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https://github.com/RGBCube/serenity
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Now, the caller needs to give interface names in command-line arguments. The DHCPClient will perform DHCP discovery only on these adapters. The service now immediately closes when no interfaces were given. We don't check if interface has already IP address assigned; we just reset it to zero so that DHCP resolution will not fail.
399 lines
14 KiB
C++
399 lines
14 KiB
C++
/*
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* Copyright (c) 2020-2022, the SerenityOS developers.
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#include "DHCPv4Client.h"
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#include <AK/Array.h>
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#include <AK/Debug.h>
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#include <AK/IPv4Address.h>
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#include <AK/JsonArray.h>
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#include <AK/JsonObject.h>
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#include <AK/JsonParser.h>
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#include <AK/Random.h>
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#include <AK/ScopeGuard.h>
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#include <AK/Try.h>
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#include <LibCore/File.h>
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#include <LibCore/Timer.h>
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#include <stdio.h>
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static u8 mac_part(Vector<String> const& parts, size_t index)
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{
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auto result = AK::StringUtils::convert_to_uint_from_hex(parts.at(index));
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VERIFY(result.has_value());
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return result.value();
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}
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static MACAddress mac_from_string(String const& str)
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{
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auto chunks = str.split(':');
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VERIFY(chunks.size() == 6); // should we...worry about this?
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return {
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mac_part(chunks, 0), mac_part(chunks, 1), mac_part(chunks, 2),
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mac_part(chunks, 3), mac_part(chunks, 4), mac_part(chunks, 5)
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};
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}
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static bool send(InterfaceDescriptor const& iface, DHCPv4Packet const& packet, Core::Object*)
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{
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int fd = socket(AF_INET, SOCK_DGRAM, IPPROTO_UDP);
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if (fd < 0) {
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dbgln("ERROR: socket :: {}", strerror(errno));
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return false;
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}
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ScopeGuard socket_close_guard = [&] { close(fd); };
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if (setsockopt(fd, SOL_SOCKET, SO_BINDTODEVICE, iface.ifname.characters(), IFNAMSIZ) < 0) {
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dbgln("ERROR: setsockopt(SO_BINDTODEVICE) :: {}", strerror(errno));
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return false;
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}
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sockaddr_in dst;
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memset(&dst, 0, sizeof(dst));
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dst.sin_family = AF_INET;
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dst.sin_port = htons(67);
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dst.sin_addr.s_addr = IPv4Address { 255, 255, 255, 255 }.to_u32();
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memset(&dst.sin_zero, 0, sizeof(dst.sin_zero));
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dbgln_if(DHCPV4CLIENT_DEBUG, "sendto({} bound to {}, ..., {} at {}) = ...?", fd, iface.ifname, dst.sin_addr.s_addr, dst.sin_port);
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auto rc = sendto(fd, &packet, sizeof(packet), 0, (sockaddr*)&dst, sizeof(dst));
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dbgln_if(DHCPV4CLIENT_DEBUG, "sendto({}) = {}", fd, rc);
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if (rc < 0) {
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dbgln("sendto failed with {}", strerror(errno));
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return false;
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}
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return true;
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}
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static void set_params(InterfaceDescriptor const& iface, IPv4Address const& ipv4_addr, IPv4Address const& netmask, Optional<IPv4Address> const& gateway)
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{
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int fd = socket(AF_INET, SOCK_DGRAM, IPPROTO_IP);
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if (fd < 0) {
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dbgln("ERROR: socket :: {}", strerror(errno));
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return;
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}
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struct ifreq ifr;
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memset(&ifr, 0, sizeof(ifr));
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bool fits = iface.ifname.copy_characters_to_buffer(ifr.ifr_name, IFNAMSIZ);
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if (!fits) {
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dbgln("Interface name doesn't fit into IFNAMSIZ!");
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return;
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}
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// set the IP address
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ifr.ifr_addr.sa_family = AF_INET;
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((sockaddr_in&)ifr.ifr_addr).sin_addr.s_addr = ipv4_addr.to_in_addr_t();
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if (ioctl(fd, SIOCSIFADDR, &ifr) < 0) {
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dbgln("ERROR: ioctl(SIOCSIFADDR) :: {}", strerror(errno));
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}
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// set the network mask
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((sockaddr_in&)ifr.ifr_netmask).sin_addr.s_addr = netmask.to_in_addr_t();
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if (ioctl(fd, SIOCSIFNETMASK, &ifr) < 0) {
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dbgln("ERROR: ioctl(SIOCSIFNETMASK) :: {}", strerror(errno));
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}
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if (!gateway.has_value())
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return;
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// set the default gateway
