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1 /*
2 * Copyright (c) 2000-2020 Apple Inc. All rights reserved.
3 *
4 * @APPLE_OSREFERENCE_LICENSE_HEADER_START@
5 *
6 * This file contains Original Code and/or Modifications of Original Code
7 * as defined in and that are subject to the Apple Public Source License
8 * Version 2.0 (the 'License'). You may not use this file except in
9 * compliance with the License. The rights granted to you under the License
10 * may not be used to create, or enable the creation or redistribution of,
11 * unlawful or unlicensed copies of an Apple operating system, or to
12 * circumvent, violate, or enable the circumvention or violation of, any
13 * terms of an Apple operating system software license agreement.
14 *
15 * Please obtain a copy of the License at
16 * http://www.opensource.apple.com/apsl/ and read it before using this file.
17 *
18 * The Original Code and all software distributed under the License are
19 * distributed on an 'AS IS' basis, WITHOUT WARRANTY OF ANY KIND, EITHER
20 * EXPRESS OR IMPLIED, AND APPLE HEREBY DISCLAIMS ALL SUCH WARRANTIES,
21 * INCLUDING WITHOUT LIMITATION, ANY WARRANTIES OF MERCHANTABILITY,
22 * FITNESS FOR A PARTICULAR PURPOSE, QUIET ENJOYMENT OR NON-INFRINGEMENT.
23 * Please see the License for the specific language governing rights and
24 * limitations under the License.
25 *
26 * @APPLE_OSREFERENCE_LICENSE_HEADER_END@
27 */
28
29 /*
30 * Copyright (C) 1995, 1996, 1997, and 1998 WIDE Project.
31 * All rights reserved.
32 *
33 * Redistribution and use in source and binary forms, with or without
34 * modification, are permitted provided that the following conditions
35 * are met:
36 * 1. Redistributions of source code must retain the above copyright
37 * notice, this list of conditions and the following disclaimer.
38 * 2. Redistributions in binary form must reproduce the above copyright
39 * notice, this list of conditions and the following disclaimer in the
40 * documentation and/or other materials provided with the distribution.
41 * 3. Neither the name of the project nor the names of its contributors
42 * may be used to endorse or promote products derived from this software
43 * without specific prior written permission.
44 *
45 * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND
46 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
47 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
48 * ARE DISCLAIMED. IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE
49 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
50 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
51 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
52 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
53 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
54 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
55 * SUCH DAMAGE.
56 */
57
58 /*
59 * Copyright (c) 1985, 1986, 1993
60 * The Regents of the University of California. All rights reserved.
61 *
62 * Redistribution and use in source and binary forms, with or without
63 * modification, are permitted provided that the following conditions
64 * are met:
65 * 1. Redistributions of source code must retain the above copyright
66 * notice, this list of conditions and the following disclaimer.
67 * 2. Redistributions in binary form must reproduce the above copyright
68 * notice, this list of conditions and the following disclaimer in the
69 * documentation and/or other materials provided with the distribution.
70 * 3. All advertising materials mentioning features or use of this software
71 * must display the following acknowledgement:
72 * This product includes software developed by the University of
73 * California, Berkeley and its contributors.
74 * 4. Neither the name of the University nor the names of its contributors
75 * may be used to endorse or promote products derived from this software
76 * without specific prior written permission.
77 *
78 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
79 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
80 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
81 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
82 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
83 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
84 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
85 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
86 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
87 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
88 * SUCH DAMAGE.
89 *
90 * @(#)in_var.h 8.1 (Berkeley) 6/10/93
91 */
92
93 #ifndef _NETINET6_IN6_VAR_H_
94 #define _NETINET6_IN6_VAR_H_
95 #include <sys/appleapiopts.h>
96 #include <net/net_kev.h>
97
98 #ifdef BSD_KERNEL_PRIVATE
99 #include <sys/tree.h>
100 #include <sys/mcache.h>
101 #endif /* BSD_KERNEL_PRIVATE */
102 #include <netinet6/scope6_var.h>
103 #include <sys/kern_event.h>
104 #include <net/ethernet.h>
105
106 /*
107 * pltime/vltime are just for future reference (required to implements 2
108 * hour rule for hosts). they should never be modified by nd6_timeout or
109 * anywhere else.
110 * userland -> kernel: accept pltime/vltime
111 * kernel -> userland: throw up everything
112 * in kernel: modify preferred/expire only
113 */
114 struct in6_addrlifetime {
115 time_t ia6t_expire; /* valid lifetime expiration time */
116 time_t ia6t_preferred; /* preferred lifetime expiration time */
117 u_int32_t ia6t_vltime; /* valid lifetime */
118 u_int32_t ia6t_pltime; /* prefix lifetime */
119 };
120
121 #ifdef BSD_KERNEL_PRIVATE
122 struct in6_addrlifetime_32 {
123 u_int32_t ia6t_expire;
124 u_int32_t ia6t_preferred;
125 u_int32_t ia6t_vltime;
126 u_int32_t ia6t_pltime;
127 };
128
129 struct in6_addrlifetime_64 {
130 u_int64_t ia6t_expire;
131 u_int64_t ia6t_preferred;
132 u_int32_t ia6t_vltime;
133 u_int32_t ia6t_pltime;
134 };
135
136 /*
137 * Internal representation of ia6_lifetime (expiration in uptime unit)
138 */
139 struct in6_addrlifetime_i {
140 u_int64_t ia6ti_expire; /* valid lifetime expiration time */
141 u_int64_t ia6ti_preferred; /* preferred lifetime expiration time */
142 u_int32_t ia6ti_vltime; /* valid lifetime */
143 u_int32_t ia6ti_pltime; /* prefix lifetime */
144 u_int64_t ia6ti_base_calendartime; /* calendar time at creation */
145 u_int64_t ia6ti_base_uptime; /* uptime at creation */
146 };
147
148 /*
149 * Interface address, IPv6 version. One of these structures
150 * is allocated for each interface with an IPv6 address.
151 * The ifaddr structure contains the protocol-independent part
152 * of the structure and is assumed to be first.
153 */
154
155 struct in6_ifaddr {
156 struct ifaddr ia_ifa; /* protocol-independent info */
157 #define ia_ifp ia_ifa.ifa_ifp
158 #define ia_flags ia_ifa.ifa_flags
159 struct sockaddr_in6 ia_addr; /* interface address */
160 struct sockaddr_in6 ia_net; /* network number of interface */
161 struct sockaddr_in6 ia_dstaddr; /* space for destination addr */
162 struct sockaddr_in6 ia_prefixmask; /* prefix mask */
163 u_int32_t ia_plen; /* prefix length */
164 TAILQ_ENTRY(in6_ifaddr) ia6_link; /* next in6 list of IP6 addresses */
165 TAILQ_ENTRY(in6_ifaddr) ia6_hash; /* hash bucket entry */
166 int ia6_flags;
167
168 struct in6_addrlifetime_i ia6_lifetime;
169 /*
170 * the creation time of this address, which is
171 * currently used for temporary addresses only.
172 */
173 u_int64_t ia6_createtime;
174 u_int64_t ia6_updatetime;
175
176 /* back pointer to the ND prefix */
177 struct nd_prefix *ia6_ndpr;
178
179 /* multicast addresses joined from the kernel */
180 LIST_HEAD(, in6_multi_mship) ia6_memberships;
181 };
182
183 #define ifatoia6(ifa) ((struct in6_ifaddr *)(void *)(ifa))
184
185 extern TAILQ_HEAD(in6_ifaddrhead, in6_ifaddr) in6_ifaddrhead;
186 extern TAILQ_HEAD(in6_ifaddrhashhead, in6_ifaddr) * in6_ifaddrhashtbl;
187 extern uint32_t in6addr_nhash; /* hash table size */
188 extern uint32_t in6addr_hashp; /* next largest prime */
189
190 static __inline uint32_t
191 in6addr_hashval(const struct in6_addr *in6)
192 {
193 /*
194 * The hash index is the computed prime times the key modulo
195 * the hash size, as documented in "Introduction to Algorithms"
196 * (Cormen, Leiserson, Rivest).
