sctp_output.c revision 1.15.2.3 1 /* $NetBSD: sctp_output.c,v 1.15.2.3 2020/04/13 08:05:16 martin Exp $ */
2 /* $KAME: sctp_output.c,v 1.48 2005/06/16 18:29:24 jinmei Exp $ */
3
4 /*
5 * Copyright (C) 2002, 2003, 2004 Cisco Systems Inc,
6 * All rights reserved.
7 *
8 * Redistribution and use in source and binary forms, with or without
9 * modification, are permitted provided that the following conditions
10 * are met:
11 * 1. Redistributions of source code must retain the above copyright
12 * notice, this list of conditions and the following disclaimer.
13 * 2. Redistributions in binary form must reproduce the above copyright
14 * notice, this list of conditions and the following disclaimer in the
15 * documentation and/or other materials provided with the distribution.
16 * 3. Neither the name of the project nor the names of its contributors
17 * may be used to endorse or promote products derived from this software
18 * without specific prior written permission.
19 *
20 * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND
21 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
22 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
23 * ARE DISCLAIMED. IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE
24 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
25 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
26 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
27 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
28 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
29 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
30 * SUCH DAMAGE.
31 */
32 #include <sys/cdefs.h>
33 __KERNEL_RCSID(0, "$NetBSD: sctp_output.c,v 1.15.2.3 2020/04/13 08:05:16 martin Exp $");
34
35 #ifdef _KERNEL_OPT
36 #include "opt_ipsec.h"
37 #include "opt_inet.h"
38 #include "opt_sctp.h"
39 #endif /* _KERNEL_OPT */
40
41 #include <sys/param.h>
42 #include <sys/systm.h>
43 #include <sys/malloc.h>
44 #include <sys/mbuf.h>
45 #include <sys/domain.h>
46 #include <sys/protosw.h>
47 #include <sys/socket.h>
48 #include <sys/socketvar.h>
49 #include <sys/proc.h>
50 #include <sys/kernel.h>
51 #include <sys/sysctl.h>
52 #include <sys/resourcevar.h>
53 #include <sys/uio.h>
54 #ifdef INET6
55 #include <sys/domain.h>
56 #endif
57
58 #include <machine/limits.h>
59 #include <machine/cpu.h>
60
61 #include <net/if.h>
62 #include <net/if_types.h>
63
64 #include <net/route.h>
65
66 #include <netinet/in.h>
67 #include <netinet/in_systm.h>
68 #include <netinet/ip.h>
69 #include <netinet/in_pcb.h>
70 #include <netinet/in_var.h>
71 #include <netinet/ip_var.h>
72
73 #ifdef INET6
74 #include <netinet/ip6.h>
75 #include <netinet6/ip6_var.h>
76 #include <netinet6/scope6_var.h>
77 #include <netinet6/nd6.h>
78
79 #include <netinet6/in6_pcb.h>
80
81 #include <netinet/icmp6.h>
82
83 #endif /* INET6 */
84
85 #if defined(HAVE_NRL_INPCB) || defined(__FreeBSD__)
86 #ifndef in6pcb
87 #define in6pcb inpcb
88 #endif
89 #endif
90
91 #include <netinet/sctp_pcb.h>
92
93 #ifdef IPSEC
94 #include <netipsec/ipsec.h>
95 #include <netipsec/key.h>
96 #endif /* IPSEC */
97
98 #include <netinet/sctp_var.h>
99 #include <netinet/sctp_header.h>
100 #include <netinet/sctputil.h>
101 #include <netinet/sctp_pcb.h>
102 #include <netinet/sctp_output.h>
103 #include <netinet/sctp_uio.h>
104 #include <netinet/sctputil.h>
105 #include <netinet/sctp_hashdriver.h>
106 #include <netinet/sctp_timer.h>
107 #include <netinet/sctp_asconf.h>
108 #include <netinet/sctp_indata.h>
109
110 #ifdef SCTP_DEBUG
111 extern uint32_t sctp_debug_on;
112 #endif
113
114 extern int sctp_peer_chunk_oh;
115
116 static int
117 sctp_find_cmsg(int c_type, void *data, struct mbuf *control, int cpsize)
118 {
119 struct cmsghdr cmh;
120 int tlen, at;
121
122 tlen = control->m_len;
123 at = 0;
124 /*
125 * Independent of how many mbufs, find the c_type inside the control
126 * structure and copy out the data.
127 */
128 while (at < tlen) {
129 if ((tlen-at) < (int)CMSG_ALIGN(sizeof(cmh))) {
130 /* not enough room for one more we are done. */
131 return (0);
132 }
133 m_copydata(control, at, sizeof(cmh), (void *)&cmh);
134 if ((cmh.cmsg_len + at) > tlen) {
135 /*
136 * this is real messed up since there is not enough
137 * data here to cover the cmsg header. We are done.
138 */
139 return (0);
140 }
141 if ((cmh.cmsg_level == IPPROTO_SCTP) &&
142 (c_type == cmh.cmsg_type)) {
143 /* found the one we want, copy it out */
144 at += CMSG_ALIGN(sizeof(struct cmsghdr));
145 if ((int)(cmh.cmsg_len - CMSG_ALIGN(sizeof(struct cmsghdr))) < cpsize) {
146 /*
147 * space of cmsg_len after header not
148 * big enough
149 */
150 return (0);
151 }
152 m_copydata(control, at, cpsize, data);
153 return (1);
154 } else {
155 at += CMSG_ALIGN(cmh.cmsg_len);
156 if (cmh.cmsg_len == 0) {
157 break;
158 }
159 }
160 }
161 /* not found */
162 return (0);
163 }
164
165 static struct mbuf *
166 sctp_add_addr_to_mbuf(struct mbuf *m, struct ifaddr *ifa)
167 {
168 struct sctp_paramhdr *parmh;
169 struct mbuf *mret;
170 int len;
171 if (ifa->ifa_addr->sa_family == AF_INET) {
172 len = sizeof(struct sctp_ipv4addr_param);
173 } else if (ifa->ifa_addr->sa_family == AF_INET6) {
174 len = sizeof(struct sctp_ipv6addr_param);
175 } else {
176 /* unknown type */
177 return (m);
178 }
179
180 if (M_TRAILINGSPACE(m) >= len) {
181 /* easy side we just drop it on the end */
182 parmh = (struct sctp_paramhdr *)(m->m_data + m->m_len);
183 mret = m;
184 } else {
185 /* Need more space */
186 mret = m;
187 while (mret->m_next != NULL) {
188 mret = mret->m_next;
189 }
190 MGET(mret->m_next, M_DONTWAIT, MT_DATA);
191 if (mret->m_next == NULL) {
192 /* We are hosed, can't add more addresses */
193 return (m);
194 }
195 mret = mret->m_next;
196 parmh = mtod(mret, struct sctp_paramhdr *);
197 }
198 /* now add the parameter */
199 if (ifa->ifa_addr->sa_family == AF_INET) {
200 struct sctp_ipv4addr_param *ipv4p;
201 struct sockaddr_in *sin;
202 sin = (struct sockaddr_in *)ifa->ifa_addr;
203 ipv4p = (struct sctp_ipv4addr_param *)parmh;
204 parmh->param_type = htons(SCTP_IPV4_ADDRESS);
205 parmh->param_length = htons(len);
206 ipv4p->addr = sin->sin_addr.s_addr;
207 mret->m_len += len;
208 } else if (ifa->ifa_addr->sa_family == AF_INET6) {
209 struct sctp_ipv6addr_param *ipv6p;
210 struct sockaddr_in6 *sin6;
211 sin6 = (struct sockaddr_in6 *)ifa->ifa_addr;
212 ipv6p = (struct sctp_ipv6addr_param *)parmh;
213 parmh->param_type = htons(SCTP_IPV6_ADDRESS);
214 parmh->param_length = htons(len);
215 memcpy(ipv6p->addr, &sin6->sin6_addr,
216 sizeof(ipv6p->addr));
217 /* clear embedded scope in the address */
218 in6_clearscope((struct in6_addr *)ipv6p->addr);
219 mret->m_len += len;
220 } else {
221 return (m);
222 }
223 return (mret);
224 }
225
226
227
228 static struct mbuf *
229 sctp_add_cookie(struct sctp_inpcb *inp, struct mbuf *init, int init_offset,
230 struct mbuf *initack, int initack_offset, struct sctp_state_cookie *stc_in)
231 {
232 struct mbuf *copy_init, *copy_initack, *m_at, *sig, *mret;
233 struct sctp_state_cookie *stc;
234 struct sctp_paramhdr *ph;
235 uint8_t *signature;
236 int sig_offset;
237 uint16_t cookie_sz;
238
239 mret = NULL;
240
241 MGET(mret, M_DONTWAIT, MT_DATA);
242 if (mret == NULL) {
243 return (NULL);
244 }
245 copy_init = sctp_m_copym(init, init_offset, M_COPYALL, M_DONTWAIT);
246 if (copy_init == NULL) {
247 sctp_m_freem(mret);
248 return (NULL);
249 }
250 copy_initack = sctp_m_copym(initack, initack_offset, M_COPYALL,
251 M_DONTWAIT);
252 if (copy_initack == NULL) {
253 sctp_m_freem(mret);
254 sctp_m_freem(copy_init);
255 return (NULL);
256 }
257 /* easy side we just drop it on the end */
258 ph = mtod(mret, struct sctp_paramhdr *);
259 mret->m_len = sizeof(struct sctp_state_cookie) +
260 sizeof(struct sctp_paramhdr);
261 stc = (struct sctp_state_cookie *)((vaddr_t)ph +
262 sizeof(struct sctp_paramhdr));
263 ph->param_type = htons(SCTP_STATE_COOKIE);
264 ph->param_length = 0; /* fill in at the end */
265 /* Fill in the stc cookie data */
266 *stc = *stc_in;
267
268 /* tack the INIT and then the INIT-ACK onto the chain */
269 cookie_sz = 0;
270 m_at = mret;
271 for (m_at = mret; m_at; m_at = m_at->m_next) {
272 cookie_sz += m_at->m_len;
273 if (m_at->m_next == NULL) {
274 m_at->m_next = copy_init;
275 break;
276 }
277 }
278
279 for (m_at = copy_init; m_at; m_at = m_at->m_next) {
280 cookie_sz += m_at->m_len;
281 if (m_at->m_next == NULL) {
282 m_at->m_next = copy_initack;
283 break;
284 }
285 }
286
287 for (m_at = copy_initack; m_at; m_at = m_at->m_next) {
288 cookie_sz += m_at->m_len;
289 if (m_at->m_next == NULL) {
290 break;
291 }
292 }
293 MGET(sig, M_DONTWAIT, MT_DATA);
294 if (sig == NULL) {
295 /* no space */
296 sctp_m_freem(mret);
297 sctp_m_freem(copy_init);
298 sctp_m_freem(copy_initack);
299 return (NULL);
300 }
301 sig->m_len = 0;
302 m_at->m_next = sig;
303 sig_offset = 0;
304 signature = (uint8_t *)(mtod(sig, vaddr_t) + sig_offset);
305 /* Time to sign the cookie */
306 sctp_hash_digest_m((char *)inp->sctp_ep.secret_key[
307 (int)(inp->sctp_ep.current_secret_number)],
308 SCTP_SECRET_SIZE, mret, sizeof(struct sctp_paramhdr),
309 (uint8_t *)signature);
310 sig->m_len += SCTP_SIGNATURE_SIZE;
311 cookie_sz += SCTP_SIGNATURE_SIZE;
312
313 ph->param_length = htons(cookie_sz);
314 return (mret);
315 }
316
317
318 static struct sockaddr_in *
319 sctp_is_v4_ifa_addr_prefered (struct ifaddr *ifa, uint8_t loopscope, uint8_t ipv4_scope, uint8_t *sin_loop, uint8_t *sin_local)
320 {
321 struct sockaddr_in *sin;
322 /*
323 * Here we determine if its a prefered address. A
324 * prefered address means it is the same scope or
325 * higher scope then the destination.
326 * L = loopback, P = private, G = global
327 * -----------------------------------------
328 * src | dest | result
329 *-----------------------------------------
330 * L | L | yes
331 *-----------------------------------------
332 * P | L | yes
333 *-----------------------------------------
334 * G | L | yes
335 *-----------------------------------------
336 * L | P | no
337 *-----------------------------------------
338 * P | P | yes
339 *-----------------------------------------
340 * G | P | no
341 *-----------------------------------------
342 * L | G | no
343 *-----------------------------------------
344 * P | G | no
345 *-----------------------------------------
346 * G | G | yes
347 *-----------------------------------------
348 */
349
350 if (ifa->ifa_addr->sa_family != AF_INET) {
351 /* forget non-v4 */
352 return (NULL);
353 }
354 /* Ok the address may be ok */
355 sin = (struct sockaddr_in *)ifa->ifa_addr;
356 if (sin->sin_addr.s_addr == 0) {
357 return (NULL);
358 }
359 *sin_local = *sin_loop = 0;
360 if ((ifa->ifa_ifp->if_type == IFT_LOOP) ||
361 (IN4_ISLOOPBACK_ADDRESS(&sin->sin_addr))) {
362 *sin_loop = 1;
363 *sin_local = 1;
364 }
365 if ((IN4_ISPRIVATE_ADDRESS(&sin->sin_addr))) {
366 *sin_local = 1;
367 }
368 if (!loopscope && *sin_loop) {
369 /* Its a loopback address and we don't have loop scope */
370 return (NULL);
371 }
372 if (!ipv4_scope && *sin_local) {
373 /* Its a private address, and we don't have private address scope */
374 return (NULL);
375 }
376 if (((ipv4_scope == 0) && (loopscope == 0)) && (*sin_local)) {
377 /* its a global src and a private dest */
378 return (NULL);
379 }
380 /* its a prefered address */
381 return (sin);
382 }
383
384 static struct sockaddr_in *
385 sctp_is_v4_ifa_addr_acceptable (struct ifaddr *ifa, uint8_t loopscope, uint8_t ipv4_scope, uint8_t *sin_loop, uint8_t *sin_local)
386 {
387 struct sockaddr_in *sin;
388 /*
389 * Here we determine if its a acceptable address. A
390 * acceptable address means it is the same scope or
391 * higher scope but we can allow for NAT which means
392 * its ok to have a global dest and a private src.
393 *
394 * L = loopback, P = private, G = global
395 * -----------------------------------------
396 * src | dest | result
397 *-----------------------------------------
398 * L | L | yes
399 *-----------------------------------------
400 * P | L | yes
401 *-----------------------------------------
402 * G | L | yes
403 *-----------------------------------------
404 * L | P | no
405 *-----------------------------------------
406 * P | P | yes
407 *-----------------------------------------
408 * G | P | yes - probably this won't work.
409 *-----------------------------------------
410 * L | G | no
411 *-----------------------------------------
412 * P | G | yes
413 *-----------------------------------------
414 * G | G | yes
415 *-----------------------------------------
416 */
417
418 if (ifa->ifa_addr->sa_family != AF_INET) {
419 /* forget non-v4 */
420 return (NULL);
421 }
422 /* Ok the address may be ok */
423 sin = (struct sockaddr_in *)ifa->ifa_addr;
424 if (sin->sin_addr.s_addr == 0) {
425 return (NULL);
426 }
427 *sin_local = *sin_loop = 0;
428 if ((ifa->ifa_ifp->if_type == IFT_LOOP) ||
429 (IN4_ISLOOPBACK_ADDRESS(&sin->sin_addr))) {
430 *sin_loop = 1;
431 *sin_local = 1;
432 }
433 if ((IN4_ISPRIVATE_ADDRESS(&sin->sin_addr))) {
434 *sin_local = 1;
435 }
436 if (!loopscope && *sin_loop) {
437 /* Its a loopback address and we don't have loop scope */
438 return (NULL);
439 }
440 /* its an acceptable address */
441 return (sin);
442 }
443
444 /*
445 * This treats the address list on the ep as a restricted list
446 * (negative list). If a the passed address is listed, then
447 * the address is NOT allowed on the association.
448 */
449 int
450 sctp_is_addr_restricted(struct sctp_tcb *stcb, struct sockaddr *addr)
451 {
452 struct sctp_laddr *laddr;
453 #ifdef SCTP_DEBUG
454 int cnt=0;
455 #endif
456 if (stcb == NULL) {
457 /* There are no restrictions, no TCB :-) */
458 return (0);
459 }
460 #ifdef SCTP_DEBUG
461 LIST_FOREACH(laddr, &stcb->asoc.sctp_local_addr_list, sctp_nxt_addr) {
462 cnt++;
463 }
464 if (sctp_debug_on & SCTP_DEBUG_OUTPUT4) {
465 printf("There are %d addresses on the restricted list\n", cnt);
466 }
467 cnt = 0;
468 #endif
469 LIST_FOREACH(laddr, &stcb->asoc.sctp_local_addr_list, sctp_nxt_addr) {
470 if (laddr->ifa == NULL) {
471 #ifdef SCTP_DEBUG
472 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
473 printf("Help I have fallen and I can't get up!\n");
474 }
475 #endif
476 continue;
477 }
478 #ifdef SCTP_DEBUG
479 if (sctp_debug_on & SCTP_DEBUG_OUTPUT4) {
480 cnt++;
481 printf("Restricted address[%d]:", cnt);
482 sctp_print_address(laddr->ifa->ifa_addr);
483 }
484 #endif
485 if (sctp_cmpaddr(addr, laddr->ifa->ifa_addr) == 1) {
486 /* Yes it is on the list */
487 return (1);
488 }
489 }
490 return (0);
491 }
492
493 static int
494 sctp_is_addr_in_ep(struct sctp_inpcb *inp, struct ifaddr *ifa)
495 {
496 struct sctp_laddr *laddr;
497
498 if (ifa == NULL)
499 return (0);
500 LIST_FOREACH(laddr, &inp->sctp_addr_list, sctp_nxt_addr) {
501 if (laddr->ifa == NULL) {
502 #ifdef SCTP_DEBUG
503 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
504 printf("Help I have fallen and I can't get up!\n");
505 }
506 #endif
507 continue;
508 }
509 if (laddr->ifa->ifa_addr == NULL)
510 continue;
511 if (laddr->ifa == ifa)
512 /* same pointer */
513 return (1);
514 if (laddr->ifa->ifa_addr->sa_family != ifa->ifa_addr->sa_family) {
515 /* skip non compatible address comparison */
516 continue;
517 }
518 if (sctp_cmpaddr(ifa->ifa_addr, laddr->ifa->ifa_addr) == 1) {
519 /* Yes it is restricted */
520 return (1);
521 }
522 }
523 return (0);
524 }
525
526
527
528 static struct in_addr
529 sctp_choose_v4_boundspecific_inp(struct sctp_inpcb *inp,
530 struct rtentry *rt,
531 uint8_t ipv4_scope,
532 uint8_t loopscope)
533 {
534 struct in_addr ans;
535 struct sctp_laddr *laddr;
536 struct sockaddr_in *sin;
537 struct ifnet *ifn;
538 struct ifaddr *ifa;
539 uint8_t sin_loop, sin_local;
540
541 /* first question, is the ifn we will emit on
542 * in our list, if so, we want that one.
543 */
544 ifn = rt->rt_ifp;
545 if (ifn) {
546 /* is a prefered one on the interface we route out? */
547 IFADDR_READER_FOREACH(ifa, ifn) {
548 sin = sctp_is_v4_ifa_addr_prefered (ifa, loopscope, ipv4_scope, &sin_loop, &sin_local);
549 if (sin == NULL)
550 continue;
551 if (sctp_is_addr_in_ep(inp, ifa)) {
552 return (sin->sin_addr);
553 }
554 }
555 /* is an acceptable one on the interface we route out? */
556 IFADDR_READER_FOREACH(ifa, ifn) {
557 sin = sctp_is_v4_ifa_addr_acceptable (ifa, loopscope, ipv4_scope, &sin_loop, &sin_local);
558 if (sin == NULL)
559 continue;
560 if (sctp_is_addr_in_ep(inp, ifa)) {
561 return (sin->sin_addr);
562 }
563 }
564 }
565 /* ok, what about a prefered address in the inp */
566 for (laddr = LIST_FIRST(&inp->sctp_addr_list);
567 laddr && (laddr != inp->next_addr_touse);
568 laddr = LIST_NEXT(laddr, sctp_nxt_addr)) {
569 if (laddr->ifa == NULL) {
570 /* address has been removed */
571 continue;
572 }
573 sin = sctp_is_v4_ifa_addr_prefered (laddr->ifa, loopscope, ipv4_scope, &sin_loop, &sin_local);
574 if (sin == NULL)
575 continue;
576 return (sin->sin_addr);
577
578 }
579 /* ok, what about an acceptable address in the inp */
580 for (laddr = LIST_FIRST(&inp->sctp_addr_list);
581 laddr && (laddr != inp->next_addr_touse);
582 laddr = LIST_NEXT(laddr, sctp_nxt_addr)) {
583 if (laddr->ifa == NULL) {
584 /* address has been removed */
585 continue;
586 }
587 sin = sctp_is_v4_ifa_addr_acceptable (laddr->ifa, loopscope, ipv4_scope, &sin_loop, &sin_local);
588 if (sin == NULL)
589 continue;
590 return (sin->sin_addr);
591
592 }
593
594 /* no address bound can be a source for the destination we are in trouble */
595 #ifdef SCTP_DEBUG
596 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
597 printf("Src address selection for EP, no acceptable src address found for address\n");
598 }
599 #endif
600 memset(&ans, 0, sizeof(ans));
601 return (ans);
602 }
603
604
605
606 static struct in_addr
607 sctp_choose_v4_boundspecific_stcb(struct sctp_inpcb *inp,
608 struct sctp_tcb *stcb,
609 struct sctp_nets *net,
610 struct rtentry *rt,
611 uint8_t ipv4_scope,
612 uint8_t loopscope,
613 int non_asoc_addr_ok)
614 {
615 /*
616 * Here we have two cases, bound all asconf
617 * allowed. bound all asconf not allowed.
618 *
619 */
620 struct sctp_laddr *laddr, *starting_point;
621 struct in_addr ans;
622 struct ifnet *ifn;
623 struct ifaddr *ifa;
624 uint8_t sin_loop, sin_local, start_at_beginning=0;
625 struct sockaddr_in *sin;
626
627 /* first question, is the ifn we will emit on
628 * in our list, if so, we want that one.
629 */
630 ifn = rt->rt_ifp;
631
632 if (inp->sctp_flags & SCTP_PCB_FLAGS_DO_ASCONF) {
633 /*
634 * Here we use the list of addresses on the endpoint. Then
635 * the addresses listed on the "restricted" list is just that,
636 * address that have not been added and can't be used (unless
637 * the non_asoc_addr_ok is set).
638 */
639 #ifdef SCTP_DEBUG
640 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
641 printf("Have a STCB - asconf allowed, not bound all have a netgative list\n");
642 }
643 #endif
644 /* first question, is the ifn we will emit on
645 * in our list, if so, we want that one.
646 */
647 if (ifn) {
648 /* first try for an prefered address on the ep */
649 IFADDR_READER_FOREACH(ifa, ifn) {
650 if (sctp_is_addr_in_ep(inp, ifa)) {
651 sin = sctp_is_v4_ifa_addr_prefered (ifa, loopscope, ipv4_scope, &sin_loop, &sin_local);
652 if (sin == NULL)
653 continue;
654 if ((non_asoc_addr_ok == 0) &&
655 (sctp_is_addr_restricted(stcb, (struct sockaddr *)sin))) {
656 /* on the no-no list */
657 continue;
658 }
659 return (sin->sin_addr);
660 }
661 }
662 /* next try for an acceptable address on the ep */
663 IFADDR_READER_FOREACH(ifa, ifn) {
664 if (sctp_is_addr_in_ep(inp, ifa)) {
665 sin = sctp_is_v4_ifa_addr_acceptable (ifa, loopscope, ipv4_scope, &sin_loop, &sin_local);
666 if (sin == NULL)
667 continue;
668 if ((non_asoc_addr_ok == 0) &&
669 (sctp_is_addr_restricted(stcb, (struct sockaddr *)sin))) {
670 /* on the no-no list */
671 continue;
672 }
673 return (sin->sin_addr);
674 }
675 }
676
677 }
678 /* if we can't find one like that then we must
679 * look at all addresses bound to pick one at
680 * first prefereable then secondly acceptable.
681 */
682 starting_point = stcb->asoc.last_used_address;
683 sctpv4_from_the_top:
684 if (stcb->asoc.last_used_address == NULL) {
685 start_at_beginning=1;
686 stcb->asoc.last_used_address = LIST_FIRST(&inp->sctp_addr_list);
687 }
688 /* search beginning with the last used address */
689 for (laddr = stcb->asoc.last_used_address; laddr;
690 laddr = LIST_NEXT(laddr, sctp_nxt_addr)) {
691 if (laddr->ifa == NULL) {
692 /* address has been removed */
693 continue;
694 }
695 sin = sctp_is_v4_ifa_addr_prefered (laddr->ifa, loopscope, ipv4_scope, &sin_loop, &sin_local);
696 if (sin == NULL)
697 continue;
698 if ((non_asoc_addr_ok == 0) &&
699 (sctp_is_addr_restricted(stcb, (struct sockaddr *)sin))) {
700 /* on the no-no list */
701 continue;
702 }
703 return (sin->sin_addr);
704
705 }
706 if (start_at_beginning == 0) {
707 stcb->asoc.last_used_address = NULL;
708 goto sctpv4_from_the_top;
709 }
710 /* now try for any higher scope than the destination */
711 stcb->asoc.last_used_address = starting_point;
712 start_at_beginning = 0;
713 sctpv4_from_the_top2:
714 if (stcb->asoc.last_used_address == NULL) {
715 start_at_beginning=1;
716 stcb->asoc.last_used_address = LIST_FIRST(&inp->sctp_addr_list);
717 }
718 /* search beginning with the last used address */
719 for (laddr = stcb->asoc.last_used_address; laddr;
720 laddr = LIST_NEXT(laddr, sctp_nxt_addr)) {
721 if (laddr->ifa == NULL) {
722 /* address has been removed */
723 continue;
724 }
725 sin = sctp_is_v4_ifa_addr_acceptable (laddr->ifa, loopscope, ipv4_scope, &sin_loop, &sin_local);
726 if (sin == NULL)
727 continue;
728 if ((non_asoc_addr_ok == 0) &&
729 (sctp_is_addr_restricted(stcb, (struct sockaddr *)sin))) {
730 /* on the no-no list */
731 continue;
732 }
733 return (sin->sin_addr);
734 }
735 if (start_at_beginning == 0) {
736 stcb->asoc.last_used_address = NULL;
737 goto sctpv4_from_the_top2;
738 }
739 } else {
740 /*
741 * Here we have an address list on the association, thats the
742 * only valid source addresses that we can use.
743 */
744 #ifdef SCTP_DEBUG
745 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
746 printf("Have a STCB - no asconf allowed, not bound all have a postive list\n");
747 }
748 #endif
749 /* First look at all addresses for one that is on
750 * the interface we route out
751 */
752 LIST_FOREACH(laddr, &stcb->asoc.sctp_local_addr_list,
753 sctp_nxt_addr) {
754 if (laddr->ifa == NULL) {
755 /* address has been removed */
756 continue;
757 }
758 sin = sctp_is_v4_ifa_addr_prefered (laddr->ifa, loopscope, ipv4_scope, &sin_loop, &sin_local);
759 if (sin == NULL)
760 continue;
761 /* first question, is laddr->ifa an address associated with the emit interface */
762 if (ifn) {
763 IFADDR_READER_FOREACH(ifa, ifn) {
764 if (laddr->ifa == ifa) {
765 sin = (struct sockaddr_in *)laddr->ifa->ifa_addr;
766 return (sin->sin_addr);
767 }
768 if (sctp_cmpaddr(ifa->ifa_addr, laddr->ifa->ifa_addr) == 1) {
769 sin = (struct sockaddr_in *)laddr->ifa->ifa_addr;
770 return (sin->sin_addr);
771 }
772 }
773 }
774 }
775 /* what about an acceptable one on the interface? */
776 LIST_FOREACH(laddr, &stcb->asoc.sctp_local_addr_list,
777 sctp_nxt_addr) {
778 if (laddr->ifa == NULL) {
779 /* address has been removed */
780 continue;
781 }
782 sin = sctp_is_v4_ifa_addr_acceptable (laddr->ifa, loopscope, ipv4_scope, &sin_loop, &sin_local);
783 if (sin == NULL)
784 continue;
785 /* first question, is laddr->ifa an address associated with the emit interface */
786 if (ifn) {
787 IFADDR_READER_FOREACH(ifa, ifn) {
788 if (laddr->ifa == ifa) {
789 sin = (struct sockaddr_in *)laddr->ifa->ifa_addr;
790 return (sin->sin_addr);
791 }
792 if (sctp_cmpaddr(ifa->ifa_addr, laddr->ifa->ifa_addr) == 1) {
793 sin = (struct sockaddr_in *)laddr->ifa->ifa_addr;
794 return (sin->sin_addr);
795 }
796 }
797 }
798 }
799 /* ok, next one that is preferable in general */
800 LIST_FOREACH(laddr, &stcb->asoc.sctp_local_addr_list,
801 sctp_nxt_addr) {
802 if (laddr->ifa == NULL) {
803 /* address has been removed */
804 continue;
805 }
806 sin = sctp_is_v4_ifa_addr_prefered (laddr->ifa, loopscope, ipv4_scope, &sin_loop, &sin_local);
807 if (sin == NULL)
808 continue;
809 return (sin->sin_addr);
810 }
811
812 /* last, what about one that is acceptable */
813 LIST_FOREACH(laddr, &stcb->asoc.sctp_local_addr_list,
814 sctp_nxt_addr) {
815 if (laddr->ifa == NULL) {
816 /* address has been removed */
817 continue;
818 }
819 sin = sctp_is_v4_ifa_addr_acceptable (laddr->ifa, loopscope, ipv4_scope, &sin_loop, &sin_local);
820 if (sin == NULL)
821 continue;
822 return (sin->sin_addr);
823 }
824 }
825 memset(&ans, 0, sizeof(ans));
826 return (ans);
827 }
828
829 static struct sockaddr_in *
830 sctp_select_v4_nth_prefered_addr_from_ifn_boundall (struct ifnet *ifn, struct sctp_tcb *stcb, int non_asoc_addr_ok,
831 uint8_t loopscope, uint8_t ipv4_scope, int cur_addr_num)
832 {
833 struct ifaddr *ifa;
834 struct sockaddr_in *sin;
835 uint8_t sin_loop, sin_local;
836 int num_eligible_addr = 0;
837 IFADDR_READER_FOREACH(ifa, ifn) {
838 sin = sctp_is_v4_ifa_addr_prefered (ifa, loopscope, ipv4_scope, &sin_loop, &sin_local);
839 if (sin == NULL)
840 continue;
841 if (stcb) {
842 if ((non_asoc_addr_ok == 0) && sctp_is_addr_restricted(stcb, (struct sockaddr *)sin)) {
843 /* It is restricted for some reason.. probably
844 * not yet added.
845 */
846 continue;
847 }
848 }
849 if (cur_addr_num == num_eligible_addr) {
850 return (sin);
851 }
852 }
853 return (NULL);
854 }
855
856
857 static int
858 sctp_count_v4_num_prefered_boundall (struct ifnet *ifn, struct sctp_tcb *stcb, int non_asoc_addr_ok,
859 uint8_t loopscope, uint8_t ipv4_scope, uint8_t *sin_loop, uint8_t *sin_local)
860 {
861 struct ifaddr *ifa;
862 struct sockaddr_in *sin;
863 int num_eligible_addr = 0;
864
865 IFADDR_READER_FOREACH(ifa, ifn) {
866 sin = sctp_is_v4_ifa_addr_prefered (ifa, loopscope, ipv4_scope, sin_loop, sin_local);
867 if (sin == NULL)
868 continue;
869 if (stcb) {
870 if ((non_asoc_addr_ok == 0) && sctp_is_addr_restricted(stcb, (struct sockaddr *)sin)) {
871 /* It is restricted for some reason.. probably
872 * not yet added.
873 */
874 continue;
875 }
876 }
877 num_eligible_addr++;
878 }
879 return (num_eligible_addr);
880
881 }
882
883 static struct in_addr
884 sctp_choose_v4_boundall(struct sctp_inpcb *inp,
885 struct sctp_tcb *stcb,
886 struct sctp_nets *net,
887 struct rtentry *rt,
888 uint8_t ipv4_scope,
889 uint8_t loopscope,
890 int non_asoc_addr_ok)
891 {
892 int cur_addr_num=0, num_prefered=0;
893 uint8_t sin_loop, sin_local;
894 struct ifnet *ifn;
895 struct sockaddr_in *sin;
896 struct in_addr ans;
897 struct ifaddr *ifa;
898 int s;
899 /*
900 * For v4 we can use (in boundall) any address in the association. If
901 * non_asoc_addr_ok is set we can use any address (at least in theory).
902 * So we look for prefered addresses first. If we find one, we use it.
903 * Otherwise we next try to get an address on the interface, which we
904 * should be able to do (unless non_asoc_addr_ok is false and we are
905 * routed out that way). In these cases where we can't use the address
906 * of the interface we go through all the ifn's looking for an address
907 * we can use and fill that in. Punting means we send back address
908 * 0, which will probably cause problems actually since then IP will
909 * fill in the address of the route ifn, which means we probably already
910 * rejected it.. i.e. here comes an abort :-<.
911 */
912 ifn = rt->rt_ifp;
913 if (net) {
914 cur_addr_num = net->indx_of_eligible_next_to_use;
915 }
916 if (ifn == NULL) {
917 goto bound_all_v4_plan_c;
918 }
919 num_prefered = sctp_count_v4_num_prefered_boundall (ifn, stcb, non_asoc_addr_ok, loopscope, ipv4_scope, &sin_loop, &sin_local);
920 #ifdef SCTP_DEBUG
921 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
922 printf("Found %d prefered source addresses\n", num_prefered);
923 }
924 #endif
925 if (num_prefered == 0) {
926 /* no eligible addresses, we must use some other
927 * interface address if we can find one.
928 */
929 goto bound_all_v4_plan_b;
930 }
931 /* Ok we have num_eligible_addr set with how many we can use,
932 * this may vary from call to call due to addresses being deprecated etc..
933 */
934 if (cur_addr_num >= num_prefered) {
935 cur_addr_num = 0;
936 }
937 /* select the nth address from the list (where cur_addr_num is the nth) and
938 * 0 is the first one, 1 is the second one etc...
939 */
940 #ifdef SCTP_DEBUG
941 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
942 printf("cur_addr_num:%d\n", cur_addr_num);
943 }
944 #endif
945 sin = sctp_select_v4_nth_prefered_addr_from_ifn_boundall (ifn, stcb, non_asoc_addr_ok, loopscope,
946 ipv4_scope, cur_addr_num);
947
948 /* if sin is NULL something changed??, plan_a now */
949 if (sin) {
950 return (sin->sin_addr);
951 }
952
953 /*
954 * plan_b: Look at the interface that we emit on
955 * and see if we can find an acceptable address.
956 */
957 bound_all_v4_plan_b:
958 IFADDR_READER_FOREACH(ifa, ifn) {
959 sin = sctp_is_v4_ifa_addr_acceptable (ifa, loopscope, ipv4_scope, &sin_loop, &sin_local);
960 if (sin == NULL)
961 continue;
962 if (stcb) {
963 if ((non_asoc_addr_ok == 0) && sctp_is_addr_restricted(stcb, (struct sockaddr *)sin)) {
964 /* It is restricted for some reason.. probably
965 * not yet added.
966 */
967 continue;
968 }
969 }
970 return (sin->sin_addr);
971 }
972 /*
973 * plan_c: Look at all interfaces and find a prefered
974 * address. If we reache here we are in trouble I think.
975 */
976 bound_all_v4_plan_c:
977 s = pserialize_read_enter();
978 IFNET_READER_FOREACH(ifn) {
979 if (ifn == inp->next_ifn_touse)
980 break;
981 if (loopscope == 0 && ifn->if_type == IFT_LOOP) {
982 /* wrong base scope */
983 continue;
984 }
985 if (ifn == rt->rt_ifp)
986 /* already looked at this guy */
987 continue;
988 num_prefered = sctp_count_v4_num_prefered_boundall (ifn, stcb, non_asoc_addr_ok,
989 loopscope, ipv4_scope, &sin_loop, &sin_local);
990 #ifdef SCTP_DEBUG
991 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
992 printf("Found ifn:%p %d prefered source addresses\n", ifn, num_prefered);
993 }
994 #endif
995 if (num_prefered == 0) {
996 /*
997 * None on this interface.
998 */
999 continue;
1000 }
1001 /* Ok we have num_eligible_addr set with how many we can use,
1002 * this may vary from call to call due to addresses being deprecated etc..
1003 */
1004 if (cur_addr_num >= num_prefered) {
1005 cur_addr_num = 0;
1006 }
1007 sin = sctp_select_v4_nth_prefered_addr_from_ifn_boundall (ifn, stcb, non_asoc_addr_ok, loopscope,
1008 ipv4_scope, cur_addr_num);
1009 if (sin == NULL)
1010 continue;
1011 pserialize_read_exit(s);
1012 return (sin->sin_addr);
1013
1014 }
1015 pserialize_read_exit(s);
1016
1017 /*
1018 * plan_d: We are in deep trouble. No prefered address on
1019 * any interface. And the emit interface does not
1020 * even have an acceptable address. Take anything
1021 * we can get! If this does not work we are
1022 * probably going to emit a packet that will
1023 * illicit an ABORT, falling through.
1024 */
1025
1026 s = pserialize_read_enter();
1027 IFNET_READER_FOREACH(ifn) {
1028 if (ifn == inp->next_ifn_touse)
1029 break;
1030 if (loopscope == 0 && ifn->if_type == IFT_LOOP) {
1031 /* wrong base scope */
1032 continue;
1033 }
1034 if (ifn == rt->rt_ifp)
1035 /* already looked at this guy */
1036 continue;
1037
1038 IFADDR_READER_FOREACH(ifa, ifn) {
1039 sin = sctp_is_v4_ifa_addr_acceptable (ifa, loopscope, ipv4_scope, &sin_loop, &sin_local);
1040 if (sin == NULL)
1041 continue;
1042 if (stcb) {
1043 if ((non_asoc_addr_ok == 0) && sctp_is_addr_restricted(stcb, (struct sockaddr *)sin)) {
1044 /* It is restricted for some reason.. probably
1045 * not yet added.
1046 */
1047 continue;
1048 }
1049 }
1050 pserialize_read_exit(s);
1051 return (sin->sin_addr);
1052 }
1053 }
1054 pserialize_read_exit(s);
1055 /*
1056 * Ok we can find NO address to source from that is
1057 * not on our negative list. It is either the special
1058 * ASCONF case where we are sourceing from a intf that
1059 * has been ifconfig'd to a different address (i.e.
1060 * it holds a ADD/DEL/SET-PRIM and the proper lookup
1061 * address. OR we are hosed, and this baby is going
1062 * to abort the association.
1063 */
1064 if (non_asoc_addr_ok) {
1065 return (((struct sockaddr_in *)(rt->rt_ifa->ifa_addr))->sin_addr);
1066 } else {
1067 memset(&ans, 0, sizeof(ans));
1068 return (ans);
1069 }
1070 }
1071
1072
1073
1074 /* tcb may be NULL */
1075 struct in_addr
1076 sctp_ipv4_source_address_selection(struct sctp_inpcb *inp,
1077 struct sctp_tcb *stcb, struct route *ro, struct sctp_nets *net,
1078 int non_asoc_addr_ok)
1079 {
1080 struct in_addr ans;
1081 const struct sockaddr_in *to;
1082 struct rtentry *rt;
1083 uint8_t ipv4_scope, loopscope;
1084
1085 /*
1086 * Rules:
1087 * - Find the route if needed, cache if I can.
1088 * - Look at interface address in route, Is it
1089 * in the bound list. If so we have the best source.
1090 * - If not we must rotate amongst the addresses.
1091 *
1092 * Cavets and issues
1093 *
1094 * Do we need to pay attention to scope. We can have
1095 * a private address or a global address we are sourcing
1096 * or sending to. So if we draw it out
1097 * source * dest * result
1098 * ------------------------------------------
1099 * a Private * Global * NAT?
1100 * ------------------------------------------
1101 * b Private * Private * No problem
1102 * ------------------------------------------
1103 * c Global * Private * Huh, How will this work?
1104 * ------------------------------------------
1105 * d Global * Global * No Problem
1106 * ------------------------------------------
1107 *
1108 * And then we add to that what happens if there are multiple
1109 * addresses assigned to an interface. Remember the ifa on a
1110 * ifn is a linked list of addresses. So one interface can
1111 * have more than one IPv4 address. What happens if we
1112 * have both a private and a global address? Do we then
1113 * use context of destination to sort out which one is
1114 * best? And what about NAT's sending P->G may get you
1115 * a NAT translation, or should you select the G thats
1116 * on the interface in preference.
1117 *
1118 * Decisions:
1119 *
1120 * - count the number of addresses on the interface.
1121 * - if its one, no problem except case <c>. For <a>
1122 * we will assume a NAT out there.
1123 * - if there are more than one, then we need to worry
1124 * about scope P or G. We should prefer G -> G and
1125 * P -> P if possible. Then as a secondary fall back
1126 * to mixed types G->P being a last ditch one.
1127 * - The above all works for bound all, but bound
1128 * specific we need to use the same concept but instead
1129 * only consider the bound addresses. If the bound set
1130 * is NOT assigned to the interface then we must use
1131 * rotation amongst them.
1132 *
1133 * Notes: For v4, we can always punt and let ip_output
1134 * decide by sending back a source of 0.0.0.0
1135 */
1136
1137 /*
1138 * Need a route to cache.
1139 *
1140 */
1141 rt = rtcache_validate(ro);
1142 if (rt == NULL) {
1143 /* No route to host .. punt */
1144 memset(&ans, 0, sizeof(ans));
1145 return (ans);
1146 } else {
1147 to = satocsin(rtcache_getdst(ro));
1148 }
1149 /* Setup our scopes */
1150 if (stcb) {
1151 ipv4_scope = stcb->asoc.ipv4_local_scope;
1152 loopscope = stcb->asoc.loopback_scope;
1153 } else {
1154 /* Scope based on outbound address */
1155 if ((IN4_ISPRIVATE_ADDRESS(&to->sin_addr))) {
1156 ipv4_scope = 1;
1157 loopscope = 0;
1158 } else if (IN4_ISLOOPBACK_ADDRESS(&to->sin_addr)) {
1159 ipv4_scope = 1;
1160 loopscope = 1;
1161 } else {
1162 ipv4_scope = 0;
1163 loopscope = 0;
1164 }
1165 }
1166 #ifdef SCTP_DEBUG
1167 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
1168 printf("Scope setup loop:%d ipv4_scope:%d\n",
1169 loopscope, ipv4_scope);
1170 }
1171 #endif
1172 if (inp->sctp_flags & SCTP_PCB_FLAGS_BOUNDALL) {
1173 /*
1174 * When bound to all if the address list is set
1175 * it is a negative list. Addresses being added
1176 * by asconf.
1177 */
1178 ans = sctp_choose_v4_boundall(inp, stcb, net, rt,
1179 ipv4_scope, loopscope, non_asoc_addr_ok);
1180 goto out;
1181 }
1182 /*
1183 * Three possiblities here:
1184 *
1185 * a) stcb is NULL, which means we operate only from
1186 * the list of addresses (ifa's) bound to the assoc and
1187 * we care not about the list.
1188 * b) stcb is NOT-NULL, which means we have an assoc structure and
1189 * auto-asconf is on. This means that the list of addresses is
1190 * a NOT list. We use the list from the inp, but any listed address
1191 * in our list is NOT yet added. However if the non_asoc_addr_ok is
1192 * set we CAN use an address NOT available (i.e. being added). Its
1193 * a negative list.
1194 * c) stcb is NOT-NULL, which means we have an assoc structure and
1195 * auto-asconf is off. This means that the list of addresses is
1196 * the ONLY addresses I can use.. its positive.
1197 *
1198 * Note we collapse b & c into the same function just like in
1199 * the v6 address selection.
1200 */
1201 if (stcb) {
1202 ans = sctp_choose_v4_boundspecific_stcb(inp, stcb, net,
1203 rt, ipv4_scope, loopscope, non_asoc_addr_ok);
1204 goto out;
1205 } else {
1206 ans = sctp_choose_v4_boundspecific_inp(inp, rt,
1207 ipv4_scope, loopscope);
1208 goto out;
1209 }
1210 /* this should not be reached */
1211 memset(&ans, 0, sizeof(ans));
1212 out:
1213 rtcache_unref(rt, ro);
1214 return ans;
1215 }
1216
1217
1218
1219 static struct sockaddr_in6 *
1220 sctp_is_v6_ifa_addr_acceptable (struct ifaddr *ifa, int loopscope, int loc_scope, int *sin_loop, int *sin_local)
1221 {
1222 struct in6_ifaddr *ifa6;
1223 struct sockaddr_in6 *sin6;
1224
1225 if (ifa->ifa_addr->sa_family != AF_INET6) {
1226 /* forget non-v6 */
1227 return (NULL);
1228 }
1229 ifa6 = (struct in6_ifaddr *)ifa;
1230 /* ok to use deprecated addresses? */
1231 if (!ip6_use_deprecated) {
1232 if (IFA6_IS_DEPRECATED(ifa6)) {
1233 /* can't use this type */
1234 return (NULL);
1235 }
1236 }
1237 /* are we ok, with the current state of this address? */
1238 if (ifa6->ia6_flags &
1239 (IN6_IFF_DETACHED | IN6_IFF_NOTREADY | IN6_IFF_ANYCAST)) {
1240 /* Can't use these types */
1241 return (NULL);
1242 }
1243 /* Ok the address may be ok */
1244 sin6 = (struct sockaddr_in6 *)ifa->ifa_addr;
1245 *sin_local = *sin_loop = 0;
1246 if ((ifa->ifa_ifp->if_type == IFT_LOOP) ||
1247 (IN6_IS_ADDR_LOOPBACK(&sin6->sin6_addr))) {
1248 *sin_loop = 1;
1249 }
1250 if (!loopscope && *sin_loop) {
1251 /* Its a loopback address and we don't have loop scope */
1252 return (NULL);
1253 }
1254 if (IN6_IS_ADDR_UNSPECIFIED(&sin6->sin6_addr)) {
1255 /* we skip unspecifed addresses */
1256 return (NULL);
1257 }
1258
1259 if (IN6_IS_ADDR_LINKLOCAL(&sin6->sin6_addr)) {
1260 *sin_local = 1;
1261 }
1262 if (!loc_scope && *sin_local) {
1263 /* Its a link local address, and we don't have link local scope */
1264 return (NULL);
1265 }
1266 return (sin6);
1267 }
1268
1269
1270 static struct sockaddr_in6 *
1271 sctp_choose_v6_boundspecific_stcb(struct sctp_inpcb *inp,
1272 struct sctp_tcb *stcb,
1273 struct sctp_nets *net,
1274 struct rtentry *rt,
1275 uint8_t loc_scope,
1276 uint8_t loopscope,
1277 int non_asoc_addr_ok)
1278 {
1279 /*
1280 * Each endpoint has a list of local addresses associated
1281 * with it. The address list is either a "negative list" i.e.
1282 * those addresses that are NOT allowed to be used as a source OR
1283 * a "postive list" i.e. those addresses that CAN be used.
1284 *
1285 * Its a negative list if asconf is allowed. What we do
1286 * in this case is use the ep address list BUT we have
1287 * to cross check it against the negative list.
1288 *
1289 * In the case where NO asconf is allowed, we have just
1290 * a straight association level list that we must use to
1291 * find a source address.
1292 */
1293 struct sctp_laddr *laddr, *starting_point;
1294 struct sockaddr_in6 *sin6;
1295 int sin_loop, sin_local;
1296 int start_at_beginning=0;
1297 struct ifnet *ifn;
1298 struct ifaddr *ifa;
1299
1300 ifn = rt->rt_ifp;
1301 if (inp->sctp_flags & SCTP_PCB_FLAGS_DO_ASCONF) {
1302 #ifdef SCTP_DEBUG
1303 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
1304 printf("Have a STCB - asconf allowed, not bound all have a netgative list\n");
1305 }
1306 #endif
1307 /* first question, is the ifn we will emit on
1308 * in our list, if so, we want that one.
1309 */
1310 if (ifn) {
1311 IFADDR_READER_FOREACH(ifa, ifn) {
1312 if (sctp_is_addr_in_ep(inp, ifa)) {
1313 sin6 = sctp_is_v6_ifa_addr_acceptable (ifa, loopscope, loc_scope, &sin_loop, &sin_local);
1314 if (sin6 == NULL)
1315 continue;
1316 if ((non_asoc_addr_ok == 0) &&
1317 (sctp_is_addr_restricted(stcb, (struct sockaddr *)sin6))) {
1318 /* on the no-no list */
1319 continue;
1320 }
1321 return (sin6);
1322 }
1323 }
1324 }
1325 starting_point = stcb->asoc.last_used_address;
1326 /* First try for matching scope */
1327 sctp_from_the_top:
1328 if (stcb->asoc.last_used_address == NULL) {
1329 start_at_beginning=1;
1330 stcb->asoc.last_used_address = LIST_FIRST(&inp->sctp_addr_list);
1331 }
1332 /* search beginning with the last used address */
1333 for (laddr = stcb->asoc.last_used_address; laddr;
1334 laddr = LIST_NEXT(laddr, sctp_nxt_addr)) {
1335 if (laddr->ifa == NULL) {
1336 /* address has been removed */
1337 continue;
1338 }
1339 sin6 = sctp_is_v6_ifa_addr_acceptable (laddr->ifa, loopscope, loc_scope, &sin_loop, &sin_local);
1340 if (sin6 == NULL)
1341 continue;
1342 if ((non_asoc_addr_ok == 0) && (sctp_is_addr_restricted(stcb, (struct sockaddr *)sin6))) {
1343 /* on the no-no list */
1344 continue;
1345 }
1346 /* is it of matching scope ? */
1347 if ((loopscope == 0) &&
1348 (loc_scope == 0) &&
1349 (sin_loop == 0) &&
1350 (sin_local == 0)) {
1351 /* all of global scope we are ok with it */
1352 return (sin6);
1353 }
1354 if (loopscope && sin_loop)
1355 /* both on the loopback, thats ok */
1356 return (sin6);
1357 if (loc_scope && sin_local)
1358 /* both local scope */
1359 return (sin6);
1360
1361 }
1362 if (start_at_beginning == 0) {
1363 stcb->asoc.last_used_address = NULL;
1364 goto sctp_from_the_top;
1365 }
1366 /* now try for any higher scope than the destination */
1367 stcb->asoc.last_used_address = starting_point;
1368 start_at_beginning = 0;
1369 sctp_from_the_top2:
1370 if (stcb->asoc.last_used_address == NULL) {
1371 start_at_beginning=1;
1372 stcb->asoc.last_used_address = LIST_FIRST(&inp->sctp_addr_list);
1373 }
1374 /* search beginning with the last used address */
1375 for (laddr = stcb->asoc.last_used_address; laddr;
1376 laddr = LIST_NEXT(laddr, sctp_nxt_addr)) {
1377 if (laddr->ifa == NULL) {
1378 /* address has been removed */
1379 continue;
1380 }
1381 sin6 = sctp_is_v6_ifa_addr_acceptable (laddr->ifa, loopscope, loc_scope, &sin_loop, &sin_local);
1382 if (sin6 == NULL)
1383 continue;
1384 if ((non_asoc_addr_ok == 0) && (sctp_is_addr_restricted(stcb, (struct sockaddr *)sin6))) {
1385 /* on the no-no list */
1386 continue;
1387 }
1388 return (sin6);
1389 }
1390 if (start_at_beginning == 0) {
1391 stcb->asoc.last_used_address = NULL;
1392 goto sctp_from_the_top2;
1393 }
1394 } else {
1395 #ifdef SCTP_DEBUG
1396 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
1397 printf("Have a STCB - no asconf allowed, not bound all have a postive list\n");
1398 }
1399 #endif
1400 /* First try for interface output match */
1401 LIST_FOREACH(laddr, &stcb->asoc.sctp_local_addr_list,
1402 sctp_nxt_addr) {
1403 if (laddr->ifa == NULL) {
1404 /* address has been removed */
1405 continue;
1406 }
1407 sin6 = sctp_is_v6_ifa_addr_acceptable (laddr->ifa, loopscope, loc_scope, &sin_loop, &sin_local);
1408 if (sin6 == NULL)
1409 continue;
1410 /* first question, is laddr->ifa an address associated with the emit interface */
1411 if (ifn) {
1412 IFADDR_READER_FOREACH(ifa, ifn) {
1413 if (laddr->ifa == ifa) {
1414 sin6 = (struct sockaddr_in6 *)laddr->ifa->ifa_addr;
1415 return (sin6);
1416 }
1417 if (sctp_cmpaddr(ifa->ifa_addr, laddr->ifa->ifa_addr) == 1) {
1418 sin6 = (struct sockaddr_in6 *)laddr->ifa->ifa_addr;
1419 return (sin6);
1420 }
1421 }
1422 }
1423 }
1424 /* Next try for matching scope */
1425 LIST_FOREACH(laddr, &stcb->asoc.sctp_local_addr_list,
1426 sctp_nxt_addr) {
1427 if (laddr->ifa == NULL) {
1428 /* address has been removed */
1429 continue;
1430 }
1431 sin6 = sctp_is_v6_ifa_addr_acceptable (laddr->ifa, loopscope, loc_scope, &sin_loop, &sin_local);
1432 if (sin6 == NULL)
1433 continue;
1434
1435 if ((loopscope == 0) &&
1436 (loc_scope == 0) &&
1437 (sin_loop == 0) &&
1438 (sin_local == 0)) {
1439 /* all of global scope we are ok with it */
1440 return (sin6);
1441 }
1442 if (loopscope && sin_loop)
1443 /* both on the loopback, thats ok */
1444 return (sin6);
1445 if (loc_scope && sin_local)
1446 /* both local scope */
1447 return (sin6);
1448 }
1449 /* ok, now try for a higher scope in the source address */
1450 /* First try for matching scope */
1451 LIST_FOREACH(laddr, &stcb->asoc.sctp_local_addr_list,
1452 sctp_nxt_addr) {
1453 if (laddr->ifa == NULL) {
1454 /* address has been removed */
1455 continue;
1456 }
1457 sin6 = sctp_is_v6_ifa_addr_acceptable (laddr->ifa, loopscope, loc_scope, &sin_loop, &sin_local);
1458 if (sin6 == NULL)
1459 continue;
1460 return (sin6);
1461 }
1462 }
1463 return (NULL);
1464 }
1465
1466 static struct sockaddr_in6 *
1467 sctp_choose_v6_boundspecific_inp(struct sctp_inpcb *inp,
1468 struct rtentry *rt,
1469 uint8_t loc_scope,
1470 uint8_t loopscope)
1471 {
1472 /*
1473 * Here we are bound specific and have only
1474 * an inp. We must find an address that is bound
1475 * that we can give out as a src address. We
1476 * prefer two addresses of same scope if we can
1477 * find them that way.
