1 /*
2  * CDDL HEADER START
3  *
4  * The contents of this file are subject to the terms of the
5  * Common Development and Distribution License (the "License").
6  * You may not use this file except in compliance with the License.
7  *
8  * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
9  * or http://www.opensolaris.org/os/licensing.
10  * See the License for the specific language governing permissions
11  * and limitations under the License.
12  *
13  * When distributing Covered Code, include this CDDL HEADER in each
14  * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
15  * If applicable, add the following below this CDDL HEADER, with the
16  * fields enclosed by brackets "[]" replaced with your own identifying
17  * information: Portions Copyright [yyyy] [name of copyright owner]
18  *
19  * CDDL HEADER END
20  */
21 
22 /*
23  * Copyright 2009 Sun Microsystems, Inc.  All rights reserved.
24  * Use is subject to license terms.
25  */
26 
27 #include <sys/types.h>
28 #include <sys/stream.h>
29 #define	_SUN_TPI_VERSION 2
30 #include <sys/tihdr.h>
31 #include <sys/socket.h>
32 #include <sys/xti_inet.h>
33 #include <sys/systm.h>
34 #include <sys/ddi.h>
35 #include <sys/sunddi.h>
36 #include <sys/kmem.h>
37 #include <sys/strsubr.h>
38 #include <sys/strsun.h>
39 #include <sys/policy.h>
40 
41 #include <inet/common.h>
42 #include <netinet/ip6.h>
43 #include <inet/ip.h>
44 #include <inet/ip_ire.h>
45 #include <inet/ip_if.h>
46 #include <inet/ipclassifier.h>
47 #include <inet/ipsec_impl.h>
48 
49 #include <netinet/in.h>
50 #include <netinet/ip.h>
51 #include <netinet/tcp.h>
52 
53 #include <inet/common.h>
54 #include <inet/ip.h>
55 #include <inet/ip6.h>
56 #include <inet/sctp_itf.h>
57 #include "sctp_impl.h"
58 #include "sctp_asconf.h"
59 #include "sctp_addr.h"
60 
61 static int	sctp_getpeeraddrs(sctp_t *, void *, int *);
62 
63 /*
64  * Copy the standard header into its new location,
65  * lay in the new options and then update the relevant
66  * fields in both sctp_t and the standard header.
67  * Returns 0 on success, errno otherwise.
68  */
69 static int
70 sctp_opt_set_header(sctp_t *sctp, const void *ptr, uint_t len)
71 {
72 	uint8_t *ip_optp;
73 	sctp_hdr_t *new_sctph;
74 
75 	if ((len > SCTP_MAX_IP_OPTIONS_LENGTH) || (len & 0x3))
76 		return (EINVAL);
77 
78 	if (len > IP_MAX_OPT_LENGTH - sctp->sctp_v4label_len)
79 		return (EINVAL);
80 
81 	ip_optp = (uint8_t *)sctp->sctp_ipha + IP_SIMPLE_HDR_LENGTH;
82 
83 	if (sctp->sctp_v4label_len > 0) {
84 		int padlen;
85 		uint8_t opt;
86 
87 		/* convert list termination to no-ops as needed */
88 		padlen = sctp->sctp_v4label_len - ip_optp[IPOPT_OLEN];
89 		ip_optp += ip_optp[IPOPT_OLEN];
90 		opt = len > 0 ? IPOPT_NOP : IPOPT_EOL;
91 		while (--padlen >= 0)
92 			*ip_optp++ = opt;
93 		ASSERT(ip_optp == (uint8_t *)sctp->sctp_ipha +
94 		    IP_SIMPLE_HDR_LENGTH + sctp->sctp_v4label_len);
95 	}
96 
97 	/*
98 	 * Move the existing SCTP header out where it belongs.
99 	 */
100 	new_sctph = (sctp_hdr_t *)(ip_optp + len);
101 	ovbcopy(sctp->sctp_sctph, new_sctph, sizeof (sctp_hdr_t));
102 	sctp->sctp_sctph = new_sctph;
103 
104 	/*
105 	 * Insert the new user-supplied IP options.
106 	 */
107 	if (len > 0)
108 		bcopy(ptr, ip_optp, len);
109 
110 	len += sctp->sctp_v4label_len;
111 	sctp->sctp_ip_hdr_len = len;
112 	sctp->sctp_ipha->ipha_version_and_hdr_length =
113 	    (IP_VERSION << 4) | (len >> 2);
114 	sctp->sctp_hdr_len = len + sizeof (sctp_hdr_t);
115 
116 	if (sctp->sctp_current) {
117 		/*
118 		 * Could be setting options before setting up connection.
119 		 */
120 		sctp_set_ulp_prop(sctp);
121 	}
122 	return (0);
123 }
124 
125 static int
126 sctp_get_status(sctp_t *sctp, void *ptr)
127 {
128 	struct sctp_status *sstat = ptr;
129 	sctp_faddr_t *fp;
130 	struct sockaddr_in *sin;
131 	struct sockaddr_in6 *sin6;
132 	struct sctp_paddrinfo *sp;
133 	mblk_t *meta, *mp;
134 	int i;
135 
136 	sstat->sstat_state = sctp->sctp_state;
137 	sstat->sstat_rwnd = sctp->sctp_frwnd;
138 
139 	sp = &sstat->sstat_primary;
140 	if (!sctp->sctp_primary) {
141 		bzero(sp, sizeof (*sp));
142 		goto noprim;
143 	}
144 	fp = sctp->sctp_primary;
145 
146 	if (fp->isv4) {
147 		sin = (struct sockaddr_in *)&sp->spinfo_address;
148 		sin->sin_family = AF_INET;
149 		sin->sin_port = sctp->sctp_fport;
150 		IN6_V4MAPPED_TO_INADDR(&fp->faddr, &sin->sin_addr);
151 		sp->spinfo_mtu = sctp->sctp_hdr_len;
152 	} else {
153 		sin6 = (struct sockaddr_in6 *)&sp->spinfo_address;
154 		sin6->sin6_family = AF_INET6;
155 		sin6->sin6_port = sctp->sctp_fport;
156 		sin6->sin6_addr = fp->faddr;
157 		sp->spinfo_mtu = sctp->sctp_hdr6_len;
158 	}
159 	sp->spinfo_state = fp->state == SCTP_FADDRS_ALIVE ? SCTP_ACTIVE :
160 	    SCTP_INACTIVE;
161 	sp->spinfo_cwnd = fp->cwnd;
162 	sp->spinfo_srtt = fp->srtt;
163 	sp->spinfo_rto = fp->rto;
164 	sp->spinfo_mtu += fp->sfa_pmss;
165 
166 noprim:
167 	sstat->sstat_unackdata = 0;
168 	sstat->sstat_penddata = 0;
169 	sstat->sstat_instrms = sctp->sctp_num_istr;
170 	sstat->sstat_outstrms = sctp->sctp_num_ostr;
171 	sstat->sstat_fragmentation_point = sctp->sctp_mss -
172 	    sizeof (sctp_data_hdr_t);
173 
174 	/* count unack'd */
175 	for (meta = sctp->sctp_xmit_head; meta; meta = meta->b_next) {
176 		for (mp = meta->b_cont; mp; mp = mp->b_next) {
177 			if (!SCTP_CHUNK_ISSENT(mp)) {
178 				break;
179 			}
180 			if (!SCTP_CHUNK_ISACKED(mp)) {
181 				sstat->sstat_unackdata++;
182 			}
183 		}
184 	}
185 
186 	/*
187 	 * Count penddata chunks. We can only count chunks in SCTP (not
188 	 * data already delivered to socket layer).
189 	 */
190 	if (sctp->sctp_instr != NULL) {
191 		for (i = 0; i < sctp->sctp_num_istr; i++) {
192 			for (meta = sctp->sctp_instr[i].istr_reass;
193 			    meta != NULL; meta = meta->b_next) {
194 				for (mp = meta->b_cont; mp; mp = mp->b_cont) {
195 					if (DB_TYPE(mp) != M_CTL) {
196 						sstat->sstat_penddata++;
197 					}
198 				}
199 			}
200 		}
201 	}
202 	/* Un-Ordered Frag list */
203 	for (meta = sctp->sctp_uo_frags; meta != NULL; meta = meta->b_next)
204 		sstat->sstat_penddata++;
205 
206 	return (sizeof (*sstat));
207 }
208 
209 /*
210  * SCTP_GET_PEER_ADDR_INFO
211  */
212 static int
213 sctp_get_paddrinfo(sctp_t *sctp, void *ptr, socklen_t *optlen)
214 {
215 	struct sctp_paddrinfo	*infop = ptr;
216 	struct sockaddr_in	*sin4;
217 	struct sockaddr_in6	*sin6;
218 	in6_addr_t		faddr;
219 	sctp_faddr_t		*fp;
220 
221 	switch (infop->spinfo_address.ss_family) {
222 	case AF_INET:
223 		sin4 = (struct sockaddr_in *)&infop->spinfo_address;
224 		IN6_INADDR_TO_V4MAPPED(&sin4->sin_addr, &faddr);
225 		break;
226 	case AF_INET6:
227 		sin6 = (struct sockaddr_in6 *)&infop->spinfo_address;
228 		faddr = sin6->sin6_addr;
229 		break;
230 	default:
231 		return (EAFNOSUPPORT);
232 	}
233 
234 	if ((fp = sctp_lookup_faddr(sctp, &faddr)) == NULL)
235 		return (EINVAL);
236 
237 	infop->spinfo_state = (fp->state == SCTP_FADDRS_ALIVE) ? SCTP_ACTIVE :
238 	    SCTP_INACTIVE;
239 	infop->spinfo_cwnd = fp->cwnd;
240 	infop->spinfo_srtt = TICK_TO_MSEC(fp->srtt);
241 	infop->spinfo_rto = TICK_TO_MSEC(fp->rto);
242 	infop->spinfo_mtu = fp->sfa_pmss;
243 
244 	*optlen = sizeof (struct sctp_paddrinfo);
245 	return (0);
246 }
247 
248 /*
249  * SCTP_RTOINFO
250  */
251 static int
252 sctp_get_rtoinfo(sctp_t *sctp, void *ptr)
253 {
254 	struct sctp_rtoinfo *srto = ptr;
255 
256 	srto->srto_initial = TICK_TO_MSEC(sctp->sctp_rto_initial);
257 	srto->srto_max = TICK_TO_MSEC(sctp->sctp_rto_max);
258 	srto->srto_min = TICK_TO_MSEC(sctp->sctp_rto_min);
259 
260 	return (sizeof (*srto));
261 }
262 
263 static int
264 sctp_set_rtoinfo(sctp_t *sctp, const void *invalp, uint_t inlen)
265 {
266 	const struct sctp_rtoinfo *srto;
267 	boolean_t ispriv;
268 	sctp_stack_t	*sctps = sctp->sctp_sctps;
269 
270 	if (inlen < sizeof (*srto)) {
271 		return (EINVAL);
272 	}
273 	srto = invalp;
274 
275 	ispriv = secpolicy_ip_config(sctp->sctp_credp, B_TRUE) == 0;
276 
277 	/*
278 	 * Bounds checking.  Priviledged user can set the RTO initial
279 	 * outside the ndd boundary.