197 */
198 if (in6addr_nhash > 1) {
199 uint32_t x;
200
201 x = in6->s6_addr32[0] ^ in6->s6_addr32[1] ^ in6->s6_addr32[2] ^
202 in6->s6_addr32[3];
203
204 return (x * in6addr_hashp) % in6addr_nhash;
205 } else {
206 return 0;
207 }
208 }
209
210 #define IN6ADDR_HASH(x) (&in6_ifaddrhashtbl[in6addr_hashval(x)])
211
212 #endif /* BSD_KERNEL_PRIVATE */
213
214 /* control structure to manage address selection policy */
215 struct in6_addrpolicy {
216 struct sockaddr_in6 addr; /* prefix address */
217 struct sockaddr_in6 addrmask; /* prefix mask */
218 int preced; /* precedence */
219 int label; /* matching label */
220 u_quad_t use; /* statistics */
221 };
222
223 /*
224 * IPv6 interface statistics, as defined in RFC2465 Ipv6IfStatsEntry (p12).
225 */
226 struct in6_ifstat {
227 u_quad_t ifs6_in_receive; /* # of total input datagram */
228 u_quad_t ifs6_in_hdrerr; /* # of datagrams with invalid hdr */
229 u_quad_t ifs6_in_toobig; /* # of datagrams exceeded MTU */
230 u_quad_t ifs6_in_noroute; /* # of datagrams with no route */
231 u_quad_t ifs6_in_addrerr; /* # of datagrams with invalid dst */
232 u_quad_t ifs6_in_protounknown; /* # of datagrams with unknown proto */
233 /* NOTE: increment on final dst if */
234 u_quad_t ifs6_in_truncated; /* # of truncated datagrams */
235 u_quad_t ifs6_in_discard; /* # of discarded datagrams */
236 /* NOTE: fragment timeout is not here */
237 u_quad_t ifs6_in_deliver; /* # of datagrams delivered to ULP */
238 /* NOTE: increment on final dst if */
239 u_quad_t ifs6_out_forward; /* # of datagrams forwarded */
240 /* NOTE: increment on outgoing if */
241 u_quad_t ifs6_out_request; /* # of outgoing datagrams from ULP */
242 /* NOTE: does not include forwrads */
243 u_quad_t ifs6_out_discard; /* # of discarded datagrams */
244 u_quad_t ifs6_out_fragok; /* # of datagrams fragmented */
245 u_quad_t ifs6_out_fragfail; /* # of datagrams failed on fragment */
246 u_quad_t ifs6_out_fragcreat; /* # of fragment datagrams */
247 /* NOTE: this is # after fragment */
248 u_quad_t ifs6_reass_reqd; /* # of incoming fragmented packets */
249 /* NOTE: increment on final dst if */
250 u_quad_t ifs6_reass_ok; /* # of reassembled packets */
251 /* NOTE: this is # after reass */
252 /* NOTE: increment on final dst if */
253 u_quad_t ifs6_atmfrag_rcvd; /* # of atomic fragments received */
254 u_quad_t ifs6_reass_fail; /* # of reass failures */
255 /* NOTE: may not be packet count */
256 /* NOTE: increment on final dst if */
257 u_quad_t ifs6_in_mcast; /* # of inbound multicast datagrams */
258 u_quad_t ifs6_out_mcast; /* # of outbound multicast datagrams */
259
260 u_quad_t ifs6_cantfoward_icmp6; /* # of ICMPv6 packets received for unreachable dest */
261 u_quad_t ifs6_addr_expiry_cnt; /* # of address expiry events (excluding privacy addresses) */
262 u_quad_t ifs6_pfx_expiry_cnt; /* # of prefix expiry events */
263 u_quad_t ifs6_defrtr_expiry_cnt; /* # of default router expiry events */
264 };
265
266 /*
267 * ICMPv6 interface statistics, as defined in RFC2466 Ipv6IfIcmpEntry.
268 * XXX: I'm not sure if this file is the right place for this structure...
269 */
270 struct icmp6_ifstat {
271 /*
272 * Input statistics
273 */
274 /* ipv6IfIcmpInMsgs, total # of input messages */
275 u_quad_t ifs6_in_msg;
276 /* ipv6IfIcmpInErrors, # of input error messages */
277 u_quad_t ifs6_in_error;
278 /* ipv6IfIcmpInDestUnreachs, # of input dest unreach errors */
279 u_quad_t ifs6_in_dstunreach;
280 /* ipv6IfIcmpInAdminProhibs, # of input admin. prohibited errs */
281 u_quad_t ifs6_in_adminprohib;
282 /* ipv6IfIcmpInTimeExcds, # of input time exceeded errors */
283 u_quad_t ifs6_in_timeexceed;
284 /* ipv6IfIcmpInParmProblems, # of input parameter problem errors */
285 u_quad_t ifs6_in_paramprob;
286 /* ipv6IfIcmpInPktTooBigs, # of input packet too big errors */
287 u_quad_t ifs6_in_pkttoobig;
288 /* ipv6IfIcmpInEchos, # of input echo requests */
289 u_quad_t ifs6_in_echo;
290 /* ipv6IfIcmpInEchoReplies, # of input echo replies */
291 u_quad_t ifs6_in_echoreply;
292 /* ipv6IfIcmpInRouterSolicits, # of input router solicitations */
293 u_quad_t ifs6_in_routersolicit;
294 /* ipv6IfIcmpInRouterAdvertisements, # of input router advertisements */
295 u_quad_t ifs6_in_routeradvert;
296 /* ipv6IfIcmpInNeighborSolicits, # of input neighbor solicitations */
297 u_quad_t ifs6_in_neighborsolicit;
298 /* ipv6IfIcmpInNeighborAdvertisements, # of input neighbor advs. */
299 u_quad_t ifs6_in_neighboradvert;
300 /* ipv6IfIcmpInRedirects, # of input redirects */
301 u_quad_t ifs6_in_redirect;
302 /* ipv6IfIcmpInGroupMembQueries, # of input MLD queries */
303 u_quad_t ifs6_in_mldquery;
304 /* ipv6IfIcmpInGroupMembResponses, # of input MLD reports */
305 u_quad_t ifs6_in_mldreport;
306 /* ipv6IfIcmpInGroupMembReductions, # of input MLD done */
307 u_quad_t ifs6_in_mlddone;
308
309 /*
310 * Output statistics. We should solve unresolved routing problem...
