195 lines
5.0 KiB
C++
195 lines
5.0 KiB
C++
#include <sys/types.h>
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#include <sys/socket.h>
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#include <netinet/in.h>
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#include <arpa/inet.h>
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#include <assert.h>
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#include "dos_assert.hpp"
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#include "network.hpp"
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#include "crypto.hpp"
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using namespace std;
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using namespace Network;
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using namespace Crypto;
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/* Read in packet from coded string */
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Packet::Packet( string coded_packet, Session *session )
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: seq( -1 ),
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direction( TO_SERVER ),
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payload()
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{
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Message message = session->decrypt( coded_packet );
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direction = (message.nonce.val() & 8000000000000000) ? TO_CLIENT : TO_SERVER;
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seq = message.nonce.val() & 0x7FFFFFFFFFFFFFFF;
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payload = message.text;
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}
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/* Output coded string from packet */
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string Packet::tostring( Session *session )
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{
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uint64_t direction_seq = (uint64_t( direction == TO_CLIENT ) << 63) | (seq & 0x7FFFFFFFFFFFFFFF);
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return session->encrypt( Message( Nonce( direction_seq ), payload ) );
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}
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Packet Connection::new_packet( string &s_payload )
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{
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return Packet( next_seq++, direction, s_payload );
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}
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void Connection::setup( void )
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{
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/* create socket */
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sock = socket( AF_INET, SOCK_DGRAM, 0 );
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if ( sock < 0 ) {
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throw NetworkException( "socket", errno );
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}
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/* Bind to free local port.
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This usage does not seem to be endorsed by POSIX. */
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struct sockaddr_in local_addr;
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local_addr.sin_family = AF_INET;
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local_addr.sin_port = htons( 0 );
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local_addr.sin_addr.s_addr = INADDR_ANY;
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if ( bind( sock, (sockaddr *)&local_addr, sizeof( local_addr ) ) < 0 ) {
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throw NetworkException( "bind", errno );
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}
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/* Enable path MTU discovery */
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char flag = IP_PMTUDISC_DO;
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socklen_t optlen = sizeof( flag );
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if ( setsockopt( sock, IPPROTO_IP, IP_MTU_DISCOVER, &flag, optlen ) < 0 ) {
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throw NetworkException( "setsockopt", errno );
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}
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}
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Connection::Connection() /* server */
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: sock( -1 ),
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remote_addr(),
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server( true ),
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attached( false ),
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MTU( RECEIVE_MTU ),
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key(),
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session( key ),
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direction( TO_CLIENT ),
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next_seq( 0 )
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{
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setup();
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}
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Connection::Connection( const char *key_str, const char *ip, int port ) /* client */
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: sock( -1 ),
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remote_addr(),
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server( false ),
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attached( false ),
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MTU( RECEIVE_MTU ),
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key( key_str ),
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session( key ),
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direction( TO_SERVER ),
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next_seq( 0 )
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{
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setup();
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/* associate socket with remote host and port */
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remote_addr.sin_family = AF_INET;
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remote_addr.sin_port = htons( port );
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if ( !inet_aton( ip, &remote_addr.sin_addr ) ) {
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int saved_errno = errno;
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char buffer[ 2048 ];
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snprintf( buffer, 2048, "Bad IP address (%s)", ip );
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throw NetworkException( buffer, saved_errno );
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}
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if ( connect( sock, (sockaddr *)&remote_addr, sizeof( remote_addr ) ) < 0 ) {
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throw NetworkException( "connect", errno );
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}
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attached = true;
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}
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void Connection::update_MTU( void )
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{
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socklen_t optlen = sizeof( MTU );
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if ( getsockopt( sock, IPPROTO_IP, IP_MTU, &MTU, &optlen ) < 0 ) {
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throw NetworkException( "getsockopt", errno );
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}
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if ( optlen != sizeof( MTU ) ) {
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throw NetworkException( "Error getting path MTU", errno );
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}
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fprintf( stderr, "Path MTU: %d\n", MTU );
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}
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void Connection::send( string &s )
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{
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assert( attached );
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string p = new_packet( s ).tostring( &session );
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ssize_t bytes_sent = sendto( sock, p.data(), p.size(), 0,
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(sockaddr *)&remote_addr, sizeof( remote_addr ) );
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if ( (bytes_sent < 0) && (errno == EMSGSIZE) ) {
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update_MTU();
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throw MTUException( MTU );
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} else if ( bytes_sent == static_cast<int>( p.size() ) ) {
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return;
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} else {
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throw NetworkException( "sendto", errno );
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}
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}
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string Connection::recv( void )
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{
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struct sockaddr_in packet_remote_addr;
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char buf[ RECEIVE_MTU ];
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socklen_t addrlen = sizeof( packet_remote_addr );
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ssize_t received_len = recvfrom( sock, buf, RECEIVE_MTU, 0, (sockaddr *)&packet_remote_addr, &addrlen );
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if ( received_len < 0 ) {
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throw NetworkException( "recvfrom", errno );
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}
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if ( received_len > RECEIVE_MTU ) {
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char buffer[ 2048 ];
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snprintf( buffer, 2048, "Received oversize datagram (size %d) and limit is %d\n",
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static_cast<int>( received_len ), RECEIVE_MTU );
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throw NetworkException( buffer, errno );
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}
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Packet p( string( buf, received_len ), &session );
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dos_assert( p.direction == (server ? TO_SERVER : TO_CLIENT) ); /* prevent malicious playback to sender */
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/* server auto-adjusts to client */
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if ( server ) {
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attached = true;
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if ( (remote_addr.sin_addr.s_addr != packet_remote_addr.sin_addr.s_addr)
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|| (remote_addr.sin_port != packet_remote_addr.sin_port) ) {
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remote_addr = packet_remote_addr;
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fprintf( stderr, "Server now attached to client at %s:%d\n",
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inet_ntoa( remote_addr.sin_addr ),
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ntohs( remote_addr.sin_port ) );
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}
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}
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return p.payload;
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}
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int Connection::port( void )
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{
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struct sockaddr_in local_addr;
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socklen_t addrlen = sizeof( local_addr );
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if ( getsockname( sock, (sockaddr *)&local_addr, &addrlen ) < 0 ) {
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throw NetworkException( "getsockname", errno );
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}
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return ntohs( local_addr.sin_port );
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}
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