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https://git.kernel.org/pub/scm/network/iproute2/iproute2.git
synced 2024-12-13 19:54:11 +08:00
iproute2: macvlan: add "source" mode
Adjusting iproute2 utility to support new macvlan link type mode called "source". Example of commands that can be applied: ip link add link eth0 name macvlan0 type macvlan mode source ip link set link dev macvlan0 type macvlan macaddr add 00:11:11:11:11:11 ip link set link dev macvlan0 type macvlan macaddr del 00:11:11:11:11:11 ip link set link dev macvlan0 type macvlan macaddr flush ip -details link show dev macvlan0 Based on previous work of Stefan Gula <steweg@gmail.com> Signed-off-by: Michael Braun <michael-dev@fami-braun.de> Cc: steweg@gmail.com
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@ -402,6 +402,8 @@ enum macvlan_macaddr_mode {
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};
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#define MACVLAN_FLAG_NOPROMISC 1
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#define MACVLAN_FLAG_UNICAST 2
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#define MACVLAN_FLAG_UNICAST_ALL 4
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/* VRF section */
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enum {
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@ -15,6 +15,7 @@
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#include <string.h>
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#include <sys/socket.h>
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#include <linux/if_link.h>
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#include <linux/if_ether.h>
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#include "rt_names.h"
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#include "utils.h"
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@ -29,7 +30,11 @@
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static void print_explain(struct link_util *lu, FILE *f)
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{
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fprintf(f,
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"Usage: ... %s mode { private | vepa | bridge | passthru [nopromisc] }\n",
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"Usage: ... %s mode MODE [flag MODE_FLAG] MODE_OPTS\n"
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"MODE: private | vepa | bridge | passthru | source\n"
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"MODE_FLAG: null | nopromisc | unicast | unicast_all\n"
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"MODE_OPTS: for mode \"source\":\n"
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"\tmacaddr { add <macaddr> | del <macaddr> | flush }\n",
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lu->id
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);
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}
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@ -41,7 +46,14 @@ static void explain(struct link_util *lu)
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static int mode_arg(const char *arg)
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{
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fprintf(stderr, "Error: argument of \"mode\" must be \"private\", \"vepa\", \"bridge\" or \"passthru\", not \"%s\"\n",
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fprintf(stderr, "Error: argument of \"mode\" must be \"private\", \"vepa\", \"bridge\", \"passthru\" or \"source\", not \"%s\"\n",
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arg);
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return -1;
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}
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static int flag_arg(const char *arg)
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{
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fprintf(stderr, "Error: argument of \"flag\" must be \"nopromisc\", \"unicast\", \"unicast_all\" or \"null\", not \"%s\"\n",
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arg);
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return -1;
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}
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@ -51,6 +63,9 @@ static int macvlan_parse_opt(struct link_util *lu, int argc, char **argv,
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{
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__u32 mode = 0;
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__u16 flags = 0;
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__u32 mac_mode = 0;
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int len = 0;
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char abuf[32];
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while (argc > 0) {
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if (matches(*argv, "mode") == 0) {
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@ -64,8 +79,45 @@ static int macvlan_parse_opt(struct link_util *lu, int argc, char **argv,
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mode = MACVLAN_MODE_BRIDGE;
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else if (strcmp(*argv, "passthru") == 0)
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mode = MACVLAN_MODE_PASSTHRU;
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else if (strcmp(*argv, "source") == 0)
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mode = MACVLAN_MODE_SOURCE;
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else
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return mode_arg(*argv);
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} else if (matches(*argv, "flag") == 0) {
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NEXT_ARG();
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if (strcmp(*argv, "nopromisc") == 0)
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flags |= MACVLAN_FLAG_NOPROMISC;
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else if (strcmp(*argv, "unicast") == 0)
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flags |= MACVLAN_FLAG_UNICAST;
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else if (strcmp(*argv, "unicast_all") == 0)
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flags |= MACVLAN_FLAG_UNICAST_ALL;
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else if (strcmp(*argv, "null") == 0)
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flags |= 0;
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else
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return flag_arg(*argv);
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} else if (matches(*argv, "macaddr") == 0) {
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NEXT_ARG();
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if (strcmp(*argv, "add") == 0) {
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mac_mode = MACVLAN_MACADDR_ADD;
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} else if (strcmp(*argv, "del") == 0) {
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mac_mode = MACVLAN_MACADDR_DEL;
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} else if (strcmp(*argv, "flush") == 0) {
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mac_mode = MACVLAN_MACADDR_FLUSH;
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} else {
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explain(lu);
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return -1;
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}
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if (mac_mode != MACVLAN_MACADDR_FLUSH) {
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NEXT_ARG();
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len = ll_addr_a2n(abuf, sizeof(abuf), *argv);
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if (len < 0)
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return -1;
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}
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} else if (matches(*argv, "nopromisc") == 0) {
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flags |= MACVLAN_FLAG_NOPROMISC;
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} else if (matches(*argv, "help") == 0) {
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@ -91,6 +143,12 @@ static int macvlan_parse_opt(struct link_util *lu, int argc, char **argv,
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}
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addattr16(n, 1024, IFLA_MACVLAN_FLAGS, flags);
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}
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if (mac_mode) {
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addattr32(n, 1024, IFLA_MACVLAN_MACADDR_MODE, mac_mode);
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if (mac_mode != MACVLAN_MACADDR_FLUSH && len > 0)
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addattr_l(n, 1024, IFLA_MACVLAN_MACADDR, abuf, len);
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}
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return 0;
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}
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@ -98,6 +156,10 @@ static void macvlan_print_opt(struct link_util *lu, FILE *f, struct rtattr *tb[]
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{
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__u32 mode;
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__u16 flags;
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__u32 count;
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unsigned char *addr;
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int len;
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struct rtattr *rta;
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if (!tb)
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return;
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@ -112,15 +174,48 @@ static void macvlan_print_opt(struct link_util *lu, FILE *f, struct rtattr *tb[]