311 */
312 /* ipv6IfIcmpOutMsgs, total # of output messages */
313 u_quad_t ifs6_out_msg;
314 /* ipv6IfIcmpOutErrors, # of output error messages */
315 u_quad_t ifs6_out_error;
316 /* ipv6IfIcmpOutDestUnreachs, # of output dest unreach errors */
317 u_quad_t ifs6_out_dstunreach;
318 /* ipv6IfIcmpOutAdminProhibs, # of output admin. prohibited errs */
319 u_quad_t ifs6_out_adminprohib;
320 /* ipv6IfIcmpOutTimeExcds, # of output time exceeded errors */
321 u_quad_t ifs6_out_timeexceed;
322 /* ipv6IfIcmpOutParmProblems, # of output parameter problem errors */
323 u_quad_t ifs6_out_paramprob;
324 /* ipv6IfIcmpOutPktTooBigs, # of output packet too big errors */
325 u_quad_t ifs6_out_pkttoobig;
326 /* ipv6IfIcmpOutEchos, # of output echo requests */
327 u_quad_t ifs6_out_echo;
328 /* ipv6IfIcmpOutEchoReplies, # of output echo replies */
329 u_quad_t ifs6_out_echoreply;
330 /* ipv6IfIcmpOutRouterSolicits, # of output router solicitations */
331 u_quad_t ifs6_out_routersolicit;
332 /* ipv6IfIcmpOutRouterAdvertisements, # of output router advs. */
333 u_quad_t ifs6_out_routeradvert;
334 /* ipv6IfIcmpOutNeighborSolicits, # of output neighbor solicitations */
335 u_quad_t ifs6_out_neighborsolicit;
336 /* ipv6IfIcmpOutNeighborAdvertisements, # of output neighbor advs. */
337 u_quad_t ifs6_out_neighboradvert;
338 /* ipv6IfIcmpOutRedirects, # of output redirects */
339 u_quad_t ifs6_out_redirect;
340 /* ipv6IfIcmpOutGroupMembQueries, # of output MLD queries */
341 u_quad_t ifs6_out_mldquery;
342 /* ipv6IfIcmpOutGroupMembResponses, # of output MLD reports */
343 u_quad_t ifs6_out_mldreport;
344 /* ipv6IfIcmpOutGroupMembReductions, # of output MLD done */
345 u_quad_t ifs6_out_mlddone;
346 };
347
348 struct in6_ifreq {
349 char ifr_name[IFNAMSIZ];
350 union {
351 struct sockaddr_in6 ifru_addr;
352 struct sockaddr_in6 ifru_dstaddr;
353 int ifru_flags;
354 int ifru_flags6;
355 int ifru_metric;
356 int ifru_intval;
357 caddr_t ifru_data;
358 struct in6_addrlifetime ifru_lifetime;
359 struct in6_ifstat ifru_stat;
360 struct icmp6_ifstat ifru_icmp6stat;
361 u_int32_t ifru_scope_id[SCOPE6_ID_MAX];
362 } ifr_ifru;
363 };
364
365 struct in6_aliasreq {
366 char ifra_name[IFNAMSIZ];
367 struct sockaddr_in6 ifra_addr;
368 struct sockaddr_in6 ifra_dstaddr;
369 struct sockaddr_in6 ifra_prefixmask;
370 int ifra_flags;
371 struct in6_addrlifetime ifra_lifetime;
372 };
373
374 #ifdef PRIVATE
375 #define IN6_CGA_MODIFIER_LENGTH 16
376
377 struct in6_cga_modifier {
378 u_int8_t octets[IN6_CGA_MODIFIER_LENGTH];
379 };
380
381 struct in6_cga_prepare {
382 struct in6_cga_modifier cga_modifier;
383 u_int8_t cga_security_level;
384 u_int8_t reserved_A[15];
385 };
386
387 #define IN6_CGA_KEY_MAXSIZE 2048 /* octets */
388
389 struct in6_cga_nodecfg {
390 struct iovec cga_privkey;
391 struct iovec cga_pubkey;
392 struct in6_cga_prepare cga_prepare;
393 };
394
395 /*
396 * XXX in6_llstartreq will be removed once
397 * configd adopts the more generically named
398 * in6_cgareq structure.
399 */
400 struct in6_llstartreq {
401 char llsr_name[IFNAMSIZ];
402 int llsr_flags;
403 struct in6_cga_prepare llsr_cgaprep;
404 struct in6_addrlifetime llsr_lifetime;
405 };
406
407 struct in6_cgareq {
408 char cgar_name[IFNAMSIZ];
409 int cgar_flags;
410 struct in6_cga_prepare cgar_cgaprep;
411 struct in6_addrlifetime cgar_lifetime;
412 };
413
414 #ifdef BSD_KERNEL_PRIVATE
415 /*
416 * XXX Corresponding versions of in6_llstartreq
417 * will be removed after the new in6_cgareq is
418 * adopted by configd
419 */
420 struct in6_llstartreq_32 {
421 char llsr_name[IFNAMSIZ];
422 int llsr_flags;
423 struct in6_cga_prepare llsr_cgaprep;
424 struct in6_addrlifetime_32 llsr_lifetime;
425 };
426
427 struct in6_llstartreq_64 {
428 char llsr_name[IFNAMSIZ];
429 int llsr_flags;
430 struct in6_cga_prepare llsr_cgaprep;
431 struct in6_addrlifetime_64 llsr_lifetime;
432 };
433
434 struct in6_cgareq_32 {
435 char cgar_name[IFNAMSIZ];
436 int cgar_flags;
437 struct in6_cga_prepare cgar_cgaprep;
438 struct in6_addrlifetime_32 cgar_lifetime;
439 };
440
441 struct in6_cgareq_64 {
442 char cgar_name[IFNAMSIZ];
443 int cgar_flags;
444 struct in6_cga_prepare cgar_cgaprep;
445 struct in6_addrlifetime_64 cgar_lifetime;
446 };
447
448 #endif /* !BSD_KERNEL_PRIVATE */
449 #endif /* PRIVATE */
450
451 #ifdef BSD_KERNEL_PRIVATE
452 struct in6_aliasreq_32 {
453 char ifra_name[IFNAMSIZ];
454 struct sockaddr_in6 ifra_addr;
455 struct sockaddr_in6 ifra_dstaddr;
456 struct sockaddr_in6 ifra_prefixmask;
457 int ifra_flags;
458 struct in6_addrlifetime_32 ifra_lifetime;
459 };
460
461 struct in6_aliasreq_64 {
462 char ifra_name[IFNAMSIZ];
463 struct sockaddr_in6 ifra_addr;
464 struct sockaddr_in6 ifra_dstaddr;
465 struct sockaddr_in6 ifra_prefixmask;
466 int ifra_flags;
467 struct in6_addrlifetime_64 ifra_lifetime;
468 };
469 #endif /* BSD_KERNEL_PRIVATE */
470
471 /* prefix type macro */
472 #define IN6_PREFIX_ND 1
473 #define IN6_PREFIX_RR 2
474
475 /*
476 * prefix related flags passed between kernel(NDP related part) and
477 * user land command(ifconfig) and daemon(rtadvd).
478 */
479 struct in6_prflags {
480 struct prf_ra {
481 u_char onlink : 1;
482 u_char autonomous : 1;
483 u_char reserved : 6;
484 } prf_ra;
485 u_char prf_reserved1;
486 u_short prf_reserved2;
487 /* want to put this on 4byte offset */
488 struct prf_rr {
489 u_char decrvalid : 1;
490 u_char decrprefd : 1;
491 u_char reserved : 6;
492 } prf_rr;
493 u_char prf_reserved3;
494 u_short prf_reserved4;
495 };
496
497 struct in6_prefixreq {
498 char ipr_name[IFNAMSIZ];
499 u_char ipr_origin;
500 u_char ipr_plen;
501 u_int32_t ipr_vltime;
502 u_int32_t ipr_pltime;
503 struct in6_prflags ipr_flags;
504 struct sockaddr_in6 ipr_prefix;
505 };
506
507 #define PR_ORIG_RA 0
508 #define PR_ORIG_RR 1
509 #define PR_ORIG_STATIC 2
510 #define PR_ORIG_KERNEL 3
511
512 #define ipr_raf_onlink ipr_flags.prf_ra.onlink
513 #define ipr_raf_auto ipr_flags.prf_ra.autonomous
514
515 #define ipr_statef_onlink ipr_flags.prf_state.onlink
516
517 #define ipr_rrf_decrvalid ipr_flags.prf_rr.decrvalid
518 #define ipr_rrf_decrprefd ipr_flags.prf_rr.decrprefd
519
520 struct in6_rrenumreq {
521 char irr_name[IFNAMSIZ];
522 u_char irr_origin;
523 u_char irr_m_len; /* match len for matchprefix */
524 u_char irr_m_minlen; /* minlen for matching prefix */
525 u_char irr_m_maxlen; /* maxlen for matching prefix */
526 u_char irr_u_uselen; /* uselen for adding prefix */
527 u_char irr_u_keeplen; /* keeplen from matching prefix */
528 struct irr_raflagmask {
529 u_char onlink : 1;
530 u_char autonomous : 1;
531 u_char reserved : 6;
532 } irr_raflagmask;
533 u_int32_t irr_vltime;
534 u_int32_t irr_pltime;
535 struct in6_prflags irr_flags;
536 struct sockaddr_in6 irr_matchprefix;
537 struct sockaddr_in6 irr_useprefix;
538 };
539
540 #define irr_raf_mask_onlink irr_raflagmask.onlink
541 #define irr_raf_mask_auto irr_raflagmask.autonomous
542 #define irr_raf_mask_reserved irr_raflagmask.reserved
543
544 #define irr_raf_onlink irr_flags.prf_ra.onlink
545 #define irr_raf_auto irr_flags.prf_ra.autonomous
546
547 #define irr_statef_onlink irr_flags.prf_state.onlink
548
549 #define irr_rrf irr_flags.prf_rr
550 #define irr_rrf_decrvalid irr_flags.prf_rr.decrvalid
551 #define irr_rrf_decrprefd irr_flags.prf_rr.decrprefd
552
553 /*
554 * Event data, inet6 style.