280 	 */
281 	if (srto->srto_initial != 0 &&
282 	    (!ispriv && (srto->srto_initial < sctps->sctps_rto_initialg_low ||
283 	    srto->srto_initial > sctps->sctps_rto_initialg_high))) {
284 		return (EINVAL);
285 	}
286 	if (srto->srto_max != 0 &&
287 	    (!ispriv && (srto->srto_max < sctps->sctps_rto_maxg_low ||
288 	    srto->srto_max > sctps->sctps_rto_maxg_high))) {
289 		return (EINVAL);
290 	}
291 	if (srto->srto_min != 0 &&
292 	    (!ispriv && (srto->srto_min < sctps->sctps_rto_ming_low ||
293 	    srto->srto_min > sctps->sctps_rto_ming_high))) {
294 		return (EINVAL);
295 	}
296 
297 	if (srto->srto_initial != 0) {
298 		sctp->sctp_rto_initial = MSEC_TO_TICK(srto->srto_initial);
299 	}
300 	if (srto->srto_max != 0) {
301 		sctp->sctp_rto_max = MSEC_TO_TICK(srto->srto_max);
302 	}
303 	if (srto->srto_min != 0) {
304 		sctp->sctp_rto_min = MSEC_TO_TICK(srto->srto_min);
305 	}
306 
307 	return (0);
308 }
309 
310 /*
311  * SCTP_ASSOCINFO
312  */
313 static int
314 sctp_get_assocparams(sctp_t *sctp, void *ptr)
315 {
316 	struct sctp_assocparams *sap = ptr;
317 	sctp_faddr_t *fp;
318 	uint16_t i;
319 
320 	sap->sasoc_asocmaxrxt = sctp->sctp_pa_max_rxt;
321 
322 	/*
323 	 * Count the number of peer addresses
324 	 */
325 	for (i = 0, fp = sctp->sctp_faddrs; fp != NULL; fp = fp->next) {
326 		i++;
327 	}
328 	sap->sasoc_number_peer_destinations = i;
329 	sap->sasoc_peer_rwnd = sctp->sctp_frwnd;
330 	sap->sasoc_local_rwnd = sctp->sctp_rwnd;
331 	sap->sasoc_cookie_life = TICK_TO_MSEC(sctp->sctp_cookie_lifetime);
332 
333 	return (sizeof (*sap));
334 }
335 
336 static int
337 sctp_set_assocparams(sctp_t *sctp, const void *invalp, uint_t inlen)
338 {
339 	const struct sctp_assocparams *sap = invalp;
340 	uint32_t sum = 0;
341 	sctp_faddr_t *fp;
342 	sctp_stack_t	*sctps = sctp->sctp_sctps;
343 
344 	if (inlen < sizeof (*sap)) {
345 		return (EINVAL);
346 	}
347 
348 	if (sap->sasoc_asocmaxrxt) {
349 		if (sctp->sctp_faddrs) {
350 			/*
351 			 * Bounds check: as per rfc2960, assoc max retr cannot
352 			 * exceed the sum of all individual path max retr's.
353 			 */
354 			for (fp = sctp->sctp_faddrs; fp; fp = fp->next) {
355 				sum += fp->max_retr;
356 			}
357 			if (sap->sasoc_asocmaxrxt > sum) {
358 				return (EINVAL);
359 			}
360 		}
361 		if (sap->sasoc_asocmaxrxt < sctps->sctps_pa_max_retr_low ||
362 		    sap->sasoc_asocmaxrxt > sctps->sctps_pa_max_retr_high) {
363 			/*
364 			 * Out of bounds.
365 			 */
366 			return (EINVAL);
367 		}
368 	}
369 	if (sap->sasoc_cookie_life != 0 &&
370 	    (sap->sasoc_cookie_life < sctps->sctps_cookie_life_low ||
371 	    sap->sasoc_cookie_life > sctps->sctps_cookie_life_high)) {
372 		return (EINVAL);
373 	}
374 
375 	if (sap->sasoc_asocmaxrxt > 0) {
376 		sctp->sctp_pa_max_rxt = sap->sasoc_asocmaxrxt;
377 	}
378 	if (sap->sasoc_cookie_life > 0) {
379 		sctp->sctp_cookie_lifetime = MSEC_TO_TICK(
380 		    sap->sasoc_cookie_life);
381 	}
382 	return (0);
383 }
384 
385 /*
386  * SCTP_INITMSG
387  */
388 static int
389 sctp_get_initmsg(sctp_t *sctp, void *ptr)
390 {
391 	struct sctp_initmsg *si = ptr;
392 
393 	si->sinit_num_ostreams = sctp->sctp_num_ostr;
394 	si->sinit_max_instreams = sctp->sctp_num_istr;
395 	si->sinit_max_attempts = sctp->sctp_max_init_rxt;
396 	si->sinit_max_init_timeo = TICK_TO_MSEC(sctp->sctp_init_rto_max);
397 
398 	return (sizeof (*si));
399 }
400 
401 static int
402 sctp_set_initmsg(sctp_t *sctp, const void *invalp, uint_t inlen)
403 {
404 	const struct sctp_initmsg *si = invalp;
405 	sctp_stack_t	*sctps = sctp->sctp_sctps;
406 
407 	if (sctp->sctp_state > SCTPS_LISTEN) {
408 		return (EINVAL);
409 	}
410 	if (inlen < sizeof (*si)) {
411 		return (EINVAL);
412 	}
413 	if (si->sinit_num_ostreams != 0 &&
414 	    (si->sinit_num_ostreams < sctps->sctps_initial_out_streams_low ||
415 	    si->sinit_num_ostreams >
416 	    sctps->sctps_initial_out_streams_high)) {
417 		/*
418 		 * Out of bounds.
419 		 */
420 		return (EINVAL);
421 	}
422 	if (si->sinit_max_instreams != 0 &&
423 	    (si->sinit_max_instreams < sctps->sctps_max_in_streams_low ||
424 	    si->sinit_max_instreams > sctps->sctps_max_in_streams_high)) {
425 		return (EINVAL);
426 	}
427 	if (si->sinit_max_attempts != 0 &&
428 	    (si->sinit_max_attempts < sctps->sctps_max_init_retr_low ||
429 	    si->sinit_max_attempts > sctps->sctps_max_init_retr_high)) {
430 		return (EINVAL);
431 	}
432 	if (si->sinit_max_init_timeo != 0 &&
433 	    (secpolicy_ip_config(sctp->sctp_credp, B_TRUE) != 0 &&
434 	    (si->sinit_max_init_timeo < sctps->sctps_rto_maxg_low ||
435 	    si->sinit_max_init_timeo > sctps->sctps_rto_maxg_high))) {
436 		return (EINVAL);
437 	}
438 	if (si->sinit_num_ostreams != 0)
439 		sctp->sctp_num_ostr = si->sinit_num_ostreams;
440 
441 	if (si->sinit_max_instreams != 0)
442 		sctp->sctp_num_istr = si->sinit_max_instreams;
443 
444 	if (si->sinit_max_attempts != 0)
445 		sctp->sctp_max_init_rxt = si->sinit_max_attempts;
446 
447 	if (si->sinit_max_init_timeo != 0) {
448 		sctp->sctp_init_rto_max =
449 		    MSEC_TO_TICK(si->sinit_max_init_timeo);
450 	}
451 	return (0);
452 }
453 
454 /*
455  * SCTP_PEER_ADDR_PARAMS
456  */
457 static int
458 sctp_find_peer_fp(sctp_t *sctp, const struct sockaddr_storage *ss,
459     sctp_faddr_t **fpp)
460 {
461 	struct sockaddr_in *sin;
462 	struct sockaddr_in6 *sin6;
463 	in6_addr_t addr;
464 
465 	if (ss->ss_family == AF_INET) {
466 		sin = (struct sockaddr_in *)ss;
467 		IN6_IPADDR_TO_V4MAPPED(sin->sin_addr.s_addr, &addr);
468 	} else if (ss->ss_family == AF_INET6) {
469 		sin6 = (struct sockaddr_in6 *)ss;
470 		addr = sin6->sin6_addr;
471 	} else if (ss->ss_family) {
472 		return (EAFNOSUPPORT);
473 	}
474 
475 	if (!ss->ss_family ||
476 	    SCTP_IS_ADDR_UNSPEC(IN6_IS_ADDR_V4MAPPED(&addr), addr)) {
477 		*fpp = NULL;
478 	} else {
479 		*fpp = sctp_lookup_faddr(sctp, &addr);
480 		if (*fpp == NULL) {
481 			return (EINVAL);
482 		}
483 	}
484 	return (0);
485 }
486 
487 static int
488 sctp_get_peer_addr_params(sctp_t *sctp, void *ptr)
489 {
490 	struct sctp_paddrparams *spp = ptr;
491 	sctp_faddr_t *fp;
492 	int retval;
493 
494 	retval = sctp_find_peer_fp(sctp, &spp->spp_address, &fp);
495 	if (retval) {
496 		return (retval);
497 	}
498 	if (fp) {
499 		spp->spp_hbinterval = TICK_TO_MSEC(fp->hb_interval);
500 		spp->spp_pathmaxrxt = fp->max_retr;
501 	} else {
502 		spp->spp_hbinterval = TICK_TO_MSEC(sctp->sctp_hb_interval);
503 		spp->spp_pathmaxrxt = sctp->sctp_pp_max_rxt;
504 	}
505 	return (sizeof (*spp));
506 }
507 
508 static int
509 sctp_set_peer_addr_params(sctp_t *sctp, const void *invalp, uint_t inlen)
510 {
511 	const struct sctp_paddrparams *spp = invalp;
512 	sctp_faddr_t *fp, *fp2;
513 	int retval;
514 	uint32_t sum = 0;
515 	int64_t now;
516 	sctp_stack_t	*sctps = sctp->sctp_sctps;
517 
518 	if (inlen < sizeof (*spp)) {
519 		return (EINVAL);
520 	}
521 
522 	retval = sctp_find_peer_fp(sctp, &spp->spp_address, &fp);
523 	if (retval != 0) {
524 		return (retval);
525 	}
526 
527 	if (spp->spp_hbinterval && spp->spp_hbinterval != UINT32_MAX &&
528 	    (spp->spp_hbinterval < sctps->sctps_heartbeat_interval_low ||
529 	    spp->spp_hbinterval > sctps->sctps_heartbeat_interval_high)) {
530 		return (EINVAL);
531 	}
532 	if (spp->spp_pathmaxrxt &&
533 	    (spp->spp_pathmaxrxt < sctps->sctps_pp_max_retr_low ||
534 	    spp->spp_pathmaxrxt > sctps->sctps_pp_max_retr_high)) {
535 		return (EINVAL);
536 	}
537 	if (spp->spp_pathmaxrxt && sctp->sctp_faddrs) {
538 		for (fp2 = sctp->sctp_faddrs; fp2; fp2 = fp2->next) {
539 			if (!fp || fp2 == fp) {
540 				sum += spp->spp_pathmaxrxt;
541 			} else {
542 				sum += fp2->max_retr;
543 			}
544 		}
545 		if (sctp->sctp_pa_max_rxt > sum) {
546 			return (EINVAL);
547 		}
548 	}
549 
550 	now = lbolt64;
551 	if (fp != NULL) {
552 		if (spp->spp_hbinterval == UINT32_MAX) {
553 			/*
554 			 * Send heartbeat immediatelly, don't modify the
555 			 * current setting.
