1 /* $NetBSD: hci_socket.c,v 1.44 2015/05/02 17:18:03 rtr Exp $ */ 2 3 /*- 4 * Copyright (c) 2005 Iain Hibbert. 5 * Copyright (c) 2006 Itronix Inc. 6 * All rights reserved. 7 * 8 * Redistribution and use in source and binary forms, with or without 9 * modification, are permitted provided that the following conditions 10 * are met: 11 * 1. Redistributions of source code must retain the above copyright 12 * notice, this list of conditions and the following disclaimer. 13 * 2. Redistributions in binary form must reproduce the above copyright 14 * notice, this list of conditions and the following disclaimer in the 15 * documentation and/or other materials provided with the distribution. 16 * 3. The name of Itronix Inc. may not be used to endorse 17 * or promote products derived from this software without specific 18 * prior written permission. 19 * 20 * THIS SOFTWARE IS PROVIDED BY ITRONIX INC. ``AS IS'' AND 21 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED 22 * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR 23 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL ITRONIX INC. BE LIABLE FOR ANY 24 * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES 25 * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; 26 * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND 27 * ON ANY THEORY OF LIABILITY, WHETHER IN 28 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 29 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 30 * POSSIBILITY OF SUCH DAMAGE. 31 */ 32 33 #include <sys/cdefs.h> 34 __KERNEL_RCSID(0, "$NetBSD: hci_socket.c,v 1.44 2015/05/02 17:18:03 rtr Exp $"); 35 36 /* load symbolic names */ 37 #ifdef BLUETOOTH_DEBUG 38 #define PRUREQUESTS 39 #define PRCOREQUESTS 40 #endif 41 42 #include <sys/param.h> 43 #include <sys/domain.h> 44 #include <sys/kauth.h> 45 #include <sys/kernel.h> 46 #include <sys/kmem.h> 47 #include <sys/mbuf.h> 48 #include <sys/proc.h> 49 #include <sys/protosw.h> 50 #include <sys/socket.h> 51 #include <sys/socketvar.h> 52 #include <sys/systm.h> 53 54 #include <netbt/bluetooth.h> 55 #include <netbt/hci.h> 56 57 /******************************************************************************* 58 * 59 * HCI SOCK_RAW Sockets - for control of Bluetooth Devices 60 * 61 */ 62 63 /* 64 * the raw HCI protocol control block 65 */ 66 struct hci_pcb { 67 struct socket *hp_socket; /* socket */ 68 kauth_cred_t hp_cred; /* owner credential */ 69 unsigned int hp_flags; /* flags */ 70 bdaddr_t hp_laddr; /* local address */ 71 bdaddr_t hp_raddr; /* remote address */ 72 struct hci_filter hp_efilter; /* user event filter */ 73 struct hci_filter hp_pfilter; /* user packet filter */ 74 LIST_ENTRY(hci_pcb) hp_next; /* next HCI pcb */ 75 }; 76 77 /* hp_flags */ 78 #define HCI_DIRECTION (1<<1) /* direction control messages */ 79 #define HCI_PROMISCUOUS (1<<2) /* listen to all units */ 80 81 LIST_HEAD(hci_pcb_list, hci_pcb) hci_pcb = LIST_HEAD_INITIALIZER(hci_pcb); 82 83 /* sysctl defaults */ 84 int hci_sendspace = HCI_CMD_PKT_SIZE; 85 int