Merge tag 'v3.10.107' into update
[GitHub/mt8127/android_kernel_alcatel_ttab.git] / drivers / bluetooth / hci_h5.c
CommitLineData
7dec65c8
JH
1/*
2 *
3 * Bluetooth HCI Three-wire UART driver
4 *
5 * Copyright (C) 2012 Intel Corporation
6 *
7 *
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License as published by
10 * the Free Software Foundation; either version 2 of the License, or
11 * (at your option) any later version.
12 *
13 * This program is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 * GNU General Public License for more details.
17 *
18 * You should have received a copy of the GNU General Public License
19 * along with this program; if not, write to the Free Software
20 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
21 *
22 */
23
24#include <linux/kernel.h>
25#include <linux/errno.h>
26#include <linux/skbuff.h>
27
28#include <net/bluetooth/bluetooth.h>
29#include <net/bluetooth/hci_core.h>
30
31#include "hci_uart.h"
32
c0a1b73c
JH
33#define HCI_3WIRE_ACK_PKT 0
34#define HCI_3WIRE_LINK_PKT 15
35
afdc944c
JH
36/* Sliding window size */
37#define H5_TX_WIN_MAX 4
3f27e95b
JH
38
39#define H5_ACK_TIMEOUT msecs_to_jiffies(250)
40f10224 40#define H5_SYNC_TIMEOUT msecs_to_jiffies(100)
3f27e95b 41
bc1f35b9
JH
42/*
43 * Maximum Three-wire packet:
44 * 4 byte header + max value for 12-bit length + 2 bytes for CRC
45 */
46#define H5_MAX_LEN (4 + 0xfff + 2)
47
01977c0b
JH
48/* Convenience macros for reading Three-wire header values */
49#define H5_HDR_SEQ(hdr) ((hdr)[0] & 0x07)
50#define H5_HDR_ACK(hdr) (((hdr)[0] >> 3) & 0x07)
51#define H5_HDR_CRC(hdr) (((hdr)[0] >> 6) & 0x01)
52#define H5_HDR_RELIABLE(hdr) (((hdr)[0] >> 7) & 0x01)
53#define H5_HDR_PKT_TYPE(hdr) ((hdr)[1] & 0x0f)
54#define H5_HDR_LEN(hdr) ((((hdr)[1] >> 4) & 0xff) + ((hdr)[2] << 4))
55
bc1f35b9
JH
56#define SLIP_DELIMITER 0xc0
57#define SLIP_ESC 0xdb
58#define SLIP_ESC_DELIM 0xdc
59#define SLIP_ESC_ESC 0xdd
60
e0482103
JH
61/* H5 state flags */
62enum {
63 H5_RX_ESC, /* SLIP escape mode */
64 H5_TX_ACK_REQ, /* Pending ack to send */
65};
66
7d664fba 67struct h5 {
bc1f35b9
JH
68 struct sk_buff_head unack; /* Unack'ed packets queue */
69 struct sk_buff_head rel; /* Reliable packets queue */
70 struct sk_buff_head unrel; /* Unreliable packets queue */
71
e0482103
JH
72 unsigned long flags;
73
bc1f35b9
JH
74 struct sk_buff *rx_skb; /* Receive buffer */
75 size_t rx_pending; /* Expecting more bytes */
43eb12d7 76 u8 rx_ack; /* Last ack number received */
7d664fba 77
bc1f35b9 78 int (*rx_func) (struct hci_uart *hu, u8 c);
7d664fba 79
bc1f35b9 80 struct timer_list timer; /* Retransmission timer */
3f27e95b 81
43eb12d7 82 u8 tx_seq; /* Next seq number to send */
40f10224 83 u8 tx_ack; /* Next ack number to send */
afdc944c 84 u8 tx_win; /* Sliding window size */
10122d07 85
f674a057
JH
86 enum {
