1 1.1 rjs /* $KAME: sctp_sys_calls.c,v 1.10 2005/03/06 16:04:16 itojun Exp $ */ 2 1.2 christos /* $NetBSD: sctp_sys_calls.c,v 1.2 2024/01/20 14:52:48 christos Exp $ */ 3 1.1 rjs 4 1.1 rjs /* 5 1.1 rjs * Copyright (C) 2002, 2003, 2004 Cisco Systems Inc, 6 1.1 rjs * All rights reserved. 7 1.1 rjs * 8 1.1 rjs * Redistribution and use in source and binary forms, with or without 9 1.1 rjs * modification, are permitted provided that the following conditions 10 1.1 rjs * are met: 11 1.1 rjs * 1. Redistributions of source code must retain the above copyright 12 1.1 rjs * notice, this list of conditions and the following disclaimer. 13 1.1 rjs * 2. Redistributions in binary form must reproduce the above copyright 14 1.1 rjs * notice, this list of conditions and the following disclaimer in the 15 1.1 rjs * documentation and/or other materials provided with the distribution. 16 1.1 rjs * 3. Neither the name of the project nor the names of its contributors 17 1.1 rjs * may be used to endorse or promote products derived from this software 18 1.1 rjs * without specific prior written permission. 19 1.1 rjs * 20 1.1 rjs * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND 21 1.1 rjs * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 22 1.1 rjs * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 23 1.1 rjs * ARE DISCLAIMED. IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE 24 1.1 rjs * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 25 1.1 rjs * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 26 1.1 rjs * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 27 1.1 rjs * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 28 1.1 rjs * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 29 1.1 rjs * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 30 1.1 rjs * SUCH DAMAGE. 31 1.1 rjs */ 32 1.1 rjs 33 1.1 rjs #include <stdio.h> 34 1.1 rjs #include <string.h> 35 1.1 rjs #include <errno.h> 36 1.1 rjs #include <stdlib.h> 37 1.1 rjs #include <unistd.h> 38 1.1 rjs #include <sys/types.h> 39 1.1 rjs #include <sys/socket.h> 40 1.1 rjs #include <sys/errno.h> 41 1.1 rjs #include <sys/syscall.h> 42 1.1 rjs #include <sys/ioctl.h> 43 1.1 rjs #include <sys/uio.h> 44 1.1 rjs #include <netinet/in.h> 45 1.1 rjs #include <arpa/inet.h> 46 1.1 rjs #include <netinet/sctp_uio.h> 47 1.1 rjs #include <netinet/sctp.h> 48 1.1 rjs 49 1.1 rjs #include <net/if_dl.h> 50 1.1 rjs 51 1.1 rjs #ifndef IN6_IS_ADDR_V4MAPPED 52 1.1 rjs #define IN6_IS_ADDR_V4MAPPED(a) \ 53 1.1 rjs ((*(const u_int32_t *)(const void *)(&(a)->s6_addr[0]) == 0) && \ 54 1.1 rjs (*(const u_int32_t *)(const void *)(&(a)->s6_addr[4]) == 0) && \ 55 1.1 rjs (*(const u_int32_t *)(const void *)(&(a)->s6_addr[8]) == ntohl(0x0000ffff))) 56 1.1 rjs #endif 57 1.1 rjs 58 1.1 rjs #define SCTP_CONTROL_VEC_SIZE_RCV 16384 59 1.1 rjs 60 1.1 rjs #ifdef SCTP_DEBUG_PRINT_ADDRESS 61 1.1 rjs static void 62 1.1 rjs SCTPPrintAnAddress(struct sockaddr *a) 63 1.1 rjs { 64 1.1 rjs char stringToPrint[256]; 65 1.1 rjs u_short prt; 66 1.1 rjs char *srcaddr, *txt; 67 1.1 rjs 68 1.1 rjs if (a == NULL) { 69 1.1 rjs printf("NULL\n"); 70 1.1 rjs return; 71 1.1 rjs } 72 1.1 rjs if (a->sa_family == AF_INET) { 73 1.1 rjs srcaddr = (char *)&((struct sockaddr_in *)a)->sin_addr; 74 1.1 rjs txt = "IPv4 Address: "; 75 1.1 rjs prt = ntohs(((struct sockaddr_in *)a)->sin_port); 76 1.1 rjs } else if (a->sa_family == AF_INET6) { 77 1.1 rjs srcaddr = (char *)&((struct sockaddr_in6 *)a)->sin6_addr; 78 1.1 rjs prt = ntohs(((struct sockaddr_in6 *)a)->sin6_port); 79 1.1 rjs txt = "IPv6 Address: "; 80 1.1 rjs } else if (a->sa_family == AF_LINK) { 81 1.1 rjs int i; 82 1.1 rjs char tbuf[200]; 83 1.1 rjs u_char adbuf[200]; 84 1.1 rjs struct sockaddr_dl *dl; 85 1.1 rjs 86 1.1 rjs dl = (struct sockaddr_dl *)a; 87 1.1 rjs strncpy(tbuf, dl->sdl_data, dl->sdl_nlen); 88 1.1 rjs tbuf[dl->sdl_nlen] = 0; 89 1.1 rjs printf("Intf:%s (len:%d)Interface index:%d type:%x(%d) ll-len:%d ", 90 1.1 rjs tbuf, dl->sdl_nlen, dl->sdl_index, dl->sdl_type, 91 1.1 rjs dl->sdl_type, dl->sdl_alen); 92 1.1 rjs memcpy(adbuf, LLADDR(dl), dl->sdl_alen); 93 1.1 rjs for (i = 0; i < dl->sdl_alen; i++){ 94 1.1 rjs printf("%2.2x", adbuf[i]); 95 1.1 rjs if (i < (dl->sdl_alen - 1)) 96 1.1 rjs printf(":"); 97 1.1 rjs } 98 1.1 rjs printf("\n"); 99 1.1 rjs /* u_short sdl_route[16];*/ /* source routing information */ 100 1.1 rjs return; 101 1.1 rjs } else { 102 1.1 rjs return; 103 1.1 rjs } 104 1.1 rjs if (inet_ntop(a->sa_family, srcaddr, stringToPrint, 105 1.1 rjs sizeof(stringToPrint))) { 106 1.1 rjs if (a->sa_family == AF_INET6) { 107 1.1 rjs printf("%s%s:%d scope:%d\n", txt, stringToPrint, prt, 108 1.1 rjs ((struct sockaddr_in6 *)a)->sin6_scope_id); 109 1.1 rjs } else { 110 1.1 rjs printf("%s%s:%d\n", txt, stringToPrint, prt); 111 1.1 rjs } 112 1.1 rjs 113 1.1 rjs } else { 114 1.1 rjs printf("%s unprintable?