📄 ipv4.c
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/***************************************************************************** * ipv4.c: IPv4 network abstraction layer ***************************************************************************** * Copyright (C) 2001, 2002 VideoLAN * $Id: ipv4.c,v 1.20 2003/07/31 23:44:49 fenrir Exp $ * * Authors: Christophe Massiot <massiot@via.ecp.fr> * Mathias Kretschmer <mathias@research.att.com> * * 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 the Free Software * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111, USA. *****************************************************************************//***************************************************************************** * Preamble *****************************************************************************/#include <stdlib.h>#include <string.h>#include <vlc/vlc.h>#ifdef HAVE_SYS_TYPES_H# include <sys/types.h>#endif#ifdef HAVE_SYS_STAT_H# include <sys/stat.h>#endif#ifdef HAVE_ERRNO_H# include <errno.h>#endif#ifdef HAVE_FCNTL_H# include <fcntl.h>#endif#ifdef HAVE_UNISTD_H# include <unistd.h>#endif#if defined( UNDER_CE )# include <winsock.h>#elif defined( WIN32 )# include <winsock2.h># include <ws2tcpip.h># define close closesocket#else# include <netdb.h> /* hostent ... */# include <sys/socket.h># include <netinet/in.h># ifdef HAVE_ARPA_INET_H# include <arpa/inet.h> /* inet_ntoa(), inet_aton() */# endif#endif#include "network.h"#ifndef INADDR_ANY# define INADDR_ANY 0x00000000#endif#ifndef INADDR_NONE# define INADDR_NONE 0xFFFFFFFF#endif#ifndef IN_MULTICAST# define IN_MULTICAST(a) IN_CLASSD(a)#endif/***************************************************************************** * Local prototypes *****************************************************************************/static int NetOpen( vlc_object_t * );/***************************************************************************** * Module descriptor *****************************************************************************/vlc_module_begin(); set_description( _("IPv4 network abstraction layer") ); set_capability( "network", 50 ); set_callbacks( NetOpen, NULL );vlc_module_end();/***************************************************************************** * BuildAddr: utility function to build a struct sockaddr_in *****************************************************************************/static int BuildAddr( struct sockaddr_in * p_socket, const char * psz_address, int i_port ){ /* Reset struct */ memset( p_socket, 0, sizeof( struct sockaddr_in ) ); p_socket->sin_family = AF_INET; /* family */ p_socket->sin_port = htons( (uint16_t)i_port ); if( !*psz_address ) { p_socket->sin_addr.s_addr = INADDR_ANY; } else { struct hostent * p_hostent; /* Try to convert address directly from in_addr - this will work if * psz_address is dotted decimal. */#ifdef HAVE_ARPA_INET_H if( !inet_aton( psz_address, &p_socket->sin_addr ) )#else p_socket->sin_addr.s_addr = inet_addr( psz_address ); if( p_socket->sin_addr.s_addr == INADDR_NONE )#endif { /* We have a fqdn, try to find its address */ if ( (p_hostent = gethostbyname( psz_address )) == NULL ) { return( -1 ); } /* Copy the first address of the host in the socket address */ memcpy( &p_socket->sin_addr, p_hostent->h_addr_list[0], p_hostent->h_length ); } } return( 0 );}/***************************************************************************** * OpenUDP: open a UDP socket ***************************************************************************** * psz_bind_addr, i_bind_port : address and port used for the bind() * system call. If psz_bind_addr == "", the socket is bound to * INADDR_ANY and broadcast reception is enabled. If i_bind_port == 0, * 1234 is used. If psz_bind_addr is a multicast (class D) address, * join the multicast group. * psz_server_addr, i_server_port : address and port used for the connect() * system call. It can avoid receiving packets from unauthorized IPs. * Its use leads to