hci_link.c revision 1.4 1 1.4 plunky /* $NetBSD: hci_link.c,v 1.4 2006/09/11 22:08:38 plunky Exp $ */
2 1.1 gdamore
3 1.1 gdamore /*-
4 1.1 gdamore * Copyright (c) 2005 Iain Hibbert.
5 1.1 gdamore * Copyright (c) 2006 Itronix Inc.
6 1.1 gdamore * All rights reserved.
7 1.1 gdamore *
8 1.1 gdamore * Redistribution and use in source and binary forms, with or without
9 1.1 gdamore * modification, are permitted provided that the following conditions
10 1.1 gdamore * are met:
11 1.1 gdamore * 1. Redistributions of source code must retain the above copyright
12 1.1 gdamore * notice, this list of conditions and the following disclaimer.
13 1.1 gdamore * 2. Redistributions in binary form must reproduce the above copyright
14 1.1 gdamore * notice, this list of conditions and the following disclaimer in the
15 1.1 gdamore * documentation and/or other materials provided with the distribution.
16 1.1 gdamore * 3. The name of Itronix Inc. may not be used to endorse
17 1.1 gdamore * or promote products derived from this software without specific
18 1.1 gdamore * prior written permission.
19 1.1 gdamore *
20 1.1 gdamore * THIS SOFTWARE IS PROVIDED BY ITRONIX INC. ``AS IS'' AND
21 1.1 gdamore * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
22 1.1 gdamore * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
23 1.1 gdamore * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL ITRONIX INC. BE LIABLE FOR ANY
24 1.1 gdamore * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
25 1.1 gdamore * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
26 1.1 gdamore * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
27 1.1 gdamore * ON ANY THEORY OF LIABILITY, WHETHER IN
28 1.1 gdamore * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
29 1.1 gdamore * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
30 1.1 gdamore * POSSIBILITY OF SUCH DAMAGE.
31 1.1 gdamore */
32 1.1 gdamore
33 1.1 gdamore #include <sys/cdefs.h>
34 1.4 plunky __KERNEL_RCSID(0, "$NetBSD: hci_link.c,v 1.4 2006/09/11 22:08:38 plunky Exp $");
35 1.1 gdamore
36 1.1 gdamore #include <sys/param.h>
37 1.1 gdamore #include <sys/kernel.h>
38 1.1 gdamore #include <sys/malloc.h>
39 1.1 gdamore #include <sys/mbuf.h>
40 1.1 gdamore #include <sys/proc.h>
41 1.1 gdamore #include <sys/queue.h>
42 1.1 gdamore #include <sys/systm.h>
43 1.1 gdamore
44 1.1 gdamore #include <netbt/bluetooth.h>
45 1.1 gdamore #include <netbt/hci.h>
46 1.2 tron #include <netbt/l2cap.h>
47 1.1 gdamore #include <netbt/sco.h>
48 1.1 gdamore
49 1.1 gdamore /*******************************************************************************
50 1.1 gdamore *
51 1.1 gdamore * HCI ACL Connections
52 1.1 gdamore */
53 1.1 gdamore
54 1.1 gdamore /*
55 1.1 gdamore * Automatically expire unused ACL connections after this number of
56 1.1 gdamore * seconds (if zero, do not expire unused connections) [sysctl]
57 1.1 gdamore */
58 1.1 gdamore int hci_acl_expiry = 10; /* seconds */
59 1.1 gdamore
60 1.1 gdamore /*
61 1.1 gdamore * hci_acl_open(unit, bdaddr)
62 1.1 gdamore *
63 1.1 gdamore * open ACL connection to remote bdaddr. Only one ACL connection is permitted
64 1.1 gdamore * between any two Bluetooth devices, so we look for an existing one before
65 1.1 gdamore * trying to start a new one.
66 1.1 gdamore */
67 1.1 gdamore struct hci_link *
68 1.1 gdamore hci_acl_open(struct hci_unit *unit, bdaddr_t *bdaddr)
69 1.1 gdamore {
70 1.1 gdamore struct hci_link *link;
71 1.2 tron struct hci_memo *memo;
72 1.1 gdamore hci_create_con_cp cp;
73 1.1 gdamore int err;
74 1.1 gdamore
75 1.1 gdamore KASSERT(unit);
76 1.1 gdamore KASSERT(bdaddr);
77 1.1 gdamore
78 1.1 gdamore link = hci_link_lookup_bdaddr(unit, bdaddr, HCI_LINK_ACL);
79 1.1 gdamore if (link == NULL) {
80 1.1 gdamore link = hci_link_alloc(unit);
81 1.1 gdamore if (link == NULL)
82 1.1 gdamore return NULL;
83 1.1 gdamore
84 1.1 gdamore link->hl_type = HCI_LINK_ACL;
85 1.1 gdamore bdaddr_copy(&link->hl_bdaddr, bdaddr);
86 1.1 gdamore }
87 1.1 gdamore
88 1.1 gdamore switch(link->hl_state) {
89 1.1 gdamore case HCI_LINK_CLOSED:
90 1.1 gdamore /*
91 1.1 gdamore * open connection to remote device
92 1.1 gdamore */
93 1.1 gdamore memset(&cp, 0, sizeof(cp));
94 1.1 gdamore bdaddr_copy(&cp.bdaddr, bdaddr);
95 1.1 gdamore cp.pkt_type = htole16(unit->hci_packet_type);
96 1.2 tron
97 1.2 tron memo = hci_memo_find(unit, bdaddr);
98 1.2 tron if (memo != NULL) {
99 1.2 tron cp.page_scan_rep_mode = memo->response.page_scan_rep_mode;
100 1.2 tron cp.page_scan_mode = memo->response.page_scan_mode;
101 1.2 tron cp.clock_offset = memo->response.clock_offset;
102 1.2 tron }
103 1.2 tron
104 1.1 gdamore if (unit->hci_link_policy & HCI_LINK_POLICY_ENABLE_ROLE_SWITCH)
105 1.1 gdamore cp.accept_role_switch = 1;
106 1.1 gdamore
107 1.1 gdamore err = hci_send_cmd(unit, HCI_CMD_CREATE_CON, &cp, sizeof(cp));
108 1.1 gdamore if (err) {
109 1.1 gdamore hci_link_free(link, err);
110 1.1 gdamore return NULL;
111 1.1 gdamore }
112 1.1 gdamore
113 1.1 gdamore link->hl_state = HCI_LINK_WAIT_CONNECT;
114 1.1 gdamore break;
115 1.1 gdamore
116 1.1 gdamore case HCI_LINK_WAIT_CONNECT:
117 1.1 gdamore /*
118 1.1 gdamore * somebody else already trying to connect, we just
119 1.1 gdamore * sit on the bench with them..
