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ba914908 1/* SPDX-License-Identifier: GPL-2.0 WITH Linux-syscall-note */
910773dc
SH
2#ifndef _LINUX_IF_LINK_H
3#define _LINUX_IF_LINK_H
ead2ba70 4
67881151 5#include <linux/types.h>
ead2ba70
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6#include <linux/netlink.h>
7
04a9fc0a 8/* This struct should be in sync with struct rtnl_link_stats64 */
ab322673 9struct rtnl_link_stats {
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DA
10 __u32 rx_packets;
11 __u32 tx_packets;
12 __u32 rx_bytes;
13 __u32 tx_bytes;
14 __u32 rx_errors;
15 __u32 tx_errors;
16 __u32 rx_dropped;
17 __u32 tx_dropped;
18 __u32 multicast;
ead2ba70 19 __u32 collisions;
ead2ba70
SH
20 /* detailed rx_errors: */
21 __u32 rx_length_errors;
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DA
22 __u32 rx_over_errors;
23 __u32 rx_crc_errors;
24 __u32 rx_frame_errors;
25 __u32 rx_fifo_errors;
26 __u32 rx_missed_errors;
ead2ba70
SH
27
28 /* detailed tx_errors */
29 __u32 tx_aborted_errors;
30 __u32 tx_carrier_errors;
31 __u32 tx_fifo_errors;
32 __u32 tx_heartbeat_errors;
33 __u32 tx_window_errors;
34
35 /* for cslip etc */
36 __u32 rx_compressed;
37 __u32 tx_compressed;
8593b2ca 38
454429e8 39 __u32 rx_nohandler;
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40};
41
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DA
42/**
43 * struct rtnl_link_stats64 - The main device statistics structure.
44 *
45 * @rx_packets: Number of good packets received by the interface.
46 * For hardware interfaces counts all good packets received from the device
47 * by the host, including packets which host had to drop at various stages
48 * of processing (even in the driver).
49 *
50 * @tx_packets: Number of packets successfully transmitted.
51 * For hardware interfaces counts packets which host was able to successfully
52 * hand over to the device, which does not necessarily mean that packets
53 * had been successfully transmitted out of the device, only that device
54 * acknowledged it copied them out of host memory.
55 *
56 * @rx_bytes: Number of good received bytes, corresponding to @rx_packets.
57 *
58 * For IEEE 802.3 devices should count the length of Ethernet Frames
59 * excluding the FCS.
60 *
61 * @tx_bytes: Number of good transmitted bytes, corresponding to @tx_packets.
62 *
63 * For IEEE 802.3 devices should count the length of Ethernet Frames
64 * excluding the FCS.
65 *
66 * @rx_errors: Total number of bad packets received on this network device.
67 * This counter must include events counted by @rx_length_errors,
68 * @rx_crc_errors, @rx_frame_errors and other errors not otherwise
69 * counted.
70 *
71 * @tx_errors: Total number of transmit problems.
72 * This counter must include events counter by @tx_aborted_errors,
73 * @tx_carrier_errors, @tx_fifo_errors, @tx_heartbeat_errors,
74 * @tx_window_errors and other errors not otherwise counted.
75 *
76 * @rx_dropped: Number of packets received but not processed,
77 * e.g. due to lack of resources or unsupported protocol.
8b4b1322
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78 * For hardware interfaces this counter may include packets discarded
79 * due to L2 address filtering but should not include packets dropped
80 * by the device due to buffer exhaustion which are counted separately in
c8eb4b52
DA
81 * @rx_missed_errors (since procfs folds those two counters together).
82 *
83 * @tx_dropped: Number of packets dropped on their way to transmission,
84 * e.g. due to lack of resources.
85 *
86 * @multicast: Multicast packets received.
87 * For hardware interfaces this statistic is commonly calculated
88 * at the device level (unlike @rx_packets) and therefore may include
89 * packets which did not reach the host.
90 *
91 * For IEEE 802.3 devices this counter may be equivalent to:
92 *
93 * - 30.3.1.1.21 aMulticastFramesReceivedOK
94 *
95 * @collisions: Number of collisions during packet transmissions.
96 *
97 * @rx_length_errors: Number of packets dropped due to invalid length.
98 * Part of aggregate "frame" errors in `/proc/net/dev`.
99 *
100 * For IEEE 802.3 devices this counter should be equivalent to a sum
101 * of the following attributes:
102 *
103 * - 30.3.1.1.23 aInRangeLengthErrors
104 * - 30.3.1.1.24 aOutOfRangeLengthField
105 * - 30.3.1.1.25 aFrameTooLongErrors
106 *
107 * @rx_over_errors: Receiver FIFO overflow event counter.
108 *
109 * Historically the count of overflow events. Such events may be
110 * reported in the receive descriptors or via interrupts, and may
111 * not correspond one-to-one with dropped packets.
112 *
113 * The recommended interpretation for high speed interfaces is -
114 * number of packets dropped because they did not fit into buffers
115 * provided by the host, e.g. packets larger than MTU or next buffer
116 * in the ring was not available for a scatter transfer.
117 *
118 * Part of aggregate "frame" errors in `/proc/net/dev`.
119 *
120 * This statistics was historically used interchangeably with
121 * @rx_fifo_errors.
122 *
123 * This statistic corresponds to hardware events and is not commonly used
124 * on software devices.
125 *
126 * @rx_crc_errors: Number of packets received with a CRC error.
127 * Part of aggregate "frame" errors in `/proc/net/dev`.
128 *
129 * For IEEE 802.3 devices this counter must be equivalent to:
130 *
131 * - 30.3.1.1.6 aFrameCheckSequenceErrors
132 *
133 * @rx_frame_errors: Receiver frame alignment errors.
134 * Part of aggregate "frame" errors in `/proc/net/dev`.
135 *
136 * For IEEE 802.3 devices this counter should be equivalent to:
137 *
138 * - 30.3.1.1.7 aAlignmentErrors
139 *
140 * @rx_fifo_errors: Receiver FIFO error counter.
141 *
142 * Historically the count of overflow events. Those events may be
143 * reported in the receive descriptors or via interrupts, and may
144 * not correspond one-to-one with dropped packets.
145 *
146 * This statistics was used interchangeably with @rx_over_errors.
147 * Not recommended for use in drivers for high speed interfaces.
148 *
149 * This statistic is used on software devices, e.g. to count software
150 * packet queue overflow (can) or sequencing errors (GRE).
151 *
152 * @rx_missed_errors: Count of packets missed by the host.
153 * Folded into the "drop" counter in `/proc/net/dev`.
154 *
155 * Counts number of packets dropped by the device due to lack
156 * of buffer space. This usually indicates that the host interface
157 * is slower than the network interface, or host is not keeping up
158 * with the receive packet rate.
159 *
160 * This statistic corresponds to hardware events and is not used
161 * on software devices.
162 *
163 * @tx_aborted_errors:
164 * Part of aggregate "carrier" errors in `/proc/net/dev`.
165 * For IEEE 802.3 devices capable of half-duplex operation this counter
166 * must be equivalent to:
167 *
168 * - 30.3.1.1.11 aFramesAbortedDueToXSColls
169 *
170 * High speed interfaces may use this counter as a general device
171 * discard counter.
172 *
173 * @tx_carrier_errors: Number of frame transmission errors due to loss
174 * of carrier during transmission.
