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1 #ifndef __LINUX_RTNETLINK_H
2 #define __LINUX_RTNETLINK_H
3 
4 #include <linux/types.h>
5 #include <linux/netlink.h>
6 #include <linux/if_link.h>
7 #include <linux/if_addr.h>
8 #include <linux/neighbour.h>
9 
10 /* rtnetlink families. Values up to 127 are reserved for real address
11  * families, values above 128 may be used arbitrarily.
12  */
13 #define RTNL_FAMILY_IPMR		128
14 #define RTNL_FAMILY_IP6MR		129
15 #define RTNL_FAMILY_MAX			129
16 
17 /****
18  *		Routing/neighbour discovery messages.
19  ****/
20 
21 /* Types of messages */
22 
23 enum {
24 	RTM_BASE	= 16,
25 #define RTM_BASE	RTM_BASE
26 
27 	RTM_NEWLINK	= 16,
28 #define RTM_NEWLINK	RTM_NEWLINK
29 	RTM_DELLINK,
30 #define RTM_DELLINK	RTM_DELLINK
31 	RTM_GETLINK,
32 #define RTM_GETLINK	RTM_GETLINK
33 	RTM_SETLINK,
34 #define RTM_SETLINK	RTM_SETLINK
35 
36 	RTM_NEWADDR	= 20,
37 #define RTM_NEWADDR	RTM_NEWADDR
38 	RTM_DELADDR,
39 #define RTM_DELADDR	RTM_DELADDR
40 	RTM_GETADDR,
41 #define RTM_GETADDR	RTM_GETADDR
42 
43 	RTM_NEWROUTE	= 24,
44 #define RTM_NEWROUTE	RTM_NEWROUTE
45 	RTM_DELROUTE,
46 #define RTM_DELROUTE	RTM_DELROUTE
47 	RTM_GETROUTE,
48 #define RTM_GETROUTE	RTM_GETROUTE
49 
50 	RTM_NEWNEIGH	= 28,
51 #define RTM_NEWNEIGH	RTM_NEWNEIGH
52 	RTM_DELNEIGH,
53 #define RTM_DELNEIGH	RTM_DELNEIGH
54 	RTM_GETNEIGH,
55 #define RTM_GETNEIGH	RTM_GETNEIGH
56 
57 	RTM_NEWRULE	= 32,
58 #define RTM_NEWRULE	RTM_NEWRULE
59 	RTM_DELRULE,
60 #define RTM_DELRULE	RTM_DELRULE
61 	RTM_GETRULE,
62 #define RTM_GETRULE	RTM_GETRULE
63 
64 	RTM_NEWQDISC	= 36,
65 #define RTM_NEWQDISC	RTM_NEWQDISC
66 	RTM_DELQDISC,
67 #define RTM_DELQDISC	RTM_DELQDISC
68 	RTM_GETQDISC,
69 #define RTM_GETQDISC	RTM_GETQDISC
70 
71 	RTM_NEWTCLASS	= 40,
72 #define RTM_NEWTCLASS	RTM_NEWTCLASS
73 	RTM_DELTCLASS,
74 #define RTM_DELTCLASS	RTM_DELTCLASS
75 	RTM_GETTCLASS,
76 #define RTM_GETTCLASS	RTM_GETTCLASS
77 
78 	RTM_NEWTFILTER	= 44,
79 #define RTM_NEWTFILTER	RTM_NEWTFILTER
80 	RTM_DELTFILTER,
81 #define RTM_DELTFILTER	RTM_DELTFILTER
82 	RTM_GETTFILTER,
83 #define RTM_GETTFILTER	RTM_GETTFILTER
84 
85 	RTM_NEWACTION	= 48,
86 #define RTM_NEWACTION   RTM_NEWACTION
87 	RTM_DELACTION,
88 #define RTM_DELACTION   RTM_DELACTION
89 	RTM_GETACTION,
90 #define RTM_GETACTION   RTM_GETACTION
91 
92 	RTM_NEWPREFIX	= 52,
93 #define RTM_NEWPREFIX	RTM_NEWPREFIX
94 
95 	RTM_GETMULTICAST = 58,
96 #define RTM_GETMULTICAST RTM_GETMULTICAST
97 
98 	RTM_GETANYCAST	= 62,
99 #define RTM_GETANYCAST	RTM_GETANYCAST
100 
101 	RTM_NEWNEIGHTBL	= 64,
102 #define RTM_NEWNEIGHTBL	RTM_NEWNEIGHTBL
103 	RTM_GETNEIGHTBL	= 66,
104 #define RTM_GETNEIGHTBL	RTM_GETNEIGHTBL
105 	RTM_SETNEIGHTBL,
106 #define RTM_SETNEIGHTBL	RTM_SETNEIGHTBL
107 
108 	RTM_NEWNDUSEROPT = 68,
109 #define RTM_NEWNDUSEROPT RTM_NEWNDUSEROPT
110 
111 	RTM_NEWADDRLABEL = 72,
112 #define RTM_NEWADDRLABEL RTM_NEWADDRLABEL
113 	RTM_DELADDRLABEL,
114 #define RTM_DELADDRLABEL RTM_DELADDRLABEL
115 	RTM_GETADDRLABEL,
116 #define RTM_GETADDRLABEL RTM_GETADDRLABEL
117 
118 	RTM_GETDCB = 78,
119 #define RTM_GETDCB RTM_GETDCB
120 	RTM_SETDCB,
121 #define RTM_SETDCB RTM_SETDCB
122 
123 	__RTM_MAX,
124 #define RTM_MAX		(((__RTM_MAX + 3) & ~3) - 1)
125 };
126 
127 #define RTM_NR_MSGTYPES	(RTM_MAX + 1 - RTM_BASE)
128 #define RTM_NR_FAMILIES	(RTM_NR_MSGTYPES >> 2)
129 #define RTM_FAM(cmd)	(((cmd) - RTM_BASE) >> 2)
