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v6.13.7
  1/*
  2   BlueZ - Bluetooth protocol stack for Linux
  3   Copyright (C) 2000-2001 Qualcomm Incorporated
  4   Copyright 2023 NXP
  5
  6   Written 2000,2001 by Maxim Krasnyansky <maxk@qualcomm.com>
  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 version 2 as
 10   published by the Free Software Foundation;
 11
 12   THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
 13   OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
 14   FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT OF THIRD PARTY RIGHTS.
 15   IN NO EVENT SHALL THE COPYRIGHT HOLDER(S) AND AUTHOR(S) BE LIABLE FOR ANY
 16   CLAIM, OR ANY SPECIAL INDIRECT OR CONSEQUENTIAL DAMAGES, OR ANY DAMAGES
 17   WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
 18   ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
 19   OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
 20
 21   ALL LIABILITY, INCLUDING LIABILITY FOR INFRINGEMENT OF ANY PATENTS,
 22   COPYRIGHTS, TRADEMARKS OR OTHER RIGHTS, RELATING TO USE OF THIS
 23   SOFTWARE IS DISCLAIMED.
 24*/
 25
 26#ifndef __BLUETOOTH_H
 27#define __BLUETOOTH_H
 28
 29#include <linux/poll.h>
 30#include <net/sock.h>
 31#include <linux/seq_file.h>
 32
 33#define BT_SUBSYS_VERSION	2
 34#define BT_SUBSYS_REVISION	22
 35
 36#ifndef AF_BLUETOOTH
 37#define AF_BLUETOOTH	31
 38#define PF_BLUETOOTH	AF_BLUETOOTH
 39#endif
 40
 41/* Bluetooth versions */
 42#define BLUETOOTH_VER_1_1	1
 43#define BLUETOOTH_VER_1_2	2
 44#define BLUETOOTH_VER_2_0	3
 45#define BLUETOOTH_VER_2_1	4
 46#define BLUETOOTH_VER_4_0	6
 47
 48/* Reserv for core and drivers use */
 49#define BT_SKB_RESERVE	8
 50
 51#define BTPROTO_L2CAP	0
 52#define BTPROTO_HCI	1
 53#define BTPROTO_SCO	2
 54#define BTPROTO_RFCOMM	3
 55#define BTPROTO_BNEP	4
 56#define BTPROTO_CMTP	5
 57#define BTPROTO_HIDP	6
 58#define BTPROTO_AVDTP	7
 59#define BTPROTO_ISO	8
 60#define BTPROTO_LAST	BTPROTO_ISO
 61
 62#define SOL_HCI		0
 63#define SOL_L2CAP	6
 64#define SOL_SCO		17
 65#define SOL_RFCOMM	18
 66
 67#define BT_SECURITY	4
 68struct bt_security {
 69	__u8 level;
 70	__u8 key_size;
 71};
 72#define BT_SECURITY_SDP		0
 73#define BT_SECURITY_LOW		1
 74#define BT_SECURITY_MEDIUM	2
 75#define BT_SECURITY_HIGH	3
 76#define BT_SECURITY_FIPS	4
 77
 78#define BT_DEFER_SETUP	7
 79
 80#define BT_FLUSHABLE	8
 81
 82#define BT_FLUSHABLE_OFF	0
 83#define BT_FLUSHABLE_ON		1
 84
 85#define BT_POWER	9
 86struct bt_power {
 87	__u8 force_active;
 88};
 89#define BT_POWER_FORCE_ACTIVE_OFF 0
 90#define BT_POWER_FORCE_ACTIVE_ON  1
 91
 92#define BT_CHANNEL_POLICY	10
 93
 94/* BR/EDR only (default policy)
 95 *   AMP controllers cannot be used.
 96 *   Channel move requests from the remote device are denied.
 97 *   If the L2CAP channel is currently using AMP, move the channel to BR/EDR.
 98 */
 99#define BT_CHANNEL_POLICY_BREDR_ONLY		0
100
101/* BR/EDR Preferred
102 *   Allow use of AMP controllers.
103 *   If the L2CAP channel is currently on AMP, move it to BR/EDR.
104 *   Channel move requests from the remote device are allowed.
105 */
106#define BT_CHANNEL_POLICY_BREDR_PREFERRED	1
107
108/* AMP Preferred
109 *   Allow use of AMP controllers
110 *   If the L2CAP channel is currently on BR/EDR and AMP controller
111 *     resources are available, initiate a channel move to AMP.
112 *   Channel move requests from the remote device are allowed.
113 *   If the L2CAP socket has not been connected yet, try to create
114 *     and configure the channel directly on an AMP controller rather
115 *     than BR/EDR.