1478 */
1479 struct sctp_laddr *laddr;
1480 struct sockaddr_in6 *sin6;
1481 struct ifnet *ifn;
1482 struct ifaddr *ifa;
1483 int sin_loop, sin_local;
1484
1485 /* first question, is the ifn we will emit on
1486 * in our list, if so, we want that one.
1487 */
1488
1489 ifn = rt->rt_ifp;
1490 if (ifn) {
1491 IFADDR_READER_FOREACH(ifa, ifn) {
1492 sin6 = sctp_is_v6_ifa_addr_acceptable (ifa, loopscope, loc_scope, &sin_loop, &sin_local);
1493 if (sin6 == NULL)
1494 continue;
1495 if (sctp_is_addr_in_ep(inp, ifa)) {
1496 return (sin6);
1497 }
1498 }
1499 }
1500 for (laddr = LIST_FIRST(&inp->sctp_addr_list);
1501 laddr && (laddr != inp->next_addr_touse);
1502 laddr = LIST_NEXT(laddr, sctp_nxt_addr)) {
1503 if (laddr->ifa == NULL) {
1504 /* address has been removed */
1505 continue;
1506 }
1507 sin6 = sctp_is_v6_ifa_addr_acceptable (laddr->ifa, loopscope, loc_scope, &sin_loop, &sin_local);
1508 if (sin6 == NULL)
1509 continue;
1510
1511 if ((loopscope == 0) &&
1512 (loc_scope == 0) &&
1513 (sin_loop == 0) &&
1514 (sin_local == 0)) {
1515 /* all of global scope we are ok with it */
1516 return (sin6);
1517 }
1518 if (loopscope && sin_loop)
1519 /* both on the loopback, thats ok */
1520 return (sin6);
1521 if (loc_scope && sin_local)
1522 /* both local scope */
1523 return (sin6);
1524
1525 }
1526 /* if we reach here, we could not find two addresses
1527 * of the same scope to give out. Lets look for any higher level
1528 * scope for a source address.
1529 */
1530 for (laddr = LIST_FIRST(&inp->sctp_addr_list);
1531 laddr && (laddr != inp->next_addr_touse);
1532 laddr = LIST_NEXT(laddr, sctp_nxt_addr)) {
1533 if (laddr->ifa == NULL) {
1534 /* address has been removed */
1535 continue;
1536 }
1537 sin6 = sctp_is_v6_ifa_addr_acceptable (laddr->ifa, loopscope, loc_scope, &sin_loop, &sin_local);
1538 if (sin6 == NULL)
1539 continue;
1540 return (sin6);
1541 }
1542 /* no address bound can be a source for the destination */
1543 #ifdef SCTP_DEBUG
1544 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
1545 printf("Src address selection for EP, no acceptable src address found for address\n");
1546 }
1547 #endif
1548 return (NULL);
1549 }
1550
1551
1552 static struct sockaddr_in6 *
1553 sctp_select_v6_nth_addr_from_ifn_boundall (struct ifnet *ifn, struct sctp_tcb *stcb, int non_asoc_addr_ok, uint8_t loopscope,
1554 uint8_t loc_scope, int cur_addr_num, int match_scope)
1555 {
1556 struct ifaddr *ifa;
1557 struct sockaddr_in6 *sin6;
1558 int sin_loop, sin_local;
1559 int num_eligible_addr = 0;
1560
1561 IFADDR_READER_FOREACH(ifa, ifn) {
1562 sin6 = sctp_is_v6_ifa_addr_acceptable (ifa, loopscope, loc_scope, &sin_loop, &sin_local);
1563 if (sin6 == NULL)
1564 continue;
1565 if (stcb) {
1566 if ((non_asoc_addr_ok == 0) && sctp_is_addr_restricted(stcb, (struct sockaddr *)sin6)) {
1567 /* It is restricted for some reason.. probably
1568 * not yet added.
1569 */
1570 continue;
1571 }
1572 }
1573 if (match_scope) {
1574 /* Here we are asked to match scope if possible */
1575 if (loopscope && sin_loop)
1576 /* src and destination are loopback scope */
1577 return (sin6);
1578 if (loc_scope && sin_local)
1579 /* src and destination are local scope */
1580 return (sin6);
1581 if ((loopscope == 0) &&
1582 (loc_scope == 0) &&
1583 (sin_loop == 0) &&
1584 (sin_local == 0)) {
1585 /* src and destination are global scope */
1586 return (sin6);
1587 }
1588 continue;
1589 }
1590 if (num_eligible_addr == cur_addr_num) {
1591 /* this is it */
1592 return (sin6);
1593 }
1594 num_eligible_addr++;
1595 }
1596 return (NULL);
1597 }
1598
1599
1600 static int
1601 sctp_count_v6_num_eligible_boundall (struct ifnet *ifn, struct sctp_tcb *stcb,
1602 int non_asoc_addr_ok, uint8_t loopscope, uint8_t loc_scope)
1603 {
1604 struct ifaddr *ifa;
1605 struct sockaddr_in6 *sin6;
1606 int num_eligible_addr = 0;
1607 int sin_loop, sin_local;
1608
1609 IFADDR_READER_FOREACH(ifa, ifn) {
1610 sin6 = sctp_is_v6_ifa_addr_acceptable (ifa, loopscope, loc_scope, &sin_loop, &sin_local);
1611 if (sin6 == NULL)
1612 continue;
1613 if (stcb) {
1614 if ((non_asoc_addr_ok == 0) && sctp_is_addr_restricted(stcb, (struct sockaddr *)sin6)) {
1615 /* It is restricted for some reason.. probably
1616 * not yet added.
1617 */
1618 continue;
1619 }
1620 }
1621 num_eligible_addr++;
1622 }
1623 return (num_eligible_addr);
1624 }
1625
1626
1627 static struct sockaddr_in6 *
1628 sctp_choose_v6_boundall(struct sctp_inpcb *inp,
1629 struct sctp_tcb *stcb,
1630 struct sctp_nets *net,
1631 struct rtentry *rt,
1632 uint8_t loc_scope,
1633 uint8_t loopscope,
1634 int non_asoc_addr_ok)
1635 {
1636 /* Ok, we are bound all SO any address
1637 * is ok to use as long as it is NOT in the negative
1638 * list.
1639 */
1640 int num_eligible_addr;
1641 int cur_addr_num=0;
1642 int started_at_beginning=0;
1643 int match_scope_prefered;
1644 /* first question is, how many eligible addresses are
1645 * there for the destination ifn that we are using that
1646 * are within the proper scope?
1647 */
1648 struct ifnet *ifn;
1649 struct sockaddr_in6 *sin6;
1650 int s;
1651
1652 ifn = rt->rt_ifp;
1653 if (net) {
1654 cur_addr_num = net->indx_of_eligible_next_to_use;
1655 }
1656 if (cur_addr_num == 0) {
1657 match_scope_prefered = 1;
1658 } else {
1659 match_scope_prefered = 0;
1660 }
1661 num_eligible_addr = sctp_count_v6_num_eligible_boundall (ifn, stcb, non_asoc_addr_ok, loopscope, loc_scope);
1662 #ifdef SCTP_DEBUG
1663 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
1664 printf("Found %d eligible source addresses\n", num_eligible_addr);
1665 }
1666 #endif
1667 if (num_eligible_addr == 0) {
1668 /* no eligible addresses, we must use some other
1669 * interface address if we can find one.
1670 */
1671 goto bound_all_v6_plan_b;
1672 }
1673 /* Ok we have num_eligible_addr set with how many we can use,
1674 * this may vary from call to call due to addresses being deprecated etc..
1675 */
1676 if (cur_addr_num >= num_eligible_addr) {
1677 cur_addr_num = 0;
1678 }
1679 /* select the nth address from the list (where cur_addr_num is the nth) and
1680 * 0 is the first one, 1 is the second one etc...
1681 */
1682 #ifdef SCTP_DEBUG
1683 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
1684 printf("cur_addr_num:%d match_scope_prefered:%d select it\n",
1685 cur_addr_num, match_scope_prefered);
1686 }
1687 #endif
1688 sin6 = sctp_select_v6_nth_addr_from_ifn_boundall (ifn, stcb, non_asoc_addr_ok, loopscope,
1689 loc_scope, cur_addr_num, match_scope_prefered);
1690 if (match_scope_prefered && (sin6 == NULL)) {
1691 /* retry without the preference for matching scope */
1692 #ifdef SCTP_DEBUG
1693 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
1694 printf("retry with no match_scope_prefered\n");
1695 }
1696 #endif
1697 sin6 = sctp_select_v6_nth_addr_from_ifn_boundall (ifn, stcb, non_asoc_addr_ok, loopscope,
1698 loc_scope, cur_addr_num, 0);
1699 }
1700 if (sin6) {
1701 #ifdef SCTP_DEBUG
1702 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
1703 printf("Selected address %d ifn:%p for the route\n", cur_addr_num, ifn);
1704 }
1705 #endif
1706 if (net) {
1707 /* store so we get the next one */
1708 if (cur_addr_num < 255)
1709 net->indx_of_eligible_next_to_use = cur_addr_num + 1;
1710 else
1711 net->indx_of_eligible_next_to_use = 0;
1712 }
1713 return (sin6);
1714 }
1715 num_eligible_addr = 0;
1716 bound_all_v6_plan_b:
1717 /* ok, if we reach here we either fell through
1718 * due to something changing during an interrupt (unlikely)
1719 * or we have NO eligible source addresses for the ifn
1720 * of the route (most likely). We must look at all the other
1721 * interfaces EXCEPT rt->rt_ifp and do the same game.
1722 */
1723 #ifdef SCTP_DEBUG
1724 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
1725 printf("bound-all Plan B\n");
1726 }
1727 #endif
1728 if (inp->next_ifn_touse == NULL) {
1729 started_at_beginning=1;
1730 inp->next_ifn_touse = IFNET_READER_FIRST();
1731 #ifdef SCTP_DEBUG
1732 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
1733 printf("Start at first IFN:%p\n", inp->next_ifn_touse);
1734 }
1735 #endif
1736 } else {
1737 inp->next_ifn_touse = IFNET_READER_NEXT(inp->next_ifn_touse);
1738 #ifdef SCTP_DEBUG
1739 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
1740 printf("Resume at IFN:%p\n", inp->next_ifn_touse);
1741 }
1742 #endif
1743 if (inp->next_ifn_touse == NULL) {
1744 #ifdef SCTP_DEBUG
1745 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
1746 printf("IFN Resets\n");
1747 }
1748 #endif
1749 started_at_beginning=1;
1750 inp->next_ifn_touse = IFNET_READER_FIRST();
1751 }
1752 }
1753
1754 s = pserialize_read_enter();
1755 IFNET_READER_FOREACH(ifn) {
1756 if (loopscope == 0 && ifn->if_type == IFT_LOOP) {
1757 /* wrong base scope */
1758 continue;
1759 }
1760 if (loc_scope && (ifn->if_index != loc_scope)) {
1761 /* by definition the scope (from to->sin6_scopeid)
1762 * must match that of the interface. If not then
1763 * we could pick a wrong scope for the address.
1764 * Usually we don't hit plan-b since the route
1765 * handles this. However we can hit plan-b when
1766 * we send to local-host so the route is the
1767 * loopback interface, but the destination is a
1768 * link local.
1769 */
1770 continue;
1771 }
1772 if (ifn == rt->rt_ifp) {
1773 /* already looked at this guy */
1774 continue;
1775 }
1776 /* Address rotation will only work when we are not
1777 * rotating sourced interfaces and are using the interface
1778 * of the route. We would need to have a per interface index
1779 * in order to do proper rotation.
1780 */
1781 num_eligible_addr = sctp_count_v6_num_eligible_boundall (ifn, stcb, non_asoc_addr_ok, loopscope, loc_scope);
1782 #ifdef SCTP_DEBUG
1783 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
1784 printf("IFN:%p has %d eligible\n", ifn, num_eligible_addr);
1785 }
1786 #endif
1787 if (num_eligible_addr == 0) {
1788 /* none we can use */
1789 continue;
1790 }
1791 /* Ok we have num_eligible_addr set with how many we can use,
1792 * this may vary from call to call due to addresses being deprecated etc..
1793 */
1794 inp->next_ifn_touse = ifn;
1795
1796 /* select the first one we can find with perference for matching scope.
1797 */
1798 sin6 = sctp_select_v6_nth_addr_from_ifn_boundall (ifn, stcb, non_asoc_addr_ok, loopscope, loc_scope, 0, 1);
1799 if (sin6 == NULL) {
1800 /* can't find one with matching scope how about a source with higher
1801 * scope
1802 */
1803 sin6 = sctp_select_v6_nth_addr_from_ifn_boundall (ifn, stcb, non_asoc_addr_ok, loopscope, loc_scope, 0, 0);
1804 if (sin6 == NULL)
1805 /* Hmm, can't find one in the interface now */
1806 continue;
1807 }
1808 #ifdef SCTP_DEBUG
1809 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
1810 printf("Selected the %d'th address of ifn:%p\n",
1811 cur_addr_num, ifn);
1812 }
1813 #endif
1814 pserialize_read_exit(s);
1815 return (sin6);
1816 }
1817 pserialize_read_exit(s);
1818
1819 if (started_at_beginning == 0) {
1820 /* we have not been through all of them yet, force
1821 * us to go through them all.
1822 */
1823 #ifdef SCTP_DEBUG
1824 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
1825 printf("Force a recycle\n");
1826 }
1827 #endif
1828 inp->next_ifn_touse = NULL;
1829 goto bound_all_v6_plan_b;
1830 }
1831 return (NULL);
1832
1833 }
1834
1835 /* stcb and net may be NULL */
1836 struct in6_addr
1837 sctp_ipv6_source_address_selection(struct sctp_inpcb *inp,
1838 struct sctp_tcb *stcb, struct route *ro, struct sctp_nets *net,
1839 int non_asoc_addr_ok)
1840 {
1841 struct in6_addr ans;
1842 struct sockaddr_in6 *rt_addr;
1843 uint8_t loc_scope, loopscope;
1844 struct sockaddr_in6 to;
1845 struct rtentry *rt;
1846
1847 /*
1848 * This routine is tricky standard v6 src address
1849 * selection cannot take into account what we have
1850 * bound etc, so we can't use it.
1851 *
1852 * Instead here is what we must do:
1853 * 1) Make sure we have a route, if we
1854 * don't have a route we can never reach the peer.
1855 * 2) Once we have a route, determine the scope of the
1856 * route. Link local, loopback or global.
1857 * 3) Next we divide into three types. Either we
1858 * are bound all.. which means we want to use
1859 * one of the addresses of the interface we are
1860 * going out. <or>
1861 * 4a) We have not stcb, which means we are using the
1862 * specific addresses bound on an inp, in this
1863 * case we are similar to the stcb case (4b below)
1864 * accept the list is always a positive list.<or>
1865 * 4b) We are bound specific with a stcb, which means we have a
1866 * list of bound addresses and we must see if the
1867 * ifn of the route is actually one of the bound addresses.
1868 * If not, then we must rotate addresses amongst properly
1869 * scoped bound addresses, if so we use the address
1870 * of the interface.
1871 * 5) Always, no matter which path we take through the above
1872 * we must be sure the source address we use is allowed to
1873 * be used. I.e. IN6_IFF_DETACHED, IN6_IFF_NOTREADY, and IN6_IFF_ANYCAST
1874 * addresses cannot be used.
1875 * 6) Addresses that are deprecated MAY be used
1876 * if (!ip6_use_deprecated) {
1877 * if (IFA6_IS_DEPRECATED(ifa6)) {
1878 * skip the address
1879 * }
1880 * }
1881 */
1882
1883 /*** 1> determine route, if not already done */
1884 rt = rtcache_validate(ro);
1885 if (rt == NULL) {
1886 /*
1887 * Need a route to cache.
1888 */
1889 int scope_save;
1890
1891 memcpy(&to, rtcache_getdst(ro), sizeof(struct sockaddr));
1892 scope_save = to.sin6_scope_id;
1893 to.sin6_scope_id = 0;
1894
1895 rt = rtcache_lookup(ro, (struct sockaddr *)&to);
1896 to.sin6_scope_id = scope_save;
1897 }
1898 if (rt == NULL) {
1899 /*
1900 * no route to host. this packet is going no-where.
1901 * We probably should make sure we arrange to send back
1902 * an error.
1903 */
1904 #ifdef SCTP_DEBUG
1905 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
1906 printf("No route to host, this packet cannot be sent!\n");
1907 }
1908 #endif
1909 memset(&ans, 0, sizeof(ans));
1910 return (ans);
1911 }
1912
1913 /*** 2a> determine scope for outbound address/route */
1914 loc_scope = loopscope = 0;
1915 /*
1916 * We base our scope on the outbound packet scope and route,
1917 * NOT the TCB (if there is one). This way in local scope we will only
1918 * use a local scope src address when we send to a local address.
1919 */
1920
1921 if (IN6_IS_ADDR_LOOPBACK(&to.sin6_addr)) {
1922 /* If the route goes to the loopback address OR
1923 * the address is a loopback address, we are loopback
1924 * scope.
1925 */
1926 #ifdef SCTP_DEBUG
1927 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
1928 printf("Loopback scope is set\n");
1929 }
1930 #endif
1931 loc_scope = 0;
1932 loopscope = 1;
1933 if (net != NULL) {
1934 /* mark it as local */
1935 net->addr_is_local = 1;
1936 }
1937
1938 } else if (IN6_IS_ADDR_LINKLOCAL(&to.sin6_addr)) {
1939 #ifdef SCTP_DEBUG
1940 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
1941 printf("Link local scope is set, id:%d\n", to.sin6_scope_id);
1942 }
1943 #endif
1944 if (to.sin6_scope_id)
1945 loc_scope = to.sin6_scope_id;
1946 else {
1947 loc_scope = 1;
1948 }
1949 loopscope = 0;
1950 } else {
1951 #ifdef SCTP_DEBUG
1952 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
1953 printf("Global scope is set\n");
1954 }
1955 #endif
1956 }
1957
1958 /* now, depending on which way we are bound we call the appropriate
1959 * routine to do steps 3-6
1960 */
1961 #ifdef SCTP_DEBUG
1962 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
1963 printf("Destination address:");
1964 sctp_print_address((struct sockaddr *)&to);
1965 }
1966 #endif
1967
1968 if (inp->sctp_flags & SCTP_PCB_FLAGS_BOUNDALL) {
1969 #ifdef SCTP_DEBUG
1970 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
1971 printf("Calling bound-all src addr selection for v6\n");
1972 }
1973 #endif
1974 rt_addr = sctp_choose_v6_boundall(inp, stcb, net, rt, loc_scope, loopscope, non_asoc_addr_ok);
1975 } else {
1976 #ifdef SCTP_DEBUG
1977 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
1978 printf("Calling bound-specific src addr selection for v6\n");
1979 }
1980 #endif
1981 if (stcb)
1982 rt_addr = sctp_choose_v6_boundspecific_stcb(inp, stcb, net, rt, loc_scope, loopscope, non_asoc_addr_ok);
1983 else
1984 /* we can't have a non-asoc address since we have no association */
1985 rt_addr = sctp_choose_v6_boundspecific_inp(inp, rt, loc_scope, loopscope);
1986 }
1987 rtcache_unref(rt, ro);
1988 if (rt_addr == NULL) {
1989 /* no suitable address? */
1990 struct in6_addr in6;
1991 #ifdef SCTP_DEBUG
1992 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
1993 printf("V6 packet will reach dead-end no suitable src address\n");
1994 }
1995 #endif
1996 memset(&in6, 0, sizeof(in6));
1997 return (in6);
1998 }
1999 #ifdef SCTP_DEBUG
2000 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
2001 printf("Source address selected is:");
2002 sctp_print_address((struct sockaddr *)rt_addr);
2003 }
2004 #endif
2005 return (rt_addr->sin6_addr);
2006 }
2007
2008 static uint8_t
2009 sctp_get_ect(struct sctp_tcb *stcb,
2010 struct sctp_tmit_chunk *chk)
2011 {
2012 uint8_t this_random;
2013
2014 /* Huh? */
2015 if (sctp_ecn == 0)
2016 return (0);
2017
2018 if (sctp_ecn_nonce == 0)
2019 /* no nonce, always return ECT0 */
2020 return (SCTP_ECT0_BIT);
2021
2022 if (stcb->asoc.peer_supports_ecn_nonce == 0) {
2023 /* Peer does NOT support it, so we send a ECT0 only */
2024 return (SCTP_ECT0_BIT);
2025 }
2026
2027 if (chk == NULL)
2028 return (SCTP_ECT0_BIT);
2029
2030 if (((stcb->asoc.hb_random_idx == 3) &&
2031 (stcb->asoc.hb_ect_randombit > 7)) ||
2032 (stcb->asoc.hb_random_idx > 3)) {
2033 uint32_t rndval;
2034 rndval = sctp_select_initial_TSN(&stcb->sctp_ep->sctp_ep);
2035 memcpy(stcb->asoc.hb_random_values, &rndval,
2036 sizeof(stcb->asoc.hb_random_values));
2037 this_random = stcb->asoc.hb_random_values[0];
2038 stcb->asoc.hb_random_idx = 0;
2039 stcb->asoc.hb_ect_randombit = 0;
2040 } else {
2041 if (stcb->asoc.hb_ect_randombit > 7) {
2042 stcb->asoc.hb_ect_randombit = 0;
2043 stcb->asoc.hb_random_idx++;
2044 }
2045 this_random = stcb->asoc.hb_random_values[stcb->asoc.hb_random_idx];
2046 }
2047 if ((this_random >> stcb->asoc.hb_ect_randombit) & 0x01) {
2048 if (chk != NULL)
2049 /* ECN Nonce stuff */
2050 chk->rec.data.ect_nonce = SCTP_ECT1_BIT;
2051 stcb->asoc.hb_ect_randombit++;
2052 return (SCTP_ECT1_BIT);
2053 } else {
2054 stcb->asoc.hb_ect_randombit++;
2055 return (SCTP_ECT0_BIT);
2056 }
2057 }
2058
2059 extern int sctp_no_csum_on_loopback;
2060
2061 static int
2062 sctp_lowlevel_chunk_output(struct sctp_inpcb *inp,
2063 struct sctp_tcb *stcb, /* may be NULL */
2064 struct sctp_nets *net,
2065 const struct sockaddr *to,
2066 struct mbuf *m,
2067 int nofragment_flag,
2068 int ecn_ok,
2069 struct sctp_tmit_chunk *chk,
2070 int out_of_asoc_ok)
2071 /* nofragment_flag to tell if IP_DF should be set (IPv4 only) */
2072 {
2073 /*
2074 * Given a mbuf chain (via m_next) that holds a packet header
2075 * WITH a SCTPHDR but no IP header, endpoint inp and sa structure.
2076 * - calculate SCTP checksum and fill in
2077 * - prepend a IP address header
2078 * - if boundall use INADDR_ANY
2079 * - if boundspecific do source address selection
2080 * - set fragmentation option for ipV4
2081 * - On return from IP output, check/adjust mtu size
2082 * - of output interface and smallest_mtu size as well.
2083 */
2084 struct sctphdr *sctphdr;
2085 int o_flgs;
2086 uint32_t csum;
2087 int ret;
2088 unsigned int have_mtu;
2089 struct route *ro;
2090 struct rtentry *rt;
2091
2092 if ((net) && (net->dest_state & SCTP_ADDR_OUT_OF_SCOPE)) {
2093 sctp_m_freem(m);
2094 return (EFAULT);
2095 }
2096 if ((m->m_flags & M_PKTHDR) == 0) {
2097 #ifdef SCTP_DEBUG
2098 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
2099 printf("Software error: sctp_lowlevel_chunk_output() called with non pkthdr!\n");
2100 }
2101 #endif
2102 sctp_m_freem(m);
2103 return (EFAULT);
2104 }
2105 /* Calculate the csum and fill in the length of the packet */
2106 sctphdr = mtod(m, struct sctphdr *);
2107 have_mtu = 0;
2108 if (sctp_no_csum_on_loopback &&
2109 (stcb) &&
2110 (stcb->asoc.loopback_scope)) {
2111 sctphdr->checksum = 0;
2112 m->m_pkthdr.len = sctp_calculate_len(m);
2113 } else {
2114 sctphdr->checksum = 0;
2115 csum = sctp_calculate_sum(m, &m->m_pkthdr.len, 0);
2116 sctphdr->checksum = csum;
2117 }
2118 if (to->sa_family == AF_INET) {
2119 struct ip *ip;
2120 static struct route iproute;
2121 M_PREPEND(m, sizeof(struct ip), M_DONTWAIT);
2122 if (m == NULL) {
2123 /* failed to prepend data, give up */
2124 return (ENOMEM);
2125 }
2126 ip = mtod(m, struct ip *);
2127 ip->ip_v = IPVERSION;
2128 ip->ip_hl = (sizeof(struct ip) >> 2);
2129 if (nofragment_flag) {
2130 ip->ip_off = htons(IP_DF);
2131 } else
2132 ip->ip_off = 0;
2133
2134 ip->ip_id = htons(ip_newid(NULL));
2135 ip->ip_ttl = inp->inp_ip_ttl;
2136 ip->ip_len = htons(m->m_pkthdr.len);
2137 if (stcb) {
2138 if ((stcb->asoc.ecn_allowed) && ecn_ok) {
2139 /* Enable ECN */
2140 ip->ip_tos = (u_char)((inp->ip_inp.inp.inp_ip.ip_tos & 0x000000fc) |
2141 sctp_get_ect(stcb, chk));
2142 } else {
2143 /* No ECN */
2144 ip->ip_tos = inp->ip_inp.inp.inp_ip.ip_tos;
2145 }
2146 } else {
2147 /* no association at all */
2148 ip->ip_tos = inp->inp_ip_tos;
2149 }
2150 ip->ip_p = IPPROTO_SCTP;
2151 ip->ip_sum = 0;
2152 #ifdef SCTP_DEBUG
2153 printf("chunk_output: net %p\n", net);
2154 #endif
2155 if (net == NULL) {
2156 ro = &iproute;
2157 memset(&iproute, 0, sizeof(iproute));
2158 /* XXX */
2159 rt = rtcache_lookup(ro, to);
2160 rtcache_unref(rt, ro);
2161 } else {
2162 ro = (struct route *)&net->ro;
2163 }
2164 /* Now the address selection part */
2165 ip->ip_dst.s_addr = satocsin(to)->sin_addr.s_addr;
2166
2167 /* call the routine to select the src address */
2168 if (net) {
2169 if (net->src_addr_selected == 0) {
2170 /* Cache the source address */
2171 ((struct sockaddr_in *)&net->_s_addr)->sin_addr = sctp_ipv4_source_address_selection(inp,
2172 stcb,
2173 ro, net, out_of_asoc_ok);
2174 rt = rtcache_validate(ro);
2175 if (rt != NULL) {
2176 net->src_addr_selected = 1;
2177 }
2178 rtcache_unref(rt, ro);
2179 }
2180 ip->ip_src = ((struct sockaddr_in *)&net->_s_addr)->sin_addr;
2181 } else {
2182 ip->ip_src = sctp_ipv4_source_address_selection(inp,
2183 stcb, ro, net, out_of_asoc_ok);
2184 }
2185 #ifdef SCTP_DEBUG
2186 printf("src addr %x\n", ip->ip_src.s_addr);
2187 #endif
2188 /*
2189 * If source address selection fails and we find no route then
2190 * the ip_ouput should fail as well with a NO_ROUTE_TO_HOST
2191 * type error. We probably should catch that somewhere and
2192 * abort the association right away (assuming this is an INIT
2193 * being sent).
2194 */
2195 rt = rtcache_validate(ro);
2196 if (rt == NULL) {
2197 /*
2198 * src addr selection failed to find a route (or valid
2199 * source addr), so we can't get there from here!
2200 */
2201 #ifdef SCTP_DEBUG
2202 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
2203 printf("low_level_output: dropped v4 packet- no valid source addr\n");
2204 printf("Destination was %x\n", (u_int)(ntohl(ip->ip_dst.s_addr)));
2205 }
2206 #endif /* SCTP_DEBUG */
2207 if (net) {
2208 if ((net->dest_state & SCTP_ADDR_REACHABLE) && stcb)
2209 sctp_ulp_notify(SCTP_NOTIFY_INTERFACE_DOWN,
2210 stcb,
2211 SCTP_FAILED_THRESHOLD,
2212 (void *)net);
2213 net->dest_state &= ~SCTP_ADDR_REACHABLE;
2214 net->dest_state |= SCTP_ADDR_NOT_REACHABLE;
2215 if (stcb) {
2216 if (net == stcb->asoc.primary_destination) {
2217 /* need a new primary */
2218 struct sctp_nets *alt;
2219 alt = sctp_find_alternate_net(stcb, net);
2220 if (alt != net) {
2221 if (sctp_set_primary_addr(stcb,
2222 (struct sockaddr *)NULL,
2223 alt) == 0) {
2224 net->dest_state |= SCTP_ADDR_WAS_PRIMARY;
2225 net->src_addr_selected = 0;
2226 }
2227 }
2228 }
2229 }
2230 }
2231 sctp_m_freem(m);
2232 return (EHOSTUNREACH);
2233 } else {
2234 have_mtu = rt->rt_ifp->if_mtu;
2235 }
2236
2237 o_flgs = (IP_RAWOUTPUT | (inp->sctp_socket->so_options & (SO_DONTROUTE | SO_BROADCAST)));
2238 #ifdef SCTP_DEBUG
2239 if (sctp_debug_on & SCTP_DEBUG_OUTPUT3) {
2240 printf("Calling ipv4 output routine from low level src addr:%x\n",
2241 (u_int)(ntohl(ip->ip_src.s_addr)));
2242 printf("Destination is %x\n", (u_int)(ntohl(ip->ip_dst.s_addr)));
2243 printf("RTP route is %p through\n", rt);
2244 printf("length %d\n", ntohs(ip->ip_len));
2245 }
2246 #endif
2247 if ((have_mtu) && (net) && (have_mtu > net->mtu)) {
2248 rt->rt_ifp->if_mtu = net->mtu;
2249 }
2250 ret = ip_output(m, inp->ip_inp.inp.inp_options,
2251 ro, o_flgs, inp->ip_inp.inp.inp_moptions,
2252 &inp->ip_inp.inp);
2253 if ((rt) && (have_mtu) && (net) && (have_mtu > net->mtu)) {
2254 rt->rt_ifp->if_mtu = have_mtu;
2255 }
2256 sctp_pegs[SCTP_DATAGRAMS_SENT]++;
2257 #ifdef SCTP_DEBUG
2258 if (sctp_debug_on & SCTP_DEBUG_OUTPUT3) {
2259 printf("Ip output returns %d\n", ret);
2260 }
2261 #endif
2262 if (net == NULL) {
2263 } else {
2264 /* PMTU check versus smallest asoc MTU goes here */
2265 if (rt != NULL) {
2266 if (rt->rt_rmx.rmx_mtu &&
2267 (stcb->asoc.smallest_mtu > rt->rt_rmx.rmx_mtu)) {
2268 sctp_mtu_size_reset(inp, &stcb->asoc,
2269 rt->rt_rmx.rmx_mtu);
2270 }
2271 } else {
2272 /* route was freed */
2273 net->src_addr_selected = 0;
2274 }
2275 }
2276 rtcache_unref(rt, ro);
2277 return (ret);
2278 }
2279 #ifdef INET6
2280 else if (to->sa_family == AF_INET6) {
2281 struct ip6_hdr *ip6h;
2282 static struct route ip6route;
2283 struct ifnet *ifp;
2284 u_char flowTop;
2285 uint16_t flowBottom;
2286 u_char tosBottom, tosTop;
2287 struct sockaddr_in6 *sin6, tmp, *lsa6, lsa6_tmp;
2288 int prev_scope=0;
2289 u_short prev_port=0;
2290
2291 M_PREPEND(m, sizeof(struct ip6_hdr), M_DONTWAIT);
2292 if (m == NULL) {
2293 /* failed to prepend data, give up */
2294 return (ENOMEM);
2295 }
2296 ip6h = mtod(m, struct ip6_hdr *);
2297
2298 /*
2299 * We assume here that inp_flow is in host byte order within
2300 * the TCB!
2301 */
2302 flowBottom = ((struct in6pcb *)inp)->in6p_flowinfo & 0x0000ffff;
2303 flowTop = ((((struct in6pcb *)inp)->in6p_flowinfo & 0x000f0000) >> 16);
2304
2305 tosTop = (((((struct in6pcb *)inp)->in6p_flowinfo & 0xf0) >> 4) | IPV6_VERSION);
2306
2307 /* protect *sin6 from overwrite */
2308 memcpy(&tmp, to, sizeof(struct sockaddr_in6));
2309 sin6 = &tmp;
2310
2311 /* KAME hack: embed scopeid */
2312 #if defined(SCTP_BASE_FREEBSD) || defined(__APPLE__)
2313 if (in6_embedscope(&sin6->sin6_addr, sin6, NULL, NULL) != 0)
2314 #else
2315 /*
2316 * XXX: appropriate scope zone must be provided or otherwise
2317 * ip6_use_defzone must be 1.
2318 */
2319 if (sa6_embedscope(sin6, ip6_use_defzone) != 0)
2320 #endif
2321 return (EINVAL);
2322 if (net == NULL) {
2323 memset(&ip6route, 0, sizeof(ip6route));
2324 ro = (struct route *)&ip6route;
2325 /* XXX */
2326 rt = rtcache_lookup(ro, (struct sockaddr *) sin6);
2327 rtcache_unref(rt, ro);
2328 } else {
2329 ro = (struct route *)&net->ro;
2330 }
2331 if (stcb != NULL) {
2332 if ((stcb->asoc.ecn_allowed) && ecn_ok) {
2333 /* Enable ECN */
2334 tosBottom = (((((struct in6pcb *)inp)->in6p_flowinfo & 0x0c) | sctp_get_ect(stcb, chk)) << 4);
2335 } else {
2336 /* No ECN */
2337 tosBottom = ((((struct in6pcb *)inp)->in6p_flowinfo & 0x0c) << 4);
2338 }
2339 } else {
2340 /* we could get no asoc if it is a O-O-T-B packet */
2341 tosBottom = ((((struct in6pcb *)inp)->in6p_flowinfo & 0x0c) << 4);
2342 }
2343 ip6h->ip6_flow = htonl(((tosTop << 24) | ((tosBottom|flowTop) << 16) | flowBottom));
2344 ip6h->ip6_nxt = IPPROTO_SCTP;
2345 ip6h->ip6_plen = m->m_pkthdr.len;
2346 ip6h->ip6_dst = sin6->sin6_addr;
2347
2348 /*
2349 * Add SRC address selection here:
2350 * we can only reuse to a limited degree the kame src-addr-sel,
2351 * since we can try their selection but it may not be bound.
2352 */
2353 memset(&lsa6_tmp, 0, sizeof(lsa6_tmp));
2354 lsa6_tmp.sin6_family = AF_INET6;
2355 lsa6_tmp.sin6_len = sizeof(lsa6_tmp);
2356 lsa6 = &lsa6_tmp;
2357 rt = rtcache_validate(ro);
2358 if (net) {
2359 if (net->src_addr_selected == 0) {
2360 /* Cache the source address */
2361 ((struct sockaddr_in6 *)&net->_s_addr)->sin6_addr = sctp_ipv6_source_address_selection(inp,
2362 stcb, ro, net, out_of_asoc_ok);
2363
2364 if (rt != NULL) {
2365 net->src_addr_selected = 1;
2366 }
2367 }
2368 lsa6->sin6_addr = ((struct sockaddr_in6 *)&net->_s_addr)->sin6_addr;
2369 } else {
2370 lsa6->sin6_addr = sctp_ipv6_source_address_selection(
2371 inp, stcb, ro, net, out_of_asoc_ok);
2372 }
2373 lsa6->sin6_port = inp->sctp_lport;
2374
2375 if (rt == NULL) {
2376 /*
2377 * src addr selection failed to find a route (or valid
2378 * source addr), so we can't get there from here!
2379 */
2380 #ifdef SCTP_DEBUG
2381 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
2382 printf("low_level_output: dropped v6 pkt- no valid source addr\n");
2383 }
2384 #endif
2385 sctp_m_freem(m);
2386 if (net) {
2387 if ((net->dest_state & SCTP_ADDR_REACHABLE) && stcb)
2388 sctp_ulp_notify(SCTP_NOTIFY_INTERFACE_DOWN,
2389 stcb,
2390 SCTP_FAILED_THRESHOLD,
2391 (void *)net);
2392 net->dest_state &= ~SCTP_ADDR_REACHABLE;
2393 net->dest_state |= SCTP_ADDR_NOT_REACHABLE;
2394 if (stcb) {
2395 if (net == stcb->asoc.primary_destination) {
2396 /* need a new primary */
2397 struct sctp_nets *alt;
2398 alt = sctp_find_alternate_net(stcb, net);
2399 if (alt != net) {
2400 if (sctp_set_primary_addr(stcb,
2401 (struct sockaddr *)NULL,
2402 alt) == 0) {
2403 net->dest_state |= SCTP_ADDR_WAS_PRIMARY;
2404 net->src_addr_selected = 0;
2405 }
2406 }
2407 }
2408 }
2409 }
2410 return (EHOSTUNREACH);
2411 }
2412
2413 ip6h->ip6_src = lsa6->sin6_addr;
2414
2415 /*
2416 * We set the hop limit now since there is a good chance that
2417 * our ro pointer is now filled
2418 */
2419 ip6h->ip6_hlim = in6_selecthlim((struct in6pcb *)&inp->ip_inp.inp,
2420 (ro ?
2421 (rt ? (rt->rt_ifp) : (NULL)) :
2422 (NULL)));
2423 o_flgs = 0;
2424 ifp = rt->rt_ifp;
2425 #ifdef SCTP_DEBUG
2426 if (sctp_debug_on & SCTP_DEBUG_OUTPUT3) {
2427 /* Copy to be sure something bad is not happening */
2428 sin6->sin6_addr = ip6h->ip6_dst;
2429 lsa6->sin6_addr = ip6h->ip6_src;
2430
2431 printf("Calling ipv6 output routine from low level\n");
2432 printf("src: ");
2433 sctp_print_address((struct sockaddr *)lsa6);
2434 printf("dst: ");
2435 sctp_print_address((struct sockaddr *)sin6);
2436 }
2437 #endif /* SCTP_DEBUG */
2438 if (net) {
2439 sin6 = (struct sockaddr_in6 *)&net->ro.ro_sa;
2440 /* preserve the port and scope for link local send */
2441 prev_scope = sin6->sin6_scope_id;
2442 prev_port = sin6->sin6_port;
2443 }
2444 /* XXX NOMPSAFE need to hold ifp here */
2445 rtcache_unref(rt, ro);
2446 ret = ip6_output(m, ((struct in6pcb *)inp)->in6p_outputopts,
2447 ro,
2448 o_flgs,
2449 ((struct in6pcb *)inp)->in6p_moptions,
2450 (struct in6pcb *)inp,
2451 &ifp);
2452 if (net) {
2453 /* for link local this must be done */
2454 sin6->sin6_scope_id = prev_scope;
2455 sin6->sin6_port = prev_port;
2456 }
2457 #ifdef SCTP_DEBUG
2458 if (sctp_debug_on & SCTP_DEBUG_OUTPUT3) {
2459 printf("return from send is %d\n", ret);
2460 }
2461 #endif /* SCTP_DEBUG_OUTPUT */
2462 sctp_pegs[SCTP_DATAGRAMS_SENT]++;
2463 if (net) {
2464 /* PMTU check versus smallest asoc MTU goes here */
2465 rt = rtcache_validate(ro);
2466 if (rt == NULL) {
2467 /* Route was freed */
2468 net->src_addr_selected = 0;
2469 }
2470 if (rt != NULL) {
2471 if (rt->rt_rmx.rmx_mtu &&
2472 (stcb->asoc.smallest_mtu > rt->rt_rmx.rmx_mtu)) {
2473 sctp_mtu_size_reset(inp,
2474 &stcb->asoc,
2475 rt->rt_rmx.rmx_mtu);
2476 }
2477 rtcache_unref(rt, ro);
2478 } else if (ifp) {
2479 if (ND_IFINFO(ifp)->linkmtu &&
2480 (stcb->asoc.smallest_mtu > ND_IFINFO(ifp)->linkmtu)) {
2481 sctp_mtu_size_reset(inp,
2482 &stcb->asoc,
2483 ND_IFINFO(ifp)->linkmtu);
2484 }
2485 }
2486 }
2487 return (ret);
2488 }
2489 #endif
2490 else {
2491 #ifdef SCTP_DEBUG
2492 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
2493 printf("Unknown protocol (TSNH) type %d\n", ((const struct sockaddr *)to)->sa_family);
2494 }
2495 #endif
2496 sctp_m_freem(m);
2497 return (EFAULT);
2498 }
2499 }
2500
2501 static
2502 int sctp_is_address_in_scope(struct ifaddr *ifa,
2503 int ipv4_addr_legal,
2504 int ipv6_addr_legal,
2505 int loopback_scope,
2506 int ipv4_local_scope,
2507 int local_scope,
2508 int site_scope)
2509 {
2510 if ((loopback_scope == 0) && (ifa->ifa_ifp->if_type == IFT_LOOP)) {
2511 /* skip loopback if not in scope *
2512 */
2513 return (0);
2514 }
2515 if ((ifa->ifa_addr->sa_family == AF_INET) && ipv4_addr_legal) {
2516 struct sockaddr_in *sin;
2517 sin = (struct sockaddr_in *)ifa->ifa_addr;
2518 if (sin->sin_addr.s_addr == 0) {
2519 /* not in scope , unspecified */
2520 return (0);
2521 }
2522 if ((ipv4_local_scope == 0) &&
2523 (IN4_ISPRIVATE_ADDRESS(&sin->sin_addr))) {
2524 /* private address not in scope */
2525 return (0);
2526 }
2527 } else if ((ifa->ifa_addr->sa_family == AF_INET6) && ipv6_addr_legal) {
2528 struct sockaddr_in6 *sin6;
2529 struct in6_ifaddr *ifa6;
2530
2531 ifa6 = (struct in6_ifaddr *)ifa;
2532 /* ok to use deprecated addresses? */
2533 if (!ip6_use_deprecated) {
2534 if (ifa6->ia6_flags &
2535 IN6_IFF_DEPRECATED) {
2536 return (0);
2537 }
2538 }
2539 if (ifa6->ia6_flags &
2540 (IN6_IFF_DETACHED |
2541 IN6_IFF_ANYCAST |
2542 IN6_IFF_NOTREADY)) {
2543 return (0);
2544 }
2545 sin6 = (struct sockaddr_in6 *)ifa->ifa_addr;
2546 if (IN6_IS_ADDR_UNSPECIFIED(&sin6->sin6_addr)) {
2547 /* skip unspecifed addresses */
2548 return (0);
2549 }
2550 if (/*(local_scope == 0) && */
2551 (IN6_IS_ADDR_LINKLOCAL(&sin6->sin6_addr))) {
2552 return (0);
2553 }
2554 if ((site_scope == 0) &&
2555 (IN6_IS_ADDR_SITELOCAL(&sin6->sin6_addr))) {
2556 return (0);
2557 }
2558 } else {
2559 return (0);
2560 }
2561 return (1);
2562 }
2563
2564
2565 void
2566 sctp_send_initiate(struct sctp_inpcb *inp, struct sctp_tcb *stcb)
2567 {
2568 struct mbuf *m, *m_at, *m_last;
2569 struct sctp_nets *net;
2570 struct sctp_init_msg *initm;
2571 struct sctp_supported_addr_param *sup_addr;
2572 struct sctp_ecn_supported_param *ecn;
2573 struct sctp_prsctp_supported_param *prsctp;
2574 struct sctp_ecn_nonce_supported_param *ecn_nonce;
2575 struct sctp_supported_chunk_types_param *pr_supported;
2576 int cnt_inits_to=0;
2577 int padval, ret;
2578
2579 /* INIT's always go to the primary (and usually ONLY address) */
2580 m_last = NULL;
2581 net = stcb->asoc.primary_destination;
2582 if (net == NULL) {
2583 net = TAILQ_FIRST(&stcb->asoc.nets);
2584 if (net == NULL) {
2585 /* TSNH */
2586 return;
2587 }
2588 /* we confirm any address we send an INIT to */
2589 net->dest_state &= ~SCTP_ADDR_UNCONFIRMED;
2590 sctp_set_primary_addr(stcb, NULL, net);
2591 } else {
2592 /* we confirm any address we send an INIT to */
2593 net->dest_state &= ~SCTP_ADDR_UNCONFIRMED;
2594 }
2595 #ifdef SCTP_DEBUG
2596 if (sctp_debug_on & SCTP_DEBUG_OUTPUT4) {
2597 printf("Sending INIT to ");
2598 sctp_print_address (rtcache_getdst(&net->ro));
2599 }
2600 #endif
2601 if (rtcache_getdst(&net->ro)->sa_family == AF_INET6) {
2602 /* special hook, if we are sending to link local
2603 * it will not show up in our private address count.
2604 */
2605 if (IN6_IS_ADDR_LINKLOCAL((const struct in6_addr *) rtcache_getdst(&net->ro)->sa_data))
2606 cnt_inits_to = 1;
2607 }
2608 if (callout_pending(&net->rxt_timer.timer)) {
2609 /* This case should not happen */
2610 return;
2611 }
2612 /* start the INIT timer */
2613 if (sctp_timer_start(SCTP_TIMER_TYPE_INIT, inp, stcb, net)) {
2614 /* we are hosed since I can't start the INIT timer? */
2615 return;
2616 }
2617 MGETHDR(m, M_DONTWAIT, MT_HEADER);
2618 if (m == NULL) {
2619 /* No memory, INIT timer will re-attempt. */
2620 return;
2621 }
2622 /* make it into a M_EXT */
2623 MCLGET(m, M_DONTWAIT);
2624 if ((m->m_flags & M_EXT) != M_EXT) {
2625 /* Failed to get cluster buffer */
2626 sctp_m_freem(m);
2627 return;
2628 }
2629 m->m_data += SCTP_MIN_OVERHEAD;
2630 m->m_len = sizeof(struct sctp_init_msg);
2631 /* Now lets put the SCTP header in place */
2632 initm = mtod(m, struct sctp_init_msg *);
2633 initm->sh.src_port = inp->sctp_lport;
2634 initm->sh.dest_port = stcb->rport;
2635 initm->sh.v_tag = 0;
2636 initm->sh.checksum = 0; /* calculate later */
2637 /* now the chunk header */
2638 initm->msg.ch.chunk_type = SCTP_INITIATION;
2639 initm->msg.ch.chunk_flags = 0;
2640 /* fill in later from mbuf we build */
2641 initm->msg.ch.chunk_length = 0;
2642 /* place in my tag */
2643 initm->msg.init.initiate_tag = htonl(stcb->asoc.my_vtag);
2644 /* set up some of the credits. */
2645 initm->msg.init.a_rwnd = htonl(uimax(inp->sctp_socket->so_rcv.sb_hiwat,
2646 SCTP_MINIMAL_RWND));
2647
2648 initm->msg.init.num_outbound_streams = htons(stcb->asoc.pre_open_streams);
2649 initm->msg.init.num_inbound_streams = htons(stcb->asoc.max_inbound_streams);
2650 initm->msg.init.initial_tsn = htonl(stcb->asoc.init_seq_number);
2651 /* now the address restriction */
2652 sup_addr = (struct sctp_supported_addr_param *)((vaddr_t)initm +
2653 sizeof(*initm));
2654 sup_addr->ph.param_type = htons(SCTP_SUPPORTED_ADDRTYPE);
2655 /* we support 2 types IPv6/IPv4 */
2656 sup_addr->ph.param_length = htons(sizeof(*sup_addr) +
2657 sizeof(uint16_t));
2658 sup_addr->addr_type[0] = htons(SCTP_IPV4_ADDRESS);
2659 sup_addr->addr_type[1] = htons(SCTP_IPV6_ADDRESS);
2660 m->m_len += sizeof(*sup_addr) + sizeof(uint16_t);
2661
2662 /* if (inp->sctp_flags & SCTP_PCB_FLAGS_ADAPTIONEVNT) {*/
2663 if (inp->sctp_ep.adaption_layer_indicator) {
2664 struct sctp_adaption_layer_indication *ali;
2665 ali = (struct sctp_adaption_layer_indication *)(
2666 (vaddr_t)sup_addr + sizeof(*sup_addr) + sizeof(uint16_t));
2667 ali->ph.param_type = htons(SCTP_ULP_ADAPTION);
2668 ali->ph.param_length = htons(sizeof(*ali));
2669 ali->indication = ntohl(inp->sctp_ep.adaption_layer_indicator);
2670 m->m_len += sizeof(*ali);
2671 ecn = (struct sctp_ecn_supported_param *)((vaddr_t)ali +
2672 sizeof(*ali));
2673 } else {
2674 ecn = (struct sctp_ecn_supported_param *)((vaddr_t)sup_addr +
2675 sizeof(*sup_addr) + sizeof(uint16_t));
2676 }
2677
2678 /* now any cookie time extensions */
2679 if (stcb->asoc.cookie_preserve_req) {
2680 struct sctp_cookie_perserve_param *cookie_preserve;
2681 cookie_preserve = (struct sctp_cookie_perserve_param *)(ecn);
2682 cookie_preserve->ph.param_type = htons(SCTP_COOKIE_PRESERVE);
2683 cookie_preserve->ph.param_length = htons(
2684 sizeof(*cookie_preserve));
2685 cookie_preserve->time = htonl(stcb->asoc.cookie_preserve_req);
2686 m->m_len += sizeof(*cookie_preserve);
2687 ecn = (struct sctp_ecn_supported_param *)(
2688 (vaddr_t)cookie_preserve + sizeof(*cookie_preserve));
2689 stcb->asoc.cookie_preserve_req = 0;
2690 }
2691
2692 /* ECN parameter */
2693 if (sctp_ecn == 1) {
2694 ecn->ph.param_type = htons(SCTP_ECN_CAPABLE);
2695 ecn->ph.param_length = htons(sizeof(*ecn));
2696 m->m_len += sizeof(*ecn);
2697 prsctp = (struct sctp_prsctp_supported_param *)((vaddr_t)ecn +
2698 sizeof(*ecn));
2699 } else {
2700 prsctp = (struct sctp_prsctp_supported_param *)((vaddr_t)ecn);
2701 }
2702 /* And now tell the peer we do pr-sctp */
2703 prsctp->ph.param_type = htons(SCTP_PRSCTP_SUPPORTED);
2704 prsctp->ph.param_length = htons(sizeof(*prsctp));
2705 m->m_len += sizeof(*prsctp);
2706
2707
2708 /* And now tell the peer we do all the extensions */
2709 pr_supported = (struct sctp_supported_chunk_types_param *)((vaddr_t)prsctp +
2710 sizeof(*prsctp));
2711
2712 pr_supported->ph.param_type = htons(SCTP_SUPPORTED_CHUNK_EXT);
2713 pr_supported->ph.param_length = htons(sizeof(*pr_supported) + SCTP_EXT_COUNT);
2714 pr_supported->chunk_types[0] = SCTP_ASCONF;
2715 pr_supported->chunk_types[1] = SCTP_ASCONF_ACK;
2716 pr_supported->chunk_types[2] = SCTP_FORWARD_CUM_TSN;
2717 pr_supported->chunk_types[3] = SCTP_PACKET_DROPPED;
2718 pr_supported->chunk_types[4] = SCTP_STREAM_RESET;
2719 pr_supported->chunk_types[5] = 0; /* pad */
2720 pr_supported->chunk_types[6] = 0; /* pad */
2721 pr_supported->chunk_types[7] = 0; /* pad */
2722
2723 m->m_len += (sizeof(*pr_supported) + SCTP_EXT_COUNT + SCTP_PAD_EXT_COUNT);
2724 /* ECN nonce: And now tell the peer we support ECN nonce */
2725
2726 if (sctp_ecn_nonce) {
2727 ecn_nonce = (struct sctp_ecn_nonce_supported_param *)((vaddr_t)pr_supported +
2728 sizeof(*pr_supported) + SCTP_EXT_COUNT + SCTP_PAD_EXT_COUNT);
2729 ecn_nonce->ph.param_type = htons(SCTP_ECN_NONCE_SUPPORTED);
2730 ecn_nonce->ph.param_length = htons(sizeof(*ecn_nonce));
2731 m->m_len += sizeof(*ecn_nonce);
2732 }
2733
2734 m_at = m;
2735 /* now the addresses */
2736 if (inp->sctp_flags & SCTP_PCB_FLAGS_BOUNDALL) {
2737 struct ifnet *ifn;
2738 struct ifaddr *ifa;
2739 int cnt;
2740 int s;
2741
2742 cnt = cnt_inits_to;
2743 s = pserialize_read_enter();
2744 IFNET_READER_FOREACH(ifn) {
2745 if ((stcb->asoc.loopback_scope == 0) &&
2746 (ifn->if_type == IFT_LOOP)) {
2747 /*
2748 * Skip loopback devices if loopback_scope
2749 * not set
2750 */
2751 continue;
2752 }
2753 IFADDR_READER_FOREACH(ifa, ifn) {
2754 if (sctp_is_address_in_scope(ifa,
2755 stcb->asoc.ipv4_addr_legal,
2756 stcb->asoc.ipv6_addr_legal,
2757 stcb->asoc.loopback_scope,
2758 stcb->asoc.ipv4_local_scope,
2759 stcb->asoc.local_scope,
2760 stcb->asoc.site_scope) == 0) {
2761 continue;
2762 }
2763 cnt++;
2764 }
2765 }
2766 pserialize_read_exit(s);
2767
2768 if (cnt > 1) {
2769 s = pserialize_read_enter();
2770 IFNET_READER_FOREACH(ifn) {
2771 if ((stcb->asoc.loopback_scope == 0) &&
2772 (ifn->if_type == IFT_LOOP)) {
2773 /*
2774 * Skip loopback devices if loopback_scope
2775 * not set
2776 */
2777 continue;
2778 }
2779 IFADDR_READER_FOREACH(ifa, ifn) {
2780 if (sctp_is_address_in_scope(ifa,
2781 stcb->asoc.ipv4_addr_legal,
2782 stcb->asoc.ipv6_addr_legal,
2783 stcb->asoc.loopback_scope,
2784 stcb->asoc.ipv4_local_scope,
2785 stcb->asoc.local_scope,
2786 stcb->asoc.site_scope) == 0) {
2787 continue;
2788 }
2789 m_at = sctp_add_addr_to_mbuf(m_at, ifa);
2790 }
2791 }
2792 pserialize_read_exit(s);
2793 }
2794 } else {
2795 struct sctp_laddr *laddr;
2796 int cnt;
2797 cnt = cnt_inits_to;
2798 /* First, how many ? */
2799 LIST_FOREACH(laddr, &inp->sctp_addr_list, sctp_nxt_addr) {
2800 if (laddr->ifa == NULL) {
2801 continue;
2802 }
2803 if (laddr->ifa->ifa_addr == NULL)
2804 continue;
2805 if (sctp_is_address_in_scope(laddr->ifa,
2806 stcb->asoc.ipv4_addr_legal,
2807 stcb->asoc.ipv6_addr_legal,
2808 stcb->asoc.loopback_scope,
2809 stcb->asoc.ipv4_local_scope,
2810 stcb->asoc.local_scope,
2811 stcb->asoc.site_scope) == 0) {
2812 continue;
2813 }
2814 cnt++;
2815 }
2816 /* To get through a NAT we only list addresses if
2817 * we have more than one. That way if you just
2818 * bind a single address we let the source of the init
2819 * dictate our address.
