xref: /freebsd/sys/net/route/route_ctl.c (revision 16038816)
1 /*-
2  * SPDX-License-Identifier: BSD-2-Clause-FreeBSD
3  *
4  * Copyright (c) 2020 Alexander V. Chernikov
5  *
6  * Redistribution and use in source and binary forms, with or without
7  * modification, are permitted provided that the following conditions
8  * are met:
9  * 1. Redistributions of source code must retain the above copyright
10  *    notice, this list of conditions and the following disclaimer.
11  * 2. Redistributions in binary form must reproduce the above copyright
12  *    notice, this list of conditions and the following disclaimer in the
13  *    documentation and/or other materials provided with the distribution.
14  *
15  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
16  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
17  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
18  * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
19  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
20  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
21  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
22  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
23  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
24  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
25  * SUCH DAMAGE.
26  */
27 
28 #include <sys/cdefs.h>
29 __FBSDID("$FreeBSD$");
30 #include "opt_inet.h"
31 #include "opt_inet6.h"
32 #include "opt_route.h"
33 
34 #include <sys/param.h>
35 #include <sys/systm.h>
36 #include <sys/malloc.h>
37 #include <sys/mbuf.h>
38 #include <sys/socket.h>
39 #include <sys/sysctl.h>
40 #include <sys/syslog.h>
41 #include <sys/kernel.h>
42 #include <sys/lock.h>
43 #include <sys/rmlock.h>
44 
45 #include <net/if.h>
46 #include <net/if_var.h>
47 #include <net/if_dl.h>
48 #include <net/vnet.h>
49 #include <net/route.h>
50 #include <net/route/route_ctl.h>
51 #include <net/route/route_var.h>
52 #include <net/route/nhop_utils.h>
53 #include <net/route/nhop.h>
54 #include <net/route/nhop_var.h>
55 #include <netinet/in.h>
56 #include <netinet6/scope6_var.h>
57 
58 #include <vm/uma.h>
59 
60 /*
61  * This file contains control plane routing tables functions.
62  *
63  * All functions assumes they are called in net epoch.
64  */
65 
66 struct rib_subscription {
67 	CK_STAILQ_ENTRY(rib_subscription)	next;
68 	rib_subscription_cb_t			*func;
69 	void					*arg;
70 	struct rib_head				*rnh;
71 	enum rib_subscription_type		type;
72 	struct epoch_context			epoch_ctx;
73 };
74 
75 static int add_route(struct rib_head *rnh, struct rt_addrinfo *info,
76     struct rib_cmd_info *rc);
77 static int add_route_nhop(struct rib_head *rnh, struct rtentry *rt,
78     struct rt_addrinfo *info, struct route_nhop_data *rnd,
79     struct rib_cmd_info *rc);
80 static int del_route(struct rib_head *rnh, struct rt_addrinfo *info,
81     struct rib_cmd_info *rc);
82 static int change_route(struct rib_head *rnh, struct rt_addrinfo *info,
83     struct route_nhop_data *nhd_orig, struct rib_cmd_info *rc);
84 
85 static int rt_unlinkrte(struct rib_head *rnh, struct rt_addrinfo *info,
86     struct rib_cmd_info *rc);
87 
88 static void rib_notify(struct rib_head *rnh, enum rib_subscription_type type,
89     struct rib_cmd_info *rc);
90 
91 static void destroy_subscription_epoch(epoch_context_t ctx);
92 #ifdef ROUTE_MPATH
93 static bool rib_can_multipath(struct rib_head *rh);
94 #endif
95 
96 /* Per-vnet multipath routing configuration */
97 SYSCTL_DECL(_net_route);
98 #define	V_rib_route_multipath	VNET(rib_route_multipath)
99 #ifdef ROUTE_MPATH
100 #define _MP_FLAGS	CTLFLAG_RW
101 #else
102 #define _MP_FLAGS	CTLFLAG_RD
103 #endif
104 VNET_DEFINE(u_int, rib_route_multipath) = 1;
105 SYSCTL_UINT(_net_route, OID_AUTO, multipath, _MP_FLAGS | CTLFLAG_VNET,
106     &VNET_NAME(rib_route_multipath), 0, "Enable route multipath");
107 #undef _MP_FLAGS
108 
109 /* Routing table UMA zone */
110 VNET_DEFINE_STATIC(uma_zone_t, rtzone);
111 #define	V_rtzone	VNET(rtzone)
112 
113 void
114 vnet_rtzone_init()
115 {
116 
117 	V_rtzone = uma_zcreate("rtentry", sizeof(struct rtentry),
118 		NULL, NULL, NULL, NULL, UMA_ALIGN_PTR, 0);
119 }
120 
121 #ifdef VIMAGE
122 void
123 vnet_rtzone_destroy()
124 {
125 
126 	uma_zdestroy(V_rtzone);
127 }
128 #endif
129 
130 static void
131 destroy_rtentry(struct rtentry *rt)
132 {
133 #ifdef VIMAGE
134 	struct nhop_object *nh = rt->rt_nhop;
135 
136 	/*
137 	 * At this moment rnh, nh_control may be already freed.
138 	 * nhop interface may have been migrated to a different vnet.
139 	 * Use vnet stored in the nexthop to delete the entry.
140 	 */
141 #ifdef ROUTE_MPATH
142 	if (NH_IS_NHGRP(nh)) {
143 		struct weightened_nhop *wn;
144 		uint32_t num_nhops;
145 		wn = nhgrp_get_nhops((struct nhgrp_object *)nh, &num_nhops);
146 		nh = wn[0].nh;
147 	}
148 #endif
149 	CURVNET_SET(nhop_get_vnet(nh));
150 #endif
151 
152 	/* Unreference nexthop */
153 	nhop_free_any(rt->rt_nhop);
154 
155 	uma_zfree(V_rtzone, rt);
156 
157 	CURVNET_RESTORE();
158 }
159 
160 /*
161  * Epoch callback indicating rtentry is safe to destroy
162  */
163 static void
164 destroy_rtentry_epoch(epoch_context_t ctx)
165 {
166 	struct rtentry *rt;
167 
168 	rt = __containerof(ctx, struct rtentry, rt_epoch_ctx);
169 
170 	destroy_rtentry(rt);
171 }
172 
173 /*
174  * Schedule rtentry deletion
175  */
176 static void
177 rtfree(struct rtentry *rt)
178 {
179 
180 	KASSERT(rt != NULL, ("%s: NULL rt", __func__));
181 
182 	epoch_call(net_epoch_preempt, destroy_rtentry_epoch,
183 	    &rt->rt_epoch_ctx);
184 }
185 
186 static struct rib_head *
187 get_rnh(uint32_t fibnum, const struct rt_addrinfo *info)
188 {
189 	struct rib_head *rnh;
190 	struct sockaddr *dst;
191 
192 	KASSERT((fibnum < rt_numfibs), ("rib_add_route: bad fibnum"));
193 
194 	dst = info->rti_info[RTAX_DST];
195 	rnh = rt_tables_get_rnh(fibnum, dst->sa_family);
196 
197 	return (rnh);
198 }
199 
200 #ifdef ROUTE_MPATH
201 static bool
202 rib_can_multipath(struct rib_head *rh)
203 {
204 	int result;
205 
206 	CURVNET_SET(rh->rib_vnet);
207 	result = !!V_rib_route_multipath;
208 	CURVNET_RESTORE();
209 
210 	return (result);
211 }
212 
213 /*
214  * Check is nhop is multipath-eligible.
