1 1.39 rin /* $NetBSD: rfcomm_socket.c,v 1.39 2024/07/05 04:31:53 rin Exp $ */ 2 1.1 gdamore 3 1.1 gdamore /*- 4 1.1 gdamore * Copyright (c) 2006 Itronix Inc. 5 1.1 gdamore * All rights reserved. 6 1.1 gdamore * 7 1.1 gdamore * Written by Iain Hibbert for Itronix Inc. 8 1.1 gdamore * 9 1.1 gdamore * Redistribution and use in source and binary forms, with or without 10 1.1 gdamore * modification, are permitted provided that the following conditions 11 1.1 gdamore * are met: 12 1.1 gdamore * 1. Redistributions of source code must retain the above copyright 13 1.1 gdamore * notice, this list of conditions and the following disclaimer. 14 1.1 gdamore * 2. Redistributions in binary form must reproduce the above copyright 15 1.1 gdamore * notice, this list of conditions and the following disclaimer in the 16 1.1 gdamore * documentation and/or other materials provided with the distribution. 17 1.1 gdamore * 3. The name of Itronix Inc. may not be used to endorse 18 1.1 gdamore * or promote products derived from this software without specific 19 1.1 gdamore * prior written permission. 20 1.1 gdamore * 21 1.1 gdamore * THIS SOFTWARE IS PROVIDED BY ITRONIX INC. ``AS IS'' AND 22 1.1 gdamore * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED 23 1.1 gdamore * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR 24 1.1 gdamore * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL ITRONIX INC. BE LIABLE FOR ANY 25 1.1 gdamore * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES 26 1.1 gdamore * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; 27 1.1 gdamore * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND 28 1.1 gdamore * ON ANY THEORY OF LIABILITY, WHETHER IN 29 1.1 gdamore * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 30 1.1 gdamore * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 31 1.1 gdamore * POSSIBILITY OF SUCH DAMAGE. 32 1.1 gdamore */ 33 1.1 gdamore 34 1.1 gdamore #include <sys/cdefs.h> 35 1.39 rin __KERNEL_RCSID(0, "$NetBSD: rfcomm_socket.c,v 1.39 2024/07/05 04:31:53 rin Exp $"); 36 1.6 plunky 37 1.6 plunky /* load symbolic names */ 38 1.6 plunky #ifdef BLUETOOTH_DEBUG 39 1.6 plunky #define PRUREQUESTS 40 1.6 plunky #define PRCOREQUESTS 41 1.6 plunky #endif 42 1.1 gdamore 43 1.1 gdamore #include <sys/param.h> 44 1.1 gdamore #include <sys/domain.h> 45 1.1 gdamore #include <sys/kernel.h> 46 1.1 gdamore #include <sys/mbuf.h> 47 1.1 gdamore #include <sys/proc.h> 48 1.1 gdamore #include <sys/protosw.h> 49 1.1 gdamore #include <sys/socket.h> 50 1.1 gdamore #include <sys/socketvar.h> 51 1.1 gdamore #include <sys/systm.h> 52 1.1 gdamore 53 1.1 gdamore #include <netbt/bluetooth.h> 54 1.1 gdamore #include <netbt/rfcomm.h> 55 1.1 gdamore 56 1.1 gdamore /**************************************************************************** 57 1.1 gdamore * 58 1.1 gdamore * RFCOMM SOCK_STREAM Sockets - serial line emulation 59 1.1 gdamore * 60 1.1 gdamore */ 61 1.1 gdamore 62 1.1 gdamore static void rfcomm_connecting(void *); 63 1.1 gdamore static void rfcomm_connected(void *); 64 1.1 gdamore static void rfcomm_disconnected(void *, int); 65 1.1 gdamore static void *rfcomm_newconn(void *, struct sockaddr_bt *, struct sockaddr_bt *); 66 1.1 gdamore static void rfcomm_complete(void *, int); 67 1.7 plunky static void rfcomm_linkmode(void *, int); 68 1.1 gdamore static void rfcomm_input(void *, struct mbuf *); 69 1.1 gdamore 70 1.1 gdamore static const struct btproto rfcomm_proto = { 71 1.1 gdamore rfcomm_connecting, 72 1.1 gdamore rfcomm_connected, 73 1.1 gdamore rfcomm_disconnected, 74 1.1 gdamore rfcomm_newconn, 75 1.1 gdamore rfcomm_complete, 76 1.7 plunky rfcomm_linkmode, 77 1.1 gdamore rfcomm_input, 78 1.1 gdamore }; 79 1.1 gdamore 80 1.1 gdamore /* sysctl variables */ 81 1.1 gdamore int rfcomm_sendspace = 4096; 82 1.1 gdamore int rfcomm_recvspace = 4096; 83 1.1 gdamore 84 1.13 rmind static int 85 1.15 rmind rfcomm_attach(struct socket *so, int proto) 86 1.13 rmind { 87 1.13 rmind int error; 88 1.13 rmind 89 1.13 rmind KASSERT(so->so_pcb == NULL); 90 1.13 rmind 91 1.13 rmind if (so->so_lock == NULL) { 92 1.13 rmind mutex_obj_hold(bt_lock); 93 1.13 rmind so->so_lock = bt_lock; 94 1.13 rmind solock(so); 95 1.13 rmind } 96 1.13 rmind KASSERT(solocked(so)); 97 1.13 rmind 98 1.13 rmind /* 99 1.13 rmind * Since we have nothing to add, we attach the DLC 100 1.13 rmind * structure directly to our PCB pointer. 101 1.13 rmind */ 102 1.13 rmind error = soreserve(so, rfcomm_sendspace, rfcomm_recvspace); 103 1.13 rmind if (error) 104 1.13 rmind return error; 105 1.13 rmind 106 1.15 rmind error = rfcomm_attach_pcb((struct rfcomm_dlc **)&so->so_pcb, 107 1.13 rmind &rfcomm_proto, so); 108 1.13 rmind if (error) 109 1.13 rmind return error; 110 1.13 rmind 111 1.32 rtr error = rfcomm_rcvd_pcb(so->so_pcb, sbspace(&so->so_rcv)); 112 1.13 rmind if (error) { 113 1.15 rmind rfcomm_detach_pcb((struct rfcomm_dlc **)&so->so_pcb); 114 1.13 rmind return error; 115 1.13 rmind } 116 1.13 rmind return 0; 117 1.13 rmind } 118 1.13 rmind 119 1.13 rmind static void 120 1.15 rmind rfcomm_detach(struct socket *so) 121 1.13 rmind { 122 1.14 martin KASSERT(so->so_pcb != NULL); 123 1.15 rmind rfcomm_detach_pcb((struct rfcomm_dlc **)&so->so_pcb); 124 1.13 rmind KASSERT(so->so_pcb == NULL); 125 1.13 rmind } 126 1.13 rmind 127 1.17 rtr static int 128 1.35 rtr rfcomm_accept(struct socket *so, struct sockaddr *nam) 129 1.24 rtr { 130 1.24 rtr struct rfcomm_dlc *pcb = so->so_pcb; 