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struct rtentry rt;
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memset(&rt, 0, sizeof(rt));
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rt.rt_dev = const_cast<char*>(iface.ifname.characters());
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rt.rt_gateway.sa_family = AF_INET;
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((sockaddr_in&)rt.rt_gateway).sin_addr.s_addr = gateway.value().to_in_addr_t();
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rt.rt_flags = RTF_UP | RTF_GATEWAY;
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if (ioctl(fd, SIOCADDRT, &rt) < 0) {
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dbgln("Error: ioctl(SIOCADDRT) :: {}", strerror(errno));
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}
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}
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DHCPv4Client::DHCPv4Client(Vector<String> interfaces_with_dhcp_enabled)
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: m_interfaces_with_dhcp_enabled(move(interfaces_with_dhcp_enabled))
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{
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m_server = Core::UDPServer::construct(this);
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m_server->on_ready_to_receive = [this] {
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auto buffer = m_server->receive(sizeof(DHCPv4Packet));
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dbgln_if(DHCPV4CLIENT_DEBUG, "Received {} bytes", buffer.size());
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if (buffer.size() < sizeof(DHCPv4Packet) - DHCPV4_OPTION_FIELD_MAX_LENGTH + 1 || buffer.size() > sizeof(DHCPv4Packet)) {
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dbgln("we expected {}-{} bytes, this is a bad packet", sizeof(DHCPv4Packet) - DHCPV4_OPTION_FIELD_MAX_LENGTH + 1, sizeof(DHCPv4Packet));
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return;
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}
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auto& packet = *(DHCPv4Packet*)buffer.data();
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process_incoming(packet);
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};
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if (!m_server->bind({}, 68)) {
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dbgln("The server we just created somehow came already bound, refusing to continue");
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VERIFY_NOT_REACHED();
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}
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m_check_timer = Core::Timer::create_repeating(
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1000, [this] { try_discover_ifs(); }, this);
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m_check_timer->start();
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try_discover_ifs();
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}
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void DHCPv4Client::try_discover_ifs()
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{
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auto ifs_result = get_discoverable_interfaces();
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if (ifs_result.is_error())
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return;
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dbgln("Interfaces with DHCP enabled: {}", m_interfaces_with_dhcp_enabled);
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bool sent_discover_request = false;
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Interfaces& ifs = ifs_result.value();
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for (auto& iface : ifs.ready) {
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dbgln("Checking interface {} / {}", iface.ifname, iface.current_ip_address);
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if (!m_interfaces_with_dhcp_enabled.contains_slow(iface.ifname))
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continue;
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if (iface.current_ip_address != IPv4Address { 0, 0, 0, 0 }) {
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dbgln_if(DHCPV4CLIENT_DEBUG, "Resetting params for {}", iface.ifname);
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set_params(iface, IPv4Address { 0, 0, 0, 0 }, IPv4Address { 0, 0, 0, 0 }, {});
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iface.current_ip_address = IPv4Address { 0, 0, 0, 0 };
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}
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dhcp_discover(iface);
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sent_discover_request = true;
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}
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if (sent_discover_request) {
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auto current_interval = m_check_timer->interval();
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if (current_interval < m_max_timer_backoff_interval)
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current_interval *= 1.9f;
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m_check_timer->set_interval(current_interval);
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} else {
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m_check_timer->set_interval(1000);
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}
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}
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ErrorOr<DHCPv4Client::Interfaces> DHCPv4Client::get_discoverable_interfaces()
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{
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auto file = TRY(Core::File::open("/proc/net/adapters", Core::OpenMode::ReadOnly));
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auto file_contents = file->read_all();
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auto json = JsonValue::from_string(file_contents);
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if (json.is_error() || !json.value().is_array()) {
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dbgln("Error: No network adapters available");
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return Error::from_string_literal("No network adapters available"sv);
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}
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Vector<InterfaceDescriptor> ifnames_to_immediately_discover, ifnames_to_attempt_later;
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json.value().as_array().for_each([&ifnames_to_immediately_discover, &ifnames_to_attempt_later](auto& value) {
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auto if_object = value.as_object();
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if (if_object.get("class_name").to_string() == "LoopbackAdapter")
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return;
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auto name = if_object.get("name").to_string();
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auto mac = if_object.get("mac_address").to_string();
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auto is_up = if_object.get("link_up").to_bool();
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auto ipv4_addr_maybe = IPv4Address::from_string(if_object.get("ipv4_address").to_string());
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auto ipv4_addr = ipv4_addr_maybe.has_value() ? ipv4_addr_maybe.value() : IPv4Address { 0, 0, 0, 0 };