great confusion and is currently discouraged. * This function returns -1 in case of error. *****************************************************************************/static int OpenUDP( vlc_object_t * p_this, network_socket_t * p_socket ){ char * psz_bind_addr = p_socket->psz_bind_addr; int i_bind_port = p_socket->i_bind_port; char * psz_server_addr = p_socket->psz_server_addr; int i_server_port = p_socket->i_server_port; int i_handle, i_opt; socklen_t i_opt_size; struct sockaddr_in sock; /* Open a SOCK_DGRAM (UDP) socket, in the AF_INET domain, automatic (0) * protocol */ if( (i_handle = socket( AF_INET, SOCK_DGRAM, 0 )) == -1 ) {#ifdef HAVE_ERRNO_H msg_Warn( p_this, "cannot create socket (%s)", strerror(errno) );#else msg_Warn( p_this, "cannot create socket" );#endif return( -1 ); } /* We may want to reuse an already used socket */ i_opt = 1; if( setsockopt( i_handle, SOL_SOCKET, SO_REUSEADDR, (void *) &i_opt, sizeof( i_opt ) ) == -1 ) {#ifdef HAVE_ERRNO_H msg_Warn( p_this, "cannot configure socket (SO_REUSEADDR: %s)", strerror(errno));#else msg_Warn( p_this, "cannot configure socket (SO_REUSEADDR)" );#endif close( i_handle ); return( -1 ); } /* Increase the receive buffer size to 1/2MB (8Mb/s during 1/2s) to avoid * packet loss caused by scheduling problems */ i_opt = 0x80000;#if defined( SYS_BEOS ) if( setsockopt( i_handle, SOL_SOCKET, SO_NONBLOCK,#else if( setsockopt( i_handle, SOL_SOCKET, SO_RCVBUF,#endif (void *) &i_opt, sizeof( i_opt ) ) == -1 ) {#ifdef HAVE_ERRNO_H msg_Dbg( p_this, "cannot configure socket (SO_RCVBUF: %s)", strerror(errno));#else msg_Warn( p_this, "cannot configure socket (SO_RCVBUF)" );#endif } /* Check if we really got what we have asked for, because Linux, etc. * will silently limit the max buffer size to net.core.rmem_max which * is typically only 65535 bytes */ i_opt = 0; i_opt_size = sizeof( i_opt );#if defined( SYS_BEOS ) if( getsockopt( i_handle, SOL_SOCKET, SO_NONBLOCK,#else if( getsockopt( i_handle, SOL_SOCKET, SO_RCVBUF,#endif (void*) &i_opt, &i_opt_size ) == -1 ) {#ifdef HAVE_ERRNO_H msg_Warn( p_this, "cannot query socket (SO_RCVBUF: %s)", strerror(errno) );#else msg_Warn( p_this, "cannot query socket (SO_RCVBUF)" );#endif } else if( i_opt < 0x80000 ) { msg_Dbg( p_this, "socket buffer size is 0x%x instead of 0x%x", i_opt, 0x80000 ); } /* Build the local socket */#if defined( WIN32 ) && !defined( UNDER_CE ) /* Under Win32 and for multicasting, we bind to INADDR_ANY, * so let's call BuildAddr with "" instead of psz_bind_addr */ if( BuildAddr( &sock, IN_MULTICAST( ntohl( inet_addr(psz_bind_addr) ) ) ? "" : psz_bind_addr, i_bind_port ) == -1 )#else if( BuildAddr( &sock, psz_bind_addr, i_bind_port ) == -1 )#endif { msg_Dbg( p_this, "could not build local address" ); close( i_handle ); return( -1 ); } /* Bind it */ if( bind( i_handle, (struct sockaddr *)&sock, sizeof( sock ) ) < 0 ) {#ifdef HAVE_ERRNO_H msg_Warn( p_this, "cannot bind socket (%s)", strerror(errno) );#else msg_Warn( p_this, "cannot bind socket" );#endif close( i_handle ); return( -1 ); }#if defined( WIN32 ) && !defined( UNDER_CE ) /* Restore the sock struct so we can spare a few #ifdef WIN32 later on */ if( IN_MULTICAST( ntohl( inet_addr(psz_bind_addr) ) ) ) { if ( BuildAddr( &sock, psz_bind_addr, i_bind_port ) == -1 ) { msg_Dbg( p_this, "could not build local address" ); close( i_handle ); return( -1 ); } }#endif /* Allow broadcast reception if we bound on INADDR_ANY */ if( !