1 /* 2 * ng_btsocket_hci_raw.c 3 */ 4 5 /*- 6 * SPDX-License-Identifier: BSD-2-Clause-FreeBSD 7 * 8 * Copyright (c) 2001-2002 Maksim Yevmenkin <m_evmenkin@yahoo.com> 9 * All rights reserved. 10 * 11 * Redistribution and use in source and binary forms, with or without 12 * modification, are permitted provided that the following conditions 13 * are met: 14 * 1. Redistributions of source code must retain the above copyright 15 * notice, this list of conditions and the following disclaimer. 16 * 2. Redistributions in binary form must reproduce the above copyright 17 * notice, this list of conditions and the following disclaimer in the 18 * documentation and/or other materials provided with the distribution. 19 * 20 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR 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 AUTHOR 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 * $Id: ng_btsocket_hci_raw.c,v 1.14 2003/09/14 23:29:06 max Exp $ 33 * $FreeBSD$ 34 */ 35 36 #include <sys/param.h> 37 #include <sys/systm.h> 38 #include <sys/bitstring.h> 39 #include <sys/domain.h> 40 #include <sys/endian.h> 41 #include <sys/errno.h> 42 #include <sys/filedesc.h> 43 #include <sys/ioccom.h> 44 #include <sys/kernel.h> 45 #include <sys/lock.h> 46 #include <sys/malloc.h> 47 #include <sys/mbuf.h> 48 #include <sys/mutex.h> 49 #include <sys/priv.h> 50 #include <sys/protosw.h> 51 #include <sys/queue.h> 52 #include <sys/socket.h> 53 #include <sys/socketvar.h> 54 #include <sys/sysctl.h> 55 #include <sys/taskqueue.h> 56 57 #include <net/vnet.h> 58 59 #include <netgraph/ng_message.h> 60 #include <netgraph/netgraph.h> 61 #include <netgraph/bluetooth/include/ng_bluetooth.h> 62 #include <netgraph/bluetooth/include/ng_hci.h> 63 #include <netgraph/bluetooth/include/ng_l2cap.h> 64 #include <netgraph/bluetooth/include/ng_btsocket.h> 65 #include <netgraph/bluetooth/include/ng_btsocket_hci_raw.h> 66 67 /* MALLOC define */ 68 #ifdef NG_SEPARATE_MALLOC 69 static MALLOC_DEFINE(M_NETGRAPH_BTSOCKET_HCI_RAW, "netgraph_btsocks_hci_raw", 70 "Netgraph Bluetooth raw HCI sockets"); 71 #else 72 #define M_NETGRAPH_BTSOCKET_HCI_RAW M_NETGRAPH 73 #endif /* NG_SEPARATE_MALLOC */ 74 75 /* Netgraph node methods */ 76 static ng_constructor_t ng_btsocket_hci_raw_node_constructor; 77 static ng_rcvmsg_t ng_btsocket_hci_raw_node_rcvmsg; 78 static ng_shutdown_t ng_btsocket_hci_raw_node_shutdown; 79 static ng_newhook_t ng_btsocket_hci_raw_node_newhook; 80 static ng_connect_t ng_btsocket_hci_raw_node_connect; 81 static ng_rcvdata_t ng_btsocket_hci_raw_node_rcvdata; 82 static ng_disconnect_t ng_btsocket_hci_raw_node_disconnect; 83 84 static void ng_btsocket_hci_raw_input (void *, int); 85 static void ng_btsocket_hci_raw_output(node_p, hook_p, void *, int); 86 static void ng_btsocket_hci_raw_savctl(ng_btsocket_hci_raw_pcb_p, 87 struct mbuf **, 88 struct mbuf *); 89 static int ng_btsocket_hci_raw_filter(ng_btsocket_hci_raw_pcb_p, 90 struct mbuf *, int); 91 92 #define ng_btsocket_hci_raw_wakeup_input_task() \ 93 taskqueue_enqueue(taskqueue_swi, &ng_btsocket_hci_raw_task) 94 95 /* Security filter */ 96 struct ng_btsocket_hci_raw_sec_filter { 97 bitstr_t bit_decl(events, 0xff); 98 bitstr_t bit_decl(commands[0x3f], 0x3ff); 99 }; 100 101 /* Netgraph type descriptor */ 102 static struct ng_type typestruct = { 103 .version = NG_ABI_VERSION, 104 .name = NG_BTSOCKET_HCI_RAW_NODE_TYPE, 105 .constructor = ng_btsocket_hci_raw_node_constructor, 106 .rcvmsg = ng_btsocket_hci_raw_node_rcvmsg, 107 .shutdown = ng_btsocket_hci_raw_node_shutdown, 108 .newhook = ng_btsocket_hci_raw_node_newhook, 109 .connect = ng_btsocket_hci_raw_node_connect, 110 .rcvdata = ng_btsocket_hci_raw_node_rcvdata, 111 .disconnect = ng_btsocket_hci_raw_node_disconnect, 112 }; 113 114 /* Globals */ 115 static u_int32_t ng_btsocket_hci_raw_debug_level; 116 static u_int32_t ng_btsocket_hci_raw_ioctl_timeout; 117 static node_p ng_btsocket_hci_raw_node; 118 static struct ng_bt_itemq ng_btsocket_hci_raw_queue; 119 static struct mtx ng_btsocket_hci_raw_queue_mtx; 120 static struct task ng_btsocket_hci_raw_task; 121 static LIST_HEAD(, ng_btsocket_hci_raw_pcb) ng_btsocket_hci_raw_sockets; 122 static struct mtx ng_btsocket_hci_raw_sockets_mtx; 123 static u_int32_t ng_btsocket_hci_raw_token; 124 static struct mtx ng_btsocket_hci_raw_token_mtx; 125 static struct ng_btsocket_hci_raw_sec_filter *ng_btsocket_hci_raw_sec_filter; 126 static struct timeval ng_btsocket_hci_raw_lasttime; 127 static int ng_btsocket_hci_raw_curpps; 128 129 /* Sysctl tree */ 130 SYSCTL_DECL(_net_bluetooth_hci_sockets); 131 static SYSCTL_NODE(_net_bluetooth_hci_sockets, OID_AUTO, raw, 132 CTLFLAG_RW | CTLFLAG_MPSAFE, 0, 133 "Bluetooth raw HCI sockets family"); 134 SYSCTL_UINT(_net_bluetooth_hci_sockets_raw, OID_AUTO, debug_level, CTLFLAG_RW, 135 &ng_btsocket_hci_raw_debug_level, NG_BTSOCKET_WARN_LEVEL, 136 "Bluetooth raw HCI sockets debug level"); 137 SYSCTL_UINT(_net_bluetooth_hci_sockets_raw, OID_AUTO, ioctl_timeout, CTLFLAG_RW, 138 &ng_btsocket_hci_raw_ioctl_timeout, 5, 139 "Bluetooth raw HCI sockets ioctl timeout"); 140 SYSCTL_UINT(_net_bluetooth_hci_sockets_raw, OID_AUTO, queue_len, CTLFLAG_RD, 141 &ng_btsocket_hci_raw_queue.len, 0, 142 "Bluetooth raw HCI sockets input queue length"); 143 SYSCTL_UINT(_net_bluetooth_hci_sockets_raw, OID_AUTO, queue_maxlen, CTLFLAG_RD, 144 &ng_btsocket_hci_raw_queue.maxlen, 0, 145 "Bluetooth raw HCI sockets input queue max. length"); 146 SYSCTL_UINT(_net_bluetooth_hci_sockets_raw, OID_AUTO, queue_drops, CTLFLAG_RD, 147 &ng_btsocket_hci_raw_queue.drops, 0, 148 "Bluetooth raw HCI sockets input queue drops"); 149 150 /* Debug */ 151 #define NG_BTSOCKET_HCI_RAW_INFO \ 152 if (ng_btsocket_hci_raw_debug_level >= NG_BTSOCKET_INFO_LEVEL && \ 153 ppsratecheck(&ng_btsocket_hci_raw_lasttime, &ng_btsocket_hci_raw_curpps, 1)) \ 154 printf 155 156 #define NG_BTSOCKET_HCI_RAW_WARN \ 157 if (ng_btsocket_hci_raw_debug_level >= NG_BTSOCKET_WARN_LEVEL && \ 158 ppsratecheck(&ng_btsocket_hci_raw_lasttime, &ng_btsocket_hci_raw_curpps, 1)) \ 159 printf 160 161 #define NG_BTSOCKET_HCI_RAW_ERR \ 162 if (ng_btsocket_hci_raw_debug_level >= NG_BTSOCKET_ERR_LEVEL && \ 163 ppsratecheck(&ng_btsocket_hci_raw_lasttime, &ng_btsocket_hci_raw_curpps, 1)) \ 164 printf 165 166 #define NG_BTSOCKET_HCI_RAW_ALERT \ 167 if (ng_btsocket_hci_raw_debug_level >= NG_BTSOCKET_ALERT_LEVEL && \ 168 ppsratecheck(&ng_btsocket_hci_raw_lasttime, &ng_btsocket_hci_raw_curpps, 1)) \ 169 printf 170 171 /**************************************************************************** 172 **************************************************************************** 173 ** Netgraph specific 174 **************************************************************************** 175 ****************************************************************************/ 176 177 /* 178 * Netgraph node constructor. Do not allow to create node of this type. 179 */ 180 181 static int 182 ng_btsocket_hci_raw_node_constructor(node_p node) 183 { 184 return (EINVAL); 185 } /* ng_btsocket_hci_raw_node_constructor */ 186 187 /* 188 * Netgraph node destructor. Just let old node go and create new fresh one. 189 */ 190 191 static int 192 ng_btsocket_hci_raw_node_shutdown(node_p node) 193 { 194 int error = 0; 195 196 NG_NODE_UNREF(node); 197 198 error = ng_make_node_common(&typestruct, &ng_btsocket_hci_raw_node); 199 if (error != 0) { 200 NG_BTSOCKET_HCI_RAW_ALERT( 201 "%s: Could not create Netgraph node, error=%d\n", __func__, error); 202 203 ng_btsocket_hci_raw_node = NULL; 204 205 return (ENOMEM); 206 } 207 208 error = ng_name_node(ng_btsocket_hci_raw_node, 209 NG_BTSOCKET_HCI_RAW_NODE_TYPE); 210 if (error != 0) { 211 NG_BTSOCKET_HCI_RAW_ALERT( 212 "%s: Could not name Netgraph node, error=%d\n", __func__, error); 213 214 NG_NODE_UNREF(ng_btsocket_hci_raw_node); 215 ng_btsocket_hci_raw_node = NULL; 216 217 return (EINVAL); 218 } 219 220 return (0); 221 } /* ng_btsocket_hci_raw_node_shutdown */ 222 223 /* 224 * Create new hook. Just say "yes" 225 */ 226 227 static int 228 ng_btsocket_hci_raw_node_newhook(node_p node, hook_p hook, char const *name) 229 { 230 return (0); 231 } /* ng_btsocket_hci_raw_node_newhook */ 232 233 /* 234 * Connect hook. Just say "yes" 235 */ 236 237 static int 238 ng_btsocket_hci_raw_node_connect(hook_p hook) 239 { 240 return (0); 241 } /* ng_btsocket_hci_raw_node_connect */ 242 243 /* 244 * Disconnect hook 245 */ 246 247 static int 248 ng_btsocket_hci_raw_node_disconnect(hook_p hook) 249 { 250 return (0); 251 } /* ng_btsocket_hci_raw_node_disconnect */ 252 253 /* 254 * Receive control message. 255 * Make sure it is a message from HCI node and it is a response. 256 * Enqueue item and schedule input task. 257 */ 258 259 static int 260 ng_btsocket_hci_raw_node_rcvmsg(node_p node, item_p item, hook_p lasthook) 261 { 262 struct ng_mesg *msg = NGI_MSG(item); /* item still has message */ 263 int error = 0; 264 265 /* 266 * Check for empty sockets list creates LOR when both sender and 267 * receiver device are connected to the same host, so remove it 268 * for now 269 */ 270 271 if (msg != NULL && 272 (msg->header.typecookie == NGM_HCI_COOKIE || 273 msg->header.typecookie == NGM_GENERIC_COOKIE) && 274 msg->header.flags & NGF_RESP) { 275 if (msg->header.token == 0) { 276 NG_FREE_ITEM(item); 277 return (0); 278 } 279 280 mtx_lock(&ng_btsocket_hci_raw_queue_mtx); 281 if (NG_BT_ITEMQ_FULL(&ng_btsocket_hci_raw_queue)) { 282 NG_BTSOCKET_HCI_RAW_ERR( 283 "%s: Input queue is full\n", __func__); 284 285 NG_BT_ITEMQ_DROP(&ng_btsocket_hci_raw_queue); 286 NG_FREE_ITEM(item); 287 error = ENOBUFS; 288 } else { 289 NG_BT_ITEMQ_ENQUEUE(&ng_btsocket_hci_raw_queue, item); 290 error = ng_btsocket_hci_raw_wakeup_input_task(); 291 } 292 mtx_unlock(&ng_btsocket_hci_raw_queue_mtx); 293 } else { 294 NG_FREE_ITEM(item); 295 error = EINVAL; 296 } 297 298 return (error); 299 } /* ng_btsocket_hci_raw_node_rcvmsg */ 300 301 /* 302 * Receive packet from the one of our hook. 303 * Prepend every packet with sockaddr_hci and record sender's node name. 304 * Enqueue item and schedule input task. 305 */ 306 307 static int 308 ng_btsocket_hci_raw_node_rcvdata(hook_p hook, item_p item) 309 { 310 struct mbuf *nam = NULL; 311 int error; 312 313 /* 314 * Check for empty sockets list creates LOR when both sender and 315 * receiver device are connected to the same host, so remove it 316 * for now 317 */ 318 319 MGET(nam, M_NOWAIT, MT_SONAME); 320 if (nam != NULL) { 321 struct sockaddr_hci *sa = mtod(nam, struct sockaddr_hci *); 322 323 nam->m_len = sizeof(struct sockaddr_hci); 324 325 sa->hci_len = sizeof(*sa); 326 sa->hci_family = AF_BLUETOOTH; 327 strlcpy(sa->hci_node, NG_PEER_NODE_NAME(hook), 328 sizeof(sa->hci_node)); 329 330 NGI_GET_M(item, nam->m_next); 331 NGI_M(item) = nam; 332 333 mtx_lock(&ng_btsocket_hci_raw_queue_mtx); 334 if (NG_BT_ITEMQ_FULL(&ng_btsocket_hci_raw_queue)) { 335 NG_BTSOCKET_HCI_RAW_ERR( 336 "%s: Input queue is full\n", __func__); 337 338 NG_BT_ITEMQ_DROP(&ng_btsocket_hci_raw_queue); 339 NG_FREE_ITEM(item); 340 error = ENOBUFS; 341 } else { 342 NG_BT_ITEMQ_ENQUEUE(&ng_btsocket_hci_raw_queue, item); 343 error = ng_btsocket_hci_raw_wakeup_input_task(); 344 } 345 mtx_unlock(&ng_btsocket_hci_raw_queue_mtx); 346 } else { 347 NG_BTSOCKET_HCI_RAW_ERR( 348 "%s: Failed to allocate address mbuf\n", __func__); 349 350 NG_FREE_ITEM(item); 351 error = ENOBUFS; 352 } 353 354 return (error); 355 } /* ng_btsocket_hci_raw_node_rcvdata */ 356 357 /**************************************************************************** 358 **************************************************************************** 359 ** Sockets specific 360 **************************************************************************** 361 ****************************************************************************/ 362 363 /* 364 * Get next token. We need token to avoid theoretical race where process 365 * submits ioctl() message then interrupts ioctl() and re-submits another 366 * ioctl() on the same socket *before* first ioctl() complete. 