NetworkManager/src/backends/NetworkManagerDebian.c

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/* NetworkManager -- Network link manager
*
* Matthew Garrett <mjg59@srcf.ucam.org>
*
* Heavily based on NetworkManagerRedhat.c by Dan Williams <dcbw@redhat.com>
*
* 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
* the Free Software Foundation; either version 2 of the License, or
* (at your option) any later version.
*
* 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.
*
* You should have received a copy of the GNU General Public License
* along with this program; if not, write to the Free Software
* Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
*
* (C) Copyright 2004 Tom Parker
* (C) Copyright 2004 Matthew Garrett
* (C) Copyright 2004 Red Hat, Inc.
*/
#include <stdio.h>
#include <sys/types.h>
#include <signal.h>
#include <arpa/inet.h>
#include "NetworkManagerSystem.h"
#include "NetworkManagerUtils.h"
#include "NetworkManagerDevice.h"
#include "interface_parser.h"
#define ARPING "/usr/sbin/arping"
/*
* nm_system_init
*
* Initializes the distribution-specific system backend
*
*/
void nm_system_init (void)
{
}
/*
* nm_system_device_flush_routes
*
* Flush all routes associated with a network device
*
*/
void nm_system_device_flush_routes (NMDevice *dev)
{
char *buf;
g_return_if_fail (dev != NULL);
2004-08-31 Dan Williams <dcbw@redhat.com> * Remove 'debug' extern global from all files since we now use syslog() * src/NetworkManager.[ch] - Break out routine that get the net.interface property from HAL, removing that logic from nm_create_device_and_add_to_list() - (nm_create_device_and_add_to_list): make this a bit more general so it doesn't do the talking to HAL. Also add arguments to facilitate the create of test devices. - (nm_data_mark_state_changed): rename from nm_data_set_state_modified() - (nm_data_new, main, nm_print_usage): add new argument "--enable-test-devices" which makes NetworkManager listen for dbus commands to create test devices, which have no backing hardware. Use when you're on a plane for example, and/or forgot your wireless card at home. Test devices _cannot_ be created unless NM is started with --enable-test-devices. * src/NetworkManagerDbus.[ch] - New "getLinkActive" method for devices - New "setLinkActive" method for devices (only works on test devices) - New "createTestDevice" method on NetworkManager object to create a test device of a specified type (ie wired, wireless). UDI is created from scratch, as is the interface name. Only works when NM is started with --enable-test-devices switch. - New "removeTestDevice" method on NetworkManager object which removes a test device. Only works when NM is started with --enable-test-devices * src/NetworkManagerDevice.[ch] - Logic to facilitate test devices. Add variables to NMDevice struct to indicate whether a device is a test device or not, and what its link status is. - Deal with test devices in most functions. For those that work directly on hardware special-case test devices. - (nm_device_new): don't create a test device if test devices weren't enabled on the command-line. - (nm_device_update_link_active): split out logic for wired and wireless device link checking to separate functions to facilitate test device link checking. - (nm_device_set_enc_key): Since some drivers for wireless cards are daft and don't make a distinction between System Authentication and Encryption (namely Cisco aironet), we use Open System auth when setting a WEP key on the card. We don't deal with Shared Key auth yet. - (nm_device_activation_worker): split the activation cancel check logic out into a separate routine nm_device_activation_cancel_if_needed() - (nm_device_activation_signal_cancel): rename from nm_device_activation_cancel() - (nm_device_fake_ap_list): Test wireless devices obviously cannot scan, so create a list of fake access points that they can "see" - (nm_device_is_test_device): return whether or not a device is a test device * src/NetworkManagerPolicy.c - (nm_policy_get_best_device): attempt to deal with wireless network selection, previously if you "locked"/forced NM to use a wireless device but then selected a wireless network for NM to use, it would switch to a wired device. So, if the active device is wireless and it has a "forced" best AP, use it if the "forced" best AP is still valid - (nm_state_modification_monitor): deal with NULL best devices, for example there were no usable network devices, or the last one was removed * src/backends/NetworkManager*.c - Deal with test devices, mostly just return success for operations like getting a DHCP address * test/nmtestdevices.c - Test tool to create/remove/link-switch test devices git-svn-id: http://svn-archive.gnome.org/svn/NetworkManager/trunk@112 4912f4e0-d625-0410-9fb7-b9a5a253dbdc