hci_recvspace = 4096; 86 87 /* unprivileged commands opcode table */ 88 static const struct { 89 uint16_t opcode; 90 uint8_t offs; /* 0 - 63 */ 91 uint8_t mask; /* bit 0 - 7 */ 92 uint8_t length; /* approved length */ 93 } hci_cmds[] = { 94 { HCI_CMD_INQUIRY, 95 0, 0x01, sizeof(hci_inquiry_cp) }, 96 { HCI_CMD_REMOTE_NAME_REQ, 97 2, 0x08, sizeof(hci_remote_name_req_cp) }, 98 { HCI_CMD_READ_REMOTE_FEATURES, 99 2, 0x20, sizeof(hci_read_remote_features_cp) }, 100 { HCI_CMD_READ_REMOTE_EXTENDED_FEATURES, 101 2, 0x40, sizeof(hci_read_remote_extended_features_cp) }, 102 { HCI_CMD_READ_REMOTE_VER_INFO, 103 2, 0x80, sizeof(hci_read_remote_ver_info_cp) }, 104 { HCI_CMD_READ_CLOCK_OFFSET, 105 3, 0x01, sizeof(hci_read_clock_offset_cp) }, 106 { HCI_CMD_READ_LMP_HANDLE, 107 3, 0x02, sizeof(hci_read_lmp_handle_cp) }, 108 { HCI_CMD_ROLE_DISCOVERY, 109 4, 0x80, sizeof(hci_role_discovery_cp) }, 110 { HCI_CMD_READ_LINK_POLICY_SETTINGS, 111 5, 0x02, sizeof(hci_read_link_policy_settings_cp) }, 112 { HCI_CMD_READ_DEFAULT_LINK_POLICY_SETTINGS, 113 5, 0x08, 0 }, 114 { HCI_CMD_READ_PIN_TYPE, 115 6, 0x04, 0 }, 116 { HCI_CMD_READ_LOCAL_NAME, 117 7, 0x02, 0 }, 118 { HCI_CMD_READ_CON_ACCEPT_TIMEOUT, 119 7, 0x04, 0 }, 120 { HCI_CMD_READ_PAGE_TIMEOUT, 121 7, 0x10, 0 }, 122 { HCI_CMD_READ_SCAN_ENABLE, 123 7, 0x40, 0 }, 124 { HCI_CMD_READ_PAGE_SCAN_ACTIVITY, 125 8, 0x01, 0 }, 126 { HCI_CMD_READ_INQUIRY_SCAN_ACTIVITY, 127 8, 0x04, 0 }, 128 { HCI_CMD_READ_AUTH_ENABLE, 129 8, 0x10, 0 }, 130 { HCI_CMD_READ_ENCRYPTION_MODE, 131 8, 0x40, 0 }, 132 { HCI_CMD_READ_UNIT_CLASS, 133 9, 0x01, 0 }, 134 { HCI_CMD_READ_VOICE_SETTING, 135 9, 0x04, 0 }, 136 { HCI_CMD_READ_AUTO_FLUSH_TIMEOUT, 137 9, 0x10, sizeof(hci_read_auto_flush_timeout_cp) }, 138 { HCI_CMD_READ_NUM_BROADCAST_RETRANS, 139 9, 0x40, 0 }, 140 { HCI_CMD_READ_HOLD_MODE_ACTIVITY, 141 10, 0x01, 0 }, 142 { HCI_CMD_READ_XMIT_LEVEL, 143 10, 0x04, sizeof(hci_read_xmit_level_cp) }, 144 { HCI_CMD_READ_SCO_FLOW_CONTROL, 145 10, 0x08, 0 }, 146 { HCI_CMD_READ_LINK_SUPERVISION_TIMEOUT, 147 11, 0x01, sizeof(hci_read_link_supervision_timeout_cp) }, 148 { HCI_CMD_READ_NUM_SUPPORTED_IAC, 149 11, 0x04, 0 }, 150 { HCI_CMD_READ_IAC_LAP, 151 11, 0x08, 0 }, 152 { HCI_CMD_READ_PAGE_SCAN_PERIOD, 153 11, 0x20, 0 }, 154 { HCI_CMD_READ_PAGE_SCAN, 155 11, 0x80, 0 }, 156 { HCI_CMD_READ_INQUIRY_SCAN_TYPE, 157 12, 0x10, 0 }, 158 { HCI_CMD_READ_INQUIRY_MODE, 159 12, 0x40, 0 }, 160 { HCI_CMD_READ_PAGE_SCAN_TYPE, 161 13, 0x01, 0 }, 162 { HCI_CMD_READ_AFH_ASSESSMENT, 163 13, 0x04, 0 }, 164 { HCI_CMD_READ_LOCAL_VER, 165 14, 0x08, 0 }, 166 { HCI_CMD_READ_LOCAL_COMMANDS, 167 14, 0x10, 0 }, 168 { HCI_CMD_READ_LOCAL_FEATURES, 169 14, 0x20, 0 }, 170 { HCI_CMD_READ_LOCAL_EXTENDED_FEATURES, 171 14, 0x40, sizeof(hci_read_local_extended_features_cp) }, 172 { HCI_CMD_READ_BUFFER_SIZE, 173 14, 0x80, 0 }, 174 { HCI_CMD_READ_COUNTRY_CODE, 175 15, 0x01, 0 }, 176 { HCI_CMD_READ_BDADDR, 177 15, 0x02, 0 }, 178 { HCI_CMD_READ_FAILED_CONTACT_CNTR, 179 15, 0x04, sizeof(hci_read_failed_contact_cntr_cp) }, 