\n", txt); 115 1.1 rjs } 116 1.1 rjs } 117 1.1 rjs #endif /* SCTP_DEBUG_PRINT_ADDRESS */ 118 1.1 rjs 119 1.1 rjs void 120 1.1 rjs in6_sin6_2_sin(struct sockaddr_in *sin, struct sockaddr_in6 *sin6) 121 1.1 rjs { 122 1.1 rjs memset(sin, 0, sizeof(*sin)); 123 1.1 rjs sin->sin_len = sizeof(struct sockaddr_in); 124 1.1 rjs sin->sin_family = AF_INET; 125 1.1 rjs sin->sin_port = sin6->sin6_port; 126 1.1 rjs sin->sin_addr.s_addr = sin6->sin6_addr.__u6_addr.__u6_addr32[3]; 127 1.1 rjs } 128 1.1 rjs 129 1.1 rjs int 130 1.1 rjs sctp_connectx(int sd, struct sockaddr *addrs, int addrcnt, 131 1.1 rjs sctp_assoc_t *id) 132 1.1 rjs { 133 1.1 rjs int i, ret, cnt; 134 1.1 rjs struct sockaddr *at; 135 1.1 rjs struct sctp_connectx_addrs sca; 136 1.1 rjs #if 0 137 1.1 rjs char *cpto; 138 1.1 rjs #endif 139 1.1 rjs size_t len; 140 1.1 rjs 141 1.1 rjs at = addrs; 142 1.1 rjs cnt = 0; 143 1.1 rjs len = 0; 144 1.1 rjs /* validate all the addresses and get the size */ 145 1.1 rjs for (i = 0; i < addrcnt; i++) { 146 1.1 rjs if (at->sa_family == AF_INET) { 147 1.1 rjs len += at->sa_len; 148 1.1 rjs } else if (at->sa_family == AF_INET6){ 149 1.2 christos if (IN6_IS_ADDR_V4MAPPED(&((struct sockaddr_in6 *)(void *)at)->sin6_addr)){ 150 1.1 rjs len += sizeof(struct sockaddr_in); 151 1.1 rjs #if 0 152 1.1 rjs in6_sin6_2_sin((struct sockaddr_in *)cpto, 153 1.1 rjs (struct sockaddr_in6 *)at); 154 1.1 rjs cpto = ((caddr_t)cpto + sizeof(struct sockaddr_in)); 155 1.1 rjs len += sizeof(struct sockaddr_in); 156 1.1 rjs #endif 157 1.1 rjs } else { 158 1.1 rjs len += at->sa_len; 159 1.1 rjs } 160 1.1 rjs } else { 161 1.1 rjs errno = EINVAL; 162 1.1 rjs return (-1); 163 1.1 rjs } 164 1.1 rjs at = (struct sockaddr *)((caddr_t)at + at->sa_len); 165 1.1 rjs cnt++; 166 1.1 rjs } 167 1.1 rjs /* do we have any? */ 168 1.1 rjs if (cnt == 0) { 169 1.1 rjs errno = EINVAL; 170 1.1 rjs return(-1); 171 1.1 rjs } 172 1.1 rjs 173 1.1 rjs sca.cx_num = cnt; 174 1.2 christos sca.cx_len = (int)len; 175 1.1 rjs sca.cx_addrs = addrs; 176 1.1 rjs ret = ioctl(sd, SIOCCONNECTX, (void *)&sca); 177 1.1 rjs if ((ret == 0) && (id != NULL)) { 178 1.1 rjs memcpy(id, &sca.cx_num, sizeof(sctp_assoc_t)); 179 1.1 rjs } 180 1.1 rjs return (ret); 181 1.1 rjs } 182 1.1 rjs 183 1.1 rjs int 184 1.1 rjs sctp_bindx(int sd, struct sockaddr *addrs, int addrcnt, int flags) 185 1.1 rjs { 186 1.1 rjs struct sctp_getaddresses *gaddrs; 187 1.1 rjs struct sockaddr *sa; 188 1.1 rjs int i, sz, fam, argsz; 189 1.1 rjs 190 1.1 rjs if ((flags != SCTP_BINDX_ADD_ADDR) && 191 1.1 rjs (flags != SCTP_BINDX_REM_ADDR)) { 192 1.1 rjs errno = EFAULT; 193 1.1 rjs return(-1); 194 1.1 rjs } 195 1.1 rjs argsz = (sizeof(struct sockaddr_storage) + 196 1.1 rjs sizeof(struct sctp_getaddresses)); 197 1.1 rjs gaddrs = (struct sctp_getaddresses *)calloc(1, argsz); 198 1.1 rjs if (gaddrs == NULL) { 199 1.1 rjs errno = ENOMEM; 200 1.1 rjs return(-1); 201 1.1 rjs } 202 1.1 rjs gaddrs->sget_assoc_id = 0; 203 1.1 rjs sa = addrs; 204 1.1 rjs for (i = 0; i < addrcnt; i++) { 205 1.1 rjs sz = sa->sa_len; 206 1.1 rjs fam = sa->sa_family; 207 1.2 christos ((struct sockaddr_in *)(void *)&addrs[i])->sin_port = ((struct sockaddr_in *)(void *)sa)->sin_port; 208 1.1 rjs if ((fam != AF_INET) && (fam != AF_INET6)) { 209 1.1 rjs errno = EINVAL; 210 1.1 rjs return(-1); 211 1.1 rjs } 212 1.1 rjs memcpy(gaddrs->addr, sa, sz); 213 1.1 rjs if (setsockopt(sd, IPPROTO_SCTP, flags, gaddrs, 214 1.1 rjs (unsigned int)argsz) != 0) { 215 1.1 rjs free(gaddrs); 216 1.1 rjs return(-1); 217 1.1 rjs } 218 1.1 rjs memset(gaddrs, 0, argsz); 219 1.1 rjs sa = (struct sockaddr *)((caddr_t)sa + sz); 220 1.1 rjs } 221 1.1 rjs free(gaddrs); 222 1.1 rjs return(0); 223 1.1 rjs } 224 1.1 rjs 225 1.1 rjs 226 1.1 rjs int 227 1.1 rjs sctp_opt_info(int sd, sctp_assoc_t id, int opt, void *arg, socklen_t *size) 228 1.1 rjs { 229 1.1 rjs if ((opt == SCTP_RTOINFO) || 230 1.1 rjs (opt == SCTP_ASSOCINFO) || 231 1.1 rjs (opt == SCTP_PRIMARY_ADDR) || 232 1.1 rjs (opt == SCTP_SET_PEER_PRIMARY_ADDR) || 233 1.1 rjs (opt == SCTP_PEER_ADDR_PARAMS) || 234 1.1 rjs (opt == SCTP_STATUS) || 235 1.1 rjs (opt == SCTP_GET_PEER_ADDR_INFO)) { 236 1.1 rjs *(sctp_assoc_t *)arg = id; 237 1.1 rjs return(getsockopt2(sd, IPPROTO_SCTP, opt, arg, size)); 238 1.1 rjs } else { 239 1.1 rjs errno = EOPNOTSUPP; 240 1.1 rjs return(-1); 241 1.1 rjs } 242 1.1 rjs } 243 1.1 rjs 244 1.1 rjs int 245 1.1 rjs sctp_getpaddrs(int sd, sctp_assoc_t id, struct sockaddr **raddrs) 246 1.1 rjs { 247 1.1 rjs struct sctp_getaddresses *addrs; 248 1.1 rjs struct sockaddr *sa; 249 1.1 rjs struct sockaddr *re; 250 1.1 rjs sctp_assoc_t asoc; 251 1.1 rjs caddr_t lim; 252 1.1 rjs unsigned int siz; 253 1.1 rjs int cnt; 254 1.1 rjs 255 1.1 rjs if (raddrs == NULL) { 256 1.1 rjs errno = EFAULT; 257 1.1 rjs return(-1); 258 1.1 rjs } 259 1.1 rjs asoc = id; 260 1.1 rjs siz = sizeof(sctp_assoc_t); 261 1.1 rjs if (getsockopt2(sd, IPPROTO_SCTP, SCTP_GET_REMOTE_ADDR_SIZE, 262 1.1 rjs &asoc, &siz) != 0) { 263 1.1 rjs return(-1); 264 1.1 rjs } 265 1.1 rjs siz = (unsigned int)asoc; 266 1.1 rjs siz += sizeof(struct sctp_getaddresses); 267 1.1 rjs addrs = calloc((unsigned long)1, (unsigned long)siz); 268 1.1 rjs if (addrs == NULL) { 269 1.1 rjs errno = ENOMEM; 270 1.1 rjs return(-1); 271 1.1 rjs } 272 1.1 rjs memset(addrs, 0, (size_t)siz); 273 1.1 rjs addrs->sget_assoc_id = id; 274 1.1 rjs /* Now lets get the array of addresses */ 275 1.1 rjs if (getsockopt2(sd, IPPROTO_SCTP, SCTP_GET_PEER_ADDRESSES, 276 1.1 rjs addrs, &siz) != 0) { 277 1.1 rjs free(addrs); 278 1.1 rjs return(-1); 279 1.1 rjs } 280 1.1 rjs re = (struct sockaddr *)&addrs->addr[0]; 281 1.1 rjs *raddrs = re; 282 1.1 rjs cnt = 0; 283 1.1 rjs sa = (struct sockaddr *)&addrs->addr[0]; 284 1.1 rjs lim = (caddr_t)addrs + siz; 285 1.1 rjs while ((caddr_t)sa < lim) { 286 1.1 rjs cnt++; 287 1.1 rjs sa = (struct sockaddr *)((caddr_t)sa + sa->sa_len); 288 1.1 rjs if (sa->sa_len == 0) 289 1.1 rjs break; 290 1.1 rjs } 291 1.1 rjs return(cnt); 292 1.1 rjs } 293 1.1 rjs 294 1.1 rjs void sctp_freepaddrs(struct sockaddr *addrs) 295 1.1 rjs { 296 1.1 rjs /* Take away the hidden association id */ 297 1.1 rjs void *fr_addr; 298 1.1 rjs fr_addr = (void *)((caddr_t)addrs - sizeof(sctp_assoc_t)); 299 1.1 rjs /* Now free it */ 300 1.1 rjs free(fr_addr); 301 1.1 rjs } 302 1.1 rjs 303 1.1 rjs int 304 1.1 rjs sctp_getladdrs (int sd, sctp_assoc_t id, struct sockaddr **raddrs) 305 1.1 rjs { 306 1.1 rjs struct sctp_getaddresses *addrs; 307 1.1 rjs struct sockaddr *re; 308 1.1 rjs caddr_t lim; 309 1.1 rjs struct sockaddr *sa; 310 1.1 rjs int size_of_addresses; 311 1.2 christos socklen_t siz; 312 1.1 rjs int cnt; 313 1.1 rjs 314 1.1 rjs if (raddrs == NULL) { 315 1.1 rjs errno = EFAULT; 316 1.1 rjs return(-1); 317 1.1 rjs } 318 1.1 rjs size_of_addresses = 0; 319 1.1 rjs siz = sizeof(int); 320 1.1 rjs if (getsockopt2(sd, IPPROTO_SCTP, SCTP_GET_LOCAL_ADDR_SIZE, 321 1.1 rjs &size_of_addresses, &siz) != 0) { 322 1.1 rjs return(-1); 323 1.1 rjs } 324 1.1 rjs if (size_of_addresses == 0) { 325 1.1 rjs errno = ENOTCONN; 326 1.1 rjs return(-1); 327 1.1 rjs } 328 1.2 christos siz = (socklen_t)(size_of_addresses + sizeof(struct sockaddr_storage)); 329 1.1 rjs siz += sizeof(struct sctp_getaddresses); 330 1.1 rjs addrs = calloc((unsigned long)1, (unsigned long)siz); 331 1.1 rjs if (addrs == NULL) { 332 1.1 rjs errno = ENOMEM; 333 1.1 rjs return(-1); 334 1.1 rjs } 335 1.1 rjs memset(addrs, 0, (size_t)siz); 336 1.1 rjs addrs->sget_assoc_id = id; 337 1.1 rjs /* Now lets get the array of addresses */ 338 1.1 rjs if (getsockopt2(sd, IPPROTO_SCTP, SCTP_GET_LOCAL_ADDRESSES, addrs, 339 1.1 rjs &siz) != 0) { 340 1.1 rjs free(addrs); 341 1.1 rjs return(-1); 342 1.1 rjs } 343 1.1 rjs re = (struct sockaddr *)&addrs->addr[0]; 344 1.1 rjs *raddrs = re; 345 1.1 rjs cnt = 0; 346 1.1 rjs sa = (struct sockaddr *)&addrs->addr[0]; 347 1.1 rjs lim = (caddr_t)addrs + siz; 348 1.1 rjs while ((caddr_t)sa < lim) { 349 1.1 rjs cnt++; 350 1.1 rjs sa = (struct sockaddr *)((caddr_t)sa + sa->sa_len); 351 1.1 rjs if (sa->sa_len == 0) 352 1.1 rjs break; 353 1.1 rjs } 354 1.1 rjs return(cnt); 355 1.1 rjs } 356 1.1 rjs 357 1.1 rjs void sctp_freeladdrs(struct sockaddr *addrs) 358 1.1 rjs { 359 1.1 rjs /* Take away the hidden association id */ 360 1.1 rjs void *fr_addr; 361 1.1 rjs fr_addr = (void *)((caddr_t)addrs - sizeof(sctp_assoc_t)); 362 1.1 rjs /* Now free it */ 363 1.1 rjs free(fr_addr); 364 1.1 rjs } 365 1.1 rjs 366 1.1 rjs ssize_t 367 1.1 rjs sctp_sendmsg(int s, 368 1.1 rjs const void *data, 369 1.1 rjs size_t len, 370 1.1 rjs const struct sockaddr *to, 371 1.1 rjs socklen_t tolen __attribute__((unused)), 372 1.1 rjs u_int32_t ppid, 373 1.1 rjs u_int32_t flags, 374 1.1 rjs u_int16_t stream_no, 375 1.1 rjs u_int32_t timetolive, 376 1.1 rjs u_int32_t context) 377 1.1 rjs { 378 1.2 christos ssize_t sz; 379 1.1 rjs struct msghdr msg; 380 1.1 rjs struct iovec iov[2]; 381 1.1 rjs char controlVector[256]; 382 1.1 rjs struct sctp_sndrcvinfo *s_info; 383 1.1 rjs struct cmsghdr *cmsg; 384 1.1 rjs struct sockaddr *who=NULL; 385 1.1 rjs union { 386 1.1 rjs struct sockaddr_in in; 387 1.1 rjs struct sockaddr_in6 in6; 388 1.1 rjs } addr; 389 1.1 rjs 390 1.1 rjs #if 0 391 1.1 rjs fprintf(io, "sctp_sendmsg(sd:%d, data:%x, len:%d, to:%x, tolen:%d, ppid:%x, flags:%x str:%d ttl:%d ctx:%x\n", 392 1.1 rjs s, (u_int)data, (int)len, (u_int)to, (int)tolen, ppid, flags, 393 1.1 rjs (int)stream_no, (int)timetolive, (u_int)context); 394 1.1 rjs fflush(io); 395 1.1 rjs #endif 396 1.1 rjs if (to) { 397 1.1 rjs if (to->sa_len == 0) { 398 1.1 rjs /* 399 1.1 rjs * For the lazy app, that did not 400 1.1 rjs * set sa_len, we attempt to set for them. 401 1.1 rjs */ 402 1.1 rjs switch (to->sa_family) { 403 1.1 rjs case AF_INET: 404 1.1 rjs memcpy(&addr, to, sizeof(struct sockaddr_in)); 405 1.1 rjs addr.in.sin_len = sizeof(struct sockaddr_in); 406 1.1 rjs break; 407 1.1 rjs case AF_INET6: 408 1.1 rjs memcpy(&addr, to, sizeof(struct sockaddr_in6)); 409 1.1 rjs addr.in6.sin6_len = sizeof(struct sockaddr_in6); 410 1.1 rjs break; 411 1.1 rjs default: 412 1.1 rjs errno = EAFNOSUPPORT; 413 1.1 rjs return -1; 414 1.1 rjs } 415 1.1 rjs } else { 416 1.1 rjs memcpy (&addr, to, to->sa_len); 417 1.1 rjs } 418 1.2 christos who = (struct sockaddr *)(void *)&addr; 419 1.1 rjs } 420 1.1 rjs iov[0].iov_base = (void *)(unsigned long)data; 421 1.1 rjs iov[0].iov_len = len; 422 1.1 rjs iov[1].iov_base = NULL; 423 1.1 rjs iov[1].iov_len = 0; 424 1.1 rjs 425 1.1 rjs if (to) { 426 1.1 rjs msg.msg_name = (caddr_t)who; 427 1.1 rjs msg.msg_namelen = who->sa_len; 428 1.1 rjs } else { 429 1.1 rjs msg.msg_name = (caddr_t)NULL; 430 1.1 rjs msg.msg_namelen = 0; 431 1.1 rjs } 432 1.1 rjs msg.msg_iov = iov; 433 1.1 rjs msg.msg_iovlen = 1; 434 1.1 rjs msg.msg_control = (caddr_t)controlVector; 435 1.1 rjs 436 1.1 rjs cmsg = (struct cmsghdr *)controlVector; 437 1.1 rjs 438 1.1 rjs cmsg->cmsg_level = IPPROTO_SCTP; 439 1.1 rjs cmsg->cmsg_type = SCTP_SNDRCV; 440 1.1 rjs cmsg->cmsg_len = CMSG_LEN (sizeof(struct sctp_sndrcvinfo) ); 441 1.1 rjs s_info = (struct sctp_sndrcvinfo *)CMSG_DATA(cmsg); 442 1.1 rjs 443 1.1 rjs s_info->sinfo_stream = stream_no; 444 1.1 rjs s_info->sinfo_ssn = 0; 445 1.1 rjs s_info->sinfo_flags = flags; 446 1.1 rjs s_info->sinfo_ppid = ppid; 447 1.1 rjs s_info->sinfo_context = context; 448 1.1 rjs s_info->sinfo_assoc_id = 0; 449 1.1 rjs s_info->sinfo_timetolive = timetolive; 450 1.1 rjs errno = 0; 451 1.1 rjs msg.msg_controllen = cmsg->cmsg_len; 452 1.1 rjs sz = sendmsg(s, &msg, 0); 453 1.1 rjs return(sz); 454 1.1 rjs } 455 1.1 rjs 456 1.1 rjs sctp_assoc_t 457 1.1 rjs sctp_getassocid(int sd, struct sockaddr *sa) 458 1.1 rjs { 459 1.1 rjs struct sctp_paddrparams sp; 460 1.1 rjs socklen_t siz; 461 1.1 rjs 462 1.1 rjs /* First get the assoc id */ 463 1.1 rjs siz = sizeof(struct sctp_paddrparams); 464 1.1 rjs memset(&sp, 0, sizeof(sp)); 465 1.1 rjs memcpy((caddr_t)&sp.spp_address, sa, sa->sa_len); 466 1.1 rjs errno = 0; 467 1.1 rjs if (getsockopt2(sd, IPPROTO_SCTP, SCTP_PEER_ADDR_PARAMS, &sp, &siz) != 0) 468 1.1 rjs return((sctp_assoc_t)0); 469 1.1 rjs /* We depend on the fact that 0 can never be returned */ 470 1.1 rjs return(sp.spp_assoc_id); 471 1.1 rjs } 472 1.1 rjs 473 1.1 rjs 474 1.1 rjs 475 1.1 rjs ssize_t 476 1.1 rjs sctp_send(int sd, const void *data, size_t len, 477 1.1 rjs const struct sctp_sndrcvinfo *sinfo, 478 1.1 rjs int flags) 479 1.1 rjs { 480 1.2 christos ssize_t sz; 481 1.1 rjs struct msghdr msg; 482 1.1 rjs struct iovec iov[2]; 483 1.1 rjs struct sctp_sndrcvinfo *s_info; 484 1.1 rjs char controlVector[256]; 485 1.1 rjs struct cmsghdr *cmsg; 486 1.1 rjs 487 1.1 rjs iov[0].iov_base = (void *)(unsigned long)data; 488 1.1 rjs iov[0].iov_len = len; 489 1.1 rjs