2820 */
2821 if (cnt > 1) {
2822 LIST_FOREACH(laddr, &inp->sctp_addr_list, sctp_nxt_addr) {
2823 if (laddr->ifa == NULL) {
2824 continue;
2825 }
2826 if (laddr->ifa->ifa_addr == NULL) {
2827 continue;
2828 }
2829
2830 if (sctp_is_address_in_scope(laddr->ifa,
2831 stcb->asoc.ipv4_addr_legal,
2832 stcb->asoc.ipv6_addr_legal,
2833 stcb->asoc.loopback_scope,
2834 stcb->asoc.ipv4_local_scope,
2835 stcb->asoc.local_scope,
2836 stcb->asoc.site_scope) == 0) {
2837 continue;
2838 }
2839 m_at = sctp_add_addr_to_mbuf(m_at, laddr->ifa);
2840 }
2841 }
2842 }
2843 /* calulate the size and update pkt header and chunk header */
2844 m->m_pkthdr.len = 0;
2845 for (m_at = m; m_at; m_at = m_at->m_next) {
2846 if (m_at->m_next == NULL)
2847 m_last = m_at;
2848 m->m_pkthdr.len += m_at->m_len;
2849 }
2850 initm->msg.ch.chunk_length = htons((m->m_pkthdr.len -
2851 sizeof(struct sctphdr)));
2852 #ifdef SCTP_DEBUG
2853 printf("chunk_length %d\n", ntohs(initm->msg.ch.chunk_length));
2854 #endif
2855 /* We pass 0 here to NOT set IP_DF if its IPv4, we
2856 * ignore the return here since the timer will drive
2857 * a retranmission.
2858 */
2859
2860 /* I don't expect this to execute but we will be safe here */
2861 padval = m->m_pkthdr.len % 4;
2862 if ((padval) && (m_last)) {
2863 /* The compiler worries that m_last may not be
2864 * set even though I think it is impossible :->
2865 * however we add m_last here just in case.
2866 */
2867 ret = sctp_add_pad_tombuf(m_last, (4-padval));
2868 if (ret) {
2869 /* Houston we have a problem, no space */
2870 sctp_m_freem(m);
2871 return;
2872 }
2873 m->m_pkthdr.len += padval;
2874 }
2875 #ifdef SCTP_DEBUG
2876 if (sctp_debug_on & SCTP_DEBUG_OUTPUT4) {
2877 printf("Calling lowlevel output stcb:%p net:%p\n",
2878 stcb, net);
2879 }
2880 #endif
2881 ret = sctp_lowlevel_chunk_output(inp, stcb, net,
2882 rtcache_getdst(&net->ro), m, 0, 0, NULL, 0);
2883 #ifdef SCTP_DEBUG
2884 if (sctp_debug_on & SCTP_DEBUG_OUTPUT4) {
2885 printf("Low level output returns %d\n", ret);
2886 }
2887 #endif
2888 sctp_timer_start(SCTP_TIMER_TYPE_INIT, inp, stcb, net);
2889 SCTP_GETTIME_TIMEVAL(&net->last_sent_time);
2890 }
2891
2892 struct mbuf *
2893 sctp_arethere_unrecognized_parameters(struct mbuf *in_initpkt,
2894 int param_offset, int *abort_processing, struct sctp_chunkhdr *cp)
2895 {
2896 /* Given a mbuf containing an INIT or INIT-ACK
2897 * with the param_offset being equal to the
2898 * beginning of the params i.e. (iphlen + sizeof(struct sctp_init_msg)
2899 * parse through the parameters to the end of the mbuf verifying
2900 * that all parameters are known.
2901 *
2902 * For unknown parameters build and return a mbuf with
2903 * UNRECOGNIZED_PARAMETER errors. If the flags indicate
2904 * to stop processing this chunk stop, and set *abort_processing
2905 * to 1.
2906 *
2907 * By having param_offset be pre-set to where parameters begin
2908 * it is hoped that this routine may be reused in the future
2909 * by new features.
2910 */
2911 struct sctp_paramhdr *phdr, params;
2912
2913 struct mbuf *mat, *op_err;
2914 char tempbuf[2048];
2915 int at, limit, pad_needed;
2916 uint16_t ptype, plen;
2917 int err_at;
2918
2919 *abort_processing = 0;
2920 mat = in_initpkt;
2921 err_at = 0;
2922 limit = ntohs(cp->chunk_length) - sizeof(struct sctp_init_chunk);
2923 #ifdef SCTP_DEBUG
2924 if (sctp_debug_on & SCTP_DEBUG_OUTPUT4) {
2925 printf("Limit is %d bytes\n", limit);
2926 }
2927 #endif
2928 at = param_offset;
2929 op_err = NULL;
2930
2931 phdr = sctp_get_next_param(mat, at, ¶ms, sizeof(params));
2932 while ((phdr != NULL) && ((size_t)limit >= sizeof(struct sctp_paramhdr))) {
2933 ptype = ntohs(phdr->param_type);
2934 plen = ntohs(phdr->param_length);
2935 limit -= SCTP_SIZE32(plen);
2936 if (plen < sizeof(struct sctp_paramhdr)) {
2937 #ifdef SCTP_DEBUG
2938 if (sctp_debug_on & SCTP_DEBUG_OUTPUT4) {
2939 printf("sctp_output.c:Impossible length in parameter < %d\n", plen);
2940 }
2941 #endif
2942 *abort_processing = 1;
2943 break;
2944 }
2945 /* All parameters for all chunks that we
2946 * know/understand are listed here. We process
2947 * them other places and make appropriate
2948 * stop actions per the upper bits. However
2949 * this is the generic routine processor's can
2950 * call to get back an operr.. to either incorporate (init-ack)
2951 * or send.
2952 */
2953 if ((ptype == SCTP_HEARTBEAT_INFO) ||
2954 (ptype == SCTP_IPV4_ADDRESS) ||
2955 (ptype == SCTP_IPV6_ADDRESS) ||
2956 (ptype == SCTP_STATE_COOKIE) ||
2957 (ptype == SCTP_UNRECOG_PARAM) ||
2958 (ptype == SCTP_COOKIE_PRESERVE) ||
2959 (ptype == SCTP_SUPPORTED_ADDRTYPE) ||
2960 (ptype == SCTP_PRSCTP_SUPPORTED) ||
2961 (ptype == SCTP_ADD_IP_ADDRESS) ||
2962 (ptype == SCTP_DEL_IP_ADDRESS) ||
2963 (ptype == SCTP_ECN_CAPABLE) ||
2964 (ptype == SCTP_ULP_ADAPTION) ||
2965 (ptype == SCTP_ERROR_CAUSE_IND) ||
2966 (ptype == SCTP_SET_PRIM_ADDR) ||
2967 (ptype == SCTP_SUCCESS_REPORT) ||
2968 (ptype == SCTP_ULP_ADAPTION) ||
2969 (ptype == SCTP_SUPPORTED_CHUNK_EXT) ||
2970 (ptype == SCTP_ECN_NONCE_SUPPORTED)
2971 ) {
2972 /* no skip it */
2973 at += SCTP_SIZE32(plen);
2974 } else if (ptype == SCTP_HOSTNAME_ADDRESS) {
2975 /* We can NOT handle HOST NAME addresses!! */
2976 #ifdef SCTP_DEBUG
2977 if (sctp_debug_on & SCTP_DEBUG_OUTPUT4) {
2978 printf("Can't handle hostname addresses.. abort processing\n");
2979 }
2980 #endif
2981 *abort_processing = 1;
2982 if (op_err == NULL) {
2983 /* Ok need to try to get a mbuf */
2984 MGETHDR(op_err, M_DONTWAIT, MT_DATA);
2985 if (op_err) {
2986 op_err->m_len = 0;
2987 op_err->m_pkthdr.len = 0;
2988 /* pre-reserve space for ip and sctp header and chunk hdr*/
2989 op_err->m_data += sizeof(struct ip6_hdr);
2990 op_err->m_data += sizeof(struct sctphdr);
2991 op_err->m_data += sizeof(struct sctp_chunkhdr);
2992 }
2993 }
2994 if (op_err) {
2995 /* If we have space */
2996 struct sctp_paramhdr s;
2997 if (err_at % 4) {
2998 u_int32_t cpthis=0;
2999 pad_needed = 4 - (err_at % 4);
3000 m_copyback(op_err, err_at, pad_needed, (void *)&cpthis);
3001 err_at += pad_needed;
3002 }
3003 s.param_type = htons(SCTP_CAUSE_UNRESOLV_ADDR);
3004 s.param_length = htons(sizeof(s) + plen);
3005 m_copyback(op_err, err_at, sizeof(s), (void *)&s);
3006 err_at += sizeof(s);
3007 phdr = sctp_get_next_param(mat, at, (struct sctp_paramhdr *)tempbuf, plen);
3008 if (phdr == NULL) {
3009 sctp_m_freem(op_err);
3010 /* we are out of memory but we
3011 * still need to have a look at what to
3012 * do (the system is in trouble though).
3013 */
3014 return (NULL);
3015 }
3016 m_copyback(op_err, err_at, plen, (void *)phdr);
3017 err_at += plen;
3018 }
3019 return (op_err);
3020 } else {
3021 /* we do not recognize the parameter
3022 * figure out what we do.
3023 */
3024 #ifdef SCTP_DEBUG
3025 if (sctp_debug_on & SCTP_DEBUG_OUTPUT4) {
3026 printf("Got parameter type %x - unknown\n",
3027 (u_int)ptype);
3028 }
3029 #endif
3030 if ((ptype & 0x4000) == 0x4000) {
3031 /* Report bit is set?? */
3032 #ifdef SCTP_DEBUG
3033 if (sctp_debug_on & SCTP_DEBUG_OUTPUT4) {
3034 printf("Report bit is set\n");
3035 }
3036 #endif
3037 if (op_err == NULL) {
3038 /* Ok need to try to get an mbuf */
3039 MGETHDR(op_err, M_DONTWAIT, MT_DATA);
3040 if (op_err) {
3041 op_err->m_len = 0;
3042 op_err->m_pkthdr.len = 0;
3043 op_err->m_data += sizeof(struct ip6_hdr);
3044 op_err->m_data += sizeof(struct sctphdr);
3045 op_err->m_data += sizeof(struct sctp_chunkhdr);
3046 }
3047 }
3048 if (op_err) {
3049 /* If we have space */
3050 struct sctp_paramhdr s;
3051 if (err_at % 4) {
3052 u_int32_t cpthis=0;
3053 pad_needed = 4 - (err_at % 4);
3054 m_copyback(op_err, err_at, pad_needed, (void *)&cpthis);
3055 err_at += pad_needed;
3056 }
3057 s.param_type = htons(SCTP_UNRECOG_PARAM);
3058 s.param_length = htons(sizeof(s) + plen);
3059 m_copyback(op_err, err_at, sizeof(s), (void *)&s);
3060 err_at += sizeof(s);
3061 if (plen > sizeof(tempbuf)) {
3062 plen = sizeof(tempbuf);
3063 }
3064 phdr = sctp_get_next_param(mat, at, (struct sctp_paramhdr *)tempbuf, plen);
3065 if (phdr == NULL) {
3066 sctp_m_freem(op_err);
3067 /* we are out of memory but we
3068 * still need to have a look at what to
3069 * do (the system is in trouble though).
3070 */
3071 goto more_processing;
3072 }
3073 m_copyback(op_err, err_at, plen, (void *)phdr);
3074 err_at += plen;
3075 }
3076 }
3077 more_processing:
3078 if ((ptype & 0x8000) == 0x0000) {
3079 #ifdef SCTP_DEBUG
3080 if (sctp_debug_on & SCTP_DEBUG_OUTPUT4) {
3081 printf("Abort bit is now setting1\n");
3082 }
3083 #endif
3084 return (op_err);
3085 } else {
3086 /* skip this chunk and continue processing */
3087 at += SCTP_SIZE32(plen);
3088 }
3089
3090 }
3091 phdr = sctp_get_next_param(mat, at, ¶ms, sizeof(params));
3092 }
3093 return (op_err);
3094 }
3095
3096 static int
3097 sctp_are_there_new_addresses(struct sctp_association *asoc,
3098 struct mbuf *in_initpkt, int iphlen, int offset)
3099 {
3100 /*
3101 * Given a INIT packet, look through the packet to verify that
3102 * there are NO new addresses. As we go through the parameters
3103 * add reports of any un-understood parameters that require an
3104 * error. Also we must return (1) to drop the packet if we see
3105 * a un-understood parameter that tells us to drop the chunk.
3106 */
3107 struct sockaddr_in sin4, *sa4;
3108 struct sockaddr_in6 sin6, *sa6;
3109 struct sockaddr *sa_touse;
3110 struct sockaddr *sa;
3111 struct sctp_paramhdr *phdr, params;
3112 struct ip *iph;
3113 struct mbuf *mat;
3114 uint16_t ptype, plen;
3115 uint8_t fnd;
3116 struct sctp_nets *net;
3117
3118 memset(&sin4, 0, sizeof(sin4));
3119 memset(&sin6, 0, sizeof(sin6));
3120 sin4.sin_family = AF_INET;
3121 sin4.sin_len = sizeof(sin4);
3122 sin6.sin6_family = AF_INET6;
3123 sin6.sin6_len = sizeof(sin6);
3124
3125 sa_touse = NULL;
3126 /* First what about the src address of the pkt ? */
3127 iph = mtod(in_initpkt, struct ip *);
3128 if (iph->ip_v == IPVERSION) {
3129 /* source addr is IPv4 */
3130 sin4.sin_addr = iph->ip_src;
3131 sa_touse = (struct sockaddr *)&sin4;
3132 } else if (iph->ip_v == (IPV6_VERSION >> 4)) {
3133 /* source addr is IPv6 */
3134 struct ip6_hdr *ip6h;
3135 ip6h = mtod(in_initpkt, struct ip6_hdr *);
3136 sin6.sin6_addr = ip6h->ip6_src;
3137 sa_touse = (struct sockaddr *)&sin6;
3138 } else {
3139 return (1);
3140 }
3141
3142 fnd = 0;
3143 TAILQ_FOREACH(net, &asoc->nets, sctp_next) {
3144 sa = (struct sockaddr *)&net->ro.ro_sa;
3145 if (sa->sa_family == sa_touse->sa_family) {
3146 if (sa->sa_family == AF_INET) {
3147 sa4 = (struct sockaddr_in *)sa;
3148 if (sa4->sin_addr.s_addr ==
3149 sin4.sin_addr.s_addr) {
3150 fnd = 1;
3151 break;
3152 }
3153 } else if (sa->sa_family == AF_INET6) {
3154 sa6 = (struct sockaddr_in6 *)sa;
3155 if (SCTP6_ARE_ADDR_EQUAL(&sa6->sin6_addr,
3156 &sin6.sin6_addr)) {
3157 fnd = 1;
3158 break;
3159 }
3160 }
3161 }
3162 }
3163 if (fnd == 0) {
3164 /* New address added! no need to look futher. */
3165 return (1);
3166 }
3167 /* Ok so far lets munge through the rest of the packet */
3168 mat = in_initpkt;
3169 sa_touse = NULL;
3170 offset += sizeof(struct sctp_init_chunk);
3171 phdr = sctp_get_next_param(mat, offset, ¶ms, sizeof(params));
3172 while (phdr) {
3173 ptype = ntohs(phdr->param_type);
3174 plen = ntohs(phdr->param_length);
3175 if (ptype == SCTP_IPV4_ADDRESS) {
3176 struct sctp_ipv4addr_param *p4, p4_buf;
3177
3178 phdr = sctp_get_next_param(mat, offset,
3179 (struct sctp_paramhdr *)&p4_buf, sizeof(p4_buf));
3180 if (plen != sizeof(struct sctp_ipv4addr_param) ||
3181 phdr == NULL) {
3182 return (1);
3183 }
3184 p4 = (struct sctp_ipv4addr_param *)phdr;
3185 sin4.sin_addr.s_addr = p4->addr;
3186 sa_touse = (struct sockaddr *)&sin4;
3187 } else if (ptype == SCTP_IPV6_ADDRESS) {
3188 struct sctp_ipv6addr_param *p6, p6_buf;
3189
3190 phdr = sctp_get_next_param(mat, offset,
3191 (struct sctp_paramhdr *)&p6_buf, sizeof(p6_buf));
3192 if (plen != sizeof(struct sctp_ipv6addr_param) ||
3193 phdr == NULL) {
3194 return (1);
3195 }
3196 p6 = (struct sctp_ipv6addr_param *)phdr;
3197 memcpy((void *)&sin6.sin6_addr, p6->addr,
3198 sizeof(p6->addr));
3199 sa_touse = (struct sockaddr *)&sin4;
3200 }
3201
3202 if (sa_touse) {
3203 /* ok, sa_touse points to one to check */
3204 fnd = 0;
3205 TAILQ_FOREACH(net, &asoc->nets, sctp_next) {
3206 sa = (struct sockaddr *)&net->ro.ro_sa;
3207 if (sa->sa_family != sa_touse->sa_family) {
3208 continue;
3209 }
3210 if (sa->sa_family == AF_INET) {
3211 sa4 = (struct sockaddr_in *)sa;
3212 if (sa4->sin_addr.s_addr ==
3213 sin4.sin_addr.s_addr) {
3214 fnd = 1;
3215 break;
3216 }
3217 } else if (sa->sa_family == AF_INET6) {
3218 sa6 = (struct sockaddr_in6 *)sa;
3219 if (SCTP6_ARE_ADDR_EQUAL(
3220 &sa6->sin6_addr, &sin6.sin6_addr)) {
3221 fnd = 1;
3222 break;
3223 }
3224 }
3225 }
3226 if (!fnd) {
3227 /* New addr added! no need to look further */
3228 return (1);
3229 }
3230 }
3231 offset += SCTP_SIZE32(plen);
3232 phdr = sctp_get_next_param(mat, offset, ¶ms, sizeof(params));
3233 }
3234 return (0);
3235 }
3236
3237 /*
3238 * Given a MBUF chain that was sent into us containing an
3239 * INIT. Build a INIT-ACK with COOKIE and send back.
3240 * We assume that the in_initpkt has done a pullup to
3241 * include IPv6/4header, SCTP header and initial part of
3242 * INIT message (i.e. the struct sctp_init_msg).
3243 */
3244 void
3245 sctp_send_initiate_ack(struct sctp_inpcb *inp, struct sctp_tcb *stcb,
3246 struct mbuf *init_pkt, int iphlen, int offset, struct sctphdr *sh,
3247 struct sctp_init_chunk *init_chk)
3248 {
3249 struct sctp_association *asoc;
3250 struct mbuf *m, *m_at, *m_tmp, *m_cookie, *op_err, *m_last;
3251 struct sctp_init_msg *initackm_out;
3252 struct sctp_ecn_supported_param *ecn;
3253 struct sctp_prsctp_supported_param *prsctp;
3254 struct sctp_ecn_nonce_supported_param *ecn_nonce;
3255 struct sctp_supported_chunk_types_param *pr_supported;
3256 struct sockaddr_storage store;
3257 struct sockaddr_in *sin;
3258 struct sockaddr_in6 *sin6;
3259 struct route *ro;
3260 struct ip *iph;
3261 struct ip6_hdr *ip6;
3262 const struct sockaddr *to;
3263 struct sctp_state_cookie stc;
3264 struct sctp_nets *net=NULL;
3265 int cnt_inits_to=0;
3266 uint16_t his_limit, i_want;
3267 int abort_flag, padval, sz_of;
3268 struct rtentry *rt;
3269
3270 if (stcb) {
3271 asoc = &stcb->asoc;
3272 } else {
3273 asoc = NULL;
3274 }
3275 m_last = NULL;
3276 if ((asoc != NULL) &&
3277 (SCTP_GET_STATE(asoc) != SCTP_STATE_COOKIE_WAIT) &&
3278 (sctp_are_there_new_addresses(asoc, init_pkt, iphlen, offset))) {
3279 /* new addresses, out of here in non-cookie-wait states */
3280 /*
3281 * Send a ABORT, we don't add the new address error clause though
3282 * we even set the T bit and copy in the 0 tag.. this looks no
3283 * different than if no listner was present.
3284 */
3285 sctp_send_abort(init_pkt, iphlen, sh, 0, NULL);
3286 return;
3287 }
3288 abort_flag = 0;
3289 op_err = sctp_arethere_unrecognized_parameters(init_pkt,
3290 (offset+sizeof(struct sctp_init_chunk)),
3291 &abort_flag, (struct sctp_chunkhdr *)init_chk);
3292 if (abort_flag) {
3293 sctp_send_abort(init_pkt, iphlen, sh, init_chk->init.initiate_tag, op_err);
3294 return;
3295 }
3296 MGETHDR(m, M_DONTWAIT, MT_HEADER);
3297 if (m == NULL) {
3298 /* No memory, INIT timer will re-attempt. */
3299 if (op_err)
3300 sctp_m_freem(op_err);
3301 return;
3302 }
3303 MCLGET(m, M_DONTWAIT);
3304 if ((m->m_flags & M_EXT) != M_EXT) {
3305 /* Failed to get cluster buffer */
3306 if (op_err)
3307 sctp_m_freem(op_err);
3308 sctp_m_freem(m);
3309 return;
3310 }
3311 m->m_data += SCTP_MIN_OVERHEAD;
3312 m_reset_rcvif(m);
3313 m->m_len = sizeof(struct sctp_init_msg);
3314
3315 /* the time I built cookie */
3316 SCTP_GETTIME_TIMEVAL(&stc.time_entered);
3317
3318 /* populate any tie tags */
3319 if (asoc != NULL) {
3320 /* unlock before tag selections */
3321 SCTP_TCB_UNLOCK(stcb);
3322 if (asoc->my_vtag_nonce == 0)
3323 asoc->my_vtag_nonce = sctp_select_a_tag(inp);
3324 stc.tie_tag_my_vtag = asoc->my_vtag_nonce;
3325
3326 if (asoc->peer_vtag_nonce == 0)
3327 asoc->peer_vtag_nonce = sctp_select_a_tag(inp);
3328 stc.tie_tag_peer_vtag = asoc->peer_vtag_nonce;
3329
3330 stc.cookie_life = asoc->cookie_life;
3331 net = asoc->primary_destination;
3332 /* now we must relock */
3333 SCTP_INP_RLOCK(inp);
3334 /* we may be in trouble here if the inp got freed
3335 * most likely this set of tests will protect
3336 * us but there is a chance not.
3337 */
3338 if (inp->sctp_flags & (SCTP_PCB_FLAGS_SOCKET_GONE|SCTP_PCB_FLAGS_SOCKET_ALLGONE)) {
3339 if (op_err)
3340 sctp_m_freem(op_err);
3341 sctp_m_freem(m);
3342 sctp_send_abort(init_pkt, iphlen, sh, 0, NULL);
3343 return;
3344 }
3345 SCTP_TCB_LOCK(stcb);
3346 SCTP_INP_RUNLOCK(stcb->sctp_ep);
3347 } else {
3348 stc.tie_tag_my_vtag = 0;
3349 stc.tie_tag_peer_vtag = 0;
3350 /* life I will award this cookie */
3351 stc.cookie_life = inp->sctp_ep.def_cookie_life;
3352 }
3353
3354 /* copy in the ports for later check */
3355 stc.myport = sh->dest_port;
3356 stc.peerport = sh->src_port;
3357
3358 /*
3359 * If we wanted to honor cookie life extentions, we would add
3360 * to stc.cookie_life. For now we should NOT honor any extension
3361 */
3362 stc.site_scope = stc.local_scope = stc.loopback_scope = 0;
3363 if (inp->sctp_flags & SCTP_PCB_FLAGS_BOUND_V6) {
3364 struct inpcb *in_inp;
3365 /* Its a V6 socket */
3366 in_inp = (struct inpcb *)inp;
3367 stc.ipv6_addr_legal = 1;
3368 /* Now look at the binding flag to see if V4 will be legal */
3369 if (
3370 #if defined(__FreeBSD__) || defined(__APPLE__)
3371 (in_inp->inp_flags & IN6P_IPV6_V6ONLY)
3372 #elif defined(__OpenBSD__)
3373 (0) /* For openbsd we do dual bind only */
3374 #else
3375 (((struct in6pcb *)in_inp)->in6p_flags & IN6P_IPV6_V6ONLY)
3376 #endif
3377 == 0) {
3378 stc.ipv4_addr_legal = 1;
3379 } else {
3380 /* V4 addresses are NOT legal on the association */
3381 stc.ipv4_addr_legal = 0;
3382 }
3383 } else {
3384 /* Its a V4 socket, no - V6 */
3385 stc.ipv4_addr_legal = 1;
3386 stc.ipv6_addr_legal = 0;
3387 }
3388
3389 #ifdef SCTP_DONT_DO_PRIVADDR_SCOPE
3390 stc.ipv4_scope = 1;
3391 #else
3392 stc.ipv4_scope = 0;
3393 #endif
3394 /* now for scope setup */
3395 memset((void *)&store, 0, sizeof(store));
3396 sin = (struct sockaddr_in *)&store;
3397 sin6 = (struct sockaddr_in6 *)&store;
3398 if (net == NULL) {
3399 to = (struct sockaddr *)&store;
3400 iph = mtod(init_pkt, struct ip *);
3401 if (iph->ip_v == IPVERSION) {
3402 struct in_addr addr;
3403 static struct route iproute;
3404
3405 sin->sin_family = AF_INET;
3406 sin->sin_len = sizeof(struct sockaddr_in);
3407 sin->sin_port = sh->src_port;
3408 sin->sin_addr = iph->ip_src;
3409 /* lookup address */
3410 stc.address[0] = sin->sin_addr.s_addr;
3411 stc.address[1] = 0;
3412 stc.address[2] = 0;
3413 stc.address[3] = 0;
3414 stc.addr_type = SCTP_IPV4_ADDRESS;
3415 /* local from address */
3416 memset(&iproute, 0, sizeof(iproute));
3417 ro = &iproute;
3418
3419 /* XXX */
3420 rt = rtcache_lookup(ro, (struct sockaddr *) sin);
3421 rtcache_unref(rt, ro);
3422 addr = sctp_ipv4_source_address_selection(inp, NULL,
3423 ro, NULL, 0);
3424 stc.laddress[0] = addr.s_addr;
3425 stc.laddress[1] = 0;
3426 stc.laddress[2] = 0;
3427 stc.laddress[3] = 0;
3428 stc.laddr_type = SCTP_IPV4_ADDRESS;
3429 /* scope_id is only for v6 */
3430 stc.scope_id = 0;
3431 #ifndef SCTP_DONT_DO_PRIVADDR_SCOPE
3432 if (IN4_ISPRIVATE_ADDRESS(&sin->sin_addr)) {
3433 stc.ipv4_scope = 1;
3434 }
3435 #else
3436 stc.ipv4_scope = 1;
3437 #endif /* SCTP_DONT_DO_PRIVADDR_SCOPE */
3438 /* Must use the address in this case */
3439 if (sctp_is_address_on_local_host((struct sockaddr *)sin)) {
3440 stc.loopback_scope = 1;
3441 stc.ipv4_scope = 1;
3442 stc.site_scope = 1;
3443 stc.local_scope = 1;
3444 }
3445 } else if (iph->ip_v == (IPV6_VERSION >> 4)) {
3446 struct in6_addr addr;
3447 static struct route iproute6;
3448 ip6 = mtod(init_pkt, struct ip6_hdr *);
3449 sin6->sin6_family = AF_INET6;
3450 sin6->sin6_len = sizeof(struct sockaddr_in6);
3451 sin6->sin6_port = sh->src_port;
3452 sin6->sin6_addr = ip6->ip6_src;
3453 /* lookup address */
3454 memcpy(&stc.address, &sin6->sin6_addr,
3455 sizeof(struct in6_addr));
3456 sin6->sin6_scope_id = 0;
3457 stc.addr_type = SCTP_IPV6_ADDRESS;
3458 stc.scope_id = 0;
3459 if (sctp_is_address_on_local_host((struct sockaddr *)sin6)) {
3460 stc.loopback_scope = 1;
3461 stc.local_scope = 1;
3462 stc.site_scope = 1;
3463 stc.ipv4_scope = 1;
3464 } else if (IN6_IS_ADDR_LINKLOCAL(&sin6->sin6_addr)) {
3465 /*
3466 * If the new destination is a LINK_LOCAL
3467 * we must have common both site and local
3468 * scope. Don't set local scope though since
3469 * we must depend on the source to be added
3470 * implicitly. We cannot assure just because
3471 * we share one link that all links are common.
3472 *
3473 * XXX: never treat link-local case explicitly.
3474 * Use general routines defined in scope6.c.
3475 * (jinmei@kame)
3476 */
3477 stc.local_scope = 0;
3478 stc.site_scope = 1;
3479 stc.ipv4_scope = 1;
3480 /* we start counting for the private
3481 * address stuff at 1. since the link
3482 * local we source from won't show
3483 * up in our scoped count.
3484 */
3485 cnt_inits_to=1;
3486 /* pull out the scope_id from incoming pkt */
3487 #if defined(SCTP_BASE_FREEBSD) || defined(__APPLE__)
3488 (void)in6_recoverscope(sin6, &in6_src,
3489 m_get_rcvif_NOMPSAFE(init_pkt));
3490 in6_embedscope(&sin6->sin6_addr, sin6, NULL,
3491 NULL);
3492 #else
3493 (void)sa6_recoverscope(sin6);
3494 #endif
3495 stc.scope_id = sin6->sin6_scope_id;
3496
3497 } else if (IN6_IS_ADDR_SITELOCAL(&sin6->sin6_addr)) {
3498 /*
3499 * If the new destination is SITE_LOCAL
3500 * then we must have site scope in common.
3501 */
3502 stc.site_scope = 1;
3503 }
3504 /* local from address */
3505 memset(&iproute6, 0, sizeof(iproute6));
3506 ro = (struct route *)&iproute6;
3507 /* XXX */
3508 rt = rtcache_lookup(ro, (struct sockaddr *) sin6);
3509 rtcache_unref(rt, ro);
3510 addr = sctp_ipv6_source_address_selection(inp, NULL,
3511 ro, NULL, 0);
3512 memcpy(&stc.laddress, &addr, sizeof(struct in6_addr));
3513 stc.laddr_type = SCTP_IPV6_ADDRESS;
3514 }
3515 } else {
3516 /* set the scope per the existing tcb */
3517 struct sctp_nets *lnet;
3518
3519 stc.loopback_scope = asoc->loopback_scope;
3520 stc.ipv4_scope = asoc->ipv4_local_scope;
3521 stc.site_scope = asoc->site_scope;
3522 stc.local_scope = asoc->local_scope;
3523 TAILQ_FOREACH(lnet, &asoc->nets, sctp_next) {
3524 if (rtcache_getdst(&lnet->ro)->sa_family == AF_INET6) {
3525 if (IN6_IS_ADDR_LINKLOCAL((const struct in6_addr *) rtcache_getdst(&lnet->ro)->sa_data)) {
3526 /* if we have a LL address, start counting
3527 * at 1.
3528 */
3529 cnt_inits_to = 1;
3530 }
3531 }
3532 }
3533
3534 /* use the net pointer */
3535 to = rtcache_getdst(&net->ro);
3536 if (to->sa_family == AF_INET) {
3537 memcpy(&stc.address[0], to, sizeof(struct in_addr));
3538 stc.address[1] = 0;
3539 stc.address[2] = 0;
3540 stc.address[3] = 0;
3541 stc.addr_type = SCTP_IPV4_ADDRESS;
3542 if (net->src_addr_selected == 0) {
3543 /* strange case here, the INIT
3544 * should have did the selection.
3545 */
3546 net->_s_addr.sin.sin_addr =
3547 sctp_ipv4_source_address_selection(inp,
3548 stcb, &net->ro, net, 0);
3549 net->src_addr_selected = 1;
3550
3551 }
3552
3553 stc.laddress[0] = net->_s_addr.sin.sin_addr.s_addr;
3554 stc.laddress[1] = 0;
3555 stc.laddress[2] = 0;
3556 stc.laddress[3] = 0;
3557 stc.laddr_type = SCTP_IPV4_ADDRESS;
3558 } else if (to->sa_family == AF_INET6) {
3559 memcpy(&stc.address, &to->sa_data,
3560 sizeof(struct in6_addr));
3561 stc.addr_type = SCTP_IPV6_ADDRESS;
3562 if (net->src_addr_selected == 0) {
3563 /* strange case here, the INIT
3564 * should have did the selection.
3565 */
3566 net->_s_addr.sin6.sin6_addr =
3567 sctp_ipv6_source_address_selection(inp,
3568 stcb, &net->ro, net, 0);
3569 net->src_addr_selected = 1;
3570 }
3571 memcpy(&stc.laddress, &net->_s_addr.sin6.sin6_addr,
3572 sizeof(struct in6_addr));
3573 stc.laddr_type = SCTP_IPV6_ADDRESS;
3574 }
3575 }
3576 /* Now lets put the SCTP header in place */
3577 initackm_out = mtod(m, struct sctp_init_msg *);
3578 initackm_out->sh.src_port = inp->sctp_lport;
3579 initackm_out->sh.dest_port = sh->src_port;
3580 initackm_out->sh.v_tag = init_chk->init.initiate_tag;
3581 /* Save it off for quick ref */
3582 stc.peers_vtag = init_chk->init.initiate_tag;
3583 initackm_out->sh.checksum = 0; /* calculate later */
3584 /* who are we */
3585 strncpy(stc.identification, SCTP_VERSION_STRING,
3586 uimin(strlen(SCTP_VERSION_STRING), sizeof(stc.identification)));
3587 /* now the chunk header */
3588 initackm_out->msg.ch.chunk_type = SCTP_INITIATION_ACK;
3589 initackm_out->msg.ch.chunk_flags = 0;
3590 /* fill in later from mbuf we build */
3591 initackm_out->msg.ch.chunk_length = 0;
3592 /* place in my tag */
3593 if ((asoc != NULL) &&
3594 ((SCTP_GET_STATE(asoc) == SCTP_STATE_COOKIE_WAIT) ||
3595 (SCTP_GET_STATE(asoc) == SCTP_STATE_COOKIE_ECHOED))) {
3596 /* re-use the v-tags and init-seq here */
3597 initackm_out->msg.init.initiate_tag = htonl(asoc->my_vtag);
3598 initackm_out->msg.init.initial_tsn = htonl(asoc->init_seq_number);
3599 } else {
3600 initackm_out->msg.init.initiate_tag = htonl(sctp_select_a_tag(inp));
3601 /* get a TSN to use too */
3602 initackm_out->msg.init.initial_tsn = htonl(sctp_select_initial_TSN(&inp->sctp_ep));
3603 }
3604 /* save away my tag to */
3605 stc.my_vtag = initackm_out->msg.init.initiate_tag;
3606
3607 /* set up some of the credits. */
3608 initackm_out->msg.init.a_rwnd = htonl(uimax(inp->sctp_socket->so_rcv.sb_hiwat, SCTP_MINIMAL_RWND));
3609 /* set what I want */
3610 his_limit = ntohs(init_chk->init.num_inbound_streams);
3611 /* choose what I want */
3612 if (asoc != NULL) {
3613 if (asoc->streamoutcnt > inp->sctp_ep.pre_open_stream_count) {
3614 i_want = asoc->streamoutcnt;
3615 } else {
3616 i_want = inp->sctp_ep.pre_open_stream_count;
3617 }
3618 } else {
3619 i_want = inp->sctp_ep.pre_open_stream_count;
3620 }
3621 if (his_limit < i_want) {
3622 /* I Want more :< */
3623 initackm_out->msg.init.num_outbound_streams = init_chk->init.num_inbound_streams;
3624 } else {
3625 /* I can have what I want :> */
3626 initackm_out->msg.init.num_outbound_streams = htons(i_want);
3627 }
3628 /* tell him his limt. */
3629 initackm_out->msg.init.num_inbound_streams =
3630 htons(inp->sctp_ep.max_open_streams_intome);
3631 /* setup the ECN pointer */
3632
3633 /* if (inp->sctp_flags & SCTP_PCB_FLAGS_ADAPTIONEVNT) {*/
3634 if (inp->sctp_ep.adaption_layer_indicator) {
3635 struct sctp_adaption_layer_indication *ali;
3636 ali = (struct sctp_adaption_layer_indication *)(
3637 (vaddr_t)initackm_out + sizeof(*initackm_out));
3638 ali->ph.param_type = htons(SCTP_ULP_ADAPTION);
3639 ali->ph.param_length = htons(sizeof(*ali));
3640 ali->indication = ntohl(inp->sctp_ep.adaption_layer_indicator);
3641 m->m_len += sizeof(*ali);
3642 ecn = (struct sctp_ecn_supported_param *)((vaddr_t)ali +
3643 sizeof(*ali));
3644 } else {
3645 ecn = (struct sctp_ecn_supported_param*)(
3646 (vaddr_t)initackm_out + sizeof(*initackm_out));
3647 }
3648
3649 /* ECN parameter */
3650 if (sctp_ecn == 1) {
3651 ecn->ph.param_type = htons(SCTP_ECN_CAPABLE);
3652 ecn->ph.param_length = htons(sizeof(*ecn));
3653 m->m_len += sizeof(*ecn);
3654
3655 prsctp = (struct sctp_prsctp_supported_param *)((vaddr_t)ecn +
3656 sizeof(*ecn));
3657 } else {
3658 prsctp = (struct sctp_prsctp_supported_param *)((vaddr_t)ecn);
3659 }
3660 /* And now tell the peer we do pr-sctp */
3661 prsctp->ph.param_type = htons(SCTP_PRSCTP_SUPPORTED);
3662 prsctp->ph.param_length = htons(sizeof(*prsctp));
3663 m->m_len += sizeof(*prsctp);
3664
3665
3666 /* And now tell the peer we do all the extensions */
3667 pr_supported = (struct sctp_supported_chunk_types_param *)((vaddr_t)prsctp +
3668 sizeof(*prsctp));
3669
3670 pr_supported->ph.param_type = htons(SCTP_SUPPORTED_CHUNK_EXT);
3671 pr_supported->ph.param_length = htons(sizeof(*pr_supported) + SCTP_EXT_COUNT);
3672 pr_supported->chunk_types[0] = SCTP_ASCONF;
3673 pr_supported->chunk_types[1] = SCTP_ASCONF_ACK;
3674 pr_supported->chunk_types[2] = SCTP_FORWARD_CUM_TSN;
3675 pr_supported->chunk_types[3] = SCTP_PACKET_DROPPED;
3676 pr_supported->chunk_types[4] = SCTP_STREAM_RESET;
3677 pr_supported->chunk_types[5] = 0; /* pad */
3678 pr_supported->chunk_types[6] = 0; /* pad */
3679 pr_supported->chunk_types[7] = 0; /* pad */
3680
3681 m->m_len += (sizeof(*pr_supported) + SCTP_EXT_COUNT + SCTP_PAD_EXT_COUNT);
3682 if (sctp_ecn_nonce) {
3683 /* ECN nonce: And now tell the peer we support ECN nonce */
3684 ecn_nonce = (struct sctp_ecn_nonce_supported_param *)((vaddr_t)pr_supported +
3685 sizeof(*pr_supported) + SCTP_EXT_COUNT + SCTP_PAD_EXT_COUNT);
3686 ecn_nonce->ph.param_type = htons(SCTP_ECN_NONCE_SUPPORTED);
3687 ecn_nonce->ph.param_length = htons(sizeof(*ecn_nonce));
3688 m->m_len += sizeof(*ecn_nonce);
3689 }
3690
3691 m_at = m;
3692 /* now the addresses */
3693 if (inp->sctp_flags & SCTP_PCB_FLAGS_BOUNDALL) {
3694 struct ifnet *ifn;
3695 struct ifaddr *ifa;
3696 int cnt = cnt_inits_to;
3697 int s;
3698
3699 s = pserialize_read_enter();
3700 IFNET_READER_FOREACH(ifn) {
3701 if ((stc.loopback_scope == 0) &&
3702 (ifn->if_type == IFT_LOOP)) {
3703 /*
3704 * Skip loopback devices if loopback_scope
3705 * not set
3706 */
3707 continue;
3708 }
3709 IFADDR_READER_FOREACH(ifa, ifn) {
3710 if (sctp_is_address_in_scope(ifa,
3711 stc.ipv4_addr_legal, stc.ipv6_addr_legal,
3712 stc.loopback_scope, stc.ipv4_scope,
3713 stc.local_scope, stc.site_scope) == 0) {
3714 continue;
3715 }
3716 cnt++;
3717 }
3718 }
3719 pserialize_read_exit(s);
3720
3721 if (cnt > 1) {
3722 s = pserialize_read_enter();
3723 IFNET_READER_FOREACH(ifn) {
3724 if ((stc.loopback_scope == 0) &&
3725 (ifn->if_type == IFT_LOOP)) {
3726 /*
3727 * Skip loopback devices if
3728 * loopback_scope not set
3729 */
3730 continue;
3731 }
3732 IFADDR_READER_FOREACH(ifa, ifn) {
3733 if (sctp_is_address_in_scope(ifa,
3734 stc.ipv4_addr_legal,
3735 stc.ipv6_addr_legal,
3736 stc.loopback_scope, stc.ipv4_scope,
3737 stc.local_scope, stc.site_scope) == 0) {
3738 continue;
3739 }
3740 m_at = sctp_add_addr_to_mbuf(m_at, ifa);
3741 }
3742 }
3743 pserialize_read_exit(s);
3744 }
3745 } else {
3746 struct sctp_laddr *laddr;
3747 int cnt;
3748 cnt = cnt_inits_to;
3749 /* First, how many ? */
3750 LIST_FOREACH(laddr, &inp->sctp_addr_list, sctp_nxt_addr) {
3751 if (laddr->ifa == NULL) {
3752 continue;
3753 }
3754 if (laddr->ifa->ifa_addr == NULL)
3755 continue;
3756 if (sctp_is_address_in_scope(laddr->ifa,
3757 stc.ipv4_addr_legal, stc.ipv6_addr_legal,
3758 stc.loopback_scope, stc.ipv4_scope,
3759 stc.local_scope, stc.site_scope) == 0) {
3760 continue;
3761 }
3762 cnt++;
3763 }
3764 /* If we bind a single address only we won't list
3765 * any. This way you can get through a NAT
3766 */
3767 if (cnt > 1) {
3768 LIST_FOREACH(laddr, &inp->sctp_addr_list, sctp_nxt_addr) {
3769 if (laddr->ifa == NULL) {
3770 #ifdef SCTP_DEBUG
3771 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
3772 printf("Help I have fallen and I can't get up!\n");
3773 }
3774 #endif
3775 continue;
3776 }
3777 if (laddr->ifa->ifa_addr == NULL)
3778 continue;
3779 if (sctp_is_address_in_scope(laddr->ifa,
3780 stc.ipv4_addr_legal, stc.ipv6_addr_legal,
3781 stc.loopback_scope, stc.ipv4_scope,
3782 stc.local_scope, stc.site_scope) == 0) {
3783 continue;
3784 }
3785 m_at = sctp_add_addr_to_mbuf(m_at, laddr->ifa);
3786 }
3787 }
3788 }
3789
3790 /* tack on the operational error if present */
3791 if (op_err) {
3792 if (op_err->m_pkthdr.len % 4) {
3793 /* must add a pad to the param */
3794 u_int32_t cpthis=0;
3795 int padlen;
3796 padlen = 4 - (op_err->m_pkthdr.len % 4);
3797 m_copyback(op_err, op_err->m_pkthdr.len, padlen, (void *)&cpthis);
3798 }
3799 while (m_at->m_next != NULL) {
3800 m_at = m_at->m_next;
3801 }
3802 m_at->m_next = op_err;
3803 while (m_at->m_next != NULL) {
3804 m_at = m_at->m_next;
3805 }
3806 }
3807 /* Get total size of init packet */
3808 sz_of = SCTP_SIZE32(ntohs(init_chk->ch.chunk_length));
3809 /* pre-calulate the size and update pkt header and chunk header */
3810 m->m_pkthdr.len = 0;
3811 for (m_tmp = m; m_tmp; m_tmp = m_tmp->m_next) {
3812 m->m_pkthdr.len += m_tmp->m_len;
3813 if (m_tmp->m_next == NULL) {
3814 /* m_tmp should now point to last one */
3815 break;
3816 }
3817 }
3818 /*
3819 * Figure now the size of the cookie. We know the size of the
3820 * INIT-ACK. The Cookie is going to be the size of INIT, INIT-ACK,
3821 * COOKIE-STRUCTURE and SIGNATURE.
3822 */
3823
3824 /*
3825 * take our earlier INIT calc and add in the sz we just calculated
3826 * minus the size of the sctphdr (its not included in chunk size
3827 */
3828
3829 /* add once for the INIT-ACK */
3830 sz_of += (m->m_pkthdr.len - sizeof(struct sctphdr));
3831
3832 /* add a second time for the INIT-ACK in the cookie */
3833 sz_of += (m->m_pkthdr.len - sizeof(struct sctphdr));
3834
3835 /* Now add the cookie header and cookie message struct */
3836 sz_of += sizeof(struct sctp_state_cookie_param);
3837 /* ...and add the size of our signature */
3838 sz_of += SCTP_SIGNATURE_SIZE;
3839 initackm_out->msg.ch.chunk_length = htons(sz_of);
3840
3841 /* Now we must build a cookie */
3842 m_cookie = sctp_add_cookie(inp, init_pkt, offset, m,
3843 sizeof(struct sctphdr), &stc);
3844 if (m_cookie == NULL) {
3845 /* memory problem */
3846 sctp_m_freem(m);
3847 return;
3848 }
3849 /* Now append the cookie to the end and update the space/size */
3850 m_tmp->m_next = m_cookie;
3851
3852 /*
3853 * We pass 0 here to NOT set IP_DF if its IPv4, we ignore the
3854 * return here since the timer will drive a retranmission.
3855 */
3856 padval = m->m_pkthdr.len % 4;
3857 if ((padval) && (m_last)) {
3858 /* see my previous comments on m_last */
3859 int ret;
3860 ret = sctp_add_pad_tombuf(m_last, (4-padval));
3861 if (ret) {
3862 /* Houston we have a problem, no space */
3863 sctp_m_freem(m);
3864 return;
3865 }
3866 m->m_pkthdr.len += padval;
3867 }
3868 sctp_lowlevel_chunk_output(inp, NULL, NULL, to, m, 0, 0, NULL, 0);
3869 }
3870
3871
3872 static void
3873 sctp_insert_on_wheel(struct sctp_association *asoc,
3874 struct sctp_stream_out *strq)
3875 {
3876 struct sctp_stream_out *stre, *strn;
3877 stre = TAILQ_FIRST(&asoc->out_wheel);
3878 if (stre == NULL) {
3879 /* only one on wheel */
3880 TAILQ_INSERT_HEAD(&asoc->out_wheel, strq, next_spoke);
3881 return;
3882 }
3883 for (; stre; stre = strn) {
3884 strn = TAILQ_NEXT(stre, next_spoke);
3885 if (stre->stream_no > strq->stream_no) {
3886 TAILQ_INSERT_BEFORE(stre, strq, next_spoke);
3887 return;
3888 } else if (stre->stream_no == strq->stream_no) {
3889 /* huh, should not happen */
3890 return;
3891 } else if (strn == NULL) {
3892 /* next one is null */
3893 TAILQ_INSERT_AFTER(&asoc->out_wheel, stre, strq,
3894 next_spoke);
3895 }
3896 }
3897 }
3898
3899 static void
3900 sctp_remove_from_wheel(struct sctp_association *asoc,
3901 struct sctp_stream_out *strq)
3902 {
3903 /* take off and then setup so we know it is not on the wheel */
3904 TAILQ_REMOVE(&asoc->out_wheel, strq, next_spoke);
3905 strq->next_spoke.tqe_next = NULL;
3906 strq->next_spoke.tqe_prev = NULL;
3907 }
3908
3909
3910 static void
3911 sctp_prune_prsctp(struct sctp_tcb *stcb,
3912 struct sctp_association *asoc,
3913 struct sctp_sndrcvinfo *srcv,
3914 int dataout
3915 )
3916 {
3917 int freed_spc=0;
3918 struct sctp_tmit_chunk *chk, *nchk;
3919 if ((asoc->peer_supports_prsctp) && (asoc->sent_queue_cnt_removeable > 0)) {
3920 TAILQ_FOREACH(chk, &asoc->sent_queue, sctp_next) {
3921 /*
3922 * Look for chunks marked with the PR_SCTP
3923 * flag AND the buffer space flag. If the one
3924 * being sent is equal or greater priority then
3925 * purge the old one and free some space.
