hci_core.h 48.0 KB
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/*
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   BlueZ - Bluetooth protocol stack for Linux
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   Copyright (c) 2000-2001, 2010, Code Aurora Forum. All rights reserved.
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   Written 2000,2001 by Maxim Krasnyansky <maxk@qualcomm.com>

   This program is free software; you can redistribute it and/or modify
   it under the terms of the GNU General Public License version 2 as
   published by the Free Software Foundation;

   THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
   OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
   FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT OF THIRD PARTY RIGHTS.
   IN NO EVENT SHALL THE COPYRIGHT HOLDER(S) AND AUTHOR(S) BE LIABLE FOR ANY
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   CLAIM, OR ANY SPECIAL INDIRECT OR CONSEQUENTIAL DAMAGES, OR ANY DAMAGES
   WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
   ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
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   OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.

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   ALL LIABILITY, INCLUDING LIABILITY FOR INFRINGEMENT OF ANY PATENTS,
   COPYRIGHTS, TRADEMARKS OR OTHER RIGHTS, RELATING TO USE OF THIS
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   SOFTWARE IS DISCLAIMED.
*/

#ifndef __HCI_CORE_H
#define __HCI_CORE_H

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#include <linux/idr.h>
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#include <linux/leds.h>
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#include <linux/rculist.h>

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#include <net/bluetooth/hci.h>
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#include <net/bluetooth/hci_sock.h>
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/* HCI priority */
#define HCI_PRIO_MAX	7

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/* HCI Core structures */
struct inquiry_data {
	bdaddr_t	bdaddr;
	__u8		pscan_rep_mode;
	__u8		pscan_period_mode;
	__u8		pscan_mode;
	__u8		dev_class[3];
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	__le16		clock_offset;
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	__s8		rssi;
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	__u8		ssp_mode;
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};

struct inquiry_entry {
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	struct list_head	all;		/* inq_cache.all */
	struct list_head	list;		/* unknown or resolve */
	enum {
		NAME_NOT_KNOWN,
		NAME_NEEDED,
		NAME_PENDING,
		NAME_KNOWN,
	} name_state;
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	__u32			timestamp;
	struct inquiry_data	data;
};

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struct discovery_state {
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	int			type;
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	enum {
		DISCOVERY_STOPPED,
		DISCOVERY_STARTING,
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		DISCOVERY_FINDING,
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		DISCOVERY_RESOLVING,
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		DISCOVERY_STOPPING,
	} state;
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	struct list_head	all;	/* All devices found during inquiry */
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	struct list_head	unknown;	/* Name state not known */
	struct list_head	resolve;	/* Name needs to be resolved */
	__u32			timestamp;
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	bdaddr_t		last_adv_addr;
	u8			last_adv_addr_type;
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	s8			last_adv_rssi;
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	u32			last_adv_flags;
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	u8			last_adv_data[HCI_MAX_AD_LENGTH];
	u8			last_adv_data_len;
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	bool			report_invalid_rssi;
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	bool			result_filtering;
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	bool			limited;
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	s8			rssi;
	u16			uuid_count;
	u8			(*uuids)[16];
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	unsigned long		scan_start;
	unsigned long		scan_duration;
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};

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#define SUSPEND_NOTIFIER_TIMEOUT	msecs_to_jiffies(2000) /* 2 seconds */

enum suspend_tasks {
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	SUSPEND_PAUSE_DISCOVERY,
	SUSPEND_UNPAUSE_DISCOVERY,

	SUSPEND_PAUSE_ADVERTISING,
	SUSPEND_UNPAUSE_ADVERTISING,

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	SUSPEND_SCAN_DISABLE,
	SUSPEND_SCAN_ENABLE,
	SUSPEND_DISCONNECTING,

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	SUSPEND_POWERING_DOWN,

	SUSPEND_PREPARE_NOTIFIER,
	__SUSPEND_NUM_TASKS
};

enum suspended_state {
	BT_RUNNING = 0,
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	BT_SUSPEND_DISCONNECT,
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	BT_SUSPEND_CONFIGURE_WAKE,
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};

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struct hci_conn_hash {
	struct list_head list;
	unsigned int     acl_num;
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	unsigned int     amp_num;
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	unsigned int     sco_num;
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	unsigned int     le_num;
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	unsigned int     le_num_slave;
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};

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struct bdaddr_list {
	struct list_head list;
	bdaddr_t bdaddr;
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	u8 bdaddr_type;
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};
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struct bdaddr_list_with_irk {
	struct list_head list;
	bdaddr_t bdaddr;
	u8 bdaddr_type;
	u8 peer_irk[16];
	u8 local_irk[16];
};

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struct bdaddr_list_with_flags {
	struct list_head list;
	bdaddr_t bdaddr;
	u8 bdaddr_type;
	u32 current_flags;
};

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enum hci_conn_flags {
	HCI_CONN_FLAG_REMOTE_WAKEUP,
	HCI_CONN_FLAG_MAX
};

#define hci_conn_test_flag(nr, flags) ((flags) & (1U << nr))

/* Make sure number of flags doesn't exceed sizeof(current_flags) */
static_assert(HCI_CONN_FLAG_MAX < 32);

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struct bt_uuid {
	struct list_head list;
	u8 uuid[16];
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	u8 size;
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	u8 svc_hint;
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};

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struct blocked_key {
	struct list_head list;
	struct rcu_head rcu;
	u8 type;
	u8 val[16];
};

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struct smp_csrk {
	bdaddr_t bdaddr;
	u8 bdaddr_type;
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	u8 type;
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	u8 val[16];
};

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struct smp_ltk {
	struct list_head list;
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	struct rcu_head rcu;
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	bdaddr_t bdaddr;
	u8 bdaddr_type;
	u8 authenticated;
	u8 type;
	u8 enc_size;
	__le16 ediv;
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	__le64 rand;
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	u8 val[16];
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};
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struct smp_irk {
	struct list_head list;
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	struct rcu_head rcu;
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	bdaddr_t rpa;
	bdaddr_t bdaddr;
	u8 addr_type;
	u8 val[16];
};

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struct link_key {
	struct list_head list;
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	struct rcu_head rcu;
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	bdaddr_t bdaddr;
	u8 type;
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	u8 val[HCI_LINK_KEY_SIZE];
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	u8 pin_len;
};

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struct oob_data {
	struct list_head list;
	bdaddr_t bdaddr;
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	u8 bdaddr_type;
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	u8 present;
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	u8 hash192[16];
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	u8 rand192[16];
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	u8 hash256[16];
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	u8 rand256[16];
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};

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struct adv_info {
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	struct list_head list;
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	bool pending;
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	__u8	instance;
	__u32	flags;
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	__u16	timeout;
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	__u16	remaining_time;
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	__u16	duration;
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	__u16	adv_data_len;
	__u8	adv_data[HCI_MAX_AD_LENGTH];
	__u16	scan_rsp_len;
	__u8	scan_rsp_data[HCI_MAX_AD_LENGTH];
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	__s8	tx_power;
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	bdaddr_t	random_addr;
	bool 		rpa_expired;
	struct delayed_work	rpa_expired_cb;
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};

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#define HCI_MAX_ADV_INSTANCES		5
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#define HCI_DEFAULT_ADV_DURATION	2

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struct adv_pattern {
	struct list_head list;
	__u8 ad_type;
	__u8 offset;
	__u8 length;
	__u8 value[HCI_MAX_AD_LENGTH];
};

struct adv_monitor {
	struct list_head patterns;
	bool		active;
	__u16		handle;
};

#define HCI_MIN_ADV_MONITOR_HANDLE		1
#define HCI_MAX_ADV_MONITOR_NUM_HANDLES	32
#define HCI_MAX_ADV_MONITOR_NUM_PATTERNS	16

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#define HCI_MAX_SHORT_NAME_LENGTH	10

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/* Min encryption key size to match with SMP */
#define HCI_MIN_ENC_KEY_SIZE		7

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/* Default LE RPA expiry time, 15 minutes */
#define HCI_DEFAULT_RPA_TIMEOUT		(15 * 60)

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/* Default min/max age of connection information (1s/3s) */
#define DEFAULT_CONN_INFO_MIN_AGE	1000
#define DEFAULT_CONN_INFO_MAX_AGE	3000
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/* Default authenticated payload timeout 30s */
#define DEFAULT_AUTH_PAYLOAD_TIMEOUT   0x0bb8
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struct amp_assoc {
	__u16	len;
	__u16	offset;
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	__u16	rem_len;
	__u16	len_so_far;
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	__u8	data[HCI_MAX_AMP_ASSOC_SIZE];
};