215  * Avoid nhops without gateways and redirects.
216  *
217  * Returns 1 for multipath-eligible nexthop,
218  * 0 otherwise.
219  */
220 bool
221 nhop_can_multipath(const struct nhop_object *nh)
222 {
223 
224 	if ((nh->nh_flags & NHF_MULTIPATH) != 0)
225 		return (1);
226 	if ((nh->nh_flags & NHF_GATEWAY) == 0)
227 		return (0);
228 	if ((nh->nh_flags & NHF_REDIRECT) != 0)
229 		return (0);
230 
231 	return (1);
232 }
233 #endif
234 
235 static int
236 get_info_weight(const struct rt_addrinfo *info, uint32_t default_weight)
237 {
238 	uint32_t weight;
239 
240 	if (info->rti_mflags & RTV_WEIGHT)
241 		weight = info->rti_rmx->rmx_weight;
242 	else
243 		weight = default_weight;
244 	/* Keep upper 1 byte for adm distance purposes */
245 	if (weight > RT_MAX_WEIGHT)
246 		weight = RT_MAX_WEIGHT;
247 
248 	return (weight);
249 }
250 
251 bool
252 rt_is_host(const struct rtentry *rt)
253 {
254 
255 	return (rt->rte_flags & RTF_HOST);
256 }
257 
258 sa_family_t
259 rt_get_family(const struct rtentry *rt)
260 {
261 	const struct sockaddr *dst;
262 
263 	dst = (const struct sockaddr *)rt_key_const(rt);
264 
265 	return (dst->sa_family);
266 }
267 
268 /*
269  * Returns pointer to nexthop or nexthop group
270  * associated with @rt
271  */
272 struct nhop_object *
273 rt_get_raw_nhop(const struct rtentry *rt)
274 {
275 
276 	return (rt->rt_nhop);
277 }
278 
279 #ifdef INET
280 /*
281  * Stores IPv4 address and prefix length of @rt inside
282  *  @paddr and @plen.
283  * @pscopeid is currently always set to 0.
284  */
285 void
286 rt_get_inet_prefix_plen(const struct rtentry *rt, struct in_addr *paddr,
287     int *plen, uint32_t *pscopeid)
288 {
289 	const struct sockaddr_in *dst;
290 
291 	dst = (const struct sockaddr_in *)rt_key_const(rt);
292 	KASSERT((dst->sin_family == AF_INET),
293 	    ("rt family is %d, not inet", dst->sin_family));
294 	*paddr = dst->sin_addr;
295 	dst = (const struct sockaddr_in *)rt_mask_const(rt);
296 	if (dst == NULL)
297 		*plen = 32;
298 	else
299 		*plen = bitcount32(dst->sin_addr.s_addr);
300 	*pscopeid = 0;
301 }
302 
303 /*
304  * Stores IPv4 address and prefix mask of @rt inside
305  *  @paddr and @pmask. Sets mask to INADDR_ANY for host routes.
306  * @pscopeid is currently always set to 0.
307  */
308 void
309 rt_get_inet_prefix_pmask(const struct rtentry *rt, struct in_addr *paddr,
310     struct in_addr *pmask, uint32_t *pscopeid)
311 {
312 	const struct sockaddr_in *dst;
313 
314 	dst = (const struct sockaddr_in *)rt_key_const(rt);
315 	KASSERT((dst->sin_family == AF_INET),
316 	    ("rt family is %d, not inet", dst->sin_family));
317 	*paddr = dst->sin_addr;
318 	dst = (const struct sockaddr_in *)rt_mask_const(rt);
319 	if (dst == NULL)
320 		pmask->s_addr = INADDR_BROADCAST;
321 	else
322 		*pmask = dst->sin_addr;
323 	*pscopeid = 0;
324 }
325 #endif
326 
327 #ifdef INET6
328 static int
329 inet6_get_plen(const struct in6_addr *addr)
330 {
331 
332 	return (bitcount32(addr->s6_addr32[0]) + bitcount32(addr->s6_addr32[1]) +
333 	    bitcount32(addr->s6_addr32[2]) + bitcount32(addr->s6_addr32[3]));
334 }
335 
336 /*
337  * Stores IPv6 address and prefix length of @rt inside
338  *  @paddr and @plen. Addresses are returned in de-embedded form.
339  * Scopeid is set to 0 for non-LL addresses.
340  */
341 void
342 rt_get_inet6_prefix_plen(const struct rtentry *rt, struct in6_addr *paddr,
343     int *plen, uint32_t *pscopeid)
344 {
345 	const struct sockaddr_in6 *dst;
346 
347 	dst = (const struct sockaddr_in6 *)rt_key_const(rt);
348 	KASSERT((dst->sin6_family == AF_INET6),
349 	    ("rt family is %d, not inet6", dst->sin6_family));
350 	if (IN6_IS_SCOPE_LINKLOCAL(&dst->sin6_addr))
351 		in6_splitscope(&dst->sin6_addr, paddr, pscopeid);
352 	else
353 		*paddr = dst->sin6_addr;
354 	dst = (const struct sockaddr_in6 *)rt_mask_const(rt);
355 	if (dst == NULL)
356 		*plen = 128;
357 	else
358 		*plen = inet6_get_plen(&dst->sin6_addr);
359 }
360 
361 /*
362  * Stores IPv6 address and prefix mask of @rt inside
363  *  @paddr and @pmask. Addresses are returned in de-embedded form.
364  * Scopeid is set to 0 for non-LL addresses.
365  */
366 void
367 rt_get_inet6_prefix_pmask(const struct rtentry *rt, struct in6_addr *paddr,
368     struct in6_addr *pmask, uint32_t *pscopeid)
369 {
370 	const struct sockaddr_in6 *dst;
371 
372 	dst = (const struct sockaddr_in6 *)rt_key_const(rt);
373 	KASSERT((dst->sin6_family == AF_INET6),
374 	    ("rt family is %d, not inet", dst->sin6_family));
375 	if (IN6_IS_SCOPE_LINKLOCAL(&dst->sin6_addr))
376 		in6_splitscope(&dst->sin6_addr, paddr, pscopeid);
377 	else
378 		*paddr = dst->sin6_addr;
379 	dst = (const struct sockaddr_in6 *)rt_mask_const(rt);
380 	if (dst == NULL)
381 		memset(pmask, 0xFF, sizeof(struct in6_addr));
382 	else
383 		*pmask = dst->sin6_addr;
384 }
385 #endif
386 
387 static void
388 rt_set_expire_info(struct rtentry *rt, const struct rt_addrinfo *info)
389 {
390 
391 	/* Kernel -> userland timebase conversion. */
392 	if (info->rti_mflags & RTV_EXPIRE)
393 		rt->rt_expire = info->rti_rmx->rmx_expire ?
394 		    info->rti_rmx->rmx_expire - time_second + time_uptime : 0;
395 }
396 
397 /*
398  * Check if specified @gw matches gw data in the nexthop @nh.
399  *
400  * Returns true if matches, false otherwise.