3926 */
3927 if ((chk->flags & (SCTP_PR_SCTP_ENABLED |
3928 SCTP_PR_SCTP_BUFFER)) ==
3929 (SCTP_PR_SCTP_ENABLED|SCTP_PR_SCTP_BUFFER)) {
3930 /*
3931 * This one is PR-SCTP AND buffer space
3932 * limited type
3933 */
3934 if (chk->rec.data.timetodrop.tv_sec >= (long)srcv->sinfo_timetolive) {
3935 /* Lower numbers equates to
3936 * higher priority so if the
3937 * one we are looking at has a
3938 * larger or equal priority we
3939 * want to drop the data and
3940 * NOT retransmit it.
3941 */
3942 if (chk->data) {
3943 /* We release the
3944 * book_size if the
3945 * mbuf is here
3946 */
3947 int ret_spc;
3948 int cause;
3949 if (chk->sent > SCTP_DATAGRAM_UNSENT)
3950 cause = SCTP_RESPONSE_TO_USER_REQ|SCTP_NOTIFY_DATAGRAM_SENT;
3951 else
3952 cause = SCTP_RESPONSE_TO_USER_REQ|SCTP_NOTIFY_DATAGRAM_UNSENT;
3953 ret_spc = sctp_release_pr_sctp_chunk(stcb, chk,
3954 cause,
3955 &asoc->sent_queue);
3956 freed_spc += ret_spc;
3957 if (freed_spc >= dataout) {
3958 return;
3959 }
3960 } /* if chunk was present */
3961 } /* if of sufficent priority */
3962 } /* if chunk has enabled */
3963 } /* tailqforeach */
3964
3965 chk = TAILQ_FIRST(&asoc->send_queue);
3966 while (chk) {
3967 nchk = TAILQ_NEXT(chk, sctp_next);
3968 /* Here we must move to the sent queue and mark */
3969 if ((chk->flags & (SCTP_PR_SCTP_ENABLED |
3970 SCTP_PR_SCTP_BUFFER)) ==
3971 (SCTP_PR_SCTP_ENABLED|SCTP_PR_SCTP_BUFFER)) {
3972 if (chk->rec.data.timetodrop.tv_sec >= (long)srcv->sinfo_timetolive) {
3973 if (chk->data) {
3974 /* We release the
3975 * book_size if the
3976 * mbuf is here
3977 */
3978 int ret_spc;
3979 ret_spc = sctp_release_pr_sctp_chunk(stcb, chk,
3980 SCTP_RESPONSE_TO_USER_REQ|SCTP_NOTIFY_DATAGRAM_UNSENT,
3981 &asoc->send_queue);
3982
3983 freed_spc += ret_spc;
3984 if (freed_spc >= dataout) {
3985 return;
3986 }
3987 } /* end if chk->data */
3988 } /* end if right class */
3989 } /* end if chk pr-sctp */
3990 chk = nchk;
3991 } /* end while (chk) */
3992 } /* if enabled in asoc */
3993 }
3994
3995 static void
3996 sctp_prepare_chunk(struct sctp_tmit_chunk *template,
3997 struct sctp_tcb *stcb,
3998 struct sctp_sndrcvinfo *srcv,
3999 struct sctp_stream_out *strq,
4000 struct sctp_nets *net)
4001 {
4002 memset(template, 0, sizeof(struct sctp_tmit_chunk));
4003 template->sent = SCTP_DATAGRAM_UNSENT;
4004 if ((stcb->asoc.peer_supports_prsctp) &&
4005 (srcv->sinfo_flags & (SCTP_PR_SCTP_TTL|SCTP_PR_SCTP_BUF)) &&
4006 (srcv->sinfo_timetolive > 0)
4007 ) {
4008 /* If:
4009 * Peer supports PR-SCTP
4010 * The flags is set against this send for PR-SCTP
4011 * And timetolive is a postive value, zero is reserved
4012 * to mean a reliable send for both buffer/time
4013 * related one.
4014 */
4015 if (srcv->sinfo_flags & SCTP_PR_SCTP_BUF) {
4016 /*
4017 * Time to live is a priority stored in tv_sec
4018 * when doing the buffer drop thing.
4019 */
4020 template->rec.data.timetodrop.tv_sec = srcv->sinfo_timetolive;
4021 } else {
4022 struct timeval tv;
4023
4024 SCTP_GETTIME_TIMEVAL(&template->rec.data.timetodrop);
4025 tv.tv_sec = srcv->sinfo_timetolive / 1000;
4026 tv.tv_usec = (srcv->sinfo_timetolive * 1000) % 1000000;
4027 #ifndef __FreeBSD__
4028 timeradd(&template->rec.data.timetodrop, &tv,
4029 &template->rec.data.timetodrop);
4030 #else
4031 timevaladd(&template->rec.data.timetodrop, &tv);
4032 #endif
4033 }
4034 }
4035 if ((srcv->sinfo_flags & SCTP_UNORDERED) == 0) {
4036 template->rec.data.stream_seq = strq->next_sequence_sent;
4037 } else {
4038 template->rec.data.stream_seq = 0;
4039 }
4040 template->rec.data.TSN_seq = 0; /* not yet assigned */
4041
4042 template->rec.data.stream_number = srcv->sinfo_stream;
4043 template->rec.data.payloadtype = srcv->sinfo_ppid;
4044 template->rec.data.context = srcv->sinfo_context;
4045 template->rec.data.doing_fast_retransmit = 0;
4046 template->rec.data.ect_nonce = 0; /* ECN Nonce */
4047
4048 if (srcv->sinfo_flags & SCTP_ADDR_OVER) {
4049 template->whoTo = net;
4050 } else {
4051 if (stcb->asoc.primary_destination)
4052 template->whoTo = stcb->asoc.primary_destination;
4053 else {
4054 /* TSNH */
4055 template->whoTo = net;
4056 }
4057 }
4058 /* the actual chunk flags */
4059 if (srcv->sinfo_flags & SCTP_UNORDERED) {
4060 template->rec.data.rcv_flags = SCTP_DATA_UNORDERED;
4061 } else {
4062 template->rec.data.rcv_flags = 0;
4063 }
4064 /* no flags yet, FRAGMENT_OK goes here */
4065 template->flags = 0;
4066 /* PR sctp flags */
4067 if (stcb->asoc.peer_supports_prsctp) {
4068 if (srcv->sinfo_timetolive > 0) {
4069 /*
4070 * We only set the flag if timetolive (or
4071 * priority) was set to a positive number.
4072 * Zero is reserved specifically to be
4073 * EXCLUDED and sent reliable.
4074 */
4075 if (srcv->sinfo_flags & SCTP_PR_SCTP_TTL) {
4076 template->flags |= SCTP_PR_SCTP_ENABLED;
4077 }
4078 if (srcv->sinfo_flags & SCTP_PR_SCTP_BUF) {
4079 template->flags |= SCTP_PR_SCTP_BUFFER;
4080 }
4081 }
4082 }
4083 template->asoc = &stcb->asoc;
4084 }
4085
4086
4087 int
4088 sctp_get_frag_point(struct sctp_tcb *stcb,
4089 struct sctp_association *asoc)
4090 {
4091 int siz, ovh;
4092
4093 /* For endpoints that have both 6 and 4 addresses
4094 * we must reserver room for the 6 ip header, for
4095 * those that are only dealing with V4 we use
4096 * a larger frag point.
4097 */
4098 if (stcb->sctp_ep->sctp_flags & SCTP_PCB_FLAGS_BOUND_V6) {
4099 ovh = SCTP_MED_OVERHEAD;
4100 } else {
4101 ovh = SCTP_MED_V4_OVERHEAD;
4102 }
4103
4104 if (stcb->sctp_ep->sctp_frag_point > asoc->smallest_mtu)
4105 siz = asoc->smallest_mtu - ovh;
4106 else
4107 siz = (stcb->sctp_ep->sctp_frag_point - ovh);
4108 /*
4109 if (siz > (MCLBYTES-sizeof(struct sctp_data_chunk))) { */
4110 /* A data chunk MUST fit in a cluster */
4111 /* siz = (MCLBYTES - sizeof(struct sctp_data_chunk));*/
4112 /* }*/
4113
4114 if (siz % 4) {
4115 /* make it an even word boundary please */
4116 siz -= (siz % 4);
4117 }
4118 return (siz);
4119 }
4120 extern unsigned int sctp_max_chunks_on_queue;
4121
4122 #define SBLOCKWAIT(f) (((f)&MSG_DONTWAIT) ? M_NOWAIT : M_WAITOK)
4123
4124 static int
4125 sctp_msg_append(struct sctp_tcb *stcb,
4126 struct sctp_nets *net,
4127 struct mbuf *m,
4128 struct sctp_sndrcvinfo *srcv,
4129 int flags)
4130 {
4131 struct socket *so;
4132 struct sctp_association *asoc;
4133 struct sctp_stream_out *strq;
4134 struct sctp_tmit_chunk *chk;
4135 struct sctpchunk_listhead tmp;
4136 struct sctp_tmit_chunk template;
4137 struct mbuf *n, *mnext;
4138 struct mbuf *mm;
4139 unsigned int dataout, siz;
4140 int mbcnt = 0;
4141 int mbcnt_e = 0;
4142 int error = 0;
4143
4144 if ((stcb == NULL) || (net == NULL) || (m == NULL) || (srcv == NULL)) {
4145 /* Software fault, you blew it on the call */
4146 #ifdef SCTP_DEBUG
4147 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
4148 printf("software error in sctp_msg_append:1\n");
4149 printf("stcb:%p net:%p m:%p srcv:%p\n",
4150 stcb, net, m, srcv);
4151 }
4152 #endif
4153 if (m)
4154 sctp_m_freem(m);
4155 return (EFAULT);
4156 }
4157 so = stcb->sctp_socket;
4158 asoc = &stcb->asoc;
4159 if (srcv->sinfo_flags & SCTP_ABORT) {
4160 if ((SCTP_GET_STATE(asoc) != SCTP_STATE_COOKIE_WAIT) &&
4161 (SCTP_GET_STATE(asoc) != SCTP_STATE_COOKIE_ECHOED)) {
4162 /* It has to be up before we abort */
4163 /* how big is the user initiated abort? */
4164 if ((m->m_flags & M_PKTHDR) && (m->m_pkthdr.len)) {
4165 dataout = m->m_pkthdr.len;
4166 } else {
4167 /* we must count */
4168 dataout = 0;
4169 for (n = m; n; n = n->m_next) {
4170 dataout += n->m_len;
4171 }
4172 }
4173 M_PREPEND(m, sizeof(struct sctp_paramhdr), M_DONTWAIT);
4174 if (m) {
4175 struct sctp_paramhdr *ph;
4176 m->m_len = sizeof(struct sctp_paramhdr) + dataout;
4177 ph = mtod(m, struct sctp_paramhdr *);
4178 ph->param_type = htons(SCTP_CAUSE_USER_INITIATED_ABT);
4179 ph->param_length = htons(m->m_len);
4180 }
4181 sctp_abort_an_association(stcb->sctp_ep, stcb, SCTP_RESPONSE_TO_USER_REQ, m);
4182 m = NULL;
4183 } else {
4184 /* Only free if we don't send an abort */
4185 ;
4186 }
4187 goto out;
4188 }
4189 if ((SCTP_GET_STATE(asoc) == SCTP_STATE_SHUTDOWN_SENT) ||
4190 (SCTP_GET_STATE(asoc) == SCTP_STATE_SHUTDOWN_ACK_SENT) ||
4191 (SCTP_GET_STATE(asoc) == SCTP_STATE_SHUTDOWN_RECEIVED) ||
4192 (asoc->state & SCTP_STATE_SHUTDOWN_PENDING)) {
4193 /* got data while shutting down */
4194 error = ECONNRESET;
4195 goto out;
4196 }
4197
4198 if (srcv->sinfo_stream >= asoc->streamoutcnt) {
4199 /* Invalid stream number */
4200 error = EINVAL;
4201 goto out;
4202 }
4203 if (asoc->strmout == NULL) {
4204 /* huh? software error */
4205 #ifdef SCTP_DEBUG
4206 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
4207 printf("software error in sctp_msg_append:2\n");
4208 }
4209 #endif
4210 error = EFAULT;
4211 goto out;
4212 }
4213 strq = &asoc->strmout[srcv->sinfo_stream];
4214 /* how big is it ? */
4215 if ((m->m_flags & M_PKTHDR) && (m->m_pkthdr.len)) {
4216 dataout = m->m_pkthdr.len;
4217 } else {
4218 /* we must count */
4219 dataout = 0;
4220 for (n = m; n; n = n->m_next) {
4221 dataout += n->m_len;
4222 }
4223 }
4224 #ifdef SCTP_DEBUG
4225 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
4226 printf("Attempt to send out %d bytes\n",
4227 dataout);
4228 }
4229 #endif
4230
4231 /* lock the socket buf */
4232 error = sblock(&so->so_snd, SBLOCKWAIT(flags));
4233 if (error)
4234 goto out_locked;
4235
4236 if (dataout > so->so_snd.sb_hiwat) {
4237 /* It will NEVER fit */
4238 error = EMSGSIZE;
4239 goto release;
4240 }
4241 if ((srcv->sinfo_flags & SCTP_EOF) &&
4242 (stcb->sctp_ep->sctp_flags & SCTP_PCB_FLAGS_UDPTYPE) &&
4243 (dataout == 0)
4244 ) {
4245 goto zap_by_it_all;
4246 }
4247 if ((so->so_snd.sb_hiwat <
4248 (dataout + asoc->total_output_queue_size)) ||
4249 (asoc->chunks_on_out_queue > sctp_max_chunks_on_queue) ||
4250 (asoc->total_output_mbuf_queue_size >
4251 so->so_snd.sb_mbmax)
4252 ) {
4253 /* XXX Buffer space hunt for data to skip */
4254 if (asoc->peer_supports_prsctp) {
4255 sctp_prune_prsctp(stcb, asoc, srcv, dataout);
4256 }
4257 while ((so->so_snd.sb_hiwat <
4258 (dataout + asoc->total_output_queue_size)) ||
4259 (asoc->chunks_on_out_queue > sctp_max_chunks_on_queue) ||
4260 (asoc->total_output_mbuf_queue_size >
4261 so->so_snd.sb_mbmax)) {
4262 struct sctp_inpcb *inp;
4263 /* Now did we free up enough room? */
4264 if (so->so_state & SS_NBIO) {
4265 /* Non-blocking io in place */
4266 error = EWOULDBLOCK;
4267 goto release;
4268 }
4269 /*
4270 * We store off a pointer to the endpoint.
4271 * Since on return from this we must check to
4272 * see if an so_error is set. If so we may have
4273 * been reset and our stcb destroyed. Returning
4274 * an error will cause the correct error return
4275 * through and fix this all.
4276 */
4277 inp = stcb->sctp_ep;
4278 /*
4279 * Not sure how else to do this since
4280 * the level we suspended at is not
4281 * known deep down where we are. I will
4282 * drop to spl0() so that others can
4283 * get in.
4284 */
4285
4286 inp->sctp_tcb_at_block = (void *)stcb;
4287 inp->error_on_block = 0;
4288 sbunlock(&so->so_snd);
4289 error = sbwait(&so->so_snd);
4290 /*
4291 * XXX: This is ugly but I have
4292 * recreated most of what goes on to
4293 * block in the sb. UGHH
4294 * May want to add the bit about being
4295 * no longer connected.. but this then
4296 * further dooms the UDP model NOT to
4297 * allow this.
4298 */
4299 inp->sctp_tcb_at_block = 0;
4300 if (inp->error_on_block)
4301 error = inp->error_on_block;
4302 if (so->so_error)
4303 error = so->so_error;
4304 if (error) {
4305 goto out_locked;
4306 }
4307 error = sblock(&so->so_snd, M_WAITOK);
4308 if (error)
4309 goto out_locked;
4310 /* Otherwise we cycle back and recheck
4311 * the space
4312 */
4313 #if defined(__FreeBSD__) && __FreeBSD_version >= 502115
4314 if (so->so_rcv.sb_state & SBS_CANTSENDMORE) {
4315 #else
4316 if (so->so_state & SS_CANTSENDMORE) {
4317 #endif
4318 error = EPIPE;
4319 goto release;
4320 }
4321 if (so->so_error) {
4322 error = so->so_error;
4323 goto release;
4324 }
4325 }
4326 }
4327 /* If we have a packet header fix it if it was broke */
4328 if (m->m_flags & M_PKTHDR) {
4329 m->m_pkthdr.len = dataout;
4330 }
4331 /* use the smallest one, user set value or
4332 * smallest mtu of the asoc
4333 */
4334 siz = sctp_get_frag_point(stcb, asoc);
4335 if ((dataout) && (dataout <= siz)) {
4336 /* Fast path */
4337 chk = (struct sctp_tmit_chunk *)SCTP_ZONE_GET(sctppcbinfo.ipi_zone_chunk);
4338 if (chk == NULL) {
4339 error = ENOMEM;
4340 goto release;
4341 }
4342 sctp_prepare_chunk(chk, stcb, srcv, strq, net);
4343 chk->whoTo->ref_count++;
4344 chk->rec.data.rcv_flags |= SCTP_DATA_NOT_FRAG;
4345
4346 /* no flags yet, FRAGMENT_OK goes here */
4347 sctppcbinfo.ipi_count_chunk++;
4348 sctppcbinfo.ipi_gencnt_chunk++;
4349 asoc->chunks_on_out_queue++;
4350 chk->data = m;
4351 m = NULL;
4352 /* Total in the MSIZE */
4353 for (mm = chk->data; mm; mm = mm->m_next) {
4354 mbcnt += MSIZE;
4355 if (mm->m_flags & M_EXT) {
4356 mbcnt += chk->data->m_ext.ext_size;
4357 }
4358 }
4359 /* fix up the send_size if it is not present */
4360 chk->send_size = dataout;
4361 chk->book_size = chk->send_size;
4362 chk->mbcnt = mbcnt;
4363 /* ok, we are commited */
4364 if ((srcv->sinfo_flags & SCTP_UNORDERED) == 0) {
4365 /* bump the ssn if we are unordered. */
4366 strq->next_sequence_sent++;
4367 }
4368 chk->data->m_nextpkt = 0;
4369 asoc->stream_queue_cnt++;
4370 TAILQ_INSERT_TAIL(&strq->outqueue, chk, sctp_next);
4371 /* now check if this stream is on the wheel */
4372 if ((strq->next_spoke.tqe_next == NULL) &&
4373 (strq->next_spoke.tqe_prev == NULL)) {
4374 /* Insert it on the wheel since it is not
4375 * on it currently
4376 */
4377 sctp_insert_on_wheel(asoc, strq);
4378 }
4379 } else if ((dataout) && (dataout > siz)) {
4380 /* Slow path */
4381 if ((stcb->sctp_ep->sctp_flags & SCTP_PCB_FLAGS_NO_FRAGMENT) &&
4382 (dataout > siz)) {
4383 error = EMSGSIZE;
4384 goto release;
4385 }
4386 /* setup the template */
4387 sctp_prepare_chunk(&template, stcb, srcv, strq, net);
4388
4389 n = m;
4390 while (dataout > siz) {
4391 /*
4392 * We can wait since this is called from the user
4393 * send side
4394 */
4395 n->m_nextpkt = m_split(n, siz, M_WAIT);
4396 if (n->m_nextpkt == NULL) {
4397 error = EFAULT;
4398 goto release;
4399 }
4400 dataout -= siz;
4401 n = n->m_nextpkt;
4402 }
4403 /*
4404 * ok, now we have a chain on m where m->m_nextpkt points to
4405 * the next chunk and m/m->m_next chain is the piece to send.
4406 * We must go through the chains and thread them on to
4407 * sctp_tmit_chunk chains and place them all on the stream
4408 * queue, breaking the m->m_nextpkt pointers as we go.
4409 */
4410 n = m;
4411 TAILQ_INIT(&tmp);
4412 while (n) {
4413 /*
4414 * first go through and allocate a sctp_tmit chunk
4415 * for each chunk piece
4416 */
4417 chk = (struct sctp_tmit_chunk *)SCTP_ZONE_GET(sctppcbinfo.ipi_zone_chunk);
4418 if (chk == NULL) {
4419 /*
4420 * ok we must spin through and dump anything
4421 * we have allocated and then jump to the
4422 * no_membad
4423 */
4424 chk = TAILQ_FIRST(&tmp);
4425 while (chk) {
4426 TAILQ_REMOVE(&tmp, chk, sctp_next);
4427 SCTP_ZONE_FREE(sctppcbinfo.ipi_zone_chunk, chk);
4428 sctppcbinfo.ipi_count_chunk--;
4429 asoc->chunks_on_out_queue--;
4430 if ((int)sctppcbinfo.ipi_count_chunk < 0) {
4431 panic("Chunk count is negative");
4432 }
4433 sctppcbinfo.ipi_gencnt_chunk++;
4434 chk = TAILQ_FIRST(&tmp);
4435 }
4436 error = ENOMEM;
4437 goto release;
4438 }
4439 sctppcbinfo.ipi_count_chunk++;
4440 asoc->chunks_on_out_queue++;
4441
4442 sctppcbinfo.ipi_gencnt_chunk++;
4443 *chk = template;
4444 chk->whoTo->ref_count++;
4445 chk->data = n;
4446 /* Total in the MSIZE */
4447 mbcnt_e = 0;
4448 for (mm = chk->data; mm; mm = mm->m_next) {
4449 mbcnt_e += MSIZE;
4450 if (mm->m_flags & M_EXT) {
4451 mbcnt_e += chk->data->m_ext.ext_size;
4452 }
4453 }
4454 /* now fix the chk->send_size */
4455 if (chk->data->m_flags & M_PKTHDR) {
4456 chk->send_size = chk->data->m_pkthdr.len;
4457 } else {
4458 struct mbuf *nn;
4459 chk->send_size = 0;
4460 for (nn = chk->data; nn; nn = nn->m_next) {
4461 chk->send_size += nn->m_len;
4462 }
4463 }
4464 chk->book_size = chk->send_size;
4465 chk->mbcnt = mbcnt_e;
4466 mbcnt += mbcnt_e;
4467 if (chk->flags & SCTP_PR_SCTP_BUFFER) {
4468 asoc->sent_queue_cnt_removeable++;
4469 }
4470 n = n->m_nextpkt;
4471 TAILQ_INSERT_TAIL(&tmp, chk, sctp_next);
4472 }
4473 m = NULL;
4474 /* now that we have enough space for all de-couple the
4475 * chain of mbufs by going through our temp array
4476 * and breaking the pointers.
4477 */
4478 /* ok, we are commited */
4479 if ((srcv->sinfo_flags & SCTP_UNORDERED) == 0) {
4480 /* bump the ssn if we are unordered. */
4481 strq->next_sequence_sent++;
4482 }
4483 /* Mark the first/last flags. This will
4484 * result int a 3 for a single item on the list
4485 */
4486 chk = TAILQ_FIRST(&tmp);
4487 chk->rec.data.rcv_flags |= SCTP_DATA_FIRST_FRAG;
4488 chk = TAILQ_LAST(&tmp, sctpchunk_listhead);
4489 chk->rec.data.rcv_flags |= SCTP_DATA_LAST_FRAG;
4490 /* now break any chains on the queue and
4491 * move it to the streams actual queue.
4492 */
4493 chk = TAILQ_FIRST(&tmp);
4494 while (chk) {
4495 chk->data->m_nextpkt = 0;
4496 TAILQ_REMOVE(&tmp, chk, sctp_next);
4497 asoc->stream_queue_cnt++;
4498 TAILQ_INSERT_TAIL(&strq->outqueue, chk, sctp_next);
4499 chk = TAILQ_FIRST(&tmp);
4500 }
4501 /* now check if this stream is on the wheel */
4502 if ((strq->next_spoke.tqe_next == NULL) &&
4503 (strq->next_spoke.tqe_prev == NULL)) {
4504 /* Insert it on the wheel since it is not
4505 * on it currently
4506 */
4507 sctp_insert_on_wheel(asoc, strq);
4508 }
4509 }
4510 /* has a SHUTDOWN been (also) requested by the user on this asoc? */
4511 zap_by_it_all:
4512
4513 if ((srcv->sinfo_flags & SCTP_EOF) &&
4514 (stcb->sctp_ep->sctp_flags & SCTP_PCB_FLAGS_UDPTYPE)) {
4515
4516 int some_on_streamwheel = 0;
4517
4518 if (!TAILQ_EMPTY(&asoc->out_wheel)) {
4519 /* Check to see if some data queued */
4520 struct sctp_stream_out *outs;
4521 TAILQ_FOREACH(outs, &asoc->out_wheel, next_spoke) {
4522 if (!TAILQ_EMPTY(&outs->outqueue)) {
4523 some_on_streamwheel = 1;
4524 break;
4525 }
4526 }
4527 }
4528
4529 if (TAILQ_EMPTY(&asoc->send_queue) &&
4530 TAILQ_EMPTY(&asoc->sent_queue) &&
4531 (some_on_streamwheel == 0)) {
4532 /* there is nothing queued to send, so I'm done... */
4533 if ((SCTP_GET_STATE(asoc) != SCTP_STATE_SHUTDOWN_SENT) &&
4534 (SCTP_GET_STATE(asoc) != SCTP_STATE_SHUTDOWN_ACK_SENT)) {
4535 /* only send SHUTDOWN the first time through */
4536 #ifdef SCTP_DEBUG
4537 if (sctp_debug_on & SCTP_DEBUG_OUTPUT4) {
4538 printf("%s:%d sends a shutdown\n",
4539 __FILE__,
4540 __LINE__
4541 );
4542 }
4543 #endif
4544 sctp_send_shutdown(stcb, stcb->asoc.primary_destination);
4545 asoc->state = SCTP_STATE_SHUTDOWN_SENT;
4546 sctp_timer_start(SCTP_TIMER_TYPE_SHUTDOWN, stcb->sctp_ep, stcb,
4547 asoc->primary_destination);
4548 sctp_timer_start(SCTP_TIMER_TYPE_SHUTDOWNGUARD, stcb->sctp_ep, stcb,
4549 asoc->primary_destination);
4550 }
4551 } else {
4552 /*
4553 * we still got (or just got) data to send, so set
4554 * SHUTDOWN_PENDING
4555 */
4556 asoc->state |= SCTP_STATE_SHUTDOWN_PENDING;
4557 }
4558 }
4559 #ifdef SCTP_MBCNT_LOGGING
4560 sctp_log_mbcnt(SCTP_LOG_MBCNT_INCREASE,
4561 asoc->total_output_queue_size,
4562 dataout,
4563 asoc->total_output_mbuf_queue_size,
4564 mbcnt);
4565 #endif
4566 asoc->total_output_queue_size += dataout;
4567 asoc->total_output_mbuf_queue_size += mbcnt;
4568 if ((stcb->sctp_ep->sctp_flags & SCTP_PCB_FLAGS_TCPTYPE) ||
4569 (stcb->sctp_ep->sctp_flags & SCTP_PCB_FLAGS_IN_TCPPOOL)) {
4570 so->so_snd.sb_cc += dataout;
4571 so->so_snd.sb_mbcnt += mbcnt;
4572 }
4573
4574 #ifdef SCTP_DEBUG
4575 if (sctp_debug_on & SCTP_DEBUG_OUTPUT2) {
4576 printf("++total out:%d total_mbuf_out:%d\n",
4577 (int)asoc->total_output_queue_size,
4578 (int)asoc->total_output_mbuf_queue_size);
4579 }
4580 #endif
4581
4582 release:
4583 sbunlock(&so->so_snd);
4584 out_locked:
4585
4586 out:
4587 if (m && m->m_nextpkt) {
4588 n = m;
4589 while (n) {
4590 mnext = n->m_nextpkt;
4591 n->m_nextpkt = NULL;
4592 sctp_m_freem(n);
4593 n = mnext;
4594 }
4595 } else if (m)
4596 sctp_m_freem(m);
4597
4598 return (error);
4599 }
4600
4601 static struct mbuf *
4602 sctp_copy_mbufchain(struct mbuf *clonechain,
4603 struct mbuf *outchain)
4604 {
4605 struct mbuf *appendchain;
4606 #if defined(__FreeBSD__) || defined(__NetBSD__)
4607 /* Supposedly m_copypacket is an optimization, use it if we can */
4608 if (clonechain->m_flags & M_PKTHDR) {
4609 appendchain = m_copypacket(clonechain, M_DONTWAIT);
4610 sctp_pegs[SCTP_CACHED_SRC]++;
4611 } else
4612 appendchain = m_copym(clonechain, 0, M_COPYALL, M_DONTWAIT);
4613 #elif defined(__APPLE__)
4614 appendchain = sctp_m_copym(clonechain, 0, M_COPYALL, M_DONTWAIT);
4615 #else
4616 appendchain = m_copy(clonechain, 0, M_COPYALL);
4617 #endif
4618
4619 if (appendchain == NULL) {
4620 /* error */
4621 if (outchain)
4622 sctp_m_freem(outchain);
4623 return (NULL);
4624 }
4625 if (outchain) {
4626 /* tack on to the end */
4627 struct mbuf *m;
4628 m = outchain;
4629 while (m) {
4630 if (m->m_next == NULL) {
4631 m->m_next = appendchain;
4632 break;
4633 }
4634 m = m->m_next;
4635 }
4636 if (outchain->m_flags & M_PKTHDR) {
4637 int append_tot;
4638 struct mbuf *t;
4639 t = appendchain;
4640 append_tot = 0;
4641 while (t) {
4642 append_tot += t->m_len;
4643 t = t->m_next;
4644 }
4645 outchain->m_pkthdr.len += append_tot;
4646 }
4647 return (outchain);
4648 } else {
4649 return (appendchain);
4650 }
4651 }
4652
4653 static void
4654 sctp_sendall_iterator(struct sctp_inpcb *inp, struct sctp_tcb *stcb, void *ptr, u_int32_t val)
4655 {
4656 struct sctp_copy_all *ca;
4657 struct mbuf *m;
4658 int turned_on_nonblock=0, ret;
4659
4660 ca = (struct sctp_copy_all *)ptr;
4661 if (ca->m == NULL) {
4662 return;
4663 }
4664 if (ca->inp != inp) {
4665 /* TSNH */
4666 return;
4667 }
4668 m = sctp_copy_mbufchain(ca->m, NULL);
4669 if (m == NULL) {
4670 /* can't copy so we are done */
4671 ca->cnt_failed++;
4672 return;
4673 }
4674 if ((stcb->sctp_socket->so_state & SS_NBIO) == 0) {
4675 /* we have to do this non-blocking */
4676 turned_on_nonblock = 1;
4677 stcb->sctp_socket->so_state |= SS_NBIO;
4678 }
4679 ret = sctp_msg_append(stcb, stcb->asoc.primary_destination, m, &ca->sndrcv, 0);
4680 if (turned_on_nonblock) {
4681 /* we turned on non-blocking so turn it off */
4682 stcb->sctp_socket->so_state &= ~SS_NBIO;
4683 }
4684 if (ret) {
4685 ca->cnt_failed++;
4686 } else {
4687 ca->cnt_sent++;
4688 }
4689 }
4690
4691 static void
4692 sctp_sendall_completes(void *ptr, u_int32_t val)
4693 {
4694 struct sctp_copy_all *ca;
4695 ca = (struct sctp_copy_all *)ptr;
4696 /* Do a notify here?
4697 * Kacheong suggests that the notify
4698 * be done at the send time.. so you would
4699 * push up a notification if any send failed.
4700 * Don't know if this is feasable since the
4701 * only failures we have is "memory" related and
4702 * if you cannot get an mbuf to send the data
4703 * you surely can't get an mbuf to send up
4704 * to notify the user you can't send the data :->
4705 */
4706
4707 /* now free everything */
4708 m_freem(ca->m);
4709 free(ca, M_PCB);
4710 }
4711
4712
4713 #define MC_ALIGN(m, len) do { \
4714 (m)->m_data += (MCLBYTES - (len)) & ~(sizeof(long) - 1); \
4715 } while (0)
4716
4717
4718
4719 static struct mbuf *
4720 sctp_copy_out_all(struct uio *uio, int len)
4721 {
4722 struct mbuf *ret, *at;
4723 int left, willcpy, cancpy, error;
4724
4725 MGETHDR(ret, M_WAIT, MT_HEADER);
4726 if (ret == NULL) {
4727 /* TSNH */
4728 return (NULL);
4729 }
4730 left = len;
4731 ret->m_len = 0;
4732 ret->m_pkthdr.len = len;
4733 MCLGET(ret, M_WAIT);
4734 if (ret == NULL) {
4735 return (NULL);
4736 }
4737 if ((ret->m_flags & M_EXT) == 0) {
4738 m_freem (ret);
4739 return (NULL);
4740 }
4741 cancpy = M_TRAILINGSPACE(ret);
4742 willcpy = uimin(cancpy, left);
4743 at = ret;
4744 while (left > 0) {
4745 /* Align data to the end */
4746 MC_ALIGN(at, willcpy);
4747 error = uiomove(mtod(at, void *), willcpy, uio);
4748 if (error) {
4749 err_out_now:
4750 m_freem(ret);
4751 return (NULL);
4752 }
4753 at->m_len = willcpy;
4754 at->m_nextpkt = at->m_next = 0;
4755 left -= willcpy;
4756 if (left > 0) {
4757 MGET(at->m_next, M_WAIT, MT_DATA);
4758 if (at->m_next == NULL) {
4759 goto err_out_now;
4760 }
4761 at = at->m_next;
4762 at->m_len = 0;
4763 MCLGET(at, M_WAIT);
4764 if (at == NULL) {
4765 goto err_out_now;
4766 }
4767 if ((at->m_flags & M_EXT) == 0) {
4768 goto err_out_now;
4769 }
4770 cancpy = M_TRAILINGSPACE(at);
4771 willcpy = uimin(cancpy, left);
4772 }
4773 }
4774 return (ret);
4775 }
4776
4777 static int
4778 sctp_sendall (struct sctp_inpcb *inp, struct uio *uio, struct mbuf *m, struct sctp_sndrcvinfo *srcv)
4779 {
4780 int ret;
4781 struct sctp_copy_all *ca;
4782 ca = malloc(sizeof(struct sctp_copy_all), M_PCB, M_WAIT);
4783 if (ca == NULL) {
4784 m_freem(m);
4785 return (ENOMEM);
4786 }
4787 memset (ca, 0, sizeof(struct sctp_copy_all));
4788
4789 ca->inp = inp;
4790 ca->sndrcv = *srcv;
4791 /* take off the sendall flag, it would
4792 * be bad if we failed to do this :-0
4793 */
4794 ca->sndrcv.sinfo_flags &= ~SCTP_SENDALL;
4795
4796 /* get length and mbuf chain */
4797 if (uio) {
4798 ca->sndlen = uio->uio_resid;
4799 ca->m = sctp_copy_out_all(uio, ca->sndlen);
4800 if (ca->m == NULL) {
4801 free(ca, M_PCB);
4802 return (ENOMEM);
4803 }
4804 } else {
4805 if ((m->m_flags & M_PKTHDR) == 0) {
4806 ca->sndlen = 0;
4807 while(m) {
4808 ca->sndlen += m->m_len;
4809 m = m->m_next;
4810 }
4811 } else {
4812 ca->sndlen = m->m_pkthdr.len;
4813 }
4814 ca->m = m;
4815 }
4816
4817 ret = sctp_initiate_iterator(sctp_sendall_iterator, SCTP_PCB_ANY_FLAGS, SCTP_ASOC_ANY_STATE,
4818 (void *)ca, 0, sctp_sendall_completes, inp);
4819 if (ret) {
4820 #ifdef SCTP_DEBUG
4821 printf("Failed to initate iterator to takeover associations\n");
4822 #endif
4823 free(ca, M_PCB);
4824 return (EFAULT);
4825
4826 }
4827 return (0);
4828 }
4829
4830
4831 void
4832 sctp_toss_old_cookies(struct sctp_association *asoc)
4833 {
4834 struct sctp_tmit_chunk *chk, *nchk;
4835 chk = TAILQ_FIRST(&asoc->control_send_queue);
4836 while (chk) {
4837 nchk = TAILQ_NEXT(chk, sctp_next);
4838 if (chk->rec.chunk_id == SCTP_COOKIE_ECHO) {
4839 TAILQ_REMOVE(&asoc->control_send_queue, chk, sctp_next);
4840 if (chk->data) {
4841 sctp_m_freem(chk->data);
4842 chk->data = NULL;
4843 }
4844 asoc->ctrl_queue_cnt--;
4845 if (chk->whoTo)
4846 sctp_free_remote_addr(chk->whoTo);
4847 SCTP_ZONE_FREE(sctppcbinfo.ipi_zone_chunk, chk);
4848 sctppcbinfo.ipi_count_chunk--;
4849 if ((int)sctppcbinfo.ipi_count_chunk < 0) {
4850 panic("Chunk count is negative");
4851 }
4852 sctppcbinfo.ipi_gencnt_chunk++;
4853 }
4854 chk = nchk;
4855 }
4856 }
4857
4858 void
4859 sctp_toss_old_asconf(struct sctp_tcb *stcb)
4860 {
4861 struct sctp_association *asoc;
4862 struct sctp_tmit_chunk *chk, *chk_tmp;
4863
4864 asoc = &stcb->asoc;
4865 for (chk = TAILQ_FIRST(&asoc->control_send_queue); chk != NULL;
4866 chk = chk_tmp) {
4867 /* get next chk */
4868 chk_tmp = TAILQ_NEXT(chk, sctp_next);
4869 /* find SCTP_ASCONF chunk in queue (only one ever in queue) */
4870 if (chk->rec.chunk_id == SCTP_ASCONF) {
4871 TAILQ_REMOVE(&asoc->control_send_queue, chk, sctp_next);
4872 if (chk->data) {
4873 sctp_m_freem(chk->data);
4874 chk->data = NULL;
4875 }
4876 asoc->ctrl_queue_cnt--;
4877 if (chk->whoTo)
4878 sctp_free_remote_addr(chk->whoTo);
4879 SCTP_ZONE_FREE(sctppcbinfo.ipi_zone_chunk, chk);
4880 sctppcbinfo.ipi_count_chunk--;
4881 if ((int)sctppcbinfo.ipi_count_chunk < 0) {
4882 panic("Chunk count is negative");
4883 }
4884 sctppcbinfo.ipi_gencnt_chunk++;
4885 }
4886 }
4887 }
4888
4889
4890 static void
4891 sctp_clean_up_datalist(struct sctp_tcb *stcb,
4892 struct sctp_association *asoc,
4893 struct sctp_tmit_chunk **data_list,
4894 int bundle_at,
4895 struct sctp_nets *net)
4896 {
4897 int i;
4898 for (i = 0; i < bundle_at; i++) {
4899 /* off of the send queue */
4900 if (i) {
4901 /* Any chunk NOT 0 you zap the time
4902 * chunk 0 gets zapped or set based on
4903 * if a RTO measurment is needed.
4904 */
4905 data_list[i]->do_rtt = 0;
4906 }
4907 /* record time */
4908 data_list[i]->sent_rcv_time = net->last_sent_time;
4909 TAILQ_REMOVE(&asoc->send_queue,
4910 data_list[i],
4911 sctp_next);
4912 /* on to the sent queue */
4913 TAILQ_INSERT_TAIL(&asoc->sent_queue,
4914 data_list[i],
4915 sctp_next);
4916 /* This does not lower until the cum-ack passes it */
4917 asoc->sent_queue_cnt++;
4918 asoc->send_queue_cnt--;
4919 if ((asoc->peers_rwnd <= 0) &&
4920 (asoc->total_flight == 0) &&
4921 (bundle_at == 1)) {
4922 /* Mark the chunk as being a window probe */
4923 #ifdef SCTP_DEBUG
4924 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
4925 printf("WINDOW PROBE SET\n");
4926 }
4927 #endif
4928 sctp_pegs[SCTP_WINDOW_PROBES]++;
4929 data_list[i]->rec.data.state_flags |= SCTP_WINDOW_PROBE;
4930 } else {
4931 data_list[i]->rec.data.state_flags &= ~SCTP_WINDOW_PROBE;
4932 }
4933 #ifdef SCTP_AUDITING_ENABLED
4934 sctp_audit_log(0xC2, 3);
4935 #endif
4936 data_list[i]->sent = SCTP_DATAGRAM_SENT;
4937 data_list[i]->snd_count = 1;
4938 net->flight_size += data_list[i]->book_size;
4939 asoc->total_flight += data_list[i]->book_size;
4940 asoc->total_flight_count++;
4941 #ifdef SCTP_LOG_RWND
4942 sctp_log_rwnd(SCTP_DECREASE_PEER_RWND,
4943 asoc->peers_rwnd , data_list[i]->send_size, sctp_peer_chunk_oh);
4944 #endif
4945 asoc->peers_rwnd = sctp_sbspace_sub(asoc->peers_rwnd,
4946 (u_int32_t)(data_list[i]->send_size + sctp_peer_chunk_oh));
4947 if (asoc->peers_rwnd < stcb->sctp_ep->sctp_ep.sctp_sws_sender) {
4948 /* SWS sender side engages */
4949 asoc->peers_rwnd = 0;
4950 }
4951 }
4952 }
4953
4954 static void
4955 sctp_clean_up_ctl(struct sctp_association *asoc)
4956 {
4957 struct sctp_tmit_chunk *chk, *nchk;
4958 for (chk = TAILQ_FIRST(&asoc->control_send_queue);
4959 chk; chk = nchk) {
4960 nchk = TAILQ_NEXT(chk, sctp_next);
4961 if ((chk->rec.chunk_id == SCTP_SELECTIVE_ACK) ||
4962 (chk->rec.chunk_id == SCTP_HEARTBEAT_REQUEST) ||
4963 (chk->rec.chunk_id == SCTP_HEARTBEAT_ACK) ||
4964 (chk->rec.chunk_id == SCTP_SHUTDOWN) ||
4965 (chk->rec.chunk_id == SCTP_SHUTDOWN_ACK) ||
4966 (chk->rec.chunk_id == SCTP_OPERATION_ERROR) ||
4967 (chk->rec.chunk_id == SCTP_PACKET_DROPPED) ||
4968 (chk->rec.chunk_id == SCTP_COOKIE_ACK) ||
4969 (chk->rec.chunk_id == SCTP_ECN_CWR) ||
4970 (chk->rec.chunk_id == SCTP_ASCONF_ACK)) {
4971 /* Stray chunks must be cleaned up */
4972 clean_up_anyway:
4973 TAILQ_REMOVE(&asoc->control_send_queue, chk, sctp_next);
4974 if (chk->data) {
4975 sctp_m_freem(chk->data);
4976 chk->data = NULL;
4977 }
4978 asoc->ctrl_queue_cnt--;
4979 sctp_free_remote_addr(chk->whoTo);
4980 SCTP_ZONE_FREE(sctppcbinfo.ipi_zone_chunk, chk);
4981 sctppcbinfo.ipi_count_chunk--;
4982 if ((int)sctppcbinfo.ipi_count_chunk < 0) {
4983 panic("Chunk count is negative");
4984 }
4985 sctppcbinfo.ipi_gencnt_chunk++;
4986 } else if (chk->rec.chunk_id == SCTP_STREAM_RESET) {
4987 struct sctp_stream_reset_req *strreq;
4988 /* special handling, we must look into the param */
4989 strreq = mtod(chk->data, struct sctp_stream_reset_req *);
4990 if (strreq->sr_req.ph.param_type == ntohs(SCTP_STR_RESET_RESPONSE)) {
4991 goto clean_up_anyway;
4992 }
4993 }
4994 }
4995 }
4996
4997 static int
4998 sctp_move_to_outqueue(struct sctp_tcb *stcb,
4999 struct sctp_stream_out *strq)
5000 {
5001 /* Move from the stream to the send_queue keeping track of the total */
5002 struct sctp_association *asoc;
5003 int tot_moved = 0;
5004 int failed = 0;
5005 int padval;
5006 struct sctp_tmit_chunk *chk, *nchk;
5007 struct sctp_data_chunk *dchkh;
5008 struct sctpchunk_listhead tmp;
5009 struct mbuf *orig;
5010
5011 asoc = &stcb->asoc;
5012 TAILQ_INIT(&tmp);
5013 chk = TAILQ_FIRST(&strq->outqueue);
5014 while (chk) {
5015 nchk = TAILQ_NEXT(chk, sctp_next);
5016 /* now put in the chunk header */
5017 orig = chk->data;
5018 M_PREPEND(chk->data, sizeof(struct sctp_data_chunk), M_DONTWAIT);
5019 if (chk->data == NULL) {
5020 /* HELP */
5021 failed++;
5022 break;
5023 }
5024 if (orig != chk->data) {
5025 /* A new mbuf was added, account for it */
5026 if ((stcb->sctp_ep->sctp_flags & SCTP_PCB_FLAGS_TCPTYPE) ||
5027 (stcb->sctp_ep->sctp_flags & SCTP_PCB_FLAGS_IN_TCPPOOL)) {
5028 stcb->sctp_socket->so_snd.sb_mbcnt += MSIZE;
5029 }
5030 #ifdef SCTP_MBCNT_LOGGING
5031 sctp_log_mbcnt(SCTP_LOG_MBCNT_INCREASE,
5032 asoc->total_output_queue_size,
5033 0,
5034 asoc->total_output_mbuf_queue_size,
5035 MSIZE);
5036 #endif
5037 stcb->asoc.total_output_mbuf_queue_size += MSIZE;
5038 chk->mbcnt += MSIZE;
5039 }
5040 chk->send_size += sizeof(struct sctp_data_chunk);
5041 /* This should NOT have to do anything, but
5042 * I would rather be cautious
5043 */
5044 if (!failed && ((size_t)chk->data->m_len < sizeof(struct sctp_data_chunk))) {
5045 m_pullup(chk->data, sizeof(struct sctp_data_chunk));
5046 if (chk->data == NULL) {
5047 failed++;
5048 break;
5049 }
5050 }
5051 dchkh = mtod(chk->data, struct sctp_data_chunk *);
5052 dchkh->ch.chunk_length = htons(chk->send_size);
5053 /* Chunks must be padded to even word boundary */
5054 padval = chk->send_size % 4;
5055 if (padval) {
5056 /* For fragmented messages this should not
5057 * run except possibly on the last chunk
5058 */
5059 if (sctp_pad_lastmbuf(chk->data, (4 - padval))) {
5060 /* we are in big big trouble no mbufs :< */
5061 failed++;
5062 break;
5063 }
5064 chk->send_size += (4 - padval);
5065 }
5066 /* pull from stream queue */
5067 TAILQ_REMOVE(&strq->outqueue, chk, sctp_next);
5068 asoc->stream_queue_cnt--;
5069 TAILQ_INSERT_TAIL(&tmp, chk, sctp_next);
5070 /* add it in to the size of moved chunks */
5071 if (chk->rec.data.rcv_flags & SCTP_DATA_LAST_FRAG) {
5072 /* we pull only one message */
5073 break;
5074 }
5075 chk = nchk;
5076 }
5077 if (failed) {
5078 /* Gak, we just lost the user message */
5079 chk = TAILQ_FIRST(&tmp);
5080 while (chk) {
5081 nchk = TAILQ_NEXT(chk, sctp_next);
5082 TAILQ_REMOVE(&tmp, chk, sctp_next);
5083
5084 sctp_ulp_notify(SCTP_NOTIFY_DG_FAIL, stcb,
5085 (SCTP_NOTIFY_DATAGRAM_UNSENT|SCTP_INTERNAL_ERROR),
5086 chk);
5087
5088 if (chk->data) {
5089 sctp_m_freem(chk->data);
5090 chk->data = NULL;
5091 }
5092 if (chk->whoTo) {
5093 sctp_free_remote_addr(chk->whoTo);
5094 chk->whoTo = NULL;
5095 }
5096 SCTP_ZONE_FREE(sctppcbinfo.ipi_zone_chunk, chk);
5097 sctppcbinfo.ipi_count_chunk--;
5098 if ((int)sctppcbinfo.ipi_count_chunk < 0) {
5099 panic("Chunk count is negative");
5100 }
5101 sctppcbinfo.ipi_gencnt_chunk++;
5102 chk = nchk;
5103 }
5104 return (0);
5105 }
5106 /* now pull them off of temp wheel */
5107 chk = TAILQ_FIRST(&tmp);
5108 while (chk) {
5109 nchk = TAILQ_NEXT(chk, sctp_next);
5110 /* insert on send_queue */
5111 TAILQ_REMOVE(&tmp, chk, sctp_next);
5112 TAILQ_INSERT_TAIL(&asoc->send_queue, chk, sctp_next);
5113 asoc->send_queue_cnt++;
5114 /* assign TSN */
5115 chk->rec.data.TSN_seq = asoc->sending_seq++;
5116
5117 dchkh = mtod(chk->data, struct sctp_data_chunk *);
5118 /* Put the rest of the things in place now. Size
5119 * was done earlier in previous loop prior to
5120 * padding.
5121 */
5122 dchkh->ch.chunk_type = SCTP_DATA;
5123 dchkh->ch.chunk_flags = chk->rec.data.rcv_flags;
5124 dchkh->dp.tsn = htonl(chk->rec.data.TSN_seq);
5125 dchkh->dp.stream_id = htons(strq->stream_no);
5126 dchkh->dp.stream_sequence = htons(chk->rec.data.stream_seq);
5127 dchkh->dp.protocol_id = chk->rec.data.payloadtype;
5128 /* total count moved */
5129 tot_moved += chk->send_size;
5130 chk = nchk;
5131 }
5132 return (tot_moved);
5133 }
5134
5135 static void
5136 sctp_fill_outqueue(struct sctp_tcb *stcb,
5137 struct sctp_nets *net)
5138 {
5139 struct sctp_association *asoc;
5140 struct sctp_tmit_chunk *chk;
5141 struct sctp_stream_out *strq, *strqn;
5142 int mtu_fromwheel, goal_mtu;
5143 unsigned int moved, seenend, cnt_mvd=0;
5144
5145 asoc = &stcb->asoc;
5146 /* Attempt to move at least 1 MTU's worth
5147 * onto the wheel for each destination address
5148 */
5149 goal_mtu = net->cwnd - net->flight_size;
5150 if ((unsigned int)goal_mtu < net->mtu) {
5151 goal_mtu = net->mtu;
5152 }
5153 if (sctp_pegs[SCTP_MOVED_MTU] < (unsigned int)goal_mtu) {
5154 sctp_pegs[SCTP_MOVED_MTU] = goal_mtu;
5155 }
5156 seenend = moved = mtu_fromwheel = 0;
5157 if (asoc->last_out_stream == NULL) {
5158 strq = asoc->last_out_stream = TAILQ_FIRST(&asoc->out_wheel);
5159 if (asoc->last_out_stream == NULL) {
5160 /* huh nothing on the wheel, TSNH */
5161 return;
5162 }
5163 goto done_it;
5164 }
5165 strq = TAILQ_NEXT(asoc->last_out_stream, next_spoke);
5166 done_it:
5167 if (strq == NULL) {
5168 asoc->last_out_stream = TAILQ_FIRST(&asoc->out_wheel);
5169 }
5170 while (mtu_fromwheel < goal_mtu) {
5171 if (strq == NULL) {
5172 if (seenend == 0) {
5173 seenend = 1;
5174 strq = TAILQ_FIRST(&asoc->out_wheel);
5175 } else if ((moved == 0) && (seenend)) {
5176 /* none left on the wheel */
5177 sctp_pegs[SCTP_MOVED_NLEF]++;
5178 return;
5179 } else if (moved) {
5180 /*
5181 * clear the flags and rotate back through
5182 * again
5183 */
5184 moved = 0;
5185 seenend = 0;
5186 strq = TAILQ_FIRST(&asoc->out_wheel);
5187 }
5188 if (strq == NULL)
5189 break;
5190 continue;
5191 }
5192 strqn = TAILQ_NEXT(strq, next_spoke);
5193 if ((chk = TAILQ_FIRST(&strq->outqueue)) == NULL) {
5194 /* none left on this queue, prune a spoke? */
5195 sctp_remove_from_wheel(asoc, strq);
5196 if (strq == asoc->last_out_stream) {
5197 /* the last one we used went off the wheel */
5198 asoc->last_out_stream = NULL;
5199 }
5200 strq = strqn;
5201 continue;
5202 }
5203 if (chk->whoTo != net) {
5204 /* Skip this stream, first one on stream
5205 * does not head to our current destination.
5206 */
5207 strq = strqn;
5208 continue;
5209 }
5210 mtu_fromwheel += sctp_move_to_outqueue(stcb, strq);
5211 cnt_mvd++;
5212 moved++;
5213 asoc->last_out_stream = strq;
5214 strq = strqn;
5215 }
5216 sctp_pegs[SCTP_MOVED_MAX]++;
5217 #ifdef SCTP_DEBUG
5218 if (sctp_debug_on & SCTP_DEBUG_OUTPUT3) {
5219 printf("Ok we moved %d chunks to send queue\n",
5220 moved);
5221 }
5222 #endif
5223 if (sctp_pegs[SCTP_MOVED_QMAX] < cnt_mvd) {
5224 sctp_pegs[SCTP_MOVED_QMAX] = cnt_mvd;
5225 }
5226 }
5227
5228 void
5229 sctp_fix_ecn_echo(struct sctp_association *asoc)
5230 {
5231 struct sctp_tmit_chunk *chk;
5232 TAILQ_FOREACH(chk, &asoc->control_send_queue, sctp_next) {
5233 if (chk->rec.chunk_id == SCTP_ECN_ECHO) {
5234 chk->sent = SCTP_DATAGRAM_UNSENT;
5235 }
5236 }
5237 }
5238
5239 static void
5240 sctp_move_to_an_alt(struct sctp_tcb *stcb,
5241 struct sctp_association *asoc,
5242 struct sctp_nets *net)
5243 {
5244 struct sctp_tmit_chunk *chk;
5245 struct sctp_nets *a_net;
5246 a_net = sctp_find_alternate_net(stcb, net);
5247 if ((a_net != net) &&
5248 ((a_net->dest_state & SCTP_ADDR_REACHABLE) == SCTP_ADDR_REACHABLE)) {
5249 /*
5250 * We only proceed if a valid alternate is found that is
5251 * not this one and is reachable. Here we must move all
5252 * chunks queued in the send queue off of the destination
5253 * address to our alternate.