556 			 */
557 			sctp_send_heartbeat(sctp, fp);
558 		} else {
559 			fp->hb_interval = MSEC_TO_TICK(spp->spp_hbinterval);
560 			fp->hb_expiry = now + SET_HB_INTVL(fp);
561 			/*
562 			 * Restart the heartbeat timer using the new intrvl.
563 			 * We need to call sctp_heartbeat_timer() to set
564 			 * the earliest heartbeat expiry time.
565 			 */
566 			sctp_heartbeat_timer(sctp);
567 		}
568 		if (spp->spp_pathmaxrxt) {
569 			fp->max_retr = spp->spp_pathmaxrxt;
570 		}
571 	} else {
572 		for (fp2 = sctp->sctp_faddrs; fp2 != NULL; fp2 = fp2->next) {
573 			if (spp->spp_hbinterval == UINT32_MAX) {
574 				/*
575 				 * Send heartbeat immediatelly, don't modify
576 				 * the current setting.
577 				 */
578 				sctp_send_heartbeat(sctp, fp2);
579 			} else {
580 				fp2->hb_interval = MSEC_TO_TICK(
581 				    spp->spp_hbinterval);
582 				fp2->hb_expiry = now + SET_HB_INTVL(fp2);
583 			}
584 			if (spp->spp_pathmaxrxt) {
585 				fp2->max_retr = spp->spp_pathmaxrxt;
586 			}
587 		}
588 		if (spp->spp_hbinterval != UINT32_MAX) {
589 			sctp->sctp_hb_interval = MSEC_TO_TICK(
590 			    spp->spp_hbinterval);
591 			/* Restart the heartbeat timer using the new intrvl. */
592 			sctp_timer(sctp, sctp->sctp_heartbeat_mp,
593 			    sctp->sctp_hb_interval);
594 		}
595 		if (spp->spp_pathmaxrxt) {
596 			sctp->sctp_pp_max_rxt = spp->spp_pathmaxrxt;
597 		}
598 	}
599 	return (0);
600 }
601 
602 /*
603  * SCTP_DEFAULT_SEND_PARAM
604  */
605 static int
606 sctp_get_def_send_params(sctp_t *sctp, void *ptr)
607 {
608 	struct sctp_sndrcvinfo *sinfo = ptr;
609 
610 	sinfo->sinfo_stream = sctp->sctp_def_stream;
611 	sinfo->sinfo_ssn = 0;
612 	sinfo->sinfo_flags = sctp->sctp_def_flags;
613 	sinfo->sinfo_ppid = sctp->sctp_def_ppid;
614 	sinfo->sinfo_context = sctp->sctp_def_context;
615 	sinfo->sinfo_timetolive = sctp->sctp_def_timetolive;
616 	sinfo->sinfo_tsn = 0;
617 	sinfo->sinfo_cumtsn = 0;
618 
619 	return (sizeof (*sinfo));
620 }
621 
622 static int
623 sctp_set_def_send_params(sctp_t *sctp, const void *invalp, uint_t inlen)
624 {
625 	const struct sctp_sndrcvinfo *sinfo = invalp;
626 
627 	if (inlen < sizeof (*sinfo)) {
628 		return (EINVAL);
629 	}
630 	if (sinfo->sinfo_stream >= sctp->sctp_num_ostr) {
631 		return (EINVAL);
632 	}
633 
634 	sctp->sctp_def_stream = sinfo->sinfo_stream;
635 	sctp->sctp_def_flags = sinfo->sinfo_flags;
636 	sctp->sctp_def_ppid = sinfo->sinfo_ppid;
637 	sctp->sctp_def_context = sinfo->sinfo_context;
638 	sctp->sctp_def_timetolive = sinfo->sinfo_timetolive;
639 
640 	return (0);
641 }
642 
643 static int
644 sctp_set_prim(sctp_t *sctp, const void *invalp, uint_t inlen)
645 {
646 	const struct	sctp_setpeerprim *pp = invalp;
647 	int		retval;
648 	sctp_faddr_t	*fp;
649 
650 	if (inlen < sizeof (*pp)) {
651 		return (EINVAL);
652 	}
653 
654 	retval = sctp_find_peer_fp(sctp, &pp->sspp_addr, &fp);
655 	if (retval)
656 		return (retval);
657 
658 	if (fp == NULL)
659 		return (EINVAL);
660 	if (fp == sctp->sctp_primary)
661 		return (0);
662 	sctp->sctp_primary = fp;
663 
664 	/* Only switch current if fp is alive */
665 	if (fp->state != SCTP_FADDRS_ALIVE || fp == sctp->sctp_current) {
666 		return (0);
667 	}
668 	sctp_set_faddr_current(sctp, fp);
669 
670 	return (0);
671 }
672 
673 /* Handy on off switch for socket option processing. */
674 #define	ONOFF(x)	((x) == 0 ? 0 : 1)
675 
676 /*
677  * SCTP routine to get the values of options.
678  */
679 int
680 sctp_get_opt(sctp_t *sctp, int level, int name, void *ptr, socklen_t *optlen)
681 {
682 	int	*i1 = (int *)ptr;
683 	int	retval = 0;
684 	int	buflen = *optlen;
685 	conn_t		*connp = sctp->sctp_connp;
686 	ip6_pkt_t	*ipp = &sctp->sctp_sticky_ipp;
687 
688 	/* In most cases, the return buffer is just an int */
689 	*optlen = sizeof (int32_t);
690 
691 	RUN_SCTP(sctp);
692 
693 	if (connp->conn_state_flags & CONN_CLOSING) {
694 		WAKE_SCTP(sctp);
695 		return (EINVAL);
696 	}
697 
698 	switch (level) {
699 	case SOL_SOCKET:
700 		switch (name) {
701 		case SO_LINGER:	{
702 			struct linger *lgr = (struct linger *)ptr;
703 
704 			lgr->l_onoff = sctp->sctp_linger ? SO_LINGER : 0;
705 			lgr->l_linger = TICK_TO_MSEC(sctp->sctp_lingertime);
706 			*optlen = sizeof (struct linger);
707 			break;
708 		}
709 		case SO_DEBUG:
710 			*i1 = sctp->sctp_debug ? SO_DEBUG : 0;
711 			break;
712 		case SO_DONTROUTE:
713 			*i1 = connp->conn_dontroute ? SO_DONTROUTE : 0;
714 			break;
715 		case SO_USELOOPBACK:
716 			*i1 = connp->conn_loopback ? SO_USELOOPBACK : 0;
717 			break;
718 		case SO_BROADCAST:
719 			*i1 = connp->conn_broadcast ? SO_BROADCAST : 0;
720 			break;
721 		case SO_REUSEADDR:
722 			*i1 = connp->conn_reuseaddr ? SO_REUSEADDR : 0;
723 			break;
724 		case SO_DGRAM_ERRIND:
725 			*i1 = sctp->sctp_dgram_errind ? SO_DGRAM_ERRIND : 0;
726 			break;
727 		case SO_SNDBUF:
728 			*i1 = sctp->sctp_xmit_hiwater;
729 			break;
730 		case SO_RCVBUF:
731 			*i1 = sctp->sctp_rwnd;
732 			break;
733 		case SO_ALLZONES:
734 			*i1 = connp->conn_allzones;
735 			break;
736 		case SO_MAC_EXEMPT:
737 			*i1 = connp->conn_mac_exempt;
738 			break;
739 		case SO_PROTOTYPE:
740 			*i1 = IPPROTO_SCTP;
741 			break;
742 		case SO_DOMAIN:
743 			*i1 = sctp->sctp_family;
744 			break;
745 		default:
746 			retval = ENOPROTOOPT;
747 			break;
748 		}
749 		break;
750 
751 	case IPPROTO_SCTP:
752 		switch (name) {
753 		case SCTP_RTOINFO:
754 			if (buflen < sizeof (struct sctp_rtoinfo)) {
755 				retval = EINVAL;
756 				break;
757 			}
758 			*optlen = sctp_get_rtoinfo(sctp, ptr);
759 			break;
760 		case SCTP_ASSOCINFO:
761 			if (buflen < sizeof (struct sctp_assocparams)) {
762 				retval = EINVAL;
763 				break;
764 			}
765 			*optlen = sctp_get_assocparams(sctp, ptr);
766 			break;
767 		case SCTP_INITMSG:
768 			if (buflen < sizeof (struct sctp_initmsg)) {
769 				retval = EINVAL;
770 				break;
771 			}
772 			*optlen = sctp_get_initmsg(sctp, ptr);
773 			break;
774 		case SCTP_NODELAY:
775 			*i1 = sctp->sctp_ndelay;
776 			break;
777 		case SCTP_AUTOCLOSE:
778 			*i1 = TICK_TO_SEC(sctp->sctp_autoclose);
779 			break;
780 		case SCTP_ADAPTATION_LAYER:
781 			if (buflen < sizeof (struct sctp_setadaptation)) {
782 				retval = EINVAL;
783 				break;
784 			}