401  */
402 bool
403 match_nhop_gw(const struct nhop_object *nh, const struct sockaddr *gw)
404 {
405 
406 	if (nh->gw_sa.sa_family != gw->sa_family)
407 		return (false);
408 
409 	switch (gw->sa_family) {
410 	case AF_INET:
411 		return (nh->gw4_sa.sin_addr.s_addr ==
412 		    ((const struct sockaddr_in *)gw)->sin_addr.s_addr);
413 	case AF_INET6:
414 		{
415 			const struct sockaddr_in6 *gw6;
416 			gw6 = (const struct sockaddr_in6 *)gw;
417 
418 			/*
419 			 * Currently (2020-09) IPv6 gws in kernel have their
420 			 * scope embedded. Once this becomes false, this code
421 			 * has to be revisited.
422 			 */
423 			if (IN6_ARE_ADDR_EQUAL(&nh->gw6_sa.sin6_addr,
424 			    &gw6->sin6_addr))
425 				return (true);
426 			return (false);
427 		}
428 	case AF_LINK:
429 		{
430 			const struct sockaddr_dl *sdl;
431 			sdl = (const struct sockaddr_dl *)gw;
432 			return (nh->gwl_sa.sdl_index == sdl->sdl_index);
433 		}
434 	default:
435 		return (memcmp(&nh->gw_sa, gw, nh->gw_sa.sa_len) == 0);
436 	}
437 
438 	/* NOTREACHED */
439 	return (false);
440 }
441 
442 /*
443  * Checks if data in @info matches nexhop @nh.
444  *
445  * Returns 0 on success,
446  * ESRCH if not matched,
447  * ENOENT if filter function returned false
448  */
449 int
450 check_info_match_nhop(const struct rt_addrinfo *info, const struct rtentry *rt,
451     const struct nhop_object *nh)
452 {
453 	const struct sockaddr *gw = info->rti_info[RTAX_GATEWAY];
454 
455 	if (info->rti_filter != NULL) {
456 	    if (info->rti_filter(rt, nh, info->rti_filterdata) == 0)
457 		    return (ENOENT);
458 	    else
459 		    return (0);
460 	}
461 	if ((gw != NULL) && !match_nhop_gw(nh, gw))
462 		return (ESRCH);
463 
464 	return (0);
465 }
466 
467 /*
468  * Checks if nexhop @nh can be rewritten by data in @info because
469  *  of higher "priority". Currently the only case for such scenario
470  *  is kernel installing interface routes, marked by RTF_PINNED flag.
471  *
472  * Returns:
473  * 1 if @info data has higher priority
474  * 0 if priority is the same
475  * -1 if priority is lower
476  */
477 int
478 can_override_nhop(const struct rt_addrinfo *info, const struct nhop_object *nh)
479 {
480 
481 	if (info->rti_flags & RTF_PINNED) {
482 		return (NH_IS_PINNED(nh)) ? 0 : 1;
483 	} else {
484 		return (NH_IS_PINNED(nh)) ? -1 : 0;
485 	}
486 }
487 
488 /*
489  * Runs exact prefix match based on @dst and @netmask.
490  * Returns matched @rtentry if found or NULL.
491  * If rtentry was found, saves nexthop / weight value into @rnd.
492  */
493 static struct rtentry *
494 lookup_prefix_bysa(struct rib_head *rnh, const struct sockaddr *dst,
495     const struct sockaddr *netmask, struct route_nhop_data *rnd)
496 {
497 	struct rtentry *rt;
498 
499 	RIB_LOCK_ASSERT(rnh);
500 
501 	rt = (struct rtentry *)rnh->rnh_lookup(__DECONST(void *, dst),
502 	    __DECONST(void *, netmask), &rnh->head);
503 	if (rt != NULL) {
504 		rnd->rnd_nhop = rt->rt_nhop;
505 		rnd->rnd_weight = rt->rt_weight;
506 	} else {
507 		rnd->rnd_nhop = NULL;
508 		rnd->rnd_weight = 0;
509 	}
510 
511 	return (rt);
512 }
513 
514 /*
515  * Runs exact prefix match based on dst/netmask from @info.
516  * Assumes RIB lock is held.
517  * Returns matched @rtentry if found or NULL.
518  * If rtentry was found, saves nexthop / weight value into @rnd.
519  */
520 struct rtentry *
521 lookup_prefix(struct rib_head *rnh, const struct rt_addrinfo *info,
522     struct route_nhop_data *rnd)
523 {
524 	struct rtentry *rt;
525 
526 	rt = lookup_prefix_bysa(rnh, info->rti_info[RTAX_DST],
527 	    info->rti_info[RTAX_NETMASK], rnd);
528 
529 	return (rt);
530 }
531 
532 /*
533  * Adds route defined by @info into the kernel table specified by @fibnum and
534  * sa_family in @info->rti_info[RTAX_DST].
535  *
536  * Returns 0 on success and fills in operation metadata into @rc.
537  */
538 int
539 rib_add_route(uint32_t fibnum, struct rt_addrinfo *info,
540     struct rib_cmd_info *rc)
541 {
542 	struct rib_head *rnh;
543 	int error;
544 
545 	NET_EPOCH_ASSERT();
546 
547 	rnh = get_rnh(fibnum, info);
548 	if (rnh == NULL)
549 		return (EAFNOSUPPORT);
550 
551 	/*
552 	 * Check consistency between RTF_HOST flag and netmask
553 	 * existence.
554 	 */
555 	if (info->rti_flags & RTF_HOST)
556 		info->rti_info[RTAX_NETMASK] = NULL;
557 	else if (info->rti_info[RTAX_NETMASK] == NULL)
558 		return (EINVAL);
559 
560 	bzero(rc, sizeof(struct rib_cmd_info));
561 	rc->rc_cmd = RTM_ADD;
562 
563 	error = add_route(rnh, info, rc);
564 	if (error == 0)
565 		rib_notify(rnh, RIB_NOTIFY_DELAYED, rc);
566 
567 	return (error);
568 }
569 
570 /*
571  * Creates rtentry and nexthop based on @info data.
572  * Return 0 and fills in rtentry into @prt on success,
573  * return errno otherwise.
574  */
575 static int
576 create_rtentry(struct rib_head *rnh, struct rt_addrinfo *info,
577     struct rtentry **prt)
578 {
579 	struct sockaddr *dst, *ndst, *gateway, *netmask;
580 	struct rtentry *rt;
581 	struct nhop_object *nh;
582 	struct ifaddr *ifa;
583 	int error, flags;
584 
585 	dst = info->rti_info[RTAX_DST];
586 	gateway = info->rti_info[RTAX_GATEWAY];
587 	netmask = info->rti_info[RTAX_NETMASK];
588 	flags = info->rti_flags;
589 
590 	if ((flags & RTF_GATEWAY) && !gateway)
591 		return (EINVAL);
592 	if (dst && gateway && (dst->sa_family != gateway->sa_family) &&
593 	    (gateway->sa_family != AF_UNSPEC) && (gateway->sa_family != AF_LINK))
594 		return (EINVAL);
595 
596 	if (dst->sa_len > sizeof(((struct rtentry *)NULL)->rt_dstb))
597 		return (EINVAL);
598 
599 	if (info->rti_ifa == NULL) {
600 		error = rt_getifa_fib(info, rnh->rib_fibnum);
601 		if (error)
602 			return (error);
603 	}
604 
605 	error = nhop_create_from_info(rnh, info, &nh);
606 	if (error != 0)
607 		return (error);
608 
609 	rt = uma_zalloc(V_rtzone, M_NOWAIT | M_ZERO);
610 	if (rt == NULL) {
611 		nhop_free(nh);
612 		return (ENOBUFS);
613 	}
614 	rt->rte_flags = (RTF_UP | flags) & RTE_RT_FLAG_MASK;
615 	rt->rt_nhop = nh;
616 
617 	/* Fill in dst */
618 	memcpy(&rt->rt_dst, dst, dst->sa_len);
619 	rt_key(rt) = &rt->rt_dst;
620 
621 	/*
622 	 * point to the (possibly newly malloc'd) dest address.
