while ((skb = skb_peek(&chan->tx_q)) &&
chan->unacked_frames) {
- if (bt_cb(skb)->tx_seq == chan->expected_ack_seq)
+ if (bt_cb(skb)->control.txseq == chan->expected_ack_seq)
break;
skb = skb_dequeue(&chan->tx_q);
if (!skb)
return;
- while (bt_cb(skb)->tx_seq != tx_seq) {
+ while (bt_cb(skb)->control.txseq != tx_seq) {
if (skb_queue_is_last(&chan->tx_q, skb))
return;
skb = skb_queue_next(&chan->tx_q, skb);
}
- if (chan->remote_max_tx &&
- bt_cb(skb)->retries == chan->remote_max_tx) {
+ if (bt_cb(skb)->control.retries == chan->remote_max_tx &&
+ chan->remote_max_tx) {
l2cap_send_disconn_req(chan->conn, chan, ECONNABORTED);
return;
}
tx_skb = skb_clone(skb, GFP_ATOMIC);
- bt_cb(skb)->retries++;
+ bt_cb(skb)->control.retries++;
control = __get_control(chan, tx_skb->data + L2CAP_HDR_SIZE);
control &= __get_sar_mask(chan);
while ((skb = chan->tx_send_head) && (!l2cap_tx_window_full(chan))) {
- if (chan->remote_max_tx &&
- bt_cb(skb)->retries == chan->remote_max_tx) {
+ if (bt_cb(skb)->control.retries == chan->remote_max_tx &&
+ chan->remote_max_tx) {
l2cap_send_disconn_req(chan->conn, chan, ECONNABORTED);
break;
}
tx_skb = skb_clone(skb, GFP_ATOMIC);
- bt_cb(skb)->retries++;
+ bt_cb(skb)->control.retries++;
control = __get_control(chan, tx_skb->data + L2CAP_HDR_SIZE);
control &= __get_sar_mask(chan);
__set_retrans_timer(chan);
- bt_cb(skb)->tx_seq = chan->next_tx_seq;
+ bt_cb(skb)->control.txseq = chan->next_tx_seq;
chan->next_tx_seq = __next_seq(chan, chan->next_tx_seq);
- if (bt_cb(skb)->retries == 1) {
+ if (bt_cb(skb)->control.retries == 1) {
chan->unacked_frames++;
if (!nsent++)
if (chan->fcs == L2CAP_FCS_CRC16)
put_unaligned_le16(0, skb_put(skb, L2CAP_FCS_SIZE));
- bt_cb(skb)->retries = 0;
+ bt_cb(skb)->control.retries = 0;
return skb;
}
struct sk_buff *next_skb;
int tx_seq_offset, next_tx_seq_offset;
- bt_cb(skb)->tx_seq = tx_seq;
- bt_cb(skb)->sar = sar;
+ bt_cb(skb)->control.txseq = tx_seq;
+ bt_cb(skb)->control.sar = sar;
next_skb = skb_peek(&chan->srej_q);
tx_seq_offset = __seq_offset(chan, tx_seq, chan->buffer_seq);
while (next_skb) {
- if (bt_cb(next_skb)->tx_seq == tx_seq)
+ if (bt_cb(next_skb)->control.txseq == tx_seq)
return -EINVAL;
next_tx_seq_offset = __seq_offset(chan,
- bt_cb(next_skb)->tx_seq, chan->buffer_seq);
+ bt_cb(next_skb)->control.txseq, chan->buffer_seq);
if (next_tx_seq_offset > tx_seq_offset) {
__skb_queue_before(&chan->srej_q, next_skb, skb);
!test_bit(CONN_LOCAL_BUSY, &chan->conn_state)) {
int err;
- if (bt_cb(skb)->tx_seq != tx_seq)
+ if (bt_cb(skb)->control.txseq != tx_seq)
break;
skb = skb_dequeue(&chan->srej_q);
- control = __set_ctrl_sar(chan, bt_cb(skb)->sar);
+ control = __set_ctrl_sar(chan, bt_cb(skb)->control.sar);
err = l2cap_reassemble_sdu(chan, skb, control);
if (err < 0) {
chan->expected_tx_seq = __next_seq(chan, chan->expected_tx_seq);
if (test_bit(CONN_SREJ_SENT, &chan->conn_state)) {
- bt_cb(skb)->tx_seq = tx_seq;
- bt_cb(skb)->sar = sar;
+ bt_cb(skb)->control.txseq = tx_seq;
+ bt_cb(skb)->control.sar = sar;
__skb_queue_tail(&chan->srej_q, skb);
return 0;
}