367 */ 368 369 static void 370 ng_btsocket_hci_raw_get_token(u_int32_t *token) 371 { 372 mtx_lock(&ng_btsocket_hci_raw_token_mtx); 373 374 if (++ ng_btsocket_hci_raw_token == 0) 375 ng_btsocket_hci_raw_token = 1; 376 377 *token = ng_btsocket_hci_raw_token; 378 379 mtx_unlock(&ng_btsocket_hci_raw_token_mtx); 380 } /* ng_btsocket_hci_raw_get_token */ 381 382 /* 383 * Send Netgraph message to the node - do not expect reply 384 */ 385 386 static int 387 ng_btsocket_hci_raw_send_ngmsg(char *path, int cmd, void *arg, int arglen) 388 { 389 struct ng_mesg *msg = NULL; 390 int error = 0; 391 392 NG_MKMESSAGE(msg, NGM_HCI_COOKIE, cmd, arglen, M_NOWAIT); 393 if (msg == NULL) 394 return (ENOMEM); 395 396 if (arg != NULL && arglen > 0) 397 bcopy(arg, msg->data, arglen); 398 399 NG_SEND_MSG_PATH(error, ng_btsocket_hci_raw_node, msg, path, 0); 400 401 return (error); 402 } /* ng_btsocket_hci_raw_send_ngmsg */ 403 404 /* 405 * Send Netgraph message to the node (no data) and wait for reply 406 */ 407 408 static int 409 ng_btsocket_hci_raw_send_sync_ngmsg(ng_btsocket_hci_raw_pcb_p pcb, char *path, 410 int cmd, void *rsp, int rsplen) 411 { 412 struct ng_mesg *msg = NULL; 413 int error = 0; 414 415 mtx_assert(&pcb->pcb_mtx, MA_OWNED); 416 417 NG_MKMESSAGE(msg, NGM_HCI_COOKIE, cmd, 0, M_NOWAIT); 418 if (msg == NULL) 419 return (ENOMEM); 420 421 ng_btsocket_hci_raw_get_token(&msg->header.token); 422 pcb->token = msg->header.token; 423 pcb->msg = NULL; 424 425 NG_SEND_MSG_PATH(error, ng_btsocket_hci_raw_node, msg, path, 0); 426 if (error != 0) { 427 pcb->token = 0; 428 return (error); 429 } 430 431 error = msleep(&pcb->msg, &pcb->pcb_mtx, PZERO|PCATCH, "hcictl", 432 ng_btsocket_hci_raw_ioctl_timeout * hz); 433 pcb->token = 0; 434 435 if (error != 0) 436 return (error); 437 438 if (pcb->msg != NULL && pcb->msg->header.cmd == cmd) 439 bcopy(pcb->msg->data, rsp, rsplen); 440 else 441 error = EINVAL; 442 443 NG_FREE_MSG(pcb->msg); /* checks for != NULL */ 444 445 return (0); 446 } /* ng_btsocket_hci_raw_send_sync_ngmsg */ 447 448 /* 449 * Create control information for the packet 450 */ 451 452 static void 453 ng_btsocket_hci_raw_savctl(ng_btsocket_hci_raw_pcb_p pcb, struct mbuf **ctl, 454 struct mbuf *m) 455 { 456 int dir; 457 struct timeval tv; 458 459 mtx_assert(&pcb->pcb_mtx, MA_OWNED); 460 461 if (pcb->flags & NG_BTSOCKET_HCI_RAW_DIRECTION) { 462 dir = (m->m_flags & M_PROTO1)? 1 : 0; 463 *ctl = sbcreatecontrol((caddr_t) &dir, sizeof(dir), 464 SCM_HCI_RAW_DIRECTION, SOL_HCI_RAW); 465 if (*ctl != NULL) 466 ctl = &((*ctl)->m_next); 467 } 468 469 if (pcb->so->so_options & SO_TIMESTAMP) { 470 microtime(&tv); 471 *ctl = sbcreatecontrol((caddr_t) &tv, sizeof(tv), 472 SCM_TIMESTAMP, SOL_SOCKET); 473 if (*ctl != NULL) 474 ctl = &((*ctl)->m_next); 475 } 476 } /* ng_btsocket_hci_raw_savctl */ 477 478 /* 479 * Raw HCI sockets data input routine 480 */ 481 482 static void 483 ng_btsocket_hci_raw_data_input(struct mbuf *nam) 484 { 485 ng_btsocket_hci_raw_pcb_p pcb = NULL; 486 struct mbuf *m0 = NULL, *m = NULL; 487 struct sockaddr_hci *sa = NULL; 488 489 m0 = nam->m_next; 490 nam->m_next = NULL; 491 492 KASSERT((nam->m_type == MT_SONAME), 493 ("%s: m_type=%d\n", __func__, nam->m_type)); 494 KASSERT((m0->m_flags & M_PKTHDR), 495 ("%s: m_flags=%#x\n", __func__, m0->m_flags)); 496 497 sa = mtod(nam, struct sockaddr_hci *); 498 499 mtx_lock(&ng_btsocket_hci_raw_sockets_mtx); 500 501 LIST_FOREACH(pcb, &ng_btsocket_hci_raw_sockets, next) { 502 503 mtx_lock(&pcb->pcb_mtx); 504 505 /* 506 * If socket was bound then check address and 507 * make sure it matches. 508 */ 509 510 if (pcb->addr.hci_node[0] != 0 && 511 strcmp(sa->hci_node, pcb->addr.hci_node) != 0) 512 goto next; 513 514 /* 515 * Check packet against filters 516 * XXX do we have to call m_pullup() here? 517 */ 518 519 if (ng_btsocket_hci_raw_filter(pcb, m0, 1) != 0) 520 goto next; 521 522 /* 523 * Make a copy of the packet, append to the socket's 524 * receive queue and wakeup socket. sbappendaddr() 525 * will check if socket has enough buffer space. 526 */ 527 528 m = m_dup(m0, M_NOWAIT); 529 if (m != NULL) { 530 struct mbuf *ctl = NULL; 531 532 ng_btsocket_hci_raw_savctl(pcb, &ctl, m); 533 534 if (sbappendaddr(&pcb->so->so_rcv, 535 (struct sockaddr *) sa, m, ctl)) 536 sorwakeup(pcb->so); 537 else { 538 NG_BTSOCKET_HCI_RAW_INFO( 539 "%s: sbappendaddr() failed\n", __func__); 540 541 NG_FREE_M(m); 542 NG_FREE_M(ctl); 543 } 544 } 545 next: 546 mtx_unlock(&pcb->pcb_mtx); 547 } 548 549 mtx_unlock(&ng_btsocket_hci_raw_sockets_mtx); 550 551 NG_FREE_M(nam); 552 NG_FREE_M(m0); 553 } /* ng_btsocket_hci_raw_data_input */ 554 555 /* 556 * Raw HCI sockets message input routine 557 */ 558 559 static void 560 ng_btsocket_hci_raw_msg_input(struct ng_mesg *msg) 561 { 562 ng_btsocket_hci_raw_pcb_p pcb = NULL; 563 564 mtx_lock(&ng_btsocket_hci_raw_sockets_mtx); 565 566 LIST_FOREACH(pcb, &ng_btsocket_hci_raw_sockets, next) { 567 mtx_lock(&pcb->pcb_mtx); 568 569 if (msg->header.token == pcb->token) { 570 pcb->msg = msg; 571 wakeup(&pcb->msg); 572 573 mtx_unlock(&pcb->pcb_mtx); 574 mtx_unlock(&ng_btsocket_hci_raw_sockets_mtx); 575 576 return; 577 } 578 579 mtx_unlock(&pcb->pcb_mtx); 580 } 581 582 mtx_unlock(&ng_btsocket_hci_raw_sockets_mtx); 583 584 NG_FREE_MSG(msg); /* checks for != NULL */ 585 } /* ng_btsocket_hci_raw_msg_input */ 586 587 /* 588 * Raw HCI sockets input routines 589 */ 590 591 static void 592 ng_btsocket_hci_raw_input(void *context, int pending) 593 { 594 item_p item = NULL; 595 596 for (;;) { 597 mtx_lock(&ng_btsocket_hci_raw_queue_mtx); 598 NG_BT_ITEMQ_DEQUEUE(&ng_btsocket_hci_raw_queue, item); 599 mtx_unlock(&ng_btsocket_hci_raw_queue_mtx); 600 601 if (item == NULL) 602 break; 603 604 