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if (is_up) {
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dbgln_if(DHCPV4_DEBUG, "Found adapter '{}' with mac {}, and it was up!", name, mac);
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ifnames_to_immediately_discover.empend(name, mac_from_string(mac), ipv4_addr);
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} else {
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dbgln_if(DHCPV4_DEBUG, "Found adapter '{}' with mac {}, but it was down", name, mac);
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ifnames_to_attempt_later.empend(name, mac_from_string(mac), ipv4_addr);
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}
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});
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return Interfaces {
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move(ifnames_to_immediately_discover),
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move(ifnames_to_attempt_later)
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};
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}
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void DHCPv4Client::handle_offer(DHCPv4Packet const& packet, ParsedDHCPv4Options const& options)
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{
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dbgln("We were offered {} for {}", packet.yiaddr().to_string(), options.get<u32>(DHCPOption::IPAddressLeaseTime).value_or(0));
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auto* transaction = const_cast<DHCPv4Transaction*>(m_ongoing_transactions.get(packet.xid()).value_or(nullptr));
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if (!transaction) {
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dbgln("we're not looking for {}", packet.xid());
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return;
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}
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if (transaction->has_ip)
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return;
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if (transaction->accepted_offer) {
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// we've accepted someone's offer, but they haven't given us an ack
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// TODO: maybe record this offer?
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return;
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}
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// TAKE IT...
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transaction->offered_lease_time = options.get<u32>(DHCPOption::IPAddressLeaseTime).value();
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dhcp_request(*transaction, packet);
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}
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void DHCPv4Client::handle_ack(DHCPv4Packet const& packet, ParsedDHCPv4Options const& options)
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{
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if constexpr (DHCPV4CLIENT_DEBUG) {
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dbgln("The DHCP server handed us {}", packet.yiaddr().to_string());
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dbgln("Here are the options: {}", options.to_string());
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}
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auto* transaction = const_cast<DHCPv4Transaction*>(m_ongoing_transactions.get(packet.xid()).value_or(nullptr));
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if (!transaction) {
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dbgln("we're not looking for {}", packet.xid());
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return;
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}
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transaction->has_ip = true;
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auto& interface = transaction->interface;
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auto new_ip = packet.yiaddr();
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interface.current_ip_address = new_ip;
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auto lease_time = AK::convert_between_host_and_network_endian(options.get<u32>(DHCPOption::IPAddressLeaseTime).value_or(transaction->offered_lease_time));
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// set a timer for the duration of the lease, we shall renew if needed
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(void)Core::Timer::create_single_shot(
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lease_time * 1000,
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[this, transaction, interface = InterfaceDescriptor { interface }] {
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transaction->accepted_offer = false;
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transaction->has_ip = false;
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dhcp_discover(interface);
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},
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this);
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Optional<IPv4Address> gateway;
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if (auto routers = options.get_many<IPv4Address>(DHCPOption::Router, 1); !routers.is_empty())
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gateway = routers.first();
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set_params(transaction->interface, new_ip, options.get<IPv4Address>(DHCPOption::SubnetMask).value(), gateway);
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}
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void DHCPv4Client::handle_nak(DHCPv4Packet const& packet, ParsedDHCPv4Options const& options)
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{
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dbgln("The DHCP server told us to go chase our own tail about {}", packet.yiaddr().to_string());
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dbgln("Here are the options: {}", options.to_string());
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// make another request a bit later :shrug:
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auto* transaction = const_cast<DHCPv4Transaction*>(m_ongoing_transactions.get(packet.xid()).value_or(nullptr));
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if (!transaction) {
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dbgln("we're not looking for {}", packet.xid());
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return;
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}
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transaction->accepted_offer = false;
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transaction->has_ip = false;
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auto& iface = transaction->interface;
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(void)Core::Timer::create_single_shot(
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10000,
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[this, iface = InterfaceDescriptor { iface }] {
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dhcp_discover(iface);
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},
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this);
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}
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void DHCPv4Client::process_incoming(DHCPv4Packet const& packet)
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{
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auto options = packet.parse_options();