785 			((struct sctp_setadaptation *)ptr)->ssb_adaptation_ind =
786 			    sctp->sctp_tx_adaptation_code;
787 			break;
788 		case SCTP_PEER_ADDR_PARAMS:
789 			if (buflen < sizeof (struct sctp_paddrparams)) {
790 				retval = EINVAL;
791 				break;
792 			}
793 			*optlen = sctp_get_peer_addr_params(sctp, ptr);
794 			break;
795 		case SCTP_DEFAULT_SEND_PARAM:
796 			if (buflen < sizeof (struct sctp_sndrcvinfo)) {
797 				retval = EINVAL;
798 				break;
799 			}
800 			*optlen = sctp_get_def_send_params(sctp, ptr);
801 			break;
802 		case SCTP_EVENTS: {
803 			struct sctp_event_subscribe *ev;
804 
805 			if (buflen < sizeof (struct sctp_event_subscribe)) {
806 				retval = EINVAL;
807 				break;
808 			}
809 			ev = (struct sctp_event_subscribe *)ptr;
810 			ev->sctp_data_io_event =
811 			    ONOFF(sctp->sctp_recvsndrcvinfo);
812 			ev->sctp_association_event =
813 			    ONOFF(sctp->sctp_recvassocevnt);
814 			ev->sctp_address_event =
815 			    ONOFF(sctp->sctp_recvpathevnt);
816 			ev->sctp_send_failure_event =
817 			    ONOFF(sctp->sctp_recvsendfailevnt);
818 			ev->sctp_peer_error_event =
819 			    ONOFF(sctp->sctp_recvpeererr);
820 			ev->sctp_shutdown_event =
821 			    ONOFF(sctp->sctp_recvshutdownevnt);
822 			ev->sctp_partial_delivery_event =
823 			    ONOFF(sctp->sctp_recvpdevnt);
824 			ev->sctp_adaptation_layer_event =
825 			    ONOFF(sctp->sctp_recvalevnt);
826 			*optlen = sizeof (struct sctp_event_subscribe);
827 			break;
828 		}
829 		case SCTP_STATUS:
830 			if (buflen < sizeof (struct sctp_status)) {
831 				retval = EINVAL;
832 				break;
833 			}
834 			*optlen = sctp_get_status(sctp, ptr);
835 			break;
836 		case SCTP_GET_PEER_ADDR_INFO:
837 			if (buflen < sizeof (struct sctp_paddrinfo)) {
838 				retval = EINVAL;
839 				break;
840 			}
841 			retval = sctp_get_paddrinfo(sctp, ptr, optlen);
842 			break;
843 		case SCTP_GET_NLADDRS:
844 			*(int32_t *)ptr = sctp->sctp_nsaddrs;
845 			break;
846 		case SCTP_GET_LADDRS: {
847 			int addr_cnt;
848 			int addr_size;
849 
850 			if (sctp->sctp_family == AF_INET)
851 				addr_size = sizeof (struct sockaddr_in);
852 			else
853 				addr_size = sizeof (struct sockaddr_in6);
854 			addr_cnt = buflen / addr_size;
855 			retval = sctp_getmyaddrs(sctp, ptr, &addr_cnt);
856 			if (retval == 0)
857 				*optlen = addr_cnt * addr_size;
858 			break;
859 		}
860 		case SCTP_GET_NPADDRS: {
861 			int i;
862 			sctp_faddr_t *fp;
863 
864 			for (i = 0, fp = sctp->sctp_faddrs; fp != NULL;
865 			    i++, fp = fp->next)
866 				;
867 			*(int32_t *)ptr = i;
868 			break;
869 		}
870 		case SCTP_GET_PADDRS: {
871 			int addr_cnt;
872 			int addr_size;
873 
874 			if (sctp->sctp_family == AF_INET)
875 				addr_size = sizeof (struct sockaddr_in);
876 			else
877 				addr_size = sizeof (struct sockaddr_in6);
878 			addr_cnt = buflen / addr_size;
879 			retval = sctp_getpeeraddrs(sctp, ptr, &addr_cnt);
880 			if (retval == 0)
881 				*optlen = addr_cnt * addr_size;
882 			break;
883 		}
884 		case SCTP_PRSCTP:
885 			*i1 = sctp->sctp_prsctp_aware ? 1 : 0;
886 			break;
887 
888 		case SCTP_GET_ASSOC_STATS: {
889 			sctp_assoc_stats_t *sas;
890 
891 			if (buflen < sizeof (sctp_assoc_stats_t)) {
892 				retval = EINVAL;
893 				break;
894 			}
895 
896 			sas = (sctp_assoc_stats_t *)ptr;
897 
898 			/*
899 			 * Copy the current stats to the stats struct.
900 			 * For stats which can be reset by snmp users
901 			 * add the cumulative and current stats for
902 			 * the raw totals to output to the user.
903 			 */
904 			sas->sas_gapcnt = sctp->sctp_gapcnt;
905 			sas->sas_outseqtsns = sctp->sctp_outseqtsns;
906 			sas->sas_osacks = sctp->sctp_osacks;
907 			sas->sas_isacks = sctp->sctp_isacks;
908 			sas->sas_idupchunks = sctp->sctp_idupchunks;
909 			sas->sas_rtxchunks =  sctp->sctp_rxtchunks +
910 			    sctp->sctp_cum_rxtchunks;
911 			sas->sas_octrlchunks = sctp->sctp_obchunks +
912 			    sctp->sctp_cum_obchunks;
913 			sas->sas_ictrlchunks = sctp->sctp_ibchunks +
914 			    sctp->sctp_cum_ibchunks;
915 			sas->sas_oodchunks = sctp->sctp_odchunks +
916 			    sctp->sctp_cum_odchunks;
917 			sas->sas_iodchunks = sctp->sctp_idchunks +
918 			    sctp->sctp_cum_idchunks;
919 			sas->sas_ouodchunks = sctp->sctp_oudchunks +
920 			    sctp->sctp_cum_oudchunks;
921 			sas->sas_iuodchunks = sctp->sctp_iudchunks +
922 			    sctp->sctp_cum_iudchunks;
923 
924 			/*
925 			 * Copy out the maximum observed RTO since the
926 			 * time this data was last requested
927 			 */
928 			if (sctp->sctp_maxrto == 0) {
929 				/* unchanged during obervation period */
930 				sas->sas_maxrto = sctp->sctp_prev_maxrto;
931 			} else {
932 				/* record new period maximum */
933 				sas->sas_maxrto = sctp->sctp_maxrto;
934 			}
935 			/* Record the value sent to the user this period */
936 			sctp->sctp_prev_maxrto = sas->sas_maxrto;
937 
938 			/* Mark beginning of a new observation period */
939 			sctp->sctp_maxrto = 0;
940 
941 			*optlen = sizeof (sctp_assoc_stats_t);
942 			break;
943 		}
944 		case SCTP_I_WANT_MAPPED_V4_ADDR:
945 		case SCTP_MAXSEG:
946 		case SCTP_DISABLE_FRAGMENTS:
947 			/* Not yet supported. */
948 		default:
949 			retval = ENOPROTOOPT;
950 			break;
951 		}
952 		break;
953 
954 	case IPPROTO_IP:
955 		if (sctp->sctp_family != AF_INET) {
956 			retval = EINVAL;
957 			break;
958 		}
959 		switch (name) {
960 		case IP_OPTIONS:
961 		case T_IP_OPTIONS: {
962 			/*
963 			 * This is compatible with BSD in that in only return
964 			 * the reverse source route with the final destination
965 			 * as the last entry. The first 4 bytes of the option
966 			 * will contain the final destination. Allocate a
967 			 * buffer large enough to hold all the options, we
968 			 * add IP_ADDR_LEN to SCTP_MAX_IP_OPTIONS_LENGTH since
969 			 * ip_opt_get_user() adds the final destination
970 			 * at the start.
971 			 */
972 			char	*opt_ptr;
973 			int	opt_len;
974 			uchar_t	obuf[SCTP_MAX_IP_OPTIONS_LENGTH + IP_ADDR_LEN];
975 
976 			opt_ptr = (char *)sctp->sctp_ipha +
977 			    IP_SIMPLE_HDR_LENGTH;
978 			opt_len = (char *)sctp->sctp_sctph - opt_ptr;
979 			/* Caller ensures enough space */
980 			if (opt_len > 0) {
981 				/*
982 				 * TODO: Do we have to handle getsockopt on an
983 				 * initiator as well?