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: mode == MACVLAN_MODE_VEPA ? "vepa"
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: mode == MACVLAN_MODE_BRIDGE ? "bridge"
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: mode == MACVLAN_MODE_PASSTHRU ? "passthru"
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: mode == MACVLAN_MODE_SOURCE ? "source"
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: "unknown");
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if (!tb[IFLA_MACVLAN_FLAGS] ||
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RTA_PAYLOAD(tb[IFLA_MACVLAN_FLAGS]) < sizeof(__u16))
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return;
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flags = 0;
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else
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flags = rta_getattr_u16(tb[IFLA_MACVLAN_FLAGS]);
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flags = rta_getattr_u16(tb[IFLA_MACVLAN_FLAGS]);
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if (flags & MACVLAN_FLAG_NOPROMISC)
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fprintf(f, "nopromisc ");
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if (flags & MACVLAN_FLAG_UNICAST)
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fprintf(f, "flag unicast ");
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if (flags & MACVLAN_FLAG_UNICAST_ALL)
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fprintf(f, "flag unicast_all ");
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/* in source mode, there are more options to print */
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if (mode != MACVLAN_MODE_SOURCE)
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return;
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if (!tb[IFLA_MACVLAN_MACADDR_COUNT] ||
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RTA_PAYLOAD(tb[IFLA_MACVLAN_MACADDR_COUNT]) < sizeof(__u32))
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return;
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count = rta_getattr_u32(tb[IFLA_MACVLAN_MACADDR_COUNT]);
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fprintf(f, " remotes (%d)", count);
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if (!tb[IFLA_MACVLAN_MACADDR_DATA])
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return;
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rta = RTA_DATA(tb[IFLA_MACVLAN_MACADDR_DATA]);
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len = RTA_PAYLOAD(tb[IFLA_MACVLAN_MACADDR_DATA]);
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for (; RTA_OK(rta, len); rta = RTA_NEXT(rta, len)) {
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if (rta->rta_type != IFLA_MACVLAN_MACADDR ||
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RTA_PAYLOAD(rta) < 6)
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continue;
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addr = RTA_DATA(rta);
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fprintf(f, " %.2x:%.2x:%.2x:%.2x:%.2x:%.2x", addr[0],
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addr[1], addr[2], addr[3], addr[4], addr[5]);
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}
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}
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static void macvlan_print_help(struct link_util *lu, int argc, char **argv,
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@ -135,6 +135,9 @@ ip-link \- network device configuration
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.IR NAME " ]"
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.br
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.RB "[ " addrgenmode " { " eui64 " | " none " | " stable_secret " | " random " } ]"
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.br
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.B macaddr " |"
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.IR "COMMAND MACADDR |"
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.ti -8
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@ -237,8 +240,46 @@ Link types:
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- IP over Infiniband device
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.sp
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.B macvlan
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.I MODE
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- Virtual interface base on link layer address (MAC)
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.sp
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Modes:
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.in +8
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.B private
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- The device never communicates with any other device on the same upper_dev.
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This even includes frames coming back from a reflective relay, where supported
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by the adjacent bridge.
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.sp
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.B vepa
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- we assume that the adjacent bridge returns all frames where both source and
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destination are local to the macvlan port, i.e. the bridge is set up as a
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reflective relay. Broadcast frames coming in from the upper_dev get flooded to
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all macvlan interfaces in VEPA mode. We never deliver any frames locally.
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.sp
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.B bridge
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- behave as simple bridge between different macvlan interfaces on the same
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port. Frames from one interface to another one get delivered directly and are
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not sent out externally. Broadcast frames get flooded to all other bridge
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ports and to the external interface, but when they come back from a reflective
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relay, we don't deliver them again. Since we know all the MAC addresses, the
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macvlan bridge mode does not require learning or STP like the bridge module
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does.
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.sp
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.B passthru
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- allows takeover of the underlying device and passing it to a guest using
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virtio with macvtap backend. Only one macvlan device is allowed in passthru
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mode and it inherits the mac address from the underlying device and sets it in
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promiscuous mode to receive and forward all the packets.
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.sp
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.B source
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- allows one to set a list of allowed mac address, which is used to match
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against source mac address from received frames on underlying interface. This
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allows creating mac based VLAN associations, instead of standard port or tag
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based. The feature is useful to deploy 802.1x mac based behavior,
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where drivers of underlying interfaces doesn't allows that.
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.sp
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.in -8
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.sp
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.B macvtap
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- Virtual interface based on link layer address (MAC) and TAP.
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.sp
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@ -1083,6 +1124,22 @@ specifies the type of the device.
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.SS ip link set - change device attributes
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.TP
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.BI macaddr " COMMAND MACADDR"
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add or removes MACADDR from allowed list for source mode macvlan type link
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Commands:
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.in +8
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.B add
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- add MACADDR to allowed list
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.sp
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.B del
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- remove MACADDR from allowed list
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.sp
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.B flush
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- flush whole allowed list
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.sp
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.in -8
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.PP
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.B Warning:
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If multiple parameter changes are requested,
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