555 */
556 struct kev_in6_addrlifetime {
557 u_int32_t ia6t_expire;
558 u_int32_t ia6t_preferred;
559 u_int32_t ia6t_vltime;
560 u_int32_t ia6t_pltime;
561 };
562
563 struct kev_in6_data {
564 struct net_event_data link_data;
565 struct sockaddr_in6 ia_addr; /* interface address */
566 struct sockaddr_in6 ia_net; /* network number of interface */
567 struct sockaddr_in6 ia_dstaddr; /* space for destination addr */
568 struct sockaddr_in6 ia_prefixmask; /* prefix mask */
569 u_int32_t ia_plen; /* prefix length */
570 u_int32_t ia6_flags; /* address flags from in6_ifaddr */
571 struct kev_in6_addrlifetime ia_lifetime; /* address life info */
572 uint8_t ia_mac[ETHER_ADDR_LEN];
573 };
574
575 #ifdef BSD_KERNEL_PRIVATE
576 /* Utility function used inside netinet6 kernel code for generating events */
577 void in6_post_msg(struct ifnet *, u_int32_t, struct in6_ifaddr *, uint8_t *mac);
578
579 #define IN6_ARE_MASKED_ADDR_EQUAL(d, a, m) ( \
580 (((d)->s6_addr32[0] ^ (a)->s6_addr32[0]) & (m)->s6_addr32[0]) == 0 && \
581 (((d)->s6_addr32[1] ^ (a)->s6_addr32[1]) & (m)->s6_addr32[1]) == 0 && \
582 (((d)->s6_addr32[2] ^ (a)->s6_addr32[2]) & (m)->s6_addr32[2]) == 0 && \
583 (((d)->s6_addr32[3] ^ (a)->s6_addr32[3]) & (m)->s6_addr32[3]) == 0)
584
585 /*
586 * Given a pointer to an in6_ifaddr (ifaddr),
587 * return a pointer to the addr as a sockaddr_in6
588 */
589 #define IA6_IN6(ia) (&((ia)->ia_addr.sin6_addr))
590 #define IA6_DSTIN6(ia) (&((ia)->ia_dstaddr.sin6_addr))
591 #define IA6_MASKIN6(ia) (&((ia)->ia_prefixmask.sin6_addr))
592 #define IA6_SIN6(ia) (&((ia)->ia_addr))
593 #define IA6_DSTSIN6(ia) (&((ia)->ia_dstaddr))
594 #define IFA_IN6(x) \
595 (&((struct sockaddr_in6 *)(void *)((x)->ifa_addr))->sin6_addr)
596 #define IFA_DSTIN6(x) \
597 (&((struct sockaddr_in6 *)(void *)((x)->ifa_dstaddr))->sin6_addr)
598 #define IFPR_IN6(x) \
599 (&((struct sockaddr_in6 *)(void *)((x)->ifpr_prefix))->sin6_addr)
600 #endif /* BSD_KERNEL_PRIVATE */
601
602 #define SIOCSIFADDR_IN6 _IOW('i', 12, struct in6_ifreq)
603 #define SIOCGIFADDR_IN6 _IOWR('i', 33, struct in6_ifreq)
604
605 /*
606 * SIOCSxxx ioctls should be unused (see comments in in6.c), but
607 * we do not shift numbers for binary compatibility.
608 */
609 #define SIOCSIFDSTADDR_IN6 _IOW('i', 14, struct in6_ifreq)
610 #define SIOCSIFNETMASK_IN6 _IOW('i', 22, struct in6_ifreq)
611
612 #define SIOCGIFDSTADDR_IN6 _IOWR('i', 34, struct in6_ifreq)
613 #define SIOCGIFNETMASK_IN6 _IOWR('i', 37, struct in6_ifreq)
614
615 #define SIOCDIFADDR_IN6 _IOW('i', 25, struct in6_ifreq)
616 #define SIOCAIFADDR_IN6 _IOW('i', 26, struct in6_aliasreq)
617 #ifdef BSD_KERNEL_PRIVATE
618 #define SIOCAIFADDR_IN6_32 _IOW('i', 26, struct in6_aliasreq_32)
619 #define SIOCAIFADDR_IN6_64 _IOW('i', 26, struct in6_aliasreq_64)
620 #endif /* BSD_KERNEL_PRIVATE */
621
622 #define SIOCSIFPHYADDR_IN6 _IOW('i', 62, struct in6_aliasreq)
623 #ifdef BSD_KERNEL_PRIVATE
624 #define SIOCSIFPHYADDR_IN6_32 _IOW('i', 62, struct in6_aliasreq_32)
625 #define SIOCSIFPHYADDR_IN6_64 _IOW('i', 62, struct in6_aliasreq_64)
626 #endif /* BSD_KERNEL_PRIVATE */
627 #define SIOCGIFPSRCADDR_IN6 _IOWR('i', 63, struct in6_ifreq)
628 #define SIOCGIFPDSTADDR_IN6 _IOWR('i', 64, struct in6_ifreq)
629 #define SIOCGIFAFLAG_IN6 _IOWR('i', 73, struct in6_ifreq)
630
631 #define SIOCGDRLST_IN6 _IOWR('i', 74, struct in6_drlist)
632 #ifdef BSD_KERNEL_PRIVATE
633 #define SIOCGDRLST_IN6_32 _IOWR('i', 74, struct in6_drlist_32)
634 #define SIOCGDRLST_IN6_64 _IOWR('i', 74, struct in6_drlist_64)
635 #endif /* BSD_KERNEL_PRIVATE */
636
637 #define SIOCGPRLST_IN6 _IOWR('i', 75, struct in6_prlist)
638 #ifdef BSD_KERNEL_PRIVATE
639 #define SIOCGPRLST_IN6_32 _IOWR('i', 75, struct in6_prlist_32)
640 #define SIOCGPRLST_IN6_64 _IOWR('i', 75, struct in6_prlist_64)
641 #endif /* BSD_KERNEL_PRIVATE */
642
643 #define OSIOCGIFINFO_IN6 _IOWR('i', 108, struct in6_ondireq)
644 #define SIOCGIFINFO_IN6 _IOWR('i', 76, struct in6_ondireq)
645 #define SIOCSNDFLUSH_IN6 _IOWR('i', 77, struct in6_ifreq)
646
647 #define SIOCGNBRINFO_IN6 _IOWR('i', 78, struct in6_nbrinfo)
648 #ifdef BSD_KERNEL_PRIVATE
649 #define SIOCGNBRINFO_IN6_32 _IOWR('i', 78, struct in6_nbrinfo_32)
650 #define SIOCGNBRINFO_IN6_64 _IOWR('i', 78, struct in6_nbrinfo_64)
651 #endif /* BSD_KERNEL_PRIVATE */
652
653 #define SIOCSPFXFLUSH_IN6 _IOWR('i', 79, struct in6_ifreq)
654 #define SIOCSRTRFLUSH_IN6 _IOWR('i', 80, struct in6_ifreq)
655
656 #define SIOCGIFALIFETIME_IN6 _IOWR('i', 81, struct in6_ifreq)
657 #define SIOCSIFALIFETIME_IN6 _IOWR('i', 82, struct in6_ifreq)
658 #define SIOCGIFSTAT_IN6 _IOWR('i', 83, struct in6_ifreq)
659 #define SIOCGIFSTAT_ICMP6 _IOWR('i', 84, struct in6_ifreq)