iov[1].iov_base = NULL; 490 1.1 rjs iov[1].iov_len = 0; 491 1.1 rjs 492 1.1 rjs msg.msg_name = 0; 493 1.1 rjs msg.msg_namelen = 0; 494 1.1 rjs msg.msg_iov = iov; 495 1.1 rjs msg.msg_iovlen = 1; 496 1.1 rjs msg.msg_control = (caddr_t)controlVector; 497 1.1 rjs 498 1.1 rjs cmsg = (struct cmsghdr *)controlVector; 499 1.1 rjs 500 1.1 rjs cmsg->cmsg_level = IPPROTO_SCTP; 501 1.1 rjs cmsg->cmsg_type = SCTP_SNDRCV; 502 1.1 rjs cmsg->cmsg_len = CMSG_LEN (sizeof(struct sctp_sndrcvinfo) ); 503 1.1 rjs s_info = (struct sctp_sndrcvinfo *)CMSG_DATA(cmsg); 504 1.1 rjs /* copy in the data */ 505 1.1 rjs *s_info = *sinfo; 506 1.1 rjs errno = 0; 507 1.1 rjs msg.msg_controllen = cmsg->cmsg_len; 508 1.1 rjs sz = sendmsg(sd, &msg, flags); 509 1.1 rjs return(sz); 510 1.1 rjs } 511 1.1 rjs 512 1.1 rjs 513 1.1 rjs ssize_t 514 1.1 rjs sctp_sendx(int sd, const void *msg, size_t len, 515 1.1 rjs struct sockaddr *addrs, int addrcnt, 516 1.1 rjs struct sctp_sndrcvinfo *sinfo, 517 1.1 rjs int flags) 518 1.1 rjs { 519 1.2 christos int i, cnt, saved_errno; 520 1.2 christos ssize_t ret; 521 1.1 rjs int add_len; 522 1.1 rjs struct sockaddr *at; 523 1.1 rjs struct sctp_connectx_addrs sca; 524 1.1 rjs 525 1.1 rjs len = 0; 526 1.1 rjs at = addrs; 527 1.1 rjs cnt = 0; 528 1.1 rjs /* validate all the addresses and get the size */ 529 1.1 rjs for (i = 0; i < addrcnt; i++) { 530 1.1 rjs if (at->sa_family == AF_INET) { 531 1.1 rjs add_len = sizeof(struct sockaddr_in); 532 1.1 rjs } else if (at->sa_family == AF_INET6) { 533 1.1 rjs add_len = sizeof(struct sockaddr_in6); 534 1.1 rjs } else { 535 1.1 rjs errno = EINVAL; 536 1.1 rjs return (-1); 537 1.1 rjs } 538 1.1 rjs len += add_len; 539 1.1 rjs at = (struct sockaddr *)((caddr_t)at + add_len); 540 1.1 rjs cnt++; 541 1.1 rjs } 542 1.1 rjs /* do we have any? */ 543 1.1 rjs if (cnt == 0) { 544 1.1 rjs errno = EINVAL; 545 1.1 rjs return(-1); 546 1.1 rjs } 547 1.1 rjs 548 1.1 rjs sca.cx_num = cnt; 549 1.2 christos sca.cx_len = (int)len; 550 1.1 rjs sca.cx_addrs = addrs; 551 1.1 rjs ret = ioctl(sd, SIOCCONNECTXDEL, (void *)&sca); 552 1.1 rjs if (ret != 0) { 553 1.1 rjs return(ret); 554 1.1 rjs } 555 1.1 rjs sinfo->sinfo_assoc_id = sctp_getassocid(sd, addrs); 556 1.1 rjs if (sinfo->sinfo_assoc_id == 0) { 557 1.1 rjs printf("Huh, can't get associd? TSNH!\n"); 558 1.1 rjs (void)setsockopt(sd, IPPROTO_SCTP, SCTP_CONNECT_X_COMPLETE, (void *)addrs, 559 1.1 rjs (unsigned int)addrs->sa_len); 560 1.1 rjs errno = ENOENT; 561 1.1 rjs return (-1); 562 1.1 rjs } 563 1.1 rjs ret = sctp_send(sd, msg, len, sinfo, flags); 564 1.1 rjs saved_errno = errno; 565 1.1 rjs (void)setsockopt(sd, IPPROTO_SCTP, SCTP_CONNECT_X_COMPLETE, (void *)addrs, 566 1.1 rjs (unsigned int)addrs->sa_len); 567 1.1 rjs 568 1.1 rjs errno = saved_errno; 569 1.1 rjs return (ret); 570 1.1 rjs } 571 1.1 rjs 572 1.1 rjs ssize_t 573 1.1 rjs sctp_sendmsgx(int sd, 574 1.1 rjs const void *msg, 575 1.1 rjs size_t len, 576 1.1 rjs struct sockaddr *addrs, 577 1.1 rjs int addrcnt, 578 1.1 rjs u_int32_t ppid, 579 1.1 rjs u_int32_t flags, 580 1.1 rjs u_int16_t stream_no, 581 1.1 rjs u_int32_t timetolive, 582 1.1 rjs u_int32_t context) 583 1.1 rjs { 584 1.1 rjs struct sctp_sndrcvinfo sinfo; 585 1.1 rjs 586 1.1 rjs memset((void *) &sinfo, 0, sizeof(struct sctp_sndrcvinfo)); 587 1.1 rjs sinfo.sinfo_ppid = ppid; 588 1.1 rjs sinfo.sinfo_flags = flags; 589 1.1 rjs sinfo.sinfo_ssn = stream_no; 590 1.1 rjs sinfo.sinfo_timetolive = timetolive; 591 1.1 rjs sinfo.sinfo_context = context; 592 1.1 rjs return sctp_sendx(sd, msg, len, addrs, addrcnt, &sinfo, 0); 593 1.1 rjs } 594 1.1 rjs 595 1.1 rjs ssize_t 596 1.1 rjs sctp_recvmsg (int s, 597 1.1 rjs void *dbuf, 598 1.1 rjs size_t len, 599 1.1 rjs struct sockaddr *from, 600 1.1 rjs socklen_t *fromlen, 601 1.1 rjs struct sctp_sndrcvinfo *sinfo, 602 1.1 rjs int *msg_flags) 603 1.1 rjs { 604 1.1 rjs struct sctp_sndrcvinfo *s_info; 605 1.1 rjs ssize_t sz; 606 1.1 rjs struct msghdr msg; 607 1.1 rjs struct iovec iov[2]; 608 1.1 rjs char controlVector[2048]; 609 1.1 rjs struct cmsghdr *cmsg; 610 1.1 rjs iov[0].iov_base = dbuf; 611 1.1 rjs iov[0].iov_len = len; 612 1.1 rjs iov[1].iov_base = NULL; 613 1.1 rjs iov[1].iov_len = 0; 614 1.1 rjs msg.msg_name = (caddr_t)from; 615 1.1 rjs msg.msg_namelen = *fromlen; 616 1.1 rjs msg.msg_iov = iov; 617 1.1 rjs msg.msg_iovlen = 1; 618 1.1 rjs msg.msg_control = (caddr_t)controlVector; 619 1.1 rjs msg.msg_controllen = sizeof(controlVector); 620 1.1 rjs errno = 0; 621 1.1 rjs sz = recvmsg(s, &msg, 0); 622 1.1 rjs 623 1.1 rjs s_info = NULL; 624 1.1 rjs len = sz; 625 1.1 rjs *msg_flags = msg.msg_flags; 626 1.1 rjs *fromlen = msg.msg_namelen; 627 1.1 rjs if ((msg.msg_controllen) && sinfo) { 628 1.1 rjs /* parse through and see if we find 629 1.1 rjs * the sctp_sndrcvinfo (if the user wants it). 