mirror of
https://github.com/transmission/transmission
synced 2024-12-26 09:37:56 +00:00
632 lines
18 KiB
C
632 lines
18 KiB
C
/*
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* This file Copyright (C) 2008-2009 Charles Kerr <charles@transmissionbt.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 <stdlib.h> /* bsearch */
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#include <event.h>
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#define CURL_DISABLE_TYPECHECK /* otherwise -Wunreachable-code goes insane */
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#include <curl/curl.h>
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#include "transmission.h"
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#include "session.h"
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#include "list.h"
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#include "net.h" /* socklen_t */
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#include "trevent.h"
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#include "utils.h"
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#include "version.h"
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#include "web.h"
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/* Use curl_multi_socket_action() instead of curl_multi_perform()
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if libcurl >= 7.18.2. See http://trac.transmissionbt.com/ticket/1844 */
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#if LIBCURL_VERSION_NUM >= 0x071202
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#define USE_CURL_MULTI_SOCKET_ACTION
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#endif
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enum
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{
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/* arbitrary number */
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MAX_CONCURRENT_TASKS = 100,
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/* arbitrary number */
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DEFAULT_TIMER_MSEC = 2500
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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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struct tr_web_sockinfo
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{
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int fd;
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tr_bool evset;
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struct event ev;
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};
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struct tr_web
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{
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tr_bool closing;
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int prev_running;
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int still_running;
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long timer_ms;
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CURLM * multi;
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tr_session * session;
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struct event timer_event;
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tr_list * easy_queue;
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tr_list * fds;
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};
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/***
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****
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***/
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static struct tr_web_sockinfo *
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getSockinfo( tr_web * web, int fd, tr_bool createIfMissing )
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{
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tr_list * l = web->fds;
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for( l=web->fds; l!=NULL; l=l->next ) {
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struct tr_web_sockinfo * s = l->data;
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if( s->fd == fd ) {
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dbgmsg( "looked up sockinfo %p for fd %d", s, fd );
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return s;
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}
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}
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if( createIfMissing ) {
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struct tr_web_sockinfo * s = tr_new0( struct tr_web_sockinfo, 1 );
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s->fd = fd;
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tr_list_prepend( &web->fds, s );
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dbgmsg( "created sockinfo %p for fd %d... we now have %d sockinfos", s, fd, tr_list_size(web->fds) );
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return s;
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}
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return NULL;
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}
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static void
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clearSockinfoEvent( struct tr_web_sockinfo * s )
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{
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if( s && s->evset )
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{
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dbgmsg( "clearing libevent polling for sockinfo %p, fd %d", s, s->fd );
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event_del( &s->ev );
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s->evset = FALSE;
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}
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}
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static void
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purgeSockinfo( tr_web * web, int fd )
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{
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struct tr_web_sockinfo * s = getSockinfo( web, fd, FALSE );
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if( s != NULL )
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{
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tr_list_remove_data( &web->fds, s );
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clearSockinfoEvent( s );
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dbgmsg( "freeing sockinfo %p, fd %d", s, s->fd );
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tr_free( s );
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}
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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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unsigned long tag;
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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 size_t
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writeFunc( void * ptr, size_t size, size_t nmemb, void * task )
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{
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const size_t byteCount = size * nmemb;
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evbuffer_add( ((struct tr_web_task*)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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static int
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getCurlProxyType( tr_proxy_type t )
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{
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switch( t )