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#define HCI_MAX_PAGES	3
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struct hci_dev {
	struct list_head list;
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	struct mutex	lock;
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	char		name[8];
	unsigned long	flags;
	__u16		id;
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	__u8		bus;
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	__u8		dev_type;
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	bdaddr_t	bdaddr;
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	bdaddr_t	setup_addr;
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	bdaddr_t	public_addr;
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	bdaddr_t	random_addr;
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	bdaddr_t	static_addr;
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	__u8		adv_addr_type;
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	__u8		dev_name[HCI_MAX_NAME_LENGTH];
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	__u8		short_name[HCI_MAX_SHORT_NAME_LENGTH];
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	__u8		eir[HCI_MAX_EIR_LENGTH];
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	__u16		appearance;
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	__u8		dev_class[3];
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	__u8		major_class;
	__u8		minor_class;
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	__u8		max_page;
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	__u8		features[HCI_MAX_PAGES][8];
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	__u8		le_features[8];
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	__u8		le_white_list_size;
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	__u8		le_resolv_list_size;
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	__u8		le_num_of_adv_sets;
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	__u8		le_states[8];
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	__u8		commands[64];
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	__u8		hci_ver;
	__u16		hci_rev;
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	__u8		lmp_ver;
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	__u16		manufacturer;
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	__u16		lmp_subver;
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	__u16		voice_setting;
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	__u8		num_iac;
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	__u8		stored_max_keys;
	__u8		stored_num_keys;
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	__u8		io_capability;
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	__s8		inq_tx_power;
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	__u8		err_data_reporting;
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	__u16		page_scan_interval;
	__u16		page_scan_window;
	__u8		page_scan_type;
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	__u8		le_adv_channel_map;
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	__u16		le_adv_min_interval;
	__u16		le_adv_max_interval;
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	__u8		le_scan_type;
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	__u16		le_scan_interval;
	__u16		le_scan_window;
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	__u16		le_scan_int_suspend;
	__u16		le_scan_window_suspend;
	__u16		le_scan_int_discovery;
	__u16		le_scan_window_discovery;
	__u16		le_scan_int_adv_monitor;
	__u16		le_scan_window_adv_monitor;
	__u16		le_scan_int_connect;
	__u16		le_scan_window_connect;
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	__u16		le_conn_min_interval;
	__u16		le_conn_max_interval;
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	__u16		le_conn_latency;
	__u16		le_supv_timeout;
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	__u16		le_def_tx_len;
	__u16		le_def_tx_time;
	__u16		le_max_tx_len;
	__u16		le_max_tx_time;
	__u16		le_max_rx_len;
	__u16		le_max_rx_time;
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	__u8		le_max_key_size;
	__u8		le_min_key_size;
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	__u16		discov_interleaved_timeout;
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	__u16		conn_info_min_age;
	__u16		conn_info_max_age;
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	__u16		auth_payload_timeout;
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	__u8		min_enc_key_size;
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	__u8		max_enc_key_size;
	__u8		pairing_opts;
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	__u8		ssp_debug_mode;
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	__u8		hw_error_code;
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	__u32		clock;
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	__u16		devid_source;
	__u16		devid_vendor;
	__u16		devid_product;
	__u16		devid_version;
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	__u8		def_page_scan_type;
	__u16		def_page_scan_int;
	__u16		def_page_scan_window;
	__u8		def_inq_scan_type;
	__u16		def_inq_scan_int;
	__u16		def_inq_scan_window;
	__u16		def_br_lsto;
	__u16		def_page_timeout;
	__u16		def_multi_adv_rotation_duration;

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	__u16		pkt_type;
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	__u16		esco_type;
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	__u16		link_policy;
	__u16		link_mode;

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	__u32		idle_timeout;
	__u16		sniff_min_interval;
	__u16		sniff_max_interval;

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	__u8		amp_status;
	__u32		amp_total_bw;
	__u32		amp_max_bw;
	__u32		amp_min_latency;
	__u32		amp_max_pdu;
	__u8		amp_type;
	__u16		amp_pal_cap;
	__u16		amp_assoc_size;
	__u32		amp_max_flush_to;
	__u32		amp_be_flush_to;

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	struct amp_assoc	loc_assoc;

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	__u8		flow_ctl_mode;

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	unsigned int	auto_accept_delay;

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	unsigned long	quirks;

	atomic_t	cmd_cnt;
	unsigned int	acl_cnt;
	unsigned int	sco_cnt;
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	unsigned int	le_cnt;
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	unsigned int	acl_mtu;
	unsigned int	sco_mtu;
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	unsigned int	le_mtu;
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	unsigned int	acl_pkts;
	unsigned int	sco_pkts;
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	unsigned int	le_pkts;
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	__u16		block_len;
	__u16		block_mtu;
	__u16		num_blocks;
	__u16		block_cnt;

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	unsigned long	acl_last_tx;
	unsigned long	sco_last_tx;
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	unsigned long	le_last_tx;
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	__u8		le_tx_def_phys;
	__u8		le_rx_def_phys;

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	struct workqueue_struct	*workqueue;
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	struct workqueue_struct	*req_workqueue;
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	struct work_struct	power_on;
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	struct delayed_work	power_off;
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	struct work_struct	error_reset;
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	__u16			discov_timeout;
	struct delayed_work	discov_off;

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	struct delayed_work	service_cache;

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	struct delayed_work	cmd_timer;
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	struct work_struct	rx_work;
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	struct work_struct	cmd_work;
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	struct work_struct	tx_work;
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	struct work_struct	discov_update;
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	struct work_struct	bg_scan_update;
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	struct work_struct	scan_update;
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	struct work_struct	connectable_update;
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	struct work_struct	discoverable_update;
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	struct delayed_work	le_scan_disable;
	struct delayed_work	le_scan_restart;
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	struct sk_buff_head	rx_q;
	struct sk_buff_head	raw_q;
	struct sk_buff_head	cmd_q;

	struct sk_buff		*sent_cmd;

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	struct mutex		req_lock;
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	wait_queue_head_t	req_wait_q;
	__u32			req_status;
	__u32			req_result;
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	struct sk_buff		*req_skb;
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	void			*smp_data;
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	void			*smp_bredr_data;
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	struct discovery_state	discovery;
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	int			discovery_old_state;
	bool			discovery_paused;
	int			advertising_old_state;
	bool			advertising_paused;

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	struct notifier_block	suspend_notifier;
	struct work_struct	suspend_prepare;
	enum suspended_state	suspend_state_next;
	enum suspended_state	suspend_state;
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	bool			scanning_paused;
	bool			suspended;
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	wait_queue_head_t	suspend_wait_q;
	DECLARE_BITMAP(suspend_tasks, __SUSPEND_NUM_TASKS);

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	struct hci_conn_hash	conn_hash;

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	struct list_head	mgmt_pending;
	struct list_head	blacklist;
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	struct list_head	whitelist;
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	struct list_head	uuids;
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	struct list_head	link_keys;
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	struct list_head	long_term_keys;
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	struct list_head	identity_resolving_keys;
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	struct list_head	remote_oob_data;
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	struct list_head	le_white_list;
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	struct list_head	le_resolv_list;
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	struct list_head	le_conn_params;
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	struct list_head	pend_le_conns;
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	struct list_head	pend_le_reports;
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	struct list_head	blocked_keys;
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	struct hci_dev_stats	stat;

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	atomic_t		promisc;
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	const char		*hw_info;
	const char		*fw_info;
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	struct dentry		*debugfs;

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	struct device		dev;
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	struct rfkill		*rfkill;

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	DECLARE_BITMAP(dev_flags, __HCI_NUM_FLAGS);
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	__s8			adv_tx_power;
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	__u8			adv_data[HCI_MAX_AD_LENGTH];
	__u8			adv_data_len;
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	__u8			scan_rsp_data[HCI_MAX_AD_LENGTH];
	__u8			scan_rsp_data_len;
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	struct list_head	adv_instances;
	unsigned int		adv_instance_cnt;
	__u8			cur_adv_instance;
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	__u16			adv_instance_timeout;
	struct delayed_work	adv_instance_expire;
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	struct idr		adv_monitors_idr;
	unsigned int		adv_monitors_cnt;

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	__u8			irk[16];
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	__u32			rpa_timeout;
	struct delayed_work	rpa_expired;
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	bdaddr_t		rpa;
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#if IS_ENABLED(CONFIG_BT_LEDS)
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	struct led_trigger	*power_led;
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#endif
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#if IS_ENABLED(CONFIG_BT_MSFTEXT)
	__u16			msft_opcode;
	void			*msft_data;
#endif

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	int (*open)(struct hci_dev *hdev);
	int (*close)(struct hci_dev *hdev);
	int (*flush)(struct hci_dev *hdev);
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	int (*setup)(struct hci_dev *hdev);
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	int (*shutdown)(struct hci_dev *hdev);
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	int (*send)(struct hci_dev *hdev, struct sk_buff *skb);
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	void (*notify)(struct hci_dev *hdev, unsigned int evt);
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	void (*hw_error)(struct hci_dev *hdev, u8 code);
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	int (*post_init)(struct hci_dev *hdev);
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	int (*set_diag)(struct hci_dev *hdev, bool enable);
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	int (*set_bdaddr)(struct hci_dev *hdev, const bdaddr_t *bdaddr);
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	void (*cmd_timeout)(struct hci_dev *hdev);
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	bool (*prevent_wake)(struct hci_dev *hdev);
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};

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#define HCI_PHY_HANDLE(handle)	(handle & 0xff)

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struct hci_conn {
	struct list_head list;