630 1.1 rjs */ 631 1.1 rjs cmsg = (struct cmsghdr *)controlVector; 632 1.1 rjs while (cmsg) { 633 1.1 rjs if (cmsg->cmsg_level == IPPROTO_SCTP) { 634 1.1 rjs if (cmsg->cmsg_type == SCTP_SNDRCV) { 635 1.1 rjs /* Got it */ 636 1.1 rjs s_info = (struct sctp_sndrcvinfo *)CMSG_DATA(cmsg); 637 1.1 rjs /* Copy it to the user */ 638 1.1 rjs *sinfo = *s_info; 639 1.1 rjs break; 640 1.1 rjs } 641 1.1 rjs } 642 1.1 rjs cmsg = CMSG_NXTHDR(&msg, cmsg); 643 1.1 rjs } 644 1.1 rjs } 645 1.1 rjs return(sz); 646 1.1 rjs } 647 1.1 rjs 648 1.1 rjs ssize_t 649 1.1 rjs sctp_recvv(int sd, 650 1.1 rjs const struct iovec *iov, 651 1.1 rjs int iovlen, 652 1.1 rjs struct sockaddr *from, 653 1.1 rjs socklen_t * fromlen, 654 1.1 rjs void *info, 655 1.1 rjs socklen_t * infolen, 656 1.1 rjs unsigned int *infotype, 657 1.1 rjs int *flags) 658 1.1 rjs { 659 1.1 rjs char cmsgbuf[SCTP_CONTROL_VEC_SIZE_RCV]; 660 1.1 rjs struct msghdr msg; 661 1.1 rjs struct cmsghdr *cmsg; 662 1.1 rjs ssize_t ret; 663 1.1 rjs struct sctp_rcvinfo *rcvinfo; 664 1.1 rjs struct sctp_nxtinfo *nxtinfo; 665 1.1 rjs 666 1.1 rjs if (((info != NULL) && (infolen == NULL)) || 667 1.1 rjs ((info == NULL) && (infolen != NULL) && (*infolen != 0)) || 668 1.1 rjs ((info != NULL) && (infotype == NULL))) { 669 1.1 rjs errno = EINVAL; 670 1.1 rjs return (-1); 671 1.1 rjs } 672 1.1 rjs if (infotype) { 673 1.1 rjs *infotype = SCTP_RECVV_NOINFO; 674 1.1 rjs } 675 1.1 rjs msg.msg_name = from; 676 1.1 rjs if (fromlen == NULL) { 677 1.1 rjs msg.msg_namelen = 0; 678 1.1 rjs } else { 679 1.1 rjs msg.msg_namelen = *fromlen; 680 1.1 rjs } 681 1.1 rjs msg.msg_iov = __UNCONST(iov); 682 1.1 rjs msg.msg_iovlen = iovlen; 683 1.1 rjs msg.msg_control = cmsgbuf; 684 1.1 rjs msg.msg_controllen = sizeof(cmsgbuf); 685 1.1 rjs msg.msg_flags = 0; 686 1.1 rjs ret = recvmsg(sd, &msg, *flags); 687 1.1 rjs *flags = msg.msg_flags; 688 1.1 rjs if ((ret > 0) && 689 1.1 rjs (msg.msg_controllen > 0) && 690 1.1 rjs (infotype != NULL) && 691 1.1 rjs (infolen != NULL) && 692 1.1 rjs (*infolen > 0)) { 693 1.1 rjs rcvinfo = NULL; 694 1.1 rjs nxtinfo = NULL; 695 1.1 rjs for (cmsg = CMSG_FIRSTHDR(&msg); cmsg; cmsg = CMSG_NXTHDR(&msg, cmsg)) { 696 1.1 rjs if (cmsg->cmsg_level != IPPROTO_SCTP) { 697 1.1 rjs continue; 698 1.1 rjs } 699 1.1 rjs if (cmsg->cmsg_type == SCTP_RCVINFO) { 700 1.1 rjs rcvinfo = (struct sctp_rcvinfo *)CMSG_DATA(cmsg); 701 1.1 rjs if (nxtinfo != NULL) { 702 1.1 rjs break; 703 1.1 rjs } else { 704 1.1 rjs continue; 705 1.1 rjs } 706 1.1 rjs } 707 1.1 rjs if (cmsg->cmsg_type == SCTP_NXTINFO) { 708 1.1 rjs nxtinfo = (struct sctp_nxtinfo *)CMSG_DATA(cmsg); 709 1.1 rjs if (rcvinfo != NULL) { 710 1.1 rjs break; 711 1.1 rjs } else { 712 1.1 rjs continue; 713 1.1 rjs } 714 1.1 rjs } 715 1.1 rjs } 716 1.1 rjs if (rcvinfo != NULL) { 717 1.1 rjs if ((nxtinfo != NULL) && (*infolen >= sizeof(struct sctp_recvv_rn))) { 718 1.1 rjs struct sctp_recvv_rn *rn_info; 719 1.1 rjs 720 1.1 rjs rn_info = (struct sctp_recvv_rn *)info; 721 1.1 rjs rn_info->recvv_rcvinfo = *rcvinfo; 722 1.1 rjs rn_info->recvv_nxtinfo = *nxtinfo; 723 1.1 rjs *infolen = (socklen_t) sizeof(struct sctp_recvv_rn); 724 1.1 rjs *infotype = SCTP_RECVV_RN; 725 1.1 rjs } else if (*infolen >= sizeof(struct sctp_rcvinfo)) { 726 1.1 rjs memcpy(info, rcvinfo, sizeof(struct sctp_rcvinfo)); 727 1.1 rjs *infolen = (socklen_t) sizeof(struct sctp_rcvinfo); 728 1.1 rjs *infotype = SCTP_RECVV_RCVINFO; 729 1.1 rjs } 730 1.1 rjs } else if (nxtinfo != NULL) { 731 1.1 rjs if (*infolen >= sizeof(struct sctp_nxtinfo)) { 732 1.1 rjs memcpy(info, nxtinfo, sizeof(struct sctp_nxtinfo)); 733 1.1 rjs *infolen = (socklen_t) sizeof(struct sctp_nxtinfo); 734 1.1 rjs *infotype = SCTP_RECVV_NXTINFO; 735 1.1 rjs } 736 1.1 rjs } 737 1.1 rjs } 738 1.1 rjs return (ret); 739 1.1 rjs } 740 1.1 rjs 741 1.1 rjs ssize_t 742 1.1 rjs sctp_sendv(int sd, 743 1.1 rjs const struct iovec *iov, int iovcnt, 744 1.1 rjs struct sockaddr *addrs, int addrcnt, 745 1.1 rjs void *info, socklen_t infolen, unsigned int