smp.c 40.6 KB
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/*
   BlueZ - Bluetooth protocol stack for Linux
   Copyright (C) 2011 Nokia Corporation and/or its subsidiary(-ies).

   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
   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
   OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.

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

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#include <linux/crypto.h>
#include <linux/scatterlist.h>
#include <crypto/b128ops.h>

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#include <net/bluetooth/bluetooth.h>
#include <net/bluetooth/hci_core.h>
#include <net/bluetooth/l2cap.h>
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#include <net/bluetooth/mgmt.h>
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#include "smp.h"
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#define SMP_ALLOW_CMD(smp, code)	set_bit(code, &smp->allow_cmd)

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#define SMP_TIMEOUT	msecs_to_jiffies(30000)
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#define AUTH_REQ_MASK   0x07
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#define KEY_DIST_MASK	0x07
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enum {
	SMP_FLAG_TK_VALID,
	SMP_FLAG_CFM_PENDING,
	SMP_FLAG_MITM_AUTH,
	SMP_FLAG_COMPLETE,
	SMP_FLAG_INITIATOR,
};
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struct smp_chan {
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	struct l2cap_conn	*conn;
	struct delayed_work	security_timer;
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	unsigned long           allow_cmd; /* Bitmask of allowed commands */
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	u8		preq[7]; /* SMP Pairing Request */
	u8		prsp[7]; /* SMP Pairing Response */
	u8		prnd[16]; /* SMP Pairing Random (local) */
	u8		rrnd[16]; /* SMP Pairing Random (remote) */
	u8		pcnf[16]; /* SMP Pairing Confirm */
	u8		tk[16]; /* SMP Temporary Key */
	u8		enc_key_size;
	u8		remote_key_dist;
	bdaddr_t	id_addr;
	u8		id_addr_type;
	u8		irk[16];
	struct smp_csrk	*csrk;
	struct smp_csrk	*slave_csrk;
	struct smp_ltk	*ltk;
	struct smp_ltk	*slave_ltk;
	struct smp_irk	*remote_irk;
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	unsigned long	flags;
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	struct crypto_blkcipher	*tfm_aes;
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};

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static inline void swap_buf(const u8 *src, u8 *dst, size_t len)
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{
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	size_t i;
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	for (i = 0; i < len; i++)
		dst[len - 1 - i] = src[i];
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}

static int smp_e(struct crypto_blkcipher *tfm, const u8 *k, u8 *r)
{
	struct blkcipher_desc desc;
	struct scatterlist sg;
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	uint8_t tmp[16], data[16];
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	int err;
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	if (tfm == NULL) {
		BT_ERR("tfm %p", tfm);
		return -EINVAL;
	}

	desc.tfm = tfm;
	desc.flags = 0;

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	/* The most significant octet of key corresponds to k[0] */
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	swap_buf(k, tmp, 16);
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	err = crypto_blkcipher_setkey(tfm, tmp, 16);
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	if (err) {
		BT_ERR("cipher setkey failed: %d", err);
		return err;
	}

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	/* Most significant octet of plaintextData corresponds to data[0] */
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	swap_buf(r, data, 16);
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	sg_init_one(&sg, data, 16);
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	err = crypto_blkcipher_encrypt(&desc, &sg, &sg, 16);
	if (err)
		BT_ERR("Encrypt data error %d", err);

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	/* Most significant octet of encryptedData corresponds to data[0] */
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	swap_buf(data, r, 16);
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	return err;
}

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static int smp_ah(struct crypto_blkcipher *tfm, u8 irk[16], u8 r[3], u8 res[3])
{
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	u8 _res[16];
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	int err;

	/* r' = padding || r */
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	memcpy(_res, r, 3);
	memset(_res + 3, 0, 13);
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	err = smp_e(tfm, irk, _res);
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	if (err) {
		BT_ERR("Encrypt error");
		return err;
	}

	/* The output of the random address function ah is:
	 *	ah(h, r) = e(k, r') mod 2^24
	 * The output of the security function e is then truncated to 24 bits
	 * by taking the least significant 24 bits of the output of e as the
	 * result of ah.
	 */
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	memcpy(res, _res, 3);
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	return 0;
}

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bool smp_irk_matches(struct hci_dev *hdev, u8 irk[16], bdaddr_t *bdaddr)
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{
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	struct l2cap_chan *chan = hdev->smp_data;
	struct crypto_blkcipher *tfm;
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	u8 hash[3];
	int err;

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	if (!chan || !chan->data)
		return false;

	tfm = chan->data;

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	BT_DBG("RPA %pMR IRK %*phN", bdaddr, 16, irk);

	err = smp_ah(tfm, irk, &bdaddr->b[3], hash);
	if (err)
		return false;

	return !memcmp(bdaddr->b, hash, 3);
}

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int smp_generate_rpa(struct hci_dev *hdev, u8 irk[16], bdaddr_t *rpa)
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{
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	struct l2cap_chan *chan = hdev->smp_data;
	struct crypto_blkcipher *tfm;
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	int err;

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	if (!chan || !chan->data)
		return -EOPNOTSUPP;

	tfm = chan->data;

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	get_random_bytes(&rpa->b[3], 3);

	rpa->b[5] &= 0x3f;	/* Clear two most significant bits */
	rpa->b[5] |= 0x40;	/* Set second most significant bit */

	err = smp_ah(tfm, irk, &rpa->b[3], rpa->b);
	if (err < 0)
		return err;

	BT_DBG("RPA %pMR", rpa);

	return 0;
}

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static int smp_c1(struct smp_chan *smp, u8 k[16], u8 r[16], u8 preq[7],
		  u8 pres[7], u8 _iat, bdaddr_t *ia, u8 _rat, bdaddr_t *ra,
		  u8 res[16])
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{
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	struct hci_dev *hdev = smp->conn->hcon->hdev;
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	u8 p1[16], p2[16];
	int err;

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

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	memset(p1, 0, 16);

	/* p1 = pres || preq || _rat || _iat */
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	p1[0] = _iat;
	p1[1] = _rat;
	memcpy(p1 + 2, preq, 7);
	memcpy(p1 + 9, pres, 7);
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	/* p2 = padding || ia || ra */
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	memcpy(p2, ra, 6);
	memcpy(p2 + 6, ia, 6);
	memset(p2 + 12, 0, 4);
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	/* res = r XOR p1 */
	u128_xor((u128 *) res, (u128 *) r, (u128 *) p1);

	/* res = e(k, res) */
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	err = smp_e(smp->tfm_aes, k, res);
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	if (err) {
		BT_ERR("Encrypt data error");
		return err;
	}

	/* res = res XOR p2 */
	u128_xor((u128 *) res, (u128 *) res, (u128 *) p2);

	/* res = e(k, res) */
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	err = smp_e(smp->tfm_aes, k, res);
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	if (err)
		BT_ERR("Encrypt data error");

	return err;
}

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static int smp_s1(struct smp_chan *smp, u8 k[16], u8 r1[16], u8 r2[16],
		  u8 _r[16])
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{
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	struct hci_dev *hdev = smp->conn->hcon->hdev;
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	int err;

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

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	/* Just least significant octets from r1 and r2 are considered */
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	memcpy(_r, r2, 8);
	memcpy(_r + 8, r1, 8);
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	err = smp_e(smp->tfm_aes, k, _r);
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	if (err)
		BT_ERR("Encrypt data error");

	return err;
}

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static void smp_send_cmd(struct l2cap_conn *conn, u8 code, u16 len, void *data)
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{
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	struct l2cap_chan *chan = conn->smp;
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	struct smp_chan *smp;
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	struct kvec iv[2];
	struct msghdr msg;
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	if (!chan)
		return;
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	BT_DBG("code 0x%2.2x", code);
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	iv[0].iov_base = &code;
	iv[0].iov_len = 1;
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	iv[1].iov_base = data;
	iv[1].iov_len = len;
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	memset(&msg, 0, sizeof(msg));
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	msg.msg_iov = (struct iovec *) &iv;
	msg.msg_iovlen = 2;
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	l2cap_chan_send(chan, &msg, 1 + len);
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	if (!chan->data)
		return;

	smp = chan->data;

	cancel_delayed_work_sync(&smp->security_timer);
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	schedule_delayed_work(&smp->security_timer, SMP_TIMEOUT);
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}