623 	 */
624 	ndst = (struct sockaddr *)rt_key(rt);
625 
626 	/*
627 	 * make sure it contains the value we want (masked if needed).
628 	 */
629 	if (netmask) {
630 		rt_maskedcopy(dst, ndst, netmask);
631 	} else
632 		bcopy(dst, ndst, dst->sa_len);
633 
634 	/*
635 	 * We use the ifa reference returned by rt_getifa_fib().
636 	 * This moved from below so that rnh->rnh_addaddr() can
637 	 * examine the ifa and  ifa->ifa_ifp if it so desires.
638 	 */
639 	ifa = info->rti_ifa;
640 	rt->rt_weight = get_info_weight(info, RT_DEFAULT_WEIGHT);
641 	rt_set_expire_info(rt, info);
642 
643 	*prt = rt;
644 	return (0);
645 }
646 
647 static int
648 add_route(struct rib_head *rnh, struct rt_addrinfo *info,
649     struct rib_cmd_info *rc)
650 {
651 	struct nhop_object *nh_orig;
652 	struct route_nhop_data rnd_orig, rnd_add;
653 	struct nhop_object *nh;
654 	struct rtentry *rt, *rt_orig;
655 	int error;
656 
657 	error = create_rtentry(rnh, info, &rt);
658 	if (error != 0)
659 		return (error);
660 
661 	rnd_add.rnd_nhop = rt->rt_nhop;
662 	rnd_add.rnd_weight = rt->rt_weight;
663 	nh = rt->rt_nhop;
664 
665 	RIB_WLOCK(rnh);
666 	error = add_route_nhop(rnh, rt, info, &rnd_add, rc);
667 	if (error == 0) {
668 		RIB_WUNLOCK(rnh);
669 		return (0);
670 	}
671 
672 	/* addition failed. Lookup prefix in the rib to determine the cause */
673 	rt_orig = lookup_prefix(rnh, info, &rnd_orig);
674 	if (rt_orig == NULL) {
675 		/* No prefix -> rnh_addaddr() failed to allocate memory */
676 		RIB_WUNLOCK(rnh);
677 		nhop_free(nh);
678 		uma_zfree(V_rtzone, rt);
679 		return (ENOMEM);
680 	}
681 
682 	/* We have existing route in the RIB. */
683 	nh_orig = rnd_orig.rnd_nhop;
684 	/* Check if new route has higher preference */
685 	if (can_override_nhop(info, nh_orig) > 0) {
686 		/* Update nexthop to the new route */
687 		change_route_nhop(rnh, rt_orig, info, &rnd_add, rc);
688 		RIB_WUNLOCK(rnh);
689 		uma_zfree(V_rtzone, rt);
690 		nhop_free(nh_orig);
691 		return (0);
692 	}
693 
694 	RIB_WUNLOCK(rnh);
695 
696 #ifdef ROUTE_MPATH
697 	if (rib_can_multipath(rnh) && nhop_can_multipath(rnd_add.rnd_nhop) &&
698 	    nhop_can_multipath(rnd_orig.rnd_nhop))
699 		error = add_route_mpath(rnh, info, rt, &rnd_add, &rnd_orig, rc);
700 	else
701 #endif
702 	/* Unable to add - another route with the same preference exists */
703 	error = EEXIST;
704 
705 	/*
706 	 * ROUTE_MPATH disabled: failed to add route, free both nhop and rt.
707 	 * ROUTE_MPATH enabled: original nhop reference is unused in any case,
708 	 *  free rt only if not _adding_ new route to rib (e.g. the case
709 	 *  when initial lookup returned existing route, but then it got
710 	 *  deleted prior to multipath group insertion, leading to a simple
711 	 *  non-multipath add as a result).
712 	 */
713 	nhop_free(nh);
714 	if ((error != 0) || rc->rc_cmd != RTM_ADD)
715 		uma_zfree(V_rtzone, rt);
716 
717 	return (error);
718 }
719 
720 /*
721  * Removes route defined by @info from the kernel table specified by @fibnum and
722  * sa_family in @info->rti_info[RTAX_DST].
723  *
724  * Returns 0 on success and fills in operation metadata into @rc.
725  */
726 int
727 rib_del_route(uint32_t fibnum, struct rt_addrinfo *info, struct rib_cmd_info *rc)
728 {
729 	struct rib_head *rnh;
730 	struct sockaddr *dst_orig, *netmask;
731 	struct sockaddr_storage mdst;
732 	int error;
733 
734 	NET_EPOCH_ASSERT();
735 
736 	rnh = get_rnh(fibnum, info);
737 	if (rnh == NULL)
738 		return (EAFNOSUPPORT);
739 
740 	bzero(rc, sizeof(struct rib_cmd_info));
741 	rc->rc_cmd = RTM_DELETE;
742 
743 	dst_orig = info->rti_info[RTAX_DST];
744 	netmask = info->rti_info[RTAX_NETMASK];
745 
746 	if (netmask != NULL) {
747 		/* Ensure @dst is always properly masked */
748 		if (dst_orig->sa_len > sizeof(mdst))
749 			return (EINVAL);
750 		rt_maskedcopy(dst_orig, (struct sockaddr *)&mdst, netmask);
751 		info->rti_info[RTAX_DST] = (struct sockaddr *)&mdst;
752 	}
753 	error = del_route(rnh, info, rc);
754 	info->rti_info[RTAX_DST] = dst_orig;
755 
756 	return (error);
757 }
758 
759 /*
760  * Conditionally unlinks rtentry matching data inside @info from @rnh.
761  * Returns 0 on success with operation result stored in @rc.
762  * On error, returns:
763  * ESRCH - if prefix was not found,
764  * EADDRINUSE - if trying to delete higher priority route.
765  * ENOENT - if supplied filter function returned 0 (not matched).
766  */
767 static int
768 rt_unlinkrte(struct rib_head *rnh, struct rt_addrinfo *info, struct rib_cmd_info *rc)
769 {
770 	struct rtentry *rt;
771 	struct nhop_object *nh;
772 	struct radix_node *rn;
773 	struct route_nhop_data rnd;
774 	int error;
775 
776 	rt = lookup_prefix(rnh, info, &rnd);
777 	if (rt == NULL)
778 		return (ESRCH);
779 
780 	nh = rt->rt_nhop;
781 #ifdef ROUTE_MPATH
782 	if (NH_IS_NHGRP(nh)) {
783 		error = del_route_mpath(rnh, info, rt,
784 		    (struct nhgrp_object *)nh, rc);
785 		return (error);
786 	}
787 #endif
788 	error = check_info_match_nhop(info, rt, nh);
789 	if (error != 0)
790 		return (error);
791 
792 	if (can_override_nhop(info, nh) < 0)
793 		return (EADDRINUSE);
794 
795 	/*
796 	 * Remove the item from the tree and return it.
