blob: d54bfc51c693fc7b4431c13378ce0ddec078b0da [file] [log] [blame]
Eric Lapuyade4a61cd62012-09-13 17:11:37 +02001/*
2 * shdlc Link Layer Control
3 *
4 * Copyright (C) 2012 Intel Corporation. All rights reserved.
5 *
6 * This program is free software; you can redistribute it and/or modify it
7 * under the terms and conditions of the GNU General Public License,
8 * version 2, as published by the Free Software Foundation.
9 *
10 * This program is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 * GNU General Public License for more details.
14 *
15 * You should have received a copy of the GNU General Public License
16 * along with this program; if not, write to the
17 * Free Software Foundation, Inc.,
18 * 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
19 */
20
21#define pr_fmt(fmt) "shdlc: %s: " fmt, __func__
22
23#include <linux/types.h>
24#include <linux/sched.h>
Eric Lapuyade4a61cd62012-09-13 17:11:37 +020025#include <linux/wait.h>
26#include <linux/slab.h>
27#include <linux/skbuff.h>
28
29#include "llc.h"
30
31enum shdlc_state {
32 SHDLC_DISCONNECTED = 0,
33 SHDLC_CONNECTING = 1,
34 SHDLC_NEGOCIATING = 2,
35 SHDLC_CONNECTED = 3
36};
37
38struct llc_shdlc {
39 struct nfc_hci_dev *hdev;
40 xmit_to_drv_t xmit_to_drv;
41 rcv_to_hci_t rcv_to_hci;
42
43 struct mutex state_mutex;
44 enum shdlc_state state;
45 int hard_fault;
46
47 wait_queue_head_t *connect_wq;
48 int connect_tries;
49 int connect_result;
50 struct timer_list connect_timer;/* aka T3 in spec 10.6.1 */
51
52 u8 w; /* window size */
53 bool srej_support;
54
55 struct timer_list t1_timer; /* send ack timeout */
56 bool t1_active;
57
58 struct timer_list t2_timer; /* guard/retransmit timeout */
59 bool t2_active;
60
61 int ns; /* next seq num for send */
62 int nr; /* next expected seq num for receive */
63 int dnr; /* oldest sent unacked seq num */
64
65 struct sk_buff_head rcv_q;
66
67 struct sk_buff_head send_q;
68 bool rnr; /* other side is not ready to receive */
69
70 struct sk_buff_head ack_pending_q;
71
72 struct work_struct sm_work;
73
74 int tx_headroom;
75 int tx_tailroom;
76
77 llc_failure_t llc_failure;
78};
79
80#define SHDLC_LLC_HEAD_ROOM 2
81
82#define SHDLC_MAX_WINDOW 4
83#define SHDLC_SREJ_SUPPORT false
84
85#define SHDLC_CONTROL_HEAD_MASK 0xe0
86#define SHDLC_CONTROL_HEAD_I 0x80
87#define SHDLC_CONTROL_HEAD_I2 0xa0
88#define SHDLC_CONTROL_HEAD_S 0xc0
89#define SHDLC_CONTROL_HEAD_U 0xe0
90
91#define SHDLC_CONTROL_NS_MASK 0x38
92#define SHDLC_CONTROL_NR_MASK 0x07
93#define SHDLC_CONTROL_TYPE_MASK 0x18
94
95#define SHDLC_CONTROL_M_MASK 0x1f
96
97enum sframe_type {
98 S_FRAME_RR = 0x00,
99 S_FRAME_REJ = 0x01,
100 S_FRAME_RNR = 0x02,
101 S_FRAME_SREJ = 0x03
102};
103
104enum uframe_modifier {
105 U_FRAME_UA = 0x06,
106 U_FRAME_RSET = 0x19
107};
108
109#define SHDLC_CONNECT_VALUE_MS 5
110#define SHDLC_T1_VALUE_MS(w) ((5 * w) / 4)
111#define SHDLC_T2_VALUE_MS 300
112
113#define SHDLC_DUMP_SKB(info, skb) \
114do { \
115 pr_debug("%s:\n", info); \
116 print_hex_dump(KERN_DEBUG, "shdlc: ", DUMP_PREFIX_OFFSET, \