180 { HCI_CMD_READ_LINK_QUALITY, 181 15, 0x10, sizeof(hci_read_link_quality_cp) }, 182 { HCI_CMD_READ_RSSI, 183 15, 0x20, sizeof(hci_read_rssi_cp) }, 184 { HCI_CMD_READ_AFH_CHANNEL_MAP, 185 15, 0x40, sizeof(hci_read_afh_channel_map_cp) }, 186 { HCI_CMD_READ_CLOCK, 187 15, 0x80, sizeof(hci_read_clock_cp) }, 188 { HCI_CMD_READ_LOOPBACK_MODE, 189 16, 0x01, 0 }, 190 { HCI_CMD_READ_EXTENDED_INQUIRY_RSP, 191 17, 0x01, 0 }, 192 { HCI_CMD_READ_SIMPLE_PAIRING_MODE, 193 17, 0x20, 0 }, 194 { HCI_CMD_READ_INQUIRY_RSP_XMIT_POWER, 195 18, 0x01, 0 }, 196 { HCI_CMD_READ_DEFAULT_ERRDATA_REPORTING, 197 18, 0x04, 0 }, 198 }; 199 200 /* 201 * supply a basic device send/recv policy 202 */ 203 static int 204 hci_device_cb(kauth_cred_t cred, kauth_action_t action, void *cookie, 205 void *arg0, void *arg1, void *arg2, void *arg3) 206 { 207 int i, result; 208 209 result = KAUTH_RESULT_DEFER; 210 211 switch (action) { 212 case KAUTH_DEVICE_BLUETOOTH_SEND: { 213 struct hci_unit *unit = (struct hci_unit *)arg0; 214 hci_cmd_hdr_t *hdr = (hci_cmd_hdr_t *)arg1; 215 216 /* 217 * Allow sending unprivileged commands if the packet size 218 * is correct and the unit claims to support it 219 */ 220 221 if (hdr->type != HCI_CMD_PKT) 222 break; 223 224 for (i = 0; i < __arraycount(hci_cmds); i++) { 225 if (hdr->opcode == hci_cmds[i].opcode 226 && hdr->length == hci_cmds[i].length 227 && (unit->hci_cmds[hci_cmds[i].offs] & hci_cmds[i].mask)) { 228 result = KAUTH_RESULT_ALLOW; 229 break; 230 } 231 } 232 233 break; 234 } 235 236 case KAUTH_DEVICE_BLUETOOTH_RECV: 237 switch((uint8_t)(uintptr_t)arg0) { 238 case HCI_CMD_PKT: { 239 uint16_t opcode = (uint16_t)(uintptr_t)arg1; 240 241 /* 242 * Allow to see any unprivileged command packet 243 */ 244 245 for (i = 0; i < __arraycount(hci_cmds); i++) { 246 if (opcode == hci_cmds[i].opcode) { 247 result = KAUTH_RESULT_ALLOW; 248 break; 249 } 250 } 251 252 break; 253 } 254 255 case HCI_EVENT_PKT: { 256 uint8_t event = (uint8_t)(uintptr_t)arg1; 257 258 /* 259 * Allow to receive most events 260 */ 261 262 switch (event) { 263 case HCI_EVENT_RETURN_LINK_KEYS: 264 case HCI_EVENT_LINK_KEY_NOTIFICATION: 265 case HCI_EVENT_USER_CONFIRM_REQ: 266 case HCI_EVENT_USER_PASSKEY_NOTIFICATION: 267 case HCI_EVENT_VENDOR: 268 break; 269 270 default: 271 result = KAUTH_RESULT_ALLOW; 272 break; 273 } 274 275 break; 276 } 277 278 case HCI_ACL_DATA_PKT: 279 case HCI_SCO_DATA_PKT: { 280 /* uint16_t handle = (uint16_t)(uintptr_t)arg1; */ 281 /* 282 * don't normally allow receiving data packets 283 */ 284 break; 285 } 286 287 default: 288 break; 289 } 290 291 break; 292 293 default: 294 break; 295 } 296 297 return result; 298 } 299 300 /* 301 * HCI protocol init routine, 302 * - set up a kauth listener to provide basic packet access policy 303 */ 304 void 305 hci_init(void) 306 { 307 308 if (kauth_listen_scope(KAUTH_SCOPE_DEVICE, hci_device_cb, NULL) == NULL) 309 panic("Bluetooth HCI: cannot listen on device scope"); 310 } 311 312 /* 313 * When command packet reaches the device, we can drop 314 * it from the socket buffer (called from hci_output_acl) 315 */ 316 void 317 hci_drop(void *arg) 318 { 319 struct socket *so = arg; 320 321 sbdroprecord(&so->so_snd); 322 sowwakeup(so); 323 } 324 325 /* 326 * HCI socket is going away and has some pending packets. We let them 327 * go by design, but remove the context pointer as it will be invalid 328 * and we no longer need to be notified. 