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	atomic_t	refcnt;

	bdaddr_t	dst;
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	__u8		dst_type;
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	bdaddr_t	src;
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	__u8		src_type;
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	bdaddr_t	init_addr;
	__u8		init_addr_type;
	bdaddr_t	resp_addr;
	__u8		resp_addr_type;
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	__u16		handle;
	__u16		state;
	__u8		mode;
	__u8		type;
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	__u8		role;
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	bool		out;
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	__u8		attempt;
	__u8		dev_class[3];
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	__u8		features[HCI_MAX_PAGES][8];
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	__u16		pkt_type;
	__u16		link_policy;
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	__u8		key_type;
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	__u8		auth_type;
	__u8		sec_level;
	__u8		pending_sec_level;
	__u8		pin_length;
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	__u8		enc_key_size;
597
	__u8		io_capability;
598 599
	__u32		passkey_notify;
	__u8		passkey_entered;
600
	__u16		disc_timeout;
601
	__u16		conn_timeout;
602
	__u16		setting;
603
	__u16		auth_payload_timeout;
604 605
	__u16		le_conn_min_interval;
	__u16		le_conn_max_interval;
606 607 608
	__u16		le_conn_interval;
	__u16		le_conn_latency;
	__u16		le_supv_timeout;
609 610
	__u8		le_adv_data[HCI_MAX_AD_LENGTH];
	__u8		le_adv_data_len;
611 612
	__u8		le_tx_phy;
	__u8		le_rx_phy;
613
	__s8		rssi;
614
	__s8		tx_power;
615
	__s8		max_tx_power;
616
	unsigned long	flags;
617

618 619 620
	__u32		clock;
	__u16		clock_accuracy;

621 622
	unsigned long	conn_info_timestamp;

623 624
	__u8		remote_cap;
	__u8		remote_auth;
625
	__u8		remote_id;
626

627
	unsigned int	sent;
628

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	struct sk_buff_head data_q;
630
	struct list_head chan_list;
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632
	struct delayed_work disc_work;
633
	struct delayed_work auto_accept_work;
634
	struct delayed_work idle_work;
635
	struct delayed_work le_conn_timeout;
636
	struct work_struct  le_scan_cleanup;
637

638
	struct device	dev;
639
	struct dentry	*debugfs;
640

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	struct hci_dev	*hdev;
	void		*l2cap_data;
	void		*sco_data;
644
	struct amp_mgr	*amp_mgr;
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	struct hci_conn	*link;
647 648 649 650

	void (*connect_cfm_cb)	(struct hci_conn *conn, u8 status);
	void (*security_cfm_cb)	(struct hci_conn *conn, u8 status);
	void (*disconn_cfm_cb)	(struct hci_conn *conn, u8 reason);
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};

653 654
struct hci_chan {
	struct list_head list;
655
	__u16 handle;
656 657 658
	struct hci_conn *conn;
	struct sk_buff_head data_q;
	unsigned int	sent;
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	__u8		state;
660 661
};

662 663
struct hci_conn_params {
	struct list_head list;
664
	struct list_head action;
665 666 667 668 669 670

	bdaddr_t addr;
	u8 addr_type;

	u16 conn_min_interval;
	u16 conn_max_interval;
671 672
	u16 conn_latency;
	u16 supervision_timeout;
673 674 675

	enum {
		HCI_AUTO_CONN_DISABLED,
676
		HCI_AUTO_CONN_REPORT,
677
		HCI_AUTO_CONN_DIRECT,
678 679
		HCI_AUTO_CONN_ALWAYS,
		HCI_AUTO_CONN_LINK_LOSS,
680
		HCI_AUTO_CONN_EXPLICIT,
681
	} auto_connect;
682 683

	struct hci_conn *conn;
684
	bool explicit_connect;
685
	u32 current_flags;
686 687
};

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extern struct list_head hci_dev_list;
extern struct list_head hci_cb_list;
extern rwlock_t hci_dev_list_lock;
691
extern struct mutex hci_cb_list_lock;
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693 694 695 696 697 698 699 700 701 702 703 704
#define hci_dev_set_flag(hdev, nr)             set_bit((nr), (hdev)->dev_flags)
#define hci_dev_clear_flag(hdev, nr)           clear_bit((nr), (hdev)->dev_flags)
#define hci_dev_change_flag(hdev, nr)          change_bit((nr), (hdev)->dev_flags)
#define hci_dev_test_flag(hdev, nr)            test_bit((nr), (hdev)->dev_flags)
#define hci_dev_test_and_set_flag(hdev, nr)    test_and_set_bit((nr), (hdev)->dev_flags)
#define hci_dev_test_and_clear_flag(hdev, nr)  test_and_clear_bit((nr), (hdev)->dev_flags)
#define hci_dev_test_and_change_flag(hdev, nr) test_and_change_bit((nr), (hdev)->dev_flags)

#define hci_dev_clear_volatile_flags(hdev)			\
	do {							\
		hci_dev_clear_flag(hdev, HCI_LE_SCAN);		\
		hci_dev_clear_flag(hdev, HCI_LE_ADV);		\
705
		hci_dev_clear_flag(hdev, HCI_LL_RPA_RESOLUTION);\
706 707
		hci_dev_clear_flag(hdev, HCI_PERIODIC_INQ);	\
	} while (0)
708

709
/* ----- HCI interface to upper protocols ----- */
710 711
int l2cap_connect_ind(struct hci_dev *hdev, bdaddr_t *bdaddr);
int l2cap_disconn_ind(struct hci_conn *hcon);
712
void l2cap_recv_acldata(struct hci_conn *hcon, struct sk_buff *skb, u16 flags);
713

714
#if IS_ENABLED(CONFIG_BT_BREDR)
715
int sco_connect_ind(struct hci_dev *hdev, bdaddr_t *bdaddr, __u8 *flags);
716
void sco_recv_scodata(struct hci_conn *hcon, struct sk_buff *skb);
717 718 719 720 721 722 723 724 725 726 727
#else
static inline int sco_connect_ind(struct hci_dev *hdev, bdaddr_t *bdaddr,
				  __u8 *flags)
{
	return 0;
}

static inline void sco_recv_scodata(struct hci_conn *hcon, struct sk_buff *skb)
{
}
#endif
728

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/* ----- Inquiry cache ----- */
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#define INQUIRY_CACHE_AGE_MAX   (HZ*30)   /* 30 seconds */
#define INQUIRY_ENTRY_AGE_MAX   (HZ*60)   /* 60 seconds */
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733
static inline void discovery_init(struct hci_dev *hdev)
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{
735
	hdev->discovery.state = DISCOVERY_STOPPED;
736 737 738
	INIT_LIST_HEAD(&hdev->discovery.all);
	INIT_LIST_HEAD(&hdev->discovery.unknown);
	INIT_LIST_HEAD(&hdev->discovery.resolve);
739
	hdev->discovery.report_invalid_rssi = true;
740
	hdev->discovery.rssi = HCI_RSSI_INVALID;
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}

743 744
static inline void hci_discovery_filter_clear(struct hci_dev *hdev)
{
745
	hdev->discovery.result_filtering = false;
746
	hdev->discovery.report_invalid_rssi = true;
747 748 749 750
	hdev->discovery.rssi = HCI_RSSI_INVALID;
	hdev->discovery.uuid_count = 0;
	kfree(hdev->discovery.uuids);
	hdev->discovery.uuids = NULL;
751 752
	hdev->discovery.scan_start = 0;
	hdev->discovery.scan_duration = 0;
753 754
}

755 756
bool hci_discovery_active(struct hci_dev *hdev);

757 758
void hci_discovery_set_state(struct hci_dev *hdev, int state);

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static inline int inquiry_cache_empty(struct hci_dev *hdev)
{
761
	return list_empty(&hdev->discovery.all);
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}

static inline long inquiry_cache_age(struct hci_dev *hdev)
{
766
	struct discovery_state *c = &hdev->discovery;
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	return jiffies - c->timestamp;
}

static inline long inquiry_entry_age(struct inquiry_entry *e)
{
	return jiffies - e->timestamp;
}

775
struct inquiry_entry *hci_inquiry_cache_lookup(struct hci_dev *hdev,
776
					       bdaddr_t *bdaddr);
777
struct inquiry_entry *hci_inquiry_cache_lookup_unknown(struct hci_dev *hdev,
778
						       bdaddr_t *bdaddr);
779
struct inquiry_entry *hci_inquiry_cache_lookup_resolve(struct hci_dev *hdev,
780 781
						       bdaddr_t *bdaddr,
						       int state);
782
void hci_inquiry_cache_update_resolve(struct hci_dev *hdev,
783
				      struct inquiry_entry *ie);
784 785
u32 hci_inquiry_cache_update(struct hci_dev *hdev, struct inquiry_data *data,
			     bool name_known);
786
void hci_inquiry_cache_flush(struct hci_dev *hdev);
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/* ----- HCI Connections ----- */
enum {
	HCI_CONN_AUTH_PEND,
791
	HCI_CONN_REAUTH_PEND,
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	HCI_CONN_ENCRYPT_PEND,
793 794
	HCI_CONN_RSWITCH_PEND,
	HCI_CONN_MODE_CHANGE_PEND,
795
	HCI_CONN_SCO_SETUP_PEND,
796
	HCI_CONN_MGMT_CONNECTED,
797
	HCI_CONN_SSP_ENABLED,
798
	HCI_CONN_SC_ENABLED,
799
	HCI_CONN_AES_CCM,
800
	HCI_CONN_POWER_SAVE,
801
	HCI_CONN_FLUSH_KEY,
802 803 804 805
	HCI_CONN_ENCRYPT,
	HCI_CONN_AUTH,
	HCI_CONN_SECURE,
	HCI_CONN_FIPS,
806
	HCI_CONN_STK_ENCRYPT,
807
	HCI_CONN_AUTH_INITIATOR,
808
	HCI_CONN_DROP,
809
	HCI_CONN_PARAM_REMOVAL_PEND,
810
	HCI_CONN_NEW_LINK_KEY,
811
	HCI_CONN_SCANNING,
812
	HCI_CONN_AUTH_FAILURE,
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};