infotype, 746 1.1 rjs int flags) 747 1.1 rjs { 748 1.1 rjs ssize_t ret; 749 1.1 rjs int i; 750 1.1 rjs socklen_t addr_len; 751 1.1 rjs struct msghdr msg; 752 1.1 rjs in_port_t port; 753 1.1 rjs struct sctp_sendv_spa *spa_info; 754 1.1 rjs struct cmsghdr *cmsg; 755 1.1 rjs char *cmsgbuf; 756 1.1 rjs struct sockaddr *addr; 757 1.1 rjs struct sockaddr_in *addr_in; 758 1.1 rjs struct sockaddr_in6 *addr_in6; 759 1.1 rjs void *assoc_id_ptr; 760 1.1 rjs sctp_assoc_t assoc_id; 761 1.1 rjs 762 1.1 rjs if ((addrcnt < 0) || 763 1.1 rjs (iovcnt < 0) || 764 1.1 rjs ((addrs == NULL) && (addrcnt > 0)) || 765 1.1 rjs ((addrs != NULL) && (addrcnt == 0)) || 766 1.1 rjs ((iov == NULL) && (iovcnt > 0)) || 767 1.1 rjs ((iov != NULL) && (iovcnt == 0))) { 768 1.1 rjs errno = EINVAL; 769 1.1 rjs return (-1); 770 1.1 rjs } 771 1.1 rjs cmsgbuf = malloc(CMSG_SPACE(sizeof(struct sctp_sndinfo)) + 772 1.1 rjs CMSG_SPACE(sizeof(struct sctp_prinfo)) + 773 1.1 rjs CMSG_SPACE(sizeof(struct sctp_authinfo)) + 774 1.1 rjs (size_t)addrcnt * CMSG_SPACE(sizeof(struct in6_addr))); 775 1.1 rjs if (cmsgbuf == NULL) { 776 1.1 rjs errno = ENOMEM; 777 1.1 rjs return (-1); 778 1.1 rjs } 779 1.1 rjs assoc_id_ptr = NULL; 780 1.1 rjs msg.msg_control = cmsgbuf; 781 1.1 rjs msg.msg_controllen = 0; 782 1.1 rjs cmsg = (struct cmsghdr *)cmsgbuf; 783 1.1 rjs switch (infotype) { 784 1.1 rjs case SCTP_SENDV_NOINFO: 785 1.1 rjs if ((infolen != 0) || (info != NULL)) { 786 1.1 rjs free(cmsgbuf); 787 1.1 rjs errno = EINVAL; 788 1.1 rjs return (-1); 789 1.1 rjs } 790 1.1 rjs break; 791 1.1 rjs case SCTP_SENDV_SNDINFO: 792 1.1 rjs if ((info == NULL) || (infolen < sizeof(struct sctp_sndinfo))) { 793 1.1 rjs free(cmsgbuf); 794 1.1 rjs errno = EINVAL; 795 1.1 rjs return (-1); 796 1.1 rjs } 797 1.1 rjs cmsg->cmsg_level = IPPROTO_SCTP; 798 1.1 rjs cmsg->cmsg_type = SCTP_SNDINFO; 799 1.1 rjs cmsg->cmsg_len = CMSG_LEN(sizeof(struct sctp_sndinfo)); 800 1.1 rjs memcpy(CMSG_DATA(cmsg), info, sizeof(struct sctp_sndinfo)); 801 1.1 rjs msg.msg_controllen += CMSG_SPACE(sizeof(struct sctp_sndinfo)); 802 1.1 rjs cmsg = (struct cmsghdr *)((caddr_t)cmsg + CMSG_SPACE(sizeof(struct sctp_sndinfo))); 803 1.1 rjs assoc_id_ptr = &(((struct sctp_sndinfo *)info)->snd_assoc_id); 804 1.1 rjs break; 805 1.1 rjs case SCTP_SENDV_PRINFO: 806 1.1 rjs if ((info == NULL) || (infolen < sizeof(struct sctp_prinfo))) { 807 1.1 rjs free(cmsgbuf); 808 1.1 rjs errno = EINVAL; 809 1.1 rjs return (-1); 810 1.1 rjs } 811 1.1 rjs cmsg->cmsg_level = IPPROTO_SCTP; 812 1.1 rjs cmsg->cmsg_type = SCTP_PRINFO; 813 1.1 rjs cmsg->cmsg_len = CMSG_LEN(sizeof(struct sctp_prinfo)); 814 1.1 rjs memcpy(CMSG_DATA(cmsg), info, sizeof(struct sctp_prinfo)); 815 1.1 rjs msg.msg_controllen += CMSG_SPACE(sizeof(struct sctp_prinfo)); 816 1.1 rjs cmsg = (struct cmsghdr *)((caddr_t)cmsg + CMSG_SPACE(sizeof(struct sctp_prinfo))); 817 1.1 rjs break; 818 1.1 rjs case SCTP_SENDV_AUTHINFO: 819 1.1 rjs if ((info == NULL) || (infolen < sizeof(struct sctp_authinfo))) { 820 1.1 rjs free(cmsgbuf); 821 1.1 rjs errno = EINVAL; 822 1.1 rjs return (-1); 823 1.1 rjs } 824 1.1 rjs cmsg->cmsg_level = IPPROTO_SCTP; 825 1.1 rjs cmsg->cmsg_type = SCTP_AUTHINFO; 826 1.1 rjs cmsg->cmsg_len = CMSG_LEN(sizeof(struct sctp_authinfo)); 827 1.1 rjs memcpy(CMSG_DATA(cmsg), info, sizeof(struct sctp_authinfo)); 828 1.1 rjs msg.msg_controllen += CMSG_SPACE(sizeof(struct sctp_authinfo)); 829 1.1 rjs cmsg = (struct cmsghdr *)((caddr_t)cmsg + CMSG_SPACE(sizeof(struct sctp_authinfo))); 830 1.1 rjs break; 831 1.1 rjs case SCTP_SENDV_SPA: 832 1.1 rjs if ((info == NULL) || (infolen < sizeof(struct sctp_sendv_spa))) { 833 1.1 rjs free(cmsgbuf); 834 1.1 rjs errno = EINVAL; 835 1.1 rjs return (-1); 836 1.1 rjs } 837 1.1 rjs spa_info = (struct sctp_sendv_spa *)info; 838 1.1 rjs if (spa_info->sendv_flags & SCTP_SEND_SNDINFO_VALID) { 839 1.1 rjs cmsg->cmsg_level = IPPROTO_SCTP; 840 1.1 rjs cmsg->cmsg_type = SCTP_SNDINFO; 841 1.1 rjs cmsg->cmsg_len = CMSG_LEN(sizeof(struct sctp_sndinfo)); 842 1.1 rjs memcpy(CMSG_DATA(cmsg), &spa_info->sendv_sndinfo, sizeof(struct sctp_sndinfo)); 843 1.1 rjs msg.msg_controllen += CMSG_SPACE(sizeof(struct sctp_sndinfo)); 844 1.1 rjs cmsg = (struct cmsghdr *)((caddr_t)cmsg + CMSG_SPACE(sizeof(struct sctp_sndinfo))); 845 1.1 rjs assoc_id_ptr = &(spa_info->sendv_sndinfo.snd_assoc_id); 846 1.1 rjs } 847 1.1 rjs if (spa_info->sendv_flags & SCTP_SEND_PRINFO_VALID) { 