116 */
117#define BT_CHANNEL_POLICY_AMP_PREFERRED		2
118
119#define BT_VOICE		11
120struct bt_voice {
121	__u16 setting;
122};
123
124#define BT_VOICE_TRANSPARENT			0x0003
125#define BT_VOICE_CVSD_16BIT			0x0060
126#define BT_VOICE_TRANSPARENT_16BIT		0x0063
127
128#define BT_SNDMTU		12
129#define BT_RCVMTU		13
130#define BT_PHY			14
131
132#define BT_PHY_BR_1M_1SLOT	0x00000001
133#define BT_PHY_BR_1M_3SLOT	0x00000002
134#define BT_PHY_BR_1M_5SLOT	0x00000004
135#define BT_PHY_EDR_2M_1SLOT	0x00000008
136#define BT_PHY_EDR_2M_3SLOT	0x00000010
137#define BT_PHY_EDR_2M_5SLOT	0x00000020
138#define BT_PHY_EDR_3M_1SLOT	0x00000040
139#define BT_PHY_EDR_3M_3SLOT	0x00000080
140#define BT_PHY_EDR_3M_5SLOT	0x00000100
141#define BT_PHY_LE_1M_TX		0x00000200
142#define BT_PHY_LE_1M_RX		0x00000400
143#define BT_PHY_LE_2M_TX		0x00000800
144#define BT_PHY_LE_2M_RX		0x00001000
145#define BT_PHY_LE_CODED_TX	0x00002000
146#define BT_PHY_LE_CODED_RX	0x00004000
147
148#define BT_MODE			15
149
150#define BT_MODE_BASIC		0x00
151#define BT_MODE_ERTM		0x01
152#define BT_MODE_STREAMING	0x02
153#define BT_MODE_LE_FLOWCTL	0x03
154#define BT_MODE_EXT_FLOWCTL	0x04
155
156#define BT_PKT_STATUS           16
157
158#define BT_SCM_PKT_STATUS	0x03
159
160#define BT_ISO_QOS		17
161
162#define BT_ISO_QOS_CIG_UNSET	0xff
163#define BT_ISO_QOS_CIS_UNSET	0xff
164
165#define BT_ISO_QOS_BIG_UNSET	0xff
166#define BT_ISO_QOS_BIS_UNSET	0xff
167
168#define BT_ISO_SYNC_TIMEOUT	0x07d0 /* 20 secs */
169
170struct bt_iso_io_qos {
171	__u32 interval;
172	__u16 latency;
173	__u16 sdu;
174	__u8  phy;
175	__u8  rtn;
176};
177
178struct bt_iso_ucast_qos {
179	__u8  cig;
180	__u8  cis;
181	__u8  sca;
182	__u8  packing;
183	__u8  framing;
184	struct bt_iso_io_qos in;
185	struct bt_iso_io_qos out;
186};
187
188struct bt_iso_bcast_qos {
189	__u8  big;
190	__u8  bis;
191	__u8  sync_factor;
192	__u8  packing;
193	__u8  framing;
194	struct bt_iso_io_qos in;
195	struct bt_iso_io_qos out;
196	__u8  encryption;
197	__u8  bcode[16];
198	__u8  options;
199	__u16 skip;
200	__u16 sync_timeout;
201	__u8  sync_cte_type;
202	__u8  mse;
203	__u16 timeout;
204};
205
206struct bt_iso_qos {
207	union {
208		struct bt_iso_ucast_qos ucast;
209		struct bt_iso_bcast_qos bcast;
210	};
211};
212
213#define BT_ISO_PHY_1M		0x01
214#define BT_ISO_PHY_2M		0x02
215#define BT_ISO_PHY_CODED	0x04
216#define BT_ISO_PHY_ANY		(BT_ISO_PHY_1M | BT_ISO_PHY_2M | \
217				 BT_ISO_PHY_CODED)
218
219#define BT_CODEC	19
220
221struct	bt_codec_caps {
222	__u8	len;
223	__u8	data[];
224} __packed;
225
226struct bt_codec {
227	__u8	id;
228	__u16	cid;
229	__u16	vid;
230	__u8	data_path;
231	__u8	num_caps;
232} __packed;
233
234struct bt_codecs {
235	__u8		num_codecs;
236	struct bt_codec	codecs[];
237} __packed;
238
239#define BT_CODEC_CVSD		0x02
240#define BT_CODEC_TRANSPARENT	0x03
241#define BT_CODEC_MSBC		0x05
242
243#define BT_ISO_BASE		20
244
245__printf(1, 2)
246void bt_info(const char *fmt, ...);
247__printf(1, 2)
248void bt_warn(const char *fmt, ...);
249__printf(1, 2)
250void bt_err(const char *fmt, ...);
251#if IS_ENABLED(CONFIG_BT_FEATURE_DEBUG)
252void bt_dbg_set(bool enable);
253bool bt_dbg_get(void);
254__printf(1, 2)
255void bt_dbg(const char *fmt, ...);
256#endif
257__printf(1, 2)
258void bt_warn_ratelimited(const char *fmt, ...);
259__printf(1, 2)
260void bt_err_ratelimited(const char *fmt, ...);
261
262#define BT_INFO(fmt, ...)	bt_info(fmt "\n", ##__VA_ARGS__)
263#define BT_WARN(fmt, ...)	bt_warn(fmt "\n", ##__VA_ARGS__)
264#define BT_ERR(fmt, ...)	bt_err(fmt "\n", ##__VA_ARGS__)
265
266#if IS_ENABLED(CONFIG_BT_FEATURE_DEBUG)
267#define BT_DBG(fmt, ...)	bt_dbg(fmt "\n", ##__VA_ARGS__)
268#else
269#define BT_DBG(fmt, ...)	pr_debug(fmt "\n", ##__VA_ARGS__)
270#endif
271
272#define bt_dev_name(hdev) ((hdev) ? (hdev)->name : "null")
273
274#define bt_dev_info(hdev, fmt, ...)				\
275	BT_INFO("%s: " fmt, bt_dev_name(hdev), ##__VA_ARGS__)
276#define bt_dev_warn(hdev, fmt, ...)				\
277	BT_WARN("%s: " fmt, bt_dev_name(hdev), ##__VA_ARGS__)
278#define bt_dev_err(hdev, fmt, ...)				\
279	BT_ERR("%s: " fmt, bt_dev_name(hdev), ##__VA_ARGS__)
280#define bt_dev_dbg(hdev, fmt, ...)				\
281	BT_DBG("%s: " fmt, bt_dev_name(hdev), ##__VA_ARGS__)
282
283#define bt_dev_warn_ratelimited(hdev, fmt, ...)			\
284	bt_warn_ratelimited("%s: " fmt, bt_dev_name(hdev), ##__VA_ARGS__)
285#define bt_dev_err_ratelimited(hdev, fmt, ...)			\
286	bt_err_ratelimited("%s: " fmt, bt_dev_name(hdev), ##__VA_ARGS__)
287
288/* Connection and socket states */
289enum bt_sock_state {
290	BT_CONNECTED = 1, /* Equal to TCP_ESTABLISHED to make net code happy */
291	BT_OPEN,
292	BT_BOUND,
293	BT_LISTEN,
294	BT_CONNECT,
295	BT_CONNECT2,
296	BT_CONFIG,