120 1.1 gdamore */
121 1.1 gdamore break;
122 1.1 gdamore
123 1.1 gdamore case HCI_LINK_OPEN:
124 1.1 gdamore /*
125 1.1 gdamore * If already open, halt any expiry timeouts. We dont need
126 1.1 gdamore * to care about already invoking timeouts since refcnt >0
127 1.1 gdamore * will keep the link alive.
128 1.1 gdamore */
129 1.1 gdamore callout_stop(&link->hl_expire);
130 1.1 gdamore break;
131 1.1 gdamore
132 1.1 gdamore default:
133 1.1 gdamore UNKNOWN(link->hl_state);
134 1.1 gdamore return NULL;
135 1.1 gdamore }
136 1.1 gdamore
137 1.1 gdamore /* open */
138 1.1 gdamore link->hl_refcnt++;
139 1.1 gdamore
140 1.1 gdamore return link;
141 1.1 gdamore }
142 1.1 gdamore
143 1.1 gdamore /*
144 1.1 gdamore * Close ACL connection. When there are no more references to this link,
145 1.1 gdamore * we can either close it down or schedule a delayed closedown.
146 1.1 gdamore */
147 1.1 gdamore void
148 1.1 gdamore hci_acl_close(struct hci_link *link, int err)
149 1.1 gdamore {
150 1.1 gdamore
151 1.1 gdamore KASSERT(link);
152 1.1 gdamore
153 1.1 gdamore if (--link->hl_refcnt == 0) {
154 1.1 gdamore if (link->hl_state == HCI_LINK_CLOSED)
155 1.1 gdamore hci_link_free(link, err);
156 1.1 gdamore else if (hci_acl_expiry > 0)
157 1.1 gdamore callout_schedule(&link->hl_expire, hci_acl_expiry * hz);
158 1.1 gdamore }
159 1.1 gdamore }
160 1.1 gdamore
161 1.1 gdamore /*
162 1.3 tron * Incoming ACL connection.
163 1.3 tron *
164 1.3 tron * For now, we accept all connections but it would be better to check
165 1.3 tron * the L2CAP listen list and only accept when there is a listener
166 1.3 tron * available.
167 1.3 tron *
168 1.3 tron * There should not be a link to the same bdaddr already, we check
169 1.3 tron * anyway though its left unhandled for now.
170 1.1 gdamore */
171 1.1 gdamore struct hci_link *
172 1.1 gdamore hci_acl_newconn(struct hci_unit *unit, bdaddr_t *bdaddr)
173 1.1 gdamore {
174 1.1 gdamore struct hci_link *link;
175 1.1 gdamore
176 1.3 tron link = hci_link_lookup_bdaddr(unit, bdaddr, HCI_LINK_ACL);
177 1.3 tron if (link != NULL)
178 1.3 tron return NULL;
179 1.3 tron
180 1.1 gdamore link = hci_link_alloc(unit);
181 1.1 gdamore if (link != NULL) {
182 1.1 gdamore link->hl_state = HCI_LINK_WAIT_CONNECT;
183 1.1 gdamore link->hl_type = HCI_LINK_ACL;
184 1.1 gdamore bdaddr_copy(&link->hl_bdaddr, bdaddr);
185 1.1 gdamore
186 1.1 gdamore if (hci_acl_expiry > 0)
187 1.1 gdamore callout_schedule(&link->hl_expire, hci_acl_expiry * hz);
188 1.1 gdamore }
189 1.1 gdamore
190 1.1 gdamore return link;
191 1.1 gdamore }
192 1.1 gdamore
193 1.1 gdamore void
194 1.1 gdamore hci_acl_timeout(void *arg)
195 1.1 gdamore {
196 1.1 gdamore struct hci_link *link = arg;
197 1.1 gdamore hci_discon_cp cp;
198 1.1 gdamore int s, err;
199 1.1 gdamore
200 1.1 gdamore s = splsoftnet();
201 1.1 gdamore callout_ack(&link->hl_expire);
202 1.1 gdamore
203 1.1 gdamore if (link->hl_refcnt > 0)
204 1.1 gdamore goto out;
205 1.1 gdamore
206 1.1 gdamore DPRINTF("link #%d expired\n", link->hl_handle);
207 1.1 gdamore
208 1.1 gdamore switch (link->hl_state) {
209 1.1 gdamore case HCI_LINK_CLOSED:
210 1.1 gdamore case HCI_LINK_WAIT_CONNECT:
211 1.1 gdamore hci_link_free(link, ECONNRESET);
212 1.1 gdamore break;
213 1.1 gdamore
214 1.1 gdamore case HCI_LINK_OPEN:
215 1.1 gdamore cp.con_handle = htole16(link->hl_handle);
216 1.1 gdamore cp.reason = 0x13; /* "Remote User Terminated Connection" */
217 1.1 gdamore
218 1.1 gdamore err = hci_send_cmd(link->hl_unit, HCI_CMD_DISCONNECT,
219 1.1 gdamore &cp, sizeof(cp));
220 1.1 gdamore
221 1.1 gdamore if (err)
222 1.1 gdamore DPRINTF("error %d sending HCI_CMD_DISCONNECT\n",
223 1.1 gdamore err);
224 1.1 gdamore
225 1.1 gdamore break;
226 1.1 gdamore
227 1.1 gdamore default:
228 1.1 gdamore UNKNOWN(link->hl_state);
229 1.1 gdamore break;
230 1.1 gdamore }
231 1.1 gdamore
232 1.1 gdamore out:
233 1.1 gdamore splx(s);
234 1.1 gdamore }
235 1.1 gdamore
236 1.1 gdamore /*
237 1.1 gdamore * Receive ACL Data
238 1.1 gdamore *
239 1.1 gdamore * we accumulate packet fragments on the hci_link structure
240 1.1 gdamore * until a full L2CAP frame is ready, then send it on.