329 */ 330 static void 331 hci_cmdwait_flush(struct socket *so) 332 { 333 struct hci_unit *unit; 334 struct socket *ctx; 335 struct mbuf *m; 336 337 DPRINTF("flushing %p\n", so); 338 339 SIMPLEQ_FOREACH(unit, &hci_unit_list, hci_next) { 340 m = MBUFQ_FIRST(&unit->hci_cmdwait); 341 while (m != NULL) { 342 ctx = M_GETCTX(m, struct socket *); 343 if (ctx == so) 344 M_SETCTX(m, NULL); 345 346 m = MBUFQ_NEXT(m); 347 } 348 } 349 } 350 351 /* 352 * HCI send packet 353 * This came from userland, so check it out. 354 */ 355 static int 356 hci_send_pcb(struct hci_pcb *pcb, struct mbuf *m, bdaddr_t *addr) 357 { 358 struct hci_unit *unit; 359 struct mbuf *m0; 360 hci_cmd_hdr_t hdr; 361 int err; 362 363 KASSERT(m != NULL); 364 KASSERT(addr != NULL); 365 366 /* wants at least a header to start with */ 367 if (m->m_pkthdr.len < sizeof(hdr)) { 368 err = EMSGSIZE; 369 goto bad; 370 } 371 m_copydata(m, 0, sizeof(hdr), &hdr); 372 hdr.opcode = le16toh(hdr.opcode); 373 374 /* only allows CMD packets to be sent */ 375 if (hdr.type != HCI_CMD_PKT) { 376 err = EINVAL; 377 goto bad; 378 } 379 380 /* validates packet length */ 381 if (m->m_pkthdr.len != sizeof(hdr) + hdr.length) { 382 err = EMSGSIZE; 383 goto bad; 384 } 385 386 /* finds destination */ 387 unit = hci_unit_lookup(addr); 388 if (unit == NULL) { 389 err = ENETDOWN; 390 goto bad; 391 } 392 393 /* security checks for unprivileged users */ 394 if (pcb->hp_cred != NULL 395 && kauth_authorize_device(pcb->hp_cred, 396 KAUTH_DEVICE_BLUETOOTH_SEND, 397 unit, &hdr, NULL, NULL) != 0) { 398 err = EPERM; 399 goto bad; 400 } 401 402 /* makess a copy for precious to keep */ 403 m0 = m_copypacket(m, M_DONTWAIT); 404 if (m0 == NULL) { 405 err = ENOMEM; 406 goto bad; 407 } 408 sbappendrecord(&pcb->hp_socket->so_snd, m0); 409 M_SETCTX(m, pcb->hp_socket); /* enable drop callback */ 410 411 DPRINTFN(2, "(%s) opcode (%03x|%04x)\n", device_xname(unit->hci_dev), 412 HCI_OGF(hdr.opcode), HCI_OCF(hdr.opcode)); 413 414 /* Sendss it */ 415 if (unit->hci_num_cmd_pkts == 0) 416 MBUFQ_ENQUEUE(&unit->hci_cmdwait, m); 417 else 418 hci_output_cmd(unit, m); 419 420 return 0; 421 422 bad: 423 DPRINTF("packet (%d bytes) not sent (error %d)\n", 424 m->m_pkthdr.len, err); 425 if (m) m_freem(m); 426 return err; 427 } 428 429 static int 430 hci_attach(struct socket *so, int proto) 431 { 432 struct hci_pcb *pcb; 433 int error; 434 435 KASSERT(so->so_pcb == NULL); 436 437 if (so->so_lock == NULL) { 438 mutex_obj_hold(bt_lock); 439 so->so_lock = bt_lock; 440 solock(so); 441 } 442 KASSERT(solocked(so)); 443 444 error = soreserve(so, hci_sendspace, hci_recvspace); 445 if (error) { 446 return error; 447 } 448 449 pcb = kmem_zalloc(sizeof(struct hci_pcb), KM_SLEEP); 450 pcb->hp_cred = kauth_cred_dup(curlwp->l_cred); 451 pcb->hp_socket = so; 452 453 /* 454 * Set default user filter. By default, socket only passes 455 * Command_Complete and Command_Status Events. 