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static __u8 authreq_to_seclevel(__u8 authreq)
{
	if (authreq & SMP_AUTH_MITM)
		return BT_SECURITY_HIGH;
	else
		return BT_SECURITY_MEDIUM;
}

static __u8 seclevel_to_authreq(__u8 sec_level)
{
	switch (sec_level) {
	case BT_SECURITY_HIGH:
		return SMP_AUTH_MITM | SMP_AUTH_BONDING;
	case BT_SECURITY_MEDIUM:
		return SMP_AUTH_BONDING;
	default:
		return SMP_AUTH_NONE;
	}
}

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static void build_pairing_cmd(struct l2cap_conn *conn,
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			      struct smp_cmd_pairing *req,
			      struct smp_cmd_pairing *rsp, __u8 authreq)
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{
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	struct l2cap_chan *chan = conn->smp;
	struct smp_chan *smp = chan->data;
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	struct hci_conn *hcon = conn->hcon;
	struct hci_dev *hdev = hcon->hdev;
	u8 local_dist = 0, remote_dist = 0;
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	if (test_bit(HCI_BONDABLE, &conn->hcon->hdev->dev_flags)) {
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		local_dist = SMP_DIST_ENC_KEY | SMP_DIST_SIGN;
		remote_dist = SMP_DIST_ENC_KEY | SMP_DIST_SIGN;
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		authreq |= SMP_AUTH_BONDING;
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	} else {
		authreq &= ~SMP_AUTH_BONDING;
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	}

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	if (test_bit(HCI_RPA_RESOLVING, &hdev->dev_flags))
		remote_dist |= SMP_DIST_ID_KEY;

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	if (test_bit(HCI_PRIVACY, &hdev->dev_flags))
		local_dist |= SMP_DIST_ID_KEY;

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	if (rsp == NULL) {
		req->io_capability = conn->hcon->io_capability;
		req->oob_flag = SMP_OOB_NOT_PRESENT;
		req->max_key_size = SMP_MAX_ENC_KEY_SIZE;
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		req->init_key_dist = local_dist;
		req->resp_key_dist = remote_dist;
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		req->auth_req = (authreq & AUTH_REQ_MASK);
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		smp->remote_key_dist = remote_dist;
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		return;
	}

	rsp->io_capability = conn->hcon->io_capability;
	rsp->oob_flag = SMP_OOB_NOT_PRESENT;
	rsp->max_key_size = SMP_MAX_ENC_KEY_SIZE;
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	rsp->init_key_dist = req->init_key_dist & remote_dist;
	rsp->resp_key_dist = req->resp_key_dist & local_dist;
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	rsp->auth_req = (authreq & AUTH_REQ_MASK);
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	smp->remote_key_dist = rsp->init_key_dist;
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}

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static u8 check_enc_key_size(struct l2cap_conn *conn, __u8 max_key_size)
{
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	struct l2cap_chan *chan = conn->smp;
	struct smp_chan *smp = chan->data;
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	if ((max_key_size > SMP_MAX_ENC_KEY_SIZE) ||
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	    (max_key_size < SMP_MIN_ENC_KEY_SIZE))
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		return SMP_ENC_KEY_SIZE;

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	smp->enc_key_size = max_key_size;
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	return 0;
}

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static void smp_chan_destroy(struct l2cap_conn *conn)
{
	struct l2cap_chan *chan = conn->smp;
	struct smp_chan *smp = chan->data;
	bool complete;

	BUG_ON(!smp);

	cancel_delayed_work_sync(&smp->security_timer);

	complete = test_bit(SMP_FLAG_COMPLETE, &smp->flags);
	mgmt_smp_complete(conn->hcon, complete);

	kfree(smp->csrk);
	kfree(smp->slave_csrk);

	crypto_free_blkcipher(smp->tfm_aes);

	/* If pairing failed clean up any keys we might have */
	if (!complete) {
		if (smp->ltk) {
			list_del(&smp->ltk->list);
			kfree(smp->ltk);
		}

		if (smp->slave_ltk) {
			list_del(&smp->slave_ltk->list);
			kfree(smp->slave_ltk);
		}

		if (smp->remote_irk) {
			list_del(&smp->remote_irk->list);
			kfree(smp->remote_irk);
		}
	}

	chan->data = NULL;
	kfree(smp);
	hci_conn_drop(conn->hcon);
}

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static void smp_failure(struct l2cap_conn *conn, u8 reason)
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{
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	struct hci_conn *hcon = conn->hcon;
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	struct l2cap_chan *chan = conn->smp;
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	if (reason)
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		smp_send_cmd(conn, SMP_CMD_PAIRING_FAIL, sizeof(reason),
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			     &reason);
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	clear_bit(HCI_CONN_ENCRYPT_PEND, &hcon->flags);
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	mgmt_auth_failed(hcon, HCI_ERROR_AUTH_FAILURE);
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	if (chan->data)
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		smp_chan_destroy(conn);
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}

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#define JUST_WORKS	0x00
#define JUST_CFM	0x01
#define REQ_PASSKEY	0x02
#define CFM_PASSKEY	0x03
#define REQ_OOB		0x04
#define OVERLAP		0xFF

static const u8 gen_method[5][5] = {
	{ JUST_WORKS,  JUST_CFM,    REQ_PASSKEY, JUST_WORKS, REQ_PASSKEY },
	{ JUST_WORKS,  JUST_CFM,    REQ_PASSKEY, JUST_WORKS, REQ_PASSKEY },
	{ CFM_PASSKEY, CFM_PASSKEY, REQ_PASSKEY, JUST_WORKS, CFM_PASSKEY },
	{ JUST_WORKS,  JUST_CFM,    JUST_WORKS,  JUST_WORKS, JUST_CFM    },
	{ CFM_PASSKEY, CFM_PASSKEY, REQ_PASSKEY, JUST_WORKS, OVERLAP     },
};

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static u8 get_auth_method(struct smp_chan *smp, u8 local_io, u8 remote_io)
{
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	/* If either side has unknown io_caps, use JUST_CFM (which gets
	 * converted later to JUST_WORKS if we're initiators.
	 */
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	if (local_io > SMP_IO_KEYBOARD_DISPLAY ||
	    remote_io > SMP_IO_KEYBOARD_DISPLAY)
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		return JUST_CFM;
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	return gen_method[remote_io][local_io];
}

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static int tk_request(struct l2cap_conn *conn, u8 remote_oob, u8 auth,
						u8 local_io, u8 remote_io)
{
	struct hci_conn *hcon = conn->hcon;
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	struct l2cap_chan *chan = conn->smp;
	struct smp_chan *smp = chan->data;
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	u8 method;
	u32 passkey = 0;
	int ret = 0;

	/* Initialize key for JUST WORKS */
	memset(smp->tk, 0, sizeof(smp->tk));
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	clear_bit(SMP_FLAG_TK_VALID, &smp->flags);
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	BT_DBG("tk_request: auth:%d lcl:%d rem:%d", auth, local_io, remote_io);

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	/* If neither side wants MITM, either "just" confirm an incoming
	 * request or use just-works for outgoing ones. The JUST_CFM
	 * will be converted to JUST_WORKS if necessary later in this
	 * function. If either side has MITM look up the method from the
	 * table.
	 */
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	if (!(auth & SMP_AUTH_MITM))
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		method = JUST_CFM;
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	else
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		method = get_auth_method(smp, local_io, remote_io);
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	/* Don't confirm locally initiated pairing attempts */
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	if (method == JUST_CFM && test_bit(SMP_FLAG_INITIATOR, &smp->flags))
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		method = JUST_WORKS;

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	/* Don't bother user space with no IO capabilities */
	if (method == JUST_CFM && hcon->io_capability == HCI_IO_NO_INPUT_OUTPUT)
		method = JUST_WORKS;

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	/* If Just Works, Continue with Zero TK */
	if (method == JUST_WORKS) {
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		set_bit(SMP_FLAG_TK_VALID, &smp->flags);
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		return 0;
	}