87 H5_UNINITIALIZED,
88 H5_INITIALIZED,
89 H5_ACTIVE,
90 } state;
91
95c5c220
JH
92 enum {
93 H5_AWAKE,
94 H5_SLEEPING,
95 H5_WAKING_UP,
96 } sleep;
7d664fba
JH
97};
98
bc1f35b9
JH
99static void h5_reset_rx(struct h5 *h5);
100
f674a057
JH
101static void h5_link_control(struct hci_uart *hu, const void *data, size_t len)
102{
103 struct h5 *h5 = hu->priv;
104 struct sk_buff *nskb;
105
106 nskb = alloc_skb(3, GFP_ATOMIC);
107 if (!nskb)
108 return;
109
110 bt_cb(nskb)->pkt_type = HCI_3WIRE_LINK_PKT;
111
112 memcpy(skb_put(nskb, len), data, len);
113
114 skb_queue_tail(&h5->unrel, nskb);
115}
116
afdc944c
JH
117static u8 h5_cfg_field(struct h5 *h5)
118{
119 u8 field = 0;
120
121 /* Sliding window size (first 3 bits) */
122 field |= (h5->tx_win & 7);
123
124 return field;
125}
126
3f27e95b
JH
127static void h5_timed_event(unsigned long arg)
128{
f674a057 129 const unsigned char sync_req[] = { 0x01, 0x7e };
afdc944c 130 unsigned char conf_req[] = { 0x03, 0xfc, 0x01 };
3f27e95b
JH
131 struct hci_uart *hu = (struct hci_uart *) arg;
132 struct h5 *h5 = hu->priv;
133 struct sk_buff *skb;
134 unsigned long flags;
135
95c5c220
JH
136 BT_DBG("%s", hu->hdev->name);
137
f674a057
JH
138 if (h5->state == H5_UNINITIALIZED)
139 h5_link_control(hu, sync_req, sizeof(sync_req));
140
afdc944c
JH
141 if (h5->state == H5_INITIALIZED) {
142 conf_req[2] = h5_cfg_field(h5);
f674a057 143 h5_link_control(hu, conf_req, sizeof(conf_req));
afdc944c 144 }
f674a057
JH
145
146 if (h5->state != H5_ACTIVE) {
147 mod_timer(&h5->timer, jiffies + H5_SYNC_TIMEOUT);
148 goto wakeup;
149 }
150
95c5c220
JH
151 if (h5->sleep != H5_AWAKE) {
152 h5->sleep = H5_SLEEPING;
153 goto wakeup;
154 }
155
3f27e95b
JH
156 BT_DBG("hu %p retransmitting %u pkts", hu, h5->unack.qlen);
157
158 spin_lock_irqsave_nested(&h5->unack.lock, flags, SINGLE_DEPTH_NESTING);
159
160 while ((skb = __skb_dequeue_tail(&h5->unack)) != NULL) {
43eb12d7 161 h5->tx_seq = (h5->tx_seq - 1) & 0x07;
3f27e95b
JH
162 skb_queue_head(&h5->rel, skb);
163 }
164
165 spin_unlock_irqrestore(&h5->unack.lock, flags);
166
f674a057 167wakeup:
3f27e95b
JH
168 hci_uart_tx_wakeup(hu);
169}
170
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171static int h5_open(struct hci_uart *hu)
172{
7d664fba 173 struct h5 *h5;
40f10224 174 const unsigned char sync[] = { 0x01, 0x7e };
7d664fba
JH
175
176 BT_DBG("hu %p", hu);
177
178 h5 = kzalloc(sizeof(*h5), GFP_KERNEL);
179 if (!h5)
180 return -ENOMEM;
181
182 hu->priv = h5;
183
184 skb_queue_head_init(&h5->unack);
185 skb_queue_head_init(&h5->rel);
186 skb_queue_head_init(&h5->unrel);
187
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188 h5_reset_rx(h5);
189
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190 init_timer(&h5->timer);
191 h5->timer.function = h5_timed_event;
192 h5->timer.data = (unsigned long) hu;
