445 lines
12 KiB
C
445 lines
12 KiB
C
/*
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* This file Copyright (C) 2008-2010 Mnemosyne LLC
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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 <sys/select.h>
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#include <curl/curl.h>
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#include <event.h>
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#include "transmission.h"
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#include "list.h"
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#include "net.h" /* tr_address */
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#include "platform.h" /* mutex */
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#include "session.h"
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#include "trevent.h" /* tr_runInEventThread() */
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#include "utils.h"
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#include "version.h" /* User-Agent */
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#include "web.h"
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#if LIBCURL_VERSION_NUM >= 0x070F06 /* CURLOPT_SOCKOPT* was added in 7.15.6 */
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#define USE_LIBCURL_SOCKOPT
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#endif
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enum
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{
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THREADFUNC_MAX_SLEEP_MSEC = 1000,
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};
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#if 0
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#define dbgmsg(...) \
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do { \
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fprintf( stderr, __VA_ARGS__ ); \
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fprintf( stderr, "\n" ); \
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} while( 0 )
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#else
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#define dbgmsg( ... ) \
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do { \
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if( tr_deepLoggingIsActive( ) ) \
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tr_deepLog( __FILE__, __LINE__, "web", __VA_ARGS__ ); \
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} while( 0 )
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#endif
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/***
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****
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***/
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struct tr_web
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{
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int close_mode;
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tr_list * tasks;
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tr_lock * taskLock;
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};
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/***
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****
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***/
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struct tr_web_task
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{
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long code;
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struct evbuffer * response;
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char * url;
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char * range;
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tr_session * session;
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tr_web_done_func * done_func;
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void * done_func_user_data;
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};
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static void
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task_free( struct tr_web_task * task )
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{
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evbuffer_free( task->response );
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tr_free( task->range );
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tr_free( task->url );
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tr_free( task );
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}
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/***
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****
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***/
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static size_t
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writeFunc( void * ptr, size_t size, size_t nmemb, void * vtask )
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{
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const size_t byteCount = size * nmemb;
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struct tr_web_task * task = vtask;
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evbuffer_add( task->response, ptr, byteCount );
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dbgmsg( "wrote %zu bytes to task %p's buffer", byteCount, task );
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return byteCount;
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}
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#ifdef USE_LIBCURL_SOCKOPT
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static int
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sockoptfunction( void * vtask, curl_socket_t fd, curlsocktype purpose UNUSED )
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{
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struct tr_web_task * task = vtask;
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const tr_bool isScrape = strstr( task->url, "scrape" ) != NULL;
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const tr_bool isAnnounce = strstr( task->url, "announce" ) != NULL;
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/* announce and scrape requests have tiny payloads. */
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if( isScrape || isAnnounce )
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{
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const int sndbuf = 1024;
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const int rcvbuf = isScrape ? 2048 : 3072;
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setsockopt( fd, SOL_SOCKET, SO_SNDBUF, &sndbuf, sizeof(sndbuf) );
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setsockopt( fd, SOL_SOCKET, SO_RCVBUF, &rcvbuf, sizeof(rcvbuf) );
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}
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/* return nonzero if this function encountered an error */
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return 0;
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}
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#endif
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static int
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getCurlProxyType( tr_proxy_type t )
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{
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if( t == TR_PROXY_SOCKS4 ) return CURLPROXY_SOCKS4;
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if( t == TR_PROXY_SOCKS5 ) return CURLPROXY_SOCKS5;
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return CURLPROXY_HTTP;
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}
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static long
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getTimeoutFromURL( const char * url )
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{
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if( strstr( url, "scrape" ) != NULL ) return 30L;
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if( strstr( url, "announce" ) != NULL ) return 90L;
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return 240L;
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}
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static CURL *
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createEasy( tr_session * s, struct tr_web_task * task )
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{
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const tr_address * addr;
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CURL * e = curl_easy_init( );
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const long verbose = getenv( "TR_CURL_VERBOSE" ) != NULL;
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if( !task->range && s->isProxyEnabled ) {
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const long proxyType = getCurlProxyType( s->proxyType );
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curl_easy_setopt( e, CURLOPT_PROXY, s->proxy );
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curl_easy_setopt( e, CURLOPT_PROXYAUTH, CURLAUTH_ANY );
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curl_easy_setopt( e, CURLOPT_PROXYPORT, s->proxyPort );
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curl_easy_setopt( e, CURLOPT_PROXYTYPE, proxyType );
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}
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if( !task->range && s->isProxyAuthEnabled ) {
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char * str = tr_strdup_printf( "%s:%s", s->proxyUsername,
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s->proxyPassword );
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curl_easy_setopt( e, CURLOPT_PROXYUSERPWD, str );
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tr_free( str );
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}