	/* Not Just Works/Confirm results in MITM Authentication */
	if (method != JUST_CFM)
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		set_bit(SMP_FLAG_MITM_AUTH, &smp->flags);
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	/* If both devices have Keyoard-Display I/O, the master
	 * Confirms and the slave Enters the passkey.
	 */
	if (method == OVERLAP) {
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		if (hcon->role == HCI_ROLE_MASTER)
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			method = CFM_PASSKEY;
		else
			method = REQ_PASSKEY;
	}

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	/* Generate random passkey. */
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	if (method == CFM_PASSKEY) {
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		memset(smp->tk, 0, sizeof(smp->tk));
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		get_random_bytes(&passkey, sizeof(passkey));
		passkey %= 1000000;
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		put_unaligned_le32(passkey, smp->tk);
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		BT_DBG("PassKey: %d", passkey);
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		set_bit(SMP_FLAG_TK_VALID, &smp->flags);
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	}

	hci_dev_lock(hcon->hdev);

	if (method == REQ_PASSKEY)
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		ret = mgmt_user_passkey_request(hcon->hdev, &hcon->dst,
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						hcon->type, hcon->dst_type);
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	else if (method == JUST_CFM)
		ret = mgmt_user_confirm_request(hcon->hdev, &hcon->dst,
						hcon->type, hcon->dst_type,
						passkey, 1);
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	else
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		ret = mgmt_user_passkey_notify(hcon->hdev, &hcon->dst,
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						hcon->type, hcon->dst_type,
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						passkey, 0);
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	hci_dev_unlock(hcon->hdev);

	return ret;
}

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static u8 smp_confirm(struct smp_chan *smp)
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{
	struct l2cap_conn *conn = smp->conn;
	struct smp_cmd_pairing_confirm cp;
	int ret;

	BT_DBG("conn %p", conn);

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	ret = smp_c1(smp, smp->tk, smp->prnd, smp->preq, smp->prsp,
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		     conn->hcon->init_addr_type, &conn->hcon->init_addr,
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		     conn->hcon->resp_addr_type, &conn->hcon->resp_addr,
		     cp.confirm_val);
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	if (ret)
		return SMP_UNSPECIFIED;
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	clear_bit(SMP_FLAG_CFM_PENDING, &smp->flags);
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	smp_send_cmd(smp->conn, SMP_CMD_PAIRING_CONFIRM, sizeof(cp), &cp);

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	if (conn->hcon->out)
		SMP_ALLOW_CMD(smp, SMP_CMD_PAIRING_CONFIRM);
	else
		SMP_ALLOW_CMD(smp, SMP_CMD_PAIRING_RANDOM);

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	return 0;
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}

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static u8 smp_random(struct smp_chan *smp)
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{
	struct l2cap_conn *conn = smp->conn;
	struct hci_conn *hcon = conn->hcon;
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	u8 confirm[16];
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	int ret;

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	if (IS_ERR_OR_NULL(smp->tfm_aes))
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		return SMP_UNSPECIFIED;
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	BT_DBG("conn %p %s", conn, conn->hcon->out ? "master" : "slave");

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	ret = smp_c1(smp, smp->tk, smp->rrnd, smp->preq, smp->prsp,
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		     hcon->init_addr_type, &hcon->init_addr,
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		     hcon->resp_addr_type, &hcon->resp_addr, confirm);
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	if (ret)
		return SMP_UNSPECIFIED;
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	if (memcmp(smp->pcnf, confirm, sizeof(smp->pcnf)) != 0) {
		BT_ERR("Pairing failed (confirmation values mismatch)");
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		return SMP_CONFIRM_FAILED;
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	}

	if (hcon->out) {
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		u8 stk[16];
		__le64 rand = 0;
		__le16 ediv = 0;
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		smp_s1(smp, smp->tk, smp->rrnd, smp->prnd, stk);
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		memset(stk + smp->enc_key_size, 0,
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		       SMP_MAX_ENC_KEY_SIZE - smp->enc_key_size);
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		if (test_and_set_bit(HCI_CONN_ENCRYPT_PEND, &hcon->flags))
			return SMP_UNSPECIFIED;
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		hci_le_start_enc(hcon, ediv, rand, stk);
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		hcon->enc_key_size = smp->enc_key_size;
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		set_bit(HCI_CONN_STK_ENCRYPT, &hcon->flags);
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	} else {
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		u8 stk[16], auth;
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		__le64 rand = 0;
		__le16 ediv = 0;
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		smp_send_cmd(conn, SMP_CMD_PAIRING_RANDOM, sizeof(smp->prnd),
			     smp->prnd);
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		smp_s1(smp, smp->tk, smp->prnd, smp->rrnd, stk);
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		memset(stk + smp->enc_key_size, 0,
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		       SMP_MAX_ENC_KEY_SIZE - smp->enc_key_size);
617

618 619 620 621 622
		if (hcon->pending_sec_level == BT_SECURITY_HIGH)
			auth = 1;
		else
			auth = 0;

623 624 625 626
		/* Even though there's no _SLAVE suffix this is the
		 * slave STK we're adding for later lookup (the master
		 * STK never needs to be stored).
		 */
627
		hci_add_ltk(hcon->hdev, &hcon->dst, hcon->dst_type,
628
			    SMP_STK, auth, stk, smp->enc_key_size, ediv, rand);
629 630
	}

631
	return 0;
632 633
}

634 635 636 637 638 639 640 641 642 643 644 645 646 647 648 649 650 651
static void smp_notify_keys(struct l2cap_conn *conn)
{
	struct l2cap_chan *chan = conn->smp;
	struct smp_chan *smp = chan->data;
	struct hci_conn *hcon = conn->hcon;
	struct hci_dev *hdev = hcon->hdev;
	struct smp_cmd_pairing *req = (void *) &smp->preq[1];
	struct smp_cmd_pairing *rsp = (void *) &smp->prsp[1];
	bool persistent;

	if (smp->remote_irk) {
		mgmt_new_irk(hdev, smp->remote_irk);
		/* Now that user space can be considered to know the
		 * identity address track the connection based on it
		 * from now on.
		 */
		bacpy(&hcon->dst, &smp->remote_irk->bdaddr);
		hcon->dst_type = smp->remote_irk->addr_type;
652
		queue_work(hdev->workqueue, &conn->id_addr_update_work);
653 654 655 656 657 658 659 660 661 662 663 664 665 666 667 668 669 670 671 672 673 674 675 676 677 678 679 680 681 682 683 684 685 686 687 688 689 690 691 692 693 694 695 696 697 698 699 700

		/* When receiving an indentity resolving key for
		 * a remote device that does not use a resolvable
		 * private address, just remove the key so that
		 * it is possible to use the controller white
		 * list for scanning.
		 *
		 * Userspace will have been told to not store
		 * this key at this point. So it is safe to
		 * just remove it.
		 */
		if (!bacmp(&smp->remote_irk->rpa, BDADDR_ANY)) {
			list_del(&smp->remote_irk->list);
			kfree(smp->remote_irk);
			smp->remote_irk = NULL;
		}
	}

	/* The LTKs and CSRKs should be persistent only if both sides
	 * had the bonding bit set in their authentication requests.
	 */
	persistent = !!((req->auth_req & rsp->auth_req) & SMP_AUTH_BONDING);

	if (smp->csrk) {
		smp->csrk->bdaddr_type = hcon->dst_type;
		bacpy(&smp->csrk->bdaddr, &hcon->dst);
		mgmt_new_csrk(hdev, smp->csrk, persistent);
	}

	if (smp->slave_csrk) {
		smp->slave_csrk->bdaddr_type = hcon->dst_type;
		bacpy(&smp->slave_csrk->bdaddr, &hcon->dst);
		mgmt_new_csrk(hdev, smp->slave_csrk, persistent);
	}

	if (smp->ltk) {
		smp->ltk->bdaddr_type = hcon->dst_type;
		bacpy(&smp->ltk->bdaddr, &hcon->dst);
		mgmt_new_ltk(hdev, smp->ltk, persistent);
	}

	if (smp->slave_ltk) {
		smp->slave_ltk->bdaddr_type = hcon->dst_type;
		bacpy(&smp->slave_ltk->bdaddr, &hcon->dst);
		mgmt_new_ltk(hdev, smp->slave_ltk, persistent);
	}
}