130 
131 /*
132    Generic structure for encapsulation of optional route information.
133    It is reminiscent of sockaddr, but with sa_family replaced
134    with attribute type.
135  */
136 
137 struct rtattr {
138 	unsigned short	rta_len;
139 	unsigned short	rta_type;
140 };
141 
142 /* Macros to handle rtattributes */
143 
144 #define RTA_ALIGNTO	4
145 #define RTA_ALIGN(len) ( ((len)+RTA_ALIGNTO-1) & ~(RTA_ALIGNTO-1) )
146 #define RTA_OK(rta,len) ((len) >= (int)sizeof(struct rtattr) && \
147 			 (rta)->rta_len >= sizeof(struct rtattr) && \
148 			 (rta)->rta_len <= (len))
149 #define RTA_NEXT(rta,attrlen)	((attrlen) -= RTA_ALIGN((rta)->rta_len), \
150 				 (struct rtattr*)(((char*)(rta)) + RTA_ALIGN((rta)->rta_len)))
151 #define RTA_LENGTH(len)	(RTA_ALIGN(sizeof(struct rtattr)) + (len))
152 #define RTA_SPACE(len)	RTA_ALIGN(RTA_LENGTH(len))
153 #define RTA_DATA(rta)   ((void*)(((char*)(rta)) + RTA_LENGTH(0)))
154 #define RTA_PAYLOAD(rta) ((int)((rta)->rta_len) - RTA_LENGTH(0))
155 
156 
157 
158 
159 /******************************************************************************
160  *		Definitions used in routing table administration.
161  ****/
162 
163 struct rtmsg {
164 	unsigned char		rtm_family;
165 	unsigned char		rtm_dst_len;
166 	unsigned char		rtm_src_len;
167 	unsigned char		rtm_tos;
168 
169 	unsigned char		rtm_table;	/* Routing table id */
170 	unsigned char		rtm_protocol;	/* Routing protocol; see below	*/
171 	unsigned char		rtm_scope;	/* See below */
172 	unsigned char		rtm_type;	/* See below	*/
173 
174 	unsigned		rtm_flags;
175 };
176 
177 /* rtm_type */
178 
179 enum {
180 	RTN_UNSPEC,
181 	RTN_UNICAST,		/* Gateway or direct route	*/
182 	RTN_LOCAL,		/* Accept locally		*/
183 	RTN_BROADCAST,		/* Accept locally as broadcast,
184 				   send as broadcast */
185 	RTN_ANYCAST,		/* Accept locally as broadcast,
186 				   but send as unicast */
187 	RTN_MULTICAST,		/* Multicast route		*/
188 	RTN_BLACKHOLE,		/* Drop				*/
189 	RTN_UNREACHABLE,	/* Destination is unreachable   */
190 	RTN_PROHIBIT,		/* Administratively prohibited	*/
191 	RTN_THROW,		/* Not in this table		*/
192 	RTN_NAT,		/* Translate this address	*/
193 	RTN_XRESOLVE,		/* Use external resolver	*/
194 	__RTN_MAX
195 };
196 
197 #define RTN_MAX (__RTN_MAX - 1)
198 
199 
200 /* rtm_protocol */
201 
202 #define RTPROT_UNSPEC	0
203 #define RTPROT_REDIRECT	1	/* Route installed by ICMP redirects;
204 				   not used by current IPv4 */
205 #define RTPROT_KERNEL	2	/* Route installed by kernel		*/
206 #define RTPROT_BOOT	3	/* Route installed during boot		*/
207 #define RTPROT_STATIC	4	/* Route installed by administrator	*/
208 
209 /* Values of protocol >= RTPROT_STATIC are not interpreted by kernel;
210    they are just passed from user and back as is.