2004-08-31 16:09:15 +00:00
/* Not really applicable for test devices */
if (nm_device_is_test_device (dev))
return;
/* Remove routing table entries */
buf = g_strdup_printf ("/sbin/ip route flush dev %s", nm_device_get_iface (dev));
nm_spawn_process (buf);
g_free (buf);
}
/*
* nm_system_device_add_default_route_via_device
*
* Add default route to the given device
*
*/
void nm_system_device_add_default_route_via_device (NMDevice *dev)
{
char *buf;
g_return_if_fail (dev != NULL);
/* Not really applicable for test devices */
if (nm_device_is_test_device (dev))
return;
/* Add default gateway */
buf = g_strdup_printf ("/sbin/ip route add default dev %s", nm_device_get_iface (dev));
nm_spawn_process (buf);
g_free (buf);
}
/*
* nm_system_device_flush_addresses
*
* Flush all network addresses associated with a network device
*
*/
void nm_system_device_flush_addresses (NMDevice *dev)
{
char *buf;
g_return_if_fail (dev != NULL);
2004-08-31 Dan Williams <dcbw@redhat.com> * Remove 'debug' extern global from all files since we now use syslog() * src/NetworkManager.[ch] - Break out routine that get the net.interface property from HAL, removing that logic from nm_create_device_and_add_to_list() - (nm_create_device_and_add_to_list): make this a bit more general so it doesn't do the talking to HAL. Also add arguments to facilitate the create of test devices. - (nm_data_mark_state_changed): rename from nm_data_set_state_modified() - (nm_data_new, main, nm_print_usage): add new argument "--enable-test-devices" which makes NetworkManager listen for dbus commands to create test devices, which have no backing hardware. Use when you're on a plane for example, and/or forgot your wireless card at home. Test devices _cannot_ be created unless NM is started with --enable-test-devices. * src/NetworkManagerDbus.[ch] - New "getLinkActive" method for devices - New "setLinkActive" method for devices (only works on test devices) - New "createTestDevice" method on NetworkManager object to create a test device of a specified type (ie wired, wireless). UDI is created from scratch, as is the interface name. Only works when NM is started with --enable-test-devices switch. - New "removeTestDevice" method on NetworkManager object which removes a test device. Only works when NM is started with --enable-test-devices * src/NetworkManagerDevice.[ch] - Logic to facilitate test devices. Add variables to NMDevice struct to indicate whether a device is a test device or not, and what its link status is. - Deal with test devices in most functions. For those that work directly on hardware special-case test devices. - (nm_device_new): don't create a test device if test devices weren't enabled on the command-line. - (nm_device_update_link_active): split out logic for wired and wireless device link checking to separate functions to facilitate test device link checking. - (nm_device_set_enc_key): Since some drivers for wireless cards are daft and don't make a distinction between System Authentication and Encryption (namely Cisco aironet), we use Open System auth when setting a WEP key on the card. We don't deal with Shared Key auth yet. - (nm_device_activation_worker): split the activation cancel check logic out into a separate routine nm_device_activation_cancel_if_needed() - (nm_device_activation_signal_cancel): rename from nm_device_activation_cancel() - (nm_device_fake_ap_list): Test wireless devices obviously cannot scan, so create a list of fake access points that they can "see" - (nm_device_is_test_device): return whether or not a device is a test device * src/NetworkManagerPolicy.c - (nm_policy_get_best_device): attempt to deal with wireless network selection, previously if you "locked"/forced NM to use a wireless device but then selected a wireless network for NM to use, it would switch to a wired device. So, if the active device is wireless and it has a "forced" best AP, use it if the "forced" best AP is still valid - (nm_state_modification_monitor): deal with NULL best devices, for example there were no usable network devices, or the last one was removed * src/backends/NetworkManager*.c - Deal with test devices, mostly just return success for operations like getting a DHCP address * test/nmtestdevices.c - Test tool to create/remove/link-switch test devices git-svn-id: http://svn-archive.gnome.org/svn/NetworkManager/trunk@112 4912f4e0-d625-0410-9fb7-b9a5a253dbdc
2004-08-31 16:09:15 +00:00
/* Not really applicable for test devices */
if (nm_device_is_test_device (dev))
return;
/* Remove all IP addresses for a device */
buf = g_strdup_printf ("/sbin/ip address flush dev %s",
nm_device_get_iface (dev));
nm_spawn_process (buf);
g_free (buf);
}
/*
* nm_system_device_setup_static_ip4_config
*
* Set up the device with a particular IPv4 address/netmask/gateway.
