rfcomm_session.c revision 1.15 1 1.15 pooka /* $NetBSD: rfcomm_session.c,v 1.15 2009/09/13 18:45:11 pooka Exp $ */
2 1.1 gdamore
3 1.1 gdamore /*-
4 1.1 gdamore * Copyright (c) 2006 Itronix Inc.
5 1.1 gdamore * All rights reserved.
6 1.1 gdamore *
7 1.1 gdamore * Written by Iain Hibbert for Itronix Inc.
8 1.1 gdamore *
9 1.1 gdamore * Redistribution and use in source and binary forms, with or without
10 1.1 gdamore * modification, are permitted provided that the following conditions
11 1.1 gdamore * are met:
12 1.1 gdamore * 1. Redistributions of source code must retain the above copyright
13 1.1 gdamore * notice, this list of conditions and the following disclaimer.
14 1.1 gdamore * 2. Redistributions in binary form must reproduce the above copyright
15 1.1 gdamore * notice, this list of conditions and the following disclaimer in the
16 1.1 gdamore * documentation and/or other materials provided with the distribution.
17 1.1 gdamore * 3. The name of Itronix Inc. may not be used to endorse
18 1.1 gdamore * or promote products derived from this software without specific
19 1.1 gdamore * prior written permission.
20 1.1 gdamore *
21 1.1 gdamore * THIS SOFTWARE IS PROVIDED BY ITRONIX INC. ``AS IS'' AND
22 1.1 gdamore * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
23 1.1 gdamore * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
24 1.1 gdamore * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL ITRONIX INC. BE LIABLE FOR ANY
25 1.1 gdamore * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
26 1.1 gdamore * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
27 1.1 gdamore * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
28 1.1 gdamore * ON ANY THEORY OF LIABILITY, WHETHER IN
29 1.1 gdamore * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
30 1.1 gdamore * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
31 1.1 gdamore * POSSIBILITY OF SUCH DAMAGE.
32 1.1 gdamore */
33 1.1 gdamore
34 1.1 gdamore #include <sys/cdefs.h>
35 1.15 pooka __KERNEL_RCSID(0, "$NetBSD: rfcomm_session.c,v 1.15 2009/09/13 18:45:11 pooka Exp $");
36 1.1 gdamore
37 1.1 gdamore #include <sys/param.h>
38 1.1 gdamore #include <sys/kernel.h>
39 1.1 gdamore #include <sys/mbuf.h>
40 1.1 gdamore #include <sys/proc.h>
41 1.14 plunky #include <sys/socketvar.h>
42 1.1 gdamore #include <sys/systm.h>
43 1.1 gdamore #include <sys/types.h>
44 1.1 gdamore
45 1.1 gdamore #include <netbt/bluetooth.h>
46 1.1 gdamore #include <netbt/hci.h>
47 1.1 gdamore #include <netbt/l2cap.h>
48 1.1 gdamore #include <netbt/rfcomm.h>
49 1.1 gdamore
50 1.1 gdamore /******************************************************************************
51 1.1 gdamore *
52 1.1 gdamore * RFCOMM Multiplexer Sessions sit directly on L2CAP channels, and can
53 1.1 gdamore * multiplex up to 30 incoming and 30 outgoing connections.
54 1.1 gdamore * Only one Multiplexer is allowed between any two devices.
55 1.1 gdamore */
56 1.1 gdamore
57 1.1 gdamore static void rfcomm_session_timeout(void *);
58 1.1 gdamore static void rfcomm_session_recv_sabm(struct rfcomm_session *, int);
59 1.1 gdamore static void rfcomm_session_recv_disc(struct rfcomm_session *, int);
60 1.1 gdamore static void rfcomm_session_recv_ua(struct rfcomm_session *, int);
61 1.1 gdamore static void rfcomm_session_recv_dm(struct rfcomm_session *, int);
62 1.1 gdamore static void rfcomm_session_recv_uih(struct rfcomm_session *, int, int, struct mbuf *, int);
63 1.1 gdamore static void rfcomm_session_recv_mcc(struct rfcomm_session *, struct mbuf *);
64 1.1 gdamore static void rfcomm_session_recv_mcc_test(struct rfcomm_session *, int, struct mbuf *);
65 1.1 gdamore static void rfcomm_session_recv_mcc_fcon(struct rfcomm_session *, int);
66 1.1 gdamore static void rfcomm_session_recv_mcc_fcoff(struct rfcomm_session *, int);
67 1.1 gdamore static void rfcomm_session_recv_mcc_msc(struct rfcomm_session *, int, struct mbuf *);
68 1.1 gdamore static void rfcomm_session_recv_mcc_rpn(struct rfcomm_session *, int, struct mbuf *);
69 1.1 gdamore static void rfcomm_session_recv_mcc_rls(struct rfcomm_session *, int, struct mbuf *);
70 1.1 gdamore static void rfcomm_session_recv_mcc_pn(struct rfcomm_session *, int, struct mbuf *);
71 1.1 gdamore static void rfcomm_session_recv_mcc_nsc(struct rfcomm_session *, int, struct mbuf *);
72 1.1 gdamore
73 1.1 gdamore /* L2CAP callbacks */
74 1.1 gdamore static void rfcomm_session_connecting(void *);
75 1.1 gdamore static void rfcomm_session_connected(void *);
76 1.1 gdamore static void rfcomm_session_disconnected(void *, int);
77 1.1 gdamore static void *rfcomm_session_newconn(void *, struct sockaddr_bt *, struct sockaddr_bt *);
78 1.1 gdamore static void rfcomm_session_complete(void *, int);
79 1.9 plunky static void rfcomm_session_linkmode(void *, int);
80 1.1 gdamore static void rfcomm_session_input(void *, struct mbuf *);
81 1.1 gdamore
82 1.1 gdamore static const struct btproto rfcomm_session_proto = {
83 1.1 gdamore rfcomm_session_connecting,
84 1.1 gdamore rfcomm_session_connected,
85 1.1 gdamore rfcomm_session_disconnected,
86 1.1 gdamore rfcomm_session_newconn,
87 1.1 gdamore rfcomm_session_complete,
88 1.9 plunky rfcomm_session_linkmode,
89 1.9 plunky rfcomm_session_input,
90 1.1 gdamore };
91 1.1 gdamore
92 1.1 gdamore struct rfcomm_session_list
93 1.1 gdamore rfcomm_session_active = LIST_HEAD_INITIALIZER(rfcomm_session_active);
94 1.1 gdamore
95 1.1 gdamore struct rfcomm_session_list
96 1.1 gdamore rfcomm_session_listen = LIST_HEAD_INITIALIZER(rfcomm_session_listen);
97 1.1 gdamore
98 1.15 pooka static struct pool rfcomm_credit_pool;
99 1.1 gdamore
100 1.1 gdamore /*
101 1.1 gdamore * RFCOMM System Parameters (see section 5.3)
102 1.1 gdamore */
103 1.1 gdamore int rfcomm_mtu_default = 127; /* bytes */
104 1.1 gdamore int rfcomm_ack_timeout = 20; /* seconds */
105 1.1 gdamore int rfcomm_mcc_timeout = 20; /* seconds */
106 1.1 gdamore
107 1.1 gdamore /*
108 1.1 gdamore * Reversed CRC table as per TS 07.10 Annex B.3.5
109 1.1 gdamore */
110 1.8 plunky static const uint8_t crctable[256] = { /* reversed, 8-bit, poly=0x07 */
111 1.1 gdamore 0x00, 0x91, 0xe3, 0x72, 0x07, 0x96, 0xe4, 0x75,
112 1.1 gdamore 0x0e, 0x9f, 0xed, 0x7c, 0x09, 0x98, 0xea, 0x7b,
113 1.1 gdamore 0x1c, 0x8d, 0xff, 0x6e, 0x1b, 0x8a, 0xf8, 0x69,
114 1.1 gdamore 0x12, 0x83, 0xf1, 0x60, 0x15, 0x84, 0xf6, 0x67,
115 1.1 gdamore
116 1.1 gdamore 0x38, 0xa9, 0xdb, 0x4a, 0x3f, 0xae, 0xdc, 0x4d,
117 1.1 gdamore 0x36, 0xa7, 0xd5, 0x44, 0x31, 0xa0, 0xd2, 0x43,
118 1.1 gdamore 0x24, 0xb5, 0xc7, 0x56, 0x23, 0xb2, 0xc0, 0x51,
119 1.1 gdamore 0x2a, 0xbb, 0xc9, 0x58, 0x2d, 0xbc, 0xce, 0x5f,
120 1.1 gdamore
121 1.1 gdamore 0x70, 0xe1, 0x93, 0x02, 0x77, 0xe6, 0x94, 0x05,
122 1.1 gdamore 0x7e, 0xef, 0x9d, 0x0c, 0x79, 0xe8, 0x9a, 0x0b,
123 1.1 gdamore 0x6c, 0xfd, 0x8f, 0x1e, 0x6b, 0xfa, 0x88, 0x19,
124 1.1 gdamore 0x62, 0xf3, 0x81, 0x10, 0x65, 0xf4, 0x86, 0x17,
125 1.1 gdamore
126 1.1 gdamore 0x48, 0xd9, 0xab, 0x3a, 0x4f, 0xde, 0xac, 0x3d,
127 1.1 gdamore 0x46, 0xd7, 0xa5, 0x34, 0x41, 0xd0, 0xa2, 0x33,
128 1.1 gdamore 0x54, 0xc5, 0xb7, 0x26, 0x53, 0xc2, 0xb0, 0x21,
129 1.1 gdamore 0x5a, 0xcb, 0xb9, 0x28, 0x5d, 0xcc, 0xbe, 0x2f,
130 1.1 gdamore
131 1.1 gdamore 0xe0, 0x71, 0x03, 0x92, 0xe7, 0x76, 0x04, 0x95,
132 1.1 gdamore 0xee, 0x7f, 0x0d, 0x9c, 0xe9, 0x78, 0x0a, 0x9b,
133 1.1 gdamore 0xfc, 0x6d, 0x1f, 0x8e, 0xfb, 0x6a, 0x18, 0x89,
134 1.1 gdamore 0xf2, 0x63, 0x11, 0x80, 0xf5, 0x64, 0x16, 0x87,
135 1.1 gdamore
136 1.1 gdamore 0xd8, 0x49, 0x3b, 0xaa, 0xdf, 0x4e, 0x3c, 0xad,
137 1.1 gdamore 0xd6, 0x47, 0x35, 0xa4, 0xd1, 0x40, 0x32, 0xa3,
138 1.1 gdamore 0xc4, 0x55, 0x27, 0xb6, 0xc3, 0x52, 0x20, 0xb1,
139 1.1 gdamore 0xca, 0x5b, 0x29, 0xb8, 0xcd, 0x5c, 0x2e, 0xbf,
140 1.1 gdamore
141 1.1 gdamore 0x90, 0x01, 0x73, 0xe2, 0x97, 0x06, 0x74, 0xe5,
142 1.1 gdamore 0x9e, 0x0f, 0x7d, 0xec, 0x99, 0x08, 0x7a, 0xeb,
143 1.1 gdamore 0x8c, 0x1d, 0x6f, 0xfe, 0x8b, 0x1a, 0x68, 0xf9,
144 1.1 gdamore 0x82, 0x13, 0x61, 0xf0, 0x85, 0x14, 0x66, 0xf7,
145 1.1 gdamore