456 */ 457 hci_filter_set(HCI_EVENT_COMMAND_COMPL, &pcb->hp_efilter); 458 hci_filter_set(HCI_EVENT_COMMAND_STATUS, &pcb->hp_efilter); 459 hci_filter_set(HCI_EVENT_PKT, &pcb->hp_pfilter); 460 461 LIST_INSERT_HEAD(&hci_pcb, pcb, hp_next); 462 so->so_pcb = pcb; 463 464 return 0; 465 } 466 467 static void 468 hci_detach(struct socket *so) 469 { 470 struct hci_pcb *pcb; 471 472 pcb = (struct hci_pcb *)so->so_pcb; 473 KASSERT(pcb != NULL); 474 475 if (so->so_snd.sb_mb != NULL) 476 hci_cmdwait_flush(so); 477 478 if (pcb->hp_cred != NULL) 479 kauth_cred_free(pcb->hp_cred); 480 481 so->so_pcb = NULL; 482 LIST_REMOVE(pcb, hp_next); 483 kmem_free(pcb, sizeof(*pcb)); 484 } 485 486 static int 487 hci_accept(struct socket *so, struct sockaddr *nam) 488 { 489 KASSERT(solocked(so)); 490 491 return EOPNOTSUPP; 492 } 493 494 static int 495 hci_bind(struct socket *so, struct sockaddr *nam, struct lwp *l) 496 { 497 struct hci_pcb *pcb = so->so_pcb; 498 struct sockaddr_bt *sa = (struct sockaddr_bt *)nam; 499 500 KASSERT(solocked(so)); 501 KASSERT(pcb != NULL); 502 KASSERT(nam != NULL); 503 504 if (sa->bt_len != sizeof(struct sockaddr_bt)) 505 return EINVAL; 506 507 if (sa->bt_family != AF_BLUETOOTH) 508 return EAFNOSUPPORT; 509 510 bdaddr_copy(&pcb->hp_laddr, &sa->bt_bdaddr); 511 512 if (bdaddr_any(&sa->bt_bdaddr)) 513 pcb->hp_flags |= HCI_PROMISCUOUS; 514 else 515 pcb->hp_flags &= ~HCI_PROMISCUOUS; 516 517 return 0; 518 } 519 520 static int 521 hci_listen(struct socket *so, struct lwp *l) 522 { 523 KASSERT(solocked(so)); 524 525 return EOPNOTSUPP; 526 } 527 528 static int 529 hci_connect(struct socket *so, struct sockaddr *nam, struct lwp *l) 530 { 531 struct hci_pcb *pcb = so->so_pcb; 532 struct sockaddr_bt *sa = (struct sockaddr_bt *)nam; 533 534 KASSERT(solocked(so)); 535 KASSERT(pcb != NULL); 536 KASSERT(nam != NULL); 537 538 if (sa->bt_len != sizeof(struct sockaddr_bt)) 539 return EINVAL; 540 541 if (sa->bt_family != AF_BLUETOOTH) 542 return EAFNOSUPPORT; 543 544 if (hci_unit_lookup(&sa->bt_bdaddr) == NULL) 545 return EADDRNOTAVAIL; 546 547 bdaddr_copy(&pcb->hp_raddr, &sa->bt_bdaddr); 548 soisconnected(so); 549 return 0; 550 } 551 552 static int 553 hci_connect2(struct socket *so, struct socket *so2) 554 { 555 KASSERT(solocked(so)); 556 557 return EOPNOTSUPP; 558 } 559 560 static int 561 hci_disconnect(struct socket *so) 562 { 563 struct hci_pcb *pcb = so->so_pcb; 564 565 KASSERT(solocked(so)); 566 KASSERT(pcb != NULL); 567 568 bdaddr_copy(&pcb->hp_raddr, BDADDR_ANY); 569 570 /* XXX we cannot call soisdisconnected() here, as it sets 571 * SS_CANTRCVMORE and SS_CANTSENDMORE. The problem being, 572 * that soisconnected() does not clear these and if you 573 * try to reconnect this