/* net_udp.c UDP lan driver. Copyright (C) 1996-1997 Id Software, Inc. This program is free software; you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation; either version 2 of the License, or (at your option) any later version. This program is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with this program; if not, write to: Free Software Foundation, Inc. 59 Temple Place - Suite 330 Boston, MA 02111-1307, USA */ #ifdef HAVE_CONFIG_H # include "config.h" #endif static __attribute__ ((used)) const char rcsid[] = "$Id$"; #include #ifdef HAVE_STRING_H # include #endif #ifdef HAVE_STRINGS_H # include #endif #ifdef HAVE_SYS_SOCKET_H # include #endif #ifdef HAVE_NETINET_IN_H # define model_t sun_model_t # include # undef model_t #endif #ifdef HAVE_ARPA_INET_H # include #endif #ifdef HAVE_NETDB_H # include #endif #ifdef HAVE_SYS_PARAM_H # include #endif #ifdef HAVE_SYS_IOCTL_H # include #endif #ifdef HAVE_WINDOWS_H # include #endif #ifdef HAVE_WINSOCK_H # include #endif #ifdef HAVE_UNISTD_H # include #endif #ifdef __sun__ # include #endif #ifdef NeXT # include #endif #include #include #include #include #include #include "QF/cvar.h" #include "QF/dstring.h" #include "QF/qargs.h" #include "QF/sys.h" #include "QF/va.h" #include "compat.h" #include "netmain.h" #ifdef _WIN32 # undef EWOULDBLOCK # define EWOULDBLOCK WSAEWOULDBLOCK # undef ECONNREFUSED # define ECONNREFUSED WSAECONNREFUSED #endif #ifndef MAXHOSTNAMELEN # define MAXHOSTNAMELEN 512 #endif #ifndef HAVE_SOCKLEN_T # ifdef HAVE_SIZE typedef size_t socklen_t; # else typedef unsigned int socklen_t; # endif #endif static int net_acceptsocket = -1; // socket for fielding new // connections static int net_controlsocket; static int net_broadcastsocket = 0; static struct qsockaddr broadcastaddr; static unsigned myAddr; #include "net_udp.h" static int num_ifaces; uint32_t *ifaces; uint32_t *default_iface; uint32_t *last_iface; static int get_iface_list (int sock) { int ret; int buflen; struct ifconf ifconf; buflen = sizeof (*ifconf.ifc_req) * 4; ifconf.ifc_req = 0; do { buflen *= 2; ifconf.ifc_len = buflen; ifconf.ifc_req = realloc (ifconf.ifc_req, ifconf.ifc_len); if ((ret = ioctl (sock, SIOCGIFCONF, &ifconf)) < 0) { Sys_MaskPrintf (SYS_NET, "ioctl: %s", strerror (errno)); break; } } while (ifconf.ifc_len == buflen); if (ret >= 0) { int i; num_ifaces = ifconf.ifc_len / sizeof (*ifconf.ifc_req); ifaces = malloc (num_ifaces * sizeof (int32_t)); Sys_MaskPrintf (SYS_NET, "Interfaces (count = %d)\n", num_ifaces); for (i = 0; i < num_ifaces; i++) { struct sockaddr_in *sa; sa = (struct sockaddr_in *) &ifconf.ifc_req[i].ifr_ifru.ifru_addr; Sys_MaskPrintf (SYS_NET, " %-10s %s\n", ifconf.ifc_req[i].ifr_name, inet_ntoa (sa->sin_addr)); memcpy (&ifaces[i], &sa->sin_addr, sizeof (uint32_t)); if (!default_iface && ifaces[i] != htonl (0x7f000001)) default_iface = &ifaces[i]; } } if (default_iface) myAddr = *default_iface; free (ifconf.ifc_req); return ret; } int UDP_Init (void) { struct hostent *local; char buff[MAXHOSTNAMELEN]; struct qsockaddr addr; char *colon; #ifdef _WIN32 WSADATA winsockdata; int r; r = WSAStartup (MAKEWORD (1, 1), &winsockdata); if (r) Sys_Error ("Winsock initialization failed."); #endif if (COM_CheckParm ("-noudp")) return -1; // determine my name & address gethostname (buff, MAXHOSTNAMELEN); local = gethostbyname (buff); if (local) myAddr = *(int *) local->h_addr_list[0]; else myAddr = 0; // if the quake hostname isn't set, set it to the machine name if (strcmp (hostname->string, "UNNAMED") == 0) { buff[15] = 0; Cvar_Set (hostname, buff); } if ((net_controlsocket = UDP_OpenSocket (0)) == -1) Sys_Error ("UDP_Init: Unable to open control socket"); get_iface_list (net_controlsocket); { struct sockaddr_in t; memcpy (&t, &broadcastaddr, sizeof (t)); t.sin_family = AF_INET; t.sin_addr.s_addr = INADDR_BROADCAST; t.sin_port = htons (net_hostport); memcpy (&broadcastaddr, &t, sizeof (broadcastaddr)); } UDP_GetSocketAddr (net_controlsocket, &addr); strcpy (my_tcpip_address, UDP_AddrToString (&addr)); colon = strrchr (my_tcpip_address, ':'); if (colon) *colon = 0; Sys_Printf ("UDP (IPv4) Initialized\n"); tcpipAvailable = true; return net_controlsocket; } void UDP_Shutdown (void) { UDP_Listen (false); UDP_CloseSocket (net_controlsocket); } void UDP_Listen (qboolean state) { // enable listening if (state) { if (net_acceptsocket != -1) return; if ((net_acceptsocket = UDP_OpenSocket (net_hostport)) == -1) Sys_Error ("UDP_Listen: Unable to open accept socket"); return; } // disable listening if (net_acceptsocket == -1) return; UDP_CloseSocket (net_acceptsocket); net_acceptsocket = -1; } int UDP_OpenSocket (int port) { int newsocket; struct sockaddr_in address; #ifdef _WIN32 #define ioctl ioctlsocket unsigned long _true = true; #else int _true = true; #endif #ifdef HAVE_IN_PKTINFO int ip_pktinfo = 1; #endif if ((newsocket = socket (PF_INET, SOCK_DGRAM, IPPROTO_UDP)) == -1) return -1; if (ioctl (newsocket, FIONBIO, &_true) == -1) goto ErrorReturn; #ifdef HAVE_IN_PKTINFO if (setsockopt (newsocket, SOL_IP, IP_PKTINFO, &ip_pktinfo, sizeof (ip_pktinfo)) == -1) { close (newsocket); return -1; } #endif address.sin_family = AF_INET; address.sin_addr.s_addr = INADDR_ANY; address.sin_port = htons (port); if (bind (newsocket, (void *) &address, sizeof (address)) == -1) goto ErrorReturn; return newsocket; ErrorReturn: UDP_CloseSocket (newsocket); return -1; } int UDP_CloseSocket (int socket) { if (socket == net_broadcastsocket) net_broadcastsocket = 0; #ifdef _WIN32 closesocket (socket); WSACleanup (); return 0; #else return close (socket); #endif } /* PartialIPAddress this lets you type only as much of the net address as required, using the local network components to fill in the rest */ static int PartialIPAddress (const char *in, struct qsockaddr *hostaddr) { char *buff; char *b; int addr, mask, num, port, run; buff = nva (".%s", in); b = buff; if (buff[1] == '.') b++; addr = 0; mask = -1; while (*b == '.') { b++; num = 0; run = 0; while (!(*b < '0' || *b > '9')) { num = num * 10 + *b++ - '0'; if (++run > 3) goto error; } if ((*b < '0' || *b > '9') && *b != '.' && *b != ':' && *b != 0) goto error; if (num < 0 || num > 255) goto error; mask <<= 8; addr = (addr << 8) + num; } if (*b++ == ':') port = atoi (b); else port = net_hostport; hostaddr->qsa_family = AF_INET; ((struct sockaddr_in *) hostaddr)->sin_port = htons ((short) port); ((struct sockaddr_in *) hostaddr)->sin_addr.s_addr = (myAddr & htonl (mask)) | htonl (addr); free (buff); return 0; error: free (buff); return -1; } int UDP_Connect (int socket, struct qsockaddr *addr) { return 0; } int UDP_CheckNewConnections (void) { unsigned long available; struct sockaddr_in from; socklen_t fromlen; char buff[1]; if (net_acceptsocket == -1) return -1; if (ioctl (net_acceptsocket, FIONREAD, &available) == -1) Sys_Error ("UDP: ioctlsocket (FIONREAD) failed"); if (available) return net_acceptsocket; // quietly absorb empty packets // there is no way to tell between an empty packet and no packets, but // as non-blocking io is used, this is not a problem. // we don't care about the interface on which the packet arrived recvfrom (net_acceptsocket, buff, 0, 0, (struct sockaddr *) &from, &fromlen); return -1; } int UDP_Read (int socket, byte *buf, int len, struct qsockaddr *addr) { int ret; #ifdef HAVE_IN_PKTINFO char ancillary[CMSG_SPACE (sizeof (struct in_pktinfo))]; struct msghdr msghdr = { addr, sizeof (*addr), 0, 0, ancillary, sizeof (ancillary), 0 }; struct iovec iovec = {buf, len}; struct cmsghdr *cmsg; struct in_pktinfo *info = 0; msghdr.msg_iov = &iovec; msghdr.msg_iovlen = 1; ret = recvmsg (socket, &msghdr, 0); if (ret == -1 && (errno == EWOULDBLOCK || errno == ECONNREFUSED)) return 0; for (cmsg = CMSG_FIRSTHDR (&msghdr); cmsg; cmsg = CMSG_NXTHDR (&msghdr, cmsg)) { Sys_MaskPrintf (SYS_NET, "%d\n", cmsg->cmsg_type); if (cmsg->cmsg_type == IP_PKTINFO) { info = (struct in_pktinfo *) CMSG_DATA (cmsg); break; } } last_iface = 0; if (info) { /* Our iterface list is 0 based, but the pktinfo interface index is 1 * based. */ last_iface = &ifaces[info->ipi_ifindex - 1]; } Sys_MaskPrintf (SYS_NET, "got %d bytes from %s on iface %d (%s)\n", ret, UDP_AddrToString (addr), info ? info->ipi_ifindex - 1 : -1, last_iface ? inet_ntoa (info->ipi_addr) : "?"); #else socklen_t addrlen = sizeof (struct qsockaddr); ret = recvfrom (socket, buf, len, 0, (struct sockaddr *) addr, &addrlen); if (ret == -1 && (errno == EWOULDBLOCK || errno == ECONNREFUSED)) return 0; Sys_MaskPrintf (SYS_NET, "got %d bytes from %s\n", ret, UDP_AddrToString (addr)); last_iface = default_iface; #endif return ret; } static int UDP_MakeSocketBroadcastCapable (int socket) { int i = 1; // make this socket broadcast capable if (setsockopt (socket, SOL_SOCKET, SO_BROADCAST, (char *) &i, sizeof (i)) < 0) return -1; net_broadcastsocket = socket; return 0; } int UDP_Broadcast (int socket, byte *buf, int len) { int ret; if (socket != net_broadcastsocket) { if (net_broadcastsocket != 0) Sys_Error ("Attempted to use multiple broadcasts sockets"); ret = UDP_MakeSocketBroadcastCapable (socket); if (ret == -1) { Sys_Printf ("Unable to make socket broadcast capable\n"); return ret; } } return UDP_Write (socket, buf, len, &broadcastaddr); } int UDP_Write (int socket, byte *buf, int len, struct qsockaddr *addr) { int ret; ret = sendto (socket, buf, len, 0, (struct sockaddr *) addr, sizeof (struct qsockaddr)); if (ret == -1 && errno == EWOULDBLOCK) return 0; Sys_MaskPrintf (SYS_NET, "sent %d bytes to %s\n", ret, UDP_AddrToString (addr)); return ret; } const char * UDP_AddrToString (struct qsockaddr *addr) { static dstring_t *buffer; int haddr; if (!buffer) buffer = dstring_new (); haddr = ntohl (((struct sockaddr_in *) addr)->sin_addr.s_addr); dsprintf (buffer, "%d.%d.%d.%d:%d", (haddr >> 24) & 0xff, (haddr >> 16) & 0xff, (haddr >> 8) & 0xff, haddr & 0xff, ntohs (((struct sockaddr_in *) addr)->sin_port)); return buffer->str; } int UDP_GetSocketAddr (int socket, struct qsockaddr *addr) { unsigned int a; socklen_t addrlen = sizeof (struct qsockaddr); memset (addr, 0, sizeof (struct qsockaddr)); getsockname (socket, (struct sockaddr *) addr, &addrlen); a = ((struct sockaddr_in *) addr)->sin_addr.s_addr; if (a == 0 || a == inet_addr ("127.0.0.1")) ((struct sockaddr_in *) addr)->sin_addr.s_addr = myAddr; return 0; } int UDP_GetNameFromAddr (struct qsockaddr *addr, char *name) { struct hostent *hostentry; hostentry = gethostbyaddr ((char *) &((struct sockaddr_in *) addr)->sin_addr, sizeof (struct in_addr), AF_INET); if (hostentry) { strncpy (name, (char *) hostentry->h_name, NET_NAMELEN - 1); return 0; } strcpy (name, UDP_AddrToString (addr)); return 0; } int UDP_GetAddrFromName (const char *name, struct qsockaddr *addr) { struct hostent *hostentry; if (name[0] >= '0' && name[0] <= '9') return PartialIPAddress (name, addr); hostentry = gethostbyname (name); if (!hostentry) return -1; addr->qsa_family = AF_INET; ((struct sockaddr_in *) addr)->sin_port = htons (net_hostport); ((struct sockaddr_in *) addr)->sin_addr.s_addr = *(int *) hostentry->h_addr_list[0]; return 0; } int UDP_AddrCompare (struct qsockaddr *addr1, struct qsockaddr *addr2) { if (addr1->qsa_family != addr2->qsa_family) return -1; if (((struct sockaddr_in *) addr1)->sin_addr.s_addr != ((struct sockaddr_in *) addr2)->sin_addr.s_addr) return -1; if (((struct sockaddr_in *) addr1)->sin_port != ((struct sockaddr_in *) addr2)->sin_port) return 1; return 0; } int UDP_GetSocketPort (struct qsockaddr *addr) { return ntohs (((struct sockaddr_in *) addr)->sin_port); } int UDP_SetSocketPort (struct qsockaddr *addr, int port) { ((struct sockaddr_in *) addr)->sin_port = htons (port); return 0; }