211    It will be used by hypothetical multiple routing daemons.
212    Note that protocol values should be standardized in order to
213    avoid conflicts.
214  */
215 
216 #define RTPROT_GATED	8	/* Apparently, GateD */
217 #define RTPROT_RA	9	/* RDISC/ND router advertisements */
218 #define RTPROT_MRT	10	/* Merit MRT */
219 #define RTPROT_ZEBRA	11	/* Zebra */
220 #define RTPROT_BIRD	12	/* BIRD */
221 #define RTPROT_DNROUTED	13	/* DECnet routing daemon */
222 #define RTPROT_XORP	14	/* XORP */
223 #define RTPROT_NTK	15	/* Netsukuku */
224 #define RTPROT_DHCP	16      /* DHCP client */
225 
226 /* rtm_scope
227 
228    Really it is not scope, but sort of distance to the destination.
229    NOWHERE are reserved for not existing destinations, HOST is our
230    local addresses, LINK are destinations, located on directly attached
231    link and UNIVERSE is everywhere in the Universe.
232 
233    Intermediate values are also possible f.e. interior routes
234    could be assigned a value between UNIVERSE and LINK.
235 */
236 
237 enum rt_scope_t {
238 	RT_SCOPE_UNIVERSE=0,
239 /* User defined values  */
240 	RT_SCOPE_SITE=200,
241 	RT_SCOPE_LINK=253,
242 	RT_SCOPE_HOST=254,
243 	RT_SCOPE_NOWHERE=255
244 };
245 
246 /* rtm_flags */
247 
248 #define RTM_F_NOTIFY		0x100	/* Notify user of route change	*/
249 #define RTM_F_CLONED		0x200	/* This route is cloned		*/
250 #define RTM_F_EQUALIZE		0x400	/* Multipath equalizer: NI	*/
251 #define RTM_F_PREFIX		0x800	/* Prefix addresses		*/
252 
253 /* Reserved table identifiers */
254 
255 enum rt_class_t {
256 	RT_TABLE_UNSPEC=0,
257 /* User defined values */
258 	RT_TABLE_COMPAT=252,
259 	RT_TABLE_DEFAULT=253,
260 	RT_TABLE_MAIN=254,
261 	RT_TABLE_LOCAL=255,
262 	RT_TABLE_MAX=0xFFFFFFFF
263 };
264 
265 
266 /* Routing message attributes */
267 
268 enum rtattr_type_t {
269 	RTA_UNSPEC,
270 	RTA_DST,
271 	RTA_SRC,
272 	RTA_IIF,
273 	RTA_OIF,
274 	RTA_GATEWAY,
275 	RTA_PRIORITY,
276 	RTA_PREFSRC,
277 	RTA_METRICS,
278 	RTA_MULTIPATH,
279 	RTA_PROTOINFO, /* no longer used */
280 	RTA_FLOW,
281 	RTA_CACHEINFO,
282 	RTA_SESSION, /* no longer used */
283 	RTA_MP_ALGO, /* no longer used */
284 	RTA_TABLE,
285 	RTA_MARK,
286 	RTA_MFC_STATS, /* not used - backported from the future */
287 	RTA_UID,
288 	__RTA_MAX
289 };
290 
291 #define RTA_MAX (__RTA_MAX - 1)
292 
293 #define RTM_RTA(r)  ((struct rtattr*)(((char*)(r)) + NLMSG_ALIGN(sizeof(struct rtmsg))))
294 #define RTM_PAYLOAD(n) NLMSG_PAYLOAD(n,sizeof(struct rtmsg))
295 
296 /* RTM_MULTIPATH --- array of struct rtnexthop.
297  *
298  * "struct rtnexthop" describes all necessary nexthop information,
299  * i.e. parameters of path to a destination via this nexthop.
300  *
301  * At the moment it is impossible to set different prefsrc, mtu, window
302  * and rtt for different paths from multipath.
