transmission/libtransmission/fdlimit.c

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/******************************************************************************
* $Id$
*
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* Copyright (c) 2005-2008 Transmission authors and contributors
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*
* Permission is hereby granted, free of charge, to any person obtaining a
* copy of this software and associated documentation files (the "Software"),
* to deal in the Software without restriction, including without limitation
* the rights to use, copy, modify, merge, publish, distribute, sublicense,
* and/or sell copies of the Software, and to permit persons to whom the
* Software is furnished to do so, subject to the following conditions:
*
* The above copyright notice and this permission notice shall be included in
* all copies or substantial portions of the Software.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
* AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
* FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
* DEALINGS IN THE SOFTWARE.
*****************************************************************************/
#ifndef WIN32
#define HAVE_GETRLIMIT
#endif
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#include <assert.h>
#include <errno.h>
#include <inttypes.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
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#include <sys/types.h>
#include <sys/stat.h>
#ifdef HAVE_GETRLIMIT
#include <sys/time.h> /* getrlimit */
#include <sys/resource.h> /* getrlimit */
#endif
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#include <unistd.h>
#include <fcntl.h> /* O_LARGEFILE */
#include <event.h>
#include <evutil.h>
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#include "transmission.h"
#include "fdlimit.h"
#include "list.h"
#include "net.h"
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#include "platform.h" /* tr_lock */
#include "utils.h"
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#define dbgmsg( ... ) \
do { \
if( tr_deepLoggingIsActive( ) ) \
tr_deepLog( __FILE__, __LINE__, NULL, __VA_ARGS__ ); \
} while( 0 )
/**
***
**/
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enum
{
TR_MAX_OPEN_FILES = 16, /* real files, not sockets */
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NOFILE_BUFFER = 512, /* the process' number of open files is
globalMaxPeers + NOFILE_BUFFER */
};
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struct tr_openfile
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{
unsigned int isCheckedOut : 1;
unsigned int isWritable : 1;
unsigned int closeWhenDone : 1;
char filename[MAX_PATH_LENGTH];
int fd;
uint64_t date;
};
struct tr_fd_s
{
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int socketCount;
int socketMax;
tr_lock * lock;
struct tr_openfile open[TR_MAX_OPEN_FILES];
};
static struct tr_fd_s * gFd = NULL;
/***
****
**** Local Files
****
***/
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/**
* returns 0 on success, or an errno value on failure.
* errno values include ENOENT if the parent folder doesn't exist,
* plus the errno values set by tr_mkdirp() and open().
*/
static int
TrOpenFile( int i,
const char * folder,
const char * torrentFile,
int write )
{
struct tr_openfile * file = &gFd->open[i];
int flags;
char * filename;
struct stat sb;
/* confirm the parent folder exists */
if( stat( folder, &sb ) || !S_ISDIR( sb.st_mode ) )
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return ENOENT;
/* create subfolders, if any */
filename = tr_buildPath( folder, torrentFile, NULL );
if( write )
{
char * tmp = tr_dirname( filename );
const int err = tr_mkdirp( tmp, 0777 ) ? errno : 0;
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tr_free( tmp );
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if( err ) {
tr_free( filename );
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return err;
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}
}
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/* open the file */
flags = write ? ( O_RDWR | O_CREAT ) : O_RDONLY;
#ifdef O_LARGEFILE
flags |= O_LARGEFILE;
#endif
#ifdef WIN32
flags |= O_BINARY;
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#endif
file->fd = open( filename, flags, 0666 );
if( file->fd == -1 )
{
const int err = errno;
tr_err( _( "Couldn't open \"%1$s\": %2$s" ), filename,
tr_strerror( err ) );
tr_free( filename );
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return err;
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}
tr_free( filename );
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return 0;
}
static int
fileIsOpen( const struct tr_openfile * o )
{
return o->fd >= 0;
}
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static void
TrCloseFile( int i )
{
struct tr_openfile * o = &gFd->open[i];