5254 */
5255 TAILQ_FOREACH(chk, &asoc->send_queue, sctp_next) {
5256 if (chk->whoTo == net) {
5257 /* Move the chunk to our alternate */
5258 sctp_free_remote_addr(chk->whoTo);
5259 chk->whoTo = a_net;
5260 a_net->ref_count++;
5261 }
5262 }
5263 }
5264 }
5265
5266 static int sctp_from_user_send=0;
5267
5268 static int
5269 sctp_med_chunk_output(struct sctp_inpcb *inp,
5270 struct sctp_tcb *stcb,
5271 struct sctp_association *asoc,
5272 int *num_out,
5273 int *reason_code,
5274 int control_only, int *cwnd_full, int from_where,
5275 struct timeval *now, int *now_filled)
5276 {
5277 /*
5278 * Ok this is the generic chunk service queue.
5279 * we must do the following:
5280 * - Service the stream queue that is next, moving any message
5281 * (note I must get a complete message i.e. FIRST/MIDDLE and
5282 * LAST to the out queue in one pass) and assigning TSN's
5283 * - Check to see if the cwnd/rwnd allows any output, if so we
5284 * go ahead and fomulate and send the low level chunks. Making
5285 * sure to combine any control in the control chunk queue also.
5286 */
5287 struct sctp_nets *net;
5288 struct mbuf *outchain;
5289 struct sctp_tmit_chunk *chk, *nchk;
5290 struct sctphdr *shdr;
5291 /* temp arrays for unlinking */
5292 struct sctp_tmit_chunk *data_list[SCTP_MAX_DATA_BUNDLING];
5293 int no_fragmentflg, error;
5294 int one_chunk, hbflag;
5295 int asconf, cookie, no_out_cnt;
5296 int bundle_at, ctl_cnt, no_data_chunks, cwnd_full_ind;
5297 unsigned int mtu, r_mtu, omtu;
5298 *num_out = 0;
5299 cwnd_full_ind = 0;
5300 ctl_cnt = no_out_cnt = asconf = cookie = 0;
5301 /*
5302 * First lets prime the pump. For each destination, if there
5303 * is room in the flight size, attempt to pull an MTU's worth
5304 * out of the stream queues into the general send_queue
5305 */
5306 #ifdef SCTP_AUDITING_ENABLED
5307 sctp_audit_log(0xC2, 2);
5308 #endif
5309 #ifdef SCTP_DEBUG
5310 if (sctp_debug_on & SCTP_DEBUG_OUTPUT3) {
5311 printf("***********************\n");
5312 }
5313 #endif
5314 hbflag = 0;
5315 if (control_only)
5316 no_data_chunks = 1;
5317 else
5318 no_data_chunks = 0;
5319
5320 /* Nothing to possible to send? */
5321 if (TAILQ_EMPTY(&asoc->control_send_queue) &&
5322 TAILQ_EMPTY(&asoc->send_queue) &&
5323 TAILQ_EMPTY(&asoc->out_wheel)) {
5324 #ifdef SCTP_DEBUG
5325 if (sctp_debug_on & SCTP_DEBUG_OUTPUT3) {
5326 printf("All wheels empty\n");
5327 }
5328 #endif
5329 return (0);
5330 }
5331 if (asoc->peers_rwnd <= 0) {
5332 /* No room in peers rwnd */
5333 *cwnd_full = 1;
5334 *reason_code = 1;
5335 if (asoc->total_flight > 0) {
5336 /* we are allowed one chunk in flight */
5337 no_data_chunks = 1;
5338 sctp_pegs[SCTP_RWND_BLOCKED]++;
5339 }
5340 }
5341 #ifdef SCTP_DEBUG
5342 if (sctp_debug_on & SCTP_DEBUG_OUTPUT3) {
5343 printf("Ok we have done the fillup no_data_chunk=%d tf=%d prw:%d\n",
5344 (int)no_data_chunks,
5345 (int)asoc->total_flight, (int)asoc->peers_rwnd);
5346 }
5347 #endif
5348 TAILQ_FOREACH(net, &asoc->nets, sctp_next) {
5349 #ifdef SCTP_DEBUG
5350 if (sctp_debug_on & SCTP_DEBUG_OUTPUT3) {
5351 printf("net:%p fs:%d cwnd:%d\n",
5352 net, net->flight_size, net->cwnd);
5353 }
5354 #endif
5355 if (net->flight_size >= net->cwnd) {
5356 /* skip this network, no room */
5357 cwnd_full_ind++;
5358 #ifdef SCTP_DEBUG
5359 if (sctp_debug_on & SCTP_DEBUG_OUTPUT3) {
5360 printf("Ok skip fillup->fs:%d > cwnd:%d\n",
5361 net->flight_size,
5362 net->cwnd);
5363 }
5364 #endif
5365 sctp_pegs[SCTP_CWND_NOFILL]++;
5366 continue;
5367 }
5368 /*
5369 * spin through the stream queues moving one message and
5370 * assign TSN's as appropriate.
5371 */
5372 sctp_fill_outqueue(stcb, net);
5373 }
5374 *cwnd_full = cwnd_full_ind;
5375 /* now service each destination and send out what we can for it */
5376 #ifdef SCTP_DEBUG
5377 if (sctp_debug_on & SCTP_DEBUG_OUTPUT3) {
5378 int chk_cnt = 0;
5379 TAILQ_FOREACH(chk, &asoc->send_queue, sctp_next) {
5380 chk_cnt++;
5381 }
5382 printf("We have %d chunks on the send_queue\n", chk_cnt);
5383 chk_cnt = 0;
5384 TAILQ_FOREACH(chk, &asoc->sent_queue, sctp_next) {
5385 chk_cnt++;
5386 }
5387 printf("We have %d chunks on the sent_queue\n", chk_cnt);
5388 TAILQ_FOREACH(chk, &asoc->control_send_queue, sctp_next) {
5389 chk_cnt++;
5390 }
5391 printf("We have %d chunks on the control_queue\n", chk_cnt);
5392 }
5393 #endif
5394 /* If we have data to send, and DSACK is running, stop it
5395 * and build a SACK to dump on to bundle with output. This
5396 * actually MAY make it so the bundling does not occur if
5397 * the SACK is big but I think this is ok because basic SACK
5398 * space is pre-reserved in our fragmentation size choice.
5399 */
5400 if ((TAILQ_FIRST(&asoc->send_queue) != NULL) &&
5401 (no_data_chunks == 0)) {
5402 /* We will be sending something */
5403 if (callout_pending(&stcb->asoc.dack_timer.timer)) {
5404 /* Yep a callout is pending */
5405 sctp_timer_stop(SCTP_TIMER_TYPE_RECV,
5406 stcb->sctp_ep,
5407 stcb, NULL);
5408 sctp_send_sack(stcb);
5409 }
5410 }
5411 /* Nothing to send? */
5412 if ((TAILQ_FIRST(&asoc->control_send_queue) == NULL) &&
5413 (TAILQ_FIRST(&asoc->send_queue) == NULL)) {
5414 return (0);
5415 }
5416 TAILQ_FOREACH(net, &asoc->nets, sctp_next) {
5417 struct rtentry *rt;
5418 /* how much can we send? */
5419 if (net->ref_count < 2) {
5420 /* Ref-count of 1 so we cannot have data or control
5421 * queued to this address. Skip it.
5422 */
5423 continue;
5424 }
5425 ctl_cnt = bundle_at = 0;
5426 outchain = NULL;
5427 no_fragmentflg = 1;
5428 one_chunk = 0;
5429
5430 rt = rtcache_validate(&net->ro);
5431 if (rt != NULL) {
5432 /* if we have a route and an ifp
5433 * check to see if we have room to
5434 * send to this guy
5435 */
5436 struct ifnet *ifp;
5437 ifp = net->ro._ro_rt->rt_ifp;
5438 if ((ifp->if_snd.ifq_len + 2) >= ifp->if_snd.ifq_maxlen) {
5439 sctp_pegs[SCTP_IFP_QUEUE_FULL]++;
5440 #ifdef SCTP_LOG_MAXBURST
5441 sctp_log_maxburst(net, ifp->if_snd.ifq_len, ifp->if_snd.ifq_maxlen, SCTP_MAX_IFP_APPLIED);
5442 #endif
5443 rtcache_unref(rt, &net->ro);
5444 continue;
5445 }
5446 rtcache_unref(rt, &net->ro);
5447 }
5448 if (((struct sockaddr *)&net->ro.ro_sa)->sa_family == AF_INET) {
5449 mtu = net->mtu - (sizeof(struct ip) + sizeof(struct sctphdr));
5450 } else {
5451 mtu = net->mtu - (sizeof(struct ip6_hdr) + sizeof(struct sctphdr));
5452 }
5453 if (mtu > asoc->peers_rwnd) {
5454 if (asoc->total_flight > 0) {
5455 /* We have a packet in flight somewhere */
5456 r_mtu = asoc->peers_rwnd;
5457 } else {
5458 /* We are always allowed to send one MTU out */
5459 one_chunk = 1;
5460 r_mtu = mtu;
5461 }
5462 } else {
5463 r_mtu = mtu;
5464 }
5465 #ifdef SCTP_DEBUG
5466 if (sctp_debug_on & SCTP_DEBUG_OUTPUT3) {
5467 printf("Ok r_mtu is %d mtu is %d for this net:%p one_chunk:%d\n",
5468 r_mtu, mtu, net, one_chunk);
5469 }
5470 #endif
5471 /************************/
5472 /* Control transmission */
5473 /************************/
5474 /* Now first lets go through the control queue */
5475 for (chk = TAILQ_FIRST(&asoc->control_send_queue);
5476 chk; chk = nchk) {
5477 nchk = TAILQ_NEXT(chk, sctp_next);
5478 if (chk->whoTo != net) {
5479 /*
5480 * No, not sent to the network we are
5481 * looking at
5482 */
5483 continue;
5484 }
5485 if (chk->data == NULL) {
5486 continue;
5487 }
5488 if ((chk->data->m_flags & M_PKTHDR) == 0) {
5489 /*
5490 * NOTE: the chk queue MUST have the PKTHDR
5491 * flag set on it with a total in the
5492 * m_pkthdr.len field!! else the chunk will
5493 * ALWAYS be skipped
5494 */
5495 continue;
5496 }
5497 if (chk->sent != SCTP_DATAGRAM_UNSENT) {
5498 /*
5499 * It must be unsent. Cookies and ASCONF's
5500 * hang around but there timers will force
5501 * when marked for resend.
5502 */
5503 continue;
5504 }
5505 /* Here we do NOT factor the r_mtu */
5506 if ((chk->data->m_pkthdr.len < (int)mtu) ||
5507 (chk->flags & CHUNK_FLAGS_FRAGMENT_OK)) {
5508 /*
5509 * We probably should glom the mbuf chain from
5510 * the chk->data for control but the problem
5511 * is it becomes yet one more level of
5512 * tracking to do if for some reason output
5513 * fails. Then I have got to reconstruct the
5514 * merged control chain.. el yucko.. for now
5515 * we take the easy way and do the copy
5516 */
5517 outchain = sctp_copy_mbufchain(chk->data,
5518 outchain);
5519 if (outchain == NULL) {
5520 return (ENOMEM);
5521 }
5522 /* update our MTU size */
5523 if (mtu > chk->data->m_pkthdr.len)
5524 mtu -= chk->data->m_pkthdr.len;
5525 else
5526 mtu = 0;
5527 /* Do clear IP_DF ? */
5528 if (chk->flags & CHUNK_FLAGS_FRAGMENT_OK) {
5529 no_fragmentflg = 0;
5530 }
5531 /* Mark things to be removed, if needed */
5532 if ((chk->rec.chunk_id == SCTP_SELECTIVE_ACK) ||
5533 (chk->rec.chunk_id == SCTP_HEARTBEAT_REQUEST) ||
5534 (chk->rec.chunk_id == SCTP_HEARTBEAT_ACK) ||
5535 (chk->rec.chunk_id == SCTP_SHUTDOWN) ||
5536 (chk->rec.chunk_id == SCTP_SHUTDOWN_ACK) ||
5537 (chk->rec.chunk_id == SCTP_OPERATION_ERROR) ||
5538 (chk->rec.chunk_id == SCTP_COOKIE_ACK) ||
5539 (chk->rec.chunk_id == SCTP_ECN_CWR) ||
5540 (chk->rec.chunk_id == SCTP_PACKET_DROPPED) ||
5541 (chk->rec.chunk_id == SCTP_ASCONF_ACK)) {
5542
5543 if (chk->rec.chunk_id == SCTP_HEARTBEAT_REQUEST)
5544 hbflag = 1;
5545 /* remove these chunks at the end */
5546 if (chk->rec.chunk_id == SCTP_SELECTIVE_ACK) {
5547 /* turn off the timer */
5548 if (callout_pending(&stcb->asoc.dack_timer.timer)) {
5549 sctp_timer_stop(SCTP_TIMER_TYPE_RECV,
5550 inp, stcb, net);
5551 }
5552 }
5553 ctl_cnt++;
5554 } else {
5555 /*
5556 * Other chunks, since they have
5557 * timers running (i.e. COOKIE or
5558 * ASCONF) we just "trust" that it
5559 * gets sent or retransmitted.
5560 */
5561 ctl_cnt++;
5562 if (chk->rec.chunk_id == SCTP_COOKIE_ECHO) {
5563 cookie = 1;
5564 no_out_cnt = 1;
5565 } else if (chk->rec.chunk_id == SCTP_ASCONF) {
5566 /*
5567 * set hb flag since we can use
5568 * these for RTO
5569 */
5570 hbflag = 1;
5571 asconf = 1;
5572 }
5573 chk->sent = SCTP_DATAGRAM_SENT;
5574 chk->snd_count++;
5575 }
5576 if (mtu == 0) {
5577 /*
5578 * Ok we are out of room but we can
5579 * output without effecting the flight
5580 * size since this little guy is a
5581 * control only packet.
5582 */
5583 if (asconf) {
5584 sctp_timer_start(SCTP_TIMER_TYPE_ASCONF, inp, stcb, net);
5585 asconf = 0;
5586 }
5587 if (cookie) {
5588 sctp_timer_start(SCTP_TIMER_TYPE_COOKIE, inp, stcb, net);
5589 cookie = 0;
5590 }
5591 if (outchain->m_len == 0) {
5592 /*
5593 * Special case for when you
5594 * get a 0 len mbuf at the
5595 * head due to the lack of a
5596 * MHDR at the beginning.
5597 */
5598 outchain->m_len = sizeof(struct sctphdr);
5599 } else {
5600 M_PREPEND(outchain, sizeof(struct sctphdr), M_DONTWAIT);
5601 if (outchain == NULL) {
5602 /* no memory */
5603 error = ENOBUFS;
5604 goto error_out_again;
5605 }
5606 }
5607 shdr = mtod(outchain, struct sctphdr *);
5608 shdr->src_port = inp->sctp_lport;
5609 shdr->dest_port = stcb->rport;
5610 shdr->v_tag = htonl(stcb->asoc.peer_vtag);
5611 shdr->checksum = 0;
5612
5613 if ((error = sctp_lowlevel_chunk_output(inp, stcb, net,
5614 rtcache_getdst(&net->ro),
5615 outchain,
5616 no_fragmentflg, 0, NULL, asconf))) {
5617 if (error == ENOBUFS) {
5618 asoc->ifp_had_enobuf = 1;
5619 }
5620 sctp_pegs[SCTP_DATA_OUT_ERR]++;
5621 if (from_where == 0) {
5622 sctp_pegs[SCTP_ERROUT_FRM_USR]++;
5623 }
5624 error_out_again:
5625 #ifdef SCTP_DEBUG
5626 if (sctp_debug_on & SCTP_DEBUG_OUTPUT2) {
5627 printf("Gak got ctrl error %d\n", error);
5628 }
5629 #endif
5630 /* error, could not output */
5631 if (hbflag) {
5632 #ifdef SCTP_DEBUG
5633 if (sctp_debug_on & SCTP_DEBUG_OUTPUT3) {
5634 printf("Update HB anyway\n");
5635 }
5636 #endif
5637 if (*now_filled == 0) {
5638 SCTP_GETTIME_TIMEVAL(&net->last_sent_time);
5639 *now_filled = 1;
5640 *now = net->last_sent_time;
5641 } else {
5642 net->last_sent_time = *now;
5643 }
5644 hbflag = 0;
5645 }
5646 if (error == EHOSTUNREACH) {
5647 /*
5648 * Destination went
5649 * unreachable during
5650 * this send
5651 */
5652 #ifdef SCTP_DEBUG
5653 if (sctp_debug_on & SCTP_DEBUG_OUTPUT3) {
5654 printf("Moving data to an alterante\n");
5655 }
5656 #endif
5657 sctp_move_to_an_alt(stcb, asoc, net);
5658 }
5659 sctp_clean_up_ctl (asoc);
5660 return (error);
5661 } else
5662 asoc->ifp_had_enobuf = 0;
5663 /* Only HB or ASCONF advances time */
5664 if (hbflag) {
5665 if (*now_filled == 0) {
5666 SCTP_GETTIME_TIMEVAL(&net->last_sent_time);
5667 *now_filled = 1;
5668 *now = net->last_sent_time;
5669 } else {
5670 net->last_sent_time = *now;
5671 }
5672 hbflag = 0;
5673 }
5674 /*
5675 * increase the number we sent, if a
5676 * cookie is sent we don't tell them
5677 * any was sent out.
5678 */
5679 if (!no_out_cnt)
5680 *num_out += ctl_cnt;
5681 /* recalc a clean slate and setup */
5682 if (stcb->sctp_ep->sctp_flags & SCTP_PCB_FLAGS_BOUND_V6) {
5683 mtu = (net->mtu - SCTP_MIN_OVERHEAD);
5684 } else {
5685 mtu = (net->mtu - SCTP_MIN_V4_OVERHEAD);
5686 }
5687 no_fragmentflg = 1;
5688 }
5689 }
5690 }
5691 /*********************/
5692 /* Data transmission */
5693 /*********************/
5694 /* now lets add any data within the MTU constraints */
5695 if (((struct sockaddr *)&net->ro.ro_sa)->sa_family == AF_INET) {
5696 omtu = net->mtu - (sizeof(struct ip) + sizeof(struct sctphdr));
5697 } else {
5698 omtu = net->mtu - (sizeof(struct ip6_hdr) + sizeof(struct sctphdr));
5699 }
5700
5701 #ifdef SCTP_DEBUG
5702 if (sctp_debug_on & SCTP_DEBUG_OUTPUT3) {
5703 printf("Now to data transmission\n");
5704 }
5705 #endif
5706
5707 if (((asoc->state & SCTP_STATE_OPEN) == SCTP_STATE_OPEN) ||
5708 (cookie)) {
5709 for (chk = TAILQ_FIRST(&asoc->send_queue); chk; chk = nchk) {
5710 if (no_data_chunks) {
5711 /* let only control go out */
5712 #ifdef SCTP_DEBUG
5713 if (sctp_debug_on & SCTP_DEBUG_OUTPUT3) {
5714 printf("Either nothing to send or we are full\n");
5715 }
5716 #endif
5717 break;
5718 }
5719 if (net->flight_size >= net->cwnd) {
5720 /* skip this net, no room for data */
5721 #ifdef SCTP_DEBUG
5722 if (sctp_debug_on & SCTP_DEBUG_OUTPUT3) {
5723 printf("fs:%d > cwnd:%d\n",
5724 net->flight_size, net->cwnd);
5725 }
5726 #endif
5727 sctp_pegs[SCTP_CWND_BLOCKED]++;
5728 *reason_code = 2;
5729 break;
5730 }
5731 nchk = TAILQ_NEXT(chk, sctp_next);
5732 if (chk->whoTo != net) {
5733 /* No, not sent to this net */
5734 #ifdef SCTP_DEBUG
5735 if (sctp_debug_on & SCTP_DEBUG_OUTPUT3) {
5736 printf("chk->whoTo:%p not %p\n",
5737 chk->whoTo, net);
5738
5739 }
5740 #endif
5741 continue;
5742 }
5743 #ifdef SCTP_DEBUG
5744 if (sctp_debug_on & SCTP_DEBUG_OUTPUT3) {
5745 printf("Can we pick up a chunk?\n");
5746 }
5747 #endif
5748 if ((chk->send_size > omtu) && ((chk->flags & CHUNK_FLAGS_FRAGMENT_OK) == 0)) {
5749 /* strange, we have a chunk that is to bit
5750 * for its destination and yet no fragment ok flag.
5751 * Something went wrong when the PMTU changed...we did
5752 * not mark this chunk for some reason?? I will
5753 * fix it here by letting IP fragment it for now and
5754 * printing a warning. This really should not happen ...
5755 */
5756 /*#ifdef SCTP_DEBUG*/
5757 printf("Warning chunk of %d bytes > mtu:%d and yet PMTU disc missed\n",
5758 chk->send_size, mtu);
5759 /*#endif*/
5760 chk->flags |= CHUNK_FLAGS_FRAGMENT_OK;
5761 }
5762
5763 if (((chk->send_size <= mtu) && (chk->send_size <= r_mtu)) ||
5764 ((chk->flags & CHUNK_FLAGS_FRAGMENT_OK) && (chk->send_size <= asoc->peers_rwnd))) {
5765 /* ok we will add this one */
5766 #ifdef SCTP_DEBUG
5767 if (sctp_debug_on & SCTP_DEBUG_OUTPUT3) {
5768 printf("Picking up the chunk\n");
5769 }
5770 #endif
5771 outchain = sctp_copy_mbufchain(chk->data, outchain);
5772 if (outchain == NULL) {
5773 #ifdef SCTP_DEBUG
5774 if (sctp_debug_on & SCTP_DEBUG_OUTPUT3) {
5775 printf("Gakk no memory\n");
5776 }
5777 #endif
5778 if (!callout_pending(&net->rxt_timer.timer)) {
5779 sctp_timer_start(SCTP_TIMER_TYPE_SEND, inp, stcb, net);
5780 }
5781 return (ENOMEM);
5782 }
5783 /* update our MTU size */
5784 /* Do clear IP_DF ? */
5785 if (chk->flags & CHUNK_FLAGS_FRAGMENT_OK) {
5786 no_fragmentflg = 0;
5787 }
5788 mtu -= chk->send_size;
5789 r_mtu -= chk->send_size;
5790 data_list[bundle_at++] = chk;
5791 if (bundle_at >= SCTP_MAX_DATA_BUNDLING) {
5792 mtu = 0;
5793 break;
5794 }
5795 if (mtu <= 0) {
5796 mtu = 0;
5797 break;
5798 }
5799 if ((r_mtu <= 0) || one_chunk) {
5800 r_mtu = 0;
5801 break;
5802 }
5803 } else {
5804 /*
5805 * Must be sent in order of the TSN's
5806 * (on a network)
5807 */
5808 #ifdef SCTP_DEBUG
5809 if (sctp_debug_on & SCTP_DEBUG_OUTPUT3) {
5810 printf("ok no more chk:%d > mtu:%d || < r_mtu:%d\n",
5811 chk->send_size, mtu, r_mtu);
5812 }
5813 #endif
5814
5815 break;
5816 }
5817 }/* for () */
5818 } /* if asoc.state OPEN */
5819 /* Is there something to send for this destination? */
5820 #ifdef SCTP_DEBUG
5821 if (sctp_debug_on & SCTP_DEBUG_OUTPUT3) {
5822 printf("ok now is chain assembled? %p\n",
5823 outchain);
5824 }
5825 #endif
5826
5827 if (outchain) {
5828 /* We may need to start a control timer or two */
5829 if (asconf) {
5830 sctp_timer_start(SCTP_TIMER_TYPE_ASCONF, inp, stcb, net);
5831 asconf = 0;
5832 }
5833 if (cookie) {
5834 sctp_timer_start(SCTP_TIMER_TYPE_COOKIE, inp, stcb, net);
5835 cookie = 0;
5836 }
5837 /* must start a send timer if data is being sent */
5838 if (bundle_at && (!callout_pending(&net->rxt_timer.timer))) {
5839 /* no timer running on this destination
5840 * restart it.
5841 */
5842 #ifdef SCTP_DEBUG
5843 if (sctp_debug_on & SCTP_DEBUG_OUTPUT3) {
5844 printf("ok lets start a send timer .. we will transmit %p\n",
5845 outchain);
5846 }
5847 #endif
5848 sctp_timer_start(SCTP_TIMER_TYPE_SEND, inp, stcb, net);
5849 }
5850 /* Now send it, if there is anything to send :> */
5851 if ((outchain->m_flags & M_PKTHDR) == 0) {
5852 struct mbuf *t;
5853
5854 MGETHDR(t, M_DONTWAIT, MT_HEADER);
5855 if (t == NULL) {
5856 sctp_m_freem(outchain);
5857 return (ENOMEM);
5858 }
5859 t->m_next = outchain;
5860 t->m_pkthdr.len = 0;
5861 m_reset_rcvif(t);
5862 t->m_len = 0;
5863
5864 outchain = t;
5865 while (t) {
5866 outchain->m_pkthdr.len += t->m_len;
5867 t = t->m_next;
5868 }
5869 }
5870 if (outchain->m_len == 0) {
5871 /* Special case for when you get a 0 len
5872 * mbuf at the head due to the lack
5873 * of a MHDR at the beginning.
5874 */
5875 m_align(outchain, sizeof(struct sctphdr));
5876 outchain->m_len = sizeof(struct sctphdr);
5877 } else {
5878 M_PREPEND(outchain, sizeof(struct sctphdr), M_DONTWAIT);
5879 if (outchain == NULL) {
5880 /* out of mbufs */
5881 error = ENOBUFS;
5882 goto errored_send;
5883 }
5884 }
5885 shdr = mtod(outchain, struct sctphdr *);
5886 shdr->src_port = inp->sctp_lport;
5887 shdr->dest_port = stcb->rport;
5888 shdr->v_tag = htonl(stcb->asoc.peer_vtag);
5889 shdr->checksum = 0;
5890 if ((error = sctp_lowlevel_chunk_output(inp, stcb, net,
5891 rtcache_getdst(&net->ro),
5892 outchain,
5893 no_fragmentflg, bundle_at, data_list[0], asconf))) {
5894 /* error, we could not output */
5895 if (error == ENOBUFS) {
5896 asoc->ifp_had_enobuf = 1;
5897 }
5898 sctp_pegs[SCTP_DATA_OUT_ERR]++;
5899 if (from_where == 0) {
5900 sctp_pegs[SCTP_ERROUT_FRM_USR]++;
5901 }
5902
5903 errored_send:
5904 #ifdef SCTP_DEBUG
5905 if (sctp_debug_on & SCTP_DEBUG_OUTPUT3) {
5906 printf("Gak send error %d\n", error);
5907 }
5908 #endif
5909 if (hbflag) {
5910 #ifdef SCTP_DEBUG
5911 if (sctp_debug_on & SCTP_DEBUG_OUTPUT3) {
5912 printf("Update HB time anyway\n");
5913 }
5914 #endif
5915 if (*now_filled == 0) {
5916 SCTP_GETTIME_TIMEVAL(&net->last_sent_time);
5917 *now_filled = 1;
5918 *now = net->last_sent_time;
5919 } else {
5920 net->last_sent_time = *now;
5921 }
5922 hbflag = 0;
5923 }
5924 if (error == EHOSTUNREACH) {
5925 /*
5926 * Destination went unreachable during
5927 * this send
5928 */
5929 #ifdef SCTP_DEBUG
5930 if (sctp_debug_on & SCTP_DEBUG_OUTPUT3) {
5931 printf("Calling the movement routine\n");
5932 }
5933 #endif
5934 sctp_move_to_an_alt(stcb, asoc, net);
5935 }
5936 sctp_clean_up_ctl (asoc);
5937 return (error);
5938 } else {
5939 asoc->ifp_had_enobuf = 0;
5940 }
5941 if (bundle_at || hbflag) {
5942 /* For data/asconf and hb set time */
5943 if (*now_filled == 0) {
5944 SCTP_GETTIME_TIMEVAL(&net->last_sent_time);
5945 *now_filled = 1;
5946 *now = net->last_sent_time;
5947 } else {
5948 net->last_sent_time = *now;
5949 }
5950 }
5951
5952 if (!no_out_cnt) {
5953 *num_out += (ctl_cnt + bundle_at);
5954 }
5955 if (bundle_at) {
5956 if (!net->rto_pending) {
5957 /* setup for a RTO measurement */
5958 net->rto_pending = 1;
5959 data_list[0]->do_rtt = 1;
5960 } else {
5961 data_list[0]->do_rtt = 0;
5962 }
5963 sctp_pegs[SCTP_PEG_TSNS_SENT] += bundle_at;
5964 sctp_clean_up_datalist(stcb, asoc, data_list, bundle_at, net);
5965 }
5966 if (one_chunk) {
5967 break;
5968 }
5969 }
5970 }
5971 /* At the end there should be no NON timed
5972 * chunks hanging on this queue.
5973 */
5974 if ((*num_out == 0) && (*reason_code == 0)) {
5975 *reason_code = 3;
5976 }
5977 sctp_clean_up_ctl (asoc);
5978 return (0);
5979 }
5980
5981 void
5982 sctp_queue_op_err(struct sctp_tcb *stcb, struct mbuf *op_err)
5983 {
5984 /* Prepend a OPERATIONAL_ERROR chunk header
5985 * and put on the end of the control chunk queue.
5986 */
5987 /* Sender had better have gotten a MGETHDR or else
5988 * the control chunk will be forever skipped
5989 */
5990 struct sctp_chunkhdr *hdr;
5991 struct sctp_tmit_chunk *chk;
5992 struct mbuf *mat;
5993
5994 chk = (struct sctp_tmit_chunk *)SCTP_ZONE_GET(sctppcbinfo.ipi_zone_chunk);
5995 if (chk == NULL) {
5996 /* no memory */
5997 sctp_m_freem(op_err);
5998 return;
5999 }
6000 sctppcbinfo.ipi_count_chunk++;
6001 sctppcbinfo.ipi_gencnt_chunk++;
6002 M_PREPEND(op_err, sizeof(struct sctp_chunkhdr), M_DONTWAIT);
6003 if (op_err == NULL) {
6004 SCTP_ZONE_FREE(sctppcbinfo.ipi_zone_chunk, chk);
6005 sctppcbinfo.ipi_count_chunk--;
6006 if ((int)sctppcbinfo.ipi_count_chunk < 0) {
6007 panic("Chunk count is negative");
6008 }
6009 sctppcbinfo.ipi_gencnt_chunk++;
6010 return;
6011 }
6012 chk->send_size = 0;
6013 mat = op_err;
6014 while (mat != NULL) {
6015 chk->send_size += mat->m_len;
6016 mat = mat->m_next;
6017 }
6018 chk->rec.chunk_id = SCTP_OPERATION_ERROR;
6019 chk->sent = SCTP_DATAGRAM_UNSENT;
6020 chk->snd_count = 0;
6021 chk->flags = 0;
6022 chk->asoc = &stcb->asoc;
6023 chk->data = op_err;
6024 chk->whoTo = chk->asoc->primary_destination;
6025 chk->whoTo->ref_count++;
6026 hdr = mtod(op_err, struct sctp_chunkhdr *);
6027 hdr->chunk_type = SCTP_OPERATION_ERROR;
6028 hdr->chunk_flags = 0;
6029 hdr->chunk_length = htons(chk->send_size);
6030 TAILQ_INSERT_TAIL(&chk->asoc->control_send_queue,
6031 chk,
6032 sctp_next);
6033 chk->asoc->ctrl_queue_cnt++;
6034 }
6035
6036 int
6037 sctp_send_cookie_echo(struct mbuf *m,
6038 int offset,
6039 struct sctp_tcb *stcb,
6040 struct sctp_nets *net)
6041 {
6042 /*
6043 * pull out the cookie and put it at the front of the control
6044 * chunk queue.
6045 */
6046 int at;
6047 struct mbuf *cookie, *mat;
6048 struct sctp_paramhdr parm, *phdr;
6049 struct sctp_chunkhdr *hdr;
6050 struct sctp_tmit_chunk *chk;
6051 uint16_t ptype, plen;
6052 /* First find the cookie in the param area */
6053 cookie = NULL;
6054 at = offset + sizeof(struct sctp_init_chunk);
6055
6056 do {
6057 phdr = sctp_get_next_param(m, at, &parm, sizeof(parm));
6058 if (phdr == NULL) {
6059 return (-3);
6060 }
6061 ptype = ntohs(phdr->param_type);
6062 plen = ntohs(phdr->param_length);
6063 if (ptype == SCTP_STATE_COOKIE) {
6064 int pad;
6065 /* found the cookie */
6066 if ((pad = (plen % 4))) {
6067 plen += 4 - pad;
6068 }
6069 cookie = sctp_m_copym(m, at, plen, M_DONTWAIT);
6070 if (cookie == NULL) {
6071 /* No memory */
6072 return (-2);
6073 }
6074 break;
6075 }
6076 at += SCTP_SIZE32(plen);
6077 } while (phdr);
6078 if (cookie == NULL) {
6079 /* Did not find the cookie */
6080 return (-3);
6081 }
6082 /* ok, we got the cookie lets change it into a cookie echo chunk */
6083
6084 /* first the change from param to cookie */
6085 hdr = mtod(cookie, struct sctp_chunkhdr *);
6086 hdr->chunk_type = SCTP_COOKIE_ECHO;
6087 hdr->chunk_flags = 0;
6088 /* now we MUST have a PKTHDR on it */
6089 if ((cookie->m_flags & M_PKTHDR) != M_PKTHDR) {
6090 /* we hope this happens rarely */
6091 MGETHDR(mat, M_DONTWAIT, MT_HEADER);
6092 if (mat == NULL) {
6093 sctp_m_freem(cookie);
6094 return (-4);
6095 }
6096 mat->m_len = 0;
6097 m_reset_rcvif(mat);
6098 mat->m_next = cookie;
6099 cookie = mat;
6100 }
6101 cookie->m_pkthdr.len = plen;
6102 /* get the chunk stuff now and place it in the FRONT of the queue */
6103 chk = (struct sctp_tmit_chunk *)SCTP_ZONE_GET(sctppcbinfo.ipi_zone_chunk);
6104 if (chk == NULL) {
6105 /* no memory */
6106 sctp_m_freem(cookie);
6107 return (-5);
6108 }
6109 sctppcbinfo.ipi_count_chunk++;
6110 sctppcbinfo.ipi_gencnt_chunk++;
6111 chk->send_size = cookie->m_pkthdr.len;
6112 chk->rec.chunk_id = SCTP_COOKIE_ECHO;
6113 chk->sent = SCTP_DATAGRAM_UNSENT;
6114 chk->snd_count = 0;
6115 chk->flags = 0;
6116 chk->asoc = &stcb->asoc;
6117 chk->data = cookie;
6118 chk->whoTo = chk->asoc->primary_destination;
6119 chk->whoTo->ref_count++;
6120 TAILQ_INSERT_HEAD(&chk->asoc->control_send_queue, chk, sctp_next);
6121 chk->asoc->ctrl_queue_cnt++;
6122 return (0);
6123 }
6124
6125 void
6126 sctp_send_heartbeat_ack(struct sctp_tcb *stcb,
6127 struct mbuf *m,
6128 int offset,
6129 int chk_length,
6130 struct sctp_nets *net)
6131 {
6132 /* take a HB request and make it into a
6133 * HB ack and send it.
6134 */
6135 struct mbuf *outchain;
6136 struct sctp_chunkhdr *chdr;
6137 struct sctp_tmit_chunk *chk;
6138
6139
6140 if (net == NULL)
6141 /* must have a net pointer */
6142 return;
6143
6144 outchain = sctp_m_copym(m, offset, chk_length, M_DONTWAIT);
6145 if (outchain == NULL) {
6146 /* gak out of memory */
6147 return;
6148 }
6149 chdr = mtod(outchain, struct sctp_chunkhdr *);
6150 chdr->chunk_type = SCTP_HEARTBEAT_ACK;
6151 chdr->chunk_flags = 0;
6152 if ((outchain->m_flags & M_PKTHDR) != M_PKTHDR) {
6153 /* should not happen but we are cautious. */
6154 struct mbuf *tmp;
6155 MGETHDR(tmp, M_DONTWAIT, MT_HEADER);
6156 if (tmp == NULL) {
6157 return;
6158 }
6159 tmp->m_len = 0;
6160 m_reset_rcvif(tmp);
6161 tmp->m_next = outchain;
6162 outchain = tmp;
6163 }
6164 outchain->m_pkthdr.len = chk_length;
6165 if (chk_length % 4) {
6166 /* need pad */
6167 u_int32_t cpthis=0;
6168 int padlen;
6169 padlen = 4 - (outchain->m_pkthdr.len % 4);
6170 m_copyback(outchain, outchain->m_pkthdr.len, padlen, (void *)&cpthis);
6171 }
6172 chk = (struct sctp_tmit_chunk *)SCTP_ZONE_GET(sctppcbinfo.ipi_zone_chunk);
6173 if (chk == NULL) {
6174 /* no memory */
6175 sctp_m_freem(outchain);
6176 return ;
6177 }
6178 sctppcbinfo.ipi_count_chunk++;
6179 sctppcbinfo.ipi_gencnt_chunk++;
6180
6181 chk->send_size = chk_length;
6182 chk->rec.chunk_id = SCTP_HEARTBEAT_ACK;
6183 chk->sent = SCTP_DATAGRAM_UNSENT;
6184 chk->snd_count = 0;
6185 chk->flags = 0;
6186 chk->asoc = &stcb->asoc;
6187 chk->data = outchain;
6188 chk->whoTo = net;
6189 chk->whoTo->ref_count++;
6190 TAILQ_INSERT_TAIL(&chk->asoc->control_send_queue, chk, sctp_next);
6191 chk->asoc->ctrl_queue_cnt++;
6192 }
6193
6194 int
6195 sctp_send_cookie_ack(struct sctp_tcb *stcb) {
6196 /* formulate and queue a cookie-ack back to sender */
6197 struct mbuf *cookie_ack;
6198 struct sctp_chunkhdr *hdr;
6199 struct sctp_tmit_chunk *chk;
6200
6201 cookie_ack = NULL;
6202 MGETHDR(cookie_ack, M_DONTWAIT, MT_HEADER);
6203 if (cookie_ack == NULL) {
6204 /* no mbuf's */
6205 return (-1);
6206 }
6207 cookie_ack->m_data += SCTP_MIN_OVERHEAD;
6208 chk = (struct sctp_tmit_chunk *)SCTP_ZONE_GET(sctppcbinfo.ipi_zone_chunk);
6209 if (chk == NULL) {
6210 /* no memory */
6211 sctp_m_freem(cookie_ack);
6212 return (-1);
6213 }
6214 sctppcbinfo.ipi_count_chunk++;
6215 sctppcbinfo.ipi_gencnt_chunk++;
6216
6217 chk->send_size = sizeof(struct sctp_chunkhdr);
6218 chk->rec.chunk_id = SCTP_COOKIE_ACK;
6219 chk->sent = SCTP_DATAGRAM_UNSENT;
6220 chk->snd_count = 0;
6221 chk->flags = 0;
6222 chk->asoc = &stcb->asoc;
6223 chk->data = cookie_ack;
6224 if (chk->asoc->last_control_chunk_from != NULL) {
6225 chk->whoTo = chk->asoc->last_control_chunk_from;
6226 } else {
6227 chk->whoTo = chk->asoc->primary_destination;
6228 }
6229 chk->whoTo->ref_count++;
6230 hdr = mtod(cookie_ack, struct sctp_chunkhdr *);
6231 hdr->chunk_type = SCTP_COOKIE_ACK;
6232 hdr->chunk_flags = 0;
6233 hdr->chunk_length = htons(chk->send_size);
6234 cookie_ack->m_pkthdr.len = cookie_ack->m_len = chk->send_size;
6235 m_reset_rcvif(cookie_ack);
6236 TAILQ_INSERT_TAIL(&chk->asoc->control_send_queue, chk, sctp_next);
6237 chk->asoc->ctrl_queue_cnt++;
6238 return (0);
6239 }
6240
6241
6242 int
6243 sctp_send_shutdown_ack(struct sctp_tcb *stcb, struct sctp_nets *net)
6244 {
6245 /* formulate and queue a SHUTDOWN-ACK back to the sender */
6246 struct mbuf *m_shutdown_ack;
6247 struct sctp_shutdown_ack_chunk *ack_cp;
6248 struct sctp_tmit_chunk *chk;
6249
6250 m_shutdown_ack = NULL;
6251 MGETHDR(m_shutdown_ack, M_DONTWAIT, MT_HEADER);
6252 if (m_shutdown_ack == NULL) {
6253 /* no mbuf's */
6254 return (-1);
6255 }
6256 m_shutdown_ack->m_data += SCTP_MIN_OVERHEAD;
6257 chk = (struct sctp_tmit_chunk *)SCTP_ZONE_GET(sctppcbinfo.ipi_zone_chunk);
6258 if (chk == NULL) {
6259 /* no memory */
6260 sctp_m_freem(m_shutdown_ack);
6261 return (-1);
6262 }
6263 sctppcbinfo.ipi_count_chunk++;
6264 sctppcbinfo.ipi_gencnt_chunk++;
6265
6266 chk->send_size = sizeof(struct sctp_chunkhdr);
6267 chk->rec.chunk_id = SCTP_SHUTDOWN_ACK;
6268 chk->sent = SCTP_DATAGRAM_UNSENT;
6269 chk->snd_count = 0;
6270 chk->flags = 0;
6271 chk->asoc = &stcb->asoc;
6272 chk->data = m_shutdown_ack;
6273 chk->whoTo = net;
6274 net->ref_count++;
6275
6276 ack_cp = mtod(m_shutdown_ack, struct sctp_shutdown_ack_chunk *);
6277 ack_cp->ch.chunk_type = SCTP_SHUTDOWN_ACK;
6278 ack_cp->ch.chunk_flags = 0;
6279 ack_cp->ch.chunk_length = htons(chk->send_size);
6280 m_shutdown_ack->m_pkthdr.len = m_shutdown_ack->m_len = chk->send_size;
6281 m_reset_rcvif(m_shutdown_ack);
6282 TAILQ_INSERT_TAIL(&chk->asoc->control_send_queue, chk, sctp_next);
6283 chk->asoc->ctrl_queue_cnt++;
6284 return (0);
6285 }
6286
6287 int
6288 sctp_send_shutdown(struct sctp_tcb *stcb, struct sctp_nets *net)
6289 {
6290 /* formulate and queue a SHUTDOWN to the sender */
6291 struct mbuf *m_shutdown;
6292 struct sctp_shutdown_chunk *shutdown_cp;
6293 struct sctp_tmit_chunk *chk;
6294
6295 m_shutdown = NULL;
6296 MGETHDR(m_shutdown, M_DONTWAIT, MT_HEADER);
6297 if (m_shutdown == NULL) {
6298 /* no mbuf's */
6299 return (-1);
6300 }
6301 m_shutdown->m_data += SCTP_MIN_OVERHEAD;
6302 chk = (struct sctp_tmit_chunk *)SCTP_ZONE_GET(sctppcbinfo.ipi_zone_chunk);
6303 if (chk == NULL) {
6304 /* no memory */
6305 sctp_m_freem(m_shutdown);
6306 return (-1);
6307 }
6308 sctppcbinfo.ipi_count_chunk++;
6309 sctppcbinfo.ipi_gencnt_chunk++;
6310
6311 chk->send_size = sizeof(struct sctp_shutdown_chunk);
6312 chk->rec.chunk_id = SCTP_SHUTDOWN;
6313 chk->sent = SCTP_DATAGRAM_UNSENT;
6314 chk->snd_count = 0;
6315 chk->flags = 0;
6316 chk->asoc = &stcb->asoc;
6317 chk->data = m_shutdown;
6318 chk->whoTo = net;
6319 net->ref_count++;
6320
6321 shutdown_cp = mtod(m_shutdown, struct sctp_shutdown_chunk *);
6322 shutdown_cp->ch.chunk_type = SCTP_SHUTDOWN;
6323 shutdown_cp->ch.chunk_flags = 0;
6324 shutdown_cp->ch.chunk_length = htons(chk->send_size);
6325 shutdown_cp->cumulative_tsn_ack = htonl(stcb->asoc.cumulative_tsn);
6326 m_shutdown->m_pkthdr.len = m_shutdown->m_len = chk->send_size;
6327 m_reset_rcvif(m_shutdown);
6328 TAILQ_INSERT_TAIL(&chk->asoc->control_send_queue, chk, sctp_next);
6329 chk->asoc->ctrl_queue_cnt++;
6330
6331 if ((stcb->sctp_ep->sctp_flags & SCTP_PCB_FLAGS_TCPTYPE) ||
6332 (stcb->sctp_ep->sctp_flags & SCTP_PCB_FLAGS_IN_TCPPOOL)) {
6333 stcb->sctp_ep->sctp_socket->so_snd.sb_cc = 0;
6334 soisdisconnecting(stcb->sctp_ep->sctp_socket);
6335 }
6336 return (0);
6337 }
6338
6339 int
6340 sctp_send_asconf(struct sctp_tcb *stcb, struct sctp_nets *net)
6341 {
6342 /*
6343 * formulate and queue an ASCONF to the peer
6344 * ASCONF parameters should be queued on the assoc queue
6345 */
6346 struct sctp_tmit_chunk *chk;
6347 struct mbuf *m_asconf;
6348
6349 /* compose an ASCONF chunk, maximum length is PMTU */
6350 m_asconf = sctp_compose_asconf(stcb);
6351 if (m_asconf == NULL) {
6352 return (-1);
6353 }
6354 chk = (struct sctp_tmit_chunk *)SCTP_ZONE_GET(sctppcbinfo.ipi_zone_chunk);
6355 if (chk == NULL) {
6356 /* no memory */
6357 sctp_m_freem(m_asconf);
6358 return (-1);
6359 }
6360 sctppcbinfo.ipi_count_chunk++;
6361 sctppcbinfo.ipi_gencnt_chunk++;
6362
6363 chk->data = m_asconf;
6364 chk->send_size = m_asconf->m_pkthdr.len;
6365 chk->rec.chunk_id = SCTP_ASCONF;
6366 chk->sent = SCTP_DATAGRAM_UNSENT;
6367 chk->snd_count = 0;
6368 chk->flags = 0;
6369 chk->asoc = &stcb->asoc;
6370 chk->whoTo = chk->asoc->primary_destination;
6371 chk->whoTo->ref_count++;
6372 TAILQ_INSERT_TAIL(&chk->asoc->control_send_queue, chk, sctp_next);
6373 chk->asoc->ctrl_queue_cnt++;
6374 return (0);
6375 }
6376
6377 int
6378 sctp_send_asconf_ack(struct sctp_tcb *stcb, uint32_t retrans)
6379 {
6380 /*
6381 * formulate and queue a asconf-ack back to sender
6382 * the asconf-ack must be stored in the tcb
6383 */
6384 struct sctp_tmit_chunk *chk;
6385 struct mbuf *m_ack;
6386
6387 /* is there a asconf-ack mbuf chain to send? */
6388 if (stcb->asoc.last_asconf_ack_sent == NULL) {
6389 return (-1);
6390 }
6391
6392 /* copy the asconf_ack */
6393 #if defined(__FreeBSD__) || defined(__NetBSD__)
6394 /* Supposedly the m_copypacket is a optimzation,
6395 * use it if we can.
6396 */
6397 if (stcb->asoc.last_asconf_ack_sent->m_flags & M_PKTHDR) {
6398 m_ack = m_copypacket(stcb->asoc.last_asconf_ack_sent, M_DONTWAIT);
6399 sctp_pegs[SCTP_CACHED_SRC]++;
6400 } else
6401 m_ack = m_copym(stcb->asoc.last_asconf_ack_sent, 0, M_COPYALL, M_DONTWAIT);
6402 #else
6403 m_ack = m_copy(stcb->asoc.last_asconf_ack_sent, 0, M_COPYALL);
6404 #endif
6405 if (m_ack == NULL) {
6406 /* couldn't copy it */
6407
6408 return (-1);
6409 }
6410 chk = (struct sctp_tmit_chunk *)SCTP_ZONE_GET(sctppcbinfo.ipi_zone_chunk);
6411 if (chk == NULL) {
6412 /* no memory */
6413 if (m_ack)
6414 sctp_m_freem(m_ack);
6415 return (-1);
6416 }
6417 sctppcbinfo.ipi_count_chunk++;
6418 sctppcbinfo.ipi_gencnt_chunk++;
6419
6420 /* figure out where it goes to */
6421 if (retrans) {
6422 /* we're doing a retransmission */
6423 if (stcb->asoc.used_alt_asconfack > 2) {
6424 /* tried alternate nets already, go back */
6425 chk->whoTo = NULL;
6426 } else {
6427 /* need to try and alternate net */
6428 chk->whoTo = sctp_find_alternate_net(stcb, stcb->asoc.last_control_chunk_from);
6429 stcb->asoc.used_alt_asconfack++;
6430 }
6431 if (chk->whoTo == NULL) {
6432 /* no alternate */
6433 if (stcb->asoc.last_control_chunk_from == NULL)
6434 chk->whoTo = stcb->asoc.primary_destination;
6435 else
6436 chk->whoTo = stcb->asoc.last_control_chunk_from;
6437 stcb->asoc.used_alt_asconfack = 0;
6438 }
6439 } else {
6440 /* normal case */
6441 if (stcb->asoc.last_control_chunk_from == NULL)
6442 chk->whoTo = stcb->asoc.primary_destination;
6443 else
6444 chk->whoTo = stcb->asoc.last_control_chunk_from;
6445 stcb->asoc.used_alt_asconfack = 0;
6446 }
6447 chk->data = m_ack;
6448 chk->send_size = m_ack->m_pkthdr.len;
6449 chk->rec.chunk_id = SCTP_ASCONF_ACK;
6450 chk->sent = SCTP_DATAGRAM_UNSENT;
6451 chk->snd_count = 0;
6452 chk->flags = 0;
6453 chk->asoc = &stcb->asoc;
6454 chk->whoTo->ref_count++;
6455 TAILQ_INSERT_TAIL(&chk->asoc->control_send_queue, chk, sctp_next);
6456 chk->asoc->ctrl_queue_cnt++;
6457 return (0);
6458 }
6459
6460
6461 static int
6462 sctp_chunk_retransmission(struct sctp_inpcb *inp,
6463 struct sctp_tcb *stcb,
6464 struct sctp_association *asoc,
6465 int *cnt_out, struct timeval *now, int *now_filled)
6466 {
6467 /*
6468 * send out one MTU of retransmission.
6469 * If fast_retransmit is happening we ignore the cwnd.
6470 * Otherwise we obey the cwnd and rwnd.
6471 * For a Cookie or Asconf in the control chunk queue we retransmit
6472 * them by themselves.
6473 *
6474 * For data chunks we will pick out the lowest TSN's in the
6475 * sent_queue marked for resend and bundle them all together
6476 * (up to a MTU of destination). The address to send to should
6477 * have been selected/changed where the retransmission was
6478 * marked (i.e. in FR or t3-timeout routines).
6479 */
6480 struct sctp_tmit_chunk *data_list[SCTP_MAX_DATA_BUNDLING];
6481 struct sctp_tmit_chunk *chk, *fwd;
6482 struct mbuf *m;
6483 struct sctphdr *shdr;
6484 int asconf;
6485 struct sctp_nets *net;
6486 int no_fragmentflg, bundle_at, cnt_thru;
6487 unsigned int mtu;
6488 int error, i, one_chunk, fwd_tsn, ctl_cnt, tmr_started;
6489
6490 tmr_started = ctl_cnt = bundle_at = error = 0;
6491 no_fragmentflg = 1;
6492 asconf = 0;
6493 fwd_tsn = 0;
6494 *cnt_out = 0;
6495 fwd = NULL;
6496 m = NULL;
6497 #ifdef SCTP_AUDITING_ENABLED
6498 sctp_audit_log(0xC3, 1);
6499 #endif
6500 if (TAILQ_EMPTY(&asoc->sent_queue)) {
6501 #ifdef SCTP_DEBUG
6502 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
6503 printf("SCTP hits empty queue with cnt set to %d?\n",
6504 asoc->sent_queue_retran_cnt);
6505 }
6506 #endif
6507 asoc->sent_queue_cnt = 0;
6508 asoc->sent_queue_cnt_removeable = 0;
6509 }
6510 TAILQ_FOREACH(chk, &asoc->control_send_queue, sctp_next) {
6511 if (chk->sent != SCTP_DATAGRAM_RESEND) {
6512 /* we only worry about things marked for resend */
6513 continue;
6514 }
6515 if ((chk->rec.chunk_id == SCTP_COOKIE_ECHO) ||
6516 (chk->rec.chunk_id == SCTP_ASCONF) ||
6517 (chk->rec.chunk_id == SCTP_STREAM_RESET) ||
6518 (chk->rec.chunk_id == SCTP_FORWARD_CUM_TSN)) {
6519 if (chk->rec.chunk_id == SCTP_STREAM_RESET) {
6520 /* For stream reset we only retran the request
6521 * not the response.