848 1.1 rjs cmsg->cmsg_level = IPPROTO_SCTP; 849 1.1 rjs cmsg->cmsg_type = SCTP_PRINFO; 850 1.1 rjs cmsg->cmsg_len = CMSG_LEN(sizeof(struct sctp_prinfo)); 851 1.1 rjs memcpy(CMSG_DATA(cmsg), &spa_info->sendv_prinfo, sizeof(struct sctp_prinfo)); 852 1.1 rjs msg.msg_controllen += CMSG_SPACE(sizeof(struct sctp_prinfo)); 853 1.1 rjs cmsg = (struct cmsghdr *)((caddr_t)cmsg + CMSG_SPACE(sizeof(struct sctp_prinfo))); 854 1.1 rjs } 855 1.1 rjs if (spa_info->sendv_flags & SCTP_SEND_AUTHINFO_VALID) { 856 1.1 rjs cmsg->cmsg_level = IPPROTO_SCTP; 857 1.1 rjs cmsg->cmsg_type = SCTP_AUTHINFO; 858 1.1 rjs cmsg->cmsg_len = CMSG_LEN(sizeof(struct sctp_authinfo)); 859 1.1 rjs memcpy(CMSG_DATA(cmsg), &spa_info->sendv_authinfo, sizeof(struct sctp_authinfo)); 860 1.1 rjs msg.msg_controllen += CMSG_SPACE(sizeof(struct sctp_authinfo)); 861 1.1 rjs cmsg = (struct cmsghdr *)((caddr_t)cmsg + CMSG_SPACE(sizeof(struct sctp_authinfo))); 862 1.1 rjs } 863 1.1 rjs break; 864 1.1 rjs default: 865 1.1 rjs free(cmsgbuf); 866 1.1 rjs errno = EINVAL; 867 1.1 rjs return (-1); 868 1.1 rjs } 869 1.1 rjs addr = addrs; 870 1.1 rjs msg.msg_name = NULL; 871 1.1 rjs msg.msg_namelen = 0; 872 1.1 rjs 873 1.1 rjs for (i = 0; i < addrcnt; i++) { 874 1.1 rjs switch (addr->sa_family) { 875 1.1 rjs case AF_INET: 876 1.1 rjs addr_len = (socklen_t) sizeof(struct sockaddr_in); 877 1.2 christos addr_in = (struct sockaddr_in *)(void *)addr; 878 1.1 rjs if (addr_in->sin_len != addr_len) { 879 1.1 rjs free(cmsgbuf); 880 1.1 rjs errno = EINVAL; 881 1.1 rjs return (-1); 882 1.1 rjs } 883 1.1 rjs if (i == 0) { 884 1.1 rjs port = addr_in->sin_port; 885 1.1 rjs } else { 886 1.1 rjs if (port == addr_in->sin_port) { 887 1.1 rjs cmsg->cmsg_level = IPPROTO_SCTP; 888 1.1 rjs cmsg->cmsg_type = SCTP_DSTADDRV4; 889 1.1 rjs cmsg->cmsg_len = CMSG_LEN(sizeof(struct in_addr)); 890 1.1 rjs memcpy(CMSG_DATA(cmsg), &addr_in->sin_addr, sizeof(struct in_addr)); 891 1.1 rjs msg.msg_controllen += CMSG_SPACE(sizeof(struct in_addr)); 892 1.1 rjs cmsg = (struct cmsghdr *)((caddr_t)cmsg + CMSG_SPACE(sizeof(struct in_addr))); 893 1.1 rjs } else { 894 1.1 rjs free(cmsgbuf); 895 1.1 rjs errno = EINVAL; 896 1.1 rjs return (-1); 897 1.1 rjs } 898 1.1 rjs } 899 1.1 rjs break; 900 1.1 rjs case AF_INET6: 901 1.1 rjs addr_len = (socklen_t) sizeof(struct sockaddr_in6); 902 1.2 christos addr_in6 = (struct sockaddr_in6 *)(void *)addr; 903 1.1 rjs if (addr_in6->sin6_len != addr_len) { 904 1.1 rjs free(cmsgbuf); 905 1.1 rjs errno = EINVAL; 906 1.1 rjs return (-1); 907 1.1 rjs } 908 1.1 rjs if (i == 0) { 909 1.1 rjs port = addr_in6->sin6_port; 910 1.1 rjs } else { 911 1.1 rjs if (port == addr_in6->sin6_port) { 912 1.1 rjs cmsg->cmsg_level = IPPROTO_SCTP; 913 1.1 rjs cmsg->cmsg_type = SCTP_DSTADDRV6; 914 1.1 rjs cmsg->cmsg_len = CMSG_LEN(sizeof(struct in6_addr)); 915 1.1 rjs memcpy(CMSG_DATA(cmsg), &addr_in6->sin6_addr, sizeof(struct in6_addr)); 916 1.1 rjs msg.msg_controllen += CMSG_SPACE(sizeof(struct in6_addr)); 917 1.1 rjs cmsg = (struct cmsghdr *)((caddr_t)cmsg + CMSG_SPACE(sizeof(struct in6_addr))); 918 1.1 rjs } else { 919 1.1 rjs free(cmsgbuf); 920 1.1 rjs errno = EINVAL; 921 1.1 rjs return (-1); 922 1.1 rjs } 923 1.1 rjs } 924 1.1 rjs break; 925 1.1 rjs default: 926 1.1 rjs free(cmsgbuf); 927 1.1 rjs errno = EINVAL; 928 1.1 rjs return (-1); 929 1.1 rjs } 930 1.1 rjs if (i == 0) { 931 1.1 rjs msg.msg_name = addr; 932 1.1 rjs msg.msg_namelen = addr_len; 933 1.1 rjs } 934 1.1 rjs addr = (struct sockaddr *)((caddr_t)addr + addr_len); 935 1.1 rjs } 936 1.1 rjs if (msg.msg_controllen == 0) { 937 1.1 rjs msg.msg_control = NULL; 938 1.1 rjs } 939 1.1 rjs msg.msg_iov = __UNCONST(iov); 940 1.1 rjs msg.msg_iovlen = iovcnt; 941 1.1 rjs msg.msg_flags = 0; 942 1.1 rjs ret = sendmsg(sd, &msg, flags); 943 1.1 rjs free(cmsgbuf); 944 1.1 rjs if ((ret >= 0) && (addrs != NULL) && (assoc_id_ptr != NULL)) { 945 1.1 rjs assoc_id = sctp_getassocid(sd, addrs); 946 1.1 rjs memcpy(assoc_id_ptr, &assoc_id, sizeof(assoc_id)); 947 1.1 rjs } 948 1.1 rjs return (ret); 949 1.1 rjs } 950 1.1 rjs 951 1.1 rjs int 952 1.1 rjs sctp_peeloff(int sd, sctp_assoc_t assoc_id) 953 1.1 rjs { 954 1.1 rjs int ret; 955 1.1 rjs uint32_t val; 956 1.1 rjs 957 1.1 rjs val = assoc_id; 958 1.1 rjs ret = ioctl(sd, SIOCPEELOFF, &val); 959 1.1 rjs if (ret == -1) 960 1.1 rjs return ret; 961 1.1 rjs else 962 1.1 rjs return (int) val; 963 1.1 rjs } 964 1.1 rjs 965