117 16, 1, skb->data, skb->len, 0); \
118} while (0)
119
120/* checks x < y <= z modulo 8 */
121static bool llc_shdlc_x_lt_y_lteq_z(int x, int y, int z)
122{
123 if (x < z)
124 return ((x < y) && (y <= z)) ? true : false;
125 else
126 return ((y > x) || (y <= z)) ? true : false;
127}
128
129/* checks x <= y < z modulo 8 */
130static bool llc_shdlc_x_lteq_y_lt_z(int x, int y, int z)
131{
132 if (x <= z)
133 return ((x <= y) && (y < z)) ? true : false;
134 else /* x > z -> z+8 > x */
135 return ((y >= x) || (y < z)) ? true : false;
136}
137
138static struct sk_buff *llc_shdlc_alloc_skb(struct llc_shdlc *shdlc,
139 int payload_len)
140{
141 struct sk_buff *skb;
142
143 skb = alloc_skb(shdlc->tx_headroom + SHDLC_LLC_HEAD_ROOM +
144 shdlc->tx_tailroom + payload_len, GFP_KERNEL);
145 if (skb)
146 skb_reserve(skb, shdlc->tx_headroom + SHDLC_LLC_HEAD_ROOM);
147
148 return skb;
149}
150
151/* immediately sends an S frame. */
152static int llc_shdlc_send_s_frame(struct llc_shdlc *shdlc,
153 enum sframe_type sframe_type, int nr)
154{
155 int r;
156 struct sk_buff *skb;
157
158 pr_debug("sframe_type=%d nr=%d\n", sframe_type, nr);
159
160 skb = llc_shdlc_alloc_skb(shdlc, 0);
161 if (skb == NULL)
162 return -ENOMEM;
163
164 *skb_push(skb, 1) = SHDLC_CONTROL_HEAD_S | (sframe_type << 3) | nr;
165
166 r = shdlc->xmit_to_drv(shdlc->hdev, skb);
167
168 kfree_skb(skb);
169
170 return r;
171}
172
173/* immediately sends an U frame. skb may contain optional payload */
174static int llc_shdlc_send_u_frame(struct llc_shdlc *shdlc,
175 struct sk_buff *skb,
176 enum uframe_modifier uframe_modifier)
177{
178 int r;
179
180 pr_debug("uframe_modifier=%d\n", uframe_modifier);
181
182 *skb_push(skb, 1) = SHDLC_CONTROL_HEAD_U | uframe_modifier;
183
184 r = shdlc->xmit_to_drv(shdlc->hdev, skb);
185
186 kfree_skb(skb);
187
188 return r;
189}
190
191/*
192 * Free ack_pending frames until y_nr - 1, and reset t2 according to
193 * the remaining oldest ack_pending frame sent time
194 */
195static void llc_shdlc_reset_t2(struct llc_shdlc *shdlc, int y_nr)
196{
197 struct sk_buff *skb;
198 int dnr = shdlc->dnr; /* MUST initially be < y_nr */
199
200 pr_debug("release ack pending up to frame %d excluded\n", y_nr);
201
202 while (dnr != y_nr) {
203 pr_debug("release ack pending frame %d\n", dnr);
204
205 skb = skb_dequeue(&shdlc->ack_pending_q);
206 kfree_skb(skb);
207
208 dnr = (dnr + 1) % 8;
209 }
210
211 if (skb_queue_empty(&shdlc->ack_pending_q)) {
212 if (shdlc->t2_active) {
213 del_timer_sync(&shdlc->t2_timer);
214 shdlc->t2_active = false;
215
216 pr_debug
217 ("All sent frames acked. Stopped T2(retransmit)\n");
218 }
219 } else {
220 skb = skb_peek(&shdlc->ack_pending_q);
221
222 mod_timer(&shdlc->t2_timer, *(unsigned long *)skb->cb +
223 msecs_to_jiffies(SHDLC_T2_VALUE_MS));
224 shdlc->t2_active = true;
225
226 pr_debug
227 ("Start T2(retransmit) for remaining unacked sent frames\n");
228 }
229}
230
231/*
232 * Receive validated frames from lower layer. skb contains HCI payload only.