303  */
304 
305 struct rtnexthop {
306 	unsigned short		rtnh_len;
307 	unsigned char		rtnh_flags;
308 	unsigned char		rtnh_hops;
309 	int			rtnh_ifindex;
310 };
311 
312 /* rtnh_flags */
313 
314 #define RTNH_F_DEAD		1	/* Nexthop is dead (used by multipath)	*/
315 #define RTNH_F_PERVASIVE	2	/* Do recursive gateway lookup	*/
316 #define RTNH_F_ONLINK		4	/* Gateway is forced on link	*/
317 
318 /* Macros to handle hexthops */
319 
320 #define RTNH_ALIGNTO	4
321 #define RTNH_ALIGN(len) ( ((len)+RTNH_ALIGNTO-1) & ~(RTNH_ALIGNTO-1) )
322 #define RTNH_OK(rtnh,len) ((rtnh)->rtnh_len >= sizeof(struct rtnexthop) && \
323 			   ((int)(rtnh)->rtnh_len) <= (len))
324 #define RTNH_NEXT(rtnh)	((struct rtnexthop*)(((char*)(rtnh)) + RTNH_ALIGN((rtnh)->rtnh_len)))
325 #define RTNH_LENGTH(len) (RTNH_ALIGN(sizeof(struct rtnexthop)) + (len))
326 #define RTNH_SPACE(len)	RTNH_ALIGN(RTNH_LENGTH(len))
327 #define RTNH_DATA(rtnh)   ((struct rtattr*)(((char*)(rtnh)) + RTNH_LENGTH(0)))
328 
329 /* RTM_CACHEINFO */
330 
331 struct rta_cacheinfo {
332 	__u32	rta_clntref;
333 	__u32	rta_lastuse;
334 	__s32	rta_expires;
335 	__u32	rta_error;
336 	__u32	rta_used;
337 
338 #define RTNETLINK_HAVE_PEERINFO 1
339 	__u32	rta_id;
340 	__u32	rta_ts;
341 	__u32	rta_tsage;
342 };
343 
344 /* RTM_METRICS --- array of struct rtattr with types of RTAX_* */
345 
346 enum {
347 	RTAX_UNSPEC,
348 #define RTAX_UNSPEC RTAX_UNSPEC
349 	RTAX_LOCK,
350 #define RTAX_LOCK RTAX_LOCK
351 	RTAX_MTU,
352 #define RTAX_MTU RTAX_MTU
353 	RTAX_WINDOW,
354 #define RTAX_WINDOW RTAX_WINDOW
355 	RTAX_RTT,
356 #define RTAX_RTT RTAX_RTT
357 	RTAX_RTTVAR,
358 #define RTAX_RTTVAR RTAX_RTTVAR
359 	RTAX_SSTHRESH,
360 #define RTAX_SSTHRESH RTAX_SSTHRESH
361 	RTAX_CWND,
362 #define RTAX_CWND RTAX_CWND
363 	RTAX_ADVMSS,
364 #define RTAX_ADVMSS RTAX_ADVMSS
365 	RTAX_REORDERING,
366 #define RTAX_REORDERING RTAX_REORDERING
367 	RTAX_HOPLIMIT,
368 #define RTAX_HOPLIMIT RTAX_HOPLIMIT
369 	RTAX_INITCWND,
370 #define RTAX_INITCWND RTAX_INITCWND
371 	RTAX_FEATURES,
372 #define RTAX_FEATURES RTAX_FEATURES
373 	RTAX_RTO_MIN,
374 #define RTAX_RTO_MIN RTAX_RTO_MIN
375 	RTAX_INITRWND,
376 #define RTAX_INITRWND RTAX_INITRWND
377 	__RTAX_MAX
378 };
379 
380 #define RTAX_MAX (__RTAX_MAX - 1)
381 
382 #define RTAX_FEATURE_ECN	0x00000001
383 #define RTAX_FEATURE_SACK	0x00000002
384 #define RTAX_FEATURE_TIMESTAMP	0x00000004
385 #define RTAX_FEATURE_ALLFRAG	0x00000008
386 
387 struct rta_session {
388 	__u8	proto;
389 	__u8	pad1;
390 	__u16	pad2;
391 
392 	union {
393 		struct {
394 			__u16	sport;
395 			__u16	dport;
396 		} ports;
397 
398 		struct {
399 			__u8	type;
400 			__u8	code;
401 			__u16	ident;
402 		} icmpt;
403 
404 		__u32		spi;
405 	} u;
406 };
407 
408 /****
409  *		General form of address family dependent message.
410  ****/
411 
412 struct rtgenmsg {
413 	unsigned char		rtgen_family;
414 };
415 
416 /*****************************************************************
417  *		Link layer specific messages.
418  ****/
419 
420 /* struct ifinfomsg
421  * passes link level specific information, not dependent
422  * on network protocol.