297	BT_DISCONN,
298	BT_CLOSED
299};
300
301/* If unused will be removed by compiler */
302static inline const char *state_to_string(int state)
303{
304	switch (state) {
305	case BT_CONNECTED:
306		return "BT_CONNECTED";
307	case BT_OPEN:
308		return "BT_OPEN";
309	case BT_BOUND:
310		return "BT_BOUND";
311	case BT_LISTEN:
312		return "BT_LISTEN";
313	case BT_CONNECT:
314		return "BT_CONNECT";
315	case BT_CONNECT2:
316		return "BT_CONNECT2";
317	case BT_CONFIG:
318		return "BT_CONFIG";
319	case BT_DISCONN:
320		return "BT_DISCONN";
321	case BT_CLOSED:
322		return "BT_CLOSED";
323	}
324
325	return "invalid state";
326}
327
328/* BD Address */
329typedef struct {
330	__u8 b[6];
331} __packed bdaddr_t;
332
333/* BD Address type */
334#define BDADDR_BREDR		0x00
335#define BDADDR_LE_PUBLIC	0x01
336#define BDADDR_LE_RANDOM	0x02
337
338static inline bool bdaddr_type_is_valid(u8 type)
339{
340	switch (type) {
341	case BDADDR_BREDR:
342	case BDADDR_LE_PUBLIC:
343	case BDADDR_LE_RANDOM:
344		return true;
345	}
346
347	return false;
348}
349
350static inline bool bdaddr_type_is_le(u8 type)
351{
352	switch (type) {
353	case BDADDR_LE_PUBLIC:
354	case BDADDR_LE_RANDOM:
355		return true;
356	}
357
358	return false;
359}
360
361#define BDADDR_ANY  (&(bdaddr_t) {{0, 0, 0, 0, 0, 0}})
362#define BDADDR_NONE (&(bdaddr_t) {{0xff, 0xff, 0xff, 0xff, 0xff, 0xff}})
363
364/* Copy, swap, convert BD Address */
365static inline int bacmp(const bdaddr_t *ba1, const bdaddr_t *ba2)
366{
367	return memcmp(ba1, ba2, sizeof(bdaddr_t));
368}
369static inline void bacpy(bdaddr_t *dst, const bdaddr_t *src)
370{
371	memcpy(dst, src, sizeof(bdaddr_t));
372}
373
374void baswap(bdaddr_t *dst, const bdaddr_t *src);
375
376/* Common socket structures and functions */
377
378#define bt_sk(__sk) ((struct bt_sock *) __sk)
379
380struct bt_sock {
381	struct sock sk;
382	struct list_head accept_q;
383	struct sock *parent;
384	unsigned long flags;
385	void (*skb_msg_name)(struct sk_buff *, void *, int *);
386	void (*skb_put_cmsg)(struct sk_buff *, struct msghdr *, struct sock *);
387};
388
389enum {
390	BT_SK_DEFER_SETUP,
391	BT_SK_SUSPEND,
392	BT_SK_PKT_STATUS
393};
394
395struct bt_sock_list {
396	struct hlist_head head;
397	rwlock_t          lock;
398#ifdef CONFIG_PROC_FS
399        int (* custom_seq_show)(struct seq_file *, void *);
400#endif
401};
402
403int  bt_sock_register(int proto, const struct net_proto_family *ops);
404void bt_sock_unregister(int proto);
405void bt_sock_link(struct bt_sock_list *l, struct sock *s);
406void bt_sock_unlink(struct bt_sock_list *l, struct sock *s);
407bool bt_sock_linked(struct bt_sock_list *l, struct sock *s);
408struct sock *bt_sock_alloc(struct net *net, struct socket *sock,
409			   struct proto *prot, int proto, gfp_t prio, int kern);
410int  bt_sock_recvmsg(struct socket *sock, struct msghdr *msg, size_t len,
411		     int flags);
412int  bt_sock_stream_recvmsg(struct socket *sock, struct msghdr *msg,
413			    size_t len, int flags);
414__poll_t bt_sock_poll(struct file *file, struct socket *sock, poll_table *wait);
415int  bt_sock_ioctl(struct socket *sock, unsigned int cmd, unsigned long arg);
416int  bt_sock_wait_state(struct sock *sk, int state, unsigned long timeo);
417int  bt_sock_wait_ready(struct sock *sk, unsigned int msg_flags);
418
419void bt_accept_enqueue(struct sock *parent, struct sock *sk, bool bh);
420void bt_accept_unlink(struct sock *sk);
421struct sock *bt_accept_dequeue(struct sock *parent, struct socket *newsock);
422
423/* Skb helpers */
424struct l2cap_ctrl {
425	u8	sframe:1,
426		poll:1,
427		final:1,
428		fcs:1,
429		sar:2,
430		super:2;
431
432	u16	reqseq;
433	u16	txseq;
434	u8	retries;
435	__le16  psm;
436	bdaddr_t bdaddr;
437	struct l2cap_chan *chan;
438};
439
440struct hci_dev;
441
442typedef void (*hci_req_complete_t)(struct hci_dev *hdev, u8 status, u16 opcode);
443typedef void (*hci_req_complete_skb_t)(struct hci_dev *hdev, u8 status,
444				       u16 opcode, struct sk_buff *skb);
445
446void hci_req_cmd_complete(struct hci_dev *hdev, u16 opcode, u8 status,
447			  hci_req_complete_t *req_complete,
448			  hci_req_complete_skb_t *req_complete_skb);
449
450#define HCI_REQ_START	BIT(0)
451#define HCI_REQ_SKB	BIT(1)
452
453struct hci_ctrl {
454	struct sock *sk;
455	u16 opcode;
456	u8 req_flags;
457	u8 req_event;
458	union {
459		hci_req_complete_t req_complete;
460		hci_req_complete_skb_t req_complete_skb;
461	};
462};
463
464struct mgmt_ctrl {
465	struct hci_dev *hdev;
466	u16 opcode;
467};
468
469struct bt_skb_cb {
470	u8 pkt_type;
471	u8 force_active;
472	u16 expect;
473	u8 incoming:1;
474	u8 pkt_status:2;
475	union {
476		struct l2cap_ctrl l2cap;
477		struct hci_ctrl hci;