175 * Part of aggregate "carrier" errors in `/proc/net/dev`.
176 *
177 * For IEEE 802.3 devices this counter must be equivalent to:
178 *
179 * - 30.3.1.1.13 aCarrierSenseErrors
180 *
181 * @tx_fifo_errors: Number of frame transmission errors due to device
182 * FIFO underrun / underflow. This condition occurs when the device
183 * begins transmission of a frame but is unable to deliver the
184 * entire frame to the transmitter in time for transmission.
185 * Part of aggregate "carrier" errors in `/proc/net/dev`.
186 *
187 * @tx_heartbeat_errors: Number of Heartbeat / SQE Test errors for
188 * old half-duplex Ethernet.
189 * Part of aggregate "carrier" errors in `/proc/net/dev`.
190 *
191 * For IEEE 802.3 devices possibly equivalent to:
192 *
193 * - 30.3.2.1.4 aSQETestErrors
194 *
195 * @tx_window_errors: Number of frame transmission errors due
196 * to late collisions (for Ethernet - after the first 64B of transmission).
197 * Part of aggregate "carrier" errors in `/proc/net/dev`.
198 *
199 * For IEEE 802.3 devices this counter must be equivalent to:
200 *
201 * - 30.3.1.1.10 aLateCollisions
202 *
203 * @rx_compressed: Number of correctly received compressed packets.
204 * This counters is only meaningful for interfaces which support
205 * packet compression (e.g. CSLIP, PPP).
206 *
207 * @tx_compressed: Number of transmitted compressed packets.
208 * This counters is only meaningful for interfaces which support
209 * packet compression (e.g. CSLIP, PPP).
210 *
211 * @rx_nohandler: Number of packets received on the interface
212 * but dropped by the networking stack because the device is
213 * not designated to receive packets (e.g. backup link in a bond).
214 */
b4397f58 215struct rtnl_link_stats64 {
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216 __u64 rx_packets;
217 __u64 tx_packets;
218 __u64 rx_bytes;
219 __u64 tx_bytes;
220 __u64 rx_errors;
221 __u64 tx_errors;
222 __u64 rx_dropped;
223 __u64 tx_dropped;
224 __u64 multicast;
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225 __u64 collisions;
226
227 /* detailed rx_errors: */
228 __u64 rx_length_errors;
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DA
229 __u64 rx_over_errors;
230 __u64 rx_crc_errors;
231 __u64 rx_frame_errors;
232 __u64 rx_fifo_errors;
233 __u64 rx_missed_errors;
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234
235 /* detailed tx_errors */
236 __u64 tx_aborted_errors;
237 __u64 tx_carrier_errors;
238 __u64 tx_fifo_errors;
239 __u64 tx_heartbeat_errors;
240 __u64 tx_window_errors;
241
242 /* for cslip etc */
243 __u64 rx_compressed;
244 __u64 tx_compressed;
c8eb4b52 245 __u64 rx_nohandler;
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246};
247
ead2ba70 248/* The struct should be in sync with struct ifmap */
ab322673 249struct rtnl_link_ifmap {
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250 __u64 mem_start;
251 __u64 mem_end;
252 __u64 base_addr;
253 __u16 irq;
254 __u8 dma;
255 __u8 port;
256};
257
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258/*
259 * IFLA_AF_SPEC
260 * Contains nested attributes for address family specific attributes.
261 * Each address family may create a attribute with the address family
262 * number as type and create its own attribute structure in it.
263 *
264 * Example:
265 * [IFLA_AF_SPEC] = {
266 * [AF_INET] = {
267 * [IFLA_INET_CONF] = ...,
268 * },
269 * [AF_INET6] = {
270 * [IFLA_INET6_FLAGS] = ...,
271 * [IFLA_INET6_CONF] = ...,
272 * }
273 * }
274 */
275
ab322673 276enum {
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277 IFLA_UNSPEC,
278 IFLA_ADDRESS,
279 IFLA_BROADCAST,
280 IFLA_IFNAME,
281 IFLA_MTU,
282 IFLA_LINK,
283 IFLA_QDISC,
284 IFLA_STATS,
285 IFLA_COST,
286#define IFLA_COST IFLA_COST
287 IFLA_PRIORITY,
288#define IFLA_PRIORITY IFLA_PRIORITY
289 IFLA_MASTER,
290#define IFLA_MASTER IFLA_MASTER
291 IFLA_WIRELESS, /* Wireless Extension event - see wireless.h */
292#define IFLA_WIRELESS IFLA_WIRELESS
293 IFLA_PROTINFO, /* Protocol specific information for a link */
294#define IFLA_PROTINFO IFLA_PROTINFO
295 IFLA_TXQLEN,
296#define IFLA_TXQLEN IFLA_TXQLEN
297 IFLA_MAP,
298#define IFLA_MAP IFLA_MAP
299 IFLA_WEIGHT,
300#define IFLA_WEIGHT IFLA_WEIGHT
301 IFLA_OPERSTATE,
302 IFLA_LINKMODE,
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303 IFLA_LINKINFO,
304#define IFLA_LINKINFO IFLA_LINKINFO
5472ac6f 305 IFLA_NET_NS_PID,
05bfd165 306 IFLA_IFALIAS,
8ecdcce0 307 IFLA_NUM_VF, /* Number of VFs if device is SR-IOV PF */
a1713954 308 IFLA_VFINFO_LIST,
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309 IFLA_STATS64,
310 IFLA_VF_PORTS,
311 IFLA_PORT_SELF,
9351fec7 312 IFLA_AF_SPEC,
21cfb5e1 313 IFLA_GROUP, /* Group the device belongs to */
e760a19a 314 IFLA_NET_NS_FD,
c23abafb 315 IFLA_EXT_MASK, /* Extended info mask, VFs, etc */
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316 IFLA_PROMISCUITY, /* Promiscuity count: > 0 means acts PROMISC */
317#define IFLA_PROMISCUITY IFLA_PROMISCUITY
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318 IFLA_NUM_TX_QUEUES,
319 IFLA_NUM_RX_QUEUES,
609106d3 320 IFLA_CARRIER,
5318b2c6 321 IFLA_PHYS_PORT_ID,
ce3436ca 322 IFLA_CARRIER_CHANGES,
1c098687 323 IFLA_PHYS_SWITCH_ID,
8c58d403 324 IFLA_LINK_NETNSID,
cbdc3ed8 325 IFLA_PHYS_PORT_NAME,
a3563ede 326 IFLA_PROTO_DOWN,
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327 IFLA_GSO_MAX_SEGS,
328 IFLA_GSO_MAX_SIZE,
32c0b9b7 329 IFLA_PAD,
ba91cd9d 330 IFLA_XDP,
8612ca2f 331 IFLA_EVENT,
f53da99a 332 IFLA_NEW_NETNSID,
665ef5a5 333 IFLA_IF_NETNSID,
d9c0be4e 334 IFLA_TARGET_NETNSID = IFLA_IF_NETNSID, /* new alias */
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335 IFLA_CARRIER_UP_COUNT,
336 IFLA_CARRIER_DOWN_COUNT,
337 IFLA_NEW_IFINDEX,
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338 IFLA_MIN_MTU,
339 IFLA_MAX_MTU,
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340 IFLA_PROP_LIST,
341 IFLA_ALT_IFNAME, /* Alternative ifname */
974f889c 342 IFLA_PERM_ADDRESS,
91922a41 343 IFLA_PROTO_DOWN_REASON,
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344 __IFLA_MAX
345};
346
347
348#define IFLA_MAX (__IFLA_MAX - 1)
349
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350enum {
351 IFLA_PROTO_DOWN_REASON_UNSPEC,
352 IFLA_PROTO_DOWN_REASON_MASK, /* u32, mask for reason bits */
353 IFLA_PROTO_DOWN_REASON_VALUE, /* u32, reason bit value */
354
355 __IFLA_PROTO_DOWN_REASON_CNT,
356 IFLA_PROTO_DOWN_REASON_MAX = __IFLA_PROTO_DOWN_REASON_CNT - 1
357};
358
5a8ba228 359/* backwards compatibility for userspace */
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360#define IFLA_RTA(r) ((struct rtattr*)(((char*)(r)) + NLMSG_ALIGN(sizeof(struct ifinfomsg))))
361#define IFLA_PAYLOAD(n) NLMSG_PAYLOAD(n,sizeof(struct ifinfomsg))
5a8ba228 362
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363enum {
364 IFLA_INET_UNSPEC,
365 IFLA_INET_CONF,
366 __IFLA_INET_MAX,
367};
368
369#define IFLA_INET_MAX (__IFLA_INET_MAX - 1)
370
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371/* ifi_flags.