6522 */
6523 struct sctp_stream_reset_req *strreq;
6524 strreq = mtod(chk->data, struct sctp_stream_reset_req *);
6525 if (strreq->sr_req.ph.param_type != ntohs(SCTP_STR_RESET_REQUEST)) {
6526 continue;
6527 }
6528 }
6529 ctl_cnt++;
6530 if (chk->rec.chunk_id == SCTP_ASCONF) {
6531 no_fragmentflg = 1;
6532 asconf = 1;
6533 }
6534 if (chk->rec.chunk_id == SCTP_FORWARD_CUM_TSN) {
6535 fwd_tsn = 1;
6536 fwd = chk;
6537 }
6538 m = sctp_copy_mbufchain(chk->data, m);
6539 break;
6540 }
6541 }
6542 one_chunk = 0;
6543 cnt_thru = 0;
6544 /* do we have control chunks to retransmit? */
6545 if (m != NULL) {
6546 /* Start a timer no matter if we suceed or fail */
6547 if (chk->rec.chunk_id == SCTP_COOKIE_ECHO) {
6548 sctp_timer_start(SCTP_TIMER_TYPE_COOKIE, inp, stcb, chk->whoTo);
6549 } else if (chk->rec.chunk_id == SCTP_ASCONF)
6550 sctp_timer_start(SCTP_TIMER_TYPE_ASCONF, inp, stcb, chk->whoTo);
6551
6552 if (m->m_len == 0) {
6553 /* Special case for when you get a 0 len
6554 * mbuf at the head due to the lack
6555 * of a MHDR at the beginning.
6556 */
6557 m->m_len = sizeof(struct sctphdr);
6558 } else {
6559 M_PREPEND(m, sizeof(struct sctphdr), M_DONTWAIT);
6560 if (m == NULL) {
6561 return (ENOBUFS);
6562 }
6563 }
6564 shdr = mtod(m, struct sctphdr *);
6565 shdr->src_port = inp->sctp_lport;
6566 shdr->dest_port = stcb->rport;
6567 shdr->v_tag = htonl(stcb->asoc.peer_vtag);
6568 shdr->checksum = 0;
6569 chk->snd_count++; /* update our count */
6570
6571 if ((error = sctp_lowlevel_chunk_output(inp, stcb, chk->whoTo,
6572 rtcache_getdst(&chk->whoTo->ro), m,
6573 no_fragmentflg, 0, NULL, asconf))) {
6574 sctp_pegs[SCTP_DATA_OUT_ERR]++;
6575 return (error);
6576 }
6577 /*
6578 *We don't want to mark the net->sent time here since this
6579 * we use this for HB and retrans cannot measure RTT
6580 */
6581 /* SCTP_GETTIME_TIMEVAL(&chk->whoTo->last_sent_time);*/
6582 *cnt_out += 1;
6583 chk->sent = SCTP_DATAGRAM_SENT;
6584 sctp_ucount_decr(asoc->sent_queue_retran_cnt);
6585 if (fwd_tsn == 0) {
6586 return (0);
6587 } else {
6588 /* Clean up the fwd-tsn list */
6589 sctp_clean_up_ctl (asoc);
6590 return (0);
6591 }
6592 }
6593 /* Ok, it is just data retransmission we need to do or
6594 * that and a fwd-tsn with it all.
6595 */
6596 if (TAILQ_EMPTY(&asoc->sent_queue)) {
6597 return (-1);
6598 }
6599 #ifdef SCTP_DEBUG
6600 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
6601 printf("Normal chunk retransmission cnt:%d\n",
6602 asoc->sent_queue_retran_cnt);
6603 }
6604 #endif
6605 if ((SCTP_GET_STATE(asoc) == SCTP_STATE_COOKIE_ECHOED) ||
6606 (SCTP_GET_STATE(asoc) == SCTP_STATE_COOKIE_WAIT)) {
6607 /* not yet open, resend the cookie and that is it */
6608 return (1);
6609 }
6610
6611
6612 #ifdef SCTP_AUDITING_ENABLED
6613 sctp_auditing(20, inp, stcb, NULL);
6614 #endif
6615 TAILQ_FOREACH(chk, &asoc->sent_queue, sctp_next) {
6616 if (chk->sent != SCTP_DATAGRAM_RESEND) {
6617 /* No, not sent to this net or not ready for rtx */
6618 continue;
6619
6620 }
6621 /* pick up the net */
6622 net = chk->whoTo;
6623 if (stcb->sctp_ep->sctp_flags & SCTP_PCB_FLAGS_BOUND_V6) {
6624 mtu = (net->mtu - SCTP_MIN_OVERHEAD);
6625 } else {
6626 mtu = net->mtu- SCTP_MIN_V4_OVERHEAD;
6627 }
6628
6629 if ((asoc->peers_rwnd < mtu) && (asoc->total_flight > 0)) {
6630 /* No room in peers rwnd */
6631 uint32_t tsn;
6632 tsn = asoc->last_acked_seq + 1;
6633 if (tsn == chk->rec.data.TSN_seq) {
6634 /* we make a special exception for this case.
6635 * The peer has no rwnd but is missing the
6636 * lowest chunk.. which is probably what is
6637 * holding up the rwnd.
6638 */
6639 goto one_chunk_around;
6640 }
6641 #ifdef SCTP_DEBUG
6642 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
6643 printf("blocked-peers_rwnd:%d tf:%d\n",
6644 (int)asoc->peers_rwnd,
6645 (int)asoc->total_flight);
6646 }
6647 #endif
6648 sctp_pegs[SCTP_RWND_BLOCKED]++;
6649 return (1);
6650 }
6651 one_chunk_around:
6652 if (asoc->peers_rwnd < mtu) {
6653 one_chunk = 1;
6654 }
6655 #ifdef SCTP_AUDITING_ENABLED
6656 sctp_audit_log(0xC3, 2);
6657 #endif
6658 bundle_at = 0;
6659 m = NULL;
6660 net->fast_retran_ip = 0;
6661 if (chk->rec.data.doing_fast_retransmit == 0) {
6662 /* if no FR in progress skip destination that
6663 * have flight_size > cwnd.
6664 */
6665 if (net->flight_size >= net->cwnd) {
6666 sctp_pegs[SCTP_CWND_BLOCKED]++;
6667 continue;
6668 }
6669 } else {
6670 /* Mark the destination net to have FR recovery
6671 * limits put on it.
6672 */
6673 net->fast_retran_ip = 1;
6674 }
6675
6676 if ((chk->send_size <= mtu) || (chk->flags & CHUNK_FLAGS_FRAGMENT_OK)) {
6677 /* ok we will add this one */
6678 m = sctp_copy_mbufchain(chk->data, m);
6679 if (m == NULL) {
6680 return (ENOMEM);
6681 }
6682 /* update our MTU size */
6683 /* Do clear IP_DF ? */
6684 if (chk->flags & CHUNK_FLAGS_FRAGMENT_OK) {
6685 no_fragmentflg = 0;
6686 }
6687 mtu -= chk->send_size;
6688 data_list[bundle_at++] = chk;
6689 if (one_chunk && (asoc->total_flight <= 0)) {
6690 sctp_pegs[SCTP_WINDOW_PROBES]++;
6691 chk->rec.data.state_flags |= SCTP_WINDOW_PROBE;
6692 }
6693 }
6694 if (one_chunk == 0) {
6695 /* now are there anymore forward from chk to pick up?*/
6696 fwd = TAILQ_NEXT(chk, sctp_next);
6697 while (fwd) {
6698 if (fwd->sent != SCTP_DATAGRAM_RESEND) {
6699 /* Nope, not for retran */
6700 fwd = TAILQ_NEXT(fwd, sctp_next);
6701 continue;
6702 }
6703 if (fwd->whoTo != net) {
6704 /* Nope, not the net in question */
6705 fwd = TAILQ_NEXT(fwd, sctp_next);
6706 continue;
6707 }
6708 if (fwd->send_size <= mtu) {
6709 m = sctp_copy_mbufchain(fwd->data, m);
6710 if (m == NULL) {
6711 return (ENOMEM);
6712 }
6713 /* update our MTU size */
6714 /* Do clear IP_DF ? */
6715 if (fwd->flags & CHUNK_FLAGS_FRAGMENT_OK) {
6716 no_fragmentflg = 0;
6717 }
6718 mtu -= fwd->send_size;
6719 data_list[bundle_at++] = fwd;
6720 if (bundle_at >= SCTP_MAX_DATA_BUNDLING) {
6721 break;
6722 }
6723 fwd = TAILQ_NEXT(fwd, sctp_next);
6724 } else {
6725 /* can't fit so we are done */
6726 break;
6727 }
6728 }
6729 }
6730 /* Is there something to send for this destination? */
6731 if (m) {
6732 /* No matter if we fail/or suceed we should
6733 * start a timer. A failure is like a lost
6734 * IP packet :-)
6735 */
6736 if (!callout_pending(&net->rxt_timer.timer)) {
6737 /* no timer running on this destination
6738 * restart it.
6739 */
6740 sctp_timer_start(SCTP_TIMER_TYPE_SEND, inp, stcb, net);
6741 tmr_started = 1;
6742 }
6743 if (m->m_len == 0) {
6744 /* Special case for when you get a 0 len
6745 * mbuf at the head due to the lack
6746 * of a MHDR at the beginning.
6747 */
6748 m->m_len = sizeof(struct sctphdr);
6749 } else {
6750 M_PREPEND(m, sizeof(struct sctphdr), M_DONTWAIT);
6751 if (m == NULL) {
6752 return (ENOBUFS);
6753 }
6754 }
6755 shdr = mtod(m, struct sctphdr *);
6756 shdr->src_port = inp->sctp_lport;
6757 shdr->dest_port = stcb->rport;
6758 shdr->v_tag = htonl(stcb->asoc.peer_vtag);
6759 shdr->checksum = 0;
6760
6761 /* Now lets send it, if there is anything to send :> */
6762 if ((error = sctp_lowlevel_chunk_output(inp, stcb, net,
6763 rtcache_getdst(&net->ro),
6764 m,
6765 no_fragmentflg, 0, NULL, asconf))) {
6766 /* error, we could not output */
6767 sctp_pegs[SCTP_DATA_OUT_ERR]++;
6768 return (error);
6769 }
6770 /* For HB's */
6771 /*
6772 * We don't want to mark the net->sent time here since
6773 * this we use this for HB and retrans cannot measure
6774 * RTT
6775 */
6776 /* SCTP_GETTIME_TIMEVAL(&net->last_sent_time);*/
6777
6778 /* For auto-close */
6779 cnt_thru++;
6780 if (*now_filled == 0) {
6781 SCTP_GETTIME_TIMEVAL(&asoc->time_last_sent);
6782 *now = asoc->time_last_sent;
6783 *now_filled = 1;
6784 } else {
6785 asoc->time_last_sent = *now;
6786 }
6787 *cnt_out += bundle_at;
6788 #ifdef SCTP_AUDITING_ENABLED
6789 sctp_audit_log(0xC4, bundle_at);
6790 #endif
6791 for (i = 0; i < bundle_at; i++) {
6792 sctp_pegs[SCTP_RETRANTSN_SENT]++;
6793 data_list[i]->sent = SCTP_DATAGRAM_SENT;
6794 data_list[i]->snd_count++;
6795 sctp_ucount_decr(asoc->sent_queue_retran_cnt);
6796 /* record the time */
6797 data_list[i]->sent_rcv_time = asoc->time_last_sent;
6798 net->flight_size += data_list[i]->book_size;
6799 asoc->total_flight += data_list[i]->book_size;
6800 asoc->total_flight_count++;
6801
6802 #ifdef SCTP_LOG_RWND
6803 sctp_log_rwnd(SCTP_DECREASE_PEER_RWND,
6804 asoc->peers_rwnd , data_list[i]->send_size, sctp_peer_chunk_oh);
6805 #endif
6806 asoc->peers_rwnd = sctp_sbspace_sub(asoc->peers_rwnd,
6807 (u_int32_t)(data_list[i]->send_size + sctp_peer_chunk_oh));
6808 if (asoc->peers_rwnd < stcb->sctp_ep->sctp_ep.sctp_sws_sender) {
6809 /* SWS sender side engages */
6810 asoc->peers_rwnd = 0;
6811 }
6812
6813 if ((i == 0) &&
6814 (data_list[i]->rec.data.doing_fast_retransmit)) {
6815 sctp_pegs[SCTP_FAST_RETRAN]++;
6816 if ((data_list[i] == TAILQ_FIRST(&asoc->sent_queue)) &&
6817 (tmr_started == 0)) {
6818 /*
6819 * ok we just fast-retrans'd
6820 * the lowest TSN, i.e the
6821 * first on the list. In this
6822 * case we want to give some
6823 * more time to get a SACK
6824 * back without a t3-expiring.
6825 */
6826 sctp_timer_stop(SCTP_TIMER_TYPE_SEND, inp, stcb, net);
6827 sctp_timer_start(SCTP_TIMER_TYPE_SEND, inp, stcb, net);
6828 }
6829 }
6830 }
6831 #ifdef SCTP_AUDITING_ENABLED
6832 sctp_auditing(21, inp, stcb, NULL);
6833 #endif
6834 } else {
6835 /* None will fit */
6836 return (1);
6837 }
6838 if (asoc->sent_queue_retran_cnt <= 0) {
6839 /* all done we have no more to retran */
6840 asoc->sent_queue_retran_cnt = 0;
6841 break;
6842 }
6843 if (one_chunk) {
6844 /* No more room in rwnd */
6845 return (1);
6846 }
6847 /* stop the for loop here. we sent out a packet */
6848 break;
6849 }
6850 return (0);
6851 }
6852
6853
6854 static int
6855 sctp_timer_validation(struct sctp_inpcb *inp,
6856 struct sctp_tcb *stcb,
6857 struct sctp_association *asoc,
6858 int ret)
6859 {
6860 struct sctp_nets *net;
6861 /* Validate that a timer is running somewhere */
6862 TAILQ_FOREACH(net, &asoc->nets, sctp_next) {
6863 if (callout_pending(&net->rxt_timer.timer)) {
6864 /* Here is a timer */
6865 return (ret);
6866 }
6867 }
6868 /* Gak, we did not have a timer somewhere */
6869 #ifdef SCTP_DEBUG
6870 if (sctp_debug_on & SCTP_DEBUG_OUTPUT3) {
6871 printf("Deadlock avoided starting timer on a dest at retran\n");
6872 }
6873 #endif
6874 sctp_timer_start(SCTP_TIMER_TYPE_SEND, inp, stcb, asoc->primary_destination);
6875 return (ret);
6876 }
6877
6878 int
6879 sctp_chunk_output(struct sctp_inpcb *inp,
6880 struct sctp_tcb *stcb,
6881 int from_where)
6882 {
6883 /* Ok this is the generic chunk service queue.
6884 * we must do the following:
6885 * - See if there are retransmits pending, if so we
6886 * must do these first and return.
6887 * - Service the stream queue that is next,
6888 * moving any message (note I must get a complete
6889 * message i.e. FIRST/MIDDLE and LAST to the out
6890 * queue in one pass) and assigning TSN's
6891 * - Check to see if the cwnd/rwnd allows any output, if
6892 * so we go ahead and fomulate and send the low level
6893 * chunks. Making sure to combine any control in the
6894 * control chunk queue also.
6895 */
6896 struct sctp_association *asoc;
6897 struct sctp_nets *net;
6898 int error, num_out, tot_out, ret, reason_code, burst_cnt, burst_limit;
6899 struct timeval now;
6900 int now_filled=0;
6901 int cwnd_full=0;
6902 asoc = &stcb->asoc;
6903 tot_out = 0;
6904 num_out = 0;
6905 reason_code = 0;
6906 sctp_pegs[SCTP_CALLS_TO_CO]++;
6907 #ifdef SCTP_DEBUG
6908 if (sctp_debug_on & SCTP_DEBUG_OUTPUT3) {
6909 printf("in co - retran count:%d\n", asoc->sent_queue_retran_cnt);
6910 }
6911 #endif
6912 while (asoc->sent_queue_retran_cnt) {
6913 /* Ok, it is retransmission time only, we send out only ONE
6914 * packet with a single call off to the retran code.
6915 */
6916 ret = sctp_chunk_retransmission(inp, stcb, asoc, &num_out, &now, &now_filled);
6917 if (ret > 0) {
6918 /* Can't send anymore */
6919 #ifdef SCTP_DEBUG
6920 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
6921 printf("retransmission ret:%d -- full\n", ret);
6922 }
6923 #endif
6924 /*
6925 * now lets push out control by calling med-level
6926 * output once. this assures that we WILL send HB's
6927 * if queued too.
6928 */
6929 (void)sctp_med_chunk_output(inp, stcb, asoc, &num_out, &reason_code, 1,
6930 &cwnd_full, from_where,
6931 &now, &now_filled);
6932 #ifdef SCTP_DEBUG
6933 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
6934 printf("Control send outputs:%d@full\n", num_out);
6935 }
6936 #endif
6937 #ifdef SCTP_AUDITING_ENABLED
6938 sctp_auditing(8, inp, stcb, NULL);
6939 #endif
6940 return (sctp_timer_validation(inp, stcb, asoc, ret));
6941 }
6942 if (ret < 0) {
6943 /*
6944 * The count was off.. retran is not happening so do
6945 * the normal retransmission.
6946 */
6947 #ifdef SCTP_DEBUG
6948 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
6949 printf("Done with retrans, none left fill up window\n");
6950 }
6951 #endif
6952 #ifdef SCTP_AUDITING_ENABLED
6953 sctp_auditing(9, inp, stcb, NULL);
6954 #endif
6955 break;
6956 }
6957 if (from_where == 1) {
6958 /* Only one transmission allowed out of a timeout */
6959 #ifdef SCTP_DEBUG
6960 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
6961 printf("Only one packet allowed out\n");
6962 }
6963 #endif
6964 #ifdef SCTP_AUDITING_ENABLED
6965 sctp_auditing(10, inp, stcb, NULL);
6966 #endif
6967 /* Push out any control */
6968 (void)sctp_med_chunk_output(inp, stcb, asoc, &num_out, &reason_code, 1, &cwnd_full, from_where,
6969 &now, &now_filled);
6970 return (ret);
6971 }
6972 if ((num_out == 0) && (ret == 0)) {
6973 /* No more retrans to send */
6974 break;
6975 }
6976 }
6977 #ifdef SCTP_AUDITING_ENABLED
6978 sctp_auditing(12, inp, stcb, NULL);
6979 #endif
6980 /* Check for bad destinations, if they exist move chunks around. */
6981 burst_limit = asoc->max_burst;
6982 TAILQ_FOREACH(net, &asoc->nets, sctp_next) {
6983 if ((net->dest_state & SCTP_ADDR_NOT_REACHABLE) ==
6984 SCTP_ADDR_NOT_REACHABLE) {
6985 /*
6986 * if possible move things off of this address
6987 * we still may send below due to the dormant state
6988 * but we try to find an alternate address to send
6989 * to and if we have one we move all queued data on
6990 * the out wheel to this alternate address.
6991 */
6992 sctp_move_to_an_alt(stcb, asoc, net);
6993 } else {
6994 /*
6995 if ((asoc->sat_network) || (net->addr_is_local)) {
6996 burst_limit = asoc->max_burst * SCTP_SAT_NETWORK_BURST_INCR;
6997 }
6998 */
6999 #ifdef SCTP_DEBUG
7000 if (sctp_debug_on & SCTP_DEBUG_OUTPUT3) {
7001 printf("examined net:%p burst limit:%d\n", net, asoc->max_burst);
7002 }
7003 #endif
7004
7005 #ifdef SCTP_USE_ALLMAN_BURST
7006 if ((net->flight_size+(burst_limit*net->mtu)) < net->cwnd) {
7007 if (net->ssthresh < net->cwnd)
7008 net->ssthresh = net->cwnd;
7009 net->cwnd = (net->flight_size+(burst_limit*net->mtu));
7010 #ifdef SCTP_LOG_MAXBURST
7011 sctp_log_maxburst(net, 0, burst_limit, SCTP_MAX_BURST_APPLIED);
7012 #endif
7013 sctp_pegs[SCTP_MAX_BURST_APL]++;
7014 }
7015 net->fast_retran_ip = 0;
7016 #endif
7017 }
7018
7019 }
7020 /* Fill up what we can to the destination */
7021 burst_cnt = 0;
7022 cwnd_full = 0;
7023 do {
7024 #ifdef SCTP_DEBUG
7025 if (sctp_debug_on & SCTP_DEBUG_OUTPUT3) {
7026 printf("Burst count:%d - call m-c-o\n", burst_cnt);
7027 }
7028 #endif
7029 error = sctp_med_chunk_output(inp, stcb, asoc, &num_out,
7030 &reason_code, 0, &cwnd_full, from_where,
7031 &now, &now_filled);
7032 if (error) {
7033 #ifdef SCTP_DEBUG
7034 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
7035 printf("Error %d was returned from med-c-op\n", error);
7036 }
7037 #endif
7038 #ifdef SCTP_LOG_MAXBURST
7039 sctp_log_maxburst(asoc->primary_destination, error , burst_cnt, SCTP_MAX_BURST_ERROR_STOP);
7040 #endif
7041 break;
7042 }
7043 #ifdef SCTP_DEBUG
7044 if (sctp_debug_on & SCTP_DEBUG_OUTPUT3) {
7045 printf("m-c-o put out %d\n", num_out);
7046 }
7047 #endif
7048 tot_out += num_out;
7049 burst_cnt++;
7050 } while (num_out
7051 #ifndef SCTP_USE_ALLMAN_BURST
7052 && (burst_cnt < burst_limit)
7053 #endif
7054 );
7055 #ifndef SCTP_USE_ALLMAN_BURST
7056 if (burst_cnt >= burst_limit) {
7057 sctp_pegs[SCTP_MAX_BURST_APL]++;
7058 asoc->burst_limit_applied = 1;
7059 #ifdef SCTP_LOG_MAXBURST
7060 sctp_log_maxburst(asoc->primary_destination, 0 , burst_cnt, SCTP_MAX_BURST_APPLIED);
7061 #endif
7062 } else {
7063 asoc->burst_limit_applied = 0;
7064 }
7065 #endif
7066
7067 #ifdef SCTP_DEBUG
7068 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
7069 printf("Ok, we have put out %d chunks\n", tot_out);
7070 }
7071 #endif
7072 if (tot_out == 0) {
7073 sctp_pegs[SCTP_CO_NODATASNT]++;
7074 if (asoc->stream_queue_cnt > 0) {
7075 sctp_pegs[SCTP_SOS_NOSNT]++;
7076 } else {
7077 sctp_pegs[SCTP_NOS_NOSNT]++;
7078 }
7079 if (asoc->send_queue_cnt > 0) {
7080 sctp_pegs[SCTP_SOSE_NOSNT]++;
7081 } else {
7082 sctp_pegs[SCTP_NOSE_NOSNT]++;
7083 }
7084 }
7085 /* Now we need to clean up the control chunk chain if
7086 * a ECNE is on it. It must be marked as UNSENT again
7087 * so next call will continue to send it until
7088 * such time that we get a CWR, to remove it.
7089 */
7090 sctp_fix_ecn_echo(asoc);
7091 return (error);
7092 }
7093
7094
7095 int
7096 sctp_output(struct sctp_inpcb *inp, struct mbuf *m,
7097 struct sockaddr *addr, struct mbuf *control, struct lwp *l, int flags)
7098 {
7099 struct sctp_inpcb *t_inp;
7100 struct sctp_tcb *stcb;
7101 struct sctp_nets *net;
7102 struct sctp_association *asoc;
7103 int create_lock_applied = 0;
7104 int queue_only, error = 0;
7105 struct sctp_sndrcvinfo srcv;
7106 int un_sent = 0;
7107 int use_rcvinfo = 0;
7108 t_inp = inp;
7109 /* struct route ro;*/
7110
7111 queue_only = 0;
7112 stcb = NULL;
7113 asoc = NULL;
7114 net = NULL;
7115
7116 #ifdef SCTP_DEBUG
7117 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
7118 printf("USR Send BEGINS\n");
7119 }
7120 #endif
7121
7122 if ((inp->sctp_flags & SCTP_PCB_FLAGS_TCPTYPE) &&
7123 (inp->sctp_flags & SCTP_PCB_FLAGS_ACCEPTING)) {
7124 /* The listner can NOT send */
7125 if (control) {
7126 sctppcbinfo.mbuf_track--;
7127 sctp_m_freem(control);
7128 control = NULL;
7129 }
7130 sctp_m_freem(m);
7131 return (EFAULT);
7132 }
7133 /* Can't allow a V6 address on a non-v6 socket */
7134 if (addr) {
7135 SCTP_ASOC_CREATE_LOCK(inp);
7136 if ((inp->sctp_flags & SCTP_PCB_FLAGS_SOCKET_GONE) ||
7137 (inp->sctp_flags & SCTP_PCB_FLAGS_SOCKET_GONE)) {
7138 /* Should I really unlock ? */
7139 SCTP_ASOC_CREATE_UNLOCK(inp);
7140 if (control) {
7141 sctppcbinfo.mbuf_track--;
7142 sctp_m_freem(control);
7143 control = NULL;
7144 }
7145 sctp_m_freem(m);
7146 return (EFAULT);
7147 }
7148 create_lock_applied = 1;
7149 if (((inp->sctp_flags & SCTP_PCB_FLAGS_BOUND_V6) == 0) &&
7150 (addr->sa_family == AF_INET6)) {
7151 SCTP_ASOC_CREATE_UNLOCK(inp);
7152 if (control) {
7153 sctppcbinfo.mbuf_track--;
7154 sctp_m_freem(control);
7155 control = NULL;
7156 }
7157 sctp_m_freem(m);
7158 return (EINVAL);
7159 }
7160 }
7161 if (control) {
7162 sctppcbinfo.mbuf_track++;
7163 if (sctp_find_cmsg(SCTP_SNDRCV, (void *)&srcv, control,
7164 sizeof(srcv))) {
7165 if (srcv.sinfo_flags & SCTP_SENDALL) {
7166 /* its a sendall */
7167 sctppcbinfo.mbuf_track--;
7168 sctp_m_freem(control);
7169 if (create_lock_applied) {
7170 SCTP_ASOC_CREATE_UNLOCK(inp);
7171 create_lock_applied = 0;
7172 }
7173 return (sctp_sendall(inp, NULL, m, &srcv));
7174 }
7175 if (srcv.sinfo_assoc_id) {
7176 if (inp->sctp_flags & SCTP_PCB_FLAGS_CONNECTED) {
7177 SCTP_INP_RLOCK(inp);
7178 stcb = LIST_FIRST(&inp->sctp_asoc_list);
7179 if (stcb) {
7180 SCTP_TCB_LOCK(stcb);
7181 }
7182 SCTP_INP_RUNLOCK(inp);
7183
7184 if (stcb == NULL) {
7185 if (create_lock_applied) {
7186 SCTP_ASOC_CREATE_UNLOCK(inp);
7187 create_lock_applied = 0;
7188 }
7189 sctppcbinfo.mbuf_track--;
7190 sctp_m_freem(control);
7191 sctp_m_freem(m);
7192 return (ENOTCONN);
7193 }
7194 net = stcb->asoc.primary_destination;
7195 } else {
7196 stcb = sctp_findassociation_ep_asocid(inp, srcv.sinfo_assoc_id);
7197 }
7198 /*
7199 * Question: Should I error here if the
7200
7201 * assoc_id is no longer valid?
7202 * i.e. I can't find it?
7203 */
7204 if ((stcb) &&
7205 (addr != NULL)) {
7206 /* Must locate the net structure */
7207 if (addr)
7208 net = sctp_findnet(stcb, addr);
7209 }
7210 if (net == NULL)
7211 net = stcb->asoc.primary_destination;
7212 }
7213 use_rcvinfo = 1;
7214 }
7215 }
7216 if (stcb == NULL) {
7217 if (inp->sctp_flags & SCTP_PCB_FLAGS_CONNECTED) {
7218 SCTP_INP_RLOCK(inp);
7219 stcb = LIST_FIRST(&inp->sctp_asoc_list);
7220 if (stcb) {
7221 SCTP_TCB_LOCK(stcb);
7222 }
7223 SCTP_INP_RUNLOCK(inp);
7224 if (stcb == NULL) {
7225 if (create_lock_applied) {
7226 SCTP_ASOC_CREATE_UNLOCK(inp);
7227 create_lock_applied = 0;
7228 }
7229 if (control) {
7230 sctppcbinfo.mbuf_track--;
7231 sctp_m_freem(control);
7232 control = NULL;
7233 }
7234 sctp_m_freem(m);
7235 return (ENOTCONN);
7236 }
7237 if (addr == NULL) {
7238 net = stcb->asoc.primary_destination;
7239 } else {
7240 net = sctp_findnet(stcb, addr);
7241 if (net == NULL) {
7242 net = stcb->asoc.primary_destination;
7243 }
7244 }
7245 } else {
7246 if (addr != NULL) {
7247 SCTP_INP_WLOCK(inp);
7248 SCTP_INP_INCR_REF(inp);
7249 SCTP_INP_WUNLOCK(inp);
7250 stcb = sctp_findassociation_ep_addr(&t_inp, addr, &net, NULL, NULL);
7251 if (stcb == NULL) {
7252 SCTP_INP_WLOCK(inp);
7253 SCTP_INP_DECR_REF(inp);
7254 SCTP_INP_WUNLOCK(inp);
7255 }
7256 }
7257 }
7258 }
7259 if ((stcb == NULL) &&
7260 (inp->sctp_flags & SCTP_PCB_FLAGS_TCPTYPE)) {
7261 if (control) {
7262 sctppcbinfo.mbuf_track--;
7263 sctp_m_freem(control);
7264 control = NULL;
7265 }
7266 if (create_lock_applied) {
7267 SCTP_ASOC_CREATE_UNLOCK(inp);
7268 create_lock_applied = 0;
7269 }
7270 sctp_m_freem(m);
7271 return (ENOTCONN);
7272 } else if ((stcb == NULL) &&
7273 (addr == NULL)) {
7274 if (control) {
7275 sctppcbinfo.mbuf_track--;
7276 sctp_m_freem(control);
7277 control = NULL;
7278 }
7279 if (create_lock_applied) {
7280 SCTP_ASOC_CREATE_UNLOCK(inp);
7281 create_lock_applied = 0;
7282 }
7283 sctp_m_freem(m);
7284 return (ENOENT);
7285 } else if (stcb == NULL) {
7286 /* UDP mode, we must go ahead and start the INIT process */
7287 if ((use_rcvinfo) && (srcv.sinfo_flags & SCTP_ABORT)) {
7288 /* Strange user to do this */
7289 if (control) {
7290 sctppcbinfo.mbuf_track--;
7291 sctp_m_freem(control);
7292 control = NULL;
7293 }
7294 if (create_lock_applied) {
7295 SCTP_ASOC_CREATE_UNLOCK(inp);
7296 create_lock_applied = 0;
7297 }
7298 sctp_m_freem(m);
7299 return (ENOENT);
7300 }
7301 stcb = sctp_aloc_assoc(inp, addr, 1, &error, 0);
7302 if (stcb == NULL) {
7303 if (control) {
7304 sctppcbinfo.mbuf_track--;
7305 sctp_m_freem(control);
7306 control = NULL;
7307 }
7308 if (create_lock_applied) {
7309 SCTP_ASOC_CREATE_UNLOCK(inp);
7310 create_lock_applied = 0;
7311 }
7312 sctp_m_freem(m);
7313 return (error);
7314 }
7315 if (create_lock_applied) {
7316 SCTP_ASOC_CREATE_UNLOCK(inp);
7317 create_lock_applied = 0;
7318 } else {
7319 printf("Huh-1, create lock should have been applied!\n");
7320 }
7321 queue_only = 1;
7322 asoc = &stcb->asoc;
7323 asoc->state = SCTP_STATE_COOKIE_WAIT;
7324 SCTP_GETTIME_TIMEVAL(&asoc->time_entered);
7325 if (control) {
7326 /* see if a init structure exists in cmsg headers */
7327 struct sctp_initmsg initm;
7328 int i;
7329 if (sctp_find_cmsg(SCTP_INIT, (void *)&initm, control,
7330 sizeof(initm))) {
7331 /* we have an INIT override of the default */
7332 if (initm.sinit_max_attempts)
7333 asoc->max_init_times = initm.sinit_max_attempts;
7334 if (initm.sinit_num_ostreams)
7335 asoc->pre_open_streams = initm.sinit_num_ostreams;
7336 if (initm.sinit_max_instreams)
7337 asoc->max_inbound_streams = initm.sinit_max_instreams;
7338 if (initm.sinit_max_init_timeo)
7339 asoc->initial_init_rto_max = initm.sinit_max_init_timeo;
7340 }
7341 if (asoc->streamoutcnt < asoc->pre_open_streams) {
7342 /* Default is NOT correct */
7343 #ifdef SCTP_DEBUG
7344 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
7345 printf("Ok, defout:%d pre_open:%d\n",
7346 asoc->streamoutcnt, asoc->pre_open_streams);
7347 }
7348 #endif
7349 free(asoc->strmout, M_PCB);
7350 asoc->strmout = NULL;
7351 asoc->streamoutcnt = asoc->pre_open_streams;
7352 asoc->strmout = malloc(asoc->streamoutcnt *
7353 sizeof(struct sctp_stream_out), M_PCB,
7354 M_WAIT);
7355 for (i = 0; i < asoc->streamoutcnt; i++) {
7356 /*
7357 * inbound side must be set to 0xffff,
7358 * also NOTE when we get the INIT-ACK
7359 * back (for INIT sender) we MUST
7360 * reduce the count (streamoutcnt) but
7361 * first check if we sent to any of the
7362 * upper streams that were dropped (if
7363 * some were). Those that were dropped
7364 * must be notified to the upper layer
7365 * as failed to send.
7366 */
7367 asoc->strmout[i].next_sequence_sent = 0x0;
7368 TAILQ_INIT(&asoc->strmout[i].outqueue);
7369 asoc->strmout[i].stream_no = i;
7370 asoc->strmout[i].next_spoke.tqe_next = 0;
7371 asoc->strmout[i].next_spoke.tqe_prev = 0;
7372 }
7373 }
7374 }
7375 sctp_send_initiate(inp, stcb);
7376 /*
7377 * we may want to dig in after this call and adjust the MTU
7378 * value. It defaulted to 1500 (constant) but the ro structure
7379 * may now have an update and thus we may need to change it
7380 * BEFORE we append the message.
7381 */
7382 net = stcb->asoc.primary_destination;
7383 } else {
7384 if (create_lock_applied) {
7385 SCTP_ASOC_CREATE_UNLOCK(inp);
7386 create_lock_applied = 0;
7387 }
7388 asoc = &stcb->asoc;
7389 if ((SCTP_GET_STATE(asoc) == SCTP_STATE_COOKIE_WAIT) ||
7390 (SCTP_GET_STATE(asoc) == SCTP_STATE_COOKIE_ECHOED)) {
7391 queue_only = 1;
7392 }
7393 if ((SCTP_GET_STATE(asoc) == SCTP_STATE_SHUTDOWN_SENT) ||
7394 (SCTP_GET_STATE(asoc) == SCTP_STATE_SHUTDOWN_RECEIVED) ||
7395 (SCTP_GET_STATE(asoc) == SCTP_STATE_SHUTDOWN_ACK_SENT) ||
7396 (asoc->state & SCTP_STATE_SHUTDOWN_PENDING)) {
7397 if (control) {
7398 sctppcbinfo.mbuf_track--;
7399 sctp_m_freem(control);
7400 control = NULL;
7401 }
7402 if ((use_rcvinfo) &&
7403 (srcv.sinfo_flags & SCTP_ABORT)) {
7404 sctp_msg_append(stcb, net, m, &srcv, flags);
7405 error = 0;
7406 } else {
7407 if (m)
7408 sctp_m_freem(m);
7409 error = ECONNRESET;
7410 }
7411 SCTP_TCB_UNLOCK(stcb);
7412 return (error);
7413 }
7414 }
7415 if (create_lock_applied) {
7416 /* we should never hit here with the create lock applied
7417 *
7418 */
7419 SCTP_ASOC_CREATE_UNLOCK(inp);
7420 create_lock_applied = 0;
7421 }
7422
7423
7424 if (use_rcvinfo == 0) {
7425 srcv = stcb->asoc.def_send;
7426 }
7427 #ifdef SCTP_DEBUG
7428 else {
7429 if (sctp_debug_on & SCTP_DEBUG_OUTPUT5) {
7430 printf("stream:%d\n", srcv.sinfo_stream);
7431 printf("flags:%x\n", (u_int)srcv.sinfo_flags);
7432 printf("ppid:%d\n", srcv.sinfo_ppid);
7433 printf("context:%d\n", srcv.sinfo_context);
7434 }
7435 }
7436 #endif
7437 if (control) {
7438 sctppcbinfo.mbuf_track--;
7439 sctp_m_freem(control);
7440 control = NULL;
7441 }
7442 if (net && ((srcv.sinfo_flags & SCTP_ADDR_OVER))) {
7443 /* we take the override or the unconfirmed */
7444 ;
7445 } else {
7446 net = stcb->asoc.primary_destination;
7447 }
7448 if ((error = sctp_msg_append(stcb, net, m, &srcv, flags))) {
7449 SCTP_TCB_UNLOCK(stcb);
7450 return (error);
7451 }
7452 if (net->flight_size > net->cwnd) {
7453 sctp_pegs[SCTP_SENDTO_FULL_CWND]++;
7454 queue_only = 1;
7455 } else if (asoc->ifp_had_enobuf) {
7456 sctp_pegs[SCTP_QUEONLY_BURSTLMT]++;
7457 queue_only = 1;
7458 } else {
7459 un_sent = ((stcb->asoc.total_output_queue_size - stcb->asoc.total_flight) +
7460 ((stcb->asoc.chunks_on_out_queue - stcb->asoc.total_flight_count) * sizeof(struct sctp_data_chunk)) +
7461 SCTP_MED_OVERHEAD);
7462
7463 if (((inp->sctp_flags & SCTP_PCB_FLAGS_NODELAY) == 0) &&
7464 (stcb->asoc.total_flight > 0) &&
7465 (un_sent < (int)stcb->asoc.smallest_mtu)
7466 ) {
7467
7468 /* Ok, Nagle is set on and we have
7469 * data outstanding. Don't send anything
7470 * and let the SACK drive out the data.
7471 */
7472 sctp_pegs[SCTP_NAGLE_NOQ]++;
7473 queue_only = 1;
7474 } else {
7475 sctp_pegs[SCTP_NAGLE_OFF]++;
7476 }
7477 }
7478 if ((queue_only == 0) && stcb->asoc.peers_rwnd) {
7479 /* we can attempt to send too.*/
7480 #ifdef SCTP_DEBUG
7481 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
7482 printf("USR Send calls sctp_chunk_output\n");
7483 }
7484 #endif
7485 #ifdef SCTP_AUDITING_ENABLED
7486 sctp_audit_log(0xC0, 1);
7487 sctp_auditing(6, inp, stcb, net);
7488 #endif
7489 sctp_pegs[SCTP_OUTPUT_FRM_SND]++;
7490 sctp_chunk_output(inp, stcb, 0);
7491 #ifdef SCTP_AUDITING_ENABLED
7492 sctp_audit_log(0xC0, 2);
7493 sctp_auditing(7, inp, stcb, net);
7494 #endif
7495
7496 }
7497 #ifdef SCTP_DEBUG
7498 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
7499 printf("USR Send complete qo:%d prw:%d\n", queue_only, stcb->asoc.peers_rwnd);
7500 }
7501 #endif
7502 SCTP_TCB_UNLOCK(stcb);
7503 return (0);
7504 }
7505
7506 void
7507 send_forward_tsn(struct sctp_tcb *stcb,
7508 struct sctp_association *asoc)
7509 {
7510 struct sctp_tmit_chunk *chk;
7511 struct sctp_forward_tsn_chunk *fwdtsn;
7512
7513 TAILQ_FOREACH(chk, &asoc->control_send_queue, sctp_next) {
7514 if (chk->rec.chunk_id == SCTP_FORWARD_CUM_TSN) {
7515 /* mark it to unsent */
7516 chk->sent = SCTP_DATAGRAM_UNSENT;
7517 chk->snd_count = 0;
7518 /* Do we correct its output location? */
7519 if (chk->whoTo != asoc->primary_destination) {
7520 sctp_free_remote_addr(chk->whoTo);
7521 chk->whoTo = asoc->primary_destination;
7522 chk->whoTo->ref_count++;
7523 }
7524 goto sctp_fill_in_rest;
7525 }
7526 }
7527 /* Ok if we reach here we must build one */
7528 chk = (struct sctp_tmit_chunk *)SCTP_ZONE_GET(sctppcbinfo.ipi_zone_chunk);
7529 if (chk == NULL) {
7530 return;
7531 }
7532 sctppcbinfo.ipi_count_chunk++;
7533 sctppcbinfo.ipi_gencnt_chunk++;
7534 chk->rec.chunk_id = SCTP_FORWARD_CUM_TSN;
7535 chk->asoc = asoc;
7536 MGETHDR(chk->data, M_DONTWAIT, MT_DATA);
7537 if (chk->data == NULL) {
7538 chk->whoTo->ref_count--;
7539 SCTP_ZONE_FREE(sctppcbinfo.ipi_zone_chunk, chk);
7540 sctppcbinfo.ipi_count_chunk--;
7541 if ((int)sctppcbinfo.ipi_count_chunk < 0) {
7542 panic("Chunk count is negative");
7543 }
7544 sctppcbinfo.ipi_gencnt_chunk++;
7545 return;
7546 }
7547 chk->data->m_data += SCTP_MIN_OVERHEAD;
7548 chk->sent = SCTP_DATAGRAM_UNSENT;
7549 chk->snd_count = 0;
7550 chk->whoTo = asoc->primary_destination;
7551 chk->whoTo->ref_count++;
7552 TAILQ_INSERT_TAIL(&asoc->control_send_queue, chk, sctp_next);
7553 asoc->ctrl_queue_cnt++;
7554 sctp_fill_in_rest:
7555 /* Here we go through and fill out the part that
7556 * deals with stream/seq of the ones we skip.
7557 */
7558 chk->data->m_pkthdr.len = chk->data->m_len = 0;
7559 {
7560 struct sctp_tmit_chunk *at, *tp1, *last;
7561 struct sctp_strseq *strseq;
7562 unsigned int cnt_of_space, i, ovh;
7563 unsigned int space_needed;
7564 unsigned int cnt_of_skipped = 0;
7565 TAILQ_FOREACH(at, &asoc->sent_queue, sctp_next) {
7566 if (at->sent != SCTP_FORWARD_TSN_SKIP) {
7567 /* no more to look at */
7568 break;
7569 }
7570 if (at->rec.data.rcv_flags & SCTP_DATA_UNORDERED) {
7571 /* We don't report these */
7572 continue;
7573 }
7574 cnt_of_skipped++;
7575 }
7576 space_needed = (sizeof(struct sctp_forward_tsn_chunk) +
7577 (cnt_of_skipped * sizeof(struct sctp_strseq)));
7578 if ((M_TRAILINGSPACE(chk->data) < (int)space_needed) &&
7579 ((chk->data->m_flags & M_EXT) == 0)) {
7580 /* Need a M_EXT, get one and move
7581 * fwdtsn to data area.
7582 */
7583 MCLGET(chk->data, M_DONTWAIT);
7584 }
7585 cnt_of_space = M_TRAILINGSPACE(chk->data);
7586
7587 if (stcb->sctp_ep->sctp_flags & SCTP_PCB_FLAGS_BOUND_V6) {
7588 ovh = SCTP_MIN_OVERHEAD;
7589 } else {
7590 ovh = SCTP_MIN_V4_OVERHEAD;
7591 }
7592 if (cnt_of_space > (asoc->smallest_mtu-ovh)) {
7593 /* trim to a mtu size */
7594 cnt_of_space = asoc->smallest_mtu - ovh;
7595 }
7596 if (cnt_of_space < space_needed) {
7597 /* ok we must trim down the chunk by lowering
7598 * the advance peer ack point.
7599 */
7600 cnt_of_skipped = (cnt_of_space-
7601 ((sizeof(struct sctp_forward_tsn_chunk))/
7602 sizeof(struct sctp_strseq)));
7603 /* Go through and find the TSN that
7604 * will be the one we report.
7605 */
7606 at = TAILQ_FIRST(&asoc->sent_queue);
7607 for (i = 0; i < cnt_of_skipped; i++) {
7608 tp1 = TAILQ_NEXT(at, sctp_next);
7609 at = tp1;
7610 }
7611 last = at;
7612 /* last now points to last one I can report, update peer ack point */
7613 asoc->advanced_peer_ack_point = last->rec.data.TSN_seq;
7614 space_needed -= (cnt_of_skipped * sizeof(struct sctp_strseq));
7615 }
7616 chk->send_size = space_needed;
7617 /* Setup the chunk */
7618 fwdtsn = mtod(chk->data, struct sctp_forward_tsn_chunk *);
7619 fwdtsn->ch.chunk_length = htons(chk->send_size);
7620 fwdtsn->ch.chunk_flags = 0;
7621 fwdtsn->ch.chunk_type = SCTP_FORWARD_CUM_TSN;
7622 fwdtsn->new_cumulative_tsn = htonl(asoc->advanced_peer_ack_point);
7623 chk->send_size = (sizeof(struct sctp_forward_tsn_chunk) +
7624 (cnt_of_skipped * sizeof(struct sctp_strseq)));
7625 chk->data->m_pkthdr.len = chk->data->m_len = chk->send_size;
7626 fwdtsn++;
7627 /* Move pointer to after the fwdtsn and transfer to
7628 * the strseq pointer.
7629 */
7630 strseq = (struct sctp_strseq *)fwdtsn;
7631 /*
7632 * Now populate the strseq list. This is done blindly
7633 * without pulling out duplicate stream info. This is
7634 * inefficent but won't harm the process since the peer
7635 * will look at these in sequence and will thus release
7636 * anything. It could mean we exceed the PMTU and chop
7637 * off some that we could have included.. but this is
7638 * unlikely (aka 1432/4 would mean 300+ stream seq's would
7639 * have to be reported in one FWD-TSN. With a bit of work
7640 * we can later FIX this to optimize and pull out duplcates..
7641 * but it does add more overhead. So for now... not!
7642 */
7643 at = TAILQ_FIRST(&asoc->sent_queue);
7644 for (i = 0; i < cnt_of_skipped; i++) {
7645 tp1 = TAILQ_NEXT(at, sctp_next);
7646 if (at->rec.data.rcv_flags & SCTP_DATA_UNORDERED) {
7647 /* We don't report these */
7648 i--;
7649 at = tp1;
7650 continue;
7651 }
7652 strseq->stream = ntohs(at->rec.data.stream_number);
7653 strseq->sequence = ntohs(at->rec.data.stream_seq);
7654 strseq++;
7655 at = tp1;
7656 }
7657 }
7658 return;
7659
7660 }
7661
7662 void
7663 sctp_send_sack(struct sctp_tcb *stcb)
7664 {
7665 /*
7666 * Queue up a SACK in the control queue. We must first check to
7667 * see if a SACK is somehow on the control queue. If so, we will
7668 * take and remove the old one.
7669 */
7670 struct sctp_association *asoc;
7671 struct sctp_tmit_chunk *chk, *a_chk;
7672 struct sctp_sack_chunk *sack;
7673 struct sctp_gap_ack_block *gap_descriptor;
7674 uint32_t *dup;
7675 int start;
7676 unsigned int i, maxi, seeing_ones, m_size;
7677 unsigned int num_gap_blocks, space;
7678
7679 start = maxi = 0;
7680 seeing_ones = 1;
7681 a_chk = NULL;
7682 asoc = &stcb->asoc;
7683 if (asoc->last_data_chunk_from == NULL) {
7684 /* Hmm we never received anything */
7685 return;
7686 }
7687 sctp_set_rwnd(stcb, asoc);
7688 TAILQ_FOREACH(chk, &asoc->control_send_queue, sctp_next) {
7689 if (chk->rec.chunk_id == SCTP_SELECTIVE_ACK) {
7690 /* Hmm, found a sack already on queue, remove it */
7691 TAILQ_REMOVE(&asoc->control_send_queue, chk, sctp_next);
7692 asoc->ctrl_queue_cnt++;
7693 a_chk = chk;
7694 if (a_chk->data)
7695 sctp_m_freem(a_chk->data);
7696 a_chk->data = NULL;
7697 sctp_free_remote_addr(a_chk->whoTo);
7698 a_chk->whoTo = NULL;
7699 break;
7700 }
7701 }
7702 if (a_chk == NULL) {
7703 a_chk = (struct sctp_tmit_chunk *)SCTP_ZONE_GET(sctppcbinfo.ipi_zone_chunk);
7704 if (a_chk == NULL) {
7705 /* No memory so we drop the idea, and set a timer */
7706 sctp_timer_stop(SCTP_TIMER_TYPE_RECV,
7707 stcb->sctp_ep, stcb, NULL);
7708 sctp_timer_start(SCTP_TIMER_TYPE_RECV,
7709 stcb->sctp_ep, stcb, NULL);
7710 return;
7711 }
7712 sctppcbinfo.ipi_count_chunk++;
7713 sctppcbinfo.ipi_gencnt_chunk++;
7714 a_chk->rec.chunk_id = SCTP_SELECTIVE_ACK;
7715 }
7716 a_chk->asoc = asoc;
7717 a_chk->snd_count = 0;
7718 a_chk->send_size = 0; /* fill in later */
7719 a_chk->sent = SCTP_DATAGRAM_UNSENT;
7720 m_size = (asoc->mapping_array_size << 3);
7721
7722 if ((asoc->numduptsns) ||
7723 (asoc->last_data_chunk_from->dest_state & SCTP_ADDR_NOT_REACHABLE)
7724 ) {
7725 /* Ok, we have some duplicates or the destination for the
7726 * sack is unreachable, lets see if we can select an alternate
7727 * than asoc->last_data_chunk_from
7728 */
7729 if ((!(asoc->last_data_chunk_from->dest_state &
7730 SCTP_ADDR_NOT_REACHABLE)) &&
7731 (asoc->used_alt_onsack > 2)) {
7732 /* We used an alt last time, don't this time */
7733 a_chk->whoTo = NULL;
7734 } else {
7735 asoc->used_alt_onsack++;
7736 a_chk->whoTo = sctp_find_alternate_net(stcb, asoc->last_data_chunk_from);
7737 }
7738 if (a_chk->whoTo == NULL) {
7739 /* Nope, no alternate */
7740 a_chk->whoTo = asoc->last_data_chunk_from;
7741 asoc->used_alt_onsack = 0;
7742 }
7743 } else {
7744 /* No duplicates so we use the last
7745 * place we received data from.
7746 */
7747 #ifdef SCTP_DEBUG
7748 if (asoc->last_data_chunk_from == NULL) {
7749 printf("Huh, last_data_chunk_from is null when we want to sack??\n");
7750 }
7751 #endif
7752 asoc->used_alt_onsack = 0;
7753 a_chk->whoTo = asoc->last_data_chunk_from;
7754 }
7755 if (a_chk->whoTo)
7756 a_chk->whoTo->ref_count++;
7757
7758 /* Ok now lets formulate a MBUF with our sack */
7759 MGETHDR(a_chk->data, M_DONTWAIT, MT_DATA);
7760 if ((a_chk->data == NULL) ||
7761 (a_chk->whoTo == NULL)) {
7762 /* rats, no mbuf memory */
7763 if (a_chk->data) {
7764 /* was a problem with the destination */
7765 sctp_m_freem(a_chk->data);
7766 a_chk->data = NULL;
7767 }
7768 a_chk->whoTo->ref_count--;
7769 SCTP_ZONE_FREE(sctppcbinfo.ipi_zone_chunk, a_chk);
7770 sctppcbinfo.ipi_count_chunk--;
7771 if ((int)sctppcbinfo.ipi_count_chunk < 0) {
7772 panic("Chunk count is negative");
7773 }
7774 sctppcbinfo.ipi_gencnt_chunk++;
7775 sctp_timer_stop(SCTP_TIMER_TYPE_RECV,
7776 stcb->sctp_ep, stcb, NULL);
7777 sctp_timer_start(SCTP_TIMER_TYPE_RECV,
7778 stcb->sctp_ep, stcb, NULL);
7779 return;
7780 }
7781 /* First count the number of gap ack blocks we need */
7782 if (asoc->highest_tsn_inside_map == asoc->cumulative_tsn) {
7783 /* We know if there are none above the cum-ack we
7784 * have everything with NO gaps
7785 */
7786 num_gap_blocks = 0;
7787 } else {
7788 /* Ok we must count how many gaps we
7789 * have.