797 	 * Complain if it is not there and do no more processing.
798 	 */
799 	rn = rnh->rnh_deladdr(info->rti_info[RTAX_DST],
800 	    info->rti_info[RTAX_NETMASK], &rnh->head);
801 	if (rn == NULL)
802 		return (ESRCH);
803 
804 	if (rn->rn_flags & (RNF_ACTIVE | RNF_ROOT))
805 		panic ("rtrequest delete");
806 
807 	rt = RNTORT(rn);
808 	rt->rte_flags &= ~RTF_UP;
809 
810 	/* Finalize notification */
811 	rib_bump_gen(rnh);
812 	rnh->rnh_prefixes--;
813 
814 	rc->rc_cmd = RTM_DELETE;
815 	rc->rc_rt = rt;
816 	rc->rc_nh_old = rt->rt_nhop;
817 	rc->rc_nh_weight = rt->rt_weight;
818 	rib_notify(rnh, RIB_NOTIFY_IMMEDIATE, rc);
819 
820 	return (0);
821 }
822 
823 static int
824 del_route(struct rib_head *rnh, struct rt_addrinfo *info,
825     struct rib_cmd_info *rc)
826 {
827 	int error;
828 
829 	RIB_WLOCK(rnh);
830 	error = rt_unlinkrte(rnh, info, rc);
831 	RIB_WUNLOCK(rnh);
832 	if (error != 0)
833 		return (error);
834 
835 	rib_notify(rnh, RIB_NOTIFY_DELAYED, rc);
836 
837 	/*
838 	 * If the caller wants it, then it can have it,
839 	 * the entry will be deleted after the end of the current epoch.
840 	 */
841 	if (rc->rc_cmd == RTM_DELETE)
842 		rtfree(rc->rc_rt);
843 #ifdef ROUTE_MPATH
844 	else {
845 		/*
846 		 * Deleting 1 path may result in RTM_CHANGE to
847 		 * a different mpath group/nhop.
848 		 * Free old mpath group.
849 		 */
850 		nhop_free_any(rc->rc_nh_old);
851 	}
852 #endif
853 
854 	return (0);
855 }
856 
857 int
858 rib_change_route(uint32_t fibnum, struct rt_addrinfo *info,
859     struct rib_cmd_info *rc)
860 {
861 	RIB_RLOCK_TRACKER;
862 	struct route_nhop_data rnd_orig;
863 	struct rib_head *rnh;
864 	struct rtentry *rt;
865 	int error;
866 
867 	NET_EPOCH_ASSERT();
868 
869 	rnh = get_rnh(fibnum, info);
870 	if (rnh == NULL)
871 		return (EAFNOSUPPORT);
872 
873 	bzero(rc, sizeof(struct rib_cmd_info));
874 	rc->rc_cmd = RTM_CHANGE;
875 
876 	/* Check if updated gateway exists */
877 	if ((info->rti_flags & RTF_GATEWAY) &&
878 	    (info->rti_info[RTAX_GATEWAY] == NULL)) {
879 
880 		/*
881 		 * route(8) adds RTF_GATEWAY flag if -interface is not set.
882 		 * Remove RTF_GATEWAY to enforce consistency and maintain
883 		 * compatibility..
884 		 */
885 		info->rti_flags &= ~RTF_GATEWAY;
886 	}
887 
888 	/*
889 	 * route change is done in multiple steps, with dropping and
890 	 * reacquiring lock. In the situations with multiple processes
891 	 * changes the same route in can lead to the case when route
892 	 * is changed between the steps. Address it by retrying the operation
893 	 * multiple times before failing.
894 	 */
895 
896 	RIB_RLOCK(rnh);
897 	rt = (struct rtentry *)rnh->rnh_lookup(info->rti_info[RTAX_DST],
898 	    info->rti_info[RTAX_NETMASK], &rnh->head);
899 
900 	if (rt == NULL) {
901 		RIB_RUNLOCK(rnh);
902 		return (ESRCH);
903 	}
904 
905 	rnd_orig.rnd_nhop = rt->rt_nhop;
906 	rnd_orig.rnd_weight = rt->rt_weight;
907 
908 	RIB_RUNLOCK(rnh);
909 
910 	for (int i = 0; i < RIB_MAX_RETRIES; i++) {
911 		error = change_route(rnh, info, &rnd_orig, rc);
912 		if (error != EAGAIN)
913 			break;
914 	}
915 
916 	return (error);
917 }
918 
919 static int
920 change_nhop(struct rib_head *rnh, struct rt_addrinfo *info,
921     struct nhop_object *nh_orig, struct nhop_object **nh_new)
922 {
923 	int error;
924 
925 	/*
926 	 * New gateway could require new ifaddr, ifp;
927 	 * flags may also be different; ifp may be specified
928 	 * by ll sockaddr when protocol address is ambiguous
929 	 */
930 	if (((nh_orig->nh_flags & NHF_GATEWAY) &&
931 	    info->rti_info[RTAX_GATEWAY] != NULL) ||
932 	    info->rti_info[RTAX_IFP] != NULL ||
933 	    (info->rti_info[RTAX_IFA] != NULL &&
934 	     !sa_equal(info->rti_info[RTAX_IFA], nh_orig->nh_ifa->ifa_addr))) {
935 		error = rt_getifa_fib(info, rnh->rib_fibnum);
936 
937 		if (error != 0) {
938 			info->rti_ifa = NULL;
939 			return (error);
940 		}
941 	}
942 
943 	error = nhop_create_from_nhop(rnh, nh_orig, info, nh_new);
944 	info->rti_ifa = NULL;
945 
946 	return (error);
947 }
948 
949 #ifdef ROUTE_MPATH
950 static int
951 change_mpath_route(struct rib_head *rnh, struct rt_addrinfo *info,
952     struct route_nhop_data *rnd_orig, struct rib_cmd_info *rc)
953 {
954 	int error = 0;
955 	struct nhop_object *nh, *nh_orig, *nh_new;
956 	struct route_nhop_data rnd_new;
957 
958 	nh = NULL;
959 	nh_orig = rnd_orig->rnd_nhop;
960 
961 	struct weightened_nhop *wn = NULL, *wn_new;
962 	uint32_t num_nhops;
963 
964 	wn = nhgrp_get_nhops((struct nhgrp_object *)nh_orig, &num_nhops);
965 	nh_orig = NULL;
966 	for (int i = 0; i < num_nhops; i++) {
967 		if (check_info_match_nhop(info, NULL, wn[i].nh)) {
968 			nh_orig = wn[i].nh;
969 			break;
970 		}
971 	}
972 
973 	if (nh_orig == NULL)
974 		return (ESRCH);
975 
976 	error = change_nhop(rnh, info, nh_orig, &nh_new);
977 	if (error != 0)
978 		return (error);
979 
980 	wn_new = mallocarray(num_nhops, sizeof(struct weightened_nhop),
981 	    M_TEMP, M_NOWAIT | M_ZERO);
982 	if (wn_new == NULL) {
983 		nhop_free(nh_new);
984 		return (EAGAIN);
985 	}
986 
987 	memcpy(wn_new, wn, num_nhops * sizeof(struct weightened_nhop));
988 	for (int i = 0; i < num_nhops; i++) {
989 		if (wn[i].nh == nh_orig) {
990 			wn[i].nh = nh_new;
991 			wn[i].weight = get_info_weight(info, rnd_orig->rnd_weight);
992 			break;
993 		}
994 	}
995 
996 	error = nhgrp_get_group(rnh, wn_new, num_nhops, &rnd_new);
997 	nhop_free(nh_new);
998 	free(wn_new, M_TEMP);
999 
1000 	if (error != 0)
1001 		return (error);
1002 
1003 	error = change_route_conditional(rnh, NULL, info, rnd_orig, &rnd_new, rc);
1004 
1005 	return (error);
1006 }
1007 #endif
1008 
1009 static int
1010 change_route(struct rib_head *rnh, struct rt_addrinfo *info,
1011     struct route_nhop_data *rnd_orig, struct rib_cmd_info *rc)
1012 {
1013 	int error = 0;
1014 	struct nhop_object *nh, *nh_orig;
1015 	struct route_nhop_data rnd_new;
1016 
1017 	nh = NULL;
1018 	nh_orig = rnd_orig->rnd_nhop;
1019 	if (nh_orig == NULL)
1020 		return (ESRCH);
1021 
1022 #ifdef ROUTE_MPATH
1023 	if (NH_IS_NHGRP(nh_orig))
1024 		return (change_mpath_route(rnh, info, rnd_orig, rc));
1025 #endif
1026 
1027 	rnd_new.rnd_weight = get_info_weight(info, rnd_orig->rnd_weight);
1028 	error = change_nhop(rnh, info, nh_orig, &rnd_new.rnd_nhop);
1029 	if (error != 0)
1030 		return (error);
1031 	error = change_route_conditional(rnh, NULL, info, rnd_orig, &rnd_new, rc);
1032 
1033 	return (error);
1034 }
1035 
1036 /*
1037  * Insert @rt with nhop data from @rnd_new to @rnh.