193
afdc944c
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194 h5->tx_win = H5_TX_WIN_MAX;
195
cd1b4425
JH
196 set_bit(HCI_UART_INIT_PENDING, &hu->hdev_flags);
197
40f10224
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198 /* Send initial sync request */
199 h5_link_control(hu, sync, sizeof(sync));
200 mod_timer(&h5->timer, jiffies + H5_SYNC_TIMEOUT);
201
7d664fba 202 return 0;
7dec65c8
JH
203}
204
205static int h5_close(struct hci_uart *hu)
206{
7d664fba
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207 struct h5 *h5 = hu->priv;
208
209 skb_queue_purge(&h5->unack);
210 skb_queue_purge(&h5->rel);
211 skb_queue_purge(&h5->unrel);
212
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213 del_timer(&h5->timer);
214
7d664fba
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215 kfree(h5);
216
217 return 0;
7dec65c8
JH
218}
219
43eb12d7
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220static void h5_pkt_cull(struct h5 *h5)
221{
222 struct sk_buff *skb, *tmp;
223 unsigned long flags;
224 int i, to_remove;
225 u8 seq;
226
227 spin_lock_irqsave(&h5->unack.lock, flags);
228
229 to_remove = skb_queue_len(&h5->unack);
40f10224
JH
230 if (to_remove == 0)
231 goto unlock;
43eb12d7
JH
232
233 seq = h5->tx_seq;
234
235 while (to_remove > 0) {
236 if (h5->rx_ack == seq)
237 break;
238
239 to_remove--;
90f9a6a4 240 seq = (seq - 1) & 0x07;
43eb12d7
JH
241 }
242
243 if (seq != h5->rx_ack)
244 BT_ERR("Controller acked invalid packet");
245
246 i = 0;
247 skb_queue_walk_safe(&h5->unack, skb, tmp) {
248 if (i++ >= to_remove)
249 break;
250
251 __skb_unlink(skb, &h5->unack);
252 kfree_skb(skb);
253 }
254
255 if (skb_queue_empty(&h5->unack))
256 del_timer(&h5->timer);
257
40f10224 258unlock:
43eb12d7
JH
259 spin_unlock_irqrestore(&h5->unack.lock, flags);
260}
261
bc1f35b9
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262static void h5_handle_internal_rx(struct hci_uart *hu)
263{
40f10224
JH
264 struct h5 *h5 = hu->priv;
265 const unsigned char sync_req[] = { 0x01, 0x7e };
266 const unsigned char sync_rsp[] = { 0x02, 0x7d };
afdc944c
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267 unsigned char conf_req[] = { 0x03, 0xfc, 0x01 };
268 const unsigned char conf_rsp[] = { 0x04, 0x7b };
10122d07
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269 const unsigned char wakeup_req[] = { 0x05, 0xfa };
270 const unsigned char woken_req[] = { 0x06, 0xf9 };
271 const unsigned char sleep_req[] = { 0x07, 0x78 };
40f10224
JH
272 const unsigned char *hdr = h5->rx_skb->data;
273 const unsigned char *data = &h5->rx_skb->data[4];
274
bc1f35b9 275 BT_DBG("%s", hu->hdev->name);
40f10224
JH
276
277 if (H5_HDR_PKT_TYPE(hdr) != HCI_3WIRE_LINK_PKT)
278 return;
279
280 if (H5_HDR_LEN(hdr) < 2)
281 return;
282
afdc944c
JH
283 conf_req[2] = h5_cfg_field(h5);
284
40f10224
