hci_conn.c 21.6 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.
*/

/* Bluetooth HCI connection handling. */

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#include <linux/export.h>
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#include <net/bluetooth/bluetooth.h>
#include <net/bluetooth/hci_core.h>
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#include <net/bluetooth/a2mp.h>
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static void hci_le_connect(struct hci_conn *conn)
{
	struct hci_dev *hdev = conn->hdev;
	struct hci_cp_le_create_conn cp;

	conn->state = BT_CONNECT;
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	conn->out = true;
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	conn->link_mode |= HCI_LM_MASTER;
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	conn->sec_level = BT_SECURITY_LOW;
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	memset(&cp, 0, sizeof(cp));
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	cp.scan_interval = __constant_cpu_to_le16(0x0060);
	cp.scan_window = __constant_cpu_to_le16(0x0030);
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	bacpy(&cp.peer_addr, &conn->dst);
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	cp.peer_addr_type = conn->dst_type;
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	cp.conn_interval_min = __constant_cpu_to_le16(0x0028);
	cp.conn_interval_max = __constant_cpu_to_le16(0x0038);
	cp.supervision_timeout = __constant_cpu_to_le16(0x002a);
	cp.min_ce_len = __constant_cpu_to_le16(0x0000);
	cp.max_ce_len = __constant_cpu_to_le16(0x0000);
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	hci_send_cmd(hdev, HCI_OP_LE_CREATE_CONN, sizeof(cp), &cp);
}

static void hci_le_connect_cancel(struct hci_conn *conn)
{
	hci_send_cmd(conn->hdev, HCI_OP_LE_CREATE_CONN_CANCEL, 0, NULL);
}

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void hci_acl_connect(struct hci_conn *conn)
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{
	struct hci_dev *hdev = conn->hdev;
	struct inquiry_entry *ie;
	struct hci_cp_create_conn cp;

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	BT_DBG("hcon %p", conn);
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	conn->state = BT_CONNECT;
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	conn->out = true;
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	conn->link_mode = HCI_LM_MASTER;

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	conn->attempt++;

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	conn->link_policy = hdev->link_policy;

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	memset(&cp, 0, sizeof(cp));
	bacpy(&cp.bdaddr, &conn->dst);
	cp.pscan_rep_mode = 0x02;

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	ie = hci_inquiry_cache_lookup(hdev, &conn->dst);
	if (ie) {
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		if (inquiry_entry_age(ie) <= INQUIRY_ENTRY_AGE_MAX) {
			cp.pscan_rep_mode = ie->data.pscan_rep_mode;
			cp.pscan_mode     = ie->data.pscan_mode;
			cp.clock_offset   = ie->data.clock_offset |
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					    __constant_cpu_to_le16(0x8000);
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		}

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		memcpy(conn->dev_class, ie->data.dev_class, 3);
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		if (ie->data.ssp_mode > 0)
			set_bit(HCI_CONN_SSP_ENABLED, &conn->flags);
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	}

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	cp.pkt_type = cpu_to_le16(conn->pkt_type);
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	if (lmp_rswitch_capable(hdev) && !(hdev->link_mode & HCI_LM_MASTER))
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		cp.role_switch = 0x01;
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	else
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		cp.role_switch = 0x00;
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	hci_send_cmd(hdev, HCI_OP_CREATE_CONN, sizeof(cp), &cp);
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}

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static void hci_acl_connect_cancel(struct hci_conn *conn)
{
	struct hci_cp_create_conn_cancel cp;

	BT_DBG("%p", conn);

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	if (conn->hdev->hci_ver < BLUETOOTH_VER_1_2)
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		return;

	bacpy(&cp.bdaddr, &conn->dst);
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	hci_send_cmd(conn->hdev, HCI_OP_CREATE_CONN_CANCEL, sizeof(cp), &cp);
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}

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void hci_acl_disconn(struct hci_conn *conn, __u8 reason)
{
	struct hci_cp_disconnect cp;

	BT_DBG("%p", conn);

	conn->state = BT_DISCONN;

