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/*
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Unix SMB / CIFS implementation .
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return a list of network interfaces
Copyright ( C ) Andrew Tridgell 1998
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Copyright ( C ) Jeremy Allison 2007
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This program is free software ; you can redistribute it and / or modify
it under the terms of the GNU General Public License as published by
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the Free Software Foundation ; either version 3 of the License , or
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( at your option ) any later version .
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This program is distributed in the hope that it will be useful ,
but WITHOUT ANY WARRANTY ; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE . See the
GNU General Public License for more details .
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You should have received a copy of the GNU General Public License
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along with this program . If not , see < http : //www.gnu.org/licenses/>.
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*/
/* working out the interfaces for a OS is an incredibly non-portable
thing . We have several possible implementations below , and autoconf
tries each of them to see what works
Note that this file does _not_ include includes . h . That is so this code
can be called directly from the autoconf tests . That also means
this code cannot use any of the normal Samba debug stuff or defines .
This is standalone code .
*/
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# ifndef AUTOCONF_TEST
# include "config.h"
# endif
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# include <unistd.h>
# include <stdio.h>
# include <sys/types.h>
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# include <netdb.h>
# include <sys/ioctl.h>
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# include <netdb.h>
# include <sys/ioctl.h>
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# include <sys/time.h>
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# include <sys/socket.h>
# include <netinet/in.h>
# include <arpa/inet.h>
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# ifdef HAVE_IFADDRS_H
# include <ifaddrs.h>
# endif
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# ifdef HAVE_SYS_TIME_H
# include <sys/time.h>
# endif
# ifndef SIOCGIFCONF
# ifdef HAVE_SYS_SOCKIO_H
# include <sys/sockio.h>
# endif
# endif
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# ifdef HAVE_STDLIB_H
# include <stdlib.h>
# endif
# ifdef HAVE_STRING_H
# include <string.h>
# endif
# ifdef HAVE_STRINGS_H
# include <strings.h>
# endif
# ifdef __COMPAR_FN_T
# define QSORT_CAST (__compar_fn_t)
# endif
# ifndef QSORT_CAST
# define QSORT_CAST (int (*)(const void *, const void *))
# endif
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# ifdef HAVE_NET_IF_H
# include <net/if.h>
# endif
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# define SOCKET_WRAPPER_NOT_REPLACE
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# include "interfaces.h"
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# include "lib/replace/replace.h"
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/****************************************************************************
Utility functions .
* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * */
/****************************************************************************
Create a struct sockaddr_storage with the netmask bits set to 1.
* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * */
bool make_netmask ( struct sockaddr_storage * pss_out ,
const struct sockaddr_storage * pss_in ,
unsigned long masklen )
{
* pss_out = * pss_in ;
/* Now apply masklen bits of mask. */
# if defined(HAVE_IPV6)
if ( pss_in - > ss_family = = AF_INET6 ) {
char * p = ( char * ) & ( ( struct sockaddr_in6 * ) pss_out ) - > sin6_addr ;
unsigned int i ;
if ( masklen > 128 ) {
return false ;
}
for ( i = 0 ; masklen > = 8 ; masklen - = 8 , i + + ) {
* p + + = 0xff ;
}
/* Deal with the partial byte. */
* p + + & = ( 0xff & ~ ( 0xff > > masklen ) ) ;
i + + ;
for ( ; i < sizeof ( struct in6_addr ) ; i + + ) {
* p + + = ' \0 ' ;
}
return true ;
}
# endif
if ( pss_in - > ss_family = = AF_INET ) {
if ( masklen > 32 ) {
return false ;
}
( ( struct sockaddr_in * ) pss_out ) - > sin_addr . s_addr =
htonl ( ( ( 0xFFFFFFFFL > > masklen ) ^ 0xFFFFFFFFL ) ) ;
return true ;
}
return false ;
}
/****************************************************************************
Create a struct sockaddr_storage set to the broadcast or network adress from
an incoming sockaddr_storage .
* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * */
static void make_bcast_or_net ( struct sockaddr_storage * pss_out ,
const struct sockaddr_storage * pss_in ,
const struct sockaddr_storage * nmask ,
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bool make_bcast_p )
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{
unsigned int i = 0 , len = 0 ;
char * pmask = NULL ;
char * p = NULL ;
* pss_out = * pss_in ;
/* Set all zero netmask bits to 1. */
# if defined(HAVE_IPV6)
if ( pss_in - > ss_family = = AF_INET6 ) {
p = ( char * ) & ( ( struct sockaddr_in6 * ) pss_out ) - > sin6_addr ;
pmask = ( char * ) & ( ( struct sockaddr_in6 * ) nmask ) - > sin6_addr ;
len = 16 ;
}
# endif
if ( pss_in - > ss_family = = AF_INET ) {
p = ( char * ) & ( ( struct sockaddr_in * ) pss_out ) - > sin_addr ;
pmask = ( char * ) & ( ( struct sockaddr_in * ) nmask ) - > sin_addr ;
len = 4 ;
}
for ( i = 0 ; i < len ; i + + , p + + , pmask + + ) {
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if ( make_bcast_p ) {
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* p = ( * p & * pmask ) | ( * pmask ^ 0xff ) ;
} else {
/* make_net */
* p = ( * p & * pmask ) ;
}
}
}
void make_bcast ( struct sockaddr_storage * pss_out ,
const struct sockaddr_storage * pss_in ,
const struct sockaddr_storage * nmask )
{
make_bcast_or_net ( pss_out , pss_in , nmask , true ) ;
}
void make_net ( struct sockaddr_storage * pss_out ,
const struct sockaddr_storage * pss_in ,
const struct sockaddr_storage * nmask )
{
make_bcast_or_net ( pss_out , pss_in , nmask , false ) ;
}
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/****************************************************************************
Try the " standard " getifaddrs / freeifaddrs interfaces .