660
661 #define SIOCSDEFIFACE_IN6 _IOWR('i', 85, struct in6_ndifreq)
662 #define SIOCGDEFIFACE_IN6 _IOWR('i', 86, struct in6_ndifreq)
663 #ifdef BSD_KERNEL_PRIVATE
664 #define SIOCSDEFIFACE_IN6_32 _IOWR('i', 85, struct in6_ndifreq_32)
665 #define SIOCSDEFIFACE_IN6_64 _IOWR('i', 85, struct in6_ndifreq_64)
666 #define SIOCGDEFIFACE_IN6_32 _IOWR('i', 86, struct in6_ndifreq_32)
667 #define SIOCGDEFIFACE_IN6_64 _IOWR('i', 86, struct in6_ndifreq_64)
668 #endif /* BSD_KERNEL_PRIVATE */
669
670 #define SIOCSIFINFO_FLAGS _IOWR('i', 87, struct in6_ndireq) /* XXX */
671
672 /* N.B.: These 3 ioctls are deprecated and won't work */
673 #define SIOCSSCOPE6 _IOW('i', 88, struct in6_ifreq)
674 #define SIOCGSCOPE6 _IOWR('i', 89, struct in6_ifreq)
675 #define SIOCGSCOPE6DEF _IOWR('i', 90, struct in6_ifreq)
676
677 #define SIOCSIFPREFIX_IN6 _IOW('i', 100, struct in6_prefixreq) /* set */
678 #define SIOCGIFPREFIX_IN6 _IOWR('i', 101, struct in6_prefixreq) /* get */
679 #define SIOCDIFPREFIX_IN6 _IOW('i', 102, struct in6_prefixreq) /* del */
680 #define SIOCAIFPREFIX_IN6 _IOW('i', 103, struct in6_rrenumreq) /* add */
681
682 /* change */
683 #define SIOCCIFPREFIX_IN6 _IOW('i', 104, struct in6_rrenumreq)
684
685 /* set global */
686 #define SIOCSGIFPREFIX_IN6 _IOW('i', 105, struct in6_rrenumreq)
687
688 /*
689 * multicast routing, get s/g pkt cnt, pkt cnt per interface.
690 */
691 #define SIOCGETSGCNT_IN6 _IOWR('u', 28, struct sioc_sg_req6)
692 #define SIOCGETMIFCNT_IN6 _IOWR('u', 107, struct sioc_mif_req6)
693 #ifdef BSD_KERNEL_PRIVATE
694 #define SIOCGETMIFCNT_IN6_32 _IOWR('u', 107, struct sioc_mif_req6_32)
695 #define SIOCGETMIFCNT_IN6_64 _IOWR('u', 107, struct sioc_mif_req6_64)
696 #endif /* BSD_KERNEL_PRIVATE */
697
698 #define SIOCAADDRCTL_POLICY _IOW('u', 108, struct in6_addrpolicy)
699 #define SIOCDADDRCTL_POLICY _IOW('u', 109, struct in6_addrpolicy)
700
701 #ifdef PRIVATE
702 /*
703 * temporary control calls to attach/detach IPv6 to/from an interface.
704 */
705 #define SIOCPROTOATTACH_IN6 _IOWR('i', 110, struct in6_aliasreq)
706 #ifdef BSD_KERNEL_PRIVATE
707 #define SIOCPROTOATTACH_IN6_32 _IOWR('i', 110, struct in6_aliasreq_32)
708 #define SIOCPROTOATTACH_IN6_64 _IOWR('i', 110, struct in6_aliasreq_64)
709 #endif /* BSD_KERNEL_PRIVATE */
710 #define SIOCPROTODETACH_IN6 _IOWR('i', 111, struct in6_ifreq)
711
712 /*
713 * start/stop aquiring linklocal on interface
714 */
715 #define SIOCLL_START _IOWR('i', 130, struct in6_aliasreq)
716 #ifdef BSD_KERNEL_PRIVATE
717 #define SIOCLL_START_32 _IOWR('i', 130, struct in6_aliasreq_32)
718 #define SIOCLL_START_64 _IOWR('i', 130, struct in6_aliasreq_64)
719 #endif /* BSD_KERNEL_PRIVATE */
720 #define SIOCLL_STOP _IOWR('i', 131, struct in6_ifreq)
721
722 /*
723 * accept rtadvd (and stop accepting) on this interface.
724 */
725 #define SIOCAUTOCONF_START _IOWR('i', 132, struct in6_ifreq)
726 #define SIOCAUTOCONF_STOP _IOWR('i', 133, struct in6_ifreq)
727
728 /*
729 * add/remove default IPv6 router.
730 */
731 #define SIOCDRADD_IN6 _IOWR('u', 134, struct in6_defrouter)
732 #ifdef BSD_KERNEL_PRIVATE
733 #define SIOCDRADD_IN6_32 _IOWR('u', 134, struct in6_defrouter_32)
734 #define SIOCDRADD_IN6_64 _IOWR('u', 134, struct in6_defrouter_64)
735 #endif /* BSD_KERNEL_PRIVATE */
736 #define SIOCDRDEL_IN6 _IOWR('u', 135, struct in6_defrouter)
737 #ifdef BSD_KERNEL_PRIVATE
738 #define SIOCDRDEL_IN6_32 _IOWR('u', 135, struct in6_defrouter_32)
739 #define SIOCDRDEL_IN6_64 _IOWR('u', 135, struct in6_defrouter_64)
740 #endif /* BSD_KERNEL_PRIVATE */
741
742 /*
743 * enable/disable IPv6 router mode on interface.
744 */
745 #define SIOCSETROUTERMODE_IN6 _IOWR('i', 136, struct in6_ifreq)
746
747 /*
748 * start secure link-local interface addresses
749 */
750 #define SIOCLL_CGASTART _IOW('i', 160, struct in6_cgareq)
751 #ifdef BSD_KERNEL_PRIVATE
752 #define SIOCLL_CGASTART_32 _IOW('i', 160, struct in6_cgareq_32)
753 #define SIOCLL_CGASTART_64 _IOW('i', 160, struct in6_cgareq_64)
754 #endif
755
756 #define SIOCGIFCGAPREP_IN6 _IOWR('i', 187, struct in6_cgareq)
757 #define SIOCSIFCGAPREP_IN6 _IOWR('i', 188, struct in6_cgareq)
758
759 #define SIOCCLAT46_START _IOWR('i', 189, struct in6_ifreq)
760 #define SIOCCLAT46_STOP _IOWR('i', 190, struct in6_ifreq)
761 #endif /* PRIVATE */
762
763 #ifdef BSD_KERNEL_PRIVATE
764 /*
765 * XXX: Do not extend IN6_IFF values beyond 16-bit. We currently copy the
766 * values from ia6_flags as is into m_pkthdr.{src,dst}_iff which are
767 * defined as 16-bit variables. We can relax this once we define a
768 * unified set of interface flags for {ia,ia6}_flags and perform
769 * translation between those and the publicly-defined ones below.