701 702 703 704 705 706 707 708 709 710 711 712 713 714
static void smp_allow_key_dist(struct smp_chan *smp)
{
	/* Allow the first expected phase 3 PDU. The rest of the PDUs
	 * will be allowed in each PDU handler to ensure we receive
	 * them in the correct order.
	 */
	if (smp->remote_key_dist & SMP_DIST_ENC_KEY)
		SMP_ALLOW_CMD(smp, SMP_CMD_ENCRYPT_INFO);
	else if (smp->remote_key_dist & SMP_DIST_ID_KEY)
		SMP_ALLOW_CMD(smp, SMP_CMD_IDENT_INFO);
	else if (smp->remote_key_dist & SMP_DIST_SIGN)
		SMP_ALLOW_CMD(smp, SMP_CMD_SIGN_INFO);
}

715
static void smp_distribute_keys(struct smp_chan *smp)
716 717
{
	struct smp_cmd_pairing *req, *rsp;
718
	struct l2cap_conn *conn = smp->conn;
719 720 721 722 723 724 725 726 727
	struct hci_conn *hcon = conn->hcon;
	struct hci_dev *hdev = hcon->hdev;
	__u8 *keydist;

	BT_DBG("conn %p", conn);

	rsp = (void *) &smp->prsp[1];

	/* The responder sends its keys first */
728 729
	if (hcon->out && (smp->remote_key_dist & KEY_DIST_MASK)) {
		smp_allow_key_dist(smp);
730
		return;
731
	}
732 733 734 735 736 737 738 739 740 741 742 743 744 745 746 747 748 749 750 751 752 753 754 755 756 757 758 759 760 761 762 763 764 765 766 767 768 769 770 771 772 773 774 775 776 777 778 779 780 781 782 783 784 785 786 787 788 789 790 791 792 793 794 795 796 797 798 799 800 801 802 803 804 805 806 807 808 809 810 811 812 813 814 815

	req = (void *) &smp->preq[1];

	if (hcon->out) {
		keydist = &rsp->init_key_dist;
		*keydist &= req->init_key_dist;
	} else {
		keydist = &rsp->resp_key_dist;
		*keydist &= req->resp_key_dist;
	}

	BT_DBG("keydist 0x%x", *keydist);

	if (*keydist & SMP_DIST_ENC_KEY) {
		struct smp_cmd_encrypt_info enc;
		struct smp_cmd_master_ident ident;
		struct smp_ltk *ltk;
		u8 authenticated;
		__le16 ediv;
		__le64 rand;

		get_random_bytes(enc.ltk, sizeof(enc.ltk));
		get_random_bytes(&ediv, sizeof(ediv));
		get_random_bytes(&rand, sizeof(rand));

		smp_send_cmd(conn, SMP_CMD_ENCRYPT_INFO, sizeof(enc), &enc);

		authenticated = hcon->sec_level == BT_SECURITY_HIGH;
		ltk = hci_add_ltk(hdev, &hcon->dst, hcon->dst_type,
				  SMP_LTK_SLAVE, authenticated, enc.ltk,
				  smp->enc_key_size, ediv, rand);
		smp->slave_ltk = ltk;

		ident.ediv = ediv;
		ident.rand = rand;

		smp_send_cmd(conn, SMP_CMD_MASTER_IDENT, sizeof(ident), &ident);

		*keydist &= ~SMP_DIST_ENC_KEY;
	}

	if (*keydist & SMP_DIST_ID_KEY) {
		struct smp_cmd_ident_addr_info addrinfo;
		struct smp_cmd_ident_info idinfo;

		memcpy(idinfo.irk, hdev->irk, sizeof(idinfo.irk));

		smp_send_cmd(conn, SMP_CMD_IDENT_INFO, sizeof(idinfo), &idinfo);

		/* The hci_conn contains the local identity address
		 * after the connection has been established.
		 *
		 * This is true even when the connection has been
		 * established using a resolvable random address.
		 */
		bacpy(&addrinfo.bdaddr, &hcon->src);
		addrinfo.addr_type = hcon->src_type;

		smp_send_cmd(conn, SMP_CMD_IDENT_ADDR_INFO, sizeof(addrinfo),
			     &addrinfo);

		*keydist &= ~SMP_DIST_ID_KEY;
	}

	if (*keydist & SMP_DIST_SIGN) {
		struct smp_cmd_sign_info sign;
		struct smp_csrk *csrk;

		/* Generate a new random key */
		get_random_bytes(sign.csrk, sizeof(sign.csrk));

		csrk = kzalloc(sizeof(*csrk), GFP_KERNEL);
		if (csrk) {
			csrk->master = 0x00;
			memcpy(csrk->val, sign.csrk, sizeof(csrk->val));
		}
		smp->slave_csrk = csrk;

		smp_send_cmd(conn, SMP_CMD_SIGN_INFO, sizeof(sign), &sign);

		*keydist &= ~SMP_DIST_SIGN;
	}

	/* If there are still keys to be received wait for them */
816 817
	if (smp->remote_key_dist & KEY_DIST_MASK) {
		smp_allow_key_dist(smp);
818
		return;
819
	}
820 821 822 823 824 825 826

	set_bit(SMP_FLAG_COMPLETE, &smp->flags);
	smp_notify_keys(conn);

	smp_chan_destroy(conn);
}

827 828 829 830 831 832 833 834
static void smp_timeout(struct work_struct *work)
{
	struct smp_chan *smp = container_of(work, struct smp_chan,
					    security_timer.work);
	struct l2cap_conn *conn = smp->conn;

	BT_DBG("conn %p", conn);

835
	hci_disconnect(conn->hcon, HCI_ERROR_REMOTE_USER_TERM);
836 837
}

838 839
static struct smp_chan *smp_chan_create(struct l2cap_conn *conn)
{
840
	struct l2cap_chan *chan = conn->smp;
841 842
	struct smp_chan *smp;

843
	smp = kzalloc(sizeof(*smp), GFP_ATOMIC);
844
	if (!smp)
845 846
		return NULL;

847 848 849 850 851 852 853
	smp->tfm_aes = crypto_alloc_blkcipher("ecb(aes)", 0, CRYPTO_ALG_ASYNC);
	if (IS_ERR(smp->tfm_aes)) {
		BT_ERR("Unable to create ECB crypto context");
		kfree(smp);
		return NULL;
	}

854
	smp->conn = conn;
855
	chan->data = smp;
856

857 858
	SMP_ALLOW_CMD(smp, SMP_CMD_PAIRING_FAIL);

859 860
	INIT_DELAYED_WORK(&smp->security_timer, smp_timeout);

861 862 863 864 865
	hci_conn_hold(conn->hcon);

	return smp;
}

866 867
int smp_user_confirm_reply(struct hci_conn *hcon, u16 mgmt_op, __le32 passkey)
{
868
	struct l2cap_conn *conn = hcon->l2cap_data;
869
	struct l2cap_chan *chan;
870 871
	struct smp_chan *smp;
	u32 value;
872
	int err;
873 874 875

	BT_DBG("");

876
	if (!conn)
877 878
		return -ENOTCONN;

879 880 881 882
	chan = conn->smp;
	if (!chan)
		return -ENOTCONN;

883 884 885 886 887 888
	l2cap_chan_lock(chan);
	if (!chan->data) {
		err = -ENOTCONN;
		goto unlock;
	}

889
	smp = chan->data;
890 891 892 893

	switch (mgmt_op) {
	case MGMT_OP_USER_PASSKEY_REPLY:
		value = le32_to_cpu(passkey);
894
		memset(smp->tk, 0, sizeof(smp->tk));
895
		BT_DBG("PassKey: %d", value);
896
		put_unaligned_le32(value, smp->tk);
897 898
		/* Fall Through */
	case MGMT_OP_USER_CONFIRM_REPLY:
899
		set_bit(SMP_FLAG_TK_VALID, &smp->flags);
900 901 902
		break;
	case MGMT_OP_USER_PASSKEY_NEG_REPLY:
	case MGMT_OP_USER_CONFIRM_NEG_REPLY:
903
		smp_failure(conn, SMP_PASSKEY_ENTRY_FAILED);
904 905
		err = 0;
		goto unlock;
906
	default:
907
		smp_failure(conn, SMP_PASSKEY_ENTRY_FAILED);
908 909
		err = -EOPNOTSUPP;
		goto unlock;
910 911
	}

912 913
	err = 0;