131 1.24 rtr 132 1.24 rtr KASSERT(solocked(so)); 133 1.24 rtr KASSERT(nam != NULL); 134 1.24 rtr 135 1.24 rtr if (pcb == NULL) 136 1.24 rtr return EINVAL; 137 1.24 rtr 138 1.35 rtr return rfcomm_peeraddr_pcb(pcb, (struct sockaddr_bt *)nam); 139 1.24 rtr } 140 1.24 rtr 141 1.24 rtr static int 142 1.34 rtr rfcomm_bind(struct socket *so, struct sockaddr *nam, struct lwp *l) 143 1.26 rtr { 144 1.26 rtr struct rfcomm_dlc *pcb = so->so_pcb; 145 1.34 rtr struct sockaddr_bt *sa = (struct sockaddr_bt *)nam; 146 1.26 rtr 147 1.26 rtr KASSERT(solocked(so)); 148 1.26 rtr KASSERT(nam != NULL); 149 1.26 rtr 150 1.26 rtr if (pcb == NULL) 151 1.26 rtr return EINVAL; 152 1.26 rtr 153 1.26 rtr if (sa->bt_len != sizeof(struct sockaddr_bt)) 154 1.26 rtr return EINVAL; 155 1.26 rtr 156 1.26 rtr if (sa->bt_family != AF_BLUETOOTH) 157 1.26 rtr return EAFNOSUPPORT; 158 1.26 rtr 159 1.26 rtr return rfcomm_bind_pcb(pcb, sa); 160 1.26 rtr } 161 1.26 rtr 162 1.26 rtr static int 163 1.30 rtr rfcomm_listen(struct socket *so, struct lwp *l) 164 1.26 rtr { 165 1.26 rtr struct rfcomm_dlc *pcb = so->so_pcb; 166 1.26 rtr 167 1.26 rtr KASSERT(solocked(so)); 168 1.26 rtr 169 1.26 rtr if (pcb == NULL) 170 1.26 rtr return EINVAL; 171 1.26 rtr 172 1.26 rtr return rfcomm_listen_pcb(pcb); 173 1.26 rtr } 174 1.26 rtr 175 1.26 rtr static int 176 1.37 rtr rfcomm_connect(struct socket *so, struct sockaddr *nam, struct lwp *l) 177 1.27 rtr { 178 1.27 rtr struct rfcomm_dlc *pcb = so->so_pcb; 179 1.37 rtr struct sockaddr_bt *sa = (struct sockaddr_bt *)nam; 180 1.27 rtr 181 1.27 rtr KASSERT(solocked(so)); 182 1.27 rtr KASSERT(nam != NULL); 183 1.27 rtr 184 1.27 rtr if (pcb == NULL) 185 1.27 rtr return EINVAL; 186 1.27 rtr 187 1.27 rtr if (sa->bt_len != sizeof(struct sockaddr_bt)) 188 1.27 rtr return EINVAL; 189 1.27 rtr 190 1.27 rtr if (sa->bt_family != AF_BLUETOOTH) 191 1.27 rtr return EAFNOSUPPORT; 192 1.27 rtr 193 1.27 rtr soisconnecting(so); 194 1.27 rtr return rfcomm_connect_pcb(pcb, sa); 195 1.27 rtr } 196 1.27 rtr 197 1.27 rtr static int 198 1.33 rtr rfcomm_connect2(struct socket *so, struct socket *so2) 199 1.33 rtr { 200 1.33 rtr struct rfcomm_dlc *pcb = so->so_pcb; 201 1.33 rtr 202 1.33 rtr KASSERT(solocked(so)); 203 1.33 rtr 204 1.33 rtr if (pcb == NULL) 205 1.33 rtr return EINVAL; 206 1.33 rtr 207 1.33 rtr return EOPNOTSUPP; 208 1.33 rtr } 209 1.33 rtr 210 1.33 rtr static int 211 1.28 rtr rfcomm_disconnect(struct socket *so) 212 1.28 rtr { 213 1.28 rtr struct rfcomm_dlc *pcb = so->so_pcb; 214 1.28 rtr 215 1.28 rtr KASSERT(solocked(so)); 216 1.28 rtr 217 1.28 rtr if (pcb == NULL) 218 1.28 rtr return EINVAL; 219 1.28 rtr 220 1.28 rtr soisdisconnecting(so); 221 1.28 rtr return rfcomm_disconnect_pcb(pcb, so->so_linger); 