2 * TCP Veno congestion control
4 * This is based on the congestion detection/avoidance scheme described in
5 * C. P. Fu, S. C. Liew.
6 * "TCP Veno: TCP Enhancement for Transmission over Wireless Access Networks."
7 * IEEE Journal on Selected Areas in Communication,
9 * See http://www.ntu.edu.sg/home5/ZHOU0022/papers/CPFu03a.pdf
12 #include <linux/config.h>
14 #include <linux/module.h>
15 #include <linux/skbuff.h>
16 #include <linux/inet_diag.h>
20 /* Default values of the Veno variables, in fixed-point representation
21 * with V_PARAM_SHIFT bits to the right of the binary point.
23 #define V_PARAM_SHIFT 1
24 static const int beta
= 3 << V_PARAM_SHIFT
;
28 u8 doing_veno_now
; /* if true, do veno for this rtt */
29 u16 cntrtt
; /* # of rtts measured within last rtt */
30 u32 minrtt
; /* min of rtts measured within last rtt (in usec) */
31 u32 basertt
; /* the min of all Veno rtt measurements seen (in usec) */
32 u32 inc
; /* decide whether to increase cwnd */
33 u32 diff
; /* calculate the diff rate */
36 /* There are several situations when we must "re-start" Veno:
38 * o when a connection is established
40 * o after fast recovery
41 * o when we send a packet and there is no outstanding
42 * unacknowledged data (restarting an idle connection)
45 static inline void veno_enable(struct sock
*sk
)
47 struct veno
*veno
= inet_csk_ca(sk
);
50 veno
->doing_veno_now
= 1;
52 veno
->minrtt
= 0x7fffffff;
55 static inline void veno_disable(struct sock
*sk
)
57 struct veno
*veno
= inet_csk_ca(sk
);
60 veno
->doing_veno_now
= 0;
63 static void tcp_veno_init(struct sock
*sk
)
65 struct veno
*veno
= inet_csk_ca(sk
);
67 veno
->basertt
= 0x7fffffff;
72 /* Do rtt sampling needed for Veno. */
73 static void tcp_veno_rtt_calc(struct sock
*sk
, u32 usrtt
)
75 struct veno
*veno
= inet_csk_ca(sk
);
76 u32 vrtt
= usrtt
+ 1; /* Never allow zero rtt or basertt */
78 /* Filter to find propagation delay: */
79 if (vrtt
< veno
->basertt
)
82 /* Find the min rtt during the last rtt to find
83 * the current prop. delay + queuing delay:
85 veno
->minrtt
= min(veno
->minrtt
, vrtt
);
89 static void tcp_veno_state(struct sock
*sk
, u8 ca_state
)
91 if (ca_state
== TCP_CA_Open
)
98 * If the connection is idle and we are restarting,
99 * then we don't want to do any Veno calculations
100 * until we get fresh rtt samples. So when we
101 * restart, we reset our Veno state to a clean
102 * state. After we get acks for this flight of
103 * packets, _then_ we can make Veno calculations
106 static void tcp_veno_cwnd_event(struct sock
*sk
, enum tcp_ca_event event
)
108 if (event
== CA_EVENT_CWND_RESTART
|| event
== CA_EVENT_TX_START
)
112 static void tcp_veno_cong_avoid(struct sock
*sk
, u32 ack
,
113 u32 seq_rtt
, u32 in_flight
, int flag
)
115 struct tcp_sock
*tp
= tcp_sk(sk
);
116 struct veno
*veno
= inet_csk_ca(sk
);
118 if (!veno
->doing_veno_now
)
119 return tcp_reno_cong_avoid(sk
, ack
, seq_rtt
, in_flight
, flag
);
121 /* limited by applications */
122 if (!tcp_is_cwnd_limited(sk
, in_flight
))
125 /* We do the Veno calculations only if we got enough rtt samples */
126 if (veno
->cntrtt
<= 2) {
127 /* We don't have enough rtt samples to do the Veno
128 * calculation, so we'll behave like Reno.
130 tcp_reno_cong_avoid(sk
, ack
, seq_rtt
, in_flight
, flag
);
132 u32 rtt
, target_cwnd
;
134 /* We have enough rtt samples, so, using the Veno
135 * algorithm, we determine the state of the network.
140 target_cwnd
= ((tp
->snd_cwnd
* veno
->basertt
)
141 << V_PARAM_SHIFT
) / rtt
;
143 veno
->diff
= (tp
->snd_cwnd
<< V_PARAM_SHIFT
) - target_cwnd
;
145 if (tp
->snd_cwnd
<= tp
->snd_ssthresh
) {
149 /* Congestion avoidance. */
150 if (veno
->diff
< beta
) {
151 /* In the "non-congestive state", increase cwnd
154 if (tp
->snd_cwnd_cnt
>= tp
->snd_cwnd
) {
155 if (tp
->snd_cwnd
< tp
->snd_cwnd_clamp
)
157 tp
->snd_cwnd_cnt
= 0;
161 /* In the "congestive state", increase cwnd
164 if (tp
->snd_cwnd_cnt
>= tp
->snd_cwnd
) {
167 tp
->snd_cwnd_clamp
) {
172 tp
->snd_cwnd_cnt
= 0;
178 if (tp
->snd_cwnd
< 2)
180 else if (tp
->snd_cwnd
> tp
->snd_cwnd_clamp
)
181 tp
->snd_cwnd
= tp
->snd_cwnd_clamp
;
183 /* Wipe the slate clean for the next rtt. */
184 /* veno->cntrtt = 0; */
185 veno
->minrtt
= 0x7fffffff;
189 static u32
tcp_veno_ssthresh(struct sock
*sk
)
191 const struct tcp_sock
*tp
= tcp_sk(sk
);
192 struct veno
*veno
= inet_csk_ca(sk
);
194 if (veno
->diff
< beta
)
195 /* in "non-congestive state", cut cwnd by 1/5 */
196 return max(tp
->snd_cwnd
* 4 / 5, 2U);
198 /* in "congestive state", cut cwnd by 1/2 */
199 return max(tp
->snd_cwnd
>> 1U, 2U);
202 static struct tcp_congestion_ops tcp_veno
= {
203 .init
= tcp_veno_init
,
204 .ssthresh
= tcp_veno_ssthresh
,
205 .cong_avoid
= tcp_veno_cong_avoid
,
206 .rtt_sample
= tcp_veno_rtt_calc
,
207 .set_state
= tcp_veno_state
,
208 .cwnd_event
= tcp_veno_cwnd_event
,
210 .owner
= THIS_MODULE
,
214 static int __init
tcp_veno_register(void)
216 BUG_ON(sizeof(struct veno
) > ICSK_CA_PRIV_SIZE
);
217 tcp_register_congestion_control(&tcp_veno
);
221 static void __exit
tcp_veno_unregister(void)
223 tcp_unregister_congestion_control(&tcp_veno
);
226 module_init(tcp_veno_register
);
227 module_exit(tcp_veno_unregister
);
229 MODULE_AUTHOR("Bin Zhou, Cheng Peng Fu");
230 MODULE_LICENSE("GPL");
231 MODULE_DESCRIPTION("TCP Veno");