JH
285 if (memcmp(data, sync_req, 2) == 0) {
286 h5_link_control(hu, sync_rsp, 2);
287 } else if (memcmp(data, sync_rsp, 2) == 0) {
f674a057 288 h5->state = H5_INITIALIZED;
40f10224
JH
289 h5_link_control(hu, conf_req, 3);
290 } else if (memcmp(data, conf_req, 2) == 0) {
291 h5_link_control(hu, conf_rsp, 2);
292 h5_link_control(hu, conf_req, 3);
293 } else if (memcmp(data, conf_rsp, 2) == 0) {
afdc944c
JH
294 if (H5_HDR_LEN(hdr) > 2)
295 h5->tx_win = (data[2] & 7);
296 BT_DBG("Three-wire init complete. tx_win %u", h5->tx_win);
f674a057 297 h5->state = H5_ACTIVE;
cd1b4425 298 hci_uart_init_ready(hu);
40f10224 299 return;
10122d07
JH
300 } else if (memcmp(data, sleep_req, 2) == 0) {
301 BT_DBG("Peer went to sleep");
95c5c220
JH
302 h5->sleep = H5_SLEEPING;
303 return;
10122d07
JH
304 } else if (memcmp(data, woken_req, 2) == 0) {
305 BT_DBG("Peer woke up");
95c5c220
JH
306 h5->sleep = H5_AWAKE;
307 } else if (memcmp(data, wakeup_req, 2) == 0) {
308 BT_DBG("Peer requested wakeup");
309 h5_link_control(hu, woken_req, 2);
310 h5->sleep = H5_AWAKE;
40f10224
JH
311 } else {
312 BT_DBG("Link Control: 0x%02hhx 0x%02hhx", data[0], data[1]);
313 return;
314 }
315
316 hci_uart_tx_wakeup(hu);
bc1f35b9
JH
317}
318
319static void h5_complete_rx_pkt(struct hci_uart *hu)
320{
321 struct h5 *h5 = hu->priv;
43eb12d7 322 const unsigned char *hdr = h5->rx_skb->data;
bc1f35b9 323
43eb12d7 324 if (H5_HDR_RELIABLE(hdr)) {
40f10224 325 h5->tx_ack = (h5->tx_ack + 1) % 8;
e0482103 326 set_bit(H5_TX_ACK_REQ, &h5->flags);
40f10224 327 hci_uart_tx_wakeup(hu);
43eb12d7 328 }
bc1f35b9 329
43eb12d7
JH
330 h5->rx_ack = H5_HDR_ACK(hdr);
331
332 h5_pkt_cull(h5);
333
334 switch (H5_HDR_PKT_TYPE(hdr)) {
bc1f35b9
JH
335 case HCI_EVENT_PKT:
336 case HCI_ACLDATA_PKT:
337 case HCI_SCODATA_PKT:
43eb12d7 338 bt_cb(h5->rx_skb)->pkt_type = H5_HDR_PKT_TYPE(hdr);
bc1f35b9
JH
339
340 /* Remove Three-wire header */
341 skb_pull(h5->rx_skb, 4);
342
343 hci_recv_frame(h5->rx_skb);
344 h5->rx_skb = NULL;
345
346 break;
347
348 default:
349 h5_handle_internal_rx(hu);
350 break;
351 }
352
353 h5_reset_rx(h5);
354}
355
356static int h5_rx_crc(struct hci_uart *hu, unsigned char c)
357{
358 struct h5 *h5 = hu->priv;
359
bc1f35b9
JH
360 h5_complete_rx_pkt(hu);
361 h5_reset_rx(h5);
362
363 return 0;
364}
365
366static int h5_rx_payload(struct hci_uart *hu, unsigned char c)
367{
368 struct h5 *h5 = hu->priv;
369 const unsigned char *hdr = h5->rx_skb->data;
370
43eb12d7 371 if (H5_HDR_CRC(hdr)) {
bc1f35b9
JH
372 h5->rx_func = h5_rx_crc;
373 h5->rx_pending = 2;
374 } else {
375 h5_complete_rx_pkt(hu);
376 h5_reset_rx(h5);
377 }
378
379 return 0;
380}
381
382static int h5_rx_3wire_hdr(struct hci_uart *hu, unsigned char c)
383{
384 struct h5 *h5 = hu->priv;
385 const unsigned char *hdr = h5->rx_skb->data;
386
40f10224
JH
