ip: add AMT support
Add basic support for Automatic Multicast Tunneling (AMT) network devices. Signed-off-by: Taehee Yoo <ap420073@gmail.com>
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9cae1de564
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6e15d27aae
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@ -11,7 +11,8 @@ IPOBJ=ip.o ipaddress.o ipaddrlabel.o iproute.o iprule.o ipnetns.o \
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iplink_bridge.o iplink_bridge_slave.o ipfou.o iplink_ipvlan.o \
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iplink_geneve.o iplink_vrf.o iproute_lwtunnel.o ipmacsec.o ipila.o \
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ipvrf.o iplink_xstats.o ipseg6.o iplink_netdevsim.o iplink_rmnet.o \
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ipnexthop.o ipmptcp.o iplink_bareudp.o iplink_wwan.o ipioam6.o
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ipnexthop.o ipmptcp.o iplink_bareudp.o iplink_wwan.o ipioam6.o \
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iplink_amt.o
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RTMONOBJ=rtmon.o
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4
ip/ip.c
4
ip/ip.c
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@ -64,8 +64,8 @@ static void usage(void)
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fprintf(stderr,
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"Usage: ip [ OPTIONS ] OBJECT { COMMAND | help }\n"
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" ip [ -force ] -batch filename\n"
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"where OBJECT := { address | addrlabel | fou | help | ila | ioam | l2tp | link |\n"
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" macsec | maddress | monitor | mptcp | mroute | mrule |\n"
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"where OBJECT := { address | addrlabel | amt | fou | help | ila | ioam | l2tp |\n"
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" link | macsec | maddress | monitor | mptcp | mroute | mrule |\n"
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" neighbor | neighbour | netconf | netns | nexthop | ntable |\n"
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" ntbl | route | rule | sr | tap | tcpmetrics |\n"
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" token | tunnel | tuntap | vrf | xfrm }\n"
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@ -50,7 +50,7 @@ void iplink_types_usage(void)
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{
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/* Remember to add new entry here if new type is added. */
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fprintf(stderr,
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"TYPE := { bareudp | bond | bond_slave | bridge | bridge_slave |\n"
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"TYPE := { amt | bareudp | bond | bond_slave | bridge | bridge_slave |\n"
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" dummy | erspan | geneve | gre | gretap | ifb |\n"
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" ip6erspan | ip6gre | ip6gretap | ip6tnl |\n"
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" ipip | ipoib | ipvlan | ipvtap |\n"
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@ -0,0 +1,200 @@
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/*
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* iplink_amt.c AMT device support
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version
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* 2 of the License, or (at your option) any later version.
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*
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* Authors: Taehee Yoo <ap420073@gmail.com>
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*/
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <net/if.h>
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#include <linux/ip.h>
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#include <linux/if_link.h>
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#include <arpa/inet.h>
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#include <linux/amt.h>
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#include "rt_names.h"
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#include "utils.h"
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#include "ip_common.h"
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#define AMT_ATTRSET(attrs, type) (((attrs) & (1L << (type))) != 0)
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static void print_usage(FILE *f)
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{
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fprintf(f,
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"Usage: ... amt\n"
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" [ discovery IP_ADDRESS ]\n"
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" [ mode MODE ]\n"
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" [ local ADDR ]\n"
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" [ dev PHYS_DEV ]\n"
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" [ relay_port PORT ]\n"
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" [ gateway_port PORT ]\n"
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" [ max_tunnels NUMBER ]\n"
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"\n"
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"Where: ADDR := { IP_ADDRESS }\n"
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" MODE := { gateway | relay }\n"
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);
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}
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static char *modename[] = {"gateway", "relay"};
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static void usage(void)
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{
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print_usage(stderr);
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}
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static void check_duparg(__u64 *attrs, int type, const char *key,
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const char *argv)
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{
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if (!AMT_ATTRSET(*attrs, type)) {
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*attrs |= (1L << type);
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return;
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}
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duparg2(key, argv);
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}
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static int amt_parse_opt(struct link_util *lu, int argc, char **argv,
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struct nlmsghdr *n)
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{
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unsigned int mode, max_tunnels;
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inet_prefix saddr, daddr;
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__u64 attrs = 0;
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__u16 port;
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saddr.family = daddr.family = AF_UNSPEC;
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inet_prefix_reset(&saddr);
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inet_prefix_reset(&daddr);
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while (argc > 0) {
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if (strcmp(*argv, "mode") == 0) {
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NEXT_ARG();
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if (strcmp(*argv, "gateway") == 0) {
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mode = 0;
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} else if (strcmp(*argv, "relay") == 0) {
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mode = 1;
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} else {
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usage();
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return -1;
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}
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addattr32(n, 1024, IFLA_AMT_MODE, mode);
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} else if (strcmp(*argv, "relay_port") == 0) {
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NEXT_ARG();
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if (get_u16(&port, *argv, 0))
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invarg("relay_port", *argv);
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addattr16(n, 1024, IFLA_AMT_RELAY_PORT, htons(port));
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} else if (strcmp(*argv, "gateway_port") == 0) {
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NEXT_ARG();
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if (get_u16(&port, *argv, 0))
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invarg("gateway_port", *argv);
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addattr16(n, 1024, IFLA_AMT_GATEWAY_PORT, htons(port));
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} else if (strcmp(*argv, "max_tunnels") == 0) {
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NEXT_ARG();
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if (get_u32(&max_tunnels, *argv, 0))
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invarg("max_tunnels", *argv);
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addattr32(n, 1024, IFLA_AMT_MAX_TUNNELS, max_tunnels);
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} else if (strcmp(*argv, "dev") == 0) {
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unsigned int link;
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NEXT_ARG();
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link = ll_name_to_index(*argv);
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if (!link)
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exit(nodev(*argv));
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addattr32(n, 1024, IFLA_AMT_LINK, link);
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} else if (strcmp(*argv, "local") == 0) {
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NEXT_ARG();