770 */
771 #endif /* BSD_KERNEL_PRIVATE */
772 #define IN6_IFF_ANYCAST 0x0001 /* anycast address */
773 #define IN6_IFF_TENTATIVE 0x0002 /* tentative address */
774 #define IN6_IFF_DUPLICATED 0x0004 /* DAD detected duplicate */
775 #define IN6_IFF_DETACHED 0x0008 /* may be detached from the link */
776 #define IN6_IFF_DEPRECATED 0x0010 /* deprecated address */
777
778 /* don't perform DAD on this address (used only at first SIOC* call) */
779 #define IN6_IFF_NODAD 0x0020
780
781 #define IN6_IFF_AUTOCONF 0x0040 /* autoconfigurable address. */
782 #define IN6_IFF_TEMPORARY 0x0080 /* temporary (anonymous) address. */
783 #define IN6_IFF_DYNAMIC 0x0100 /* assigned by DHCPv6 service */
784 #define IN6_IFF_OPTIMISTIC 0x0200 /* optimistic DAD, i.e. RFC 4429 */
785 #define IN6_IFF_SECURED 0x0400 /* cryptographically generated */
786 #ifdef PRIVATE
787 #define IN6_IFF_SWIFTDAD 0x0800 /* DAD with no delay */
788 #endif
789 #define IN6_IFF_CLAT46 0x1000 /* Address reserved for CLAT46 */
790 #define IN6_IFF_NOPFX 0x8000 /* Depreciated. Don't use. */
791
792 /* Duplicate Address Detection [DAD] in progress. */
793 #define IN6_IFF_DADPROGRESS (IN6_IFF_TENTATIVE|IN6_IFF_OPTIMISTIC)
794
795 /* do not input/output */
796 #define IN6_IFF_NOTREADY (IN6_IFF_TENTATIVE|IN6_IFF_DUPLICATED)
797
798 /* SLAAC/DHCPv6 address */
799 #define IN6_IFF_NOTMANUAL (IN6_IFF_AUTOCONF|IN6_IFF_DYNAMIC)
800
801 #ifdef KERNEL
802 #define IN6_ARE_SCOPE_CMP(a, b) ((a) - (b))
803 #define IN6_ARE_SCOPE_EQUAL(a, b) ((a) == (b))
804 #endif /* KERNEL */
805
806 #ifdef BSD_KERNEL_PRIVATE
807 extern struct icmp6stat icmp6stat;
808 extern lck_rw_t in6_ifaddr_rwlock;
809 extern lck_mtx_t proxy6_lock;
810 extern u_char inet6ctlerrmap[];
811 extern u_int32_t in6_maxmtu;
812
813 /* N.B.: if_inet6data is never freed once set, so we don't need to lock */
814 #define in6_ifstat_add_common(_ifp, _tag, _count, _atomic) do { \
815 if (_ifp != NULL && IN6_IFEXTRA(_ifp) != NULL) { \
816 if (_atomic) \
817 atomic_add_64( \
818 &IN6_IFEXTRA(_ifp)->in6_ifstat._tag, _count);\
819 else \
820 IN6_IFEXTRA(_ifp)->in6_ifstat._tag += _count; \
821 } \
822 } while (0)
823
824 /* atomic version */
825 #define in6_ifstat_inc(_ifp, _tag) \
826 in6_ifstat_add_common(_ifp, _tag, 1, TRUE)
827
828 /* non-atomic version (for fast paths) */
829 #define in6_ifstat_inc_na(_ifp, _tag) \
830 in6_ifstat_add_common(_ifp, _tag, 1, FALSE)
831
832 /* atomic add version */
833 #define in6_ifstat_add(_ifp, _tag, _count) \
834 in6_ifstat_add_common(_ifp, _tag, _count, TRUE)
835
836 /*
837 * Macro for finding the internet address structure (in6_ifaddr) corresponding
838 * to a given interface (ifnet structure).
839 */
840
841 #define IFP_TO_IA6(ifp, ia) \
842 /* struct ifnet *ifp; */ \
843 /* struct in6_ifaddr *ia; */ \
844 do { \
845 struct ifaddr *_ifa; \
846 ifnet_lock_assert(ifp, LCK_RW_ASSERT_HELD); \
847 for (_ifa = (ifp)->if_addrlist.tqh_first; _ifa != NULL; \
848 _ifa = _ifa->ifa_list.tqe_next) { \
849 IFA_LOCK(_ifa); \
850 if (_ifa->ifa_addr->sa_family == AF_INET6) { \
851 IFA_ADDREF_LOCKED(_ifa); \
852 IFA_UNLOCK(_ifa); \
853 break; \
854 } \
855 IFA_UNLOCK(_ifa); \
856 } \
857 (ia) = (struct in6_ifaddr *)_ifa; \
858 } while (0)
859
860 /*
861 * IPv6 multicast MLD-layer source entry.
862 */
863 struct ip6_msource {
864 RB_ENTRY(ip6_msource) im6s_link; /* RB tree links */
865 struct in6_addr im6s_addr;
866 struct im6s_st {
867 uint16_t ex; /* # of exclusive members */
868 uint16_t in; /* # of inclusive members */
869 } im6s_st[2]; /* state at t0, t1 */
870 uint8_t im6s_stp; /* pending query */
871 };
872
873 RB_HEAD(ip6_msource_tree, ip6_msource);
874
875 RB_PROTOTYPE_SC_PREV(__private_extern__, ip6_msource_tree, ip6_msource,
876 im6s_link, ip6_msource_cmp);
877
878 /*
879 * IPv6 multicast PCB-layer source entry.
880 *
881 * NOTE: overlapping use of struct ip6_msource fields at start.
882 */
883 struct in6_msource {
884 RB_ENTRY(ip6_msource) im6s_link; /* Common field */
885 struct in6_addr im6s_addr; /* Common field */
886 uint8_t im6sl_st[2]; /* state before/at commit */
887 };
888
889 /*
890 * IPv6 multicast PCB-layer group filter descriptor.
891 */
892 struct in6_mfilter {
893 struct ip6_msource_tree im6f_sources; /* source list for (S,G) */
894 u_long im6f_nsrc; /* # of source entries */
895 uint8_t im6f_st[2]; /* state before/at commit */
896 };
897
898 /*
899 * Legacy KAME IPv6 multicast membership descriptor.
900 */
901 struct in6_multi_mship {
902 struct in6_multi *i6mm_maddr; /* Multicast address pointer */
903 LIST_ENTRY(in6_multi_mship) i6mm_chain; /* multicast options chain */
904 };
905
906 #ifdef BSD_KERNEL_PRIVATE
907 #include <netinet6/nd6_var.h>
908 #include <net/if_llatbl.h>
909
910 /*
911 * Per-interface IPv6 structures.
912 */
913 struct in6_ifextra {
914 struct scope6_id scope6_id;
915 struct in6_ifstat in6_ifstat;
916 struct icmp6_ifstat icmp6_ifstat;
917 struct nd_ifinfo nd_ifinfo;
918 uint32_t netsig_len;
919 u_int8_t netsig[IFNET_SIGNATURELEN];
920 struct ipv6_prefix nat64_prefixes[NAT64_MAX_NUM_PREFIXES];
921 struct lltable *ii_llt; /* NDP state */
922 };
923 #define IN6_IFEXTRA(_ifp) ((struct in6_ifextra *)(_ifp->if_inet6data))
924 #define LLTABLE6(ifp) ((IN6_IFEXTRA(ifp) == NULL) ? NULL : IN6_IFEXTRA(ifp)->ii_llt)
925 #endif /* BSD_KERNEL_PRIVATE */
926
927 struct mld_ifinfo;
928
929 /*
930 * IPv6 group descriptor.