984 				 */
985 				opt_len = ip_opt_get_user(sctp->sctp_ipha,
986 				    obuf);
987 				ASSERT(opt_len <= sizeof (obuf));
988 			} else {
989 				opt_len = 0;
990 			}
991 			if (buflen < opt_len) {
992 				/* Silently truncate */
993 				opt_len = buflen;
994 			}
995 			*optlen = opt_len;
996 			bcopy(obuf, ptr, opt_len);
997 			break;
998 		}
999 		case IP_TOS:
1000 		case T_IP_TOS:
1001 			*i1 = (int)sctp->sctp_ipha->ipha_type_of_service;
1002 			break;
1003 		case IP_TTL:
1004 			*i1 = (int)sctp->sctp_ipha->ipha_ttl;
1005 			break;
1006 		case IP_NEXTHOP:
1007 			if (connp->conn_nexthop_set) {
1008 				*(ipaddr_t *)ptr = connp->conn_nexthop_v4;
1009 				*optlen = sizeof (ipaddr_t);
1010 			} else {
1011 				*optlen = 0;
1012 			}
1013 			break;
1014 		default:
1015 			retval = ENOPROTOOPT;
1016 			break;
1017 		}
1018 		break;
1019 	case IPPROTO_IPV6:
1020 		if (sctp->sctp_family != AF_INET6) {
1021 			retval = EINVAL;
1022 			break;
1023 		}
1024 		switch (name) {
1025 		case IPV6_UNICAST_HOPS:
1026 			*i1 = (unsigned int) sctp->sctp_ip6h->ip6_hops;
1027 			break;	/* goto sizeof (int) option return */
1028 		case IPV6_RECVPKTINFO:
1029 			if (sctp->sctp_ipv6_recvancillary &
1030 			    SCTP_IPV6_RECVPKTINFO) {
1031 				*i1 = 1;
1032 			} else {
1033 				*i1 = 0;
1034 			}
1035 			break;	/* goto sizeof (int) option return */
1036 		case IPV6_RECVHOPLIMIT:
1037 			if (sctp->sctp_ipv6_recvancillary &
1038 			    SCTP_IPV6_RECVHOPLIMIT) {
1039 				*i1 = 1;
1040 			} else {
1041 				*i1 = 0;
1042 			}
1043 			break;	/* goto sizeof (int) option return */
1044 		case IPV6_RECVHOPOPTS:
1045 			if (sctp->sctp_ipv6_recvancillary &
1046 			    SCTP_IPV6_RECVHOPOPTS) {
1047 				*i1 = 1;
1048 			} else {
1049 				*i1 = 0;
1050 			}
1051 			break;	/* goto sizeof (int) option return */
1052 		case IPV6_RECVDSTOPTS:
1053 			if (sctp->sctp_ipv6_recvancillary &
1054 			    SCTP_IPV6_RECVDSTOPTS) {
1055 				*i1 = 1;
1056 			} else {
1057 				*i1 = 0;
1058 			}
1059 			break;	/* goto sizeof (int) option return */
1060 		case IPV6_RECVRTHDR:
1061 			if (sctp->sctp_ipv6_recvancillary &
1062 			    SCTP_IPV6_RECVRTHDR) {
1063 				*i1 = 1;
1064 			} else {
1065 				*i1 = 0;
1066 			}
1067 			break;	/* goto sizeof (int) option return */
1068 		case IPV6_RECVRTHDRDSTOPTS:
1069 			if (sctp->sctp_ipv6_recvancillary &
1070 			    SCTP_IPV6_RECVRTDSTOPTS) {
1071 				*i1 = 1;
1072 			} else {
1073 				*i1 = 0;
1074 			}
1075 			break;	/* goto sizeof (int) option return */
1076 		case IPV6_PKTINFO: {
1077 			struct in6_pktinfo *pkti;
1078 
1079 			if (buflen < sizeof (struct in6_pktinfo)) {
1080 				retval = EINVAL;
1081 				break;
1082 			}
1083 			pkti = (struct in6_pktinfo *)ptr;
1084 			if (ipp->ipp_fields & IPPF_IFINDEX)
1085 				pkti->ipi6_ifindex = ipp->ipp_ifindex;
1086 			else
1087 				pkti->ipi6_ifindex = 0;
1088 			if (ipp->ipp_fields & IPPF_ADDR)
1089 				pkti->ipi6_addr = ipp->ipp_addr;
1090 			else
1091 				pkti->ipi6_addr = ipv6_all_zeros;
1092 			*optlen = sizeof (struct in6_pktinfo);
1093 			break;
1094 		}
1095 		case IPV6_NEXTHOP: {
1096 			sin6_t *sin6;
1097 
1098 			if (buflen < sizeof (sin6_t)) {
1099 				retval = EINVAL;
1100 				break;
1101 			}
1102 			sin6 = (sin6_t *)ptr;
1103 			if (!(ipp->ipp_fields & IPPF_NEXTHOP))
1104 				break;
1105 			*sin6 = sctp_sin6_null;
1106 			sin6->sin6_family = AF_INET6;
1107 			sin6->sin6_addr = ipp->ipp_nexthop;
1108 			*optlen = sizeof (sin6_t);
1109 			break;
1110 		}
1111 		case IPV6_HOPOPTS: {
1112 			int len;
1113 
1114 			if (!(ipp->ipp_fields & IPPF_HOPOPTS))
1115 				break;
1116 			len = ipp->ipp_hopoptslen - sctp->sctp_v6label_len;
1117 			if (len <= 0)
1118 				break;
1119 			if (buflen < len) {
1120 				retval = EINVAL;
1121 				break;
1122 			}
1123 			bcopy((char *)ipp->ipp_hopopts +
1124 			    sctp->sctp_v6label_len, ptr, len);
1125 			if (sctp->sctp_v6label_len > 0) {
1126 				char *cptr = ptr;
1127 
1128 				/*
1129 				 * If the label length is greater than zero,
1130 				 * then we need to hide the label from user.
1131 				 * Make it look as though a normal Hop-By-Hop
1132 				 * Options Header is present here.
1133 				 */
1134 				cptr[0] = ((char *)ipp->ipp_hopopts)[0];
1135 				cptr[1] = (len + 7) / 8 - 1;
1136 			}
1137 			*optlen = len;
1138 			break;
1139 		}
1140 		case IPV6_RTHDRDSTOPTS:
1141 			if (!(ipp->ipp_fields & IPPF_RTDSTOPTS))
1142 				break;
1143 			if (buflen < ipp->ipp_rtdstoptslen) {
1144 				retval = EINVAL;
1145 				break;
1146 			}
1147 			bcopy(ipp->ipp_rtdstopts, ptr, ipp->ipp_rtdstoptslen);
1148 			*optlen  = ipp->ipp_rtdstoptslen;
1149 			break;
1150 		case IPV6_RTHDR:
1151 			if (!(ipp->ipp_fields & IPPF_RTHDR))
1152 				break;
1153 			if (buflen < ipp->ipp_rthdrlen) {
1154 				retval = EINVAL;
1155 				break;
1156 			}
1157 			bcopy(ipp->ipp_rthdr, ptr, ipp->ipp_rthdrlen);
1158 			*optlen = ipp->ipp_rthdrlen;
1159 			break;
1160 		case IPV6_DSTOPTS:
1161 			if (!(ipp->ipp_fields & IPPF_DSTOPTS))
1162 				break;
1163 			if (buflen < ipp->ipp_dstoptslen) {
1164 				retval = EINVAL;
1165 				break;
1166 			}
1167 			bcopy(ipp->ipp_dstopts, ptr, ipp->ipp_dstoptslen);
1168 			*optlen  = ipp->ipp_dstoptslen;
1169 			break;
1170 		case IPV6_V6ONLY:
1171 			*i1 = sctp->sctp_connp->conn_ipv6_v6only;
1172 			break;
1173 		default:
1174 			retval = ENOPROTOOPT;
1175 			break;
1176 		}
1177 		break;
1178 
1179 	default:
1180 		retval = ENOPROTOOPT;
1181 		break;
1182 	}
1183 	WAKE_SCTP(sctp);
1184 	return (retval);
1185 }
1186 
1187 int
1188 sctp_set_opt(sctp_t *sctp, int level, int name, const void *invalp,
1189     socklen_t inlen)
1190 {
1191 	ip6_pkt_t	*ipp = &sctp->sctp_sticky_ipp;
1192 	int		*i1 = (int *)invalp;
1193 	boolean_t	onoff;
1194 	int		retval = 0, addrcnt;
1195 	conn_t		*connp = sctp->sctp_connp;
1196 	sctp_stack_t	*sctps = sctp->sctp_sctps;
1197 
1198 	/* In all cases, the size of the option must be bigger than int */
1199 	if (inlen >= sizeof (int32_t)) {
1200 		onoff = ONOFF(*i1);
1201 	}
1202 	retval = 0;
1203 
1204 	RUN_SCTP(sctp);
1205 
1206 	if (connp->conn_state_flags & CONN_CLOSING) {
1207 		WAKE_SCTP(sctp);
1208 		return (EINVAL);
1209 	}
1210 
1211 	switch (level) {
1212 	case SOL_SOCKET:
1213 		if (inlen < sizeof (int32_t)) {
1214 			retval = EINVAL;
1215 			break;
1216 		}
1217 		switch (name) {
1218 		case SO_LINGER: {
1219 			struct linger *lgr;
1220 
1221 			if (inlen != sizeof (struct linger)) {
1222 				retval = EINVAL;
1223 				break;
1224 			}
1225 			lgr = (struct linger *)invalp;
1226 			if (lgr->l_onoff != 0) {
1227 				sctp->sctp_linger = 1;
1228 				sctp->sctp_lingertime = MSEC_TO_TICK(
1229 				    lgr->l_linger);
1230 			} else {
1231 				sctp->sctp_linger = 0;
1232 				sctp->sctp_lingertime = 0;
1233 			}
1234 			break;
1235 		}
1236 		case SO_DEBUG:
1237 			sctp->sctp_debug = onoff;
1238 			break;
1239 		case SO_KEEPALIVE:
1240 			break;
1241 		case SO_DONTROUTE:
1242 			/*
1243 			 * SO_DONTROUTE, SO_USELOOPBACK and SO_BROADCAST are
1244 			 * only of interest to IP.
1245 			 */
1246 			connp->conn_dontroute = onoff;
1247 			break;
1248 		case SO_USELOOPBACK:
1249 			connp->conn_loopback = onoff;
1250 			break;
1251 		case SO_BROADCAST:
1252 			connp->conn_broadcast = onoff;
1253 			break;
1254 		case SO_REUSEADDR:
1255 			connp->conn_reuseaddr = onoff;
1256 			break;
1257 		case SO_DGRAM_ERRIND:
1258 			sctp->sctp_dgram_errind = onoff;
1259 			break;
1260 		case SO_SNDBUF:
1261 			if (*i1 > sctps->sctps_max_buf) {
1262 				retval = ENOBUFS;
1263 				break;
1264 			}
1265 			if (*i1 < 0) {
1266 				retval = EINVAL;
1267 				break;
1268 			}
1269 			sctp->sctp_xmit_hiwater = *i1;
1270 			if (sctps->sctps_snd_lowat_fraction != 0)
1271 				sctp->sctp_xmit_lowater =
1272 				    sctp->sctp_xmit_hiwater /
1273 				    sctps->sctps_snd_lowat_fraction;
1274 			break;
1275 		case SO_RCVBUF:
1276 			if (*i1 > sctps->sctps_max_buf) {
1277 				retval = ENOBUFS;
1278 				break;
1279 			}
1280 			/* Silently ignore zero */
1281 			if (*i1 != 0) {
1282 				struct sock_proto_props sopp;
1283 
1284 				/*
1285 				 * Insist on a receive window that is at least
1286 				 * sctp_recv_hiwat_minmss * MSS (default 4*MSS)
1287 				 * to avoid funny interactions of Nagle
1288 				 * algorithm, SWS avoidance and delayed
1289 				 * acknowledgement.
