* @param to TCP options data structure to be populated
* @return -1 if parsing failed
*/
-int
+static int
tcp_options_parse (tcp_header_t * th, tcp_options_t * to)
{
const u8 *data;
/* Karn's rule, part 1. Don't use retransmitted segments to estimate
* RTT because they're ambiguous. */
if (tcp_in_cong_recovery (tc) || tc->sack_sb.sacked_bytes)
- goto done;
+ {
+ if (tcp_in_recovery (tc))
+ return 0;
+ goto done;
+ }
if (tc->rtt_ts && seq_geq (ack, tc->rtt_seq))
{
tc->rtt_ts = 0;
/* If we got here something must've been ACKed so make sure boff is 0,
- * even if mrrt is not valid since we update the rto lower */
+ * even if mrtt is not valid since we update the rto lower */
tc->rto_boff = 0;
tcp_update_rto (tc);
return ((*is_dack || tcp_in_cong_recovery (tc)) && !tcp_is_lost_fin (tc));
}
-void
+static u32
+scoreboard_hole_index (sack_scoreboard_t * sb, sack_scoreboard_hole_t * hole)
+{
+ ASSERT (!pool_is_free_index (sb->holes, hole - sb->holes));
+ return hole - sb->holes;
+}
+
+static u32
+scoreboard_hole_bytes (sack_scoreboard_hole_t * hole)
+{
+ return hole->end - hole->start;
+}
+
+sack_scoreboard_hole_t *
+scoreboard_get_hole (sack_scoreboard_t * sb, u32 index)
+{
+ if (index != TCP_INVALID_SACK_HOLE_INDEX)
+ return pool_elt_at_index (sb->holes, index);
+ return 0;
+}
+
+sack_scoreboard_hole_t *
+scoreboard_next_hole (sack_scoreboard_t * sb, sack_scoreboard_hole_t * hole)
+{
+ if (hole->next != TCP_INVALID_SACK_HOLE_INDEX)
+ return pool_elt_at_index (sb->holes, hole->next);
+ return 0;
+}
+
+sack_scoreboard_hole_t *
+scoreboard_prev_hole (sack_scoreboard_t * sb, sack_scoreboard_hole_t * hole)
+{
+ if (hole->prev != TCP_INVALID_SACK_HOLE_INDEX)
+ return pool_elt_at_index (sb->holes, hole->prev);
+ return 0;
+}
+
+sack_scoreboard_hole_t *
+scoreboard_first_hole (sack_scoreboard_t * sb)
+{
+ if (sb->head != TCP_INVALID_SACK_HOLE_INDEX)
+ return pool_elt_at_index (sb->holes, sb->head);
+ return 0;
+}
+
+sack_scoreboard_hole_t *
+scoreboard_last_hole (sack_scoreboard_t * sb)
+{
+ if (sb->tail != TCP_INVALID_SACK_HOLE_INDEX)
+ return pool_elt_at_index (sb->holes, sb->tail);
+ return 0;
+}
+
+static void
scoreboard_remove_hole (sack_scoreboard_t * sb, sack_scoreboard_hole_t * hole)
{
sack_scoreboard_hole_t *next, *prev;
pool_put (sb->holes, hole);
}
-sack_scoreboard_hole_t *
+static sack_scoreboard_hole_t *
scoreboard_insert_hole (sack_scoreboard_t * sb, u32 prev_index,
u32 start, u32 end)
{
return hole;
}
-void
+static void
scoreboard_update_bytes (tcp_connection_t * tc, sack_scoreboard_t * sb)
{
sack_scoreboard_hole_t *hole, *prev;
return hole;
}
-void
+static void
scoreboard_init_high_rxt (sack_scoreboard_t * sb, u32 seq)
{
sack_scoreboard_hole_t *hole;
sb->high_rxt = seq;
}
+void
+scoreboard_init (sack_scoreboard_t * sb)
+{
+ sb->head = TCP_INVALID_SACK_HOLE_INDEX;
+ sb->tail = TCP_INVALID_SACK_HOLE_INDEX;
+ sb->cur_rxt_hole = TCP_INVALID_SACK_HOLE_INDEX;
+}
+
+void
+scoreboard_clear (sack_scoreboard_t * sb)
+{
+ sack_scoreboard_hole_t *hole;
+ while ((hole = scoreboard_first_hole (sb)))
+ {
+ scoreboard_remove_hole (sb, hole);
+ }
+ ASSERT (sb->head == sb->tail && sb->head == TCP_INVALID_SACK_HOLE_INDEX);
+ ASSERT (pool_elts (sb->holes) == 0);
+ sb->sacked_bytes = 0;
+ sb->last_sacked_bytes = 0;
+ sb->last_bytes_delivered = 0;
+ sb->snd_una_adv = 0;
+ sb->high_sacked = 0;
+ sb->high_rxt = 0;
+ sb->lost_bytes = 0;
+ sb->cur_rxt_hole = TCP_INVALID_SACK_HOLE_INDEX;
+}
+
/**
* Test that scoreboard is sane after recovery
*
* Returns 1 if scoreboard is empty or if first hole beyond
* snd_una.