478		struct mgmt_ctrl mgmt;
479		struct scm_creds creds;
480	};
481};
482#define bt_cb(skb) ((struct bt_skb_cb *)((skb)->cb))
483
484#define hci_skb_pkt_type(skb) bt_cb((skb))->pkt_type
485#define hci_skb_pkt_status(skb) bt_cb((skb))->pkt_status
486#define hci_skb_expect(skb) bt_cb((skb))->expect
487#define hci_skb_opcode(skb) bt_cb((skb))->hci.opcode
488#define hci_skb_event(skb) bt_cb((skb))->hci.req_event
489#define hci_skb_sk(skb) bt_cb((skb))->hci.sk
490
491static inline struct sk_buff *bt_skb_alloc(unsigned int len, gfp_t how)
492{
493	struct sk_buff *skb;
494
495	skb = alloc_skb(len + BT_SKB_RESERVE, how);
496	if (skb)
497		skb_reserve(skb, BT_SKB_RESERVE);
498	return skb;
499}
500
501static inline struct sk_buff *bt_skb_send_alloc(struct sock *sk,
502					unsigned long len, int nb, int *err)
503{
504	struct sk_buff *skb;
505
506	skb = sock_alloc_send_skb(sk, len + BT_SKB_RESERVE, nb, err);
507	if (skb)
508		skb_reserve(skb, BT_SKB_RESERVE);
509
510	if (!skb && *err)
511		return NULL;
512
513	*err = sock_error(sk);
514	if (*err)
515		goto out;
516
517	if (sk->sk_shutdown) {
518		*err = -ECONNRESET;
519		goto out;
520	}
521
522	return skb;
523
524out:
525	kfree_skb(skb);
526	return NULL;
527}
528
529/* Shall not be called with lock_sock held */
530static inline struct sk_buff *bt_skb_sendmsg(struct sock *sk,
531					     struct msghdr *msg,
532					     size_t len, size_t mtu,
533					     size_t headroom, size_t tailroom)
534{
535	struct sk_buff *skb;
536	size_t size = min_t(size_t, len, mtu);
537	int err;
538
539	skb = bt_skb_send_alloc(sk, size + headroom + tailroom,
540				msg->msg_flags & MSG_DONTWAIT, &err);
541	if (!skb)
542		return ERR_PTR(err);
543
544	skb_reserve(skb, headroom);
545	skb_tailroom_reserve(skb, mtu, tailroom);
546
547	if (!copy_from_iter_full(skb_put(skb, size), size, &msg->msg_iter)) {
548		kfree_skb(skb);
549		return ERR_PTR(-EFAULT);
550	}
551
552	skb->priority = READ_ONCE(sk->sk_priority);
553
554	return skb;
555}
556
557/* Similar to bt_skb_sendmsg but can split the msg into multiple fragments
558 * accourding to the MTU.
559 */
560static inline struct sk_buff *bt_skb_sendmmsg(struct sock *sk,
561					      struct msghdr *msg,
562					      size_t len, size_t mtu,
563					      size_t headroom, size_t tailroom)
564{
565	struct sk_buff *skb, **frag;
566
567	skb = bt_skb_sendmsg(sk, msg, len, mtu, headroom, tailroom);
568	if (IS_ERR(skb))
569		return skb;
570
571	len -= skb->len;
572	if (!len)
573		return skb;
574
575	/* Add remaining data over MTU as continuation fragments */
576	frag = &skb_shinfo(skb)->frag_list;
577	while (len) {
578		struct sk_buff *tmp;
579
580		tmp = bt_skb_sendmsg(sk, msg, len, mtu, headroom, tailroom);
581		if (IS_ERR(tmp)) {
582			return skb;
583		}
584
585		len -= tmp->len;
586
587		*frag = tmp;
588		frag = &(*frag)->next;
589	}
590
591	return skb;
592}
593
594int bt_to_errno(u16 code);
595__u8 bt_status(int err);
596
597void hci_sock_set_flag(struct sock *sk, int nr);
598void hci_sock_clear_flag(struct sock *sk, int nr);
599int hci_sock_test_flag(struct sock *sk, int nr);
600unsigned short hci_sock_get_channel(struct sock *sk);
601u32 hci_sock_get_cookie(struct sock *sk);
602
603int hci_sock_init(void);
604void hci_sock_cleanup(void);
605
606int bt_sysfs_init(void);
607void bt_sysfs_cleanup(void);
608
609int bt_procfs_init(struct net *net, const char *name,
610		   struct bt_sock_list *sk_list,
611		   int (*seq_show)(struct seq_file *, void *));
612void bt_procfs_cleanup(struct net *net, const char *name);
613
614extern struct dentry *bt_debugfs;
615
616int l2cap_init(void);
617void l2cap_exit(void);
618
619#if IS_ENABLED(CONFIG_BT_BREDR)
620int sco_init(void);
621void sco_exit(void);
622#else
623static inline int sco_init(void)
624{
625	return 0;
626}
627
628static inline void sco_exit(void)
629{
630}
631#endif
632
633#if IS_ENABLED(CONFIG_BT_LE)
634int iso_init(void);
635int iso_exit(void);
636bool iso_enabled(void);
637#else
638static inline int iso_init(void)
639{
640	return 0;
641}
642
643static inline int iso_exit(void)
644{
645	return 0;
646}
647
648static inline bool iso_enabled(void)
649{
650	return false;
651}
652#endif
653
654int mgmt_init(void);
655void mgmt_exit(void);
656void mgmt_cleanup(struct sock *sk);
657
658void bt_sock_reclassify_lock(struct sock *sk, int proto);
659
660#endif /* __BLUETOOTH_H */
v6.8
  1/*
  2   BlueZ - Bluetooth protocol stack for Linux
  3   Copyright (C) 2000-2001 Qualcomm Incorporated
  4   Copyright 2023 NXP
  5
  6   Written 2000,2001 by Maxim Krasnyansky <maxk@qualcomm.com>
  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 version 2 as
 10   published by the Free Software Foundation;