233 * Handle according to algorithm at spec:10.8.2
234 */
235static void llc_shdlc_rcv_i_frame(struct llc_shdlc *shdlc,
236 struct sk_buff *skb, int ns, int nr)
237{
238 int x_ns = ns;
239 int y_nr = nr;
240
241 pr_debug("recvd I-frame %d, remote waiting frame %d\n", ns, nr);
242
243 if (shdlc->state != SHDLC_CONNECTED)
244 goto exit;
245
246 if (x_ns != shdlc->nr) {
247 llc_shdlc_send_s_frame(shdlc, S_FRAME_REJ, shdlc->nr);
248 goto exit;
249 }
250
251 if (shdlc->t1_active == false) {
252 shdlc->t1_active = true;
253 mod_timer(&shdlc->t1_timer, jiffies +
254 msecs_to_jiffies(SHDLC_T1_VALUE_MS(shdlc->w)));
255 pr_debug("(re)Start T1(send ack)\n");
256 }
257
258 if (skb->len) {
259 shdlc->rcv_to_hci(shdlc->hdev, skb);
260 skb = NULL;
261 }
262
263 shdlc->nr = (shdlc->nr + 1) % 8;
264
265 if (llc_shdlc_x_lt_y_lteq_z(shdlc->dnr, y_nr, shdlc->ns)) {
266 llc_shdlc_reset_t2(shdlc, y_nr);
267
268 shdlc->dnr = y_nr;
269 }
270
271exit:
272 kfree_skb(skb);
273}
274
275static void llc_shdlc_rcv_ack(struct llc_shdlc *shdlc, int y_nr)
276{
277 pr_debug("remote acked up to frame %d excluded\n", y_nr);
278
279 if (llc_shdlc_x_lt_y_lteq_z(shdlc->dnr, y_nr, shdlc->ns)) {
280 llc_shdlc_reset_t2(shdlc, y_nr);
281 shdlc->dnr = y_nr;
282 }
283}
284
285static void llc_shdlc_requeue_ack_pending(struct llc_shdlc *shdlc)
286{
287 struct sk_buff *skb;
288
289 pr_debug("ns reset to %d\n", shdlc->dnr);
290
291 while ((skb = skb_dequeue_tail(&shdlc->ack_pending_q))) {
292 skb_pull(skb, 1); /* remove control field */
293 skb_queue_head(&shdlc->send_q, skb);
294 }
295 shdlc->ns = shdlc->dnr;
296}
297
298static void llc_shdlc_rcv_rej(struct llc_shdlc *shdlc, int y_nr)
299{
300 struct sk_buff *skb;
301
302 pr_debug("remote asks retransmition from frame %d\n", y_nr);
303
304 if (llc_shdlc_x_lteq_y_lt_z(shdlc->dnr, y_nr, shdlc->ns)) {
305 if (shdlc->t2_active) {
306 del_timer_sync(&shdlc->t2_timer);
307 shdlc->t2_active = false;
308 pr_debug("Stopped T2(retransmit)\n");
309 }
310
311 if (shdlc->dnr != y_nr) {
312 while ((shdlc->dnr = ((shdlc->dnr + 1) % 8)) != y_nr) {
313 skb = skb_dequeue(&shdlc->ack_pending_q);
314 kfree_skb(skb);
315 }
316 }
317
318 llc_shdlc_requeue_ack_pending(shdlc);
319 }
320}
321
322/* See spec RR:10.8.3 REJ:10.8.4 */
323static void llc_shdlc_rcv_s_frame(struct llc_shdlc *shdlc,
324 enum sframe_type s_frame_type, int nr)
325{
326 struct sk_buff *skb;
327
328 if (shdlc->state != SHDLC_CONNECTED)
329 return;
330
331 switch (s_frame_type) {