815 816 817
static inline bool hci_conn_ssp_enabled(struct hci_conn *conn)
{
	struct hci_dev *hdev = conn->hdev;
818
	return hci_dev_test_flag(hdev, HCI_SSP_ENABLED) &&
819
	       test_bit(HCI_CONN_SSP_ENABLED, &conn->flags);
820 821
}

822 823 824
static inline bool hci_conn_sc_enabled(struct hci_conn *conn)
{
	struct hci_dev *hdev = conn->hdev;
825
	return hci_dev_test_flag(hdev, HCI_SC_ENABLED) &&
826 827 828
	       test_bit(HCI_CONN_SC_ENABLED, &conn->flags);
}

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static inline void hci_conn_hash_add(struct hci_dev *hdev, struct hci_conn *c)
{
	struct hci_conn_hash *h = &hdev->conn_hash;
832
	list_add_rcu(&c->list, &h->list);
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	switch (c->type) {
	case ACL_LINK:
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		h->acl_num++;
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		break;
837 838 839
	case AMP_LINK:
		h->amp_num++;
		break;
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	case LE_LINK:
		h->le_num++;
842 843
		if (c->role == HCI_ROLE_SLAVE)
			h->le_num_slave++;
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		break;
	case SCO_LINK:
	case ESCO_LINK:
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		h->sco_num++;
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		break;
	}
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}

static inline void hci_conn_hash_del(struct hci_dev *hdev, struct hci_conn *c)
{
	struct hci_conn_hash *h = &hdev->conn_hash;
855 856 857 858

	list_del_rcu(&c->list);
	synchronize_rcu();

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	switch (c->type) {
	case ACL_LINK:
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		h->acl_num--;
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		break;
863 864 865
	case AMP_LINK:
		h->amp_num--;
		break;
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	case LE_LINK:
		h->le_num--;
868 869
		if (c->role == HCI_ROLE_SLAVE)
			h->le_num_slave--;
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		break;
	case SCO_LINK:
	case ESCO_LINK:
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		h->sco_num--;
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		break;
	}
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}

878 879 880 881 882 883
static inline unsigned int hci_conn_num(struct hci_dev *hdev, __u8 type)
{
	struct hci_conn_hash *h = &hdev->conn_hash;
	switch (type) {
	case ACL_LINK:
		return h->acl_num;
884 885
	case AMP_LINK:
		return h->amp_num;
886 887 888 889 890 891 892 893 894 895
	case LE_LINK:
		return h->le_num;
	case SCO_LINK:
	case ESCO_LINK:
		return h->sco_num;
	default:
		return 0;
	}
}

896 897 898 899 900 901 902
static inline unsigned int hci_conn_count(struct hci_dev *hdev)
{
	struct hci_conn_hash *c = &hdev->conn_hash;

	return c->acl_num + c->amp_num + c->sco_num + c->le_num;
}

903 904 905 906 907 908 909 910 911 912 913 914 915 916 917 918 919 920 921 922
static inline __u8 hci_conn_lookup_type(struct hci_dev *hdev, __u16 handle)
{
	struct hci_conn_hash *h = &hdev->conn_hash;
	struct hci_conn *c;
	__u8 type = INVALID_LINK;

	rcu_read_lock();

	list_for_each_entry_rcu(c, &h->list, list) {
		if (c->handle == handle) {
			type = c->type;
			break;
		}
	}

	rcu_read_unlock();

	return type;
}

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static inline struct hci_conn *hci_conn_hash_lookup_handle(struct hci_dev *hdev,
924
								__u16 handle)
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{
	struct hci_conn_hash *h = &hdev->conn_hash;
	struct hci_conn  *c;

929 930 931 932 933
	rcu_read_lock();

	list_for_each_entry_rcu(c, &h->list, list) {
		if (c->handle == handle) {
			rcu_read_unlock();
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			return c;
935
		}
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	}
937 938
	rcu_read_unlock();

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	return NULL;
}

static inline struct hci_conn *hci_conn_hash_lookup_ba(struct hci_dev *hdev,
943
							__u8 type, bdaddr_t *ba)
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{
	struct hci_conn_hash *h = &hdev->conn_hash;
	struct hci_conn  *c;

948 949 950 951 952
	rcu_read_lock();

	list_for_each_entry_rcu(c, &h->list, list) {
		if (c->type == type && !bacmp(&c->dst, ba)) {
			rcu_read_unlock();
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			return c;
954
		}
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	}
956 957 958

	rcu_read_unlock();

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	return NULL;
}

962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979 980 981 982 983 984 985
static inline struct hci_conn *hci_conn_hash_lookup_le(struct hci_dev *hdev,
						       bdaddr_t *ba,
						       __u8 ba_type)
{
	struct hci_conn_hash *h = &hdev->conn_hash;
	struct hci_conn  *c;

	rcu_read_lock();

	list_for_each_entry_rcu(c, &h->list, list) {
		if (c->type != LE_LINK)
		       continue;

		if (ba_type == c->dst_type && !bacmp(&c->dst, ba)) {
			rcu_read_unlock();
			return c;
		}
	}

	rcu_read_unlock();

	return NULL;
}

986
static inline struct hci_conn *hci_conn_hash_lookup_state(struct hci_dev *hdev,
987
							__u8 type, __u16 state)
988 989 990 991
{
	struct hci_conn_hash *h = &hdev->conn_hash;
	struct hci_conn  *c;

992 993 994 995 996
	rcu_read_lock();

	list_for_each_entry_rcu(c, &h->list, list) {
		if (c->type == type && c->state == state) {
			rcu_read_unlock();
997
			return c;
998
		}
999
	}
1000

1001
	rcu_read_unlock();
1002

1003
	return NULL;
1004 1005
}

1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025
static inline struct hci_conn *hci_lookup_le_connect(struct hci_dev *hdev)
{
	struct hci_conn_hash *h = &hdev->conn_hash;
	struct hci_conn  *c;

	rcu_read_lock();

	list_for_each_entry_rcu(c, &h->list, list) {
		if (c->type == LE_LINK && c->state == BT_CONNECT &&
		    !test_bit(HCI_CONN_SCANNING, &c->flags)) {
			rcu_read_unlock();
			return c;
		}
	}

	rcu_read_unlock();

	return NULL;
}

1026
int hci_disconnect(struct hci_conn *conn, __u8 reason);
1027
bool hci_setup_sync(struct hci_conn *conn, __u16 handle);
1028
void hci_sco_setup(struct hci_conn *conn, __u8 status);
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1030 1031
struct hci_conn *hci_conn_add(struct hci_dev *hdev, int type, bdaddr_t *dst,
			      u8 role);
1032 1033 1034
int hci_conn_del(struct hci_conn *conn);
void hci_conn_hash_flush(struct hci_dev *hdev);
void hci_conn_check_pending(struct hci_dev *hdev);
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1036
struct hci_chan *hci_chan_create(struct hci_conn *conn);
1037
void hci_chan_del(struct hci_chan *chan);
1038
void hci_chan_list_flush(struct hci_conn *conn);
1039
struct hci_chan *hci_chan_lookup_handle(struct hci_dev *hdev, __u16 handle);
1040

1041 1042
struct hci_conn *hci_connect_le_scan(struct hci_dev *hdev, bdaddr_t *dst,
				     u8 dst_type, u8 sec_level,
1043
				     u16 conn_timeout);
1044
struct hci_conn *hci_connect_le(struct hci_dev *hdev, bdaddr_t *dst,
1045
				u8 dst_type, u8 sec_level, u16 conn_timeout,
1046
				u8 role, bdaddr_t *direct_rpa);
1047 1048
struct hci_conn *hci_connect_acl(struct hci_dev *hdev, bdaddr_t *dst,
				 u8 sec_level, u8 auth_type);
1049 1050
struct hci_conn *hci_connect_sco(struct hci_dev *hdev, int type, bdaddr_t *dst,
				 __u16 setting);
1051
int hci_conn_check_link_mode(struct hci_conn *conn);
1052
int hci_conn_check_secure(struct hci_conn *conn, __u8 sec_level);
1053 1054
int hci_conn_security(struct hci_conn *conn, __u8 sec_level, __u8 auth_type,
		      bool initiator);
1055
int hci_conn_switch_role(struct hci_conn *conn, __u8 role);
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1057
void hci_conn_enter_active_mode(struct hci_conn *conn, __u8 force_active);
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1059 1060
void hci_le_conn_failed(struct hci_conn *conn, u8 status);

1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081
/*
 * hci_conn_get() and hci_conn_put() are used to control the life-time of an
 * "hci_conn" object. They do not guarantee that the hci_conn object is running,
 * working or anything else. They just guarantee that the object is available
 * and can be dereferenced. So you can use its locks, local variables and any
 * other constant data.
 * Before accessing runtime data, you _must_ lock the object and then check that
 * it is still running. As soon as you release the locks, the connection might
 * get dropped, though.
 *
 * On the other hand, hci_conn_hold() and hci_conn_drop() are used to control
 * how long the underlying connection is held. So every channel that runs on the
 * hci_conn object calls this to prevent the connection from disappearing. As
 * long as you hold a device, you must also guarantee that you have a valid
 * reference to the device via hci_conn_get() (or the initial reference from
 * hci_conn_add()).
 * The hold()/drop() ref-count is known to drop below 0 sometimes, which doesn't
 * break because nobody cares for that. But this means, we cannot use
 * _get()/_drop() in it, but require the caller to have a valid ref (FIXME).
 */