146 1.1 gdamore 0xa8, 0x39, 0x4b, 0xda, 0xaf, 0x3e, 0x4c, 0xdd,
147 1.1 gdamore 0xa6, 0x37, 0x45, 0xd4, 0xa1, 0x30, 0x42, 0xd3,
148 1.1 gdamore 0xb4, 0x25, 0x57, 0xc6, 0xb3, 0x22, 0x50, 0xc1,
149 1.1 gdamore 0xba, 0x2b, 0x59, 0xc8, 0xbd, 0x2c, 0x5e, 0xcf
150 1.1 gdamore };
151 1.1 gdamore
152 1.1 gdamore #define FCS(f, d) crctable[(f) ^ (d)]
153 1.1 gdamore
154 1.15 pooka void
155 1.15 pooka rfcomm_init(void)
156 1.15 pooka {
157 1.15 pooka
158 1.15 pooka pool_init(&rfcomm_credit_pool, sizeof(struct rfcomm_credit),
159 1.15 pooka 0, 0, 0, "rfcomm_credit", NULL, IPL_SOFTNET);
160 1.15 pooka }
161 1.15 pooka
162 1.1 gdamore /*
163 1.1 gdamore * rfcomm_session_alloc(list, sockaddr)
164 1.1 gdamore *
165 1.1 gdamore * allocate a new session and fill in the blanks, then
166 1.1 gdamore * attach session to front of specified list (active or listen)
167 1.1 gdamore */
168 1.1 gdamore struct rfcomm_session *
169 1.1 gdamore rfcomm_session_alloc(struct rfcomm_session_list *list,
170 1.1 gdamore struct sockaddr_bt *laddr)
171 1.1 gdamore {
172 1.1 gdamore struct rfcomm_session *rs;
173 1.14 plunky struct sockopt sopt;
174 1.1 gdamore int err;
175 1.1 gdamore
176 1.1 gdamore rs = malloc(sizeof(*rs), M_BLUETOOTH, M_NOWAIT | M_ZERO);
177 1.1 gdamore if (rs == NULL)
178 1.1 gdamore return NULL;
179 1.1 gdamore
180 1.1 gdamore rs->rs_state = RFCOMM_SESSION_CLOSED;
181 1.1 gdamore
182 1.10 ad callout_init(&rs->rs_timeout, 0);
183 1.1 gdamore callout_setfunc(&rs->rs_timeout, rfcomm_session_timeout, rs);
184 1.1 gdamore
185 1.1 gdamore SIMPLEQ_INIT(&rs->rs_credits);
186 1.1 gdamore LIST_INIT(&rs->rs_dlcs);
187 1.1 gdamore
188 1.1 gdamore err = l2cap_attach(&rs->rs_l2cap, &rfcomm_session_proto, rs);
189 1.1 gdamore if (err) {
190 1.1 gdamore free(rs, M_BLUETOOTH);
191 1.1 gdamore return NULL;
192 1.1 gdamore }
193 1.1 gdamore
194 1.14 plunky sockopt_init(&sopt, BTPROTO_L2CAP, SO_L2CAP_OMTU, 0);
195 1.14 plunky (void)l2cap_getopt(rs->rs_l2cap, &sopt);
196 1.14 plunky (void)sockopt_get(&sopt, &rs->rs_mtu, sizeof(rs->rs_mtu));
197 1.14 plunky sockopt_destroy(&sopt);
198 1.1 gdamore
199 1.1 gdamore if (laddr->bt_psm == L2CAP_PSM_ANY)
200 1.1 gdamore laddr->bt_psm = L2CAP_PSM_RFCOMM;
201 1.1 gdamore
202 1.1 gdamore (void)l2cap_bind(rs->rs_l2cap, laddr);
203 1.1 gdamore
204 1.1 gdamore LIST_INSERT_HEAD(list, rs, rs_next);
205 1.1 gdamore
206 1.1 gdamore return rs;
207 1.1 gdamore }
208 1.1 gdamore
209 1.1 gdamore /*
210 1.1 gdamore * rfcomm_session_free(rfcomm_session)
211 1.1 gdamore *
212 1.1 gdamore * release a session, including any cleanup
213 1.1 gdamore */
214 1.1 gdamore void
215 1.1 gdamore rfcomm_session_free(struct rfcomm_session *rs)
216 1.1 gdamore {
217 1.1 gdamore struct rfcomm_credit *credit;
218 1.1 gdamore
219 1.1 gdamore KASSERT(rs != NULL);
220 1.1 gdamore KASSERT(LIST_EMPTY(&rs->rs_dlcs));
221 1.1 gdamore
222 1.1 gdamore rs->rs_state = RFCOMM_SESSION_CLOSED;
223 1.1 gdamore
224 1.1 gdamore /*
225 1.1 gdamore * If the callout is already invoked we have no way to stop it,
226 1.1 gdamore * but it will call us back right away (there are no DLC's) so
227 1.1 gdamore * not to worry.
228 1.1 gdamore */
229 1.1 gdamore callout_stop(&rs->rs_timeout);
230 1.1 gdamore if (callout_invoking(&rs->rs_timeout))
231 1.1 gdamore return;
232 1.1 gdamore
233 1.1 gdamore /*
234 1.1 gdamore * Take care that rfcomm_session_disconnected() doesnt call
235 1.1 gdamore * us back either as it will do if the l2cap_channel has not
236 1.1 gdamore * been closed when we detach it..
237 1.1 gdamore */
238 1.1 gdamore if (rs->rs_flags & RFCOMM_SESSION_FREE)
239 1.1 gdamore return;
240 1.1 gdamore
241 1.1 gdamore rs->rs_flags |= RFCOMM_SESSION_FREE;
242 1.1 gdamore
243 1.1 gdamore /* throw away any remaining credit notes */
244 1.1 gdamore while ((credit = SIMPLEQ_FIRST(&rs->rs_credits)) != NULL) {
245 1.1 gdamore SIMPLEQ_REMOVE_HEAD(&rs->rs_credits, rc_next);
246 1.1 gdamore pool_put(&rfcomm_credit_pool, credit);
247 1.1 gdamore }
248 1.1 gdamore
249 1.1 gdamore KASSERT(SIMPLEQ_EMPTY(&rs->rs_credits));
250 1.1 gdamore
251 1.1 gdamore /* Goodbye! */
252 1.1 gdamore LIST_REMOVE(rs, rs_next);
253 1.1 gdamore l2cap_detach(&rs->rs_l2cap);
254 1.12 plunky callout_destroy(&rs->rs_timeout);
255 1.1 gdamore free(rs, M_BLUETOOTH);
256 1.1 gdamore }
257 1.1 gdamore
258 1.1 gdamore /*
259 1.1 gdamore * rfcomm_session_lookup(sockaddr, sockaddr)
260 1.1 gdamore *
261 1.1 gdamore * Find active rfcomm session matching src and dest addresses
262 1.1 gdamore * when src is BDADDR_ANY match any local address
263 1.1 gdamore */
264 1.1 gdamore struct rfcomm_session *
265 1.1 gdamore rfcomm_session_lookup(struct sockaddr_bt *src, struct sockaddr_bt *dest)
266 1.1 gdamore {
267 1.1 gdamore struct rfcomm_session *rs;
268 1.1 gdamore struct sockaddr_bt addr;
269 1.1 gdamore
270 1.1 gdamore LIST_FOREACH(rs, &rfcomm_session_active, rs_next) {
271 1.1 gdamore if (rs->rs_state == RFCOMM_SESSION_CLOSED)
272 1.1 gdamore continue;
273 1.1 gdamore
274 1.1 gdamore l2cap_sockaddr(rs->rs_l2cap, &addr);
275 1.1 gdamore
276 1.1 gdamore if (bdaddr_same(&src->bt_bdaddr, &addr.bt_bdaddr) == 0)
277 1.1 gdamore if (bdaddr_any(&src->bt_bdaddr) == 0)
278 1.1 gdamore continue;
279 1.1 gdamore
280 1.1 gdamore l2cap_peeraddr(rs->rs_l2cap, &addr);
281 1.1 gdamore
282 1.1 gdamore if (addr.bt_psm != dest->bt_psm)
283 1.1 gdamore continue;
284 1.1 gdamore
285 1.1 gdamore if (bdaddr_same(&dest->bt_bdaddr, &addr.bt_bdaddr))
286 1.1 gdamore break;
287 1.1 gdamore }
288 1.1 gdamore
289 1.1 gdamore return rs;
290 1.1 gdamore }
291 1.1 gdamore
292 1.1 gdamore /*
293 1.1 gdamore * rfcomm_session_timeout(rfcomm_session)
294 1.1 gdamore *
295 1.1 gdamore * Session timeouts are scheduled when a session is left or
296 1.1 gdamore * created with no DLCs, and when SABM(0) or DISC(0) are
297 1.1 gdamore * sent.
298 1.1 gdamore *
299 1.1 gdamore * So, if it is in an open state with DLC's attached then
300 1.1 gdamore * we leave it alone, otherwise the session is lost.
301 1.1 gdamore */
302 1.1 gdamore static void
303 1.1 gdamore rfcomm_session_timeout(void *arg)
304 1.1 gdamore {
305 1.1 gdamore struct rfcomm_session *rs = arg;
306 1.1 gdamore struct rfcomm_dlc *dlc;
307 1.1 gdamore
308 1.1 gdamore KASSERT(rs != NULL);
309 1.1 gdamore
310 1.13 ad mutex_enter(bt_lock);
311 1.1 gdamore callout_ack(&rs->rs_timeout);
312 1.1 gdamore
313 1.1 gdamore if (rs->rs_state != RFCOMM_SESSION_OPEN) {
314 1.1 gdamore DPRINTF("timeout\n");
315 1.1 gdamore rs->rs_state = RFCOMM_SESSION_CLOSED;
316 1.1 gdamore
317 1.1 gdamore while (!LIST_EMPTY(&rs->rs_dlcs)) {
318 1.1 gdamore dlc = LIST_FIRST(&rs->rs_dlcs);
319 1.1 gdamore
320 1.1 gdamore rfcomm_dlc_close(dlc, ETIMEDOUT);
321 1.1 gdamore }
322 1.1 gdamore }
323 1.1 gdamore
324 1.1 gdamore if (LIST_EMPTY(&rs->rs_dlcs)) {
325 1.1 gdamore DPRINTF("expiring\n");
326 1.1 gdamore rfcomm_session_free(rs);
327 1.1 gdamore }
328 1.13 ad mutex_exit(bt_lock);
329 1.1 gdamore }
330 1.1 gdamore
331 1.1 gdamore /***********************************************************************
332 1.1 gdamore *
333 1.1 gdamore * RFCOMM Session L2CAP protocol callbacks
334 1.1 gdamore *
335 1.1 gdamore */
336 1.1 gdamore
337 1.1 gdamore static void
338 1.4 christos rfcomm_session_connecting(void *arg)
339 1.1 gdamore {
340 1.7 plunky /* struct rfcomm_session *rs = arg; */
341 1.1 gdamore
342 1.1 gdamore DPRINTF("Connecting\n");
343 1.1 gdamore }
344 1.1 gdamore
345 1.1 gdamore static void
346 1.1 gdamore rfcomm_session_connected(void *arg)
347 1.1 gdamore {
348 1.1 gdamore struct rfcomm_session *rs = arg;
349 1.14 plunky struct sockopt sopt;
350 1.1 gdamore
351 1.1 gdamore DPRINTF("Connected\n");
352 1.1 gdamore
353 1.1 gdamore /*
354 1.1 gdamore * L2CAP is open.
355 1.1 gdamore *
356 1.1 gdamore * If we are initiator, we can send our SABM(0)
357 1.1 gdamore * a timeout should be active?
358 1.1 gdamore *
359 1.1 gdamore * We must take note of the L2CAP MTU because currently
360 1.1 gdamore * the L2CAP implementation can only do Basic Mode.