332 case S_FRAME_RR:
333 llc_shdlc_rcv_ack(shdlc, nr);
334 if (shdlc->rnr == true) { /* see SHDLC 10.7.7 */
335 shdlc->rnr = false;
336 if (shdlc->send_q.qlen == 0) {
337 skb = llc_shdlc_alloc_skb(shdlc, 0);
338 if (skb)
339 skb_queue_tail(&shdlc->send_q, skb);
340 }
341 }
342 break;
343 case S_FRAME_REJ:
344 llc_shdlc_rcv_rej(shdlc, nr);
345 break;
346 case S_FRAME_RNR:
347 llc_shdlc_rcv_ack(shdlc, nr);
348 shdlc->rnr = true;
349 break;
350 default:
351 break;
352 }
353}
354
355static void llc_shdlc_connect_complete(struct llc_shdlc *shdlc, int r)
356{
357 pr_debug("result=%d\n", r);
358
359 del_timer_sync(&shdlc->connect_timer);
360
361 if (r == 0) {
362 shdlc->ns = 0;
363 shdlc->nr = 0;
364 shdlc->dnr = 0;
365
366 shdlc->state = SHDLC_CONNECTED;
367 } else {
368 shdlc->state = SHDLC_DISCONNECTED;
369 }
370
371 shdlc->connect_result = r;
372
373 wake_up(shdlc->connect_wq);
374}
375
376static int llc_shdlc_connect_initiate(struct llc_shdlc *shdlc)
377{
378 struct sk_buff *skb;
379
380 pr_debug("\n");
381
382 skb = llc_shdlc_alloc_skb(shdlc, 2);
383 if (skb == NULL)
384 return -ENOMEM;
385
386 *skb_put(skb, 1) = SHDLC_MAX_WINDOW;
387 *skb_put(skb, 1) = SHDLC_SREJ_SUPPORT ? 1 : 0;
388
389 return llc_shdlc_send_u_frame(shdlc, skb, U_FRAME_RSET);
390}
391
392static int llc_shdlc_connect_send_ua(struct llc_shdlc *shdlc)
393{
394 struct sk_buff *skb;
395
396 pr_debug("\n");
397
398 skb = llc_shdlc_alloc_skb(shdlc, 0);
399 if (skb == NULL)
400 return -ENOMEM;
401
402 return llc_shdlc_send_u_frame(shdlc, skb, U_FRAME_UA);
403}
404
405static void llc_shdlc_rcv_u_frame(struct llc_shdlc *shdlc,
406 struct sk_buff *skb,
407 enum uframe_modifier u_frame_modifier)
408{
409 u8 w = SHDLC_MAX_WINDOW;
410 bool srej_support = SHDLC_SREJ_SUPPORT;
411 int r;
412
413 pr_debug("u_frame_modifier=%d\n", u_frame_modifier);
414
415 switch (u_frame_modifier) {
416 case U_FRAME_RSET:
417 if (shdlc->state == SHDLC_NEGOCIATING) {
418 /* we sent RSET, but chip wants to negociate */
419 if (skb->len > 0)
420 w = skb->data[0];
421
422 if (skb->len > 1)
423 srej_support = skb->data[1] & 0x01 ? true :
424 false;
425
426 if ((w <= SHDLC_MAX_WINDOW) &&
427 (SHDLC_SREJ_SUPPORT || (srej_support == false))) {
428 shdlc->w = w;
429 shdlc->srej_support = srej_support;
430 r = llc_shdlc_connect_send_ua(shdlc);
431 llc_shdlc_connect_complete(shdlc, r);
432 }
433 } else if (shdlc->state == SHDLC_CONNECTED) {
434 /*
435 * Chip wants to reset link. This is unexpected and
436 * unsupported.
