forked from Bananymous/banan-os
349 lines
7.7 KiB
C++
349 lines
7.7 KiB
C++
#include <BAN/ByteSpan.h>
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#include <BAN/Debug.h>
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#include <BAN/Endianness.h>
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#include <BAN/HashMap.h>
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#include <BAN/IPv4.h>
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#include <BAN/String.h>
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#include <BAN/StringView.h>
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#include <BAN/Vector.h>
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#include <arpa/inet.h>
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#include <netinet/in.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <sys/select.h>
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#include <sys/socket.h>
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#include <sys/stat.h>
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#include <sys/un.h>
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#include <unistd.h>
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struct DNSPacket
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{
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BAN::NetworkEndian<uint16_t> identification { 0 };
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BAN::NetworkEndian<uint16_t> flags { 0 };
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BAN::NetworkEndian<uint16_t> question_count { 0 };
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BAN::NetworkEndian<uint16_t> answer_count { 0 };
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BAN::NetworkEndian<uint16_t> authority_RR_count { 0 };
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BAN::NetworkEndian<uint16_t> additional_RR_count { 0 };
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uint8_t data[];
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};
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static_assert(sizeof(DNSPacket) == 12);
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struct DNSAnswer
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{
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uint8_t __storage[12];
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BAN::NetworkEndian<uint16_t>& name() { return *reinterpret_cast<BAN::NetworkEndian<uint16_t>*>(__storage + 0x00); };
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BAN::NetworkEndian<uint16_t>& type() { return *reinterpret_cast<BAN::NetworkEndian<uint16_t>*>(__storage + 0x02); };
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BAN::NetworkEndian<uint16_t>& class_() { return *reinterpret_cast<BAN::NetworkEndian<uint16_t>*>(__storage + 0x04); };
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BAN::NetworkEndian<uint32_t>& ttl() { return *reinterpret_cast<BAN::NetworkEndian<uint32_t>*>(__storage + 0x06); };
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BAN::NetworkEndian<uint16_t>& data_len() { return *reinterpret_cast<BAN::NetworkEndian<uint16_t>*>(__storage + 0x0A); };
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uint8_t data[];
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};
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static_assert(sizeof(DNSAnswer) == 12);
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enum QTYPE : uint16_t
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{
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A = 0x0001,
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CNAME = 0x0005,
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AAAA = 0x001C,
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};
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struct DNSEntry
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{
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time_t valid_until { 0 };
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BAN::IPv4Address address { 0 };
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};
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struct DNSResponse
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{
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uint16_t id;
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DNSEntry entry;
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};
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bool send_dns_query(int socket, BAN::StringView domain, uint16_t id)
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{
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static uint8_t buffer[4096];
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memset(buffer, 0, sizeof(buffer));
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DNSPacket& request = *reinterpret_cast<DNSPacket*>(buffer);
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request.identification = id;
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request.flags = 0x0100;
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request.question_count = 1;
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size_t idx = 0;
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auto labels = MUST(BAN::StringView(domain).split('.'));
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for (auto label : labels)
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{
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ASSERT(label.size() <= 0xFF);
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request.data[idx++] = label.size();
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for (char c : label)
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request.data[idx++] = c;
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}
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request.data[idx++] = 0x00;
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*(uint16_t*)&request.data[idx] = htons(QTYPE::A); idx += 2;
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*(uint16_t*)&request.data[idx] = htons(0x0001); idx += 2;
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sockaddr_in nameserver;
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nameserver.sin_family = AF_INET;
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nameserver.sin_port = htons(53);
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nameserver.sin_addr.s_addr = inet_addr("8.8.8.8");
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if (sendto(socket, &request, sizeof(DNSPacket) + idx, 0, (sockaddr*)&nameserver, sizeof(nameserver)) == -1)
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{
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dprintln("sendto: {}", 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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BAN::Optional<DNSResponse> read_dns_response(int socket)
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{
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static uint8_t buffer[4096];
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ssize_t nrecv = recvfrom(socket, buffer, sizeof(buffer), 0, nullptr, nullptr);
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if (nrecv == -1)
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{
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dprintln("recvfrom: {}", strerror(errno));
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return {};
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}
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DNSPacket& reply = *reinterpret_cast<DNSPacket*>(buffer);
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if (reply.flags & 0x0F)
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{
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dprintln("DNS error (rcode {})", (unsigned)(reply.flags & 0xF));
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return {};
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}
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size_t idx = 0;
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for (size_t i = 0; i < reply.question_count; i++)
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{
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while (reply.data[idx])
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idx += reply.data[idx] + 1;
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idx += 5;
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}
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DNSAnswer& answer = *reinterpret_cast<DNSAnswer*>(&reply.data[idx]);
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if (answer.type() != QTYPE::A)
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{
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dprintln("Not A record");
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return {};
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}
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if (answer.data_len() != 4)
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{
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dprintln("corrupted package");
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return {};
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}
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DNSResponse result;
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result.id = reply.identification;
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result.entry.valid_until = time(nullptr) + answer.ttl();
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result.entry.address = BAN::IPv4Address(*reinterpret_cast<uint32_t*>(answer.data));
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return result;
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}
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int create_service_socket()
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{
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int socket = ::socket(AF_UNIX, SOCK_SEQPACKET, 0);
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if (socket == -1)
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{
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dprintln("socket: {}", strerror(errno));
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return -1;
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}
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sockaddr_un addr;
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addr.sun_family = AF_UNIX;
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strcpy(addr.sun_path, "/tmp/resolver.sock");
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if (bind(socket, (sockaddr*)&addr, sizeof(addr)) == -1)
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{
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dprintln("bind: {}", strerror(errno));
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close(socket);
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return -1;
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}
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if (chmod("/tmp/resolver.sock", 0777) == -1)
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{
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dprintln("chmod: {}", strerror(errno));