1038  * Returns 0 on success and stores operation results in @rc.
1039  */
1040 static int
1041 add_route_nhop(struct rib_head *rnh, struct rtentry *rt,
1042     struct rt_addrinfo *info, struct route_nhop_data *rnd,
1043     struct rib_cmd_info *rc)
1044 {
1045 	struct sockaddr *ndst, *netmask;
1046 	struct radix_node *rn;
1047 	int error = 0;
1048 
1049 	RIB_WLOCK_ASSERT(rnh);
1050 
1051 	ndst = (struct sockaddr *)rt_key(rt);
1052 	netmask = info->rti_info[RTAX_NETMASK];
1053 
1054 	rt->rt_nhop = rnd->rnd_nhop;
1055 	rt->rt_weight = rnd->rnd_weight;
1056 	rn = rnh->rnh_addaddr(ndst, netmask, &rnh->head, rt->rt_nodes);
1057 
1058 	if (rn != NULL) {
1059 		if (rt->rt_expire > 0)
1060 			tmproutes_update(rnh, rt);
1061 
1062 		/* Finalize notification */
1063 		rib_bump_gen(rnh);
1064 		rnh->rnh_prefixes++;
1065 
1066 		rc->rc_cmd = RTM_ADD;
1067 		rc->rc_rt = rt;
1068 		rc->rc_nh_old = NULL;
1069 		rc->rc_nh_new = rnd->rnd_nhop;
1070 		rc->rc_nh_weight = rnd->rnd_weight;
1071 
1072 		rib_notify(rnh, RIB_NOTIFY_IMMEDIATE, rc);
1073 	} else {
1074 		/* Existing route or memory allocation failure */
1075 		error = EEXIST;
1076 	}
1077 
1078 	return (error);
1079 }
1080 
1081 /*
1082  * Switch @rt nhop/weigh to the ones specified in @rnd.
1083  *  Conditionally set rt_expire if set in @info.
1084  * Returns 0 on success.
1085  */
1086 int
1087 change_route_nhop(struct rib_head *rnh, struct rtentry *rt,
1088     struct rt_addrinfo *info, struct route_nhop_data *rnd,
1089     struct rib_cmd_info *rc)
1090 {
1091 	struct nhop_object *nh_orig;
1092 
1093 	RIB_WLOCK_ASSERT(rnh);
1094 
1095 	nh_orig = rt->rt_nhop;
1096 
1097 	if (rnd->rnd_nhop != NULL) {
1098 		/* Changing expiration & nexthop & weight to a new one */
1099 		rt_set_expire_info(rt, info);
1100 		rt->rt_nhop = rnd->rnd_nhop;
1101 		rt->rt_weight = rnd->rnd_weight;
1102 		if (rt->rt_expire > 0)
1103 			tmproutes_update(rnh, rt);
1104 	} else {
1105 		/* Route deletion requested. */
1106 		struct sockaddr *ndst, *netmask;
1107 		struct radix_node *rn;
1108 
1109 		ndst = (struct sockaddr *)rt_key(rt);
1110 		netmask = info->rti_info[RTAX_NETMASK];
1111 		rn = rnh->rnh_deladdr(ndst, netmask, &rnh->head);
1112 		if (rn == NULL)
1113 			return (ESRCH);
1114 		rt = RNTORT(rn);
1115 		rt->rte_flags &= ~RTF_UP;
1116 	}
1117 
1118 	/* Finalize notification */
1119 	rib_bump_gen(rnh);
1120 	if (rnd->rnd_nhop == NULL)
1121 		rnh->rnh_prefixes--;
1122 
1123 	rc->rc_cmd = (rnd->rnd_nhop != NULL) ? RTM_CHANGE : RTM_DELETE;
1124 	rc->rc_rt = rt;
1125 	rc->rc_nh_old = nh_orig;
1126 	rc->rc_nh_new = rnd->rnd_nhop;
1127 	rc->rc_nh_weight = rnd->rnd_weight;
1128 
1129 	rib_notify(rnh, RIB_NOTIFY_IMMEDIATE, rc);
1130 
1131 	return (0);
1132 }
1133 
1134 /*
1135  * Conditionally update route nhop/weight IFF data in @nhd_orig is
1136  *  consistent with the current route data.
1137  * Nexthop in @nhd_new is consumed.
1138  */
1139 int
1140 change_route_conditional(struct rib_head *rnh, struct rtentry *rt,
1141     struct rt_addrinfo *info, struct route_nhop_data *rnd_orig,
1142     struct route_nhop_data *rnd_new, struct rib_cmd_info *rc)
1143 {
1144 	struct rtentry *rt_new;
1145 	int error = 0;
1146 
1147 	RIB_WLOCK(rnh);
1148 
1149 	rt_new = (struct rtentry *)rnh->rnh_lookup(info->rti_info[RTAX_DST],
1150 	    info->rti_info[RTAX_NETMASK], &rnh->head);
1151 
1152 	if (rt_new == NULL) {
1153 		if (rnd_orig->rnd_nhop == NULL)
1154 			error = add_route_nhop(rnh, rt, info, rnd_new, rc);
1155 		else {
1156 			/*
1157 			 * Prefix does not exist, which was not our assumption.