 11
 12   THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
 13   OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
 14   FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT OF THIRD PARTY RIGHTS.
 15   IN NO EVENT SHALL THE COPYRIGHT HOLDER(S) AND AUTHOR(S) BE LIABLE FOR ANY
 16   CLAIM, OR ANY SPECIAL INDIRECT OR CONSEQUENTIAL DAMAGES, OR ANY DAMAGES
 17   WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
 18   ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
 19   OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
 20
 21   ALL LIABILITY, INCLUDING LIABILITY FOR INFRINGEMENT OF ANY PATENTS,
 22   COPYRIGHTS, TRADEMARKS OR OTHER RIGHTS, RELATING TO USE OF THIS
 23   SOFTWARE IS DISCLAIMED.
 24*/
 25
 26#ifndef __BLUETOOTH_H
 27#define __BLUETOOTH_H
 28
 29#include <linux/poll.h>
 30#include <net/sock.h>
 31#include <linux/seq_file.h>
 32
 33#define BT_SUBSYS_VERSION	2
 34#define BT_SUBSYS_REVISION	22
 35
 36#ifndef AF_BLUETOOTH
 37#define AF_BLUETOOTH	31
 38#define PF_BLUETOOTH	AF_BLUETOOTH
 39#endif
 40
 41/* Bluetooth versions */
 42#define BLUETOOTH_VER_1_1	1
 43#define BLUETOOTH_VER_1_2	2
 44#define BLUETOOTH_VER_2_0	3
 45#define BLUETOOTH_VER_2_1	4
 46#define BLUETOOTH_VER_4_0	6
 47
 48/* Reserv for core and drivers use */
 49#define BT_SKB_RESERVE	8
 50
 51#define BTPROTO_L2CAP	0
 52#define BTPROTO_HCI	1
 53#define BTPROTO_SCO	2
 54#define BTPROTO_RFCOMM	3
 55#define BTPROTO_BNEP	4
 56#define BTPROTO_CMTP	5
 57#define BTPROTO_HIDP	6
 58#define BTPROTO_AVDTP	7
 59#define BTPROTO_ISO	8
 60#define BTPROTO_LAST	BTPROTO_ISO
 61
 62#define SOL_HCI		0
 63#define SOL_L2CAP	6
 64#define SOL_SCO		17
 65#define SOL_RFCOMM	18
 66
 67#define BT_SECURITY	4
 68struct bt_security {
 69	__u8 level;
 70	__u8 key_size;
 71};
 72#define BT_SECURITY_SDP		0
 73#define BT_SECURITY_LOW		1
 74#define BT_SECURITY_MEDIUM	2
 75#define BT_SECURITY_HIGH	3
 76#define BT_SECURITY_FIPS	4
 77
 78#define BT_DEFER_SETUP	7
 79
 80#define BT_FLUSHABLE	8
 81
 82#define BT_FLUSHABLE_OFF	0
 83#define BT_FLUSHABLE_ON		1
 84
 85#define BT_POWER	9
 86struct bt_power {
 87	__u8 force_active;
 88};
 89#define BT_POWER_FORCE_ACTIVE_OFF 0
 90#define BT_POWER_FORCE_ACTIVE_ON  1
 91
 92#define BT_CHANNEL_POLICY	10
 93
 94/* BR/EDR only (default policy)
 95 *   AMP controllers cannot be used.
 96 *   Channel move requests from the remote device are denied.
 97 *   If the L2CAP channel is currently using AMP, move the channel to BR/EDR.
 98 */
 99#define BT_CHANNEL_POLICY_BREDR_ONLY		0
100
101/* BR/EDR Preferred
102 *   Allow use of AMP controllers.
103 *   If the L2CAP channel is currently on AMP, move it to BR/EDR.
104 *   Channel move requests from the remote device are allowed.
105 */
106#define BT_CHANNEL_POLICY_BREDR_PREFERRED	1
107
108/* AMP Preferred
109 *   Allow use of AMP controllers
110 *   If the L2CAP channel is currently on BR/EDR and AMP controller
111 *     resources are available, initiate a channel move to AMP.
112 *   Channel move requests from the remote device are allowed.
113 *   If the L2CAP socket has not been connected yet, try to create
114 *     and configure the channel directly on an AMP controller rather
115 *     than BR/EDR.