1082
static inline struct hci_conn *hci_conn_get(struct hci_conn *conn)
1083 1084
{
	get_device(&conn->dev);
1085
	return conn;
1086 1087 1088 1089 1090 1091 1092
}

static inline void hci_conn_put(struct hci_conn *conn)
{
	put_device(&conn->dev);
}

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static inline void hci_conn_hold(struct hci_conn *conn)
{
1095
	BT_DBG("hcon %p orig refcnt %d", conn, atomic_read(&conn->refcnt));
1096

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	atomic_inc(&conn->refcnt);
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	cancel_delayed_work(&conn->disc_work);
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}

1101
static inline void hci_conn_drop(struct hci_conn *conn)
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1102
{
1103
	BT_DBG("hcon %p orig refcnt %d", conn, atomic_read(&conn->refcnt));
1104

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1105
	if (atomic_dec_and_test(&conn->refcnt)) {
1106
		unsigned long timeo;
1107 1108 1109 1110

		switch (conn->type) {
		case ACL_LINK:
		case LE_LINK:
1111
			cancel_delayed_work(&conn->idle_work);
1112
			if (conn->state == BT_CONNECTED) {
1113
				timeo = conn->disc_timeout;
1114
				if (!conn->out)
1115
					timeo *= 2;
1116
			} else {
1117
				timeo = 0;
1118
			}
1119 1120 1121 1122 1123 1124 1125
			break;

		case AMP_LINK:
			timeo = conn->disc_timeout;
			break;

		default:
1126
			timeo = 0;
1127
			break;
1128
		}
1129

A
Andre Guedes 已提交
1130
		cancel_delayed_work(&conn->disc_work);
1131
		queue_delayed_work(conn->hdev->workqueue,
1132
				   &conn->disc_work, timeo);
L
Linus Torvalds 已提交
1133 1134 1135 1136
	}
}

/* ----- HCI Devices ----- */
1137
static inline void hci_dev_put(struct hci_dev *d)
L
Linus Torvalds 已提交
1138
{
1139
	BT_DBG("%s orig refcnt %d", d->name,
1140
	       kref_read(&d->dev.kobj.kref));
1141

1142
	put_device(&d->dev);
L
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1143 1144
}

1145
static inline struct hci_dev *hci_dev_hold(struct hci_dev *d)
L
Linus Torvalds 已提交
1146
{
1147
	BT_DBG("%s orig refcnt %d", d->name,
1148
	       kref_read(&d->dev.kobj.kref));
1149

1150
	get_device(&d->dev);
L
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1151 1152 1153
	return d;
}

1154 1155
#define hci_dev_lock(d)		mutex_lock(&d->lock)
#define hci_dev_unlock(d)	mutex_unlock(&d->lock)
L
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1156

1157
#define to_hci_dev(d) container_of(d, struct hci_dev, dev)
1158
#define to_hci_conn(c) container_of(c, struct hci_conn, dev)
1159

1160 1161 1162 1163 1164 1165 1166 1167 1168 1169
static inline void *hci_get_drvdata(struct hci_dev *hdev)
{
	return dev_get_drvdata(&hdev->dev);
}

static inline void hci_set_drvdata(struct hci_dev *hdev, void *data)
{
	dev_set_drvdata(&hdev->dev, data);
}

L
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1170
struct hci_dev *hci_dev_get(int index);
1171
struct hci_dev *hci_get_route(bdaddr_t *dst, bdaddr_t *src, u8 src_type);
L
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1172 1173 1174 1175

struct hci_dev *hci_alloc_dev(void);
void hci_free_dev(struct hci_dev *hdev);
int hci_register_dev(struct hci_dev *hdev);
1176
void hci_unregister_dev(struct hci_dev *hdev);
L
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1177 1178
int hci_suspend_dev(struct hci_dev *hdev);
int hci_resume_dev(struct hci_dev *hdev);
1179
int hci_reset_dev(struct hci_dev *hdev);
1180 1181
int hci_recv_frame(struct hci_dev *hdev, struct sk_buff *skb);
int hci_recv_diag(struct hci_dev *hdev, struct sk_buff *skb);
1182 1183
__printf(2, 3) void hci_set_hw_info(struct hci_dev *hdev, const char *fmt, ...);
__printf(2, 3) void hci_set_fw_info(struct hci_dev *hdev, const char *fmt, ...);
1184 1185 1186 1187 1188 1189 1190 1191

static inline void hci_set_msft_opcode(struct hci_dev *hdev, __u16 opcode)
{
#if IS_ENABLED(CONFIG_BT_MSFTEXT)
	hdev->msft_opcode = opcode;
#endif
}

L
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1192 1193
int hci_dev_open(__u16 dev);
int hci_dev_close(__u16 dev);
1194
int hci_dev_do_close(struct hci_dev *hdev);
L
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1195 1196 1197 1198 1199 1200 1201
int hci_dev_reset(__u16 dev);
int hci_dev_reset_stat(__u16 dev);
int hci_dev_cmd(unsigned int cmd, void __user *arg);
int hci_get_dev_list(void __user *arg);
int hci_get_dev_info(void __user *arg);
int hci_get_conn_list(void __user *arg);
int hci_get_conn_info(struct hci_dev *hdev, void __user *arg);
1202
int hci_get_auth_info(struct hci_dev *hdev, void __user *arg);
L
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1203 1204
int hci_inquiry(void __user *arg);

1205 1206
struct bdaddr_list *hci_bdaddr_list_lookup(struct list_head *list,
					   bdaddr_t *bdaddr, u8 type);
1207 1208 1209
struct bdaddr_list_with_irk *hci_bdaddr_list_lookup_with_irk(
				    struct list_head *list, bdaddr_t *bdaddr,
				    u8 type);
1210 1211 1212
struct bdaddr_list_with_flags *
hci_bdaddr_list_lookup_with_flags(struct list_head *list, bdaddr_t *bdaddr,
				  u8 type);
1213
int hci_bdaddr_list_add(struct list_head *list, bdaddr_t *bdaddr, u8 type);
1214
int hci_bdaddr_list_add_with_irk(struct list_head *list, bdaddr_t *bdaddr,
1215 1216 1217
				 u8 type, u8 *peer_irk, u8 *local_irk);
int hci_bdaddr_list_add_with_flags(struct list_head *list, bdaddr_t *bdaddr,
				   u8 type, u32 flags);
1218
int hci_bdaddr_list_del(struct list_head *list, bdaddr_t *bdaddr, u8 type);
1219
int hci_bdaddr_list_del_with_irk(struct list_head *list, bdaddr_t *bdaddr,
1220 1221 1222
				 u8 type);
int hci_bdaddr_list_del_with_flags(struct list_head *list, bdaddr_t *bdaddr,
				   u8 type);
1223
void hci_bdaddr_list_clear(struct list_head *list);
1224

1225 1226
struct hci_conn_params *hci_conn_params_lookup(struct hci_dev *hdev,
					       bdaddr_t *addr, u8 addr_type);
1227 1228
struct hci_conn_params *hci_conn_params_add(struct hci_dev *hdev,
					    bdaddr_t *addr, u8 addr_type);
1229
void hci_conn_params_del(struct hci_dev *hdev, bdaddr_t *addr, u8 addr_type);
1230
void hci_conn_params_clear_disabled(struct hci_dev *hdev);
1231

1232 1233 1234
struct hci_conn_params *hci_pend_le_action_lookup(struct list_head *list,
						  bdaddr_t *addr,
						  u8 addr_type);
1235

1236
void hci_uuids_clear(struct hci_dev *hdev);
1237

1238
void hci_link_keys_clear(struct hci_dev *hdev);
1239
struct link_key *hci_find_link_key(struct hci_dev *hdev, bdaddr_t *bdaddr);
1240
struct link_key *hci_add_link_key(struct hci_dev *hdev, struct hci_conn *conn,
1241 1242
				  bdaddr_t *bdaddr, u8 *val, u8 type,
				  u8 pin_len, bool *persistent);
1243
struct smp_ltk *hci_add_ltk(struct hci_dev *hdev, bdaddr_t *bdaddr,
1244
			    u8 addr_type, u8 type, u8 authenticated,
1245
			    u8 tk[16], u8 enc_size, __le16 ediv, __le64 rand);
1246 1247
struct smp_ltk *hci_find_ltk(struct hci_dev *hdev, bdaddr_t *bdaddr,
			     u8 addr_type, u8 role);
1248
int hci_remove_ltk(struct hci_dev *hdev, bdaddr_t *bdaddr, u8 bdaddr_type);
1249
void hci_smp_ltks_clear(struct hci_dev *hdev);
1250 1251
int hci_remove_link_key(struct hci_dev *hdev, bdaddr_t *bdaddr);

1252 1253 1254
struct smp_irk *hci_find_irk_by_rpa(struct hci_dev *hdev, bdaddr_t *rpa);
struct smp_irk *hci_find_irk_by_addr(struct hci_dev *hdev, bdaddr_t *bdaddr,
				     u8 addr_type);
1255 1256
struct smp_irk *hci_add_irk(struct hci_dev *hdev, bdaddr_t *bdaddr,
			    u8 addr_type, u8 val[16], bdaddr_t *rpa);
1257
void hci_remove_irk(struct hci_dev *hdev, bdaddr_t *bdaddr, u8 addr_type);
1258 1259
bool hci_is_blocked_key(struct hci_dev *hdev, u8 type, u8 val[16]);
void hci_blocked_keys_clear(struct hci_dev *hdev);
1260 1261
void hci_smp_irks_clear(struct hci_dev *hdev);