361 1.1 gdamore */
362 1.14 plunky sockopt_init(&sopt, BTPROTO_L2CAP, SO_L2CAP_OMTU, 0);
363 1.14 plunky (void)l2cap_getopt(rs->rs_l2cap, &sopt);
364 1.14 plunky (void)sockopt_get(&sopt, &rs->rs_mtu, sizeof(rs->rs_mtu));
365 1.14 plunky sockopt_destroy(&sopt);
366 1.1 gdamore
367 1.1 gdamore rs->rs_mtu -= 6; /* (RFCOMM overhead could be this big) */
368 1.1 gdamore if (rs->rs_mtu < RFCOMM_MTU_MIN) {
369 1.1 gdamore rfcomm_session_disconnected(rs, EINVAL);
370 1.1 gdamore return;
371 1.1 gdamore }
372 1.1 gdamore
373 1.1 gdamore if (IS_INITIATOR(rs)) {
374 1.1 gdamore int err;
375 1.1 gdamore
376 1.1 gdamore err = rfcomm_session_send_frame(rs, RFCOMM_FRAME_SABM, 0);
377 1.1 gdamore if (err)
378 1.1 gdamore rfcomm_session_disconnected(rs, err);
379 1.1 gdamore
380 1.1 gdamore callout_schedule(&rs->rs_timeout, rfcomm_ack_timeout * hz);
381 1.1 gdamore }
382 1.1 gdamore }
383 1.1 gdamore
384 1.1 gdamore static void
385 1.1 gdamore rfcomm_session_disconnected(void *arg, int err)
386 1.1 gdamore {
387 1.1 gdamore struct rfcomm_session *rs = arg;
388 1.1 gdamore struct rfcomm_dlc *dlc;
389 1.1 gdamore
390 1.1 gdamore DPRINTF("Disconnected\n");
391 1.1 gdamore
392 1.1 gdamore rs->rs_state = RFCOMM_SESSION_CLOSED;
393 1.1 gdamore
394 1.1 gdamore while (!LIST_EMPTY(&rs->rs_dlcs)) {
395 1.1 gdamore dlc = LIST_FIRST(&rs->rs_dlcs);
396 1.1 gdamore
397 1.1 gdamore rfcomm_dlc_close(dlc, err);
398 1.1 gdamore }
399 1.1 gdamore
400 1.1 gdamore rfcomm_session_free(rs);
401 1.1 gdamore }
402 1.1 gdamore
403 1.1 gdamore static void *
404 1.1 gdamore rfcomm_session_newconn(void *arg, struct sockaddr_bt *laddr,
405 1.1 gdamore struct sockaddr_bt *raddr)
406 1.1 gdamore {
407 1.1 gdamore struct rfcomm_session *new, *rs = arg;
408 1.1 gdamore
409 1.1 gdamore DPRINTF("New Connection\n");
410 1.1 gdamore
411 1.1 gdamore /*
412 1.1 gdamore * Incoming session connect request. We should return a new
413 1.1 gdamore * session pointer if this is acceptable. The L2CAP layer
414 1.1 gdamore * passes local and remote addresses, which we must check as
415 1.1 gdamore * only one RFCOMM session is allowed between any two devices
416 1.1 gdamore */
417 1.1 gdamore new = rfcomm_session_lookup(laddr, raddr);
418 1.1 gdamore if (new != NULL)
419 1.1 gdamore return NULL;
420 1.1 gdamore
421 1.1 gdamore new = rfcomm_session_alloc(&rfcomm_session_active, laddr);
422 1.1 gdamore if (new == NULL)
423 1.1 gdamore return NULL;
424 1.1 gdamore
425 1.1 gdamore new->rs_mtu = rs->rs_mtu;
426 1.1 gdamore new->rs_state = RFCOMM_SESSION_WAIT_CONNECT;
427 1.1 gdamore
428 1.1 gdamore /*
429 1.1 gdamore * schedule an expiry so that if nothing comes of it we
430 1.1 gdamore * can punt.
431 1.1 gdamore */
432 1.1 gdamore callout_schedule(&new->rs_timeout, rfcomm_mcc_timeout * hz);
433 1.1 gdamore
434 1.1 gdamore return new->rs_l2cap;
435 1.1 gdamore }
436 1.1 gdamore
437 1.1 gdamore static void
438 1.1 gdamore rfcomm_session_complete(void *arg, int count)
439 1.1 gdamore {
440 1.1 gdamore struct rfcomm_session *rs = arg;
441 1.1 gdamore struct rfcomm_credit *credit;
442 1.1 gdamore struct rfcomm_dlc *dlc;
443 1.1 gdamore
444 1.1 gdamore /*
445 1.1 gdamore * count L2CAP packets are 'complete', meaning that they are cleared
446 1.1 gdamore * our buffers (for best effort) or arrived safe (for guaranteed) so
447 1.1 gdamore * we can take it off our list and pass the message on, so that
448 1.1 gdamore * eventually the data can be removed from the sockbuf
449 1.1 gdamore */
450 1.1 gdamore while (count-- > 0) {
451 1.1 gdamore credit = SIMPLEQ_FIRST(&rs->rs_credits);
452 1.1 gdamore #ifdef DIAGNOSTIC
453 1.1 gdamore if (credit == NULL) {
454 1.1 gdamore printf("%s: too many packets completed!\n", __func__);
455 1.1 gdamore break;
456 1.1 gdamore }
457 1.1 gdamore #endif
458 1.1 gdamore dlc = credit->rc_dlc;
459 1.1 gdamore if (dlc != NULL) {
460 1.1 gdamore dlc->rd_pending--;
461 1.1 gdamore (*dlc->rd_proto->complete)
462 1.1 gdamore (dlc->rd_upper, credit->rc_len);
463 1.1 gdamore
464 1.1 gdamore /*
465 1.1 gdamore * if not using credit flow control, we may push
466 1.1 gdamore * more data now
467 1.1 gdamore */
468 1.1 gdamore if ((rs->rs_flags & RFCOMM_SESSION_CFC) == 0
469 1.1 gdamore && dlc->rd_state == RFCOMM_DLC_OPEN) {
470 1.1 gdamore rfcomm_dlc_start(dlc);
471 1.1 gdamore }
472 1.1 gdamore
473 1.1 gdamore /*
474 1.1 gdamore * When shutdown is indicated, we are just waiting to
475 1.1 gdamore * clear outgoing data.
476 1.1 gdamore */
477 1.1 gdamore if ((dlc->rd_flags & RFCOMM_DLC_SHUTDOWN)
478 1.1 gdamore && dlc->rd_txbuf == NULL && dlc->rd_pending == 0) {
479 1.1 gdamore dlc->rd_state = RFCOMM_DLC_WAIT_DISCONNECT;
480 1.1 gdamore rfcomm_session_send_frame(rs, RFCOMM_FRAME_DISC,
481 1.1 gdamore dlc->rd_dlci);
482 1.1 gdamore callout_schedule(&dlc->rd_timeout,
483 1.1 gdamore rfcomm_ack_timeout * hz);
484 1.1 gdamore }
485 1.1 gdamore }
486 1.1 gdamore
487 1.1 gdamore SIMPLEQ_REMOVE_HEAD(&rs->rs_credits, rc_next);
488 1.1 gdamore pool_put(&rfcomm_credit_pool, credit);
489 1.1 gdamore }
490 1.1 gdamore
491 1.1 gdamore /*
492 1.1 gdamore * If session is closed, we are just waiting to clear the queue
493 1.1 gdamore */
494 1.1 gdamore if (rs->rs_state == RFCOMM_SESSION_CLOSED) {
495 1.1 gdamore if (SIMPLEQ_EMPTY(&rs->rs_credits))
496 1.1 gdamore l2cap_disconnect(rs->rs_l2cap, 0);
497 1.1 gdamore }
498 1.1 gdamore }
499 1.1 gdamore
500 1.1 gdamore /*
501 1.9 plunky * Link Mode changed
502 1.9 plunky *
503 1.9 plunky * This is called when a mode change is complete. Proceed with connections
504 1.9 plunky * where appropriate, or pass the new mode to any active DLCs.
505 1.9 plunky */
506 1.9 plunky static void
507 1.9 plunky rfcomm_session_linkmode(void *arg, int new)
508 1.9 plunky {
509 1.9 plunky struct rfcomm_session *rs = arg;
510 1.9 plunky struct rfcomm_dlc *dlc, *next;
511 1.9 plunky int err, mode = 0;
512 1.9 plunky
513 1.9 plunky DPRINTF("auth %s, encrypt %s, secure %s\n",
514 1.9 plunky (new & L2CAP_LM_AUTH ? "on" : "off"),
515 1.9 plunky (new & L2CAP_LM_ENCRYPT ? "on" : "off"),
516 1.9 plunky (new & L2CAP_LM_SECURE ? "on" : "off"));
517 1.9 plunky
518 1.9 plunky if (new & L2CAP_LM_AUTH)
519 1.9 plunky mode |= RFCOMM_LM_AUTH;
520 1.9 plunky
521 1.9 plunky if (new & L2CAP_LM_ENCRYPT)
522 1.9 plunky mode |= RFCOMM_LM_ENCRYPT;
523 1.9 plunky
524 1.9 plunky if (new & L2CAP_LM_SECURE)
525 1.9 plunky mode |= RFCOMM_LM_SECURE;
526 1.9 plunky
527 1.9 plunky next = LIST_FIRST(&rs->rs_dlcs);
528 1.9 plunky while ((dlc = next) != NULL) {
529 1.9 plunky next = LIST_NEXT(dlc, rd_next);
530 1.9 plunky
531 1.9 plunky switch (dlc->rd_state) {
532 1.9 plunky case RFCOMM_DLC_WAIT_SEND_SABM: /* we are connecting */
533 1.9 plunky if ((mode & dlc->rd_mode) != dlc->rd_mode) {
534 1.9 plunky rfcomm_dlc_close(dlc, ECONNABORTED);
535 1.9 plunky } else {
536 1.9 plunky err = rfcomm_session_send_frame(rs,
537 1.9 plunky RFCOMM_FRAME_SABM, dlc->rd_dlci);
538 1.9 plunky if (err) {
539 1.9 plunky rfcomm_dlc_close(dlc, err);
540 1.9 plunky } else {
541 1.9 plunky dlc->rd_state = RFCOMM_DLC_WAIT_RECV_UA;
542 1.9 plunky callout_schedule(&dlc->rd_timeout,
543 1.9 plunky rfcomm_ack_timeout * hz);
544 1.9 plunky break;
545 1.9 plunky }
546 1.9 plunky }
547 1.9 plunky
548 1.9 plunky /*
549 1.9 plunky * If we aborted the connection and there are no more DLCs
550 1.9 plunky * on the session, it is our responsibility to disconnect.
551 1.9 plunky */
552 1.9 plunky if (!LIST_EMPTY(&rs->rs_dlcs))
553 1.9 plunky break;
554 1.9 plunky
555 1.9 plunky rs->rs_state = RFCOMM_SESSION_WAIT_DISCONNECT;
556 1.9 plunky rfcomm_session_send_frame(rs, RFCOMM_FRAME_DISC, 0);
557 1.9 plunky callout_schedule(&rs->rs_timeout, rfcomm_ack_timeout * hz);
558 1.9 plunky break;
559 1.9 plunky
560 1.9 plunky case RFCOMM_DLC_WAIT_SEND_UA: /* they are connecting */
561 1.9 plunky if ((mode & dlc->rd_mode) != dlc->rd_mode) {
562 1.9 plunky rfcomm_session_send_frame(rs,
563 1.9 plunky RFCOMM_FRAME_DM, dlc->rd_dlci);
564 1.9 plunky rfcomm_dlc_close(dlc, ECONNABORTED);
565 1.9 plunky break;
566 1.9 plunky }
567 1.9 plunky
568 1.9 plunky err = rfcomm_session_send_frame(rs,
569 1.9 plunky RFCOMM_FRAME_UA, dlc->rd_dlci);
570 1.9 plunky if (err) {
571 1.9 plunky rfcomm_session_send_frame(rs,
572 1.9 plunky RFCOMM_FRAME_DM, dlc->rd_dlci);
573 1.9 plunky rfcomm_dlc_close(dlc, err);
574 1.9 plunky break;
575 1.9 plunky }
576 1.9 plunky
577 1.9 plunky err = rfcomm_dlc_open(dlc);
578 1.9 plunky if (err) {
579 1.9 plunky rfcomm_session_send_frame(rs,
580 1.9 plunky RFCOMM_FRAME_DM, dlc->rd_dlci);
581 1.9 plunky rfcomm_dlc_close(dlc, err);
582 1.9 plunky break;
583 1.9 plunky }
584 1.9 plunky
585 1.9 plunky break;
586 1.9 plunky
587 1.9 plunky case RFCOMM_DLC_WAIT_RECV_UA:
588 1.9 plunky case RFCOMM_DLC_OPEN: /* already established */
589 1.9 plunky (*dlc->rd_proto->linkmode)(dlc->rd_upper, mode);
590 1.9 plunky break;
591 1.9 plunky
592 1.9 plunky default:
593 1.9 plunky break;
594 1.9 plunky }
595 1.9 plunky }
596 1.9 plunky }
597 1.9 plunky
598 1.9 plunky /*
599 1.1 gdamore * Receive data from L2CAP layer for session. There is always exactly one
600 1.1 gdamore * RFCOMM frame contained in each L2CAP frame.
