.ifr_addr).sin_addr.s_addr));
  507. return 0;
  508. case SIOCSIFNETMASK:
  509. if (!Process::current()->is_superuser())
  510. return -EPERM;
  511. if (ifr.ifr_addr.sa_family != AF_INET)
  512. return -EAFNOSUPPORT;
  513. adapter->set_ipv4_netmask(IPv4Address(((sockaddr_in&)ifr.ifr_netmask).sin_addr.s_addr));
  514. return 0;
  515. case SIOCGIFADDR: {
  516. u16 sa_family = AF_INET;
  517. if (!copy_to_user(&user_ifr->ifr_addr.sa_family, &sa_family))
  518. return -EFAULT;
  519. auto ip4_addr = adapter->ipv4_address().to_u32();
  520. if (!copy_to_user(&((sockaddr_in&)user_ifr->ifr_addr).sin_addr.s_addr, &ip4_addr, sizeof(ip4_addr)))
  521. return -EFAULT;
  522. return 0;
  523. }
  524. case SIOCGIFNETMASK: {
  525. u16 sa_family = AF_INET;
  526. if (!copy_to_user(&user_ifr->ifr_addr.sa_family, &sa_family))
  527. return -EFAULT;
  528. auto ip4_netmask = adapter->ipv4_netmask().to_u32();
  529. // NOTE: NOT ifr_netmask.
  530. if (!copy_to_user(&((sockaddr_in&)user_ifr->ifr_addr).sin_addr.s_addr, &ip4_netmask, sizeof(ip4_netmask)))
  531. return -EFAULT;
  532. return 0;
  533. }
  534. case SIOCGIFHWADDR: {
  535. u16 sa_family = AF_INET;
  536. if (!copy_to_user(&user_ifr->ifr_hwaddr.sa_family, &sa_family))
  537. return -EFAULT;
  538. auto mac_address = adapter->mac_address();
  539. if (!copy_to_user(ifr.ifr_hwaddr.sa_data, &mac_address, sizeof(MACAddress)))
  540. return -EFAULT;
  541. return 0;
  542. }
  543. case SIOCGIFBRDADDR: {
  544. u16 sa_family = AF_INET;
  545. if (!copy_to_user(&user_ifr->ifr_addr.sa_family, &sa_family))
  546. return -EFAULT;
  547. // Broadcast address is basically the reverse of the netmask, i.e.
  548. // instead of zeroing out the end, you OR with 1 instead.
  549. auto ip4_netmask = adapter->ipv4_netmask().to_u32();
  550. auto broadcast_addr = adapter->ipv4_address().to_u32() | ~ip4_netmask;
  551. if (!copy_to_user(&((sockaddr_in&)user_ifr->ifr_addr).sin_addr.s_addr, &broadcast_addr, sizeof(broadcast_addr)))
  552. return -EFAULT;
  553. return 0;
  554. }
  555. case SIOCGIFMTU: {
  556. u16 sa_family = AF_INET;
  557. if (!copy_to_user(&user_ifr->ifr_addr.sa_family, &sa_family))
  558. return -EFAULT;
  559. auto ip4_metric = adapter->mtu();
  560. if (!copy_to_user(&user_ifr->ifr_metric, &ip4_metric, sizeof(ip4_metric)))
  561. return -EFAULT;
  562. return 0;
  563. }
  564. case SIOCGIFFLAGS: {
  565. u16 sa_family = AF_INET;
  566. if (!copy_to_user(&user_ifr->ifr_addr.sa_family, &sa_family))
  567. return -EFAULT;
  568. // FIXME: stub!
  569. short flags = 1;
  570. if (!copy_to_user(&user_ifr->ifr_flags, &flags, sizeof(flags)))
  571. return -EFAULT;
  572. return 0;
  573. }
  574. case SIOCGIFCONF: {
  575. // FIXME: stub!
  576. return -EINVAL;
  577. }
  578. }
  579. return -EINVAL;
  580. };
  581. switch (request) {
  582. case SIOCSIFADDR:
  583. case SIOCSIFNETMASK:
  584. case SIOCGIFADDR:
  585. case SIOCGIFHWADDR:
  586. case SIOCGIFNETMASK:
  587. case SIOCGIFBRDADDR:
  588. case SIOCGIFMTU:
  589. case SIOCGIFFLAGS:
  590. case SIOCGIFCONF:
  591. return ioctl_interface();
  592. case SIOCADDRT:
  593. case SIOCDELRT:
  594. return ioctl_route();
  595. }
  596. return -EINVAL;
  597. }
  598. KResult IPv4Socket::close()
  599. {
  600. [[maybe_unused]] auto rc = shutdown(SHUT_RDWR);
  601. return KSuccess;
  602. }
  603. void IPv4Socket::shut_down_for_reading()
  604. {
  605. Socket::shut_down_for_reading();
  606. set_can_read(true);
  607. }
  608. void IPv4Socket::set_can_read(bool value)
  609. {
  610. m_can_read = value;
  611. if (value)
  612. evaluate_block_conditions();
  613. }
  614. }