372
373 IFF_* flags.
374
375 The only change is:
376 IFF_LOOPBACK, IFF_BROADCAST and IFF_POINTOPOINT are
377 more not changeable by user. They describe link media
378 characteristics and set by device driver.
379
380 Comments:
381 - Combination IFF_BROADCAST|IFF_POINTOPOINT is invalid
382 - If neither of these three flags are set;
383 the interface is NBMA.
384
385 - IFF_MULTICAST does not mean anything special:
386 multicasts can be used on all not-NBMA links.
387 IFF_MULTICAST means that this media uses special encapsulation
388 for multicast frames. Apparently, all IFF_POINTOPOINT and
389 IFF_BROADCAST devices are able to use multicasts too.
390 */
391
392/* IFLA_LINK.
393 For usual devices it is equal ifi_index.
394 If it is a "virtual interface" (f.e. tunnel), ifi_link
395 can point to real physical interface (f.e. for bandwidth calculations),
396 or maybe 0, what means, that real media is unknown (usual
397 for IPIP tunnels, when route to endpoint is allowed to change)
398 */
399
400/* Subtype attributes for IFLA_PROTINFO */
ab322673 401enum {
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402 IFLA_INET6_UNSPEC,
403 IFLA_INET6_FLAGS, /* link flags */
404 IFLA_INET6_CONF, /* sysctl parameters */
405 IFLA_INET6_STATS, /* statistics */
406 IFLA_INET6_MCAST, /* MC things. What of them? */
407 IFLA_INET6_CACHEINFO, /* time values and max reasm size */
de3d12f4 408 IFLA_INET6_ICMP6STATS, /* statistics (icmpv6) */
79e9a1db 409 IFLA_INET6_TOKEN, /* device token */
945eaebd 410 IFLA_INET6_ADDR_GEN_MODE, /* implicit address generator mode */
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SH
411 __IFLA_INET6_MAX
412};
413
414#define IFLA_INET6_MAX (__IFLA_INET6_MAX - 1)
415
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416enum in6_addr_gen_mode {
417 IN6_ADDR_GEN_MODE_EUI64,
418 IN6_ADDR_GEN_MODE_NONE,
cbdc3ed8 419 IN6_ADDR_GEN_MODE_STABLE_PRIVACY,
a4c89d80 420 IN6_ADDR_GEN_MODE_RANDOM,
945eaebd
SH
421};
422
dddfc7f6
SH
423/* Bridge section */
424
425enum {
426 IFLA_BR_UNSPEC,
427 IFLA_BR_FORWARD_DELAY,
428 IFLA_BR_HELLO_TIME,
429 IFLA_BR_MAX_AGE,
cbdc3ed8
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430 IFLA_BR_AGEING_TIME,
431 IFLA_BR_STP_STATE,
432 IFLA_BR_PRIORITY,
8fcba79e 433 IFLA_BR_VLAN_FILTERING,
8d62f3e2 434 IFLA_BR_VLAN_PROTOCOL,
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435 IFLA_BR_GROUP_FWD_MASK,
436 IFLA_BR_ROOT_ID,
437 IFLA_BR_BRIDGE_ID,
438 IFLA_BR_ROOT_PORT,
439 IFLA_BR_ROOT_PATH_COST,
440 IFLA_BR_TOPOLOGY_CHANGE,
441 IFLA_BR_TOPOLOGY_CHANGE_DETECTED,
442 IFLA_BR_HELLO_TIMER,
443 IFLA_BR_TCN_TIMER,
444 IFLA_BR_TOPOLOGY_CHANGE_TIMER,
445 IFLA_BR_GC_TIMER,
446 IFLA_BR_GROUP_ADDR,
447 IFLA_BR_FDB_FLUSH,
448 IFLA_BR_MCAST_ROUTER,
449 IFLA_BR_MCAST_SNOOPING,
450 IFLA_BR_MCAST_QUERY_USE_IFADDR,
451 IFLA_BR_MCAST_QUERIER,
452 IFLA_BR_MCAST_HASH_ELASTICITY,
453 IFLA_BR_MCAST_HASH_MAX,
454 IFLA_BR_MCAST_LAST_MEMBER_CNT,
455 IFLA_BR_MCAST_STARTUP_QUERY_CNT,
456 IFLA_BR_MCAST_LAST_MEMBER_INTVL,
457 IFLA_BR_MCAST_MEMBERSHIP_INTVL,
458 IFLA_BR_MCAST_QUERIER_INTVL,
459 IFLA_BR_MCAST_QUERY_INTVL,
460 IFLA_BR_MCAST_QUERY_RESPONSE_INTVL,
461 IFLA_BR_MCAST_STARTUP_QUERY_INTVL,
462 IFLA_BR_NF_CALL_IPTABLES,
463 IFLA_BR_NF_CALL_IP6TABLES,
464 IFLA_BR_NF_CALL_ARPTABLES,
465 IFLA_BR_VLAN_DEFAULT_PVID,
31ce6e01
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466 IFLA_BR_PAD,
467 IFLA_BR_VLAN_STATS_ENABLED,
4824bb41 468 IFLA_BR_MCAST_STATS_ENABLED,
1a97748b
SH
469 IFLA_BR_MCAST_IGMP_VERSION,
470 IFLA_BR_MCAST_MLD_VERSION,
39776a86 471 IFLA_BR_VLAN_STATS_PER_PORT,
17689d30 472 IFLA_BR_MULTI_BOOLOPT,
dddfc7f6
SH
473 __IFLA_BR_MAX,
474};
475
476#define IFLA_BR_MAX (__IFLA_BR_MAX - 1)
477
23e90509
SH
478struct ifla_bridge_id {
479 __u8 prio[2];
480 __u8 addr[6]; /* ETH_ALEN */
481};
482
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483enum {
484 BRIDGE_MODE_UNSPEC,
485 BRIDGE_MODE_HAIRPIN,
486};
487
488enum {
489 IFLA_BRPORT_UNSPEC,
490 IFLA_BRPORT_STATE, /* Spanning tree state */
491 IFLA_BRPORT_PRIORITY, /* " priority */
492 IFLA_BRPORT_COST, /* " cost */
493 IFLA_BRPORT_MODE, /* mode (hairpin) */
494 IFLA_BRPORT_GUARD, /* bpdu guard */