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	cp.handle = cpu_to_le16(conn->handle);
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	cp.reason = reason;
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	hci_send_cmd(conn->hdev, HCI_OP_DISCONNECT, sizeof(cp), &cp);
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}

void hci_add_sco(struct hci_conn *conn, __u16 handle)
{
	struct hci_dev *hdev = conn->hdev;
	struct hci_cp_add_sco cp;

	BT_DBG("%p", conn);

	conn->state = BT_CONNECT;
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	conn->out = true;
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	conn->attempt++;

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	cp.handle   = cpu_to_le16(handle);
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	cp.pkt_type = cpu_to_le16(conn->pkt_type);
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	hci_send_cmd(hdev, HCI_OP_ADD_SCO, sizeof(cp), &cp);
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}

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void hci_setup_sync(struct hci_conn *conn, __u16 handle)
{
	struct hci_dev *hdev = conn->hdev;
	struct hci_cp_setup_sync_conn cp;

	BT_DBG("%p", conn);

	conn->state = BT_CONNECT;
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	conn->out = true;
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	conn->attempt++;

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	cp.handle   = cpu_to_le16(handle);
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	cp.pkt_type = cpu_to_le16(conn->pkt_type);
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	cp.tx_bandwidth   = __constant_cpu_to_le32(0x00001f40);
	cp.rx_bandwidth   = __constant_cpu_to_le32(0x00001f40);
	cp.max_latency    = __constant_cpu_to_le16(0xffff);
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	cp.voice_setting  = cpu_to_le16(hdev->voice_setting);
	cp.retrans_effort = 0xff;

	hci_send_cmd(hdev, HCI_OP_SETUP_SYNC_CONN, sizeof(cp), &cp);
}

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void hci_le_conn_update(struct hci_conn *conn, u16 min, u16 max,
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			u16 latency, u16 to_multiplier)
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{
	struct hci_cp_le_conn_update cp;
	struct hci_dev *hdev = conn->hdev;

	memset(&cp, 0, sizeof(cp));

	cp.handle		= cpu_to_le16(conn->handle);
	cp.conn_interval_min	= cpu_to_le16(min);
	cp.conn_interval_max	= cpu_to_le16(max);
	cp.conn_latency		= cpu_to_le16(latency);
	cp.supervision_timeout	= cpu_to_le16(to_multiplier);
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	cp.min_ce_len		= __constant_cpu_to_le16(0x0001);
	cp.max_ce_len		= __constant_cpu_to_le16(0x0001);
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	hci_send_cmd(hdev, HCI_OP_LE_CONN_UPDATE, sizeof(cp), &cp);
}

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void hci_le_start_enc(struct hci_conn *conn, __le16 ediv, __u8 rand[8],
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		      __u8 ltk[16])
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{
	struct hci_dev *hdev = conn->hdev;
	struct hci_cp_le_start_enc cp;

	BT_DBG("%p", conn);

	memset(&cp, 0, sizeof(cp));

	cp.handle = cpu_to_le16(conn->handle);
	memcpy(cp.ltk, ltk, sizeof(cp.ltk));
	cp.ediv = ediv;
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	memcpy(cp.rand, rand, sizeof(cp.rand));
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	hci_send_cmd(hdev, HCI_OP_LE_START_ENC, sizeof(cp), &cp);
}

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/* Device _must_ be locked */
void hci_sco_setup(struct hci_conn *conn, __u8 status)
{
	struct hci_conn *sco = conn->link;

	BT_DBG("%p", conn);

	if (!sco)
		return;

	if (!status) {
		if (lmp_esco_capable(conn->hdev))
			hci_setup_sync(sco, conn->handle);
		else
			hci_add_sco(sco, conn->handle);
	} else {
		hci_proto_connect_cfm(sco, status);
		hci_conn_del(sco);
	}
}

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static void hci_conn_timeout(struct work_struct *work)
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{
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	struct hci_conn *conn = container_of(work, struct hci_conn,
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					     disc_work.work);
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	__u8 reason;
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	BT_DBG("conn %p state %s", conn, state_to_string(conn->state));
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	if (atomic_read(&conn->refcnt))
		return;