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assert( i >= 0 );
assert( i < TR_MAX_OPEN_FILES );
assert( fileIsOpen( o ) );
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close( o->fd );
o->fd = -1;
o->isCheckedOut = 0;
}
static int
fileIsCheckedOut( const struct tr_openfile * o )
{
return fileIsOpen( o ) && o->isCheckedOut;
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}
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/* returns an fd on success, or a -1 on failure and sets errno */
int
tr_fdFileCheckout( const char * folder,
const char * torrentFile,
int write )
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{
int i, winner = -1;
struct tr_openfile * o;
char * filename;
assert( folder && *folder );
assert( torrentFile && *torrentFile );
assert( write == 0 || write == 1 );
filename = tr_buildPath( folder, torrentFile, NULL );
dbgmsg( "looking for file '%s', writable %c", filename,
write ? 'y' : 'n' );
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tr_lockLock( gFd->lock );
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/* Is it already open? */
for( i = 0; i < TR_MAX_OPEN_FILES; ++i )
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{
o = &gFd->open[i];
if( !fileIsOpen( o ) )
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continue;
if( strcmp( filename, o->filename ) )
continue;
if( fileIsCheckedOut( o ) )
{
dbgmsg( "found it! it's open, but checked out. waiting..." );
tr_lockUnlock( gFd->lock );
tr_wait( 200 );
tr_lockLock( gFd->lock );
i = -1; /* reloop */
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continue;
}
if( write && !o->isWritable )
{
dbgmsg(
"found it! it's open and available, but isn't writable. closing..." );
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TrCloseFile( i );
break;
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}
dbgmsg( "found it! it's ready for use!" );
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winner = i;
break;
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}
dbgmsg(
"it's not already open. looking for an open slot or an old file." );
while( winner < 0 )
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{
uint64_t date = tr_date( ) + 1;
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/* look for the file that's been open longest */
for( i = 0; i < TR_MAX_OPEN_FILES; ++i )
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{
o = &gFd->open[i];
if( !fileIsOpen( o ) )
{
winner = i;
dbgmsg( "found an empty slot in %d", winner );
break;
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}
if( date > o->date )
{
date = o->date;
winner = i;
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}
}
if( winner >= 0 )
{
if( fileIsOpen( &gFd->open[winner] ) )
{
dbgmsg( "closing file '%s', slot #%d",
gFd->open[winner].filename,
winner );
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TrCloseFile( winner );
}
}
else
{
dbgmsg(
"everything's full! waiting for someone else to finish something" );
tr_lockUnlock( gFd->lock );
tr_wait( 200 );
tr_lockLock( gFd->lock );
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}
}
assert( winner >= 0 );
o = &gFd->open[winner];
if( !fileIsOpen( o ) )
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{
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const int err = TrOpenFile( winner, folder, torrentFile, write );
if( err ) {
tr_lockUnlock( gFd->lock );
tr_free( filename );
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errno = err;
return -1;
}
dbgmsg( "opened '%s' in slot %d, write %c", filename, winner,
write ? 'y' : 'n' );
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tr_strlcpy( o->filename, filename, sizeof( o->filename ) );
o->isWritable = write;
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}
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dbgmsg( "checking out '%s' in slot %d", filename, winner );
o->isCheckedOut = 1;
o->closeWhenDone = 0;
o->date = tr_date( );
tr_free( filename );
tr_lockUnlock( gFd->lock );
return o->fd;
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}
void
tr_fdFileReturn( int fd )
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{
int i;
tr_lockLock( gFd->lock );
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for( i = 0; i < TR_MAX_OPEN_FILES; ++i )
{
struct tr_openfile * o = &gFd->open[i];
if( o->fd != fd )
continue;
dbgmsg( "releasing file '%s' in slot #%d", o->filename, i );
o->isCheckedOut = 0;
if( o->closeWhenDone )
TrCloseFile( i );
break;
}
tr_lockUnlock( gFd->lock );
}
void
tr_fdFileClose( const char * filename )
{
int i;
tr_lockLock( gFd->lock );
for( i = 0; i < TR_MAX_OPEN_FILES; ++i )
{
struct tr_openfile * o = &gFd->open[i];
if( !fileIsOpen( o ) || strcmp( filename, o->filename ) )
continue;
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dbgmsg( "tr_fdFileClose closing '%s'", filename );
if( !o->isCheckedOut )
{