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check_duparg(&attrs, IFLA_AMT_LOCAL_IP, "local", *argv);
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get_addr(&saddr, *argv, daddr.family);
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if (is_addrtype_inet(&saddr))
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addattr_l(n, 1024, IFLA_AMT_LOCAL_IP,
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saddr.data, saddr.bytelen);
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} else if (strcmp(*argv, "discovery") == 0) {
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NEXT_ARG();
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check_duparg(&attrs, IFLA_AMT_DISCOVERY_IP,
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"discovery", *argv);
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get_addr(&daddr, *argv, daddr.family);
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if (is_addrtype_inet(&daddr))
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addattr_l(n, 1024, IFLA_AMT_DISCOVERY_IP,
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daddr.data, daddr.bytelen);
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} else if (strcmp(*argv, "help") == 0) {
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usage();
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return -1;
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} else {
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fprintf(stderr, "amt: unknown command \"%s\"?\n", *argv);
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usage();
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return -1;
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}
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argc--, argv++;
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}
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return 0;
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}
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static void amt_print_opt(struct link_util *lu, FILE *f, struct rtattr *tb[])
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{
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if (!tb)
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return;
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if (tb[IFLA_AMT_MODE])
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print_string(PRINT_ANY, "mode", "%s ",
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modename[rta_getattr_u32(tb[IFLA_AMT_MODE])]);
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if (tb[IFLA_AMT_GATEWAY_PORT])
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print_uint(PRINT_ANY, "gateway_port", "gateway_port %u ",
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rta_getattr_be16(tb[IFLA_AMT_GATEWAY_PORT]));
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if (tb[IFLA_AMT_RELAY_PORT])
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print_uint(PRINT_ANY, "relay_port", "relay_port %u ",
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rta_getattr_be16(tb[IFLA_AMT_RELAY_PORT]));
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if (tb[IFLA_AMT_LOCAL_IP]) {
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__be32 addr = rta_getattr_u32(tb[IFLA_AMT_LOCAL_IP]);
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print_string(PRINT_ANY, "local", "local %s ",
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format_host(AF_INET, 4, &addr));
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}
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if (tb[IFLA_AMT_REMOTE_IP]) {
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__be32 addr = rta_getattr_u32(tb[IFLA_AMT_REMOTE_IP]);
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print_string(PRINT_ANY, "remote", "remote %s ",
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format_host(AF_INET, 4, &addr));
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}
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if (tb[IFLA_AMT_DISCOVERY_IP]) {
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__be32 addr = rta_getattr_u32(tb[IFLA_AMT_DISCOVERY_IP]);
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print_string(PRINT_ANY, "discovery", "discovery %s ",
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format_host(AF_INET, 4, &addr));
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}
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if (tb[IFLA_AMT_LINK]) {
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unsigned int link = rta_getattr_u32(tb[IFLA_AMT_LINK]);
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print_string(PRINT_ANY, "link", "dev %s ",
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ll_index_to_name(link));
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}
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if (tb[IFLA_AMT_MAX_TUNNELS])
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print_uint(PRINT_ANY, "max_tunnels", "max_tunnels %u ",
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rta_getattr_u32(tb[IFLA_AMT_MAX_TUNNELS]));
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}
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static void amt_print_help(struct link_util *lu, int argc, char **argv, FILE *f)
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{
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print_usage(f);
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}
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struct link_util amt_link_util = {
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.id = "amt",
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.maxattr = IFLA_AMT_MAX,
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.parse_opt = amt_parse_opt,
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.print_opt = amt_print_opt,
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.print_help = amt_print_help,
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};
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@ -198,6 +198,7 @@ ip-link \- network device configuration
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.ti -8
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.IR TYPE " := [ "
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.BR amt " | "
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.BR bridge " | "
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.BR bond " | "
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.BR can " | "
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@ -364,6 +365,9 @@ Link types:
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.BR bareudp
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- Bare UDP L3 encapsulation support
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.sp
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.BR amt
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- Automatic Multicast Tunneling (AMT)
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.sp
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.BR macsec
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- Interface for IEEE 802.1AE MAC Security (MACsec)
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.sp
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@ -1344,6 +1348,48 @@ When
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is "ipv4", this allows the tunnel to also handle IPv6. This option is disabled
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by default.
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.TP
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AMT Type Support
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For a link of type
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.I AMT
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the following additional arguments are supported:
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.BI "ip link add " DEVICE
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.BI type " AMT " discovery " IPADDR " mode " { " gateway " | " relay " } "
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.BI local " IPADDR " dev " PHYS_DEV " [
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.BI relay_port " PORT " ]
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[
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.BI gateway_port " PORT " ]
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[
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.BI max_tunnels " NUMBER "
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]
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.in +8
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.sp
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.BI discovery " IPADDR"
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- specifies the unicast discovery IP address to use to find remote IP address.
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.BR mode " { " gateway " | " relay " } "
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- specifies the role of AMT, Gateway or Relay
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.BI local " IPADDR "
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- specifies the source IP address to use in outgoing packets.
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.BI dev " PHYS_DEV "
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- specifies the underlying physical interface from which transform traffic
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is sent and received.
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.BI relay_port " PORT "
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- specifies the UDP Relay port to communicate to the Relay.
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.BI gateway_port " PORT "
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- specifies the UDP Gateway port to communicate to the Gateway.
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.BI max_tunnels " NUMBER "
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- specifies the maximum number of tunnels.
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.in -8
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.TP
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MACVLAN and MACVTAP Type Support
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For a link of type
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