1290 				 */
1291 				*i1 = MAX(*i1,
1292 				    sctps->sctps_recv_hiwat_minmss *
1293 				    sctp->sctp_mss);
1294 				sctp->sctp_rwnd = *i1;
1295 				sctp->sctp_irwnd = sctp->sctp_rwnd;
1296 				sctp->sctp_pd_point = sctp->sctp_rwnd;
1297 
1298 				sopp.sopp_flags = SOCKOPT_RCVHIWAT;
1299 				sopp.sopp_rxhiwat = *i1;
1300 				sctp->sctp_ulp_prop(sctp->sctp_ulpd, &sopp);
1301 
1302 			}
1303 			/*
1304 			 * XXX should we return the rwnd here
1305 			 * and sctp_opt_get ?
1306 			 */
1307 			break;
1308 		case SO_ALLZONES:
1309 			if (secpolicy_ip(sctp->sctp_credp, OP_CONFIG,
1310 			    B_TRUE)) {
1311 				retval = EACCES;
1312 				break;
1313 			}
1314 			if (sctp->sctp_state >= SCTPS_BOUND) {
1315 				retval = EINVAL;
1316 				break;
1317 			}
1318 			sctp->sctp_allzones = onoff;
1319 			break;
1320 		case SO_MAC_EXEMPT:
1321 			if (secpolicy_net_mac_aware(sctp->sctp_credp) != 0) {
1322 				retval = EACCES;
1323 				break;
1324 			}
1325 			if (sctp->sctp_state >= SCTPS_BOUND) {
1326 				retval = EINVAL;
1327 				break;
1328 			}
1329 			connp->conn_mac_exempt = onoff;
1330 			break;
1331 		default:
1332 			retval = ENOPROTOOPT;
1333 			break;
1334 		}
1335 		break;
1336 
1337 	case IPPROTO_SCTP:
1338 		if (inlen < sizeof (int32_t)) {
1339 			retval = EINVAL;
1340 			break;
1341 		}
1342 		switch (name) {
1343 		case SCTP_RTOINFO:
1344 			retval = sctp_set_rtoinfo(sctp, invalp, inlen);
1345 			break;
1346 		case SCTP_ASSOCINFO:
1347 			retval = sctp_set_assocparams(sctp, invalp, inlen);
1348 			break;
1349 		case SCTP_INITMSG:
1350 			retval = sctp_set_initmsg(sctp, invalp, inlen);
1351 			break;
1352 		case SCTP_NODELAY:
1353 			sctp->sctp_ndelay = ONOFF(*i1);
1354 			break;
1355 		case SCTP_AUTOCLOSE:
1356 			if (SEC_TO_TICK(*i1) < 0) {
1357 				retval = EINVAL;
1358 				break;
1359 			}
1360 			/* Convert the number of seconds to ticks. */
1361 			sctp->sctp_autoclose = SEC_TO_TICK(*i1);
1362 			sctp_heartbeat_timer(sctp);
1363 			break;
1364 		case SCTP_SET_PEER_PRIMARY_ADDR:
1365 			retval = sctp_set_peerprim(sctp, invalp, inlen);
1366 			break;
1367 		case SCTP_PRIMARY_ADDR:
1368 			retval = sctp_set_prim(sctp, invalp, inlen);
1369 			break;
1370 		case SCTP_ADAPTATION_LAYER: {
1371 			struct sctp_setadaptation *ssb;
1372 
1373 			if (inlen < sizeof (struct sctp_setadaptation)) {
1374 				retval = EINVAL;
1375 				break;
1376 			}
1377 			ssb = (struct sctp_setadaptation *)invalp;
1378 			sctp->sctp_send_adaptation = 1;
1379 			sctp->sctp_tx_adaptation_code = ssb->ssb_adaptation_ind;
1380 			break;
1381 		}
1382 		case SCTP_PEER_ADDR_PARAMS:
1383 			retval = sctp_set_peer_addr_params(sctp, invalp,
1384 			    inlen);
1385 			break;
1386 		case SCTP_DEFAULT_SEND_PARAM:
1387 			retval = sctp_set_def_send_params(sctp, invalp, inlen);
1388 			break;
1389 		case SCTP_EVENTS: {
1390 			struct sctp_event_subscribe *ev;
1391 
1392 			if (inlen < sizeof (struct sctp_event_subscribe)) {
1393 				retval = EINVAL;
1394 				break;
1395 			}
1396 			ev = (struct sctp_event_subscribe *)invalp;
1397 			sctp->sctp_recvsndrcvinfo =
1398 			    ONOFF(ev->sctp_data_io_event);
1399 			sctp->sctp_recvassocevnt =
1400 			    ONOFF(ev->sctp_association_event);
1401 			sctp->sctp_recvpathevnt =
1402 			    ONOFF(ev->sctp_address_event);
1403 			sctp->sctp_recvsendfailevnt =
1404 			    ONOFF(ev->sctp_send_failure_event);
1405 			sctp->sctp_recvpeererr =
1406 			    ONOFF(ev->sctp_peer_error_event);
1407 			sctp->sctp_recvshutdownevnt =
1408 			    ONOFF(ev->sctp_shutdown_event);
1409 			sctp->sctp_recvpdevnt =
1410 			    ONOFF(ev->sctp_partial_delivery_event);
1411 			sctp->sctp_recvalevnt =
1412 			    ONOFF(ev->sctp_adaptation_layer_event);
1413 			break;
1414 		}
1415 		case SCTP_ADD_ADDR:
1416 		case SCTP_REM_ADDR:
1417 			/*
1418 			 * The sctp_t has to be bound first before
1419 			 * the address list can be changed.
1420 			 */
1421 			if (sctp->sctp_state < SCTPS_BOUND) {
1422 				retval = EINVAL;
1423 				break;
1424 			}
1425 			if (sctp->sctp_family == AF_INET) {
1426 				addrcnt = inlen / sizeof (struct sockaddr_in);
1427 			} else {
1428 				ASSERT(sctp->sctp_family == AF_INET6);
1429 				addrcnt = inlen / sizeof (struct sockaddr_in6);
1430 			}
1431 			if (name == SCTP_ADD_ADDR) {
1432 				retval = sctp_bind_add(sctp, invalp, addrcnt,
1433 				    B_TRUE, sctp->sctp_lport);
1434 			} else {
1435 				retval = sctp_bind_del(sctp, invalp, addrcnt,
1436 				    B_TRUE);
1437 			}
1438 			break;
1439 		case SCTP_UC_SWAP: {
1440 			struct sctp_uc_swap *us;
1441 
1442 			/*
1443 			 * Change handle & upcalls.
1444 			 */
1445 			if (inlen < sizeof (*us)) {
1446 				retval = EINVAL;
1447 				break;
1448 			}
1449 			us = (struct sctp_uc_swap *)invalp;
1450 			sctp->sctp_ulpd = us->sus_handle;
1451 			sctp->sctp_upcalls = us->sus_upcalls;
1452 			break;
1453 		}
1454 		case SCTP_PRSCTP:
1455 			sctp->sctp_prsctp_aware = onoff;
1456 			break;
1457 		case SCTP_I_WANT_MAPPED_V4_ADDR:
1458 		case SCTP_MAXSEG:
1459 		case SCTP_DISABLE_FRAGMENTS:
1460 			/* Not yet supported. */
1461 		default:
1462 			retval = ENOPROTOOPT;
1463 			break;
1464 		}
1465 		break;
1466 
1467 	case IPPROTO_IP:
1468 		if (sctp->sctp_family != AF_INET) {
1469 			retval = ENOPROTOOPT;
1470 			break;
1471 		}
1472 		if ((name != IP_OPTIONS) && (inlen < sizeof (int32_t))) {
1473 			retval = EINVAL;
1474 			break;
1475 		}
1476 		switch (name) {
1477 		case IP_OPTIONS:
1478 		case T_IP_OPTIONS:
1479 			retval = sctp_opt_set_header(sctp, invalp, inlen);
1480 			break;
1481 		case IP_TOS:
1482 		case T_IP_TOS:
1483 			sctp->sctp_ipha->ipha_type_of_service = (uchar_t)*i1;
1484 			break;
1485 		case IP_TTL:
1486 			sctp->sctp_ipha->ipha_ttl = (uchar_t)*i1;
1487 			break;
1488 		case IP_SEC_OPT:
1489 			/*
1490 			 * We should not allow policy setting after
1491 			 * we start listening for connections.