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curl_easy_setopt( e, CURLOPT_AUTOREFERER, 1L );
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curl_easy_setopt( e, CURLOPT_ENCODING, "gzip;q=1.0, deflate, identity" );
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curl_easy_setopt( e, CURLOPT_FOLLOWLOCATION, 1L );
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curl_easy_setopt( e, CURLOPT_MAXREDIRS, -1L );
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curl_easy_setopt( e, CURLOPT_NOSIGNAL, 1L );
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curl_easy_setopt( e, CURLOPT_PRIVATE, task );
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#ifdef USE_LIBCURL_SOCKOPT
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curl_easy_setopt( e, CURLOPT_SOCKOPTFUNCTION, sockoptfunction );
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curl_easy_setopt( e, CURLOPT_SOCKOPTDATA, task );
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#endif
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curl_easy_setopt( e, CURLOPT_SSL_VERIFYHOST, 0L );
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curl_easy_setopt( e, CURLOPT_SSL_VERIFYPEER, 0L );
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curl_easy_setopt( e, CURLOPT_TIMEOUT, getTimeoutFromURL( task->url ) );
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curl_easy_setopt( e, CURLOPT_URL, task->url );
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curl_easy_setopt( e, CURLOPT_USERAGENT, TR_NAME "/" SHORT_VERSION_STRING );
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curl_easy_setopt( e, CURLOPT_VERBOSE, verbose );
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curl_easy_setopt( e, CURLOPT_WRITEDATA, task );
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curl_easy_setopt( e, CURLOPT_WRITEFUNCTION, writeFunc );
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if(( addr = tr_sessionGetPublicAddress( s, TR_AF_INET )))
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curl_easy_setopt( e, CURLOPT_INTERFACE, tr_ntop_non_ts( addr ) );
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if( task->range )
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curl_easy_setopt( e, CURLOPT_RANGE, task->range );
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return e;
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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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task_finish_func( void * vtask )
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{
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struct tr_web_task * task = vtask;
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dbgmsg( "finished web task %p; got %ld", task, task->code );
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if( task->done_func != NULL )
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task->done_func( task->session,
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task->code,
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EVBUFFER_DATA( task->response ),
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EVBUFFER_LENGTH( task->response ),
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task->done_func_user_data );
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task_free( task );
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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_webRun( tr_session * session,
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const char * url,
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const char * range,
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tr_web_done_func done_func,
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void * done_func_user_data )
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{
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struct tr_web * web = session->web;
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if( web != NULL )
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{
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struct tr_web_task * task = tr_new0( struct tr_web_task, 1 );
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task->session = session;
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task->url = tr_strdup( url );
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task->range = tr_strdup( range );
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task->done_func = done_func;
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task->done_func_user_data = done_func_user_data;
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task->response = evbuffer_new( );
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tr_lockLock( web->taskLock );
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tr_list_append( &web->tasks, task );
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tr_lockUnlock( web->taskLock );
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}
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}
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static void
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tr_webThreadFunc( void * vsession )
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{
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int unused;
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CURLM * multi;
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struct tr_web * web;
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int taskCount = 0;
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tr_session * session = vsession;
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/* try to enable ssl for https support; but if that fails,
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* try a plain vanilla init */
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if( curl_global_init( CURL_GLOBAL_SSL ) )
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curl_global_init( 0 );
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web = tr_new0( struct tr_web, 1 );
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web->close_mode = ~0;
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web->taskLock = tr_lockNew( );
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web->tasks = NULL;
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multi = curl_multi_init( );
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session->web = web;
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for( ;; )
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{
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long msec;
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CURLMsg * msg;
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CURLMcode mcode;
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struct tr_web_task * task;
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if( web->close_mode == TR_WEB_CLOSE_NOW )
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break;
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if( ( web->close_mode == TR_WEB_CLOSE_WHEN_IDLE ) && !taskCount )
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break;
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/* add tasks from the queue */
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tr_lockLock( web->taskLock );
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while(( task = tr_list_pop_front( &web->tasks )))
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{
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curl_multi_add_handle( multi, createEasy( session, task ));
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/*fprintf( stderr, "adding a task.. taskCount is now %d\n", taskCount );*/
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++taskCount;
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}
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tr_lockUnlock( web->taskLock );
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/* maybe wait a little while before calling curl_multi_perform() */
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msec = 0;
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curl_multi_timeout( multi, &msec );
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if( msec < 0 )
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msec = THREADFUNC_MAX_SLEEP_MSEC;
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if( msec > 0 )
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{
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int usec;
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int max_fd;
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struct timeval t;
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fd_set r_fd_set, w_fd_set, c_fd_set;
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max_fd = 0;
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FD_ZERO( &r_fd_set );
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FD_ZERO( &w_fd_set );
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FD_ZERO( &c_fd_set );
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curl_multi_fdset( multi, &r_fd_set, &w_fd_set, &c_fd_set, &max_fd );
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if( msec > THREADFUNC_MAX_SLEEP_MSEC )
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msec = THREADFUNC_MAX_SLEEP_MSEC;
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usec = msec * 1000;
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t.tv_sec = usec / 1000000;
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t.tv_usec = usec % 1000000;
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select( max_fd+1, &r_fd_set, &w_fd_set, &c_fd_set, &t );
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}
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/* call curl_multi_perform() */
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do {