1262 1263
bool hci_bdaddr_is_paired(struct hci_dev *hdev, bdaddr_t *bdaddr, u8 type);

1264
void hci_remote_oob_data_clear(struct hci_dev *hdev);
1265
struct oob_data *hci_find_remote_oob_data(struct hci_dev *hdev,
1266
					  bdaddr_t *bdaddr, u8 bdaddr_type);
1267
int hci_add_remote_oob_data(struct hci_dev *hdev, bdaddr_t *bdaddr,
1268
			    u8 bdaddr_type, u8 *hash192, u8 *rand192,
1269
			    u8 *hash256, u8 *rand256);
1270 1271
int hci_remove_remote_oob_data(struct hci_dev *hdev, bdaddr_t *bdaddr,
			       u8 bdaddr_type);
1272

1273 1274 1275 1276 1277 1278 1279 1280
void hci_adv_instances_clear(struct hci_dev *hdev);
struct adv_info *hci_find_adv_instance(struct hci_dev *hdev, u8 instance);
struct adv_info *hci_get_next_instance(struct hci_dev *hdev, u8 instance);
int hci_add_adv_instance(struct hci_dev *hdev, u8 instance, u32 flags,
			 u16 adv_data_len, u8 *adv_data,
			 u16 scan_rsp_len, u8 *scan_rsp_data,
			 u16 timeout, u16 duration);
int hci_remove_adv_instance(struct hci_dev *hdev, u8 instance);
1281
void hci_adv_instances_set_rpa_expired(struct hci_dev *hdev, bool rpa_expired);
1282

1283 1284
void hci_adv_monitors_clear(struct hci_dev *hdev);

L
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1285 1286
void hci_event_packet(struct hci_dev *hdev, struct sk_buff *skb);

1287
void hci_init_sysfs(struct hci_dev *hdev);
1288
void hci_conn_init_sysfs(struct hci_conn *conn);
1289 1290
void hci_conn_add_sysfs(struct hci_conn *conn);
void hci_conn_del_sysfs(struct hci_conn *conn);
L
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1291

1292
#define SET_HCIDEV_DEV(hdev, pdev) ((hdev)->dev.parent = (pdev))
L
Linus Torvalds 已提交
1293 1294

/* ----- LMP capabilities ----- */
1295 1296 1297 1298 1299 1300 1301 1302 1303 1304 1305 1306 1307 1308 1309 1310 1311 1312
#define lmp_encrypt_capable(dev)   ((dev)->features[0][0] & LMP_ENCRYPT)
#define lmp_rswitch_capable(dev)   ((dev)->features[0][0] & LMP_RSWITCH)
#define lmp_hold_capable(dev)      ((dev)->features[0][0] & LMP_HOLD)
#define lmp_sniff_capable(dev)     ((dev)->features[0][0] & LMP_SNIFF)
#define lmp_park_capable(dev)      ((dev)->features[0][1] & LMP_PARK)
#define lmp_inq_rssi_capable(dev)  ((dev)->features[0][3] & LMP_RSSI_INQ)
#define lmp_esco_capable(dev)      ((dev)->features[0][3] & LMP_ESCO)
#define lmp_bredr_capable(dev)     (!((dev)->features[0][4] & LMP_NO_BREDR))
#define lmp_le_capable(dev)        ((dev)->features[0][4] & LMP_LE)
#define lmp_sniffsubr_capable(dev) ((dev)->features[0][5] & LMP_SNIFF_SUBR)
#define lmp_pause_enc_capable(dev) ((dev)->features[0][5] & LMP_PAUSE_ENC)
#define lmp_ext_inq_capable(dev)   ((dev)->features[0][6] & LMP_EXT_INQ)
#define lmp_le_br_capable(dev)     (!!((dev)->features[0][6] & LMP_SIMUL_LE_BR))
#define lmp_ssp_capable(dev)       ((dev)->features[0][6] & LMP_SIMPLE_PAIR)
#define lmp_no_flush_capable(dev)  ((dev)->features[0][6] & LMP_NO_FLUSH)
#define lmp_lsto_capable(dev)      ((dev)->features[0][7] & LMP_LSTO)
#define lmp_inq_tx_pwr_capable(dev) ((dev)->features[0][7] & LMP_INQ_TX_PWR)
#define lmp_ext_feat_capable(dev)  ((dev)->features[0][7] & LMP_EXTFEATURES)
1313
#define lmp_transp_capable(dev)    ((dev)->features[0][2] & LMP_TRANSPARENT)
1314 1315 1316 1317
#define lmp_edr_2m_capable(dev)    ((dev)->features[0][3] & LMP_EDR_2M)
#define lmp_edr_3m_capable(dev)    ((dev)->features[0][3] & LMP_EDR_3M)
#define lmp_edr_3slot_capable(dev) ((dev)->features[0][4] & LMP_EDR_3SLOT)
#define lmp_edr_5slot_capable(dev) ((dev)->features[0][5] & LMP_EDR_5SLOT)
L
Linus Torvalds 已提交
1318

1319
/* ----- Extended LMP capabilities ----- */
1320 1321 1322 1323
#define lmp_csb_master_capable(dev) ((dev)->features[2][0] & LMP_CSB_MASTER)
#define lmp_csb_slave_capable(dev)  ((dev)->features[2][0] & LMP_CSB_SLAVE)
#define lmp_sync_train_capable(dev) ((dev)->features[2][0] & LMP_SYNC_TRAIN)
#define lmp_sync_scan_capable(dev)  ((dev)->features[2][0] & LMP_SYNC_SCAN)
1324 1325
#define lmp_sc_capable(dev)         ((dev)->features[2][1] & LMP_SC)
#define lmp_ping_capable(dev)       ((dev)->features[2][1] & LMP_PING)
1326 1327

/* ----- Host capabilities ----- */
1328
#define lmp_host_ssp_capable(dev)  ((dev)->features[1][0] & LMP_HOST_SSP)
1329
#define lmp_host_sc_capable(dev)   ((dev)->features[1][0] & LMP_HOST_SC)
1330 1331
#define lmp_host_le_capable(dev)   (!!((dev)->features[1][0] & LMP_HOST_LE))
#define lmp_host_le_br_capable(dev) (!!((dev)->features[1][0] & LMP_HOST_LE_BREDR))
1332

1333 1334 1335 1336
#define hdev_is_powered(dev)   (test_bit(HCI_UP, &(dev)->flags) && \
				!hci_dev_test_flag(dev, HCI_AUTO_OFF))
#define bredr_sc_enabled(dev)  (lmp_sc_capable(dev) && \
				hci_dev_test_flag(dev, HCI_SC_ENABLED))
1337

1338 1339 1340 1341 1342 1343 1344 1345 1346
#define scan_1m(dev) (((dev)->le_tx_def_phys & HCI_LE_SET_PHY_1M) || \
		      ((dev)->le_rx_def_phys & HCI_LE_SET_PHY_1M))

#define scan_2m(dev) (((dev)->le_tx_def_phys & HCI_LE_SET_PHY_2M) || \
		      ((dev)->le_rx_def_phys & HCI_LE_SET_PHY_2M))

#define scan_coded(dev) (((dev)->le_tx_def_phys & HCI_LE_SET_PHY_CODED) || \
			 ((dev)->le_rx_def_phys & HCI_LE_SET_PHY_CODED))

1347 1348 1349
/* Use ext scanning if set ext scan param and ext scan enable is supported */
#define use_ext_scan(dev) (((dev)->commands[37] & 0x20) && \
			   ((dev)->commands[37] & 0x40))
1350 1351
/* Use ext create connection if command is supported */
#define use_ext_conn(dev) ((dev)->commands[37] & 0x80)
1352

1353 1354 1355
/* Extended advertising support */
#define ext_adv_capable(dev) (((dev)->le_features[1] & HCI_LE_EXT_ADV))

L
Linus Torvalds 已提交
1356
/* ----- HCI protocols ----- */
1357 1358
#define HCI_PROTO_DEFER             0x01

1359
static inline int hci_proto_connect_ind(struct hci_dev *hdev, bdaddr_t *bdaddr,
1360
					__u8 type, __u8 *flags)
L
Linus Torvalds 已提交
1361
{
1362 1363 1364
	switch (type) {
	case ACL_LINK:
		return l2cap_connect_ind(hdev, bdaddr);
L
Linus Torvalds 已提交
1365

1366 1367
	case SCO_LINK:
	case ESCO_LINK:
1368
		return sco_connect_ind(hdev, bdaddr, flags);
L
Linus Torvalds 已提交
1369

1370 1371 1372 1373
	default:
		BT_ERR("unknown link type %d", type);
		return -EINVAL;
	}
L
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1374 1375
}

1376
static inline int hci_proto_disconn_ind(struct hci_conn *conn)
L
Linus Torvalds 已提交
1377
{
1378 1379
	if (conn->type != ACL_LINK && conn->type != LE_LINK)
		return HCI_ERROR_REMOTE_USER_TERM;
L
Linus Torvalds 已提交
1380

1381
	return l2cap_disconn_ind(conn);
1382 1383
}

L
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1384 1385 1386 1387 1388 1389
/* ----- HCI callbacks ----- */
struct hci_cb {
	struct list_head list;

	char *name;