495 IFLA_BRPORT_PROTECT, /* root port protection */
496 IFLA_BRPORT_FAST_LEAVE, /* multicast fast leave */
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497 IFLA_BRPORT_LEARNING, /* mac learning */
498 IFLA_BRPORT_UNICAST_FLOOD, /* flood unicast traffic */
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499 IFLA_BRPORT_PROXYARP, /* proxy ARP */
500 IFLA_BRPORT_LEARNING_SYNC, /* mac learning sync from device */
61333d24 501 IFLA_BRPORT_PROXYARP_WIFI, /* proxy ARP for Wi-Fi */
23e90509
SH
502 IFLA_BRPORT_ROOT_ID, /* designated root */
503 IFLA_BRPORT_BRIDGE_ID, /* designated bridge */
504 IFLA_BRPORT_DESIGNATED_PORT,
505 IFLA_BRPORT_DESIGNATED_COST,
506 IFLA_BRPORT_ID,
507 IFLA_BRPORT_NO,
508 IFLA_BRPORT_TOPOLOGY_CHANGE_ACK,
509 IFLA_BRPORT_CONFIG_PENDING,
510 IFLA_BRPORT_MESSAGE_AGE_TIMER,
511 IFLA_BRPORT_FORWARD_DELAY_TIMER,
512 IFLA_BRPORT_HOLD_TIMER,
513 IFLA_BRPORT_FLUSH,
514 IFLA_BRPORT_MULTICAST_ROUTER,
31ce6e01 515 IFLA_BRPORT_PAD,
e8a67bc4 516 IFLA_BRPORT_MCAST_FLOOD,
b479a7d7 517 IFLA_BRPORT_MCAST_TO_UCAST,
985091aa 518 IFLA_BRPORT_VLAN_TUNNEL,
7ff1fce5 519 IFLA_BRPORT_BCAST_FLOOD,
1db903de 520 IFLA_BRPORT_GROUP_FWD_MASK,
f53da99a 521 IFLA_BRPORT_NEIGH_SUPPRESS,
57ac202c 522 IFLA_BRPORT_ISOLATED,
8b099da5 523 IFLA_BRPORT_BACKUP_PORT,
02ade5a8 524 IFLA_BRPORT_MRP_RING_OPEN,
beaf281c 525 IFLA_BRPORT_MRP_IN_OPEN,
910773dc
SH
526 __IFLA_BRPORT_MAX
527};
528#define IFLA_BRPORT_MAX (__IFLA_BRPORT_MAX - 1)
529
ab322673 530struct ifla_cacheinfo {
ead2ba70
SH
531 __u32 max_reasm_len;
532 __u32 tstamp; /* ipv6InterfaceTable updated timestamp */
533 __u32 reachable_time;
534 __u32 retrans_time;
535};
536
ab322673 537enum {
a6ffa8b0
SH
538 IFLA_INFO_UNSPEC,
539 IFLA_INFO_KIND,
540 IFLA_INFO_DATA,
541 IFLA_INFO_XSTATS,
8cfeddab
SH
542 IFLA_INFO_SLAVE_KIND,
543 IFLA_INFO_SLAVE_DATA,
a6ffa8b0
SH
544 __IFLA_INFO_MAX,
545};
546
547#define IFLA_INFO_MAX (__IFLA_INFO_MAX - 1)
548
549/* VLAN section */
550
ab322673 551enum {
a6ffa8b0
SH
552 IFLA_VLAN_UNSPEC,
553 IFLA_VLAN_ID,
554 IFLA_VLAN_FLAGS,
555 IFLA_VLAN_EGRESS_QOS,
556 IFLA_VLAN_INGRESS_QOS,
79e9a1db 557 IFLA_VLAN_PROTOCOL,
a6ffa8b0
SH
558 __IFLA_VLAN_MAX,
559};
560
561#define IFLA_VLAN_MAX (__IFLA_VLAN_MAX - 1)
562
563struct ifla_vlan_flags {
564 __u32 flags;
565 __u32 mask;
566};
567
ab322673 568enum {
a6ffa8b0
SH
569 IFLA_VLAN_QOS_UNSPEC,
570 IFLA_VLAN_QOS_MAPPING,
571 __IFLA_VLAN_QOS_MAX
572};
573
574#define IFLA_VLAN_QOS_MAX (__IFLA_VLAN_QOS_MAX - 1)
575
ab322673 576struct ifla_vlan_qos_mapping {
a6ffa8b0
SH
577 __u32 from;
578 __u32 to;
579};
580
ab322673
SH
581/* MACVLAN section */
582enum {
583 IFLA_MACVLAN_UNSPEC,
584 IFLA_MACVLAN_MODE,
5e4dc84f 585 IFLA_MACVLAN_FLAGS,
dddfc7f6
SH
586 IFLA_MACVLAN_MACADDR_MODE,
587 IFLA_MACVLAN_MACADDR,
588 IFLA_MACVLAN_MACADDR_DATA,
589 IFLA_MACVLAN_MACADDR_COUNT,
cfad3256
DA
590 IFLA_MACVLAN_BC_QUEUE_LEN,
591 IFLA_MACVLAN_BC_QUEUE_LEN_USED,
ab322673
SH
592 __IFLA_MACVLAN_MAX,
593};
594
595#define IFLA_MACVLAN_MAX (__IFLA_MACVLAN_MAX - 1)
596
597enum macvlan_mode {
598 MACVLAN_MODE_PRIVATE = 1, /* don't talk to other macvlans */
599 MACVLAN_MODE_VEPA = 2, /* talk to other ports through ext bridge */
600 MACVLAN_MODE_BRIDGE = 4, /* talk to bridge ports directly */
9351fec7 601 MACVLAN_MODE_PASSTHRU = 8,/* take over the underlying device */
dddfc7f6
SH
602 MACVLAN_MODE_SOURCE = 16,/* use source MAC address list to assign */
603};
604
605enum macvlan_macaddr_mode {
606 MACVLAN_MACADDR_ADD,
607 MACVLAN_MACADDR_DEL,
608 MACVLAN_MACADDR_FLUSH,
609 MACVLAN_MACADDR_SET,
ab322673
SH
610};
611
5e4dc84f
SH
612#define MACVLAN_FLAG_NOPROMISC 1
613
75d67d35
SH
614/* VRF section */
615enum {
616 IFLA_VRF_UNSPEC,
617 IFLA_VRF_TABLE,
618 __IFLA_VRF_MAX
619};
620
621#define IFLA_VRF_MAX (__IFLA_VRF_MAX - 1)
622
8593b2ca
SH
623enum {
624 IFLA_VRF_PORT_UNSPEC,
625 IFLA_VRF_PORT_TABLE,
626 __IFLA_VRF_PORT_MAX
627};
628
629#define IFLA_VRF_PORT_MAX (__IFLA_VRF_PORT_MAX - 1)
630
b7e0091a
SH
631/* MACSEC section */
632enum {
633 IFLA_MACSEC_UNSPEC,
634 IFLA_MACSEC_SCI,
635 IFLA_MACSEC_PORT,
636 IFLA_MACSEC_ICV_LEN,
637 IFLA_MACSEC_CIPHER_SUITE,
638 IFLA_MACSEC_WINDOW,
639 IFLA_MACSEC_ENCODING_SA,