931 *
932 * For every entry on an ifnet's if_multiaddrs list which represents
933 * an IP multicast group, there is one of these structures.
934 *
935 * If any source filters are present, then a node will exist in the RB-tree
936 * to permit fast lookup by source whenever an operation takes place.
937 * This permits pre-order traversal when we issue reports.
938 * Source filter trees are kept separately from the socket layer to
939 * greatly simplify locking.
940 *
941 * When MLDv2 is active, in6m_timer is the response to group query timer.
942 * The state-change timer in6m_sctimer is separate; whenever state changes
943 * for the group the state change record is generated and transmitted,
944 * and kept if retransmissions are necessary.
945 *
946 * The request count here is a count of requests for this address, not a
947 * count of pointers to this structure.
948 *
949 * FUTURE: in6m_entry is now only used when groups are being purged
950 * on a detaching ifnet. It could be demoted to a SLIST_ENTRY.
951 */
952 struct in6_multi {
953 decl_lck_mtx_data(, in6m_lock);
954 u_int32_t in6m_refcount; /* reference count */
955 u_int32_t in6m_reqcnt; /* request count for this address */
956 u_int32_t in6m_debug; /* see ifa_debug flags */
957 LIST_ENTRY(in6_multi) in6m_entry; /* list glue */
958 struct in6_addr in6m_addr; /* IP6 multicast address */
959 struct ifnet *in6m_ifp; /* back pointer to ifnet */
960 struct ifmultiaddr *in6m_ifma; /* back pointer to ifmultiaddr */
961 u_int in6m_state; /* state of the membership */
962 u_int in6m_timer; /* MLD6 listener report timer */
963
964 /* New fields for MLDv2 follow. */
965 struct mld_ifinfo *in6m_mli; /* MLD info */
966 SLIST_ENTRY(in6_multi) in6m_dtle; /* detached waiting for rele */
967 SLIST_ENTRY(in6_multi) in6m_nrele; /* to-be-released by MLD */
968 u_int32_t in6m_nrelecnt; /* deferred release count */
969 struct ip6_msource_tree in6m_srcs; /* tree of sources */
970 u_long in6m_nsrc; /* # of tree entries */
971
972 struct ifqueue in6m_scq; /* pending state-change packets */
973 struct timeval in6m_lastgsrtv; /* last G-S-R query */
974 uint16_t in6m_sctimer; /* state-change timer */
975 uint16_t in6m_scrv; /* state-change rexmit count */
976
977 /*
978 * SSM state counters which track state at T0 (the time the last
979 * state-change report's RV timer went to zero) and T1
980 * (time of pending report, i.e. now).
981 * Used for computing MLDv2 state-change reports. Several refcounts
982 * are maintained here to optimize for common use-cases.
983 */
984 struct in6m_st {
985 uint16_t iss_fmode; /* MLD filter mode */
986 uint16_t iss_asm; /* # of ASM listeners */
987 uint16_t iss_ex; /* # of exclusive members */
988 uint16_t iss_in; /* # of inclusive members */
989 uint16_t iss_rec; /* # of recorded sources */
990 } in6m_st[2]; /* state at t0, t1 */
991
992 void (*in6m_trace) /* callback fn for tracing refs */
993 (struct in6_multi *, int);
994 };
995
996 #define IN6M_LOCK_ASSERT_HELD(_in6m) \
997 LCK_MTX_ASSERT(&(_in6m)->in6m_lock, LCK_MTX_ASSERT_OWNED)
998
999 #define IN6M_LOCK_ASSERT_NOTHELD(_in6m) \
1000 LCK_MTX_ASSERT(&(_in6m)->in6m_lock, LCK_MTX_ASSERT_NOTOWNED)
1001
1002 #define IN6M_LOCK(_in6m) \
1003 lck_mtx_lock(&(_in6m)->in6m_lock)
1004
1005 #define IN6M_LOCK_SPIN(_in6m) \
1006 lck_mtx_lock_spin(&(_in6m)->in6m_lock)
1007
1008 #define IN6M_CONVERT_LOCK(_in6m) do { \
1009 IN6M_LOCK_ASSERT_HELD(_in6m); \
1010 lck_mtx_convert_spin(&(_in6m)->in6m_lock); \
1011 } while (0)
1012
1013 #define IN6M_UNLOCK(_in6m) \
1014 lck_mtx_unlock(&(_in6m)->in6m_lock)
1015
1016 #define IN6M_ADDREF(_in6m) \
1017 in6m_addref(_in6m, 0)
1018
1019 #define IN6M_ADDREF_LOCKED(_in6m) \
1020 in6m_addref(_in6m, 1)
1021
1022 #define IN6M_REMREF(_in6m) \
1023 in6m_remref(_in6m, 0)
1024
1025 #define IN6M_REMREF_LOCKED(_in6m) \
1026 in6m_remref(_in6m, 1)
1027
1028 /* flags to in6_update_ifa */
1029 #define IN6_IFAUPDATE_NOWAIT 0x1 /* don't block allocating memory */
1030 #define IN6_IFAUPDATE_1STADDR 0x2 /* first address on interface */
1031 #define IN6_IFAUPDATE_NEWADDR 0x4 /* new address on interface */
1032 #define IN6_IFAUPDATE_DADDELAY 0x8 /* must delay initial DAD probe */
1033
1034 struct ip6_moptions;
1035 struct sockopt;
1036 struct inpcb;
1037
1038 extern LIST_HEAD(in6_multihead, in6_multi) in6_multihead;
1039
1040 /*
1041 * Structure used by macros below to remember position when stepping through
1042 * all of the in6_multi records.
1043 */
1044 struct in6_multistep {
1045 struct in6_ifaddr *i_ia;
1046 struct in6_multi *i_in6m;
1047 };
1048
1049 /*
1050 * Macros for looking up the in6_multi record for a given IP6 multicast
1051 * address on a given interface. If no matching record is found, "in6m"
1052 * returns NULL.
1053 *
1054 * We do this differently compared other BSD implementations; instead of
1055 * walking the if_multiaddrs list at the interface and returning the
1056 * ifma_protospec value of a matching entry, we search the global list
1057 * of in6_multi records and find it that way. Otherwise either the two
1058 * structures (in6_multi, ifmultiaddr) need to be ref counted both ways,
1059 * which will make things too complicated, or they need to reside in the
1060 * same protected domain, which they aren't.
1061 *
1062 * Must be called with in6_multihead_lock held.
1063 */
1064 #define IN6_LOOKUP_MULTI(addr, ifp, in6m) \
1065 /* struct in6_addr *addr; */ \
1066 /* struct ifnet *ifp; */ \
1067 /* struct in6_multi *in6m; */ \
1068 do { \
1069 struct in6_multistep _step; \
1070 IN6_FIRST_MULTI(_step, in6m); \
1071 while ((in6m) != NULL) { \
1072 IN6M_LOCK_SPIN(in6m); \
1073 if ((in6m)->in6m_ifp == (ifp) && \
1074 IN6_ARE_ADDR_EQUAL(&(in6m)->in6m_addr, (addr))) { \
1075 IN6M_ADDREF_LOCKED(in6m); \
1076 IN6M_UNLOCK(in6m); \
1077 break; \
1078 } \
1079 IN6M_UNLOCK(in6m); \
1080 IN6_NEXT_MULTI(_step, in6m); \
1081 } \
1082 } while (0)
1083
1084 /*
1085 * Macro to step through all of the in6_multi records, one at a time.