socket (which is permitted) you 574 * get a broken pipe when you try to write any data. 575 */ 576 so->so_state &= ~SS_ISCONNECTED; 577 return 0; 578 } 579 580 static int 581 hci_shutdown(struct socket *so) 582 { 583 KASSERT(solocked(so)); 584 585 socantsendmore(so); 586 return 0; 587 } 588 589 static int 590 hci_abort(struct socket *so) 591 { 592 KASSERT(solocked(so)); 593 594 soisdisconnected(so); 595 hci_detach(so); 596 return 0; 597 } 598 599 static int 600 hci_ioctl(struct socket *so, u_long cmd, void *nam, struct ifnet *ifp) 601 { 602 int err; 603 mutex_enter(bt_lock); 604 err = hci_ioctl_pcb(cmd, nam); 605 mutex_exit(bt_lock); 606 return err; 607 } 608 609 static int 610 hci_stat(struct socket *so, struct stat *ub) 611 { 612 KASSERT(solocked(so)); 613 614 return 0; 615 } 616 617 static int 618 hci_peeraddr(struct socket *so, struct sockaddr *nam) 619 { 620 struct hci_pcb *pcb = (struct hci_pcb *)so->so_pcb; 621 struct sockaddr_bt *sa = (struct sockaddr_bt *)nam; 622 623 KASSERT(solocked(so)); 624 KASSERT(pcb != NULL); 625 KASSERT(nam != NULL); 626 627 memset(sa, 0, sizeof(struct sockaddr_bt)); 628 sa->bt_len = sizeof(struct sockaddr_bt); 629 sa->bt_family = AF_BLUETOOTH; 630 bdaddr_copy(&sa->bt_bdaddr, &pcb->hp_raddr); 631 return 0; 632 } 633 634 static int 635 hci_sockaddr(struct socket *so, struct sockaddr *nam) 636 { 637 struct hci_pcb *pcb = (struct hci_pcb *)so->so_pcb; 638 struct sockaddr_bt *sa = (struct sockaddr_bt *)nam; 639 640 KASSERT(solocked(so)); 641 KASSERT(pcb != NULL); 642 KASSERT(nam != NULL); 643 644 memset(sa, 0, sizeof(struct sockaddr_bt)); 645 sa->bt_len = sizeof(struct sockaddr_bt); 646 sa->bt_family = AF_BLUETOOTH; 647 bdaddr_copy(&sa->bt_bdaddr, &pcb->hp_laddr); 648 return 0; 649 } 650 651 static int 652 hci_rcvd(struct socket *so, int flags, struct lwp *l) 653 { 654 KASSERT(solocked(so)); 655 656 return EOPNOTSUPP; 657 } 658 659 static int 660 hci_recvoob(struct socket *so, struct mbuf *m, int flags) 661 { 662 KASSERT(solocked(so)); 663 664 return EOPNOTSUPP; 665 } 666 667 static int 668 hci_send(struct socket *so, struct mbuf *m, struct sockaddr *nam, 669 struct mbuf *control, struct lwp *l) 670 { 671 struct hci_pcb *pcb = so->so_pcb; 672 struct sockaddr_bt * sa = (struct sockaddr_bt *)nam; 673 int err = 0; 674 675 KASSERT(solocked(so)); 676 KASSERT(pcb != NULL); 677 678 if (control) /* have no use for this */ 679 m_freem(control); 680 681 if (nam) { 682 if (sa->bt_len != sizeof(struct sockaddr_bt)) { 683 err = EINVAL; 684 goto release; 685 } 686 687 if (sa->bt_family != AF_BLUETOOTH) { 688 err = EAFNOSUPPORT; 689 goto release; 690 } 691 } 692 693 return hci_send_pcb(pcb, m, (sa ? &sa->bt_bdaddr : &pcb->hp_raddr)); 694 695 release: 696 if (m) 697 m_freem(m); 698 699 return err; 700 } 701 702 static int 703 hci_sendoob(struct socket *so, struct mbuf *m, struct mbuf *control) 704 { 705 KASSERT(solocked(so)); 706 707 if (m) 708 m_freem(m); 709 if (control) 710 m_freem(control); 711 712 return EOPNOTSUPP; 713 } 714 715 static