520 lines
12 KiB
C
520 lines
12 KiB
C
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/*
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* This file Copyright (C) 2007 Charles Kerr <charles@rebelbase.com>
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*
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* This file is licensed by the GPL version 2. Works owned by the
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* Transmission project are granted a special exemption to clause 2(b)
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* so that the bulk of its code can remain under the MIT license.
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* This exemption does not extend to derived works not owned by
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* the Transmission project.
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*
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* $Id$
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*/
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#include <assert.h>
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#include <string.h>
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#include <stdio.h>
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#include <unistd.h>
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#include <arpa/inet.h>
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#include <event.h>
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#include "transmission.h"
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#include "crypto.h"
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#include "net.h"
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#include "peer-io.h"
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#include "ratecontrol.h"
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#include "trevent.h"
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#include "utils.h"
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/**
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***
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**/
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struct tr_peerIo
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{
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struct tr_handle * handle;
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struct in_addr in_addr;
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int port;
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int socket;
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int extensions;
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int encryptionMode;
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struct bufferevent * bufev;
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uint8_t peerId[20];
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unsigned int isEncrypted : 1;
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unsigned int isIncoming : 1;
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unsigned int peerIdIsSet : 1;
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tr_ratecontrol * rateToPeer;
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tr_ratecontrol * rateToClient;
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tr_can_read_cb canRead;
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tr_did_write_cb didWrite;
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tr_net_error_cb gotError;
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void * userData;
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tr_crypto * crypto;
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};
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/**
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***
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**/
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static void
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didWriteWrapper( struct bufferevent * e, void * userData )
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{
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tr_peerIo * c = (tr_peerIo *) userData;
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if( c->didWrite != NULL )
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(*c->didWrite)( e, c->userData );
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}
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static void
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canReadWrapper( struct bufferevent * e, void * userData )
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{
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tr_peerIo * c = (tr_peerIo *) userData;
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if( c->canRead == NULL )
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return;
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for( ;; ) {
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const int ret = (*c->canRead)( e, c->userData );
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switch( ret ) {
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case READ_AGAIN: if( EVBUFFER_LENGTH( e->input ) ) continue; /* note fall-through */
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case READ_MORE: tr_peerIoSetIOMode( c, EV_READ, 0 ); return; break;
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case READ_DONE: return;
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}
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}
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}
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static void
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gotErrorWrapper( struct bufferevent * e, short what, void * userData )
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{
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tr_peerIo * c = (tr_peerIo *) userData;
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if( c->gotError != NULL )
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(*c->gotError)( e, what, c->userData );
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}
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/**
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***
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**/
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//static int total_io = 0;
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static tr_peerIo*
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tr_peerIoNew( struct tr_handle * handle,
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struct in_addr * in_addr,
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const uint8_t * torrentHash,
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int isIncoming,
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int socket )
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{
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tr_peerIo * c;
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c = tr_new0( tr_peerIo, 1 );
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c->crypto = tr_cryptoNew( torrentHash, isIncoming );
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c->handle = handle;
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c->in_addr = *in_addr;
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c->socket = socket;
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c->rateToPeer = tr_rcInit( );
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c->rateToClient = tr_rcInit( );
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c->isIncoming = isIncoming ? 1 : 0;
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c->bufev = bufferevent_new( c->socket,
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canReadWrapper,
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didWriteWrapper,
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gotErrorWrapper,
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c );
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bufferevent_enable( c->bufev, EV_READ|EV_WRITE );
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return c;
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}
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tr_peerIo*
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tr_peerIoNewIncoming( struct tr_handle * handle,
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struct in_addr * in_addr,
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int socket )
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{
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tr_peerIo * c;
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assert( handle != NULL );
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assert( in_addr != NULL );
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assert( socket >= 0 );
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c = tr_peerIoNew( handle, in_addr, NULL, 1, socket );
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c->port = -1;
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return c;
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}
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tr_peerIo*
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tr_peerIoNewOutgoing( struct tr_handle * handle,
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struct in_addr * in_addr,
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int port,
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const uint8_t * torrentHash )
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{
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tr_peerIo * c;
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assert( handle != NULL );
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assert( in_addr != NULL );
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assert( port >= 0 );
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assert( torrentHash != NULL );
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c = tr_peerIoNew( handle, in_addr, torrentHash, 0,
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tr_netOpenTCP( in_addr, port, 0 ) );
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c->port = port;
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return c;