*
* Returns: TRUE on success
* FALSE on error
*
*/
gboolean nm_system_device_setup_static_ip4_config (NMDevice *dev)
{
#define IPBITS (sizeof (guint32) * 8)
struct in_addr temp_addr;
struct in_addr temp_addr2;
char *s_tmp;
char *s_tmp2;
int i;
guint32 addr;
guint32 netmask;
guint32 prefix = IPBITS; /* initialize with # bits in ipv4 address */
guint32 broadcast;
char *buf;
int err;
const char *iface;
g_return_val_if_fail (dev != NULL, FALSE);
g_return_val_if_fail (!nm_device_config_get_use_dhcp (dev), FALSE);
addr = nm_device_config_get_ip4_address (dev);
netmask = nm_device_config_get_ip4_netmask (dev);
iface = nm_device_get_iface (dev);
broadcast = nm_device_config_get_ip4_broadcast (dev);
/* get the prefix from the netmask */
for (i = 0; i < IPBITS; i++)
{
if (!(ntohl (netmask) & ((2 << i) - 1)))
prefix--;
}
/* Calculate the broadcast address if the user didn't specify one */
if (!broadcast)
broadcast = ((addr & (int)netmask) | ~(int)netmask);
/*
* Try and work out if someone else has our IP
* using RFC 2131 Duplicate Address Detection
*/
temp_addr.s_addr = addr;
buf = g_strdup_printf ("%s -q -D -c 1 -I %s %s",ARPING,
iface, inet_ntoa (temp_addr));
if ((err = nm_spawn_process (buf)))
{
syslog (LOG_ERR, "Error: Duplicate address '%s' detected for "
"device '%s' \n", iface, inet_ntoa (temp_addr));
goto error;
}
g_free (buf);
/* set our IP address */
temp_addr.s_addr = addr;
temp_addr2.s_addr = broadcast;
s_tmp = g_strdup (inet_ntoa (temp_addr));
s_tmp2 = g_strdup (inet_ntoa (temp_addr2));
buf = g_strdup_printf ("/sbin/ip addr add %s/%d brd %s dev %s label %s",
s_tmp, prefix, s_tmp2, iface, iface);
g_free (s_tmp);
g_free (s_tmp2);
if ((err = nm_spawn_process (buf)))
{
syslog (LOG_ERR, "Error: could not set network configuration for "
"device '%s' using command:\n '%s'",
iface, buf);
goto error;
}
g_free (buf);
/* Alert other computers of our new address */
temp_addr.s_addr = addr;
buf = g_strdup_printf ("%s -q -A -c 1 -I %s %s", ARPING,iface,
inet_ntoa (temp_addr));
nm_spawn_process (buf);
g_free (buf);
g_usleep (G_USEC_PER_SEC * 2);
buf = g_strdup_printf ("%s -q -U -c 1 -I %s %s", ARPING, iface,
inet_ntoa (temp_addr));
nm_spawn_process (buf);
g_free (buf);
/* set the default route to be this device's gateway */
temp_addr.s_addr = nm_device_config_get_ip4_gateway (dev);
buf = g_strdup_printf ("/sbin/ip route replace default via %s dev %s",
inet_ntoa (temp_addr), iface);
if ((err = nm_spawn_process (buf)))
{
syslog (LOG_ERR, "Error: could not set default route using "
"command:\n '%s'", buf);
goto error;
}
g_free (buf);
return (TRUE);
error:
g_free (buf);
nm_system_device_flush_addresses (dev);
nm_system_device_flush_routes (dev);
return (FALSE);
}
/*
* nm_system_enable_loopback
*
* Bring up the loopback interface
*
*/
void nm_system_enable_loopback (void)
{
nm_spawn_process ("/sbin/ifup lo");
}
/*
* nm_system_flush_loopback_routes
*
* Flush all routes associated with the loopback device, because it
* sometimes gets the first route for ZeroConf/Link-Local traffic.
*
*/
void nm_system_flush_loopback_routes (void)
{
nm_spawn_process ("/sbin/ip route flush dev lo");
}
/*
* nm_system_delete_default_route
*
* Remove the old default route in preparation for a new one
*
*/
void nm_system_delete_default_route (void)
{
nm_spawn_process ("/sbin/ip route del default");
}
/*
* nm_system_flush_arp_cache
*
* Flush all entries in the arp cache.
*
*/
void nm_system_flush_arp_cache (void)
{
nm_spawn_process ("/sbin/ip neigh flush all");
}
/*
* nm_system_kill_all_dhcp_daemons
*
* Kill all DHCP daemons currently running, done at startup.
*
*/
void nm_system_kill_all_dhcp_daemons (void)
{
nm_spawn_process ("/usr/bin/killall -q dhclient");
}
/*
* nm_system_update_dns
*
* Make glibc/nscd aware of any changes to the resolv.conf file by
* restarting nscd.
*
*/
void nm_system_update_dns (void)
{
nm_spawn_process ("/usr/sbin/invoke-rc.d nscd restart");
}
/*
* nm_system_load_device_modules
*
* This is a null op - all our drivers should already be loaded.