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	switch (conn->state) {
	case BT_CONNECT:
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	case BT_CONNECT2:
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		if (conn->out) {
			if (conn->type == ACL_LINK)
				hci_acl_connect_cancel(conn);
			else if (conn->type == LE_LINK)
				hci_le_connect_cancel(conn);
		}
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		break;
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	case BT_CONFIG:
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	case BT_CONNECTED:
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		reason = hci_proto_disconn_ind(conn);
		hci_acl_disconn(conn, reason);
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		break;
	default:
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		conn->state = BT_CLOSED;
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		break;
	}
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}

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/* Enter sniff mode */
static void hci_conn_enter_sniff_mode(struct hci_conn *conn)
{
	struct hci_dev *hdev = conn->hdev;

	BT_DBG("conn %p mode %d", conn, conn->mode);

	if (test_bit(HCI_RAW, &hdev->flags))
		return;

	if (!lmp_sniff_capable(hdev) || !lmp_sniff_capable(conn))
		return;

	if (conn->mode != HCI_CM_ACTIVE || !(conn->link_policy & HCI_LP_SNIFF))
		return;

	if (lmp_sniffsubr_capable(hdev) && lmp_sniffsubr_capable(conn)) {
		struct hci_cp_sniff_subrate cp;
		cp.handle             = cpu_to_le16(conn->handle);
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		cp.max_latency        = __constant_cpu_to_le16(0);
		cp.min_remote_timeout = __constant_cpu_to_le16(0);
		cp.min_local_timeout  = __constant_cpu_to_le16(0);
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		hci_send_cmd(hdev, HCI_OP_SNIFF_SUBRATE, sizeof(cp), &cp);
	}

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	if (!test_and_set_bit(HCI_CONN_MODE_CHANGE_PEND, &conn->flags)) {
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		struct hci_cp_sniff_mode cp;
		cp.handle       = cpu_to_le16(conn->handle);
		cp.max_interval = cpu_to_le16(hdev->sniff_max_interval);
		cp.min_interval = cpu_to_le16(hdev->sniff_min_interval);
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		cp.attempt      = __constant_cpu_to_le16(4);
		cp.timeout      = __constant_cpu_to_le16(1);
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		hci_send_cmd(hdev, HCI_OP_SNIFF_MODE, sizeof(cp), &cp);
	}
}

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static void hci_conn_idle(unsigned long arg)
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{
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	struct hci_conn *conn = (void *) arg;

	BT_DBG("conn %p mode %d", conn, conn->mode);

	hci_conn_enter_sniff_mode(conn);
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}

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static void hci_conn_auto_accept(unsigned long arg)
{
	struct hci_conn *conn = (void *) arg;
	struct hci_dev *hdev = conn->hdev;

	hci_send_cmd(hdev, HCI_OP_USER_CONFIRM_REPLY, sizeof(conn->dst),
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		     &conn->dst);
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}

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struct hci_conn *hci_conn_add(struct hci_dev *hdev, int type, bdaddr_t *dst)
{
	struct hci_conn *conn;

	BT_DBG("%s dst %s", hdev->name, batostr(dst));

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	conn = kzalloc(sizeof(struct hci_conn), GFP_KERNEL);
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	if (!conn)
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		return NULL;

	bacpy(&conn->dst, dst);
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	conn->hdev  = hdev;
	conn->type  = type;
	conn->mode  = HCI_CM_ACTIVE;
	conn->state = BT_OPEN;
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	conn->auth_type = HCI_AT_GENERAL_BONDING;
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	conn->io_capability = hdev->io_capability;
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	conn->remote_auth = 0xff;
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	conn->key_type = 0xff;
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	set_bit(HCI_CONN_POWER_SAVE, &conn->flags);
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	conn->disc_timeout = HCI_DISCONN_TIMEOUT;
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	switch (type) {
	case ACL_LINK:
		conn->pkt_type = hdev->pkt_type & ACL_PTYPE_MASK;
		break;
	case SCO_LINK:
		if (lmp_esco_capable(hdev))
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			conn->pkt_type = (hdev->esco_type & SCO_ESCO_MASK) |
					(hdev->esco_type & EDR_ESCO_MASK);
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		else
			conn->pkt_type = hdev->pkt_type & SCO_PTYPE_MASK;
		break;
	case ESCO_LINK:
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		conn->pkt_type = hdev->esco_type & ~EDR_ESCO_MASK;
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		break;
	}