601 1.1 gdamore */
602 1.1 gdamore static void
603 1.1 gdamore rfcomm_session_input(void *arg, struct mbuf *m)
604 1.1 gdamore {
605 1.1 gdamore struct rfcomm_session *rs = arg;
606 1.1 gdamore int dlci, len, type, pf;
607 1.1 gdamore uint8_t fcs, b;
608 1.1 gdamore
609 1.1 gdamore KASSERT(m != NULL);
610 1.1 gdamore KASSERT(rs != NULL);
611 1.1 gdamore
612 1.1 gdamore /*
613 1.1 gdamore * UIH frames: FCS is only calculated on address and control fields
614 1.1 gdamore * For other frames: FCS is calculated on address, control and length
615 1.1 gdamore * Length may extend to two octets
616 1.1 gdamore */
617 1.1 gdamore fcs = 0xff;
618 1.1 gdamore
619 1.1 gdamore if (m->m_pkthdr.len < 4) {
620 1.1 gdamore DPRINTF("short frame (%d), discarded\n", m->m_pkthdr.len);
621 1.1 gdamore goto done;
622 1.1 gdamore }
623 1.1 gdamore
624 1.1 gdamore /* address - one octet */
625 1.1 gdamore m_copydata(m, 0, 1, &b);
626 1.1 gdamore m_adj(m, 1);
627 1.1 gdamore fcs = FCS(fcs, b);
628 1.1 gdamore dlci = RFCOMM_DLCI(b);
629 1.1 gdamore
630 1.1 gdamore /* control - one octet */
631 1.1 gdamore m_copydata(m, 0, 1, &b);
632 1.1 gdamore m_adj(m, 1);
633 1.1 gdamore fcs = FCS(fcs, b);
634 1.1 gdamore type = RFCOMM_TYPE(b);
635 1.1 gdamore pf = RFCOMM_PF(b);
636 1.1 gdamore
637 1.1 gdamore /* length - may be two octets */
638 1.1 gdamore m_copydata(m, 0, 1, &b);
639 1.1 gdamore m_adj(m, 1);
640 1.1 gdamore if (type != RFCOMM_FRAME_UIH)
641 1.1 gdamore fcs = FCS(fcs, b);
642 1.1 gdamore len = (b >> 1) & 0x7f;
643 1.1 gdamore
644 1.1 gdamore if (RFCOMM_EA(b) == 0) {
645 1.1 gdamore if (m->m_pkthdr.len < 2) {
646 1.1 gdamore DPRINTF("short frame (%d, EA = 0), discarded\n",
647 1.1 gdamore m->m_pkthdr.len);
648 1.1 gdamore goto done;
649 1.1 gdamore }
650 1.1 gdamore
651 1.1 gdamore m_copydata(m, 0, 1, &b);
652 1.1 gdamore m_adj(m, 1);
653 1.1 gdamore if (type != RFCOMM_FRAME_UIH)
654 1.1 gdamore fcs = FCS(fcs, b);
655 1.1 gdamore
656 1.1 gdamore len |= (b << 7);
657 1.1 gdamore }
658 1.1 gdamore
659 1.1 gdamore /* FCS byte is last octet in frame */
660 1.1 gdamore m_copydata(m, m->m_pkthdr.len - 1, 1, &b);
661 1.1 gdamore m_adj(m, -1);
662 1.1 gdamore fcs = FCS(fcs, b);
663 1.1 gdamore
664 1.1 gdamore if (fcs != 0xcf) {
665 1.1 gdamore DPRINTF("Bad FCS value (%#2.2x), frame discarded\n", fcs);
666 1.1 gdamore goto done;
667 1.1 gdamore }
668 1.1 gdamore
669 1.1 gdamore DPRINTFN(10, "dlci %d, type %2.2x, len = %d\n", dlci, type, len);
670 1.1 gdamore
671 1.1 gdamore switch (type) {
672 1.1 gdamore case RFCOMM_FRAME_SABM:
673 1.1 gdamore if (pf)
674 1.1 gdamore rfcomm_session_recv_sabm(rs, dlci);
675 1.1 gdamore break;
676 1.1 gdamore
677 1.1 gdamore case RFCOMM_FRAME_DISC:
678 1.1 gdamore if (pf)
679 1.1 gdamore rfcomm_session_recv_disc(rs, dlci);
680 1.1 gdamore break;
681 1.1 gdamore
682 1.1 gdamore case RFCOMM_FRAME_UA:
683 1.1 gdamore if (pf)
684 1.1 gdamore rfcomm_session_recv_ua(rs, dlci);
685 1.1 gdamore break;
686 1.1 gdamore
687 1.1 gdamore case RFCOMM_FRAME_DM:
688 1.1 gdamore rfcomm_session_recv_dm(rs, dlci);
689 1.1 gdamore break;
690 1.1 gdamore
691 1.1 gdamore case RFCOMM_FRAME_UIH:
692 1.1 gdamore rfcomm_session_recv_uih(rs, dlci, pf, m, len);
693 1.1 gdamore return; /* (no release) */
694 1.1 gdamore
695 1.1 gdamore default:
696 1.1 gdamore UNKNOWN(type);
697 1.1 gdamore break;
698 1.1 gdamore }
699 1.1 gdamore
700 1.1 gdamore done:
701 1.1 gdamore m_freem(m);
702 1.1 gdamore }
703 1.1 gdamore
704 1.1 gdamore /***********************************************************************
705 1.1 gdamore *
706 1.1 gdamore * RFCOMM Session receive processing
707 1.1 gdamore */
708 1.1 gdamore
709 1.1 gdamore /*
710 1.1 gdamore * rfcomm_session_recv_sabm(rfcomm_session, dlci)
711 1.1 gdamore *
712 1.1 gdamore * Set Asyncrhonous Balanced Mode - open the channel.
713 1.1 gdamore */
714 1.1 gdamore static void
715 1.1 gdamore rfcomm_session_recv_sabm(struct rfcomm_session *rs, int dlci)
716 1.1 gdamore {
717 1.1 gdamore struct rfcomm_dlc *dlc;
718 1.1 gdamore int err;
719 1.1 gdamore
720 1.1 gdamore DPRINTFN(5, "SABM(%d)\n", dlci);
721 1.1 gdamore
722 1.1 gdamore if (dlci == 0) { /* Open Session */
723 1.1 gdamore rs->rs_state = RFCOMM_SESSION_OPEN;
724 1.1 gdamore rfcomm_session_send_frame(rs, RFCOMM_FRAME_UA, 0);
725 1.1 gdamore LIST_FOREACH(dlc, &rs->rs_dlcs, rd_next) {
726 1.1 gdamore if (dlc->rd_state == RFCOMM_DLC_WAIT_SESSION)
727 1.1 gdamore rfcomm_dlc_connect(dlc);
728 1.1 gdamore }
729 1.1 gdamore return;
730 1.1 gdamore }
731 1.1 gdamore
732 1.1 gdamore if (rs->rs_state != RFCOMM_SESSION_OPEN) {
733 1.1 gdamore DPRINTF("session was not even open!\n");
734 1.1 gdamore return;
735 1.1 gdamore }
736 1.1 gdamore
737 1.1 gdamore /* validate direction bit */
738 1.1 gdamore if ((IS_INITIATOR(rs) && !RFCOMM_DIRECTION(dlci))
739 1.1 gdamore || (!IS_INITIATOR(rs) && RFCOMM_DIRECTION(dlci))) {
740 1.1 gdamore DPRINTF("Invalid direction bit on DLCI\n");
741 1.1 gdamore return;
742 1.1 gdamore }
743 1.1 gdamore
744 1.1 gdamore /*
745 1.1 gdamore * look for our DLC - this may exist if we received PN
746 1.1 gdamore * already, or we may have to fabricate a new one.
747 1.1 gdamore */
748 1.1 gdamore dlc = rfcomm_dlc_lookup(rs, dlci);
749 1.1 gdamore if (dlc == NULL) {
750 1.1 gdamore dlc = rfcomm_dlc_newconn(rs, dlci);
751 1.1 gdamore if (dlc == NULL)
752 1.1 gdamore return; /* (DM is sent) */
753 1.1 gdamore }
754 1.1 gdamore
755 1.9 plunky /*
756 1.9 plunky * ..but if this DLC is not waiting to connect, they did
757 1.9 plunky * something wrong, ignore it.
758 1.9 plunky */
759 1.9 plunky if (dlc->rd_state != RFCOMM_DLC_WAIT_CONNECT)
760 1.9 plunky return;
761 1.1 gdamore
762 1.9 plunky /* set link mode */
763 1.9 plunky err = rfcomm_dlc_setmode(dlc);
764 1.9 plunky if (err == EINPROGRESS) {
765 1.9 plunky dlc->rd_state = RFCOMM_DLC_WAIT_SEND_UA;
766 1.9 plunky (*dlc->rd_proto->connecting)(dlc->rd_upper);
767 1.1 gdamore return;
768 1.1 gdamore }
769 1.9 plunky if (err)
770 1.9 plunky goto close;
771 1.1 gdamore
772 1.9 plunky err = rfcomm_session_send_frame(rs, RFCOMM_FRAME_UA, dlci);
773 1.9 plunky if (err)
774 1.9 plunky goto close;
775 1.9 plunky
776 1.9 plunky /* and mark it open */
777 1.9 plunky err = rfcomm_dlc_open(dlc);
778 1.9 plunky if (err)
779 1.9 plunky goto close;
780 1.1 gdamore
781 1.9 plunky return;
782 1.1 gdamore
783 1.9 plunky close:
784 1.9 plunky rfcomm_dlc_close(dlc, err);
785 1.1 gdamore }
786 1.1 gdamore
787 1.1 gdamore /*
788 1.1 gdamore * Receive Disconnect Command
789 1.1 gdamore */
790 1.1 gdamore static void
791 1.1 gdamore rfcomm_session_recv_disc(struct rfcomm_session *rs, int dlci)
792 1.1 gdamore {
793 1.1 gdamore struct rfcomm_dlc *dlc;
794 1.1 gdamore
795 1.1 gdamore DPRINTFN(5, "DISC(%d)\n", dlci);
796 1.1 gdamore
797 1.1 gdamore if (dlci == 0) {
798 1.1 gdamore /*
799 1.1 gdamore * Disconnect Session
800 1.1 gdamore *
801 1.1 gdamore * We set the session state to CLOSED so that when
802 1.1 gdamore * the UA frame is clear the session will be closed
803 1.1 gdamore * automatically. We wont bother to close any DLC's
804 1.1 gdamore * just yet as there should be none. In the unlikely
805 1.1 gdamore * event that something is left, it will get flushed
806 1.1 gdamore * out as the session goes down.
807 1.1 gdamore */
808 1.1 gdamore rfcomm_session_send_frame(rs, RFCOMM_FRAME_UA, 0);
809 1.1 gdamore rs->rs_state = RFCOMM_SESSION_CLOSED;
810 1.1 gdamore return;
811 1.1 gdamore }
812 1.1 gdamore
813 1.1 gdamore dlc = rfcomm_dlc_lookup(rs, dlci);
814 1.1 gdamore if (dlc == NULL) {
815 1.1 gdamore rfcomm_session_send_frame(rs, RFCOMM_FRAME_DM, dlci);
816 1.1 gdamore return;
817 1.1 gdamore }
818 1.1 gdamore
819 1.1 gdamore rfcomm_dlc_close(dlc, ECONNRESET);
820 1.1 gdamore rfcomm_session_send_frame(rs, RFCOMM_FRAME_UA, dlci);
821 1.1 gdamore }
822 1.1 gdamore
823 1.1 gdamore /*
824 1.1 gdamore * Receive Unnumbered Acknowledgement Response
825 1.1 gdamore *
826 1.1 gdamore * This should be a response to a DISC or SABM frame that we
827 1.1 gdamore * have previously sent. If unexpected, ignore it.