423  */
424 
425 struct ifinfomsg {
426 	unsigned char	ifi_family;
427 	unsigned char	__ifi_pad;
428 	unsigned short	ifi_type;		/* ARPHRD_* */
429 	int		ifi_index;		/* Link index	*/
430 	unsigned	ifi_flags;		/* IFF_* flags	*/
431 	unsigned	ifi_change;		/* IFF_* change mask */
432 };
433 
434 /********************************************************************
435  *		prefix information
436  ****/
437 
438 struct prefixmsg {
439 	unsigned char	prefix_family;
440 	unsigned char	prefix_pad1;
441 	unsigned short	prefix_pad2;
442 	int		prefix_ifindex;
443 	unsigned char	prefix_type;
444 	unsigned char	prefix_len;
445 	unsigned char	prefix_flags;
446 	unsigned char	prefix_pad3;
447 };
448 
449 enum
450 {
451 	PREFIX_UNSPEC,
452 	PREFIX_ADDRESS,
453 	PREFIX_CACHEINFO,
454 	__PREFIX_MAX
455 };
456 
457 #define PREFIX_MAX	(__PREFIX_MAX - 1)
458 
459 struct prefix_cacheinfo {
460 	__u32	preferred_time;
461 	__u32	valid_time;
462 };
463 
464 
465 /*****************************************************************
466  *		Traffic control messages.
467  ****/
468 
469 struct tcmsg {
470 	unsigned char	tcm_family;
471 	unsigned char	tcm__pad1;
472 	unsigned short	tcm__pad2;
473 	int		tcm_ifindex;
474 	__u32		tcm_handle;
475 	__u32		tcm_parent;
476 	__u32		tcm_info;
477 };
478 
479 enum {
480 	TCA_UNSPEC,
481 	TCA_KIND,
482 	TCA_OPTIONS,
483 	TCA_STATS,
484 	TCA_XSTATS,
485 	TCA_RATE,
486 	TCA_FCNT,
487 	TCA_STATS2,
488 	TCA_STAB,
489 	__TCA_MAX
490 };
491 
492 #define TCA_MAX (__TCA_MAX - 1)
493 
494 #define TCA_RTA(r)  ((struct rtattr*)(((char*)(r)) + NLMSG_ALIGN(sizeof(struct tcmsg))))
495 #define TCA_PAYLOAD(n) NLMSG_PAYLOAD(n,sizeof(struct tcmsg))
496 
497 /********************************************************************
498  *		Neighbor Discovery userland options
499  ****/
500 
501 struct nduseroptmsg {
502 	unsigned char	nduseropt_family;
503 	unsigned char	nduseropt_pad1;
504 	unsigned short	nduseropt_opts_len;	/* Total length of options */
505 	int		nduseropt_ifindex;
506 	__u8		nduseropt_icmp_type;
507 	__u8		nduseropt_icmp_code;
508 	unsigned short	nduseropt_pad2;
509 	unsigned int	nduseropt_pad3;
510 	/* Followed by one or more ND options */
511 };
512 
513 enum {
514 	NDUSEROPT_UNSPEC,
515 	NDUSEROPT_SRCADDR,
516 	__NDUSEROPT_MAX
517 };
518 
519 #define NDUSEROPT_MAX	(__NDUSEROPT_MAX - 1)
520 
521 #ifndef __KERNEL__
522 /* RTnetlink multicast groups - backwards compatibility for userspace */
523 #define RTMGRP_LINK		1
524 #define RTMGRP_NOTIFY		2
525 #define RTMGRP_NEIGH		4
526 #define RTMGRP_TC		8
527 
528 #define RTMGRP_IPV4_IFADDR	0x10
529 #define RTMGRP_IPV4_MROUTE	0x20
530 #define RTMGRP_IPV4_ROUTE	0x40
531 #define RTMGRP_IPV4_RULE	0x80
532 
533 #define RTMGRP_IPV6_IFADDR	0x100
534 #define RTMGRP_IPV6_MROUTE	0x200
535 #define RTMGRP_IPV6_ROUTE	0x400
536 #define RTMGRP_IPV6_IFINFO	0x800
537 
538 #define RTMGRP_DECnet_IFADDR    0x1000
539 #define RTMGRP_DECnet_ROUTE     0x4000
540 
541 #define RTMGRP_IPV6_PREFIX	0x20000
542 #endif
543 
544 /* RTnetlink multicast groups */
545 enum rtnetlink_groups {
546 	RTNLGRP_NONE,
547 #define RTNLGRP_NONE		RTNLGRP_NONE