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	skb_queue_head_init(&conn->data_q);
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	INIT_LIST_HEAD(&conn->chan_list);
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	INIT_DELAYED_WORK(&conn->disc_work, hci_conn_timeout);
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	setup_timer(&conn->idle_timer, hci_conn_idle, (unsigned long)conn);
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	setup_timer(&conn->auto_accept_timer, hci_conn_auto_accept,
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		    (unsigned long) conn);
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	atomic_set(&conn->refcnt, 0);

	hci_dev_hold(hdev);

	hci_conn_hash_add(hdev, conn);
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	if (hdev->notify)
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		hdev->notify(hdev, HCI_NOTIFY_CONN_ADD);

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	atomic_set(&conn->devref, 0);

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	hci_conn_init_sysfs(conn);

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	return conn;
}

int hci_conn_del(struct hci_conn *conn)
{
	struct hci_dev *hdev = conn->hdev;

	BT_DBG("%s conn %p handle %d", hdev->name, conn, conn->handle);

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	del_timer(&conn->idle_timer);

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	cancel_delayed_work_sync(&conn->disc_work);
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	del_timer(&conn->auto_accept_timer);

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	if (conn->type == ACL_LINK) {
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		struct hci_conn *sco = conn->link;
		if (sco)
			sco->link = NULL;

		/* Unacked frames */
		hdev->acl_cnt += conn->sent;
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	} else if (conn->type == LE_LINK) {
		if (hdev->le_pkts)
			hdev->le_cnt += conn->sent;
		else
			hdev->acl_cnt += conn->sent;
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	} else {
		struct hci_conn *acl = conn->link;
		if (acl) {
			acl->link = NULL;
			hci_conn_put(acl);
		}
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	}

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	hci_chan_list_flush(conn);
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	if (conn->amp_mgr)
		amp_mgr_put(conn->amp_mgr);

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	hci_conn_hash_del(hdev, conn);
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	if (hdev->notify)
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		hdev->notify(hdev, HCI_NOTIFY_CONN_DEL);
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	skb_queue_purge(&conn->data_q);

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	hci_conn_put_device(conn);
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	hci_dev_put(hdev);

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	if (conn->handle == 0)
		kfree(conn);

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	return 0;
}

struct hci_dev *hci_get_route(bdaddr_t *dst, bdaddr_t *src)
{
	int use_src = bacmp(src, BDADDR_ANY);
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	struct hci_dev *hdev = NULL, *d;
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	BT_DBG("%s -> %s", batostr(src), batostr(dst));

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	read_lock(&hci_dev_list_lock);
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	list_for_each_entry(d, &hci_dev_list, list) {
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		if (!test_bit(HCI_UP, &d->flags) ||
		    test_bit(HCI_RAW, &d->flags))
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			continue;

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		/* Simple routing:
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		 *   No source address - find interface with bdaddr != dst
		 *   Source address    - find interface with bdaddr == src
		 */

		if (use_src) {
			if (!bacmp(&d->bdaddr, src)) {
				hdev = d; break;
			}
		} else {
			if (bacmp(&d->bdaddr, dst)) {
				hdev = d; break;
			}
		}
	}

	if (hdev)
		hdev = hci_dev_hold(hdev);

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	read_unlock(&hci_dev_list_lock);
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	return hdev;
}
EXPORT_SYMBOL(hci_get_route);

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/* Create SCO, ACL or LE connection.
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 * Device _must_ be locked */
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struct hci_conn *hci_connect(struct hci_dev *hdev, int type, bdaddr_t *dst,
			     __u8 dst_type, __u8 sec_level, __u8 auth_type)
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{
	struct hci_conn *acl;
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	struct hci_conn *sco;
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	struct hci_conn *le;
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	BT_DBG("%s dst %s", hdev->name, batostr(dst));