1158 			 * Update @rnd_orig with the new data and return
1159 			 */
1160 			rnd_orig->rnd_nhop = NULL;
1161 			rnd_orig->rnd_weight = 0;
1162 			error = EAGAIN;
1163 		}
1164 	} else {
1165 		/* Prefix exists, try to update */
1166 		if (rnd_orig->rnd_nhop == rt_new->rt_nhop) {
1167 			/*
1168 			 * Nhop/mpath group hasn't changed. Flip
1169 			 * to the new precalculated one and return
1170 			 */
1171 			error = change_route_nhop(rnh, rt_new, info, rnd_new, rc);
1172 		} else {
1173 			/* Update and retry */
1174 			rnd_orig->rnd_nhop = rt_new->rt_nhop;
1175 			rnd_orig->rnd_weight = rt_new->rt_weight;
1176 			error = EAGAIN;
1177 		}
1178 	}
1179 
1180 	RIB_WUNLOCK(rnh);
1181 
1182 	if (error == 0) {
1183 		rib_notify(rnh, RIB_NOTIFY_DELAYED, rc);
1184 
1185 		if (rnd_orig->rnd_nhop != NULL)
1186 			nhop_free_any(rnd_orig->rnd_nhop);
1187 
1188 	} else {
1189 		if (rnd_new->rnd_nhop != NULL)
1190 			nhop_free_any(rnd_new->rnd_nhop);
1191 	}
1192 
1193 	return (error);
1194 }
1195 
1196 /*
1197  * Performs modification of routing table specificed by @action.
1198  * Table is specified by @fibnum and sa_family in @info->rti_info[RTAX_DST].
1199  * Needs to be run in network epoch.
1200  *
1201  * Returns 0 on success and fills in @rc with action result.
1202  */
1203 int
1204 rib_action(uint32_t fibnum, int action, struct rt_addrinfo *info,
1205     struct rib_cmd_info *rc)
1206 {
1207 	int error;
1208 
1209 	switch (action) {
1210 	case RTM_ADD:
1211 		error = rib_add_route(fibnum, info, rc);
1212 		break;
1213 	case RTM_DELETE:
1214 		error = rib_del_route(fibnum, info, rc);
1215 		break;
1216 	case RTM_CHANGE:
1217 		error = rib_change_route(fibnum, info, rc);
1218 		break;
1219 	default:
1220 		error = ENOTSUP;
1221 	}
1222 
1223 	return (error);
1224 }
1225 
1226 struct rt_delinfo
1227 {
1228 	struct rt_addrinfo info;
1229 	struct rib_head *rnh;
1230 	struct rtentry *head;
1231 	struct rib_cmd_info rc;
1232 };
1233 
1234 /*
1235  * Conditionally unlinks @rn from radix tree based
1236  * on info data passed in @arg.
1237  */
1238 static int
1239 rt_checkdelroute(struct radix_node *rn, void *arg)
1240 {
1241 	struct rt_delinfo *di;
1242 	struct rt_addrinfo *info;
1243 	struct rtentry *rt;
1244 
1245 	di = (struct rt_delinfo *)arg;
1246 	rt = (struct rtentry *)rn;
1247 	info = &di->info;
1248 
1249 	info->rti_info[RTAX_DST] = rt_key(rt);
1250 	info->rti_info[RTAX_NETMASK] = rt_mask(rt);
1251 
1252 	if (rt_unlinkrte(di->rnh, info, &di->rc) != 0)
1253 		return (0);
1254 
1255 	/*
1256 	 * Add deleted rtentries to the list to GC them
1257 	 *  after dropping the lock.
1258 	 *
1259 	 * XXX: Delayed notifications not implemented
1260 	 *  for nexthop updates.
1261 	 */
1262 	if (di->rc.rc_cmd == RTM_DELETE) {
1263 		/* Add to the list and return */
1264 		rt->rt_chain = di->head;
1265 		di->head = rt;
1266 #ifdef ROUTE_MPATH
1267 	} else {
1268 		/*
1269 		 * RTM_CHANGE to a diferent nexthop or nexthop group.
1270 		 * Free old multipath group.
1271 		 */
1272 		nhop_free_any(di->rc.rc_nh_old);
1273 #endif
1274 	}
1275 
1276 	return (0);
1277 }
1278 
1279 /*
1280  * Iterates over a routing table specified by @fibnum and @family and
1281  *  deletes elements marked by @filter_f.
1282  * @fibnum: rtable id
1283  * @family: AF_ address family
1284  * @filter_f: function returning non-zero value for items to delete
1285  * @arg: data to pass to the @filter_f function
1286  * @report: true if rtsock notification is needed.
1287  */
1288 void
1289 rib_walk_del(u_int fibnum, int family, rib_filter_f_t *filter_f, void *arg, bool report)
1290 {
1291 	struct rib_head *rnh;
1292 	struct rt_delinfo di;
1293 	struct rtentry *rt;
1294 	struct nhop_object *nh;
1295 	struct epoch_tracker et;
1296 
1297 	rnh = rt_tables_get_rnh(fibnum, family);
1298 	if (rnh == NULL)
1299 		return;
1300 
1301 	bzero(&di, sizeof(di));
1302 	di.info.rti_filter = filter_f;
1303 	di.info.rti_filterdata = arg;
1304 	di.rnh = rnh;
1305 	di.rc.rc_cmd = RTM_DELETE;
1306 
1307 	NET_EPOCH_ENTER(et);
1308 
1309 	RIB_WLOCK(rnh);
1310 	rnh->rnh_walktree(&rnh->head, rt_checkdelroute, &di);
1311 	RIB_WUNLOCK(rnh);
1312 
1313 	/* We might have something to reclaim. */
1314 	bzero(&di.rc, sizeof(di.rc));
1315 	di.rc.rc_cmd = RTM_DELETE;
1316 	while (di.head != NULL) {
1317 		rt = di.head;
1318 		di.head = rt->rt_chain;
1319 		rt->rt_chain = NULL;
1320 		nh = rt->rt_nhop;
1321 
1322 		di.rc.rc_rt = rt;
1323 		di.rc.rc_nh_old = nh;
1324 		rib_notify(rnh, RIB_NOTIFY_DELAYED, &di.rc);
1325 
1326 		/* TODO std rt -> rt_addrinfo export */
1327 		di.info.rti_info[RTAX_DST] = rt_key(rt);
1328 		di.info.rti_info[RTAX_NETMASK] = rt_mask(rt);
1329 
1330 		if (report) {
1331 #ifdef ROUTE_MPATH
1332 			struct nhgrp_object *nhg;
1333 			struct weightened_nhop *wn;
1334 			uint32_t num_nhops;
1335 			if (NH_IS_NHGRP(nh)) {
1336 				nhg = (struct nhgrp_object *)nh;
1337 				wn = nhgrp_get_nhops(nhg, &num_nhops);
1338 				for (int i = 0; i < num_nhops; i++)
1339 					rt_routemsg(RTM_DELETE, rt, wn[i].nh, fibnum);
1340 			} else
1341 #endif
1342 			rt_routemsg(RTM_DELETE, rt, nh, fibnum);
1343 		}
1344 		rtfree(rt);
1345 	}
1346 
1347 	NET_EPOCH_EXIT(et);
1348 }
1349 
1350 static int
1351 rt_delete_unconditional(struct radix_node *rn, void *arg)
1352 {
1353 	struct rtentry *rt = RNTORT(rn);
1354 	struct rib_head *rnh = (struct rib_head *)arg;
1355 
1356 	rn = rnh->rnh_deladdr(rt_key(rt), rt_mask(rt), &rnh->head);
1357 	if (RNTORT(rn) == rt)
1358 		rtfree(rt);
1359 
1360 	return (0);
1361 }
1362 
1363 /*
1364  * Removes all routes from the routing table without executing notifications.