548 	RTNLGRP_LINK,
549 #define RTNLGRP_LINK		RTNLGRP_LINK
550 	RTNLGRP_NOTIFY,
551 #define RTNLGRP_NOTIFY		RTNLGRP_NOTIFY
552 	RTNLGRP_NEIGH,
553 #define RTNLGRP_NEIGH		RTNLGRP_NEIGH
554 	RTNLGRP_TC,
555 #define RTNLGRP_TC		RTNLGRP_TC
556 	RTNLGRP_IPV4_IFADDR,
557 #define RTNLGRP_IPV4_IFADDR	RTNLGRP_IPV4_IFADDR
558 	RTNLGRP_IPV4_MROUTE,
559 #define	RTNLGRP_IPV4_MROUTE	RTNLGRP_IPV4_MROUTE
560 	RTNLGRP_IPV4_ROUTE,
561 #define RTNLGRP_IPV4_ROUTE	RTNLGRP_IPV4_ROUTE
562 	RTNLGRP_IPV4_RULE,
563 #define RTNLGRP_IPV4_RULE	RTNLGRP_IPV4_RULE
564 	RTNLGRP_IPV6_IFADDR,
565 #define RTNLGRP_IPV6_IFADDR	RTNLGRP_IPV6_IFADDR
566 	RTNLGRP_IPV6_MROUTE,
567 #define RTNLGRP_IPV6_MROUTE	RTNLGRP_IPV6_MROUTE
568 	RTNLGRP_IPV6_ROUTE,
569 #define RTNLGRP_IPV6_ROUTE	RTNLGRP_IPV6_ROUTE
570 	RTNLGRP_IPV6_IFINFO,
571 #define RTNLGRP_IPV6_IFINFO	RTNLGRP_IPV6_IFINFO
572 	RTNLGRP_DECnet_IFADDR,
573 #define RTNLGRP_DECnet_IFADDR	RTNLGRP_DECnet_IFADDR
574 	RTNLGRP_NOP2,
575 	RTNLGRP_DECnet_ROUTE,
576 #define RTNLGRP_DECnet_ROUTE	RTNLGRP_DECnet_ROUTE
577 	RTNLGRP_DECnet_RULE,
578 #define RTNLGRP_DECnet_RULE	RTNLGRP_DECnet_RULE
579 	RTNLGRP_NOP4,
580 	RTNLGRP_IPV6_PREFIX,
581 #define RTNLGRP_IPV6_PREFIX	RTNLGRP_IPV6_PREFIX
582 	RTNLGRP_IPV6_RULE,
583 #define RTNLGRP_IPV6_RULE	RTNLGRP_IPV6_RULE
584 	RTNLGRP_ND_USEROPT,
585 #define RTNLGRP_ND_USEROPT	RTNLGRP_ND_USEROPT
586 	RTNLGRP_PHONET_IFADDR,
587 #define RTNLGRP_PHONET_IFADDR	RTNLGRP_PHONET_IFADDR
588 	RTNLGRP_PHONET_ROUTE,
589 #define RTNLGRP_PHONET_ROUTE	RTNLGRP_PHONET_ROUTE
590 	RTNLGRP_DCB,
591 #define RTNLGRP_DCB		RTNLGRP_DCB
592 	__RTNLGRP_MAX
593 };
594 #define RTNLGRP_MAX	(__RTNLGRP_MAX - 1)
595 
596 /* TC action piece */
597 struct tcamsg {
598 	unsigned char	tca_family;
599 	unsigned char	tca__pad1;
600 	unsigned short	tca__pad2;
601 };
602 #define TA_RTA(r)  ((struct rtattr*)(((char*)(r)) + NLMSG_ALIGN(sizeof(struct tcamsg))))
603 #define TA_PAYLOAD(n) NLMSG_PAYLOAD(n,sizeof(struct tcamsg))
604 #define TCA_ACT_TAB 1 /* attr type must be >=1 */
605 #define TCAA_MAX 1
606 
607 /* New extended info filters for IFLA_EXT_MASK */
608 #define RTEXT_FILTER_VF		(1 << 0)
609 
610 /* End of information exported to user level */
611 
612 #ifdef __KERNEL__
613 
614 #include <linux/mutex.h>
615 #include <linux/netdevice.h>
616 
rtattr_strcmp(const struct rtattr * rta,const char * str)617 static __inline__ int rtattr_strcmp(const struct rtattr *rta, const char *str)
618 {
619 	int len = strlen(str) + 1;
620 	return len > rta->rta_len || memcmp(RTA_DATA(rta), str, len);
621 }
622 
623 extern int rtnetlink_send(struct sk_buff *skb, struct net *net, u32 pid, u32 group, int echo);
624 extern int rtnl_unicast(struct sk_buff *skb, struct net *net, u32 pid);
625 extern void rtnl_notify(struct sk_buff *skb, struct net *net, u32 pid,
626 			u32 group, struct nlmsghdr *nlh, gfp_t flags);
627 extern void rtnl_set_sk_err(struct net *net, u32 group, int error);
628 extern int rtnetlink_put_metrics(struct sk_buff *skb, u32 *metrics);
629 extern int rtnl_put_cacheinfo(struct sk_buff *skb, struct dst_entry *dst,
630 			      u32 id, u32 ts, u32 tsage, long expires,