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	if (type == LE_LINK) {
		le = hci_conn_hash_lookup_ba(hdev, LE_LINK, dst);
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		if (!le) {
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			le = hci_conn_hash_lookup_state(hdev, LE_LINK,
							BT_CONNECT);
			if (le)
				return ERR_PTR(-EBUSY);

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			le = hci_conn_add(hdev, LE_LINK, dst);
			if (!le)
				return ERR_PTR(-ENOMEM);

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			le->dst_type = bdaddr_to_le(dst_type);
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			hci_le_connect(le);
		}
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		le->pending_sec_level = sec_level;
		le->auth_type = auth_type;
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		hci_conn_hold(le);

		return le;
	}

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	acl = hci_conn_hash_lookup_ba(hdev, ACL_LINK, dst);
	if (!acl) {
		acl = hci_conn_add(hdev, ACL_LINK, dst);
		if (!acl)
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			return ERR_PTR(-ENOMEM);
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	}

	hci_conn_hold(acl);

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	if (acl->state == BT_OPEN || acl->state == BT_CLOSED) {
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		acl->sec_level = BT_SECURITY_LOW;
		acl->pending_sec_level = sec_level;
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		acl->auth_type = auth_type;
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		hci_acl_connect(acl);
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	}
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	if (type == ACL_LINK)
		return acl;
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	sco = hci_conn_hash_lookup_ba(hdev, type, dst);
	if (!sco) {
		sco = hci_conn_add(hdev, type, dst);
		if (!sco) {
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			hci_conn_put(acl);
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			return ERR_PTR(-ENOMEM);
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		}
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	}
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	acl->link = sco;
	sco->link = acl;
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	hci_conn_hold(sco);
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	if (acl->state == BT_CONNECTED &&
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	    (sco->state == BT_OPEN || sco->state == BT_CLOSED)) {
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		set_bit(HCI_CONN_POWER_SAVE, &acl->flags);
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		hci_conn_enter_active_mode(acl, BT_POWER_FORCE_ACTIVE_ON);
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		if (test_bit(HCI_CONN_MODE_CHANGE_PEND, &acl->flags)) {
546
			/* defer SCO setup until mode change completed */
547
			set_bit(HCI_CONN_SCO_SETUP_PEND, &acl->flags);
548 549 550 551
			return sco;
		}

		hci_sco_setup(acl, 0x00);
552
	}
553 554

	return sco;
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Linus Torvalds 已提交
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}

557 558 559 560 561
/* Check link security requirement */
int hci_conn_check_link_mode(struct hci_conn *conn)
{
	BT_DBG("conn %p", conn);

562
	if (hci_conn_ssp_enabled(conn) && !(conn->link_mode & HCI_LM_ENCRYPT))
563 564 565 566 567
		return 0;

	return 1;
}

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568
/* Authenticate remote device */
569
static int hci_conn_auth(struct hci_conn *conn, __u8 sec_level, __u8 auth_type)
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{
	BT_DBG("conn %p", conn);

573 574 575
	if (conn->pending_sec_level > sec_level)
		sec_level = conn->pending_sec_level;

576
	if (sec_level > conn->sec_level)
577
		conn->pending_sec_level = sec_level;
578
	else if (conn->link_mode & HCI_LM_AUTH)
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		return 1;

581 582 583
	/* Make sure we preserve an existing MITM requirement*/
	auth_type |= (conn->auth_type & 0x01);

584 585
	conn->auth_type = auth_type;

586
	if (!test_and_set_bit(HCI_CONN_AUTH_PEND, &conn->flags)) {
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		struct hci_cp_auth_requested cp;
588 589 590 591

		/* encrypt must be pending if auth is also pending */
		set_bit(HCI_CONN_ENCRYPT_PEND, &conn->flags);

592
		cp.handle = cpu_to_le16(conn->handle);
593
		hci_send_cmd(conn->hdev, HCI_OP_AUTH_REQUESTED,
594
			     sizeof(cp), &cp);
595
		if (conn->key_type != 0xff)
596
			set_bit(HCI_CONN_REAUTH_PEND, &conn->flags);
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	}
598