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{
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case TR_PROXY_SOCKS4: return CURLPROXY_SOCKS4;
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case TR_PROXY_SOCKS5: return CURLPROXY_SOCKS5;
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default: return CURLPROXY_HTTP;
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}
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}
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static void
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addTask( void * vtask )
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{
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struct tr_web_task * task = vtask;
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const tr_session * session = task->session;
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if( session && session->web )
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{
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struct tr_web * web = session->web;
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CURL * easy;
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dbgmsg( "adding task #%lu [%s]", task->tag, task->url );
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easy = curl_easy_init( );
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if( !task->range && session->isProxyEnabled ) {
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curl_easy_setopt( easy, CURLOPT_PROXY, session->proxy );
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curl_easy_setopt( easy, CURLOPT_PROXYAUTH, CURLAUTH_ANY );
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curl_easy_setopt( easy, CURLOPT_PROXYPORT, session->proxyPort );
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curl_easy_setopt( easy, CURLOPT_PROXYTYPE,
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getCurlProxyType( session->proxyType ) );
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}
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if( !task->range && session->isProxyAuthEnabled ) {
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char * str = tr_strdup_printf( "%s:%s", session->proxyUsername,
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session->proxyPassword );
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curl_easy_setopt( easy, CURLOPT_PROXYUSERPWD, str );
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tr_free( str );
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}
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curl_easy_setopt( easy, CURLOPT_IPRESOLVE, CURL_IPRESOLVE_V4 );
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curl_easy_setopt( easy, CURLOPT_DNS_CACHE_TIMEOUT, 360L );
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curl_easy_setopt( easy, CURLOPT_CONNECTTIMEOUT, 60L );
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curl_easy_setopt( easy, CURLOPT_FOLLOWLOCATION, 1L );
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curl_easy_setopt( easy, CURLOPT_FORBID_REUSE, 1L );
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curl_easy_setopt( easy, CURLOPT_MAXREDIRS, 16L );
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curl_easy_setopt( easy, CURLOPT_NOSIGNAL, 1L );
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curl_easy_setopt( easy, CURLOPT_PRIVATE, task );
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curl_easy_setopt( easy, CURLOPT_SSL_VERIFYHOST, 0L );
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curl_easy_setopt( easy, CURLOPT_SSL_VERIFYPEER, 0L );
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curl_easy_setopt( easy, CURLOPT_URL, task->url );
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curl_easy_setopt( easy, CURLOPT_USERAGENT,
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TR_NAME "/" LONG_VERSION_STRING );
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curl_easy_setopt( easy, CURLOPT_VERBOSE,
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getenv( "TR_CURL_VERBOSE" ) != NULL );
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curl_easy_setopt( easy, CURLOPT_WRITEDATA, task );
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curl_easy_setopt( easy, CURLOPT_WRITEFUNCTION, writeFunc );
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if( task->range )
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curl_easy_setopt( easy, CURLOPT_RANGE, task->range );
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else /* don't set encoding on webseeds; it messes up binary data */
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curl_easy_setopt( easy, CURLOPT_ENCODING, "" );
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if( web->still_running >= MAX_CONCURRENT_TASKS ) {
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tr_list_append( &web->easy_queue, easy );
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dbgmsg( ">> enqueueing a task... size is now %d", tr_list_size( web->easy_queue ) );
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} else {
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const CURLMcode mcode = curl_multi_add_handle( web->multi, easy );
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tr_assert( mcode == CURLM_OK, "curl_multi_add_handle() failed: %d (%s)", mcode, curl_multi_strerror( mcode ) );
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if( mcode == CURLM_OK )
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++web->still_running;
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else
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tr_err( "%s", curl_multi_strerror( mcode ) );
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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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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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static void
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task_finish( struct tr_web_task * task, long response_code )
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{
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dbgmsg( "finished a web task... response code is %ld", response_code );
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dbgmsg( "===================================================" );
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task->done_func( task->session,
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response_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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static void
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remove_finished_tasks( tr_web * g )
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{
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CURL * easy;
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do
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{
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CURLMsg * msg;
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int msgs_left;
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easy = NULL;
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while(( msg = curl_multi_info_read( g->multi, &msgs_left ))) {
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if( msg->msg == CURLMSG_DONE ) {
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easy = msg->easy_handle;
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break;
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}
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}
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if( easy ) {
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long code;