437 */
438 shdlc->hard_fault = -ECONNRESET;
439 }
440 break;
441 case U_FRAME_UA:
442 if ((shdlc->state == SHDLC_CONNECTING &&
443 shdlc->connect_tries > 0) ||
444 (shdlc->state == SHDLC_NEGOCIATING))
445 llc_shdlc_connect_complete(shdlc, 0);
446 break;
447 default:
448 break;
449 }
450
451 kfree_skb(skb);
452}
453
454static void llc_shdlc_handle_rcv_queue(struct llc_shdlc *shdlc)
455{
456 struct sk_buff *skb;
457 u8 control;
458 int nr;
459 int ns;
460 enum sframe_type s_frame_type;
461 enum uframe_modifier u_frame_modifier;
462
463 if (shdlc->rcv_q.qlen)
464 pr_debug("rcvQlen=%d\n", shdlc->rcv_q.qlen);
465
466 while ((skb = skb_dequeue(&shdlc->rcv_q)) != NULL) {
467 control = skb->data[0];
468 skb_pull(skb, 1);
469 switch (control & SHDLC_CONTROL_HEAD_MASK) {
470 case SHDLC_CONTROL_HEAD_I:
471 case SHDLC_CONTROL_HEAD_I2:
472 ns = (control & SHDLC_CONTROL_NS_MASK) >> 3;
473 nr = control & SHDLC_CONTROL_NR_MASK;
474 llc_shdlc_rcv_i_frame(shdlc, skb, ns, nr);
475 break;
476 case SHDLC_CONTROL_HEAD_S:
477 s_frame_type = (control & SHDLC_CONTROL_TYPE_MASK) >> 3;
478 nr = control & SHDLC_CONTROL_NR_MASK;
479 llc_shdlc_rcv_s_frame(shdlc, s_frame_type, nr);
480 kfree_skb(skb);
481 break;
482 case SHDLC_CONTROL_HEAD_U:
483 u_frame_modifier = control & SHDLC_CONTROL_M_MASK;
484 llc_shdlc_rcv_u_frame(shdlc, skb, u_frame_modifier);
485 break;
486 default:
487 pr_err("UNKNOWN Control=%d\n", control);
488 kfree_skb(skb);
489 break;
490 }
491 }
492}
493
494static int llc_shdlc_w_used(int ns, int dnr)
495{
496 int unack_count;
497
498 if (dnr <= ns)
499 unack_count = ns - dnr;
500 else
501 unack_count = 8 - dnr + ns;
502
503 return unack_count;
504}
505
506/* Send frames according to algorithm at spec:10.8.1 */
507static void llc_shdlc_handle_send_queue(struct llc_shdlc *shdlc)
508{
509 struct sk_buff *skb;
510 int r;
511 unsigned long time_sent;
512
513 if (shdlc->send_q.qlen)
514 pr_debug
515 ("sendQlen=%d ns=%d dnr=%d rnr=%s w_room=%d unackQlen=%d\n",
516 shdlc->send_q.qlen, shdlc->ns, shdlc->dnr,
517 shdlc->rnr == false ? "false" : "true",
518 shdlc->w - llc_shdlc_w_used(shdlc->ns, shdlc->dnr),
519 shdlc->ack_pending_q.qlen);
520
521 while (shdlc->send_q.qlen && shdlc->ack_pending_q.qlen < shdlc->w &&
522 (shdlc->rnr == false)) {
523
524 if (shdlc->t1_active) {
525 del_timer_sync(&shdlc->t1_timer);
526 shdlc->t1_active = false;
