mirror of
https://github.com/samba-team/samba.git
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a82df9c673
of nmb so we write to same log file that
was originally created as log.nmbd
samba/source/smbd/server.c change remote_machine name to smbd instead
of smb so we write to same log file that
was originally created as log.smbd
samba/source/lib/interface.c allow binding to all interface IP addresses
even if on same subnet. This allows you to
specify which IP's you want in interfaces
line and use bind interfaces only
(This used to be commit 01dfd59712
)
379 lines
10 KiB
C
379 lines
10 KiB
C
/*
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Unix SMB/Netbios implementation.
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Version 1.9.
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multiple interface handling
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Copyright (C) Andrew Tridgell 1992-1998
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2 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,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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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, write to the Free Software
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Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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*/
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#include "includes.h"
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#define MAX_INTERFACES 128
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static struct iface_struct *probed_ifaces;
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static int total_probed;
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extern int DEBUGLEVEL;
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struct in_addr ipzero;
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struct in_addr allones_ip;
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struct in_addr loopback_ip;
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static struct interface *local_interfaces = NULL;
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#define ALLONES ((uint32)0xFFFFFFFF)
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#define MKBCADDR(_IP, _NM) ((_IP & _NM) | (_NM ^ ALLONES))
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#define MKNETADDR(_IP, _NM) (_IP & _NM)
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/****************************************************************************
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Try and find an interface that matches an ip. If we cannot, return NULL
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**************************************************************************/
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static struct interface *iface_find(struct in_addr ip, BOOL CheckMask)
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{
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struct interface *i;
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if (zero_ip(ip)) return local_interfaces;
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for (i=local_interfaces;i;i=i->next)
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if (CheckMask) {
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if (same_net(i->ip,ip,i->nmask)) return i;
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} else if ((i->ip).s_addr == ip.s_addr) return i;
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return NULL;
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}
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/****************************************************************************
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add an interface to the linked list of interfaces
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****************************************************************************/
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static void add_interface(struct in_addr ip, struct in_addr nmask)
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{
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struct interface *iface;
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if (iface_find(ip, False)) {
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DEBUG(3,("not adding duplicate interface %s\n",inet_ntoa(ip)));
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return;
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}
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if (ip_equal(nmask, allones_ip)) {
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DEBUG(3,("not adding non-broadcast interface %s\n",inet_ntoa(ip)));
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return;
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}
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iface = (struct interface *)malloc(sizeof(*iface));
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if (!iface) return;
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ZERO_STRUCTPN(iface);
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iface->ip = ip;
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iface->nmask = nmask;
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iface->bcast.s_addr = MKBCADDR(iface->ip.s_addr, iface->nmask.s_addr);
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DLIST_ADD(local_interfaces, iface);
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DEBUG(2,("added interface ip=%s ",inet_ntoa(iface->ip)));
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DEBUG(2,("bcast=%s ",inet_ntoa(iface->bcast)));
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DEBUG(2,("nmask=%s\n",inet_ntoa(iface->nmask)));
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}
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/****************************************************************************
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interpret a single element from a interfaces= config line
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This handles the following different forms:
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1) wildcard interface name
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2) DNS name
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3) IP/masklen
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4) ip/mask
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5) bcast/mask
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****************************************************************************/
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static void interpret_interface(char *token)
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{
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struct in_addr ip, nmask;
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char *p;
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int i, added=0;
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ip = ipzero;
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nmask = ipzero;
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/* first check if it is an interface name */
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for (i=0;i<total_probed;i++) {
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if (ms_fnmatch(token, probed_ifaces[i].name) == 0) {
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add_interface(probed_ifaces[i].ip,
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probed_ifaces[i].netmask);
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added = 1;
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}
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}
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if (added) return;
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/* maybe it is a DNS name */
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p = strchr(token,'/');
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if (!p) {
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ip = *interpret_addr2(token);
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for (i=0;i<total_probed;i++) {
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if (ip.s_addr == probed_ifaces[i].ip.s_addr &&
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!ip_equal(allones_ip, probed_ifaces[i].netmask)) {
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add_interface(probed_ifaces[i].ip,
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probed_ifaces[i].netmask);
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return;
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}
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}
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DEBUG(2,("can't determine netmask for %s\n", token));
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return;
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}
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/* parse it into an IP address/netmasklength pair */
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*p++ = 0;
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ip = *interpret_addr2(token);
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if (strlen(p) > 2) {
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nmask = *interpret_addr2(p);
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} else {
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nmask.s_addr = htonl(((ALLONES >> atoi(p)) ^ ALLONES));
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}
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/* maybe the first component was a broadcast address */
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if (ip.s_addr == MKBCADDR(ip.s_addr, nmask.s_addr) ||
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ip.s_addr == MKNETADDR(ip.s_addr, nmask.s_addr)) {
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for (i=0;i<total_probed;i++) {
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if (same_net(ip, probed_ifaces[i].ip, nmask)) {
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add_interface(probed_ifaces[i].ip, nmask);
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return;
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}
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}
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DEBUG(2,("Can't determine ip for broadcast address %s\n", token));
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return;
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}
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add_interface(ip, nmask);
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}
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/****************************************************************************
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load the list of network interfaces
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****************************************************************************/
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void load_interfaces(void)
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{
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char *ptr;
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fstring token;
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int i;
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struct iface_struct ifaces[MAX_INTERFACES];
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ptr = lp_interfaces();
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ipzero = *interpret_addr2("0.0.0.0");
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allones_ip = *interpret_addr2("255.255.255.255");
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loopback_ip = *interpret_addr2("127.0.0.1");
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if (probed_ifaces) {
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free(probed_ifaces);
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probed_ifaces = NULL;
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}
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/* dump the current interfaces if any */
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while (local_interfaces) {
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struct interface *iface = local_interfaces;
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DLIST_REMOVE(local_interfaces, local_interfaces);
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ZERO_STRUCTPN(iface);
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free(iface);
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}