640 IFLA_MACSEC_ENCRYPT,
641 IFLA_MACSEC_PROTECT,
642 IFLA_MACSEC_INC_SCI,
643 IFLA_MACSEC_ES,
644 IFLA_MACSEC_SCB,
645 IFLA_MACSEC_REPLAY_PROTECT,
646 IFLA_MACSEC_VALIDATION,
31ce6e01 647 IFLA_MACSEC_PAD,
ce9191ff 648 IFLA_MACSEC_OFFLOAD,
b7e0091a
SH
649 __IFLA_MACSEC_MAX,
650};
651
652#define IFLA_MACSEC_MAX (__IFLA_MACSEC_MAX - 1)
653
74eb09ad
DA
654/* XFRM section */
655enum {
656 IFLA_XFRM_UNSPEC,
657 IFLA_XFRM_LINK,
658 IFLA_XFRM_IF_ID,
659 __IFLA_XFRM_MAX
660};
661
662#define IFLA_XFRM_MAX (__IFLA_XFRM_MAX - 1)
663
b7e0091a
SH
664enum macsec_validation_type {
665 MACSEC_VALIDATE_DISABLED = 0,
666 MACSEC_VALIDATE_CHECK = 1,
667 MACSEC_VALIDATE_STRICT = 2,
668 __MACSEC_VALIDATE_END,
669 MACSEC_VALIDATE_MAX = __MACSEC_VALIDATE_END - 1,
670};
671
8b802d20
DA
672enum macsec_offload {
673 MACSEC_OFFLOAD_OFF = 0,
674 MACSEC_OFFLOAD_PHY = 1,
ce9191ff 675 MACSEC_OFFLOAD_MAC = 2,
8b802d20
DA
676 __MACSEC_OFFLOAD_END,
677 MACSEC_OFFLOAD_MAX = __MACSEC_OFFLOAD_END - 1,
678};
679
1c098687
SH
680/* IPVLAN section */
681enum {
682 IFLA_IPVLAN_UNSPEC,
683 IFLA_IPVLAN_MODE,
fe388b9e 684 IFLA_IPVLAN_FLAGS,
1c098687
SH
685 __IFLA_IPVLAN_MAX
686};
687
688#define IFLA_IPVLAN_MAX (__IFLA_IPVLAN_MAX - 1)
689
690enum ipvlan_mode {
691 IPVLAN_MODE_L2 = 0,
692 IPVLAN_MODE_L3,
e8a67bc4 693 IPVLAN_MODE_L3S,
1c098687
SH
694 IPVLAN_MODE_MAX
695};
696
fe388b9e
SH
697#define IPVLAN_F_PRIVATE 0x01
698#define IPVLAN_F_VEPA 0x02
699
f2264071
SH
700/* VXLAN section */
701enum {
702 IFLA_VXLAN_UNSPEC,
703 IFLA_VXLAN_ID,
79e9a1db 704 IFLA_VXLAN_GROUP, /* group or remote address */
f2264071
SH
705 IFLA_VXLAN_LINK,
706 IFLA_VXLAN_LOCAL,
707 IFLA_VXLAN_TTL,
708 IFLA_VXLAN_TOS,
709 IFLA_VXLAN_LEARNING,
710 IFLA_VXLAN_AGEING,
711 IFLA_VXLAN_LIMIT,
79e9a1db 712 IFLA_VXLAN_PORT_RANGE, /* source port */
910773dc
SH
713 IFLA_VXLAN_PROXY,
714 IFLA_VXLAN_RSC,
715 IFLA_VXLAN_L2MISS,
716 IFLA_VXLAN_L3MISS,
79e9a1db 717 IFLA_VXLAN_PORT, /* destination port */
c92716d1
SH
718 IFLA_VXLAN_GROUP6,
719 IFLA_VXLAN_LOCAL6,
fd5c1d43
SH
720 IFLA_VXLAN_UDP_CSUM,
721 IFLA_VXLAN_UDP_ZERO_CSUM6_TX,
722 IFLA_VXLAN_UDP_ZERO_CSUM6_RX,
8c58d403
SH
723 IFLA_VXLAN_REMCSUM_TX,
724 IFLA_VXLAN_REMCSUM_RX,
725 IFLA_VXLAN_GBP,
1f01dd89 726 IFLA_VXLAN_REMCSUM_NOPARTIAL,
089d93d6 727 IFLA_VXLAN_COLLECT_METADATA,
b7e0091a 728 IFLA_VXLAN_LABEL,
bc9fb257 729 IFLA_VXLAN_GPE,
075bf62a 730 IFLA_VXLAN_TTL_INHERIT,
3d98eba4 731 IFLA_VXLAN_DF,
f2264071
SH
732 __IFLA_VXLAN_MAX
733};
734#define IFLA_VXLAN_MAX (__IFLA_VXLAN_MAX - 1)
735
2d596120
SH
736struct ifla_vxlan_port_range {
737 __be16 low;
738 __be16 high;
739};
740
3d98eba4
SB
741enum ifla_vxlan_df {
742 VXLAN_DF_UNSET = 0,
743 VXLAN_DF_SET,
744 VXLAN_DF_INHERIT,
745 __VXLAN_DF_END,
746 VXLAN_DF_MAX = __VXLAN_DF_END - 1,
747};
748
8f42ceaf
SH
749/* GENEVE section */
750enum {
751 IFLA_GENEVE_UNSPEC,
752 IFLA_GENEVE_ID,
753 IFLA_GENEVE_REMOTE,
f4c05c2e 754 IFLA_GENEVE_TTL,
f4739b2e 755 IFLA_GENEVE_TOS,
8d62f3e2
SH
756 IFLA_GENEVE_PORT, /* destination port */
757 IFLA_GENEVE_COLLECT_METADATA,
0198930b 758 IFLA_GENEVE_REMOTE6,
741c20b0
SH
759 IFLA_GENEVE_UDP_CSUM,
760 IFLA_GENEVE_UDP_ZERO_CSUM6_TX,
761 IFLA_GENEVE_UDP_ZERO_CSUM6_RX,
b7e0091a 762 IFLA_GENEVE_LABEL,
d9c0be4e 763 IFLA_GENEVE_TTL_INHERIT,
64dbd03e 764 IFLA_GENEVE_DF,
8f42ceaf
SH
765 __IFLA_GENEVE_MAX
766};
767#define IFLA_GENEVE_MAX (__IFLA_GENEVE_MAX - 1)
768
64dbd03e
SB
769enum ifla_geneve_df {
770 GENEVE_DF_UNSET = 0,
771 GENEVE_DF_SET,
772 GENEVE_DF_INHERIT,
773 __GENEVE_DF_END,
774 GENEVE_DF_MAX = __GENEVE_DF_END - 1,
775};
776
b6b8e40b
DA
777/* Bareudp section */
778enum {
779 IFLA_BAREUDP_UNSPEC,
780 IFLA_BAREUDP_PORT,
781 IFLA_BAREUDP_ETHERTYPE,
782 IFLA_BAREUDP_SRCPORT_MIN,
783 IFLA_BAREUDP_MULTIPROTO_MODE,
784 __IFLA_BAREUDP_MAX
785};
786
787#define IFLA_BAREUDP_MAX (__IFLA_BAREUDP_MAX - 1)
788
31ce6e01
SH
789/* PPP section */
790enum {
791 IFLA_PPP_UNSPEC,
792 IFLA_PPP_DEV_FD,
793 __IFLA_PPP_MAX
794};
795#define IFLA_PPP_MAX (__IFLA_PPP_MAX - 1)
796
797/* GTP section */
45f78b4d
SH
798
799enum ifla_gtp_role {
800 GTP_ROLE_GGSN = 0,
801 GTP_ROLE_SGSN,
802};
803
31ce6e01
SH
804enum {
805 IFLA_GTP_UNSPEC,
806 IFLA_GTP_FD0,