241 1.1 gdamore */
242 1.1 gdamore void
243 1.1 gdamore hci_acl_recv(struct mbuf *m, struct hci_unit *unit)
244 1.1 gdamore {
245 1.1 gdamore struct hci_link *link;
246 1.1 gdamore hci_acldata_hdr_t hdr;
247 1.1 gdamore uint16_t handle, want;
248 1.1 gdamore int pb, got;
249 1.1 gdamore
250 1.1 gdamore KASSERT(m);
251 1.1 gdamore KASSERT(unit);
252 1.1 gdamore
253 1.1 gdamore KASSERT(m->m_pkthdr.len >= sizeof(hdr));
254 1.1 gdamore m_copydata(m, 0, sizeof(hdr), &hdr);
255 1.1 gdamore m_adj(m, sizeof(hdr));
256 1.1 gdamore
257 1.1 gdamore #ifdef DIAGNOSTIC
258 1.1 gdamore if (hdr.type != HCI_ACL_DATA_PKT) {
259 1.1 gdamore printf("%s: bad ACL packet type\n", unit->hci_devname);
260 1.1 gdamore goto bad;
261 1.1 gdamore }
262 1.1 gdamore
263 1.1 gdamore if (m->m_pkthdr.len != le16toh(hdr.length)) {
264 1.1 gdamore printf("%s: bad ACL packet length\n", unit->hci_devname);
265 1.1 gdamore goto bad;
266 1.1 gdamore }
267 1.1 gdamore #endif
268 1.1 gdamore
269 1.1 gdamore hdr.length = le16toh(hdr.length);
270 1.1 gdamore hdr.con_handle = le16toh(hdr.con_handle);
271 1.1 gdamore handle = HCI_CON_HANDLE(hdr.con_handle);
272 1.1 gdamore pb = HCI_PB_FLAG(hdr.con_handle);
273 1.1 gdamore
274 1.1 gdamore link = hci_link_lookup_handle(unit, handle);
275 1.1 gdamore if (link == NULL) {
276 1.1 gdamore hci_discon_cp cp;
277 1.1 gdamore
278 1.1 gdamore DPRINTF("%s: dumping packet for unknown handle #%d\n",
279 1.1 gdamore unit->hci_devname, handle);
280 1.1 gdamore
281 1.1 gdamore /*
282 1.1 gdamore * There is no way to find out what this connection handle is
283 1.1 gdamore * for, just get rid of it. This may happen, if a USB dongle
284 1.1 gdamore * is plugged into a self powered hub and does not reset when
285 1.1 gdamore * the system is shut down.
286 1.1 gdamore */
287 1.1 gdamore cp.con_handle = htole16(handle);
288 1.1 gdamore cp.reason = 0x13; /* "Remote User Terminated Connection" */
289 1.1 gdamore hci_send_cmd(unit, HCI_CMD_DISCONNECT, &cp, sizeof(cp));
290 1.1 gdamore goto bad;
291 1.1 gdamore }
292 1.1 gdamore
293 1.1 gdamore switch (pb) {
294 1.1 gdamore case HCI_PACKET_START:
295 1.1 gdamore if (link->hl_rxp != NULL)
296 1.1 gdamore printf("%s: dropped incomplete ACL packet\n",
297 1.1 gdamore unit->hci_devname);
298 1.1 gdamore
299 1.1 gdamore if (m->m_pkthdr.len < sizeof(l2cap_hdr_t)) {
300 1.1 gdamore printf("%s: short ACL packet\n",
301 1.1 gdamore unit->hci_devname);
302 1.1 gdamore
303 1.1 gdamore goto bad;
304 1.1 gdamore }
305 1.1 gdamore
306 1.1 gdamore link->hl_rxp = m;
307 1.1 gdamore got = m->m_pkthdr.len;
308 1.1 gdamore break;
309 1.1 gdamore
310 1.1 gdamore case HCI_PACKET_FRAGMENT:
311 1.1 gdamore if (link->hl_rxp == NULL) {
312 1.1 gdamore printf("%s: unexpected packet fragment\n",
313 1.1 gdamore unit->hci_devname);
314 1.1 gdamore
315 1.1 gdamore goto bad;
316 1.1 gdamore }
317 1.1 gdamore
318 1.1 gdamore got = m->m_pkthdr.len + link->hl_rxp->m_pkthdr.len;
319 1.1 gdamore m_cat(link->hl_rxp, m);
320 1.1 gdamore m = link->hl_rxp;
321 1.1 gdamore m->m_pkthdr.len = got;
322 1.1 gdamore break;
323 1.1 gdamore
324 1.1 gdamore default:
325 1.1 gdamore printf("%s: unknown packet type\n",
326 1.1 gdamore unit->hci_devname);
327 1.1 gdamore
328 1.1 gdamore goto bad;
329 1.1 gdamore }
330 1.1 gdamore
331 1.1 gdamore m_copydata(m, 0, sizeof(want), &want);
332 1.1 gdamore want = le16toh(want) + sizeof(l2cap_hdr_t) - got;
333 1.1 gdamore
334 1.1 gdamore if (want > 0)
335 1.1 gdamore return;
336 1.1 gdamore
337 1.1 gdamore link->hl_rxp = NULL;
338 1.1 gdamore
339 1.1 gdamore if (want == 0) {
340 1.1 gdamore l2cap_recv_frame(m, link);
341 1.1 gdamore return;
342 1.1 gdamore }
343 1.1 gdamore
344 1.1 gdamore bad:
345 1.1 gdamore m_freem(m);
346 1.1 gdamore }
347 1.1 gdamore
348 1.1 gdamore /*
349 1.1 gdamore * Send ACL data on link
350 1.1 gdamore *
351 1.1 gdamore * We must fragment packets into chunks of less than unit->hci_max_acl_size and
352 1.1 gdamore * prepend a relevant ACL header to each fragment. We keep a PDU structure
353 1.1 gdamore * attached to the link, so that completed fragments can be marked off and
354 1.1 gdamore * more data requested from above once the PDU is sent.
