libceph: introduce and switch to reopen_session()
[linux-2.6-block.git] / net / ipv4 / tcp_htcp.c
CommitLineData
a7868ea6
BE
1/*
2 * H-TCP congestion control. The algorithm is detailed in:
3 * R.N.Shorten, D.J.Leith:
4 * "H-TCP: TCP for high-speed and long-distance networks"
5 * Proc. PFLDnet, Argonne, 2004.
6 * http://www.hamilton.ie/net/htcp3.pdf
7 */
8
a7868ea6
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9#include <linux/mm.h>
10#include <linux/module.h>
11#include <net/tcp.h>
12
9121c777
SH
13#define ALPHA_BASE (1<<7) /* 1.0 with shift << 7 */
14#define BETA_MIN (1<<6) /* 0.5 with shift << 7 */
a7868ea6
BE
15#define BETA_MAX 102 /* 0.8 with shift << 7 */
16
9121c777 17static int use_rtt_scaling __read_mostly = 1;
a7868ea6
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18module_param(use_rtt_scaling, int, 0644);
19MODULE_PARM_DESC(use_rtt_scaling, "turn on/off RTT scaling");
20
9121c777 21static int use_bandwidth_switch __read_mostly = 1;
a7868ea6
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22module_param(use_bandwidth_switch, int, 0644);
23MODULE_PARM_DESC(use_bandwidth_switch, "turn on/off bandwidth switcher");
24
25struct htcp {
2a272f98 26 u32 alpha; /* Fixed point arith, << 7 */
a7868ea6 27 u8 beta; /* Fixed point arith, << 7 */
9121c777
SH
28 u8 modeswitch; /* Delay modeswitch
29 until we had at least one congestion event */
0bc6d90b
BE
30 u16 pkts_acked;
31 u32 packetcount;
a7868ea6
BE
32 u32 minRTT;
33 u32 maxRTT;
2404043a
DM
34 u32 last_cong; /* Time since last congestion event end */
35 u32 undo_last_cong;
a7868ea6
BE
36
37 u32 undo_maxRTT;
38 u32 undo_old_maxB;
39
40 /* Bandwidth estimation */
41 u32 minB;
42 u32 maxB;
43 u32 old_maxB;
44 u32 Bi;
45 u32 lasttime;
46};
47
9121c777 48static inline u32 htcp_cong_time(const struct htcp *ca)
50bf3e22
BE
49{
50 return jiffies - ca->last_cong;
51}
52
9121c777 53static inline u32 htcp_ccount(const struct htcp *ca)
50bf3e22 54{
9121c777 55 return htcp_cong_time(ca) / ca->minRTT;
50bf3e22
BE
56}
57
a7868ea6
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58static inline void htcp_reset(struct htcp *ca)
59{
50bf3e22 60 ca->undo_last_cong = ca->last_cong;
a7868ea6
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61 ca->undo_maxRTT = ca->maxRTT;
62 ca->undo_old_maxB = ca->old_maxB;
63
50bf3e22 64 ca->last_cong = jiffies;
a7868ea6
BE
65}
66
6687e988 67static u32 htcp_cwnd_undo(struct sock *sk)
a7868ea6 68{
6687e988
ACM
69 const struct tcp_sock *tp = tcp_sk(sk);
70 struct htcp *ca = inet_csk_ca(sk);
9121c777 71
8f65b535
DL
72 if (ca->undo_last_cong) {
73 ca->last_cong = ca->undo_last_cong;
74 ca->maxRTT = ca->undo_maxRTT;
75 ca->old_maxB = ca->undo_old_maxB;
76 ca->undo_last_cong = 0;
77 }
9121c777
SH
78
79 return max(tp->snd_cwnd, (tp->snd_ssthresh << 7) / ca->beta);
a7868ea6
BE
80}
81
113bbbd8 82static inline void measure_rtt(struct sock *sk, u32 srtt)
a7868ea6 83{
6687e988 84 const struct inet_connection_sock *icsk = inet_csk(sk);
6687e988 85 struct htcp *ca = inet_csk_ca(sk);
a7868ea6
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86
87 /* keep track of minimum RTT seen so far, minRTT is zero at first */
88 if (ca->minRTT > srtt || !ca->minRTT)
89 ca->minRTT = srtt;
90
91 /* max RTT */
f34d1955 92 if (icsk->icsk_ca_state == TCP_CA_Open) {
a7868ea6
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93 if (ca->maxRTT < ca->minRTT)
94 ca->maxRTT = ca->minRTT;
9d4fb27d
JP
95 if (ca->maxRTT < srtt &&
96 srtt <= ca->maxRTT + msecs_to_jiffies(20))
a7868ea6
BE
97 ca->maxRTT = srtt;
98 }
99}
100