387 BT_DBG("%s rx: seq %u ack %u crc %u rel %u type %u len %u",
388 hu->hdev->name, H5_HDR_SEQ(hdr), H5_HDR_ACK(hdr),
389 H5_HDR_CRC(hdr), H5_HDR_RELIABLE(hdr), H5_HDR_PKT_TYPE(hdr),
390 H5_HDR_LEN(hdr));
391
bc1f35b9
JH
392 if (((hdr[0] + hdr[1] + hdr[2] + hdr[3]) & 0xff) != 0xff) {
393 BT_ERR("Invalid header checksum");
394 h5_reset_rx(h5);
395 return 0;
396 }
397
40f10224 398 if (H5_HDR_RELIABLE(hdr) && H5_HDR_SEQ(hdr) != h5->tx_ack) {
43eb12d7 399 BT_ERR("Out-of-order packet arrived (%u != %u)",
40f10224 400 H5_HDR_SEQ(hdr), h5->tx_ack);
43eb12d7
JH
401 h5_reset_rx(h5);
402 return 0;
403 }
404
f674a057
JH
405 if (h5->state != H5_ACTIVE &&
406 H5_HDR_PKT_TYPE(hdr) != HCI_3WIRE_LINK_PKT) {
407 BT_ERR("Non-link packet received in non-active state");
408 h5_reset_rx(h5);
18d88679 409 return 0;
f674a057
JH
410 }
411
bc1f35b9 412 h5->rx_func = h5_rx_payload;
43eb12d7 413 h5->rx_pending = H5_HDR_LEN(hdr);
bc1f35b9
JH
414
415 return 0;
416}
417
418static int h5_rx_pkt_start(struct hci_uart *hu, unsigned char c)
419{
420 struct h5 *h5 = hu->priv;
421
bc1f35b9
JH
422 if (c == SLIP_DELIMITER)
423 return 1;
424
425 h5->rx_func = h5_rx_3wire_hdr;
426 h5->rx_pending = 4;
427
428 h5->rx_skb = bt_skb_alloc(H5_MAX_LEN, GFP_ATOMIC);
429 if (!h5->rx_skb) {
430 BT_ERR("Can't allocate mem for new packet");
431 h5_reset_rx(h5);
432 return -ENOMEM;
433 }
434
435 h5->rx_skb->dev = (void *) hu->hdev;
436
437 return 0;
438}
439
440static int h5_rx_delimiter(struct hci_uart *hu, unsigned char c)
441{
442 struct h5 *h5 = hu->priv;
443
bc1f35b9
JH
444 if (c == SLIP_DELIMITER)
445 h5->rx_func = h5_rx_pkt_start;
446
447 return 1;
448}
449
450static void h5_unslip_one_byte(struct h5 *h5, unsigned char c)
451{
452 const u8 delim = SLIP_DELIMITER, esc = SLIP_ESC;
453 const u8 *byte = &c;
454
e0482103
JH
455 if (!test_bit(H5_RX_ESC, &h5->flags) && c == SLIP_ESC) {
456 set_bit(H5_RX_ESC, &h5->flags);
bc1f35b9
JH
457 return;
458 }
459
e0482103 460 if (test_and_clear_bit(H5_RX_ESC, &h5->flags)) {
bc1f35b9
JH
461 switch (c) {
462 case SLIP_ESC_DELIM:
463 byte = &delim;
464 break;
465 case SLIP_ESC_ESC:
466 byte = &esc;
467 break;
468 default:
469 BT_ERR("Invalid esc byte 0x%02hhx", c);
470 h5_reset_rx(h5);
471 return;
472 }
bc1f35b9
JH
473 }
474
475 memcpy(skb_put(h5->rx_skb, 1), byte, 1);
476 h5->rx_pending--;
477
255a68e0 478 BT_DBG("unsliped 0x%02hhx, rx_pending %zu", *byte, h5->rx_pending);
bc1f35b9
JH
479}
480
481static void h5_reset_rx(struct h5 *h5)
482{
483 if (h5->rx_skb) {
484 kfree_skb(h5->rx_skb);
485 h5->rx_skb = NULL;
486 }
487
488 h5->rx_func = h5_rx_delimiter;
489 h5->rx_pending = 0;
e0482103 490 clear_bit(H5_RX_ESC, &h5->flags);
bc1f35b9
JH
491}
492
7dec65c8
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493static int h5_recv(struct hci_uart *hu, void *data, int count)
494{
bc1f35b9
JH