807 IFLA_GTP_FD1,
808 IFLA_GTP_PDP_HASHSIZE,
45f78b4d 809 IFLA_GTP_ROLE,
c81a173f 810 IFLA_GTP_COLLECT_METADATA,
31ce6e01
SH
811 __IFLA_GTP_MAX,
812};
813#define IFLA_GTP_MAX (__IFLA_GTP_MAX - 1)
814
793da0e7
SH
815/* Bonding section */
816
817enum {
818 IFLA_BOND_UNSPEC,
819 IFLA_BOND_MODE,
820 IFLA_BOND_ACTIVE_SLAVE,
ec69a50c
SH
821 IFLA_BOND_MIIMON,
822 IFLA_BOND_UPDELAY,
823 IFLA_BOND_DOWNDELAY,
824 IFLA_BOND_USE_CARRIER,
825 IFLA_BOND_ARP_INTERVAL,
826 IFLA_BOND_ARP_IP_TARGET,
827 IFLA_BOND_ARP_VALIDATE,
828 IFLA_BOND_ARP_ALL_TARGETS,
829 IFLA_BOND_PRIMARY,
830 IFLA_BOND_PRIMARY_RESELECT,
831 IFLA_BOND_FAIL_OVER_MAC,
832 IFLA_BOND_XMIT_HASH_POLICY,
833 IFLA_BOND_RESEND_IGMP,
a4c51eb3
SH
834 IFLA_BOND_NUM_PEER_NOTIF,
835 IFLA_BOND_ALL_SLAVES_ACTIVE,
836 IFLA_BOND_MIN_LINKS,
837 IFLA_BOND_LP_INTERVAL,
838 IFLA_BOND_PACKETS_PER_SLAVE,
af9cd912
SH
839 IFLA_BOND_AD_LACP_RATE,
840 IFLA_BOND_AD_SELECT,
841 IFLA_BOND_AD_INFO,
8f42ceaf
SH
842 IFLA_BOND_AD_ACTOR_SYS_PRIO,
843 IFLA_BOND_AD_USER_PORT_KEY,
844 IFLA_BOND_AD_ACTOR_SYSTEM,
089d93d6 845 IFLA_BOND_TLB_DYNAMIC_LB,
01db6c41 846 IFLA_BOND_PEER_NOTIF_DELAY,
793da0e7
SH
847 __IFLA_BOND_MAX,
848};
849
850#define IFLA_BOND_MAX (__IFLA_BOND_MAX - 1)
851
af9cd912 852enum {
8cfeddab 853 IFLA_BOND_AD_INFO_UNSPEC,
af9cd912
SH
854 IFLA_BOND_AD_INFO_AGGREGATOR,
855 IFLA_BOND_AD_INFO_NUM_PORTS,
856 IFLA_BOND_AD_INFO_ACTOR_KEY,
857 IFLA_BOND_AD_INFO_PARTNER_KEY,
858 IFLA_BOND_AD_INFO_PARTNER_MAC,
859 __IFLA_BOND_AD_INFO_MAX,
860};
861
862#define IFLA_BOND_AD_INFO_MAX (__IFLA_BOND_AD_INFO_MAX - 1)
863
3ba9ccda 864enum {
8cfeddab
SH
865 IFLA_BOND_SLAVE_UNSPEC,
866 IFLA_BOND_SLAVE_STATE,
867 IFLA_BOND_SLAVE_MII_STATUS,
868 IFLA_BOND_SLAVE_LINK_FAILURE_COUNT,
869 IFLA_BOND_SLAVE_PERM_HWADDR,
870 IFLA_BOND_SLAVE_QUEUE_ID,
871 IFLA_BOND_SLAVE_AD_AGGREGATOR_ID,
ff631c3a
SH
872 IFLA_BOND_SLAVE_AD_ACTOR_OPER_PORT_STATE,
873 IFLA_BOND_SLAVE_AD_PARTNER_OPER_PORT_STATE,
8cfeddab 874 __IFLA_BOND_SLAVE_MAX,
3ba9ccda
SH
875};
876
8cfeddab 877#define IFLA_BOND_SLAVE_MAX (__IFLA_BOND_SLAVE_MAX - 1)
3ba9ccda 878
04a9fc0a 879/* SR-IOV virtual function management section */
8ecdcce0 880
a1713954
SH
881enum {
882 IFLA_VF_INFO_UNSPEC,
883 IFLA_VF_INFO,
884 __IFLA_VF_INFO_MAX,
885};
886
887#define IFLA_VF_INFO_MAX (__IFLA_VF_INFO_MAX - 1)
888
889enum {
890 IFLA_VF_UNSPEC,
891 IFLA_VF_MAC, /* Hardware queue specific attributes */
d9927247 892 IFLA_VF_VLAN, /* VLAN ID and QoS */
fd5c1d43 893 IFLA_VF_TX_RATE, /* Max TX Bandwidth Allocation */
9044a454 894 IFLA_VF_SPOOFCHK, /* Spoof Checking on/off switch */
ecefa08c 895 IFLA_VF_LINK_STATE, /* link state enable/disable/auto switch */
fd5c1d43 896 IFLA_VF_RATE, /* Min and Max TX Bandwidth Allocation */
94f66538
SH
897 IFLA_VF_RSS_QUERY_EN, /* RSS Redirection Table and Hash Key query
898 * on/off switch
899 */
ff631c3a 900 IFLA_VF_STATS, /* network device statistics */
dddf1b44 901 IFLA_VF_TRUST, /* Trust VF */
6268b08c
SH
902 IFLA_VF_IB_NODE_GUID, /* VF Infiniband node GUID */
903 IFLA_VF_IB_PORT_GUID, /* VF Infiniband port GUID */
d9927247 904 IFLA_VF_VLAN_LIST, /* nested list of vlans, option for QinQ */
ea985eb4 905 IFLA_VF_BROADCAST, /* VF broadcast */
a1713954
SH
906 __IFLA_VF_MAX,
907};
908
909#define IFLA_VF_MAX (__IFLA_VF_MAX - 1)
910
8ecdcce0
SH
911struct ifla_vf_mac {
912 __u32 vf;
913 __u8 mac[32]; /* MAX_ADDR_LEN */
914};
915
ea985eb4
DA
916struct ifla_vf_broadcast {
917 __u8 broadcast[32];
918};
919
8ecdcce0
SH
920struct ifla_vf_vlan {
921 __u32 vf;
922 __u32 vlan; /* 0 - 4095, 0 disables VLAN filter */
923 __u32 qos;
924};
925
d9927247
SH
926enum {
927 IFLA_VF_VLAN_INFO_UNSPEC,
928 IFLA_VF_VLAN_INFO, /* VLAN ID, QoS and VLAN protocol */
929 __IFLA_VF_VLAN_INFO_MAX,
930};
931
932#define IFLA_VF_VLAN_INFO_MAX (__IFLA_VF_VLAN_INFO_MAX - 1)
933#define MAX_VLAN_LIST_LEN 1
934
935struct ifla_vf_vlan_info {
936 __u32 vf;
937 __u32 vlan; /* 0 - 4095, 0 disables VLAN filter */
938 __u32 qos;
939 __be16 vlan_proto; /* VLAN protocol either 802.1Q or 802.1ad */
940};
941
8ecdcce0
SH
942struct ifla_vf_tx_rate {
943 __u32 vf;
944 __u32 rate; /* Max TX bandwidth in Mbps, 0 disables throttling */
945};