int 716 hci_purgeif(struct socket *so, struct ifnet *ifp) 717 { 718 719 return EOPNOTSUPP; 720 } 721 722 /* 723 * get/set socket options 724 */ 725 int 726 hci_ctloutput(int req, struct socket *so, struct sockopt *sopt) 727 { 728 struct hci_pcb *pcb = (struct hci_pcb *)so->so_pcb; 729 int optval, err = 0; 730 731 DPRINTFN(2, "req %s\n", prcorequests[req]); 732 733 if (pcb == NULL) 734 return EINVAL; 735 736 if (sopt->sopt_level != BTPROTO_HCI) 737 return ENOPROTOOPT; 738 739 switch(req) { 740 case PRCO_GETOPT: 741 switch (sopt->sopt_name) { 742 case SO_HCI_EVT_FILTER: 743 err = sockopt_set(sopt, &pcb->hp_efilter, 744 sizeof(struct hci_filter)); 745 746 break; 747 748 case SO_HCI_PKT_FILTER: 749 err = sockopt_set(sopt, &pcb->hp_pfilter, 750 sizeof(struct hci_filter)); 751 752 break; 753 754 case SO_HCI_DIRECTION: 755 err = sockopt_setint(sopt, 756 (pcb->hp_flags & HCI_DIRECTION ? 1 : 0)); 757 758 break; 759 760 default: 761 err = ENOPROTOOPT; 762 break; 763 } 764 break; 765 766 case PRCO_SETOPT: 767 switch (sopt->sopt_name) { 768 case SO_HCI_EVT_FILTER: /* set event filter */ 769 err = sockopt_get(sopt, &pcb->hp_efilter, 770 sizeof(pcb->hp_efilter)); 771 772 break; 773 774 case SO_HCI_PKT_FILTER: /* set packet filter */ 775 err = sockopt_get(sopt, &pcb->hp_pfilter, 776 sizeof(pcb->hp_pfilter)); 777 778 break; 779 780 case SO_HCI_DIRECTION: /* request direction ctl messages */ 781 err = sockopt_getint(sopt, &optval); 782 if (err) 783 break; 784 785 if (optval) 786 pcb->hp_flags |= HCI_DIRECTION; 787 else 788 pcb->hp_flags &= ~HCI_DIRECTION; 789 break; 790 791 default: 792 err = ENOPROTOOPT; 793 break; 794 } 795 break; 796 797 default: 798 err = ENOPROTOOPT; 799 break; 800 } 801 802 return err; 803 } 804 805 /* 806 * HCI mbuf tap routine 807 * 808 * copy packets to any raw HCI sockets that wish (and are 809 * permitted) to see them 810 */ 811 void 812 hci_mtap(struct mbuf *m, struct hci_unit *unit) 813 { 814 struct hci_pcb *pcb; 815 struct mbuf *m0, *ctlmsg, **ctl; 816 struct sockaddr_bt sa; 817 uint8_t type; 818 uint8_t event; 819 uint16_t arg1; 820 821 KASSERT(m->m_len >= sizeof(type)); 822 823 type = *mtod(m, uint8_t *); 824 825 memset(&sa, 0, sizeof(sa)); 826 sa.bt_len = sizeof(struct sockaddr_bt); 827 sa.bt_family = AF_BLUETOOTH; 828 bdaddr_copy(&sa.bt_bdaddr, &unit->hci_bdaddr); 829 830 LIST_FOREACH(pcb, &hci_pcb, hp_next) { 831 /* 832 * filter according to source address 833 */ 834 if ((pcb->hp_flags & HCI_PROMISCUOUS) == 0 835 && bdaddr_same(&pcb->hp_laddr, &sa.bt_bdaddr) == 0) 836 continue; 837 838 /* 839 * filter according to packet type filter 840 */ 841 if (hci_filter_test(type, &pcb->hp_pfilter) == 0) 842 continue; 843 844 /* 845 * filter according to event/security filters 846 */ 847 switch(type) { 848 case HCI_EVENT_PKT: 849 KASSERT(m->m_len >= sizeof(hci_event_hdr_t)); 850 851 event = mtod(m, hci_event_hdr_t *)->event; 852 853 if (hci_filter_test(event, &pcb->hp_efilter) == 0) 854 continue; 855 856 arg1 = event; 857 break; 858 859 case HCI_CMD_PKT: 