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long fd;
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struct tr_web_task * task;
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CURLcode ecode;
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CURLMcode mcode;
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ecode = curl_easy_getinfo( easy, CURLINFO_PRIVATE, (void*)&task );
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tr_assert( ecode == CURLE_OK, "curl_easy_getinfo() failed: %d (%s)", ecode, curl_easy_strerror( ecode ) );
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ecode = curl_easy_getinfo( easy, CURLINFO_RESPONSE_CODE, &code );
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tr_assert( ecode == CURLE_OK, "curl_easy_getinfo() failed: %d (%s)", ecode, curl_easy_strerror( ecode ) );
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ecode = curl_easy_getinfo( easy, CURLINFO_LASTSOCKET, &fd );
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tr_assert( ecode == CURLE_OK, "curl_easy_getinfo() failed: %d (%s)", ecode, curl_easy_strerror( ecode ) );
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if( fd != -1L )
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purgeSockinfo( g, fd );
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mcode = curl_multi_remove_handle( g->multi, easy );
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tr_assert( mcode == CURLM_OK, "curl_multi_remove_handle() failed: %d (%s)", mcode, curl_multi_strerror( mcode ) );
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curl_easy_cleanup( easy );
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task_finish( task, code );
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}
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}
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while ( easy );
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g->prev_running = g->still_running;
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}
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static void
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stop_timer( tr_web* g )
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{
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if( evtimer_pending( &g->timer_event, NULL ) )
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{
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dbgmsg( "deleting the pending global timer" );
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evtimer_del( &g->timer_event );
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}
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}
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static void
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restart_timer( tr_web * g )
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{
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struct timeval interval;
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assert( tr_amInEventThread( g->session ) );
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assert( g->session != NULL );
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assert( g->session->events != NULL );
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stop_timer( g );
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dbgmsg( "adding a timeout for %ld seconds from now", g->timer_ms/1000L );
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tr_timevalMsec( g->timer_ms, &interval );
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evtimer_add( &g->timer_event, &interval );
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}
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static void
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add_tasks_from_queue( tr_web * g )
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{
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while( ( g->still_running < MAX_CONCURRENT_TASKS )
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&& ( tr_list_size( g->easy_queue ) > 0 ) )
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{
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CURL * easy = tr_list_pop_front( &g->easy_queue );
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if( easy )
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{
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const CURLMcode rc = curl_multi_add_handle( g->multi, easy );
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if( rc != CURLM_OK )
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tr_err( "%s", curl_multi_strerror( rc ) );
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else {
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dbgmsg( "pumped the task queue, %d remain",
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tr_list_size( g->easy_queue ) );
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++g->still_running;
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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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web_close( tr_web * g )
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{
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CURLMcode mcode;
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stop_timer( g );
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mcode = curl_multi_cleanup( g->multi );
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tr_assert( mcode == CURLM_OK, "curl_multi_cleanup() failed: %d (%s)", mcode, curl_multi_strerror( mcode ) );
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if( mcode != CURLM_OK )
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tr_err( "%s", curl_multi_strerror( mcode ) );
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tr_free( g );
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}
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/* note: this function can free the tr_web if its 'closing' flag is set
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and no tasks remain. callers must not reference their g pointer
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after calling this function */
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static void
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tr_multi_perform( tr_web * g, int fd )
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{
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int closed = FALSE;
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CURLMcode mcode;
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dbgmsg( "check_run_count: prev_running %d, still_running %d",
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g->prev_running, g->still_running );
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/* invoke libcurl's processing */
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#ifdef USE_CURL_MULTI_SOCKET_ACTION
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do {
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dbgmsg( "calling curl_multi_socket_action..." );
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mcode = curl_multi_socket_action( g->multi, fd, 0, &g->still_running );
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fd = CURL_SOCKET_TIMEOUT;
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dbgmsg( "done calling curl_multi_socket_action..." );
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} while( mcode == CURLM_CALL_MULTI_SOCKET );
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#else
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do {
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dbgmsg( "calling curl_multi_perform..." );