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mcode = curl_multi_perform( multi, &unused );
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} while( mcode == CURLM_CALL_MULTI_PERFORM );
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/* pump completed tasks from the multi */
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while(( msg = curl_multi_info_read( multi, &unused )))
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{
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if(( msg->msg == CURLMSG_DONE ) && ( msg->easy_handle != NULL ))
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{
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struct tr_web_task * task;
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CURL * e = msg->easy_handle;
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curl_easy_getinfo( e, CURLINFO_PRIVATE, (void*)&task );
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curl_easy_getinfo( e, CURLINFO_RESPONSE_CODE, &task->code );
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curl_multi_remove_handle( multi, e );
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curl_easy_cleanup( e );
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/*fprintf( stderr, "removing a completed task.. taskCount is now %d (response code: %d, response len: %d)\n", taskCount, (int)task->code, (int)EVBUFFER_LENGTH(task->response) );*/
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tr_runInEventThread( task->session, task_finish_func, task );
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--taskCount;
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}
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}
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}
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/* cleanup */
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curl_multi_cleanup( multi );
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tr_lockFree( web->taskLock );
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tr_free( web );
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session->web = NULL;
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}
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void
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tr_webInit( tr_session * session )
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{
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tr_threadNew( tr_webThreadFunc, session );
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}
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void
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tr_webClose( tr_session * session, tr_web_close_mode close_mode )
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{
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if( session->web != NULL )
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{
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session->web->close_mode = close_mode;
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if( close_mode == TR_WEB_CLOSE_NOW )
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while( session->web != NULL )
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tr_wait_msec( 100 );
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}
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}
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/*****
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******
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******
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*****/
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const char *
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tr_webGetResponseStr( long code )
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{
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switch( code )
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{
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case 0: return "No Response";
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case 101: return "Switching Protocols";
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case 200: return "OK";
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case 201: return "Created";
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case 202: return "Accepted";
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case 203: return "Non-Authoritative Information";
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case 204: return "No Content";
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case 205: return "Reset Content";
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case 206: return "Partial Content";
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case 300: return "Multiple Choices";
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case 301: return "Moved Permanently";
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case 302: return "Found";
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case 303: return "See Other";
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case 304: return "Not Modified";
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case 305: return "Use Proxy";
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case 306: return "(Unused)";
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case 307: return "Temporary Redirect";
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case 400: return "Bad Request";
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case 401: return "Unauthorized";
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case 402: return "Payment Required";
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case 403: return "Forbidden";
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case 404: return "Not Found";
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case 405: return "Method Not Allowed";
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case 406: return "Not Acceptable";
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case 407: return "Proxy Authentication Required";
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case 408: return "Request Timeout";
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case 409: return "Conflict";
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case 410: return "Gone";
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case 411: return "Length Required";
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case 412: return "Precondition Failed";
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case 413: return "Request Entity Too Large";
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case 414: return "Request-URI Too Long";
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case 415: return "Unsupported Media Type";
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case 416: return "Requested Range Not Satisfiable";
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case 417: return "Expectation Failed";
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case 500: return "Internal Server Error";
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case 501: return "Not Implemented";
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case 502: return "Bad Gateway";
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case 503: return "Service Unavailable";
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case 504: return "Gateway Timeout";
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case 505: return "HTTP Version Not Supported";
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default: return "Unknown Error";
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}
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}
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void
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tr_http_escape( struct evbuffer * out,
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const char * str, int len, tr_bool escape_slashes )
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{
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const char * end;
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if( ( len < 0 ) && ( str != NULL ) )
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len = strlen( str );
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for( end=str+len; str!=end; ++str ) {
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if( ( *str == ',' )
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|| ( *str == '-' )
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|| ( *str == '.' )
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|| ( ( '0' <= *str ) && ( *str <= '9' ) )
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|| ( ( 'A' <= *str ) && ( *str <= 'Z' ) )
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|| ( ( 'a' <= *str ) && ( *str <= 'z' ) )
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|| ( ( *str == '/' ) && ( !escape_slashes ) ) )
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evbuffer_add( out, str, 1 );
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else
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evbuffer_add_printf( out, "%%%02X", (unsigned)(*str&0xFF) );
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}
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}
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char *
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tr_http_unescape( const char * str, int len )
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{
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char * tmp = curl_unescape( str, len );
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char * ret = tr_strdup( tmp );
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curl_free( tmp );
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return ret;
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}
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