1390
	void (*connect_cfm)	(struct hci_conn *conn, __u8 status);
1391
	void (*disconn_cfm)	(struct hci_conn *conn, __u8 status);
1392 1393
	void (*security_cfm)	(struct hci_conn *conn, __u8 status,
								__u8 encrypt);
L
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1394 1395 1396 1397
	void (*key_change_cfm)	(struct hci_conn *conn, __u8 status);
	void (*role_switch_cfm)	(struct hci_conn *conn, __u8 status, __u8 role);
};

1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411 1412
static inline void hci_connect_cfm(struct hci_conn *conn, __u8 status)
{
	struct hci_cb *cb;

	mutex_lock(&hci_cb_list_lock);
	list_for_each_entry(cb, &hci_cb_list, list) {
		if (cb->connect_cfm)
			cb->connect_cfm(conn, status);
	}
	mutex_unlock(&hci_cb_list_lock);

	if (conn->connect_cfm_cb)
		conn->connect_cfm_cb(conn, status);
}

1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424 1425 1426 1427
static inline void hci_disconn_cfm(struct hci_conn *conn, __u8 reason)
{
	struct hci_cb *cb;

	mutex_lock(&hci_cb_list_lock);
	list_for_each_entry(cb, &hci_cb_list, list) {
		if (cb->disconn_cfm)
			cb->disconn_cfm(conn, reason);
	}
	mutex_unlock(&hci_cb_list_lock);

	if (conn->disconn_cfm_cb)
		conn->disconn_cfm_cb(conn, reason);
}

L
Linus Torvalds 已提交
1428 1429
static inline void hci_auth_cfm(struct hci_conn *conn, __u8 status)
{
1430
	struct hci_cb *cb;
1431
	__u8 encrypt;
L
Linus Torvalds 已提交
1432

1433
	if (test_bit(HCI_CONN_ENCRYPT_PEND, &conn->flags))
1434 1435
		return;

1436
	encrypt = test_bit(HCI_CONN_ENCRYPT, &conn->flags) ? 0x01 : 0x00;
1437

1438
	mutex_lock(&hci_cb_list_lock);
1439
	list_for_each_entry(cb, &hci_cb_list, list) {
1440 1441
		if (cb->security_cfm)
			cb->security_cfm(conn, status, encrypt);
L
Linus Torvalds 已提交
1442
	}
1443
	mutex_unlock(&hci_cb_list_lock);
1444 1445 1446

	if (conn->security_cfm_cb)
		conn->security_cfm_cb(conn, status);
L
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1447 1448
}

1449
static inline void hci_encrypt_cfm(struct hci_conn *conn, __u8 status)
L
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1450
{
1451
	struct hci_cb *cb;
1452 1453 1454 1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468
	__u8 encrypt;

	if (conn->state == BT_CONFIG) {
		if (status)
			conn->state = BT_CONNECTED;

		hci_connect_cfm(conn, status);
		hci_conn_drop(conn);
		return;
	}

	if (!test_bit(HCI_CONN_ENCRYPT, &conn->flags))
		encrypt = 0x00;
	else if (test_bit(HCI_CONN_AES_CCM, &conn->flags))
		encrypt = 0x02;
	else
		encrypt = 0x01;
L
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1469

1470 1471 1472
	if (conn->sec_level == BT_SECURITY_SDP)
		conn->sec_level = BT_SECURITY_LOW;

1473 1474 1475
	if (conn->pending_sec_level > conn->sec_level)
		conn->sec_level = conn->pending_sec_level;

1476
	mutex_lock(&hci_cb_list_lock);
1477
	list_for_each_entry(cb, &hci_cb_list, list) {
1478 1479
		if (cb->security_cfm)
			cb->security_cfm(conn, status, encrypt);
L
Linus Torvalds 已提交
1480
	}
1481
	mutex_unlock(&hci_cb_list_lock);
1482 1483 1484

	if (conn->security_cfm_cb)
		conn->security_cfm_cb(conn, status);
L
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1485 1486 1487 1488
}

static inline void hci_key_change_cfm(struct hci_conn *conn, __u8 status)
{
1489
	struct hci_cb *cb;
L
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1490

1491
	mutex_lock(&hci_cb_list_lock);
1492
	list_for_each_entry(cb, &hci_cb_list, list) {
L
Linus Torvalds 已提交
1493 1494 1495
		if (cb->key_change_cfm)
			cb->key_change_cfm(conn, status);
	}
1496
	mutex_unlock(&hci_cb_list_lock);
L
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1497 1498
}

1499 1500
static inline void hci_role_switch_cfm(struct hci_conn *conn, __u8 status,
								__u8 role)
L
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1501
{
1502
	struct hci_cb *cb;
L
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1503

1504
	mutex_lock(&hci_cb_list_lock);
1505
	list_for_each_entry(cb, &hci_cb_list, list) {
L
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1506 1507 1508
		if (cb->role_switch_cfm)
			cb->role_switch_cfm(conn, status, role);
	}
1509
	mutex_unlock(&hci_cb_list_lock);
L
Linus Torvalds 已提交
1510 1511
}

1512 1513
static inline void *eir_get_data(u8 *eir, size_t eir_len, u8 type,
				 size_t *data_len)
1514
{
1515
	size_t parsed = 0;
1516

1517 1518
	if (eir_len < 2)
		return NULL;
1519

1520 1521
	while (parsed < eir_len - 1) {
		u8 field_len = eir[0];
1522 1523 1524 1525 1526 1527

		if (field_len == 0)
			break;

		parsed += field_len + 1;

1528
		if (parsed > eir_len)
1529 1530
			break;

1531 1532 1533 1534 1535 1536 1537 1538
		if (eir[1] != type) {
			eir += field_len + 1;
			continue;
		}

		/* Zero length data */
		if (field_len == 1)
			return NULL;
1539

1540 1541 1542 1543
		if (data_len)
			*data_len = field_len - 1;

		return &eir[2];
1544 1545
	}

1546
	return NULL;
1547 1548
}

1549 1550
static inline bool hci_bdaddr_is_rpa(bdaddr_t *bdaddr, u8 addr_type)
{
1551
	if (addr_type != ADDR_LE_DEV_RANDOM)
1552 1553 1554 1555 1556 1557 1558 1559
		return false;

	if ((bdaddr->b[5] & 0xc0) == 0x40)
	       return true;

	return false;
}

1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571
static inline bool hci_is_identity_address(bdaddr_t *addr, u8 addr_type)
{
	if (addr_type == ADDR_LE_DEV_PUBLIC)
		return true;

	/* Check for Random Static address type */
	if ((addr->b[5] & 0xc0) == 0xc0)
		return true;

	return false;
}

1572 1573 1574 1575 1576 1577 1578 1579 1580
static inline struct smp_irk *hci_get_irk(struct hci_dev *hdev,
					  bdaddr_t *bdaddr, u8 addr_type)
{
	if (!hci_bdaddr_is_rpa(bdaddr, addr_type))
		return NULL;

	return hci_find_irk_by_rpa(hdev, bdaddr);
}

1581 1582 1583 1584 1585 1586 1587 1588 1589 1590 1591 1592 1593 1594
static inline int hci_check_conn_params(u16 min, u16 max, u16 latency,
					u16 to_multiplier)
{
	u16 max_latency;

	if (min > max || min < 6 || max > 3200)
		return -EINVAL;

	if (to_multiplier < 10 || to_multiplier > 3200)
		return -EINVAL;

	if (max >= to_multiplier * 8)
		return -EINVAL;

1595
	max_latency = (to_multiplier * 4 / max) - 1;
1596 1597 1598 1599 1600 1601
	if (latency > 499 || latency > max_latency)
		return -EINVAL;

	return 0;
}

L
Linus Torvalds 已提交
1602 1603 1604
int hci_register_cb(struct hci_cb *hcb);
int hci_unregister_cb(struct hci_cb *hcb);

1605
struct sk_buff *__hci_cmd_sync(struct hci_dev *hdev, u16 opcode, u32 plen,
1606
			       const void *param, u32 timeout);
1607
struct sk_buff *__hci_cmd_sync_ev(struct hci_dev *hdev, u16 opcode, u32 plen,
1608
				  const void *param, u8 event, u32 timeout);
1609 1610
int __hci_cmd_send(struct hci_dev *hdev, u16 opcode, u32 plen,
		   const void *param);
1611

1612 1613
int hci_send_cmd(struct hci_dev *hdev, __u16 opcode, __u32 plen,
		 const void *param);
1614
void hci_send_acl(struct hci_chan *chan, struct sk_buff *skb, __u16 flags);
1615
void hci_send_sco(struct hci_conn *conn, struct sk_buff *skb);
L
Linus Torvalds 已提交
1616

1617
void *hci_sent_cmd_data(struct hci_dev *hdev, __u16 opcode);
L
Linus Torvalds 已提交
1618

1619 1620 1621
struct sk_buff *hci_cmd_sync(struct hci_dev *hdev, u16 opcode, u32 plen,
			     const void *param, u32 timeout);

1622 1623
u32 hci_conn_get_phy(struct hci_conn *conn);

L
Linus Torvalds 已提交
1624
/* ----- HCI Sockets ----- */
1625
void hci_send_to_sock(struct hci_dev *hdev, struct sk_buff *skb);
1626
void hci_send_to_channel(unsigned short channel, struct sk_buff *skb,
1627
			 int flag, struct sock *skip_sk);
1628
void hci_send_to_monitor(struct hci_dev *hdev, struct sk_buff *skb);
1629 1630 1631
void hci_send_monitor_ctrl_event(struct hci_dev *hdev, u16 event,
				 void *data, u16 data_len, ktime_t tstamp,
				 int flag, struct sock *skip_sk);
L
Linus Torvalds 已提交
1632