631 			      u32 error);
632 
633 extern void __rta_fill(struct sk_buff *skb, int attrtype, int attrlen, const void *data);
634 
635 #define RTA_PUT(skb, attrtype, attrlen, data) \
636 ({	if (unlikely(skb_tailroom(skb) < (int)RTA_SPACE(attrlen))) \
637 		 goto rtattr_failure; \
638    	__rta_fill(skb, attrtype, attrlen, data); })
639 
640 #define RTA_APPEND(skb, attrlen, data) \
641 ({	if (unlikely(skb_tailroom(skb) < (int)(attrlen))) \
642 		goto rtattr_failure; \
643 	memcpy(skb_put(skb, attrlen), data, attrlen); })
644 
645 #define RTA_PUT_NOHDR(skb, attrlen, data) \
646 ({	RTA_APPEND(skb, RTA_ALIGN(attrlen), data); \
647 	memset(skb_tail_pointer(skb) - (RTA_ALIGN(attrlen) - attrlen), 0, \
648 	       RTA_ALIGN(attrlen) - attrlen); })
649 
650 #define RTA_PUT_U8(skb, attrtype, value) \
651 ({	u8 _tmp = (value); \
652 	RTA_PUT(skb, attrtype, sizeof(u8), &_tmp); })
653 
654 #define RTA_PUT_U16(skb, attrtype, value) \
655 ({	u16 _tmp = (value); \
656 	RTA_PUT(skb, attrtype, sizeof(u16), &_tmp); })
657 
658 #define RTA_PUT_U32(skb, attrtype, value) \
659 ({	u32 _tmp = (value); \
660 	RTA_PUT(skb, attrtype, sizeof(u32), &_tmp); })
661 
662 #define RTA_PUT_U64(skb, attrtype, value) \
663 ({	u64 _tmp = (value); \
664 	RTA_PUT(skb, attrtype, sizeof(u64), &_tmp); })
665 
666 #define RTA_PUT_SECS(skb, attrtype, value) \
667 	RTA_PUT_U64(skb, attrtype, (value) / HZ)
668 
669 #define RTA_PUT_MSECS(skb, attrtype, value) \
670 	RTA_PUT_U64(skb, attrtype, jiffies_to_msecs(value))
671 
672 #define RTA_PUT_STRING(skb, attrtype, value) \
673 	RTA_PUT(skb, attrtype, strlen(value) + 1, value)
674 
675 #define RTA_PUT_FLAG(skb, attrtype) \
676 	RTA_PUT(skb, attrtype, 0, NULL);
677 
678 #define RTA_NEST(skb, type) \
679 ({	struct rtattr *__start = (struct rtattr *)skb_tail_pointer(skb); \
680 	RTA_PUT(skb, type, 0, NULL); \
681 	__start;  })
682 
683 #define RTA_NEST_END(skb, start) \
684 ({	(start)->rta_len = skb_tail_pointer(skb) - (unsigned char *)(start); \
685 	(skb)->len; })
686 
687 #define RTA_NEST_COMPAT(skb, type, attrlen, data) \
688 ({	struct rtattr *__start = (struct rtattr *)skb_tail_pointer(skb); \
689 	RTA_PUT(skb, type, attrlen, data); \
690 	RTA_NEST(skb, type); \
691 	__start; })
692 
693 #define RTA_NEST_COMPAT_END(skb, start) \
694 ({	struct rtattr *__nest = (void *)(start) + NLMSG_ALIGN((start)->rta_len); \
695 	(start)->rta_len = skb_tail_pointer(skb) - (unsigned char *)(start); \
696 	RTA_NEST_END(skb, __nest); \
697 	(skb)->len; })
698 
699 #define RTA_NEST_CANCEL(skb, start) \
700 ({	if (start) \
701 		skb_trim(skb, (unsigned char *) (start) - (skb)->data); \
702 	-1; })
703 
704 #define RTA_GET_U8(rta) \
705 ({	if (!rta || RTA_PAYLOAD(rta) < sizeof(u8)) \
706 		goto rtattr_failure; \
707 	*(u8 *) RTA_DATA(rta); })
708 
709 #define RTA_GET_U16(rta) \
710 ({	if (!rta || RTA_PAYLOAD(rta) < sizeof(u16)) \
711 		goto rtattr_failure; \
712 	*(u16 *) RTA_DATA(rta); })
713 
714 #define RTA_GET_U32(rta) \
715 ({	if (!rta || RTA_PAYLOAD(rta) < sizeof(u32)) \
716 		goto rtattr_failure; \
717 	*(u32 *) RTA_DATA(rta); })
718 
719 #define RTA_GET_U64(rta) \
720 ({	u64 _tmp; \