946
fd5c1d43
SH
947struct ifla_vf_rate {
948 __u32 vf;
949 __u32 min_tx_rate; /* Min Bandwidth in Mbps */
950 __u32 max_tx_rate; /* Max Bandwidth in Mbps */
951};
952
9044a454 953struct ifla_vf_spoofchk {
8ecdcce0 954 __u32 vf;
9044a454 955 __u32 setting;
8ecdcce0 956};
b4397f58 957
6268b08c
SH
958struct ifla_vf_guid {
959 __u32 vf;
960 __u64 guid;
961};
962
ecefa08c
SH
963enum {
964 IFLA_VF_LINK_STATE_AUTO, /* link state of the uplink */
965 IFLA_VF_LINK_STATE_ENABLE, /* link always up */
966 IFLA_VF_LINK_STATE_DISABLE, /* link always down */
967 __IFLA_VF_LINK_STATE_MAX,
968};
969
970struct ifla_vf_link_state {
971 __u32 vf;
972 __u32 link_state;
973};
974
94f66538
SH
975struct ifla_vf_rss_query_en {
976 __u32 vf;
977 __u32 setting;
978};
979
ff631c3a
SH
980enum {
981 IFLA_VF_STATS_RX_PACKETS,
982 IFLA_VF_STATS_TX_PACKETS,
983 IFLA_VF_STATS_RX_BYTES,
984 IFLA_VF_STATS_TX_BYTES,
985 IFLA_VF_STATS_BROADCAST,
986 IFLA_VF_STATS_MULTICAST,
31ce6e01 987 IFLA_VF_STATS_PAD,
c0788a09
DA
988 IFLA_VF_STATS_RX_DROPPED,
989 IFLA_VF_STATS_TX_DROPPED,
ff631c3a
SH
990 __IFLA_VF_STATS_MAX,
991};
992
993#define IFLA_VF_STATS_MAX (__IFLA_VF_STATS_MAX - 1)
994
dddf1b44
SH
995struct ifla_vf_trust {
996 __u32 vf;
997 __u32 setting;
998};
999
b4397f58
SH
1000/* VF ports management section
1001 *
1002 * Nested layout of set/get msg is:
1003 *
1004 * [IFLA_NUM_VF]
1005 * [IFLA_VF_PORTS]
1006 * [IFLA_VF_PORT]
1007 * [IFLA_PORT_*], ...
1008 * [IFLA_VF_PORT]
1009 * [IFLA_PORT_*], ...
1010 * ...
1011 * [IFLA_PORT_SELF]
1012 * [IFLA_PORT_*], ...
1013 */
1014
1015enum {
1016 IFLA_VF_PORT_UNSPEC,
1017 IFLA_VF_PORT, /* nest */
1018 __IFLA_VF_PORT_MAX,
1019};
1020
1021#define IFLA_VF_PORT_MAX (__IFLA_VF_PORT_MAX - 1)
1022
1023enum {
1024 IFLA_PORT_UNSPEC,
1025 IFLA_PORT_VF, /* __u32 */
1026 IFLA_PORT_PROFILE, /* string */
1027 IFLA_PORT_VSI_TYPE, /* 802.1Qbg (pre-)standard VDP */
1028 IFLA_PORT_INSTANCE_UUID, /* binary UUID */
1029 IFLA_PORT_HOST_UUID, /* binary UUID */
1030 IFLA_PORT_REQUEST, /* __u8 */
1031 IFLA_PORT_RESPONSE, /* __u16, output only */
1032 __IFLA_PORT_MAX,
1033};
1034
1035#define IFLA_PORT_MAX (__IFLA_PORT_MAX - 1)
1036
1037#define PORT_PROFILE_MAX 40
1038#define PORT_UUID_MAX 16
1039#define PORT_SELF_VF -1
1040
1041enum {
1042 PORT_REQUEST_PREASSOCIATE = 0,
1043 PORT_REQUEST_PREASSOCIATE_RR,
1044 PORT_REQUEST_ASSOCIATE,
1045 PORT_REQUEST_DISASSOCIATE,
1046};
1047
1048enum {
1049 PORT_VDP_RESPONSE_SUCCESS = 0,
1050 PORT_VDP_RESPONSE_INVALID_FORMAT,
1051 PORT_VDP_RESPONSE_INSUFFICIENT_RESOURCES,
1052 PORT_VDP_RESPONSE_UNUSED_VTID,
1053 PORT_VDP_RESPONSE_VTID_VIOLATION,
1054 PORT_VDP_RESPONSE_VTID_VERSION_VIOALTION,
1055 PORT_VDP_RESPONSE_OUT_OF_SYNC,
1056 /* 0x08-0xFF reserved for future VDP use */
1057 PORT_PROFILE_RESPONSE_SUCCESS = 0x100,
1058 PORT_PROFILE_RESPONSE_INPROGRESS,
1059 PORT_PROFILE_RESPONSE_INVALID,
1060 PORT_PROFILE_RESPONSE_BADSTATE,
1061 PORT_PROFILE_RESPONSE_INSUFFICIENT_RESOURCES,
1062 PORT_PROFILE_RESPONSE_ERROR,
1063};
1064
1065struct ifla_port_vsi {
1066 __u8 vsi_mgr_id;
1067 __u8 vsi_type_id[3];
1068 __u8 vsi_type_version;
1069 __u8 pad[3];
1070};
1071
f2264071
SH
1072
1073/* IPoIB section */
1074
1075enum {
1076 IFLA_IPOIB_UNSPEC,
1077 IFLA_IPOIB_PKEY,
1078 IFLA_IPOIB_MODE,
1079 IFLA_IPOIB_UMCAST,
1080 __IFLA_IPOIB_MAX
1081};
1082
1083enum {
1084 IPOIB_MODE_DATAGRAM = 0, /* using unreliable datagram QPs */
1085 IPOIB_MODE_CONNECTED = 1, /* using connected QPs */
1086};
1087
1088#define IFLA_IPOIB_MAX (__IFLA_IPOIB_MAX - 1)
1089
fb876d89 1090
91922a41
DA
1091/* HSR/PRP section, both uses same interface */
1092
1093/* Different redundancy protocols for hsr device */
1094enum {
1095 HSR_PROTOCOL_HSR,
1096 HSR_PROTOCOL_PRP,
1097 HSR_PROTOCOL_MAX,
1098};
fb876d89
SH
1099
1100enum {
1101 IFLA_HSR_UNSPEC,
1102 IFLA_HSR_SLAVE1,
1103 IFLA_HSR_SLAVE2,
ec69a50c
SH
1104 IFLA_HSR_MULTICAST_SPEC, /* Last byte of supervision addr */
1105 IFLA_HSR_SUPERVISION_ADDR, /* Supervision frame multicast addr */
1106 IFLA_HSR_SEQ_NR,
32c0b9b7 1107 IFLA_HSR_VERSION, /* HSR version */
91922a41
DA
1108 IFLA_HSR_PROTOCOL, /* Indicate different protocol than
1109 * HSR. For example PRP.