switch(item->el_flags & NGQF_TYPE) { 605 case NGQF_DATA: { 606 struct mbuf *m = NULL; 607 608 NGI_GET_M(item, m); 609 ng_btsocket_hci_raw_data_input(m); 610 } break; 611 612 case NGQF_MESG: { 613 struct ng_mesg *msg = NULL; 614 615 NGI_GET_MSG(item, msg); 616 ng_btsocket_hci_raw_msg_input(msg); 617 } break; 618 619 default: 620 KASSERT(0, 621 ("%s: invalid item type=%ld\n", __func__, (item->el_flags & NGQF_TYPE))); 622 break; 623 } 624 625 NG_FREE_ITEM(item); 626 } 627 } /* ng_btsocket_hci_raw_input */ 628 629 /* 630 * Raw HCI sockets output routine 631 */ 632 633 static void 634 ng_btsocket_hci_raw_output(node_p node, hook_p hook, void *arg1, int arg2) 635 { 636 struct mbuf *nam = (struct mbuf *) arg1, *m = NULL; 637 struct sockaddr_hci *sa = NULL; 638 int error; 639 640 m = nam->m_next; 641 nam->m_next = NULL; 642 643 KASSERT((nam->m_type == MT_SONAME), 644 ("%s: m_type=%d\n", __func__, nam->m_type)); 645 KASSERT((m->m_flags & M_PKTHDR), 646 ("%s: m_flags=%#x\n", __func__, m->m_flags)); 647 648 sa = mtod(nam, struct sockaddr_hci *); 649 650 /* 651 * Find downstream hook 652 * XXX For now access node hook list directly. Should be safe because 653 * we used ng_send_fn() and we should have exclusive lock on the node. 654 */ 655 656 LIST_FOREACH(hook, &node->nd_hooks, hk_hooks) { 657 if (hook == NULL || NG_HOOK_NOT_VALID(hook) || 658 NG_NODE_NOT_VALID(NG_PEER_NODE(hook))) 659 continue; 660 661 if (strcmp(sa->hci_node, NG_PEER_NODE_NAME(hook)) == 0) { 662 NG_SEND_DATA_ONLY(error, hook, m); /* sets m to NULL */ 663 break; 664 } 665 } 666 667 NG_FREE_M(nam); /* check for != NULL */ 668 NG_FREE_M(m); 669 } /* ng_btsocket_hci_raw_output */ 670 671 /* 672 * Check frame against security and socket filters. 673 * d (direction bit) == 1 means incoming frame. 674 */ 675 676 static int 677 ng_btsocket_hci_raw_filter(ng_btsocket_hci_raw_pcb_p pcb, struct mbuf *m, int d) 678 { 679 int type, event, opcode; 680 681 mtx_assert(&pcb->pcb_mtx, MA_OWNED); 682 683 switch ((type = *mtod(m, u_int8_t *))) { 684 case NG_HCI_CMD_PKT: 685 if (!(pcb->flags & NG_BTSOCKET_HCI_RAW_PRIVILEGED)) { 686 opcode = le16toh(mtod(m, ng_hci_cmd_pkt_t *)->opcode); 687 688 if (!bit_test( 689 ng_btsocket_hci_raw_sec_filter->commands[NG_HCI_OGF(opcode) - 1], 690 NG_HCI_OCF(opcode) - 1)) 691 return (EPERM); 692 } 693 694 if (d && !bit_test(pcb->filter.packet_mask, NG_HCI_CMD_PKT - 1)) 695 return (EPERM); 696 break; 697 698 case NG_HCI_ACL_DATA_PKT: 699 case NG_HCI_SCO_DATA_PKT: 700 if (!(pcb->flags & NG_BTSOCKET_HCI_RAW_PRIVILEGED) || 701 !bit_test(pcb->filter.packet_mask, type - 1) || 702 !d) 703 return (EPERM); 704 break; 705 706 case NG_HCI_EVENT_PKT: 707 if (!d) 708 return (EINVAL); 709 710 event = mtod(m, ng_hci_event_pkt_t *)->event - 1; 711 712 if (!(pcb->flags & NG_BTSOCKET_HCI_RAW_PRIVILEGED)) 713 if (!bit_test(ng_btsocket_hci_raw_sec_filter->events, event)) 714 return (EPERM); 715 716 if (!bit_test(pcb->filter.event_mask, event)) 717 return (EPERM); 718 break; 719 720 default: 721 return (EINVAL); 722 } 723 724 return (0); 725 } /* ng_btsocket_hci_raw_filter */ 726 727 /* 728 * Initialize everything 729 */ 730 731 void 732 ng_btsocket_hci_raw_init(void) 733 { 734 bitstr_t *f = NULL; 735 int error = 0; 736 737 /* Skip initialization of globals for non-default instances. */ 738 if (!IS_DEFAULT_VNET(curvnet)) 739 return; 740 741 ng_btsocket_hci_raw_node = NULL; 742 ng_btsocket_hci_raw_debug_level = NG_BTSOCKET_WARN_LEVEL; 743 ng_btsocket_hci_raw_ioctl_timeout = 5; 744 745 /* Register Netgraph node type */ 746 error = ng_newtype(&typestruct); 747 if (error != 0) { 748 NG_BTSOCKET_HCI_RAW_ALERT( 749 "%s: Could not register Netgraph node type, error=%d\n", __func__, error); 750 751 return; 752 } 753 754 /* Create Netgrapg node */ 755 error = ng_make_node_common(&typestruct, &ng_btsocket_hci_raw_node); 756 if (error != 0) { 757 NG_BTSOCKET_HCI_RAW_ALERT( 758 "%s: Could not create Netgraph node, error=%d\n", __func__, error); 759 760 ng_btsocket_hci_raw_node = NULL; 761 762 return; 763 } 764 765 error = ng_name_node(ng_btsocket_hci_raw_node, 766 NG_BTSOCKET_HCI_RAW_NODE_TYPE); 767 if (error != 0) { 768 NG_BTSOCKET_HCI_RAW_ALERT( 769 "%s: Could not name Netgraph node, error=%d\n", __func__, error); 770 771 NG_NODE_UNREF(ng_btsocket_hci_raw_node); 772 ng_btsocket_hci_raw_node = NULL; 773 774 return; 775 } 776 777 /* Create input queue */ 778 NG_BT_ITEMQ_INIT(&ng_btsocket_hci_raw_queue, 300); 779 mtx_init(&ng_btsocket_hci_raw_queue_mtx, 780 "btsocks_hci_raw_queue_mtx", NULL, MTX_DEF); 781 TASK_INIT(&ng_btsocket_hci_raw_task, 0, 782 ng_btsocket_hci_raw_input, NULL); 783 784 /* Create list of sockets */ 785 LIST_INIT(&ng_btsocket_hci_raw_sockets); 786 mtx_init(&ng_btsocket_hci_raw_sockets_mtx, 787 "btsocks_hci_raw_sockets_mtx", NULL, MTX_DEF); 788 789 /* Tokens */ 790 ng_btsocket_hci_raw_token = 0; 791 mtx_init(&ng_btsocket_hci_raw_token_mtx, 792 "btsocks_hci_raw_token_mtx", NULL, MTX_DEF); 793 794 /* 795 * Security filter 796 * XXX never free()ed 797 */ 798 ng_btsocket_hci_raw_sec_filter = 799 malloc(sizeof(struct ng_btsocket_hci_raw_sec_filter), 800 M_NETGRAPH_BTSOCKET_HCI_RAW, M_NOWAIT|M_ZERO); 801 if (ng_btsocket_hci_raw_sec_filter == NULL) { 802 printf("%s: Could not allocate security filter!\n", __func__); 803 return; 804 } 805 806 /* 807 * XXX How paranoid can we get? 808 * 809 * Initialize security filter. If bit is set in the mask then 810 * unprivileged socket is allowed to send (receive) this command 811 * (event). 