914
	/* If it is our turn to send Pairing Confirm, do so now */
915 916 917 918 919
	if (test_bit(SMP_FLAG_CFM_PENDING, &smp->flags)) {
		u8 rsp = smp_confirm(smp);
		if (rsp)
			smp_failure(conn, rsp);
	}
920

921 922 923
unlock:
	l2cap_chan_unlock(chan);
	return err;
924 925
}

926
static u8 smp_cmd_pairing_req(struct l2cap_conn *conn, struct sk_buff *skb)
927
{
928
	struct smp_cmd_pairing rsp, *req = (void *) skb->data;
929
	struct l2cap_chan *chan = conn->smp;
930
	struct hci_dev *hdev = conn->hcon->hdev;
931
	struct smp_chan *smp;
932
	u8 key_size, auth, sec_level;
933
	int ret;
934 935 936

	BT_DBG("conn %p", conn);

937
	if (skb->len < sizeof(*req))
938
		return SMP_INVALID_PARAMS;
939

940
	if (conn->hcon->role != HCI_ROLE_SLAVE)
941 942
		return SMP_CMD_NOTSUPP;

943
	if (!chan->data)
944
		smp = smp_chan_create(conn);
945
	else
946
		smp = chan->data;
947

948 949
	if (!smp)
		return SMP_UNSPECIFIED;
950

951 952 953
	/* We didn't start the pairing, so match remote */
	auth = req->auth_req & AUTH_REQ_MASK;

954
	if (!test_bit(HCI_BONDABLE, &hdev->dev_flags) &&
955
	    (auth & SMP_AUTH_BONDING))
956 957
		return SMP_PAIRING_NOTSUPP;

958 959
	smp->preq[0] = SMP_CMD_PAIRING_REQ;
	memcpy(&smp->preq[1], req, sizeof(*req));
960
	skb_pull(skb, sizeof(*req));
961

962 963 964
	sec_level = authreq_to_seclevel(auth);
	if (sec_level > conn->hcon->pending_sec_level)
		conn->hcon->pending_sec_level = sec_level;
965

966 967 968 969 970 971 972 973 974 975
	/* If we need MITM check that it can be acheived */
	if (conn->hcon->pending_sec_level >= BT_SECURITY_HIGH) {
		u8 method;

		method = get_auth_method(smp, conn->hcon->io_capability,
					 req->io_capability);
		if (method == JUST_WORKS || method == JUST_CFM)
			return SMP_AUTH_REQUIREMENTS;
	}

976
	build_pairing_cmd(conn, req, &rsp, auth);
977 978 979 980

	key_size = min(req->max_key_size, rsp.max_key_size);
	if (check_enc_key_size(conn, key_size))
		return SMP_ENC_KEY_SIZE;
981

982
	get_random_bytes(smp->prnd, sizeof(smp->prnd));
983

984 985
	smp->prsp[0] = SMP_CMD_PAIRING_RSP;
	memcpy(&smp->prsp[1], &rsp, sizeof(rsp));
986

987
	smp_send_cmd(conn, SMP_CMD_PAIRING_RSP, sizeof(rsp), &rsp);
988
	SMP_ALLOW_CMD(smp, SMP_CMD_PAIRING_CONFIRM);
989

990 991 992 993 994
	/* Request setup of TK */
	ret = tk_request(conn, 0, auth, rsp.io_capability, req->io_capability);
	if (ret)
		return SMP_UNSPECIFIED;

995
	return 0;
996 997
}

998
static u8 smp_cmd_pairing_rsp(struct l2cap_conn *conn, struct sk_buff *skb)
999
{
1000
	struct smp_cmd_pairing *req, *rsp = (void *) skb->data;
1001 1002
	struct l2cap_chan *chan = conn->smp;
	struct smp_chan *smp = chan->data;
1003
	u8 key_size, auth;
1004
	int ret;
1005 1006 1007

	BT_DBG("conn %p", conn);

1008
	if (skb->len < sizeof(*rsp))
1009
		return SMP_INVALID_PARAMS;
1010

1011
	if (conn->hcon->role != HCI_ROLE_MASTER)
1012 1013
		return SMP_CMD_NOTSUPP;

1014 1015
	skb_pull(skb, sizeof(*rsp));

1016
	req = (void *) &smp->preq[1];
1017

1018 1019 1020 1021
	key_size = min(req->max_key_size, rsp->max_key_size);
	if (check_enc_key_size(conn, key_size))
		return SMP_ENC_KEY_SIZE;

1022 1023
	auth = rsp->auth_req & AUTH_REQ_MASK;

1024 1025 1026 1027 1028 1029 1030 1031 1032 1033
	/* If we need MITM check that it can be acheived */
	if (conn->hcon->pending_sec_level >= BT_SECURITY_HIGH) {
		u8 method;

		method = get_auth_method(smp, req->io_capability,
					 rsp->io_capability);
		if (method == JUST_WORKS || method == JUST_CFM)
			return SMP_AUTH_REQUIREMENTS;
	}

1034
	get_random_bytes(smp->prnd, sizeof(smp->prnd));
1035

1036 1037
	smp->prsp[0] = SMP_CMD_PAIRING_RSP;
	memcpy(&smp->prsp[1], rsp, sizeof(*rsp));
1038

1039 1040 1041 1042 1043
	/* Update remote key distribution in case the remote cleared
	 * some bits that we had enabled in our request.
	 */
	smp->remote_key_dist &= rsp->resp_key_dist;

1044
	auth |= req->auth_req;
1045

1046
	ret = tk_request(conn, 0, auth, req->io_capability, rsp->io_capability);
1047 1048 1049
	if (ret)
		return SMP_UNSPECIFIED;

1050
	set_bit(SMP_FLAG_CFM_PENDING, &smp->flags);
1051 1052

	/* Can't compose response until we have been confirmed */
1053
	if (test_bit(SMP_FLAG_TK_VALID, &smp->flags))
1054
		return smp_confirm(smp);
1055 1056

	return 0;
1057 1058
}

1059
static u8 smp_cmd_pairing_confirm(struct l2cap_conn *conn, struct sk_buff *skb)
1060
{
1061 1062
	struct l2cap_chan *chan = conn->smp;
	struct smp_chan *smp = chan->data;
1063

1064 1065
	BT_DBG("conn %p %s", conn, conn->hcon->out ? "master" : "slave");

1066
	if (skb->len < sizeof(smp->pcnf))
1067
		return SMP_INVALID_PARAMS;
1068

1069 1070
	memcpy(smp->pcnf, skb->data, sizeof(smp->pcnf));
	skb_pull(skb, sizeof(smp->pcnf));
1071

1072
	if (conn->hcon->out) {
1073 1074
		smp_send_cmd(conn, SMP_CMD_PAIRING_RANDOM, sizeof(smp->prnd),
			     smp->prnd);
1075 1076 1077 1078 1079
		SMP_ALLOW_CMD(smp, SMP_CMD_PAIRING_RANDOM);
		return 0;
	}

	if (test_bit(SMP_FLAG_TK_VALID, &smp->flags))
1080
		return smp_confirm(smp);
1081
	else
1082
		set_bit(SMP_FLAG_CFM_PENDING, &smp->flags);
1083 1084

	return 0;
1085 1086
}

1087
static u8 smp_cmd_pairing_random(struct l2cap_conn *conn, struct sk_buff *skb)
1088
{
1089 1090
	struct l2cap_chan *chan = conn->smp;
	struct smp_chan *smp = chan->data;
1091

1092
	BT_DBG("conn %p", conn);
1093

1094
	if (skb->len < sizeof(smp->rrnd))
1095
		return SMP_INVALID_PARAMS;
1096

1097
	memcpy(smp->rrnd, skb->data, sizeof(smp->rrnd));
1098
	skb_pull(skb, sizeof(smp->rrnd));
1099

1100
	return smp_random(smp);
1101 1102
}

1103
static bool smp_ltk_encrypt(struct l2cap_conn *conn, u8 sec_level)
1104
{
1105
	struct smp_ltk *key;
1106 1107
	struct hci_conn *hcon = conn->hcon;

1108
	key = hci_find_ltk_by_addr(hcon->hdev, &hcon->dst, hcon->dst_type,
1109
				   hcon->role);
1110
	if (!key)
1111
		return false;
1112