828 1.1 gdamore */
829 1.1 gdamore static void
830 1.1 gdamore rfcomm_session_recv_ua(struct rfcomm_session *rs, int dlci)
831 1.1 gdamore {
832 1.1 gdamore struct rfcomm_dlc *dlc;
833 1.1 gdamore
834 1.1 gdamore DPRINTFN(5, "UA(%d)\n", dlci);
835 1.1 gdamore
836 1.1 gdamore if (dlci == 0) {
837 1.1 gdamore switch (rs->rs_state) {
838 1.1 gdamore case RFCOMM_SESSION_WAIT_CONNECT: /* We sent SABM */
839 1.1 gdamore callout_stop(&rs->rs_timeout);
840 1.1 gdamore rs->rs_state = RFCOMM_SESSION_OPEN;
841 1.1 gdamore LIST_FOREACH(dlc, &rs->rs_dlcs, rd_next) {
842 1.1 gdamore if (dlc->rd_state == RFCOMM_DLC_WAIT_SESSION)
843 1.1 gdamore rfcomm_dlc_connect(dlc);
844 1.1 gdamore }
845 1.1 gdamore break;
846 1.1 gdamore
847 1.1 gdamore case RFCOMM_SESSION_WAIT_DISCONNECT: /* We sent DISC */
848 1.1 gdamore callout_stop(&rs->rs_timeout);
849 1.1 gdamore rs->rs_state = RFCOMM_SESSION_CLOSED;
850 1.1 gdamore l2cap_disconnect(rs->rs_l2cap, 0);
851 1.1 gdamore break;
852 1.1 gdamore
853 1.1 gdamore default:
854 1.1 gdamore DPRINTF("Received spurious UA(0)!\n");
855 1.1 gdamore break;
856 1.1 gdamore }
857 1.1 gdamore
858 1.1 gdamore return;
859 1.1 gdamore }
860 1.1 gdamore
861 1.1 gdamore /*
862 1.1 gdamore * If we have no DLC on this dlci, we may have aborted
863 1.1 gdamore * without shutting down properly, so check if the session
864 1.1 gdamore * needs disconnecting.
865 1.1 gdamore */
866 1.1 gdamore dlc = rfcomm_dlc_lookup(rs, dlci);
867 1.1 gdamore if (dlc == NULL)
868 1.1 gdamore goto check;
869 1.1 gdamore
870 1.1 gdamore switch (dlc->rd_state) {
871 1.9 plunky case RFCOMM_DLC_WAIT_RECV_UA: /* We sent SABM */
872 1.9 plunky rfcomm_dlc_open(dlc);
873 1.1 gdamore return;
874 1.1 gdamore
875 1.1 gdamore case RFCOMM_DLC_WAIT_DISCONNECT: /* We sent DISC */
876 1.1 gdamore rfcomm_dlc_close(dlc, 0);
877 1.1 gdamore break;
878 1.1 gdamore
879 1.1 gdamore default:
880 1.1 gdamore DPRINTF("Received spurious UA(%d)!\n", dlci);
881 1.1 gdamore return;
882 1.1 gdamore }
883 1.1 gdamore
884 1.1 gdamore check: /* last one out turns out the light */
885 1.1 gdamore if (LIST_EMPTY(&rs->rs_dlcs)) {
886 1.1 gdamore rs->rs_state = RFCOMM_SESSION_WAIT_DISCONNECT;
887 1.1 gdamore rfcomm_session_send_frame(rs, RFCOMM_FRAME_DISC, 0);
888 1.1 gdamore callout_schedule(&rs->rs_timeout, rfcomm_ack_timeout * hz);
889 1.1 gdamore }
890 1.1 gdamore }
891 1.1 gdamore
892 1.1 gdamore /*
893 1.1 gdamore * Receive Disconnected Mode Response
894 1.1 gdamore *
895 1.1 gdamore * If this does not apply to a known DLC then we may ignore it.
896 1.1 gdamore */
897 1.1 gdamore static void
898 1.1 gdamore rfcomm_session_recv_dm(struct rfcomm_session *rs, int dlci)
899 1.1 gdamore {
900 1.1 gdamore struct rfcomm_dlc *dlc;
901 1.1 gdamore
902 1.1 gdamore DPRINTFN(5, "DM(%d)\n", dlci);
903 1.1 gdamore
904 1.1 gdamore dlc = rfcomm_dlc_lookup(rs, dlci);
905 1.1 gdamore if (dlc == NULL)
906 1.1 gdamore return;
907 1.1 gdamore
908 1.1 gdamore if (dlc->rd_state == RFCOMM_DLC_WAIT_CONNECT)
909 1.1 gdamore rfcomm_dlc_close(dlc, ECONNREFUSED);
910 1.1 gdamore else
911 1.1 gdamore rfcomm_dlc_close(dlc, ECONNRESET);
912 1.1 gdamore }
913 1.1 gdamore
914 1.1 gdamore /*
915 1.1 gdamore * Receive Unnumbered Information with Header check (MCC or data packet)
916 1.1 gdamore */
917 1.1 gdamore static void
918 1.1 gdamore rfcomm_session_recv_uih(struct rfcomm_session *rs, int dlci,
919 1.1 gdamore int pf, struct mbuf *m, int len)
920 1.1 gdamore {
921 1.1 gdamore struct rfcomm_dlc *dlc;
922 1.1 gdamore uint8_t credits = 0;
923 1.1 gdamore
924 1.1 gdamore DPRINTFN(10, "UIH(%d)\n", dlci);
925 1.1 gdamore
926 1.1 gdamore if (dlci == 0) {
927 1.1 gdamore rfcomm_session_recv_mcc(rs, m);
928 1.1 gdamore return;
929 1.1 gdamore }
930 1.1 gdamore
931 1.1 gdamore if (m->m_pkthdr.len != len + pf) {
932 1.1 gdamore DPRINTF("Bad Frame Length (%d), frame discarded\n",
933 1.1 gdamore m->m_pkthdr.len);
934 1.1 gdamore
935 1.1 gdamore goto discard;
936 1.1 gdamore }
937 1.1 gdamore
938 1.1 gdamore dlc = rfcomm_dlc_lookup(rs, dlci);
939 1.1 gdamore if (dlc == NULL) {
940 1.1 gdamore DPRINTF("UIH received for non existent DLC, discarded\n");
941 1.1 gdamore rfcomm_session_send_frame(rs, RFCOMM_FRAME_DM, dlci);
942 1.1 gdamore goto discard;
943 1.1 gdamore }
944 1.1 gdamore
945 1.1 gdamore if (dlc->rd_state != RFCOMM_DLC_OPEN) {
946 1.1 gdamore DPRINTF("non-open DLC (state = %d), discarded\n",
947 1.1 gdamore dlc->rd_state);
948 1.1 gdamore goto discard;
949 1.1 gdamore }
950 1.1 gdamore
951 1.1 gdamore /* if PF is set, credits were included */
952 1.1 gdamore if (rs->rs_flags & RFCOMM_SESSION_CFC) {
953 1.1 gdamore if (pf != 0) {
954 1.1 gdamore if (m->m_pkthdr.len < sizeof(credits)) {
955 1.1 gdamore DPRINTF("Bad PF value, UIH discarded\n");
956 1.1 gdamore goto discard;
957 1.1 gdamore }
958 1.1 gdamore
959 1.1 gdamore m_copydata(m, 0, sizeof(credits), &credits);
960 1.1 gdamore m_adj(m, sizeof(credits));
961 1.1 gdamore
962 1.1 gdamore dlc->rd_txcred += credits;
963 1.1 gdamore
964 1.1 gdamore if (credits > 0 && dlc->rd_txbuf != NULL)
965 1.1 gdamore rfcomm_dlc_start(dlc);
966 1.1 gdamore }
967 1.1 gdamore
968 1.1 gdamore if (len == 0)
969 1.1 gdamore goto discard;
970 1.1 gdamore
971 1.1 gdamore if (dlc->rd_rxcred == 0) {
972 1.1 gdamore DPRINTF("Credit limit reached, UIH discarded\n");
973 1.1 gdamore goto discard;
974 1.1 gdamore }
975 1.1 gdamore
976 1.1 gdamore if (len > dlc->rd_rxsize) {
977 1.1 gdamore DPRINTF("UIH frame exceeds rxsize, discarded\n");
978 1.1 gdamore goto discard;
979 1.1 gdamore }
980 1.1 gdamore
981 1.1 gdamore dlc->rd_rxcred--;
982 1.1 gdamore dlc->rd_rxsize -= len;
983 1.1 gdamore }
984 1.1 gdamore
985 1.1 gdamore (*dlc->rd_proto->input)(dlc->rd_upper, m);
986 1.1 gdamore return;
987 1.1 gdamore
988 1.1 gdamore discard:
989 1.1 gdamore m_freem(m);
990 1.1 gdamore }
991 1.1 gdamore
992 1.1 gdamore /*
993 1.1 gdamore * Receive Multiplexer Control Command
994 1.1 gdamore */
995 1.1 gdamore static void
996 1.1 gdamore rfcomm_session_recv_mcc(struct rfcomm_session *rs, struct mbuf *m)
997 1.1 gdamore {
998 1.1 gdamore int type, cr, len;
999 1.1 gdamore uint8_t b;
1000 1.1 gdamore
1001 1.1 gdamore /*
1002 1.1 gdamore * Extract MCC header.
1003 1.1 gdamore *
1004 1.1 gdamore * Fields are variable length using extension bit = 1 to signify the
1005 1.1 gdamore * last octet in the sequence.
1006 1.1 gdamore *
1007 1.1 gdamore * Only single octet types are defined in TS 07.10/RFCOMM spec
1008 1.1 gdamore *
1009 1.1 gdamore * Length can realistically only use 15 bits (max RFCOMM MTU)
1010 1.1 gdamore */
1011 1.1 gdamore if (m->m_pkthdr.len < sizeof(b)) {
1012 1.1 gdamore DPRINTF("Short MCC header, discarded\n");
1013 1.1 gdamore goto release;
1014 1.1 gdamore }
1015 1.1 gdamore
1016 1.1 gdamore m_copydata(m, 0, sizeof(b), &b);
1017 1.1 gdamore m_adj(m, sizeof(b));
1018 1.1 gdamore
1019 1.1 gdamore if (RFCOMM_EA(b) == 0) { /* verify no extensions */
1020 1.9 plunky DPRINTF("MCC type EA = 0, discarded\n");
1021 1.1 gdamore goto release;
1022 1.1 gdamore }
1023 1.1 gdamore
1024 1.1 gdamore type = RFCOMM_MCC_TYPE(b);
1025 1.1 gdamore cr = RFCOMM_CR(b);
1026 1.1 gdamore
1027 1.1 gdamore len = 0;
1028 1.1 gdamore do {
1029 1.1 gdamore if (m->m_pkthdr.len < sizeof(b)) {
1030 1.1 gdamore DPRINTF("Short MCC header, discarded\n");
1031 1.1 gdamore goto release;
1032 1.1 gdamore }
1033 1.1 gdamore
1034 1.1 gdamore m_copydata(m, 0, sizeof(b), &b);
1035 1.1 gdamore m_adj(m, sizeof(b));
1036 1.1 gdamore
1037 1.1 gdamore len = (len << 7) | (b >> 1);
1038 1.1 gdamore len = min(len, RFCOMM_MTU_MAX);
1039 1.1 gdamore } while (RFCOMM_EA(b) == 0);
1040 1.1 gdamore
1041 1.1 gdamore if (len != m->m_pkthdr.len) {
1042 1.1 gdamore DPRINTF("Incorrect MCC length, discarded\n");
1043 1.1 gdamore goto release;
1044 1.1 gdamore }
1045 1.1 gdamore
1046 1.1 gdamore DPRINTFN(2, "MCC %s type %2.2x (%d bytes)\n",
1047 1.1 gdamore (cr ? "command" : "response"), type, len);
1048 1.1 gdamore
1049 1.1 gdamore /*
1050 1.1 gdamore * pass to command handler
1051 1.1 gdamore */
1052 1.1 gdamore switch(type) {
1053 1.1 gdamore case RFCOMM_MCC_TEST: /* Test */
1054 1.1 gdamore rfcomm_session_recv_mcc_test(rs, cr, m);
1055 1.1 gdamore break;
1056 1.1 gdamore
1057 1.1 gdamore case RFCOMM_MCC_FCON: /* Flow Control On */
1058 1.1 gdamore rfcomm_session_recv_mcc_fcon(rs, cr);
1059 1.1 gdamore break;
1060 1.1 gdamore
1061 1.1 gdamore case RFCOMM_MCC_FCOFF: /* Flow Control Off */
1062 1.1 gdamore rfcomm_session_recv_mcc_fcoff(rs, cr);
1063 1.1 gdamore break;
1064 1.1 gdamore
1065 1.1 gdamore case RFCOMM_MCC_MSC: /* Modem Status Command */
1066 1.1 gdamore rfcomm_session_recv_mcc_msc(rs, cr, m);
1067 1.1 gdamore break;