812 */ 813 814 /* Enable all events */ 815 memset(&ng_btsocket_hci_raw_sec_filter->events, 0xff, 816 sizeof(ng_btsocket_hci_raw_sec_filter->events)/ 817 sizeof(ng_btsocket_hci_raw_sec_filter->events[0])); 818 819 /* Disable some critical events */ 820 f = ng_btsocket_hci_raw_sec_filter->events; 821 bit_clear(f, NG_HCI_EVENT_RETURN_LINK_KEYS - 1); 822 bit_clear(f, NG_HCI_EVENT_LINK_KEY_NOTIFICATION - 1); 823 bit_clear(f, NG_HCI_EVENT_VENDOR - 1); 824 825 /* Commands - Link control */ 826 f = ng_btsocket_hci_raw_sec_filter->commands[NG_HCI_OGF_LINK_CONTROL-1]; 827 bit_set(f, NG_HCI_OCF_INQUIRY - 1); 828 bit_set(f, NG_HCI_OCF_INQUIRY_CANCEL - 1); 829 bit_set(f, NG_HCI_OCF_PERIODIC_INQUIRY - 1); 830 bit_set(f, NG_HCI_OCF_EXIT_PERIODIC_INQUIRY - 1); 831 bit_set(f, NG_HCI_OCF_REMOTE_NAME_REQ - 1); 832 bit_set(f, NG_HCI_OCF_READ_REMOTE_FEATURES - 1); 833 bit_set(f, NG_HCI_OCF_READ_REMOTE_VER_INFO - 1); 834 bit_set(f, NG_HCI_OCF_READ_CLOCK_OFFSET - 1); 835 836 /* Commands - Link policy */ 837 f = ng_btsocket_hci_raw_sec_filter->commands[NG_HCI_OGF_LINK_POLICY-1]; 838 bit_set(f, NG_HCI_OCF_ROLE_DISCOVERY - 1); 839 bit_set(f, NG_HCI_OCF_READ_LINK_POLICY_SETTINGS - 1); 840 841 /* Commands - Host controller and baseband */ 842 f = ng_btsocket_hci_raw_sec_filter->commands[NG_HCI_OGF_HC_BASEBAND-1]; 843 bit_set(f, NG_HCI_OCF_READ_PIN_TYPE - 1); 844 bit_set(f, NG_HCI_OCF_READ_LOCAL_NAME - 1); 845 bit_set(f, NG_HCI_OCF_READ_CON_ACCEPT_TIMO - 1); 846 bit_set(f, NG_HCI_OCF_READ_PAGE_TIMO - 1); 847 bit_set(f, NG_HCI_OCF_READ_SCAN_ENABLE - 1); 848 bit_set(f, NG_HCI_OCF_READ_PAGE_SCAN_ACTIVITY - 1); 849 bit_set(f, NG_HCI_OCF_READ_INQUIRY_SCAN_ACTIVITY - 1); 850 bit_set(f, NG_HCI_OCF_READ_AUTH_ENABLE - 1); 851 bit_set(f, NG_HCI_OCF_READ_ENCRYPTION_MODE - 1); 852 bit_set(f, NG_HCI_OCF_READ_UNIT_CLASS - 1); 853 bit_set(f, NG_HCI_OCF_READ_VOICE_SETTINGS - 1); 854 bit_set(f, NG_HCI_OCF_READ_AUTO_FLUSH_TIMO - 1); 855 bit_set(f, NG_HCI_OCF_READ_NUM_BROADCAST_RETRANS - 1); 856 bit_set(f, NG_HCI_OCF_READ_HOLD_MODE_ACTIVITY - 1); 857 bit_set(f, NG_HCI_OCF_READ_XMIT_LEVEL - 1); 858 bit_set(f, NG_HCI_OCF_READ_SCO_FLOW_CONTROL - 1); 859 bit_set(f, NG_HCI_OCF_READ_LINK_SUPERVISION_TIMO - 1); 860 bit_set(f, NG_HCI_OCF_READ_SUPPORTED_IAC_NUM - 1); 861 bit_set(f, NG_HCI_OCF_READ_IAC_LAP - 1); 862 bit_set(f, NG_HCI_OCF_READ_PAGE_SCAN_PERIOD - 1); 863 bit_set(f, NG_HCI_OCF_READ_PAGE_SCAN - 1); 864 865 /* Commands - Informational */ 866 f = ng_btsocket_hci_raw_sec_filter->commands[NG_HCI_OGF_INFO - 1]; 867 bit_set(f, NG_HCI_OCF_READ_LOCAL_VER - 1); 868 bit_set(f, NG_HCI_OCF_READ_LOCAL_FEATURES - 1); 869 bit_set(f, NG_HCI_OCF_READ_BUFFER_SIZE - 1); 870 bit_set(f, NG_HCI_OCF_READ_COUNTRY_CODE - 1); 871 bit_set(f, NG_HCI_OCF_READ_BDADDR - 1); 872 873 /* Commands - Status */ 874 f = ng_btsocket_hci_raw_sec_filter->commands[NG_HCI_OGF_STATUS - 1]; 875 bit_set(f, NG_HCI_OCF_READ_FAILED_CONTACT_CNTR - 1); 876 bit_set(f, NG_HCI_OCF_GET_LINK_QUALITY - 1); 877 bit_set(f, NG_HCI_OCF_READ_RSSI - 1); 878 879 /* Commands - Testing */ 880 f = ng_btsocket_hci_raw_sec_filter->commands[NG_HCI_OGF_TESTING - 1]; 881 bit_set(f, NG_HCI_OCF_READ_LOOPBACK_MODE - 1); 882 /*Commands - LE*/ 883 f = ng_btsocket_hci_raw_sec_filter->commands[NG_HCI_OGF_LE -1]; 884 885 } /* ng_btsocket_hci_raw_init */ 886 887 /* 888 * Abort connection on socket 889 */ 890 891 void 892 ng_btsocket_hci_raw_abort(struct socket *so) 893 { 894 } /* ng_btsocket_hci_raw_abort */ 895 896 void 897 ng_btsocket_hci_raw_close(struct socket *so) 898 { 899 } /* ng_btsocket_hci_raw_close */ 900 901 /* 902 * Create new raw HCI socket 903 */ 904 905 int 906 ng_btsocket_hci_raw_attach(struct socket *so, int proto, struct thread *td) 907 { 908 ng_btsocket_hci_raw_pcb_p pcb = so2hci_raw_pcb(so); 909 int error = 0; 910 911 if (pcb != NULL) 912 return (EISCONN); 913 914 if (ng_btsocket_hci_raw_node == NULL) 915 return (EPROTONOSUPPORT); 916 if (proto != BLUETOOTH_PROTO_HCI) 917 return (EPROTONOSUPPORT); 918 if (so->so_type != SOCK_RAW) 919 return (ESOCKTNOSUPPORT); 920 921 error = soreserve(so, NG_BTSOCKET_HCI_RAW_SENDSPACE, 922 NG_BTSOCKET_HCI_RAW_RECVSPACE); 923 if (error != 0) 924 return (error); 925 926 pcb = malloc(sizeof(*pcb), 927 M_NETGRAPH_BTSOCKET_HCI_RAW, M_NOWAIT|M_ZERO); 928 if (pcb == NULL) 929 return (ENOMEM); 930 931 so->so_pcb = (caddr_t) pcb; 932 pcb->so = so; 933 934 if (priv_check(td, PRIV_NETBLUETOOTH_RAW) == 0) 935 pcb->flags |= NG_BTSOCKET_HCI_RAW_PRIVILEGED; 936 937 /* 938 * Set default socket filter. By default socket only accepts HCI 939 * Command_Complete and Command_Status event packets. 940 */ 941 942 bit_set(pcb->filter.event_mask, NG_HCI_EVENT_COMMAND_COMPL - 1); 943 bit_set(pcb->filter.event_mask, NG_HCI_EVENT_COMMAND_STATUS - 1); 944 945 mtx_init(&pcb->pcb_mtx, "btsocks_hci_raw_pcb_mtx", NULL, MTX_DEF); 946 947 mtx_lock(&ng_btsocket_hci_raw_sockets_mtx); 948 LIST_INSERT_HEAD(&ng_btsocket_hci_raw_sockets, pcb, next); 949 mtx_unlock(&ng_btsocket_hci_raw_sockets_mtx); 950 951 return (0); 952 } /* ng_btsocket_hci_raw_attach */ 953 954 /* 955 * Bind raw HCI socket 956 */ 957 958 int 959 ng_btsocket_hci_raw_bind(struct socket *so, struct sockaddr *nam, 960 struct thread *td) 961 { 962 ng_btsocket_hci_raw_pcb_p pcb = so2hci_raw_pcb(so); 963 struct sockaddr_hci *sa = (struct sockaddr_hci *) nam; 964 965 if (pcb == NULL) 966 return (EINVAL); 967 if (ng_btsocket_hci_raw_node == NULL) 968 return (EINVAL); 969 970 if (sa == NULL) 971 return (EINVAL); 972 if (sa->hci_family != AF_BLUETOOTH) 973 return (EAFNOSUPPORT); 974 if (sa->hci_len != sizeof(*sa)) 975 return (EINVAL); 976 if (sa->hci_node[0] == 0) 977 return (EINVAL); 978 979 mtx_lock(&pcb->pcb_mtx); 980 bcopy(sa, &pcb->addr, sizeof(pcb->addr)); 981 mtx_unlock(&pcb->pcb_mtx); 982 983 return (0); 984 } /* ng_btsocket_hci_raw_bind */ 985 986 /* 987 * Connect raw HCI socket 988 */ 989 990 int 991 ng_btsocket_hci_raw_connect(struct socket *so, struct sockaddr *nam, 992 struct thread *td) 993 { 994 ng_btsocket_hci_raw_pcb_p pcb = so2hci_raw_pcb(so); 995 struct sockaddr_hci *sa = (struct sockaddr_hci *) nam; 996 997 if (pcb == NULL) 998 return (EINVAL); 999 if (ng_btsocket_hci_raw_node == NULL) 1000 return (EINVAL); 1001 1002 if (sa == NULL) 1003 return (EINVAL); 1004 if (sa->hci_family != AF_BLUETOOTH) 1005 return (EAFNOSUPPORT); 1006 if (sa->hci_len != sizeof(*sa)) 1007 return (EINVAL); 1008 if (sa->hci_node[0] == 0) 1009 return (EDESTADDRREQ); 1010 1011 mtx_lock(&pcb->pcb_mtx); 1012 1013 if (bcmp(sa, &pcb->addr, sizeof(pcb->addr)) != 0) { 1014 mtx_unlock(&pcb->pcb_mtx); 1015 return (EADDRNOTAVAIL); 1016 } 1017 1018 soisconnected(so); 1019 1020 mtx_unlock(&pcb->pcb_mtx); 1021 1022 return (0); 1023 } /* ng_btsocket_hci_raw_connect */ 1024 1025 /* 1026 * Process ioctl on socket 1027 */ 1028 1029 int 1030 ng_btsocket_hci_raw_control(struct socket *so, u_long cmd, caddr_t data, 1031 struct ifnet *ifp, struct thread *td) 1032 { 1033 ng_btsocket_hci_raw_pcb_p pcb = so2hci_raw_pcb(so); 1034 char path[NG_NODESIZ + 1]; 1035 struct ng_mesg *msg = NULL; 1036 int error = 0; 1037 1038 if (pcb == NULL) 1039 return (EINVAL); 1040 if (ng_btsocket_hci_raw_node == NULL) 1041 return (EINVAL); 1042 1043 mtx_lock(&pcb->pcb_mtx); 1044 1045 /* Check if we have device name */ 1046 if (pcb->addr.hci_node[0] == 0) { 1047 mtx_unlock(&pcb->pcb_mtx); 1048 return (EHOSTUNREACH); 1049 } 1050 1051 /* Check if we have pending ioctl() */ 1052 if (pcb->token != 0) { 1053 mtx_unlock(&pcb->pcb_mtx); 1054 return (EBUSY); 1055 } 1056 1057 snprintf(path, sizeof(path), "%s:", pcb->addr.hci_node); 1058 1059 switch (cmd) { 1060 case SIOC_HCI_RAW_NODE_GET_STATE: { 1061 struct ng_btsocket_hci_raw_node_state *p = 1062 (struct ng_btsocket_hci_raw_node_state *) data; 1063 1064 error = ng_btsocket_hci_raw_send_sync_ngmsg(pcb, path, 1065 NGM_HCI_NODE_GET_STATE, 1066 &p->state, sizeof(p->state)); 1067 } break; 1068 1069 case SIOC_HCI_RAW_NODE_INIT: 1070 if (pcb->flags & NG_BTSOCKET_HCI_RAW_PRIVILEGED) 1071 error = ng_btsocket_hci_raw_send_ngmsg(path, 1072 NGM_HCI_NODE_INIT, NULL, 0); 1073 else 1074 error = EPERM; 1075 break; 1076 1077 case SIOC_HCI_RAW_NODE_GET_DEBUG: { 1078 struct ng_btsocket_hci_raw_node_debug *p = 1079 (struct ng_btsocket_hci_raw_node_debug *) data; 1080 1081 error = ng_btsocket_hci_raw_send_sync_ngmsg(pcb, path, 1082 NGM_HCI_NODE_GET_DEBUG, 1083 &p->debug, sizeof(p->debug)); 1084 } break; 1085 1086 case SIOC_HCI_RAW_NODE_SET_DEBUG: { 1087 struct ng_btsocket_hci_raw_node_debug *p = 1088 (struct ng_btsocket_hci_raw_node_debug *) data; 1089 1090 if (pcb->flags & NG_BTSOCKET_HCI_RAW_PRIVILEGED) 1091 error = ng_btsocket_hci_raw_send_ngmsg(path, 1092 NGM_HCI_NODE_SET_DEBUG, &p->debug, 1093 sizeof(p->debug)); 1094 else 1095 error = EPERM; 1096 } break; 1097 1098 case SIOC_HCI_RAW_NODE_GET_BUFFER: { 1099 struct ng_btsocket_hci_raw_node_buffer *p = 1100 (struct ng_btsocket_hci_raw_node_buffer *) data; 1101 1102 error = ng_btsocket_hci_raw_send_sync_ngmsg(pcb, path, 1103 NGM_HCI_NODE_GET_BUFFER, 1104 &p->buffer, sizeof(p->buffer)); 1105 } break; 1106 1107 case SIOC_HCI_RAW_NODE_GET_BDADDR: { 1108 struct ng_btsocket_hci_raw_node_bdaddr *p = 1109 (struct ng_btsocket_hci_raw_node_bdaddr *) data; 1110 1111 error = ng_btsocket_hci_raw_send_sync_ngmsg(pcb, path, 1112 NGM_HCI_NODE_GET_BDADDR, 1113 &p->bdaddr, sizeof(p->bdaddr)); 1114 } break; 1115 1116 case SIOC_HCI_RAW_NODE_GET_FEATURES: { 1117 struct ng_btsocket_hci_raw_node_features *p = 1118 (struct ng_btsocket_hci_raw_node_features *) data; 1119 1120 error = ng_btsocket_hci_raw_send_sync_ngmsg(pcb, path, 1121 NGM_HCI_NODE_GET_FEATURES, 1122 &p->features, sizeof(p->features)); 1123 } break; 1124 1125 case SIOC_HCI_RAW_NODE_GET_STAT: { 1126 struct ng_btsocket_hci_raw_node_stat *p = 1127 (struct ng_btsocket_hci_raw_node_stat *) data; 1128 1129 error = ng_btsocket_hci_raw_send_sync_ngmsg(pcb, path, 1130 NGM_HCI_NODE_GET_STAT, 1131 &p->stat, sizeof(p->stat)); 1132 } break; 1133 1134 case SIOC_HCI_RAW_NODE_RESET_STAT: 1135 if (pcb->flags & NG_BTSOCKET_HCI_RAW_PRIVILEGED) 1136 error = ng_btsocket_hci_raw_send_ngmsg(path, 1137 NGM_HCI_NODE_RESET_STAT, NULL, 0); 1138 else 1139 error = EPERM; 1140 break; 1141 1142 case SIOC_HCI_RAW_NODE_FLUSH_NEIGHBOR_CACHE: 1143 if (pcb->flags & NG_BTSOCKET_HCI_RAW_PRIVILEGED) 1144 error = ng_btsocket_hci_raw_send_ngmsg(path, 1145 NGM_HCI_NODE_FLUSH_NEIGHBOR_CACHE, 1146 NULL, 0); 1147 else 1148 error = EPERM; 1149 break; 1150 1151 case SIOC_HCI_RAW_NODE_GET_NEIGHBOR_CACHE: { 1152 struct ng_btsocket_hci_raw_node_neighbor_cache *p = 1153 (struct ng_btsocket_hci_raw_node_neighbor_cache *) data; 1154 ng_hci_node_get_neighbor_cache_ep *p1 = NULL; 1155 ng_hci_node_neighbor_cache_entry_ep *p2 = NULL; 1156 1157 if (p->num_entries <= 0 || 1158 p->num_entries > NG_HCI_MAX_NEIGHBOR_NUM || 1159 p->entries == NULL) { 1160 mtx_unlock(&pcb->pcb_mtx); 1161 return (EINVAL); 1162 } 1163 1164 NG_MKMESSAGE(msg, NGM_HCI_COOKIE, 1165 NGM_HCI_NODE_GET_NEIGHBOR_CACHE, 0, M_NOWAIT); 1166 if (msg == NULL) { 1167 mtx_unlock(&pcb->pcb_mtx); 1168 return (ENOMEM); 1169 } 1170 ng_btsocket_hci_raw_get_token(&msg->header.token); 1171 pcb->token = msg->header.token; 1172 pcb->msg = NULL; 1173 1174 NG_SEND_MSG_PATH(error, ng_btsocket_hci_raw_node, msg, path, 0); 1175 if (error != 0) { 1176 pcb->token = 0; 1177 mtx_unlock(&pcb->pcb_mtx); 1178 return (error); 1179 } 1180 1181 error = msleep(&pcb->msg, &pcb->pcb_mtx, 1182 PZERO|PCATCH, "hcictl", 1183 ng_btsocket_hci_raw_ioctl_timeout * hz); 1184 pcb->token = 0; 1185 1186 if (error != 0) { 1187 mtx_unlock(&pcb->pcb_mtx); 1188 return (error); 1189 } 1190 1191 msg = pcb->msg; 1192 pcb->msg = NULL; 1193 1194 mtx_unlock(&pcb->pcb_mtx); 1195 1196 if (msg != NULL && 1197 msg->header.cmd == NGM_HCI_NODE_GET_NEIGHBOR_CACHE) { 1198 /* Return data back to user space */ 1199 p1 = (ng_hci_node_get_neighbor_cache_ep *)(msg->data); 1200 p2 = (ng_hci_node_neighbor_cache_entry_ep *)(p1 + 1); 1201 1202 p->num_entries = min(p->num_entries, p1->num_entries); 1203 if (p->num_entries > 0) 1204 error = copyout((caddr_t) p2, 1205 (caddr_t) p->entries, 1206 p->num_entries * sizeof(*p2)); 1207 } else 1208 error = EINVAL; 1209 1210 NG_FREE_MSG(msg); /* checks for != NULL */ 1211 return (error); 1212 } /* NOTREACHED */ 1213 1214 case