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}
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void
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tr_peerIoFree( tr_peerIo * c )
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{
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if( c != NULL )
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{
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c->canRead = NULL;
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c->didWrite = NULL;
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c->gotError = NULL;
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tr_bufferevent_free( c->handle, c->bufev );
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tr_netClose( c->socket );
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tr_rcClose( c->rateToClient );
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tr_rcClose( c->rateToPeer );
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tr_cryptoFree( c->crypto );
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tr_free( c );
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}
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}
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tr_handle*
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tr_peerIoGetHandle( tr_peerIo * io )
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{
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assert( io != NULL );
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assert( io->handle != NULL );
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return io->handle;
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}
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const struct in_addr*
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tr_peerIoGetAddress( const tr_peerIo * io, uint16_t * port )
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{
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assert( io != NULL );
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if( port != NULL )
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*port = io->port;
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return &io->in_addr;
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}
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const char*
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tr_peerIoGetAddrStr( const tr_peerIo * io )
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{
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static char buf[512];
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assert( io != NULL );
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snprintf( buf, sizeof(buf), "%s:%u", inet_ntoa( io->in_addr ), (unsigned int)io->port );
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return buf;
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}
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void
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tr_peerIoSetIOFuncs( tr_peerIo * io,
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tr_can_read_cb readcb,
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tr_did_write_cb writecb,
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tr_net_error_cb errcb,
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void * userData )
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{
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io->canRead = readcb;
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io->didWrite = writecb;
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io->gotError = errcb;
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io->userData = userData;
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if( EVBUFFER_LENGTH( io->bufev->input ) )
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canReadWrapper( io->bufev, io );
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}
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void
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tr_peerIoSetIOMode( tr_peerIo * c, short enable, short disable )
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{
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tr_setBufferEventMode( c->handle, c->bufev, enable, disable );
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}
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int
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tr_peerIoIsIncoming( const tr_peerIo * c )
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{
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return c->isIncoming ? 1 : 0;
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}
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int
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tr_peerIoReconnect( tr_peerIo * io )
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{
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assert( !tr_peerIoIsIncoming( io ) );
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if( io->socket >= 0 )
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tr_netClose( io->socket );
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io->socket = tr_netOpenTCP( &io->in_addr, io->port, 0 );
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if( io->socket >= 0 )
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{
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bufferevent_free( io->bufev );
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io->bufev = bufferevent_new( io->socket,
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canReadWrapper,
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didWriteWrapper,
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gotErrorWrapper,
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io );
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bufferevent_enable( io->bufev, EV_READ|EV_WRITE );
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return 0;
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}
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return -1;
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}
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/**
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***
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**/
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void
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tr_peerIoSetTorrentHash( tr_peerIo * io,
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const uint8_t * hash )
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{
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assert( io != NULL );
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tr_cryptoSetTorrentHash( io->crypto, hash );
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}
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const uint8_t*
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tr_peerIoGetTorrentHash( tr_peerIo * io )
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{
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assert( io != NULL );
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assert( io->crypto != NULL );
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return tr_cryptoGetTorrentHash( io->crypto );
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}
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int
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tr_peerIoHasTorrentHash( const tr_peerIo * io )
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{
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assert( io != NULL );
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assert( io->crypto != NULL );
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return tr_cryptoHasTorrentHash( io->crypto );
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}
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/**
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***
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**/
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void
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tr_peerIoSetPeersId( tr_peerIo * io,
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const uint8_t * peer_id )
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{
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assert( io != NULL );
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if(( io->peerIdIsSet = peer_id != NULL ))
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memcpy( io->peerId, peer_id, 20 );
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else
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memset( io->peerId, 0, 20 );
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}
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const uint8_t*
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tr_peerIoGetPeersId( const tr_peerIo * io )
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{
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assert( io != NULL );
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assert( io->peerIdIsSet );
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return io->peerId;
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}
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/**
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***
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**/
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void
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tr_peerIoSetExtension( tr_peerIo * io,
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int extensions )
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{
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assert( io != NULL );
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assert( ( extensions == LT_EXTENSIONS_NONE )
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|| ( extensions == LT_EXTENSIONS_LTEP )
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|| ( extensions == LT_EXTENSIONS_AZMP ) );
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io->extensions = extensions;
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}
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int
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tr_peerIoGetExtension( const tr_peerIo * io )