116 */
117#define BT_CHANNEL_POLICY_AMP_PREFERRED		2
118
119#define BT_VOICE		11
120struct bt_voice {
121	__u16 setting;
122};
123
124#define BT_VOICE_TRANSPARENT			0x0003
125#define BT_VOICE_CVSD_16BIT			0x0060
 
126
127#define BT_SNDMTU		12
128#define BT_RCVMTU		13
129#define BT_PHY			14
130
131#define BT_PHY_BR_1M_1SLOT	0x00000001
132#define BT_PHY_BR_1M_3SLOT	0x00000002
133#define BT_PHY_BR_1M_5SLOT	0x00000004
134#define BT_PHY_EDR_2M_1SLOT	0x00000008
135#define BT_PHY_EDR_2M_3SLOT	0x00000010
136#define BT_PHY_EDR_2M_5SLOT	0x00000020
137#define BT_PHY_EDR_3M_1SLOT	0x00000040
138#define BT_PHY_EDR_3M_3SLOT	0x00000080
139#define BT_PHY_EDR_3M_5SLOT	0x00000100
140#define BT_PHY_LE_1M_TX		0x00000200
141#define BT_PHY_LE_1M_RX		0x00000400
142#define BT_PHY_LE_2M_TX		0x00000800
143#define BT_PHY_LE_2M_RX		0x00001000
144#define BT_PHY_LE_CODED_TX	0x00002000
145#define BT_PHY_LE_CODED_RX	0x00004000
146
147#define BT_MODE			15
148
149#define BT_MODE_BASIC		0x00
150#define BT_MODE_ERTM		0x01
151#define BT_MODE_STREAMING	0x02
152#define BT_MODE_LE_FLOWCTL	0x03
153#define BT_MODE_EXT_FLOWCTL	0x04
154
155#define BT_PKT_STATUS           16
156
157#define BT_SCM_PKT_STATUS	0x03
158
159#define BT_ISO_QOS		17
160
161#define BT_ISO_QOS_CIG_UNSET	0xff
162#define BT_ISO_QOS_CIS_UNSET	0xff
163
164#define BT_ISO_QOS_BIG_UNSET	0xff
165#define BT_ISO_QOS_BIS_UNSET	0xff
166
 
 
167struct bt_iso_io_qos {
168	__u32 interval;
169	__u16 latency;
170	__u16 sdu;
171	__u8  phy;
172	__u8  rtn;
173};
174
175struct bt_iso_ucast_qos {
176	__u8  cig;
177	__u8  cis;
178	__u8  sca;
179	__u8  packing;
180	__u8  framing;
181	struct bt_iso_io_qos in;
182	struct bt_iso_io_qos out;
183};
184
185struct bt_iso_bcast_qos {
186	__u8  big;
187	__u8  bis;
188	__u8  sync_factor;
189	__u8  packing;
190	__u8  framing;
191	struct bt_iso_io_qos in;
192	struct bt_iso_io_qos out;
193	__u8  encryption;
194	__u8  bcode[16];
195	__u8  options;
196	__u16 skip;
197	__u16 sync_timeout;
198	__u8  sync_cte_type;
199	__u8  mse;
200	__u16 timeout;
201};
202
203struct bt_iso_qos {
204	union {
205		struct bt_iso_ucast_qos ucast;
206		struct bt_iso_bcast_qos bcast;
207	};
208};
209
210#define BT_ISO_PHY_1M		0x01
211#define BT_ISO_PHY_2M		0x02
212#define BT_ISO_PHY_CODED	0x04
213#define BT_ISO_PHY_ANY		(BT_ISO_PHY_1M | BT_ISO_PHY_2M | \
214				 BT_ISO_PHY_CODED)
215
216#define BT_CODEC	19
217
218struct	bt_codec_caps {
219	__u8	len;
220	__u8	data[];
221} __packed;
222
223struct bt_codec {
224	__u8	id;
225	__u16	cid;
226	__u16	vid;
227	__u8	data_path;
228	__u8	num_caps;
229} __packed;
230
231struct bt_codecs {
232	__u8		num_codecs;
233	struct bt_codec	codecs[];
234} __packed;
235
236#define BT_CODEC_CVSD		0x02
237#define BT_CODEC_TRANSPARENT	0x03
238#define BT_CODEC_MSBC		0x05
239
240#define BT_ISO_BASE		20
241
242__printf(1, 2)
243void bt_info(const char *fmt, ...);
244__printf(1, 2)
245void bt_warn(const char *fmt, ...);
246__printf(1, 2)
247void bt_err(const char *fmt, ...);
248#if IS_ENABLED(CONFIG_BT_FEATURE_DEBUG)
249void bt_dbg_set(bool enable);
250bool bt_dbg_get(void);
251__printf(1, 2)
252void bt_dbg(const char *fmt, ...);
253#endif
254__printf(1, 2)
255void bt_warn_ratelimited(const char *fmt, ...);
256__printf(1, 2)
257void bt_err_ratelimited(const char *fmt, ...);
258
259#define BT_INFO(fmt, ...)	bt_info(fmt "\n", ##__VA_ARGS__)
260#define BT_WARN(fmt, ...)	bt_warn(fmt "\n", ##__VA_ARGS__)
261#define BT_ERR(fmt, ...)	bt_err(fmt "\n", ##__VA_ARGS__)
262
263#if IS_ENABLED(CONFIG_BT_FEATURE_DEBUG)
264#define BT_DBG(fmt, ...)	bt_dbg(fmt "\n", ##__VA_ARGS__)
265#else
266#define BT_DBG(fmt, ...)	pr_debug(fmt "\n", ##__VA_ARGS__)
267#endif
268
269#define bt_dev_name(hdev) ((hdev) ? (hdev)->name : "null")
270
271#define bt_dev_info(hdev, fmt, ...)				\
272	BT_INFO("%s: " fmt, bt_dev_name(hdev), ##__VA_ARGS__)
273#define bt_dev_warn(hdev, fmt, ...)				\
274	BT_WARN("%s: " fmt, bt_dev_name(hdev), ##__VA_ARGS__)
275#define bt_dev_err(hdev, fmt, ...)				\
276	BT_ERR("%s: " fmt, bt_dev_name(hdev), ##__VA_ARGS__)
277#define bt_dev_dbg(hdev, fmt, ...)				\
278	BT_DBG("%s: " fmt, bt_dev_name(hdev), ##__VA_ARGS__)
279
280#define bt_dev_warn_ratelimited(hdev, fmt, ...)			\
281	bt_warn_ratelimited("%s: " fmt, bt_dev_name(hdev), ##__VA_ARGS__)
282#define bt_dev_err_ratelimited(hdev, fmt, ...)			\
283	bt_err_ratelimited("%s: " fmt, bt_dev_name(hdev), ##__VA_ARGS__)
284
285/* Connection and socket states */
286enum {
287	BT_CONNECTED = 1, /* Equal to TCP_ESTABLISHED to make net code happy */