222 1.28 rtr } 223 1.28 rtr 224 1.28 rtr static int 225 1.28 rtr rfcomm_shutdown(struct socket *so) 226 1.28 rtr { 227 1.28 rtr KASSERT(solocked(so)); 228 1.28 rtr 229 1.28 rtr socantsendmore(so); 230 1.28 rtr return 0; 231 1.28 rtr } 232 1.28 rtr 233 1.28 rtr static int 234 1.28 rtr rfcomm_abort(struct socket *so) 235 1.28 rtr { 236 1.28 rtr struct rfcomm_dlc *pcb = so->so_pcb; 237 1.28 rtr 238 1.28 rtr KASSERT(solocked(so)); 239 1.28 rtr 240 1.28 rtr if (pcb == NULL) 241 1.28 rtr return EINVAL; 242 1.28 rtr 243 1.28 rtr rfcomm_disconnect_pcb(pcb, 0); 244 1.28 rtr soisdisconnected(so); 245 1.28 rtr rfcomm_detach(so); 246 1.28 rtr return 0; 247 1.28 rtr } 248 1.28 rtr 249 1.28 rtr static int 250 1.22 rtr rfcomm_ioctl(struct socket *so, u_long cmd, void *nam, struct ifnet *ifp) 251 1.17 rtr { 252 1.17 rtr return EPASSTHROUGH; 253 1.17 rtr } 254 1.17 rtr 255 1.19 rtr static int 256 1.19 rtr rfcomm_stat(struct socket *so, struct stat *ub) 257 1.19 rtr { 258 1.22 rtr KASSERT(solocked(so)); 259 1.22 rtr 260 1.21 rtr return 0; 261 1.19 rtr } 262 1.19 rtr 263 1.23 rtr static int 264 1.35 rtr rfcomm_peeraddr(struct socket *so, struct sockaddr *nam) 265 1.23 rtr { 266 1.23 rtr struct rfcomm_dlc *pcb = so->so_pcb; 267 1.23 rtr 268 1.23 rtr KASSERT(solocked(so)); 269 1.23 rtr KASSERT(pcb != NULL); 270 1.23 rtr KASSERT(nam != NULL); 271 1.23 rtr 272 1.35 rtr return rfcomm_peeraddr_pcb(pcb, (struct sockaddr_bt *)nam); 273 1.23 rtr } 274 1.23 rtr 275 1.23 rtr static int 276 1.35 rtr rfcomm_sockaddr(struct socket *so, struct sockaddr *nam) 277 1.23 rtr { 278 1.23 rtr struct rfcomm_dlc *pcb = so->so_pcb; 279 1.23 rtr 280 1.23 rtr KASSERT(solocked(so)); 281 1.23 rtr KASSERT(pcb != NULL); 282 1.23 rtr KASSERT(nam != NULL); 283 1.23 rtr 284 1.35 rtr return rfcomm_sockaddr_pcb(pcb, (struct sockaddr_bt *)nam); 285 1.23 rtr } 286 1.23 rtr 287 1.25 rtr static int 288 1.32 rtr rfcomm_rcvd(struct socket *so, int flags, struct lwp *l) 289 1.32 rtr { 290 1.32 rtr struct rfcomm_dlc *pcb = so->so_pcb; 291 1.32 rtr 292 1.32 rtr KASSERT(solocked(so)); 293 1.32 rtr 294 1.32 rtr if (pcb == NULL) 295 1.32 rtr return EINVAL; 296 1.32 rtr 297 1.32 rtr return rfcomm_rcvd_pcb(pcb, sbspace(&so->so_rcv)); 298 1.32 rtr } 299 1.32 rtr 300 1.32 rtr static int 301 1.25 rtr rfcomm_recvoob(struct socket *so, struct mbuf *m, int flags) 302 1.25 rtr { 303 1.25 rtr KASSERT(solocked(so)); 304 1.25 rtr 305 1.25 rtr return EOPNOTSUPP; 306 1.25 rtr } 307 1.25 rtr 308 1.25 rtr static int 309 1.37 rtr rfcomm_send(struct socket *so, struct mbuf *m, struct sockaddr *nam, 310 1.31 rtr struct mbuf *control, struct lwp *l) 311 1.31 rtr { 312 1.31 rtr struct rfcomm_dlc *pcb = so->so_pcb; 313 1.31 rtr int err = 0; 314 1.31 rtr struct