355 1.1 gdamore */
356 1.1 gdamore int
357 1.1 gdamore hci_acl_send(struct mbuf *m, struct hci_link *link,
358 1.1 gdamore struct l2cap_channel *chan)
359 1.1 gdamore {
360 1.1 gdamore struct l2cap_pdu *pdu;
361 1.1 gdamore struct mbuf *n = NULL;
362 1.1 gdamore int plen, mlen, num = 0;
363 1.1 gdamore
364 1.1 gdamore KASSERT(link);
365 1.1 gdamore KASSERT(m);
366 1.1 gdamore KASSERT(m->m_flags & M_PKTHDR);
367 1.1 gdamore KASSERT(m->m_pkthdr.len > 0);
368 1.1 gdamore
369 1.1 gdamore if (link->hl_state == HCI_LINK_CLOSED) {
370 1.1 gdamore m_freem(m);
371 1.1 gdamore return ENETDOWN;
372 1.1 gdamore }
373 1.1 gdamore
374 1.1 gdamore pdu = pool_get(&l2cap_pdu_pool, PR_NOWAIT);
375 1.1 gdamore if (pdu == NULL)
376 1.1 gdamore goto nomem;
377 1.1 gdamore
378 1.1 gdamore pdu->lp_chan = chan;
379 1.1 gdamore pdu->lp_pending = 0;
380 1.1 gdamore MBUFQ_INIT(&pdu->lp_data);
381 1.1 gdamore
382 1.1 gdamore plen = m->m_pkthdr.len;
383 1.1 gdamore mlen = link->hl_unit->hci_max_acl_size;
384 1.1 gdamore
385 1.1 gdamore DPRINTFN(5, "%s: handle #%d, plen = %d, max = %d\n",
386 1.1 gdamore link->hl_unit->hci_devname, link->hl_handle, plen, mlen);
387 1.1 gdamore
388 1.1 gdamore while (plen > 0) {
389 1.1 gdamore if (plen > mlen) {
390 1.1 gdamore n = m_split(m, mlen, M_DONTWAIT);
391 1.1 gdamore if (n == NULL)
392 1.1 gdamore goto nomem;
393 1.1 gdamore } else {
394 1.1 gdamore mlen = plen;
395 1.1 gdamore }
396 1.1 gdamore
397 1.1 gdamore if (num++ == 0)
398 1.1 gdamore m->m_flags |= M_PROTO1; /* tag first fragment */
399 1.1 gdamore
400 1.1 gdamore DPRINTFN(10, "chunk of %d (plen = %d) bytes\n", mlen, plen);
401 1.1 gdamore MBUFQ_ENQUEUE(&pdu->lp_data, m);
402 1.1 gdamore m = n;
403 1.1 gdamore plen -= mlen;
404 1.1 gdamore }
405 1.1 gdamore
406 1.1 gdamore TAILQ_INSERT_TAIL(&link->hl_txq, pdu, lp_next);
407 1.1 gdamore link->hl_txqlen += num;
408 1.1 gdamore
409 1.1 gdamore hci_acl_start(link);
410 1.1 gdamore
411 1.1 gdamore return 0;
412 1.1 gdamore
413 1.1 gdamore nomem:
414 1.1 gdamore if (m) m_freem(m);
415 1.1 gdamore if (n) m_freem(n);
416 1.1 gdamore if (pdu) {
417 1.1 gdamore MBUFQ_DRAIN(&pdu->lp_data);
418 1.1 gdamore pool_put(&l2cap_pdu_pool, pdu);
419 1.1 gdamore }
420 1.1 gdamore
421 1.1 gdamore return ENOMEM;
422 1.1 gdamore }
423 1.1 gdamore
424 1.1 gdamore /*
425 1.1 gdamore * Start sending ACL data on link.
426 1.1 gdamore *
427 1.1 gdamore * We may use all the available packet slots. The reason that we add
428 1.1 gdamore * the ACL encapsulation here rather than in hci_acl_send() is that L2CAP
429 1.1 gdamore * signal packets may be queued before the handle is given to us..