688d1945 101static void measure_achieved_throughput(struct sock *sk,
102 u32 pkts_acked, s32 rtt)
a7868ea6 103{
6687e988
ACM
104 const struct inet_connection_sock *icsk = inet_csk(sk);
105 const struct tcp_sock *tp = tcp_sk(sk);
106 struct htcp *ca = inet_csk_ca(sk);
a7868ea6
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107 u32 now = tcp_time_stamp;
108
0bc6d90b
BE
109 if (icsk->icsk_ca_state == TCP_CA_Open)
110 ca->pkts_acked = pkts_acked;
111
113bbbd8
SH
112 if (rtt > 0)
113 measure_rtt(sk, usecs_to_jiffies(rtt));
114
0bc6d90b
BE
115 if (!use_bandwidth_switch)
116 return;
117
a7868ea6 118 /* achieved throughput calculations */
571a5dd8 119 if (!((1 << icsk->icsk_ca_state) & (TCPF_CA_Open | TCPF_CA_Disorder))) {
a7868ea6
BE
120 ca->packetcount = 0;
121 ca->lasttime = now;
122 return;
123 }
124
125 ca->packetcount += pkts_acked;
126
9d4fb27d
JP
127 if (ca->packetcount >= tp->snd_cwnd - (ca->alpha >> 7 ? : 1) &&
128 now - ca->lasttime >= ca->minRTT &&
129 ca->minRTT > 0) {
9121c777
SH
130 __u32 cur_Bi = ca->packetcount * HZ / (now - ca->lasttime);
131
50bf3e22 132 if (htcp_ccount(ca) <= 3) {
a7868ea6
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133 /* just after backoff */
134 ca->minB = ca->maxB = ca->Bi = cur_Bi;
135 } else {
9121c777 136 ca->Bi = (3 * ca->Bi + cur_Bi) / 4;
a7868ea6
BE
137 if (ca->Bi > ca->maxB)
138 ca->maxB = ca->Bi;
139 if (ca->minB > ca->maxB)
140 ca->minB = ca->maxB;
141 }
142 ca->packetcount = 0;
143 ca->lasttime = now;
144 }
145}
146
147static inline void htcp_beta_update(struct htcp *ca, u32 minRTT, u32 maxRTT)
148{
149 if (use_bandwidth_switch) {
150 u32 maxB = ca->maxB;
151 u32 old_maxB = ca->old_maxB;
a7868ea6 152
688d1945 153 ca->old_maxB = ca->maxB;
9121c777 154 if (!between(5 * maxB, 4 * old_maxB, 6 * old_maxB)) {
a7868ea6
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155 ca->beta = BETA_MIN;
156 ca->modeswitch = 0;
157 return;
158 }
159 }
160
c33ad6e4 161 if (ca->modeswitch && minRTT > msecs_to_jiffies(10) && maxRTT) {
9121c777 162 ca->beta = (minRTT << 7) / maxRTT;
a7868ea6
BE
163 if (ca->beta < BETA_MIN)
164 ca->beta = BETA_MIN;
165 else if (ca->beta > BETA_MAX)
166 ca->beta = BETA_MAX;
167 } else {
168 ca->beta = BETA_MIN;
169 ca->modeswitch = 1;
170 }
171}
172
173static inline void htcp_alpha_update(struct htcp *ca)
174{
175 u32 minRTT = ca->minRTT;
176 u32 factor = 1;
50bf3e22 177 u32 diff = htcp_cong_time(ca);
a7868ea6
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178
179 if (diff > HZ) {
180 diff -= HZ;
9121c777 181 factor = 1 + (10 * diff + ((diff / 2) * (diff / 2) / HZ)) / HZ;
a7868ea6
BE
182 }
183
184 if (use_rtt_scaling && minRTT) {
9121c777
SH
185 u32 scale = (HZ << 3) / (10 * minRTT);
186
187 /* clamping ratio to interval [0.5,10]<<3 */
188 scale = min(max(scale, 1U << 2), 10U << 3);
189 factor = (factor << 3) / scale;
a7868ea6
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190 if (!factor)
191 factor = 1;
192 }
193
9121c777 194 ca->alpha = 2 * factor * ((1 << 7) - ca->beta);
a7868ea6
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195 if (!ca->alpha)
196 ca->alpha = ALPHA_BASE;
197}
198
9121c777
SH
199/*
200 * After we have the rtt data to calculate beta, we'd still prefer to wait one
a7868ea6
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201 * rtt before we adjust our beta to ensure we are working from a consistent
202 * data.
203 *
204 * This function should be called when we hit a congestion event since only at
205 * that point do we really have a real sense of maxRTT (the queues en route
206 * were getting just too full now).
