Loading net/bluetooth/hci_conn.c +1 −1 Original line number Diff line number Diff line Loading @@ -814,7 +814,7 @@ static int hci_le_big_terminate(struct hci_dev *hdev, u8 big, struct hci_conn *c * * Detects if there any BIS left connected in a BIG * broadcaster: Remove advertising instance and terminate BIG. * broadcaster receiver: Teminate BIG sync and terminate PA sync. * broadcaster receiver: Terminate BIG sync and terminate PA sync. */ static void bis_cleanup(struct hci_conn *conn) { Loading net/bluetooth/hci_event.c +2 −2 Original line number Diff line number Diff line Loading @@ -5717,7 +5717,7 @@ static void le_conn_complete_evt(struct hci_dev *hdev, u8 status, conn->state = BT_CONFIG; /* Store current advertising instance as connection advertising instance * when sotfware rotation is in use so it can be re-enabled when * when software rotation is in use so it can be re-enabled when * disconnected. */ if (!ext_adv_capable(hdev)) Loading Loading @@ -7075,7 +7075,7 @@ static void hci_le_big_info_adv_report_evt(struct hci_dev *hdev, void *data, /* Entries in this table shall have their position according to the subevent * opcode they handle so the use of the macros above is recommend since it does * attempt to initialize at its proper index using Designated Initializers that * way events without a callback function can be ommited. * way events without a callback function can be omitted. */ static const struct hci_le_ev { void (*func)(struct hci_dev *hdev, void *data, struct sk_buff *skb); Loading net/bluetooth/hci_sync.c +1 −1 Original line number Diff line number Diff line Loading @@ -5677,7 +5677,7 @@ int hci_abort_conn_sync(struct hci_dev *hdev, struct hci_conn *conn, u8 reason) } /* Cleanup hci_conn object if it cannot be cancelled as it * likelly means the controller and host stack are out of sync * likely means the controller and host stack are out of sync * or in case of LE it was still scanning so it can be cleanup * safely. */ Loading net/bluetooth/lib.c +1 −1 Original line number Diff line number Diff line Loading @@ -54,7 +54,7 @@ EXPORT_SYMBOL(baswap); * bt_to_errno() - Bluetooth error codes to standard errno * @code: Bluetooth error code to be converted * * This function takes a Bluetooth error code as input and convets * This function takes a Bluetooth error code as input and converts * it to an equivalent Unix/standard errno value. * * Return: Loading net/bluetooth/smp.c +1 −1 Original line number Diff line number Diff line Loading @@ -3189,7 +3189,7 @@ static void smp_ready_cb(struct l2cap_chan *chan) /* No need to call l2cap_chan_hold() here since we already own * the reference taken in smp_new_conn_cb(). This is just the * first time that we tie it to a specific pointer. The code in * l2cap_core.c ensures that there's no risk this function wont * l2cap_core.c ensures that there's no risk this function won't * get called if smp_new_conn_cb was previously called. */ conn->smp = chan; Loading Loading
net/bluetooth/hci_conn.c +1 −1 Original line number Diff line number Diff line Loading @@ -814,7 +814,7 @@ static int hci_le_big_terminate(struct hci_dev *hdev, u8 big, struct hci_conn *c * * Detects if there any BIS left connected in a BIG * broadcaster: Remove advertising instance and terminate BIG. * broadcaster receiver: Teminate BIG sync and terminate PA sync. * broadcaster receiver: Terminate BIG sync and terminate PA sync. */ static void bis_cleanup(struct hci_conn *conn) { Loading
net/bluetooth/hci_event.c +2 −2 Original line number Diff line number Diff line Loading @@ -5717,7 +5717,7 @@ static void le_conn_complete_evt(struct hci_dev *hdev, u8 status, conn->state = BT_CONFIG; /* Store current advertising instance as connection advertising instance * when sotfware rotation is in use so it can be re-enabled when * when software rotation is in use so it can be re-enabled when * disconnected. */ if (!ext_adv_capable(hdev)) Loading Loading @@ -7075,7 +7075,7 @@ static void hci_le_big_info_adv_report_evt(struct hci_dev *hdev, void *data, /* Entries in this table shall have their position according to the subevent * opcode they handle so the use of the macros above is recommend since it does * attempt to initialize at its proper index using Designated Initializers that * way events without a callback function can be ommited. * way events without a callback function can be omitted. */ static const struct hci_le_ev { void (*func)(struct hci_dev *hdev, void *data, struct sk_buff *skb); Loading
net/bluetooth/hci_sync.c +1 −1 Original line number Diff line number Diff line Loading @@ -5677,7 +5677,7 @@ int hci_abort_conn_sync(struct hci_dev *hdev, struct hci_conn *conn, u8 reason) } /* Cleanup hci_conn object if it cannot be cancelled as it * likelly means the controller and host stack are out of sync * likely means the controller and host stack are out of sync * or in case of LE it was still scanning so it can be cleanup * safely. */ Loading
net/bluetooth/lib.c +1 −1 Original line number Diff line number Diff line Loading @@ -54,7 +54,7 @@ EXPORT_SYMBOL(baswap); * bt_to_errno() - Bluetooth error codes to standard errno * @code: Bluetooth error code to be converted * * This function takes a Bluetooth error code as input and convets * This function takes a Bluetooth error code as input and converts * it to an equivalent Unix/standard errno value. * * Return: Loading
net/bluetooth/smp.c +1 −1 Original line number Diff line number Diff line Loading @@ -3189,7 +3189,7 @@ static void smp_ready_cb(struct l2cap_chan *chan) /* No need to call l2cap_chan_hold() here since we already own * the reference taken in smp_new_conn_cb(). This is just the * first time that we tie it to a specific pointer. The code in * l2cap_core.c ensures that there's no risk this function wont * l2cap_core.c ensures that there's no risk this function won't * get called if smp_new_conn_cb was previously called. */ conn->smp = chan; Loading