430 1.1 gdamore *
431 1.1 gdamore * this is called from hci_acl_send() above, and the event processing
432 1.1 gdamore * code (for CON_COMPL and NUM_COMPL_PKTS)
433 1.1 gdamore */
434 1.1 gdamore void
435 1.1 gdamore hci_acl_start(struct hci_link *link)
436 1.1 gdamore {
437 1.1 gdamore struct hci_unit *unit;
438 1.1 gdamore hci_acldata_hdr_t *hdr;
439 1.1 gdamore struct l2cap_pdu *pdu;
440 1.1 gdamore struct mbuf *m;
441 1.1 gdamore uint16_t handle;
442 1.1 gdamore
443 1.1 gdamore KASSERT(link);
444 1.1 gdamore
445 1.1 gdamore unit = link->hl_unit;
446 1.1 gdamore KASSERT(unit);
447 1.1 gdamore
448 1.1 gdamore /* this is mainly to block ourselves (below) */
449 1.1 gdamore if (link->hl_state != HCI_LINK_OPEN)
450 1.1 gdamore return;
451 1.1 gdamore
452 1.1 gdamore if (link->hl_txqlen == 0 || unit->hci_num_acl_pkts == 0)
453 1.1 gdamore return;
454 1.1 gdamore
455 1.1 gdamore /* find first PDU with data to send */
456 1.1 gdamore pdu = TAILQ_FIRST(&link->hl_txq);
457 1.1 gdamore for (;;) {
458 1.1 gdamore if (pdu == NULL)
459 1.1 gdamore return;
460 1.1 gdamore
461 1.1 gdamore if (MBUFQ_FIRST(&pdu->lp_data) != NULL)
462 1.1 gdamore break;
463 1.1 gdamore
464 1.1 gdamore pdu = TAILQ_NEXT(pdu, lp_next);
465 1.1 gdamore }
466 1.1 gdamore
467 1.1 gdamore while (unit->hci_num_acl_pkts > 0) {
468 1.1 gdamore MBUFQ_DEQUEUE(&pdu->lp_data, m);
469 1.1 gdamore KASSERT(m != NULL);
470 1.1 gdamore
471 1.1 gdamore if (m->m_flags & M_PROTO1)
472 1.1 gdamore handle = HCI_MK_CON_HANDLE(link->hl_handle,
473 1.1 gdamore HCI_PACKET_START, 0);
474 1.1 gdamore else
475 1.1 gdamore handle = HCI_MK_CON_HANDLE(link->hl_handle,
476 1.1 gdamore HCI_PACKET_FRAGMENT, 0);
477 1.1 gdamore
478 1.1 gdamore M_PREPEND(m, sizeof(*hdr), M_DONTWAIT);
479 1.1 gdamore if (m == NULL)
480 1.1 gdamore break;
481 1.1 gdamore
482 1.1 gdamore hdr = mtod(m, hci_acldata_hdr_t *);
483 1.1 gdamore hdr->type = HCI_ACL_DATA_PKT;
484 1.1 gdamore hdr->con_handle = htole16(handle);
485 1.1 gdamore hdr->length = htole16(m->m_pkthdr.len - sizeof(*hdr));
486 1.1 gdamore
487 1.1 gdamore link->hl_txqlen--;
488 1.1 gdamore pdu->lp_pending++;
489 1.1 gdamore
490 1.1 gdamore hci_output_acl(unit, m);
491 1.1 gdamore
492 1.1 gdamore if (MBUFQ_FIRST(&pdu->lp_data) == NULL) {
493 1.1 gdamore if (pdu->lp_chan) {
494 1.1 gdamore /*
495 1.1 gdamore * This should enable streaming of PDUs - when
496 1.1 gdamore * we have placed all the fragments on the acl
497 1.1 gdamore * output queue, we trigger the L2CAP layer to
498 1.1 gdamore * send us down one more. Use a false state so
499 1.1 gdamore * we dont run into ourselves coming back from
500 1.1 gdamore * the future..
501 1.1 gdamore */
502 1.1 gdamore link->hl_state = HCI_LINK_BLOCK;
503 1.1 gdamore l2cap_start(pdu->lp_chan);
504 1.1 gdamore link->hl_state = HCI_LINK_OPEN;
505 1.1 gdamore }
506 1.1 gdamore
507 1.1 gdamore pdu = TAILQ_NEXT(pdu, lp_next);
508 1.1 gdamore if (pdu == NULL)
509 1.1 gdamore break;
510 1.1 gdamore }
511 1.1 gdamore }
512 1.1 gdamore
513 1.1 gdamore /*
514 1.1 gdamore * We had our turn now, move to the back of the queue to let
515 1.1 gdamore * other links have a go at the output buffers..
516 1.1 gdamore */
517 1.1 gdamore if (TAILQ_NEXT(link, hl_next)) {
518 1.1 gdamore TAILQ_REMOVE(&unit->hci_links, link, hl_next);
519 1.1 gdamore TAILQ_INSERT_TAIL(&unit->hci_links, link, hl_next);
520 1.1 gdamore }
521 1.1 gdamore }
522 1.1 gdamore
523 1.1 gdamore /*
524 1.1 gdamore * Confirm ACL packets cleared from Controller buffers. We scan our PDU
525 1.1 gdamore * list to clear pending fragments and signal upstream for more data
526 1.1 gdamore * when a PDU is complete.