1068 1.1 gdamore
1069 1.1 gdamore case RFCOMM_MCC_RPN: /* Remote Port Negotiation */
1070 1.1 gdamore rfcomm_session_recv_mcc_rpn(rs, cr, m);
1071 1.1 gdamore break;
1072 1.1 gdamore
1073 1.1 gdamore case RFCOMM_MCC_RLS: /* Remote Line Status */
1074 1.1 gdamore rfcomm_session_recv_mcc_rls(rs, cr, m);
1075 1.1 gdamore break;
1076 1.1 gdamore
1077 1.1 gdamore case RFCOMM_MCC_PN: /* Parameter Negotiation */
1078 1.1 gdamore rfcomm_session_recv_mcc_pn(rs, cr, m);
1079 1.1 gdamore break;
1080 1.1 gdamore
1081 1.1 gdamore case RFCOMM_MCC_NSC: /* Non Supported Command */
1082 1.1 gdamore rfcomm_session_recv_mcc_nsc(rs, cr, m);
1083 1.1 gdamore break;
1084 1.1 gdamore
1085 1.1 gdamore default:
1086 1.1 gdamore b = RFCOMM_MKMCC_TYPE(cr, type);
1087 1.1 gdamore rfcomm_session_send_mcc(rs, 0, RFCOMM_MCC_NSC, &b, sizeof(b));
1088 1.1 gdamore }
1089 1.1 gdamore
1090 1.1 gdamore release:
1091 1.1 gdamore m_freem(m);
1092 1.1 gdamore }
1093 1.1 gdamore
1094 1.1 gdamore /*
1095 1.1 gdamore * process TEST command/response
1096 1.1 gdamore */
1097 1.1 gdamore static void
1098 1.1 gdamore rfcomm_session_recv_mcc_test(struct rfcomm_session *rs, int cr, struct mbuf *m)
1099 1.1 gdamore {
1100 1.1 gdamore void *data;
1101 1.1 gdamore int len;
1102 1.1 gdamore
1103 1.1 gdamore if (cr == 0) /* ignore ack */
1104 1.1 gdamore return;
1105 1.1 gdamore
1106 1.1 gdamore /*
1107 1.1 gdamore * we must send all the data they included back as is
1108 1.1 gdamore */
1109 1.1 gdamore
1110 1.1 gdamore len = m->m_pkthdr.len;
1111 1.1 gdamore if (len > RFCOMM_MTU_MAX)
1112 1.1 gdamore return;
1113 1.1 gdamore
1114 1.1 gdamore data = malloc(len, M_BLUETOOTH, M_NOWAIT);
1115 1.1 gdamore if (data == NULL)
1116 1.1 gdamore return;
1117 1.1 gdamore
1118 1.1 gdamore m_copydata(m, 0, len, data);
1119 1.1 gdamore rfcomm_session_send_mcc(rs, 0, RFCOMM_MCC_TEST, data, len);
1120 1.1 gdamore free(data, M_BLUETOOTH);
1121 1.1 gdamore }
1122 1.1 gdamore
1123 1.1 gdamore /*
1124 1.1 gdamore * process Flow Control ON command/response
1125 1.1 gdamore */
1126 1.1 gdamore static void
1127 1.1 gdamore rfcomm_session_recv_mcc_fcon(struct rfcomm_session *rs, int cr)
1128 1.1 gdamore {
1129 1.1 gdamore
1130 1.1 gdamore if (cr == 0) /* ignore ack */
1131 1.1 gdamore return;
1132 1.1 gdamore
1133 1.1 gdamore rs->rs_flags |= RFCOMM_SESSION_RFC;
1134 1.1 gdamore rfcomm_session_send_mcc(rs, 0, RFCOMM_MCC_FCON, NULL, 0);
1135 1.1 gdamore }
1136 1.1 gdamore
1137 1.1 gdamore /*
1138 1.1 gdamore * process Flow Control OFF command/response
1139 1.1 gdamore */
1140 1.1 gdamore static void
1141 1.1 gdamore rfcomm_session_recv_mcc_fcoff(struct rfcomm_session *rs, int cr)
1142 1.1 gdamore {
1143 1.1 gdamore
1144 1.1 gdamore if (cr == 0) /* ignore ack */
1145 1.1 gdamore return;
1146 1.1 gdamore
1147 1.1 gdamore rs->rs_flags &= ~RFCOMM_SESSION_RFC;
1148 1.1 gdamore rfcomm_session_send_mcc(rs, 0, RFCOMM_MCC_FCOFF, NULL, 0);
1149 1.1 gdamore }
1150 1.1 gdamore
1151 1.1 gdamore /*
1152 1.1 gdamore * process Modem Status Command command/response
1153 1.1 gdamore */
1154 1.1 gdamore static void
1155 1.1 gdamore rfcomm_session_recv_mcc_msc(struct rfcomm_session *rs, int cr, struct mbuf *m)
1156 1.1 gdamore {
1157 1.1 gdamore struct rfcomm_mcc_msc msc; /* (3 octets) */
1158 1.1 gdamore struct rfcomm_dlc *dlc;
1159 1.1 gdamore int len = 0;
1160 1.1 gdamore
1161 1.1 gdamore /* [ADDRESS] */
1162 1.1 gdamore if (m->m_pkthdr.len < sizeof(msc.address))
1163 1.1 gdamore return;
1164 1.1 gdamore
1165 1.1 gdamore m_copydata(m, 0, sizeof(msc.address), &msc.address);
1166 1.1 gdamore m_adj(m, sizeof(msc.address));
1167 1.1 gdamore len += sizeof(msc.address);
1168 1.1 gdamore
1169 1.1 gdamore dlc = rfcomm_dlc_lookup(rs, RFCOMM_DLCI(msc.address));
1170 1.1 gdamore
1171 1.1 gdamore if (cr == 0) { /* ignore acks */
1172 1.1 gdamore if (dlc != NULL)
1173 1.1 gdamore callout_stop(&dlc->rd_timeout);
1174 1.1 gdamore
1175 1.1 gdamore return;
1176 1.1 gdamore }
1177 1.1 gdamore
1178 1.1 gdamore if (dlc == NULL) {
1179 1.1 gdamore rfcomm_session_send_frame(rs, RFCOMM_FRAME_DM,
1180 1.1 gdamore RFCOMM_DLCI(msc.address));
1181 1.1 gdamore return;
1182 1.1 gdamore }
1183 1.1 gdamore
1184 1.1 gdamore /* [SIGNALS] */
1185 1.1 gdamore if (m->m_pkthdr.len < sizeof(msc.modem))
1186 1.1 gdamore return;
1187 1.1 gdamore
1188 1.1 gdamore m_copydata(m, 0, sizeof(msc.modem), &msc.modem);
1189 1.1 gdamore m_adj(m, sizeof(msc.modem));
1190 1.1 gdamore len += sizeof(msc.modem);
1191 1.1 gdamore
1192 1.1 gdamore dlc->rd_rmodem = msc.modem;
1193 1.7 plunky /* XXX how do we signal this upstream? */
1194 1.1 gdamore
1195 1.1 gdamore if (RFCOMM_EA(msc.modem) == 0) {
1196 1.1 gdamore if (m->m_pkthdr.len < sizeof(msc.brk))
1197 1.1 gdamore return;
1198 1.1 gdamore
1199 1.1 gdamore m_copydata(m, 0, sizeof(msc.brk), &msc.brk);
1200 1.1 gdamore m_adj(m, sizeof(msc.brk));
1201 1.1 gdamore len += sizeof(msc.brk);
1202 1.1 gdamore
1203 1.7 plunky /* XXX how do we signal this upstream? */
1204 1.1 gdamore }
1205 1.1 gdamore
1206 1.1 gdamore rfcomm_session_send_mcc(rs, 0, RFCOMM_MCC_MSC, &msc, len);
1207 1.1 gdamore }
1208 1.1 gdamore
1209 1.1 gdamore /*
1210 1.1 gdamore * process Remote Port Negotiation command/response
1211 1.1 gdamore */
1212 1.1 gdamore static void
1213 1.1 gdamore rfcomm_session_recv_mcc_rpn(struct rfcomm_session *rs, int cr, struct mbuf *m)
1214 1.1 gdamore {
1215 1.1 gdamore struct rfcomm_mcc_rpn rpn;
1216 1.1 gdamore uint16_t mask;
1217 1.1 gdamore
1218 1.1 gdamore if (cr == 0) /* ignore ack */
1219 1.1 gdamore return;
1220 1.1 gdamore
1221 1.1 gdamore /* default values */
1222 1.1 gdamore rpn.bit_rate = RFCOMM_RPN_BR_9600;
1223 1.1 gdamore rpn.line_settings = RFCOMM_RPN_8_N_1;
1224 1.1 gdamore rpn.flow_control = RFCOMM_RPN_FLOW_NONE;
1225 1.1 gdamore rpn.xon_char = RFCOMM_RPN_XON_CHAR;
1226 1.1 gdamore rpn.xoff_char = RFCOMM_RPN_XOFF_CHAR;
1227 1.1 gdamore
1228 1.1 gdamore if (m->m_pkthdr.len == sizeof(rpn)) {
1229 1.1 gdamore m_copydata(m, 0, sizeof(rpn), &rpn);
1230 1.1 gdamore rpn.param_mask = RFCOMM_RPN_PM_ALL;
1231 1.1 gdamore } else if (m->m_pkthdr.len == 1) {
1232 1.1 gdamore m_copydata(m, 0, 1, &rpn);
1233 1.1 gdamore rpn.param_mask = le16toh(rpn.param_mask);
1234 1.1 gdamore } else {
1235 1.1 gdamore DPRINTF("Bad RPN length (%d)\n", m->m_pkthdr.len);
1236 1.1 gdamore return;
1237 1.1 gdamore }
1238 1.1 gdamore
1239 1.1 gdamore mask = 0;
1240 1.1 gdamore
1241 1.1 gdamore if (rpn.param_mask & RFCOMM_RPN_PM_RATE)
1242 1.1 gdamore mask |= RFCOMM_RPN_PM_RATE;
1243 1.1 gdamore
1244 1.1 gdamore if (rpn.param_mask & RFCOMM_RPN_PM_DATA
1245 1.1 gdamore && RFCOMM_RPN_DATA_BITS(rpn.line_settings) == RFCOMM_RPN_DATA_8)
1246 1.1 gdamore mask |= RFCOMM_RPN_PM_DATA;
1247 1.1 gdamore
1248 1.1 gdamore if (rpn.param_mask & RFCOMM_RPN_PM_STOP
1249 1.1 gdamore && RFCOMM_RPN_STOP_BITS(rpn.line_settings) == RFCOMM_RPN_STOP_1)
1250 1.1 gdamore mask |= RFCOMM_RPN_PM_STOP;
1251 1.1 gdamore
1252 1.1 gdamore if (rpn.param_mask & RFCOMM_RPN_PM_PARITY
1253 1.1 gdamore && RFCOMM_RPN_PARITY(rpn.line_settings) == RFCOMM_RPN_PARITY_NONE)
1254 1.1 gdamore mask |= RFCOMM_RPN_PM_PARITY;
1255 1.1 gdamore
1256 1.1 gdamore if (rpn.param_mask & RFCOMM_RPN_PM_XON
1257 1.1 gdamore && rpn.xon_char == RFCOMM_RPN_XON_CHAR)
1258 1.1 gdamore mask |= RFCOMM_RPN_PM_XON;
1259 1.1 gdamore
1260 1.1 gdamore if (rpn.param_mask & RFCOMM_RPN_PM_XOFF
1261 1.1 gdamore && rpn.xoff_char == RFCOMM_RPN_XOFF_CHAR)
1262 1.1 gdamore mask |= RFCOMM_RPN_PM_XOFF;
1263 1.1 gdamore
1264 1.1 gdamore if (rpn.param_mask & RFCOMM_RPN_PM_FLOW
1265 1.1 gdamore && rpn.flow_control == RFCOMM_RPN_FLOW_NONE)
1266 1.1 gdamore mask |= RFCOMM_RPN_PM_FLOW;
1267 1.1 gdamore
1268 1.1 gdamore rpn.param_mask = htole16(mask);
1269 1.1 gdamore
1270 1.1 gdamore rfcomm_session_send_mcc(rs, 0, RFCOMM_MCC_RPN, &rpn, sizeof(rpn));
1271 1.1 gdamore }
1272 1.1 gdamore
1273 1.1 gdamore /*
1274 1.1 gdamore * process Remote Line Status command/response
1275 1.1 gdamore */
1276 1.1 gdamore static void
1277 1.1 gdamore rfcomm_session_recv_mcc_rls(struct rfcomm_session *rs, int cr, struct mbuf *m)
1278 1.1 gdamore {
1279 1.1 gdamore struct rfcomm_mcc_rls rls;
1280 1.1 gdamore
1281 1.1 gdamore if (cr == 0) /* ignore ack */
1282 1.1 gdamore return;
1283 1.1 gdamore
1284 1.1 gdamore if (m->m_pkthdr.len != sizeof(rls)) {
1285 1.1 gdamore DPRINTF("Bad RLS length %d\n", m->m_pkthdr.len);
1286 1.1 gdamore return;
1287 1.1 gdamore }
1288 1.1 gdamore
1289 1.1 gdamore m_copydata(m, 0, sizeof(rls), &rls);
1290 1.1 gdamore
1291 1.1 gdamore /*
1292 1.1 gdamore * So far as I can tell, we just send back what
1293 1.1 gdamore * they sent us. This signifies errors that seem
1294 1.1 gdamore * irrelevent for RFCOMM over L2CAP.