1365  * rtentres will be removed after the end of a current epoch.
1366  */
1367 static void
1368 rib_flush_routes(struct rib_head *rnh)
1369 {
1370 	RIB_WLOCK(rnh);
1371 	rnh->rnh_walktree(&rnh->head, rt_delete_unconditional, rnh);
1372 	RIB_WUNLOCK(rnh);
1373 }
1374 
1375 void
1376 rib_flush_routes_family(int family)
1377 {
1378 	struct rib_head *rnh;
1379 
1380 	for (uint32_t fibnum = 0; fibnum < rt_numfibs; fibnum++) {
1381 		if ((rnh = rt_tables_get_rnh(fibnum, family)) != NULL)
1382 			rib_flush_routes(rnh);
1383 	}
1384 }
1385 
1386 static void
1387 rib_notify(struct rib_head *rnh, enum rib_subscription_type type,
1388     struct rib_cmd_info *rc)
1389 {
1390 	struct rib_subscription *rs;
1391 
1392 	CK_STAILQ_FOREACH(rs, &rnh->rnh_subscribers, next) {
1393 		if (rs->type == type)
1394 			rs->func(rnh, rc, rs->arg);
1395 	}
1396 }
1397 
1398 static struct rib_subscription *
1399 allocate_subscription(rib_subscription_cb_t *f, void *arg,
1400     enum rib_subscription_type type, bool waitok)
1401 {
1402 	struct rib_subscription *rs;
1403 	int flags = M_ZERO | (waitok ? M_WAITOK : M_NOWAIT);
1404 
1405 	rs = malloc(sizeof(struct rib_subscription), M_RTABLE, flags);
1406 	if (rs == NULL)
1407 		return (NULL);
1408 
1409 	rs->func = f;
1410 	rs->arg = arg;
1411 	rs->type = type;
1412 
1413 	return (rs);
1414 }
1415 
1416 /*
1417  * Subscribe for the changes in the routing table specified by @fibnum and
1418  *  @family.
1419  *
1420  * Returns pointer to the subscription structure on success.
1421  */
1422 struct rib_subscription *
1423 rib_subscribe(uint32_t fibnum, int family, rib_subscription_cb_t *f, void *arg,
1424     enum rib_subscription_type type, bool waitok)
1425 {
1426 	struct rib_head *rnh;
1427 	struct epoch_tracker et;
1428 
1429 	NET_EPOCH_ENTER(et);
1430 	KASSERT((fibnum < rt_numfibs), ("%s: bad fibnum", __func__));
1431 	rnh = rt_tables_get_rnh(fibnum, family);
1432 	NET_EPOCH_EXIT(et);
1433 
1434 	return (rib_subscribe_internal(rnh, f, arg, type, waitok));
1435 }
1436 
1437 struct rib_subscription *
1438 rib_subscribe_internal(struct rib_head *rnh, rib_subscription_cb_t *f, void *arg,
1439     enum rib_subscription_type type, bool waitok)
1440 {
1441 	struct rib_subscription *rs;
1442 	struct epoch_tracker et;
1443 
1444 	if ((rs = allocate_subscription(f, arg, type, waitok)) == NULL)
1445 		return (NULL);
1446 	rs->rnh = rnh;
1447 
1448 	NET_EPOCH_ENTER(et);
1449 	RIB_WLOCK(rnh);
1450 	CK_STAILQ_INSERT_HEAD(&rnh->rnh_subscribers, rs, next);
1451 	RIB_WUNLOCK(rnh);
1452 	NET_EPOCH_EXIT(et);
1453 
1454 	return (rs);
1455 }
1456 
1457 struct rib_subscription *
1458 rib_subscribe_locked(struct rib_head *rnh, rib_subscription_cb_t *f, void *arg,
1459     enum rib_subscription_type type)
1460 {
1461 	struct rib_subscription *rs;
1462 
1463 	NET_EPOCH_ASSERT();
1464 	RIB_WLOCK_ASSERT(rnh);
1465 
1466 	if ((rs = allocate_subscription(f, arg, type, false)) == NULL)
1467 		return (NULL);
1468 	rs->rnh = rnh;
1469 
1470 	CK_STAILQ_INSERT_HEAD(&rnh->rnh_subscribers, rs, next);
1471 
1472 	return (rs);
1473 }
1474 
1475 /*
1476  * Remove rtable subscription @rs from the routing table.
1477  * Needs to be run in network epoch.
1478  */
1479 void
1480 rib_unsibscribe(struct rib_subscription *rs)
1481 {
1482 	struct rib_head *rnh = rs->rnh;
1483 
1484 	NET_EPOCH_ASSERT();
1485 
1486 	RIB_WLOCK(rnh);
1487 	CK_STAILQ_REMOVE(&rnh->rnh_subscribers, rs, rib_subscription, next);
1488 	RIB_WUNLOCK(rnh);
1489 
1490 	epoch_call(net_epoch_preempt, destroy_subscription_epoch,
1491 	    &rs->epoch_ctx);
1492 }
1493 
1494 void
1495 rib_unsibscribe_locked(struct rib_subscription *rs)
1496 {
1497 	struct rib_head *rnh = rs->rnh;
1498 
1499 	NET_EPOCH_ASSERT();
1500 	RIB_WLOCK_ASSERT(rnh);
1501 
1502 	CK_STAILQ_REMOVE(&rnh->rnh_subscribers, rs, rib_subscription, next);
1503 
1504 	epoch_call(net_epoch_preempt, destroy_subscription_epoch,
1505 	    &rs->epoch_ctx);
1506 }
1507 
1508 /*
1509  * Epoch callback indicating subscription is safe to destroy
1510  */
1511 static void
1512 destroy_subscription_epoch(epoch_context_t ctx)
1513 {
1514 	struct rib_subscription *rs;
1515 
1516 	rs = __containerof(ctx, struct rib_subscription, epoch_ctx);
1517 
1518 	free(rs, M_RTABLE);
1519 }
1520 
1521 void
1522 rib_init_subscriptions(struct rib_head *rnh)
1523 {
1524 
1525 	CK_STAILQ_INIT(&rnh->rnh_subscribers);
1526 }
1527 
1528 void
1529 rib_destroy_subscriptions(struct rib_head *rnh)
1530 {
1531 	struct rib_subscription *rs;
1532 	struct epoch_tracker et;
1533 
1534 	NET_EPOCH_ENTER(et);
1535 	RIB_WLOCK(rnh);
1536 	while ((rs = CK_STAILQ_FIRST(&rnh->rnh_subscribers)) != NULL) {
1537 		CK_STAILQ_REMOVE_HEAD(&rnh->rnh_subscribers, next);
1538 		epoch_call(net_epoch_preempt, destroy_subscription_epoch,
1539 		    &rs->epoch_ctx);
1540 	}
1541 	RIB_WUNLOCK(rnh);
1542 	NET_EPOCH_EXIT(et);
1543 }
1544