527 1.1 gdamore */
528 1.1 gdamore void
529 1.1 gdamore hci_acl_complete(struct hci_link *link, int num)
530 1.1 gdamore {
531 1.1 gdamore struct l2cap_pdu *pdu;
532 1.1 gdamore struct l2cap_channel *chan;
533 1.1 gdamore
534 1.1 gdamore DPRINTFN(5, "handle #%d (%d)\n", link->hl_handle, num);
535 1.1 gdamore
536 1.1 gdamore while (num > 0) {
537 1.1 gdamore pdu = TAILQ_FIRST(&link->hl_txq);
538 1.1 gdamore if (pdu == NULL) {
539 1.1 gdamore printf("%s: %d packets completed on handle #%x "
540 1.1 gdamore "but none pending!\n",
541 1.1 gdamore link->hl_unit->hci_devname, num,
542 1.1 gdamore link->hl_handle);
543 1.1 gdamore return;
544 1.1 gdamore }
545 1.1 gdamore
546 1.1 gdamore if (num >= pdu->lp_pending) {
547 1.1 gdamore num -= pdu->lp_pending;
548 1.1 gdamore pdu->lp_pending = 0;
549 1.1 gdamore
550 1.1 gdamore if (MBUFQ_FIRST(&pdu->lp_data) == NULL) {
551 1.1 gdamore TAILQ_REMOVE(&link->hl_txq, pdu, lp_next);
552 1.1 gdamore chan = pdu->lp_chan;
553 1.1 gdamore if (chan != NULL) {
554 1.1 gdamore chan->lc_pending--;
555 1.1 gdamore (*chan->lc_proto->complete)
556 1.1 gdamore (chan->lc_upper, 1);
557 1.1 gdamore
558 1.1 gdamore if (chan->lc_pending == 0)
559 1.1 gdamore l2cap_start(chan);
560 1.1 gdamore }
561 1.1 gdamore
562 1.1 gdamore pool_put(&l2cap_pdu_pool, pdu);
563 1.1 gdamore }
564 1.1 gdamore } else {
565 1.1 gdamore pdu->lp_pending -= num;
566 1.1 gdamore num = 0;
567 1.1 gdamore }
568 1.1 gdamore }
569 1.1 gdamore }
570 1.1 gdamore
571 1.1 gdamore /*******************************************************************************
572 1.1 gdamore *
573 1.1 gdamore * HCI SCO Connections
574 1.1 gdamore */
575 1.1 gdamore
576 1.1 gdamore /*
577 1.3 tron * Incoming SCO Connection. We check the list for anybody willing
578 1.3 tron * to take it.
579 1.1 gdamore */
580 1.1 gdamore struct hci_link *
581 1.1 gdamore hci_sco_newconn(struct hci_unit *unit, bdaddr_t *bdaddr)
582 1.1 gdamore {
583 1.3 tron struct sockaddr_bt laddr, raddr;
584 1.3 tron struct sco_pcb *pcb, *new;
585 1.3 tron struct hci_link *sco, *acl;
586 1.3 tron
587 1.3 tron memset(&laddr, 0, sizeof(laddr));
588 1.3 tron laddr.bt_len = sizeof(laddr);
589 1.3 tron laddr.bt_family = AF_BLUETOOTH;
590 1.3 tron bdaddr_copy(&laddr.bt_bdaddr, &unit->hci_bdaddr);
591 1.3 tron
592 1.3 tron memset(&raddr, 0, sizeof(raddr));
593 1.3 tron raddr.bt_len = sizeof(raddr);
594 1.3 tron raddr.bt_family = AF_BLUETOOTH;
595 1.3 tron bdaddr_copy(&raddr.bt_bdaddr, bdaddr);
596 1.3 tron
597 1.3 tron /*
598 1.3 tron * There should already be an ACL link up and running before
599 1.3 tron * the controller sends us SCO connection requests, but you
600 1.3 tron * never know..
601 1.3 tron */
602 1.3 tron acl = hci_link_lookup_bdaddr(unit, bdaddr, HCI_LINK_ACL);
603 1.3 tron if (acl == NULL || acl->hl_state != HCI_LINK_OPEN)
604 1.3 tron return NULL;
605 1.3 tron
606 1.3 tron LIST_FOREACH(pcb, &sco_pcb, sp_next) {
607 1.3 tron if ((pcb->sp_flags & SP_LISTENING) == 0)
608 1.3 tron continue;
609 1.3 tron
610 1.3 tron new = (*pcb->sp_proto->newconn)(pcb->sp_upper, &laddr, &raddr);
611 1.3 tron if (new == NULL)
612 1.3 tron continue;
613 1.3 tron
614 1.3 tron /*
615 1.3 tron * Ok, got new pcb so we can start a new link and fill
616 1.3 tron * in all the details.
617 1.3 tron */
618 1.3 tron bdaddr_copy(&new->sp_laddr, &unit->hci_bdaddr);
619 1.3 tron bdaddr_copy(&new->sp_raddr, bdaddr);
620 1.3 tron
621 1.3 tron sco = hci_link_alloc(unit);
622 1.3 tron if (sco == NULL) {
623 1.3 tron sco_detach(&new);
624 1.3 tron return NULL;
625 1.3 tron }
626 1.3 tron
627 1.3 tron sco->hl_type = HCI_LINK_SCO;
628 1.3 tron bdaddr_copy(&sco->hl_bdaddr, bdaddr);
629 1.3 tron
630 1.3 tron sco->hl_link = hci_acl_open(unit, bdaddr);
631 1.3 tron KASSERT(sco->hl_link == acl);
632 1.3 tron
633 1.3 tron sco->hl_sco = new;
634 1.3 tron new->sp_link = sco;
635 1.3 tron
636 1.3 tron new->sp_mtu = unit->hci_max_sco_size;
637 1.3 tron return sco;
638 1.3 tron }
639 1.1 gdamore
640 1.1 gdamore return NULL;
641 1.1 gdamore }
642 1.1 gdamore
643 1.1 gdamore /*
644 1.1 gdamore * receive SCO packet, we only need to strip the header and send