*/
-u8
+static u8
tcp_scoreboard_is_sane_post_recovery (tcp_connection_t * tc)
{
sack_scoreboard_hole_t *hole;
int i, j;
sb->last_sacked_bytes = 0;
- sb->snd_una_adv = 0;
- old_sacked_bytes = sb->sacked_bytes;
sb->last_bytes_delivered = 0;
+ sb->snd_una_adv = 0;
if (!tcp_opts_sack (&tc->rcv_opts)
&& sb->head == TCP_INVALID_SACK_HOLE_INDEX)
return;
+ old_sacked_bytes = sb->sacked_bytes;
+
/* Remove invalid blocks */
blk = tc->rcv_opts.sacks;
while (blk < vec_end (tc->rcv_opts.sacks))
&& timestamp_lt (tc->rcv_opts.tsecr, tc->snd_rxt_ts));
}
-int
+static int
tcp_cc_recover (tcp_connection_t * tc)
{
ASSERT (tcp_in_cong_recovery (tc));
* Legitimate ACK. 1) See if we can exit recovery
*/
/* XXX limit this only to first partial ack? */
- tcp_retransmit_timer_update (tc);
+ if (seq_lt (tc->snd_una, tc->snd_congestion))
+ tcp_retransmit_timer_force_update (tc);
+ else
+ tcp_retransmit_timer_update (tc);
if (seq_geq (tc->snd_una, tc->snd_congestion))
{
{
tc->cc_algo->rcv_ack (tc);
tc->tsecr_last_ack = tc->rcv_opts.tsecr;
+ transport_add_tx_event (&tc->connection);
return;
}
tcp_fast_retransmit (tc);
}
-void
-tcp_cc_init (tcp_connection_t * tc)
-{
- tc->cc_algo = tcp_cc_algo_get (TCP_CC_NEWRENO);
- tc->cc_algo->init (tc);
-}
-
/**
* Process incoming ACK
*/
/* When we entered recovery, we reset snd_nxt to snd_una. Seems peer
* still has the data so accept the ack */
if (tcp_in_recovery (tc)
- && seq_leq (vnet_buffer (b)->tcp.ack_number, tc->snd_congestion)
- && seq_geq (vnet_buffer (b)->tcp.ack_number, tc->snd_una))
+ && seq_leq (vnet_buffer (b)->tcp.ack_number, tc->snd_congestion))
{
- tc->snd_una_max = tc->snd_nxt = vnet_buffer (b)->tcp.ack_number;
+ tc->snd_nxt = vnet_buffer (b)->tcp.ack_number;
+ if (seq_gt (tc->snd_nxt, tc->snd_una_max))
+ tc->snd_una_max = tc->snd_nxt;
goto process_ack;
}
}
/** Enqueue data for delivery to application */
-always_inline int
+static int
tcp_session_enqueue_data (tcp_connection_t * tc, vlib_buffer_t * b,
u16 data_len)
{
}
/** Enqueue out-of-order data */
-always_inline int
+static int
tcp_session_enqueue_ooo (tcp_connection_t * tc, vlib_buffer_t * b,
u16 data_len)
{
tcp_connection_t tcp_connection;
} tcp_rx_trace_t;
-u8 *
+static u8 *
format_tcp_rx_trace (u8 * s, va_list * args)
{
CLIB_UNUSED (vlib_main_t * vm) = va_arg (*args, vlib_main_t *);
return s;
}
-u8 *
+static u8 *
format_tcp_rx_trace_short (u8 * s, va_list * args)
{
CLIB_UNUSED (vlib_main_t * vm) = va_arg (*args, vlib_main_t *);
if (tcp_opts_wscale (&new_tc0->rcv_opts))
new_tc0->snd_wscale = new_tc0->rcv_opts.wscale;
- /* RFC1323: SYN and SYN-ACK wnd not scaled */
- new_tc0->snd_wnd = clib_net_to_host_u16 (tcp0->window);
+ new_tc0->snd_wnd = clib_net_to_host_u16 (tcp0->window)
+ << new_tc0->snd_wscale;
new_tc0->snd_wl1 = seq0;
new_tc0->snd_wl2 = ack0;
case TCP_STATE_SYN_RCVD:
/* Send FIN-ACK notify app and enter CLOSE-WAIT */
tcp_connection_timers_reset (tc0);
- tcp_retransmit_timer_set (tc0);
tcp_make_fin (tc0, b0);
tc0->snd_nxt += 1;
tc0->snd_una_max = tc0->snd_nxt;
+ tcp_retransmit_timer_set (tc0);
next0 = tcp_next_output (tc0->c_is_ip4);
stream_session_disconnect_notify (&tc0->connection);
tc0->state = TCP_STATE_CLOSE_WAIT;
/* ACK for for a SYN-ACK -> tcp-rcv-process. */
_(SYN_RCVD, TCP_FLAG_ACK, TCP_INPUT_NEXT_RCV_PROCESS, TCP_ERROR_NONE);
_(SYN_RCVD, TCP_FLAG_RST, TCP_INPUT_NEXT_RCV_PROCESS, TCP_ERROR_NONE);
+ _(SYN_RCVD, TCP_FLAG_RST | TCP_FLAG_ACK, TCP_INPUT_NEXT_RCV_PROCESS,
+ TCP_ERROR_NONE);
_(SYN_RCVD, TCP_FLAG_SYN, TCP_INPUT_NEXT_RCV_PROCESS, TCP_ERROR_NONE);
+ _(SYN_RCVD, TCP_FLAG_FIN | TCP_FLAG_ACK, TCP_INPUT_NEXT_RCV_PROCESS,
+ TCP_ERROR_NONE);
/* SYN-ACK for a SYN */
_(SYN_SENT, TCP_FLAG_SYN | TCP_FLAG_ACK, TCP_INPUT_NEXT_SYN_SENT,
TCP_ERROR_NONE);
#undef _
}
-clib_error_t *
+static clib_error_t *
tcp_input_init (vlib_main_t * vm)
{
clib_error_t *error = 0;