1086 * The current position is remembered in "step", which the caller must
1087 * provide. IN6_FIRST_MULTI(), below, must be called to initialize "step"
1088 * and get the first record. Both macros return a NULL "in6m" when there
1089 * are no remaining records.
1090 *
1091 * Must be called with in6_multihead_lock held.
1092 */
1093 #define IN6_NEXT_MULTI(step, in6m) \
1094 /* struct in6_multistep step; */ \
1095 /* struct in6_multi *in6m; */ \
1096 do { \
1097 in6_multihead_lock_assert(LCK_RW_ASSERT_HELD); \
1098 if (((in6m) = (step).i_in6m) != NULL) \
1099 (step).i_in6m = (step).i_in6m->in6m_entry.le_next; \
1100 } while (0)
1101
1102 #define IN6_FIRST_MULTI(step, in6m) \
1103 /* struct in6_multistep step; */ \
1104 /* struct in6_multi *in6m */ \
1105 do { \
1106 in6_multihead_lock_assert(LCK_RW_ASSERT_HELD); \
1107 (step).i_in6m = in6_multihead.lh_first; \
1108 IN6_NEXT_MULTI((step), (in6m)); \
1109 } while (0)
1110
1111 extern lck_mtx_t *inet6_domain_mutex;
1112 extern struct domain *inet6domain;
1113
1114 struct ip6_pktopts;
1115
1116 /* Multicast private KPIs. */
1117 extern int im6o_mc_filter(const struct ip6_moptions *, const struct ifnet *,
1118 const struct sockaddr_in6 *, const struct sockaddr_in6 *);
1119 extern int in6_mc_join(struct ifnet *, const struct in6_addr *,
1120 struct in6_mfilter *, struct in6_multi **, int);
1121 extern int in6_mc_leave(struct in6_multi *, struct in6_mfilter *);
1122 extern void in6m_clear_recorded(struct in6_multi *);
1123 extern void in6m_commit(struct in6_multi *);
1124 extern void in6m_purge(struct in6_multi *);
1125 extern void in6m_print(const struct in6_multi *);
1126 extern int in6m_record_source(struct in6_multi *, const struct in6_addr *);
1127 extern int ip6_getmoptions(struct inpcb *, struct sockopt *);
1128 extern int ip6_setmoptions(struct inpcb *, struct sockopt *);
1129 /* Legacy KAME multicast private KPIs. */
1130 extern struct in6_multi_mship *in6_joingroup(struct ifnet *,
1131 struct in6_addr *, int *, int);
1132 extern int in6_leavegroup(struct in6_multi_mship *);
1133 extern void in6_multi_init(void);
1134 extern void in6m_addref(struct in6_multi *, int);
1135 extern void in6m_remref(struct in6_multi *, int);
1136 extern int in6_multi_detach(struct in6_multi *);
1137 extern int in6_ifindex2scopeid(int);
1138 extern int in6_mask2len(struct in6_addr *, u_char *);
1139 extern void in6_len2mask(struct in6_addr *, int);
1140 extern int in6_control(struct socket *, u_long, caddr_t, struct ifnet *,
1141 struct proc *);
1142 extern int in6_update_ifa(struct ifnet *, struct in6_aliasreq *, int,
1143 struct in6_ifaddr **);
1144 extern void in6_purgeaddr(struct ifaddr *);
1145 extern int in6if_do_dad(struct ifnet *);
1146 extern void in6_purgeif(struct ifnet *);
1147 extern void in6_savemkludge(struct in6_ifaddr *);
1148 extern void in6_setmaxmtu(void);
1149 extern void in6_restoremkludge(struct in6_ifaddr *, struct ifnet *);
1150 extern void in6_purgemkludge(struct ifnet *);
1151 extern struct in6_ifaddr *in6ifa_ifpforlinklocal(struct ifnet *, int);
1152 extern struct in6_ifaddr *in6ifa_ifpwithflag(struct ifnet *, int);
1153 extern struct in6_ifaddr *in6ifa_ifpwithaddr(struct ifnet *, struct in6_addr *);
1154 extern struct in6_ifaddr *in6ifa_prproxyaddr(struct in6_addr *);
1155 extern void in6ifa_getlifetime(struct in6_ifaddr *,
1156 struct in6_addrlifetime *, int);
1157 extern void in6ifa_setlifetime(struct in6_ifaddr *, struct in6_addrlifetime *);
1158 extern char *ip6_sprintf(const struct in6_addr *);
1159 extern int in6_addr2scopeid(struct ifnet *, struct in6_addr *);
1160 extern int in6_matchlen(struct in6_addr *, struct in6_addr *);
1161 extern int in6_are_prefix_equal(struct in6_addr *p1, struct in6_addr *p2,
1162 int len);
1163 extern void in6_prefixlen2mask(struct in6_addr *maskp, int len);
1164 extern int in6_prefix_add_ifid(int iilen, struct in6_ifaddr *ia);
1165 extern void in6_prefix_remove_ifid(int iilen, struct in6_ifaddr *ia);
1166 extern void in6_purgeprefix(struct ifnet *);
1167 extern void in6_purgeaddrs(struct ifnet *);
1168 extern uint8_t im6s_get_mode(const struct in6_multi *,
1169 const struct ip6_msource *, uint8_t);
1170 extern void im6f_leave(struct in6_mfilter *);
1171 extern void im6f_purge(struct in6_mfilter *);
1172 extern int in6_embedscope(struct in6_addr *, const struct sockaddr_in6 *,
1173 struct inpcb *, struct ifnet **, struct ip6_pktopts *);
1174 extern int in6_recoverscope(struct sockaddr_in6 *, const struct in6_addr *,
1175 struct ifnet *);
1176 extern void in6_aliasreq_64_to_32(struct in6_aliasreq_64 *,
1177 struct in6_aliasreq_32 *);
1178 extern void in6_aliasreq_32_to_64(struct in6_aliasreq_32 *,
1179 struct in6_aliasreq_64 *);
1180 extern void in6_ifaddr_init(void);
1181 extern int in6_inithead(void **, int);
1182 extern void in6_rtqdrain(void);
1183 extern struct radix_node *in6_validate(struct radix_node *);
1184 extern int in6_if2idlen(struct ifnet *);
1185 extern int in6_src_ioctl(u_long, caddr_t);
1186 extern void in6_multihead_lock_exclusive(void);
1187 extern void in6_multihead_lock_shared(void);
1188 extern void in6_multihead_lock_assert(int);
1189 extern void in6_multihead_lock_done(void);
1190
1191 extern void in6_cga_init(void);
1192 extern void in6_cga_node_lock(void);
1193 extern void in6_cga_node_unlock(void);
1194 extern void in6_cga_query(struct in6_cga_nodecfg *);
1195 extern int in6_cga_start(const struct in6_cga_nodecfg *);
1196 extern int in6_cga_stop(void);
1197 extern ssize_t in6_cga_parameters_prepare(void *, size_t,
1198 const struct in6_addr *, u_int8_t, const struct in6_cga_modifier *);
1199 extern int in6_cga_generate(struct in6_cga_prepare *, u_int8_t,
1200 struct in6_addr *);
1201 extern int in6_getconninfo(struct socket *, sae_connid_t, uint32_t *,
1202 uint32_t *, int32_t *, user_addr_t, socklen_t *,
1203 user_addr_t, socklen_t *, uint32_t *, user_addr_t, uint32_t *);
1204 extern void in6_ip6_to_sockaddr(const struct in6_addr *ip6, u_int16_t port,
1205 struct sockaddr_in6 *sin6, u_int32_t maxlen);
1206
1207 #endif /* BSD_KERNEL_PRIVATE */
1208 #endif /* _NETINET6_IN6_VAR_H_ */