1633 1634
void hci_sock_dev_event(struct hci_dev *hdev, int event);

1635 1636 1637 1638
#define HCI_MGMT_VAR_LEN	BIT(0)
#define HCI_MGMT_NO_HDEV	BIT(1)
#define HCI_MGMT_UNTRUSTED	BIT(2)
#define HCI_MGMT_UNCONFIGURED	BIT(3)
1639
#define HCI_MGMT_HDEV_OPTIONAL	BIT(4)
1640

1641 1642 1643 1644
struct hci_mgmt_handler {
	int (*func) (struct sock *sk, struct hci_dev *hdev, void *data,
		     u16 data_len);
	size_t data_len;
1645
	unsigned long flags;
1646 1647 1648 1649 1650 1651 1652
};

struct hci_mgmt_chan {
	struct list_head list;
	unsigned short channel;
	size_t handler_count;
	const struct hci_mgmt_handler *handlers;
1653
	void (*hdev_init) (struct sock *sk, struct hci_dev *hdev);
1654 1655 1656 1657 1658
};

int hci_mgmt_chan_register(struct hci_mgmt_chan *c);
void hci_mgmt_chan_unregister(struct hci_mgmt_chan *c);

1659
/* Management interface */
1660 1661 1662 1663 1664 1665
#define DISCOV_TYPE_BREDR		(BIT(BDADDR_BREDR))
#define DISCOV_TYPE_LE			(BIT(BDADDR_LE_PUBLIC) | \
					 BIT(BDADDR_LE_RANDOM))
#define DISCOV_TYPE_INTERLEAVED		(BIT(BDADDR_BREDR) | \
					 BIT(BDADDR_LE_PUBLIC) | \
					 BIT(BDADDR_LE_RANDOM))
1666

1667 1668 1669 1670 1671
/* These LE scan and inquiry parameters were chosen according to LE General
 * Discovery Procedure specification.
 */
#define DISCOV_LE_SCAN_WIN		0x12
#define DISCOV_LE_SCAN_INT		0x12
1672
#define DISCOV_LE_TIMEOUT		10240	/* msec */
1673
#define DISCOV_INTERLEAVED_TIMEOUT	5120	/* msec */
1674 1675
#define DISCOV_INTERLEAVED_INQUIRY_LEN	0x04
#define DISCOV_BREDR_INQUIRY_LEN	0x08
1676
#define DISCOV_LE_RESTART_DELAY		msecs_to_jiffies(200)	/* msec */
1677 1678
#define DISCOV_LE_FAST_ADV_INT_MIN     100     /* msec */
#define DISCOV_LE_FAST_ADV_INT_MAX     150     /* msec */
1679

1680
void mgmt_fill_version_info(void *ver);
1681
int mgmt_new_settings(struct hci_dev *hdev);
1682 1683
void mgmt_index_added(struct hci_dev *hdev);
void mgmt_index_removed(struct hci_dev *hdev);
1684
void mgmt_set_powered_failed(struct hci_dev *hdev, int err);
1685 1686
void mgmt_power_on(struct hci_dev *hdev, int err);
void __mgmt_power_off(struct hci_dev *hdev);
1687 1688
void mgmt_new_link_key(struct hci_dev *hdev, struct link_key *key,
		       bool persistent);
1689 1690
void mgmt_device_connected(struct hci_dev *hdev, struct hci_conn *conn,
			   u32 flags, u8 *name, u8 name_len);
1691
void mgmt_device_disconnected(struct hci_dev *hdev, bdaddr_t *bdaddr,
1692 1693
			      u8 link_type, u8 addr_type, u8 reason,
			      bool mgmt_connected);
1694 1695
void mgmt_disconnect_failed(struct hci_dev *hdev, bdaddr_t *bdaddr,
			    u8 link_type, u8 addr_type, u8 status);
1696 1697
void mgmt_connect_failed(struct hci_dev *hdev, bdaddr_t *bdaddr, u8 link_type,
			 u8 addr_type, u8 status);
1698
void mgmt_pin_code_request(struct hci_dev *hdev, bdaddr_t *bdaddr, u8 secure);
1699 1700
void mgmt_pin_code_reply_complete(struct hci_dev *hdev, bdaddr_t *bdaddr,
				  u8 status);
1701 1702
void mgmt_pin_code_neg_reply_complete(struct hci_dev *hdev, bdaddr_t *bdaddr,
				      u8 status);
1703
int mgmt_user_confirm_request(struct hci_dev *hdev, bdaddr_t *bdaddr,
1704
			      u8 link_type, u8 addr_type, u32 value,
1705
			      u8 confirm_hint);
1706
int mgmt_user_confirm_reply_complete(struct hci_dev *hdev, bdaddr_t *bdaddr,
1707
				     u8 link_type, u8 addr_type, u8 status);
1708
int mgmt_user_confirm_neg_reply_complete(struct hci_dev *hdev, bdaddr_t *bdaddr,
1709
					 u8 link_type, u8 addr_type, u8 status);
1710
int mgmt_user_passkey_request(struct hci_dev *hdev, bdaddr_t *bdaddr,
1711
			      u8 link_type, u8 addr_type);
1712
int mgmt_user_passkey_reply_complete(struct hci_dev *hdev, bdaddr_t *bdaddr,
1713
				     u8 link_type, u8 addr_type, u8 status);
1714
int mgmt_user_passkey_neg_reply_complete(struct hci_dev *hdev, bdaddr_t *bdaddr,
1715
					 u8 link_type, u8 addr_type, u8 status);
1716 1717 1718
int mgmt_user_passkey_notify(struct hci_dev *hdev, bdaddr_t *bdaddr,
			     u8 link_type, u8 addr_type, u32 passkey,
			     u8 entered);
1719
void mgmt_auth_failed(struct hci_conn *conn, u8 status);
1720
void mgmt_auth_enable_complete(struct hci_dev *hdev, u8 status);
1721
void mgmt_ssp_enable_complete(struct hci_dev *hdev, u8 enable, u8 status);
1722 1723
void mgmt_set_class_of_dev_complete(struct hci_dev *hdev, u8 *dev_class,
				    u8 status);
1724
void mgmt_set_local_name_complete(struct hci_dev *hdev, u8 *name, u8 status);
1725
void mgmt_start_discovery_complete(struct hci_dev *hdev, u8 status);
1726
void mgmt_stop_discovery_complete(struct hci_dev *hdev, u8 status);
1727
void mgmt_device_found(struct hci_dev *hdev, bdaddr_t *bdaddr, u8 link_type,
1728 1729
		       u8 addr_type, u8 *dev_class, s8 rssi, u32 flags,
		       u8 *eir, u16 eir_len, u8 *scan_rsp, u8 scan_rsp_len);
1730 1731
void mgmt_remote_name(struct hci_dev *hdev, bdaddr_t *bdaddr, u8 link_type,
		      u8 addr_type, s8 rssi, u8 *name, u8 name_len);
1732
void mgmt_discovering(struct hci_dev *hdev, u8 discovering);
1733
bool mgmt_powering_down(struct hci_dev *hdev);
1734
void mgmt_new_ltk(struct hci_dev *hdev, struct smp_ltk *key, bool persistent);
1735
void mgmt_new_irk(struct hci_dev *hdev, struct smp_irk *irk, bool persistent);
1736 1737
void mgmt_new_csrk(struct hci_dev *hdev, struct smp_csrk *csrk,
		   bool persistent);
1738
void mgmt_new_conn_param(struct hci_dev *hdev, bdaddr_t *bdaddr,
1739 1740
			 u8 bdaddr_type, u8 store_hint, u16 min_interval,
			 u16 max_interval, u16 latency, u16 timeout);
1741
void mgmt_smp_complete(struct hci_conn *conn, bool complete);
1742
bool mgmt_get_connectable(struct hci_dev *hdev);
1743
void mgmt_set_connectable_complete(struct hci_dev *hdev, u8 status);
1744
void mgmt_set_discoverable_complete(struct hci_dev *hdev, u8 status);
1745 1746 1747 1748 1749
u8 mgmt_get_adv_discov_flags(struct hci_dev *hdev);
void mgmt_advertising_added(struct sock *sk, struct hci_dev *hdev,
			    u8 instance);
void mgmt_advertising_removed(struct sock *sk, struct hci_dev *hdev,
			      u8 instance);
1750
int mgmt_phy_configuration_changed(struct hci_dev *hdev, struct sock *skip);
1751

1752 1753
u8 hci_le_conn_update(struct hci_conn *conn, u16 min, u16 max, u16 latency,
		      u16 to_multiplier);
1754
void hci_le_start_enc(struct hci_conn *conn, __le16 ediv, __le64 rand,
1755
		      __u8 ltk[16], __u8 key_size);
A
Andre Guedes 已提交
1756

1757 1758
void hci_copy_identity_address(struct hci_dev *hdev, bdaddr_t *bdaddr,
			       u8 *bdaddr_type);
1759

1760 1761 1762 1763
#define SCO_AIRMODE_MASK       0x0003
#define SCO_AIRMODE_CVSD       0x0000
#define SCO_AIRMODE_TRANSP     0x0003

L
Linus Torvalds 已提交
1764
#endif /* __HCI_CORE_H */