1295 1.1 gdamore */
1296 1.1 gdamore rls.address |= 0x03; /* EA = 1, CR = 1 */
1297 1.1 gdamore rls.status &= 0x0f; /* only 4 bits valid */
1298 1.1 gdamore
1299 1.1 gdamore rfcomm_session_send_mcc(rs, 0, RFCOMM_MCC_RLS, &rls, sizeof(rls));
1300 1.1 gdamore }
1301 1.1 gdamore
1302 1.1 gdamore /*
1303 1.1 gdamore * process Parameter Negotiation command/response
1304 1.1 gdamore */
1305 1.1 gdamore static void
1306 1.1 gdamore rfcomm_session_recv_mcc_pn(struct rfcomm_session *rs, int cr, struct mbuf *m)
1307 1.1 gdamore {
1308 1.1 gdamore struct rfcomm_dlc *dlc;
1309 1.1 gdamore struct rfcomm_mcc_pn pn;
1310 1.1 gdamore int err;
1311 1.1 gdamore
1312 1.1 gdamore if (m->m_pkthdr.len != sizeof(pn)) {
1313 1.1 gdamore DPRINTF("Bad PN length %d\n", m->m_pkthdr.len);
1314 1.1 gdamore return;
1315 1.1 gdamore }
1316 1.1 gdamore
1317 1.1 gdamore m_copydata(m, 0, sizeof(pn), &pn);
1318 1.1 gdamore
1319 1.1 gdamore pn.dlci &= 0x3f;
1320 1.1 gdamore pn.mtu = le16toh(pn.mtu);
1321 1.1 gdamore
1322 1.1 gdamore dlc = rfcomm_dlc_lookup(rs, pn.dlci);
1323 1.1 gdamore if (cr) { /* Command */
1324 1.1 gdamore /*
1325 1.1 gdamore * If there is no DLC present, this is a new
1326 1.1 gdamore * connection so attempt to make one
1327 1.1 gdamore */
1328 1.1 gdamore if (dlc == NULL) {
1329 1.1 gdamore dlc = rfcomm_dlc_newconn(rs, pn.dlci);
1330 1.1 gdamore if (dlc == NULL)
1331 1.1 gdamore return; /* (DM is sent) */
1332 1.1 gdamore }
1333 1.1 gdamore
1334 1.1 gdamore /* accept any valid MTU, and offer it back */
1335 1.1 gdamore pn.mtu = min(pn.mtu, RFCOMM_MTU_MAX);
1336 1.1 gdamore pn.mtu = min(pn.mtu, rs->rs_mtu);
1337 1.1 gdamore pn.mtu = max(pn.mtu, RFCOMM_MTU_MIN);
1338 1.1 gdamore dlc->rd_mtu = pn.mtu;
1339 1.1 gdamore pn.mtu = htole16(pn.mtu);
1340 1.1 gdamore
1341 1.1 gdamore /* credits are only set before DLC is open */
1342 1.1 gdamore if (dlc->rd_state == RFCOMM_DLC_WAIT_CONNECT
1343 1.1 gdamore && (pn.flow_control & 0xf0) == 0xf0) {
1344 1.1 gdamore rs->rs_flags |= RFCOMM_SESSION_CFC;
1345 1.1 gdamore dlc->rd_txcred = pn.credits & 0x07;
1346 1.1 gdamore
1347 1.1 gdamore dlc->rd_rxcred = (dlc->rd_rxsize / dlc->rd_mtu);
1348 1.1 gdamore dlc->rd_rxcred = min(dlc->rd_rxcred,
1349 1.1 gdamore RFCOMM_CREDITS_DEFAULT);
1350 1.1 gdamore
1351 1.1 gdamore pn.flow_control = 0xe0;
1352 1.1 gdamore pn.credits = dlc->rd_rxcred;
1353 1.1 gdamore } else {
1354 1.1 gdamore pn.flow_control = 0x00;
1355 1.1 gdamore pn.credits = 0x00;
1356 1.1 gdamore }
1357 1.1 gdamore
1358 1.1 gdamore /* unused fields must be ignored and set to zero */
1359 1.1 gdamore pn.ack_timer = 0;
1360 1.1 gdamore pn.max_retrans = 0;
1361 1.1 gdamore
1362 1.1 gdamore /* send our response */
1363 1.1 gdamore err = rfcomm_session_send_mcc(rs, 0,
1364 1.1 gdamore RFCOMM_MCC_PN, &pn, sizeof(pn));
1365 1.1 gdamore if (err)
1366 1.1 gdamore goto close;
1367 1.1 gdamore
1368 1.1 gdamore } else { /* Response */
1369 1.1 gdamore /* ignore responses with no matching DLC */
1370 1.1 gdamore if (dlc == NULL)
1371 1.1 gdamore return;
1372 1.1 gdamore
1373 1.1 gdamore callout_stop(&dlc->rd_timeout);
1374 1.1 gdamore
1375 1.1 gdamore if (pn.mtu > RFCOMM_MTU_MAX || pn.mtu > dlc->rd_mtu) {
1376 1.1 gdamore dlc->rd_state = RFCOMM_DLC_WAIT_DISCONNECT;
1377 1.1 gdamore err = rfcomm_session_send_frame(rs, RFCOMM_FRAME_DISC,
1378 1.1 gdamore pn.dlci);
1379 1.1 gdamore if (err)
1380 1.1 gdamore goto close;
1381 1.1 gdamore
1382 1.1 gdamore callout_schedule(&dlc->rd_timeout,
1383 1.1 gdamore rfcomm_ack_timeout * hz);
1384 1.1 gdamore return;
1385 1.1 gdamore }
1386 1.1 gdamore dlc->rd_mtu = pn.mtu;
1387 1.1 gdamore
1388 1.9 plunky /* if DLC is not waiting to connect, we are done */
1389 1.9 plunky if (dlc->rd_state != RFCOMM_DLC_WAIT_CONNECT)
1390 1.9 plunky return;
1391 1.9 plunky
1392 1.9 plunky /* set initial credits according to RFCOMM spec */
1393 1.9 plunky if ((pn.flow_control & 0xf0) == 0xe0) {
1394 1.1 gdamore rs->rs_flags |= RFCOMM_SESSION_CFC;
1395 1.1 gdamore dlc->rd_txcred = (pn.credits & 0x07);
1396 1.1 gdamore }
1397 1.1 gdamore
1398 1.9 plunky callout_schedule(&dlc->rd_timeout, rfcomm_ack_timeout * hz);
1399 1.9 plunky
1400 1.9 plunky /* set link mode */
1401 1.9 plunky err = rfcomm_dlc_setmode(dlc);
1402 1.9 plunky if (err == EINPROGRESS) {
1403 1.9 plunky dlc->rd_state = RFCOMM_DLC_WAIT_SEND_SABM;
1404 1.9 plunky (*dlc->rd_proto->connecting)(dlc->rd_upper);
1405 1.9 plunky return;
1406 1.9 plunky }
1407 1.9 plunky if (err)
1408 1.9 plunky goto close;
1409 1.9 plunky
1410 1.9 plunky /* we can proceed now */
1411 1.1 gdamore err = rfcomm_session_send_frame(rs, RFCOMM_FRAME_SABM, pn.dlci);
1412 1.1 gdamore if (err)
1413 1.1 gdamore goto close;
1414 1.1 gdamore
1415 1.9 plunky dlc->rd_state = RFCOMM_DLC_WAIT_RECV_UA;
1416 1.1 gdamore }
1417 1.1 gdamore return;
1418 1.1 gdamore
1419 1.1 gdamore close:
1420 1.1 gdamore rfcomm_dlc_close(dlc, err);
1421 1.1 gdamore }
1422 1.1 gdamore
1423 1.1 gdamore /*
1424 1.1 gdamore * process Non Supported Command command/response
1425 1.1 gdamore */
1426 1.1 gdamore static void
1427 1.3 christos rfcomm_session_recv_mcc_nsc(struct rfcomm_session *rs,
1428 1.4 christos int cr, struct mbuf *m)
1429 1.1 gdamore {
1430 1.2 plunky struct rfcomm_dlc *dlc, *next;
1431 1.1 gdamore
1432 1.1 gdamore /*
1433 1.1 gdamore * Since we did nothing that is not mandatory,
1434 1.1 gdamore * we just abort the whole session..
1435 1.1 gdamore */
1436 1.2 plunky
1437 1.2 plunky next = LIST_FIRST(&rs->rs_dlcs);
1438 1.2 plunky while ((dlc = next) != NULL) {
1439 1.2 plunky next = LIST_NEXT(dlc, rd_next);
1440 1.1 gdamore rfcomm_dlc_close(dlc, ECONNABORTED);
1441 1.2 plunky }
1442 1.1 gdamore
1443 1.1 gdamore rfcomm_session_free(rs);
1444 1.1 gdamore }
1445 1.1 gdamore
1446 1.1 gdamore /***********************************************************************
1447 1.1 gdamore *
1448 1.1 gdamore * RFCOMM Session outward frame/uih/mcc building
1449 1.1 gdamore */
1450 1.1 gdamore
1451 1.1 gdamore /*
1452 1.1 gdamore * SABM/DISC/DM/UA frames are all minimal and mostly identical.
1453 1.1 gdamore */
1454 1.1 gdamore int
1455 1.1 gdamore rfcomm_session_send_frame(struct rfcomm_session *rs, int type, int dlci)
1456 1.1 gdamore {
1457 1.1 gdamore struct rfcomm_cmd_hdr *hdr;
1458 1.1 gdamore struct rfcomm_credit *credit;
1459 1.1 gdamore struct mbuf *m;
1460 1.1 gdamore uint8_t fcs, cr;
1461 1.1 gdamore
1462 1.1 gdamore credit = pool_get(&rfcomm_credit_pool, PR_NOWAIT);
1463 1.1 gdamore if (credit == NULL)
1464 1.1 gdamore return ENOMEM;
1465 1.1 gdamore
1466 1.1 gdamore m = m_gethdr(M_DONTWAIT, MT_DATA);
1467 1.1 gdamore if (m == NULL) {
1468 1.1 gdamore pool_put(&rfcomm_credit_pool, credit);
1469 1.1 gdamore return ENOMEM;
1470 1.1 gdamore }
1471 1.1 gdamore
1472 1.1 gdamore /*
1473 1.1 gdamore * The CR (command/response) bit identifies the frame either as a
1474 1.1 gdamore * commmand or a response and is used along with the DLCI to form
1475 1.1 gdamore * the address. Commands contain the non-initiator address, whereas
1476 1.1 gdamore * responses contain the initiator address, so the CR value is
1477 1.1 gdamore * also dependent on the session direction.