mbuf *m0; 315 1.31 rtr 316 1.31 rtr KASSERT(solocked(so)); 317 1.31 rtr KASSERT(m != NULL); 318 1.31 rtr 319 1.39 rin m_freem(control); /* no use for that */ 320 1.31 rtr 321 1.31 rtr if (pcb == NULL) { 322 1.31 rtr err = EINVAL; 323 1.31 rtr goto release; 324 1.31 rtr } 325 1.31 rtr 326 1.31 rtr m0 = m_copypacket(m, M_DONTWAIT); 327 1.31 rtr if (m0 == NULL) { 328 1.31 rtr err = ENOMEM; 329 1.31 rtr goto release; 330 1.31 rtr } 331 1.31 rtr 332 1.31 rtr sbappendstream(&so->so_snd, m); 333 1.31 rtr return rfcomm_send_pcb(pcb, m0); 334 1.31 rtr 335 1.31 rtr release: 336 1.31 rtr m_freem(m); 337 1.31 rtr return err; 338 1.31 rtr } 339 1.31 rtr 340 1.31 rtr static int 341 1.25 rtr rfcomm_sendoob(struct socket *so, struct mbuf *m, struct mbuf *control) 342 1.25 rtr { 343 1.25 rtr KASSERT(solocked(so)); 344 1.25 rtr 345 1.38 martin m_freem(m); 346 1.38 martin m_freem(control); 347 1.25 rtr 348 1.25 rtr return EOPNOTSUPP; 349 1.25 rtr } 350 1.25 rtr 351 1.33 rtr static int 352 1.33 rtr rfcomm_purgeif(struct socket *so, struct ifnet *ifp) 353 1.33 rtr { 354 1.33 rtr 355 1.33 rtr return EOPNOTSUPP; 356 1.33 rtr } 357 1.33 rtr 358 1.1 gdamore /* 359 1.10 plunky * rfcomm_ctloutput(req, socket, sockopt) 360 1.1 gdamore * 361 1.1 gdamore */ 362 1.1 gdamore int 363 1.10 plunky rfcomm_ctloutput(int req, struct socket *so, struct sockopt *sopt) 364 1.1 gdamore { 365 1.1 gdamore struct rfcomm_dlc *pcb = so->so_pcb; 366 1.1 gdamore int err = 0; 367 1.1 gdamore 368 1.1 gdamore DPRINTFN(2, "%s\n", prcorequests[req]); 369 1.1 gdamore 370 1.4 plunky if (pcb == NULL) 371 1.4 plunky return EINVAL; 372 1.4 plunky 373 1.10 plunky if (sopt->sopt_level != BTPROTO_RFCOMM) 374 1.4 plunky return ENOPROTOOPT; 375 1.1 gdamore 376 1.1 gdamore switch(req) { 377 1.1 gdamore case PRCO_GETOPT: 378 1.10 plunky err = rfcomm_getopt(pcb, sopt); 379 1.1 gdamore break; 380 1.1 gdamore 381 1.1 gdamore case PRCO_SETOPT: 382 1.10 plunky err = rfcomm_setopt(pcb, sopt); 383 1.1 gdamore break; 384 1.1 gdamore 385 1.1 gdamore default: 386 1.4 plunky err = ENOPROTOOPT; 387 1.1 gdamore break; 388 1.1 gdamore } 389 1.1 gdamore 390 1.1 gdamore return err; 391 1.1 gdamore } 392 1.1 gdamore 393 1.1 gdamore /********************************************************************** 394 1.1 gdamore * 395 1.1 gdamore * RFCOMM callbacks 396 1.1 gdamore */ 397 1.1 gdamore 398 1.1 gdamore static void 399 1.3 christos rfcomm_connecting(void *arg) 400 1.1 gdamore { 401 1.1 gdamore /* struct socket *so = arg; */ 402 1.1 gdamore 403 1.5 plunky KASSERT(arg != NULL); 404 1.1 gdamore DPRINTF("Connecting\n"); 405 1.1 gdamore } 406 1.1 gdamore 407 1.1 gdamore static void 408 1.1 gdamore rfcomm_connected(void *arg) 409 1.1 gdamore { 410 1.1 gdamore struct