*psz_bind_addr ) { i_opt = 1;#if defined( SYS_BEOS ) if( setsockopt( i_handle, SOL_SOCKET, SO_NONBLOCK,#else if( setsockopt( i_handle, SOL_SOCKET, SO_BROADCAST,#endif (void*) &i_opt, sizeof( i_opt ) ) == -1 ) {#ifdef HAVE_ERRNO_H msg_Warn( p_this, "cannot configure socket (SO_BROADCAST: %s)", strerror(errno) );#else msg_Warn( p_this, "cannot configure socket (SO_BROADCAST)" );#endif } }#if !defined( UNDER_CE ) && !defined( SYS_BEOS ) /* Join the multicast group if the socket is a multicast address */ if( IN_MULTICAST( ntohl(sock.sin_addr.s_addr) ) ) { struct ip_mreq imr; /* Determine interface to be used for multicast */ char * psz_if_addr = config_GetPsz( p_this, "iface-addr" ); imr.imr_multiaddr.s_addr = sock.sin_addr.s_addr; if( psz_if_addr != NULL && *psz_if_addr && inet_addr(psz_if_addr) != INADDR_NONE ) { imr.imr_interface.s_addr = inet_addr(psz_if_addr); } else { imr.imr_interface.s_addr = INADDR_ANY; } if( psz_if_addr != NULL ) free( psz_if_addr ); /* Join Multicast group */ if( setsockopt( i_handle, IPPROTO_IP, IP_ADD_MEMBERSHIP, (char*)&imr, sizeof(struct ip_mreq) ) == -1 ) {#ifdef HAVE_ERRNO_H msg_Err( p_this, "failed to join IP multicast group (%s)", strerror(errno) );#else msg_Err( p_this, "failed to join IP multicast group" );#endif close( i_handle ); return( -1 ); } }#endif /* UNDER_CE, SYS_BEOS */ if( *psz_server_addr ) { /* Build socket for remote connection */ if ( BuildAddr( &sock, psz_server_addr, i_server_port ) == -1 ) { msg_Warn( p_this, "cannot build remote address" ); close( i_handle ); return( -1 ); } /* Connect the socket */ if( connect( i_handle, (struct sockaddr *) &sock, sizeof( sock ) ) == (-1) ) {#ifdef HAVE_ERRNO_H msg_Warn( p_this, "cannot connect socket (%s)", strerror(errno) );#else msg_Warn( p_this, "cannot connect socket" );#endif close( i_handle ); return( -1 ); }#if !defined( UNDER_CE ) && !defined( SYS_BEOS ) if( IN_MULTICAST( ntohl(inet_addr(psz_server_addr) ) ) ) { /* set the time-to-live */ int ttl = p_socket->i_ttl; if( ttl < 1 ) { ttl = config_GetInt( p_this, "ttl" ); } if( ttl < 1 ) ttl = 1; if( setsockopt( i_handle, IPPROTO_IP, IP_MULTICAST_TTL, (void *) &ttl, sizeof( ttl ) ) < 0 ) {#ifdef HAVE_ERRNO_H msg_Err( p_this, "failed to set ttl (%s)", strerror(errno) );#else msg_Err( p_this, "failed to set ttl" );#endif close( i_handle ); return( -1 ); } }#endif /* UNDER_CE, SYS_BEOS */ } p_socket->i_handle = i_handle; p_socket->i_mtu = config_GetInt( p_this, "mtu" ); return( 0 );}/***************************************************************************** * OpenTCP: open a TCP socket ***************************************************************************** * psz_server_addr, i_server_port : address and port used for the connect() * system call. If i_server_port == 0, 80 is used. * Other parameters are ignored. * This function returns -1 in case of error. *****************************************************************************/static int OpenTCP( vlc_object_t * p_this, network_socket_t * p_socket ){ char * psz_server_addr = p_socket->psz_server_addr; int i_server_port = p_socket->i_server_port; int i_handle; struct sockaddr_in sock; if( i_server_port == 0 ) { i_server_port = 80; } /* Open a SOCK_STREAM (TCP) socket, in the AF_INET domain, automatic (0) * protocol */ if( (i_handle = socket( AF_INET, SOCK_STREAM, 0 )) == -1 ) {#ifdef HAVE_ERRNO_H msg_Warn( p_this, "cannot create socket (%s)", strerror(errno) );#else msg_Warn( p_this, "cannot create socket" );#endif return( -1 ); } /* Build remote address */ if ( BuildAddr( &sock, psz_server_addr, i_server_port ) == -1 ) { msg_Dbg( p_this, "could not build local address" ); close( i_handle ); return( -1 ); } /* Connect the socket */ if( connect( i_handle, (struct sockaddr *) &sock, sizeof( sock ) ) == (-1) ) {#ifdef HAVE_ERRNO_H msg_Warn( p_this, "cannot connect socket (%s)", strerror(errno) );#else msg_Warn( p_this, "cannot connect socket" );#endif close( i_handle ); return( -1 ); } p_socket->i_handle = i_handle; p_socket->i_mtu = 0; /* There is no MTU notion in TCP */ return( 0 );}/***************************************************************************** * NetOpen: wrapper around OpenUDP and OpenTCP *****************************************************************************/static int NetOpen( vlc_object_t * p_this ){ network_socket_t * p_socket = p_this->p_private; if( p_socket->i_type == NETWORK_UDP ) { return OpenUDP( p_this, p_socket ); } else { return OpenTCP( p_this, p_socket ); }}
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