1478 1.1 gdamore */
1479 1.1 gdamore if (type == RFCOMM_FRAME_UA || type == RFCOMM_FRAME_DM)
1480 1.1 gdamore cr = IS_INITIATOR(rs) ? 0 : 1;
1481 1.1 gdamore else
1482 1.1 gdamore cr = IS_INITIATOR(rs) ? 1 : 0;
1483 1.1 gdamore
1484 1.1 gdamore hdr = mtod(m, struct rfcomm_cmd_hdr *);
1485 1.1 gdamore hdr->address = RFCOMM_MKADDRESS(cr, dlci);
1486 1.1 gdamore hdr->control = RFCOMM_MKCONTROL(type, 1); /* PF = 1 */
1487 1.1 gdamore hdr->length = (0x00 << 1) | 0x01; /* len = 0x00, EA = 1 */
1488 1.1 gdamore
1489 1.1 gdamore fcs = 0xff;
1490 1.1 gdamore fcs = FCS(fcs, hdr->address);
1491 1.1 gdamore fcs = FCS(fcs, hdr->control);
1492 1.1 gdamore fcs = FCS(fcs, hdr->length);
1493 1.1 gdamore fcs = 0xff - fcs; /* ones complement */
1494 1.1 gdamore hdr->fcs = fcs;
1495 1.1 gdamore
1496 1.1 gdamore m->m_pkthdr.len = m->m_len = sizeof(struct rfcomm_cmd_hdr);
1497 1.1 gdamore
1498 1.1 gdamore /* empty credit note */
1499 1.1 gdamore credit->rc_dlc = NULL;
1500 1.1 gdamore credit->rc_len = m->m_pkthdr.len;
1501 1.1 gdamore SIMPLEQ_INSERT_TAIL(&rs->rs_credits, credit, rc_next);
1502 1.1 gdamore
1503 1.1 gdamore DPRINTFN(5, "dlci %d type %2.2x (%d bytes, fcs=%#2.2x)\n",
1504 1.1 gdamore dlci, type, m->m_pkthdr.len, fcs);
1505 1.1 gdamore
1506 1.1 gdamore return l2cap_send(rs->rs_l2cap, m);
1507 1.1 gdamore }
1508 1.1 gdamore
1509 1.1 gdamore /*
1510 1.1 gdamore * rfcomm_session_send_uih(rfcomm_session, rfcomm_dlc, credits, mbuf)
1511 1.1 gdamore *
1512 1.1 gdamore * UIH frame is per DLC data or Multiplexer Control Commands
1513 1.1 gdamore * when no DLC is given. Data mbuf is optional (just credits
1514 1.1 gdamore * will be sent in that case)
1515 1.1 gdamore */
1516 1.1 gdamore int
1517 1.1 gdamore rfcomm_session_send_uih(struct rfcomm_session *rs, struct rfcomm_dlc *dlc,
1518 1.1 gdamore int credits, struct mbuf *m)
1519 1.1 gdamore {
1520 1.1 gdamore struct rfcomm_credit *credit;
1521 1.1 gdamore struct mbuf *m0 = NULL;
1522 1.1 gdamore int err, len;
1523 1.1 gdamore uint8_t fcs, *hdr;
1524 1.1 gdamore
1525 1.1 gdamore KASSERT(rs != NULL);
1526 1.1 gdamore
1527 1.1 gdamore len = (m == NULL) ? 0 : m->m_pkthdr.len;
1528 1.1 gdamore KASSERT(!(credits == 0 && len == 0));
1529 1.1 gdamore
1530 1.1 gdamore /*
1531 1.1 gdamore * Make a credit note for the completion notification
1532 1.1 gdamore */
1533 1.1 gdamore credit = pool_get(&rfcomm_credit_pool, PR_NOWAIT);
1534 1.1 gdamore if (credit == NULL)
1535 1.1 gdamore goto nomem;
1536 1.1 gdamore
1537 1.1 gdamore credit->rc_len = len;
1538 1.1 gdamore credit->rc_dlc = dlc;
1539 1.1 gdamore
1540 1.1 gdamore /*
1541 1.1 gdamore * Wrap UIH frame information around payload.
1542 1.1 gdamore *
1543 1.1 gdamore * [ADDRESS] [CONTROL] [LENGTH] [CREDITS] [...] [FCS]
1544 1.1 gdamore *
1545 1.1 gdamore * Address is one octet.
1546 1.1 gdamore * Control is one octet.
1547 1.1 gdamore * Length is one or two octets.
1548 1.1 gdamore * Credits may be one octet.
1549 1.1 gdamore *
1550 1.1 gdamore * FCS is one octet and calculated on address and
1551 1.1 gdamore * control octets only.
1552 1.1 gdamore *
1553 1.1 gdamore * If there are credits to be sent, we will set the PF
1554 1.1 gdamore * flag and include them in the frame.
1555 1.1 gdamore */
1556 1.1 gdamore m0 = m_gethdr(M_DONTWAIT, MT_DATA);
1557 1.1 gdamore if (m0 == NULL)
1558 1.1 gdamore goto nomem;
1559 1.1 gdamore
1560 1.1 gdamore MH_ALIGN(m0, 5); /* (max 5 header octets) */
1561 1.1 gdamore hdr = mtod(m0, uint8_t *);
1562 1.1 gdamore
1563 1.1 gdamore /* CR bit is set according to the initiator of the session */
1564 1.1 gdamore *hdr = RFCOMM_MKADDRESS((IS_INITIATOR(rs) ? 1 : 0),
1565 1.1 gdamore (dlc ? dlc->rd_dlci : 0));
1566 1.1 gdamore fcs = FCS(0xff, *hdr);
1567 1.1 gdamore hdr++;
1568 1.1 gdamore
1569 1.1 gdamore /* PF bit is set if credits are being sent */
1570 1.1 gdamore *hdr = RFCOMM_MKCONTROL(RFCOMM_FRAME_UIH, (credits > 0 ? 1 : 0));
1571 1.1 gdamore fcs = FCS(fcs, *hdr);
1572 1.1 gdamore hdr++;
1573 1.1 gdamore
1574 1.1 gdamore if (len < (1 << 7)) {
1575 1.1 gdamore *hdr++ = ((len << 1) & 0xfe) | 0x01; /* 7 bits, EA = 1 */
1576 1.1 gdamore } else {
1577 1.1 gdamore *hdr++ = ((len << 1) & 0xfe); /* 7 bits, EA = 0 */
1578 1.1 gdamore *hdr++ = ((len >> 7) & 0xff); /* 8 bits, no EA */
1579 1.1 gdamore }
1580 1.1 gdamore
1581 1.1 gdamore if (credits > 0)
1582 1.1 gdamore *hdr++ = (uint8_t)credits;
1583 1.1 gdamore
1584 1.1 gdamore m0->m_len = hdr - mtod(m0, uint8_t *);
1585 1.1 gdamore
1586 1.1 gdamore /* Append payload */
1587 1.1 gdamore m0->m_next = m;
1588 1.1 gdamore m = NULL;
1589 1.1 gdamore
1590 1.1 gdamore m0->m_pkthdr.len = m0->m_len + len;
1591 1.1 gdamore
1592 1.1 gdamore /* Append FCS */
1593 1.1 gdamore fcs = 0xff - fcs; /* ones complement */
1594 1.1 gdamore len = m0->m_pkthdr.len;
1595 1.1 gdamore m_copyback(m0, len, sizeof(fcs), &fcs);
1596 1.1 gdamore if (m0->m_pkthdr.len != len + sizeof(fcs))
1597 1.1 gdamore goto nomem;
1598 1.1 gdamore
1599 1.1 gdamore DPRINTFN(10, "dlci %d, pktlen %d (%d data, %d credits), fcs=%#2.2x\n",
1600 1.1 gdamore dlc ? dlc->rd_dlci : 0, m0->m_pkthdr.len, credit->rc_len,
1601 1.1 gdamore credits, fcs);
1602 1.1 gdamore
1603 1.1 gdamore /*
1604 1.1 gdamore * UIH frame ready to go..
1605 1.1 gdamore */
1606 1.1 gdamore err = l2cap_send(rs->rs_l2cap, m0);
1607 1.1 gdamore if (err)
1608 1.1 gdamore goto fail;
1609 1.1 gdamore
1610 1.1 gdamore SIMPLEQ_INSERT_TAIL(&rs->rs_credits, credit, rc_next);
1611 1.1 gdamore return 0;
1612 1.1 gdamore
1613 1.1 gdamore nomem:
1614 1.1 gdamore err = ENOMEM;
1615 1.1 gdamore
1616 1.1 gdamore if (m0 != NULL)
1617 1.1 gdamore m_freem(m0);
1618 1.1 gdamore
1619 1.1 gdamore if (m != NULL)
1620 1.1 gdamore m_freem(m);
1621 1.1 gdamore
1622 1.1 gdamore fail:
1623 1.1 gdamore if (credit != NULL)
1624 1.1 gdamore pool_put(&rfcomm_credit_pool, credit);
1625 1.1 gdamore
1626 1.1 gdamore return err;
1627 1.1 gdamore }
1628 1.1 gdamore
1629 1.1 gdamore /*
1630 1.1 gdamore * send Multiplexer Control Command (or Response) on session
1631 1.1 gdamore */
1632 1.1 gdamore int
1633 1.1 gdamore rfcomm_session_send_mcc(struct rfcomm_session *rs, int cr,
1634 1.1 gdamore uint8_t type, void *data, int len)
1635 1.1 gdamore {
1636 1.1 gdamore struct mbuf *m;
1637 1.1 gdamore uint8_t *hdr;
1638 1.1 gdamore int hlen;
1639 1.1 gdamore
1640 1.1 gdamore m = m_gethdr(M_DONTWAIT, MT_DATA);
1641 1.1 gdamore if (m == NULL)
1642 1.1 gdamore return ENOMEM;
1643 1.1 gdamore
1644 1.1 gdamore hdr = mtod(m, uint8_t *);
1645 1.1 gdamore
1646 1.1 gdamore /*
1647 1.1 gdamore * Technically the type field can extend past one octet, but none
1648 1.1 gdamore * currently defined will do that.
1649 1.1 gdamore */
1650 1.1 gdamore *hdr++ = RFCOMM_MKMCC_TYPE(cr, type);
1651 1.1 gdamore
1652 1.1 gdamore /*
1653 1.1 gdamore * In the frame, the max length size is 2 octets (15 bits) whereas
1654 1.1 gdamore * no max length size is specified for MCC commands. We must allow
1655 1.1 gdamore * for 3 octets since for MCC frames we use 7 bits + EA in each.
1656 1.1 gdamore *
1657 1.1 gdamore * Only test data can possibly be that big.
1658 1.1 gdamore *
1659 1.1 gdamore * XXX Should we check this against the MTU?
1660 1.1 gdamore */
1661 1.1 gdamore if (len < (1 << 7)) {
1662 1.1 gdamore *hdr++ = ((len << 1) & 0xfe) | 0x01; /* 7 bits, EA = 1 */
1663 1.1 gdamore } else if (len < (1 << 14)) {
1664 1.1 gdamore *hdr++ = ((len << 1) & 0xfe); /* 7 bits, EA = 0 */
1665 1.1 gdamore *hdr++ = ((len >> 6) & 0xfe) | 0x01; /* 7 bits, EA = 1 */
1666 1.1 gdamore } else if (len < (1 << 15)) {
1667 1.1 gdamore *hdr++ = ((len << 1) & 0xfe); /* 7 bits, EA = 0 */
1668 1.1 gdamore *hdr++ = ((len >> 6) & 0xfe); /* 7 bits, EA = 0 */
1669 1.1 gdamore *hdr++ = ((len >> 13) & 0x02) | 0x01; /* 1 bit, EA = 1 */
1670 1.1 gdamore } else {
1671 1.1 gdamore DPRINTF("incredible length! (%d)\n", len);
1672 1.1 gdamore m_freem(m);
1673 1.1 gdamore return EMSGSIZE;
1674 1.1 gdamore }
1675 1.1 gdamore
1676 1.1 gdamore /*
1677 1.1 gdamore * add command data (to same mbuf if possible)
1678 1.1 gdamore */
1679 1.1 gdamore hlen = hdr - mtod(m, uint8_t *);
1680 1.1 gdamore
1681 1.1 gdamore if (len > 0) {
1682 1.1 gdamore m->m_pkthdr.len = m->m_len = MHLEN;
1683 1.1 gdamore m_copyback(m, hlen, len, data);
1684 1.1 gdamore if (m->m_pkthdr.len != max(MHLEN, hlen + len)) {
1685 1.1 gdamore m_freem(m);
1686 1.1 gdamore return ENOMEM;
1687 1.1 gdamore }
1688 1.1 gdamore }
1689 1.1 gdamore
1690 1.1 gdamore m->m_pkthdr.len = hlen + len;
1691 1.1 gdamore m->m_len = min(MHLEN, m->m_pkthdr.len);
1692 1.1 gdamore
1693 1.1 gdamore DPRINTFN(5, "%s type %2.2x len %d\n",
1694 1.1 gdamore (cr ? "command" : "response"), type, m->m_pkthdr.len);
1695 1.1 gdamore
1696 1.1 gdamore return rfcomm_session_send_uih(rs, NULL, 0, m);
1697 1.1 gdamore }
1698