495 struct h5 *h5 = hu->priv;
496 unsigned char *ptr = data;
497
255a68e0
JH
498 BT_DBG("%s pending %zu count %d", hu->hdev->name, h5->rx_pending,
499 count);
bc1f35b9
JH
500
501 while (count > 0) {
502 int processed;
503
504 if (h5->rx_pending > 0) {
505 if (*ptr == SLIP_DELIMITER) {
506 BT_ERR("Too short H5 packet");
507 h5_reset_rx(h5);
508 continue;
509 }
510
511 h5_unslip_one_byte(h5, *ptr);
512
513 ptr++; count--;
514 continue;
515 }
516
517 processed = h5->rx_func(hu, *ptr);
518 if (processed < 0)
519 return processed;
520
521 ptr += processed;
522 count -= processed;
523 }
524
525 return 0;
7dec65c8
JH
526}
527
528static int h5_enqueue(struct hci_uart *hu, struct sk_buff *skb)
529{
7d664fba
JH
530 struct h5 *h5 = hu->priv;
531
532 if (skb->len > 0xfff) {
533 BT_ERR("Packet too long (%u bytes)", skb->len);
534 kfree_skb(skb);
535 return 0;
536 }
537
f674a057
JH
538 if (h5->state != H5_ACTIVE) {
539 BT_ERR("Ignoring HCI data in non-active state");
540 kfree_skb(skb);
541 return 0;
542 }
543
7d664fba
JH
544 switch (bt_cb(skb)->pkt_type) {
545 case HCI_ACLDATA_PKT:
546 case HCI_COMMAND_PKT:
547 skb_queue_tail(&h5->rel, skb);
548 break;
549
550 case HCI_SCODATA_PKT:
551 skb_queue_tail(&h5->unrel, skb);
552 break;
553
554 default:
555 BT_ERR("Unknown packet type %u", bt_cb(skb)->pkt_type);
556 kfree_skb(skb);
557 break;
558 }
559
560 return 0;
561}
562
c0a1b73c
JH
563static void h5_slip_delim(struct sk_buff *skb)
564{
565 const char delim = SLIP_DELIMITER;
566
567 memcpy(skb_put(skb, 1), &delim, 1);
568}
569
570static void h5_slip_one_byte(struct sk_buff *skb, u8 c)
571{
572 const char esc_delim[2] = { SLIP_ESC, SLIP_ESC_DELIM };
573 const char esc_esc[2] = { SLIP_ESC, SLIP_ESC_ESC };
574
575 switch (c) {
576 case SLIP_DELIMITER:
577 memcpy(skb_put(skb, 2), &esc_delim, 2);
578 break;
579 case SLIP_ESC:
580 memcpy(skb_put(skb, 2), &esc_esc, 2);
581 break;
582 default:
583 memcpy(skb_put(skb, 1), &c, 1);
584 }
585}
586
c826ed09
JH
587static bool valid_packet_type(u8 type)
588{
589 switch (type) {
590 case HCI_ACLDATA_PKT:
591 case HCI_COMMAND_PKT:
592 case HCI_SCODATA_PKT:
593 case HCI_3WIRE_LINK_PKT:
594 case HCI_3WIRE_ACK_PKT:
595 return true;
596 default:
597 return false;
598 }
599}
600
601static struct sk_buff *h5_prepare_pkt(struct hci_uart *hu, u8 pkt_type,
602 const u8 *data, size_t len)
7d664fba 603{
40f10224 604 struct h5 *h5 = hu->priv;
c0a1b73c
JH
605 struct sk_buff *nskb;
606 u8 hdr[4];
607 int i;
608
c826ed09
JH
609 if (!valid_packet_type(pkt_type)) {
610 BT_ERR("Unknown packet type %u", pkt_type);
611 return NULL;
612 }
613
c0a1b73c
JH
614 /*
615 * Max len of packet: (original len + 4 (H5 hdr) + 2 (crc)) * 2
616 * (because bytes 0xc0 and 0xdb are escaped, worst case is when
617 * the packet is all made of 0xc0 and 0xdb) + 2 (0xc0
618 * delimiters at start and end).
