213 lines
5.1 KiB
C++
213 lines
5.1 KiB
C++
#include <BAN/Assert.h>
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#include <BAN/Bitcast.h>
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#include <arpa/inet.h>
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#include <ctype.h>
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#include <limits.h>
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#include <netdb.h>
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#include <netinet/in.h>
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#include <stdlib.h>
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#include <string.h>
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#include <sys/socket.h>
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#include <sys/un.h>
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#include <unistd.h>
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int h_errno = 0;
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void freeaddrinfo(struct addrinfo* ai)
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{
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while (ai)
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{
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auto* next = ai->ai_next;
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free(ai);
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ai = next;
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}
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}
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const char* gai_strerror(int ecode)
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{
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switch (ecode)
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{
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case 0: return "Success";
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case EAI_AGAIN: return "The name could not be resolved at this time.";
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case EAI_BADFLAGS: return "The flags had an invalid value.";
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case EAI_FAIL: return "A non-recoverable error occurred.";
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case EAI_FAMILY: return "The address family was not recognized or the address length was invalid for the specified family.";
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case EAI_MEMORY: return "There was a memory allocation failure.";
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case EAI_NONAME: return "The name does not resolve for the supplied parameters. ";
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case EAI_SERVICE: return "The service passed was not recognized for the specified socket type.";
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case EAI_SOCKTYPE: return "The intended socket type was not recognized.";
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case EAI_SYSTEM: return "A system error occurred. The error code can be found in errno.";
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case EAI_OVERFLOW: return "An argument buffer overflowed.";
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default: return "Unknown error.";
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}
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}
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int getaddrinfo(const char* __restrict nodename, const char* __restrict servname, const struct addrinfo* __restrict hints, struct addrinfo** __restrict res)
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{
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int flags = 0;
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int family = AF_UNSPEC;
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int socktype = 0;
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if (hints)
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{
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flags = hints->ai_flags;
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family = hints->ai_family;
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socktype = hints->ai_socktype;
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}
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if (family != AF_UNSPEC && family != AF_INET)
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return EAI_FAMILY;
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switch (socktype)
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{
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case 0:
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socktype = SOCK_STREAM;
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break;
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case SOCK_DGRAM:
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case SOCK_STREAM:
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break;
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default:
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return EAI_SOCKTYPE;
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}
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if (!nodename)
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return EAI_NONAME;
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int port = 0;
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if (servname)
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{
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for (size_t i = 0; servname[i]; i++)
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if (!isdigit(servname[i]))
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return EAI_SERVICE;
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port = atoi(servname);
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if (port > 0xFFFF)
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return EAI_SERVICE;
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}
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int resolver_sock;
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in_addr_t ipv4_addr = INADDR_ANY;
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if (nodename)
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ipv4_addr = inet_addr(nodename);
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if (nodename && ipv4_addr == static_cast<in_addr_t>(-1))
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{
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if (flags & AI_NUMERICHOST)
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return EAI_NONAME;
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resolver_sock = socket(AF_UNIX, SOCK_SEQPACKET, 0);
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if (resolver_sock == -1)
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return EAI_FAIL;
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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 (connect(resolver_sock, (sockaddr*)&addr, sizeof(addr)) == -1)
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goto error_close_socket;
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if (send(resolver_sock, nodename, strlen(nodename), 0) == -1)
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goto error_close_socket;
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sockaddr_storage storage;
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if (recv(resolver_sock, &storage, sizeof(storage), 0) == -1)
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goto error_close_socket;
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close(resolver_sock);
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if (storage.ss_family != AF_INET)
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return EAI_FAIL;
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ipv4_addr = *reinterpret_cast<in_addr_t*>(storage.ss_storage);
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}
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{
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addrinfo* ai = (addrinfo*)malloc(sizeof(addrinfo) + sizeof(sockaddr_in));
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if (*res == nullptr)
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return EAI_MEMORY;
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sockaddr_in* sa_in = reinterpret_cast<sockaddr_in*>(reinterpret_cast<uintptr_t>(ai) + sizeof(addrinfo));
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sa_in->sin_addr.s_addr = ipv4_addr;
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sa_in->sin_family = AF_INET;
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sa_in->sin_port = htons(port);
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ai->ai_addr = reinterpret_cast<sockaddr*>(sa_in);
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ai->ai_addrlen = sizeof(sockaddr_in);
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ai->ai_canonname = (flags & AI_CANONNAME) ? const_cast<char*>(nodename) : nullptr;
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ai->ai_family = AF_INET;
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ai->ai_flags = 0;
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ai->ai_next = nullptr;
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ai->ai_protocol = 0;
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ai->ai_socktype = socktype;
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*res = ai;
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return 0;
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}
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error_close_socket:
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close(resolver_sock);
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return EAI_FAIL;
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}
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int getnameinfo(const struct sockaddr* __restrict, socklen_t, char* __restrict, socklen_t, char* __restrict, socklen_t, int)
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{
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ASSERT_NOT_REACHED();
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}
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struct hostent* gethostbyname(const char* name)
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{
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static char name_buffer[HOST_NAME_MAX + 1];
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static in_addr_t addr_buffer;
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static in_addr_t* addr_ptrs[2];
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static struct hostent hostent;
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if (strlen(name) > HOST_NAME_MAX)
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return nullptr;
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strcpy(name_buffer, name);
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hostent.h_name = name_buffer;
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hostent.h_aliases = nullptr;
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hostent.h_addrtype = AF_INET;
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hostent.h_length = sizeof(in_addr_t);
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addr_ptrs[0] = &addr_buffer;
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addr_ptrs[1] = nullptr;
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hostent.h_addr_list = reinterpret_cast<char**>(addr_ptrs);
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int socket = -1;
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if (in_addr_t ipv4 = inet_addr(name); ipv4 != (in_addr_t)(-1))
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addr_buffer = ipv4;
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else
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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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return nullptr;
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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 (connect(socket, (sockaddr*)&addr, sizeof(addr)) == -1)
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goto error_close_socket;
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if (send(socket, name, strlen(name), 0) == -1)
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goto error_close_socket;
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sockaddr_storage storage;
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if (recv(socket, &storage, sizeof(storage), 0) == -1)
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goto error_close_socket;
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close(socket);
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if (storage.ss_family != AF_INET)
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return nullptr;
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addr_buffer = *reinterpret_cast<in_addr_t*>(storage.ss_storage);
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}
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return &hostent;
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error_close_socket:
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close(socket);
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return nullptr;
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}
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