1113
	if (sec_level > BT_SECURITY_MEDIUM && !key->authenticated)
1114
		return false;
1115

1116
	if (test_and_set_bit(HCI_CONN_ENCRYPT_PEND, &hcon->flags))
1117
		return true;
1118

1119 1120
	hci_le_start_enc(hcon, key->ediv, key->rand, key->val);
	hcon->enc_key_size = key->enc_size;
1121

1122 1123 1124
	/* We never store STKs for master role, so clear this flag */
	clear_bit(HCI_CONN_STK_ENCRYPT, &hcon->flags);

1125
	return true;
1126
}
1127

1128 1129 1130 1131 1132
bool smp_sufficient_security(struct hci_conn *hcon, u8 sec_level)
{
	if (sec_level == BT_SECURITY_LOW)
		return true;

1133 1134 1135
	/* If we're encrypted with an STK always claim insufficient
	 * security. This way we allow the connection to be re-encrypted
	 * with an LTK, even if the LTK provides the same level of
1136 1137
	 * security. Only exception is if we don't have an LTK (e.g.
	 * because of key distribution bits).
1138
	 */
1139 1140
	if (test_bit(HCI_CONN_STK_ENCRYPT, &hcon->flags) &&
	    hci_find_ltk_by_addr(hcon->hdev, &hcon->dst, hcon->dst_type,
1141
				 hcon->role))
1142 1143
		return false;

1144 1145 1146 1147 1148 1149
	if (hcon->sec_level >= sec_level)
		return true;

	return false;
}

1150
static u8 smp_cmd_security_req(struct l2cap_conn *conn, struct sk_buff *skb)
1151 1152 1153
{
	struct smp_cmd_security_req *rp = (void *) skb->data;
	struct smp_cmd_pairing cp;
1154
	struct hci_conn *hcon = conn->hcon;
1155
	struct smp_chan *smp;
1156
	u8 sec_level, auth;
1157 1158 1159

	BT_DBG("conn %p", conn);

1160
	if (skb->len < sizeof(*rp))
1161
		return SMP_INVALID_PARAMS;
1162

1163
	if (hcon->role != HCI_ROLE_MASTER)
1164 1165
		return SMP_CMD_NOTSUPP;

1166 1167 1168
	auth = rp->auth_req & AUTH_REQ_MASK;

	sec_level = authreq_to_seclevel(auth);
1169 1170 1171
	if (smp_sufficient_security(hcon, sec_level))
		return 0;

1172 1173
	if (sec_level > hcon->pending_sec_level)
		hcon->pending_sec_level = sec_level;
1174

1175
	if (smp_ltk_encrypt(conn, hcon->pending_sec_level))
1176 1177
		return 0;

1178
	smp = smp_chan_create(conn);
1179 1180
	if (!smp)
		return SMP_UNSPECIFIED;
1181

1182
	if (!test_bit(HCI_BONDABLE, &hcon->hdev->dev_flags) &&
1183
	    (auth & SMP_AUTH_BONDING))
1184 1185
		return SMP_PAIRING_NOTSUPP;

1186 1187
	skb_pull(skb, sizeof(*rp));

1188
	memset(&cp, 0, sizeof(cp));
1189
	build_pairing_cmd(conn, &cp, NULL, auth);
1190

1191 1192
	smp->preq[0] = SMP_CMD_PAIRING_REQ;
	memcpy(&smp->preq[1], &cp, sizeof(cp));
1193

1194
	smp_send_cmd(conn, SMP_CMD_PAIRING_REQ, sizeof(cp), &cp);
1195
	SMP_ALLOW_CMD(smp, SMP_CMD_PAIRING_RSP);
1196

1197
	return 0;
1198 1199
}

1200
int smp_conn_security(struct hci_conn *hcon, __u8 sec_level)
1201
{
1202
	struct l2cap_conn *conn = hcon->l2cap_data;
1203
	struct l2cap_chan *chan;
1204
	struct smp_chan *smp;
1205
	__u8 authreq;
1206
	int ret;
1207

1208 1209
	BT_DBG("conn %p hcon %p level 0x%2.2x", conn, hcon, sec_level);

1210 1211 1212 1213
	/* This may be NULL if there's an unexpected disconnection */
	if (!conn)
		return 1;

1214 1215
	chan = conn->smp;

1216
	if (!test_bit(HCI_LE_ENABLED, &hcon->hdev->dev_flags))
1217 1218
		return 1;

1219
	if (smp_sufficient_security(hcon, sec_level))
1220
		return 1;
1221

1222 1223 1224
	if (sec_level > hcon->pending_sec_level)
		hcon->pending_sec_level = sec_level;

1225
	if (hcon->role == HCI_ROLE_MASTER)
1226 1227
		if (smp_ltk_encrypt(conn, hcon->pending_sec_level))
			return 0;
1228

1229 1230 1231 1232 1233 1234 1235
	l2cap_chan_lock(chan);

	/* If SMP is already in progress ignore this request */
	if (chan->data) {
		ret = 0;
		goto unlock;
	}
1236

1237
	smp = smp_chan_create(conn);
1238 1239 1240 1241
	if (!smp) {
		ret = 1;
		goto unlock;
	}
1242 1243

	authreq = seclevel_to_authreq(sec_level);
1244

1245 1246
	/* Require MITM if IO Capability allows or the security level
	 * requires it.
1247
	 */
1248
	if (hcon->io_capability != HCI_IO_NO_INPUT_OUTPUT ||
1249
	    hcon->pending_sec_level > BT_SECURITY_MEDIUM)
1250 1251
		authreq |= SMP_AUTH_MITM;

1252
	if (hcon->role == HCI_ROLE_MASTER) {
1253
		struct smp_cmd_pairing cp;
1254

1255
		build_pairing_cmd(conn, &cp, NULL, authreq);
1256 1257
		smp->preq[0] = SMP_CMD_PAIRING_REQ;
		memcpy(&smp->preq[1], &cp, sizeof(cp));
1258

1259
		smp_send_cmd(conn, SMP_CMD_PAIRING_REQ, sizeof(cp), &cp);
1260
		SMP_ALLOW_CMD(smp, SMP_CMD_PAIRING_RSP);
1261 1262
	} else {
		struct smp_cmd_security_req cp;
1263
		cp.auth_req = authreq;
1264
		smp_send_cmd(conn, SMP_CMD_SECURITY_REQ, sizeof(cp), &cp);
1265
		SMP_ALLOW_CMD(smp, SMP_CMD_PAIRING_REQ);
1266 1267
	}

1268
	set_bit(SMP_FLAG_INITIATOR, &smp->flags);
1269
	ret = 0;
1270

1271 1272 1273
unlock:
	l2cap_chan_unlock(chan);
	return ret;
1274 1275
}

1276 1277
static int smp_cmd_encrypt_info(struct l2cap_conn *conn, struct sk_buff *skb)
{
1278
	struct smp_cmd_encrypt_info *rp = (void *) skb->data;
1279 1280
	struct l2cap_chan *chan = conn->smp;
	struct smp_chan *smp = chan->data;
1281

1282 1283 1284
	BT_DBG("conn %p", conn);

	if (skb->len < sizeof(*rp))
1285
		return SMP_INVALID_PARAMS;
1286

1287
	SMP_ALLOW_CMD(smp, SMP_CMD_MASTER_IDENT);
1288

1289 1290
	skb_pull(skb, sizeof(*rp));

1291
	memcpy(smp->tk, rp->ltk, sizeof(smp->tk));
1292

1293 1294 1295 1296 1297
	return 0;
}

static int smp_cmd_master_ident(struct l2cap_conn *conn, struct sk_buff *skb)
{
1298
	struct smp_cmd_master_ident *rp = (void *) skb->data;
1299 1300
	struct l2cap_chan *chan = conn->smp;
	struct smp_chan *smp = chan->data;
1301 1302
	struct hci_dev *hdev = conn->hcon->hdev;
	struct hci_conn *hcon = conn->hcon;
1303
	struct smp_ltk *ltk;
1304
	u8 authenticated;
1305

1306 1307 1308
	BT_DBG("conn %p", conn);

	if (skb->len < sizeof(*rp))
1309
		return SMP_INVALID_PARAMS;
1310

1311 1312 1313
	/* Mark the information as received */
	smp->remote_key_dist &= ~SMP_DIST_ENC_KEY;

