0d688befe3
Added the ability to: * Create virtual interfaces * Create vlan interfaces * Get interface fib * Get interface groups * Get interface status * Get nd6 info * Get media status * Get additional ifaddr info in a convenient struct * Get vhids * Get carp info * Get lagg and laggport status * Iterate over all interfaces and ifaddrs And add more examples, too. Note that this is a backwards-incompatible change. But that's ok, because it's a private library. MFC after: 3 weeks Sponsored by: Spectra Logic Corp Differential Revision: https://reviews.freebsd.org/D14463
257 lines
9.3 KiB
C
257 lines
9.3 KiB
C
/*
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* Copyright (c) 2016-2017, Marie Helene Kvello-Aune
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without modification,
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* are permitted provided that the following conditions are met:
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*
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* 1. Redistributions of source code must retain the above copyright notice,
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* thislist of conditions and the following disclaimer.
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*
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* 2. Redistributions in binary form must reproduce the above copyright notice,
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* this list of conditions and the following disclaimer in the documentation and/or
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* other materials provided with the distribution.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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* AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO,
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* THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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* ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE
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* FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
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* SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
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* CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
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* OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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* OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*
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* $FreeBSD$
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*/
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#pragma once
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#include <netinet/in.h>
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#include <netinet6/in6_var.h>
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#define ND6_IFF_DEFAULTIF 0x8000
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typedef enum {
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OK = 0,
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OTHER,
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IOCTL,
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SOCKET
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} ifconfig_errtype;
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/*
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* Opaque definition so calling application can just pass a
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* pointer to it for library use.
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*/
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struct ifconfig_handle;
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typedef struct ifconfig_handle ifconfig_handle_t;
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struct carpreq;
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struct ifaddrs;
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struct in6_ndireq;
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struct lagg_reqall;
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struct lagg_reqflags;
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struct lagg_reqopts;
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struct lagg_reqport;
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struct ifconfig_capabilities {
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/** Current capabilities (ifconfig prints this as 'options')*/
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int curcap;
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/** Requested capabilities (ifconfig prints this as 'capabilities')*/
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int reqcap;
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};
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/** Stores extra info associated with an inet address */
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struct ifconfig_inet_addr {
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const struct sockaddr_in *sin;
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const struct sockaddr_in *netmask;
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const struct sockaddr_in *dst;
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const struct sockaddr_in *broadcast;
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int prefixlen;
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uint8_t vhid;
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};
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/** Stores extra info associated with an inet6 address */
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struct ifconfig_inet6_addr {
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struct sockaddr_in6 *sin6;
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struct sockaddr_in6 *dstin6;
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struct in6_addrlifetime lifetime;
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int prefixlen;
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uint32_t flags;
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uint8_t vhid;
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};
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/** Stores extra info associated with a lagg(4) interface */
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struct ifconfig_lagg_status {
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struct lagg_reqall *ra;
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struct lagg_reqopts *ro;
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struct lagg_reqflags *rf;
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};
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/** Retrieves a new state object for use in other API calls.
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* Example usage:
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*{@code
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* // Create state object
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* ifconfig_handle_t *lifh;
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* lifh = ifconfig_open();
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* if (lifh == NULL) {
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* // Handle error
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* }
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*
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* // Do stuff with the handle
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*
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* // Dispose of the state object
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* ifconfig_close(lifh);
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* lifh = NULL;
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*}
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*/
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ifconfig_handle_t *ifconfig_open(void);
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/** Frees resources held in the provided state object.
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* @param h The state object to close.
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* @see #ifconfig_open(void)
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*/
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void ifconfig_close(ifconfig_handle_t *h);
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/** Identifies what kind of error occured. */
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ifconfig_errtype ifconfig_err_errtype(ifconfig_handle_t *h);
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/** Retrieves the errno associated with the error, if any. */
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int ifconfig_err_errno(ifconfig_handle_t *h);
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typedef void (*ifconfig_foreach_func_t)(ifconfig_handle_t *h,
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struct ifaddrs *ifa, void *udata);
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/** Iterate over every network interface
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* @param h An open ifconfig state object
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* @param cb A callback function to call with a pointer to each interface
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* @param udata An opaque value that will be passed to the callback.
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* @return 0 on success, nonzero if the list could not be iterated
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*/
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int ifconfig_foreach_iface(ifconfig_handle_t *h, ifconfig_foreach_func_t cb,
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void *udata);
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/** Iterate over every address on a single network interface
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* @param h An open ifconfig state object
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* @param ifa A pointer that was supplied by a previous call to
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* ifconfig_foreach_iface
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* @param udata An opaque value that will be passed to the callback.