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dbgln_if(DHCPV4CLIENT_DEBUG, "Here are the options: {}", options.to_string());
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auto value_or_error = options.get<DHCPMessageType>(DHCPOption::DHCPMessageType);
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if (!value_or_error.has_value())
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return;
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auto value = value_or_error.value();
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switch (value) {
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case DHCPMessageType::DHCPOffer:
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handle_offer(packet, options);
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break;
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case DHCPMessageType::DHCPAck:
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handle_ack(packet, options);
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break;
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case DHCPMessageType::DHCPNak:
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handle_nak(packet, options);
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break;
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case DHCPMessageType::DHCPDiscover:
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case DHCPMessageType::DHCPRequest:
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case DHCPMessageType::DHCPRelease:
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// These are not for us
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// we're just getting them because there are other people on our subnet
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// broadcasting stuff
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break;
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case DHCPMessageType::DHCPDecline:
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default:
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dbgln("I dunno what to do with this {}", (u8)value);
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VERIFY_NOT_REACHED();
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break;
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}
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}
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void DHCPv4Client::dhcp_discover(InterfaceDescriptor const& iface)
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{
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auto transaction_id = get_random<u32>();
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if constexpr (DHCPV4CLIENT_DEBUG) {
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dbgln("Trying to lease an IP for {} with ID {}", iface.ifname, transaction_id);
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if (!iface.current_ip_address.is_zero())
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dbgln("going to request the server to hand us {}", iface.current_ip_address.to_string());
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}
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DHCPv4PacketBuilder builder;
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DHCPv4Packet& packet = builder.peek();
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packet.set_op(DHCPv4Op::BootRequest);
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packet.set_htype(1); // 10mb ethernet
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packet.set_hlen(sizeof(MACAddress));
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packet.set_xid(transaction_id);
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packet.set_flags(DHCPv4Flags::Broadcast);
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packet.ciaddr() = iface.current_ip_address;
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packet.set_chaddr(iface.mac_address);
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packet.set_secs(65535); // we lie
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// set packet options
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builder.set_message_type(DHCPMessageType::DHCPDiscover);
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auto& dhcp_packet = builder.build();
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// broadcast the discover request
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if (!send(iface, dhcp_packet, this))
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return;
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m_ongoing_transactions.set(transaction_id, make<DHCPv4Transaction>(iface));
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}
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void DHCPv4Client::dhcp_request(DHCPv4Transaction& transaction, DHCPv4Packet const& offer)
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{
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auto& iface = transaction.interface;
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dbgln("Leasing the IP {} for adapter {}", offer.yiaddr().to_string(), iface.ifname);
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DHCPv4PacketBuilder builder;
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DHCPv4Packet& packet = builder.peek();
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packet.set_op(DHCPv4Op::BootRequest);
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packet.ciaddr() = iface.current_ip_address;
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packet.set_htype(1); // 10mb ethernet
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packet.set_hlen(sizeof(MACAddress));
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packet.set_xid(offer.xid());
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packet.set_flags(DHCPv4Flags::Broadcast);
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packet.set_chaddr(iface.mac_address);
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packet.set_secs(65535); // we lie
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// set packet options
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builder.set_message_type(DHCPMessageType::DHCPRequest);
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builder.add_option(DHCPOption::RequestedIPAddress, sizeof(IPv4Address), &offer.yiaddr());
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auto maybe_dhcp_server_ip = offer.parse_options().get<IPv4Address>(DHCPOption::ServerIdentifier);
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if (maybe_dhcp_server_ip.has_value())
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builder.add_option(DHCPOption::ServerIdentifier, sizeof(IPv4Address), &maybe_dhcp_server_ip.value());
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AK::Array<DHCPOption, 2> parameter_request_list = {
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DHCPOption::SubnetMask,
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DHCPOption::Router,
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};
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builder.add_option(DHCPOption::ParameterRequestList, parameter_request_list.size(), ¶meter_request_list);
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auto& dhcp_packet = builder.build();
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// broadcast the "request" request
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if (!send(iface, dhcp_packet, this))
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return;
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transaction.accepted_offer = true;
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}
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