527 pr_debug("Stopped T1(send ack)\n");
528 }
529
530 skb = skb_dequeue(&shdlc->send_q);
531
532 *skb_push(skb, 1) = SHDLC_CONTROL_HEAD_I | (shdlc->ns << 3) |
533 shdlc->nr;
534
535 pr_debug("Sending I-Frame %d, waiting to rcv %d\n", shdlc->ns,
536 shdlc->nr);
Eric Lapuyade412fda52012-09-18 19:45:48 +0200537 SHDLC_DUMP_SKB("shdlc frame written", skb);
Eric Lapuyade4a61cd62012-09-13 17:11:37 +0200538
539 r = shdlc->xmit_to_drv(shdlc->hdev, skb);
540 if (r < 0) {
541 shdlc->hard_fault = r;
542 break;
543 }
544
545 shdlc->ns = (shdlc->ns + 1) % 8;
546
547 time_sent = jiffies;
548 *(unsigned long *)skb->cb = time_sent;
549
550 skb_queue_tail(&shdlc->ack_pending_q, skb);
551
552 if (shdlc->t2_active == false) {
553 shdlc->t2_active = true;
554 mod_timer(&shdlc->t2_timer, time_sent +
555 msecs_to_jiffies(SHDLC_T2_VALUE_MS));
556 pr_debug("Started T2 (retransmit)\n");
557 }
558 }
559}
560
561static void llc_shdlc_connect_timeout(unsigned long data)
562{
563 struct llc_shdlc *shdlc = (struct llc_shdlc *)data;
564
565 pr_debug("\n");
566
567 queue_work(system_nrt_wq, &shdlc->sm_work);
568}
569
570static void llc_shdlc_t1_timeout(unsigned long data)
571{
572 struct llc_shdlc *shdlc = (struct llc_shdlc *)data;
573
574 pr_debug("SoftIRQ: need to send ack\n");
575
576 queue_work(system_nrt_wq, &shdlc->sm_work);
577}
578
579static void llc_shdlc_t2_timeout(unsigned long data)
580{
581 struct llc_shdlc *shdlc = (struct llc_shdlc *)data;
582
583 pr_debug("SoftIRQ: need to retransmit\n");
584
585 queue_work(system_nrt_wq, &shdlc->sm_work);
586}
587
588static void llc_shdlc_sm_work(struct work_struct *work)
589{
590 struct llc_shdlc *shdlc = container_of(work, struct llc_shdlc, sm_work);
591 int r;
592
593 pr_debug("\n");
594
595 mutex_lock(&shdlc->state_mutex);
596
597 switch (shdlc->state) {
598 case SHDLC_DISCONNECTED:
599 skb_queue_purge(&shdlc->rcv_q);
600 skb_queue_purge(&shdlc->send_q);
601 skb_queue_purge(&shdlc->ack_pending_q);
602 break;
603 case SHDLC_CONNECTING:
604 if (shdlc->hard_fault) {
605 llc_shdlc_connect_complete(shdlc, shdlc->hard_fault);
606 break;
607 }
608
609 if (shdlc->connect_tries++ < 5)
610 r = llc_shdlc_connect_initiate(shdlc);
611 else
612 r = -ETIME;
613 if (r < 0)
614 llc_shdlc_connect_complete(shdlc, r);
615 else {
616 mod_timer(&shdlc->connect_timer, jiffies +
617 msecs_to_jiffies(SHDLC_CONNECT_VALUE_MS));