721 	if (!rta || RTA_PAYLOAD(rta) < sizeof(u64)) \
722 		goto rtattr_failure; \
723 	memcpy(&_tmp, RTA_DATA(rta), sizeof(_tmp)); \
724 	_tmp; })
725 
726 #define RTA_GET_FLAG(rta) (!!(rta))
727 
728 #define RTA_GET_SECS(rta) ((unsigned long) RTA_GET_U64(rta) * HZ)
729 #define RTA_GET_MSECS(rta) (msecs_to_jiffies((unsigned long) RTA_GET_U64(rta)))
730 
731 static inline struct rtattr *
__rta_reserve(struct sk_buff * skb,int attrtype,int attrlen)732 __rta_reserve(struct sk_buff *skb, int attrtype, int attrlen)
733 {
734 	struct rtattr *rta;
735 	int size = RTA_LENGTH(attrlen);
736 
737 	rta = (struct rtattr*)skb_put(skb, RTA_ALIGN(size));
738 	rta->rta_type = attrtype;
739 	rta->rta_len = size;
740 	memset(RTA_DATA(rta) + attrlen, 0, RTA_ALIGN(size) - size);
741 	return rta;
742 }
743 
744 #define __RTA_PUT(skb, attrtype, attrlen) \
745 ({ 	if (unlikely(skb_tailroom(skb) < (int)RTA_SPACE(attrlen))) \
746 		goto rtattr_failure; \
747    	__rta_reserve(skb, attrtype, attrlen); })
748 
749 extern void rtmsg_ifinfo(int type, struct net_device *dev, unsigned change);
750 
751 /* RTNL is used as a global lock for all changes to network configuration  */
752 extern void rtnl_lock(void);
753 extern void rtnl_unlock(void);
754 extern int rtnl_trylock(void);
755 extern int rtnl_is_locked(void);
756 #ifdef CONFIG_PROVE_LOCKING
757 extern int lockdep_rtnl_is_held(void);
758 #endif /* #ifdef CONFIG_PROVE_LOCKING */
759 
760 /**
761  * rcu_dereference_rtnl - rcu_dereference with debug checking
762  * @p: The pointer to read, prior to dereferencing
763  *
764  * Do an rcu_dereference(p), but check caller either holds rcu_read_lock()
765  * or RTNL. Note : Please prefer rtnl_dereference() or rcu_dereference()
766  */
767 #define rcu_dereference_rtnl(p)					\
768 	rcu_dereference_check(p, lockdep_rtnl_is_held())
769 
770 /**
771  * rtnl_dereference - fetch RCU pointer when updates are prevented by RTNL
772  * @p: The pointer to read, prior to dereferencing
773  *
774  * Return the value of the specified RCU-protected pointer, but omit
775  * both the smp_read_barrier_depends() and the ACCESS_ONCE(), because
776  * caller holds RTNL.
777  */
778 #define rtnl_dereference(p)					\
779 	rcu_dereference_protected(p, lockdep_rtnl_is_held())
780 
dev_ingress_queue(struct net_device * dev)781 static inline struct netdev_queue *dev_ingress_queue(struct net_device *dev)
782 {
783 	return rtnl_dereference(dev->ingress_queue);
784 }
785 
786 extern struct netdev_queue *dev_ingress_queue_create(struct net_device *dev);
787 
788 extern void rtnetlink_init(void);
789 extern void __rtnl_unlock(void);
790 
791 #define ASSERT_RTNL() do { \
792 	if (unlikely(!rtnl_is_locked())) { \
793 		printk(KERN_ERR "RTNL: assertion failed at %s (%d)\n", \
794 		       __FILE__,  __LINE__); \
795 		dump_stack(); \
796 	} \
797 } while(0)
798 
rtm_get_table(struct rtattr ** rta,u8 table)799 static inline u32 rtm_get_table(struct rtattr **rta, u8 table)
800 {
801 	return RTA_GET_U32(rta[RTA_TABLE-1]);
802 rtattr_failure:
803 	return table;
804 }
805 
806 #endif /* __KERNEL__ */
807 
808 
809 #endif	/* __LINUX_RTNETLINK_H */
810