645 1.1 gdamore * it to the right handler
646 1.1 gdamore */
647 1.1 gdamore void
648 1.1 gdamore hci_sco_recv(struct mbuf *m, struct hci_unit *unit)
649 1.1 gdamore {
650 1.1 gdamore struct hci_link *link;
651 1.1 gdamore hci_scodata_hdr_t hdr;
652 1.1 gdamore uint16_t handle;
653 1.1 gdamore
654 1.1 gdamore KASSERT(m);
655 1.1 gdamore KASSERT(unit);
656 1.1 gdamore
657 1.1 gdamore KASSERT(m->m_pkthdr.len >= sizeof(hdr));
658 1.1 gdamore m_copydata(m, 0, sizeof(hdr), &hdr);
659 1.1 gdamore m_adj(m, sizeof(hdr));
660 1.1 gdamore
661 1.1 gdamore #ifdef DIAGNOSTIC
662 1.1 gdamore if (hdr.type != HCI_SCO_DATA_PKT) {
663 1.1 gdamore printf("%s: bad SCO packet type\n", unit->hci_devname);
664 1.1 gdamore goto bad;
665 1.1 gdamore }
666 1.1 gdamore
667 1.1 gdamore if (m->m_pkthdr.len != hdr.length) {
668 1.1 gdamore printf("%s: bad SCO packet length (%d != %d)\n", unit->hci_devname, m->m_pkthdr.len, hdr.length);
669 1.1 gdamore goto bad;
670 1.1 gdamore }
671 1.1 gdamore #endif
672 1.1 gdamore
673 1.1 gdamore hdr.con_handle = le16toh(hdr.con_handle);
674 1.1 gdamore handle = HCI_CON_HANDLE(hdr.con_handle);
675 1.1 gdamore
676 1.1 gdamore link = hci_link_lookup_handle(unit, handle);
677 1.1 gdamore if (link == NULL || link->hl_type == HCI_LINK_ACL) {
678 1.1 gdamore DPRINTF("%s: dumping packet for unknown handle #%d\n",
679 1.1 gdamore unit->hci_devname, handle);
680 1.1 gdamore
681 1.1 gdamore goto bad;
682 1.1 gdamore }
683 1.1 gdamore
684 1.1 gdamore (*link->hl_sco->sp_proto->input)(link->hl_sco->sp_upper, m);
685 1.1 gdamore return;
686 1.1 gdamore
687 1.1 gdamore bad:
688 1.1 gdamore m_freem(m);
689 1.1 gdamore }
690 1.1 gdamore
691 1.1 gdamore void
692 1.1 gdamore hci_sco_start(struct hci_link *link)
693 1.1 gdamore {
694 1.1 gdamore }
695 1.1 gdamore
696 1.1 gdamore /*
697 1.1 gdamore * SCO packets have completed at the controller, so we can
698 1.1 gdamore * signal up to free the buffer space.
699 1.1 gdamore */
700 1.1 gdamore void
701 1.1 gdamore hci_sco_complete(struct hci_link *link, int num)
702 1.1 gdamore {
703 1.1 gdamore
704 1.1 gdamore DPRINTFN(5, "handle #%d (num=%d)\n", link->hl_handle, num);
705 1.1 gdamore link->hl_sco->sp_pending--;
706 1.1 gdamore (*link->hl_sco->sp_proto->complete)(link->hl_sco->sp_upper, num);
707 1.1 gdamore }
708 1.1 gdamore
709 1.1 gdamore /*******************************************************************************
710 1.1 gdamore *
711 1.1 gdamore * Generic HCI Connection alloc/free/lookup etc
712 1.1 gdamore */
713 1.1 gdamore
714 1.1 gdamore struct hci_link *
715 1.1 gdamore hci_link_alloc(struct hci_unit *unit)
716 1.1 gdamore {
717 1.1 gdamore struct hci_link *link;
718 1.1 gdamore
719 1.1 gdamore KASSERT(unit);
720 1.1 gdamore
721 1.1 gdamore link = malloc(sizeof(struct hci_link), M_BLUETOOTH, M_NOWAIT | M_ZERO);
722 1.1 gdamore if (link == NULL)
723 1.1 gdamore return NULL;
724 1.1 gdamore
725 1.1 gdamore link->hl_unit = unit;
726 1.1 gdamore link->hl_state = HCI_LINK_CLOSED;
727 1.1 gdamore
728 1.1 gdamore /* init ACL portion */
729 1.1 gdamore callout_init(&link->hl_expire);
730 1.1 gdamore callout_setfunc(&link->hl_expire, hci_acl_timeout, link);
731 1.1 gdamore
732 1.1 gdamore TAILQ_INIT(&link->hl_txq); /* outgoing packets */
733 1.1 gdamore TAILQ_INIT(&link->hl_reqs); /* request queue */
734 1.1 gdamore
735 1.1 gdamore link->hl_mtu = L2CAP_MTU_DEFAULT; /* L2CAP signal mtu */
736 1.1 gdamore link->hl_flush = L2CAP_FLUSH_TIMO_DEFAULT; /* flush timeout */
737 1.1 gdamore
738 1.1 gdamore /* init SCO portion */
739 1.1 gdamore MBUFQ_INIT(&link->hl_data);
740 1.1 gdamore
741 1.1 gdamore /* attach to unit */
742 1.1 gdamore TAILQ_INSERT_HEAD(&unit->hci_links, link, hl_next);
743 1.1 gdamore return link;
744 1.1 gdamore }
745 1.1 gdamore
746 1.1 gdamore void
747 1.1 gdamore hci_link_free(struct hci_link *link, int err)
748 1.1 gdamore {
749 1.1 gdamore struct l2cap_req *req;
750 1.1 gdamore struct l2cap_pdu *pdu;
751 1.4 plunky struct l2cap_channel *chan, *next;
752 1.1 gdamore
753 1.1 gdamore KASSERT(link);
754 1.1 gdamore
755 1.1 gdamore DPRINTF("#%d, type = %d, state = %d, refcnt = %d\n",