socket *so = arg; 411 1.1 gdamore 412 1.5 plunky KASSERT(so != NULL); 413 1.1 gdamore DPRINTF("Connected\n"); 414 1.1 gdamore soisconnected(so); 415 1.1 gdamore } 416 1.1 gdamore 417 1.1 gdamore static void 418 1.1 gdamore rfcomm_disconnected(void *arg, int err) 419 1.1 gdamore { 420 1.1 gdamore struct socket *so = arg; 421 1.1 gdamore 422 1.5 plunky KASSERT(so != NULL); 423 1.1 gdamore DPRINTF("Disconnected\n"); 424 1.1 gdamore 425 1.1 gdamore so->so_error = err; 426 1.1 gdamore soisdisconnected(so); 427 1.1 gdamore } 428 1.1 gdamore 429 1.1 gdamore static void * 430 1.3 christos rfcomm_newconn(void *arg, struct sockaddr_bt *laddr, 431 1.3 christos struct sockaddr_bt *raddr) 432 1.1 gdamore { 433 1.1 gdamore struct socket *so = arg; 434 1.1 gdamore 435 1.1 gdamore DPRINTF("New Connection\n"); 436 1.11 rmind so = sonewconn(so, false); 437 1.1 gdamore if (so == NULL) 438 1.1 gdamore return NULL; 439 1.1 gdamore 440 1.1 gdamore soisconnecting(so); 441 1.1 gdamore 442 1.1 gdamore return so->so_pcb; 443 1.1 gdamore } 444 1.1 gdamore 445 1.1 gdamore /* 446 1.1 gdamore * rfcomm_complete(rfcomm_dlc, length) 447 1.1 gdamore * 448 1.1 gdamore * length bytes are sent and may be removed from socket buffer 449 1.1 gdamore */ 450 1.1 gdamore static void 451 1.1 gdamore rfcomm_complete(void *arg, int length) 452 1.1 gdamore { 453 1.1 gdamore struct socket *so = arg; 454 1.1 gdamore 455 1.1 gdamore sbdrop(&so->so_snd, length); 456 1.1 gdamore sowwakeup(so); 457 1.1 gdamore } 458 1.1 gdamore 459 1.1 gdamore /* 460 1.7 plunky * rfcomm_linkmode(rfcomm_dlc, new) 461 1.7 plunky * 462 1.7 plunky * link mode change notification. 463 1.7 plunky */ 464 1.7 plunky static void 465 1.7 plunky rfcomm_linkmode(void *arg, int new) 466 1.7 plunky { 467 1.7 plunky struct socket *so = arg; 468 1.10 plunky struct sockopt sopt; 469 1.7 plunky int mode; 470 1.7 plunky 471 1.7 plunky DPRINTF("auth %s, encrypt %s, secure %s\n", 472 1.7 plunky (new & RFCOMM_LM_AUTH ? "on" : "off"), 473 1.7 plunky (new & RFCOMM_LM_ENCRYPT ? "on" : "off"), 474 1.7 plunky (new & RFCOMM_LM_SECURE ? "on" : "off")); 475 1.7 plunky 476 1.10 plunky sockopt_init(&sopt, BTPROTO_RFCOMM, SO_RFCOMM_LM, 0); 477 1.10 plunky (void)rfcomm_getopt(so->so_pcb, &sopt); 478 1.10 plunky (void)sockopt_getint(&sopt, &mode); 479 1.10 plunky sockopt_destroy(&sopt); 480 1.10 plunky 481 1.7 plunky if (((mode & RFCOMM_LM_AUTH) && !(new & RFCOMM_LM_AUTH)) 482 1.7 plunky || ((mode & RFCOMM_LM_ENCRYPT) && !(new & RFCOMM_LM_ENCRYPT)) 483 1.7 plunky || ((mode & RFCOMM_LM_SECURE) && !