860 KASSERT(m->m_len >= sizeof(hci_cmd_hdr_t)); 861 arg1 = le16toh(mtod(m, hci_cmd_hdr_t *)->opcode); 862 break; 863 864 case HCI_ACL_DATA_PKT: 865 KASSERT(m->m_len >= sizeof(hci_acldata_hdr_t)); 866 arg1 = le16toh(mtod(m, hci_acldata_hdr_t *)->con_handle); 867 arg1 = HCI_CON_HANDLE(arg1); 868 break; 869 870 case HCI_SCO_DATA_PKT: 871 KASSERT(m->m_len >= sizeof(hci_scodata_hdr_t)); 872 arg1 = le16toh(mtod(m, hci_scodata_hdr_t *)->con_handle); 873 arg1 = HCI_CON_HANDLE(arg1); 874 break; 875 876 default: 877 arg1 = 0; 878 break; 879 } 880 881 if (pcb->hp_cred != NULL 882 && kauth_authorize_device(pcb->hp_cred, 883 KAUTH_DEVICE_BLUETOOTH_RECV, 884 KAUTH_ARG(type), KAUTH_ARG(arg1), NULL, NULL) != 0) 885 continue; 886 887 /* 888 * create control messages 889 */ 890 ctlmsg = NULL; 891 ctl = &ctlmsg; 892 if (pcb->hp_flags & HCI_DIRECTION) { 893 int dir = m->m_flags & M_LINK0 ? 1 : 0; 894 895 *ctl = sbcreatecontrol(&dir, sizeof(dir), 896 SCM_HCI_DIRECTION, BTPROTO_HCI); 897 898 if (*ctl != NULL) 899 ctl = &((*ctl)->m_next); 900 } 901 if (pcb->hp_socket->so_options & SO_TIMESTAMP) { 902 struct timeval tv; 903 904 microtime(&tv); 905 *ctl = sbcreatecontrol(&tv, sizeof(tv), 906 SCM_TIMESTAMP, SOL_SOCKET); 907 908 if (*ctl != NULL) 909 ctl = &((*ctl)->m_next); 910 } 911 912 /* 913 * copy to socket 914 */ 915 m0 = m_copypacket(m, M_DONTWAIT); 916 if (m0 && sbappendaddr(&pcb->hp_socket->so_rcv, 917 (struct sockaddr *)&sa, m0, ctlmsg)) { 918 sorwakeup(pcb->hp_socket); 919 } else { 920 m_freem(ctlmsg); 921 m_freem(m0); 922 } 923 } 924 } 925 926 PR_WRAP_USRREQS(hci) 927 928 #define hci_attach hci_attach_wrapper 929 #define hci_detach hci_detach_wrapper 930 #define hci_accept hci_accept_wrapper 931 #define hci_bind hci_bind_wrapper 932 #define hci_listen hci_listen_wrapper 933 #define hci_connect hci_connect_wrapper 934 #define hci_connect2 hci_connect2_wrapper 935 #define hci_disconnect hci_disconnect_wrapper 936 #define hci_shutdown hci_shutdown_wrapper 937 #define hci_abort hci_abort_wrapper 938 #define hci_ioctl hci_ioctl_wrapper 939 #define hci_stat hci_stat_wrapper 940 #define hci_peeraddr hci_peeraddr_wrapper 941 #define hci_sockaddr hci_sockaddr_wrapper 942 #define hci_rcvd hci_rcvd_wrapper 943 #define hci_recvoob hci_recvoob_wrapper 944 #define hci_send hci_send_wrapper 945 #define hci_sendoob hci_sendoob_wrapper 946 #define hci_purgeif hci_purgeif_wrapper 947 948 const struct pr_usrreqs hci_usrreqs = { 949 .pr_attach = hci_attach, 950 .pr_detach = hci_detach, 951 .pr_accept = hci_accept, 952 .pr_bind = hci_bind, 953 .pr_listen = hci_listen, 954 .pr_connect = hci_connect, 955 .pr_connect2 = hci_connect2, 956 .pr_disconnect = hci_disconnect, 957 .pr_shutdown = hci_shutdown, 958 .pr_abort = hci_abort, 959 .pr_ioctl = hci_ioctl, 960 .pr_stat = hci_stat, 961 .pr_peeraddr = hci_peeraddr, 962 .pr_sockaddr = hci_sockaddr, 963 .pr_rcvd = hci_rcvd, 964 .pr_recvoob = hci_recvoob, 965 .pr_send = hci_send, 966 .pr_sendoob = hci_sendoob, 967 .pr_purgeif = hci_purgeif, 968 }; 969