dbgmsg( "not checked out, so closing it now... '%s'", filename );
TrCloseFile( i );
}
else
{
dbgmsg(
"flagging file '%s', slot #%d to be closed when checked in",
gFd->open[i].filename, i );
o->closeWhenDone = 1;
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}
}
tr_lockUnlock( gFd->lock );
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}
/***
****
**** Sockets
****
***/
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static int
getSocketMax( struct tr_fd_s * gFd )
{
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return gFd->socketMax;
}
int
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tr_fdSocketCreate( int type )
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{
int s = -1;
tr_lockLock( gFd->lock );
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if( gFd->socketCount < getSocketMax( gFd ) )
if( ( s = socket( AF_INET, type, 0 ) ) < 0 )
tr_err( _( "Couldn't create socket: %s" ),
tr_strerror( sockerrno ) );
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if( s > -1 )
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++gFd->socketCount;
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assert( gFd->socketCount >= 0 );
tr_lockUnlock( gFd->lock );
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return s;
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}
int
tr_fdSocketAccept( int b,
struct in_addr * addr,
tr_port_t * port )
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{
int s = -1;
unsigned int len;
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struct sockaddr_in sock;
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assert( addr );
assert( port );
tr_lockLock( gFd->lock );
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if( gFd->socketCount < getSocketMax( gFd ) )
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{
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len = sizeof( sock );
s = accept( b, (struct sockaddr *) &sock, &len );
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}
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if( s > -1 )
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{
*addr = sock.sin_addr;
*port = sock.sin_port;
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++gFd->socketCount;
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}
tr_lockUnlock( gFd->lock );
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return s;
}
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static void
socketClose( int fd )
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{
#ifdef BEOS_NETSERVER
closesocket( fd );
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#else
EVUTIL_CLOSESOCKET( fd );
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#endif
}
void
tr_fdSocketClose( int s )
{
tr_lockLock( gFd->lock );
if( s >= 0 )
{
socketClose( s );
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--gFd->socketCount;
}
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assert( gFd->socketCount >= 0 );
tr_lockUnlock( gFd->lock );
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}
/***
****
**** Startup / Shutdown
****
***/
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void
tr_fdInit( int globalPeerLimit )
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{
int i;
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assert( gFd == NULL );
gFd = tr_new0( struct tr_fd_s, 1 );
gFd->lock = tr_lockNew( );
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#ifdef HAVE_GETRLIMIT
{
struct rlimit rlim;
getrlimit( RLIMIT_NOFILE, &rlim );
rlim.rlim_cur = MIN( rlim.rlim_max,
(rlim_t)( globalPeerLimit + NOFILE_BUFFER ) );
setrlimit( RLIMIT_NOFILE, &rlim );
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gFd->socketMax = rlim.rlim_cur - NOFILE_BUFFER;
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tr_dbg( "setrlimit( RLIMIT_NOFILE, %d )", (int)rlim.rlim_cur );
}
#else
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gFd->socketMax = globalPeerLimit;
#endif
tr_dbg( "%d usable file descriptors", globalPeerLimit );
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for( i = 0; i < TR_MAX_OPEN_FILES; ++i )
gFd->open[i].fd = -1;
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}
void
tr_fdClose( void )
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{
int i = 0;
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for( i = 0; i < TR_MAX_OPEN_FILES; ++i )
if( fileIsOpen( &gFd->open[i] ) )
TrCloseFile( i );
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tr_lockFree( gFd->lock );
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tr_free( gFd );
gFd = NULL;
}
void
tr_fdSetPeerLimit( uint16_t n )
{
assert( gFd != NULL && "tr_fdInit() must be called first!" );
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gFd->socketMax = n;
}
uint16_t
tr_fdGetPeerLimit( void )
{
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return gFd ? gFd->socketMax : -1;
}