756 1.1 gdamore link->hl_handle, link->hl_type,
757 1.1 gdamore link->hl_state, link->hl_refcnt);
758 1.1 gdamore
759 1.1 gdamore /* ACL reference count */
760 1.1 gdamore if (link->hl_refcnt > 0) {
761 1.4 plunky next = LIST_FIRST(&l2cap_active_list);
762 1.4 plunky while ((chan = next) != NULL) {
763 1.4 plunky next = LIST_NEXT(chan, lc_ncid);
764 1.1 gdamore if (chan->lc_link == link)
765 1.1 gdamore l2cap_close(chan, err);
766 1.1 gdamore }
767 1.1 gdamore }
768 1.1 gdamore KASSERT(link->hl_refcnt == 0);
769 1.1 gdamore
770 1.1 gdamore /* ACL L2CAP requests.. */
771 1.1 gdamore while ((req = TAILQ_FIRST(&link->hl_reqs)) != NULL)
772 1.1 gdamore l2cap_request_free(req);
773 1.1 gdamore
774 1.1 gdamore KASSERT(TAILQ_EMPTY(&link->hl_reqs));
775 1.1 gdamore
776 1.1 gdamore /* ACL outgoing data queue */
777 1.1 gdamore while ((pdu = TAILQ_FIRST(&link->hl_txq)) != NULL) {
778 1.1 gdamore TAILQ_REMOVE(&link->hl_txq, pdu, lp_next);
779 1.1 gdamore MBUFQ_DRAIN(&pdu->lp_data);
780 1.1 gdamore if (pdu->lp_pending)
781 1.1 gdamore link->hl_unit->hci_num_acl_pkts += pdu->lp_pending;
782 1.1 gdamore
783 1.1 gdamore pool_put(&l2cap_pdu_pool, pdu);
784 1.1 gdamore }
785 1.1 gdamore
786 1.1 gdamore KASSERT(TAILQ_EMPTY(&link->hl_txq));
787 1.1 gdamore
788 1.1 gdamore /* ACL incoming data packet */
789 1.1 gdamore if (link->hl_rxp != NULL) {
790 1.1 gdamore m_freem(link->hl_rxp);
791 1.1 gdamore link->hl_rxp = NULL;
792 1.1 gdamore }
793 1.1 gdamore
794 1.1 gdamore /* SCO master ACL link */
795 1.1 gdamore if (link->hl_link != NULL) {
796 1.1 gdamore hci_acl_close(link->hl_link, err);
797 1.1 gdamore link->hl_link = NULL;
798 1.1 gdamore }
799 1.1 gdamore
800 1.1 gdamore /* SCO pcb */
801 1.1 gdamore if (link->hl_sco != NULL) {
802 1.1 gdamore struct sco_pcb *pcb;
803 1.1 gdamore
804 1.1 gdamore pcb = link->hl_sco;
805 1.1 gdamore pcb->sp_link = NULL;
806 1.1 gdamore link->hl_sco = NULL;
807 1.1 gdamore (*pcb->sp_proto->disconnected)(pcb->sp_upper, err);
808 1.1 gdamore }
809 1.1 gdamore
810 1.1 gdamore /* flush any SCO data */
811 1.1 gdamore MBUFQ_DRAIN(&link->hl_data);
812 1.1 gdamore
813 1.1 gdamore /*
814 1.1 gdamore * Halt the callout - if its already running we cannot free the
815 1.1 gdamore * link structure but the timeout function will call us back in
816 1.1 gdamore * any case.
817 1.1 gdamore */
818 1.1 gdamore link->hl_state = HCI_LINK_CLOSED;
819 1.1 gdamore callout_stop(&link->hl_expire);
820 1.1 gdamore if (callout_invoking(&link->hl_expire))
821 1.1 gdamore return;
822 1.1 gdamore
823 1.1 gdamore TAILQ_REMOVE(&link->hl_unit->hci_links, link, hl_next);
824 1.1 gdamore free(link, M_BLUETOOTH);
825 1.1 gdamore }
826 1.1 gdamore
827 1.1 gdamore /*
828 1.1 gdamore * Lookup HCI link by address and type. Note that for SCO links there may
829 1.1 gdamore * be more than one link per address, so we only return links with no
830 1.1 gdamore * handle (ie new links)
831 1.1 gdamore */
832 1.1 gdamore struct hci_link *
833 1.1 gdamore hci_link_lookup_bdaddr(struct hci_unit *unit, bdaddr_t *bdaddr, uint16_t type)
834 1.1 gdamore {
835 1.1 gdamore struct hci_link *link;
836 1.1 gdamore
837 1.1 gdamore KASSERT(unit);
838 1.1 gdamore KASSERT(bdaddr);
839 1.1 gdamore
840 1.1 gdamore TAILQ_FOREACH(link, &unit->hci_links, hl_next) {
841 1.1 gdamore if (link->hl_type != type)
842 1.1 gdamore continue;
843 1.1 gdamore
844 1.1 gdamore if (type == HCI_LINK_SCO && link->hl_handle != 0)
845 1.1 gdamore continue;
846 1.1 gdamore
847 1.1 gdamore if (bdaddr_same(&link->hl_bdaddr, bdaddr))
848 1.1 gdamore break;
849 1.1 gdamore }
850 1.1 gdamore
851 1.1 gdamore return link;
852 1.1 gdamore }
853 1.1 gdamore
854 1.1 gdamore struct hci_link *
855 1.1 gdamore hci_link_lookup_handle(struct hci_unit *unit, uint16_t handle)
856 1.1 gdamore {
857 1.1 gdamore struct hci_link *link;
858 1.1 gdamore
859 1.1 gdamore KASSERT(unit);
860 1.1 gdamore
861 1.1 gdamore TAILQ_FOREACH(link, &unit->hci_links, hl_next) {
862 1.1 gdamore if (handle == link->hl_handle)
863 1.1 gdamore break;
864 1.1 gdamore }
865 1.1 gdamore
866 1.1 gdamore return link;
867 1.1 gdamore }
868