207 */
6687e988 208static void htcp_param_update(struct sock *sk)
a7868ea6 209{
6687e988 210 struct htcp *ca = inet_csk_ca(sk);
a7868ea6
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211 u32 minRTT = ca->minRTT;
212 u32 maxRTT = ca->maxRTT;
213
214 htcp_beta_update(ca, minRTT, maxRTT);
215 htcp_alpha_update(ca);
216
9121c777 217 /* add slowly fading memory for maxRTT to accommodate routing changes */
a7868ea6 218 if (minRTT > 0 && maxRTT > minRTT)
9121c777 219 ca->maxRTT = minRTT + ((maxRTT - minRTT) * 95) / 100;
a7868ea6
BE
220}
221
6687e988 222static u32 htcp_recalc_ssthresh(struct sock *sk)
a7868ea6 223{
6687e988
ACM
224 const struct tcp_sock *tp = tcp_sk(sk);
225 const struct htcp *ca = inet_csk_ca(sk);
9121c777 226
6687e988 227 htcp_param_update(sk);
a7868ea6
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228 return max((tp->snd_cwnd * ca->beta) >> 7, 2U);
229}
230
24901551 231static void htcp_cong_avoid(struct sock *sk, u32 ack, u32 acked)
a7868ea6 232{
6687e988
ACM
233 struct tcp_sock *tp = tcp_sk(sk);
234 struct htcp *ca = inet_csk_ca(sk);
a7868ea6 235
24901551 236 if (!tcp_is_cwnd_limited(sk))
a7868ea6
BE
237 return;
238
071d5080 239 if (tcp_in_slow_start(tp))
9f9843a7 240 tcp_slow_start(tp, acked);
7faffa1c 241 else {
7faffa1c 242 /* In dangerous area, increase slowly.
a7868ea6
BE
243 * In theory this is tp->snd_cwnd += alpha / tp->snd_cwnd
244 */
0bc6d90b 245 if ((tp->snd_cwnd_cnt * ca->alpha)>>7 >= tp->snd_cwnd) {
a7868ea6
BE
246 if (tp->snd_cwnd < tp->snd_cwnd_clamp)
247 tp->snd_cwnd++;
248 tp->snd_cwnd_cnt = 0;
50bf3e22 249 htcp_alpha_update(ca);
0bc6d90b
BE
250 } else
251 tp->snd_cwnd_cnt += ca->pkts_acked;
252
253 ca->pkts_acked = 1;
a7868ea6
BE
254 }
255}
256
6687e988 257static void htcp_init(struct sock *sk)
a7868ea6 258{
6687e988 259 struct htcp *ca = inet_csk_ca(sk);
a7868ea6
BE
260
261 memset(ca, 0, sizeof(struct htcp));
262 ca->alpha = ALPHA_BASE;
263 ca->beta = BETA_MIN;
0bc6d90b 264 ca->pkts_acked = 1;
50bf3e22 265 ca->last_cong = jiffies;
a7868ea6
BE
266}
267
6687e988 268static void htcp_state(struct sock *sk, u8 new_state)
a7868ea6
BE
269{
270 switch (new_state) {
50bf3e22
BE
271 case TCP_CA_Open:
272 {
273 struct htcp *ca = inet_csk_ca(sk);
688d1945 274
8f65b535
DL
275 if (ca->undo_last_cong) {
276 ca->last_cong = jiffies;
277 ca->undo_last_cong = 0;
278 }
50bf3e22
BE
279 }
280 break;
a7868ea6
BE
281 case TCP_CA_CWR:
282 case TCP_CA_Recovery:
283 case TCP_CA_Loss:
6687e988 284 htcp_reset(inet_csk_ca(sk));
a7868ea6
BE
285 break;
286 }
287}
288
a252bebe 289static struct tcp_congestion_ops htcp __read_mostly = {
a7868ea6
BE
290 .init = htcp_init,
291 .ssthresh = htcp_recalc_ssthresh,
a7868ea6
BE
292 .cong_avoid = htcp_cong_avoid,
293 .set_state = htcp_state,
294 .undo_cwnd = htcp_cwnd_undo,
295 .pkts_acked = measure_achieved_throughput,
296 .owner = THIS_MODULE,
297 .name = "htcp",
298};
299
300static int __init htcp_register(void)
301{
74975d40 302 BUILD_BUG_ON(sizeof(struct htcp) > ICSK_CA_PRIV_SIZE);
a7868ea6 303 BUILD_BUG_ON(BETA_MIN >= BETA_MAX);
a7868ea6
BE
304 return tcp_register_congestion_control(&htcp);
305}
306
307static void __exit htcp_unregister(void)
308{
309 tcp_unregister_congestion_control(&htcp);
310}
311
312module_init(htcp_register);
313module_exit(htcp_unregister);
314
315MODULE_AUTHOR("Baruch Even");
316MODULE_LICENSE("GPL");
317MODULE_DESCRIPTION("H-TCP");