618
619 shdlc->state = SHDLC_NEGOCIATING;
620 }
621 break;
622 case SHDLC_NEGOCIATING:
623 if (timer_pending(&shdlc->connect_timer) == 0) {
624 shdlc->state = SHDLC_CONNECTING;
625 queue_work(system_nrt_wq, &shdlc->sm_work);
626 }
627
628 llc_shdlc_handle_rcv_queue(shdlc);
629
630 if (shdlc->hard_fault) {
631 llc_shdlc_connect_complete(shdlc, shdlc->hard_fault);
632 break;
633 }
634 break;
635 case SHDLC_CONNECTED:
636 llc_shdlc_handle_rcv_queue(shdlc);
637 llc_shdlc_handle_send_queue(shdlc);
638
639 if (shdlc->t1_active && timer_pending(&shdlc->t1_timer) == 0) {
640 pr_debug
641 ("Handle T1(send ack) elapsed (T1 now inactive)\n");
642
643 shdlc->t1_active = false;
644 r = llc_shdlc_send_s_frame(shdlc, S_FRAME_RR,
645 shdlc->nr);
646 if (r < 0)
647 shdlc->hard_fault = r;
648 }
649
650 if (shdlc->t2_active && timer_pending(&shdlc->t2_timer) == 0) {
651 pr_debug
652 ("Handle T2(retransmit) elapsed (T2 inactive)\n");
653
654 shdlc->t2_active = false;
655
656 llc_shdlc_requeue_ack_pending(shdlc);
657 llc_shdlc_handle_send_queue(shdlc);
658 }
659
660 if (shdlc->hard_fault) {
661 shdlc->llc_failure(shdlc->hdev, shdlc->hard_fault);
662 }
663 break;
664 default:
665 break;
666 }
667 mutex_unlock(&shdlc->state_mutex);
668}
669
670/*
671 * Called from syscall context to establish shdlc link. Sleeps until
672 * link is ready or failure.
673 */
674static int llc_shdlc_connect(struct llc_shdlc *shdlc)
675{
676 DECLARE_WAIT_QUEUE_HEAD_ONSTACK(connect_wq);
677
678 pr_debug("\n");
679
680 mutex_lock(&shdlc->state_mutex);
681
682 shdlc->state = SHDLC_CONNECTING;
683 shdlc->connect_wq = &connect_wq;
684 shdlc->connect_tries = 0;
685 shdlc->connect_result = 1;
686
687 mutex_unlock(&shdlc->state_mutex);
688
689 queue_work(system_nrt_wq, &shdlc->sm_work);
690
691 wait_event(connect_wq, shdlc->connect_result != 1);
692
693 return shdlc->connect_result;
694}
695
696static void llc_shdlc_disconnect(struct llc_shdlc *shdlc)
697{
698 pr_debug("\n");
699
700 mutex_lock(&shdlc->state_mutex);
701
702 shdlc->state = SHDLC_DISCONNECTED;
703
704 mutex_unlock(&shdlc->state_mutex);
705
706 queue_work(system_nrt_wq, &shdlc->sm_work);
707}
708
709/*
710 * Receive an incoming shdlc frame. Frame has already been crc-validated.
711 * skb contains only LLC header and payload.
712 * If skb == NULL, it is a notification that the link below is dead.