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mcode = curl_multi_perform( g->multi, &g->still_running );
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dbgmsg( "done calling curl_multi_perform..." );
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} while( mcode == CURLM_CALL_MULTI_PERFORM );
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#endif
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tr_assert( mcode == CURLM_OK, "curl_multi_perform() failed: %d (%s)", mcode, curl_multi_strerror( mcode ) );
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if( mcode != CURLM_OK )
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tr_err( "%s", curl_multi_strerror( mcode ) );
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remove_finished_tasks( g );
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add_tasks_from_queue( g );
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if( !g->still_running ) {
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assert( tr_list_size( g->fds ) == 0 );
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stop_timer( g );
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if( g->closing ) {
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web_close( g );
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closed = TRUE;
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}
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}
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if( !closed )
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restart_timer( g );
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}
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/* libevent says that sock is ready to be processed, so wake up libcurl */
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static void
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event_cb( int fd, short kind UNUSED, void * g )
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{
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tr_multi_perform( g, fd );
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}
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/* libevent says that timer_ms have passed, so wake up libcurl */
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static void
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timer_cb( int socket UNUSED, short action UNUSED, void * g )
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{
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dbgmsg( "libevent timer is done" );
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tr_multi_perform( g, CURL_SOCKET_TIMEOUT );
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}
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/* CURLMOPT_SOCKETFUNCTION */
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static int
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sock_cb( CURL * e UNUSED,
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curl_socket_t fd,
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int action,
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void * vweb,
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void * unused UNUSED)
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{
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struct tr_web * web = vweb;
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dbgmsg( "sock_cb: action is %d, fd is %d", action, (int)fd );
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if( action == CURL_POLL_REMOVE )
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{
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purgeSockinfo( web, fd );
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}
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else
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{
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struct tr_web_sockinfo * sockinfo = getSockinfo( web, fd, TRUE );
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const int kind = EV_PERSIST
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| (( action & CURL_POLL_IN ) ? EV_READ : 0 )
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| (( action & CURL_POLL_OUT ) ? EV_WRITE : 0 );
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dbgmsg( "setsock: fd is %d, curl action is %d, libevent action is %d", fd, action, kind );
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assert( tr_amInEventThread( web->session ) );
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assert( kind != EV_PERSIST );
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/* clear any old polling on this fd */
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clearSockinfoEvent( sockinfo );
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/* set the new polling on this fd */
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dbgmsg( "enabling (libevent %d, libcurl %d) polling on sockinfo %p, fd %d", action, kind, sockinfo, fd );
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event_set( &sockinfo->ev, fd, kind, event_cb, web );
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event_add( &sockinfo->ev, NULL );
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sockinfo->evset = TRUE;
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}
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return 0;
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}
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/* libcurl documentation: "If 0, it means you should proceed immediately
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* without waiting for anything. If it returns -1, there's no timeout at all
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* set ... (but) you must not wait too long (more than a few seconds perhaps)
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* before you call curl_multi_perform() again." */
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static void
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multi_timer_cb( CURLM *multi UNUSED, long timer_ms, void * vg )
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{
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tr_web * g = vg;
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if( timer_ms < 1 ) {
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if( timer_ms == 0 ) /* call it immediately */
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timer_cb( 0, 0, g );
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timer_ms = DEFAULT_TIMER_MSEC;
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}
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g->timer_ms = timer_ms;
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restart_timer( g );
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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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if( session->web )
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{
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static unsigned long tag = 0;
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struct tr_web_task * task;
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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->tag = ++tag;
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task->response = evbuffer_new( );
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tr_runInEventThread( session, addTask, task );
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}
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|
}
|
|
|
|
tr_web*
|
|
tr_webInit( tr_session * session )
|
|
{
|
|
CURLMcode mcode;
|
|
static int curlInited = FALSE;
|
|
tr_web * web;
|
|
|
|
/* call curl_global_init if we haven't done it already.