619 */
620 nskb = alloc_skb((len + 6) * 2 + 2, GFP_ATOMIC);
621 if (!nskb)
622 return NULL;
623
624 bt_cb(nskb)->pkt_type = pkt_type;
625
626 h5_slip_delim(nskb);
627
40f10224 628 hdr[0] = h5->tx_ack << 3;
e0482103 629 clear_bit(H5_TX_ACK_REQ, &h5->flags);
c0a1b73c 630
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631 /* Reliable packet? */
632 if (pkt_type == HCI_ACLDATA_PKT || pkt_type == HCI_COMMAND_PKT) {
c0a1b73c 633 hdr[0] |= 1 << 7;
43eb12d7
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634 hdr[0] |= h5->tx_seq;
635 h5->tx_seq = (h5->tx_seq + 1) % 8;
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636 }
637
638 hdr[1] = pkt_type | ((len & 0x0f) << 4);
639 hdr[2] = len >> 4;
640 hdr[3] = ~((hdr[0] + hdr[1] + hdr[2]) & 0xff);
641
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642 BT_DBG("%s tx: seq %u ack %u crc %u rel %u type %u len %u",
643 hu->hdev->name, H5_HDR_SEQ(hdr), H5_HDR_ACK(hdr),
644 H5_HDR_CRC(hdr), H5_HDR_RELIABLE(hdr), H5_HDR_PKT_TYPE(hdr),
645 H5_HDR_LEN(hdr));
646
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647 for (i = 0; i < 4; i++)
648 h5_slip_one_byte(nskb, hdr[i]);
649
650 for (i = 0; i < len; i++)
651 h5_slip_one_byte(nskb, data[i]);
652
653 h5_slip_delim(nskb);
654
655 return nskb;
656}
657
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658static struct sk_buff *h5_dequeue(struct hci_uart *hu)
659{
7d664fba 660 struct h5 *h5 = hu->priv;
3f27e95b 661 unsigned long flags;
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662 struct sk_buff *skb, *nskb;
663
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664 if (h5->sleep != H5_AWAKE) {
665 const unsigned char wakeup_req[] = { 0x05, 0xfa };
666
667 if (h5->sleep == H5_WAKING_UP)
668 return NULL;
669
670 h5->sleep = H5_WAKING_UP;
671 BT_DBG("Sending wakeup request");
672
673 mod_timer(&h5->timer, jiffies + HZ / 100);
674 return h5_prepare_pkt(hu, HCI_3WIRE_LINK_PKT, wakeup_req, 2);
675 }
676
7d664fba 677 if ((skb = skb_dequeue(&h5->unrel)) != NULL) {
40f10224 678 nskb = h5_prepare_pkt(hu, bt_cb(skb)->pkt_type,
c0a1b73c 679 skb->data, skb->len);
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680 if (nskb) {
681 kfree_skb(skb);
682 return nskb;
683 }
684
685 skb_queue_head(&h5->unrel, skb);
686 BT_ERR("Could not dequeue pkt because alloc_skb failed");
687 }
688
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689 spin_lock_irqsave_nested(&h5->unack.lock, flags, SINGLE_DEPTH_NESTING);
690
afdc944c 691 if (h5->unack.qlen >= h5->tx_win)
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692 goto unlock;
693
694 if ((skb = skb_dequeue(&h5->rel)) != NULL) {
40f10224 695 nskb = h5_prepare_pkt(hu, bt_cb(skb)->pkt_type,
c0a1b73c 696 skb->data, skb->len);
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697 if (nskb) {
698 __skb_queue_tail(&h5->unack, skb);
699 mod_timer(&h5->timer, jiffies + H5_ACK_TIMEOUT);
700 spin_unlock_irqrestore(&h5->unack.lock, flags);
701 return nskb;
702 }
703
704 skb_queue_head(&h5->rel, skb);
705 BT_ERR("Could not dequeue pkt because alloc_skb failed");
706 }
707
708unlock:
709 spin_unlock_irqrestore(&h5->unack.lock, flags);
710
e0482103 711 if (test_bit(H5_TX_ACK_REQ, &h5->flags))
40f10224 712 return h5_prepare_pkt(hu, HCI_3WIRE_ACK_PKT, NULL, 0);
7d664fba 713
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714 return NULL;
715}
716
717static int h5_flush(struct hci_uart *hu)
718{
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719 BT_DBG("hu %p", hu);
720 return 0;
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721}
722
723static struct hci_uart_proto h5p = {
724 .id = HCI_UART_3WIRE,
725 .open = h5_open,
726 .close = h5_close,
727 .recv = h5_recv,
728 .enqueue = h5_enqueue,
729 .dequeue = h5_dequeue,
730 .flush = h5_flush,
731};
732
733int __init h5_init(void)
734{
735 int err = hci_uart_register_proto(&h5p);
736
737 if (!err)
738 BT_INFO("HCI Three-wire UART (H5) protocol initialized");
739 else
740 BT_ERR("HCI Three-wire UART (H5) protocol init failed");
741
742 return err;
743}
744
745int __exit h5_deinit(void)
746{
747 return hci_uart_unregister_proto(&h5p);
748}