713 */
714static void llc_shdlc_recv_frame(struct llc_shdlc *shdlc, struct sk_buff *skb)
715{
716 if (skb == NULL) {
717 pr_err("NULL Frame -> link is dead\n");
718 shdlc->hard_fault = -EREMOTEIO;
719 } else {
720 SHDLC_DUMP_SKB("incoming frame", skb);
721 skb_queue_tail(&shdlc->rcv_q, skb);
722 }
723
724 queue_work(system_nrt_wq, &shdlc->sm_work);
725}
726
727static void *llc_shdlc_init(struct nfc_hci_dev *hdev, xmit_to_drv_t xmit_to_drv,
728 rcv_to_hci_t rcv_to_hci, int tx_headroom,
729 int tx_tailroom, int *rx_headroom, int *rx_tailroom,
730 llc_failure_t llc_failure)
731{
732 struct llc_shdlc *shdlc;
733
734 *rx_headroom = SHDLC_LLC_HEAD_ROOM;
735 *rx_tailroom = 0;
736
737 shdlc = kzalloc(sizeof(struct llc_shdlc), GFP_KERNEL);
738 if (shdlc == NULL)
739 return NULL;
740
741 mutex_init(&shdlc->state_mutex);
742 shdlc->state = SHDLC_DISCONNECTED;
743
744 init_timer(&shdlc->connect_timer);
745 shdlc->connect_timer.data = (unsigned long)shdlc;
746 shdlc->connect_timer.function = llc_shdlc_connect_timeout;
747
748 init_timer(&shdlc->t1_timer);
749 shdlc->t1_timer.data = (unsigned long)shdlc;
750 shdlc->t1_timer.function = llc_shdlc_t1_timeout;
751
752 init_timer(&shdlc->t2_timer);
753 shdlc->t2_timer.data = (unsigned long)shdlc;
754 shdlc->t2_timer.function = llc_shdlc_t2_timeout;
755
756 shdlc->w = SHDLC_MAX_WINDOW;
757 shdlc->srej_support = SHDLC_SREJ_SUPPORT;
758
759 skb_queue_head_init(&shdlc->rcv_q);
760 skb_queue_head_init(&shdlc->send_q);
761 skb_queue_head_init(&shdlc->ack_pending_q);
762
763 INIT_WORK(&shdlc->sm_work, llc_shdlc_sm_work);
764
765 shdlc->hdev = hdev;
766 shdlc->xmit_to_drv = xmit_to_drv;
767 shdlc->rcv_to_hci = rcv_to_hci;
768 shdlc->tx_headroom = tx_headroom;
769 shdlc->tx_tailroom = tx_tailroom;
770 shdlc->llc_failure = llc_failure;
771
772 return shdlc;
773}
774
775static void llc_shdlc_deinit(struct nfc_llc *llc)
776{
777 struct llc_shdlc *shdlc = nfc_llc_get_data(llc);
778
779 skb_queue_purge(&shdlc->rcv_q);
780 skb_queue_purge(&shdlc->send_q);
781 skb_queue_purge(&shdlc->ack_pending_q);
782
783 kfree(shdlc);
784}
785
786static int llc_shdlc_start(struct nfc_llc *llc)
787{
788 struct llc_shdlc *shdlc = nfc_llc_get_data(llc);
789
790 return llc_shdlc_connect(shdlc);
791}
792
793static int llc_shdlc_stop(struct nfc_llc *llc)
794{
795 struct llc_shdlc *shdlc = nfc_llc_get_data(llc);
796
797 llc_shdlc_disconnect(shdlc);
798
799 return 0;
800}
801
802static void llc_shdlc_rcv_from_drv(struct nfc_llc *llc, struct sk_buff *skb)
803{
804 struct llc_shdlc *shdlc = nfc_llc_get_data(llc);
805
806 llc_shdlc_recv_frame(shdlc, skb);
807}
808
809static int llc_shdlc_xmit_from_hci(struct nfc_llc *llc, struct sk_buff *skb)
810{
811 struct llc_shdlc *shdlc = nfc_llc_get_data(llc);
812
813 skb_queue_tail(&shdlc->send_q, skb);
814
815 queue_work(system_nrt_wq, &shdlc->sm_work);
816
817 return 0;
818}
819
820static struct nfc_llc_ops llc_shdlc_ops = {
821 .init = llc_shdlc_init,
822 .deinit = llc_shdlc_deinit,
823 .start = llc_shdlc_start,
824 .stop = llc_shdlc_stop,
825 .rcv_from_drv = llc_shdlc_rcv_from_drv,
826 .xmit_from_hci = llc_shdlc_xmit_from_hci,
827};
828
Eric Lapuyadea7d02812012-09-18 19:24:37 +0200829int nfc_llc_shdlc_register(void)
Eric Lapuyade4a61cd62012-09-13 17:11:37 +0200830{
831 return nfc_llc_register(LLC_SHDLC_NAME, &llc_shdlc_ops);
832}