SIOC_HCI_RAW_NODE_GET_CON_LIST: { 1215 struct ng_btsocket_hci_raw_con_list *p = 1216 (struct ng_btsocket_hci_raw_con_list *) data; 1217 ng_hci_node_con_list_ep *p1 = NULL; 1218 ng_hci_node_con_ep *p2 = NULL; 1219 1220 if (p->num_connections == 0 || 1221 p->num_connections > NG_HCI_MAX_CON_NUM || 1222 p->connections == NULL) { 1223 mtx_unlock(&pcb->pcb_mtx); 1224 return (EINVAL); 1225 } 1226 1227 NG_MKMESSAGE(msg, NGM_HCI_COOKIE, NGM_HCI_NODE_GET_CON_LIST, 1228 0, M_NOWAIT); 1229 if (msg == NULL) { 1230 mtx_unlock(&pcb->pcb_mtx); 1231 return (ENOMEM); 1232 } 1233 ng_btsocket_hci_raw_get_token(&msg->header.token); 1234 pcb->token = msg->header.token; 1235 pcb->msg = NULL; 1236 1237 NG_SEND_MSG_PATH(error, ng_btsocket_hci_raw_node, msg, path, 0); 1238 if (error != 0) { 1239 pcb->token = 0; 1240 mtx_unlock(&pcb->pcb_mtx); 1241 return (error); 1242 } 1243 1244 error = msleep(&pcb->msg, &pcb->pcb_mtx, 1245 PZERO|PCATCH, "hcictl", 1246 ng_btsocket_hci_raw_ioctl_timeout * hz); 1247 pcb->token = 0; 1248 1249 if (error != 0) { 1250 mtx_unlock(&pcb->pcb_mtx); 1251 return (error); 1252 } 1253 1254 msg = pcb->msg; 1255 pcb->msg = NULL; 1256 1257 mtx_unlock(&pcb->pcb_mtx); 1258 1259 if (msg != NULL && 1260 msg->header.cmd == NGM_HCI_NODE_GET_CON_LIST) { 1261 /* Return data back to user space */ 1262 p1 = (ng_hci_node_con_list_ep *)(msg->data); 1263 p2 = (ng_hci_node_con_ep *)(p1 + 1); 1264 1265 p->num_connections = min(p->num_connections, 1266 p1->num_connections); 1267 if (p->num_connections > 0) 1268 error = copyout((caddr_t) p2, 1269 (caddr_t) p->connections, 1270 p->num_connections * sizeof(*p2)); 1271 } else 1272 error = EINVAL; 1273 1274 NG_FREE_MSG(msg); /* checks for != NULL */ 1275 return (error); 1276 } /* NOTREACHED */ 1277 1278 case SIOC_HCI_RAW_NODE_GET_LINK_POLICY_MASK: { 1279 struct ng_btsocket_hci_raw_node_link_policy_mask *p = 1280 (struct ng_btsocket_hci_raw_node_link_policy_mask *) 1281 data; 1282 1283 error = ng_btsocket_hci_raw_send_sync_ngmsg(pcb, path, 1284 NGM_HCI_NODE_GET_LINK_POLICY_SETTINGS_MASK, 1285 &p->policy_mask, sizeof(p->policy_mask)); 1286 } break; 1287 1288 case SIOC_HCI_RAW_NODE_SET_LINK_POLICY_MASK: { 1289 struct ng_btsocket_hci_raw_node_link_policy_mask *p = 1290 (struct ng_btsocket_hci_raw_node_link_policy_mask *) 1291 data; 1292 1293 if (pcb->flags & NG_BTSOCKET_HCI_RAW_PRIVILEGED) 1294 error = ng_btsocket_hci_raw_send_ngmsg(path, 1295 NGM_HCI_NODE_SET_LINK_POLICY_SETTINGS_MASK, 1296 &p->policy_mask, 1297 sizeof(p->policy_mask)); 1298 else 1299 error = EPERM; 1300 } break; 1301 1302 case SIOC_HCI_RAW_NODE_GET_PACKET_MASK: { 1303 struct ng_btsocket_hci_raw_node_packet_mask *p = 1304 (struct ng_btsocket_hci_raw_node_packet_mask *) data; 1305 1306 error = ng_btsocket_hci_raw_send_sync_ngmsg(pcb, path, 1307 NGM_HCI_NODE_GET_PACKET_MASK, 1308 &p->packet_mask, sizeof(p->packet_mask)); 1309 } break; 1310 1311 case SIOC_HCI_RAW_NODE_SET_PACKET_MASK: { 1312 struct ng_btsocket_hci_raw_node_packet_mask *p = 1313 (struct ng_btsocket_hci_raw_node_packet_mask *) data; 1314 1315 if (pcb->flags & NG_BTSOCKET_HCI_RAW_PRIVILEGED) 1316 error = ng_btsocket_hci_raw_send_ngmsg(path, 1317 NGM_HCI_NODE_SET_PACKET_MASK, 1318 &p->packet_mask, 1319 sizeof(p->packet_mask)); 1320 else 1321 error = EPERM; 1322 } break; 1323 1324 case SIOC_HCI_RAW_NODE_GET_ROLE_SWITCH: { 1325 struct ng_btsocket_hci_raw_node_role_switch *p = 1326 (struct ng_btsocket_hci_raw_node_role_switch *) data; 1327 1328 error = ng_btsocket_hci_raw_send_sync_ngmsg(pcb, path, 1329 NGM_HCI_NODE_GET_ROLE_SWITCH, 1330 &p->role_switch, sizeof(p->role_switch)); 1331 } break; 1332 1333 case SIOC_HCI_RAW_NODE_SET_ROLE_SWITCH: { 1334 struct ng_btsocket_hci_raw_node_role_switch *p = 1335 (struct ng_btsocket_hci_raw_node_role_switch *) data; 1336 1337 if (pcb->flags & NG_BTSOCKET_HCI_RAW_PRIVILEGED) 1338 error = ng_btsocket_hci_raw_send_ngmsg(path, 1339 NGM_HCI_NODE_SET_ROLE_SWITCH, 1340 &p->role_switch, 1341 sizeof(p->role_switch)); 1342 else 1343 error = EPERM; 1344 } break; 1345 1346 case SIOC_HCI_RAW_NODE_LIST_NAMES: { 1347 struct ng_btsocket_hci_raw_node_list_names *nl = 1348 (struct ng_btsocket_hci_raw_node_list_names *) data; 1349 struct nodeinfo *ni = nl->names; 1350 1351 if (nl->num_names == 0) { 1352 mtx_unlock(&pcb->pcb_mtx); 1353 return (EINVAL); 1354 } 1355 1356 NG_MKMESSAGE(msg, NGM_GENERIC_COOKIE, NGM_LISTNAMES, 1357 0, M_NOWAIT); 1358 if (msg == NULL) { 1359 mtx_unlock(&pcb->pcb_mtx); 1360 return (ENOMEM); 1361 } 1362 ng_btsocket_hci_raw_get_token(&msg->header.token); 1363 pcb->token = msg->header.token; 1364 pcb->msg = NULL; 1365 1366 NG_SEND_MSG_PATH(error, ng_btsocket_hci_raw_node, msg, ".:", 0); 1367 if (error != 0) { 1368 pcb->token = 0; 1369 mtx_unlock(&pcb->pcb_mtx); 1370 return (error); 1371 } 1372 1373 error = msleep(&pcb->msg, &pcb->pcb_mtx, 1374 PZERO|PCATCH, "hcictl", 1375 ng_btsocket_hci_raw_ioctl_timeout * hz); 1376 pcb->token = 0; 1377 1378 if (error != 0) { 1379 mtx_unlock(&pcb->pcb_mtx); 1380 return (error); 1381 } 1382 1383 msg = pcb->msg; 1384 pcb->msg = NULL; 1385 1386 mtx_unlock(&pcb->pcb_mtx); 1387 1388 if (msg != NULL && msg->header.cmd == NGM_LISTNAMES) { 1389 /* Return data back to user space */ 1390 struct namelist *nl1 = (struct namelist *) msg->data; 1391 struct nodeinfo *ni1 = &nl1->nodeinfo[0]; 1392 1393 while (nl->num_names > 0 && nl1->numnames > 0) { 1394 if (strcmp(ni1->type, NG_HCI_NODE_TYPE) == 0) { 1395 error = copyout((caddr_t) ni1, 1396 (caddr_t) ni, 1397 sizeof(*ni)); 1398 if (error != 0) 1399 break; 1400 1401 nl->num_names --; 1402 ni ++; 1403 } 1404 1405 nl1->numnames --; 1406 ni1 ++; 1407 } 1408 1409 nl->num_names = ni - nl->names; 1410 } else 1411 error = EINVAL; 1412 1413 NG_FREE_MSG(msg); /* checks for != NULL */ 1414 return (error); 1415 } /* NOTREACHED */ 1416 1417 default: 1418 error = EINVAL; 1419 break; 1420 } 1421 1422 mtx_unlock(&pcb->pcb_mtx); 1423 1424 return (error); 1425 } /* ng_btsocket_hci_raw_control */ 1426 1427 /* 1428 * Process getsockopt/setsockopt system calls 1429 */ 1430 1431 int 1432 ng_btsocket_hci_raw_ctloutput(struct socket *so, struct sockopt *sopt) 1433 { 1434 ng_btsocket_hci_raw_pcb_p pcb = so2hci_raw_pcb(so); 1435 struct ng_btsocket_hci_raw_filter filter; 1436 int error = 0, dir; 1437 1438 if (pcb == NULL) 1439 return (EINVAL); 1440 if (ng_btsocket_hci_raw_node == NULL) 1441 return (EINVAL); 1442 1443 if (sopt->sopt_level != SOL_HCI_RAW) 1444 return (0); 1445 1446 mtx_lock(&pcb->pcb_mtx); 1447 1448 switch (sopt->sopt_dir) { 1449 case SOPT_GET: 1450 switch (sopt->sopt_name) { 1451 case SO_HCI_RAW_FILTER: 1452 error = sooptcopyout(sopt, &pcb->filter, 1453 sizeof(pcb->filter)); 1454 break; 1455 1456 case SO_HCI_RAW_DIRECTION: 1457 dir = (pcb->flags & NG_BTSOCKET_HCI_RAW_DIRECTION)?1:0; 1458 error = sooptcopyout(sopt, &dir, sizeof(dir)); 1459 break; 1460 1461 default: 1462 error = EINVAL; 1463 break; 1464 } 1465 break; 1466 1467 case SOPT_SET: 1468 switch (sopt->sopt_name) { 1469 case SO_HCI_RAW_FILTER: 1470 error = sooptcopyin(sopt, &filter, sizeof(filter), 1471 sizeof(filter)); 1472 if (error == 0) 1473 bcopy(&filter, &pcb->filter, 1474 sizeof(pcb->filter)); 1475 break; 1476 1477 case SO_HCI_RAW_DIRECTION: 1478 error = sooptcopyin(sopt, &dir, sizeof(dir), 1479 sizeof(dir)); 1480 if (error != 0) 1481 break; 1482 1483 if (dir) 1484 pcb->flags |= NG_BTSOCKET_HCI_RAW_DIRECTION; 1485 else 1486 pcb->flags &= ~NG_BTSOCKET_HCI_RAW_DIRECTION; 1487 break; 1488 1489 default: 1490 error = EINVAL; 1491 break; 1492 } 1493 break; 1494 1495 default: 1496 error = EINVAL; 1497 break; 1498 } 1499 1500 mtx_unlock(&pcb->pcb_mtx); 1501 1502 return (error); 1503 } /* ng_btsocket_hci_raw_ctloutput */ 1504 1505 /* 1506 * Detach raw HCI socket 1507 */ 1508 1509 void 1510 ng_btsocket_hci_raw_detach(struct socket *so) 1511 { 1512 ng_btsocket_hci_raw_pcb_p pcb = so2hci_raw_pcb(so); 1513 1514 KASSERT(pcb != NULL, ("ng_btsocket_hci_raw_detach: pcb == NULL")); 1515 1516 if (ng_btsocket_hci_raw_node == NULL) 1517 return; 1518 1519 mtx_lock(&ng_btsocket_hci_raw_sockets_mtx); 1520 mtx_lock(&pcb->pcb_mtx); 1521 1522 LIST_REMOVE(pcb, next); 1523 1524 mtx_unlock(&pcb->pcb_mtx); 1525 mtx_unlock(&ng_btsocket_hci_raw_sockets_mtx); 1526 1527 mtx_destroy(&pcb->pcb_mtx); 1528 1529 bzero(pcb, sizeof(*pcb)); 1530 free(pcb, M_NETGRAPH_BTSOCKET_HCI_RAW); 1531 1532 so->so_pcb = NULL; 1533 } /* ng_btsocket_hci_raw_detach */ 1534 1535 /* 1536 * Disconnect raw HCI socket 1537 */ 1538 1539 int 1540 ng_btsocket_hci_raw_disconnect(struct socket *so) 1541 { 1542 ng_btsocket_hci_raw_pcb_p pcb = so2hci_raw_pcb(so); 1543 1544 if (pcb == NULL) 1545 return (EINVAL); 1546 if (ng_btsocket_hci_raw_node == NULL) 1547 return (EINVAL); 1548 1549 mtx_lock(&pcb->pcb_mtx); 1550 soisdisconnected(so); 1551 mtx_unlock(&pcb->pcb_mtx); 1552 1553 return (0); 1554 } /* ng_btsocket_hci_raw_disconnect */ 1555 1556 /* 1557 * Get socket peer's address 1558 */ 1559 1560 int 1561 ng_btsocket_hci_raw_peeraddr(struct socket *so, struct sockaddr **nam) 1562 { 1563 return (ng_btsocket_hci_raw_sockaddr(so, nam)); 1564 } /* ng_btsocket_hci_raw_peeraddr */ 1565 1566 /* 1567 * Send data 1568 */ 1569 1570 int 1571 ng_btsocket_hci_raw_send(struct socket *so, int flags, struct mbuf *m, 1572 struct sockaddr *sa, struct mbuf *control, struct thread *td) 1573 { 1574 ng_btsocket_hci_raw_pcb_p pcb = so2hci_raw_pcb(so); 1575 struct mbuf *nam = NULL; 1576 int error = 0; 1577 1578 if (ng_btsocket_hci_raw_node == NULL) { 1579 error = ENETDOWN; 1580 goto drop; 1581 } 1582 if (pcb == NULL) { 1583 error = EINVAL; 1584 goto drop; 1585 } 1586 if (control != NULL) { 1587 error = EINVAL; 1588 goto drop; 1589 } 1590 1591 if (m->m_pkthdr.len < sizeof(ng_hci_cmd_pkt_t) || 1592 m->m_pkthdr.len > sizeof(ng_hci_cmd_pkt_t) + NG_HCI_CMD_PKT_SIZE) { 1593 error = EMSGSIZE; 1594 goto drop; 1595 } 1596 1597 if (m->m_len < sizeof(ng_hci_cmd_pkt_t)) { 1598 if ((m = m_pullup(m, sizeof(ng_hci_cmd_pkt_t))) == NULL) { 1599 error = ENOBUFS; 1600 goto drop; 1601 } 1602 } 1603 if (*mtod(m, u_int8_t *) != NG_HCI_CMD_PKT) { 1604 error = ENOTSUP; 1605 goto drop; 1606 } 1607 1608 mtx_lock(&pcb->pcb_mtx); 1609 1610 error = ng_btsocket_hci_raw_filter(pcb, m, 0); 1611 if (error != 0) { 1612 mtx_unlock(&pcb->pcb_mtx); 1613 goto drop; 1614 } 1615 1616 if (sa == NULL) { 1617 if (pcb->addr.hci_node[0] == 0) { 1618 mtx_unlock(&pcb->pcb_mtx); 1619 error = EDESTADDRREQ; 1620 goto drop; 1621 } 1622 1623 sa = (struct sockaddr *) &pcb->addr; 1624 } 1625 1626 MGET(nam, M_NOWAIT, MT_SONAME); 1627 if (nam == NULL) { 1628 mtx_unlock(&pcb->pcb_mtx); 1629 error = ENOBUFS; 1630 goto drop; 1631 } 1632 1633 nam->m_len = sizeof(struct sockaddr_hci); 1634 bcopy(sa,mtod(nam, struct sockaddr_hci *),sizeof(struct sockaddr_hci)); 1635 1636 nam->m_next = m; 1637 m = NULL; 1638 1639 mtx_unlock(&pcb->pcb_mtx); 1640 1641 return (ng_send_fn(ng_btsocket_hci_raw_node, NULL, 1642 ng_btsocket_hci_raw_output, nam, 0)); 1643 drop: 1644 NG_FREE_M(control); /* NG_FREE_M checks for != NULL */ 1645 NG_FREE_M(nam); 1646 NG_FREE_M(m); 1647 1648 return (error); 1649 } /* ng_btsocket_hci_raw_send */ 1650 1651 /* 1652 * Get socket address 1653 */ 1654 1655 int 1656 ng_btsocket_hci_raw_sockaddr(struct socket *so, struct sockaddr **nam) 1657 { 1658 ng_btsocket_hci_raw_pcb_p pcb = so2hci_raw_pcb(so); 1659 struct sockaddr_hci sa; 1660 1661 if (pcb == NULL) 1662 return (EINVAL); 1663 if (ng_btsocket_hci_raw_node == NULL) 1664 return (EINVAL); 1665 1666 bzero(&sa, sizeof(sa)); 1667 sa.hci_len = sizeof(sa); 1668 sa.hci_family = AF_BLUETOOTH; 1669 1670 mtx_lock(&pcb->pcb_mtx); 1671 strlcpy(sa.hci_node, pcb->addr.hci_node, sizeof(sa.hci_node)); 1672 mtx_unlock(&pcb->pcb_mtx); 1673 1674 *nam = sodupsockaddr((struct sockaddr *) &sa, M_NOWAIT); 1675 1676 return ((*nam == NULL)? ENOMEM : 0); 1677 } /* ng_btsocket_hci_raw_sockaddr */ 1678 1679