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	return 0;
}

602 603 604 605 606
/* Encrypt the the link */
static void hci_conn_encrypt(struct hci_conn *conn)
{
	BT_DBG("conn %p", conn);

607
	if (!test_and_set_bit(HCI_CONN_ENCRYPT_PEND, &conn->flags)) {
608 609 610 611
		struct hci_cp_set_conn_encrypt cp;
		cp.handle  = cpu_to_le16(conn->handle);
		cp.encrypt = 0x01;
		hci_send_cmd(conn->hdev, HCI_OP_SET_CONN_ENCRYPT, sizeof(cp),
612
			     &cp);
613 614 615
	}
}

616
/* Enable security */
617
int hci_conn_security(struct hci_conn *conn, __u8 sec_level, __u8 auth_type)
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{
	BT_DBG("conn %p", conn);

621
	/* For sdp we don't need the link key. */
622 623 624
	if (sec_level == BT_SECURITY_SDP)
		return 1;

625 626
	/* For non 2.1 devices and low security level we don't need the link
	   key. */
627
	if (sec_level == BT_SECURITY_LOW && !hci_conn_ssp_enabled(conn))
628
		return 1;
629

630 631 632 633 634 635 636 637 638 639 640 641
	/* For other security levels we need the link key. */
	if (!(conn->link_mode & HCI_LM_AUTH))
		goto auth;

	/* An authenticated combination key has sufficient security for any
	   security level. */
	if (conn->key_type == HCI_LK_AUTH_COMBINATION)
		goto encrypt;

	/* An unauthenticated combination key has sufficient security for
	   security level 1 and 2. */
	if (conn->key_type == HCI_LK_UNAUTH_COMBINATION &&
642
	    (sec_level == BT_SECURITY_MEDIUM || sec_level == BT_SECURITY_LOW))
643 644 645 646 647 648 649
		goto encrypt;

	/* A combination key has always sufficient security for the security
	   levels 1 or 2. High security level requires the combination key
	   is generated using maximum PIN code length (16).
	   For pre 2.1 units. */
	if (conn->key_type == HCI_LK_COMBINATION &&
650
	    (sec_level != BT_SECURITY_HIGH || conn->pin_length == 16))
651 652 653
		goto encrypt;

auth:
654
	if (test_bit(HCI_CONN_ENCRYPT_PEND, &conn->flags))
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		return 0;

657 658
	if (!hci_conn_auth(conn, sec_level, auth_type))
		return 0;
659 660 661 662

encrypt:
	if (conn->link_mode & HCI_LM_ENCRYPT)
		return 1;
663

664
	hci_conn_encrypt(conn);
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	return 0;
}
667
EXPORT_SYMBOL(hci_conn_security);
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669 670 671 672 673 674 675 676
/* Check secure link requirement */
int hci_conn_check_secure(struct hci_conn *conn, __u8 sec_level)
{
	BT_DBG("conn %p", conn);

	if (sec_level != BT_SECURITY_HIGH)
		return 1; /* Accept if non-secure is required */

677
	if (conn->sec_level == BT_SECURITY_HIGH)
678 679 680 681 682 683
		return 1;

	return 0; /* Reject not secure link */
}
EXPORT_SYMBOL(hci_conn_check_secure);

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/* Change link key */
int hci_conn_change_link_key(struct hci_conn *conn)
{
	BT_DBG("conn %p", conn);

689
	if (!test_and_set_bit(HCI_CONN_AUTH_PEND, &conn->flags)) {
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		struct hci_cp_change_conn_link_key cp;
691
		cp.handle = cpu_to_le16(conn->handle);
692
		hci_send_cmd(conn->hdev, HCI_OP_CHANGE_CONN_LINK_KEY,
693
			     sizeof(cp), &cp);
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	}
695

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	return 0;
}

/* Switch role */
700
int hci_conn_switch_role(struct hci_conn *conn, __u8 role)
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{
	BT_DBG("conn %p", conn);

	if (!role && conn->link_mode & HCI_LM_MASTER)
		return 1;