288	BT_OPEN,
289	BT_BOUND,
290	BT_LISTEN,
291	BT_CONNECT,
292	BT_CONNECT2,
293	BT_CONFIG,
294	BT_DISCONN,
295	BT_CLOSED
296};
297
298/* If unused will be removed by compiler */
299static inline const char *state_to_string(int state)
300{
301	switch (state) {
302	case BT_CONNECTED:
303		return "BT_CONNECTED";
304	case BT_OPEN:
305		return "BT_OPEN";
306	case BT_BOUND:
307		return "BT_BOUND";
308	case BT_LISTEN:
309		return "BT_LISTEN";
310	case BT_CONNECT:
311		return "BT_CONNECT";
312	case BT_CONNECT2:
313		return "BT_CONNECT2";
314	case BT_CONFIG:
315		return "BT_CONFIG";
316	case BT_DISCONN:
317		return "BT_DISCONN";
318	case BT_CLOSED:
319		return "BT_CLOSED";
320	}
321
322	return "invalid state";
323}
324
325/* BD Address */
326typedef struct {
327	__u8 b[6];
328} __packed bdaddr_t;
329
330/* BD Address type */
331#define BDADDR_BREDR		0x00
332#define BDADDR_LE_PUBLIC	0x01
333#define BDADDR_LE_RANDOM	0x02
334
335static inline bool bdaddr_type_is_valid(u8 type)
336{
337	switch (type) {
338	case BDADDR_BREDR:
339	case BDADDR_LE_PUBLIC:
340	case BDADDR_LE_RANDOM:
341		return true;
342	}
343
344	return false;
345}
346
347static inline bool bdaddr_type_is_le(u8 type)
348{
349	switch (type) {
350	case BDADDR_LE_PUBLIC:
351	case BDADDR_LE_RANDOM:
352		return true;
353	}
354
355	return false;
356}
357
358#define BDADDR_ANY  (&(bdaddr_t) {{0, 0, 0, 0, 0, 0}})
359#define BDADDR_NONE (&(bdaddr_t) {{0xff, 0xff, 0xff, 0xff, 0xff, 0xff}})
360
361/* Copy, swap, convert BD Address */
362static inline int bacmp(const bdaddr_t *ba1, const bdaddr_t *ba2)
363{
364	return memcmp(ba1, ba2, sizeof(bdaddr_t));
365}
366static inline void bacpy(bdaddr_t *dst, const bdaddr_t *src)
367{
368	memcpy(dst, src, sizeof(bdaddr_t));
369}
370
371void baswap(bdaddr_t *dst, const bdaddr_t *src);
372
373/* Common socket structures and functions */
374
375#define bt_sk(__sk) ((struct bt_sock *) __sk)
376
377struct bt_sock {
378	struct sock sk;
379	struct list_head accept_q;
380	struct sock *parent;
381	unsigned long flags;
382	void (*skb_msg_name)(struct sk_buff *, void *, int *);
383	void (*skb_put_cmsg)(struct sk_buff *, struct msghdr *, struct sock *);
384};
385
386enum {
387	BT_SK_DEFER_SETUP,
388	BT_SK_SUSPEND,
389	BT_SK_PKT_STATUS
390};
391
392struct bt_sock_list {
393	struct hlist_head head;
394	rwlock_t          lock;
395#ifdef CONFIG_PROC_FS
396        int (* custom_seq_show)(struct seq_file *, void *);
397#endif
398};
399
400int  bt_sock_register(int proto, const struct net_proto_family *ops);
401void bt_sock_unregister(int proto);
402void bt_sock_link(struct bt_sock_list *l, struct sock *s);
403void bt_sock_unlink(struct bt_sock_list *l, struct sock *s);
 
404struct sock *bt_sock_alloc(struct net *net, struct socket *sock,
405			   struct proto *prot, int proto, gfp_t prio, int kern);
406int  bt_sock_recvmsg(struct socket *sock, struct msghdr *msg, size_t len,
407		     int flags);
408int  bt_sock_stream_recvmsg(struct socket *sock, struct msghdr *msg,
409			    size_t len, int flags);
410__poll_t bt_sock_poll(struct file *file, struct socket *sock, poll_table *wait);
411int  bt_sock_ioctl(struct socket *sock, unsigned int cmd, unsigned long arg);
412int  bt_sock_wait_state(struct sock *sk, int state, unsigned long timeo);
413int  bt_sock_wait_ready(struct sock *sk, unsigned int msg_flags);
414
415void bt_accept_enqueue(struct sock *parent, struct sock *sk, bool bh);
416void bt_accept_unlink(struct sock *sk);
417struct sock *bt_accept_dequeue(struct sock *parent, struct socket *newsock);
418
419/* Skb helpers */
420struct l2cap_ctrl {
421	u8	sframe:1,
422		poll:1,
423		final:1,
424		fcs:1,
425		sar:2,
426		super:2;
427
428	u16	reqseq;
429	u16	txseq;
430	u8	retries;
431	__le16  psm;
432	bdaddr_t bdaddr;
433	struct l2cap_chan *chan;
434};
435
436struct hci_dev;
437
438typedef void (*hci_req_complete_t)(struct hci_dev *hdev, u8 status, u16 opcode);
439typedef void (*hci_req_complete_skb_t)(struct hci_dev *hdev, u8 status,
440				       u16 opcode, struct sk_buff *skb);
 
 
 
 
441
442#define HCI_REQ_START	BIT(0)
443#define HCI_REQ_SKB	BIT(1)
444
445struct hci_ctrl {
446	struct sock *sk;
447	u16 opcode;
448	u8 req_flags;
449	u8 req_event;
450	union {
451		hci_req_complete_t req_complete;
452		hci_req_complete_skb_t req_complete_skb;
453	};
454};
455
456struct mgmt_ctrl {
457	struct hci_dev *hdev;
458	u16 opcode;
459};
460
461struct bt_skb_cb {
462	u8 pkt_type;
463	u8 force_active;
464	u16 expect;