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* @param cb A callback function to call with a pointer to each ifaddr
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*/
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void ifconfig_foreach_ifaddr(ifconfig_handle_t *h, struct ifaddrs *ifa,
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ifconfig_foreach_func_t cb, void *udata);
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/** If error type was IOCTL, this identifies which request failed. */
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unsigned long ifconfig_err_ioctlreq(ifconfig_handle_t *h);
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int ifconfig_get_description(ifconfig_handle_t *h, const char *name,
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char **description);
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int ifconfig_set_description(ifconfig_handle_t *h, const char *name,
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const char *newdescription);
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int ifconfig_unset_description(ifconfig_handle_t *h, const char *name);
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int ifconfig_set_name(ifconfig_handle_t *h, const char *name,
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const char *newname);
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int ifconfig_get_orig_name(ifconfig_handle_t *h, const char *ifname,
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char **orig_name);
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int ifconfig_set_fib(ifconfig_handle_t *h, const char *name, int fib);
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int ifconfig_get_fib(ifconfig_handle_t *h, const char *name, int *fib);
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int ifconfig_set_mtu(ifconfig_handle_t *h, const char *name, const int mtu);
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int ifconfig_get_mtu(ifconfig_handle_t *h, const char *name, int *mtu);
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int ifconfig_get_nd6(ifconfig_handle_t *h, const char *name,
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struct in6_ndireq *nd);
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int ifconfig_set_metric(ifconfig_handle_t *h, const char *name,
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const int metric);
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int ifconfig_get_metric(ifconfig_handle_t *h, const char *name, int *metric);
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int ifconfig_set_capability(ifconfig_handle_t *h, const char *name,
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const int capability);
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int ifconfig_get_capability(ifconfig_handle_t *h, const char *name,
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struct ifconfig_capabilities *capability);
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/** Retrieve the list of groups to which this interface belongs
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* @param h An open ifconfig state object
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* @param name The interface name
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* @param ifgr return argument. The caller is responsible for freeing
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* ifgr->ifgr_groups
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* @return 0 on success, nonzero on failure
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*/
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int ifconfig_get_groups(ifconfig_handle_t *h, const char *name,
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struct ifgroupreq *ifgr);
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int ifconfig_get_ifstatus(ifconfig_handle_t *h, const char *name,
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struct ifstat *stat);
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/** Retrieve the interface media information
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* @param h An open ifconfig state object
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* @param name The interface name
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* @param ifmr Return argument. The caller is responsible for freeing it
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* @return 0 on success, nonzero on failure
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*/
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int ifconfig_media_get_mediareq(ifconfig_handle_t *h, const char *name,
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struct ifmediareq **ifmr);
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const char *ifconfig_media_get_type(int ifmw);
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const char *ifconfig_media_get_subtype(int ifmw);
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const char *ifconfig_media_get_status(const struct ifmediareq *ifmr);
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void ifconfig_media_get_options_string(int ifmw, char *buf, size_t buflen);
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int ifconfig_carp_get_info(ifconfig_handle_t *h, const char *name,
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struct carpreq *carpr, int ncarpr);
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/** Retrieve additional information about an inet address
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* @param h An open ifconfig state object
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* @param name The interface name
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* @param ifa Pointer to the the address structure of interest
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* @param addr Return argument. It will be filled with additional information
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* about the address.
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* @return 0 on success, nonzero on failure.
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*/
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int ifconfig_inet_get_addrinfo(ifconfig_handle_t *h,
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const char *name, struct ifaddrs *ifa, struct ifconfig_inet_addr *addr);
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/** Retrieve additional information about an inet6 address
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* @param h An open ifconfig state object
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* @param name The interface name
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* @param ifa Pointer to the the address structure of interest
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* @param addr Return argument. It will be filled with additional information
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* about the address.
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* @return 0 on success, nonzero on failure.
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*/
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int ifconfig_inet6_get_addrinfo(ifconfig_handle_t *h,
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const char *name, struct ifaddrs *ifa, struct ifconfig_inet6_addr *addr);
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/** Retrieve additional information about a lagg(4) interface */
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int ifconfig_lagg_get_lagg_status(ifconfig_handle_t *h,
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const char *name, struct ifconfig_lagg_status **lagg_status);
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/** Retrieve additional information about a member of a lagg(4) interface */
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int ifconfig_lagg_get_laggport_status(ifconfig_handle_t *h,
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const char *name, struct lagg_reqport *rp);
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/** Frees the structure returned by ifconfig_lagg_get_status. Does nothing if
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* the argument is NULL
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* @param laggstat Pointer to the structure to free
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*/
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void ifconfig_lagg_free_lagg_status(struct ifconfig_lagg_status *laggstat);
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/** Destroy a virtual interface
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* @param name Interface to destroy
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*/
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int ifconfig_destroy_interface(ifconfig_handle_t *h, const char *name);
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/** Creates a (virtual) interface
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* @param name Name of interface to create. Example: bridge or bridge42
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* @param name ifname Is set to actual name of created interface
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*/
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int ifconfig_create_interface(ifconfig_handle_t *h, const char *name,
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char **ifname);
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/** Creates a (virtual) interface
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* @param name Name of interface to create. Example: vlan0 or ix0.50
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* @param name ifname Is set to actual name of created interface
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* @param vlandev Name of interface to attach to
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* @param vlanid VLAN ID/Tag. Must not be 0.
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*/
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int ifconfig_create_interface_vlan(ifconfig_handle_t *h, const char *name,
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char **ifname, const char *vlandev, const unsigned short vlantag);
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int ifconfig_set_vlantag(ifconfig_handle_t *h, const char *name,
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const char *vlandev, const unsigned short vlantag);
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