707
	if (!test_and_set_bit(HCI_CONN_RSWITCH_PEND, &conn->flags)) {
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		struct hci_cp_switch_role cp;
		bacpy(&cp.bdaddr, &conn->dst);
		cp.role = role;
711
		hci_send_cmd(conn->hdev, HCI_OP_SWITCH_ROLE, sizeof(cp), &cp);
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	}
713

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	return 0;
}
EXPORT_SYMBOL(hci_conn_switch_role);

718
/* Enter active mode */
719
void hci_conn_enter_active_mode(struct hci_conn *conn, __u8 force_active)
720 721 722 723 724 725 726 727
{
	struct hci_dev *hdev = conn->hdev;

	BT_DBG("conn %p mode %d", conn, conn->mode);

	if (test_bit(HCI_RAW, &hdev->flags))
		return;

728 729 730
	if (conn->mode != HCI_CM_SNIFF)
		goto timer;

731
	if (!test_bit(HCI_CONN_POWER_SAVE, &conn->flags) && !force_active)
732 733
		goto timer;

734
	if (!test_and_set_bit(HCI_CONN_MODE_CHANGE_PEND, &conn->flags)) {
735
		struct hci_cp_exit_sniff_mode cp;
736
		cp.handle = cpu_to_le16(conn->handle);
737
		hci_send_cmd(hdev, HCI_OP_EXIT_SNIFF_MODE, sizeof(cp), &cp);
738 739 740 741 742
	}

timer:
	if (hdev->idle_timeout > 0)
		mod_timer(&conn->idle_timer,
743
			  jiffies + msecs_to_jiffies(hdev->idle_timeout));
744 745
}

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/* Drop all connection on the device */
void hci_conn_hash_flush(struct hci_dev *hdev)
{
	struct hci_conn_hash *h = &hdev->conn_hash;
750
	struct hci_conn *c, *n;
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	BT_DBG("hdev %s", hdev->name);

754
	list_for_each_entry_safe(c, n, &h->list, list) {
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		c->state = BT_CLOSED;

757
		hci_proto_disconn_cfm(c, HCI_ERROR_LOCAL_HOST_TERM);
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		hci_conn_del(c);
	}
}

762 763 764 765 766 767 768 769 770 771 772 773 774 775 776 777
/* Check pending connect attempts */
void hci_conn_check_pending(struct hci_dev *hdev)
{
	struct hci_conn *conn;

	BT_DBG("hdev %s", hdev->name);

	hci_dev_lock(hdev);

	conn = hci_conn_hash_lookup_state(hdev, ACL_LINK, BT_CONNECT2);
	if (conn)
		hci_acl_connect(conn);

	hci_dev_unlock(hdev);
}

778 779 780 781 782 783 784 785 786 787 788 789 790
void hci_conn_hold_device(struct hci_conn *conn)
{
	atomic_inc(&conn->devref);
}
EXPORT_SYMBOL(hci_conn_hold_device);

void hci_conn_put_device(struct hci_conn *conn)
{
	if (atomic_dec_and_test(&conn->devref))
		hci_conn_del_sysfs(conn);
}
EXPORT_SYMBOL(hci_conn_put_device);

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int hci_get_conn_list(void __user *arg)
{
793
	struct hci_conn *c;
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	struct hci_conn_list_req req, *cl;
	struct hci_conn_info *ci;
	struct hci_dev *hdev;
	int n = 0, size, err;

	if (copy_from_user(&req, arg, sizeof(req)))
		return -EFAULT;

	if (!req.conn_num || req.conn_num > (PAGE_SIZE * 2) / sizeof(*ci))
		return -EINVAL;

	size = sizeof(req) + req.conn_num * sizeof(*ci);

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Andrei Emeltchenko 已提交
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	cl = kmalloc(size, GFP_KERNEL);
	if (!cl)
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		return -ENOMEM;

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Andrei Emeltchenko 已提交
811 812
	hdev = hci_dev_get(req.dev_id);
	if (!hdev) {
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813 814 815 816 817 818
		kfree(cl);
		return -ENODEV;
	}

	ci = cl->conn_info;