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close(socket);
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return -1;
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}
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if (listen(socket, 10) == -1)
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{
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dprintln("listen: {}", strerror(errno));
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close(socket);
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return -1;
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}
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return socket;
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}
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BAN::Optional<BAN::String> read_service_query(int socket)
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{
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static char buffer[4096];
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ssize_t nrecv = recv(socket, buffer, sizeof(buffer), 0);
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if (nrecv == -1)
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{
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dprintln("recv: {}", strerror(errno));
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return {};
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}
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buffer[nrecv] = '\0';
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return BAN::String(buffer);
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}
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int main(int, char**)
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{
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srand(time(nullptr));
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int service_socket = create_service_socket();
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if (service_socket == -1)
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return 1;
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int dns_socket = socket(AF_INET, SOCK_DGRAM, 0);
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if (dns_socket == -1)
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{
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dprintln("socket: {}", strerror(errno));
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return 1;
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}
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BAN::HashMap<BAN::String, DNSEntry> dns_cache;
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struct Client
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{
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Client(int socket)
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: socket(socket)
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{ }
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const int socket;
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bool close { false };
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uint16_t query_id { 0 };
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BAN::String query;
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};
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BAN::LinkedList<Client> clients;
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for (;;)
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{
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int max_sock = BAN::Math::max(service_socket, dns_socket);
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fd_set fds;
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FD_ZERO(&fds);
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FD_SET(service_socket, &fds);
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FD_SET(dns_socket, &fds);
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for (auto& client : clients)
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{
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FD_SET(client.socket, &fds);
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max_sock = BAN::Math::max(max_sock, client.socket);
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}
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int nselect = select(max_sock + 1, &fds, nullptr, nullptr, nullptr);
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if (nselect == -1)
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{
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perror("select");
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continue;
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}
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if (FD_ISSET(service_socket, &fds))
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{
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int client = accept(service_socket, nullptr, nullptr);
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if (client == -1)
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{
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perror("accept");
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continue;
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}
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MUST(clients.emplace_back(client));
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}
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if (FD_ISSET(dns_socket, &fds))
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{
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auto result = read_dns_response(dns_socket);
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if (!result.has_value())
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continue;
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for (auto& client : clients)
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{
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if (client.query_id != result->id)
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continue;
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(void)dns_cache.insert(client.query, result->entry);
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sockaddr_storage storage;
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storage.ss_family = AF_INET;
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memcpy(storage.ss_storage, &result->entry.address.raw, sizeof(result->entry.address.raw));
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if (send(client.socket, &storage, sizeof(storage), 0) == -1)
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dprintln("send: {}", strerror(errno));
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client.close = true;
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break;
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}
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}
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for (auto& client : clients)
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{
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if (!FD_ISSET(client.socket, &fds))
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continue;
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if (!client.query.empty())
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{
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static uint8_t buffer[4096];
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ssize_t nrecv = recv(client.socket, buffer, sizeof(buffer), 0);
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if (nrecv < 0)
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dprintln("{}", strerror(errno));
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if (nrecv <= 0)
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client.close = true;
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else
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dprintln("Client already has a query");
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continue;
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}
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auto query = read_service_query(client.socket);
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if (!query.has_value())
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{
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client.close = true;
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continue;
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}
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BAN::Optional<DNSEntry> result;
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if (dns_cache.contains(*query))
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{
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auto& cached = dns_cache[*query];
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if (time(nullptr) <= cached.valid_until)
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result = cached;
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else
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dns_cache.remove(*query);
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}
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if (result.has_value())
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{
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sockaddr_storage storage;
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storage.ss_family = AF_INET;
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memcpy(storage.ss_storage, &result->address.raw, sizeof(result->address.raw));
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if (send(client.socket, &storage, sizeof(storage), 0) == -1)
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dprintln("send: {}", strerror(errno));
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client.close = true;
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continue;
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}
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client.query = query.release_value();
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client.query_id = rand() % 0xFFFF;
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send_dns_query(dns_socket, client.query, client.query_id);
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}
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for (auto it = clients.begin(); it != clients.end();)
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{
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if (!it->close)
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{
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it++;
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continue;
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}
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close(it->socket);
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it = clients.remove(it);
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}
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}
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return 0;
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}
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