(new & RFCOMM_LM_SECURE))) 484 1.28 rtr rfcomm_disconnect_pcb(so->so_pcb, 0); 485 1.7 plunky } 486 1.7 plunky 487 1.7 plunky /* 488 1.1 gdamore * rfcomm_input(rfcomm_dlc, mbuf) 489 1.1 gdamore */ 490 1.1 gdamore static void 491 1.1 gdamore rfcomm_input(void *arg, struct mbuf *m) 492 1.1 gdamore { 493 1.1 gdamore struct socket *so = arg; 494 1.1 gdamore 495 1.5 plunky KASSERT(so != NULL); 496 1.1 gdamore 497 1.1 gdamore if (m->m_pkthdr.len > sbspace(&so->so_rcv)) { 498 1.1 gdamore printf("%s: %d bytes dropped (socket buffer full)\n", 499 1.1 gdamore __func__, m->m_pkthdr.len); 500 1.1 gdamore m_freem(m); 501 1.1 gdamore return; 502 1.1 gdamore } 503 1.1 gdamore 504 1.1 gdamore DPRINTFN(10, "received %d bytes\n", m->m_pkthdr.len); 505 1.1 gdamore 506 1.1 gdamore sbappendstream(&so->so_rcv, m); 507 1.1 gdamore sorwakeup(so); 508 1.1 gdamore } 509 1.12 rmind 510 1.16 rmind PR_WRAP_USRREQS(rfcomm) 511 1.12 rmind 512 1.16 rmind #define rfcomm_attach rfcomm_attach_wrapper 513 1.16 rmind #define rfcomm_detach rfcomm_detach_wrapper 514 1.24 rtr #define rfcomm_accept rfcomm_accept_wrapper 515 1.26 rtr #define rfcomm_bind rfcomm_bind_wrapper 516 1.26 rtr #define rfcomm_listen rfcomm_listen_wrapper 517 1.27 rtr #define rfcomm_connect rfcomm_connect_wrapper 518 1.33 rtr #define rfcomm_connect2 rfcomm_connect2_wrapper 519 1.28 rtr #define rfcomm_disconnect rfcomm_disconnect_wrapper 520 1.28 rtr #define rfcomm_shutdown rfcomm_shutdown_wrapper 521 1.28 rtr #define rfcomm_abort rfcomm_abort_wrapper 522 1.17 rtr #define rfcomm_ioctl rfcomm_ioctl_wrapper 523 1.19 rtr #define rfcomm_stat rfcomm_stat_wrapper 524 1.23 rtr #define rfcomm_peeraddr rfcomm_peeraddr_wrapper 525 1.23 rtr #define rfcomm_sockaddr rfcomm_sockaddr_wrapper 526 1.32 rtr #define rfcomm_rcvd rfcomm_rcvd_wrapper 527 1.25 rtr #define rfcomm_recvoob rfcomm_recvoob_wrapper 528 1.31 rtr #define rfcomm_send rfcomm_send_wrapper 529 1.25 rtr #define rfcomm_sendoob rfcomm_sendoob_wrapper 530 1.33 rtr #define rfcomm_purgeif rfcomm_purgeif_wrapper 531 1.12 rmind 532 1.12 rmind const struct pr_usrreqs rfcomm_usrreqs = { 533 1.15 rmind .pr_attach = rfcomm_attach, 534 1.15 rmind .pr_detach = rfcomm_detach, 535 1.24 rtr .pr_accept = rfcomm_accept, 536 1.26 rtr .pr_bind = rfcomm_bind, 537 1.26 rtr .pr_listen = rfcomm_listen, 538 1.27 rtr .pr_connect = rfcomm_connect, 539 1.33 rtr .pr_connect2 = rfcomm_connect2, 540 1.28 rtr .pr_disconnect = rfcomm_disconnect, 541 1.28 rtr .pr_shutdown = rfcomm_shutdown, 542 1.28 rtr .pr_abort = rfcomm_abort, 543 1.17 rtr .pr_ioctl = rfcomm_ioctl, 544 1.19 rtr .pr_stat = rfcomm_stat, 545 1.23 rtr .pr_peeraddr = rfcomm_peeraddr, 546 1.23 rtr .pr_sockaddr = rfcomm_sockaddr, 547 1.32 rtr .pr_rcvd = rfcomm_rcvd, 548 1.25 rtr .pr_recvoob = rfcomm_recvoob, 549 1.31 rtr .pr_send = rfcomm_send, 550 1.25 rtr .pr_sendoob = rfcomm_sendoob, 551 1.33 rtr .pr_purgeif = rfcomm_purgeif, 552 1.12 rmind }; 553