Also gets IPv6 interfaces .
* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * */
/****************************************************************************
Get the netmask address for a local interface .
* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * */
static int _get_interfaces ( struct iface_struct * ifaces , int max_interfaces )
{
struct ifaddrs * iflist = NULL ;
struct ifaddrs * ifptr = NULL ;
int total = 0 ;
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size_t copy_size ;
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if ( getifaddrs ( & iflist ) < 0 ) {
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return - 1 ;
}
/* Loop through interfaces, looking for given IP address */
for ( ifptr = iflist , total = 0 ;
ifptr ! = NULL & & total < max_interfaces ;
ifptr = ifptr - > ifa_next ) {
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memset ( & ifaces [ total ] , ' \0 ' , sizeof ( ifaces [ total ] ) ) ;
copy_size = sizeof ( struct sockaddr_in ) ;
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if ( ! ifptr - > ifa_addr | | ! ifptr - > ifa_netmask ) {
continue ;
}
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ifaces [ total ] . flags = ifptr - > ifa_flags ;
/* Check the interface is up. */
if ( ! ( ifaces [ total ] . flags & IFF_UP ) ) {
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continue ;
}
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# if defined(HAVE_IPV6)
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if ( ifptr - > ifa_addr - > sa_family = = AF_INET6 ) {
copy_size = sizeof ( struct sockaddr_in6 ) ;
}
# endif
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memcpy ( & ifaces [ total ] . ip , ifptr - > ifa_addr , copy_size ) ;
memcpy ( & ifaces [ total ] . netmask , ifptr - > ifa_netmask , copy_size ) ;
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if ( ifaces [ total ] . flags & ( IFF_BROADCAST | IFF_LOOPBACK ) ) {
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make_bcast ( & ifaces [ total ] . bcast ,
& ifaces [ total ] . ip ,
& ifaces [ total ] . netmask ) ;
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} else if ( ( ifaces [ total ] . flags & IFF_POINTOPOINT ) & &
ifptr - > ifa_dstaddr ) {
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memcpy ( & ifaces [ total ] . bcast ,
ifptr - > ifa_dstaddr ,
copy_size ) ;
} else {
continue ;
}
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strlcpy ( ifaces [ total ] . name , ifptr - > ifa_name ,
sizeof ( ifaces [ total ] . name ) ) ;
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total + + ;
}
freeifaddrs ( iflist ) ;
return total ;
}
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static int iface_comp ( struct iface_struct * i1 , struct iface_struct * i2 )
{
int r ;
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# if defined(HAVE_IPV6)
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/*
* If we have IPv6 - sort these interfaces lower
* than any IPv4 ones .
*/
if ( i1 - > ip . ss_family = = AF_INET6 & &
i2 - > ip . ss_family = = AF_INET ) {
return - 1 ;
} else if ( i1 - > ip . ss_family = = AF_INET & &
i2 - > ip . ss_family = = AF_INET6 ) {
return 1 ;
}
if ( i1 - > ip . ss_family = = AF_INET6 ) {
struct sockaddr_in6 * s1 = ( struct sockaddr_in6 * ) & i1 - > ip ;
struct sockaddr_in6 * s2 = ( struct sockaddr_in6 * ) & i2 - > ip ;
r = memcmp ( & s1 - > sin6_addr ,
& s2 - > sin6_addr ,
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sizeof ( struct in6_addr ) ) ;
if ( r ) {
return r ;
}
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s1 = ( struct sockaddr_in6 * ) & i1 - > netmask ;
s2 = ( struct sockaddr_in6 * ) & i2 - > netmask ;
r = memcmp ( & s1 - > sin6_addr ,
& s2 - > sin6_addr ,
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sizeof ( struct in6_addr ) ) ;
if ( r ) {
return r ;
}
}
# endif
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/* AIX uses __ss_family instead of ss_family inside of
sockaddr_storage . Instead of trying to figure out which field to
use , we can just cast it to a sockaddr .
*/
if ( ( ( struct sockaddr * ) & i1 - > ip ) - > sa_family = = AF_INET ) {
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struct sockaddr_in * s1 = ( struct sockaddr_in * ) & i1 - > ip ;
struct sockaddr_in * s2 = ( struct sockaddr_in * ) & i2 - > ip ;
r = ntohl ( s1 - > sin_addr . s_addr ) -
ntohl ( s2 - > sin_addr . s_addr ) ;
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if ( r ) {
return r ;
}
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s1 = ( struct sockaddr_in * ) & i1 - > netmask ;
s2 = ( struct sockaddr_in * ) & i2 - > netmask ;
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return ntohl ( s1 - > sin_addr . s_addr ) -
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ntohl ( s2 - > sin_addr . s_addr ) ;
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}
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return 0 ;
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}
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int get_interfaces ( struct iface_struct * ifaces , int max_interfaces ) ;
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/* this wrapper is used to remove duplicates from the interface list generated
above */
int get_interfaces ( struct iface_struct * ifaces , int max_interfaces )
{
int total , i , j ;
total = _get_interfaces ( ifaces , max_interfaces ) ;
if ( total < = 0 ) return total ;
/* now we need to remove duplicates */
qsort ( ifaces , total , sizeof ( ifaces [ 0 ] ) , QSORT_CAST iface_comp ) ;
for ( i = 1 ; i < total ; ) {
if ( iface_comp ( & ifaces [ i - 1 ] , & ifaces [ i ] ) = = 0 ) {
for ( j = i - 1 ; j < total - 1 ; j + + ) {
ifaces [ j ] = ifaces [ j + 1 ] ;
}
total - - ;
} else {
i + + ;
}
}
return total ;
}