1110 */
fb876d89
SH
1111 __IFLA_HSR_MAX,
1112};
1113
1114#define IFLA_HSR_MAX (__IFLA_HSR_MAX - 1)
1115
32c0b9b7
SH
1116/* STATS section */
1117
1118struct if_stats_msg {
1119 __u8 family;
1120 __u8 pad1;
1121 __u16 pad2;
1122 __u32 ifindex;
1123 __u32 filter_mask;
1124};
1125
1126/* A stats attribute can be netdev specific or a global stat.
1127 * For netdev stats, lets use the prefix IFLA_STATS_LINK_*
1128 */
1129enum {
1130 IFLA_STATS_UNSPEC, /* also used as 64bit pad attribute */
1131 IFLA_STATS_LINK_64,
31ce6e01 1132 IFLA_STATS_LINK_XSTATS,
4824bb41 1133 IFLA_STATS_LINK_XSTATS_SLAVE,
e8a67bc4 1134 IFLA_STATS_LINK_OFFLOAD_XSTATS,
a044b36a 1135 IFLA_STATS_AF_SPEC,
32c0b9b7
SH
1136 __IFLA_STATS_MAX,
1137};
1138
1139#define IFLA_STATS_MAX (__IFLA_STATS_MAX - 1)
1140
1141#define IFLA_STATS_FILTER_BIT(ATTR) (1 << (ATTR - 1))
1142
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1143/* These are embedded into IFLA_STATS_LINK_XSTATS:
1144 * [IFLA_STATS_LINK_XSTATS]
1145 * -> [LINK_XSTATS_TYPE_xxx]
1146 * -> [rtnl link type specific attributes]
1147 */
1148enum {
1149 LINK_XSTATS_TYPE_UNSPEC,
1150 LINK_XSTATS_TYPE_BRIDGE,
f79b7733 1151 LINK_XSTATS_TYPE_BOND,
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1152 __LINK_XSTATS_TYPE_MAX
1153};
1154#define LINK_XSTATS_TYPE_MAX (__LINK_XSTATS_TYPE_MAX - 1)
1155
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1156/* These are stats embedded into IFLA_STATS_LINK_OFFLOAD_XSTATS */
1157enum {
1158 IFLA_OFFLOAD_XSTATS_UNSPEC,
1159 IFLA_OFFLOAD_XSTATS_CPU_HIT, /* struct rtnl_link_stats64 */
1160 __IFLA_OFFLOAD_XSTATS_MAX
1161};
1162#define IFLA_OFFLOAD_XSTATS_MAX (__IFLA_OFFLOAD_XSTATS_MAX - 1)
1163
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1164/* XDP section */
1165
bf9a0aff 1166#define XDP_FLAGS_UPDATE_IF_NOEXIST (1U << 0)
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1167#define XDP_FLAGS_SKB_MODE (1U << 1)
1168#define XDP_FLAGS_DRV_MODE (1U << 2)
35a004dc 1169#define XDP_FLAGS_HW_MODE (1U << 3)
ce9191ff 1170#define XDP_FLAGS_REPLACE (1U << 4)
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1171#define XDP_FLAGS_MODES (XDP_FLAGS_SKB_MODE | \
1172 XDP_FLAGS_DRV_MODE | \
1173 XDP_FLAGS_HW_MODE)
7ff1fce5 1174#define XDP_FLAGS_MASK (XDP_FLAGS_UPDATE_IF_NOEXIST | \
ce9191ff 1175 XDP_FLAGS_MODES | XDP_FLAGS_REPLACE)
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1176
1177/* These are stored into IFLA_XDP_ATTACHED on dump. */
1178enum {
1179 XDP_ATTACHED_NONE = 0,
1180 XDP_ATTACHED_DRV,
1181 XDP_ATTACHED_SKB,
35a004dc 1182 XDP_ATTACHED_HW,
3eebc1d4 1183 XDP_ATTACHED_MULTI,
a2325adf 1184};
bf9a0aff 1185
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1186enum {
1187 IFLA_XDP_UNSPEC,
1188 IFLA_XDP_FD,
1189 IFLA_XDP_ATTACHED,
bf9a0aff 1190 IFLA_XDP_FLAGS,
35a004dc 1191 IFLA_XDP_PROG_ID,
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1192 IFLA_XDP_DRV_PROG_ID,
1193 IFLA_XDP_SKB_PROG_ID,
1194 IFLA_XDP_HW_PROG_ID,
ce9191ff 1195 IFLA_XDP_EXPECTED_FD,
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1196 __IFLA_XDP_MAX,
1197};
1198
1199#define IFLA_XDP_MAX (__IFLA_XDP_MAX - 1)
1200
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1201enum {
1202 IFLA_EVENT_NONE,
1203 IFLA_EVENT_REBOOT, /* internal reset / reboot */
1204 IFLA_EVENT_FEATURES, /* change in offload features */
1205 IFLA_EVENT_BONDING_FAILOVER, /* change in active slave */
1206 IFLA_EVENT_NOTIFY_PEERS, /* re-sent grat. arp/ndisc */
1207 IFLA_EVENT_IGMP_RESEND, /* re-sent IGMP JOIN */
1208 IFLA_EVENT_BONDING_OPTIONS, /* change in bonding options */
1209};
1210
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DA
1211/* tun section */
1212
1213enum {
1214 IFLA_TUN_UNSPEC,
1215 IFLA_TUN_OWNER,
1216 IFLA_TUN_GROUP,
1217 IFLA_TUN_TYPE,
1218 IFLA_TUN_PI,
1219 IFLA_TUN_VNET_HDR,
1220 IFLA_TUN_PERSIST,
1221 IFLA_TUN_MULTI_QUEUE,
1222 IFLA_TUN_NUM_QUEUES,
1223 IFLA_TUN_NUM_DISABLED_QUEUES,
1224 __IFLA_TUN_MAX,
1225};
1226
1227#define IFLA_TUN_MAX (__IFLA_TUN_MAX - 1)
1228
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DA
1229/* rmnet section */
1230
1231#define RMNET_FLAGS_INGRESS_DEAGGREGATION (1U << 0)
1232#define RMNET_FLAGS_INGRESS_MAP_COMMANDS (1U << 1)
1233#define RMNET_FLAGS_INGRESS_MAP_CKSUMV4 (1U << 2)
1234#define RMNET_FLAGS_EGRESS_MAP_CKSUMV4 (1U << 3)
1235
1236enum {
1237 IFLA_RMNET_UNSPEC,
1238 IFLA_RMNET_MUX_ID,
1239 IFLA_RMNET_FLAGS,
1240 __IFLA_RMNET_MAX,
1241};
1242
1243#define IFLA_RMNET_MAX (__IFLA_RMNET_MAX - 1)
1244
1245struct ifla_rmnet_flags {
1246 __u32 flags;
1247 __u32 mask;
1248};
1249
910773dc 1250#endif /* _LINUX_IF_LINK_H */