1314 1315
	if (smp->remote_key_dist & SMP_DIST_ID_KEY)
		SMP_ALLOW_CMD(smp, SMP_CMD_IDENT_INFO);
1316 1317
	else if (smp->remote_key_dist & SMP_DIST_SIGN)
		SMP_ALLOW_CMD(smp, SMP_CMD_SIGN_INFO);
1318

1319
	skb_pull(skb, sizeof(*rp));
1320

1321
	hci_dev_lock(hdev);
1322
	authenticated = (hcon->sec_level == BT_SECURITY_HIGH);
1323
	ltk = hci_add_ltk(hdev, &hcon->dst, hcon->dst_type, SMP_LTK,
1324 1325 1326
			  authenticated, smp->tk, smp->enc_key_size,
			  rp->ediv, rp->rand);
	smp->ltk = ltk;
1327
	if (!(smp->remote_key_dist & KEY_DIST_MASK))
1328
		smp_distribute_keys(smp);
1329
	hci_dev_unlock(hdev);
1330 1331 1332 1333

	return 0;
}

1334 1335 1336
static int smp_cmd_ident_info(struct l2cap_conn *conn, struct sk_buff *skb)
{
	struct smp_cmd_ident_info *info = (void *) skb->data;
1337 1338
	struct l2cap_chan *chan = conn->smp;
	struct smp_chan *smp = chan->data;
1339 1340 1341 1342

	BT_DBG("");

	if (skb->len < sizeof(*info))
1343
		return SMP_INVALID_PARAMS;
1344

1345
	SMP_ALLOW_CMD(smp, SMP_CMD_IDENT_ADDR_INFO);
1346

1347 1348 1349 1350 1351 1352 1353 1354 1355 1356 1357
	skb_pull(skb, sizeof(*info));

	memcpy(smp->irk, info->irk, 16);

	return 0;
}

static int smp_cmd_ident_addr_info(struct l2cap_conn *conn,
				   struct sk_buff *skb)
{
	struct smp_cmd_ident_addr_info *info = (void *) skb->data;
1358 1359
	struct l2cap_chan *chan = conn->smp;
	struct smp_chan *smp = chan->data;
1360 1361 1362 1363 1364 1365
	struct hci_conn *hcon = conn->hcon;
	bdaddr_t rpa;

	BT_DBG("");

	if (skb->len < sizeof(*info))
1366
		return SMP_INVALID_PARAMS;
1367

1368 1369 1370
	/* Mark the information as received */
	smp->remote_key_dist &= ~SMP_DIST_ID_KEY;

1371 1372 1373
	if (smp->remote_key_dist & SMP_DIST_SIGN)
		SMP_ALLOW_CMD(smp, SMP_CMD_SIGN_INFO);

1374 1375
	skb_pull(skb, sizeof(*info));

1376 1377
	hci_dev_lock(hcon->hdev);

1378 1379 1380 1381 1382 1383 1384 1385 1386
	/* Strictly speaking the Core Specification (4.1) allows sending
	 * an empty address which would force us to rely on just the IRK
	 * as "identity information". However, since such
	 * implementations are not known of and in order to not over
	 * complicate our implementation, simply pretend that we never
	 * received an IRK for such a device.
	 */
	if (!bacmp(&info->bdaddr, BDADDR_ANY)) {
		BT_ERR("Ignoring IRK with no identity address");
1387
		goto distribute;
1388 1389
	}

1390 1391 1392 1393 1394 1395 1396 1397
	bacpy(&smp->id_addr, &info->bdaddr);
	smp->id_addr_type = info->addr_type;

	if (hci_bdaddr_is_rpa(&hcon->dst, hcon->dst_type))
		bacpy(&rpa, &hcon->dst);
	else
		bacpy(&rpa, BDADDR_ANY);

1398 1399
	smp->remote_irk = hci_add_irk(conn->hcon->hdev, &smp->id_addr,
				      smp->id_addr_type, smp->irk, &rpa);
1400

1401
distribute:
1402 1403
	if (!(smp->remote_key_dist & KEY_DIST_MASK))
		smp_distribute_keys(smp);
1404

1405 1406
	hci_dev_unlock(hcon->hdev);

1407 1408 1409
	return 0;
}

1410 1411 1412
static int smp_cmd_sign_info(struct l2cap_conn *conn, struct sk_buff *skb)
{
	struct smp_cmd_sign_info *rp = (void *) skb->data;
1413 1414
	struct l2cap_chan *chan = conn->smp;
	struct smp_chan *smp = chan->data;
1415 1416 1417 1418 1419 1420
	struct hci_dev *hdev = conn->hcon->hdev;
	struct smp_csrk *csrk;

	BT_DBG("conn %p", conn);

	if (skb->len < sizeof(*rp))
1421
		return SMP_INVALID_PARAMS;
1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434

	/* Mark the information as received */
	smp->remote_key_dist &= ~SMP_DIST_SIGN;

	skb_pull(skb, sizeof(*rp));

	hci_dev_lock(hdev);
	csrk = kzalloc(sizeof(*csrk), GFP_KERNEL);
	if (csrk) {
		csrk->master = 0x01;
		memcpy(csrk->val, rp->csrk, sizeof(csrk->val));
	}
	smp->csrk = csrk;
1435
	smp_distribute_keys(smp);
1436 1437 1438 1439 1440
	hci_dev_unlock(hdev);

	return 0;
}

1441
static int smp_sig_channel(struct l2cap_chan *chan, struct sk_buff *skb)
1442
{
1443
	struct l2cap_conn *conn = chan->conn;
1444
	struct hci_conn *hcon = conn->hcon;
1445
	struct smp_chan *smp;
1446
	__u8 code, reason;
1447 1448
	int err = 0;

1449 1450
	if (hcon->type != LE_LINK) {
		kfree_skb(skb);
1451
		return 0;
1452 1453
	}

1454
	if (skb->len < 1)
1455 1456
		return -EILSEQ;

1457
	if (!test_bit(HCI_LE_ENABLED, &hcon->hdev->dev_flags)) {
1458 1459 1460 1461
		reason = SMP_PAIRING_NOTSUPP;
		goto done;
	}

1462
	code = skb->data[0];
1463 1464
	skb_pull(skb, sizeof(code));

1465 1466 1467 1468 1469
	smp = chan->data;

	if (code > SMP_CMD_MAX)
		goto drop;

1470
	if (smp && !test_and_clear_bit(code, &smp->allow_cmd))
1471 1472 1473 1474
		goto drop;

	/* If we don't have a context the only allowed commands are
	 * pairing request and security request.
1475
	 */
1476 1477
	if (!smp && code != SMP_CMD_PAIRING_REQ && code != SMP_CMD_SECURITY_REQ)
		goto drop;
1478

1479 1480
	switch (code) {
	case SMP_CMD_PAIRING_REQ:
1481
		reason = smp_cmd_pairing_req(conn, skb);
1482 1483 1484
		break;

	case SMP_CMD_PAIRING_FAIL:
1485
		smp_failure(conn, 0);
1486
		err = -EPERM;
1487 1488 1489
		break;

	case SMP_CMD_PAIRING_RSP:
1490
		reason = smp_cmd_pairing_rsp(conn, skb);
1491 1492 1493
		break;

	case SMP_CMD_SECURITY_REQ:
1494
		reason = smp_cmd_security_req(conn, skb);
1495 1496
		break;

1497
	case SMP_CMD_PAIRING_CONFIRM:
1498
		reason = smp_cmd_pairing_confirm(conn, skb);
1499 1500
		break;

1501
	case SMP_CMD_PAIRING_RANDOM:
1502
		reason = smp_cmd_pairing_random(conn, skb);
1503 1504
		break;

1505
	case SMP_CMD_ENCRYPT_INFO:
1506 1507 1508
		reason = smp_cmd_encrypt_info(conn, skb);
		break;

1509
	case SMP_CMD_MASTER_IDENT:
1510 1511 1512
		reason = smp_cmd_master_ident(conn, skb);
		break;

1513
	case SMP_CMD_IDENT_INFO:
1514 1515 1516
		reason = smp_cmd_ident_info(conn, skb);
		break;