1492 			 */
1493 			if (sctp->sctp_state >= SCTPS_LISTEN) {
1494 				retval = EINVAL;
1495 			} else {
1496 				retval = ipsec_set_req(sctp->sctp_credp,
1497 				    sctp->sctp_connp, (ipsec_req_t *)invalp);
1498 			}
1499 			break;
1500 		/* IP level options */
1501 		case IP_UNSPEC_SRC:
1502 			connp->conn_unspec_src = onoff;
1503 			break;
1504 		case IP_NEXTHOP: {
1505 			ipaddr_t addr = *i1;
1506 			ipif_t *ipif = NULL;
1507 			ill_t *ill;
1508 			ip_stack_t *ipst = sctps->sctps_netstack->netstack_ip;
1509 
1510 			if (secpolicy_ip(sctp->sctp_credp, OP_CONFIG,
1511 			    B_TRUE) == 0) {
1512 				ipif = ipif_lookup_onlink_addr(addr,
1513 				    connp->conn_zoneid, ipst);
1514 				if (ipif == NULL) {
1515 					retval = EHOSTUNREACH;
1516 					break;
1517 				}
1518 				ill = ipif->ipif_ill;
1519 				mutex_enter(&ill->ill_lock);
1520 				if ((ill->ill_state_flags & ILL_CONDEMNED) ||
1521 				    (ipif->ipif_state_flags & IPIF_CONDEMNED)) {
1522 					mutex_exit(&ill->ill_lock);
1523 					ipif_refrele(ipif);
1524 					retval =  EHOSTUNREACH;
1525 					break;
1526 				}
1527 				mutex_exit(&ill->ill_lock);
1528 				ipif_refrele(ipif);
1529 				mutex_enter(&connp->conn_lock);
1530 				connp->conn_nexthop_v4 = addr;
1531 				connp->conn_nexthop_set = B_TRUE;
1532 				mutex_exit(&connp->conn_lock);
1533 			}
1534 			break;
1535 		}
1536 		default:
1537 			retval = ENOPROTOOPT;
1538 			break;
1539 		}
1540 		break;
1541 	case IPPROTO_IPV6: {
1542 		if (sctp->sctp_family != AF_INET6) {
1543 			retval = ENOPROTOOPT;
1544 			break;
1545 		}
1546 
1547 		switch (name) {
1548 		case IPV6_UNICAST_HOPS:
1549 			if (inlen < sizeof (int32_t)) {
1550 				retval = EINVAL;
1551 				break;
1552 			}
1553 			if (*i1 < -1 || *i1 > IPV6_MAX_HOPS) {
1554 				retval = EINVAL;
1555 				break;
1556 			}
1557 			if (*i1 == -1) {
1558 				ipp->ipp_unicast_hops =
1559 				    sctps->sctps_ipv6_hoplimit;
1560 				ipp->ipp_fields &= ~IPPF_UNICAST_HOPS;
1561 			} else {
1562 				ipp->ipp_unicast_hops = (uint8_t)*i1;
1563 				ipp->ipp_fields |= IPPF_UNICAST_HOPS;
1564 			}
1565 			retval = sctp_build_hdrs(sctp);
1566 			break;
1567 		case IPV6_UNSPEC_SRC:
1568 			if (inlen < sizeof (int32_t)) {
1569 				retval = EINVAL;
1570 				break;
1571 			}
1572 			connp->conn_unspec_src = onoff;
1573 			break;
1574 		case IPV6_RECVPKTINFO:
1575 			if (inlen < sizeof (int32_t)) {
1576 				retval = EINVAL;
1577 				break;
1578 			}
1579 			if (onoff)
1580 				sctp->sctp_ipv6_recvancillary |=
1581 				    SCTP_IPV6_RECVPKTINFO;
1582 			else
1583 				sctp->sctp_ipv6_recvancillary &=
1584 				    ~SCTP_IPV6_RECVPKTINFO;
1585 			/* Send it with the next msg */
1586 			sctp->sctp_recvifindex = 0;
1587 			connp->conn_ip_recvpktinfo = onoff;
1588 			break;
1589 		case IPV6_RECVHOPLIMIT:
1590 			if (inlen < sizeof (int32_t)) {
1591 				retval = EINVAL;
1592 				break;
1593 			}
1594 			if (onoff)
1595 				sctp->sctp_ipv6_recvancillary |=
1596 				    SCTP_IPV6_RECVHOPLIMIT;
1597 			else
1598 				sctp->sctp_ipv6_recvancillary &=
1599 				    ~SCTP_IPV6_RECVHOPLIMIT;
1600 			sctp->sctp_recvhops = 0xffffffffU;
1601 			connp->conn_ipv6_recvhoplimit = onoff;
1602 			break;
1603 		case IPV6_RECVHOPOPTS:
1604 			if (inlen < sizeof (int32_t)) {
1605 				retval = EINVAL;
1606 				break;
1607 			}
1608 			if (onoff)
1609 				sctp->sctp_ipv6_recvancillary |=
1610 				    SCTP_IPV6_RECVHOPOPTS;
1611 			else
1612 				sctp->sctp_ipv6_recvancillary &=
1613 				    ~SCTP_IPV6_RECVHOPOPTS;
1614 			connp->conn_ipv6_recvhopopts = onoff;
1615 			break;
1616 		case IPV6_RECVDSTOPTS:
1617 			if (inlen < sizeof (int32_t)) {
1618 				retval = EINVAL;
1619 				break;
1620 			}
1621 			if (onoff)
1622 				sctp->sctp_ipv6_recvancillary |=
1623 				    SCTP_IPV6_RECVDSTOPTS;
1624 			else
1625 				sctp->sctp_ipv6_recvancillary &=
1626 				    ~SCTP_IPV6_RECVDSTOPTS;
1627 			connp->conn_ipv6_recvdstopts = onoff;
1628 			break;
1629 		case IPV6_RECVRTHDR:
1630 			if (inlen < sizeof (int32_t)) {
1631 				retval = EINVAL;
1632 				break;
1633 			}
1634 			if (onoff)
1635 				sctp->sctp_ipv6_recvancillary |=
1636 				    SCTP_IPV6_RECVRTHDR;
1637 			else
1638 				sctp->sctp_ipv6_recvancillary &=
1639 				    ~SCTP_IPV6_RECVRTHDR;
1640 			connp->conn_ipv6_recvrthdr = onoff;
1641 			break;
1642 		case IPV6_RECVRTHDRDSTOPTS:
1643 			if (inlen < sizeof (int32_t)) {
1644 				retval = EINVAL;
1645 				break;
1646 			}
1647 			if (onoff)
1648 				sctp->sctp_ipv6_recvancillary |=
1649 				    SCTP_IPV6_RECVRTDSTOPTS;
1650 			else
1651 				sctp->sctp_ipv6_recvancillary &=
1652 				    ~SCTP_IPV6_RECVRTDSTOPTS;
1653 			connp->conn_ipv6_recvrtdstopts = onoff;
1654 			break;
1655 		case IPV6_PKTINFO:
1656 			if (inlen != 0 &&
1657 			    inlen != sizeof (struct in6_pktinfo)) {
1658 				retval = EINVAL;
1659 				break;
1660 			}
1661 
1662 			if (inlen == 0) {
1663 				ipp->ipp_fields &= ~(IPPF_IFINDEX |IPPF_ADDR);
1664 			} else  {
1665 				struct in6_pktinfo *pkti;
1666 
1667 				pkti = (struct in6_pktinfo *)invalp;
1668 				/* XXX Need to check if the index exists */
1669 				ipp->ipp_ifindex = pkti->ipi6_ifindex;
1670 				ipp->ipp_addr = pkti->ipi6_addr;
1671 				if (ipp->ipp_ifindex != 0)
1672 					ipp->ipp_fields |= IPPF_IFINDEX;
1673 				else
1674 					ipp->ipp_fields &= ~IPPF_IFINDEX;
1675 				if (!IN6_IS_ADDR_UNSPECIFIED(&ipp->ipp_addr))
1676 					ipp->ipp_fields |= IPPF_ADDR;
1677 				else
1678 					ipp->ipp_fields &= ~IPPF_ADDR;
1679 			}
1680 			retval = sctp_build_hdrs(sctp);
1681 			break;
1682 		case IPV6_NEXTHOP: {
1683 			struct sockaddr_in6 *sin6;
1684 			ip_stack_t *ipst = sctps->sctps_netstack->netstack_ip;
1685 
1686 			if (inlen != 0 && inlen != sizeof (sin6_t)) {
1687 				retval = EINVAL;
1688 				break;
1689 			}
1690 
1691 			if (inlen == 0) {
1692 				ipp->ipp_fields &= ~IPPF_NEXTHOP;
1693 			} else {
1694 				sin6 = (struct sockaddr_in6 *)invalp;
1695 				if (sin6->sin6_family != AF_INET6) {
1696 					retval = EAFNOSUPPORT;
1697 					break;
1698 				}
1699 				if (IN6_IS_ADDR_V4MAPPED(&sin6->sin6_addr)) {
1700 					retval = EADDRNOTAVAIL;
1701 					break;
1702 				}
1703 				ipp->ipp_nexthop = sin6->sin6_addr;
1704 				if (IN6_IS_ADDR_UNSPECIFIED(&sin6->sin6_addr)) {
1705 					ipp->ipp_fields &= ~IPPF_NEXTHOP;
1706 				} else {
1707 					ire_t	*ire;
1708 
1709 					ire = ire_route_lookup_v6(
1710 					    &sin6->sin6_addr, NULL, NULL, 0,
1711 					    NULL, NULL, ALL_ZONES, NULL,
1712 					    MATCH_IRE_DEFAULT, ipst);
1713 					if (ire == NULL) {
1714 						retval = EHOSTUNREACH;
1715 						break;
1716 					}
1717 					ire_refrele(ire);
1718 					ipp->ipp_fields |= IPPF_NEXTHOP;
1719 				}
1720 			}
1721 			retval = sctp_build_hdrs(sctp);
1722 			break;
1723 		}
1724 		case IPV6_HOPOPTS: {
1725 			ip6_hbh_t *hopts = (ip6_hbh_t *)invalp;
1726 
1727 			if (inlen != 0 &&
1728 			    inlen != (8 * (hopts->ip6h_len + 1))) {
1729 				retval = EINVAL;
1730 				break;
1731 			}
1732 
1733 			retval = optcom_pkt_set((uchar_t *)invalp, inlen,
1734 			    B_TRUE, (uchar_t **)&ipp->ipp_hopopts,
1735 			    &ipp->ipp_hopoptslen, sctp->sctp_v6label_len);
1736 			if (retval != 0)
1737 				break;
1738 			if (ipp->ipp_hopoptslen == 0)
1739 				ipp->ipp_fields &= ~IPPF_HOPOPTS;
1740 			else
1741 				ipp->ipp_fields |= IPPF_HOPOPTS;
1742 			retval = sctp_build_hdrs(sctp);
1743 			break;
1744 		}
1745 		case IPV6_RTHDRDSTOPTS: {
1746 			ip6_dest_t *dopts = (ip6_dest_t *)invalp;
1747 
1748 			if (inlen != 0 &&
1749 			    inlen != (8 * (dopts->ip6d_len + 1))) {
1750 				retval = EINVAL;
1751 				break;
1752 			}
1753 
1754 			retval = optcom_pkt_set((uchar_t *)invalp, inlen,
1755 			    B_TRUE, (uchar_t **)&ipp->ipp_rtdstopts,
1756 			    &ipp->ipp_rtdstoptslen, 0);
1757 			if (retval != 0)
1758 				break;
1759 			if (ipp->ipp_rtdstoptslen == 0)
1760 				ipp->ipp_fields &= ~IPPF_RTDSTOPTS;
1761 			else
1762 				ipp->ipp_fields |= IPPF_RTDSTOPTS;
1763 			retval = sctp_build_hdrs(sctp);
1764 			break;
1765 		}
1766 		case IPV6_DSTOPTS: {
1767 			ip6_dest_t *dopts = (ip6_dest_t *)invalp;
1768 
1769 			if (inlen != 0 &&
1770 			    inlen != (8 * (dopts->ip6d_len + 1))) {
1771 				retval = EINVAL;
1772 				break;
1773 			}
1774 
1775 			retval = optcom_pkt_set((uchar_t *)invalp, inlen,
1776 			    B_TRUE, (uchar_t **)&ipp->ipp_dstopts,
1777 			    &ipp->ipp_dstoptslen, 0);
1778 			if (retval != 0)
1779 				break;
1780 			if (ipp->ipp_dstoptslen == 0)
1781 				ipp->ipp_fields &= ~IPPF_DSTOPTS;
1782 			else
1783 				ipp->ipp_fields |= IPPF_DSTOPTS;
1784 			retval = sctp_build_hdrs(sctp);
1785 			break;
1786 		}
1787 		case IPV6_RTHDR: {
1788 			ip6_rthdr_t *rt = (ip6_rthdr_t *)invalp;
1789 
1790 			if (inlen != 0 &&
1791 			    inlen != (8 * (rt->ip6r_len + 1))) {
1792 				retval = EINVAL;
1793 				break;
1794 			}
1795 
1796 			retval = optcom_pkt_set((uchar_t *)invalp, inlen,
1797 			    B_TRUE, (uchar_t **)&ipp->ipp_rthdr,
1798 			    &ipp->ipp_rthdrlen, 0);
1799 			if (retval != 0)
1800 				break;
1801 			if (ipp->ipp_rthdrlen == 0)
1802 				ipp->ipp_fields &= ~IPPF_RTHDR;
1803 			else
1804 				ipp->ipp_fields |= IPPF_RTHDR;
1805 			retval = sctp_build_hdrs(sctp);
1806 			break;
1807 		}
1808 		case IPV6_SEC_OPT:
1809 			/*
1810 			 * We should not allow policy setting after
1811 			 * we start listening for connections.