7790 */
7791 num_gap_blocks = 0;
7792 if (asoc->highest_tsn_inside_map >= asoc->mapping_array_base_tsn) {
7793 maxi = (asoc->highest_tsn_inside_map - asoc->mapping_array_base_tsn);
7794 } else {
7795 maxi = (asoc->highest_tsn_inside_map + (MAX_TSN - asoc->mapping_array_base_tsn) + 1);
7796 }
7797 if (maxi > m_size) {
7798 /* impossible but who knows, someone is playing with us :> */
7799 #ifdef SCTP_DEBUG
7800 printf("GAK maxi:%d > m_size:%d came out higher than allowed htsn:%u base:%u cumack:%u\n",
7801 maxi,
7802 m_size,
7803 asoc->highest_tsn_inside_map,
7804 asoc->mapping_array_base_tsn,
7805 asoc->cumulative_tsn
7806 );
7807 #endif
7808 num_gap_blocks = 0;
7809 goto no_gaps_now;
7810 }
7811 if (asoc->cumulative_tsn >= asoc->mapping_array_base_tsn) {
7812 start = (asoc->cumulative_tsn - asoc->mapping_array_base_tsn);
7813 } else {
7814 /* Set it so we start at 0 */
7815 start = -1;
7816 }
7817 /* Ok move start up one to look at the NEXT past the cum-ack */
7818 start++;
7819 for (i = start; i <= maxi; i++) {
7820 if (seeing_ones) {
7821 /* while seeing ones I must
7822 * transition back to 0 before
7823 * finding the next gap and
7824 * counting the segment.
7825 */
7826 if (SCTP_IS_TSN_PRESENT(asoc->mapping_array, i) == 0) {
7827 seeing_ones = 0;
7828 }
7829 } else {
7830 if (SCTP_IS_TSN_PRESENT(asoc->mapping_array, i)) {
7831 seeing_ones = 1;
7832 num_gap_blocks++;
7833 }
7834 }
7835 }
7836 no_gaps_now:
7837 if (num_gap_blocks == 0) {
7838 /*
7839 * Traveled all of the bits and NO one,
7840 * must have reneged
7841 */
7842 if (compare_with_wrap(asoc->cumulative_tsn, asoc->highest_tsn_inside_map, MAX_TSN)) {
7843 asoc->highest_tsn_inside_map = asoc->cumulative_tsn;
7844 #ifdef SCTP_MAP_LOGGING
7845 sctp_log_map(0, 4, asoc->highest_tsn_inside_map, SCTP_MAP_SLIDE_RESULT);
7846 #endif
7847 }
7848 }
7849 }
7850
7851 /* Now calculate the space needed */
7852 space = (sizeof(struct sctp_sack_chunk) +
7853 (num_gap_blocks * sizeof(struct sctp_gap_ack_block)) +
7854 (asoc->numduptsns * sizeof(int32_t))
7855 );
7856 if (space > (asoc->smallest_mtu-SCTP_MAX_OVERHEAD)) {
7857 /* Reduce the size of the sack to fit */
7858 int calc, fit;
7859 calc = (asoc->smallest_mtu - SCTP_MAX_OVERHEAD);
7860 calc -= sizeof(struct sctp_gap_ack_block);
7861 fit = calc/sizeof(struct sctp_gap_ack_block);
7862 if (fit > (int)num_gap_blocks) {
7863 /* discard some dups */
7864 asoc->numduptsns = (fit - num_gap_blocks);
7865 } else {
7866 /* discard all dups and some gaps */
7867 num_gap_blocks = fit;
7868 asoc->numduptsns = 0;
7869 }
7870 /* recalc space */
7871 space = (sizeof(struct sctp_sack_chunk) +
7872 (num_gap_blocks * sizeof(struct sctp_gap_ack_block)) +
7873 (asoc->numduptsns * sizeof(int32_t))
7874 );
7875
7876 }
7877
7878 if ((space+SCTP_MIN_OVERHEAD) > MHLEN) {
7879 /* We need a cluster */
7880 MCLGET(a_chk->data, M_DONTWAIT);
7881 if ((a_chk->data->m_flags & M_EXT) != M_EXT) {
7882 /* can't get a cluster
7883 * give up and try later.
7884 */
7885 if (a_chk->data)
7886 sctp_m_freem(a_chk->data);
7887 a_chk->data = NULL;
7888 a_chk->whoTo->ref_count--;
7889 SCTP_ZONE_FREE(sctppcbinfo.ipi_zone_chunk, a_chk);
7890 sctppcbinfo.ipi_count_chunk--;
7891 if ((int)sctppcbinfo.ipi_count_chunk < 0) {
7892 panic("Chunk count is negative");
7893 }
7894 sctppcbinfo.ipi_gencnt_chunk++;
7895 sctp_timer_stop(SCTP_TIMER_TYPE_RECV,
7896 stcb->sctp_ep, stcb, NULL);
7897 sctp_timer_start(SCTP_TIMER_TYPE_RECV,
7898 stcb->sctp_ep, stcb, NULL);
7899 return;
7900 }
7901 }
7902
7903 /* ok, lets go through and fill it in */
7904 a_chk->data->m_data += SCTP_MIN_OVERHEAD;
7905 sack = mtod(a_chk->data, struct sctp_sack_chunk *);
7906 sack->ch.chunk_type = SCTP_SELECTIVE_ACK;
7907 sack->ch.chunk_flags = asoc->receiver_nonce_sum & SCTP_SACK_NONCE_SUM;
7908 sack->sack.cum_tsn_ack = htonl(asoc->cumulative_tsn);
7909 sack->sack.a_rwnd = htonl(asoc->my_rwnd);
7910 asoc->my_last_reported_rwnd = asoc->my_rwnd;
7911 sack->sack.num_gap_ack_blks = htons(num_gap_blocks);
7912 sack->sack.num_dup_tsns = htons(asoc->numduptsns);
7913
7914 a_chk->send_size = (sizeof(struct sctp_sack_chunk) +
7915 (num_gap_blocks * sizeof(struct sctp_gap_ack_block)) +
7916 (asoc->numduptsns * sizeof(int32_t)));
7917 a_chk->data->m_pkthdr.len = a_chk->data->m_len = a_chk->send_size;
7918 sack->ch.chunk_length = htons(a_chk->send_size);
7919
7920 gap_descriptor = (struct sctp_gap_ack_block *)((vaddr_t)sack + sizeof(struct sctp_sack_chunk));
7921 seeing_ones = 0;
7922 for (i = start; i <= maxi; i++) {
7923 if (num_gap_blocks == 0) {
7924 break;
7925 }
7926 if (seeing_ones) {
7927 /* while seeing Ones I must
7928 * transition back to 0 before
7929 * finding the next gap
7930 */
7931 if (SCTP_IS_TSN_PRESENT(asoc->mapping_array, i) == 0) {
7932 gap_descriptor->end = htons(((uint16_t)(i-start)));
7933 gap_descriptor++;
7934 seeing_ones = 0;
7935 num_gap_blocks--;
7936 }
7937 } else {
7938 if (SCTP_IS_TSN_PRESENT(asoc->mapping_array, i)) {
7939 gap_descriptor->start = htons(((uint16_t)(i+1-start)));
7940 /* advance struct to next pointer */
7941 seeing_ones = 1;
7942 }
7943 }
7944 }
7945 if (num_gap_blocks) {
7946 /* special case where the array is all 1's
7947 * to the end of the array.
7948 */
7949 gap_descriptor->end = htons(((uint16_t)((i-start))));
7950 gap_descriptor++;
7951 }
7952 /* now we must add any dups we are going to report. */
7953 if (asoc->numduptsns) {
7954 dup = (uint32_t *)gap_descriptor;
7955 for (i = 0; i < asoc->numduptsns; i++) {
7956 *dup = htonl(asoc->dup_tsns[i]);
7957 dup++;
7958 }
7959 asoc->numduptsns = 0;
7960 }
7961 /* now that the chunk is prepared queue it to the control
7962 * chunk queue.
7963 */
7964 TAILQ_INSERT_TAIL(&asoc->control_send_queue, a_chk, sctp_next);
7965 asoc->ctrl_queue_cnt++;
7966 sctp_pegs[SCTP_PEG_SACKS_SENT]++;
7967 return;
7968 }
7969
7970 void
7971 sctp_send_abort_tcb(struct sctp_tcb *stcb, struct mbuf *operr)
7972 {
7973 struct mbuf *m_abort;
7974 struct sctp_abort_msg *abort_m;
7975 int sz;
7976 abort_m = NULL;
7977 MGETHDR(m_abort, M_DONTWAIT, MT_HEADER);
7978 if (m_abort == NULL) {
7979 /* no mbuf's */
7980 return;
7981 }
7982 m_abort->m_data += SCTP_MIN_OVERHEAD;
7983 abort_m = mtod(m_abort, struct sctp_abort_msg *);
7984 m_abort->m_len = sizeof(struct sctp_abort_msg);
7985 m_abort->m_next = operr;
7986 sz = 0;
7987 if (operr) {
7988 struct mbuf *n;
7989 n = operr;
7990 while (n) {
7991 sz += n->m_len;
7992 n = n->m_next;
7993 }
7994 }
7995 abort_m->msg.ch.chunk_type = SCTP_ABORT_ASSOCIATION;
7996 abort_m->msg.ch.chunk_flags = 0;
7997 abort_m->msg.ch.chunk_length = htons(sizeof(struct sctp_abort_chunk) +
7998 sz);
7999 abort_m->sh.src_port = stcb->sctp_ep->sctp_lport;
8000 abort_m->sh.dest_port = stcb->rport;
8001 abort_m->sh.v_tag = htonl(stcb->asoc.peer_vtag);
8002 abort_m->sh.checksum = 0;
8003 m_abort->m_pkthdr.len = m_abort->m_len + sz;
8004 m_reset_rcvif(m_abort);
8005 sctp_lowlevel_chunk_output(stcb->sctp_ep, stcb,
8006 stcb->asoc.primary_destination,
8007 rtcache_getdst(&stcb->asoc.primary_destination->ro),
8008 m_abort, 1, 0, NULL, 0);
8009 }
8010
8011 int
8012 sctp_send_shutdown_complete(struct sctp_tcb *stcb,
8013 struct sctp_nets *net)
8014
8015 {
8016 /* formulate and SEND a SHUTDOWN-COMPLETE */
8017 struct mbuf *m_shutdown_comp;
8018 struct sctp_shutdown_complete_msg *comp_cp;
8019
8020 m_shutdown_comp = NULL;
8021 MGETHDR(m_shutdown_comp, M_DONTWAIT, MT_HEADER);
8022 if (m_shutdown_comp == NULL) {
8023 /* no mbuf's */
8024 return (-1);
8025 }
8026 m_shutdown_comp->m_data += sizeof(struct ip6_hdr);
8027 comp_cp = mtod(m_shutdown_comp, struct sctp_shutdown_complete_msg *);
8028 comp_cp->shut_cmp.ch.chunk_type = SCTP_SHUTDOWN_COMPLETE;
8029 comp_cp->shut_cmp.ch.chunk_flags = 0;
8030 comp_cp->shut_cmp.ch.chunk_length = htons(sizeof(struct sctp_shutdown_complete_chunk));
8031 comp_cp->sh.src_port = stcb->sctp_ep->sctp_lport;
8032 comp_cp->sh.dest_port = stcb->rport;
8033 comp_cp->sh.v_tag = htonl(stcb->asoc.peer_vtag);
8034 comp_cp->sh.checksum = 0;
8035
8036 m_shutdown_comp->m_pkthdr.len = m_shutdown_comp->m_len = sizeof(struct sctp_shutdown_complete_msg);
8037 m_reset_rcvif(m_shutdown_comp);
8038 sctp_lowlevel_chunk_output(stcb->sctp_ep, stcb, net,
8039 rtcache_getdst(&net->ro), m_shutdown_comp,
8040 1, 0, NULL, 0);
8041 if ((stcb->sctp_ep->sctp_flags & SCTP_PCB_FLAGS_TCPTYPE) ||
8042 (stcb->sctp_ep->sctp_flags & SCTP_PCB_FLAGS_IN_TCPPOOL)) {
8043 stcb->sctp_ep->sctp_flags &= ~SCTP_PCB_FLAGS_CONNECTED;
8044 stcb->sctp_ep->sctp_socket->so_snd.sb_cc = 0;
8045 soisdisconnected(stcb->sctp_ep->sctp_socket);
8046 }
8047 return (0);
8048 }
8049
8050 int
8051 sctp_send_shutdown_complete2(struct mbuf *m, int iphlen, struct sctphdr *sh)
8052 {
8053 /* formulate and SEND a SHUTDOWN-COMPLETE */
8054 struct mbuf *mout;
8055 struct ip *iph, *iph_out;
8056 struct ip6_hdr *ip6, *ip6_out;
8057 int offset_out;
8058 struct sctp_shutdown_complete_msg *comp_cp;
8059
8060 MGETHDR(mout, M_DONTWAIT, MT_HEADER);
8061 if (mout == NULL) {
8062 /* no mbuf's */
8063 return (-1);
8064 }
8065 iph = mtod(m, struct ip *);
8066 iph_out = NULL;
8067 ip6_out = NULL;
8068 offset_out = 0;
8069 if (iph->ip_v == IPVERSION) {
8070 mout->m_len = sizeof(struct ip) +
8071 sizeof(struct sctp_shutdown_complete_msg);
8072 mout->m_next = NULL;
8073 iph_out = mtod(mout, struct ip *);
8074
8075 /* Fill in the IP header for the ABORT */
8076 iph_out->ip_v = IPVERSION;
8077 iph_out->ip_hl = (sizeof(struct ip)/4);
8078 iph_out->ip_tos = (u_char)0;
8079 iph_out->ip_id = 0;
8080 iph_out->ip_off = 0;
8081 iph_out->ip_ttl = MAXTTL;
8082 iph_out->ip_p = IPPROTO_SCTP;
8083 iph_out->ip_src.s_addr = iph->ip_dst.s_addr;
8084 iph_out->ip_dst.s_addr = iph->ip_src.s_addr;
8085
8086 /* let IP layer calculate this */
8087 iph_out->ip_sum = 0;
8088 offset_out += sizeof(*iph_out);
8089 comp_cp = (struct sctp_shutdown_complete_msg *)(
8090 (vaddr_t)iph_out + offset_out);
8091 } else if (iph->ip_v == (IPV6_VERSION >> 4)) {
8092 ip6 = (struct ip6_hdr *)iph;
8093 mout->m_len = sizeof(struct ip6_hdr) +
8094 sizeof(struct sctp_shutdown_complete_msg);
8095 mout->m_next = NULL;
8096 ip6_out = mtod(mout, struct ip6_hdr *);
8097
8098 /* Fill in the IPv6 header for the ABORT */
8099 ip6_out->ip6_flow = ip6->ip6_flow;
8100 ip6_out->ip6_hlim = ip6_defhlim;
8101 ip6_out->ip6_nxt = IPPROTO_SCTP;
8102 ip6_out->ip6_src = ip6->ip6_dst;
8103 ip6_out->ip6_dst = ip6->ip6_src;
8104 ip6_out->ip6_plen = mout->m_len;
8105 offset_out += sizeof(*ip6_out);
8106 comp_cp = (struct sctp_shutdown_complete_msg *)(
8107 (vaddr_t)ip6_out + offset_out);
8108 } else {
8109 /* Currently not supported. */
8110 return (-1);
8111 }
8112
8113 /* Now copy in and fill in the ABORT tags etc. */
8114 comp_cp->sh.src_port = sh->dest_port;
8115 comp_cp->sh.dest_port = sh->src_port;
8116 comp_cp->sh.checksum = 0;
8117 comp_cp->sh.v_tag = sh->v_tag;
8118 comp_cp->shut_cmp.ch.chunk_flags = SCTP_HAD_NO_TCB;
8119 comp_cp->shut_cmp.ch.chunk_type = SCTP_SHUTDOWN_COMPLETE;
8120 comp_cp->shut_cmp.ch.chunk_length = htons(sizeof(struct sctp_shutdown_complete_chunk));
8121
8122 mout->m_pkthdr.len = mout->m_len;
8123 /* add checksum */
8124 if ((sctp_no_csum_on_loopback) && m_get_rcvif_NOMPSAFE(m) != NULL &&
8125 m_get_rcvif_NOMPSAFE(m)->if_type == IFT_LOOP) {
8126 comp_cp->sh.checksum = 0;
8127 } else {
8128 comp_cp->sh.checksum = sctp_calculate_sum(mout, NULL, offset_out);
8129 }
8130
8131 /* zap the rcvif, it should be null */
8132 m_reset_rcvif(mout);
8133 /* zap the stack pointer to the route */
8134 if (iph_out != NULL) {
8135 struct route ro;
8136
8137 memset(&ro, 0, sizeof ro);
8138 #ifdef SCTP_DEBUG
8139 if (sctp_debug_on & SCTP_DEBUG_OUTPUT2) {
8140 printf("sctp_shutdown_complete2 calling ip_output:\n");
8141 sctp_print_address_pkt(iph_out, &comp_cp->sh);
8142 }
8143 #endif
8144 /* set IPv4 length */
8145 iph_out->ip_len = htons(mout->m_pkthdr.len);
8146 /* out it goes */
8147 ip_output(mout, 0, &ro, IP_RAWOUTPUT, NULL, NULL);
8148 } else if (ip6_out != NULL) {
8149 struct route ro;
8150
8151 memset(&ro, 0, sizeof(ro));
8152 #ifdef SCTP_DEBUG
8153 if (sctp_debug_on & SCTP_DEBUG_OUTPUT2) {
8154 printf("sctp_shutdown_complete2 calling ip6_output:\n");
8155 sctp_print_address_pkt((struct ip *)ip6_out,
8156 &comp_cp->sh);
8157 }
8158 #endif
8159 ip6_output(mout, NULL, &ro, 0, NULL, NULL, NULL);
8160 }
8161 sctp_pegs[SCTP_DATAGRAMS_SENT]++;
8162 return (0);
8163 }
8164
8165 static struct sctp_nets *
8166 sctp_select_hb_destination(struct sctp_tcb *stcb, struct timeval *now)
8167 {
8168 struct sctp_nets *net, *hnet;
8169 int ms_goneby, highest_ms, state_overide=0;
8170
8171 SCTP_GETTIME_TIMEVAL(now);
8172 highest_ms = 0;
8173 hnet = NULL;
8174 TAILQ_FOREACH(net, &stcb->asoc.nets, sctp_next) {
8175 if (
8176 ((net->dest_state & SCTP_ADDR_NOHB) && ((net->dest_state & SCTP_ADDR_UNCONFIRMED) == 0)) ||
8177 (net->dest_state & SCTP_ADDR_OUT_OF_SCOPE)
8178 ) {
8179 /* Skip this guy from consideration if HB is off AND its confirmed*/
8180 #ifdef SCTP_DEBUG
8181 if (sctp_debug_on & SCTP_DEBUG_OUTPUT4) {
8182 printf("Skipping net:%p state:%d nohb/out-of-scope\n",
8183 net, net->dest_state);
8184 }
8185 #endif
8186 continue;
8187 }
8188 if (sctp_destination_is_reachable(stcb, (struct sockaddr *)&net->ro.ro_sa) == 0) {
8189 /* skip this dest net from consideration */
8190 #ifdef SCTP_DEBUG
8191 if (sctp_debug_on & SCTP_DEBUG_OUTPUT4) {
8192 printf("Skipping net:%p reachable NOT\n",
8193 net);
8194 }
8195 #endif
8196 continue;
8197 }
8198 if (net->last_sent_time.tv_sec) {
8199 /* Sent to so we subtract */
8200 ms_goneby = (now->tv_sec - net->last_sent_time.tv_sec) * 1000;
8201 } else
8202 /* Never been sent to */
8203 ms_goneby = 0x7fffffff;
8204 #ifdef SCTP_DEBUG
8205 if (sctp_debug_on & SCTP_DEBUG_OUTPUT4) {
8206 printf("net:%p ms_goneby:%d\n",
8207 net, ms_goneby);
8208 }
8209 #endif
8210 /* When the address state is unconfirmed but still considered reachable, we
8211 * HB at a higher rate. Once it goes confirmed OR reaches the "unreachable"
8212 * state, thenw we cut it back to HB at a more normal pace.
8213 */
8214 if ((net->dest_state & (SCTP_ADDR_UNCONFIRMED|SCTP_ADDR_NOT_REACHABLE)) == SCTP_ADDR_UNCONFIRMED) {
8215 state_overide = 1;
8216 } else {
8217 state_overide = 0;
8218 }
8219
8220 if ((((unsigned int)ms_goneby >= net->RTO) || (state_overide)) &&
8221 (ms_goneby > highest_ms)) {
8222 highest_ms = ms_goneby;
8223 hnet = net;
8224 #ifdef SCTP_DEBUG
8225 if (sctp_debug_on & SCTP_DEBUG_OUTPUT4) {
8226 printf("net:%p is the new high\n",
8227 net);
8228 }
8229 #endif
8230 }
8231 }
8232 if (hnet &&
8233 ((hnet->dest_state & (SCTP_ADDR_UNCONFIRMED|SCTP_ADDR_NOT_REACHABLE)) == SCTP_ADDR_UNCONFIRMED)) {
8234 state_overide = 1;
8235 } else {
8236 state_overide = 0;
8237 }
8238
8239 if (highest_ms && (((unsigned int)highest_ms >= hnet->RTO) || state_overide)) {
8240 /* Found the one with longest delay bounds
8241 * OR it is unconfirmed and still not marked
8242 * unreachable.
8243 */
8244 #ifdef SCTP_DEBUG
8245 if (sctp_debug_on & SCTP_DEBUG_OUTPUT4) {
8246 printf("net:%p is the hb winner -",
8247 hnet);
8248 if (hnet)
8249 sctp_print_address((struct sockaddr *)&hnet->ro.ro_sa);
8250 else
8251 printf(" none\n");
8252 }
8253 #endif
8254 /* update the timer now */
8255 hnet->last_sent_time = *now;
8256 return (hnet);
8257 }
8258 /* Nothing to HB */
8259 return (NULL);
8260 }
8261
8262 int
8263 sctp_send_hb(struct sctp_tcb *stcb, int user_req, struct sctp_nets *u_net)
8264 {
8265 struct sctp_tmit_chunk *chk;
8266 struct sctp_nets *net;
8267 struct sctp_heartbeat_chunk *hb;
8268 struct timeval now;
8269 struct sockaddr_in *sin;
8270 struct sockaddr_in6 *sin6;
8271
8272 if (user_req == 0) {
8273 net = sctp_select_hb_destination(stcb, &now);
8274 if (net == NULL) {
8275 /* All our busy none to send to, just
8276 * start the timer again.
8277 */
8278 if (stcb->asoc.state == 0) {
8279 return (0);
8280 }
8281 sctp_timer_start(SCTP_TIMER_TYPE_HEARTBEAT,
8282 stcb->sctp_ep,
8283 stcb,
8284 net);
8285 return (0);
8286 }
8287 #ifndef SCTP_USE_ALLMAN_BURST
8288 else {
8289 /* found one idle.. decay cwnd on this one
8290 * by 1/2 if none outstanding.
8291 */
8292
8293 if (net->flight_size == 0) {
8294 net->cwnd /= 2;
8295 if (net->addr_is_local) {
8296 if (net->cwnd < (net->mtu *4)) {
8297 net->cwnd = net->mtu * 4;
8298 }
8299 } else {
8300 if (net->cwnd < (net->mtu * 2)) {
8301 net->cwnd = net->mtu * 2;
8302 }
8303 }
8304
8305 }
8306
8307 }
8308 #endif
8309 } else {
8310 net = u_net;
8311 if (net == NULL) {
8312 return (0);
8313 }
8314 SCTP_GETTIME_TIMEVAL(&now);
8315 }
8316 sin = (struct sockaddr_in *)&net->ro.ro_sa;
8317 if (sin->sin_family != AF_INET) {
8318 if (sin->sin_family != AF_INET6) {
8319 /* huh */
8320 return (0);
8321 }
8322 }
8323 chk = (struct sctp_tmit_chunk *)SCTP_ZONE_GET(sctppcbinfo.ipi_zone_chunk);
8324 if (chk == NULL) {
8325 #ifdef SCTP_DEBUG
8326 if (sctp_debug_on & SCTP_DEBUG_OUTPUT4) {
8327 printf("Gak, can't get a chunk for hb\n");
8328 }
8329 #endif
8330 return (0);
8331 }
8332 sctppcbinfo.ipi_gencnt_chunk++;
8333 sctppcbinfo.ipi_count_chunk++;
8334 chk->rec.chunk_id = SCTP_HEARTBEAT_REQUEST;
8335 chk->asoc = &stcb->asoc;
8336 chk->send_size = sizeof(struct sctp_heartbeat_chunk);
8337 MGETHDR(chk->data, M_DONTWAIT, MT_DATA);
8338 if (chk->data == NULL) {
8339 SCTP_ZONE_FREE(sctppcbinfo.ipi_zone_chunk, chk);
8340 sctppcbinfo.ipi_count_chunk--;
8341 if ((int)sctppcbinfo.ipi_count_chunk < 0) {
8342 panic("Chunk count is negative");
8343 }
8344 sctppcbinfo.ipi_gencnt_chunk++;
8345 return (0);
8346 }
8347 chk->data->m_data += SCTP_MIN_OVERHEAD;
8348 chk->data->m_pkthdr.len = chk->data->m_len = chk->send_size;
8349 chk->sent = SCTP_DATAGRAM_UNSENT;
8350 chk->snd_count = 0;
8351 chk->whoTo = net;
8352 chk->whoTo->ref_count++;
8353 /* Now we have a mbuf that we can fill in with the details */
8354 hb = mtod(chk->data, struct sctp_heartbeat_chunk *);
8355
8356 /* fill out chunk header */
8357 hb->ch.chunk_type = SCTP_HEARTBEAT_REQUEST;
8358 hb->ch.chunk_flags = 0;
8359 hb->ch.chunk_length = htons(chk->send_size);
8360 /* Fill out hb parameter */
8361 hb->heartbeat.hb_info.ph.param_type = htons(SCTP_HEARTBEAT_INFO);
8362 hb->heartbeat.hb_info.ph.param_length = htons(sizeof(struct sctp_heartbeat_info_param));
8363 hb->heartbeat.hb_info.time_value_1 = now.tv_sec;
8364 hb->heartbeat.hb_info.time_value_2 = now.tv_usec;
8365 /* Did our user request this one, put it in */
8366 hb->heartbeat.hb_info.user_req = user_req;
8367 hb->heartbeat.hb_info.addr_family = sin->sin_family;
8368 hb->heartbeat.hb_info.addr_len = sin->sin_len;
8369 if (net->dest_state & SCTP_ADDR_UNCONFIRMED) {
8370 /* we only take from the entropy pool if the address is
8371 * not confirmed.
8372 */
8373 net->heartbeat_random1 = hb->heartbeat.hb_info.random_value1 = sctp_select_initial_TSN(&stcb->sctp_ep->sctp_ep);
8374 net->heartbeat_random2 = hb->heartbeat.hb_info.random_value2 = sctp_select_initial_TSN(&stcb->sctp_ep->sctp_ep);
8375 } else {
8376 net->heartbeat_random1 = hb->heartbeat.hb_info.random_value1 = 0;
8377 net->heartbeat_random2 = hb->heartbeat.hb_info.random_value2 = 0;
8378 }
8379 if (sin->sin_family == AF_INET) {
8380 memcpy(hb->heartbeat.hb_info.address, &sin->sin_addr, sizeof(sin->sin_addr));
8381 } else if (sin->sin_family == AF_INET6) {
8382 /* We leave the scope the way it is in our lookup table. */
8383 sin6 = (struct sockaddr_in6 *)&net->ro.ro_sa;
8384 memcpy(hb->heartbeat.hb_info.address, &sin6->sin6_addr, sizeof(sin6->sin6_addr));
8385 } else {
8386 /* huh compiler bug */
8387 #ifdef SCTP_DEBUG
8388 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
8389 printf("Compiler bug bleeds a mbuf and a chunk\n");
8390 }
8391 #endif
8392 return (0);
8393 }
8394 /* ok we have a destination that needs a beat */
8395 /* lets do the theshold management Qiaobing style */
8396 if (user_req == 0) {
8397 if (sctp_threshold_management(stcb->sctp_ep, stcb, net,
8398 stcb->asoc.max_send_times)) {
8399 /* we have lost the association, in a way this
8400 * is quite bad since we really are one less time
8401 * since we really did not send yet. This is the
8402 * down side to the Q's style as defined in the RFC
8403 * and not my alternate style defined in the RFC.
8404 */
8405 if (chk->data != NULL) {
8406 sctp_m_freem(chk->data);
8407 chk->data = NULL;
8408 }
8409 SCTP_ZONE_FREE(sctppcbinfo.ipi_zone_chunk, chk);
8410 sctppcbinfo.ipi_count_chunk--;
8411 if ((int)sctppcbinfo.ipi_count_chunk < 0) {
8412 panic("Chunk count is negative");
8413 }
8414 sctppcbinfo.ipi_gencnt_chunk++;
8415 return (-1);
8416 }
8417 }
8418 net->hb_responded = 0;
8419 #ifdef SCTP_DEBUG
8420 if (sctp_debug_on & SCTP_DEBUG_OUTPUT4) {
8421 printf("Inserting chunk for HB\n");
8422 }
8423 #endif
8424 TAILQ_INSERT_TAIL(&stcb->asoc.control_send_queue, chk, sctp_next);
8425 stcb->asoc.ctrl_queue_cnt++;
8426 sctp_pegs[SCTP_HB_SENT]++;
8427 /*
8428 * Call directly med level routine to put out the chunk. It will
8429 * always tumble out control chunks aka HB but it may even tumble
8430 * out data too.
8431 */
8432 if (user_req == 0) {
8433 /* Ok now lets start the HB timer if it is NOT a user req */
8434 sctp_timer_start(SCTP_TIMER_TYPE_HEARTBEAT, stcb->sctp_ep,
8435 stcb, net);
8436 }
8437 return (1);
8438 }
8439
8440 void
8441 sctp_send_ecn_echo(struct sctp_tcb *stcb, struct sctp_nets *net,
8442 uint32_t high_tsn)
8443 {
8444 struct sctp_association *asoc;
8445 struct sctp_ecne_chunk *ecne;
8446 struct sctp_tmit_chunk *chk;
8447 asoc = &stcb->asoc;
8448 TAILQ_FOREACH(chk, &asoc->control_send_queue, sctp_next) {
8449 if (chk->rec.chunk_id == SCTP_ECN_ECHO) {
8450 /* found a previous ECN_ECHO update it if needed */
8451 ecne = mtod(chk->data, struct sctp_ecne_chunk *);
8452 ecne->tsn = htonl(high_tsn);
8453 return;
8454 }
8455 }
8456 /* nope could not find one to update so we must build one */
8457 chk = (struct sctp_tmit_chunk *)SCTP_ZONE_GET(sctppcbinfo.ipi_zone_chunk);
8458 if (chk == NULL) {
8459 return;
8460 }
8461 sctp_pegs[SCTP_ECNE_SENT]++;
8462 sctppcbinfo.ipi_count_chunk++;
8463 sctppcbinfo.ipi_gencnt_chunk++;
8464 chk->rec.chunk_id = SCTP_ECN_ECHO;
8465 chk->asoc = &stcb->asoc;
8466 chk->send_size = sizeof(struct sctp_ecne_chunk);
8467 MGETHDR(chk->data, M_DONTWAIT, MT_DATA);
8468 if (chk->data == NULL) {
8469 SCTP_ZONE_FREE(sctppcbinfo.ipi_zone_chunk, chk);
8470 sctppcbinfo.ipi_count_chunk--;
8471 if ((int)sctppcbinfo.ipi_count_chunk < 0) {
8472 panic("Chunk count is negative");
8473 }
8474 sctppcbinfo.ipi_gencnt_chunk++;
8475 return;
8476 }
8477 chk->data->m_data += SCTP_MIN_OVERHEAD;
8478 chk->data->m_pkthdr.len = chk->data->m_len = chk->send_size;
8479 chk->sent = SCTP_DATAGRAM_UNSENT;
8480 chk->snd_count = 0;
8481 chk->whoTo = net;
8482 chk->whoTo->ref_count++;
8483 ecne = mtod(chk->data, struct sctp_ecne_chunk *);
8484 ecne->ch.chunk_type = SCTP_ECN_ECHO;
8485 ecne->ch.chunk_flags = 0;
8486 ecne->ch.chunk_length = htons(sizeof(struct sctp_ecne_chunk));
8487 ecne->tsn = htonl(high_tsn);
8488 TAILQ_INSERT_TAIL(&stcb->asoc.control_send_queue, chk, sctp_next);
8489 asoc->ctrl_queue_cnt++;
8490 }
8491
8492 void
8493 sctp_send_packet_dropped(struct sctp_tcb *stcb, struct sctp_nets *net,
8494 struct mbuf *m, int iphlen, int bad_crc)
8495 {
8496 struct sctp_association *asoc;
8497 struct sctp_pktdrop_chunk *drp;
8498 struct sctp_tmit_chunk *chk;
8499 uint8_t *datap;
8500 int len;
8501 unsigned int small_one;
8502 struct ip *iph;
8503
8504 long spc;
8505 asoc = &stcb->asoc;
8506 if (asoc->peer_supports_pktdrop == 0) {
8507 /* peer must declare support before I
8508 * send one.
8509 */
8510 return;
8511 }
8512 chk = (struct sctp_tmit_chunk *)SCTP_ZONE_GET(sctppcbinfo.ipi_zone_chunk);
8513 if (chk == NULL) {
8514 return;
8515 }
8516 sctppcbinfo.ipi_count_chunk++;
8517 sctppcbinfo.ipi_gencnt_chunk++;
8518
8519 iph = mtod(m, struct ip *);
8520 if (iph == NULL) {
8521 return;
8522 }
8523 if (iph->ip_v == IPVERSION) {
8524 /* IPv4 */
8525 #if defined(__FreeBSD__)
8526 len = chk->send_size = iph->ip_len;
8527 #else
8528 len = chk->send_size = (iph->ip_len - iphlen);
8529 #endif
8530 } else {
8531 struct ip6_hdr *ip6h;
8532 /* IPv6 */
8533 ip6h = mtod(m, struct ip6_hdr *);
8534 len = chk->send_size = htons(ip6h->ip6_plen);
8535 }
8536 if ((len+iphlen) > m->m_pkthdr.len) {
8537 /* huh */
8538 chk->send_size = len = m->m_pkthdr.len - iphlen;
8539 }
8540 chk->asoc = &stcb->asoc;
8541 MGETHDR(chk->data, M_DONTWAIT, MT_DATA);
8542 if (chk->data == NULL) {
8543 jump_out:
8544 SCTP_ZONE_FREE(sctppcbinfo.ipi_zone_chunk, chk);
8545 sctppcbinfo.ipi_count_chunk--;
8546 if ((int)sctppcbinfo.ipi_count_chunk < 0) {
8547 panic("Chunk count is negative");
8548 }
8549 sctppcbinfo.ipi_gencnt_chunk++;
8550 return;
8551 }
8552 if ((chk->send_size+sizeof(struct sctp_pktdrop_chunk)+SCTP_MIN_OVERHEAD) > MHLEN) {
8553 MCLGET(chk->data, M_DONTWAIT);
8554 if ((chk->data->m_flags & M_EXT) == 0) {
8555 /* Give up */
8556 sctp_m_freem(chk->data);
8557 chk->data = NULL;
8558 goto jump_out;
8559 }
8560 }
8561 chk->data->m_data += SCTP_MIN_OVERHEAD;
8562 drp = mtod(chk->data, struct sctp_pktdrop_chunk *);
8563 if (drp == NULL) {
8564 sctp_m_freem(chk->data);
8565 chk->data = NULL;
8566 goto jump_out;
8567 }
8568 small_one = asoc->smallest_mtu;
8569 if (small_one > MCLBYTES) {
8570 /* Only one cluster worth of data MAX */
8571 small_one = MCLBYTES;
8572 }
8573 chk->book_size = (chk->send_size + sizeof(struct sctp_pktdrop_chunk) +
8574 sizeof(struct sctphdr) + SCTP_MED_OVERHEAD);
8575 if (chk->book_size > small_one) {
8576 drp->ch.chunk_flags = SCTP_PACKET_TRUNCATED;
8577 drp->trunc_len = htons(chk->send_size);
8578 chk->send_size = small_one - (SCTP_MED_OVERHEAD +
8579 sizeof(struct sctp_pktdrop_chunk) +
8580 sizeof(struct sctphdr));
8581 len = chk->send_size;
8582 } else {
8583 /* no truncation needed */
8584 drp->ch.chunk_flags = 0;
8585 drp->trunc_len = htons(0);
8586 }
8587 if (bad_crc) {
8588 drp->ch.chunk_flags |= SCTP_BADCRC;
8589 }
8590 chk->send_size += sizeof(struct sctp_pktdrop_chunk);
8591 chk->data->m_pkthdr.len = chk->data->m_len = chk->send_size;
8592 chk->sent = SCTP_DATAGRAM_UNSENT;
8593 chk->snd_count = 0;
8594 if (net) {
8595 /* we should hit here */
8596 chk->whoTo = net;
8597 } else {
8598 chk->whoTo = asoc->primary_destination;
8599 }
8600 chk->whoTo->ref_count++;
8601 chk->rec.chunk_id = SCTP_PACKET_DROPPED;
8602 drp->ch.chunk_type = SCTP_PACKET_DROPPED;
8603 drp->ch.chunk_length = htons(chk->send_size);
8604 spc = stcb->sctp_socket->so_rcv.sb_hiwat;
8605 if (spc < 0) {
8606 spc = 0;
8607 }
8608 drp->bottle_bw = htonl(spc);
8609 drp->current_onq = htonl(asoc->size_on_delivery_queue +
8610 asoc->size_on_reasm_queue +
8611 asoc->size_on_all_streams +
8612 asoc->my_rwnd_control_len +
8613 stcb->sctp_socket->so_rcv.sb_cc);
8614 drp->reserved = 0;
8615 datap = drp->data;
8616 m_copydata(m, iphlen, len, datap);
8617 TAILQ_INSERT_TAIL(&stcb->asoc.control_send_queue, chk, sctp_next);
8618 asoc->ctrl_queue_cnt++;
8619 }
8620
8621 void
8622 sctp_send_cwr(struct sctp_tcb *stcb, struct sctp_nets *net, uint32_t high_tsn)
8623 {
8624 struct sctp_association *asoc;
8625 struct sctp_cwr_chunk *cwr;
8626 struct sctp_tmit_chunk *chk;
8627
8628 asoc = &stcb->asoc;
8629 TAILQ_FOREACH(chk, &asoc->control_send_queue, sctp_next) {
8630 if (chk->rec.chunk_id == SCTP_ECN_CWR) {
8631 /* found a previous ECN_CWR update it if needed */
8632 cwr = mtod(chk->data, struct sctp_cwr_chunk *);
8633 if (compare_with_wrap(high_tsn, ntohl(cwr->tsn),
8634 MAX_TSN)) {
8635 cwr->tsn = htonl(high_tsn);
8636 }
8637 return;
8638 }
8639 }
8640 /* nope could not find one to update so we must build one */
8641 chk = (struct sctp_tmit_chunk *)SCTP_ZONE_GET(sctppcbinfo.ipi_zone_chunk);
8642 if (chk == NULL) {
8643 return;
8644 }
8645 sctppcbinfo.ipi_count_chunk++;
8646 sctppcbinfo.ipi_gencnt_chunk++;
8647 chk->rec.chunk_id = SCTP_ECN_CWR;
8648 chk->asoc = &stcb->asoc;
8649 chk->send_size = sizeof(struct sctp_cwr_chunk);
8650 MGETHDR(chk->data, M_DONTWAIT, MT_DATA);
8651 if (chk->data == NULL) {
8652 SCTP_ZONE_FREE(sctppcbinfo.ipi_zone_chunk, chk);
8653 sctppcbinfo.ipi_count_chunk--;
8654 if ((int)sctppcbinfo.ipi_count_chunk < 0) {
8655 panic("Chunk count is negative");
8656 }
8657 sctppcbinfo.ipi_gencnt_chunk++;
8658 return;
8659 }
8660 chk->data->m_data += SCTP_MIN_OVERHEAD;
8661 chk->data->m_pkthdr.len = chk->data->m_len = chk->send_size;
8662 chk->sent = SCTP_DATAGRAM_UNSENT;
8663 chk->snd_count = 0;
8664 chk->whoTo = net;
8665 chk->whoTo->ref_count++;
8666 cwr = mtod(chk->data, struct sctp_cwr_chunk *);
8667 cwr->ch.chunk_type = SCTP_ECN_CWR;
8668 cwr->ch.chunk_flags = 0;
8669 cwr->ch.chunk_length = htons(sizeof(struct sctp_cwr_chunk));
8670 cwr->tsn = htonl(high_tsn);
8671 TAILQ_INSERT_TAIL(&stcb->asoc.control_send_queue, chk, sctp_next);
8672 asoc->ctrl_queue_cnt++;
8673 }
8674 static void
8675 sctp_reset_the_streams(struct sctp_tcb *stcb,
8676 struct sctp_stream_reset_request *req, int number_entries, uint16_t *list)
8677 {
8678 int i;
8679
8680 if (req->reset_flags & SCTP_RESET_ALL) {
8681 for (i=0; i<stcb->asoc.streamoutcnt; i++) {
8682 stcb->asoc.strmout[i].next_sequence_sent = 0;
8683 }
8684 } else if (number_entries) {
8685 for (i=0; i<number_entries; i++) {
8686 if (list[i] >= stcb->asoc.streamoutcnt) {
8687 /* no such stream */
8688 continue;
8689 }
8690 stcb->asoc.strmout[(list[i])].next_sequence_sent = 0;
8691 }
8692 }
8693 sctp_ulp_notify(SCTP_NOTIFY_STR_RESET_SEND, stcb, number_entries, (void *)list);
8694 }
8695
8696 void
8697 sctp_send_str_reset_ack(struct sctp_tcb *stcb,
8698 struct sctp_stream_reset_request *req)
8699 {
8700 struct sctp_association *asoc;
8701 struct sctp_stream_reset_resp *strack;
8702 struct sctp_tmit_chunk *chk;
8703 uint32_t seq;
8704 int number_entries, i;
8705 uint8_t two_way=0, not_peer=0;
8706 uint16_t *list=NULL;
8707
8708 asoc = &stcb->asoc;
8709 if (req->reset_flags & SCTP_RESET_ALL)
8710 number_entries = 0;
8711 else
8712 number_entries = (ntohs(req->ph.param_length) - sizeof(struct sctp_stream_reset_request)) / sizeof(uint16_t);
8713
8714 chk = (struct sctp_tmit_chunk *)SCTP_ZONE_GET(sctppcbinfo.ipi_zone_chunk);
8715 if (chk == NULL) {
8716 return;
8717 }
8718 sctppcbinfo.ipi_count_chunk++;
8719 sctppcbinfo.ipi_gencnt_chunk++;
8720 chk->rec.chunk_id = SCTP_STREAM_RESET;
8721 chk->asoc = &stcb->asoc;
8722 chk->send_size = sizeof(struct sctp_stream_reset_resp) + (number_entries * sizeof(uint16_t));
8723 MGETHDR(chk->data, M_DONTWAIT, MT_DATA);
8724 if (chk->data == NULL) {
8725 strresp_jump_out:
8726 SCTP_ZONE_FREE(sctppcbinfo.ipi_zone_chunk, chk);
8727 sctppcbinfo.ipi_count_chunk--;
8728 if ((int)sctppcbinfo.ipi_count_chunk < 0) {
8729 panic("Chunk count is negative");
8730 }
8731 sctppcbinfo.ipi_gencnt_chunk++;
8732 return;
8733 }
8734 chk->data->m_data += SCTP_MIN_OVERHEAD;
8735 chk->data->m_pkthdr.len = chk->data->m_len = SCTP_SIZE32(chk->send_size);
8736 if (M_TRAILINGSPACE(chk->data) < (int)SCTP_SIZE32(chk->send_size)) {
8737 MCLGET(chk->data, M_DONTWAIT);
8738 if ((chk->data->m_flags & M_EXT) == 0) {
8739 /* Give up */
8740 sctp_m_freem(chk->data);
8741 chk->data = NULL;
8742 goto strresp_jump_out;
8743 }
8744 chk->data->m_data += SCTP_MIN_OVERHEAD;
8745 }
8746 if (M_TRAILINGSPACE(chk->data) < (int)SCTP_SIZE32(chk->send_size)) {
8747 /* can't do it, no room */
8748 /* Give up */
8749 sctp_m_freem(chk->data);
8750 chk->data = NULL;
8751 goto strresp_jump_out;
8752
8753 }
8754 chk->sent = SCTP_DATAGRAM_UNSENT;
8755 chk->snd_count = 0;
8756 chk->whoTo = asoc->primary_destination;
8757 chk->whoTo->ref_count++;
8758 strack = mtod(chk->data, struct sctp_stream_reset_resp *);
8759
8760 strack->ch.chunk_type = SCTP_STREAM_RESET;
8761 strack->ch.chunk_flags = 0;
8762 strack->ch.chunk_length = htons(chk->send_size);
8763
8764 memset(strack->sr_resp.reset_pad, 0, sizeof(strack->sr_resp.reset_pad));
8765
8766 strack->sr_resp.ph.param_type = ntohs(SCTP_STR_RESET_RESPONSE);
8767 strack->sr_resp.ph.param_length = htons((chk->send_size - sizeof(struct sctp_chunkhdr)));
8768
8769
8770
8771 if (chk->send_size % 4) {
8772 /* need a padding for the end */
8773 int pad;
8774 uint8_t *end;
8775 end = (uint8_t *)((vaddr_t)strack + chk->send_size);
8776 pad = chk->send_size % 4;
8777 for (i = 0; i < pad; i++) {
8778 end[i] = 0;
8779 }
8780 chk->send_size += pad;
8781 }
8782
8783 /* actual response */
8784 if (req->reset_flags & SCTP_RESET_YOUR) {
8785 strack->sr_resp.reset_flags = SCTP_RESET_PERFORMED;
8786 } else {
8787 strack->sr_resp.reset_flags = 0;
8788 }
8789
8790 /* copied from reset request */
8791 strack->sr_resp.reset_req_seq_resp = req->reset_req_seq;
8792 seq = ntohl(req->reset_req_seq);
8793
8794 list = req->list_of_streams;
8795 /* copy the un-converted network byte order streams */
8796 for (i=0; i<number_entries; i++) {
8797 strack->sr_resp.list_of_streams[i] = list[i];
8798 }
8799 if (asoc->str_reset_seq_in == seq) {
8800 /* is it the next expected? */
8801 asoc->str_reset_seq_in++;
8802 strack->sr_resp.reset_at_tsn = htonl(asoc->sending_seq);
8803 asoc->str_reset_sending_seq = asoc->sending_seq;
8804 if (number_entries) {
8805 uint16_t temp;
8806 /* convert them to host byte order */
8807 for (i=0 ; i<number_entries; i++) {
8808 temp = ntohs(list[i]);
8809 list[i] = temp;
8810 }
8811 }
8812 if (req->reset_flags & SCTP_RESET_YOUR) {
8813 /* reset my outbound streams */
8814 sctp_reset_the_streams(stcb, req , number_entries, list);
8815 }
8816 if (req->reset_flags & SCTP_RECIPRICAL) {
8817 /* reset peer too */
8818 sctp_send_str_reset_req(stcb, number_entries, list, two_way, not_peer);
8819 }
8820
8821 } else {
8822 /* no its a retran so I must just ack and do nothing */
8823 strack->sr_resp.reset_at_tsn = htonl(asoc->str_reset_sending_seq);
8824 }
8825 strack->sr_resp.cumulative_tsn = htonl(asoc->cumulative_tsn);
8826 TAILQ_INSERT_TAIL(&asoc->control_send_queue,
8827 chk,
8828 sctp_next);
8829 asoc->ctrl_queue_cnt++;
8830 }
8831
8832
8833 void
8834 sctp_send_str_reset_req(struct sctp_tcb *stcb,
8835 int number_entrys, uint16_t *list, uint8_t two_way, uint8_t not_peer)
8836 {
8837 /* Send a stream reset request. The number_entrys may be 0 and list NULL
8838 * if the request is to reset all streams. If two_way is true then we
8839 * not only request a RESET of the received streams but we also
8840 * request the peer to send a reset req to us too.
8841 * Flag combinations in table:
8842 *
8843 * two_way | not_peer | = | Flags
8844 * ------------------------------
8845 * 0 | 0 | = | SCTP_RESET_YOUR (just the peer)
8846 * 1 | 0 | = | SCTP_RESET_YOUR | SCTP_RECIPRICAL (both sides)
8847 * 0 | 1 | = | Not a Valid Request (not anyone)
8848 * 1 | 1 | = | SCTP_RESET_RECIPRICAL (Just local host)
8849 */
8850 struct sctp_association *asoc;
8851 struct sctp_stream_reset_req *strreq;
8852 struct sctp_tmit_chunk *chk;
8853
8854
8855 asoc = &stcb->asoc;
8856 if (asoc->stream_reset_outstanding) {
8857 /* Already one pending, must get ACK back
8858 * to clear the flag.
8859 */
8860 return;
8861 }
8862
8863 if ((two_way == 0) && (not_peer == 1)) {
8864 /* not a valid request */
8865 return;
8866 }
8867
8868 chk = (struct sctp_tmit_chunk *)SCTP_ZONE_GET(sctppcbinfo.ipi_zone_chunk);
8869 if (chk == NULL) {
8870 return;
8871 }
8872 sctppcbinfo.ipi_count_chunk++;
8873 sctppcbinfo.ipi_gencnt_chunk++;
8874 chk->rec.chunk_id = SCTP_STREAM_RESET;
8875 chk->asoc = &stcb->asoc;
8876 chk->send_size = sizeof(struct sctp_stream_reset_req) + (number_entrys * sizeof(uint16_t));
8877 MGETHDR(chk->data, M_DONTWAIT, MT_DATA);
8878 if (chk->data == NULL) {
8879 strreq_jump_out:
8880 SCTP_ZONE_FREE(sctppcbinfo.ipi_zone_chunk, chk);
8881 sctppcbinfo.ipi_count_chunk--;
8882 if ((int)sctppcbinfo.ipi_count_chunk < 0) {
8883 panic("Chunk count is negative");
8884 }
8885 sctppcbinfo.ipi_gencnt_chunk++;
8886 return;
8887 }
8888 chk->data->m_data += SCTP_MIN_OVERHEAD;
8889 chk->data->m_pkthdr.len = chk->data->m_len = SCTP_SIZE32(chk->send_size);
8890 if (M_TRAILINGSPACE(chk->data) < (int)SCTP_SIZE32(chk->send_size)) {
8891 MCLGET(chk->data, M_DONTWAIT);
8892 if ((chk->data->m_flags & M_EXT) == 0) {
8893 /* Give up */
8894 sctp_m_freem(chk->data);
8895 chk->data = NULL;
8896 goto strreq_jump_out;
8897 }
8898 chk->data->m_data += SCTP_MIN_OVERHEAD;
8899 }
8900 if (M_TRAILINGSPACE(chk->data) < (int)SCTP_SIZE32(chk->send_size)) {
8901 /* can't do it, no room */
8902 /* Give up */
8903 sctp_m_freem(chk->data);
8904 chk->data = NULL;
8905 goto strreq_jump_out;
8906 }
8907 chk->sent = SCTP_DATAGRAM_UNSENT;
8908 chk->snd_count = 0;
8909 chk->whoTo = asoc->primary_destination;
8910 chk->whoTo->ref_count++;
8911
8912 strreq = mtod(chk->data, struct sctp_stream_reset_req *);
8913 strreq->ch.chunk_type = SCTP_STREAM_RESET;
8914 strreq->ch.chunk_flags = 0;
8915 strreq->ch.chunk_length = htons(chk->send_size);
8916
8917 strreq->sr_req.ph.param_type = ntohs(SCTP_STR_RESET_REQUEST);
8918 strreq->sr_req.ph.param_length = htons((chk->send_size - sizeof(struct sctp_chunkhdr)));
8919
8920 if (chk->send_size % 4) {
8921 /* need a padding for the end */
8922 int pad, i;
8923 uint8_t *end;
8924 end = (uint8_t *)((vaddr_t)strreq + chk->send_size);
8925 pad = chk->send_size % 4;
8926 for (i=0; i<pad; i++) {
8927 end[i] = 0;
8928 }
8929 chk->send_size += pad;
8930 }
8931
8932 strreq->sr_req.reset_flags = 0;
8933 if (number_entrys == 0) {
8934 strreq->sr_req.reset_flags |= SCTP_RESET_ALL;
8935 }
8936 if (two_way == 0) {
8937 strreq->sr_req.reset_flags |= SCTP_RESET_YOUR;
8938 } else {
8939 if (not_peer == 0) {
8940 strreq->sr_req.reset_flags |= SCTP_RECIPRICAL | SCTP_RESET_YOUR;
8941 } else {
8942 strreq->sr_req.reset_flags |= SCTP_RECIPRICAL;
8943 }
8944 }
8945 memset(strreq->sr_req.reset_pad, 0, sizeof(strreq->sr_req.reset_pad));
8946 strreq->sr_req.reset_req_seq = htonl(asoc->str_reset_seq_out);
8947 if (number_entrys) {
8948 /* populate the specific entry's */
8949 int i;
8950 for (i=0; i < number_entrys; i++) {
8951 strreq->sr_req.list_of_streams[i] = htons(list[i]);
8952 }
8953 }
8954 TAILQ_INSERT_TAIL(&asoc->control_send_queue,
8955 chk,
8956 sctp_next);
8957 asoc->ctrl_queue_cnt++;
8958 sctp_timer_start(SCTP_TIMER_TYPE_STRRESET, stcb->sctp_ep, stcb, chk->whoTo);
8959 asoc->stream_reset_outstanding = 1;
8960 }
8961
8962 void
8963 sctp_send_abort(struct mbuf *m, int iphlen, struct sctphdr *sh, uint32_t vtag,
8964 struct mbuf *err_cause)
8965 {
8966 /*
8967 * Formulate the abort message, and send it back down.