1517
	case SMP_CMD_IDENT_ADDR_INFO:
1518 1519 1520
		reason = smp_cmd_ident_addr_info(conn, skb);
		break;

1521
	case SMP_CMD_SIGN_INFO:
1522
		reason = smp_cmd_sign_info(conn, skb);
1523 1524
		break;

1525 1526 1527
	default:
		BT_DBG("Unknown command code 0x%2.2x", code);
		reason = SMP_CMD_NOTSUPP;
1528
		goto done;
1529 1530
	}

1531
done:
1532 1533 1534
	if (!err) {
		if (reason)
			smp_failure(conn, reason);
1535
		kfree_skb(skb);
1536 1537
	}

1538
	return err;
1539 1540 1541 1542 1543 1544

drop:
	BT_ERR("%s unexpected SMP command 0x%02x from %pMR", hcon->hdev->name,
	       code, &hcon->dst);
	kfree_skb(skb);
	return 0;
1545
}
1546

1547 1548 1549 1550 1551 1552
static void smp_teardown_cb(struct l2cap_chan *chan, int err)
{
	struct l2cap_conn *conn = chan->conn;

	BT_DBG("chan %p", chan);

1553
	if (chan->data)
1554 1555
		smp_chan_destroy(conn);

1556 1557 1558 1559
	conn->smp = NULL;
	l2cap_chan_put(chan);
}

1560 1561
static void smp_resume_cb(struct l2cap_chan *chan)
{
1562
	struct smp_chan *smp = chan->data;
1563 1564 1565 1566 1567
	struct l2cap_conn *conn = chan->conn;
	struct hci_conn *hcon = conn->hcon;

	BT_DBG("chan %p", chan);

1568 1569
	if (!smp)
		return;
1570

1571 1572 1573
	if (!test_bit(HCI_CONN_ENCRYPT, &hcon->flags))
		return;

1574 1575
	cancel_delayed_work(&smp->security_timer);

1576
	smp_distribute_keys(smp);
1577 1578
}

1579 1580 1581 1582 1583 1584 1585 1586 1587 1588
static void smp_ready_cb(struct l2cap_chan *chan)
{
	struct l2cap_conn *conn = chan->conn;

	BT_DBG("chan %p", chan);

	conn->smp = chan;
	l2cap_chan_hold(chan);
}

1589 1590 1591 1592 1593 1594 1595 1596
static int smp_recv_cb(struct l2cap_chan *chan, struct sk_buff *skb)
{
	int err;

	BT_DBG("chan %p", chan);

	err = smp_sig_channel(chan, skb);
	if (err) {
1597
		struct smp_chan *smp = chan->data;
1598

1599 1600
		if (smp)
			cancel_delayed_work_sync(&smp->security_timer);
1601

1602
		hci_disconnect(chan->conn->hcon, HCI_ERROR_AUTH_FAILURE);
1603 1604 1605 1606 1607
	}

	return err;
}

1608 1609 1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621 1622 1623 1624 1625 1626
static struct sk_buff *smp_alloc_skb_cb(struct l2cap_chan *chan,
					unsigned long hdr_len,
					unsigned long len, int nb)
{
	struct sk_buff *skb;

	skb = bt_skb_alloc(hdr_len + len, GFP_KERNEL);
	if (!skb)
		return ERR_PTR(-ENOMEM);

	skb->priority = HCI_PRIO_MAX;
	bt_cb(skb)->chan = chan;

	return skb;
}

static const struct l2cap_ops smp_chan_ops = {
	.name			= "Security Manager",
	.ready			= smp_ready_cb,
1627
	.recv			= smp_recv_cb,
1628 1629
	.alloc_skb		= smp_alloc_skb_cb,
	.teardown		= smp_teardown_cb,
1630
	.resume			= smp_resume_cb,
1631 1632 1633 1634 1635 1636 1637 1638 1639 1640 1641 1642 1643 1644 1645 1646 1647 1648 1649 1650 1651 1652 1653 1654 1655 1656 1657 1658 1659 1660 1661 1662 1663 1664 1665 1666 1667 1668 1669 1670 1671 1672 1673 1674 1675 1676 1677 1678 1679 1680 1681 1682 1683

	.new_connection		= l2cap_chan_no_new_connection,
	.state_change		= l2cap_chan_no_state_change,
	.close			= l2cap_chan_no_close,
	.defer			= l2cap_chan_no_defer,
	.suspend		= l2cap_chan_no_suspend,
	.set_shutdown		= l2cap_chan_no_set_shutdown,
	.get_sndtimeo		= l2cap_chan_no_get_sndtimeo,
	.memcpy_fromiovec	= l2cap_chan_no_memcpy_fromiovec,
};

static inline struct l2cap_chan *smp_new_conn_cb(struct l2cap_chan *pchan)
{
	struct l2cap_chan *chan;

	BT_DBG("pchan %p", pchan);

	chan = l2cap_chan_create();
	if (!chan)
		return NULL;

	chan->chan_type	= pchan->chan_type;
	chan->ops	= &smp_chan_ops;
	chan->scid	= pchan->scid;
	chan->dcid	= chan->scid;
	chan->imtu	= pchan->imtu;
	chan->omtu	= pchan->omtu;
	chan->mode	= pchan->mode;

	BT_DBG("created chan %p", chan);

	return chan;
}

static const struct l2cap_ops smp_root_chan_ops = {
	.name			= "Security Manager Root",
	.new_connection		= smp_new_conn_cb,

	/* None of these are implemented for the root channel */
	.close			= l2cap_chan_no_close,
	.alloc_skb		= l2cap_chan_no_alloc_skb,
	.recv			= l2cap_chan_no_recv,
	.state_change		= l2cap_chan_no_state_change,
	.teardown		= l2cap_chan_no_teardown,
	.ready			= l2cap_chan_no_ready,
	.defer			= l2cap_chan_no_defer,
	.suspend		= l2cap_chan_no_suspend,
	.resume			= l2cap_chan_no_resume,
	.set_shutdown		= l2cap_chan_no_set_shutdown,
	.get_sndtimeo		= l2cap_chan_no_get_sndtimeo,
	.memcpy_fromiovec	= l2cap_chan_no_memcpy_fromiovec,
};

1684 1685
int smp_register(struct hci_dev *hdev)
{
1686
	struct l2cap_chan *chan;
1687
	struct crypto_blkcipher	*tfm_aes;
1688

1689 1690
	BT_DBG("%s", hdev->name);

1691 1692 1693
	tfm_aes = crypto_alloc_blkcipher("ecb(aes)", 0, CRYPTO_ALG_ASYNC);
	if (IS_ERR(tfm_aes)) {
		int err = PTR_ERR(tfm_aes);
1694 1695 1696 1697
		BT_ERR("Unable to create crypto context");
		return err;
	}

1698 1699
	chan = l2cap_chan_create();
	if (!chan) {
1700
		crypto_free_blkcipher(tfm_aes);
1701 1702 1703
		return -ENOMEM;
	}

1704 1705
	chan->data = tfm_aes;

1706
	l2cap_add_scid(chan, L2CAP_CID_SMP);
1707 1708 1709 1710 1711 1712 1713 1714 1715 1716 1717 1718

	l2cap_chan_set_defaults(chan);

	bacpy(&chan->src, &hdev->bdaddr);
	chan->src_type = BDADDR_LE_PUBLIC;
	chan->state = BT_LISTEN;
	chan->mode = L2CAP_MODE_BASIC;
	chan->imtu = L2CAP_DEFAULT_MTU;
	chan->ops = &smp_root_chan_ops;

	hdev->smp_data = chan;

1719 1720 1721 1722 1723
	return 0;
}

void smp_unregister(struct hci_dev *hdev)
{
1724
	struct l2cap_chan *chan = hdev->smp_data;
1725
	struct crypto_blkcipher *tfm_aes;
1726 1727 1728 1729 1730

	if (!chan)
		return;

	BT_DBG("%s chan %p", hdev->name, chan);
1731

1732 1733 1734 1735
	tfm_aes = chan->data;
	if (tfm_aes) {
		chan->data = NULL;
		crypto_free_blkcipher(tfm_aes);
1736
	}
1737 1738 1739

	hdev->smp_data = NULL;
	l2cap_chan_put(chan);
1740
}