465	u8 incoming:1;
466	u8 pkt_status:2;
467	union {
468		struct l2cap_ctrl l2cap;
469		struct hci_ctrl hci;
470		struct mgmt_ctrl mgmt;
471		struct scm_creds creds;
472	};
473};
474#define bt_cb(skb) ((struct bt_skb_cb *)((skb)->cb))
475
476#define hci_skb_pkt_type(skb) bt_cb((skb))->pkt_type
477#define hci_skb_pkt_status(skb) bt_cb((skb))->pkt_status
478#define hci_skb_expect(skb) bt_cb((skb))->expect
479#define hci_skb_opcode(skb) bt_cb((skb))->hci.opcode
480#define hci_skb_event(skb) bt_cb((skb))->hci.req_event
481#define hci_skb_sk(skb) bt_cb((skb))->hci.sk
482
483static inline struct sk_buff *bt_skb_alloc(unsigned int len, gfp_t how)
484{
485	struct sk_buff *skb;
486
487	skb = alloc_skb(len + BT_SKB_RESERVE, how);
488	if (skb)
489		skb_reserve(skb, BT_SKB_RESERVE);
490	return skb;
491}
492
493static inline struct sk_buff *bt_skb_send_alloc(struct sock *sk,
494					unsigned long len, int nb, int *err)
495{
496	struct sk_buff *skb;
497
498	skb = sock_alloc_send_skb(sk, len + BT_SKB_RESERVE, nb, err);
499	if (skb)
500		skb_reserve(skb, BT_SKB_RESERVE);
501
502	if (!skb && *err)
503		return NULL;
504
505	*err = sock_error(sk);
506	if (*err)
507		goto out;
508
509	if (sk->sk_shutdown) {
510		*err = -ECONNRESET;
511		goto out;
512	}
513
514	return skb;
515
516out:
517	kfree_skb(skb);
518	return NULL;
519}
520
521/* Shall not be called with lock_sock held */
522static inline struct sk_buff *bt_skb_sendmsg(struct sock *sk,
523					     struct msghdr *msg,
524					     size_t len, size_t mtu,
525					     size_t headroom, size_t tailroom)
526{
527	struct sk_buff *skb;
528	size_t size = min_t(size_t, len, mtu);
529	int err;
530
531	skb = bt_skb_send_alloc(sk, size + headroom + tailroom,
532				msg->msg_flags & MSG_DONTWAIT, &err);
533	if (!skb)
534		return ERR_PTR(err);
535
536	skb_reserve(skb, headroom);
537	skb_tailroom_reserve(skb, mtu, tailroom);
538
539	if (!copy_from_iter_full(skb_put(skb, size), size, &msg->msg_iter)) {
540		kfree_skb(skb);
541		return ERR_PTR(-EFAULT);
542	}
543
544	skb->priority = READ_ONCE(sk->sk_priority);
545
546	return skb;
547}
548
549/* Similar to bt_skb_sendmsg but can split the msg into multiple fragments
550 * accourding to the MTU.
551 */
552static inline struct sk_buff *bt_skb_sendmmsg(struct sock *sk,
553					      struct msghdr *msg,
554					      size_t len, size_t mtu,
555					      size_t headroom, size_t tailroom)
556{
557	struct sk_buff *skb, **frag;
558
559	skb = bt_skb_sendmsg(sk, msg, len, mtu, headroom, tailroom);
560	if (IS_ERR(skb))
561		return skb;
562
563	len -= skb->len;
564	if (!len)
565		return skb;
566
567	/* Add remaining data over MTU as continuation fragments */
568	frag = &skb_shinfo(skb)->frag_list;
569	while (len) {
570		struct sk_buff *tmp;
571
572		tmp = bt_skb_sendmsg(sk, msg, len, mtu, headroom, tailroom);
573		if (IS_ERR(tmp)) {
574			return skb;
575		}
576
577		len -= tmp->len;
578
579		*frag = tmp;
580		frag = &(*frag)->next;
581	}
582
583	return skb;
584}
585
586int bt_to_errno(u16 code);
587__u8 bt_status(int err);
588
589void hci_sock_set_flag(struct sock *sk, int nr);
590void hci_sock_clear_flag(struct sock *sk, int nr);
591int hci_sock_test_flag(struct sock *sk, int nr);
592unsigned short hci_sock_get_channel(struct sock *sk);
593u32 hci_sock_get_cookie(struct sock *sk);
594
595int hci_sock_init(void);
596void hci_sock_cleanup(void);
597
598int bt_sysfs_init(void);
599void bt_sysfs_cleanup(void);
600
601int bt_procfs_init(struct net *net, const char *name,
602		   struct bt_sock_list *sk_list,
603		   int (*seq_show)(struct seq_file *, void *));
604void bt_procfs_cleanup(struct net *net, const char *name);
605
606extern struct dentry *bt_debugfs;
607
608int l2cap_init(void);
609void l2cap_exit(void);
610
611#if IS_ENABLED(CONFIG_BT_BREDR)
612int sco_init(void);
613void sco_exit(void);
614#else
615static inline int sco_init(void)
616{
617	return 0;
618}
619
620static inline void sco_exit(void)
621{
622}
623#endif
624
625#if IS_ENABLED(CONFIG_BT_LE)
626int iso_init(void);
627int iso_exit(void);
628bool iso_enabled(void);
629#else
630static inline int iso_init(void)
631{
632	return 0;
633}
634
635static inline int iso_exit(void)
636{
637	return 0;
638}
639
640static inline bool iso_enabled(void)
641{
642	return false;
643}
644#endif
645
646int mgmt_init(void);
647void mgmt_exit(void);
648void mgmt_cleanup(struct sock *sk);
649
650void bt_sock_reclassify_lock(struct sock *sk, int proto);
651
652#endif /* __BLUETOOTH_H */