|
|
* try to enable ssl for https support; but if that fails,
|
|
* try a plain vanilla init */
|
|
if( curlInited == FALSE ) {
|
|
curlInited = TRUE;
|
|
if( curl_global_init( CURL_GLOBAL_SSL ) )
|
|
curl_global_init( 0 );
|
|
}
|
|
|
|
web = tr_new0( struct tr_web, 1 );
|
|
web->multi = curl_multi_init( );
|
|
web->session = session;
|
|
web->timer_ms = DEFAULT_TIMER_MSEC; /* overwritten by multi_timer_cb() */
|
|
|
|
evtimer_set( &web->timer_event, timer_cb, web );
|
|
mcode = curl_multi_setopt( web->multi, CURLMOPT_SOCKETDATA, web );
|
|
tr_assert( mcode == CURLM_OK, "curl_mutli_setopt() failed: %d (%s)", mcode, curl_multi_strerror( mcode ) );
|
|
mcode = curl_multi_setopt( web->multi, CURLMOPT_SOCKETFUNCTION, sock_cb );
|
|
tr_assert( mcode == CURLM_OK, "curl_mutli_setopt() failed: %d (%s)", mcode, curl_multi_strerror( mcode ) );
|
|
mcode = curl_multi_setopt( web->multi, CURLMOPT_TIMERDATA, web );
|
|
tr_assert( mcode == CURLM_OK, "curl_mutli_setopt() failed: %d (%s)", mcode, curl_multi_strerror( mcode ) );
|
|
mcode = curl_multi_setopt( web->multi, CURLMOPT_TIMERFUNCTION, multi_timer_cb );
|
|
tr_assert( mcode == CURLM_OK, "curl_mutli_setopt() failed: %d (%s)", mcode, curl_multi_strerror( mcode ) );
|
|
|
|
return web;
|
|
}
|
|
|
|
void
|
|
tr_webClose( tr_web ** web_in )
|
|
{
|
|
tr_web * web = *web_in;
|
|
*web_in = NULL;
|
|
if( web->still_running < 1 )
|
|
web_close( web );
|
|
else
|
|
web->closing = 1;
|
|
}
|
|
|
|
/*****
|
|
******
|
|
******
|
|
*****/
|
|
|
|
static struct http_msg {
|
|
long code;
|
|
const char * text;
|
|
} http_msg[] = {
|
|
{ 0, "No Response" },
|
|
{ 101, "Switching Protocols" },
|
|
{ 200, "OK" },
|
|
{ 201, "Created" },
|
|
{ 202, "Accepted" },
|
|
{ 203, "Non-Authoritative Information" },
|
|
{ 204, "No Content" },
|
|
{ 205, "Reset Content" },
|
|
{ 206, "Partial Content" },
|
|
{ 300, "Multiple Choices" },
|
|
{ 301, "Moved Permanently" },
|
|
{ 302, "Found" },
|
|
{ 303, "See Other" },
|
|
{ 304, "Not Modified" },
|
|
{ 305, "Use Proxy" },
|
|
{ 306, "(Unused)" },
|
|
{ 307, "Temporary Redirect" },
|
|
{ 400, "Bad Request" },
|
|
{ 401, "Unauthorized" },
|
|
{ 402, "Payment Required" },
|
|
{ 403, "Forbidden" },
|
|
{ 404, "Not Found" },
|
|
{ 405, "Method Not Allowed" },
|
|
{ 406, "Not Acceptable" },
|
|
{ 407, "Proxy Authentication Required" },
|
|
{ 408, "Request Timeout" },
|
|
{ 409, "Conflict" },
|
|
{ 410, "Gone" },
|
|
{ 411, "Length Required" },
|
|
{ 412, "Precondition Failed" },
|
|
{ 413, "Request Entity Too Large" },
|
|
{ 414, "Request-URI Too Long" },
|
|
{ 415, "Unsupported Media Type" },
|
|
{ 416, "Requested Range Not Satisfiable" },
|
|
{ 417, "Expectation Failed" },
|
|
{ 500, "Internal Server Error" },
|
|
{ 501, "Not Implemented" },
|
|
{ 502, "Bad Gateway" },
|
|
{ 503, "Service Unavailable" },
|
|
{ 504, "Gateway Timeout" },
|
|
{ 505, "HTTP Version Not Supported" }
|
|
};
|
|
|
|
static int
|
|
compareResponseCodes( const void * va, const void * vb )
|
|
{
|
|
const long a = *(const long*) va;
|
|
const struct http_msg * b = vb;
|
|
return a - b->code;
|
|
}
|
|
|
|
const char *
|
|
tr_webGetResponseStr( long code )
|
|
{
|
|
struct http_msg * msg = bsearch( &code,
|
|
http_msg,
|
|
sizeof( http_msg ) / sizeof( http_msg[0] ),
|
|
sizeof( http_msg[0] ),
|
|
compareResponseCodes );
|
|
return msg ? msg->text : "Unknown Error";
|
|
}
|