8968 */
8969 struct mbuf *mout;
8970 struct sctp_abort_msg *abm;
8971 struct ip *iph, *iph_out;
8972 struct ip6_hdr *ip6, *ip6_out;
8973 int iphlen_out;
8974
8975 /* don't respond to ABORT with ABORT */
8976 if (sctp_is_there_an_abort_here(m, iphlen, &vtag)) {
8977 if (err_cause)
8978 sctp_m_freem(err_cause);
8979 return;
8980 }
8981 MGETHDR(mout, M_DONTWAIT, MT_HEADER);
8982 if (mout == NULL) {
8983 if (err_cause)
8984 sctp_m_freem(err_cause);
8985 return;
8986 }
8987 iph = mtod(m, struct ip *);
8988 iph_out = NULL;
8989 ip6_out = NULL;
8990 if (iph->ip_v == IPVERSION) {
8991 iph_out = mtod(mout, struct ip *);
8992 mout->m_len = sizeof(*iph_out) + sizeof(*abm);
8993 mout->m_next = err_cause;
8994
8995 /* Fill in the IP header for the ABORT */
8996 iph_out->ip_v = IPVERSION;
8997 iph_out->ip_hl = (sizeof(struct ip) / 4);
8998 iph_out->ip_tos = (u_char)0;
8999 iph_out->ip_id = 0;
9000 iph_out->ip_off = 0;
9001 iph_out->ip_ttl = MAXTTL;
9002 iph_out->ip_p = IPPROTO_SCTP;
9003 iph_out->ip_src.s_addr = iph->ip_dst.s_addr;
9004 iph_out->ip_dst.s_addr = iph->ip_src.s_addr;
9005 /* let IP layer calculate this */
9006 iph_out->ip_sum = 0;
9007
9008 iphlen_out = sizeof(*iph_out);
9009 abm = (struct sctp_abort_msg *)((vaddr_t)iph_out + iphlen_out);
9010 } else if (iph->ip_v == (IPV6_VERSION >> 4)) {
9011 ip6 = (struct ip6_hdr *)iph;
9012 ip6_out = mtod(mout, struct ip6_hdr *);
9013 mout->m_len = sizeof(*ip6_out) + sizeof(*abm);
9014 mout->m_next = err_cause;
9015
9016 /* Fill in the IP6 header for the ABORT */
9017 ip6_out->ip6_flow = ip6->ip6_flow;
9018 ip6_out->ip6_hlim = ip6_defhlim;
9019 ip6_out->ip6_nxt = IPPROTO_SCTP;
9020 ip6_out->ip6_src = ip6->ip6_dst;
9021 ip6_out->ip6_dst = ip6->ip6_src;
9022
9023 iphlen_out = sizeof(*ip6_out);
9024 abm = (struct sctp_abort_msg *)((vaddr_t)ip6_out + iphlen_out);
9025 } else {
9026 /* Currently not supported */
9027 return;
9028 }
9029
9030 abm->sh.src_port = sh->dest_port;
9031 abm->sh.dest_port = sh->src_port;
9032 abm->sh.checksum = 0;
9033 if (vtag == 0) {
9034 abm->sh.v_tag = sh->v_tag;
9035 abm->msg.ch.chunk_flags = SCTP_HAD_NO_TCB;
9036 } else {
9037 abm->sh.v_tag = htonl(vtag);
9038 abm->msg.ch.chunk_flags = 0;
9039 }
9040 abm->msg.ch.chunk_type = SCTP_ABORT_ASSOCIATION;
9041
9042 if (err_cause) {
9043 struct mbuf *m_tmp = err_cause;
9044 int err_len = 0;
9045 /* get length of the err_cause chain */
9046 while (m_tmp != NULL) {
9047 err_len += m_tmp->m_len;
9048 m_tmp = m_tmp->m_next;
9049 }
9050 mout->m_pkthdr.len = mout->m_len + err_len;
9051 if (err_len % 4) {
9052 /* need pad at end of chunk */
9053 u_int32_t cpthis=0;
9054 int padlen;
9055 padlen = 4 - (mout->m_pkthdr.len % 4);
9056 m_copyback(mout, mout->m_pkthdr.len, padlen, (void *)&cpthis);
9057 }
9058 abm->msg.ch.chunk_length = htons(sizeof(abm->msg.ch) + err_len);
9059 } else {
9060 mout->m_pkthdr.len = mout->m_len;
9061 abm->msg.ch.chunk_length = htons(sizeof(abm->msg.ch));
9062 }
9063
9064 /* add checksum */
9065 if ((sctp_no_csum_on_loopback) && m_get_rcvif_NOMPSAFE(m) != NULL &&
9066 m_get_rcvif_NOMPSAFE(m)->if_type == IFT_LOOP) {
9067 abm->sh.checksum = 0;
9068 } else {
9069 abm->sh.checksum = sctp_calculate_sum(mout, NULL, iphlen_out);
9070 }
9071
9072 /* zap the rcvif, it should be null */
9073 m_reset_rcvif(mout);
9074 if (iph_out != NULL) {
9075 struct route ro;
9076
9077 /* zap the stack pointer to the route */
9078 memset(&ro, 0, sizeof ro);
9079 #ifdef SCTP_DEBUG
9080 if (sctp_debug_on & SCTP_DEBUG_OUTPUT2) {
9081 printf("sctp_send_abort calling ip_output:\n");
9082 sctp_print_address_pkt(iph_out, &abm->sh);
9083 }
9084 #endif
9085 /* set IPv4 length */
9086 iph_out->ip_len = htons(mout->m_pkthdr.len);
9087 /* out it goes */
9088 (void)ip_output(mout, 0, &ro, IP_RAWOUTPUT, NULL, NULL);
9089 } else if (ip6_out != NULL) {
9090 struct route ro;
9091
9092 /* zap the stack pointer to the route */
9093 memset(&ro, 0, sizeof(ro));
9094 #ifdef SCTP_DEBUG
9095 if (sctp_debug_on & SCTP_DEBUG_OUTPUT2) {
9096 printf("sctp_send_abort calling ip6_output:\n");
9097 sctp_print_address_pkt((struct ip *)ip6_out, &abm->sh);
9098 }
9099 #endif
9100 ip6_output(mout, NULL, &ro, 0, NULL, NULL, NULL);
9101 }
9102 sctp_pegs[SCTP_DATAGRAMS_SENT]++;
9103 }
9104
9105 void
9106 sctp_send_operr_to(struct mbuf *m, int iphlen,
9107 struct mbuf *scm,
9108 uint32_t vtag)
9109 {
9110 struct sctphdr *ihdr;
9111 struct sctphdr *ohdr;
9112 struct sctp_chunkhdr *ophdr;
9113
9114 struct ip *iph;
9115 #ifdef SCTP_DEBUG
9116 struct sockaddr_in6 lsa6, fsa6;
9117 #endif
9118 uint32_t val;
9119 iph = mtod(m, struct ip *);
9120 ihdr = (struct sctphdr *)((vaddr_t)iph + iphlen);
9121 if (!(scm->m_flags & M_PKTHDR)) {
9122 /* must be a pkthdr */
9123 printf("Huh, not a packet header in send_operr\n");
9124 m_freem(scm);
9125 return;
9126 }
9127 M_PREPEND(scm, (sizeof(struct sctphdr) + sizeof(struct sctp_chunkhdr)), M_DONTWAIT);
9128 if (scm == NULL) {
9129 /* can't send because we can't add a mbuf */
9130 return;
9131 }
9132 ohdr = mtod(scm, struct sctphdr *);
9133 ohdr->src_port = ihdr->dest_port;
9134 ohdr->dest_port = ihdr->src_port;
9135 ohdr->v_tag = vtag;
9136 ohdr->checksum = 0;
9137 ophdr = (struct sctp_chunkhdr *)(ohdr + 1);
9138 ophdr->chunk_type = SCTP_OPERATION_ERROR;
9139 ophdr->chunk_flags = 0;
9140 ophdr->chunk_length = htons(scm->m_pkthdr.len - sizeof(struct sctphdr));
9141 if (scm->m_pkthdr.len % 4) {
9142 /* need padding */
9143 u_int32_t cpthis=0;
9144 int padlen;
9145 padlen = 4 - (scm->m_pkthdr.len % 4);
9146 m_copyback(scm, scm->m_pkthdr.len, padlen, (void *)&cpthis);
9147 }
9148 if ((sctp_no_csum_on_loopback) && m_get_rcvif_NOMPSAFE(m) != NULL &&
9149 m_get_rcvif_NOMPSAFE(m)->if_type == IFT_LOOP) {
9150 val = 0;
9151 } else {
9152 val = sctp_calculate_sum(scm, NULL, 0);
9153 }
9154 ohdr->checksum = val;
9155 if (iph->ip_v == IPVERSION) {
9156 /* V4 */
9157 struct ip *out;
9158 struct route ro;
9159 M_PREPEND(scm, sizeof(struct ip), M_DONTWAIT);
9160 if (scm == NULL)
9161 return;
9162 memset(&ro, 0, sizeof ro);
9163 out = mtod(scm, struct ip *);
9164 out->ip_v = iph->ip_v;
9165 out->ip_hl = (sizeof(struct ip)/4);
9166 out->ip_tos = iph->ip_tos;
9167 out->ip_id = iph->ip_id;
9168 out->ip_off = 0;
9169 out->ip_ttl = MAXTTL;
9170 out->ip_p = IPPROTO_SCTP;
9171 out->ip_sum = 0;
9172 out->ip_src = iph->ip_dst;
9173 out->ip_dst = iph->ip_src;
9174 out->ip_len = htons(scm->m_pkthdr.len);
9175 ip_output(scm, 0, &ro, IP_RAWOUTPUT, NULL, NULL);
9176 sctp_pegs[SCTP_DATAGRAMS_SENT]++;
9177 } else {
9178 /* V6 */
9179 struct route ro;
9180 struct ip6_hdr *out6, *in6;
9181
9182 M_PREPEND(scm, sizeof(struct ip6_hdr), M_DONTWAIT);
9183 if (scm == NULL)
9184 return;
9185 memset(&ro, 0, sizeof ro);
9186 in6 = mtod(m, struct ip6_hdr *);
9187 out6 = mtod(scm, struct ip6_hdr *);
9188 out6->ip6_flow = in6->ip6_flow;
9189 out6->ip6_hlim = ip6_defhlim;
9190 out6->ip6_nxt = IPPROTO_SCTP;
9191 out6->ip6_src = in6->ip6_dst;
9192 out6->ip6_dst = in6->ip6_src;
9193
9194 #ifdef SCTP_DEBUG
9195 memset(&lsa6, 0, sizeof(lsa6));
9196 lsa6.sin6_len = sizeof(lsa6);
9197 lsa6.sin6_family = AF_INET6;
9198 lsa6.sin6_addr = out6->ip6_src;
9199 memset(&fsa6, 0, sizeof(fsa6));
9200 fsa6.sin6_len = sizeof(fsa6);
9201 fsa6.sin6_family = AF_INET6;
9202 fsa6.sin6_addr = out6->ip6_dst;
9203 if (sctp_debug_on & SCTP_DEBUG_OUTPUT2) {
9204 printf("sctp_operr_to calling ipv6 output:\n");
9205 printf("src: ");
9206 sctp_print_address((struct sockaddr *)&lsa6);
9207 printf("dst ");
9208 sctp_print_address((struct sockaddr *)&fsa6);
9209 }
9210 #endif /* SCTP_DEBUG */
9211 ip6_output(scm, NULL, &ro, 0, NULL, NULL, NULL);
9212 sctp_pegs[SCTP_DATAGRAMS_SENT]++;
9213 }
9214 }
9215
9216 static int
9217 sctp_copy_one(struct mbuf *m, struct uio *uio, int cpsz, int resv_upfront, int *mbcnt)
9218 {
9219 int left, cancpy, willcpy, error;
9220 left = cpsz;
9221
9222 if (m == NULL) {
9223 /* TSNH */
9224 *mbcnt = 0;
9225 return (ENOMEM);
9226 }
9227 m->m_len = 0;
9228 if ((left+resv_upfront) > (int)MHLEN) {
9229 MCLGET(m, M_WAIT);
9230 if (m == NULL) {
9231 *mbcnt = 0;
9232 return (ENOMEM);
9233 }
9234 if ((m->m_flags & M_EXT) == 0) {
9235 *mbcnt = 0;
9236 return (ENOMEM);
9237 }
9238 *mbcnt += m->m_ext.ext_size;
9239 }
9240 *mbcnt += MSIZE;
9241 cancpy = M_TRAILINGSPACE(m);
9242 willcpy = uimin(cancpy, left);
9243 if ((willcpy + resv_upfront) > cancpy) {
9244 willcpy -= resv_upfront;
9245 }
9246 while (left > 0) {
9247 /* Align data to the end */
9248 if ((m->m_flags & M_EXT) == 0) {
9249 m_align(m, willcpy);
9250 } else {
9251 MC_ALIGN(m, willcpy);
9252 }
9253 error = uiomove(mtod(m, void *), willcpy, uio);
9254 if (error) {
9255 return (error);
9256 }
9257 m->m_len = willcpy;
9258 m->m_nextpkt = 0;
9259 left -= willcpy;
9260 if (left > 0) {
9261 MGET(m->m_next, M_WAIT, MT_DATA);
9262 if (m->m_next == NULL) {
9263 *mbcnt = 0;
9264 return (ENOMEM);
9265 }
9266 m = m->m_next;
9267 m->m_len = 0;
9268 *mbcnt += MSIZE;
9269 if (left > (int)MHLEN) {
9270 MCLGET(m, M_WAIT);
9271 if (m == NULL) {
9272 *mbcnt = 0;
9273 return (ENOMEM);
9274 }
9275 if ((m->m_flags & M_EXT) == 0) {
9276 *mbcnt = 0;
9277 return (ENOMEM);
9278 }
9279 *mbcnt += m->m_ext.ext_size;
9280 }
9281 cancpy = M_TRAILINGSPACE(m);
9282 willcpy = uimin(cancpy, left);
9283 }
9284 }
9285 return (0);
9286 }
9287
9288 static int
9289 sctp_copy_it_in(struct sctp_inpcb *inp,
9290 struct sctp_tcb *stcb,
9291 struct sctp_association *asoc,
9292 struct sctp_nets *net,
9293 struct sctp_sndrcvinfo *srcv,
9294 struct uio *uio,
9295 int flags)
9296 {
9297 /* This routine must be very careful in
9298 * its work. Protocol processing is
9299 * up and running so care must be taken to
9300 * spl...() when you need to do something
9301 * that may effect the stcb/asoc. The sb is
9302 * locked however. When data is copied the
9303 * protocol processing should be enabled since
9304 * this is a slower operation...
9305 */
9306 struct socket *so;
9307 int error = 0;
9308 int frag_size, mbcnt = 0, mbcnt_e = 0;
9309 unsigned int sndlen;
9310 unsigned int tot_demand;
9311 int tot_out, dataout;
9312 struct sctp_tmit_chunk *chk;
9313 struct mbuf *mm;
9314 struct sctp_stream_out *strq;
9315 uint32_t my_vtag;
9316 int resv_in_first;
9317
9318 so = stcb->sctp_socket;
9319 solock(so);
9320 chk = NULL;
9321 mm = NULL;
9322
9323 sndlen = uio->uio_resid;
9324 /* lock the socket buf */
9325 error = sblock(&so->so_snd, SBLOCKWAIT(flags));
9326 if (error)
9327 goto out_locked;
9328
9329 #ifdef SCTP_DEBUG
9330 printf("sctp_copy_it_in: %d\n", sndlen);
9331 #endif
9332 /* will it ever fit ? */
9333 if (sndlen > so->so_snd.sb_hiwat) {
9334 /* It will NEVER fit */
9335 error = EMSGSIZE;
9336 goto release;
9337 }
9338 /* Do I need to block? */
9339 if ((so->so_snd.sb_hiwat <
9340 (sndlen + asoc->total_output_queue_size)) ||
9341 (asoc->chunks_on_out_queue > sctp_max_chunks_on_queue) ||
9342 (asoc->total_output_mbuf_queue_size >
9343 so->so_snd.sb_mbmax)
9344 ) {
9345 /* prune any prsctp bufs out */
9346 if (asoc->peer_supports_prsctp) {
9347 sctp_prune_prsctp(stcb, asoc, srcv, sndlen);
9348 }
9349 /*
9350 * We store off a pointer to the endpoint.
9351 * Since on return from this we must check to
9352 * see if an so_error is set. If so we may have
9353 * been reset and our stcb destroyed. Returning
9354 * an error will flow back to the user...
9355 */
9356 while ((so->so_snd.sb_hiwat <
9357 (sndlen + asoc->total_output_queue_size)) ||
9358 (asoc->chunks_on_out_queue >
9359 sctp_max_chunks_on_queue) ||
9360 (asoc->total_output_mbuf_queue_size >
9361 so->so_snd.sb_mbmax)
9362 ) {
9363 if ((so->so_state & SS_NBIO)
9364 #if defined(__FreeBSD__) && __FreeBSD_version >= 500000
9365 || (flags & MSG_NBIO)
9366 #endif
9367 ) {
9368 /* Non-blocking io in place */
9369 error = EWOULDBLOCK;
9370 goto release;
9371 }
9372 inp->sctp_tcb_at_block = (void *)stcb;
9373 inp->error_on_block = 0;
9374 #ifdef SCTP_BLK_LOGGING
9375 sctp_log_block(SCTP_BLOCK_LOG_INTO_BLK,
9376 so, asoc);
9377 #endif
9378 sbunlock(&so->so_snd);
9379 SCTP_TCB_UNLOCK(stcb);
9380 error = sbwait(&so->so_snd);
9381 SCTP_INP_RLOCK(inp);
9382 if ((inp->sctp_flags & SCTP_PCB_FLAGS_SOCKET_GONE) ||
9383 (inp->sctp_flags & SCTP_PCB_FLAGS_SOCKET_GONE)) {
9384 /* Should I really unlock ? */
9385 SCTP_INP_RUNLOCK(inp);
9386 error = EFAULT;
9387 goto out_locked;
9388 }
9389 SCTP_TCB_LOCK(stcb);
9390 SCTP_INP_RUNLOCK(inp);
9391
9392 inp->sctp_tcb_at_block = 0;
9393 #ifdef SCTP_BLK_LOGGING
9394 sctp_log_block(SCTP_BLOCK_LOG_OUTOF_BLK,
9395 so, asoc);
9396 #endif
9397 if (inp->error_on_block) {
9398 /*
9399 * if our asoc was killed, the free code
9400 * (in sctp_pcb.c) will save a error in
9401 * here for us
9402 */
9403 error = inp->error_on_block;
9404 goto out_locked;
9405 }
9406 if (error) {
9407 goto out_locked;
9408 }
9409 /* did we encounter a socket error? */
9410 if (so->so_error) {
9411 error = so->so_error;
9412 goto out_locked;
9413 }
9414 error = sblock(&so->so_snd, M_WAITOK);
9415 if (error) {
9416 /* Can't aquire the lock */
9417 goto out_locked;
9418 }
9419 #if defined(__FreeBSD__) && __FreeBSD_version >= 502115
9420 if (so->so_rcv.sb_state & SBS_CANTSENDMORE) {
9421 #else
9422 if (so->so_state & SS_CANTSENDMORE) {
9423 #endif
9424 /* The socket is now set not to sendmore.. its gone */
9425 error = EPIPE;
9426 goto release;
9427 }
9428 if (so->so_error) {
9429 error = so->so_error;
9430 goto release;
9431 }
9432 if (asoc->peer_supports_prsctp) {
9433 sctp_prune_prsctp(stcb, asoc, srcv, sndlen);
9434 }
9435 }
9436 }
9437 dataout = tot_out = uio->uio_resid;
9438 if (inp->sctp_flags & SCTP_PCB_FLAGS_BOUND_V6) {
9439 resv_in_first = SCTP_MED_OVERHEAD;
9440 } else {
9441 resv_in_first = SCTP_MED_V4_OVERHEAD;
9442 }
9443
9444 /* Are we aborting? */
9445 if (srcv->sinfo_flags & SCTP_ABORT) {
9446 if ((SCTP_GET_STATE(asoc) != SCTP_STATE_COOKIE_WAIT) &&
9447 (SCTP_GET_STATE(asoc) != SCTP_STATE_COOKIE_ECHOED)) {
9448 /* It has to be up before we abort */
9449 /* how big is the user initiated abort? */
9450
9451 /* I wonder about doing a MGET without a splnet set.
9452 * it is done that way in the sosend code so I guess
9453 * it is ok :-0
9454 */
9455 MGETHDR(mm, M_WAIT, MT_DATA);
9456 if (mm) {
9457 struct sctp_paramhdr *ph;
9458
9459 tot_demand = (tot_out + sizeof(struct sctp_paramhdr));
9460 if (tot_demand > MHLEN) {
9461 if (tot_demand > MCLBYTES) {
9462 /* truncate user data */
9463 tot_demand = MCLBYTES;
9464 tot_out = tot_demand - sizeof(struct sctp_paramhdr);
9465 }
9466 MCLGET(mm, M_WAIT);
9467 if ((mm->m_flags & M_EXT) == 0) {
9468 /* truncate further */
9469 tot_demand = MHLEN;
9470 tot_out = tot_demand - sizeof(struct sctp_paramhdr);
9471 }
9472 }
9473 /* now move forward the data pointer */
9474 ph = mtod(mm, struct sctp_paramhdr *);
9475 ph->param_type = htons(SCTP_CAUSE_USER_INITIATED_ABT);
9476 ph->param_length = htons((sizeof(struct sctp_paramhdr) + tot_out));
9477 ph++;
9478 mm->m_pkthdr.len = tot_out + sizeof(struct sctp_paramhdr);
9479 mm->m_len = mm->m_pkthdr.len;
9480 error = uiomove((void *)ph, (int)tot_out, uio);
9481 if (error) {
9482 /*
9483 * Here if we can't get his data we
9484 * still abort we just don't get to
9485 * send the users note :-0
9486 */
9487 sctp_m_freem(mm);
9488 mm = NULL;
9489 }
9490 }
9491 sbunlock(&so->so_snd);
9492 sctp_abort_an_association(stcb->sctp_ep, stcb,
9493 SCTP_RESPONSE_TO_USER_REQ,
9494 mm);
9495 mm = NULL;
9496 goto out_locked;
9497 }
9498 goto release;
9499 }
9500
9501 /* Now can we send this? */
9502 if ((SCTP_GET_STATE(asoc) == SCTP_STATE_SHUTDOWN_SENT) ||
9503 (SCTP_GET_STATE(asoc) == SCTP_STATE_SHUTDOWN_ACK_SENT) ||
9504 (SCTP_GET_STATE(asoc) == SCTP_STATE_SHUTDOWN_RECEIVED) ||
9505 (asoc->state & SCTP_STATE_SHUTDOWN_PENDING)) {
9506 /* got data while shutting down */
9507 error = ECONNRESET;
9508 goto release;
9509 }
9510 /* Is the stream no. valid? */
9511 if (srcv->sinfo_stream >= asoc->streamoutcnt) {
9512 /* Invalid stream number */
9513 error = EINVAL;
9514 goto release;
9515 }
9516 if (asoc->strmout == NULL) {
9517 /* huh? software error */
9518 #ifdef SCTP_DEBUG
9519 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
9520 printf("software error in sctp_copy_it_in\n");
9521 }
9522 #endif
9523 error = EFAULT;
9524 goto release;
9525 }
9526 if ((srcv->sinfo_flags & SCTP_EOF) &&
9527 (stcb->sctp_ep->sctp_flags & SCTP_PCB_FLAGS_UDPTYPE) &&
9528 (tot_out == 0)) {
9529 sounlock(so);
9530 goto zap_by_it_now;
9531 }
9532 if (tot_out == 0) {
9533 /* not allowed */
9534 error = EMSGSIZE;
9535 goto release;
9536 }
9537 /* save off the tag */
9538 my_vtag = asoc->my_vtag;
9539 strq = &asoc->strmout[srcv->sinfo_stream];
9540 /* First lets figure out the "chunking" point */
9541 frag_size = sctp_get_frag_point(stcb, asoc);
9542
9543 /* two choices here, it all fits in one chunk or
9544 * we need multiple chunks.
9545 */
9546 sounlock(so);
9547 if (tot_out <= frag_size) {
9548 /* no need to setup a template */
9549 chk = (struct sctp_tmit_chunk *)SCTP_ZONE_GET(sctppcbinfo.ipi_zone_chunk);
9550 if (chk == NULL) {
9551 error = ENOMEM;
9552 goto release;
9553 }
9554 sctppcbinfo.ipi_count_chunk++;
9555 sctppcbinfo.ipi_gencnt_chunk++;
9556 asoc->chunks_on_out_queue++;
9557 MGETHDR(mm, M_WAIT, MT_DATA);
9558 if (mm == NULL) {
9559 error = ENOMEM;
9560 goto clean_up;
9561 }
9562 error = sctp_copy_one(mm, uio, tot_out, resv_in_first, &mbcnt_e);
9563 if (error)
9564 goto clean_up;
9565 sctp_prepare_chunk(chk, stcb, srcv, strq, net);
9566 chk->mbcnt = mbcnt_e;
9567 mbcnt += mbcnt_e;
9568 mbcnt_e = 0;
9569 mm->m_pkthdr.len = tot_out;
9570 chk->data = mm;
9571 mm = NULL;
9572
9573 /* the actual chunk flags */
9574 chk->rec.data.rcv_flags |= SCTP_DATA_NOT_FRAG;
9575 chk->whoTo->ref_count++;
9576
9577 /* fix up the send_size if it is not present */
9578 chk->send_size = tot_out;
9579 chk->book_size = chk->send_size;
9580 /* ok, we are commited */
9581 if ((srcv->sinfo_flags & SCTP_UNORDERED) == 0) {
9582 /* bump the ssn if we are unordered. */
9583 strq->next_sequence_sent++;
9584 }
9585 if (chk->flags & SCTP_PR_SCTP_BUFFER) {
9586 asoc->sent_queue_cnt_removeable++;
9587 }
9588 solock(so);
9589 if ((asoc->state == 0) ||
9590 (my_vtag != asoc->my_vtag) ||
9591 (so != inp->sctp_socket) ||
9592 (inp->sctp_socket == 0)) {
9593 /* connection was aborted */
9594 sounlock(so);
9595 error = ECONNRESET;
9596 goto clean_up;
9597 }
9598 asoc->stream_queue_cnt++;
9599 TAILQ_INSERT_TAIL(&strq->outqueue, chk, sctp_next);
9600 /* now check if this stream is on the wheel */
9601 if ((strq->next_spoke.tqe_next == NULL) &&
9602 (strq->next_spoke.tqe_prev == NULL)) {
9603 /* Insert it on the wheel since it is not
9604 * on it currently
9605 */
9606 sctp_insert_on_wheel(asoc, strq);
9607 }
9608 sounlock(so);
9609 clean_up:
9610 if (error) {
9611 SCTP_ZONE_FREE(sctppcbinfo.ipi_zone_chunk, chk);
9612 sctppcbinfo.ipi_count_chunk--;
9613 if ((int)sctppcbinfo.ipi_count_chunk < 0) {
9614 panic("Chunk count is negative");
9615 }
9616 goto release;
9617 }
9618 } else {
9619 /* we need to setup a template */
9620 struct sctp_tmit_chunk template;
9621 struct sctpchunk_listhead tmp;
9622
9623 /* setup the template */
9624 sctp_prepare_chunk(&template, stcb, srcv, strq, net);
9625
9626 /* Prepare the temp list */
9627 TAILQ_INIT(&tmp);
9628
9629 /* Template is complete, now time for the work */
9630 while (tot_out > 0) {
9631 /* Get a chunk */
9632 chk = (struct sctp_tmit_chunk *)SCTP_ZONE_GET(sctppcbinfo.ipi_zone_chunk);
9633 if (chk == NULL) {
9634 /*
9635 * ok we must spin through and dump anything
9636 * we have allocated and then jump to the
9637 * no_membad
9638 */
9639 error = ENOMEM;
9640 }
9641 sctppcbinfo.ipi_count_chunk++;
9642 asoc->chunks_on_out_queue++;
9643
9644 sctppcbinfo.ipi_gencnt_chunk++;
9645 *chk = template;
9646 chk->whoTo->ref_count++;
9647 MGETHDR(chk->data, M_WAIT, MT_DATA);
9648 if (chk->data == NULL) {
9649 error = ENOMEM;
9650 goto temp_clean_up;
9651 }
9652 tot_demand = uimin(tot_out, frag_size);
9653 error = sctp_copy_one(chk->data, uio, tot_demand , resv_in_first, &mbcnt_e);
9654 if (error)
9655 goto temp_clean_up;
9656 /* now fix the chk->send_size */
9657 chk->mbcnt = mbcnt_e;
9658 mbcnt += mbcnt_e;
9659 mbcnt_e = 0;
9660 chk->send_size = tot_demand;
9661 chk->data->m_pkthdr.len = tot_demand;
9662 chk->book_size = chk->send_size;
9663 if (chk->flags & SCTP_PR_SCTP_BUFFER) {
9664 asoc->sent_queue_cnt_removeable++;
9665 }
9666 TAILQ_INSERT_TAIL(&tmp, chk, sctp_next);
9667 tot_out -= tot_demand;
9668 }
9669 /* Now the tmp list holds all chunks and data */
9670 if ((srcv->sinfo_flags & SCTP_UNORDERED) == 0) {
9671 /* bump the ssn if we are unordered. */
9672 strq->next_sequence_sent++;
9673 }
9674 /* Mark the first/last flags. This will
9675 * result int a 3 for a single item on the list
9676 */
9677 chk = TAILQ_FIRST(&tmp);
9678 chk->rec.data.rcv_flags |= SCTP_DATA_FIRST_FRAG;
9679 chk = TAILQ_LAST(&tmp, sctpchunk_listhead);
9680 chk->rec.data.rcv_flags |= SCTP_DATA_LAST_FRAG;
9681
9682 /* now move it to the streams actual queue */
9683 /* first stop protocol processing */
9684 mutex_enter(softnet_lock);
9685 if ((asoc->state == 0) ||
9686 (my_vtag != asoc->my_vtag) ||
9687 (so != inp->sctp_socket) ||
9688 (inp->sctp_socket == 0)) {
9689 /* connection was aborted */
9690 mutex_exit(softnet_lock);
9691 error = ECONNRESET;
9692 goto temp_clean_up;
9693 }
9694 chk = TAILQ_FIRST(&tmp);
9695 while (chk) {
9696 chk->data->m_nextpkt = 0;
9697 TAILQ_REMOVE(&tmp, chk, sctp_next);
9698 asoc->stream_queue_cnt++;
9699 TAILQ_INSERT_TAIL(&strq->outqueue, chk, sctp_next);
9700 chk = TAILQ_FIRST(&tmp);
9701 }
9702 /* now check if this stream is on the wheel */
9703 if ((strq->next_spoke.tqe_next == NULL) &&
9704 (strq->next_spoke.tqe_prev == NULL)) {
9705 /* Insert it on the wheel since it is not
9706 * on it currently
9707 */
9708 sctp_insert_on_wheel(asoc, strq);
9709 }
9710 /* Ok now we can allow pping */
9711 mutex_exit(softnet_lock);
9712 temp_clean_up:
9713 if (error) {
9714 chk = TAILQ_FIRST(&tmp);
9715 while (chk) {
9716 if (chk->data) {
9717 sctp_m_freem(chk->data);
9718 chk->data = NULL;
9719 }
9720 TAILQ_REMOVE(&tmp, chk, sctp_next);
9721 SCTP_ZONE_FREE(sctppcbinfo.ipi_zone_chunk, chk);
9722 sctppcbinfo.ipi_count_chunk--;
9723 asoc->chunks_on_out_queue--;
9724 if ((int)sctppcbinfo.ipi_count_chunk < 0) {
9725 panic("Chunk count is negative");
9726 }
9727 sctppcbinfo.ipi_gencnt_chunk++;
9728 chk = TAILQ_FIRST(&tmp);
9729 }
9730 goto release;
9731 }
9732 }
9733 zap_by_it_now:
9734 #ifdef SCTP_MBCNT_LOGGING
9735 sctp_log_mbcnt(SCTP_LOG_MBCNT_INCREASE,
9736 asoc->total_output_queue_size,
9737 dataout,
9738 asoc->total_output_mbuf_queue_size,
9739 mbcnt);
9740 #endif
9741 solock(so);
9742 asoc->total_output_queue_size += dataout;
9743 asoc->total_output_mbuf_queue_size += mbcnt;
9744 if ((stcb->sctp_ep->sctp_flags & SCTP_PCB_FLAGS_TCPTYPE) ||
9745 (stcb->sctp_ep->sctp_flags & SCTP_PCB_FLAGS_IN_TCPPOOL)) {
9746 so->so_snd.sb_cc += dataout;
9747 so->so_snd.sb_mbcnt += mbcnt;
9748 }
9749 if ((srcv->sinfo_flags & SCTP_EOF) &&
9750 (stcb->sctp_ep->sctp_flags & SCTP_PCB_FLAGS_UDPTYPE)
9751 ) {
9752 int some_on_streamwheel = 0;
9753 error = 0;
9754 if (!TAILQ_EMPTY(&asoc->out_wheel)) {
9755 /* Check to see if some data queued */
9756 struct sctp_stream_out *outs;
9757 TAILQ_FOREACH(outs, &asoc->out_wheel, next_spoke) {
9758 if (!TAILQ_EMPTY(&outs->outqueue)) {
9759 some_on_streamwheel = 1;
9760 break;
9761 }
9762 }
9763 }
9764 if (TAILQ_EMPTY(&asoc->send_queue) &&
9765 TAILQ_EMPTY(&asoc->sent_queue) &&
9766 (some_on_streamwheel == 0)) {
9767 /* there is nothing queued to send, so I'm done... */
9768 if ((SCTP_GET_STATE(asoc) != SCTP_STATE_SHUTDOWN_SENT) &&
9769 (SCTP_GET_STATE(asoc) != SCTP_STATE_SHUTDOWN_ACK_SENT)) {
9770 /* only send SHUTDOWN the first time through */
9771 #ifdef SCTP_DEBUG
9772 if (sctp_debug_on & SCTP_DEBUG_OUTPUT4) {
9773 printf("%s:%d sends a shutdown\n",
9774 __FILE__,
9775 __LINE__
9776 );
9777 }
9778 #endif
9779 sctp_send_shutdown(stcb, stcb->asoc.primary_destination);
9780 asoc->state = SCTP_STATE_SHUTDOWN_SENT;
9781 sctp_timer_start(SCTP_TIMER_TYPE_SHUTDOWN, stcb->sctp_ep, stcb,
9782 asoc->primary_destination);
9783 sctp_timer_start(SCTP_TIMER_TYPE_SHUTDOWNGUARD, stcb->sctp_ep, stcb,
9784 asoc->primary_destination);
9785 }
9786 } else {
9787 /*
9788 * we still got (or just got) data to send, so set
9789 * SHUTDOWN_PENDING
9790 */
9791 /*
9792 * XXX sockets draft says that SCTP_EOF should be sent
9793 * with no data. currently, we will allow user data
9794 * to be sent first and move to SHUTDOWN-PENDING
9795 */
9796 asoc->state |= SCTP_STATE_SHUTDOWN_PENDING;
9797 }
9798 }
9799 #ifdef SCTP_DEBUG
9800 if (sctp_debug_on & SCTP_DEBUG_OUTPUT2) {
9801 printf("++total out:%d total_mbuf_out:%d\n",
9802 (int)asoc->total_output_queue_size,
9803 (int)asoc->total_output_mbuf_queue_size);
9804 }
9805 #endif
9806
9807 release:
9808 sbunlock(&so->so_snd);
9809 out_locked:
9810 sounlock(so);
9811
9812 if (mm)
9813 sctp_m_freem(mm);
9814 return (error);
9815 }
9816
9817
9818 int
9819 sctp_sosend(struct socket *so, struct sockaddr *addr, struct uio *uio,
9820 struct mbuf *top, struct mbuf *control, int flags, struct lwp *p)
9821 {
9822 int error, use_rcvinfo;
9823 int queue_only = 0, queue_only_for_init=0;
9824 int un_sent = 0;
9825 int now_filled=0;
9826 struct sctp_inpcb *inp;
9827 struct sctp_tcb *stcb=NULL;
9828 struct sctp_sndrcvinfo srcv;
9829 struct timeval now;
9830 struct sctp_nets *net;
9831 struct sctp_association *asoc;
9832 struct sctp_inpcb *t_inp;
9833 int create_lock_applied = 0;
9834
9835 error = use_rcvinfo = 0;
9836 net = NULL;
9837 stcb = NULL;
9838 asoc = NULL;
9839 t_inp = inp = (struct sctp_inpcb *)so->so_pcb;
9840
9841 solock(so);
9842 if ((inp->sctp_flags & SCTP_PCB_FLAGS_TCPTYPE) &&
9843 (inp->sctp_flags & SCTP_PCB_FLAGS_ACCEPTING)) {
9844 /* The listner can NOT send */
9845 error = EFAULT;
9846 sounlock(so);
9847 goto out;
9848 }
9849 if (addr) {
9850 SCTP_ASOC_CREATE_LOCK(inp);
9851 if ((inp->sctp_flags & SCTP_PCB_FLAGS_SOCKET_GONE) ||
9852 (inp->sctp_flags & SCTP_PCB_FLAGS_SOCKET_GONE)) {
9853 /* Should I really unlock ? */
9854 error = EFAULT;
9855 sounlock(so);
9856 goto out;
9857
9858 }
9859 create_lock_applied = 1;
9860 if (((inp->sctp_flags & SCTP_PCB_FLAGS_BOUND_V6) == 0) &&
9861 (addr->sa_family == AF_INET6)) {
9862 error = EINVAL;
9863 sounlock(so);
9864 goto out;
9865 }
9866 }
9867 /* now we must find the assoc */
9868 if (inp->sctp_flags & SCTP_PCB_FLAGS_CONNECTED) {
9869 SCTP_INP_RLOCK(inp);
9870 stcb = LIST_FIRST(&inp->sctp_asoc_list);
9871 if (stcb == NULL) {
9872 SCTP_INP_RUNLOCK(inp);
9873 error = ENOTCONN;
9874 sounlock(so);
9875 goto out;
9876 }
9877 SCTP_TCB_LOCK(stcb);
9878 SCTP_INP_RUNLOCK(inp);
9879 net = stcb->asoc.primary_destination;
9880 }
9881 #ifdef SCTP_DEBUG
9882 printf("sctp_sosend: get control\n");
9883 #endif
9884 /* get control */
9885 if (control) {
9886 /* process cmsg snd/rcv info (maybe a assoc-id) */
9887 if (sctp_find_cmsg(SCTP_SNDRCV, (void *)&srcv, control,
9888 sizeof(srcv))) {
9889 /* got one */
9890 if (srcv.sinfo_flags & SCTP_SENDALL) {
9891 /* its a sendall */
9892 sctppcbinfo.mbuf_track--;
9893 sctp_m_freem(control);
9894
9895 if (create_lock_applied) {
9896 SCTP_ASOC_CREATE_UNLOCK(inp);
9897 create_lock_applied = 0;
9898 }
9899 return (sctp_sendall(inp, uio, top, &srcv));
9900 }
9901 use_rcvinfo = 1;
9902 }
9903 }
9904 #ifdef SCTP_DEBUG
9905 printf("sctp_sosend: doing lookup\n");
9906 #endif
9907 if (stcb == NULL) {
9908 /* Need to do a lookup */
9909 if (use_rcvinfo && srcv.sinfo_assoc_id) {
9910 stcb = sctp_findassociation_ep_asocid(inp, srcv.sinfo_assoc_id);
9911 /*
9912 * Question: Should I error here if the assoc_id is
9913 * no longer valid? i.e. I can't find it?
9914 */
9915 if ((stcb) &&
9916 (addr != NULL)) {
9917 /* Must locate the net structure */
9918 net = sctp_findnet(stcb, addr);
9919 }
9920 }
9921 if (stcb == NULL) {
9922 if (addr != NULL) {
9923 /* Since we did not use findep we must
9924 * increment it, and if we don't find a
9925 * tcb decrement it.
9926 */
9927 SCTP_INP_WLOCK(inp);
9928 SCTP_INP_INCR_REF(inp);
9929 SCTP_INP_WUNLOCK(inp);
9930 stcb = sctp_findassociation_ep_addr(&t_inp, addr, &net, NULL, NULL);
9931 if (stcb == NULL) {
9932 SCTP_INP_WLOCK(inp);
9933 SCTP_INP_DECR_REF(inp);
9934 SCTP_INP_WUNLOCK(inp);
9935 }
9936 }
9937 }
9938 }
9939 if ((stcb == NULL) &&
9940 (inp->sctp_flags & SCTP_PCB_FLAGS_TCPTYPE)) {
9941 error = ENOTCONN;
9942 sounlock(so);
9943 goto out;
9944 } else if ((stcb == NULL) && (addr == NULL)) {
9945 error = ENOENT;
9946 sounlock(so);
9947 goto out;
9948 } else if (stcb == NULL) {
9949 /* UDP style, we must go ahead and start the INIT process */
9950 if ((use_rcvinfo) &&
9951 (srcv.sinfo_flags & SCTP_ABORT)) {
9952 /* User asks to abort a non-existant asoc */
9953 error = ENOENT;
9954 sounlock(so);
9955 goto out;
9956 }
9957 /* get an asoc/stcb struct */
9958 stcb = sctp_aloc_assoc(inp, addr, 1, &error, 0);
9959 if (stcb == NULL) {
9960 /* Error is setup for us in the call */
9961 sounlock(so);
9962 goto out;
9963 }
9964 if (create_lock_applied) {
9965 SCTP_ASOC_CREATE_UNLOCK(inp);
9966 create_lock_applied = 0;
9967 } else {
9968 printf("Huh-3? create lock should have been on??\n");
9969 }
9970 /* Turn on queue only flag to prevent data from being sent */
9971 queue_only = 1;
9972 asoc = &stcb->asoc;
9973 asoc->state = SCTP_STATE_COOKIE_WAIT;
9974 SCTP_GETTIME_TIMEVAL(&asoc->time_entered);
9975 if (control) {
9976 /* see if a init structure exists in cmsg headers */
9977 struct sctp_initmsg initm;
9978 int i;
9979 if (sctp_find_cmsg(SCTP_INIT, (void *)&initm, control, sizeof(initm))) {
9980 /* we have an INIT override of the default */
9981 if (initm.sinit_max_attempts)
9982 asoc->max_init_times = initm.sinit_max_attempts;
9983 if (initm.sinit_num_ostreams)
9984 asoc->pre_open_streams = initm.sinit_num_ostreams;
9985 if (initm.sinit_max_instreams)
9986 asoc->max_inbound_streams = initm.sinit_max_instreams;
9987 if (initm.sinit_max_init_timeo)
9988 asoc->initial_init_rto_max = initm.sinit_max_init_timeo;
9989 if (asoc->streamoutcnt < asoc->pre_open_streams) {
9990 /* Default is NOT correct */
9991 #ifdef SCTP_DEBUG
9992 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
9993 printf("Ok, defout:%d pre_open:%d\n",
9994 asoc->streamoutcnt, asoc->pre_open_streams);
9995 }
9996 #endif
9997 free(asoc->strmout, M_PCB);
9998 asoc->strmout = NULL;
9999 asoc->streamoutcnt = asoc->pre_open_streams;
10000
10001 /* What happesn if this fails? .. we panic ...*/
10002 asoc->strmout = malloc(
10003 asoc->streamoutcnt *
10004 sizeof(struct sctp_stream_out),
10005 M_PCB, M_WAIT);
10006 for (i = 0; i < asoc->streamoutcnt; i++) {
10007 /*
10008 * inbound side must be set to 0xffff,
10009 * also NOTE when we get the INIT-ACK
10010 * back (for INIT sender) we MUST
10011 * reduce the count (streamoutcnt) but
10012 * first check if we sent to any of the
10013 * upper streams that were dropped (if
10014 * some were). Those that were dropped
10015 * must be notified to the upper layer
10016 * as failed to send.
10017 */
10018 asoc->strmout[i].next_sequence_sent = 0x0;
10019 TAILQ_INIT(&asoc->strmout[i].outqueue);
10020 asoc->strmout[i].stream_no = i;
10021 asoc->strmout[i].next_spoke.tqe_next = 0;
10022 asoc->strmout[i].next_spoke.tqe_prev = 0;
10023 }
10024 }
10025 }
10026
10027 }
10028 /* out with the INIT */
10029 queue_only_for_init = 1;
10030 sctp_send_initiate(inp, stcb);
10031 /*
10032 * we may want to dig in after this call and adjust the MTU
10033 * value. It defaulted to 1500 (constant) but the ro structure
10034 * may now have an update and thus we may need to change it
10035 * BEFORE we append the message.
10036 */
10037 net = stcb->asoc.primary_destination;
10038 asoc = &stcb->asoc;
10039 } else {
10040 asoc = &stcb->asoc;
10041 }
10042 if (create_lock_applied) {
10043 SCTP_ASOC_CREATE_UNLOCK(inp);
10044 create_lock_applied = 0;
10045 }
10046 if ((SCTP_GET_STATE(asoc) == SCTP_STATE_COOKIE_WAIT) ||
10047 (SCTP_GET_STATE(asoc) == SCTP_STATE_COOKIE_ECHOED)) {
10048 queue_only = 1;
10049 }
10050 if (use_rcvinfo == 0) {
10051 /* Grab the default stuff from the asoc */
10052 srcv = stcb->asoc.def_send;
10053 }
10054 /* we are now done with all control */
10055 if (control) {
10056 sctp_m_freem(control);
10057 control = NULL;
10058 }
10059
10060 if ((SCTP_GET_STATE(asoc) == SCTP_STATE_SHUTDOWN_SENT) ||
10061 (SCTP_GET_STATE(asoc) == SCTP_STATE_SHUTDOWN_RECEIVED) ||
10062 (SCTP_GET_STATE(asoc) == SCTP_STATE_SHUTDOWN_ACK_SENT) ||
10063 (asoc->state & SCTP_STATE_SHUTDOWN_PENDING)) {
10064 if ((use_rcvinfo) &&
10065 (srcv.sinfo_flags & SCTP_ABORT)) {
10066 ;
10067 } else {
10068 error = ECONNRESET;
10069 sounlock(so);
10070 goto out;
10071 }
10072 }
10073 /* Ok, we will attempt a msgsnd :> */
10074 #if 0 /* XXX */
10075 if (p)
10076 p->p_stats->p_ru.ru_msgsnd++;
10077 #endif
10078
10079 if (stcb) {
10080 if (net && ((srcv.sinfo_flags & SCTP_ADDR_OVER))) {
10081 /* we take the override or the unconfirmed */
10082 ;
10083 } else {
10084 net = stcb->asoc.primary_destination;
10085 }
10086 }
10087
10088 #ifdef SCTP_DEBUG
10089 printf("sctp_sosend: before copying in %p\n", top);
10090 #endif
10091 if (top == NULL) {
10092 /* Must copy it all in from user land. The
10093 * socket buf is locked but we don't suspend
10094 * protocol processing until we are ready to
10095 * send/queue it.
10096 */
10097 sounlock(so);
10098 #ifdef SCTP_DEBUG
10099 printf("sctp_sosend: before cii\n");
10100 #endif
10101 error = sctp_copy_it_in(inp, stcb, asoc, net, &srcv, uio, flags);
10102 #ifdef SCTP_DEBUG
10103 printf("sctp_sosend: after cii\n");
10104 #endif
10105 if (error)
10106 goto out;
10107 } else {
10108 /* Here we must either pull in the user data to chunk
10109 * buffers, or use top to do a msg_append.
10110 */
10111 error = sctp_msg_append(stcb, net, top, &srcv, flags);
10112 sounlock(so);
10113 if (error)
10114 goto out;
10115 /* zap the top since it is now being used */
10116 top = 0;
10117 }
10118 #ifdef SCTP_DEBUG
10119 printf("sctp_sosend: after copying in\n");
10120 #endif
10121 if (net->flight_size > net->cwnd) {
10122 sctp_pegs[SCTP_SENDTO_FULL_CWND]++;
10123 queue_only = 1;
10124
10125 } else if (asoc->ifp_had_enobuf) {
10126 sctp_pegs[SCTP_QUEONLY_BURSTLMT]++;
10127 queue_only = 1;
10128 } else {
10129 un_sent = ((stcb->asoc.total_output_queue_size - stcb->asoc.total_flight) +
10130 ((stcb->asoc.chunks_on_out_queue - stcb->asoc.total_flight_count) * sizeof(struct sctp_data_chunk)) +
10131 SCTP_MED_OVERHEAD);
10132
10133 if (((inp->sctp_flags & SCTP_PCB_FLAGS_NODELAY) == 0) &&
10134 (stcb->asoc.total_flight > 0) &&
10135 (un_sent < (int)stcb->asoc.smallest_mtu)) {
10136
10137 /* Ok, Nagle is set on and we have data outstanding. Don't
10138 * send anything and let SACKs drive out the data unless we
10139 * have a "full" segment to send.
10140 */
10141 sctp_pegs[SCTP_NAGLE_NOQ]++;
10142 queue_only = 1;
10143 } else {
10144 sctp_pegs[SCTP_NAGLE_OFF]++;
10145 }
10146 }
10147 if (queue_only_for_init) {
10148 /* It is possible to have a turn around of the
10149 * INIT/INIT-ACK/COOKIE before I have a chance to
10150 * copy in the data. In such a case I DO want to
10151 * send it out by reversing the queue only flag.
10152 */
10153 if ((SCTP_GET_STATE(asoc) != SCTP_STATE_COOKIE_WAIT) ||
10154 (SCTP_GET_STATE(asoc) != SCTP_STATE_COOKIE_ECHOED)) {
10155 /* yep, reverse it */
10156 queue_only = 0;
10157 }
10158 }
10159
10160 #ifdef SCTP_DEBUG
10161 printf("sctp_sosend: before sending chunk\n");
10162 #endif
10163 if ((queue_only == 0) && (stcb->asoc.peers_rwnd && un_sent)) {
10164 /* we can attempt to send too.*/
10165 #ifdef SCTP_DEBUG
10166 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
10167 printf("USR Send calls sctp_chunk_output\n");
10168 }
10169 #endif
10170 solock(so);
10171 sctp_pegs[SCTP_OUTPUT_FRM_SND]++;
10172 sctp_chunk_output(inp, stcb, 0);
10173 sounlock(so);
10174 } else if ((queue_only == 0) &&
10175 (stcb->asoc.peers_rwnd == 0) &&
10176 (stcb->asoc.total_flight == 0)) {
10177 /* We get to have a probe outstanding */
10178 solock(so);
10179 sctp_from_user_send = 1;
10180 sctp_chunk_output(inp, stcb, 0);
10181 sctp_from_user_send = 0;
10182 sounlock(so);
10183
10184 } else if (!TAILQ_EMPTY(&stcb->asoc.control_send_queue)) {
10185 int num_out, reason, cwnd_full;
10186 /* Here we do control only */
10187 solock(so);
10188 sctp_med_chunk_output(inp, stcb, &stcb->asoc, &num_out,
10189 &reason, 1, &cwnd_full, 1, &now, &now_filled);
10190 sounlock(so);
10191 }
10192 #ifdef SCTP_DEBUG
10193 if (sctp_debug_on & SCTP_DEBUG_OUTPUT1) {
10194 printf("USR Send complete qo:%d prw:%d unsent:%d tf:%d cooq:%d toqs:%d \n",
10195 queue_only, stcb->asoc.peers_rwnd, un_sent,
10196 stcb->asoc.total_flight, stcb->asoc.chunks_on_out_queue,
10197 stcb->asoc.total_output_queue_size);
10198 }
10199 #endif
10200 out:
10201 if (create_lock_applied) {
10202 SCTP_ASOC_CREATE_UNLOCK(inp);
10203 create_lock_applied = 0;
10204 }
10205 if (stcb) {
10206 SCTP_TCB_UNLOCK(stcb);
10207 }
10208 if (top)
10209 sctp_m_freem(top);
10210 if (control)
10211 sctp_m_freem(control);
10212 return (error);
10213 }
10214