*
*/
void nm_system_load_device_modules (void)
{
return;
}
/*
* nm_system_restart_mdns_responder
*
* Restart the multicast DNS responder so that it knows about new
* network interfaces and IP addresses.
*
*/
void nm_system_restart_mdns_responder (void)
{
nm_spawn_process ("/usr/bin/killall -q -USR1 mDNSResponder");
}
/*
* nm_system_device_add_ip6_link_address
*
* Add a default link-local IPv6 address to a device.
*
*/
void nm_system_device_add_ip6_link_address (NMDevice *dev)
{
char *buf;
unsigned char eui[8];
nm_device_get_hw_address(dev, eui);
memmove(eui+5, eui+3, 3);
eui[3] = 0xff;
eui[4] = 0xfe;
eui[0] ^= 2;
/* Add the default link-local IPv6 address to a device */
buf = g_strdup_printf ("/sbin/ip -6 address add fe80::%x%02x:%x%02x:%x%02x:%x%02x/64 dev %s",
eui[0], eui[1], eui[2], eui[3],
eui[4], eui[5],
eui[6], eui[7], nm_device_get_iface (dev));
nm_spawn_process (buf);
g_free (buf);
}
/*
* nm_system_device_update_config_info
*
* Retrieve any relevant configuration info for a particular device
* from the system network configuration information. Clear out existing
* info before setting stuff too.
*
*/
void nm_system_device_update_config_info (NMDevice *dev)
{
gboolean use_dhcp = TRUE;
guint32 ip4_address = 0;
guint32 ip4_netmask = 0;
guint32 ip4_gateway = 0;
guint32 ip4_broadcast = 0;
if_block *curr_device;
const char *buf;
g_return_if_fail (dev != NULL);
/* We use DHCP on an interface unless told not to */
nm_device_config_set_use_dhcp (dev, TRUE);
nm_device_config_set_ip4_address (dev, 0);
nm_device_config_set_ip4_gateway (dev, 0);
nm_device_config_set_ip4_netmask (dev, 0);
nm_device_config_set_ip4_broadcast (dev, 0);
ifparser_init();
/* Make sure this config file is for this device */
curr_device = ifparser_getif(nm_device_get_iface (dev));
if (curr_device == NULL)
goto out;
buf = ifparser_getkey(curr_device, "inet");
if (buf)
{
if (strcmp (buf, "dhcp")!=0)
use_dhcp = FALSE;
}
buf = ifparser_getkey (curr_device, "address");
if (buf)
ip4_address = inet_addr (buf);
buf = ifparser_getkey (curr_device, "gateway");
if (buf)
ip4_gateway = inet_addr (buf);
buf = ifparser_getkey (curr_device, "netmask");
if (buf)
ip4_netmask = inet_addr (buf);
else
{
/* Make a default netmask if we have an IP address */
if (ip4_address)
{
if (((ntohl (ip4_address) & 0xFF000000) >> 24) <= 127)
ip4_netmask = htonl (0xFF000000);
else if (((ntohl (ip4_address) & 0xFF000000) >> 24) <= 191)
ip4_netmask = htonl (0xFFFF0000);
else
ip4_netmask = htonl (0xFFFFFF00);
}
}
buf = ifparser_getkey (curr_device, "broadcast");
if (buf)
ip4_broadcast = inet_addr (buf);
if (!use_dhcp && (!ip4_address || !ip4_gateway || !ip4_netmask))
{
syslog (LOG_ERR, "Error: network configuration for device '%s' was invalid (non-DHCP configuration,"
" but no address/gateway specificed). Will use DHCP instead.\n", nm_device_get_iface (dev));
use_dhcp = TRUE;
}
/* If successful, set values on the device */
nm_device_config_set_use_dhcp (dev, use_dhcp);
if (ip4_address)
nm_device_config_set_ip4_address (dev, ip4_address);
if (ip4_gateway)
nm_device_config_set_ip4_gateway (dev, ip4_gateway);
if (ip4_netmask)
nm_device_config_set_ip4_netmask (dev, ip4_netmask);
if (ip4_broadcast)
nm_device_config_set_ip4_broadcast (dev, ip4_broadcast);
#if 0
syslog (LOG_DEBUG, "------ Config (%s)", nm_device_get_iface (dev));
syslog (LOG_DEBUG, " DHCP=%d\n", use_dhcp);
syslog (LOG_DEBUG, " ADDR=%d\n", ip4_address);
syslog (LOG_DEBUG, " GW=%d\n", ip4_gateway);
syslog (LOG_DEBUG, " NM=%d\n", ip4_netmask);
syslog (LOG_DEBUG, "---------------------\n");
#endif
out:
ifparser_destroy();
}