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/* probe the kernel for interfaces */
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total_probed = get_interfaces(ifaces, MAX_INTERFACES);
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if (total_probed > 0) {
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probed_ifaces = memdup(ifaces, sizeof(ifaces[0])*total_probed);
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}
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/* if we don't have a interfaces line then use all broadcast capable
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interfaces except loopback */
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if (!ptr || !*ptr) {
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if (total_probed <= 0) {
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DEBUG(0,("ERROR: Could not determine network interfaces, you must use a interfaces config line\n"));
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exit(1);
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}
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for (i=0;i<total_probed;i++) {
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if (probed_ifaces[i].netmask.s_addr != allones_ip.s_addr &&
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probed_ifaces[i].ip.s_addr != loopback_ip.s_addr) {
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add_interface(probed_ifaces[i].ip,
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probed_ifaces[i].netmask);
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}
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}
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return;
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}
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while (next_token(&ptr,token,NULL,sizeof(token))) {
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interpret_interface(token);
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}
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if (!local_interfaces) {
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DEBUG(0,("WARNING: no network interfaces found\n"));
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}
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}
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/****************************************************************************
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return True if the list of probed interfaces has changed
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****************************************************************************/
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BOOL interfaces_changed(void)
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{
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int n;
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struct iface_struct ifaces[MAX_INTERFACES];
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n = get_interfaces(ifaces, MAX_INTERFACES);
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if ((n > 0 )&& (n != total_probed ||
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memcmp(ifaces, probed_ifaces, sizeof(ifaces[0])*n))) {
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return True;
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}
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return False;
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}
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/****************************************************************************
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check if an IP is one of mine
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**************************************************************************/
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BOOL ismyip(struct in_addr ip)
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{
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struct interface *i;
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for (i=local_interfaces;i;i=i->next)
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if (ip_equal(i->ip,ip)) return True;
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return False;
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}
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/****************************************************************************
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check if a packet is from a local (known) net
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**************************************************************************/
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BOOL is_local_net(struct in_addr from)
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{
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struct interface *i;
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for (i=local_interfaces;i;i=i->next) {
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if((from.s_addr & i->nmask.s_addr) ==
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(i->ip.s_addr & i->nmask.s_addr))
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return True;
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}
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return False;
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}
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/****************************************************************************
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how many interfaces do we have
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**************************************************************************/
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int iface_count(void)
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{
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int ret = 0;
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struct interface *i;
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for (i=local_interfaces;i;i=i->next)
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ret++;
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return ret;
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}
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/****************************************************************************
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True if we have two or more interfaces.
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**************************************************************************/
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BOOL we_are_multihomed(void)
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{
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static int multi = -1;
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if(multi == -1)
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multi = (iface_count() > 1 ? True : False);
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return multi;
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}
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/****************************************************************************
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return the Nth interface
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**************************************************************************/
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struct interface *get_interface(int n)
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{
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struct interface *i;
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for (i=local_interfaces;i && n;i=i->next)
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n--;
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if (i) return i;
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return NULL;
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}
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/****************************************************************************
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return IP of the Nth interface
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**************************************************************************/
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struct in_addr *iface_n_ip(int n)
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{
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struct interface *i;
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for (i=local_interfaces;i && n;i=i->next)
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n--;
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if (i) return &i->ip;
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return NULL;
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}
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/****************************************************************************
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return bcast of the Nth interface
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**************************************************************************/
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struct in_addr *iface_n_bcast(int n)
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{
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struct interface *i;
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for (i=local_interfaces;i && n;i=i->next)
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n--;
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if (i) return &i->bcast;
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return NULL;
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}
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/****************************************************************************
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this function provides a simple hash of the configured interfaces. It is
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used to detect a change in interfaces to tell us whether to discard
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the current wins.dat file.
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Note that the result is independent of the order of the interfaces
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**************************************************************************/
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unsigned iface_hash(void)
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{
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unsigned ret = 0;
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struct interface *i;
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for (i=local_interfaces;i;i=i->next) {
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unsigned x1 = (unsigned)str_checksum(inet_ntoa(i->ip));
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unsigned x2 = (unsigned)str_checksum(inet_ntoa(i->nmask));
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ret ^= (x1 ^ x2);
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}
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return ret;
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}
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/* these 3 functions return the ip/bcast/nmask for the interface
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most appropriate for the given ip address. If they can't find
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an appropriate interface they return the requested field of the
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first known interface. */
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struct in_addr *iface_bcast(struct in_addr ip)
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{
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struct interface *i = iface_find(ip, True);
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return(i ? &i->bcast : &local_interfaces->bcast);
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}
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struct in_addr *iface_ip(struct in_addr ip)
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{
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struct interface *i = iface_find(ip, True);
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return(i ? &i->ip : &local_interfaces->ip);
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}
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