1812 			 */
1813 			if (sctp->sctp_state >= SCTPS_LISTEN) {
1814 				retval = EINVAL;
1815 			} else {
1816 				retval = ipsec_set_req(sctp->sctp_credp,
1817 				    sctp->sctp_connp, (ipsec_req_t *)invalp);
1818 			}
1819 			break;
1820 		case IPV6_V6ONLY:
1821 			/*
1822 			 * After the bound state, setting the v6only option
1823 			 * is too late.
1824 			 */
1825 			if (sctp->sctp_state >= SCTPS_BOUND) {
1826 				retval = EINVAL;
1827 			} else {
1828 				sctp->sctp_connp->conn_ipv6_v6only = onoff;
1829 			}
1830 			break;
1831 		default:
1832 			retval = ENOPROTOOPT;
1833 			break;
1834 		}
1835 		break;
1836 	}
1837 	default:
1838 		retval = ENOPROTOOPT;
1839 		break;
1840 	}
1841 
1842 	WAKE_SCTP(sctp);
1843 	return (retval);
1844 }
1845 
1846 /*
1847  * SCTP exported kernel interface for geting the first source address of
1848  * a sctp_t.  The parameter addr is assumed to have enough space to hold
1849  * one socket address.
1850  */
1851 int
1852 sctp_getsockname(sctp_t *sctp, struct sockaddr *addr, socklen_t *addrlen)
1853 {
1854 	int	err = 0;
1855 	int	addrcnt = 1;
1856 	sin_t	*sin4;
1857 	sin6_t	*sin6;
1858 
1859 	ASSERT(sctp != NULL);
1860 
1861 	RUN_SCTP(sctp);
1862 	addr->sa_family = sctp->sctp_family;
1863 	switch (sctp->sctp_family) {
1864 	case AF_INET:
1865 		sin4 = (sin_t *)addr;
1866 		if ((sctp->sctp_state <= SCTPS_LISTEN) &&
1867 		    sctp->sctp_bound_to_all) {
1868 			sin4->sin_addr.s_addr = INADDR_ANY;
1869 			sin4->sin_port = sctp->sctp_lport;
1870 		} else {
1871 			err = sctp_getmyaddrs(sctp, sin4, &addrcnt);
1872 			if (err != 0) {
1873 				*addrlen = 0;
1874 				break;
1875 			}
1876 		}
1877 		*addrlen = sizeof (struct sockaddr_in);
1878 		break;
1879 	case AF_INET6:
1880 		sin6 = (sin6_t *)addr;
1881 		if ((sctp->sctp_state <= SCTPS_LISTEN) &&
1882 		    sctp->sctp_bound_to_all) {
1883 			bzero(&sin6->sin6_addr, sizeof (sin6->sin6_addr));
1884 			sin6->sin6_port = sctp->sctp_lport;
1885 		} else {
1886 			err = sctp_getmyaddrs(sctp, sin6, &addrcnt);
1887 			if (err != 0) {
1888 				*addrlen = 0;
1889 				break;
1890 			}
1891 		}
1892 		*addrlen = sizeof (struct sockaddr_in6);
1893 		sin6->sin6_flowinfo = sctp->sctp_ip6h->ip6_vcf &
1894 		    ~IPV6_VERS_AND_FLOW_MASK;
1895 		sin6->sin6_scope_id = 0;
1896 		sin6->__sin6_src_id = 0;
1897 		break;
1898 	}
1899 	WAKE_SCTP(sctp);
1900 	return (err);
1901 }
1902 
1903 /*
1904  * SCTP exported kernel interface for geting the primary peer address of
1905  * a sctp_t.  The parameter addr is assumed to have enough space to hold
1906  * one socket address.
1907  */
1908 int
1909 sctp_getpeername(sctp_t *sctp, struct sockaddr *addr, socklen_t *addrlen)
1910 {
1911 	int	err = 0;
1912 	int	addrcnt = 1;
1913 	sin6_t	*sin6;
1914 
1915 	ASSERT(sctp != NULL);
1916 
1917 	RUN_SCTP(sctp);
1918 	addr->sa_family = sctp->sctp_family;
1919 	switch (sctp->sctp_family) {
1920 	case AF_INET:
1921 		err = sctp_getpeeraddrs(sctp, addr, &addrcnt);
1922 		if (err != 0) {
1923 			*addrlen = 0;
1924 			break;
1925 		}
1926 		*addrlen = sizeof (struct sockaddr_in);
1927 		break;
1928 	case AF_INET6:
1929 		sin6 = (sin6_t *)addr;
1930 		err = sctp_getpeeraddrs(sctp, sin6, &addrcnt);
1931 		if (err != 0) {
1932 			*addrlen = 0;
1933 			break;
1934 		}
1935 		*addrlen = sizeof (struct sockaddr_in6);
1936 		sin6->sin6_flowinfo = 0;
1937 		sin6->sin6_scope_id = 0;
1938 		sin6->__sin6_src_id = 0;
1939 		break;
1940 	}
1941 	WAKE_SCTP(sctp);
1942 	return (err);
1943 }
1944 
1945 /*
1946  * Return a list of IP addresses of the peer endpoint of this sctp_t.
1947  * The parameter paddrs is supposed to be either (struct sockaddr_in *) or
1948  * (struct sockaddr_in6 *) depending on the address family of the sctp_t.
1949  */
1950 int
1951 sctp_getpeeraddrs(sctp_t *sctp, void *paddrs, int *addrcnt)
1952 {
1953 	int			family;
1954 	struct sockaddr_in	*sin4;
1955 	struct sockaddr_in6	*sin6;
1956 	int			max;
1957 	int			cnt;
1958 	sctp_faddr_t		*fp = sctp->sctp_faddrs;
1959 	in6_addr_t		addr;
1960 
1961 	ASSERT(sctp != NULL);
1962 
1963 	if (sctp->sctp_faddrs == NULL)
1964 		return (ENOTCONN);
1965 
1966 	family = sctp->sctp_family;
1967 	max = *addrcnt;
1968 
1969 	/* If we want only one, give the primary */
1970 	if (max == 1) {
1971 		addr = sctp->sctp_primary->faddr;
1972 		switch (family) {
1973 		case AF_INET:
1974 			sin4 = paddrs;
1975 			IN6_V4MAPPED_TO_INADDR(&addr, &sin4->sin_addr);
1976 			sin4->sin_port = sctp->sctp_fport;
1977 			sin4->sin_family = AF_INET;
1978 			break;
1979 
1980 		case AF_INET6:
1981 			sin6 = paddrs;
1982 			sin6->sin6_addr = addr;
1983 			sin6->sin6_port = sctp->sctp_fport;
1984 			sin6->sin6_family = AF_INET6;
1985 			break;
1986 		}
1987 		return (0);
1988 	}
1989 
1990 	for (cnt = 0; cnt < max && fp != NULL; cnt++, fp = fp->next) {
1991 		addr = fp->faddr;
1992 		switch (family) {
1993 		case AF_INET:
1994 			ASSERT(IN6_IS_ADDR_V4MAPPED(&addr));
1995 			sin4 = (struct sockaddr_in *)paddrs + cnt;
1996 			IN6_V4MAPPED_TO_INADDR(&addr, &sin4->sin_addr);
1997 			sin4->sin_port = sctp->sctp_fport;
1998 			sin4->sin_family = AF_INET;
1999 			break;
2000 		case AF_INET6:
2001 			sin6 = (struct sockaddr_in6 *)paddrs + cnt;
2002 			sin6->sin6_addr = addr;
2003 			sin6->sin6_port = sctp->sctp_fport;
2004 			sin6->sin6_family = AF_INET6;
2005 			break;
2006 		}
2007 	}
2008 	*addrcnt = cnt;
2009 	return (0);
2010 }
2011