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{
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assert( io != NULL );
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return io->extensions;
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}
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/**
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***
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**/
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size_t
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tr_peerIoWriteBytesWaiting( const tr_peerIo * io )
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{
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return EVBUFFER_LENGTH( EVBUFFER_OUTPUT( io->bufev ) );
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}
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void
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tr_peerIoWrite( tr_peerIo * io,
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const void * writeme,
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int writeme_len )
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{
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tr_bufferevent_write( io->handle, io->bufev, writeme, writeme_len );
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tr_rcTransferred( io->rateToPeer, writeme_len );
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}
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void
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tr_peerIoWriteBuf( tr_peerIo * io,
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struct evbuffer * buf )
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{
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tr_peerIoWrite( io, EVBUFFER_DATA(buf), EVBUFFER_LENGTH(buf) );
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evbuffer_drain( buf, ~0 );
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}
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/**
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***
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**/
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tr_crypto*
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tr_peerIoGetCrypto( tr_peerIo * c )
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{
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return c->crypto;
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}
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void
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tr_peerIoSetEncryption( tr_peerIo * io,
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int encryptionMode )
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{
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assert( io != NULL );
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assert( encryptionMode==PEER_ENCRYPTION_NONE || encryptionMode==PEER_ENCRYPTION_RC4 );
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io->encryptionMode = encryptionMode;
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}
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int
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tr_peerIoIsEncrypted( const tr_peerIo * io )
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{
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return io!=NULL && io->encryptionMode==PEER_ENCRYPTION_RC4;
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}
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void
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tr_peerIoWriteBytes( tr_peerIo * io,
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struct evbuffer * outbuf,
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const void * bytes,
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int byteCount )
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{
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uint8_t * tmp;
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switch( io->encryptionMode )
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{
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case PEER_ENCRYPTION_NONE:
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/*fprintf( stderr, "writing %d plaintext bytes to outbuf...\n", byteCount );*/
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evbuffer_add( outbuf, bytes, byteCount );
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break;
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case PEER_ENCRYPTION_RC4:
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/*fprintf( stderr, "encrypting and writing %d bytes to outbuf...\n", byteCount );*/
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tmp = tr_new( uint8_t, byteCount );
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tr_cryptoEncrypt( io->crypto, byteCount, bytes, tmp );
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tr_bufferevent_write( io->handle, io->bufev, tmp, byteCount );
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tr_free( tmp );
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break;
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default:
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assert( 0 );
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}
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}
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void
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tr_peerIoWriteUint16( tr_peerIo * io,
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struct evbuffer * outbuf,
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uint16_t writeme )
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{
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uint16_t tmp = htons( writeme );
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tr_peerIoWriteBytes( io, outbuf, &tmp, sizeof(uint16_t) );
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}
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void
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tr_peerIoWriteUint32( tr_peerIo * io,
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struct evbuffer * outbuf,
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uint32_t writeme )
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{
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uint32_t tmp = htonl( writeme );
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tr_peerIoWriteBytes( io, outbuf, &tmp, sizeof(uint32_t) );
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}
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void
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tr_peerIoReadBytes( tr_peerIo * io,
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struct evbuffer * inbuf,
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void * bytes,
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int byteCount )
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{
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assert( (int)EVBUFFER_LENGTH( inbuf ) >= byteCount );
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switch( io->encryptionMode )
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{
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case PEER_ENCRYPTION_NONE:
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/*fprintf( stderr, "reading %d plaintext bytes from inbuf...\n", byteCount );*/
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evbuffer_remove( inbuf, bytes, byteCount );
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tr_rcTransferred( io->rateToClient, byteCount );
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break;
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case PEER_ENCRYPTION_RC4:
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/*fprintf( stderr, "reading AND DECRYPTING %d bytes from inbuf...\n", byteCount );*/
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evbuffer_remove( inbuf, bytes, byteCount );
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tr_cryptoDecrypt( io->crypto, byteCount, bytes, bytes );
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tr_rcTransferred( io->rateToClient, byteCount );
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break;
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default:
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assert( 0 );
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}
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}
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void
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tr_peerIoReadUint16( tr_peerIo * io,
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struct evbuffer * inbuf,
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uint16_t * setme )
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{
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uint16_t tmp;
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tr_peerIoReadBytes( io, inbuf, &tmp, sizeof(uint16_t) );
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*setme = ntohs( tmp );
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}
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void
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tr_peerIoReadUint32( tr_peerIo * io,
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struct evbuffer * inbuf,
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uint32_t * setme )
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{
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|
uint32_t tmp;
|
||
|
tr_peerIoReadBytes( io, inbuf, &tmp, sizeof(uint32_t) );
|
||
|
*setme = ntohl( tmp );
|
||
|
}
|
||
|
|
||
|
void
|
||
|
tr_peerIoDrain( tr_peerIo * io,
|
||
|
struct evbuffer * inbuf,
|
||
|
int byteCount )
|
||
|
{
|
||
|
uint8_t * tmp = tr_new( uint8_t, byteCount );
|
||
|
tr_peerIoReadBytes( io, inbuf, tmp, byteCount );
|
||
|
tr_free( tmp );
|
||
|
}
|
||
|
|
||
|
/**
|
||
|
***
|
||
|
**/
|
||
|
|
||
|
float
|
||
|
tr_peerIoGetRateToClient( const tr_peerIo * io )
|
||
|
{
|
||
|
return io==NULL ? 0.0f : tr_rcRate( io->rateToClient );
|
||
|
|
||
|
}
|
||
|
|
||
|
float
|
||
|
tr_peerIoGetRateToPeer( const tr_peerIo * io )
|
||
|
{
|
||
|
return io==NULL ? 0.0f : tr_rcRate( io->rateToPeer );
|
||
|
}
|
||
|
|