819
	hci_dev_lock(hdev);
820
	list_for_each_entry(c, &hdev->conn_hash.list, list) {
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821 822 823 824 825 826 827 828 829
		bacpy(&(ci + n)->bdaddr, &c->dst);
		(ci + n)->handle = c->handle;
		(ci + n)->type  = c->type;
		(ci + n)->out   = c->out;
		(ci + n)->state = c->state;
		(ci + n)->link_mode = c->link_mode;
		if (++n >= req.conn_num)
			break;
	}
830
	hci_dev_unlock(hdev);
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Linus Torvalds 已提交
831 832 833 834 835 836 837 838 839 840 841 842 843 844 845 846 847 848 849 850 851 852 853

	cl->dev_id = hdev->id;
	cl->conn_num = n;
	size = sizeof(req) + n * sizeof(*ci);

	hci_dev_put(hdev);

	err = copy_to_user(arg, cl, size);
	kfree(cl);

	return err ? -EFAULT : 0;
}

int hci_get_conn_info(struct hci_dev *hdev, void __user *arg)
{
	struct hci_conn_info_req req;
	struct hci_conn_info ci;
	struct hci_conn *conn;
	char __user *ptr = arg + sizeof(req);

	if (copy_from_user(&req, arg, sizeof(req)))
		return -EFAULT;

854
	hci_dev_lock(hdev);
L
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855 856 857 858 859 860 861 862 863
	conn = hci_conn_hash_lookup_ba(hdev, req.type, &req.bdaddr);
	if (conn) {
		bacpy(&ci.bdaddr, &conn->dst);
		ci.handle = conn->handle;
		ci.type  = conn->type;
		ci.out   = conn->out;
		ci.state = conn->state;
		ci.link_mode = conn->link_mode;
	}
864
	hci_dev_unlock(hdev);
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865 866 867 868 869 870

	if (!conn)
		return -ENOENT;

	return copy_to_user(ptr, &ci, sizeof(ci)) ? -EFAULT : 0;
}
871 872 873 874 875 876 877 878 879

int hci_get_auth_info(struct hci_dev *hdev, void __user *arg)
{
	struct hci_auth_info_req req;
	struct hci_conn *conn;

	if (copy_from_user(&req, arg, sizeof(req)))
		return -EFAULT;

880
	hci_dev_lock(hdev);
881 882 883
	conn = hci_conn_hash_lookup_ba(hdev, ACL_LINK, &req.bdaddr);
	if (conn)
		req.type = conn->auth_type;
884
	hci_dev_unlock(hdev);
885 886 887 888 889 890

	if (!conn)
		return -ENOENT;

	return copy_to_user(arg, &req, sizeof(req)) ? -EFAULT : 0;
}
891 892 893 894 895 896 897 898

struct hci_chan *hci_chan_create(struct hci_conn *conn)
{
	struct hci_dev *hdev = conn->hdev;
	struct hci_chan *chan;

	BT_DBG("%s conn %p", hdev->name, conn);

899
	chan = kzalloc(sizeof(struct hci_chan), GFP_KERNEL);
900 901 902 903 904 905
	if (!chan)
		return NULL;

	chan->conn = conn;
	skb_queue_head_init(&chan->data_q);

906
	list_add_rcu(&chan->list, &conn->chan_list);
907 908 909 910 911 912 913 914 915 916 917

	return chan;
}

int hci_chan_del(struct hci_chan *chan)
{
	struct hci_conn *conn = chan->conn;
	struct hci_dev *hdev = conn->hdev;

	BT_DBG("%s conn %p chan %p", hdev->name, conn, chan);

918 919 920
	list_del_rcu(&chan->list);

	synchronize_rcu();
921 922 923 924 925 926 927

	skb_queue_purge(&chan->data_q);
	kfree(chan);

	return 0;
}

928
void hci_chan_list_flush(struct hci_conn *conn)
929
{
930
	struct hci_chan *chan, *n;
931 932 933

	BT_DBG("conn %p", conn);

934
	list_for_each_entry_safe(chan, n, &conn->chan_list, list)
935 936
		hci_chan_del(chan);
}